const char* const marks[NB_MARKS] = { " |", " /", " =", "\\" };
U32 markNb = 0;
- UTIL_initTimer(&coolTick);
- UTIL_getTime(&coolTime);
+ UTIL_initTimer(&coolTick);
+ UTIL_getTime(&coolTime);
DISPLAYLEVEL(2, "\r%79s\r", "");
while (!cCompleted || !dCompleted) {
/* overheat protection */
- if (UTIL_clockSpanMicro(coolTime, coolTick) > ACTIVEPERIOD_MICROSEC) {
+ if (UTIL_clockSpanMicro(coolTime, coolTick) > ACTIVEPERIOD_MICROSEC) {
DISPLAYLEVEL(2, "\rcooling down ... \r");
UTIL_sleep(COOLPERIOD_SEC);
UTIL_getTime(&coolTime);
}
if (!g_decodeOnly) {
- UTIL_time_t clockTick, clockStart;
+ UTIL_time_t clockTick, clockStart;
/* Compression */
DISPLAYLEVEL(2, "%2s-%-17.17s :%10u ->\r", marks[markNb], displayName, (U32)srcSize);
if (!cCompleted) memset(compressedBuffer, 0xE5, maxCompressedSize); /* warm up and erase result buffer */
UTIL_sleepMilli(1); /* give processor time to other processes */
UTIL_waitForNextTick(ticksPerSecond);
- UTIL_initTimer(&clockTick);
- UTIL_getTime(&clockStart);
+ UTIL_initTimer(&clockTick);
+ UTIL_getTime(&clockStart);
if (!cCompleted) { /* still some time to do compression tests */
ZSTD_parameters zparams = ZSTD_getParams(cLevel, avgSize, dictBufferSize);
blockTable[blockNb].cSize = rSize;
}
nbLoops++;
- } while (UTIL_clockSpanMicro(clockStart, clockTick) < clockLoop);
+ } while (UTIL_clockSpanMicro(clockStart, clockTick) < clockLoop);
ZSTD_freeCDict(cdict);
- { U64 const clockSpanMicro = UTIL_clockSpanMicro(clockStart, clockTick);
+ { U64 const clockSpanMicro = UTIL_clockSpanMicro(clockStart, clockTick);
if (clockSpanMicro < fastestC*nbLoops) fastestC = clockSpanMicro / nbLoops;
totalCTime += clockSpanMicro;
cCompleted = (totalCTime >= maxTime);
UTIL_time_t clockStart, clockTick;
ZSTD_DDict* const ddict = ZSTD_createDDict(dictBuffer, dictBufferSize);
if (!ddict) EXM_THROW(2, "ZSTD_createDDict() allocation failure");
- UTIL_initTimer(&clockTick);
- UTIL_getTime(&clockStart);
+ UTIL_initTimer(&clockTick);
+ UTIL_getTime(&clockStart);
do {
U32 blockNb;
for (blockNb=0; blockNb<nbBlocks; blockNb++) {
blockTable[blockNb].resSize = regenSize;
}
nbLoops++;
- } while (UTIL_clockSpanMicro(clockStart, clockTick) < clockLoop);
+ } while (UTIL_clockSpanMicro(clockStart, clockTick) < clockLoop);
ZSTD_freeDDict(ddict);
{ U64 const clockSpanMicro = UTIL_clockSpanMicro(clockStart, clockTick);
if (clockSpanMicro < fastestD*nbLoops) fastestD = clockSpanMicro / nbLoops;