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config.h 6.4 kB

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  1. /*
  2. * Copyright (c) Huawei Technologies Co., Ltd. 2020-2021. All rights reserved.
  3. * Description: config.h
  4. * Create: 2020-01-01
  5. */
  6. #ifndef CCE_RUNTIME_CONFIG_H
  7. #define CCE_RUNTIME_CONFIG_H
  8. #include "base.h"
  9. #if defined(__cplusplus)
  10. extern "C" {
  11. #endif
  12. #define PLAT_COMBINE(arch, chip, ver) (((arch) << 16U) | ((chip) << 8U) | (ver))
  13. #define PLAT_GET_ARCH(type) (((type) >> 16U) & 0xffffU)
  14. #define PLAT_GET_CHIP(type) (((type) >> 8U) & 0xffU)
  15. #define PLAT_GET_VER(type) ((type) & 0xffU)
  16. typedef enum tagRtArchType {
  17. ARCH_BEGIN = 0,
  18. ARCH_V100 = ARCH_BEGIN,
  19. ARCH_V200 = 1,
  20. ARCH_END = 2,
  21. } rtArchType_t;
  22. typedef enum tagRtChipType {
  23. CHIP_BEGIN = 0,
  24. CHIP_MINI = CHIP_BEGIN,
  25. CHIP_CLOUD = 1,
  26. CHIP_MDC = 2,
  27. CHIP_LHISI = 3,
  28. CHIP_DC = 4,
  29. CHIP_CLOUD_V2 = 5,
  30. CHIP_NO_DEVICE = 6,
  31. CHIP_END = 7,
  32. } rtChipType_t;
  33. typedef enum tagRtAicpuScheType {
  34. SCHEDULE_SOFTWARE = 0, /* Software Schedule */
  35. SCHEDULE_SOFTWARE_OPT,
  36. SCHEDULE_HARDWARE, /* HWTS Schedule */
  37. } rtAicpuScheType;
  38. typedef enum tagRtDeviceCapabilityType {
  39. RT_SCHEDULE_SOFTWARE = 0, // Software Schedule
  40. RT_SCHEDULE_SOFTWARE_OPT,
  41. RT_SCHEDULE_HARDWARE, // HWTS Schedule
  42. RT_AICPU_BLOCKING_OP_NOT_SUPPORT,
  43. RT_AICPU_BLOCKING_OP_SUPPORT, // 1910/1980/1951 ts support AICPU blocking operation
  44. RT_MODE_NO_FFTS, // no ffts
  45. RT_MODE_FFTS, // 1981 get ffts work mode, ffts
  46. RT_MODE_FFTS_PLUS, // 1981 get ffts work mode, ffts plus
  47. } rtDeviceCapabilityType;
  48. typedef enum tagRtVersion {
  49. VER_BEGIN = 0,
  50. VER_NA = VER_BEGIN,
  51. VER_ES = 1,
  52. VER_CS = 2,
  53. VER_SD3403 = 3,
  54. VER_END = 4,
  55. } rtVersion_t;
  56. /* match rtChipType_t */
  57. typedef enum tagRtPlatformType {
  58. PLATFORM_BEGIN = 0,
  59. PLATFORM_MINI_V1 = PLATFORM_BEGIN,
  60. PLATFORM_CLOUD_V1 = 1,
  61. PLATFORM_MINI_V2 = 2,
  62. PLATFORM_LHISI_ES = 3,
  63. PLATFORM_LHISI_CS = 4,
  64. PLATFORM_DC = 5,
  65. PLATFORM_CLOUD_V2 = 6,
  66. PLATFORM_LHISI_SD3403 = 7,
  67. PLATFORM_END = 8,
  68. } rtPlatformType_t;
  69. typedef enum tagRtCubeFracMKNFp16 {
  70. RT_CUBE_MKN_FP16_2_16_16 = 0,
  71. RT_CUBE_MKN_FP16_4_16_16,
  72. RT_CUBE_MKN_FP16_16_16_16,
  73. RT_CUBE_MKN_FP16_Default,
  74. } rtCubeFracMKNFp16_t;
  75. typedef enum tagRtCubeFracMKNInt8 {
  76. RT_CUBE_MKN_INT8_2_32_16 = 0,
  77. RT_CUBE_MKN_INT8_4_32_4,
  78. RT_CUBE_MKN_INT8_4_32_16,
  79. RT_CUBE_MKN_INT8_16_32_16,
  80. RT_CUBE_MKN_INT8_Default,
  81. } rtCubeFracMKNInt8_t;
  82. typedef enum tagRtVecFracVmulMKNFp16 {
  83. RT_VEC_VMUL_MKN_FP16_1_16_16 = 0,
  84. RT_VEC_VMUL_MKN_FP16_Default,
  85. } rtVecFracVmulMKNFp16_t;
  86. typedef enum tagRtVecFracVmulMKNInt8 {
  87. RT_VEC_VMUL_MKN_INT8_1_32_16 = 0,
  88. RT_VEC_VMUL_MKN_INT8_Default,
  89. } rtVecFracVmulMKNInt8_t;
  90. typedef struct tagRtAiCoreSpec {
  91. uint32_t cubeFreq;
  92. uint32_t cubeMSize;
  93. uint32_t cubeKSize;
  94. uint32_t cubeNSize;
  95. rtCubeFracMKNFp16_t cubeFracMKNFp16;
  96. rtCubeFracMKNInt8_t cubeFracMKNInt8;
  97. rtVecFracVmulMKNFp16_t vecFracVmulMKNFp16;
  98. rtVecFracVmulMKNInt8_t vecFracVmulMKNInt8;
  99. } rtAiCoreSpec_t;
  100. typedef struct tagRtAiCoreRatesPara {
  101. uint32_t ddrRate;
  102. uint32_t l2Rate;
  103. uint32_t l2ReadRate;
  104. uint32_t l2WriteRate;
  105. uint32_t l1ToL0ARate;
  106. uint32_t l1ToL0BRate;
  107. uint32_t l0CToUBRate;
  108. uint32_t ubToL2;
  109. uint32_t ubToDDR;
  110. uint32_t ubToL1;
  111. } rtAiCoreMemoryRates_t;
  112. typedef struct tagRtMemoryConfig {
  113. uint32_t flowtableSize;
  114. uint32_t compilerSize;
  115. } rtMemoryConfig_t;
  116. typedef struct tagRtPlatformConfig {
  117. uint32_t platformConfig;
  118. } rtPlatformConfig_t;
  119. typedef enum tagRTTaskTimeoutType {
  120. RT_TIMEOUT_TYPE_OP_WAIT = 0,
  121. RT_TIMEOUT_TYPE_OP_EXECUTE,
  122. } rtTaskTimeoutType_t;
  123. /**
  124. * @ingroup
  125. * @brief get AI core count
  126. * @param [in] aiCoreCnt
  127. * @return aiCoreCnt
  128. */
  129. RTS_API rtError_t rtGetAiCoreCount(uint32_t *aiCoreCnt);
  130. /**
  131. * @ingroup
  132. * @brief get AI cpu count
  133. * @param [in] aiCpuCnt
  134. * @return aiCpuCnt
  135. */
  136. RTS_API rtError_t rtGetAiCpuCount(uint32_t *aiCpuCnt);
  137. /**
  138. * @ingroup
  139. * @brief get AI core frequency
  140. * @param [in] aiCoreSpec
  141. * @return aiCoreSpec
  142. */
  143. RTS_API rtError_t rtGetAiCoreSpec(rtAiCoreSpec_t *aiCoreSpec);
  144. /**
  145. * @ingroup
  146. * @brief AI get core band Info
  147. * @param [in] aiCoreMemoryRates
  148. * @return aiCoreMemoryRates
  149. */
  150. RTS_API rtError_t rtGetAiCoreMemoryRates(rtAiCoreMemoryRates_t *aiCoreMemoryRates);
  151. /**
  152. * @ingroup
  153. * @brief AI get core buffer Info,FlowTable Size,Compiler Size
  154. * @param [in] memoryConfig
  155. * @return memoryConfig
  156. */
  157. RTS_API rtError_t rtGetMemoryConfig(rtMemoryConfig_t *memoryConfig);
  158. /**
  159. * @ingroup
  160. * @brief get l2 buffer Info,virtual baseaddr,Size
  161. * @param [in] stm
  162. * @return RT_ERROR_NONE for ok, errno for failed
  163. */
  164. RTS_API rtError_t rtMemGetL2Info(rtStream_t stm, void **ptr, uint32_t *size);
  165. /**
  166. * @ingroup
  167. * @brief get runtime version. The version is returned as (1000 major + 10 minor). For example, RUNTIME 9.2 would be
  168. * represented by 9020.
  169. * @param [out] runtimeVersion
  170. * @return RT_ERROR_NONE for ok
  171. * @return RT_ERROR_INVALID_VALUE for error input
  172. */
  173. RTS_API rtError_t rtGetRuntimeVersion(uint32_t *runtimeVersion);
  174. /**
  175. * @ingroup
  176. * @brief get device feature ability by device id, such as task schedule ability.
  177. * @param [in] deviceId
  178. * @param [in] moduleType
  179. * @param [in] featureType
  180. * @param [out] val
  181. * @return RT_ERROR_NONE for ok
  182. * @return RT_ERROR_INVALID_VALUE for error input
  183. */
  184. RTS_API rtError_t rtGetDeviceCapability(int32_t deviceId, int32_t moduleType, int32_t featureType, int32_t *val);
  185. /**
  186. * @ingroup
  187. * @brief set event wait task timeout time.
  188. * @param [in] timeout
  189. * @return RT_ERROR_NONE for ok
  190. * @return RT_ERROR_INVALID_VALUE for error input
  191. */
  192. RTS_API rtError_t rtSetOpWaitTimeOut(uint32_t timeout);
  193. /**
  194. * @ingroup
  195. * @brief set op execute task timeout time.
  196. * @param [in] timeout
  197. * @return RT_ERROR_NONE for ok
  198. * @return RT_ERROR_INVALID_VALUE for error input
  199. */
  200. RTS_API rtError_t rtSetOpExecuteTimeOut(uint32_t timeout);
  201. /**
  202. * @ingroup
  203. * @brief get is Heterogenous.
  204. * @param [out] heterogenous=1 Heterogenous Mode: read isHeterogenous=1 in ini file.
  205. * @param [out] heterogenous=0 NOT Heterogenous Mode:
  206. * 1:not found ini file, 2:error when reading ini, 3:Heterogenous value is not 1
  207. * @return RT_ERROR_NONE for ok
  208. */
  209. RTS_API rtError_t rtGetIsHeterogenous(int32_t *heterogenous);
  210. #if defined(__cplusplus)
  211. }
  212. #endif
  213. #endif // CCE_RUNTIME_CONFIG_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