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bumped version number to v1.3.4
also added a paragraph on using compression level with training mode as this is a recurrent question (see for example #1004)
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@ -1,10 +1,10 @@
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<html>
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<head>
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<meta http-equiv="Content-Type" content="text/html; charset=ISO-8859-1">
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<title>zstd 1.3.3 Manual</title>
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<title>zstd 1.3.4 Manual</title>
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</head>
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<body>
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<h1>zstd 1.3.3 Manual</h1>
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<h1>zstd 1.3.4 Manual</h1>
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<hr>
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<a name="Contents"></a><h2>Contents</h2>
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<ol>
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@ -582,10 +582,16 @@ size_t ZSTD_initCStream_usingCDict_advanced(ZSTD_CStream* zcs, const ZSTD_CDict*
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If pledgedSrcSize is not known at reset time, use macro ZSTD_CONTENTSIZE_UNKNOWN.
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If pledgedSrcSize > 0, its value must be correct, as it will be written in header, and controlled at the end.
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For the time being, pledgedSrcSize==0 is interpreted as "srcSize unknown" for compatibility with older programs,
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but it may change to mean "empty" in some future version, so prefer using macro ZSTD_CONTENTSIZE_UNKNOWN.
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but it will change to mean "empty" in future version, so use macro ZSTD_CONTENTSIZE_UNKNOWN instead.
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@return : 0, or an error code (which can be tested using ZSTD_isError())
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</p></pre><BR>
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<pre><b>typedef struct {
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unsigned long long ingested;
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unsigned long long consumed;
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unsigned long long produced;
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} ZSTD_frameProgression;
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</b></pre><BR>
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<h3>Advanced Streaming decompression functions</h3><pre></pre><b><pre>typedef enum { DStream_p_maxWindowSize } ZSTD_DStreamParameter_e;
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size_t ZSTD_setDStreamParameter(ZSTD_DStream* zds, ZSTD_DStreamParameter_e paramType, unsigned paramValue); </b>/* obsolete : this API will be removed in a future version */<b>
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size_t ZSTD_initDStream_usingDict(ZSTD_DStream* zds, const void* dict, size_t dictSize); </b>/**< note: no dictionary will be used if dict == NULL or dictSize < 8 */<b>
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@ -59,7 +59,7 @@ extern "C" {
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/*------ Version ------*/
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#define ZSTD_VERSION_MAJOR 1
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#define ZSTD_VERSION_MINOR 3
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#define ZSTD_VERSION_RELEASE 3
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#define ZSTD_VERSION_RELEASE 4
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#define ZSTD_VERSION_NUMBER (ZSTD_VERSION_MAJOR *100*100 + ZSTD_VERSION_MINOR *100 + ZSTD_VERSION_RELEASE)
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ZSTDLIB_API unsigned ZSTD_versionNumber(void); /**< useful to check dll version */
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@ -1,5 +1,5 @@
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.
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.TH "ZSTD" "1" "December 2017" "zstd 1.3.3" "User Commands"
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.TH "ZSTD" "1" "2018-01-27" "zstd 1.3.3" "User Commands"
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.
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.SH "NAME"
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\fBzstd\fR \- zstd, zstdmt, unzstd, zstdcat \- Compress or decompress \.zst files
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@ -136,7 +136,7 @@ force write to standard output, even if it is the console
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.
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.TP
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\fB\-\-[no\-]sparse\fR
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enable / disable sparse FS support, to make files with many zeroes smaller on disk\. Creating sparse files may save disk space and speed up decompression by reducing the amount of disk I/O\. default : enabled when output is into a file, and disabled when output is stdout\. This setting overrides default and can force sparse mode over stdout\.
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enable / disable sparse FS support, to make files with many zeroes smaller on disk\. Creating sparse files may save disk space and speed up decompression by reducing the amount of disk I/O\. default: enabled when output is into a file, and disabled when output is stdout\. This setting overrides default and can force sparse mode over stdout\.
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.
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.TP
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\fB\-\-rm\fR
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@ -179,7 +179,7 @@ add integrity check computed from uncompressed data (default: enabled)
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All arguments after \fB\-\-\fR are treated as files
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.
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.SH "DICTIONARY BUILDER"
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\fBzstd\fR offers \fIdictionary\fR compression, useful for very small files and messages\. It\'s possible to train \fBzstd\fR with some samples, the result of which is saved into a file called a \fBdictionary\fR\. Then during compression and decompression, reference the same dictionary\. It will improve compression ratio of small files\. Typical gains range from 10% (at 64KB) to x5 better (at <1KB)\.
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\fBzstd\fR offers \fIdictionary\fR compression, which greatly improves efficiency on small files and messages\. It\'s possible to train \fBzstd\fR with a set of samples, the result of which is saved into a file called a \fBdictionary\fR\. Then during compression and decompression, reference the same dictionary, using command \fB\-D dictionaryFileName\fR\. Compression of small files similar to the sample set will be greatly improved\.
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.
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.TP
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\fB\-\-train FILEs\fR
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@ -197,6 +197,10 @@ Dictionary saved into \fBfile\fR (default name: dictionary)\.
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Limit dictionary to specified size (default: 112640)\.
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.
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.TP
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\fB\-#\fR
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Use \fB#\fR compression level during training (optional)\. Will generate statistics more tuned for selected compression level, resulting in a \fIsmall\fR compression ratio improvement for this level\.
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.
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.TP
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\fB\-B#\fR
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Split input files in blocks of size # (default: no split)
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.
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@ -171,12 +171,12 @@ the last one takes effect.
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DICTIONARY BUILDER
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------------------
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`zstd` offers _dictionary_ compression,
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useful for very small files and messages.
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It's possible to train `zstd` with some samples,
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which greatly improves efficiency on small files and messages.
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It's possible to train `zstd` with a set of samples,
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the result of which is saved into a file called a `dictionary`.
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Then during compression and decompression, reference the same dictionary.
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It will improve compression ratio of small files.
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Typical gains range from 10% (at 64KB) to x5 better (at <1KB).
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Then during compression and decompression, reference the same dictionary,
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using command `-D dictionaryFileName`.
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Compression of small files similar to the sample set will be greatly improved.
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* `--train FILEs`:
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Use FILEs as training set to create a dictionary.
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@ -192,6 +192,10 @@ Typical gains range from 10% (at 64KB) to x5 better (at <1KB).
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Dictionary saved into `file` (default name: dictionary).
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* `--maxdict=#`:
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Limit dictionary to specified size (default: 112640).
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* `-#`:
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Use `#` compression level during training (optional).
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Will generate statistics more tuned for selected compression level,
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resulting in a _small_ compression ratio improvement for this level.
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* `-B#`:
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Split input files in blocks of size # (default: no split)
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* `--dictID=#`:
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