1 /*
2  * Copyright (c) 2021 Huawei Device Co., Ltd.
3  * Licensed under the Apache License, Version 2.0 (the "License");
4  * you may not use this file except in compliance with the License.
5  * You may obtain a copy of the License at
6  *
7  *     http://www.apache.org/licenses/LICENSE-2.0
8  *
9  * Unless required by applicable law or agreed to in writing, software
10  * distributed under the License is distributed on an "AS IS" BASIS,
11  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12  * See the License for the specific language governing permissions and
13  * limitations under the License.
14  */
15 
16 #include "async_call.h"
17 
18 #include <algorithm>
19 
20 #include "global.h"
21 #include "js_utils.h"
22 
23 namespace OHOS {
24 namespace MiscServices {
25 using namespace std::chrono;
26 constexpr size_t ARGC_MAX = 6;
27 constexpr int32_t MAX_WAIT_TIME = 500; // ms
GetTimeStamp()28 static inline uint64_t GetTimeStamp()
29 {
30     return duration_cast<milliseconds>(system_clock::now().time_since_epoch()).count();
31 }
AsyncCall(napi_env env,napi_callback_info info,std::shared_ptr<Context> context,size_t maxParamCount)32 AsyncCall::AsyncCall(napi_env env, napi_callback_info info, std::shared_ptr<Context> context, size_t maxParamCount)
33     : env_(env)
34 {
35     context_ = new AsyncContext();
36     NAPI_ASSERT_RETURN_VOID(env, context_ != nullptr, "context_ != nullptr");
37     size_t argc = ARGC_MAX;
38     napi_value self = nullptr;
39     napi_value argv[ARGC_MAX] = { nullptr };
40     NAPI_CALL_RETURN_VOID(env, napi_get_cb_info(env, info, &argc, argv, &self, nullptr));
41     napi_valuetype valueType = napi_undefined;
42     argc = std::min(argc, maxParamCount);
43     if (argc > 0) {
44         napi_typeof(env, argv[argc - 1], &valueType);
45         if (valueType == napi_function) {
46             napi_create_reference(env, argv[argc - 1], 1, &context_->callback);
47             argc = argc - 1;
48         }
49     }
50     NAPI_CALL_RETURN_VOID(env, (*context)(env, argc, argv, self));
51     context_->ctx = std::move(context);
52     napi_create_reference(env, self, 1, &context_->self);
53 }
54 
~AsyncCall()55 AsyncCall::~AsyncCall()
56 {
57     if (context_ == nullptr) {
58         return;
59     }
60 
61     DeleteContext(env_, context_);
62 }
63 
Call(napi_env env,Context::ExecAction exec,const std::string & resourceName)64 napi_value AsyncCall::Call(napi_env env, Context::ExecAction exec, const std::string &resourceName)
65 {
66     if (context_ == nullptr) {
67         IMSA_HILOGE("context_ is nullptr!");
68         return nullptr;
69     }
70     if (context_->ctx == nullptr) {
71         IMSA_HILOGE("context_->ctx is nullptr!");
72         return nullptr;
73     }
74     context_->ctx->exec_ = std::move(exec);
75     napi_value promise = nullptr;
76     if (context_->callback == nullptr) {
77         napi_create_promise(env, &context_->defer, &promise);
78     } else {
79         napi_get_undefined(env, &promise);
80     }
81     napi_async_work work = context_->work;
82     napi_value resource = nullptr;
83     std::string name = "IMF_" + resourceName;
84     napi_create_string_utf8(env, name.c_str(), NAPI_AUTO_LENGTH, &resource);
85     napi_create_async_work(env, nullptr, resource, AsyncCall::OnExecute, AsyncCall::OnComplete, context_, &work);
86     context_->work = work;
87     context_ = nullptr;
88     napi_queue_async_work_with_qos(env, work, napi_qos_user_initiated);
89     return promise;
90 }
91 
Post(napi_env env,Context::ExecAction exec,std::shared_ptr<TaskQueue> queue,const char * func)92 napi_value AsyncCall::Post(napi_env env, Context::ExecAction exec, std::shared_ptr<TaskQueue> queue, const char *func)
93 {
94     if (context_ == nullptr || context_->ctx == nullptr || queue == nullptr) {
95         IMSA_HILOGE("context is nullptr!");
96         return nullptr;
97     }
98     context_->ctx->exec_ = std::move(exec);
99     napi_value promise = nullptr;
100     if (context_->callback == nullptr) {
101         napi_create_promise(env, &context_->defer, &promise);
102     } else {
103         napi_get_undefined(env, &promise);
104     }
105     napi_async_work work = context_->work;
106     napi_value resource = nullptr;
107     napi_create_string_utf8(env, func, NAPI_AUTO_LENGTH, &resource);
108     napi_create_async_work(env, nullptr, resource, AsyncCall::OnExecuteSeq, AsyncCall::OnComplete, context_, &work);
109     context_->work = work;
110     context_->queue = queue;
111     std::unique_lock<ffrt::mutex> lock(queue->queuesMutex_);
112     queue->taskQueue_.emplace(env, work, func);
113     if (!queue->isRunning) {
114         auto status = napi_queue_async_work_with_qos(env, work, napi_qos_user_initiated);
115         queue->isRunning = status == napi_ok;
116         if (status != napi_ok) {
117             IMSA_HILOGE("async work failed.status:%{public}d, func:%{public}s!", status, func);
118         }
119     }
120     context_ = nullptr;
121     return promise;
122 }
123 
SyncCall(napi_env env,AsyncCall::Context::ExecAction exec)124 napi_value AsyncCall::SyncCall(napi_env env, AsyncCall::Context::ExecAction exec)
125 {
126     if ((context_ == nullptr) || (context_->ctx == nullptr)) {
127         IMSA_HILOGE("context_ or context_->ctx is nullptr!");
128         return nullptr;
129     }
130     context_->ctx->exec_ = std::move(exec);
131     napi_value promise = nullptr;
132     if (context_->callback == nullptr) {
133         napi_create_promise(env, &context_->defer, &promise);
134     } else {
135         napi_get_undefined(env, &promise);
136     }
137     AsyncCall::OnExecute(env, context_);
138     AsyncCall::OnComplete(env, context_->ctx->status_, context_);
139     return promise;
140 }
141 
OnExecute(napi_env env,void * data)142 void AsyncCall::OnExecute(napi_env env, void *data)
143 {
144     AsyncContext *context = reinterpret_cast<AsyncContext *>(data);
145     if (context == nullptr || context->ctx == nullptr) {
146         IMSA_HILOGE("context or context->ctx is nullptr!");
147         return;
148     }
149     context->ctx->Exec();
150 }
151 
OnExecuteSeq(napi_env env,void * data)152 void AsyncCall::OnExecuteSeq(napi_env env, void *data)
153 {
154     OnExecute(env, data);
155     AsyncContext *context = reinterpret_cast<AsyncContext *>(data);
156     if (context == nullptr || context->queue == nullptr) {
157         IMSA_HILOGE("context or context->queue is nullptr!");
158         return;
159     }
160     auto queue = context->queue;
161     std::unique_lock<ffrt::mutex> lock(queue->queuesMutex_);
162     if (!queue->taskQueue_.empty()) {
163         queue->taskQueue_.pop();
164     }
165     queue->isRunning = !queue->taskQueue_.empty() &&
166                        napi_queue_async_work_with_qos(queue->taskQueue_.front().env,
167                            queue->taskQueue_.front().work, napi_qos_user_initiated) == napi_ok;
168 }
169 
OnComplete(napi_env env,napi_status status,void * data)170 void AsyncCall::OnComplete(napi_env env, napi_status status, void *data)
171 {
172     AsyncContext *context = reinterpret_cast<AsyncContext *>(data);
173     napi_value output = nullptr;
174     if (context == nullptr || context->ctx == nullptr) {
175         IMSA_HILOGE("context or context->ctx is nullptr!");
176         return;
177     }
178     napi_status runStatus = (*context->ctx)(env, &output);
179     napi_value result[ARG_BUTT] = { 0 };
180     if (status == napi_ok && runStatus == napi_ok) {
181         napi_get_undefined(env, &result[ARG_ERROR]);
182         if (output != nullptr) {
183             IMSA_HILOGD("output != nullptr!");
184             result[ARG_DATA] = output;
185         } else {
186             IMSA_HILOGD("output is nullptr!");
187             napi_get_undefined(env, &result[ARG_DATA]);
188         }
189     } else {
190         IMSA_HILOGE("runStatus: [%{public}d]", runStatus);
191         result[ARG_ERROR] = JsUtils::ToError(env, context->ctx->errorCode_, context->ctx->errMessage_);
192         napi_get_undefined(env, &result[ARG_DATA]);
193     }
194     if (context->defer != nullptr) {
195         if (status == napi_ok && runStatus == napi_ok) {
196             napi_resolve_deferred(env, context->defer, result[ARG_DATA]);
197         } else {
198             napi_reject_deferred(env, context->defer, result[ARG_ERROR]);
199         }
200     } else {
201         napi_value callback = nullptr;
202         napi_get_reference_value(env, context->callback, &callback);
203         napi_value returnValue;
204         napi_call_function(env, nullptr, callback, ARG_BUTT, result, &returnValue);
205     }
206     DeleteContext(env, context);
207 }
208 
DeleteContext(napi_env env,AsyncContext * context)209 void AsyncCall::DeleteContext(napi_env env, AsyncContext *context)
210 {
211     if (env != nullptr) {
212         napi_delete_reference(env, context->callback);
213         napi_delete_reference(env, context->self);
214         napi_delete_async_work(env, context->work);
215     }
216     delete context;
217 }
218 
InnerTask(napi_env env,napi_async_work work,const char * name)219 AsyncCall::InnerTask::InnerTask(napi_env env, napi_async_work work, const char *name)
220     : env(env), work(work), name(name), startTime(GetTimeStamp())
221 {
222 }
223 
~InnerTask()224 AsyncCall::InnerTask::~InnerTask()
225 {
226     auto endTime = GetTimeStamp();
227     if (endTime - startTime > MAX_WAIT_TIME) {
228         IMSA_HILOGW("async work timeout! func:%{public}s, startTime:%{public}" PRIu64 ", endTime:%{public}" PRIu64
229                     ", cost:%{public}" PRIu64 "ms",
230             name, startTime, endTime, endTime - startTime);
231     } else {
232         IMSA_HILOGD("async work finished! func:%{public}s, startTime:%{public}" PRIu64 ", endTime:%{public}" PRIu64
233                     ", cost:%{public}" PRIu64 "ms",
234             name, startTime, endTime, endTime - startTime);
235     }
236 }
237 } // namespace MiscServices
238 } // namespace OHOS
239