1 /*
2 * Copyright (c) 2019, The Linux Foundation. All rights reserved.
3 *
4 * Redistribution and use in source and binary forms, with or without
5 * modification, are permitted provided that the following conditions are
6 * met:
7 * * Redistributions of source code must retain the above copyright
8 * notice, this list of conditions and the following disclaimer.
9 * * Redistributions in binary form must reproduce the above
10 * copyright notice, this list of conditions and the following
11 * disclaimer in the documentation and/or other materials provided
12 * with the distribution.
13 * * Neither the name of The Linux Foundation nor the names of its
14 * contributors may be used to endorse or promote products derived
15 * from this software without specific prior written permission.
16 *
17 * THIS SOFTWARE IS PROVIDED "AS IS" AND ANY EXPRESS OR IMPLIED
18 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
19 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT
20 * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS
21 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
22 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
23 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
24 * BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
25 * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE
26 * OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN
27 * IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28 */
29 #ifndef _ADSP_PERF_STUB_H
30 #define _ADSP_PERF_STUB_H
31 #include "adsp_perf.h"
32 #ifndef _QAIC_ENV_H
33 #define _QAIC_ENV_H
34
35 #ifdef __GNUC__
36 #ifdef __clang__
37 #pragma GCC diagnostic ignored "-Wunknown-pragmas"
38 #else
39 #pragma GCC diagnostic ignored "-Wpragmas"
40 #endif
41 #pragma GCC diagnostic ignored "-Wuninitialized"
42 #pragma GCC diagnostic ignored "-Wunused-parameter"
43 #pragma GCC diagnostic ignored "-Wunused-function"
44 #endif
45
46 #ifndef _ATTRIBUTE_UNUSED
47
48 #ifdef _WIN32
49 #define _ATTRIBUTE_UNUSED
50 #else
51 #define _ATTRIBUTE_UNUSED __attribute__ ((unused))
52 #endif
53
54 #endif // _ATTRIBUTE_UNUSED
55
56 #ifndef __QAIC_REMOTE
57 #define __QAIC_REMOTE(ff) ff
58 #endif //__QAIC_REMOTE
59
60 #ifndef __QAIC_HEADER
61 #define __QAIC_HEADER(ff) ff
62 #endif //__QAIC_HEADER
63
64 #ifndef __QAIC_HEADER_EXPORT
65 #define __QAIC_HEADER_EXPORT
66 #endif // __QAIC_HEADER_EXPORT
67
68 #ifndef __QAIC_HEADER_ATTRIBUTE
69 #define __QAIC_HEADER_ATTRIBUTE
70 #endif // __QAIC_HEADER_ATTRIBUTE
71
72 #ifndef __QAIC_IMPL
73 #define __QAIC_IMPL(ff) ff
74 #endif //__QAIC_IMPL
75
76 #ifndef __QAIC_IMPL_EXPORT
77 #define __QAIC_IMPL_EXPORT
78 #endif // __QAIC_IMPL_EXPORT
79
80 #ifndef __QAIC_IMPL_ATTRIBUTE
81 #define __QAIC_IMPL_ATTRIBUTE
82 #endif // __QAIC_IMPL_ATTRIBUTE
83
84 #ifndef __QAIC_STUB
85 #define __QAIC_STUB(ff) ff
86 #endif //__QAIC_STUB
87
88 #ifndef __QAIC_STUB_EXPORT
89 #define __QAIC_STUB_EXPORT
90 #endif // __QAIC_STUB_EXPORT
91
92 #ifndef __QAIC_STUB_ATTRIBUTE
93 #define __QAIC_STUB_ATTRIBUTE
94 #endif // __QAIC_STUB_ATTRIBUTE
95
96 #ifndef __QAIC_SKEL
97 #define __QAIC_SKEL(ff) ff
98 #endif //__QAIC_SKEL__
99
100 #ifndef __QAIC_SKEL_EXPORT
101 #define __QAIC_SKEL_EXPORT
102 #endif // __QAIC_SKEL_EXPORT
103
104 #ifndef __QAIC_SKEL_ATTRIBUTE
105 #define __QAIC_SKEL_ATTRIBUTE
106 #endif // __QAIC_SKEL_ATTRIBUTE
107
108 #ifdef __QAIC_DEBUG__
109 #ifndef __QAIC_DBG_PRINTF__
110 #include <stdio.h>
111 #define __QAIC_DBG_PRINTF__( ee ) do { printf ee ; } while(0)
112 #endif
113 #else
114 #define __QAIC_DBG_PRINTF__( ee ) (void)0
115 #endif
116
117
118 #define _OFFSET(src, sof) ((void*)(((char*)(src)) + (sof)))
119
120 #define _COPY(dst, dof, src, sof, sz) \
121 do {\
122 struct __copy { \
123 char ar[sz]; \
124 };\
125 *(struct __copy*)_OFFSET(dst, dof) = *(struct __copy*)_OFFSET(src, sof);\
126 } while (0)
127
128 #define _COPYIF(dst, dof, src, sof, sz) \
129 do {\
130 if(_OFFSET(dst, dof) != _OFFSET(src, sof)) {\
131 _COPY(dst, dof, src, sof, sz); \
132 } \
133 } while (0)
134
135 _ATTRIBUTE_UNUSED
_qaic_memmove(void * dst,void * src,int size)136 static __inline void _qaic_memmove(void* dst, void* src, int size) {
137 int i;
138 for(i = 0; i < size; ++i) {
139 ((char*)dst)[i] = ((char*)src)[i];
140 }
141 }
142
143 #define _MEMMOVEIF(dst, src, sz) \
144 do {\
145 if(dst != src) {\
146 _qaic_memmove(dst, src, sz);\
147 } \
148 } while (0)
149
150
151 #define _ASSIGN(dst, src, sof) \
152 do {\
153 dst = OFFSET(src, sof); \
154 } while (0)
155
156 #define _STD_STRLEN_IF(str) (str == 0 ? 0 : strlen(str))
157
158 #include "AEEStdErr.h"
159
160 #define _TRY(ee, func) \
161 do { \
162 if (AEE_SUCCESS != ((ee) = func)) {\
163 __QAIC_DBG_PRINTF__((__FILE__ ":%d:error:%d:%s\n", __LINE__, (int)(ee),#func));\
164 goto ee##bail;\
165 } \
166 } while (0)
167
168 #define _CATCH(exception) exception##bail: if (exception != AEE_SUCCESS)
169
170 #define _ASSERT(nErr, ff) _TRY(nErr, 0 == (ff) ? AEE_EBADPARM : AEE_SUCCESS)
171
172 #ifdef __QAIC_DEBUG__
173 #define _ALLOCATE(nErr, pal, size, alignment, pv) _TRY(nErr, _allocator_alloc(pal, __FILE_LINE__, size, alignment, (void**)&pv))
174 #else
175 #define _ALLOCATE(nErr, pal, size, alignment, pv) _TRY(nErr, _allocator_alloc(pal, 0, size, alignment, (void**)&pv))
176 #endif
177
178
179 #endif // _QAIC_ENV_H
180
181 #include "remote.h"
182 #ifndef _ALLOCATOR_H
183 #define _ALLOCATOR_H
184
185 #include <stdlib.h>
186 #include <stdint.h>
187
188 typedef struct _heap _heap;
189 struct _heap {
190 _heap* pPrev;
191 const char* loc;
192 uint64_t buf;
193 };
194
195 typedef struct _allocator {
196 _heap* pheap;
197 uint8_t* stack;
198 uint8_t* stackEnd;
199 int nSize;
200 } _allocator;
201
202 _ATTRIBUTE_UNUSED
_heap_alloc(_heap ** ppa,const char * loc,int size,void ** ppbuf)203 static __inline int _heap_alloc(_heap** ppa, const char* loc, int size, void** ppbuf) {
204 _heap* pn = 0;
205 pn = malloc(size + sizeof(_heap) - sizeof(uint64_t));
206 if(pn != 0) {
207 pn->pPrev = *ppa;
208 pn->loc = loc;
209 *ppa = pn;
210 *ppbuf = (void*)&(pn->buf);
211 return 0;
212 } else {
213 return -1;
214 }
215 }
216 #define _ALIGN_SIZE(x, y) (((x) + (y-1)) & ~(y-1))
217
218 _ATTRIBUTE_UNUSED
_allocator_alloc(_allocator * me,const char * loc,int size,unsigned int al,void ** ppbuf)219 static __inline int _allocator_alloc(_allocator* me,
220 const char* loc,
221 int size,
222 unsigned int al,
223 void** ppbuf) {
224 if(size < 0) {
225 return -1;
226 } else if (size == 0) {
227 *ppbuf = 0;
228 return 0;
229 }
230 if((_ALIGN_SIZE((uintptr_t)me->stackEnd, al) + size) < (uintptr_t)me->stack + me->nSize) {
231 *ppbuf = (uint8_t*)_ALIGN_SIZE((uintptr_t)me->stackEnd, al);
232 me->stackEnd = (uint8_t*)_ALIGN_SIZE((uintptr_t)me->stackEnd, al) + size;
233 return 0;
234 } else {
235 return _heap_alloc(&me->pheap, loc, size, ppbuf);
236 }
237 }
238
239 _ATTRIBUTE_UNUSED
_allocator_deinit(_allocator * me)240 static __inline void _allocator_deinit(_allocator* me) {
241 _heap* pa = me->pheap;
242 while(pa != 0) {
243 _heap* pn = pa;
244 const char* loc = pn->loc;
245 (void)loc;
246 pa = pn->pPrev;
247 free(pn);
248 }
249 }
250
251 _ATTRIBUTE_UNUSED
_allocator_init(_allocator * me,uint8_t * stack,int stackSize)252 static __inline void _allocator_init(_allocator* me, uint8_t* stack, int stackSize) {
253 me->stack = stack;
254 me->stackEnd = stack + stackSize;
255 me->nSize = stackSize;
256 me->pheap = 0;
257 }
258
259
260 #endif // _ALLOCATOR_H
261
262 #ifndef SLIM_H
263 #define SLIM_H
264
265 #include <stdint.h>
266
267 //a C data structure for the idl types that can be used to implement
268 //static and dynamic language bindings fairly efficiently.
269 //
270 //the goal is to have a minimal ROM and RAM footprint and without
271 //doing too many allocations. A good way to package these things seemed
272 //like the module boundary, so all the idls within one module can share
273 //all the type references.
274
275
276 #define PARAMETER_IN 0x0
277 #define PARAMETER_OUT 0x1
278 #define PARAMETER_INOUT 0x2
279 #define PARAMETER_ROUT 0x3
280 #define PARAMETER_INROUT 0x4
281
282 //the types that we get from idl
283 #define TYPE_OBJECT 0x0
284 #define TYPE_INTERFACE 0x1
285 #define TYPE_PRIMITIVE 0x2
286 #define TYPE_ENUM 0x3
287 #define TYPE_STRING 0x4
288 #define TYPE_WSTRING 0x5
289 #define TYPE_STRUCTURE 0x6
290 #define TYPE_UNION 0x7
291 #define TYPE_ARRAY 0x8
292 #define TYPE_SEQUENCE 0x9
293
294 //these require the pack/unpack to recurse
295 //so it's a hint to those languages that can optimize in cases where
296 //recursion isn't necessary.
297 #define TYPE_COMPLEX_STRUCTURE (0x10 | TYPE_STRUCTURE)
298 #define TYPE_COMPLEX_UNION (0x10 | TYPE_UNION)
299 #define TYPE_COMPLEX_ARRAY (0x10 | TYPE_ARRAY)
300 #define TYPE_COMPLEX_SEQUENCE (0x10 | TYPE_SEQUENCE)
301
302
303 typedef struct Type Type;
304
305 #define INHERIT_TYPE\
306 int32_t nativeSize; /*in the simple case its the same as wire size and alignment*/\
307 union {\
308 struct {\
309 const uintptr_t p1;\
310 const uintptr_t p2;\
311 } _cast;\
312 struct {\
313 uint32_t iid;\
314 uint32_t bNotNil;\
315 } object;\
316 struct {\
317 const Type *arrayType;\
318 int32_t nItems;\
319 } array;\
320 struct {\
321 const Type *seqType;\
322 int32_t nMaxLen;\
323 } seqSimple; \
324 struct {\
325 uint32_t bFloating;\
326 uint32_t bSigned;\
327 } prim; \
328 const SequenceType* seqComplex;\
329 const UnionType *unionType;\
330 const StructType *structType;\
331 int32_t stringMaxLen;\
332 uint8_t bInterfaceNotNil;\
333 } param;\
334 uint8_t type;\
335 uint8_t nativeAlignment\
336
337 typedef struct UnionType UnionType;
338 typedef struct StructType StructType;
339 typedef struct SequenceType SequenceType;
340 struct Type {
341 INHERIT_TYPE;
342 };
343
344 struct SequenceType {
345 const Type * seqType;
346 uint32_t nMaxLen;
347 uint32_t inSize;
348 uint32_t routSizePrimIn;
349 uint32_t routSizePrimROut;
350 };
351
352 //byte offset from the start of the case values for
353 //this unions case value array. it MUST be aligned
354 //at the alignment requrements for the descriptor
355 //
356 //if negative it means that the unions cases are
357 //simple enumerators, so the value read from the descriptor
358 //can be used directly to find the correct case
359 typedef union CaseValuePtr CaseValuePtr;
360 union CaseValuePtr {
361 const uint8_t* value8s;
362 const uint16_t* value16s;
363 const uint32_t* value32s;
364 const uint64_t* value64s;
365 };
366
367 //these are only used in complex cases
368 //so I pulled them out of the type definition as references to make
369 //the type smaller
370 struct UnionType {
371 const Type *descriptor;
372 uint32_t nCases;
373 const CaseValuePtr caseValues;
374 const Type * const *cases;
375 int32_t inSize;
376 int32_t routSizePrimIn;
377 int32_t routSizePrimROut;
378 uint8_t inAlignment;
379 uint8_t routAlignmentPrimIn;
380 uint8_t routAlignmentPrimROut;
381 uint8_t inCaseAlignment;
382 uint8_t routCaseAlignmentPrimIn;
383 uint8_t routCaseAlignmentPrimROut;
384 uint8_t nativeCaseAlignment;
385 uint8_t bDefaultCase;
386 };
387
388 struct StructType {
389 uint32_t nMembers;
390 const Type * const *members;
391 int32_t inSize;
392 int32_t routSizePrimIn;
393 int32_t routSizePrimROut;
394 uint8_t inAlignment;
395 uint8_t routAlignmentPrimIn;
396 uint8_t routAlignmentPrimROut;
397 };
398
399 typedef struct Parameter Parameter;
400 struct Parameter {
401 INHERIT_TYPE;
402 uint8_t mode;
403 uint8_t bNotNil;
404 };
405
406 #define SLIM_IFPTR32(is32,is64) (sizeof(uintptr_t) == 4 ? (is32) : (is64))
407 #define SLIM_SCALARS_IS_DYNAMIC(u) (((u) & 0x00ffffff) == 0x00ffffff)
408
409 typedef struct Method Method;
410 struct Method {
411 uint32_t uScalars; //no method index
412 int32_t primInSize;
413 int32_t primROutSize;
414 int maxArgs;
415 int numParams;
416 const Parameter * const *params;
417 uint8_t primInAlignment;
418 uint8_t primROutAlignment;
419 };
420
421 typedef struct Interface Interface;
422
423 struct Interface {
424 int nMethods;
425 const Method * const *methodArray;
426 int nIIds;
427 const uint32_t *iids;
428 const uint16_t* methodStringArray;
429 const uint16_t* methodStrings;
430 const char* strings;
431 };
432
433
434 #endif //SLIM_H
435
436
437 #ifndef _ADSP_PERF_SLIM_H
438 #define _ADSP_PERF_SLIM_H
439 #include "remote.h"
440 #include <stdint.h>
441
442 #ifndef __QAIC_SLIM
443 #define __QAIC_SLIM(ff) ff
444 #endif
445 #ifndef __QAIC_SLIM_EXPORT
446 #define __QAIC_SLIM_EXPORT
447 #endif
448
449 static const Type types[2];
450 static const Type types[2] = {{0x8,{{(const uintptr_t)0,(const uintptr_t)1}}, 2,0x8},{0x1,{{(const uintptr_t)0,(const uintptr_t)0}}, 2,0x1}};
451 static const Parameter parameters[4] = {{0x4,{{(const uintptr_t)0,(const uintptr_t)1}}, 2,0x4,0,0},{SLIM_IFPTR32(0x8,0x10),{{(const uintptr_t)&(types[0]),(const uintptr_t)0x0}}, 9,SLIM_IFPTR32(0x4,0x8),3,0},{SLIM_IFPTR32(0x8,0x10),{{(const uintptr_t)&(types[1]),(const uintptr_t)0x0}}, 9,SLIM_IFPTR32(0x4,0x8),3,0},{0x4,{{(const uintptr_t)0,(const uintptr_t)1}}, 2,0x4,3,0}};
452 static const Parameter* const parameterArrays[5] = {(&(parameters[2])),(&(parameters[3])),(&(parameters[3])),(&(parameters[1])),(&(parameters[0]))};
453 static const Method methods[3] = {{REMOTE_SCALARS_MAKEX(0,0,0x1,0x0,0x0,0x0),0x4,0x0,1,1,(&(parameterArrays[4])),0x4,0x0},{REMOTE_SCALARS_MAKEX(0,0,0x1,0x1,0x0,0x0),0x4,0x0,3,1,(&(parameterArrays[3])),0x4,0x1},{REMOTE_SCALARS_MAKEX(0,0,0x1,0x2,0x0,0x0),0x4,0x8,5,3,(&(parameterArrays[0])),0x4,0x4}};
454 static const Method* const methodArrays[3] = {&(methods[0]),&(methods[1]),&(methods[2])};
455 static const char strings[48] = "get_usecs\0get_keys\0numKeys\0maxLen\0enable\0dst\0ix\0";
456 static const uint16_t methodStrings[8] = {10,14,27,19,0,41,34,45};
457 static const uint16_t methodStringsArrays[3] = {6,4,0};
458 __QAIC_SLIM_EXPORT const Interface __QAIC_SLIM(adsp_perf_slim) = {3,&(methodArrays[0]),0,0,&(methodStringsArrays [0]),methodStrings,strings};
459 #endif //_ADSP_PERF_SLIM_H
460 #ifdef __cplusplus
461 extern "C" {
462 #endif
463
464 #ifndef _const_adsp_perf_handle
465 #define _const_adsp_perf_handle ((remote_handle)-1)
466 #endif //_const_adsp_perf_handle
467
_adsp_perf_pls_dtor(void * data)468 static void _adsp_perf_pls_dtor(void* data) {
469 remote_handle* ph = (remote_handle*)data;
470 if(_const_adsp_perf_handle != *ph) {
471 (void)__QAIC_REMOTE(remote_handle_close)(*ph);
472 *ph = _const_adsp_perf_handle;
473 }
474 }
475
_adsp_perf_pls_ctor(void * ctx,void * data)476 static int _adsp_perf_pls_ctor(void* ctx, void* data) {
477 remote_handle* ph = (remote_handle*)data;
478 *ph = _const_adsp_perf_handle;
479 if(*ph == (remote_handle)-1) {
480 return __QAIC_REMOTE(remote_handle_open)((const char*)ctx, ph);
481 }
482 return 0;
483 }
484
485 #if (defined __qdsp6__) || (defined __hexagon__)
486 #pragma weak adsp_pls_add_lookup
487 extern int adsp_pls_add_lookup(uint32_t type, uint32_t key, int size, int (*ctor)(void* ctx, void* data), void* ctx, void (*dtor)(void* ctx), void** ppo);
488 #pragma weak HAP_pls_add_lookup
489 extern int HAP_pls_add_lookup(uint32_t type, uint32_t key, int size, int (*ctor)(void* ctx, void* data), void* ctx, void (*dtor)(void* ctx), void** ppo);
490
_adsp_perf_handle(void)491 __QAIC_STUB_EXPORT remote_handle _adsp_perf_handle(void) {
492 remote_handle* ph;
493 if(adsp_pls_add_lookup) {
494 if(0 == adsp_pls_add_lookup((uint32_t)_adsp_perf_handle, 0, sizeof(*ph), _adsp_perf_pls_ctor, "adsp_perf", _adsp_perf_pls_dtor, (void**)&ph)) {
495 return *ph;
496 }
497 return (remote_handle)-1;
498 } else if(HAP_pls_add_lookup) {
499 if(0 == HAP_pls_add_lookup((uint32_t)_adsp_perf_handle, 0, sizeof(*ph), _adsp_perf_pls_ctor, "adsp_perf", _adsp_perf_pls_dtor, (void**)&ph)) {
500 return *ph;
501 }
502 return (remote_handle)-1;
503 }
504 return(remote_handle)-1;
505 }
506
507 #else //__qdsp6__ || __hexagon__
508
509 uint32_t _adsp_perf_atomic_CompareAndExchange(uint32_t * volatile puDest, uint32_t uExchange, uint32_t uCompare);
510
511 #ifdef _WIN32
512 #include "Windows.h"
_adsp_perf_atomic_CompareAndExchange(uint32_t * volatile puDest,uint32_t uExchange,uint32_t uCompare)513 uint32_t _adsp_perf_atomic_CompareAndExchange(uint32_t * volatile puDest, uint32_t uExchange, uint32_t uCompare) {
514 return (uint32_t)InterlockedCompareExchange((volatile LONG*)puDest, (LONG)uExchange, (LONG)uCompare);
515 }
516 #elif __GNUC__
_adsp_perf_atomic_CompareAndExchange(uint32_t * volatile puDest,uint32_t uExchange,uint32_t uCompare)517 uint32_t _adsp_perf_atomic_CompareAndExchange(uint32_t * volatile puDest, uint32_t uExchange, uint32_t uCompare) {
518 return __sync_val_compare_and_swap(puDest, uCompare, uExchange);
519 }
520 #endif //_WIN32
521
522
_adsp_perf_handle(void)523 __QAIC_STUB_EXPORT remote_handle _adsp_perf_handle(void) {
524 static remote_handle handle = _const_adsp_perf_handle;
525 if((remote_handle)-1 != handle) {
526 return handle;
527 } else {
528 remote_handle tmp;
529 int nErr = _adsp_perf_pls_ctor("adsp_perf", (void*)&tmp);
530 if(nErr) {
531 return (remote_handle)-1;
532 }
533 if(((remote_handle)-1 != handle) || ((remote_handle)-1 != (remote_handle)_adsp_perf_atomic_CompareAndExchange((uint32_t*)&handle, (uint32_t)tmp, (uint32_t)-1))) {
534 _adsp_perf_pls_dtor(&tmp);
535 }
536 return handle;
537 }
538 }
539
540 #endif //__qdsp6__
541
__QAIC_STUB(adsp_perf_skel_invoke)542 __QAIC_STUB_EXPORT int __QAIC_STUB(adsp_perf_skel_invoke)(uint32_t _sc, remote_arg* _pra) __QAIC_STUB_ATTRIBUTE {
543 return __QAIC_REMOTE(remote_handle_invoke)(_adsp_perf_handle(), _sc, _pra);
544 }
545
546 #ifdef __cplusplus
547 }
548 #endif
549
550
551 #ifdef __cplusplus
552 extern "C" {
553 #endif
_stub_method(remote_handle _handle,uint32_t _mid,uint32_t _in0[1])554 static __inline int _stub_method(remote_handle _handle, uint32_t _mid, uint32_t _in0[1]) {
555 remote_arg _pra[1];
556 uint32_t _primIn[1];
557 int _nErr = 0;
558 _pra[0].buf.pv = (void*)_primIn;
559 _pra[0].buf.nLen = sizeof(_primIn);
560 _COPY(_primIn, 0, _in0, 0, 4);
561 _TRY(_nErr, __QAIC_REMOTE(remote_handle_invoke)(_handle, REMOTE_SCALARS_MAKEX(0, _mid, 1, 0, 0, 0), _pra));
562 _CATCH(_nErr) {}
563 return _nErr;
564 }
__QAIC_STUB(adsp_perf_enable)565 __QAIC_STUB_EXPORT int __QAIC_STUB(adsp_perf_enable)(int ix) __QAIC_STUB_ATTRIBUTE {
566 uint32_t _mid = 0;
567 return _stub_method(_adsp_perf_handle(), _mid, (uint32_t*)&ix);
568 }
_stub_method_1(remote_handle _handle,uint32_t _mid,char * _rout0[1],uint32_t _rout0Len[1])569 static __inline int _stub_method_1(remote_handle _handle, uint32_t _mid, char* _rout0[1], uint32_t _rout0Len[1]) {
570 int _numIn[1];
571 remote_arg _pra[2];
572 uint32_t _primIn[1];
573 remote_arg* _praIn;
574 remote_arg* _praROut;
575 int _nErr = 0;
576 _numIn[0] = 0;
577 _pra[0].buf.pv = (void*)_primIn;
578 _pra[0].buf.nLen = sizeof(_primIn);
579 _COPY(_primIn, 0, _rout0Len, 0, 4);
580 _praIn = (_pra + 1);
581 _praROut = (_praIn + _numIn[0] + 0);
582 _praROut[0].buf.pv = _rout0[0];
583 _praROut[0].buf.nLen = (8 * _rout0Len[0]);
584 _TRY(_nErr, __QAIC_REMOTE(remote_handle_invoke)(_handle, REMOTE_SCALARS_MAKEX(0, _mid, 1, 1, 0, 0), _pra));
585 _CATCH(_nErr) {}
586 return _nErr;
587 }
__QAIC_STUB(adsp_perf_get_usecs)588 __QAIC_STUB_EXPORT int __QAIC_STUB(adsp_perf_get_usecs)(int64* dst, int dstLen) __QAIC_STUB_ATTRIBUTE {
589 uint32_t _mid = 1;
590 return _stub_method_1(_adsp_perf_handle(), _mid, (char**)&dst, (uint32_t*)&dstLen);
591 }
_stub_method_2(remote_handle _handle,uint32_t _mid,char * _rout0[1],uint32_t _rout0Len[1],uint32_t _rout1[1],uint32_t _rout2[1])592 static __inline int _stub_method_2(remote_handle _handle, uint32_t _mid, char* _rout0[1], uint32_t _rout0Len[1], uint32_t _rout1[1], uint32_t _rout2[1]) {
593 int _numIn[1];
594 remote_arg _pra[3];
595 uint32_t _primIn[1];
596 uint32_t _primROut[2];
597 remote_arg* _praIn;
598 remote_arg* _praROut;
599 int _nErr = 0;
600 _numIn[0] = 0;
601 _pra[0].buf.pv = (void*)_primIn;
602 _pra[0].buf.nLen = sizeof(_primIn);
603 _pra[(_numIn[0] + 1)].buf.pv = (void*)_primROut;
604 _pra[(_numIn[0] + 1)].buf.nLen = sizeof(_primROut);
605 _COPY(_primIn, 0, _rout0Len, 0, 4);
606 _praIn = (_pra + 1);
607 _praROut = (_praIn + _numIn[0] + 1);
608 _praROut[0].buf.pv = _rout0[0];
609 _praROut[0].buf.nLen = (1 * _rout0Len[0]);
610 _TRY(_nErr, __QAIC_REMOTE(remote_handle_invoke)(_handle, REMOTE_SCALARS_MAKEX(0, _mid, 1, 2, 0, 0), _pra));
611 _COPY(_rout1, 0, _primROut, 0, 4);
612 _COPY(_rout2, 0, _primROut, 4, 4);
613 _CATCH(_nErr) {}
614 return _nErr;
615 }
__QAIC_STUB(adsp_perf_get_keys)616 __QAIC_STUB_EXPORT int __QAIC_STUB(adsp_perf_get_keys)(char* keys, int keysLen, int* maxLen, int* numKeys) __QAIC_STUB_ATTRIBUTE {
617 uint32_t _mid = 2;
618 return _stub_method_2(_adsp_perf_handle(), _mid, (char**)&keys, (uint32_t*)&keysLen, (uint32_t*)maxLen, (uint32_t*)numKeys);
619 }
620 #ifdef __cplusplus
621 }
622 #endif
623 #endif //_ADSP_PERF_STUB_H
624