Phase 18 v1: Hot Text Isolation — NO-GO (I-cache regression)
## Summary Phase 18 v1 attempted layout optimization using section splitting + GC: - `-ffunction-sections -fdata-sections -Wl,--gc-sections` Result: **Catastrophic I-cache regression** - Throughput: -0.87% (48.94M → 48.52M ops/s) - I-cache misses: +91.06% (131K → 250K) - Variance: +80% (σ=0.45M → σ=0.81M) Root cause: Section-based splitting without explicit hot symbol ordering fragments code locality, destroying natural compiler/LTO layout. ## Build Knob Safety Makefile updated to separate concerns: - `HOT_TEXT_ISOLATION=1` → attributes only (safe, but no perf gain) - `HOT_TEXT_GC_SECTIONS=1` → section splitting (currently NO-GO) Both kept as research boxes (default OFF). ## Verdict Freeze Phase 18 v1: - Do NOT use section-based linking without strong ordering strategy - Keep hot/cold attributes as placeholder (currently unused) - Proceed to Phase 18 v2: BENCH_MINIMAL compile-out Expected impact v2: +10-20% via instruction count reduction - GO threshold: +5% minimum, +8% preferred - Only continue if instructions clearly drop ## Files New: - docs/analysis/PHASE18_HOT_TEXT_ISOLATION_1_AB_TEST_RESULTS.md Modified: - Makefile (build knob safety isolation) - CURRENT_TASK.md (Phase 18 v1 verdict) - docs/analysis/PHASE18_HOT_TEXT_ISOLATION_1_NEXT_INSTRUCTIONS.md ## Lessons 1. Layout optimization is extremely fragile without ordering guarantees 2. I-cache is first-order performance factor (IPC=2.30 is memory-bound) 3. Compiler defaults may be better than manual section splitting 4. Next frontier: instruction count reduction (stats/ENV removal) 🤖 Generated with [Claude Code](https://claude.com/claude-code) Co-Authored-By: Claude Haiku 4.5 <noreply@anthropic.com>
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# 本線タスク(現在)
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# 本線タスク(現在)
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## 更新メモ(2025-12-15 Phase 18 HOT-TEXT-ISOLATION-1)
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### Phase 18 HOT-TEXT-ISOLATION-1: Hot Text Isolation v1 — ❌ NO-GO / FROZEN
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結果: Mixed 10-run mean **-0.87%** 回帰、I-cache misses **+91.06%** 劣化。`-ffunction-sections -Wl,--gc-sections` による細粒度セクション化が I-cache locality を破壊。hot/cold 属性は実装済みだが未適用のため、デメリットのみが発生。
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- A/B 結果: `docs/analysis/PHASE18_HOT_TEXT_ISOLATION_1_AB_TEST_RESULTS.md`
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- 指示書: `docs/analysis/PHASE18_HOT_TEXT_ISOLATION_1_NEXT_INSTRUCTIONS.md`
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- 設計: `docs/analysis/PHASE18_HOT_TEXT_ISOLATION_1_DESIGN.md`
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- 対処: `HOT_TEXT_ISOLATION=0` (default) で rollback
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主要原因:
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- Section-based linking が自然な compiler locality を破壊
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- `--gc-sections` のリンク順序変更で I-cache が断片化
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- Hot/cold 属性が実際には適用されていない(実装の不完全性)
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重要な知見:
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- Phase 17 の結論を再確認: bottleneck は **instruction count** と **memory latency**
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- Code layout 最適化では 2.30 IPC の壁を越えられない
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- 次の一手: instruction count を直接削る Phase 18 v2 (BENCH_MINIMAL) へ
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## 更新メモ(2025-12-14 Phase 6 FRONT-FASTLANE-1)
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## 更新メモ(2025-12-14 Phase 6 FRONT-FASTLANE-1)
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### Phase 6 FRONT-FASTLANE-1: Front FastLane(Layer Collapse)— ✅ GO / 本線昇格
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### Phase 6 FRONT-FASTLANE-1: Front FastLane(Layer Collapse)— ✅ GO / 本線昇格
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**設計**: `docs/analysis/PHASE18_HOT_TEXT_ISOLATION_1_DESIGN.md`
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**設計**: `docs/analysis/PHASE18_HOT_TEXT_ISOLATION_1_DESIGN.md`
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**指示書**: `docs/analysis/PHASE18_HOT_TEXT_ISOLATION_1_NEXT_INSTRUCTIONS.md`
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**指示書**: `docs/analysis/PHASE18_HOT_TEXT_ISOLATION_1_NEXT_INSTRUCTIONS.md`
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**結果(v1)**: `docs/analysis/PHASE18_HOT_TEXT_ISOLATION_1_AB_TEST_RESULTS.md`(❌ NO-GO / I-cache miss 悪化)
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実装ゲート(戻せる):
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実装ゲート(戻せる):
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- Makefile knob: `HOT_TEXT_ISOLATION=0/1`
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- Makefile knob: `HOT_TEXT_ISOLATION=0/1`
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Makefile
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Makefile
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CFLAGS_SHARED += -DHAKMEM_BUILD_DEBUG=1
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CFLAGS_SHARED += -DHAKMEM_BUILD_DEBUG=1
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endif
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endif
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# ------------------------------------------------------------
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# Phase 18: Hot Text Isolation (I-cache locality optimization)
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# ------------------------------------------------------------
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# Enable (safe): make HOT_TEXT_ISOLATION=1 bench_random_mixed_hakmem
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# Default: OFF (research box, requires A/B validation)
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# What it does:
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# - Adds -DHAKMEM_HOT_TEXT_ISOLATION=1 (hot/cold attribute macros only)
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#
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# NOTE (Phase 18 v1 NO-GO):
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# - The section-splitting + --gc-sections experiment caused a large I-cache regression.
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# - Keep it behind a separate opt-in knob (HOT_TEXT_GC_SECTIONS=1) if needed for research.
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HOT_TEXT_ISOLATION ?= 0
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ifeq ($(HOT_TEXT_ISOLATION),1)
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CFLAGS += -DHAKMEM_HOT_TEXT_ISOLATION=1
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CFLAGS_SHARED += -DHAKMEM_HOT_TEXT_ISOLATION=1
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endif
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# Research-only (currently NO-GO): function/data sections + --gc-sections.
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# Enable explicitly only when combined with an ordering strategy.
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HOT_TEXT_GC_SECTIONS ?= 0
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ifeq ($(HOT_TEXT_GC_SECTIONS),1)
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CFLAGS += -ffunction-sections -fdata-sections
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CFLAGS_SHARED += -ffunction-sections -fdata-sections
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LDFLAGS += -Wl,--gc-sections
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endif
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# Default: enable Box Theory refactor for Tiny (Phase 6-1.7)
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# Default: enable Box Theory refactor for Tiny (Phase 6-1.7)
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# This is the best performing option currently (4.19M ops/s)
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# This is the best performing option currently (4.19M ops/s)
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# NOTE: Disabled while testing ULTRA_SIMPLE with SFC integration
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# NOTE: Disabled while testing ULTRA_SIMPLE with SFC integration
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# Phase 18 v1: Hot Text Isolation / Layout Control — A/B Test Results
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**Date**: 2025-12-15
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**Verdict**: ❌ **NO-GO**(I-cache regression)
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---
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## Executive Summary
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Phase 18 v1 attempted a low-risk layout improvement using section splitting + GC:
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- `-ffunction-sections -fdata-sections -Wl,--gc-sections`
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Result was worse than baseline:
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- throughput slightly regressed
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- **I-cache misses nearly doubled**
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- variance increased significantly
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Conclusion: section-based linking **without strong ordering/clustering** is harmful for this codebase/toolchain at present.
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---
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## A/B Results (Mixed)
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| Metric | Baseline | Optimized | Delta |
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|--------|----------|-----------|-------|
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| Throughput | 48.94M ops/s | 48.52M ops/s | **-0.87%** |
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| I-cache misses | 131K | 250K | **+91.06%** |
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| Instructions | 41.29B | 41.32B | +0.09% |
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| Variance (σ) | 0.45M | 0.81M | **+80%** |
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---
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## Root Cause (most likely)
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The section-splitting flags increase fragmentation and can destroy the natural locality produced by:
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- compiler + LTO layout decisions
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- existing hot/cold separation by function boundaries
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Without an explicit “hot symbol ordering” mechanism (link-order file / linker script / PGO call-graph sort), the remaining `.text.*` fragments may become poorly clustered, increasing front-end stalls.
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This matches observations:
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- instructions did not decrease
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- I-cache misses increased dramatically
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- throughput regressed modestly (front-end disruption + variability)
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---
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## Decision
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Freeze Phase 18 v1:
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- Treat `--gc-sections` path as **NO-GO** in this environment unless combined with explicit link ordering.
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Next:
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- Phase 18 v2: **BENCH_MINIMAL compile-out** (reduce instruction footprint directly).
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@ -58,16 +58,17 @@ Rollback: restore include in `core/hakmem.c` and drop new TU.
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### Patch 3 (optional): bench-only section GC
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### Patch 3 (optional): bench-only section GC
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Makefile knob:
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Makefile knob:
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- `HOT_TEXT_ISOLATION=0/1`
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- `HOT_TEXT_GC_SECTIONS=0/1`(research-only)
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When `=1`, add for bench builds:
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When `=1`, add for bench builds:
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- `-DHAKMEM_HOT_TEXT_ISOLATION=1`
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- `-ffunction-sections -fdata-sections`
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- `-ffunction-sections -fdata-sections`
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- `LDFLAGS += -Wl,--gc-sections`
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- `-Wl,--gc-sections`
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Notes:
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Notes:
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- Keep it bench-only first (do not touch shared lib build until proven stable).
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- Keep it bench-only first (do not touch shared lib build until proven stable).
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- If toolchain rejects `--gc-sections` or results are unstable → skip this patch.
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- **Phase 18 v1 outcome**: This exact flag set caused an I-cache regression in this repo/toolchain.
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- Ref: `docs/analysis/PHASE18_HOT_TEXT_ISOLATION_1_AB_TEST_RESULTS.md`
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- Therefore, **Patch 3 is NO-GO for now** unless combined with explicit hot symbol ordering.
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---
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---
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