#include "naive_driver.h" #include "stdio.h" #include "xgpio.h" #include "xparameters.h" #include "microblaze_sleep.h" #include "metadata.h" #include "data.h" //DDR address #define GPIO_DEVICE_ID XPAR_GPIO_0_DEVICE_ID // DEVICE ID #define GPIO_LED_PIN 1 // LED PIN int main(){ u32 *LED_BASE_ADDRESS=0x40000000; u32 *LED_DIR_ADDRESS=0x40000004; *(u32 *)LED_DIR_ADDRESS=0X00; *(u32 *)LED_BASE_ADDRESS=0X00; Gpu TestGpu; // TODO: Set GPU_BASEADDR in .h file GpuInit(&TestGpu, GPU_BASEADDR); TaskMemory TestMem; GpuTaskMemoryInit(&TestMem, 128, 1024); //host to cta // uint64_t noused; // uint64_t kernel_id; // uint64_t kernal_size0; // uint64_t kernal_size1; // uint64_t kernal_size2; uint64_t wf_size; uint64_t wg_size; uint64_t metaDataBaseAddr; // uint64_t ldsSize; uint64_t pdsSize; uint64_t sgprUsage; uint64_t vgprUsage; uint64_t pdsBaseAddr; // uint64_t num_buffer; uint32_t pds_size; //assign metadata void assign_metadata_values(uint32_t* Instr) { // noused = ((uint64_t)Instr[1] << 32) | (uint64_t)Instr[0]; // kernel_id = ((uint64_t)Instr[3] << 32) | (uint64_t)Instr[2]; // kernal_size0 = ((uint64_t)Instr[5] << 32) | (uint64_t)Instr[4]; // kernal_size1 = ((uint64_t)Instr[7] << 32) | (uint64_t)Instr[6]; // kernal_size2 = ((uint64_t)Instr[9] << 32) | (uint64_t)Instr[8]; wf_size = ((uint64_t)Instr[11] << 32) | (uint64_t)Instr[10]; wg_size = ((uint64_t)Instr[13] << 32) | (uint64_t)Instr[12]; metaDataBaseAddr = ((uint64_t)Instr[15] << 32) | (uint64_t)Instr[14]; // ldsSize = ((uint64_t)Instr[17] << 32) | (uint64_t)Instr[16]; pdsSize = ((uint64_t)Instr[19] << 32) | (uint64_t)Instr[18]; sgprUsage = ((uint64_t)Instr[21] << 32) | (uint64_t)Instr[20]; vgprUsage = ((uint64_t)Instr[23] << 32) | (uint64_t)Instr[22]; pdsBaseAddr = ((uint64_t)Instr[25] << 32) | (uint64_t)Instr[24]; // num_buffer = ((uint64_t)Instr[27] << 32) | (uint64_t)Instr[26]; pds_size = 0; } assign_metadata_values(metadata); TaskConfig TestTask = { 0, // WgId (uint32_t)wg_size, // NumWf (uint32_t)wf_size, // WfSize 0x80000000, // StartPC (uint32_t)wg_size*(uint32_t)vgprUsage, // VgprSizeTotal (uint32_t)wg_size*(uint32_t)sgprUsage, // SgprSizeTotal 128, // LdsSize (uint32_t)vgprUsage, // VgprSizePerWf (uint32_t)sgprUsage, // SgprSizePerWf (uint32_t)metaDataBaseAddr,//metaDataBaseAddr (uint32_t)pdsBaseAddr+pds_size*(uint32_t)wf_size*(uint32_t)wg_size,//Host_req_pds_baseaddr TestMem // Mem }; // Data to DDR init_mem(metadata,data,128,1024); int retry = 5; u32 WarpGroupID; while(retry){ if(GpuSendTask(&TestGpu, &TestTask) == XST_SUCCESS){ //XGpio_DiscreteWrite(&GpioInstance, 1, 0xF0);//gpio led break; } retry--; } if(!retry){ xil_printf("All tries failed. Stopped.\r\n"); return XST_FAILURE; } *(u32 *)LED_BASE_ADDRESS=0XFF; // TODO: Result Checking uint32_t mem_tmp_1[32] = {0}; uint32_t sum_32_pass[32] = {0}; for (int i = 0; i < 32; i++) { mem_tmp_1[i] = Xil_In32(0x90002000); } process_data(mem_tmp_1, sum_32_pass); for (int j = 0; j < 32; j++) { *(u32 *)LED_BASE_ADDRESS=sum_32_pass[j]; // delay 1s sleep_MB(1); } // End of Checking GpuDeleteTask(&TestTask); return XST_SUCCESS; }