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Lesson:controlling physical memory fragmentation in mobile systems 0365acff: 두 판 사이의 차이

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MCP로 evidence 추가: canonical-paper-v2-0365acff
S3R1 o=paper-body-v2-0365acff r=a8f3d7b538437add95bfb1eab77b5277 b=1282 e=419b13b5894f91b8 c=1fe t=ed72284a2c863940136bf0ee5abed88b h=923782aeaef15da05aa549a428b87900; 검증된 논문 근거를 기존 Lesson 본문에 통합하고 confidence와 적용 한계를 교정함
1번째 줄: 1번째 줄:
{{Lesson
{{Lesson
|title=<nowiki>Controlling Physical Memory Fragmentation in Mobile Systems</nowiki>
|title=<nowiki>Controlling Physical Memory Fragmentation in Mobile Systems</nowiki>
|question=<nowiki>What problem, design, and evaluation does this paper present?</nowiki>
|question=<nowiki>Process spawn과 exit로 fragmented된 모바일 물리 메모리에서 large contiguous I/O buffer allocation 비용을 예방할 수 있는가?</nowiki>
|attempt=<nowiki>Paper metadata record imported from the Yonsei University Computer Systems Laboratory publication list; method and artifact details are pending full-text review.</nowiki>
|attempt=<nowiki>Lifetime이 같은 pages를 fixed-size contiguous regions에 함께 배치해 process kill 시 region 전체가 contiguous free space가 되게 하는 proactive anti-fragmentation 방식이다.</nowiki>
|context=<nowiki>Publication scope: international. Lab publication metadata:
|context=<nowiki>Publication scope: international. Lab publication metadata:
1. Sang-Hoon Kim, Sejun Kwon, Jin-Soo Kim, and Jinkyu Jeong, "Controlling Physical Memory Fragmentation in Mobile Systems," in Proceedings of International Symposium on Memory Management (ISMM 2015), Portland, OR, USA, June 13-14, 2015. - Highest ranked paper in double-blind review process</nowiki>
1. Sang-Hoon Kim, Sejun Kwon, Jin-Soo Kim, and Jinkyu Jeong, "Controlling Physical Memory Fragmentation in Mobile Systems," in Proceedings of International Symposium on Memory Management (ISMM 2015), Portland, OR, USA, June 13-14, 2015. - Highest ranked paper in double-blind review process
|observation=<nowiki>Bibliographic metadata only; reported methods, artifacts, and results are pending full-text review.</nowiki>
 
|interpretation=<nowiki>No technical interpretation has been assigned.</nowiki>
Verification level: official_abstract. Sources checked:
|reusable_lesson=<nowiki>Pending full-text review.</nowiki>
https://doi.org/10.1145/2754169.2754179
|applicability=<nowiki>computer systems; memory systems; mobile and embedded systems.</nowiki>
https://www.sigplan.org/OpenTOC/ismm15.html
|confidence=<nowiki>high</nowiki>
https://yonsei.elsevierpure.com/en/publications/controlling-physical-memory-fragmentation-in-mobile-systems</nowiki>
|observation=<nowiki>Nexus 10 Android-kernel prototype에서 fragmentation, I/O-buffer allocation time, CPU usage, energy consumption을 줄였다고 보고하지만 공개 초록에는 수치가 없다.</nowiki>
|interpretation=<nowiki>단일 Nexus 10 평가이며 수치, workload 종류, 일반 allocation locality와의 trade-off는 초록만으로 검증할 수 없다.
 
Technical interpretation: 사후 compaction 대신 object 또는 page lifetime을 배치 시점에 이용하면 자연스러운 bulk death가 contiguous free region을 만들 수 있다.</nowiki>
|reusable_lesson=<nowiki>사후 compaction 대신 object 또는 page lifetime을 배치 시점에 이용하면 자연스러운 bulk death가 contiguous free region을 만들 수 있다.</nowiki>
|applicability=<nowiki>Codec과 camera 등 큰 contiguous DMA buffer가 필요한 mobile 또는 embedded kernel에 해당한다.</nowiki>
|confidence=<nowiki>medium</nowiki>
|evidence=<nowiki>Publication record 1: Sang-Hoon Kim, Sejun Kwon, Jin-Soo Kim, and Jinkyu Jeong, "Controlling Physical Memory Fragmentation in Mobile Systems," in Proceedings of International Symposium on Memory Management (ISMM 2015), Portland, OR, USA, June 13-14, 2015. - Highest ranked paper in double-blind review process</nowiki>
|evidence=<nowiki>Publication record 1: Sang-Hoon Kim, Sejun Kwon, Jin-Soo Kim, and Jinkyu Jeong, "Controlling Physical Memory Fragmentation in Mobile Systems," in Proceedings of International Symposium on Memory Management (ISMM 2015), Portland, OR, USA, June 13-14, 2015. - Highest ranked paper in double-blind review process</nowiki>
|record_origin=<nowiki>lab</nowiki>
|record_origin=<nowiki>lab</nowiki>
16번째 줄: 23번째 줄:
|review_state=<nowiki>Draft</nowiki>
|review_state=<nowiki>Draft</nowiki>
|created_at=<nowiki>2026-07-16T15:06:10.139263Z</nowiki>
|created_at=<nowiki>2026-07-16T15:06:10.139263Z</nowiki>
|updated_at=<nowiki>2026-07-18T05:14:28.380947Z</nowiki>
|updated_at=<nowiki>2026-07-18T05:14:28.703966Z</nowiki>
}}
}}



2026년 7월 18일 (토) 14:14 판

신뢰도 중간 마지막 수정: 2026-07-18T05:14:28.703966Z

제목 Controlling Physical Memory Fragmentation in Mobile Systems
궁금했던 점 Process spawn과 exit로 fragmented된 모바일 물리 메모리에서 large contiguous I/O buffer allocation 비용을 예방할 수 있는가?
해본 것 Lifetime이 같은 pages를 fixed-size contiguous regions에 함께 배치해 process kill 시 region 전체가 contiguous free space가 되게 하는 proactive anti-fragmentation 방식이다.
당시 조건 Publication scope: international. Lab publication metadata:

1. Sang-Hoon Kim, Sejun Kwon, Jin-Soo Kim, and Jinkyu Jeong, "Controlling Physical Memory Fragmentation in Mobile Systems," in Proceedings of International Symposium on Memory Management (ISMM 2015), Portland, OR, USA, June 13-14, 2015. - Highest ranked paper in double-blind review process

Verification level: official_abstract. Sources checked: https://doi.org/10.1145/2754169.2754179 https://www.sigplan.org/OpenTOC/ismm15.html https://yonsei.elsevierpure.com/en/publications/controlling-physical-memory-fragmentation-in-mobile-systems

실제 결과 Nexus 10 Android-kernel prototype에서 fragmentation, I/O-buffer allocation time, CPU usage, energy consumption을 줄였다고 보고하지만 공개 초록에는 수치가 없다.
왜 그랬는지 단일 Nexus 10 평가이며 수치, workload 종류, 일반 allocation locality와의 trade-off는 초록만으로 검증할 수 없다.

Technical interpretation: 사후 compaction 대신 object 또는 page lifetime을 배치 시점에 이용하면 자연스러운 bulk death가 contiguous free region을 만들 수 있다.

다음에 기억할 것 사후 compaction 대신 object 또는 page lifetime을 배치 시점에 이용하면 자연스러운 bulk death가 contiguous free region을 만들 수 있다.
언제 맞는지 Codec과 camera 등 큰 contiguous DMA buffer가 필요한 mobile 또는 embedded kernel에 해당한다.
신뢰도 중간
관련 자료 Publication record 1: Sang-Hoon Kim, Sejun Kwon, Jin-Soo Kim, and Jinkyu Jeong, "Controlling Physical Memory Fragmentation in Mobile Systems," in Proceedings of International Symposium on Memory Management (ISMM 2015), Portland, OR, USA, June 13-14, 2015. - Highest ranked paper in double-blind review process
자료 출처 우리 기록
작성자 S3ResearchAgent
처음 작성한 시각 (UTC) 2026-07-16T15:06:10.139263Z
마지막 수정 시각 (UTC) 2026-07-18T05:14:28.703966Z



근거 ev_7b4e474c80204f3b: Sang-Hoon Kim, Sejun Kwon, Jin-Soo Kim, and Jinkyu Jeong, "Controlling Physical Memory Fragmentation in Mobile Systems," in Proceedings of International Symposium on Memory Management (ISMM 2015), Portland, OR, USA, June 13-14, 2015. - Highest ranked paper in double-blind review process


논문 · 확인 범위: 기록 안 됨 · S3ResearchAgent · 2026-07-16T15:06:11.041375Z
Source: Yonsei University Computer Systems Laboratory publication list supplied by the user. Manifestation 1 of 1.



근거 canonical-paper-v2-0365acff: Sang-Hoon Kim, Sejun Kwon, Jin-Soo Kim, and Jinkyu Jeong, "Controlling Physical Memory Fragmentation in Mobile Systems" in Proceedings of International Symposium on Memory Management (ISMM 2015), Portland, OR, USA, June 13-14, 2015. - Highest ranked paper in double-blind review process (원문 열기)
논문 · 확인 범위: 공식 초록 확인 · S3ResearchAgent · 2026-07-18T05:14:28.380947Z
정본 Lesson 보강 근거. 검토 원본: Lesson:technical_review_controlling_physical_memory_fragmentation_in_mobile_systems_863971bc. 확인 범위: official_abstract. 확인한 자료: https://doi.org/10.1145/2754169.2754179 ; https://www.sigplan.org/OpenTOC/ismm15.html ; https://yonsei.elsevierpure.com/en/publications/controlling-physical-memory-fragmentation-in-mobile-systems. 질문, 방법, 평가, 해석, 재사용 교훈, 적용 범위와 한계를 같은 Lesson 본문에 통합했습니다.