Valgrind

mohitmishra786/low-level-dev-skills/skills/profilers/valgrind

作者 mohitmishra786bdc58472fa9f无许可证253 个星标收录于 2026年10月9日更新于 2026年10月9日仓库3个月前更新

Valgrind profiler skill for memory error detection and cache profiling. Use when running Memcheck to find heap corruption, use-after-free, memory leaks, or uninitialised reads; or Cachegrind/Callgrind for cache simulation and function-level profiling. Activates on queries about valgrind, memcheck, heap leaks, use-after-free without sanitizers, cachegrind, callgrind, KCachegrind, or massif memory profiling.

AI 生成的概览

指导代理使用 Valgrind 工具进行内存错误检测、缓存模拟、调用图分析和堆分析。

功能
该技能提供使用 Valgrind 的 Memcheck、Cachegrind、Callgrind 和 Massif 工具的说明。内容涵盖编译选项、命令行参数、如何解读 Memcheck 报告和泄漏类型、抑制文件、缓存指标、调用图分析以及堆分析输出。它还说明性能开销以及何时改用 AddressSanitizer,并附有一份比较 Valgrind 与 ASan 的参考文档。
适用场景
适用于程序出现内存泄漏、释放后使用、堆损坏或未初始化读取,或无法使用 sanitizer 的情况。也适合缓存行为分析、调用图生成和堆分配分析。
运行要求
需要安装 Valgrind 及其配套工具(cg_annotate、cg_diff、callgrind_annotate、ms_print),可选安装 KCachegrind 或 massif-visualizer 等图形界面工具。该技能不包含脚本,仅为说明文档,并附带一份参考文档。

Valgrind

Purpose

Guide agents through Valgrind tools: Memcheck for memory errors, Cachegrind for cache simulation, Callgrind for call graphs, and Massif for heap profiling.

Triggers

  • "My program has a memory leak / use-after-free"
  • "I can't use ASan — can I use Valgrind instead?"
  • "How do I profile cache behaviour without perf?"
  • "How do I visualize call graphs with Callgrind?"
  • "How do I profile heap allocation patterns?"
  • "Valgrind reports errors in third-party code I can't fix"

Workflow

1. Memcheck — memory error detection

Compile with -g -O1 for best results. -O0 is also fine; avoid -O2+ which can produce false positives.

bash
valgrind --tool=memcheck \         --leak-check=full \         --show-leak-kinds=all \         --track-origins=yes \         --error-exitcode=1 \         ./prog [args]

Key flags:

FlagDefaultEffect
--leak-check=fullsummaryFull leak details
--show-leak-kinds=alldefiniteShow all leak kinds
--track-origins=yesnoShow where uninit values came from (slow)
--error-exitcode=N0Exit N if errors found (CI integration)
--log-file=filestderrSave report to file
--suppressions=filenoneSuppress known FPs
--gen-suppressions=yesnoPrint suppression directives for errors
--max-stackframe=N2000000Increase for deep stacks
--malloc-fill=0xABoffFill allocated memory (detect uninit use)
--free-fill=0xCDoffFill freed memory (detect use-after-free)

2. Understanding Memcheck output

text
==12345== Invalid read of size 4==12345==    at 0x4007A2: foo (main.c:15)==12345==    by 0x400846: main (main.c:30)==12345==  Address 0x5204040 is 0 bytes after a block of size 40 alloc'd==12345==    at 0x4C2FB0F: malloc (in /usr/lib/valgrind/vgpreload_memcheck.so)==12345==    by 0x40074B: main (main.c:25)
  • Invalid read/write: out-of-bounds access; check array bounds
  • Use of uninitialised value: read before write; use --track-origins=yes
  • Invalid free / double free: mismatched malloc/free; check ownership
  • Definitely lost: reachable via no pointers; clear leak
  • Indirectly lost: lost through a chain; usually means one root leak
  • Possibly lost: might be pointing into the middle of a block; often FP with custom allocators

3. Leak kinds

KindMeaning
Definitely lostNo pointer to block
Indirectly lostLost via another lost block
Possibly lostPointer into middle of block
Still reachablePointer exists at exit; not a leak but never freed

For library code: --show-leak-kinds=definite,indirect reduces noise from still-reachable.

4. Suppressions

bash
# Generate suppression for current errorvalgrind --gen-suppressions=yes ./prog 2>&1 | grep -A20 '{'
# Example suppression file (valgrind.supp){   openssl_uninit   Memcheck:Cond   fun:SHA256_Init   ...}
# Use suppression filevalgrind --suppressions=valgrind.supp ./prog

5. Cachegrind — cache simulation

bash
valgrind --tool=cachegrind ./prog
# Output: cachegrind.out.PID# Annotate sourcecg_annotate cachegrind.out.12345 --auto=yes
# Diff two runscg_diff cachegrind.out.before cachegrind.out.after

Key metrics:

  • I1mr / ILmr: L1/LL instruction cache miss rate
  • D1mr / DLmr: L1/LL data read miss rate
  • D1mw / DLmw: L1/LL data write miss rate

6. Callgrind — call graph profiling

bash
valgrind --tool=callgrind --callgrind-out-file=callgrind.out ./prog
# Analysecallgrind_annotate callgrind.out
# Visualise in KCachegrind (GUI)kcachegrind callgrind.out

Callgrind is slower than perf but works without root and provides exact call counts.

7. Massif — heap profiling

bash
valgrind --tool=massif ./prog
# Visualisems_print massif.out.PID | less
# GUImassif-visualizer massif.out.PID

Massif shows heap usage over time; useful for finding peak allocation sites and tracking gradual leaks.

8. Performance considerations

Valgrind Memcheck runs ~10-50x slower than native. Mitigations:

  • Use a shorter representative workload
  • Use --error-exitcode=1 to fail fast in CI
  • Use ASan (-fsanitize=address) for faster memory checking during development
  • Reserve Valgrind for cases where ASan can't be used (old toolchains, production-like environments)

For a comparison of Valgrind vs ASan, see references/valgrind-vs-asan.md [blocked].

Related skills

  • Use skills/runtimes/sanitizers for faster ASan/UBSan alternatives
  • Use skills/profilers/linux-perf for CPU-level profiling (faster than Cachegrind)
  • Use skills/profilers/flamegraphs to visualise Callgrind output

来源与署名

来源:mohitmishra786/low-level-dev-skills位于skills/profilers/valgrind提交bdc5847

许可证: 无许可证

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