• Home
  • Line#
  • Scopes#
  • Navigate#
  • Raw
  • Download
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 "sym_key_generator.h"
17 #include "sym_key_factory_spi.h"
18 #include "sym_common_defines.h"
19 #include "params_parser.h"
20 #include "utils.h"
21 
22 #include <securec.h>
23 #include "log.h"
24 #include "memory.h"
25 #include "result.h"
26 #include "config.h"
27 
28 #define AES_KEY_SIZE_128 128
29 #define AES_KEY_SIZE_192 192
30 #define AES_KEY_SIZE_256 256
31 #define DES_KEY_SIZE_192 192
32 
33 typedef HcfResult (*SymKeyGeneratorSpiCreateFunc)(SymKeyAttr *, HcfSymKeyGeneratorSpi **);
34 
35 typedef struct {
36     SymKeyGeneratorSpiCreateFunc createFunc;
37 } SymKeyGenFuncSet;
38 
39 typedef struct {
40     HCF_ALG_VALUE algo;
41     SymKeyGenFuncSet funcSet;
42 } SymKeyGenAbility;
43 
44 typedef struct {
45     HcfSymKeyGenerator base;
46     HcfSymKeyGeneratorSpi *spiObj;
47     char algoName[HCF_MAX_ALGO_NAME_LEN];
48 } HcfSymmKeyGeneratorImpl;
49 
50 static const SymKeyGenAbility SYMKEY_ABILITY_SET[] = {
51     { HCF_ALG_AES, { HcfSymKeyGeneratorSpiCreate }},
52     { HCF_ALG_DES, { HcfSymKeyGeneratorSpiCreate }}
53 };
54 
FindAbility(SymKeyAttr * attr)55 static const SymKeyGenFuncSet *FindAbility(SymKeyAttr *attr)
56 {
57     if (attr == NULL) {
58         return NULL;
59     }
60     for (uint32_t i = 0; i < sizeof(SYMKEY_ABILITY_SET) / sizeof(SymKeyGenAbility); i++) {
61         if (SYMKEY_ABILITY_SET[i].algo == attr->algo) {
62             return &(SYMKEY_ABILITY_SET[i].funcSet);
63         }
64     }
65     LOGE("Algo not support! [Algo]: %d", attr->algo);
66     return NULL;
67 }
68 
SetKeyLength(HCF_ALG_PARA_VALUE value,void * attr)69 static void SetKeyLength(HCF_ALG_PARA_VALUE value, void *attr)
70 {
71     SymKeyAttr *keyAttr = (SymKeyAttr *)attr;
72 
73     switch (value) {
74         case HCF_ALG_AES_128:
75             keyAttr->algo = HCF_ALG_AES;
76             keyAttr->keySize = AES_KEY_SIZE_128;
77             break;
78         case HCF_ALG_AES_192:
79             keyAttr->algo = HCF_ALG_AES;
80             keyAttr->keySize = AES_KEY_SIZE_192;
81             break;
82         case HCF_ALG_AES_256:
83             keyAttr->algo = HCF_ALG_AES;
84             keyAttr->keySize = AES_KEY_SIZE_256;
85             break;
86         case HCF_ALG_3DES_192:
87             keyAttr->algo = HCF_ALG_DES;
88             keyAttr->keySize = DES_KEY_SIZE_192;
89             break;
90         default:
91             break;
92     }
93 }
94 
OnSetSymKeyParameter(const HcfParaConfig * config,void * attr)95 static HcfResult OnSetSymKeyParameter(const HcfParaConfig* config, void *attr)
96 {
97     if ((config == NULL) || (attr == NULL)) {
98         return HCF_INVALID_PARAMS;
99     }
100     HcfResult ret = HCF_SUCCESS;
101     LOGD("Set Parameter:%s\n", config->tag);
102     switch (config->paraType) {
103         case HCF_ALG_TYPE:
104         case HCF_ALG_KEY_TYPE:
105             SetKeyLength(config->paraValue, attr);
106             break;
107         default:
108             ret = HCF_INVALID_PARAMS;
109             break;
110     }
111     return ret;
112 }
113 
GetSymKeyGeneratorClass(void)114 static const char *GetSymKeyGeneratorClass(void)
115 {
116     return "HcfSymKeyGenerator";
117 }
118 
GetAlgoName(HcfSymKeyGenerator * self)119 static const char *GetAlgoName(HcfSymKeyGenerator *self)
120 {
121     if (self == NULL) {
122         LOGE("The input self ptr is NULL!");
123         return NULL;
124     }
125     if (!IsClassMatch((HcfObjectBase *)self, GetSymKeyGeneratorClass())) {
126         LOGE("Class is not match!");
127         return NULL;
128     }
129     return ((HcfSymmKeyGeneratorImpl *)self)->algoName;
130 }
131 
DestroySymmKeyGenerator(HcfObjectBase * base)132 static void DestroySymmKeyGenerator(HcfObjectBase *base)
133 {
134     if (base == NULL) {
135         return;
136     }
137     if (!IsClassMatch((HcfObjectBase *)base, GetSymKeyGeneratorClass())) {
138         LOGE("Class is not match.");
139         return;
140     }
141     HcfSymmKeyGeneratorImpl *impl = (HcfSymmKeyGeneratorImpl *)base;
142     HcfObjDestroy(impl->spiObj);
143     HcfFree(impl);
144 }
145 
GenerateSymmKey(HcfSymKeyGenerator * self,HcfSymKey ** symmKey)146 static HcfResult GenerateSymmKey(HcfSymKeyGenerator *self, HcfSymKey **symmKey)
147 {
148     if ((self == NULL) || (symmKey == NULL)) {
149         LOGE("Invalid input parameter.");
150         return HCF_INVALID_PARAMS;
151     }
152 
153     if (!IsClassMatch((HcfObjectBase *)self, GetSymKeyGeneratorClass())) {
154         LOGE("Class is not match.");
155         return HCF_INVALID_PARAMS;
156     }
157     HcfSymmKeyGeneratorImpl *impl = (HcfSymmKeyGeneratorImpl *)self;
158 
159     return impl->spiObj->engineGenerateSymmKey(impl->spiObj, symmKey);
160 }
161 
ConvertSymmKey(HcfSymKeyGenerator * self,const HcfBlob * key,HcfSymKey ** symmKey)162 static HcfResult ConvertSymmKey(HcfSymKeyGenerator *self, const HcfBlob *key, HcfSymKey **symmKey)
163 {
164     if ((self == NULL) || (symmKey == NULL) || !IsBlobValid(key)) {
165         LOGE("Invalid input parameter.");
166         return HCF_INVALID_PARAMS;
167     }
168     if (!IsClassMatch((HcfObjectBase *)self, GetSymKeyGeneratorClass())) {
169         LOGE("Class is not match.");
170         return HCF_INVALID_PARAMS;
171     }
172     HcfSymmKeyGeneratorImpl *impl = (HcfSymmKeyGeneratorImpl *)self;
173 
174     return impl->spiObj->engineConvertSymmKey(impl->spiObj, key, symmKey);
175 }
176 
HcfSymKeyGeneratorCreate(const char * algoName,HcfSymKeyGenerator ** returnObj)177 HcfResult HcfSymKeyGeneratorCreate(const char *algoName, HcfSymKeyGenerator **returnObj)
178 {
179     if (!IsStrValid(algoName, HCF_MAX_ALGO_NAME_LEN) || (returnObj == NULL)) {
180         LOGE("Invalid input params while creating symkey!");
181         return HCF_INVALID_PARAMS;
182     }
183 
184     SymKeyAttr attr = {0};
185     if (ParseAndSetParameter(algoName, (void *)&attr, OnSetSymKeyParameter) != HCF_SUCCESS) {
186         LOGE("ParseAndSetParameter Failed!");
187         return HCF_NOT_SUPPORT;
188     }
189 
190     const SymKeyGenFuncSet *funcSet = FindAbility(&attr);
191     if (funcSet == NULL) {
192         LOGE("FindAbility Failed!");
193         return HCF_NOT_SUPPORT;
194     }
195     HcfSymmKeyGeneratorImpl *returnGenerator = (HcfSymmKeyGeneratorImpl *)HcfMalloc(sizeof(HcfSymmKeyGeneratorImpl), 0);
196     if (returnGenerator == NULL) {
197         LOGE("Failed to allocate returnGenerator memory!");
198         return HCF_ERR_MALLOC;
199     }
200     if (strcpy_s(returnGenerator->algoName, HCF_MAX_ALGO_NAME_LEN, algoName)) {
201         LOGE("Failed to copy algoName!");
202         HcfFree(returnGenerator);
203         return HCF_ERR_COPY;
204     }
205     HcfSymKeyGeneratorSpi *spiObj = NULL;
206     int32_t res = funcSet->createFunc(&attr, &spiObj);
207     if (res != HCF_SUCCESS) {
208         LOGE("Failed to create spi object!");
209         HcfFree(returnGenerator);
210         return res;
211     }
212     returnGenerator->base.generateSymKey = GenerateSymmKey;
213     returnGenerator->base.convertSymKey = ConvertSymmKey;
214     returnGenerator->base.base.destroy = DestroySymmKeyGenerator;
215     returnGenerator->base.base.getClass = GetSymKeyGeneratorClass;
216     returnGenerator->base.getAlgoName = GetAlgoName;
217     returnGenerator->spiObj = spiObj;
218 
219     *returnObj = (HcfSymKeyGenerator *)returnGenerator;
220     return HCF_SUCCESS;
221 }
222