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kernel.h 24 kB

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  1. /*
  2. * Copyright (c) Huawei Technologies Co., Ltd. 2020-2021. All rights reserved.
  3. * Description: kernel.h
  4. * Create: 2020-01-01
  5. */
  6. #ifndef CCE_RUNTIME_KERNEL_H
  7. #define CCE_RUNTIME_KERNEL_H
  8. #include "base.h"
  9. #include "stream.h"
  10. #if defined(__cplusplus)
  11. extern "C" {
  12. #endif
  13. /**
  14. * @ingroup rt_kernel
  15. * @brief shared memory data control
  16. */
  17. typedef struct tagRtSmData {
  18. uint64_t L2_mirror_addr; // preload or swap source address
  19. uint32_t L2_data_section_size; // every data size
  20. uint8_t L2_preload; // 1 - preload from mirrorAddr, 0 - no preload
  21. uint8_t modified; // 1 - data will be modified by kernel, 0 - no modified
  22. uint8_t priority; // data priority
  23. int8_t prev_L2_page_offset_base; // remap source section offset
  24. uint8_t L2_page_offset_base; // remap destination section offset
  25. uint8_t L2_load_to_ddr; // 1 - need load out, 0 - no need
  26. uint8_t reserved[2]; // reserved
  27. } rtSmData_t;
  28. /**
  29. * @ingroup rt_kernel
  30. * @brief shared memory description
  31. */
  32. typedef struct tagRtSmCtrl {
  33. rtSmData_t data[8]; // data description
  34. uint64_t size; // max page Num
  35. uint8_t remap[64]; /* just using for static remap mode, default:0xFF
  36. array index: virtual l2 page id, array value: physic l2 page id */
  37. uint8_t l2_in_main; // 0-DDR, 1-L2, default:0xFF
  38. uint8_t reserved[3];
  39. } rtSmDesc_t;
  40. typedef rtSmDesc_t rtL2Ctrl_t;
  41. /**
  42. * @ingroup rt_kernel
  43. * @brief device binary type
  44. */
  45. typedef struct tagRtDevBinary {
  46. uint32_t magic; // magic number
  47. uint32_t version; // version of binary
  48. const void *data; // binary data
  49. uint64_t length; // binary length
  50. } rtDevBinary_t;
  51. /**
  52. * @ingroup rt_kernel
  53. * @brief function mode type
  54. */
  55. #define ONLINE_PROF_MAX_PMU_NUM (8)
  56. typedef struct ProfilefDataInfo {
  57. const void *stubFunc;
  58. uint32_t blockDim;
  59. const void *args;
  60. uint32_t argsSize;
  61. rtSmDesc_t *smDesc;
  62. rtStream_t stream;
  63. uint64_t totalcycle;
  64. uint64_t ovcycle;
  65. uint64_t pmu_cnt[ONLINE_PROF_MAX_PMU_NUM];
  66. } rtProfDataInfo_t;
  67. /**
  68. * @ingroup rt_kernel
  69. * @brief function mode type
  70. */
  71. typedef enum {
  72. FUNC_MODE_NORMAL = 0,
  73. FUNC_MODE_PCTRACE_USERPROFILE_RECORDLOOP,
  74. FUNC_MODE_PCTRACE_USERPROFILE_SKIPLOOP,
  75. FUNC_MODE_PCTRACE_CYCLECNT_RECORDLOOP,
  76. FUNC_MODE_PCTRACE_CYCLECNT_SKIPLOOP,
  77. FUNC_MODE_BUTT
  78. } rtFuncModeType_t;
  79. /**
  80. * @ingroup rt_kernel
  81. * @brief kernel info
  82. */
  83. typedef struct rtKernelInfo {
  84. uint64_t task_offset; // kernel offset in module
  85. /* flowtable */
  86. void *arg; // launch kernel arg
  87. uint32_t arg_size;
  88. /* module */
  89. void *module_addr; // module::baseaddr_
  90. uint32_t module_size;
  91. } *rtKernelInfo_t;
  92. /**
  93. * @ingroup rt_kernel
  94. * @brief op name
  95. */
  96. typedef struct rtKernelLaunchNames {
  97. const char_t *soName; // defined for so name
  98. const char_t *kernelName; // defined for kernel type name
  99. const char_t *opName; // defined for operator name
  100. } rtKernelLaunchNames_t;
  101. /**
  102. * @ingroup rt_kernel
  103. * @brief args struct
  104. */
  105. typedef struct tagRtArgsWithTiling {
  106. void *args; // args host mem addr
  107. uint32_t argsSize; // input + output + tiling addr size + tiling data size
  108. uint32_t argsSizeWithoutTiling; // input + output + tiling addr size
  109. uint16_t tilingAddrOffset; // tiling addr offset
  110. uint16_t tilingDataOffset; // tiling data offset
  111. uint16_t hostInputAddrOffset; // index of host_memory input in inputs_addrs list
  112. uint16_t hostInputDataOffset; // host_mem input data offset
  113. uint8_t hasHostMemInput; // has host_memory input data in args or not: 0 means no host_memory input data,
  114. // others means has host_memory input data.
  115. uint8_t isNoNeedH2DCopy; // is no need host to device copy: 0 means need H2D copy,
  116. // others means doesn't need H2D copy.
  117. uint8_t reserved[6];
  118. } rtArgsWithTiling_t;
  119. /**
  120. * @ingroup rt_KernelConfigDump
  121. * @brief device dump type
  122. */
  123. typedef enum tagRtDumpKind {
  124. RT_DATA_DUMP_KIND_INVALID = -1,
  125. RT_DATA_DUMP_KIND_DUMP = 0,
  126. RT_DATA_DUMP_KIND_RESERVED = 1,
  127. } rtDumpKind_t;
  128. /**
  129. * @ingroup rt_kernel
  130. * @brief report callback
  131. */
  132. typedef rtError_t (*rtKernelReportCallback)(rtStream_t stm, rtKernelInfo_t kernelInfo);
  133. /**
  134. * @ingroup rt_kernel
  135. * @brief stream report callback
  136. */
  137. typedef void (*rtCallback_t)(void *fnData);
  138. /**
  139. * @ingroup rt_kernel
  140. * @brief magic number of plain binary for aicore
  141. */
  142. #define RT_DEV_BINARY_MAGIC_PLAIN 0xabceed50U
  143. /**
  144. * @ingroup rt_kernel
  145. * @brief magic number of plain binary for aicpu
  146. */
  147. #define RT_DEV_BINARY_MAGIC_PLAIN_AICPU 0xabceed51U
  148. /**
  149. * @ingroup rt_kernel
  150. * @brief magic number of plain binary for aivector
  151. */
  152. #define RT_DEV_BINARY_MAGIC_PLAIN_AIVEC 0xabceed52U
  153. /**
  154. * @ingroup rt_kernel
  155. * @brief magic number of elf binary for aicore
  156. */
  157. #define RT_DEV_BINARY_MAGIC_ELF 0x43554245U
  158. /**
  159. * @ingroup rt_kernel
  160. * @brief magic number of elf binary for aicpu
  161. */
  162. #define RT_DEV_BINARY_MAGIC_ELF_AICPU 0x41415243U
  163. /**
  164. * @ingroup rt_kernel
  165. * @brief magic number of elf binary for aivector
  166. */
  167. #define RT_DEV_BINARY_MAGIC_ELF_AIVEC 0x41415246U
  168. /**
  169. * @ingroup rt_kernel
  170. * @brief magic number of elf binary for aicube
  171. */
  172. #define RT_DEV_BINARY_MAGIC_ELF_AICUBE 0x41494343U
  173. /**
  174. * @ingroup rt_kernel_flags
  175. * @brief kernel op bit flags
  176. */
  177. #define RT_KERNEL_DEFAULT (0x00U)
  178. #define RT_KERNEL_CONVERT (0x01U)
  179. #define RT_KERNEL_DUMPFLAG (0x02U)
  180. #define RT_FUSION_KERNEL_DUMPFLAG (0x04U)
  181. #define RT_KERNEL_CUSTOM_AICPU (0x08U)
  182. // STARS topic scheduler sqe : topic_type
  183. #define RT_KERNEL_DEVICE_FIRST (0x10U)
  184. #define RT_KERNEL_HOST_ONLY (0x20U)
  185. #define RT_KERNEL_HOST_FIRST (0x40U)
  186. /**
  187. * @ingroup rt_kernel
  188. * @brief kernel mode
  189. **/
  190. #define RT_DEFAULT_KERNEL_MODE (0x00U)
  191. #define RT_NORMAL_KERNEL_MODE (0x01U)
  192. #define RT_ALL_KERNEL_MODE (0x02U)
  193. /**
  194. * @ingroup rt_kernel
  195. * @brief kernel L1 Fusion Dump bit flags
  196. */
  197. #define RT_DDR_ADDR (0x0U)
  198. /**
  199. * @ingroup rt_kernel
  200. * @brief register device binary
  201. * @param [in] bin device binary description
  202. * @param [out] hdl device binary handle
  203. * @return RT_ERROR_NONE for ok
  204. * @return RT_ERROR_INVALID_VALUE for error input
  205. */
  206. RTS_API rtError_t rtDevBinaryRegister(const rtDevBinary_t *bin, void **hdl);
  207. /**
  208. * @ingroup rt_kernel
  209. * @brief register device binary with all kernel
  210. * @param [in] bin device binary description
  211. * @param [out] hdl device binary handle
  212. * @return RT_ERROR_NONE for ok
  213. * @return RT_ERROR_INVALID_VALUE for error input
  214. */
  215. RTS_API rtError_t rtRegisterAllKernel(const rtDevBinary_t *bin, void **hdl);
  216. /**
  217. * @ingroup rt_kernel
  218. * @brief register fast memeory device binary
  219. * @param [in] hdl device binary handle
  220. * @return RT_ERROR_NONE for ok
  221. * @return RT_ERROR_INVALID_VALUE for error input
  222. */
  223. RTS_API rtError_t rtBinaryRegisterToFastMemory(void *hdl);
  224. /**
  225. * @ingroup rt_kernel
  226. * @brief unregister device binary
  227. * @param [in] hdl device binary handle
  228. * @return RT_ERROR_NONE for ok
  229. * @return RT_ERROR_INVALID_VALUE for error input
  230. */
  231. RTS_API rtError_t rtDevBinaryUnRegister(void *hdl);
  232. /**
  233. * @ingroup rt_kernel
  234. * @brief register device binary metadata
  235. * @param [in] hdl device binary description
  236. * @param [in] metadata device binary metadata
  237. * @return RT_ERROR_NONE for ok
  238. * @return RT_ERROR_INVALID_VALUE for error input
  239. */
  240. RTS_API rtError_t rtMetadataRegister(void *hdl, const char_t *metadata);
  241. /**
  242. * @ingroup rt_kernel
  243. * @brief register device binary dependency
  244. * @param [in] mHandle master device binary description
  245. * @param [in] sHandle slave device binary description
  246. * @return RT_ERROR_NONE for ok
  247. * @return RT_ERROR_INVALID_VALUE for error input
  248. */
  249. RTS_API rtError_t rtDependencyRegister(void *mHandle, void *sHandle);
  250. /**
  251. * @ingroup rt_kernel
  252. * @brief register device function
  253. * @param [in] binHandle device binary handle
  254. * @param [in] stubFunc stub function
  255. * @param [in] stubName stub function name
  256. * @param [in] kernelInfoExt kernel Info extension. device function description or tiling key,
  257. * depending static shape or dynmaic shape.
  258. * @return RT_ERROR_NONE for ok
  259. * @return RT_ERROR_INVALID_VALUE for error input
  260. */
  261. RTS_API rtError_t rtFunctionRegister(void *binHandle, const void *stubFunc, const char_t *stubName,
  262. const void *kernelInfoExt, uint32_t funcMode);
  263. /**
  264. * @ingroup rt_kernel
  265. * @brief find stub function by name
  266. * @param [in] stubName stub function name
  267. * @param [out] stubFunc stub function
  268. * @return RT_ERROR_NONE for ok
  269. * @return RT_ERROR_INVALID_VALUE for error input
  270. */
  271. RTS_API rtError_t rtGetFunctionByName(const char_t *stubName, void **stubFunc);
  272. /**
  273. * @ingroup rt_kernel
  274. * @brief find addr by stub func
  275. * @param [in] stubFunc stub function
  276. * @param [out] addr
  277. * @return RT_ERROR_NONE for ok
  278. * @return RT_ERROR_INVALID_VALUE for error input
  279. */
  280. RTS_API rtError_t rtGetAddrByFun(const void *stubFunc, void **addr);
  281. /**
  282. * @ingroup rt_kernel
  283. * @brief query registered or not by stubName
  284. * @param [in] stubName stub function name
  285. * @return RT_ERROR_NONE for ok
  286. * @return RT_ERROR_INVALID_VALUE for error input
  287. */
  288. RTS_API rtError_t rtQueryFunctionRegistered(const char_t *stubName);
  289. /**
  290. * @ingroup rt_kernel
  291. * @brief config data dump
  292. * @param [in] dumpSizePerBlock dump size
  293. * @param [in] blockDim block dimentions
  294. * @param [in] dumpBaseAddr dump base address
  295. * @return RT_ERROR_NONE for ok
  296. * @return RT_ERROR_INVALID_VALUE for error input
  297. */
  298. RTS_API rtError_t rtKernelConfigDump(uint32_t kind, uint32_t dumpSizePerBlock, uint32_t blockDim, void **dumpBaseAddr,
  299. rtStream_t stm);
  300. /**
  301. * @ingroup rt_kernel
  302. * @brief launch kernel to device
  303. * @param [in] stubFunc stub function
  304. * @param [in] blockDim block dimentions
  305. * @param [in] args argments address for kernel function
  306. * @param [in] argsSize argements size
  307. * @param [in] smDesc shared memory description
  308. * @param [in] stm associated stream
  309. * @return RT_ERROR_NONE for ok
  310. * @return RT_ERROR_INVALID_VALUE for error input
  311. */
  312. RTS_API rtError_t rtKernelLaunch(const void *stubFunc, uint32_t blockDim, void *args, uint32_t argsSize,
  313. rtSmDesc_t *smDesc, rtStream_t stm);
  314. /**
  315. * @ingroup rt_kernel
  316. * @brief launch kernel with handle to device
  317. * @param [in] hdl program
  318. * @param [in] kernelInfoExt kernel Info extension. device function description or tiling key,
  319. * depending static shape or dynmaic shape.
  320. * @param [in] blockDim block dimentions
  321. * @param [in] args argments address for kernel function
  322. * @param [in] argsSize argements size
  323. * @param [in] smDesc shared memory description
  324. * @param [in] stm associated stream
  325. * @param [in] kernelInfo kernel info
  326. * @return RT_ERROR_NONE for ok
  327. * @return RT_ERROR_INVALID_VALUE for error input
  328. */
  329. RTS_API rtError_t rtKernelLaunchWithHandle(void *hdl, const void *kernelInfoExt, uint32_t blockDim,
  330. void *args, uint32_t argsSize, rtSmDesc_t *smDesc, rtStream_t stream_,
  331. const void *kernelInfo);
  332. /**
  333. * @ingroup rt_kernel
  334. * @brief launch kernel to device
  335. * @param [in] stubFunc stub function
  336. * @param [in] blockDim block dimentions
  337. * @param [in] args argments address for kernel function
  338. * @param [in] argsSize argements size
  339. * @param [in] smDesc shared memory description
  340. * @param [in] stm associated stream
  341. * @param [in] flag dump flag
  342. * @return RT_ERROR_NONE for ok
  343. * @return RT_ERROR_INVALID_VALUE for error input
  344. */
  345. RTS_API rtError_t rtKernelLaunchWithFlag(const void *stubFunc, uint32_t blockDim, void *args, uint32_t argsSize,
  346. rtSmDesc_t *smDesc, rtStream_t stm, uint32_t flags);
  347. /**
  348. * @ingroup rt_kernel(abandoned)
  349. * @brief launch kernel to device
  350. * @param [in] args argments address for kernel function
  351. * @param [in] argsSize argements size
  352. * @param [in] flags launch flags
  353. * @param [in] stm associated stream
  354. * @return RT_ERROR_NONE for ok
  355. * @return RT_ERROR_INVALID_VALUE for error input
  356. */
  357. RTS_API rtError_t rtKernelLaunchEx(void *args, uint32_t argsSize, uint32_t flags, rtStream_t stm);
  358. /**
  359. * @ingroup rt_kernel(in use)
  360. * @brief launch kernel to device
  361. * @param [in] opName opkernel name
  362. * @param [in] args argments address for kernel function
  363. * @param [in] argsSize argements size
  364. * @param [in] flags launch flags
  365. * @param [in] stm associated stream
  366. * @return RT_ERROR_NONE for ok
  367. * @return RT_ERROR_INVALID_VALUE for error input
  368. */
  369. RTS_API rtError_t rtKernelLaunchFwk(const char_t *opName, void *args, uint32_t argsSize, uint32_t flags,
  370. rtStream_t rtStream);
  371. /**
  372. * @ingroup rt_kernel(abandoned)
  373. * @brief launch cpu kernel to device
  374. * @param [in] soName so name
  375. * @param [in] kernelName kernel name
  376. * @param [in] blockDim block dimentions
  377. * @param [in] args argments address for kernel function
  378. * @param [in] argsSize argments size
  379. * @param [in] smDesc shared memory description
  380. * @param [in] stm associated stream
  381. * @return RT_ERROR_NONE for ok
  382. * @return RT_ERROR_INVALID_VALUE for error input
  383. */
  384. RTS_API rtError_t rtCpuKernelLaunch(const void *soName, const void *kernelName, uint32_t blockDim, const void *args,
  385. uint32_t argsSize, rtSmDesc_t *smDesc, rtStream_t stm);
  386. /**
  387. * @ingroup rt_kernel(in use)
  388. * @brief launch cpu kernel to device
  389. * @param [in] launchNames names for kernel launch
  390. * @param [in] blockDim block dimentions
  391. * @param [in] args argments address for kernel function
  392. * @param [in] argsSize argments size
  393. * @param [in] smDesc shared memory description
  394. * @param [in] stm associated stream
  395. * @return RT_ERROR_NONE for ok
  396. * @return RT_ERROR_INVALID_VALUE for error input
  397. */
  398. RTS_API rtError_t rtAicpuKernelLaunch(const rtKernelLaunchNames_t *launchNames,
  399. uint32_t blockDim, const void *args, uint32_t argsSize, rtSmDesc_t *smDesc, rtStream_t stm);
  400. /**
  401. * @ingroup rt_kernel(abandoned)
  402. * @brief launch cpu kernel to device with dump identifier
  403. * @param [in] soName so name
  404. * @param [in] kernelName kernel name
  405. * @param [in] blockDim block dimentions
  406. * @param [in] args argments address for kernel function
  407. * @param [in] argsSize argments size
  408. * @param [in] smDesc shared memory description
  409. * @param [in] stm associated stream
  410. * @param [in] flag dump flag or others function flag
  411. * @return RT_ERROR_NONE for ok
  412. * @return RT_ERROR_INVALID_VALUE for error input
  413. */
  414. RTS_API rtError_t rtCpuKernelLaunchWithFlag(const void *soName, const void *kernelName, uint32_t blockDim,
  415. const void *args, uint32_t argsSize, rtSmDesc_t *smDesc, rtStream_t stm,
  416. uint32_t flags);
  417. /**
  418. * @ingroup rt_kernel(in use)
  419. * @brief launch cpu kernel to device with dump identifier
  420. * @param [in] launchNames names for kernel launch
  421. * @param [in] blockDim block dimentions
  422. * @param [in] args argments address for kernel function
  423. * @param [in] argsSize argments size
  424. * @param [in] smDesc shared memory description
  425. * @param [in] stm associated stream
  426. * @param [in] flag dump flag or others function flag
  427. * @return RT_ERROR_NONE for ok
  428. * @return RT_ERROR_INVALID_VALUE for error input
  429. */
  430. RTS_API rtError_t rtAicpuKernelLaunchWithFlag(const rtKernelLaunchNames_t *launchNames, uint32_t blockDim,
  431. const void *args, uint32_t argsSize, rtSmDesc_t *smDesc, rtStream_t stm, uint32_t flags);
  432. /**
  433. * @ingroup rt_kernel
  434. * @brief L1 fusion dump addr transfered to device
  435. * @param [in] mdl handle info
  436. * @param [in] addr ddr address of L1 Fusion Dump
  437. * @param [in] dumpSize memory size
  438. * @param [in] flag memory flag
  439. * @return RT_ERROR_NONE for ok
  440. * @return RT_ERROR_INVALID_VALUE for error input
  441. */
  442. RTS_API rtError_t rtDumpAddrSet(rtModel_t mdl, void *addr, uint32_t dumpSize, uint32_t flag);
  443. /**
  444. * @ingroup rt_kernel
  445. * @brief load dump info to aicpu
  446. * @param [in] dumpInfo dump info
  447. * @param [in] length length of dump info
  448. * @return RT_ERROR_NONE for ok
  449. * @return RT_ERROR_INVALID_VALUE for error input
  450. */
  451. RTS_API rtError_t rtDatadumpInfoLoad(const void *dumpInfo, uint32_t length);
  452. /**
  453. * @ingroup rt_kernel
  454. * @brief launch npu get float status task
  455. * @param [in] outputAddr pointer to op output addr
  456. * @param [in] outputSize op output size
  457. * @param [in] checkMode check mode
  458. * @param [in] stm associated stream
  459. * @return RT_ERROR_NONE for ok
  460. * @return RT_ERROR_INVALID_VALUE for error input
  461. */
  462. RTS_API rtError_t rtNpuGetFloatStatus(void *outputAddr, uint64_t outputSize, uint32_t checkMode, rtStream_t stm);
  463. /**
  464. * @ingroup rt_kernel
  465. * @brief launch npu clear float status task
  466. * @param [in] checkMode check mode
  467. * @param [in] stm associated stream
  468. * @return RT_ERROR_NONE for ok
  469. * @return RT_ERROR_INVALID_VALUE for error input
  470. */
  471. RTS_API rtError_t rtNpuClearFloatStatus(uint32_t checkMode, rtStream_t stm);
  472. #ifndef __CLANG_CCE_RUNTIME_H__
  473. #define __CLANG_CCE_RUNTIME_H__
  474. /**
  475. * @ingroup rt_kernel
  476. * @brief configure call argment for next rtLaunch in current thread
  477. * @param [in] numBlocks block dimentions
  478. * @param [in] smDesc shared memory description
  479. * @param [in] stm associated stream
  480. * @return RT_ERROR_NONE for ok
  481. * @return RT_ERROR_INVALID_VALUE for error input
  482. */
  483. #ifdef __cplusplus
  484. RTS_API rtError_t rtConfigureCall(uint32_t numBlocks, rtSmDesc_t *smDesc = nullptr, rtStream_t stm = nullptr);
  485. #else
  486. RTS_API rtError_t rtConfigureCall(uint32_t numBlocks, rtSmDesc_t *smDesc, rtStream_t stm);
  487. #endif
  488. #endif // __CLANG_CCE_RUNTIME_H__
  489. /**
  490. * @ingroup rt_kernel
  491. * @brief setup argment for next rtLaunch in current thread
  492. * @param [in] args argment address for kernel function
  493. * @param [in] size argment size
  494. * @param [in] offset argment table offset
  495. * @return RT_ERROR_NONE for ok
  496. * @return RT_ERROR_INVALID_VALUE for error input
  497. */
  498. RTS_API rtError_t rtSetupArgument(const void *args, uint32_t size, uint32_t offset);
  499. /**
  500. * @ingroup rt_kernel
  501. * @brief launch kernel to device with previous setting kernel argment
  502. * and call argment
  503. * @param [in] stubFunc stub function
  504. * @return RT_ERROR_NONE for ok
  505. * @return RT_ERROR_INVALID_VALUE for error input
  506. */
  507. RTS_API rtError_t rtLaunch(const void *stubFunc);
  508. /**
  509. * @ingroup rt_kernel
  510. * @brief implicitly transfered data to device.
  511. * lifecycle end after next kernel task finish
  512. * @param [in] ptr host memory
  513. * @param [in] size host memory size
  514. * @param [in] flag reserved. set to 0
  515. * @param [out] args returned arg. used for next kernel's arg.
  516. * @return RT_ERROR_NONE for ok
  517. * @return RT_ERROR_INVALID_VALUE for error input
  518. */
  519. RTS_API rtError_t rtKernelConfigTransArg(const void *ptr, uint64_t size, uint32_t flag, void **args);
  520. /**
  521. * @ingroup rt_kernel
  522. * @brief start fusion kernels.
  523. * @param [in] stm stream for fusion kernels
  524. * @return RT_ERROR_NONE for ok
  525. * @return RT_ERROR_INVALID_VALUE for error input
  526. */
  527. RTS_API rtError_t rtKernelFusionStart(rtStream_t stm);
  528. /**
  529. * @ingroup rt_kernel
  530. * @brief end fusion kernels.
  531. * @param [in] stm stream for fusion kernels
  532. * @return RT_ERROR_NONE for ok
  533. * @return RT_ERROR_INVALID_VALUE for error input
  534. */
  535. RTS_API rtError_t rtKernelFusionEnd(rtStream_t stm);
  536. /**
  537. * @ingroup rt_kernel
  538. * @brief set kernelinfo callback
  539. * @param [in] callback
  540. * @return RT_ERROR_NONE for ok
  541. * @return RT_ERROR_INVALID_VALUE for error input
  542. */
  543. RTS_API rtError_t rtSetKernelReportCallback(rtKernelReportCallback callBack);
  544. /**
  545. * @ingroup rt_kernel
  546. * @brief subscribe stream callback report.
  547. * @param [in] threadId thread id for stream
  548. * @param [in] stm stream for subscribe
  549. * @return RT_ERROR_NONE for ok
  550. * @return RT_ERROR_INVALID_VALUE for error input
  551. */
  552. RTS_API rtError_t rtSubscribeReport(uint64_t threadId, rtStream_t stm);
  553. /**
  554. * @ingroup rt_kernel
  555. * @brief add callback launch task in stream.
  556. * @param [in] callBackFunc app callback function
  557. * @param [in] fnData user data
  558. * @param [in] stm subscribed stream
  559. * @return RT_ERROR_NONE for ok
  560. * @return RT_ERROR_INVALID_VALUE for error input
  561. */
  562. RTS_API rtError_t rtCallbackLaunch(rtCallback_t callBackFunc, void *fnData, rtStream_t stm, bool isBlock);
  563. /**
  564. * @ingroup rt_kernel
  565. * @brief process callback report.
  566. * @param [in] timeout if timeout=-1, while(1); else timeout
  567. * @return RT_ERROR_NONE for ok
  568. * @return RT_ERROR_INVALID_VALUE for error input
  569. */
  570. RTS_API rtError_t rtProcessReport(int32_t timeout);
  571. /**
  572. * @ingroup rt_kernel
  573. * @brief unsubscribe callback report.
  574. * @param [in] threadId thread id for stream
  575. * @param [in] stm stream for subscribe
  576. * @return RT_ERROR_NONE for ok
  577. * @return RT_ERROR_INVALID_VALUE for error input
  578. */
  579. RTS_API rtError_t rtUnSubscribeReport(uint64_t threadId, rtStream_t stm);
  580. /**
  581. * @ingroup profiling_base
  582. * @brief start online prof.
  583. * @return RT_ERROR_NONE for ok
  584. * @return RT_ERROR_INVALID_VALUE for error input
  585. */
  586. RTS_API rtError_t rtStartOnlineProf(rtStream_t stm, uint32_t sampleNum);
  587. /**
  588. * @ingroup profiling_base
  589. * @brief stop online prof.
  590. * @return RT_ERROR_NONE for ok
  591. * @return RT_ERROR_INVALID_VALUE for error input
  592. */
  593. RTS_API rtError_t rtStopOnlineProf(rtStream_t stm);
  594. /**
  595. * @ingroup profiling_base
  596. * @brief get online prof.
  597. * @return RT_ERROR_NONE for ok
  598. * @return RT_ERROR_INVALID_VALUE for error input
  599. */
  600. RTS_API rtError_t rtGetOnlineProfData(rtStream_t stm, rtProfDataInfo_t *pProfData, uint32_t profDataNum);
  601. /**
  602. * @ingroup profiling_base
  603. * @brief start mdc profiler.
  604. * @return RT_ERROR_NONE for ok
  605. * @return RT_ERROR_INVALID_VALUE for error input
  606. */
  607. RTS_API rtError_t rtStartMDCProfiler(void **addr, uint32_t length);
  608. /**
  609. * @ingroup profiling_base
  610. * @brief stop mdc profiler.
  611. * @return RT_ERROR_NONE for ok
  612. * @return RT_ERROR_INVALID_VALUE for error input
  613. */
  614. RTS_API rtError_t rtStopMDCProfiler(void *addr);
  615. /**
  616. * @ingroup rt_kernel
  617. * @brief launch kernel with tiling data to device
  618. * @param [in] stubFunc stub function
  619. * @param [in] blockDim block dimentions
  620. * @param [in] argsInfo argments info address for kernel function
  621. * @param [in] smDesc shared memory description
  622. * @param [in] stm associated stream
  623. * @return RT_ERROR_NONE for ok
  624. * @return RT_ERROR_INVALID_VALUE for error input
  625. */
  626. RTS_API rtError_t rtKernelLaunchWithTiling(const void *stubFunc, uint32_t blockDim,
  627. rtArgsWithTiling_t *argsInfo, rtSmDesc_t *smDesc, rtStream_t stm);
  628. /**
  629. * @ingroup rt_kernel
  630. * @brief launch kernel with handle and tiling data to device
  631. * @param [in] hdl program
  632. * @param [in] kernelInfoExt kernel Info extension. device function description or tiling key,
  633. * depending static shape or dynmaic shape.
  634. * @param [in] blockDim block dimentions
  635. * @param [in] argsInfo argments info address for kernel function
  636. * @param [in] smDesc shared memory description
  637. * @param [in] stm associated stream
  638. * @param [in] kernelInfo kernel info
  639. * @return RT_ERROR_NONE for ok
  640. * @return RT_ERROR_INVALID_VALUE for error input
  641. */
  642. RTS_API rtError_t rtKernelLaunchWithHandleAndTiling(void *hdl, const void *kernelInfoExt, uint32_t blockDim,
  643. rtArgsWithTiling_t *argsInfo, rtSmDesc_t *smDesc, rtStream_t stm, const void* kernelInfo);
  644. #if defined(__cplusplus)
  645. }
  646. #endif
  647. #endif // CCE_RUNTIME_KERNEL_H

图引擎模块(GE)是MindSpore的一个子模块,其代码由C++实现,位于前端模块ME和底层硬件之间,起到承接作用。图引擎模块以ME下发的图作为输入,然后进行一系列的深度图优化操作,最后输出一张可以在底层硬件上高效运行的图。GE针对昇腾AI处理器的硬件结构特点,做了特定的优化工作,以此来充分发挥出昇腾AI处理器的强大算力。在进行模型训练/推理时,GE会被自动调用而用户并不感知。GE主要由GE API和GE Core两部分组成,详细的架构图如下所示