Root cause: JoinIR ValueId collision between function parameters and condition bindings - Same ValueId used for both `result_init` (carrier param) and `limit` (condition var) - Phase 33-21 was overwriting condition bindings when remapping carrier PHIs Fix implemented (Option B - immediate protection): 1. Phase 177-3: Protect condition-only variables from Phase 33-21 override - Collect condition_bindings that are NOT carriers (by checking exit_bindings) - Skip remapping for these protected ValueIds 2. Phase 177-3-B: Handle body-only carriers explicitly - Carriers that appear in condition_bindings (added by Phase 176-5) - Map them to correct PHI dsts by name lookup Investigation tools added: - [DEBUG-177] trace logs for remapper state tracking - Phase 177-3 protection logging - BoundaryInjector PHI collision detection Test results: - ✅ Integer multi-carrier test: Output 3 (expected) - ⚠️ String test: RC=0 but empty output (separate issue - string concat emit) Design docs created: - phase177-parse-string-design.md: _parse_string loop analysis - phase177-carrier-evolution.md: Carrier progression Phase 174-179 Next: Investigate string concatenation emit for full _parse_string support
166 lines
4.1 KiB
Markdown
166 lines
4.1 KiB
Markdown
# Phase 177: Carrier Evolution - min から Production へ
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## 視覚的比較: ループ構造の進化
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### Phase 174: min(1-carrier)
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```
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Input: "hello world""
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^start ^target
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loop(pos < len) {
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ch = s[pos]
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if ch == '"' → break ✓
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else → pos++
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}
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Carriers: 1
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- pos (ループ変数)
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Pattern: 4 (Loop + If PHI)
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Exit: pos = 11
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```
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### Phase 175/176: min2(2-carrier)
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```
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Input: "hello world""
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^start ^target
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loop(pos < len) {
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ch = s[pos]
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if ch == '"' → break ✓
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else → result += ch
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pos++
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}
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Carriers: 2
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- pos (ループ変数)
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- result (バッファ)
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Pattern: 4 (Loop + If PHI)
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Exit: pos = 11, result = "hello world"
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```
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### Phase 177-A: Simple Case(2-carrier, Production-like)
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```
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Input: "hello world""
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^start ^target
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loop(p < len) {
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ch = s[p]
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if ch == '"' → break ✓
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else → str += ch
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p++
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}
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Carriers: 2
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- p (ループ変数)
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- str (バッファ)
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Pattern: 4 (Loop + If PHI)
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Exit: p = 11, str = "hello world"
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```
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### Phase 178: Escape Handling(2-carrier + continue)
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```
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Input: "hello \"world\"""
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^start ^escape ^target
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loop(p < len) {
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ch = s[p]
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if ch == '"' → break ✓
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if ch == '\\' → str += ch
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p++
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str += s[p]
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p++
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continue ←← 新要素
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else → str += ch
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p++
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}
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Carriers: 2 (変わらず)
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- p (ループ変数)
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- str (バッファ)
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Pattern: 4? (continue 対応は未検証)
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Exit: p = 15, str = "hello \"world\""
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```
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### Phase 179: Full Production(2-carrier + early return)
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```
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Input: "hello \"world\"""
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^start ^escape ^target
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loop(p < len) {
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ch = s[p]
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if ch == '"' → return MapBox {...} ✓ ←← early return
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if ch == '\\' → if p+1 >= len → return null ←← error
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str += ch
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p++
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str += s[p]
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p++
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continue
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else → str += ch
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p++
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}
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return null ←← ループ終端エラー
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Carriers: 2 (変わらず)
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- p (ループ変数)
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- str (バッファ)
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Pattern: 4? (early return 対応は未検証)
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Exit: 正常: MapBox, 異常: null
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```
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## Carrier 安定性分析
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### 重要な発見
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**Phase 174 → 179 を通じて Carrier 数は安定(1 → 2)**
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| Phase | Carriers | 新要素 | P5昇格候補 |
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|-------|----------|--------|-----------|
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| 174 | 1 (pos) | - | なし |
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| 175/176 | 2 (pos + result) | バッファ追加 | なし |
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| 177-A | 2 (p + str) | - | なし |
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| 178 | 2 (p + str) | continue | なし(確認中) |
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| 179 | 2 (p + str) | early return | なし(確認中) |
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### P5昇格候補の不在
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**Trim と異なり、`is_ch_match` 相当は不要**
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理由:
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- Trim: `is_ch_match` が「次も空白か?」を決定(**次の判断に影響**)
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- _parse_string: `ch == '"'` は「今終了か?」のみ(**次に影響しない**)
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```
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Trim の制御フロー:
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is_ch_match = (ch == ' ')
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if is_ch_match → pos++ → 次も is_ch_match を評価 ←← 連鎖
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_parse_string の制御フロー:
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if ch == '"' → break → 終了
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else → str += ch, p++ → 次は独立判断 ←← 連鎖なし
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```
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## JoinIR Pattern 対応予測
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| Phase | Pattern 候補 | 理由 |
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|-------|-------------|------|
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| 177-A | Pattern4 | Loop + If PHI + break(実装済み) |
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| 178 | Pattern4? | continue は Pattern4-with-continue(要実装確認) |
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| 179 | Pattern5? | early return は新パターン候補(要設計) |
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## まとめ
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### 段階的検証戦略
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1. **Phase 177-A**: min2 と同型 → P5 安定性確認
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2. **Phase 178**: continue 追加 → JoinIR 拡張必要性評価
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3. **Phase 179**: early return 追加 → Pattern5 設計判断
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### Carrier 設計の教訓
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- **最小構成で開始**: 1-carrier (Phase 174)
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- **段階的拡張**: 2-carrier (Phase 175/176)
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- **Production 適用**: 構造は変えず、制御フローのみ追加(Phase 177+)
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→ **「Carrier 数を固定して制御フローを段階的に複雑化」が正解**
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