15 July 2026
- 03:2003:20, 15 July 2026 diff hist −16 DNS Spoofing No edit summary current
- 03:2003:20, 15 July 2026 diff hist +16 DNS Spoofing No edit summary Tag: Visual edit
13 July 2026
- 07:1407:14, 13 July 2026 diff hist −4,664 Hunting CUDA Bugs at Scale with cuFuzz No edit summary current
- 03:5303:53, 13 July 2026 diff hist +212 N 파일:OOPSLA 2026 cufuzz figure 1.png No edit summary current
9 July 2026
- 12:5112:51, 9 July 2026 diff hist −2,032 GPUArmor: A Hardware-Software Co-design for Efficient and Scalable Memory Safety on GPUs No edit summary current
8 July 2026
- 08:4508:45, 8 July 2026 diff hist +184 GPUArmor: A Hardware-Software Co-design for Efficient and Scalable Memory Safety on GPUs No edit summary
- 03:0303:03, 8 July 2026 diff hist −68 GPU Sanitizer No edit summary current Tag: Visual edit
- 02:5702:57, 8 July 2026 diff hist +1,214 N GPU Sanitizer 새 문서: index.php?title=분류:GPU 보안 == 개요 == 본 문서는 여러 GPU Sanitizer들을 다축분석하는 문서이다. == 요약 == {| class="wikitable" |+ ! rowspan="2" | ! rowspan="2" |Detection coverage ! rowspan="2" |Instrumentation ! rowspan="2" |Metadata identity ! colspan="4" |Compiler Optimizations ! colspan="4" |Runtime Optimizations |- !Common !Local !Shared !Global !Common !Local !Shared !Global |- |Compute Sanitizer |GPU UAF/OOB |Binary |Location-based (Redzo... Tag: Visual edit
- 02:4602:46, 8 July 2026 diff hist −1,257 CUSAFE: Capturing Memory Corruption on NVIDIA GPUs No edit summary current
- 02:3802:38, 8 July 2026 diff hist −1,759 CuCatch: A Debugging Tool for Efficiently Catching Memory Safety Violations in CUDA Applications No edit summary current
7 July 2026
- 10:4810:48, 7 July 2026 diff hist −1,227 CuCatch: A Debugging Tool for Efficiently Catching Memory Safety Violations in CUDA Applications No edit summary
2 July 2026
- 07:2907:29, 2 July 2026 diff hist +79 m CUSAFE: Capturing Memory Corruption on NVIDIA GPUs No edit summary
- 07:2507:25, 2 July 2026 diff hist +201 m CUSAFE: Capturing Memory Corruption on NVIDIA GPUs No edit summary
- 07:2207:22, 2 July 2026 diff hist +4 CUSAFE: Capturing Memory Corruption on NVIDIA GPUs No edit summary
- 07:2007:20, 2 July 2026 diff hist −6 CUSAFE: Capturing Memory Corruption on NVIDIA GPUs No edit summary
- 07:2007:20, 2 July 2026 diff hist +950 CUSAFE: Capturing Memory Corruption on NVIDIA GPUs No edit summary
- 04:1704:17, 2 July 2026 diff hist −708 GHost in the Shell: A GPU-to-Host Memory Attack and Its Mitigation No edit summary current
- 03:4903:49, 2 July 2026 diff hist +42 N 파일:IEEE S&P 2026 GHost in the Shell; Figure 7.png No edit summary current
19 June 2026
- 02:0602:06, 19 June 2026 diff hist +44 N Unified Virtual Memory GPU Unified Virtual Memory 문서로 넘겨주기 current Tags: New redirect Visual edit
- 02:0502:05, 19 June 2026 diff hist +51 N TBNp Tree-based Neighboring Prefetcher 문서로 넘겨주기 current Tags: New redirect Visual edit
18 June 2026
- 04:2504:25, 18 June 2026 diff hist +15 N 분류:GPU Unified Virtual Memory 새 문서: 분류: GPU current
- 03:0903:09, 18 June 2026 diff hist +470 N 사용자:Noribot 새 문서: 이 봇은 AI Agent가 글을 작성하기 위해서 사용되는 봇입니다. Generative AI was used for editorial purposes, including grammar correction, wording improvement, and readability refinement. We also used OpenAI Codex as an writing tool. All AI-assisted text and code changes were manually inspected, tested, and revised by the authors (Junho Ahn). However, always, Junho Ahn doesn't guarantee the correctness of the contents. Use as your will. ;;Ə_ə;; current
18 May 2026
- 09:0509:05, 18 May 2026 diff hist +732 N SoftBound: Highly Compatible and Complete Spatial Memory Safety for C 새 문서: 분류: ACM PLDI {{Paper|title=SoftBound: Highly Compatible and Complete Spatial Memory Safety for C|authors=Santosh Nagarakatte Jianzhou Zhao Milo M. K. Martin Steve Zdancewic|conference=Proceedings of the ACM SIGPLAN Conference on Programming Language Design and Implementation (PLDI)|year=2009}} == 개요 == Softbound는 spatial safety bug를 잡기 위한 방식이다. 모든 오브젝트 할당마다 base랑 size를 저장하는 내부 변수를 만들고, 매 load/st... current Tag: Visual edit: Switched
4 May 2026
- 07:1107:11, 4 May 2026 diff hist −94 DMGUARD: Safeguarding Kernels from Physical-Page Use-After-Free Vulnerabilities No edit summary current
29 April 2026
- 11:1911:19, 29 April 2026 diff hist 0 DMGUARD: Safeguarding Kernels from Physical-Page Use-After-Free Vulnerabilities No edit summary
- 11:1811:18, 29 April 2026 diff hist +25,235 DMGUARD: Safeguarding Kernels from Physical-Page Use-After-Free Vulnerabilities No edit summary
28 April 2026
- 12:2912:29, 28 April 2026 diff hist +581 N DMGUARD: Safeguarding Kernels from Physical-Page Use-After-Free Vulnerabilities 새 문서: 분류:USENIX Security {{Paper|title=DMGUARD: Safeguarding Kernels from Physical-Page Use-After-Free Vulnerabilities|author=Juhee Kim, Jaeyoung Chung, Dae R. Jeong, Byoungyoung Lee|year=2026|conference=USENIX Security}} == 개요 == Physical-page use after free라는 Page table entry에서 일어나는 Use after free를 새로운 Vulnerability도메인으로 정의하고, 이를 막을 수 있는 Reference counting방식의 기법을 제시하였다. == Motivation & Impo... Tag: Visual edit: Switched
27 April 2026
- 11:4811:48, 27 April 2026 diff hist −16 OS-SANITIZER: System-wide Latent Defect Inference in Linux Applications No edit summary current
- 11:4811:48, 27 April 2026 diff hist +448 OS-SANITIZER: System-wide Latent Defect Inference in Linux Applications No edit summary Tag: Visual edit: Switched
- 11:4711:47, 27 April 2026 diff hist +11,147 N OS-SANITIZER: System-wide Latent Defect Inference in Linux Applications 새 문서: 분류: USENIX Security == 개요 == eBPF를 활용하여 커널 및 애플리케이션의 런타임 동작을 관찰하고, 해당 동작이 실제 failure로 이어지기 전에 잠재적인 defect가 될 수 있는지를 추론하는 Framework를 제안하였다. 즉, 기존 sanitizer가 주로 실제 fault나 failure가 발생한 이후 이를 탐지하는 데 초점을 맞추었다면, 본 논문은 정상적으로 실행되는 것처럼 보이는 런타임 동작...
- 11:3611:36, 27 April 2026 diff hist +42 N 파일:USENIX Security 2026 OS-SANITIZER Figure 2.png No edit summary current
- 06:0906:09, 27 April 2026 diff hist +98 캐논 EOS 620 No edit summary current
- 06:0806:08, 27 April 2026 diff hist +49 N 파일:사진 26 04 26 2 캐논 EOS 620 컨트미어 100.png No edit summary current
- 05:5405:54, 27 April 2026 diff hist +40 N 파일:사진 26 04 26 EOS 620 켄트미아 100.png No edit summary current
- 03:3303:33, 27 April 2026 diff hist +3,290 N 캐논 EOS 620 새 문서: 분류:필름 카메라 {{camera | name = Canon EOS 620 | image = Canon_EOS_620.jpg | manufacturer = Canon | released = 1987 | lens_mount = Canon EF mount | sensor = N/A (Film Camera) | film_format = 35mm | shutter = Focal-plane shutter, electronic | metering = 6-zone evaluative metering / partial metering | focus = TTL phase-detection autofocus | exposure = Program AE, Aperture-priority AE, Shutter-priority AE, Manual, Depth-of-field AE | viewfinder = Optical, fixed eye-le...
- 03:3203:32, 27 April 2026 diff hist −426 야시카 FX-3 Ahn9807 (토론)의 7102 판 편집을 되돌림 current Tag: Undo
- 03:3103:31, 27 April 2026 diff hist +426 야시카 FX-3 No edit summary Tags: Reverted Visual edit: Switched
15 April 2026
- 06:5706:57, 15 April 2026 diff hist −32 논문 쓰는 법 No edit summary current
- 06:5606:56, 15 April 2026 diff hist +3,998 N 논문 쓰는 법 새 문서: index.php?title=분류:논문 작성법 index.php?title=분류:아티클 논문을 어떻게 하면 잘 쓸 수 있을까? 이 고민은 대학원생이라면 누구나 하는 문제일 것이다. 26년 4월에 논문 작성과 Proposal을 작성할 일이 있어서 열심히 노력해봤지만, 안타깝게도 좋은 글을 쓸 수가 없었다. 교수님께서 다시 작성해주신 글과 비교하니 부족한 부분이 너무나도 많이 보였다. 이처럼 아... Tag: Visual edit
14 April 2026
- 04:2604:26, 14 April 2026 diff hist +40 대문 No edit summary current
- 04:2404:24, 14 April 2026 diff hist −96 대문 No edit summary Tag: Visual edit: Switched
- 04:2304:23, 14 April 2026 diff hist −10 대문 No edit summary
- 04:0104:01, 14 April 2026 diff hist −204 대문 No edit summary
- 03:5603:56, 14 April 2026 diff hist 0 틀:대문/shared/styles.css No edit summary current
- 03:4103:41, 14 April 2026 diff hist +478 대문 No edit summary
25 March 2026
- 08:2008:20, 25 March 2026 diff hist +8,978 N Data Flow Analysis 새 문서: 분류:프로그램 분석 == 개요 == '''Data Flow Analysis'''는 프로그램의 각 지점(program point)에서 변수나 메모리 상태에 대한 정보를 계산하는 정적 분석 기법이다. 이 분석은 프로그램을 실행하지 않고도, 가능한 모든 실행 경로를 고려하여 변수의 값, 상태, 혹은 속성(property)을 추론하는 것을 목표로 한다. 특히, Data Flow Analysis는 프로그램을 '''Control Flow Graph (CFG)'''로 변... current
- 05:5905:59, 25 March 2026 diff hist +54 N 파일:Data Flow Analysis Lattice.png No edit summary current
23 March 2026
- 07:1107:11, 23 March 2026 diff hist +13,272 N AddressSanitizer Optimization 새 문서: 분류:AddressSanitizer 분류:Program Analysis 분류:Optimization == 개요 == 이 문서는 AddressSanitizer(ASan)의 실행 오버헤드를 줄이기 위한 다양한 최적화 기법들을 정리한 문서이다. ASan은 heap, stack, global object에 대한 out-of-bounds access와 heap use-after-free를 효과적으로 검출하지만, 각 memory access마다 shadow memory를 확인하는 check를 삽입하므로 실행 시간 오버헤드가 크다. == Remo... current
19 March 2026
- 02:2302:23, 19 March 2026 diff hist −5 Principles and Methodologies for Serial Performance Optimization No edit summary current
- 02:2202:22, 19 March 2026 diff hist +6,336 N Principles and Methodologies for Serial Performance Optimization 새 문서: 분류:USENIX OSDI {{Paper|title=Principles and Methodologies for Serial Performance Optimization|author=Sujin Park, Mingyu Guan, Xiang Cheng, Taesoo Kim Georgia Institute of Technology|year=2025|conference=USENIX OSDI 19}} == 개요 == 이 논문은 시스템 성능 최적화에 초점을 맞추고, 이를 체계적으로 최적화하기 위한 framework를 제안한다. 기존에는 성능 최적화가 경험과 직관에 의존했으나, 본 논문은 이를 구조화된... Tag: Visual edit: Switched