#include "util/concurrent_task_limiter_impl.h"
#include "rocksdb/concurrent_task_limiter.h"
namespace ROCKSDB_NAMESPACE {
ConcurrentTaskLimiterImpl::ConcurrentTaskLimiterImpl(
const std::string& name, int32_t max_outstanding_task)
: name_(name),
max_outstanding_tasks_{max_outstanding_task},
outstanding_tasks_{0} {}
ConcurrentTaskLimiterImpl::~ConcurrentTaskLimiterImpl() {
assert(outstanding_tasks_ == 0);
}
const std::string& ConcurrentTaskLimiterImpl::GetName() const { return name_; }
void ConcurrentTaskLimiterImpl::SetMaxOutstandingTask(int32_t limit) {
max_outstanding_tasks_.store(limit, std::memory_order_relaxed);
}
void ConcurrentTaskLimiterImpl::ResetMaxOutstandingTask() {
max_outstanding_tasks_.store(-1, std::memory_order_relaxed);
}
int32_t ConcurrentTaskLimiterImpl::GetOutstandingTask() const {
return outstanding_tasks_.load(std::memory_order_relaxed);
}
std::unique_ptr<TaskLimiterToken> ConcurrentTaskLimiterImpl::GetToken(
bool force) {
int32_t limit = max_outstanding_tasks_.load(std::memory_order_relaxed);
int32_t tasks = outstanding_tasks_.load(std::memory_order_relaxed);
while (force || limit < 0 || tasks < limit) {
if (outstanding_tasks_.compare_exchange_weak(tasks, tasks + 1)) {
return std::unique_ptr<TaskLimiterToken>(new TaskLimiterToken(this));
}
}
return nullptr;
}
ConcurrentTaskLimiter* NewConcurrentTaskLimiter(const std::string& name,
int32_t limit) {
return new ConcurrentTaskLimiterImpl(name, limit);
}
TaskLimiterToken::~TaskLimiterToken() {
--limiter_->outstanding_tasks_;
assert(limiter_->outstanding_tasks_ >= 0);
}
}