sbuild (Debian sbuild) 0.91.10 (27 June 2026) on cil.up7.fr +==============================================================================+ | coq-elpi 3.5.0-2+ocaml1 (amd64) Tue, 11 Aug 2026 09:29:17 +0000 | +==============================================================================+ Package: coq-elpi Version: 3.5.0-2+ocaml1 Source Version: 3.5.0-2+ocaml1 Distribution: trixie-backports-ocaml Machine Architecture: amd64 Host Architecture: amd64 Build Architecture: amd64 Build Type: full I: Unpacking /home/steph/srv/ocaml.debian.net/backports/20260811/ben/rootfs.tar.zst to /var/cache/pbuilder/tmp/tmp.sbuild.B23C8Yf5hx... I: Setting up the chroot... I: Creating chroot session... I: Setting up log color... +------------------------------------------------------------------------------+ | Chroot Setup Commands Tue, 11 Aug 2026 09:30:02 +0000 | +------------------------------------------------------------------------------+ /repo/conf/mk-release.sh ------------------------ dpkg-scanpackages: info: Wrote 1269 entries to output Packages file. I: Finished running '/repo/conf/mk-release.sh'. Finished processing commands. -------------------------------------------------------------------------------- I: Setting up apt archive... +------------------------------------------------------------------------------+ | Update chroot Tue, 11 Aug 2026 09:32:00 +0000 | +------------------------------------------------------------------------------+ Ign:1 file:/repo rebuilt InRelease Get:2 file:/repo rebuilt Release [1496 B] Get:2 file:/repo rebuilt Release [1496 B] Ign:3 file:/repo rebuilt Release.gpg Get:4 file:/repo rebuilt/main amd64 Packages [1229 kB] Get:5 http://localhost:9999/debian trixie InRelease [140 kB] Get:6 http://localhost:9999/debian trixie/main amd64 Packages [9673 kB] Get:7 http://localhost:9999/debian trixie/non-free-firmware amd64 Packages [6884 B] Get:8 http://localhost:9999/debian trixie/non-free amd64 Packages [100 kB] Get:9 http://localhost:9999/debian trixie/contrib amd64 Packages [53.8 kB] Fetched 9974 kB in 1s (7757 kB/s) Reading package lists... W: Conflicting distribution: file:/repo rebuilt Release (expected rebuilt but got ) Reading package lists... Building dependency tree... Reading state information... Calculating upgrade... 0 upgraded, 0 newly installed, 0 to remove and 0 not upgraded. +------------------------------------------------------------------------------+ | Fetch source files Tue, 11 Aug 2026 09:32:04 +0000 | +------------------------------------------------------------------------------+ Local sources ------------- /tmp/tmp.ben.transition-scripts.mTUyiY49il/coq-elpi_3.5.0-2+ocaml1.dsc exists in /tmp/tmp.ben.transition-scripts.mTUyiY49il; copying to chroot +------------------------------------------------------------------------------+ | Install package build dependencies Tue, 11 Aug 2026 09:32:09 +0000 | +------------------------------------------------------------------------------+ Setup apt archive ----------------- Merged Build-Depends: coq (>= 9), debhelper-compat (= 13), dh-coq, dh-ocaml, elpi (>= 3.4.2), libcoq-core-ocaml-dev, libcoq-stdlib, libelpi-ocaml-dev, libppx-optcomp-ocaml-dev, libxml-light-ocaml-dev, libyojson-ocaml-dev, ocaml-dune (>= 3.24.1), build-essential Filtered Build-Depends: coq (>= 9), debhelper-compat (= 13), dh-coq, dh-ocaml, elpi (>= 3.4.2), libcoq-core-ocaml-dev, libcoq-stdlib, libelpi-ocaml-dev, libppx-optcomp-ocaml-dev, libxml-light-ocaml-dev, libyojson-ocaml-dev, ocaml-dune (>= 3.24.1), build-essential dpkg-deb: building package 'sbuild-build-depends-main-dummy' in '/build/reproducible-path/resolver-n3SFWV/apt_archive/sbuild-build-depends-main-dummy.deb'. Ign:1 copy:/build/reproducible-path/resolver-n3SFWV/apt_archive ./ InRelease Get:2 copy:/build/reproducible-path/resolver-n3SFWV/apt_archive ./ Release [609 B] Ign:3 copy:/build/reproducible-path/resolver-n3SFWV/apt_archive ./ Release.gpg Get:4 copy:/build/reproducible-path/resolver-n3SFWV/apt_archive ./ Sources [799 B] Get:5 copy:/build/reproducible-path/resolver-n3SFWV/apt_archive ./ Packages [838 B] Fetched 2246 B in 0s (67.0 kB/s) Reading package lists... Reading package lists... Install main build dependencies (apt-based resolver) ---------------------------------------------------- Installing build dependencies Reading package lists... Building dependency tree... Reading state information... The following additional packages will be installed: autoconf automake autopoint autotools-dev bsdextrautils coq debhelper dh-autoreconf dh-coq dh-ocaml dh-strip-nondeterminism dwz elpi file gettext gettext-base groff-base intltool-debian libarchive-zip-perl libbase-ocaml libbase-ocaml-dev libcompiler-libs-ocaml-dev libconfig-tiny-perl libcoq-core libcoq-core-ocaml libcoq-core-ocaml-dev libcoq-stdlib libdebhelper-perl libelf1t64 libelpi-ocaml libelpi-ocaml-dev libexpat1 libffi8 libfile-stripnondeterminism-perl libfindlib-ocaml libfindlib-ocaml-dev libgmp-dev libgmp3-dev libgmpxx4ldbl libjson-perl libmagic-mgc libmagic1t64 libmenhir-ocaml-dev libncurses-dev libncurses6 libncursesw6 libocaml-compiler-libs-ocaml-dev libocaml-intrinsics-kernel-ocaml libocaml-intrinsics-kernel-ocaml-dev libpipeline1 libppx-derivers-ocaml-dev libppx-deriving-ocaml libppx-deriving-ocaml-dev libppx-optcomp-ocaml libppx-optcomp-ocaml-dev libppxlib-ocaml-dev libpython3-stdlib libpython3.13-minimal libpython3.13-stdlib libre-ocaml-dev libreadline8t64 libsexplib0-ocaml libsexplib0-ocaml-dev libstdio-ocaml libstdio-ocaml-dev libstdlib-ocaml libstdlib-ocaml-dev libtool libuchardet0 libunistring5 libxml-light-ocaml libxml-light-ocaml-dev libxml2 libyojson-ocaml libyojson-ocaml-dev libzarith-ocaml libzarith-ocaml-dev libzstd-dev m4 man-db media-types netbase ocaml ocaml-base ocaml-dune ocaml-findlib ocaml-interp po-debconf python3 python3-minimal python3.13 python3.13-minimal quickjs readline-common sensible-utils tzdata Suggested packages: autoconf-archive gnu-standards autoconf-doc rocqide | proofgeneral ledit | readline-editor why3 coq-doc dh-make git gettext-doc libasprintf-dev libgettextpo-dev gnulib-l10n groff gmp-doc libgmp10-doc libmpfr-dev ncurses-doc libtool-doc gfortran | fortran95-compiler gcj-jdk m4-doc apparmor less www-browser ocaml-doc elpa-tuareg camlp4 libmail-box-perl python3-doc python3-tk python3-venv python3.13-venv python3.13-doc binfmt-support readline-doc Recommended packages: curl | wget | lynx libarchive-cpio-perl libjson-xs-perl libgpm2 ocaml-man libltdl-dev ledit | readline-editor libmail-sendmail-perl ca-certificates The following NEW packages will be installed: autoconf automake autopoint autotools-dev bsdextrautils coq debhelper dh-autoreconf dh-coq dh-ocaml dh-strip-nondeterminism dwz elpi file gettext gettext-base groff-base intltool-debian libarchive-zip-perl libbase-ocaml libbase-ocaml-dev libcompiler-libs-ocaml-dev libconfig-tiny-perl libcoq-core libcoq-core-ocaml libcoq-core-ocaml-dev libcoq-stdlib libdebhelper-perl libelf1t64 libelpi-ocaml libelpi-ocaml-dev libexpat1 libffi8 libfile-stripnondeterminism-perl libfindlib-ocaml libfindlib-ocaml-dev libgmp-dev libgmp3-dev libgmpxx4ldbl libjson-perl libmagic-mgc libmagic1t64 libmenhir-ocaml-dev libncurses-dev libncurses6 libncursesw6 libocaml-compiler-libs-ocaml-dev libocaml-intrinsics-kernel-ocaml libocaml-intrinsics-kernel-ocaml-dev libpipeline1 libppx-derivers-ocaml-dev libppx-deriving-ocaml libppx-deriving-ocaml-dev libppx-optcomp-ocaml libppx-optcomp-ocaml-dev libppxlib-ocaml-dev libpython3-stdlib libpython3.13-minimal libpython3.13-stdlib libre-ocaml-dev libreadline8t64 libsexplib0-ocaml libsexplib0-ocaml-dev libstdio-ocaml libstdio-ocaml-dev libstdlib-ocaml libstdlib-ocaml-dev libtool libuchardet0 libunistring5 libxml-light-ocaml libxml-light-ocaml-dev libxml2 libyojson-ocaml libyojson-ocaml-dev libzarith-ocaml libzarith-ocaml-dev libzstd-dev m4 man-db media-types netbase ocaml ocaml-base ocaml-dune ocaml-findlib ocaml-interp po-debconf python3 python3-minimal python3.13 python3.13-minimal quickjs readline-common sbuild-build-depends-main-dummy sensible-utils tzdata 0 upgraded, 97 newly installed, 0 to remove and 0 not upgraded. Need to get 19.6 MB/301 MB of archives. After this operation, 1331 MB of additional disk space will be used. Get:1 file:/repo rebuilt/main amd64 libcoq-core amd64 9.2.0+dfsg-3+ocaml1 [1153 kB] Get:2 copy:/build/reproducible-path/resolver-n3SFWV/apt_archive ./ sbuild-build-depends-main-dummy 0.invalid.0 [944 B] Get:3 file:/repo rebuilt/main amd64 libstdlib-ocaml amd64 5.4.1-1+ocaml1 [605 kB] Get:4 file:/repo rebuilt/main amd64 ocaml-base amd64 5.4.1-1+ocaml1 [503 kB] Get:5 file:/repo rebuilt/main amd64 libfindlib-ocaml amd64 1.9.8-1+ocaml1 [194 kB] Get:6 file:/repo rebuilt/main amd64 libzarith-ocaml amd64 1.14-4+ocaml1 [110 kB] Get:7 file:/repo rebuilt/main amd64 libcoq-core-ocaml amd64 9.2.0+dfsg-3+ocaml1 [25.8 MB] Get:8 http://localhost:9999/debian trixie/main amd64 libexpat1 amd64 2.7.1-2 [108 kB] Get:9 http://localhost:9999/debian trixie/main amd64 libpython3.13-minimal amd64 3.13.5-2+deb13u3 [863 kB] Get:10 http://localhost:9999/debian trixie/main amd64 python3.13-minimal amd64 3.13.5-2+deb13u3 [2224 kB] Get:11 http://localhost:9999/debian trixie/main amd64 python3-minimal amd64 3.13.5-1 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3.13.5-1 [28.2 kB] Get:23 http://localhost:9999/debian trixie/main amd64 sensible-utils all 0.0.25 [25.0 kB] Get:24 http://localhost:9999/debian trixie/main amd64 libmagic-mgc amd64 1:5.46-5 [338 kB] Get:25 http://localhost:9999/debian trixie/main amd64 libmagic1t64 amd64 1:5.46-5 [109 kB] Get:26 file:/repo rebuilt/main amd64 libstdlib-ocaml-dev amd64 5.4.1-1+ocaml1 [6476 kB] Get:27 http://localhost:9999/debian trixie/main amd64 file amd64 1:5.46-5 [43.6 kB] Get:28 http://localhost:9999/debian trixie/main amd64 gettext-base amd64 0.23.1-2 [243 kB] Get:29 http://localhost:9999/debian trixie/main amd64 libuchardet0 amd64 0.0.8-1+b2 [68.9 kB] Get:30 http://localhost:9999/debian trixie/main amd64 groff-base amd64 1.23.0-9 [1187 kB] Get:31 http://localhost:9999/debian trixie/main amd64 bsdextrautils amd64 2.41-5 [94.6 kB] Get:32 http://localhost:9999/debian trixie/main amd64 libpipeline1 amd64 1.5.8-1 [42.0 kB] Get:33 http://localhost:9999/debian trixie/main amd64 man-db amd64 2.13.1-1 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http://localhost:9999/debian trixie/main amd64 libarchive-zip-perl all 1.68-1 [104 kB] Get:46 http://localhost:9999/debian trixie/main amd64 libfile-stripnondeterminism-perl all 1.14.1-2 [19.7 kB] Get:47 http://localhost:9999/debian trixie/main amd64 dh-strip-nondeterminism all 1.14.1-2 [8620 B] Get:48 http://localhost:9999/debian trixie/main amd64 libelf1t64 amd64 0.192-4 [189 kB] Get:49 http://localhost:9999/debian trixie/main amd64 dwz amd64 0.15-1+b1 [110 kB] Get:50 http://localhost:9999/debian trixie/main amd64 libunistring5 amd64 1.3-2 [477 kB] Get:51 http://localhost:9999/debian trixie/main amd64 libxml2 amd64 2.12.7+dfsg+really2.9.14-2.1+deb13u3 [700 kB] Get:52 http://localhost:9999/debian trixie/main amd64 gettext amd64 0.23.1-2 [1680 kB] Get:53 http://localhost:9999/debian trixie/main amd64 intltool-debian all 0.35.0+20060710.6 [22.9 kB] Get:54 http://localhost:9999/debian trixie/main amd64 po-debconf all 1.0.21+nmu1 [248 kB] Get:55 http://localhost:9999/debian trixie/main amd64 quickjs amd64 2025.04.26-1 [440 kB] Get:56 http://localhost:9999/debian trixie/main amd64 libjson-perl all 4.10000-1 [87.5 kB] Get:57 http://localhost:9999/debian trixie/main amd64 libconfig-tiny-perl all 2.30-1 [18.9 kB] Get:58 http://localhost:9999/debian trixie/main amd64 libgmpxx4ldbl amd64 2:6.3.0+dfsg-3 [329 kB] Get:59 http://localhost:9999/debian trixie/main amd64 libgmp-dev amd64 2:6.3.0+dfsg-3 [642 kB] Get:60 http://localhost:9999/debian trixie/main amd64 libgmp3-dev amd64 2:6.3.0+dfsg-3 [322 kB] Get:61 file:/repo rebuilt/main amd64 ocaml-interp amd64 5.4.1-1+ocaml1 [7459 kB] Get:62 file:/repo rebuilt/main amd64 ocaml amd64 5.4.1-1+ocaml1 [18.8 MB] Get:63 file:/repo rebuilt/main amd64 ocaml-findlib amd64 1.9.8-1+ocaml1 [595 kB] Get:64 file:/repo rebuilt/main amd64 coq amd64 9.2.0+dfsg-3+ocaml1 [41.3 MB] Get:65 file:/repo rebuilt/main amd64 libdebhelper-perl all 14.3+ocaml1 [77.4 kB] Get:66 file:/repo rebuilt/main amd64 debhelper all 14.3+ocaml1 [934 kB] Get:67 file:/repo 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[176 kB] Get:79 file:/repo rebuilt/main amd64 libzarith-ocaml-dev amd64 1.14-4+ocaml1 [109 kB] Get:80 file:/repo rebuilt/main amd64 libcoq-core-ocaml-dev amd64 9.2.0+dfsg-3+ocaml1 [55.7 MB] Get:81 file:/repo rebuilt/main amd64 libcoq-stdlib amd64 9.2.0-1+ocaml1 [20.1 MB] Get:82 file:/repo rebuilt/main amd64 libmenhir-ocaml-dev amd64 20260209+ds-3+ocaml1 [1006 kB] Get:83 file:/repo rebuilt/main amd64 libocaml-compiler-libs-ocaml-dev amd64 0.17.0-2+ocaml1 [94.0 kB] Get:84 file:/repo rebuilt/main amd64 libppx-derivers-ocaml-dev amd64 1.2.1-4+ocaml1 [16.8 kB] Get:85 file:/repo rebuilt/main amd64 libppxlib-ocaml-dev amd64 0.38.0-1+ocaml1 [18.9 MB] Get:86 file:/repo rebuilt/main amd64 libppx-deriving-ocaml-dev amd64 6.1.3-1+ocaml1 [5016 kB] Get:87 file:/repo rebuilt/main amd64 libre-ocaml-dev amd64 1.14.0-2+ocaml1 [1356 kB] Get:88 file:/repo rebuilt/main amd64 libelpi-ocaml-dev amd64 3.7.2-2+ocaml1 [12.1 MB] Get:89 file:/repo rebuilt/main amd64 libstdio-ocaml amd64 0.17.0-1+ocaml1 [30.4 kB] Get:90 file:/repo rebuilt/main amd64 libppx-optcomp-ocaml amd64 1:0.17.1-1+ocaml1 [123 kB] Get:91 file:/repo rebuilt/main amd64 libstdio-ocaml-dev amd64 0.17.0-1+ocaml1 [69.5 kB] Get:92 file:/repo rebuilt/main amd64 libppx-optcomp-ocaml-dev amd64 1:0.17.1-1+ocaml1 [260 kB] Get:93 file:/repo rebuilt/main amd64 libxml-light-ocaml amd64 2.5-2+ocaml1 [129 kB] Get:94 file:/repo rebuilt/main amd64 libxml-light-ocaml-dev amd64 2.5-2+ocaml1 [311 kB] Get:95 file:/repo rebuilt/main amd64 libyojson-ocaml amd64 3.0.0-2+ocaml1 [356 kB] Get:96 file:/repo rebuilt/main amd64 libyojson-ocaml-dev amd64 3.0.0-2+ocaml1 [810 kB] Get:97 file:/repo rebuilt/main amd64 ocaml-dune amd64 3.24.1-4+ocaml1 [5575 kB] Preconfiguring packages ... Fetched 19.6 MB in 2s (12.2 MB/s) Selecting previously unselected package libexpat1:amd64. (Reading database ... 11874 files and directories currently installed.) Preparing to unpack .../libexpat1_2.7.1-2_amd64.deb ... Unpacking libexpat1:amd64 (2.7.1-2) ... Selecting previously unselected package libpython3.13-minimal:amd64. Preparing to unpack .../libpython3.13-minimal_3.13.5-2+deb13u3_amd64.deb ... Unpacking libpython3.13-minimal:amd64 (3.13.5-2+deb13u3) ... Selecting previously unselected package python3.13-minimal. Preparing to unpack .../python3.13-minimal_3.13.5-2+deb13u3_amd64.deb ... Unpacking python3.13-minimal (3.13.5-2+deb13u3) ... Setting up libpython3.13-minimal:amd64 (3.13.5-2+deb13u3) ... Setting up libexpat1:amd64 (2.7.1-2) ... Setting up python3.13-minimal (3.13.5-2+deb13u3) ... Selecting previously unselected package python3-minimal. (Reading database ... 12208 files and directories currently installed.) 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Current default time zone: 'Etc/UTC' Local time is now: Tue Aug 11 09:33:58 UTC 2026. Universal Time is now: Tue Aug 11 09:33:58 UTC 2026. Run 'dpkg-reconfigure tzdata' if you wish to change it. Setting up autotools-dev (20240727.1) ... Setting up libcoq-stdlib (9.2.0-1+ocaml1) ... Setting up libgmpxx4ldbl:amd64 (2:6.3.0+dfsg-3) ... Setting up libncurses6:amd64 (6.5+20250216-2) ... Setting up libstdlib-ocaml (5.4.1-1+ocaml1) ... Setting up libunistring5:amd64 (1.3-2) ... Setting up autopoint (0.23.1-2) ... Setting up ocaml-base (5.4.1-1+ocaml1) ... Setting up libncursesw6:amd64 (6.5+20250216-2) ... Setting up autoconf (2.72-3.1) ... Setting up libffi8:amd64 (3.4.8-2) ... Setting up libsexplib0-ocaml (0.17.0-1+ocaml1) ... Setting up dwz (0.15-1+b1) ... Setting up libocaml-intrinsics-kernel-ocaml (0.17.2-1+ocaml1) ... Setting up sensible-utils (0.0.25) ... Setting up libuchardet0:amd64 (0.0.8-1+b2) ... Setting up libjson-perl (4.10000-1) ... Setting up netbase (6.5) ... 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Setting up libocaml-compiler-libs-ocaml-dev (0.17.0-2+ocaml1) ... Setting up libyojson-ocaml-dev (3.0.0-2+ocaml1) ... Setting up libfindlib-ocaml-dev (1.9.8-1+ocaml1) ... Setting up libsexplib0-ocaml-dev (0.17.0-1+ocaml1) ... Setting up coq (9.2.0+dfsg-3+ocaml1) ... Setting up libzarith-ocaml-dev (1.14-4+ocaml1) ... Setting up libppx-optcomp-ocaml (1:0.17.1-1+ocaml1) ... Setting up libocaml-intrinsics-kernel-ocaml-dev (0.17.2-1+ocaml1) ... Setting up libppx-derivers-ocaml-dev (1.2.1-4+ocaml1) ... Setting up libppxlib-ocaml-dev (0.38.0-1+ocaml1) ... Setting up debhelper (14.3+ocaml1) ... Setting up libbase-ocaml-dev (0.17.3-2+ocaml1) ... Setting up libcoq-core-ocaml-dev (9.2.0+dfsg-3+ocaml1) ... Setting up libppx-deriving-ocaml-dev (6.1.3-1+ocaml1) ... Setting up libstdio-ocaml-dev (0.17.0-1+ocaml1) ... Setting up libelpi-ocaml-dev (3.7.2-2+ocaml1) ... Setting up libppx-optcomp-ocaml-dev (1:0.17.1-1+ocaml1) ... Setting up sbuild-build-depends-main-dummy (0.invalid.0) ... Processing triggers for libc-bin (2.41-12+deb13u3) ... +------------------------------------------------------------------------------+ | Check architectures Tue, 11 Aug 2026 09:34:05 +0000 | +------------------------------------------------------------------------------+ Arch check ok (amd64 included in any) +------------------------------------------------------------------------------+ | Build environment Tue, 11 Aug 2026 09:34:06 +0000 | +------------------------------------------------------------------------------+ Kernel: Linux 7.1.3+deb14-amd64 #1 SMP PREEMPT_DYNAMIC Debian 7.1.3-1 (2026-07-04) amd64 (x86_64) Toolchain package versions: binutils_2.44-3 dpkg-dev_1.22.22 g++-14_14.2.0-19 gcc-14_14.2.0-19 libc6-dev_2.41-12+deb13u3 libstdc++-14-dev_14.2.0-19 libstdc++6_14.2.0-19 linux-libc-dev_6.12.94-1 Package versions: apt_3.0.3 apt-utils_3.0.3 autoconf_2.72-3.1 automake_1:1.17-4 autopoint_0.23.1-2 autotools-dev_20240727.1 base-files_13.8+deb13u6 base-passwd_3.6.7 bash_5.2.37-2+b9 binutils_2.44-3 binutils-common_2.44-3 binutils-x86-64-linux-gnu_2.44-3 bsdextrautils_2.41-5 bsdutils_1:2.41-5 build-essential_12.12 bzip2_1.0.8-6 coq_9.2.0+dfsg-3+ocaml1 coreutils_9.7-3 cpp_4:14.2.0-1 cpp-14_14.2.0-19 cpp-14-x86-64-linux-gnu_14.2.0-19 cpp-x86-64-linux-gnu_4:14.2.0-1 dash_0.5.12-12 debconf_1.5.91 debhelper_14.3+ocaml1 debian-archive-keyring_2025.1 debianutils_5.23.2 dh-autoreconf_20 dh-coq_0.16+ocaml1 dh-ocaml_3.8+ocaml1 dh-strip-nondeterminism_1.14.1-2 diffutils_1:3.10-4 dpkg_1.22.22 dpkg-dev_1.22.22 dwz_0.15-1+b1 elpi_3.7.2-2+ocaml1 file_1:5.46-5 findutils_4.10.0-3 g++_4:14.2.0-1 g++-14_14.2.0-19 g++-14-x86-64-linux-gnu_14.2.0-19 g++-x86-64-linux-gnu_4:14.2.0-1 gcc_4:14.2.0-1 gcc-14_14.2.0-19 gcc-14-base_14.2.0-19 gcc-14-x86-64-linux-gnu_14.2.0-19 gcc-x86-64-linux-gnu_4:14.2.0-1 gettext_0.23.1-2 gettext-base_0.23.1-2 grep_3.11-4 groff-base_1.23.0-9 gzip_1.13-1 hostname_3.25 init-system-helpers_1.69~deb13u1 intltool-debian_0.35.0+20060710.6 libacl1_2.3.2-2+b1 libapt-pkg7.0_3.0.3 libarchive-zip-perl_1.68-1 libasan8_14.2.0-19 libatomic1_14.2.0-19 libattr1_1:2.5.2-3 libaudit-common_1:4.0.2-2 libaudit1_1:4.0.2-2+b2 libbase-ocaml_0.17.3-2+ocaml1 libbase-ocaml-dev_0.17.3-2+ocaml1 libbinutils_2.44-3 libblkid1_2.41-5 libbz2-1.0_1.0.8-6 libc-bin_2.41-12+deb13u3 libc-dev-bin_2.41-12+deb13u3 libc6_2.41-12+deb13u3 libc6-dev_2.41-12+deb13u3 libcap-ng0_0.8.5-4+b1 libcap2_1:2.75-10+deb13u1+b1 libcc1-0_14.2.0-19 libcompiler-libs-ocaml-dev_5.4.1-1+ocaml1 libconfig-tiny-perl_2.30-1 libcoq-core_9.2.0+dfsg-3+ocaml1 libcoq-core-ocaml_9.2.0+dfsg-3+ocaml1 libcoq-core-ocaml-dev_9.2.0+dfsg-3+ocaml1 libcoq-stdlib_9.2.0-1+ocaml1 libcrypt-dev_1:4.4.38-1 libcrypt1_1:4.4.38-1 libctf-nobfd0_2.44-3 libctf0_2.44-3 libdb5.3t64_5.3.28+dfsg2-9 libdebconfclient0_0.280 libdebhelper-perl_14.3+ocaml1 libdpkg-perl_1.22.22 libelf1t64_0.192-4 libelpi-ocaml_3.7.2-2+ocaml1 libelpi-ocaml-dev_3.7.2-2+ocaml1 libexpat1_2.7.1-2 libffi8_3.4.8-2 libfile-stripnondeterminism-perl_1.14.1-2 libfindlib-ocaml_1.9.8-1+ocaml1 libfindlib-ocaml-dev_1.9.8-1+ocaml1 libgcc-14-dev_14.2.0-19 libgcc-s1_14.2.0-19 libgdbm-compat4t64_1.24-2 libgdbm6t64_1.24-2 libgmp-dev_2:6.3.0+dfsg-3 libgmp10_2:6.3.0+dfsg-3 libgmp3-dev_2:6.3.0+dfsg-3 libgmpxx4ldbl_2:6.3.0+dfsg-3 libgomp1_14.2.0-19 libgprofng0_2.44-3 libhogweed6t64_3.10.1-1 libhwasan0_14.2.0-19 libisl23_0.27-1 libitm1_14.2.0-19 libjansson4_2.14-2+b3 libjson-perl_4.10000-1 liblastlog2-2_2.41-5 liblsan0_14.2.0-19 liblz4-1_1.10.0-4 liblzma5_5.8.1-1+deb13u1 libmagic-mgc_1:5.46-5 libmagic1t64_1:5.46-5 libmd0_1.1.0-2+b1 libmenhir-ocaml-dev_20260209+ds-3+ocaml1 libmount1_2.41-5 libmpc3_1.3.1-1+b3 libmpfr6_4.2.2-1 libncurses-dev_6.5+20250216-2 libncurses6_6.5+20250216-2 libncursesw6_6.5+20250216-2 libnettle8t64_3.10.1-1 libocaml-compiler-libs-ocaml-dev_0.17.0-2+ocaml1 libocaml-intrinsics-kernel-ocaml_0.17.2-1+ocaml1 libocaml-intrinsics-kernel-ocaml-dev_0.17.2-1+ocaml1 libpam-modules_1.7.0-5 libpam-modules-bin_1.7.0-5 libpam-runtime_1.7.0-5 libpam0g_1.7.0-5 libpcre2-8-0_10.46-1~deb13u1 libperl5.40_5.40.1-6 libpipeline1_1.5.8-1 libppx-derivers-ocaml-dev_1.2.1-4+ocaml1 libppx-deriving-ocaml_6.1.3-1+ocaml1 libppx-deriving-ocaml-dev_6.1.3-1+ocaml1 libppx-optcomp-ocaml_1:0.17.1-1+ocaml1 libppx-optcomp-ocaml-dev_1:0.17.1-1+ocaml1 libppxlib-ocaml-dev_0.38.0-1+ocaml1 libpython3-stdlib_3.13.5-1 libpython3.13-minimal_3.13.5-2+deb13u3 libpython3.13-stdlib_3.13.5-2+deb13u3 libquadmath0_14.2.0-19 libre-ocaml-dev_1.14.0-2+ocaml1 libreadline8t64_8.2-6 libseccomp2_2.6.0-2 libselinux1_3.8.1-1 libsexplib0-ocaml_0.17.0-1+ocaml1 libsexplib0-ocaml-dev_0.17.0-1+ocaml1 libsframe1_2.44-3 libsmartcols1_2.41-5 libsqlite3-0_3.46.1-7+deb13u1 libssl3t64_3.5.6-1~deb13u2 libstdc++-14-dev_14.2.0-19 libstdc++6_14.2.0-19 libstdio-ocaml_0.17.0-1+ocaml1 libstdio-ocaml-dev_0.17.0-1+ocaml1 libstdlib-ocaml_5.4.1-1+ocaml1 libstdlib-ocaml-dev_5.4.1-1+ocaml1 libsystemd0_257.13-1~deb13u1 libtinfo6_6.5+20250216-2 libtool_2.5.4-4 libtsan2_14.2.0-19 libubsan1_14.2.0-19 libuchardet0_0.0.8-1+b2 libudev1_257.13-1~deb13u1 libunistring5_1.3-2 libuuid1_2.41-5 libxml-light-ocaml_2.5-2+ocaml1 libxml-light-ocaml-dev_2.5-2+ocaml1 libxml2_2.12.7+dfsg+really2.9.14-2.1+deb13u3 libxxhash0_0.8.3-2 libyojson-ocaml_3.0.0-2+ocaml1 libyojson-ocaml-dev_3.0.0-2+ocaml1 libzarith-ocaml_1.14-4+ocaml1 libzarith-ocaml-dev_1.14-4+ocaml1 libzstd-dev_1.5.7+dfsg-1 libzstd1_1.5.7+dfsg-1 linux-libc-dev_6.12.94-1 m4_1.4.19-8 make_4.4.1-2 man-db_2.13.1-1 mawk_1.3.4.20250131-1 media-types_13.0.0 ncurses-base_6.5+20250216-2 ncurses-bin_6.5+20250216-2 netbase_6.5 ocaml_5.4.1-1+ocaml1 ocaml-base_5.4.1-1+ocaml1 ocaml-dune_3.24.1-4+ocaml1 ocaml-findlib_1.9.8-1+ocaml1 ocaml-interp_5.4.1-1+ocaml1 openssl-provider-legacy_3.5.6-1~deb13u2 patch_2.8-2 perl_5.40.1-6 perl-base_5.40.1-6 perl-modules-5.40_5.40.1-6 po-debconf_1.0.21+nmu1 python3_3.13.5-1 python3-minimal_3.13.5-1 python3.13_3.13.5-2+deb13u3 python3.13-minimal_3.13.5-2+deb13u3 quickjs_2025.04.26-1 readline-common_8.2-6 rpcsvc-proto_1.4.3-1 sbuild-build-depends-main-dummy_0.invalid.0 sed_4.9-2+deb13u1 sensible-utils_0.0.25 sqv_1.3.0-3+b2 sysvinit-utils_3.14-4 tar_1.35+dfsg-3.1 tzdata_2026b-0+deb13u1 util-linux_2.41-5 xz-utils_5.8.1-1+deb13u1 zlib1g_1:1.3.dfsg+really1.3.1-1+b1 +------------------------------------------------------------------------------+ | Build Tue, 11 Aug 2026 09:34:06 +0000 | +------------------------------------------------------------------------------+ Unpack source ------------- Format: 3.0 (quilt) Source: coq-elpi Binary: libcoq-elpi Architecture: any Version: 3.5.0-2+ocaml1 Maintainer: Debian OCaml Maintainers Uploaders: Julien Puydt Homepage: https://github.com/LPCIC/coq-elpi Standards-Version: 4.7.4 Vcs-Browser: https://salsa.debian.org/ocaml-team/coq-elpi Vcs-Git: https://salsa.debian.org/ocaml-team/coq-elpi.git Build-Depends: coq (>= 9), debhelper-compat (= 13), dh-coq, dh-ocaml, elpi (>= 3.4.2), libcoq-core-ocaml-dev, libcoq-stdlib, libelpi-ocaml-dev, libppx-optcomp-ocaml-dev, libxml-light-ocaml-dev, libyojson-ocaml-dev, ocaml-dune (>= 3.24.1) Package-List: libcoq-elpi deb ocaml optional arch=any Checksums-Sha1: 0735f3d605062f8ed56cb91ffc17636741466f7f 1132542 coq-elpi_3.5.0.orig.tar.gz 9104d181c7ba30e415f6844e4c7a6d7c95d5e50e 5764 coq-elpi_3.5.0-2+ocaml1.debian.tar.xz Checksums-Sha256: 05fc70d0067512bccf772491a24bab355323c34154f4c9051bc95609b4dcfc77 1132542 coq-elpi_3.5.0.orig.tar.gz 6996a11dab72e8c2bd740d7bbceb5024471f9f065e84f1fba7035ca5dc5780e0 5764 coq-elpi_3.5.0-2+ocaml1.debian.tar.xz Files: 718c1c9e066e9ee421093bdad1665b3b 1132542 coq-elpi_3.5.0.orig.tar.gz 46efc8fd15ffec40c2a9a22f1b8de2a6 5764 coq-elpi_3.5.0-2+ocaml1.debian.tar.xz dpkg-source: warning: extracting unsigned source package (coq-elpi_3.5.0-2+ocaml1.dsc) dpkg-source: info: extracting coq-elpi in /build/reproducible-path/coq-elpi-3.5.0 dpkg-source: info: unpacking coq-elpi_3.5.0.orig.tar.gz dpkg-source: info: unpacking coq-elpi_3.5.0-2+ocaml1.debian.tar.xz dpkg-source: info: using patch list from debian/patches/series dpkg-source: info: applying riscv64.patch dpkg-source: info: applying dune3.24.patch clean up apt cache ------------------ Check disk space ---------------- Sufficient free space for build User Environment ---------------- APT_CONFIG=/var/lib/sbuild/apt.conf DEB_BUILD_OPTIONS=parallel=1 HOME=/sbuild-nonexistent LANG=fr_FR.UTF-8 LC_ALL=C.UTF-8 LOGNAME=sbuild MAKEFLAGS= PATH=/usr/local/sbin:/usr/local/bin:/usr/sbin:/usr/bin:/sbin:/bin:/usr/games SHELL=/bin/sh USER=sbuild dpkg-buildpackage ----------------- Command: dpkg-buildpackage --sanitize-env -us -uc -sa dpkg-buildpackage: info: source package coq-elpi dpkg-buildpackage: info: source version 3.5.0-2+ocaml1 dpkg-buildpackage: info: source distribution trixie-backports-ocaml dpkg-buildpackage: info: source changed by Anonymous Builder dpkg-source --before-build . dpkg-buildpackage: info: host architecture amd64 debian/rules clean dh clean --with ocaml,coq debian/rules override_dh_auto_clean make[1]: Entering directory '/build/reproducible-path/coq-elpi-3.5.0' Deprecated environment variable COQLIB, use ROCQLIB instead. Deprecated environment variable COQLIB, use ROCQLIB instead. dune clean Warning: Cache directories could not be created: Permission denied; disabling cache Hint: Make sure the directory /sbuild-nonexistent/.cache/dune/db/temp can be created if [-f builtin-doc/elpi-builtin.elpi.bak]; then \ mv builtin-doc/elpi-builtin.elpi.bak builtin-doc/elpi-builtin.elpi; \ fi /bin/sh: 1: [-f: not found make[1]: Leaving directory '/build/reproducible-path/coq-elpi-3.5.0' dh_ocamlclean dh_clean dpkg-source -b . dpkg-source: info: using source format '3.0 (quilt)' dpkg-source: info: building coq-elpi using existing ./coq-elpi_3.5.0.orig.tar.gz dpkg-source: info: using patch list from debian/patches/series dpkg-source: info: building coq-elpi in coq-elpi_3.5.0-2+ocaml1.debian.tar.xz dpkg-source: info: building coq-elpi in coq-elpi_3.5.0-2+ocaml1.dsc debian/rules binary dh binary --with ocaml,coq dh_update_autotools_config dh_autoreconf dh_ocamlinit debian/rules override_dh_auto_configure make[1]: Entering directory '/build/reproducible-path/coq-elpi-3.5.0' Deprecated environment variable COQLIB, use ROCQLIB instead. Deprecated environment variable COQLIB, use ROCQLIB instead. cp builtin-doc/elpi-builtin.elpi builtin-doc/elpi-builtin.elpi.bak dh_auto_configure make[1]: Leaving directory '/build/reproducible-path/coq-elpi-3.5.0' debian/rules override_dh_auto_build make[1]: Entering directory '/build/reproducible-path/coq-elpi-3.5.0' Deprecated environment variable COQLIB, use ROCQLIB instead. Deprecated environment variable COQLIB, use ROCQLIB instead. make make[2]: Entering directory '/build/reproducible-path/coq-elpi-3.5.0' dune build --stop-on-first-error Warning: Cache directories could not be created: Permission denied; disabling cache Hint: Make sure the directory /sbuild-nonexistent/.cache/dune/db/temp can be created File "./apps/tc/tests-stdlib/stdppInjClassic.v", line 9, characters 0-8: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] File "src/rocq_elpi_utils.ml", line 652, characters 19-30: 652 | let id = Label.to_id @@ Constant.label @@ get_projection_constant (snd env) (Projection.repr p) in ^^^^^^^^^^^ Alert deprecated: module Names.Label (9.2) Use Id File "src/rocq_elpi_utils.ml", line 835, characters 38-53: 835 | | MPdot (mp, lbl) -> mp2sl mp @ [ Label.to_string lbl ] ^^^^^^^^^^^^^^^ Alert deprecated: module Names.Label (9.2) Use Id File "src/rocq_elpi_utils.ml", line 652, characters 19-30: 652 | let id = Label.to_id @@ Constant.label @@ get_projection_constant (snd env) (Projection.repr p) in ^^^^^^^^^^^ Alert deprecated: module Names.Label (9.2) Use Id File "src/rocq_elpi_utils.ml", line 835, characters 38-53: 835 | | MPdot (mp, lbl) -> mp2sl mp @ [ Label.to_string lbl ] ^^^^^^^^^^^^^^^ Alert deprecated: module Names.Label (9.2) Use Id File "src/rocq_elpi_builtins_synterp.ml", line 890, characters 25-36: 890 | | ModPath.MPdot(mp,l) -> Label.to_id l :: dirpath_of_modpath mp ^^^^^^^^^^^ Alert deprecated: module Names.Label (9.2) Use Id File "src/rocq_elpi_builtins_synterp.ml", line 1123, characters 47-58: 1123 | Libnames.make_path (ModPath.dp mp) (Label.to_id l) ^^^^^^^^^^^ Alert deprecated: module Names.Label (9.2) Use Id File "src/rocq_elpi_programs.ml", line 183, characters 10-23: 183 | units : Names.KNset.t; ^^^^^^^^^^^^^ Alert deprecated: module Names.KNset Use KerName.Set File "src/rocq_elpi_programs.ml", line 191, characters 10-23: 191 | units : Names.KNset.t; ^^^^^^^^^^^^^ Alert deprecated: module Names.KNset Use KerName.Set File "src/rocq_elpi_programs.ml", line 375, characters 64-81: 375 | let source_cache1 = Summary.ref ~local:true ~name:"elpi-units1" Names.KNmap.empty ^^^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNmap Use KerName.Map File "src/rocq_elpi_programs.ml", line 380, characters 13-29: 380 | let u,cf = Names.KNmap.find kn !source_cache1 in ^^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNmap Use KerName.Map File "src/rocq_elpi_programs.ml", line 390, characters 21-36: 390 | source_cache1 := Names.KNmap.add kn (u,cf) !source_cache1; ^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNmap Use KerName.Map File "src/rocq_elpi_programs.ml", line 411, characters 12-28: 411 | let u,_ = Names.KNmap.find kn !source_cache1 in ^^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNmap Use KerName.Map File "src/rocq_elpi_programs.ml", line 515, characters 23-40: 515 | CString.Set.empty, Names.KNset.empty, SLSet.empty, None, None, true ^^^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNset Use KerName.Set File "src/rocq_elpi_programs.ml", line 522, characters 79-94: 522 | | File { fname; fast = Full (kn,_) } when CString.Set.mem fname files || Names.KNset.mem kn units -> files, units, dbs, prog ^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNset Use KerName.Set File "src/rocq_elpi_programs.ml", line 523, characters 50-65: 523 | | DatabaseHeader { dast = Full(kn,_) } when Names.KNset.mem kn units -> files, units, dbs, prog ^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNset Use KerName.Set File "src/rocq_elpi_programs.ml", line 526, characters 81-96: 526 | | File { fname; fast = Full (kn,_) as u } -> CString.Set.add fname files, (Names.KNset.add kn units), dbs, Some (Code.snoc_opt u prog) ^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNset Use KerName.Set File "src/rocq_elpi_programs.ml", line 527, characters 61-76: 527 | | DatabaseHeader { dast = Full(kn,_) as u } -> files, (Names.KNset.add kn units), dbs, Some (Code.snoc_opt u prog) ^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNset Use KerName.Set File "src/rocq_elpi_programs.ml", line 573, characters 41-56: 573 | let c = List.filter (fun u -> not (Names.KNset.mem (kn_of_cunit u) db.units)) c in ^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNset Use KerName.Set File "src/rocq_elpi_programs.ml", line 577, characters 45-60: 577 | units = List.fold_left (fun s u -> Names.KNset.add (kn_of_cunit u) s) db.units c } ^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNset Use KerName.Set File "src/rocq_elpi_programs.ml", line 580, characters 43-58: 580 | units = List.fold_left (fun s u -> Names.KNset.add (kn_of_cunit u) s) Names.KNset.empty c } ^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNset Use KerName.Set File "src/rocq_elpi_programs.ml", line 580, characters 78-95: 580 | units = List.fold_left (fun s u -> Names.KNset.add (kn_of_cunit u) s) Names.KNset.empty c } ^^^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNset Use KerName.Set File "src/rocq_elpi_programs.ml", line 744, characters 8-28: 744 | try Names.KNset.cardinal (SLMap.find name !db_name_src).units ^^^^^^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNset Use KerName.Set File "src/rocq_elpi_builtins_synterp.ml", line 890, characters 25-36: 890 | | ModPath.MPdot(mp,l) -> Label.to_id l :: dirpath_of_modpath mp ^^^^^^^^^^^ Alert deprecated: module Names.Label (9.2) Use Id File "src/rocq_elpi_builtins_synterp.ml", line 1123, characters 47-58: 1123 | Libnames.make_path (ModPath.dp mp) (Label.to_id l) ^^^^^^^^^^^ Alert deprecated: module Names.Label (9.2) Use Id File "src/rocq_elpi_programs.ml", line 183, characters 10-23: 183 | units : Names.KNset.t; ^^^^^^^^^^^^^ Alert deprecated: module Names.KNset Use KerName.Set File "src/rocq_elpi_programs.ml", line 191, characters 10-23: 191 | units : Names.KNset.t; ^^^^^^^^^^^^^ Alert deprecated: module Names.KNset Use KerName.Set File "src/rocq_elpi_programs.ml", line 375, characters 64-81: 375 | let source_cache1 = Summary.ref ~local:true ~name:"elpi-units1" Names.KNmap.empty ^^^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNmap Use KerName.Map File "src/rocq_elpi_programs.ml", line 380, characters 13-29: 380 | let u,cf = Names.KNmap.find kn !source_cache1 in ^^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNmap Use KerName.Map File "src/rocq_elpi_programs.ml", line 390, characters 21-36: 390 | source_cache1 := Names.KNmap.add kn (u,cf) !source_cache1; ^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNmap Use KerName.Map File "src/rocq_elpi_programs.ml", line 411, characters 12-28: 411 | let u,_ = Names.KNmap.find kn !source_cache1 in ^^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNmap Use KerName.Map File "src/rocq_elpi_programs.ml", line 515, characters 23-40: 515 | CString.Set.empty, Names.KNset.empty, SLSet.empty, None, None, true ^^^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNset Use KerName.Set File "src/rocq_elpi_programs.ml", line 522, characters 79-94: 522 | | File { fname; fast = Full (kn,_) } when CString.Set.mem fname files || Names.KNset.mem kn units -> files, units, dbs, prog ^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNset Use KerName.Set File "src/rocq_elpi_programs.ml", line 523, characters 50-65: 523 | | DatabaseHeader { dast = Full(kn,_) } when Names.KNset.mem kn units -> files, units, dbs, prog ^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNset Use KerName.Set File "src/rocq_elpi_programs.ml", line 526, characters 81-96: 526 | | File { fname; fast = Full (kn,_) as u } -> CString.Set.add fname files, (Names.KNset.add kn units), dbs, Some (Code.snoc_opt u prog) ^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNset Use KerName.Set File "src/rocq_elpi_programs.ml", line 527, characters 61-76: 527 | | DatabaseHeader { dast = Full(kn,_) as u } -> files, (Names.KNset.add kn units), dbs, Some (Code.snoc_opt u prog) ^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNset Use KerName.Set File "src/rocq_elpi_programs.ml", line 573, characters 41-56: 573 | let c = List.filter (fun u -> not (Names.KNset.mem (kn_of_cunit u) db.units)) c in ^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNset Use KerName.Set File "src/rocq_elpi_programs.ml", line 577, characters 45-60: 577 | units = List.fold_left (fun s u -> Names.KNset.add (kn_of_cunit u) s) db.units c } ^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNset Use KerName.Set File "src/rocq_elpi_programs.ml", line 580, characters 43-58: 580 | units = List.fold_left (fun s u -> Names.KNset.add (kn_of_cunit u) s) Names.KNset.empty c } ^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNset Use KerName.Set File "src/rocq_elpi_programs.ml", line 580, characters 78-95: 580 | units = List.fold_left (fun s u -> Names.KNset.add (kn_of_cunit u) s) Names.KNset.empty c } ^^^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNset Use KerName.Set File "src/rocq_elpi_programs.ml", line 744, characters 8-28: 744 | try Names.KNset.cardinal (SLMap.find name !db_name_src).units ^^^^^^^^^^^^^^^^^^^^ Alert deprecated: module Names.KNset Use KerName.Set File "apps/tc/src/rocq_elpi_class_tactics_takeover.ml", line 24, characters 15-32: 24 | module GRSet = Names.GlobRef.Set ^^^^^^^^^^^^^^^^^ Alert deprecated: module Names.GlobRef.Set (9.2) This will switch to user ordering at some point in the future. In the meantime either use the _env variant or the Q-variant from Environ, depending on the desired semantics. File "apps/tc/src/rocq_elpi_class_tactics_takeover.ml", line 24, characters 15-32: 24 | module GRSet = Names.GlobRef.Set ^^^^^^^^^^^^^^^^^ Alert deprecated: module Names.GlobRef.Set (9.2) This will switch to user ordering at some point in the future. In the meantime either use the _env variant or the Q-variant from Environ, depending on the desired semantics. File "src/rocq_elpi_builtins.ml", line 997, characters 21-32: 997 | (Id.to_string (Label.to_id (Constant.label c))) ^^^^^^^^^^^ Alert deprecated: module Names.Label (9.2) Use Id File "src/rocq_elpi_builtins.ml", line 2697, characters 14-31: 2697 | let l = Names.Label.of_id (Names.Id.of_string_soft id) in ^^^^^^^^^^^^^^^^^ Alert deprecated: module Names.Label (9.2) Use Id File "src/rocq_elpi_builtins.ml", line 2702, characters 18-35: 2702 | let l = Names.Label.of_id (Names.Id.of_string_soft id) in ^^^^^^^^^^^^^^^^^ Alert deprecated: module Names.Label (9.2) Use Id File "src/rocq_elpi_builtins.ml", line 3788, characters 8-25: 3788 | Names.Label.print (Names.KerName.label sd) ++ str " expects " ++ ^^^^^^^^^^^^^^^^^ Alert deprecated: module Names.Label (9.2) Use Id File "src/rocq_elpi_HOAS.ml", line 4525, characters 8-23: 4525 | [ Label.to_string name ] ^^^^^^^^^^^^^^^ Alert deprecated: module Names.Label (9.2) Use Id File "src/rocq_elpi_HOAS.ml", line 4527, characters 8-23: 4527 | [ Label.to_string name ] ^^^^^^^^^^^^^^^ Alert deprecated: module Names.Label (9.2) Use Id File "src/rocq_elpi_HOAS.ml", line 4525, characters 8-23: 4525 | [ Label.to_string name ] ^^^^^^^^^^^^^^^ Alert deprecated: module Names.Label (9.2) Use Id File "src/rocq_elpi_HOAS.ml", line 4527, characters 8-23: 4527 | [ Label.to_string name ] ^^^^^^^^^^^^^^^ Alert deprecated: module Names.Label (9.2) Use Id File "src/rocq_elpi_builtins.ml", line 997, characters 21-32: 997 | (Id.to_string (Label.to_id (Constant.label c))) ^^^^^^^^^^^ Alert deprecated: module Names.Label (9.2) Use Id File "src/rocq_elpi_builtins.ml", line 2697, characters 14-31: 2697 | let l = Names.Label.of_id (Names.Id.of_string_soft id) in ^^^^^^^^^^^^^^^^^ Alert deprecated: module Names.Label (9.2) Use Id File "src/rocq_elpi_builtins.ml", line 2702, characters 18-35: 2702 | let l = Names.Label.of_id (Names.Id.of_string_soft id) in ^^^^^^^^^^^^^^^^^ Alert deprecated: module Names.Label (9.2) Use Id File "src/rocq_elpi_builtins.ml", line 3788, characters 8-25: 3788 | Names.Label.print (Names.KerName.label sd) ++ str " expects " ++ ^^^^^^^^^^^^^^^^^ Alert deprecated: module Names.Label (9.2) Use Id The Db contains [phone_prefix USA 1] Phone prefix for USA is 1 The Db contains [phone_prefix USA 1, phone_prefix France 33, phone_prefix Italy 39] Phone prefix for France is 33 sweet! brr yummy! 3 + 7 becomes fun (x : ?e) (x0 : ?e0) => S (S x0) + S (S (S (S (S (S x))))) goal X0 c0 c1 c2 c3 is [decl c3 `H:r` (app [global (const «lt»), c0, c1]), decl c2 `z:r` (global (indt «nat»)), decl c1 `y:r` (global (indt «nat»)), decl c0 `x:r` (global (indt «nat»))] ------- prod `_:r` (app [global (const «lt»), c1, c2]) c4 \ app [global (const «lt»), c0, c2] 3 (eq_refl : 2 = (let z := 1 in S z)) DEBUG: attempt at fuzzing binary op: global (indc «PLUS») DEBUG: attempt at fuzzing binary op: global (const «Nat.add») DEBUG: attempt at fuzzing binary op: global (indc «AND») DEBUG: fuzzed! DEBUG: attempt at fuzzing binary op: global (const «andb») DEBUG: attempt at fuzzing binary op: global (indc «OR») DEBUG: fuzzed! DEBUG: attempt at fuzzing binary op: global (const «orb») DEBUG: attempt at fuzzing binary op: global (indc «EQ») DEBUG: attempt at fuzzing binary op: global (const «Nat.eqb») Inductive eval1 : forall T : ty, Exp T -> Val T -> Prop := E_Num1 : forall n : nat, eval1 N (NUM n) (iNv n) | E_Bool1 : forall b : bool, eval1 B (BOOL b) (iBv b) | E_Plus1 : forall (e1 e2 : Exp N) (n1 n2 : nat), eval1 N e1 (iNv n1) -> eval1 N e2 (iNv n2) -> eval1 N (PLUS e1 e2) (iNv (n1 + n2)) | E_AND1 : forall (e1 e2 : Exp B) (b1 b2 : bool), eval1 B e1 (iBv b1) -> eval1 B e2 (iBv b2) -> eval1 B (AND e1 e2) (iBv (b1 && b2)) | E_OR1 : forall (e1 e2 : Exp B) (b1 b2 : bool), eval1 B e1 (iBv b1) -> eval1 B e2 (iBv b2) -> eval1 B (AND e1 e2) (iBv (b1 || b2)) | E_EQ1 : forall (e1 e2 : Exp N) (n1 n2 : nat), eval1 N e1 (iNv n1) -> eval1 N e2 (iNv n2) -> eval1 B (EQ e1 e2) (iBv (Nat.eqb n1 n2)). Arguments eval1 T _ _ Arguments E_Num1 n%_nat_scope Arguments E_Bool1 b%_bool_scope Arguments E_Plus1 e1 e2 (n1 n2)%_nat_scope _ _ Arguments E_AND1 e1 e2 (b1 b2)%_bool_scope _ _ Arguments E_OR1 e1 e2 (b1 b2)%_bool_scope _ _ Arguments E_EQ1 e1 e2 (n1 n2)%_nat_scope _ _ foo = {f1 : Type & {f2 : f1 -> Type & forall t : f1, f2 t -> bool}} : Type mk_foo = fun (f1 : Type) (f2 : f1 -> Type) (f3 : forall t : f1, f2 t -> bool) => existT (fun f4 : Type => {f5 : f4 -> Type & forall t : f4, f5 t -> bool}) f1 (existT (fun f4 : f1 -> Type => forall t : f1, f4 t -> bool) f2 f3) : forall (f1 : Type) (f2 : f1 -> Type), (forall t : f1, f2 t -> bool) -> foo Arguments mk_foo f1%_type_scope (f2 f3)%_function_scope f = fun (b : bool) (t : r) => let q := negb b in fix rec (l1 l2 : list t) {struct l1} : bool := match l1 with | nil => match l2 with | nil => b | (_ :: _)%list => q end | (x :: xs)%list => match l2 with | nil => q | (y :: ys)%list => (op t x y && rec xs ys)%bool end end : bool -> forall t : r, list t -> list t -> bool Arguments f b%_bool_scope t (l1 l2)%_list_scope expanded_f = fun (b : bool) (T : Type) => let X := T in fun op : T -> X -> bool => let q := negb b in fix rec (l1 l2 : list T) {struct l1} : bool := match l1 with | nil => match l2 with | nil => b | (_ :: _)%list => q end | (x :: xs)%list => match l2 with | nil => q | (y :: ys)%list => (op x y && rec xs ys)%bool end end : bool -> forall T : Type, (T -> T -> bool) -> list T -> list T -> bool Arguments expanded_f b%_bool_scope T%_type_scope op%_function_scope (l1 l2)%_list_scope expanded_g = fun T : Type => let X := T in fun (op : T -> X -> bool) (l s : list T) (h : bool) => (forall (x : T) (y : X), op x y = false) /\ expanded_f true T op l s = h : forall T : Type, (T -> T -> bool) -> list T -> list T -> bool -> Prop Arguments expanded_g T%_type_scope op%_function_scope (l s)%_list_scope h%_bool_scope Notation p2 := (p2 nat 3 x) example_import_projections.p1 nat 3 x : nat : nat p1 : forall (T : Type) (t : T), r T t -> nat : forall (T : Type) (t : T), r T t -> nat eq_refl : example_import_projections.p1 bool false (Build bool false 3 eq_refl eq_refl) = 3 : example_import_projections.p1 bool false (Build bool false 3 eq_refl eq_refl) = 3 example_import_projections.f1 _ x : bool Goal: [decl c1 `y:r` (global (indt «nat»)), decl c0 `x:r` (global (indt «nat»))] |- X0 c0 c1 : app [global (indt «eq»), global (indt «nat»), app [global (const «Nat.add»), c0, app [global (indc «S»), global (indc «O»)]], c1] (I, 0) conj : forall [A B : Prop], A -> B -> A /\ B conj is not universe polymorphic Arguments conj [A B]%_type_scope _ _ Expands to: Constructor Corelib.Init.Logic.conj Declared in library Corelib.Init.Logic, line 62, characters 2-6 (ex_intro (fun t : Prop => True /\ True /\ t) True (conj I (conj I I))) [int 1, str x, str a b, trm (app [global (indt «eq»), X0, app [global (indc «S»), global (indc «O»)], global (indc «O»)])] Using H ?p of type Q Using H ?p of type Q Using p of type P [trm c0, trm c3, trm (app [c2, c3])] found P found P /\ P Goal: [decl c0 `x:r` (global (indt «nat»))] |- X0 c0 : app [global (indt «eq»), global (indt «nat»), app [global (const «Nat.add»), c0, app [global (indc «S»), global (indc «O»)]], global (indc «O»)] Proof state: {c0} : decl c0 `x:r` (global (indt «nat»)) ?- evar (X1 c0) (app [global (indt «eq»), global (indt «nat»), app [global (const «Nat.add»), c0, app [global (indc «S»), global (indc «O»)]], global (indc «O»)]) (X0 c0) /* suspended on X1, X0 */ EVARS: ?X57==[x |- x + 1 = 0] (goal evar) {?Goal} ?X56==[ |- => fun x : nat => ?Goal] (goal evar) ?X55==[x |- => nat] (parameter A of eq) ?X54==[ |- => nat] (type of x) SHELF:|| FUTURE GOALS STACK: |||| Rocq-Elpi mapping: RAW: ?X57 <-> c0 \ X1 c0 ELAB: ?X57 <-> X0 #goals = 2 [nabla c0 \ nabla c1 \ seal (goal [decl c1 `Q:r` (sort prop), decl c0 `P:r` (sort prop)] (X0 c0 c1) c0 (X1 c0 c1) []), nabla c0 \ nabla c1 \ seal (goal [decl c1 `Q:r` (sort prop), decl c0 `P:r` (sort prop)] (X2 c0 c1) c1 (X3 c0 c1) [])] (fun (P Q : Prop) (p : P) (q : Q) => conj ?Goal (conj ?Goal0 ?Goal1)) (fun (P Q : Prop) (p : P) (q : Q) => conj ?Goal (conj ?Goal0 ?Goal)) foo = 46 : nat bar = (false :: nil)%list : list bool baz = (46%nat :: nil)%list : list nat File "./examples/tutorial_coq_elpi_tactic.v", line 633, characters 0-22: Warning: x is already taken, Elpi will make a name up [lib,elpi,default] Query assignments: GRnat = indt «nat» GRplus = const «Nat.add» GRs = indc «S» Query assignments: Bo = app [global (indc «S»), app [global (indc «S»), global (indc «O»)]] C = «x» GR = const «x» Ty = global (indt «nat») TyC = global (indt «nat») Query assignments: Bo = fun `x:r` (global (indt «nat»)) c0 \ c0 C = «f» Query assignments: Bo = fix `add:r` 0 (prod `n:r` (global (indt «nat»)) c0 \ prod `m:r` (global (indt «nat»)) c1 \ global (indt «nat»)) c0 \ fun `n:r` (global (indt «nat»)) c1 \ fun `m:r` (global (indt «nat»)) c2 \ match c1 (fun `n:r` (global (indt «nat»)) c3 \ global (indt «nat»)) [c2, fun `p:r` (global (indt «nat»)) c3 \ app [global (indc «S»), app [c0, c3, c2]]] C = «Nat.add» The return type of m is: c0 \ c1 \ fun `x:r` (global (indt «nat»)) c2 \ fun `e:r` (app [global (indt «eq»), global (indt «nat»), global (indc «O»), c2]) c3 \ prod `_:r` (app [c1, global (indc «O»)]) c4 \ app [c1, c2] Query assignments: C = «m» RT = c0 \ c1 \ fun `x:r` (global (indt «nat»)) c2 \ fun `e:r` (app [global (indt «eq»), global (indt «nat»), global (indc «O»), c2]) c3 \ prod `_:r` (app [c1, global (indc «O»)]) c4 \ app [c1, c2] X0 < X1 Debug: Cannot enforce elpi_examples.tutorial_coq_elpi_HOAS.29 <= elpi_examples.tutorial_coq_elpi_HOAS.28 because elpi_examples.tutorial_coq_elpi_HOAS.28 < elpi_examples.tutorial_coq_elpi_HOAS.29 Query assignments: U = X0 U1 = X1 Universe constraints: UNIVERSES: {elpi_examples.tutorial_coq_elpi_HOAS.29 elpi_examples.tutorial_coq_elpi_HOAS.28} |= elpi_examples.tutorial_coq_elpi_HOAS.28 < elpi_examples.tutorial_coq_elpi_HOAS.29 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: (id b) is: app [fun `x:r` (sort (typ X0)) c0 \ c0, sort (typ X1)] (id a) is illtyped: Illegal application: The term "fun x : Type => x" of type "Type -> Type" cannot be applied to the term "Type" : "Type" This term has type "Type@{elpi_examples.tutorial_coq_elpi_HOAS.30+1}" which should be a subtype of "Type@{elpi_examples.tutorial_coq_elpi_HOAS.30}". (universe inconsistency: Cannot enforce elpi_examples.tutorial_coq_elpi_HOAS.30 < elpi_examples.tutorial_coq_elpi_HOAS.30 because elpi_examples.tutorial_coq_elpi_HOAS.30 = elpi_examples.tutorial_coq_elpi_HOAS.30) after typing (id b) is: app [fun `x:r` (sort (typ «elpi_examples.tutorial_coq_elpi_HOAS.30»)) c0 \ c0, sort (typ «elpi_examples.tutorial_coq_elpi_HOAS.31»)] : sort (typ «elpi_examples.tutorial_coq_elpi_HOAS.30») Universe constraints: UNIVERSES: {elpi_examples.tutorial_coq_elpi_HOAS.31 elpi_examples.tutorial_coq_elpi_HOAS.30} |= elpi_examples.tutorial_coq_elpi_HOAS.31 < elpi_examples.tutorial_coq_elpi_HOAS.30 ALGEBRAIC UNIVERSES: {elpi_examples.tutorial_coq_elpi_HOAS.31 elpi_examples.tutorial_coq_elpi_HOAS.30} FLEXIBLE UNIVERSES: elpi_examples.tutorial_coq_elpi_HOAS.31 elpi_examples.tutorial_coq_elpi_HOAS.30 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: A = sort (typ «elpi_examples.tutorial_coq_elpi_HOAS.30») B = sort (typ «elpi_examples.tutorial_coq_elpi_HOAS.31») ErrMsg = Illegal application: The term "fun x : Type => x" of type "Type -> Type" cannot be applied to the term "Type" : "Type" This term has type "Type@{elpi_examples.tutorial_coq_elpi_HOAS.30+1}" which should be a subtype of "Type@{elpi_examples.tutorial_coq_elpi_HOAS.30}". (universe inconsistency: Cannot enforce elpi_examples.tutorial_coq_elpi_HOAS.30 < elpi_examples.tutorial_coq_elpi_HOAS.30 because elpi_examples.tutorial_coq_elpi_HOAS.30 = elpi_examples.tutorial_coq_elpi_HOAS.30) ID = fun `x:r` (sort (typ «elpi_examples.tutorial_coq_elpi_HOAS.30»)) c0 \ c0 T = sort (typ «elpi_examples.tutorial_coq_elpi_HOAS.30») U = «elpi_examples.tutorial_coq_elpi_HOAS.30» V = «elpi_examples.tutorial_coq_elpi_HOAS.31» Universe constraints: UNIVERSES: {elpi_examples.tutorial_coq_elpi_HOAS.31 elpi_examples.tutorial_coq_elpi_HOAS.30} |= elpi_examples.tutorial_coq_elpi_HOAS.31 < elpi_examples.tutorial_coq_elpi_HOAS.30 ALGEBRAIC UNIVERSES: {elpi_examples.tutorial_coq_elpi_HOAS.31 elpi_examples.tutorial_coq_elpi_HOAS.30} FLEXIBLE UNIVERSES: elpi_examples.tutorial_coq_elpi_HOAS.31 elpi_examples.tutorial_coq_elpi_HOAS.30 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: app [global (const «Nat.add»), app [global (indc «S»), global (indc «O»)], app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]] = app [global (const «Nat.add»), app [global (indc «S»), global (indc «O»)], app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]] app [global (const «Nat.add»), app [global (indc «S»), global (indc «O»)], app [global (indc «S»), global (indc «O»)]] Query assignments: S = indc «S» fun `x:r` (global (indt «nat»)) c0 \ fun `x:r` (global (indt «nat»)) c1 \ app [global (const «Nat.add»), c1, c0] fun `x:r` (global (indt «nat»)) c0 \ fun `x:r` (global (indt «nat»)) c1 \ app [global (const «Nat.add»), c1, c0] fun `a:r` (global (indt «nat»)) c0 \ fun `b:r` (global (indt «nat»)) c1 \ app [global (const «Nat.add»), c1, c0] Query assignments: X = c0 \ c1 \ app [global (const «Nat.add»), c1, c0] fun `a:r` (global (indt «nat»)) c0 \ fun `b:r` (global (indt «nat»)) c1 \ app [global (indt «eq»), global (indt «nat»), c0, c1] indt «nat» indt «nat» before: fun `ax:r` (global (indt «nat»)) c0 \ fun `b:r` (global (indt «nat»)) c1 \ app [global (indt «eq»), X0 c1, c0, c1] after: fun `ax:r` (global (indt «nat»)) c0 \ fun `b:r` (global (indt «nat»)) c1 \ app [global (indt «eq»), global (indt «nat»), c0, c1] Query assignments: T = fun `ax:r` (global (indt «nat»)) c0 \ fun `b:r` (global (indt «nat»)) c1 \ app [global (indt «eq»), global (indt «nat»), c0, c1] X1_ = c0 \ global (indt «nat») Universe constraints: UNIVERSES: {elpi_examples.tutorial_coq_elpi_HOAS.33 elpi_examples.tutorial_coq_elpi_HOAS.32} |= elpi_examples.tutorial_coq_elpi_HOAS.33 < elpi_examples.tutorial_coq_elpi_HOAS.32 Set <= elpi_examples.tutorial_coq_elpi_HOAS.33 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: elpi_examples.tutorial_coq_elpi_HOAS.33 SORTS: α6 := Type α7 |= α6 <-> Type Prop -> SProp Type -> α7 -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: Bo = c0 \ app [global (const «Nat.add»), c0, app [global (indc «S»), global (indc «O»)]] N = `x:r` T = fun `x:r` (global (indt «nat»)) c0 \ app [global (const «Nat.add»), c0, app [global (indc «S»), global (indc «O»)]] Ty = global (indt «nat») Query assignments: Bo = c0 \ app [global (const «Nat.add»), c0, app [global (indc «S»), global (indc «O»)]] N = `x:r` T = fun `x:r` (global (indt «nat»)) c0 \ app [global (const «Nat.add»), c0, app [global (indc «S»), global (indc «O»)]] Ty = global (indt «nat») raw T = X0 SHELF: FUTURE GOALS STACK: Rocq-Elpi mapping: RAW: ELAB: -------------------------------- evar X0 (global (indt «nat»)) X0 /* suspended on X0 */ EVARS: ?X11==[ |- nat] (internal placeholder) {?e0} ?X10==[ |- => nat] (internal placeholder) SHELF: FUTURE GOALS STACK: ?X11 Rocq-Elpi mapping: RAW: ?X11 <-> X0 ELAB: ?X11 <-> X0 Query assignments: T = X0 X2_ = X0 Syntactic constraints: evar X0 (global (indt «nat»)) X0 /* suspended on X0 */ Universe constraints: UNIVERSES: {elpi_examples.tutorial_coq_elpi_HOAS.34} |= Set <= elpi_examples.tutorial_coq_elpi_HOAS.34 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α8 := Type |= α8 <-> Type Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: raw T = fun `x:r` (global (indt «nat»)) c0 \ app [global (const «Nat.add»), c0, X0 c0] {c0 c1} : decl c1 `x:r` (global (indt «nat»)) ?- evar (X0 c1) (global (indt «nat»)) (X0 c1) /* suspended on X0 */ EVARS: ?X13==[x |- nat] (internal placeholder) {?e0} ?X12==[x |- => nat] (internal placeholder) SHELF: FUTURE GOALS STACK: ?X13 Rocq-Elpi mapping: RAW: ?X13 <-> X0 ELAB: ?X13 <-> X0 Query assignments: Bo = c0 \ app [global (const «Nat.add»), c0, X0 c0] N = `x:r` T = fun `x:r` (global (indt «nat»)) c0 \ app [global (const «Nat.add»), c0, X0 c0] Ty = global (indt «nat») X3_ = X0 Syntactic constraints: {c0 c1} : decl c1 `x:r` (global (indt «nat»)) ?- evar (X0 c1) (global (indt «nat»)) (X0 c1) /* suspended on X0 */ Universe constraints: UNIVERSES: {elpi_examples.tutorial_coq_elpi_HOAS.35} |= Set <= elpi_examples.tutorial_coq_elpi_HOAS.35 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α9 := Type |= α9 <-> Type Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Bo1 (not in pattern fragment) = app [global (const «Nat.add»), app [global (indc «S»), global (indc «O»)], X0 (app [global (indc «S»), global (indc «O»)])] Bo1 before = app [global (const «Nat.add»), app [global (indc «S»), global (indc «O»)], X0 (app [global (indc «S»), global (indc «O»)])] Bo1 after = app [global (const «Nat.add»), app [global (indc «S»), global (indc «O»)], X1] Query assignments: Bo = c0 \ app [global (const «Nat.add»), c0, X1] Bo1 = app [global (const «Nat.add»), app [global (indc «S»), global (indc «O»)], X1] N = `x:r` T = fun `x:r` (global (indt «nat»)) c0 \ app [global (const «Nat.add»), c0, X1] Ty = global (indt «nat») X5_ = c0 \ X1 Syntactic constraints: evar X1 (global (indt «nat»)) X1 /* suspended on X1 */ Universe constraints: UNIVERSES: {elpi_examples.tutorial_coq_elpi_HOAS.36} |= Set <= elpi_examples.tutorial_coq_elpi_HOAS.36 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α10 := Type |= α10 <-> Type Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: Bo = c0 \ app [global (const «andb»), c0, X0 c0] Bo1 = app [global (const «andb»), app [global (indc «S»), global (indc «O»)], X0 (app [global (indc «S»), global (indc «O»)])] Bo2 = app [global (const «andb»), app [global (const «nat2bool»), app [global (indc «S»), global (indc «O»)]], X1] N = `x:r` T = fun `x:r` (global (indt «nat»)) c0 \ app [global (const «andb»), c0, X0 c0] Ty = global (indt «nat») X6_ = X0 Syntactic constraints: evar X2 (global (indt «bool»)) X1 /* suspended on X2, X1 */ File "./apps/eltac/theories/apply.v", line 15, characters 16-19: Warning: File "./apps/eltac/theories/apply.v", line 15, characters 16-19 Ctx is linear: name it _Ctx (discard) or Ctx_ (fresh variable) [elpi.linear-variable,elpi.typecheck,elpi,default] File "./apps/derive/tests/test_derive_corelib.v", line 30, characters 0-70: Warning: rose is nested using seq. No scheme for seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for seq.". [register-all,automation,default] File "./apps/derive/tests/test_derive_corelib.v", line 30, characters 0-70: Warning: rose is nested using seq. No scheme for seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for seq.". [register-all,automation,default] File "./apps/derive/tests/test_derive_corelib.v", line 30, characters 0-70: Warning: rose is nested using seq. No scheme for seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for seq.". [register-all,automation,default] File "./apps/derive/tests/test_derive_corelib.v", line 30, characters 0-70: Warning: rose is nested using seq. No scheme for seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for seq.". [register-all,automation,default] File "./apps/derive/tests/test_derive_corelib.v", line 30, characters 0-70: Warning: rose is nested using seq. No scheme for seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for seq.". [register-all,automation,default] File "./apps/derive/tests/test_derive_corelib.v", line 30, characters 0-70: Warning: rose is nested using seq. No scheme for seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for seq.". [register-all,automation,default] File "./apps/derive/tests/test_derive_corelib.v", line 30, characters 0-70: Warning: rose is nested using seq. No scheme for seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for seq.". [register-all,automation,default] File "./apps/derive/tests/test_derive_corelib.v", line 30, characters 0-70: Warning: rose is nested using seq. No scheme for seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for seq.". [register-all,automation,default] File "./apps/derive/tests/test_derive_corelib.v", line 30, characters 0-70: Warning: rose is nested using seq. No scheme for seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for seq.". [register-all,automation,default] File "./apps/derive/tests/test_derive_corelib.v", line 30, characters 0-70: Warning: rose is nested using seq. No scheme for seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for seq.". [register-all,automation,default] File "./apps/derive/tests/test_derive_corelib.v", line 30, characters 0-70: Warning: rose is nested using seq. No scheme for seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for seq.". [register-all,automation,default] File "./apps/derive/tests/test_derive_corelib.v", line 30, characters 0-70: Warning: rose is nested using seq. No scheme for seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for seq.". [register-all,automation,default] File "./apps/derive/tests/test_derive_corelib.v", line 32, characters 0-101: Warning: rose_p is nested using pair. No scheme for pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for pair.". [register-all,automation,default] File "./apps/derive/tests/test_derive_corelib.v", line 32, characters 0-101: Warning: rose_p is nested using pair. No scheme for pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for pair.". [register-all,automation,default] File "./apps/derive/tests/test_derive_corelib.v", line 32, characters 0-101: Warning: rose_p is nested using pair. No scheme for pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for pair.". [register-all,automation,default] File "./apps/derive/tests/test_derive_corelib.v", line 32, characters 0-101: Warning: rose_p is nested using pair. No scheme for pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for pair.". [register-all,automation,default] File "./apps/derive/tests/test_derive_corelib.v", line 32, characters 0-101: Warning: rose_p is nested using pair. No scheme for pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for pair.". [register-all,automation,default] File "./apps/derive/tests/test_derive_corelib.v", line 32, characters 0-101: Warning: rose_p is nested using pair. No scheme for pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for pair.". [register-all,automation,default] File "./apps/derive/tests/test_derive_corelib.v", line 32, characters 0-101: Warning: rose_p is nested using pair. No scheme for pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for pair.". [register-all,automation,default] File "./apps/derive/tests/test_derive_corelib.v", line 32, characters 0-101: Warning: rose_p is nested using pair. No scheme for pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for pair.". [register-all,automation,default] File "./apps/derive/tests/test_derive_corelib.v", line 32, characters 0-101: Warning: rose_p is nested using pair. No scheme for pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for pair.". [register-all,automation,default] File "./apps/derive/tests/test_derive_corelib.v", line 32, characters 0-101: Warning: rose_p is nested using pair. No scheme for pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for pair.". [register-all,automation,default] File "./apps/derive/tests/test_derive_corelib.v", line 32, characters 0-101: Warning: rose_p is nested using pair. No scheme for pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for pair.". [register-all,automation,default] File "./apps/derive/tests/test_derive_corelib.v", line 32, characters 0-101: Warning: rose_p is nested using pair. No scheme for pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for pair.". [register-all,automation,default] The age of alice is 20 Query assignments: A = 20 mallory is 23 years old Query assignments: P = mallory alice is 20 years old Query assignments: P = alice mallory and bob are 23 years old Query assignments: A = 23 P = mallory Q = bob I picked P = mallory I picked Q = mallory I picked Q = bob the last choice worked! mallory and bob are 23 years old Query assignments: A = 23 P = mallory Q = bob bob is older than alice Query assignments: X = alice both bob and mallory are older than alice Query assignments: X = alice F = c0 \ age alice c0 F 20 = age alice 20 F 23 = age alice 23 Query assignments: F = c0 \ age alice c0 λx.x ~> fun c0 \ c0 (λx.x) (λx.x) ~> fun c0 \ c0 Query assignments: I = fun c0 \ c0 T = fun c0 \ c0 T1 = fun c0 \ c0 (Fst foo bar) ~> foo (foo bar) ~> app foo bar Query assignments: Fst = fun c0 \ fun c1 \ c0 S = app foo bar S1 = app foo bar T = app (app (fun c0 \ fun c1 \ c0) foo) bar T1 = foo The type of λx.λy.x is: arr X0 (arr X1 X0) Query assignments: Ty = arr X0 (arr X1 X0) Error: fun c0 \ app c0 c0 has no type Query assignments: Delta = fun c0 \ app c0 c0 Ty = X0 2 + 1 = s (s (s z)) Query assignments: R = s (s (s z)) Query assignments: X = X0 Z = X1 Syntactic constraints: sum X0 (s z) X1 /* suspended on X0 */ The result is: s z Query assignments: X = z Z = s z Query assignments: X = s z Debug: sum X0 (s z) X1 /* suspended on X0 */ Currently Y = X1 Debug: sum X2 (s z) X3 /* suspended on X2 */ Currently Y = s X3 Finally Y = s (s z) Query assignments: X = s z Y = s (s z) Z = z Query assignments: X = X0 Syntactic constraints: even X0 /* suspended on X0 */ odd X0 /* suspended on X0 */ X0 can't be even and odd at the same time Query assignments: A = [1, 2, 3, 3, 2, 1] Query assignments: A = [1, 2, 3, 3, 2, 1] result = 5 Query assignments: X = result = Y = 5 result = 5 Query assignments: %spill1_87 = 5 Query assignments: R1 = X0 R2 = [2, 3, 4] R3 = [2, 3, 4] Query assignments: R = [2, 3, 4] Y = c0 arr X0 (arr X1 X0) Query assignments: Ty = arr X0 (arr X1 X0) Debug: run 1 {{{ Debug: rid:0 step:1 gid:4 user:curgoal = ,of (fun c0 \ fun c1 \ c0) X0 , coq.say X0 Debug: rid:0 step:1 gid:4 user:rule = and Debug: rid:0 step:1 gid:4 user:subgoal = 5 Debug: rid:0 step:1 gid:5 user:newgoal = of (fun c0 \ fun c1 \ c0) X0 Debug: rid:0 step:1 gid:4 user:subgoal = 6 Debug: rid:0 step:1 gid:6 user:newgoal = coq.say X0 Debug: rid:0 step:1 gid:4 user:rule:and = success Debug: }}} -> (0.001s) Debug: run 2 {{{ Debug: rid:0 step:2 gid:5 user:curgoal = ofof (fun c0 \ fun c1 \ c0) X0 Debug: rid:0 step:2 gid:5 user:rule = backchain Debug: rid:0 step:2 gid:5 user:rule:backchain:candidates = File "./examples/tutorial_elpi_lang.v", line 793, column 2, characters 20428-20483: Debug: }}} -> (0.003s) Debug: select 3 {{{ Debug: rid:0 step:2 gid:5 user:rule:backchain:try = File "./examples/tutorial_elpi_lang.v", line 793, column 2, characters 20428-20483: (of (fun A0) (arr A2 A1)) :- (pi c0 \ (of c0 A2 => of (A0 c0) A1)). Debug: rid:0 step:2 gid:0 user:assign = A0 := c0 \ fun c1 \ c0 Debug: rid:0 step:2 gid:0 user:assign = X0 := arr X1 X2 Debug: rid:0 step:2 gid:5 user:subgoal = 7 Debug: rid:0 step:2 gid:7 user:newgoal = pi c0 \ of c0 X1 => of (fun c1 \ c0) X2 Debug: rid:0 step:2 gid:7 user:rule:backchain = success Debug: }}} -> (0.001s) Debug: run 3 {{{ Debug: rid:0 step:3 gid:7 user:curgoal = pipi c0 \ of c0 X1 => of (fun c1 \ c0) X2 Debug: rid:0 step:3 gid:7 user:rule = pi Debug: rid:0 step:3 gid:7 user:subgoal = 8 Debug: rid:0 step:3 gid:8 user:newgoal = of c0 X1 => of (fun c1 \ c0) X2 Debug: rid:0 step:3 gid:8 user:rule:pi = success Debug: }}} -> (0.001s) Debug: run 4 {{{ Debug: rid:0 step:4 gid:8 user:curgoal = =>of c0 X1 => of (fun c1 \ c0) X2 Debug: rid:0 step:4 gid:8 user:rule = implication Debug: rid:0 step:4 gid:8 user:subgoal = 9 Debug: rid:0 step:4 gid:9 user:newgoal = of (fun c1 \ c0) X2 Debug: rid:0 step:4 gid:9 user:rule:implication = success Debug: }}} -> (0.000s) Debug: run 5 {{{ Debug: rid:0 step:5 gid:9 user:curgoal = ofof (fun c1 \ c0) X2 Debug: rid:0 step:5 gid:9 user:rule = backchain Debug: rid:0 step:5 gid:9 user:rule:backchain:candidates = File "./examples/tutorial_elpi_lang.v", line 793, column 2, characters 20428-20483: Debug: }}} -> (0.000s) Debug: select 4 {{{ Debug: rid:0 step:5 gid:9 user:rule:backchain:try = File "./examples/tutorial_elpi_lang.v", line 793, column 2, characters 20428-20483: (of (fun A0) (arr A2 A1)) :- (pi c0 \ (of c0 A2 => of (A0 c0) A1)). Debug: rid:0 step:5 gid:0 user:assign = A0 := c1 \ c0 Debug: rid:0 step:5 gid:0 user:assign = X2 := arr X3 X4 Debug: rid:0 step:5 gid:9 user:subgoal = 10 Debug: rid:0 step:5 gid:10 user:newgoal = pi c1 \ of c1 X3 => of c0 X4 Debug: rid:0 step:5 gid:10 user:rule:backchain = success Debug: }}} -> (0.001s) Debug: run 6 {{{ Debug: rid:0 step:6 gid:10 user:curgoal = pipi c1 \ of c1 X3 => of c0 X4 Debug: rid:0 step:6 gid:10 user:rule = pi Debug: rid:0 step:6 gid:10 user:subgoal = 11 Debug: rid:0 step:6 gid:11 user:newgoal = of c1 X3 => of c0 X4 Debug: rid:0 step:6 gid:11 user:rule:pi = success Debug: }}} -> (0.000s) Debug: run 7 {{{ Debug: rid:0 step:7 gid:11 user:curgoal = =>of c1 X3 => of c0 X4 Debug: rid:0 step:7 gid:11 user:rule = implication Debug: rid:0 step:7 gid:11 user:subgoal = 12 Debug: rid:0 step:7 gid:12 user:newgoal = of c0 X4 Debug: rid:0 step:7 gid:12 user:rule:implication = success Debug: }}} -> (0.000s) Debug: run 8 {{{ Debug: rid:0 step:8 gid:12 user:curgoal = ofof c0 X4 Debug: rid:0 step:8 gid:12 user:rule = backchain Debug: rid:0 step:8 gid:12 user:rule:backchain:candidates = File "(context step_id:4)", line 1, column 0, characters 0-0: Debug: }}} -> (0.000s) Debug: select 5 {{{ Debug: rid:0 step:8 gid:12 user:rule:backchain:try = File "(context step_id:4)", line 1, column 0, characters 0-0: (of c0 X1) :- . Debug: rid:0 step:8 gid:0 user:assign = X4 := X1 Debug: rid:0 step:8 gid:12 user:rule:backchain = success Debug: }}} -> (0.003s) Debug: run 9 {{{ Debug: rid:0 step:9 gid:6 user:curgoal = coq.saycoq.say (arr X1 (arr X3 X1)) Debug: rid:0 step:9 gid:6 user:rule = builtin Debug: rid:0 step:9 gid:6 user:rule:builtin:name = coq.say arr X1 (arr X3 X1) Debug: rid:0 step:9 gid:6 user:rule:builtin = success Debug: }}} -> (0.000s) Query assignments: Ty = arr X1 (arr X3 X1) Debug: run 1 {{{ Debug: rid:1 step:1 gid:13 user:curgoal = ,of (fun c0 \ app c0 c0) X0 , coq.say X0 Debug: rid:1 step:1 gid:13 user:rule = and Debug: rid:1 step:1 gid:13 user:subgoal = 14 Debug: rid:1 step:1 gid:14 user:newgoal = of (fun c0 \ app c0 c0) X0 Debug: rid:1 step:1 gid:13 user:subgoal = 15 Debug: rid:1 step:1 gid:15 user:newgoal = coq.say X0 Debug: rid:1 step:1 gid:13 user:rule:and = success Debug: }}} -> (0.001s) Debug: run 2 {{{ Debug: rid:1 step:2 gid:14 user:curgoal = ofof (fun c0 \ app c0 c0) X0 Debug: rid:1 step:2 gid:14 user:rule = backchain Debug: rid:1 step:2 gid:14 user:rule:backchain:candidates = File "./examples/tutorial_elpi_lang.v", line 793, column 2, characters 20428-20483: Debug: }}} -> (0.000s) Debug: select 3 {{{ Debug: rid:1 step:2 gid:14 user:rule:backchain:try = File "./examples/tutorial_elpi_lang.v", line 793, column 2, characters 20428-20483: (of (fun A0) (arr A2 A1)) :- (pi c0 \ (of c0 A2 => of (A0 c0) A1)). Debug: rid:1 step:2 gid:0 user:assign = A0 := c0 \ app c0 c0 Debug: rid:1 step:2 gid:0 user:assign = X0 := arr X1 X2 Debug: rid:1 step:2 gid:14 user:subgoal = 16 Debug: rid:1 step:2 gid:16 user:newgoal = pi c0 \ of c0 X1 => of (app c0 c0) X2 Debug: rid:1 step:2 gid:16 user:rule:backchain = success Debug: }}} -> (0.001s) Debug: run 3 {{{ Debug: rid:1 step:3 gid:16 user:curgoal = pipi c0 \ of c0 X1 => of (app c0 c0) X2 Debug: rid:1 step:3 gid:16 user:rule = pi Debug: rid:1 step:3 gid:16 user:subgoal = 17 Debug: rid:1 step:3 gid:17 user:newgoal = of c0 X1 => of (app c0 c0) X2 Debug: rid:1 step:3 gid:17 user:rule:pi = success Debug: }}} -> (0.000s) Debug: run 4 {{{ Debug: rid:1 step:4 gid:17 user:curgoal = =>of c0 X1 => of (app c0 c0) X2 Debug: rid:1 step:4 gid:17 user:rule = implication Debug: rid:1 step:4 gid:17 user:subgoal = 18 Debug: rid:1 step:4 gid:18 user:newgoal = of (app c0 c0) X2 Debug: rid:1 step:4 gid:18 user:rule:implication = success Debug: }}} -> (0.000s) Debug: run 5 {{{ Debug: rid:1 step:5 gid:18 user:curgoal = ofof (app c0 c0) X2 Debug: rid:1 step:5 gid:18 user:rule = backchain Debug: rid:1 step:5 gid:18 user:rule:backchain:candidates = File "./examples/tutorial_elpi_lang.v", line 788, column 2, characters 20262-20312: Debug: }}} -> (0.003s) Debug: select 4 {{{ Debug: rid:1 step:5 gid:18 user:rule:backchain:try = File "./examples/tutorial_elpi_lang.v", line 788, column 2, characters 20262-20312: (of (app A0 A3) A2) :- (of A0 (arr A1 A2)), (of A3 A1). Debug: rid:1 step:5 gid:0 user:assign = A0 := c0 Debug: rid:1 step:5 gid:0 user:assign = A3 := c0 Debug: rid:1 step:5 gid:0 user:assign = A2 := X2 Debug: rid:1 step:5 gid:18 user:subgoal = 19 Debug: rid:1 step:5 gid:19 user:newgoal = of c0 (arr X3^1 X2) Debug: rid:1 step:5 gid:19 user:subgoal = 20 Debug: rid:1 step:5 gid:20 user:newgoal = of c0 X3^1 Debug: rid:1 step:5 gid:19 user:rule:backchain = success Debug: }}} -> (0.001s) Debug: run 6 {{{ Debug: rid:1 step:6 gid:19 user:curgoal = ofof c0 (arr X3^1 X2) Debug: rid:1 step:6 gid:19 user:rule = backchain Debug: rid:1 step:6 gid:19 user:rule:backchain:candidates = File "(context step_id:4)", line 1, column 0, characters 0-0: Debug: }}} -> (0.000s) Debug: select 5 {{{ Debug: rid:1 step:6 gid:19 user:rule:backchain:try = File "(context step_id:4)", line 1, column 0, characters 0-0: (of c0 X1) :- . Debug: rid:1 step:6 gid:0 user:assign:expand = X3^1 := X4 c0 Debug: rid:1 step:6 gid:0 user:assign:restrict = 0 X4 c0 := c0 \ .X5 Debug: rid:1 step:6 gid:0 user:assign = X1 := arr X5 X2 Debug: rid:1 step:6 gid:19 user:rule:backchain = success Debug: }}} -> (0.000s) Debug: run 7 {{{ Debug: rid:1 step:7 gid:20 user:curgoal = ofof c0 X5 Debug: rid:1 step:7 gid:20 user:rule = backchain Debug: rid:1 step:7 gid:20 user:rule:backchain:candidates = File "(context step_id:4)", line 1, column 0, characters 0-0: Debug: }}} -> (0.000s) Debug: select 6 {{{ Debug: rid:1 step:7 gid:20 user:rule:backchain:try = File "(context step_id:4)", line 1, column 0, characters 0-0: (of c0 (arr X5 X2)) :- . Debug: rid:1 step:7 gid:20 user:backchain:fail-to = unify X5 with arr X5 X2 Debug: }}} -> (0.000s) Debug: select 7 {{{ Debug: rid:1 step:7 gid:20 user:rule:backchain = fail Debug: }}} -> (0.000s) Debug: run 6 {{{ Debug: rid:2 step:6 gid:27 user:curgoal = pipi c1 \ of c1 X0 => of c0 X1 Debug: rid:2 step:6 gid:27 user:rule = pi Debug: rid:2 step:6 gid:27 user:subgoal = 28 Debug: rid:2 step:6 gid:28 user:newgoal = of c1 X0 => of c0 X1 Debug: rid:2 step:6 gid:28 user:rule:pi = success Debug: }}} -> (0.003s) Debug: run 7 {{{ Debug: rid:2 step:7 gid:28 user:curgoal = =>of c1 X0 => of c0 X1 Debug: rid:2 step:7 gid:28 user:rule = implication Debug: rid:2 step:7 gid:28 user:subgoal = 29 Debug: rid:2 step:7 gid:29 user:newgoal = of c0 X1 Debug: rid:2 step:7 gid:29 user:rule:implication = success Debug: }}} -> (0.000s) Debug: run 8 {{{ Debug: rid:2 step:8 gid:29 user:curgoal = ofof c0 X1 Debug: rid:2 step:8 gid:29 user:rule = backchain Debug: rid:2 step:8 gid:29 user:rule:backchain:candidates = File "(context step_id:4)", line 1, column 0, characters 0-0: Debug: }}} -> (0.000s) Debug: select 5 {{{ Debug: rid:2 step:8 gid:29 user:rule:backchain:try = File "(context step_id:4)", line 1, column 0, characters 0-0: (of c0 X2) :- . Debug: rid:2 step:8 gid:0 user:assign = X1 := X2 Debug: rid:2 step:8 gid:29 user:rule:backchain = success Debug: }}} -> (0.028s) arr X2 (arr X0 X2) Query assignments: Ty = arr X2 (arr X0 X2) Debug: run 2 {{{ Debug: rid:3 step:2 gid:31 user:curgoal = ofof (fun c0 \ fun c1 \ c0) X0 Debug: rid:3 step:2 gid:31 user:rule = backchain Debug: rid:3 step:2 gid:31 user:rule:backchain:candidates = File "./examples/tutorial_elpi_lang.v", line 793, column 2, characters 20428-20483: Debug: }}} -> (0.000s) Debug: select 3 {{{ Debug: rid:3 step:2 gid:31 user:rule:backchain:try = File "./examples/tutorial_elpi_lang.v", line 793, column 2, characters 20428-20483: (of (fun A0) (arr A2 A1)) :- (pi c0 \ (of c0 A2 => of (A0 c0) A1)). Debug: rid:3 step:2 gid:0 user:assign = A0 := c0 \ fun c1 \ c0 Debug: rid:3 step:2 gid:0 user:assign = X0 := arr X1 X2 Debug: rid:3 step:2 gid:31 user:subgoal = 33 Debug: rid:3 step:2 gid:33 user:newgoal = pi c0 \ of c0 X1 => of (fun c1 \ c0) X2 Debug: rid:3 step:2 gid:33 user:rule:backchain = success Debug: }}} -> (0.000s) Debug: run 5 {{{ Debug: rid:3 step:5 gid:35 user:curgoal = ofof (fun c1 \ c0) X2 Debug: rid:3 step:5 gid:35 user:rule = backchain Debug: rid:3 step:5 gid:35 user:rule:backchain:candidates = File "./examples/tutorial_elpi_lang.v", line 793, column 2, characters 20428-20483: Debug: }}} -> (0.000s) Debug: select 4 {{{ Debug: rid:3 step:5 gid:35 user:rule:backchain:try = File "./examples/tutorial_elpi_lang.v", line 793, column 2, characters 20428-20483: (of (fun A0) (arr A2 A1)) :- (pi c0 \ (of c0 A2 => of (A0 c0) A1)). Debug: rid:3 step:5 gid:0 user:assign = A0 := c1 \ c0 Debug: rid:3 step:5 gid:0 user:assign = X2 := arr X3 X4 Debug: rid:3 step:5 gid:35 user:subgoal = 36 Debug: rid:3 step:5 gid:36 user:newgoal = pi c1 \ of c1 X3 => of c0 X4 Debug: rid:3 step:5 gid:36 user:rule:backchain = success Debug: }}} -> (0.000s) Debug: run 8 {{{ Debug: rid:3 step:8 gid:38 user:curgoal = ofof c0 X4 Debug: rid:3 step:8 gid:38 user:rule = backchain Debug: rid:3 step:8 gid:38 user:rule:backchain:candidates = File "(context step_id:4)", line 1, column 0, characters 0-0: Debug: }}} -> (0.000s) Debug: select 5 {{{ Debug: rid:3 step:8 gid:38 user:rule:backchain:try = File "(context step_id:4)", line 1, column 0, characters 0-0: (of c0 X1) :- . Debug: rid:3 step:8 gid:0 user:assign = X4 := X1 Debug: rid:3 step:8 gid:38 user:rule:backchain = success Debug: }}} -> (0.000s) arr X1 (arr X3 X1) Query assignments: Ty = arr X1 (arr X3 X1) Debug: run 8 {{{ Debug: rid:4 step:8 gid:47 user:curgoal = ofof c0 X0 Debug: rid:4 step:8 gid:47 user:rule = backchain Debug: rid:4 step:8 gid:47 user:rule:backchain:candidates = File "(context step_id:4)", line 1, column 0, characters 0-0: Debug: }}} -> (0.000s) Debug: select 5 {{{ Debug: rid:4 step:8 gid:47 user:rule:backchain:try = File "(context step_id:4)", line 1, column 0, characters 0-0: (of c0 X1) :- . Debug: rid:4 step:8 gid:0 user:assign = X0 := X1 Debug: rid:4 step:8 gid:47 user:rule:backchain = success Debug: }}} -> (0.000s) arr X1 (arr X2 X1) Query assignments: Ty = arr X1 (arr X2 X1) calling mypred on 3 calling mypred on 2 calling mypred on 1 calling mypred on 0 ok Query assignments: A = X0 B = X0 C = X0 Query assignments: A = X0 B = X0 C = X0 Hello [str world!] Hello [int 46] Hello [str there] Hello [str my, str friend] Hello [str this.is.a.qualified.name] Hello [trm (app [global (indt «eq»), global (indt «nat»), global (indc «O»), app [global (indc «S»), global (indc «O»)]])] Hello [const-decl test (some (app [global (indt «eq»), global (indt «nat»), global (indc «O»), app [global (indc «S»), global (indc «O»)]])) (arity (sort prop))] Hello [indt-decl (record test (sort (typ «Set»)) Build_test (field [coercion off, canonical tt] f1 (global (indt «nat»)) c0 \ field [coercion off, canonical tt] f2 (app [global (indt «eq»), global (indt «nat»), c0, app [global (indc «S»), global (indc «O»)]]) c1 \ end-record))] The type of app [global (indt «eq»), global (indt «nat»), app [global (indc «S»), global (indc «O»)], global (indc «O»)] is sort prop 1 = true : Prop T= app [global (indt «eq»), X0, app [global (indc «S»), global (indc «O»)], global (indc «true»)] T1= app [global (indt «eq»), global (indt «nat»), app [global (indc «S»), global (indc «O»)], app [global (const «bool2nat»), global (indc «true»)]] Ty= sort prop nK_bool = 2 : nat nK_False = 0 : nat Inductive tree' (A : Set) : Set := leaf' : tree' A | node' : tree' A -> A -> tree' A -> tree' A. Arguments tree' A%_type_scope Arguments leaf' A%_type_scope Arguments node' A%_type_scope _ _ _ bob is 24 years old alice is 21 years old bob is 24 years old alice is 21 years old [attribute elpi.loc (leaf-loc File "./examples/tutorial_coq_elpi_command.v", line 614, column 31, characters 17346-17350:), attribute elpi.phase (leaf-str interp), attribute this (leaf-str ), attribute more (node [attribute stuff (leaf-str 33)])] options= [get-option elpi.loc File "./examples/tutorial_coq_elpi_command.v", line 646, column 31, characters 18185-18195:, get-option elpi.phase interp, get-option this tt, get-option more.stuff 33] 33 tt That is all folks! going from source to target via plane synterp x := some _ interp x := some (app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]) The module is «elpi_examples.tutorial_coq_elpi_command.Module7» Box.Box.Box.Box.foo = fun n : nat => n + 2 : nat -> nat Arguments Box.Box.Box.Box.foo n%_nat_scope Module NextModule2 := Struct End File "./examples/tutorial_coq_elpi_command.v", line 614, characters 2-24: Warning: This command does not support these attributes: more, this. [unsupported-attributes,parsing,default] File "./examples/tutorial_coq_elpi_command.v", line 646, characters 2-24: Warning: This command does not support these attributes: more, this. [unsupported-attributes,parsing,default] File "./examples/tutorial_coq_elpi_command.v", line 647, characters 7-14: Warning: This command does not support this attribute: unknown. [unsupported-attributes,parsing,default] Query assignments: BO = fix `add:r` 0 (prod `n:r` (global (indt «nat»)) c0 \ prod `m:r` (global (indt «nat»)) c1 \ global (indt «nat»)) c0 \ fun `n:r` (global (indt «nat»)) c1 \ fun `m:r` (global (indt «nat»)) c2 \ match c1 (fun `n:r` (global (indt «nat»)) c3 \ global (indt «nat»)) [c2, fun `p:r` (global (indt «nat»)) c3 \ app [global (indc «S»), app [c0, c3, c2]]] GR = «Nat.add» TY = prod `n:r` (global (indt «nat»)) c0 \ prod `m:r` (global (indt «nat»)) c1 \ global (indt «nat») fix X0 0 (prod `n:r` (global (indt «nat»)) c0 \ prod `m:r` (global (indt «nat»)) c1 \ global (indt «nat»)) c0 \ fun `n:r` (global (indt «nat»)) c1 \ fun `m:r` (global (indt «nat»)) c2 \ match c1 (fun `_elpi_renamed_n_2:r` (global (indt «nat»)) c3 \ X1 c1 c2 c3) [c2, fun `p:r` (X2 c1 c2) c3 \ app [c0, c3, c2]] fix `_:α1` 0 (prod `n:r` (global (indt «nat»)) c0 \ prod `m:r` (global (indt «nat»)) c1 \ global (indt «nat»)) c0 \ fun `n:r` (global (indt «nat»)) c1 \ fun `m:r` (global (indt «nat»)) c2 \ match c1 (fun `_elpi_renamed_n_2:r` (global (indt «nat»)) c3 \ global (indt «nat»)) [c2, fun `p:r` (X3 c1 c2) c3 \ app [c0, c3, c2]] Query assignments: BO1 = fix `_:α1` 0 (prod `n:r` (global (indt «nat»)) c0 \ prod `m:r` (global (indt «nat»)) c1 \ global (indt «nat»)) c0 \ fun `n:r` (global (indt «nat»)) c1 \ fun `m:r` (global (indt «nat»)) c2 \ match c1 (fun `_elpi_renamed_n_2:r` (global (indt «nat»)) c3 \ global (indt «nat»)) [c2, fun `p:r` (X3 c1 c2) c3 \ app [c0, c3, c2]] GR = «Nat.add» TY = prod `n:r` (global (indt «nat»)) c0 \ prod `m:r` (global (indt «nat»)) c1 \ global (indt «nat») X1_ = c0 \ c1 \ c2 \ global (indt «nat») X2_ = c0 \ c1 \ X3 c0 c1 Syntactic constraints: {c0 c1} : decl c1 `m:r` (global (indt «nat»)), decl c0 `n:r` (global (indt «nat»)) ?- evar (X3 c0 c1) (sort (typ «elpi_tests_stdlib.test_quotation.22»)) (X3 c0 c1) /* suspended on X3 */ Universe constraints: UNIVERSES: {elpi_tests_stdlib.test_quotation.23 elpi_tests_stdlib.test_quotation.22 elpi_tests_stdlib.test_quotation.21} |= Set <= elpi_tests_stdlib.test_quotation.23 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: elpi_tests_stdlib.test_quotation.23 SORTS: α1 α2 α3 α4 >= Prop |= Prop -> SProp Type -> α1 -> α2 -> α3 -> α4 -> Prop -> SProp WEAK CONSTRAINTS: fun `v:r` (app [global (indt «Vector.t»), global (indt «nat»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]) c0 \ match c0 (fun `_:r` (X0 c0) c1 \ fun `_elpi_renamed_v_1:r` (app [global (indt «Vector.t»), X1 c0, X2 c0]) c2 \ X3 c0 c2) [global (indc «O»), fun `_:r` (X4 c0) c1 \ fun `_:r` (X5 c0) c2 \ fun `_:r` (X6 c0) c3 \ app [global (indc «S»), global (indc «O»)]] fun `v:r` (app [global (indt «Vector.t»), global (indt «nat»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]) c0 \ match c0 (fun `_:r` (X7 c0) c1 \ fun `_elpi_renamed_v_1:r` (app [global (indt «Vector.t»), global (indt «nat»), X8 c0]) c2 \ global (indt «nat»)) [global (indc «O»), fun `_:r` (X9 c0) c1 \ fun `_:r` (X10 c0) c2 \ fun `_:r` (X11 c0) c3 \ app [global (indc «S»), global (indc «O»)]] Query assignments: T = fun `v:r` (app [global (indt «Vector.t»), global (indt «nat»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]) c0 \ match c0 (fun `_:r` (X7 c0) c1 \ fun `_elpi_renamed_v_1:r` (app [global (indt «Vector.t»), global (indt «nat»), X8 c0]) c2 \ global (indt «nat»)) [global (indc «O»), fun `_:r` (X9 c0) c1 \ fun `_:r` (X10 c0) c2 \ fun `_:r` (X11 c0) c3 \ app [global (indc «S»), global (indc «O»)]] X3_ = c0 \ X7 c0 X4_ = c0 \ global (indt «nat») X5_ = c0 \ X8 c0 X6_ = c0 \ c1 \ global (indt «nat») X7_ = c0 \ X9 c0 X8_ = c0 \ X10 c0 X9_ = c0 \ X11 c0 Syntactic constraints: {c0} : decl c0 `v:r` (app [global (indt «Vector.t»), global (indt «nat»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]) ?- evar (X11 c0) (sort (typ «elpi_tests_stdlib.test_quotation.30»)) (X11 c0) /* suspended on X11 */ {c0} : decl c0 `v:r` (app [global (indt «Vector.t»), global (indt «nat»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]) ?- evar (X10 c0) (sort (typ «elpi_tests_stdlib.test_quotation.29»)) (X10 c0) /* suspended on X10 */ {c0} : decl c0 `v:r` (app [global (indt «Vector.t»), global (indt «nat»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]) ?- evar (X9 c0) (sort (typ «elpi_tests_stdlib.test_quotation.28»)) (X9 c0) /* suspended on X9 */ {c0} : decl c0 `v:r` (app [global (indt «Vector.t»), global (indt «nat»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]) ?- evar (X8 c0) (X12 c0) (X8 c0) /* suspended on X8 */ {c0} : decl c0 `v:r` (app [global (indt «Vector.t»), global (indt «nat»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]) ?- evar (X13 c0) (sort (typ «elpi_tests_stdlib.test_quotation.26»)) (X12 c0) /* suspended on X13, X12 */ {c0} : decl c0 `v:r` (app [global (indt «Vector.t»), global (indt «nat»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]) ?- evar (X7 c0) (sort (typ «elpi_tests_stdlib.test_quotation.24»)) (X7 c0) /* suspended on X7 */ Universe constraints: UNIVERSES: {elpi_tests_stdlib.test_quotation.32 elpi_tests_stdlib.test_quotation.31 elpi_tests_stdlib.test_quotation.30 elpi_tests_stdlib.test_quotation.29 elpi_tests_stdlib.test_quotation.28 elpi_tests_stdlib.test_quotation.27 elpi_tests_stdlib.test_quotation.26 elpi_tests_stdlib.test_quotation.25 elpi_tests_stdlib.test_quotation.24} |= elpi_tests_stdlib.test_quotation.31 < elpi_tests_stdlib.test_quotation.25 Set <= elpi_tests_stdlib.test_quotation.31 Set <= elpi_tests_stdlib.test_quotation.32 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: elpi_tests_stdlib.test_quotation.32 elpi_tests_stdlib.test_quotation.31 SORTS: α5 α6 := Type α7 α8 α9 α10 α11 α12 >= Prop α13 |= α6 <-> Type Prop -> SProp Type -> α5 -> α7 -> α8 -> α9 -> α10 -> α11 -> α12 -> α13 -> Prop -> SProp WEAK CONSTRAINTS: 3 Query assignments: X = 3 fun `x:r` X0 c0 \ app [X1, c0] Query assignments: X = X1 X10_ = X0 Y = fun `x:r` X0 c0 \ app [X1, c0] fun `r:r` (global (indt «nat»)) c0 \ fun `p:r` (prod `y:r` (global (indt «nat»)) c1 \ app [global (indt «eq»), global (indt «nat»), c1, global (indc «O»)]) c1 \ fun `q:r` (global (indt «bool»)) c2 \ prod `y:r` (global (indt «nat»)) c3 \ app [global (indt «eq»), global (indt «nat»), c3, global (indc «O»)] Query assignments: %spill1_170 = c0 \ c1 \ c2 \ prod `y:r` (global (indt «nat»)) c3 \ app [global (indt «eq»), global (indt «nat»), c3, global (indc «O»)] X = fun `r:r` (global (indt «nat»)) c0 \ fun `p:r` (prod `y:r` (global (indt «nat»)) c1 \ app [global (indt «eq»), global (indt «nat»), c1, global (indc «O»)]) c1 \ fun `q:r` (global (indt «bool»)) c2 \ prod `y:r` (global (indt «nat»)) c3 \ app [global (indt «eq»), global (indt «nat»), c3, global (indc «O»)] fun u : nat => {| val := oval u; Sub := Ord u; Sub_rect := inlined_sub_rect |} : forall u : nat, is_SUB nat (fun x : nat => leq x u) (ord u) Debug: [elpi] gterm2lp: term=(fun u => {| val := oval u; Sub := _; Sub_rect := inlined_sub_rect |}) Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term={| val := oval u; Sub := _; Sub_rect := inlined_sub_rect |} Debug: [elpi] gterm2lp: term=SubType Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term=(oval u) Debug: [elpi] gterm2lp: term=oval Debug: [elpi] gterm2lp: term=u Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term=inlined_sub_rect Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term=(fun K_S u => let (x, Px) as u0 return K u0 := u in K_S x Px) Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term=(fun u => let (x, Px) as u0 return K u0 := u in K_S x Px) Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term=(let (x, Px) as u0 return K u0 := _elpi_renamed_u_3 in K_S x Px) Debug: [elpi] gterm2lp: term=_elpi_renamed_u_3 Debug: [elpi] gterm2lp: term=(fun u0 => K u0) Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term=(K u0) Debug: [elpi] gterm2lp: term=K Debug: [elpi] gterm2lp: term=u0 Debug: [elpi] gterm2lp: term=(fun x Px => K_S x Px) Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term=(fun Px => K_S x Px) Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term=(K_S x Px) Debug: [elpi] gterm2lp: term=K_S Debug: [elpi] gterm2lp: term=x Debug: [elpi] gterm2lp: term=Px Debug: [elpi] gterm2lp: term=(fun u => {| val := _; Sub := elpi_code_appArg:(Xu); Sub_rect := _ |}) Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term={| val := _; Sub := elpi_code_appArg:(Xu); Sub_rect := _ |} Debug: [elpi] gterm2lp: term=SubType Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term=elpi_code_appArg:(Xu) Debug: [elpi] gterm2lp: term=u Debug: [elpi] gterm2lp: term=_ XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX fun `u:r` X0 c0 \ app [global (indc «SubType»), X1 c0, X2 c0, X3 c0, app [global (const «oval»), c0], X4 c0, fun `K:r` (X5 c0) c1 \ fun `K_S:r` (X6 c0 c1) c2 \ fun `_elpi_renamed_u_3:r` (X7 c0 c1 c2) c3 \ match c3 (fun `u0:r` (X8 c0 c1 c2 c3) c4 \ app [c1, c4]) [fun `x:r` (X9 c0 c1 c2 c3) c4 \ fun `Px:r` (X10 c0 c1 c2 c3 c4) c5 \ app [c2, c4, c5]]] XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX Debug: [elpi] elpi sigma -> coq sigma: before: SHELF: FUTURE GOALS STACK: Rocq-Elpi mapping: RAW: ELAB: Debug: [elpi] elpi sigma -> coq sigma: synchronized: SHELF: FUTURE GOALS STACK: Rocq-Elpi mapping: RAW: ELAB: Debug: [elpi] elpi sigma -> coq sigma: after: SHELF: FUTURE GOALS STACK: Rocq-Elpi mapping: RAW: ELAB: Debug: [elpi] lp2term: depth=0 ctx=[] term=fun `u:r` X0 c0 \ app [global (indc «SubType»), X1 c0, X2 c0, X3 c0, app [global (const «oval»), c0], X4 c0, fun `K:r` (X5 c0) c1 \ fun `K_S:r` (X6 c0 c1) c2 \ fun `_elpi_renamed_u_3:r` (X7 c0 c1 c2) c3 \ match c3 (fun `u0:r` (X8 c0 c1 c2 c3) c4 \ app [c1, c4]) [fun `x:r` (X9 c0 c1 c2 c3) c4 \ fun `Px:r` (X10 c0 c1 c2 c3 c4) c5 \ app [c2, c4, c5]]] Debug: [elpi] lp2term@0:fun `u:r` X0 c0 \ app [global (indc «SubType»), X1 c0, X2 c0, X3 c0, app [global (const «oval»), c0], X4 c0, fun `K:r` (X5 c0) c1 \ fun `K_S:r` (X6 c0 c1) c2 \ fun `_elpi_renamed_u_3:r` (X7 c0 c1 c2) c3 \ match c3 (fun `u0:r` (X8 c0 c1 c2 c3) c4 \ app [c1, c4]) [fun `x:r` (X9 c0 c1 c2 c3) c4 \ fun `Px:r` (X10 c0 c1 c2 c3 c4) c5 \ app [c2, c4, c5]]] Debug: [elpi] lp2term@0:X0 Debug: [elpi] lp2term: evar: calldepth:0 X0 RAW: ELAB: Debug: [elpi] lp2term@1:app [global (indc «SubType»), X1 c0, X2 c0, X3 c0, app [global (const «oval»), c0], X4 c0, fun `K:r` (X5 c0) c1 \ fun `K_S:r` (X6 c0 c1) c2 \ fun `_elpi_renamed_u_3:r` (X7 c0 c1 c2) c3 \ match c3 (fun `u0:r` (X8 c0 c1 c2 c3) c4 \ app [c1, c4]) [fun `x:r` (X9 c0 c1 c2 c3) c4 \ fun `Px:r` (X10 c0 c1 c2 c3 c4) c5 \ app [c2, c4, c5]]] Debug: [elpi] lp2term@1:global (indc «SubType») Debug: [elpi] lp2term@1:X1 c0 Debug: [elpi] lp2term: evar: calldepth:0 X1 c0 RAW: ELAB: Debug: [elpi] lp2term@1:X2 c0 Debug: [elpi] lp2term: evar: calldepth:0 X2 c0 RAW: ELAB: Debug: [elpi] lp2term@1:X3 c0 Debug: [elpi] lp2term: evar: calldepth:0 X3 c0 RAW: ELAB: Debug: [elpi] lp2term@1:app [global (const «oval»), c0] Debug: [elpi] lp2term@1:global (const «oval») Debug: [elpi] lp2term@1:c0 Debug: [elpi] lp2term@1:X4 c0 Debug: [elpi] lp2term: evar: calldepth:0 X4 c0 RAW: ELAB: Debug: [elpi] lp2term@1:fun `K:r` (X5 c0) c1 \ fun `K_S:r` (X6 c0 c1) c2 \ fun `_elpi_renamed_u_3:r` (X7 c0 c1 c2) c3 \ match c3 (fun `u0:r` (X8 c0 c1 c2 c3) c4 \ app [c1, c4]) [fun `x:r` (X9 c0 c1 c2 c3) c4 \ fun `Px:r` (X10 c0 c1 c2 c3 c4) c5 \ app [c2, c4, c5]] Debug: [elpi] lp2term@1:X5 c0 Debug: [elpi] lp2term: evar: calldepth:0 X5 c0 RAW: ELAB: Debug: [elpi] lp2term@2:fun `K_S:r` (X6 c0 c1) c2 \ fun `_elpi_renamed_u_3:r` (X7 c0 c1 c2) c3 \ match c3 (fun `u0:r` (X8 c0 c1 c2 c3) c4 \ app [c1, c4]) [fun `x:r` (X9 c0 c1 c2 c3) c4 \ fun `Px:r` (X10 c0 c1 c2 c3 c4) c5 \ app [c2, c4, c5]] Debug: [elpi] lp2term@2:X6 c0 c1 Debug: [elpi] lp2term: evar: calldepth:0 X6 c0 c1 RAW: ELAB: Debug: [elpi] lp2term@3:fun `_elpi_renamed_u_3:r` (X7 c0 c1 c2) c3 \ match c3 (fun `u0:r` (X8 c0 c1 c2 c3) c4 \ app [c1, c4]) [fun `x:r` (X9 c0 c1 c2 c3) c4 \ fun `Px:r` (X10 c0 c1 c2 c3 c4) c5 \ app [c2, c4, c5]] Debug: [elpi] lp2term@3:X7 c0 c1 c2 Debug: [elpi] lp2term: evar: calldepth:0 X7 c0 c1 c2 RAW: ELAB: Debug: [elpi] lp2term@4:match c3 (fun `u0:r` (X8 c0 c1 c2 c3) c4 \ app [c1, c4]) [fun `x:r` (X9 c0 c1 c2 c3) c4 \ fun `Px:r` (X10 c0 c1 c2 c3 c4) c5 \ app [c2, c4, c5]] Debug: [elpi] lp2term@4:c3 Debug: [elpi] lp2term@4:fun `u0:r` (X8 c0 c1 c2 c3) c4 \ app [c1, c4] Debug: [elpi] lp2term@4:X8 c0 c1 c2 c3 Debug: [elpi] lp2term: evar: calldepth:0 X8 c0 c1 c2 c3 RAW: ELAB: Debug: [elpi] lp2term@5:app [c1, c4] Debug: [elpi] lp2term@5:c1 Debug: [elpi] lp2term@5:c4 Debug: [elpi] lp2term@4:fun `x:r` (X9 c0 c1 c2 c3) c4 \ fun `Px:r` (X10 c0 c1 c2 c3 c4) c5 \ app [c2, c4, c5] Debug: [elpi] lp2term@4:X9 c0 c1 c2 c3 Debug: [elpi] lp2term: evar: calldepth:0 X9 c0 c1 c2 c3 RAW: ELAB: Debug: [elpi] lp2term@5:fun `Px:r` (X10 c0 c1 c2 c3 c4) c5 \ app [c2, c4, c5] Debug: [elpi] lp2term@5:X10 c0 c1 c2 c3 c4 Debug: [elpi] lp2term: evar: calldepth:0 X10 c0 c1 c2 c3 c4 RAW: ELAB: Debug: [elpi] lp2term@6:app [c2, c4, c5] Debug: [elpi] lp2term@6:c2 Debug: [elpi] lp2term@6:c4 Debug: [elpi] lp2term@6:c5 Debug: [elpi] lp2term: out=(fun u : hole hole => {| val := oval u; Sub := hole u hole; Sub_rect := fun (K : hole u hole) (K_S : hole K u hole) (_elpi_renamed_u_3 : hole K_S K u hole) => let () as u0 return hole u0 _elpi_renamed_u_3 K_S K hole := _elpi_renamed_u_3 in fun (x : hole _elpi_renamed_u_3 K_S K u hole) (Px : hole x _elpi_renamed_u_3 K_S K u hole) => K_S x Px |}) elpi2coq: RAW: ELAB: SHELF: FUTURE GOALS STACK: Debug: [elpi] detype: (fun u : hole hole => {| val := oval u; Sub := hole u hole; Sub_rect := fun (K : hole u hole) (K_S : hole K u hole) (_elpi_renamed_u_3 : hole K_S K u hole) => let () as u0 return hole u0 _elpi_renamed_u_3 K_S K hole := _elpi_renamed_u_3 in fun (x : hole _elpi_renamed_u_3 K_S K u hole) (Px : hole x _elpi_renamed_u_3 K_S K u hole) => K_S x Px |}) Debug: [elpi] bringing updated sigma back to lp Debug: [elpi] term2lp: depth=0 ctx= term=(forall u : nat, is_SUB nat (fun x : nat => leq x u) (ord u)) Debug: [elpi] term2lp (out): prod `u:α29` (global (indt «nat»)) c0 \ app [global (indt «is_SUB»), global (indt «nat»), fun `x:r` (global (indt «nat»)) c1 \ app [global (const «leq»), c1, c0], app [global (indt «ord»), c0]] Debug: [elpi] term2lp: depth=0 ctx= term=(fun u : nat => {| val := oval u; Sub := Ord u; Sub_rect := inlined_sub_rect |}) Debug: [elpi] term2lp (out): fun `u:r` (global (indt «nat»)) c0 \ app [global (indc «SubType»), global (indt «nat»), fun `x:r` (global (indt «nat»)) c1 \ app [global (const «leq»), c1, c0], app [global (indt «ord»), c0], app [global (const «oval»), c0], app [global (indc «Ord»), c0], fun `K:r` (prod `x:r` (app [global (indt «ord»), c0]) c1 \ sort (typ «is_SUB.u2»)) c1 \ fun `K_S:r` (prod `x:r` (global (indt «nat»)) c2 \ prod `Px:r` (app [global (indt «eq»), global (indt «bool»), app [fun `x:r` (global (indt «nat»)) c3 \ app [global (const «leq»), c3, c0], c2], global (indc «true»)]) c3 \ app [c1, app [global (indc «Ord»), c0, c2, c3]]) c2 \ fun `_elpi_renamed_u_3:r` (app [global (indt «ord»), c0]) c3 \ match c3 (fun `xxx:r` (app [global (indt «ord»), c0]) c4 \ app [c1, c4]) [fun `x:r` (global (indt «nat»)) c4 \ fun `Px:r` (app [global (indt «eq»), global (indt «bool»), app [global (const «leq»), c4, c0], global (indc «true»)]) c5 \ app [c2, c4, c5]]] Debug: [elpi] Elpi: query-compilation:0.0056 static-check:0.0000 optimization:0.0002 runtime:0.0147 (with success) Query assignments: GR = indc «Ord» K = global (indc «Ord») T = fun `u:r` X0 c0 \ app [global (indc «SubType»), X1 c0, X2 c0, X3 c0, app [global (const «oval»), c0], X4 c0, fun `K:r` (X5 c0) c1 \ fun `K_S:r` (X6 c0 c1) c2 \ fun `_elpi_renamed_u_3:r` (X7 c0 c1 c2) c3 \ match c3 (fun `u0:r` (X8 c0 c1 c2 c3) c4 \ app [c1, c4]) [fun `x:r` (X9 c0 c1 c2 c3) c4 \ fun `Px:r` (X10 c0 c1 c2 c3 c4) c5 \ app [c2, c4, c5]]] T1 = fun `u:r` (global (indt «nat»)) c0 \ app [global (indc «SubType»), global (indt «nat»), fun `x:r` (global (indt «nat»)) c1 \ app [global (const «leq»), c1, c0], app [global (indt «ord»), c0], app [global (const «oval»), c0], app [global (indc «Ord»), c0], fun `K:r` (prod `x:r` (app [global (indt «ord»), c0]) c1 \ sort (typ «is_SUB.u2»)) c1 \ fun `K_S:r` (prod `x:r` (global (indt «nat»)) c2 \ prod `Px:r` (app [global (indt «eq»), global (indt «bool»), app [fun `x:r` (global (indt «nat»)) c3 \ app [global (const «leq»), c3, c0], c2], global (indc «true»)]) c3 \ app [c1, app [global (indc «Ord»), c0, c2, c3]]) c2 \ fun `_elpi_renamed_u_3:r` (app [global (indt «ord»), c0]) c3 \ match c3 (fun `xxx:r` (app [global (indt «ord»), c0]) c4 \ app [c1, c4]) [fun `x:r` (global (indt «nat»)) c4 \ fun `Px:r` (app [global (indt «eq»), global (indt «bool»), app [global (const «leq»), c4, c0], global (indc «true»)]) c5 \ app [c2, c4, c5]]] X = c0 \ app [global (indc «Ord»), c0] X11_ = X0 X12_ = X1 X13_ = X2 X14_ = X3 X15_ = X4 X16_ = X5 X17_ = X6 X18_ = X7 X19_ = X8 X20_ = X9 X21_ = X10 X22_ = global (indt «nat») X23_ = c0 \ global (indt «nat») X24_ = c0 \ fun `x:r` (global (indt «nat»)) c1 \ app [global (const «leq»), c1, c0] X25_ = c0 \ app [global (indt «ord»), c0] X26_ = c0 \ app [global (const «oval»), c0] X27_ = c0 \ fun `K:r` (prod `x:r` (app [global (indt «ord»), c0]) c1 \ sort (typ «is_SUB.u2»)) c1 \ fun `K_S:r` (prod `x:r` (global (indt «nat»)) c2 \ prod `Px:r` (app [global (indt «eq»), global (indt «bool»), app [fun `x:r` (global (indt «nat»)) c3 \ app [global (const «leq»), c3, c0], c2], global (indc «true»)]) c3 \ app [c1, app [global (indc «Ord»), c0, c2, c3]]) c2 \ fun `_elpi_renamed_u_3:r` (app [global (indt «ord»), c0]) c3 \ match c3 (fun `xxx:r` (app [global (indt «ord»), c0]) c4 \ app [c1, c4]) [fun `x:r` (global (indt «nat»)) c4 \ fun `Px:r` (app [global (indt «eq»), global (indt «bool»), app [global (const «leq»), c4, c0], global (indc «true»)]) c5 \ app [c2, c4, c5]] Universe constraints: UNIVERSES: {elpi_tests_stdlib.test_quotation.50 elpi_tests_stdlib.test_quotation.49} |= Set <= is_SUB.u0 Set <= is_SUB.u1 Set <= elpi_tests_stdlib.test_quotation.49 is_SUB.u2 <= elpi_tests_stdlib.test_quotation.50 ALGEBRAIC UNIVERSES: {elpi_tests_stdlib.test_quotation.50 elpi_tests_stdlib.test_quotation.49} FLEXIBLE UNIVERSES: elpi_tests_stdlib.test_quotation.50 elpi_tests_stdlib.test_quotation.49 SORTS: α28 α29 := Type α30 := Type |= α29 <-> Type α30 <-> Type Prop -> SProp Type -> α28 -> Prop -> SProp WEAK CONSTRAINTS: Debug: [elpi] gterm2lp: term=(fun u => {| val := oval u; Sub := _; Sub_rect := inlined_sub_rect |}) Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term={| val := oval u; Sub := _; Sub_rect := inlined_sub_rect |} Debug: [elpi] gterm2lp: term=SubType Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term=(oval u) Debug: [elpi] gterm2lp: term=oval Debug: [elpi] gterm2lp: term=u Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term=inlined_sub_rect Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term=(fun K_S u => let (x, Px) as u0 return K u0 := u in K_S x Px) Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term=(fun u => let (x, Px) as u0 return K u0 := u in K_S x Px) Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term=(let (x, Px) as u0 return K u0 := _elpi_renamed_u_3 in K_S x Px) Debug: [elpi] gterm2lp: term=_elpi_renamed_u_3 Debug: [elpi] gterm2lp: term=(fun u0 => K u0) Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term=(K u0) Debug: [elpi] gterm2lp: term=K Debug: [elpi] gterm2lp: term=u0 Debug: [elpi] gterm2lp: term=(fun x Px => K_S x Px) Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term=(fun Px => K_S x Px) Debug: [elpi] gterm2lp: term=_ Debug: [elpi] gterm2lp: term=(K_S x Px) Debug: [elpi] gterm2lp: term=K_S Debug: [elpi] gterm2lp: term=x Debug: [elpi] gterm2lp: term=Px Debug: [elpi] elpi sigma -> coq sigma: before: SHELF: FUTURE GOALS STACK: Rocq-Elpi mapping: RAW: ELAB: Debug: [elpi] elpi sigma -> coq sigma: synchronized: SHELF: FUTURE GOALS STACK: Rocq-Elpi mapping: RAW: ELAB: Debug: [elpi] elpi sigma -> coq sigma: after: SHELF: FUTURE GOALS STACK: Rocq-Elpi mapping: RAW: ELAB: Debug: [elpi] lp2term: depth=0 ctx=[] term=fun `u:r` X0 c0 \ app [global (indc «SubType»), X1 c0, X2 c0, X3 c0, app [global (const «oval»), c0], X4 c0, fun `K:r` (X5 c0) c1 \ fun `K_S:r` (X6 c0 c1) c2 \ fun `_elpi_renamed_u_3:r` (X7 c0 c1 c2) c3 \ match c3 (fun `u0:r` (X8 c0 c1 c2 c3) c4 \ app [c1, c4]) [fun `x:r` (X9 c0 c1 c2 c3) c4 \ fun `Px:r` (X10 c0 c1 c2 c3 c4) c5 \ app [c2, c4, c5]]] Debug: [elpi] lp2term@0:fun `u:r` X0 c0 \ app [global (indc «SubType»), X1 c0, X2 c0, X3 c0, app [global (const «oval»), c0], X4 c0, fun `K:r` (X5 c0) c1 \ fun `K_S:r` (X6 c0 c1) c2 \ fun `_elpi_renamed_u_3:r` (X7 c0 c1 c2) c3 \ match c3 (fun `u0:r` (X8 c0 c1 c2 c3) c4 \ app [c1, c4]) [fun `x:r` (X9 c0 c1 c2 c3) c4 \ fun `Px:r` (X10 c0 c1 c2 c3 c4) c5 \ app [c2, c4, c5]]] Debug: [elpi] lp2term@0:X0 Debug: [elpi] lp2term: evar: calldepth:0 X0 RAW: ELAB: Debug: [elpi] lp2term: evar: unknown: calldepth:0 X0 Debug: [elpi] lp2term: evar: create_unknown: whole ctx: ; Debug: [elpi] lp2term: evar: create_unknown: visible ctx: Debug: [elpi] restrict_conv_context: named: Debug: [elpi] lp2term: evar: create_unknown: restricted ctx: Debug: [elpi] lp2term: evar: create_unknown: new link: ? |> |- ? = ?X41 EVARS: ?X41==[ |- Type] (internal placeholder) {?e} UNIVERSES: {elpi_tests_stdlib.test_quotation.51} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α31 |= Prop -> SProp Type -> α31 -> Prop -> SProp WEAK CONSTRAINTS: SHELF: FUTURE GOALS STACK: ?X41 Debug: [elpi] lp2term@0:X0 Debug: [elpi] lp2term: evar: calldepth:0 X0 RAW: ?X41 <-> X0 ELAB: ?X41 <-> X0 Debug: [elpi] lp2term: evar: already in Coq: ?X41 Debug: [elpi] lp2term@1:app [global (indc «SubType»), X1 c0, X2 c0, X3 c0, app [global (const «oval»), c0], X4 c0, fun `K:r` (X5 c0) c1 \ fun `K_S:r` (X6 c0 c1) c2 \ fun `_elpi_renamed_u_3:r` (X7 c0 c1 c2) c3 \ match c3 (fun `u0:r` (X8 c0 c1 c2 c3) c4 \ app [c1, c4]) [fun `x:r` (X9 c0 c1 c2 c3) c4 \ fun `Px:r` (X10 c0 c1 c2 c3 c4) c5 \ app [c2, c4, c5]]] Debug: [elpi] lp2term@1:global (indc «SubType») Debug: [elpi] lp2term@1:X1 c0 Debug: [elpi] lp2term: evar: calldepth:0 X1 c0 RAW: ?X41 <-> X0 ELAB: ?X41 <-> X0 Debug: [elpi] lp2term: evar: unknown: calldepth:0 X1 Debug: [elpi] lp2term: evar: create_unknown: whole ctx: ; (u : ?e) Debug: [elpi] lp2term: evar: create_unknown: visible ctx:c0 Debug: [elpi] restrict_conv_context: named: Debug: [elpi] restrict_conv_context: cur rel ctx: restrict_conv_context: cur subst: restrict_conv_context: looking at u(dbl 0) Debug: [elpi] ?e--0->?e Debug: [elpi] lp2term: evar: create_unknown: restricted ctx:(u : ?e) Debug: [elpi] in_elpi_evar:?X42 Debug: [elpi] lp2term: evar: create_unknown: new link: ? |> |- ? = ?X43 EVARS: ?X43==[u |- ?e0] (internal placeholder) {?e1} ?X42==[u |- Type] (internal placeholder) {?e0} ?X41==[ |- Type] (internal placeholder) {?e} UNIVERSES: {elpi_tests_stdlib.test_quotation.52 elpi_tests_stdlib.test_quotation.51} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α31 α32 |= Prop -> SProp Type -> α31 -> α32 -> Prop -> SProp WEAK CONSTRAINTS: SHELF: FUTURE GOALS STACK:?X43 ?X42 ?X41 Debug: [elpi] lp2term@1:X1 c0 Debug: [elpi] lp2term: evar: calldepth:0 X1 c0 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 Debug: [elpi] lp2term: evar: already in Coq: ?X43 Debug: [elpi] lp2term@1:c0 Debug: [elpi] lp2term@1:X2 c0 Debug: [elpi] lp2term: evar: calldepth:0 X2 c0 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 Debug: [elpi] lp2term: evar: unknown: calldepth:0 X2 Debug: [elpi] lp2term: evar: create_unknown: whole ctx: ; (u : ?e) Debug: [elpi] lp2term: evar: create_unknown: visible ctx:c0 Debug: [elpi] restrict_conv_context: named: Debug: [elpi] restrict_conv_context: cur rel ctx: restrict_conv_context: cur subst: restrict_conv_context: looking at u(dbl 0) Debug: [elpi] ?e--0->?e Debug: [elpi] lp2term: evar: create_unknown: restricted ctx:(u : ?e) Debug: [elpi] in_elpi_evar:?X44 Debug: [elpi] lp2term: evar: create_unknown: new link: ? |> |- ? = ?X45 EVARS: ?X45==[u |- ?e2] (internal placeholder) {?e3} ?X44==[u |- Type] (internal placeholder) {?e2} ?X43==[u |- ?e0] (internal placeholder) {?e1} ?X42==[u |- Type] (internal placeholder) {?e0} ?X41==[ |- Type] (internal placeholder) {?e} UNIVERSES: {elpi_tests_stdlib.test_quotation.53 elpi_tests_stdlib.test_quotation.52 elpi_tests_stdlib.test_quotation.51} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α31 α32 α33 |= Prop -> SProp Type -> α31 -> α32 -> α33 -> Prop -> SProp WEAK CONSTRAINTS: SHELF: FUTURE GOALS STACK:?X45 ?X44 ?X43 ?X42 ?X41 Debug: [elpi] lp2term@1:X2 c0 Debug: [elpi] lp2term: evar: calldepth:0 X2 c0 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 Debug: [elpi] lp2term: evar: already in Coq: ?X45 Debug: [elpi] lp2term@1:c0 Debug: [elpi] lp2term@1:X3 c0 Debug: [elpi] lp2term: evar: calldepth:0 X3 c0 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 Debug: [elpi] lp2term: evar: unknown: calldepth:0 X3 Debug: [elpi] lp2term: evar: create_unknown: whole ctx: ; (u : ?e) Debug: [elpi] lp2term: evar: create_unknown: visible ctx:c0 Debug: [elpi] restrict_conv_context: named: Debug: [elpi] restrict_conv_context: cur rel ctx: restrict_conv_context: cur subst: restrict_conv_context: looking at u(dbl 0) Debug: [elpi] ?e--0->?e Debug: [elpi] lp2term: evar: create_unknown: restricted ctx:(u : ?e) Debug: [elpi] in_elpi_evar:?X46 Debug: [elpi] lp2term: evar: create_unknown: new link: ? |> |- ? = ?X47 EVARS: ?X47==[u |- ?e4] (internal placeholder) {?e5} ?X46==[u |- Type] (internal placeholder) {?e4} ?X45==[u |- ?e2] (internal placeholder) {?e3} ?X44==[u |- Type] (internal placeholder) {?e2} ?X43==[u |- ?e0] (internal placeholder) {?e1} ?X42==[u |- Type] (internal placeholder) {?e0} ?X41==[ |- Type] (internal placeholder) {?e} UNIVERSES: {elpi_tests_stdlib.test_quotation.54 elpi_tests_stdlib.test_quotation.53 elpi_tests_stdlib.test_quotation.52 elpi_tests_stdlib.test_quotation.51} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α31 α32 α33 α34 |= Prop -> SProp Type -> α31 -> α32 -> α33 -> α34 -> Prop -> SProp WEAK CONSTRAINTS: SHELF: FUTURE GOALS STACK:?X47 ?X46 ?X45 ?X44 ?X43 ?X42 ?X41 Debug: [elpi] lp2term@1:X3 c0 Debug: [elpi] lp2term: evar: calldepth:0 X3 c0 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 Debug: [elpi] lp2term: evar: already in Coq: ?X47 Debug: [elpi] lp2term@1:c0 Debug: [elpi] lp2term@1:app [global (const «oval»), c0] Debug: [elpi] lp2term@1:global (const «oval») Debug: [elpi] lp2term@1:c0 Debug: [elpi] lp2term@1:X4 c0 Debug: [elpi] lp2term: evar: calldepth:0 X4 c0 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 Debug: [elpi] lp2term: evar: unknown: calldepth:0 X4 Debug: [elpi] lp2term: evar: create_unknown: whole ctx: ; (u : ?e) Debug: [elpi] lp2term: evar: create_unknown: visible ctx:c0 Debug: [elpi] restrict_conv_context: named: Debug: [elpi] restrict_conv_context: cur rel ctx: restrict_conv_context: cur subst: restrict_conv_context: looking at u(dbl 0) Debug: [elpi] ?e--0->?e Debug: [elpi] lp2term: evar: create_unknown: restricted ctx:(u : ?e) Debug: [elpi] in_elpi_evar:?X48 Debug: [elpi] lp2term: evar: create_unknown: new link: ? |> |- ? = ?X49 EVARS: ?X49==[u |- ?e6] (internal placeholder) {?e7} ?X48==[u |- Type] (internal placeholder) {?e6} ?X47==[u |- ?e4] (internal placeholder) {?e5} ?X46==[u |- Type] (internal placeholder) {?e4} ?X45==[u |- ?e2] (internal placeholder) {?e3} ?X44==[u |- Type] (internal placeholder) {?e2} ?X43==[u |- ?e0] (internal placeholder) {?e1} ?X42==[u |- Type] (internal placeholder) {?e0} ?X41==[ |- Type] (internal placeholder) {?e} UNIVERSES: {elpi_tests_stdlib.test_quotation.55 elpi_tests_stdlib.test_quotation.54 elpi_tests_stdlib.test_quotation.53 elpi_tests_stdlib.test_quotation.52 elpi_tests_stdlib.test_quotation.51} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α31 α32 α33 α34 α35 |= Prop -> SProp Type -> α31 -> α32 -> α33 -> α34 -> α35 -> Prop -> SProp WEAK CONSTRAINTS: SHELF: FUTURE GOALS STACK:?X49 ?X48 ?X47 ?X46 ?X45 ?X44 ?X43 ?X42 ?X41 Debug: [elpi] lp2term@1:X4 c0 Debug: [elpi] lp2term: evar: calldepth:0 X4 c0 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 Debug: [elpi] lp2term: evar: already in Coq: ?X49 Debug: [elpi] lp2term@1:c0 Debug: [elpi] lp2term@1:fun `K:r` (X5 c0) c1 \ fun `K_S:r` (X6 c0 c1) c2 \ fun `_elpi_renamed_u_3:r` (X7 c0 c1 c2) c3 \ match c3 (fun `u0:r` (X8 c0 c1 c2 c3) c4 \ app [c1, c4]) [fun `x:r` (X9 c0 c1 c2 c3) c4 \ fun `Px:r` (X10 c0 c1 c2 c3 c4) c5 \ app [c2, c4, c5]] Debug: [elpi] lp2term@1:X5 c0 Debug: [elpi] lp2term: evar: calldepth:0 X5 c0 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 Debug: [elpi] lp2term: evar: unknown: calldepth:0 X5 Debug: [elpi] lp2term: evar: create_unknown: whole ctx: ; (u : ?e) Debug: [elpi] lp2term: evar: create_unknown: visible ctx:c0 Debug: [elpi] restrict_conv_context: named: Debug: [elpi] restrict_conv_context: cur rel ctx: restrict_conv_context: cur subst: restrict_conv_context: looking at u(dbl 0) Debug: [elpi] ?e--0->?e Debug: [elpi] lp2term: evar: create_unknown: restricted ctx:(u : ?e) Debug: [elpi] lp2term: evar: create_unknown: new link: ? |> |- ? = ?X50 EVARS: ?X50==[u |- Type] (internal placeholder) {?e8} ?X49==[u |- ?e6] (internal placeholder) {?e7} ?X48==[u |- Type] (internal placeholder) {?e6} ?X47==[u |- ?e4] (internal placeholder) {?e5} ?X46==[u |- Type] (internal placeholder) {?e4} ?X45==[u |- ?e2] (internal placeholder) {?e3} ?X44==[u |- Type] (internal placeholder) {?e2} ?X43==[u |- ?e0] (internal placeholder) {?e1} ?X42==[u |- Type] (internal placeholder) {?e0} ?X41==[ |- Type] (internal placeholder) {?e} UNIVERSES: {elpi_tests_stdlib.test_quotation.56 elpi_tests_stdlib.test_quotation.55 elpi_tests_stdlib.test_quotation.54 elpi_tests_stdlib.test_quotation.53 elpi_tests_stdlib.test_quotation.52 elpi_tests_stdlib.test_quotation.51} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α31 α32 α33 α34 α35 α36 |= Prop -> SProp Type -> α31 -> α32 -> α33 -> α34 -> α35 -> α36 -> Prop -> SProp WEAK CONSTRAINTS: SHELF: FUTURE GOALS STACK:?X50 ?X49 ?X48 ?X47 ?X46 ?X45 ?X44 ?X43 ?X42 ?X41 Debug: [elpi] lp2term@1:X5 c0 Debug: [elpi] lp2term: evar: calldepth:0 X5 c0 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 Debug: [elpi] lp2term: evar: already in Coq: ?X50 Debug: [elpi] lp2term@1:c0 Debug: [elpi] lp2term@2:fun `K_S:r` (X6 c0 c1) c2 \ fun `_elpi_renamed_u_3:r` (X7 c0 c1 c2) c3 \ match c3 (fun `u0:r` (X8 c0 c1 c2 c3) c4 \ app [c1, c4]) [fun `x:r` (X9 c0 c1 c2 c3) c4 \ fun `Px:r` (X10 c0 c1 c2 c3 c4) c5 \ app [c2, c4, c5]] Debug: [elpi] lp2term@2:X6 c0 c1 Debug: [elpi] lp2term: evar: calldepth:0 X6 c0 c1 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 Debug: [elpi] lp2term: evar: unknown: calldepth:0 X6 Debug: [elpi] lp2term: evar: create_unknown: whole ctx: ; (u : ?e) (K : ?e8) Debug: [elpi] lp2term: evar: create_unknown: visible ctx:c0 c1 Debug: [elpi] restrict_conv_context: named: Debug: [elpi] restrict_conv_context: cur rel ctx: restrict_conv_context: cur subst: restrict_conv_context: looking at u(dbl 0) Debug: [elpi] ?e--0->?e Debug: [elpi] restrict_conv_context: cur rel ctx: (u : ?e) restrict_conv_context: cur subst: u restrict_conv_context: looking at K(dbl 1) Debug: [elpi] ?e8--0->?e8 Debug: [elpi] lp2term: evar: create_unknown: restricted ctx:(u : ?e) (K : ?e8) Debug: [elpi] lp2term: evar: create_unknown: new link: ? |> |- ? = ?X51 EVARS: ?X51==[u K |- Type] (internal placeholder) {?e9} ?X50==[u |- Type] (internal placeholder) {?e8} ?X49==[u |- ?e6] (internal placeholder) {?e7} ?X48==[u |- Type] (internal placeholder) {?e6} ?X47==[u |- ?e4] (internal placeholder) {?e5} ?X46==[u |- Type] (internal placeholder) {?e4} ?X45==[u |- ?e2] (internal placeholder) {?e3} ?X44==[u |- Type] (internal placeholder) {?e2} ?X43==[u |- ?e0] (internal placeholder) {?e1} ?X42==[u |- Type] (internal placeholder) {?e0} ?X41==[ |- Type] (internal placeholder) {?e} UNIVERSES: {elpi_tests_stdlib.test_quotation.57 elpi_tests_stdlib.test_quotation.56 elpi_tests_stdlib.test_quotation.55 elpi_tests_stdlib.test_quotation.54 elpi_tests_stdlib.test_quotation.53 elpi_tests_stdlib.test_quotation.52 elpi_tests_stdlib.test_quotation.51} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α31 α32 α33 α34 α35 α36 α37 |= Prop -> SProp Type -> α31 -> α32 -> α33 -> α34 -> α35 -> α36 -> α37 -> Prop -> SProp WEAK CONSTRAINTS: SHELF: FUTURE GOALS STACK:?X51 ?X50 ?X49 ?X48 ?X47 ?X46 ?X45 ?X44 ?X43 ?X42 ?X41 Debug: [elpi] lp2term@2:X6 c0 c1 Debug: [elpi] lp2term: evar: calldepth:0 X6 c0 c1 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 Debug: [elpi] lp2term: evar: already in Coq: ?X51 Debug: [elpi] lp2term@2:c0 Debug: [elpi] lp2term@2:c1 Debug: [elpi] lp2term@3:fun `_elpi_renamed_u_3:r` (X7 c0 c1 c2) c3 \ match c3 (fun `u0:r` (X8 c0 c1 c2 c3) c4 \ app [c1, c4]) [fun `x:r` (X9 c0 c1 c2 c3) c4 \ fun `Px:r` (X10 c0 c1 c2 c3 c4) c5 \ app [c2, c4, c5]] Debug: [elpi] lp2term@3:X7 c0 c1 c2 Debug: [elpi] lp2term: evar: calldepth:0 X7 c0 c1 c2 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 Debug: [elpi] lp2term: evar: unknown: calldepth:0 X7 Debug: [elpi] lp2term: evar: create_unknown: whole ctx: ; (u : ?e) (K : ?e8) (K_S : ?e9) Debug: [elpi] lp2term: evar: create_unknown: visible ctx:c0 c1 c2 Debug: [elpi] restrict_conv_context: named: Debug: [elpi] restrict_conv_context: cur rel ctx: restrict_conv_context: cur subst: restrict_conv_context: looking at u(dbl 0) Debug: [elpi] ?e--0->?e Debug: [elpi] restrict_conv_context: cur rel ctx: (u : ?e) restrict_conv_context: cur subst: u restrict_conv_context: looking at K(dbl 1) Debug: [elpi] ?e8--0->?e8 Debug: [elpi] restrict_conv_context: cur rel ctx: (u : ?e) (K : ?e8) restrict_conv_context: cur subst: K u restrict_conv_context: looking at K_S(dbl 2) Debug: [elpi] ?e9--0->?e9 Debug: [elpi] lp2term: evar: create_unknown: restricted ctx:(u : ?e) (K : ?e8) (K_S : ?e9) Debug: [elpi] lp2term: evar: create_unknown: new link: ? |> |- ? = ?X52 EVARS: ?X52==[u K K_S |- Type] (internal placeholder) {?e10} ?X51==[u K |- Type] (internal placeholder) {?e9} ?X50==[u |- Type] (internal placeholder) {?e8} ?X49==[u |- ?e6] (internal placeholder) {?e7} ?X48==[u |- Type] (internal placeholder) {?e6} ?X47==[u |- ?e4] (internal placeholder) {?e5} ?X46==[u |- Type] (internal placeholder) {?e4} ?X45==[u |- ?e2] (internal placeholder) {?e3} ?X44==[u |- Type] (internal placeholder) {?e2} ?X43==[u |- ?e0] (internal placeholder) {?e1} ?X42==[u |- Type] (internal placeholder) {?e0} ?X41==[ |- Type] (internal placeholder) {?e} UNIVERSES: {elpi_tests_stdlib.test_quotation.58 elpi_tests_stdlib.test_quotation.57 elpi_tests_stdlib.test_quotation.56 elpi_tests_stdlib.test_quotation.55 elpi_tests_stdlib.test_quotation.54 elpi_tests_stdlib.test_quotation.53 elpi_tests_stdlib.test_quotation.52 elpi_tests_stdlib.test_quotation.51} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α31 α32 α33 α34 α35 α36 α37 α38 |= Prop -> SProp Type -> α31 -> α32 -> α33 -> α34 -> α35 -> α36 -> α37 -> α38 -> Prop -> SProp WEAK CONSTRAINTS: SHELF: FUTURE GOALS STACK:?X52 ?X51 ?X50 ?X49 ?X48 ?X47 ?X46 ?X45 ?X44 ?X43 ?X42 ?X41 Debug: [elpi] lp2term@3:X7 c0 c1 c2 Debug: [elpi] lp2term: evar: calldepth:0 X7 c0 c1 c2 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 Debug: [elpi] lp2term: evar: already in Coq: ?X52 Debug: [elpi] lp2term@3:c0 Debug: [elpi] lp2term@3:c1 Debug: [elpi] lp2term@3:c2 Debug: [elpi] lp2term@4:match c3 (fun `u0:r` (X8 c0 c1 c2 c3) c4 \ app [c1, c4]) [fun `x:r` (X9 c0 c1 c2 c3) c4 \ fun `Px:r` (X10 c0 c1 c2 c3 c4) c5 \ app [c2, c4, c5]] Debug: [elpi] lp2term@4:c3 Debug: [elpi] lp2term@4:fun `u0:r` (X8 c0 c1 c2 c3) c4 \ app [c1, c4] Debug: [elpi] lp2term@4:X8 c0 c1 c2 c3 Debug: [elpi] lp2term: evar: calldepth:0 X8 c0 c1 c2 c3 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 Debug: [elpi] lp2term: evar: unknown: calldepth:0 X8 Debug: [elpi] lp2term: evar: create_unknown: whole ctx: ; (u : ?e) (K : ?e8) (K_S : ?e9) (_elpi_renamed_u_3 : ?e10) Debug: [elpi] lp2term: evar: create_unknown: visible ctx:c0 c1 c2 c3 Debug: [elpi] restrict_conv_context: named: Debug: [elpi] restrict_conv_context: cur rel ctx: restrict_conv_context: cur subst: restrict_conv_context: looking at u(dbl 0) Debug: [elpi] ?e--0->?e Debug: [elpi] restrict_conv_context: cur rel ctx: (u : ?e) restrict_conv_context: cur subst: u restrict_conv_context: looking at K(dbl 1) Debug: [elpi] ?e8--0->?e8 Debug: [elpi] restrict_conv_context: cur rel ctx: (u : ?e) (K : ?e8) restrict_conv_context: cur subst: K u restrict_conv_context: looking at K_S(dbl 2) Debug: [elpi] ?e9--0->?e9 Debug: [elpi] restrict_conv_context: cur rel ctx: (u : ?e) (K : ?e8) (K_S : ?e9) restrict_conv_context: cur subst: K_S K u restrict_conv_context: looking at _elpi_renamed_u_3(dbl 3) Debug: [elpi] ?e10--0->?e10 Debug: [elpi] lp2term: evar: create_unknown: restricted ctx:(u : ?e) (K : ?e8) (K_S : ?e9) (_elpi_renamed_u_3 : ?e10) Debug: [elpi] lp2term: evar: create_unknown: new link: ? |> |- ? = ?X53 EVARS: ?X53==[u K K_S _elpi_renamed_u_3 |- Type] (internal placeholder) {?e11} ?X52==[u K K_S |- Type] (internal placeholder) {?e10} ?X51==[u K |- Type] (internal placeholder) {?e9} ?X50==[u |- Type] (internal placeholder) {?e8} ?X49==[u |- ?e6] (internal placeholder) {?e7} ?X48==[u |- Type] (internal placeholder) {?e6} ?X47==[u |- ?e4] (internal placeholder) {?e5} ?X46==[u |- Type] (internal placeholder) {?e4} ?X45==[u |- ?e2] (internal placeholder) {?e3} ?X44==[u |- Type] (internal placeholder) {?e2} ?X43==[u |- ?e0] (internal placeholder) {?e1} ?X42==[u |- Type] (internal placeholder) {?e0} ?X41==[ |- Type] (internal placeholder) {?e} UNIVERSES: {elpi_tests_stdlib.test_quotation.59 elpi_tests_stdlib.test_quotation.58 elpi_tests_stdlib.test_quotation.57 elpi_tests_stdlib.test_quotation.56 elpi_tests_stdlib.test_quotation.55 elpi_tests_stdlib.test_quotation.54 elpi_tests_stdlib.test_quotation.53 elpi_tests_stdlib.test_quotation.52 elpi_tests_stdlib.test_quotation.51} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α31 α32 α33 α34 α35 α36 α37 α38 α39 |= Prop -> SProp Type -> α31 -> α32 -> α33 -> α34 -> α35 -> α36 -> α37 -> α38 -> α39 -> Prop -> SProp WEAK CONSTRAINTS: SHELF: FUTURE GOALS STACK:?X53 ?X52 ?X51 ?X50 ?X49 ?X48 ?X47 ?X46 ?X45 ?X44 ?X43 ?X42 ?X41 Debug: [elpi] lp2term@4:X8 c0 c1 c2 c3 Debug: [elpi] lp2term: evar: calldepth:0 X8 c0 c1 c2 c3 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 Debug: [elpi] lp2term: evar: already in Coq: ?X53 Debug: [elpi] lp2term@4:c0 Debug: [elpi] lp2term@4:c1 Debug: [elpi] lp2term@4:c2 Debug: [elpi] lp2term@4:c3 Debug: [elpi] lp2term@5:app [c1, c4] Debug: [elpi] lp2term@5:c1 Debug: [elpi] lp2term@5:c4 Debug: [elpi] lp2term@4:fun `x:r` (X9 c0 c1 c2 c3) c4 \ fun `Px:r` (X10 c0 c1 c2 c3 c4) c5 \ app [c2, c4, c5] Debug: [elpi] lp2term@4:X9 c0 c1 c2 c3 Debug: [elpi] lp2term: evar: calldepth:0 X9 c0 c1 c2 c3 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 Debug: [elpi] lp2term: evar: unknown: calldepth:0 X9 Debug: [elpi] lp2term: evar: create_unknown: whole ctx: ; (u : ?e) (K : ?e8) (K_S : ?e9) (_elpi_renamed_u_3 : ?e10) Debug: [elpi] lp2term: evar: create_unknown: visible ctx:c0 c1 c2 c3 Debug: [elpi] restrict_conv_context: named: Debug: [elpi] restrict_conv_context: cur rel ctx: restrict_conv_context: cur subst: restrict_conv_context: looking at u(dbl 0) Debug: [elpi] ?e--0->?e Debug: [elpi] restrict_conv_context: cur rel ctx: (u : ?e) restrict_conv_context: cur subst: u restrict_conv_context: looking at K(dbl 1) Debug: [elpi] ?e8--0->?e8 Debug: [elpi] restrict_conv_context: cur rel ctx: (u : ?e) (K : ?e8) restrict_conv_context: cur subst: K u restrict_conv_context: looking at K_S(dbl 2) Debug: [elpi] ?e9--0->?e9 Debug: [elpi] restrict_conv_context: cur rel ctx: (u : ?e) (K : ?e8) (K_S : ?e9) restrict_conv_context: cur subst: K_S K u restrict_conv_context: looking at _elpi_renamed_u_3(dbl 3) Debug: [elpi] ?e10--0->?e10 Debug: [elpi] lp2term: evar: create_unknown: restricted ctx:(u : ?e) (K : ?e8) (K_S : ?e9) (_elpi_renamed_u_3 : ?e10) Debug: [elpi] lp2term: evar: create_unknown: new link: ? |> |- ? = ?X54 EVARS: ?X54==[u K K_S _elpi_renamed_u_3 |- Type] (internal placeholder) {?e12} ?X53==[u K K_S _elpi_renamed_u_3 |- Type] (internal placeholder) {?e11} ?X52==[u K K_S |- Type] (internal placeholder) {?e10} ?X51==[u K |- Type] (internal placeholder) {?e9} ?X50==[u |- Type] (internal placeholder) {?e8} ?X49==[u |- ?e6] (internal placeholder) {?e7} ?X48==[u |- Type] (internal placeholder) {?e6} ?X47==[u |- ?e4] (internal placeholder) {?e5} ?X46==[u |- Type] (internal placeholder) {?e4} ?X45==[u |- ?e2] (internal placeholder) {?e3} ?X44==[u |- Type] (internal placeholder) {?e2} ?X43==[u |- ?e0] (internal placeholder) {?e1} ?X42==[u |- Type] (internal placeholder) {?e0} ?X41==[ |- Type] (internal placeholder) {?e} UNIVERSES: {elpi_tests_stdlib.test_quotation.60 elpi_tests_stdlib.test_quotation.59 elpi_tests_stdlib.test_quotation.58 elpi_tests_stdlib.test_quotation.57 elpi_tests_stdlib.test_quotation.56 elpi_tests_stdlib.test_quotation.55 elpi_tests_stdlib.test_quotation.54 elpi_tests_stdlib.test_quotation.53 elpi_tests_stdlib.test_quotation.52 elpi_tests_stdlib.test_quotation.51} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α31 α32 α33 α34 α35 α36 α37 α38 α39 α40 |= Prop -> SProp Type -> α31 -> α32 -> α33 -> α34 -> α35 -> α36 -> α37 -> α38 -> α39 -> α40 -> Prop -> SProp WEAK CONSTRAINTS: SHELF: FUTURE GOALS STACK:?X54 ?X53 ?X52 ?X51 ?X50 ?X49 ?X48 ?X47 ?X46 ?X45 ?X44 ?X43 ?X42 ?X41 Debug: [elpi] lp2term@4:X9 c0 c1 c2 c3 Debug: [elpi] lp2term: evar: calldepth:0 X9 c0 c1 c2 c3 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 Debug: [elpi] lp2term: evar: already in Coq: ?X54 Debug: [elpi] lp2term@4:c0 Debug: [elpi] lp2term@4:c1 Debug: [elpi] lp2term@4:c2 Debug: [elpi] lp2term@4:c3 Debug: [elpi] lp2term@5:fun `Px:r` (X10 c0 c1 c2 c3 c4) c5 \ app [c2, c4, c5] Debug: [elpi] lp2term@5:X10 c0 c1 c2 c3 c4 Debug: [elpi] lp2term: evar: calldepth:0 X10 c0 c1 c2 c3 c4 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 Debug: [elpi] lp2term: evar: unknown: calldepth:0 X10 Debug: [elpi] lp2term: evar: create_unknown: whole ctx: ; (u : ?e) (K : ?e8) (K_S : ?e9) (_elpi_renamed_u_3 : ?e10) (x : ?e12) Debug: [elpi] lp2term: evar: create_unknown: visible ctx:c0 c1 c2 c3 c4 Debug: [elpi] restrict_conv_context: named: Debug: [elpi] restrict_conv_context: cur rel ctx: restrict_conv_context: cur subst: restrict_conv_context: looking at u(dbl 0) Debug: [elpi] ?e--0->?e Debug: [elpi] restrict_conv_context: cur rel ctx: (u : ?e) restrict_conv_context: cur subst: u restrict_conv_context: looking at K(dbl 1) Debug: [elpi] ?e8--0->?e8 Debug: [elpi] restrict_conv_context: cur rel ctx: (u : ?e) (K : ?e8) restrict_conv_context: cur subst: K u restrict_conv_context: looking at K_S(dbl 2) Debug: [elpi] ?e9--0->?e9 Debug: [elpi] restrict_conv_context: cur rel ctx: (u : ?e) (K : ?e8) (K_S : ?e9) restrict_conv_context: cur subst: K_S K u restrict_conv_context: looking at _elpi_renamed_u_3(dbl 3) Debug: [elpi] ?e10--0->?e10 Debug: [elpi] restrict_conv_context: cur rel ctx: (u : ?e) (K : ?e8) (K_S : ?e9) (_elpi_renamed_u_3 : ?e10) restrict_conv_context: cur subst: _elpi_renamed_u_3 K_S K u restrict_conv_context: looking at x(dbl 4) Debug: [elpi] ?e12--0->?e12 Debug: [elpi] lp2term: evar: create_unknown: restricted ctx:(u : ?e) (K : ?e8) (K_S : ?e9) (_elpi_renamed_u_3 : ?e10) (x : ?e12) Debug: [elpi] lp2term: evar: create_unknown: new link: ? |> |- ? = ?X55 EVARS: ?X55==[u K K_S _elpi_renamed_u_3 x |- Type] (internal placeholder) {?e13} ?X54==[u K K_S _elpi_renamed_u_3 |- Type] (internal placeholder) {?e12} ?X53==[u K K_S _elpi_renamed_u_3 |- Type] (internal placeholder) {?e11} ?X52==[u K K_S |- Type] (internal placeholder) {?e10} ?X51==[u K |- Type] (internal placeholder) {?e9} ?X50==[u |- Type] (internal placeholder) {?e8} ?X49==[u |- ?e6] (internal placeholder) {?e7} ?X48==[u |- Type] (internal placeholder) {?e6} ?X47==[u |- ?e4] (internal placeholder) {?e5} ?X46==[u |- Type] (internal placeholder) {?e4} ?X45==[u |- ?e2] (internal placeholder) {?e3} ?X44==[u |- Type] (internal placeholder) {?e2} ?X43==[u |- ?e0] (internal placeholder) {?e1} ?X42==[u |- Type] (internal placeholder) {?e0} ?X41==[ |- Type] (internal placeholder) {?e} UNIVERSES: {elpi_tests_stdlib.test_quotation.61 elpi_tests_stdlib.test_quotation.60 elpi_tests_stdlib.test_quotation.59 elpi_tests_stdlib.test_quotation.58 elpi_tests_stdlib.test_quotation.57 elpi_tests_stdlib.test_quotation.56 elpi_tests_stdlib.test_quotation.55 elpi_tests_stdlib.test_quotation.54 elpi_tests_stdlib.test_quotation.53 elpi_tests_stdlib.test_quotation.52 elpi_tests_stdlib.test_quotation.51} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α31 α32 α33 α34 α35 α36 α37 α38 α39 α40 α41 |= Prop -> SProp Type -> α31 -> α32 -> α33 -> α34 -> α35 -> α36 -> α37 -> α38 -> α39 -> α40 -> α41 -> Prop -> SProp WEAK CONSTRAINTS: SHELF: FUTURE GOALS STACK:?X55 ?X54 ?X53 ?X52 ?X51 ?X50 ?X49 ?X48 ?X47 ?X46 ?X45 ?X44 ?X43 ?X42 ?X41 Debug: [elpi] lp2term@5:X10 c0 c1 c2 c3 c4 Debug: [elpi] lp2term: evar: calldepth:0 X10 c0 c1 c2 c3 c4 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 Debug: [elpi] lp2term: evar: already in Coq: ?X55 Debug: [elpi] lp2term@5:c0 Debug: [elpi] lp2term@5:c1 Debug: [elpi] lp2term@5:c2 Debug: [elpi] lp2term@5:c3 Debug: [elpi] lp2term@5:c4 Debug: [elpi] lp2term@6:app [c2, c4, c5] Debug: [elpi] lp2term@6:c2 Debug: [elpi] lp2term@6:c4 Debug: [elpi] lp2term@6:c5 Debug: [elpi] lp2term: out=(fun u : ?e => {| val := oval u; Sub := ?e7; Sub_rect := fun (K : ?e8) (K_S : ?e9) (_elpi_renamed_u_3 : ?e10) => let () as u0 return ?e11@{u:=K; K:=K_S; K_S:=_elpi_renamed_u_3; _elpi_renamed_u_3:=u0} := _elpi_renamed_u_3 in fun (x : ?e12) (Px : ?e13) => K_S x Px |}) elpi2coq: RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 EVARS: ?X55==[u K K_S _elpi_renamed_u_3 x |- Type] (internal placeholder) {?e13} ?X54==[u K K_S _elpi_renamed_u_3 |- Type] (internal placeholder) {?e12} ?X53==[u K K_S _elpi_renamed_u_3 |- Type] (internal placeholder) {?e11} ?X52==[u K K_S |- Type] (internal placeholder) {?e10} ?X51==[u K |- Type] (internal placeholder) {?e9} ?X50==[u |- Type] (internal placeholder) {?e8} ?X49==[u |- ?e6] (internal placeholder) {?e7} ?X48==[u |- Type] (internal placeholder) {?e6} ?X47==[u |- ?e4] (internal placeholder) {?e5} ?X46==[u |- Type] (internal placeholder) {?e4} ?X45==[u |- ?e2] (internal placeholder) {?e3} ?X44==[u |- Type] (internal placeholder) {?e2} ?X43==[u |- ?e0] (internal placeholder) {?e1} ?X42==[u |- Type] (internal placeholder) {?e0} ?X41==[ |- Type] (internal placeholder) {?e} UNIVERSES: {elpi_tests_stdlib.test_quotation.61 elpi_tests_stdlib.test_quotation.60 elpi_tests_stdlib.test_quotation.59 elpi_tests_stdlib.test_quotation.58 elpi_tests_stdlib.test_quotation.57 elpi_tests_stdlib.test_quotation.56 elpi_tests_stdlib.test_quotation.55 elpi_tests_stdlib.test_quotation.54 elpi_tests_stdlib.test_quotation.53 elpi_tests_stdlib.test_quotation.52 elpi_tests_stdlib.test_quotation.51} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α31 α32 α33 α34 α35 α36 α37 α38 α39 α40 α41 α42 |= Prop -> SProp Type -> α31 -> α32 -> α33 -> α34 -> α35 -> α36 -> α37 -> α38 -> α39 -> α40 -> α41 -> α42 -> Prop -> SProp WEAK CONSTRAINTS: SHELF: FUTURE GOALS STACK: ?X55 ?X54 ?X53 ?X52 ?X51 ?X50 ?X49 ?X48 ?X47 ?X46 ?X45 ?X44 ?X43 ?X42 ?X41 Debug: [elpi] in_elpi_fresh_evar: unknown ?X41 <-> X0 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 Debug: [elpi] term2lp: depth=0 ctx= term=Type Debug: [elpi] term2lp (out): sort (typ «elpi_tests_stdlib.test_quotation.51») Debug: [elpi] in_elpi_evar_concl: moving Ctx down to0 Debug: [elpi] in_elpi_fresh_evar: new decl at depth:0 for ?X41 <-> X0 declare-evar [] X0 (sort (typ «elpi_tests_stdlib.test_quotation.51»)) X0 Debug: [elpi] in_elpi_fresh_evar: unknown ?X42 <-> X12 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 Debug: [elpi] term2lp: depth=1 ctx= term=?e Debug: [elpi] in_elpi_evar:?X41 Debug: [elpi] in_elpi_evar: known ?X41 as X0 Debug: [elpi] term2lp (out): X0 Debug: [elpi] term2lp: depth=1 ctx=u : ?e term=Type Debug: [elpi] term2lp (out): sort (typ «elpi_tests_stdlib.test_quotation.52») Debug: [elpi] in_elpi_evar_concl: moving Ctx down to1 Debug: [elpi] in_elpi_fresh_evar: new decl at depth:0 for ?X42 <-> X12 pi c0 \ declare-evar [decl c0 `u:r` X0] (X12 c0) (sort (typ «elpi_tests_stdlib.test_quotation.52»)) (X11 c0) Debug: [elpi] in_elpi_fresh_evar: unknown ?X43 <-> X1 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 Debug: [elpi] term2lp: depth=1 ctx= term=?e Debug: [elpi] in_elpi_evar:?X41 Debug: [elpi] in_elpi_evar: known ?X41 as X0 Debug: [elpi] term2lp (out): X0 Debug: [elpi] term2lp: depth=1 ctx=u : ?e term=?e0 Debug: [elpi] in_elpi_evar:?X42 Debug: [elpi] in_elpi_evar: known ?X42 as X11 Debug: [elpi] term2lp (out): X11 c0 Debug: [elpi] in_elpi_evar_concl: moving Ctx down to1 Debug: [elpi] in_elpi_fresh_evar: new decl at depth:0 for ?X43 <-> X1 pi c0 \ declare-evar [decl c0 `u:r` X0] (X1 c0) (X11 c0) (X1 c0) Debug: [elpi] in_elpi_fresh_evar: unknown ?X44 <-> X14 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 Debug: [elpi] term2lp: depth=1 ctx= term=?e Debug: [elpi] in_elpi_evar:?X41 Debug: [elpi] in_elpi_evar: known ?X41 as X0 Debug: [elpi] term2lp (out): X0 Debug: [elpi] term2lp: depth=1 ctx=u : ?e term=Type Debug: [elpi] term2lp (out): sort (typ «elpi_tests_stdlib.test_quotation.53») Debug: [elpi] in_elpi_evar_concl: moving Ctx down to1 Debug: [elpi] in_elpi_fresh_evar: new decl at depth:0 for ?X44 <-> X14 pi c0 \ declare-evar [decl c0 `u:r` X0] (X14 c0) (sort (typ «elpi_tests_stdlib.test_quotation.53»)) (X13 c0) Debug: [elpi] in_elpi_fresh_evar: unknown ?X45 <-> X2 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 Debug: [elpi] term2lp: depth=1 ctx= term=?e Debug: [elpi] in_elpi_evar:?X41 Debug: [elpi] in_elpi_evar: known ?X41 as X0 Debug: [elpi] term2lp (out): X0 Debug: [elpi] term2lp: depth=1 ctx=u : ?e term=?e2 Debug: [elpi] in_elpi_evar:?X44 Debug: [elpi] in_elpi_evar: known ?X44 as X13 Debug: [elpi] term2lp (out): X13 c0 Debug: [elpi] in_elpi_evar_concl: moving Ctx down to1 Debug: [elpi] in_elpi_fresh_evar: new decl at depth:0 for ?X45 <-> X2 pi c0 \ declare-evar [decl c0 `u:r` X0] (X2 c0) (X13 c0) (X2 c0) Debug: [elpi] in_elpi_fresh_evar: unknown ?X46 <-> X16 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 Debug: [elpi] term2lp: depth=1 ctx= term=?e Debug: [elpi] in_elpi_evar:?X41 Debug: [elpi] in_elpi_evar: known ?X41 as X0 Debug: [elpi] term2lp (out): X0 Debug: [elpi] term2lp: depth=1 ctx=u : ?e term=Type Debug: [elpi] term2lp (out): sort (typ «elpi_tests_stdlib.test_quotation.54») Debug: [elpi] in_elpi_evar_concl: moving Ctx down to1 Debug: [elpi] in_elpi_fresh_evar: new decl at depth:0 for ?X46 <-> X16 pi c0 \ declare-evar [decl c0 `u:r` X0] (X16 c0) (sort (typ «elpi_tests_stdlib.test_quotation.54»)) (X15 c0) Debug: [elpi] in_elpi_fresh_evar: unknown ?X47 <-> X3 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 Debug: [elpi] term2lp: depth=1 ctx= term=?e Debug: [elpi] in_elpi_evar:?X41 Debug: [elpi] in_elpi_evar: known ?X41 as X0 Debug: [elpi] term2lp (out): X0 Debug: [elpi] term2lp: depth=1 ctx=u : ?e term=?e4 Debug: [elpi] in_elpi_evar:?X46 Debug: [elpi] in_elpi_evar: known ?X46 as X15 Debug: [elpi] term2lp (out): X15 c0 Debug: [elpi] in_elpi_evar_concl: moving Ctx down to1 Debug: [elpi] in_elpi_fresh_evar: new decl at depth:0 for ?X47 <-> X3 pi c0 \ declare-evar [decl c0 `u:r` X0] (X3 c0) (X15 c0) (X3 c0) Debug: [elpi] in_elpi_fresh_evar: unknown ?X48 <-> X18 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 Debug: [elpi] term2lp: depth=1 ctx= term=?e Debug: [elpi] in_elpi_evar:?X41 Debug: [elpi] in_elpi_evar: known ?X41 as X0 Debug: [elpi] term2lp (out): X0 Debug: [elpi] term2lp: depth=1 ctx=u : ?e term=Type Debug: [elpi] term2lp (out): sort (typ «elpi_tests_stdlib.test_quotation.55») Debug: [elpi] in_elpi_evar_concl: moving Ctx down to1 Debug: [elpi] in_elpi_fresh_evar: new decl at depth:0 for ?X48 <-> X18 pi c0 \ declare-evar [decl c0 `u:r` X0] (X18 c0) (sort (typ «elpi_tests_stdlib.test_quotation.55»)) (X17 c0) Debug: [elpi] in_elpi_fresh_evar: unknown ?X49 <-> X4 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 Debug: [elpi] term2lp: depth=1 ctx= term=?e Debug: [elpi] in_elpi_evar:?X41 Debug: [elpi] in_elpi_evar: known ?X41 as X0 Debug: [elpi] term2lp (out): X0 Debug: [elpi] term2lp: depth=1 ctx=u : ?e term=?e6 Debug: [elpi] in_elpi_evar:?X48 Debug: [elpi] in_elpi_evar: known ?X48 as X17 Debug: [elpi] term2lp (out): X17 c0 Debug: [elpi] in_elpi_evar_concl: moving Ctx down to1 Debug: [elpi] in_elpi_fresh_evar: new decl at depth:0 for ?X49 <-> X4 pi c0 \ declare-evar [decl c0 `u:r` X0] (X4 c0) (X17 c0) (X4 c0) Debug: [elpi] in_elpi_fresh_evar: unknown ?X50 <-> X5 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 Debug: [elpi] term2lp: depth=1 ctx= term=?e Debug: [elpi] in_elpi_evar:?X41 Debug: [elpi] in_elpi_evar: known ?X41 as X0 Debug: [elpi] term2lp (out): X0 Debug: [elpi] term2lp: depth=1 ctx=u : ?e term=Type Debug: [elpi] term2lp (out): sort (typ «elpi_tests_stdlib.test_quotation.56») Debug: [elpi] in_elpi_evar_concl: moving Ctx down to1 Debug: [elpi] in_elpi_fresh_evar: new decl at depth:0 for ?X50 <-> X5 pi c0 \ declare-evar [decl c0 `u:r` X0] (X5 c0) (sort (typ «elpi_tests_stdlib.test_quotation.56»)) (X5 c0) Debug: [elpi] in_elpi_fresh_evar: unknown ?X51 <-> X6 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 Debug: [elpi] term2lp: depth=1 ctx= term=?e Debug: [elpi] in_elpi_evar:?X41 Debug: [elpi] in_elpi_evar: known ?X41 as X0 Debug: [elpi] term2lp (out): X0 Debug: [elpi] term2lp: depth=2 ctx=u : ?e term=?e8 Debug: [elpi] in_elpi_evar:?X50 Debug: [elpi] in_elpi_evar: known ?X50 as X5 Debug: [elpi] term2lp (out): X5 c0 Debug: [elpi] term2lp: depth=2 ctx=u : ?e K : ?e8 term=Type Debug: [elpi] term2lp (out): sort (typ «elpi_tests_stdlib.test_quotation.57») Debug: [elpi] in_elpi_evar_concl: moving Ctx down to2 Debug: [elpi] in_elpi_fresh_evar: new decl at depth:0 for ?X51 <-> X6 pi c0 c1 \ declare-evar [decl c1 `K:r` (X5 c0), decl c0 `u:r` X0] (X6 c0 c1) (sort (typ «elpi_tests_stdlib.test_quotation.57»)) (X6 c0 c1) Debug: [elpi] in_elpi_fresh_evar: unknown ?X52 <-> X7 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 Debug: [elpi] term2lp: depth=1 ctx= term=?e Debug: [elpi] in_elpi_evar:?X41 Debug: [elpi] in_elpi_evar: known ?X41 as X0 Debug: [elpi] term2lp (out): X0 Debug: [elpi] term2lp: depth=2 ctx=u : ?e term=?e8 Debug: [elpi] in_elpi_evar:?X50 Debug: [elpi] in_elpi_evar: known ?X50 as X5 Debug: [elpi] term2lp (out): X5 c0 Debug: [elpi] term2lp: depth=3 ctx=u : ?e K : ?e8 term=?e9 Debug: [elpi] in_elpi_evar:?X51 Debug: [elpi] in_elpi_evar: known ?X51 as X6 Debug: [elpi] term2lp (out): X6 c0 c1 Debug: [elpi] term2lp: depth=3 ctx=u : ?e K : ?e8 K_S : ?e9 term=Type Debug: [elpi] term2lp (out): sort (typ «elpi_tests_stdlib.test_quotation.58») Debug: [elpi] in_elpi_evar_concl: moving Ctx down to3 Debug: [elpi] in_elpi_fresh_evar: new decl at depth:0 for ?X52 <-> X7 pi c0 c1 c2 \ declare-evar [decl c2 `K_S:r` (X6 c0 c1), decl c1 `K:r` (X5 c0), decl c0 `u:r` X0] (X7 c0 c1 c2) (sort (typ «elpi_tests_stdlib.test_quotation.58»)) (X7 c0 c1 c2) Debug: [elpi] in_elpi_fresh_evar: unknown ?X53 <-> X8 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 Debug: [elpi] term2lp: depth=1 ctx= term=?e Debug: [elpi] in_elpi_evar:?X41 Debug: [elpi] in_elpi_evar: known ?X41 as X0 Debug: [elpi] term2lp (out): X0 Debug: [elpi] term2lp: depth=2 ctx=u : ?e term=?e8 Debug: [elpi] in_elpi_evar:?X50 Debug: [elpi] in_elpi_evar: known ?X50 as X5 Debug: [elpi] term2lp (out): X5 c0 Debug: [elpi] term2lp: depth=3 ctx=u : ?e K : ?e8 term=?e9 Debug: [elpi] in_elpi_evar:?X51 Debug: [elpi] in_elpi_evar: known ?X51 as X6 Debug: [elpi] term2lp (out): X6 c0 c1 Debug: [elpi] term2lp: depth=4 ctx=u : ?e K : ?e8 K_S : ?e9 term=?e10 Debug: [elpi] in_elpi_evar:?X52 Debug: [elpi] in_elpi_evar: known ?X52 as X7 Debug: [elpi] term2lp (out): X7 c0 c1 c2 Debug: [elpi] term2lp: depth=4 ctx=u : ?e K : ?e8 K_S : ?e9 _elpi_renamed_u_3 : ?e10 term=Type Debug: [elpi] term2lp (out): sort (typ «elpi_tests_stdlib.test_quotation.59») Debug: [elpi] in_elpi_evar_concl: moving Ctx down to4 Debug: [elpi] in_elpi_fresh_evar: new decl at depth:0 for ?X53 <-> X8 pi c0 c1 c2 c3 \ declare-evar [decl c3 `_elpi_renamed_u_3:r` (X7 c0 c1 c2), decl c2 `K_S:r` (X6 c0 c1), decl c1 `K:r` (X5 c0), decl c0 `u:r` X0] (X8 c0 c1 c2 c3) (sort (typ «elpi_tests_stdlib.test_quotation.59»)) (X8 c0 c1 c2 c3) Debug: [elpi] in_elpi_fresh_evar: unknown ?X54 <-> X9 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 Debug: [elpi] term2lp: depth=1 ctx= term=?e Debug: [elpi] in_elpi_evar:?X41 Debug: [elpi] in_elpi_evar: known ?X41 as X0 Debug: [elpi] term2lp (out): X0 Debug: [elpi] term2lp: depth=2 ctx=u : ?e term=?e8 Debug: [elpi] in_elpi_evar:?X50 Debug: [elpi] in_elpi_evar: known ?X50 as X5 Debug: [elpi] term2lp (out): X5 c0 Debug: [elpi] term2lp: depth=3 ctx=u : ?e K : ?e8 term=?e9 Debug: [elpi] in_elpi_evar:?X51 Debug: [elpi] in_elpi_evar: known ?X51 as X6 Debug: [elpi] term2lp (out): X6 c0 c1 Debug: [elpi] term2lp: depth=4 ctx=u : ?e K : ?e8 K_S : ?e9 term=?e10 Debug: [elpi] in_elpi_evar:?X52 Debug: [elpi] in_elpi_evar: known ?X52 as X7 Debug: [elpi] term2lp (out): X7 c0 c1 c2 Debug: [elpi] term2lp: depth=4 ctx=u : ?e K : ?e8 K_S : ?e9 _elpi_renamed_u_3 : ?e10 term=Type Debug: [elpi] term2lp (out): sort (typ «elpi_tests_stdlib.test_quotation.60») Debug: [elpi] in_elpi_evar_concl: moving Ctx down to4 Debug: [elpi] in_elpi_fresh_evar: new decl at depth:0 for ?X54 <-> X9 pi c0 c1 c2 c3 \ declare-evar [decl c3 `_elpi_renamed_u_3:r` (X7 c0 c1 c2), decl c2 `K_S:r` (X6 c0 c1), decl c1 `K:r` (X5 c0), decl c0 `u:r` X0] (X9 c0 c1 c2 c3) (sort (typ «elpi_tests_stdlib.test_quotation.60»)) (X9 c0 c1 c2 c3) Debug: [elpi] in_elpi_fresh_evar: unknown ?X55 <-> X10 RAW: ?X41 <-> X0 ?X42 <-> X12 ?X43 <-> X1 ?X44 <-> X14 ?X45 <-> X2 ?X46 <-> X16 ?X47 <-> X3 ?X48 <-> X18 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 ELAB: ?X41 <-> X0 ?X42 <-> X11 ?X43 <-> X1 ?X44 <-> X13 ?X45 <-> X2 ?X46 <-> X15 ?X47 <-> X3 ?X48 <-> X17 ?X49 <-> X4 ?X50 <-> X5 ?X51 <-> X6 ?X52 <-> X7 ?X53 <-> X8 ?X54 <-> X9 ?X55 <-> X10 Debug: [elpi] term2lp: depth=1 ctx= term=?e Debug: [elpi] in_elpi_evar:?X41 Debug: [elpi] in_elpi_evar: known ?X41 as X0 Debug: [elpi] term2lp (out): X0 Debug: [elpi] term2lp: depth=2 ctx=u : ?e term=?e8 Debug: [elpi] in_elpi_evar:?X50 Debug: [elpi] in_elpi_evar: known ?X50 as X5 Debug: [elpi] term2lp (out): X5 c0 Debug: [elpi] term2lp: depth=3 ctx=u : ?e K : ?e8 term=?e9 Debug: [elpi] in_elpi_evar:?X51 Debug: [elpi] in_elpi_evar: known ?X51 as X6 Debug: [elpi] term2lp (out): X6 c0 c1 Debug: [elpi] term2lp: depth=4 ctx=u : ?e K : ?e8 K_S : ?e9 term=?e10 Debug: [elpi] in_elpi_evar:?X52 Debug: [elpi] in_elpi_evar: known ?X52 as X7 Debug: [elpi] term2lp (out): X7 c0 c1 c2 Debug: [elpi] term2lp: depth=5 ctx=u : ?e K : ?e8 K_S : ?e9 _elpi_renamed_u_3 : ?e10 term= ?e12 Debug: [elpi] in_elpi_evar:?X54 Debug: [elpi] in_elpi_evar: known ?X54 as X9 Debug: [elpi] term2lp (out): X9 c0 c1 c2 c3 Debug: [elpi] term2lp: depth=5 ctx=u : ?e K : ?e8 K_S : ?e9 _elpi_renamed_u_3 : ?e10 x : ?e12 term=Type Debug: [elpi] term2lp (out): sort (typ «elpi_tests_stdlib.test_quotation.61») Debug: [elpi] in_elpi_evar_concl: moving Ctx down to5 Debug: [elpi] in_elpi_fresh_evar: new decl at depth:0 for ?X55 <-> X10 pi c0 c1 c2 c3 c4 \ declare-evar [decl c4 `x:r` (X9 c0 c1 c2 c3), decl c3 `_elpi_renamed_u_3:r` (X7 c0 c1 c2), decl c2 `K_S:r` (X6 c0 c1), decl c1 `K:r` (X5 c0), decl c0 `u:r` X0] (X10 c0 c1 c2 c3 c4) (sort (typ «elpi_tests_stdlib.test_quotation.61»)) (X10 c0 c1 c2 c3 c4) Debug: [elpi] Elpi: query-compilation:0.0140 static-check:0.0000 optimization:0.0002 runtime:0.0832 (with error) hd : forall A : Type, A -> list A -> A Debug: [elpi] gterm2lp: term=hd Debug: [elpi] Compiler cache: lookups=13, hits=7 Debug: [elpi] Compiler cache: lookups=0, hits=0 File "./tests-stdlib/test_quotation.v", line 32, characters 0-27: Warning: Using Vector.t is known to be technically difficult, see . [warn-library-file-stdlib-vector,stdlib-vector,warn-library-file,user-warn,default] File "./tests-stdlib/test_quotation.v", line 56, characters 6-14: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] eq_dec scheme for T: const «T_dec» Query assignments: GR = const «T_dec» ind_dep scheme for nat: const «nat_ind» Query assignments: GR = const «nat_ind» rect_dep scheme for nat: const «nat_rect» Query assignments: GR = const «nat_rect» eq_refl : d = 3 : d = 3 eq_refl : e = 4 : e = 4 foo = fun a b c : nat => a + b + c + d + e : nat -> nat -> nat -> nat Arguments foo a%_nat_scope [b]%_nat_scope {c}%_nat_scope Query assignments: %spill1_170 = const «foo» Coq version: 9.2 = 9 . 2 . 0 Query assignments: MA = 9 MI = 2 P = 0 V = 9.2 hello world A B Query assignments: GR = «nat» Query assignments: GR = «Nat.add» MP_ = «Corelib.Init.Datatypes» Query assignments: A_ = «elpi.tests.test_API.succ» GR = «Nat.add» MP_ = «Corelib.Init.Datatypes» X1 = [loc-gref (const «Nat.add»)] X2 = [loc-gref (const «Nat.add»)] X3 = [loc-abbreviation «elpi.tests.test_API.succ»] X4 = [loc-modpath «Corelib.Init.Datatypes»] Universe constraints: Query assignments: X_ = «elpi.tests.test_API.21» Universe constraints: UNIVERSES: {elpi.tests.test_API.21} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: X_ = X0 Y_ = X1 Universe constraints: UNIVERSES: {elpi.tests.test_API.23 elpi.tests.test_API.22} |= elpi.tests.test_API.22 <= elpi.tests.test_API.23 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: X_ = X0 Y_ = X1 Universe constraints: UNIVERSES: {elpi.tests.test_API.25 elpi.tests.test_API.24} |= elpi.tests.test_API.24 <= elpi.tests.test_API.25 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: X_ = X0 Y_ = X1 Z_ = X2 Universe constraints: UNIVERSES: {elpi.tests.test_API.29 elpi.tests.test_API.28 elpi.tests.test_API.27 elpi.tests.test_API.26} |= elpi.tests.test_API.26 <= elpi.tests.test_API.29 elpi.tests.test_API.27 <= elpi.tests.test_API.29 elpi.tests.test_API.28 <= elpi.tests.test_API.29 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: X_ = X0 Y_ = X1 Universe constraints: UNIVERSES: {elpi.tests.test_API.31 elpi.tests.test_API.30} |= elpi.tests.test_API.30 < elpi.tests.test_API.31 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: [foo (const «X»), foo (indt «nat»), foo (indt «bool»)] [foo (indt «nat»), foo (indt «bool»)] [] [foo (indt «nat»)] hello [int 1, int 2, trm (global (indt «nat»)), str x] coq.pp.box (coq.pp.hv 2) [coq.pp.str Module, coq.pp.spc, coq.pp.str Foo, coq.pp.spc, coq.pp.str :=, coq.pp.brk 1 0, coq.pp.str body, coq.pp.spc, coq.pp.str End Foo.] Module Foo := body End Foo. fix foo (x : ?e3) (y : ?e4) {struct x} : ?e2 := match x as _elpi_renamed_x_3 return ?e6 with | true => S (S (S O)) | false => y end fix foo (x : ?e11) (y : ?e12) {struct x} : ?e10 := if x as _elpi_renamed_x_3 return ?e14 then 3 else y File "./tests/test_API.v", line 76, characters 0-8: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] normP : forall {T : Type} {e : T} {op : T -> T -> T} {gamma : list T} {t1 t2 : lang}, (forall a b c : T, op a (op b c) = op (op a b) c) -> (forall a : T, op e a = a) -> (forall a : T, op a e = a) -> norm t1 = norm t2 -> interp T e op gamma t1 = interp T e op gamma t2 normP is not universe polymorphic Arguments normP {T}%_type_scope {e} {op}%_function_scope {gamma}%_list_scope {t1 t2} (p1 p2 p3)%_function_scope H normP is transparent Expands to: Constant elpi_examples_stdlib.example_reflexive_tactic.normP Declared in library elpi_examples_stdlib.example_reflexive_tactic, line 145, characters 11-16 (fun x y z t : Z => normP Z.add_assoc Z.add_0_l Z.add_0_r (eq_refl <: norm (add (add (var 0) (var 1)) (add (add (var 2) zero) (var 3))) = norm (add (add (var 0) (add (var 1) (var 2))) (var 3)))) File "./tests/perf_calls.v", line 11, characters 2-3: Warning: File "./tests/perf_calls.v", line 11, characters 2-3 N is linear: name it _N (discard) or N_ (fresh variable) [elpi.linear-variable,elpi.typecheck,elpi,default] File "./tests/perf_calls.v", line 13, characters 9-11: Warning: File "./tests/perf_calls.v", line 13, characters 9-11 GR is linear: name it _GR (discard) or GR_ (fresh variable) [elpi.linear-variable,elpi.typecheck,elpi,default] File "./tests/perf_calls.v", line 13, characters 7-8: Warning: File "./tests/perf_calls.v", line 13, characters 7-8 N is linear: name it _N (discard) or N_ (fresh variable) [elpi.linear-variable,elpi.typecheck,elpi,default] Query assignments: I = const «imp» X2.imp : forall (T : Type) (x : T), x = x -> Prop X2.imp is not universe polymorphic Arguments X2.imp T%_type_scope x _ Expands to: Constant elpi.tests.test_API_arguments.X2.imp Declared in library elpi.tests.test_API_arguments, line 9, characters 6-9 Query assignments: %spill1_170 = const «foo» foo 3 : nat Query assignments: %spill1_171 = const «f» %spill2_172 = const «f» %spill3_173 = const «f» %spill4_174 = const «f» %spill5_175 = const «f» f : forall [S : Type], S -> Prop f is not universe polymorphic Arguments f [S]%_type_scope _ (where some original arguments have been renamed) f is transparent Expands to: Constant elpi.tests.test_API_arguments.f Declared in library elpi.tests.test_API_arguments, line 40, characters 11-12 f (S:=bool * bool) : bool * bool -> Prop Query assignments: %spill1_176 = const «f» f : forall [S : Type], S -> Prop f is not universe polymorphic Arguments f [S]%_type_scope / _ (where some original arguments have been renamed) The reduction tactics unfold f when applied to 1 argument f is transparent Expands to: Constant elpi.tests.test_API_arguments.f Declared in library elpi.tests.test_API_arguments, line 40, characters 11-12 f (S:=bool * bool) : bool * bool -> Prop = fun x : bool => x = x : bool -> Prop Query assignments: E = fun `n:r` (global (indt «nat»)) c0 \ fun `t:r` (app [global (const «T2»), c0]) c1 \ fun `x:r` (app [global (const «f3»), c0, app [global (const «h»), c0, c1]]) c2 \ app [global (const «g3»), c0, app [global (const «h»), c0, c1], app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]] TY = prod `n:r` (global (indt «nat»)) c0 \ prod `t:r` (app [global (const «T2»), c0]) c1 \ prod `x:r` (app [global (const «f3»), c0, app [global (const «h»), c0, c1]]) c2 \ global (indt «nat») X1_ = X0 Universe constraints: UNIVERSES: {elpi.tests.test_API_elaborate.33 elpi.tests.test_API_elaborate.30 elpi.tests.test_API_elaborate.29} |= elpi.tests.test_API_elaborate.33 < elpi.tests.test_API_elaborate.29 Set <= elpi.tests.test_API_elaborate.30 Set <= elpi.tests.test_API_elaborate.33 T2.u0 <= elpi.tests.test_API_elaborate.33 f3.u0 <= elpi.tests.test_API_elaborate.33 ALGEBRAIC UNIVERSES: {elpi.tests.test_API_elaborate.30} FLEXIBLE UNIVERSES: elpi.tests.test_API_elaborate.30 SORTS: α4 := Type α5 := Type |= α4 <-> Type α5 <-> Type Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: E = app [global (const «bar»), app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]], global (const «xxx»)] TY = prop X2_ = X0 X3_ = X1 Query assignments: E = app [global (const «op»), global (const «c»), app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]] TY = app [global (const «field»), global (const «c»)] X4_ = X0 Universe constraints: UNIVERSES: {elpi.tests.test_API_elaborate.40 elpi.tests.test_API_elaborate.39} |= elpi.tests.test_API_elaborate.40 < elpi.tests.test_API_elaborate.39 s.u0 <= elpi.tests.test_API_elaborate.40 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α11 := Type |= α11 <-> Type Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: raw: parameter A explicit (global (const «T1»)) c0 \ inductive ind1 tt (parameter B explicit (sort (typ «elpi.tests.test_API_elaborate.41»)) c1 \ arity (sort (typ «elpi.tests.test_API_elaborate.43»))) c1 \ [constructor K1 (parameter B explicit (sort (typ «elpi.tests.test_API_elaborate.41»)) c2 \ arity (prod `_:r` (app [c1, c2]) c3 \ app [c1, c2])), constructor K2 (parameter B explicit (sort (typ «elpi.tests.test_API_elaborate.41»)) c2 \ arity (prod `_:r` (app [global (const «f1»), c0]) c3 \ app [c1, c2])), constructor K3 (parameter B explicit (sort (typ «elpi.tests.test_API_elaborate.41»)) c2 \ arity (prod `a:r` (app [global (const «f1»), c0]) c3 \ app [c1, c2]))] elab1: parameter A explicit (global (const «T1»)) c0 \ inductive ind1 tt (parameter B explicit (sort (typ «elpi.tests.test_API_elaborate.44»)) c1 \ arity (sort (typ «elpi.tests.test_API_elaborate.46»))) c1 \ [constructor K1 (parameter B explicit (sort (typ «elpi.tests.test_API_elaborate.50»)) c2 \ arity (prod `_:r` (app [c1, c2]) c3 \ app [c1, c2])), constructor K2 (parameter B explicit (sort (typ «elpi.tests.test_API_elaborate.52»)) c2 \ arity (prod `_:r` (app [global (const «f1»), c0]) c3 \ app [c1, c2])), constructor K3 (parameter B explicit (sort (typ «elpi.tests.test_API_elaborate.55»)) c2 \ arity (prod `a:r` (app [global (const «f1»), c0]) c3 \ app [c1, c2]))] elab2: parameter A explicit (global (const «T1»)) c0 \ parameter B explicit (sort (typ «ind1.u0»)) c1 \ inductive ind1 tt (arity (sort (typ «ind1.u1»))) c2 \ [constructor K1 (arity (prod `_:r` c2 c3 \ c2)), constructor K2 (arity (prod `_:r` (app [global (const «f1»), c0]) c3 \ c2)), constructor K3 (arity (prod `a:r` (app [global (const «f1»), c0]) c3 \ c2))] raw: parameter A explicit (global (const «T1»)) c0 \ record ind2 (sort (typ «f1.u0»)) Build_ind2 (field [coercion off, canonical tt] fld1 (app [global (const «f1»), c0]) c1 \ field [coercion off, canonical tt] fld2 (app [global (indt «eq»), app [global (const «f1»), c0], c1, c1]) c2 \ end-record) elab1: parameter A explicit (global (const «T1»)) c0 \ record ind2 (sort (typ «elpi.tests.test_API_elaborate.61»)) Build_ind2 (field [coercion off, canonical tt] fld1 (app [global (const «f1»), c0]) c1 \ field [coercion off, canonical tt] fld2 (app [global (indt «eq»), app [global (const «f1»), c0], c1, c1]) c2 \ end-record) elab2: parameter A explicit (global (const «T1»)) c0 \ record ind2 (sort (typ «ind2.u0»)) Build_ind2 (field [coercion off, canonical tt] fld1 (app [global (const «f1»), c0]) c1 \ field [coercion off, canonical tt] fld2 (app [global (indt «eq»), app [global (const «f1»), c0], c1, c1]) c2 \ end-record) raw: record ind3 (sort (typ «elpi.tests.test_API_elaborate.66»)) Build_ind3 (field [coercion reversible, canonical tt] fld3 (sort (typ «elpi.tests.test_API_elaborate.64»)) c0 \ field [coercion off, canonical tt] fld4 (prod `x:r` c0 c1 \ app [global (indt «eq»), c0, c1, c1]) c1 \ end-record) elab1: record ind3 (sort (typ «elpi.tests.test_API_elaborate.67»)) Build_ind3 (field [coercion reversible, canonical tt] fld3 (sort (typ «elpi.tests.test_API_elaborate.68»)) c0 \ field [coercion off, canonical tt] fld4 (prod `x:r` c0 c1 \ app [global (indt «eq»), c0, c1, c1]) c1 \ end-record) elab2: record ind3 (sort (typ «ind3.u0»)) Build_ind3 (field [coercion reversible, canonical tt] fld3 (sort (typ «ind3.u1»)) c0 \ field [coercion off, canonical tt] fld4 (prod `x:r` c0 c1 \ app [global (indt «eq»), c0, c1, c1]) c1 \ end-record) forall x : ind3, x -> Prop : Type Query assignments: E = app [global (const «op»), global (const «c»), app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]] TY = app [global (const «field»), global (const «c»)] Universe constraints: UNIVERSES: {elpi.tests.test_API_elaborate.76 elpi.tests.test_API_elaborate.75} |= elpi.tests.test_API_elaborate.76 < elpi.tests.test_API_elaborate.75 s.u0 <= elpi.tests.test_API_elaborate.76 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α55 := Type |= α55 <-> Type Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: unknown_gref «elpi.tests.test_API_elaborate.78» «elpi.tests.test_API_elaborate.78» File "./tests/test_API_elaborate.v", line 159, characters 19-20: Warning: File "./tests/test_API_elaborate.v", line 159, characters 19-20 Y is linear: name it _Y (discard) or Y_ (fresh variable) [elpi.linear-variable,elpi.typecheck,elpi,default] File "./tests/test_API_elaborate.v", line 169, characters 33-34: Warning: File "./tests/test_API_elaborate.v", line 169, characters 33-34 Y is linear: name it _Y (discard) or Y_ (fresh variable) [elpi.linear-variable,elpi.typecheck,elpi,default] The argument fun x : ?e => x + ?e1 was closed under 1 binders old replacement: fun (x : ?e) (y : ?e0) => x - y with fun (y : ?e1) (x : ?e2) => y + x new replacement: fun y : ?e0 => x - y with fun y : ?e1 => y + x Query assignments: GR = const «myi» Query assignments: GR = const «myi» myi : Reflexive R : Reflexive R Query assignments: GR = const «myi» Query assignments: L = [tc-instance (const «relation_equivalence_rewrite_relation») 0, tc-instance (const «iff_rewrite_relation») 2, tc-instance (const «impl_rewrite_relation») 3, tc-instance (const «inverse_impl_rewrite_relation») 3, tc-instance (const «Equivalence_PER») 10, tc-instance (const «relation_equivalence_equivalence») 0, tc-instance (const «predicate_equivalence_equivalence») 0, tc-instance (const «iff_equivalence») 0, tc-instance (const «eq_equivalence») 10, tc-instance (const «relation_implication_preorder») 0, tc-instance (const «predicate_implication_preorder») 0, tc-instance (const «Equivalence_PreOrder») 10, tc-instance (const «subrelation_partial_order») 0, tc-instance (const «iff_Transitive») 0, tc-instance (const «impl_Transitive») 0, tc-instance (const «eq_Transitive») 0, tc-instance (const «Equivalence_Transitive») 1, tc-instance (const «StrictOrder_Transitive») 1, tc-instance (const «PreOrder_Transitive») 2, tc-instance (const «PER_Transitive») 3, tc-instance (const «StrictOrder_Irreflexive») 1, tc-instance (const «StrictOrder_Asymmetric») 1, tc-instance (const «iff_Reflexive») 0, tc-instance (const «impl_Reflexive») 0, tc-instance (const «eq_Reflexive») 0, tc-instance (const «Equivalence_Reflexive») 1, tc-instance (const «PreOrder_Reflexive») 2, tc-instance (const «myi») 10, tc-instance (const «partial_order_antisym») 2, tc-instance (const «iff_Symmetric») 0, tc-instance (const «neq_Symmetric») 0, tc-instance (const «eq_Symmetric») 0, tc-instance (const «Equivalence_Symmetric») 1, tc-instance (const «PER_Symmetric») 3] Query assignments: GR = indt «RewriteRelation» L = [tc-instance (const «relation_equivalence_rewrite_relation») 0, tc-instance (const «iff_rewrite_relation») 2, tc-instance (const «impl_rewrite_relation») 3, tc-instance (const «inverse_impl_rewrite_relation») 3] Query assignments: GR = indt «RewriteRelation» Query assignments: GR = indt «True» Query assignments: Check = c0 \ sigma c1 \ c0 = expected c1 , std.mem [tc-instance (const «hint_c») 0, tc-instance (const «instance_c») 0, tc-instance (const «instance_g») 4, tc-instance (const «hint_g») 5] c1 Exp = [expected (tc-instance (const «hint_c») 0), expected (tc-instance (const «instance_c») 0), expected (tc-instance (const «instance_g») 4), expected (tc-instance (const «hint_g») 5)] L = [tc-instance (const «hint_c») 0, tc-instance (const «instance_c») 0, tc-instance (const «instance_g») 4, tc-instance (const «hint_g») 5] Query assignments: GR = const «myc» eq_op myc t t : bool Query assignments: L = [cs-instance (const «carrier») (cs-gref (const «W»)) (const «myc»), cs-instance (const «eq_op») (cs-gref (const «Z»)) (const «myc»)] Query assignments: I = «eq» P1 = «carrier» P2 = «eq_op» Query assignments: GR = const «myc1» eq_op myc1 t1 t1 : bool Query assignments: P = const «eq_op» Query assignments: W = const «W» [cs-instance (const «eq_op») (cs-gref (const «Z1»)) (const «myc1»)] Query assignments: L = [cs-instance (const «eq_op») (cs-gref (const «Z1»)) (const «myc1»)] P = const «eq_op» W = const «Z1» Query assignments: P = const «eq_op» W = indt «nat» Query assignments: C1 = const «C1» GR1 = const «c12» GR2 = const «c1t» GR3 = const «c1f» fun x : C1 => x : C2 : C1 -> C2 fun (x : C1) (_ : x) => true : forall x : C1, x -> bool fun x : C1 => x 3 : C1 -> nat Query assignments: L = [coercion (const «c1t») 0 (const «C1») sortclass, coercion (const «c1f») 0 (const «C1») funclass, coercion (const «c12») 0 (const «C1») (grefclass (const «C2»)), coercion (const «reverse_coercion») 3 (const «ReverseCoercionSource») (grefclass (const «ReverseCoercionTarget»))] Query assignments: %spill1_170 = const «nuc» nuc : forall x : nat, C1 -> C3 x nuc is not universe polymorphic Arguments nuc x%_nat_scope _ nuc is a reversible coercion Expands to: Constant elpi.tests.test_API_TC_CS.nuc Declared in library elpi.tests.test_API_TC_CS, line 162, characters 6-9 File "./tests/test_API_TC_CS.v", line 42, characters 0-30: Warning: There is an hint extern in the typeclass db: (*external*) (equiv_rewrite_relation R) [elpi.TC.hints,elpi,default] File "./tests/test_API_TC_CS.v", line 42, characters 0-30: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip_StrictOrder) [elpi.TC.hints,elpi,default] File "./tests/test_API_TC_CS.v", line 42, characters 0-30: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip_PreOrder) [elpi.TC.hints,elpi,default] File "./tests/test_API_TC_CS.v", line 42, characters 0-30: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @PartialOrder_inverse) [elpi.TC.hints,elpi,default] File "./tests/test_API_TC_CS.v", line 42, characters 0-30: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @subrelation_symmetric) [elpi.TC.hints,elpi,default] File "./tests/test_API_TC_CS.v", line 42, characters 0-30: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip_Transitive) [elpi.TC.hints,elpi,default] File "./tests/test_API_TC_CS.v", line 42, characters 0-30: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip_Irreflexive) [elpi.TC.hints,elpi,default] File "./tests/test_API_TC_CS.v", line 42, characters 0-30: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @complement_Irreflexive) [elpi.TC.hints,elpi,default] File "./tests/test_API_TC_CS.v", line 42, characters 0-30: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip_Asymmetric) [elpi.TC.hints,elpi,default] File "./tests/test_API_TC_CS.v", line 42, characters 0-30: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @irreflexivity) [elpi.TC.hints,elpi,default] File "./tests/test_API_TC_CS.v", line 42, characters 0-30: Warning: There is an hint extern in the typeclass db: (*external*) (apply flip_Reflexive) [elpi.TC.hints,elpi,default] File "./tests/test_API_TC_CS.v", line 42, characters 0-30: Warning: There is an hint extern in the typeclass db: (*external*) unconvertible [elpi.TC.hints,elpi,default] File "./tests/test_API_TC_CS.v", line 42, characters 0-30: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip_Antisymmetric) [elpi.TC.hints,elpi,default] File "./tests/test_API_TC_CS.v", line 42, characters 0-30: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip_Symmetric) [elpi.TC.hints,elpi,default] File "./tests/test_API_TC_CS.v", line 42, characters 0-30: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @complement_Symmetric) [elpi.TC.hints,elpi,default] File "./tests/test_API_TC_CS.v", line 43, characters 0-70: Warning: There is an hint extern in the typeclass db: (*external*) (equiv_rewrite_relation R) [elpi.TC.hints,elpi,default] Query q X0 Query r X0 Result r 1 Query assignments: CA = «a» CB = «b» CC = «c» d : nat d is not universe polymorphic Expands to: Variable d eq_refl : e2 = 3 : e2 = 3 Query assignments: X = «x» fx : nat -> nat : nat -> nat opaque_3 : nat opaque_3 is not universe polymorphic opaque_3 is opaque Expands to: Constant elpi.tests.test_API_section.opaque_3 Declared in library elpi.tests.test_API_section, line 44, characters 0-72 foo : nat : nat bar : bool -> nat : bool -> nat Query assignments: L = [[const «C_sind», const «C_rec», const «C_ind», const «C_rect», indt «C», const «b»], [const «a»]] Query assignments: L = [gref (indt «Empty_set»), gref (const «Empty_set_rect»), gref (const «Empty_set_ind»), gref (const «Empty_set_rec»), gref (const «Empty_set_sind»), gref (indt «unit»), gref (const «unit_rect»), gref (const «unit_ind»), gref (const «unit_rec»), gref (const «unit_sind»), gref (indt «bool»), gref (const «bool_rect»), gref (const «bool_ind»), gref (const «bool_rec»), gref (const «bool_sind»), gref (indt «reflect»), gref (const «reflect_rect»), gref (const «reflect_ind»), gref (const «reflect_rec»), gref (const «reflect_sind»), gref (const «andb»), gref (const «orb»), gref (const «implb»), gref (const «xorb»), gref (const «negb»), gref (const «andb_prop»), gref (const «andb_true_intro»), gref (indt «eq_true»), gref (const «eq_true_rect»), gref (const «eq_true_ind»), gref (const «eq_true_rec»), gref (const «eq_true_sind»), gref (const «eq_true_rew»), gref (const «eq_true_rew_dep»), gref (const «eq_true_rew_fwd_dep»), gref (const «eq_true_rew_r»), gref (const «is_true»), gref (const «eq_true_ind_r»), gref (const «eq_true_rec_r»), gref (const «eq_true_rect_r»), gref (indt «BoolSpec»), gref (const «BoolSpec_ind»), gref (const «BoolSpec_sind»), gref (indt «nat»), gref (const «nat_rect»), gref (const «nat_ind»), gref (const «nat_rec»), gref (const «nat_sind»), gref (indt «option»), gref (const «option_rect»), gref (const «option_ind»), gref (const «option_rec»), gref (const «option_sind»), gref (const «option_map»), gref (indt «sum»), gref (const «sum_rect»), gref (const «sum_ind»), gref (const «sum_rec»), gref (const «sum_sind»), gref (indt «result»), gref (const «result_rect»), gref (const «result_ind»), gref (const «result_rec»), gref (const «result_sind»), gref (indt «prod»), gref (const «prod_rect»), gref (const «prod_ind»), gref (const «prod_rec»), gref (const «prod_sind»), gref (const «fst»), gref (const «snd»), gref (const «surjective_pairing»), gref (const «injective_projections»), gref (const «pair_equal_spec»), gref (const «curry»), gref (const «uncurry»), gref (const «rew_pair»), gref (indt «list»), gref (const «list_rect»), gref (const «list_ind»), gref (const «list_rec»), gref (const «list_sind»), gref (const «length»), gref (const «app»), gref (indt «comparison»), gref (const «comparison_rect»), gref (const «comparison_ind»), gref (const «comparison_rec»), gref (const «comparison_sind»), gref (const «comparison_eq_stable»), gref (const «CompOpp»), gref (const «CompOpp_involutive»), gref (const «CompOpp_inj»), gref (const «CompOpp_iff»), gref (indt «CompareSpec»), gref (const «CompareSpec_ind»), gref (const «CompareSpec_sind»), gref (indt «CompareSpecT»), gref (const «CompareSpecT_rect»), gref (const «CompareSpecT_ind»), gref (const «CompareSpecT_rec»), gref (const «CompareSpecT_sind»), gref (const «CompareSpec2Type»), gref (const «CompSpec»), gref (const «CompSpecT»), gref (const «CompSpec2Type»), gref (const «ID»), gref (const «id»), gref (const «IDProp»), gref (const «idProp»)] MP = «Corelib.Init.Datatypes» elpi.tests.test_API_module.X.i [elpi, tests, test_API_module, X, Y] [elpi, tests, test_API_module, X, Y] Query assignments: %spill1_170 = elpi.tests.test_API_module.X.i %spill2_171 = elpi.tests.test_API_module.X.i %spill3_172 = elpi.tests.test_API_module.X.Y.i %spill4_173 = [elpi, tests, test_API_module, X, Y] %spill5_174 = [elpi, tests, test_API_module, X, Y] L = [gref (indt «X.i»), gref (const «X.i_rect»), gref (const «X.i_ind»), gref (const «X.i_rec»), gref (const «X.i_sind»), gref (const «X.d»), submodule «elpi.tests.test_API_module.X.Y» [gref (indt «X.Y.i»), gref (const «X.Y.i_rect»), gref (const «X.Y.i_ind»), gref (const «X.Y.i_rec»), gref (const «X.Y.i_sind»), gref (const «X.Y.d»)]] MP = «elpi.tests.test_API_module.X» XYi = «X.Y.i» XYr = «X.Y.i_rect» Xi = «X.i» Query assignments: I = «Y.i» ID = j J = «Y.j» MP = «elpi.tests.test_API_module.Y» P = [elpi, tests, test_API_module, Y] Query assignments: Mp_ta = «elpi.tests.test_API_module.TA» Query assignments: GRy = EXN PRINTING: Not_found I = EXN PRINTING: Not_found L = [gref (const «A.z»), gref (const «A.i»)] MP = «elpi.tests.test_API_module.A» MP_TA = «elpi.tests.test_API_module.TA» X1_ = «TA.i.u0» X2_ = «A.i1.u0» Module A : TA := Struct Definition x : nat. Module B Definition z : nat. Inductive i1 : Type := . Definition i1_rect : forall (P : elpi.tests.test_API_module.A.i1 -> Type) (i : elpi.tests.test_API_module.A.i1), P i. Definition i1_ind : forall (P : elpi.tests.test_API_module.A.i1 -> Prop) (i : elpi.tests.test_API_module.A.i1), P i. Definition i1_rec : forall (P : elpi.tests.test_API_module.A.i1 -> Set) (i : elpi.tests.test_API_module.A.i1), P i. Definition i1_sind : forall (P : elpi.tests.test_API_module.A.i1 -> SProp) (i : elpi.tests.test_API_module.A.i1), P i. Definition i : Type. End A.z : nat A.i : Type *** [ A.i : Type ] Query assignments: A = «elpi.tests.test_API_module.a» MP_TA = «elpi.tests.test_API_module.TA» TF = «elpi.tests.test_API_module.TF» Query assignments: MP_TA = «elpi.tests.test_API_module.TA» MP_TF = «elpi.tests.test_API_module.TF» Module F : Funsig (a:TA) Funsig (b:TA) TF := Functor (a:TA) Functor (b:TA) Struct Definition w : nat. End Module B : Sig Parameter w : nat. End := (F A A) *** [ B.w : nat ] Query assignments: MP_TA = «elpi.tests.test_API_module.TA» Module Type TB = Funsig (A:TA) Sig End Query assignments: A = «elpi.tests.test_API_module.A» Query assignments: %spill1_175 = «elpi.tests.test_API_module.A» Module IA := Struct Definition z : nat. Definition i : Type. End Query assignments: %spill1_176 = «elpi.tests.test_API_module.IA» i : Type Query assignments: %spill1_177 = «elpi.tests.test_API_module.TA» Module Type ITA = Sig Parameter z : nat. Parameter i : Type. End Query assignments: F = «elpi.tests.test_API_module.R.F» FT = «elpi.tests.test_API_module.R.FT» L = [submodule «elpi.tests.test_API_module.R.S» [gref (const «R.S.x»)], module-type «elpi.tests.test_API_module.R.P1», module-type «elpi.tests.test_API_module.R.P2», «elpi.tests.test_API_module.R.F» module-functor [«elpi.tests.test_API_module.R.P1», «elpi.tests.test_API_module.R.P2»], «elpi.tests.test_API_module.R.FT» module-type-functor [«elpi.tests.test_API_module.R.P2», «elpi.tests.test_API_module.R.P1»], gref (const «R.a»)] P1 = «elpi.tests.test_API_module.R.P1» P2 = «elpi.tests.test_API_module.R.P2» R = «elpi.tests.test_API_module.R» S = «elpi.tests.test_API_module.R.S» it = I : True 1 goal (?e0) ============================ True /\ ?B it2 = conj I I : True /\ True it3 = fun x : nat => eq_sym (plus_n_O x) : forall x : nat, x + 0 = x Arguments it3 x%_nat_scope it4 = fun x : nat => eq_trans (eq_ind_r (fun n : nat => n = 0 + x) eq_refl (plus_comm x 0)) (eq_ind_r (eq (0 + x)) (plus_n_O x) (plus_n_O x)) : forall x : nat, x + 0 = x Arguments it4 x%_nat_scope it5 = fun x : nat => eq_refl : forall x : nat, x = x Arguments it5 x%_nat_scope foo = I : True 1 goal (?e0) ============================ True Query assignments: BO = fix `add:r` 0 (prod `n:r` (global (indt «nat»)) c0 \ prod `m:r` (global (indt «nat»)) c1 \ global (indt «nat»)) c0 \ fun `n:r` (global (indt «nat»)) c1 \ fun `m:r` (global (indt «nat»)) c2 \ match c1 (fun `n:r` (global (indt «nat»)) c3 \ global (indt «nat»)) [c2, fun `p:r` (global (indt «nat»)) c3 \ app [global (indc «S»), app [c0, c3, c2]]] GR = «Nat.add» TY = prod `n:r` (global (indt «nat»)) c0 \ prod `m:r` (global (indt «nat»)) c1 \ global (indt «nat») c2 global (indt «nat») z nat Query assignments: T = global (indt «nat») c2 global (indt «nat») z nat Query assignments: T = global (indt «nat») Illegal application (Non-functional construction): The expression "Prop" of type "Type" cannot be applied to the term "Prop" : "Type" Query assignments: E = Illegal application (Non-functional construction): The expression "Prop" of type "Type" cannot be applied to the term "Prop" : "Type" Unable to unify "bool" with "nat". Query assignments: Msg = Unable to unify "bool" with "nat". Query assignments: Cons = global (indc «cons») GRCons = indc «cons» GRList = indt «list» GRNat = indt «nat» GRNil = indc «nil» GRZero = indc «O» L = app [global (indc «cons»), global (indt «nat»), global (indc «O»), app [global (indc «nil»), global (indt «nat»)]] LE = app [global (indc «cons»), global (indt «nat»), global (indc «O»), app [global (indc «nil»), global (indt «nat»)]] List = global (indt «list») Nat = global (indt «nat») Nil = global (indc «nil») Zero = global (indc «O») Universe constraints: UNIVERSES: {elpi.tests.test_API_typecheck.24 elpi.tests.test_API_typecheck.23 elpi.tests.test_API_typecheck.22 elpi.tests.test_API_typecheck.21} |= elpi.tests.test_API_typecheck.23 < elpi.tests.test_API_typecheck.22 elpi.tests.test_API_typecheck.24 < elpi.tests.test_API_typecheck.21 Set <= elpi.tests.test_API_typecheck.23 Set <= elpi.tests.test_API_typecheck.24 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: elpi.tests.test_API_typecheck.24 elpi.tests.test_API_typecheck.23 SORTS: α2 := Type α3 := Type α4 α5 |= α2 <-> Type α3 <-> Type Prop -> SProp Type -> α4 -> α5 -> Prop -> SProp WEAK CONSTRAINTS: global (indt «nat») Query assignments: T = global (indt «nat») X1_ = global (indt «nat») X2_ = global (indt «nat») Universe constraints: UNIVERSES: {elpi.tests.test_API_typecheck.29 elpi.tests.test_API_typecheck.28 elpi.tests.test_API_typecheck.27 elpi.tests.test_API_typecheck.26 elpi.tests.test_API_typecheck.25} |= Set < elpi.tests.test_API_typecheck.27 elpi.tests.test_API_typecheck.28 < elpi.tests.test_API_typecheck.26 elpi.tests.test_API_typecheck.29 < elpi.tests.test_API_typecheck.25 Set <= elpi.tests.test_API_typecheck.28 Set <= elpi.tests.test_API_typecheck.29 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: elpi.tests.test_API_typecheck.29 elpi.tests.test_API_typecheck.28 SORTS: α6 := Type α7 := Type α8 := Type α9 α10 |= α6 <-> Type α7 <-> Type α8 <-> Type Prop -> SProp Type -> α9 -> α10 -> Prop -> SProp WEAK CONSTRAINTS: «elpi.tests.test_API_typecheck.30» Query assignments: U = «elpi.tests.test_API_typecheck.30» Universe constraints: UNIVERSES: {elpi.tests.test_API_typecheck.30} |= Set <= elpi.tests.test_API_typecheck.30 ALGEBRAIC UNIVERSES: {elpi.tests.test_API_typecheck.30} FLEXIBLE UNIVERSES: elpi.tests.test_API_typecheck.30 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Unable to unify "Set" with "Prop" (universe inconsistency: Cannot enforce Set <= Prop). Query assignments: E = Unable to unify "Set" with "Prop" (universe inconsistency: Cannot enforce Set <= Prop). «elpi.tests.test_API_notations.abbr» Query assignments: A = «elpi.tests.test_API_notations.abbr» X1_ = X0 X2_ = c0 \ X1 c0 X3_ = c0 \ X2 c0 Syntactic constraints: {c0} : decl c0 `x:r` X0 ?- evar (X2 c0) (X3 c0) (X2 c0) /* suspended on X2 */ {c0} : decl c0 `x:r` X0 ?- evar (X4 c0) (sort (typ «elpi.tests.test_API_notations.23»)) (X3 c0) /* suspended on X4, X3 */ {c0} : decl c0 `x:r` X0 ?- evar (X1 c0) (sort (typ «elpi.tests.test_API_notations.22»)) (X1 c0) /* suspended on X1 */ evar X0 (sort (typ «elpi.tests.test_API_notations.21»)) X0 /* suspended on X0 */ Universe constraints: UNIVERSES: {elpi.tests.test_API_notations.23 elpi.tests.test_API_notations.22 elpi.tests.test_API_notations.21} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α1 α2 α3 |= Prop -> SProp Type -> α1 -> α2 -> α3 -> Prop -> SProp WEAK CONSTRAINTS: Notation abbr _elpi_ctx_entry_2_was_x_ _elpi_ctx_entry_1_ := (_elpi_ctx_entry_2_was_x_ = _elpi_ctx_entry_2_was_x_) Expands to: Notation elpi.tests.test_API_notations.abbr Declared in library elpi.tests.test_API_notations, line 7, characters 0-112 4 = 4 : Prop Query assignments: X4_ = X0 X5_ = c0 \ X1 c0 X6_ = c0 \ X2 c0 Syntactic constraints: {c0} : decl c0 `x:r` X0 ?- evar (X2 c0) (X3 c0) (X2 c0) /* suspended on X2 */ {c0} : decl c0 `x:r` X0 ?- evar (X4 c0) (sort (typ «elpi.tests.test_API_notations.27»)) (X3 c0) /* suspended on X4, X3 */ {c0} : decl c0 `x:r` X0 ?- evar (X1 c0) (sort (typ «elpi.tests.test_API_notations.26»)) (X1 c0) /* suspended on X1 */ evar X0 (sort (typ «elpi.tests.test_API_notations.25»)) X0 /* suspended on X0 */ Universe constraints: UNIVERSES: {elpi.tests.test_API_notations.27 elpi.tests.test_API_notations.26 elpi.tests.test_API_notations.25} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α4 α5 α6 |= Prop -> SProp Type -> α4 -> α5 -> α6 -> Prop -> SProp WEAK CONSTRAINTS: Notation abbr2 _elpi_ctx_entry_1_was_x_ := (fun _ => _elpi_ctx_entry_1_was_x_ = _elpi_ctx_entry_1_was_x_) Expands to: Notation elpi.tests.test_API_notations.abbr2 Declared in library elpi.tests.test_API_notations, line 16, characters 0-94 (fun _ : nat => 2 = 2) 3 : Prop fun `_:r` X0 c0 \ app [global (indt «eq»), X1, fun `x:r` X2 c1 \ c1, fun `x:r` X2 c1 \ c1] Query assignments: %spill1_170 = «elpi.tests.test_API_notations.abbr2» T = fun `_:r` X0 c0 \ app [global (indt «eq»), X1, fun `x:r` X2 c1 \ c1, fun `x:r` X2 c1 \ c1] X7_ = X2 Query assignments: %spill1_171 = «elpi.tests.test_API_notations.abbr2» Query assignments: BO = fix `add:r` 0 (prod `n:r` (global (indt «nat»)) c0 \ prod `m:r` (global (indt «nat»)) c1 \ global (indt «nat»)) c0 \ fun `n:r` (global (indt «nat»)) c1 \ fun `m:r` (global (indt «nat»)) c2 \ match c1 (fun `n:r` (global (indt «nat»)) c3 \ global (indt «nat»)) [c2, fun `p:r` (global (indt «nat»)) c3 \ app [global (indc «S»), app [c0, c3, c2]]] GR = «Nat.add» GRNat = indt «nat» GRSucc = indc «S» Nat = global (indt «nat») Succ = global (indc «S») TY = prod `n:r` (global (indt «nat»)) c0 \ prod `m:r` (global (indt «nat»)) c1 \ global (indt «nat») Query assignments: GR = «empty_nat» TY = global (indt «nat») Query assignments: GR1 = indc «Vector.nil» GR2 = indt «nat» GR3 = const «A» add_equal Query assignments: %spill1_170 = add_equal %spill2_171 = add_equal BO = fix `add:r` 0 (prod `n:r` (global (indt «nat»)) c0 \ prod `m:r` (global (indt «nat»)) c1 \ global (indt «nat»)) c0 \ fun `n:r` (global (indt «nat»)) c1 \ fun `m:r` (global (indt «nat»)) c2 \ match c1 (fun `n:r` (global (indt «nat»)) c3 \ global (indt «nat»)) [c2, fun `p:r` (global (indt «nat»)) c3 \ app [global (indc «S»), app [c0, c3, c2]]] GR = «Nat.add» NGR = «add_equal» Name = add_equal S = add TY = prod `n:r` (global (indt «nat»)) c0 \ prod `m:r` (global (indt «nat»)) c1 \ global (indt «nat») add_equal : nat -> nat -> nat add_equal is not universe polymorphic Arguments add_equal (n m)%_nat_scope add_equal is opaque Expands to: Constant elpi_tests_stdlib.test_API_env.add_equal Declared in library elpi_tests_stdlib.test_API_env, line 44, characters 0-358 «myfalse» Query assignments: F = indt «False» GR = «myfalse» myfalse : False parameter T X0 (sort (typ X1)) c0 \ record eq_class (sort (typ X2)) mk_eq_class (field [canonical ff, coercion regular] eq_f (global (indt «bool»)) c1 \ field X3 eq_proof (app [global (indt «eq»), global (indt «bool»), c1, c1]) c2 \ end-record) Query assignments: DECL = parameter T X0 (sort (typ «eq_class.u0»)) c0 \ record eq_class (sort (typ «eq_class.u1»)) mk_eq_class (field [canonical ff, coercion regular] eq_f (global (indt «bool»)) c1 \ field X3 eq_proof (app [global (indt «eq»), global (indt «bool»), c1, c1]) c2 \ end-record) GR = «eq_class» X1_ = «eq_class.u0» X2_ = «eq_class.u1» Record eq_class (T : Type@{eq_class.u0}) : Type@{eq_class.u1} := mk_eq_class { eq_f : bool; eq_proof : eq_f = eq_f }. Arguments eq_class T%_type_scope Arguments mk_eq_class T%_type_scope eq_f%_bool_scope eq_proof Arguments eq_f T%_type_scope record Arguments eq_proof T%_type_scope record fun x : eq_class nat => x : bool : eq_class nat -> bool p <- eq_proof ( xxx ) Query assignments: DECL = parameter T X0 (sort (typ «prim_eq_class.u0»)) c0 \ record prim_eq_class (sort (typ «prim_eq_class.u1»)) mk_prim_eq_class (field [canonical ff, coercion reversible] prim_eq_f (global (indt «bool»)) c1 \ field X1 prim_eq_proof (app [global (indt «eq»), global (indt «bool»), c1, c1]) c2 \ end-record) GR = «prim_eq_class» X3_ = «prim_eq_class.u0» X4_ = «prim_eq_class.u1» fun r : prim_eq_class nat => eq_refl : r = {| prim_eq_f := r; prim_eq_proof := prim_eq_proof _ r |} : forall r : prim_eq_class nat, r = {| prim_eq_f := r; prim_eq_proof := prim_eq_proof _ r |} fun `r:r` (app [global (indt «prim_eq_class»), global (indt «nat»)]) c0 \ app [primitive (proj elpi_tests_stdlib.test_API_env.prim_eq_f 1), c0] Query assignments: C = «pc» myind true false : Prop : Prop K2 true : myind true true : myind true true myind1 true false : Prop : Prop K21 true : myind1 true true : myind1 true true Query assignments: X6_ = «nuind.u0» X7_ = «nuind.u1» fun x : nuind nat 3 false => match x in nuind _ _ b return b = b with | k1 _ _ => eq_refl : true = true | k2 _ _ x0 => (fun _ : nuind nat 1 false => eq_refl : false = false) x0 end : nuind nat 3 false -> false = false c0 global (indt «nat») Query assignments: T = global (indt «nat») Query assignments: D = parameter A X0 (sort (typ «tx.u0»)) c0 \ inductive tx X1 (parameter y X2 (global (indt «nat»)) c1 \ arity (prod `_:r` (global (indt «bool»)) c2 \ sort (typ «tx.u1»))) c1 \ [constructor K1x (parameter y X3 (global (indt «nat»)) c2 \ arity (prod `x:r` c0 c3 \ prod `n:r` (global (indt «nat»)) c4 \ prod `p:r` (app [global (indt «eq»), global (indt «nat»), app [global (indc «S»), c4], c2]) c5 \ prod `e:r` (app [c1, c4, global (indc «true»)]) c6 \ app [c1, c2, global (indc «true»)])), constructor K2x (parameter y X4 (global (indt «nat»)) c2 \ arity (app [c1, c2, global (indc «false»)]))] X8_ = «tx.u0» X9_ = «tx.u1» Universe constraints: UNIVERSES: {elpi_tests_stdlib.test_API_env.48 elpi_tests_stdlib.test_API_env.47 elpi_tests_stdlib.test_API_env.46 elpi_tests_stdlib.test_API_env.45 elpi_tests_stdlib.test_API_env.44 elpi_tests_stdlib.test_API_env.43 elpi_tests_stdlib.test_API_env.41} |= tx.u0 < elpi_tests_stdlib.test_API_env.41 tx.u1 < elpi_tests_stdlib.test_API_env.43 Set <= elpi_tests_stdlib.test_API_env.43 Set <= elpi_tests_stdlib.test_API_env.44 Set <= elpi_tests_stdlib.test_API_env.45 Set <= elpi_tests_stdlib.test_API_env.46 Set <= elpi_tests_stdlib.test_API_env.47 Set <= elpi_tests_stdlib.test_API_env.48 tx.u0 <= elpi_tests_stdlib.test_API_env.44 tx.u1 <= elpi_tests_stdlib.test_API_env.44 elpi_tests_stdlib.test_API_env.44 <= tx.u1 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α29 := Type α30 := Type α31 := Type α32 := Type α33 α34 α35 α36 α37 α38 |= α29 <-> Type α30 <-> Type α31 <-> Type α32 <-> Type Prop -> SProp Type -> α33 -> α34 -> α35 -> α36 -> α37 -> α38 -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: D = parameter A explicit (sort (typ «ind1.u0»)) c0 \ parameter a explicit c0 c1 \ inductive ind1 tt (parameter B explicit (sort (typ «ind1.u1»)) c2 \ parameter b explicit c2 c3 \ arity (prod `C:r` (sort (typ «ind1.u2»)) c4 \ prod `_:r` c4 c5 \ sort (typ «elpi_tests_stdlib.test_API_env.66»))) c2 \ [constructor k1 (parameter B explicit (sort (typ «ind1.u1»)) c3 \ parameter b explicit c3 c4 \ arity (prod `bb:r` (app [global (indt «prod»), c3, c3]) c5 \ prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c5, global (indt «bool»), global (indc «true»)]) c6 \ app [c2, c3, c4, global (indt «unit»), global (indc «tt»)])), constructor k2 (parameter B explicit (sort (typ «ind1.u1»)) c3 \ parameter b explicit c3 c4 \ arity (app [c2, c3, c4, global (indt «nat»), app [global (indc «S»), global (indc «O»)]]))] D1 = parameter A explicit (sort (typ «ind1.u0»)) c0 \ parameter a explicit c0 c1 \ inductive ind1 tt (parameter B explicit (sort (typ «ind1.u1»)) c2 \ parameter b explicit c2 c3 \ arity (prod `C:r` (sort (typ «ind1.u2»)) c4 \ prod `_:r` c4 c5 \ sort (typ «elpi_tests_stdlib.test_API_env.66»))) c2 \ [constructor k1 (parameter B explicit (sort (typ «ind1.u1»)) c3 \ parameter b explicit c3 c4 \ arity (prod `bb:r` (app [global (indt «prod»), c3, c3]) c5 \ prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c5, global (indt «bool»), global (indc «true»)]) c6 \ app [c2, c3, c4, global (indt «unit»), global (indc «tt»)])), constructor k2 (parameter B explicit (sort (typ «ind1.u1»)) c3 \ parameter b explicit c3 c4 \ arity (app [c2, c3, c4, global (indt «nat»), app [global (indc «S»), global (indc «O»)]]))] I = «ind1» U = «elpi_tests_stdlib.test_API_env.66» UA = «ind1.u0» UB1 = «ind1.u1» UB2 = «ind1.u1» UB3 = «ind1.u1» UC = «ind1.u2» Universe constraints: UNIVERSES: {elpi_tests_stdlib.test_API_env.66} |= Set <= elpi_tests_stdlib.test_API_env.66 ind1.u1 <= elpi_tests_stdlib.test_API_env.66 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α46 α47 α48 α49 α50 α51 α52 α53 |= Prop -> SProp Type -> α46 -> α47 -> α48 -> α49 -> α50 -> α51 -> α52 -> α53 -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: D = parameter A explicit (sort (typ «ind1.u0»)) c0 \ parameter a explicit c0 c1 \ inductive ind1 tt (parameter B explicit (sort (typ «ind1.u1»)) c2 \ parameter b explicit c2 c3 \ arity (prod `C:r` (sort (typ «ind1.u2»)) c4 \ prod `_:r` c4 c5 \ sort (typ «elpi_tests_stdlib.test_API_env.67»))) c2 \ [constructor k1 (parameter B explicit (sort (typ «ind1.u1»)) c3 \ parameter b explicit c3 c4 \ parameter bb implicit (app [global (indt «prod»), c3, c3]) c5 \ arity (prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c5, global (indt «bool»), global (indc «true»)]) c6 \ app [c2, c3, c4, global (indt «unit»), global (indc «tt»)])), constructor k2 (parameter B explicit (sort (typ «ind1.u1»)) c3 \ parameter b explicit c3 c4 \ arity (app [c2, c3, c4, global (indt «nat»), app [global (indc «S»), global (indc «O»)]]))] D1 = parameter A explicit (sort (typ «ind1.u0»)) c0 \ parameter a explicit c0 c1 \ inductive ind1 tt (parameter B explicit (sort (typ «ind1.u1»)) c2 \ parameter b explicit c2 c3 \ arity (prod `C:r` (sort (typ «ind1.u2»)) c4 \ prod `_:r` c4 c5 \ sort (typ «elpi_tests_stdlib.test_API_env.67»))) c2 \ [constructor k1 (parameter B explicit (sort (typ «ind1.u1»)) c3 \ parameter b explicit c3 c4 \ parameter bb implicit (app [global (indt «prod»), c3, c3]) c5 \ arity (prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c5, global (indt «bool»), global (indc «true»)]) c6 \ app [c2, c3, c4, global (indt «unit»), global (indc «tt»)])), constructor k2 (parameter B explicit (sort (typ «ind1.u1»)) c3 \ parameter b explicit c3 c4 \ arity (app [c2, c3, c4, global (indt «nat»), app [global (indc «S»), global (indc «O»)]]))] I = «ind1» U = «elpi_tests_stdlib.test_API_env.67» UA = «ind1.u0» UB1 = «ind1.u1» UB2 = «ind1.u1» UB3 = «ind1.u1» UC = «ind1.u2» Universe constraints: UNIVERSES: {elpi_tests_stdlib.test_API_env.67} |= Set <= elpi_tests_stdlib.test_API_env.67 ind1.u1 <= elpi_tests_stdlib.test_API_env.67 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α54 α55 α56 α57 α58 α59 α60 α61 α62 |= Prop -> SProp Type -> α54 -> α55 -> α56 -> α57 -> α58 -> α59 -> α60 -> α61 -> α62 -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: D = parameter P explicit (sort (typ «r1.u0»)) c0 \ parameter p explicit c0 c1 \ record r1 (sort (typ «r1.u0»)) mk_r1 (field [coercion reversible, canonical tt] f1 (prod `_:r` c0 c2 \ c0) c2 \ field [coercion off, canonical ff] f2 (app [global (indt «eq»), c0, c1, app [c2, c1]]) c3 \ end-record) D1 = parameter P explicit (sort (typ «r1.u0»)) c0 \ parameter p explicit c0 c1 \ record r1 (sort (typ «r1.u0»)) mk_r1 (field [coercion reversible, canonical tt] f1 (prod `_:r` c0 c2 \ c0) c2 \ field [coercion off, canonical ff] f2 (app [global (indt «eq»), c0, c1, app [c2, c1]]) c3 \ end-record) I = «r1» UP = «r1.u0» UR = «r1.u0» Query assignments: D = parameter P explicit (sort (typ «r1.u0»)) c0 \ parameter p explicit c0 c1 \ record r1 (sort (typ «r1.u0»)) mk_r1 (field [coercion reversible, canonical tt] f1 (prod `_:r` c0 c2 \ c0) c2 \ field [coercion regular, canonical ff] f2 (app [global (indt «eq»), c0, c1, app [c2, c1]]) c3 \ end-record) D1 = parameter P explicit (sort (typ «r1.u0»)) c0 \ parameter p explicit c0 c1 \ record r1 (sort (typ «r1.u0»)) mk_r1 (field [coercion reversible, canonical tt] f1 (prod `_:r` c0 c2 \ c0) c2 \ field [coercion regular, canonical ff] f2 (app [global (indt «eq»), c0, c1, app [c2, c1]]) c3 \ end-record) I = «r1» UP = «r1.u0» UR = «r1.u0» {{ nat; S; }} {{ nat; S; }} Query assignments: GR = const «Nat.add» L = {{ nat; S; }} S = {{ nat; S; }} {{ X.a; }} {{ X.a; Nat.add; nat; }} {{ X.a; }} {{ X.a; Nat.add; nat; O; S; }} Query assignments: AllL = {{ X.a; Nat.add; nat; }} AllS = {{ X.a; Nat.add; nat; O; S; }} GR = const «X.b» L = {{ X.a; }} M = «elpi_tests_stdlib.test_API_env.HOAS.X» S = {{ X.a; }} Query assignments: GR = const «Ranalysis5.derivable_pt_lim_CVU» S = {{ Field_theory.AF_1_neq_0; Field_theory.AF_AR; Field_theory.AFdiv_def; Field_theory.AFinv_l; Ring_theory.ARadd_0_l; Ring_theory.ARadd_0_r; Ring_theory.ARadd_assoc; Ring_theory.ARadd_assoc1; Ring_theory.ARadd_assoc2; Ring_theory.ARadd_comm; Ring_theory.ARdistr_l; Ring_theory.ARdistr_r; InitialRing.ARgen_phiPOS_Psucc; InitialRing.ARgen_phiPOS_add; InitialRing.ARgen_phiPOS_mult; Ring_theory.ARmul_0_l; Ring_theory.ARmul_0_r; Ring_theory.ARmul_1_l; Ring_theory.ARmul_1_r; Ring_theory.ARmul_assoc; Ring_theory.ARmul_assoc1; Ring_theory.ARmul_assoc2; Ring_theory.ARmul_comm; Ring_theory.ARopp_add; Ring_theory.ARopp_mul_l; Ring_theory.ARopp_mul_r; Ring_theory.ARopp_zero; Ring_theory.ARsub_def; Ring_theory.ARsub_ext; Ring_theory.ARth_SRth; RList.AbsList; RList.AbsList_P1; RList.AbsList_P2; Acc_inv; Morphisms_Prop.Acc_pt_morphism; Acc_rect; Tauto.BFormula; PSeries_reg.Ball_in_inter; Rlimit.Base; PSeries_reg.Boule; PSeries_reg.Boule_center; Setoid.Build_Setoid_Theory; Ring_polynom.CFactor; RMicromega.CInvR0; RMicromega.CPowR0; ConstructiveReals.CR_Q_dense; ConstructiveReals.CR_archimedean; ConstructiveReals.CR_cauchy; ConstructiveReals.CR_complete; ConstructiveReals.CR_cv; ConstructiveLimits.CR_cv_bound_down; ConstructiveLimits.CR_cv_le; ConstructiveLimits.CR_cv_open_above; ConstructiveLimits.CR_cv_open_below; ConstructiveLimits.CR_cv_opp; ConstructiveLimits.CR_cv_plus; ConstructiveLimits.CR_cv_proper; ConstructiveReals.CR_of_Q; ConstructiveReals.CR_of_Q_le; ConstructiveReals.CR_of_Q_lt; ConstructiveReals.CR_of_Q_morph; ConstructiveReals.CR_of_Q_morph_Proper; ConstructiveReals.CR_of_Q_morph_T; ConstructiveReals.CR_of_Q_mult; ConstructiveReals.CR_of_Q_opp; ConstructiveReals.CR_of_Q_plus; ConstructiveReals.CR_of_Q_pos; ConstructiveLUB.CR_sig_lub; ConstructiveReals.CRabs; ConstructiveReals.CRabs_def; ConstructiveAbs.CRabs_le; ConstructiveAbs.CRabs_lt; ConstructiveAbs.CRabs_morph; ConstructiveAbs.CRabs_morph_prop_Proper; ConstructiveAbs.CRabs_opp; ConstructiveAbs.CRabs_right; ConstructiveAbs.CRabs_triang; ConstructiveReals.CRapart; ConstructiveReals.CRcarrier; ConstructiveRcomplete.CRealAbsLUB; ConstructiveCauchyRealsMult.CRealArchimedean; ConstructiveRcomplete.CRealComplete; ConstructiveRcomplete.CRealConstructive; ConstructiveCauchyReals.CRealEq; ConstructiveCauchyReals.CRealEq_diff; ConstructiveCauchyReals.CRealEq_refl; ConstructiveCauchyReals.CRealEq_rel; ConstructiveCauchyReals.CRealEq_relT; ConstructiveCauchyReals.CRealEq_rel_Reflexive; ConstructiveCauchyReals.CRealEq_rel_Symmetric; ConstructiveCauchyReals.CRealEq_rel_Transitive; ConstructiveCauchyReals.CRealEq_sym; ConstructiveCauchyReals.CRealEq_trans; ConstructiveCauchyReals.CRealGe; ConstructiveCauchyReals.CRealLe; ConstructiveCauchyAbs.CRealLe_0R_to_single_dist; ConstructiveCauchyReals.CRealLe_morph_Proper; ConstructiveCauchyReals.CRealLe_not_lt; ConstructiveCauchyReals.CRealLe_refl; ConstructiveCauchyRealsMult.CRealLowerBound; ConstructiveCauchyRealsMult.CRealLowerBoundSpec; ConstructiveCauchyRealsMult.CRealLowerBound_lt_scale; ConstructiveCauchyReals.CRealLt; ConstructiveRcomplete.CRealLtDisjunctEpsilon; ConstructiveCauchyReals.CRealLtEpsilon; ConstructiveCauchyReals.CRealLtForget; ConstructiveRcomplete.CRealLtIsLinear; ConstructiveCauchyReals.CRealLtProp; ConstructiveCauchyReals.CRealLtProp_morph_Proper; ConstructiveCauchyReals.CRealLt_0_1; ConstructiveCauchyAbs.CRealLt_RQ_from_single_dist; ConstructiveCauchyReals.CRealLt_above; ConstructiveCauchyReals.CRealLt_aboveSig; ConstructiveCauchyReals.CRealLt_aboveSig'; ConstructiveCauchyReals.CRealLt_above_same; ConstructiveCauchyReals.CRealLt_asym; ConstructiveCauchyReals.CRealLt_dec; ConstructiveCauchyReals.CRealLt_irrefl; ConstructiveCauchyReals.CRealLt_lpo_dec; ConstructiveCauchyReals.CRealLt_morph; ConstructiveCauchyRealsMult.CRealQ_dense; ConstructiveCauchyRealsMult.CRealRing_ring_lemma1; ConstructiveCauchyRealsMult.CRealRing_ring_lemma2; ConstructiveCauchyAbs.CReal_abs; ConstructiveCauchyAbs.CReal_abs_appart_0; ConstructiveCauchyAbs.CReal_abs_bound; ConstructiveCauchyAbs.CReal_abs_cauchy; ConstructiveCauchyAbs.CReal_abs_def2; ConstructiveCauchyAbs.CReal_abs_le; ConstructiveCauchyAbs.CReal_abs_left; ConstructiveCauchyAbs.CReal_abs_minus_sym; ConstructiveCauchyAbs.CReal_abs_morph; ConstructiveCauchyAbs.CReal_abs_morph_Proper; ConstructiveCauchyAbs.CReal_abs_opp; ConstructiveCauchyAbs.CReal_abs_pos; ConstructiveCauchyAbs.CReal_abs_right; ConstructiveCauchyAbs.CReal_abs_scale; ConstructiveCauchyAbs.CReal_abs_seq; ConstructiveCauchyAbs.CReal_abs_triang; ConstructiveCauchyReals.CReal_appart; ConstructiveRcomplete.CReal_cv_self'; ConstructiveRcomplete.CReal_from_cauchy; ConstructiveRcomplete.CReal_from_cauchy_bound; ConstructiveRcomplete.CReal_from_cauchy_cauchy; ConstructiveRcomplete.CReal_from_cauchy_cm; ConstructiveRcomplete.CReal_from_cauchy_cm_mono; ConstructiveRcomplete.CReal_from_cauchy_scale; ConstructiveRcomplete.CReal_from_cauchy_seq; ConstructiveRcomplete.CReal_from_cauchy_seq_bound; ConstructiveCauchyRealsMult.CReal_inv; ConstructiveCauchyRealsMult.CReal_inv_0_lt_compat; ConstructiveCauchyRealsMult.CReal_inv_l; ConstructiveCauchyRealsMult.CReal_inv_l_pos; ConstructiveCauchyRealsMult.CReal_inv_pos; ConstructiveCauchyRealsMult.CReal_inv_pos_bound; ConstructiveCauchyRealsMult.CReal_inv_pos_cauchy; ConstructiveCauchyRealsMult.CReal_inv_pos_cm; ConstructiveCauchyRealsMult.CReal_inv_pos_scale; ConstructiveCauchyRealsMult.CReal_inv_pos_seq; ConstructiveCauchyRealsMult.CReal_isRing; ConstructiveCauchyRealsMult.CReal_isRingExt; ConstructiveCauchyAbs.CReal_le_abs; ConstructiveCauchyReals.CReal_le_lt_trans; ConstructiveCauchyReals.CReal_le_trans; ConstructiveCauchyReals.CReal_lt_le_trans; ConstructiveCauchyReals.CReal_lt_trans; ConstructiveCauchyReals.CReal_minus; ConstructiveCauchyRealsMult.CReal_mult; ConstructiveCauchyRealsMult.CReal_mult_1_l; ConstructiveCauchyRealsMult.CReal_mult_assoc; ConstructiveCauchyRealsMult.CReal_mult_bound; ConstructiveCauchyRealsMult.CReal_mult_cauchy; ConstructiveCauchyRealsMult.CReal_mult_comm; ConstructiveCauchyRealsMult.CReal_mult_lt_0_compat; ConstructiveCauchyRealsMult.CReal_mult_lt_0_compat_correct; ConstructiveCauchyRealsMult.CReal_mult_lt_compat_l; ConstructiveCauchyRealsMult.CReal_mult_morph_Proper; ConstructiveCauchyRealsMult.CReal_mult_plus_distr_l; ConstructiveCauchyRealsMult.CReal_mult_proper_0_l; ConstructiveCauchyRealsMult.CReal_mult_proper_l; ConstructiveCauchyRealsMult.CReal_mult_scale; ConstructiveCauchyRealsMult.CReal_mult_seq; ConstructiveCauchyRealsMult.CReal_neg_lt_pos; ConstructiveCauchyRealsMult.CReal_neg_lt_pos_subproof; ConstructiveCauchyReals.CReal_opp; ConstructiveCauchyReals.CReal_opp_0; ConstructiveCauchyReals.CReal_opp_bound; ConstructiveCauchyReals.CReal_opp_cauchy; ConstructiveCauchyReals.CReal_opp_ge_le_contravar; ConstructiveCauchyReals.CReal_opp_involutive; ConstructiveCauchyRealsMult.CReal_opp_morph_Proper; ConstructiveCauchyRealsMult.CReal_opp_morph_T; ConstructiveCauchyRealsMult.CReal_opp_mult_distr_l; ConstructiveCauchyRealsMult.CReal_opp_mult_distr_r; ConstructiveCauchyReals.CReal_opp_scale; ConstructiveCauchyReals.CReal_opp_seq; ConstructiveCauchyReals.CReal_plus; ConstructiveCauchyReals.CReal_plus_0_l; ConstructiveCauchyReals.CReal_plus_0_r; ConstructiveCauchyReals.CReal_plus_assoc; ConstructiveCauchyReals.CReal_plus_bound; ConstructiveCauchyReals.CReal_plus_cauchy; ConstructiveCauchyReals.CReal_plus_comm; ConstructiveCauchyReals.CReal_plus_eq_reg_l; ConstructiveCauchyReals.CReal_plus_le_compat; ConstructiveCauchyReals.CReal_plus_le_compat_l; ConstructiveCauchyReals.CReal_plus_le_lt_compat; ConstructiveCauchyReals.CReal_plus_le_reg_r; ConstructiveCauchyReals.CReal_plus_lt_compat_l; ConstructiveCauchyReals.CReal_plus_lt_compat_r; ConstructiveCauchyReals.CReal_plus_lt_reg_l; ConstructiveCauchyReals.CReal_plus_lt_reg_r; ConstructiveCauchyReals.CReal_plus_morph; ConstructiveCauchyReals.CReal_plus_morph_Proper; ConstructiveCauchyReals.CReal_plus_morph_T; ConstructiveCauchyReals.CReal_plus_opp_l; ConstructiveCauchyReals.CReal_plus_opp_r; ConstructiveCauchyReals.CReal_plus_proper_l; ConstructiveCauchyReals.CReal_plus_proper_r; ConstructiveCauchyReals.CReal_plus_scale; ConstructiveCauchyReals.CReal_plus_seq; ConstructiveCauchyRealsMult.CReal_red_scale; ConstructiveCauchyReals.CReal_red_seq; ConstructiveCauchyRealsMult.CReal_scale_sep0_limit; ConstructiveReals.CReq; ConstructiveReals.CReq_refl; ConstructiveReals.CReq_rel; ConstructiveReals.CReq_relT; ConstructiveReals.CReq_rel_Reflexive; ConstructiveReals.CReq_rel_Symmetric; ConstructiveReals.CReq_rel_Transitive; ConstructiveReals.CReq_sym; ConstructiveReals.CReq_trans; ConstructiveReals.CRinv; ConstructiveReals.CRinv_0_lt_compat; ConstructiveReals.CRinv_l; ConstructiveReals.CRinv_r; ConstructiveReals.CRisRing; ConstructiveReals.CRisRingExt; ConstructiveLUB.CRis_upper_bound; ConstructiveReals.CRle; ConstructiveAbs.CRle_abs; ConstructiveReals.CRle_lt_trans; ConstructiveReals.CRle_morph_Proper; ConstructiveReals.CRle_refl; ConstructiveReals.CRle_trans; ConstructiveReals.CRlt; ConstructiveReals.CRltEpsilon; ConstructiveReals.CRltForget; ConstructiveReals.CRltLinear; ConstructiveReals.CRltProp; ConstructiveReals.CRlt_asym; ConstructiveReals.CRlt_le_trans; ConstructiveLUB.CRlt_lpo_dec; ConstructiveReals.CRlt_minus; ConstructiveReals.CRlt_morph; ConstructiveReals.CRlt_proper; ConstructiveReals.CRlt_trans; ConstructiveReals.CRminus; ConstructiveReals.CRmult; ConstructiveReals.CRmult_0_r; ConstructiveReals.CRmult_1_l; ConstructiveReals.CRmult_1_r; ConstructiveReals.CRmult_assoc; ConstructiveReals.CRmult_comm; ConstructiveReals.CRmult_lt_0_compat; ConstructiveReals.CRmult_lt_compat_l; ConstructiveReals.CRmult_lt_compat_r; ConstructiveReals.CRmult_lt_reg_l; ConstructiveReals.CRmult_lt_reg_r; ConstructiveReals.CRmult_morph; ConstructiveReals.CRmult_morph_Proper; ConstructiveReals.CRmult_morph_T; ConstructiveReals.CRmult_plus_distr_l; ConstructiveReals.CRmult_plus_distr_r; ConstructiveReals.CRopp; ConstructiveReals.CRopp_0; ConstructiveReals.CRopp_ge_le_contravar; ConstructiveReals.CRopp_gt_lt_contravar; ConstructiveReals.CRopp_involutive; ConstructiveReals.CRopp_lt_cancel; ConstructiveReals.CRopp_morph_Proper; ConstructiveReals.CRopp_mult_distr_l; ConstructiveReals.CRopp_mult_distr_r; ConstructiveReals.CRopp_plus_distr; ConstructiveReals.CRplus; ConstructiveReals.CRplus_0_l; ConstructiveReals.CRplus_0_r; ConstructiveReals.CRplus_assoc; ConstructiveReals.CRplus_comm; ConstructiveReals.CRplus_eq_reg_l; ConstructiveReals.CRplus_le_compat; ConstructiveReals.CRplus_le_compat_l; ConstructiveReals.CRplus_le_compat_r; ConstructiveReals.CRplus_le_reg_l; ConstructiveReals.CRplus_le_reg_r; ConstructiveReals.CRplus_lt_compat_l; ConstructiveReals.CRplus_lt_compat_r; ConstructiveReals.CRplus_lt_reg_l; ConstructiveReals.CRplus_lt_reg_r; ConstructiveReals.CRplus_morph; ConstructiveReals.CRplus_morph_Proper; ConstructiveReals.CRplus_morph_T; ConstructiveReals.CRplus_opp_l; ConstructiveReals.CRplus_opp_r; ConstructiveReals.CRup_nat; ConstructiveReals.CRzero_double; PSeries_reg.CVU; CompOpp; CompOpp_iff; CompOpp_inj; CompOpp_involutive; CompSpec; CompSpec2Type; CompSpecT; CompareSpec2Type; ConstructiveLUB.DDcut_limit; ConstructiveLUB.DDcut_limit_fix; ConstructiveLUB.DDdec; ConstructiveLUB.DDhigh; ConstructiveLUB.DDhighProp; ConstructiveLUB.DDinterval; ConstructiveLUB.DDlow; ConstructiveLUB.DDlowProp; ConstructiveLUB.DDlow_below_up; ConstructiveLUB.DDproper; ConstructiveLUB.DDupcut; Rderiv.D_in; Rderiv.D_x; Rderiv.Dmult; Env.Env; Ring_theory.Eq_ext; Ring_theory.Eqsth; RelationClasses.Equivalence_PER; CRelationClasses.Equivalence_Reflexive; RelationClasses.Equivalence_Reflexive; CRelationClasses.Equivalence_Symmetric; RelationClasses.Equivalence_Symmetric; RelationClasses.Equivalence_Transitive; ZMicromega.F; Field_theory.F2AF; Field_theory.FEeval; Field_theory.FExpr_ind; Field_theory.F_1_neq_0; Field_theory.F_R; False_ind; False_rec; Field_theory.Fapp; Field_theory.Fcons0; Field_theory.Fcons1; Field_theory.Fcons2; Field_theory.Fdiv_def; Field_theory.Field_correct; Field_theory.Field_rw_pow_correct; Field_theory.Field_simplify_eq_pow_correct; Field_theory.Finv_l; Field_theory.Fnorm; Field_theory.Fnorm_FEeval_PEeval; Field_theory.Fnorm_crossproduct; Tauto.GFormula_ind; ID; Ring_theory.IDmorph; Ring_theory.IDphi; Rdefinitions.IPR; Rdefinitions.IPR_2; RIneq.IPR_2_xH; RIneq.IPR_2_xI; RIneq.IPR_2_xO; RIneq.IPR_IPR_2; RIneq.IPR_ge_1; RIneq.IPR_gt_0; RIneq.IPR_xH; RIneq.IPR_xI; RIneq.IPR_xO; Rdefinitions.IZR; RIneq.IZR_ge; RIneq.IZR_le; RIneq.IZR_lt; Qreals.IZR_nz; List.In; ZifyInst.Inj_Z_Z; ZifyInst.Inj_pos_Z; RelationClasses.Irreflexive; Ring_polynom.MFactor; Ring_polynom.MPcond; MVT.MVT; RList.MaxRlist; RList.MaxRlist_P1; Ring_polynom.Mcphi_ok; RList.MinRlist; RList.MinRlist_P1; RList.MinRlist_P2; Ring_polynom.Mphi; Ring_polynom.Mphi_ok; RingMicromega.NFormula; Classical_Prop.NNPP; Field_theory.NPEadd; Field_theory.NPEadd_ok; Field_theory.NPEequiv; Field_theory.NPEequiv_eq; Field_theory.NPEeval_ext; Field_theory.NPEmul; Field_theory.NPEmul_ok; Field_theory.NPEopp; Field_theory.NPEopp_ok; Field_theory.NPEpow; Field_theory.NPEpow_ok; Field_theory.NPEsub; Field_theory.NPEsub_ok; InitialRing.Nopp; InitialRing.Nsub; Field_theory.NtoZ; InitialRing.Ntriv_div_th; O_S; ConstructiveEpsilon.O_witness; RingMicromega.OpAdd; RingMicromega.OpAdd_sound; RingMicromega.OpMult; RingMicromega.OpMult_sound; ConstructiveEpsilon.P'; ConstructiveEpsilon.P'_decidable; EnvRing.P0; Ring_polynom.P0; EnvRing.P1; Ring_polynom.P1; Field_theory.PCond; Field_theory.PCond_app; Field_theory.PCond_cons; RelationClasses.PER_Symmetric; RelationClasses.PER_Transitive; Morphisms.PER_morphism; Morphisms.PER_morphism_obligation_1; Field_theory.PE_1_l; Field_theory.PE_1_r; Field_theory.PEadd_ext; EnvRing.PEeval; Ring_polynom.PEeval; Field_theory.PEmul_ext; Field_theory.PEopp_ext; Field_theory.PEpow_0_r; Field_theory.PEpow_1_l; Field_theory.PEpow_1_r; Field_theory.PEpow_add_r; Field_theory.PEpow_ext; Field_theory.PEpow_mul_l; Field_theory.PEpow_mul_r; Field_theory.PEpow_nz; Field_theory.PEsimp; Field_theory.PEsimp_ok; Field_theory.PEsub_ext; Field_theory.PExpr_eq; Field_theory.PExpr_eq_semi_ok; Field_theory.PExpr_eq_spec; EnvRing.PExpr_ind; Ring_polynom.PExpr_ind; Field_theory.PFcons0_fcons_inv; Field_theory.PFcons1_fcons_inv; Field_theory.PFcons2_fcons_inv; Ring_polynom.PNSubst; Ring_polynom.PNSubst1; Ring_polynom.PNSubst1_ok; Ring_polynom.PNSubstL; Ring_polynom.PNSubstL_ok; Ring_polynom.PNSubst_ok; Ring_polynom.POneSubst; Ring_polynom.POneSubst_ok; Ring_polynom.PSubstL; Ring_polynom.PSubstL1; Ring_polynom.PSubstL1_ok; Ring_polynom.PSubstL_ok; Ring_polynom.PX_ext; EnvRing.Padd; Ring_polynom.Padd; EnvRing.PaddC; Ring_polynom.PaddC; EnvRing.PaddC_ok; Ring_polynom.PaddC_ok; EnvRing.PaddI; Ring_polynom.PaddI; EnvRing.PaddX; Ring_polynom.PaddX; EnvRing.PaddX_ok; Ring_polynom.PaddX_ok; EnvRing.Padd_ok; Ring_polynom.Padd_ok; Field_theory.Pcond_Fnorm; Field_theory.Pcond_simpl_complete; EnvRing.Peq; Ring_polynom.Peq; EnvRing.Peq_ok; Ring_polynom.Peq_ok; EnvRing.Peq_spec; Ring_polynom.Peq_spec; Ring_polynom.Pequiv; Ring_polynom.Pequiv_eq; EnvRing.Pjump_add; EnvRing.Pjump_pred_double; EnvRing.Pjump_xO_tail; EnvRing.Pmul; Ring_polynom.Pmul; EnvRing.PmulC; Ring_polynom.PmulC; EnvRing.PmulC_aux; Ring_polynom.PmulC_aux; EnvRing.PmulC_aux_ok; Ring_polynom.PmulC_aux_ok; EnvRing.PmulC_ok; Ring_polynom.PmulC_ok; EnvRing.PmulI; Ring_polynom.PmulI; EnvRing.PmulI_ok; Ring_polynom.PmulI_ok; EnvRing.Pmul_ok; Ring_polynom.Pmul_ok; RingMicromega.PolC; RingMicromega.PolEnv; EnvRing.Pol_ind; Ring_polynom.Pol_ind; EnvRing.Popp; Ring_polynom.Popp; EnvRing.Popp_ok; Ring_polynom.Popp_ok; ConstructiveRcomplete.Pos2Z_pos_is_pos; QExtra.Pos_log2floor_plus1; QExtra.Pos_log2floor_plus1_spec; PosExtra.Pos_pow_1_r; PosExtra.Pos_pow_le_mono_r; ConstructiveExtra.Pos_pred_double_inj; ConstructiveRcomplete.Pospow_lin_le_2pow; EnvRing.Pphi; Ring_polynom.Pphi; EnvRing.Pphi0; Ring_polynom.Pphi0; EnvRing.Pphi1; Ring_polynom.Pphi1; Ring_polynom.Pphi_avoid; Ring_polynom.Pphi_avoid_ok; Ring_polynom.Pphi_dev; Ring_polynom.Pphi_dev_ok; Ring_polynom.Pphi_ext; Ring_polynom.Pphi_pow; Ring_polynom.Pphi_pow_ok; BinPos.Pplus_one_succ_l; BinPos.Pplus_one_succ_r; EnvRing.Ppow_N; Ring_polynom.Ppow_N; EnvRing.Ppow_N_ok; Ring_polynom.Ppow_N_ok; EnvRing.Ppow_pos; Ring_polynom.Ppow_pos; EnvRing.Ppow_pos_ok; Ring_polynom.Ppow_pos_ok; RelationClasses.PreOrder_Reflexive; RelationClasses.PreOrder_Transitive; ZMicromega.Private_Pos_neq_le_lt; ZMicromega.Private_Pos_neq_lt; RIneq.Private_Zeqb_IZR; ZArithRing.Private_proj1_eqb_eq; RIneq.Private_sumbool_to_or; CMorphisms.Proper; Morphisms.Proper; CMorphisms.ProperProxy; Morphisms.ProperProxy; Qminmax.Q.Proper_instance_0; BinInt.Z.Proper_instance_0; RingMicromega.Psatz_ind; EnvRing.Psquare; EnvRing.Psquare_ok; EnvRing.Psub; Ring_polynom.Psub; EnvRing.PsubC; Ring_polynom.PsubC; EnvRing.PsubC_ok; RingMicromega.PsubC_ok; Ring_polynom.PsubC_ok; EnvRing.PsubI; Ring_polynom.PsubI; EnvRing.PsubX; Ring_polynom.PsubX; EnvRing.PsubX_ok; EnvRing.Psub_ok; Ring_polynom.Psub_ok; Ring_polynom.Psub_opp; Rdefinitions.Q2R; RMicromega.Q2R_0; RMicromega.Q2R_1; Qreals.Q2R_inv; RMicromega.Q2R_inv_ext; RMicromega.Q2R_m_Proper; Qreals.Q2R_minus; Qreals.Q2R_mult; Qreals.Q2R_opp; Qreals.Q2R_plus; RMicromega.Q2R_pow_N; RMicromega.Q2R_pow_pos; RMicromega.Q2RpowerRZ; ConstructiveCauchyReals.QBound; ConstructiveCauchyReals.QCauchySeq; QMicromega.QNpower; RMicromega.QReval_expr; RMicromega.QReval_formula; RMicromega.QReval_formula'; RMicromega.QReval_formula_compat; QMicromega.QSORaddon; RMicromega.QSORaddon; QMicromega.QTautoChecker; QMicromega.QTautoChecker_sound; QMicromega.QWeakChecker; QMicromega.QWeakChecker_sound; QMicromega.QWitness; QArith_base.Q_Setoid; QArith_base.Q_dec; RMicromega.Q_of_Rcst; RMicromega.Q_of_RcstR; Qabs.Qabs; ConstructiveRcomplete.Qabs_Qgt_condition; Qabs.Qabs_Qinv; Qabs.Qabs_Qle_condition; Qabs.Qabs_Qlt_condition; Qabs.Qabs_Qmult; ConstructiveRcomplete.Qabs_Rabs; Qabs.Qabs_case; Qabs.Qabs_case_subproof; Qabs.Qabs_case_subproof0; Qabs.Qabs_case_subproof1; Qabs.Qabs_gt; ConstructiveCauchyAbs.Qabs_involutive; Qabs.Qabs_neg; Qabs.Qabs_nonneg; Qabs.Qabs_opp; Qabs.Qabs_pos; Qabs.Qabs_triangle; Qabs.Qabs_triangle_reverse; Qabs.Qabs_wd; Qabs.Qabs_wd_Proper; QArith_base.Qarchimedean; QExtra.QarchimedeanExp2_Z; QExtra.QarchimedeanLowExp2_Z; QExtra.Qbound_lt_ZExp2; QExtra.Qbound_lt_ZExp2_spec; QExtra.Qbound_ltabs_ZExp2; QExtra.Qbound_ltabs_ZExp2_spec; QArith_base.Qcompare; QArith_base.Qcompare_comp; QArith_base.Qden; QArith_base.Qdiv; QArith_base.Qdiv_comp; QArith_base.Qdiv_mult_l; QArith_base.Qeq; QArith_base.Qeq_alt; QArith_base.Qeq_bool; QArith_base.Qeq_bool_eq; QArith_base.Qeq_bool_iff; QArith_base.Qeq_bool_neq; QArith_base.Qeq_dec; Qreals.Qeq_eqR; QArith_base.Qeq_eq_bool; RMicromega.Qeq_false; QArith_base.Qeq_refl; QArith_base.Qeq_sym; QArith_base.Qeq_trans; RMicromega.Qeq_true; QMicromega.Qeval_bop2; QMicromega.Qeval_expr; QMicromega.Qeval_expr'; QMicromega.Qeval_expr_compat; QMicromega.Qeval_formula; QMicromega.Qeval_formula'; QMicromega.Qeval_formula_compat; QMicromega.Qeval_nformula; RMicromega.Qeval_nformula; QMicromega.Qeval_nformula_dec; QMicromega.Qeval_op2; QMicromega.Qeval_op2_hold; QMicromega.Qeval_pop2; Qfield.Qfield_field_lemma1; Qfield.Qfield_field_lemma2; Qfield.Qfield_lemma5; Qfield.Qfield_ring_lemma1; Qfield.Qfield_ring_lemma2; Qround.Qfloor; Qround.Qfloor_le; QArith_base.Qinv; QArith_base.Qinv_comp; QArith_base.Qinv_involutive; QArith_base.Qinv_le_0_compat; QArith_base.Qinv_lt_0_compat; QArith_base.Qinv_lt_contravar; QArith_base.Qinv_mult_distr; QArith_base.Qinv_plus_distr; QArith_base.Qinv_pos; Qpower.Qinv_power; Qpower.Qinv_power_positive; QArith_base.Qle; Qabs.Qle_Qabs; Qreals.Qle_Rle; QArith_base.Qle_alt; QArith_base.Qle_antisym; QArith_base.Qle_bool; QArith_base.Qle_bool_iff; QArith_base.Qle_bool_imp_le; QArith_base.Qle_comp; QArith_base.Qle_lt_trans; QArith_base.Qle_minus_iff; QArith_base.Qle_not_lt; QArith_base.Qle_refl; QArith_base.Qle_shift_div_l; QArith_base.Qle_shift_div_r; QArith_base.Qle_trans; RMicromega.Qle_true; QExtra.Qlowbound_lt_ZExp2_spec; QExtra.Qlowbound_ltabs_ZExp2; QExtra.Qlowbound_ltabs_ZExp2_inv; QArith_base.Qlt; QArith_base.Qlt_alt; QMicromega.Qlt_bool; QMicromega.Qlt_bool_iff; QArith_base.Qlt_compat; Qround.Qlt_floor; QArith_base.Qlt_irrefl; QArith_base.Qlt_le_dec; QArith_base.Qlt_le_trans; QArith_base.Qlt_le_weak; QArith_base.Qlt_leneq; QArith_base.Qlt_minus_iff; QArith_base.Qlt_not_eq; QArith_base.Qlt_not_le; QArith_base.Qlt_shift_div_l; QArith_base.Qlt_shift_div_r; QArith_base.Qlt_shift_inv_l; QArith_base.Qlt_trans; ConstructiveRcomplete.Qlt_trans_swap_hyp; QArith_base.Qminus; QArith_base.Qminus_comp; QArith_base.Qmult; QArith_base.Qmult_0_l; QArith_base.Qmult_0_r; QArith_base.Qmult_1_l; QArith_base.Qmult_1_r; QArith_base.Qmult_assoc; QArith_base.Qmult_comm; QArith_base.Qmult_comp; QArith_base.Qmult_div_r; QArith_base.Qmult_frac_l; QArith_base.Qmult_integral; RMicromega.Qmult_integral; QArith_base.Qmult_integral_l; QArith_base.Qmult_inv_r; QArith_base.Qmult_le_0_compat; QArith_base.Qmult_le_1_compat; QArith_base.Qmult_le_compat_nonneg; QArith_base.Qmult_le_compat_r; QArith_base.Qmult_le_l; QArith_base.Qmult_le_lt_compat_pos; QArith_base.Qmult_le_r; QArith_base.Qmult_lt_0_le_reg_r; QArith_base.Qmult_lt_compat_nonneg; QArith_base.Qmult_lt_compat_r; QArith_base.Qmult_lt_l; QArith_base.Qmult_lt_r; QArith_base.Qmult_plus_distr_l; QMicromega.Qnegate; QMicromega.Qnormalise; QArith_base.Qnot_eq_sym; QArith_base.Qnot_le_lt; QArith_base.Qnot_lt_le; QArith_base.Qnum; QArith_base.Qopp; QArith_base.Qopp_comp; QArith_base.Qopp_le_compat; QArith_base.Qopp_lt_compat; ConstructiveCauchyAbs.Qopp_mult_mone; Qfield.Qopp_opp; QArith_base.Qplus; QArith_base.Qplus_0_l; QArith_base.Qplus_0_r; QArith_base.Qplus_assoc; QArith_base.Qplus_comm; QArith_base.Qplus_comp; QArith_base.Qplus_le_compat; QArith_base.Qplus_le_l; QArith_base.Qplus_le_r; QArith_base.Qplus_lt_l; QArith_base.Qplus_lt_le_compat; QArith_base.Qplus_lt_r; QArith_base.Qplus_opp_r; QArith_base.Qpower; RMicromega.Qpower0; Qpower.Qpower_0_le; Qpower.Qpower_0_lt; Qpower.Qpower_0_r; Qpower.Qpower_1_le; Qpower.Qpower_1_le_pos; ConstructiveRcomplete.Qpower_2powneg_le_inv; QArith_base.Qpower_comp; Qpower.Qpower_decomp_pos; Qpower.Qpower_decomp_positive; Qpower.Qpower_le_compat_l; Qpower.Qpower_lt_compat_l_inv; Qpower.Qpower_minus; Qpower.Qpower_minus_pos; Qpower.Qpower_minus_positive; Qpower.Qpower_not_0; Qpower.Qpower_not_0_positive; Qpower.Qpower_opp; Qpower.Qpower_plus; Qpower.Qpower_plus_positive; Qpower.Qpower_pos_positive; QArith_base.Qpower_positive; Qpower.Qpower_positive_0; QArith_base.Qpower_positive_comp; RMicromega.Qpower_positive_eq_zero; RMicromega.Qpower_positive_zero; Qfield.Qpower_theory; Qreduction.Qred; Qreduction.Qred_correct; Qfield.Qsft; QMicromega.Qsor; Qfield.Qsrt; Rdefinitions.RbaseSymbolsImpl.R; Rdefinitions.RbaseSymbolsImpl.R0; Rdefinitions.RbaseSymbolsImpl.R0_def; Rdefinitions.RbaseSymbolsImpl.R1; Rdefinitions.RbaseSymbolsImpl.R1_def; Raxioms.R1_neq_R0; RIneq.RField_field_lemma1; RIneq.RField_field_lemma3; RIneq.RField_lemma5; RIneq.RField_ring_lemma1; Rbasic_fun.RRle_abs; RMicromega.RTautoChecker; RMicromega.RTautoChecker_sound; RealField.RTheory; RMicromega.RWeakChecker; RMicromega.RWeakChecker_sound; RMicromega.RWitness; Rlimit.R_met; RMicromega.R_of_Rcst; RealField.R_power_theory; RIneq.R_rm; InitialRing.R_set1; InitialRing.R_set1_Reflexive; InitialRing.R_set1_Transitive; InitialRing.R_setoid3; InitialRing.R_setoid3_Reflexive; InitialRing.R_setoid3_Symmetric; InitialRing.R_setoid3_Transitive; InitialRing.R_setoid4; InitialRing.R_setoid4_Reflexive; InitialRing.R_setoid4_Transitive; Rbasic_fun.Rabs; Rbasic_fun.Rabs_R0; Rbasic_fun.Rabs_Ropp; Rbasic_fun.Rabs_def1; Rbasic_fun.Rabs_def2; Rbasic_fun.Rabs_inv; Rbasic_fun.Rabs_minus_sym; Rbasic_fun.Rabs_mult; Rbasic_fun.Rabs_no_R0; Rbasic_fun.Rabs_pos; Rbasic_fun.Rabs_pos_eq; Rbasic_fun.Rabs_pos_lt; Rbasic_fun.Rabs_right; Rbasic_fun.Rabs_triang; Rbasic_fun.Rabs_triang_inv; Rdefinitions.RbaseSymbolsImpl.Rabst; Ring_theory.Radd_0_l; Ring_theory.Radd_assoc; Ring_theory.Radd_comm; Ring_theory.Radd_ext; Rbasic_fun.Rcase_abs; ConstructiveRcomplete.Rcauchy_complete; RMicromega.Rcst_ind; RealField.Rdef_pow_add; Rfunctions.Rdist; Rfunctions.Rdist_plus; Rfunctions.Rdist_pos; Rfunctions.Rdist_refl; Rfunctions.Rdist_sym; Rfunctions.Rdist_tri; Ring_theory.Rdistr_l; Rdefinitions.Rdiv; RIneq.Rdiv_plus_distr; CRelationClasses.Reflexive; RelationClasses.Reflexive; Morphisms.ReflexiveProxy; CMorphisms.Reflexive_partial_app_morphism; Morphisms.Reflexive_partial_app_morphism; Rdefinitions.Req_appart_dec; RIneq.Req_dec; RIneq.Req_dec_T; OrderedRing.Req_dne; OrderedRing.Req_em; RIneq.Req_le; RIneq.Req_le_sym; RMicromega.Reval_bop2; RMicromega.Reval_expr; RMicromega.Reval_formula; RMicromega.Reval_formula'; RMicromega.Reval_formula_compat; RMicromega.Reval_nformula_dec; RMicromega.Reval_op2; RMicromega.Reval_op2_hold; RMicromega.Reval_pop2; RMicromega.Reval_pop2_eval_op2; RealField.Rfield; Rdefinitions.Rge; RIneq.Rge_antisym; RIneq.Rge_gt_dec; RIneq.Rge_gt_trans; RIneq.Rge_le; RIneq.Rge_minus; RIneq.Rge_not_lt; RIneq.Rge_trans; Rdefinitions.Rgt; RIneq.Rgt_dec; RIneq.Rgt_ge_trans; RIneq.Rgt_lt; RIneq.Rgt_minus; RIneq.Rgt_not_eq; RIneq.Rgt_not_ge; RIneq.Rgt_not_le; RIneq.Rgt_trans; BinInt.Z.Rgt_wd; Rdefinitions.RinvImpl.Rinv; RIneq.Rinv_0; RIneq.Rinv_0_lt_compat; RIneq.Rinv_1; RMicromega.Rinv_1; Rdefinitions.RinvImpl.Rinv_def; Raxioms.Rinv_l; RIneq.Rinv_lt_0_compat; RIneq.Rinv_mult; RIneq.Rinv_neq_0_compat; RIneq.Rinv_opp; RIneq.Rinv_r; Rdefinitions.Rle; RIneq.Rle_0_1; RIneq.Rle_0_sqr; RIneq.Rle_Reflexive; RIneq.Rle_Transitive; Rbasic_fun.Rle_abs; RIneq.Rle_antisym; OrderedRing.Rle_antisymm; RIneq.Rle_dec; RIneq.Rle_ge; OrderedRing.Rle_gt_cases; RIneq.Rle_le_eq; OrderedRing.Rle_le_minus; RIneq.Rle_lt_dec; OrderedRing.Rle_lt_eq; OrderedRing.Rle_lt_trans; RIneq.Rle_lt_trans; OrderedRing.Rle_ngt; RIneq.Rle_not_lt; OrderedRing.Rle_refl; RIneq.Rle_refl; OrderedRing.Rle_trans; RIneq.Rle_trans; Rdefinitions.RbaseSymbolsImpl.Rlt; RIneq.Rlt_0_1; RIneq.Rlt_0_2; RIneq.Rlt_0_minus; RIneq.Rlt_0_sqr; Raxioms.Rlt_asym; RIneq.Rlt_dec; Rdefinitions.RbaseSymbolsImpl.Rlt_def; RIneq.Rlt_dichotomy_converse; RIneq.Rlt_gt; RIneq.Rlt_irrefl; RIneq.Rlt_le; RIneq.Rlt_le_dec; OrderedRing.Rlt_le_neq; OrderedRing.Rlt_le_trans; RIneq.Rlt_le_trans; OrderedRing.Rlt_lt_minus; OrderedRing.Rlt_neq; OrderedRing.Rlt_nge; RIneq.Rlt_not_eq; RIneq.Rlt_not_ge; RIneq.Rlt_not_le; RIneq.Rlt_or_le; OrderedRing.Rlt_trans; Raxioms.Rlt_trans; OrderedRing.Rlt_trichotomy; BinNat.N.Rlt_wd; PeanoNat.Nat.Rlt_wd; BinInt.Z.Rlt_wd; Rbasic_fun.Rmax; Rbasic_fun.Rmax_Rlt; Rbasic_fun.Rmax_case_strong; Rbasic_fun.Rmax_l; Rbasic_fun.Rmax_left; Rbasic_fun.Rmax_lub_lt; Rbasic_fun.Rmax_r; Rbasic_fun.Rmax_right; Rbasic_fun.Rmax_stable_in_negreal; Rbasic_fun.Rmin; Rbasic_fun.Rmin_Rgt; Rbasic_fun.Rmin_Rgt_l; Rbasic_fun.Rmin_Rgt_r; Rbasic_fun.Rmin_case_strong; Rbasic_fun.Rmin_glb_lt; Rbasic_fun.Rmin_l; Rbasic_fun.Rmin_r; Rbasic_fun.Rmin_stable_in_posreal; Rdefinitions.Rminus; RIneq.Rminus_0_r; RIneq.Rminus_diag_eq; RIneq.Rminus_diag_uniq; RIneq.Rminus_diag_uniq_sym; OrderedRing.Rminus_eq_0; RIneq.Rminus_eq_contra; RIneq.Rminus_ge; RIneq.Rminus_gt; RIneq.Rminus_le; RIneq.Rminus_lt; RIneq.Rminus_not_eq; RIneq.Rminus_plus_distr; RIneq.Rminus_plus_l_l; RIneq.Rminus_plus_r_l; RIneq.Rminus_plus_r_r; Ring_theory.Rmul_0_l; Ring_theory.Rmul_1_l; Ring_theory.Rmul_assoc; Ring_theory.Rmul_comm; Ring_theory.Rmul_ext; Rdefinitions.RbaseSymbolsImpl.Rmult; RIneq.Rmult_0_l; RIneq.Rmult_0_r; Raxioms.Rmult_1_l; RIneq.Rmult_1_r; Raxioms.Rmult_assoc; Raxioms.Rmult_comm; Rdefinitions.RbaseSymbolsImpl.Rmult_def; RIneq.Rmult_div_l; RIneq.Rmult_div_r; RIneq.Rmult_eq_compat_l; RIneq.Rmult_eq_reg_l; RIneq.Rmult_ge_0_gt_0_lt_compat; RIneq.Rmult_gt_0_compat; RIneq.Rmult_integral; RIneq.Rmult_integral_contrapositive; RIneq.Rmult_integral_contrapositive_currified; RIneq.Rmult_inv_r_id_l; RIneq.Rmult_inv_r_id_m; RIneq.Rmult_inv_r_uniq; RIneq.Rmult_le_0_lt_compat; RIneq.Rmult_le_compat; RIneq.Rmult_le_compat_l; RIneq.Rmult_le_compat_neg_l; RIneq.Rmult_le_compat_r; RIneq.Rmult_le_pos; RIneq.Rmult_lt_0_compat; Raxioms.Rmult_lt_compat_l; RIneq.Rmult_lt_compat_r; RIneq.Rmult_lt_gt_compat_neg_l; RIneq.Rmult_lt_reg_l; RIneq.Rmult_ne; RIneq.Rmult_opp_opp; Raxioms.Rmult_plus_distr_l; RIneq.Rmult_plus_distr_r; RMicromega.Rnegate; OrderedRing.Rneq_symm; RMicromega.Rnormalise; RIneq.Rnot_gt_ge; RIneq.Rnot_le_gt; RIneq.Rnot_le_lt; RIneq.Rnot_lt_ge; RIneq.Rnot_lt_le; Rdefinitions.RbaseSymbolsImpl.Ropp; RIneq.Ropp_0; Rbasic_fun.Ropp_Rmin; RIneq.Ropp_Ropp_IZR; Ring_theory.Ropp_add; Ring_theory.Ropp_def; Rdefinitions.RbaseSymbolsImpl.Ropp_def; RIneq.Ropp_eq_0_compat; RIneq.Ropp_eq_compat; RIneq.Ropp_eq_reg; Ring_theory.Ropp_ext; RIneq.Ropp_ge_cancel; RIneq.Ropp_ge_le_contravar; RIneq.Ropp_gt_lt_0_contravar; RIneq.Ropp_gt_lt_contravar; RIneq.Ropp_involutive; RIneq.Ropp_le_cancel; RIneq.Ropp_le_contravar; RIneq.Ropp_le_ge_contravar; RIneq.Ropp_lt_cancel; RIneq.Ropp_lt_contravar; RIneq.Ropp_lt_gt_0_contravar; RIneq.Ropp_lt_gt_contravar; OrderedRing.Ropp_lt_mono; RIneq.Ropp_minus_distr; Ring_theory.Ropp_mul_l; RIneq.Ropp_mult_distr_l; RIneq.Ropp_mult_distr_l_reverse; RIneq.Ropp_mult_distr_r; RIneq.Ropp_neq_0_compat; Ring_theory.Ropp_opp; RIneq.Ropp_plus_distr; OrderedRing.Ropp_pos_neg; RingMicromega.Rops_wd; Rdefinitions.RbaseSymbolsImpl.Rplus; OrderedRing.Rplus_0_l; Raxioms.Rplus_0_l; OrderedRing.Rplus_0_r; RIneq.Rplus_0_r; RIneq.Rplus_0_r_uniq; Raxioms.Rplus_assoc; OrderedRing.Rplus_cancel_l; OrderedRing.Rplus_comm; Raxioms.Rplus_comm; Rdefinitions.RbaseSymbolsImpl.Rplus_def; RIneq.Rplus_diag; RIneq.Rplus_eq_compat_l; RIneq.Rplus_eq_compat_r; RIneq.Rplus_eq_reg_l; RIneq.Rplus_ge_compat_l; RIneq.Rplus_ge_compat_r; RIneq.Rplus_ge_reg_r; RIneq.Rplus_half_diag; RIneq.Rplus_le_compat; RIneq.Rplus_le_compat_l; RIneq.Rplus_le_compat_r; RIneq.Rplus_le_lt_0_compat; RIneq.Rplus_le_lt_0_neq_0; RIneq.Rplus_le_lt_compat; OrderedRing.Rplus_le_lt_mono; OrderedRing.Rplus_le_mono; OrderedRing.Rplus_le_mono_l; OrderedRing.Rplus_le_mono_r; RIneq.Rplus_le_reg_l; RIneq.Rplus_le_reg_r; RIneq.Rplus_lt_0_compat; RIneq.Rplus_lt_compat; Raxioms.Rplus_lt_compat_l; RIneq.Rplus_lt_compat_r; RIneq.Rplus_lt_le_0_compat; RIneq.Rplus_lt_le_compat; OrderedRing.Rplus_lt_le_mono; OrderedRing.Rplus_lt_mono; OrderedRing.Rplus_lt_mono_l; OrderedRing.Rplus_lt_mono_r; RIneq.Rplus_lt_reg_l; RIneq.Rplus_lt_reg_r; RIneq.Rplus_minus_assoc; RIneq.Rplus_minus_l; RIneq.Rplus_minus_r; RIneq.Rplus_ne; OrderedRing.Rplus_nonneg_nonneg; OrderedRing.Rplus_nonneg_pos; RIneq.Rplus_opp_l; Raxioms.Rplus_opp_r; RIneq.Rplus_opp_r_uniq; OrderedRing.Rplus_pos_nonneg; OrderedRing.Rplus_pos_pos; Rdefinitions.RbaseSymbolsImpl.Rquot1; Rdefinitions.RbaseSymbolsImpl.Rquot2; Rdefinitions.RbaseSymbolsImpl.Rrepr; Raxioms.Rrepr_0; Raxioms.Rrepr_1; Rdefinitions.Rrepr_appart_0; Raxioms.Rrepr_le; Raxioms.Rrepr_mult; Raxioms.Rrepr_opp; Raxioms.Rrepr_plus; Field_theory.Rring_ring_lemma1; RMicromega.Rsor; RIneq.Rsqr; RIneq.Rsqr_0_uniq; RIneq.Rsqr_def; RMicromega.Rsrt; Ring_theory.Rsub_def; Ring_theory.Rth_ARth; OrderedRing.Rtimes_0_l; OrderedRing.Rtimes_0_r; OrderedRing.Rtimes_comm; OrderedRing.Rtimes_neg_neg; OrderedRing.Rtimes_neq_0; OrderedRing.Rtimes_nonneg_nonneg; OrderedRing.Rtimes_pos_neg; OrderedRing.Rtimes_pos_pos; OrderedRing.Rtimes_square_nonneg; RIneq.Rtotal_order; ConstructiveRcomplete.Rup_pos; RingMicromega.SORRing_ring_lemma1; OrderedRing.SOR_ring_lemma1; RingMicromega.SORcleb_morph; RingMicromega.SORcneqb_morph; OrderedRing.SORle_antisymm; OrderedRing.SORle_refl; OrderedRing.SORle_trans; OrderedRing.SORle_wd; OrderedRing.SORlt_le_neq; OrderedRing.SORlt_trichotomy; OrderedRing.SORlt_wd; OrderedRing.SORopp_wd; OrderedRing.SORplus_le_mono_l; OrderedRing.SORplus_wd; RingMicromega.SORpower; RingMicromega.SORrm; OrderedRing.SORrt; OrderedRing.SORsetoid; OrderedRing.SORtimes_pos_pos; OrderedRing.SORtimes_wd; Ring_theory.SRadd_0_l; Ring_theory.SRadd_assoc; Ring_theory.SRadd_comm; Ring_theory.SRadd_ext; Ring_theory.SRdistr_l; Ring_theory.SReqe_Reqe; Ring_theory.SRmul_0_l; Ring_theory.SRmul_1_l; Ring_theory.SRmul_assoc; Ring_theory.SRmul_comm; Ring_theory.SRmul_ext; Ring_theory.SRopp; Ring_theory.SRopp_add; Ring_theory.SRopp_ext; Ring_theory.SRopp_mul_l; Ring_theory.SRsub; Ring_theory.SRsub_def; Ring_theory.SRth_ARth; Setoid.Seq_refl; Setoid.Seq_sym; Setoid.Seq_trans; Setoid.Setoid_Theory; Ring_theory.Smorph0; Ring_theory.Smorph1; Ring_theory.Smorph_add; Ring_theory.Smorph_eq; Ring_theory.Smorph_morph; Ring_theory.Smorph_mul; Ring_theory.Smorph_opp; Ring_theory.Smorph_sub; RelationClasses.StrictOrder_Irreflexive; RelationClasses.StrictOrder_Transitive; CRelationClasses.Symmetric; RelationClasses.Symmetric; Tauto.TFormula; CRelationClasses.Transitive; RelationClasses.Transitive; ConstructiveRcomplete.Un_cauchy_mod; Rseries.Un_cv; ConstructiveLimits.Un_cv_nat_real; Init.Unconvertible; ConstructiveCauchyRealsMult.Weaken_Qle_QpowerAddExp; ConstructiveCauchyRealsMult.Weaken_Qle_QpowerFac; ConstructiveCauchyRealsMult.Weaken_Qle_QpowerRemSubExp; ZMicromega.ZArithProof_ind; ZMicromega.ZChecker; ZMicromega.ZChecker_sound; ZMicromega.ZNpower; ZMicromega.ZSORaddon; ZMicromega.ZTautoChecker; ZMicromega.ZTautoChecker_sound; ZMicromega.ZWitness; Znat.Z_N_nat; RIneq.Z_R_minus; ZArith_dec.Z_dec'; Zdiv.Z_div_mod_eq_full; ConstructiveExtra.Z_inj_nat; ConstructiveExtra.Z_inj_nat_id; ConstructiveExtra.Z_inj_nat_rev; ...TRUNCATED BY DUNE... BinPos.Pos.add_xI_pred_double; BinPos.Pos.add_xO; Rlimit.adhDa; Rtopology.adherence; Rtopology.adherence_P1; Rtopology.adherence_P2; Rtopology.adherence_P3; ZMicromega.agree_env; ZMicromega.agree_env_eval_nformula; ZMicromega.agree_env_eval_nformulae; ZMicromega.agree_env_jump; ZMicromega.agree_env_subset; ZMicromega.agree_env_tail; all; Morphisms_Prop.all_iff_morphism; Morphisms_Prop.all_iff_morphism_obligation_1; and_assoc; Tauto.and_cnf; Tauto.and_cnf_opt; Tauto.and_cnf_opt_cnf_ff_r; Tauto.and_cnf_opt_cnf_tt; and_comm; and_iff_compat_l; Morphisms_Prop.and_iff_morphism; Morphisms_Prop.and_iff_morphism_obligation_1; and_ind; ZifyClasses.and_morph; and_rec; andb; Bool.andb_false_iff; andb_prop; Bool.andb_true_iff; app; CRelationClasses.arrow; CRelationClasses.arrow_Transitive; CRelationClasses.arrow_Transitive_obligation_1; BinNat.N.bi_induction; PeanoNat.Nat.bi_induction; BinInt.Z.bi_induction; ConstructiveCauchyReals.bound; Raxioms.bound; ZMicromega.bound_var; Rtopology.bounded; BinNat.N.case_analysis; PeanoNat.Nat.case_analysis; ConstructiveCauchyReals.cauchy; ZMicromega.ceiling; BinNat.N.central_induction; PeanoNat.Nat.central_induction; BinInt.Z.central_induction; EnvRing.ceqb_spec; Field_theory.ceqb_spec; Ring_polynom.ceqb_spec; Field_theory.ceqb_spec'; RingMicromega.check_inconsistent; RingMicromega.check_inconsistent_sound; RingMicromega.check_normalised_formulas; RingMicromega.checker_nf_sound; Classical_Prop.classic; Tauto.clause; RingMicromega.cleb_sound; Rtopology.closed_set; Rtopology.closed_set_P1; RingMicromega.cltb; RingMicromega.cltb_sound; RingMicromega.cneqb; RingMicromega.cneqb_sound; Tauto.cnf; Tauto.cnf_checker; Tauto.cnf_checker_sound; Tauto.cnf_ff; RingMicromega.cnf_negate; RingMicromega.cnf_negate_correct; RingMicromega.cnf_normalise; RingMicromega.cnf_normalise_correct; RingMicromega.cnf_of_list; ZMicromega.cnf_of_list; RingMicromega.cnf_of_list_correct; ZMicromega.cnf_of_list_correct; Tauto.cnf_tt; Rtopology.compact; Rtopology.compact_EMP; Rtopology.compact_P1; Rtopology.compact_P2; Rtopology.compact_P3; Rtopology.compact_eqDom; PeanoNat.Nat.compare; NatDef.N.compare; PosDef.Pos.compare; BinInt.Z.compare; BinNat.N.compare_antisym; PeanoNat.Nat.compare_antisym; BinPos.Pos.compare_antisym; BinInt.Z.compare_antisym; PosDef.Pos.compare_cont; BinPos.Pos.compare_cont_antisym; BinPos.Pos.compare_cont_spec; BinNat.N.compare_eq_iff; PeanoNat.Nat.compare_eq_iff; BinPos.Pos.compare_eq_iff; BinInt.Z.compare_eq_iff; PeanoNat.Nat.compare_ge_iff; PeanoNat.Nat.compare_gt_iff; BinInt.Z.compare_gt_iff; BinNat.N.compare_le_iff; PeanoNat.Nat.compare_le_iff; BinPos.Pos.compare_le_iff; BinInt.Z.compare_le_iff; BinNat.N.compare_lt_iff; PeanoNat.Nat.compare_lt_iff; BinPos.Pos.compare_lt_iff; BinInt.Z.compare_lt_iff; BinNat.N.compare_nge_iff; PeanoNat.Nat.compare_nge_iff; BinPos.Pos.compare_nge_iff; BinInt.Z.compare_nge_iff; BinInt.Z.compare_ngt_iff; BinNat.N.compare_nle_iff; PeanoNat.Nat.compare_nle_iff; BinPos.Pos.compare_nle_iff; BinInt.Z.compare_nle_iff; BinNat.N.compare_refl; PeanoNat.Nat.compare_refl; BinPos.Pos.compare_refl; BinInt.Z.compare_refl; BinNat.N.compare_spec; PeanoNat.Nat.compare_spec; BinPos.Pos.compare_spec; Qminmax.Q.OT.compare_spec; BinInt.Z.compare_spec; BinInt.Z.compare_sub; BinPos.Pos.compare_sub_mask; PeanoNat.Nat.compare_succ; BinPos.Pos.compare_succ_l; BinPos.Pos.compare_succ_r; BinPos.Pos.compare_succ_succ; BinPos.Pos.compare_xI_xI; BinPos.Pos.compare_xI_xO; BinPos.Pos.compare_xO_xI; BinPos.Pos.compare_xO_xO; RelationClasses.complement; Rtopology.complementary; Raxioms.completeness; Rtopology.cond_fam; RIneq.cond_neg; RIneq.cond_pos; Field_theory.condition; ConstructiveEpsilon.constructive_indefinite_ground_description; ConstructiveExtra.constructive_indefinite_ground_description_Z; ConstructiveEpsilon.constructive_indefinite_ground_description_nat; Rderiv.cont_deriv; Rderiv.continue_in; Ranalysis1.continuity; Rtopology.continuity_P1; Rtopology.continuity_P2; Rtopology.continuity_ab_maj; Rtopology.continuity_ab_min; Rtopology.continuity_compact; Ranalysis1.continuity_pt; Ranalysis1.continuity_pt_minus; Ranalysis1.continuity_pt_mult; Ranalysis1.continuity_pt_opp; Rtopology.covering; Rtopology.covering_finite; Rtopology.covering_open_set; CRelationClasses.crelation; Field_theory.cross_product_eq; ZMicromega.cutting_plane_sound; Decidable.decidable; Field_theory.default_isIn; Field_theory.default_isIn_ok; SetoidTactics.default_relation; Field_theory.denum; Ranalysis1.deriv_constant2; Ranalysis1.deriv_maximum; Ranalysis1.deriv_minimum; Ranalysis1.derivable; Ranalysis1.derivable_const; Ranalysis1.derivable_continuous; Ranalysis1.derivable_continuous_pt; Ranalysis1.derivable_derive; Ranalysis1.derivable_id; Ranalysis1.derivable_pt; Ranalysis1.derivable_pt_abs; Ranalysis1.derivable_pt_const; Ranalysis1.derivable_pt_id; Ranalysis1.derivable_pt_lim; Ranalysis1.derivable_pt_lim_D_in; Ranalysis1.derivable_pt_lim_const; Ranalysis1.derivable_pt_lim_id; Ranalysis1.derivable_pt_lim_minus; Ranalysis1.derivable_pt_lim_mult; Ranalysis1.derivable_pt_lim_opp; Ranalysis1.derivable_pt_lim_opp_fwd; Ranalysis1.derivable_pt_minus; Ranalysis1.derivable_pt_mult; Ranalysis1.derivable_pt_opp; Ranalysis1.derive_pt; Ranalysis1.derive_pt_D_in; Ranalysis1.derive_pt_const; Ranalysis1.derive_pt_eq; Ranalysis1.derive_pt_eq_0; Ranalysis1.derive_pt_eq_1; Ranalysis1.derive_pt_id; Ranalysis1.derive_pt_minus; Ranalysis1.derive_pt_mult; Ranalysis1.derive_pt_opp; Bool.diff_false_true; Rtopology.disc; Rtopology.disc_P1; Field_theory.display_pow_linear; Rlimit.dist; BinInt.Z.div; BinInt.Z.div_0_r; BinNat.N.div_eucl; BinInt.Z.div_eucl; BinInt.Z.div_eucl_0_r; BinInt.Z.div_eucl_eq; BinNat.N.div_eucl_spec; Ring_theory.div_eucl_th; BinInt.Z.div_exact; BinInt.Z.div_mod; BinInt.Z.Private_NZDiv.div_mod_unique; BinInt.Z.div_mod_unique; BinInt.Z.div_mul; BinInt.Z.div_unique; BinInt.Z.div_unique_exact; BinInt.Z.div_wd; BinPos.Pos.divide; BinInt.Z.divide; BinInt.Z.divide_Zpos; BinInt.Z.divide_Zpos_Zneg_l; BinInt.Z.divide_Zpos_Zneg_r; BinPos.Pos.divide_add_cancel_l; BinInt.Z.divide_add_r; BinInt.Z.divide_antisym_nonneg; BinInt.Z.divide_div_mul_exact; BinPos.Pos.divide_mul_l; BinInt.Z.divide_mul_l; BinPos.Pos.divide_mul_r; BinInt.Z.divide_mul_r; BinInt.Z.divide_opp_r; BinInt.Z.divide_refl; BinInt.Z.divide_trans; BinInt.Z.divide_transitive; BinInt.Z.divide_wd; BinPos.Pos.divide_xO_xI; BinPos.Pos.divide_xO_xO; Rtopology.domain_finite; NatDef.N.double; BinInt.Z.double; BinNat.N.double_add; BinPos.Pos.double_mask; BinNat.N.double_mul; BinPos.Pos.double_pred_mask; Tauto.eAND; Tauto.eAnd_morph_Proper; Tauto.eFF; Tauto.eIFF; Tauto.eIFF_morph_Proper; Tauto.eIMPL; Tauto.eIMPL_morph_Proper; Tauto.eKind; Tauto.eNOT; Tauto.eNOT_morph_Proper; Tauto.eOR; Tauto.eOR_morph_Proper; Tauto.eTT; Tauto.e_rtyp; Tauto.eiff; Tauto.eiff_eq; Tauto.eiff_refl; Tauto.eiff_sym; Tauto.eiff_trans; EnvRing.env_morph; Rlimit.eps2; Rlimit.eps2_Rgt_R0; BinNat.N.eq; BinInt.Z.eq; RingMicromega.eq0_cnf; Qreals.eqR_Qeq; Rtopology.eq_Dom; RIneq.eq_IZR; RIneq.eq_IZR_R0; RIneq.eq_IZR_contrapositive; RelationClasses.eq_Reflexive; RelationClasses.eq_Symmetric; RelationClasses.eq_Transitive; eq_add_S; ZMicromega.eq_cnf; BinPos.Pos.eq_dec; BinInt.Z.eq_dec; BinInt.Z.eq_decidable; BinNat.N.Private_OrderTac.IsTotal.eq_equiv; PeanoNat.Nat.Private_OrderTac.IsTotal.eq_equiv; BinInt.Z.Private_OrderTac.IsTotal.eq_equiv; BinNat.N.eq_equiv; PeanoNat.Nat.eq_equiv; BinPos.Pos.eq_equiv; Qminmax.Q.OT.eq_equiv; BinInt.Z.eq_equiv; RelationClasses.eq_equivalence; eq_ind; eq_ind_r; BinPos.Pos.Private_Tac.eq_le; Qminmax.Q.Private_Tac.eq_le; BinInt.Z.Private_Tac.eq_le; BinInt.Z.Private_OrderTac.Tac.eq_le; BinNat.N.eq_le_incl; PeanoNat.Nat.eq_le_incl; BinInt.Z.eq_le_incl; PeanoNat.Nat.Private_Tac.eq_lt; BinPos.Pos.Private_Tac.eq_lt; Qminmax.Q.Private_Tac.eq_lt; BinInt.Z.Private_Tac.eq_lt; BinInt.Z.Private_OrderTac.Tac.eq_lt; BinInt.Z.eq_mul_0; BinInt.Z.eq_mul_1_nonneg; BinInt.Z.eq_mul_1_nonneg'; BinPos.Pos.Private_Tac.eq_neq; BinInt.Z.Private_OrderTac.Tac.eq_neq; ZifyInst.eq_pos_inj; Morphisms.eq_proper_proxy; eq_rec; eq_rec_r; eq_rect; BinPos.Pos.Private_Tac.eq_refl; BinInt.Z.Private_OrderTac.Tac.eq_refl; BinInt.Z.eq_refl; eq_sym; PeanoNat.Nat.Private_Tac.eq_sym; BinPos.Pos.Private_Tac.eq_sym; Qminmax.Q.Private_Tac.eq_sym; BinInt.Z.Private_Tac.eq_sym; BinInt.Z.Private_OrderTac.Tac.eq_sym; eq_trans; BinPos.Pos.Private_Tac.eq_trans; BinInt.Z.Private_OrderTac.Tac.eq_trans; Bool.eqb; BinNat.N.eqb; PosDef.Pos.eqb; BinInt.Z.eqb; BinNat.N.eqb_eq; BinPos.Pos.eqb_eq; BinInt.Z.eqb_eq; BinPos.Pos.eqb_neq; BinInt.Z.eqb_neq; BinPos.Pos.eqb_refl; BinNat.N.eqb_spec; BinPos.Pos.eqb_spec; BinInt.Z.eqb_spec; Bool.eqb_true_iff; SetoidTactics.equivalence_default; RelationClasses.equivalence_rewrite_relation; RingMicromega.eval_Psatz; ZMicromega.eval_Psatz; RingMicromega.eval_Psatz_Sound; ZMicromega.eval_Psatz_sound; Tauto.eval_bf; Tauto.eval_bf_map; Tauto.eval_clause; Tauto.eval_cnf; Tauto.eval_cnf_and_opt; Tauto.eval_cnf_app; Tauto.eval_cnf_cons_iff; Tauto.eval_cnf_ff; Tauto.eval_cnf_tt; ZMicromega.eval_expr; Tauto.eval_f; Tauto.eval_f_morph; RingMicromega.eval_formula; RingMicromega.eval_formulaSC; RingMicromega.eval_nformula; ZMicromega.eval_nformula; ZMicromega.eval_nformula_bound_var; RingMicromega.eval_nformula_dec; ZMicromega.eval_nformula_mk_eq_pos; ZMicromega.eval_nformula_split; RingMicromega.eval_op1; RingMicromega.eval_op2; Tauto.eval_opt_clause; RingMicromega.eval_pexpr; RingMicromega.eval_pexprSC; RingMicromega.eval_pol; ZMicromega.eval_pol; ZMicromega.eval_pol_Pc; RingMicromega.eval_pol_add; ZMicromega.eval_pol_add; RingMicromega.eval_pol_norm; ZMicromega.eval_pol_norm; RingMicromega.eval_pol_opp; RingMicromega.eval_pol_sub; ZMicromega.eval_pol_sub; RingMicromega.eval_sexpr; RingMicromega.eval_sformula; Tauto.eval_tt; Morphisms_Prop.ex_iff_morphism; Morphisms_Prop.ex_iff_morphism_obligation_1; ex_ind; Rtopology.f; f_equal; f_equal2; f_equal_nat; Rtopology.family_finite; Rtopology.family_open_set; Field_theory.fcons_ok; Ranalysis1.fct_cte; Field_theory.field_is_integral_domain; VarMap.find; Basics.flip; CRelationClasses.flip; RelationClasses.flip_Reflexive; List.fold_left; List.fold_right; fst; BinPos.Pos.gcd; BinInt.Z.gcd; BinInt.Z.gcd_comm; BinInt.Z.gcd_divide_iff; BinInt.Z.gcd_divide_l; BinInt.Z.gcd_divide_r; BinPos.Pos.gcd_greatest; BinInt.Z.gcd_greatest; BinInt.Z.gcd_mul_diag_l; BinInt.Z.gcd_nonneg; BinInt.Z.gcd_opp_l; BinInt.Z.gcd_opp_r; BinInt.Z.gcd_unique; BinInt.Z.gcd_unique_alt; BinPos.Pos.gcdn; BinPos.Pos.gcdn_greatest; ge; BinPos.Pos.ge; BinInt.Z.ge; BinInt.Z.ge_le; BinPos.Pos.ge_le_iff; BinInt.Z.ge_le_iff; BinInt.Z.geb; BinInt.Z.geb_le; BinInt.Z.geb_leb; ZMicromega.genCuttingPlane; ZMicromega.genCuttingPlaneNone; InitialRing.gen_Zeqb_ok; InitialRing.gen_phiN; InitialRing.gen_phiN1; InitialRing.gen_phiN_add; InitialRing.gen_phiN_morph; InitialRing.gen_phiN_mult; InitialRing.gen_phiN_sub; InitialRing.gen_phiPOS; InitialRing.gen_phiPOS1; InitialRing.gen_phiZ; InitialRing.gen_phiZ1; InitialRing.gen_phiZ1_pos_sub; InitialRing.gen_phiZ_add; InitialRing.gen_phiZ_ext; InitialRing.gen_phiZ_morph; InitialRing.gen_phiZ_mul; EnvRing.get_PEopp; Ring_polynom.get_PEopp; InitialRing.get_signZ; InitialRing.get_signZ_th; Ring_theory.get_sign_None; Ring_theory.get_sign_None_th; BinPos.Pos.ggcd; BinInt.Z.ggcd; BinPos.Pos.ggcd_correct_divisors; BinInt.Z.ggcd_correct_divisors; BinPos.Pos.ggcd_gcd; BinInt.Z.ggcd_gcd; BinPos.Pos.ggcdn; BinPos.Pos.ggcdn_correct_divisors; BinPos.Pos.ggcdn_gcdn; ConstructiveLUB.glb_dec_Q; BinPos.Pos.gt; BinInt.Z.gt; BinPos.Pos.gt_lt; BinInt.Z.gt_lt; BinPos.Pos.gt_lt_iff; BinInt.Z.gt_lt_iff; BinInt.Z.gt_wf; BinInt.Z.gtb; BinInt.Z.gtb_gt; BinInt.Z.gtb_lt; BinInt.Z.gtb_ltb; BinInt.Z.gtb_spec; Env.hd; List.hd; Tauto.hold; Tauto.hold_eAND; Tauto.hold_eEQ; Tauto.hold_eFF; Tauto.hold_eIFF; Tauto.hold_eIFF_IMPL; Tauto.hold_eIMPL; Tauto.hold_eNOT; Tauto.hold_eOR; Tauto.hold_eTT; Tauto.hold_eiff; id; Ranalysis1.id; Nnat.N2Nat.id; Znat.N2Z.id; Nnat.Nat2N.id; Pnat.Nat2Pos.id; Znat.Nat2Z.id; Pnat.Pos2Nat.id; Znat.Z2N.id; Znat.Z2Nat.id; BinInt.Z2Pos.id; Ring_theory.id_phi_N; Pnat.SuccNat2Pos.id_succ; Tauto.if_cnf_tt; Field_theory.if_true; iff; CRelationClasses.iffT; CMorphisms.iffT_arrow_subrelation; CMorphisms.iffT_flip_arrow_subrelation; RelationClasses.iff_Reflexive; RelationClasses.iff_Symmetric; RelationClasses.iff_Transitive; RelationClasses.iff_equivalence; Morphisms.iff_flip_impl_subrelation; Morphisms_Prop.iff_iff_iff_impl_morphism; Morphisms_Prop.iff_iff_iff_impl_morphism_obligation_1; Morphisms.iff_impl_subrelation; iff_refl; Bool.iff_reflect; iff_stepl; iff_sym; iff_trans; Rtopology.image_dir; Rtopology.image_rec; Basics.impl; RelationClasses.impl_Reflexive; RelationClasses.impl_Reflexive_obligation_1; implb; Classical_Prop.imply_to_and; Rtopology.included; Rtopology.included_trans; Rtopology.ind; BinNat.N.induction; PeanoNat.Nat.induction; ZifyClasses.inj; Nnat.N2Nat.inj; Znat.Nat2Z.inj; Pnat.Pos2Nat.inj; BinInt.Pos2Z.inj; Pnat.Pos2Nat.inj_1; Nnat.N2Nat.inj_add; Znat.N2Z.inj_add; Nnat.Nat2N.inj_add; Znat.Nat2Z.inj_add; Pnat.Pos2Nat.inj_add; BinInt.Pos2Z.inj_add; Nnat.N2Nat.inj_compare; Znat.N2Z.inj_compare; Nnat.Nat2N.inj_compare; Znat.Nat2Z.inj_compare; Pnat.Pos2Nat.inj_compare; Znat.Z2Nat.inj_compare; Znat.Nat2Z.inj_ge; Znat.Nat2Z.inj_iff; BinInt.Pos2Z.inj_iff; Znat.Nat2Z.inj_le; Pnat.Pos2Nat.inj_le; Znat.Z2Nat.inj_le; Nnat.N2Nat.inj_max; Znat.N2Z.inj_max; Nnat.Nat2N.inj_max; Znat.Nat2Z.inj_max; Pnat.Pos2Nat.inj_mul; BinInt.Pos2Z.inj_mul; Znat.N2Z.inj_pos; BinInt.Pos2Z.inj_pow; BinInt.Pos2Z.inj_pow_pos; Znat.Nat2Z.inj_succ; Pnat.Pos2Nat.inj_succ; BinInt.Pos2Z.inj_succ; Pnat.Pos2Nat.inj_xI; Pnat.Pos2Nat.inj_xO; ConstructiveCauchyReals.inject_Q; ConstructiveCauchyReals.inject_Q_cauchy; ConstructiveCauchyReals.inject_Q_compare; ConstructiveCauchyReals.inject_Q_le; ConstructiveCauchyReals.inject_Q_lt; ConstructiveCauchyReals.inject_Q_morph; ConstructiveCauchyReals.inject_Q_morph_Proper; ConstructiveCauchyRealsMult.inject_Q_mult; ConstructiveCauchyReals.inject_Q_plus; ConstructiveCauchyReals.inject_Z; QArith_base.inject_Z; Rtopology.interior; Rtopology.interior_P1; Rtopology.interior_P2; Ring_polynom.interp_PElist; Ring_polynom.interp_PElist_ok; PeanoNat.Nat.Private_Tac.interp_ord; BinPos.Pos.Private_Tac.interp_ord; Qminmax.Q.Private_Tac.interp_ord; BinInt.Z.Private_Tac.interp_ord; BinNat.N.Private_OrderTac.Tac.interp_ord; PeanoNat.Nat.Private_OrderTac.Tac.interp_ord; BinInt.Z.Private_OrderTac.Tac.interp_ord; Rtopology.intersection_domain; Pnat.SuccNat2Pos.inv; ConstructiveEpsilon.inv_before_witness; Field_theory.isIn; Field_theory.isIn_ok; ConstructiveReals.isLinearOrder; Tauto.is_bool; Tauto.is_bool_inv; Tauto.is_cnf_ff; Tauto.is_cnf_ff_cnf_ff; Tauto.is_cnf_ff_inv; Tauto.is_cnf_tt; Tauto.is_cnf_tt_cnf_ff; Tauto.is_cnf_tt_inv; ConstructiveLUB.is_lub; Raxioms.is_lub; Znat.Nat2Z.is_nonneg; BinInt.Pos2Z.is_nonneg; Pnat.Pos2Nat.is_pos; BinInt.Pos2Z.is_pos; Pnat.Pos2Nat.is_succ; is_true; ConstructiveLUB.is_upper_bound; Raxioms.is_upper_bound; ConstructiveLUB.is_upper_bound_closed; ConstructiveLUB.is_upper_bound_dec; ConstructiveLUB.is_upper_bound_epsilon; ConstructiveLUB.is_upper_bound_glb; ConstructiveLUB.is_upper_bound_not_epsilon; PosDef.Pos.iter; BinPos.Pos.iter_add; BinPos.Pos.iter_ind; BinPos.Pos.iter_invariant; BinPos.Pos.iter_op; BinPos.Pos.iter_op_succ; BinPos.Pos.iter_succ; BinPos.Pos.iter_swap; BinPos.Pos.iter_swap_gen; BinList.jump; Env.jump; BinList.jump_add; Env.jump_add; Ring_polynom.jump_add'; BinList.jump_pred_double; Env.jump_pred_double; Env.jump_simpl; BinList.jump_succ; BinList.jump_tl; BinNat.N.le; BinPos.Pos.le; BinInt.Z.le; ZMicromega.le_0_iff; BinNat.N.le_0_l; PeanoNat.Nat.le_0_l; le_0_n; BinInt.Z.le_0_sub; BinPos.Pos.le_1_l; le_S_n; BinInt.Z.le_add_le_sub_l; BinInt.Z.le_add_le_sub_r; BinPos.Pos.le_antisym; BinPos.Pos.Private_Tac.le_antisym; BinInt.Z.Private_OrderTac.Tac.le_antisym; BinInt.Z.le_antisymm; Qminmax.Q.Private_Tac.le_eq; BinInt.Z.Private_Tac.le_eq; BinInt.Z.Private_OrderTac.Tac.le_eq; BinInt.Z.le_exists_sub; BinInt.Z.le_ge; BinInt.Z.le_ge_cases; BinNat.N.le_gt_cases; PeanoNat.Nat.le_gt_cases; BinInt.Z.le_gt_cases; le_ind; BinInt.Z.le_ind; BinNat.N.le_le_succ_r; PeanoNat.Nat.le_le_succ_r; BinInt.Z.le_le_succ_r; BinInt.Z.le_lt_add_lt; BinPos.Pos.le_lt_trans; PeanoNat.Nat.Private_Tac.le_lt_trans; BinPos.Pos.Private_Tac.le_lt_trans; Qminmax.Q.Private_Tac.le_lt_trans; BinInt.Z.Private_Tac.le_lt_trans; BinNat.N.Private_OrderTac.Tac.le_lt_trans; PeanoNat.Nat.Private_OrderTac.Tac.le_lt_trans; BinInt.Z.Private_OrderTac.Tac.le_lt_trans; BinInt.Z.le_lt_trans; BinNat.N.Private_OrderTac.IsTotal.le_lteq; PeanoNat.Nat.Private_OrderTac.IsTotal.le_lteq; BinInt.Z.Private_OrderTac.IsTotal.le_lteq; BinNat.N.le_lteq; PeanoNat.Nat.le_lteq; BinPos.Pos.le_lteq; Qminmax.Q.OT.le_lteq; BinInt.Z.le_lteq; PeanoNat.Nat.le_max_l; BinPos.Pos.le_max_l; PeanoNat.Nat.le_max_r; BinPos.Pos.le_max_r; BinInt.Z.le_min_l; le_n_S; ZMicromega.le_neg; BinInt.Z.le_neq; BinPos.Pos.Private_Tac.le_neq_lt; BinInt.Z.Private_OrderTac.Tac.le_neq_lt; BinInt.Z.le_ngt; BinPos.Pos.le_nlt; le_pred; BinNat.N.le_preorder; PeanoNat.Nat.le_preorder; BinInt.Z.le_preorder; BinNat.N.le_refl; PeanoNat.Nat.le_refl; BinPos.Pos.le_refl; BinInt.Z.Private_OrderTac.Tac.le_refl; BinInt.Z.le_refl; BinInt.Z.le_sub_le_add_r; BinNat.N.le_succ_l; PeanoNat.Nat.le_succ_l; BinPos.Pos.le_succ_l; BinInt.Z.le_succ_l; BinNat.N.le_succ_r; PeanoNat.Nat.le_succ_r; BinInt.Z.le_succ_r; BinNat.N.le_trans; PeanoNat.Nat.le_trans; BinPos.Pos.le_trans; BinInt.Z.le_trans; BinNat.N.le_wd; PeanoNat.Nat.le_wd; BinInt.Z.le_wd; PeanoNat.Nat.leb; NatDef.N.leb; BinPos.Pos.leb; BinInt.Z.leb; BinNat.N.leb_le; PeanoNat.Nat.leb_le; BinPos.Pos.leb_le; BinInt.Z.leb_le; BinNat.N.leb_spec; PeanoNat.Nat.leb_spec; BinPos.Pos.leb_spec; BinInt.Z.leb_spec; BinNat.N.leb_spec0; PeanoNat.Nat.leb_spec0; BinPos.Pos.leb_spec0; BinInt.Z.leb_spec0; BinInt.Z.left_induction; Rlimit.limit1_in; Rlimit.limit_Ropp; Rlimit.limit_in; Rlimit.limit_minus; Rlimit.limit_mul; Rlimit.limit_plus; ConstructiveCauchyReals.linear_order_T; ConstructiveEpsilon.linear_search_conform; ConstructiveEpsilon.linear_search_from_0_conform; list_ind; list_rec; Ring_polynom.local_mkpow_ok; lt; BinNat.N.lt; BinPos.Pos.lt; BinInt.Z.lt; BinInt.Z.lt_0_1; RIneq.lt_0_IZR; BinInt.Z.lt_0_sub; PeanoNat.Nat.lt_0_succ; BinInt.Z.lt_1_2; BinInt.Z.lt_1_l; BinInt.Z.lt_1_mul_pos; BinPos.Pos.lt_1_succ; ConstructiveReals.lt_CR_of_Q; RIneq.lt_IZR; BinInt.Z.lt_add_lt_sub_r; BinInt.Z.lt_add_pos_l; BinInt.Z.lt_add_pos_r; BinPos.Pos.lt_add_r; BinNat.N.lt_asymm; PeanoNat.Nat.lt_asymm; BinInt.Z.lt_asymm; BinNat.N.Private_OrderTac.IsTotal.lt_compat; PeanoNat.Nat.Private_OrderTac.IsTotal.lt_compat; BinInt.Z.Private_OrderTac.IsTotal.lt_compat; BinNat.N.lt_compat; PeanoNat.Nat.lt_compat; BinPos.Pos.lt_compat; Qminmax.Q.OT.lt_compat; BinInt.Z.lt_compat; BinPos.Pos.Private_Tac.lt_eq; Qminmax.Q.Private_Tac.lt_eq; BinInt.Z.Private_Tac.lt_eq; BinNat.N.Private_OrderTac.Tac.lt_eq; PeanoNat.Nat.Private_OrderTac.Tac.lt_eq; BinInt.Z.Private_OrderTac.Tac.lt_eq; BinNat.N.lt_eq_cases; PeanoNat.Nat.lt_eq_cases; BinPos.Pos.lt_eq_cases; BinInt.Z.lt_eq_cases; BinNat.N.lt_exists_pred; PeanoNat.Nat.lt_exists_pred; BinInt.Z.lt_exists_pred; BinInt.Z.lt_ge_cases; BinPos.Pos.lt_gt; BinInt.Z.lt_gt; BinInt.Z.lt_gt_cases; BinPos.Pos.lt_iff_add; BinNat.N.lt_ind; BinInt.Z.lt_ind; BinNat.N.lt_ind_rel; ConstructiveCauchyReals.lt_inject_Q; BinNat.N.lt_irrefl; PeanoNat.Nat.lt_irrefl; BinPos.Pos.lt_irrefl; PeanoNat.Nat.Private_Tac.lt_irrefl; BinPos.Pos.Private_Tac.lt_irrefl; Qminmax.Q.Private_Tac.lt_irrefl; BinInt.Z.Private_Tac.lt_irrefl; BinNat.N.Private_OrderTac.Tac.lt_irrefl; PeanoNat.Nat.Private_OrderTac.Tac.lt_irrefl; BinInt.Z.Private_OrderTac.Tac.lt_irrefl; BinInt.Z.lt_irrefl; ZMicromega.lt_le_iff; BinNat.N.lt_le_incl; PeanoNat.Nat.lt_le_incl; BinInt.Z.lt_le_incl; BinInt.Z.lt_le_pred; BinPos.Pos.lt_le_trans; BinInt.Z.lt_le_trans; BinNat.N.lt_lt_succ_r; PeanoNat.Nat.lt_lt_succ_r; BinInt.Z.lt_lt_succ_r; BinInt.Z.lt_neq; BinInt.Z.lt_nge; BinPos.Pos.lt_nle; BinNat.N.Private_OrderTac.IsTotal.lt_strorder; PeanoNat.Nat.Private_OrderTac.IsTotal.lt_strorder; BinInt.Z.Private_OrderTac.IsTotal.lt_strorder; BinNat.N.lt_strorder; PeanoNat.Nat.lt_strorder; BinPos.Pos.lt_strorder; Qminmax.Q.OT.lt_strorder; BinInt.Z.lt_strorder; BinInt.Z.lt_sub_lt_add_r; BinNat.N.lt_succ_diag_r; PeanoNat.Nat.lt_succ_diag_r; BinPos.Pos.lt_succ_diag_r; BinInt.Z.lt_succ_diag_r; BinNat.N.lt_succ_l; BinInt.Z.lt_succ_l; BinNat.N.lt_succ_r; PeanoNat.Nat.lt_succ_r; BinPos.Pos.lt_succ_r; BinInt.Z.lt_succ_r; BinNat.N.Private_OrderTac.IsTotal.lt_total; PeanoNat.Nat.Private_OrderTac.IsTotal.lt_total; BinInt.Z.Private_OrderTac.IsTotal.lt_total; BinNat.N.lt_total; PeanoNat.Nat.lt_total; Qminmax.Q.OT.lt_total; BinPos.Pos.lt_total; BinInt.Z.lt_total; BinNat.N.lt_trans; PeanoNat.Nat.lt_trans; BinPos.Pos.lt_trans; PeanoNat.Nat.Private_Tac.lt_trans; BinPos.Pos.Private_Tac.lt_trans; BinInt.Z.Private_Tac.lt_trans; BinNat.N.Private_OrderTac.Tac.lt_trans; PeanoNat.Nat.Private_OrderTac.Tac.lt_trans; BinInt.Z.Private_OrderTac.Tac.lt_trans; BinInt.Z.lt_trans; BinNat.N.lt_trichotomy; PeanoNat.Nat.lt_trichotomy; BinInt.Z.lt_trichotomy; BinNat.N.lt_wd; PeanoNat.Nat.lt_wd; BinInt.Z.lt_wd; PeanoNat.Nat.lt_wd_obligation_1; BinNat.N.lt_wf; PeanoNat.Nat.lt_wf; BinInt.Z.lt_wf; BinInt.Z.ltb; BinInt.Z.ltb_ge; BinInt.Z.ltb_lt; BinInt.Z.ltb_nlt; BinInt.Z.ltb_spec; BinInt.Z.ltb_spec0; ZMicromega.makeCuttingPlane; ZMicromega.makeCuttingPlane_ns_sound; Refl.make_conj; Refl.make_conj_app; Refl.make_conj_cons; Refl.make_conj_impl; Refl.make_conj_in; Refl.make_conj_rapp; Refl.make_impl; Refl.make_impl_map; ListDef.map; RingMicromega.map_Formula; RingMicromega.map_PExpr; Tauto.map_bformula; RingMicromega.map_option; RingMicromega.map_option2; BinPos.Pos.mask2cmp; PeanoNat.Nat.max; BinNat.N.max; BinPos.Pos.max; BinInt.Z.max; BinPos.Pos.max_1_l; BinInt.Z.max_case; BinPos.Pos.max_case_strong; BinPos.Pos.Private_Dec.max_case_strong; BinInt.Z.Private_Dec.max_case_strong; BinInt.Z.max_case_strong; BinInt.Z.max_comm; max_l; PeanoNat.Nat.max_l; BinPos.Pos.max_l; BinInt.Z.max_l; BinPos.Pos.max_le_compat_r; BinPos.Pos.max_lub_iff; BinPos.Pos.max_mono; BinPos.Pos.max_monotone; max_r; PeanoNat.Nat.max_r; BinPos.Pos.max_r; BinInt.Z.max_r; PeanoNat.Nat.max_spec; BinPos.Pos.max_spec; BinInt.Z.max_spec; ZMicromega.max_var; ZMicromega.max_var_acc; ZMicromega.max_var_nformulae; ZMicromega.max_var_nformulae_mono_aux; ZMicromega.max_var_nformulae_mono_aux'; RingMicromega.micomega_sor_setoid; RingMicromega.micomega_sor_setoid_Reflexive; RingMicromega.micomega_sor_setoid_Symmetric; RingMicromega.micomega_sor_setoid_Transitive; BinInt.Z.min; BinInt.Z.Private_Dec.min_case; BinInt.Z.Private_Dec.min_case_strong; BinInt.Z.Private_Dec.min_dec; BinInt.Z.min_dec; BinInt.Z.min_l; BinInt.Z.min_r; BinInt.Z.min_spec; RIneq.minus_IPR; RIneq.minus_IZR; Ranalysis1.minus_fct; EnvRing.mkPX; Ring_polynom.mkPX; Ring_polynom.mkPX_ext; EnvRing.mkPX_ok; Ring_polynom.mkPX_ok; EnvRing.mkPinj; Ring_polynom.mkPinj; Ring_polynom.mkPinj_ext; EnvRing.mkPinj_ok; Ring_polynom.mkPinj_ok; EnvRing.mkPinj_pred; Ring_polynom.mkPinj_pred; Ring_polynom.mkVmon; Ring_polynom.mkVmon_ok; EnvRing.mkX; Ring_polynom.mkX; EnvRing.mkX_ok; Ring_polynom.mkX_ok; EnvRing.mkXi; Ring_polynom.mkXi; Ring_polynom.mkZmon; Ring_polynom.mkZmon_ok; EnvRing.mk_X; Ring_polynom.mk_X; Tauto.mk_and; ZMicromega.mk_eq_pos; Tauto.mk_iff; Tauto.mk_iff_is_bool; Tauto.mk_impl; Ring_polynom.mk_monpol_list; Tauto.mk_or; Ring_polynom.mkadd_mult; Ring_polynom.mkadd_mult_ok; ZifyClasses.mkapp; ZifyClasses.mkapp2; Ring_polynom.mkmult1; Ring_polynom.mkmult1_ok; Ring_polynom.mkmult_c; Ring_polynom.mkmult_c_ok; Ring_polynom.mkmult_c_pos; Ring_polynom.mkmult_c_pos_ok; Ring_polynom.mkmult_pow; Ring_polynom.mkmult_pow_ok; Ring_polynom.mkmult_rec; Ring_polynom.mkmult_rec_ok; Ring_polynom.mkmultm1; Ring_polynom.mkmultm1_ok; Ring_polynom.mkopp_pow; Ring_polynom.mkopp_pow_ok; Ring_polynom.mkpow; Ring_polynom.mkpow_ok; ZifyClasses.mkrel; BinInt.Z.mod_divide; BinInt.Z.mod_eq; BinInt.Z.mod_mul; BinInt.Z.mod_neg_bound; BinInt.Z.mod_pos_bound; BinInt.Z.mod_wd; BinInt.Z.modulo; Ring_polynom.mon_of_pol; Ring_polynom.mon_of_pol_ok; Ring_theory.morph0; Ring_theory.morph1; Ring_theory.morph_add; Ring_theory.morph_eq; Ring_theory.morph_mul; Ring_theory.morph_opp; Ring_theory.morph_sub; Nat.mul; BinNat.N.mul; PosDef.Pos.mul; BinInt.Z.mul; BinNat.N.mul_0_l; BinInt.Z.mul_0_l; BinNat.N.mul_0_r; BinInt.Z.Private_BootStrap.mul_0_r; BinInt.Z.mul_0_r; BinPos.Pos.mul_1_l; BinInt.Z.Private_BootStrap.mul_1_l; BinInt.Z.mul_1_l; BinPos.Pos.mul_1_r; BinInt.Z.mul_1_r; BinPos.Pos.mul_add_distr_l; BinInt.Z.mul_add_distr_l; BinInt.Z.Private_BootStrap.mul_add_distr_pos; BinPos.Pos.mul_add_distr_r; BinInt.Z.Private_BootStrap.mul_add_distr_r; BinInt.Z.mul_add_distr_r; BinPos.Pos.mul_assoc; BinInt.Z.mul_assoc; BinInt.Z.mul_cancel_l; BinInt.Z.mul_cancel_r; BinNat.N.mul_comm; BinPos.Pos.mul_comm; BinInt.Z.mul_comm; BinPos.Pos.mul_compare_mono_l; BinPos.Pos.mul_compare_mono_r; BinInt.Z.mul_div_le; Rlimit.mul_factor; Rlimit.mul_factor_gt; Rlimit.mul_factor_gt_f; Rlimit.mul_factor_wd; BinInt.Z.mul_id_l; BinPos.Pos.mul_le_mono_l; BinInt.Z.mul_le_mono_nonneg; BinInt.Z.mul_le_mono_nonneg_l; BinInt.Z.mul_le_mono_nonneg_r; BinInt.Z.mul_le_mono_nonpos_l; BinInt.Z.mul_le_mono_nonpos_r; BinInt.Z.mul_le_mono_pos_l; BinInt.Z.mul_le_mono_pos_r; BinPos.Pos.mul_lt_mono_l; BinInt.Z.mul_lt_mono_neg_l; BinInt.Z.mul_lt_mono_neg_r; BinInt.Z.mul_lt_mono_nonneg; BinInt.Z.mul_lt_mono_pos_l; BinInt.Z.mul_lt_mono_pos_r; BinPos.Pos.mul_lt_mono_r; BinInt.Z.mul_lt_pred; BinInt.Z.mul_neg_neg; BinInt.Z.mul_neg_pos; BinInt.Z.mul_nonneg_nonneg; BinInt.Z.mul_nonneg_nonpos; BinInt.Z.mul_opp_comm; BinInt.Z.mul_opp_l; BinInt.Z.mul_opp_opp; BinInt.Z.Private_BootStrap.mul_opp_r; BinInt.Z.mul_opp_r; BinInt.Z.mul_pos_cancel_l; BinInt.Z.mul_pos_neg; BinInt.Z.mul_pos_pos; BinInt.Z.mul_reg_r; BinInt.Z.mul_shuffle0; BinInt.Z.mul_shuffle1; BinPos.Pos.mul_sub_distr_l; BinPos.Pos.mul_sub_distr_r; BinNat.N.mul_succ_l; BinPos.Pos.mul_succ_l; BinInt.Z.mul_succ_l; BinNat.N.mul_succ_r; BinPos.Pos.mul_succ_r; BinInt.Z.mul_succ_r; BinNat.N.mul_wd; BinInt.Z.mul_wd; BinPos.Pos.mul_xI_r; BinPos.Pos.mul_xO_r; RIneq.mult_IPR; RIneq.mult_IZR; Ring_polynom.mult_dev; Ring_polynom.mult_dev_ok; Ranalysis1.mult_fct; ZMicromega.narrow_interval_lower_bound; Znat.nat_N_Z; Compare_dec.nat_compare_ge; Compare_dec.nat_compare_le; nat_ind; RIneq.neg; BinInt.Pos2Z.neg_is_neg; ZMicromega.negate; ZMicromega.negate_correct; negb; Bool.negb_false_iff; Bool.negb_true_iff; Rtopology.neighbourhood; PeanoNat.Nat.neq_0_lt_0; RelationClasses.neq_Symmetric; BinPos.Pos.Private_Tac.neq_eq; BinInt.Z.Private_OrderTac.Tac.neq_eq; BinNat.N.neq_succ_0; PeanoNat.Nat.neq_succ_0; BinNat.N.neq_succ_diag_l; PeanoNat.Nat.neq_succ_diag_l; BinInt.Z.neq_succ_diag_l; BinInt.Z.Private_OrderTac.Tac.neq_sym; ZMicromega.nformula_of_cutting_plane; RingMicromega.nformula_plus_nformula; RingMicromega.nformula_plus_nformula_correct; RingMicromega.nformula_times_nformula; RingMicromega.nformula_times_nformula_correct; BinInt.Z.nle_gt; BinNat.N.nle_succ_diag_l; PeanoNat.Nat.nle_succ_diag_l; BinInt.Z.nle_succ_diag_l; BinPos.Pos.nlt_1_r; BinInt.Z.nlt_ge; BinNat.N.nlt_succ_diag_l; PeanoNat.Nat.nlt_succ_diag_l; BinInt.Z.nlt_succ_diag_l; Ranalysis1.no_cond; RingMicromega.norm; ZMicromega.normZ; EnvRing.norm_aux; Ring_polynom.norm_aux; EnvRing.norm_aux_PEadd; Ring_polynom.norm_aux_PEadd; EnvRing.norm_aux_PEopp; Ring_polynom.norm_aux_PEopp; EnvRing.norm_aux_spec; Ring_polynom.norm_aux_spec; Ring_polynom.norm_subst; Ring_polynom.norm_subst_ok; Ring_polynom.norm_subst_spec; RingMicromega.normalise; ZMicromega.normalise; ZMicromega.normalise_correct; RingMicromega.normalise_sound; not; RIneq.not_0_IZR; ZArith_dec.not_Zeq_inf; Classical_Pred_Type.not_all_ex_not; Classical_Pred_Type.not_all_not_ex; Classical_Prop.not_and_or; not_eq_sym; Classical_Pred_Type.not_ex_all_not; BinPos.Pos.Private_Tac.not_ge_lt; BinNat.N.Private_OrderTac.Tac.not_ge_lt; PeanoNat.Nat.Private_OrderTac.Tac.not_ge_lt; BinInt.Z.Private_OrderTac.Tac.not_ge_lt; PeanoNat.Nat.Private_Tac.not_gt_le; BinPos.Pos.Private_Tac.not_gt_le; Qminmax.Q.Private_Tac.not_gt_le; BinInt.Z.Private_Tac.not_gt_le; BinNat.N.Private_OrderTac.Tac.not_gt_le; PeanoNat.Nat.Private_OrderTac.Tac.not_gt_le; BinInt.Z.Private_OrderTac.Tac.not_gt_le; Morphisms_Prop.not_iff_morphism; Morphisms_Prop.not_iff_morphism_obligation_1; Classical_Prop.not_imply_elim; Classical_Prop.not_imply_elim2; BinPos.Pos.Private_Tac.not_neq_eq; BinInt.Z.Private_OrderTac.Tac.not_neq_eq; Bool.not_true_iff_false; BinList.nth; Env.nth; ListDef.nth; List.nth_in_or_default; BinList.nth_jump; Env.nth_jump; BinList.nth_pred_double; Env.nth_pred_double; Env.nth_spec; Field_theory.num; BinInt.Z.of_N; BinNat.N.of_nat; BinPos.Pos.of_nat; BinInt.Z.of_nat; BinPos.Pos.of_nat_succ; PosDef.Pos.of_succ_nat; BinInt.Z.one_succ; Rtopology.open_set; Rtopology.open_set_P1; Rtopology.open_set_P4; Rtopology.open_set_P6; BinInt.Z.opp; BinInt.Z.opp_0; RIneq.opp_IZR; BinInt.Z.Private_BootStrap.opp_add_distr; BinInt.Z.opp_add_distr; Ranalysis1.opp_fct; BinInt.Z.Private_BootStrap.opp_inj; BinInt.Z.opp_inj; BinInt.Z.opp_inj_wd; ConstructiveCauchyReals.opp_inject_Q; BinInt.Z.opp_involutive; BinInt.Z.opp_le_mono; BinInt.Z.opp_lt_mono; BinInt.Z.opp_nonneg_nonpos; BinInt.Z.opp_nonpos_nonneg; BinInt.Pos2Z.opp_pos; BinInt.Z.opp_pos_neg; BinInt.Z.opp_pred; BinInt.Z.opp_sub_distr; BinInt.Z.opp_succ; BinInt.Z.opp_wd; or_cancel_r; Tauto.or_clause; Tauto.or_clause_cnf; Tauto.or_clause_cnf_correct; Tauto.or_clause_correct; Tauto.or_cnf; Tauto.or_cnf_correct; Tauto.or_cnf_opt; Tauto.or_cnf_opt_cnf_ff; Tauto.or_cnf_opt_cnf_ff_r; Tauto.or_cnf_opt_correct; or_iff_compat_r; Morphisms_Prop.or_iff_morphism; Morphisms_Prop.or_iff_morphism_obligation_1; or_ind; orb; Bool.orb_comm; Bool.orb_true_iff; BinInt.Z.order_induction; BinInt.Z.order_induction_0; RingMicromega.padd; ZMicromega.padd; BinPos.Pos.peano_ind; BinInt.Z.peano_ind; BinNat.N.peano_rect; BinPos.Pos.peano_rect; Morphisms.per_partial_app_morphism; Morphisms.per_partial_app_morphism_obligation_1; RingMicromega.pexpr_times_nformula; RingMicromega.pexpr_times_nformula_correct; Ring_theory.phi_ext1_Proper; RIneq.plus_IPR; RIneq.plus_IZR; RIneq.plus_IZR_NEG_POS; plus_Sn_m; plus_n_O; plus_n_Sm; Rtopology.point_adherent; Morphisms.pointwise_relation; QMicromega.pop2_bop2; RMicromega.pop2_bop2; ZMicromega.pop2_bop2; RingMicromega.popp; ZMicromega.popp; RIneq.pos; NatDef.N.pos_div_eucl; BinInt.Z.pos_div_eucl; BinInt.Z.pos_div_eucl_bound; BinInt.Z.pos_div_eucl_eq; BinNat.N.pos_div_eucl_spec; BinInt.Pos2Z.pos_is_pos; BinInt.Pos2Z.pos_le_pos; BinInt.Z.pos_sub; BinInt.Z.Private_BootStrap.pos_sub_add; BinInt.Z.pos_sub_diag; BinInt.Z.pos_sub_discr; BinInt.Z.pos_sub_gt; BinInt.Z.pos_sub_lt; BinInt.Z.pos_sub_opp; BinInt.Z.pos_sub_spec; Znat.positive_N_nat; BinNums.positive_ind; Znat.positive_nat_Z; BinNums.positive_rec; Rpow_def.pow; BinPos.Pos.pow; BinInt.Z.pow; BinInt.Z.pow_0_r; BinInt.Z.pow_1_l; BinPos.Pos.pow_1_r; BinInt.Z.pow_1_r; Ring_theory.pow_N; Field_theory.pow_N_ext; Ring_theory.pow_N_pow_N; Ring_theory.pow_N_th; BinInt.Z.pow_add_r; Field_theory.pow_ext; BinInt.Z.pow_gt_1; BinInt.Z.pow_le_mono_r; BinInt.Z.pow_lt_mono_l; BinInt.Z.pow_lt_mono_r; BinInt.Z.pow_neg_r; BinInt.Z.pow_nonneg; Ring_theory.pow_pos; BinInt.Z.pow_pos; Field_theory.pow_pos_0; Field_theory.pow_pos_1; EnvRing.pow_pos_add; Ring_polynom.pow_pos_add; Ring_theory.pow_pos_add; Field_theory.pow_pos_add_r; Field_theory.pow_pos_cst; Field_theory.pow_pos_div; Field_theory.pow_pos_mul_l; Field_theory.pow_pos_mul_r; BinInt.Z.pow_pos_nonneg; Field_theory.pow_pos_nz; Ring_theory.pow_pos_succ; Ring_theory.pow_pos_swap; BinPos.Pos.pow_succ_r; BinInt.Z.pow_succ_r; BinInt.Z.pow_twice_r; BinInt.Z.pow_wd; Rfunctions.powerRZ; Ranalysis1.pr_nu; Ranalysis4.pr_nu_var; PeanoNat.Nat.pred; BinNat.N.pred; BinPos.Pos.pred; BinInt.Z.pred; BinNat.N.pred_0; PeanoNat.Nat.pred_0; PosDef.Pos.pred_N; BinPos.Pos.pred_N_succ; PosDef.Pos.pred_double; BinInt.Z.pred_double; BinPos.Pos.pred_double_succ; BinInt.Z.pred_inj; BinInt.Z.pred_inj_wd; BinPos.Pos.pred_mask; BinNat.N.pred_succ; PeanoNat.Nat.pred_succ; BinInt.Z.pred_succ; BinNat.N.pred_wd; PeanoNat.Nat.pred_wd; BinInt.Z.pred_wd; PeanoNat.Nat.pred_wd_obligation_1; prod_ind; prod_rect; proj1; proj1_sig; proj2; proj2_sig; Rtopology.prolongement_C0; Rlimit.prop_eps; Morphisms.proper_prf; Morphisms.proper_sym_impl_iff; RingMicromega.psub; ZMicromega.psub; RingMicromega.psubC; QMicromega.qdeduce; QMicromega.qunsat; BinInt.Z.quotrem; BinInt.Z.quotrem_eq; Ring_polynom.r_list_pow; Ring_polynom.r_list_pow_rev; Field_theory.radd_ext; Ring_theory.radd_ext2_Proper; InitialRing.radd_ext3_Proper; InitialRing.radd_ext4_Proper; EnvRing.radd_ext_Proper; Field_theory.radd_ext_Proper; InitialRing.radd_ext_Proper; Ring_polynom.radd_ext_Proper; RMicromega.rdeduce; Field_theory.rdiv1; Field_theory.rdiv2b; Field_theory.rdiv3b; Field_theory.rdiv4; Field_theory.rdiv4b; Field_theory.rdiv5; Field_theory.rdiv6; Field_theory.rdiv7; Field_theory.rdiv7b; Field_theory.rdiv_ext; Field_theory.rdiv_r_r; Field_theory.rdiv_simpl; Morphisms.reflexive_eq_dom_reflexive; Morphisms.reflexive_proper; CMorphisms.reflexive_proper_proxy; Morphisms.reflexive_proper_proxy; Morphisms.reflexive_reflexive_proxy; RelationClasses.reflexivity; ConstructiveEpsilon.rel_ls_ind; ConstructiveEpsilon.rel_ls_post; Relation_Definitions.relation; CMorphisms.respectful; Morphisms.respectful; Rtopology.restriction_family; List.rev'; List.rev_append; ZifyClasses.rew_iff; ZifyClasses.rew_iff_rev; Morphisms.rewrite_relation_eq_dom; BinNat.N.right_induction; PeanoNat.Nat.right_induction; BinInt.Z.right_induction; Ring_polynom.ring_correct; Ring_polynom.ring_rw_correct; Ring_polynom.ring_rw_pow_correct; Ring_tac.ring_subst_niter; Field_theory.rinv_ext_Proper; OrderedRing.rle_morph_Proper; RingMicromega.rle_morph_Proper; OrderedRing.rlt_morph_Proper; RingMicromega.rlt_morph_Proper; OrderedRing.rminus_morph; OrderedRing.rminus_morph_Proper; RingMicromega.rminus_morph_Proper; Field_theory.rmul_ext; Ring_theory.rmul_ext2_Proper; InitialRing.rmul_ext3_Proper; InitialRing.rmul_ext4_Proper; EnvRing.rmul_ext_Proper; Field_theory.rmul_ext_Proper; InitialRing.rmul_ext_Proper; Ring_polynom.rmul_ext_Proper; Field_theory.rmul_reg_l; Ring_theory.ropp_ext2_Proper; InitialRing.ropp_ext3_Proper; EnvRing.ropp_ext_Proper; Field_theory.ropp_ext_Proper; Ring_polynom.ropp_ext_Proper; OrderedRing.ropp_morph_Proper; RingMicromega.ropp_morph_Proper; Field_theory.ropp_neq_0; OrderedRing.rplus_morph_Proper; RingMicromega.rplus_morph_Proper; Ring_theory.rpow_pow_N; Field_theory.rsplit_common; Field_theory.rsplit_left; Field_theory.rsplit_right; Field_theory.rsub_0_l; Field_theory.rsub_0_r; EnvRing.rsub_ext_Proper; Field_theory.rsub_ext_Proper; Ring_polynom.rsub_ext_Proper; OrderedRing.rtimes_morph_Proper; RingMicromega.rtimes_morph_Proper; Tauto.rtyp; RMicromega.runsat; InitialRing.same_gen; InitialRing.same_genN; InitialRing.same_genZ; ConstructiveCauchyReals.scale; ConstructiveCauchyReals.seq; ConstructiveRcomplete.seq_cv; BinInt.Z.sgn; ClassicalDedekindReals.sig_forall_dec; ConstructiveLUB.sig_forall_dec_T; sig_ind; ConstructiveLUB.sig_lub; ClassicalDedekindReals.sig_not_dec; ConstructiveLUB.sig_not_dec_T; sig_rec; Ring_theory.sign_spec; Rlimit.single_limit; BinPos.Pos.size_nat; BinPos.Pos.size_nat_monotone; snd; OrderedRing.sor_setoid; OrderedRing.sor_setoid_Reflexive; OrderedRing.sor_setoid_Symmetric; OrderedRing.sor_setoid_Transitive; Field_theory.split; Field_theory.split_aux; Field_theory.split_aux_ok; Field_theory.split_aux_ok1; Field_theory.split_nz_l; Field_theory.split_nz_r; Field_theory.split_ok_l; Field_theory.split_ok_r; BinInt.Z.strong_left_induction; BinNat.N.strong_right_induction; PeanoNat.Nat.strong_right_induction; BinInt.Z.strong_right_induction; NatDef.N.sub; BinPos.Pos.sub; BinInt.Z.sub; BinInt.Z.sub_0_l; BinNat.N.sub_0_r; BinInt.Z.sub_0_r; BinInt.Z.sub_1_r; BinNat.N.sub_add; BinPos.Pos.sub_add; BinPos.Pos.sub_add_distr; BinInt.Z.sub_cancel_r; BinPos.Pos.sub_decr; BinNat.N.sub_diag; BinInt.Z.sub_diag; BinNat.N.sub_gt; BinInt.Z.sub_le_mono_r; BinInt.Z.sub_lt_mono_r; BinPos.Pos.sub_mask; BinPos.Pos.sub_mask_add; BinPos.Pos.sub_mask_add_diag_l; BinPos.Pos.sub_mask_add_diag_r; BinPos.Pos.sub_mask_carry; BinPos.Pos.sub_mask_carry_spec; BinPos.Pos.sub_mask_diag; BinPos.Pos.sub_mask_neg_iff; BinPos.Pos.sub_mask_nul_iff; BinPos.Pos.sub_mask_pos; BinPos.Pos.sub_mask_pos'; BinPos.Pos.sub_mask_pos_iff; BinPos.Pos.sub_mask_spec; BinPos.Pos.sub_mask_succ_r; BinInt.Z.sub_move_0_r; BinInt.Z.sub_move_r; BinInt.Z.sub_opp_l; BinInt.Z.sub_opp_r; BinInt.Z.sub_simpl_r; BinPos.Pos.sub_sub_distr; BinInt.Z.sub_sub_distr; BinNat.N.sub_succ; BinInt.Z.sub_succ_l; BinNat.N.sub_succ_r; BinInt.Z.sub_succ_r; BinNat.N.sub_wd; BinInt.Z.sub_wd; BinPos.Pos.sub_xI_xI; BinPos.Pos.sub_xI_xO; BinPos.Pos.sub_xO_xI; BinPos.Pos.sub_xO_xO; Rtopology.subfamily; CRelationClasses.subrelation; RelationClasses.subrelation; CMorphisms.subrelation_proper; Morphisms.subrelation_proper; CMorphisms.subrelation_refl; Morphisms.subrelation_refl; CMorphisms.subrelation_respectful; Morphisms.subrelation_respectful; BinNat.N.succ; PosDef.Pos.succ; BinInt.Z.succ; RIneq.succ_IPR; NatDef.N.succ_double; BinInt.Z.succ_double; BinNat.N.succ_double_add; BinPos.Pos.succ_double_mask; BinNat.N.succ_double_mul; BinInt.Z.succ_double_spec; BinNat.N.succ_inj; PeanoNat.Nat.succ_inj; BinPos.Pos.succ_inj; BinInt.Z.succ_inj; BinNat.N.succ_inj_wd; PeanoNat.Nat.succ_inj_wd; BinInt.Z.succ_inj_wd; PeanoNat.Nat.succ_le_mono; BinInt.Z.succ_le_mono; PeanoNat.Nat.succ_lt_mono; BinPos.Pos.succ_lt_mono; BinInt.Z.succ_lt_mono; BinPos.Pos.succ_not_1; BinInt.Z.succ_pred; BinPos.Pos.succ_pred_double; BinPos.Pos.succ_pred_or; BinNat.N.succ_wd; PeanoNat.Nat.succ_wd; BinInt.Z.succ_wd; PeanoNat.Nat.succ_wd_obligation_1; sumbool_rec; RMicromega.sumboolb; BinPos.Pos.switch_Eq; CRelationClasses.symmetry; RelationClasses.symmetry; Env.tail; Tauto.tauto_checker; Tauto.tauto_checker_sound; List.tl; BinInt.Z.to_N; BinNat.N.to_nat; BinPos.Pos.to_nat; BinInt.Z.to_nat; BinInt.Z.to_pos; Rdefinitions.total_order_T; PeanoNat.Nat.Private_Tac.trans; BinPos.Pos.Private_Tac.trans; Qminmax.Q.Private_Tac.trans; BinInt.Z.Private_Tac.trans; BinNat.N.Private_OrderTac.Tac.trans; PeanoNat.Nat.Private_OrderTac.Tac.trans; BinInt.Z.Private_OrderTac.Tac.trans; Morphisms.trans_co_eq_inv_impl_morphism; Morphisms.trans_co_eq_inv_impl_morphism_obligation_1; Morphisms.trans_co_impl_morphism; Morphisms.trans_co_impl_morphism_obligation_1; CMorphisms.trans_contra_inv_impl_type_morphism; CMorphisms.trans_contra_inv_impl_type_morphism_obligation_1; OrdersTac.trans_ord; Morphisms.trans_sym_co_inv_impl_morphism; Morphisms.trans_sym_co_inv_impl_morphism_obligation_1; CRelationClasses.transitivity; RelationClasses.transitivity; InitialRing.triv_div; InitialRing.triv_div_th; BinInt.Z.two_succ; Ranalysis1.uniqueness_limite; Ranalysis1.uniqueness_step1; Ranalysis1.uniqueness_step2; Ranalysis1.uniqueness_step3; well_founded; well_founded_induction; well_founded_induction_type; BinPos.Pos.xI_succ_xO; Tauto.xcnf; Tauto.xcnf_correct; Tauto.xcnf_iff; Tauto.xcnf_impl; RingMicromega.xnegate; ZMicromega.xnegate; RingMicromega.xnegate_correct; ZMicromega.xnegate_correct; ZMicromega.xnnormalise; ZMicromega.xnnormalise_correct; RingMicromega.xnormalise; ZMicromega.xnormalise; RingMicromega.xnormalise_correct; ZMicromega.xnormalise_correct; Tauto.xor_clause_cnf; RMicromega.z_of_exp; Ring_polynom.zmon_pred; Ring_polynom.zmon_pred_ok; Acc; BoolSpec; ConstructiveCauchyReals.CReal; CompareSpec; CompareSpecT; ConstructiveReals.ConstructiveReals; ConstructiveLUB.DedekindDecCut; SetoidTactics.DefaultRelation; CRelationClasses.Equivalence; RelationClasses.Equivalence; Field_theory.FExpr; False; RingMicromega.Formula; Tauto.GFormula; ZifyClasses.InjTyp; Rlimit.Metric_Space; Ring_polynom.Mon; BinNums.N; RingMicromega.Op1; RingMicromega.Op2; RelationClasses.PER; EnvRing.PExpr; Ring_polynom.PExpr; EnvRing.Pol; Ring_polynom.Pol; RelationClasses.PreOrder; RingMicromega.Psatz; QArith_base.Q; RMicromega.Rcst; RelationClasses.RewriteRelation; OrderedRing.SOR; RingMicromega.SORaddon; RelationClasses.StrictOrder; BinPos.Pos.SubMaskSpec; True; BinNums.Z; ZMicromega.ZArithProof; ZMicromega.Zdivide_pol; Field_theory.almost_field_theory; Ring_theory.almost_ring_theory; and; ConstructiveEpsilon.before_witness; bool; comparison; Ring_theory.div_theory; eq; ex; Rtopology.family; Field_theory.field_theory; Tauto.kind; le; Field_theory.linear; list; BinPos.Pos.mask; nat; RIneq.negreal; option; or; OrdersTac.ord; BinNums.positive; RIneq.posreal; Ring_theory.power_theory; prod; reflect; ConstructiveEpsilon.rel_ls; Ring_theory.ring_eq_ext; Ring_theory.ring_morph; Ring_theory.ring_theory; Field_theory.rsplit; Ring_theory.semi_morph; Ring_theory.semi_ring_theory; sig; sigT; Ring_theory.sign_theory; Ring_theory.sring_eq_ext; sum; sumbool; sumor; VarMap.t; unit; Acc_intro; BoolSpecT; ConstructiveCauchyReals.mkCReal; CompEq; CompEqT; ConstructiveReals.Build_ConstructiveReals; ConstructiveLUB.Build_DedekindDecCut; SetoidTactics.Build_DefaultRelation; CRelationClasses.Build_Equivalence; RelationClasses.Build_Equivalence; Field_theory.FEO; RingMicromega.Build_Formula; Tauto.TT; ZifyClasses.mkinj; Rlimit.Build_Metric_Space; Ring_polynom.mon0; BinNums.N0; RingMicromega.Equal; RingMicromega.OpEq; RelationClasses.Build_PER; EnvRing.PEc; Ring_polynom.PEO; EnvRing.Pc; Ring_polynom.Pc; RelationClasses.Build_PreOrder; RingMicromega.PsatzLet; QArith_base.Qmake; RMicromega.C0; RelationClasses.Build_RewriteRelation; OrderedRing.mk_SOR_theory; RingMicromega.mk_SOR_addon; RelationClasses.Build_StrictOrder; BinPos.Pos.SubIsNul; I; BinNums.Z0; ZMicromega.DoneProof; ZMicromega.Zdiv_Pc; Field_theory.mk_afield; Ring_theory.mk_art; conj; ConstructiveEpsilon.stop; true; Eq; Ring_theory.mkdiv_th; eq_refl; ex_intro; Rtopology.mkfamily; Field_theory.mk_field; Tauto.isProp; le_n; Field_theory.mk_linear; nil; BinPos.Pos.IsNul; O; RIneq.mknegreal; Some; or_introl; OrdersTac.OEQ; BinNums.xI; RIneq.mkposreal; Ring_theory.mkpow_th; pair; ReflectT; ConstructiveEpsilon.Rstop; Ring_theory.mk_reqe; Ring_theory.mkmorph; Ring_theory.mk_rt; Field_theory.mk_rsplit; Ring_theory.mkRmorph; Ring_theory.mk_srt; exist; existT; Ring_theory.mksign_th; Ring_theory.mk_seqe; inl; left; inleft; VarMap.Empty; tt; BoolSpecF; CompLt; CompLtT; Field_theory.FEI; Tauto.FF; Ring_polynom.zmon; BinNums.Npos; RingMicromega.NonEqual; RingMicromega.OpNEq; EnvRing.PEX; Ring_polynom.PEI; EnvRing.Pinj; Ring_polynom.Pinj; RingMicromega.PsatzIn; RMicromega.C1; BinPos.Pos.SubIsPos; BinNums.Zpos; ZMicromega.RatProof; ZMicromega.Zdiv_Pinj; ConstructiveEpsilon.next; false; Lt; Tauto.isBool; le_S; cons; BinPos.Pos.IsPos; S; None; or_intror; OrdersTac.OLT; BinNums.xO; ReflectF; ConstructiveEpsilon.Rnext; inr; right; inright; VarMap.Elt; CompGt; CompGtT; Field_theory.FEc; Tauto.X; Ring_polynom.vmon; RingMicromega.Strict; RingMicromega.OpLe; EnvRing.PEadd; Ring_polynom.PEc; EnvRing.PX; Ring_polynom.PX; RingMicromega.PsatzSquare; RMicromega.CQ; BinPos.Pos.SubIsNeg; BinNums.Zneg; ZMicromega.CutProof; ZMicromega.Zdiv_PX; Gt; BinPos.Pos.IsNeg; OrdersTac.OLE; BinNums.xH; VarMap.Branch; Field_theory.FEX; Tauto.A; RingMicromega.NonStrict; RingMicromega.OpGe; EnvRing.PEsub; Ring_polynom.PEX; RingMicromega.PsatzMulC; RMicromega.CZ; ZMicromega.SplitProof; Field_theory.FEadd; Tauto.AND; RingMicromega.OpLt; EnvRing.PEmul; Ring_polynom.PEadd; RingMicromega.PsatzMulE; RMicromega.CPlus; ZMicromega.deprecated_EnumProof; Field_theory.FEsub; Tauto.OR; RingMicromega.OpGt; EnvRing.PEopp; Ring_polynom.PEsub; RingMicromega.PsatzAdd; RMicromega.CMinus; ZMicromega.ExProof; Field_theory.FEmul; Tauto.NOT; EnvRing.PEpow; Ring_polynom.PEmul; RingMicromega.PsatzC; RMicromega.CMult; Field_theory.FEopp; Tauto.IMPL; Ring_polynom.PEopp; RingMicromega.PsatzZ; RMicromega.CPow; Field_theory.FEinv; Tauto.IFF; Ring_polynom.PEpow; RMicromega.CInv; Field_theory.FEdiv; Tauto.EQ; RMicromega.COpp; Field_theory.FEpow; }} T = 1.510997 Query assignments: S = {{ Nat.add; eq; nat; O; }} T = prod `x:r` (global (indt «nat»)) c0 \ app [global (indt «eq»), X0 c0, app [global (const «Nat.add»), c0, global (indc «O»)], c0] X10_ = c0 \ X0 c0 Syntactic constraints: {c0} : decl c0 `x:r` (global (indt «nat»)) ?- evar (X0 c0) (X1 c0) (X0 c0) /* suspended on X0 */ {c0} : decl c0 `x:r` (global (indt «nat»)) ?- evar (X2 c0) (sort (typ «elpi_tests_stdlib.test_API_env.71»)) (X1 c0) /* suspended on X2, X1 */ Universe constraints: UNIVERSES: {elpi_tests_stdlib.test_API_env.71} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α73 |= Prop -> SProp Type -> α73 -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: Decl = record Rec (sort (typ «elpi_tests_stdlib.test_API_env.72»)) BuildRec (field [] f (sort (typ X0)) c0 \ end-record) X11_ = «elpi_tests_stdlib.test_API_env.72» X12_ = X0 Universe constraints: UNIVERSES: {elpi_tests_stdlib.test_API_env.73 elpi_tests_stdlib.test_API_env.72} |= ALGEBRAIC UNIVERSES: {elpi_tests_stdlib.test_API_env.73 elpi_tests_stdlib.test_API_env.72} FLEXIBLE UNIVERSES: elpi_tests_stdlib.test_API_env.73 elpi_tests_stdlib.test_API_env.72 SORTS: α74 α75 α76 |= Prop -> SProp Type -> α74 -> α75 -> α76 -> Prop -> SProp WEAK CONSTRAINTS: Module Test := Struct Record Rec@{u u0} : Type@{u} := BuildRec { f : Type@{u0} }. (* u u0 |= u0 < u *) Definition f : Rec@{u u0} -> Type@{u0}. (* u u0 |= u0 < u *) End Test.f@{elpi_tests_stdlib.test_API_env.74 elpi_tests_stdlib.test_API_env.75} : Test.Rec@{elpi_tests_stdlib.test_API_env.74 elpi_tests_stdlib.test_API_env.75} -> Type@{elpi_tests_stdlib.test_API_env.75} (* {elpi_tests_stdlib.test_API_env.75 elpi_tests_stdlib.test_API_env.74} |= elpi_tests_stdlib.test_API_env.75 < elpi_tests_stdlib.test_API_env.74 *) Query assignments: LP = «Stdlib.ZArith.Znat» MP = «Stdlib.ZArith.Znat.MoreN2Z.N2Z» File "./tests-stdlib/test_API_env.v", line 2, characters 0-27: Warning: Using Vector.t is known to be technically difficult, see . [warn-library-file-stdlib-vector,stdlib-vector,warn-library-file,user-warn,default] File "./tests/test_File3.v", line 18, characters 2-16: Warning: This command does not support this attribute: phase. [unsupported-attributes,parsing,default] Debug: ----<<---- enter: coq.say raw: (parameter A1 maximal (sort (typ «elpi.tests.test_arg_HOAS.22»)) c0 \ parameter A2 explicit c0 c1 \ inductive foo1 tt (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c2 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c3 \ arity (prod `_:r` (global (indt «nat»)) c4 \ sort (typ «elpi.tests.test_arg_HOAS.29»))) c2 \ [constructor a_k1 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c4 \ arity (prod `x:r` (global (indt «nat»)) c5 \ prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c4, app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]) c6 \ app [c2, c3, c4, c5])), constructor a_k2 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c4 \ arity (prod `_:r` c0 c5 \ app [c2, c3, c4, app [global (indc «S»), global (indc «O»)]]))]) raw: parameter A1 maximal (sort (typ «elpi.tests.test_arg_HOAS.22»)) c0 \ parameter A2 explicit c0 c1 \ inductive foo1 tt (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c2 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c3 \ arity (prod `_:r` (global (indt «nat»)) c4 \ sort (typ «elpi.tests.test_arg_HOAS.29»))) c2 \ [constructor a_k1 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c4 \ arity (prod `x:r` (global (indt «nat»)) c5 \ prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c4, app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]) c6 \ app [c2, c3, c4, c5])), constructor a_k2 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c4 \ arity (prod `_:r` c0 c5 \ app [c2, c3, c4, app [global (indc «S»), global (indc «O»)]]))] Debug: ---->>---- exit: coq.say raw: (parameter A1 maximal (sort (typ «elpi.tests.test_arg_HOAS.22»)) c0 \ parameter A2 explicit c0 c1 \ inductive foo1 tt (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c2 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c3 \ arity (prod `_:r` (global (indt «nat»)) c4 \ sort (typ «elpi.tests.test_arg_HOAS.29»))) c2 \ [constructor a_k1 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c4 \ arity (prod `x:r` (global (indt «nat»)) c5 \ prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c4, app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]) c6 \ app [c2, c3, c4, c5])), constructor a_k2 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c4 \ arity (prod `_:r` c0 c5 \ app [c2, c3, c4, app [global (indc «S»), global (indc «O»)]]))]) Debug: ----<<---- enter: std.assert-ok! (coq.typecheck-indt-decl (parameter A1 maximal (sort (typ «elpi.tests.test_arg_HOAS.22»)) c0 \ parameter A2 explicit c0 c1 \ inductive foo1 tt (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c2 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c3 \ arity (prod `_:r` (global (indt «nat»)) c4 \ sort (typ «elpi.tests.test_arg_HOAS.29»))) c2 \ [constructor a_k1 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c4 \ arity (prod `x:r` (global (indt «nat»)) c5 \ prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c4, app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]) c6 \ app [c2, c3, c4, c5])), constructor a_k2 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c4 \ arity (prod `_:r` c0 c5 \ app [c2, c3, c4, app [global (indc «S»), global (indc «O»)]]))])) Illtyped inductive declaration Debug: ---->>---- exit: std.assert-ok! (coq.typecheck-indt-decl (parameter A1 maximal (sort (typ «elpi.tests.test_arg_HOAS.22»)) c0 \ parameter A2 explicit c0 c1 \ inductive foo1 tt (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c2 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c3 \ arity (prod `_:r` (global (indt «nat»)) c4 \ sort (typ «elpi.tests.test_arg_HOAS.29»))) c2 \ [constructor a_k1 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c4 \ arity (prod `x:r` (global (indt «nat»)) c5 \ prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c4, app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]) c6 \ app [c2, c3, c4, c5])), constructor a_k2 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c4 \ arity (prod `_:r` c0 c5 \ app [c2, c3, c4, app [global (indc «S»), global (indc «O»)]]))])) Illtyped inductive declaration Debug: ----<<---- enter: coq.say typed: (parameter A1 maximal (sort (typ «elpi.tests.test_arg_HOAS.22»)) c0 \ parameter A2 explicit c0 c1 \ inductive foo1 tt (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c2 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c3 \ arity (prod `_:r` (global (indt «nat»)) c4 \ sort (typ «elpi.tests.test_arg_HOAS.29»))) c2 \ [constructor a_k1 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c4 \ arity (prod `x:r` (global (indt «nat»)) c5 \ prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c4, app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]) c6 \ app [c2, c3, c4, c5])), constructor a_k2 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c4 \ arity (prod `_:r` c0 c5 \ app [c2, c3, c4, app [global (indc «S»), global (indc «O»)]]))]) typed: parameter A1 maximal (sort (typ «elpi.tests.test_arg_HOAS.22»)) c0 \ parameter A2 explicit c0 c1 \ inductive foo1 tt (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c2 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c3 \ arity (prod `_:r` (global (indt «nat»)) c4 \ sort (typ «elpi.tests.test_arg_HOAS.29»))) c2 \ [constructor a_k1 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c4 \ arity (prod `x:r` (global (indt «nat»)) c5 \ prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c4, app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]) c6 \ app [c2, c3, c4, c5])), constructor a_k2 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c4 \ arity (prod `_:r` c0 c5 \ app [c2, c3, c4, app [global (indc «S»), global (indc «O»)]]))] Debug: ---->>---- exit: coq.say typed: (parameter A1 maximal (sort (typ «elpi.tests.test_arg_HOAS.22»)) c0 \ parameter A2 explicit c0 c1 \ inductive foo1 tt (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c2 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c3 \ arity (prod `_:r` (global (indt «nat»)) c4 \ sort (typ «elpi.tests.test_arg_HOAS.29»))) c2 \ [constructor a_k1 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c4 \ arity (prod `x:r` (global (indt «nat»)) c5 \ prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c4, app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]) c6 \ app [c2, c3, c4, c5])), constructor a_k2 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c4 \ arity (prod `_:r` c0 c5 \ app [c2, c3, c4, app [global (indc «S»), global (indc «O»)]]))]) Debug: ----<<---- enter: coq.env.add-indt (parameter A1 maximal (sort (typ «elpi.tests.test_arg_HOAS.22»)) c0 \ parameter A2 explicit c0 c1 \ inductive foo1 tt (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c2 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c3 \ arity (prod `_:r` (global (indt «nat»)) c4 \ sort (typ «elpi.tests.test_arg_HOAS.29»))) c2 \ [constructor a_k1 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c4 \ arity (prod `x:r` (global (indt «nat»)) c5 \ prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c4, app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]) c6 \ app [c2, c3, c4, c5])), constructor a_k2 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.23»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.24»)) c4 \ arity (prod `_:r` c0 c5 \ app [c2, c3, c4, app [global (indc «S»), global (indc «O»)]]))]) X0 Debug: ---->>---- exit: coq.env.add-indt (parameter A1 maximal (sort (typ «foo1.u0»)) c0 \ parameter A2 explicit c0 c1 \ inductive foo1 tt (parameter B1 explicit (sort (typ «foo1.u1»)) c2 \ parameter B2 explicit (sort (typ «foo1.u2»)) c3 \ arity (prod `_:r` (global (indt «nat»)) c4 \ sort (typ «foo1.u3»))) c2 \ [constructor a_k1 (parameter B1 explicit (sort (typ «foo1.u1»)) c3 \ parameter B2 explicit (sort (typ «foo1.u2»)) c4 \ arity (prod `x:r` (global (indt «nat»)) c5 \ prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c4, app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]) c6 \ app [c2, c3, c4, c5])), constructor a_k2 (parameter B1 explicit (sort (typ «foo1.u1»)) c3 \ parameter B2 explicit (sort (typ «foo1.u2»)) c4 \ arity (prod `_:r` c0 c5 \ app [c2, c3, c4, app [global (indc «S»), global (indc «O»)]]))]) «foo1» foo1 ?A2 ?B1 ?B2 ?n : Type : Type where ?A1 : [ |- Type] ?A2 : [ |- ?A1] ?B1 : [ |- Type] ?B2 : [ |- Type] ?n : [ |- nat] a_k1 ?A2 ?B1 ?B2 3 ?f : foo1 ?A2 ?B1 ?B2 3 : foo1 ?A2 ?B1 ?B2 3 where ?A1 : [ |- Type] ?A2 : [ |- ?A1] ?B1 : [ |- Type] ?B2 : [ |- Type] ?f : [ |- foo1 ?A2 (?B1 * ?B1) ?B2 3] Debug: ----<<---- enter: coq.say raw: (parameter A1 maximal X0 c0 \ parameter A2 explicit c0 c1 \ inductive foo1 tt (parameter B1 explicit (sort (typ X1)) c2 \ parameter B2 explicit (sort (typ X2)) c3 \ arity (prod `_:r` (global (indt «nat»)) c4 \ sort (typ X3))) c2 \ [constructor a_k1 (parameter B1 explicit (sort (typ X4)) c3 \ parameter B2 explicit (sort (typ X5)) c4 \ arity (prod `x:r` (X6 c4) c5 \ prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c4, app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]) c6 \ app [c2, c3, c4, c5])), constructor a_k2 (parameter B1 explicit (sort (typ X7)) c3 \ parameter B2 explicit (sort (typ X8)) c4 \ arity (prod `_:r` c0 c5 \ app [c2, c3, c4, app [global (indc «S»), global (indc «O»)]]))]) raw: parameter A1 maximal X0 c0 \ parameter A2 explicit c0 c1 \ inductive foo1 tt (parameter B1 explicit (sort (typ X1)) c2 \ parameter B2 explicit (sort (typ X2)) c3 \ arity (prod `_:r` (global (indt «nat»)) c4 \ sort (typ X3))) c2 \ [constructor a_k1 (parameter B1 explicit (sort (typ X4)) c3 \ parameter B2 explicit (sort (typ X5)) c4 \ arity (prod `x:r` (X6 c4) c5 \ prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c4, app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]) c6 \ app [c2, c3, c4, c5])), constructor a_k2 (parameter B1 explicit (sort (typ X7)) c3 \ parameter B2 explicit (sort (typ X8)) c4 \ arity (prod `_:r` c0 c5 \ app [c2, c3, c4, app [global (indc «S»), global (indc «O»)]]))] Debug: ---->>---- exit: coq.say raw: (parameter A1 maximal X0 c0 \ parameter A2 explicit c0 c1 \ inductive foo1 tt (parameter B1 explicit (sort (typ X1)) c2 \ parameter B2 explicit (sort (typ X2)) c3 \ arity (prod `_:r` (global (indt «nat»)) c4 \ sort (typ X3))) c2 \ [constructor a_k1 (parameter B1 explicit (sort (typ X4)) c3 \ parameter B2 explicit (sort (typ X5)) c4 \ arity (prod `x:r` (X6 c4) c5 \ prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c4, app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]) c6 \ app [c2, c3, c4, c5])), constructor a_k2 (parameter B1 explicit (sort (typ X7)) c3 \ parameter B2 explicit (sort (typ X8)) c4 \ arity (prod `_:r` c0 c5 \ app [c2, c3, c4, app [global (indc «S»), global (indc «O»)]]))]) Debug: ----<<---- enter: std.assert-ok! (coq.elaborate-indt-decl-skeleton (parameter A1 maximal X0 c0 \ parameter A2 explicit c0 c1 \ inductive foo1 tt (parameter B1 explicit (sort (typ X1)) c2 \ parameter B2 explicit (sort (typ X2)) c3 \ arity (prod `_:r` (global (indt «nat»)) c4 \ sort (typ X3))) c2 \ [constructor a_k1 (parameter B1 explicit (sort (typ X4)) c3 \ parameter B2 explicit (sort (typ X5)) c4 \ arity (prod `x:r` (X6 c4) c5 \ prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c4, app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]) c6 \ app [c2, c3, c4, c5])), constructor a_k2 (parameter B1 explicit (sort (typ X7)) c3 \ parameter B2 explicit (sort (typ X8)) c4 \ arity (prod `_:r` c0 c5 \ app [c2, c3, c4, app [global (indc «S»), global (indc «O»)]]))]) X9) Illtyped inductive declaration Debug: ---->>---- exit: std.assert-ok! (coq.elaborate-indt-decl-skeleton (parameter A1 maximal X0 c0 \ parameter A2 explicit c0 c1 \ inductive foo1 tt (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.64»)) c2 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.67»)) c3 \ arity (prod `_:r` (global (indt «nat»)) c4 \ sort (typ «elpi.tests.test_arg_HOAS.70»))) c2 \ [constructor a_k1 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.77»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.79»)) c4 \ arity (prod `x:r` (X6 c4) c5 \ prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c4, app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]) c6 \ app [c2, c3, c4, c5])), constructor a_k2 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.88»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.90»)) c4 \ arity (prod `_:r` c0 c5 \ app [c2, c3, c4, app [global (indc «S»), global (indc «O»)]]))]) (parameter A1 maximal (sort (typ «elpi.tests.test_arg_HOAS.63»)) c0 \ parameter A2 explicit c0 c1 \ inductive foo1 tt (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.65»)) c2 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.68»)) c3 \ arity (prod `_:r` (global (indt «nat»)) c4 \ sort (typ «elpi.tests.test_arg_HOAS.71»))) c2 \ [constructor a_k1 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.78»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.80»)) c4 \ arity (prod `x:r` (global (indt «nat»)) c5 \ prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c4, app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]) c6 \ app [c2, c3, c4, c5])), constructor a_k2 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.89»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.91»)) c4 \ arity (prod `_:r` c0 c5 \ app [c2, c3, c4, app [global (indc «S»), global (indc «O»)]]))])) Illtyped inductive declaration Debug: ----<<---- enter: coq.say typed: (parameter A1 maximal (sort (typ «elpi.tests.test_arg_HOAS.63»)) c0 \ parameter A2 explicit c0 c1 \ inductive foo1 tt (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.65»)) c2 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.68»)) c3 \ arity (prod `_:r` (global (indt «nat»)) c4 \ sort (typ «elpi.tests.test_arg_HOAS.71»))) c2 \ [constructor a_k1 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.78»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.80»)) c4 \ arity (prod `x:r` (global (indt «nat»)) c5 \ prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c4, app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]) c6 \ app [c2, c3, c4, c5])), constructor a_k2 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.89»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.91»)) c4 \ arity (prod `_:r` c0 c5 \ app [c2, c3, c4, app [global (indc «S»), global (indc «O»)]]))]) typed: parameter A1 maximal (sort (typ «elpi.tests.test_arg_HOAS.63»)) c0 \ parameter A2 explicit c0 c1 \ inductive foo1 tt (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.65»)) c2 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.68»)) c3 \ arity (prod `_:r` (global (indt «nat»)) c4 \ sort (typ «elpi.tests.test_arg_HOAS.71»))) c2 \ [constructor a_k1 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.78»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.80»)) c4 \ arity (prod `x:r` (global (indt «nat»)) c5 \ prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c4, app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]) c6 \ app [c2, c3, c4, c5])), constructor a_k2 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.89»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.91»)) c4 \ arity (prod `_:r` c0 c5 \ app [c2, c3, c4, app [global (indc «S»), global (indc «O»)]]))] Debug: ---->>---- exit: coq.say typed: (parameter A1 maximal (sort (typ «elpi.tests.test_arg_HOAS.63»)) c0 \ parameter A2 explicit c0 c1 \ inductive foo1 tt (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.65»)) c2 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.68»)) c3 \ arity (prod `_:r` (global (indt «nat»)) c4 \ sort (typ «elpi.tests.test_arg_HOAS.71»))) c2 \ [constructor a_k1 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.78»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.80»)) c4 \ arity (prod `x:r` (global (indt «nat»)) c5 \ prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c4, app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]) c6 \ app [c2, c3, c4, c5])), constructor a_k2 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.89»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.91»)) c4 \ arity (prod `_:r` c0 c5 \ app [c2, c3, c4, app [global (indc «S»), global (indc «O»)]]))]) Debug: ----<<---- enter: coq.env.add-indt (parameter A1 maximal (sort (typ «elpi.tests.test_arg_HOAS.63»)) c0 \ parameter A2 explicit c0 c1 \ inductive foo1 tt (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.65»)) c2 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.68»)) c3 \ arity (prod `_:r` (global (indt «nat»)) c4 \ sort (typ «elpi.tests.test_arg_HOAS.71»))) c2 \ [constructor a_k1 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.78»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.80»)) c4 \ arity (prod `x:r` (global (indt «nat»)) c5 \ prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c4, app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]) c6 \ app [c2, c3, c4, c5])), constructor a_k2 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.89»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.91»)) c4 \ arity (prod `_:r` c0 c5 \ app [c2, c3, c4, app [global (indc «S»), global (indc «O»)]]))]) X10 Debug: ---->>---- exit: coq.env.add-indt (parameter A1 maximal (sort (typ «foo1.u0»)) c0 \ parameter A2 explicit c0 c1 \ inductive foo1 tt (parameter B1 explicit (sort (typ «foo1.u1»)) c2 \ parameter B2 explicit (sort (typ «foo1.u2»)) c3 \ arity (prod `_:r` (global (indt «nat»)) c4 \ sort (typ «foo1.u3»))) c2 \ [constructor a_k1 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.78»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.80»)) c4 \ arity (prod `x:r` (global (indt «nat»)) c5 \ prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c4, app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]) c6 \ app [c2, c3, c4, c5])), constructor a_k2 (parameter B1 explicit (sort (typ «elpi.tests.test_arg_HOAS.89»)) c3 \ parameter B2 explicit (sort (typ «elpi.tests.test_arg_HOAS.91»)) c4 \ arity (prod `_:r` c0 c5 \ app [c2, c3, c4, app [global (indc «S»), global (indc «O»)]]))]) «foo1» foo1 ?A2 ?B1 ?B2 ?n : Type : Type where ?A1 : [ |- Type] ?A2 : [ |- ?A1] ?B1 : [ |- Type] ?B2 : [ |- Type] ?n : [ |- nat] a_k1 ?A2 ?B1 ?B2 3 ?f : foo1 ?A2 ?B1 ?B2 3 : foo1 ?A2 ?B1 ?B2 3 where ?A1 : [ |- Type] ?A2 : [ |- ?A1] ?B1 : [ |- Type] ?B2 : [ |- Type] ?f : [ |- foo1 ?A2 (?B1 * ?B1) ?B2 3] Query assignments: D = parameter A explicit (sort (typ «t.u0»)) c0 \ inductive t tt (parameter y explicit (global (indt «nat»)) c1 \ arity (sort (typ «elpi.tests.test_arg_HOAS.114»))) c1 \ [constructor K (parameter y explicit (global (indt «nat»)) c2 \ parameter x explicit c0 c3 \ parameter n maximal (global (indt «nat»)) c4 \ arity (prod `_:r` (app [c1, c4]) c5 \ app [c1, c2]))] I = «t» Universe constraints: UNIVERSES: {elpi.tests.test_arg_HOAS.114} |= Set <= elpi.tests.test_arg_HOAS.114 t.u0 <= elpi.tests.test_arg_HOAS.114 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α72 α73 α74 α75 α76 |= Prop -> SProp Type -> α72 -> α73 -> α74 -> α75 -> α76 -> Prop -> SProp WEAK CONSTRAINTS: Debug: ----<<---- enter: coq.say raw: (record foo (sort (typ «Set»)) Build_foo (field [coercion off, canonical tt] f (prod `_:r` (global (indt «nat»)) c0 \ global (indt «nat»)) c0 \ field [coercion off, canonical tt] _ (app [global (indt «eq»), global (indt «nat»), app [c0, global (indc «O»)], global (indc «O»)]) c1 \ end-record)) raw: record foo (sort (typ «Set»)) Build_foo (field [coercion off, canonical tt] f (prod `_:r` (global (indt «nat»)) c0 \ global (indt «nat»)) c0 \ field [coercion off, canonical tt] _ (app [global (indt «eq»), global (indt «nat»), app [c0, global (indc «O»)], global (indc «O»)]) c1 \ end-record) Debug: ---->>---- exit: coq.say raw: (record foo (sort (typ «Set»)) Build_foo (field [coercion off, canonical tt] f (prod `_:r` (global (indt «nat»)) c0 \ global (indt «nat»)) c0 \ field [coercion off, canonical tt] _ (app [global (indt «eq»), global (indt «nat»), app [c0, global (indc «O»)], global (indc «O»)]) c1 \ end-record)) Debug: ----<<---- enter: std.assert-ok! (coq.typecheck-indt-decl (record foo (sort (typ «Set»)) Build_foo (field [coercion off, canonical tt] f (prod `_:r` (global (indt «nat»)) c0 \ global (indt «nat»)) c0 \ field [coercion off, canonical tt] _ (app [global (indt «eq»), global (indt «nat»), app [c0, global (indc «O»)], global (indc «O»)]) c1 \ end-record))) Illtyped inductive declaration Debug: ---->>---- exit: std.assert-ok! (coq.typecheck-indt-decl (record foo (sort (typ «Set»)) Build_foo (field [coercion off, canonical tt] f (prod `_:r` (global (indt «nat»)) c0 \ global (indt «nat»)) c0 \ field [coercion off, canonical tt] _ (app [global (indt «eq»), global (indt «nat»), app [c0, global (indc «O»)], global (indc «O»)]) c1 \ end-record))) Illtyped inductive declaration Debug: ----<<---- enter: coq.say typed: (record foo (sort (typ «Set»)) Build_foo (field [coercion off, canonical tt] f (prod `_:r` (global (indt «nat»)) c0 \ global (indt «nat»)) c0 \ field [coercion off, canonical tt] _ (app [global (indt «eq»), global (indt «nat»), app [c0, global (indc «O»)], global (indc «O»)]) c1 \ end-record)) typed: record foo (sort (typ «Set»)) Build_foo (field [coercion off, canonical tt] f (prod `_:r` (global (indt «nat»)) c0 \ global (indt «nat»)) c0 \ field [coercion off, canonical tt] _ (app [global (indt «eq»), global (indt «nat»), app [c0, global (indc «O»)], global (indc «O»)]) c1 \ end-record) Debug: ---->>---- exit: coq.say typed: (record foo (sort (typ «Set»)) Build_foo (field [coercion off, canonical tt] f (prod `_:r` (global (indt «nat»)) c0 \ global (indt «nat»)) c0 \ field [coercion off, canonical tt] _ (app [global (indt «eq»), global (indt «nat»), app [c0, global (indc «O»)], global (indc «O»)]) c1 \ end-record)) Debug: ----<<---- enter: coq.env.add-indt (record foo (sort (typ «Set»)) Build_foo (field [coercion off, canonical tt] f (prod `_:r` (global (indt «nat»)) c0 \ global (indt «nat»)) c0 \ field [coercion off, canonical tt] _ (app [global (indt «eq»), global (indt «nat»), app [c0, global (indc «O»)], global (indc «O»)]) c1 \ end-record)) X0 Debug: ---->>---- exit: coq.env.add-indt (record foo (sort (typ «Set»)) Build_foo (field [coercion off, canonical tt] f (prod `_:r` (global (indt «nat»)) c0 \ global (indt «nat»)) c0 \ field [coercion off, canonical tt] _ (app [global (indt «eq»), global (indt «nat»), app [c0, global (indc «O»)], global (indc «O»)]) c1 \ end-record)) «foo» Debug: ----<<---- enter: coq.say raw: (record foo (sort (typ X0)) Build_foo (field [coercion off, canonical tt] f (prod `_:r` (global (indt «nat»)) c0 \ global (indt «nat»)) c0 \ field [coercion off, canonical tt] _ (app [global (indt «eq»), X1 c0, app [c0, global (indc «O»)], global (indc «O»)]) c1 \ end-record)) raw: record foo (sort (typ X0)) Build_foo (field [coercion off, canonical tt] f (prod `_:r` (global (indt «nat»)) c0 \ global (indt «nat»)) c0 \ field [coercion off, canonical tt] _ (app [global (indt «eq»), X1 c0, app [c0, global (indc «O»)], global (indc «O»)]) c1 \ end-record) Debug: ---->>---- exit: coq.say raw: (record foo (sort (typ X0)) Build_foo (field [coercion off, canonical tt] f (prod `_:r` (global (indt «nat»)) c0 \ global (indt «nat»)) c0 \ field [coercion off, canonical tt] _ (app [global (indt «eq»), X1 c0, app [c0, global (indc «O»)], global (indc «O»)]) c1 \ end-record)) Debug: ----<<---- enter: std.assert-ok! (coq.elaborate-indt-decl-skeleton (record foo (sort (typ X0)) Build_foo (field [coercion off, canonical tt] f (prod `_:r` (global (indt «nat»)) c0 \ global (indt «nat»)) c0 \ field [coercion off, canonical tt] _ (app [global (indt «eq»), X1 c0, app [c0, global (indc «O»)], global (indc «O»)]) c1 \ end-record)) X2) Illtyped inductive declaration Debug: ---->>---- exit: std.assert-ok! (coq.elaborate-indt-decl-skeleton (record foo (sort (typ «elpi.tests.test_arg_HOAS.118»)) Build_foo (field [coercion off, canonical tt] f (prod `_:r` (global (indt «nat»)) c0 \ global (indt «nat»)) c0 \ field [coercion off, canonical tt] _ (app [global (indt «eq»), X1 c0, app [c0, global (indc «O»)], global (indc «O»)]) c1 \ end-record)) (record foo (sort (typ «elpi.tests.test_arg_HOAS.119»)) Build_foo (field [coercion off, canonical tt] f (prod `_:r` (global (indt «nat»)) c0 \ global (indt «nat»)) c0 \ field [coercion off, canonical tt] _ (app [global (indt «eq»), global (indt «nat»), app [c0, global (indc «O»)], global (indc «O»)]) c1 \ end-record))) Illtyped inductive declaration Debug: ----<<---- enter: coq.say typed: (record foo (sort (typ «elpi.tests.test_arg_HOAS.119»)) Build_foo (field [coercion off, canonical tt] f (prod `_:r` (global (indt «nat»)) c0 \ global (indt «nat»)) c0 \ field [coercion off, canonical tt] _ (app [global (indt «eq»), global (indt «nat»), app [c0, global (indc «O»)], global (indc «O»)]) c1 \ end-record)) typed: record foo (sort (typ «elpi.tests.test_arg_HOAS.119»)) Build_foo (field [coercion off, canonical tt] f (prod `_:r` (global (indt «nat»)) c0 \ global (indt «nat»)) c0 \ field [coercion off, canonical tt] _ (app [global (indt «eq»), global (indt «nat»), app [c0, global (indc «O»)], global (indc «O»)]) c1 \ end-record) Debug: ---->>---- exit: coq.say typed: (record foo (sort (typ «elpi.tests.test_arg_HOAS.119»)) Build_foo (field [coercion off, canonical tt] f (prod `_:r` (global (indt «nat»)) c0 \ global (indt «nat»)) c0 \ field [coercion off, canonical tt] _ (app [global (indt «eq»), global (indt «nat»), app [c0, global (indc «O»)], global (indc «O»)]) c1 \ end-record)) Debug: ----<<---- enter: coq.env.add-indt (record foo (sort (typ «elpi.tests.test_arg_HOAS.119»)) Build_foo (field [coercion off, canonical tt] f (prod `_:r` (global (indt «nat»)) c0 \ global (indt «nat»)) c0 \ field [coercion off, canonical tt] _ (app [global (indt «eq»), global (indt «nat»), app [c0, global (indc «O»)], global (indc «O»)]) c1 \ end-record)) X3 Debug: ---->>---- exit: coq.env.add-indt (record foo (sort (typ «foo.u0»)) Build_foo (field [coercion off, canonical tt] f (prod `_:r` (global (indt «nat»)) c0 \ global (indt «nat»)) c0 \ field [coercion off, canonical tt] _ (app [global (indt «eq»), global (indt «nat»), app [c0, global (indc «O»)], global (indc «O»)]) c1 \ end-record)) «foo» Query assignments: A = «a» B = «z» C = «x» I = «foo» Debug: ----<<---- enter: coq.say raw: (parameter A explicit (sort (typ «elpi.tests.test_arg_HOAS.128»)) c0 \ parameter B explicit c0 c1 \ record foo (sort (typ «elpi.tests.test_arg_HOAS.128»)) Build_foo (field [coercion off, canonical tt] a (prod `_:r` c0 c2 \ prod `_:r` c0 c3 \ c0) c2 \ field [coercion reversible, canonical tt] z (prod `a:r` c0 c3 \ prod `_:r` (app [global (indt «eq»), c0, c1, c1]) c4 \ c0) c3 \ field [coercion off, canonical ff] x (let `w:r` (global (indt «nat»)) (app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]) c4 \ prod `x:r` c0 c5 \ app [global (indt «eq»), c0, app [c2, c5, c5], c5]) c4 \ end-record)) raw: parameter A explicit (sort (typ «elpi.tests.test_arg_HOAS.128»)) c0 \ parameter B explicit c0 c1 \ record foo (sort (typ «elpi.tests.test_arg_HOAS.128»)) Build_foo (field [coercion off, canonical tt] a (prod `_:r` c0 c2 \ prod `_:r` c0 c3 \ c0) c2 \ field [coercion reversible, canonical tt] z (prod `a:r` c0 c3 \ prod `_:r` (app [global (indt «eq»), c0, c1, c1]) c4 \ c0) c3 \ field [coercion off, canonical ff] x (let `w:r` (global (indt «nat»)) (app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]) c4 \ prod `x:r` c0 c5 \ app [global (indt «eq»), c0, app [c2, c5, c5], c5]) c4 \ end-record) Debug: ---->>---- exit: coq.say raw: (parameter A explicit (sort (typ «elpi.tests.test_arg_HOAS.128»)) c0 \ parameter B explicit c0 c1 \ record foo (sort (typ «elpi.tests.test_arg_HOAS.128»)) Build_foo (field [coercion off, canonical tt] a (prod `_:r` c0 c2 \ prod `_:r` c0 c3 \ c0) c2 \ field [coercion reversible, canonical tt] z (prod `a:r` c0 c3 \ prod `_:r` (app [global (indt «eq»), c0, c1, c1]) c4 \ c0) c3 \ field [coercion off, canonical ff] x (let `w:r` (global (indt «nat»)) (app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]) c4 \ prod `x:r` c0 c5 \ app [global (indt «eq»), c0, app [c2, c5, c5], c5]) c4 \ end-record)) Debug: ----<<---- enter: std.assert-ok! (coq.typecheck-indt-decl (parameter A explicit (sort (typ «elpi.tests.test_arg_HOAS.128»)) c0 \ parameter B explicit c0 c1 \ record foo (sort (typ «elpi.tests.test_arg_HOAS.128»)) Build_foo (field [coercion off, canonical tt] a (prod `_:r` c0 c2 \ prod `_:r` c0 c3 \ c0) c2 \ field [coercion reversible, canonical tt] z (prod `a:r` c0 c3 \ prod `_:r` (app [global (indt «eq»), c0, c1, c1]) c4 \ c0) c3 \ field [coercion off, canonical ff] x (let `w:r` (global (indt «nat»)) (app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]) c4 \ prod `x:r` c0 c5 \ app [global (indt «eq»), c0, app [c2, c5, c5], c5]) c4 \ end-record))) Illtyped inductive declaration Debug: ---->>---- exit: std.assert-ok! (coq.typecheck-indt-decl (parameter A explicit (sort (typ «elpi.tests.test_arg_HOAS.128»)) c0 \ parameter B explicit c0 c1 \ record foo (sort (typ «elpi.tests.test_arg_HOAS.128»)) Build_foo (field [coercion off, canonical tt] a (prod `_:r` c0 c2 \ prod `_:r` c0 c3 \ c0) c2 \ field [coercion reversible, canonical tt] z (prod `a:r` c0 c3 \ prod `_:r` (app [global (indt «eq»), c0, c1, c1]) c4 \ c0) c3 \ field [coercion off, canonical ff] x (let `w:r` (global (indt «nat»)) (app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]) c4 \ prod `x:r` c0 c5 \ app [global (indt «eq»), c0, app [c2, c5, c5], c5]) c4 \ end-record))) Illtyped inductive declaration Debug: ----<<---- enter: coq.say typed: (parameter A explicit (sort (typ «elpi.tests.test_arg_HOAS.128»)) c0 \ parameter B explicit c0 c1 \ record foo (sort (typ «elpi.tests.test_arg_HOAS.128»)) Build_foo (field [coercion off, canonical tt] a (prod `_:r` c0 c2 \ prod `_:r` c0 c3 \ c0) c2 \ field [coercion reversible, canonical tt] z (prod `a:r` c0 c3 \ prod `_:r` (app [global (indt «eq»), c0, c1, c1]) c4 \ c0) c3 \ field [coercion off, canonical ff] x (let `w:r` (global (indt «nat»)) (app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]) c4 \ prod `x:r` c0 c5 \ app [global (indt «eq»), c0, app [c2, c5, c5], c5]) c4 \ end-record)) typed: parameter A explicit (sort (typ «elpi.tests.test_arg_HOAS.128»)) c0 \ parameter B explicit c0 c1 \ record foo (sort (typ «elpi.tests.test_arg_HOAS.128»)) Build_foo (field [coercion off, canonical tt] a (prod `_:r` c0 c2 \ prod `_:r` c0 c3 \ c0) c2 \ field [coercion reversible, canonical tt] z (prod `a:r` c0 c3 \ prod `_:r` (app [global (indt «eq»), c0, c1, c1]) c4 \ c0) c3 \ field [coercion off, canonical ff] x (let `w:r` (global (indt «nat»)) (app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]) c4 \ prod `x:r` c0 c5 \ app [global (indt «eq»), c0, app [c2, c5, c5], c5]) c4 \ end-record) Debug: ---->>---- exit: coq.say typed: (parameter A explicit (sort (typ «elpi.tests.test_arg_HOAS.128»)) c0 \ parameter B explicit c0 c1 \ record foo (sort (typ «elpi.tests.test_arg_HOAS.128»)) Build_foo (field [coercion off, canonical tt] a (prod `_:r` c0 c2 \ prod `_:r` c0 c3 \ c0) c2 \ field [coercion reversible, canonical tt] z (prod `a:r` c0 c3 \ prod `_:r` (app [global (indt «eq»), c0, c1, c1]) c4 \ c0) c3 \ field [coercion off, canonical ff] x (let `w:r` (global (indt «nat»)) (app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]) c4 \ prod `x:r` c0 c5 \ app [global (indt «eq»), c0, app [c2, c5, c5], c5]) c4 \ end-record)) Debug: ----<<---- enter: coq.env.add-indt (parameter A explicit (sort (typ «elpi.tests.test_arg_HOAS.128»)) c0 \ parameter B explicit c0 c1 \ record foo (sort (typ «elpi.tests.test_arg_HOAS.128»)) Build_foo (field [coercion off, canonical tt] a (prod `_:r` c0 c2 \ prod `_:r` c0 c3 \ c0) c2 \ field [coercion reversible, canonical tt] z (prod `a:r` c0 c3 \ prod `_:r` (app [global (indt «eq»), c0, c1, c1]) c4 \ c0) c3 \ field [coercion off, canonical ff] x (let `w:r` (global (indt «nat»)) (app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]) c4 \ prod `x:r` c0 c5 \ app [global (indt «eq»), c0, app [c2, c5, c5], c5]) c4 \ end-record)) X0 Debug: ---->>---- exit: coq.env.add-indt (parameter A explicit (sort (typ «foo.u0»)) c0 \ parameter B explicit c0 c1 \ record foo (sort (typ «foo.u0»)) Build_foo (field [coercion off, canonical tt] a (prod `_:r` c0 c2 \ prod `_:r` c0 c3 \ c0) c2 \ field [coercion reversible, canonical tt] z (prod `a:r` c0 c3 \ prod `_:r` (app [global (indt «eq»), c0, c1, c1]) c4 \ c0) c3 \ field [coercion off, canonical ff] x (let `w:r` (global (indt «nat»)) (app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]) c4 \ prod `x:r` c0 c5 \ app [global (indt «eq»), c0, app [c2, c5, c5], c5]) c4 \ end-record)) «foo» Query assignments: A = «a» B = «z» C = «x» I = «foo» Debug: ----<<---- enter: coq.say raw: (parameter A explicit X0 c0 \ parameter B explicit c0 c1 \ record foo (sort (typ X1)) Build_foo (field [coercion off, canonical tt] a (prod `_:r` c0 c2 \ prod `_:r` c0 c3 \ c0) c2 \ field [coercion reversible, canonical tt] z (prod `_elpi_renamed_a_1:r` c0 c3 \ prod `_:r` (app [global (indt «eq»), X2 c2 c3, c1, c1]) c4 \ c0) c3 \ field [coercion off, canonical ff] x (let `w:r` (X3 c3) (app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]) c4 \ prod `x:r` (X4 c3 c4) c5 \ app [global (indt «eq»), X5 c3 c4 c5, app [c2, c5, c5], c5]) c4 \ end-record)) raw: parameter A explicit X0 c0 \ parameter B explicit c0 c1 \ record foo (sort (typ X1)) Build_foo (field [coercion off, canonical tt] a (prod `_:r` c0 c2 \ prod `_:r` c0 c3 \ c0) c2 \ field [coercion reversible, canonical tt] z (prod `_elpi_renamed_a_1:r` c0 c3 \ prod `_:r` (app [global (indt «eq»), X2 c2 c3, c1, c1]) c4 \ c0) c3 \ field [coercion off, canonical ff] x (let `w:r` (X3 c3) (app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]) c4 \ prod `x:r` (X4 c3 c4) c5 \ app [global (indt «eq»), X5 c3 c4 c5, app [c2, c5, c5], c5]) c4 \ end-record) Debug: ---->>---- exit: coq.say raw: (parameter A explicit X0 c0 \ parameter B explicit c0 c1 \ record foo (sort (typ X1)) Build_foo (field [coercion off, canonical tt] a (prod `_:r` c0 c2 \ prod `_:r` c0 c3 \ c0) c2 \ field [coercion reversible, canonical tt] z (prod `_elpi_renamed_a_1:r` c0 c3 \ prod `_:r` (app [global (indt «eq»), X2 c2 c3, c1, c1]) c4 \ c0) c3 \ field [coercion off, canonical ff] x (let `w:r` (X3 c3) (app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]) c4 \ prod `x:r` (X4 c3 c4) c5 \ app [global (indt «eq»), X5 c3 c4 c5, app [c2, c5, c5], c5]) c4 \ end-record)) Debug: ----<<---- enter: std.assert-ok! (coq.elaborate-indt-decl-skeleton (parameter A explicit X0 c0 \ parameter B explicit c0 c1 \ record foo (sort (typ X1)) Build_foo (field [coercion off, canonical tt] a (prod `_:r` c0 c2 \ prod `_:r` c0 c3 \ c0) c2 \ field [coercion reversible, canonical tt] z (prod `_elpi_renamed_a_1:r` c0 c3 \ prod `_:r` (app [global (indt «eq»), X2 c2 c3, c1, c1]) c4 \ c0) c3 \ field [coercion off, canonical ff] x (let `w:r` (X3 c3) (app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]) c4 \ prod `x:r` (X4 c3 c4) c5 \ app [global (indt «eq»), X5 c3 c4 c5, app [c2, c5, c5], c5]) c4 \ end-record)) X6) Illtyped inductive declaration Debug: ---->>---- exit: std.assert-ok! (coq.elaborate-indt-decl-skeleton ...TRUNCATED BY DUNE... arity (sort (typ «elpi.tests.test_arg_HOAS.161»))) (prod `n:r` (global (indt «nat»)) c0 \ sort (typ «elpi.tests.test_arg_HOAS.161»)) Debug: ----<<---- enter: std.assert-ok! (coq.typecheck-ty (prod `n:r` (global (indt «nat»)) c0 \ sort (typ «elpi.tests.test_arg_HOAS.161»)) X1) illtyped axiom Debug: ---->>---- exit: std.assert-ok! (coq.typecheck-ty (prod `n:r` (global (indt «nat»)) c0 \ sort (typ «elpi.tests.test_arg_HOAS.161»)) (typ «elpi.tests.test_arg_HOAS.162»)) illtyped axiom Debug: ----<<---- enter: coq.env.add-axiom y (prod `n:r` (global (indt «nat»)) c0 \ sort (typ «elpi.tests.test_arg_HOAS.161»)) X2 Debug: ---->>---- exit: coq.env.add-axiom y (prod `n:r` (global (indt «nat»)) c0 \ sort (typ «y.u0»)) «y» y : nat -> Type : nat -> Type Debug: ----<<---- enter: coq.arity->term (parameter n explicit (global (indt «nat»)) c0 \ arity (global (indt «nat»))) X0 Debug: ---->>---- exit: coq.arity->term (parameter n explicit (global (indt «nat»)) c0 \ arity (global (indt «nat»))) (prod `n:r` (global (indt «nat»)) c0 \ global (indt «nat»)) Debug: ----<<---- enter: std.assert-ok! (coq.typecheck (fun `n:r` (global (indt «nat»)) c0 \ app [global (indc «S»), c0]) (prod `n:r` (global (indt «nat»)) c0 \ global (indt «nat»))) illtyped definition Debug: ---->>---- exit: std.assert-ok! (coq.typecheck (fun `n:r` (global (indt «nat»)) c0 \ app [global (indc «S»), c0]) (prod `n:r` (global (indt «nat»)) c0 \ global (indt «nat»))) illtyped definition Debug: ----<<---- enter: coq.env.add-const x (fun `n:r` (global (indt «nat»)) c0 \ app [global (indc «S»), c0]) (prod `n:r` (global (indt «nat»)) c0 \ global (indt «nat»)) X1 X2 Debug: ---->>---- exit: coq.env.add-const x (fun `n:r` (global (indt «nat»)) c0 \ app [global (indc «S»), c0]) (prod `n:r` (global (indt «nat»)) c0 \ global (indt «nat»)) X1 «x» parameter A1 maximal (sort (typ «foo1.u0»)) c0 \ parameter A2 explicit c0 c1 \ inductive foo1 tt (parameter B1 explicit (sort (typ «foo1.u1»)) c2 \ parameter B2 explicit (sort (typ «foo1.u2»)) c3 \ arity (prod `_:r` (global (indt «nat»)) c4 \ sort (typ «foo1.u3»))) c2 \ [constructor a_k1 (parameter B1 explicit (sort (typ «foo1.u1»)) c3 \ parameter B2 explicit (sort (typ «foo1.u2»)) c4 \ arity (prod `x:r` (global (indt «nat»)) c5 \ prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c4, app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]) c6 \ app [c2, c3, c4, c5])), constructor a_k2 (parameter B1 explicit (sort (typ «foo1.u1»)) c3 \ parameter B2 explicit (sort (typ «foo1.u2»)) c4 \ arity (prod `_:r` c0 c5 \ app [c2, c3, c4, app [global (indc «S»), global (indc «O»)]]))] Query assignments: D = parameter A1 maximal (sort (typ «foo1.u0»)) c0 \ parameter A2 explicit c0 c1 \ inductive foo1 tt (parameter B1 explicit (sort (typ «foo1.u1»)) c2 \ parameter B2 explicit (sort (typ «foo1.u2»)) c3 \ arity (prod `_:r` (global (indt «nat»)) c4 \ sort (typ «foo1.u3»))) c2 \ [constructor a_k1 (parameter B1 explicit (sort (typ «foo1.u1»)) c3 \ parameter B2 explicit (sort (typ «foo1.u2»)) c4 \ arity (prod `x:r` (global (indt «nat»)) c5 \ prod `_:r` (app [c2, app [global (indt «prod»), c3, c3], c4, app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]) c6 \ app [c2, c3, c4, c5])), constructor a_k2 (parameter B1 explicit (sort (typ «foo1.u1»)) c3 \ parameter B2 explicit (sort (typ «foo1.u2»)) c4 \ arity (prod `_:r` c0 c5 \ app [c2, c3, c4, app [global (indc «S»), global (indc «O»)]]))] I = «inductive_nup.foo1» foo1 ?A2 ?B1 ?B2 ?n : Type : Type where ?A1 : [ |- Type] ?A2 : [ |- ?A1] ?B1 : [ |- Type] ?B2 : [ |- Type] ?n : [ |- nat] a_k1 ?A2 ?B1 ?B2 3 ?f : foo1 ?A2 ?B1 ?B2 3 : foo1 ?A2 ?B1 ?B2 3 where ?A1 : [ |- Type] ?A2 : [ |- ?A1] ?B1 : [ |- Type] ?B2 : [ |- Type] ?f : [ |- foo1 ?A2 (?B1 * ?B1) ?B2 3] Query assignments: I = «inductive_nup.r» R = parameter A explicit (sort (typ «r.u0»)) c0 \ parameter a explicit c0 c1 \ record r (sort (typ «r.u0»)) R (field [coercion reversible, canonical tt] f (prod `_:r` c0 c2 \ c0) c2 \ field [coercion off, canonical tt] g c0 c3 \ field [coercion off, canonical tt] p (app [global (indt «eq»), c0, c1, c3]) c4 \ end-record) Record r (A : Type) (a : A) : Type := R { f : A -> A; g : A; p : a = g }. Arguments r A%_type_scope a Arguments R A%_type_scope a f%_function_scope g p Arguments f A%_type_scope a record _ Arguments g A%_type_scope a record Arguments p A%_type_scope a record Debug: ----<<---- enter: coq.say raw: (inductive X1 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.176»))) c0 \ []) raw: inductive X1 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.176»))) c0 \ [] Debug: ---->>---- exit: coq.say raw: (inductive X1 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.176»))) c0 \ []) Debug: ----<<---- enter: std.assert-ok! (coq.typecheck-indt-decl (inductive X1 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.176»))) c0 \ [])) Illtyped inductive declaration Debug: ---->>---- exit: std.assert-ok! (coq.typecheck-indt-decl (inductive X1 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.176»))) c0 \ [])) Illtyped inductive declaration Debug: ----<<---- enter: coq.say typed: (inductive X1 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.176»))) c0 \ []) typed: inductive X1 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.176»))) c0 \ [] Debug: ---->>---- exit: coq.say typed: (inductive X1 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.176»))) c0 \ []) Debug: ----<<---- enter: coq.env.add-indt (inductive X1 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.176»))) c0 \ []) X0 Debug: ---->>---- exit: coq.env.add-indt (inductive X1 tt (arity (sort (typ «X1.u0»))) c0 \ []) «X1» X1 : Type@{X1.u0} X1 is not universe polymorphic Expands to: Inductive elpi.tests.test_arg_HOAS.X1 Declared in library elpi.tests.test_arg_HOAS, line 303, characters 0-68 Debug: ----<<---- enter: coq.say raw: (inductive X3 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.179»))) c0 \ []) (upoly-decl [«elpi.tests.test_arg_HOAS.179»] tt [] tt) raw: inductive X3 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.179»))) c0 \ [] upoly-decl [«elpi.tests.test_arg_HOAS.179»] tt [] tt Debug: ---->>---- exit: coq.say raw: (inductive X3 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.179»))) c0 \ []) (upoly-decl [«elpi.tests.test_arg_HOAS.179»] tt [] tt) Debug: ----<<---- enter: coq.univ.print Universe constraints: UNIVERSES: {eu1} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: eu1 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Debug: ---->>---- exit: coq.univ.print Debug: ----<<---- enter: std.assert-ok! (coq.typecheck-indt-decl (inductive X3 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.179»))) c0 \ [])) Illtyped inductive declaration Debug: ---->>---- exit: std.assert-ok! (coq.typecheck-indt-decl (inductive X3 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.179»))) c0 \ [])) Illtyped inductive declaration Debug: ----<<---- enter: coq.say typed: (inductive X3 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.179»))) c0 \ []) typed: inductive X3 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.179»))) c0 \ [] Debug: ---->>---- exit: coq.say typed: (inductive X3 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.179»))) c0 \ []) Debug: ----<<---- enter: coq.upoly-decl->attribute (upoly-decl [«elpi.tests.test_arg_HOAS.179»] tt [] tt) X0 Debug: ---->>---- exit: coq.upoly-decl->attribute (upoly-decl [«elpi.tests.test_arg_HOAS.179»] tt [] tt) (get-option coq:udecl (upoly-decl [«elpi.tests.test_arg_HOAS.179»] tt [] tt)) Debug: ----<<---- enter: get-option coq:udecl (upoly-decl [«elpi.tests.test_arg_HOAS.179»] tt [] tt) => coq.env.add-indt (inductive X3 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.179»))) c0 \ []) X1 Debug: ---->>---- exit: get-option coq:udecl (upoly-decl [«elpi.tests.test_arg_HOAS.179»] tt [] tt) => coq.env.add-indt (inductive X3 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.179»))) c0 \ []) «X3» Debug: ----<<---- enter: coq.say raw: (inductive X4 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.186»))) c0 \ []) (upoly-decl-cumul [auto «elpi.tests.test_arg_HOAS.186»] tt [] tt) raw: inductive X4 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.186»))) c0 \ [] upoly-decl-cumul [auto «elpi.tests.test_arg_HOAS.186»] tt [] tt Debug: ---->>---- exit: coq.say raw: (inductive X4 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.186»))) c0 \ []) (upoly-decl-cumul [auto «elpi.tests.test_arg_HOAS.186»] tt [] tt) Debug: ----<<---- enter: coq.univ.print Universe constraints: UNIVERSES: {eu2} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: eu2 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Debug: ---->>---- exit: coq.univ.print Debug: ----<<---- enter: std.assert-ok! (coq.typecheck-indt-decl (inductive X4 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.186»))) c0 \ [])) Illtyped inductive declaration Debug: ---->>---- exit: std.assert-ok! (coq.typecheck-indt-decl (inductive X4 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.186»))) c0 \ [])) Illtyped inductive declaration Debug: ----<<---- enter: coq.say typed: (inductive X4 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.186»))) c0 \ []) typed: inductive X4 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.186»))) c0 \ [] Debug: ---->>---- exit: coq.say typed: (inductive X4 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.186»))) c0 \ []) Debug: ----<<---- enter: coq.upoly-decl->attribute (upoly-decl-cumul [auto «elpi.tests.test_arg_HOAS.186»] tt [] tt) X0 Debug: ---->>---- exit: coq.upoly-decl->attribute (upoly-decl-cumul [auto «elpi.tests.test_arg_HOAS.186»] tt [] tt) (get-option coq:udecl-cumul (upoly-decl-cumul [auto «elpi.tests.test_arg_HOAS.186»] tt [] tt)) Debug: ----<<---- enter: get-option coq:udecl-cumul (upoly-decl-cumul [auto «elpi.tests.test_arg_HOAS.186»] tt [] tt) => coq.env.add-indt (inductive X4 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.186»))) c0 \ []) X1 Debug: ---->>---- exit: get-option coq:udecl-cumul (upoly-decl-cumul [auto «elpi.tests.test_arg_HOAS.186»] tt [] tt) => coq.env.add-indt (inductive X4 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.186»))) c0 \ []) «X4» X3@{eu1} : Type@{eu1} (* eu1 |= *) X3 is universe polymorphic Expands to: Inductive elpi.tests.test_arg_HOAS.X3 Declared in library elpi.tests.test_arg_HOAS, line 311, characters 0-68 X4@{eu2} : Type@{eu2} (* *eu2 |= *) X4 is universe polymorphic Expands to: Inductive elpi.tests.test_arg_HOAS.X4 Declared in library elpi.tests.test_arg_HOAS, line 312, characters 0-79 Query assignments: GR = indt «X3» Universe constraints: UNIVERSES: {elpi.tests.test_arg_HOAS.193} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: elpi.tests.test_arg_HOAS.193 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: GR = indt «X4» Universe constraints: UNIVERSES: {elpi.tests.test_arg_HOAS.194} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: elpi.tests.test_arg_HOAS.194 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Debug: ----<<---- enter: coq.say raw: (inductive X5 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.195»))) c0 \ []) (upoly-decl [«elpi.tests.test_arg_HOAS.195»] ff [] ff) raw: inductive X5 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.195»))) c0 \ [] upoly-decl [«elpi.tests.test_arg_HOAS.195»] ff [] ff Debug: ---->>---- exit: coq.say raw: (inductive X5 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.195»))) c0 \ []) (upoly-decl [«elpi.tests.test_arg_HOAS.195»] ff [] ff) Debug: ----<<---- enter: coq.univ.print Universe constraints: UNIVERSES: {eu3} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: eu3 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Debug: ---->>---- exit: coq.univ.print Debug: ----<<---- enter: std.assert-ok! (coq.typecheck-indt-decl (inductive X5 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.195»))) c0 \ [])) Illtyped inductive declaration Debug: ---->>---- exit: std.assert-ok! (coq.typecheck-indt-decl (inductive X5 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.195»))) c0 \ [])) Illtyped inductive declaration Debug: ----<<---- enter: coq.say typed: (inductive X5 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.195»))) c0 \ []) typed: inductive X5 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.195»))) c0 \ [] Debug: ---->>---- exit: coq.say typed: (inductive X5 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.195»))) c0 \ []) Debug: ----<<---- enter: coq.upoly-decl->attribute (upoly-decl [«elpi.tests.test_arg_HOAS.195»] ff [] ff) X0 Debug: ---->>---- exit: coq.upoly-decl->attribute (upoly-decl [«elpi.tests.test_arg_HOAS.195»] ff [] ff) (get-option coq:udecl (upoly-decl [«elpi.tests.test_arg_HOAS.195»] ff [] ff)) Debug: ----<<---- enter: get-option coq:udecl (upoly-decl [«elpi.tests.test_arg_HOAS.195»] ff [] ff) => coq.env.add-indt (inductive X5 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.195»))) c0 \ []) X1 Debug: ---->>---- exit: get-option coq:udecl (upoly-decl [«elpi.tests.test_arg_HOAS.195»] ff [] ff) => coq.env.add-indt (inductive X5 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.195»))) c0 \ []) «X5» X5@{eu3} : Type@{eu3} (* eu3 |= *) X5 is universe polymorphic Expands to: Inductive elpi.tests.test_arg_HOAS.X5 Declared in library elpi.tests.test_arg_HOAS, line 319, characters 0-76 Debug: ----<<---- enter: coq.say raw: (inductive X6 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.203»))) c0 \ [constructor K (arity (prod `u:r` (sort (typ «elpi.tests.test_arg_HOAS.202»)) c1 \ c0))]) (upoly-decl [«elpi.tests.test_arg_HOAS.202», «elpi.tests.test_arg_HOAS.203»] ff [lt «elpi.tests.test_arg_HOAS.202» «elpi.tests.test_arg_HOAS.203»] ff) raw: inductive X6 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.203»))) c0 \ [constructor K (arity (prod `u:r` (sort (typ «elpi.tests.test_arg_HOAS.202»)) c1 \ c0))] upoly-decl [«elpi.tests.test_arg_HOAS.202», «elpi.tests.test_arg_HOAS.203»] ff [lt «elpi.tests.test_arg_HOAS.202» «elpi.tests.test_arg_HOAS.203»] ff Debug: ---->>---- exit: coq.say raw: (inductive X6 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.203»))) c0 \ [constructor K (arity (prod `u:r` (sort (typ «elpi.tests.test_arg_HOAS.202»)) c1 \ c0))]) (upoly-decl [«elpi.tests.test_arg_HOAS.202», «elpi.tests.test_arg_HOAS.203»] ff [lt «elpi.tests.test_arg_HOAS.202» «elpi.tests.test_arg_HOAS.203»] ff) Debug: ----<<---- enter: coq.univ.print Universe constraints: UNIVERSES: {eu5 eu4} |= eu4 < eu5 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: eu5 eu4 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Debug: ---->>---- exit: coq.univ.print Debug: ----<<---- enter: std.assert-ok! (coq.typecheck-indt-decl (inductive X6 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.203»))) c0 \ [constructor K (arity (prod `u:r` (sort (typ «elpi.tests.test_arg_HOAS.202»)) c1 \ c0))])) Illtyped inductive declaration Debug: ---->>---- exit: std.assert-ok! (coq.typecheck-indt-decl (inductive X6 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.203»))) c0 \ [constructor K (arity (prod `u:r` (sort (typ «elpi.tests.test_arg_HOAS.202»)) c1 \ c0))])) Illtyped inductive declaration Debug: ----<<---- enter: coq.say typed: (inductive X6 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.203»))) c0 \ [constructor K (arity (prod `u:r` (sort (typ «elpi.tests.test_arg_HOAS.202»)) c1 \ c0))]) typed: inductive X6 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.203»))) c0 \ [constructor K (arity (prod `u:r` (sort (typ «elpi.tests.test_arg_HOAS.202»)) c1 \ c0))] Debug: ---->>---- exit: coq.say typed: (inductive X6 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.203»))) c0 \ [constructor K (arity (prod `u:r` (sort (typ «elpi.tests.test_arg_HOAS.202»)) c1 \ c0))]) Debug: ----<<---- enter: coq.upoly-decl->attribute (upoly-decl [«elpi.tests.test_arg_HOAS.202», «elpi.tests.test_arg_HOAS.203»] ff [lt «elpi.tests.test_arg_HOAS.202» «elpi.tests.test_arg_HOAS.203»] ff) X0 Debug: ---->>---- exit: coq.upoly-decl->attribute (upoly-decl [«elpi.tests.test_arg_HOAS.202», «elpi.tests.test_arg_HOAS.203»] ff [lt «elpi.tests.test_arg_HOAS.202» «elpi.tests.test_arg_HOAS.203»] ff) (get-option coq:udecl (upoly-decl [«elpi.tests.test_arg_HOAS.202», «elpi.tests.test_arg_HOAS.203»] ff [lt «elpi.tests.test_arg_HOAS.202» «elpi.tests.test_arg_HOAS.203»] ff)) Debug: ----<<---- enter: get-option coq:udecl (upoly-decl [«elpi.tests.test_arg_HOAS.202», «elpi.tests.test_arg_HOAS.203»] ff [lt «elpi.tests.test_arg_HOAS.202» «elpi.tests.test_arg_HOAS.203»] ff) => coq.env.add-indt (inductive X6 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.203»))) c0 \ [constructor K (arity (prod `u:r` (sort (typ «elpi.tests.test_arg_HOAS.202»)) c1 \ c0))]) X1 Debug: ---->>---- exit: get-option coq:udecl (upoly-decl [«elpi.tests.test_arg_HOAS.202», «elpi.tests.test_arg_HOAS.203»] ff [lt «elpi.tests.test_arg_HOAS.202» «elpi.tests.test_arg_HOAS.203»] ff) => coq.env.add-indt (inductive X6 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.203»))) c0 \ [constructor K (arity (prod `u:r` (sort (typ «elpi.tests.test_arg_HOAS.202»)) c1 \ c0))]) «X6» X6@{eu4 eu5} : Type@{eu5} (* eu4 eu5 |= eu4 < eu5 *) X6 is universe polymorphic Expands to: Inductive elpi.tests.test_arg_HOAS.X6 Declared in library elpi.tests.test_arg_HOAS, line 322, characters 0-98 Debug: ----<<---- enter: coq.say raw: (inductive X8 tt (arity (sort (typ X0))) c0 \ []) (upoly-decl [] tt [] tt) raw: inductive X8 tt (arity (sort (typ X0))) c0 \ [] upoly-decl [] tt [] tt Debug: ---->>---- exit: coq.say raw: (inductive X8 tt (arity (sort (typ X0))) c0 \ []) (upoly-decl [] tt [] tt) Debug: ----<<---- enter: coq.univ.print Universe constraints: Debug: ---->>---- exit: coq.univ.print Debug: ----<<---- enter: get-option coq:keepunivs tt => std.assert-ok! (coq.elaborate-indt-decl-skeleton (inductive X8 tt (arity (sort (typ X0))) c0 \ []) X1) Illtyped inductive declaration Debug: ---->>---- exit: get-option coq:keepunivs tt => std.assert-ok! (coq.elaborate-indt-decl-skeleton (inductive X8 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.217»))) c0 \ []) (inductive X8 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.217»))) c0 \ [])) Illtyped inductive declaration Debug: ----<<---- enter: coq.say typed: (inductive X8 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.217»))) c0 \ []) typed: inductive X8 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.217»))) c0 \ [] Debug: ---->>---- exit: coq.say typed: (inductive X8 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.217»))) c0 \ []) Debug: ----<<---- enter: coq.upoly-decl->attribute (upoly-decl [] tt [] tt) X2 Debug: ---->>---- exit: coq.upoly-decl->attribute (upoly-decl [] tt [] tt) (get-option coq:udecl (upoly-decl [] tt [] tt)) Debug: ----<<---- enter: get-option coq:udecl (upoly-decl [] tt [] tt) => coq.env.add-indt (inductive X8 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.217»))) c0 \ []) X3 Debug: ---->>---- exit: get-option coq:udecl (upoly-decl [] tt [] tt) => coq.env.add-indt (inductive X8 tt (arity (sort (typ «elpi.tests.test_arg_HOAS.217»))) c0 \ []) «X8» X8@{u} : Type@{u} (* u |= *) X8 is universe polymorphic Expands to: Inductive elpi.tests.test_arg_HOAS.X8 Declared in library elpi.tests.test_arg_HOAS, line 327, characters 0-72 Debug: ----<<---- enter: coq.arity->term (parameter T explicit (sort (typ «elpi.tests.test_arg_HOAS.224»)) c0 \ parameter x explicit c0 c1 \ arity c0) X0 Debug: ---->>---- exit: coq.arity->term (parameter T explicit (sort (typ «elpi.tests.test_arg_HOAS.224»)) c0 \ parameter x explicit c0 c1 \ arity c0) (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.224»)) c0 \ prod `x:r` c0 c1 \ c0) Debug: ----<<---- enter: std.assert-ok! (coq.typecheck (fun `T:r` (sort (typ «elpi.tests.test_arg_HOAS.224»)) c0 \ fun `x:r` c0 c1 \ c1) (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.224»)) c0 \ prod `x:r` c0 c1 \ c0)) illtyped definition Debug: ---->>---- exit: std.assert-ok! (coq.typecheck (fun `T:r` (sort (typ «elpi.tests.test_arg_HOAS.224»)) c0 \ fun `x:r` c0 c1 \ c1) (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.224»)) c0 \ prod `x:r` c0 c1 \ c0)) illtyped definition Debug: ----<<---- enter: coq.upoly-decl->attribute (upoly-decl [] tt [] tt) X1 Debug: ---->>---- exit: coq.upoly-decl->attribute (upoly-decl [] tt [] tt) (get-option coq:udecl (upoly-decl [] tt [] tt)) Debug: ----<<---- enter: get-option coq:udecl (upoly-decl [] tt [] tt) => coq.env.add-const f1 (fun `T:r` (sort (typ «elpi.tests.test_arg_HOAS.224»)) c0 \ fun `x:r` c0 c1 \ c1) (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.224»)) c0 \ prod `x:r` c0 c1 \ c0) X2 X3 Debug: ---->>---- exit: get-option coq:udecl (upoly-decl [] tt [] tt) => coq.env.add-const f1 (fun `T:r` (sort (typ «elpi.tests.test_arg_HOAS.224»)) c0 \ fun `x:r` c0 c1 \ c1) (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.224»)) c0 \ prod `x:r` c0 c1 \ c0) X2 «f1» f1@{u} : forall T : Type@{u}, T -> T (* u |= *) f1 is universe polymorphic Arguments f1 T%_type_scope x f1 is transparent Expands to: Constant elpi.tests.test_arg_HOAS.f1 Declared in library elpi.tests.test_arg_HOAS, line 331, characters 0-78 Debug: ----<<---- enter: coq.arity->term (parameter T explicit (sort (typ «elpi.tests.test_arg_HOAS.225»)) c0 \ parameter T1 explicit (sort (typ «elpi.tests.test_arg_HOAS.225»)) c1 \ parameter x explicit c0 c2 \ arity c0) X0 Debug: ---->>---- exit: coq.arity->term (parameter T explicit (sort (typ «elpi.tests.test_arg_HOAS.225»)) c0 \ parameter T1 explicit (sort (typ «elpi.tests.test_arg_HOAS.225»)) c1 \ parameter x explicit c0 c2 \ arity c0) (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.225»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.225»)) c1 \ prod `x:r` c0 c2 \ c0) Debug: ----<<---- enter: std.assert-ok! (coq.typecheck (fun `T:r` (sort (typ «elpi.tests.test_arg_HOAS.225»)) c0 \ fun `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.225»)) c1 \ fun `x:r` c0 c2 \ c2) (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.225»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.225»)) c1 \ prod `x:r` c0 c2 \ c0)) illtyped definition Debug: ---->>---- exit: std.assert-ok! (coq.typecheck (fun `T:r` (sort (typ «elpi.tests.test_arg_HOAS.225»)) c0 \ fun `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.225»)) c1 \ fun `x:r` c0 c2 \ c2) (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.225»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.225»)) c1 \ prod `x:r` c0 c2 \ c0)) illtyped definition Debug: ----<<---- enter: coq.upoly-decl->attribute (upoly-decl [«elpi.tests.test_arg_HOAS.225»] ff [] tt) X1 Debug: ---->>---- exit: coq.upoly-decl->attribute (upoly-decl [«elpi.tests.test_arg_HOAS.225»] ff [] tt) (get-option coq:udecl (upoly-decl [«elpi.tests.test_arg_HOAS.225»] ff [] tt)) Debug: ----<<---- enter: get-option coq:udecl (upoly-decl [«elpi.tests.test_arg_HOAS.225»] ff [] tt) => coq.env.add-const f2 (fun `T:r` (sort (typ «elpi.tests.test_arg_HOAS.225»)) c0 \ fun `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.225»)) c1 \ fun `x:r` c0 c2 \ c2) (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.225»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.225»)) c1 \ prod `x:r` c0 c2 \ c0) X2 X3 Debug: ---->>---- exit: get-option coq:udecl (upoly-decl [«elpi.tests.test_arg_HOAS.225»] ff [] tt) => coq.env.add-const f2 (fun `T:r` (sort (typ «elpi.tests.test_arg_HOAS.225»)) c0 \ fun `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.225»)) c1 \ fun `x:r` c0 c2 \ c2) (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.225»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.225»)) c1 \ prod `x:r` c0 c2 \ c0) X2 «f2» f2@{u} : forall T : Type@{u}, Type@{u} -> T -> T (* u |= *) f2 is universe polymorphic Arguments f2 (T T1)%_type_scope x f2 is transparent Expands to: Constant elpi.tests.test_arg_HOAS.f2 Declared in library elpi.tests.test_arg_HOAS, line 334, characters 0-100 Debug: ----<<---- enter: coq.arity->term (parameter T explicit (sort (typ X0)) c0 \ parameter x explicit c0 c1 \ arity (X1 c1)) X2 Debug: ---->>---- exit: coq.arity->term (parameter T explicit (sort (typ X0)) c0 \ parameter x explicit c0 c1 \ arity (X1 c1)) (prod `T:r` (sort (typ X0)) c0 \ prod `x:r` c0 c1 \ X1 c1) Debug: ----<<---- enter: get-option coq:keepunivs tt => std.assert-ok! (coq.elaborate-ty-skeleton (prod `T:r` (sort (typ X0)) c0 \ prod `x:r` c0 c1 \ X1 c1) X3 X4) illtyped arity Debug: ---->>---- exit: get-option coq:keepunivs tt => std.assert-ok! (coq.elaborate-ty-skeleton (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.226»)) c0 \ prod `x:r` c0 c1 \ X1 c1) (typ «elpi.tests.test_arg_HOAS.228») (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.226»)) c0 \ prod `x:r` c0 c1 \ X5 c0 c1)) illtyped arity Debug: ----<<---- enter: get-option coq:keepunivs tt => std.assert-ok! (coq.elaborate-skeleton (fun `T:r` (sort (typ X6)) c0 \ fun `x:r` c0 c1 \ c1) (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.226»)) c0 \ prod `x:r` c0 c1 \ X5 c0 c1) X7) illtyped definition Debug: ---->>---- exit: get-option coq:keepunivs tt => std.assert-ok! (coq.elaborate-skeleton (fun `T:r` (sort (typ «elpi.tests.test_arg_HOAS.229»)) c0 \ fun `x:r` c0 c1 \ c1) (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.226»)) c0 \ prod `x:r` c0 c1 \ c0) (fun `T:r` (sort (typ «elpi.tests.test_arg_HOAS.226»)) c0 \ fun `x:r` c0 c1 \ c1)) illtyped definition Debug: ----<<---- enter: coq.upoly-decl->attribute (upoly-decl [] tt [] tt) X8 Debug: ---->>---- exit: coq.upoly-decl->attribute (upoly-decl [] tt [] tt) (get-option coq:udecl (upoly-decl [] tt [] tt)) Debug: ----<<---- enter: get-option coq:udecl (upoly-decl [] tt [] tt) => coq.env.add-const f3 (fun `T:r` (sort (typ «elpi.tests.test_arg_HOAS.226»)) c0 \ fun `x:r` c0 c1 \ c1) (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.226»)) c0 \ prod `x:r` c0 c1 \ c0) X9 X10 Debug: ---->>---- exit: get-option coq:udecl (upoly-decl [] tt [] tt) => coq.env.add-const f3 (fun `T:r` (sort (typ «elpi.tests.test_arg_HOAS.226»)) c0 \ fun `x:r` c0 c1 \ c1) (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.226»)) c0 \ prod `x:r` c0 c1 \ c0) X9 «f3» f3@{u} : forall T : Type@{u}, T -> T (* u |= *) f3 is universe polymorphic Arguments f3 T%_type_scope x f3 is transparent Expands to: Constant elpi.tests.test_arg_HOAS.f3 Declared in library elpi.tests.test_arg_HOAS, line 337, characters 0-82 Debug: ----<<---- enter: coq.arity->term (parameter T explicit (sort (typ «elpi.tests.test_arg_HOAS.230»)) c0 \ parameter T1 explicit (sort (typ «elpi.tests.test_arg_HOAS.230»)) c1 \ parameter x explicit c0 c2 \ arity (X0 c2)) X1 Debug: ---->>---- exit: coq.arity->term (parameter T explicit (sort (typ «elpi.tests.test_arg_HOAS.230»)) c0 \ parameter T1 explicit (sort (typ «elpi.tests.test_arg_HOAS.230»)) c1 \ parameter x explicit c0 c2 \ arity (X0 c2)) (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.230»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.230»)) c1 \ prod `x:r` c0 c2 \ X0 c2) Debug: ----<<---- enter: get-option coq:keepunivs tt => std.assert-ok! (coq.elaborate-ty-skeleton (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.230»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.230»)) c1 \ prod `x:r` c0 c2 \ X0 c2) X2 X3) illtyped arity Debug: ---->>---- exit: get-option coq:keepunivs tt => std.assert-ok! (coq.elaborate-ty-skeleton (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.230»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.230»)) c1 \ prod `x:r` c0 c2 \ X0 c2) (typ «elpi.tests.test_arg_HOAS.232») (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.230»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.230»)) c1 \ prod `x:r` c0 c2 \ X4 c0 c1 c2)) illtyped arity Debug: ----<<---- enter: get-option coq:keepunivs tt => std.assert-ok! (coq.elaborate-skeleton (fun `T:r` (sort (typ «elpi.tests.test_arg_HOAS.230»)) c0 \ fun `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.230»)) c1 \ fun `x:r` c0 c2 \ c2) (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.230»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.230»)) c1 \ prod `x:r` c0 c2 \ X4 c0 c1 c2) X5) illtyped definition Debug: ---->>---- exit: get-option coq:keepunivs tt => std.assert-ok! (coq.elaborate-skeleton (fun `T:r` (sort (typ «elpi.tests.test_arg_HOAS.230»)) c0 \ fun `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.230»)) c1 \ fun `x:r` c0 c2 \ c2) (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.230»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.230»)) c1 \ prod `x:r` c0 c2 \ c0) (fun `T:r` (sort (typ «elpi.tests.test_arg_HOAS.230»)) c0 \ fun `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.230»)) c1 \ fun `x:r` c0 c2 \ c2)) illtyped definition Debug: ----<<---- enter: coq.upoly-decl->attribute (upoly-decl [«elpi.tests.test_arg_HOAS.230»] ff [] tt) X6 Debug: ---->>---- exit: coq.upoly-decl->attribute (upoly-decl [«elpi.tests.test_arg_HOAS.230»] ff [] tt) (get-option coq:udecl (upoly-decl [«elpi.tests.test_arg_HOAS.230»] ff [] tt)) Debug: ----<<---- enter: get-option coq:udecl (upoly-decl [«elpi.tests.test_arg_HOAS.230»] ff [] tt) => coq.env.add-const f4 (fun `T:r` (sort (typ «elpi.tests.test_arg_HOAS.230»)) c0 \ fun `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.230»)) c1 \ fun `x:r` c0 c2 \ c2) (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.230»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.230»)) c1 \ prod `x:r` c0 c2 \ c0) X7 X8 Debug: ---->>---- exit: get-option coq:udecl (upoly-decl [«elpi.tests.test_arg_HOAS.230»] ff [] tt) => coq.env.add-const f4 (fun `T:r` (sort (typ «elpi.tests.test_arg_HOAS.230»)) c0 \ fun `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.230»)) c1 \ fun `x:r` c0 c2 \ c2) (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.230»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.230»)) c1 \ prod `x:r` c0 c2 \ c0) X7 «f4» f4@{u} : forall T : Type@{u}, Type@{u} -> T -> T (* u |= *) f4 is universe polymorphic Arguments f4 (T T1)%_type_scope x f4 is transparent Expands to: Constant elpi.tests.test_arg_HOAS.f4 Declared in library elpi.tests.test_arg_HOAS, line 340, characters 0-104 Debug: ----<<---- enter: coq.arity->term (parameter T explicit (sort (typ «uuu»)) c0 \ parameter T1 explicit (sort (typ «uuu»)) c1 \ parameter x explicit c0 c2 \ arity (X0 c2)) X1 Debug: ---->>---- exit: coq.arity->term (parameter T explicit (sort (typ «uuu»)) c0 \ parameter T1 explicit (sort (typ «uuu»)) c1 \ parameter x explicit c0 c2 \ arity (X0 c2)) (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «uuu»)) c1 \ prod `x:r` c0 c2 \ X0 c2) Debug: ----<<---- enter: std.assert-ok! (coq.elaborate-ty-skeleton (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «uuu»)) c1 \ prod `x:r` c0 c2 \ X0 c2) X2 X3) illtyped arity Debug: ---->>---- exit: std.assert-ok! (coq.elaborate-ty-skeleton (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «uuu»)) c1 \ prod `x:r` c0 c2 \ X0 c2) (typ «elpi.tests.test_arg_HOAS.237») (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.234»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.235»)) c1 \ prod `x:r` c0 c2 \ X4 c0 c1 c2)) illtyped arity Debug: ----<<---- enter: std.assert-ok! (coq.elaborate-skeleton (fun `T:r` (sort (typ «uuu»)) c0 \ fun `T1:r` (sort (typ «uuu»)) c1 \ fun `x:r` c0 c2 \ c2) (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.234»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.235»)) c1 \ prod `x:r` c0 c2 \ X4 c0 c1 c2) X5) illtyped definition Debug: ---->>---- exit: std.assert-ok! (coq.elaborate-skeleton (fun `T:r` (sort (typ «uuu»)) c0 \ fun `T1:r` (sort (typ «uuu»)) c1 \ fun `x:r` c0 c2 \ c2) (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.234»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.235»)) c1 \ prod `x:r` c0 c2 \ c0) (fun `T:r` (sort (typ «elpi.tests.test_arg_HOAS.238»)) c0 \ fun `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.239»)) c1 \ fun `x:r` c0 c2 \ c2)) illtyped definition Debug: ----<<---- enter: coq.env.add-const f5 (fun `T:r` (sort (typ «elpi.tests.test_arg_HOAS.238»)) c0 \ fun `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.239»)) c1 \ fun `x:r` c0 c2 \ c2) (prod `T:r` (sort (typ «elpi.tests.test_arg_HOAS.234»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.235»)) c1 \ prod `x:r` c0 c2 \ c0) X6 X7 Debug: ---->>---- exit: coq.env.add-const f5 (fun `T:r` (sort (typ «f5.u2»)) c0 \ fun `T1:r` (sort (typ «f5.u3»)) c1 \ fun `x:r` c0 c2 \ c2) (prod `T:r` (sort (typ «f5.u0»)) c0 \ prod `T1:r` (sort (typ «f5.u1»)) c1 \ prod `x:r` c0 c2 \ c0) X6 «f5» Debug: ----<<---- enter: coq.arity->term (parameter T explicit (sort (typ «uuu»)) c0 \ parameter T1 explicit (sort (typ «elpi.tests.test_arg_HOAS.240»)) c1 \ parameter x explicit c0 c2 \ arity c0) X0 Debug: ---->>---- exit: coq.arity->term (parameter T explicit (sort (typ «uuu»)) c0 \ parameter T1 explicit (sort (typ «elpi.tests.test_arg_HOAS.240»)) c1 \ parameter x explicit c0 c2 \ arity c0) (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.240»)) c1 \ prod `x:r` c0 c2 \ c0) Debug: ----<<---- enter: std.assert-ok! (coq.typecheck (fun `T:r` (sort (typ «uuu»)) c0 \ fun `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.240»)) c1 \ fun `x:r` c0 c2 \ c2) (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.240»)) c1 \ prod `x:r` c0 c2 \ c0)) illtyped definition Debug: ---->>---- exit: std.assert-ok! (coq.typecheck (fun `T:r` (sort (typ «uuu»)) c0 \ fun `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.240»)) c1 \ fun `x:r` c0 c2 \ c2) (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.240»)) c1 \ prod `x:r` c0 c2 \ c0)) illtyped definition Debug: ----<<---- enter: coq.upoly-decl->attribute (upoly-decl [«elpi.tests.test_arg_HOAS.240»] ff [] tt) X1 Debug: ---->>---- exit: coq.upoly-decl->attribute (upoly-decl [«elpi.tests.test_arg_HOAS.240»] ff [] tt) (get-option coq:udecl (upoly-decl [«elpi.tests.test_arg_HOAS.240»] ff [] tt)) Debug: ----<<---- enter: get-option coq:udecl (upoly-decl [«elpi.tests.test_arg_HOAS.240»] ff [] tt) => coq.env.add-const f6 (fun `T:r` (sort (typ «uuu»)) c0 \ fun `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.240»)) c1 \ fun `x:r` c0 c2 \ c2) (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.240»)) c1 \ prod `x:r` c0 c2 \ c0) X2 X3 Debug: ---->>---- exit: get-option coq:udecl (upoly-decl [«elpi.tests.test_arg_HOAS.240»] ff [] tt) => coq.env.add-const f6 (fun `T:r` (sort (typ «uuu»)) c0 \ fun `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.240»)) c1 \ fun `x:r` c0 c2 \ c2) (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.240»)) c1 \ prod `x:r` c0 c2 \ c0) X2 «f6» f6@{uuux} : forall T : Type@{uuu}, Type@{uuux} -> T -> T (* uuux |= *) f6 is universe polymorphic Arguments f6 (T T1)%_type_scope x f6 is transparent Expands to: Constant elpi.tests.test_arg_HOAS.f6 Declared in library elpi.tests.test_arg_HOAS, line 350, characters 0-82 Debug: ----<<---- enter: coq.arity->term (arity (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «Set»)) c1 \ prod `x:r` c0 c2 \ c0)) X0 Debug: ---->>---- exit: coq.arity->term (arity (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «Set»)) c1 \ prod `x:r` c0 c2 \ c0)) (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «Set»)) c1 \ prod `x:r` c0 c2 \ c0) Debug: ----<<---- enter: std.assert-ok! (coq.typecheck (pglobal (const «f6») «Set») (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «Set»)) c1 \ prod `x:r` c0 c2 \ c0)) illtyped definition Debug: ---->>---- exit: std.assert-ok! (coq.typecheck (pglobal (const «f6») «Set») (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «Set»)) c1 \ prod `x:r` c0 c2 \ c0)) illtyped definition Debug: ----<<---- enter: coq.upoly-decl->attribute (upoly-decl [] tt [] tt) X1 Debug: ---->>---- exit: coq.upoly-decl->attribute (upoly-decl [] tt [] tt) (get-option coq:udecl (upoly-decl [] tt [] tt)) Debug: ----<<---- enter: get-option coq:udecl (upoly-decl [] tt [] tt) => coq.env.add-const f7 (pglobal (const «f6») «Set») (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «Set»)) c1 \ prod `x:r` c0 c2 \ c0) X2 X3 Debug: ---->>---- exit: get-option coq:udecl (upoly-decl [] tt [] tt) => coq.env.add-const f7 (pglobal (const «f6») «Set») (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «Set»)) c1 \ prod `x:r` c0 c2 \ c0) X2 «f7» Debug: ----<<---- enter: coq.arity->term (arity X0) X1 Debug: ---->>---- exit: coq.arity->term (arity X0) X0 Debug: ----<<---- enter: get-option coq:keepunivs tt => std.assert-ok! (coq.elaborate-ty-skeleton X0 X2 X3) illtyped arity Debug: ---->>---- exit: get-option coq:keepunivs tt => std.assert-ok! (coq.elaborate-ty-skeleton X0 (typ «elpi.tests.test_arg_HOAS.241») X3) illtyped arity Debug: ----<<---- enter: get-option coq:keepunivs tt => std.assert-ok! (coq.elaborate-skeleton (pglobal (const «f6») «Set») X3 X4) illtyped definition Debug: ---->>---- exit: get-option coq:keepunivs tt => std.assert-ok! (coq.elaborate-skeleton (pglobal (const «f6») «Set») (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «Set»)) c1 \ prod `x:r` c0 c2 \ c0) (pglobal (const «f6») «Set»)) illtyped definition Debug: ----<<---- enter: coq.upoly-decl->attribute (upoly-decl [] tt [] tt) X5 Debug: ---->>---- exit: coq.upoly-decl->attribute (upoly-decl [] tt [] tt) (get-option coq:udecl (upoly-decl [] tt [] tt)) Debug: ----<<---- enter: get-option coq:udecl (upoly-decl [] tt [] tt) => coq.env.add-const f8 (pglobal (const «f6») «Set») (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «Set»)) c1 \ prod `x:r` c0 c2 \ c0) X6 X7 Debug: ---->>---- exit: get-option coq:udecl (upoly-decl [] tt [] tt) => coq.env.add-const f8 (pglobal (const «f6») «Set») (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «Set»)) c1 \ prod `x:r` c0 c2 \ c0) X6 «f8» Debug: ----<<---- enter: coq.arity->term (arity (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «uuu»)) c1 \ prod `x:r` c0 c2 \ c0)) X0 Debug: ---->>---- exit: coq.arity->term (arity (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «uuu»)) c1 \ prod `x:r` c0 c2 \ c0)) (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «uuu»)) c1 \ prod `x:r` c0 c2 \ c0) Debug: ----<<---- enter: std.assert-ok! (coq.typecheck (pglobal (const «f6») «uuu») (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «uuu»)) c1 \ prod `x:r` c0 c2 \ c0)) illtyped definition Debug: ---->>---- exit: std.assert-ok! (coq.typecheck (pglobal (const «f6») «uuu») (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «uuu»)) c1 \ prod `x:r` c0 c2 \ c0)) illtyped definition Debug: ----<<---- enter: coq.upoly-decl->attribute (upoly-decl [] tt [] tt) X1 Debug: ---->>---- exit: coq.upoly-decl->attribute (upoly-decl [] tt [] tt) (get-option coq:udecl (upoly-decl [] tt [] tt)) Debug: ----<<---- enter: get-option coq:udecl (upoly-decl [] tt [] tt) => coq.env.add-const f7' (pglobal (const «f6») «uuu») (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «uuu»)) c1 \ prod `x:r` c0 c2 \ c0) X2 X3 Debug: ---->>---- exit: get-option coq:udecl (upoly-decl [] tt [] tt) => coq.env.add-const f7' (pglobal (const «f6») «uuu») (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «uuu»)) c1 \ prod `x:r` c0 c2 \ c0) X2 «f7'» Debug: ----<<---- enter: coq.arity->term (arity X0) X1 Debug: ---->>---- exit: coq.arity->term (arity X0) X0 Debug: ----<<---- enter: get-option coq:keepunivs tt => std.assert-ok! (coq.elaborate-ty-skeleton X0 X2 X3) illtyped arity Debug: ---->>---- exit: get-option coq:keepunivs tt => std.assert-ok! (coq.elaborate-ty-skeleton X0 (typ «elpi.tests.test_arg_HOAS.242») X3) illtyped arity Debug: ----<<---- enter: get-option coq:keepunivs tt => std.assert-ok! (coq.elaborate-skeleton (pglobal (const «f6») «uuu») X3 X4) illtyped definition Debug: ---->>---- exit: get-option coq:keepunivs tt => std.assert-ok! (coq.elaborate-skeleton (pglobal (const «f6») «uuu») (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «uuu»)) c1 \ prod `x:r` c0 c2 \ c0) (pglobal (const «f6») «uuu»)) illtyped definition Debug: ----<<---- enter: coq.upoly-decl->attribute (upoly-decl [] tt [] tt) X5 Debug: ---->>---- exit: coq.upoly-decl->attribute (upoly-decl [] tt [] tt) (get-option coq:udecl (upoly-decl [] tt [] tt)) Debug: ----<<---- enter: get-option coq:udecl (upoly-decl [] tt [] tt) => coq.env.add-const f8' (pglobal (const «f6») «uuu») (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «uuu»)) c1 \ prod `x:r` c0 c2 \ c0) X6 X7 Debug: ---->>---- exit: get-option coq:udecl (upoly-decl [] tt [] tt) => coq.env.add-const f8' (pglobal (const «f6») «uuu») (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «uuu»)) c1 \ prod `x:r` c0 c2 \ c0) X6 «f8'» Debug: ----<<---- enter: coq.arity->term (arity (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.243»)) c1 \ prod `x:r` c0 c2 \ c0)) X0 Debug: ---->>---- exit: coq.arity->term (arity (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.243»)) c1 \ prod `x:r` c0 c2 \ c0)) (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.243»)) c1 \ prod `x:r` c0 c2 \ c0) Debug: ----<<---- enter: std.assert-ok! (coq.typecheck (pglobal (const «f6») «elpi.tests.test_arg_HOAS.243») (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.243»)) c1 \ prod `x:r` c0 c2 \ c0)) illtyped definition Debug: ---->>---- exit: std.assert-ok! (coq.typecheck (pglobal (const «f6») «elpi.tests.test_arg_HOAS.243») (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.243»)) c1 \ prod `x:r` c0 c2 \ c0)) illtyped definition Debug: ----<<---- enter: coq.upoly-decl->attribute (upoly-decl [«elpi.tests.test_arg_HOAS.243»] ff [] tt) X1 Debug: ---->>---- exit: coq.upoly-decl->attribute (upoly-decl [«elpi.tests.test_arg_HOAS.243»] ff [] tt) (get-option coq:udecl (upoly-decl [«elpi.tests.test_arg_HOAS.243»] ff [] tt)) Debug: ----<<---- enter: get-option coq:udecl (upoly-decl [«elpi.tests.test_arg_HOAS.243»] ff [] tt) => coq.env.add-const f7'' (pglobal (const «f6») «elpi.tests.test_arg_HOAS.243») (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.243»)) c1 \ prod `x:r` c0 c2 \ c0) X2 X3 Debug: ---->>---- exit: get-option coq:udecl (upoly-decl [«elpi.tests.test_arg_HOAS.243»] ff [] tt) => coq.env.add-const f7'' (pglobal (const «f6») «elpi.tests.test_arg_HOAS.243») (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.243»)) c1 \ prod `x:r` c0 c2 \ c0) X2 «f7''» Debug: ----<<---- enter: coq.arity->term (arity X0) X1 Debug: ---->>---- exit: coq.arity->term (arity X0) X0 Debug: ----<<---- enter: get-option coq:keepunivs tt => std.assert-ok! (coq.elaborate-ty-skeleton X0 X2 X3) illtyped arity Debug: ---->>---- exit: get-option coq:keepunivs tt => std.assert-ok! (coq.elaborate-ty-skeleton X0 (typ «elpi.tests.test_arg_HOAS.245») X3) illtyped arity Debug: ----<<---- enter: get-option coq:keepunivs tt => std.assert-ok! (coq.elaborate-skeleton (pglobal (const «f6») «elpi.tests.test_arg_HOAS.244») X3 X4) illtyped definition Debug: ---->>---- exit: get-option coq:keepunivs tt => std.assert-ok! (coq.elaborate-skeleton (pglobal (const «f6») «elpi.tests.test_arg_HOAS.244») (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.244»)) c1 \ prod `x:r` c0 c2 \ c0) (pglobal (const «f6») «elpi.tests.test_arg_HOAS.244»)) illtyped definition Debug: ----<<---- enter: coq.upoly-decl->attribute (upoly-decl [«elpi.tests.test_arg_HOAS.244»] ff [] tt) X5 Debug: ---->>---- exit: coq.upoly-decl->attribute (upoly-decl [«elpi.tests.test_arg_HOAS.244»] ff [] tt) (get-option coq:udecl (upoly-decl [«elpi.tests.test_arg_HOAS.244»] ff [] tt)) Debug: ----<<---- enter: get-option coq:udecl (upoly-decl [«elpi.tests.test_arg_HOAS.244»] ff [] tt) => coq.env.add-const f8'' (pglobal (const «f6») «elpi.tests.test_arg_HOAS.244») (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.244»)) c1 \ prod `x:r` c0 c2 \ c0) X6 X7 Debug: ---->>---- exit: get-option coq:udecl (upoly-decl [«elpi.tests.test_arg_HOAS.244»] ff [] tt) => coq.env.add-const f8'' (pglobal (const «f6») «elpi.tests.test_arg_HOAS.244») (prod `T:r` (sort (typ «uuu»)) c0 \ prod `T1:r` (sort (typ «elpi.tests.test_arg_HOAS.244»)) c1 \ prod `x:r` c0 c2 \ c0) X6 «f8''» const-decl D (some (fun `i:α198` (global (indt «I»)) c0 \ fun `l:r` (app [global (indt «L»), c0]) c1 \ global (indt «True»))) (parameter i maximal (global (indt «I»)) c0 \ parameter l maximal (app [global (indt «L»), c0]) c1 \ arity (sort prop)) const-decl D (some (fun `i:α201` (global (indt «I»)) c0 \ fun `H:r` (app [global (indt «L»), c0]) c1 \ global (indt «True»))) (parameter i maximal (global (indt «I»)) c0 \ parameter H maximal (app [global (indt «L»), c0]) c1 \ arity (sort prop)) const-decl D (some (fun `i:α204` (global (indt «I»)) c0 \ fun `H:r` (app [global (indt «L»), c0]) c1 \ fun `n:r` (global (indt «nat»)) c2 \ global (indt «True»))) (parameter i maximal (global (indt «I»)) c0 \ parameter H maximal (app [global (indt «L»), c0]) c1 \ parameter n explicit (global (indt «nat»)) c2 \ arity (sort prop)) 2 fun `x:r` X0 c0 \ fun `y:r` (X1 c0) c1 \ app [global (const «Nat.add»), c0, c1] {c0} : decl c0 `x:r` (global (indt «nat»)) ?- evar (X0 c0) (prod `_:r` (global (indt «bool»)) c1 \ global (indt «True»)) ( X1 c0) /* suspended on X0, X1 */ EVARS: ?X2==[x |- bool -> True] (goal evar) {?Goal} ?X1==[ |- => fun x : nat => ?Goal] (goal evar) SHELF:|| FUTURE GOALS STACK: |||| Rocq-Elpi mapping: RAW: ?X2 <-> c0 \ X0 c0 ELAB: ?X2 <-> X1 Debug: {c0} : decl c0 `x:r` (global (indt «nat»)) ?- evar (X0 c0) (prod `_:r` (global (indt «bool»)) c1 \ global (indt «True»)) ( X1 c0) /* suspended on X0, X1 */ H [nabla c1 \ seal (goal [decl c1 `H:r` (prod `b:r` (prod `b:r` (global (indt «bool»)) c2 \ app [global (indt «eq»), global (indt «bool»), c2, c2]) c2 \ global (indt «True»))] (X0 c1) (prod `b:r` (global (indt «bool»)) c2 \ app [global (indt «eq»), global (indt «bool»), c2, c2]) (X1 c1) [])] [str fun, str in, str as, int 4, str end, str match, str return, str =>, str :, str :=, str {, str }, str ;, str ,, str |, str x, int 1, str H, trm (fun `x:α1` (global (indt «False»)) c0 \ match c0 (fun `y:r` (global (indt «False»)) c1 \ global (indt «nat»)) [])] Query assignments: T = sort (typ «xxxxx.u0») U = «xxxxx.u0» Query assignments: U = «elpi.tests.test_HOAS.26» Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.26} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: U = «foo» Query assignments: X = X0 X3_ = global (indt «nat») Syntactic constraints: {c0 c1 c2 c3 c4 c5 c6} : decl c6 `z:r` (app [global (const «N»), c5]), decl c5 `x:r` (global (indt «nat»)), decl c4 `a:r` (global (indt «bool»)) ?- evar (X0 c4 c5 c6) (X1 c4 c5 c6) (X0 c4 c5 c6) /* suspended on X0 */ {c0 c1 c2 c3 c4 c5 c6} : decl c6 `z:r` (app [global (const «N»), c5]), decl c5 `x:r` (global (indt «nat»)), decl c4 `a:r` (global (indt «bool»)) ?- evar (X2 c4 c5 c6) (sort (typ «elpi.tests.test_HOAS.31»)) (X1 c4 c5 c6) /* suspended on X2, X1 */ Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.31 elpi.tests.test_HOAS.30} |= Set <= elpi.tests.test_HOAS.30 elpi.tests.test_HOAS.30 <= elpi.tests.test_HOAS.30 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α3 := Type α4 |= α3 <-> Type Prop -> SProp Type -> α4 -> Prop -> SProp WEAK CONSTRAINTS: ---------------------------------- {c0 c1} : decl c1 `a:r` (global (indt «bool»)) ?- evar X0 (sort (typ «elpi.tests.test_HOAS.32»)) X1 /* suspended on X0, X1 */ {c0 c1} : decl c1 `a:r` (global (indt «bool»)) ?- evar (X2 c1) X1 (X2 c1) /* suspended on X2 */ EVARS: ?X10==[ |- Type] (internal placeholder) {?elpi_evar} ?X9==[a |- ?elpi_evar] (internal placeholder) {?e0} ?X8==[a |- => ?elpi_evar] (internal placeholder) SHELF: FUTURE GOALS STACK:?X10 ?X9 Rocq-Elpi mapping: RAW: ?X9 <-> X2 ?X10 <-> X0 ELAB: ?X9 <-> X2 ?X10 <-> X1 X2 c0 : X1 Query assignments: TY = X1 X = c0 \ c1 \ X2 c0 Syntactic constraints: {c0 c1} : decl c1 `a:r` (global (indt «bool»)) ?- evar X0 (sort (typ «elpi.tests.test_HOAS.32»)) X1 /* suspended on X0, X1 */ {c0 c1} : decl c1 `a:r` (global (indt «bool»)) ?- evar (X2 c1) X1 (X2 c1) /* suspended on X2 */ Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.32} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α5 |= Prop -> SProp Type -> α5 -> Prop -> SProp WEAK CONSTRAINTS: Raw term: app [global (const «add»), primitive (uint63 2000000003333002), primitive (uint63 1)] Nice term: add 2000000003333002 1 Red: 2000000003333003%uint63 Raw term: app [global (const «add»), primitive (float64 24000000000000), primitive (float64 1)] Nice term: 24000000000000 + 1 Red: 24000000000001 Query assignments: C = «Nat.add» F = TODO T = app [fix `add:r` 0 (prod `n:r` (global (indt «nat»)) c0 \ prod `m:r` (global (indt «nat»)) c1 \ global (indt «nat»)) c0 \ fun `n:r` (global (indt «nat»)) c1 \ fun `m:r` (global (indt «nat»)) c2 \ match c1 (fun `n:r` (global (indt «nat»)) c3 \ global (indt «nat»)) [c2, fun `p:r` (global (indt «nat»)) c3 \ app [global (indc «S»), app [c0, c3, c2]]], app [global (indc «S»), global (indc «O»)], app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]] T1 = app [global (const «Nat.add»), app [global (indc «S»), global (indc «O»)], app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]] T2 = app [fix `plus:r` 0 (prod `n:r` (global (indt «nat»)) c0 \ prod `m:r` (global (indt «nat»)) c1 \ global (indt «nat»)) c0 \ fun `n:r` (global (indt «nat»)) c1 \ fun `m:r` (global (indt «nat»)) c2 \ match c1 (fun `_elpi_renamed_n_3:r` (global (indt «nat»)) c3 \ global (indt «nat»)) [c2, fun `p:r` (global (indt «nat»)) c3 \ app [global (indc «S»), app [c0, c3, c2]]], app [global (indc «S»), global (indc «O»)], app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]] X10_ = c0 \ c1 \ c2 \ global (indt «nat») X4_ = global (indt «nat») X5_ = c0 \ global (indt «nat») X6_ = c0 \ c1 \ global (indt «nat») X7_ = c0 \ global (indt «nat») X8_ = c0 \ c1 \ global (indt «nat») X9_ = c0 \ c1 \ c2 \ c3 \ global (indt «nat») Query assignments: C = «Nat.add» F = TODO T = app [fun `n:r` (global (indt «nat»)) c0 \ fun `m:r` (global (indt «nat»)) c1 \ match c0 (fun `n:r` (global (indt «nat»)) c2 \ global (indt «nat»)) [c1, fun `p:r` (global (indt «nat»)) c2 \ app [global (indc «S»), app [fix `add:r` 0 (prod `n:r` (global (indt «nat»)) c3 \ prod `m:r` (global (indt «nat»)) c4 \ global (indt «nat»)) c3 \ fun `n:r` (global (indt «nat»)) c4 \ fun `m:r` (global (indt «nat»)) c5 \ match c4 (fun `n:r` (global (indt «nat»)) c6 \ global (indt «nat»)) [c5, fun `p:r` (global (indt «nat»)) c6 \ app [global (indc «S»), app [c3, c6, c5]]], c2, c1]]], app [global (indc «S»), global (indc «O»)], app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]] T1 = app [global (const «Nat.add»), app [global (indc «S»), global (indc «O»)], app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]] T2 = app [fun `n:r` (global (indt «nat»)) c0 \ fun `m:r` (global (indt «nat»)) c1 \ match c0 (fun `_elpi_renamed_n_2:r` (global (indt «nat»)) c2 \ global (indt «nat»)) [c1, fun `p:r` (global (indt «nat»)) c2 \ app [global (indc «S»), app [fix `plus:r` 0 (prod `_elpi_renamed_n_3:r` (global (indt «nat»)) c3 \ prod `_elpi_renamed_m_4:r` (global (indt «nat»)) c4 \ global (indt «nat»)) c3 \ fun `_elpi_renamed_n_4:r` (global (indt «nat»)) c4 \ fun `_elpi_renamed_m_5:r` (global (indt «nat»)) c5 \ match c4 (fun `_elpi_renamed_n_6:r` (global (indt «nat»)) c6 \ global (indt «nat»)) [c5, fun `_elpi_renamed_p_6:r` (global (indt «nat»)) c6 \ app [global (indc «S»), app [c3, c6, c5]]], c2, c1]]], app [global (indc «S»), global (indc «O»)], app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]] X11_ = global (indt «nat») X12_ = c0 \ global (indt «nat») X13_ = c0 \ c1 \ c2 \ global (indt «nat») X14_ = c0 \ c1 \ global (indt «nat») X15_ = c0 \ c1 \ c2 \ global (indt «nat») X16_ = c0 \ c1 \ c2 \ c3 \ global (indt «nat») X17_ = c0 \ c1 \ c2 \ c3 \ c4 \ global (indt «nat») X18_ = c0 \ c1 \ c2 \ c3 \ global (indt «nat») X19_ = c0 \ c1 \ c2 \ c3 \ c4 \ global (indt «nat») X20_ = c0 \ c1 \ c2 \ c3 \ c4 \ c5 \ c6 \ global (indt «nat») X21_ = c0 \ c1 \ c2 \ c3 \ c4 \ c5 \ global (indt «nat») Query assignments: C = «Nat.add» F = TODO T = match (app [global (indc «S»), global (indc «O»)]) (fun `n:r` (global (indt «nat»)) c0 \ global (indt «nat»)) [app [global (indc «S»), app [global (indc «S»), global (indc «O»)]], fun `p:r` (global (indt «nat»)) c0 \ app [global (indc «S»), app [fix `add:r` 0 (prod `n:r` (global (indt «nat»)) c1 \ prod `m:r` (global (indt «nat»)) c2 \ global (indt «nat»)) c1 \ fun `n:r` (global (indt «nat»)) c2 \ fun `m:r` (global (indt «nat»)) c3 \ match c2 (fun `n:r` (global (indt «nat»)) c4 \ global (indt «nat»)) [c3, fun `p:r` (global (indt «nat»)) c4 \ app [global (indc «S»), app [c1, c4, c3]]], c0, app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]] T1 = app [global (const «Nat.add»), app [global (indc «S»), global (indc «O»)], app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]] T2 = match (app [global (indc «S»), global (indc «O»)]) (fun `_:r` (global (indt «nat»)) c0 \ global (indt «nat»)) [app [global (indc «S»), app [global (indc «S»), global (indc «O»)]], fun `p:r` (global (indt «nat»)) c0 \ app [global (indc «S»), app [fix `plus:r` 0 (prod `n:r` (global (indt «nat»)) c1 \ prod `m:r` (global (indt «nat»)) c2 \ global (indt «nat»)) c1 \ fun `n:r` (global (indt «nat»)) c2 \ fun `m:r` (global (indt «nat»)) c3 \ match c2 (fun `_elpi_renamed_n_4:r` (global (indt «nat»)) c4 \ global (indt «nat»)) [c3, fun `_elpi_renamed_p_4:r` (global (indt «nat»)) c4 \ app [global (indc «S»), app [c1, c4, c3]]], c0, app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]] X22_ = global (indt «nat») X23_ = global (indt «nat») X24_ = c0 \ global (indt «nat») X25_ = c0 \ c1 \ global (indt «nat») X26_ = c0 \ c1 \ c2 \ global (indt «nat») X27_ = c0 \ c1 \ global (indt «nat») X28_ = c0 \ c1 \ c2 \ global (indt «nat») X29_ = c0 \ c1 \ c2 \ c3 \ c4 \ global (indt «nat») X30_ = c0 \ c1 \ c2 \ c3 \ global (indt «nat») Query assignments: C = «Nat.add» F = TODO T = app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]] T1 = app [global (const «Nat.add»), app [global (indc «S»), global (indc «O»)], app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]] T2 = app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]] Debug: ----<<---- enter: app [primitive (proj X0 X1) | X2] = app [primitive (proj elpi.tests.test_HOAS.RP.f 0), X3] Debug: ---->>---- exit: app [primitive (proj elpi.tests.test_HOAS.RP.f 0), X3] = app [primitive (proj elpi.tests.test_HOAS.RP.f 0), X3] Debug: ----<<---- enter: coq.redflags.add coq.redflags.nored [coq.redflags.delta, coq.redflags.beta, coq.redflags.match] X4 Debug: ---->>---- exit: coq.redflags.add coq.redflags.nored [coq.redflags.delta, coq.redflags.beta, coq.redflags.match] TODO Debug: ----<<---- enter: get-option coq:redflags TODO => coq.reduction.cbv.norm (app [primitive (proj elpi.tests.test_HOAS.RP.f 0), app [global (indc «mk_r»), app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]]) X5 Debug: ---->>---- exit: get-option coq:redflags TODO => coq.reduction.cbv.norm (app [primitive (proj elpi.tests.test_HOAS.RP.f 0), app [global (indc «mk_r»), app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]]) (app [primitive (proj elpi.tests.test_HOAS.RP.f 0), app [global (indc «mk_r»), app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]]) Debug: ----<<---- enter: std.assert! (app [primitive (proj elpi.tests.test_HOAS.RP.f 0), app [global (indc «mk_r»), app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]] = app [primitive (proj elpi.tests.test_HOAS.RP.f 0), app [global (indc «mk_r»), app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]]) nored expected Debug: ---->>---- exit: std.assert! (app [primitive (proj elpi.tests.test_HOAS.RP.f 0), app [global (indc «mk_r»), app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]] = app [primitive (proj elpi.tests.test_HOAS.RP.f 0), app [global (indc «mk_r»), app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]]) nored expected Debug: ----<<---- enter: coq.redflags.add coq.redflags.nored [coq.redflags.proj elpi.tests.test_HOAS.RP.f, coq.redflags.delta, coq.redflags.beta, coq.redflags.match] X6 Debug: ---->>---- exit: coq.redflags.add coq.redflags.nored [coq.redflags.proj elpi.tests.test_HOAS.RP.f, coq.redflags.delta, coq.redflags.beta, coq.redflags.match] TODO Debug: ----<<---- enter: get-option coq:redflags TODO => coq.reduction.cbv.norm (app [primitive (proj elpi.tests.test_HOAS.RP.f 0), app [global (indc «mk_r»), app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]]) X7 Debug: ---->>---- exit: get-option coq:redflags TODO => coq.reduction.cbv.norm (app [primitive (proj elpi.tests.test_HOAS.RP.f 0), app [global (indc «mk_r»), app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]]) (app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]) Debug: ----<<---- enter: std.assert! (app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]] = app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]) red expected Debug: ---->>---- exit: std.assert! (app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]] = app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]) red expected Query assignments: F = TODO FP = TODO P = elpi.tests.test_HOAS.RP.f R0 = app [primitive (proj elpi.tests.test_HOAS.RP.f 0), app [global (indc «mk_r»), app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]]] R1 = app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]] X31_ = X3 Query assignments: C = «proj1» Query assignments: C = «proj1» P = elpi.tests.test_HOAS.P''.proj1 elpi.tests.test_HOAS.P.p1 1 global (const «P.x») @P.p1 X0 global (const «P.x») P.p1 P.x some (fun `A:r` (sort (typ «P.foo.u0»)) c0 \ fun `f:r` (app [global (indt «P.foo»), c0]) c1 \ app [primitive (proj elpi.tests.test_HOAS.P.p1 1), c1]) elpi.tests.test_HOAS.P.p2 2 global (const «P.x») @P.p2 X0 global (const «P.x») P.p2 P.x some (fun `A:r` (sort (typ «P.foo.u0»)) c0 \ fun `f:r` (app [global (indt «P.foo»), c0]) c1 \ app [primitive (proj elpi.tests.test_HOAS.P.p1 1), c1]) some (pglobal (const «toto») «elpi.tests.test_HOAS.47 elpi.tests.test_HOAS.48») prod `T1:r` (sort (typ «elpi.tests.test_HOAS.47»)) c0 \ prod `T2:r` (sort (typ «elpi.tests.test_HOAS.48»)) c1 \ prod `x:r` c0 c2 \ c0 Query assignments: Body = some (pglobal (const «toto») «elpi.tests.test_HOAS.47 elpi.tests.test_HOAS.48») C = «titi» Term = prod `T1:r` (sort (typ «elpi.tests.test_HOAS.47»)) c0 \ prod `T2:r` (sort (typ «elpi.tests.test_HOAS.48»)) c1 \ prod `x:r` c0 c2 \ c0 Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.48 elpi.tests.test_HOAS.47} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: elpi.tests.test_HOAS.48 elpi.tests.test_HOAS.47 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: pglobal (const «toto») X0 pglobal (const «toto») «u1 u2» toto Query assignments: %spill1_172 = toto X32_ = X0 X33_ = «elpi.tests.test_HOAS.51 elpi.tests.test_HOAS.52» Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.52 elpi.tests.test_HOAS.51} |= ALGEBRAIC UNIVERSES: {elpi.tests.test_HOAS.52 elpi.tests.test_HOAS.51} FLEXIBLE UNIVERSES: elpi.tests.test_HOAS.52 elpi.tests.test_HOAS.51 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: app [pglobal (const «t») X0, global (indt «nat»), pglobal (const «fnat») X1] app [pglobal (const «t») «elpi.tests.test_HOAS.57», global (indt «nat»), pglobal (const «fnat») «»] Query assignments: T = app [pglobal (const «t») «elpi.tests.test_HOAS.57», global (indt «nat»), pglobal (const «fnat») «»] Ty = global (indt «nat») X34_ = «elpi.tests.test_HOAS.57» X35_ = «» Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.57} |= Set <= elpi.tests.test_HOAS.57 Set = elpi.tests.test_HOAS.57 ALGEBRAIC UNIVERSES: {elpi.tests.test_HOAS.57} FLEXIBLE UNIVERSES: elpi.tests.test_HOAS.57 := Set SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: Arity = prod `T:r` (sort (typ «elpi.tests.test_HOAS.58»)) c0 \ sort (typ «elpi.tests.test_HOAS.58») GRF = indt «F» I = «elpi.tests.test_HOAS.58» Ind = «F» K = [«Build_F»] KTys = [prod `T:r` (sort (typ «elpi.tests.test_HOAS.58»)) c0 \ prod `t:r` c0 c1 \ app [pglobal (indt «F») «elpi.tests.test_HOAS.58», c0]] TyF = prod `T:r` (sort (typ «elpi.tests.test_HOAS.58»)) c0 \ sort (typ «elpi.tests.test_HOAS.58») Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.58} |= ALGEBRAIC UNIVERSES: {elpi.tests.test_HOAS.58} FLEXIBLE UNIVERSES: elpi.tests.test_HOAS.58 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: Decl = parameter T explicit (sort (typ «elpi.tests.test_HOAS.59»)) c0 \ record F (sort (typ «elpi.tests.test_HOAS.59»)) Build_F (field [coercion off, canonical tt] t c0 c1 \ end-record) GRF = indt «F» I = «elpi.tests.test_HOAS.59» Ind = «F» Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.59} |= ALGEBRAIC UNIVERSES: {elpi.tests.test_HOAS.59} FLEXIBLE UNIVERSES: elpi.tests.test_HOAS.59 SORTS: α17 α18 |= Prop -> SProp Type -> α17 -> α18 -> Prop -> SProp WEAK CONSTRAINTS: «elpi.tests.test_HOAS.60» «elpi.tests.test_HOAS.61» Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.61 elpi.tests.test_HOAS.60} |= ALGEBRAIC UNIVERSES: {elpi.tests.test_HOAS.61 elpi.tests.test_HOAS.60} FLEXIBLE UNIVERSES: elpi.tests.test_HOAS.61 elpi.tests.test_HOAS.60 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.61 elpi.tests.test_HOAS.60} |= elpi.tests.test_HOAS.60 = elpi.tests.test_HOAS.61 ALGEBRAIC UNIVERSES: {elpi.tests.test_HOAS.61 elpi.tests.test_HOAS.60} FLEXIBLE UNIVERSES: elpi.tests.test_HOAS.61 elpi.tests.test_HOAS.60 := elpi.tests.test_HOAS.61 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: GRF = indt «F» I1 = «elpi.tests.test_HOAS.60» I2 = «elpi.tests.test_HOAS.61» Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.61 elpi.tests.test_HOAS.60} |= elpi.tests.test_HOAS.60 = elpi.tests.test_HOAS.61 ALGEBRAIC UNIVERSES: {elpi.tests.test_HOAS.61 elpi.tests.test_HOAS.60} FLEXIBLE UNIVERSES: elpi.tests.test_HOAS.61 elpi.tests.test_HOAS.60 := elpi.tests.test_HOAS.61 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: «elpi.tests.test_HOAS.62» «» Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.62} |= ALGEBRAIC UNIVERSES: {elpi.tests.test_HOAS.62} FLEXIBLE UNIVERSES: elpi.tests.test_HOAS.62 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: different universe instance lengths Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.62} |= ALGEBRAIC UNIVERSES: {elpi.tests.test_HOAS.62} FLEXIBLE UNIVERSES: elpi.tests.test_HOAS.62 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: E = different universe instance lengths GRF = indt «F» GRfnat = const «fnat» I1 = «elpi.tests.test_HOAS.62» I2 = «» Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.62} |= ALGEBRAIC UNIVERSES: {elpi.tests.test_HOAS.62} FLEXIBLE UNIVERSES: elpi.tests.test_HOAS.62 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: GRF = indt «F» I1 = «elpi.tests.test_HOAS.63» I2 = «elpi.tests.test_HOAS.63» U = «elpi.tests.test_HOAS.63» UL1 = [«elpi.tests.test_HOAS.63»] Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.63} |= ALGEBRAIC UNIVERSES: {elpi.tests.test_HOAS.63} FLEXIBLE UNIVERSES: elpi.tests.test_HOAS.63 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Cannot enforce elpi.tests.test_HOAS.64 = elpi.tests.test_HOAS.65 because elpi.tests.test_HOAS.64 < elpi.tests.test_HOAS.65 Query assignments: E = Cannot enforce elpi.tests.test_HOAS.64 = elpi.tests.test_HOAS.65 because elpi.tests.test_HOAS.64 < elpi.tests.test_HOAS.65 GRF = indt «F» I1 = «elpi.tests.test_HOAS.64» I2 = «elpi.tests.test_HOAS.65» L1 = «elpi.tests.test_HOAS.64» L2 = «elpi.tests.test_HOAS.65» U1 = «elpi.tests.test_HOAS.64» U2 = «elpi.tests.test_HOAS.65» Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.65 elpi.tests.test_HOAS.64} |= elpi.tests.test_HOAS.64 < elpi.tests.test_HOAS.65 ALGEBRAIC UNIVERSES: {elpi.tests.test_HOAS.65 elpi.tests.test_HOAS.64} FLEXIBLE UNIVERSES: elpi.tests.test_HOAS.65 elpi.tests.test_HOAS.64 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.69 elpi.tests.test_HOAS.68} |= elpi.tests.test_HOAS.68 < elpi.tests.test_HOAS.69 ALGEBRAIC UNIVERSES: {elpi.tests.test_HOAS.69 elpi.tests.test_HOAS.68} FLEXIBLE UNIVERSES: elpi.tests.test_HOAS.69 elpi.tests.test_HOAS.68 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: GRF = indt «F2» I1 = «elpi.tests.test_HOAS.68» I2 = «elpi.tests.test_HOAS.69» L1 = «elpi.tests.test_HOAS.68» L2 = «elpi.tests.test_HOAS.69» U1 = «elpi.tests.test_HOAS.68» U2 = «elpi.tests.test_HOAS.69» Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.69 elpi.tests.test_HOAS.68} |= elpi.tests.test_HOAS.68 < elpi.tests.test_HOAS.69 elpi.tests.test_HOAS.68 <= elpi.tests.test_HOAS.69 ALGEBRAIC UNIVERSES: {elpi.tests.test_HOAS.69 elpi.tests.test_HOAS.68} FLEXIBLE UNIVERSES: elpi.tests.test_HOAS.69 elpi.tests.test_HOAS.68 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.71 elpi.tests.test_HOAS.70} |= elpi.tests.test_HOAS.70 < elpi.tests.test_HOAS.71 ALGEBRAIC UNIVERSES: {elpi.tests.test_HOAS.71} FLEXIBLE UNIVERSES: elpi.tests.test_HOAS.71 elpi.tests.test_HOAS.70 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Cannot enforce elpi.tests.test_HOAS.71 = elpi.tests.test_HOAS.70 because elpi.tests.test_HOAS.70 < elpi.tests.test_HOAS.71 Query assignments: E = Cannot enforce elpi.tests.test_HOAS.71 = elpi.tests.test_HOAS.70 because elpi.tests.test_HOAS.70 < elpi.tests.test_HOAS.71 GRF = indt «F» I1 = «elpi.tests.test_HOAS.70» I2 = «elpi.tests.test_HOAS.71» L1 = «elpi.tests.test_HOAS.70» L2 = «elpi.tests.test_HOAS.71» U1 = «elpi.tests.test_HOAS.70» U2 = «elpi.tests.test_HOAS.71» Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.71 elpi.tests.test_HOAS.70} |= elpi.tests.test_HOAS.70 < elpi.tests.test_HOAS.71 ALGEBRAIC UNIVERSES: {elpi.tests.test_HOAS.71} FLEXIBLE UNIVERSES: elpi.tests.test_HOAS.71 elpi.tests.test_HOAS.70 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: GR = indt «nat» Query assignments: GR = indt «F» I = «elpi.tests.test_HOAS.72» Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.72} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: elpi.tests.test_HOAS.72 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: GR = indt «F» pglobal (indt «F») «elpi.tests.test_HOAS.74» Query assignments: %spill1_173 = pglobal (indt «F») «elpi.tests.test_HOAS.74» GR = indt «F» I = «elpi.tests.test_HOAS.74» Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.74} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: elpi.tests.test_HOAS.74 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: «elpi.tests.test_HOAS.75 elpi.tests.test_HOAS.75» Query assignments: I = «elpi.tests.test_HOAS.75 elpi.tests.test_HOAS.75» U = «elpi.tests.test_HOAS.75» Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.75} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Universe constraints: ------------------ Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.77 elpi.tests.test_HOAS.76} |= elpi.tests.test_HOAS.76 < elpi.tests.test_HOAS.77 ALGEBRAIC UNIVERSES: {elpi.tests.test_HOAS.77 elpi.tests.test_HOAS.76} FLEXIBLE UNIVERSES: elpi.tests.test_HOAS.77 elpi.tests.test_HOAS.76 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.77 elpi.tests.test_HOAS.76} |= elpi.tests.test_HOAS.76 < elpi.tests.test_HOAS.77 ALGEBRAIC UNIVERSES: {elpi.tests.test_HOAS.77 elpi.tests.test_HOAS.76} FLEXIBLE UNIVERSES: elpi.tests.test_HOAS.77 elpi.tests.test_HOAS.76 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: Body = sort (typ «elpi.tests.test_HOAS.76») LX = «elpi.tests.test_HOAS.76» LY = «elpi.tests.test_HOAS.77» Type = sort (typ «elpi.tests.test_HOAS.77») UX = «elpi.tests.test_HOAS.76» UY = «elpi.tests.test_HOAS.77» Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.77 elpi.tests.test_HOAS.76} |= elpi.tests.test_HOAS.76 < elpi.tests.test_HOAS.77 ALGEBRAIC UNIVERSES: {elpi.tests.test_HOAS.77 elpi.tests.test_HOAS.76} FLEXIBLE UNIVERSES: elpi.tests.test_HOAS.77 elpi.tests.test_HOAS.76 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: poly@{u u0} : Type@{u0} (* u u0 |= u < u0 *) poly is universe polymorphic poly is transparent Expands to: Constant elpi.tests.test_HOAS.poly Declared in library elpi.tests.test_HOAS, line 621, characters 0-641 poly@{Set elpi.tests.test_HOAS.78} : Type@{elpi.tests.test_HOAS.78} (* {elpi.tests.test_HOAS.78} |= Set < elpi.tests.test_HOAS.78 *) Box not a defined object. sort (typ «Set») Query assignments: U = «elpi.tests.test_HOAS.79» Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.79} |= Set = elpi.tests.test_HOAS.79 ALGEBRAIC UNIVERSES: {elpi.tests.test_HOAS.79} FLEXIBLE UNIVERSES: elpi.tests.test_HOAS.79 := Set SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Inductive tree@{u} (A : Type@{u}) : Type@{max(Set,u)} := leaf : A -> tree@{u} A | node : A -> list (tree@{u} A) -> tree@{u} A. (* u |= *) Arguments tree A%_type_scope Arguments leaf A%_type_scope _ Arguments node A%_type_scope _ _%_list_scope parameter A explicit (sort (typ «elpi.tests.test_HOAS.88»)) c0 \ inductive tree tt (arity (sort (typ «elpi.tests.test_HOAS.89»))) c1 \ [constructor leaf (arity (prod `_:r` c0 c2 \ c1)), constructor node (arity (prod `_:r` c0 c2 \ prod `_:r` (app [global (indt «list»), c1]) c3 \ c1))] Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.93 elpi.tests.test_HOAS.92 elpi.tests.test_HOAS.91 elpi.tests.test_HOAS.90 elpi.tests.test_HOAS.89 elpi.tests.test_HOAS.88} |= elpi.tests.test_HOAS.88 < elpi.tests.test_HOAS.90 elpi.tests.test_HOAS.89 < elpi.tests.test_HOAS.91 Set <= elpi.tests.test_HOAS.89 Set <= elpi.tests.test_HOAS.93 elpi.tests.test_HOAS.88 <= elpi.tests.test_HOAS.89 elpi.tests.test_HOAS.88 <= elpi.tests.test_HOAS.92 elpi.tests.test_HOAS.88 <= elpi.tests.test_HOAS.93 elpi.tests.test_HOAS.89 <= elpi.tests.test_HOAS.92 elpi.tests.test_HOAS.89 <= elpi.tests.test_HOAS.93 elpi.tests.test_HOAS.92 <= elpi.tests.test_HOAS.89 elpi.tests.test_HOAS.93 <= elpi.tests.test_HOAS.89 ALGEBRAIC UNIVERSES: {elpi.tests.test_HOAS.88} FLEXIBLE UNIVERSES: elpi.tests.test_HOAS.88 SORTS: α20 |= Prop -> SProp Type -> α20 -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: D = parameter A explicit (sort (typ «M.tree.u0»)) c0 \ inductive tree tt (arity (sort (typ «M.tree.u1»))) c1 \ [constructor leaf (arity (prod `_:r` c0 c2 \ c1)), constructor node (arity (prod `_:r` c0 c2 \ prod `_:r` (app [global (indt «list»), c1]) c3 \ c1))] I = «tree» X36_ = X0 Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.93 elpi.tests.test_HOAS.92 elpi.tests.test_HOAS.91 elpi.tests.test_HOAS.90} |= M.tree.u0 < elpi.tests.test_HOAS.90 M.tree.u1 < elpi.tests.test_HOAS.91 Set <= M.tree.u1 Set <= elpi.tests.test_HOAS.93 M.tree.u0 <= M.tree.u1 M.tree.u0 <= elpi.tests.test_HOAS.92 M.tree.u0 <= elpi.tests.test_HOAS.93 M.tree.u1 <= elpi.tests.test_HOAS.92 M.tree.u1 <= elpi.tests.test_HOAS.93 elpi.tests.test_HOAS.92 <= M.tree.u1 elpi.tests.test_HOAS.93 <= M.tree.u1 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α20 α21 α22 α23 |= Prop -> SProp Type -> α20 -> α21 -> α22 -> α23 -> Prop -> SProp WEAK CONSTRAINTS: parameter A maximal (sort (typ «elpi.tests.test_HOAS.95»)) c0 \ parameter x explicit (prod `_:r` c0 c1 \ c0) c1 \ record c (sort prop) Build_c end-record «elpi.tests.test_HOAS.97» : «elpi.tests.test_HOAS.98» «elpi.tests.test_HOAS.99» : «elpi.tests.test_HOAS.99+1» «elpi.tests.test_HOAS.99» : «elpi.tests.test_HOAS.99+1» Query assignments: A = typ «elpi.tests.test_HOAS.98» B = typ «elpi.tests.test_HOAS.99+1» TX = «elpi.tests.test_HOAS.98» TY = «elpi.tests.test_HOAS.99+1» X = «elpi.tests.test_HOAS.97» Y = «elpi.tests.test_HOAS.99» Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.99 elpi.tests.test_HOAS.98 elpi.tests.test_HOAS.97} |= elpi.tests.test_HOAS.97 < elpi.tests.test_HOAS.98 ALGEBRAIC UNIVERSES: {elpi.tests.test_HOAS.99 elpi.tests.test_HOAS.97} FLEXIBLE UNIVERSES: elpi.tests.test_HOAS.99 elpi.tests.test_HOAS.97 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: elpi.tests.test_HOAS.myeven : nat -> bool elpi.tests.test_HOAS.myodd : nat -> bool elpi.tests.test_HOAS.f3_0 : nat -> nat elpi.tests.test_HOAS.f3_1 : nat -> nat elpi.tests.test_HOAS.f3_2 : nat -> nat copy ok for elpi.tests.test_HOAS.myeven copy ok for elpi.tests.test_HOAS.myodd copy ok for elpi.tests.test_HOAS.f3_0 copy ok for elpi.tests.test_HOAS.f3_1 copy ok for elpi.tests.test_HOAS.f3_2 fold-map ok for elpi.tests.test_HOAS.myeven Query assignments: X37_ = c0 \ c1 \ c2 \ c3 \ global (indt «bool») X38_ = c0 \ c1 \ c2 \ global (indt «nat») X39_ = c0 \ c1 \ c2 \ c3 \ global (indt «bool») X40_ = c0 \ c1 \ c2 \ global (indt «nat») Query assignments: X41_ = c0 \ c1 \ c2 \ c3 \ global (indt «bool») X42_ = c0 \ c1 \ c2 \ global (indt «nat») X43_ = c0 \ c1 \ c2 \ c3 \ global (indt «bool») X44_ = c0 \ c1 \ c2 \ global (indt «nat») Query assignments: X45_ = c0 \ c1 \ c2 \ c3 \ c4 \ global (indt «nat») X46_ = c0 \ c1 \ c2 \ c3 \ global (indt «nat») X47_ = c0 \ c1 \ c2 \ c3 \ c4 \ global (indt «nat») X48_ = c0 \ c1 \ c2 \ c3 \ global (indt «nat») X49_ = c0 \ c1 \ c2 \ c3 \ c4 \ global (indt «nat») X50_ = c0 \ c1 \ c2 \ c3 \ global (indt «nat») Query assignments: X51_ = c0 \ c1 \ c2 \ c3 \ c4 \ global (indt «nat») X52_ = c0 \ c1 \ c2 \ c3 \ global (indt «nat») X53_ = c0 \ c1 \ c2 \ c3 \ c4 \ global (indt «nat») X54_ = c0 \ c1 \ c2 \ c3 \ global (indt «nat») X55_ = c0 \ c1 \ c2 \ c3 \ c4 \ global (indt «nat») X56_ = c0 \ c1 \ c2 \ c3 \ global (indt «nat») Query assignments: X57_ = c0 \ c1 \ c2 \ c3 \ c4 \ global (indt «nat») X58_ = c0 \ c1 \ c2 \ c3 \ global (indt «nat») X59_ = c0 \ c1 \ c2 \ c3 \ c4 \ global (indt «nat») X60_ = c0 \ c1 \ c2 \ c3 \ global (indt «nat») X61_ = c0 \ c1 \ c2 \ c3 \ c4 \ global (indt «nat») X62_ = c0 \ c1 \ c2 \ c3 \ global (indt «nat») fun x : nat => fix _elpi_renamed_x_1 (n : nat) : nat := match n as _elpi_renamed_n_4 return ?e0 with | 0 => 0 | S n' => y n' end with y (n : nat) : nat := match n as _elpi_renamed_n_4 return ?e3 with | 0 => 1 | S n' => _elpi_renamed_x_1 n' end for _elpi_renamed_x_1 Query assignments: %spill1_178 = fun x : nat => fix _elpi_renamed_x_1 (n : nat) : nat := match n as _elpi_renamed_n_4 return ?e0 with | 0 => 0 | S n' => y n' end with y (n : nat) : nat := match n as _elpi_renamed_n_4 return ?e3 with | 0 => 1 | S n' => _elpi_renamed_x_1 n' end for _elpi_renamed_x_1 T = fun `x:r` (global (indt «nat»)) c0 \ mfix 0 0 (mfix-ty `_elpi_renamed_x_1:r` 0 (prod `n:r` (global (indt «nat»)) c1 \ global (indt «nat»)) c1 \ mfix-ty `y:r` 0 (prod `n:r` (global (indt «nat»)) c2 \ global (indt «nat»)) c2 \ mfix-bo [fun `n:r` (global (indt «nat»)) c3 \ match c3 (fun `_elpi_renamed_n_4:r` (global (indt «nat»)) c4 \ global (indt «nat»)) [global (indc «O»), fun `n':r` (X0 c0 c1 c2 c3) c4 \ app [c2, c4]], fun `n:r` (global (indt «nat»)) c3 \ match c3 (fun `_elpi_renamed_n_4:r` (global (indt «nat»)) c4 \ global (indt «nat»)) [app [global (indc «S»), global (indc «O»)], fun `n':r` (X1 c0 c1 c2 c3) c4 \ app [c1, c4]]]) X63_ = c0 \ c1 \ c2 \ c3 \ c4 \ global (indt «nat») X64_ = c0 \ c1 \ c2 \ c3 \ X0 c0 c1 c2 c3 X65_ = c0 \ c1 \ c2 \ c3 \ c4 \ global (indt «nat») X66_ = c0 \ c1 \ c2 \ c3 \ X1 c0 c1 c2 c3 Syntactic constraints: {c0 c1 c2 c3} : decl c3 `n:r` (global (indt «nat»)), decl c2 `y:r` (prod `n:r` (global (indt «nat»)) c4 \ global (indt «nat»)), decl c1 `_elpi_renamed_x_1:r` (prod `n:r` (global (indt «nat»)) c4 \ global (indt «nat»)), decl c0 `x:r` (global (indt «nat»)) ?- evar (X0 c0 c1 c2 c3) (sort (typ «elpi.tests.test_HOAS.121»)) (X0 c0 c1 c2 c3) /* suspended on X0 */ {c0 c1 c2 c3} : decl c3 `n:r` (global (indt «nat»)), decl c2 `y:r` (prod `n:r` (global (indt «nat»)) c4 \ global (indt «nat»)), decl c1 `_elpi_renamed_x_1:r` (prod `n:r` (global (indt «nat»)) c4 \ global (indt «nat»)), decl c0 `x:r` (global (indt «nat»)) ?- evar (X1 c0 c1 c2 c3) (sort (typ «elpi.tests.test_HOAS.123»)) (X1 c0 c1 c2 c3) /* suspended on X1 */ Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.125 elpi.tests.test_HOAS.124 elpi.tests.test_HOAS.123 elpi.tests.test_HOAS.122 elpi.tests.test_HOAS.121 elpi.tests.test_HOAS.120} |= Set <= elpi.tests.test_HOAS.124 Set <= elpi.tests.test_HOAS.125 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: elpi.tests.test_HOAS.125 elpi.tests.test_HOAS.124 SORTS: α78 α79 α80 α81 α82 α83 α84 >= Prop α85 >= Prop |= Prop -> SProp Type -> α78 -> α79 -> α80 -> α81 -> α82 -> α83 -> α84 -> α85 -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: D = parameter A explicit (sort (typ «i1.u0»)) c0 \ parameter B explicit (sort (typ «i1.u1»)) c1 \ minductive i1 tt (arity (prod `_:r` (prod `x:r` (global (indt «nat»)) c2 \ app [global (indt «eq»), global (indt «nat»), app [global (const «Nat.add»), c2, app [global (indc «S»), global (indc «O»)]], c2]) c2 \ sort prop)) c2 \ minductive i2 tt (arity (sort (typ «i1.u2»))) c3 \ mblock [[constructor K11 (arity (prod `p:r` (prod `x:r` (global (indt «nat»)) c4 \ app [global (indt «eq»), global (indt «nat»), app [global (const «Nat.add»), c4, app [global (indc «S»), global (indc «O»)]], c4]) c4 \ prod `x:r` (global (indt «bool»)) c5 \ prod `_:r` (app [global (indt «eq»), global (indt «bool»), c5, c5]) c6 \ prod `_:r` c3 c7 \ prod `_:r` (app [c2, c4]) c8 \ app [c2, c4]))], [constructor K21 (arity c3)]] D2 = parameter A explicit (sort (typ «i1.u0»)) c0 \ parameter B explicit (sort (typ «i1.u1»)) c1 \ minductive i1 tt (arity (prod `_:r` (prod `x:r` (global (indt «nat»)) c2 \ app [global (indt «eq»), global (indt «nat»), app [global (const «Nat.add»), c2, app [global (indc «S»), global (indc «O»)]], c2]) c2 \ sort prop)) c2 \ minductive i2 tt (arity (sort (typ «i1.u2»))) c3 \ mblock [[constructor K11 (arity (prod `p:r` (prod `x:r` (global (indt «nat»)) c4 \ app [global (indt «eq»), global (indt «nat»), app [global (const «Nat.add»), c4, app [global (indc «S»), global (indc «O»)]], c4]) c4 \ prod `x:r` (global (indt «bool»)) c5 \ prod `_:r` (app [global (indt «eq»), global (indt «bool»), c5, c5]) c6 \ prod `_:r` c3 c7 \ prod `_:r` (app [c2, c4]) c8 \ app [c2, c4]))], [constructor K21 (arity c3)]] I = «i1» I2 = «i2» KNL = [[«K11»], [«K11»]] KTL = [[prod `A:r` (sort (typ «i1.u0»)) c0 \ prod `B:r` (sort (typ «i1.u1»)) c1 \ prod `p:r` (prod `x:r` (global (indt «nat»)) c2 \ app [global (indt «eq»), global (indt «nat»), app [global (const «Nat.add»), c2, app [global (indc «S»), global (indc «O»)]], c2]) c2 \ prod `x:r` (global (indt «bool»)) c3 \ prod `_:r` (app [global (indt «eq»), global (indt «bool»), c3, c3]) c4 \ prod `_:r` (app [global (indt «i2»), c0, c1]) c5 \ prod `_:r` (app [global (indt «i1»), c0, c1, c2]) c6 \ app [global (indt «i1»), c0, c1, c2]], [prod `A:r` (sort (typ «i1.u0»)) c0 \ prod `B:r` (sort (typ «i1.u1»)) c1 \ app [global (indt «i2»), c0, c1]]] NP = 2 NUP = 2 SL = [prod `A:r` (sort (typ «i1.u0»)) c0 \ prod `B:r` (sort (typ «i1.u1»)) c1 \ prod `_:r` (prod `x:r` (global (indt «nat»)) c2 \ app [global (indt «eq»), global (indt «nat»), app [global (const «Nat.add»), c2, app [global (indc «S»), global (indc «O»)]], c2]) c2 \ sort prop, prod `A:r` (sort (typ «i1.u0»)) c0 \ prod `B:r` (sort (typ «i1.u1»)) c1 \ sort (typ «i1.u2»)] Universe constraints: UNIVERSES: {elpi.tests.test_HOAS.137 elpi.tests.test_HOAS.136 elpi.tests.test_HOAS.135 elpi.tests.test_HOAS.134 elpi.tests.test_HOAS.133} |= Set < elpi.tests.test_HOAS.135 i1.u0 < elpi.tests.test_HOAS.133 i1.u1 < elpi.tests.test_HOAS.134 i1.u2 < elpi.tests.test_HOAS.136 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α91 α92 α93 α94 α95 >= Prop |= Prop -> SProp Type -> α91 -> α92 -> α93 -> α94 -> α95 -> Prop -> SProp WEAK CONSTRAINTS: File "./tests/test_HOAS.v", line 127, characters 0-38: Warning: Use of “Require” inside a module is fragile. It is not recommended to use this functionality in finished proof scripts. [require-in-module,fragile,default] File "./tests/test_HOAS.v", line 130, characters 0-38: Warning: Use of “Require” inside a module is fragile. It is not recommended to use this functionality in finished proof scripts. [require-in-module,fragile,default] File "./tests/test_HOAS.v", line 658, characters 0-100: Warning: tree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./tests/test_HOAS.v", line 658, characters 0-100: Warning: tree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./tests/test_HOAS.v", line 658, characters 0-100: Warning: tree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./tests/test_HOAS.v", line 658, characters 0-100: Warning: tree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./tests/test_HOAS.v", line 658, characters 0-100: Warning: tree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./tests/test_HOAS.v", line 658, characters 0-100: Warning: tree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./tests/test_HOAS.v", line 658, characters 0-100: Warning: tree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./tests/test_HOAS.v", line 658, characters 0-100: Warning: tree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./tests/test_HOAS.v", line 658, characters 0-100: Warning: tree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./tests/test_HOAS.v", line 658, characters 0-100: Warning: tree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./tests/test_HOAS.v", line 658, characters 0-100: Warning: tree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./tests/test_HOAS.v", line 658, characters 0-100: Warning: tree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./tests/test_HOAS.v", line 663, characters 0-309: Warning: tree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./tests/test_HOAS.v", line 663, characters 0-309: Warning: tree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./tests/test_HOAS.v", line 663, characters 0-309: Warning: tree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./tests/test_HOAS.v", line 663, characters 0-309: Warning: tree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./tests/test_HOAS.v", line 663, characters 0-309: Warning: tree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./tests/test_HOAS.v", line 663, characters 0-309: Warning: tree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./tests/test_HOAS.v", line 663, characters 0-309: Warning: tree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./tests/test_HOAS.v", line 663, characters 0-309: Warning: tree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./tests/test_HOAS.v", line 663, characters 0-309: Warning: tree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./tests/test_HOAS.v", line 663, characters 0-309: Warning: tree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./tests/test_HOAS.v", line 663, characters 0-309: Warning: tree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./tests/test_HOAS.v", line 663, characters 0-309: Warning: tree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] lib.foo : True lib.foo : True d1 : nat d2 : nat i1 : Prop i2 : Prop k1 : i1 k2 : i2 r1 : Set r2 : Type f1 : r1 -> nat f2 : r2 -> nat Query assignments: F = «f» N = `x:i` Ty = prod `x:i` (global (indt «foo»)) c0 \ global (indt «foo») fun H : (* α1 *) nat => H Query assignments: %spill1_170 = fun H : (* α1 *) nat => H B = fun `_:α1` (global (indt «nat»)) c0 \ c0 N = `_:α1` xxx = fun H : (* Relevant *) nat => H : nat -> nat Arguments xxx _%_nat_scope fun H : (* Relevant *) nat => K H Query assignments: %spill1_171 = fun H : (* Relevant *) nat => K H B = fun `_:α2` (global (indt «nat»)) c0 \ app [global (indc «K»), c0] N = `_:α2` fun H : (* Irrelevant *) foo => H Query assignments: %spill1_172 = fun H : (* Irrelevant *) foo => H B = fun `_:α3` (global (indt «foo»)) c0 \ c0 N = `_:α3` Query assignments: B = fix `add:r` 0 (prod `n:r` (global (indt «nat»)) c0 \ prod `m:r` (global (indt «nat»)) c1 \ global (indt «nat»)) c0 \ fun `n:r` (global (indt «nat»)) c1 \ fun `m:r` (global (indt «nat»)) c2 \ match c1 (fun `n:r` (global (indt «nat»)) c3 \ global (indt «nat»)) [c2, fun `p:r` (global (indt «nat»)) c3 \ app [global (indc «S»), app [c0, c3, c2]]] GR = «Nat.add» RB = fix `add:r` 0 (prod `n:r` (global (indt «nat»)) c0 \ prod `m:r` (global (indt «nat»)) c1 \ global (indt «nat»)) c0 \ fun `n:r` (global (indt «nat»)) c1 \ fun `m:r` (global (indt «nat»)) c2 \ match c1 (fun `n:r` (global (indt «nat»)) c3 \ global (indt «nat»)) [c2, fun `p:r` (global (indt «nat»)) c3 \ app [global (indc «S»), app [c0, c3, c2]]] T = prod `n:r` (global (indt «nat»)) c0 \ prod `m:r` (global (indt «nat»)) c1 \ global (indt «nat») TY = prod `n:r` (global (indt «nat»)) c0 \ prod `m:r` (global (indt «nat»)) c1 \ global (indt «nat») Syntactic constraints: {c0 c1 c2 c3} : decl c3 `n:r` (global (indt «nat»)), decl c2 `m:r` (global (indt «nat»)), decl c1 `n:r` (global (indt «nat»)), decl c0 `add:r` (prod `n:r` (global (indt «nat»)) c1 \ prod `m:r` (global (indt «nat»)) c2 \ global (indt «nat»)) ?- evar (X0 c0 c1 c2 c3) (sort X1) (X2 c0 c1 c2 c3) /* suspended on X0, X2 */ Universe constraints: UNIVERSES: {elpi.tests.test_elaborator.55 elpi.tests.test_elaborator.54 elpi.tests.test_elaborator.53 elpi.tests.test_elaborator.52 elpi.tests.test_elaborator.51 elpi.tests.test_elaborator.50 elpi.tests.test_elaborator.49 elpi.tests.test_elaborator.48 elpi.tests.test_elaborator.47 elpi.tests.test_elaborator.46 elpi.tests.test_elaborator.45 elpi.tests.test_elaborator.44 elpi.tests.test_elaborator.43 elpi.tests.test_elaborator.42 elpi.tests.test_elaborator.41 elpi.tests.test_elaborator.40 elpi.tests.test_elaborator.39 elpi.tests.test_elaborator.38 elpi.tests.test_elaborator.37 elpi.tests.test_elaborator.36 elpi.tests.test_elaborator.35 elpi.tests.test_elaborator.34 elpi.tests.test_elaborator.33 elpi.tests.test_elaborator.32 elpi.tests.test_elaborator.31 elpi.tests.test_elaborator.30 elpi.tests.test_elaborator.29 elpi.tests.test_elaborator.28 elpi.tests.test_elaborator.27 elpi.tests.test_elaborator.26 elpi.tests.test_elaborator.25 elpi.tests.test_elaborator.24 elpi.tests.test_elaborator.23 elpi.tests.test_elaborator.22 elpi.tests.test_elaborator.21} |= Set <= elpi.tests.test_elaborator.21 Set <= elpi.tests.test_elaborator.22 Set <= elpi.tests.test_elaborator.23 Set <= elpi.tests.test_elaborator.32 Set <= elpi.tests.test_elaborator.38 Set <= elpi.tests.test_elaborator.44 Set <= elpi.tests.test_elaborator.50 elpi.tests.test_elaborator.21 <= elpi.tests.test_elaborator.29 elpi.tests.test_elaborator.22 <= elpi.tests.test_elaborator.25 elpi.tests.test_elaborator.23 <= elpi.tests.test_elaborator.25 elpi.tests.test_elaborator.24 <= elpi.tests.test_elaborator.25 elpi.tests.test_elaborator.26 <= elpi.tests.test_elaborator.29 elpi.tests.test_elaborator.27 <= elpi.tests.test_elaborator.26 elpi.tests.test_elaborator.28 <= elpi.tests.test_elaborator.29 elpi.tests.test_elaborator.31 <= elpi.tests.test_elaborator.30 elpi.tests.test_elaborator.32 <= elpi.tests.test_elaborator.35 elpi.tests.test_elaborator.33 <= elpi.tests.test_elaborator.35 elpi.tests.test_elaborator.34 <= elpi.tests.test_elaborator.35 elpi.tests.test_elaborator.37 <= elpi.tests.test_elaborator.36 elpi.tests.test_elaborator.38 <= elpi.tests.test_elaborator.41 elpi.tests.test_elaborator.39 <= elpi.tests.test_elaborator.41 elpi.tests.test_elaborator.40 <= elpi.tests.test_elaborator.41 elpi.tests.test_elaborator.43 <= elpi.tests.test_elaborator.42 elpi.tests.test_elaborator.44 <= elpi.tests.test_elaborator.47 elpi.tests.test_elaborator.45 <= elpi.tests.test_elaborator.47 elpi.tests.test_elaborator.46 <= elpi.tests.test_elaborator.47 elpi.tests.test_elaborator.49 <= elpi.tests.test_elaborator.48 elpi.tests.test_elaborator.50 <= elpi.tests.test_elaborator.53 elpi.tests.test_elaborator.51 <= elpi.tests.test_elaborator.53 elpi.tests.test_elaborator.52 <= elpi.tests.test_elaborator.53 elpi.tests.test_elaborator.55 <= elpi.tests.test_elaborator.54 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: B = fun `n:r` (global (indt «nat»)) c0 \ app [global (const «nat_ind»), fun `n:r` (global (indt «nat»)) c1 \ app [global (indt «eq»), global (indt «nat»), c1, app [global (const «Nat.add»), c1, global (indc «O»)]], let `_:r` (app [global (indt «eq»), global (indt «nat»), global (indc «O»), app [global (const «Nat.add»), global (indc «O»), global (indc «O»)]]) (app [global (indc «eq_refl»), global (indt «nat»), global (indc «O»)]) c1 \ c1, fun `n:r` (global (indt «nat»)) c1 \ fun `IHn:r` (app [global (indt «eq»), global (indt «nat»), c1, app [global (const «Nat.add»), c1, global (indc «O»)]]) c2 \ let `_:r` (app [global (indt «eq»), global (indt «nat»), app [global (indc «S»), c1], app [global (const «Nat.add»), app [global (indc «S»), c1], global (indc «O»)]]) (app [global (const «f_equal_nat»), global (indt «nat»), global (indc «S»), c1, app [global (const «Nat.add»), c1, global (indc «O»)], c2]) c3 \ c3, c0] GR = «plus_n_O» RB = fun `n:r` (global (indt «nat»)) c0 \ app [global (const «nat_ind»), fun `n:r` (global (indt «nat»)) c1 \ app [global (indt «eq»), global (indt «nat»), c1, app [global (const «Nat.add»), c1, global (indc «O»)]], let `_:r` (app [global (indt «eq»), global (indt «nat»), global (indc «O»), app [global (const «Nat.add»), global (indc «O»), global (indc «O»)]]) (app [global (indc «eq_refl»), global (indt «nat»), global (indc «O»)]) c1 \ c1, fun `n:r` (global (indt «nat»)) c1 \ fun `IHn:r` (app [global (indt «eq»), global (indt «nat»), c1, app [global (const «Nat.add»), c1, global (indc «O»)]]) c2 \ let `_:r` (app [global (indt «eq»), global (indt «nat»), app [global (indc «S»), c1], app [global (const «Nat.add»), app [global (indc «S»), c1], global (indc «O»)]]) (app [global (const «f_equal_nat»), global (indt «nat»), global (indc «S»), c1, app [global (const «Nat.add»), c1, global (indc «O»)], c2]) c3 \ c3, c0] TY = prod `n:r` (global (indt «nat»)) c0 \ app [global (indt «eq»), global (indt «nat»), c0, app [global (const «Nat.add»), c0, global (indc «O»)]] Universe constraints: UNIVERSES: {elpi.tests.test_elaborator.78 elpi.tests.test_elaborator.77 elpi.tests.test_elaborator.76 elpi.tests.test_elaborator.75 elpi.tests.test_elaborator.74 elpi.tests.test_elaborator.73 elpi.tests.test_elaborator.72 elpi.tests.test_elaborator.71 elpi.tests.test_elaborator.70 elpi.tests.test_elaborator.69 elpi.tests.test_elaborator.68 elpi.tests.test_elaborator.67 elpi.tests.test_elaborator.66 elpi.tests.test_elaborator.65 elpi.tests.test_elaborator.64 elpi.tests.test_elaborator.63 elpi.tests.test_elaborator.62 elpi.tests.test_elaborator.61 elpi.tests.test_elaborator.60 elpi.tests.test_elaborator.59 elpi.tests.test_elaborator.58 elpi.tests.test_elaborator.57 elpi.tests.test_elaborator.56} |= Set <= eq.u0 Set <= Logic_lemmas.equality.u1 Set <= elpi.tests.test_elaborator.56 Set <= elpi.tests.test_elaborator.62 Set <= elpi.tests.test_elaborator.68 elpi.tests.test_elaborator.56 <= elpi.tests.test_elaborator.59 elpi.tests.test_elaborator.57 <= elpi.tests.test_elaborator.59 elpi.tests.test_elaborator.58 <= elpi.tests.test_elaborator.59 elpi.tests.test_elaborator.61 <= elpi.tests.test_elaborator.60 elpi.tests.test_elaborator.62 <= elpi.tests.test_elaborator.65 elpi.tests.test_elaborator.63 <= elpi.tests.test_elaborator.65 elpi.tests.test_elaborator.64 <= elpi.tests.test_elaborator.65 elpi.tests.test_elaborator.67 <= elpi.tests.test_elaborator.66 elpi.tests.test_elaborator.68 <= elpi.tests.test_elaborator.71 elpi.tests.test_elaborator.69 <= elpi.tests.test_elaborator.71 elpi.tests.test_elaborator.70 <= elpi.tests.test_elaborator.71 elpi.tests.test_elaborator.73 <= elpi.tests.test_elaborator.72 elpi.tests.test_elaborator.74 <= elpi.tests.test_elaborator.76 elpi.tests.test_elaborator.75 <= elpi.tests.test_elaborator.76 elpi.tests.test_elaborator.78 <= elpi.tests.test_elaborator.77 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: CHR: Uniqueness of typing of frozen--1072 + [] <-> [] [c0] |> [decl c0 `x:r` (uvar frozen--1072 [])] |- frozen--1072 [] : sort (uvar frozen--1071 []) [] |> [] |- frozen--1072 [] : sort (uvar frozen--1074 []) [] |> [] |- std.once (unify-eq (sort (uvar frozen--1071 [])) (sort (uvar frozen--1074 []))) Query assignments: R = fun `x:r` X0 c0 \ c0 T = prod `x:r` X0 c0 \ X0 X1_ = X1 Syntactic constraints: {c0} : decl c0 `x:r` X0 ?- evar X2 (sort (typ «elpi.tests.test_elaborator.86»)) X0 /* suspended on X2, X0 */ Universe constraints: UNIVERSES: {elpi.tests.test_elaborator.86 elpi.tests.test_elaborator.85 elpi.tests.test_elaborator.84 elpi.tests.test_elaborator.83 elpi.tests.test_elaborator.82 elpi.tests.test_elaborator.81 elpi.tests.test_elaborator.80 elpi.tests.test_elaborator.79} |= elpi.tests.test_elaborator.79 <= elpi.tests.test_elaborator.82 elpi.tests.test_elaborator.80 <= elpi.tests.test_elaborator.82 elpi.tests.test_elaborator.81 <= elpi.tests.test_elaborator.82 elpi.tests.test_elaborator.84 <= elpi.tests.test_elaborator.83 elpi.tests.test_elaborator.86 <= elpi.tests.test_elaborator.85 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: R = fun `x:r` (global (indt «nat»)) c0 \ app [global (const «Nat.add»), c0, global (indc «O»)] T = prod `x:r` (global (indt «nat»)) c0 \ global (indt «nat») X2_ = X0 Universe constraints: UNIVERSES: {elpi.tests.test_elaborator.92 elpi.tests.test_elaborator.91 elpi.tests.test_elaborator.90 elpi.tests.test_elaborator.89 elpi.tests.test_elaborator.88 elpi.tests.test_elaborator.87} |= elpi.tests.test_elaborator.87 <= elpi.tests.test_elaborator.90 elpi.tests.test_elaborator.88 <= elpi.tests.test_elaborator.90 elpi.tests.test_elaborator.89 <= elpi.tests.test_elaborator.90 elpi.tests.test_elaborator.92 <= elpi.tests.test_elaborator.91 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: sort (typ X0) Query assignments: X3_ = X0 Query assignments: S = sort X0 T = sort (typ «elpi.tests.test_elaborator.93») X4_ = «elpi.tests.test_elaborator.93» Universe constraints: UNIVERSES: {elpi.tests.test_elaborator.94 elpi.tests.test_elaborator.93} |= elpi.tests.test_elaborator.93 < elpi.tests.test_elaborator.94 ALGEBRAIC UNIVERSES: {elpi.tests.test_elaborator.93} FLEXIBLE UNIVERSES: elpi.tests.test_elaborator.93 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: S = sort X0 T = sort (typ «elpi.tests.test_elaborator.95») TW = sort (typ «elpi.tests.test_elaborator.95») W = sort (typ «elpi.tests.test_elaborator.97») X5_ = «elpi.tests.test_elaborator.95» X6_ = «elpi.tests.test_elaborator.97» Universe constraints: UNIVERSES: {elpi.tests.test_elaborator.97 elpi.tests.test_elaborator.96 elpi.tests.test_elaborator.95} |= elpi.tests.test_elaborator.95 < elpi.tests.test_elaborator.96 elpi.tests.test_elaborator.97 < elpi.tests.test_elaborator.95 ALGEBRAIC UNIVERSES: {elpi.tests.test_elaborator.97 elpi.tests.test_elaborator.95} FLEXIBLE UNIVERSES: elpi.tests.test_elaborator.97 elpi.tests.test_elaborator.95 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Debug: Cannot enforce elpi.tests.test_elaborator.98 < elpi.tests.test_elaborator.98 because elpi.tests.test_elaborator.98 = elpi.tests.test_elaborator.98 Query assignments: X = sort (typ X0) X7_ = X0 Query assignments: X = sort (typ «elpi.tests.test_elaborator.99») Y = sort (typ «elpi.tests.test_elaborator.100») Universe constraints: UNIVERSES: {elpi.tests.test_elaborator.100 elpi.tests.test_elaborator.99} |= elpi.tests.test_elaborator.99 < elpi.tests.test_elaborator.100 ALGEBRAIC UNIVERSES: {elpi.tests.test_elaborator.100 elpi.tests.test_elaborator.99} FLEXIBLE UNIVERSES: elpi.tests.test_elaborator.100 elpi.tests.test_elaborator.99 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: D = X0 R = app [global (indc «ex_intro»), X0, fun `hd_beta_auto:r` X0 c0 \ app [global (indt «eq»), global (indt «nat»), global (indc «O»), global (indc «O»)], X1, global (const «p»)] TY = app [global (indt «ex»), X0, fun `hd_beta_auto:r` X0 c0 \ app [global (indt «eq»), global (indt «nat»), global (indc «O»), global (indc «O»)]] X10_ = X2 X11_ = X3 X9_ = X4 Syntactic constraints: evar X4 (sort (typ «ex.u0»)) X0 /* suspended on X4, X0 */ evar X1 X0 X5 /* suspended on X1, X5 */ evar X3 X0 X1 /* suspended on X3, X1 */ Query assignments: R = app [global (indc «ex_intro»), global (indt «nat»), fun `hd_beta_auto:r` (global (indt «nat»)) c0 \ app [global (indt «eq»), global (indt «nat»), c0, c0], global (indc «O»), global (const «p»)] TY = app [global (indt «ex»), global (indt «nat»), fun `hd_beta_auto:r` (global (indt «nat»)) c0 \ app [global (indt «eq»), global (indt «nat»), c0, c0]] X12_ = X0 X13_ = X1 Query assignments: R = app [global (indc «ex_intro»), global (indt «nat»), fun `hd_beta_auto:r` (global (indt «nat»)) c0 \ app [global (indt «eq»), global (indt «nat»), c0, global (indc «O»)], global (indc «O»), global (const «p»)] TY = app [global (indt «ex»), global (indt «nat»), fun `n:r` (global (indt «nat»)) c0 \ app [global (indt «eq»), global (indt «nat»), c0, global (indc «O»)]] X14_ = X0 X15_ = c0 \ X1 c0 X16_ = X2 X17_ = X3 Universe constraints: UNIVERSES: {elpi.tests.test_elaborator.107 elpi.tests.test_elaborator.106 elpi.tests.test_elaborator.105 elpi.tests.test_elaborator.104 elpi.tests.test_elaborator.103 elpi.tests.test_elaborator.102} |= Set <= elpi.tests.test_elaborator.102 elpi.tests.test_elaborator.102 <= elpi.tests.test_elaborator.105 elpi.tests.test_elaborator.103 <= elpi.tests.test_elaborator.105 elpi.tests.test_elaborator.104 <= elpi.tests.test_elaborator.105 elpi.tests.test_elaborator.107 <= elpi.tests.test_elaborator.106 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: R = app [global (indc «ex_intro»), global (indt «nat»), fun `n:r` (global (indt «nat»)) c0 \ app [global (indt «eq»), global (indt «nat»), c0, global (indc «O»)], global (indc «O»), global (const «p»)] TY = app [global (indt «ex»), global (indt «nat»), fun `n:r` (global (indt «nat»)) c0 \ app [global (indt «eq»), global (indt «nat»), c0, global (indc «O»)]] X18_ = X0 X19_ = c0 \ X1 c0 X20_ = X2 X21_ = X3 Universe constraints: UNIVERSES: {elpi.tests.test_elaborator.113 elpi.tests.test_elaborator.112 elpi.tests.test_elaborator.111 elpi.tests.test_elaborator.110 elpi.tests.test_elaborator.109 elpi.tests.test_elaborator.108} |= Set <= elpi.tests.test_elaborator.108 elpi.tests.test_elaborator.108 <= elpi.tests.test_elaborator.111 elpi.tests.test_elaborator.109 <= elpi.tests.test_elaborator.111 elpi.tests.test_elaborator.110 <= elpi.tests.test_elaborator.111 elpi.tests.test_elaborator.113 <= elpi.tests.test_elaborator.112 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: A = tt B = 0 C = 0 D = sort (typ «Set») E = [«true», «false»] F = [global (indt «bool»), global (indt «bool»)] GR = «bool» Query assignments: F = app [global (const «nat_of_bool»), global (indc «true»)] c0 \ app [global (const «nat_of_bool»), c0] Query assignments: Res = app [global (const «map»), global (indt «bool»), global (indt «nat»), fun `x:r` (global (indt «bool»)) c0 \ app [global (const «nat_of_bool»), c0], app [global (indc «cons»), global (indt «bool»), global (indc «true»), app [global (indc «nil»), global (indt «bool»)]]] X22_ = X0 X23_ = X1 Query assignments: Res = app [global (const «Z_of_nat»), app [global (const «nat_of_bool»), global (indc «true»)]] c0 \ app [global (const «Z_of_nat»), app [global (const «nat_of_bool»), c0]] Query assignments: Res = app [global (const «map»), global (indt «bool»), global (const «Z»), fun `x:r` (global (indt «bool»)) c0 \ app [global (const «Z_of_nat»), app [global (const «nat_of_bool»), c0]], app [global (indc «cons»), global (indt «bool»), global (indc «true»), app [global (indc «nil»), global (indt «bool»)]]] X24_ = X0 X25_ = X1 Query assignments: R = prod `r:r` (global (const «ring»)) c0 \ prod `x:r` (app [global (const «carr»), c0]) c1 \ app [global (indt «eq»), app [global (const «carr»), c0], c1, c1] T = sort X0 X26_ = c0 \ c1 \ X1 c0 c1 Universe constraints: UNIVERSES: {elpi.tests.test_elaborator.131 elpi.tests.test_elaborator.130 elpi.tests.test_elaborator.129 elpi.tests.test_elaborator.128 elpi.tests.test_elaborator.127 elpi.tests.test_elaborator.126 elpi.tests.test_elaborator.125 elpi.tests.test_elaborator.123} |= ring.u0 <= elpi.tests.test_elaborator.123 elpi.tests.test_elaborator.123 <= elpi.tests.test_elaborator.131 elpi.tests.test_elaborator.126 <= elpi.tests.test_elaborator.127 elpi.tests.test_elaborator.128 <= elpi.tests.test_elaborator.131 elpi.tests.test_elaborator.129 <= elpi.tests.test_elaborator.128 elpi.tests.test_elaborator.130 <= elpi.tests.test_elaborator.131 ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: T = global (const «int») X = primitive (uint63 99) Query assignments: T = global (const «float») X = primitive (float64 993000) Query assignments: X27_ = X0 z : nat it = elpi_subproof : True it : True it is not universe polymorphic it is transparent Expands to: Constant elpi.tests.test_ltac.it Declared in library elpi.tests.test_ltac, line 49, characters 0-15 elpi_subproof = I : True elpi_subproof : True elpi_subproof is not universe polymorphic elpi_subproof is opaque Expands to: Constant elpi.tests.test_ltac.elpi_subproof Declared in library elpi.tests.test_ltac, line 49, characters 0-15 Closed under the global context app [global (indt «eq»), global (indt «nat»), app [global (const «map»), fun `x:r` (global (indt «nat»)) c1 \ app [global (const «Nat.add»), c1, app [global (indc «S»), global (indc «O»)]]], c0] app [global (indt «eq»), global (indt «nat»), app [global (const «map»), fun `x:r` (global (indt «nat»)) c1 \ app [global (const «Nat.add»), c1, app [global (indc «S»), global (indc «O»)]]], c0] app [global (indt «eq»), global (indt «nat»), app [global (const «map»), fun `x0:r` (global (indt «nat»)) c1 \ app [global (const «Nat.add»), c1, app [global (indc «S»), global (indc «O»)]]], c0] goal [decl c1 `H0:r` (global (indt «False»)), decl c0 `H:r` (global (indt «True»))] (X0 c0 c1) (app [global (indt «and»), global (indt «True»), global (indt «False»)]) (X1 c0 c1) [] [goal [decl c1 `H0:r` (global (indt «False»)), decl c0 `H:r` (global (indt «True»))] (X2 c2 c3) (global (indt «True»)) (X3 c2 c3) [], goal [decl c1 `H0:r` (global (indt «False»)), decl c0 `H:r` (global (indt «True»))] (X4 c2 c3) (global (indt «False»)) (X5 c2 c3) []] goal [] X0 (app [global (indt «ex»), prod `_:r` (global (indt «nat»)) c0 \ global (indt «nat»), fun `f:r` (prod `_:r` (global (indt «nat»)) c0 \ global (indt «nat»)) c0 \ prod `y:r` (global (indt «nat»)) c1 \ app [global (indt «eq»), global (indt «nat»), c1, app [c0, app [global (indc «S»), global (indc «O»)]]]]) X1 [] goal [] X0 (app [global (indt «ex»), prod `_:r` (global (indt «nat»)) c0 \ global (indt «nat»), fun `f:r` (prod `_:r` (global (indt «nat»)) c0 \ global (indt «nat»)) c0 \ prod `y:r` (global (indt «nat»)) c1 \ app [global (indt «eq»), global (indt «nat»), c1, app [c0, app [global (indc «S»), global (indc «O»)]]]]) X1 [] [goal [] X2 (app [fun `f:r` (prod `_:r` (global (indt «nat»)) c0 \ global (indt «nat»)) c0 \ prod `y:r` (global (indt «nat»)) c1 \ app [global (indt «eq»), global (indt «nat»), c1, app [c0, app [global (indc «S»), global (indc «O»)]]], fun `w:r` (global (indt «nat»)) c0 \ X3 c0]) X4 []] 1 goal w : nat ============================ nat Existential 1 = ?Goal : [ |- 0 = 0] (only printing) Existential 2 = ?Goal0 : [ |- 1 = 1] (only printing) Debug: [elpi] initial coq sigma: EVARS: ?X22==[ |- 1 = 1] (goal evar) {?Goal0} ?X21==[ |- 0 = 0] (goal evar) {?Goal} ?X20==[ |- => conj ?Goal ?Goal0] (goal evar) ?X19==[ |- => conj ?Goal ?Goal0] (goal evar) ?X18==[ |- => nat] (parameter A of eq) ?X17==[ |- => nat] (parameter A of eq) UNIVERSES: ALGEBRAIC UNIVERSES: {elpi.tests.test_ltac.37 elpi.tests.test_ltac.36} FLEXIBLE UNIVERSES: elpi.tests.test_ltac.37 := Set elpi.tests.test_ltac.36 := Set SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: SHELF:|| FUTURE GOALS STACK: |||| Rocq-Elpi mapping: RAW: ELAB: Debug: [elpi] initial coq goals: ?X21 Debug: [elpi] in_elpi_evar:?X21 Debug: [elpi] term2lp: depth=0 ctx= term=(0 = 0) Debug: [elpi] term2lp (out): app [global (indt «eq»), global (indt «nat»), global (indc «O»), global (indc «O»)] Debug: [elpi] in_elpi_evar_concl: moving Ctx down to0 Debug: [elpi] in_elpi_fresh_evar: unknown ?X21 <-> X1 RAW: ?X21 <-> X1 ELAB: ?X21 <-> X0 Debug: [elpi] term2lp: depth=0 ctx= term=(0 = 0) Debug: [elpi] term2lp (out): app [global (indt «eq»), global (indt «nat»), global (indc «O»), global (indc «O»)] Debug: [elpi] in_elpi_evar_concl: moving Ctx down to0 Debug: [elpi] in_elpi_fresh_evar: new decl at depth:0 for ?X21 <-> X1 declare-evar [] X1 (app [global (indt «eq»), global (indt «nat»), global (indc «O»), global (indc «O»)]) X0 Debug: [elpi] elpi sigma -> coq sigma: before: EVARS: ?X22==[ |- 1 = 1] (goal evar) {?Goal0} ?X21==[ |- 0 = 0] (goal evar) {?Goal} ?X20==[ |- => conj ?Goal ?Goal0] (goal evar) ?X19==[ |- => conj ?Goal ?Goal0] (goal evar) ?X18==[ |- => nat] (parameter A of eq) ?X17==[ |- => nat] (parameter A of eq) UNIVERSES: ALGEBRAIC UNIVERSES: {elpi.tests.test_ltac.37 elpi.tests.test_ltac.36} FLEXIBLE UNIVERSES: elpi.tests.test_ltac.37 := Set elpi.tests.test_ltac.36 := Set SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: SHELF:|| FUTURE GOALS STACK: |||| Rocq-Elpi mapping: RAW: ?X21 <-> X1 ELAB: ?X21 <-> X0 Debug: [elpi] elpi sigma -> coq sigma: synchronized: EVARS: ?X22==[ |- 1 = 1] (goal evar) {?Goal0} ?X21==[ |- 0 = 0] (goal evar) {?Goal} ?X20==[ |- => conj ?Goal ?Goal0] (goal evar) ?X19==[ |- => conj ?Goal ?Goal0] (goal evar) ?X18==[ |- => nat] (parameter A of eq) ?X17==[ |- => nat] (parameter A of eq) UNIVERSES: ALGEBRAIC UNIVERSES: {elpi.tests.test_ltac.37 elpi.tests.test_ltac.36} FLEXIBLE UNIVERSES: elpi.tests.test_ltac.37 := Set elpi.tests.test_ltac.36 := Set SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: SHELF:|| FUTURE GOALS STACK: |||| Rocq-Elpi mapping: RAW: ?X21 <-> X1 ELAB: ?X21 <-> X0 Debug: [elpi] elpi sigma -> coq sigma: after: EVARS: ?X22==[ |- 1 = 1] (goal evar) {?Goal0} ?X21==[ |- 0 = 0] (goal evar) {?Goal} ?X20==[ |- => conj ?Goal ?Goal0] (goal evar) ?X19==[ |- => conj ?Goal ?Goal0] (goal evar) ?X18==[ |- => nat] (parameter A of eq) ?X17==[ |- => nat] (parameter A of eq) UNIVERSES: ALGEBRAIC UNIVERSES: {elpi.tests.test_ltac.37 elpi.tests.test_ltac.36} FLEXIBLE UNIVERSES: elpi.tests.test_ltac.37 := Set elpi.tests.test_ltac.36 := Set SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: SHELF:|| FUTURE GOALS STACK: |||| Rocq-Elpi mapping: RAW: ?X21 <-> X1 ELAB: ?X21 <-> X0 Debug: [elpi] skip entryattributes [attribute elpi.loc (leaf-loc File "./tests/test_ltac.v", line 144, column 7, characters 2746-2751:), attribute elpi.phase (leaf-str interp)] Debug: [elpi] lp2term: depth=0 ctx=[] term=X0 Debug: [elpi] lp2term@0:X0 Debug: [elpi] lp2term: evar: calldepth:0 X0 RAW: ?X21 <-> X1 ELAB: ?X21 <-> X0 Debug: [elpi] lp2term: evar: already in Coq: ?X21 Debug: [elpi] lp2term: out=?Goal elpi2coq: RAW: ?X21 <-> X1 ELAB: ?X21 <-> X0 EVARS: ?X22==[ |- 1 = 1] (goal evar) {?Goal0} ?X21==[ |- 0 = 0] (goal evar) {?Goal} ?X20==[ |- => conj ?Goal ?Goal0] (goal evar) ?X19==[ |- => conj ?Goal ?Goal0] (goal evar) ?X18==[ |- => nat] (parameter A of eq) ?X17==[ |- => nat] (parameter A of eq) UNIVERSES: ALGEBRAIC UNIVERSES: {elpi.tests.test_ltac.37 elpi.tests.test_ltac.36} FLEXIBLE UNIVERSES: elpi.tests.test_ltac.37 := Set elpi.tests.test_ltac.36 := Set SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: SHELF: || FUTURE GOALS STACK: |||| Debug: [elpi] in_elpi_evar:?X21 Debug: [elpi] in_elpi_evar: known ?X21 as X0 Debug: [elpi] term2lp: depth=0 ctx= term=(0 = 0) Debug: [elpi] term2lp (out): app [global (indt «eq»), global (indt «nat»), global (indc «O»), global (indc «O»)] Debug: [elpi] in_elpi_evar_concl: moving Ctx down to0 Debug: [elpi] Elpi: query-compilation:0.0088 static-check:0.0000 optimization:0.0002 runtime:0.0036 (with success) Debug: [elpi] elpi sigma -> coq sigma: before: EVARS: ?X22==[ |- 1 = 1] (goal evar) {?Goal0} ?X21==[ |- 0 = 0] (goal evar) {?Goal} ?X20==[ |- => conj ?Goal ?Goal0] (goal evar) ?X19==[ |- => conj ?Goal ?Goal0] (goal evar) ?X18==[ |- => nat] (parameter A of eq) ?X17==[ |- => nat] (parameter A of eq) UNIVERSES: ALGEBRAIC UNIVERSES: {elpi.tests.test_ltac.37 elpi.tests.test_ltac.36} FLEXIBLE UNIVERSES: elpi.tests.test_ltac.37 := Set elpi.tests.test_ltac.36 := Set SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: SHELF:|| FUTURE GOALS STACK: |||| Rocq-Elpi mapping: RAW: ?X21 <-> X1 ELAB: ?X21 <-> X0 Debug: [elpi] elpi sigma -> coq sigma: synchronized: EVARS: ?X22==[ |- 1 = 1] (goal evar) {?Goal0} ?X21==[ |- 0 = 0] (goal evar) {?Goal} ?X20==[ |- => conj ?Goal ?Goal0] (goal evar) ?X19==[ |- => conj ?Goal ?Goal0] (goal evar) ?X18==[ |- => nat] (parameter A of eq) ?X17==[ |- => nat] (parameter A of eq) UNIVERSES: ALGEBRAIC UNIVERSES: {elpi.tests.test_ltac.37 elpi.tests.test_ltac.36} FLEXIBLE UNIVERSES: elpi.tests.test_ltac.37 := Set elpi.tests.test_ltac.36 := Set SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: SHELF:|| FUTURE GOALS STACK: |||| Rocq-Elpi mapping: RAW: ?X21 <-> X1 ELAB: ?X21 <-> X0 Debug: [elpi] elpi sigma -> coq sigma: after: EVARS: ?X22==[ |- 1 = 1] (goal evar) {?Goal0} ?X21==[ |- 0 = 0] (goal evar) {?Goal} ?X20==[ |- => conj ?Goal ?Goal0] (goal evar) ?X19==[ |- => conj ?Goal ?Goal0] (goal evar) ?X18==[ |- => nat] (parameter A of eq) ?X17==[ |- => nat] (parameter A of eq) UNIVERSES: ALGEBRAIC UNIVERSES: {elpi.tests.test_ltac.37 elpi.tests.test_ltac.36} FLEXIBLE UNIVERSES: elpi.tests.test_ltac.37 := Set elpi.tests.test_ltac.36 := Set SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: SHELF:|| FUTURE GOALS STACK: |||| Rocq-Elpi mapping: RAW: ?X21 <-> X1 ELAB: ?X21 <-> X0 Debug: [elpi] reachable from:?X21 = ?X21 Debug: [elpi] lp2term: evar: found relevant constraint: 0 |> |- evar X1 (app [global (indt «eq»), global (indt «nat»), global (indc «O»), global (indc «O»)]) X0 Debug: [elpi] Goals: ?X21 Debug: [elpi] Shelved Goals: Debug: [elpi] initial coq sigma: EVARS:?X20==[ |- True] (goal evar) {?Goal} SHELF:|| FUTURE GOALS STACK: |||| Rocq-Elpi mapping: RAW: ELAB: Debug: [elpi] initial coq goals: ?X20 Debug: [elpi] in_elpi_evar:?X20 Debug: [elpi] term2lp: depth=0 ctx= term=True Debug: [elpi] term2lp (out): global (indt «True») Debug: [elpi] in_elpi_evar_concl: moving Ctx down to0 Debug: [elpi] in_elpi_fresh_evar: unknown ?X20 <-> X3 RAW: ?X20 <-> X3 ELAB: ?X20 <-> X2 Debug: [elpi] term2lp: depth=0 ctx= term=True Debug: [elpi] term2lp (out): global (indt «True») Debug: [elpi] in_elpi_evar_concl: moving Ctx down to0 Debug: [elpi] in_elpi_fresh_evar: new decl at depth:0 for ?X20 <-> X3 declare-evar [] X3 (global (indt «True»)) X2 Debug: [elpi] lp2term: evar: found relevant constraint: 0 |> |- evar X0 (global (indt «True»)) X1 Debug: [elpi] elpi sigma -> coq sigma: before: EVARS:?X20==[ |- True] (goal evar) {?Goal} SHELF:|| FUTURE GOALS STACK: |||| Rocq-Elpi mapping: RAW: ?X20 <-> X0 ELAB: ?X20 <-> X1 Debug: [elpi] elpi sigma -> coq sigma: synchronized: EVARS:?X20==[ |- True] (goal evar) {?Goal} SHELF:|| FUTURE GOALS STACK: |||| Rocq-Elpi mapping: RAW: ?X20 <-> X0 ELAB: ?X20 <-> X1 Debug: [elpi] elpi sigma -> coq sigma: after: EVARS:?X20==[ |- True] (goal evar) {?Goal} SHELF:|| FUTURE GOALS STACK: |||| Rocq-Elpi mapping: RAW: ?X20 <-> X0 ELAB: ?X20 <-> X1 Debug: [elpi] bringing updated sigma back to lp Debug: [elpi] set_current_sigma: preparing assignment for X1 under context Debug: [elpi] term2lp: depth=0 ctx= term=I Debug: [elpi] term2lp (out): global (indc «I») Debug: [elpi] set_current_sigma: assignment at depth0 is: X1 = global (indc «I») Debug: [elpi] Elpi: query-compilation:0.0019 static-check:0.0000 optimization:0.0002 runtime:0.0015 (with success) Debug: [elpi] elpi sigma -> coq sigma: before: EVARS:?X20==[ |- => I] (goal evar) SHELF:|| FUTURE GOALS STACK: |||| Rocq-Elpi mapping: RAW: ELAB: Debug: [elpi] elpi sigma -> coq sigma: synchronized: EVARS:?X20==[ |- => I] (goal evar) SHELF:|| FUTURE GOALS STACK: |||| Rocq-Elpi mapping: RAW: ELAB: Debug: [elpi] elpi sigma -> coq sigma: after: EVARS:?X20==[ |- => I] (goal evar) SHELF:|| FUTURE GOALS STACK: |||| Rocq-Elpi mapping: RAW: ELAB: Debug: [elpi] reachable from:?X20 = Debug: [elpi] Goals: Debug: [elpi] Shelved Goals: Debug: [elpi] Compiler cache: lookups=44, hits=25 Debug: [elpi] Compiler cache: lookups=0, hits=0 File "./tests/test_ltac.v", line 153, characters 34-35: Warning: File "./tests/test_ltac.v", line 153, characters 34-35 G is linear: name it _G (discard) or G_ (fresh variable) [elpi.linear-variable,elpi.typecheck,elpi,default] File "./tests/test_loc_err.v", line 8, characters 12-13: Warning: File "./tests/test_loc_err.v", line 8, characters 12-13 X is linear: name it _X (discard) or X_ (fresh variable) [elpi.linear-variable,elpi.typecheck,elpi,default] File "./tests/test_loc_err.v", line 8, characters 14-15: Warning: File "./tests/test_loc_err.v", line 8, characters 14-15 Y is linear: name it _Y (discard) or Y_ (fresh variable) [elpi.linear-variable,elpi.typecheck,elpi,default] Query assignments: P = /build/reproducible-path/coq-elpi-3.5.0/_build/default/elpi/elpi_elaborator.elpi synterp [str X] interp [str X] synterp [int 1] interp [int 1] synterp [trm _] interp [trm (app [global (indc «S»), global (indc «O»)])] synterp [const-decl x (some _) (parameter P explicit _ c0 \ parameter Q explicit _ c1 \ arity _)] interp [const-decl x (some (fun `P:r` (global (indt «bool»)) c0 \ fun `Q:r` (global (indt «bool»)) c1 \ global (indc «O»))) (parameter P explicit (global (indt «bool»)) c0 \ parameter Q explicit (global (indt «bool»)) c1 \ arity (global (indt «nat»)))] synterp [const-decl x none (parameter P explicit _ c0 \ parameter Q explicit _ c1 \ arity _)] interp [const-decl x none (parameter P explicit (global (indt «bool»)) c0 \ parameter Q explicit (global (indt «bool»)) c1 \ arity (global (indt «nat»)))] synterp [indt-decl (parameter P explicit _ c0 \ parameter Q explicit _ c1 \ record x _ K (field [coercion off, canonical tt] f1 _ c2 \ field [coercion off, canonical tt] f2 _ c3 \ end-record))] interp [indt-decl (parameter P explicit (global (indt «bool»)) c0 \ parameter Q explicit (global (indt «bool»)) c1 \ record x (sort (typ «Set»)) K (field [coercion off, canonical tt] f1 (global (indt «nat»)) c2 \ field [coercion off, canonical tt] f2 (app [global (indt «eq»), global (indt «nat»), c2, c2]) c3 \ end-record))] synterp [indt-decl (parameter P explicit _ c0 \ inductive x tt (parameter Q explicit _ c1 \ arity _) c1 \ [constructor K (parameter Q explicit _ c2 \ arity _), constructor R (parameter Q explicit _ c2 \ arity _)])] interp [indt-decl (parameter P explicit (global (indt «bool»)) c0 \ inductive x tt (parameter Q explicit (global (indt «bool»)) c1 \ arity (prod `_:r` (global (indt «nat»)) c2 \ sort (typ «Set»))) c1 \ [constructor K (parameter Q explicit (global (indt «bool»)) c2 \ arity (prod `_:r` (global (indt «nat»)) c3 \ app [c1, c2, app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]])), constructor R (parameter Q explicit (global (indt «bool»)) c2 \ arity (prod `w:r` (global (indt «bool»)) c3 \ app [c1, c2, app [global (indc «S»), global (indc «O»)]]))])] synterp [ctx-decl (context-item A explicit _ none c0 \ context-item B explicit _ none c1 \ context-end)] interp [ctx-decl (context-item A explicit (global (indt «nat»)) none c0 \ context-item B explicit (global (indt «bool»)) none c1 \ context-end)] synterp [str X] interp [str X] synterp [int 1] interp [int 1] synterp [trm _] interp [trm (app [global (indc «S»), global (indc «O»)])] synterp [const-decl x (some _) (parameter P explicit _ c0 \ parameter Q explicit _ c1 \ arity _)] interp [const-decl x (some (fun `P:r` (global (indt «bool»)) c0 \ fun `Q:r` (global (indt «bool»)) c1 \ global (indc «O»))) (parameter P explicit (global (indt «bool»)) c0 \ parameter Q explicit (global (indt «bool»)) c1 \ arity (global (indt «nat»)))] synterp [const-decl x none (parameter P explicit _ c0 \ parameter Q explicit _ c1 \ arity _)] interp [const-decl x none (parameter P explicit (global (indt «bool»)) c0 \ parameter Q explicit (global (indt «bool»)) c1 \ arity (global (indt «nat»)))] synterp [indt-decl (parameter P explicit _ c0 \ parameter Q explicit _ c1 \ record x _ K (field [coercion off, canonical tt] f1 _ c2 \ field [coercion off, canonical tt] f2 _ c3 \ end-record))] interp [indt-decl (parameter P explicit (global (indt «bool»)) c0 \ parameter Q explicit (global (indt «bool»)) c1 \ record x (sort (typ «Set»)) K (field [coercion off, canonical tt] f1 (global (indt «nat»)) c2 \ field [coercion off, canonical tt] f2 (app [global (indt «eq»), global (indt «nat»), c2, c2]) c3 \ end-record))] synterp [indt-decl (parameter P explicit _ c0 \ inductive x tt (parameter Q explicit _ c1 \ arity _) c1 \ [constructor K (parameter Q explicit _ c2 \ arity _), constructor R (parameter Q explicit _ c2 \ arity _)])] interp [indt-decl (parameter P explicit (global (indt «bool»)) c0 \ inductive x tt (parameter Q explicit (global (indt «bool»)) c1 \ arity (prod `_:r` (global (indt «nat»)) c2 \ sort (typ «Set»))) c1 \ [constructor K (parameter Q explicit (global (indt «bool»)) c2 \ arity (prod `_:r` (global (indt «nat»)) c3 \ app [c1, c2, app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]]])), constructor R (parameter Q explicit (global (indt «bool»)) c2 \ arity (prod `w:r` (global (indt «bool»)) c3 \ app [c1, c2, app [global (indc «S»), global (indc «O»)]]))])] synterp [ctx-decl (context-item A explicit _ none c0 \ context-item B explicit _ none c1 \ context-end)] interp [ctx-decl (context-item A explicit (global (indt «nat»)) none c0 \ context-item B explicit (global (indt «bool»)) none c1 \ context-end)] a : nat a is not universe polymorphic a is transparent Expands to: Constant elpi.tests.test_synterp.X.a Declared in library elpi.tests.test_synterp, line 44, characters 11-12 Module X := Struct Definition a : nat. End Module A := Struct Definition a : nat. End a : nat L= [p 1] File "./tests/test_synterp.v", line 38, characters 20-21: Warning: File "./tests/test_synterp.v", line 38, characters 20-21 X is linear: name it _X (discard) or X_ (fresh variable) [elpi.linear-variable,elpi.typecheck,elpi,default] File "./tests/test_synterp.v", line 41, characters 12-13: Warning: File "./tests/test_synterp.v", line 41, characters 12-13 X is linear: name it _X (discard) or X_ (fresh variable) [elpi.linear-variable,elpi.typecheck,elpi,default] xml.element message [] [xml.element warning [pr level 2, pr zlevel 2] [xml.pcdata Hello World]] Query assignments: A = xml.element warning [pr level 2, pr zlevel 2] [xml.pcdata Hello World] Path = /build/reproducible-path/coq-elpi-3.5.0/_build/default/apps/xml/tests-plugin/test.xml X = xml.element message [] [xml.element warning [pr level 2, pr zlevel 2] [xml.pcdata Hello World]] xml AST: xml.element message [] [xml.element warning [pr level 2, pr zlevel 2] [xml.pcdata Hello World]] pretty: Hello World xml AST: xml.element message [] [xml.element warning [pr level 2, pr zlevel 2] [xml.pcdata Hello World]] json.assoc [pr address (json.assoc [pr city (json.string New York), pr postal_code (json.string 10021-3100), pr state (json.string NY), pr street_address (json.string 21 2nd Street)]), pr age (json.int 27), pr children (json.list [json.string Catherine, json.string Thomas, json.string Trevor]), pr first_name (json.string John), pr is_alive (json.bool tt), pr last_name (json.string Smith), pr phone_numbers (json.list [json.assoc [pr number (json.string 212 555-1234), pr type (json.string home)], json.assoc [pr number (json.string 646 555-4567), pr type (json.string office)]]), pr spouse json.null] Query assignments: A = json.assoc [pr city (json.string New York), pr postal_code (json.string 10021-3100), pr state (json.string NY), pr street_address (json.string 21 2nd Street)] Path = /build/reproducible-path/coq-elpi-3.5.0/_build/default/apps/json/tests-plugin/test.json Path1 = /build/reproducible-path/coq-elpi-3.5.0/_build/default/apps/json/tests-plugin/test.json.out X = json.assoc [pr address (json.assoc [pr city (json.string New York), pr postal_code (json.string 10021-3100), pr state (json.string NY), pr street_address (json.string 21 2nd Street)]), pr age (json.int 27), pr children (json.list [json.string Catherine, json.string Thomas, json.string Trevor]), pr first_name (json.string John), pr is_alive (json.bool tt), pr last_name (json.string Smith), pr phone_numbers (json.list [json.assoc [pr number (json.string 212 555-1234), pr type (json.string home)], json.assoc [pr number (json.string 646 555-4567), pr type (json.string office)]]), pr spouse json.null] test2 test1 str hello test1 too many arguments test1 str hello my str Dear test1 too many arguments [attribute elpi.loc (leaf-loc File "./tests/test_vernacular1.v", line 48, column 5, characters 981-989:), attribute elpi.phase (leaf-str interp), attribute foo (leaf-str bar)] [get-option elpi.loc File "./tests/test_vernacular1.v", line 48, column 5, characters 981-989:, get-option elpi.phase interp, get-option foo bar] [attribute elpi.loc (leaf-loc File "./tests/test_vernacular1.v", line 52, column 0, characters 1015-1042:), attribute elpi.phase (leaf-str interp), attribute foo (leaf-str bar), attribute poly (leaf-str )] [get-option elpi.loc File "./tests/test_vernacular1.v", line 52, column 0, characters 1015-1042:, get-option elpi.phase interp, get-option foo bar, get-option poly tt] [attribute elpi.loc (leaf-loc File "./tests/test_vernacular1.v", line 53, column 0, characters 1043-1083:), attribute elpi.phase (leaf-str interp), attribute foo (leaf-str bar), attribute poly (leaf-str ), attribute suppa (node [attribute duppa (leaf-str )])] [get-option elpi.loc File "./tests/test_vernacular1.v", line 53, column 0, characters 1043-1083:, get-option elpi.phase interp, get-option foo bar, get-option poly tt] Query assignments: X = 3 app [global (const «Nat.mul»), X0, X1] type File "./tests/test_vernacular1.v", line 47, characters 2-11: Warning: This command does not support this attribute: foo. [unsupported-attributes,parsing,default] ok 46 (true && false)%bool : bool natmul R n : ringType_sort R : ringType_sort R natmul R n : ringType_sort R : ringType_sort R fun i : ord 1 => bump 1 i : ord 2 : ord 1 -> ord 2 json AST: json.assoc [pr address (json.assoc [pr city (json.string New York), pr postal_code (json.string 10021-3100), pr state (json.string NY), pr street_address (json.string 21 2nd Street)]), pr age (json.int 27), pr children (json.list [json.string Catherine, json.string Thomas, json.string Trevor]), pr first_name (json.string John), pr is_alive (json.bool tt), pr last_name (json.string Smith), pr phone_numbers (json.list [json.assoc [pr number (json.string 212 555-1234), pr type (json.string home)], json.assoc [pr number (json.string 646 555-4567), pr type (json.string office)]]), pr spouse json.null] pretty: { "address": { "city": "New York", "postal_code": "10021-3100", "state": "NY", "street_address": "21 2nd Street" }, "age": 27, "children": [ "Catherine", "Thomas", "Trevor" ], "first_name": "John", "is_alive": true, "last_name": "Smith", "phone_numbers": [ { "number": "212 555-1234", "type": "home" }, { "number": "646 555-4567", "type": "office" } ], "spouse": null } json AST: json.assoc [pr address (json.assoc [pr city (json.string New York), pr postal_code (json.string 10021-3100), pr state (json.string NY), pr street_address (json.string 21 2nd Street)]), pr age (json.int 27), pr children (json.list [json.string Catherine, json.string Thomas, json.string Trevor]), pr first_name (json.string John), pr is_alive (json.bool tt), pr last_name (json.string Smith), pr phone_numbers (json.list [json.assoc [pr number (json.string 212 555-1234), pr type (json.string home)], json.assoc [pr number (json.string 646 555-4567), pr type (json.string office)]]), pr spouse json.null] Cats.And.Dogs.x = 42 : nat nabla c1 \ seal (goal [decl c1 `P:r` (sort prop)] (app [global (const «id»), X0, X1]) (prod `_:r` c1 c2 \ c1) (app [global (const «id»), prod `_:r` c1 c2 \ c1, X2 c1]) []) Debug: {c0 c1 c2 c3} : decl c3 `w:r` c0, decl c2 `h:r` (app [global (indt «eq»), global (indt «nat»), global (const «o»), global (const «m»)]), decl c1 `x:r` (prod `y:r` c0 c4 \ sort (typ «elpi.tests.test_tactic.22»)), decl c0 `T:r` (sort (typ «elpi.tests.test_tactic.21»)) ?- evar (X0 c0 c1 c2 c3) (prod `e:r` (app [global (indt «eq»), sort (typ «elpi.tests.test_tactic.22»), app [c1, c3], sort (typ «elpi.tests.test_tactic.25»)]) c4 \ prod `j:r` (app [c1, c3]) c5 \ app [global (indt «ex»), app [c1, c3], fun `a:r` (app [c1, c3]) c6 \ app [global (indt «eq»), app [c1, c3], c6, c6]]) (X1 c0 c1 c2 c3) /* suspended on X0, X1 */ Goal: [] [decl c3 `w:r` c0, decl c2 `h:r` (app [global (indt «eq»), global (indt «nat»), global (const «o»), global (const «m»)]), decl c1 `x:r` (prod `y:r` c0 c4 \ sort (typ «elpi.tests.test_tactic.22»)), decl c0 `T:r` (sort (typ «elpi.tests.test_tactic.21»))] ------------ prod `e:r` (app [global (indt «eq»), sort (typ «elpi.tests.test_tactic.22»), app [c1, c3], sort (typ «elpi.tests.test_tactic.25»)]) c4 \ prod `j:r` (app [c1, c3]) c5 \ app [global (indt «ex»), app [c1, c3], fun `a:r` (app [c1, c3]) c6 \ app [global (indt «eq»), app [c1, c3], c6, c6]] x w = Type -> x w -> exists a : x w, a = a Debug: {c0 c1 c2 c3} : decl c3 `w:r` c0, decl c2 `h:r` (app [global (indt «eq»), global (indt «nat»), global (const «o»), global (const «m»)]), decl c1 `x:r` (prod `y:r` c0 c4 \ sort (typ «elpi.tests.test_tactic.22»)), decl c0 `T:r` (sort (typ «elpi.tests.test_tactic.21»)) ?- evar (X0 c0 c1 c2 c3) (prod `e:r` (app [global (indt «eq»), sort (typ «elpi.tests.test_tactic.22»), app [c1, c3], sort (typ «elpi.tests.test_tactic.25»)]) c4 \ prod `j:r` (app [c1, c3]) c5 \ app [global (indt «ex»), app [c1, c3], fun `a:r` (app [c1, c3]) c6 \ app [global (indt «eq»), app [c1, c3], c6, c6]]) (X1 c0 c1 c2 c3) /* suspended on X0, X1 */ Goal: [] [decl c3 `w:r` c0, decl c2 `h:r` (app [global (indt «eq»), global (indt «nat»), global (const «o»), global (const «m»)]), decl c1 `x:r` (prod `y:r` c0 c4 \ sort (typ «elpi.tests.test_tactic.22»)), decl c0 `T:r` (sort (typ «elpi.tests.test_tactic.21»))] ------------ prod `e:r` (app [global (indt «eq»), sort (typ «elpi.tests.test_tactic.22»), app [c1, c3], sort (typ «elpi.tests.test_tactic.25»)]) c4 \ prod `j:r` (app [c1, c3]) c5 \ app [global (indt «ex»), app [c1, c3], fun `a:r` (app [c1, c3]) c6 \ app [global (indt «eq»), app [c1, c3], c6, c6]] x w = Type -> x w -> exists a : x w, a = a Debug: {c0 c1 c2 c3 c4 c5} : decl c5 `j:r` (app [c1, c3]), decl c4 `e:r` (app [global (indt «eq»), sort (typ «elpi.tests.test_tactic.22»), app [c1, c3], sort (typ «elpi.tests.test_tactic.25»)]), decl c3 `w:r` c0, decl c2 `h:r` (app [global (indt «eq»), global (indt «nat»), global (const «o»), global (const «m»)]), decl c1 `x:r` (prod `y:r` c0 c6 \ sort (typ «elpi.tests.test_tactic.22»)), decl c0 `T:r` (sort (typ «elpi.tests.test_tactic.21»)) ?- evar (X0 c0 c1 c2 c3 c4 c5) (app [c1, c3]) (X1 c0 c1 c2 c3 c4 c5) /* suspended on X0, X1 */ {c0 c1 c2 c3 c4 c5} : decl c5 `j:r` (app [c1, c3]), decl c4 `e:r` (app [global (indt «eq»), sort (typ «elpi.tests.test_tactic.22»), app [c1, c3], sort (typ «elpi.tests.test_tactic.25»)]), decl c3 `w:r` c0, decl c2 `h:r` (app [global (indt «eq»), global (indt «nat»), global (const «o»), global (const «m»)]), decl c1 `x:r` (prod `y:r` c0 c6 \ sort (typ «elpi.tests.test_tactic.22»)), decl c0 `T:r` (sort (typ «elpi.tests.test_tactic.21»)) ?- evar (X2 c0 c1 c2 c3 c4 c5) (app [global (indt «eq»), app [c1, c3], X1 c0 c1 c2 c3 c4 c5, X1 c0 c1 c2 c3 c4 c5]) (X3 c0 c1 c2 c3 c4 c5) /* suspended on X2, X3 */ Goal: [] [decl c5 `j:r` (app [c1, c3]), decl c4 `e:r` (app [global (indt «eq»), sort (typ «elpi.tests.test_tactic.22»), app [c1, c3], sort (typ «elpi.tests.test_tactic.25»)]), decl c3 `w:r` c0, decl c2 `h:r` (app [global (indt «eq»), global (indt «nat»), global (const «o»), global (const «m»)]), decl c1 `x:r` (prod `y:r` c0 c6 \ sort (typ «elpi.tests.test_tactic.22»)), decl c0 `T:r` (sort (typ «elpi.tests.test_tactic.21»))] ------------ app [global (indt «eq»), app [c1, c3], X1 c0 c1 c2 c3 c4 c5, X1 c0 c1 c2 c3 c4 c5] ?foo = ?foo Debug: {c0 c1 c2 c3 c4 c5} : decl c5 `j:r` (app [c1, c3]), decl c4 `e:r` (app [global (indt «eq»), sort (typ «elpi.tests.test_tactic.22»), app [c1, c3], sort (typ «elpi.tests.test_tactic.25»)]), decl c3 `w:r` c0, decl c2 `h:r` (app [global (indt «eq»), global (indt «nat»), global (const «o»), global (const «m»)]), decl c1 `x:r` (prod `y:r` c0 c6 \ sort (typ «elpi.tests.test_tactic.22»)), decl c0 `T:r` (sort (typ «elpi.tests.test_tactic.21»)) ?- evar (X0 c0 c1 c2 c3 c4 c5) (app [c1, c3]) (X1 c0 c1 c2 c3 c4 c5) /* suspended on X0, X1 */ {c0 c1 c2 c3 c4 c5} : decl c5 `j:r` (app [c1, c3]), decl c4 `e:r` (app [global (indt «eq»), sort (typ «elpi.tests.test_tactic.22»), app [c1, c3], sort (typ «elpi.tests.test_tactic.25»)]), decl c3 `w:r` c0, decl c2 `h:r` (app [global (indt «eq»), global (indt «nat»), global (const «o»), global (const «m»)]), decl c1 `x:r` (prod `y:r` c0 c6 \ sort (typ «elpi.tests.test_tactic.22»)), decl c0 `T:r` (sort (typ «elpi.tests.test_tactic.21»)) ?- evar (X2 c0 c1 c2 c3 c4 c5) (app [global (indt «eq»), app [c1, c3], X1 c0 c1 c2 c3 c4 c5, X1 c0 c1 c2 c3 c4 c5]) (X3 c0 c1 c2 c3 c4 c5) /* suspended on X2, X3 */ Goal: [] [decl c5 `j:r` (app [c1, c3]), decl c4 `e:r` (app [global (indt «eq»), sort (typ «elpi.tests.test_tactic.22»), app [c1, c3], sort (typ «elpi.tests.test_tactic.25»)]), decl c3 `w:r` c0, decl c2 `h:r` (app [global (indt «eq»), global (indt «nat»), global (const «o»), global (const «m»)]), decl c1 `x:r` (prod `y:r` c0 c6 \ sort (typ «elpi.tests.test_tactic.22»)), decl c0 `T:r` (sort (typ «elpi.tests.test_tactic.21»))] ------------ app [global (indt «eq»), app [c1, c3], X1 c0 c1 c2 c3 c4 c5, X1 c0 c1 c2 c3 c4 c5] ?foo = ?foo Debug: evar X0 (global (indt «nat»)) X1 /* suspended on X0, X1 */ X0 global (indt «nat») Debug: evar X2 (global (indt «nat»)) X3 /* suspended on X2, X3 */ hello eq_refl : one = 1 : one = 1 [(c4 \ app [c1, c2]), (c4 \ app [c0, c2]), (c4 \ c4), (c4 \ prod `x0:r` (app [c0, c2]) c5 \ prod `x1:r` (global (indt «nat»)) c6 \ sort (typ «elpi.tests.test_tactic.47»))] [app [global (indt «eq»), global (indt «nat»), c2, app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]], sort prop] 1356 : nat this 3 app [c4, X0 c0 c1 c2 c3 c4] app [c3, app [c1, c2], global (const «a»)] foo.bar [trm c0, trm (app [global (const «Nat.add»), c0, c1])] Debug: {c0 c1} : decl c1 `y:r` (global (indt «nat»)), decl c0 `x:r` (global (indt «nat»)) ?- evar (X0 c0 c1) (global (indt «True»)) (X1 c0 c1) /* suspended on X0, X1 */ [trm c0, trm (app [global (const «Nat.add»), X0 c0 c1, c1])] Debug: {c0 c1} : decl c1 `y:r` (global (indt «nat»)), decl c0 `x:r` (global (indt «nat»)) ?- evar (X1 c0 c1) (global (indt «nat»)) (X0 c0 c1) /* suspended on X1, X0 */ {c0 c1} : decl c1 `y:r` (global (indt «nat»)), decl c0 `x:r` (global (indt «nat»)) ?- evar (X2 c0 c1) (global (indt «True»)) (X3 c0 c1) /* suspended on X2, X3 */ [trm c0, trm (app [global (const «Nat.add»), X0 c0 c1, c1])] Debug: {c0 c1} : decl c1 `y:r` (global (indt «nat»)), decl c0 `x:r` (global (indt «nat»)) ?- evar (X1 c0 c1) (global (indt «True»)) (X2 c0 c1) /* suspended on X1, X2 */ [trm c0, trm c1] Debug: {c0 c1} : decl c1 `y:r` (global (indt «nat»)), decl c0 `x:r` (global (indt «nat»)) ?- evar (X0 c0 c1) (global (indt «True»)) (X1 c0 c1) /* suspended on X0, X1 */ [trm (app [global (const «Nat.add»), c0, c1])] Debug: {c0 c1} : decl c1 `y:r` (global (indt «nat»)), decl c0 `x:r` (global (indt «nat»)) ?- evar (X0 c0 c1) (global (indt «True»)) (X1 c0 c1) /* suspended on X0, X1 */ [trm (app [global (const «Nat.add»), X0 c0 c1, c1])] Debug: {c0 c1} : decl c1 `y:r` (global (indt «nat»)), decl c0 `x:r` (global (indt «nat»)) ?- evar (X1 c0 c1) (global (indt «nat»)) (X0 c0 c1) /* suspended on X1, X0 */ {c0 c1} : decl c1 `y:r` (global (indt «nat»)), decl c0 `x:r` (global (indt «nat»)) ?- evar (X2 c0 c1) (global (indt «True»)) (X3 c0 c1) /* suspended on X2, X3 */ [trm (app [global (const «Nat.add»), X0 c0 c1, c1])] Debug: {c0 c1} : decl c1 `y:r` (global (indt «nat»)), decl c0 `x:r` (global (indt «nat»)) ?- evar (X1 c0 c1) (global (indt «True»)) (X2 c0 c1) /* suspended on X1, X2 */ [trm (app [global (indc «O»), global (indc «O»)])] Debug: {c0 c1} : decl c1 `y:r` (global (indt «nat»)), decl c0 `x:r` (global (indt «nat»)) ?- evar (X0 c0 c1) (global (indt «True»)) (X1 c0 c1) /* suspended on X0, X1 */ [trm c0] Debug: {c0 c1} : decl c1 `y:r` (global (indt «nat»)), decl c0 `x:r` (global (indt «nat»)) ?- evar (X0 c0 c1) (global (indt «True»)) (X1 c0 c1) /* suspended on X0, X1 */ [int 1] Debug: {c0 c1} : decl c1 `y:r` (global (indt «nat»)), decl c0 `x:r` (global (indt «nat»)) ?- evar (X0 c0 c1) (global (indt «True»)) (X1 c0 c1) /* suspended on X0, X1 */ [int -1] Debug: {c0 c1} : decl c1 `y:r` (global (indt «nat»)), decl c0 `x:r` (global (indt «nat»)) ?- evar (X0 c0 c1) (global (indt «True»)) (X1 c0 c1) /* suspended on X0, X1 */ [str a] Debug: {c0 c1} : decl c1 `y:r` (global (indt «nat»)), decl c0 `x:r` (global (indt «nat»)) ?- evar (X0 c0 c1) (global (indt «True»)) (X1 c0 c1) /* suspended on X0, X1 */ [str a] Debug: {c0 c1} : decl c1 `y:r` (global (indt «nat»)), decl c0 `x:r` (global (indt «nat»)) ?- evar (X0 c0 c1) (global (indt «True»)) (X1 c0 c1) /* suspended on X0, X1 */ [str x] Debug: {c0 c1} : decl c1 `y:r` (global (indt «nat»)), decl c0 `x:r` (global (indt «nat»)) ?- evar (X0 c0 c1) (global (indt «True»)) (X1 c0 c1) /* suspended on X0, X1 */ [trm (app [global (const «Nat.add»), c0, c1])] Debug: {c0 c1} : decl c1 `y:r` (global (indt «nat»)), decl c0 `x:r` (global (indt «nat»)) ?- evar (X0 c0 c1) (global (indt «True»)) (X1 c0 c1) /* suspended on X0, X1 */ [trm (app [global (const «Nat.add»), X0 c0 c1, c1])] Debug: {c0 c1} : decl c1 `y:r` (global (indt «nat»)), decl c0 `x:r` (global (indt «nat»)) ?- evar (X1 c0 c1) (global (indt «True»)) (X2 c0 c1) /* suspended on X1, X2 */ [trm (app [global (const «Nat.add»), X0 c0 c1, c1])] Debug: {c0 c1} : decl c1 `y:r` (global (indt «nat»)), decl c0 `x:r` (global (indt «nat»)) ?- evar (X1 c0 c1) (global (indt «True»)) (X2 c0 c1) /* suspended on X1, X2 */ [trm c0] Debug: {c0 c1} : decl c1 `y:r` (global (indt «nat»)), decl c0 `x:r` (global (indt «nat»)) ?- evar (X0 c0 c1) (global (indt «True»)) (X1 c0 c1) /* suspended on X0, X1 */ YYYYYYYYYYYYYYYYYYYYYYYYYYYY [attribute elpi.loc (leaf-loc File "./tests/test_tactic.v", line 289, column 77, characters 6139-6147:), attribute elpi.phase (leaf-str interp), attribute foo (leaf-str )] XXXXXXXXXXXXXXXXXXXXXXXXXXX [get-option elpi.loc File "./tests/test_tactic.v", line 289, column 77, characters 6139-6147:, get-option elpi.phase interp, get-option foo tt] YYYYYYYYYYYYYYYYYYYYYYYYYYYY [attribute elpi.loc (leaf-loc File "./tests/test_tactic.v", line 289, column 77, characters 6139-6147:), attribute elpi.phase (leaf-str interp), attribute foo (leaf-str )] XXXXXXXXXXXXXXXXXXXXXXXXXXX [get-option elpi.loc File "./tests/test_tactic.v", line 289, column 77, characters 6139-6147:, get-option elpi.phase interp, get-option foo tt] YYYYYYYYYYYYYYYYYYYYYYYYYYYY [attribute elpi.loc (leaf-loc File "./tests/test_tactic.v", line 289, column 77, characters 6139-6147:), attribute elpi.phase (leaf-str interp), attribute bar (leaf-str )] XXXXXXXXXXXXXXXXXXXXXXXXXXX [get-option elpi.loc File "./tests/test_tactic.v", line 289, column 77, characters 6139-6147:, get-option elpi.phase interp, get-option bar tt] YYYYYYYYYYYYYYYYYYYYYYYYYYYY [attribute elpi.loc (leaf-loc File "./tests/test_tactic.v", line 289, column 77, characters 6139-6147:), attribute elpi.phase (leaf-str interp), attribute foo2 (leaf-str )] YYYYYYYYYYYYYYYYYYYYYYYYYYYY [attribute elpi.loc (leaf-loc File "./tests/test_tactic.v", line 290, column 77, characters 6226-6234:), attribute elpi.phase (leaf-str interp), attribute foo (leaf-str )] XXXXXXXXXXXXXXXXXXXXXXXXXXX [get-option elpi.loc File "./tests/test_tactic.v", line 290, column 77, characters 6226-6234:, get-option elpi.phase interp, get-option foo tt] [attribute elpi.loc (leaf-loc File "./tests/test_tactic.v", line 318, column 10, characters 6808-6814:), attribute elpi.phase (leaf-str interp)] Entry binder_constr is [ LEFTA [ "exists2"; "'"; pattern LEVEL "0"; ":"; term LEVEL "200"; ","; term LEVEL "200"; "&"; term LEVEL "200" | "exists2"; "'"; pattern LEVEL "0"; ","; term LEVEL "200"; "&"; term LEVEL "200" | "exists2"; name; ":"; term LEVEL "200"; ","; term LEVEL "200"; "&"; term LEVEL "200" | "exists2"; name; ","; term LEVEL "200"; "&"; term LEVEL "200" | "exists"; "!"; open_binders; ","; term LEVEL "200" | "exists"; open_binders; ","; term LEVEL "200" | "forall"; open_binders; ","; term LEVEL "200" | "fun"; open_binders; "=>"; term LEVEL "200" | "let"; "fix"; fix_decl; "in"; term LEVEL "200" | "let"; "cofix"; cofix_body; "in"; term LEVEL "200" | "let"; "'"; pattern LEVEL "200"; OPT [ "in"; pattern LEVEL "200" ]; ":="; term LEVEL "200"; OPT case_type; "in"; term LEVEL "200" | "let"; name; binders; let_type_cstr; ":="; term LEVEL "200"; "in"; term LEVEL "200" | "let"; [ "("; LIST0 name SEP ","; ")" | "()" ]; as_return_type; ":="; term LEVEL "200"; "in"; term LEVEL "200" | "if"; term LEVEL "200"; as_return_type; "then"; term LEVEL "200"; "else"; term LEVEL "200" | "fix"; fix_decls | "cofix"; cofix_decls ] ] Entry constr is [ LEFTA [ "@"; global; univ_annot | term LEVEL "8" ] ] Entry lconstr is [ LEFTA [ term LEVEL "200" ] ] Entry term is [ "200" RIGHTA [ ] | "100" RIGHTA [ SELF; "<:"; term LEVEL "200" | SELF; "<<:"; term LEVEL "200" | SELF; ":>"; term LEVEL "200" | SELF; ":"; term LEVEL "200" ] | "99" RIGHTA [ SELF; "->"; term LEVEL "200" ] | "95" RIGHTA [ SELF; "<->"; NEXT ] | "90" RIGHTA [ ] | "85" RIGHTA [ SELF; "\\/"; term LEVEL "85" ] | "80" RIGHTA [ SELF; "/\\"; term LEVEL "80" ] | "75" RIGHTA [ "~"; term LEVEL "75" ] | "70" RIGHTA [ SELF; ">"; NEXT | SELF; ">="; NEXT | SELF; "<"; NEXT; "<="; NEXT | SELF; "<"; NEXT; "<"; NEXT | SELF; "<"; NEXT | SELF; "<="; NEXT; "<"; NEXT | SELF; "<="; NEXT; "<="; NEXT | SELF; "<="; NEXT | SELF; "<>"; NEXT; ":>"; NEXT | SELF; "<>"; NEXT | SELF; "="; NEXT; "="; NEXT | SELF; "="; NEXT; ":>"; NEXT | SELF; "="; NEXT ] | "60" RIGHTA [ SELF; "++"; term LEVEL "60" | SELF; "::"; term LEVEL "60" ] | "50" LEFTA [ SELF; "||"; NEXT | SELF; "-"; NEXT | SELF; "+"; NEXT ] | "40" LEFTA [ SELF; "&&"; NEXT | SELF; "/"; NEXT | SELF; "*"; NEXT ] | "35" RIGHTA [ "/"; term LEVEL "35" | "-"; term LEVEL "35" ] | "30" RIGHTA [ SELF; "^"; term LEVEL "30" ] | LEFTA [ IDENT "XX"; FIELD "xxx"; LIST0 arg ] | "10" LEFTA [ SELF; LIST1 arg | "@"; global; univ_annot; LIST0 NEXT | "@"; pattern_ident; LIST1 identref | binder_constr ] | "9" LEFTA [ ".."; term LEVEL "0"; ".." ] | "8" LEFTA [ ] | "1" LEFTA [ SELF; ".2" | SELF; ".1" | SELF; ".("; "@"; global; univ_annot; LIST0 (term LEVEL "9"); ")" | SELF; ".("; global; univ_annot; LIST0 arg; ")" | SELF; "%"; IDENT | SELF; "%_"; IDENT ] | "0" LEFTA [ QUOTATION "lp:" | "{"; "'"; pattern LEVEL "0"; "&"; term LEVEL "200"; "&"; term LEVEL "200"; "}" | "{"; "'"; pattern LEVEL "0"; "&"; term LEVEL "200"; "}" | "{"; "'"; pattern LEVEL "0"; ":"; term LEVEL "200"; "&"; term LEVEL "200"; "&"; term LEVEL "200"; "}" | "{"; "'"; pattern LEVEL "0"; ":"; term LEVEL "200"; "&"; term LEVEL "200"; "}" | "{"; "'"; pattern LEVEL "0"; ":"; term LEVEL "200"; "|"; term LEVEL "200"; "&"; term LEVEL "200"; "}" | "{"; "'"; pattern LEVEL "0"; ":"; term LEVEL "200"; "|"; term LEVEL "200"; "}" | "{"; "'"; pattern LEVEL "0"; "|"; term LEVEL "200"; "&"; term LEVEL "200"; "}" | "{"; "'"; pattern LEVEL "0"; "|"; term LEVEL "200"; "}" | "{"; term LEVEL "99"; "&"; term LEVEL "200"; "&"; term LEVEL "200"; "}" | "{"; term LEVEL "99"; "&"; term LEVEL "200"; "}" | "{"; term LEVEL "99"; ":"; term LEVEL "200"; "&"; term LEVEL "200"; "&"; term LEVEL "200"; "}" | "{"; term LEVEL "99"; ":"; term LEVEL "200"; "&"; term LEVEL "200"; "}" | "{"; term LEVEL "99"; ":"; term LEVEL "200"; "|"; term LEVEL "200"; "&"; term LEVEL "200"; "}" | "{"; term LEVEL "99"; ":"; term LEVEL "200"; "|"; term LEVEL "200"; "}" | "{"; term LEVEL "99"; "|"; term LEVEL "200"; "&"; term LEVEL "200"; "}" | "{"; term LEVEL "99"; "|"; term LEVEL "200"; "}" | "{"; term LEVEL "99"; "}" | IDENT "ltac"; ":"; "("; ltac_expr; ")" | "("; term LEVEL "200"; ","; term LEVEL "200"; ","; LIST1 (term LEVEL "200") SEP ","; ")" | "("; term LEVEL "200"; ","; term LEVEL "200"; ")" | "("; term LEVEL "200"; ")" | "{|"; record_declaration; '|}' | "`{"; term LEVEL "200"; "}" | "`("; term LEVEL "200"; ")" | NUMBER | lookahead_lib_colon; IDENT "lib"; ":"; "@"; qualified_name | lookahead_lib_colon; IDENT "lib"; ":"; qualified_name | atomic_constr | term_match | reference; univ_annot | string | test_array_opening; "["; "|"; array_elems; "|"; lconstr; type_cstr; test_array_closing; "|"; "]"; univ_annot ] ] [attribute elpi.loc (leaf-loc File "./tests/test_tactic.v", line 329, column 12, characters 7061-7082:), attribute elpi.phase (leaf-str interp)] skip int 1 skip str 33 skip trm (global (indt «bool»)) [attribute elpi.loc (leaf-loc File "./tests/test_tactic.v", line 329, column 12, characters 7061-7082:), attribute elpi.phase (leaf-str interp)] skip int 1 skip str 33 skip trm (global (indt «bool»)) nat -> bool -> True : Prop [attribute elpi.loc (leaf-loc File "./tests/test_tactic.v", line 338, column 12, characters 7247-7268:), attribute elpi.phase (leaf-str interp)] [attribute elpi.loc (leaf-loc File "./tests/test_tactic.v", line 338, column 12, characters 7247-7268:), attribute elpi.phase (leaf-str interp)] [attribute elpi.loc (leaf-loc File "./tests/test_tactic.v", line 342, column 30, characters 7348-7354:), attribute elpi.phase (leaf-str interp)] [attribute elpi.loc (leaf-loc File "./tests/test_tactic.v", line 342, column 30, characters 7348-7354:), attribute elpi.phase (leaf-str interp)] [attribute elpi.loc (leaf-loc File "./tests/test_tactic.v", line 350, column 7, characters 7524-7530:), attribute elpi.phase (leaf-str interp)] [attribute elpi.loc (leaf-loc File "./tests/test_tactic.v", line 350, column 7, characters 7524-7530:), attribute elpi.phase (leaf-str interp)] H goal [] X0 (global (indt «True»)) X1 [trm (global (const «H»))] goal [] X0 (global (indt «True»)) X1 [trm (app [global (indt «eq»), global (indt «True»), global (const «H»), global (const «H»)])] goal [] X0 (global (indt «True»)) X1 [trm (global (const «H»))] x1 : nat w : nat Debug: ----<<---- enter: coq.elaborate-skeleton X0 (global (indt «nat»)) X1 ok Debug: ---->>---- exit: coq.elaborate-skeleton X0 (global (indt «nat»)) X1 ok Debug: ----<<---- enter: coq.ltac.collect-goals X1 X2 X3 Debug: ---->>---- exit: coq.ltac.collect-goals X1 [seal (goal [] X4 (global (indt «nat»)) X1 [])] [] File "./tests/test_tactic.v", line 5, characters 28-32: Warning: File "./tests/test_tactic.v", line 5, characters 28-32 Type is linear: name it _Type (discard) or Type_ (fresh variable) [elpi.linear-variable,elpi.typecheck,elpi,default] File "./tests/test_tactic.v", line 342, characters 0-8: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] File "./tests/test_tactic.v", line 351, characters 0-8: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] File "./tests/test_tactic.v", line 422, characters 8-9: Warning: File "./tests/test_tactic.v", line 422, characters 8-9 G is linear: name it _G (discard) or G_ (fresh variable) [elpi.linear-variable,elpi.typecheck,elpi,default] File "./tests/test_tactic.v", line 438, characters 34-35: Warning: File "./tests/test_tactic.v", line 438, characters 34-35 G is linear: name it _G (discard) or G_ (fresh variable) [elpi.linear-variable,elpi.typecheck,elpi,default] Foo.x = 3 : nat Foo.x = 3 : nat Foo.x2 = 4 : nat eq_refl : Foo.x = 5 : Foo.x = 5 A.B.c : nat A.B.c is not universe polymorphic A.B.c is transparent Expands to: Constant elpi.apps.NES.tests.test_NES.A_aux_4.A.B.c Declared in library elpi.apps.NES.tests.test_NES, line 34, characters 11-12 A1.B1.d : nat A1.B1.d is not universe polymorphic A1.B1.d is transparent Expands to: Constant elpi.apps.NES.tests.test_NES.A1_aux_6.A1.B1.d Declared in library elpi.apps.NES.tests.test_NES, line 45, characters 11-12 A1.B1.c : nat A1.B1.c is not universe polymorphic A1.B1.c is transparent Expands to: Constant elpi.apps.NES.tests.test_NES.A1_aux_5.A1.B1.c Declared in library elpi.apps.NES.tests.test_NES, line 42, characters 11-12 x = 5 : nat x2 = 4 : nat B1.c = 1 : nat B1.d = 1 : nat d = 1 : nat A2.B2.f = 2 : nat 1 : nat This.Is.A.Long.Namespace.stuff = 1 : nat = 1 : nat This.Is.A.Long.Namespace.stuff = 2 : nat = 1 : nat This_aux_1.This.Is.A.Long.Namespace.stuff This.Is.A.Long.Namespace.more_stuff This.Is.A.Long.Namespace.stuff This_aux_1.This.Is.A.Long.Namespace.stuff : nat This.Is.A.Long.Namespace.more_stuff : nat This.Is.A.Long.Namespace.stuff : nat stuff = 2 : nat default nat_def : nat : nat File "./apps/derive/theories/derive/param1.v", line 103, characters 6-14: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] [p 1, p 2, p 3, p 4, p 5, p 6, p 7, p 8, p 9, p 10, p 11, p 12, p 13, p 14, p 15, p 16, p 17, p 18, p 19, p 20, p 21, p 22, p 23, p 24, p 25, p 26, p 27, p 28, p 29, p 30, p 31, p 32, p 33, p 34, p 35, p 36, p 37, p 38, p 39, p 40, p 41, p 42, p 43, p 44, p 45, p 46, p 47, p 48, p 49, p 50, p 51, p 52, p 53, p 54, p 55, p 56, p 57, p 58, p 59, p 60, p 61, p 62, p 63, p 64, p 65, p 66, p 67, p 68, p 69, p 70, p 71, p 72, p 73, p 74, p 75, p 76, p 77, p 78, p 79, p 80, p 81, p 82, p 83, p 84, p 85, p 86, p 87, p 88, p 89, p 90, p 91, p 92, p 93, p 94, p 95, p 96, p 97, p 98, p 99, p 100, p 101, p 102, p 103, p 104, p 105, p 106, p 107, p 108, p 109, p 110, p 111, p 112, p 113, p 114, p 115, p 116, p 117, p 118, p 119, p 120, p 121, p 122, p 123, p 124, p 125, p 126, p 127, p 128, p 129, p 130, p 131, p 132, p 133, p 134, p 135, p 136, p 137, p 138, p 139, p 140, p 141, p 142, p 143, p 144, p 145, p 146, p 147, p 148, p 149, p 150, p 151, p 152, p 153, p 154, p 155, p 156, p 157, p 158, p 159, p 160, p 161, p 162, p 163, p 164, p 165, p 166, p 167, p 168, p 169, p 170, p 171, p 172, p 173, p 174, p 175, p 176, p 177, p 178, p 179, p 180, p 181, p 182, p 183, p 184, p 185, p 186, p 187, p 188, p 189, p 190, p 191, p 192, p 193, p 194, p 195, p 196, p 197, p 198, p 199, p 200, p 201, p 202, p 203, p 204, p 205, p 206, p 207, p 208, p 209, p 210, p 211, p 212, p 213, p 214, p 215, p 216, p 217, p 218, p 219, p 220, p 221, p 222, p 223, p 224, p 225, p 226, p 227, p 228, p 229, p 230, p 231, p 232, p 233, p 234, p 235, p 236, p 237, p 238, p 239, p 240, p 241, p 242, p 243, p 244, p 245, p 246, p 247, p 248, p 249, p 250, p 251, p 252, p 253, p 254, p 255, p 256, p 257, p 258, p 259, p 260, p 261, p 262, p 263, p 264, p 265, p 266, p 267, p 268, p 269, p 270, p 271, p 272, p 273, p 274, p 275, p 276, p 277, p 278, p 279, p 280, p 281, p 282, p 283, p 284, p 285, p 286, p 287, p 288, p 289, p 290, p 291, p 292, p 293, p 294, p 295, p 296, p 297, p 298, p 299, p 300, p 301, p 302, p 303, p 304, p 305, p 306, p 307, p 308, p 309, p 310, p 311, p 312, p 313, p 314, p 315, p 316, p 317, p 318, p 319, p 320, p 321, p 322, p 323, p 324, p 325, p 326, p 327, p 328, p 329, p 330, p 331, p 332, p 333, p 334, p 335, p 336, p 337, p 338, p 339, p 340, p 341, p 342, p 343, p 344, p 345, p 346, p 347, p 348, p 349, p 350, p 351, p 352, p 353, p 354, p 355, p 356, p 357, p 358, p 359, p 360, p 361, p 362, p 363, p 364, p 365, p 366, p 367, p 368, p 369, p 370, p 371, p 372, p 373, p 374, p 375, p 376, p 377, p 378, p 379, p 380, p 381, p 382, p 383, p 384, p 385, p 386, p 387, p 388, p 389, p 390, p 391, p 392, p 393, p 394, p 395, p 396, p 397, p 398, p 399, p 400, p 401, p 402, p 403, p 404, p 405, p 406, p 407, p 408, p 409, p 410, p 411, p 412, p 413, p 414, p 415, p 416, p 417, p 418, p 419, p 420, p 421, p 422, p 423, p 424, p 425, p 426, p 427, p 428, p 429, p 430, p 431, p 432, p 433, p 434, p 435, p 436, p 437, p 438, p 439, p 440, p 441, p 442, p 443, p 444, p 445, p 446, p 447, p 448, p 449, p 450, p 451, p 452, p 453, p 454, p 455, p 456, p 457, p 458, p 459, p 460, p 461, p 462, p 463, p 464, p 465, p 466, p 467, p 468, p 469, p 470, p 471, p 472, p 473, p 474, p 475, p 476, p 477, p 478, p 479, p 480, p 481, p 482, p 483, p 484, p 485, p 486, p 487, p 488, p 489, p 490, p 491, p 492, p 493, p 494, p 495, p 496, p 497, p 498, p 499, p 500, p 501, p 502, p 503, p 504, p 505, p 506, p 507, p 508, p 509, p 510, p 511, p 512, p 513, p 514, p 515, p 516, p 517, p 518, p 519, p 520, p 521, p 522, p 523, p 524, p 525, p 526, p 527, p 528, p 529, p 530, p 531, p 532, p 533, p 534, p 535, p 536, p 537, p 538, p 539, p 540, p 541, p 542, p 543, p 544, p 545, p 546, p 547, p 548, p 549, p 550, p 551, p 552, p 553, p 554, p 555, p 556, p 557, p 558, p 559, p 560, p 561, p 562, p 563, p 564, p 565, p 566, p 567, p 568, p 569, p 570, p 571, p 572, p 573, p 574, p 575, p 576, p 577, p 578, p 579, p 580, p 581, p 582, p 583, p 584, p 585, p 586, p 587, p 588, p 589, p 590, p 591, p 592, p 593, p 594, p 595, p 596, p 597, p 598, p 599, p 600, p 601, p 602, p 603, p 604, p 605, p 606, p 607, p 608, p 609, p 610, p 611, p 612, p 613, p 614, p 615, p 616, p 617, p 618, p 619, p 620, p 621, p 622, p 623, p 624, p 625, p 626, p 627, p 628, p 629, p 630, p 631, p 632, p 633, p 634, p 635, p 636, p 637, p 638, p 639, p 640, p 641, p 642, p 643, p 644, p 645, p 646, p 647, p 648, p 649, p 650, p 651, p 652, p 653, p 654, p 655, p 656, p 657, p 658, p 659, p 660, p 661, p 662, p 663, p 664, p 665, p 666, p 667, p 668, p 669, p 670, p 671, p 672, p 673, p 674, p 675, p 676, p 677, p 678, p 679, p 680, p 681, p 682, p 683, p 684, p 685, p 686, p 687, p 688, p 689, p 690, p 691, p 692, p 693, p 694, p 695, p 696, p 697, p 698, p 699, p 700, p 701, p 702, p 703, p 704, p 705, p 706, p 707, p 708, p 709, p 710, p 711, p 712, p 713, p 714, p 715, p 716, p 717, p 718, p 719, p 720, p 721, p 722, p 723, p 724, p 725, p 726, p 727, p 728, p 729, p 730, p 731, p 732, p 733, p 734, p 735, p 736, p 737, p 738, p 739, p 740, p 741, p 742, p 743, p 744, p 745, p 746, p 747, p 748, p 749, p 750, p 751, p 752, p 753, p 754, p 755, p 756, p 757, p 758, p 759, p 760, p 761, p 762, p 763, p 764, p 765, p 766, p 767, p 768, p 769, p 770, p 771, p 772, p 773, p 774, p 775, p 776, p 777, p 778, p 779, p 780, p 781, p 782, p 783, p 784, p 785, p 786, p 787, p 788, p 789, p 790, p 791, p 792, p 793, p 794, p 795, p 796, p 797, p 798, p 799, p 800, p 801, p 802, p 803, p 804, p 805, p 806, p 807, p 808, p 809, p 810, p 811, p 812, p 813, p 814, p 815, p 816, p 817, p 818, p 819, p 820, p 821, p 822, p 823, p 824, p 825, p 826, p 827, p 828, p 829, p 830, p 831, p 832, p 833, p 834, p 835, p 836, p 837, p 838, p 839, p 840, p 841, p 842, p 843, p 844, p 845, p 846, p 847, p 848, p 849, p 850, p 851, p 852, p 853, p 854, p 855, p 856, p 857, p 858, p 859, p 860, p 861, p 862, p 863, p 864, p 865, p 866, p 867, p 868, p 869, p 870, p 871, p 872, p 873, p 874, p 875, p 876, p 877, p 878, p 879, p 880, p 881, p 882, p 883, p 884, p 885, p 886, p 887, p 888, p 889, p 890, p 891, p 892, p 893, p 894, p 895, p 896, p 897, p 898, p 899, p 900, p 901, p 902, p 903, p 904, p 905, p 906, p 907, p 908, p 909, p 910, p 911, p 912, p 913, p 914, p 915, p 916, p 917, p 918, p 919, p 920, p 921, p 922, p 923, p 924, p 925, p 926, p 927, p 928, p 929, p 930, p 931, p 932, p 933, p 934, p 935, p 936, p 937, p 938, p 939, p 940, p 941, p 942, p 943, p 944, p 945, p 946, p 947, p 948, p 949, p 950, p 951, p 952, p 953, p 954, p 955, p 956, p 957, p 958, p 959, p 960, p 961, p 962, p 963, p 964, p 965, p 966, p 967, p 968, p 969, p 970, p 971, p 972, p 973, p 974, p 975, p 976, p 977, p 978, p 979, p 980, p 981, p 982, p 983, p 984, p 985, p 986, p 987, p 988, p 989, p 990, p 991, p 992, p 993, p 994, p 995, p 996, p 997, p 998, p 999, p 1000, p 1001, p 1002, p 1003, p 1004, p 1005, p 1006, p 1007, p 1008, p 1009, p 1010, p 1011, p 1012, p 1013, p 1014, p 1015, p 1016, p 1017, p 1018, p 1019, p 1020, p 1021, p 1022, p 1023, p 1024, p 1025, p 1026, p 1027, p 1028, p 1029, p 1030, p 1031, p 1032, p 1033, p 1034, p 1035, p 1036, p 1037, p 1038, p 1039, p 1040, p 1041, p 1042, p 1043, p 1044, p 1045, p 1046, p 1047, p 1048, p 1049, p 1050, p 1051, p 1052, p 1053, p 1054, p 1055, p 1056, p 1057, p 1058, p 1059, p 1060, p 1061, p 1062, p 1063, p 1064, p 1065, p 1066, p 1067, p 1068, p 1069, p 1070, p 1071, p 1072, p 1073, p 1074, p 1075, p 1076, p 1077, p 1078, p 1079, p 1080, p 1081, p 1082, p 1083, p 1084, p 1085, p 1086, p 1087, p 1088, p 1089, p 1090, p 1091, p 1092, p 1093, p 1094, p 1095, p 1096, p 1097, p 1098, p 1099, p 1100, p 1101, p 1102, p 1103, p 1104, p 1105, p 1106, p 1107, p 1108, p 1109, p 1110, p 1111, p 1112, p 1113, p 1114, p 1115, p 1116, p 1117, p 1118, p 1119, p 1120, p 1121, p 1122, p 1123, p 1124, p 1125, p 1126, p 1127, p 1128, p 1129, p 1130, p 1131, p 1132, p 1133, p 1134, p 1135, p 1136, p 1137, p 1138, p 1139, p 1140, p 1141, p 1142, p 1143, p 1144, p 1145, p 1146, p 1147, p 1148, p 1149, p 1150, p 1151, p 1152, p 1153, p 1154, p 1155, p 1156, p 1157, p 1158, p 1159, p 1160, p 1161, p 1162, p 1163, p 1164, p 1165, p 1166, p 1167, p 1168, p 1169, p 1170, p 1171, p 1172, p 1173, p 1174, p 1175, p 1176, p 1177, p 1178, p 1179, p 1180, p 1181, p 1182, p 1183, p 1184, p 1185, p 1186, p 1187, p 1188, p 1189, p 1190, p 1191, p 1192, p 1193, p 1194, p 1195, p 1196, p 1197, p 1198, p 1199, p 1200, p 1201, p 1202, p 1203, p 1204, p 1205, p 1206, p 1207, p 1208, p 1209, p 1210, p 1211, p 1212, p 1213, p 1214, p 1215, p 1216, p 1217, p 1218, p 1219, p 1220, p 1221, p 1222, p 1223, p 1224, p 1225, p 1226, p 1227, p 1228, p 1229, p 1230, p 1231, p 1232, p 1233, p 1234, p 1235, p 1236, p 1237, p 1238, p 1239, p 1240, p 1241, p 1242, p 1243, p 1244, p 1245, p 1246, p 1247, p 1248, p 1249, p 1250, p 1251, p 1252, p 1253, p 1254, p 1255, p 1256, p 1257, p 1258, p 1259, p 1260, p 1261, p 1262, p 1263, p 1264, p 1265, p 1266, p 1267, p 1268, p 1269, p 1270, p 1271, p 1272, p 1273, p 1274, p 1275, p 1276, p 1277, p 1278, p 1279, p 1280, p 1281, p 1282, p 1283, p 1284, p 1285, p 1286, p 1287, p 1288, p 1289, p 1290, p 1291, p 1292, p 1293, p 1294, p 1295, p 1296, p 1297, p 1298, p 1299, p 1300, p 1301, p 1302, p 1303, p 1304, p 1305, p 1306, p 1307, p 1308, p 1309, p 1310, p 1311, p 1312, p 1313, p 1314, p 1315, p 1316, p 1317, p 1318, p 1319, p 1320, p 1321, p 1322, p 1323, p 1324, p 1325, p 1326, p 1327, p 1328, p 1329, p 1330, p 1331, p 1332, p 1333, p 1334, p 1335, p 1336, p 1337, p 1338, p 1339, p 1340, p 1341, p 1342, p 1343, p 1344, p 1345, p 1346, p 1347, p 1348, p 1349, p 1350, p 1351, p 1352, p 1353, p 1354, p 1355, p 1356, p 1357, p 1358, p 1359, p 1360, p 1361, p 1362, p 1363, p 1364, p 1365, p 1366, p 1367, p 1368, p 1369, p 1370, p 1371, p 1372, p 1373, p 1374, p 1375, p 1376, p 1377, p 1378, p 1379, p 1380, p 1381, p 1382, p 1383, p 1384, p 1385, p 1386, p 1387, p 1388, p 1389, p 1390, p 1391, p 1392, p 1393, p 1394, p 1395, p 1396, p 1397, p 1398, p 1399, p 1400, p 1401, p 1402, p 1403, p 1404, p 1405, p 1406, p 1407, p 1408, p 1409, p 1410, p 1411, p 1412, p 1413, p 1414, p 1415, p 1416, p 1417, p 1418, p 1419, p 1420, p 1421, p 1422, p 1423, p 1424, p 1425, p 1426, p 1427, p 1428, p 1429, p 1430, p 1431, p 1432, p 1433, p 1434, p 1435, p 1436, p 1437, p 1438, p 1439, p 1440, p 1441, p 1442, p 1443, p 1444, p 1445, p 1446, p 1447, p 1448, p 1449, p 1450, p 1451, p 1452, p 1453, p 1454, p 1455, p 1456, p 1457, p 1458, p 1459, p 1460, p 1461, p 1462, p 1463, p 1464, p 1465, p 1466, p 1467, p 1468, p 1469, p 1470, p 1471, p 1472, p 1473, p 1474, p 1475, p 1476, p 1477, p 1478, p 1479, p 1480, p 1481, p 1482, p 1483, p 1484, p 1485, p 1486, p 1487, p 1488, p 1489, p 1490, p 1491, p 1492, p 1493, p 1494, p 1495, p 1496, p 1497, p 1498, p 1499, p 1500, p 1501, p 1502, p 1503, p 1504, p 1505, p 1506, p 1507, p 1508, p 1509, p 1510, p 1511, p 1512, p 1513, p 1514, p 1515, p 1516, p 1517, p 1518, p 1519, p 1520, p 1521, p 1522, p 1523, p 1524, p 1525, p 1526, p 1527, p 1528, p 1529, p 1530, p 1531, p 1532, p 1533, p 1534, p 1535, p 1536, p 1537, p 1538, p 1539, p 1540, p 1541, p 1542, p 1543, p 1544, p 1545, p 1546, p 1547, p 1548, p 1549, p 1550, p 1551, p 1552, p 1553, p 1554, p 1555, p 1556, p 1557, p 1558, p 1559, p 1560, p 1561, p 1562, p 1563, p 1564, p 1565, p 1566, p 1567, p 1568, p 1569, p 1570, p 1571, p 1572, p 1573, p 1574, p 1575, p 1576, p 1577, p 1578, p 1579, p 1580, p 1581, p 1582, p 1583, p 1584, p 1585, p 1586, p 1587, p 1588, p 1589, p 1590, p 1591, p 1592, p 1593, p 1594, p 1595, p 1596, p 1597, p 1598, p 1599, p 1600, p 1601, p 1602, p 1603, p 1604, p 1605, p 1606, p 1607, p 1608, p 1609, p 1610, p 1611, p 1612, p 1613, p 1614, p 1615, p 1616, p 1617, p 1618, p 1619, p 1620, p 1621, p 1622, p 1623, p 1624, p 1625, p 1626, p 1627, p 1628, p 1629, p 1630, p 1631, p 1632, p 1633, p 1634, p 1635, p 1636, p 1637, p 1638, p 1639, p 1640, p 1641, p 1642, p 1643, p 1644, p 1645, p 1646, p 1647, p 1648, p 1649, p 1650, p 1651, p 1652, p 1653, p 1654, p 1655, p 1656, p 1657, p 1658, p 1659, p 1660, p 1661, p 1662, p 1663, p 1664, p 1665, p 1666, p 1667, p 1668, p 1669, p 1670, p 1671, p 1672, p 1673, p 1674, p 1675, p 1676, p 1677, p 1678, p 1679, p 1680, p 1681, p 1682, p 1683, p 1684, p 1685, p 1686, p 1687, p 1688, p 1689, p 1690, p 1691, p 1692, p 1693, p 1694, p 1695, p 1696, p 1697, p 1698, p 1699, p 1700, p 1701, p 1702, p 1703, p 1704, p 1705, p 1706, p 1707, p 1708, p 1709, p 1710, p 1711, p 1712, p 1713, p 1714, p 1715, p 1716, p 1717, p 1718, p 1719, p 1720, p 1721, p 1722, p 1723, p 1724, p 1725, p 1726, p 1727, p 1728, p 1729, p 1730, p 1731, p 1732, p 1733, p 1734, p 1735, p 1736, p 1737, p 1738, p 1739, p 1740, p 1741, p 1742, p 1743, p 1744, p 1745, p 1746, p 1747, p 1748, p 1749, p 1750, p 1751, p 1752, p 1753, p 1754, p 1755, p 1756, p 1757, p 1758, p 1759, p 1760, p 1761, p 1762, p 1763, p 1764, p 1765, p 1766, p 1767, p 1768, p 1769, p 1770, p 1771, p 1772, p 1773, p 1774, p 1775, p 1776, p 1777, p 1778, p 1779, p 1780, p 1781, p 1782, p 1783, p 1784, p 1785, p 1786, p 1787, p 1788, p 1789, p 1790, p 1791, p 1792, p 1793, p 1794, p 1795, p 1796, p 1797, p 1798, p 1799, p 1800, p 1801, p 1802, p 1803, p 1804, p 1805, p 1806, p 1807, p 1808, p 1809, p 1810, p 1811, p 1812, p 1813, p 1814, p 1815, p 1816, p 1817, p 1818, p 1819, p 1820, p 1821, p 1822, p 1823, p 1824, p 1825, p 1826, p 1827, p 1828, p 1829, p 1830, p 1831, p 1832, p 1833, p 1834, p 1835, p 1836, p 1837, p 1838, p 1839, p 1840, p 1841, p 1842, p 1843, p 1844, p 1845, p 1846, p 1847, p 1848, p 1849, p 1850, p 1851, p 1852, p 1853, p 1854, p 1855, p 1856, p 1857, p 1858, p 1859, p 1860, p 1861, p 1862, p 1863, p 1864, p 1865, p 1866, p 1867, p 1868, p 1869, p 1870, p 1871, p 1872, p 1873, p 1874, p 1875, p 1876, p 1877, p 1878, p 1879, p 1880, p 1881, p 1882, p 1883, p 1884, p 1885, p 1886, p 1887, p 1888, p 1889, p 1890, p 1891, p 1892, p 1893, p 1894, p 1895, p 1896, p 1897, p 1898, p 1899, p 1900, p 1901, p 1902, p 1903, p 1904, p 1905, p 1906, p 1907, p 1908, p 1909, p 1910, p 1911, p 1912, p 1913, p 1914, p 1915, p 1916, p 1917, p 1918, p 1919, p 1920, p 1921, p 1922, p 1923, p 1924, p 1925, p 1926, p 1927, p 1928, p 1929, p 1930, p 1931, p 1932, p 1933, p 1934, p 1935, p 1936, p 1937, p 1938, p 1939, p 1940, p 1941, p 1942, p 1943, p 1944, p 1945, p 1946, p 1947, p 1948, p 1949, p 1950, p 1951, p 1952, p 1953, p 1954, p 1955, p 1956, p 1957, p 1958, p 1959, p 1960, p 1961, p 1962, p 1963, p 1964, p 1965, p 1966, p 1967, p 1968, p 1969, p 1970, p 1971, p 1972, p 1973, p 1974, p 1975, p 1976, p 1977, p 1978, p 1979, p 1980, p 1981, p 1982, p 1983, p 1984, p 1985, p 1986, p 1987, p 1988, p 1989, p 1990, p 1991, p 1992, p 1993, p 1994, p 1995, p 1996, p 1997, p 1998, p 1999, p 2000, p 2001, p 2002, p 2003, p 2004, p 2005, p 2006, p 2007, p 2008, p 2009, p 2010, p 2011, p 2012, p 2013, p 2014, p 2015, p 2016, p 2017, p 2018, p 2019, p 2020, p 2021, p 2022, p 2023, p 2024, p 2025, p 2026, p 2027, p 2028, p 2029, p 2030, p 2031, p 2032, p 2033, p 2034, p 2035, p 2036, p 2037, p 2038, p 2039, p 2040, p 2041, p 2042, p 2043, p 2044, p 2045, p 2046, p 2047, p 2048, p 2049, p 2050, p 2051, p 2052, p 2053, p 2054, p 2055, p 2056, p 2057, p 2058, p 2059, p 2060, p 2061, p 2062, p 2063, p 2064, p 2065, p 2066, p 2067, p 2068, p 2069, p 2070, p 2071, p 2072, p 2073, p 2074, p 2075, p 2076, p 2077, p 2078, p 2079, p 2080, p 2081, p 2082, p 2083, p 2084, p 2085, p 2086, p 2087, p 2088, p 2089, p 2090, p 2091, p 2092, p 2093, p 2094, p 2095, p 2096, p 2097, p 2098, p 2099, p 2100, p 2101, p 2102, p 2103, p 2104, p 2105, p 2106, p 2107, p 2108, p 2109, p 2110, p 2111, p 2112, p 2113, p 2114, p 2115, p 2116, p 2117, p 2118, p 2119, p 2120, p 2121, p 2122, p 2123, p 2124, p 2125, p 2126, p 2127, p 2128, p 2129, p 2130, p 2131, p 2132, p 2133, p 2134, p 2135, p 2136, p 2137, p 2138, p 2139, p 2140, p 2141, p 2142, p 2143, p 2144, p 2145, p 2146, p 2147, p 2148, p 2149, p 2150, p 2151, p 2152, p 2153, p 2154, p 2155, p 2156, p 2157, p 2158, p 2159, p 2160, p 2161, p 2162, p 2163, p 2164, p 2165, p 2166, p 2167, p 2168, p 2169, p 2170, p 2171, p 2172, p 2173, p 2174, p 2175, p 2176, p 2177, p 2178, p 2179, p 2180, p 2181, p 2182, p 2183, p 2184, p 2185, p 2186, p 2187, p 2188, p 2189, p 2190, p 2191, p 2192, p 2193, p 2194, p 2195, p 2196, p 2197, p 2198, p 2199, p 2200, p 2201, p 2202, p 2203, p 2204, p 2205, p 2206, p 2207, p 2208, p 2209, p 2210, p 2211, p 2212, p 2213, p 2214, p 2215, p 2216, p 2217, p 2218, p 2219, p 2220, p 2221, p 2222, p 2223, p 2224, p 2225, p 2226, p 2227, p 2228, p 2229, p 2230, p 2231, p 2232, p 2233, p 2234, p 2235, p 2236, p 2237, p 2238, p 2239, p 2240, p 2241, p 2242, p 2243, p 2244, p 2245, p 2246, p 2247, p 2248, p 2249, p 2250, p 2251, p 2252, p 2253, p 2254, p 2255, p 2256, p 2257, p 2258, p 2259, p 2260, p 2261, p 2262, p 2263, p 2264, p 2265, p 2266, p 2267, p 2268, p 2269, p 2270, p 2271, p 2272, p 2273, p 2274, p 2275, p 2276, p 2277, p 2278, p 2279, p 2280, p 2281, p 2282, p 2283, p 2284, p 2285, p 2286, p 2287, p 2288, p 2289, p 2290, p 2291, p 2292, p 2293, p 2294, p 2295, p 2296, p 2297, p 2298, p 2299, p 2300, p 2301, p 2302, p 2303, p 2304, p 2305, p 2306, p 2307, p 2308, p 2309, p 2310, p 2311, p 2312, p 2313, p 2314, p 2315, p 2316, p 2317, p 2318, p 2319, p 2320, p 2321, p 2322, p 2323, p 2324, p 2325, p 2326, p 2327, p 2328, p 2329, p 2330, p 2331, p 2332, p 2333, p 2334, p 2335, p 2336, p 2337, p 2338, p 2339, p 2340, p 2341, p 2342, p 2343, p 2344, p 2345, p 2346, p 2347, p 2348, p 2349, p 2350, p 2351, p 2352, p 2353, p 2354, p 2355, p 2356, p 2357, p 2358, p 2359, p 2360, p 2361, p 2362, p 2363, p 2364, p 2365, p 2366, p 2367, p 2368, p 2369, p 2370, p 2371, p 2372, p 2373, p 2374, p 2375, p 2376, p 2377, p 2378, p 2379, p 2380, p 2381, p 2382, p 2383, p 2384, p 2385, p 2386, p 2387, p 2388, p 2389, p 2390, p 2391, p 2392, p 2393, p 2394, p 2395, p 2396, p 2397, p 2398, p 2399, p 2400, p 2401, p 2402, p 2403, p 2404, p 2405, p 2406, p 2407, p 2408, p 2409, p 2410, p 2411, p 2412, p 2413, p 2414, p 2415, p 2416, p 2417, p 2418, p 2419, p 2420, p 2421, p 2422, p 2423, p 2424, p 2425, p 2426, p 2427, p 2428, p 2429, p 2430, p 2431, p 2432, p 2433, p 2434, p 2435, p 2436, p 2437, p 2438, p 2439, p 2440, p 2441, p 2442, p 2443, p 2444, p 2445, p 2446, p 2447, p 2448, p 2449, p 2450, p 2451, p 2452, p 2453, p 2454, p 2455, p 2456, p 2457, p 2458, p 2459, p 2460, p 2461, p 2462, p 2463, p 2464, p 2465, p 2466, p 2467, p 2468, p 2469, p 2470, p 2471, p 2472, p 2473, p 2474, p 2475, p 2476, p 2477, p 2478, p 2479, p 2480, p 2481, p 2482, p 2483, p 2484, p 2485, p 2486, p 2487, p 2488, p 2489, p 2490, p 2491, p 2492, p 2493, p 2494, p 2495, p 2496, p 2497, p 2498, p 2499, p 2500, p 2501, p 2502, p 2503, p 2504, p 2505, p 2506, p 2507, p 2508, p 2509, p 2510, p 2511, p 2512, p 2513, p 2514, p 2515, p 2516, p 2517, p 2518, p 2519, p 2520, p 2521, p 2522, p 2523, p 2524, p 2525, p 2526, p 2527, p 2528, p 2529, p 2530, p 2531, p 2532, p 2533, p 2534, p 2535, p 2536, p 2537, p 2538, p 2539, p 2540, p 2541, p 2542, p 2543, p 2544, p 2545, p 2546, p 2547, p 2548, p 2549, p 2550, p 2551, p 2552, p 2553, p 2554, p 2555, p 2556, p 2557, p 2558, p 2559, p 2560, p 2561, p 2562, p 2563, p 2564, p 2565, p 2566, p 2567, p 2568, p 2569, p 2570, p 2571, p 2572, p 2573, p 2574, p 2575, p 2576, p 2577, p 2578, p 2579, p 2580, p 2581, p 2582, p 2583, p 2584, p 2585, p 2586, p 2587, p 2588, p 2589, p 2590, p 2591, p 2592, p 2593, p 2594, p 2595, p 2596, p 2597, p 2598, p 2599, p 2600, p 2601, p 2602, p 2603, p 2604, p 2605, p 2606, p 2607, p 2608, p 2609, p 2610, p 2611, p 2612, p 2613, p 2614, p 2615, p 2616, p 2617, p 2618, p 2619, p 2620, p 2621, p 2622, p 2623, p 2624, p 2625, p 2626, p 2627, p 2628, p 2629, p 2630, p 2631, p 2632, p 2633, p 2634, p 2635, p 2636, p 2637, p 2638, p 2639, p 2640, p 2641, p 2642, p 2643, p 2644, p 2645, p 2646, p 2647, p 2648, p 2649, p 2650, p 2651, p 2652, p 2653, p 2654, p 2655, p 2656, p 2657, p 2658, p 2659, p 2660, p 2661, p 2662, p 2663, p 2664, p 2665, p 2666, p 2667, p 2668, p 2669, p 2670, p 2671, p 2672, p 2673, p 2674, p 2675, p 2676, p 2677, p 2678, p 2679, p 2680, p 2681, p 2682, p 2683, p 2684, p 2685, p 2686, p 2687, p 2688, p 2689, p 2690, p 2691, p 2692, p 2693, p 2694, p 2695, p 2696, p 2697, p 2698, p 2699, p 2700, p 2701, p 2702, p 2703, p 2704, p 2705, p 2706, p 2707, p 2708, p 2709, p 2710, p 2711, p 2712, p 2713, p 2714, p 2715, p 2716, p 2717, p 2718, p 2719, p 2720, p 2721, p 2722, p 2723, p 2724, p 2725, p 2726, p 2727, p 2728, p 2729, p 2730, p 2731, p 2732, p 2733, p 2734, p 2735, p 2736, p 2737, p 2738, p 2739, p 2740, p 2741, p 2742, p 2743, p 2744, p 2745, p 2746, p 2747, p 2748, p 2749, p 2750, p 2751, p 2752, p 2753, p 2754, p 2755, p 2756, p 2757, p 2758, p 2759, p 2760, p 2761, p 2762, p 2763, p 2764, p 2765, p 2766, p 2767, p 2768, p 2769, p 2770, p 2771, p 2772, p 2773, p 2774, p 2775, p 2776, p 2777, p 2778, p 2779, p 2780, p 2781, p 2782, p 2783, p 2784, p 2785, p 2786, p 2787, p 2788, p 2789, p 2790, p 2791, p 2792, p 2793, p 2794, p 2795, p 2796, p 2797, p 2798, p 2799, p 2800, p 2801, p 2802, p 2803, p 2804, p 2805, p 2806, p 2807, p 2808, p 2809, p 2810, p 2811, p 2812, p 2813, p 2814, p 2815, p 2816, p 2817, p 2818, p 2819, p 2820, p 2821, p 2822, p 2823, p 2824, p 2825, p 2826, p 2827, p 2828, p 2829, p 2830, p 2831, p 2832, p 2833, p 2834, p 2835, p 2836, p 2837, p 2838, p 2839, p 2840, p 2841, p 2842, p 2843, p 2844, p 2845, p 2846, p 2847, p 2848, p 2849, p 2850, p 2851, p 2852, p 2853, p 2854, p 2855, p 2856, p 2857, p 2858, p 2859, p 2860, p 2861, p 2862, p 2863, p 2864, p 2865, p 2866, p 2867, p 2868, p 2869, p 2870, p 2871, p 2872, p 2873, p 2874, p 2875, p 2876, p 2877, p 2878, p 2879, p 2880, p 2881, p 2882, p 2883, p 2884, p 2885, p 2886, p 2887, p 2888, p 2889, p 2890, p 2891, p 2892, p 2893, p 2894, p 2895, p 2896, p 2897, p 2898, p 2899, p 2900, p 2901, p 2902, p 2903, p 2904, p 2905, p 2906, p 2907, p 2908, p 2909, p 2910, p 2911, p 2912, p 2913, p 2914, p 2915, p 2916, p 2917, p 2918, p 2919, p 2920, p 2921, p 2922, p 2923, p 2924, p 2925, p 2926, p 2927, p 2928, p 2929, p 2930, p 2931, p 2932, p 2933, p 2934, p 2935, p 2936, p 2937, p 2938, p 2939, p 2940, p 2941, p 2942, p 2943, p 2944, p 2945, p 2946, p 2947, p 2948, p 2949, p 2950, p 2951, p 2952, p 2953, p 2954, p 2955, p 2956, p 2957, p 2958, p 2959, p 2960, p 2961, p 2962, p 2963, p 2964, p 2965, p 2966, p 2967, p 2968, p 2969, p 2970, p 2971, p 2972, p 2973, p 2974, p 2975, p 2976, p 2977, p 2978, p 2979, p 2980, p 2981, p 2982, p 2983, p 2984, p 2985, p 2986, p 2987, p 2988, p 2989, p 2990, p 2991, p 2992, p 2993, p 2994, p 2995, p 2996, p 2997, p 2998, p 2999, p 3000, p 3001, p 3002, p 3003, p 3004, p 3005, p 3006, p 3007, p 3008, p 3009, p 3010, p 3011, p 3012, p 3013, p 3014, p 3015, p 3016, p 3017, p 3018, p 3019, p 3020, p 3021, p 3022, p 3023, p 3024, p 3025, p 3026, p 3027, p 3028, p 3029, p 3030, p 3031, p 3032, p 3033, p 3034, p 3035, p 3036, p 3037, p 3038, p 3039, p 3040, p 3041, p 3042, p 3043, p 3044, p 3045, p 3046, p 3047, p 3048, p 3049, p 3050, p 3051, p 3052, p 3053, p 3054, p 3055, p 3056, p 3057, p 3058, p 3059, p 3060, p 3061, p 3062, p 3063, p 3064, p 3065, p 3066, p 3067, p 3068, p 3069, p 3070, p 3071, p 3072, p 3073, p 3074, p 3075, p 3076, p 3077, p 3078, p 3079, p 3080, p 3081, p 3082, p 3083, p 3084, p 3085, p 3086, p 3087, p 3088, p 3089, p 3090, p 3091, p 3092, p 3093, p 3094, p 3095, p 3096, p 3097, p 3098, p 3099, p 3100, p 3101, p 3102, p 3103, p 3104, p 3105, p 3106, p 3107, p 3108, p 3109, p 3110, p 3111, p 3112, p 3113, p 3114, p 3115, p 3116, p 3117, p 3118, p 3119, p 3120, p 3121, p 3122, p 3123, p 3124, p 3125, p 3126, p 3127, p 3128, p 3129, p 3130, p 3131, p 3132, p 3133, p 3134, p 3135, p 3136, p 3137, p 3138, p 3139, p 3140, p 3141, p 3142, p 3143, p 3144, p 3145, p 3146, p 3147, p 3148, p 3149, p 3150, p 3151, p 3152, p 3153, p 3154, p 3155, p 3156, p 3157, p 3158, p 3159, p 3160, p 3161, p 3162, p 3163, p 3164, p 3165, p 3166, p 3167, p 3168, p 3169, p 3170, p 3171, p 3172, p 3173, p 3174, p 3175, p 3176, p 3177, p 3178, p 3179, p 3180, p 3181, p 3182, p 3183, p 3184, p 3185, p 3186, p 3187, p 3188, p 3189, p 3190, p 3191, p 3192, p 3193, p 3194, p 3195, p 3196, p 3197, p 3198, p 3199, p 3200, p 3201, p 3202, p 3203, p 3204, p 3205, p 3206, p 3207, p 3208, p 3209, p 3210, p 3211, p 3212, p 3213, p 3214, p 3215, p 3216, p 3217, p 3218, p 3219, p 3220, p 3221, p 3222, p 3223, p 3224, p 3225, p 3226, p 3227, p 3228, p 3229, p 3230, p 3231, p 3232, p 3233, p 3234, p 3235, p 3236, p 3237, p 3238, p 3239, p 3240, p 3241, p 3242, p 3243, p 3244, p 3245, p 3246, p 3247, p 3248, p 3249, p 3250, p 3251, p 3252, p 3253, p 3254, p 3255, p 3256, p 3257, p 3258, p 3259, p 3260, p 3261, p 3262, p 3263, p 3264, p 3265, p 3266, p 3267, p 3268, p 3269, p 3270, p 3271, p 3272, p 3273, p 3274, p 3275, p 3276, p 3277, p 3278, p 3279, p 3280, p 3281, p 3282, p 3283, p 3284, p 3285, p 3286, p 3287, p 3288, p 3289, p 3290, p 3291, p 3292, p 3293, p 3294, p 3295, p 3296, p 3297, p 3298, p 3299, p 3300, p 3301, p 3302, p 3303, p 3304, p 3305, p 3306, p 3307, p 3308, p 3309, p 3310, p 3311, p 3312, p 3313, p 3314, p 3315, p 3316, p 3317, p 3318, p 3319, p 3320, p 3321, p 3322, p 3323, p 3324, p 3325, p 3326, p 3327, p 3328, p 3329, p 3330, p 3331, p 3332, p 3333, p 3334, p 3335, p 3336, p 3337, p 3338, p 3339, p 3340, p 3341, p 3342, p 3343, p 3344, p 3345, p 3346, p 3347, p 3348, p 3349, p 3350, p 3351, p 3352, p 3353, p 3354, p 3355, p 3356, p 3357, p 3358, p 3359, p 3360, p 3361, p 3362, p 3363, p 3364, p 3365, p 3366, p 3367, p 3368, p 3369, p 3370, p 3371, p 3372, p 3373, p 3374, p 3375, p 3376, p 3377, p 3378, p 3379, p 3380, p 3381, p 3382, p 3383, p 3384, p 3385, p 3386, p 3387, p 3388, p 3389, p 3390, p 3391, p 3392, p 3393, p 3394, p 3395, p 3396, p 3397, p 3398, p 3399, p 3400, p 3401, p 3402, p 3403, p 3404, p 3405, p 3406, p 3407, p 3408, p 3409, p 3410, p 3411, p 3412, p 3413, p 3414, p 3415, p 3416, p 3417, p 3418, p 3419, p 3420, p 3421, p 3422, p 3423, p 3424, p 3425, p 3426, p 3427, p 3428, p 3429, p 3430, p 3431, p 3432, p 3433, p 3434, p 3435, p 3436, p 3437, p 3438, p 3439, p 3440, p 3441, p 3442, p 3443, p 3444, p 3445, p 3446, p 3447, p 3448, p 3449, p 3450, p 3451, p 3452, p 3453, p 3454, p 3455, p 3456, p 3457, p 3458, p 3459, p 3460, p 3461, p 3462, p 3463, p 3464, p 3465, p 3466, p 3467, p 3468, p 3469, p 3470, p 3471, p 3472, p 3473, p 3474, p 3475, p 3476, p 3477, p 3478, p 3479, p 3480, p 3481, p 3482, p 3483, p 3484, p 3485, p 3486, p 3487, p 3488, p 3489, p 3490, p 3491, p 3492, p 3493, p 3494, p 3495, p 3496, p 3497, p 3498, p 3499, p 3500, p 3501, p 3502, p 3503, p 3504, p 3505, p 3506, p 3507, p 3508, p 3509, p 3510, p 3511, p 3512, p 3513, p 3514, p 3515, p 3516, p 3517, p 3518, p 3519, p 3520, p 3521, p 3522, p 3523, p 3524, p 3525, p 3526, p 3527, p 3528, p 3529, p 3530, p 3531, p 3532, p 3533, p 3534, p 3535, p 3536, p 3537, p 3538, p 3539, p 3540, p 3541, p 3542, p 3543, p 3544, p 3545, p 3546, p 3547, p 3548, p 3549, p 3550, p 3551, p 3552, p 3553, p 3554, p 3555, p 3556, p 3557, p 3558, p 3559, p 3560, p 3561, p 3562, p 3563, p 3564, p 3565, p 3566, p 3567, p 3568, p 3569, p 3570, p 3571, p 3572, p 3573, p 3574, p 3575, p 3576, p 3577, p 3578, p 3579, p 3580, p 3581, p 3582, p 3583, p 3584, p 3585, p 3586, p 3587, p 3588, p 3589, p 3590, p 3591, p 3592, p 3593, p 3594, p 3595, p 3596, p 3597, p 3598, p 3599, p 3600, p 3601, p 3602, p 3603, p 3604, p 3605, p 3606, p 3607, p 3608, p 3609, p 3610, p 3611, p 3612, p 3613, p 3614, p 3615, p 3616, p 3617, p 3618, p 3619, p 3620, p 3621, p 3622, p 3623, p 3624, p 3625, p 3626, p 3627, p 3628, p 3629, p 3630, p 3631, p 3632, p 3633, p 3634, p 3635, p 3636, p 3637, p 3638, p 3639, p 3640, p 3641, p 3642, p 3643, p 3644, p 3645, p 3646, p 3647, p 3648, p 3649, p 3650, p 3651, p 3652, p 3653, p 3654, p 3655, p 3656, p 3657, p 3658, p 3659, p 3660, p 3661, p 3662, p 3663, p 3664, p 3665, p 3666, p 3667, p 3668, p 3669, p 3670, p 3671, p 3672, p 3673, p 3674, p 3675, p 3676, p 3677, p 3678, p 3679, p 3680, p 3681, p 3682, p 3683, p 3684, p 3685, p 3686, p 3687, p 3688, p 3689, p 3690, p 3691, p 3692, p 3693, p 3694, p 3695, p 3696, p 3697, p 3698, p 3699, p 3700, p 3701, p 3702, p 3703, p 3704, p 3705, p 3706, p 3707, p 3708, p 3709, p 3710] trying i = i trying elpi_ctx_entry_2_ = elpi_ctx_entry_2_ trying elpi_ctx_entry_1_ = elpi_ctx_entry_1_ /\ p0 = p0 trying elpi_ctx_entry_1_ = elpi_ctx_entry_1_ /\ p0 = p0 d : nat test1 str hello str x test1 too many arguments [attribute elpi.loc (leaf-loc File "./tests/test_vernacular2.v", line 10, column 24, characters 326-329:), attribute elpi.phase (leaf-str interp), attribute fwd_compat_attr (leaf-str )] [attribute elpi.loc (leaf-loc File "./tests/test_vernacular2.v", line 11, column 0, characters 331-354:), attribute elpi.phase (leaf-str interp), attribute fwd_compat_attr (leaf-str )] File "./tests/test_vernacular2.v", line 6, characters 2-17: Warning: This command does not support this attribute: fwd_compat_attr. [unsupported-attributes,parsing,default] File "./tests/test_vernacular2.v", line 7, characters 2-17: Warning: This command does not support this attribute: fwd_compat_attr. [unsupported-attributes,parsing,default] File "./tests/test_vernacular2.v", line 8, characters 2-17: Warning: This command does not support this attribute: fwd_compat_attr. [unsupported-attributes,parsing,default] File "./tests/test_vernacular2.v", line 9, characters 2-17: Warning: This command does not support this attribute: fwd_compat_attr. [unsupported-attributes,parsing,default] File "./tests/test_vernacular2.v", line 10, characters 2-17: Warning: This command does not support this attribute: fwd_compat_attr. [unsupported-attributes,parsing,default] Module d3 : d3_Locked := Struct Definition body : nat. Parameter unlock : d3 = 3. End Module Type d3_Locked = Sig Parameter body : nat. Parameter unlock : body = 3. End cons2 : forall {A : Type}, A -> list A -> list A cons2 is not universe polymorphic Arguments cons2 {A}%_type_scope x xs%_list_scope cons2 is transparent Expands to: Constant elpi.apps.locker.tests.test_locker.Bug_286.lock_container.cons2 Declared in library elpi.apps.locker.tests.test_locker, line 50, characters 0-47 cons3 : forall [A : Type], EqDecision A -> A -> list A -> list A cons3 is not universe polymorphic Arguments cons3 [A]%_type_scope {H} x xs%_list_scope cons3 is transparent Expands to: Constant elpi.apps.locker.tests.test_locker.Bug_286.lock_container2.cons3 Declared in library elpi.apps.locker.tests.test_locker, line 57, characters 0-63 id1@{u} : forall T : Type@{u}, T -> T (* u |= u < locked_with.u0 *) id1 is universe polymorphic Arguments id1 T%_type_scope x id1 is transparent Expands to: Constant elpi.apps.locker.tests.test_locker.id1 Declared in library elpi.apps.locker.tests.test_locker, line 90, characters 0-78 Query assignments: GR = const «id1» id2.body@{u} : forall T : Type@{u}, T -> T (* u |= *) id2.body is universe polymorphic Arguments id2.body T%_type_scope x Expands to: Constant elpi.apps.locker.tests.test_locker.id2.body Declared in library elpi.apps.locker.tests.test_locker, line 95, characters 0-79 Query assignments: GR = const «id2.body» up1.body@{u} : forall T : Type@{u}, T -> T (* u |= *) up1.body is universe polymorphic Arguments up1.body T%_type_scope x Expands to: Constant elpi.apps.locker.tests.test_locker.up1.body Declared in library elpi.apps.locker.tests.test_locker, line 101, characters 0-45 Query assignments: GR = const «up1.body» nup1.body : forall T : Type@{nup1_Locked.body.u0}, T -> T nup1.body is not universe polymorphic Arguments nup1.body T%_type_scope x Expands to: Constant elpi.apps.locker.tests.test_locker.nup1.body Declared in library elpi.apps.locker.tests.test_locker, line 105, characters 0-75 Query assignments: GR = const «nup1.body» up2.body@{u u0} : forall T : Type@{u}, Type@{u0} -> T -> T (* u u0 |= *) up2.body is universe polymorphic Arguments up2.body (T W)%_type_scope x Expands to: Constant elpi.apps.locker.tests.test_locker.up2.body Declared in library elpi.apps.locker.tests.test_locker, line 109, characters 0-66 Query assignments: GR = const «up2.body» Debug: elpi lets escape exception: Universe elpi.apps.locker.tests.test_locker.190 (File "./apps/locker/tests/test_locker.v", line 113, characters 50-54) is unbound. Raised at Exninfo.iraise in file "clib/exninfo.ml", line 79, characters 4-11 Called from UState.universe_context_inst in file "engine/uState.ml", line 1098, characters 9-58 Called from UState.check_poly_univ_decl in file "engine/uState.ml", line 1191, characters 13-63 Called from UState.check_univ_decl in file "engine/uState.ml", line 1215, characters 55-87 Called from Elpi_plugin__Rocq_elpi_builtins.add_axiom_or_variable in file "src/rocq_elpi_builtins.ml", line 1150, characters 14-88 Called from Elpi_plugin__Rocq_elpi_builtins.coq_rest_builtins.(fun) in file "src/rocq_elpi_builtins.ml", line 2597, characters 20-86 Called from Elpi_plugin__Rocq_elpi_builtins.grab_global_env.(fun) in file "src/rocq_elpi_builtins.ml", line 217, characters 33-44 Called from Elpi_runtime__Runtime_trace_off.FFI.wrap_type_err in file "src/runtime/runtime_trace_off.ml", line 2266, characters 6-9 Called from Elpi_runtime__Runtime_trace_off.FFI.call.aux in file "src/runtime/runtime_trace_off.ml", line 2348, characters 32-92 Called from Elpi_runtime__Runtime_trace_off.FFI.call in file "src/runtime/runtime_trace_off.ml", line 2440, characters 21-70 Called from Elpi_runtime__Runtime_trace_off.Constraints.exect_builtin_predicate in file "src/runtime/runtime_trace_off.ml", line 3709, characters 20-83 Called from Elpi_runtime__Runtime_trace_off.Mainloop.make_runtime.run in file "src/runtime/runtime_trace_off.ml", line 4141, characters 18-89 Called from Elpi_util__Util.Fork.fork.ensure_runtime in file "src/utils/util.ml", line 557, characters 16-19 Re-raised at Elpi_util__Util.Fork.fork.ensure_runtime in file "src/utils/util.ml", line 566, characters 7-14 Called from Elpi_runtime__Runtime_trace_off.mk_outcome in file "src/runtime/runtime_trace_off.ml", line 4457, characters 14-23 Called from Elpi_runtime__Runtime_trace_off.execute_once in file "src/runtime/runtime_trace_off.ml", line 4474, characters 20-242 Re-raised at Elpi_runtime__Runtime_trace_off.execute_once in file "src/runtime/runtime_trace_off.ml", line 4479, characters 2-9 Called from Elpi__API.Execute.once in file "src/API.ml", line 242, characters 40-91 Called from Elpi_plugin__Rocq_elpi_vernacular.Compiler.run in file "src/rocq_elpi_vernacular.ml", line 151, characters 13-55 Re-raised at Exninfo.iraise in file "clib/exninfo.ml", line 81, characters 4-38 Called from Elpi_plugin__Rocq_elpi_vernacular.Compiler.run_and_print in file "src/rocq_elpi_vernacular.ml", line 171, characters 8-38 Called from Elpi_plugin__Rocq_elpi_vernacular.Interp.run_program.(fun) in file "src/rocq_elpi_vernacular.ml", line 575, characters 74-130 it = elpi_subproof : True it : True it is not universe polymorphic it is transparent Expands to: Constant elpi.tests.test_ltac.it Declared in library elpi.tests.test_ltac, line 49, characters 0-15 elpi_subproof = I : True elpi_subproof : True elpi_subproof is not universe polymorphic elpi_subproof is opaque Expands to: Constant elpi.tests.test_ltac.elpi_subproof Declared in library elpi.tests.test_ltac, line 49, characters 0-15 Closed under the global context hello1 ok 46 true : bool : bool Query assignments: X1 = «x1» X2 = «x2» X3 = «x3» Query assignments: M = [[mode-ground], [mode-input]] 1 1 1.000000 1.2 Query assignments: C1 = «Nat.add» C2 = «times» X1 = tt X2 = ff Query assignments: C1 = «x» Query assignments: XX = «elpi.tests.test_API2.xx» Query assignments: C1 = «x» M = «elpi.tests.test_API2.xx» Query assignments: XX = «elpi.tests.test_API2.xx2» Query assignments: C1 = «x» M = «elpi.tests.test_API2.xx2» Query assignments: C1 = «x» M = «elpi.tests.test_API2.xx3» Query assignments: X1_ = X0 X2_ = X1 Syntactic constraints: evar X1 X2 X1 /* suspended on X1 */ evar X3 (sort (typ «elpi.tests.test_API2.28»)) X2 /* suspended on X3, X2 */ evar X0 X4 X0 /* suspended on X0 */ evar X5 (sort (typ «elpi.tests.test_API2.27»)) X4 /* suspended on X5, X4 */ Universe constraints: UNIVERSES: {elpi.tests.test_API2.28 elpi.tests.test_API2.27} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α4 α5 |= Prop -> SProp Type -> α4 -> α5 -> Prop -> SProp WEAK CONSTRAINTS: Non-discriminated database Unfoldable variable definitions: all Unfoldable constant definitions: all Unfoldable projection definitions: all Cut: emp For any goal -> For xeq -> exact xxx (cost 0, pattern 0 = _, id 0) Query assignments: X3_ = «T.T.u0» Query assignments: GR = const const EXN PRINTING: Not_found «elpi.tests.test_API2.G» Query assignments: G = «elpi.tests.test_API2.G» Module G : Sig Definition id : X.T -> X.T. End := (F X) «elpi.tests.test_API2.H» Query assignments: H = «elpi.tests.test_API2.H» Module H : Sig Definition id : nat -> nat. End := (F X) Query assignments: GR = const const EXN PRINTING: Not_found Module Type FT = Funsig (P:T) Sig Parameter idT : P.T -> P.T. End «elpi.tests.test_API2.GT» Query assignments: G = «elpi.tests.test_API2.GT» Module Type GT = Sig Parameter idT : X.T -> X.T. End «elpi.tests.test_API2.HT» Query assignments: H = «elpi.tests.test_API2.HT» Module Type HT = Sig Parameter idT : nat -> nat. End Query assignments: L = [«elpi.tests.test_API2.34», «elpi.tests.test_API2.35»] S = {{ elpi.tests.test_API2.34; elpi.tests.test_API2.35; }} U = «elpi.tests.test_API2.34» UV = «elpi.tests.test_API2.34» V = «elpi.tests.test_API2.35» VV = «elpi.tests.test_API2.35» Universe constraints: UNIVERSES: {elpi.tests.test_API2.35 elpi.tests.test_API2.34} |= ALGEBRAIC UNIVERSES: {elpi.tests.test_API2.35 elpi.tests.test_API2.34} FLEXIBLE UNIVERSES: elpi.tests.test_API2.35 elpi.tests.test_API2.34 SORTS: |= Prop -> SProp Type -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: X10_ = c0 \ X0 c0 X11_ = X1 X12_ = c0 \ X0 c0 X13_ = X2 X14_ = c0 \ X3 c0 X15_ = c0 \ c1 \ X4 c0 c1 X16_ = X5 X17_ = c0 \ X6 c0 X18_ = c0 \ c1 \ X7 c0 c1 X19_ = X8 X20_ = c0 \ X9 c0 X21_ = c0 \ c1 \ X10 c0 c1 X22_ = X8 X4_ = X11 X5_ = X11 X6_ = X12 X7_ = X13 X8_ = c0 \ X14 c0 X9_ = X1 Syntactic constraints: evar X8 (sort (typ «elpi.tests.test_API2.54»)) X8 /* suspended on X8 */ {c0 c1} : decl c1 `x:r` (X9 c0), decl c0 `z:r` X8 ?- evar (X10 c0 c1) (sort (typ «elpi.tests.test_API2.53»)) (X10 c0 c1) /* suspended on X10 */ {c0} : decl c0 `z:r` X8 ?- evar (X9 c0) (sort (typ «elpi.tests.test_API2.52»)) (X9 c0) /* suspended on X9 */ evar X8 (sort (typ «elpi.tests.test_API2.51»)) X8 /* suspended on X8 */ {c0 c1} : decl c1 `x:r` (X6 c0), decl c0 `z:r` X5 ?- evar (X7 c0 c1) (sort (typ «elpi.tests.test_API2.50»)) (X7 c0 c1) /* suspended on X7 */ {c0} : decl c0 `z:r` X5 ?- evar (X6 c0) (sort (typ «elpi.tests.test_API2.49»)) (X6 c0) /* suspended on X6 */ evar X5 (sort (typ «elpi.tests.test_API2.48»)) X5 /* suspended on X5 */ {c0 c1} : decl c1 `x:r` (X3 c0), decl c0 `z:r` X2 ?- evar (X4 c0 c1) (sort (typ «elpi.tests.test_API2.47»)) (X4 c0 c1) /* suspended on X4 */ {c0} : decl c0 `z:r` X2 ?- evar (X3 c0) (sort (typ «elpi.tests.test_API2.46»)) (X3 c0) /* suspended on X3 */ evar X2 (sort (typ «elpi.tests.test_API2.45»)) X2 /* suspended on X2 */ evar X1 (sort (typ «elpi.tests.test_API2.43»)) X1 /* suspended on X1 */ {c0} : decl c0 `x:r` X1 ?- evar (X0 c0) (sort (typ «elpi.tests.test_API2.42»)) (X0 c0) /* suspended on X0 */ {c0} : decl c0 `x:r` X1 ?- evar (X0 c0) (sort (typ «elpi.tests.test_API2.44»)) (X0 c0) /* suspended on X0 */ evar X1 (sort (typ «elpi.tests.test_API2.41»)) X1 /* suspended on X1 */ {c0} : decl c0 `x:r` X13 ?- evar (X14 c0) (sort (typ «elpi.tests.test_API2.40»)) (X14 c0) /* suspended on X14 */ evar X13 (sort (typ «elpi.tests.test_API2.39»)) X13 /* suspended on X13 */ evar X12 (sort (typ «elpi.tests.test_API2.38»)) X12 /* suspended on X12 */ evar X11 (sort (typ «elpi.tests.test_API2.37»)) X11 /* suspended on X11 */ evar X11 (sort (typ «elpi.tests.test_API2.36»)) X11 /* suspended on X11 */ Universe constraints: UNIVERSES: {elpi.tests.test_API2.54 elpi.tests.test_API2.53 elpi.tests.test_API2.52 elpi.tests.test_API2.51 elpi.tests.test_API2.50 elpi.tests.test_API2.49 elpi.tests.test_API2.48 elpi.tests.test_API2.47 elpi.tests.test_API2.46 elpi.tests.test_API2.45 elpi.tests.test_API2.44 elpi.tests.test_API2.43 elpi.tests.test_API2.42 elpi.tests.test_API2.41 elpi.tests.test_API2.40 elpi.tests.test_API2.39 elpi.tests.test_API2.38 elpi.tests.test_API2.37 elpi.tests.test_API2.36} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α7 α8 α9 α10 α11 α12 α13 α14 α15 α16 α17 α18 α19 α20 α21 α22 α23 α24 α25 |= Prop -> SProp Type -> α7 -> α8 -> α9 -> α10 -> α11 -> α12 -> α13 -> α14 -> α15 -> α16 -> α17 -> α18 -> α19 -> α20 -> α21 -> α22 -> α23 -> α24 -> α25 -> Prop -> SProp WEAK CONSTRAINTS: 2 goals ============================ 3 + 2 = 5 goal 2 is: Foo True File "./tests/test_API2.v", line 127, characters 0-16: Warning: Option Foo Bar is deprecated. elpi [deprecated-option,deprecated,default] File "./tests/test_API2.v", line 135, characters 0-14: Warning: Option Foo Bar is deprecated. elpi [deprecated-option,deprecated,default] File "./tests/test_API2.v", line 372, characters 0-228: Warning: Undeclared globals: - File "./tests/test_API2.v", line 373, column 2, characters 8775-8785: test. Please add the following text to your program: type test term -> term -> (pred). [elpi.missing-types,elpi.typecheck,elpi,default] Inductive listR_inv (A : Type) (PA : A -> Type) (idx0 : list A) : Type := nilR_inv : idx0 = nil -> listR_inv A PA idx0 | consR_inv : forall a : A, PA a -> forall xs : list A, listR_inv A PA xs -> idx0 = (a :: xs)%list -> listR_inv A PA idx0. Arguments listR_inv A%_type_scope PA%_function_scope idx0%_list_scope Arguments nilR_inv A%_type_scope PA%_function_scope idx0%_list_scope _ Arguments consR_inv A%_type_scope PA%_function_scope idx0%_list_scope a _ xs%_list_scope _ _ File "./apps/derive/tests/test_tag.v", line 51, characters 6-14: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] File "./apps/derive/tests/test_eq.v", line 46, characters 0-8: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] nth_R = fun (T1 T2 : Type) (T_R : T1 -> T2 -> Type) (x01 : T1) (x02 : T2) (x0_R : T_R x01 x02) => let rec1 := fix rec (n : nat) (l : list T1) {struct n} : T1 := match l with | nil => x01 | (x :: xs)%list => match n with | 0 => x | S m => rec m xs end end in let rec2 := fix rec (n : nat) (l : list T2) {struct n} : T2 := match l with | nil => x02 | (x :: xs)%list => match n with | 0 => x | S m => rec m xs end end in fix rec_R (n1 n2 : nat) (n_R : nat_R n1 n2) {struct n_R} : forall (l1 : list T1) (l2 : list T2), list_R T1 T2 T_R l1 l2 -> T_R (rec1 n1 l1) (rec2 n2 l2) := match n_R in nat_R s1 s2 return (forall (l1 : list T1) (l2 : list T2), list_R T1 T2 T_R l1 l2 -> T_R (rec1 s1 l1) (rec2 s2 l2)) with | O_R => let K := O_R in (fun (n3 n4 : nat) (n_R0 : nat_R n3 n4) (l1 : list T1) (l2 : list T2) (l_R : list_R T1 T2 T_R l1 l2) => match l_R in list_R _ _ _ l3 l4 return T_R match l3 with | nil => x01 | (x :: xs)%list => match n3 with | 0 => x | S m => rec1 m xs end end match l4 with | nil => x02 | (x :: xs)%list => match n4 with | 0 => x | S m => rec2 m xs end end with | nil_R _ _ _ => x0_R | cons_R _ _ _ x1 x2 x_R xs1 xs2 xs_R => match n_R0 in nat_R n5 n6 return T_R match n5 with | 0 => x1 | S m => rec1 m xs1 end match n6 with | 0 => x2 | S m => rec2 m xs2 end with | O_R => x_R | S_R m1 m2 m_R => rec_R m1 m2 m_R xs1 xs2 xs_R end end) 0 0 K | S_R _1 _2 __R => let K := S_R _1 _2 __R in (fun (n3 n4 : nat) (n_R0 : nat_R n3 n4) (l1 : list T1) (l2 : list T2) (l_R : list_R T1 T2 T_R l1 l2) => match l_R in list_R _ _ _ l3 l4 return T_R match l3 with | nil => x01 | (x :: xs)%list => match n3 with | 0 => x | S m => rec1 m xs end end match l4 with | nil => x02 | (x :: xs)%list => match n4 with | 0 => x | S m => rec2 m xs end end with | nil_R _ _ _ => x0_R | cons_R _ _ _ x1 x2 x_R xs1 xs2 xs_R => match n_R0 in nat_R n5 n6 return T_R match n5 with | 0 => x1 | S m => rec1 m xs1 end match n6 with | 0 => x2 | S m => rec2 m xs2 end with | O_R => x_R | S_R m1 m2 m_R => rec_R m1 m2 m_R xs1 xs2 xs_R end end) (S _1) (S _2) K end : forall (T1 T2 : Type) (T_R : T1 -> T2 -> Type) (x01 : T1) (x02 : T2), T_R x01 x02 -> forall n1 n2 : nat, nat_R n1 n2 -> forall (l1 : list T1) (l2 : list T2), list_R T1 T2 T_R l1 l2 -> T_R (nth T1 x01 n1 l1) (nth T2 x02 n2 l2) Arguments nth_R (T1 T2)%_type_scope T_R%_function_scope x01 x02 x0_R (n1 n2)%_nat_scope n_R (l1 l2)%_list_scope l_R pred_R = fun (n1 n2 : nat) (n_R : nat_R n1 n2) => match n_R in nat_R n3 n4 return nat_R match n3 with | 0 => n1 | S u => u end match n4 with | 0 => n2 | S u => u end with | O_R => n_R | S_R _ _ u_R => u_R end : forall n1 n2 : nat, nat_R n1 n2 -> nat_R (Nat.pred n1) (Nat.pred n2) Arguments pred_R (n1 n2)%_nat_scope n_R File "./apps/derive/tests/test_param2.v", line 6, characters 0-24: Warning: Global name unit_R is taken, using unit_R1 instead [elpi.renamed,elpi,default] File "./apps/derive/tests/test_param2.v", line 6, characters 0-24: Warning: Global name tt_R is taken, using tt_R1 instead [elpi.renamed,elpi,default] File "./apps/derive/tests/test_param2.v", line 6, characters 0-24: Warning: Global name param_tt_R is taken, using param_tt_R1 instead [elpi.renamed,elpi,default] File "./apps/derive/tests/test_param2.v", line 86, characters 0-30: Warning: Not a truly recursive fixpoint. [non-recursive,fixpoints,default] program [p] File "./apps/rbuild/theories/rbuild.v", line 18, characters 0-83: Warning: Notations at level 0 should be closed (first and last symbols should be terminal symbols). [level-0-notation-not-closed,parsing,default] File "./apps/derive/tests/test_map.v", line 48, characters 6-14: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] File "./apps/derive/tests/test_map.v", line 49, characters 6-14: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] global (indc «O») app [global (indc «S»), app [global (indc «S»), app [global (indc «S»), global (indc «O»)]]] File "./apps/derive/tests/test_param1.v", line 15, characters 0-24: Warning: is_rose is nested using is_seq. No scheme for is_seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_seq.". [register-all,automation,default] File "./apps/derive/tests/test_param1.v", line 15, characters 0-24: Warning: is_rose is nested using is_seq. No scheme for is_seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_seq.". [register-all,automation,default] File "./apps/derive/tests/test_param1.v", line 15, characters 0-24: Warning: is_rose is nested using is_seq. No scheme for is_seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_seq.". [register-all,automation,default] File "./apps/derive/tests/test_param1.v", line 15, characters 0-24: Warning: is_rose is nested using is_seq. No scheme for is_seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_seq.". [register-all,automation,default] File "./apps/derive/tests/test_param1.v", line 15, characters 0-24: Warning: is_rose is nested using is_seq. No scheme for is_seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_seq.". [register-all,automation,default] File "./apps/derive/tests/test_param1.v", line 15, characters 0-24: Warning: is_rose is nested using is_seq. No scheme for is_seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_seq.". [register-all,automation,default] File "./apps/derive/tests/test_param1.v", line 15, characters 0-24: Warning: is_rose is nested using is_seq. No scheme for is_seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_seq.". [register-all,automation,default] File "./apps/derive/tests/test_param1.v", line 15, characters 0-24: Warning: is_rose is nested using is_seq. No scheme for is_seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_seq.". [register-all,automation,default] File "./apps/derive/tests/test_param1.v", line 15, characters 0-24: Warning: is_rose is nested using is_seq. No scheme for is_seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_seq.". [register-all,automation,default] File "./apps/derive/tests/test_param1.v", line 15, characters 0-24: Warning: is_rose is nested using is_seq. No scheme for is_seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_seq.". [register-all,automation,default] File "./apps/derive/tests/test_param1.v", line 15, characters 0-24: Warning: is_rose is nested using is_seq. No scheme for is_seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_seq.". [register-all,automation,default] File "./apps/derive/tests/test_param1.v", line 15, characters 0-24: Warning: is_rose is nested using is_seq. No scheme for is_seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_seq.". [register-all,automation,default] File "./apps/derive/tests/test_param1.v", line 16, characters 0-26: Warning: is_rose_p is nested using is_pair. No scheme for is_pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_pair.". [register-all,automation,default] File "./apps/derive/tests/test_param1.v", line 16, characters 0-26: Warning: is_rose_p is nested using is_pair. No scheme for is_pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_pair.". [register-all,automation,default] File "./apps/derive/tests/test_param1.v", line 16, characters 0-26: Warning: is_rose_p is nested using is_pair. No scheme for is_pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_pair.". [register-all,automation,default] File "./apps/derive/tests/test_param1.v", line 16, characters 0-26: Warning: is_rose_p is nested using is_pair. No scheme for is_pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_pair.". [register-all,automation,default] File "./apps/derive/tests/test_param1.v", line 16, characters 0-26: Warning: is_rose_p is nested using is_pair. No scheme for is_pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_pair.". [register-all,automation,default] File "./apps/derive/tests/test_param1.v", line 16, characters 0-26: Warning: is_rose_p is nested using is_pair. No scheme for is_pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_pair.". [register-all,automation,default] File "./apps/derive/tests/test_param1.v", line 16, characters 0-26: Warning: is_rose_p is nested using is_pair. No scheme for is_pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_pair.". [register-all,automation,default] File "./apps/derive/tests/test_param1.v", line 16, characters 0-26: Warning: is_rose_p is nested using is_pair. No scheme for is_pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_pair.". [register-all,automation,default] File "./apps/derive/tests/test_param1.v", line 16, characters 0-26: Warning: is_rose_p is nested using is_pair. No scheme for is_pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_pair.". [register-all,automation,default] File "./apps/derive/tests/test_param1.v", line 16, characters 0-26: Warning: is_rose_p is nested using is_pair. No scheme for is_pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_pair.". [register-all,automation,default] File "./apps/derive/tests/test_param1.v", line 16, characters 0-26: Warning: is_rose_p is nested using is_pair. No scheme for is_pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_pair.". [register-all,automation,default] File "./apps/derive/tests/test_param1.v", line 16, characters 0-26: Warning: is_rose_p is nested using is_pair. No scheme for is_pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_pair.". [register-all,automation,default] File "./apps/derive/tests/test_param1.v", line 57, characters 6-14: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] In tc-A In tc-A In tc-B In tc-A In tc-B In tc-A c AX (BX AX) : C AX (BX AX) : C AX (BX AX) Query assignments: S = app [global (const «c»), global (const «AX»), app [global (const «BX»), X0]] X1_ = X0 X2_ = global (const «AX») X3_ = app [global (const «BX»), X0] Syntactic constraints: evar X0 (global (indt «A»)) X0 /* suspended on X0 */ Universe constraints: UNIVERSES: {elpi.apps.tc.tests.hyp_in_conl.41 elpi.apps.tc.tests.hyp_in_conl.40 elpi.apps.tc.tests.hyp_in_conl.39} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α12 α13 α14 >= Prop |= Prop -> SProp Type -> α12 -> α13 -> α14 -> Prop -> SProp WEAK CONSTRAINTS: [TC] For indt «C» : elpi predicate : tc-C search mode is : tc.deterministic modes are : [o, o] ((fun (A : Type) (f : Type -> Type) (H : forall x : Type, Y (f x)) => ex_intro (fun g : Type -> Type => Ex g A /\ g nat = g bool) f (conj (Inst2 A f H) ?Goal)) : goal) 2 focused goals (shelved: 1) A : Type f : Type -> Type H : forall x : Type, Y (f x) ============================ Ex ?g A goal 2 is: ?g nat = ?g bool 1 focused goal (shelved: 1) A : Type f : Type -> Type H : forall x : Type, Y (f x) ============================ (fun H0 : Type => f ?e0@{T:=H0}) nat = (fun H0 : Type => f ?e0@{T:=H0}) bool Query assignments: Len = 0 Rules = [] Debug: Calling typeclass resolution with flags: depth = ∞,unique = false,fail = true Debug: 1: looking for (C ?i) with backtracking Debug: 1.1: exact i2 on (C ?i), 0 subgoal(s) Debug: 2: looking for (E 2) without backtracking Debug: 2: no match for (E 2), 0 possibilities Debug: 1.2: exact i1 on (C ?i), 0 subgoal(s) Debug: 2: looking for (E 1) without backtracking Debug: 2.1: exact e1 on (E 1), 0 subgoal(s) Debug: Calling typeclass resolution with flags: depth = ∞,unique = false,fail = true Debug: 1: looking for (C ?i) with backtracking Debug: 1.1: exact i2 on (C ?i), 0 subgoal(s) Debug: Calling typeclass resolution with flags: depth = ∞,unique = false,fail = true Debug: 1: looking for (E 2) without backtracking Debug: 1: no match for (E 2), 0 possibilities Debug: 1: looking for (C ?i) with backtracking Debug: 1.1: exact i2 on (C ?i), 0 subgoal(s) Debug: 2: looking for (E 2) without backtracking Debug: 2: no match for (E 2), 0 possibilities Debug: 1.2: exact i1 on (C ?i), 0 subgoal(s) Debug: 2: looking for (E 1) without backtracking Debug: 2.1: exact e1 on (E 1), 0 subgoal(s) [seal (goal [] X0 (app [global (indt «C»), X1]) X2 []), seal (goal [] X3 (app [global (indt «E»), X1]) X4 [])] Goal is C ?i Solution for C 2 is i2 Goal is E 2 Solution for C 1 is i1 Goal is E 1 Solution for E 1 is e1 All the remaining goals are on the shelf. 1 goal goal 1 is: C 1 goal ============================ C All the remaining goals are on the shelf. 1 goal goal 1 is: C 1 goal ============================ C (fun H : C Q => ex_intro (fun T : Type -> Type => forall R : Type -> Type, C R -> C T) Q (fun (R : Type -> Type) (_ : C R) => let H1 : C Q := H in H1)) (fun x : tele => tele_fmap) Normalizing app [global (indt «nat2»), global (const «Nat.succ»)] Normalizing app [global (indt «nat2»), global (indc «S»)] Normalizing app [global (indt «nat2»), global (const «Nat.succ»)] File "./apps/tc/tests/test_tc_declare.v", line 8, characters 2-36: Warning: This command does not fully mirror the watned behavior if the class has methods with implicit arguments (those implicits will be neglected) [[TC] Warning,TC.Declare,elpi,default] File "./apps/tc/tests/test_tc_declare.v", line 20, characters 2-53: Warning: This command does not fully mirror the watned behavior if the class has methods with implicit arguments (those implicits will be neglected) [[TC] Warning,TC.Declare,elpi,default] File "./apps/tc/tests/test_tc_declare.v", line 50, characters 2-47: Warning: This command does not fully mirror the watned behavior if the class has methods with implicit arguments (those implicits will be neglected) [[TC] Warning,TC.Declare,elpi,default] File "./apps/tc/tests/test_tc_declare.v", line 65, characters 2-51: Warning: This command does not fully mirror the watned behavior if the class has methods with implicit arguments (those implicits will be neglected) [[TC] Warning,TC.Declare,elpi,default] Query assignments: S = app [global (const «IsAnimal»), global (indc «Fly»), global (const «dove»)] Query assignments: S = X0 Instances list for indt «Eqb» is: const «eqBool» with locality [] const «eqProd» with locality [] [TC] For indt «Eqb» : elpi predicate : tc-elpi.apps.tc.examples.tutorial.tc-Eqb search mode is : tc.classic modes are : [o, o] Instances list for indt «Eqb» is: const «eqProd'» with locality [get-option coq:locality local] const «HB» with locality [get-option coq:locality local] const «HA» with locality [get-option coq:locality local] const «eqBool» with locality [] const «eqProd» with locality [] Instances list for indt «Eqb» is: const «eqBool» with locality [] const «eqProd'» with locality [get-option coq:locality global] const «eqProd» with locality [] [TC] For indt «Eqb» : elpi predicate : tc-elpi.apps.tc.examples.tutorial.tc-Eqb search mode is : tc.classic modes are : [o, o] Instances list for indt «Eqb» is: const «eqBool» with locality [] const «eqProd'» with locality [get-option coq:locality global] const «eqProd» with locality [] File "./apps/derive/tests/test_param1_functor.v", line 50, characters 6-14: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] File "./apps/derive/tests/test_param1_functor.v", line 51, characters 6-14: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] File "./apps/derive/tests/test_param1_functor.v", line 52, characters 6-14: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] Adding predicate for indt «Add» with mode [] Adding predicate for indt «Add» with mode [] Adding predicate for indt «Add» with mode [+] Adding predicate for indt «Add» with mode [] Adding predicate for indt «C» with mode [] Adding predicate for indt «C'» with mode [] Adding predicate for indt «C''» with mode [] Adding predicate for indt «C» with mode [] Adding predicate for indt «C» with mode [] Adding predicate for indt «C» with mode [] Adding predicate for indt «C» with mode [] Adding predicate for indt «C» with mode [] Adding predicate for indt «C» with mode [] Adding predicate for indt «C» with mode [] Adding predicate for const «MyEqb» with mode [] Adding predicate for indt «A» with mode [] Adding predicate for indt «B» with mode [] Adding predicate for indt «A» with mode [] Adding predicate for indt «B» with mode [] Adding predicate for indt «A» with mode [] Adding predicate for indt «B» with mode [] Adding predicate for indt «A» with mode [] Adding predicate for indt «B» with mode [] (fun (T : Type) (p : nat -> T -> T -> Prop) (x : T) => partial_app T (p 0) x) eq_refl : ex1 = (fun (T : Type) (p : nat -> T -> T -> Prop) (x : T) => partial_app T (p 0) x) : ex1 = (fun (T : Type) (p : nat -> T -> T -> Prop) (x : T) => partial_app T (p 0) x) eq_refl : ex2 = (fun (T : Type) (p : nat -> T -> T -> Prop) (y : T) => partial_app T (p 0) y) : ex2 = (fun (T : Type) (p : nat -> T -> T -> Prop) (y : T) => partial_app T (p 0) y) (ex_intro (fun R : Type -> Type => C (fun _ : Type => R nat) /\ R bool = f nat) f (conj I ?Goal)) eq_refl : ex1 = fun_1 nat (fun _ : nat => nat) : ex1 = fun_1 nat (fun _ : nat => nat) eq_refl : ex2 = fun_1 nat (fun a : nat => a = a + 1) : ex2 = fun_1 nat (fun a : nat => a = a + 1) Debug: Calling typeclass resolution with flags: depth = ∞,unique = false,fail = true Debug: Calling typeclass resolution with flags: depth = ∞,unique = false,fail = true Debug: Calling typeclass resolution with flags: depth = ∞,unique = false,fail = true Debug: Calling typeclass resolution with flags: depth = ∞,unique = false,fail = true Debug: 1: looking for (Decision (Exists (?P z y) l)) with backtracking Debug: 1.1: simple apply Exists_dec on (Decision (Exists (?P z y) l)), 1 subgoal(s) Debug: 1.1-1 : (forall x : A, Decision (?P z y x)) Debug: 1.1-1: looking for (forall x : A, Decision (?P z y x)) with backtracking Debug: 1.1-1.1: simple apply H on (forall x : A, Decision (?P z y x)), 0 subgoal(s) Debug: Calling typeclass resolution with flags: depth = ∞,unique = false,fail = true Debug: [tactic-unification] Starting unification: Prop ~= Type Debug: [tactic-unification] Leaving unification with success Debug: [tactic-unification] Starting unification: ?T ~= D Debug: [tactic-unification] ?T ~= D Debug: [tactic-unification] Leaving unification with success Debug: Calling typeclass resolution with flags: depth = ∞,unique = false,fail = true Debug: 1: looking for D without backtracking Debug: [tactic-unification] Starting unification: D ~= D Debug: [tactic-unification] Leaving unification with success Debug: 1.1: simple eapply I on D, 1 subgoal(s) Debug: 1.1-1 : (C1 ?T (fun x : Type => ?H x)) Debug: 1.1-1: looking for (C1 ?T (fun x : Type => ?H x)) with backtracking Debug: [tactic-unification] Starting unification: C1 T H ~= C1 ?T (fun x : Type => ?H x) Debug: [tactic-unification] C1 T H ~= C1 ?T (fun x : Type => ?H x) Debug: [tactic-unification] C1 ~= C1 Debug: [tactic-unification] T ~= ?T Debug: [tactic-unification] H ~= fun x : Type => ?H x Debug: [tactic-unification] Leaving unification with failure Debug: 1.1-1: no match for (C1 ?T (fun x : Type => ?H x)), 1 possibilities Debug: [tactic-unification] Starting unification: Prop ~= Type Debug: [tactic-unification] Leaving unification with success Debug: [tactic-unification] Starting unification: ?T ~= D Debug: [tactic-unification] ?T ~= D Debug: [tactic-unification] Leaving unification with success Debug: Calling typeclass resolution with flags: depth = ∞,unique = false,fail = true Debug: [tactic-unification] Starting unification: Prop ~= Type Debug: [tactic-unification] Leaving unification with success Debug: [tactic-unification] Starting unification: ?T ~= D Debug: [tactic-unification] ?T ~= D Debug: [tactic-unification] Leaving unification with success Debug: [tactic-unification] Starting unification: D ~= D Debug: [tactic-unification] Leaving unification with success Debug: [tactic-unification] Starting unification: C2 T (fun x : Type => H x) ~= C2 ?T ?H Debug: [tactic-unification] C2 T (fun x : Type => H x) ~= C2 ?T ?H Debug: [tactic-unification] C2 ~= C2 Debug: [tactic-unification] T ~= ?T Debug: [tactic-unification] fun x : Type => H x ~= ?H Debug: [tactic-unification] Leaving unification with success Debug: [tactic-unification] Starting unification: Prop ~= Type Debug: [tactic-unification] Leaving unification with success Debug: [tactic-unification] Starting unification: ?T ~= forall (T : Type -> Type) (H : forall x : Type, T x), C2 T (fun x : Type => H x) -> D Debug: [tactic-unification] ?T ~= forall (T : Type -> Type) (H : forall x : Type, T x), C2 T (fun x : Type => H x) -> D Debug: [tactic-unification] Leaving unification with success Debug: [tactic-unification] Starting unification: forall (T : Type -> Type) (H : forall x : Type, T x), C2 T H -> D ~= forall (T : Type -> Type) (H : forall x : Type, T x), C2 T (fun x : Type => H x) -> D Debug: [tactic-unification] Leaving unification with success File "./apps/eltac/tests-stdlib/test_injection.v", line 15, characters 0-27: Warning: Using Vector.t is known to be technically difficult, see . [warn-library-file-stdlib-vector,stdlib-vector,warn-library-file,user-warn,default] Query assignments: EqP = const «eqU» File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) Morphisms.rewrite_relation_fun [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (RelationClasses.equiv_rewrite_relation R) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Morphisms.eq_rewrite_relation A) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @RelationClasses.flip_StrictOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @Morphisms.PartialOrder_StrictOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @CRelationClasses.flip_StrictOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @CMorphisms.PartialOrder_StrictOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @RelationClasses.flip_PreOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @Morphisms.StrictOrder_PreOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @CRelationClasses.flip_PreOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @CMorphisms.StrictOrder_PreOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @CRelationClasses.flip_Antisymmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @CRelationClasses.flip_Symmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @CRelationClasses.complement_Symmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @RelationClasses.PartialOrder_inverse) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @Morphisms.StrictOrder_PartialOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @Morphisms.eq_proper_proxy || Init.class_apply @Morphisms.reflexive_proper_proxy) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (not_evar R; Init.class_apply @Morphisms.proper_proper_proxy) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) Morphisms.normalizes [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @Morphisms.flip2) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @Morphisms.flip1) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Morphisms.subrelation_tac T U) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (apply (Morphisms.forall_subrelation B R S); intro) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @RelationClasses.subrelation_symmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @CRelationClasses.PartialOrder_inverse) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @CMorphisms.StrictOrder_PartialOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @RelationClasses.flip_Transitive) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @CMorphisms.flip2) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @CMorphisms.flip1) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (CMorphisms.subrelation_tac T U) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (apply (CMorphisms.forall_subrelation B R S); intro) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @CRelationClasses.subrelation_symmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (apply @CMorphisms.flip_proper) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @CMorphisms.proper_flip_proper) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) CMorphisms.partial_application_tactic [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) CMorphisms.proper_subrelation [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) CMorphisms.proper_normalization [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) CMorphisms.proper_reflexive [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @CRelationClasses.flip_Transitive) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @RelationClasses.flip_Irreflexive) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @RelationClasses.complement_Irreflexive) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @RelationClasses.flip_Asymmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (apply @Morphisms.flip_proper) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (apply @Morphisms.complement_proper) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @Morphisms.proper_flip_proper) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) Morphisms.partial_application_tactic [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) Morphisms.proper_subrelation [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) Morphisms.proper_normalization [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) Morphisms.proper_reflexive [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @CRelationClasses.flip_Irreflexive) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @CRelationClasses.complement_Irreflexive) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @CRelationClasses.flip_Asymmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @RelationClasses.irreflexivity) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (apply RelationClasses.flip_Reflexive) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @CRelationClasses.irreflexivity) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (apply CRelationClasses.flip_Reflexive) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) Init.unconvertible [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @CMorphisms.eq_proper_proxy || Init.class_apply @CMorphisms.reflexive_proper_proxy) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (not_evar R; Init.class_apply @CMorphisms.proper_proper_proxy) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) CMorphisms.normalizes [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @RelationClasses.flip_Antisymmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @RelationClasses.flip_Symmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Init.class_apply @RelationClasses.complement_Symmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/test_commands_API.v", line 52, characters 2-25: Warning: There is an hint extern in the typeclass db: (*external*) (Morphisms.reflexive_proxy_tac A R) [elpi.TC.hints,elpi,default] Query assignments: T = c0 \ prod `c:r` X0 c1 \ prod `_:r` (prod `a:r` X1 c2 \ app [global X2, app [c0, c2], c1]) c2 \ app [global X3, c0, c1] Good padding from here Query assignments: ToCompile = prod `T:r` (prod `_:r` (sort (typ X0)) c0 \ prod `_:r` (sort (typ X1)) c1 \ prod `_:r` (sort (typ X2)) c2 \ sort (typ X3)) c0 \ prod `_:r` (prod `a:r` (sort (typ X4)) c1 \ app [global (indt «d»), c1, c0]) c1 \ app [global (indt «c»), c0] X1_ = X0 X2_ = X1 X3_ = X2 X4_ = X3 X5_ = X4 Finished transaction in 0.428 secs (0.397u,0.012s) (successful) Query assignments: A = c0 \ c0 A2 = X0 X6_ = X1 X7_ = X2 Query assignments: N = s (s z) X10_ = X0 X11_ = X1 X8_ = «elpi.apps.tc.tests.test.182» X9_ = «elpi.apps.tc.tests.test.183» Syntactic constraints: {c0 c1} : decl c1 `elpi_ctx_entry_1_:r` X0 ?- evar (X1 c1) (sort (typ «elpi.apps.tc.tests.test.185»)) (X1 c1) /* suspended on X1 */ {c0} : evar X0 (sort (typ «elpi.apps.tc.tests.test.184»)) X0 /* suspended on X0 */ Universe constraints: UNIVERSES: {elpi.apps.tc.tests.test.185 elpi.apps.tc.tests.test.184 elpi.apps.tc.tests.test.183 elpi.apps.tc.tests.test.182} |= ALGEBRAIC UNIVERSES: {elpi.apps.tc.tests.test.183 elpi.apps.tc.tests.test.182} FLEXIBLE UNIVERSES: elpi.apps.tc.tests.test.183 elpi.apps.tc.tests.test.182 SORTS: α190 α191 |= Prop -> SProp Type -> α190 -> α191 -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: N = s z X12_ = X0 X13_ = «elpi.apps.tc.tests.test.321» X14_ = «elpi.apps.tc.tests.test.322» Syntactic constraints: {c0} : evar X0 (sort (typ «elpi.apps.tc.tests.test.323»)) X0 /* suspended on X0 */ Universe constraints: UNIVERSES: {elpi.apps.tc.tests.test.323 elpi.apps.tc.tests.test.322 elpi.apps.tc.tests.test.321} |= ALGEBRAIC UNIVERSES: {elpi.apps.tc.tests.test.322 elpi.apps.tc.tests.test.321} FLEXIBLE UNIVERSES: elpi.apps.tc.tests.test.322 elpi.apps.tc.tests.test.321 SORTS: α266 |= Prop -> SProp Type -> α266 -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: X15_ = X0 Syntactic constraints: evar X1 X2 X1 /* suspended on X1 */ evar X3 (sort (typ «elpi.apps.tc.tests.test.367»)) X2 /* suspended on X3, X2 */ Universe constraints: UNIVERSES: {elpi.apps.tc.tests.test.367} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α285 |= Prop -> SProp Type -> α285 -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: N = s (s z) X16_ = «elpi.apps.tc.tests.test.400» X17_ = «elpi.apps.tc.tests.test.401» X18_ = «elpi.apps.tc.tests.test.402» X19_ = «elpi.apps.tc.tests.test.403» X20_ = X0 Syntactic constraints: {c0 c1} : evar X0 (sort (typ «elpi.apps.tc.tests.test.404»)) X0 /* suspended on X0 */ Universe constraints: UNIVERSES: {elpi.apps.tc.tests.test.404 elpi.apps.tc.tests.test.403 elpi.apps.tc.tests.test.402 elpi.apps.tc.tests.test.401 elpi.apps.tc.tests.test.400} |= ALGEBRAIC UNIVERSES: {elpi.apps.tc.tests.test.403 elpi.apps.tc.tests.test.402 elpi.apps.tc.tests.test.401 elpi.apps.tc.tests.test.400} FLEXIBLE UNIVERSES: elpi.apps.tc.tests.test.403 elpi.apps.tc.tests.test.402 elpi.apps.tc.tests.test.401 elpi.apps.tc.tests.test.400 SORTS: α301 |= Prop -> SProp Type -> α301 -> Prop -> SProp WEAK CONSTRAINTS: fun `_:r` X0 c0 \ global (indc «O») Query assignments: P = c0 \ c1 \ fun `_:r` X1 c2 \ global (indc «O») X22_ = X1 X23_ = X1 app [global (indt «c1»), tc.maybe-eta-tm (fun `x:r` X0 c0 \ tc.maybe-eta-tm (fun `y:r` (X1 c0) c1 \ app [X2, c1, c0]) [c0]) []] Query assignments: A = c0 \ fun `y:r` (X1 c0) c1 \ app [X2, c1, c0] Expected = app [global (indt «c1»), tc.maybe-eta-tm (fun `x:r` X0 c0 \ tc.maybe-eta-tm (fun `y:r` (X1 c0) c1 \ app [X2, c1, c0]) [c0]) []] F = X2 Inn = c0 \ tc.maybe-eta-tm (fun `y:r` (X1 c0) c1 \ app [X2, c1, c0]) [c0] T = app [global (indt «c1»), tc.maybe-eta-tm (fun `x:r` X0 c0 \ tc.maybe-eta-tm (fun `y:r` (X1 c0) c1 \ app [X2, c1, c0]) [c0]) []] X24_ = X0 X25_ = c0 \ X1 c0 Syntactic constraints: evar X2 X3 X2 /* suspended on X2 */ {c0} : decl c0 `x:r` X0 ?- evar (X1 c0) (sort (typ «elpi.apps.tc.tests.test.479»)) (X1 c0) /* suspended on X1 */ evar X0 (sort (typ «elpi.apps.tc.tests.test.478»)) X0 /* suspended on X0 */ evar X4 (sort (typ «elpi.apps.tc.tests.test.480»)) X3 /* suspended on X4, X3 */ Universe constraints: UNIVERSES: {elpi.apps.tc.tests.test.480 elpi.apps.tc.tests.test.479 elpi.apps.tc.tests.test.478} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α383 α384 α385 |= Prop -> SProp Type -> α383 -> α384 -> α385 -> Prop -> SProp WEAK CONSTRAINTS: Query assignments: A = X0 Body1 = c0 \ tc.maybe-eta-tm (fun `y:r` X1 c1 \ tc.maybe-llam-tm (app [app [X2], app [X0, c0, c1], c1]) [c0, c1]) [ c0] Body2 = c0 \ c1 \ tc.maybe-llam-tm (app [app [X2], app [X0, c0, c1], c1]) [c0, c1] C = app [global (indt «c1»), tc.maybe-eta-tm (fun `x:r` X3 c0 \ tc.maybe-eta-tm (fun `y:r` X1 c1 \ tc.maybe-llam-tm (app [app [X2], app [X0, c0, c1], c1]) [c0, c1]) [c0]) []] Expected = app [global (indt «c1»), tc.maybe-eta-tm (fun `x:r` X3 c0 \ tc.maybe-eta-tm (fun `y:r` X1 c1 \ tc.maybe-llam-tm (app [app [X2], app [X0, c0, c1], c1]) [c0, c1]) [c0]) []] X = X2 X26_ = X3 X27_ = c0 \ X1 Y = c0 \ c1 \ app [X0, c0, c1] Query assignments: A = X0 Body1 = c0 \ tc.maybe-eta-tm (fun `y:r` X1 c1 \ tc.maybe-llam-tm (app [app [X2], app [X0, c0, c1], c1]) [c1, c0]) [ c0] Body2 = c0 \ c1 \ tc.maybe-llam-tm (app [app [X2], app [X0, c0, c1], c1]) [c1, c0] C = app [global (indt «c1»), tc.maybe-eta-tm (fun `x:r` X3 c0 \ tc.maybe-eta-tm (fun `y:r` X1 c1 \ tc.maybe-llam-tm (app [app [X2], app [X0, c0, c1], c1]) [c1, c0]) [c0]) []] Expected = app [global (indt «c1»), tc.maybe-eta-tm (fun `x:r` X3 c0 \ tc.maybe-eta-tm (fun `y:r` X1 c1 \ tc.maybe-llam-tm (app [app [X2], app [X0, c0, c1], c1]) [c1, c0]) [c0]) []] X = X2 X28_ = X3 X29_ = c0 \ X1 Y = c0 \ c1 \ app [X0, c0, c1] Syntactic constraints: {c0} : decl c0 `x:r` X3 ?- evar X1 (sort (typ «elpi.apps.tc.tests.test.616»)) X1 /* suspended on X1 */ evar X0 X4 X0 /* suspended on X0 */ evar X2 X5 X2 /* suspended on X2 */ evar X3 (sort (typ «elpi.apps.tc.tests.test.615»)) X3 /* suspended on X3 */ evar X6 (sort (typ «elpi.apps.tc.tests.test.618»)) X4 /* suspended on X6, X4 */ evar X7 (sort (typ «elpi.apps.tc.tests.test.617»)) X5 /* suspended on X7, X5 */ Universe constraints: UNIVERSES: {elpi.apps.tc.tests.test.618 elpi.apps.tc.tests.test.617 elpi.apps.tc.tests.test.616 elpi.apps.tc.tests.test.615} |= ALGEBRAIC UNIVERSES: {} FLEXIBLE UNIVERSES: SORTS: α450 α451 α452 α453 |= Prop -> SProp Type -> α450 -> α451 -> α452 -> α453 -> Prop -> SProp WEAK CONSTRAINTS: File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) rewrite_relation_fun [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (equiv_rewrite_relation R) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (eq_rewrite_relation A) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip_StrictOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @PartialOrder_StrictOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CRelationClasses.flip_StrictOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CMorphisms.PartialOrder_StrictOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip_PreOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @StrictOrder_PreOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CRelationClasses.flip_PreOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CMorphisms.StrictOrder_PreOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CRelationClasses.flip_Antisymmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CRelationClasses.flip_Symmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CRelationClasses.complement_Symmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @PartialOrder_inverse) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @StrictOrder_PartialOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @eq_proper_proxy || class_apply @reflexive_proper_proxy) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (not_evar R; class_apply @proper_proper_proxy) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) normalizes [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip2) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip1) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (subrelation_tac T U) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (apply (forall_subrelation B R S); intro) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @subrelation_symmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CRelationClasses.PartialOrder_inverse) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CMorphisms.StrictOrder_PartialOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip_Transitive) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CMorphisms.flip2) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CMorphisms.flip1) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (CMorphisms.subrelation_tac T U) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (apply (CMorphisms.forall_subrelation B R S); intro) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CRelationClasses.subrelation_symmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (apply @CMorphisms.flip_proper) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CMorphisms.proper_flip_proper) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) CMorphisms.partial_application_tactic [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) CMorphisms.proper_subrelation [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) CMorphisms.proper_normalization [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) CMorphisms.proper_reflexive [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CRelationClasses.flip_Transitive) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip_Irreflexive) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @complement_Irreflexive) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip_Asymmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (apply @flip_proper) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (apply @complement_proper) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @proper_flip_proper) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) partial_application_tactic [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) proper_subrelation [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) proper_normalization [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) proper_reflexive [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CRelationClasses.flip_Irreflexive) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CRelationClasses.complement_Irreflexive) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CRelationClasses.flip_Asymmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @irreflexivity) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (apply flip_Reflexive) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CRelationClasses.irreflexivity) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (apply CRelationClasses.flip_Reflexive) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) unconvertible [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CMorphisms.eq_proper_proxy || class_apply @CMorphisms.reflexive_proper_proxy) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (not_evar R; class_apply @CMorphisms.proper_proper_proxy) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) CMorphisms.normalizes [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip_Antisymmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip_Symmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @complement_Symmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 13, characters 0-24: Warning: There is an hint extern in the typeclass db: (*external*) (reflexive_proxy_tac A R) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/stdppInj.v", line 14, characters 0-8: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] File "./apps/derive/tests/test_eqb.v", line 54, characters 0-8: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] File "./apps/derive/tests/test_eqb.v", line 55, characters 0-8: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] Received the following event [str new_instance, str I4, str A, str Export, int -1] Inductive elpi.apps.derive.tests.test_param1.Coverage.is_unit Inductive elpi.apps.derive.tests.test_param1.OtherTests.is_unit (shorter name to refer to it in current context is OtherTests.is_unit) Debug: [elpitime] Elpi: get_and_compile 0.0002 Debug: [TC] - Time of instance search is 0.000428 Debug: [TC] - Time of refine.typecheck is 0.001247 Debug: [elpitime] Elpi: query-compilation:0.0078 static-check:0.0000 optimization:0.0005 runtime:0.0130 (with success) Finished transaction in 0.022 secs (0.013u,0.003s) (successful) File "./apps/derive/tests/test_eqcorrect.v", line 56, characters 6-14: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] File "./apps/derive/tests/test_eqOK.v", line 55, characters 6-14: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] {| a := 3; b := false; c := tt |} : foo : foo {| a := 1 + 2; b := false; c := tt |} : foo : foo {| a := 1 + 2; b := false; c := tt |} : foo : foo {| a := ?n; b := ?e2; c := tt |} : foo : foo where ?n : [ |- nat] ?e2 : [ |- bool] {| a := ?n; b := ?e2; c := tt |} : foo where ?n : [ |- nat] ?e2 : [ |- bool] fun x : foo => over foo__a (fun _ : nat => 3) x : foo : foo -> foo where ?e8 : [x : foo |- Type] (x cannot be used) « unresolved record » : unresolved_record fun x : baz => over (compose (compose baz__w bar__f) foo__c) (fun _ : nat => 3) x : baz : baz -> baz fun x : baz => over (compose (compose baz__w bar__f) foo__c) (fun=> 3) x : baz : baz -> baz Finished transaction in 4.526 secs (1.556u,0.131s) (successful) Finished transaction in 138.676 secs (76.36u,0.496s) (successful) Finished transaction in 2.545 secs (1.718u,0.007s) (successful) File "./tests/test_ctx_cache.v", line 22, characters 0-8: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] Inductive peano : Set := Zero : peano | Succ : peano -> peano. Arguments peano.Succ p = false : bool peano.eqb_OK : forall x1 x2 : peano, reflect (x1 = x2) (peano.eqb x1 x2) peano.eqb_OK is not universe polymorphic Arguments peano.eqb_OK x1 x2 peano.eqb_OK is opaque Expands to: Constant elpi.apps.derive.examples.readme.peano.eqb_OK Declared in library elpi.apps.derive.examples.readme, line 4, characters 0-60 Derivation param1 on const «Nat.add» Derivation param1 on const «Nat.add» took 0.021739 Derivation param2 on const «Nat.add» Derivation param2 on const «Nat.add» took 0.065838 Derivation eqb_alias on const «Nat.add» Derivation eqb_alias on const «Nat.add» failed, continuing Derivation param1_congr on const «Nat.add» Derivation param1_congr on const «Nat.add» took 0.000055 Derivation param1_inhab on const «Nat.add» Derivation param1_inhab on const «Nat.add» failed, continuing Derivation eqbcorrect_alias on const «Nat.add» Derivation eqbcorrect_alias on const «Nat.add» failed, continuing Derivation param1_trivial on const «Nat.add» Derivation param1_trivial on const «Nat.add» failed, continuing Derivation eqbOK_alias on const «Nat.add» Derivation eqbOK_alias on const «Nat.add» failed, continuing is_add : forall n : nat, is_nat n -> forall m : nat, is_nat m -> is_nat (n + m) more : forall A : Type, A -> tickle A -> tickle A : forall A : Type, A -> tickle A -> tickle A tickle.eqb : forall A : Type, (A -> A -> bool) -> tickle A -> tickle A -> bool : forall A : Type, (A -> A -> bool) -> tickle A -> tickle A -> bool tickle.eqb_OK : forall (A : Type) (f : A -> A -> bool), (forall x y : A, reflect (x = y) (f x y)) -> forall x y : tickle A, reflect (x = y) (tickle.eqb A f x y) : forall (A : Type) (f : A -> A -> bool), (forall x y : A, reflect (x = y) (f x y)) -> forall x y : tickle A, reflect (x = y) (tickle.eqb A f x y) tickle.map : forall A B : Type, (A -> B) -> tickle A -> tickle B : forall A B : Type, (A -> B) -> tickle A -> tickle B tickle.tickle_R : forall A B : Type, (A -> B -> Type) -> tickle A -> tickle B -> Type : forall A B : Type, (A -> B -> Type) -> tickle A -> tickle B -> Type Starting module rtree Declaring inductive parameter A explicit (sort (typ «elpi.apps.derive.examples.usage.242»)) c0 \ inductive rtree tt (arity (sort (typ «elpi.apps.derive.examples.usage.243»))) c1 \ [constructor Leaf (arity (prod `a:r` c0 c2 \ c1)), constructor Node (arity (prod `l:r` (app [global (indt «tickle.tickle»), c1]) c2 \ c1))] Deriving Derivation map on indt «rtree» Derivation map on indt «rtree» took 0.030484 Derivation lens on indt «rtree» Derivation lens on indt «rtree» failed, continuing Derivation param1 on indt «rtree» Derivation param1 on indt «rtree» took 0.067356 Derivation param2 on indt «rtree» Derivation param2 on indt «rtree» took 0.092641 Derivation tag on indt «rtree» Derivation tag on indt «rtree» took 0.006976 Derivation eqType_ast on indt «rtree» Derivation eqType_ast on indt «rtree» took 0.002683 Derivation lens_laws on indt «rtree» Derivation lens_laws on indt «rtree» took 0.000347 Derivation param1_congr on indt «rtree» Derivation param1_congr on indt «rtree» took 0.014774 Derivation param1_inhab on indt «rtree» Derivation param1_inhab on indt «rtree» took 0.022376 Derivation param1_functor on indt «rtree» Derivation param1_functor on indt «rtree» took 0.022975 Derivation fields on indt «rtree» Derivation fields on indt «rtree» took 0.078276 Derivation param1_trivial on indt «rtree» Derivation param1_trivial on indt «rtree» took 0.253337 Derivation induction on indt «rtree» Derivation induction on indt «rtree» took 0.014904 Derivation eqb on indt «rtree» Derivation eqb on indt «rtree» took 0.070817 Derivation eqbcorrect on indt «rtree» Derivation eqbcorrect on indt «rtree» took 0.324188 Derivation eqbOK on indt «rtree» Derivation eqbOK on indt «rtree» took 0.074448 Done rtree.induction : forall (A : Type) (PA : A -> Type) (P : rtree A -> Type), (forall a : A, PA a -> P (Leaf A a)) -> (forall l : tickle (rtree A), tickle.is_tickle (rtree A) P l -> P (Node A l)) -> forall x : rtree A, rtree.is_rtree A PA x -> P x : forall (A : Type) (PA : A -> Type) (P : rtree A -> Type), (forall a : A, PA a -> P (Leaf A a)) -> (forall l : tickle (rtree A), tickle.is_tickle (rtree A) P l -> P (Node A l)) -> forall x : rtree A, rtree.is_rtree A PA x -> P x Starting module Box Declaring inductive parameter A explicit (sort (typ «elpi.apps.derive.examples.usage.461»)) c0 \ record Box (sort (typ «elpi.apps.derive.examples.usage.462»)) Build_Box (field [coercion off, canonical tt] contents c0 c1 \ field [coercion off, canonical tt] tag (global (indt «nat»)) c2 \ end-record) Deriving Skipping derivation map on indt «Box» since the user did not select it Derivation lens on indt «Box» Derivation lens on indt «Box» took 0.081783 Skipping derivation param1 on indt «Box» since the user did not select it Skipping derivation param2 on indt «Box» since the user did not select it Derivation tag on indt «Box» Derivation tag on indt «Box» took 0.016214 Derivation eqType_ast on indt «Box» Derivation eqType_ast on indt «Box» took 0.005095 Derivation lens_laws on indt «Box» Derivation lens_laws on indt «Box» took 0.178088 Skipping derivation param1_congr on indt «Box» since the user did not select it Skipping derivation param1_inhab on indt «Box» since the user did not select it Skipping derivation param1_functor on indt «Box» since the user did not select it Derivation fields on indt «Box» Derivation fields on indt «Box» took 0.087557 Skipping derivation param1_trivial on indt «Box» since the user did not select it Skipping derivation induction on indt «Box» since the user did not select it Derivation eqb on indt «Box» Derivation eqb on indt «Box» took 0.068125 Skipping derivation eqbcorrect on indt «Box» since the user did not select it Skipping derivation eqbOK on indt «Box» since the user did not select it Done Box.eqb : forall A : Type, (A -> A -> bool) -> Box A -> Box A -> bool : forall A : Type, (A -> A -> bool) -> Box A -> Box A -> bool @Box._tag : forall A : Type, Lens (Box A) (Box A) nat nat : forall A : Type, Lens (Box A) (Box A) nat nat Box._tag_set_set : forall (A : Type) (r : Box A) (y x : nat), set Box._tag x (set Box._tag y r) = set Box._tag x r : forall (A : Type) (r : Box A) (y x : nat), set Box._tag x (set Box._tag y r) = set Box._tag x r Box._tag_contents_exchange : forall (A : Type) (r : Box A) (x : nat) (y : A), set Box._tag x (set Box._contents y r) = set Box._contents y (set Box._tag x r) : forall (A : Type) (r : Box A) (x : nat) (y : A), set Box._tag x (set Box._contents y r) = set Box._contents y (set Box._tag x r) nat_eqb_OK : forall x y : nat, reflect (x = y) (nat_eqb x y) : forall x y : nat, reflect (x = y) (nat_eqb x y) Derivation map on indt «a» Derivation map on indt «a» took 0.014921 Derivation lens on indt «a» Derivation lens on indt «a» failed, continuing Derivation param1 on indt «a» Derivation param1 on indt «a» took 0.037545 Derivation param2 on indt «a» Derivation param2 on indt «a» took 0.060677 Derivation tag on indt «a» Derivation tag on indt «a» took 0.010614 Derivation eqType_ast on indt «a» Derivation eqType_ast on indt «a» took 0.004208 Derivation lens_laws on indt «a» Derivation lens_laws on indt «a» took 0.000352 Derivation param1_congr on indt «a» Derivation param1_congr on indt «a» took 0.005024 Derivation param1_inhab on indt «a» Derivation param1_inhab on indt «a» took 0.011000 Derivation param1_functor on indt «a» Derivation param1_functor on indt «a» took 0.020709 Derivation fields on indt «a» Derivation fields on indt «a» took 0.060287 Derivation param1_trivial on indt «a» Derivation param1_trivial on indt «a» took 0.026831 Derivation induction on indt «a» Derivation induction on indt «a» took 0.023863 Derivation eqb on indt «a» Derivation eqb on indt «a» took 0.033112 Derivation eqbcorrect on indt «a» Derivation eqbcorrect on indt «a» took 0.067403 Derivation eqbOK on indt «a» Derivation eqbOK on indt «a» took 0.024666 Skipping derivation map on indt «b» since the user did not select it Skipping derivation lens on indt «b» since the user did not select it Derivation param1 on indt «b» Derivation param1 on indt «b» took 0.068282 Skipping derivation param2 on indt «b» since the user did not select it Derivation tag on indt «b» Derivation tag on indt «b» took 0.016726 Derivation eqType_ast on indt «b» Derivation eqType_ast on indt «b» took 0.007478 Skipping derivation lens_laws on indt «b» since the user did not select it Skipping derivation param1_congr on indt «b» since the user did not select it Derivation param1_inhab on indt «b» Derivation param1_inhab on indt «b» took 0.023607 Derivation param1_functor on indt «b» Derivation param1_functor on indt «b» took 0.018035 Derivation fields on indt «b» Derivation fields on indt «b» took 0.075908 Skipping derivation param1_trivial on indt «b» since the user did not select it Derivation induction on indt «b» Derivation induction on indt «b» took 0.024214 Derivation eqb on indt «b» Derivation eqb on indt «b» took 0.043215 Derivation eqbcorrect on indt «b» Derivation eqbcorrect on indt «b» took 0.044616 Derivation eqbOK on indt «b» Derivation eqbOK on indt «b» took 0.006213 a_eqb : a -> a -> bool b_eqb : b -> b -> bool File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: rtree is nested using tickle.tickle. No scheme for tickle.tickle is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.tickle.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: rtree is nested using tickle.tickle. No scheme for tickle.tickle is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.tickle.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: rtree is nested using tickle.tickle. No scheme for tickle.tickle is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.tickle.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: rtree is nested using tickle.tickle. No scheme for tickle.tickle is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.tickle.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: rtree is nested using tickle.tickle. No scheme for tickle.tickle is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.tickle.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: rtree is nested using tickle.tickle. No scheme for tickle.tickle is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.tickle.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: rtree is nested using tickle.tickle. No scheme for tickle.tickle is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.tickle.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: rtree is nested using tickle.tickle. No scheme for tickle.tickle is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.tickle.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: rtree is nested using tickle.tickle. No scheme for tickle.tickle is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.tickle.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: rtree is nested using tickle.tickle. No scheme for tickle.tickle is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.tickle.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: rtree is nested using tickle.tickle. No scheme for tickle.tickle is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.tickle.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: rtree is nested using tickle.tickle. No scheme for tickle.tickle is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.tickle.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: is_rtree is nested using tickle.is_tickle. No scheme for tickle.is_tickle is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.is_tickle.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: is_rtree is nested using tickle.is_tickle. No scheme for tickle.is_tickle is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.is_tickle.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: is_rtree is nested using tickle.is_tickle. No scheme for tickle.is_tickle is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.is_tickle.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: is_rtree is nested using tickle.is_tickle. No scheme for tickle.is_tickle is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.is_tickle.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: is_rtree is nested using tickle.is_tickle. No scheme for tickle.is_tickle is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.is_tickle.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: is_rtree is nested using tickle.is_tickle. No scheme for tickle.is_tickle is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.is_tickle.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: is_rtree is nested using tickle.is_tickle. No scheme for tickle.is_tickle is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.is_tickle.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: is_rtree is nested using tickle.is_tickle. No scheme for tickle.is_tickle is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.is_tickle.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: is_rtree is nested using tickle.is_tickle. No scheme for tickle.is_tickle is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.is_tickle.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: is_rtree is nested using tickle.is_tickle. No scheme for tickle.is_tickle is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.is_tickle.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: is_rtree is nested using tickle.is_tickle. No scheme for tickle.is_tickle is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.is_tickle.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: is_rtree is nested using tickle.is_tickle. No scheme for tickle.is_tickle is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.is_tickle.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: rtree_R is nested using tickle.tickle_R. No scheme for tickle.tickle_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.tickle_R.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: rtree_R is nested using tickle.tickle_R. No scheme for tickle.tickle_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.tickle_R.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: rtree_R is nested using tickle.tickle_R. No scheme for tickle.tickle_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.tickle_R.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: rtree_R is nested using tickle.tickle_R. No scheme for tickle.tickle_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.tickle_R.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: rtree_R is nested using tickle.tickle_R. No scheme for tickle.tickle_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.tickle_R.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: rtree_R is nested using tickle.tickle_R. No scheme for tickle.tickle_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.tickle_R.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: rtree_R is nested using tickle.tickle_R. No scheme for tickle.tickle_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.tickle_R.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: rtree_R is nested using tickle.tickle_R. No scheme for tickle.tickle_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.tickle_R.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: rtree_R is nested using tickle.tickle_R. No scheme for tickle.tickle_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.tickle_R.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: rtree_R is nested using tickle.tickle_R. No scheme for tickle.tickle_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.tickle_R.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: rtree_R is nested using tickle.tickle_R. No scheme for tickle.tickle_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.tickle_R.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 42, characters 0-85: Warning: rtree_R is nested using tickle.tickle_R. No scheme for tickle.tickle_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for tickle.tickle_R.". [register-all,automation,default] File "./apps/derive/examples/usage.v", line 52, characters 0-92: Warning: Global name tag is taken, using tag1 instead [elpi.renamed,elpi,default] Inductive peano : Set := Zero : peano | Succ : peano -> peano. Arguments Succ p = false : bool peano_eqb_OK : forall x1 x2 : peano, reflect (x1 = x2) (peano_eqb x1 x2) Notation peano := peano.peano Inductive peano : Set := Zero : peano | Succ : peano -> peano. Arguments peano.Succ p Inductive peano : Set := Zero : peano | Succ : peano -> peano. Arguments peano.Succ p = false : bool peano.eqb_OK : forall x1 x2 : peano, reflect (x1 = x2) (peano.eqb x1 x2) Notation peano := Peano.peano Inductive peano : Set := Zero : peano | Succ : peano -> peano. Arguments Peano.Succ p Inductive peano : Set := Zero : peano | Succ : peano -> peano. Arguments Peano.Succ p = false : bool Peano.eqb_OK : forall x1 x2 : peano, reflect (x1 = x2) (Peano.eqb x1 x2) Notation peano := Peano.peano Inductive peano : Set := Zero : peano | Succ : peano -> peano. Arguments Peano.Succ p Inductive peano : Set := Zero : peano | Succ : peano -> peano. Arguments Peano.Succ p Module Peano := Struct Inductive peano : Set := Zero : example4.peano | Succ : example4.peano -> example4.peano. Definition peano_rect : forall P : example4.peano -> Type, P example4.Zero -> (forall p : example4.peano, P p -> P (example4.Succ p)) -> forall p : example4.peano, P p. Definition peano_ind : forall P : example4.peano -> Prop, P example4.Zero -> (forall p : example4.peano, P p -> P (example4.Succ p)) -> forall p : example4.peano, P p. Definition peano_rec : forall P : example4.peano -> Set, P example4.Zero -> (forall p : example4.peano, P p -> P (example4.Succ p)) -> forall p : example4.peano, P p. Definition peano_sind : forall P : example4.peano -> SProp, P example4.Zero -> (forall p : example4.peano, P p -> P (example4.Succ p)) -> forall p : example4.peano, P p. Definition Peano_map : example4.peano -> example4.peano. Inductive is_peano : example4.peano -> Type := is_Zero : is_peano example4.Zero | is_Succ : forall p : example4.peano, is_peano p -> is_peano (example4.Succ p). Definition is_peano_rect : forall P : forall s1 : example4.peano, is_peano s1 -> Type, P example4.Zero is_Zero -> (forall (p : example4.peano) (Pp : is_peano p), P p Pp -> P (example4.Succ p) (is_Succ p Pp)) -> forall (s1 : example4.peano) (i : is_peano s1), P s1 i. Definition is_peano_ind : forall P : forall s1 : example4.peano, is_peano s1 -> Prop, P example4.Zero is_Zero -> (forall (p : example4.peano) (Pp : is_peano p), P p Pp -> P (example4.Succ p) (is_Succ p Pp)) -> forall (s1 : example4.peano) (i : is_peano s1), P s1 i. Definition is_peano_rec : forall P : forall s1 : example4.peano, is_peano s1 -> Set, P example4.Zero is_Zero -> (forall (p : example4.peano) (Pp : is_peano p), P p Pp -> P (example4.Succ p) (is_Succ p Pp)) -> forall (s1 : example4.peano) (i : is_peano s1), P s1 i. Definition is_peano_sind : forall P : forall s1 : example4.peano, is_peano s1 -> SProp, P example4.Zero is_Zero -> (forall (p : example4.peano) (Pp : is_peano p), P p Pp -> P (example4.Succ p) (is_Succ p Pp)) -> forall (s1 : example4.peano) (i : is_peano s1), P s1 i. Definition reali_is_peano : reali_db example4.peano is_peano. Definition reali_is_peano_Zero : reali_db example4.Zero is_Zero. Definition reali_is_peano_Succ : reali_db example4.Succ is_Succ. Inductive peano_R : example4.peano -> example4.peano -> Set := Zero_R : peano_R example4.Zero example4.Zero | Succ_R : forall p1 p2 : example4.peano, peano_R p1 p2 -> peano_R (example4.Succ p1) (example4.Succ p2). Definition peano_R_rect : forall P : forall s1 s2 : example4.peano, peano_R s1 s2 -> Type, P example4.Zero example4.Zero Zero_R -> (forall (p1 p2 : example4.peano) (p_R : peano_R p1 p2), P p1 p2 p_R -> P (example4.Succ p1) (example4.Succ p2) (Succ_R p1 p2 p_R)) -> forall (s1 s2 : example4.peano) (p : peano_R s1 s2), P s1 s2 p. Definition peano_R_ind : forall P : forall s1 s2 : example4.peano, peano_R s1 s2 -> Prop, P example4.Zero example4.Zero Zero_R -> (forall (p1 p2 : example4.peano) (p_R : peano_R p1 p2), P p1 p2 p_R -> P (example4.Succ p1) (example4.Succ p2) (Succ_R p1 p2 p_R)) -> forall (s1 s2 : example4.peano) (p : peano_R s1 s2), P s1 s2 p. Definition peano_R_rec : forall P : forall s1 s2 : example4.peano, peano_R s1 s2 -> Set, P example4.Zero example4.Zero Zero_R -> (forall (p1 p2 : example4.peano) (p_R : peano_R p1 p2), P p1 p2 p_R -> P (example4.Succ p1) (example4.Succ p2) (Succ_R p1 p2 p_R)) -> forall (s1 s2 : example4.peano) (p : peano_R s1 s2), P s1 s2 p. Definition peano_R_sind : forall P : forall s1 s2 : example4.peano, peano_R s1 s2 -> SProp, P example4.Zero example4.Zero Zero_R -> (forall (p1 p2 : example4.peano) (p_R : peano_R p1 p2), P p1 p2 p_R -> P (example4.Succ p1) (example4.Succ p2) (Succ_R p1 p2 p_R)) -> forall (s1 s2 : example4.peano) (p : peano_R s1 s2), P s1 s2 p. Definition param_peano_R : param_db example4.peano example4.peano peano_R. Definition param_Zero_R : param_db example4.Zero example4.Zero Zero_R. Definition param_Succ_R : param_db example4.Succ example4.Succ Succ_R. Definition Peano_tag : example4.peano -> BinNums.positive. Definition congr_is_Zero : is_Zero = is_Zero. Definition congr_is_Succ : forall (x : example4.peano) (p1 p2 : is_peano x), p1 = p2 -> is_Succ x p1 = is_Succ x p2. Definition is_peano_inhab : forall x : example4.peano, is_peano x. Definition is_peano_functor : forall x : example4.peano, is_peano x -> is_peano x. Record box_peano_Zero : Type := Box_peano_Zero { }. Record box_peano_Succ : Type := Box_peano_Succ { Box_peano_Succ_0 : example4.peano }. Definition Box_peano_Succ_0 : box_peano_Succ -> example4.peano. Definition Peano_fields_t : BinNums.positive -> Type. Definition Peano_fields : forall i : example4.peano, Peano_fields_t (Peano_tag i). Definition Peano_construct : forall p : BinNums.positive, Peano_fields_t p -> option example4.peano. Parameter Peano_constructP : forall i : example4.peano, Peano_construct (Peano_tag i) (Peano_fields i) = Some i. Definition is_peano_trivial : forall x : example4.peano, {u : is_peano x & forall v : is_peano x, u = v}. Definition Peano_induction : forall P : example4.peano -> Type, P example4.Zero -> (forall p : example4.peano, P p -> P (example4.Succ p)) -> forall s1 : example4.peano, is_peano s1 -> P s1. Definition Peano_eqb_fields : (example4.peano -> example4.peano -> bool) -> forall x : BinNums.positive, Peano_fields_t x -> Peano_fields_t x -> bool. Definition Peano_eqb : example4.peano -> example4.peano -> bool. Parameter Peano_eqb_correct : forall x : example4.peano, eqb_correct_on Peano_eqb x. Parameter Peano_eqb_refl : forall x : example4.peano, eqb_refl_on Peano_eqb x. Parameter Peano_eqb_OK : forall x1 x2 : example4.peano, reflect (x1 = x2) (Peano_eqb x1 x2). Parameter Peano_eqb_OK_sumbool : forall x y : example4.peano, {x = y} + {x <> y}. End = false : bool Peano.Peano_eqb_OK : forall x1 x2 : peano, reflect (x1 = x2) (Peano.Peano_eqb x1 x2) Inductive peano : Set := Zero : peano | Succ : peano -> peano. Arguments Succ p = false : bool eqb_OK : forall x1 x2 : peano, reflect (x1 = x2) (eqb x1 x2) Inductive peano : Set := Zero : Peano.peano | Succ : Peano.peano -> Peano.peano. Arguments Peano.Succ p = false : bool Peano.eqb_OK : forall x1 x2 : Peano.peano, reflect (x1 = x2) (Peano.eqb x1 x2) File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) rewrite_relation_fun [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (equiv_rewrite_relation R) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (eq_rewrite_relation A) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip_StrictOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @PartialOrder_StrictOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CRelationClasses.flip_StrictOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CMorphisms.PartialOrder_StrictOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip_PreOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @StrictOrder_PreOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CRelationClasses.flip_PreOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CMorphisms.StrictOrder_PreOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CRelationClasses.flip_Antisymmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CRelationClasses.flip_Symmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CRelationClasses.complement_Symmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @PartialOrder_inverse) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @StrictOrder_PartialOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @eq_proper_proxy || class_apply @reflexive_proper_proxy) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (not_evar R; class_apply @proper_proper_proxy) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) normalizes [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip2) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip1) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (subrelation_tac T U) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (apply (forall_subrelation B R S); intro) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @subrelation_symmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CRelationClasses.PartialOrder_inverse) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CMorphisms.StrictOrder_PartialOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip_Transitive) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CMorphisms.flip2) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CMorphisms.flip1) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (CMorphisms.subrelation_tac T U) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (apply (CMorphisms.forall_subrelation B R S); intro) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CRelationClasses.subrelation_symmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (apply @CMorphisms.flip_proper) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CMorphisms.proper_flip_proper) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) CMorphisms.partial_application_tactic [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) CMorphisms.proper_subrelation [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) CMorphisms.proper_normalization [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) CMorphisms.proper_reflexive [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CRelationClasses.flip_Transitive) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip_Irreflexive) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @complement_Irreflexive) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip_Asymmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (apply @flip_proper) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (apply @complement_proper) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @proper_flip_proper) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) partial_application_tactic [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) proper_subrelation [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) proper_normalization [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) proper_reflexive [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CRelationClasses.flip_Irreflexive) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CRelationClasses.complement_Irreflexive) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CRelationClasses.flip_Asymmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @irreflexivity) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (apply flip_Reflexive) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CRelationClasses.irreflexivity) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (apply CRelationClasses.flip_Reflexive) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) unconvertible [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @CMorphisms.eq_proper_proxy || class_apply @CMorphisms.reflexive_proper_proxy) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (not_evar R; class_apply @CMorphisms.proper_proper_proxy) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) CMorphisms.normalizes [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip_Antisymmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip_Symmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @complement_Symmetric) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 21, characters 0-19: Warning: There is an hint extern in the typeclass db: (*external*) (reflexive_proxy_tac A R) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 28, characters 0-8: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] File "./apps/tc/tests-stdlib/bigTest.v", line 165, characters 0-8: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] File "./apps/tc/tests-stdlib/bigTest.v", line 391, characters 0-8: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] File "./apps/tc/tests-stdlib/bigTest.v", line 441, characters 0-8: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] File "./apps/tc/tests-stdlib/bigTest.v", line 520, characters 0-134: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip_PreOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 520, characters 0-134: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @StrictOrder_PreOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 520, characters 0-134: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @flip_PreOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 520, characters 0-134: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @StrictOrder_PreOrder) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 675, characters 0-8: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1158, characters 0-63: Warning: Closed notations (i.e. starting and ending with a terminal symbol) should usually be at level 0 (default). [closed-notation-not-level-0,parsing,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1159, characters 0-130: Warning: Closed notations (i.e. starting and ending with a terminal symbol) should usually be at level 0 (default). [closed-notation-not-level-0,parsing,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1221, characters 0-91: Warning: Closed notations (i.e. starting and ending with a terminal symbol) should usually be at level 0 (default). [closed-notation-not-level-0,parsing,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1223, characters 0-186: Warning: Closed notations (i.e. starting and ending with a terminal symbol) should usually be at level 0 (default). [closed-notation-not-level-0,parsing,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1340, characters 0-97: Warning: Postfix notations (i.e. starting with a nonterminal symbol and ending with a terminal symbol) should usually be at level 1 (default). [postfix-notation-not-level-1,parsing,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1342, characters 0-97: Warning: Postfix notations (i.e. starting with a nonterminal symbol and ending with a terminal symbol) should usually be at level 1 (default). [postfix-notation-not-level-1,parsing,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1353, characters 7-15: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1354, characters 7-15: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1361, characters 7-15: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1392, characters 0-71: Warning: Closed notations (i.e. starting and ending with a terminal symbol) should usually be at level 0 (default). [closed-notation-not-level-0,parsing,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1399, characters 0-113: Warning: Closed notations (i.e. starting and ending with a terminal symbol) should usually be at level 0 (default). [closed-notation-not-level-0,parsing,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1411, characters 0-175: Warning: Closed notations (i.e. starting and ending with a terminal symbol) should usually be at level 0 (default). [closed-notation-not-level-0,parsing,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1415, characters 0-230: Warning: Closed notations (i.e. starting and ending with a terminal symbol) should usually be at level 0 (default). [closed-notation-not-level-0,parsing,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1419, characters 0-285: Warning: Closed notations (i.e. starting and ending with a terminal symbol) should usually be at level 0 (default). [closed-notation-not-level-0,parsing,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1423, characters 0-340: Warning: Closed notations (i.e. starting and ending with a terminal symbol) should usually be at level 0 (default). [closed-notation-not-level-0,parsing,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1427, characters 0-399: Warning: Closed notations (i.e. starting and ending with a terminal symbol) should usually be at level 0 (default). [closed-notation-not-level-0,parsing,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1432, characters 0-454: Warning: Closed notations (i.e. starting and ending with a terminal symbol) should usually be at level 0 (default). [closed-notation-not-level-0,parsing,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1437, characters 0-509: Warning: Closed notations (i.e. starting and ending with a terminal symbol) should usually be at level 0 (default). [closed-notation-not-level-0,parsing,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1442, characters 0-564: Warning: Closed notations (i.e. starting and ending with a terminal symbol) should usually be at level 0 (default). [closed-notation-not-level-0,parsing,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1447, characters 0-629: Warning: Closed notations (i.e. starting and ending with a terminal symbol) should usually be at level 0 (default). [closed-notation-not-level-0,parsing,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1453, characters 0-690: Warning: Closed notations (i.e. starting and ending with a terminal symbol) should usually be at level 0 (default). [closed-notation-not-level-0,parsing,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1459, characters 0-751: Warning: Closed notations (i.e. starting and ending with a terminal symbol) should usually be at level 0 (default). [closed-notation-not-level-0,parsing,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1465, characters 0-812: Warning: Closed notations (i.e. starting and ending with a terminal symbol) should usually be at level 0 (default). [closed-notation-not-level-0,parsing,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1710, characters 0-186: Warning: There is an hint extern in the typeclass db: (*external*) (apply @flip_proper) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1710, characters 0-186: Warning: There is an hint extern in the typeclass db: (*external*) (apply @complement_proper) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1710, characters 0-186: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @proper_flip_proper) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1710, characters 0-186: Warning: There is an hint extern in the typeclass db: (*external*) partial_application_tactic [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1710, characters 0-186: Warning: There is an hint extern in the typeclass db: (*external*) proper_subrelation [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1710, characters 0-186: Warning: There is an hint extern in the typeclass db: (*external*) proper_normalization [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1710, characters 0-186: Warning: There is an hint extern in the typeclass db: (*external*) proper_reflexive [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1710, characters 0-186: Warning: There is an hint extern in the typeclass db: (*external*) (apply @flip_proper) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1710, characters 0-186: Warning: There is an hint extern in the typeclass db: (*external*) (apply @complement_proper) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1710, characters 0-186: Warning: There is an hint extern in the typeclass db: (*external*) (class_apply @proper_flip_proper) [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1710, characters 0-186: Warning: There is an hint extern in the typeclass db: (*external*) partial_application_tactic [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1710, characters 0-186: Warning: There is an hint extern in the typeclass db: (*external*) proper_subrelation [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1710, characters 0-186: Warning: There is an hint extern in the typeclass db: (*external*) proper_normalization [elpi.TC.hints,elpi,default] File "./apps/tc/tests-stdlib/bigTest.v", line 1710, characters 0-186: Warning: There is an hint extern in the typeclass db: (*external*) proper_reflexive [elpi.TC.hints,elpi,default] File "./apps/tc/tests/tlc.v", line 5, characters 2-10: Warning: Use of "Notation" keyword for abbreviations is deprecated, use "Abbreviation" instead. [notation-for-abbreviation,deprecated-since-9.2,deprecated,default] derive.param1_trivial: wrong shape is_nest . It does not look like a unary parametricity translation of an inductive with no indexes. derive.param1_trivial: wrong shape is_vect A PA . It does not look like a unary parametricity translation of an inductive with no indexes. Debug: Cannot enforce elpi_apps_derive_tests_stdlib.test_derive.4520 <= Set Skipping derivation map on indt «nat» since it has been already run Derivation lens on indt «nat» Derivation lens on indt «nat» failed, continuing Skipping derivation param1 on indt «nat» since it has been already run Skipping derivation param2 on indt «nat» since it has been already run Skipping derivation tag on indt «nat» since it has been already run Skipping derivation eqType_ast on indt «nat» since it has been already run Derivation projK on indt «nat» Derivation projK on indt «nat» took 0.001525 Derivation isK on indt «nat» Derivation isK on indt «nat» took 0.001759 Derivation eq on indt «nat» Derivation eq on indt «nat» took 0.001649 Derivation invert on indt «nat» Derivation invert on indt «nat» took 0.002040 Skipping derivation lens_laws on indt «nat» since it has been already run Skipping derivation param1_congr on indt «nat» since it has been already run Skipping derivation param1_inhab on indt «nat» since it has been already run Skipping derivation param1_functor on indt «nat» since it has been already run Skipping derivation fields on indt «nat» since it has been already run Derivation bcongr on indt «nat» Derivation bcongr on indt «nat» took 0.002837 Derivation idx2inv on indt «nat» Derivation idx2inv on indt «nat» failed, continuing Skipping derivation param1_trivial on indt «nat» since it has been already run Skipping derivation induction on indt «nat» since it has been already run Skipping derivation eqb on indt «nat» since it has been already run Derivation eqK on indt «nat» Derivation eqK on indt «nat» took 0.003435 Skipping derivation eqbcorrect on indt «nat» since it has been already run Derivation eqcorrect on indt «nat» Derivation eqcorrect on indt «nat» took 0.000760 Skipping derivation eqbOK on indt «nat» since it has been already run Derivation eqOK on indt «nat» Derivation eqOK on indt «nat» took 0.000372 Skipping derivation map on indt «nat» since the user did not select it Skipping derivation lens on indt «nat» since the user did not select it Skipping derivation param1 on indt «nat» since it has been already run Skipping derivation param2 on indt «nat» since the user did not select it Skipping derivation tag on indt «nat» since the user did not select it Skipping derivation eqType_ast on indt «nat» since the user did not select it Skipping derivation projK on indt «nat» since it has been already run Skipping derivation isK on indt «nat» since it has been already run Skipping derivation eq on indt «nat» since it has been already run Skipping derivation invert on indt «nat» since the user did not select it Skipping derivation lens_laws on indt «nat» since the user did not select it Skipping derivation param1_congr on indt «nat» since it has been already run Skipping derivation param1_inhab on indt «nat» since it has been already run Skipping derivation param1_functor on indt «nat» since it has been already run Skipping derivation fields on indt «nat» since the user did not select it Skipping derivation bcongr on indt «nat» since it has been already run Skipping derivation idx2inv on indt «nat» since the user did not select it Skipping derivation param1_trivial on indt «nat» since it has been already run Skipping derivation induction on indt «nat» since it has been already run Skipping derivation eqb on indt «nat» since the user did not select it Skipping derivation eqK on indt «nat» since it has been already run Skipping derivation eqbcorrect on indt «nat» since the user did not select it Skipping derivation eqcorrect on indt «nat» since it has been already run Skipping derivation eqbOK on indt «nat» since the user did not select it Skipping derivation eqOK on indt «nat» since it has been already run derive.param1_trivial: wrong shape is_t A PA . It does not look like a unary parametricity translation of an inductive with no indexes. derive.param1_trivial: wrong shape is_triv . It does not look like a unary parametricity translation of an inductive with no indexes. Debug: Cannot enforce elpi_apps_derive_tests_stdlib.test_derive.5911 <= Set derive.param1_trivial: wrong shape is_Pred . It does not look like a unary parametricity translation of an inductive with no indexes. wimpls.wimpls not a defined object. wimpls.Kwi not a defined object. Skipping derivation map on indt «foo» since the user did not select it Skipping derivation lens on indt «foo» since the user did not select it Derivation param1 on indt «foo» Derivation param1 on indt «foo» took 0.004020 Skipping derivation param2 on indt «foo» since the user did not select it Derivation tag on indt «foo» Derivation tag on indt «foo» took 0.000970 Derivation eqType_ast on indt «foo» Derivation eqType_ast on indt «foo» took 0.000305 Skipping derivation projK on indt «foo» since the user did not select it Skipping derivation isK on indt «foo» since the user did not select it Skipping derivation eq on indt «foo» since the user did not select it Skipping derivation invert on indt «foo» since the user did not select it Skipping derivation lens_laws on indt «foo» since the user did not select it Skipping derivation param1_congr on indt «foo» since the user did not select it Derivation param1_inhab on indt «foo» Derivation param1_inhab on indt «foo» took 0.001129 Derivation param1_functor on indt «foo» Derivation param1_functor on indt «foo» took 0.000920 Derivation fields on indt «foo» Derivation fields on indt «foo» took 0.003881 Skipping derivation bcongr on indt «foo» since the user did not select it Skipping derivation idx2inv on indt «foo» since the user did not select it Skipping derivation param1_trivial on indt «foo» since the user did not select it Derivation induction on indt «foo» Derivation induction on indt «foo» took 0.001277 Derivation eqb on indt «foo» Derivation eqb on indt «foo» took 0.002427 Skipping derivation eqK on indt «foo» since the user did not select it Derivation eqbcorrect on indt «foo» Derivation eqbcorrect on indt «foo» took 0.005046 Skipping derivation eqcorrect on indt «foo» since the user did not select it Derivation eqbOK on indt «foo» Derivation eqbOK on indt «foo» took 0.001395 Skipping derivation eqOK on indt «foo» since the user did not select it nat'_eqb : nat' -> nat' -> bool Derivation map on indt «C» Derivation map on indt «C» took 0.001748 Derivation lens on indt «C» Derivation lens on indt «C» failed, continuing Derivation param1 on indt «C» Derivation param1 on indt «C» took 0.006734 Derivation param2 on indt «C» Derivation param2 on indt «C» took 0.007366 Derivation tag on indt «C» Derivation tag on indt «C» took 0.001241 Derivation eqType_ast on indt «C» Derivation eqType_ast on indt «C» took 0.000528 Derivation projK on indt «C» Derivation projK on indt «C» took 0.002636 Derivation isK on indt «C» Derivation isK on indt «C» took 0.002215 Derivation eq on indt «C» Derivation eq on indt «C» took 0.002287 Derivation invert on indt «C» Derivation invert on indt «C» took 0.002397 Derivation lens_laws on indt «C» Derivation lens_laws on indt «C» took 0.000066 Derivation param1_congr on indt «C» Derivation param1_congr on indt «C» took 0.002349 Derivation param1_inhab on indt «C» Derivation param1_inhab on indt «C» took 0.001699 Derivation param1_functor on indt «C» Derivation param1_functor on indt «C» took 0.001417 Derivation fields on indt «C» Derivation fields on indt «C» took 0.007666 Derivation bcongr on indt «C» Derivation bcongr on indt «C» took 0.005949 Derivation idx2inv on indt «C» Derivation idx2inv on indt «C» took 0.001081 Derivation param1_trivial on indt «C» Derivation param1_trivial on indt «C» took 0.006096 Derivation induction on indt «C» Derivation induction on indt «C» took 0.001881 Derivation eqb on indt «C» Derivation eqb on indt «C» took 0.004771 Derivation eqK on indt «C» Derivation eqK on indt «C» took 0.005100 Derivation eqbcorrect on indt «C» Derivation eqbcorrect on indt «C» took 0.008449 Derivation eqcorrect on indt «C» Derivation eqcorrect on indt «C» failed, continuing Derivation eqbOK on indt «C» Derivation eqbOK on indt «C» took 0.001491 Derivation eqOK on indt «C» Derivation eqOK on indt «C» failed, continuing File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: is_rose is nested using is_seq. No scheme for is_seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_seq.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: is_rose is nested using is_seq. No scheme for is_seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_seq.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: is_rose is nested using is_seq. No scheme for is_seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_seq.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: is_rose is nested using is_seq. No scheme for is_seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_seq.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: is_rose is nested using is_seq. No scheme for is_seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_seq.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: is_rose is nested using is_seq. No scheme for is_seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_seq.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: is_rose is nested using is_seq. No scheme for is_seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_seq.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: is_rose is nested using is_seq. No scheme for is_seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_seq.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: is_rose is nested using is_seq. No scheme for is_seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_seq.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: is_rose is nested using is_seq. No scheme for is_seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_seq.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: is_rose is nested using is_seq. No scheme for is_seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_seq.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: is_rose is nested using is_seq. No scheme for is_seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_seq.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: rose_R is nested using seq_R. No scheme for seq_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for seq_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: rose_R is nested using seq_R. No scheme for seq_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for seq_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: rose_R is nested using seq_R. No scheme for seq_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for seq_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: rose_R is nested using seq_R. No scheme for seq_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for seq_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: rose_R is nested using seq_R. No scheme for seq_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for seq_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: rose_R is nested using seq_R. No scheme for seq_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for seq_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: rose_R is nested using seq_R. No scheme for seq_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for seq_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: rose_R is nested using seq_R. No scheme for seq_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for seq_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: rose_R is nested using seq_R. No scheme for seq_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for seq_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: rose_R is nested using seq_R. No scheme for seq_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for seq_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: rose_R is nested using seq_R. No scheme for seq_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for seq_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: rose_R is nested using seq_R. No scheme for seq_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for seq_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: roserose_inv is nested using Coverage.seq. No scheme for Coverage.seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for Coverage.seq.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: roserose_inv is nested using Coverage.seq. No scheme for Coverage.seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for Coverage.seq.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: roserose_inv is nested using Coverage.seq. No scheme for Coverage.seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for Coverage.seq.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: roserose_inv is nested using Coverage.seq. No scheme for Coverage.seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for Coverage.seq.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: roserose_inv is nested using Coverage.seq. No scheme for Coverage.seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for Coverage.seq.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: roserose_inv is nested using Coverage.seq. No scheme for Coverage.seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for Coverage.seq.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: roserose_inv is nested using Coverage.seq. No scheme for Coverage.seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for Coverage.seq.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: roserose_inv is nested using Coverage.seq. No scheme for Coverage.seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for Coverage.seq.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: roserose_inv is nested using Coverage.seq. No scheme for Coverage.seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for Coverage.seq.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: roserose_inv is nested using Coverage.seq. No scheme for Coverage.seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for Coverage.seq.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: roserose_inv is nested using Coverage.seq. No scheme for Coverage.seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for Coverage.seq.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 11, characters 0-26: Warning: roserose_inv is nested using Coverage.seq. No scheme for Coverage.seq is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for Coverage.seq.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: is_rose_p is nested using is_pair. No scheme for is_pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_pair.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: is_rose_p is nested using is_pair. No scheme for is_pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_pair.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: is_rose_p is nested using is_pair. No scheme for is_pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_pair.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: is_rose_p is nested using is_pair. No scheme for is_pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_pair.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: is_rose_p is nested using is_pair. No scheme for is_pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_pair.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: is_rose_p is nested using is_pair. No scheme for is_pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_pair.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: is_rose_p is nested using is_pair. No scheme for is_pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_pair.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: is_rose_p is nested using is_pair. No scheme for is_pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_pair.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: is_rose_p is nested using is_pair. No scheme for is_pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_pair.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: is_rose_p is nested using is_pair. No scheme for is_pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_pair.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: is_rose_p is nested using is_pair. No scheme for is_pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_pair.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: is_rose_p is nested using is_pair. No scheme for is_pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_pair.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: rose_p_R is nested using pair_R. No scheme for pair_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for pair_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: rose_p_R is nested using pair_R. No scheme for pair_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for pair_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: rose_p_R is nested using pair_R. No scheme for pair_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for pair_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: rose_p_R is nested using pair_R. No scheme for pair_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for pair_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: rose_p_R is nested using pair_R. No scheme for pair_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for pair_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: rose_p_R is nested using pair_R. No scheme for pair_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for pair_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: rose_p_R is nested using pair_R. No scheme for pair_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for pair_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: rose_p_R is nested using pair_R. No scheme for pair_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for pair_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: rose_p_R is nested using pair_R. No scheme for pair_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for pair_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: rose_p_R is nested using pair_R. No scheme for pair_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for pair_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: rose_p_R is nested using pair_R. No scheme for pair_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for pair_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: rose_p_R is nested using pair_R. No scheme for pair_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for pair_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: rose_prose_p_inv is nested using Coverage.pair. No scheme for Coverage.pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for Coverage.pair.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: rose_prose_p_inv is nested using Coverage.pair. No scheme for Coverage.pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for Coverage.pair.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: rose_prose_p_inv is nested using Coverage.pair. No scheme for Coverage.pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for Coverage.pair.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: rose_prose_p_inv is nested using Coverage.pair. No scheme for Coverage.pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for Coverage.pair.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: rose_prose_p_inv is nested using Coverage.pair. No scheme for Coverage.pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for Coverage.pair.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: rose_prose_p_inv is nested using Coverage.pair. No scheme for Coverage.pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for Coverage.pair.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: rose_prose_p_inv is nested using Coverage.pair. No scheme for Coverage.pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for Coverage.pair.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: rose_prose_p_inv is nested using Coverage.pair. No scheme for Coverage.pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for Coverage.pair.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: rose_prose_p_inv is nested using Coverage.pair. No scheme for Coverage.pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for Coverage.pair.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: rose_prose_p_inv is nested using Coverage.pair. No scheme for Coverage.pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for Coverage.pair.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: rose_prose_p_inv is nested using Coverage.pair. No scheme for Coverage.pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for Coverage.pair.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 12, characters 0-28: Warning: rose_prose_p_inv is nested using Coverage.pair. No scheme for Coverage.pair is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for Coverage.pair.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 33, characters 2-9: Warning: This command does not support this attribute: verbose. [unsupported-attributes,parsing,default] File "./apps/derive/tests-stdlib/test_derive.v", line 70, characters 0-27: Warning: Using Vector.t is known to be technically difficult, see . [warn-library-file-stdlib-vector,stdlib-vector,warn-library-file,user-warn,default] File "./apps/derive/tests-stdlib/test_derive.v", line 120, characters 0-67: Warning: rtree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 120, characters 0-67: Warning: rtree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 120, characters 0-67: Warning: rtree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 120, characters 0-67: Warning: rtree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 120, characters 0-67: Warning: rtree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 120, characters 0-67: Warning: rtree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 120, characters 0-67: Warning: rtree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 120, characters 0-67: Warning: rtree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 120, characters 0-67: Warning: rtree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 120, characters 0-67: Warning: rtree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 120, characters 0-67: Warning: rtree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 120, characters 0-67: Warning: rtree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: is_rtree is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: is_rtree is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: is_rtree is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: is_rtree is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: is_rtree is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: is_rtree is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: is_rtree is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: is_rtree is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: is_rtree is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: is_rtree is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: is_rtree is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: is_rtree is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: rtree_R is nested using list_R. No scheme for list_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: rtree_R is nested using list_R. No scheme for list_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: rtree_R is nested using list_R. No scheme for list_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: rtree_R is nested using list_R. No scheme for list_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: rtree_R is nested using list_R. No scheme for list_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: rtree_R is nested using list_R. No scheme for list_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: rtree_R is nested using list_R. No scheme for list_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: rtree_R is nested using list_R. No scheme for list_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: rtree_R is nested using list_R. No scheme for list_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: rtree_R is nested using list_R. No scheme for list_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: rtree_R is nested using list_R. No scheme for list_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: rtree_R is nested using list_R. No scheme for list_R is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list_R.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: rtreertree_inv is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: rtreertree_inv is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: rtreertree_inv is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: rtreertree_inv is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: rtreertree_inv is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: rtreertree_inv is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: rtreertree_inv is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: rtreertree_inv is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: rtreertree_inv is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: rtreertree_inv is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: rtreertree_inv is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 125, characters 0-13: Warning: rtreertree_inv is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: RoseTree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: RoseTree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: RoseTree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: RoseTree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: RoseTree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: RoseTree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: RoseTree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: RoseTree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: RoseTree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: RoseTree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: RoseTree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: RoseTree is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: is_RoseTree is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: is_RoseTree is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: is_RoseTree is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: is_RoseTree is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: is_RoseTree is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: is_RoseTree is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: is_RoseTree is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: is_RoseTree is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: is_RoseTree is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: is_RoseTree is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: is_RoseTree is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: is_RoseTree is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: RoseTreeRoseTree_inv is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: RoseTreeRoseTree_inv is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: RoseTreeRoseTree_inv is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: RoseTreeRoseTree_inv is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: RoseTreeRoseTree_inv is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: RoseTreeRoseTree_inv is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: RoseTreeRoseTree_inv is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: RoseTreeRoseTree_inv is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: RoseTreeRoseTree_inv is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: RoseTreeRoseTree_inv is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: RoseTreeRoseTree_inv is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 148, characters 0-72: Warning: RoseTreeRoseTree_inv is nested using list. No scheme for list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: Pred is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: Pred is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: Pred is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: Pred is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: Pred is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: Pred is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: Pred is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: Pred is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: Pred is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: Pred is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: Pred is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: Pred is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: is_Pred is nested using is_is_list. No scheme for is_is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: is_Pred is nested using is_is_list. No scheme for is_is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: is_Pred is nested using is_is_list. No scheme for is_is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: is_Pred is nested using is_is_list. No scheme for is_is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: is_Pred is nested using is_is_list. No scheme for is_is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: is_Pred is nested using is_is_list. No scheme for is_is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: is_Pred is nested using is_is_list. No scheme for is_is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: is_Pred is nested using is_is_list. No scheme for is_is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: is_Pred is nested using is_is_list. No scheme for is_is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: is_Pred is nested using is_is_list. No scheme for is_is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: is_Pred is nested using is_is_list. No scheme for is_is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: is_Pred is nested using is_is_list. No scheme for is_is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: Predinv is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: Predinv is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: Predinv is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: Predinv is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: Predinv is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: Predinv is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: Predinv is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: Predinv is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: Predinv is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: Predinv is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: Predinv is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] File "./apps/derive/tests-stdlib/test_derive.v", line 154, characters 0-134: Warning: Predinv is nested using is_list. No scheme for is_list is registered as All. It can be generated using command "Scheme All" e.g. "Scheme All for is_list.". [register-all,automation,default] dune build --stop-on-first-error builtin-doc Warning: Cache directories could not be created: Permission denied; disabling cache Hint: Make sure the directory /sbuild-nonexistent/.cache/dune/db/temp can be created make[2]: Leaving directory '/build/reproducible-path/coq-elpi-3.5.0' make[1]: Leaving directory '/build/reproducible-path/coq-elpi-3.5.0' dh_auto_test create-stamp debian/debhelper-build-stamp dh_prep debian/rules override_dh_auto_install make[1]: Entering directory '/build/reproducible-path/coq-elpi-3.5.0' Deprecated environment variable COQLIB, use ROCQLIB instead. Deprecated environment variable COQLIB, use ROCQLIB instead. dune install rocq-elpi --destdir=/build/reproducible-path/coq-elpi-3.5.0/debian/tmp --prefix=/usr --libdir=/usr/lib/x86_64-linux-gnu/ocaml/5.4.1 Warning: Cache directories could not be created: Permission denied; disabling cache Hint: Make sure the directory /sbuild-nonexistent/.cache/dune/db/temp can be created rm -fr /build/reproducible-path/coq-elpi-3.5.0/debian/tmp/usr/doc/coq-elpi rm -fr /build/reproducible-path/coq-elpi-3.5.0/debian/tmp/usr/doc/rocq-elpi make[1]: Leaving directory '/build/reproducible-path/coq-elpi-3.5.0' dh_ocamllibinstall dh_install dh_ocamldoc dh_installdocs dh_installchangelogs dh_installexamples dh_lintian dh_perl dh_link dh_strip_nondeterminism dh_compress dh_fixperms dh_missing dh_dwz -a dwz: debian/libcoq-elpi/usr/lib/x86_64-linux-gnu/ocaml/5.4.1/rocq-elpi/coercion/elpi_coercion_plugin.cmxs: DWARF compression not beneficial - old size 1377 new size 1377 dwz: debian/libcoq-elpi/usr/lib/x86_64-linux-gnu/ocaml/5.4.1/rocq-elpi/cs/elpi_cs_plugin.cmxs: DWARF compression not beneficial - old size 974 new size 974 dh_strip -a dh_makeshlibs -a dh_shlibdeps -a dpkg-shlibdeps: warning: diversions involved - output may be incorrect diversion by libc6 from: /lib64/ld-linux-x86-64.so.2 dpkg-shlibdeps: warning: diversions involved - output may be incorrect diversion by libc6 to: /lib64/ld-linux-x86-64.so.2.usr-is-merged dh_installdeb debian/rules override_dh_ocaml make[1]: Entering directory '/build/reproducible-path/coq-elpi-3.5.0' Deprecated environment variable COQLIB, use ROCQLIB instead. Deprecated environment variable COQLIB, use ROCQLIB instead. dh_ocaml --nodefined-map=libcoq-elpi-ocaml-dev:Elpi_parser,Elpi_util,Elpi_parser__Ast,Elpi__Runtime,Elpi__,Elpi_util__Util,Elpi__Builtin_checker,Elpi__Builtin,Elpi__Ptmap,Elpi_parser__Grammar,Elpi__Data,Elpi_lexer_config,Elpi__API,Elpi_parser__Parse,Elpi__Builtin_set,Trace_ppx_runtime,Elpi_parser__Parser_config,Elpi_parser__Error_messages,Elpi_parser__Lexer,Elpi,Elpi_exer_config__Tokens,Elpi_Builtin_stdlib,Elpi__Legacy_parser_proxy,Elpi__Builtin_map,Elpi_lexer_config__Tokens,Elpi__Compiler,Trace_ppx_runtime__Runtime,Elpi_lexer_config__Lexer_config,Elpi__Builtin_stdlib,Elpi__Runtime_trace_off,MenhirLib,Ppx_deriving_runtime,Re__Perl,Re__Core,Re__Pcre,Re_str,Re__Automata,Re__Emacs,Re,Re__Fmt,Re__Group,Re__,Re__Glob,Re__Pmark,Re__Category,Re__Str,Re__Posix,Re__Color_map,Re__Cset,Result make[1]: Leaving directory '/build/reproducible-path/coq-elpi-3.5.0' dh_coq dh_gencontrol dh_md5sums dh_builddeb dpkg-deb: building package 'libcoq-elpi' in '../libcoq-elpi_3.5.0-2+ocaml1_amd64.deb'. dpkg-genbuildinfo -O../coq-elpi_3.5.0-2+ocaml1_amd64.buildinfo dpkg-genchanges -sa -O../coq-elpi_3.5.0-2+ocaml1_amd64.changes dpkg-genchanges: info: including full source code in upload dpkg-source --after-build . dpkg-buildpackage: info: full upload (original source is included) -------------------------------------------------------------------------------- Build finished at 2026-08-11T09:37:58Z Finished -------- I: Built successfully +------------------------------------------------------------------------------+ | Changes Tue, 11 Aug 2026 09:37:59 +0000 | +------------------------------------------------------------------------------+ coq-elpi_3.5.0-2+ocaml1_amd64.changes: -------------------------------------- Format: 1.8 Date: Tue, 11 Aug 2026 11:29:14 +0200 Source: coq-elpi Binary: libcoq-elpi Architecture: source amd64 Version: 3.5.0-2+ocaml1 Distribution: trixie-backports-ocaml Urgency: medium Maintainer: Debian OCaml Maintainers Changed-By: Anonymous Builder Description: libcoq-elpi - Coq plugin embedding Elpi Changes: coq-elpi (3.5.0-2+ocaml1) trixie-backports-ocaml; urgency=medium . * Rebuild for transition ocaml-5.4.1 Checksums-Sha1: e75f376d4cd498e4c9e3097cab29445a9c384cec 1255 coq-elpi_3.5.0-2+ocaml1.dsc 0735f3d605062f8ed56cb91ffc17636741466f7f 1132542 coq-elpi_3.5.0.orig.tar.gz 9104d181c7ba30e415f6844e4c7a6d7c95d5e50e 5764 coq-elpi_3.5.0-2+ocaml1.debian.tar.xz 929387e562f705c1705ee8566d4586b0acaa6a66 7424 coq-elpi_3.5.0-2+ocaml1_amd64.buildinfo f679394c1cf439cfd78dbb425dfd3f6135586043 12836900 libcoq-elpi_3.5.0-2+ocaml1_amd64.deb Checksums-Sha256: ab8601b061fc8f8bfbb11e8eb0cfc3f316d9b5162e0ff90f8da9006f956125e4 1255 coq-elpi_3.5.0-2+ocaml1.dsc 05fc70d0067512bccf772491a24bab355323c34154f4c9051bc95609b4dcfc77 1132542 coq-elpi_3.5.0.orig.tar.gz 6996a11dab72e8c2bd740d7bbceb5024471f9f065e84f1fba7035ca5dc5780e0 5764 coq-elpi_3.5.0-2+ocaml1.debian.tar.xz f72af3d25b03597e569cbbc99a57b822b14e2c4f233507bc52fa55f4ac699fe4 7424 coq-elpi_3.5.0-2+ocaml1_amd64.buildinfo 5cb0b77a5efd3dc3531fa8da8ec57350a199cb6c3599c4cf039e21dd1c0e2a08 12836900 libcoq-elpi_3.5.0-2+ocaml1_amd64.deb Files: 741d53ec67e0e4e78e28a05cc5d90f28 1255 ocaml optional coq-elpi_3.5.0-2+ocaml1.dsc 718c1c9e066e9ee421093bdad1665b3b 1132542 ocaml optional coq-elpi_3.5.0.orig.tar.gz 46efc8fd15ffec40c2a9a22f1b8de2a6 5764 ocaml optional coq-elpi_3.5.0-2+ocaml1.debian.tar.xz 5d77e19da60fae04a9589ca735832a48 7424 ocaml optional coq-elpi_3.5.0-2+ocaml1_amd64.buildinfo a89b6f9410c45b6ad4b21f96952100f9 12836900 ocaml optional libcoq-elpi_3.5.0-2+ocaml1_amd64.deb +------------------------------------------------------------------------------+ | Buildinfo Tue, 11 Aug 2026 09:38:00 +0000 | +------------------------------------------------------------------------------+ Format: 1.0 Source: coq-elpi Binary: libcoq-elpi Architecture: amd64 source Version: 3.5.0-2+ocaml1 Checksums-Md5: 741d53ec67e0e4e78e28a05cc5d90f28 1255 coq-elpi_3.5.0-2+ocaml1.dsc a89b6f9410c45b6ad4b21f96952100f9 12836900 libcoq-elpi_3.5.0-2+ocaml1_amd64.deb Checksums-Sha1: e75f376d4cd498e4c9e3097cab29445a9c384cec 1255 coq-elpi_3.5.0-2+ocaml1.dsc f679394c1cf439cfd78dbb425dfd3f6135586043 12836900 libcoq-elpi_3.5.0-2+ocaml1_amd64.deb Checksums-Sha256: ab8601b061fc8f8bfbb11e8eb0cfc3f316d9b5162e0ff90f8da9006f956125e4 1255 coq-elpi_3.5.0-2+ocaml1.dsc 5cb0b77a5efd3dc3531fa8da8ec57350a199cb6c3599c4cf039e21dd1c0e2a08 12836900 libcoq-elpi_3.5.0-2+ocaml1_amd64.deb Build-Origin: Debian Build-Architecture: amd64 Build-Date: Tue, 11 Aug 2026 09:37:58 +0000 Build-Path: /build/reproducible-path/coq-elpi-3.5.0 Installed-Build-Depends: autoconf (= 2.72-3.1), automake (= 1:1.17-4), autopoint (= 0.23.1-2), autotools-dev (= 20240727.1), base-files (= 13.8+deb13u6), base-passwd (= 3.6.7), bash (= 5.2.37-2+b9), binutils (= 2.44-3), binutils-common (= 2.44-3), binutils-x86-64-linux-gnu (= 2.44-3), bsdextrautils (= 2.41-5), bsdutils (= 1:2.41-5), build-essential (= 12.12), bzip2 (= 1.0.8-6), coq (= 9.2.0+dfsg-3+ocaml1), coreutils (= 9.7-3), cpp (= 4:14.2.0-1), cpp-14 (= 14.2.0-19), cpp-14-x86-64-linux-gnu (= 14.2.0-19), cpp-x86-64-linux-gnu (= 4:14.2.0-1), dash (= 0.5.12-12), debconf (= 1.5.91), debhelper (= 14.3+ocaml1), debianutils (= 5.23.2), dh-autoreconf (= 20), dh-coq (= 0.16+ocaml1), dh-ocaml (= 3.8+ocaml1), dh-strip-nondeterminism (= 1.14.1-2), diffutils (= 1:3.10-4), dpkg (= 1.22.22), dpkg-dev (= 1.22.22), dwz (= 0.15-1+b1), elpi (= 3.7.2-2+ocaml1), file (= 1:5.46-5), findutils (= 4.10.0-3), g++ (= 4:14.2.0-1), g++-14 (= 14.2.0-19), g++-14-x86-64-linux-gnu (= 14.2.0-19), g++-x86-64-linux-gnu (= 4:14.2.0-1), gcc (= 4:14.2.0-1), gcc-14 (= 14.2.0-19), gcc-14-base (= 14.2.0-19), gcc-14-x86-64-linux-gnu (= 14.2.0-19), gcc-x86-64-linux-gnu (= 4:14.2.0-1), gettext (= 0.23.1-2), gettext-base (= 0.23.1-2), grep (= 3.11-4), groff-base (= 1.23.0-9), gzip (= 1.13-1), hostname (= 3.25), init-system-helpers (= 1.69~deb13u1), intltool-debian (= 0.35.0+20060710.6), libacl1 (= 2.3.2-2+b1), libarchive-zip-perl (= 1.68-1), libasan8 (= 14.2.0-19), libatomic1 (= 14.2.0-19), libattr1 (= 1:2.5.2-3), libaudit-common (= 1:4.0.2-2), libaudit1 (= 1:4.0.2-2+b2), libbase-ocaml (= 0.17.3-2+ocaml1), libbase-ocaml-dev (= 0.17.3-2+ocaml1), libbinutils (= 2.44-3), libblkid1 (= 2.41-5), libbz2-1.0 (= 1.0.8-6), libc-bin (= 2.41-12+deb13u3), libc-dev-bin (= 2.41-12+deb13u3), libc6 (= 2.41-12+deb13u3), libc6-dev (= 2.41-12+deb13u3), libcap-ng0 (= 0.8.5-4+b1), libcap2 (= 1:2.75-10+deb13u1+b1), libcc1-0 (= 14.2.0-19), libcompiler-libs-ocaml-dev (= 5.4.1-1+ocaml1), libconfig-tiny-perl (= 2.30-1), libcoq-core (= 9.2.0+dfsg-3+ocaml1), libcoq-core-ocaml (= 9.2.0+dfsg-3+ocaml1), libcoq-core-ocaml-dev (= 9.2.0+dfsg-3+ocaml1), libcoq-stdlib (= 9.2.0-1+ocaml1), libcrypt-dev (= 1:4.4.38-1), libcrypt1 (= 1:4.4.38-1), libctf-nobfd0 (= 2.44-3), libctf0 (= 2.44-3), libdb5.3t64 (= 5.3.28+dfsg2-9), libdebconfclient0 (= 0.280), libdebhelper-perl (= 14.3+ocaml1), libdpkg-perl (= 1.22.22), libelf1t64 (= 0.192-4), libelpi-ocaml (= 3.7.2-2+ocaml1), libelpi-ocaml-dev (= 3.7.2-2+ocaml1), libexpat1 (= 2.7.1-2), libffi8 (= 3.4.8-2), libfile-stripnondeterminism-perl (= 1.14.1-2), libfindlib-ocaml (= 1.9.8-1+ocaml1), libfindlib-ocaml-dev (= 1.9.8-1+ocaml1), libgcc-14-dev (= 14.2.0-19), libgcc-s1 (= 14.2.0-19), libgdbm-compat4t64 (= 1.24-2), libgdbm6t64 (= 1.24-2), libgmp-dev (= 2:6.3.0+dfsg-3), libgmp10 (= 2:6.3.0+dfsg-3), libgmp3-dev (= 2:6.3.0+dfsg-3), libgmpxx4ldbl (= 2:6.3.0+dfsg-3), libgomp1 (= 14.2.0-19), libgprofng0 (= 2.44-3), libhwasan0 (= 14.2.0-19), libisl23 (= 0.27-1), libitm1 (= 14.2.0-19), libjansson4 (= 2.14-2+b3), libjson-perl (= 4.10000-1), liblastlog2-2 (= 2.41-5), liblsan0 (= 14.2.0-19), liblzma5 (= 5.8.1-1+deb13u1), libmagic-mgc (= 1:5.46-5), libmagic1t64 (= 1:5.46-5), libmd0 (= 1.1.0-2+b1), libmenhir-ocaml-dev (= 20260209+ds-3+ocaml1), libmount1 (= 2.41-5), libmpc3 (= 1.3.1-1+b3), libmpfr6 (= 4.2.2-1), libncurses-dev (= 6.5+20250216-2), libncurses6 (= 6.5+20250216-2), libncursesw6 (= 6.5+20250216-2), libocaml-compiler-libs-ocaml-dev (= 0.17.0-2+ocaml1), libocaml-intrinsics-kernel-ocaml (= 0.17.2-1+ocaml1), libocaml-intrinsics-kernel-ocaml-dev (= 0.17.2-1+ocaml1), libpam-modules (= 1.7.0-5), libpam-modules-bin (= 1.7.0-5), libpam-runtime (= 1.7.0-5), libpam0g (= 1.7.0-5), libpcre2-8-0 (= 10.46-1~deb13u1), libperl5.40 (= 5.40.1-6), libpipeline1 (= 1.5.8-1), libppx-derivers-ocaml-dev (= 1.2.1-4+ocaml1), libppx-deriving-ocaml (= 6.1.3-1+ocaml1), libppx-deriving-ocaml-dev (= 6.1.3-1+ocaml1), libppx-optcomp-ocaml (= 1:0.17.1-1+ocaml1), libppx-optcomp-ocaml-dev (= 1:0.17.1-1+ocaml1), libppxlib-ocaml-dev (= 0.38.0-1+ocaml1), libpython3-stdlib (= 3.13.5-1), libpython3.13-minimal (= 3.13.5-2+deb13u3), libpython3.13-stdlib (= 3.13.5-2+deb13u3), libquadmath0 (= 14.2.0-19), libre-ocaml-dev (= 1.14.0-2+ocaml1), libreadline8t64 (= 8.2-6), libseccomp2 (= 2.6.0-2), libselinux1 (= 3.8.1-1), libsexplib0-ocaml (= 0.17.0-1+ocaml1), libsexplib0-ocaml-dev (= 0.17.0-1+ocaml1), libsframe1 (= 2.44-3), libsmartcols1 (= 2.41-5), libsqlite3-0 (= 3.46.1-7+deb13u1), libssl3t64 (= 3.5.6-1~deb13u2), libstdc++-14-dev (= 14.2.0-19), libstdc++6 (= 14.2.0-19), libstdio-ocaml (= 0.17.0-1+ocaml1), libstdio-ocaml-dev (= 0.17.0-1+ocaml1), libstdlib-ocaml (= 5.4.1-1+ocaml1), libstdlib-ocaml-dev (= 5.4.1-1+ocaml1), libsystemd0 (= 257.13-1~deb13u1), libtinfo6 (= 6.5+20250216-2), libtool (= 2.5.4-4), libtsan2 (= 14.2.0-19), libubsan1 (= 14.2.0-19), libuchardet0 (= 0.0.8-1+b2), libudev1 (= 257.13-1~deb13u1), libunistring5 (= 1.3-2), libuuid1 (= 2.41-5), libxml-light-ocaml (= 2.5-2+ocaml1), libxml-light-ocaml-dev (= 2.5-2+ocaml1), libxml2 (= 2.12.7+dfsg+really2.9.14-2.1+deb13u3), libyojson-ocaml (= 3.0.0-2+ocaml1), libyojson-ocaml-dev (= 3.0.0-2+ocaml1), libzarith-ocaml (= 1.14-4+ocaml1), libzarith-ocaml-dev (= 1.14-4+ocaml1), libzstd-dev (= 1.5.7+dfsg-1), libzstd1 (= 1.5.7+dfsg-1), linux-libc-dev (= 6.12.94-1), m4 (= 1.4.19-8), make (= 4.4.1-2), man-db (= 2.13.1-1), mawk (= 1.3.4.20250131-1), media-types (= 13.0.0), ncurses-base (= 6.5+20250216-2), ncurses-bin (= 6.5+20250216-2), netbase (= 6.5), ocaml (= 5.4.1-1+ocaml1), ocaml-base (= 5.4.1-1+ocaml1), ocaml-dune (= 3.24.1-4+ocaml1), ocaml-findlib (= 1.9.8-1+ocaml1), ocaml-interp (= 5.4.1-1+ocaml1), openssl-provider-legacy (= 3.5.6-1~deb13u2), patch (= 2.8-2), perl (= 5.40.1-6), perl-base (= 5.40.1-6), perl-modules-5.40 (= 5.40.1-6), po-debconf (= 1.0.21+nmu1), python3 (= 3.13.5-1), python3-minimal (= 3.13.5-1), python3.13 (= 3.13.5-2+deb13u3), python3.13-minimal (= 3.13.5-2+deb13u3), quickjs (= 2025.04.26-1), readline-common (= 8.2-6), rpcsvc-proto (= 1.4.3-1), sed (= 4.9-2+deb13u1), sensible-utils (= 0.0.25), sysvinit-utils (= 3.14-4), tar (= 1.35+dfsg-3.1), tzdata (= 2026b-0+deb13u1), util-linux (= 2.41-5), xz-utils (= 5.8.1-1+deb13u1), zlib1g (= 1:1.3.dfsg+really1.3.1-1+b1) Environment: DEB_BUILD_OPTIONS="parallel=1" LANG="C.UTF-8" LC_COLLATE="C.UTF-8" LC_CTYPE="C.UTF-8" MAKEFLAGS="" SOURCE_DATE_EPOCH="1786440554" +------------------------------------------------------------------------------+ | Package contents Tue, 11 Aug 2026 09:38:00 +0000 | +------------------------------------------------------------------------------+ libcoq-elpi_3.5.0-2+ocaml1_amd64.deb ------------------------------------ new Debian package, version 2.0. size 12836900 bytes: control archive=11764 bytes. 738 bytes, 19 lines control 54411 bytes, 462 lines md5sums Package: libcoq-elpi Source: coq-elpi Version: 3.5.0-2+ocaml1 Architecture: amd64 Maintainer: Debian OCaml Maintainers Installed-Size: 77849 Depends: libelpi-ocaml-dev, libcoq-stdlib-wd7z4, libcoq-core-ocaml-plkl7, libelpi-ocaml-mbtw8, libppx-deriving-ocaml-lacv2, libstdlib-ocaml-1ltp0, libzarith-ocaml-igxp5, libc6 (>= 2.38) Provides: libcoq-elpi-xen81 Section: ocaml Priority: optional Homepage: https://github.com/LPCIC/coq-elpi Description: Coq plugin embedding Elpi This package makes it possible to define new commands and tactics for Coq in Elpi. . Elpi implements a lambda-Prolog interpreter enriched with constraint handling rules. . Coq is a proof assistant for higher-order logic. drwxr-xr-x root/root 0 2026-08-11 09:29 ./ drwxr-xr-x root/root 0 2026-08-11 09:29 ./usr/ drwxr-xr-x root/root 0 2026-08-11 09:29 ./usr/bin/ -rwxr-xr-x root/root 915264 2026-08-11 09:29 ./usr/bin/rocq_elpi_optcomp -rwxr-xr-x root/root 1104992 2026-08-11 09:29 ./usr/bin/rocq_elpi_shafile -rwxr-xr-x root/root 6257376 2026-08-11 09:29 ./usr/bin/rocq_elpi_version_parser drwxr-xr-x root/root 0 2026-08-11 09:29 ./usr/lib/ drwxr-xr-x root/root 0 2026-08-11 09:29 ./usr/lib/x86_64-linux-gnu/ drwxr-xr-x root/root 0 2026-08-11 09:29 ./usr/lib/x86_64-linux-gnu/ocaml/ drwxr-xr-x root/root 0 2026-08-11 09:29 ./usr/lib/x86_64-linux-gnu/ocaml/5.4.1/ drwxr-xr-x root/root 0 2026-08-11 09:29 ./usr/lib/x86_64-linux-gnu/ocaml/5.4.1/coq/ drwxr-xr-x root/root 0 2026-08-11 09:29 ./usr/lib/x86_64-linux-gnu/ocaml/5.4.1/coq/user-contrib/ drwxr-xr-x root/root 0 2026-08-11 09:29 ./usr/lib/x86_64-linux-gnu/ocaml/5.4.1/coq/user-contrib/elpi/ drwxr-xr-x root/root 0 2026-08-11 09:29 ./usr/lib/x86_64-linux-gnu/ocaml/5.4.1/coq/user-contrib/elpi/apps/ drwxr-xr-x root/root 0 2026-08-11 09:29 ./usr/lib/x86_64-linux-gnu/ocaml/5.4.1/coq/user-contrib/elpi/apps/NES/ -rw-r--r-- root/root 88 2026-08-11 09:29 ./usr/lib/x86_64-linux-gnu/ocaml/5.4.1/coq/user-contrib/elpi/apps/NES/NES.glob -rw-r--r-- root/root 3251 2026-08-11 09:29 ./usr/lib/x86_64-linux-gnu/ocaml/5.4.1/coq/user-contrib/elpi/apps/NES/NES.v -rw-r--r-- root/root 676904 2026-08-11 09:29 ./usr/lib/x86_64-linux-gnu/ocaml/5.4.1/coq/user-contrib/elpi/apps/NES/NES.vo drwxr-xr-x root/root 0 2026-08-11 09:29 ./usr/lib/x86_64-linux-gnu/ocaml/5.4.1/coq/user-contrib/elpi/apps/NES/elpi/ -rw-r--r-- root/root 171 2026-08-11 09:29 ./usr/lib/x86_64-linux-gnu/ocaml/5.4.1/coq/user-contrib/elpi/apps/NES/elpi/dummy.glob -rw-r--r-- root/root 257 2026-08-11 09:29 ./usr/lib/x86_64-linux-gnu/ocaml/5.4.1/coq/user-contrib/elpi/apps/NES/elpi/dummy.v -rw-r--r-- root/root 2010 2026-08-11 09:29 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+------------------------------------------------------------------------------+ +------------------------------------------------------------------------------+ | Cleanup Tue, 11 Aug 2026 09:38:03 +0000 | +------------------------------------------------------------------------------+ Purging /build/reproducible-path Not cleaning session: cloned chroot in use +------------------------------------------------------------------------------+ | Summary Tue, 11 Aug 2026 09:38:08 +0000 | +------------------------------------------------------------------------------+ Build Architecture: amd64 Build Type: full Build-Space: 566860 Build-Time: 227 Distribution: trixie-backports-ocaml Host Architecture: amd64 Install-Time: 116 Job: /tmp/tmp.ben.transition-scripts.mTUyiY49il/coq-elpi_3.5.0-2+ocaml1.dsc Machine Architecture: amd64 Package: coq-elpi Package-Time: 521 Source-Version: 3.5.0-2+ocaml1 Space: 566860 Status: successful Version: 3.5.0-2+ocaml1 -------------------------------------------------------------------------------- Finished at 2026-08-11T09:37:58Z Build needed 00:08:41, 566860k disk space