/** * @file * @brief PXA255 timer */ /* * PXA255 timer by Yang Xi * Copyright (c) 2004 by Jay Monkman * * The license and distribution terms for this file may be * found in the file LICENSE in this distribution or at * http://www.rtems.org/license/LICENSE. */ #include #include #include #include uint32_t tstart; static uint32_t tick_time; bool benchmark_timer_find_average_overhead; bool benchmark_timer_is_initialized = false; /* * Use the timer count register to measure. * The frequency of it is 3.4864MHZ * The longest period we are able to capture is 4G/3.4864MHZ */ void benchmark_timer_initialize(void) { tick_time = XSCALE_OS_TIMER_TCR; } /* * The following controls the behavior of Read_timer(). * * AVG_OVEREHAD is the overhead for starting and stopping the timer. It * is usually deducted from the number returned. * * LEAST_VALID is the lowest number this routine should trust. Numbers * below this are "noise" and zero is returned. */ #define AVG_OVERHEAD 0 /* It typically takes X.X microseconds */ /* (Y countdowns) to start/stop the timer. */ /* This value is in microseconds. */ #define LEAST_VALID 1 /* Don't trust a clicks value lower than this */ benchmark_timer_t benchmark_timer_read(void) { uint32_t total; total = XSCALE_OS_TIMER_TCR; if(total>=tick_time) total -= tick_time; else total += 0xffffffff - tick_time; /*Round up but not overflow*/ if ( benchmark_timer_find_average_overhead == true ) return total; /*Counter cycles*/ if ( total < LEAST_VALID ) return 0; /* below timer resolution */ return total; } void benchmark_timer_disable_subtracting_average_overhead( bool find_flag ) { benchmark_timer_find_average_overhead = find_flag; }