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https://gitlab.winehq.org/wine/wine-gecko.git
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328 lines
8.1 KiB
C
328 lines
8.1 KiB
C
/* MtCoder.c -- Multi-thread Coder
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2009-03-26 : Igor Pavlov : Public domain */
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#include <stdio.h>
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#include "MtCoder.h"
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void LoopThread_Construct(CLoopThread *p)
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{
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Thread_Construct(&p->thread);
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Event_Construct(&p->startEvent);
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Event_Construct(&p->finishedEvent);
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}
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void LoopThread_Close(CLoopThread *p)
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{
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Thread_Close(&p->thread);
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Event_Close(&p->startEvent);
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Event_Close(&p->finishedEvent);
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}
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static THREAD_FUNC_RET_TYPE THREAD_FUNC_CALL_TYPE LoopThreadFunc(void *pp)
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{
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CLoopThread *p = (CLoopThread *)pp;
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for (;;)
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{
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if (Event_Wait(&p->startEvent) != 0)
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return SZ_ERROR_THREAD;
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if (p->stop)
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return 0;
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p->res = p->func(p->param);
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if (Event_Set(&p->finishedEvent) != 0)
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return SZ_ERROR_THREAD;
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}
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}
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WRes LoopThread_Create(CLoopThread *p)
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{
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p->stop = 0;
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RINOK(AutoResetEvent_CreateNotSignaled(&p->startEvent));
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RINOK(AutoResetEvent_CreateNotSignaled(&p->finishedEvent));
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return Thread_Create(&p->thread, LoopThreadFunc, p);
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}
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WRes LoopThread_StopAndWait(CLoopThread *p)
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{
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p->stop = 1;
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if (Event_Set(&p->startEvent) != 0)
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return SZ_ERROR_THREAD;
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return Thread_Wait(&p->thread);
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}
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WRes LoopThread_StartSubThread(CLoopThread *p) { return Event_Set(&p->startEvent); }
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WRes LoopThread_WaitSubThread(CLoopThread *p) { return Event_Wait(&p->finishedEvent); }
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static SRes Progress(ICompressProgress *p, UInt64 inSize, UInt64 outSize)
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{
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return (p && p->Progress(p, inSize, outSize) != SZ_OK) ? SZ_ERROR_PROGRESS : SZ_OK;
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}
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static void MtProgress_Init(CMtProgress *p, ICompressProgress *progress)
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{
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unsigned i;
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for (i = 0; i < NUM_MT_CODER_THREADS_MAX; i++)
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p->inSizes[i] = p->outSizes[i] = 0;
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p->totalInSize = p->totalOutSize = 0;
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p->progress = progress;
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p->res = SZ_OK;
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}
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static void MtProgress_Reinit(CMtProgress *p, unsigned index)
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{
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p->inSizes[index] = 0;
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p->outSizes[index] = 0;
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}
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#define UPDATE_PROGRESS(size, prev, total) \
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if (size != (UInt64)(Int64)-1) { total += size - prev; prev = size; }
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SRes MtProgress_Set(CMtProgress *p, unsigned index, UInt64 inSize, UInt64 outSize)
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{
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SRes res;
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CriticalSection_Enter(&p->cs);
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UPDATE_PROGRESS(inSize, p->inSizes[index], p->totalInSize)
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UPDATE_PROGRESS(outSize, p->outSizes[index], p->totalOutSize)
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if (p->res == SZ_OK)
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p->res = Progress(p->progress, p->totalInSize, p->totalOutSize);
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res = p->res;
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CriticalSection_Leave(&p->cs);
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return res;
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}
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static void MtProgress_SetError(CMtProgress *p, SRes res)
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{
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CriticalSection_Enter(&p->cs);
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if (p->res == SZ_OK)
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p->res = res;
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CriticalSection_Leave(&p->cs);
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}
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static void MtCoder_SetError(CMtCoder* p, SRes res)
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{
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CriticalSection_Enter(&p->cs);
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if (p->res == SZ_OK)
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p->res = res;
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CriticalSection_Leave(&p->cs);
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}
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/* ---------- MtThread ---------- */
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void CMtThread_Construct(CMtThread *p, CMtCoder *mtCoder)
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{
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p->mtCoder = mtCoder;
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p->outBuf = 0;
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p->inBuf = 0;
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Event_Construct(&p->canRead);
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Event_Construct(&p->canWrite);
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LoopThread_Construct(&p->thread);
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}
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#define RINOK_THREAD(x) { if((x) != 0) return SZ_ERROR_THREAD; }
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static void CMtThread_CloseEvents(CMtThread *p)
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{
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Event_Close(&p->canRead);
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Event_Close(&p->canWrite);
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}
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static void CMtThread_Destruct(CMtThread *p)
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{
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CMtThread_CloseEvents(p);
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if (Thread_WasCreated(&p->thread.thread))
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{
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LoopThread_StopAndWait(&p->thread);
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LoopThread_Close(&p->thread);
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}
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if (p->mtCoder->alloc)
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IAlloc_Free(p->mtCoder->alloc, p->outBuf);
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p->outBuf = 0;
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if (p->mtCoder->alloc)
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IAlloc_Free(p->mtCoder->alloc, p->inBuf);
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p->inBuf = 0;
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}
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#define MY_BUF_ALLOC(buf, size, newSize) \
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if (buf == 0 || size != newSize) \
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{ IAlloc_Free(p->mtCoder->alloc, buf); \
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size = newSize; buf = IAlloc_Alloc(p->mtCoder->alloc, size); \
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if (buf == 0) return SZ_ERROR_MEM; }
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static SRes CMtThread_Prepare(CMtThread *p)
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{
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MY_BUF_ALLOC(p->inBuf, p->inBufSize, p->mtCoder->blockSize)
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MY_BUF_ALLOC(p->outBuf, p->outBufSize, p->mtCoder->destBlockSize)
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p->stopReading = False;
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p->stopWriting = False;
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RINOK_THREAD(AutoResetEvent_CreateNotSignaled(&p->canRead));
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RINOK_THREAD(AutoResetEvent_CreateNotSignaled(&p->canWrite));
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return SZ_OK;
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}
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static SRes FullRead(ISeqInStream *stream, Byte *data, size_t *processedSize)
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{
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size_t size = *processedSize;
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*processedSize = 0;
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while (size != 0)
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{
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size_t curSize = size;
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SRes res = stream->Read(stream, data, &curSize);
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*processedSize += curSize;
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data += curSize;
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size -= curSize;
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RINOK(res);
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if (curSize == 0)
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return SZ_OK;
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}
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return SZ_OK;
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}
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#define GET_NEXT_THREAD(p) &p->mtCoder->threads[p->index == p->mtCoder->numThreads - 1 ? 0 : p->index + 1]
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static SRes MtThread_Process(CMtThread *p, Bool *stop)
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{
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CMtThread *next;
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*stop = True;
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if (Event_Wait(&p->canRead) != 0)
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return SZ_ERROR_THREAD;
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next = GET_NEXT_THREAD(p);
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if (p->stopReading)
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{
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next->stopReading = True;
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return Event_Set(&next->canRead) == 0 ? SZ_OK : SZ_ERROR_THREAD;
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}
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{
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size_t size = p->mtCoder->blockSize;
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size_t destSize = p->outBufSize;
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RINOK(FullRead(p->mtCoder->inStream, p->inBuf, &size));
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next->stopReading = *stop = (size != p->mtCoder->blockSize);
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if (Event_Set(&next->canRead) != 0)
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return SZ_ERROR_THREAD;
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RINOK(p->mtCoder->mtCallback->Code(p->mtCoder->mtCallback, p->index,
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p->outBuf, &destSize, p->inBuf, size, *stop));
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MtProgress_Reinit(&p->mtCoder->mtProgress, p->index);
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if (Event_Wait(&p->canWrite) != 0)
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return SZ_ERROR_THREAD;
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if (p->stopWriting)
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return SZ_ERROR_FAIL;
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if (p->mtCoder->outStream->Write(p->mtCoder->outStream, p->outBuf, destSize) != destSize)
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return SZ_ERROR_WRITE;
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return Event_Set(&next->canWrite) == 0 ? SZ_OK : SZ_ERROR_THREAD;
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}
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}
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static THREAD_FUNC_RET_TYPE THREAD_FUNC_CALL_TYPE ThreadFunc(void *pp)
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{
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CMtThread *p = (CMtThread *)pp;
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for (;;)
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{
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Bool stop;
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CMtThread *next = GET_NEXT_THREAD(p);
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SRes res = MtThread_Process(p, &stop);
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if (res != SZ_OK)
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{
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MtCoder_SetError(p->mtCoder, res);
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MtProgress_SetError(&p->mtCoder->mtProgress, res);
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next->stopReading = True;
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next->stopWriting = True;
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Event_Set(&next->canRead);
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Event_Set(&next->canWrite);
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return res;
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}
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if (stop)
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return 0;
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}
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}
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void MtCoder_Construct(CMtCoder* p)
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{
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unsigned i;
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p->alloc = 0;
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for (i = 0; i < NUM_MT_CODER_THREADS_MAX; i++)
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{
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CMtThread *t = &p->threads[i];
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t->index = i;
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CMtThread_Construct(t, p);
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}
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CriticalSection_Init(&p->cs);
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CriticalSection_Init(&p->mtProgress.cs);
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}
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void MtCoder_Destruct(CMtCoder* p)
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{
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unsigned i;
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for (i = 0; i < NUM_MT_CODER_THREADS_MAX; i++)
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CMtThread_Destruct(&p->threads[i]);
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CriticalSection_Delete(&p->cs);
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CriticalSection_Delete(&p->mtProgress.cs);
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}
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SRes MtCoder_Code(CMtCoder *p)
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{
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unsigned i, numThreads = p->numThreads;
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SRes res = SZ_OK;
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p->res = SZ_OK;
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MtProgress_Init(&p->mtProgress, p->progress);
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for (i = 0; i < numThreads; i++)
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{
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RINOK(CMtThread_Prepare(&p->threads[i]));
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}
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for (i = 0; i < numThreads; i++)
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{
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CMtThread *t = &p->threads[i];
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CLoopThread *lt = &t->thread;
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if (!Thread_WasCreated(<->thread))
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{
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lt->func = ThreadFunc;
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lt->param = t;
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if (LoopThread_Create(lt) != SZ_OK)
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{
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res = SZ_ERROR_THREAD;
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break;
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}
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}
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}
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if (res == SZ_OK)
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{
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unsigned j;
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for (i = 0; i < numThreads; i++)
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{
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CMtThread *t = &p->threads[i];
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if (LoopThread_StartSubThread(&t->thread) != SZ_OK || i == 10)
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{
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res = SZ_ERROR_THREAD;
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p->threads[0].stopReading = True;
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break;
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}
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}
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Event_Set(&p->threads[0].canWrite);
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Event_Set(&p->threads[0].canRead);
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for (j = 0; j < i; j++)
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LoopThread_WaitSubThread(&p->threads[j].thread);
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}
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for (i = 0; i < numThreads; i++)
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CMtThread_CloseEvents(&p->threads[i]);
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return (res == SZ_OK) ? p->res : res;
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}
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