Renames, Documentation Updates
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a884b76bc2
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@ -108,14 +108,18 @@ Full list of arguments
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--zstd= : Single run, parameter selection syntax same as zstdcli
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--optimize= : find parameters to maximize compression ratio given parameters
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Can use all --zstd= commands to constrain the type of solution found in addition to the following constraints
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cSpeed= - Minimum compression speed
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dSpeed= - Minimum decompression speed
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cMem= - compression memory
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lvl= - Searches for solutions which are strictly better than that compression lvl in ratio and cSpeed,
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stc= - When invoked with lvl=, represents slack in ratio/cSpeed allowed for a solution to be considered
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- In normal operation, represents slack in strategy selection in choosing the default parameters
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prefer[Speed/Ratio]= - Only affects lvl= invocations. Defines value placed on compression speed or ratio
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when determining overall winner (default 1 for both).
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cSpeed= : Minimum compression speed
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dSpeed= : Minimum decompression speed
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cMem= : Maximum compression memory
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lvl= : Searches for solutions which are strictly better than that compression lvl in ratio and cSpeed,
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stc= : When invoked with lvl=, represents percentage slack in ratio/cSpeed allowed for a solution to be considered (Default 99%)
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: In normal operation, represents percentage slack in choosing viable starting strategy selection in choosing the default parameters
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(Lower value will begin with stronger strategies) (Default 90%)
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preferSpeed= / preferRatio=
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: Only affects lvl = invocations. Defines value placed on compression speed or ratio
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when determining overall winner (default 1 for both, higher = more valued).
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tries= : Maximum number of random restarts on a single strategy before switching (Default 5)
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Higher values will make optimizer run longer, more chances to find better solution.
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--optimize= : same as -O with more verbose syntax
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-P# : generated sample compressibility
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-t# : Caps runtime of operation in seconds (default : 99999 seconds (about 27 hours ))
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@ -125,15 +125,13 @@ typedef struct {
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U32 cMem; /* bytes */
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} constraint_t;
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static constraint_t g_targetConstraints;
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typedef struct ll_node ll_node;
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struct ll_node {
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typedef struct winner_ll_node winner_ll_node;
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struct winner_ll_node {
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winnerInfo_t res;
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ll_node* next;
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winner_ll_node* next;
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};
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static ll_node* g_winners; /* linked list sorted ascending by cSize & cSpeed */
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static winner_ll_node* g_winners; /* linked list sorted ascending by cSize & cSpeed */
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static BMK_result_t g_lvltarget;
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static int g_optmode = 0;
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@ -323,8 +321,8 @@ static int compareResultLT(const BMK_result_t result1, const BMK_result_t result
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static constraint_t relaxTarget(constraint_t target) {
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target.cMem = (U32)-1;
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target.cSpeed *= ((double)(g_strictness) / 100);
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target.dSpeed *= ((double)(g_strictness) / 100);
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target.cSpeed *= ((double)g_strictness) / 100;
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target.dSpeed *= ((double)g_strictness) / 100;
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return target;
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}
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@ -855,20 +853,19 @@ static int speedSizeCompare(BMK_result_t r1, BMK_result_t r2) {
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return SPEED_RESULT; /* r2 is faster but not smaller */
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}
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}
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/* assumes candidate is already strictly better than old winner. */
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/* 0 for success, 1 for no insert */
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/* indicate whether inserted as well? */
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/* 0 for insertion, 1 for no insert */
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/* maintain invariant speedSizeCompare(n, n->next) = SPEED_RESULT */
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static int insertWinner(winnerInfo_t w) {
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static int insertWinner(winnerInfo_t w, constraint_t targetConstraints) {
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BMK_result_t r = w.result;
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ll_node* cur_node = g_winners;
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winner_ll_node* cur_node = g_winners;
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/* first node to insert */
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if(!feasible(r, g_targetConstraints)) {
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if(!feasible(r, targetConstraints)) {
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return 1;
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}
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if(g_winners == NULL) {
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ll_node* first_node = malloc(sizeof(ll_node));
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winner_ll_node* first_node = malloc(sizeof(winner_ll_node));
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if(first_node == NULL) {
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return 1;
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}
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@ -886,7 +883,7 @@ static int insertWinner(winnerInfo_t w) {
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}
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case WORSE_RESULT:
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{
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ll_node* tmp;
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winner_ll_node* tmp;
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cur_node->res = cur_node->next->res;
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tmp = cur_node->next;
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cur_node->next = cur_node->next->next;
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@ -900,7 +897,7 @@ static int insertWinner(winnerInfo_t w) {
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}
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case SIZE_RESULT: /* insert after first size result, then return */
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{
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ll_node* newnode = malloc(sizeof(ll_node));
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winner_ll_node* newnode = malloc(sizeof(winner_ll_node));
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if(newnode == NULL) {
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return 1;
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}
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@ -927,7 +924,7 @@ static int insertWinner(winnerInfo_t w) {
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}
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case SPEED_RESULT:
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{
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ll_node* newnode = malloc(sizeof(ll_node));
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winner_ll_node* newnode = malloc(sizeof(winner_ll_node));
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if(newnode == NULL) {
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return 1;
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}
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@ -938,7 +935,7 @@ static int insertWinner(winnerInfo_t w) {
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}
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case SIZE_RESULT: /* insert before first size result, then return */
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{
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ll_node* newnode = malloc(sizeof(ll_node));
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winner_ll_node* newnode = malloc(sizeof(winner_ll_node));
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if(newnode == NULL) {
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return 1;
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}
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@ -961,7 +958,7 @@ static void BMK_printWinner(FILE* f, const U32 cLevel, const BMK_result_t result
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const U64 time = UTIL_clockSpanNano(g_time);
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const U64 minutes = time / (60ULL * TIMELOOP_NANOSEC);
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DISPLAY("\r%79s\r", "");
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fprintf(f, "\r%79s\r", "");
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fprintf(f," {%3u,%3u,%3u,%3u,%3u,%3u, %s }, ",
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params.windowLog, params.chainLog, params.hashLog, params.searchLog, params.searchLength,
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@ -1001,10 +998,10 @@ static void BMK_printWinnerOpt(FILE* f, const U32 cLevel, const BMK_result_t res
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//prints out tradeoff table if using lvl
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if(g_optmode && g_optimizer) {
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winnerInfo_t w;
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ll_node* n;
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winner_ll_node* n;
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w.result = result;
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w.params = params;
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insertWinner(w);
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insertWinner(w, targetConstraints);
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if(!DEBUG) { fprintf(f, "\033c"); }
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fprintf(f, "\n");
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@ -1012,7 +1009,7 @@ static void BMK_printWinnerOpt(FILE* f, const U32 cLevel, const BMK_result_t res
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/* the table */
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fprintf(f, "================================\n");
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for(n = g_winners; n != NULL; n = n->next) {
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DISPLAY("\r%79s\r", "");
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fprintf(f, "\r%79s\r", "");
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fprintf(f," {%3u,%3u,%3u,%3u,%3u,%3u, %s }, ",
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n->res.params.windowLog, n->res.params.chainLog, n->res.params.hashLog, n->res.params.searchLog, n->res.params.searchLength,
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@ -1045,6 +1042,12 @@ static void BMK_printWinnerOpt(FILE* f, const U32 cLevel, const BMK_result_t res
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(double)srcSize / result.cSize, (double)result.cSpeed / (1 MB), (double)result.dSpeed / (1 MB));
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}
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#if 0
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if(BMK_timeSpan(g_time) > g_grillDuration_s) {
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exit(0);
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}
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#endif
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}
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static void BMK_printWinners2(FILE* f, const winnerInfo_t* winners, size_t srcSize)
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@ -2097,7 +2100,7 @@ static ZSTD_compressionParameters maskParams(ZSTD_compressionParameters base, ZS
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* cLevel - compression level to exceed (all solutions must be > lvl in cSpeed + ratio)
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*/
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#define MAX_TRIES 5
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static int g_maxTries = 5;
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#define TRY_DECAY 1
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static int optimizeForSize(const char* const * const fileNamesTable, const size_t nbFiles, const char* dictFileName, constraint_t target, ZSTD_compressionParameters paramTarget, int cLevel)
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@ -2185,6 +2188,7 @@ static int optimizeForSize(const char* const * const fileNamesTable, const size_
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}
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/* use level'ing mode instead of normal target mode */
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/* Should lvl be parameter-masked here? */
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if(g_optmode) {
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winner.params = ZSTD_getCParams(cLevel, maxBlockSize, ctx.dictSize);
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if(BMK_benchParam(&winner.result, buf, ctx, winner.params)) {
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@ -2192,13 +2196,13 @@ static int optimizeForSize(const char* const * const fileNamesTable, const size_
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goto _cleanUp;
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}
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target.cSpeed = (U32)winner.result.cSpeed;
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g_targetConstraints = target;
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g_lvltarget = winner.result;
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g_lvltarget.cSpeed *= ((double)(g_strictness) / 100);
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g_lvltarget.cSize /= ((double)(g_strictness) / 100);
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g_lvltarget.cSpeed *= ((double)g_strictness) / 100;
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g_lvltarget.dSpeed *= ((double)g_strictness) / 100;
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g_lvltarget.cSize /= ((double)g_strictness) / 100;
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target.cSpeed = (U32)g_lvltarget.cSpeed;
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target.dSpeed = (U32)g_lvltarget.dSpeed; //See if this is worth
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BMK_printWinnerOpt(stdout, cLevel, winner.result, winner.params, target, buf.srcSize);
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}
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@ -2241,7 +2245,7 @@ static int optimizeForSize(const char* const * const fileNamesTable, const size_
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}
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/* if the current params are too slow, just stop. */
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if(target.cSpeed > candidate.cSpeed * 2) { break; }
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if(target.cSpeed > candidate.cSpeed * 3 / 2) { break; }
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}
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}
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}
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@ -2254,7 +2258,7 @@ static int optimizeForSize(const char* const * const fileNamesTable, const size_
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int bestStrategy = (int)winner.params.strategy;
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if(paramTarget.strategy == 0) {
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int st = (int)winner.params.strategy;
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int tries = MAX_TRIES;
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int tries = g_maxTries;
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{
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/* one iterations of hill climbing with the level-defined parameters. */
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@ -2269,12 +2273,13 @@ static int optimizeForSize(const char* const * const fileNamesTable, const size_
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while(st && tries > 0) {
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winnerInfo_t wc;
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DEBUGOUTPUT("StrategySwitch: %s\n", g_stratName[st]);
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wc = optimizeFixedStrategy(buf, ctx, target, paramTarget,
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st, varArray, varLen, allMT[st], tries);
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if(compareResultLT(winner.result, wc.result, target, buf.srcSize)) {
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winner = wc;
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tries = MAX_TRIES;
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tries = g_maxTries;
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bestStrategy = st;
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} else {
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st = nextStrategy(st, bestStrategy);
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@ -2283,7 +2288,7 @@ static int optimizeForSize(const char* const * const fileNamesTable, const size_
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}
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} else {
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winner = optimizeFixedStrategy(buf, ctx, target, paramTarget, paramTarget.strategy,
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varArray, varLen, allMT[paramTarget.strategy], 10);
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varArray, varLen, allMT[paramTarget.strategy], g_maxTries);
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}
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}
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@ -2402,17 +2407,17 @@ int main(int argc, const char** argv)
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ZSTD_compressionParameters paramTarget = { 0, 0, 0, 0, 0, 0, 0 };
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assert(argc>=1); /* for exename */
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g_time = UTIL_getTime();
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assert(argc>=1); /* for exename */
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/* Welcome message */
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DISPLAY(WELCOME_MESSAGE);
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for(i=1; i<argc; i++) {
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const char* argument = argv[i];
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DISPLAY("%d: ", i);
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DISPLAY("%s\n", argument);
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DEBUGOUTPUT("%d: ", i);
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DEBUGOUTPUT("%s\n", argument);
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assert(argument != NULL);
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@ -2429,6 +2434,7 @@ int main(int argc, const char** argv)
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PARSE_SUB_ARGS("strict=", "stc=", g_strictness);
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PARSE_SUB_ARGS("preferSpeed=", "prfSpd=", g_speedMultiplier);
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PARSE_SUB_ARGS("preferRatio=", "prfRto=", g_ratioMultiplier);
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PARSE_SUB_ARGS("maxTries", "tries", g_maxTries);
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DISPLAY("invalid optimization parameter \n");
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return 1;
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