CLOCKS_PER_SEC
clock_t hz = CLOCKS_PER_SEC;
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
( count / ( ( (float) clocks ) / CLOCKS_PER_SEC ) ) / 1000,
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
} while ( clock() - startClock < CLOCKS_PER_SEC );
CLOCKS_PER_SEC*(count /(stop - start)),
.tc_frequency = CLOCKS_PER_SEC,
if (CLOCKS_PER_SEC % hz ||
hz <= (CLOCKS_PER_SEC / 256) || hz > CLOCKS_PER_SEC) {
mfp_set_tcdr(CLOCKS_PER_SEC / hz);