xref: /optee_os/lib/libutee/include/tee_internal_api.h (revision 41af5286e515d36d8b2852c73cbe6b2881b0d34e)
1 /* SPDX-License-Identifier: BSD-2-Clause */
2 /*
3  * Copyright (c) 2014, STMicroelectronics International N.V.
4  */
5 
6 /* Based on GP TEE Internal API Specification Version 0.27 */
7 #ifndef TEE_INTERNAL_API_H
8 #define TEE_INTERNAL_API_H
9 
10 #ifdef __TEE_API_COMPAT_H
11 #error "<tee_api_compat.h> must not be included before <tee_internal_api.h>"
12 #endif
13 
14 #include <compiler.h>
15 #include <stddef.h>
16 #include <tee_api_defines.h>
17 #include <tee_api_types.h>
18 #include <trace.h>
19 
20 /* Property access functions */
21 
22 TEE_Result TEE_GetPropertyAsString(TEE_PropSetHandle propsetOrEnumerator,
23 				   const char *name, char *valueBuffer,
24 				   size_t *valueBufferLen);
25 TEE_Result __GP11_TEE_GetPropertyAsString(TEE_PropSetHandle propsetOrEnumerator,
26 					  const char *name, char *valueBuffer,
27 					  uint32_t *valueBufferLen);
28 
29 TEE_Result TEE_GetPropertyAsBool(TEE_PropSetHandle propsetOrEnumerator,
30 				 const char *name, bool *value);
31 
32 TEE_Result TEE_GetPropertyAsU32(TEE_PropSetHandle propsetOrEnumerator,
33 				const char *name, uint32_t *value);
34 
35 TEE_Result TEE_GetPropertyAsU64(TEE_PropSetHandle propsetOrEnumerator,
36 				const char *name, uint64_t *value);
37 
38 TEE_Result TEE_GetPropertyAsBinaryBlock(TEE_PropSetHandle propsetOrEnumerator,
39 					const char *name, void *valueBuffer,
40 					size_t *valueBufferLen);
41 TEE_Result
42 __GP11_TEE_GetPropertyAsBinaryBlock(TEE_PropSetHandle propsetOrEnumerator,
43 				    const char *name, void *valueBuffer,
44 				    uint32_t *valueBufferLen);
45 
46 TEE_Result TEE_GetPropertyAsUUID(TEE_PropSetHandle propsetOrEnumerator,
47 				 const char *name, TEE_UUID *value);
48 
49 TEE_Result TEE_GetPropertyAsIdentity(TEE_PropSetHandle propsetOrEnumerator,
50 				     const char *name, TEE_Identity *value);
51 
52 TEE_Result TEE_AllocatePropertyEnumerator(TEE_PropSetHandle *enumerator);
53 
54 void TEE_FreePropertyEnumerator(TEE_PropSetHandle enumerator);
55 
56 void TEE_StartPropertyEnumerator(TEE_PropSetHandle enumerator,
57 				 TEE_PropSetHandle propSet);
58 
59 void TEE_ResetPropertyEnumerator(TEE_PropSetHandle enumerator);
60 
61 TEE_Result TEE_GetPropertyName(TEE_PropSetHandle enumerator,
62 			       void *nameBuffer, size_t *nameBufferLen);
63 TEE_Result __GP11_TEE_GetPropertyName(TEE_PropSetHandle enumerator,
64 				      void *nameBuffer,
65 				      uint32_t *nameBufferLen);
66 
67 TEE_Result TEE_GetNextProperty(TEE_PropSetHandle enumerator);
68 
69 /* System API - Misc */
70 
71 void TEE_Panic(TEE_Result panicCode);
72 
73 /* System API - Internal Client API */
74 
75 TEE_Result TEE_OpenTASession(const TEE_UUID *destination,
76 			     uint32_t cancellationRequestTimeout,
77 			     uint32_t paramTypes,
78 			     TEE_Param params[TEE_NUM_PARAMS],
79 			     TEE_TASessionHandle *session,
80 			     uint32_t *returnOrigin);
81 TEE_Result __GP11_TEE_OpenTASession(const TEE_UUID *destination,
82 				    uint32_t cancellationRequestTimeout,
83 				    uint32_t paramTypes,
84 				    __GP11_TEE_Param params[TEE_NUM_PARAMS],
85 				    TEE_TASessionHandle *session,
86 				    uint32_t *returnOrigin);
87 
88 void TEE_CloseTASession(TEE_TASessionHandle session);
89 
90 TEE_Result TEE_InvokeTACommand(TEE_TASessionHandle session,
91 			       uint32_t cancellationRequestTimeout,
92 			       uint32_t commandID, uint32_t paramTypes,
93 			       TEE_Param params[TEE_NUM_PARAMS],
94 			       uint32_t *returnOrigin);
95 TEE_Result __GP11_TEE_InvokeTACommand(TEE_TASessionHandle session,
96 				      uint32_t cancellationRequestTimeout,
97 				      uint32_t commandID, uint32_t paramTypes,
98 				      __GP11_TEE_Param params[TEE_NUM_PARAMS],
99 				      uint32_t *returnOrigin);
100 
101 /* System API - Cancellations */
102 
103 bool TEE_GetCancellationFlag(void);
104 
105 bool TEE_UnmaskCancellation(void);
106 
107 bool TEE_MaskCancellation(void);
108 
109 /* System API - Memory Management */
110 
111 TEE_Result TEE_CheckMemoryAccessRights(uint32_t accessFlags, void *buffer,
112 				       size_t size);
113 TEE_Result __GP11_TEE_CheckMemoryAccessRights(uint32_t accessFlags,
114 					      void *buffer, uint32_t size);
115 
116 void TEE_SetInstanceData(const void *instanceData);
117 
118 const void *TEE_GetInstanceData(void);
119 
120 void *TEE_Malloc(size_t size, uint32_t hint);
121 void *__GP11_TEE_Malloc(uint32_t size, uint32_t hint);
122 
123 void *TEE_Realloc(void *buffer, size_t newSize);
124 void *__GP11_TEE_Realloc(void *buffer, uint32_t newSize);
125 
126 void TEE_Free(void *buffer);
127 
128 void *TEE_MemMove(void *dest, const void *src, size_t size);
129 void *__GP11_TEE_MemMove(void *dest, const void *src, uint32_t size);
130 
131 /*
132  * Note: TEE_MemCompare() has a constant-time implementation (execution time
133  * does not depend on buffer content but only on buffer size). It is the main
134  * difference with memcmp().
135  */
136 int32_t TEE_MemCompare(const void *buffer1, const void *buffer2, size_t size);
137 int32_t __GP11_TEE_MemCompare(const void *buffer1, const void *buffer2,
138 			      uint32_t size);
139 
140 void TEE_MemFill(void *buff, uint32_t x, size_t size);
141 void __GP11_TEE_MemFill(void *buff, uint32_t x, uint32_t size);
142 
143 /* Data and Key Storage API  - Generic Object Functions */
144 
145 void TEE_GetObjectInfo(TEE_ObjectHandle object, TEE_ObjectInfo *objectInfo);
146 void __GP11_TEE_GetObjectInfo(TEE_ObjectHandle object,
147 			      __GP11_TEE_ObjectInfo *objectInfo);
148 
149 TEE_Result TEE_GetObjectInfo1(TEE_ObjectHandle object,
150 			      TEE_ObjectInfo *objectInfo);
151 TEE_Result __GP11_TEE_GetObjectInfo1(TEE_ObjectHandle object,
152 				     __GP11_TEE_ObjectInfo *objectInfo);
153 
154 void TEE_RestrictObjectUsage(TEE_ObjectHandle object, uint32_t objectUsage);
155 TEE_Result TEE_RestrictObjectUsage1(TEE_ObjectHandle object,
156 				    uint32_t objectUsage);
157 
158 TEE_Result TEE_GetObjectBufferAttribute(TEE_ObjectHandle object,
159 					uint32_t attributeID, void *buffer,
160 					size_t *size);
161 TEE_Result __GP11_TEE_GetObjectBufferAttribute(TEE_ObjectHandle object,
162 					       uint32_t attributeID,
163 					       void *buffer, uint32_t *size);
164 
165 TEE_Result TEE_GetObjectValueAttribute(TEE_ObjectHandle object,
166 				       uint32_t attributeID, uint32_t *a,
167 				       uint32_t *b);
168 
169 void TEE_CloseObject(TEE_ObjectHandle object);
170 
171 /* Data and Key Storage API  - Transient Object Functions */
172 
173 TEE_Result TEE_AllocateTransientObject(TEE_ObjectType objectType,
174 				       uint32_t maxObjectSize,
175 				       TEE_ObjectHandle *object);
176 TEE_Result __GP11_TEE_AllocateTransientObject(TEE_ObjectType objectType,
177 					      uint32_t maxKeySize,
178 					      TEE_ObjectHandle *object);
179 
180 void TEE_FreeTransientObject(TEE_ObjectHandle object);
181 
182 void TEE_ResetTransientObject(TEE_ObjectHandle object);
183 
184 TEE_Result TEE_PopulateTransientObject(TEE_ObjectHandle object,
185 				       const TEE_Attribute *attrs,
186 				       uint32_t attrCount);
187 TEE_Result __GP11_TEE_PopulateTransientObject(TEE_ObjectHandle object,
188 					      const __GP11_TEE_Attribute *attrs,
189 					      uint32_t attrCount);
190 
191 void TEE_InitRefAttribute(TEE_Attribute *attr, uint32_t attributeID,
192 			  const void *buffer, size_t length);
193 void __GP11_TEE_InitRefAttribute(__GP11_TEE_Attribute *attr,
194 				 uint32_t attributeID,
195 				 const void *buffer, uint32_t length);
196 
197 void TEE_InitValueAttribute(TEE_Attribute *attr, uint32_t attributeID,
198 			    uint32_t a, uint32_t b);
199 void __GP11_TEE_InitValueAttribute(__GP11_TEE_Attribute *attr,
200 				   uint32_t attributeID,
201 				   uint32_t a, uint32_t b);
202 
203 void TEE_CopyObjectAttributes(TEE_ObjectHandle destObject,
204 			      TEE_ObjectHandle srcObject);
205 
206 TEE_Result TEE_CopyObjectAttributes1(TEE_ObjectHandle destObject,
207 				     TEE_ObjectHandle srcObject);
208 
209 TEE_Result TEE_GenerateKey(TEE_ObjectHandle object, uint32_t keySize,
210 			   const TEE_Attribute *params, uint32_t paramCount);
211 TEE_Result __GP11_TEE_GenerateKey(TEE_ObjectHandle object, uint32_t keySize,
212 				  const __GP11_TEE_Attribute *params,
213 				  uint32_t paramCount);
214 
215 /* Data and Key Storage API  - Persistent Object Functions */
216 
217 TEE_Result TEE_OpenPersistentObject(uint32_t storageID, const void *objectID,
218 				    size_t objectIDLen, uint32_t flags,
219 				    TEE_ObjectHandle *object);
220 TEE_Result __GP11_TEE_OpenPersistentObject(uint32_t storageID,
221 					   const void *objectID,
222 					   uint32_t objectIDLen, uint32_t flags,
223 					   TEE_ObjectHandle *object);
224 
225 TEE_Result TEE_CreatePersistentObject(uint32_t storageID, const void *objectID,
226 				      size_t objectIDLen, uint32_t flags,
227 				      TEE_ObjectHandle attributes,
228 				      const void *initialData,
229 				      size_t initialDataLen,
230 				      TEE_ObjectHandle *object);
231 TEE_Result __GP11_TEE_CreatePersistentObject(uint32_t storageID,
232 					     const void *objectID,
233 					     uint32_t objectIDLen,
234 					     uint32_t flags,
235 					     TEE_ObjectHandle attributes,
236 					     const void *initialData,
237 					     uint32_t initialDataLen,
238 					     TEE_ObjectHandle *object);
239 
240 void TEE_CloseAndDeletePersistentObject(TEE_ObjectHandle object);
241 
242 TEE_Result TEE_CloseAndDeletePersistentObject1(TEE_ObjectHandle object);
243 
244 TEE_Result TEE_RenamePersistentObject(TEE_ObjectHandle object,
245 				      const void *newObjectID,
246 				      size_t newObjectIDLen);
247 TEE_Result __GP11_TEE_RenamePersistentObject(TEE_ObjectHandle object,
248 					     const void *newObjectID,
249 					     uint32_t newObjectIDLen);
250 
251 TEE_Result TEE_AllocatePersistentObjectEnumerator(TEE_ObjectEnumHandle *
252 						  objectEnumerator);
253 
254 void TEE_FreePersistentObjectEnumerator(TEE_ObjectEnumHandle objectEnumerator);
255 
256 void TEE_ResetPersistentObjectEnumerator(TEE_ObjectEnumHandle objectEnumerator);
257 
258 TEE_Result TEE_StartPersistentObjectEnumerator(TEE_ObjectEnumHandle
259 					       objectEnumerator,
260 					       uint32_t storageID);
261 
262 TEE_Result TEE_GetNextPersistentObject(TEE_ObjectEnumHandle objectEnumerator,
263 				       TEE_ObjectInfo *objectInfo,
264 				       void *objectID, size_t *objectIDLen);
265 TEE_Result
266 __GP11_TEE_GetNextPersistentObject(TEE_ObjectEnumHandle objectEnumerator,
267 				   __GP11_TEE_ObjectInfo *objectInfo,
268 				   void *objectID, uint32_t *objectIDLen);
269 
270 /* Data and Key Storage API  - Data Stream Access Functions */
271 
272 TEE_Result TEE_ReadObjectData(TEE_ObjectHandle object, void *buffer,
273 			      size_t size, size_t *count);
274 TEE_Result __GP11_TEE_ReadObjectData(TEE_ObjectHandle object, void *buffer,
275 				     uint32_t size, uint32_t *count);
276 
277 TEE_Result TEE_WriteObjectData(TEE_ObjectHandle object, const void *buffer,
278 			       size_t size);
279 TEE_Result __GP11_TEE_WriteObjectData(TEE_ObjectHandle object,
280 				      const void *buffer, uint32_t size);
281 
282 TEE_Result TEE_TruncateObjectData(TEE_ObjectHandle object, uint32_t size);
283 
284 TEE_Result TEE_SeekObjectData(TEE_ObjectHandle object, int32_t offset,
285 			      TEE_Whence whence);
286 
287 /* Cryptographic Operations API - Generic Operation Functions */
288 
289 TEE_Result TEE_AllocateOperation(TEE_OperationHandle *operation,
290 				 uint32_t algorithm, uint32_t mode,
291 				 uint32_t maxKeySize);
292 
293 void TEE_FreeOperation(TEE_OperationHandle operation);
294 
295 void TEE_GetOperationInfo(TEE_OperationHandle operation,
296 			  TEE_OperationInfo *operationInfo);
297 
298 TEE_Result
299 TEE_GetOperationInfoMultiple(TEE_OperationHandle operation,
300 			     TEE_OperationInfoMultiple *operationInfoMultiple,
301 			     uint32_t *operationSize);
302 
303 void TEE_ResetOperation(TEE_OperationHandle operation);
304 
305 TEE_Result TEE_SetOperationKey(TEE_OperationHandle operation,
306 			       TEE_ObjectHandle key);
307 
308 TEE_Result TEE_SetOperationKey2(TEE_OperationHandle operation,
309 				TEE_ObjectHandle key1, TEE_ObjectHandle key2);
310 
311 void TEE_CopyOperation(TEE_OperationHandle dstOperation,
312 		       TEE_OperationHandle srcOperation);
313 
314 TEE_Result TEE_IsAlgorithmSupported(uint32_t algId, uint32_t element);
315 
316 /* Cryptographic Operations API - Message Digest Functions */
317 
318 void TEE_DigestUpdate(TEE_OperationHandle operation,
319 		      const void *chunk, uint32_t chunkSize);
320 
321 TEE_Result TEE_DigestDoFinal(TEE_OperationHandle operation, const void *chunk,
322 			     uint32_t chunkLen, void *hash, uint32_t *hashLen);
323 
324 /* Cryptographic Operations API - Symmetric Cipher Functions */
325 
326 void TEE_CipherInit(TEE_OperationHandle operation, const void *IV,
327 		    uint32_t IVLen);
328 
329 TEE_Result TEE_CipherUpdate(TEE_OperationHandle operation, const void *srcData,
330 			    uint32_t srcLen, void *destData, uint32_t *destLen);
331 
332 TEE_Result TEE_CipherDoFinal(TEE_OperationHandle operation,
333 			     const void *srcData, uint32_t srcLen,
334 			     void *destData, uint32_t *destLen);
335 
336 /* Cryptographic Operations API - MAC Functions */
337 
338 void TEE_MACInit(TEE_OperationHandle operation, const void *IV,
339 		 uint32_t IVLen);
340 
341 void TEE_MACUpdate(TEE_OperationHandle operation, const void *chunk,
342 		   uint32_t chunkSize);
343 
344 TEE_Result TEE_MACComputeFinal(TEE_OperationHandle operation,
345 			       const void *message, uint32_t messageLen,
346 			       void *mac, uint32_t *macLen);
347 
348 TEE_Result TEE_MACCompareFinal(TEE_OperationHandle operation,
349 			       const void *message, uint32_t messageLen,
350 			       const void *mac, uint32_t macLen);
351 
352 /* Cryptographic Operations API - Authenticated Encryption Functions */
353 
354 TEE_Result TEE_AEInit(TEE_OperationHandle operation, const void *nonce,
355 		      uint32_t nonceLen, uint32_t tagLen, uint32_t AADLen,
356 		      uint32_t payloadLen);
357 
358 void TEE_AEUpdateAAD(TEE_OperationHandle operation, const void *AADdata,
359 		     uint32_t AADdataLen);
360 
361 TEE_Result TEE_AEUpdate(TEE_OperationHandle operation, const void *srcData,
362 			uint32_t srcLen, void *destData, uint32_t *destLen);
363 
364 TEE_Result TEE_AEEncryptFinal(TEE_OperationHandle operation,
365 			      const void *srcData, uint32_t srcLen,
366 			      void *destData, uint32_t *destLen, void *tag,
367 			      uint32_t *tagLen);
368 
369 TEE_Result TEE_AEDecryptFinal(TEE_OperationHandle operation,
370 			      const void *srcData, uint32_t srcLen,
371 			      void *destData, uint32_t *destLen, void *tag,
372 			      uint32_t tagLen);
373 
374 /* Cryptographic Operations API - Asymmetric Functions */
375 
376 TEE_Result TEE_AsymmetricEncrypt(TEE_OperationHandle operation,
377 				 const TEE_Attribute *params,
378 				 uint32_t paramCount, const void *srcData,
379 				 uint32_t srcLen, void *destData,
380 				 uint32_t *destLen);
381 TEE_Result __GP11_TEE_AsymmetricEncrypt(TEE_OperationHandle operation,
382 					const __GP11_TEE_Attribute *params,
383 					uint32_t paramCount,
384 					const void *srcData, uint32_t srcLen,
385 					void *destData, uint32_t *destLen);
386 
387 TEE_Result TEE_AsymmetricDecrypt(TEE_OperationHandle operation,
388 				 const TEE_Attribute *params,
389 				 uint32_t paramCount, const void *srcData,
390 				 uint32_t srcLen, void *destData,
391 				 uint32_t *destLen);
392 TEE_Result __GP11_TEE_AsymmetricDecrypt(TEE_OperationHandle operation,
393 					const __GP11_TEE_Attribute *params,
394 					uint32_t paramCount,
395 					const void *srcData, uint32_t srcLen,
396 					void *destData, uint32_t *destLen);
397 
398 TEE_Result TEE_AsymmetricSignDigest(TEE_OperationHandle operation,
399 				    const TEE_Attribute *params,
400 				    uint32_t paramCount, const void *digest,
401 				    uint32_t digestLen, void *signature,
402 				    uint32_t *signatureLen);
403 TEE_Result __GP11_TEE_AsymmetricSignDigest(TEE_OperationHandle operation,
404 					   const __GP11_TEE_Attribute *params,
405 					   uint32_t paramCount,
406 					   const void *digest,
407 					   uint32_t digestLen, void *signature,
408 					   uint32_t *signatureLen);
409 
410 TEE_Result TEE_AsymmetricVerifyDigest(TEE_OperationHandle operation,
411 				      const TEE_Attribute *params,
412 				      uint32_t paramCount, const void *digest,
413 				      uint32_t digestLen, const void *signature,
414 				      uint32_t signatureLen);
415 TEE_Result __GP11_TEE_AsymmetricVerifyDigest(TEE_OperationHandle operation,
416 					     const __GP11_TEE_Attribute *params,
417 					     uint32_t paramCount,
418 					     const void *digest,
419 					     uint32_t digestLen,
420 					     const void *signature,
421 					     uint32_t signatureLen);
422 
423 /* Cryptographic Operations API - Key Derivation Functions */
424 
425 void TEE_DeriveKey(TEE_OperationHandle operation,
426 		   const TEE_Attribute *params, uint32_t paramCount,
427 		   TEE_ObjectHandle derivedKey);
428 void __GP11_TEE_DeriveKey(TEE_OperationHandle operation,
429 			  const __GP11_TEE_Attribute *params,
430 			  uint32_t paramCount, TEE_ObjectHandle derivedKey);
431 
432 /* Cryptographic Operations API - Random Number Generation Functions */
433 
434 void TEE_GenerateRandom(void *randomBuffer, uint32_t randomBufferLen);
435 
436 /* Date & Time API */
437 
438 void TEE_GetSystemTime(TEE_Time *time);
439 
440 TEE_Result TEE_Wait(uint32_t timeout);
441 
442 TEE_Result TEE_GetTAPersistentTime(TEE_Time *time);
443 
444 TEE_Result TEE_SetTAPersistentTime(const TEE_Time *time);
445 
446 void TEE_GetREETime(TEE_Time *time);
447 
448 /* TEE Arithmetical API - Memory allocation and size of objects */
449 
450 uint32_t TEE_BigIntFMMSizeInU32(uint32_t modulusSizeInBits);
451 
452 uint32_t TEE_BigIntFMMContextSizeInU32(uint32_t modulusSizeInBits);
453 
454 /* TEE Arithmetical API - Initialization functions */
455 
456 void TEE_BigIntInit(TEE_BigInt *bigInt, uint32_t len);
457 
458 void TEE_BigIntInitFMMContext(TEE_BigIntFMMContext *context, uint32_t len,
459 			      const TEE_BigInt *modulus);
460 
461 void TEE_BigIntInitFMM(TEE_BigIntFMM *bigIntFMM, uint32_t len);
462 
463 /* TEE Arithmetical API - Converter functions */
464 
465 TEE_Result TEE_BigIntConvertFromOctetString(TEE_BigInt *dest,
466 					    const uint8_t *buffer,
467 					    uint32_t bufferLen,
468 					    int32_t sign);
469 
470 TEE_Result TEE_BigIntConvertToOctetString(uint8_t *buffer, uint32_t *bufferLen,
471 					  const TEE_BigInt *bigInt);
472 
473 void TEE_BigIntConvertFromS32(TEE_BigInt *dest, int32_t shortVal);
474 
475 TEE_Result TEE_BigIntConvertToS32(int32_t *dest, const TEE_BigInt *src);
476 
477 /* TEE Arithmetical API - Logical operations */
478 
479 int32_t TEE_BigIntCmp(const TEE_BigInt *op1, const TEE_BigInt *op2);
480 
481 int32_t TEE_BigIntCmpS32(const TEE_BigInt *op, int32_t shortVal);
482 
483 void TEE_BigIntShiftRight(TEE_BigInt *dest, const TEE_BigInt *op,
484 			  size_t bits);
485 
486 bool TEE_BigIntGetBit(const TEE_BigInt *src, uint32_t bitIndex);
487 
488 uint32_t TEE_BigIntGetBitCount(const TEE_BigInt *src);
489 
490 void TEE_BigIntAdd(TEE_BigInt *dest, const TEE_BigInt *op1,
491 		   const TEE_BigInt *op2);
492 
493 void TEE_BigIntSub(TEE_BigInt *dest, const TEE_BigInt *op1,
494 		   const TEE_BigInt *op2);
495 
496 void TEE_BigIntNeg(TEE_BigInt *dest, const TEE_BigInt *op);
497 
498 void TEE_BigIntMul(TEE_BigInt *dest, const TEE_BigInt *op1,
499 		   const TEE_BigInt *op2);
500 
501 void TEE_BigIntSquare(TEE_BigInt *dest, const TEE_BigInt *op);
502 
503 void TEE_BigIntDiv(TEE_BigInt *dest_q, TEE_BigInt *dest_r,
504 		   const TEE_BigInt *op1, const TEE_BigInt *op2);
505 
506 /* TEE Arithmetical API - Modular arithmetic operations */
507 
508 void TEE_BigIntMod(TEE_BigInt *dest, const TEE_BigInt *op,
509 		   const TEE_BigInt *n);
510 
511 void TEE_BigIntAddMod(TEE_BigInt *dest, const TEE_BigInt *op1,
512 		      const TEE_BigInt *op2, const TEE_BigInt *n);
513 
514 void TEE_BigIntSubMod(TEE_BigInt *dest, const TEE_BigInt *op1,
515 		      const TEE_BigInt *op2, const TEE_BigInt *n);
516 
517 void TEE_BigIntMulMod(TEE_BigInt *dest, const  TEE_BigInt *op1,
518 		      const TEE_BigInt *op2, const TEE_BigInt *n);
519 
520 void TEE_BigIntSquareMod(TEE_BigInt *dest, const TEE_BigInt *op,
521 			 const TEE_BigInt *n);
522 
523 void TEE_BigIntInvMod(TEE_BigInt *dest, const TEE_BigInt *op,
524 		      const TEE_BigInt *n);
525 
526 /* TEE Arithmetical API - Other arithmetic operations */
527 
528 bool TEE_BigIntRelativePrime(const TEE_BigInt *op1, const TEE_BigInt *op2);
529 
530 void TEE_BigIntComputeExtendedGcd(TEE_BigInt *gcd, TEE_BigInt *u,
531 				  TEE_BigInt *v, const TEE_BigInt *op1,
532 				  const TEE_BigInt *op2);
533 
534 int32_t TEE_BigIntIsProbablePrime(const TEE_BigInt *op,
535 				  uint32_t confidenceLevel);
536 
537 /* TEE Arithmetical API - Fast modular multiplication operations */
538 
539 void TEE_BigIntConvertToFMM(TEE_BigIntFMM *dest, const TEE_BigInt *src,
540 			    const TEE_BigInt *n,
541 			    const TEE_BigIntFMMContext *context);
542 
543 void TEE_BigIntConvertFromFMM(TEE_BigInt *dest, const TEE_BigIntFMM *src,
544 			      const TEE_BigInt *n,
545 			      const TEE_BigIntFMMContext *context);
546 
547 void TEE_BigIntFMMConvertToBigInt(TEE_BigInt *dest, const TEE_BigIntFMM *src,
548 				  const TEE_BigInt *n,
549 				  const TEE_BigIntFMMContext *context);
550 
551 void TEE_BigIntComputeFMM(TEE_BigIntFMM *dest, const TEE_BigIntFMM *op1,
552 			  const TEE_BigIntFMM *op2, const TEE_BigInt *n,
553 			  const TEE_BigIntFMMContext *context);
554 
555 #define TA_EXPORT
556 
557 /*
558  * TA Interface
559  *
560  * Each Trusted Application must provide the Implementation with a number
561  * of functions, collectively called the “TA interface”. These functions
562  * are the entry points called by the Trusted Core Framework to create the
563  * instance, notify the instance that a new client is connecting, notify
564  * the instance when the client invokes a command, etc.
565  *
566  * Trusted Application Entry Points:
567  */
568 
569 /*
570  * The function TA_CreateEntryPoint is the Trusted Application's
571  * constructor, which the Framework calls when it creates a new instance of
572  * the Trusted Application. To register instance data, the implementation
573  * of this constructor can use either global variables or the function
574  * TEE_InstanceSetData.
575  *
576  * Return Value:
577  * - TEE_SUCCESS: if the instance is successfully created, the function
578  *   must return TEE_SUCCESS.
579  * - Any other value: if any other code is returned the instance is not
580  *   created, and no other entry points of this instance will be called.
581  *   The Framework MUST reclaim all resources and dereference all objects
582  *   related to the creation of the instance.
583  *
584  *   If this entry point was called as a result of a client opening a
585  *   session, the error code is returned to the client and the session is
586  *   not opened.
587  */
588 TEE_Result TA_EXPORT TA_CreateEntryPoint(void);
589 
590 /*
591  * The function TA_DestroyEntryPoint is the Trusted Application‟s
592  * destructor, which the Framework calls when the instance is being
593  * destroyed.
594  *
595  * When the function TA_DestroyEntryPoint is called, the Framework
596  * guarantees that no client session is currently open. Once the call to
597  * TA_DestroyEntryPoint has been completed, no other entry point of this
598  * instance will ever be called.
599  *
600  * Note that when this function is called, all resources opened by the
601  * instance are still available. It is only after the function returns that
602  * the Implementation MUST start automatically reclaiming resources left
603  * opened.
604  *
605  * Return Value:
606  * This function can return no success or error code. After this function
607  * returns the Implementation MUST consider the instance destroyed and
608  * reclaims all resources left open by the instance.
609  */
610 void TA_EXPORT TA_DestroyEntryPoint(void);
611 
612 /*
613  * The Framework calls the function TA_OpenSessionEntryPoint when a client
614  * requests to open a session with the Trusted Application. The open
615  * session request may result in a new Trusted Application instance being
616  * created as defined in section 4.5.
617  *
618  * The client can specify parameters in an open operation which are passed
619  * to the Trusted Application instance in the arguments paramTypes and
620  * params. These arguments can also be used by the Trusted Application
621  * instance to transfer response data back to the client. See section 4.3.6
622  * for a specification of how to handle the operation parameters.
623  *
624  * If this function returns TEE_SUCCESS, the client is connected to a
625  * Trusted Application instance and can invoke Trusted Application
626  * commands. When the client disconnects, the Framework will eventually
627  * call the TA_CloseSessionEntryPoint entry point.
628  *
629  * If the function returns any error, the Framework rejects the connection
630  * and returns the error code and the current content of the parameters the
631  * client. The return origin is then set to TEE_ORIGIN_TRUSTED_APP.
632  *
633  * The Trusted Application instance can register a session data pointer by
634  * setting *psessionContext. The value of this pointer is not interpreted
635  * by the Framework, and is simply passed back to other TA_ functions
636  * within this session. Note that *sessionContext may be set with a pointer
637  * to a memory allocated by the Trusted Application instance or with
638  * anything else, like an integer, a handle etc. The Framework will not
639  * automatically free *sessionContext when the session is closed; the
640  * Trusted Application instance is responsible for freeing memory if
641  * required.
642  *
643  * During the call to TA_OpenSessionEntryPoint the client may request to
644  * cancel the operation. See section 4.10 for more details on
645  * cancellations. If the call to TA_OpenSessionEntryPoint returns
646  * TEE_SUCCESS, the client must consider the session as successfully opened
647  * and explicitly close it if necessary.
648  *
649  * Parameters:
650  * - paramTypes: the types of the four parameters.
651  * - params: a pointer to an array of four parameters.
652  * - sessionContext: A pointer to a variable that can be filled by the
653  *   Trusted Application instance with an opaque void* data pointer
654  *
655  * Return Value:
656  * - TEE_SUCCESS if the session is successfully opened.
657  * - Any other value if the session could not be open.
658  *   o The error code may be one of the pre-defined codes, or may be a new
659  *     error code defined by the Trusted Application implementation itself.
660  */
661 TEE_Result TA_EXPORT TA_OpenSessionEntryPoint(uint32_t paramTypes,
662 					      TEE_Param params[TEE_NUM_PARAMS],
663 					      void **sessionContext);
664 TEE_Result TA_EXPORT
665 __GP11_TA_OpenSessionEntryPoint(uint32_t paramTypes,
666 				__GP11_TEE_Param params[TEE_NUM_PARAMS],
667 				void **sessionContext);
668 
669 /*
670  * The Framework calls this function to close a client session. During the
671  * call to this function the implementation can use any session functions.
672  *
673  * The Trusted Application implementation is responsible for freeing any
674  * resources consumed by the session being closed. Note that the Trusted
675  * Application cannot refuse to close a session, but can hold the closing
676  * until it returns from TA_CloseSessionEntryPoint. This is why this
677  * function cannot return an error code.
678  *
679  * Parameters:
680  * - sessionContext: The value of the void* opaque data pointer set by the
681  *   Trusted Application in the function TA_OpenSessionEntryPoint for this
682  *   session.
683  */
684 void TA_EXPORT TA_CloseSessionEntryPoint(void *sessionContext);
685 
686 /*
687  * The Framework calls this function when the client invokes a command
688  * within the given session.
689  *
690  * The Trusted Application can access the parameters sent by the client
691  * through the paramTypes and params arguments. It can also use these
692  * arguments to transfer response data back to the client.
693  *
694  * During the call to TA_InvokeCommandEntryPoint the client may request to
695  * cancel the operation.
696  *
697  * A command is always invoked within the context of a client session.
698  * Thus, any session function  can be called by the command implementation.
699  *
700  * Parameter:
701  * - sessionContext: The value of the void* opaque data pointer set by the
702  *   Trusted Application in the function TA_OpenSessionEntryPoint.
703  * - commandID: A Trusted Application-specific code that identifies the
704  *   command to be invoked.
705  * - paramTypes: the types of the four parameters.
706  * - params: a pointer to an array of four parameters.
707  *
708  * Return Value:
709  * - TEE_SUCCESS: if the command is successfully executed, the function
710  *   must return this value.
711  * - Any other value: if the invocation of the command fails for any
712  *   reason.
713  *   o The error code may be one of the pre-defined codes, or may be a new
714  *     error code defined by the Trusted Application implementation itself.
715  */
716 
717 TEE_Result TA_EXPORT
718 TA_InvokeCommandEntryPoint(void *sessionContext, uint32_t commandID,
719 			   uint32_t paramTypes,
720 			   TEE_Param params[TEE_NUM_PARAMS]);
721 TEE_Result TA_EXPORT
722 __GP11_TA_InvokeCommandEntryPoint(void *sessionContext, uint32_t commandID,
723 				  uint32_t paramTypes,
724 				  __GP11_TEE_Param params[TEE_NUM_PARAMS]);
725 
726 /*
727  * Matching Client Functions <--> TA Functions
728  *
729  * TEE_OpenSession or TEE_OpenTASession:
730  * If a new Trusted Application instance is needed to handle the session,
731  * TA_CreateEntryPoint is called.
732  * Then, TA_OpenSessionEntryPoint is called.
733  *
734  * TEE_InvokeCommand or TEE_InvokeTACommand:
735  * TA_InvokeCommandEntryPoint is called.
736  *
737  * TEE_CloseSession or TEE_CloseTASession:
738  * TA_CloseSessionEntryPoint is called.
739  * For a multi-instance TA or for a single-instance, non keep-alive TA, if
740  * the session closed was the last session on the instance, then
741  * TA_DestroyEntryPoint is called. Otherwise, the instance is kept until
742  * the TEE shuts down.
743  */
744 
745 #include <tee_api_compat.h>
746 
747 #endif /*TEE_INTERNAL_API_H*/
748