* feat(#3841): assert gsd-tools identity before any state-mutating verb only this package publishes. The path-based branches — a project-local install, a runtime config directory — had no such guarantee; they trusted their configured location. This closes them. Mechanism: once resolution finishes, and before any verb runs, the preamble probes the tool it picked with `runtime-identity --raw` and matches the answer with a shell `case` pattern ANCHORED to the start of the compact payload (`{"packageName":"@opengsd/gsd-core"`). An unanchored substring match accepts the decoy `{"packageName":"get-shit-done-cc","note":"@opengsd/gsd-core"}`, which any colliding package could publish. The outcome is exported as the two-valued `GSD_IDENTITY_STATUS` (`ok`/`unverified`), so the gate is asserted on a VALUE rather than on warning prose. Rollout is warn-then-fail per the #3146 ruling: `unverified` prints one line naming BOTH causes and continues, because `no_identity_verb` cannot tell a foreign package from an `@opengsd/gsd-core` older than the verb, and at rollout the old-version case is the common one. The blocker was byte budget, not design. The preamble is inlined into 112 shipped files and several sat within single-digit bytes of frozen ceilings (`gsd-verifier.md` 16 bytes, `gsd-executor.md` 33, `execute-phase.md` 234); a first attempt broke five of them. What made room was collapsing the resolver's twenty near-identical `elif [ -f … ]` arms into one candidate-list helper (`_gsd_at`), which buys far more than the assertion costs. The preamble is now 2,624 bytes against 4,500 — a net 1,876 bytes SMALLER per inlined file, so every capped file moved away from its ceiling rather than toward it. No cap raised, no size-budget exception added, no override token emitted. Resolution order, every runtime-home probe, the `unset -f gsd_run` re-source fix, the fail-closed `exit 1`, and the `CLAUDE_ENV_FILE` persistence are all preserved byte-for-byte in substring terms; the snippet still begins with `_GSD_SHIM_NAME=` and still ends with `fi`, which the parity extractors anchor on. `gsd-core/references/gsd-run-resolver.md` is re-synced byte-equal. Also fixes two stale claims found in passing: CONTEXT.md and FEATURES.md both described an `[ -x ]` guard as the load-bearing re-source defense. That guard was tried and REMOVED in #3831 — it rejected the bare function name, fell through every branch, and hit `exit 1`, which kills a sourced caller's shell. `unset -f gsd_run` is the actual mechanism. Refs #3841 Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> * fix(#3841): pair the anchor's brace by requiring a closed identity payload The matrix went red on `tests/new-project-mvp-prompt.test.cjs` — "new-project.md has unbalanced braces: net depth 2" — plus a knock-on report from its parent `bug #1516` describe, which is the same failure counted once at the child and once at the block. Root cause: that guard (:182-189, mirroring #3784 bd53925f) walks characters and increments on `{`, decrements on `}`, with no awareness of shell quoting. It scans `new-project.md` PLUS every `new-project/steps/*.md`, and both `new-project.md` and `steps/auto-mode-config.md` carry one inlined preamble copy — hence net 2 from a snippet that was off by exactly one. The unpaired brace was the `{` inside the single-quoted `case` pattern of the identity anchor, which is correct shell and invisible to a text scanner. Fix in the snippet, not the guard. The pattern now anchors at BOTH ends: `'{"packageName":"@opengsd/gsd-core"'*'}'`. That balances 51/51 with a brace that does real work rather than a cosmetic pair — a truncated payload whose prefix matches now fails too, where before it verified. Safe for any future additive field: a JSON object's own closing brace is always the last character, whatever type the last value has, which is pinned by two negative-space tests (a nested object and an array-valued last key must both still verify). Cost: +3 bytes, against the 1,873 the resolver fold already gave back. The alternative considered and rejected was dropping the literal `{` for a `?` glob. It balances too, but weakens the anchor from "must be an opening brace" to "must be any one character", and the anchor is the entire point. Two guards added so this cannot recur silently: - runtime-launcher-parity (F0) pins brace balance at the SNIPPET, so the next edit to that pattern fails on the file it broke instead of surfacing three files downstream in a test whose name mentions neither the launcher nor this issue. It also asserts depth never goes negative, since a `}` preceding its `{` nets to zero while being unbalanced at every prefix. - runtime-identity gains behavioral truncated-payload and trailing-garbage fixtures, so the added `}` is proven load-bearing rather than merely present. Verified: snippet 51/51 braces; new-project combined net depth 0; the seven other preamble-bearing files with nonzero depth are unchanged from merged next (their own prose, not the preamble, and not in any guard's scan set); all 112 inlined copies and the resolver reference re-synced byte-equal; sync:launcher idempotent on the second run. Refs #3841 Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> * chore(#3841): backfill changeset PR number Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> --------- Co-authored-by: sim <sim@local> Co-authored-by: Claude Opus 5 <noreply@anthropic.com>
32 KiB
This implements adversarial review: different AI models catch different blind spots. A plan that survives review from 2-3 independent AI systems is more robust.
Check which AI CLIs are available on the system:_GSD_SHIM_NAME="gsd-tools.cjs"; _GSD_RUNTIME_ROOT="${RUNTIME_DIR:-$(git rev-parse --show-toplevel 2>/dev/null || pwd)}"; GSD_TOOLS="${_GSD_RUNTIME_ROOT}/gsd-core/bin/${_GSD_SHIM_NAME}"; _gsd_at() { for _p; do if [ -f "$_p" ]; then GSD_TOOLS="$_p"; return 0; fi; done; return 1; }; if _gsd_at "${_GSD_RUNTIME_ROOT}/gsd-core/bin/${_GSD_SHIM_NAME}" "${_GSD_RUNTIME_ROOT}/.claude/gsd-core/bin/${_GSD_SHIM_NAME}" "${_GSD_RUNTIME_ROOT}/.codex/gsd-core/bin/${_GSD_SHIM_NAME}"; then gsd_run() { node "$GSD_TOOLS" "$@"; }; elif unset -f gsd_run; _G="$(command -v gsd_run)"; then GSD_TOOLS="$_G"; gsd_run() { "$GSD_TOOLS" "$@"; }; elif _gsd_at "${CLAUDE_CONFIG_DIR:-$HOME/.claude}/gsd-core/bin/${_GSD_SHIM_NAME}" "${HERMES_HOME:-$HOME/.hermes}/gsd-core/bin/${_GSD_SHIM_NAME}" "${CURSOR_CONFIG_DIR:-$HOME/.cursor}/gsd-core/bin/${_GSD_SHIM_NAME}" "${CODEX_HOME:-$HOME/.codex}/gsd-core/bin/${_GSD_SHIM_NAME}" "${GEMINI_CONFIG_DIR:-$HOME/.gemini}/gsd-core/bin/${_GSD_SHIM_NAME}" "${COPILOT_CONFIG_DIR:-$HOME/.copilot}/gsd-core/bin/${_GSD_SHIM_NAME}" "${WINDSURF_CONFIG_DIR:-$HOME/.codeium/windsurf}/gsd-core/bin/${_GSD_SHIM_NAME}" "${AUGMENT_CONFIG_DIR:-$HOME/.augment}/gsd-core/bin/${_GSD_SHIM_NAME}" "${TRAE_CONFIG_DIR:-$HOME/.trae}/gsd-core/bin/${_GSD_SHIM_NAME}" "${QWEN_CONFIG_DIR:-$HOME/.qwen}/gsd-core/bin/${_GSD_SHIM_NAME}" "${CODEBUDDY_CONFIG_DIR:-$HOME/.codebuddy}/gsd-core/bin/${_GSD_SHIM_NAME}" "${CLINE_CONFIG_DIR:-$HOME/.cline}/gsd-core/bin/${_GSD_SHIM_NAME}" "${GROK_AGENTS_HOME:-$HOME/.agents}/gsd-core/bin/${_GSD_SHIM_NAME}" "${ANTIGRAVITY_CONFIG_DIR:-$HOME/.gemini/antigravity}/gsd-core/bin/${_GSD_SHIM_NAME}" "${OPENCODE_CONFIG_DIR:-${XDG_CONFIG_HOME:-$HOME/.config}/opencode}/gsd-core/bin/${_GSD_SHIM_NAME}" "${KILO_CONFIG_DIR:-${XDG_CONFIG_HOME:-$HOME/.config}/kilo}/gsd-core/bin/${_GSD_SHIM_NAME}"; then gsd_run() { node "$GSD_TOOLS" "$@"; }; else echo "ERROR: gsd-tools.cjs not found at $GSD_TOOLS and gsd_run is not on PATH. Run: npx -y @opengsd/gsd-core@latest --claude --local" >&2; exit 1; fi; GSD_IDENTITY_STATUS=unverified; case "$(gsd_run runtime-identity --raw 2>/dev/null || true)" in '{"packageName":"@opengsd/gsd-core"'*'}') GSD_IDENTITY_STATUS=ok;; esac; export GSD_IDENTITY_STATUS; [ "$GSD_IDENTITY_STATUS" = ok ] || echo "WARNING: \"$GSD_TOOLS\" did not prove it is @opengsd/gsd-core - it is either a different package or an @opengsd/gsd-core older than the runtime-identity verb. See docs/how-to/diagnose-a-foreign-gsd-tools.md" >&2; if [ -n "${CLAUDE_ENV_FILE:-}" ] && [ -n "${GSD_TOOLS:-}" ]; then printf "export PATH='%s':\"\$PATH\"\n" "${GSD_TOOLS%/*}" >> "$CLAUDE_ENV_FILE" 2>/dev/null || true; fi
# Check each CLI
command -v gemini >/dev/null 2>&1 && echo "gemini:available" || echo "gemini:missing"
command -v claude >/dev/null 2>&1 && echo "claude:available" || echo "claude:missing"
command -v codex >/dev/null 2>&1 && echo "codex:available" || echo "codex:missing"
command -v coderabbit >/dev/null 2>&1 && echo "coderabbit:available" || echo "coderabbit:missing"
command -v opencode >/dev/null 2>&1 && echo "opencode:available" || echo "opencode:missing"
command -v qwen >/dev/null 2>&1 && echo "qwen:available" || echo "qwen:missing"
command -v cursor-agent >/dev/null 2>&1 && echo "cursor:available" || echo "cursor:missing"
command -v agy >/dev/null 2>&1 && echo "antigravity:available" || echo "antigravity:missing"
command -v kimi >/dev/null 2>&1 && echo "kimi-code:available" || echo "kimi-code:missing"
# Check local model servers (OpenAI-compatible HTTP API — no CLI binary required)
OLLAMA_HOST=$(gsd_run query config-get review.ollama_host --raw 2>/dev/null || echo "")
if [ -z "$OLLAMA_HOST" ] || [ "$OLLAMA_HOST" = "null" ]; then OLLAMA_HOST="http://localhost:11434"; fi
curl -s --max-time 2 "${OLLAMA_HOST}/v1/models" >/dev/null 2>&1 && echo "ollama:available" || echo "ollama:missing"
LM_STUDIO_HOST=$(gsd_run query config-get review.lm_studio_host --raw 2>/dev/null || echo "")
if [ -z "$LM_STUDIO_HOST" ] || [ "$LM_STUDIO_HOST" = "null" ]; then LM_STUDIO_HOST="http://localhost:1234"; fi
curl -s --max-time 2 "${LM_STUDIO_HOST}/v1/models" >/dev/null 2>&1 && echo "lm_studio:available" || echo "lm_studio:missing"
LLAMA_CPP_HOST=$(gsd_run query config-get review.llama_cpp_host --raw 2>/dev/null || echo "")
if [ -z "$LLAMA_CPP_HOST" ] || [ "$LLAMA_CPP_HOST" = "null" ]; then LLAMA_CPP_HOST="http://localhost:8080"; fi
curl -s --max-time 2 "${LLAMA_CPP_HOST}/v1/models" >/dev/null 2>&1 && echo "llama_cpp:available" || echo "llama_cpp:missing"
# jq prerequisite (#2589). The config/model/budget lookups in this workflow no
# longer need jq — they use the native --raw/--pick flags. But the lanes listed
# under "jq-dependent reviewer lanes" below parse structured JSON that gsd-tools
# does not emit (OpenAI-compatible /v1/chat/completions responses, opencode's
# JSONL event stream, agy's conversation cache), so they cannot run without jq.
# Probe it here rather than letting each lane swallow exit 127 into empty output.
command -v jq >/dev/null 2>&1 && echo "jq:available" || echo "jq:missing"
jq-dependent reviewer lanes. jq is a production prerequisite for the
ollama, lm_studio, llama_cpp, opencode, and antigravity lanes only. If
detect_clis reports jq:missing, treat those five as undetected — they
follow the same "known-but-undetected" path as a missing CLI. Which path that is
depends on how the lane was selected (see the precedence rules below): reached
through review.default_reviewers or --all it is an info note and the lane is
ignored; named by an explicit flag it is an error, because the user asserted
that lane. Tell the user to install jq:
NOTE: jq is not on PATH — the ollama, lm_studio, llama_cpp, opencode, and
antigravity reviewer lanes are unavailable. Install jq (https://jqlang.org/download/)
or select a lane that does not require it (--gemini, --claude, --codex,
--coderabbit, --qwen, --cursor).
The remaining lanes (gemini, claude, codex, coderabbit, qwen, cursor)
do not require jq and must stay selectable on a jq-less host.
Parse flags from $ARGUMENTS:
--gemini→ include Gemini--claude→ include Claude--codex→ include Codex--coderabbit→ include CodeRabbit--opencode→ include OpenCode--qwen→ include Qwen Code--cursor→ include Cursor--agyor--antigravity→ include Antigravity CLI--kimi-code→ include Kimi CLI--ollama→ include Ollama (local server, OpenAI-compatible)--lm-studio→ include LM Studio (local server, OpenAI-compatible)--llama-cpp→ include llama.cpp (local server, OpenAI-compatible)--all→ include all available (CLIs + running local servers)- No flags → if
review.default_reviewersis set, include only configured reviewers that are detected; otherwise include all available
Reviewer-selection precedence:
- Individual reviewer flags (
--gemini,--codex, etc.) --allreview.default_reviewers- No key + no flags → all detected reviewers
Explicit reviewer flags are an assertion, not a preference (ADR-2782 D4). A lane the user
named on the command line and that cannot run is an error, surfaced and non-silent — even
when other named lanes did run. Do not proceed with a thinner reviewer set and report success:
--gemini --qwen on a host without qwen fails, it does not quietly become a Gemini-only
review. This applies however the lane became unavailable — binary missing, prerequisite jq
absent, or a local server not reachable.
The asymmetry is deliberate: not finding a lane nobody asked for is normal; failing to run a
lane somebody asked for is an error. A user who wants "whatever is available" has --all; a
user who wants a preferred set has review.default_reviewers. Both stay lenient below.
review.default_reviewers behavior:
- Value must be a non-empty array of slug strings (configured via
gsd config-set review.default_reviewers '["gemini","codex"]') - Unknown slugs warn and are ignored
- Known-but-undetected slugs emit an info note and are ignored — a configured default is a preference evaluated across many hosts, so a subset being present is expected, not an error
- If all configured reviewers are unavailable, fail with an actionable message
If section_manifest is null or "reviewer-instances-note-1" is in its included list: read and execute gsd-core/workflows/review/steps/reviewer-instances-note-1.md. Otherwise skip — do not read the file.
If no CLIs are available:
No external AI CLIs found. Install at least one:
- gemini: https://github.com/google-gemini/gemini-cli
- codex: https://github.com/openai/codex
- claude: https://github.com/anthropics/claude-code
- opencode: https://opencode.ai (leverages GitHub Copilot subscription models)
- qwen: https://github.com/nicepkg/qwen-code (Alibaba Qwen models)
- cursor: https://cursor.com (Cursor IDE agent mode)
- agy: curl -fsSL https://antigravity.google/cli/install.sh | bash (Antigravity CLI — free with Google credentials)
Then run /gsd:review again.
Exit.
Determine which CLI to skip based on the current runtime environment:
# Environment-based runtime detection (priority order)
if [ "$ANTIGRAVITY_AGENT" = "1" ]; then
# Antigravity is a separate client — all CLIs are external, skip none
SELF_CLI="none"
elif [ -n "$CURSOR_SESSION_ID" ]; then
# Running inside Cursor agent — skip cursor for independence
SELF_CLI="cursor"
elif [ -n "$CLAUDE_CODE_ENTRYPOINT" ]; then
# Running inside Claude Code CLI — skip claude for independence
SELF_CLI="claude"
else
# Other environments (Gemini CLI, Codex CLI, etc.)
# Fall back to AI self-identification to decide which CLI to skip
SELF_CLI="auto"
fi
Rules:
- If
SELF_CLI="none"→ invoke ALL available CLIs (no skip) - If
SELF_CLI="claude"→ skip claude, use gemini/codex - If
SELF_CLI="auto"→ the executing AI identifies itself and skips its own CLI - At least one DIFFERENT CLI must be available for the review to proceed.
INIT=$(gsd_run query init.review "${PHASE_ARG}")
if [[ "$INIT" == @file:* ]]; then INIT=$(cat "${INIT#@file:}"); fi
# #2358: ONE run-scoped temp dir (portable via ${TMPDIR:-/tmp}) so overlapping
# runs never collide or read each other's stale files.
RUN_DIR=$(mktemp -d "${TMPDIR:-/tmp}/gsd-review-XXXXXX")
echo "RUN_DIR=$RUN_DIR"
Read from init: phase_dir, phase_number, padded_phase.
Capture RUN_DIR above (created ONCE) and thread it into every {run_dir}
placeholder and $RUN_DIR/${RUN_DIR} reference within a bash block. Do NOT
re-run mktemp -d later — every block must resolve to this same directory, or
build_prompt's writes and invoke_reviewers' reads split.
Then read:
.planning/PROJECT.md(first 80 lines — project context)- Phase section from
.planning/ROADMAP.md - All
*-PLAN.mdfiles in the phase directory *-CONTEXT.mdif present (user decisions)*-RESEARCH.mdif present (domain research).planning/REQUIREMENTS.md(requirements this phase addresses)
# Cross-AI Plan Review Request
You are reviewing implementation plans for a software project phase.
Provide structured feedback on plan quality, completeness, and risks.
## Project Context
{first 80 lines of PROJECT.md}
## Phase {N}: {phase name}
### Roadmap Section
{roadmap phase section}
### Requirements Addressed
{requirements for this phase}
### User Decisions (CONTEXT.md)
{context if present}
### Research Findings
{research if present}
### Plans to Review
{all PLAN.md contents}
## Review Instructions
**Verify against source — do not review the plan text in isolation.** The plans reference real files, migrations, routes, and tests in this repo.
1. Open the referenced files and check each claim against the actual code.
2. For every strength or concern, cite concrete `path/to/file:line` evidence plus the mechanism.
3. When a plan asserts a mechanism works (a guard, a query filter, a test that exercises a path), trace whether it actually does what is claimed — do not take the plan's word for it.
4. If you cannot read the repo (no file access), say so and downgrade that finding to an open question rather than asserting it.
Findings citing `file:line` evidence are weighted far more heavily than impressionistic ones; a review that only restates the plan's own claims has low value.
Analyze each plan and provide:
1. **Summary** — One-paragraph assessment
2. **Strengths** — What's well-designed (bullet points)
3. **Concerns** — Potential issues, gaps, risks (bullet points with severity: HIGH/MEDIUM/LOW)
4. **Suggestions** — Specific improvements (bullet points)
5. **Risk Assessment** — Overall risk level (LOW/MEDIUM/HIGH) with justification
Focus on:
- Missing edge cases or error handling
- Dependency ordering issues
- Scope creep or over-engineering
- Security considerations
- Performance implications
- Whether the plans actually achieve the phase goals
Output your review in markdown format.
Write to a temp file: {run_dir}/gsd-review-prompt.md
Also write individual section files so the budget tool can re-trim per reviewer:
# #2962: zsh aborts the block on an unmatched for-list glob (nomatch); bash passes it through. nullglob both.
shopt -s nullglob 2>/dev/null; setopt NULL_GLOB 2>/dev/null
RUN_DIR="{run_dir}" # from gather_context
# Write individual section files for per-reviewer budget trimming
# These are always written so reviewers with a budget can invoke prompt-budget
cp "$INSTRUCTIONS_BLOCK_FILE" "${RUN_DIR}/gsd-review-instructions.md"
cp "$ROADMAP_SECTION_FILE" "${RUN_DIR}/gsd-review-roadmap.md"
# Plan files: copy each PLAN.md to a predictable numbered path
PLAN_INDEX=0
for PLAN_FILE in "${PHASE_DIR}"/*-PLAN.md; do
PADDED_IDX=$(printf '%02d' "$PLAN_INDEX")
cp "$PLAN_FILE" "${RUN_DIR}/gsd-review-plan-${PADDED_IDX}.md"
PLAN_INDEX=$((PLAN_INDEX + 1))
done
# Optional section files (only if content was included in the combined prompt)
if [ -f ".planning/PROJECT.md" ]; then
cp .planning/PROJECT.md "${RUN_DIR}/gsd-review-project.md"
fi
_CTX=( "${PHASE_DIR}"/*-CONTEXT.md )
if [ ${#_CTX[@]} -gt 0 ]; then
cat "${_CTX[@]}" > "${RUN_DIR}/gsd-review-context.md"
fi
_RESEARCH=( "${PHASE_DIR}"/*-RESEARCH.md )
if [ ${#_RESEARCH[@]} -gt 0 ]; then
cat "${_RESEARCH[@]}" > "${RUN_DIR}/gsd-review-research.md"
fi
if [ -f ".planning/REQUIREMENTS.md" ]; then
cp .planning/REQUIREMENTS.md "${RUN_DIR}/gsd-review-requirements.md"
fi
Note: INSTRUCTIONS_BLOCK_FILE, ROADMAP_SECTION_FILE, and PHASE_DIR come from prompt assembly; RUN_DIR is the run-scoped dir from gather_context (#2358) re-assigned from {run_dir} above. Copy the temp files written during prompt assembly to these section paths (or write each section here if the prompt was built inline).
Do not re-add a per-CLI block. A <!-- reviewer-lane: … --> marker anywhere in this step now
FAILS the parity gate (checkReviewerLaneParity → bespoke_leg_present). Lane divergence is
declared in the manifest — timeout floor, probe, prompt/output channel, empty-output policy — and
behaviour that data genuinely cannot express is a named first-party handler (ADR-2782 D6), never
a bespoke block here.
Timeout guidance (#2194): prompt-fed source-grounded reviews are slow — measured ~570 s for
Codex at xhigh effort and ~525 s for headless Claude on a large plan set. Each lane declares its
own timeoutFloorMs and the runner enforces it internally, but the Bash tool call wrapping the
loop below must still be given a high timeout: — at least 900000, and 1200000 when Codex or
headless Claude are in the selection — or the host kills the whole loop mid-lane. On Claude Code,
raise the host cap via BASH_MAX_TIMEOUT_MS if a review can exceed it.
A silent empty output after a long run is a timeout kill, not a crash — the Codex 0xc0000142
misdiagnosis persisted for exactly this reason, because an empty result cannot distinguish the two
on its own. Treat an empty result on a slow lane as a dropped lane and re-run with more time rather
than diagnosing a CLI or sandbox failure. A cross-AI review that silently drops a lane is blind in
one eye.
No hook-trust bypass (#2479): no lane passes a hook-trust bypass flag and none runs a capability
probe for one. That flag only bypasses persisted hook trust (a first-run condition) and flagless
invocations work in steady state, while host-harness safety classifiers deny commands carrying it.
An environment that genuinely hits an untrusted-hook prompt surfaces through the .err capture and
the empty-output stub as a dropped lane with diagnosable stderr, not silent attrition. Do not
reintroduce the flag (even spelled out in prose — a regression test bans the literal file-wide).
If section_manifest is null or "reviewer-instances-note-2" is in its included list: read and execute gsd-core/workflows/review/steps/reviewer-instances-note-2.md. Otherwise skip — do not read the file.
Lanes run sequentially by default — concurrent invocation trips provider rate limits, and a lane
lost to one is a cross-AI review that quietly went blind in one eye. A project whose providers can
accept the concurrency opts in with review.parallel_lanes: true (#3034): the selected lanes are
dispatched together and all joined before aggregation. The default is unchanged, and convergence
cycles stay sequential either way — only the lanes within one pass overlap.
# #2962: zsh aborts the block on an unmatched for-list glob (nomatch); bash passes it through. nullglob both.
shopt -s nullglob 2>/dev/null; setopt NULL_GLOB 2>/dev/null
RUN_DIR="{run_dir}"
REPO_ROOT="$(git rev-parse --show-toplevel 2>/dev/null || pwd)"
# SELECTED_REVIEWERS is the comma-separated result of reviewer selection (ADR-0011 precedence:
# explicit flags > --all > review.default_reviewers > all detected). Unchanged by this phase.
# #3034: opt-in concurrent lane dispatch. STRICT equality on "true" is deliberate — "1", "yes" and
# "TRUE" must NOT opt in, so a mistyped config gets the conservative behaviour rather than firing
# concurrent requests at a rate-limited provider. Note the `|| echo "false"` fallback is the
# OPPOSITE polarity from the commit_docs guard, which fails OPEN: there, failing open preserves the
# user's intent; here it would fire exactly the requests the default exists to prevent.
PARALLEL_LANES=$(gsd_run query config-get review.parallel_lanes --raw 2>/dev/null || echo "false")
# Shared budget-trim helper. Was defined inside the Ollama leg; it is lane-agnostic, so it is
# hoisted here now that any lane may declare a promptBudgetKey. Returns non-zero when the budget
# is too small for the minimum review set (prompt-budget exit 2 / 11).
prepare_trimmed_prompt_for_reviewer() {
REVIEWER_KEY="$1"; REVIEWER_BUDGET="$2"; OUTPUT_PROMPT="$3"; OUTPUT_META="$4"
PLAN_FILE_ARGS=""
for p in "$RUN_DIR"/gsd-review-plan-*.md; do
[ -f "$p" ] && PLAN_FILE_ARGS="$PLAN_FILE_ARGS --plan-file $p"
done
PROJECT_ARG=""
[ -f "$RUN_DIR/gsd-review-project.md" ] && PROJECT_ARG="--project-file $RUN_DIR/gsd-review-project.md"
CONTEXT_ARG=""
[ -f "$RUN_DIR/gsd-review-context.md" ] && CONTEXT_ARG="--context-file $RUN_DIR/gsd-review-context.md"
RESEARCH_ARG=""
[ -f "$RUN_DIR/gsd-review-research.md" ] && RESEARCH_ARG="--research-file $RUN_DIR/gsd-review-research.md"
REQUIREMENTS_ARG=""
[ -f "$RUN_DIR/gsd-review-requirements.md" ] && REQUIREMENTS_ARG="--requirements-file $RUN_DIR/gsd-review-requirements.md"
gsd_run query prompt-budget \
--budget "$REVIEWER_BUDGET" \
--instructions-file "$RUN_DIR/gsd-review-instructions.md" \
--roadmap-file "$RUN_DIR/gsd-review-roadmap.md" \
$PLAN_FILE_ARGS $PROJECT_ARG $CONTEXT_ARG $RESEARCH_ARG $REQUIREMENTS_ARG \
--output-prompt "$OUTPUT_PROMPT" \
--output-metadata "$OUTPUT_META"
return $?
}
gsd_run query review-lane plan \
--selected "$SELECTED_REVIEWERS" --run-dir "$RUN_DIR" --repo-root "$REPO_ROOT" --json \
> "$RUN_DIR/gsd-review-lanes.json"
# One lane, start to finish. Hoisted into a function so the sequential and concurrent paths share
# ONE body: two dispatch bodies kept in sync by hand is the generative-fix divergence ADR-2782 spent
# a phase deleting, and it is what let #2494/#2605 be filed twice as the same defect.
#
# The result goes to a SLUG-SCOPED file, never a shared append. Concurrent O_APPEND is atomic only
# below PIPE_BUF (4096 on Linux, 512 on some platforms), so a lane result above that bound could
# interleave — and write_reviews parses this JSONL to render the models:/model_sources: frontmatter,
# so a torn line is a broken REVIEWS.md, not a cosmetic log defect.
run_review_lane() {
# `local` is hygiene, not a live fix: each `&`-dispatched call already forks its own subshell, so
# concurrent lanes cannot share these today. Scoped anyway so the isolation is a property of this
# function rather than of the dispatch mechanism happening to fork.
local SLUG LANE_BUDGET PROMPT_ARG TRIMMED
SLUG="$1"
# Per-lane prompt budget. The lane declares its own `promptBudgetKey`; `plan` resolved it,
# applying #2797's sentinel rule (-1 = unset → fall back to the global budget; 0 legitimately
# means "do not trim this lane"). Trimming itself stays in prompt-budget, which owns it.
LANE_BUDGET=$(gsd_run query review-lane plan --selected "$SLUG" --run-dir "$RUN_DIR" \
--repo-root "$REPO_ROOT" --json 2>/dev/null \
| sed -n 's/.*"promptBudget": *\([0-9-]*\).*/\1/p' | head -1)
PROMPT_ARG=""
if [ -n "$LANE_BUDGET" ] && [ "$LANE_BUDGET" != "null" ] && [ "$LANE_BUDGET" -gt 0 ] 2>/dev/null; then
TRIMMED="$RUN_DIR/gsd-review-prompt-$SLUG.md"
if prepare_trimmed_prompt_for_reviewer "$SLUG" "$LANE_BUDGET" "$TRIMMED" \
"$RUN_DIR/gsd-review-prompt-$SLUG.metadata.json"; then
PROMPT_ARG="--prompt-file $TRIMMED"
else
# A budget too small for the minimum review set drops the lane just as silently as an empty
# response used to (#2605), so leave the skip visible in the review output, not only on stderr.
echo "$SLUG review skipped: prompt budget (${LANE_BUDGET} tokens) too small for the minimum review set." \
> "$RUN_DIR/gsd-review-$SLUG.md"
# Was `continue` when this was a loop body. Inside a function that keyword is not the loop
# control it looks like — `return 0` is what skips this lane and leaves it with no result line.
return 0
fi
fi
# One invocation, whatever the lane's transport, prompt channel, output channel or handler.
# `--explicit` marks a lane the user NAMED: ADR-2782 D4 — not finding a lane nobody asked for is
# normal, failing to run one somebody asked for is an error.
gsd_run query review-lane invoke --slug "$SLUG" \
--run-dir "$RUN_DIR" --repo-root "$REPO_ROOT" $PROMPT_ARG $EXPLICIT_FLAG --json \
> "$RUN_DIR/gsd-review-lane-result-$SLUG.json"
}
# Split ONCE, de-duplicated, and reuse for both loops below. Two reasons, and the second is
# load-bearing: a slug repeated in SELECTED_REVIEWERS would put TWO concurrent background jobs on
# `> "$RUN_DIR/gsd-review-lane-result-$SLUG.json"` — the same file, both truncating. The shared-append
# form this replaced could not corrupt itself that way, so de-duping is what keeps the concurrent
# path no worse than the sequential one. Selection de-dupes today (the roster is a Set;
# review.default_reviewers normalizes lowercase-unique), but reachability analysis is not a contract
# and the next caller should not have to redo it.
#
# A plain string accumulator, not an array: zsh and bash disagree on array indexing and this block
# runs under both (see the nullglob/NULL_GLOB pairing above).
DISPATCH_SLUGS=""
for SLUG in $(echo "$SELECTED_REVIEWERS" | tr ',' ' '); do
case " $DISPATCH_SLUGS " in
*" $SLUG "*) continue ;;
esac
DISPATCH_SLUGS="$DISPATCH_SLUGS $SLUG"
done
for SLUG in $DISPATCH_SLUGS; do
if [ "$PARALLEL_LANES" = "true" ]; then
run_review_lane "$SLUG" &
else
run_review_lane "$SLUG"
fi
done
# Join every dispatched lane. A bare `wait` with no background jobs returns 0, so the sequential
# path needs no guard around it. NOTHING below this line may run before every lane has finished —
# write_reviews renders REVIEWS.md and the consensus summary from the aggregate below, and a review
# assembled from a partial set looks complete while silently missing a reviewer.
wait
# Aggregate in SELECTED_REVIEWERS order, NOT completion order, so the JSONL a concurrent run
# produces is byte-identical to the one a sequential run produces. This is post-join and therefore
# single-threaded, so `>>` here is safe. A lane that was budget-skipped, or that never started,
# leaves no result file and correctly contributes no line.
for SLUG in $DISPATCH_SLUGS; do
LANE_RESULT="$RUN_DIR/gsd-review-lane-result-$SLUG.json"
if [ -f "$LANE_RESULT" ]; then
cat "$LANE_RESULT" >> "$RUN_DIR/gsd-review-lane-results.jsonl"
fi
done
Each lane leaves {run_dir}/gsd-review-<slug>.md — its review, or a diagnostic stub carrying the
captured stderr (and, for an OpenAI-compatible lane, the raw response body, where such a server puts
its error JSON on an HTTP 4xx/5xx while still exiting 0). A stub is never mistaken for a clean
review: it keeps its "failed or returned empty output" header (#2494/#2605/#2794).
A lane that will not run reports a typed reason rather than an empty file — missing_binary,
probe_failed, probe_timeout, missing_required_binary, host_unreachable,
egress_host_changed, unknown_handler, budget_too_small. egress_host_changed means the lane
was consented to send plans to one destination and .planning/config.json now names another; it is
blocked, not silently redirected (ADR-2782 D5).
Display progress:
### GSD ► CROSS-AI REVIEW — Phase {N}
◆ Reviewing with {CLI}... done ✓
◆ Reviewing with {CLI}... done ✓
After all reviewers complete, collect trim metadata files written during the run. For each reviewer that was trimmed (i.e. a .metadata.json file exists and hardFailed or omitted is non-empty, or projectMdShrunk is true, or planTruncationPct > 0), include a trimmed_reviewers block in the frontmatter. Omit the key entirely if no reviewer was trimmed.
Reviewer instances (#1517, optional): when instances ran, frontmatter records their
names, each gets its own ## <Adapter> Review (<instance>) section, and ≥2 same-cli
instances print a one-line shared-adapter caveat. Format in
gsd-core/references/reviewer-instances.md.
Resolved model (#2295): each lane's review-lane invoke --json line in
{run_dir}/gsd-review-lane-results.jsonl carries a model object; render models: from
its value and model_sources: from its source. Both maps carry exactly one entry per
reviewer that appears in reviewers: — the two key sets always match. Write the literal
unknown rather than omitting a key: an omitted key is indistinguishable from the feature
not having run, and a reader must be able to tell no model recorded from nothing to
look at. Emit every models:/model_sources: value as a DOUBLE-QUOTED YAML scalar — a
legitimate model id can contain : (llama3:70b, qwen2.5:7b), which is unquotable as a
bare scalar; a control character is already refused at the recording seam, so quoting is
what closes the remaining :/#/leading-- cases. When GSD applied a reasoning effort to
a lane, its value already carries a (reasoning=<level>) suffix (e.g.
gpt-5.6-sol (reasoning=high)) — render it as-is, without re-deriving or re-formatting it.
---
phase: {N}
reviewers: [gemini, claude, codex, coderabbit, opencode, qwen, cursor, antigravity, ollama, lm_studio, llama_cpp] # populate at runtime with only the reviewers actually invoked
reviewed_at: {ISO timestamp}
plans_reviewed: [{list of PLAN.md files}]
models: # resolved model per reviewer; `unknown` when not recoverable
codex: "gpt-5.6-sol (reasoning=low)"
antigravity: "unknown"
model_sources: # how each value above was determined
codex: "banner"
antigravity: "unknown"
trimmed_reviewers: # only present if at least one reviewer was trimmed
ollama:
budget: 6000
effective_budget: 5400
estimated_tokens: 5380
omitted: [context, research]
project_md_shrunk: true
plan_truncation_pct: 22
hard_failed: false
note_injected: true
---
# Cross-AI Plan Review — Phase {N}
<!-- Sections are RENDERED from each lane's declared `reviewsSection`, in descriptor order.
There is deliberately no hardcoded per-reviewer heading list here any more: a hand-maintained
list is exactly the drift #2781 was filed about, and it silently disagreed with the roster.
`gsd_run query review-lane sections --selected "$SELECTED_REVIEWERS"` emits
`<slug><TAB><reviewsSection>` in order; for each row, emit:
## <reviewsSection> Review
{contents of {run_dir}/gsd-review-<slug>.md}
---
Two headings must NOT be generated from this list, because they are not lanes:
* `## <Adapter> Review (<instance>)` — an ADR-1517 reviewer INSTANCE resolves THROUGH a lane
and is rendered from the instance list, not the lane list (ADR-2782 D8).
* `## Consensus Summary` — not a review section at all.
A lane whose `evidenceClass` is `diff-only` (CodeRabbit) carries its caveat from data: it never
received the source-grounding prompt, so its verdict is folded in as a diff observation and is
not weighted as a grounded plan review. -->
## Consensus Summary
{synthesize common concerns across all reviewers. CodeRabbit is a diff-only reviewer (it never received the source-grounding prompt), so do not weight its verdict as a grounded plan review — fold in its diff findings, but base plan-level consensus on the prompt-fed reviewers. A reviewer output carrying the `[reviewed-without-repo-access]` marker (or beginning with `REVIEWED-WITHOUT-REPO-ACCESS`) ran without repo access (#2176) — treat it the same way: note its concerns, but do not count its verdict at full consensus weight. A reviewer output carrying the `[reviewed-without-source-citations]` marker (#3194) declared source-grounded evidence but cited no `file:line` evidence, so it reviewed the plan text only — treat it the same way: note its concerns, but do not count its verdict at full consensus weight.}
### Agreed Strengths
{strengths mentioned by 2+ reviewers}
### Agreed Concerns
{concerns raised by 2+ reviewers — highest priority}
### Divergent Views
{where reviewers disagreed — worth investigating}
Commit:
gsd_run query commit "docs: cross-AI review for phase {N}" --files {phase_dir}/{padded_phase}-REVIEWS.md
### GSD ► REVIEW COMPLETE
Phase {N} reviewed by {count} AI systems.
Consensus concerns:
{top 3 shared concerns}
Full review: {padded_phase}-REVIEWS.md
To incorporate feedback into planning:
/gsd:plan-phase {N} --reviews
Clean up — remove the run's temp directory now that REVIEWS.md is committed:
rm -rf "{run_dir}"
<success_criteria>
- At least one external CLI invoked successfully
- REVIEWS.md written with structured feedback
- Consensus summary synthesized from multiple reviewers
- Temp files cleaned up
- User knows how to use feedback (/gsd:plan-phase --reviews) </success_criteria>