forked from OSchip/llvm-project
178 lines
5.9 KiB
C++
178 lines
5.9 KiB
C++
//===-- sanitizer_common_libcdep.cc ---------------------------------------===//
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//
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// The LLVM Compiler Infrastructure
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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 shared between AddressSanitizer and ThreadSanitizer
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// run-time libraries.
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//===----------------------------------------------------------------------===//
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#include "sanitizer_common.h"
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#include "sanitizer_allocator_interface.h"
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#include "sanitizer_flags.h"
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#include "sanitizer_stackdepot.h"
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#include "sanitizer_stacktrace.h"
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#include "sanitizer_symbolizer.h"
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#if SANITIZER_POSIX
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#include "sanitizer_posix.h"
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#endif
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namespace __sanitizer {
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bool ReportFile::SupportsColors() {
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SpinMutexLock l(mu);
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ReopenIfNecessary();
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return SupportsColoredOutput(fd);
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}
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bool ColorizeReports() {
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// FIXME: Add proper Windows support to AnsiColorDecorator and re-enable color
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// printing on Windows.
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if (SANITIZER_WINDOWS)
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return false;
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const char *flag = common_flags()->color;
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return internal_strcmp(flag, "always") == 0 ||
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(internal_strcmp(flag, "auto") == 0 && report_file.SupportsColors());
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}
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static void (*sandboxing_callback)();
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void SetSandboxingCallback(void (*f)()) {
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sandboxing_callback = f;
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}
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void ReportErrorSummary(const char *error_type, const StackTrace *stack) {
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#if !SANITIZER_GO
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if (!common_flags()->print_summary)
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return;
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if (stack->size == 0) {
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ReportErrorSummary(error_type);
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return;
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}
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// Currently, we include the first stack frame into the report summary.
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// Maybe sometimes we need to choose another frame (e.g. skip memcpy/etc).
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uptr pc = StackTrace::GetPreviousInstructionPc(stack->trace[0]);
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SymbolizedStack *frame = Symbolizer::GetOrInit()->SymbolizePC(pc);
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ReportErrorSummary(error_type, frame->info);
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frame->ClearAll();
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#endif
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}
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static void (*SoftRssLimitExceededCallback)(bool exceeded);
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void SetSoftRssLimitExceededCallback(void (*Callback)(bool exceeded)) {
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CHECK_EQ(SoftRssLimitExceededCallback, nullptr);
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SoftRssLimitExceededCallback = Callback;
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}
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static AllocatorReleaseToOSCallback ReleseCallback;
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void SetAllocatorReleaseToOSCallback(AllocatorReleaseToOSCallback Callback) {
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CHECK_EQ(ReleseCallback, nullptr);
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ReleseCallback = Callback;
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}
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void BackgroundThread(void *arg) {
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uptr hard_rss_limit_mb = common_flags()->hard_rss_limit_mb;
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uptr soft_rss_limit_mb = common_flags()->soft_rss_limit_mb;
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bool heap_profile = common_flags()->heap_profile;
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bool allocator_release_to_os = common_flags()->allocator_release_to_os;
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uptr prev_reported_rss = 0;
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uptr prev_reported_stack_depot_size = 0;
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bool reached_soft_rss_limit = false;
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uptr rss_during_last_reported_profile = 0;
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while (true) {
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SleepForMillis(100);
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uptr current_rss_mb = GetRSS() >> 20;
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if (Verbosity()) {
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// If RSS has grown 10% since last time, print some information.
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if (prev_reported_rss * 11 / 10 < current_rss_mb) {
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Printf("%s: RSS: %zdMb\n", SanitizerToolName, current_rss_mb);
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prev_reported_rss = current_rss_mb;
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}
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// If stack depot has grown 10% since last time, print it too.
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StackDepotStats *stack_depot_stats = StackDepotGetStats();
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if (prev_reported_stack_depot_size * 11 / 10 <
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stack_depot_stats->allocated) {
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Printf("%s: StackDepot: %zd ids; %zdM allocated\n",
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SanitizerToolName,
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stack_depot_stats->n_uniq_ids,
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stack_depot_stats->allocated >> 20);
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prev_reported_stack_depot_size = stack_depot_stats->allocated;
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}
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}
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// Check RSS against the limit.
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if (hard_rss_limit_mb && hard_rss_limit_mb < current_rss_mb) {
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Report("%s: hard rss limit exhausted (%zdMb vs %zdMb)\n",
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SanitizerToolName, hard_rss_limit_mb, current_rss_mb);
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DumpProcessMap();
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Die();
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}
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if (soft_rss_limit_mb) {
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if (soft_rss_limit_mb < current_rss_mb && !reached_soft_rss_limit) {
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reached_soft_rss_limit = true;
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Report("%s: soft rss limit exhausted (%zdMb vs %zdMb)\n",
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SanitizerToolName, soft_rss_limit_mb, current_rss_mb);
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if (SoftRssLimitExceededCallback)
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SoftRssLimitExceededCallback(true);
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} else if (soft_rss_limit_mb >= current_rss_mb &&
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reached_soft_rss_limit) {
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reached_soft_rss_limit = false;
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if (SoftRssLimitExceededCallback)
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SoftRssLimitExceededCallback(false);
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}
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}
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if (allocator_release_to_os && ReleseCallback) ReleseCallback();
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if (heap_profile &&
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current_rss_mb > rss_during_last_reported_profile * 1.1) {
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Printf("\n\nHEAP PROFILE at RSS %zdMb\n", current_rss_mb);
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__sanitizer_print_memory_profile(90);
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rss_during_last_reported_profile = current_rss_mb;
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}
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}
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}
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void WriteToSyslog(const char *msg) {
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InternalScopedString msg_copy(kErrorMessageBufferSize);
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msg_copy.append("%s", msg);
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char *p = msg_copy.data();
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char *q;
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// Print one line at a time.
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// syslog, at least on Android, has an implicit message length limit.
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do {
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q = internal_strchr(p, '\n');
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if (q)
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*q = '\0';
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WriteOneLineToSyslog(p);
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if (q)
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p = q + 1;
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} while (q);
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}
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void MaybeStartBackgroudThread() {
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#if SANITIZER_LINUX && \
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!SANITIZER_GO // Need to implement/test on other platforms.
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// Start the background thread if one of the rss limits is given.
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if (!common_flags()->hard_rss_limit_mb &&
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!common_flags()->soft_rss_limit_mb &&
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!common_flags()->allocator_release_to_os &&
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!common_flags()->heap_profile) return;
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if (!&real_pthread_create) return; // Can't spawn the thread anyway.
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internal_start_thread(BackgroundThread, nullptr);
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#endif
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}
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} // namespace __sanitizer
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void NOINLINE
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__sanitizer_sandbox_on_notify(__sanitizer_sandbox_arguments *args) {
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PrepareForSandboxing(args);
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if (sandboxing_callback)
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sandboxing_callback();
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}
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