dee5ea7a0b
From-SVN: r210743
267 lines
9.7 KiB
C++
267 lines
9.7 KiB
C++
//===-- sanitizer_flags.cc ------------------------------------------------===//
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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//
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// This file is a part of ThreadSanitizer/AddressSanitizer runtime.
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//
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//===----------------------------------------------------------------------===//
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#include "sanitizer_flags.h"
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#include "sanitizer_common.h"
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#include "sanitizer_libc.h"
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#include "sanitizer_list.h"
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namespace __sanitizer {
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CommonFlags common_flags_dont_use;
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struct FlagDescription {
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const char *name;
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const char *description;
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FlagDescription *next;
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};
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IntrusiveList<FlagDescription> flag_descriptions;
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void SetCommonFlagsDefaults(CommonFlags *f) {
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f->symbolize = true;
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f->external_symbolizer_path = 0;
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f->allow_addr2line = false;
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f->strip_path_prefix = "";
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f->fast_unwind_on_fatal = false;
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f->fast_unwind_on_malloc = true;
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f->handle_ioctl = false;
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f->malloc_context_size = 1;
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f->log_path = "stderr";
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f->verbosity = 0;
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f->detect_leaks = true;
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f->leak_check_at_exit = true;
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f->allocator_may_return_null = false;
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f->print_summary = true;
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f->check_printf = true;
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// TODO(glider): tools may want to set different defaults for handle_segv.
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f->handle_segv = SANITIZER_NEEDS_SEGV;
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f->allow_user_segv_handler = false;
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f->use_sigaltstack = true;
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f->detect_deadlocks = false;
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f->clear_shadow_mmap_threshold = 64 * 1024;
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f->color = "auto";
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f->legacy_pthread_cond = false;
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f->intercept_tls_get_addr = false;
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f->coverage = false;
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f->full_address_space = false;
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}
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void ParseCommonFlagsFromString(CommonFlags *f, const char *str) {
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ParseFlag(str, &f->symbolize, "symbolize",
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"If set, use the online symbolizer from common sanitizer runtime to turn "
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"virtual addresses to file/line locations.");
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ParseFlag(str, &f->external_symbolizer_path, "external_symbolizer_path",
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"Path to external symbolizer. If empty, the tool will search $PATH for "
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"the symbolizer.");
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ParseFlag(str, &f->allow_addr2line, "allow_addr2line",
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"If set, allows online symbolizer to run addr2line binary to symbolize "
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"stack traces (addr2line will only be used if llvm-symbolizer binary is "
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"unavailable.");
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ParseFlag(str, &f->strip_path_prefix, "strip_path_prefix",
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"Strips this prefix from file paths in error reports.");
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ParseFlag(str, &f->fast_unwind_on_fatal, "fast_unwind_on_fatal",
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"If available, use the fast frame-pointer-based unwinder on fatal "
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"errors.");
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ParseFlag(str, &f->fast_unwind_on_malloc, "fast_unwind_on_malloc",
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"If available, use the fast frame-pointer-based unwinder on "
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"malloc/free.");
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ParseFlag(str, &f->handle_ioctl, "handle_ioctl",
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"Intercept and handle ioctl requests.");
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ParseFlag(str, &f->malloc_context_size, "malloc_context_size",
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"Max number of stack frames kept for each allocation/deallocation.");
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ParseFlag(str, &f->log_path, "log_path",
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"Write logs to \"log_path.pid\". The special values are \"stdout\" and "
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"\"stderr\". The default is \"stderr\".");
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ParseFlag(str, &f->verbosity, "verbosity",
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"Verbosity level (0 - silent, 1 - a bit of output, 2+ - more output).");
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ParseFlag(str, &f->detect_leaks, "detect_leaks",
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"Enable memory leak detection.");
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ParseFlag(str, &f->leak_check_at_exit, "leak_check_at_exit",
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"Invoke leak checking in an atexit handler. Has no effect if "
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"detect_leaks=false, or if __lsan_do_leak_check() is called before the "
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"handler has a chance to run.");
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ParseFlag(str, &f->allocator_may_return_null, "allocator_may_return_null",
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"If false, the allocator will crash instead of returning 0 on "
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"out-of-memory.");
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ParseFlag(str, &f->print_summary, "print_summary",
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"If false, disable printing error summaries in addition to error "
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"reports.");
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ParseFlag(str, &f->check_printf, "check_printf",
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"Check printf arguments.");
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ParseFlag(str, &f->handle_segv, "handle_segv",
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"If set, registers the tool's custom SEGV handler (both SIGBUS and "
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"SIGSEGV on OSX).");
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ParseFlag(str, &f->allow_user_segv_handler, "allow_user_segv_handler",
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"If set, allows user to register a SEGV handler even if the tool "
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"registers one.");
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ParseFlag(str, &f->use_sigaltstack, "use_sigaltstack",
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"If set, uses alternate stack for signal handling.");
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ParseFlag(str, &f->detect_deadlocks, "detect_deadlocks",
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"If set, deadlock detection is enabled.");
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ParseFlag(str, &f->clear_shadow_mmap_threshold,
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"clear_shadow_mmap_threshold",
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"Large shadow regions are zero-filled using mmap(NORESERVE) instead of "
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"memset(). This is the threshold size in bytes.");
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ParseFlag(str, &f->color, "color",
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"Colorize reports: (always|never|auto).");
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ParseFlag(str, &f->legacy_pthread_cond, "legacy_pthread_cond",
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"Enables support for dynamic libraries linked with libpthread 2.2.5.");
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ParseFlag(str, &f->intercept_tls_get_addr, "intercept_tls_get_addr",
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"Intercept __tls_get_addr.");
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ParseFlag(str, &f->help, "help", "Print the flag descriptions.");
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ParseFlag(str, &f->mmap_limit_mb, "mmap_limit_mb",
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"Limit the amount of mmap-ed memory (excluding shadow) in Mb; "
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"not a user-facing flag, used mosly for testing the tools");
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ParseFlag(str, &f->coverage, "coverage",
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"If set, coverage information will be dumped at program shutdown (if the "
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"coverage instrumentation was enabled at compile time).");
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ParseFlag(str, &f->full_address_space, "full_address_space",
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"Sanitize complete address space; "
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"by default kernel area on 32-bit platforms will not be sanitized");
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// Do a sanity check for certain flags.
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if (f->malloc_context_size < 1)
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f->malloc_context_size = 1;
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}
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static bool GetFlagValue(const char *env, const char *name,
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const char **value, int *value_length) {
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if (env == 0)
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return false;
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const char *pos = 0;
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for (;;) {
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pos = internal_strstr(env, name);
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if (pos == 0)
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return false;
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if (pos != env && ((pos[-1] >= 'a' && pos[-1] <= 'z') || pos[-1] == '_')) {
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// Seems to be middle of another flag name or value.
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env = pos + 1;
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continue;
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}
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break;
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}
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pos += internal_strlen(name);
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const char *end;
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if (pos[0] != '=') {
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end = pos;
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} else {
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pos += 1;
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if (pos[0] == '"') {
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pos += 1;
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end = internal_strchr(pos, '"');
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} else if (pos[0] == '\'') {
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pos += 1;
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end = internal_strchr(pos, '\'');
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} else {
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// Read until the next space or colon.
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end = pos + internal_strcspn(pos, " :");
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}
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if (end == 0)
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end = pos + internal_strlen(pos);
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}
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*value = pos;
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*value_length = end - pos;
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return true;
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}
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static bool StartsWith(const char *flag, int flag_length, const char *value) {
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if (!flag || !value)
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return false;
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int value_length = internal_strlen(value);
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return (flag_length >= value_length) &&
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(0 == internal_strncmp(flag, value, value_length));
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}
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static LowLevelAllocator allocator_for_flags;
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// The linear scan is suboptimal, but the number of flags is relatively small.
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bool FlagInDescriptionList(const char *name) {
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IntrusiveList<FlagDescription>::Iterator it(&flag_descriptions);
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while (it.hasNext()) {
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if (!internal_strcmp(it.next()->name, name)) return true;
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}
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return false;
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}
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void AddFlagDescription(const char *name, const char *description) {
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if (FlagInDescriptionList(name)) return;
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FlagDescription *new_description = new(allocator_for_flags) FlagDescription;
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new_description->name = name;
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new_description->description = description;
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flag_descriptions.push_back(new_description);
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}
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// TODO(glider): put the descriptions inside CommonFlags.
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void PrintFlagDescriptions() {
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IntrusiveList<FlagDescription>::Iterator it(&flag_descriptions);
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Printf("Available flags for %s:\n", SanitizerToolName);
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while (it.hasNext()) {
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FlagDescription *descr = it.next();
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Printf("\t%s\n\t\t- %s\n", descr->name, descr->description);
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}
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}
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void ParseFlag(const char *env, bool *flag,
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const char *name, const char *descr) {
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const char *value;
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int value_length;
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AddFlagDescription(name, descr);
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if (!GetFlagValue(env, name, &value, &value_length))
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return;
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if (StartsWith(value, value_length, "0") ||
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StartsWith(value, value_length, "no") ||
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StartsWith(value, value_length, "false"))
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*flag = false;
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if (StartsWith(value, value_length, "1") ||
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StartsWith(value, value_length, "yes") ||
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StartsWith(value, value_length, "true"))
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*flag = true;
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}
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void ParseFlag(const char *env, int *flag,
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const char *name, const char *descr) {
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const char *value;
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int value_length;
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AddFlagDescription(name, descr);
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if (!GetFlagValue(env, name, &value, &value_length))
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return;
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*flag = static_cast<int>(internal_atoll(value));
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}
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void ParseFlag(const char *env, uptr *flag,
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const char *name, const char *descr) {
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const char *value;
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int value_length;
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AddFlagDescription(name, descr);
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if (!GetFlagValue(env, name, &value, &value_length))
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return;
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*flag = static_cast<uptr>(internal_atoll(value));
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}
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void ParseFlag(const char *env, const char **flag,
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const char *name, const char *descr) {
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const char *value;
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int value_length;
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AddFlagDescription(name, descr);
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if (!GetFlagValue(env, name, &value, &value_length))
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return;
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// Copy the flag value. Don't use locks here, as flags are parsed at
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// tool startup.
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char *value_copy = (char*)(allocator_for_flags.Allocate(value_length + 1));
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internal_memcpy(value_copy, value, value_length);
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value_copy[value_length] = '\0';
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*flag = value_copy;
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}
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} // namespace __sanitizer
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