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506512391b
Relax restrictions on multiple sanitizers Most combinations of LLVM sanitizers are legal-enough to enable simultaneously. This change will allow simultaneously enabling ASAN and shadow call stacks on supported platforms. I used this python script to generate the mutually-exclusive sanitizer combinations: ```python #!/usr/bin/python3 import subprocess flags = [ ["-fsanitize=address"], ["-fsanitize=leak"], ["-fsanitize=memory"], ["-fsanitize=thread"], ["-fsanitize=hwaddress"], ["-fsanitize=cfi", "-flto", "-fvisibility=hidden"], ["-fsanitize=memtag", "--target=aarch64-linux-android", "-march=armv8a+memtag"], ["-fsanitize=shadow-call-stack"], ["-fsanitize=kcfi", "-flto", "-fvisibility=hidden"], ["-fsanitize=kernel-address"], ["-fsanitize=safe-stack"], ["-fsanitize=dataflow"], ] for i in range(len(flags)): for j in range(i): command = ["clang++"] + flags[i] + flags[j] + ["-o", "main.o", "-c", "main.cpp"] completed = subprocess.run(command, stderr=subprocess.DEVNULL) if completed.returncode != 0: first = flags[i][0][11:].replace('-', '').upper() second = flags[j][0][11:].replace('-', '').upper() print(f"(SanitizerSet::{first}, SanitizerSet::{second}),") ``` |
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src | ||
Cargo.toml | ||
README.md |
rustc_target
contains some very low-level details that are
specific to different compilation targets and so forth.
For more information about how rustc works, see the rustc dev guide.