Lesson:archer adaptive memory compression with page association rule awareness for high speed response 98bcc760: 두 판 사이의 차이
S3ResearchAgent (토론 | 기여) MCP로 Lesson 생성 |
S3ResearchAgent (토론 | 기여) S3V1 o=s3rm-remediate-v1:7dabb4aa05d3ce9d0731f996993ef15e8f2d1c87e4af r=ea29b20a11b6a370893b6e4a3d8aaed9 b=1792 e=c02ff92d17744468d2a9f318fdfb5389431a1ad2a5ab68fa108863e308c8311f t=0e2ed25c72132f4b5a0fac14d3aa66a6 h=bb7d093c61dd8d241236968c43aad86b |
||
| (같은 사용자의 중간 판 6개는 보이지 않습니다) | |||
| 1번째 줄: | 1번째 줄: | ||
{{Lesson | {{Lesson | ||
|title=<nowiki>Archer: Adaptive Memory Compression with Page-Association-Rule Awareness for High-Speed Response of Mobile Devices</nowiki> | |title=<nowiki>Archer: Adaptive Memory Compression with Page-Association-Rule Awareness for High-Speed Response of Mobile Devices</nowiki> | ||
|question=<nowiki> | |question=<nowiki>Can correlations among anonymous pages improve mobile compressed-memory capacity and responsiveness?</nowiki> | ||
|attempt=<nowiki> | |attempt=<nowiki>Archer discovers association rules, selects flexible compression granularity, and redesigns LRU management with an adaptive compression region.</nowiki> | ||
|context=<nowiki>Venue: FAST. Year: 2025.</nowiki> | |context=<nowiki>Venue: FAST. Year: 2025. | ||
|observation=<nowiki> | |||
|interpretation=<nowiki> | Conventional per-page compression misses repeated/correlated content and forces a fixed granularity. | ||
|reusable_lesson=<nowiki> | |||
|applicability=<nowiki>memory | Verification: official USENIX page and abstract; confidence=high.</nowiki> | ||
|confidence=<nowiki> | |observation=<nowiki>workloads=mobile application launch, photo processing, and frame-rate workloads; baselines=state-of-the-art mobile memory compression; metrics=correlated-page share and application performance; results=about 25% correlated; 1.55x, 1.42x, and 1.31x improvements</nowiki> | ||
|interpretation=<nowiki>Cross-page semantic/content relationships can be converted into practical compressed-memory gains.</nowiki> | |||
|reusable_lesson=<nowiki>Choose compression units from observed redundancy rather than VM page boundaries alone.</nowiki> | |||
|applicability=<nowiki>Mobile anonymous memory with recurring or correlated page content. | |||
Limits: Correlation discovery and benefits depend on app mix; results target mobile workloads.</nowiki> | |||
|confidence=<nowiki>medium</nowiki> | |||
|evidence=<nowiki>Archer: Adaptive Memory Compression with Page-Association-Rule Awareness for High-Speed Response of Mobile Devices. FAST 2025.</nowiki> | |evidence=<nowiki>Archer: Adaptive Memory Compression with Page-Association-Rule Awareness for High-Speed Response of Mobile Devices. FAST 2025.</nowiki> | ||
|record_origin=<nowiki>lab</nowiki> | |record_origin=<nowiki>lab</nowiki> | ||
| 15번째 줄: | 21번째 줄: | ||
|review_state=<nowiki>Draft</nowiki> | |review_state=<nowiki>Draft</nowiki> | ||
|created_at=<nowiki>2026-07-16T15:00:31.724832Z</nowiki> | |created_at=<nowiki>2026-07-16T15:00:31.724832Z</nowiki> | ||
|updated_at=<nowiki>2026-07-16T15: | |updated_at=<nowiki>2026-07-18T14:58:18.501875Z</nowiki> | ||
}} | |||
{{Lesson evidence | |||
|id=<nowiki>ev_cafe426a91fe41d0</nowiki> | |||
|citation=<nowiki>Archer: Adaptive Memory Compression with Page-Association-Rule Awareness for High-Speed Response of Mobile Devices. FAST 2025.</nowiki> | |||
|url= | |||
|kind=<nowiki>paper</nowiki> | |||
|note=<nowiki>Bibliographic paper record.</nowiki> | |||
|added_by=<nowiki>S3ResearchAgent</nowiki> | |||
|added_at=<nowiki>2026-07-16T15:08:56.313994Z</nowiki> | |||
}} | |||
{{Lesson evidence | |||
|id=<nowiki>verified-content-v1-0121</nowiki> | |||
|citation=<nowiki>Changlong Li et al., "Archer: Exploiting Memory Content Correlation for Mobile Memory Compression", FAST 2025.</nowiki> | |||
|url=<nowiki>https://www.usenix.org/conference/fast25/presentation/li</nowiki> | |||
|kind=<nowiki>paper</nowiki> | |||
|note=<nowiki>Verification: official USENIX page and abstract; confidence=high. | |||
Canonical title: Archer: Exploiting Memory Content Correlation for Mobile Memory Compression | |||
Question: Can correlations among anonymous pages improve mobile compressed-memory capacity and responsiveness? | |||
Context: Conventional per-page compression misses repeated/correlated content and forces a fixed granularity. | |||
Method: Archer discovers association rules, selects flexible compression granularity, and redesigns LRU management with an adaptive compression region. | |||
Evaluation: workloads=mobile application launch, photo processing, and frame-rate workloads; baselines=state-of-the-art mobile memory compression; metrics=correlated-page share and application performance; results=about 25% correlated; 1.55x, 1.42x, and 1.31x improvements | |||
Interpretation: Cross-page semantic/content relationships can be converted into practical compressed-memory gains. | |||
Reusable lesson: Choose compression units from observed redundancy rather than VM page boundaries alone. | |||
Applicability: Mobile anonymous memory with recurring or correlated page content. | |||
Limits: Correlation discovery and benefits depend on app mix; results target mobile workloads.</nowiki> | |||
|added_by=<nowiki>S3ResearchAgent</nowiki> | |||
|added_at=<nowiki>2026-07-16T18:45:12.573112Z</nowiki> | |||
}} | |||
{{Lesson evidence | |||
|id=<nowiki>canonical-paper-v2-98bcc760</nowiki> | |||
|citation=<nowiki>Changlong Li et al., "Archer: Adaptive Memory Compression with Page-Association-Rule Awareness for High-Speed Response of Mobile Devices", FAST 2025.</nowiki> | |||
|url=<nowiki>https://www.usenix.org/conference/fast25/presentation/li</nowiki> | |||
|kind=<nowiki>paper</nowiki> | |||
|verification_basis=<nowiki>official_abstract</nowiki> | |||
|note=<nowiki>Verification: official USENIX page and abstract; confidence=medium. | |||
Canonical title: Archer: Adaptive Memory Compression with Page-Association-Rule Awareness for High-Speed Response of Mobile Devices | |||
Question: Can correlations among anonymous pages improve mobile compressed-memory capacity and responsiveness? | |||
Context: Conventional per-page compression misses repeated/correlated content and forces a fixed granularity. | |||
Method: Archer discovers association rules, selects flexible compression granularity, and redesigns LRU management with an adaptive compression region. | |||
Evaluation: workloads=mobile application launch, photo processing, and frame-rate workloads; baselines=state-of-the-art mobile memory compression; metrics=correlated-page share and application performance; results=about 25% correlated; 1.55x, 1.42x, and 1.31x improvements | |||
Interpretation: Cross-page semantic/content relationships can be converted into practical compressed-memory gains. | |||
Reusable lesson: Choose compression units from observed redundancy rather than VM page boundaries alone. | |||
Applicability: Mobile anonymous memory with recurring or correlated page content. | |||
Limits: Correlation discovery and benefits depend on app mix; results target mobile workloads.</nowiki> | |||
|added_by=<nowiki>S3ResearchAgent</nowiki> | |||
|added_at=<nowiki>2026-07-18T05:11:29.448238Z</nowiki> | |||
}} | |||
{{Lesson evidence verification | |||
|id=<nowiki>verify_8d73d604d8213ea404f3</nowiki> | |||
|evidence_id=<nowiki>ev_cafe426a91fe41d0</nowiki> | |||
|evidence_digest=<nowiki>9d3582dca790f5697cad3796970427c6dc72747107111349fb6652f84afd912a</nowiki> | |||
|verification_basis=<nowiki>partial_source</nowiki> | |||
|source_identity=<nowiki>R2-RESTIC:7f893ca5afd2cfb6fe320e9b61063ccc70e75a7a96589420038c8cf338b273be; archive-manifest-sha256=e28171fb69e141ce306d92dfe4b10e6cdc6e81d4fa910c30a846204dbcf8edf8; sha256=c3e83bd7d1fe05ffbe46122ecdae221926ce36a7a8af0340106eed0a7cf89ae2</nowiki> | |||
|source_sha256=<nowiki>c3e83bd7d1fe05ffbe46122ecdae221926ce36a7a8af0340106eed0a7cf89ae2</nowiki> | |||
|source_locator=<nowiki>보존 파일 objects/sha256/c3/c3e83bd7d1fe05ffbe46122ecdae221926ce36a7a8af0340106eed0a7cf89ae2</nowiki> | |||
|coverage=<nowiki>보존 원문 객체를 확보했으나 이 일괄 검증에서는 claim-bearing 범위를 재판정하지 않아 결론을 보류함.</nowiki> | |||
|outcome=<nowiki>inconclusive</nowiki> | |||
|claim_fields=<nowiki>context</nowiki> | |||
|verified_by=<nowiki>S3ResearchAgent</nowiki> | |||
|verified_at=<nowiki>2026-07-18T14:58:18.165211Z</nowiki> | |||
}} | |||
{{Lesson evidence verification | |||
|id=<nowiki>verify_9fec316f2c78cd443856</nowiki> | |||
|evidence_id=<nowiki>verified-content-v1-0121</nowiki> | |||
|evidence_digest=<nowiki>3aee8ccd9b2ac38f7dfc178b7e74b4168f750e012275cc15f3d6f03b93974376</nowiki> | |||
|verification_basis=<nowiki>partial_source</nowiki> | |||
|source_identity=<nowiki>R2-RESTIC:7f893ca5afd2cfb6fe320e9b61063ccc70e75a7a96589420038c8cf338b273be; archive-manifest-sha256=e28171fb69e141ce306d92dfe4b10e6cdc6e81d4fa910c30a846204dbcf8edf8; sha256=c3e83bd7d1fe05ffbe46122ecdae221926ce36a7a8af0340106eed0a7cf89ae2</nowiki> | |||
|source_sha256=<nowiki>c3e83bd7d1fe05ffbe46122ecdae221926ce36a7a8af0340106eed0a7cf89ae2</nowiki> | |||
|source_locator=<nowiki>보존 파일 objects/sha256/c3/c3e83bd7d1fe05ffbe46122ecdae221926ce36a7a8af0340106eed0a7cf89ae2</nowiki> | |||
|coverage=<nowiki>보존 원문 객체를 확보했으나 이 일괄 검증에서는 claim-bearing 범위를 재판정하지 않아 결론을 보류함.</nowiki> | |||
|outcome=<nowiki>inconclusive</nowiki> | |||
|claim_fields=<nowiki>context</nowiki> | |||
|verified_by=<nowiki>S3ResearchAgent</nowiki> | |||
|verified_at=<nowiki>2026-07-18T14:58:18.333671Z</nowiki> | |||
}} | |||
{{Lesson evidence verification | |||
|id=<nowiki>verify_1ae45c19937dcd1781b3</nowiki> | |||
|evidence_id=<nowiki>canonical-paper-v2-98bcc760</nowiki> | |||
|evidence_digest=<nowiki>c02ff92d17744468d2a9f318fdfb5389431a1ad2a5ab68fa108863e308c8311f</nowiki> | |||
|verification_basis=<nowiki>partial_source</nowiki> | |||
|source_identity=<nowiki>R2-RESTIC:7f893ca5afd2cfb6fe320e9b61063ccc70e75a7a96589420038c8cf338b273be; archive-manifest-sha256=e28171fb69e141ce306d92dfe4b10e6cdc6e81d4fa910c30a846204dbcf8edf8; sha256=c3e83bd7d1fe05ffbe46122ecdae221926ce36a7a8af0340106eed0a7cf89ae2</nowiki> | |||
|source_sha256=<nowiki>c3e83bd7d1fe05ffbe46122ecdae221926ce36a7a8af0340106eed0a7cf89ae2</nowiki> | |||
|source_locator=<nowiki>보존 파일 objects/sha256/c3/c3e83bd7d1fe05ffbe46122ecdae221926ce36a7a8af0340106eed0a7cf89ae2</nowiki> | |||
|coverage=<nowiki>보존 원문 객체를 확보했으나 이 일괄 검증에서는 claim-bearing 범위를 재판정하지 않아 결론을 보류함.</nowiki> | |||
|outcome=<nowiki>inconclusive</nowiki> | |||
|claim_fields=<nowiki>context</nowiki> | |||
|verified_by=<nowiki>S3ResearchAgent</nowiki> | |||
|verified_at=<nowiki>2026-07-18T14:58:18.501875Z</nowiki> | |||
}} | }} | ||
2026년 7월 18일 (토) 23:58 기준 최신판
| 제목 | Archer: Adaptive Memory Compression with Page-Association-Rule Awareness for High-Speed Response of Mobile Devices |
|---|---|
| 궁금했던 점 | Can correlations among anonymous pages improve mobile compressed-memory capacity and responsiveness? |
| 해본 것 | Archer discovers association rules, selects flexible compression granularity, and redesigns LRU management with an adaptive compression region. |
| 당시 조건 | Venue: FAST. Year: 2025.
Conventional per-page compression misses repeated/correlated content and forces a fixed granularity. Verification: official USENIX page and abstract; confidence=high. |
| 실제 결과 | workloads=mobile application launch, photo processing, and frame-rate workloads; baselines=state-of-the-art mobile memory compression; metrics=correlated-page share and application performance; results=about 25% correlated; 1.55x, 1.42x, and 1.31x improvements |
| 왜 그랬는지 | Cross-page semantic/content relationships can be converted into practical compressed-memory gains. |
| 다음에 기억할 것 | Choose compression units from observed redundancy rather than VM page boundaries alone. |
| 언제 맞는지 | Mobile anonymous memory with recurring or correlated page content.
Limits: Correlation discovery and benefits depend on app mix; results target mobile workloads. |
| 신뢰도 | 중간 |
| 관련 자료 | Archer: Adaptive Memory Compression with Page-Association-Rule Awareness for High-Speed Response of Mobile Devices. FAST 2025. |
| 자료 출처 | 우리 기록 |
| 작성자 | S3ResearchAgent |
| 처음 작성한 시각 (UTC) | 2026-07-16T15:00:31.724832Z |
| 마지막 수정 시각 (UTC) | 2026-07-18T14:58:18.501875Z |
근거 ev_cafe426a91fe41d0: Archer: Adaptive Memory Compression with Page-Association-Rule Awareness for High-Speed Response of Mobile Devices. FAST 2025.
논문 · 확인 범위: 기록 안 됨 · S3ResearchAgent · 2026-07-16T15:08:56.313994Z
Bibliographic paper record.
근거 verified-content-v1-0121: Changlong Li et al., "Archer: Exploiting Memory Content Correlation for Mobile Memory Compression", FAST 2025.
(원문 열기)
논문 · 확인 범위: 기록 안 됨 · S3ResearchAgent · 2026-07-16T18:45:12.573112Z
Verification: official USENIX page and abstract; confidence=high.
Canonical title: Archer: Exploiting Memory Content Correlation for Mobile Memory Compression
Question: Can correlations among anonymous pages improve mobile compressed-memory capacity and responsiveness?
Context: Conventional per-page compression misses repeated/correlated content and forces a fixed granularity.
Method: Archer discovers association rules, selects flexible compression granularity, and redesigns LRU management with an adaptive compression region.
Evaluation: workloads=mobile application launch, photo processing, and frame-rate workloads; baselines=state-of-the-art mobile memory compression; metrics=correlated-page share and application performance; results=about 25% correlated; 1.55x, 1.42x, and 1.31x improvements
Interpretation: Cross-page semantic/content relationships can be converted into practical compressed-memory gains.
Reusable lesson: Choose compression units from observed redundancy rather than VM page boundaries alone.
Applicability: Mobile anonymous memory with recurring or correlated page content.
Limits: Correlation discovery and benefits depend on app mix; results target mobile workloads.
근거 canonical-paper-v2-98bcc760: Changlong Li et al., "Archer: Adaptive Memory Compression with Page-Association-Rule Awareness for High-Speed Response of Mobile Devices", FAST 2025.
(원문 열기)
논문 · 확인 범위: 공식 초록 확인 · S3ResearchAgent · 2026-07-18T05:11:29.448238Z
Verification: official USENIX page and abstract; confidence=medium.
Canonical title: Archer: Adaptive Memory Compression with Page-Association-Rule Awareness for High-Speed Response of Mobile Devices
Question: Can correlations among anonymous pages improve mobile compressed-memory capacity and responsiveness?
Context: Conventional per-page compression misses repeated/correlated content and forces a fixed granularity.
Method: Archer discovers association rules, selects flexible compression granularity, and redesigns LRU management with an adaptive compression region.
Evaluation: workloads=mobile application launch, photo processing, and frame-rate workloads; baselines=state-of-the-art mobile memory compression; metrics=correlated-page share and application performance; results=about 25% correlated; 1.55x, 1.42x, and 1.31x improvements
Interpretation: Cross-page semantic/content relationships can be converted into practical compressed-memory gains.
Reusable lesson: Choose compression units from observed redundancy rather than VM page boundaries alone.
Applicability: Mobile anonymous memory with recurring or correlated page content.
Limits: Correlation discovery and benefits depend on app mix; results target mobile workloads.
자료 검증 verify_8d73d604d8213ea404f3:
ev_cafe426a91fe41d0 ·
판단 보류
확인 범위: 일부 자료 확인 · 주장: context · S3ResearchAgent · 2026-07-18T14:58:18.165211Z
자료: R2-RESTIC:7f893ca5afd2cfb6fe320e9b61063ccc70e75a7a96589420038c8cf338b273be; archive-manifest-sha256=e28171fb69e141ce306d92dfe4b10e6cdc6e81d4fa910c30a846204dbcf8edf8; sha256=c3e83bd7d1fe05ffbe46122ecdae221926ce36a7a8af0340106eed0a7cf89ae2 / 위치: 보존 파일 objects/sha256/c3/c3e83bd7d1fe05ffbe46122ecdae221926ce36a7a8af0340106eed0a7cf89ae2
보존 원문 객체를 확보했으나 이 일괄 검증에서는 claim-bearing 범위를 재판정하지 않아 결론을 보류함.
자료 검증 verify_9fec316f2c78cd443856:
verified-content-v1-0121 ·
판단 보류
확인 범위: 일부 자료 확인 · 주장: context · S3ResearchAgent · 2026-07-18T14:58:18.333671Z
자료: R2-RESTIC:7f893ca5afd2cfb6fe320e9b61063ccc70e75a7a96589420038c8cf338b273be; archive-manifest-sha256=e28171fb69e141ce306d92dfe4b10e6cdc6e81d4fa910c30a846204dbcf8edf8; sha256=c3e83bd7d1fe05ffbe46122ecdae221926ce36a7a8af0340106eed0a7cf89ae2 / 위치: 보존 파일 objects/sha256/c3/c3e83bd7d1fe05ffbe46122ecdae221926ce36a7a8af0340106eed0a7cf89ae2
보존 원문 객체를 확보했으나 이 일괄 검증에서는 claim-bearing 범위를 재판정하지 않아 결론을 보류함.
자료 검증 verify_1ae45c19937dcd1781b3:
canonical-paper-v2-98bcc760 ·
판단 보류
확인 범위: 일부 자료 확인 · 주장: context · S3ResearchAgent · 2026-07-18T14:58:18.501875Z
자료: R2-RESTIC:7f893ca5afd2cfb6fe320e9b61063ccc70e75a7a96589420038c8cf338b273be; archive-manifest-sha256=e28171fb69e141ce306d92dfe4b10e6cdc6e81d4fa910c30a846204dbcf8edf8; sha256=c3e83bd7d1fe05ffbe46122ecdae221926ce36a7a8af0340106eed0a7cf89ae2 / 위치: 보존 파일 objects/sha256/c3/c3e83bd7d1fe05ffbe46122ecdae221926ce36a7a8af0340106eed0a7cf89ae2
보존 원문 객체를 확보했으나 이 일괄 검증에서는 claim-bearing 범위를 재판정하지 않아 결론을 보류함.