// Copyright (c) 2022 Victor Suarez Rovere // Code portions Copyright (c) 2018-2020 Ondrej Čerman with MIT License #include #include #include #include #define SYSFS_DIR_CPUS "/sys/devices/system/cpu" static int msr_file; static int open_msr(short devid) { char msr_path[20]; sprintf(msr_path, "/dev/cpu/%d/msr", devid); return open(msr_path, O_RDONLY); } static bool read_msr(int file, unsigned index, unsigned long *data) { if (file < 0) return false; return pread(file, data, sizeof *data, index) == sizeof *data; } double get_energy_unit() { unsigned long data; // AMD OSRR: page 139 - MSRC001_0299 if (!read_msr(msr_file, 0xC0010299, &data)) return 0.0; return pow(1.0/2.0, (double)((data >> 8) & 0x1F)); } unsigned long get_package_energy() { unsigned long data; // AMD OSRR: page 139 - MSRC001_029B if (!read_msr(msr_file, 0xC001029B, &data)) return 0; return data; } bool power_init() { const short cpuid = 0; msr_file = open_msr(cpuid); return msr_file >= 0; } #ifndef POWER_BENCH int main() { if(!power_init()) { perror("Cannot open MSR file. Try using sudo and have the msr module loaded. Error"); exit(1); } double unit = get_energy_unit(); unsigned long e0 = get_package_energy(); const unsigned interval_us = 500*1000; for(;;) { usleep(interval_us); unsigned long e1 = get_package_energy(); long energy = e1 - e0; e0 = e1; printf("package energy: %f watts\n", energy*unit/(interval_us*1e-6)); } return 0; } #endif