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 "commonlibrary/ets_utils/js_util_module/util/js_uuid.h"
17
18 #include <map>
19 #include "securec.h"
20 #include "tools/log.h"
21
22 #include "napi/native_api.h"
23 #include "napi/native_node_api.h"
24
25 namespace OHOS::Util {
26 static thread_local std::queue<UUID> g_uuidCache;
27
CharToHex(char in)28 unsigned char CharToHex(char in)
29 {
30 unsigned char res = 0; // 0: initialization
31 static const std::map<char, unsigned char> hexMap = {
32 {'0', HEX_ZERO_FLG},
33 {'1', HEX_ONE_FLG},
34 {'2', HEX_TWO_FLG},
35 {'3', HEX_THREE_FLG},
36 {'4', HEX_FOUR_FLG},
37 {'5', HEX_FIVE_FLG},
38 {'6', HEX_SIX_FLG},
39 {'7', HEX_SEVEN_FLG},
40 {'8', HEX_EIGHT_FLG},
41 {'9', HEX_NINE_FLG},
42 {'a', HEX_TEN_FLG},
43 {'b', HEX_ELEVEN_FLG},
44 {'c', HEX_TWELVE_FLG},
45 {'d', HEX_THIRTEEN_FLG},
46 {'e', HEX_FOURTEEN_FLG},
47 {'f', HEX_FIFTEEN_FLG},
48 {'A', HEX_TEN_FLG},
49 {'B', HEX_ELEVEN_FLG},
50 {'C', HEX_TWELVE_FLG},
51 {'D', HEX_THIRTEEN_FLG},
52 {'E', HEX_FOURTEEN_FLG},
53 {'F', HEX_FIFTEEN_FLG}
54 };
55
56 auto it = hexMap.find(in);
57 if (it != hexMap.end()) {
58 res = it->second;
59 } else {
60 res = HEX_ZERO_FLG;
61 }
62 return res;
63 }
64
HexToChar(unsigned char in)65 unsigned char HexToChar(unsigned char in)
66 {
67 unsigned char res = '0';
68 switch (in) {
69 case HEX_ZERO_FLG: res = '0'; break;
70 case HEX_ONE_FLG: res = '1'; break;
71 case HEX_TWO_FLG: res = '2'; break;
72 case HEX_THREE_FLG: res = '3'; break;
73 case HEX_FOUR_FLG: res = '4'; break;
74 case HEX_FIVE_FLG: res = '5'; break;
75 case HEX_SIX_FLG: res = '6'; break;
76 case HEX_SEVEN_FLG: res = '7'; break;
77 case HEX_EIGHT_FLG: res = '8'; break;
78 case HEX_NINE_FLG: res = '9'; break;
79 case HEX_TEN_FLG: res = 'a'; break;
80 case HEX_ELEVEN_FLG: res = 'b'; break;
81 case HEX_TWELVE_FLG: res = 'c'; break;
82 case HEX_THIRTEEN_FLG: res = 'd'; break;
83 case HEX_FOURTEEN_FLG: res = 'e'; break;
84 case HEX_FIFTEEN_FLG: res = 'f'; break;
85 default : res = 'x';
86 }
87 return res;
88 }
89
ConvertBits(std::string & input)90 unsigned char ConvertBits(std::string &input)
91 {
92 unsigned char temp = 0; // 0: initialization
93 if (input[0] == '-') {
94 input.erase(0, 1);
95 }
96 temp = CharToHex(input[0]);
97 temp *= HEX_SIXTEEN_FLG;
98 input.erase(0, 1);
99 temp += CharToHex(input[0]);
100 input.erase(0, 1);
101 return temp;
102 }
103
GenerateUuid(unsigned char * data,int32_t size)104 bool GenerateUuid(unsigned char *data, int32_t size)
105 {
106 unsigned char buf[UUID_SIZE] = { 0 }; // 0: initialization
107 if (memcpy_s(data, size, buf, size) != EOK) {
108 return false;
109 }
110 RAND_priv_bytes(data, size);
111 data[HEX_SIX_FLG] = (data[HEX_SIX_FLG] & 0x0F) | 0x40; // 0x0F,0x40 Operate the mark
112 int m = 0x8; // Upper of numerical range
113 int n = 0xb; // down of numerical range
114 int r = static_cast<int>(data[HEX_EIGHT_FLG]);
115 unsigned char num = static_cast<unsigned char>(r % (n - m + 1) + m);
116 data[HEX_EIGHT_FLG] = (data[HEX_EIGHT_FLG] & 0x0F) | (num << 4); // 0x0F,4 Operate the mark
117 return true;
118 }
119
GetUUID(napi_env env,bool entropyCache,UUID & uuid)120 bool GetUUID(napi_env env, bool entropyCache, UUID &uuid)
121 {
122 uint32_t size = g_uuidCache.size();
123 if ((entropyCache == true) && (size != 0)) {
124 uuid = g_uuidCache.front();
125 g_uuidCache.pop();
126 } else {
127 if (size > MAX_CACHE_MASK) {
128 for (uint32_t i = 0; i < size; i++) {
129 g_uuidCache.pop();
130 }
131 }
132 bool res = GenerateUuid(uuid.elements, sizeof(uuid.elements));
133 if (!res) {
134 napi_throw_error(env, "-1", "uuid generate failed");
135 return false;
136 }
137 g_uuidCache.push(uuid);
138 res = GenerateUuid(uuid.elements, sizeof(uuid.elements));
139 if (!res) {
140 napi_throw_error(env, "-1", "uuid generate failed");
141 return false;
142 }
143 }
144 return true;
145 }
146
GetStringUUID(napi_env env,bool entropyCache)147 std::string GetStringUUID(napi_env env, bool entropyCache)
148 {
149 UUID uuid;
150 std::string uuidString = "";
151 if (!GetUUID(env, entropyCache, uuid)) {
152 uuidString = '0';
153 } else {
154 uuidString = GetFormatUUID(uuid);
155 }
156 return uuidString;
157 }
158
GetFormatUUID(const UUID & uuid)159 std::string GetFormatUUID(const UUID &uuid)
160 {
161 std::string format = "";
162 for (size_t i = 0; i < sizeof(uuid.elements); i++) {
163 unsigned char value = uuid.elements[i];
164 if (i >= HEX_FOUR_FLG && i % 2 == 0 && i <= HEX_TEN_FLG) { // 2: step value
165 format += "-";
166 }
167 format += HexToChar(value >> HEX_FOUR_FLG);
168 unsigned char high = value & 0xF0; // Operate the mark
169 if (high == 0) {
170 format += HexToChar(value);
171 } else {
172 format += HexToChar(value % (value & high));
173 }
174 }
175 return format;
176 }
177
GetBinaryUUID(napi_env env,bool entropyCache)178 napi_value GetBinaryUUID(napi_env env, bool entropyCache)
179 {
180 UUID uuid;
181 if (!GetUUID(env, entropyCache, uuid)) {
182 return nullptr;
183 }
184 void *data = nullptr;
185 napi_value arrayBuffer = nullptr;
186 size_t bufferSize = sizeof(uuid.elements);
187 napi_create_arraybuffer(env, bufferSize, &data, &arrayBuffer);
188 if (memcpy_s(data, bufferSize, uuid.elements, bufferSize) != EOK) {
189 HILOG_ERROR("get uuid memcpy_s failed");
190 return nullptr;
191 }
192 napi_value result = nullptr;
193 napi_create_typedarray(env, napi_uint8_array, bufferSize, arrayBuffer, 0, &result);
194 return result;
195 }
196
DoParseUUID(napi_env env,napi_value src)197 napi_value DoParseUUID(napi_env env, napi_value src)
198 {
199 size_t outLen = 16; // 16: the length of UUID
200 std::string buffer = "";
201 size_t bufferSize = 0; // 0: initialization
202 napi_status status = napi_ok;
203 status = napi_get_value_string_utf8(env, src, nullptr, 0, &bufferSize);
204 if (status != napi_ok) {
205 HILOG_ERROR("can not get src size");
206 return nullptr;
207 }
208 buffer.resize(bufferSize);
209 status = napi_get_value_string_utf8(env, src, buffer.data(), bufferSize + 1, &bufferSize);
210 if (status != napi_ok) {
211 HILOG_ERROR("can not get src value");
212 return nullptr;
213 }
214 void *data = nullptr;
215 napi_value arrayBuffer = nullptr;
216 napi_create_arraybuffer(env, outLen, &data, &arrayBuffer);
217 unsigned char *count = static_cast<unsigned char*>(data);
218 for (size_t i = 0; !buffer.empty() && i < outLen; i++) {
219 *count = ConvertBits(buffer);
220 count++;
221 }
222 napi_value result = nullptr;
223 napi_create_typedarray(env, napi_uint8_array, outLen, arrayBuffer, 0, &result);
224 return result;
225 }
226 }