Merge pull request #3786 from facebook/fix_flexarray_cctx
Remove FlexArray pattern from ZSTDMT
This commit is contained in:
@@ -178,6 +178,7 @@ static void ZSTD_freeCCtxContent(ZSTD_CCtx* cctx)
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size_t ZSTD_freeCCtx(ZSTD_CCtx* cctx)
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{
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DEBUGLOG(3, "ZSTD_freeCCtx (address: %p)", (void*)cctx);
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if (cctx==NULL) return 0; /* support free on NULL */
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RETURN_ERROR_IF(cctx->staticSize, memory_allocation,
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"not compatible with static CCtx");
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@@ -15,17 +15,13 @@
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#endif
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/* ====== Constants ====== */
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#define ZSTDMT_OVERLAPLOG_DEFAULT 0
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/* ====== Dependencies ====== */
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#include "../common/allocations.h" /* ZSTD_customMalloc, ZSTD_customCalloc, ZSTD_customFree */
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#include "../common/allocations.h" /* ZSTD_customMalloc, ZSTD_customCalloc, ZSTD_customFree */
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#include "../common/zstd_deps.h" /* ZSTD_memcpy, ZSTD_memset, INT_MAX, UINT_MAX */
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#include "../common/mem.h" /* MEM_STATIC */
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#include "../common/pool.h" /* threadpool */
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#include "../common/threading.h" /* mutex */
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#include "zstd_compress_internal.h" /* MIN, ERROR, ZSTD_*, ZSTD_highbit32 */
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#include "zstd_compress_internal.h" /* MIN, ERROR, ZSTD_*, ZSTD_highbit32 */
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#include "zstd_ldm.h"
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#include "zstdmt_compress.h"
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@@ -100,18 +96,39 @@ typedef struct ZSTDMT_bufferPool_s {
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unsigned totalBuffers;
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unsigned nbBuffers;
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ZSTD_customMem cMem;
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buffer_t bTable[1]; /* variable size */
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buffer_t* buffers;
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} ZSTDMT_bufferPool;
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static void ZSTDMT_freeBufferPool(ZSTDMT_bufferPool* bufPool)
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{
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unsigned u;
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DEBUGLOG(3, "ZSTDMT_freeBufferPool (address:%08X)", (U32)(size_t)bufPool);
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if (!bufPool) return; /* compatibility with free on NULL */
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if (bufPool->buffers) {
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for (u=0; u<bufPool->totalBuffers; u++) {
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DEBUGLOG(4, "free buffer %2u (address:%08X)", u, (U32)(size_t)bufPool->buffers[u].start);
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ZSTD_customFree(bufPool->buffers[u].start, bufPool->cMem);
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}
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ZSTD_customFree(bufPool->buffers, bufPool->cMem);
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}
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ZSTD_pthread_mutex_destroy(&bufPool->poolMutex);
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ZSTD_customFree(bufPool, bufPool->cMem);
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}
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static ZSTDMT_bufferPool* ZSTDMT_createBufferPool(unsigned maxNbBuffers, ZSTD_customMem cMem)
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{
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ZSTDMT_bufferPool* const bufPool = (ZSTDMT_bufferPool*)ZSTD_customCalloc(
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sizeof(ZSTDMT_bufferPool) + (maxNbBuffers-1) * sizeof(buffer_t), cMem);
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ZSTDMT_bufferPool* const bufPool =
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(ZSTDMT_bufferPool*)ZSTD_customCalloc(sizeof(ZSTDMT_bufferPool), cMem);
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if (bufPool==NULL) return NULL;
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if (ZSTD_pthread_mutex_init(&bufPool->poolMutex, NULL)) {
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ZSTD_customFree(bufPool, cMem);
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return NULL;
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}
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bufPool->buffers = (buffer_t*)ZSTD_customCalloc(maxNbBuffers * sizeof(buffer_t), cMem);
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if (bufPool->buffers==NULL) {
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ZSTDMT_freeBufferPool(bufPool);
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return NULL;
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}
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bufPool->bufferSize = 64 KB;
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bufPool->totalBuffers = maxNbBuffers;
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bufPool->nbBuffers = 0;
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@@ -119,32 +136,19 @@ static ZSTDMT_bufferPool* ZSTDMT_createBufferPool(unsigned maxNbBuffers, ZSTD_cu
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return bufPool;
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}
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static void ZSTDMT_freeBufferPool(ZSTDMT_bufferPool* bufPool)
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{
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unsigned u;
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DEBUGLOG(3, "ZSTDMT_freeBufferPool (address:%08X)", (U32)(size_t)bufPool);
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if (!bufPool) return; /* compatibility with free on NULL */
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for (u=0; u<bufPool->totalBuffers; u++) {
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DEBUGLOG(4, "free buffer %2u (address:%08X)", u, (U32)(size_t)bufPool->bTable[u].start);
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ZSTD_customFree(bufPool->bTable[u].start, bufPool->cMem);
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}
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ZSTD_pthread_mutex_destroy(&bufPool->poolMutex);
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ZSTD_customFree(bufPool, bufPool->cMem);
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}
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/* only works at initialization, not during compression */
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static size_t ZSTDMT_sizeof_bufferPool(ZSTDMT_bufferPool* bufPool)
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{
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size_t const poolSize = sizeof(*bufPool)
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+ (bufPool->totalBuffers - 1) * sizeof(buffer_t);
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size_t const poolSize = sizeof(*bufPool);
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size_t const arraySize = bufPool->totalBuffers * sizeof(buffer_t);
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unsigned u;
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size_t totalBufferSize = 0;
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ZSTD_pthread_mutex_lock(&bufPool->poolMutex);
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for (u=0; u<bufPool->totalBuffers; u++)
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totalBufferSize += bufPool->bTable[u].capacity;
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totalBufferSize += bufPool->buffers[u].capacity;
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ZSTD_pthread_mutex_unlock(&bufPool->poolMutex);
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return poolSize + totalBufferSize;
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return poolSize + arraySize + totalBufferSize;
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}
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/* ZSTDMT_setBufferSize() :
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@@ -187,9 +191,9 @@ static buffer_t ZSTDMT_getBuffer(ZSTDMT_bufferPool* bufPool)
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DEBUGLOG(5, "ZSTDMT_getBuffer: bSize = %u", (U32)bufPool->bufferSize);
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ZSTD_pthread_mutex_lock(&bufPool->poolMutex);
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if (bufPool->nbBuffers) { /* try to use an existing buffer */
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buffer_t const buf = bufPool->bTable[--(bufPool->nbBuffers)];
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buffer_t const buf = bufPool->buffers[--(bufPool->nbBuffers)];
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size_t const availBufferSize = buf.capacity;
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bufPool->bTable[bufPool->nbBuffers] = g_nullBuffer;
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bufPool->buffers[bufPool->nbBuffers] = g_nullBuffer;
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if ((availBufferSize >= bSize) & ((availBufferSize>>3) <= bSize)) {
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/* large enough, but not too much */
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DEBUGLOG(5, "ZSTDMT_getBuffer: provide buffer %u of size %u",
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@@ -250,14 +254,14 @@ static void ZSTDMT_releaseBuffer(ZSTDMT_bufferPool* bufPool, buffer_t buf)
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if (buf.start == NULL) return; /* compatible with release on NULL */
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ZSTD_pthread_mutex_lock(&bufPool->poolMutex);
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if (bufPool->nbBuffers < bufPool->totalBuffers) {
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bufPool->bTable[bufPool->nbBuffers++] = buf; /* stored for later use */
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bufPool->buffers[bufPool->nbBuffers++] = buf; /* stored for later use */
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DEBUGLOG(5, "ZSTDMT_releaseBuffer: stored buffer of size %u in slot %u",
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(U32)buf.capacity, (U32)(bufPool->nbBuffers-1));
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ZSTD_pthread_mutex_unlock(&bufPool->poolMutex);
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return;
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}
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ZSTD_pthread_mutex_unlock(&bufPool->poolMutex);
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/* Reached bufferPool capacity (should not happen) */
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/* Reached bufferPool capacity (note: should not happen) */
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DEBUGLOG(5, "ZSTDMT_releaseBuffer: pool capacity reached => freeing ");
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ZSTD_customFree(buf.start, bufPool->cMem);
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}
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@@ -350,16 +354,20 @@ typedef struct {
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int totalCCtx;
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int availCCtx;
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ZSTD_customMem cMem;
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ZSTD_CCtx* cctx[1]; /* variable size */
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ZSTD_CCtx** cctxs;
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} ZSTDMT_CCtxPool;
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/* note : all CCtx borrowed from the pool should be released back to the pool _before_ freeing the pool */
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/* note : all CCtx borrowed from the pool must be reverted back to the pool _before_ freeing the pool */
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static void ZSTDMT_freeCCtxPool(ZSTDMT_CCtxPool* pool)
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{
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int cid;
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for (cid=0; cid<pool->totalCCtx; cid++)
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ZSTD_freeCCtx(pool->cctx[cid]); /* note : compatible with free on NULL */
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if (!pool) return;
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ZSTD_pthread_mutex_destroy(&pool->poolMutex);
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if (pool->cctxs) {
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for (cid=0; cid<pool->totalCCtx; cid++)
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ZSTD_freeCCtx(pool->cctxs[cid]); /* free compatible with NULL */
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ZSTD_customFree(pool->cctxs, pool->cMem);
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}
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ZSTD_customFree(pool, pool->cMem);
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}
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@@ -368,19 +376,24 @@ static void ZSTDMT_freeCCtxPool(ZSTDMT_CCtxPool* pool)
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static ZSTDMT_CCtxPool* ZSTDMT_createCCtxPool(int nbWorkers,
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ZSTD_customMem cMem)
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{
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ZSTDMT_CCtxPool* const cctxPool = (ZSTDMT_CCtxPool*) ZSTD_customCalloc(
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sizeof(ZSTDMT_CCtxPool) + (nbWorkers-1)*sizeof(ZSTD_CCtx*), cMem);
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ZSTDMT_CCtxPool* const cctxPool =
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(ZSTDMT_CCtxPool*) ZSTD_customCalloc(sizeof(ZSTDMT_CCtxPool), cMem);
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assert(nbWorkers > 0);
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if (!cctxPool) return NULL;
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if (ZSTD_pthread_mutex_init(&cctxPool->poolMutex, NULL)) {
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ZSTD_customFree(cctxPool, cMem);
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return NULL;
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}
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cctxPool->cMem = cMem;
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cctxPool->totalCCtx = nbWorkers;
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cctxPool->cctxs = (ZSTD_CCtx**)ZSTD_customCalloc(nbWorkers * sizeof(ZSTD_CCtx*), cMem);
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if (!cctxPool->cctxs) {
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ZSTDMT_freeCCtxPool(cctxPool);
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return NULL;
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}
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cctxPool->cMem = cMem;
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cctxPool->cctxs[0] = ZSTD_createCCtx_advanced(cMem);
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if (!cctxPool->cctxs[0]) { ZSTDMT_freeCCtxPool(cctxPool); return NULL; }
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cctxPool->availCCtx = 1; /* at least one cctx for single-thread mode */
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cctxPool->cctx[0] = ZSTD_createCCtx_advanced(cMem);
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if (!cctxPool->cctx[0]) { ZSTDMT_freeCCtxPool(cctxPool); return NULL; }
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DEBUGLOG(3, "cctxPool created, with %u workers", nbWorkers);
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return cctxPool;
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}
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@@ -402,16 +415,16 @@ static size_t ZSTDMT_sizeof_CCtxPool(ZSTDMT_CCtxPool* cctxPool)
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{
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ZSTD_pthread_mutex_lock(&cctxPool->poolMutex);
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{ unsigned const nbWorkers = cctxPool->totalCCtx;
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size_t const poolSize = sizeof(*cctxPool)
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+ (nbWorkers-1) * sizeof(ZSTD_CCtx*);
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unsigned u;
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size_t const poolSize = sizeof(*cctxPool);
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size_t const arraySize = cctxPool->totalCCtx * sizeof(ZSTD_CCtx*);
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size_t totalCCtxSize = 0;
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unsigned u;
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for (u=0; u<nbWorkers; u++) {
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totalCCtxSize += ZSTD_sizeof_CCtx(cctxPool->cctx[u]);
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totalCCtxSize += ZSTD_sizeof_CCtx(cctxPool->cctxs[u]);
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}
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ZSTD_pthread_mutex_unlock(&cctxPool->poolMutex);
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assert(nbWorkers > 0);
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return poolSize + totalCCtxSize;
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return poolSize + arraySize + totalCCtxSize;
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}
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}
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@@ -421,7 +434,7 @@ static ZSTD_CCtx* ZSTDMT_getCCtx(ZSTDMT_CCtxPool* cctxPool)
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ZSTD_pthread_mutex_lock(&cctxPool->poolMutex);
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if (cctxPool->availCCtx) {
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cctxPool->availCCtx--;
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{ ZSTD_CCtx* const cctx = cctxPool->cctx[cctxPool->availCCtx];
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{ ZSTD_CCtx* const cctx = cctxPool->cctxs[cctxPool->availCCtx];
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ZSTD_pthread_mutex_unlock(&cctxPool->poolMutex);
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return cctx;
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} }
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@@ -435,7 +448,7 @@ static void ZSTDMT_releaseCCtx(ZSTDMT_CCtxPool* pool, ZSTD_CCtx* cctx)
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if (cctx==NULL) return; /* compatibility with release on NULL */
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ZSTD_pthread_mutex_lock(&pool->poolMutex);
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if (pool->availCCtx < pool->totalCCtx)
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pool->cctx[pool->availCCtx++] = cctx;
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pool->cctxs[pool->availCCtx++] = cctx;
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else {
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/* pool overflow : should not happen, since totalCCtx==nbWorkers */
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DEBUGLOG(4, "CCtx pool overflow : free cctx");
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+8
-6
@@ -1119,6 +1119,9 @@ static int basicUnitTests(U32 const seed, double compressibility)
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size_t const srcSize1 = kWindowSize / 2;
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size_t const srcSize2 = kWindowSize * 10;
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CHECK(cctx!=NULL);
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CHECK(dctx!=NULL);
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CHECK(dict!=NULL);
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if (CNBuffSize < dictSize) goto _output_error;
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RDG_genBuffer(dict, dictSize, 0.5, 0.5, seed);
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@@ -1140,6 +1143,7 @@ static int basicUnitTests(U32 const seed, double compressibility)
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cSize = ZSTD_compress2(cctx, compressedBuffer, compressedBufferSize, CNBuffer, srcSize1);
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CHECK_Z(cSize);
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CHECK_Z(ZSTD_decompress_usingDict(dctx, decodedBuffer, CNBuffSize, compressedBuffer, cSize, dict, dictSize));
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cSize = ZSTD_compress2(cctx, compressedBuffer, compressedBufferSize, CNBuffer, srcSize2);
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/* Streaming decompression to catch out of bounds offsets. */
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{
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@@ -1153,24 +1157,22 @@ static int basicUnitTests(U32 const seed, double compressibility)
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CHECK_Z(ZSTD_CCtx_setParameter(cctx, ZSTD_c_nbWorkers, 2));
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/* Round trip once with a dictionary. */
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CHECK_Z(ZSTD_CCtx_refPrefix(cctx, dict, dictSize));
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{
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ZSTD_inBuffer in = {CNBuffer, srcSize1, 0};
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{ ZSTD_inBuffer in = {CNBuffer, srcSize1, 0};
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ZSTD_outBuffer out = {compressedBuffer, compressedBufferSize, 0};
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CHECK_Z(ZSTD_compressStream2(cctx, &out, &in, ZSTD_e_flush));
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CHECK_Z(ZSTD_compressStream2(cctx, &out, &in, ZSTD_e_end));
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cSize = out.pos;
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}
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CHECK_Z(ZSTD_decompress_usingDict(dctx, decodedBuffer, CNBuffSize, compressedBuffer, cSize, dict, dictSize));
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{
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ZSTD_inBuffer in = {CNBuffer, srcSize2, 0};
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{ ZSTD_inBuffer in = {CNBuffer, srcSize2, 0};
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ZSTD_outBuffer out = {compressedBuffer, compressedBufferSize, 0};
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CHECK_Z(ZSTD_compressStream2(cctx, &out, &in, ZSTD_e_flush));
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CHECK_Z(ZSTD_compressStream2(cctx, &out, &in, ZSTD_e_end));
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cSize = out.pos;
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}
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/* Streaming decompression to catch out of bounds offsets. */
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{
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ZSTD_inBuffer in = {compressedBuffer, cSize, 0};
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{ ZSTD_inBuffer in = {compressedBuffer, cSize, 0};
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ZSTD_outBuffer out = {decodedBuffer, CNBuffSize, 0};
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size_t const dSize = ZSTD_decompressStream(dctx, &out, &in);
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CHECK_Z(dSize);
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