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1 /*
2  * Copyright (c) 2023 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 "task_handler_wrap.h"
17 
18 #include <mutex>
19 #include "cpp/mutex.h"
20 #include "hilog_wrapper.h"
21 #include "ffrt_task_utils_wrap.h"
22 #include "queue_task_handler_wrap.h"
23 #include "ffrt_task_handler_wrap.h"
24 
25 namespace OHOS {
26 namespace AAFwk {
27 constexpr int MILL_TO_MICRO = 1000;
Cancel() const28 bool TaskHandle::Cancel() const
29 {
30     auto handler = handler_.lock();
31     if (!status_ || !handler || !innerTaskHandle_) {
32         return false;
33     }
34 
35     auto &status = *status_;
36     if (status != TaskStatus::PENDING) {
37         return false;
38     }
39 
40     auto ret = handler->CancelTaskInner(innerTaskHandle_);
41     // Here the result is ignored and status is set to canceled
42     status = TaskStatus::CANCELED;
43     return ret;
44 }
Sync() const45 void TaskHandle::Sync() const
46 {
47     auto handler = handler_.lock();
48     if (!status_ || !handler || !innerTaskHandle_) {
49         HILOG_ERROR("Invalid state");
50         return;
51     }
52     auto &status = *status_;
53     if (status == TaskStatus::FINISHED || status == TaskStatus::CANCELED) {
54         HILOG_ERROR("Invalid status");
55         return;
56     }
57     handler->WaitTaskInner(innerTaskHandle_);
58 }
59 
CreateQueueHandler(const std::string & queueName,TaskQoS queueQos)60 std::shared_ptr<TaskHandlerWrap> TaskHandlerWrap::CreateQueueHandler(const std::string &queueName,
61     TaskQoS queueQos)
62 {
63     return std::make_shared<QueueTaskHandlerWrap>(queueName, queueQos);
64 }
65 
GetFfrtHandler()66 std::shared_ptr<TaskHandlerWrap> TaskHandlerWrap::GetFfrtHandler()
67 {
68     static auto ffrtHandler = std::make_shared<FfrtTaskHandlerWrap>();
69     return ffrtHandler;
70 }
71 
TaskHandlerWrap()72 TaskHandlerWrap::TaskHandlerWrap()
73 {
74     tasksMutex_ = std::make_unique<ffrt::mutex>();
75 }
76 
77 TaskHandlerWrap::~TaskHandlerWrap() = default;
78 
SubmitTask(const std::function<void ()> & task)79 TaskHandle TaskHandlerWrap::SubmitTask(const std::function<void()> &task)
80 {
81     return SubmitTask(task, TaskAttribute());
82 }
SubmitTask(const std::function<void ()> & task,const std::string & name)83 TaskHandle TaskHandlerWrap::SubmitTask(const std::function<void()> &task, const std::string &name)
84 {
85     return SubmitTask(task, TaskAttribute{name});
86 }
SubmitTask(const std::function<void ()> & task,int64_t delayMillis)87 TaskHandle TaskHandlerWrap::SubmitTask(const std::function<void()> &task, int64_t delayMillis)
88 {
89     return SubmitTask(task, TaskAttribute{.delayMillis_ = delayMillis});
90 }
SubmitTask(const std::function<void ()> & task,TaskQoS taskQos)91 TaskHandle TaskHandlerWrap::SubmitTask(const std::function<void()> &task, TaskQoS taskQos)
92 {
93     return SubmitTask(task, TaskAttribute{.taskQos_ = taskQos});
94 }
SubmitTaskJust(const std::function<void ()> & task,const std::string & name,int64_t delayMillis)95 TaskHandle TaskHandlerWrap::SubmitTaskJust(const std::function<void()> &task,
96     const std::string &name, int64_t delayMillis)
97 {
98     return SubmitTask(task, TaskAttribute{name, delayMillis});
99 }
SubmitTask(const std::function<void ()> & task,const std::string & name,int64_t delayMillis,bool forceSubmit)100 TaskHandle TaskHandlerWrap::SubmitTask(const std::function<void()> &task,
101     const std::string &name, int64_t delayMillis, bool forceSubmit)
102 {
103     TaskAttribute atskAttr{name, delayMillis};
104     std::lock_guard<ffrt::mutex> guard(*tasksMutex_);
105     auto it = tasks_.find(name);
106     if (it != tasks_.end()) {
107         HILOG_DEBUG("SubmitTask repeated task: %{public}s", name.c_str());
108         if (forceSubmit) {
109             return SubmitTask(task, atskAttr);
110         } else {
111             return TaskHandle();
112         }
113     }
114 
115     auto result = SubmitTask(task, atskAttr);
116     tasks_.emplace(name, result);
117 
118     // submit clear task to clear map record
119     auto clearTask = [whandler = weak_from_this(), name, taskHandle = result]() {
120         auto handler = whandler.lock();
121         if (!handler) {
122             return;
123         }
124         handler->RemoveTask(name, taskHandle);
125     };
126     SubmitTask(clearTask, delayMillis);
127 
128     return result;
129 }
SubmitTask(const std::function<void ()> & task,const TaskAttribute & taskAttr)130 TaskHandle TaskHandlerWrap::SubmitTask(const std::function<void()> &task, const TaskAttribute &taskAttr)
131 {
132     if (!task) {
133         return TaskHandle();
134     }
135     TaskHandle result(shared_from_this(), nullptr);
136     auto taskWrap = [result, task]() {
137         *result.status_ = TaskStatus::EXECUTING;
138         task();
139         *result.status_ = TaskStatus::FINISHED;
140     };
141     result.innerTaskHandle_ = SubmitTaskInner(taskWrap, taskAttr);
142     return result;
143 }
CancelTask(const std::string & name)144 bool TaskHandlerWrap::CancelTask(const std::string &name)
145 {
146     HILOG_DEBUG("CancelTask task: %{public}s", name.c_str());
147     std::lock_guard<ffrt::mutex> guard(*tasksMutex_);
148     auto it = tasks_.find(name);
149     if (it == tasks_.end()) {
150         return false;
151     }
152 
153     auto taskHandle = it->second;
154     tasks_.erase(it);
155     return taskHandle.Cancel();
156 }
157 
RemoveTask(const std::string & name,const TaskHandle & taskHandle)158 bool TaskHandlerWrap::RemoveTask(const std::string &name, const TaskHandle &taskHandle)
159 {
160     std::lock_guard<ffrt::mutex> guard(*tasksMutex_);
161     auto it = tasks_.find(name);
162     if (it == tasks_.end() || !it->second.IsSame(taskHandle)) {
163         return false;
164     }
165     tasks_.erase(it);
166     return true;
167 }
Convert2FfrtQos(TaskQoS taskqos)168 ffrt::qos Convert2FfrtQos(TaskQoS taskqos)
169 {
170     switch (taskqos) {
171         case TaskQoS::INHERENT:
172             return ffrt::qos_inherit;
173         case TaskQoS::BACKGROUND:
174             return ffrt::qos_background;
175         case TaskQoS::UTILITY:
176             return ffrt::qos_utility;
177         case TaskQoS::DEFAULT:
178             return ffrt::qos_default;
179         case TaskQoS::USER_INITIATED:
180             return ffrt::qos_user_initiated;
181         case TaskQoS::DEADLINE_REQUEST:
182             return ffrt::qos_deadline_request;
183         case TaskQoS::USER_INTERACTIVE:
184             return ffrt::qos_user_interactive;
185         default:
186             break;
187     }
188 
189     return ffrt::qos_inherit;
190 }
BuildFfrtTaskAttr(const TaskAttribute & taskAttr,ffrt::task_attr & result)191 void BuildFfrtTaskAttr(const TaskAttribute &taskAttr, ffrt::task_attr &result)
192 {
193     if (taskAttr.delayMillis_ > 0) {
194         result.delay(taskAttr.delayMillis_ * MILL_TO_MICRO);
195     }
196     if (!taskAttr.taskName_.empty()) {
197         result.name(taskAttr.taskName_.c_str());
198     }
199     if (taskAttr.taskQos_ != TaskQoS::DEFAULT) {
200         result.qos(Convert2FfrtQos(taskAttr.taskQos_));
201     }
202 }
203 }  // namespace AAFWK
204 }  // namespace OHOS