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c688b401d3
Provide a standardized way to handle the C++ "standard" headers customized to be used with current CMake C++ standard constraints. Offer under directory `cm` headers which can be used as direct replacements of the standard ones. For example: #include <cm/string_view> can be used safely for CMake development in place of the `<string_view>` standard header. Fixes: #19491
226 lines
4.9 KiB
C++
226 lines
4.9 KiB
C++
/* Distributed under the OSI-approved BSD 3-Clause License. See accompanying
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file Copyright.txt or https://cmake.org/licensing for details. */
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#ifndef cmWorkerPool_h
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#define cmWorkerPool_h
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#include "cmConfigure.h" // IWYU pragma: keep
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#include <cstdint>
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#include <string>
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#include <utility>
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#include <vector>
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#include <cm/memory>
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// -- Types
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class cmWorkerPoolInternal;
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/** @class cmWorkerPool
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* @brief Thread pool with job queue
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*/
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class cmWorkerPool
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{
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public:
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/**
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* Return value and output of an external process.
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*/
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struct ProcessResultT
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{
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void reset();
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bool error() const
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{
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return (ExitStatus != 0) || (TermSignal != 0) || !ErrorMessage.empty();
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}
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std::int64_t ExitStatus = 0;
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int TermSignal = 0;
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std::string StdOut;
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std::string StdErr;
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std::string ErrorMessage;
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};
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/**
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* Abstract job class for concurrent job processing.
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*/
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class JobT
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{
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public:
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JobT(JobT const&) = delete;
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JobT& operator=(JobT const&) = delete;
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/**
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* Virtual destructor.
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*/
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virtual ~JobT();
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/**
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* Fence job flag
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*
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* Fence jobs require that:
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* - all jobs before in the queue have been processed
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* - no jobs later in the queue will be processed before this job was
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* processed
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*/
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bool IsFence() const { return Fence_; }
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protected:
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/**
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* Protected default constructor
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*/
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JobT(bool fence = false)
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: Fence_(fence)
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{
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}
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/**
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* Abstract processing interface that must be implement in derived classes.
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*/
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virtual void Process() = 0;
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/**
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* Get the worker pool.
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* Only valid during the JobT::Process() call!
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*/
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cmWorkerPool* Pool() const { return Pool_; }
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/**
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* Get the user data.
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* Only valid during the JobT::Process() call!
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*/
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void* UserData() const { return Pool_->UserData(); };
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/**
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* Get the worker index.
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* This is the index of the thread processing this job and is in the range
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* [0..ThreadCount).
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* Concurrently processing jobs will never have the same WorkerIndex().
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* Only valid during the JobT::Process() call!
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*/
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unsigned int WorkerIndex() const { return WorkerIndex_; }
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/**
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* Run an external read only process.
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* Use only during JobT::Process() call!
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*/
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bool RunProcess(ProcessResultT& result,
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std::vector<std::string> const& command,
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std::string const& workingDirectory);
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private:
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//! Needs access to Work()
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friend class cmWorkerPoolInternal;
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//! Worker thread entry method.
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void Work(cmWorkerPool* pool, unsigned int workerIndex)
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{
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Pool_ = pool;
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WorkerIndex_ = workerIndex;
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this->Process();
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}
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private:
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cmWorkerPool* Pool_ = nullptr;
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unsigned int WorkerIndex_ = 0;
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bool Fence_ = false;
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};
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/**
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* Job handle type
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*/
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using JobHandleT = std::unique_ptr<JobT>;
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/**
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* Fence job base class
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*/
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class JobFenceT : public JobT
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{
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public:
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JobFenceT()
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: JobT(true)
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{
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}
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//! Does nothing
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void Process() override{};
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};
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/**
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* Fence job that aborts the worker pool.
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*
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* Useful as the last job in the job queue.
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*/
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class JobEndT : JobFenceT
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{
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public:
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//! Does nothing
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void Process() override { Pool()->Abort(); }
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};
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public:
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// -- Methods
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cmWorkerPool();
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~cmWorkerPool();
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/**
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* Number of worker threads.
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*/
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unsigned int ThreadCount() const { return ThreadCount_; }
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/**
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* Set the number of worker threads.
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*
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* Calling this method during Process() has no effect.
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*/
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void SetThreadCount(unsigned int threadCount);
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/**
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* Blocking function that starts threads to process all Jobs in the queue.
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*
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* This method blocks until a job calls the Abort() method.
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* @arg threadCount Number of threads to process jobs.
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* @arg userData Common user data pointer available in all Jobs.
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*/
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bool Process(void* userData = nullptr);
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/**
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* User data reference passed to Process().
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*
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* Only valid during Process().
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*/
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void* UserData() const { return UserData_; }
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// -- Job processing interface
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/**
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* Clears the job queue and aborts all worker threads.
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*
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* This method is thread safe and can be called from inside a job.
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*/
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void Abort();
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/**
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* Push job to the queue.
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*
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* This method is thread safe and can be called from inside a job or before
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* Process().
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*/
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bool PushJob(JobHandleT&& jobHandle);
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/**
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* Push job to the queue
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*
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* This method is thread safe and can be called from inside a job or before
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* Process().
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*/
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template <class T, typename... Args>
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bool EmplaceJob(Args&&... args)
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{
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return PushJob(cm::make_unique<T>(std::forward<Args>(args)...));
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}
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private:
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void* UserData_ = nullptr;
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unsigned int ThreadCount_ = 1;
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std::unique_ptr<cmWorkerPoolInternal> Int_;
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};
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#endif
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