Don't do work inside assert(). Ever.
The Mac crash key manipulation code was intended to be thread-safe through the provision of a mutex. The mutex operations were done inside an assert(). assert() is a no-op in NDEBUG (release) builds. Therefore, in release builds, these operations were occurring without being protected by any mutex at all, and were nowhere near thread-safe. BUG=chromium:331268 R=rsesek@chromium.org Review URL: https://breakpad.appspot.com/1034002 git-svn-id: http://google-breakpad.googlecode.com/svn/trunk@1270 4c0a9323-5329-0410-9bdc-e9ce6186880e
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2 changed files with 26 additions and 32 deletions
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@ -31,6 +31,7 @@
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#import "client/ios/Breakpad.h"
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#include <assert.h>
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#import <Foundation/Foundation.h>
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#include <pthread.h>
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#include <sys/stat.h>
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@ -91,36 +92,32 @@ pthread_mutex_t gDictionaryMutex;
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// ProtectedMemoryLocker will unprotect this block after taking the lock.
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// Its destructor will first re-protect the memory then release the lock.
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class ProtectedMemoryLocker {
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public:
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// allocator may be NULL, in which case no Protect() or Unprotect() calls
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// will be made, but a lock will still be taken
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public:
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ProtectedMemoryLocker(pthread_mutex_t *mutex,
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ProtectedMemoryAllocator *allocator)
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: mutex_(mutex), allocator_(allocator) {
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: mutex_(mutex),
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allocator_(allocator) {
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// Lock the mutex
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assert(pthread_mutex_lock(mutex_) == 0);
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int rv = pthread_mutex_lock(mutex_);
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assert(rv == 0);
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// Unprotect the memory
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if (allocator_ ) {
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allocator_->Unprotect();
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}
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allocator_->Unprotect();
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}
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~ProtectedMemoryLocker() {
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// First protect the memory
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if (allocator_) {
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allocator_->Protect();
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}
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allocator_->Protect();
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// Then unlock the mutex
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assert(pthread_mutex_unlock(mutex_) == 0);
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int rv = pthread_mutex_unlock(mutex_);
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assert(rv == 0);
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};
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private:
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// Keep anybody from ever creating one of these things not on the stack.
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ProtectedMemoryLocker() { }
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private:
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ProtectedMemoryLocker();
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ProtectedMemoryLocker(const ProtectedMemoryLocker&);
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ProtectedMemoryLocker & operator=(ProtectedMemoryLocker&);
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ProtectedMemoryLocker& operator=(const ProtectedMemoryLocker&);
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pthread_mutex_t *mutex_;
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ProtectedMemoryAllocator *allocator_;
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@ -33,6 +33,7 @@
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#import "client/mac/Framework/Breakpad.h"
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#include <assert.h>
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#import <Foundation/Foundation.h>
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#include <pthread.h>
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#include <sys/stat.h>
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@ -95,36 +96,32 @@ pthread_mutex_t gDictionaryMutex;
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// ProtectedMemoryLocker will unprotect this block after taking the lock.
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// Its destructor will first re-protect the memory then release the lock.
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class ProtectedMemoryLocker {
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public:
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// allocator may be NULL, in which case no Protect() or Unprotect() calls
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// will be made, but a lock will still be taken
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public:
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ProtectedMemoryLocker(pthread_mutex_t *mutex,
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ProtectedMemoryAllocator *allocator)
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: mutex_(mutex), allocator_(allocator) {
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: mutex_(mutex),
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allocator_(allocator) {
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// Lock the mutex
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assert(pthread_mutex_lock(mutex_) == 0);
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int rv = pthread_mutex_lock(mutex_);
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assert(rv == 0);
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// Unprotect the memory
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if (allocator_ ) {
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allocator_->Unprotect();
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}
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allocator_->Unprotect();
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}
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~ProtectedMemoryLocker() {
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// First protect the memory
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if (allocator_) {
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allocator_->Protect();
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}
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allocator_->Protect();
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// Then unlock the mutex
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assert(pthread_mutex_unlock(mutex_) == 0);
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int rv = pthread_mutex_unlock(mutex_);
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assert(rv == 0);
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};
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private:
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// Keep anybody from ever creating one of these things not on the stack.
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ProtectedMemoryLocker() { }
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private:
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ProtectedMemoryLocker();
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ProtectedMemoryLocker(const ProtectedMemoryLocker&);
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ProtectedMemoryLocker & operator=(ProtectedMemoryLocker&);
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ProtectedMemoryLocker& operator=(const ProtectedMemoryLocker&);
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pthread_mutex_t *mutex_;
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ProtectedMemoryAllocator *allocator_;
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