Sprint 111: IterationSession context primitive Sprint 112: EnvironmentSnapshot and diff Sprint 113: Build output feedback loop Sprint 114: Test failure feedback loop Sprint 115: Requirements derivation from AST Sprint 116: FeedbackLoopOrchestrator (wires 111-115) Sprint 117: HiveMind integration (iteration steps as distributed jobs) These sprints begin Epoch 3 — closed-loop determinism. Sprints 1-110 made code generation open-loop deterministic. Sprints 111+ make the full dev workflow (sense→act→observe→repeat) structurally deterministic, with HiveMind as the execution layer. Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
197 lines
8.5 KiB
Markdown
197 lines
8.5 KiB
Markdown
# Sprint 113 Plan: Build Output Feedback Loop
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## Context
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Build failures are the most common reason a development iteration stalls.
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They are also highly structured: compilers emit errors in machine-parseable
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formats (file, line, col, error code, message). That structure is currently
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discarded — the developer reads the raw output and decides what to fix.
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Sprint 113 makes build output a first-class Whetstone input. A build failure
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becomes a structured `BuildErrorRecord`, which is located in the AST to
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identify the responsible node, classified by error type, and used to generate
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a ranked list of fix candidates. Each candidate is a concrete AST mutation
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with a confidence score. The result integrates with the IterationSession from
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Sprint 111 — each build attempt becomes a recorded attempt with a
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structured observation.
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---
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## Goals
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1. Parse compiler output (GCC, Clang, CMake) into structured `BuildErrorRecord`s
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2. Locate each error in the AST by file + line + col
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3. Classify error types (missing dep, type error, undefined symbol, etc.)
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4. Generate ranked fix candidates as AST mutations
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5. Integrate with IterationSession (build attempt → AttemptRecord)
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---
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## Steps
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### Step 1359: `BuildErrorRecord` schema (12 tests)
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Create `editor/src/BuildErrorRecord.h`.
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Fields: `error_id`, `tool` (enum: gcc, clang, clang_tidy, cmake, linker,
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unknown), `severity` (enum: error, warning, note), `file_path`, `line`,
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`col`, `error_code` (e.g. "E0137", "-Wunused"), `message`, `context_lines[]`
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(surrounding source lines captured from file), `ast_node_id` (populated by
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locator, initially empty).
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Tests (12): constructable with defaults, tool enum round-trips, severity
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defaults to error, file_path stored, line/col stored, error_code stored,
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message stored, context_lines starts empty, ast_node_id starts empty,
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JSON serialization, JSON deserialization, deterministic output.
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### Step 1360: Build output parser — GCC/Clang format (10 tests)
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Create `editor/src/BuildOutputParser.h`.
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Parses the stdout/stderr of a build command into `BuildErrorRecord` list.
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GCC/Clang format: `<file>:<line>:<col>: <severity>: <message>`.
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CMake format: `CMake Error at <file>:<line>`.
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Linker format: `undefined reference to '<symbol>'`.
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Unknown lines captured as `tool=unknown` with raw message.
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Tests (10): GCC error parsed correctly, Clang error parsed, CMake error
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parsed, linker error parsed, warning parsed with severity=warning, note
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parsed with severity=note, multi-line error grouped, empty input returns
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empty list, malformed line returns unknown record, deterministic parse order.
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### Step 1361: AST node locator from build error (10 tests)
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Create `editor/src/BuildErrorLocator.h`.
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Given a `BuildErrorRecord` (file_path, line, col) and an open AST, finds
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the AST node responsible. Strategy: find the node whose span contains
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(line, col). If exact match fails, find the nearest enclosing function/class.
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Populates `ast_node_id` on the record.
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Tests (10): exact line/col match returns node, enclosing function found when
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exact fails, file mismatch returns nullopt, line 0 returns nullopt, col 0
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accepted (start of line), multiple errors located in one pass, deterministic
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node selection, linker error (no file) returns nullopt gracefully, node_id
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written to record, works across all supported languages.
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### Step 1362: Build error classifier (10 tests)
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Create `editor/src/BuildErrorClassifier.h`.
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Classifies `BuildErrorRecord` into semantic error types:
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- `missing_include` — #include not found
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- `undefined_symbol` — undeclared identifier or linker undefined ref
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- `type_mismatch` — incompatible types in assignment/call
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- `missing_dependency` — cmake target/package not found
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- `syntax_error` — parse-level failure
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- `resource_limit` — OOM, stack overflow
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- `unknown` — catch-all
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Classification uses error_code patterns + message substring matching.
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Tests (10): missing_include classified, undefined_symbol classified,
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type_mismatch classified, cmake dependency failure classified, syntax_error
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classified, linker undefined ref → undefined_symbol, warning not
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misclassified as error type, unknown catch-all, deterministic classification,
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JSON round-trip of classified record.
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### Step 1363: Fix candidate generator (10 tests)
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Create `editor/src/BuildFixCandidateGenerator.h`.
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Given a classified `BuildErrorRecord` and the open AST, generates a ranked
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list of `FixCandidate` objects. Each candidate has: `candidate_id`,
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`description`, `confidence` (0.0–1.0), `mutation_type` (addImport,
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changeType, addDependency, deleteNode, insertNode, manual), `mutation`
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(JSON blob suitable for passing to `whetstone_mutate`).
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Classification → candidate strategy:
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- `missing_include` → addImport candidate for the likely header
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- `undefined_symbol` → suggest declaration or import fix
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- `type_mismatch` → suggest cast or type change
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- `missing_dependency` → suggest vcpkg/apt install command (manual mutation)
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- `syntax_error` → low-confidence deleteNode or manual
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- `unknown` → manual with description only
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Tests (10): missing_include produces addImport candidate, confidence > 0.5
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for known patterns, confidence < 0.3 for unknown, mutation JSON round-trips,
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manual candidate always produced as fallback, candidates ordered by confidence
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desc, candidate_id non-empty, description human-readable, no candidates on
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empty error list, deterministic output.
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### Step 1364: Build iteration session integration (8 tests)
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Create `editor/src/BuildIterationAdapter.h`.
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Wraps a build attempt as an `AttemptRecord` + `ObservationRecord`:
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- Runs build command via subprocess, captures stdout+stderr+exit_code
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- Parses output into `BuildErrorRecord` list
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- Computes `GapModel` (metric_type=error_count, current=errors.size(),
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target=0)
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- Records attempt in provided `IterationSession`
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- Returns list of `FixCandidate` for all errors
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Tests (8): attempt appended to session, observation raw_text captured,
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gap metric_type is error_count, gap converged when build succeeds,
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session status transitions to converged on success, fix candidates returned,
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attempt outcome=success on exit_code 0, attempt outcome=failure on non-zero.
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### Step 1365: `whetstone_parse_build_output` MCP tool (8 tests)
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Input: `{ "output": string, "tool": string? }`
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Output: `{ "errors": BuildErrorRecord[], "warning_count": int, "error_count": int }`
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Parses raw build output string, classifies each record, returns structured list.
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Tests (8): tool registered, error_count correct, warning_count correct,
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tool field respected, empty output returns empty errors, malformed input
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returns structured error, classification applied to all records,
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deterministic output shape.
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### Step 1366: `whetstone_suggest_build_fix` MCP tool (8 tests)
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Input: `{ "session_id": string?, "build_output": string,
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"file": string?, "line": int?, "col": int? }`
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Output: `{ "candidates": FixCandidate[], "error_count": int }`
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Parses output, locates in active AST buffer, classifies, generates candidates.
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Tests (8): tool registered, candidates returned, confidence present on all,
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mutation field present, manual fallback always present, missing AST graceful,
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candidates sorted by confidence, deterministic output.
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### Step 1367: `whetstone_run_build_iteration` MCP tool (8 tests)
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Input: `{ "session_id": string, "build_command": string,
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"workspace": string }`
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Output: `{ "attempt_id": string, "session_status": string,
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"error_count": int, "candidates": FixCandidate[] }`
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Runs the build, records the attempt in the session, returns fix candidates.
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Tests (8): tool registered, attempt_id returned, session_status updated,
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error_count correct, candidates present on failure, session converged on
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success, build timeout enforced (default 120s), deterministic output shape.
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### Step 1368: Sprint 113 integration summary + regression (8 tests)
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Create `editor/src/Sprint113IntegrationSummary.h`.
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End-to-end: start session → run_build_iteration (failing build) → verify
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attempt recorded + candidates returned → apply top candidate → run again →
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verify error count reduced.
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Tests (8): headers constructable, tools registered, end-to-end flow works,
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gap model improves after fix applied, session transitions correctly, no header
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exceeds 600 lines, deterministic snapshots, full prior regression passes.
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---
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## Architecture Gate
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- Build command execution via popen/std::system — not a shell injection vector
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(command is passed as-is from MCP caller; caller must sanitize inputs)
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- Confidence scores are heuristic — never presented as guarantees
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- Manual fallback candidate always generated so the loop is never stuck
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- Max 600 lines per header
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