1a34a8711Sopenharmony_ci# IPC/RPC组件<a name="ZH-CN_TOPIC_0000001103602398"></a>
2a34a8711Sopenharmony_ci
3a34a8711Sopenharmony_ci-   [简介](#section11660541593)
4a34a8711Sopenharmony_ci-   [系统架构](#section1950291414611)
5a34a8711Sopenharmony_ci-   [目录](#section161941989596)
6a34a8711Sopenharmony_ci-   [约束](#section119744591305)
7a34a8711Sopenharmony_ci-   [编译构建](#section137768191623)
8a34a8711Sopenharmony_ci-   [说明](#section1312121216216)
9a34a8711Sopenharmony_ci    -   [接口说明](#section1551164914237)
10a34a8711Sopenharmony_ci    -   [使用说明](#section129654513264)
11a34a8711Sopenharmony_ci
12a34a8711Sopenharmony_ci-   [相关仓](#section1371113476307)
13a34a8711Sopenharmony_ci
14a34a8711Sopenharmony_ci## 简介<a name="section11660541593"></a>
15a34a8711Sopenharmony_ci
16a34a8711Sopenharmony_ciIPC(Inter-Process Communication)与RPC(Remote Procedure Call)机制用于实现跨进程通信,不同的是前者使用Binder驱动,用于设备内的跨进程通信,而后者使用软总线驱动,用于跨设备跨进程通信。IPC和RPC通常采用客户端-服务器(Client-Server)模型,服务请求方(Client)可获取提供服务提供方(Server)的代理 (Proxy),并通过此代理读写数据来实现进程间的数据通信。通常,系统能力(System Ability)Server侧会先注册到系统能力管理者(System Ability Manager,缩写SAMgr)中,SAMgr负责管理这些SA并向Client提供相关的接口。Client要和某个具体的SA通信,必须先从SAMgr中获取该SA的代理,然后使用代理和SA通信。三方应用可以使用FA提供的接口绑定服务提供方的Ability,获取代理,进行通信。下文使用Proxy表示服务请求方,Stub表示服务提供方。
17a34a8711Sopenharmony_ci
18a34a8711Sopenharmony_ci## 系统架构<a name="section1950291414611"></a>
19a34a8711Sopenharmony_ci
20a34a8711Sopenharmony_ci**图 1**  IPC通信机制架构图<a name="fig312319321710"></a>
21a34a8711Sopenharmony_ci![](figures/ipc-architecture.png "IPC通信机制架构图")
22a34a8711Sopenharmony_ci
23a34a8711Sopenharmony_ci## 目录<a name="section161941989596"></a>
24a34a8711Sopenharmony_ci
25a34a8711Sopenharmony_ci```
26a34a8711Sopenharmony_ci/foundation/communication/ipc
27a34a8711Sopenharmony_ci├── interfaces        # 对外接口存放目录
28a34a8711Sopenharmony_ci│   └── innerkits     # 对内部子系统暴露的头文件存放目录
29a34a8711Sopenharmony_ci│       ├── ipc_core     # ipc 接口存放目录
30a34a8711Sopenharmony_ci│       └── libdbinder   # dbinder 接口存放目录
31a34a8711Sopenharmony_ci├── ipc            # ipc 框架代码
32a34a8711Sopenharmony_ci│   ├── native     # ipc native 实现存放目录
33a34a8711Sopenharmony_ci│       ├── src    # ipc native 源代码存放目录
34a34a8711Sopenharmony_ci│       └── test   # ipc native 单元测试用例存放目录
35a34a8711Sopenharmony_ci│   └── test       # ipc native 模块测试用例存放目录
36a34a8711Sopenharmony_ci├── service        # dbinder 实现存放目录
37a34a8711Sopenharmony_ci│   └── dbinder    # dbinder 源代码存放目录
38a34a8711Sopenharmony_ci```
39a34a8711Sopenharmony_ci
40a34a8711Sopenharmony_ci## 约束<a name="section119744591305"></a>
41a34a8711Sopenharmony_ci
42a34a8711Sopenharmony_ci1. 单个设备上跨进程通信时,传输的数据量最大约为1MB,过大的数据量请使用匿名共享内存。
43a34a8711Sopenharmony_ci2. 不支持把跨设备的Proxy对象传递回该Proxy对象所指向的Stub对象所在的设备。
44a34a8711Sopenharmony_ci
45a34a8711Sopenharmony_ci## 编译构建<a name="section137768191623"></a>
46a34a8711Sopenharmony_ci
47a34a8711Sopenharmony_ci**JS侧依赖**
48a34a8711Sopenharmony_ci
49a34a8711Sopenharmony_ci```
50a34a8711Sopenharmony_ciimport rpc from "@ohos.rpc"
51a34a8711Sopenharmony_ci```
52a34a8711Sopenharmony_ci
53a34a8711Sopenharmony_ci**Native侧编译依赖**
54a34a8711Sopenharmony_ci
55a34a8711Sopenharmony_cisdk依赖:
56a34a8711Sopenharmony_ci
57a34a8711Sopenharmony_ci```
58a34a8711Sopenharmony_ciexternal_deps = [
59a34a8711Sopenharmony_ci  "ipc:ipc_core",
60a34a8711Sopenharmony_ci]
61a34a8711Sopenharmony_ci```
62a34a8711Sopenharmony_ci
63a34a8711Sopenharmony_ci此外, IPC/RPC依赖的refbase实现在公共基础库下,请增加对utils的依赖:
64a34a8711Sopenharmony_ci
65a34a8711Sopenharmony_ci```
66a34a8711Sopenharmony_ciexternal_deps = [
67a34a8711Sopenharmony_ci  "c_utils:utils",
68a34a8711Sopenharmony_ci]
69a34a8711Sopenharmony_ci```
70a34a8711Sopenharmony_ci
71a34a8711Sopenharmony_ci**Rust侧编译依赖**
72a34a8711Sopenharmony_ci
73a34a8711Sopenharmony_ci```
74a34a8711Sopenharmony_ciexternal_deps = [ "ipc:ipc_rust" ]
75a34a8711Sopenharmony_ci```
76a34a8711Sopenharmony_ci
77a34a8711Sopenharmony_ci## 说明<a name="section1312121216216"></a>
78a34a8711Sopenharmony_ci
79a34a8711Sopenharmony_ci**JS侧实现跨进程通信基本步骤:**
80a34a8711Sopenharmony_ci
81a34a8711Sopenharmony_ci1. 获取代理
82a34a8711Sopenharmony_ci
83a34a8711Sopenharmony_ci   使用ohos.app.ability.UIAbility提供的globalThis.context.connectServiceExtensionAbility方法绑定Ability,在参数里指定要绑定的Ability所在应用的包名、组件名,如果是跨设备的情况,还需要指定所在设备的NetworkId。用户需要在服务端的onConnect方法里返回一个继承自ohos.rpc.RemoteObject的对象,此对象会在其onRemoteMessageRequest方法里接收到请求。
84a34a8711Sopenharmony_ci
85a34a8711Sopenharmony_ci2. 发送请求
86a34a8711Sopenharmony_ci
87a34a8711Sopenharmony_ci   客户端在globalThis.context.connectServiceExtensionAbility参数指定的回调函数接收到代理对象后,使用ohos.rpc模块提供的方法完成RPC通信,其中MessageParcel提供了读写各种类型数据的方法,IRemoteObject提供了发送请求的方法,RemoteObject提供了处理请求的方法onRemoteRequest,用户需要重写。
88a34a8711Sopenharmony_ci
89a34a8711Sopenharmony_ci**Native侧实现跨进程通信的基本步骤:**
90a34a8711Sopenharmony_ci
91a34a8711Sopenharmony_ci1. 定义接口类
92a34a8711Sopenharmony_ci
93a34a8711Sopenharmony_ci   接口类继承IRemoteBroker,定义描述符、业务函数和消息码。
94a34a8711Sopenharmony_ci
95a34a8711Sopenharmony_ci2. 实现服务提供端\(Stub\)
96a34a8711Sopenharmony_ci
97a34a8711Sopenharmony_ci   Stub继承IRemoteStub\(Native\),除了接口类中未实现方法外,还需要实现AsObject方法及OnRemoteRequest方法。
98a34a8711Sopenharmony_ci
99a34a8711Sopenharmony_ci3. 实现服务请求端\(Proxy\)
100a34a8711Sopenharmony_ci
101a34a8711Sopenharmony_ci   Proxy继承IRemoteProxy\(Native\),封装业务函数,调用SendRequest将请求发送到Stub。
102a34a8711Sopenharmony_ci
103a34a8711Sopenharmony_ci4. 注册SA
104a34a8711Sopenharmony_ci
105a34a8711Sopenharmony_ci   服务提供方所在进程启动后,申请SA的唯一标识,将Stub注册到SAMgr。
106a34a8711Sopenharmony_ci
107a34a8711Sopenharmony_ci5. 获取SA
108a34a8711Sopenharmony_ci
109a34a8711Sopenharmony_ci6. 通过SA的标识和设备NetworkId,从SAMgr获取Proxy,通过Proxy实现与Stub的跨进程通信。
110a34a8711Sopenharmony_ci
111a34a8711Sopenharmony_ci**Rust侧实现跨进程通信的基本步骤:**
112a34a8711Sopenharmony_ci
113a34a8711Sopenharmony_ci1. 定义接口
114a34a8711Sopenharmony_ci
115a34a8711Sopenharmony_ci   继承IPC框架的IRemoteBroker特征,定义一个业务自己的trait,在此trait中定义proxy和stub之间的IPC方法。
116a34a8711Sopenharmony_ci
117a34a8711Sopenharmony_ci2. 定义服务
118a34a8711Sopenharmony_ci
119a34a8711Sopenharmony_ci   和c++ 定义的服务类似,Rust服务相关的类型有两个;
120a34a8711Sopenharmony_ci
121a34a8711Sopenharmony_ci   1)由业务提供名字,通过宏define_remote_object定义。
122a34a8711Sopenharmony_ci
123a34a8711Sopenharmony_ci   2)由业务定义,框架不关心其内容,只要求其必须实现步骤1中定义的接口trait。
124a34a8711Sopenharmony_ci
125a34a8711Sopenharmony_ci3. 定义代理
126a34a8711Sopenharmony_ci
127a34a8711Sopenharmony_ci   代理的定义由业务提供名字,通过宏define_remote_object定义代理的类型。
128a34a8711Sopenharmony_ci
129a34a8711Sopenharmony_ci4. 创建并注册服务
130a34a8711Sopenharmony_ci
131a34a8711Sopenharmony_ci   服务定义完成后,只有注册到samgr后,其他进程才能获取该服务的代理,完成和该服务的通信。
132a34a8711Sopenharmony_ci
133a34a8711Sopenharmony_ci5. 获取代理
134a34a8711Sopenharmony_ci
135a34a8711Sopenharmony_ci   通过向samgr发起请求,可以获取到指定服务的代理对象,之后便可以调用该代理对象的IPC方法实现和服务的通信。
136a34a8711Sopenharmony_ci
137a34a8711Sopenharmony_ci6. 测试服务能力
138a34a8711Sopenharmony_ci
139a34a8711Sopenharmony_ci### 接口说明<a name="section1551164914237"></a>
140a34a8711Sopenharmony_ci
141a34a8711Sopenharmony_ci**表 1**  JS侧IPC关键API
142a34a8711Sopenharmony_ci
143a34a8711Sopenharmony_ci| 模块                       | 方法                                                         | 功能说明                                    |
144a34a8711Sopenharmony_ci| -------------------------- | ------------------------------------------------------------ | ------------------------------------------- |
145a34a8711Sopenharmony_ci| ohos.app.ability.UIAbility | globalThis.context.connectServiceExtensionAbility(want: Want, options:ConnectOptions ): number | 绑定指定的Ability,在回调函数里接收代理对象 |
146a34a8711Sopenharmony_ci| ohos.rpc.RemoteObject      | onRemoteMessageRequest(code: number, data: MessageParcel, reply: MessageParcel, options: MessageOption): boolean \| Promise<boolean> | 服务端处理请求,返回结果                    |
147a34a8711Sopenharmony_ci| ohos.rpc.IRemoteObject     | sendRequest(code: number, data: MessageParcel, reply: MessageParcel, options: MessageOption): Promise<SendRequestResult> | 发送请求,在期约里接收结果                  |
148a34a8711Sopenharmony_ci| ohos.rpc.IRemoteObject     | sendRequest(code: number, data: MessageParcel, reply: MessageParcel, options: MessageOption, callback: AsyncCallback<SendRequestResult>): void | 发送请求,在回调函数里接收结果              |
149a34a8711Sopenharmony_ci| ohos.rpc.MessageParcel     | writeRemoteObject(object: IRemoteObject): boolean            | 序列化IRemoteObject对象                     |
150a34a8711Sopenharmony_ci| ohos.rpc.MessageParcel     | readRemoteObject(): IRemoteObject                            | 反序列化IRemoteObject对象                   |
151a34a8711Sopenharmony_ci
152a34a8711Sopenharmony_ci
153a34a8711Sopenharmony_ci
154a34a8711Sopenharmony_ci**表 2**  Native侧IPC接口
155a34a8711Sopenharmony_ci
156a34a8711Sopenharmony_ci<a name="table178849240013"></a>
157a34a8711Sopenharmony_ci
158a34a8711Sopenharmony_ci<table><thead align="left"><tr id="row6884924608"><th class="cellrowborder" valign="top" width="14.12141214121412%" id="mcps1.2.4.1.1"><p id="p98846241706"><a name="p98846241706"></a><a name="p98846241706"></a>类/接口</p>
159a34a8711Sopenharmony_ci</th>
160a34a8711Sopenharmony_ci<th class="cellrowborder" valign="top" width="52.54525452545254%" id="mcps1.2.4.1.2"><p id="p1488482414020"><a name="p1488482414020"></a><a name="p1488482414020"></a>方法</p>
161a34a8711Sopenharmony_ci</th>
162a34a8711Sopenharmony_ci<th class="cellrowborder" valign="top" width="33.33333333333333%" id="mcps1.2.4.1.3"><p id="p388516244016"><a name="p388516244016"></a><a name="p388516244016"></a>功能说明</p>
163a34a8711Sopenharmony_ci</th>
164a34a8711Sopenharmony_ci</tr>
165a34a8711Sopenharmony_ci</thead>
166a34a8711Sopenharmony_ci<tbody><tr id="row15885824402"><td class="cellrowborder" valign="top" width="14.12141214121412%" headers="mcps1.2.4.1.1 "><p id="p08859241008"><a name="p08859241008"></a><a name="p08859241008"></a>IRemoteBroker</p>
167a34a8711Sopenharmony_ci</td>
168a34a8711Sopenharmony_ci<td class="cellrowborder" valign="top" width="52.54525452545254%" headers="mcps1.2.4.1.2 "><p id="p388572412010"><a name="p388572412010"></a><a name="p388572412010"></a>sptr&lt;IRemoteObject&gt; AsObject()</p>
169a34a8711Sopenharmony_ci</td>
170a34a8711Sopenharmony_ci<td class="cellrowborder" valign="top" width="33.33333333333333%" headers="mcps1.2.4.1.3 "><p id="p13885724405"><a name="p13885724405"></a><a name="p13885724405"></a>返回通信对象。派生类需要实现,Stub端返回RemoteObject对象本身,Proxy端返回代理对象。</p>
171a34a8711Sopenharmony_ci</td>
172a34a8711Sopenharmony_ci</tr>
173a34a8711Sopenharmony_ci<tr id="row138859241808"><td class="cellrowborder" valign="top" width="14.12141214121412%" headers="mcps1.2.4.1.1 "><p id="p1888515245012"><a name="p1888515245012"></a><a name="p1888515245012"></a>IRemoteStub</p>
174a34a8711Sopenharmony_ci</td>
175a34a8711Sopenharmony_ci<td class="cellrowborder" valign="top" width="52.54525452545254%" headers="mcps1.2.4.1.2 "><p id="p1388516240011"><a name="p1388516240011"></a><a name="p1388516240011"></a>virtual int OnRemoteRequest(uint32_t code, MessageParcel &amp;data, MessageParcel &amp;reply, MessageOption &amp;option)</p>
176a34a8711Sopenharmony_ci</td>
177a34a8711Sopenharmony_ci<td class="cellrowborder" valign="top" width="33.33333333333333%" headers="mcps1.2.4.1.3 "><p id="p1188582414016"><a name="p1188582414016"></a><a name="p1188582414016"></a>请求处理方法,派生类需要重写,处理Proxy的请求并返回结果。</p>
178a34a8711Sopenharmony_ci</td>
179a34a8711Sopenharmony_ci</tr>
180a34a8711Sopenharmony_ci<tr id="row108856241904"><td class="cellrowborder" valign="top" width="14.12141214121412%" headers="mcps1.2.4.1.1 "><p id="p6885924609"><a name="p6885924609"></a><a name="p6885924609"></a>IRemoteProxy</p>
181a34a8711Sopenharmony_ci</td>
182a34a8711Sopenharmony_ci<td class="cellrowborder" valign="top" width="52.54525452545254%" headers="mcps1.2.4.1.2 ">&nbsp;&nbsp;</td>
183a34a8711Sopenharmony_ci<td class="cellrowborder" valign="top" width="33.33333333333333%" headers="mcps1.2.4.1.3 "><p id="p688592413018"><a name="p688592413018"></a><a name="p688592413018"></a>业务Proxy类派生自IRemoteProxy类。</p>
184a34a8711Sopenharmony_ci</td>
185a34a8711Sopenharmony_ci</tr>
186a34a8711Sopenharmony_ci</tbody>
187a34a8711Sopenharmony_ci</table>
188a34a8711Sopenharmony_ci
189a34a8711Sopenharmony_ci### 使用说明<a name="section129654513264"></a>
190a34a8711Sopenharmony_ci
191a34a8711Sopenharmony_ci**JS侧使用说明**
192a34a8711Sopenharmony_ci
193a34a8711Sopenharmony_ci1. 客户端构造变量want,指定要绑定的Ability所在应用的包名、组件名,如果是跨设备的场景,还需要目标设备NetworkId。构造变量connect,指定绑定成功、绑定失败、断开连接时的回调函数。使用UIAbility提供的接口绑定Ability。
194a34a8711Sopenharmony_ci
195a34a8711Sopenharmony_ci   ```
196a34a8711Sopenharmony_ci   import rpc from "@ohos.rpc"
197a34a8711Sopenharmony_ci
198a34a8711Sopenharmony_ci   let proxy = null
199a34a8711Sopenharmony_ci   let connectId = null
200a34a8711Sopenharmony_ci
201a34a8711Sopenharmony_ci   // 单个设备
202a34a8711Sopenharmony_ci   let want = {
203a34a8711Sopenharmony_ci       // 包名和组件名写实际的值
204a34a8711Sopenharmony_ci       "bundleName": "ohos.rpc.test.server",
205a34a8711Sopenharmony_ci       "abilityName": "ohos.rpc.test.server.ServiceAbility",
206a34a8711Sopenharmony_ci   }
207a34a8711Sopenharmony_ci   let connect = {
208a34a8711Sopenharmony_ci       onConnect:function(elementName, remote) {
209a34a8711Sopenharmony_ci           proxy = remote
210a34a8711Sopenharmony_ci       },
211a34a8711Sopenharmony_ci       onDisconnect:function(elementName) {
212a34a8711Sopenharmony_ci       },
213a34a8711Sopenharmony_ci       onFailed:function() {
214a34a8711Sopenharmony_ci           proxy = null
215a34a8711Sopenharmony_ci       }
216a34a8711Sopenharmony_ci   }
217a34a8711Sopenharmony_ci   connectId = globalThis.context.connectServiceExtensionAbility(want, connect)
218a34a8711Sopenharmony_ci
219a34a8711Sopenharmony_ci   // 如果是跨设备绑定,可以使用deviceManager获取目标设备NetworkId
220a34a8711Sopenharmony_ci   import deviceManager from '@ohos.distributedHardware.deviceManager'
221a34a8711Sopenharmony_ci   function deviceManagerCallback(deviceManager) {
222a34a8711Sopenharmony_ci       let deviceList = deviceManager.getTrustedDeviceListSync()
223a34a8711Sopenharmony_ci       let deviceId = deviceList[0].deviceId
224a34a8711Sopenharmony_ci       let want = {
225a34a8711Sopenharmony_ci           "bundleName": "ohos.rpc.test.server",
226a34a8711Sopenharmony_ci           "abilityName": "ohos.rpc.test.service.ServiceAbility",
227a34a8711Sopenharmony_ci           "deviceId": deviceId,
228a34a8711Sopenharmony_ci           "flags": 256
229a34a8711Sopenharmony_ci       }
230a34a8711Sopenharmony_ci       connectId = globalThis.context.connectServiceExtensionAbility(want, connect)
231a34a8711Sopenharmony_ci   }
232a34a8711Sopenharmony_ci   // 第一个参数是本应用的包名,第二个参数是接收deviceManager的回调函数
233a34a8711Sopenharmony_ci   deviceManager.createDeviceManager("ohos.rpc.test", deviceManagerCallback)
234a34a8711Sopenharmony_ci   ```
235a34a8711Sopenharmony_ci
236a34a8711Sopenharmony_ci
237a34a8711Sopenharmony_ci
238a34a8711Sopenharmony_ci2. 服务端被绑定的Ability在onConnect方法里返回继承自rpc.RemoteObject的对象,该对象需要实现onRemoteMessageRequest方法,处理客户端的请求。
239a34a8711Sopenharmony_ci
240a34a8711Sopenharmony_ci   ```
241a34a8711Sopenharmony_ci   import rpc from "@ohos.rpc"
242a34a8711Sopenharmony_ci   onConnect(want: Want) {
243a34a8711Sopenharmony_ci       var robj:rpc.RemoteObject = new Stub("rpcTestAbility")
244a34a8711Sopenharmony_ci       return robj
245a34a8711Sopenharmony_ci   }
246a34a8711Sopenharmony_ci   class Stub extends rpc.RemoteObject {
247a34a8711Sopenharmony_ci       constructor(descriptor) {
248a34a8711Sopenharmony_ci           super(descriptor)
249a34a8711Sopenharmony_ci       }
250a34a8711Sopenharmony_ci       onRemoteMessageRequest(code, data, reply, option) {
251a34a8711Sopenharmony_ci           // 根据code处理客户端的请求
252a34a8711Sopenharmony_ci           return true
253a34a8711Sopenharmony_ci       }
254a34a8711Sopenharmony_ci   }
255a34a8711Sopenharmony_ci   ```
256a34a8711Sopenharmony_ci
257a34a8711Sopenharmony_ci
258a34a8711Sopenharmony_ci
259a34a8711Sopenharmony_ci3. 客户端在onConnect回调里接收到代理对象,调用sendRequest方法发起请求,在期约或者回调函数里接收结果。
260a34a8711Sopenharmony_ci
261a34a8711Sopenharmony_ci   ```
262a34a8711Sopenharmony_ci   import rpc from "@ohos.rpc"
263a34a8711Sopenharmony_ci   // 使用期约
264a34a8711Sopenharmony_ci   let option = new rpc.MessageOption()
265a34a8711Sopenharmony_ci   let data = rpc.MessageParcel.create()
266a34a8711Sopenharmony_ci   let reply = rpc.MessageParcel.create()
267a34a8711Sopenharmony_ci   // 往data里写入参数
268a34a8711Sopenharmony_ci   proxy.sendRequest(1, data, reply, option)
269a34a8711Sopenharmony_ci       .then(function(result) {
270a34a8711Sopenharmony_ci           if (result.errCode != 0) {
271a34a8711Sopenharmony_ci               console.error("send request failed, errCode: " + result.errCode)
272a34a8711Sopenharmony_ci               return
273a34a8711Sopenharmony_ci           }
274a34a8711Sopenharmony_ci           // 从result.reply里读取结果
275a34a8711Sopenharmony_ci       })
276a34a8711Sopenharmony_ci       .catch(function(e) {
277a34a8711Sopenharmony_ci           console.error("send request got exception: " + e)
278a34a8711Sopenharmony_ci       }
279a34a8711Sopenharmony_ci       .finally(() => {
280a34a8711Sopenharmony_ci           data.reclaim()
281a34a8711Sopenharmony_ci           reply.reclaim()
282a34a8711Sopenharmony_ci       })
283a34a8711Sopenharmony_ci
284a34a8711Sopenharmony_ci   // 使用回调函数
285a34a8711Sopenharmony_ci   function sendRequestCallback(result) {
286a34a8711Sopenharmony_ci       try {
287a34a8711Sopenharmony_ci           if (result.errCode != 0) {
288a34a8711Sopenharmony_ci               console.error("send request failed, errCode: " + result.errCode)
289a34a8711Sopenharmony_ci               return
290a34a8711Sopenharmony_ci           }
291a34a8711Sopenharmony_ci           // 从result.reply里读取结果
292a34a8711Sopenharmony_ci       } finally {
293a34a8711Sopenharmony_ci           result.data.reclaim()
294a34a8711Sopenharmony_ci           result.reply.reclaim()
295a34a8711Sopenharmony_ci       }
296a34a8711Sopenharmony_ci   }
297a34a8711Sopenharmony_ci   let option = new rpc.MessageOption()
298a34a8711Sopenharmony_ci   let data = rpc.MessageParcel.create()
299a34a8711Sopenharmony_ci   let reply = rpc.MessageParcel.create()
300a34a8711Sopenharmony_ci   // 往data里写入参数
301a34a8711Sopenharmony_ci   proxy.sendRequest(1, data, reply, option, sendRequestCallback)
302a34a8711Sopenharmony_ci   ```
303a34a8711Sopenharmony_ci
304a34a8711Sopenharmony_ci
305a34a8711Sopenharmony_ci
306a34a8711Sopenharmony_ci4. IPC通信结束后,使用UIAbility的接口断开连接。
307a34a8711Sopenharmony_ci
308a34a8711Sopenharmony_ci   ```
309a34a8711Sopenharmony_ci   import rpc from "@ohos.rpc"
310a34a8711Sopenharmony_ci   globalThis.context.disconnectServiceExtensionAbility(connectionId).then((data) => {
311a34a8711Sopenharmony_ci       console.info('disconnectServiceExtensionAbility success');
312a34a8711Sopenharmony_ci   }).catch((error) => {
313a34a8711Sopenharmony_ci       console.error('disconnectServiceExtensionAbility failed');
314a34a8711Sopenharmony_ci   })
315a34a8711Sopenharmony_ci   ```
316a34a8711Sopenharmony_ci
317a34a8711Sopenharmony_ci
318a34a8711Sopenharmony_ci
319a34a8711Sopenharmony_ci**Native侧使用说明**
320a34a8711Sopenharmony_ci
321a34a8711Sopenharmony_ci1. 定义IPC接口ITestAbility
322a34a8711Sopenharmony_ci
323a34a8711Sopenharmony_ci   IPC接口继承IPC基类接口IRemoteBroker,接口里定义描述符、业务函数和消息码,其中业务函数在Proxy端和Stub端都需要实现。
324a34a8711Sopenharmony_ci
325a34a8711Sopenharmony_ci   ```
326a34a8711Sopenharmony_ci   class ITestAbility : public IRemoteBroker {
327a34a8711Sopenharmony_ci   public:
328a34a8711Sopenharmony_ci   // DECLARE_INTERFACE_DESCRIPTOR是必须的, 入参需使用std::u16string;
329a34a8711Sopenharmony_ci   DECLARE_INTERFACE_DESCRIPTOR(u"test.ITestAbility"); // DESCRIPTOR接口描述符建议使用"组件名.类名"的格式
330a34a8711Sopenharmony_ci   int TRANS_ID_PING_ABILITY = 1; // 定义消息码
331a34a8711Sopenharmony_ci   virtual int TestPingAbility(const std::u16string &dummy) = 0; // 定义业务函数
332a34a8711Sopenharmony_ci   };
333a34a8711Sopenharmony_ci   ```
334a34a8711Sopenharmony_ci
335a34a8711Sopenharmony_ci
336a34a8711Sopenharmony_ci
337a34a8711Sopenharmony_ci2. 定义和实现服务端TestAbilityStub
338a34a8711Sopenharmony_ci
339a34a8711Sopenharmony_ci   该类是和IPC框架相关的实现,需要继承自IRemoteStub<ITestAbility\>。Stub端作为接收请求的一端,需重写OnRemoteRequest方法用于接收客户端调用。
340a34a8711Sopenharmony_ci
341a34a8711Sopenharmony_ci   ```
342a34a8711Sopenharmony_ci   class TestAbilityStub : public IRemoteStub<ITestAbility> {
343a34a8711Sopenharmony_ci   public:
344a34a8711Sopenharmony_ci       virtual int OnRemoteRequest(uint32_t code, MessageParcel &data, MessageParcel &reply, MessageOption &option) override;
345a34a8711Sopenharmony_ci       int TestPingAbility(const std::u16string &dummy) override;
346a34a8711Sopenharmony_ci   };
347a34a8711Sopenharmony_ci
348a34a8711Sopenharmony_ci   int TestAbilityStub::OnRemoteRequest(uint32_t code,
349a34a8711Sopenharmony_ci       MessageParcel &data, MessageParcel &reply, MessageOption &option)
350a34a8711Sopenharmony_ci   {
351a34a8711Sopenharmony_ci       if (data.ReadInterfaceToken() != GetDescriptor()) { // 校验是否为本服务的接口描述符,避免中继攻击
352a34a8711Sopenharmony_ci           return -1;
353a34a8711Sopenharmony_ci       }
354a34a8711Sopenharmony_ci       switch (code) {
355a34a8711Sopenharmony_ci           case TRANS_ID_PING_ABILITY: {
356a34a8711Sopenharmony_ci               std::u16string dummy = data.ReadString16();
357a34a8711Sopenharmony_ci               int result = TestPingAbility(dummy);
358a34a8711Sopenharmony_ci               reply.WriteInt32(result);
359a34a8711Sopenharmony_ci               return 0;
360a34a8711Sopenharmony_ci           }
361a34a8711Sopenharmony_ci           default:
362a34a8711Sopenharmony_ci               return IPCObjectStub::OnRemoteRequest(code, data, reply, option);
363a34a8711Sopenharmony_ci       }
364a34a8711Sopenharmony_ci   }
365a34a8711Sopenharmony_ci   ```
366a34a8711Sopenharmony_ci
367a34a8711Sopenharmony_ci
368a34a8711Sopenharmony_ci
369a34a8711Sopenharmony_ci3. 定义服务端业务函数具体实现类TestAbility
370a34a8711Sopenharmony_ci
371a34a8711Sopenharmony_ci   ```
372a34a8711Sopenharmony_ci   class TestAbility : public TestAbilityStub {
373a34a8711Sopenharmony_ci   public:
374a34a8711Sopenharmony_ci       int TestPingAbility(const std::u16string &dummy);
375a34a8711Sopenharmony_ci   }
376a34a8711Sopenharmony_ci
377a34a8711Sopenharmony_ci   int TestAbility::TestPingAbility(const std::u16string &dummy) {
378a34a8711Sopenharmony_ci       return 0;
379a34a8711Sopenharmony_ci   }
380a34a8711Sopenharmony_ci   ```
381a34a8711Sopenharmony_ci
382a34a8711Sopenharmony_ci
383a34a8711Sopenharmony_ci
384a34a8711Sopenharmony_ci4. 定义和实现客户端TestAbilityProxy
385a34a8711Sopenharmony_ci
386a34a8711Sopenharmony_ci   该类是Proxy端实现,继承自IRemoteProxy<ITestAbility\>,调用SendRequest接口向Stub端发送请求,对外暴露服务端提供的能力。
387a34a8711Sopenharmony_ci
388a34a8711Sopenharmony_ci   ```
389a34a8711Sopenharmony_ci   class TestAbilityProxy : public IRemoteProxy<ITestAbility> {
390a34a8711Sopenharmony_ci   public:
391a34a8711Sopenharmony_ci       explicit TestAbilityProxy(const sptr<IRemoteObject> &impl);
392a34a8711Sopenharmony_ci       int TestPingService(const std::u16string &dummy) override;
393a34a8711Sopenharmony_ci   private:
394a34a8711Sopenharmony_ci       static inline BrokerDelegator<TestAbilityProxy> delegator_; // 方便使用iface_cast宏
395a34a8711Sopenharmony_ci   }
396a34a8711Sopenharmony_ci
397a34a8711Sopenharmony_ci   TestAbilityProxy::TestAbilityProxy(const sptr<IRemoteObject> &impl)
398a34a8711Sopenharmony_ci       : IRemoteProxy<ITestAbility>(impl)
399a34a8711Sopenharmony_ci   {
400a34a8711Sopenharmony_ci   }
401a34a8711Sopenharmony_ci
402a34a8711Sopenharmony_ci   int TestAbilityProxy::TestPingService(const std::u16string &dummy) {
403a34a8711Sopenharmony_ci       MessageOption option;
404a34a8711Sopenharmony_ci       MessageParcel dataParcel, replyParcel;
405a34a8711Sopenharmony_ci       if(!dataParcel.WriteInterfaceToken(GetDescriptor())) { // 所有对外接口的proxy实现都要写入接口描述符,用于stub端检验
406a34a8711Sopenharmony_ci           return -1;
407a34a8711Sopenharmony_ci       }
408a34a8711Sopenharmony_ci       if(!dataParcel.WriteString16(dummy)) {
409a34a8711Sopenharmony_ci           return -1;
410a34a8711Sopenharmony_ci       }
411a34a8711Sopenharmony_ci       int error = Remote()->SendRequest(TRANS_ID_PING_ABILITY, dataParcel, replyParcel, option);
412a34a8711Sopenharmony_ci       int result = (error == ERR_NONE) ? replyParcel.ReadInt32() : -1;
413a34a8711Sopenharmony_ci       return result;
414a34a8711Sopenharmony_ci   }
415a34a8711Sopenharmony_ci   ```
416a34a8711Sopenharmony_ci
417a34a8711Sopenharmony_ci
418a34a8711Sopenharmony_ci
419a34a8711Sopenharmony_ci5. 同步调用与异步调用
420a34a8711Sopenharmony_ci
421a34a8711Sopenharmony_ci   MessageOption作为发送接口(原型如下)的入参,可设定同步(TF\_SYNC)、异步(TF\_ASYNC),默认情况下设定为同步,其余可通过MessageOption构造方法或void SetFlags\(int flags\)设定。
422a34a8711Sopenharmony_ci
423a34a8711Sopenharmony_ci   ```
424a34a8711Sopenharmony_ci   int SendRequest(uint32_t code, MessageParcel &data,
425a34a8711Sopenharmony_ci       MessageParcel &reply, MessageOption &option) override;
426a34a8711Sopenharmony_ci   MessageOption option;
427a34a8711Sopenharmony_ci   option.setFlags(option.TF_ASYNC);
428a34a8711Sopenharmony_ci   ```
429a34a8711Sopenharmony_ci
430a34a8711Sopenharmony_ci
431a34a8711Sopenharmony_ci
432a34a8711Sopenharmony_ci6. SA注册与启动
433a34a8711Sopenharmony_ci
434a34a8711Sopenharmony_ci   SA需要将自己的TestAbilityStub实例通过AddSystemAbility接口注册到SystemAbilityManager,设备内与分布式的注册参数不同。
435a34a8711Sopenharmony_ci
436a34a8711Sopenharmony_ci   ```
437a34a8711Sopenharmony_ci   // 注册到本设备内
438a34a8711Sopenharmony_ci   auto samgr = SystemAbilityManagerClient::GetInstance().GetSystemAbilityManager();
439a34a8711Sopenharmony_ci   samgr->AddSystemAbility(said, new TestAbility());
440a34a8711Sopenharmony_ci
441a34a8711Sopenharmony_ci   // 在组网场景下,会被同步到其他设备上
442a34a8711Sopenharmony_ci   auto samgr = SystemAbilityManagerClient::GetInstance().GetSystemAbilityManager();
443a34a8711Sopenharmony_ci   ISystemAbilityManager::SAExtraProp saExtra;
444a34a8711Sopenharmony_ci   saExtra.isDistributed = true; // 设置为分布式SA
445a34a8711Sopenharmony_ci   int result = samgr->AddSystemAbility(said, new TestAbility(), saExtra);
446a34a8711Sopenharmony_ci   ```
447a34a8711Sopenharmony_ci
448a34a8711Sopenharmony_ci
449a34a8711Sopenharmony_ci
450a34a8711Sopenharmony_ci7. SA获取与调用
451a34a8711Sopenharmony_ci
452a34a8711Sopenharmony_ci   通过SystemAbilityManager的GetSystemAbility方法可获取到对应SA的代理IRemoteObject,然后构造TestAbilityProxy即可。
453a34a8711Sopenharmony_ci
454a34a8711Sopenharmony_ci   ```
455a34a8711Sopenharmony_ci   // 获取本设备内注册的SA的proxy
456a34a8711Sopenharmony_ci   sptr<ISystemAbilityManager> samgr = SystemAbilityManagerClient::GetInstance().GetSystemAbilityManager();
457a34a8711Sopenharmony_ci   sptr<IRemoteObject> remoteObject = samgr->GetSystemAbility(said);
458a34a8711Sopenharmony_ci   sptr<ITestAbility> testAbility = iface_cast<ITestAbility>(remoteObject); // 使用iface_cast宏转换成具体类型
459a34a8711Sopenharmony_ci
460a34a8711Sopenharmony_ci   // 获取其他设备注册的SA的Proxy
461a34a8711Sopenharmony_ci   sptr<ISystemAbilityManager> samgr = SystemAbilityManagerClient::GetInstance().GetSystemAbilityManager();
462a34a8711Sopenharmony_ci   sptr<IRemoteObject> remoteObject = samgr->GetSystemAbility(sdid, deviceId); // deviceId是指定设备的标识符
463a34a8711Sopenharmony_ci   sptr<TestAbilityProxy> proxy(new TestAbilityProxy(remoteObject)); // 直接构造具体Proxy
464a34a8711Sopenharmony_ci   ```
465a34a8711Sopenharmony_ci
466a34a8711Sopenharmony_ci**Rust侧使用说明**
467a34a8711Sopenharmony_ci
468a34a8711Sopenharmony_ci以下为CALCULATOR服务的完整开发步骤。
469a34a8711Sopenharmony_ci
470a34a8711Sopenharmony_ci1. 定义接口
471a34a8711Sopenharmony_ci
472a34a8711Sopenharmony_ci   继承IPC框架IRemoteBroker特征,定义一个业务自己的trait,该trait中定义proxy和stub之间的IPC方法。示例如下定义了ICalc trait:
473a34a8711Sopenharmony_ci
474a34a8711Sopenharmony_ci   ```
475a34a8711Sopenharmony_ci   /// Function between proxy and stub of ICalcService
476a34a8711Sopenharmony_ci   pub trait ICalc: IRemoteBroker {
477a34a8711Sopenharmony_ci       /// Calc add num1 + num2
478a34a8711Sopenharmony_ci       fn add(&self, num1: i32, num2: i32) -> IpcResult<i32>;
479a34a8711Sopenharmony_ci       /// Calc sub num1 + num2
480a34a8711Sopenharmony_ci       fn sub(&self, num1: i32, num2: i32) -> IpcResult<i32>;
481a34a8711Sopenharmony_ci       /// Calc mul num1 + num2
482a34a8711Sopenharmony_ci       fn mul(&self, num1: i32, num2: i32) -> IpcResult<i32>;
483a34a8711Sopenharmony_ci       /// Calc div num1 + num2
484a34a8711Sopenharmony_ci       fn div(&self, num1: i32, num2: i32) -> IpcResult<i32>;
485a34a8711Sopenharmony_ci   }
486a34a8711Sopenharmony_ci   ```
487a34a8711Sopenharmony_ci
488a34a8711Sopenharmony_ci   1.1 定义枚举ICalcCode
489a34a8711Sopenharmony_ci
490a34a8711Sopenharmony_ci   ICalcCode枚举中的变体表示calculator服务的不同功能。当然这一步不是必须的,但是为了提高代码的可读性,建议按照如下方法为每一个IPC方法定义code,示例如下:
491a34a8711Sopenharmony_ci
492a34a8711Sopenharmony_ci   ```
493a34a8711Sopenharmony_ci   /// Function code of ICalcService
494a34a8711Sopenharmony_ci   pub enum ICalcCode {
495a34a8711Sopenharmony_ci       /// add
496a34a8711Sopenharmony_ci       CodeAdd = FIRST_CALL_TRANSACTION, // 由IPC框架定义,值为1,建议业务使用该值作为第一个IPC方法的code
497a34a8711Sopenharmony_ci       /// sub
498a34a8711Sopenharmony_ci       CodeSub,
499a34a8711Sopenharmony_ci       /// mul
500a34a8711Sopenharmony_ci       CodeMul,
501a34a8711Sopenharmony_ci       /// div
502a34a8711Sopenharmony_ci       CodeDiv,
503a34a8711Sopenharmony_ci   }
504a34a8711Sopenharmony_ci   ```
505a34a8711Sopenharmony_ci
506a34a8711Sopenharmony_ci   1.2 ICalCode转换
507a34a8711Sopenharmony_ci
508a34a8711Sopenharmony_ci   ICalCode实现TryFrom trait,可以实现u32类型到CalCode枚举类型的转换。
509a34a8711Sopenharmony_ci
510a34a8711Sopenharmony_ci   ```
511a34a8711Sopenharmony_ci   impl TryFrom<u32> for ICalcCode {
512a34a8711Sopenharmony_ci       type Error = IpcStatusCode;
513a34a8711Sopenharmony_ci       fn try_from(code: u32) -> IpcResult<Self> {
514a34a8711Sopenharmony_ci           match code {
515a34a8711Sopenharmony_ci               _ if code == ICalcCode::CodeAdd as u32 => Ok(ICalcCode::CodeAdd),
516a34a8711Sopenharmony_ci               _ if code == ICalcCode::CodeSub as u32 => Ok(ICalcCode::CodeSub),
517a34a8711Sopenharmony_ci               _ if code == ICalcCode::CodeMul as u32 => Ok(ICalcCode::CodeMul),
518a34a8711Sopenharmony_ci               _ if code == ICalcCode::CodeDiv as u32 => Ok(ICalcCode::CodeDiv),
519a34a8711Sopenharmony_ci               _ => Err(IpcStatusCode::Failed),
520a34a8711Sopenharmony_ci           }
521a34a8711Sopenharmony_ci       }
522a34a8711Sopenharmony_ci   }
523a34a8711Sopenharmony_ci   ```
524a34a8711Sopenharmony_ci
525a34a8711Sopenharmony_ci2. 定义服务
526a34a8711Sopenharmony_ci
527a34a8711Sopenharmony_ci   和c++ 定义的服务类似,Rust服务相关的类型有两个:
528a34a8711Sopenharmony_ci
529a34a8711Sopenharmony_ci   1)由业务提供名字,通过宏define_remote_object!定义,如本例中的CalcStub。
530a34a8711Sopenharmony_ci
531a34a8711Sopenharmony_ci   2)由业务定义,框架不关心其内容,只要求其必须实现步骤1中定义的接口trait,如本例中的CalcService。
532a34a8711Sopenharmony_ci
533a34a8711Sopenharmony_ci   2.1 定义CalcService服务
534a34a8711Sopenharmony_ci
535a34a8711Sopenharmony_ci   CalcService的定义如下所示,实现了ICalc和IRemoteBroker特征,服务中没有任何成员,如有需要可以根据业务需要进行定义。
536a34a8711Sopenharmony_ci
537a34a8711Sopenharmony_ci   ```
538a34a8711Sopenharmony_ci   /// example.calc.ipc.ICalcService type
539a34a8711Sopenharmony_ci   pub struct CalcService;
540a34a8711Sopenharmony_ci   // 实现ICalc特征
541a34a8711Sopenharmony_ci   impl ICalc for CalcService {
542a34a8711Sopenharmony_ci       fn add(&self, num1: i32, num2: i32) -> IpcResult<i32> {
543a34a8711Sopenharmony_ci           Ok(add(&num1, &num2))
544a34a8711Sopenharmony_ci       }
545a34a8711Sopenharmony_ci       fn sub(&self, num1: i32, num2: i32) -> IpcResult<i32> {
546a34a8711Sopenharmony_ci           Ok(sub(&num1, &num2))
547a34a8711Sopenharmony_ci       }
548a34a8711Sopenharmony_ci       fn mul(&self, num1: i32, num2: i32) -> IpcResult<i32> {
549a34a8711Sopenharmony_ci           Ok(mul(&num1, &num2))
550a34a8711Sopenharmony_ci       }
551a34a8711Sopenharmony_ci       fn div(&self, num1: i32, num2: i32) -> IpcResult<i32> {
552a34a8711Sopenharmony_ci           Ok(div(&num1, &num2))
553a34a8711Sopenharmony_ci       }
554a34a8711Sopenharmony_ci   }
555a34a8711Sopenharmony_ci   // 实现IRemoteBroker特征
556a34a8711Sopenharmony_ci   impl IRemoteBroker for CalcService {}
557a34a8711Sopenharmony_ci   /// add num1 + num2
558a34a8711Sopenharmony_ci   pub fn add(num1: &i32, num2: &i32) -> i32 {
559a34a8711Sopenharmony_ci       num1 + num2
560a34a8711Sopenharmony_ci   }
561a34a8711Sopenharmony_ci   /// sub num1 + num2
562a34a8711Sopenharmony_ci   pub fn sub(num1: &i32, num2: &i32) -> i32 {
563a34a8711Sopenharmony_ci       num1 - num2
564a34a8711Sopenharmony_ci   }
565a34a8711Sopenharmony_ci   /// mul num1 + num2
566a34a8711Sopenharmony_ci   pub fn mul(num1: &i32, num2: &i32) -> i32 {
567a34a8711Sopenharmony_ci       num1 * num2
568a34a8711Sopenharmony_ci   }
569a34a8711Sopenharmony_ci   /// div num1 + num2
570a34a8711Sopenharmony_ci   pub fn div(num1: &i32, num2: &i32) -> i32 {
571a34a8711Sopenharmony_ci       match num2 {
572a34a8711Sopenharmony_ci           0 => {
573a34a8711Sopenharmony_ci               println!("Zero cannot be divided");
574a34a8711Sopenharmony_ci               -1
575a34a8711Sopenharmony_ci           },
576a34a8711Sopenharmony_ci           _ => num1 / num2,
577a34a8711Sopenharmony_ci       }
578a34a8711Sopenharmony_ci   }
579a34a8711Sopenharmony_ci   ```
580a34a8711Sopenharmony_ci
581a34a8711Sopenharmony_ci   2.2 实现on_icalc_remote_request()方法
582a34a8711Sopenharmony_ci
583a34a8711Sopenharmony_ci   当服务收到IPC请求,IPC框架会回调该方法,业务在该方法中完成如下处理:
584a34a8711Sopenharmony_ci
585a34a8711Sopenharmony_ci   1)完成参数的解析。
586a34a8711Sopenharmony_ci
587a34a8711Sopenharmony_ci   2)调用具体的服务IPC方法。
588a34a8711Sopenharmony_ci
589a34a8711Sopenharmony_ci   3)将处理结果写会reply。
590a34a8711Sopenharmony_ci
591a34a8711Sopenharmony_ci   示例代码如下:
592a34a8711Sopenharmony_ci
593a34a8711Sopenharmony_ci   ```
594a34a8711Sopenharmony_ci   fn on_icalc_remote_request(stub: &dyn ICalc, code: u32, data: &BorrowedMsgParcel,
595a34a8711Sopenharmony_ci       reply: &mut BorrowedMsgParcel) -> IpcResult<()> {
596a34a8711Sopenharmony_ci       match code.try_into()? {
597a34a8711Sopenharmony_ci           ICalcCode::CodeAdd => {
598a34a8711Sopenharmony_ci               let num1: i32 = data.read().expect("Failed to read num1 in addition operation");
599a34a8711Sopenharmony_ci               let num2: i32 = data.read().expect("Failed to read num2 in addition operation");
600a34a8711Sopenharmony_ci               let ret = stub.add(num1, num2)?;
601a34a8711Sopenharmony_ci               reply.write(&ret)?;
602a34a8711Sopenharmony_ci               Ok(())
603a34a8711Sopenharmony_ci           }
604a34a8711Sopenharmony_ci           ICalcCode::CodeSub => {
605a34a8711Sopenharmony_ci               let num1: i32 = data.read().expect("Failed to read num1 in subtraction operation");
606a34a8711Sopenharmony_ci               let num2: i32 = data.read().expect("Failed to read num1 in subtraction operation");
607a34a8711Sopenharmony_ci               let ret = stub.sub(num1, num2)?;
608a34a8711Sopenharmony_ci               reply.write(&ret)?;
609a34a8711Sopenharmony_ci               Ok(())
610a34a8711Sopenharmony_ci           }
611a34a8711Sopenharmony_ci           ICalcCode::CodeMul => {
612a34a8711Sopenharmony_ci               let num1: i32 = data.read().expect("Failed to read num1 in multiplication operation");
613a34a8711Sopenharmony_ci               let num2: i32 = data.read().expect("Failed to read num1 in multiplication operation");
614a34a8711Sopenharmony_ci               let ret = stub.mul(num1, num2)?;
615a34a8711Sopenharmony_ci               reply.write(&ret)?;
616a34a8711Sopenharmony_ci               Ok(())
617a34a8711Sopenharmony_ci           }
618a34a8711Sopenharmony_ci           ICalcCode::CodeDiv => {
619a34a8711Sopenharmony_ci               let num1: i32 = data.read().expect("Failed to read num1 in division  operation");
620a34a8711Sopenharmony_ci               let num2: i32 = data.read().expect("Failed to read num1 in division  operation");
621a34a8711Sopenharmony_ci               let ret = stub.div(num1, num2)?;
622a34a8711Sopenharmony_ci               reply.write(&ret)?;
623a34a8711Sopenharmony_ci               Ok(())
624a34a8711Sopenharmony_ci           }
625a34a8711Sopenharmony_ci       }
626a34a8711Sopenharmony_ci   }
627a34a8711Sopenharmony_ci   ```
628a34a8711Sopenharmony_ci
629a34a8711Sopenharmony_ci3. 定义代理
630a34a8711Sopenharmony_ci
631a34a8711Sopenharmony_ci   代理的定义由业务提供名字,通过宏define_remote_object定义代理的类型,业务需要为代理实现ICalc。示例如下:
632a34a8711Sopenharmony_ci
633a34a8711Sopenharmony_ci   ```
634a34a8711Sopenharmony_ci   impl ICalc for CalcProxy {
635a34a8711Sopenharmony_ci       fn add(&self, num1: i32, num2: i32) -> IpcResult<i32> {
636a34a8711Sopenharmony_ci           let mut data = MsgParcel::new().expect("MsgParcel should success");
637a34a8711Sopenharmony_ci           data.write(&num1)?;
638a34a8711Sopenharmony_ci           data.write(&num2)?;
639a34a8711Sopenharmony_ci           let reply = self.remote.send_request(ICalcCode::CodeAdd as u32,
640a34a8711Sopenharmony_ci               &data, false)?;
641a34a8711Sopenharmony_ci           let ret: i32 = reply.read().expect("need reply i32");
642a34a8711Sopenharmony_ci           Ok(ret)
643a34a8711Sopenharmony_ci       }
644a34a8711Sopenharmony_ci       fn sub(&self, num1: i32, num2: i32) -> IpcResult<i32> {
645a34a8711Sopenharmony_ci           let mut data = MsgParcel::new().expect("MsgParcel should success");
646a34a8711Sopenharmony_ci           data.write(&num1)?;
647a34a8711Sopenharmony_ci           data.write(&num2)?;
648a34a8711Sopenharmony_ci           let reply = self.remote.send_request(ICalcCode::CodeSub as u32,
649a34a8711Sopenharmony_ci               &data, false)?;
650a34a8711Sopenharmony_ci           let ret: i32 = reply.read().expect("need reply i32");
651a34a8711Sopenharmony_ci           Ok(ret)
652a34a8711Sopenharmony_ci       }
653a34a8711Sopenharmony_ci       fn mul(&self, num1: i32, num2: i32) -> IpcResult<i32> {
654a34a8711Sopenharmony_ci           let mut data = MsgParcel::new().expect("MsgParcel should success");
655a34a8711Sopenharmony_ci           data.write(&num1)?;
656a34a8711Sopenharmony_ci           data.write(&num2)?;
657a34a8711Sopenharmony_ci           let reply = self.remote.send_request(ICalcCode::CodeMul as u32,
658a34a8711Sopenharmony_ci               &data, false)?;
659a34a8711Sopenharmony_ci           let ret: i32 = reply.read().expect("need reply i32");
660a34a8711Sopenharmony_ci           Ok(ret)
661a34a8711Sopenharmony_ci       }
662a34a8711Sopenharmony_ci       fn div(&self, num1: i32, num2: i32) -> IpcResult<i32> {
663a34a8711Sopenharmony_ci           let mut data = MsgParcel::new().expect("MsgParcel should success");
664a34a8711Sopenharmony_ci           data.write(&num1)?;
665a34a8711Sopenharmony_ci           data.write(&num2)?;
666a34a8711Sopenharmony_ci           let reply = self.remote.send_request(ICalcCode::CodeDiv as u32,
667a34a8711Sopenharmony_ci               &data, false)?;
668a34a8711Sopenharmony_ci           let ret: i32 = reply.read().expect("need reply i32");
669a34a8711Sopenharmony_ci           Ok(ret)
670a34a8711Sopenharmony_ci       }
671a34a8711Sopenharmony_ci   }
672a34a8711Sopenharmony_ci   ```
673a34a8711Sopenharmony_ci
674a34a8711Sopenharmony_ci   上述对象最终通过宏define_remote_object调用,将业务定义的类型和IPC框架进行结合,宏define_remote_object提供了如下几个关键信息:
675a34a8711Sopenharmony_ci
676a34a8711Sopenharmony_ci   1)服务的接口特征ICalc。
677a34a8711Sopenharmony_ci
678a34a8711Sopenharmony_ci   2)服务的描述符为“example.calc.ipc.ICalcService”。
679a34a8711Sopenharmony_ci
680a34a8711Sopenharmony_ci   3)Rust服务类型名为CalcStub。
681a34a8711Sopenharmony_ci
682a34a8711Sopenharmony_ci   4)服务处理IPC请求的入口方法为on_icalc_remote_request。
683a34a8711Sopenharmony_ci
684a34a8711Sopenharmony_ci   5)代理类型为CalcProxy。
685a34a8711Sopenharmony_ci
686a34a8711Sopenharmony_ci   示例代码如下:
687a34a8711Sopenharmony_ci
688a34a8711Sopenharmony_ci   ```
689a34a8711Sopenharmony_ci   define_remote_object!(
690a34a8711Sopenharmony_ci       ICalc["example.calc.ipc.ICalcService"] {
691a34a8711Sopenharmony_ci           stub: CalcStub(on_icalc_remote_request),
692a34a8711Sopenharmony_ci           proxy: CalcProxy,
693a34a8711Sopenharmony_ci       }
694a34a8711Sopenharmony_ci   );
695a34a8711Sopenharmony_ci   ```
696a34a8711Sopenharmony_ci
697a34a8711Sopenharmony_ci4.  创建并注册服务
698a34a8711Sopenharmony_ci
699a34a8711Sopenharmony_ci   服务定义完成后,只有注册到samgr后,其他进程才能获取该服务的代理,然后完成和该服务的通信。示例代码如下:
700a34a8711Sopenharmony_ci
701a34a8711Sopenharmony_ci   ```
702a34a8711Sopenharmony_ci   fn main() {
703a34a8711Sopenharmony_ci       init_access_token();
704a34a8711Sopenharmony_ci       // 创建服务对象,最终的服务对象为CalcStub
705a34a8711Sopenharmony_ci       let service = CalcStub::new_remote_stub(CalcService).expect("create CalcService success");
706a34a8711Sopenharmony_ci       // 向samgr注册服务
707a34a8711Sopenharmony_ci       add_service(&service.as_object().expect("get ICalc service failed"),
708a34a8711Sopenharmony_ci           EXAMPLE_IPC_CALC_SERVICE_ID).expect("add server to samgr failed");
709a34a8711Sopenharmony_ci       println!("join to ipc work thread");
710a34a8711Sopenharmony_ci       // 将主线程转换为IPC线程,至此服务所在进程陷入循环
711a34a8711Sopenharmony_ci       join_work_thread();
712a34a8711Sopenharmony_ci   }
713a34a8711Sopenharmony_ci   ```
714a34a8711Sopenharmony_ci
715a34a8711Sopenharmony_ci   注意:add_service为IPC 框架提供的临时调试接口,该接口应该由samgr模块提供。
716a34a8711Sopenharmony_ci
717a34a8711Sopenharmony_ci5. 获取代理
718a34a8711Sopenharmony_ci
719a34a8711Sopenharmony_ci   通过向samgr发起请求,可以获取到指定服务的代理对象,之后便可以调用该代理对象的IPC方法实现和服务的通信。示例代码如下:
720a34a8711Sopenharmony_ci
721a34a8711Sopenharmony_ci   ```
722a34a8711Sopenharmony_ci   fn get_calc_service() -> RemoteObjRef<dyn ICalc>
723a34a8711Sopenharmony_ci   {
724a34a8711Sopenharmony_ci       let object = get_service(EXAMPLE_IPC_CALC_SERVICE_ID).expect("get icalc service failed");
725a34a8711Sopenharmony_ci       let remote = <dyn ICalc as FromRemoteObj>::try_from(object);
726a34a8711Sopenharmony_ci       let remote = match remote {
727a34a8711Sopenharmony_ci           Ok(x) => x,
728a34a8711Sopenharmony_ci           Err(error) => {
729a34a8711Sopenharmony_ci               println!("convert RemoteObj to CalcProxy failed: {}", error);
730a34a8711Sopenharmony_ci               panic!();
731a34a8711Sopenharmony_ci           }
732a34a8711Sopenharmony_ci       };
733a34a8711Sopenharmony_ci       remote
734a34a8711Sopenharmony_ci   }
735a34a8711Sopenharmony_ci   ```
736a34a8711Sopenharmony_ci
737a34a8711Sopenharmony_ci   注意:示例中的get_service()为IPC框架提供的临时接口,该接口由samgr模块提供。
738a34a8711Sopenharmony_ci
739a34a8711Sopenharmony_ci6. 测试Calculartor服务能力
740a34a8711Sopenharmony_ci
741a34a8711Sopenharmony_ci   当测试用例Calculator_Ability pass表示CalcService 服务能力ok。
742a34a8711Sopenharmony_ci
743a34a8711Sopenharmony_ci   ```
744a34a8711Sopenharmony_ci   #[test]
745a34a8711Sopenharmony_ci   fn calculator_ability() {
746a34a8711Sopenharmony_ci       let remote = get_calc_service();
747a34a8711Sopenharmony_ci       // add
748a34a8711Sopenharmony_ci       let ret = remote.add(5, 5).expect("add failed");
749a34a8711Sopenharmony_ci       assert_eq!(ret, 10);
750a34a8711Sopenharmony_ci       // sub
751a34a8711Sopenharmony_ci       let ret = remote.sub(5, 5).expect("sub failed");
752a34a8711Sopenharmony_ci       assert_eq!(ret, 0);
753a34a8711Sopenharmony_ci       // mul
754a34a8711Sopenharmony_ci       let ret = remote.mul(5, 5).expect("mul failed");
755a34a8711Sopenharmony_ci       assert_eq!(ret, 25);
756a34a8711Sopenharmony_ci       // div
757a34a8711Sopenharmony_ci       let ret = remote.div(5, 5).expect("div failed");
758a34a8711Sopenharmony_ci       assert_eq!(ret, 1);
759a34a8711Sopenharmony_ci   }
760a34a8711Sopenharmony_ci   ```
761a34a8711Sopenharmony_ci
762a34a8711Sopenharmony_ci## 相关仓<a name="section1371113476307"></a>
763a34a8711Sopenharmony_ci
764a34a8711Sopenharmony_ci分布式软总线子系统
765a34a8711Sopenharmony_ci
766a34a8711Sopenharmony_ci**communication\_ipc**
767a34a8711Sopenharmony_ci
768a34a8711Sopenharmony_ci[commonlibrary\_c\_utils](https://gitee.com/openharmony/commonlibrary_c_utils)
769a34a8711Sopenharmony_ci
770a34a8711Sopenharmony_ci[distributedschedule\_samgr](https://gitee.com/openharmony/distributedschedule_samgr)
771a34a8711Sopenharmony_ci
772