LCOV - code coverage report
Current view: top level - acl/aclrt_impl - callback.cpp (source / functions) Coverage Total Hit
Test: coverage.info Lines: 97.5 % 119 116
Test Date: 2026-07-28 10:53:01 Functions: 100.0 % 17 17

            Line data    Source code
       1              : /**
       2              :  * Copyright (c) 2025 Huawei Technologies Co., Ltd.
       3              :  * This program is free software, you can redistribute it and/or modify it under the terms and conditions of
       4              :  * CANN Open Software License Agreement Version 2.0 (the "License").
       5              :  * Please refer to the License for details. You may not use this file except in compliance with the License.
       6              :  * THIS SOFTWARE IS PROVIDED ON AN "AS IS" BASIS, WITHOUT WARRANTIES OF ANY KIND, EITHER EXPRESS OR IMPLIED,
       7              :  * INCLUDING BUT NOT LIMITED TO NON-INFRINGEMENT, MERCHANTABILITY, OR FITNESS FOR A PARTICULAR PURPOSE.
       8              :  * See LICENSE in the root of the software repository for the full text of the License.
       9              :  */
      10              : 
      11              : #include "acl_rt_impl.h"
      12              : #include "runtime/rts/rts_kernel.h"
      13              : #include "runtime/kernel.h"
      14              : #include "runtime/base.h"
      15              : #include "runtime/rts/rts_stream.h"
      16              : #include "runtime/rts/rts_device.h"
      17              : #include "common/log_inner.h"
      18              : #include "common/error_codes_inner.h"
      19              : #include "common/prof_reporter.h"
      20              : #include "utils/data_type_utils.h"
      21              : 
      22              : namespace {
      23              : constexpr uint32_t ACL_ERROR_INVALID_EXCEPTION_INFO = 0xFFFFFFFFU;
      24              : }
      25              : 
      26              : #ifdef __cplusplus
      27              : extern "C" {
      28              : #endif
      29              : 
      30            4 : aclError aclrtSubscribeReportImpl(uint64_t threadId, aclrtStream stream)
      31              : {
      32            4 :     ACL_LOG_INFO("start to execute aclrtSubscribeReport, threadId is %lu.", threadId);
      33            4 :     ACL_REQUIRES_RTS_OK(rtSubscribeReport(threadId, static_cast<rtStream_t>(stream)));
      34            2 :     ACL_LOG_INFO("successfully execute aclrtSubscribeReport, threadId is %lu.", threadId);
      35            2 :     return ACL_SUCCESS;
      36              : }
      37              : 
      38            3 : aclError aclrtSetExceptionInfoCallbackImpl(aclrtExceptionInfoCallback callback)
      39              : {
      40            3 :     ACL_LOG_INFO("start to execute aclrtSetExceptionInfoCallback.");
      41            3 :     ACL_REQUIRES_RTS_OK(rtRegTaskFailCallbackByModule(acl::ACL_MODULE_NAME, static_cast<rtTaskFailCallback>(callback)));
      42            1 :     ACL_LOG_INFO("successfully execute aclrtSetExceptionInfoCallback");
      43            1 :     return ACL_SUCCESS;
      44              : }
      45              : 
      46            1 : uint32_t aclrtGetTaskIdFromExceptionInfoImpl(const aclrtExceptionInfo* info)
      47              : {
      48            5 :     ACL_REQUIRES_NOT_NULL_RET_INPUT_REPORT(info, static_cast<aclError>(ACL_ERROR_INVALID_EXCEPTION_INFO));
      49            0 :     return info->taskid;
      50              : }
      51              : 
      52            1 : uint32_t aclrtGetStreamIdFromExceptionInfoImpl(const aclrtExceptionInfo* info)
      53              : {
      54            5 :     ACL_REQUIRES_NOT_NULL_RET_INPUT_REPORT(info, static_cast<aclError>(ACL_ERROR_INVALID_EXCEPTION_INFO));
      55            0 :     return info->streamid;
      56              : }
      57              : 
      58            1 : uint32_t aclrtGetThreadIdFromExceptionInfoImpl(const aclrtExceptionInfo* info)
      59              : {
      60            5 :     ACL_REQUIRES_NOT_NULL_RET_INPUT_REPORT(info, static_cast<aclError>(ACL_ERROR_INVALID_EXCEPTION_INFO));
      61            0 :     return info->tid;
      62              : }
      63              : 
      64            2 : uint32_t aclrtGetDeviceIdFromExceptionInfoImpl(const aclrtExceptionInfo* info)
      65              : {
      66            6 :     ACL_REQUIRES_NOT_NULL_RET_INPUT_REPORT(info, static_cast<aclError>(ACL_ERROR_INVALID_EXCEPTION_INFO));
      67            1 :     return info->deviceid;
      68              : }
      69              : 
      70            2 : uint32_t aclrtGetErrorCodeFromExceptionInfoImpl(const aclrtExceptionInfo* info)
      71              : {
      72            6 :     ACL_REQUIRES_NOT_NULL_RET_INPUT_REPORT(info, static_cast<aclError>(ACL_ERROR_INVALID_EXCEPTION_INFO));
      73            1 :     return info->retcode;
      74              : }
      75              : 
      76            8 : aclError aclrtGetArgsFromExceptionInfoImpl(const aclrtExceptionInfo* info, void** devArgsPtr, uint32_t* devArgsLen)
      77              : {
      78           12 :     ACL_REQUIRES_NOT_NULL_RET_INPUT_REPORT(info, static_cast<aclError>(ACL_ERROR_INVALID_EXCEPTION_INFO));
      79            7 :     ACL_REQUIRES_NOT_NULL_WITH_INPUT_REPORT(devArgsPtr);
      80            7 :     ACL_REQUIRES_NOT_NULL_WITH_INPUT_REPORT(devArgsLen);
      81              : 
      82            7 :     if (info->expandInfo.type == RT_EXCEPTION_AICORE) {
      83            1 :         *devArgsPtr = info->expandInfo.u.aicoreInfo.exceptionArgs.argAddr;
      84            1 :         *devArgsLen = info->expandInfo.u.aicoreInfo.exceptionArgs.argsize;
      85            6 :     } else if (info->expandInfo.type == RT_EXCEPTION_AICPU) {
      86            1 :         *devArgsPtr = info->expandInfo.u.aicpuInfo.argAddr;
      87            1 :         *devArgsLen = info->expandInfo.u.aicpuInfo.argsize;
      88            5 :     } else if (
      89            5 :         info->expandInfo.type == RT_EXCEPTION_FUSION && info->expandInfo.u.fusionInfo.type == RT_FUSION_AICORE_CCU) {
      90            1 :         *devArgsPtr = info->expandInfo.u.fusionInfo.u.aicoreCcuInfo.exceptionArgs.argAddr;
      91            1 :         *devArgsLen = info->expandInfo.u.fusionInfo.u.aicoreCcuInfo.exceptionArgs.argsize;
      92              :     } else {
      93            4 :         ACL_LOG_ERROR("exception information type = %d is invalid, get args failed.", info->expandInfo.type);
      94            4 :         std::string funcName = acl::AclErrorLogManager::GetFuncNameWithoutImplSuffix(__func__);
      95            4 :         acl::AclErrorLogManager::ReportInputError(
      96            8 :             acl::INVALID_VALUE_MSG, std::vector<const char*>({"func", "value", "param", "expect"}),
      97            4 :             std::vector<const char*>(
      98            4 :                 {funcName.c_str(), acl::GetExceptionExpandTypeDesc(info->expandInfo.type), "info->expandInfo.type",
      99            8 :                  "RT_EXCEPTION_AICORE, RT_EXCEPTION_AICPU or RT_EXCEPTION_FUSION"}));
     100            4 :         return ACL_ERROR_INVALID_EXCEPTION_INFO;
     101            4 :     }
     102              : 
     103            3 :     return ACL_SUCCESS;
     104              : }
     105              : 
     106            3 : aclError aclrtGetFuncHandleFromExceptionInfoImpl(const aclrtExceptionInfo* info, aclrtFuncHandle* func)
     107              : {
     108            7 :     ACL_REQUIRES_NOT_NULL_RET_INPUT_REPORT(info, static_cast<aclError>(ACL_ERROR_INVALID_EXCEPTION_INFO));
     109            2 :     ACL_REQUIRES_NOT_NULL_WITH_INPUT_REPORT(func);
     110            2 :     ACL_REQUIRES_RTS_OK(rtGetFuncHandleFromExceptionInfo(info, func));
     111              : 
     112            1 :     return ACL_SUCCESS;
     113              : }
     114              : 
     115            3 : aclError aclrtBinarySetExceptionCallbackImpl(
     116              :     aclrtBinHandle binHandle, aclrtOpExceptionCallback callback, void* userData)
     117              : {
     118            3 :     ACL_LOG_INFO("start to execute aclrtBinarySetExceptionCallback.");
     119            3 :     ACL_REQUIRES_NOT_NULL_WITH_INPUT_REPORT(binHandle);
     120            2 :     ACL_REQUIRES_NOT_NULL_WITH_INPUT_REPORT(callback);
     121              : 
     122            2 :     ACL_REQUIRES_RTS_OK(rtBinarySetExceptionCallback(binHandle, callback, userData));
     123              : 
     124            1 :     return ACL_SUCCESS;
     125              : }
     126              : 
     127            6 : aclError aclrtLaunchCallbackImpl(aclrtCallback fn, void* userData, aclrtCallbackBlockType blockType, aclrtStream stream)
     128              : {
     129            6 :     ACL_PROFILING_REG(acl::AclProfType::AclrtLaunchCallback);
     130            6 :     ACL_LOG_INFO("start to execute aclrtLaunchCallback.");
     131           12 :     ACL_CHECK_INVALID_VALUE_WITH_DESC(
     132              :         (blockType == ACL_CALLBACK_BLOCK || blockType == ACL_CALLBACK_NO_BLOCK),
     133              :         acl::GetCallbackBlockTypeDesc(blockType), "blockType", "ACL_CALLBACK_BLOCK or ACL_CALLBACK_NO_BLOCK",
     134              :         ACL_ERROR_INVALID_PARAM);
     135            4 :     const bool isBlock = (blockType == ACL_CALLBACK_BLOCK);
     136            4 :     ACL_REQUIRES_RTS_OK(
     137              :         rtCallbackLaunch(static_cast<rtCallback_t>(fn), userData, static_cast<rtStream_t>(stream), isBlock));
     138            2 :     ACL_LOG_INFO("successfully execute aclrtLaunchCallback");
     139            2 :     return ACL_SUCCESS;
     140            6 : }
     141              : 
     142            2 : aclError aclrtLaunchHostFuncImpl(aclrtStream stream, aclrtHostFunc fn, void* args)
     143              : {
     144            2 :     ACL_PROFILING_REG(acl::AclProfType::AclrtLaunchHostFunc);
     145            2 :     ACL_LOG_INFO("start to execute aclrtLaunchHostFunc.");
     146            2 :     ACL_REQUIRES_RTS_OK(rtsLaunchHostFunc(static_cast<rtStream_t>(stream), static_cast<rtCallback_t>(fn), args));
     147            1 :     ACL_LOG_INFO("successfully execute aclrtLaunchHostFunc");
     148            1 :     return ACL_SUCCESS;
     149            2 : }
     150              : 
     151           10 : aclError aclrtProcessReportImpl(int32_t timeout)
     152              : {
     153           10 :     ACL_PROFILING_REG(acl::AclProfType::AclrtProcessReport);
     154           10 :     ACL_LOG_INFO("start to execute aclrtProcessReport, timeout is %dms.", timeout);
     155              :     // -1 represents infinite wait, timeout value greater than 0 represents waiting for a fixed time.
     156              :     // other value is invalid.
     157           16 :     ACL_CHECK_INVALID_PARAM_WITH_REASON_RET(
     158              :         (timeout < -1 || timeout == 0), timeout,
     159              :         "-1 represents infinite wait, timeout value greater than 0 represents waiting for a fixed time",
     160              :         ACL_ERROR_INVALID_PARAM);
     161            8 :     const rtError_t rtErr = rtProcessReport(timeout);
     162            8 :     if (rtErr != RT_ERROR_NONE) {
     163            6 :         if (rtErr == ACL_ERROR_RT_THREAD_SUBSCRIBE) {
     164            2 :             ACL_LOG_INFO("no subscribereport info, runtime errorCode = %d", static_cast<int32_t>(rtErr));
     165            4 :         } else if (rtErr == ACL_ERROR_RT_REPORT_TIMEOUT) {
     166            2 :             ACL_LOG_INFO("wait subscribereport timeout, runtime errorCode = %d", static_cast<int32_t>(rtErr));
     167              :         }
     168            6 :         return ACL_GET_ERRCODE_RTS(rtErr);
     169              :     }
     170            2 :     ACL_LOG_INFO("successfully aclrtProcessReport, timeout is %dms.", timeout);
     171            2 :     return ACL_SUCCESS;
     172           10 : }
     173              : 
     174            4 : aclError aclrtUnSubscribeReportImpl(uint64_t threadId, aclrtStream stream)
     175              : {
     176            4 :     ACL_LOG_INFO("start to execute aclrtUnSubscribeReport, threadId is %lu.", threadId);
     177            4 :     ACL_REQUIRES_RTS_OK(rtUnSubscribeReport(threadId, static_cast<rtStream_t>(stream)));
     178            2 :     ACL_LOG_INFO("successfully execute aclrtUnSubscribeReport, threadId is %lu.", threadId);
     179            2 :     return ACL_SUCCESS;
     180              : }
     181              : 
     182            4 : aclError aclrtRegStreamStateCallbackImpl(const char* regName, aclrtStreamStateCallback callback, void* args)
     183              : {
     184            4 :     ACL_PROFILING_REG(acl::AclProfType::AclrtRegStreamStateCallback);
     185            4 :     ACL_LOG_INFO("start to execute aclrtRegStreamStateCallback");
     186            4 :     ACL_REQUIRES_NOT_NULL_WITH_INPUT_REPORT(regName);
     187            3 :     ACL_REQUIRES_RTS_OK(rtsRegStreamStateCallback(regName, reinterpret_cast<rtsStreamStateCallback>(callback), args));
     188            2 :     ACL_LOG_INFO("successfully execute aclrtRegStreamStateCallback");
     189            2 :     return ACL_SUCCESS;
     190            4 : }
     191              : 
     192            4 : aclError aclrtRegDeviceStateCallbackImpl(const char* regName, aclrtDeviceStateCallback callback, void* args)
     193              : {
     194            4 :     ACL_PROFILING_REG(acl::AclProfType::AclrtRegDeviceStateCallback);
     195            4 :     ACL_LOG_INFO("start to execute aclrtRegDeviceStateCallback");
     196            4 :     ACL_REQUIRES_NOT_NULL_WITH_INPUT_REPORT(regName);
     197              : 
     198            3 :     ACL_REQUIRES_RTS_OK(rtsRegDeviceStateCallback(regName, reinterpret_cast<rtsDeviceStateCallback>(callback), args));
     199            2 :     ACL_LOG_INFO("successfully execute aclrtRegDeviceStateCallback");
     200            2 :     return ACL_SUCCESS;
     201            4 : }
     202              : 
     203            4 : aclError aclrtSetDeviceTaskAbortCallbackImpl(const char* regName, aclrtDeviceTaskAbortCallback callback, void* args)
     204              : {
     205            4 :     ACL_PROFILING_REG(acl::AclProfType::AclrtSetDeviceTaskAbortCallback);
     206            4 :     ACL_LOG_INFO("start to execute aclrtSetDeviceTaskAbortCallback");
     207            4 :     ACL_REQUIRES_NOT_NULL_WITH_INPUT_REPORT(regName);
     208              : 
     209            3 :     ACL_REQUIRES_RTS_OK(
     210              :         rtsSetDeviceTaskAbortCallback(regName, reinterpret_cast<rtsDeviceTaskAbortCallback>(callback), args));
     211            2 :     ACL_LOG_INFO("successfully execute aclrtSetDeviceTaskAbortCallback");
     212            2 :     return ACL_SUCCESS;
     213            4 : }
     214              : #ifdef __cplusplus
     215              : }
     216              : #endif
        

Generated by: LCOV version 2.0-1