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1 /*
2  * Copyright (c) 2022 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 "js_util.h"
17 
18 #include <linux/input.h>
19 
20 #include "mmi_log.h"
21 #include "napi_constants.h"
22 #include "util_napi.h"
23 
24 namespace OHOS {
25 namespace MMI {
26 namespace {
27 constexpr OHOS::HiviewDFX::HiLogLabel LABEL = { LOG_CORE, MMI_LOG_DOMAIN, "JsUtil" };
28 
29 std::map<int32_t, std::string> axisType = {
30     {ABS_MT_TOUCH_MAJOR, "touchMajor"},
31     {ABS_MT_TOUCH_MINOR, "touchMinor"},
32     {ABS_MT_ORIENTATION, "orientation"},
33     {ABS_MT_POSITION_X, "x"},
34     {ABS_MT_POSITION_Y, "y"},
35     {ABS_MT_PRESSURE, "pressure"},
36     {ABS_MT_WIDTH_MAJOR, "toolMajor"},
37     {ABS_MT_WIDTH_MINOR, "toolMinor"},
38 };
39 
40 constexpr uint32_t EVDEV_UDEV_TAG_TOUCHSCREEN = (1 << 4);
41 constexpr uint32_t EVDEV_UDEV_TAG_JOYSTICK = (1 << 6);
42 constexpr uint32_t EVDEV_UDEV_TAG_TRACKBALL = (1 << 10);
43 
44 JsUtil::DeviceType g_deviceType[] = {
45     {"keyboard", EVDEV_UDEV_TAG_KEYBOARD},
46     {"mouse", EVDEV_UDEV_TAG_MOUSE},
47     {"touchpad", EVDEV_UDEV_TAG_TOUCHPAD},
48     {"touchscreen", EVDEV_UDEV_TAG_TOUCHSCREEN},
49     {"joystick", EVDEV_UDEV_TAG_JOYSTICK},
50     {"trackball", EVDEV_UDEV_TAG_TRACKBALL},
51 };
52 } // namespace
IsSameHandle(napi_env env,napi_value handle,napi_ref ref)53 bool JsUtil::IsSameHandle(napi_env env, napi_value handle, napi_ref ref)
54 {
55     napi_value handlerTemp = nullptr;
56     CHKRF(env, napi_get_reference_value(env, ref, &handlerTemp), GET_REFERENCE);
57     bool isEqual = false;
58     CHKRF(env, napi_strict_equals(env, handle, handlerTemp, &isEqual), STRICT_EQUALS);
59     return isEqual;
60 }
61 
GetDeviceInfo(const std::unique_ptr<CallbackInfo> & cb)62 napi_value JsUtil::GetDeviceInfo(const std::unique_ptr<CallbackInfo> &cb)
63 {
64     CHKPP(cb);
65     CHKPP(cb->env);
66     CHKPP(cb->data.device);
67     napi_value object = nullptr;
68     CHKRP(cb->env, napi_create_object(cb->env, &object), CREATE_OBJECT);
69     napi_value id = nullptr;
70     CHKRP(cb->env, napi_create_int32(cb->env, cb->data.device->GetId(), &id), CREATE_INT32);
71     napi_value name = nullptr;
72     CHKRP(cb->env, napi_create_string_utf8(cb->env, (cb->data.device->GetName()).c_str(),
73         NAPI_AUTO_LENGTH, &name), CREATE_STRING_UTF8);
74     CHKRP(cb->env, napi_set_named_property(cb->env, object, "id", id), SET_NAMED_PROPERTY);
75     CHKRP(cb->env, napi_set_named_property(cb->env, object, "name", name), SET_NAMED_PROPERTY);
76     napi_value busType = nullptr;
77     CHKRP(cb->env, napi_create_int32(cb->env, cb->data.device->GetBus(), &busType), CREATE_INT32);
78     CHKRP(cb->env, napi_set_named_property(cb->env, object, "bus", busType), SET_NAMED_PROPERTY);
79     napi_value product = nullptr;
80     CHKRP(cb->env, napi_create_int32(cb->env, cb->data.device->GetProduct(), &product), CREATE_INT32);
81     CHKRP(cb->env, napi_set_named_property(cb->env, object, "product", product), SET_NAMED_PROPERTY);
82     napi_value vendor = nullptr;
83     CHKRP(cb->env, napi_create_int32(cb->env, cb->data.device->GetVendor(), &vendor), CREATE_INT32);
84     CHKRP(cb->env, napi_set_named_property(cb->env, object, "vendor", vendor), SET_NAMED_PROPERTY);
85     napi_value version = nullptr;
86     CHKRP(cb->env, napi_create_int32(cb->env, cb->data.device->GetVersion(), &version), CREATE_INT32);
87     CHKRP(cb->env, napi_set_named_property(cb->env, object, "version", version), SET_NAMED_PROPERTY);
88     napi_value uniq = nullptr;
89     CHKRP(cb->env, napi_create_string_utf8(cb->env, (cb->data.device->GetUniq()).c_str(),
90         NAPI_AUTO_LENGTH, &uniq), CREATE_STRING_UTF8);
91     CHKRP(cb->env, napi_set_named_property(cb->env, object, "uniq", uniq), SET_NAMED_PROPERTY);
92     napi_value phys = nullptr;
93     CHKRP(cb->env, napi_create_string_utf8(cb->env, (cb->data.device->GetPhys()).c_str(),
94         NAPI_AUTO_LENGTH, &phys), CREATE_STRING_UTF8);
95     CHKRP(cb->env, napi_set_named_property(cb->env, object, "phys", phys), SET_NAMED_PROPERTY);
96 
97     if (!GetDeviceSourceType(cb, object)) {
98         MMI_HILOGE("Get device source type failed");
99         return nullptr;
100     }
101     if (!GetDeviceAxisInfo(cb, object)) {
102         MMI_HILOGE("Get device axis failed");
103         return nullptr;
104     }
105     return object;
106 }
107 
GetDeviceAxisInfo(const std::unique_ptr<CallbackInfo> & cb,napi_value & object)108 bool JsUtil::GetDeviceAxisInfo(const std::unique_ptr<CallbackInfo> &cb, napi_value &object)
109 {
110     CHKPF(cb);
111     CHKPF(cb->env);
112     CHKPF(cb->data.device);
113     napi_value sourceType = nullptr;
114     uint32_t types = cb->data.device->GetType();
115     for (const auto &item : g_deviceType) {
116         if (types &item.typeBit) {
117             CHKRF(cb->env, napi_create_string_utf8(cb->env, item.sourceTypeName.c_str(),
118                 NAPI_AUTO_LENGTH, &sourceType), CREATE_STRING_UTF8);
119             break;
120         }
121     }
122     napi_value axisRanges = nullptr;
123     CHKRF(cb->env, napi_create_array(cb->env, &axisRanges), CREATE_ARRAY);
124     if (sourceType == nullptr) {
125         CHKRF(cb->env, napi_set_named_property(cb->env, object, "axisRanges", axisRanges), SET_NAMED_PROPERTY);
126         MMI_HILOGD("SourceType not found");
127         return true;
128     }
129     napi_value axisRange = nullptr;
130     uint32_t i = 0;
131     for (const auto &item : cb->data.device->GetAxisInfo()) {
132         auto iter = axisType.find(item.GetAxisType());
133         if (iter == axisType.end()) {
134             MMI_HILOGD("Find axisType failed");
135             continue;
136         }
137         CHKRF(cb->env, napi_create_object(cb->env, &axisRange), CREATE_OBJECT);
138         CHKRF(cb->env, napi_set_named_property(cb->env, axisRange, "source", sourceType), SET_NAMED_PROPERTY);
139         napi_value axisType = nullptr;
140         CHKRF(cb->env, napi_create_string_utf8(cb->env, iter->second.c_str(),
141             NAPI_AUTO_LENGTH, &axisType), CREATE_STRING_UTF8);
142         CHKRF(cb->env, napi_set_named_property(cb->env, axisRange, "axis", axisType), SET_NAMED_PROPERTY);
143         napi_value min = nullptr;
144         CHKRF(cb->env, napi_create_int32(cb->env, item.GetMinimum(), &min), CREATE_INT32);
145         CHKRF(cb->env, napi_set_named_property(cb->env, axisRange, "min", min), SET_NAMED_PROPERTY);
146         napi_value max = nullptr;
147         CHKRF(cb->env, napi_create_int32(cb->env, item.GetMaximum(), &max), CREATE_INT32);
148         CHKRF(cb->env, napi_set_named_property(cb->env, axisRange, "max", max), SET_NAMED_PROPERTY);
149         napi_value fuzz = nullptr;
150         CHKRF(cb->env, napi_create_int32(cb->env, item.GetFuzz(), &fuzz), CREATE_INT32);
151         CHKRF(cb->env, napi_set_named_property(cb->env, axisRange, "fuzz", fuzz), SET_NAMED_PROPERTY);
152         napi_value flat = nullptr;
153         CHKRF(cb->env, napi_create_int32(cb->env, item.GetFlat(), &flat), CREATE_INT32);
154         CHKRF(cb->env, napi_set_named_property(cb->env, axisRange, "flat", flat), SET_NAMED_PROPERTY);
155         napi_value resolution = nullptr;
156         CHKRF(cb->env, napi_create_int32(cb->env, item.GetResolution(), &resolution), CREATE_INT32);
157         CHKRF(cb->env, napi_set_named_property(cb->env, axisRange, "resolution", resolution), SET_NAMED_PROPERTY);
158         CHKRF(cb->env, napi_set_element(cb->env, axisRanges, i, axisRange), SET_ELEMENT);
159         ++i;
160     }
161     CHKRF(cb->env, napi_set_named_property(cb->env, object, "axisRanges", axisRanges), SET_NAMED_PROPERTY);
162     return true;
163 }
164 
GetDeviceSourceType(const std::unique_ptr<CallbackInfo> & cb,napi_value & object)165 bool JsUtil::GetDeviceSourceType(const std::unique_ptr<CallbackInfo> &cb, napi_value &object)
166 {
167     CHKPF(cb);
168     CHKPF(cb->env);
169     CHKPF(cb->data.device);
170     uint32_t types = cb->data.device->GetType();
171     std::vector<std::string> sources;
172     for (const auto &item : g_deviceType) {
173         if (types &item.typeBit) {
174             sources.push_back(item.sourceTypeName);
175         }
176     }
177     napi_value devSources = nullptr;
178     CHKRF(cb->env, napi_create_array(cb->env, &devSources), CREATE_ARRAY);
179     napi_value value = nullptr;
180     for (size_t i = 0; i < sources.size(); ++i) {
181         CHKRF(cb->env, napi_create_string_utf8(cb->env, sources[i].c_str(), NAPI_AUTO_LENGTH, &value),
182             CREATE_STRING_UTF8);
183         CHKRF(cb->env, napi_set_element(cb->env, devSources, i, value), SET_ELEMENT);
184     }
185     CHKRF(cb->env, napi_set_named_property(cb->env, object, "sources", devSources), SET_NAMED_PROPERTY);
186     return true;
187 }
188 
TypeOf(napi_env env,napi_value value,napi_valuetype type)189 bool JsUtil::TypeOf(napi_env env, napi_value value, napi_valuetype type)
190 {
191     napi_valuetype valueType = napi_undefined;
192     CHKRF(env, napi_typeof(env, value, &valueType), TYPEOF);
193     if (valueType != type) {
194         return false;
195     }
196     return true;
197 }
198 
DeleteCallbackInfo(std::unique_ptr<CallbackInfo> callback)199 void JsUtil::DeleteCallbackInfo(std::unique_ptr<CallbackInfo> callback)
200 {
201     CALL_DEBUG_ENTER;
202     if (callback->ref != nullptr && callback->env != nullptr) {
203         CHKRV(callback->env, napi_delete_reference(callback->env, callback->ref), DELETE_REFERENCE);
204         callback->env = nullptr;
205     }
206 }
207 } // namespace MMI
208 } // namespace OHOS