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
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