`ludic help` ended with a section titled "contributing to the toolchain itself", listing bootstrap, reseed, docs-gen and release tasks. None of that is available to someone who installed the language — those tasks need the repository — so the shipped tool was advertising work its user cannot do, in a namespace they have to read past to find `new` and `run`. The tasks move to a second program, dev.ludic -> bin/ludic-dev, built from a checkout and excluded from every release artifact. `ludic` keeps the project and package commands and nothing else; `ludic dev …` now explains where the tasks went instead of failing as an unknown command. What this shook out: the two programs share prelude/build/project/pkg, so the helpers each had accreted in whichever file first needed them — cc(), ensure_ludicc, the string functions, title_case, cmd_version — moved to where both can see them. The argument-shift indirection added for the `dev` namespace is gone with the namespace, so commands read argv directly again. `ludic-dev test` asserts the split rather than trusting it: the staged install must build a project, and `ludic dev build` there must fail while naming ludic-dev. install.sh keeps building older tags, whose bootstrap goes through main.ludic. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
53 lines
2.1 KiB
YAML
53 lines
2.1 KiB
YAML
name: bootstrap
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# The headline guarantee of a self-hosted, C-free toolchain: assembled from the
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# checked-in IR seed with clang alone, the compiler recompiles its own source
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# and reproduces that seed **byte-for-byte**. A regression here (a compiler
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# change that was never reseeded) is otherwise invisible until someone runs it
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# locally. This job fails the moment out.ll != seed.ll.
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on:
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push:
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branches: [main]
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pull_request:
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workflow_dispatch: {}
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jobs:
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cfree-fixpoint:
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runs-on: docker
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container: node:20-bookworm
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steps:
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- name: Install clang-16
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run: |
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set -eu
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export DEBIAN_FRONTEND=noninteractive
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apt-get update -qq
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apt-get install -y -qq --no-install-recommends clang-16 git ca-certificates
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clang-16 --version | head -1
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- name: Check out the triggering commit
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env:
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# the repository that triggered the run, so a fork or a mirror tests itself
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REPO_URL: ${{ github.server_url }}/${{ github.repository }}.git
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run: |
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set -eu
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git config --global --add safe.directory '*'
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git clone "$REPO_URL" .
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git checkout "${GITHUB_SHA}" 2>/dev/null || git checkout "${GITHUB_REF_NAME:-main}"
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git log --oneline -1
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# See ci.yml for why the Linux build injects the stdio shim via LUDIC_CC.
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echo "LUDIC_CC=clang-16 $(pwd)/tools/ci/linux_stdio_shim.ll" >> "$GITHUB_ENV"
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echo "LUDIC_HOME=$(pwd)" >> "$GITHUB_ENV"
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- name: Bootstrap x from the seed
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run: |
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set -eu
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mkdir -p bin
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clang-16 tools/ci/linux_stdio_shim.ll selfhost/ludicc.seed.ll -o bin/ludicc
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bin/ludicc tools/ludic-cli/dev.ludic -o bin/ludic-dev
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- name: Rebuild the compiler from the seed and assert byte-identity
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# `ludic-dev bootstrap-cfree` assembles the seed with clang, has that seed
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# compiler recompile selfhost.ludic to out.ll, and `cmp`s out.ll against
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# the checked-in seed. It returns non-zero if they differ — i.e. if the
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# seed is stale relative to the compiler source.
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run: bin/ludic-dev bootstrap-cfree
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