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252 lines
7.2 KiB
252 lines
7.2 KiB
//===-- tsan_interface_java.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 a part of ThreadSanitizer (TSan), a race detector.
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//
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//===----------------------------------------------------------------------===//
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#include "tsan_interface_java.h"
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#include "tsan_rtl.h"
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#include "tsan_mutex.h"
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#include "sanitizer_common/sanitizer_internal_defs.h"
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#include "sanitizer_common/sanitizer_common.h"
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#include "sanitizer_common/sanitizer_placement_new.h"
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#include "sanitizer_common/sanitizer_stacktrace.h"
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#include "sanitizer_common/sanitizer_procmaps.h"
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using namespace __tsan; // NOLINT
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const jptr kHeapAlignment = 8;
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namespace __tsan {
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struct JavaContext {
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const uptr heap_begin;
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const uptr heap_size;
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JavaContext(jptr heap_begin, jptr heap_size)
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: heap_begin(heap_begin)
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, heap_size(heap_size) {
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}
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};
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class ScopedJavaFunc {
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public:
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ScopedJavaFunc(ThreadState *thr, uptr pc)
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: thr_(thr) {
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Initialize(thr_);
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FuncEntry(thr, pc);
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}
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~ScopedJavaFunc() {
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FuncExit(thr_);
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// FIXME(dvyukov): process pending signals.
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}
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private:
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ThreadState *thr_;
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};
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static u64 jctx_buf[sizeof(JavaContext) / sizeof(u64) + 1];
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static JavaContext *jctx;
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} // namespace __tsan
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#define SCOPED_JAVA_FUNC(func) \
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ThreadState *thr = cur_thread(); \
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const uptr caller_pc = GET_CALLER_PC(); \
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const uptr pc = StackTrace::GetCurrentPc(); \
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(void)pc; \
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ScopedJavaFunc scoped(thr, caller_pc); \
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/**/
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void __tsan_java_init(jptr heap_begin, jptr heap_size) {
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SCOPED_JAVA_FUNC(__tsan_java_init);
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DPrintf("#%d: java_init(%p, %p)\n", thr->tid, heap_begin, heap_size);
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CHECK_EQ(jctx, 0);
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CHECK_GT(heap_begin, 0);
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CHECK_GT(heap_size, 0);
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CHECK_EQ(heap_begin % kHeapAlignment, 0);
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CHECK_EQ(heap_size % kHeapAlignment, 0);
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CHECK_LT(heap_begin, heap_begin + heap_size);
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jctx = new(jctx_buf) JavaContext(heap_begin, heap_size);
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}
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int __tsan_java_fini() {
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SCOPED_JAVA_FUNC(__tsan_java_fini);
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DPrintf("#%d: java_fini()\n", thr->tid);
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CHECK_NE(jctx, 0);
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// FIXME(dvyukov): this does not call atexit() callbacks.
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int status = Finalize(thr);
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DPrintf("#%d: java_fini() = %d\n", thr->tid, status);
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return status;
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}
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void __tsan_java_alloc(jptr ptr, jptr size) {
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SCOPED_JAVA_FUNC(__tsan_java_alloc);
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DPrintf("#%d: java_alloc(%p, %p)\n", thr->tid, ptr, size);
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CHECK_NE(jctx, 0);
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CHECK_NE(size, 0);
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CHECK_EQ(ptr % kHeapAlignment, 0);
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CHECK_EQ(size % kHeapAlignment, 0);
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CHECK_GE(ptr, jctx->heap_begin);
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CHECK_LE(ptr + size, jctx->heap_begin + jctx->heap_size);
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OnUserAlloc(thr, pc, ptr, size, false);
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}
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void __tsan_java_free(jptr ptr, jptr size) {
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SCOPED_JAVA_FUNC(__tsan_java_free);
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DPrintf("#%d: java_free(%p, %p)\n", thr->tid, ptr, size);
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CHECK_NE(jctx, 0);
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CHECK_NE(size, 0);
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CHECK_EQ(ptr % kHeapAlignment, 0);
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CHECK_EQ(size % kHeapAlignment, 0);
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CHECK_GE(ptr, jctx->heap_begin);
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CHECK_LE(ptr + size, jctx->heap_begin + jctx->heap_size);
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ctx->metamap.FreeRange(thr->proc(), ptr, size);
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}
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void __tsan_java_move(jptr src, jptr dst, jptr size) {
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SCOPED_JAVA_FUNC(__tsan_java_move);
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DPrintf("#%d: java_move(%p, %p, %p)\n", thr->tid, src, dst, size);
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CHECK_NE(jctx, 0);
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CHECK_NE(size, 0);
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CHECK_EQ(src % kHeapAlignment, 0);
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CHECK_EQ(dst % kHeapAlignment, 0);
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CHECK_EQ(size % kHeapAlignment, 0);
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CHECK_GE(src, jctx->heap_begin);
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CHECK_LE(src + size, jctx->heap_begin + jctx->heap_size);
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CHECK_GE(dst, jctx->heap_begin);
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CHECK_LE(dst + size, jctx->heap_begin + jctx->heap_size);
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CHECK_NE(dst, src);
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CHECK_NE(size, 0);
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// Assuming it's not running concurrently with threads that do
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// memory accesses and mutex operations (stop-the-world phase).
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ctx->metamap.MoveMemory(src, dst, size);
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// Move shadow.
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u64 *s = (u64*)MemToShadow(src);
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u64 *d = (u64*)MemToShadow(dst);
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u64 *send = (u64*)MemToShadow(src + size);
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uptr inc = 1;
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if (dst > src) {
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s = (u64*)MemToShadow(src + size) - 1;
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d = (u64*)MemToShadow(dst + size) - 1;
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send = (u64*)MemToShadow(src) - 1;
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inc = -1;
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}
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for (; s != send; s += inc, d += inc) {
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*d = *s;
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*s = 0;
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}
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}
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void __tsan_java_finalize() {
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SCOPED_JAVA_FUNC(__tsan_java_finalize);
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DPrintf("#%d: java_mutex_finalize()\n", thr->tid);
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AcquireGlobal(thr, 0);
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}
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void __tsan_java_mutex_lock(jptr addr) {
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SCOPED_JAVA_FUNC(__tsan_java_mutex_lock);
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DPrintf("#%d: java_mutex_lock(%p)\n", thr->tid, addr);
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CHECK_NE(jctx, 0);
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CHECK_GE(addr, jctx->heap_begin);
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CHECK_LT(addr, jctx->heap_begin + jctx->heap_size);
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MutexCreate(thr, pc, addr, true, true, true);
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MutexLock(thr, pc, addr);
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}
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void __tsan_java_mutex_unlock(jptr addr) {
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SCOPED_JAVA_FUNC(__tsan_java_mutex_unlock);
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DPrintf("#%d: java_mutex_unlock(%p)\n", thr->tid, addr);
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CHECK_NE(jctx, 0);
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CHECK_GE(addr, jctx->heap_begin);
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CHECK_LT(addr, jctx->heap_begin + jctx->heap_size);
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MutexUnlock(thr, pc, addr);
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}
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void __tsan_java_mutex_read_lock(jptr addr) {
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SCOPED_JAVA_FUNC(__tsan_java_mutex_read_lock);
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DPrintf("#%d: java_mutex_read_lock(%p)\n", thr->tid, addr);
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CHECK_NE(jctx, 0);
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CHECK_GE(addr, jctx->heap_begin);
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CHECK_LT(addr, jctx->heap_begin + jctx->heap_size);
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MutexCreate(thr, pc, addr, true, true, true);
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MutexReadLock(thr, pc, addr);
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}
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void __tsan_java_mutex_read_unlock(jptr addr) {
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SCOPED_JAVA_FUNC(__tsan_java_mutex_read_unlock);
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DPrintf("#%d: java_mutex_read_unlock(%p)\n", thr->tid, addr);
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CHECK_NE(jctx, 0);
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CHECK_GE(addr, jctx->heap_begin);
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CHECK_LT(addr, jctx->heap_begin + jctx->heap_size);
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MutexReadUnlock(thr, pc, addr);
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}
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void __tsan_java_mutex_lock_rec(jptr addr, int rec) {
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SCOPED_JAVA_FUNC(__tsan_java_mutex_lock_rec);
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DPrintf("#%d: java_mutex_lock_rec(%p, %d)\n", thr->tid, addr, rec);
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CHECK_NE(jctx, 0);
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CHECK_GE(addr, jctx->heap_begin);
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CHECK_LT(addr, jctx->heap_begin + jctx->heap_size);
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CHECK_GT(rec, 0);
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MutexCreate(thr, pc, addr, true, true, true);
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MutexLock(thr, pc, addr, rec);
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}
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int __tsan_java_mutex_unlock_rec(jptr addr) {
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SCOPED_JAVA_FUNC(__tsan_java_mutex_unlock_rec);
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DPrintf("#%d: java_mutex_unlock_rec(%p)\n", thr->tid, addr);
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CHECK_NE(jctx, 0);
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CHECK_GE(addr, jctx->heap_begin);
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CHECK_LT(addr, jctx->heap_begin + jctx->heap_size);
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return MutexUnlock(thr, pc, addr, true);
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}
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void __tsan_java_acquire(jptr addr) {
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SCOPED_JAVA_FUNC(__tsan_java_acquire);
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DPrintf("#%d: java_acquire(%p)\n", thr->tid, addr);
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CHECK_NE(jctx, 0);
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CHECK_GE(addr, jctx->heap_begin);
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CHECK_LT(addr, jctx->heap_begin + jctx->heap_size);
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Acquire(thr, caller_pc, addr);
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}
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void __tsan_java_release(jptr addr) {
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SCOPED_JAVA_FUNC(__tsan_java_release);
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DPrintf("#%d: java_release(%p)\n", thr->tid, addr);
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CHECK_NE(jctx, 0);
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CHECK_GE(addr, jctx->heap_begin);
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CHECK_LT(addr, jctx->heap_begin + jctx->heap_size);
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Release(thr, caller_pc, addr);
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}
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void __tsan_java_release_store(jptr addr) {
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SCOPED_JAVA_FUNC(__tsan_java_release);
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DPrintf("#%d: java_release_store(%p)\n", thr->tid, addr);
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CHECK_NE(jctx, 0);
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CHECK_GE(addr, jctx->heap_begin);
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CHECK_LT(addr, jctx->heap_begin + jctx->heap_size);
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ReleaseStore(thr, caller_pc, addr);
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}
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