6d5f763952
In many cases, the Mutexes and Monitors have to be marked "mutable"
because they're used to synchronize const accessor methods.
Small text segment improvement for Product builds:
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19726069 409960 392332 20528361 1393ce9 dart.arm.before
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22574821 600376 1782824 24958021 17cd445 dart.x64.after
Change-Id: I68f5cd5ad452044df8bfebd160910496036a3e6b
Reviewed-on: https://dart-review.googlesource.com/c/sdk/+/101745
Commit-Queue: Matthew Dempsky <mdempsky@google.com>
Reviewed-by: Vyacheslav Egorov <vegorov@google.com>
323 lines
9.2 KiB
C++
323 lines
9.2 KiB
C++
// Copyright (c) 2015, the Dart project authors. Please see the AUTHORS file
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// for details. All rights reserved. Use of this source code is governed by a
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// BSD-style license that can be found in the LICENSE file.
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#include "vm/os_thread.h"
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#include "platform/atomic.h"
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#include "vm/lockers.h"
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#include "vm/log.h"
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#include "vm/thread_interrupter.h"
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#include "vm/timeline.h"
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namespace dart {
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// The single thread local key which stores all the thread local data
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// for a thread.
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ThreadLocalKey OSThread::thread_key_ = kUnsetThreadLocalKey;
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OSThread* OSThread::thread_list_head_ = NULL;
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Mutex* OSThread::thread_list_lock_ = NULL;
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bool OSThread::creation_enabled_ = false;
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#if defined(HAS_C11_THREAD_LOCAL)
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thread_local ThreadState* OSThread::current_vm_thread_ = NULL;
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#endif
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OSThread::OSThread()
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: BaseThread(true),
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id_(OSThread::GetCurrentThreadId()),
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#if defined(DEBUG)
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join_id_(kInvalidThreadJoinId),
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#endif
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#ifdef SUPPORT_TIMELINE
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trace_id_(OSThread::GetCurrentThreadTraceId()),
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#endif
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name_(NULL),
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timeline_block_lock_(),
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timeline_block_(NULL),
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thread_list_next_(NULL),
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thread_interrupt_disabled_(1), // Thread interrupts disabled by default.
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log_(new class Log()),
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stack_base_(0),
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stack_limit_(0),
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stack_headroom_(0),
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thread_(NULL) {
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// Try to get accurate stack bounds from pthreads, etc.
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if (!GetCurrentStackBounds(&stack_limit_, &stack_base_)) {
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// Fall back to a guess based on the stack pointer.
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RefineStackBoundsFromSP(GetCurrentStackPointer());
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}
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stack_headroom_ = CalculateHeadroom(stack_base_ - stack_limit_);
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ASSERT(stack_base_ != 0);
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ASSERT(stack_limit_ != 0);
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ASSERT(stack_base_ > stack_limit_);
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ASSERT(stack_base_ > GetCurrentStackPointer());
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ASSERT(stack_limit_ < GetCurrentStackPointer());
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RELEASE_ASSERT(HasStackHeadroom());
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}
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OSThread* OSThread::CreateOSThread() {
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ASSERT(thread_list_lock_ != NULL);
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MutexLocker ml(thread_list_lock_);
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if (!creation_enabled_) {
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return NULL;
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}
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OSThread* os_thread = new OSThread();
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AddThreadToListLocked(os_thread);
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return os_thread;
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}
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OSThread::~OSThread() {
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if (!is_os_thread()) {
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// If the embedder enters an isolate on this thread and does not exit the
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// isolate, the thread local at thread_key_, which we are destructing here,
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// will contain a dart::Thread instead of a dart::OSThread.
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FATAL("Thread exited without calling Dart_ExitIsolate");
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}
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RemoveThreadFromList(this);
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delete log_;
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log_ = NULL;
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#if defined(SUPPORT_TIMELINE)
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if (Timeline::recorder() != NULL) {
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Timeline::recorder()->FinishBlock(timeline_block_);
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}
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#endif
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timeline_block_ = NULL;
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free(name_);
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}
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void OSThread::SetName(const char* name) {
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MutexLocker ml(thread_list_lock_);
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// Clear the old thread name.
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if (name_ != NULL) {
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free(name_);
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name_ = NULL;
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}
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set_name(name);
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}
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// Disable AdressSanitizer and SafeStack transformation on this function. In
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// particular, taking the address of a local gives an address on the stack
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// instead of an address in the shadow memory (AddressSanitizer) or the safe
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// stack (SafeStack).
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NO_SANITIZE_ADDRESS
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NO_SANITIZE_SAFE_STACK
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DART_NOINLINE
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uword OSThread::GetCurrentStackPointer() {
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uword stack_allocated_local = reinterpret_cast<uword>(&stack_allocated_local);
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return stack_allocated_local;
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}
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void OSThread::DisableThreadInterrupts() {
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ASSERT(OSThread::Current() == this);
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AtomicOperations::FetchAndIncrement(&thread_interrupt_disabled_);
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}
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void OSThread::EnableThreadInterrupts() {
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ASSERT(OSThread::Current() == this);
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uintptr_t old =
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AtomicOperations::FetchAndDecrement(&thread_interrupt_disabled_);
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if (FLAG_profiler && (old == 1)) {
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// We just decremented from 1 to 0.
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// Make sure the thread interrupter is awake.
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ThreadInterrupter::WakeUp();
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}
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if (old == 0) {
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// We just decremented from 0, this means we've got a mismatched pair
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// of calls to EnableThreadInterrupts and DisableThreadInterrupts.
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FATAL("Invalid call to OSThread::EnableThreadInterrupts()");
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}
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}
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bool OSThread::ThreadInterruptsEnabled() {
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return AtomicOperations::LoadRelaxed(&thread_interrupt_disabled_) == 0;
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}
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static void DeleteThread(void* thread) {
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delete reinterpret_cast<OSThread*>(thread);
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}
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void OSThread::Init() {
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// Allocate the global OSThread lock.
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if (thread_list_lock_ == NULL) {
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thread_list_lock_ = new Mutex();
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}
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ASSERT(thread_list_lock_ != NULL);
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// Create the thread local key.
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if (thread_key_ == kUnsetThreadLocalKey) {
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thread_key_ = CreateThreadLocal(DeleteThread);
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}
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ASSERT(thread_key_ != kUnsetThreadLocalKey);
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// Enable creation of OSThread structures in the VM.
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EnableOSThreadCreation();
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// Create a new OSThread strcture and set it as the TLS.
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OSThread* os_thread = CreateOSThread();
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ASSERT(os_thread != NULL);
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OSThread::SetCurrent(os_thread);
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os_thread->set_name("Dart_Initialize");
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}
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void OSThread::Cleanup() {
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// We cannot delete the thread local key and thread list lock, yet.
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// See the note on thread_list_lock_ in os_thread.h.
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#if 0
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if (thread_list_lock_ != NULL) {
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// Delete the thread local key.
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ASSERT(thread_key_ != kUnsetThreadLocalKey);
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DeleteThreadLocal(thread_key_);
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thread_key_ = kUnsetThreadLocalKey;
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// Delete the global OSThread lock.
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ASSERT(thread_list_lock_ != NULL);
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delete thread_list_lock_;
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thread_list_lock_ = NULL;
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}
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#endif
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}
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OSThread* OSThread::CreateAndSetUnknownThread() {
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ASSERT(OSThread::GetCurrentTLS() == NULL);
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OSThread* os_thread = CreateOSThread();
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if (os_thread != NULL) {
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OSThread::SetCurrent(os_thread);
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os_thread->set_name("Unknown");
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}
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return os_thread;
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}
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bool OSThread::IsThreadInList(ThreadId id) {
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if (id == OSThread::kInvalidThreadId) {
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return false;
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}
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OSThreadIterator it;
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while (it.HasNext()) {
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ASSERT(OSThread::thread_list_lock_->IsOwnedByCurrentThread());
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OSThread* t = it.Next();
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// An address test is not sufficient because the allocator may recycle
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// the address for another Thread. Test against the thread's id.
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if (t->id() == id) {
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return true;
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}
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}
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return false;
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}
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void OSThread::DisableOSThreadCreation() {
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MutexLocker ml(thread_list_lock_);
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creation_enabled_ = false;
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}
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void OSThread::EnableOSThreadCreation() {
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MutexLocker ml(thread_list_lock_);
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creation_enabled_ = true;
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}
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OSThread* OSThread::GetOSThreadFromThread(ThreadState* thread) {
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ASSERT(thread->os_thread() != NULL);
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return thread->os_thread();
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}
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void OSThread::AddThreadToListLocked(OSThread* thread) {
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ASSERT(thread != NULL);
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ASSERT(thread_list_lock_ != NULL);
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ASSERT(OSThread::thread_list_lock_->IsOwnedByCurrentThread());
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ASSERT(creation_enabled_);
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ASSERT(thread->thread_list_next_ == NULL);
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#if defined(DEBUG)
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{
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// Ensure that we aren't already in the list.
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OSThread* current = thread_list_head_;
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while (current != NULL) {
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ASSERT(current != thread);
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current = current->thread_list_next_;
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}
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}
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#endif
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// Insert at head of list.
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thread->thread_list_next_ = thread_list_head_;
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thread_list_head_ = thread;
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}
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void OSThread::RemoveThreadFromList(OSThread* thread) {
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bool final_thread = false;
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{
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ASSERT(thread != NULL);
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ASSERT(thread_list_lock_ != NULL);
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MutexLocker ml(thread_list_lock_);
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OSThread* current = thread_list_head_;
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OSThread* previous = NULL;
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// Scan across list and remove |thread|.
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while (current != NULL) {
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if (current == thread) {
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// We found |thread|, remove from list.
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if (previous == NULL) {
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thread_list_head_ = thread->thread_list_next_;
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} else {
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previous->thread_list_next_ = current->thread_list_next_;
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}
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thread->thread_list_next_ = NULL;
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final_thread = !creation_enabled_ && (thread_list_head_ == NULL);
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break;
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}
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previous = current;
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current = current->thread_list_next_;
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}
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}
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// Check if this is the last thread. The last thread does a cleanup
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// which removes the thread local key and the associated mutex.
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if (final_thread) {
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Cleanup();
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}
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}
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void OSThread::SetCurrentTLS(BaseThread* value) {
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// Provides thread-local destructors.
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SetThreadLocal(thread_key_, reinterpret_cast<uword>(value));
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#if defined(HAS_C11_THREAD_LOCAL)
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// Allows the C compiler more freedom to optimize.
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if ((value != NULL) && !value->is_os_thread()) {
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current_vm_thread_ = static_cast<Thread*>(value);
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} else {
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current_vm_thread_ = NULL;
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}
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#endif
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}
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OSThreadIterator::OSThreadIterator() {
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ASSERT(OSThread::thread_list_lock_ != NULL);
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// Lock the thread list while iterating.
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OSThread::thread_list_lock_->Lock();
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next_ = OSThread::thread_list_head_;
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}
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OSThreadIterator::~OSThreadIterator() {
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ASSERT(OSThread::thread_list_lock_ != NULL);
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// Unlock the thread list when done.
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OSThread::thread_list_lock_->Unlock();
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}
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bool OSThreadIterator::HasNext() const {
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ASSERT(OSThread::thread_list_lock_ != NULL);
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ASSERT(OSThread::thread_list_lock_->IsOwnedByCurrentThread());
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return next_ != NULL;
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}
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OSThread* OSThreadIterator::Next() {
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ASSERT(OSThread::thread_list_lock_ != NULL);
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ASSERT(OSThread::thread_list_lock_->IsOwnedByCurrentThread());
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OSThread* current = next_;
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next_ = next_->thread_list_next_;
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return current;
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}
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} // namespace dart
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