ea624cbb7c
Change-Id: I3cbb787ef27d90486b212dfb1a8c77c460acc2ac
Signed-off-by: Galantsev, Dmitrii <dmitrii.galantsev@amd.com>
[ROCm/rdc commit: 434e40305d]
256 rader
9.8 KiB
C++
256 rader
9.8 KiB
C++
/*
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Copyright (c) 2020 - present Advanced Micro Devices, Inc. All rights reserved.
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Permission is hereby granted, free of charge, to any person obtaining a copy
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of this software and associated documentation files (the "Software"), to deal
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in the Software without restriction, including without limitation the rights
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to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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copies of the Software, and to permit persons to whom the Software is
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furnished to do so, subject to the following conditions:
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The above copyright notice and this permission notice shall be included in
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all copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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THE SOFTWARE.
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*/
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#include <unistd.h>
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#include <iomanip>
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#include <iostream>
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#include "rdc/rdc.h"
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int main(int, char**) {
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rdc_status_t result;
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rdc_handle_t rdc_handle;
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bool standalone = false;
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char hostIpAddress[] = {"127.0.0.1:50051"};
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char group_name[] = {"group1"};
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char field_group_name[] = {"fieldgroup1"};
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uint64_t since_timestamp = 0;
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uint64_t next_timestamp = 0;
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uint64_t start_timestamp = 0;
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uint32_t count = 0;
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// Select the embedded mode and standalone mode dynamically.
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std::cout << "Start rdci in: \n";
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std::cout << "0 - Embedded mode \n";
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std::cout << "1 - Standalone mode \n";
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while (!(std::cin >> standalone)) {
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std::cout << "Invalid input.\n";
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std::cin.clear();
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std::cin.ignore();
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}
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std::cout << std::endl;
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std::cout << (standalone ? "Standalone mode selected.\n" : "Embedded mode selected.\n");
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// Init the rdc
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result = rdc_init(0);
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if (result != RDC_ST_OK) {
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std::cout << "Error initializing RDC. Return: " << rdc_status_string(result) << std::endl;
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goto cleanup;
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} else {
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std::cout << "RDC Initialized.\n";
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}
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if (standalone) { // standalone
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result = rdc_connect(hostIpAddress, &rdc_handle, nullptr, nullptr, nullptr);
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if (result != RDC_ST_OK) {
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std::cout << "Error connecting to remote rdcd. Return: " << rdc_status_string(result)
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<< std::endl;
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goto cleanup;
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}
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} else { // embedded
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result = rdc_start_embedded(RDC_OPERATION_MODE_AUTO, &rdc_handle);
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if (result != RDC_ST_OK) {
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std::cout << "Error starting embedded RDC engine. Return: " << rdc_status_string(result)
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<< std::endl;
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goto cleanup;
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}
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}
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// Now we can use the same API for both standalone and embedded
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// Get the list of devices in the system
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uint32_t gpu_index_list[RDC_MAX_NUM_DEVICES];
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result = rdc_device_get_all(rdc_handle, gpu_index_list, &count);
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if (result != RDC_ST_OK) {
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std::cout << "Error to find devices on the system. Return: " << rdc_status_string(result);
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goto cleanup;
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}
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if (count == 0) {
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std::cout << "No GPUs find on the sytem ";
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goto cleanup;
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} else {
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std::cout << count << " GPUs found in the system.\n";
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}
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// Create the group
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rdc_gpu_group_t group_id;
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result = rdc_group_gpu_create(rdc_handle, RDC_GROUP_EMPTY, group_name, &group_id);
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if (result != RDC_ST_OK) {
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std::cout << "Error creating group. Return: " << rdc_status_string(result);
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goto cleanup;
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}
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std::cout << "Created the GPU group " << group_id << std::endl;
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// Add all GPUs to the group
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for (uint32_t i = 0; i < count; i++) {
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result = rdc_group_gpu_add(rdc_handle, group_id, gpu_index_list[i]); // Add GPU 0
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if (result != RDC_ST_OK) {
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std::cout << "Error adding group. Return: " << rdc_status_string(result);
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goto cleanup;
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}
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rdc_device_attributes_t attribute;
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result = rdc_device_get_attributes(rdc_handle, gpu_index_list[i], &attribute);
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if (result != RDC_ST_OK) {
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std::cout << "Error get GPU attribute. Return: " << rdc_status_string(result);
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goto cleanup;
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}
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std::cout << "Add GPU " << gpu_index_list[i] << ":" << attribute.device_name << " to group "
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<< group_id << std::endl;
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}
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// Create the field groups to monitor POWER and TEMP
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rdc_field_grp_t field_group_id;
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rdc_field_t field_ids[2];
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field_ids[0] = RDC_FI_GPU_MEMORY_USAGE;
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field_ids[1] = RDC_FI_POWER_USAGE;
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result = rdc_group_field_create(rdc_handle, 2, &field_ids[0], field_group_name, &field_group_id);
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if (result != RDC_ST_OK) {
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std::cout << "Error create field group, Return: " << rdc_status_string(result);
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goto cleanup;
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}
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std::cout << "Created the field group " << field_group_id << ": "
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<< field_id_string(RDC_FI_GPU_MEMORY_USAGE) << ", "
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<< field_id_string(RDC_FI_POWER_USAGE) << std::endl;
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// Let the RDC to watch the fields and groups. The fields will be updated
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// once per second, the max keep age is 1 minutes and only keep 10 samples.
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result = rdc_field_watch(rdc_handle, group_id, field_group_id, 1000000, 60, 10);
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if (result != RDC_ST_OK) {
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std::cout << "Error watch group fields. Return: " << rdc_status_string(result);
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goto cleanup;
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}
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std::cout << "Start to watch group:" << group_id << ", field_group:" << field_group_id
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<< std::endl;
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std::cout << "Sleep a few seconds before retreive the data ...\n";
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// Since we are running the RDC_OPERATION_MODE_AUTO mode, the rdc_update_
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// all_fields() will be called periodically at background. If running as
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// RDC_OPERATION_MODE_MANUAL mode, we must call rdc_field_update_all()
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// periodically to take samples.
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usleep(5000000); // sleep 5 seconds before fetch the stats
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// Retreive the field and group information from RDC
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rdc_group_info_t group_info;
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rdc_field_group_info_t field_info;
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result = rdc_group_gpu_get_info(rdc_handle, group_id, &group_info);
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if (result != RDC_ST_OK) {
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std::cout << "Error get gpu group info. Return: " << rdc_status_string(result);
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goto cleanup;
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}
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result = rdc_group_field_get_info(rdc_handle, field_group_id, &field_info);
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if (result != RDC_ST_OK) {
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std::cout << "Error get field group info. Return: " << rdc_status_string(result);
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goto cleanup;
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}
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// Get the latest metrics
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std::cout << "Get the latest metrics for group:" << group_id << " field_group:" << field_group_id
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<< std::endl;
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std::cout << "time_stamp\t"
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<< "GPU_index\t"
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<< "field_name\t\t"
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<< "field_value\n";
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for (uint32_t gindex = 0; gindex < group_info.count; gindex++) {
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for (uint32_t findex = 0; findex < field_info.count; findex++) {
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rdc_field_value value;
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result = rdc_field_get_latest_value(rdc_handle, group_info.entity_ids[gindex],
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field_info.field_ids[findex], &value);
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if (result == RDC_ST_NOT_FOUND) {
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continue;
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}
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if (result != RDC_ST_OK) {
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std::cout << "Error get least value. Return: " << rdc_status_string(result);
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goto cleanup;
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}
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// We only support the integer metrics so far
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std::cout << value.ts << "\t" << group_info.entity_ids[gindex] << "\t\t" << std::left
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<< std::setw(16) << field_id_string(value.field_id) << "\t" << value.value.l_int
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<< std::endl;
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}
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}
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// Stop watching the field group
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result = rdc_field_unwatch(rdc_handle, group_id, field_group_id);
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if (result != RDC_ST_OK) {
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std::cout << "Error stop watch fields. Return: " << rdc_status_string(result);
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goto cleanup;
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}
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std::cout << "Stop watch group:" << group_id << ", field_group:" << field_group_id << std::endl;
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// Get the history data last 10 seconds
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std::cout << "Get last 10 seconds metrics for group:" << group_id
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<< " field_group:" << field_group_id << std::endl;
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std::cout << "time_stamp\t"
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<< "GPU_index\t"
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<< "field_name\t\t"
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<< "field_value\n";
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start_timestamp = static_cast<uint64_t>(time(nullptr) - 10) * 1000;
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for (uint32_t gindex = 0; gindex < group_info.count; gindex++) {
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for (uint32_t findex = 0; findex < field_info.count; findex++) {
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since_timestamp = start_timestamp;
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while (true) {
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rdc_field_value value;
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result = rdc_field_get_value_since(rdc_handle, group_info.entity_ids[gindex],
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field_info.field_ids[findex], since_timestamp,
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&next_timestamp, &value);
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if (result == RDC_ST_NOT_FOUND) {
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break;
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}
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if (result != RDC_ST_OK) {
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std::cout << "Error get history data. Return: " << rdc_status_string(result);
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goto cleanup;
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}
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std::cout << value.ts << "\t" << group_info.entity_ids[gindex] << "\t\t" << std::left
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<< std::setw(16) << field_id_string(value.field_id) << "\t" << value.value.l_int
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<< std::endl;
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since_timestamp = next_timestamp;
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} // while
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} // for findex
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} // for gindex
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// Delete the field group and GPU group
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result = rdc_group_field_destroy(rdc_handle, field_group_id);
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if (result != RDC_ST_OK) {
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std::cout << "Error delete field group. Return: " << rdc_status_string(result);
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goto cleanup;
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}
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std::cout << "Deleted the field group " << field_group_id << std::endl;
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result = rdc_group_gpu_destroy(rdc_handle, group_id);
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if (result != RDC_ST_OK) {
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std::cout << "Error delete GPU group. Return: " << rdc_status_string(result);
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goto cleanup;
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}
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std::cout << "Deleted the GPU group " << group_id << std::endl;
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// Cleanup consists of shutting down RDC.
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cleanup:
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std::cout << "Cleaning up.\n";
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if (standalone)
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rdc_disconnect(rdc_handle);
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else
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rdc_stop_embedded(rdc_handle);
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rdc_shutdown();
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return result;
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}
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