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Document change in CLI for --no-check during decompression in --help menu
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@@ -1543,7 +1543,7 @@ static void ZSTD_DCtx_updateOversizedDuration(ZSTD_DStream* zds, size_t const ne
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{
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if (ZSTD_DCtx_isOverflow(zds, neededInBuffSize, neededOutBuffSize))
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zds->oversizedDuration++;
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else
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else
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zds->oversizedDuration = 0;
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}
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@@ -1750,7 +1750,7 @@ size_t ZSTD_decompressStream(ZSTD_DStream* zds, ZSTD_outBuffer* output, ZSTD_inB
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{ int const tooSmall = (zds->inBuffSize < neededInBuffSize) || (zds->outBuffSize < neededOutBuffSize);
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int const tooLarge = ZSTD_DCtx_isOversizedTooLong(zds);
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if (tooSmall || tooLarge) {
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size_t const bufferSize = neededInBuffSize + neededOutBuffSize;
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DEBUGLOG(4, "inBuff : from %u to %u",
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@@ -1701,8 +1701,8 @@ ZSTDLIB_API size_t ZSTD_DCtx_setMaxWindowSize(ZSTD_DCtx* dctx, size_t maxWindowS
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* Experimental parameter.
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* Default is 0 == disabled. Set to 1 to enable
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*
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* Tells the decompressor to skip checksum validation during decompression, regardless.
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* of whether or not checksumming was specified during decompression. This offers some
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* Tells the decompressor to skip checksum validation during decompression, regardless
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* of whether checksumming was specified during compression. This offers some
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* slight performance benefits, and may be useful for debugging.
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*/
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#define ZSTD_d_forceIgnoreChecksum ZSTD_d_experimentalParam3
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@@ -196,6 +196,7 @@ static void usage_advanced(const char* programName)
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DISPLAYOUT( " -l : print information about zstd compressed files \n");
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DISPLAYOUT( "--test : test compressed file integrity \n");
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DISPLAYOUT( " -M# : Set a memory usage limit for decompression \n");
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DISPLAYOUT( "--no-check : disable validation of checksums in compressed frame \n");
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# if ZSTD_SPARSE_DEFAULT
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DISPLAYOUT( "--[no-]sparse : sparse mode (default: enabled on file, disabled on stdout) \n");
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# else
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@@ -554,8 +554,10 @@ static int basicUnitTests(U32 const seed, double compressibility)
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ZSTD_freeCCtx(cctx);
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}
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{ /* copy the compressed buffer and corrupt the checksum */
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char* corruptedChecksumCompressedBuffer = (char*)malloc(cSize);
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if (!corruptedChecksumCompressedBuffer) {
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size_t r;
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char* const corruptedChecksumCompressedBuffer = (char*)malloc(cSize);
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ZSTD_DCtx* const dctx = ZSTD_createDCtx();
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if (!corruptedChecksumCompressedBuffer || !dctx) {
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DISPLAY("Not enough memory, aborting\n");
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testResult = 1;
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goto _end;
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@@ -563,11 +565,10 @@ static int basicUnitTests(U32 const seed, double compressibility)
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memcpy(corruptedChecksumCompressedBuffer, compressedBuffer, cSize);
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corruptedChecksumCompressedBuffer[cSize-1] += 1;
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size_t r = ZSTD_decompress(decodedBuffer, CNBuffSize, corruptedChecksumCompressedBuffer, cSize);
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r = ZSTD_decompress(decodedBuffer, CNBuffSize, corruptedChecksumCompressedBuffer, cSize);
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if (!ZSTD_isError(r)) goto _output_error;
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if (ZSTD_getErrorCode(r) != ZSTD_error_checksum_wrong) goto _output_error;
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ZSTD_DCtx* dctx = ZSTD_createDCtx(); assert(dctx != NULL);
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CHECK_Z(ZSTD_DCtx_setForceIgnoreChecksum(dctx, ZSTD_d_ignoreChecksum));
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r = ZSTD_decompressDCtx(dctx, decodedBuffer, CNBuffSize, corruptedChecksumCompressedBuffer, cSize);
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if (ZSTD_isError(r)) goto _output_error;
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