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Run a bounded kata roll over the project's bring queue — start a session with an explicit target (reps or minutes), surface and stage exactly one bring per tick, log the outcome only on the human's word, then advance. Use when the user says "start a roll", "roll for N reps", "do a 25-minute roll", "tick", "next rep", "resolve this tick", "skip this tick", or "pause/resume/end the roll".
Set up the kata roll in a project that already runs (or is starting) the bring loop — confirm bring/ exists, explain where the roll's own ledger lives, walk through the opt-in timer, and make the two-plugin coexistence with bring-loop explicit. Use when the user says "set up kata-harness", "install the roll plugin", "add rolls on top of bring-loop", or asks how the timed roll relates to their daily bring.
Produces markdown memory artifacts (conversation summaries, seed files, philosophical reflections, doc updates) and a dated compression log by distilling a long conversation into its essential decisions and learnings. For the lighter, routine end-of-session wrap-up, use `session-compression` instead — this skill is for a long conversation that needs the fuller multi-artifact treatment. Use when: "compress this context", "distill this conversation", "create a memory artifact", "condense this history", "extract key wisdom before handoff".
基于 SOC 职业分类
正在显示 SKILL.md
| name | address-sanitizer |
| description | >. Trigger phrases: "invoke this skill". |
AddressSanitizer (ASan) is a widely adopted memory error detection tool used extensively during software testing, particularly fuzzing. It helps detect memory corruption bugs that might otherwise go unnoticed, such as buffer overflows, use-after-free errors, and other memory safety violations.
ASan is a standard practice in fuzzing due to its effectiveness in identifying memory vulnerabilities. It instruments code at compile time to track memory allocations and accesses, detecting illegal operations at runtime.
| Concept | Description |
|---|---|
| Instrumentation | ASan adds runtime checks to memory operations during compilation |
| Shadow Memory | Maps 20TB of virtual memory to track allocation state |
| Performance Cost | Approximately 2-4x slowdown compared to non-instrumented code |
| Detection Scope | Finds buffer overflows, use-after-free, double-free, and memory leaks |
Apply this technique when:
Skip this technique when:
| Task | Command/Pattern |
|---|---|
| Enable ASan (Clang/GCC) | -fsanitize=address |
| Enable verbosity | ASAN_OPTIONS=verbosity=1 |
| Disable leak detection | ASAN_OPTIONS=detect_leaks=0 |
| Force abort on error | ASAN_OPTIONS=abort_on_error=1 |
| Multiple options | ASAN_OPTIONS=verbosity=1:abort_on_error=1 |
Compile and link your code with the -fsanitize=address flag:
clang -fsanitize=address -g -o my_program my_program.c
The -g flag is recommended to get better stack traces when ASan detects errors.
Set the ASAN_OPTIONS environment variable to configure ASan behavior:
export ASAN_OPTIONS=verbosity=1:abort_on_error=1:detect_leaks=0
Execute the ASan-instrumented binary. When memory errors are detected, ASan will print detailed reports:
./my_program
ASan requires approximately 20TB of virtual memory. Disable fuzzer memory restrictions:
-rss_limit_mb=0-m noneUse Case: Standard fuzzing setup with ASan
Before:
clang -o fuzz_target fuzz_target.c
./fuzz_target
After:
clang -fsanitize=address -g -o fuzz_target fuzz_target.c
ASAN_OPTIONS=verbosity=1:abort_on_error=1 ./fuzz_target
Use Case: Enable ASan for unit test suite
Before:
gcc -o test_suite test_suite.c -lcheck
./test_suite
After:
gcc -fsanitize=address -g -o test_suite test_suite.c -lcheck
ASAN_OPTIONS=detect_leaks=1 ./test_suite
| Tip | Why It Helps |
|---|---|
Use -g flag | Provides detailed stack traces for debugging |
Set verbosity=1 | Confirms ASan is enabled before program starts |
| Disable leaks during fuzzing | Leak detection doesn't cause immediate crashes, clutters output |
Enable abort_on_error=1 | Some fuzzers require abort() instead of _exit() |
When ASan detects a memory error, it prints a detailed report including:
Example ASan report:
==12345==ERROR: AddressSanitizer: heap-buffer-overflow on address 0x60300000eff4 at pc 0x00000048e6a3
READ of size 4 at 0x60300000eff4 thread T0
#0 0x48e6a2 in main /path/to/file.c:42
ASan can be combined with other sanitizers for comprehensive detection:
clang -fsanitize=address,undefined -g -o fuzz_target fuzz_target.c
Linux: Full ASan support with best performance macOS: Limited support, some features may not work Windows: Experimental support, not recommended for production fuzzing
| Anti-Pattern | Problem | Correct Approach |
|---|---|---|
| Using ASan in production | Can make applications less secure | Use ASan only for testing |
| Not disabling memory limits | Fuzzer may kill process due to 20TB virtual memory | Set -rss_limit_mb=0 or -m none |
| Ignoring leak reports | Memory leaks indicate resource management issues | Review leak reports at end of fuzzing campaign |
Compile with both fuzzer and address sanitizer:
clang++ -fsanitize=fuzzer,address -g harness.cc -o fuzz
Run with unlimited RSS:
./fuzz -rss_limit_mb=0
Integration tips:
-fsanitize=fuzzer with -fsanitize=address-g for detailed stack traces in crash reportsASAN_OPTIONS=abort_on_error=1 for better crash handlingSee: libFuzzer: AddressSanitizer
Use the AFL_USE_ASAN environment variable:
AFL_USE_ASAN=1 afl-clang-fast++ -g harness.cc -o fuzz
Run with unlimited memory:
afl-fuzz -m none -i input_dir -o output_dir ./fuzz
Integration tips:
AFL_USE_ASAN=1 automatically adds proper compilation flags-m none to disable AFL++'s memory limitAFL_MAP_SIZE for programs with large coverage mapsUse the --sanitizer=address flag:
cargo fuzz run fuzz_target --sanitizer=address
Or configure in fuzz/Cargo.toml:
[profile.release]
opt-level = 3
debug = true
Integration tips:
See: cargo-fuzz: AddressSanitizer
Compile with ASan and link with honggfuzz:
honggfuzz -i input_dir -o output_dir -- ./fuzz_target_asan
Compile the target:
hfuzz-clang -fsanitize=address -g target.c -o fuzz_target_asan
Integration tips:
| Issue | Cause | Solution |
|---|---|---|
| Fuzzer kills process immediately | Memory limit too low for ASan's 20TB virtual memory | Use -rss_limit_mb=0 (libFuzzer) or -m none (AFL++) |
| "ASan runtime not initialized" | Wrong linking order or missing runtime | Ensure -fsanitize=address used in both compile and link |
| Leak reports clutter output | LeakSanitizer enabled by default | Set ASAN_OPTIONS=detect_leaks=0 |
| Poor performance (>4x slowdown) | Debug mode or unoptimized build | Compile with -O2 or -O3 alongside -fsanitize=address |
| ASan not detecting obvious bugs | Binary not instrumented | Check with ASAN_OPTIONS=verbosity=1 that ASan prints startup info |
| False positives | Interceptor conflicts | Check ASan FAQ for known issues with specific libraries |
| Skill | How It Applies |
|---|---|
| libfuzzer | Compile with -fsanitize=fuzzer,address for integrated fuzzing with memory error detection |
| aflpp | Use AFL_USE_ASAN=1 environment variable during compilation |
| cargo-fuzz | Use --sanitizer=address flag to enable ASan for Rust fuzz targets |
| honggfuzz | Compile target with -fsanitize=address for ASan-instrumented fuzzing |
| Skill | Relationship |
|---|---|
| undefined-behavior-sanitizer | Often used together with ASan for comprehensive bug detection (undefined behavior + memory errors) |
| fuzz-harness-writing | Harnesses must be designed to handle ASan-detected crashes and avoid false positives |
| coverage-analysis | Coverage-guided fuzzing helps trigger code paths where ASan can detect memory errors |
AddressSanitizer on Google Sanitizers Wiki
The official ASan documentation covers:
Common configuration flags shared across all sanitizers:
verbosity: Control diagnostic output levellog_path: Redirect sanitizer output to filessymbolize: Enable/disable symbol resolution in reportsexternal_symbolizer_path: Use custom symbolizerASan-specific configuration options:
detect_leaks: Control memory leak detectionabort_on_error: Call abort() vs _exit() on errordetect_stack_use_after_return: Detect stack use-after-return bugscheck_initialization_order: Find initialization order bugsCommon pitfalls and solutions:
Clang AddressSanitizer Documentation
Clang-specific guidance:
GCC-specific ASan documentation:
AddressSanitizer: A Fast Address Sanity Checker (USENIX Paper)
Original research paper with technical details: