b4ab7d34f5
From-SVN: r196009
249 lines
7.1 KiB
C++
249 lines
7.1 KiB
C++
//===-- tsan_report.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 (TSan), a race detector.
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//
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//===----------------------------------------------------------------------===//
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#include "tsan_report.h"
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#include "tsan_platform.h"
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#include "tsan_rtl.h"
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namespace __tsan {
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ReportDesc::ReportDesc()
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: stacks(MBlockReportStack)
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, mops(MBlockReportMop)
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, locs(MBlockReportLoc)
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, mutexes(MBlockReportMutex)
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, threads(MBlockReportThread)
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, sleep() {
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}
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ReportMop::ReportMop()
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: mset(MBlockReportMutex) {
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}
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ReportDesc::~ReportDesc() {
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// FIXME(dvyukov): it must be leaking a lot of memory.
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}
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#ifndef TSAN_GO
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const int kThreadBufSize = 32;
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const char *thread_name(char *buf, int tid) {
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if (tid == 0)
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return "main thread";
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internal_snprintf(buf, kThreadBufSize, "thread T%d", tid);
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return buf;
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}
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static const char *ReportTypeString(ReportType typ) {
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if (typ == ReportTypeRace)
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return "data race";
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if (typ == ReportTypeUseAfterFree)
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return "heap-use-after-free";
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if (typ == ReportTypeThreadLeak)
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return "thread leak";
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if (typ == ReportTypeMutexDestroyLocked)
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return "destroy of a locked mutex";
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if (typ == ReportTypeSignalUnsafe)
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return "signal-unsafe call inside of a signal";
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if (typ == ReportTypeErrnoInSignal)
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return "signal handler spoils errno";
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return "";
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}
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void PrintStack(const ReportStack *ent) {
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if (ent == 0) {
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Printf(" [failed to restore the stack]\n\n");
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return;
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}
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for (int i = 0; ent; ent = ent->next, i++) {
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Printf(" #%d %s %s:%d", i, ent->func, ent->file, ent->line);
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if (ent->col)
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Printf(":%d", ent->col);
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if (ent->module && ent->offset)
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Printf(" (%s+%p)\n", ent->module, (void*)ent->offset);
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else
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Printf(" (%p)\n", (void*)ent->pc);
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}
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Printf("\n");
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}
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static void PrintMutexSet(Vector<ReportMopMutex> const& mset) {
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for (uptr i = 0; i < mset.Size(); i++) {
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if (i == 0)
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Printf(" (mutexes:");
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const ReportMopMutex m = mset[i];
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Printf(" %s M%llu", m.write ? "write" : "read", m.id);
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Printf(i == mset.Size() - 1 ? ")" : ",");
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}
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}
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static const char *MopDesc(bool first, bool write, bool atomic) {
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return atomic ? (first ? (write ? "Atomic write" : "Atomic read")
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: (write ? "Previous atomic write" : "Previous atomic read"))
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: (first ? (write ? "Write" : "Read")
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: (write ? "Previous write" : "Previous read"));
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}
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static void PrintMop(const ReportMop *mop, bool first) {
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char thrbuf[kThreadBufSize];
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Printf(" %s of size %d at %p by %s",
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MopDesc(first, mop->write, mop->atomic),
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mop->size, (void*)mop->addr,
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thread_name(thrbuf, mop->tid));
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PrintMutexSet(mop->mset);
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Printf(":\n");
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PrintStack(mop->stack);
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}
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static void PrintLocation(const ReportLocation *loc) {
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char thrbuf[kThreadBufSize];
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if (loc->type == ReportLocationGlobal) {
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Printf(" Location is global '%s' of size %zu at %zx (%s+%p)\n\n",
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loc->name, loc->size, loc->addr, loc->module, loc->offset);
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} else if (loc->type == ReportLocationHeap) {
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char thrbuf[kThreadBufSize];
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Printf(" Location is heap block of size %zu at %p allocated by %s:\n",
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loc->size, loc->addr, thread_name(thrbuf, loc->tid));
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PrintStack(loc->stack);
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} else if (loc->type == ReportLocationStack) {
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Printf(" Location is stack of %s.\n\n", thread_name(thrbuf, loc->tid));
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} else if (loc->type == ReportLocationTLS) {
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Printf(" Location is TLS of %s.\n\n", thread_name(thrbuf, loc->tid));
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} else if (loc->type == ReportLocationFD) {
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Printf(" Location is file descriptor %d created by %s at:\n",
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loc->fd, thread_name(thrbuf, loc->tid));
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PrintStack(loc->stack);
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}
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}
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static void PrintMutex(const ReportMutex *rm) {
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if (rm->destroyed) {
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Printf(" Mutex M%llu is already destroyed.\n\n", rm->id);
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} else {
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Printf(" Mutex M%llu created at:\n", rm->id);
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PrintStack(rm->stack);
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}
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}
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static void PrintThread(const ReportThread *rt) {
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if (rt->id == 0) // Little sense in describing the main thread.
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return;
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Printf(" Thread T%d", rt->id);
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if (rt->name)
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Printf(" '%s'", rt->name);
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char thrbuf[kThreadBufSize];
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Printf(" (tid=%zu, %s) created by %s",
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rt->pid, rt->running ? "running" : "finished",
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thread_name(thrbuf, rt->parent_tid));
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if (rt->stack)
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Printf(" at:");
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Printf("\n");
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PrintStack(rt->stack);
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}
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static void PrintSleep(const ReportStack *s) {
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Printf(" As if synchronized via sleep:\n");
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PrintStack(s);
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}
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static ReportStack *ChooseSummaryStack(const ReportDesc *rep) {
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if (rep->mops.Size())
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return rep->mops[0]->stack;
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if (rep->stacks.Size())
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return rep->stacks[0];
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if (rep->mutexes.Size())
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return rep->mutexes[0]->stack;
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if (rep->threads.Size())
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return rep->threads[0]->stack;
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return 0;
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}
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ReportStack *SkipTsanInternalFrames(ReportStack *ent) {
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while (FrameIsInternal(ent) && ent->next)
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ent = ent->next;
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return ent;
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}
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void PrintReport(const ReportDesc *rep) {
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Printf("==================\n");
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const char *rep_typ_str = ReportTypeString(rep->typ);
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Printf("WARNING: ThreadSanitizer: %s (pid=%d)\n", rep_typ_str, GetPid());
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for (uptr i = 0; i < rep->stacks.Size(); i++) {
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if (i)
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Printf(" and:\n");
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PrintStack(rep->stacks[i]);
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}
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for (uptr i = 0; i < rep->mops.Size(); i++)
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PrintMop(rep->mops[i], i == 0);
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if (rep->sleep)
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PrintSleep(rep->sleep);
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for (uptr i = 0; i < rep->locs.Size(); i++)
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PrintLocation(rep->locs[i]);
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for (uptr i = 0; i < rep->mutexes.Size(); i++)
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PrintMutex(rep->mutexes[i]);
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for (uptr i = 0; i < rep->threads.Size(); i++)
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PrintThread(rep->threads[i]);
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if (ReportStack *ent = SkipTsanInternalFrames(ChooseSummaryStack(rep)))
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ReportErrorSummary(rep_typ_str, ent->file, ent->line, ent->func);
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Printf("==================\n");
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}
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#else
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void PrintStack(const ReportStack *ent) {
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if (ent == 0) {
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Printf(" [failed to restore the stack]\n\n");
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return;
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}
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for (int i = 0; ent; ent = ent->next, i++) {
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Printf(" %s()\n %s:%d +0x%zx\n",
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ent->func, ent->file, ent->line, (void*)ent->offset);
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}
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Printf("\n");
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}
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static void PrintMop(const ReportMop *mop, bool first) {
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Printf("%s by goroutine %d:\n",
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(first ? (mop->write ? "Write" : "Read")
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: (mop->write ? "Previous write" : "Previous read")),
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mop->tid);
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PrintStack(mop->stack);
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}
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static void PrintThread(const ReportThread *rt) {
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if (rt->id == 0) // Little sense in describing the main thread.
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return;
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Printf("Goroutine %d (%s) created at:\n",
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rt->id, rt->running ? "running" : "finished");
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PrintStack(rt->stack);
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}
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void PrintReport(const ReportDesc *rep) {
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Printf("==================\n");
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Printf("WARNING: DATA RACE\n");
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for (uptr i = 0; i < rep->mops.Size(); i++)
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PrintMop(rep->mops[i], i == 0);
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for (uptr i = 0; i < rep->threads.Size(); i++)
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PrintThread(rep->threads[i]);
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Printf("==================\n");
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}
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#endif
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} // namespace __tsan
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