gfx_v8_0.c 247 KB

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  1. /*
  2. * Copyright 2014 Advanced Micro Devices, Inc.
  3. *
  4. * Permission is hereby granted, free of charge, to any person obtaining a
  5. * copy of this software and associated documentation files (the "Software"),
  6. * to deal in the Software without restriction, including without limitation
  7. * the rights to use, copy, modify, merge, publish, distribute, sublicense,
  8. * and/or sell copies of the Software, and to permit persons to whom the
  9. * Software is furnished to do so, subject to the following conditions:
  10. *
  11. * The above copyright notice and this permission notice shall be included in
  12. * all copies or substantial portions of the Software.
  13. *
  14. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  15. * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  16. * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
  17. * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
  18. * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
  19. * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
  20. * OTHER DEALINGS IN THE SOFTWARE.
  21. *
  22. */
  23. #include <linux/firmware.h>
  24. #include "drmP.h"
  25. #include "amdgpu.h"
  26. #include "amdgpu_gfx.h"
  27. #include "vi.h"
  28. #include "vi_structs.h"
  29. #include "vid.h"
  30. #include "amdgpu_ucode.h"
  31. #include "amdgpu_atombios.h"
  32. #include "atombios_i2c.h"
  33. #include "clearstate_vi.h"
  34. #include "gmc/gmc_8_2_d.h"
  35. #include "gmc/gmc_8_2_sh_mask.h"
  36. #include "oss/oss_3_0_d.h"
  37. #include "oss/oss_3_0_sh_mask.h"
  38. #include "bif/bif_5_0_d.h"
  39. #include "bif/bif_5_0_sh_mask.h"
  40. #include "gca/gfx_8_0_d.h"
  41. #include "gca/gfx_8_0_enum.h"
  42. #include "gca/gfx_8_0_sh_mask.h"
  43. #include "gca/gfx_8_0_enum.h"
  44. #include "dce/dce_10_0_d.h"
  45. #include "dce/dce_10_0_sh_mask.h"
  46. #include "smu/smu_7_1_3_d.h"
  47. #define GFX8_NUM_GFX_RINGS 1
  48. #define GFX8_NUM_COMPUTE_RINGS 8
  49. #define TOPAZ_GB_ADDR_CONFIG_GOLDEN 0x22010001
  50. #define CARRIZO_GB_ADDR_CONFIG_GOLDEN 0x22010001
  51. #define POLARIS11_GB_ADDR_CONFIG_GOLDEN 0x22011002
  52. #define TONGA_GB_ADDR_CONFIG_GOLDEN 0x22011003
  53. #define ARRAY_MODE(x) ((x) << GB_TILE_MODE0__ARRAY_MODE__SHIFT)
  54. #define PIPE_CONFIG(x) ((x) << GB_TILE_MODE0__PIPE_CONFIG__SHIFT)
  55. #define TILE_SPLIT(x) ((x) << GB_TILE_MODE0__TILE_SPLIT__SHIFT)
  56. #define MICRO_TILE_MODE_NEW(x) ((x) << GB_TILE_MODE0__MICRO_TILE_MODE_NEW__SHIFT)
  57. #define SAMPLE_SPLIT(x) ((x) << GB_TILE_MODE0__SAMPLE_SPLIT__SHIFT)
  58. #define BANK_WIDTH(x) ((x) << GB_MACROTILE_MODE0__BANK_WIDTH__SHIFT)
  59. #define BANK_HEIGHT(x) ((x) << GB_MACROTILE_MODE0__BANK_HEIGHT__SHIFT)
  60. #define MACRO_TILE_ASPECT(x) ((x) << GB_MACROTILE_MODE0__MACRO_TILE_ASPECT__SHIFT)
  61. #define NUM_BANKS(x) ((x) << GB_MACROTILE_MODE0__NUM_BANKS__SHIFT)
  62. #define RLC_CGTT_MGCG_OVERRIDE__CPF_MASK 0x00000001L
  63. #define RLC_CGTT_MGCG_OVERRIDE__RLC_MASK 0x00000002L
  64. #define RLC_CGTT_MGCG_OVERRIDE__MGCG_MASK 0x00000004L
  65. #define RLC_CGTT_MGCG_OVERRIDE__CGCG_MASK 0x00000008L
  66. #define RLC_CGTT_MGCG_OVERRIDE__CGLS_MASK 0x00000010L
  67. #define RLC_CGTT_MGCG_OVERRIDE__GRBM_MASK 0x00000020L
  68. /* BPM SERDES CMD */
  69. #define SET_BPM_SERDES_CMD 1
  70. #define CLE_BPM_SERDES_CMD 0
  71. /* BPM Register Address*/
  72. enum {
  73. BPM_REG_CGLS_EN = 0, /* Enable/Disable CGLS */
  74. BPM_REG_CGLS_ON, /* ON/OFF CGLS: shall be controlled by RLC FW */
  75. BPM_REG_CGCG_OVERRIDE, /* Set/Clear CGCG Override */
  76. BPM_REG_MGCG_OVERRIDE, /* Set/Clear MGCG Override */
  77. BPM_REG_FGCG_OVERRIDE, /* Set/Clear FGCG Override */
  78. BPM_REG_FGCG_MAX
  79. };
  80. #define RLC_FormatDirectRegListLength 14
  81. MODULE_FIRMWARE("amdgpu/carrizo_ce.bin");
  82. MODULE_FIRMWARE("amdgpu/carrizo_pfp.bin");
  83. MODULE_FIRMWARE("amdgpu/carrizo_me.bin");
  84. MODULE_FIRMWARE("amdgpu/carrizo_mec.bin");
  85. MODULE_FIRMWARE("amdgpu/carrizo_mec2.bin");
  86. MODULE_FIRMWARE("amdgpu/carrizo_rlc.bin");
  87. MODULE_FIRMWARE("amdgpu/stoney_ce.bin");
  88. MODULE_FIRMWARE("amdgpu/stoney_pfp.bin");
  89. MODULE_FIRMWARE("amdgpu/stoney_me.bin");
  90. MODULE_FIRMWARE("amdgpu/stoney_mec.bin");
  91. MODULE_FIRMWARE("amdgpu/stoney_rlc.bin");
  92. MODULE_FIRMWARE("amdgpu/tonga_ce.bin");
  93. MODULE_FIRMWARE("amdgpu/tonga_pfp.bin");
  94. MODULE_FIRMWARE("amdgpu/tonga_me.bin");
  95. MODULE_FIRMWARE("amdgpu/tonga_mec.bin");
  96. MODULE_FIRMWARE("amdgpu/tonga_mec2.bin");
  97. MODULE_FIRMWARE("amdgpu/tonga_rlc.bin");
  98. MODULE_FIRMWARE("amdgpu/topaz_ce.bin");
  99. MODULE_FIRMWARE("amdgpu/topaz_pfp.bin");
  100. MODULE_FIRMWARE("amdgpu/topaz_me.bin");
  101. MODULE_FIRMWARE("amdgpu/topaz_mec.bin");
  102. MODULE_FIRMWARE("amdgpu/topaz_rlc.bin");
  103. MODULE_FIRMWARE("amdgpu/fiji_ce.bin");
  104. MODULE_FIRMWARE("amdgpu/fiji_pfp.bin");
  105. MODULE_FIRMWARE("amdgpu/fiji_me.bin");
  106. MODULE_FIRMWARE("amdgpu/fiji_mec.bin");
  107. MODULE_FIRMWARE("amdgpu/fiji_mec2.bin");
  108. MODULE_FIRMWARE("amdgpu/fiji_rlc.bin");
  109. MODULE_FIRMWARE("amdgpu/polaris11_ce.bin");
  110. MODULE_FIRMWARE("amdgpu/polaris11_pfp.bin");
  111. MODULE_FIRMWARE("amdgpu/polaris11_me.bin");
  112. MODULE_FIRMWARE("amdgpu/polaris11_mec.bin");
  113. MODULE_FIRMWARE("amdgpu/polaris11_mec2.bin");
  114. MODULE_FIRMWARE("amdgpu/polaris11_rlc.bin");
  115. MODULE_FIRMWARE("amdgpu/polaris10_ce.bin");
  116. MODULE_FIRMWARE("amdgpu/polaris10_pfp.bin");
  117. MODULE_FIRMWARE("amdgpu/polaris10_me.bin");
  118. MODULE_FIRMWARE("amdgpu/polaris10_mec.bin");
  119. MODULE_FIRMWARE("amdgpu/polaris10_mec2.bin");
  120. MODULE_FIRMWARE("amdgpu/polaris10_rlc.bin");
  121. MODULE_FIRMWARE("amdgpu/polaris12_ce.bin");
  122. MODULE_FIRMWARE("amdgpu/polaris12_pfp.bin");
  123. MODULE_FIRMWARE("amdgpu/polaris12_me.bin");
  124. MODULE_FIRMWARE("amdgpu/polaris12_mec.bin");
  125. MODULE_FIRMWARE("amdgpu/polaris12_mec2.bin");
  126. MODULE_FIRMWARE("amdgpu/polaris12_rlc.bin");
  127. static const struct amdgpu_gds_reg_offset amdgpu_gds_reg_offset[] =
  128. {
  129. {mmGDS_VMID0_BASE, mmGDS_VMID0_SIZE, mmGDS_GWS_VMID0, mmGDS_OA_VMID0},
  130. {mmGDS_VMID1_BASE, mmGDS_VMID1_SIZE, mmGDS_GWS_VMID1, mmGDS_OA_VMID1},
  131. {mmGDS_VMID2_BASE, mmGDS_VMID2_SIZE, mmGDS_GWS_VMID2, mmGDS_OA_VMID2},
  132. {mmGDS_VMID3_BASE, mmGDS_VMID3_SIZE, mmGDS_GWS_VMID3, mmGDS_OA_VMID3},
  133. {mmGDS_VMID4_BASE, mmGDS_VMID4_SIZE, mmGDS_GWS_VMID4, mmGDS_OA_VMID4},
  134. {mmGDS_VMID5_BASE, mmGDS_VMID5_SIZE, mmGDS_GWS_VMID5, mmGDS_OA_VMID5},
  135. {mmGDS_VMID6_BASE, mmGDS_VMID6_SIZE, mmGDS_GWS_VMID6, mmGDS_OA_VMID6},
  136. {mmGDS_VMID7_BASE, mmGDS_VMID7_SIZE, mmGDS_GWS_VMID7, mmGDS_OA_VMID7},
  137. {mmGDS_VMID8_BASE, mmGDS_VMID8_SIZE, mmGDS_GWS_VMID8, mmGDS_OA_VMID8},
  138. {mmGDS_VMID9_BASE, mmGDS_VMID9_SIZE, mmGDS_GWS_VMID9, mmGDS_OA_VMID9},
  139. {mmGDS_VMID10_BASE, mmGDS_VMID10_SIZE, mmGDS_GWS_VMID10, mmGDS_OA_VMID10},
  140. {mmGDS_VMID11_BASE, mmGDS_VMID11_SIZE, mmGDS_GWS_VMID11, mmGDS_OA_VMID11},
  141. {mmGDS_VMID12_BASE, mmGDS_VMID12_SIZE, mmGDS_GWS_VMID12, mmGDS_OA_VMID12},
  142. {mmGDS_VMID13_BASE, mmGDS_VMID13_SIZE, mmGDS_GWS_VMID13, mmGDS_OA_VMID13},
  143. {mmGDS_VMID14_BASE, mmGDS_VMID14_SIZE, mmGDS_GWS_VMID14, mmGDS_OA_VMID14},
  144. {mmGDS_VMID15_BASE, mmGDS_VMID15_SIZE, mmGDS_GWS_VMID15, mmGDS_OA_VMID15}
  145. };
  146. static const u32 golden_settings_tonga_a11[] =
  147. {
  148. mmCB_HW_CONTROL, 0xfffdf3cf, 0x00007208,
  149. mmCB_HW_CONTROL_3, 0x00000040, 0x00000040,
  150. mmDB_DEBUG2, 0xf00fffff, 0x00000400,
  151. mmGB_GPU_ID, 0x0000000f, 0x00000000,
  152. mmPA_SC_ENHANCE, 0xffffffff, 0x20000001,
  153. mmPA_SC_FIFO_DEPTH_CNTL, 0x000003ff, 0x000000fc,
  154. mmPA_SC_LINE_STIPPLE_STATE, 0x0000ff0f, 0x00000000,
  155. mmRLC_CGCG_CGLS_CTRL, 0x00000003, 0x0000003c,
  156. mmSQ_RANDOM_WAVE_PRI, 0x001fffff, 0x000006fd,
  157. mmTA_CNTL_AUX, 0x000f000f, 0x000b0000,
  158. mmTCC_CTRL, 0x00100000, 0xf31fff7f,
  159. mmTCC_EXE_DISABLE, 0x00000002, 0x00000002,
  160. mmTCP_ADDR_CONFIG, 0x000003ff, 0x000002fb,
  161. mmTCP_CHAN_STEER_HI, 0xffffffff, 0x0000543b,
  162. mmTCP_CHAN_STEER_LO, 0xffffffff, 0xa9210876,
  163. mmVGT_RESET_DEBUG, 0x00000004, 0x00000004,
  164. };
  165. static const u32 tonga_golden_common_all[] =
  166. {
  167. mmGRBM_GFX_INDEX, 0xffffffff, 0xe0000000,
  168. mmPA_SC_RASTER_CONFIG, 0xffffffff, 0x16000012,
  169. mmPA_SC_RASTER_CONFIG_1, 0xffffffff, 0x0000002A,
  170. mmGB_ADDR_CONFIG, 0xffffffff, 0x22011003,
  171. mmSPI_RESOURCE_RESERVE_CU_0, 0xffffffff, 0x00000800,
  172. mmSPI_RESOURCE_RESERVE_CU_1, 0xffffffff, 0x00000800,
  173. mmSPI_RESOURCE_RESERVE_EN_CU_0, 0xffffffff, 0x00007FBF,
  174. mmSPI_RESOURCE_RESERVE_EN_CU_1, 0xffffffff, 0x00007FAF
  175. };
  176. static const u32 tonga_mgcg_cgcg_init[] =
  177. {
  178. mmRLC_CGTT_MGCG_OVERRIDE, 0xffffffff, 0xffffffff,
  179. mmGRBM_GFX_INDEX, 0xffffffff, 0xe0000000,
  180. mmCB_CGTT_SCLK_CTRL, 0xffffffff, 0x00000100,
  181. mmCGTT_BCI_CLK_CTRL, 0xffffffff, 0x00000100,
  182. mmCGTT_CP_CLK_CTRL, 0xffffffff, 0x00000100,
  183. mmCGTT_CPC_CLK_CTRL, 0xffffffff, 0x00000100,
  184. mmCGTT_CPF_CLK_CTRL, 0xffffffff, 0x40000100,
  185. mmCGTT_GDS_CLK_CTRL, 0xffffffff, 0x00000100,
  186. mmCGTT_IA_CLK_CTRL, 0xffffffff, 0x06000100,
  187. mmCGTT_PA_CLK_CTRL, 0xffffffff, 0x00000100,
  188. mmCGTT_WD_CLK_CTRL, 0xffffffff, 0x06000100,
  189. mmCGTT_PC_CLK_CTRL, 0xffffffff, 0x00000100,
  190. mmCGTT_RLC_CLK_CTRL, 0xffffffff, 0x00000100,
  191. mmCGTT_SC_CLK_CTRL, 0xffffffff, 0x00000100,
  192. mmCGTT_SPI_CLK_CTRL, 0xffffffff, 0x00000100,
  193. mmCGTT_SQ_CLK_CTRL, 0xffffffff, 0x00000100,
  194. mmCGTT_SQG_CLK_CTRL, 0xffffffff, 0x00000100,
  195. mmCGTT_SX_CLK_CTRL0, 0xffffffff, 0x00000100,
  196. mmCGTT_SX_CLK_CTRL1, 0xffffffff, 0x00000100,
  197. mmCGTT_SX_CLK_CTRL2, 0xffffffff, 0x00000100,
  198. mmCGTT_SX_CLK_CTRL3, 0xffffffff, 0x00000100,
  199. mmCGTT_SX_CLK_CTRL4, 0xffffffff, 0x00000100,
  200. mmCGTT_TCI_CLK_CTRL, 0xffffffff, 0x00000100,
  201. mmCGTT_TCP_CLK_CTRL, 0xffffffff, 0x00000100,
  202. mmCGTT_VGT_CLK_CTRL, 0xffffffff, 0x06000100,
  203. mmDB_CGTT_CLK_CTRL_0, 0xffffffff, 0x00000100,
  204. mmTA_CGTT_CTRL, 0xffffffff, 0x00000100,
  205. mmTCA_CGTT_SCLK_CTRL, 0xffffffff, 0x00000100,
  206. mmTCC_CGTT_SCLK_CTRL, 0xffffffff, 0x00000100,
  207. mmTD_CGTT_CTRL, 0xffffffff, 0x00000100,
  208. mmGRBM_GFX_INDEX, 0xffffffff, 0xe0000000,
  209. mmCGTS_CU0_SP0_CTRL_REG, 0xffffffff, 0x00010000,
  210. mmCGTS_CU0_LDS_SQ_CTRL_REG, 0xffffffff, 0x00030002,
  211. mmCGTS_CU0_TA_SQC_CTRL_REG, 0xffffffff, 0x00040007,
  212. mmCGTS_CU0_SP1_CTRL_REG, 0xffffffff, 0x00060005,
  213. mmCGTS_CU0_TD_TCP_CTRL_REG, 0xffffffff, 0x00090008,
  214. mmCGTS_CU1_SP0_CTRL_REG, 0xffffffff, 0x00010000,
  215. mmCGTS_CU1_LDS_SQ_CTRL_REG, 0xffffffff, 0x00030002,
  216. mmCGTS_CU1_TA_CTRL_REG, 0xffffffff, 0x00040007,
  217. mmCGTS_CU1_SP1_CTRL_REG, 0xffffffff, 0x00060005,
  218. mmCGTS_CU1_TD_TCP_CTRL_REG, 0xffffffff, 0x00090008,
  219. mmCGTS_CU2_SP0_CTRL_REG, 0xffffffff, 0x00010000,
  220. mmCGTS_CU2_LDS_SQ_CTRL_REG, 0xffffffff, 0x00030002,
  221. mmCGTS_CU2_TA_CTRL_REG, 0xffffffff, 0x00040007,
  222. mmCGTS_CU2_SP1_CTRL_REG, 0xffffffff, 0x00060005,
  223. mmCGTS_CU2_TD_TCP_CTRL_REG, 0xffffffff, 0x00090008,
  224. mmCGTS_CU3_SP0_CTRL_REG, 0xffffffff, 0x00010000,
  225. mmCGTS_CU3_LDS_SQ_CTRL_REG, 0xffffffff, 0x00030002,
  226. mmCGTS_CU3_TA_CTRL_REG, 0xffffffff, 0x00040007,
  227. mmCGTS_CU3_SP1_CTRL_REG, 0xffffffff, 0x00060005,
  228. mmCGTS_CU3_TD_TCP_CTRL_REG, 0xffffffff, 0x00090008,
  229. mmCGTS_CU4_SP0_CTRL_REG, 0xffffffff, 0x00010000,
  230. mmCGTS_CU4_LDS_SQ_CTRL_REG, 0xffffffff, 0x00030002,
  231. mmCGTS_CU4_TA_SQC_CTRL_REG, 0xffffffff, 0x00040007,
  232. mmCGTS_CU4_SP1_CTRL_REG, 0xffffffff, 0x00060005,
  233. mmCGTS_CU4_TD_TCP_CTRL_REG, 0xffffffff, 0x00090008,
  234. mmCGTS_CU5_SP0_CTRL_REG, 0xffffffff, 0x00010000,
  235. mmCGTS_CU5_LDS_SQ_CTRL_REG, 0xffffffff, 0x00030002,
  236. mmCGTS_CU5_TA_CTRL_REG, 0xffffffff, 0x00040007,
  237. mmCGTS_CU5_SP1_CTRL_REG, 0xffffffff, 0x00060005,
  238. mmCGTS_CU5_TD_TCP_CTRL_REG, 0xffffffff, 0x00090008,
  239. mmCGTS_CU6_SP0_CTRL_REG, 0xffffffff, 0x00010000,
  240. mmCGTS_CU6_LDS_SQ_CTRL_REG, 0xffffffff, 0x00030002,
  241. mmCGTS_CU6_TA_CTRL_REG, 0xffffffff, 0x00040007,
  242. mmCGTS_CU6_SP1_CTRL_REG, 0xffffffff, 0x00060005,
  243. mmCGTS_CU6_TD_TCP_CTRL_REG, 0xffffffff, 0x00090008,
  244. mmCGTS_CU7_SP0_CTRL_REG, 0xffffffff, 0x00010000,
  245. mmCGTS_CU7_LDS_SQ_CTRL_REG, 0xffffffff, 0x00030002,
  246. mmCGTS_CU7_TA_CTRL_REG, 0xffffffff, 0x00040007,
  247. mmCGTS_CU7_SP1_CTRL_REG, 0xffffffff, 0x00060005,
  248. mmCGTS_CU7_TD_TCP_CTRL_REG, 0xffffffff, 0x00090008,
  249. mmCGTS_SM_CTRL_REG, 0xffffffff, 0x96e00200,
  250. mmCP_RB_WPTR_POLL_CNTL, 0xffffffff, 0x00900100,
  251. mmRLC_CGCG_CGLS_CTRL, 0xffffffff, 0x0020003c,
  252. mmCP_MEM_SLP_CNTL, 0x00000001, 0x00000001,
  253. };
  254. static const u32 golden_settings_polaris11_a11[] =
  255. {
  256. mmCB_HW_CONTROL, 0x0000f3cf, 0x00007208,
  257. mmCB_HW_CONTROL_2, 0x0f000000, 0x0f000000,
  258. mmCB_HW_CONTROL_3, 0x000001ff, 0x00000040,
  259. mmDB_DEBUG2, 0xf00fffff, 0x00000400,
  260. mmPA_SC_ENHANCE, 0xffffffff, 0x20000001,
  261. mmPA_SC_LINE_STIPPLE_STATE, 0x0000ff0f, 0x00000000,
  262. mmPA_SC_RASTER_CONFIG, 0x3f3fffff, 0x16000012,
  263. mmPA_SC_RASTER_CONFIG_1, 0x0000003f, 0x00000000,
  264. mmRLC_CGCG_CGLS_CTRL, 0x00000003, 0x0001003c,
  265. mmRLC_CGCG_CGLS_CTRL_3D, 0xffffffff, 0x0001003c,
  266. mmSQ_CONFIG, 0x07f80000, 0x01180000,
  267. mmTA_CNTL_AUX, 0x000f000f, 0x000b0000,
  268. mmTCC_CTRL, 0x00100000, 0xf31fff7f,
  269. mmTCP_ADDR_CONFIG, 0x000003ff, 0x000000f3,
  270. mmTCP_CHAN_STEER_HI, 0xffffffff, 0x00000000,
  271. mmTCP_CHAN_STEER_LO, 0xffffffff, 0x00003210,
  272. mmVGT_RESET_DEBUG, 0x00000004, 0x00000004,
  273. };
  274. static const u32 polaris11_golden_common_all[] =
  275. {
  276. mmGRBM_GFX_INDEX, 0xffffffff, 0xe0000000,
  277. mmGB_ADDR_CONFIG, 0xffffffff, 0x22011002,
  278. mmSPI_RESOURCE_RESERVE_CU_0, 0xffffffff, 0x00000800,
  279. mmSPI_RESOURCE_RESERVE_CU_1, 0xffffffff, 0x00000800,
  280. mmSPI_RESOURCE_RESERVE_EN_CU_0, 0xffffffff, 0x00007FBF,
  281. mmSPI_RESOURCE_RESERVE_EN_CU_1, 0xffffffff, 0x00007FAF,
  282. };
  283. static const u32 golden_settings_polaris10_a11[] =
  284. {
  285. mmATC_MISC_CG, 0x000c0fc0, 0x000c0200,
  286. mmCB_HW_CONTROL, 0x0001f3cf, 0x00007208,
  287. mmCB_HW_CONTROL_2, 0x0f000000, 0x0f000000,
  288. mmCB_HW_CONTROL_3, 0x000001ff, 0x00000040,
  289. mmDB_DEBUG2, 0xf00fffff, 0x00000400,
  290. mmPA_SC_ENHANCE, 0xffffffff, 0x20000001,
  291. mmPA_SC_LINE_STIPPLE_STATE, 0x0000ff0f, 0x00000000,
  292. mmPA_SC_RASTER_CONFIG, 0x3f3fffff, 0x16000012,
  293. mmPA_SC_RASTER_CONFIG_1, 0x0000003f, 0x0000002a,
  294. mmRLC_CGCG_CGLS_CTRL, 0x00000003, 0x0001003c,
  295. mmRLC_CGCG_CGLS_CTRL_3D, 0xffffffff, 0x0001003c,
  296. mmSQ_CONFIG, 0x07f80000, 0x07180000,
  297. mmTA_CNTL_AUX, 0x000f000f, 0x000b0000,
  298. mmTCC_CTRL, 0x00100000, 0xf31fff7f,
  299. mmTCP_ADDR_CONFIG, 0x000003ff, 0x000000f7,
  300. mmTCP_CHAN_STEER_HI, 0xffffffff, 0x00000000,
  301. mmVGT_RESET_DEBUG, 0x00000004, 0x00000004,
  302. };
  303. static const u32 polaris10_golden_common_all[] =
  304. {
  305. mmGRBM_GFX_INDEX, 0xffffffff, 0xe0000000,
  306. mmPA_SC_RASTER_CONFIG, 0xffffffff, 0x16000012,
  307. mmPA_SC_RASTER_CONFIG_1, 0xffffffff, 0x0000002A,
  308. mmGB_ADDR_CONFIG, 0xffffffff, 0x22011003,
  309. mmSPI_RESOURCE_RESERVE_CU_0, 0xffffffff, 0x00000800,
  310. mmSPI_RESOURCE_RESERVE_CU_1, 0xffffffff, 0x00000800,
  311. mmSPI_RESOURCE_RESERVE_EN_CU_0, 0xffffffff, 0x00007FBF,
  312. mmSPI_RESOURCE_RESERVE_EN_CU_1, 0xffffffff, 0x00007FAF,
  313. };
  314. static const u32 fiji_golden_common_all[] =
  315. {
  316. mmGRBM_GFX_INDEX, 0xffffffff, 0xe0000000,
  317. mmPA_SC_RASTER_CONFIG, 0xffffffff, 0x3a00161a,
  318. mmPA_SC_RASTER_CONFIG_1, 0xffffffff, 0x0000002e,
  319. mmGB_ADDR_CONFIG, 0xffffffff, 0x22011003,
  320. mmSPI_RESOURCE_RESERVE_CU_0, 0xffffffff, 0x00000800,
  321. mmSPI_RESOURCE_RESERVE_CU_1, 0xffffffff, 0x00000800,
  322. mmSPI_RESOURCE_RESERVE_EN_CU_0, 0xffffffff, 0x00007FBF,
  323. mmSPI_RESOURCE_RESERVE_EN_CU_1, 0xffffffff, 0x00007FAF,
  324. mmGRBM_GFX_INDEX, 0xffffffff, 0xe0000000,
  325. mmSPI_CONFIG_CNTL_1, 0x0000000f, 0x00000009,
  326. };
  327. static const u32 golden_settings_fiji_a10[] =
  328. {
  329. mmCB_HW_CONTROL_3, 0x000001ff, 0x00000040,
  330. mmDB_DEBUG2, 0xf00fffff, 0x00000400,
  331. mmPA_SC_ENHANCE, 0xffffffff, 0x20000001,
  332. mmPA_SC_LINE_STIPPLE_STATE, 0x0000ff0f, 0x00000000,
  333. mmRLC_CGCG_CGLS_CTRL, 0x00000003, 0x0001003c,
  334. mmSQ_RANDOM_WAVE_PRI, 0x001fffff, 0x000006fd,
  335. mmTA_CNTL_AUX, 0x000f000f, 0x000b0000,
  336. mmTCC_CTRL, 0x00100000, 0xf31fff7f,
  337. mmTCC_EXE_DISABLE, 0x00000002, 0x00000002,
  338. mmTCP_ADDR_CONFIG, 0x000003ff, 0x000000ff,
  339. mmVGT_RESET_DEBUG, 0x00000004, 0x00000004,
  340. };
  341. static const u32 fiji_mgcg_cgcg_init[] =
  342. {
  343. mmRLC_CGTT_MGCG_OVERRIDE, 0xffffffff, 0xffffffff,
  344. mmGRBM_GFX_INDEX, 0xffffffff, 0xe0000000,
  345. mmCB_CGTT_SCLK_CTRL, 0xffffffff, 0x00000100,
  346. mmCGTT_BCI_CLK_CTRL, 0xffffffff, 0x00000100,
  347. mmCGTT_CP_CLK_CTRL, 0xffffffff, 0x00000100,
  348. mmCGTT_CPC_CLK_CTRL, 0xffffffff, 0x00000100,
  349. mmCGTT_CPF_CLK_CTRL, 0xffffffff, 0x40000100,
  350. mmCGTT_GDS_CLK_CTRL, 0xffffffff, 0x00000100,
  351. mmCGTT_IA_CLK_CTRL, 0xffffffff, 0x06000100,
  352. mmCGTT_PA_CLK_CTRL, 0xffffffff, 0x00000100,
  353. mmCGTT_WD_CLK_CTRL, 0xffffffff, 0x06000100,
  354. mmCGTT_PC_CLK_CTRL, 0xffffffff, 0x00000100,
  355. mmCGTT_RLC_CLK_CTRL, 0xffffffff, 0x00000100,
  356. mmCGTT_SC_CLK_CTRL, 0xffffffff, 0x00000100,
  357. mmCGTT_SPI_CLK_CTRL, 0xffffffff, 0x00000100,
  358. mmCGTT_SQ_CLK_CTRL, 0xffffffff, 0x00000100,
  359. mmCGTT_SQG_CLK_CTRL, 0xffffffff, 0x00000100,
  360. mmCGTT_SX_CLK_CTRL0, 0xffffffff, 0x00000100,
  361. mmCGTT_SX_CLK_CTRL1, 0xffffffff, 0x00000100,
  362. mmCGTT_SX_CLK_CTRL2, 0xffffffff, 0x00000100,
  363. mmCGTT_SX_CLK_CTRL3, 0xffffffff, 0x00000100,
  364. mmCGTT_SX_CLK_CTRL4, 0xffffffff, 0x00000100,
  365. mmCGTT_TCI_CLK_CTRL, 0xffffffff, 0x00000100,
  366. mmCGTT_TCP_CLK_CTRL, 0xffffffff, 0x00000100,
  367. mmCGTT_VGT_CLK_CTRL, 0xffffffff, 0x06000100,
  368. mmDB_CGTT_CLK_CTRL_0, 0xffffffff, 0x00000100,
  369. mmTA_CGTT_CTRL, 0xffffffff, 0x00000100,
  370. mmTCA_CGTT_SCLK_CTRL, 0xffffffff, 0x00000100,
  371. mmTCC_CGTT_SCLK_CTRL, 0xffffffff, 0x00000100,
  372. mmTD_CGTT_CTRL, 0xffffffff, 0x00000100,
  373. mmGRBM_GFX_INDEX, 0xffffffff, 0xe0000000,
  374. mmCGTS_SM_CTRL_REG, 0xffffffff, 0x96e00200,
  375. mmCP_RB_WPTR_POLL_CNTL, 0xffffffff, 0x00900100,
  376. mmRLC_CGCG_CGLS_CTRL, 0xffffffff, 0x0020003c,
  377. mmCP_MEM_SLP_CNTL, 0x00000001, 0x00000001,
  378. };
  379. static const u32 golden_settings_iceland_a11[] =
  380. {
  381. mmCB_HW_CONTROL_3, 0x00000040, 0x00000040,
  382. mmDB_DEBUG2, 0xf00fffff, 0x00000400,
  383. mmDB_DEBUG3, 0xc0000000, 0xc0000000,
  384. mmGB_GPU_ID, 0x0000000f, 0x00000000,
  385. mmPA_SC_ENHANCE, 0xffffffff, 0x20000001,
  386. mmPA_SC_LINE_STIPPLE_STATE, 0x0000ff0f, 0x00000000,
  387. mmPA_SC_RASTER_CONFIG, 0x3f3fffff, 0x00000002,
  388. mmPA_SC_RASTER_CONFIG_1, 0x0000003f, 0x00000000,
  389. mmRLC_CGCG_CGLS_CTRL, 0x00000003, 0x0000003c,
  390. mmSQ_RANDOM_WAVE_PRI, 0x001fffff, 0x000006fd,
  391. mmTA_CNTL_AUX, 0x000f000f, 0x000b0000,
  392. mmTCC_CTRL, 0x00100000, 0xf31fff7f,
  393. mmTCC_EXE_DISABLE, 0x00000002, 0x00000002,
  394. mmTCP_ADDR_CONFIG, 0x000003ff, 0x000000f1,
  395. mmTCP_CHAN_STEER_HI, 0xffffffff, 0x00000000,
  396. mmTCP_CHAN_STEER_LO, 0xffffffff, 0x00000010,
  397. };
  398. static const u32 iceland_golden_common_all[] =
  399. {
  400. mmGRBM_GFX_INDEX, 0xffffffff, 0xe0000000,
  401. mmPA_SC_RASTER_CONFIG, 0xffffffff, 0x00000002,
  402. mmPA_SC_RASTER_CONFIG_1, 0xffffffff, 0x00000000,
  403. mmGB_ADDR_CONFIG, 0xffffffff, 0x22010001,
  404. mmSPI_RESOURCE_RESERVE_CU_0, 0xffffffff, 0x00000800,
  405. mmSPI_RESOURCE_RESERVE_CU_1, 0xffffffff, 0x00000800,
  406. mmSPI_RESOURCE_RESERVE_EN_CU_0, 0xffffffff, 0x00007FBF,
  407. mmSPI_RESOURCE_RESERVE_EN_CU_1, 0xffffffff, 0x00007FAF
  408. };
  409. static const u32 iceland_mgcg_cgcg_init[] =
  410. {
  411. mmRLC_CGTT_MGCG_OVERRIDE, 0xffffffff, 0xffffffff,
  412. mmGRBM_GFX_INDEX, 0xffffffff, 0xe0000000,
  413. mmCB_CGTT_SCLK_CTRL, 0xffffffff, 0x00000100,
  414. mmCGTT_BCI_CLK_CTRL, 0xffffffff, 0x00000100,
  415. mmCGTT_CP_CLK_CTRL, 0xffffffff, 0xc0000100,
  416. mmCGTT_CPC_CLK_CTRL, 0xffffffff, 0xc0000100,
  417. mmCGTT_CPF_CLK_CTRL, 0xffffffff, 0xc0000100,
  418. mmCGTT_GDS_CLK_CTRL, 0xffffffff, 0x00000100,
  419. mmCGTT_IA_CLK_CTRL, 0xffffffff, 0x06000100,
  420. mmCGTT_PA_CLK_CTRL, 0xffffffff, 0x00000100,
  421. mmCGTT_WD_CLK_CTRL, 0xffffffff, 0x06000100,
  422. mmCGTT_PC_CLK_CTRL, 0xffffffff, 0x00000100,
  423. mmCGTT_RLC_CLK_CTRL, 0xffffffff, 0x00000100,
  424. mmCGTT_SC_CLK_CTRL, 0xffffffff, 0x00000100,
  425. mmCGTT_SPI_CLK_CTRL, 0xffffffff, 0x00000100,
  426. mmCGTT_SQ_CLK_CTRL, 0xffffffff, 0x00000100,
  427. mmCGTT_SQG_CLK_CTRL, 0xffffffff, 0x00000100,
  428. mmCGTT_SX_CLK_CTRL0, 0xffffffff, 0x00000100,
  429. mmCGTT_SX_CLK_CTRL1, 0xffffffff, 0x00000100,
  430. mmCGTT_SX_CLK_CTRL2, 0xffffffff, 0x00000100,
  431. mmCGTT_SX_CLK_CTRL3, 0xffffffff, 0x00000100,
  432. mmCGTT_SX_CLK_CTRL4, 0xffffffff, 0x00000100,
  433. mmCGTT_TCI_CLK_CTRL, 0xffffffff, 0xff000100,
  434. mmCGTT_TCP_CLK_CTRL, 0xffffffff, 0x00000100,
  435. mmCGTT_VGT_CLK_CTRL, 0xffffffff, 0x06000100,
  436. mmDB_CGTT_CLK_CTRL_0, 0xffffffff, 0x00000100,
  437. mmTA_CGTT_CTRL, 0xffffffff, 0x00000100,
  438. mmTCA_CGTT_SCLK_CTRL, 0xffffffff, 0x00000100,
  439. mmTCC_CGTT_SCLK_CTRL, 0xffffffff, 0x00000100,
  440. mmTD_CGTT_CTRL, 0xffffffff, 0x00000100,
  441. mmGRBM_GFX_INDEX, 0xffffffff, 0xe0000000,
  442. mmCGTS_CU0_SP0_CTRL_REG, 0xffffffff, 0x00010000,
  443. mmCGTS_CU0_LDS_SQ_CTRL_REG, 0xffffffff, 0x00030002,
  444. mmCGTS_CU0_TA_SQC_CTRL_REG, 0xffffffff, 0x0f840f87,
  445. mmCGTS_CU0_SP1_CTRL_REG, 0xffffffff, 0x00060005,
  446. mmCGTS_CU0_TD_TCP_CTRL_REG, 0xffffffff, 0x00090008,
  447. mmCGTS_CU1_SP0_CTRL_REG, 0xffffffff, 0x00010000,
  448. mmCGTS_CU1_LDS_SQ_CTRL_REG, 0xffffffff, 0x00030002,
  449. mmCGTS_CU1_TA_CTRL_REG, 0xffffffff, 0x00040007,
  450. mmCGTS_CU1_SP1_CTRL_REG, 0xffffffff, 0x00060005,
  451. mmCGTS_CU1_TD_TCP_CTRL_REG, 0xffffffff, 0x00090008,
  452. mmCGTS_CU2_SP0_CTRL_REG, 0xffffffff, 0x00010000,
  453. mmCGTS_CU2_LDS_SQ_CTRL_REG, 0xffffffff, 0x00030002,
  454. mmCGTS_CU2_TA_CTRL_REG, 0xffffffff, 0x00040007,
  455. mmCGTS_CU2_SP1_CTRL_REG, 0xffffffff, 0x00060005,
  456. mmCGTS_CU2_TD_TCP_CTRL_REG, 0xffffffff, 0x00090008,
  457. mmCGTS_CU3_SP0_CTRL_REG, 0xffffffff, 0x00010000,
  458. mmCGTS_CU3_LDS_SQ_CTRL_REG, 0xffffffff, 0x00030002,
  459. mmCGTS_CU3_TA_CTRL_REG, 0xffffffff, 0x00040007,
  460. mmCGTS_CU3_SP1_CTRL_REG, 0xffffffff, 0x00060005,
  461. mmCGTS_CU3_TD_TCP_CTRL_REG, 0xffffffff, 0x00090008,
  462. mmCGTS_CU4_SP0_CTRL_REG, 0xffffffff, 0x00010000,
  463. mmCGTS_CU4_LDS_SQ_CTRL_REG, 0xffffffff, 0x00030002,
  464. mmCGTS_CU4_TA_SQC_CTRL_REG, 0xffffffff, 0x0f840f87,
  465. mmCGTS_CU4_SP1_CTRL_REG, 0xffffffff, 0x00060005,
  466. mmCGTS_CU4_TD_TCP_CTRL_REG, 0xffffffff, 0x00090008,
  467. mmCGTS_CU5_SP0_CTRL_REG, 0xffffffff, 0x00010000,
  468. mmCGTS_CU5_LDS_SQ_CTRL_REG, 0xffffffff, 0x00030002,
  469. mmCGTS_CU5_TA_CTRL_REG, 0xffffffff, 0x00040007,
  470. mmCGTS_CU5_SP1_CTRL_REG, 0xffffffff, 0x00060005,
  471. mmCGTS_CU5_TD_TCP_CTRL_REG, 0xffffffff, 0x00090008,
  472. mmCGTS_SM_CTRL_REG, 0xffffffff, 0x96e00200,
  473. mmCP_RB_WPTR_POLL_CNTL, 0xffffffff, 0x00900100,
  474. mmRLC_CGCG_CGLS_CTRL, 0xffffffff, 0x0020003c,
  475. };
  476. static const u32 cz_golden_settings_a11[] =
  477. {
  478. mmCB_HW_CONTROL_3, 0x00000040, 0x00000040,
  479. mmDB_DEBUG2, 0xf00fffff, 0x00000400,
  480. mmGB_GPU_ID, 0x0000000f, 0x00000000,
  481. mmPA_SC_ENHANCE, 0xffffffff, 0x00000001,
  482. mmPA_SC_LINE_STIPPLE_STATE, 0x0000ff0f, 0x00000000,
  483. mmRLC_CGCG_CGLS_CTRL, 0x00000003, 0x0000003c,
  484. mmSQ_RANDOM_WAVE_PRI, 0x001fffff, 0x000006fd,
  485. mmTA_CNTL_AUX, 0x000f000f, 0x00010000,
  486. mmTCC_CTRL, 0x00100000, 0xf31fff7f,
  487. mmTCC_EXE_DISABLE, 0x00000002, 0x00000002,
  488. mmTCP_ADDR_CONFIG, 0x0000000f, 0x000000f3,
  489. mmTCP_CHAN_STEER_LO, 0xffffffff, 0x00001302
  490. };
  491. static const u32 cz_golden_common_all[] =
  492. {
  493. mmGRBM_GFX_INDEX, 0xffffffff, 0xe0000000,
  494. mmPA_SC_RASTER_CONFIG, 0xffffffff, 0x00000002,
  495. mmPA_SC_RASTER_CONFIG_1, 0xffffffff, 0x00000000,
  496. mmGB_ADDR_CONFIG, 0xffffffff, 0x22010001,
  497. mmSPI_RESOURCE_RESERVE_CU_0, 0xffffffff, 0x00000800,
  498. mmSPI_RESOURCE_RESERVE_CU_1, 0xffffffff, 0x00000800,
  499. mmSPI_RESOURCE_RESERVE_EN_CU_0, 0xffffffff, 0x00007FBF,
  500. mmSPI_RESOURCE_RESERVE_EN_CU_1, 0xffffffff, 0x00007FAF
  501. };
  502. static const u32 cz_mgcg_cgcg_init[] =
  503. {
  504. mmRLC_CGTT_MGCG_OVERRIDE, 0xffffffff, 0xffffffff,
  505. mmGRBM_GFX_INDEX, 0xffffffff, 0xe0000000,
  506. mmCB_CGTT_SCLK_CTRL, 0xffffffff, 0x00000100,
  507. mmCGTT_BCI_CLK_CTRL, 0xffffffff, 0x00000100,
  508. mmCGTT_CP_CLK_CTRL, 0xffffffff, 0x00000100,
  509. mmCGTT_CPC_CLK_CTRL, 0xffffffff, 0x00000100,
  510. mmCGTT_CPF_CLK_CTRL, 0xffffffff, 0x00000100,
  511. mmCGTT_GDS_CLK_CTRL, 0xffffffff, 0x00000100,
  512. mmCGTT_IA_CLK_CTRL, 0xffffffff, 0x06000100,
  513. mmCGTT_PA_CLK_CTRL, 0xffffffff, 0x00000100,
  514. mmCGTT_WD_CLK_CTRL, 0xffffffff, 0x06000100,
  515. mmCGTT_PC_CLK_CTRL, 0xffffffff, 0x00000100,
  516. mmCGTT_RLC_CLK_CTRL, 0xffffffff, 0x00000100,
  517. mmCGTT_SC_CLK_CTRL, 0xffffffff, 0x00000100,
  518. mmCGTT_SPI_CLK_CTRL, 0xffffffff, 0x00000100,
  519. mmCGTT_SQ_CLK_CTRL, 0xffffffff, 0x00000100,
  520. mmCGTT_SQG_CLK_CTRL, 0xffffffff, 0x00000100,
  521. mmCGTT_SX_CLK_CTRL0, 0xffffffff, 0x00000100,
  522. mmCGTT_SX_CLK_CTRL1, 0xffffffff, 0x00000100,
  523. mmCGTT_SX_CLK_CTRL2, 0xffffffff, 0x00000100,
  524. mmCGTT_SX_CLK_CTRL3, 0xffffffff, 0x00000100,
  525. mmCGTT_SX_CLK_CTRL4, 0xffffffff, 0x00000100,
  526. mmCGTT_TCI_CLK_CTRL, 0xffffffff, 0x00000100,
  527. mmCGTT_TCP_CLK_CTRL, 0xffffffff, 0x00000100,
  528. mmCGTT_VGT_CLK_CTRL, 0xffffffff, 0x06000100,
  529. mmDB_CGTT_CLK_CTRL_0, 0xffffffff, 0x00000100,
  530. mmTA_CGTT_CTRL, 0xffffffff, 0x00000100,
  531. mmTCA_CGTT_SCLK_CTRL, 0xffffffff, 0x00000100,
  532. mmTCC_CGTT_SCLK_CTRL, 0xffffffff, 0x00000100,
  533. mmTD_CGTT_CTRL, 0xffffffff, 0x00000100,
  534. mmGRBM_GFX_INDEX, 0xffffffff, 0xe0000000,
  535. mmCGTS_CU0_SP0_CTRL_REG, 0xffffffff, 0x00010000,
  536. mmCGTS_CU0_LDS_SQ_CTRL_REG, 0xffffffff, 0x00030002,
  537. mmCGTS_CU0_TA_SQC_CTRL_REG, 0xffffffff, 0x00040007,
  538. mmCGTS_CU0_SP1_CTRL_REG, 0xffffffff, 0x00060005,
  539. mmCGTS_CU0_TD_TCP_CTRL_REG, 0xffffffff, 0x00090008,
  540. mmCGTS_CU1_SP0_CTRL_REG, 0xffffffff, 0x00010000,
  541. mmCGTS_CU1_LDS_SQ_CTRL_REG, 0xffffffff, 0x00030002,
  542. mmCGTS_CU1_TA_CTRL_REG, 0xffffffff, 0x00040007,
  543. mmCGTS_CU1_SP1_CTRL_REG, 0xffffffff, 0x00060005,
  544. mmCGTS_CU1_TD_TCP_CTRL_REG, 0xffffffff, 0x00090008,
  545. mmCGTS_CU2_SP0_CTRL_REG, 0xffffffff, 0x00010000,
  546. mmCGTS_CU2_LDS_SQ_CTRL_REG, 0xffffffff, 0x00030002,
  547. mmCGTS_CU2_TA_CTRL_REG, 0xffffffff, 0x00040007,
  548. mmCGTS_CU2_SP1_CTRL_REG, 0xffffffff, 0x00060005,
  549. mmCGTS_CU2_TD_TCP_CTRL_REG, 0xffffffff, 0x00090008,
  550. mmCGTS_CU3_SP0_CTRL_REG, 0xffffffff, 0x00010000,
  551. mmCGTS_CU3_LDS_SQ_CTRL_REG, 0xffffffff, 0x00030002,
  552. mmCGTS_CU3_TA_CTRL_REG, 0xffffffff, 0x00040007,
  553. mmCGTS_CU3_SP1_CTRL_REG, 0xffffffff, 0x00060005,
  554. mmCGTS_CU3_TD_TCP_CTRL_REG, 0xffffffff, 0x00090008,
  555. mmCGTS_CU4_SP0_CTRL_REG, 0xffffffff, 0x00010000,
  556. mmCGTS_CU4_LDS_SQ_CTRL_REG, 0xffffffff, 0x00030002,
  557. mmCGTS_CU4_TA_SQC_CTRL_REG, 0xffffffff, 0x00040007,
  558. mmCGTS_CU4_SP1_CTRL_REG, 0xffffffff, 0x00060005,
  559. mmCGTS_CU4_TD_TCP_CTRL_REG, 0xffffffff, 0x00090008,
  560. mmCGTS_CU5_SP0_CTRL_REG, 0xffffffff, 0x00010000,
  561. mmCGTS_CU5_LDS_SQ_CTRL_REG, 0xffffffff, 0x00030002,
  562. mmCGTS_CU5_TA_CTRL_REG, 0xffffffff, 0x00040007,
  563. mmCGTS_CU5_SP1_CTRL_REG, 0xffffffff, 0x00060005,
  564. mmCGTS_CU5_TD_TCP_CTRL_REG, 0xffffffff, 0x00090008,
  565. mmCGTS_CU6_SP0_CTRL_REG, 0xffffffff, 0x00010000,
  566. mmCGTS_CU6_LDS_SQ_CTRL_REG, 0xffffffff, 0x00030002,
  567. mmCGTS_CU6_TA_CTRL_REG, 0xffffffff, 0x00040007,
  568. mmCGTS_CU6_SP1_CTRL_REG, 0xffffffff, 0x00060005,
  569. mmCGTS_CU6_TD_TCP_CTRL_REG, 0xffffffff, 0x00090008,
  570. mmCGTS_CU7_SP0_CTRL_REG, 0xffffffff, 0x00010000,
  571. mmCGTS_CU7_LDS_SQ_CTRL_REG, 0xffffffff, 0x00030002,
  572. mmCGTS_CU7_TA_CTRL_REG, 0xffffffff, 0x00040007,
  573. mmCGTS_CU7_SP1_CTRL_REG, 0xffffffff, 0x00060005,
  574. mmCGTS_CU7_TD_TCP_CTRL_REG, 0xffffffff, 0x00090008,
  575. mmCGTS_SM_CTRL_REG, 0xffffffff, 0x96e00200,
  576. mmCP_RB_WPTR_POLL_CNTL, 0xffffffff, 0x00900100,
  577. mmRLC_CGCG_CGLS_CTRL, 0xffffffff, 0x0020003f,
  578. mmCP_MEM_SLP_CNTL, 0x00000001, 0x00000001,
  579. };
  580. static const u32 stoney_golden_settings_a11[] =
  581. {
  582. mmDB_DEBUG2, 0xf00fffff, 0x00000400,
  583. mmGB_GPU_ID, 0x0000000f, 0x00000000,
  584. mmPA_SC_ENHANCE, 0xffffffff, 0x20000001,
  585. mmPA_SC_LINE_STIPPLE_STATE, 0x0000ff0f, 0x00000000,
  586. mmRLC_CGCG_CGLS_CTRL, 0x00000003, 0x0001003c,
  587. mmTA_CNTL_AUX, 0x000f000f, 0x000b0000,
  588. mmTCC_CTRL, 0x00100000, 0xf31fff7f,
  589. mmTCC_EXE_DISABLE, 0x00000002, 0x00000002,
  590. mmTCP_ADDR_CONFIG, 0x0000000f, 0x000000f1,
  591. mmTCP_CHAN_STEER_LO, 0xffffffff, 0x10101010,
  592. };
  593. static const u32 stoney_golden_common_all[] =
  594. {
  595. mmGRBM_GFX_INDEX, 0xffffffff, 0xe0000000,
  596. mmPA_SC_RASTER_CONFIG, 0xffffffff, 0x00000000,
  597. mmPA_SC_RASTER_CONFIG_1, 0xffffffff, 0x00000000,
  598. mmGB_ADDR_CONFIG, 0xffffffff, 0x12010001,
  599. mmSPI_RESOURCE_RESERVE_CU_0, 0xffffffff, 0x00000800,
  600. mmSPI_RESOURCE_RESERVE_CU_1, 0xffffffff, 0x00000800,
  601. mmSPI_RESOURCE_RESERVE_EN_CU_0, 0xffffffff, 0x00007FBF,
  602. mmSPI_RESOURCE_RESERVE_EN_CU_1, 0xffffffff, 0x00007FAF,
  603. };
  604. static const u32 stoney_mgcg_cgcg_init[] =
  605. {
  606. mmGRBM_GFX_INDEX, 0xffffffff, 0xe0000000,
  607. mmRLC_CGCG_CGLS_CTRL, 0xffffffff, 0x0020003f,
  608. mmCP_MEM_SLP_CNTL, 0xffffffff, 0x00020201,
  609. mmRLC_MEM_SLP_CNTL, 0xffffffff, 0x00020201,
  610. mmCGTS_SM_CTRL_REG, 0xffffffff, 0x96940200,
  611. };
  612. static void gfx_v8_0_set_ring_funcs(struct amdgpu_device *adev);
  613. static void gfx_v8_0_set_irq_funcs(struct amdgpu_device *adev);
  614. static void gfx_v8_0_set_gds_init(struct amdgpu_device *adev);
  615. static void gfx_v8_0_set_rlc_funcs(struct amdgpu_device *adev);
  616. static u32 gfx_v8_0_get_csb_size(struct amdgpu_device *adev);
  617. static void gfx_v8_0_get_cu_info(struct amdgpu_device *adev);
  618. static void gfx_v8_0_ring_emit_ce_meta_init(struct amdgpu_ring *ring, uint64_t addr);
  619. static void gfx_v8_0_ring_emit_de_meta_init(struct amdgpu_ring *ring, uint64_t addr);
  620. static int gfx_v8_0_compute_mqd_sw_init(struct amdgpu_device *adev);
  621. static void gfx_v8_0_compute_mqd_sw_fini(struct amdgpu_device *adev);
  622. static void gfx_v8_0_init_golden_registers(struct amdgpu_device *adev)
  623. {
  624. switch (adev->asic_type) {
  625. case CHIP_TOPAZ:
  626. amdgpu_program_register_sequence(adev,
  627. iceland_mgcg_cgcg_init,
  628. (const u32)ARRAY_SIZE(iceland_mgcg_cgcg_init));
  629. amdgpu_program_register_sequence(adev,
  630. golden_settings_iceland_a11,
  631. (const u32)ARRAY_SIZE(golden_settings_iceland_a11));
  632. amdgpu_program_register_sequence(adev,
  633. iceland_golden_common_all,
  634. (const u32)ARRAY_SIZE(iceland_golden_common_all));
  635. break;
  636. case CHIP_FIJI:
  637. amdgpu_program_register_sequence(adev,
  638. fiji_mgcg_cgcg_init,
  639. (const u32)ARRAY_SIZE(fiji_mgcg_cgcg_init));
  640. amdgpu_program_register_sequence(adev,
  641. golden_settings_fiji_a10,
  642. (const u32)ARRAY_SIZE(golden_settings_fiji_a10));
  643. amdgpu_program_register_sequence(adev,
  644. fiji_golden_common_all,
  645. (const u32)ARRAY_SIZE(fiji_golden_common_all));
  646. break;
  647. case CHIP_TONGA:
  648. amdgpu_program_register_sequence(adev,
  649. tonga_mgcg_cgcg_init,
  650. (const u32)ARRAY_SIZE(tonga_mgcg_cgcg_init));
  651. amdgpu_program_register_sequence(adev,
  652. golden_settings_tonga_a11,
  653. (const u32)ARRAY_SIZE(golden_settings_tonga_a11));
  654. amdgpu_program_register_sequence(adev,
  655. tonga_golden_common_all,
  656. (const u32)ARRAY_SIZE(tonga_golden_common_all));
  657. break;
  658. case CHIP_POLARIS11:
  659. case CHIP_POLARIS12:
  660. amdgpu_program_register_sequence(adev,
  661. golden_settings_polaris11_a11,
  662. (const u32)ARRAY_SIZE(golden_settings_polaris11_a11));
  663. amdgpu_program_register_sequence(adev,
  664. polaris11_golden_common_all,
  665. (const u32)ARRAY_SIZE(polaris11_golden_common_all));
  666. break;
  667. case CHIP_POLARIS10:
  668. amdgpu_program_register_sequence(adev,
  669. golden_settings_polaris10_a11,
  670. (const u32)ARRAY_SIZE(golden_settings_polaris10_a11));
  671. amdgpu_program_register_sequence(adev,
  672. polaris10_golden_common_all,
  673. (const u32)ARRAY_SIZE(polaris10_golden_common_all));
  674. WREG32_SMC(ixCG_ACLK_CNTL, 0x0000001C);
  675. if (adev->pdev->revision == 0xc7 &&
  676. ((adev->pdev->subsystem_device == 0xb37 && adev->pdev->subsystem_vendor == 0x1002) ||
  677. (adev->pdev->subsystem_device == 0x4a8 && adev->pdev->subsystem_vendor == 0x1043) ||
  678. (adev->pdev->subsystem_device == 0x9480 && adev->pdev->subsystem_vendor == 0x1682))) {
  679. amdgpu_atombios_i2c_channel_trans(adev, 0x10, 0x96, 0x1E, 0xDD);
  680. amdgpu_atombios_i2c_channel_trans(adev, 0x10, 0x96, 0x1F, 0xD0);
  681. }
  682. break;
  683. case CHIP_CARRIZO:
  684. amdgpu_program_register_sequence(adev,
  685. cz_mgcg_cgcg_init,
  686. (const u32)ARRAY_SIZE(cz_mgcg_cgcg_init));
  687. amdgpu_program_register_sequence(adev,
  688. cz_golden_settings_a11,
  689. (const u32)ARRAY_SIZE(cz_golden_settings_a11));
  690. amdgpu_program_register_sequence(adev,
  691. cz_golden_common_all,
  692. (const u32)ARRAY_SIZE(cz_golden_common_all));
  693. break;
  694. case CHIP_STONEY:
  695. amdgpu_program_register_sequence(adev,
  696. stoney_mgcg_cgcg_init,
  697. (const u32)ARRAY_SIZE(stoney_mgcg_cgcg_init));
  698. amdgpu_program_register_sequence(adev,
  699. stoney_golden_settings_a11,
  700. (const u32)ARRAY_SIZE(stoney_golden_settings_a11));
  701. amdgpu_program_register_sequence(adev,
  702. stoney_golden_common_all,
  703. (const u32)ARRAY_SIZE(stoney_golden_common_all));
  704. break;
  705. default:
  706. break;
  707. }
  708. }
  709. static void gfx_v8_0_scratch_init(struct amdgpu_device *adev)
  710. {
  711. adev->gfx.scratch.num_reg = 7;
  712. adev->gfx.scratch.reg_base = mmSCRATCH_REG0;
  713. adev->gfx.scratch.free_mask = (1u << adev->gfx.scratch.num_reg) - 1;
  714. }
  715. static int gfx_v8_0_ring_test_ring(struct amdgpu_ring *ring)
  716. {
  717. struct amdgpu_device *adev = ring->adev;
  718. uint32_t scratch;
  719. uint32_t tmp = 0;
  720. unsigned i;
  721. int r;
  722. r = amdgpu_gfx_scratch_get(adev, &scratch);
  723. if (r) {
  724. DRM_ERROR("amdgpu: cp failed to get scratch reg (%d).\n", r);
  725. return r;
  726. }
  727. WREG32(scratch, 0xCAFEDEAD);
  728. r = amdgpu_ring_alloc(ring, 3);
  729. if (r) {
  730. DRM_ERROR("amdgpu: cp failed to lock ring %d (%d).\n",
  731. ring->idx, r);
  732. amdgpu_gfx_scratch_free(adev, scratch);
  733. return r;
  734. }
  735. amdgpu_ring_write(ring, PACKET3(PACKET3_SET_UCONFIG_REG, 1));
  736. amdgpu_ring_write(ring, (scratch - PACKET3_SET_UCONFIG_REG_START));
  737. amdgpu_ring_write(ring, 0xDEADBEEF);
  738. amdgpu_ring_commit(ring);
  739. for (i = 0; i < adev->usec_timeout; i++) {
  740. tmp = RREG32(scratch);
  741. if (tmp == 0xDEADBEEF)
  742. break;
  743. DRM_UDELAY(1);
  744. }
  745. if (i < adev->usec_timeout) {
  746. DRM_INFO("ring test on %d succeeded in %d usecs\n",
  747. ring->idx, i);
  748. } else {
  749. DRM_ERROR("amdgpu: ring %d test failed (scratch(0x%04X)=0x%08X)\n",
  750. ring->idx, scratch, tmp);
  751. r = -EINVAL;
  752. }
  753. amdgpu_gfx_scratch_free(adev, scratch);
  754. return r;
  755. }
  756. static int gfx_v8_0_ring_test_ib(struct amdgpu_ring *ring, long timeout)
  757. {
  758. struct amdgpu_device *adev = ring->adev;
  759. struct amdgpu_ib ib;
  760. struct dma_fence *f = NULL;
  761. uint32_t scratch;
  762. uint32_t tmp = 0;
  763. long r;
  764. r = amdgpu_gfx_scratch_get(adev, &scratch);
  765. if (r) {
  766. DRM_ERROR("amdgpu: failed to get scratch reg (%ld).\n", r);
  767. return r;
  768. }
  769. WREG32(scratch, 0xCAFEDEAD);
  770. memset(&ib, 0, sizeof(ib));
  771. r = amdgpu_ib_get(adev, NULL, 256, &ib);
  772. if (r) {
  773. DRM_ERROR("amdgpu: failed to get ib (%ld).\n", r);
  774. goto err1;
  775. }
  776. ib.ptr[0] = PACKET3(PACKET3_SET_UCONFIG_REG, 1);
  777. ib.ptr[1] = ((scratch - PACKET3_SET_UCONFIG_REG_START));
  778. ib.ptr[2] = 0xDEADBEEF;
  779. ib.length_dw = 3;
  780. r = amdgpu_ib_schedule(ring, 1, &ib, NULL, &f);
  781. if (r)
  782. goto err2;
  783. r = dma_fence_wait_timeout(f, false, timeout);
  784. if (r == 0) {
  785. DRM_ERROR("amdgpu: IB test timed out.\n");
  786. r = -ETIMEDOUT;
  787. goto err2;
  788. } else if (r < 0) {
  789. DRM_ERROR("amdgpu: fence wait failed (%ld).\n", r);
  790. goto err2;
  791. }
  792. tmp = RREG32(scratch);
  793. if (tmp == 0xDEADBEEF) {
  794. DRM_INFO("ib test on ring %d succeeded\n", ring->idx);
  795. r = 0;
  796. } else {
  797. DRM_ERROR("amdgpu: ib test failed (scratch(0x%04X)=0x%08X)\n",
  798. scratch, tmp);
  799. r = -EINVAL;
  800. }
  801. err2:
  802. amdgpu_ib_free(adev, &ib, NULL);
  803. dma_fence_put(f);
  804. err1:
  805. amdgpu_gfx_scratch_free(adev, scratch);
  806. return r;
  807. }
  808. static void gfx_v8_0_free_microcode(struct amdgpu_device *adev) {
  809. release_firmware(adev->gfx.pfp_fw);
  810. adev->gfx.pfp_fw = NULL;
  811. release_firmware(adev->gfx.me_fw);
  812. adev->gfx.me_fw = NULL;
  813. release_firmware(adev->gfx.ce_fw);
  814. adev->gfx.ce_fw = NULL;
  815. release_firmware(adev->gfx.rlc_fw);
  816. adev->gfx.rlc_fw = NULL;
  817. release_firmware(adev->gfx.mec_fw);
  818. adev->gfx.mec_fw = NULL;
  819. if ((adev->asic_type != CHIP_STONEY) &&
  820. (adev->asic_type != CHIP_TOPAZ))
  821. release_firmware(adev->gfx.mec2_fw);
  822. adev->gfx.mec2_fw = NULL;
  823. kfree(adev->gfx.rlc.register_list_format);
  824. }
  825. static int gfx_v8_0_init_microcode(struct amdgpu_device *adev)
  826. {
  827. const char *chip_name;
  828. char fw_name[30];
  829. int err;
  830. struct amdgpu_firmware_info *info = NULL;
  831. const struct common_firmware_header *header = NULL;
  832. const struct gfx_firmware_header_v1_0 *cp_hdr;
  833. const struct rlc_firmware_header_v2_0 *rlc_hdr;
  834. unsigned int *tmp = NULL, i;
  835. DRM_DEBUG("\n");
  836. switch (adev->asic_type) {
  837. case CHIP_TOPAZ:
  838. chip_name = "topaz";
  839. break;
  840. case CHIP_TONGA:
  841. chip_name = "tonga";
  842. break;
  843. case CHIP_CARRIZO:
  844. chip_name = "carrizo";
  845. break;
  846. case CHIP_FIJI:
  847. chip_name = "fiji";
  848. break;
  849. case CHIP_POLARIS11:
  850. chip_name = "polaris11";
  851. break;
  852. case CHIP_POLARIS10:
  853. chip_name = "polaris10";
  854. break;
  855. case CHIP_POLARIS12:
  856. chip_name = "polaris12";
  857. break;
  858. case CHIP_STONEY:
  859. chip_name = "stoney";
  860. break;
  861. default:
  862. BUG();
  863. }
  864. snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_pfp.bin", chip_name);
  865. err = request_firmware(&adev->gfx.pfp_fw, fw_name, adev->dev);
  866. if (err)
  867. goto out;
  868. err = amdgpu_ucode_validate(adev->gfx.pfp_fw);
  869. if (err)
  870. goto out;
  871. cp_hdr = (const struct gfx_firmware_header_v1_0 *)adev->gfx.pfp_fw->data;
  872. adev->gfx.pfp_fw_version = le32_to_cpu(cp_hdr->header.ucode_version);
  873. adev->gfx.pfp_feature_version = le32_to_cpu(cp_hdr->ucode_feature_version);
  874. snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_me.bin", chip_name);
  875. err = request_firmware(&adev->gfx.me_fw, fw_name, adev->dev);
  876. if (err)
  877. goto out;
  878. err = amdgpu_ucode_validate(adev->gfx.me_fw);
  879. if (err)
  880. goto out;
  881. cp_hdr = (const struct gfx_firmware_header_v1_0 *)adev->gfx.me_fw->data;
  882. adev->gfx.me_fw_version = le32_to_cpu(cp_hdr->header.ucode_version);
  883. /* chain ib ucode isn't formal released, just disable it by far
  884. * TODO: when ucod ready we should use ucode version to judge if
  885. * chain-ib support or not.
  886. */
  887. adev->virt.chained_ib_support = false;
  888. adev->gfx.me_feature_version = le32_to_cpu(cp_hdr->ucode_feature_version);
  889. snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_ce.bin", chip_name);
  890. err = request_firmware(&adev->gfx.ce_fw, fw_name, adev->dev);
  891. if (err)
  892. goto out;
  893. err = amdgpu_ucode_validate(adev->gfx.ce_fw);
  894. if (err)
  895. goto out;
  896. cp_hdr = (const struct gfx_firmware_header_v1_0 *)adev->gfx.ce_fw->data;
  897. adev->gfx.ce_fw_version = le32_to_cpu(cp_hdr->header.ucode_version);
  898. adev->gfx.ce_feature_version = le32_to_cpu(cp_hdr->ucode_feature_version);
  899. snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_rlc.bin", chip_name);
  900. err = request_firmware(&adev->gfx.rlc_fw, fw_name, adev->dev);
  901. if (err)
  902. goto out;
  903. err = amdgpu_ucode_validate(adev->gfx.rlc_fw);
  904. rlc_hdr = (const struct rlc_firmware_header_v2_0 *)adev->gfx.rlc_fw->data;
  905. adev->gfx.rlc_fw_version = le32_to_cpu(rlc_hdr->header.ucode_version);
  906. adev->gfx.rlc_feature_version = le32_to_cpu(rlc_hdr->ucode_feature_version);
  907. adev->gfx.rlc.save_and_restore_offset =
  908. le32_to_cpu(rlc_hdr->save_and_restore_offset);
  909. adev->gfx.rlc.clear_state_descriptor_offset =
  910. le32_to_cpu(rlc_hdr->clear_state_descriptor_offset);
  911. adev->gfx.rlc.avail_scratch_ram_locations =
  912. le32_to_cpu(rlc_hdr->avail_scratch_ram_locations);
  913. adev->gfx.rlc.reg_restore_list_size =
  914. le32_to_cpu(rlc_hdr->reg_restore_list_size);
  915. adev->gfx.rlc.reg_list_format_start =
  916. le32_to_cpu(rlc_hdr->reg_list_format_start);
  917. adev->gfx.rlc.reg_list_format_separate_start =
  918. le32_to_cpu(rlc_hdr->reg_list_format_separate_start);
  919. adev->gfx.rlc.starting_offsets_start =
  920. le32_to_cpu(rlc_hdr->starting_offsets_start);
  921. adev->gfx.rlc.reg_list_format_size_bytes =
  922. le32_to_cpu(rlc_hdr->reg_list_format_size_bytes);
  923. adev->gfx.rlc.reg_list_size_bytes =
  924. le32_to_cpu(rlc_hdr->reg_list_size_bytes);
  925. adev->gfx.rlc.register_list_format =
  926. kmalloc(adev->gfx.rlc.reg_list_format_size_bytes +
  927. adev->gfx.rlc.reg_list_size_bytes, GFP_KERNEL);
  928. if (!adev->gfx.rlc.register_list_format) {
  929. err = -ENOMEM;
  930. goto out;
  931. }
  932. tmp = (unsigned int *)((uintptr_t)rlc_hdr +
  933. le32_to_cpu(rlc_hdr->reg_list_format_array_offset_bytes));
  934. for (i = 0 ; i < (rlc_hdr->reg_list_format_size_bytes >> 2); i++)
  935. adev->gfx.rlc.register_list_format[i] = le32_to_cpu(tmp[i]);
  936. adev->gfx.rlc.register_restore = adev->gfx.rlc.register_list_format + i;
  937. tmp = (unsigned int *)((uintptr_t)rlc_hdr +
  938. le32_to_cpu(rlc_hdr->reg_list_array_offset_bytes));
  939. for (i = 0 ; i < (rlc_hdr->reg_list_size_bytes >> 2); i++)
  940. adev->gfx.rlc.register_restore[i] = le32_to_cpu(tmp[i]);
  941. snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mec.bin", chip_name);
  942. err = request_firmware(&adev->gfx.mec_fw, fw_name, adev->dev);
  943. if (err)
  944. goto out;
  945. err = amdgpu_ucode_validate(adev->gfx.mec_fw);
  946. if (err)
  947. goto out;
  948. cp_hdr = (const struct gfx_firmware_header_v1_0 *)adev->gfx.mec_fw->data;
  949. adev->gfx.mec_fw_version = le32_to_cpu(cp_hdr->header.ucode_version);
  950. adev->gfx.mec_feature_version = le32_to_cpu(cp_hdr->ucode_feature_version);
  951. if ((adev->asic_type != CHIP_STONEY) &&
  952. (adev->asic_type != CHIP_TOPAZ)) {
  953. snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mec2.bin", chip_name);
  954. err = request_firmware(&adev->gfx.mec2_fw, fw_name, adev->dev);
  955. if (!err) {
  956. err = amdgpu_ucode_validate(adev->gfx.mec2_fw);
  957. if (err)
  958. goto out;
  959. cp_hdr = (const struct gfx_firmware_header_v1_0 *)
  960. adev->gfx.mec2_fw->data;
  961. adev->gfx.mec2_fw_version =
  962. le32_to_cpu(cp_hdr->header.ucode_version);
  963. adev->gfx.mec2_feature_version =
  964. le32_to_cpu(cp_hdr->ucode_feature_version);
  965. } else {
  966. err = 0;
  967. adev->gfx.mec2_fw = NULL;
  968. }
  969. }
  970. if (adev->firmware.load_type == AMDGPU_FW_LOAD_SMU) {
  971. info = &adev->firmware.ucode[AMDGPU_UCODE_ID_CP_PFP];
  972. info->ucode_id = AMDGPU_UCODE_ID_CP_PFP;
  973. info->fw = adev->gfx.pfp_fw;
  974. header = (const struct common_firmware_header *)info->fw->data;
  975. adev->firmware.fw_size +=
  976. ALIGN(le32_to_cpu(header->ucode_size_bytes), PAGE_SIZE);
  977. info = &adev->firmware.ucode[AMDGPU_UCODE_ID_CP_ME];
  978. info->ucode_id = AMDGPU_UCODE_ID_CP_ME;
  979. info->fw = adev->gfx.me_fw;
  980. header = (const struct common_firmware_header *)info->fw->data;
  981. adev->firmware.fw_size +=
  982. ALIGN(le32_to_cpu(header->ucode_size_bytes), PAGE_SIZE);
  983. info = &adev->firmware.ucode[AMDGPU_UCODE_ID_CP_CE];
  984. info->ucode_id = AMDGPU_UCODE_ID_CP_CE;
  985. info->fw = adev->gfx.ce_fw;
  986. header = (const struct common_firmware_header *)info->fw->data;
  987. adev->firmware.fw_size +=
  988. ALIGN(le32_to_cpu(header->ucode_size_bytes), PAGE_SIZE);
  989. info = &adev->firmware.ucode[AMDGPU_UCODE_ID_RLC_G];
  990. info->ucode_id = AMDGPU_UCODE_ID_RLC_G;
  991. info->fw = adev->gfx.rlc_fw;
  992. header = (const struct common_firmware_header *)info->fw->data;
  993. adev->firmware.fw_size +=
  994. ALIGN(le32_to_cpu(header->ucode_size_bytes), PAGE_SIZE);
  995. info = &adev->firmware.ucode[AMDGPU_UCODE_ID_CP_MEC1];
  996. info->ucode_id = AMDGPU_UCODE_ID_CP_MEC1;
  997. info->fw = adev->gfx.mec_fw;
  998. header = (const struct common_firmware_header *)info->fw->data;
  999. adev->firmware.fw_size +=
  1000. ALIGN(le32_to_cpu(header->ucode_size_bytes), PAGE_SIZE);
  1001. /* we need account JT in */
  1002. cp_hdr = (const struct gfx_firmware_header_v1_0 *)adev->gfx.mec_fw->data;
  1003. adev->firmware.fw_size +=
  1004. ALIGN(le32_to_cpu(cp_hdr->jt_size) << 2, PAGE_SIZE);
  1005. if (amdgpu_sriov_vf(adev)) {
  1006. info = &adev->firmware.ucode[AMDGPU_UCODE_ID_STORAGE];
  1007. info->ucode_id = AMDGPU_UCODE_ID_STORAGE;
  1008. info->fw = adev->gfx.mec_fw;
  1009. adev->firmware.fw_size +=
  1010. ALIGN(le32_to_cpu(64 * PAGE_SIZE), PAGE_SIZE);
  1011. }
  1012. if (adev->gfx.mec2_fw) {
  1013. info = &adev->firmware.ucode[AMDGPU_UCODE_ID_CP_MEC2];
  1014. info->ucode_id = AMDGPU_UCODE_ID_CP_MEC2;
  1015. info->fw = adev->gfx.mec2_fw;
  1016. header = (const struct common_firmware_header *)info->fw->data;
  1017. adev->firmware.fw_size +=
  1018. ALIGN(le32_to_cpu(header->ucode_size_bytes), PAGE_SIZE);
  1019. }
  1020. }
  1021. out:
  1022. if (err) {
  1023. dev_err(adev->dev,
  1024. "gfx8: Failed to load firmware \"%s\"\n",
  1025. fw_name);
  1026. release_firmware(adev->gfx.pfp_fw);
  1027. adev->gfx.pfp_fw = NULL;
  1028. release_firmware(adev->gfx.me_fw);
  1029. adev->gfx.me_fw = NULL;
  1030. release_firmware(adev->gfx.ce_fw);
  1031. adev->gfx.ce_fw = NULL;
  1032. release_firmware(adev->gfx.rlc_fw);
  1033. adev->gfx.rlc_fw = NULL;
  1034. release_firmware(adev->gfx.mec_fw);
  1035. adev->gfx.mec_fw = NULL;
  1036. release_firmware(adev->gfx.mec2_fw);
  1037. adev->gfx.mec2_fw = NULL;
  1038. }
  1039. return err;
  1040. }
  1041. static void gfx_v8_0_get_csb_buffer(struct amdgpu_device *adev,
  1042. volatile u32 *buffer)
  1043. {
  1044. u32 count = 0, i;
  1045. const struct cs_section_def *sect = NULL;
  1046. const struct cs_extent_def *ext = NULL;
  1047. if (adev->gfx.rlc.cs_data == NULL)
  1048. return;
  1049. if (buffer == NULL)
  1050. return;
  1051. buffer[count++] = cpu_to_le32(PACKET3(PACKET3_PREAMBLE_CNTL, 0));
  1052. buffer[count++] = cpu_to_le32(PACKET3_PREAMBLE_BEGIN_CLEAR_STATE);
  1053. buffer[count++] = cpu_to_le32(PACKET3(PACKET3_CONTEXT_CONTROL, 1));
  1054. buffer[count++] = cpu_to_le32(0x80000000);
  1055. buffer[count++] = cpu_to_le32(0x80000000);
  1056. for (sect = adev->gfx.rlc.cs_data; sect->section != NULL; ++sect) {
  1057. for (ext = sect->section; ext->extent != NULL; ++ext) {
  1058. if (sect->id == SECT_CONTEXT) {
  1059. buffer[count++] =
  1060. cpu_to_le32(PACKET3(PACKET3_SET_CONTEXT_REG, ext->reg_count));
  1061. buffer[count++] = cpu_to_le32(ext->reg_index -
  1062. PACKET3_SET_CONTEXT_REG_START);
  1063. for (i = 0; i < ext->reg_count; i++)
  1064. buffer[count++] = cpu_to_le32(ext->extent[i]);
  1065. } else {
  1066. return;
  1067. }
  1068. }
  1069. }
  1070. buffer[count++] = cpu_to_le32(PACKET3(PACKET3_SET_CONTEXT_REG, 2));
  1071. buffer[count++] = cpu_to_le32(mmPA_SC_RASTER_CONFIG -
  1072. PACKET3_SET_CONTEXT_REG_START);
  1073. buffer[count++] = cpu_to_le32(adev->gfx.config.rb_config[0][0].raster_config);
  1074. buffer[count++] = cpu_to_le32(adev->gfx.config.rb_config[0][0].raster_config_1);
  1075. buffer[count++] = cpu_to_le32(PACKET3(PACKET3_PREAMBLE_CNTL, 0));
  1076. buffer[count++] = cpu_to_le32(PACKET3_PREAMBLE_END_CLEAR_STATE);
  1077. buffer[count++] = cpu_to_le32(PACKET3(PACKET3_CLEAR_STATE, 0));
  1078. buffer[count++] = cpu_to_le32(0);
  1079. }
  1080. static void cz_init_cp_jump_table(struct amdgpu_device *adev)
  1081. {
  1082. const __le32 *fw_data;
  1083. volatile u32 *dst_ptr;
  1084. int me, i, max_me = 4;
  1085. u32 bo_offset = 0;
  1086. u32 table_offset, table_size;
  1087. if (adev->asic_type == CHIP_CARRIZO)
  1088. max_me = 5;
  1089. /* write the cp table buffer */
  1090. dst_ptr = adev->gfx.rlc.cp_table_ptr;
  1091. for (me = 0; me < max_me; me++) {
  1092. if (me == 0) {
  1093. const struct gfx_firmware_header_v1_0 *hdr =
  1094. (const struct gfx_firmware_header_v1_0 *)adev->gfx.ce_fw->data;
  1095. fw_data = (const __le32 *)
  1096. (adev->gfx.ce_fw->data +
  1097. le32_to_cpu(hdr->header.ucode_array_offset_bytes));
  1098. table_offset = le32_to_cpu(hdr->jt_offset);
  1099. table_size = le32_to_cpu(hdr->jt_size);
  1100. } else if (me == 1) {
  1101. const struct gfx_firmware_header_v1_0 *hdr =
  1102. (const struct gfx_firmware_header_v1_0 *)adev->gfx.pfp_fw->data;
  1103. fw_data = (const __le32 *)
  1104. (adev->gfx.pfp_fw->data +
  1105. le32_to_cpu(hdr->header.ucode_array_offset_bytes));
  1106. table_offset = le32_to_cpu(hdr->jt_offset);
  1107. table_size = le32_to_cpu(hdr->jt_size);
  1108. } else if (me == 2) {
  1109. const struct gfx_firmware_header_v1_0 *hdr =
  1110. (const struct gfx_firmware_header_v1_0 *)adev->gfx.me_fw->data;
  1111. fw_data = (const __le32 *)
  1112. (adev->gfx.me_fw->data +
  1113. le32_to_cpu(hdr->header.ucode_array_offset_bytes));
  1114. table_offset = le32_to_cpu(hdr->jt_offset);
  1115. table_size = le32_to_cpu(hdr->jt_size);
  1116. } else if (me == 3) {
  1117. const struct gfx_firmware_header_v1_0 *hdr =
  1118. (const struct gfx_firmware_header_v1_0 *)adev->gfx.mec_fw->data;
  1119. fw_data = (const __le32 *)
  1120. (adev->gfx.mec_fw->data +
  1121. le32_to_cpu(hdr->header.ucode_array_offset_bytes));
  1122. table_offset = le32_to_cpu(hdr->jt_offset);
  1123. table_size = le32_to_cpu(hdr->jt_size);
  1124. } else if (me == 4) {
  1125. const struct gfx_firmware_header_v1_0 *hdr =
  1126. (const struct gfx_firmware_header_v1_0 *)adev->gfx.mec2_fw->data;
  1127. fw_data = (const __le32 *)
  1128. (adev->gfx.mec2_fw->data +
  1129. le32_to_cpu(hdr->header.ucode_array_offset_bytes));
  1130. table_offset = le32_to_cpu(hdr->jt_offset);
  1131. table_size = le32_to_cpu(hdr->jt_size);
  1132. }
  1133. for (i = 0; i < table_size; i ++) {
  1134. dst_ptr[bo_offset + i] =
  1135. cpu_to_le32(le32_to_cpu(fw_data[table_offset + i]));
  1136. }
  1137. bo_offset += table_size;
  1138. }
  1139. }
  1140. static void gfx_v8_0_rlc_fini(struct amdgpu_device *adev)
  1141. {
  1142. int r;
  1143. /* clear state block */
  1144. if (adev->gfx.rlc.clear_state_obj) {
  1145. r = amdgpu_bo_reserve(adev->gfx.rlc.clear_state_obj, true);
  1146. if (unlikely(r != 0))
  1147. dev_warn(adev->dev, "(%d) reserve RLC cbs bo failed\n", r);
  1148. amdgpu_bo_unpin(adev->gfx.rlc.clear_state_obj);
  1149. amdgpu_bo_unreserve(adev->gfx.rlc.clear_state_obj);
  1150. amdgpu_bo_unref(&adev->gfx.rlc.clear_state_obj);
  1151. adev->gfx.rlc.clear_state_obj = NULL;
  1152. }
  1153. /* jump table block */
  1154. if (adev->gfx.rlc.cp_table_obj) {
  1155. r = amdgpu_bo_reserve(adev->gfx.rlc.cp_table_obj, true);
  1156. if (unlikely(r != 0))
  1157. dev_warn(adev->dev, "(%d) reserve RLC cp table bo failed\n", r);
  1158. amdgpu_bo_unpin(adev->gfx.rlc.cp_table_obj);
  1159. amdgpu_bo_unreserve(adev->gfx.rlc.cp_table_obj);
  1160. amdgpu_bo_unref(&adev->gfx.rlc.cp_table_obj);
  1161. adev->gfx.rlc.cp_table_obj = NULL;
  1162. }
  1163. }
  1164. static int gfx_v8_0_rlc_init(struct amdgpu_device *adev)
  1165. {
  1166. volatile u32 *dst_ptr;
  1167. u32 dws;
  1168. const struct cs_section_def *cs_data;
  1169. int r;
  1170. adev->gfx.rlc.cs_data = vi_cs_data;
  1171. cs_data = adev->gfx.rlc.cs_data;
  1172. if (cs_data) {
  1173. /* clear state block */
  1174. adev->gfx.rlc.clear_state_size = dws = gfx_v8_0_get_csb_size(adev);
  1175. if (adev->gfx.rlc.clear_state_obj == NULL) {
  1176. r = amdgpu_bo_create(adev, dws * 4, PAGE_SIZE, true,
  1177. AMDGPU_GEM_DOMAIN_VRAM,
  1178. AMDGPU_GEM_CREATE_CPU_ACCESS_REQUIRED |
  1179. AMDGPU_GEM_CREATE_VRAM_CONTIGUOUS,
  1180. NULL, NULL,
  1181. &adev->gfx.rlc.clear_state_obj);
  1182. if (r) {
  1183. dev_warn(adev->dev, "(%d) create RLC c bo failed\n", r);
  1184. gfx_v8_0_rlc_fini(adev);
  1185. return r;
  1186. }
  1187. }
  1188. r = amdgpu_bo_reserve(adev->gfx.rlc.clear_state_obj, false);
  1189. if (unlikely(r != 0)) {
  1190. gfx_v8_0_rlc_fini(adev);
  1191. return r;
  1192. }
  1193. r = amdgpu_bo_pin(adev->gfx.rlc.clear_state_obj, AMDGPU_GEM_DOMAIN_VRAM,
  1194. &adev->gfx.rlc.clear_state_gpu_addr);
  1195. if (r) {
  1196. amdgpu_bo_unreserve(adev->gfx.rlc.clear_state_obj);
  1197. dev_warn(adev->dev, "(%d) pin RLC cbs bo failed\n", r);
  1198. gfx_v8_0_rlc_fini(adev);
  1199. return r;
  1200. }
  1201. r = amdgpu_bo_kmap(adev->gfx.rlc.clear_state_obj, (void **)&adev->gfx.rlc.cs_ptr);
  1202. if (r) {
  1203. dev_warn(adev->dev, "(%d) map RLC cbs bo failed\n", r);
  1204. gfx_v8_0_rlc_fini(adev);
  1205. return r;
  1206. }
  1207. /* set up the cs buffer */
  1208. dst_ptr = adev->gfx.rlc.cs_ptr;
  1209. gfx_v8_0_get_csb_buffer(adev, dst_ptr);
  1210. amdgpu_bo_kunmap(adev->gfx.rlc.clear_state_obj);
  1211. amdgpu_bo_unreserve(adev->gfx.rlc.clear_state_obj);
  1212. }
  1213. if ((adev->asic_type == CHIP_CARRIZO) ||
  1214. (adev->asic_type == CHIP_STONEY)) {
  1215. adev->gfx.rlc.cp_table_size = ALIGN(96 * 5 * 4, 2048) + (64 * 1024); /* JT + GDS */
  1216. if (adev->gfx.rlc.cp_table_obj == NULL) {
  1217. r = amdgpu_bo_create(adev, adev->gfx.rlc.cp_table_size, PAGE_SIZE, true,
  1218. AMDGPU_GEM_DOMAIN_VRAM,
  1219. AMDGPU_GEM_CREATE_CPU_ACCESS_REQUIRED |
  1220. AMDGPU_GEM_CREATE_VRAM_CONTIGUOUS,
  1221. NULL, NULL,
  1222. &adev->gfx.rlc.cp_table_obj);
  1223. if (r) {
  1224. dev_warn(adev->dev, "(%d) create RLC cp table bo failed\n", r);
  1225. return r;
  1226. }
  1227. }
  1228. r = amdgpu_bo_reserve(adev->gfx.rlc.cp_table_obj, false);
  1229. if (unlikely(r != 0)) {
  1230. dev_warn(adev->dev, "(%d) reserve RLC cp table bo failed\n", r);
  1231. return r;
  1232. }
  1233. r = amdgpu_bo_pin(adev->gfx.rlc.cp_table_obj, AMDGPU_GEM_DOMAIN_VRAM,
  1234. &adev->gfx.rlc.cp_table_gpu_addr);
  1235. if (r) {
  1236. amdgpu_bo_unreserve(adev->gfx.rlc.cp_table_obj);
  1237. dev_warn(adev->dev, "(%d) pin RLC cp table bo failed\n", r);
  1238. return r;
  1239. }
  1240. r = amdgpu_bo_kmap(adev->gfx.rlc.cp_table_obj, (void **)&adev->gfx.rlc.cp_table_ptr);
  1241. if (r) {
  1242. dev_warn(adev->dev, "(%d) map RLC cp table bo failed\n", r);
  1243. return r;
  1244. }
  1245. cz_init_cp_jump_table(adev);
  1246. amdgpu_bo_kunmap(adev->gfx.rlc.cp_table_obj);
  1247. amdgpu_bo_unreserve(adev->gfx.rlc.cp_table_obj);
  1248. }
  1249. return 0;
  1250. }
  1251. static void gfx_v8_0_mec_fini(struct amdgpu_device *adev)
  1252. {
  1253. int r;
  1254. if (adev->gfx.mec.hpd_eop_obj) {
  1255. r = amdgpu_bo_reserve(adev->gfx.mec.hpd_eop_obj, true);
  1256. if (unlikely(r != 0))
  1257. dev_warn(adev->dev, "(%d) reserve HPD EOP bo failed\n", r);
  1258. amdgpu_bo_unpin(adev->gfx.mec.hpd_eop_obj);
  1259. amdgpu_bo_unreserve(adev->gfx.mec.hpd_eop_obj);
  1260. amdgpu_bo_unref(&adev->gfx.mec.hpd_eop_obj);
  1261. adev->gfx.mec.hpd_eop_obj = NULL;
  1262. }
  1263. }
  1264. static int gfx_v8_0_kiq_init_ring(struct amdgpu_device *adev,
  1265. struct amdgpu_ring *ring,
  1266. struct amdgpu_irq_src *irq)
  1267. {
  1268. struct amdgpu_kiq *kiq = &adev->gfx.kiq;
  1269. int r = 0;
  1270. r = amdgpu_wb_get(adev, &adev->virt.reg_val_offs);
  1271. if (r)
  1272. return r;
  1273. ring->adev = NULL;
  1274. ring->ring_obj = NULL;
  1275. ring->use_doorbell = true;
  1276. ring->doorbell_index = AMDGPU_DOORBELL_KIQ;
  1277. if (adev->gfx.mec2_fw) {
  1278. ring->me = 2;
  1279. ring->pipe = 0;
  1280. } else {
  1281. ring->me = 1;
  1282. ring->pipe = 1;
  1283. }
  1284. ring->queue = 0;
  1285. ring->eop_gpu_addr = kiq->eop_gpu_addr;
  1286. sprintf(ring->name, "kiq %d.%d.%d", ring->me, ring->pipe, ring->queue);
  1287. r = amdgpu_ring_init(adev, ring, 1024,
  1288. irq, AMDGPU_CP_KIQ_IRQ_DRIVER0);
  1289. if (r)
  1290. dev_warn(adev->dev, "(%d) failed to init kiq ring\n", r);
  1291. return r;
  1292. }
  1293. static void gfx_v8_0_kiq_free_ring(struct amdgpu_ring *ring,
  1294. struct amdgpu_irq_src *irq)
  1295. {
  1296. amdgpu_wb_free(ring->adev, ring->adev->virt.reg_val_offs);
  1297. amdgpu_ring_fini(ring);
  1298. }
  1299. #define MEC_HPD_SIZE 2048
  1300. static int gfx_v8_0_mec_init(struct amdgpu_device *adev)
  1301. {
  1302. int r;
  1303. u32 *hpd;
  1304. /*
  1305. * we assign only 1 pipe because all other pipes will
  1306. * be handled by KFD
  1307. */
  1308. adev->gfx.mec.num_mec = 1;
  1309. adev->gfx.mec.num_pipe = 1;
  1310. adev->gfx.mec.num_queue = adev->gfx.mec.num_mec * adev->gfx.mec.num_pipe * 8;
  1311. if (adev->gfx.mec.hpd_eop_obj == NULL) {
  1312. r = amdgpu_bo_create(adev,
  1313. adev->gfx.mec.num_queue * MEC_HPD_SIZE,
  1314. PAGE_SIZE, true,
  1315. AMDGPU_GEM_DOMAIN_GTT, 0, NULL, NULL,
  1316. &adev->gfx.mec.hpd_eop_obj);
  1317. if (r) {
  1318. dev_warn(adev->dev, "(%d) create HDP EOP bo failed\n", r);
  1319. return r;
  1320. }
  1321. }
  1322. r = amdgpu_bo_reserve(adev->gfx.mec.hpd_eop_obj, false);
  1323. if (unlikely(r != 0)) {
  1324. gfx_v8_0_mec_fini(adev);
  1325. return r;
  1326. }
  1327. r = amdgpu_bo_pin(adev->gfx.mec.hpd_eop_obj, AMDGPU_GEM_DOMAIN_GTT,
  1328. &adev->gfx.mec.hpd_eop_gpu_addr);
  1329. if (r) {
  1330. dev_warn(adev->dev, "(%d) pin HDP EOP bo failed\n", r);
  1331. gfx_v8_0_mec_fini(adev);
  1332. return r;
  1333. }
  1334. r = amdgpu_bo_kmap(adev->gfx.mec.hpd_eop_obj, (void **)&hpd);
  1335. if (r) {
  1336. dev_warn(adev->dev, "(%d) map HDP EOP bo failed\n", r);
  1337. gfx_v8_0_mec_fini(adev);
  1338. return r;
  1339. }
  1340. memset(hpd, 0, adev->gfx.mec.num_queue * MEC_HPD_SIZE);
  1341. amdgpu_bo_kunmap(adev->gfx.mec.hpd_eop_obj);
  1342. amdgpu_bo_unreserve(adev->gfx.mec.hpd_eop_obj);
  1343. return 0;
  1344. }
  1345. static void gfx_v8_0_kiq_fini(struct amdgpu_device *adev)
  1346. {
  1347. struct amdgpu_kiq *kiq = &adev->gfx.kiq;
  1348. amdgpu_bo_free_kernel(&kiq->eop_obj, &kiq->eop_gpu_addr, NULL);
  1349. }
  1350. static int gfx_v8_0_kiq_init(struct amdgpu_device *adev)
  1351. {
  1352. int r;
  1353. u32 *hpd;
  1354. struct amdgpu_kiq *kiq = &adev->gfx.kiq;
  1355. r = amdgpu_bo_create_kernel(adev, MEC_HPD_SIZE, PAGE_SIZE,
  1356. AMDGPU_GEM_DOMAIN_GTT, &kiq->eop_obj,
  1357. &kiq->eop_gpu_addr, (void **)&hpd);
  1358. if (r) {
  1359. dev_warn(adev->dev, "failed to create KIQ bo (%d).\n", r);
  1360. return r;
  1361. }
  1362. memset(hpd, 0, MEC_HPD_SIZE);
  1363. r = amdgpu_bo_reserve(kiq->eop_obj, true);
  1364. if (unlikely(r != 0))
  1365. dev_warn(adev->dev, "(%d) reserve kiq eop bo failed\n", r);
  1366. amdgpu_bo_kunmap(kiq->eop_obj);
  1367. amdgpu_bo_unreserve(kiq->eop_obj);
  1368. return 0;
  1369. }
  1370. static const u32 vgpr_init_compute_shader[] =
  1371. {
  1372. 0x7e000209, 0x7e020208,
  1373. 0x7e040207, 0x7e060206,
  1374. 0x7e080205, 0x7e0a0204,
  1375. 0x7e0c0203, 0x7e0e0202,
  1376. 0x7e100201, 0x7e120200,
  1377. 0x7e140209, 0x7e160208,
  1378. 0x7e180207, 0x7e1a0206,
  1379. 0x7e1c0205, 0x7e1e0204,
  1380. 0x7e200203, 0x7e220202,
  1381. 0x7e240201, 0x7e260200,
  1382. 0x7e280209, 0x7e2a0208,
  1383. 0x7e2c0207, 0x7e2e0206,
  1384. 0x7e300205, 0x7e320204,
  1385. 0x7e340203, 0x7e360202,
  1386. 0x7e380201, 0x7e3a0200,
  1387. 0x7e3c0209, 0x7e3e0208,
  1388. 0x7e400207, 0x7e420206,
  1389. 0x7e440205, 0x7e460204,
  1390. 0x7e480203, 0x7e4a0202,
  1391. 0x7e4c0201, 0x7e4e0200,
  1392. 0x7e500209, 0x7e520208,
  1393. 0x7e540207, 0x7e560206,
  1394. 0x7e580205, 0x7e5a0204,
  1395. 0x7e5c0203, 0x7e5e0202,
  1396. 0x7e600201, 0x7e620200,
  1397. 0x7e640209, 0x7e660208,
  1398. 0x7e680207, 0x7e6a0206,
  1399. 0x7e6c0205, 0x7e6e0204,
  1400. 0x7e700203, 0x7e720202,
  1401. 0x7e740201, 0x7e760200,
  1402. 0x7e780209, 0x7e7a0208,
  1403. 0x7e7c0207, 0x7e7e0206,
  1404. 0xbf8a0000, 0xbf810000,
  1405. };
  1406. static const u32 sgpr_init_compute_shader[] =
  1407. {
  1408. 0xbe8a0100, 0xbe8c0102,
  1409. 0xbe8e0104, 0xbe900106,
  1410. 0xbe920108, 0xbe940100,
  1411. 0xbe960102, 0xbe980104,
  1412. 0xbe9a0106, 0xbe9c0108,
  1413. 0xbe9e0100, 0xbea00102,
  1414. 0xbea20104, 0xbea40106,
  1415. 0xbea60108, 0xbea80100,
  1416. 0xbeaa0102, 0xbeac0104,
  1417. 0xbeae0106, 0xbeb00108,
  1418. 0xbeb20100, 0xbeb40102,
  1419. 0xbeb60104, 0xbeb80106,
  1420. 0xbeba0108, 0xbebc0100,
  1421. 0xbebe0102, 0xbec00104,
  1422. 0xbec20106, 0xbec40108,
  1423. 0xbec60100, 0xbec80102,
  1424. 0xbee60004, 0xbee70005,
  1425. 0xbeea0006, 0xbeeb0007,
  1426. 0xbee80008, 0xbee90009,
  1427. 0xbefc0000, 0xbf8a0000,
  1428. 0xbf810000, 0x00000000,
  1429. };
  1430. static const u32 vgpr_init_regs[] =
  1431. {
  1432. mmCOMPUTE_STATIC_THREAD_MGMT_SE0, 0xffffffff,
  1433. mmCOMPUTE_RESOURCE_LIMITS, 0,
  1434. mmCOMPUTE_NUM_THREAD_X, 256*4,
  1435. mmCOMPUTE_NUM_THREAD_Y, 1,
  1436. mmCOMPUTE_NUM_THREAD_Z, 1,
  1437. mmCOMPUTE_PGM_RSRC2, 20,
  1438. mmCOMPUTE_USER_DATA_0, 0xedcedc00,
  1439. mmCOMPUTE_USER_DATA_1, 0xedcedc01,
  1440. mmCOMPUTE_USER_DATA_2, 0xedcedc02,
  1441. mmCOMPUTE_USER_DATA_3, 0xedcedc03,
  1442. mmCOMPUTE_USER_DATA_4, 0xedcedc04,
  1443. mmCOMPUTE_USER_DATA_5, 0xedcedc05,
  1444. mmCOMPUTE_USER_DATA_6, 0xedcedc06,
  1445. mmCOMPUTE_USER_DATA_7, 0xedcedc07,
  1446. mmCOMPUTE_USER_DATA_8, 0xedcedc08,
  1447. mmCOMPUTE_USER_DATA_9, 0xedcedc09,
  1448. };
  1449. static const u32 sgpr1_init_regs[] =
  1450. {
  1451. mmCOMPUTE_STATIC_THREAD_MGMT_SE0, 0x0f,
  1452. mmCOMPUTE_RESOURCE_LIMITS, 0x1000000,
  1453. mmCOMPUTE_NUM_THREAD_X, 256*5,
  1454. mmCOMPUTE_NUM_THREAD_Y, 1,
  1455. mmCOMPUTE_NUM_THREAD_Z, 1,
  1456. mmCOMPUTE_PGM_RSRC2, 20,
  1457. mmCOMPUTE_USER_DATA_0, 0xedcedc00,
  1458. mmCOMPUTE_USER_DATA_1, 0xedcedc01,
  1459. mmCOMPUTE_USER_DATA_2, 0xedcedc02,
  1460. mmCOMPUTE_USER_DATA_3, 0xedcedc03,
  1461. mmCOMPUTE_USER_DATA_4, 0xedcedc04,
  1462. mmCOMPUTE_USER_DATA_5, 0xedcedc05,
  1463. mmCOMPUTE_USER_DATA_6, 0xedcedc06,
  1464. mmCOMPUTE_USER_DATA_7, 0xedcedc07,
  1465. mmCOMPUTE_USER_DATA_8, 0xedcedc08,
  1466. mmCOMPUTE_USER_DATA_9, 0xedcedc09,
  1467. };
  1468. static const u32 sgpr2_init_regs[] =
  1469. {
  1470. mmCOMPUTE_STATIC_THREAD_MGMT_SE0, 0xf0,
  1471. mmCOMPUTE_RESOURCE_LIMITS, 0x1000000,
  1472. mmCOMPUTE_NUM_THREAD_X, 256*5,
  1473. mmCOMPUTE_NUM_THREAD_Y, 1,
  1474. mmCOMPUTE_NUM_THREAD_Z, 1,
  1475. mmCOMPUTE_PGM_RSRC2, 20,
  1476. mmCOMPUTE_USER_DATA_0, 0xedcedc00,
  1477. mmCOMPUTE_USER_DATA_1, 0xedcedc01,
  1478. mmCOMPUTE_USER_DATA_2, 0xedcedc02,
  1479. mmCOMPUTE_USER_DATA_3, 0xedcedc03,
  1480. mmCOMPUTE_USER_DATA_4, 0xedcedc04,
  1481. mmCOMPUTE_USER_DATA_5, 0xedcedc05,
  1482. mmCOMPUTE_USER_DATA_6, 0xedcedc06,
  1483. mmCOMPUTE_USER_DATA_7, 0xedcedc07,
  1484. mmCOMPUTE_USER_DATA_8, 0xedcedc08,
  1485. mmCOMPUTE_USER_DATA_9, 0xedcedc09,
  1486. };
  1487. static const u32 sec_ded_counter_registers[] =
  1488. {
  1489. mmCPC_EDC_ATC_CNT,
  1490. mmCPC_EDC_SCRATCH_CNT,
  1491. mmCPC_EDC_UCODE_CNT,
  1492. mmCPF_EDC_ATC_CNT,
  1493. mmCPF_EDC_ROQ_CNT,
  1494. mmCPF_EDC_TAG_CNT,
  1495. mmCPG_EDC_ATC_CNT,
  1496. mmCPG_EDC_DMA_CNT,
  1497. mmCPG_EDC_TAG_CNT,
  1498. mmDC_EDC_CSINVOC_CNT,
  1499. mmDC_EDC_RESTORE_CNT,
  1500. mmDC_EDC_STATE_CNT,
  1501. mmGDS_EDC_CNT,
  1502. mmGDS_EDC_GRBM_CNT,
  1503. mmGDS_EDC_OA_DED,
  1504. mmSPI_EDC_CNT,
  1505. mmSQC_ATC_EDC_GATCL1_CNT,
  1506. mmSQC_EDC_CNT,
  1507. mmSQ_EDC_DED_CNT,
  1508. mmSQ_EDC_INFO,
  1509. mmSQ_EDC_SEC_CNT,
  1510. mmTCC_EDC_CNT,
  1511. mmTCP_ATC_EDC_GATCL1_CNT,
  1512. mmTCP_EDC_CNT,
  1513. mmTD_EDC_CNT
  1514. };
  1515. static int gfx_v8_0_do_edc_gpr_workarounds(struct amdgpu_device *adev)
  1516. {
  1517. struct amdgpu_ring *ring = &adev->gfx.compute_ring[0];
  1518. struct amdgpu_ib ib;
  1519. struct dma_fence *f = NULL;
  1520. int r, i;
  1521. u32 tmp;
  1522. unsigned total_size, vgpr_offset, sgpr_offset;
  1523. u64 gpu_addr;
  1524. /* only supported on CZ */
  1525. if (adev->asic_type != CHIP_CARRIZO)
  1526. return 0;
  1527. /* bail if the compute ring is not ready */
  1528. if (!ring->ready)
  1529. return 0;
  1530. tmp = RREG32(mmGB_EDC_MODE);
  1531. WREG32(mmGB_EDC_MODE, 0);
  1532. total_size =
  1533. (((ARRAY_SIZE(vgpr_init_regs) / 2) * 3) + 4 + 5 + 2) * 4;
  1534. total_size +=
  1535. (((ARRAY_SIZE(sgpr1_init_regs) / 2) * 3) + 4 + 5 + 2) * 4;
  1536. total_size +=
  1537. (((ARRAY_SIZE(sgpr2_init_regs) / 2) * 3) + 4 + 5 + 2) * 4;
  1538. total_size = ALIGN(total_size, 256);
  1539. vgpr_offset = total_size;
  1540. total_size += ALIGN(sizeof(vgpr_init_compute_shader), 256);
  1541. sgpr_offset = total_size;
  1542. total_size += sizeof(sgpr_init_compute_shader);
  1543. /* allocate an indirect buffer to put the commands in */
  1544. memset(&ib, 0, sizeof(ib));
  1545. r = amdgpu_ib_get(adev, NULL, total_size, &ib);
  1546. if (r) {
  1547. DRM_ERROR("amdgpu: failed to get ib (%d).\n", r);
  1548. return r;
  1549. }
  1550. /* load the compute shaders */
  1551. for (i = 0; i < ARRAY_SIZE(vgpr_init_compute_shader); i++)
  1552. ib.ptr[i + (vgpr_offset / 4)] = vgpr_init_compute_shader[i];
  1553. for (i = 0; i < ARRAY_SIZE(sgpr_init_compute_shader); i++)
  1554. ib.ptr[i + (sgpr_offset / 4)] = sgpr_init_compute_shader[i];
  1555. /* init the ib length to 0 */
  1556. ib.length_dw = 0;
  1557. /* VGPR */
  1558. /* write the register state for the compute dispatch */
  1559. for (i = 0; i < ARRAY_SIZE(vgpr_init_regs); i += 2) {
  1560. ib.ptr[ib.length_dw++] = PACKET3(PACKET3_SET_SH_REG, 1);
  1561. ib.ptr[ib.length_dw++] = vgpr_init_regs[i] - PACKET3_SET_SH_REG_START;
  1562. ib.ptr[ib.length_dw++] = vgpr_init_regs[i + 1];
  1563. }
  1564. /* write the shader start address: mmCOMPUTE_PGM_LO, mmCOMPUTE_PGM_HI */
  1565. gpu_addr = (ib.gpu_addr + (u64)vgpr_offset) >> 8;
  1566. ib.ptr[ib.length_dw++] = PACKET3(PACKET3_SET_SH_REG, 2);
  1567. ib.ptr[ib.length_dw++] = mmCOMPUTE_PGM_LO - PACKET3_SET_SH_REG_START;
  1568. ib.ptr[ib.length_dw++] = lower_32_bits(gpu_addr);
  1569. ib.ptr[ib.length_dw++] = upper_32_bits(gpu_addr);
  1570. /* write dispatch packet */
  1571. ib.ptr[ib.length_dw++] = PACKET3(PACKET3_DISPATCH_DIRECT, 3);
  1572. ib.ptr[ib.length_dw++] = 8; /* x */
  1573. ib.ptr[ib.length_dw++] = 1; /* y */
  1574. ib.ptr[ib.length_dw++] = 1; /* z */
  1575. ib.ptr[ib.length_dw++] =
  1576. REG_SET_FIELD(0, COMPUTE_DISPATCH_INITIATOR, COMPUTE_SHADER_EN, 1);
  1577. /* write CS partial flush packet */
  1578. ib.ptr[ib.length_dw++] = PACKET3(PACKET3_EVENT_WRITE, 0);
  1579. ib.ptr[ib.length_dw++] = EVENT_TYPE(7) | EVENT_INDEX(4);
  1580. /* SGPR1 */
  1581. /* write the register state for the compute dispatch */
  1582. for (i = 0; i < ARRAY_SIZE(sgpr1_init_regs); i += 2) {
  1583. ib.ptr[ib.length_dw++] = PACKET3(PACKET3_SET_SH_REG, 1);
  1584. ib.ptr[ib.length_dw++] = sgpr1_init_regs[i] - PACKET3_SET_SH_REG_START;
  1585. ib.ptr[ib.length_dw++] = sgpr1_init_regs[i + 1];
  1586. }
  1587. /* write the shader start address: mmCOMPUTE_PGM_LO, mmCOMPUTE_PGM_HI */
  1588. gpu_addr = (ib.gpu_addr + (u64)sgpr_offset) >> 8;
  1589. ib.ptr[ib.length_dw++] = PACKET3(PACKET3_SET_SH_REG, 2);
  1590. ib.ptr[ib.length_dw++] = mmCOMPUTE_PGM_LO - PACKET3_SET_SH_REG_START;
  1591. ib.ptr[ib.length_dw++] = lower_32_bits(gpu_addr);
  1592. ib.ptr[ib.length_dw++] = upper_32_bits(gpu_addr);
  1593. /* write dispatch packet */
  1594. ib.ptr[ib.length_dw++] = PACKET3(PACKET3_DISPATCH_DIRECT, 3);
  1595. ib.ptr[ib.length_dw++] = 8; /* x */
  1596. ib.ptr[ib.length_dw++] = 1; /* y */
  1597. ib.ptr[ib.length_dw++] = 1; /* z */
  1598. ib.ptr[ib.length_dw++] =
  1599. REG_SET_FIELD(0, COMPUTE_DISPATCH_INITIATOR, COMPUTE_SHADER_EN, 1);
  1600. /* write CS partial flush packet */
  1601. ib.ptr[ib.length_dw++] = PACKET3(PACKET3_EVENT_WRITE, 0);
  1602. ib.ptr[ib.length_dw++] = EVENT_TYPE(7) | EVENT_INDEX(4);
  1603. /* SGPR2 */
  1604. /* write the register state for the compute dispatch */
  1605. for (i = 0; i < ARRAY_SIZE(sgpr2_init_regs); i += 2) {
  1606. ib.ptr[ib.length_dw++] = PACKET3(PACKET3_SET_SH_REG, 1);
  1607. ib.ptr[ib.length_dw++] = sgpr2_init_regs[i] - PACKET3_SET_SH_REG_START;
  1608. ib.ptr[ib.length_dw++] = sgpr2_init_regs[i + 1];
  1609. }
  1610. /* write the shader start address: mmCOMPUTE_PGM_LO, mmCOMPUTE_PGM_HI */
  1611. gpu_addr = (ib.gpu_addr + (u64)sgpr_offset) >> 8;
  1612. ib.ptr[ib.length_dw++] = PACKET3(PACKET3_SET_SH_REG, 2);
  1613. ib.ptr[ib.length_dw++] = mmCOMPUTE_PGM_LO - PACKET3_SET_SH_REG_START;
  1614. ib.ptr[ib.length_dw++] = lower_32_bits(gpu_addr);
  1615. ib.ptr[ib.length_dw++] = upper_32_bits(gpu_addr);
  1616. /* write dispatch packet */
  1617. ib.ptr[ib.length_dw++] = PACKET3(PACKET3_DISPATCH_DIRECT, 3);
  1618. ib.ptr[ib.length_dw++] = 8; /* x */
  1619. ib.ptr[ib.length_dw++] = 1; /* y */
  1620. ib.ptr[ib.length_dw++] = 1; /* z */
  1621. ib.ptr[ib.length_dw++] =
  1622. REG_SET_FIELD(0, COMPUTE_DISPATCH_INITIATOR, COMPUTE_SHADER_EN, 1);
  1623. /* write CS partial flush packet */
  1624. ib.ptr[ib.length_dw++] = PACKET3(PACKET3_EVENT_WRITE, 0);
  1625. ib.ptr[ib.length_dw++] = EVENT_TYPE(7) | EVENT_INDEX(4);
  1626. /* shedule the ib on the ring */
  1627. r = amdgpu_ib_schedule(ring, 1, &ib, NULL, &f);
  1628. if (r) {
  1629. DRM_ERROR("amdgpu: ib submit failed (%d).\n", r);
  1630. goto fail;
  1631. }
  1632. /* wait for the GPU to finish processing the IB */
  1633. r = dma_fence_wait(f, false);
  1634. if (r) {
  1635. DRM_ERROR("amdgpu: fence wait failed (%d).\n", r);
  1636. goto fail;
  1637. }
  1638. tmp = REG_SET_FIELD(tmp, GB_EDC_MODE, DED_MODE, 2);
  1639. tmp = REG_SET_FIELD(tmp, GB_EDC_MODE, PROP_FED, 1);
  1640. WREG32(mmGB_EDC_MODE, tmp);
  1641. tmp = RREG32(mmCC_GC_EDC_CONFIG);
  1642. tmp = REG_SET_FIELD(tmp, CC_GC_EDC_CONFIG, DIS_EDC, 0) | 1;
  1643. WREG32(mmCC_GC_EDC_CONFIG, tmp);
  1644. /* read back registers to clear the counters */
  1645. for (i = 0; i < ARRAY_SIZE(sec_ded_counter_registers); i++)
  1646. RREG32(sec_ded_counter_registers[i]);
  1647. fail:
  1648. amdgpu_ib_free(adev, &ib, NULL);
  1649. dma_fence_put(f);
  1650. return r;
  1651. }
  1652. static int gfx_v8_0_gpu_early_init(struct amdgpu_device *adev)
  1653. {
  1654. u32 gb_addr_config;
  1655. u32 mc_shared_chmap, mc_arb_ramcfg;
  1656. u32 dimm00_addr_map, dimm01_addr_map, dimm10_addr_map, dimm11_addr_map;
  1657. u32 tmp;
  1658. int ret;
  1659. switch (adev->asic_type) {
  1660. case CHIP_TOPAZ:
  1661. adev->gfx.config.max_shader_engines = 1;
  1662. adev->gfx.config.max_tile_pipes = 2;
  1663. adev->gfx.config.max_cu_per_sh = 6;
  1664. adev->gfx.config.max_sh_per_se = 1;
  1665. adev->gfx.config.max_backends_per_se = 2;
  1666. adev->gfx.config.max_texture_channel_caches = 2;
  1667. adev->gfx.config.max_gprs = 256;
  1668. adev->gfx.config.max_gs_threads = 32;
  1669. adev->gfx.config.max_hw_contexts = 8;
  1670. adev->gfx.config.sc_prim_fifo_size_frontend = 0x20;
  1671. adev->gfx.config.sc_prim_fifo_size_backend = 0x100;
  1672. adev->gfx.config.sc_hiz_tile_fifo_size = 0x30;
  1673. adev->gfx.config.sc_earlyz_tile_fifo_size = 0x130;
  1674. gb_addr_config = TOPAZ_GB_ADDR_CONFIG_GOLDEN;
  1675. break;
  1676. case CHIP_FIJI:
  1677. adev->gfx.config.max_shader_engines = 4;
  1678. adev->gfx.config.max_tile_pipes = 16;
  1679. adev->gfx.config.max_cu_per_sh = 16;
  1680. adev->gfx.config.max_sh_per_se = 1;
  1681. adev->gfx.config.max_backends_per_se = 4;
  1682. adev->gfx.config.max_texture_channel_caches = 16;
  1683. adev->gfx.config.max_gprs = 256;
  1684. adev->gfx.config.max_gs_threads = 32;
  1685. adev->gfx.config.max_hw_contexts = 8;
  1686. adev->gfx.config.sc_prim_fifo_size_frontend = 0x20;
  1687. adev->gfx.config.sc_prim_fifo_size_backend = 0x100;
  1688. adev->gfx.config.sc_hiz_tile_fifo_size = 0x30;
  1689. adev->gfx.config.sc_earlyz_tile_fifo_size = 0x130;
  1690. gb_addr_config = TONGA_GB_ADDR_CONFIG_GOLDEN;
  1691. break;
  1692. case CHIP_POLARIS11:
  1693. case CHIP_POLARIS12:
  1694. ret = amdgpu_atombios_get_gfx_info(adev);
  1695. if (ret)
  1696. return ret;
  1697. adev->gfx.config.max_gprs = 256;
  1698. adev->gfx.config.max_gs_threads = 32;
  1699. adev->gfx.config.max_hw_contexts = 8;
  1700. adev->gfx.config.sc_prim_fifo_size_frontend = 0x20;
  1701. adev->gfx.config.sc_prim_fifo_size_backend = 0x100;
  1702. adev->gfx.config.sc_hiz_tile_fifo_size = 0x30;
  1703. adev->gfx.config.sc_earlyz_tile_fifo_size = 0x130;
  1704. gb_addr_config = POLARIS11_GB_ADDR_CONFIG_GOLDEN;
  1705. break;
  1706. case CHIP_POLARIS10:
  1707. ret = amdgpu_atombios_get_gfx_info(adev);
  1708. if (ret)
  1709. return ret;
  1710. adev->gfx.config.max_gprs = 256;
  1711. adev->gfx.config.max_gs_threads = 32;
  1712. adev->gfx.config.max_hw_contexts = 8;
  1713. adev->gfx.config.sc_prim_fifo_size_frontend = 0x20;
  1714. adev->gfx.config.sc_prim_fifo_size_backend = 0x100;
  1715. adev->gfx.config.sc_hiz_tile_fifo_size = 0x30;
  1716. adev->gfx.config.sc_earlyz_tile_fifo_size = 0x130;
  1717. gb_addr_config = TONGA_GB_ADDR_CONFIG_GOLDEN;
  1718. break;
  1719. case CHIP_TONGA:
  1720. adev->gfx.config.max_shader_engines = 4;
  1721. adev->gfx.config.max_tile_pipes = 8;
  1722. adev->gfx.config.max_cu_per_sh = 8;
  1723. adev->gfx.config.max_sh_per_se = 1;
  1724. adev->gfx.config.max_backends_per_se = 2;
  1725. adev->gfx.config.max_texture_channel_caches = 8;
  1726. adev->gfx.config.max_gprs = 256;
  1727. adev->gfx.config.max_gs_threads = 32;
  1728. adev->gfx.config.max_hw_contexts = 8;
  1729. adev->gfx.config.sc_prim_fifo_size_frontend = 0x20;
  1730. adev->gfx.config.sc_prim_fifo_size_backend = 0x100;
  1731. adev->gfx.config.sc_hiz_tile_fifo_size = 0x30;
  1732. adev->gfx.config.sc_earlyz_tile_fifo_size = 0x130;
  1733. gb_addr_config = TONGA_GB_ADDR_CONFIG_GOLDEN;
  1734. break;
  1735. case CHIP_CARRIZO:
  1736. adev->gfx.config.max_shader_engines = 1;
  1737. adev->gfx.config.max_tile_pipes = 2;
  1738. adev->gfx.config.max_sh_per_se = 1;
  1739. adev->gfx.config.max_backends_per_se = 2;
  1740. switch (adev->pdev->revision) {
  1741. case 0xc4:
  1742. case 0x84:
  1743. case 0xc8:
  1744. case 0xcc:
  1745. case 0xe1:
  1746. case 0xe3:
  1747. /* B10 */
  1748. adev->gfx.config.max_cu_per_sh = 8;
  1749. break;
  1750. case 0xc5:
  1751. case 0x81:
  1752. case 0x85:
  1753. case 0xc9:
  1754. case 0xcd:
  1755. case 0xe2:
  1756. case 0xe4:
  1757. /* B8 */
  1758. adev->gfx.config.max_cu_per_sh = 6;
  1759. break;
  1760. case 0xc6:
  1761. case 0xca:
  1762. case 0xce:
  1763. case 0x88:
  1764. case 0xe6:
  1765. /* B6 */
  1766. adev->gfx.config.max_cu_per_sh = 6;
  1767. break;
  1768. case 0xc7:
  1769. case 0x87:
  1770. case 0xcb:
  1771. case 0xe5:
  1772. case 0x89:
  1773. default:
  1774. /* B4 */
  1775. adev->gfx.config.max_cu_per_sh = 4;
  1776. break;
  1777. }
  1778. adev->gfx.config.max_texture_channel_caches = 2;
  1779. adev->gfx.config.max_gprs = 256;
  1780. adev->gfx.config.max_gs_threads = 32;
  1781. adev->gfx.config.max_hw_contexts = 8;
  1782. adev->gfx.config.sc_prim_fifo_size_frontend = 0x20;
  1783. adev->gfx.config.sc_prim_fifo_size_backend = 0x100;
  1784. adev->gfx.config.sc_hiz_tile_fifo_size = 0x30;
  1785. adev->gfx.config.sc_earlyz_tile_fifo_size = 0x130;
  1786. gb_addr_config = CARRIZO_GB_ADDR_CONFIG_GOLDEN;
  1787. break;
  1788. case CHIP_STONEY:
  1789. adev->gfx.config.max_shader_engines = 1;
  1790. adev->gfx.config.max_tile_pipes = 2;
  1791. adev->gfx.config.max_sh_per_se = 1;
  1792. adev->gfx.config.max_backends_per_se = 1;
  1793. switch (adev->pdev->revision) {
  1794. case 0x80:
  1795. case 0x81:
  1796. case 0xc0:
  1797. case 0xc1:
  1798. case 0xc2:
  1799. case 0xc4:
  1800. case 0xc8:
  1801. case 0xc9:
  1802. case 0xd6:
  1803. case 0xda:
  1804. case 0xe9:
  1805. case 0xea:
  1806. adev->gfx.config.max_cu_per_sh = 3;
  1807. break;
  1808. case 0x83:
  1809. case 0xd0:
  1810. case 0xd1:
  1811. case 0xd2:
  1812. case 0xd4:
  1813. case 0xdb:
  1814. case 0xe1:
  1815. case 0xe2:
  1816. default:
  1817. adev->gfx.config.max_cu_per_sh = 2;
  1818. break;
  1819. }
  1820. adev->gfx.config.max_texture_channel_caches = 2;
  1821. adev->gfx.config.max_gprs = 256;
  1822. adev->gfx.config.max_gs_threads = 16;
  1823. adev->gfx.config.max_hw_contexts = 8;
  1824. adev->gfx.config.sc_prim_fifo_size_frontend = 0x20;
  1825. adev->gfx.config.sc_prim_fifo_size_backend = 0x100;
  1826. adev->gfx.config.sc_hiz_tile_fifo_size = 0x30;
  1827. adev->gfx.config.sc_earlyz_tile_fifo_size = 0x130;
  1828. gb_addr_config = CARRIZO_GB_ADDR_CONFIG_GOLDEN;
  1829. break;
  1830. default:
  1831. adev->gfx.config.max_shader_engines = 2;
  1832. adev->gfx.config.max_tile_pipes = 4;
  1833. adev->gfx.config.max_cu_per_sh = 2;
  1834. adev->gfx.config.max_sh_per_se = 1;
  1835. adev->gfx.config.max_backends_per_se = 2;
  1836. adev->gfx.config.max_texture_channel_caches = 4;
  1837. adev->gfx.config.max_gprs = 256;
  1838. adev->gfx.config.max_gs_threads = 32;
  1839. adev->gfx.config.max_hw_contexts = 8;
  1840. adev->gfx.config.sc_prim_fifo_size_frontend = 0x20;
  1841. adev->gfx.config.sc_prim_fifo_size_backend = 0x100;
  1842. adev->gfx.config.sc_hiz_tile_fifo_size = 0x30;
  1843. adev->gfx.config.sc_earlyz_tile_fifo_size = 0x130;
  1844. gb_addr_config = TONGA_GB_ADDR_CONFIG_GOLDEN;
  1845. break;
  1846. }
  1847. mc_shared_chmap = RREG32(mmMC_SHARED_CHMAP);
  1848. adev->gfx.config.mc_arb_ramcfg = RREG32(mmMC_ARB_RAMCFG);
  1849. mc_arb_ramcfg = adev->gfx.config.mc_arb_ramcfg;
  1850. adev->gfx.config.num_tile_pipes = adev->gfx.config.max_tile_pipes;
  1851. adev->gfx.config.mem_max_burst_length_bytes = 256;
  1852. if (adev->flags & AMD_IS_APU) {
  1853. /* Get memory bank mapping mode. */
  1854. tmp = RREG32(mmMC_FUS_DRAM0_BANK_ADDR_MAPPING);
  1855. dimm00_addr_map = REG_GET_FIELD(tmp, MC_FUS_DRAM0_BANK_ADDR_MAPPING, DIMM0ADDRMAP);
  1856. dimm01_addr_map = REG_GET_FIELD(tmp, MC_FUS_DRAM0_BANK_ADDR_MAPPING, DIMM1ADDRMAP);
  1857. tmp = RREG32(mmMC_FUS_DRAM1_BANK_ADDR_MAPPING);
  1858. dimm10_addr_map = REG_GET_FIELD(tmp, MC_FUS_DRAM1_BANK_ADDR_MAPPING, DIMM0ADDRMAP);
  1859. dimm11_addr_map = REG_GET_FIELD(tmp, MC_FUS_DRAM1_BANK_ADDR_MAPPING, DIMM1ADDRMAP);
  1860. /* Validate settings in case only one DIMM installed. */
  1861. if ((dimm00_addr_map == 0) || (dimm00_addr_map == 3) || (dimm00_addr_map == 4) || (dimm00_addr_map > 12))
  1862. dimm00_addr_map = 0;
  1863. if ((dimm01_addr_map == 0) || (dimm01_addr_map == 3) || (dimm01_addr_map == 4) || (dimm01_addr_map > 12))
  1864. dimm01_addr_map = 0;
  1865. if ((dimm10_addr_map == 0) || (dimm10_addr_map == 3) || (dimm10_addr_map == 4) || (dimm10_addr_map > 12))
  1866. dimm10_addr_map = 0;
  1867. if ((dimm11_addr_map == 0) || (dimm11_addr_map == 3) || (dimm11_addr_map == 4) || (dimm11_addr_map > 12))
  1868. dimm11_addr_map = 0;
  1869. /* If DIMM Addr map is 8GB, ROW size should be 2KB. Otherwise 1KB. */
  1870. /* If ROW size(DIMM1) != ROW size(DMIMM0), ROW size should be larger one. */
  1871. if ((dimm00_addr_map == 11) || (dimm01_addr_map == 11) || (dimm10_addr_map == 11) || (dimm11_addr_map == 11))
  1872. adev->gfx.config.mem_row_size_in_kb = 2;
  1873. else
  1874. adev->gfx.config.mem_row_size_in_kb = 1;
  1875. } else {
  1876. tmp = REG_GET_FIELD(mc_arb_ramcfg, MC_ARB_RAMCFG, NOOFCOLS);
  1877. adev->gfx.config.mem_row_size_in_kb = (4 * (1 << (8 + tmp))) / 1024;
  1878. if (adev->gfx.config.mem_row_size_in_kb > 4)
  1879. adev->gfx.config.mem_row_size_in_kb = 4;
  1880. }
  1881. adev->gfx.config.shader_engine_tile_size = 32;
  1882. adev->gfx.config.num_gpus = 1;
  1883. adev->gfx.config.multi_gpu_tile_size = 64;
  1884. /* fix up row size */
  1885. switch (adev->gfx.config.mem_row_size_in_kb) {
  1886. case 1:
  1887. default:
  1888. gb_addr_config = REG_SET_FIELD(gb_addr_config, GB_ADDR_CONFIG, ROW_SIZE, 0);
  1889. break;
  1890. case 2:
  1891. gb_addr_config = REG_SET_FIELD(gb_addr_config, GB_ADDR_CONFIG, ROW_SIZE, 1);
  1892. break;
  1893. case 4:
  1894. gb_addr_config = REG_SET_FIELD(gb_addr_config, GB_ADDR_CONFIG, ROW_SIZE, 2);
  1895. break;
  1896. }
  1897. adev->gfx.config.gb_addr_config = gb_addr_config;
  1898. return 0;
  1899. }
  1900. static int gfx_v8_0_sw_init(void *handle)
  1901. {
  1902. int i, r;
  1903. struct amdgpu_ring *ring;
  1904. struct amdgpu_kiq *kiq;
  1905. struct amdgpu_device *adev = (struct amdgpu_device *)handle;
  1906. /* KIQ event */
  1907. r = amdgpu_irq_add_id(adev, AMDGPU_IH_CLIENTID_LEGACY, 178, &adev->gfx.kiq.irq);
  1908. if (r)
  1909. return r;
  1910. /* EOP Event */
  1911. r = amdgpu_irq_add_id(adev, AMDGPU_IH_CLIENTID_LEGACY, 181, &adev->gfx.eop_irq);
  1912. if (r)
  1913. return r;
  1914. /* Privileged reg */
  1915. r = amdgpu_irq_add_id(adev, AMDGPU_IH_CLIENTID_LEGACY, 184,
  1916. &adev->gfx.priv_reg_irq);
  1917. if (r)
  1918. return r;
  1919. /* Privileged inst */
  1920. r = amdgpu_irq_add_id(adev, AMDGPU_IH_CLIENTID_LEGACY, 185,
  1921. &adev->gfx.priv_inst_irq);
  1922. if (r)
  1923. return r;
  1924. adev->gfx.gfx_current_status = AMDGPU_GFX_NORMAL_MODE;
  1925. gfx_v8_0_scratch_init(adev);
  1926. r = gfx_v8_0_init_microcode(adev);
  1927. if (r) {
  1928. DRM_ERROR("Failed to load gfx firmware!\n");
  1929. return r;
  1930. }
  1931. r = gfx_v8_0_rlc_init(adev);
  1932. if (r) {
  1933. DRM_ERROR("Failed to init rlc BOs!\n");
  1934. return r;
  1935. }
  1936. r = gfx_v8_0_mec_init(adev);
  1937. if (r) {
  1938. DRM_ERROR("Failed to init MEC BOs!\n");
  1939. return r;
  1940. }
  1941. /* set up the gfx ring */
  1942. for (i = 0; i < adev->gfx.num_gfx_rings; i++) {
  1943. ring = &adev->gfx.gfx_ring[i];
  1944. ring->ring_obj = NULL;
  1945. sprintf(ring->name, "gfx");
  1946. /* no gfx doorbells on iceland */
  1947. if (adev->asic_type != CHIP_TOPAZ) {
  1948. ring->use_doorbell = true;
  1949. ring->doorbell_index = AMDGPU_DOORBELL_GFX_RING0;
  1950. }
  1951. r = amdgpu_ring_init(adev, ring, 1024, &adev->gfx.eop_irq,
  1952. AMDGPU_CP_IRQ_GFX_EOP);
  1953. if (r)
  1954. return r;
  1955. }
  1956. /* set up the compute queues */
  1957. for (i = 0; i < adev->gfx.num_compute_rings; i++) {
  1958. unsigned irq_type;
  1959. /* max 32 queues per MEC */
  1960. if ((i >= 32) || (i >= AMDGPU_MAX_COMPUTE_RINGS)) {
  1961. DRM_ERROR("Too many (%d) compute rings!\n", i);
  1962. break;
  1963. }
  1964. ring = &adev->gfx.compute_ring[i];
  1965. ring->ring_obj = NULL;
  1966. ring->use_doorbell = true;
  1967. ring->doorbell_index = AMDGPU_DOORBELL_MEC_RING0 + i;
  1968. ring->me = 1; /* first MEC */
  1969. ring->pipe = i / 8;
  1970. ring->queue = i % 8;
  1971. ring->eop_gpu_addr = adev->gfx.mec.hpd_eop_gpu_addr + (i * MEC_HPD_SIZE);
  1972. sprintf(ring->name, "comp_%d.%d.%d", ring->me, ring->pipe, ring->queue);
  1973. irq_type = AMDGPU_CP_IRQ_COMPUTE_MEC1_PIPE0_EOP + ring->pipe;
  1974. /* type-2 packets are deprecated on MEC, use type-3 instead */
  1975. r = amdgpu_ring_init(adev, ring, 1024, &adev->gfx.eop_irq,
  1976. irq_type);
  1977. if (r)
  1978. return r;
  1979. }
  1980. if (amdgpu_sriov_vf(adev)) {
  1981. r = gfx_v8_0_kiq_init(adev);
  1982. if (r) {
  1983. DRM_ERROR("Failed to init KIQ BOs!\n");
  1984. return r;
  1985. }
  1986. kiq = &adev->gfx.kiq;
  1987. r = gfx_v8_0_kiq_init_ring(adev, &kiq->ring, &kiq->irq);
  1988. if (r)
  1989. return r;
  1990. /* create MQD for all compute queues as wel as KIQ for SRIOV case */
  1991. r = gfx_v8_0_compute_mqd_sw_init(adev);
  1992. if (r)
  1993. return r;
  1994. }
  1995. /* reserve GDS, GWS and OA resource for gfx */
  1996. r = amdgpu_bo_create_kernel(adev, adev->gds.mem.gfx_partition_size,
  1997. PAGE_SIZE, AMDGPU_GEM_DOMAIN_GDS,
  1998. &adev->gds.gds_gfx_bo, NULL, NULL);
  1999. if (r)
  2000. return r;
  2001. r = amdgpu_bo_create_kernel(adev, adev->gds.gws.gfx_partition_size,
  2002. PAGE_SIZE, AMDGPU_GEM_DOMAIN_GWS,
  2003. &adev->gds.gws_gfx_bo, NULL, NULL);
  2004. if (r)
  2005. return r;
  2006. r = amdgpu_bo_create_kernel(adev, adev->gds.oa.gfx_partition_size,
  2007. PAGE_SIZE, AMDGPU_GEM_DOMAIN_OA,
  2008. &adev->gds.oa_gfx_bo, NULL, NULL);
  2009. if (r)
  2010. return r;
  2011. adev->gfx.ce_ram_size = 0x8000;
  2012. r = gfx_v8_0_gpu_early_init(adev);
  2013. if (r)
  2014. return r;
  2015. return 0;
  2016. }
  2017. static int gfx_v8_0_sw_fini(void *handle)
  2018. {
  2019. int i;
  2020. struct amdgpu_device *adev = (struct amdgpu_device *)handle;
  2021. amdgpu_bo_free_kernel(&adev->gds.oa_gfx_bo, NULL, NULL);
  2022. amdgpu_bo_free_kernel(&adev->gds.gws_gfx_bo, NULL, NULL);
  2023. amdgpu_bo_free_kernel(&adev->gds.gds_gfx_bo, NULL, NULL);
  2024. for (i = 0; i < adev->gfx.num_gfx_rings; i++)
  2025. amdgpu_ring_fini(&adev->gfx.gfx_ring[i]);
  2026. for (i = 0; i < adev->gfx.num_compute_rings; i++)
  2027. amdgpu_ring_fini(&adev->gfx.compute_ring[i]);
  2028. if (amdgpu_sriov_vf(adev)) {
  2029. gfx_v8_0_compute_mqd_sw_fini(adev);
  2030. gfx_v8_0_kiq_free_ring(&adev->gfx.kiq.ring, &adev->gfx.kiq.irq);
  2031. gfx_v8_0_kiq_fini(adev);
  2032. }
  2033. gfx_v8_0_mec_fini(adev);
  2034. gfx_v8_0_rlc_fini(adev);
  2035. gfx_v8_0_free_microcode(adev);
  2036. return 0;
  2037. }
  2038. static void gfx_v8_0_tiling_mode_table_init(struct amdgpu_device *adev)
  2039. {
  2040. uint32_t *modearray, *mod2array;
  2041. const u32 num_tile_mode_states = ARRAY_SIZE(adev->gfx.config.tile_mode_array);
  2042. const u32 num_secondary_tile_mode_states = ARRAY_SIZE(adev->gfx.config.macrotile_mode_array);
  2043. u32 reg_offset;
  2044. modearray = adev->gfx.config.tile_mode_array;
  2045. mod2array = adev->gfx.config.macrotile_mode_array;
  2046. for (reg_offset = 0; reg_offset < num_tile_mode_states; reg_offset++)
  2047. modearray[reg_offset] = 0;
  2048. for (reg_offset = 0; reg_offset < num_secondary_tile_mode_states; reg_offset++)
  2049. mod2array[reg_offset] = 0;
  2050. switch (adev->asic_type) {
  2051. case CHIP_TOPAZ:
  2052. modearray[0] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2053. PIPE_CONFIG(ADDR_SURF_P2) |
  2054. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_64B) |
  2055. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2056. modearray[1] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2057. PIPE_CONFIG(ADDR_SURF_P2) |
  2058. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_128B) |
  2059. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2060. modearray[2] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2061. PIPE_CONFIG(ADDR_SURF_P2) |
  2062. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_256B) |
  2063. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2064. modearray[3] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2065. PIPE_CONFIG(ADDR_SURF_P2) |
  2066. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_512B) |
  2067. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2068. modearray[4] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2069. PIPE_CONFIG(ADDR_SURF_P2) |
  2070. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_2KB) |
  2071. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2072. modearray[5] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  2073. PIPE_CONFIG(ADDR_SURF_P2) |
  2074. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_2KB) |
  2075. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2076. modearray[6] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2077. PIPE_CONFIG(ADDR_SURF_P2) |
  2078. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_2KB) |
  2079. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2080. modearray[8] = (ARRAY_MODE(ARRAY_LINEAR_ALIGNED) |
  2081. PIPE_CONFIG(ADDR_SURF_P2));
  2082. modearray[9] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  2083. PIPE_CONFIG(ADDR_SURF_P2) |
  2084. MICRO_TILE_MODE_NEW(ADDR_SURF_DISPLAY_MICRO_TILING) |
  2085. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2086. modearray[10] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2087. PIPE_CONFIG(ADDR_SURF_P2) |
  2088. MICRO_TILE_MODE_NEW(ADDR_SURF_DISPLAY_MICRO_TILING) |
  2089. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2090. modearray[11] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2091. PIPE_CONFIG(ADDR_SURF_P2) |
  2092. MICRO_TILE_MODE_NEW(ADDR_SURF_DISPLAY_MICRO_TILING) |
  2093. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2094. modearray[13] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  2095. PIPE_CONFIG(ADDR_SURF_P2) |
  2096. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2097. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2098. modearray[14] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2099. PIPE_CONFIG(ADDR_SURF_P2) |
  2100. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2101. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2102. modearray[15] = (ARRAY_MODE(ARRAY_3D_TILED_THIN1) |
  2103. PIPE_CONFIG(ADDR_SURF_P2) |
  2104. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2105. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2106. modearray[16] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2107. PIPE_CONFIG(ADDR_SURF_P2) |
  2108. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2109. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2110. modearray[18] = (ARRAY_MODE(ARRAY_1D_TILED_THICK) |
  2111. PIPE_CONFIG(ADDR_SURF_P2) |
  2112. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2113. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2114. modearray[19] = (ARRAY_MODE(ARRAY_1D_TILED_THICK) |
  2115. PIPE_CONFIG(ADDR_SURF_P2) |
  2116. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2117. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2118. modearray[20] = (ARRAY_MODE(ARRAY_2D_TILED_THICK) |
  2119. PIPE_CONFIG(ADDR_SURF_P2) |
  2120. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2121. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2122. modearray[21] = (ARRAY_MODE(ARRAY_3D_TILED_THICK) |
  2123. PIPE_CONFIG(ADDR_SURF_P2) |
  2124. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2125. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2126. modearray[22] = (ARRAY_MODE(ARRAY_PRT_TILED_THICK) |
  2127. PIPE_CONFIG(ADDR_SURF_P2) |
  2128. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2129. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2130. modearray[24] = (ARRAY_MODE(ARRAY_2D_TILED_THICK) |
  2131. PIPE_CONFIG(ADDR_SURF_P2) |
  2132. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2133. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2134. modearray[25] = (ARRAY_MODE(ARRAY_2D_TILED_XTHICK) |
  2135. PIPE_CONFIG(ADDR_SURF_P2) |
  2136. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2137. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2138. modearray[26] = (ARRAY_MODE(ARRAY_3D_TILED_XTHICK) |
  2139. PIPE_CONFIG(ADDR_SURF_P2) |
  2140. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2141. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2142. modearray[27] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  2143. PIPE_CONFIG(ADDR_SURF_P2) |
  2144. MICRO_TILE_MODE_NEW(ADDR_SURF_ROTATED_MICRO_TILING) |
  2145. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2146. modearray[28] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2147. PIPE_CONFIG(ADDR_SURF_P2) |
  2148. MICRO_TILE_MODE_NEW(ADDR_SURF_ROTATED_MICRO_TILING) |
  2149. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2150. modearray[29] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2151. PIPE_CONFIG(ADDR_SURF_P2) |
  2152. MICRO_TILE_MODE_NEW(ADDR_SURF_ROTATED_MICRO_TILING) |
  2153. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2154. mod2array[0] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_4) |
  2155. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  2156. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  2157. NUM_BANKS(ADDR_SURF_8_BANK));
  2158. mod2array[1] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_4) |
  2159. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  2160. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  2161. NUM_BANKS(ADDR_SURF_8_BANK));
  2162. mod2array[2] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_2) |
  2163. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  2164. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  2165. NUM_BANKS(ADDR_SURF_8_BANK));
  2166. mod2array[3] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2167. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  2168. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2169. NUM_BANKS(ADDR_SURF_8_BANK));
  2170. mod2array[4] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2171. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_2) |
  2172. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  2173. NUM_BANKS(ADDR_SURF_8_BANK));
  2174. mod2array[5] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2175. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2176. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  2177. NUM_BANKS(ADDR_SURF_8_BANK));
  2178. mod2array[6] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2179. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2180. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  2181. NUM_BANKS(ADDR_SURF_8_BANK));
  2182. mod2array[8] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_4) |
  2183. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_8) |
  2184. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2185. NUM_BANKS(ADDR_SURF_16_BANK));
  2186. mod2array[9] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_4) |
  2187. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  2188. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2189. NUM_BANKS(ADDR_SURF_16_BANK));
  2190. mod2array[10] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_2) |
  2191. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  2192. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2193. NUM_BANKS(ADDR_SURF_16_BANK));
  2194. mod2array[11] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_2) |
  2195. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_2) |
  2196. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2197. NUM_BANKS(ADDR_SURF_16_BANK));
  2198. mod2array[12] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2199. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_2) |
  2200. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2201. NUM_BANKS(ADDR_SURF_16_BANK));
  2202. mod2array[13] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2203. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2204. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2205. NUM_BANKS(ADDR_SURF_16_BANK));
  2206. mod2array[14] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2207. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2208. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  2209. NUM_BANKS(ADDR_SURF_8_BANK));
  2210. for (reg_offset = 0; reg_offset < num_tile_mode_states; reg_offset++)
  2211. if (reg_offset != 7 && reg_offset != 12 && reg_offset != 17 &&
  2212. reg_offset != 23)
  2213. WREG32(mmGB_TILE_MODE0 + reg_offset, modearray[reg_offset]);
  2214. for (reg_offset = 0; reg_offset < num_secondary_tile_mode_states; reg_offset++)
  2215. if (reg_offset != 7)
  2216. WREG32(mmGB_MACROTILE_MODE0 + reg_offset, mod2array[reg_offset]);
  2217. break;
  2218. case CHIP_FIJI:
  2219. modearray[0] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2220. PIPE_CONFIG(ADDR_SURF_P16_32x32_16x16) |
  2221. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_64B) |
  2222. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2223. modearray[1] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2224. PIPE_CONFIG(ADDR_SURF_P16_32x32_16x16) |
  2225. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_128B) |
  2226. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2227. modearray[2] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2228. PIPE_CONFIG(ADDR_SURF_P16_32x32_16x16) |
  2229. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_256B) |
  2230. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2231. modearray[3] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2232. PIPE_CONFIG(ADDR_SURF_P16_32x32_16x16) |
  2233. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_512B) |
  2234. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2235. modearray[4] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2236. PIPE_CONFIG(ADDR_SURF_P16_32x32_16x16) |
  2237. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_2KB) |
  2238. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2239. modearray[5] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  2240. PIPE_CONFIG(ADDR_SURF_P16_32x32_16x16) |
  2241. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_2KB) |
  2242. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2243. modearray[6] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2244. PIPE_CONFIG(ADDR_SURF_P16_32x32_16x16) |
  2245. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_2KB) |
  2246. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2247. modearray[7] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2248. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2249. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_2KB) |
  2250. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2251. modearray[8] = (ARRAY_MODE(ARRAY_LINEAR_ALIGNED) |
  2252. PIPE_CONFIG(ADDR_SURF_P16_32x32_16x16));
  2253. modearray[9] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  2254. PIPE_CONFIG(ADDR_SURF_P16_32x32_16x16) |
  2255. MICRO_TILE_MODE_NEW(ADDR_SURF_DISPLAY_MICRO_TILING) |
  2256. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2257. modearray[10] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2258. PIPE_CONFIG(ADDR_SURF_P16_32x32_16x16) |
  2259. MICRO_TILE_MODE_NEW(ADDR_SURF_DISPLAY_MICRO_TILING) |
  2260. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2261. modearray[11] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2262. PIPE_CONFIG(ADDR_SURF_P16_32x32_16x16) |
  2263. MICRO_TILE_MODE_NEW(ADDR_SURF_DISPLAY_MICRO_TILING) |
  2264. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2265. modearray[12] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2266. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2267. MICRO_TILE_MODE_NEW(ADDR_SURF_DISPLAY_MICRO_TILING) |
  2268. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2269. modearray[13] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  2270. PIPE_CONFIG(ADDR_SURF_P16_32x32_16x16) |
  2271. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2272. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2273. modearray[14] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2274. PIPE_CONFIG(ADDR_SURF_P16_32x32_16x16) |
  2275. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2276. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2277. modearray[15] = (ARRAY_MODE(ARRAY_3D_TILED_THIN1) |
  2278. PIPE_CONFIG(ADDR_SURF_P16_32x32_16x16) |
  2279. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2280. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2281. modearray[16] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2282. PIPE_CONFIG(ADDR_SURF_P16_32x32_16x16) |
  2283. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2284. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2285. modearray[17] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2286. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2287. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2288. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2289. modearray[18] = (ARRAY_MODE(ARRAY_1D_TILED_THICK) |
  2290. PIPE_CONFIG(ADDR_SURF_P16_32x32_16x16) |
  2291. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2292. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2293. modearray[19] = (ARRAY_MODE(ARRAY_1D_TILED_THICK) |
  2294. PIPE_CONFIG(ADDR_SURF_P16_32x32_16x16) |
  2295. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2296. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2297. modearray[20] = (ARRAY_MODE(ARRAY_2D_TILED_THICK) |
  2298. PIPE_CONFIG(ADDR_SURF_P16_32x32_16x16) |
  2299. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2300. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2301. modearray[21] = (ARRAY_MODE(ARRAY_3D_TILED_THICK) |
  2302. PIPE_CONFIG(ADDR_SURF_P16_32x32_16x16) |
  2303. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2304. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2305. modearray[22] = (ARRAY_MODE(ARRAY_PRT_TILED_THICK) |
  2306. PIPE_CONFIG(ADDR_SURF_P16_32x32_16x16) |
  2307. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2308. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2309. modearray[23] = (ARRAY_MODE(ARRAY_PRT_TILED_THICK) |
  2310. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2311. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2312. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2313. modearray[24] = (ARRAY_MODE(ARRAY_2D_TILED_THICK) |
  2314. PIPE_CONFIG(ADDR_SURF_P16_32x32_16x16) |
  2315. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2316. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2317. modearray[25] = (ARRAY_MODE(ARRAY_2D_TILED_XTHICK) |
  2318. PIPE_CONFIG(ADDR_SURF_P16_32x32_16x16) |
  2319. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2320. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2321. modearray[26] = (ARRAY_MODE(ARRAY_3D_TILED_XTHICK) |
  2322. PIPE_CONFIG(ADDR_SURF_P16_32x32_16x16) |
  2323. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2324. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2325. modearray[27] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  2326. PIPE_CONFIG(ADDR_SURF_P16_32x32_16x16) |
  2327. MICRO_TILE_MODE_NEW(ADDR_SURF_ROTATED_MICRO_TILING) |
  2328. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2329. modearray[28] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2330. PIPE_CONFIG(ADDR_SURF_P16_32x32_16x16) |
  2331. MICRO_TILE_MODE_NEW(ADDR_SURF_ROTATED_MICRO_TILING) |
  2332. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2333. modearray[29] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2334. PIPE_CONFIG(ADDR_SURF_P16_32x32_16x16) |
  2335. MICRO_TILE_MODE_NEW(ADDR_SURF_ROTATED_MICRO_TILING) |
  2336. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2337. modearray[30] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2338. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2339. MICRO_TILE_MODE_NEW(ADDR_SURF_ROTATED_MICRO_TILING) |
  2340. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2341. mod2array[0] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2342. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  2343. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  2344. NUM_BANKS(ADDR_SURF_8_BANK));
  2345. mod2array[1] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2346. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  2347. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  2348. NUM_BANKS(ADDR_SURF_8_BANK));
  2349. mod2array[2] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2350. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  2351. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  2352. NUM_BANKS(ADDR_SURF_8_BANK));
  2353. mod2array[3] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2354. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  2355. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  2356. NUM_BANKS(ADDR_SURF_8_BANK));
  2357. mod2array[4] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2358. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_2) |
  2359. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_1) |
  2360. NUM_BANKS(ADDR_SURF_8_BANK));
  2361. mod2array[5] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2362. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2363. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_1) |
  2364. NUM_BANKS(ADDR_SURF_8_BANK));
  2365. mod2array[6] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2366. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2367. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_1) |
  2368. NUM_BANKS(ADDR_SURF_8_BANK));
  2369. mod2array[8] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2370. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_8) |
  2371. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  2372. NUM_BANKS(ADDR_SURF_8_BANK));
  2373. mod2array[9] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2374. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  2375. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  2376. NUM_BANKS(ADDR_SURF_8_BANK));
  2377. mod2array[10] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2378. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_2) |
  2379. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_1) |
  2380. NUM_BANKS(ADDR_SURF_8_BANK));
  2381. mod2array[11] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2382. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2383. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_1) |
  2384. NUM_BANKS(ADDR_SURF_8_BANK));
  2385. mod2array[12] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2386. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_2) |
  2387. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  2388. NUM_BANKS(ADDR_SURF_8_BANK));
  2389. mod2array[13] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2390. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2391. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  2392. NUM_BANKS(ADDR_SURF_8_BANK));
  2393. mod2array[14] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2394. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2395. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_1) |
  2396. NUM_BANKS(ADDR_SURF_4_BANK));
  2397. for (reg_offset = 0; reg_offset < num_tile_mode_states; reg_offset++)
  2398. WREG32(mmGB_TILE_MODE0 + reg_offset, modearray[reg_offset]);
  2399. for (reg_offset = 0; reg_offset < num_secondary_tile_mode_states; reg_offset++)
  2400. if (reg_offset != 7)
  2401. WREG32(mmGB_MACROTILE_MODE0 + reg_offset, mod2array[reg_offset]);
  2402. break;
  2403. case CHIP_TONGA:
  2404. modearray[0] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2405. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2406. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_64B) |
  2407. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2408. modearray[1] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2409. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2410. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_128B) |
  2411. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2412. modearray[2] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2413. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2414. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_256B) |
  2415. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2416. modearray[3] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2417. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2418. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_512B) |
  2419. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2420. modearray[4] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2421. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2422. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_2KB) |
  2423. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2424. modearray[5] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  2425. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2426. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_2KB) |
  2427. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2428. modearray[6] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2429. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2430. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_2KB) |
  2431. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2432. modearray[7] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2433. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2434. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_2KB) |
  2435. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2436. modearray[8] = (ARRAY_MODE(ARRAY_LINEAR_ALIGNED) |
  2437. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16));
  2438. modearray[9] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  2439. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2440. MICRO_TILE_MODE_NEW(ADDR_SURF_DISPLAY_MICRO_TILING) |
  2441. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2442. modearray[10] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2443. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2444. MICRO_TILE_MODE_NEW(ADDR_SURF_DISPLAY_MICRO_TILING) |
  2445. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2446. modearray[11] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2447. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2448. MICRO_TILE_MODE_NEW(ADDR_SURF_DISPLAY_MICRO_TILING) |
  2449. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2450. modearray[12] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2451. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2452. MICRO_TILE_MODE_NEW(ADDR_SURF_DISPLAY_MICRO_TILING) |
  2453. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2454. modearray[13] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  2455. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2456. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2457. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2458. modearray[14] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2459. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2460. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2461. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2462. modearray[15] = (ARRAY_MODE(ARRAY_3D_TILED_THIN1) |
  2463. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2464. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2465. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2466. modearray[16] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2467. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2468. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2469. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2470. modearray[17] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2471. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2472. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2473. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2474. modearray[18] = (ARRAY_MODE(ARRAY_1D_TILED_THICK) |
  2475. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2476. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2477. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2478. modearray[19] = (ARRAY_MODE(ARRAY_1D_TILED_THICK) |
  2479. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2480. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2481. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2482. modearray[20] = (ARRAY_MODE(ARRAY_2D_TILED_THICK) |
  2483. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2484. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2485. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2486. modearray[21] = (ARRAY_MODE(ARRAY_3D_TILED_THICK) |
  2487. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2488. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2489. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2490. modearray[22] = (ARRAY_MODE(ARRAY_PRT_TILED_THICK) |
  2491. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2492. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2493. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2494. modearray[23] = (ARRAY_MODE(ARRAY_PRT_TILED_THICK) |
  2495. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2496. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2497. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2498. modearray[24] = (ARRAY_MODE(ARRAY_2D_TILED_THICK) |
  2499. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2500. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2501. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2502. modearray[25] = (ARRAY_MODE(ARRAY_2D_TILED_XTHICK) |
  2503. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2504. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2505. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2506. modearray[26] = (ARRAY_MODE(ARRAY_3D_TILED_XTHICK) |
  2507. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2508. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2509. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2510. modearray[27] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  2511. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2512. MICRO_TILE_MODE_NEW(ADDR_SURF_ROTATED_MICRO_TILING) |
  2513. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2514. modearray[28] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2515. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2516. MICRO_TILE_MODE_NEW(ADDR_SURF_ROTATED_MICRO_TILING) |
  2517. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2518. modearray[29] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2519. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2520. MICRO_TILE_MODE_NEW(ADDR_SURF_ROTATED_MICRO_TILING) |
  2521. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2522. modearray[30] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2523. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2524. MICRO_TILE_MODE_NEW(ADDR_SURF_ROTATED_MICRO_TILING) |
  2525. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2526. mod2array[0] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2527. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  2528. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2529. NUM_BANKS(ADDR_SURF_16_BANK));
  2530. mod2array[1] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2531. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  2532. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2533. NUM_BANKS(ADDR_SURF_16_BANK));
  2534. mod2array[2] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2535. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  2536. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2537. NUM_BANKS(ADDR_SURF_16_BANK));
  2538. mod2array[3] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2539. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  2540. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2541. NUM_BANKS(ADDR_SURF_16_BANK));
  2542. mod2array[4] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2543. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_2) |
  2544. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  2545. NUM_BANKS(ADDR_SURF_16_BANK));
  2546. mod2array[5] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2547. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2548. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_1) |
  2549. NUM_BANKS(ADDR_SURF_16_BANK));
  2550. mod2array[6] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2551. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2552. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_1) |
  2553. NUM_BANKS(ADDR_SURF_16_BANK));
  2554. mod2array[8] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2555. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_8) |
  2556. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2557. NUM_BANKS(ADDR_SURF_16_BANK));
  2558. mod2array[9] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2559. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  2560. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2561. NUM_BANKS(ADDR_SURF_16_BANK));
  2562. mod2array[10] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2563. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_2) |
  2564. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  2565. NUM_BANKS(ADDR_SURF_16_BANK));
  2566. mod2array[11] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2567. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2568. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  2569. NUM_BANKS(ADDR_SURF_16_BANK));
  2570. mod2array[12] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2571. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2572. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_1) |
  2573. NUM_BANKS(ADDR_SURF_8_BANK));
  2574. mod2array[13] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2575. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2576. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_1) |
  2577. NUM_BANKS(ADDR_SURF_4_BANK));
  2578. mod2array[14] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2579. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2580. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_1) |
  2581. NUM_BANKS(ADDR_SURF_4_BANK));
  2582. for (reg_offset = 0; reg_offset < num_tile_mode_states; reg_offset++)
  2583. WREG32(mmGB_TILE_MODE0 + reg_offset, modearray[reg_offset]);
  2584. for (reg_offset = 0; reg_offset < num_secondary_tile_mode_states; reg_offset++)
  2585. if (reg_offset != 7)
  2586. WREG32(mmGB_MACROTILE_MODE0 + reg_offset, mod2array[reg_offset]);
  2587. break;
  2588. case CHIP_POLARIS11:
  2589. case CHIP_POLARIS12:
  2590. modearray[0] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2591. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2592. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_64B) |
  2593. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2594. modearray[1] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2595. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2596. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_128B) |
  2597. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2598. modearray[2] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2599. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2600. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_256B) |
  2601. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2602. modearray[3] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2603. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2604. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_512B) |
  2605. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2606. modearray[4] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2607. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2608. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_2KB) |
  2609. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2610. modearray[5] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  2611. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2612. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_2KB) |
  2613. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2614. modearray[6] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2615. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2616. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_2KB) |
  2617. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2618. modearray[7] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2619. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2620. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_2KB) |
  2621. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2622. modearray[8] = (ARRAY_MODE(ARRAY_LINEAR_ALIGNED) |
  2623. PIPE_CONFIG(ADDR_SURF_P4_16x16));
  2624. modearray[9] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  2625. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2626. MICRO_TILE_MODE_NEW(ADDR_SURF_DISPLAY_MICRO_TILING) |
  2627. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2628. modearray[10] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2629. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2630. MICRO_TILE_MODE_NEW(ADDR_SURF_DISPLAY_MICRO_TILING) |
  2631. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2632. modearray[11] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2633. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2634. MICRO_TILE_MODE_NEW(ADDR_SURF_DISPLAY_MICRO_TILING) |
  2635. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2636. modearray[12] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2637. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2638. MICRO_TILE_MODE_NEW(ADDR_SURF_DISPLAY_MICRO_TILING) |
  2639. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2640. modearray[13] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  2641. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2642. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2643. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2644. modearray[14] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2645. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2646. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2647. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2648. modearray[15] = (ARRAY_MODE(ARRAY_3D_TILED_THIN1) |
  2649. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2650. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2651. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2652. modearray[16] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2653. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2654. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2655. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2656. modearray[17] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2657. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2658. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2659. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2660. modearray[18] = (ARRAY_MODE(ARRAY_1D_TILED_THICK) |
  2661. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2662. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2663. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2664. modearray[19] = (ARRAY_MODE(ARRAY_1D_TILED_THICK) |
  2665. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2666. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2667. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2668. modearray[20] = (ARRAY_MODE(ARRAY_2D_TILED_THICK) |
  2669. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2670. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2671. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2672. modearray[21] = (ARRAY_MODE(ARRAY_3D_TILED_THICK) |
  2673. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2674. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2675. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2676. modearray[22] = (ARRAY_MODE(ARRAY_PRT_TILED_THICK) |
  2677. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2678. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2679. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2680. modearray[23] = (ARRAY_MODE(ARRAY_PRT_TILED_THICK) |
  2681. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2682. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2683. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2684. modearray[24] = (ARRAY_MODE(ARRAY_2D_TILED_THICK) |
  2685. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2686. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2687. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2688. modearray[25] = (ARRAY_MODE(ARRAY_2D_TILED_XTHICK) |
  2689. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2690. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2691. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2692. modearray[26] = (ARRAY_MODE(ARRAY_3D_TILED_XTHICK) |
  2693. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2694. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2695. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2696. modearray[27] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  2697. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2698. MICRO_TILE_MODE_NEW(ADDR_SURF_ROTATED_MICRO_TILING) |
  2699. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2700. modearray[28] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2701. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2702. MICRO_TILE_MODE_NEW(ADDR_SURF_ROTATED_MICRO_TILING) |
  2703. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2704. modearray[29] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2705. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2706. MICRO_TILE_MODE_NEW(ADDR_SURF_ROTATED_MICRO_TILING) |
  2707. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2708. modearray[30] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2709. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2710. MICRO_TILE_MODE_NEW(ADDR_SURF_ROTATED_MICRO_TILING) |
  2711. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2712. mod2array[0] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2713. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  2714. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2715. NUM_BANKS(ADDR_SURF_16_BANK));
  2716. mod2array[1] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2717. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  2718. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2719. NUM_BANKS(ADDR_SURF_16_BANK));
  2720. mod2array[2] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2721. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  2722. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2723. NUM_BANKS(ADDR_SURF_16_BANK));
  2724. mod2array[3] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2725. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_2) |
  2726. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2727. NUM_BANKS(ADDR_SURF_16_BANK));
  2728. mod2array[4] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2729. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2730. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  2731. NUM_BANKS(ADDR_SURF_16_BANK));
  2732. mod2array[5] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2733. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2734. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  2735. NUM_BANKS(ADDR_SURF_16_BANK));
  2736. mod2array[6] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2737. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2738. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  2739. NUM_BANKS(ADDR_SURF_16_BANK));
  2740. mod2array[8] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_2) |
  2741. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_8) |
  2742. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2743. NUM_BANKS(ADDR_SURF_16_BANK));
  2744. mod2array[9] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_2) |
  2745. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  2746. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2747. NUM_BANKS(ADDR_SURF_16_BANK));
  2748. mod2array[10] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2749. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  2750. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2751. NUM_BANKS(ADDR_SURF_16_BANK));
  2752. mod2array[11] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2753. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_2) |
  2754. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2755. NUM_BANKS(ADDR_SURF_16_BANK));
  2756. mod2array[12] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2757. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2758. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  2759. NUM_BANKS(ADDR_SURF_16_BANK));
  2760. mod2array[13] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2761. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2762. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  2763. NUM_BANKS(ADDR_SURF_8_BANK));
  2764. mod2array[14] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2765. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2766. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_1) |
  2767. NUM_BANKS(ADDR_SURF_4_BANK));
  2768. for (reg_offset = 0; reg_offset < num_tile_mode_states; reg_offset++)
  2769. WREG32(mmGB_TILE_MODE0 + reg_offset, modearray[reg_offset]);
  2770. for (reg_offset = 0; reg_offset < num_secondary_tile_mode_states; reg_offset++)
  2771. if (reg_offset != 7)
  2772. WREG32(mmGB_MACROTILE_MODE0 + reg_offset, mod2array[reg_offset]);
  2773. break;
  2774. case CHIP_POLARIS10:
  2775. modearray[0] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2776. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2777. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_64B) |
  2778. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2779. modearray[1] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2780. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2781. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_128B) |
  2782. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2783. modearray[2] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2784. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2785. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_256B) |
  2786. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2787. modearray[3] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2788. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2789. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_512B) |
  2790. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2791. modearray[4] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2792. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2793. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_2KB) |
  2794. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2795. modearray[5] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  2796. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2797. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_2KB) |
  2798. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2799. modearray[6] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2800. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2801. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_2KB) |
  2802. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2803. modearray[7] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2804. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2805. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_2KB) |
  2806. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2807. modearray[8] = (ARRAY_MODE(ARRAY_LINEAR_ALIGNED) |
  2808. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16));
  2809. modearray[9] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  2810. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2811. MICRO_TILE_MODE_NEW(ADDR_SURF_DISPLAY_MICRO_TILING) |
  2812. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2813. modearray[10] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2814. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2815. MICRO_TILE_MODE_NEW(ADDR_SURF_DISPLAY_MICRO_TILING) |
  2816. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2817. modearray[11] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2818. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2819. MICRO_TILE_MODE_NEW(ADDR_SURF_DISPLAY_MICRO_TILING) |
  2820. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2821. modearray[12] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2822. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2823. MICRO_TILE_MODE_NEW(ADDR_SURF_DISPLAY_MICRO_TILING) |
  2824. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2825. modearray[13] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  2826. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2827. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2828. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2829. modearray[14] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2830. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2831. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2832. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2833. modearray[15] = (ARRAY_MODE(ARRAY_3D_TILED_THIN1) |
  2834. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2835. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2836. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2837. modearray[16] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2838. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2839. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2840. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2841. modearray[17] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2842. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2843. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2844. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2845. modearray[18] = (ARRAY_MODE(ARRAY_1D_TILED_THICK) |
  2846. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2847. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2848. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2849. modearray[19] = (ARRAY_MODE(ARRAY_1D_TILED_THICK) |
  2850. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2851. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2852. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2853. modearray[20] = (ARRAY_MODE(ARRAY_2D_TILED_THICK) |
  2854. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2855. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2856. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2857. modearray[21] = (ARRAY_MODE(ARRAY_3D_TILED_THICK) |
  2858. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2859. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2860. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2861. modearray[22] = (ARRAY_MODE(ARRAY_PRT_TILED_THICK) |
  2862. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2863. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2864. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2865. modearray[23] = (ARRAY_MODE(ARRAY_PRT_TILED_THICK) |
  2866. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2867. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2868. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2869. modearray[24] = (ARRAY_MODE(ARRAY_2D_TILED_THICK) |
  2870. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2871. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  2872. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2873. modearray[25] = (ARRAY_MODE(ARRAY_2D_TILED_XTHICK) |
  2874. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2875. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2876. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2877. modearray[26] = (ARRAY_MODE(ARRAY_3D_TILED_XTHICK) |
  2878. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2879. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  2880. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  2881. modearray[27] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  2882. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2883. MICRO_TILE_MODE_NEW(ADDR_SURF_ROTATED_MICRO_TILING) |
  2884. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2885. modearray[28] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2886. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2887. MICRO_TILE_MODE_NEW(ADDR_SURF_ROTATED_MICRO_TILING) |
  2888. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2889. modearray[29] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2890. PIPE_CONFIG(ADDR_SURF_P8_32x32_16x16) |
  2891. MICRO_TILE_MODE_NEW(ADDR_SURF_ROTATED_MICRO_TILING) |
  2892. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2893. modearray[30] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2894. PIPE_CONFIG(ADDR_SURF_P4_16x16) |
  2895. MICRO_TILE_MODE_NEW(ADDR_SURF_ROTATED_MICRO_TILING) |
  2896. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  2897. mod2array[0] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2898. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  2899. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2900. NUM_BANKS(ADDR_SURF_16_BANK));
  2901. mod2array[1] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2902. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  2903. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2904. NUM_BANKS(ADDR_SURF_16_BANK));
  2905. mod2array[2] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2906. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  2907. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2908. NUM_BANKS(ADDR_SURF_16_BANK));
  2909. mod2array[3] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2910. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  2911. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2912. NUM_BANKS(ADDR_SURF_16_BANK));
  2913. mod2array[4] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2914. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_2) |
  2915. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  2916. NUM_BANKS(ADDR_SURF_16_BANK));
  2917. mod2array[5] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2918. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2919. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_1) |
  2920. NUM_BANKS(ADDR_SURF_16_BANK));
  2921. mod2array[6] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2922. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2923. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_1) |
  2924. NUM_BANKS(ADDR_SURF_16_BANK));
  2925. mod2array[8] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2926. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_8) |
  2927. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2928. NUM_BANKS(ADDR_SURF_16_BANK));
  2929. mod2array[9] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2930. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  2931. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  2932. NUM_BANKS(ADDR_SURF_16_BANK));
  2933. mod2array[10] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2934. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_2) |
  2935. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  2936. NUM_BANKS(ADDR_SURF_16_BANK));
  2937. mod2array[11] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2938. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2939. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  2940. NUM_BANKS(ADDR_SURF_16_BANK));
  2941. mod2array[12] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2942. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2943. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_1) |
  2944. NUM_BANKS(ADDR_SURF_8_BANK));
  2945. mod2array[13] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2946. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2947. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_1) |
  2948. NUM_BANKS(ADDR_SURF_4_BANK));
  2949. mod2array[14] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  2950. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  2951. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_1) |
  2952. NUM_BANKS(ADDR_SURF_4_BANK));
  2953. for (reg_offset = 0; reg_offset < num_tile_mode_states; reg_offset++)
  2954. WREG32(mmGB_TILE_MODE0 + reg_offset, modearray[reg_offset]);
  2955. for (reg_offset = 0; reg_offset < num_secondary_tile_mode_states; reg_offset++)
  2956. if (reg_offset != 7)
  2957. WREG32(mmGB_MACROTILE_MODE0 + reg_offset, mod2array[reg_offset]);
  2958. break;
  2959. case CHIP_STONEY:
  2960. modearray[0] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2961. PIPE_CONFIG(ADDR_SURF_P2) |
  2962. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_64B) |
  2963. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2964. modearray[1] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2965. PIPE_CONFIG(ADDR_SURF_P2) |
  2966. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_128B) |
  2967. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2968. modearray[2] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2969. PIPE_CONFIG(ADDR_SURF_P2) |
  2970. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_256B) |
  2971. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2972. modearray[3] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2973. PIPE_CONFIG(ADDR_SURF_P2) |
  2974. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_512B) |
  2975. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2976. modearray[4] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2977. PIPE_CONFIG(ADDR_SURF_P2) |
  2978. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_2KB) |
  2979. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2980. modearray[5] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  2981. PIPE_CONFIG(ADDR_SURF_P2) |
  2982. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_2KB) |
  2983. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2984. modearray[6] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2985. PIPE_CONFIG(ADDR_SURF_P2) |
  2986. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_2KB) |
  2987. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  2988. modearray[8] = (ARRAY_MODE(ARRAY_LINEAR_ALIGNED) |
  2989. PIPE_CONFIG(ADDR_SURF_P2));
  2990. modearray[9] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  2991. PIPE_CONFIG(ADDR_SURF_P2) |
  2992. MICRO_TILE_MODE_NEW(ADDR_SURF_DISPLAY_MICRO_TILING) |
  2993. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2994. modearray[10] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  2995. PIPE_CONFIG(ADDR_SURF_P2) |
  2996. MICRO_TILE_MODE_NEW(ADDR_SURF_DISPLAY_MICRO_TILING) |
  2997. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  2998. modearray[11] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  2999. PIPE_CONFIG(ADDR_SURF_P2) |
  3000. MICRO_TILE_MODE_NEW(ADDR_SURF_DISPLAY_MICRO_TILING) |
  3001. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  3002. modearray[13] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  3003. PIPE_CONFIG(ADDR_SURF_P2) |
  3004. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  3005. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  3006. modearray[14] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  3007. PIPE_CONFIG(ADDR_SURF_P2) |
  3008. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  3009. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  3010. modearray[15] = (ARRAY_MODE(ARRAY_3D_TILED_THIN1) |
  3011. PIPE_CONFIG(ADDR_SURF_P2) |
  3012. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  3013. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  3014. modearray[16] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  3015. PIPE_CONFIG(ADDR_SURF_P2) |
  3016. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  3017. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  3018. modearray[18] = (ARRAY_MODE(ARRAY_1D_TILED_THICK) |
  3019. PIPE_CONFIG(ADDR_SURF_P2) |
  3020. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  3021. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  3022. modearray[19] = (ARRAY_MODE(ARRAY_1D_TILED_THICK) |
  3023. PIPE_CONFIG(ADDR_SURF_P2) |
  3024. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  3025. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  3026. modearray[20] = (ARRAY_MODE(ARRAY_2D_TILED_THICK) |
  3027. PIPE_CONFIG(ADDR_SURF_P2) |
  3028. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  3029. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  3030. modearray[21] = (ARRAY_MODE(ARRAY_3D_TILED_THICK) |
  3031. PIPE_CONFIG(ADDR_SURF_P2) |
  3032. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  3033. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  3034. modearray[22] = (ARRAY_MODE(ARRAY_PRT_TILED_THICK) |
  3035. PIPE_CONFIG(ADDR_SURF_P2) |
  3036. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  3037. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  3038. modearray[24] = (ARRAY_MODE(ARRAY_2D_TILED_THICK) |
  3039. PIPE_CONFIG(ADDR_SURF_P2) |
  3040. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  3041. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  3042. modearray[25] = (ARRAY_MODE(ARRAY_2D_TILED_XTHICK) |
  3043. PIPE_CONFIG(ADDR_SURF_P2) |
  3044. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  3045. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  3046. modearray[26] = (ARRAY_MODE(ARRAY_3D_TILED_XTHICK) |
  3047. PIPE_CONFIG(ADDR_SURF_P2) |
  3048. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  3049. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  3050. modearray[27] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  3051. PIPE_CONFIG(ADDR_SURF_P2) |
  3052. MICRO_TILE_MODE_NEW(ADDR_SURF_ROTATED_MICRO_TILING) |
  3053. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  3054. modearray[28] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  3055. PIPE_CONFIG(ADDR_SURF_P2) |
  3056. MICRO_TILE_MODE_NEW(ADDR_SURF_ROTATED_MICRO_TILING) |
  3057. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  3058. modearray[29] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  3059. PIPE_CONFIG(ADDR_SURF_P2) |
  3060. MICRO_TILE_MODE_NEW(ADDR_SURF_ROTATED_MICRO_TILING) |
  3061. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  3062. mod2array[0] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  3063. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  3064. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  3065. NUM_BANKS(ADDR_SURF_8_BANK));
  3066. mod2array[1] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  3067. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_2) |
  3068. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  3069. NUM_BANKS(ADDR_SURF_8_BANK));
  3070. mod2array[2] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  3071. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  3072. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  3073. NUM_BANKS(ADDR_SURF_8_BANK));
  3074. mod2array[3] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  3075. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  3076. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  3077. NUM_BANKS(ADDR_SURF_8_BANK));
  3078. mod2array[4] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  3079. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  3080. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  3081. NUM_BANKS(ADDR_SURF_8_BANK));
  3082. mod2array[5] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  3083. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  3084. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  3085. NUM_BANKS(ADDR_SURF_8_BANK));
  3086. mod2array[6] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  3087. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  3088. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  3089. NUM_BANKS(ADDR_SURF_8_BANK));
  3090. mod2array[8] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_4) |
  3091. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_8) |
  3092. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  3093. NUM_BANKS(ADDR_SURF_16_BANK));
  3094. mod2array[9] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_4) |
  3095. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  3096. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  3097. NUM_BANKS(ADDR_SURF_16_BANK));
  3098. mod2array[10] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_2) |
  3099. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  3100. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  3101. NUM_BANKS(ADDR_SURF_16_BANK));
  3102. mod2array[11] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_2) |
  3103. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_2) |
  3104. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  3105. NUM_BANKS(ADDR_SURF_16_BANK));
  3106. mod2array[12] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  3107. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_2) |
  3108. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  3109. NUM_BANKS(ADDR_SURF_16_BANK));
  3110. mod2array[13] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  3111. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  3112. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  3113. NUM_BANKS(ADDR_SURF_16_BANK));
  3114. mod2array[14] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  3115. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  3116. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  3117. NUM_BANKS(ADDR_SURF_8_BANK));
  3118. for (reg_offset = 0; reg_offset < num_tile_mode_states; reg_offset++)
  3119. if (reg_offset != 7 && reg_offset != 12 && reg_offset != 17 &&
  3120. reg_offset != 23)
  3121. WREG32(mmGB_TILE_MODE0 + reg_offset, modearray[reg_offset]);
  3122. for (reg_offset = 0; reg_offset < num_secondary_tile_mode_states; reg_offset++)
  3123. if (reg_offset != 7)
  3124. WREG32(mmGB_MACROTILE_MODE0 + reg_offset, mod2array[reg_offset]);
  3125. break;
  3126. default:
  3127. dev_warn(adev->dev,
  3128. "Unknown chip type (%d) in function gfx_v8_0_tiling_mode_table_init() falling through to CHIP_CARRIZO\n",
  3129. adev->asic_type);
  3130. case CHIP_CARRIZO:
  3131. modearray[0] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  3132. PIPE_CONFIG(ADDR_SURF_P2) |
  3133. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_64B) |
  3134. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  3135. modearray[1] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  3136. PIPE_CONFIG(ADDR_SURF_P2) |
  3137. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_128B) |
  3138. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  3139. modearray[2] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  3140. PIPE_CONFIG(ADDR_SURF_P2) |
  3141. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_256B) |
  3142. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  3143. modearray[3] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  3144. PIPE_CONFIG(ADDR_SURF_P2) |
  3145. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_512B) |
  3146. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  3147. modearray[4] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  3148. PIPE_CONFIG(ADDR_SURF_P2) |
  3149. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_2KB) |
  3150. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  3151. modearray[5] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  3152. PIPE_CONFIG(ADDR_SURF_P2) |
  3153. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_2KB) |
  3154. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  3155. modearray[6] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  3156. PIPE_CONFIG(ADDR_SURF_P2) |
  3157. TILE_SPLIT(ADDR_SURF_TILE_SPLIT_2KB) |
  3158. MICRO_TILE_MODE_NEW(ADDR_SURF_DEPTH_MICRO_TILING));
  3159. modearray[8] = (ARRAY_MODE(ARRAY_LINEAR_ALIGNED) |
  3160. PIPE_CONFIG(ADDR_SURF_P2));
  3161. modearray[9] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  3162. PIPE_CONFIG(ADDR_SURF_P2) |
  3163. MICRO_TILE_MODE_NEW(ADDR_SURF_DISPLAY_MICRO_TILING) |
  3164. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  3165. modearray[10] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  3166. PIPE_CONFIG(ADDR_SURF_P2) |
  3167. MICRO_TILE_MODE_NEW(ADDR_SURF_DISPLAY_MICRO_TILING) |
  3168. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  3169. modearray[11] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  3170. PIPE_CONFIG(ADDR_SURF_P2) |
  3171. MICRO_TILE_MODE_NEW(ADDR_SURF_DISPLAY_MICRO_TILING) |
  3172. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  3173. modearray[13] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  3174. PIPE_CONFIG(ADDR_SURF_P2) |
  3175. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  3176. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  3177. modearray[14] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  3178. PIPE_CONFIG(ADDR_SURF_P2) |
  3179. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  3180. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  3181. modearray[15] = (ARRAY_MODE(ARRAY_3D_TILED_THIN1) |
  3182. PIPE_CONFIG(ADDR_SURF_P2) |
  3183. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  3184. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  3185. modearray[16] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  3186. PIPE_CONFIG(ADDR_SURF_P2) |
  3187. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  3188. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  3189. modearray[18] = (ARRAY_MODE(ARRAY_1D_TILED_THICK) |
  3190. PIPE_CONFIG(ADDR_SURF_P2) |
  3191. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  3192. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  3193. modearray[19] = (ARRAY_MODE(ARRAY_1D_TILED_THICK) |
  3194. PIPE_CONFIG(ADDR_SURF_P2) |
  3195. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  3196. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  3197. modearray[20] = (ARRAY_MODE(ARRAY_2D_TILED_THICK) |
  3198. PIPE_CONFIG(ADDR_SURF_P2) |
  3199. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  3200. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  3201. modearray[21] = (ARRAY_MODE(ARRAY_3D_TILED_THICK) |
  3202. PIPE_CONFIG(ADDR_SURF_P2) |
  3203. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  3204. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  3205. modearray[22] = (ARRAY_MODE(ARRAY_PRT_TILED_THICK) |
  3206. PIPE_CONFIG(ADDR_SURF_P2) |
  3207. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  3208. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  3209. modearray[24] = (ARRAY_MODE(ARRAY_2D_TILED_THICK) |
  3210. PIPE_CONFIG(ADDR_SURF_P2) |
  3211. MICRO_TILE_MODE_NEW(ADDR_SURF_THIN_MICRO_TILING) |
  3212. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  3213. modearray[25] = (ARRAY_MODE(ARRAY_2D_TILED_XTHICK) |
  3214. PIPE_CONFIG(ADDR_SURF_P2) |
  3215. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  3216. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  3217. modearray[26] = (ARRAY_MODE(ARRAY_3D_TILED_XTHICK) |
  3218. PIPE_CONFIG(ADDR_SURF_P2) |
  3219. MICRO_TILE_MODE_NEW(ADDR_SURF_THICK_MICRO_TILING) |
  3220. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_1));
  3221. modearray[27] = (ARRAY_MODE(ARRAY_1D_TILED_THIN1) |
  3222. PIPE_CONFIG(ADDR_SURF_P2) |
  3223. MICRO_TILE_MODE_NEW(ADDR_SURF_ROTATED_MICRO_TILING) |
  3224. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  3225. modearray[28] = (ARRAY_MODE(ARRAY_2D_TILED_THIN1) |
  3226. PIPE_CONFIG(ADDR_SURF_P2) |
  3227. MICRO_TILE_MODE_NEW(ADDR_SURF_ROTATED_MICRO_TILING) |
  3228. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_2));
  3229. modearray[29] = (ARRAY_MODE(ARRAY_PRT_TILED_THIN1) |
  3230. PIPE_CONFIG(ADDR_SURF_P2) |
  3231. MICRO_TILE_MODE_NEW(ADDR_SURF_ROTATED_MICRO_TILING) |
  3232. SAMPLE_SPLIT(ADDR_SURF_SAMPLE_SPLIT_8));
  3233. mod2array[0] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  3234. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  3235. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  3236. NUM_BANKS(ADDR_SURF_8_BANK));
  3237. mod2array[1] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  3238. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_2) |
  3239. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  3240. NUM_BANKS(ADDR_SURF_8_BANK));
  3241. mod2array[2] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  3242. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  3243. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  3244. NUM_BANKS(ADDR_SURF_8_BANK));
  3245. mod2array[3] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  3246. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  3247. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  3248. NUM_BANKS(ADDR_SURF_8_BANK));
  3249. mod2array[4] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  3250. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  3251. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  3252. NUM_BANKS(ADDR_SURF_8_BANK));
  3253. mod2array[5] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  3254. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  3255. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  3256. NUM_BANKS(ADDR_SURF_8_BANK));
  3257. mod2array[6] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  3258. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  3259. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  3260. NUM_BANKS(ADDR_SURF_8_BANK));
  3261. mod2array[8] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_4) |
  3262. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_8) |
  3263. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  3264. NUM_BANKS(ADDR_SURF_16_BANK));
  3265. mod2array[9] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_4) |
  3266. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  3267. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  3268. NUM_BANKS(ADDR_SURF_16_BANK));
  3269. mod2array[10] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_2) |
  3270. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_4) |
  3271. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  3272. NUM_BANKS(ADDR_SURF_16_BANK));
  3273. mod2array[11] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_2) |
  3274. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_2) |
  3275. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  3276. NUM_BANKS(ADDR_SURF_16_BANK));
  3277. mod2array[12] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  3278. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_2) |
  3279. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  3280. NUM_BANKS(ADDR_SURF_16_BANK));
  3281. mod2array[13] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  3282. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  3283. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_4) |
  3284. NUM_BANKS(ADDR_SURF_16_BANK));
  3285. mod2array[14] = (BANK_WIDTH(ADDR_SURF_BANK_WIDTH_1) |
  3286. BANK_HEIGHT(ADDR_SURF_BANK_HEIGHT_1) |
  3287. MACRO_TILE_ASPECT(ADDR_SURF_MACRO_ASPECT_2) |
  3288. NUM_BANKS(ADDR_SURF_8_BANK));
  3289. for (reg_offset = 0; reg_offset < num_tile_mode_states; reg_offset++)
  3290. if (reg_offset != 7 && reg_offset != 12 && reg_offset != 17 &&
  3291. reg_offset != 23)
  3292. WREG32(mmGB_TILE_MODE0 + reg_offset, modearray[reg_offset]);
  3293. for (reg_offset = 0; reg_offset < num_secondary_tile_mode_states; reg_offset++)
  3294. if (reg_offset != 7)
  3295. WREG32(mmGB_MACROTILE_MODE0 + reg_offset, mod2array[reg_offset]);
  3296. break;
  3297. }
  3298. }
  3299. static void gfx_v8_0_select_se_sh(struct amdgpu_device *adev,
  3300. u32 se_num, u32 sh_num, u32 instance)
  3301. {
  3302. u32 data;
  3303. if (instance == 0xffffffff)
  3304. data = REG_SET_FIELD(0, GRBM_GFX_INDEX, INSTANCE_BROADCAST_WRITES, 1);
  3305. else
  3306. data = REG_SET_FIELD(0, GRBM_GFX_INDEX, INSTANCE_INDEX, instance);
  3307. if (se_num == 0xffffffff)
  3308. data = REG_SET_FIELD(data, GRBM_GFX_INDEX, SE_BROADCAST_WRITES, 1);
  3309. else
  3310. data = REG_SET_FIELD(data, GRBM_GFX_INDEX, SE_INDEX, se_num);
  3311. if (sh_num == 0xffffffff)
  3312. data = REG_SET_FIELD(data, GRBM_GFX_INDEX, SH_BROADCAST_WRITES, 1);
  3313. else
  3314. data = REG_SET_FIELD(data, GRBM_GFX_INDEX, SH_INDEX, sh_num);
  3315. WREG32(mmGRBM_GFX_INDEX, data);
  3316. }
  3317. static u32 gfx_v8_0_create_bitmask(u32 bit_width)
  3318. {
  3319. return (u32)((1ULL << bit_width) - 1);
  3320. }
  3321. static u32 gfx_v8_0_get_rb_active_bitmap(struct amdgpu_device *adev)
  3322. {
  3323. u32 data, mask;
  3324. data = RREG32(mmCC_RB_BACKEND_DISABLE) |
  3325. RREG32(mmGC_USER_RB_BACKEND_DISABLE);
  3326. data = REG_GET_FIELD(data, GC_USER_RB_BACKEND_DISABLE, BACKEND_DISABLE);
  3327. mask = gfx_v8_0_create_bitmask(adev->gfx.config.max_backends_per_se /
  3328. adev->gfx.config.max_sh_per_se);
  3329. return (~data) & mask;
  3330. }
  3331. static void
  3332. gfx_v8_0_raster_config(struct amdgpu_device *adev, u32 *rconf, u32 *rconf1)
  3333. {
  3334. switch (adev->asic_type) {
  3335. case CHIP_FIJI:
  3336. *rconf |= RB_MAP_PKR0(2) | RB_MAP_PKR1(2) |
  3337. RB_XSEL2(1) | PKR_MAP(2) |
  3338. PKR_XSEL(1) | PKR_YSEL(1) |
  3339. SE_MAP(2) | SE_XSEL(2) | SE_YSEL(3);
  3340. *rconf1 |= SE_PAIR_MAP(2) | SE_PAIR_XSEL(3) |
  3341. SE_PAIR_YSEL(2);
  3342. break;
  3343. case CHIP_TONGA:
  3344. case CHIP_POLARIS10:
  3345. *rconf |= RB_MAP_PKR0(2) | RB_XSEL2(1) | SE_MAP(2) |
  3346. SE_XSEL(1) | SE_YSEL(1);
  3347. *rconf1 |= SE_PAIR_MAP(2) | SE_PAIR_XSEL(2) |
  3348. SE_PAIR_YSEL(2);
  3349. break;
  3350. case CHIP_TOPAZ:
  3351. case CHIP_CARRIZO:
  3352. *rconf |= RB_MAP_PKR0(2);
  3353. *rconf1 |= 0x0;
  3354. break;
  3355. case CHIP_POLARIS11:
  3356. case CHIP_POLARIS12:
  3357. *rconf |= RB_MAP_PKR0(2) | RB_XSEL2(1) | SE_MAP(2) |
  3358. SE_XSEL(1) | SE_YSEL(1);
  3359. *rconf1 |= 0x0;
  3360. break;
  3361. case CHIP_STONEY:
  3362. *rconf |= 0x0;
  3363. *rconf1 |= 0x0;
  3364. break;
  3365. default:
  3366. DRM_ERROR("unknown asic: 0x%x\n", adev->asic_type);
  3367. break;
  3368. }
  3369. }
  3370. static void
  3371. gfx_v8_0_write_harvested_raster_configs(struct amdgpu_device *adev,
  3372. u32 raster_config, u32 raster_config_1,
  3373. unsigned rb_mask, unsigned num_rb)
  3374. {
  3375. unsigned sh_per_se = max_t(unsigned, adev->gfx.config.max_sh_per_se, 1);
  3376. unsigned num_se = max_t(unsigned, adev->gfx.config.max_shader_engines, 1);
  3377. unsigned rb_per_pkr = min_t(unsigned, num_rb / num_se / sh_per_se, 2);
  3378. unsigned rb_per_se = num_rb / num_se;
  3379. unsigned se_mask[4];
  3380. unsigned se;
  3381. se_mask[0] = ((1 << rb_per_se) - 1) & rb_mask;
  3382. se_mask[1] = (se_mask[0] << rb_per_se) & rb_mask;
  3383. se_mask[2] = (se_mask[1] << rb_per_se) & rb_mask;
  3384. se_mask[3] = (se_mask[2] << rb_per_se) & rb_mask;
  3385. WARN_ON(!(num_se == 1 || num_se == 2 || num_se == 4));
  3386. WARN_ON(!(sh_per_se == 1 || sh_per_se == 2));
  3387. WARN_ON(!(rb_per_pkr == 1 || rb_per_pkr == 2));
  3388. if ((num_se > 2) && ((!se_mask[0] && !se_mask[1]) ||
  3389. (!se_mask[2] && !se_mask[3]))) {
  3390. raster_config_1 &= ~SE_PAIR_MAP_MASK;
  3391. if (!se_mask[0] && !se_mask[1]) {
  3392. raster_config_1 |=
  3393. SE_PAIR_MAP(RASTER_CONFIG_SE_PAIR_MAP_3);
  3394. } else {
  3395. raster_config_1 |=
  3396. SE_PAIR_MAP(RASTER_CONFIG_SE_PAIR_MAP_0);
  3397. }
  3398. }
  3399. for (se = 0; se < num_se; se++) {
  3400. unsigned raster_config_se = raster_config;
  3401. unsigned pkr0_mask = ((1 << rb_per_pkr) - 1) << (se * rb_per_se);
  3402. unsigned pkr1_mask = pkr0_mask << rb_per_pkr;
  3403. int idx = (se / 2) * 2;
  3404. if ((num_se > 1) && (!se_mask[idx] || !se_mask[idx + 1])) {
  3405. raster_config_se &= ~SE_MAP_MASK;
  3406. if (!se_mask[idx]) {
  3407. raster_config_se |= SE_MAP(RASTER_CONFIG_SE_MAP_3);
  3408. } else {
  3409. raster_config_se |= SE_MAP(RASTER_CONFIG_SE_MAP_0);
  3410. }
  3411. }
  3412. pkr0_mask &= rb_mask;
  3413. pkr1_mask &= rb_mask;
  3414. if (rb_per_se > 2 && (!pkr0_mask || !pkr1_mask)) {
  3415. raster_config_se &= ~PKR_MAP_MASK;
  3416. if (!pkr0_mask) {
  3417. raster_config_se |= PKR_MAP(RASTER_CONFIG_PKR_MAP_3);
  3418. } else {
  3419. raster_config_se |= PKR_MAP(RASTER_CONFIG_PKR_MAP_0);
  3420. }
  3421. }
  3422. if (rb_per_se >= 2) {
  3423. unsigned rb0_mask = 1 << (se * rb_per_se);
  3424. unsigned rb1_mask = rb0_mask << 1;
  3425. rb0_mask &= rb_mask;
  3426. rb1_mask &= rb_mask;
  3427. if (!rb0_mask || !rb1_mask) {
  3428. raster_config_se &= ~RB_MAP_PKR0_MASK;
  3429. if (!rb0_mask) {
  3430. raster_config_se |=
  3431. RB_MAP_PKR0(RASTER_CONFIG_RB_MAP_3);
  3432. } else {
  3433. raster_config_se |=
  3434. RB_MAP_PKR0(RASTER_CONFIG_RB_MAP_0);
  3435. }
  3436. }
  3437. if (rb_per_se > 2) {
  3438. rb0_mask = 1 << (se * rb_per_se + rb_per_pkr);
  3439. rb1_mask = rb0_mask << 1;
  3440. rb0_mask &= rb_mask;
  3441. rb1_mask &= rb_mask;
  3442. if (!rb0_mask || !rb1_mask) {
  3443. raster_config_se &= ~RB_MAP_PKR1_MASK;
  3444. if (!rb0_mask) {
  3445. raster_config_se |=
  3446. RB_MAP_PKR1(RASTER_CONFIG_RB_MAP_3);
  3447. } else {
  3448. raster_config_se |=
  3449. RB_MAP_PKR1(RASTER_CONFIG_RB_MAP_0);
  3450. }
  3451. }
  3452. }
  3453. }
  3454. /* GRBM_GFX_INDEX has a different offset on VI */
  3455. gfx_v8_0_select_se_sh(adev, se, 0xffffffff, 0xffffffff);
  3456. WREG32(mmPA_SC_RASTER_CONFIG, raster_config_se);
  3457. WREG32(mmPA_SC_RASTER_CONFIG_1, raster_config_1);
  3458. }
  3459. /* GRBM_GFX_INDEX has a different offset on VI */
  3460. gfx_v8_0_select_se_sh(adev, 0xffffffff, 0xffffffff, 0xffffffff);
  3461. }
  3462. static void gfx_v8_0_setup_rb(struct amdgpu_device *adev)
  3463. {
  3464. int i, j;
  3465. u32 data;
  3466. u32 raster_config = 0, raster_config_1 = 0;
  3467. u32 active_rbs = 0;
  3468. u32 rb_bitmap_width_per_sh = adev->gfx.config.max_backends_per_se /
  3469. adev->gfx.config.max_sh_per_se;
  3470. unsigned num_rb_pipes;
  3471. mutex_lock(&adev->grbm_idx_mutex);
  3472. for (i = 0; i < adev->gfx.config.max_shader_engines; i++) {
  3473. for (j = 0; j < adev->gfx.config.max_sh_per_se; j++) {
  3474. gfx_v8_0_select_se_sh(adev, i, j, 0xffffffff);
  3475. data = gfx_v8_0_get_rb_active_bitmap(adev);
  3476. active_rbs |= data << ((i * adev->gfx.config.max_sh_per_se + j) *
  3477. rb_bitmap_width_per_sh);
  3478. }
  3479. }
  3480. gfx_v8_0_select_se_sh(adev, 0xffffffff, 0xffffffff, 0xffffffff);
  3481. adev->gfx.config.backend_enable_mask = active_rbs;
  3482. adev->gfx.config.num_rbs = hweight32(active_rbs);
  3483. num_rb_pipes = min_t(unsigned, adev->gfx.config.max_backends_per_se *
  3484. adev->gfx.config.max_shader_engines, 16);
  3485. gfx_v8_0_raster_config(adev, &raster_config, &raster_config_1);
  3486. if (!adev->gfx.config.backend_enable_mask ||
  3487. adev->gfx.config.num_rbs >= num_rb_pipes) {
  3488. WREG32(mmPA_SC_RASTER_CONFIG, raster_config);
  3489. WREG32(mmPA_SC_RASTER_CONFIG_1, raster_config_1);
  3490. } else {
  3491. gfx_v8_0_write_harvested_raster_configs(adev, raster_config, raster_config_1,
  3492. adev->gfx.config.backend_enable_mask,
  3493. num_rb_pipes);
  3494. }
  3495. /* cache the values for userspace */
  3496. for (i = 0; i < adev->gfx.config.max_shader_engines; i++) {
  3497. for (j = 0; j < adev->gfx.config.max_sh_per_se; j++) {
  3498. gfx_v8_0_select_se_sh(adev, i, j, 0xffffffff);
  3499. adev->gfx.config.rb_config[i][j].rb_backend_disable =
  3500. RREG32(mmCC_RB_BACKEND_DISABLE);
  3501. adev->gfx.config.rb_config[i][j].user_rb_backend_disable =
  3502. RREG32(mmGC_USER_RB_BACKEND_DISABLE);
  3503. adev->gfx.config.rb_config[i][j].raster_config =
  3504. RREG32(mmPA_SC_RASTER_CONFIG);
  3505. adev->gfx.config.rb_config[i][j].raster_config_1 =
  3506. RREG32(mmPA_SC_RASTER_CONFIG_1);
  3507. }
  3508. }
  3509. gfx_v8_0_select_se_sh(adev, 0xffffffff, 0xffffffff, 0xffffffff);
  3510. mutex_unlock(&adev->grbm_idx_mutex);
  3511. }
  3512. /**
  3513. * gfx_v8_0_init_compute_vmid - gart enable
  3514. *
  3515. * @rdev: amdgpu_device pointer
  3516. *
  3517. * Initialize compute vmid sh_mem registers
  3518. *
  3519. */
  3520. #define DEFAULT_SH_MEM_BASES (0x6000)
  3521. #define FIRST_COMPUTE_VMID (8)
  3522. #define LAST_COMPUTE_VMID (16)
  3523. static void gfx_v8_0_init_compute_vmid(struct amdgpu_device *adev)
  3524. {
  3525. int i;
  3526. uint32_t sh_mem_config;
  3527. uint32_t sh_mem_bases;
  3528. /*
  3529. * Configure apertures:
  3530. * LDS: 0x60000000'00000000 - 0x60000001'00000000 (4GB)
  3531. * Scratch: 0x60000001'00000000 - 0x60000002'00000000 (4GB)
  3532. * GPUVM: 0x60010000'00000000 - 0x60020000'00000000 (1TB)
  3533. */
  3534. sh_mem_bases = DEFAULT_SH_MEM_BASES | (DEFAULT_SH_MEM_BASES << 16);
  3535. sh_mem_config = SH_MEM_ADDRESS_MODE_HSA64 <<
  3536. SH_MEM_CONFIG__ADDRESS_MODE__SHIFT |
  3537. SH_MEM_ALIGNMENT_MODE_UNALIGNED <<
  3538. SH_MEM_CONFIG__ALIGNMENT_MODE__SHIFT |
  3539. MTYPE_CC << SH_MEM_CONFIG__DEFAULT_MTYPE__SHIFT |
  3540. SH_MEM_CONFIG__PRIVATE_ATC_MASK;
  3541. mutex_lock(&adev->srbm_mutex);
  3542. for (i = FIRST_COMPUTE_VMID; i < LAST_COMPUTE_VMID; i++) {
  3543. vi_srbm_select(adev, 0, 0, 0, i);
  3544. /* CP and shaders */
  3545. WREG32(mmSH_MEM_CONFIG, sh_mem_config);
  3546. WREG32(mmSH_MEM_APE1_BASE, 1);
  3547. WREG32(mmSH_MEM_APE1_LIMIT, 0);
  3548. WREG32(mmSH_MEM_BASES, sh_mem_bases);
  3549. }
  3550. vi_srbm_select(adev, 0, 0, 0, 0);
  3551. mutex_unlock(&adev->srbm_mutex);
  3552. }
  3553. static void gfx_v8_0_config_init(struct amdgpu_device *adev)
  3554. {
  3555. switch (adev->asic_type) {
  3556. default:
  3557. adev->gfx.config.double_offchip_lds_buf = 1;
  3558. break;
  3559. case CHIP_CARRIZO:
  3560. case CHIP_STONEY:
  3561. adev->gfx.config.double_offchip_lds_buf = 0;
  3562. break;
  3563. }
  3564. }
  3565. static void gfx_v8_0_gpu_init(struct amdgpu_device *adev)
  3566. {
  3567. u32 tmp, sh_static_mem_cfg;
  3568. int i;
  3569. WREG32_FIELD(GRBM_CNTL, READ_TIMEOUT, 0xFF);
  3570. WREG32(mmGB_ADDR_CONFIG, adev->gfx.config.gb_addr_config);
  3571. WREG32(mmHDP_ADDR_CONFIG, adev->gfx.config.gb_addr_config);
  3572. WREG32(mmDMIF_ADDR_CALC, adev->gfx.config.gb_addr_config);
  3573. gfx_v8_0_tiling_mode_table_init(adev);
  3574. gfx_v8_0_setup_rb(adev);
  3575. gfx_v8_0_get_cu_info(adev);
  3576. gfx_v8_0_config_init(adev);
  3577. /* XXX SH_MEM regs */
  3578. /* where to put LDS, scratch, GPUVM in FSA64 space */
  3579. sh_static_mem_cfg = REG_SET_FIELD(0, SH_STATIC_MEM_CONFIG,
  3580. SWIZZLE_ENABLE, 1);
  3581. sh_static_mem_cfg = REG_SET_FIELD(sh_static_mem_cfg, SH_STATIC_MEM_CONFIG,
  3582. ELEMENT_SIZE, 1);
  3583. sh_static_mem_cfg = REG_SET_FIELD(sh_static_mem_cfg, SH_STATIC_MEM_CONFIG,
  3584. INDEX_STRIDE, 3);
  3585. mutex_lock(&adev->srbm_mutex);
  3586. for (i = 0; i < adev->vm_manager.id_mgr[0].num_ids; i++) {
  3587. vi_srbm_select(adev, 0, 0, 0, i);
  3588. /* CP and shaders */
  3589. if (i == 0) {
  3590. tmp = REG_SET_FIELD(0, SH_MEM_CONFIG, DEFAULT_MTYPE, MTYPE_UC);
  3591. tmp = REG_SET_FIELD(tmp, SH_MEM_CONFIG, APE1_MTYPE, MTYPE_UC);
  3592. tmp = REG_SET_FIELD(tmp, SH_MEM_CONFIG, ALIGNMENT_MODE,
  3593. SH_MEM_ALIGNMENT_MODE_UNALIGNED);
  3594. WREG32(mmSH_MEM_CONFIG, tmp);
  3595. WREG32(mmSH_MEM_BASES, 0);
  3596. } else {
  3597. tmp = REG_SET_FIELD(0, SH_MEM_CONFIG, DEFAULT_MTYPE, MTYPE_NC);
  3598. tmp = REG_SET_FIELD(tmp, SH_MEM_CONFIG, APE1_MTYPE, MTYPE_UC);
  3599. tmp = REG_SET_FIELD(tmp, SH_MEM_CONFIG, ALIGNMENT_MODE,
  3600. SH_MEM_ALIGNMENT_MODE_UNALIGNED);
  3601. WREG32(mmSH_MEM_CONFIG, tmp);
  3602. tmp = adev->mc.shared_aperture_start >> 48;
  3603. WREG32(mmSH_MEM_BASES, tmp);
  3604. }
  3605. WREG32(mmSH_MEM_APE1_BASE, 1);
  3606. WREG32(mmSH_MEM_APE1_LIMIT, 0);
  3607. WREG32(mmSH_STATIC_MEM_CONFIG, sh_static_mem_cfg);
  3608. }
  3609. vi_srbm_select(adev, 0, 0, 0, 0);
  3610. mutex_unlock(&adev->srbm_mutex);
  3611. gfx_v8_0_init_compute_vmid(adev);
  3612. mutex_lock(&adev->grbm_idx_mutex);
  3613. /*
  3614. * making sure that the following register writes will be broadcasted
  3615. * to all the shaders
  3616. */
  3617. gfx_v8_0_select_se_sh(adev, 0xffffffff, 0xffffffff, 0xffffffff);
  3618. WREG32(mmPA_SC_FIFO_SIZE,
  3619. (adev->gfx.config.sc_prim_fifo_size_frontend <<
  3620. PA_SC_FIFO_SIZE__SC_FRONTEND_PRIM_FIFO_SIZE__SHIFT) |
  3621. (adev->gfx.config.sc_prim_fifo_size_backend <<
  3622. PA_SC_FIFO_SIZE__SC_BACKEND_PRIM_FIFO_SIZE__SHIFT) |
  3623. (adev->gfx.config.sc_hiz_tile_fifo_size <<
  3624. PA_SC_FIFO_SIZE__SC_HIZ_TILE_FIFO_SIZE__SHIFT) |
  3625. (adev->gfx.config.sc_earlyz_tile_fifo_size <<
  3626. PA_SC_FIFO_SIZE__SC_EARLYZ_TILE_FIFO_SIZE__SHIFT));
  3627. tmp = RREG32(mmSPI_ARB_PRIORITY);
  3628. tmp = REG_SET_FIELD(tmp, SPI_ARB_PRIORITY, PIPE_ORDER_TS0, 2);
  3629. tmp = REG_SET_FIELD(tmp, SPI_ARB_PRIORITY, PIPE_ORDER_TS1, 2);
  3630. tmp = REG_SET_FIELD(tmp, SPI_ARB_PRIORITY, PIPE_ORDER_TS2, 2);
  3631. tmp = REG_SET_FIELD(tmp, SPI_ARB_PRIORITY, PIPE_ORDER_TS3, 2);
  3632. WREG32(mmSPI_ARB_PRIORITY, tmp);
  3633. mutex_unlock(&adev->grbm_idx_mutex);
  3634. }
  3635. static void gfx_v8_0_wait_for_rlc_serdes(struct amdgpu_device *adev)
  3636. {
  3637. u32 i, j, k;
  3638. u32 mask;
  3639. mutex_lock(&adev->grbm_idx_mutex);
  3640. for (i = 0; i < adev->gfx.config.max_shader_engines; i++) {
  3641. for (j = 0; j < adev->gfx.config.max_sh_per_se; j++) {
  3642. gfx_v8_0_select_se_sh(adev, i, j, 0xffffffff);
  3643. for (k = 0; k < adev->usec_timeout; k++) {
  3644. if (RREG32(mmRLC_SERDES_CU_MASTER_BUSY) == 0)
  3645. break;
  3646. udelay(1);
  3647. }
  3648. }
  3649. }
  3650. gfx_v8_0_select_se_sh(adev, 0xffffffff, 0xffffffff, 0xffffffff);
  3651. mutex_unlock(&adev->grbm_idx_mutex);
  3652. mask = RLC_SERDES_NONCU_MASTER_BUSY__SE_MASTER_BUSY_MASK |
  3653. RLC_SERDES_NONCU_MASTER_BUSY__GC_MASTER_BUSY_MASK |
  3654. RLC_SERDES_NONCU_MASTER_BUSY__TC0_MASTER_BUSY_MASK |
  3655. RLC_SERDES_NONCU_MASTER_BUSY__TC1_MASTER_BUSY_MASK;
  3656. for (k = 0; k < adev->usec_timeout; k++) {
  3657. if ((RREG32(mmRLC_SERDES_NONCU_MASTER_BUSY) & mask) == 0)
  3658. break;
  3659. udelay(1);
  3660. }
  3661. }
  3662. static void gfx_v8_0_enable_gui_idle_interrupt(struct amdgpu_device *adev,
  3663. bool enable)
  3664. {
  3665. u32 tmp = RREG32(mmCP_INT_CNTL_RING0);
  3666. tmp = REG_SET_FIELD(tmp, CP_INT_CNTL_RING0, CNTX_BUSY_INT_ENABLE, enable ? 1 : 0);
  3667. tmp = REG_SET_FIELD(tmp, CP_INT_CNTL_RING0, CNTX_EMPTY_INT_ENABLE, enable ? 1 : 0);
  3668. tmp = REG_SET_FIELD(tmp, CP_INT_CNTL_RING0, CMP_BUSY_INT_ENABLE, enable ? 1 : 0);
  3669. tmp = REG_SET_FIELD(tmp, CP_INT_CNTL_RING0, GFX_IDLE_INT_ENABLE, enable ? 1 : 0);
  3670. WREG32(mmCP_INT_CNTL_RING0, tmp);
  3671. }
  3672. static void gfx_v8_0_init_csb(struct amdgpu_device *adev)
  3673. {
  3674. /* csib */
  3675. WREG32(mmRLC_CSIB_ADDR_HI,
  3676. adev->gfx.rlc.clear_state_gpu_addr >> 32);
  3677. WREG32(mmRLC_CSIB_ADDR_LO,
  3678. adev->gfx.rlc.clear_state_gpu_addr & 0xfffffffc);
  3679. WREG32(mmRLC_CSIB_LENGTH,
  3680. adev->gfx.rlc.clear_state_size);
  3681. }
  3682. static void gfx_v8_0_parse_ind_reg_list(int *register_list_format,
  3683. int ind_offset,
  3684. int list_size,
  3685. int *unique_indices,
  3686. int *indices_count,
  3687. int max_indices,
  3688. int *ind_start_offsets,
  3689. int *offset_count,
  3690. int max_offset)
  3691. {
  3692. int indices;
  3693. bool new_entry = true;
  3694. for (; ind_offset < list_size; ind_offset++) {
  3695. if (new_entry) {
  3696. new_entry = false;
  3697. ind_start_offsets[*offset_count] = ind_offset;
  3698. *offset_count = *offset_count + 1;
  3699. BUG_ON(*offset_count >= max_offset);
  3700. }
  3701. if (register_list_format[ind_offset] == 0xFFFFFFFF) {
  3702. new_entry = true;
  3703. continue;
  3704. }
  3705. ind_offset += 2;
  3706. /* look for the matching indice */
  3707. for (indices = 0;
  3708. indices < *indices_count;
  3709. indices++) {
  3710. if (unique_indices[indices] ==
  3711. register_list_format[ind_offset])
  3712. break;
  3713. }
  3714. if (indices >= *indices_count) {
  3715. unique_indices[*indices_count] =
  3716. register_list_format[ind_offset];
  3717. indices = *indices_count;
  3718. *indices_count = *indices_count + 1;
  3719. BUG_ON(*indices_count >= max_indices);
  3720. }
  3721. register_list_format[ind_offset] = indices;
  3722. }
  3723. }
  3724. static int gfx_v8_0_init_save_restore_list(struct amdgpu_device *adev)
  3725. {
  3726. int i, temp, data;
  3727. int unique_indices[] = {0, 0, 0, 0, 0, 0, 0, 0};
  3728. int indices_count = 0;
  3729. int indirect_start_offsets[] = {0, 0, 0, 0, 0, 0, 0, 0, 0, 0};
  3730. int offset_count = 0;
  3731. int list_size;
  3732. unsigned int *register_list_format =
  3733. kmalloc(adev->gfx.rlc.reg_list_format_size_bytes, GFP_KERNEL);
  3734. if (!register_list_format)
  3735. return -ENOMEM;
  3736. memcpy(register_list_format, adev->gfx.rlc.register_list_format,
  3737. adev->gfx.rlc.reg_list_format_size_bytes);
  3738. gfx_v8_0_parse_ind_reg_list(register_list_format,
  3739. RLC_FormatDirectRegListLength,
  3740. adev->gfx.rlc.reg_list_format_size_bytes >> 2,
  3741. unique_indices,
  3742. &indices_count,
  3743. sizeof(unique_indices) / sizeof(int),
  3744. indirect_start_offsets,
  3745. &offset_count,
  3746. sizeof(indirect_start_offsets)/sizeof(int));
  3747. /* save and restore list */
  3748. WREG32_FIELD(RLC_SRM_CNTL, AUTO_INCR_ADDR, 1);
  3749. WREG32(mmRLC_SRM_ARAM_ADDR, 0);
  3750. for (i = 0; i < adev->gfx.rlc.reg_list_size_bytes >> 2; i++)
  3751. WREG32(mmRLC_SRM_ARAM_DATA, adev->gfx.rlc.register_restore[i]);
  3752. /* indirect list */
  3753. WREG32(mmRLC_GPM_SCRATCH_ADDR, adev->gfx.rlc.reg_list_format_start);
  3754. for (i = 0; i < adev->gfx.rlc.reg_list_format_size_bytes >> 2; i++)
  3755. WREG32(mmRLC_GPM_SCRATCH_DATA, register_list_format[i]);
  3756. list_size = adev->gfx.rlc.reg_list_size_bytes >> 2;
  3757. list_size = list_size >> 1;
  3758. WREG32(mmRLC_GPM_SCRATCH_ADDR, adev->gfx.rlc.reg_restore_list_size);
  3759. WREG32(mmRLC_GPM_SCRATCH_DATA, list_size);
  3760. /* starting offsets starts */
  3761. WREG32(mmRLC_GPM_SCRATCH_ADDR,
  3762. adev->gfx.rlc.starting_offsets_start);
  3763. for (i = 0; i < sizeof(indirect_start_offsets)/sizeof(int); i++)
  3764. WREG32(mmRLC_GPM_SCRATCH_DATA,
  3765. indirect_start_offsets[i]);
  3766. /* unique indices */
  3767. temp = mmRLC_SRM_INDEX_CNTL_ADDR_0;
  3768. data = mmRLC_SRM_INDEX_CNTL_DATA_0;
  3769. for (i = 0; i < sizeof(unique_indices) / sizeof(int); i++) {
  3770. if (unique_indices[i] != 0) {
  3771. WREG32(temp + i, unique_indices[i] & 0x3FFFF);
  3772. WREG32(data + i, unique_indices[i] >> 20);
  3773. }
  3774. }
  3775. kfree(register_list_format);
  3776. return 0;
  3777. }
  3778. static void gfx_v8_0_enable_save_restore_machine(struct amdgpu_device *adev)
  3779. {
  3780. WREG32_FIELD(RLC_SRM_CNTL, SRM_ENABLE, 1);
  3781. }
  3782. static void gfx_v8_0_init_power_gating(struct amdgpu_device *adev)
  3783. {
  3784. uint32_t data;
  3785. WREG32_FIELD(CP_RB_WPTR_POLL_CNTL, IDLE_POLL_COUNT, 0x60);
  3786. data = REG_SET_FIELD(0, RLC_PG_DELAY, POWER_UP_DELAY, 0x10);
  3787. data = REG_SET_FIELD(data, RLC_PG_DELAY, POWER_DOWN_DELAY, 0x10);
  3788. data = REG_SET_FIELD(data, RLC_PG_DELAY, CMD_PROPAGATE_DELAY, 0x10);
  3789. data = REG_SET_FIELD(data, RLC_PG_DELAY, MEM_SLEEP_DELAY, 0x10);
  3790. WREG32(mmRLC_PG_DELAY, data);
  3791. WREG32_FIELD(RLC_PG_DELAY_2, SERDES_CMD_DELAY, 0x3);
  3792. WREG32_FIELD(RLC_AUTO_PG_CTRL, GRBM_REG_SAVE_GFX_IDLE_THRESHOLD, 0x55f0);
  3793. }
  3794. static void cz_enable_sck_slow_down_on_power_up(struct amdgpu_device *adev,
  3795. bool enable)
  3796. {
  3797. WREG32_FIELD(RLC_PG_CNTL, SMU_CLK_SLOWDOWN_ON_PU_ENABLE, enable ? 1 : 0);
  3798. }
  3799. static void cz_enable_sck_slow_down_on_power_down(struct amdgpu_device *adev,
  3800. bool enable)
  3801. {
  3802. WREG32_FIELD(RLC_PG_CNTL, SMU_CLK_SLOWDOWN_ON_PD_ENABLE, enable ? 1 : 0);
  3803. }
  3804. static void cz_enable_cp_power_gating(struct amdgpu_device *adev, bool enable)
  3805. {
  3806. WREG32_FIELD(RLC_PG_CNTL, CP_PG_DISABLE, enable ? 0 : 1);
  3807. }
  3808. static void gfx_v8_0_init_pg(struct amdgpu_device *adev)
  3809. {
  3810. if ((adev->asic_type == CHIP_CARRIZO) ||
  3811. (adev->asic_type == CHIP_STONEY)) {
  3812. gfx_v8_0_init_csb(adev);
  3813. gfx_v8_0_init_save_restore_list(adev);
  3814. gfx_v8_0_enable_save_restore_machine(adev);
  3815. WREG32(mmRLC_JUMP_TABLE_RESTORE, adev->gfx.rlc.cp_table_gpu_addr >> 8);
  3816. gfx_v8_0_init_power_gating(adev);
  3817. WREG32(mmRLC_PG_ALWAYS_ON_CU_MASK, adev->gfx.cu_info.ao_cu_mask);
  3818. } else if ((adev->asic_type == CHIP_POLARIS11) ||
  3819. (adev->asic_type == CHIP_POLARIS12)) {
  3820. gfx_v8_0_init_csb(adev);
  3821. gfx_v8_0_init_save_restore_list(adev);
  3822. gfx_v8_0_enable_save_restore_machine(adev);
  3823. gfx_v8_0_init_power_gating(adev);
  3824. }
  3825. }
  3826. static void gfx_v8_0_rlc_stop(struct amdgpu_device *adev)
  3827. {
  3828. WREG32_FIELD(RLC_CNTL, RLC_ENABLE_F32, 0);
  3829. gfx_v8_0_enable_gui_idle_interrupt(adev, false);
  3830. gfx_v8_0_wait_for_rlc_serdes(adev);
  3831. }
  3832. static void gfx_v8_0_rlc_reset(struct amdgpu_device *adev)
  3833. {
  3834. WREG32_FIELD(GRBM_SOFT_RESET, SOFT_RESET_RLC, 1);
  3835. udelay(50);
  3836. WREG32_FIELD(GRBM_SOFT_RESET, SOFT_RESET_RLC, 0);
  3837. udelay(50);
  3838. }
  3839. static void gfx_v8_0_rlc_start(struct amdgpu_device *adev)
  3840. {
  3841. WREG32_FIELD(RLC_CNTL, RLC_ENABLE_F32, 1);
  3842. /* carrizo do enable cp interrupt after cp inited */
  3843. if (!(adev->flags & AMD_IS_APU))
  3844. gfx_v8_0_enable_gui_idle_interrupt(adev, true);
  3845. udelay(50);
  3846. }
  3847. static int gfx_v8_0_rlc_load_microcode(struct amdgpu_device *adev)
  3848. {
  3849. const struct rlc_firmware_header_v2_0 *hdr;
  3850. const __le32 *fw_data;
  3851. unsigned i, fw_size;
  3852. if (!adev->gfx.rlc_fw)
  3853. return -EINVAL;
  3854. hdr = (const struct rlc_firmware_header_v2_0 *)adev->gfx.rlc_fw->data;
  3855. amdgpu_ucode_print_rlc_hdr(&hdr->header);
  3856. fw_data = (const __le32 *)(adev->gfx.rlc_fw->data +
  3857. le32_to_cpu(hdr->header.ucode_array_offset_bytes));
  3858. fw_size = le32_to_cpu(hdr->header.ucode_size_bytes) / 4;
  3859. WREG32(mmRLC_GPM_UCODE_ADDR, 0);
  3860. for (i = 0; i < fw_size; i++)
  3861. WREG32(mmRLC_GPM_UCODE_DATA, le32_to_cpup(fw_data++));
  3862. WREG32(mmRLC_GPM_UCODE_ADDR, adev->gfx.rlc_fw_version);
  3863. return 0;
  3864. }
  3865. static int gfx_v8_0_rlc_resume(struct amdgpu_device *adev)
  3866. {
  3867. int r;
  3868. u32 tmp;
  3869. gfx_v8_0_rlc_stop(adev);
  3870. /* disable CG */
  3871. tmp = RREG32(mmRLC_CGCG_CGLS_CTRL);
  3872. tmp &= ~(RLC_CGCG_CGLS_CTRL__CGCG_EN_MASK |
  3873. RLC_CGCG_CGLS_CTRL__CGLS_EN_MASK);
  3874. WREG32(mmRLC_CGCG_CGLS_CTRL, tmp);
  3875. if (adev->asic_type == CHIP_POLARIS11 ||
  3876. adev->asic_type == CHIP_POLARIS10 ||
  3877. adev->asic_type == CHIP_POLARIS12) {
  3878. tmp = RREG32(mmRLC_CGCG_CGLS_CTRL_3D);
  3879. tmp &= ~0x3;
  3880. WREG32(mmRLC_CGCG_CGLS_CTRL_3D, tmp);
  3881. }
  3882. /* disable PG */
  3883. WREG32(mmRLC_PG_CNTL, 0);
  3884. gfx_v8_0_rlc_reset(adev);
  3885. gfx_v8_0_init_pg(adev);
  3886. if (!adev->pp_enabled) {
  3887. if (adev->firmware.load_type != AMDGPU_FW_LOAD_SMU) {
  3888. /* legacy rlc firmware loading */
  3889. r = gfx_v8_0_rlc_load_microcode(adev);
  3890. if (r)
  3891. return r;
  3892. } else {
  3893. r = adev->smu.smumgr_funcs->check_fw_load_finish(adev,
  3894. AMDGPU_UCODE_ID_RLC_G);
  3895. if (r)
  3896. return -EINVAL;
  3897. }
  3898. }
  3899. gfx_v8_0_rlc_start(adev);
  3900. return 0;
  3901. }
  3902. static void gfx_v8_0_cp_gfx_enable(struct amdgpu_device *adev, bool enable)
  3903. {
  3904. int i;
  3905. u32 tmp = RREG32(mmCP_ME_CNTL);
  3906. if (enable) {
  3907. tmp = REG_SET_FIELD(tmp, CP_ME_CNTL, ME_HALT, 0);
  3908. tmp = REG_SET_FIELD(tmp, CP_ME_CNTL, PFP_HALT, 0);
  3909. tmp = REG_SET_FIELD(tmp, CP_ME_CNTL, CE_HALT, 0);
  3910. } else {
  3911. tmp = REG_SET_FIELD(tmp, CP_ME_CNTL, ME_HALT, 1);
  3912. tmp = REG_SET_FIELD(tmp, CP_ME_CNTL, PFP_HALT, 1);
  3913. tmp = REG_SET_FIELD(tmp, CP_ME_CNTL, CE_HALT, 1);
  3914. for (i = 0; i < adev->gfx.num_gfx_rings; i++)
  3915. adev->gfx.gfx_ring[i].ready = false;
  3916. }
  3917. WREG32(mmCP_ME_CNTL, tmp);
  3918. udelay(50);
  3919. }
  3920. static int gfx_v8_0_cp_gfx_load_microcode(struct amdgpu_device *adev)
  3921. {
  3922. const struct gfx_firmware_header_v1_0 *pfp_hdr;
  3923. const struct gfx_firmware_header_v1_0 *ce_hdr;
  3924. const struct gfx_firmware_header_v1_0 *me_hdr;
  3925. const __le32 *fw_data;
  3926. unsigned i, fw_size;
  3927. if (!adev->gfx.me_fw || !adev->gfx.pfp_fw || !adev->gfx.ce_fw)
  3928. return -EINVAL;
  3929. pfp_hdr = (const struct gfx_firmware_header_v1_0 *)
  3930. adev->gfx.pfp_fw->data;
  3931. ce_hdr = (const struct gfx_firmware_header_v1_0 *)
  3932. adev->gfx.ce_fw->data;
  3933. me_hdr = (const struct gfx_firmware_header_v1_0 *)
  3934. adev->gfx.me_fw->data;
  3935. amdgpu_ucode_print_gfx_hdr(&pfp_hdr->header);
  3936. amdgpu_ucode_print_gfx_hdr(&ce_hdr->header);
  3937. amdgpu_ucode_print_gfx_hdr(&me_hdr->header);
  3938. gfx_v8_0_cp_gfx_enable(adev, false);
  3939. /* PFP */
  3940. fw_data = (const __le32 *)
  3941. (adev->gfx.pfp_fw->data +
  3942. le32_to_cpu(pfp_hdr->header.ucode_array_offset_bytes));
  3943. fw_size = le32_to_cpu(pfp_hdr->header.ucode_size_bytes) / 4;
  3944. WREG32(mmCP_PFP_UCODE_ADDR, 0);
  3945. for (i = 0; i < fw_size; i++)
  3946. WREG32(mmCP_PFP_UCODE_DATA, le32_to_cpup(fw_data++));
  3947. WREG32(mmCP_PFP_UCODE_ADDR, adev->gfx.pfp_fw_version);
  3948. /* CE */
  3949. fw_data = (const __le32 *)
  3950. (adev->gfx.ce_fw->data +
  3951. le32_to_cpu(ce_hdr->header.ucode_array_offset_bytes));
  3952. fw_size = le32_to_cpu(ce_hdr->header.ucode_size_bytes) / 4;
  3953. WREG32(mmCP_CE_UCODE_ADDR, 0);
  3954. for (i = 0; i < fw_size; i++)
  3955. WREG32(mmCP_CE_UCODE_DATA, le32_to_cpup(fw_data++));
  3956. WREG32(mmCP_CE_UCODE_ADDR, adev->gfx.ce_fw_version);
  3957. /* ME */
  3958. fw_data = (const __le32 *)
  3959. (adev->gfx.me_fw->data +
  3960. le32_to_cpu(me_hdr->header.ucode_array_offset_bytes));
  3961. fw_size = le32_to_cpu(me_hdr->header.ucode_size_bytes) / 4;
  3962. WREG32(mmCP_ME_RAM_WADDR, 0);
  3963. for (i = 0; i < fw_size; i++)
  3964. WREG32(mmCP_ME_RAM_DATA, le32_to_cpup(fw_data++));
  3965. WREG32(mmCP_ME_RAM_WADDR, adev->gfx.me_fw_version);
  3966. return 0;
  3967. }
  3968. static u32 gfx_v8_0_get_csb_size(struct amdgpu_device *adev)
  3969. {
  3970. u32 count = 0;
  3971. const struct cs_section_def *sect = NULL;
  3972. const struct cs_extent_def *ext = NULL;
  3973. /* begin clear state */
  3974. count += 2;
  3975. /* context control state */
  3976. count += 3;
  3977. for (sect = vi_cs_data; sect->section != NULL; ++sect) {
  3978. for (ext = sect->section; ext->extent != NULL; ++ext) {
  3979. if (sect->id == SECT_CONTEXT)
  3980. count += 2 + ext->reg_count;
  3981. else
  3982. return 0;
  3983. }
  3984. }
  3985. /* pa_sc_raster_config/pa_sc_raster_config1 */
  3986. count += 4;
  3987. /* end clear state */
  3988. count += 2;
  3989. /* clear state */
  3990. count += 2;
  3991. return count;
  3992. }
  3993. static int gfx_v8_0_cp_gfx_start(struct amdgpu_device *adev)
  3994. {
  3995. struct amdgpu_ring *ring = &adev->gfx.gfx_ring[0];
  3996. const struct cs_section_def *sect = NULL;
  3997. const struct cs_extent_def *ext = NULL;
  3998. int r, i;
  3999. /* init the CP */
  4000. WREG32(mmCP_MAX_CONTEXT, adev->gfx.config.max_hw_contexts - 1);
  4001. WREG32(mmCP_ENDIAN_SWAP, 0);
  4002. WREG32(mmCP_DEVICE_ID, 1);
  4003. gfx_v8_0_cp_gfx_enable(adev, true);
  4004. r = amdgpu_ring_alloc(ring, gfx_v8_0_get_csb_size(adev) + 4);
  4005. if (r) {
  4006. DRM_ERROR("amdgpu: cp failed to lock ring (%d).\n", r);
  4007. return r;
  4008. }
  4009. /* clear state buffer */
  4010. amdgpu_ring_write(ring, PACKET3(PACKET3_PREAMBLE_CNTL, 0));
  4011. amdgpu_ring_write(ring, PACKET3_PREAMBLE_BEGIN_CLEAR_STATE);
  4012. amdgpu_ring_write(ring, PACKET3(PACKET3_CONTEXT_CONTROL, 1));
  4013. amdgpu_ring_write(ring, 0x80000000);
  4014. amdgpu_ring_write(ring, 0x80000000);
  4015. for (sect = vi_cs_data; sect->section != NULL; ++sect) {
  4016. for (ext = sect->section; ext->extent != NULL; ++ext) {
  4017. if (sect->id == SECT_CONTEXT) {
  4018. amdgpu_ring_write(ring,
  4019. PACKET3(PACKET3_SET_CONTEXT_REG,
  4020. ext->reg_count));
  4021. amdgpu_ring_write(ring,
  4022. ext->reg_index - PACKET3_SET_CONTEXT_REG_START);
  4023. for (i = 0; i < ext->reg_count; i++)
  4024. amdgpu_ring_write(ring, ext->extent[i]);
  4025. }
  4026. }
  4027. }
  4028. amdgpu_ring_write(ring, PACKET3(PACKET3_SET_CONTEXT_REG, 2));
  4029. amdgpu_ring_write(ring, mmPA_SC_RASTER_CONFIG - PACKET3_SET_CONTEXT_REG_START);
  4030. switch (adev->asic_type) {
  4031. case CHIP_TONGA:
  4032. case CHIP_POLARIS10:
  4033. amdgpu_ring_write(ring, 0x16000012);
  4034. amdgpu_ring_write(ring, 0x0000002A);
  4035. break;
  4036. case CHIP_POLARIS11:
  4037. case CHIP_POLARIS12:
  4038. amdgpu_ring_write(ring, 0x16000012);
  4039. amdgpu_ring_write(ring, 0x00000000);
  4040. break;
  4041. case CHIP_FIJI:
  4042. amdgpu_ring_write(ring, 0x3a00161a);
  4043. amdgpu_ring_write(ring, 0x0000002e);
  4044. break;
  4045. case CHIP_CARRIZO:
  4046. amdgpu_ring_write(ring, 0x00000002);
  4047. amdgpu_ring_write(ring, 0x00000000);
  4048. break;
  4049. case CHIP_TOPAZ:
  4050. amdgpu_ring_write(ring, adev->gfx.config.num_rbs == 1 ?
  4051. 0x00000000 : 0x00000002);
  4052. amdgpu_ring_write(ring, 0x00000000);
  4053. break;
  4054. case CHIP_STONEY:
  4055. amdgpu_ring_write(ring, 0x00000000);
  4056. amdgpu_ring_write(ring, 0x00000000);
  4057. break;
  4058. default:
  4059. BUG();
  4060. }
  4061. amdgpu_ring_write(ring, PACKET3(PACKET3_PREAMBLE_CNTL, 0));
  4062. amdgpu_ring_write(ring, PACKET3_PREAMBLE_END_CLEAR_STATE);
  4063. amdgpu_ring_write(ring, PACKET3(PACKET3_CLEAR_STATE, 0));
  4064. amdgpu_ring_write(ring, 0);
  4065. /* init the CE partitions */
  4066. amdgpu_ring_write(ring, PACKET3(PACKET3_SET_BASE, 2));
  4067. amdgpu_ring_write(ring, PACKET3_BASE_INDEX(CE_PARTITION_BASE));
  4068. amdgpu_ring_write(ring, 0x8000);
  4069. amdgpu_ring_write(ring, 0x8000);
  4070. amdgpu_ring_commit(ring);
  4071. return 0;
  4072. }
  4073. static int gfx_v8_0_cp_gfx_resume(struct amdgpu_device *adev)
  4074. {
  4075. struct amdgpu_ring *ring;
  4076. u32 tmp;
  4077. u32 rb_bufsz;
  4078. u64 rb_addr, rptr_addr, wptr_gpu_addr;
  4079. int r;
  4080. /* Set the write pointer delay */
  4081. WREG32(mmCP_RB_WPTR_DELAY, 0);
  4082. /* set the RB to use vmid 0 */
  4083. WREG32(mmCP_RB_VMID, 0);
  4084. /* Set ring buffer size */
  4085. ring = &adev->gfx.gfx_ring[0];
  4086. rb_bufsz = order_base_2(ring->ring_size / 8);
  4087. tmp = REG_SET_FIELD(0, CP_RB0_CNTL, RB_BUFSZ, rb_bufsz);
  4088. tmp = REG_SET_FIELD(tmp, CP_RB0_CNTL, RB_BLKSZ, rb_bufsz - 2);
  4089. tmp = REG_SET_FIELD(tmp, CP_RB0_CNTL, MTYPE, 3);
  4090. tmp = REG_SET_FIELD(tmp, CP_RB0_CNTL, MIN_IB_AVAILSZ, 1);
  4091. #ifdef __BIG_ENDIAN
  4092. tmp = REG_SET_FIELD(tmp, CP_RB0_CNTL, BUF_SWAP, 1);
  4093. #endif
  4094. WREG32(mmCP_RB0_CNTL, tmp);
  4095. /* Initialize the ring buffer's read and write pointers */
  4096. WREG32(mmCP_RB0_CNTL, tmp | CP_RB0_CNTL__RB_RPTR_WR_ENA_MASK);
  4097. ring->wptr = 0;
  4098. WREG32(mmCP_RB0_WPTR, lower_32_bits(ring->wptr));
  4099. /* set the wb address wether it's enabled or not */
  4100. rptr_addr = adev->wb.gpu_addr + (ring->rptr_offs * 4);
  4101. WREG32(mmCP_RB0_RPTR_ADDR, lower_32_bits(rptr_addr));
  4102. WREG32(mmCP_RB0_RPTR_ADDR_HI, upper_32_bits(rptr_addr) & 0xFF);
  4103. wptr_gpu_addr = adev->wb.gpu_addr + (ring->wptr_offs * 4);
  4104. WREG32(mmCP_RB_WPTR_POLL_ADDR_LO, lower_32_bits(wptr_gpu_addr));
  4105. WREG32(mmCP_RB_WPTR_POLL_ADDR_HI, upper_32_bits(wptr_gpu_addr));
  4106. mdelay(1);
  4107. WREG32(mmCP_RB0_CNTL, tmp);
  4108. rb_addr = ring->gpu_addr >> 8;
  4109. WREG32(mmCP_RB0_BASE, rb_addr);
  4110. WREG32(mmCP_RB0_BASE_HI, upper_32_bits(rb_addr));
  4111. /* no gfx doorbells on iceland */
  4112. if (adev->asic_type != CHIP_TOPAZ) {
  4113. tmp = RREG32(mmCP_RB_DOORBELL_CONTROL);
  4114. if (ring->use_doorbell) {
  4115. tmp = REG_SET_FIELD(tmp, CP_RB_DOORBELL_CONTROL,
  4116. DOORBELL_OFFSET, ring->doorbell_index);
  4117. tmp = REG_SET_FIELD(tmp, CP_RB_DOORBELL_CONTROL,
  4118. DOORBELL_HIT, 0);
  4119. tmp = REG_SET_FIELD(tmp, CP_RB_DOORBELL_CONTROL,
  4120. DOORBELL_EN, 1);
  4121. } else {
  4122. tmp = REG_SET_FIELD(tmp, CP_RB_DOORBELL_CONTROL,
  4123. DOORBELL_EN, 0);
  4124. }
  4125. WREG32(mmCP_RB_DOORBELL_CONTROL, tmp);
  4126. if (adev->asic_type == CHIP_TONGA) {
  4127. tmp = REG_SET_FIELD(0, CP_RB_DOORBELL_RANGE_LOWER,
  4128. DOORBELL_RANGE_LOWER,
  4129. AMDGPU_DOORBELL_GFX_RING0);
  4130. WREG32(mmCP_RB_DOORBELL_RANGE_LOWER, tmp);
  4131. WREG32(mmCP_RB_DOORBELL_RANGE_UPPER,
  4132. CP_RB_DOORBELL_RANGE_UPPER__DOORBELL_RANGE_UPPER_MASK);
  4133. }
  4134. }
  4135. /* start the ring */
  4136. amdgpu_ring_clear_ring(ring);
  4137. gfx_v8_0_cp_gfx_start(adev);
  4138. ring->ready = true;
  4139. r = amdgpu_ring_test_ring(ring);
  4140. if (r)
  4141. ring->ready = false;
  4142. return r;
  4143. }
  4144. static void gfx_v8_0_cp_compute_enable(struct amdgpu_device *adev, bool enable)
  4145. {
  4146. int i;
  4147. if (enable) {
  4148. WREG32(mmCP_MEC_CNTL, 0);
  4149. } else {
  4150. WREG32(mmCP_MEC_CNTL, (CP_MEC_CNTL__MEC_ME1_HALT_MASK | CP_MEC_CNTL__MEC_ME2_HALT_MASK));
  4151. for (i = 0; i < adev->gfx.num_compute_rings; i++)
  4152. adev->gfx.compute_ring[i].ready = false;
  4153. adev->gfx.kiq.ring.ready = false;
  4154. }
  4155. udelay(50);
  4156. }
  4157. static int gfx_v8_0_cp_compute_load_microcode(struct amdgpu_device *adev)
  4158. {
  4159. const struct gfx_firmware_header_v1_0 *mec_hdr;
  4160. const __le32 *fw_data;
  4161. unsigned i, fw_size;
  4162. if (!adev->gfx.mec_fw)
  4163. return -EINVAL;
  4164. gfx_v8_0_cp_compute_enable(adev, false);
  4165. mec_hdr = (const struct gfx_firmware_header_v1_0 *)adev->gfx.mec_fw->data;
  4166. amdgpu_ucode_print_gfx_hdr(&mec_hdr->header);
  4167. fw_data = (const __le32 *)
  4168. (adev->gfx.mec_fw->data +
  4169. le32_to_cpu(mec_hdr->header.ucode_array_offset_bytes));
  4170. fw_size = le32_to_cpu(mec_hdr->header.ucode_size_bytes) / 4;
  4171. /* MEC1 */
  4172. WREG32(mmCP_MEC_ME1_UCODE_ADDR, 0);
  4173. for (i = 0; i < fw_size; i++)
  4174. WREG32(mmCP_MEC_ME1_UCODE_DATA, le32_to_cpup(fw_data+i));
  4175. WREG32(mmCP_MEC_ME1_UCODE_ADDR, adev->gfx.mec_fw_version);
  4176. /* Loading MEC2 firmware is only necessary if MEC2 should run different microcode than MEC1. */
  4177. if (adev->gfx.mec2_fw) {
  4178. const struct gfx_firmware_header_v1_0 *mec2_hdr;
  4179. mec2_hdr = (const struct gfx_firmware_header_v1_0 *)adev->gfx.mec2_fw->data;
  4180. amdgpu_ucode_print_gfx_hdr(&mec2_hdr->header);
  4181. fw_data = (const __le32 *)
  4182. (adev->gfx.mec2_fw->data +
  4183. le32_to_cpu(mec2_hdr->header.ucode_array_offset_bytes));
  4184. fw_size = le32_to_cpu(mec2_hdr->header.ucode_size_bytes) / 4;
  4185. WREG32(mmCP_MEC_ME2_UCODE_ADDR, 0);
  4186. for (i = 0; i < fw_size; i++)
  4187. WREG32(mmCP_MEC_ME2_UCODE_DATA, le32_to_cpup(fw_data+i));
  4188. WREG32(mmCP_MEC_ME2_UCODE_ADDR, adev->gfx.mec2_fw_version);
  4189. }
  4190. return 0;
  4191. }
  4192. static void gfx_v8_0_cp_compute_fini(struct amdgpu_device *adev)
  4193. {
  4194. int i, r;
  4195. for (i = 0; i < adev->gfx.num_compute_rings; i++) {
  4196. struct amdgpu_ring *ring = &adev->gfx.compute_ring[i];
  4197. if (ring->mqd_obj) {
  4198. r = amdgpu_bo_reserve(ring->mqd_obj, false);
  4199. if (unlikely(r != 0))
  4200. dev_warn(adev->dev, "(%d) reserve MQD bo failed\n", r);
  4201. amdgpu_bo_unpin(ring->mqd_obj);
  4202. amdgpu_bo_unreserve(ring->mqd_obj);
  4203. amdgpu_bo_unref(&ring->mqd_obj);
  4204. ring->mqd_obj = NULL;
  4205. ring->mqd_ptr = NULL;
  4206. ring->mqd_gpu_addr = 0;
  4207. }
  4208. }
  4209. }
  4210. /* KIQ functions */
  4211. static void gfx_v8_0_kiq_setting(struct amdgpu_ring *ring)
  4212. {
  4213. uint32_t tmp;
  4214. struct amdgpu_device *adev = ring->adev;
  4215. /* tell RLC which is KIQ queue */
  4216. tmp = RREG32(mmRLC_CP_SCHEDULERS);
  4217. tmp &= 0xffffff00;
  4218. tmp |= (ring->me << 5) | (ring->pipe << 3) | (ring->queue);
  4219. WREG32(mmRLC_CP_SCHEDULERS, tmp);
  4220. tmp |= 0x80;
  4221. WREG32(mmRLC_CP_SCHEDULERS, tmp);
  4222. }
  4223. static void gfx_v8_0_kiq_enable(struct amdgpu_ring *ring)
  4224. {
  4225. amdgpu_ring_alloc(ring, 8);
  4226. /* set resources */
  4227. amdgpu_ring_write(ring, PACKET3(PACKET3_SET_RESOURCES, 6));
  4228. amdgpu_ring_write(ring, 0); /* vmid_mask:0 queue_type:0 (KIQ) */
  4229. amdgpu_ring_write(ring, 0x000000FF); /* queue mask lo */
  4230. amdgpu_ring_write(ring, 0); /* queue mask hi */
  4231. amdgpu_ring_write(ring, 0); /* gws mask lo */
  4232. amdgpu_ring_write(ring, 0); /* gws mask hi */
  4233. amdgpu_ring_write(ring, 0); /* oac mask */
  4234. amdgpu_ring_write(ring, 0); /* gds heap base:0, gds heap size:0 */
  4235. amdgpu_ring_commit(ring);
  4236. udelay(50);
  4237. }
  4238. static void gfx_v8_0_map_queue_enable(struct amdgpu_ring *kiq_ring,
  4239. struct amdgpu_ring *ring)
  4240. {
  4241. struct amdgpu_device *adev = kiq_ring->adev;
  4242. uint64_t mqd_addr, wptr_addr;
  4243. mqd_addr = amdgpu_bo_gpu_offset(ring->mqd_obj);
  4244. wptr_addr = adev->wb.gpu_addr + (ring->wptr_offs * 4);
  4245. amdgpu_ring_alloc(kiq_ring, 8);
  4246. amdgpu_ring_write(kiq_ring, PACKET3(PACKET3_MAP_QUEUES, 5));
  4247. /* Q_sel:0, vmid:0, vidmem: 1, engine:0, num_Q:1*/
  4248. amdgpu_ring_write(kiq_ring, 0x21010000);
  4249. amdgpu_ring_write(kiq_ring, (ring->doorbell_index << 2) |
  4250. (ring->queue << 26) |
  4251. (ring->pipe << 29) |
  4252. ((ring->me == 1 ? 0 : 1) << 31)); /* doorbell */
  4253. amdgpu_ring_write(kiq_ring, lower_32_bits(mqd_addr));
  4254. amdgpu_ring_write(kiq_ring, upper_32_bits(mqd_addr));
  4255. amdgpu_ring_write(kiq_ring, lower_32_bits(wptr_addr));
  4256. amdgpu_ring_write(kiq_ring, upper_32_bits(wptr_addr));
  4257. amdgpu_ring_commit(kiq_ring);
  4258. udelay(50);
  4259. }
  4260. static int gfx_v8_0_mqd_init(struct amdgpu_ring *ring)
  4261. {
  4262. struct amdgpu_device *adev = ring->adev;
  4263. struct vi_mqd *mqd = ring->mqd_ptr;
  4264. uint64_t hqd_gpu_addr, wb_gpu_addr, eop_base_addr;
  4265. uint32_t tmp;
  4266. mqd->header = 0xC0310800;
  4267. mqd->compute_pipelinestat_enable = 0x00000001;
  4268. mqd->compute_static_thread_mgmt_se0 = 0xffffffff;
  4269. mqd->compute_static_thread_mgmt_se1 = 0xffffffff;
  4270. mqd->compute_static_thread_mgmt_se2 = 0xffffffff;
  4271. mqd->compute_static_thread_mgmt_se3 = 0xffffffff;
  4272. mqd->compute_misc_reserved = 0x00000003;
  4273. eop_base_addr = ring->eop_gpu_addr >> 8;
  4274. mqd->cp_hqd_eop_base_addr_lo = eop_base_addr;
  4275. mqd->cp_hqd_eop_base_addr_hi = upper_32_bits(eop_base_addr);
  4276. /* set the EOP size, register value is 2^(EOP_SIZE+1) dwords */
  4277. tmp = RREG32(mmCP_HQD_EOP_CONTROL);
  4278. tmp = REG_SET_FIELD(tmp, CP_HQD_EOP_CONTROL, EOP_SIZE,
  4279. (order_base_2(MEC_HPD_SIZE / 4) - 1));
  4280. mqd->cp_hqd_eop_control = tmp;
  4281. /* enable doorbell? */
  4282. tmp = REG_SET_FIELD(RREG32(mmCP_HQD_PQ_DOORBELL_CONTROL),
  4283. CP_HQD_PQ_DOORBELL_CONTROL,
  4284. DOORBELL_EN,
  4285. ring->use_doorbell ? 1 : 0);
  4286. mqd->cp_hqd_pq_doorbell_control = tmp;
  4287. /* disable the queue if it's active */
  4288. mqd->cp_hqd_dequeue_request = 0;
  4289. mqd->cp_hqd_pq_rptr = 0;
  4290. mqd->cp_hqd_pq_wptr = 0;
  4291. /* set the pointer to the MQD */
  4292. mqd->cp_mqd_base_addr_lo = ring->mqd_gpu_addr & 0xfffffffc;
  4293. mqd->cp_mqd_base_addr_hi = upper_32_bits(ring->mqd_gpu_addr);
  4294. /* set MQD vmid to 0 */
  4295. tmp = RREG32(mmCP_MQD_CONTROL);
  4296. tmp = REG_SET_FIELD(tmp, CP_MQD_CONTROL, VMID, 0);
  4297. mqd->cp_mqd_control = tmp;
  4298. /* set the pointer to the HQD, this is similar CP_RB0_BASE/_HI */
  4299. hqd_gpu_addr = ring->gpu_addr >> 8;
  4300. mqd->cp_hqd_pq_base_lo = hqd_gpu_addr;
  4301. mqd->cp_hqd_pq_base_hi = upper_32_bits(hqd_gpu_addr);
  4302. /* set up the HQD, this is similar to CP_RB0_CNTL */
  4303. tmp = RREG32(mmCP_HQD_PQ_CONTROL);
  4304. tmp = REG_SET_FIELD(tmp, CP_HQD_PQ_CONTROL, QUEUE_SIZE,
  4305. (order_base_2(ring->ring_size / 4) - 1));
  4306. tmp = REG_SET_FIELD(tmp, CP_HQD_PQ_CONTROL, RPTR_BLOCK_SIZE,
  4307. ((order_base_2(AMDGPU_GPU_PAGE_SIZE / 4) - 1) << 8));
  4308. #ifdef __BIG_ENDIAN
  4309. tmp = REG_SET_FIELD(tmp, CP_HQD_PQ_CONTROL, ENDIAN_SWAP, 1);
  4310. #endif
  4311. tmp = REG_SET_FIELD(tmp, CP_HQD_PQ_CONTROL, UNORD_DISPATCH, 0);
  4312. tmp = REG_SET_FIELD(tmp, CP_HQD_PQ_CONTROL, ROQ_PQ_IB_FLIP, 0);
  4313. tmp = REG_SET_FIELD(tmp, CP_HQD_PQ_CONTROL, PRIV_STATE, 1);
  4314. tmp = REG_SET_FIELD(tmp, CP_HQD_PQ_CONTROL, KMD_QUEUE, 1);
  4315. mqd->cp_hqd_pq_control = tmp;
  4316. /* set the wb address whether it's enabled or not */
  4317. wb_gpu_addr = adev->wb.gpu_addr + (ring->rptr_offs * 4);
  4318. mqd->cp_hqd_pq_rptr_report_addr_lo = wb_gpu_addr & 0xfffffffc;
  4319. mqd->cp_hqd_pq_rptr_report_addr_hi =
  4320. upper_32_bits(wb_gpu_addr) & 0xffff;
  4321. /* only used if CP_PQ_WPTR_POLL_CNTL.CP_PQ_WPTR_POLL_CNTL__EN_MASK=1 */
  4322. wb_gpu_addr = adev->wb.gpu_addr + (ring->wptr_offs * 4);
  4323. mqd->cp_hqd_pq_wptr_poll_addr_lo = wb_gpu_addr & 0xfffffffc;
  4324. mqd->cp_hqd_pq_wptr_poll_addr_hi = upper_32_bits(wb_gpu_addr) & 0xffff;
  4325. tmp = 0;
  4326. /* enable the doorbell if requested */
  4327. if (ring->use_doorbell) {
  4328. tmp = RREG32(mmCP_HQD_PQ_DOORBELL_CONTROL);
  4329. tmp = REG_SET_FIELD(tmp, CP_HQD_PQ_DOORBELL_CONTROL,
  4330. DOORBELL_OFFSET, ring->doorbell_index);
  4331. tmp = REG_SET_FIELD(tmp, CP_HQD_PQ_DOORBELL_CONTROL,
  4332. DOORBELL_EN, 1);
  4333. tmp = REG_SET_FIELD(tmp, CP_HQD_PQ_DOORBELL_CONTROL,
  4334. DOORBELL_SOURCE, 0);
  4335. tmp = REG_SET_FIELD(tmp, CP_HQD_PQ_DOORBELL_CONTROL,
  4336. DOORBELL_HIT, 0);
  4337. }
  4338. mqd->cp_hqd_pq_doorbell_control = tmp;
  4339. /* reset read and write pointers, similar to CP_RB0_WPTR/_RPTR */
  4340. ring->wptr = 0;
  4341. mqd->cp_hqd_pq_wptr = ring->wptr;
  4342. mqd->cp_hqd_pq_rptr = RREG32(mmCP_HQD_PQ_RPTR);
  4343. /* set the vmid for the queue */
  4344. mqd->cp_hqd_vmid = 0;
  4345. tmp = RREG32(mmCP_HQD_PERSISTENT_STATE);
  4346. tmp = REG_SET_FIELD(tmp, CP_HQD_PERSISTENT_STATE, PRELOAD_SIZE, 0x53);
  4347. mqd->cp_hqd_persistent_state = tmp;
  4348. /* set MTYPE */
  4349. tmp = RREG32(mmCP_HQD_IB_CONTROL);
  4350. tmp = REG_SET_FIELD(tmp, CP_HQD_IB_CONTROL, MIN_IB_AVAIL_SIZE, 3);
  4351. tmp = REG_SET_FIELD(tmp, CP_HQD_IB_CONTROL, MTYPE, 3);
  4352. mqd->cp_hqd_ib_control = tmp;
  4353. tmp = RREG32(mmCP_HQD_IQ_TIMER);
  4354. tmp = REG_SET_FIELD(tmp, CP_HQD_IQ_TIMER, MTYPE, 3);
  4355. mqd->cp_hqd_iq_timer = tmp;
  4356. tmp = RREG32(mmCP_HQD_CTX_SAVE_CONTROL);
  4357. tmp = REG_SET_FIELD(tmp, CP_HQD_CTX_SAVE_CONTROL, MTYPE, 3);
  4358. mqd->cp_hqd_ctx_save_control = tmp;
  4359. /* activate the queue */
  4360. mqd->cp_hqd_active = 1;
  4361. return 0;
  4362. }
  4363. static int gfx_v8_0_kiq_init_register(struct amdgpu_ring *ring)
  4364. {
  4365. struct amdgpu_device *adev = ring->adev;
  4366. struct vi_mqd *mqd = ring->mqd_ptr;
  4367. int j;
  4368. /* disable wptr polling */
  4369. WREG32_FIELD(CP_PQ_WPTR_POLL_CNTL, EN, 0);
  4370. WREG32(mmCP_HQD_EOP_BASE_ADDR, mqd->cp_hqd_eop_base_addr_lo);
  4371. WREG32(mmCP_HQD_EOP_BASE_ADDR_HI, mqd->cp_hqd_eop_base_addr_hi);
  4372. /* set the EOP size, register value is 2^(EOP_SIZE+1) dwords */
  4373. WREG32(mmCP_HQD_EOP_CONTROL, mqd->cp_hqd_eop_control);
  4374. /* enable doorbell? */
  4375. WREG32(mmCP_HQD_PQ_DOORBELL_CONTROL, mqd->cp_hqd_pq_doorbell_control);
  4376. /* disable the queue if it's active */
  4377. if (RREG32(mmCP_HQD_ACTIVE) & CP_HQD_ACTIVE__ACTIVE_MASK) {
  4378. WREG32(mmCP_HQD_DEQUEUE_REQUEST, 1);
  4379. for (j = 0; j < adev->usec_timeout; j++) {
  4380. if (!(RREG32(mmCP_HQD_ACTIVE) & CP_HQD_ACTIVE__ACTIVE_MASK))
  4381. break;
  4382. udelay(1);
  4383. }
  4384. WREG32(mmCP_HQD_DEQUEUE_REQUEST, mqd->cp_hqd_dequeue_request);
  4385. WREG32(mmCP_HQD_PQ_RPTR, mqd->cp_hqd_pq_rptr);
  4386. WREG32(mmCP_HQD_PQ_WPTR, mqd->cp_hqd_pq_wptr);
  4387. }
  4388. /* set the pointer to the MQD */
  4389. WREG32(mmCP_MQD_BASE_ADDR, mqd->cp_mqd_base_addr_lo);
  4390. WREG32(mmCP_MQD_BASE_ADDR_HI, mqd->cp_mqd_base_addr_hi);
  4391. /* set MQD vmid to 0 */
  4392. WREG32(mmCP_MQD_CONTROL, mqd->cp_mqd_control);
  4393. /* set the pointer to the HQD, this is similar CP_RB0_BASE/_HI */
  4394. WREG32(mmCP_HQD_PQ_BASE, mqd->cp_hqd_pq_base_lo);
  4395. WREG32(mmCP_HQD_PQ_BASE_HI, mqd->cp_hqd_pq_base_hi);
  4396. /* set up the HQD, this is similar to CP_RB0_CNTL */
  4397. WREG32(mmCP_HQD_PQ_CONTROL, mqd->cp_hqd_pq_control);
  4398. /* set the wb address whether it's enabled or not */
  4399. WREG32(mmCP_HQD_PQ_RPTR_REPORT_ADDR,
  4400. mqd->cp_hqd_pq_rptr_report_addr_lo);
  4401. WREG32(mmCP_HQD_PQ_RPTR_REPORT_ADDR_HI,
  4402. mqd->cp_hqd_pq_rptr_report_addr_hi);
  4403. /* only used if CP_PQ_WPTR_POLL_CNTL.CP_PQ_WPTR_POLL_CNTL__EN_MASK=1 */
  4404. WREG32(mmCP_HQD_PQ_WPTR_POLL_ADDR, mqd->cp_hqd_pq_wptr_poll_addr_lo);
  4405. WREG32(mmCP_HQD_PQ_WPTR_POLL_ADDR_HI, mqd->cp_hqd_pq_wptr_poll_addr_hi);
  4406. /* enable the doorbell if requested */
  4407. if (ring->use_doorbell) {
  4408. if ((adev->asic_type == CHIP_CARRIZO) ||
  4409. (adev->asic_type == CHIP_FIJI) ||
  4410. (adev->asic_type == CHIP_STONEY) ||
  4411. (adev->asic_type == CHIP_POLARIS10) ||
  4412. (adev->asic_type == CHIP_POLARIS11) ||
  4413. (adev->asic_type == CHIP_POLARIS12)) {
  4414. WREG32(mmCP_MEC_DOORBELL_RANGE_LOWER,
  4415. AMDGPU_DOORBELL_KIQ << 2);
  4416. WREG32(mmCP_MEC_DOORBELL_RANGE_UPPER,
  4417. AMDGPU_DOORBELL_MEC_RING7 << 2);
  4418. }
  4419. }
  4420. WREG32(mmCP_HQD_PQ_DOORBELL_CONTROL, mqd->cp_hqd_pq_doorbell_control);
  4421. /* reset read and write pointers, similar to CP_RB0_WPTR/_RPTR */
  4422. WREG32(mmCP_HQD_PQ_WPTR, mqd->cp_hqd_pq_wptr);
  4423. /* set the vmid for the queue */
  4424. WREG32(mmCP_HQD_VMID, mqd->cp_hqd_vmid);
  4425. WREG32(mmCP_HQD_PERSISTENT_STATE, mqd->cp_hqd_persistent_state);
  4426. /* activate the queue */
  4427. WREG32(mmCP_HQD_ACTIVE, mqd->cp_hqd_active);
  4428. if (ring->use_doorbell)
  4429. WREG32_FIELD(CP_PQ_STATUS, DOORBELL_ENABLE, 1);
  4430. return 0;
  4431. }
  4432. static int gfx_v8_0_kiq_init_queue(struct amdgpu_ring *ring)
  4433. {
  4434. struct amdgpu_device *adev = ring->adev;
  4435. struct amdgpu_kiq *kiq = &adev->gfx.kiq;
  4436. struct vi_mqd *mqd = ring->mqd_ptr;
  4437. bool is_kiq = (ring->funcs->type == AMDGPU_RING_TYPE_KIQ);
  4438. int mqd_idx = AMDGPU_MAX_COMPUTE_RINGS;
  4439. if (is_kiq) {
  4440. gfx_v8_0_kiq_setting(&kiq->ring);
  4441. } else {
  4442. mqd_idx = ring - &adev->gfx.compute_ring[0];
  4443. }
  4444. if (!adev->gfx.in_reset) {
  4445. memset((void *)mqd, 0, sizeof(*mqd));
  4446. mutex_lock(&adev->srbm_mutex);
  4447. vi_srbm_select(adev, ring->me, ring->pipe, ring->queue, 0);
  4448. gfx_v8_0_mqd_init(ring);
  4449. if (is_kiq)
  4450. gfx_v8_0_kiq_init_register(ring);
  4451. vi_srbm_select(adev, 0, 0, 0, 0);
  4452. mutex_unlock(&adev->srbm_mutex);
  4453. if (adev->gfx.mec.mqd_backup[mqd_idx])
  4454. memcpy(adev->gfx.mec.mqd_backup[mqd_idx], mqd, sizeof(*mqd));
  4455. } else { /* for GPU_RESET case */
  4456. /* reset MQD to a clean status */
  4457. if (adev->gfx.mec.mqd_backup[mqd_idx])
  4458. memcpy(mqd, adev->gfx.mec.mqd_backup[mqd_idx], sizeof(*mqd));
  4459. /* reset ring buffer */
  4460. ring->wptr = 0;
  4461. amdgpu_ring_clear_ring(ring);
  4462. if (is_kiq) {
  4463. mutex_lock(&adev->srbm_mutex);
  4464. vi_srbm_select(adev, ring->me, ring->pipe, ring->queue, 0);
  4465. gfx_v8_0_kiq_init_register(ring);
  4466. vi_srbm_select(adev, 0, 0, 0, 0);
  4467. mutex_unlock(&adev->srbm_mutex);
  4468. }
  4469. }
  4470. if (is_kiq)
  4471. gfx_v8_0_kiq_enable(ring);
  4472. else
  4473. gfx_v8_0_map_queue_enable(&kiq->ring, ring);
  4474. return 0;
  4475. }
  4476. static int gfx_v8_0_kiq_resume(struct amdgpu_device *adev)
  4477. {
  4478. struct amdgpu_ring *ring = NULL;
  4479. int r = 0, i;
  4480. gfx_v8_0_cp_compute_enable(adev, true);
  4481. ring = &adev->gfx.kiq.ring;
  4482. r = amdgpu_bo_reserve(ring->mqd_obj, false);
  4483. if (unlikely(r != 0))
  4484. goto done;
  4485. r = amdgpu_bo_kmap(ring->mqd_obj, &ring->mqd_ptr);
  4486. if (!r) {
  4487. r = gfx_v8_0_kiq_init_queue(ring);
  4488. amdgpu_bo_kunmap(ring->mqd_obj);
  4489. ring->mqd_ptr = NULL;
  4490. }
  4491. amdgpu_bo_unreserve(ring->mqd_obj);
  4492. if (r)
  4493. goto done;
  4494. ring->ready = true;
  4495. r = amdgpu_ring_test_ring(ring);
  4496. if (r) {
  4497. ring->ready = false;
  4498. goto done;
  4499. }
  4500. for (i = 0; i < adev->gfx.num_compute_rings; i++) {
  4501. ring = &adev->gfx.compute_ring[i];
  4502. r = amdgpu_bo_reserve(ring->mqd_obj, false);
  4503. if (unlikely(r != 0))
  4504. goto done;
  4505. r = amdgpu_bo_kmap(ring->mqd_obj, &ring->mqd_ptr);
  4506. if (!r) {
  4507. r = gfx_v8_0_kiq_init_queue(ring);
  4508. amdgpu_bo_kunmap(ring->mqd_obj);
  4509. ring->mqd_ptr = NULL;
  4510. }
  4511. amdgpu_bo_unreserve(ring->mqd_obj);
  4512. if (r)
  4513. goto done;
  4514. ring->ready = true;
  4515. r = amdgpu_ring_test_ring(ring);
  4516. if (r)
  4517. ring->ready = false;
  4518. }
  4519. done:
  4520. return r;
  4521. }
  4522. static int gfx_v8_0_cp_compute_resume(struct amdgpu_device *adev)
  4523. {
  4524. int r, i, j;
  4525. u32 tmp;
  4526. bool use_doorbell = true;
  4527. u64 hqd_gpu_addr;
  4528. u64 mqd_gpu_addr;
  4529. u64 eop_gpu_addr;
  4530. u64 wb_gpu_addr;
  4531. u32 *buf;
  4532. struct vi_mqd *mqd;
  4533. /* init the queues. */
  4534. for (i = 0; i < adev->gfx.num_compute_rings; i++) {
  4535. struct amdgpu_ring *ring = &adev->gfx.compute_ring[i];
  4536. if (ring->mqd_obj == NULL) {
  4537. r = amdgpu_bo_create(adev,
  4538. sizeof(struct vi_mqd),
  4539. PAGE_SIZE, true,
  4540. AMDGPU_GEM_DOMAIN_GTT, 0, NULL,
  4541. NULL, &ring->mqd_obj);
  4542. if (r) {
  4543. dev_warn(adev->dev, "(%d) create MQD bo failed\n", r);
  4544. return r;
  4545. }
  4546. }
  4547. r = amdgpu_bo_reserve(ring->mqd_obj, false);
  4548. if (unlikely(r != 0)) {
  4549. gfx_v8_0_cp_compute_fini(adev);
  4550. return r;
  4551. }
  4552. r = amdgpu_bo_pin(ring->mqd_obj, AMDGPU_GEM_DOMAIN_GTT,
  4553. &mqd_gpu_addr);
  4554. if (r) {
  4555. dev_warn(adev->dev, "(%d) pin MQD bo failed\n", r);
  4556. gfx_v8_0_cp_compute_fini(adev);
  4557. return r;
  4558. }
  4559. r = amdgpu_bo_kmap(ring->mqd_obj, (void **)&buf);
  4560. if (r) {
  4561. dev_warn(adev->dev, "(%d) map MQD bo failed\n", r);
  4562. gfx_v8_0_cp_compute_fini(adev);
  4563. return r;
  4564. }
  4565. /* init the mqd struct */
  4566. memset(buf, 0, sizeof(struct vi_mqd));
  4567. mqd = (struct vi_mqd *)buf;
  4568. mqd->header = 0xC0310800;
  4569. mqd->compute_pipelinestat_enable = 0x00000001;
  4570. mqd->compute_static_thread_mgmt_se0 = 0xffffffff;
  4571. mqd->compute_static_thread_mgmt_se1 = 0xffffffff;
  4572. mqd->compute_static_thread_mgmt_se2 = 0xffffffff;
  4573. mqd->compute_static_thread_mgmt_se3 = 0xffffffff;
  4574. mqd->compute_misc_reserved = 0x00000003;
  4575. mutex_lock(&adev->srbm_mutex);
  4576. vi_srbm_select(adev, ring->me,
  4577. ring->pipe,
  4578. ring->queue, 0);
  4579. eop_gpu_addr = adev->gfx.mec.hpd_eop_gpu_addr + (i * MEC_HPD_SIZE);
  4580. eop_gpu_addr >>= 8;
  4581. /* write the EOP addr */
  4582. WREG32(mmCP_HQD_EOP_BASE_ADDR, eop_gpu_addr);
  4583. WREG32(mmCP_HQD_EOP_BASE_ADDR_HI, upper_32_bits(eop_gpu_addr));
  4584. /* set the VMID assigned */
  4585. WREG32(mmCP_HQD_VMID, 0);
  4586. /* set the EOP size, register value is 2^(EOP_SIZE+1) dwords */
  4587. tmp = RREG32(mmCP_HQD_EOP_CONTROL);
  4588. tmp = REG_SET_FIELD(tmp, CP_HQD_EOP_CONTROL, EOP_SIZE,
  4589. (order_base_2(MEC_HPD_SIZE / 4) - 1));
  4590. WREG32(mmCP_HQD_EOP_CONTROL, tmp);
  4591. /* disable wptr polling */
  4592. tmp = RREG32(mmCP_PQ_WPTR_POLL_CNTL);
  4593. tmp = REG_SET_FIELD(tmp, CP_PQ_WPTR_POLL_CNTL, EN, 0);
  4594. WREG32(mmCP_PQ_WPTR_POLL_CNTL, tmp);
  4595. mqd->cp_hqd_eop_base_addr_lo =
  4596. RREG32(mmCP_HQD_EOP_BASE_ADDR);
  4597. mqd->cp_hqd_eop_base_addr_hi =
  4598. RREG32(mmCP_HQD_EOP_BASE_ADDR_HI);
  4599. /* enable doorbell? */
  4600. tmp = RREG32(mmCP_HQD_PQ_DOORBELL_CONTROL);
  4601. if (use_doorbell) {
  4602. tmp = REG_SET_FIELD(tmp, CP_HQD_PQ_DOORBELL_CONTROL, DOORBELL_EN, 1);
  4603. } else {
  4604. tmp = REG_SET_FIELD(tmp, CP_HQD_PQ_DOORBELL_CONTROL, DOORBELL_EN, 0);
  4605. }
  4606. WREG32(mmCP_HQD_PQ_DOORBELL_CONTROL, tmp);
  4607. mqd->cp_hqd_pq_doorbell_control = tmp;
  4608. /* disable the queue if it's active */
  4609. mqd->cp_hqd_dequeue_request = 0;
  4610. mqd->cp_hqd_pq_rptr = 0;
  4611. mqd->cp_hqd_pq_wptr= 0;
  4612. if (RREG32(mmCP_HQD_ACTIVE) & 1) {
  4613. WREG32(mmCP_HQD_DEQUEUE_REQUEST, 1);
  4614. for (j = 0; j < adev->usec_timeout; j++) {
  4615. if (!(RREG32(mmCP_HQD_ACTIVE) & 1))
  4616. break;
  4617. udelay(1);
  4618. }
  4619. WREG32(mmCP_HQD_DEQUEUE_REQUEST, mqd->cp_hqd_dequeue_request);
  4620. WREG32(mmCP_HQD_PQ_RPTR, mqd->cp_hqd_pq_rptr);
  4621. WREG32(mmCP_HQD_PQ_WPTR, mqd->cp_hqd_pq_wptr);
  4622. }
  4623. /* set the pointer to the MQD */
  4624. mqd->cp_mqd_base_addr_lo = mqd_gpu_addr & 0xfffffffc;
  4625. mqd->cp_mqd_base_addr_hi = upper_32_bits(mqd_gpu_addr);
  4626. WREG32(mmCP_MQD_BASE_ADDR, mqd->cp_mqd_base_addr_lo);
  4627. WREG32(mmCP_MQD_BASE_ADDR_HI, mqd->cp_mqd_base_addr_hi);
  4628. /* set MQD vmid to 0 */
  4629. tmp = RREG32(mmCP_MQD_CONTROL);
  4630. tmp = REG_SET_FIELD(tmp, CP_MQD_CONTROL, VMID, 0);
  4631. WREG32(mmCP_MQD_CONTROL, tmp);
  4632. mqd->cp_mqd_control = tmp;
  4633. /* set the pointer to the HQD, this is similar CP_RB0_BASE/_HI */
  4634. hqd_gpu_addr = ring->gpu_addr >> 8;
  4635. mqd->cp_hqd_pq_base_lo = hqd_gpu_addr;
  4636. mqd->cp_hqd_pq_base_hi = upper_32_bits(hqd_gpu_addr);
  4637. WREG32(mmCP_HQD_PQ_BASE, mqd->cp_hqd_pq_base_lo);
  4638. WREG32(mmCP_HQD_PQ_BASE_HI, mqd->cp_hqd_pq_base_hi);
  4639. /* set up the HQD, this is similar to CP_RB0_CNTL */
  4640. tmp = RREG32(mmCP_HQD_PQ_CONTROL);
  4641. tmp = REG_SET_FIELD(tmp, CP_HQD_PQ_CONTROL, QUEUE_SIZE,
  4642. (order_base_2(ring->ring_size / 4) - 1));
  4643. tmp = REG_SET_FIELD(tmp, CP_HQD_PQ_CONTROL, RPTR_BLOCK_SIZE,
  4644. ((order_base_2(AMDGPU_GPU_PAGE_SIZE / 4) - 1) << 8));
  4645. #ifdef __BIG_ENDIAN
  4646. tmp = REG_SET_FIELD(tmp, CP_HQD_PQ_CONTROL, ENDIAN_SWAP, 1);
  4647. #endif
  4648. tmp = REG_SET_FIELD(tmp, CP_HQD_PQ_CONTROL, UNORD_DISPATCH, 0);
  4649. tmp = REG_SET_FIELD(tmp, CP_HQD_PQ_CONTROL, ROQ_PQ_IB_FLIP, 0);
  4650. tmp = REG_SET_FIELD(tmp, CP_HQD_PQ_CONTROL, PRIV_STATE, 1);
  4651. tmp = REG_SET_FIELD(tmp, CP_HQD_PQ_CONTROL, KMD_QUEUE, 1);
  4652. WREG32(mmCP_HQD_PQ_CONTROL, tmp);
  4653. mqd->cp_hqd_pq_control = tmp;
  4654. /* set the wb address wether it's enabled or not */
  4655. wb_gpu_addr = adev->wb.gpu_addr + (ring->rptr_offs * 4);
  4656. mqd->cp_hqd_pq_rptr_report_addr_lo = wb_gpu_addr & 0xfffffffc;
  4657. mqd->cp_hqd_pq_rptr_report_addr_hi =
  4658. upper_32_bits(wb_gpu_addr) & 0xffff;
  4659. WREG32(mmCP_HQD_PQ_RPTR_REPORT_ADDR,
  4660. mqd->cp_hqd_pq_rptr_report_addr_lo);
  4661. WREG32(mmCP_HQD_PQ_RPTR_REPORT_ADDR_HI,
  4662. mqd->cp_hqd_pq_rptr_report_addr_hi);
  4663. /* only used if CP_PQ_WPTR_POLL_CNTL.CP_PQ_WPTR_POLL_CNTL__EN_MASK=1 */
  4664. wb_gpu_addr = adev->wb.gpu_addr + (ring->wptr_offs * 4);
  4665. mqd->cp_hqd_pq_wptr_poll_addr_lo = wb_gpu_addr & 0xfffffffc;
  4666. mqd->cp_hqd_pq_wptr_poll_addr_hi = upper_32_bits(wb_gpu_addr) & 0xffff;
  4667. WREG32(mmCP_HQD_PQ_WPTR_POLL_ADDR, mqd->cp_hqd_pq_wptr_poll_addr_lo);
  4668. WREG32(mmCP_HQD_PQ_WPTR_POLL_ADDR_HI,
  4669. mqd->cp_hqd_pq_wptr_poll_addr_hi);
  4670. /* enable the doorbell if requested */
  4671. if (use_doorbell) {
  4672. if ((adev->asic_type == CHIP_CARRIZO) ||
  4673. (adev->asic_type == CHIP_FIJI) ||
  4674. (adev->asic_type == CHIP_STONEY) ||
  4675. (adev->asic_type == CHIP_POLARIS11) ||
  4676. (adev->asic_type == CHIP_POLARIS10) ||
  4677. (adev->asic_type == CHIP_POLARIS12)) {
  4678. WREG32(mmCP_MEC_DOORBELL_RANGE_LOWER,
  4679. AMDGPU_DOORBELL_KIQ << 2);
  4680. WREG32(mmCP_MEC_DOORBELL_RANGE_UPPER,
  4681. AMDGPU_DOORBELL_MEC_RING7 << 2);
  4682. }
  4683. tmp = RREG32(mmCP_HQD_PQ_DOORBELL_CONTROL);
  4684. tmp = REG_SET_FIELD(tmp, CP_HQD_PQ_DOORBELL_CONTROL,
  4685. DOORBELL_OFFSET, ring->doorbell_index);
  4686. tmp = REG_SET_FIELD(tmp, CP_HQD_PQ_DOORBELL_CONTROL, DOORBELL_EN, 1);
  4687. tmp = REG_SET_FIELD(tmp, CP_HQD_PQ_DOORBELL_CONTROL, DOORBELL_SOURCE, 0);
  4688. tmp = REG_SET_FIELD(tmp, CP_HQD_PQ_DOORBELL_CONTROL, DOORBELL_HIT, 0);
  4689. mqd->cp_hqd_pq_doorbell_control = tmp;
  4690. } else {
  4691. mqd->cp_hqd_pq_doorbell_control = 0;
  4692. }
  4693. WREG32(mmCP_HQD_PQ_DOORBELL_CONTROL,
  4694. mqd->cp_hqd_pq_doorbell_control);
  4695. /* reset read and write pointers, similar to CP_RB0_WPTR/_RPTR */
  4696. ring->wptr = 0;
  4697. mqd->cp_hqd_pq_wptr = lower_32_bits(ring->wptr);
  4698. WREG32(mmCP_HQD_PQ_WPTR, mqd->cp_hqd_pq_wptr);
  4699. mqd->cp_hqd_pq_rptr = RREG32(mmCP_HQD_PQ_RPTR);
  4700. /* set the vmid for the queue */
  4701. mqd->cp_hqd_vmid = 0;
  4702. WREG32(mmCP_HQD_VMID, mqd->cp_hqd_vmid);
  4703. tmp = RREG32(mmCP_HQD_PERSISTENT_STATE);
  4704. tmp = REG_SET_FIELD(tmp, CP_HQD_PERSISTENT_STATE, PRELOAD_SIZE, 0x53);
  4705. WREG32(mmCP_HQD_PERSISTENT_STATE, tmp);
  4706. mqd->cp_hqd_persistent_state = tmp;
  4707. if (adev->asic_type == CHIP_STONEY ||
  4708. adev->asic_type == CHIP_POLARIS11 ||
  4709. adev->asic_type == CHIP_POLARIS10 ||
  4710. adev->asic_type == CHIP_POLARIS12) {
  4711. tmp = RREG32(mmCP_ME1_PIPE3_INT_CNTL);
  4712. tmp = REG_SET_FIELD(tmp, CP_ME1_PIPE3_INT_CNTL, GENERIC2_INT_ENABLE, 1);
  4713. WREG32(mmCP_ME1_PIPE3_INT_CNTL, tmp);
  4714. }
  4715. /* activate the queue */
  4716. mqd->cp_hqd_active = 1;
  4717. WREG32(mmCP_HQD_ACTIVE, mqd->cp_hqd_active);
  4718. vi_srbm_select(adev, 0, 0, 0, 0);
  4719. mutex_unlock(&adev->srbm_mutex);
  4720. amdgpu_bo_kunmap(ring->mqd_obj);
  4721. amdgpu_bo_unreserve(ring->mqd_obj);
  4722. }
  4723. if (use_doorbell) {
  4724. tmp = RREG32(mmCP_PQ_STATUS);
  4725. tmp = REG_SET_FIELD(tmp, CP_PQ_STATUS, DOORBELL_ENABLE, 1);
  4726. WREG32(mmCP_PQ_STATUS, tmp);
  4727. }
  4728. gfx_v8_0_cp_compute_enable(adev, true);
  4729. for (i = 0; i < adev->gfx.num_compute_rings; i++) {
  4730. struct amdgpu_ring *ring = &adev->gfx.compute_ring[i];
  4731. ring->ready = true;
  4732. r = amdgpu_ring_test_ring(ring);
  4733. if (r)
  4734. ring->ready = false;
  4735. }
  4736. return 0;
  4737. }
  4738. static int gfx_v8_0_cp_resume(struct amdgpu_device *adev)
  4739. {
  4740. int r;
  4741. if (!(adev->flags & AMD_IS_APU))
  4742. gfx_v8_0_enable_gui_idle_interrupt(adev, false);
  4743. if (!adev->pp_enabled) {
  4744. if (adev->firmware.load_type != AMDGPU_FW_LOAD_SMU) {
  4745. /* legacy firmware loading */
  4746. r = gfx_v8_0_cp_gfx_load_microcode(adev);
  4747. if (r)
  4748. return r;
  4749. r = gfx_v8_0_cp_compute_load_microcode(adev);
  4750. if (r)
  4751. return r;
  4752. } else {
  4753. r = adev->smu.smumgr_funcs->check_fw_load_finish(adev,
  4754. AMDGPU_UCODE_ID_CP_CE);
  4755. if (r)
  4756. return -EINVAL;
  4757. r = adev->smu.smumgr_funcs->check_fw_load_finish(adev,
  4758. AMDGPU_UCODE_ID_CP_PFP);
  4759. if (r)
  4760. return -EINVAL;
  4761. r = adev->smu.smumgr_funcs->check_fw_load_finish(adev,
  4762. AMDGPU_UCODE_ID_CP_ME);
  4763. if (r)
  4764. return -EINVAL;
  4765. if (adev->asic_type == CHIP_TOPAZ) {
  4766. r = gfx_v8_0_cp_compute_load_microcode(adev);
  4767. if (r)
  4768. return r;
  4769. } else {
  4770. r = adev->smu.smumgr_funcs->check_fw_load_finish(adev,
  4771. AMDGPU_UCODE_ID_CP_MEC1);
  4772. if (r)
  4773. return -EINVAL;
  4774. }
  4775. }
  4776. }
  4777. r = gfx_v8_0_cp_gfx_resume(adev);
  4778. if (r)
  4779. return r;
  4780. if (amdgpu_sriov_vf(adev))
  4781. r = gfx_v8_0_kiq_resume(adev);
  4782. else
  4783. r = gfx_v8_0_cp_compute_resume(adev);
  4784. if (r)
  4785. return r;
  4786. gfx_v8_0_enable_gui_idle_interrupt(adev, true);
  4787. return 0;
  4788. }
  4789. static void gfx_v8_0_cp_enable(struct amdgpu_device *adev, bool enable)
  4790. {
  4791. gfx_v8_0_cp_gfx_enable(adev, enable);
  4792. gfx_v8_0_cp_compute_enable(adev, enable);
  4793. }
  4794. static int gfx_v8_0_hw_init(void *handle)
  4795. {
  4796. int r;
  4797. struct amdgpu_device *adev = (struct amdgpu_device *)handle;
  4798. gfx_v8_0_init_golden_registers(adev);
  4799. gfx_v8_0_gpu_init(adev);
  4800. r = gfx_v8_0_rlc_resume(adev);
  4801. if (r)
  4802. return r;
  4803. r = gfx_v8_0_cp_resume(adev);
  4804. return r;
  4805. }
  4806. static int gfx_v8_0_hw_fini(void *handle)
  4807. {
  4808. struct amdgpu_device *adev = (struct amdgpu_device *)handle;
  4809. amdgpu_irq_put(adev, &adev->gfx.priv_reg_irq, 0);
  4810. amdgpu_irq_put(adev, &adev->gfx.priv_inst_irq, 0);
  4811. if (amdgpu_sriov_vf(adev)) {
  4812. pr_debug("For SRIOV client, shouldn't do anything.\n");
  4813. return 0;
  4814. }
  4815. gfx_v8_0_cp_enable(adev, false);
  4816. gfx_v8_0_rlc_stop(adev);
  4817. gfx_v8_0_cp_compute_fini(adev);
  4818. amdgpu_set_powergating_state(adev,
  4819. AMD_IP_BLOCK_TYPE_GFX, AMD_PG_STATE_UNGATE);
  4820. return 0;
  4821. }
  4822. static int gfx_v8_0_suspend(void *handle)
  4823. {
  4824. struct amdgpu_device *adev = (struct amdgpu_device *)handle;
  4825. return gfx_v8_0_hw_fini(adev);
  4826. }
  4827. static int gfx_v8_0_resume(void *handle)
  4828. {
  4829. struct amdgpu_device *adev = (struct amdgpu_device *)handle;
  4830. return gfx_v8_0_hw_init(adev);
  4831. }
  4832. static bool gfx_v8_0_is_idle(void *handle)
  4833. {
  4834. struct amdgpu_device *adev = (struct amdgpu_device *)handle;
  4835. if (REG_GET_FIELD(RREG32(mmGRBM_STATUS), GRBM_STATUS, GUI_ACTIVE))
  4836. return false;
  4837. else
  4838. return true;
  4839. }
  4840. static int gfx_v8_0_wait_for_idle(void *handle)
  4841. {
  4842. unsigned i;
  4843. struct amdgpu_device *adev = (struct amdgpu_device *)handle;
  4844. for (i = 0; i < adev->usec_timeout; i++) {
  4845. if (gfx_v8_0_is_idle(handle))
  4846. return 0;
  4847. udelay(1);
  4848. }
  4849. return -ETIMEDOUT;
  4850. }
  4851. static bool gfx_v8_0_check_soft_reset(void *handle)
  4852. {
  4853. struct amdgpu_device *adev = (struct amdgpu_device *)handle;
  4854. u32 grbm_soft_reset = 0, srbm_soft_reset = 0;
  4855. u32 tmp;
  4856. /* GRBM_STATUS */
  4857. tmp = RREG32(mmGRBM_STATUS);
  4858. if (tmp & (GRBM_STATUS__PA_BUSY_MASK | GRBM_STATUS__SC_BUSY_MASK |
  4859. GRBM_STATUS__BCI_BUSY_MASK | GRBM_STATUS__SX_BUSY_MASK |
  4860. GRBM_STATUS__TA_BUSY_MASK | GRBM_STATUS__VGT_BUSY_MASK |
  4861. GRBM_STATUS__DB_BUSY_MASK | GRBM_STATUS__CB_BUSY_MASK |
  4862. GRBM_STATUS__GDS_BUSY_MASK | GRBM_STATUS__SPI_BUSY_MASK |
  4863. GRBM_STATUS__IA_BUSY_MASK | GRBM_STATUS__IA_BUSY_NO_DMA_MASK |
  4864. GRBM_STATUS__CP_BUSY_MASK | GRBM_STATUS__CP_COHERENCY_BUSY_MASK)) {
  4865. grbm_soft_reset = REG_SET_FIELD(grbm_soft_reset,
  4866. GRBM_SOFT_RESET, SOFT_RESET_CP, 1);
  4867. grbm_soft_reset = REG_SET_FIELD(grbm_soft_reset,
  4868. GRBM_SOFT_RESET, SOFT_RESET_GFX, 1);
  4869. srbm_soft_reset = REG_SET_FIELD(srbm_soft_reset,
  4870. SRBM_SOFT_RESET, SOFT_RESET_GRBM, 1);
  4871. }
  4872. /* GRBM_STATUS2 */
  4873. tmp = RREG32(mmGRBM_STATUS2);
  4874. if (REG_GET_FIELD(tmp, GRBM_STATUS2, RLC_BUSY))
  4875. grbm_soft_reset = REG_SET_FIELD(grbm_soft_reset,
  4876. GRBM_SOFT_RESET, SOFT_RESET_RLC, 1);
  4877. if (REG_GET_FIELD(tmp, GRBM_STATUS2, CPF_BUSY) ||
  4878. REG_GET_FIELD(tmp, GRBM_STATUS2, CPC_BUSY) ||
  4879. REG_GET_FIELD(tmp, GRBM_STATUS2, CPG_BUSY)) {
  4880. grbm_soft_reset = REG_SET_FIELD(grbm_soft_reset, GRBM_SOFT_RESET,
  4881. SOFT_RESET_CPF, 1);
  4882. grbm_soft_reset = REG_SET_FIELD(grbm_soft_reset, GRBM_SOFT_RESET,
  4883. SOFT_RESET_CPC, 1);
  4884. grbm_soft_reset = REG_SET_FIELD(grbm_soft_reset, GRBM_SOFT_RESET,
  4885. SOFT_RESET_CPG, 1);
  4886. srbm_soft_reset = REG_SET_FIELD(srbm_soft_reset, SRBM_SOFT_RESET,
  4887. SOFT_RESET_GRBM, 1);
  4888. }
  4889. /* SRBM_STATUS */
  4890. tmp = RREG32(mmSRBM_STATUS);
  4891. if (REG_GET_FIELD(tmp, SRBM_STATUS, GRBM_RQ_PENDING))
  4892. srbm_soft_reset = REG_SET_FIELD(srbm_soft_reset,
  4893. SRBM_SOFT_RESET, SOFT_RESET_GRBM, 1);
  4894. if (REG_GET_FIELD(tmp, SRBM_STATUS, SEM_BUSY))
  4895. srbm_soft_reset = REG_SET_FIELD(srbm_soft_reset,
  4896. SRBM_SOFT_RESET, SOFT_RESET_SEM, 1);
  4897. if (grbm_soft_reset || srbm_soft_reset) {
  4898. adev->gfx.grbm_soft_reset = grbm_soft_reset;
  4899. adev->gfx.srbm_soft_reset = srbm_soft_reset;
  4900. return true;
  4901. } else {
  4902. adev->gfx.grbm_soft_reset = 0;
  4903. adev->gfx.srbm_soft_reset = 0;
  4904. return false;
  4905. }
  4906. }
  4907. static void gfx_v8_0_inactive_hqd(struct amdgpu_device *adev,
  4908. struct amdgpu_ring *ring)
  4909. {
  4910. int i;
  4911. mutex_lock(&adev->srbm_mutex);
  4912. vi_srbm_select(adev, ring->me, ring->pipe, ring->queue, 0);
  4913. if (RREG32(mmCP_HQD_ACTIVE) & CP_HQD_ACTIVE__ACTIVE_MASK) {
  4914. WREG32_FIELD(CP_HQD_DEQUEUE_REQUEST, DEQUEUE_REQ, 2);
  4915. for (i = 0; i < adev->usec_timeout; i++) {
  4916. if (!(RREG32(mmCP_HQD_ACTIVE) & CP_HQD_ACTIVE__ACTIVE_MASK))
  4917. break;
  4918. udelay(1);
  4919. }
  4920. }
  4921. vi_srbm_select(adev, 0, 0, 0, 0);
  4922. mutex_unlock(&adev->srbm_mutex);
  4923. }
  4924. static int gfx_v8_0_pre_soft_reset(void *handle)
  4925. {
  4926. struct amdgpu_device *adev = (struct amdgpu_device *)handle;
  4927. u32 grbm_soft_reset = 0, srbm_soft_reset = 0;
  4928. if ((!adev->gfx.grbm_soft_reset) &&
  4929. (!adev->gfx.srbm_soft_reset))
  4930. return 0;
  4931. grbm_soft_reset = adev->gfx.grbm_soft_reset;
  4932. srbm_soft_reset = adev->gfx.srbm_soft_reset;
  4933. /* stop the rlc */
  4934. gfx_v8_0_rlc_stop(adev);
  4935. if (REG_GET_FIELD(grbm_soft_reset, GRBM_SOFT_RESET, SOFT_RESET_CP) ||
  4936. REG_GET_FIELD(grbm_soft_reset, GRBM_SOFT_RESET, SOFT_RESET_GFX))
  4937. /* Disable GFX parsing/prefetching */
  4938. gfx_v8_0_cp_gfx_enable(adev, false);
  4939. if (REG_GET_FIELD(grbm_soft_reset, GRBM_SOFT_RESET, SOFT_RESET_CP) ||
  4940. REG_GET_FIELD(grbm_soft_reset, GRBM_SOFT_RESET, SOFT_RESET_CPF) ||
  4941. REG_GET_FIELD(grbm_soft_reset, GRBM_SOFT_RESET, SOFT_RESET_CPC) ||
  4942. REG_GET_FIELD(grbm_soft_reset, GRBM_SOFT_RESET, SOFT_RESET_CPG)) {
  4943. int i;
  4944. for (i = 0; i < adev->gfx.num_compute_rings; i++) {
  4945. struct amdgpu_ring *ring = &adev->gfx.compute_ring[i];
  4946. gfx_v8_0_inactive_hqd(adev, ring);
  4947. }
  4948. /* Disable MEC parsing/prefetching */
  4949. gfx_v8_0_cp_compute_enable(adev, false);
  4950. }
  4951. return 0;
  4952. }
  4953. static int gfx_v8_0_soft_reset(void *handle)
  4954. {
  4955. struct amdgpu_device *adev = (struct amdgpu_device *)handle;
  4956. u32 grbm_soft_reset = 0, srbm_soft_reset = 0;
  4957. u32 tmp;
  4958. if ((!adev->gfx.grbm_soft_reset) &&
  4959. (!adev->gfx.srbm_soft_reset))
  4960. return 0;
  4961. grbm_soft_reset = adev->gfx.grbm_soft_reset;
  4962. srbm_soft_reset = adev->gfx.srbm_soft_reset;
  4963. if (grbm_soft_reset || srbm_soft_reset) {
  4964. tmp = RREG32(mmGMCON_DEBUG);
  4965. tmp = REG_SET_FIELD(tmp, GMCON_DEBUG, GFX_STALL, 1);
  4966. tmp = REG_SET_FIELD(tmp, GMCON_DEBUG, GFX_CLEAR, 1);
  4967. WREG32(mmGMCON_DEBUG, tmp);
  4968. udelay(50);
  4969. }
  4970. if (grbm_soft_reset) {
  4971. tmp = RREG32(mmGRBM_SOFT_RESET);
  4972. tmp |= grbm_soft_reset;
  4973. dev_info(adev->dev, "GRBM_SOFT_RESET=0x%08X\n", tmp);
  4974. WREG32(mmGRBM_SOFT_RESET, tmp);
  4975. tmp = RREG32(mmGRBM_SOFT_RESET);
  4976. udelay(50);
  4977. tmp &= ~grbm_soft_reset;
  4978. WREG32(mmGRBM_SOFT_RESET, tmp);
  4979. tmp = RREG32(mmGRBM_SOFT_RESET);
  4980. }
  4981. if (srbm_soft_reset) {
  4982. tmp = RREG32(mmSRBM_SOFT_RESET);
  4983. tmp |= srbm_soft_reset;
  4984. dev_info(adev->dev, "SRBM_SOFT_RESET=0x%08X\n", tmp);
  4985. WREG32(mmSRBM_SOFT_RESET, tmp);
  4986. tmp = RREG32(mmSRBM_SOFT_RESET);
  4987. udelay(50);
  4988. tmp &= ~srbm_soft_reset;
  4989. WREG32(mmSRBM_SOFT_RESET, tmp);
  4990. tmp = RREG32(mmSRBM_SOFT_RESET);
  4991. }
  4992. if (grbm_soft_reset || srbm_soft_reset) {
  4993. tmp = RREG32(mmGMCON_DEBUG);
  4994. tmp = REG_SET_FIELD(tmp, GMCON_DEBUG, GFX_STALL, 0);
  4995. tmp = REG_SET_FIELD(tmp, GMCON_DEBUG, GFX_CLEAR, 0);
  4996. WREG32(mmGMCON_DEBUG, tmp);
  4997. }
  4998. /* Wait a little for things to settle down */
  4999. udelay(50);
  5000. return 0;
  5001. }
  5002. static void gfx_v8_0_init_hqd(struct amdgpu_device *adev,
  5003. struct amdgpu_ring *ring)
  5004. {
  5005. mutex_lock(&adev->srbm_mutex);
  5006. vi_srbm_select(adev, ring->me, ring->pipe, ring->queue, 0);
  5007. WREG32(mmCP_HQD_DEQUEUE_REQUEST, 0);
  5008. WREG32(mmCP_HQD_PQ_RPTR, 0);
  5009. WREG32(mmCP_HQD_PQ_WPTR, 0);
  5010. vi_srbm_select(adev, 0, 0, 0, 0);
  5011. mutex_unlock(&adev->srbm_mutex);
  5012. }
  5013. static int gfx_v8_0_post_soft_reset(void *handle)
  5014. {
  5015. struct amdgpu_device *adev = (struct amdgpu_device *)handle;
  5016. u32 grbm_soft_reset = 0, srbm_soft_reset = 0;
  5017. if ((!adev->gfx.grbm_soft_reset) &&
  5018. (!adev->gfx.srbm_soft_reset))
  5019. return 0;
  5020. grbm_soft_reset = adev->gfx.grbm_soft_reset;
  5021. srbm_soft_reset = adev->gfx.srbm_soft_reset;
  5022. if (REG_GET_FIELD(grbm_soft_reset, GRBM_SOFT_RESET, SOFT_RESET_CP) ||
  5023. REG_GET_FIELD(grbm_soft_reset, GRBM_SOFT_RESET, SOFT_RESET_GFX))
  5024. gfx_v8_0_cp_gfx_resume(adev);
  5025. if (REG_GET_FIELD(grbm_soft_reset, GRBM_SOFT_RESET, SOFT_RESET_CP) ||
  5026. REG_GET_FIELD(grbm_soft_reset, GRBM_SOFT_RESET, SOFT_RESET_CPF) ||
  5027. REG_GET_FIELD(grbm_soft_reset, GRBM_SOFT_RESET, SOFT_RESET_CPC) ||
  5028. REG_GET_FIELD(grbm_soft_reset, GRBM_SOFT_RESET, SOFT_RESET_CPG)) {
  5029. int i;
  5030. for (i = 0; i < adev->gfx.num_compute_rings; i++) {
  5031. struct amdgpu_ring *ring = &adev->gfx.compute_ring[i];
  5032. gfx_v8_0_init_hqd(adev, ring);
  5033. }
  5034. gfx_v8_0_cp_compute_resume(adev);
  5035. }
  5036. gfx_v8_0_rlc_start(adev);
  5037. return 0;
  5038. }
  5039. /**
  5040. * gfx_v8_0_get_gpu_clock_counter - return GPU clock counter snapshot
  5041. *
  5042. * @adev: amdgpu_device pointer
  5043. *
  5044. * Fetches a GPU clock counter snapshot.
  5045. * Returns the 64 bit clock counter snapshot.
  5046. */
  5047. static uint64_t gfx_v8_0_get_gpu_clock_counter(struct amdgpu_device *adev)
  5048. {
  5049. uint64_t clock;
  5050. mutex_lock(&adev->gfx.gpu_clock_mutex);
  5051. WREG32(mmRLC_CAPTURE_GPU_CLOCK_COUNT, 1);
  5052. clock = (uint64_t)RREG32(mmRLC_GPU_CLOCK_COUNT_LSB) |
  5053. ((uint64_t)RREG32(mmRLC_GPU_CLOCK_COUNT_MSB) << 32ULL);
  5054. mutex_unlock(&adev->gfx.gpu_clock_mutex);
  5055. return clock;
  5056. }
  5057. static void gfx_v8_0_ring_emit_gds_switch(struct amdgpu_ring *ring,
  5058. uint32_t vmid,
  5059. uint32_t gds_base, uint32_t gds_size,
  5060. uint32_t gws_base, uint32_t gws_size,
  5061. uint32_t oa_base, uint32_t oa_size)
  5062. {
  5063. gds_base = gds_base >> AMDGPU_GDS_SHIFT;
  5064. gds_size = gds_size >> AMDGPU_GDS_SHIFT;
  5065. gws_base = gws_base >> AMDGPU_GWS_SHIFT;
  5066. gws_size = gws_size >> AMDGPU_GWS_SHIFT;
  5067. oa_base = oa_base >> AMDGPU_OA_SHIFT;
  5068. oa_size = oa_size >> AMDGPU_OA_SHIFT;
  5069. /* GDS Base */
  5070. amdgpu_ring_write(ring, PACKET3(PACKET3_WRITE_DATA, 3));
  5071. amdgpu_ring_write(ring, (WRITE_DATA_ENGINE_SEL(0) |
  5072. WRITE_DATA_DST_SEL(0)));
  5073. amdgpu_ring_write(ring, amdgpu_gds_reg_offset[vmid].mem_base);
  5074. amdgpu_ring_write(ring, 0);
  5075. amdgpu_ring_write(ring, gds_base);
  5076. /* GDS Size */
  5077. amdgpu_ring_write(ring, PACKET3(PACKET3_WRITE_DATA, 3));
  5078. amdgpu_ring_write(ring, (WRITE_DATA_ENGINE_SEL(0) |
  5079. WRITE_DATA_DST_SEL(0)));
  5080. amdgpu_ring_write(ring, amdgpu_gds_reg_offset[vmid].mem_size);
  5081. amdgpu_ring_write(ring, 0);
  5082. amdgpu_ring_write(ring, gds_size);
  5083. /* GWS */
  5084. amdgpu_ring_write(ring, PACKET3(PACKET3_WRITE_DATA, 3));
  5085. amdgpu_ring_write(ring, (WRITE_DATA_ENGINE_SEL(0) |
  5086. WRITE_DATA_DST_SEL(0)));
  5087. amdgpu_ring_write(ring, amdgpu_gds_reg_offset[vmid].gws);
  5088. amdgpu_ring_write(ring, 0);
  5089. amdgpu_ring_write(ring, gws_size << GDS_GWS_VMID0__SIZE__SHIFT | gws_base);
  5090. /* OA */
  5091. amdgpu_ring_write(ring, PACKET3(PACKET3_WRITE_DATA, 3));
  5092. amdgpu_ring_write(ring, (WRITE_DATA_ENGINE_SEL(0) |
  5093. WRITE_DATA_DST_SEL(0)));
  5094. amdgpu_ring_write(ring, amdgpu_gds_reg_offset[vmid].oa);
  5095. amdgpu_ring_write(ring, 0);
  5096. amdgpu_ring_write(ring, (1 << (oa_size + oa_base)) - (1 << oa_base));
  5097. }
  5098. static uint32_t wave_read_ind(struct amdgpu_device *adev, uint32_t simd, uint32_t wave, uint32_t address)
  5099. {
  5100. WREG32(mmSQ_IND_INDEX,
  5101. (wave << SQ_IND_INDEX__WAVE_ID__SHIFT) |
  5102. (simd << SQ_IND_INDEX__SIMD_ID__SHIFT) |
  5103. (address << SQ_IND_INDEX__INDEX__SHIFT) |
  5104. (SQ_IND_INDEX__FORCE_READ_MASK));
  5105. return RREG32(mmSQ_IND_DATA);
  5106. }
  5107. static void wave_read_regs(struct amdgpu_device *adev, uint32_t simd,
  5108. uint32_t wave, uint32_t thread,
  5109. uint32_t regno, uint32_t num, uint32_t *out)
  5110. {
  5111. WREG32(mmSQ_IND_INDEX,
  5112. (wave << SQ_IND_INDEX__WAVE_ID__SHIFT) |
  5113. (simd << SQ_IND_INDEX__SIMD_ID__SHIFT) |
  5114. (regno << SQ_IND_INDEX__INDEX__SHIFT) |
  5115. (thread << SQ_IND_INDEX__THREAD_ID__SHIFT) |
  5116. (SQ_IND_INDEX__FORCE_READ_MASK) |
  5117. (SQ_IND_INDEX__AUTO_INCR_MASK));
  5118. while (num--)
  5119. *(out++) = RREG32(mmSQ_IND_DATA);
  5120. }
  5121. static void gfx_v8_0_read_wave_data(struct amdgpu_device *adev, uint32_t simd, uint32_t wave, uint32_t *dst, int *no_fields)
  5122. {
  5123. /* type 0 wave data */
  5124. dst[(*no_fields)++] = 0;
  5125. dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_STATUS);
  5126. dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_PC_LO);
  5127. dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_PC_HI);
  5128. dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_EXEC_LO);
  5129. dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_EXEC_HI);
  5130. dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_HW_ID);
  5131. dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_INST_DW0);
  5132. dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_INST_DW1);
  5133. dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_GPR_ALLOC);
  5134. dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_LDS_ALLOC);
  5135. dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_TRAPSTS);
  5136. dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_IB_STS);
  5137. dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_TBA_LO);
  5138. dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_TBA_HI);
  5139. dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_TMA_LO);
  5140. dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_TMA_HI);
  5141. dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_IB_DBG0);
  5142. dst[(*no_fields)++] = wave_read_ind(adev, simd, wave, ixSQ_WAVE_M0);
  5143. }
  5144. static void gfx_v8_0_read_wave_sgprs(struct amdgpu_device *adev, uint32_t simd,
  5145. uint32_t wave, uint32_t start,
  5146. uint32_t size, uint32_t *dst)
  5147. {
  5148. wave_read_regs(
  5149. adev, simd, wave, 0,
  5150. start + SQIND_WAVE_SGPRS_OFFSET, size, dst);
  5151. }
  5152. static const struct amdgpu_gfx_funcs gfx_v8_0_gfx_funcs = {
  5153. .get_gpu_clock_counter = &gfx_v8_0_get_gpu_clock_counter,
  5154. .select_se_sh = &gfx_v8_0_select_se_sh,
  5155. .read_wave_data = &gfx_v8_0_read_wave_data,
  5156. .read_wave_sgprs = &gfx_v8_0_read_wave_sgprs,
  5157. };
  5158. static int gfx_v8_0_early_init(void *handle)
  5159. {
  5160. struct amdgpu_device *adev = (struct amdgpu_device *)handle;
  5161. adev->gfx.num_gfx_rings = GFX8_NUM_GFX_RINGS;
  5162. adev->gfx.num_compute_rings = GFX8_NUM_COMPUTE_RINGS;
  5163. adev->gfx.funcs = &gfx_v8_0_gfx_funcs;
  5164. gfx_v8_0_set_ring_funcs(adev);
  5165. gfx_v8_0_set_irq_funcs(adev);
  5166. gfx_v8_0_set_gds_init(adev);
  5167. gfx_v8_0_set_rlc_funcs(adev);
  5168. return 0;
  5169. }
  5170. static int gfx_v8_0_late_init(void *handle)
  5171. {
  5172. struct amdgpu_device *adev = (struct amdgpu_device *)handle;
  5173. int r;
  5174. r = amdgpu_irq_get(adev, &adev->gfx.priv_reg_irq, 0);
  5175. if (r)
  5176. return r;
  5177. r = amdgpu_irq_get(adev, &adev->gfx.priv_inst_irq, 0);
  5178. if (r)
  5179. return r;
  5180. /* requires IBs so do in late init after IB pool is initialized */
  5181. r = gfx_v8_0_do_edc_gpr_workarounds(adev);
  5182. if (r)
  5183. return r;
  5184. amdgpu_set_powergating_state(adev,
  5185. AMD_IP_BLOCK_TYPE_GFX, AMD_PG_STATE_GATE);
  5186. return 0;
  5187. }
  5188. static void gfx_v8_0_enable_gfx_static_mg_power_gating(struct amdgpu_device *adev,
  5189. bool enable)
  5190. {
  5191. if ((adev->asic_type == CHIP_POLARIS11) ||
  5192. (adev->asic_type == CHIP_POLARIS12))
  5193. /* Send msg to SMU via Powerplay */
  5194. amdgpu_set_powergating_state(adev,
  5195. AMD_IP_BLOCK_TYPE_SMC,
  5196. enable ?
  5197. AMD_PG_STATE_GATE : AMD_PG_STATE_UNGATE);
  5198. WREG32_FIELD(RLC_PG_CNTL, STATIC_PER_CU_PG_ENABLE, enable ? 1 : 0);
  5199. }
  5200. static void gfx_v8_0_enable_gfx_dynamic_mg_power_gating(struct amdgpu_device *adev,
  5201. bool enable)
  5202. {
  5203. WREG32_FIELD(RLC_PG_CNTL, DYN_PER_CU_PG_ENABLE, enable ? 1 : 0);
  5204. }
  5205. static void polaris11_enable_gfx_quick_mg_power_gating(struct amdgpu_device *adev,
  5206. bool enable)
  5207. {
  5208. WREG32_FIELD(RLC_PG_CNTL, QUICK_PG_ENABLE, enable ? 1 : 0);
  5209. }
  5210. static void cz_enable_gfx_cg_power_gating(struct amdgpu_device *adev,
  5211. bool enable)
  5212. {
  5213. WREG32_FIELD(RLC_PG_CNTL, GFX_POWER_GATING_ENABLE, enable ? 1 : 0);
  5214. }
  5215. static void cz_enable_gfx_pipeline_power_gating(struct amdgpu_device *adev,
  5216. bool enable)
  5217. {
  5218. WREG32_FIELD(RLC_PG_CNTL, GFX_PIPELINE_PG_ENABLE, enable ? 1 : 0);
  5219. /* Read any GFX register to wake up GFX. */
  5220. if (!enable)
  5221. RREG32(mmDB_RENDER_CONTROL);
  5222. }
  5223. static void cz_update_gfx_cg_power_gating(struct amdgpu_device *adev,
  5224. bool enable)
  5225. {
  5226. if ((adev->pg_flags & AMD_PG_SUPPORT_GFX_PG) && enable) {
  5227. cz_enable_gfx_cg_power_gating(adev, true);
  5228. if (adev->pg_flags & AMD_PG_SUPPORT_GFX_PIPELINE)
  5229. cz_enable_gfx_pipeline_power_gating(adev, true);
  5230. } else {
  5231. cz_enable_gfx_cg_power_gating(adev, false);
  5232. cz_enable_gfx_pipeline_power_gating(adev, false);
  5233. }
  5234. }
  5235. static int gfx_v8_0_set_powergating_state(void *handle,
  5236. enum amd_powergating_state state)
  5237. {
  5238. struct amdgpu_device *adev = (struct amdgpu_device *)handle;
  5239. bool enable = (state == AMD_PG_STATE_GATE);
  5240. if (amdgpu_sriov_vf(adev))
  5241. return 0;
  5242. switch (adev->asic_type) {
  5243. case CHIP_CARRIZO:
  5244. case CHIP_STONEY:
  5245. if (adev->pg_flags & AMD_PG_SUPPORT_RLC_SMU_HS) {
  5246. cz_enable_sck_slow_down_on_power_up(adev, true);
  5247. cz_enable_sck_slow_down_on_power_down(adev, true);
  5248. } else {
  5249. cz_enable_sck_slow_down_on_power_up(adev, false);
  5250. cz_enable_sck_slow_down_on_power_down(adev, false);
  5251. }
  5252. if (adev->pg_flags & AMD_PG_SUPPORT_CP)
  5253. cz_enable_cp_power_gating(adev, true);
  5254. else
  5255. cz_enable_cp_power_gating(adev, false);
  5256. cz_update_gfx_cg_power_gating(adev, enable);
  5257. if ((adev->pg_flags & AMD_PG_SUPPORT_GFX_SMG) && enable)
  5258. gfx_v8_0_enable_gfx_static_mg_power_gating(adev, true);
  5259. else
  5260. gfx_v8_0_enable_gfx_static_mg_power_gating(adev, false);
  5261. if ((adev->pg_flags & AMD_PG_SUPPORT_GFX_DMG) && enable)
  5262. gfx_v8_0_enable_gfx_dynamic_mg_power_gating(adev, true);
  5263. else
  5264. gfx_v8_0_enable_gfx_dynamic_mg_power_gating(adev, false);
  5265. break;
  5266. case CHIP_POLARIS11:
  5267. case CHIP_POLARIS12:
  5268. if ((adev->pg_flags & AMD_PG_SUPPORT_GFX_SMG) && enable)
  5269. gfx_v8_0_enable_gfx_static_mg_power_gating(adev, true);
  5270. else
  5271. gfx_v8_0_enable_gfx_static_mg_power_gating(adev, false);
  5272. if ((adev->pg_flags & AMD_PG_SUPPORT_GFX_DMG) && enable)
  5273. gfx_v8_0_enable_gfx_dynamic_mg_power_gating(adev, true);
  5274. else
  5275. gfx_v8_0_enable_gfx_dynamic_mg_power_gating(adev, false);
  5276. if ((adev->pg_flags & AMD_PG_SUPPORT_GFX_QUICK_MG) && enable)
  5277. polaris11_enable_gfx_quick_mg_power_gating(adev, true);
  5278. else
  5279. polaris11_enable_gfx_quick_mg_power_gating(adev, false);
  5280. break;
  5281. default:
  5282. break;
  5283. }
  5284. return 0;
  5285. }
  5286. static void gfx_v8_0_get_clockgating_state(void *handle, u32 *flags)
  5287. {
  5288. struct amdgpu_device *adev = (struct amdgpu_device *)handle;
  5289. int data;
  5290. if (amdgpu_sriov_vf(adev))
  5291. *flags = 0;
  5292. /* AMD_CG_SUPPORT_GFX_MGCG */
  5293. data = RREG32(mmRLC_CGTT_MGCG_OVERRIDE);
  5294. if (!(data & RLC_CGTT_MGCG_OVERRIDE__CPF_MASK))
  5295. *flags |= AMD_CG_SUPPORT_GFX_MGCG;
  5296. /* AMD_CG_SUPPORT_GFX_CGLG */
  5297. data = RREG32(mmRLC_CGCG_CGLS_CTRL);
  5298. if (data & RLC_CGCG_CGLS_CTRL__CGCG_EN_MASK)
  5299. *flags |= AMD_CG_SUPPORT_GFX_CGCG;
  5300. /* AMD_CG_SUPPORT_GFX_CGLS */
  5301. if (data & RLC_CGCG_CGLS_CTRL__CGLS_EN_MASK)
  5302. *flags |= AMD_CG_SUPPORT_GFX_CGLS;
  5303. /* AMD_CG_SUPPORT_GFX_CGTS */
  5304. data = RREG32(mmCGTS_SM_CTRL_REG);
  5305. if (!(data & CGTS_SM_CTRL_REG__OVERRIDE_MASK))
  5306. *flags |= AMD_CG_SUPPORT_GFX_CGTS;
  5307. /* AMD_CG_SUPPORT_GFX_CGTS_LS */
  5308. if (!(data & CGTS_SM_CTRL_REG__LS_OVERRIDE_MASK))
  5309. *flags |= AMD_CG_SUPPORT_GFX_CGTS_LS;
  5310. /* AMD_CG_SUPPORT_GFX_RLC_LS */
  5311. data = RREG32(mmRLC_MEM_SLP_CNTL);
  5312. if (data & RLC_MEM_SLP_CNTL__RLC_MEM_LS_EN_MASK)
  5313. *flags |= AMD_CG_SUPPORT_GFX_RLC_LS | AMD_CG_SUPPORT_GFX_MGLS;
  5314. /* AMD_CG_SUPPORT_GFX_CP_LS */
  5315. data = RREG32(mmCP_MEM_SLP_CNTL);
  5316. if (data & CP_MEM_SLP_CNTL__CP_MEM_LS_EN_MASK)
  5317. *flags |= AMD_CG_SUPPORT_GFX_CP_LS | AMD_CG_SUPPORT_GFX_MGLS;
  5318. }
  5319. static void gfx_v8_0_send_serdes_cmd(struct amdgpu_device *adev,
  5320. uint32_t reg_addr, uint32_t cmd)
  5321. {
  5322. uint32_t data;
  5323. gfx_v8_0_select_se_sh(adev, 0xffffffff, 0xffffffff, 0xffffffff);
  5324. WREG32(mmRLC_SERDES_WR_CU_MASTER_MASK, 0xffffffff);
  5325. WREG32(mmRLC_SERDES_WR_NONCU_MASTER_MASK, 0xffffffff);
  5326. data = RREG32(mmRLC_SERDES_WR_CTRL);
  5327. if (adev->asic_type == CHIP_STONEY)
  5328. data &= ~(RLC_SERDES_WR_CTRL__WRITE_COMMAND_MASK |
  5329. RLC_SERDES_WR_CTRL__READ_COMMAND_MASK |
  5330. RLC_SERDES_WR_CTRL__P1_SELECT_MASK |
  5331. RLC_SERDES_WR_CTRL__P2_SELECT_MASK |
  5332. RLC_SERDES_WR_CTRL__RDDATA_RESET_MASK |
  5333. RLC_SERDES_WR_CTRL__POWER_DOWN_MASK |
  5334. RLC_SERDES_WR_CTRL__POWER_UP_MASK |
  5335. RLC_SERDES_WR_CTRL__SHORT_FORMAT_MASK |
  5336. RLC_SERDES_WR_CTRL__SRBM_OVERRIDE_MASK);
  5337. else
  5338. data &= ~(RLC_SERDES_WR_CTRL__WRITE_COMMAND_MASK |
  5339. RLC_SERDES_WR_CTRL__READ_COMMAND_MASK |
  5340. RLC_SERDES_WR_CTRL__P1_SELECT_MASK |
  5341. RLC_SERDES_WR_CTRL__P2_SELECT_MASK |
  5342. RLC_SERDES_WR_CTRL__RDDATA_RESET_MASK |
  5343. RLC_SERDES_WR_CTRL__POWER_DOWN_MASK |
  5344. RLC_SERDES_WR_CTRL__POWER_UP_MASK |
  5345. RLC_SERDES_WR_CTRL__SHORT_FORMAT_MASK |
  5346. RLC_SERDES_WR_CTRL__BPM_DATA_MASK |
  5347. RLC_SERDES_WR_CTRL__REG_ADDR_MASK |
  5348. RLC_SERDES_WR_CTRL__SRBM_OVERRIDE_MASK);
  5349. data |= (RLC_SERDES_WR_CTRL__RSVD_BPM_ADDR_MASK |
  5350. (cmd << RLC_SERDES_WR_CTRL__BPM_DATA__SHIFT) |
  5351. (reg_addr << RLC_SERDES_WR_CTRL__REG_ADDR__SHIFT) |
  5352. (0xff << RLC_SERDES_WR_CTRL__BPM_ADDR__SHIFT));
  5353. WREG32(mmRLC_SERDES_WR_CTRL, data);
  5354. }
  5355. #define MSG_ENTER_RLC_SAFE_MODE 1
  5356. #define MSG_EXIT_RLC_SAFE_MODE 0
  5357. #define RLC_GPR_REG2__REQ_MASK 0x00000001
  5358. #define RLC_GPR_REG2__REQ__SHIFT 0
  5359. #define RLC_GPR_REG2__MESSAGE__SHIFT 0x00000001
  5360. #define RLC_GPR_REG2__MESSAGE_MASK 0x0000001e
  5361. static void iceland_enter_rlc_safe_mode(struct amdgpu_device *adev)
  5362. {
  5363. u32 data;
  5364. unsigned i;
  5365. data = RREG32(mmRLC_CNTL);
  5366. if (!(data & RLC_CNTL__RLC_ENABLE_F32_MASK))
  5367. return;
  5368. if (adev->cg_flags & (AMD_CG_SUPPORT_GFX_CGCG | AMD_CG_SUPPORT_GFX_MGCG)) {
  5369. data |= RLC_SAFE_MODE__CMD_MASK;
  5370. data &= ~RLC_SAFE_MODE__MESSAGE_MASK;
  5371. data |= (1 << RLC_SAFE_MODE__MESSAGE__SHIFT);
  5372. WREG32(mmRLC_SAFE_MODE, data);
  5373. for (i = 0; i < adev->usec_timeout; i++) {
  5374. if ((RREG32(mmRLC_GPM_STAT) &
  5375. (RLC_GPM_STAT__GFX_CLOCK_STATUS_MASK |
  5376. RLC_GPM_STAT__GFX_POWER_STATUS_MASK)) ==
  5377. (RLC_GPM_STAT__GFX_CLOCK_STATUS_MASK |
  5378. RLC_GPM_STAT__GFX_POWER_STATUS_MASK))
  5379. break;
  5380. udelay(1);
  5381. }
  5382. for (i = 0; i < adev->usec_timeout; i++) {
  5383. if (!REG_GET_FIELD(RREG32(mmRLC_SAFE_MODE), RLC_SAFE_MODE, CMD))
  5384. break;
  5385. udelay(1);
  5386. }
  5387. adev->gfx.rlc.in_safe_mode = true;
  5388. }
  5389. }
  5390. static void iceland_exit_rlc_safe_mode(struct amdgpu_device *adev)
  5391. {
  5392. u32 data = 0;
  5393. unsigned i;
  5394. data = RREG32(mmRLC_CNTL);
  5395. if (!(data & RLC_CNTL__RLC_ENABLE_F32_MASK))
  5396. return;
  5397. if (adev->cg_flags & (AMD_CG_SUPPORT_GFX_CGCG | AMD_CG_SUPPORT_GFX_MGCG)) {
  5398. if (adev->gfx.rlc.in_safe_mode) {
  5399. data |= RLC_SAFE_MODE__CMD_MASK;
  5400. data &= ~RLC_SAFE_MODE__MESSAGE_MASK;
  5401. WREG32(mmRLC_SAFE_MODE, data);
  5402. adev->gfx.rlc.in_safe_mode = false;
  5403. }
  5404. }
  5405. for (i = 0; i < adev->usec_timeout; i++) {
  5406. if (!REG_GET_FIELD(RREG32(mmRLC_SAFE_MODE), RLC_SAFE_MODE, CMD))
  5407. break;
  5408. udelay(1);
  5409. }
  5410. }
  5411. static const struct amdgpu_rlc_funcs iceland_rlc_funcs = {
  5412. .enter_safe_mode = iceland_enter_rlc_safe_mode,
  5413. .exit_safe_mode = iceland_exit_rlc_safe_mode
  5414. };
  5415. static void gfx_v8_0_update_medium_grain_clock_gating(struct amdgpu_device *adev,
  5416. bool enable)
  5417. {
  5418. uint32_t temp, data;
  5419. adev->gfx.rlc.funcs->enter_safe_mode(adev);
  5420. /* It is disabled by HW by default */
  5421. if (enable && (adev->cg_flags & AMD_CG_SUPPORT_GFX_MGCG)) {
  5422. if (adev->cg_flags & AMD_CG_SUPPORT_GFX_MGLS) {
  5423. if (adev->cg_flags & AMD_CG_SUPPORT_GFX_RLC_LS)
  5424. /* 1 - RLC memory Light sleep */
  5425. WREG32_FIELD(RLC_MEM_SLP_CNTL, RLC_MEM_LS_EN, 1);
  5426. if (adev->cg_flags & AMD_CG_SUPPORT_GFX_CP_LS)
  5427. WREG32_FIELD(CP_MEM_SLP_CNTL, CP_MEM_LS_EN, 1);
  5428. }
  5429. /* 3 - RLC_CGTT_MGCG_OVERRIDE */
  5430. temp = data = RREG32(mmRLC_CGTT_MGCG_OVERRIDE);
  5431. if (adev->flags & AMD_IS_APU)
  5432. data &= ~(RLC_CGTT_MGCG_OVERRIDE__CPF_MASK |
  5433. RLC_CGTT_MGCG_OVERRIDE__RLC_MASK |
  5434. RLC_CGTT_MGCG_OVERRIDE__MGCG_MASK);
  5435. else
  5436. data &= ~(RLC_CGTT_MGCG_OVERRIDE__CPF_MASK |
  5437. RLC_CGTT_MGCG_OVERRIDE__RLC_MASK |
  5438. RLC_CGTT_MGCG_OVERRIDE__MGCG_MASK |
  5439. RLC_CGTT_MGCG_OVERRIDE__GRBM_MASK);
  5440. if (temp != data)
  5441. WREG32(mmRLC_CGTT_MGCG_OVERRIDE, data);
  5442. /* 4 - wait for RLC_SERDES_CU_MASTER & RLC_SERDES_NONCU_MASTER idle */
  5443. gfx_v8_0_wait_for_rlc_serdes(adev);
  5444. /* 5 - clear mgcg override */
  5445. gfx_v8_0_send_serdes_cmd(adev, BPM_REG_MGCG_OVERRIDE, CLE_BPM_SERDES_CMD);
  5446. if (adev->cg_flags & AMD_CG_SUPPORT_GFX_CGTS) {
  5447. /* 6 - Enable CGTS(Tree Shade) MGCG /MGLS */
  5448. temp = data = RREG32(mmCGTS_SM_CTRL_REG);
  5449. data &= ~(CGTS_SM_CTRL_REG__SM_MODE_MASK);
  5450. data |= (0x2 << CGTS_SM_CTRL_REG__SM_MODE__SHIFT);
  5451. data |= CGTS_SM_CTRL_REG__SM_MODE_ENABLE_MASK;
  5452. data &= ~CGTS_SM_CTRL_REG__OVERRIDE_MASK;
  5453. if ((adev->cg_flags & AMD_CG_SUPPORT_GFX_MGLS) &&
  5454. (adev->cg_flags & AMD_CG_SUPPORT_GFX_CGTS_LS))
  5455. data &= ~CGTS_SM_CTRL_REG__LS_OVERRIDE_MASK;
  5456. data |= CGTS_SM_CTRL_REG__ON_MONITOR_ADD_EN_MASK;
  5457. data |= (0x96 << CGTS_SM_CTRL_REG__ON_MONITOR_ADD__SHIFT);
  5458. if (temp != data)
  5459. WREG32(mmCGTS_SM_CTRL_REG, data);
  5460. }
  5461. udelay(50);
  5462. /* 7 - wait for RLC_SERDES_CU_MASTER & RLC_SERDES_NONCU_MASTER idle */
  5463. gfx_v8_0_wait_for_rlc_serdes(adev);
  5464. } else {
  5465. /* 1 - MGCG_OVERRIDE[0] for CP and MGCG_OVERRIDE[1] for RLC */
  5466. temp = data = RREG32(mmRLC_CGTT_MGCG_OVERRIDE);
  5467. data |= (RLC_CGTT_MGCG_OVERRIDE__CPF_MASK |
  5468. RLC_CGTT_MGCG_OVERRIDE__RLC_MASK |
  5469. RLC_CGTT_MGCG_OVERRIDE__MGCG_MASK |
  5470. RLC_CGTT_MGCG_OVERRIDE__GRBM_MASK);
  5471. if (temp != data)
  5472. WREG32(mmRLC_CGTT_MGCG_OVERRIDE, data);
  5473. /* 2 - disable MGLS in RLC */
  5474. data = RREG32(mmRLC_MEM_SLP_CNTL);
  5475. if (data & RLC_MEM_SLP_CNTL__RLC_MEM_LS_EN_MASK) {
  5476. data &= ~RLC_MEM_SLP_CNTL__RLC_MEM_LS_EN_MASK;
  5477. WREG32(mmRLC_MEM_SLP_CNTL, data);
  5478. }
  5479. /* 3 - disable MGLS in CP */
  5480. data = RREG32(mmCP_MEM_SLP_CNTL);
  5481. if (data & CP_MEM_SLP_CNTL__CP_MEM_LS_EN_MASK) {
  5482. data &= ~CP_MEM_SLP_CNTL__CP_MEM_LS_EN_MASK;
  5483. WREG32(mmCP_MEM_SLP_CNTL, data);
  5484. }
  5485. /* 4 - Disable CGTS(Tree Shade) MGCG and MGLS */
  5486. temp = data = RREG32(mmCGTS_SM_CTRL_REG);
  5487. data |= (CGTS_SM_CTRL_REG__OVERRIDE_MASK |
  5488. CGTS_SM_CTRL_REG__LS_OVERRIDE_MASK);
  5489. if (temp != data)
  5490. WREG32(mmCGTS_SM_CTRL_REG, data);
  5491. /* 5 - wait for RLC_SERDES_CU_MASTER & RLC_SERDES_NONCU_MASTER idle */
  5492. gfx_v8_0_wait_for_rlc_serdes(adev);
  5493. /* 6 - set mgcg override */
  5494. gfx_v8_0_send_serdes_cmd(adev, BPM_REG_MGCG_OVERRIDE, SET_BPM_SERDES_CMD);
  5495. udelay(50);
  5496. /* 7- wait for RLC_SERDES_CU_MASTER & RLC_SERDES_NONCU_MASTER idle */
  5497. gfx_v8_0_wait_for_rlc_serdes(adev);
  5498. }
  5499. adev->gfx.rlc.funcs->exit_safe_mode(adev);
  5500. }
  5501. static void gfx_v8_0_update_coarse_grain_clock_gating(struct amdgpu_device *adev,
  5502. bool enable)
  5503. {
  5504. uint32_t temp, temp1, data, data1;
  5505. temp = data = RREG32(mmRLC_CGCG_CGLS_CTRL);
  5506. adev->gfx.rlc.funcs->enter_safe_mode(adev);
  5507. if (enable && (adev->cg_flags & AMD_CG_SUPPORT_GFX_CGCG)) {
  5508. temp1 = data1 = RREG32(mmRLC_CGTT_MGCG_OVERRIDE);
  5509. data1 &= ~RLC_CGTT_MGCG_OVERRIDE__CGCG_MASK;
  5510. if (temp1 != data1)
  5511. WREG32(mmRLC_CGTT_MGCG_OVERRIDE, data1);
  5512. /* : wait for RLC_SERDES_CU_MASTER & RLC_SERDES_NONCU_MASTER idle */
  5513. gfx_v8_0_wait_for_rlc_serdes(adev);
  5514. /* 2 - clear cgcg override */
  5515. gfx_v8_0_send_serdes_cmd(adev, BPM_REG_CGCG_OVERRIDE, CLE_BPM_SERDES_CMD);
  5516. /* wait for RLC_SERDES_CU_MASTER & RLC_SERDES_NONCU_MASTER idle */
  5517. gfx_v8_0_wait_for_rlc_serdes(adev);
  5518. /* 3 - write cmd to set CGLS */
  5519. gfx_v8_0_send_serdes_cmd(adev, BPM_REG_CGLS_EN, SET_BPM_SERDES_CMD);
  5520. /* 4 - enable cgcg */
  5521. data |= RLC_CGCG_CGLS_CTRL__CGCG_EN_MASK;
  5522. if (adev->cg_flags & AMD_CG_SUPPORT_GFX_CGLS) {
  5523. /* enable cgls*/
  5524. data |= RLC_CGCG_CGLS_CTRL__CGLS_EN_MASK;
  5525. temp1 = data1 = RREG32(mmRLC_CGTT_MGCG_OVERRIDE);
  5526. data1 &= ~RLC_CGTT_MGCG_OVERRIDE__CGLS_MASK;
  5527. if (temp1 != data1)
  5528. WREG32(mmRLC_CGTT_MGCG_OVERRIDE, data1);
  5529. } else {
  5530. data &= ~RLC_CGCG_CGLS_CTRL__CGLS_EN_MASK;
  5531. }
  5532. if (temp != data)
  5533. WREG32(mmRLC_CGCG_CGLS_CTRL, data);
  5534. /* 5 enable cntx_empty_int_enable/cntx_busy_int_enable/
  5535. * Cmp_busy/GFX_Idle interrupts
  5536. */
  5537. gfx_v8_0_enable_gui_idle_interrupt(adev, true);
  5538. } else {
  5539. /* disable cntx_empty_int_enable & GFX Idle interrupt */
  5540. gfx_v8_0_enable_gui_idle_interrupt(adev, false);
  5541. /* TEST CGCG */
  5542. temp1 = data1 = RREG32(mmRLC_CGTT_MGCG_OVERRIDE);
  5543. data1 |= (RLC_CGTT_MGCG_OVERRIDE__CGCG_MASK |
  5544. RLC_CGTT_MGCG_OVERRIDE__CGLS_MASK);
  5545. if (temp1 != data1)
  5546. WREG32(mmRLC_CGTT_MGCG_OVERRIDE, data1);
  5547. /* read gfx register to wake up cgcg */
  5548. RREG32(mmCB_CGTT_SCLK_CTRL);
  5549. RREG32(mmCB_CGTT_SCLK_CTRL);
  5550. RREG32(mmCB_CGTT_SCLK_CTRL);
  5551. RREG32(mmCB_CGTT_SCLK_CTRL);
  5552. /* wait for RLC_SERDES_CU_MASTER & RLC_SERDES_NONCU_MASTER idle */
  5553. gfx_v8_0_wait_for_rlc_serdes(adev);
  5554. /* write cmd to Set CGCG Overrride */
  5555. gfx_v8_0_send_serdes_cmd(adev, BPM_REG_CGCG_OVERRIDE, SET_BPM_SERDES_CMD);
  5556. /* wait for RLC_SERDES_CU_MASTER & RLC_SERDES_NONCU_MASTER idle */
  5557. gfx_v8_0_wait_for_rlc_serdes(adev);
  5558. /* write cmd to Clear CGLS */
  5559. gfx_v8_0_send_serdes_cmd(adev, BPM_REG_CGLS_EN, CLE_BPM_SERDES_CMD);
  5560. /* disable cgcg, cgls should be disabled too. */
  5561. data &= ~(RLC_CGCG_CGLS_CTRL__CGCG_EN_MASK |
  5562. RLC_CGCG_CGLS_CTRL__CGLS_EN_MASK);
  5563. if (temp != data)
  5564. WREG32(mmRLC_CGCG_CGLS_CTRL, data);
  5565. }
  5566. gfx_v8_0_wait_for_rlc_serdes(adev);
  5567. adev->gfx.rlc.funcs->exit_safe_mode(adev);
  5568. }
  5569. static int gfx_v8_0_update_gfx_clock_gating(struct amdgpu_device *adev,
  5570. bool enable)
  5571. {
  5572. if (enable) {
  5573. /* CGCG/CGLS should be enabled after MGCG/MGLS/TS(CG/LS)
  5574. * === MGCG + MGLS + TS(CG/LS) ===
  5575. */
  5576. gfx_v8_0_update_medium_grain_clock_gating(adev, enable);
  5577. gfx_v8_0_update_coarse_grain_clock_gating(adev, enable);
  5578. } else {
  5579. /* CGCG/CGLS should be disabled before MGCG/MGLS/TS(CG/LS)
  5580. * === CGCG + CGLS ===
  5581. */
  5582. gfx_v8_0_update_coarse_grain_clock_gating(adev, enable);
  5583. gfx_v8_0_update_medium_grain_clock_gating(adev, enable);
  5584. }
  5585. return 0;
  5586. }
  5587. static int gfx_v8_0_tonga_update_gfx_clock_gating(struct amdgpu_device *adev,
  5588. enum amd_clockgating_state state)
  5589. {
  5590. uint32_t msg_id, pp_state = 0;
  5591. uint32_t pp_support_state = 0;
  5592. void *pp_handle = adev->powerplay.pp_handle;
  5593. if (adev->cg_flags & (AMD_CG_SUPPORT_GFX_CGCG | AMD_CG_SUPPORT_GFX_CGLS)) {
  5594. if (adev->cg_flags & AMD_CG_SUPPORT_GFX_CGLS) {
  5595. pp_support_state = PP_STATE_SUPPORT_LS;
  5596. pp_state = PP_STATE_LS;
  5597. }
  5598. if (adev->cg_flags & AMD_CG_SUPPORT_GFX_CGCG) {
  5599. pp_support_state |= PP_STATE_SUPPORT_CG;
  5600. pp_state |= PP_STATE_CG;
  5601. }
  5602. if (state == AMD_CG_STATE_UNGATE)
  5603. pp_state = 0;
  5604. msg_id = PP_CG_MSG_ID(PP_GROUP_GFX,
  5605. PP_BLOCK_GFX_CG,
  5606. pp_support_state,
  5607. pp_state);
  5608. amd_set_clockgating_by_smu(pp_handle, msg_id);
  5609. }
  5610. if (adev->cg_flags & (AMD_CG_SUPPORT_GFX_MGCG | AMD_CG_SUPPORT_GFX_MGLS)) {
  5611. if (adev->cg_flags & AMD_CG_SUPPORT_GFX_MGLS) {
  5612. pp_support_state = PP_STATE_SUPPORT_LS;
  5613. pp_state = PP_STATE_LS;
  5614. }
  5615. if (adev->cg_flags & AMD_CG_SUPPORT_GFX_MGCG) {
  5616. pp_support_state |= PP_STATE_SUPPORT_CG;
  5617. pp_state |= PP_STATE_CG;
  5618. }
  5619. if (state == AMD_CG_STATE_UNGATE)
  5620. pp_state = 0;
  5621. msg_id = PP_CG_MSG_ID(PP_GROUP_GFX,
  5622. PP_BLOCK_GFX_MG,
  5623. pp_support_state,
  5624. pp_state);
  5625. amd_set_clockgating_by_smu(pp_handle, msg_id);
  5626. }
  5627. return 0;
  5628. }
  5629. static int gfx_v8_0_polaris_update_gfx_clock_gating(struct amdgpu_device *adev,
  5630. enum amd_clockgating_state state)
  5631. {
  5632. uint32_t msg_id, pp_state = 0;
  5633. uint32_t pp_support_state = 0;
  5634. void *pp_handle = adev->powerplay.pp_handle;
  5635. if (adev->cg_flags & (AMD_CG_SUPPORT_GFX_CGCG | AMD_CG_SUPPORT_GFX_CGLS)) {
  5636. if (adev->cg_flags & AMD_CG_SUPPORT_GFX_CGLS) {
  5637. pp_support_state = PP_STATE_SUPPORT_LS;
  5638. pp_state = PP_STATE_LS;
  5639. }
  5640. if (adev->cg_flags & AMD_CG_SUPPORT_GFX_CGCG) {
  5641. pp_support_state |= PP_STATE_SUPPORT_CG;
  5642. pp_state |= PP_STATE_CG;
  5643. }
  5644. if (state == AMD_CG_STATE_UNGATE)
  5645. pp_state = 0;
  5646. msg_id = PP_CG_MSG_ID(PP_GROUP_GFX,
  5647. PP_BLOCK_GFX_CG,
  5648. pp_support_state,
  5649. pp_state);
  5650. amd_set_clockgating_by_smu(pp_handle, msg_id);
  5651. }
  5652. if (adev->cg_flags & (AMD_CG_SUPPORT_GFX_3D_CGCG | AMD_CG_SUPPORT_GFX_3D_CGLS)) {
  5653. if (adev->cg_flags & AMD_CG_SUPPORT_GFX_3D_CGLS) {
  5654. pp_support_state = PP_STATE_SUPPORT_LS;
  5655. pp_state = PP_STATE_LS;
  5656. }
  5657. if (adev->cg_flags & AMD_CG_SUPPORT_GFX_3D_CGCG) {
  5658. pp_support_state |= PP_STATE_SUPPORT_CG;
  5659. pp_state |= PP_STATE_CG;
  5660. }
  5661. if (state == AMD_CG_STATE_UNGATE)
  5662. pp_state = 0;
  5663. msg_id = PP_CG_MSG_ID(PP_GROUP_GFX,
  5664. PP_BLOCK_GFX_3D,
  5665. pp_support_state,
  5666. pp_state);
  5667. amd_set_clockgating_by_smu(pp_handle, msg_id);
  5668. }
  5669. if (adev->cg_flags & (AMD_CG_SUPPORT_GFX_MGCG | AMD_CG_SUPPORT_GFX_MGLS)) {
  5670. if (adev->cg_flags & AMD_CG_SUPPORT_GFX_MGLS) {
  5671. pp_support_state = PP_STATE_SUPPORT_LS;
  5672. pp_state = PP_STATE_LS;
  5673. }
  5674. if (adev->cg_flags & AMD_CG_SUPPORT_GFX_MGCG) {
  5675. pp_support_state |= PP_STATE_SUPPORT_CG;
  5676. pp_state |= PP_STATE_CG;
  5677. }
  5678. if (state == AMD_CG_STATE_UNGATE)
  5679. pp_state = 0;
  5680. msg_id = PP_CG_MSG_ID(PP_GROUP_GFX,
  5681. PP_BLOCK_GFX_MG,
  5682. pp_support_state,
  5683. pp_state);
  5684. amd_set_clockgating_by_smu(pp_handle, msg_id);
  5685. }
  5686. if (adev->cg_flags & AMD_CG_SUPPORT_GFX_RLC_LS) {
  5687. pp_support_state = PP_STATE_SUPPORT_LS;
  5688. if (state == AMD_CG_STATE_UNGATE)
  5689. pp_state = 0;
  5690. else
  5691. pp_state = PP_STATE_LS;
  5692. msg_id = PP_CG_MSG_ID(PP_GROUP_GFX,
  5693. PP_BLOCK_GFX_RLC,
  5694. pp_support_state,
  5695. pp_state);
  5696. amd_set_clockgating_by_smu(pp_handle, msg_id);
  5697. }
  5698. if (adev->cg_flags & AMD_CG_SUPPORT_GFX_CP_LS) {
  5699. pp_support_state = PP_STATE_SUPPORT_LS;
  5700. if (state == AMD_CG_STATE_UNGATE)
  5701. pp_state = 0;
  5702. else
  5703. pp_state = PP_STATE_LS;
  5704. msg_id = PP_CG_MSG_ID(PP_GROUP_GFX,
  5705. PP_BLOCK_GFX_CP,
  5706. pp_support_state,
  5707. pp_state);
  5708. amd_set_clockgating_by_smu(pp_handle, msg_id);
  5709. }
  5710. return 0;
  5711. }
  5712. static int gfx_v8_0_set_clockgating_state(void *handle,
  5713. enum amd_clockgating_state state)
  5714. {
  5715. struct amdgpu_device *adev = (struct amdgpu_device *)handle;
  5716. if (amdgpu_sriov_vf(adev))
  5717. return 0;
  5718. switch (adev->asic_type) {
  5719. case CHIP_FIJI:
  5720. case CHIP_CARRIZO:
  5721. case CHIP_STONEY:
  5722. gfx_v8_0_update_gfx_clock_gating(adev,
  5723. state == AMD_CG_STATE_GATE);
  5724. break;
  5725. case CHIP_TONGA:
  5726. gfx_v8_0_tonga_update_gfx_clock_gating(adev, state);
  5727. break;
  5728. case CHIP_POLARIS10:
  5729. case CHIP_POLARIS11:
  5730. case CHIP_POLARIS12:
  5731. gfx_v8_0_polaris_update_gfx_clock_gating(adev, state);
  5732. break;
  5733. default:
  5734. break;
  5735. }
  5736. return 0;
  5737. }
  5738. static u64 gfx_v8_0_ring_get_rptr(struct amdgpu_ring *ring)
  5739. {
  5740. return ring->adev->wb.wb[ring->rptr_offs];
  5741. }
  5742. static u64 gfx_v8_0_ring_get_wptr_gfx(struct amdgpu_ring *ring)
  5743. {
  5744. struct amdgpu_device *adev = ring->adev;
  5745. if (ring->use_doorbell)
  5746. /* XXX check if swapping is necessary on BE */
  5747. return ring->adev->wb.wb[ring->wptr_offs];
  5748. else
  5749. return RREG32(mmCP_RB0_WPTR);
  5750. }
  5751. static void gfx_v8_0_ring_set_wptr_gfx(struct amdgpu_ring *ring)
  5752. {
  5753. struct amdgpu_device *adev = ring->adev;
  5754. if (ring->use_doorbell) {
  5755. /* XXX check if swapping is necessary on BE */
  5756. adev->wb.wb[ring->wptr_offs] = lower_32_bits(ring->wptr);
  5757. WDOORBELL32(ring->doorbell_index, lower_32_bits(ring->wptr));
  5758. } else {
  5759. WREG32(mmCP_RB0_WPTR, lower_32_bits(ring->wptr));
  5760. (void)RREG32(mmCP_RB0_WPTR);
  5761. }
  5762. }
  5763. static void gfx_v8_0_ring_emit_hdp_flush(struct amdgpu_ring *ring)
  5764. {
  5765. u32 ref_and_mask, reg_mem_engine;
  5766. if ((ring->funcs->type == AMDGPU_RING_TYPE_COMPUTE) ||
  5767. (ring->funcs->type == AMDGPU_RING_TYPE_KIQ)) {
  5768. switch (ring->me) {
  5769. case 1:
  5770. ref_and_mask = GPU_HDP_FLUSH_DONE__CP2_MASK << ring->pipe;
  5771. break;
  5772. case 2:
  5773. ref_and_mask = GPU_HDP_FLUSH_DONE__CP6_MASK << ring->pipe;
  5774. break;
  5775. default:
  5776. return;
  5777. }
  5778. reg_mem_engine = 0;
  5779. } else {
  5780. ref_and_mask = GPU_HDP_FLUSH_DONE__CP0_MASK;
  5781. reg_mem_engine = WAIT_REG_MEM_ENGINE(1); /* pfp */
  5782. }
  5783. amdgpu_ring_write(ring, PACKET3(PACKET3_WAIT_REG_MEM, 5));
  5784. amdgpu_ring_write(ring, (WAIT_REG_MEM_OPERATION(1) | /* write, wait, write */
  5785. WAIT_REG_MEM_FUNCTION(3) | /* == */
  5786. reg_mem_engine));
  5787. amdgpu_ring_write(ring, mmGPU_HDP_FLUSH_REQ);
  5788. amdgpu_ring_write(ring, mmGPU_HDP_FLUSH_DONE);
  5789. amdgpu_ring_write(ring, ref_and_mask);
  5790. amdgpu_ring_write(ring, ref_and_mask);
  5791. amdgpu_ring_write(ring, 0x20); /* poll interval */
  5792. }
  5793. static void gfx_v8_0_ring_emit_vgt_flush(struct amdgpu_ring *ring)
  5794. {
  5795. amdgpu_ring_write(ring, PACKET3(PACKET3_EVENT_WRITE, 0));
  5796. amdgpu_ring_write(ring, EVENT_TYPE(VS_PARTIAL_FLUSH) |
  5797. EVENT_INDEX(4));
  5798. amdgpu_ring_write(ring, PACKET3(PACKET3_EVENT_WRITE, 0));
  5799. amdgpu_ring_write(ring, EVENT_TYPE(VGT_FLUSH) |
  5800. EVENT_INDEX(0));
  5801. }
  5802. static void gfx_v8_0_ring_emit_hdp_invalidate(struct amdgpu_ring *ring)
  5803. {
  5804. amdgpu_ring_write(ring, PACKET3(PACKET3_WRITE_DATA, 3));
  5805. amdgpu_ring_write(ring, (WRITE_DATA_ENGINE_SEL(0) |
  5806. WRITE_DATA_DST_SEL(0) |
  5807. WR_CONFIRM));
  5808. amdgpu_ring_write(ring, mmHDP_DEBUG0);
  5809. amdgpu_ring_write(ring, 0);
  5810. amdgpu_ring_write(ring, 1);
  5811. }
  5812. static void gfx_v8_0_ring_emit_ib_gfx(struct amdgpu_ring *ring,
  5813. struct amdgpu_ib *ib,
  5814. unsigned vm_id, bool ctx_switch)
  5815. {
  5816. u32 header, control = 0;
  5817. if (ib->flags & AMDGPU_IB_FLAG_CE)
  5818. header = PACKET3(PACKET3_INDIRECT_BUFFER_CONST, 2);
  5819. else
  5820. header = PACKET3(PACKET3_INDIRECT_BUFFER, 2);
  5821. control |= ib->length_dw | (vm_id << 24);
  5822. if (amdgpu_sriov_vf(ring->adev) && ib->flags & AMDGPU_IB_FLAG_PREEMPT)
  5823. control |= INDIRECT_BUFFER_PRE_ENB(1);
  5824. amdgpu_ring_write(ring, header);
  5825. amdgpu_ring_write(ring,
  5826. #ifdef __BIG_ENDIAN
  5827. (2 << 0) |
  5828. #endif
  5829. (ib->gpu_addr & 0xFFFFFFFC));
  5830. amdgpu_ring_write(ring, upper_32_bits(ib->gpu_addr) & 0xFFFF);
  5831. amdgpu_ring_write(ring, control);
  5832. }
  5833. static void gfx_v8_0_ring_emit_ib_compute(struct amdgpu_ring *ring,
  5834. struct amdgpu_ib *ib,
  5835. unsigned vm_id, bool ctx_switch)
  5836. {
  5837. u32 control = INDIRECT_BUFFER_VALID | ib->length_dw | (vm_id << 24);
  5838. amdgpu_ring_write(ring, PACKET3(PACKET3_INDIRECT_BUFFER, 2));
  5839. amdgpu_ring_write(ring,
  5840. #ifdef __BIG_ENDIAN
  5841. (2 << 0) |
  5842. #endif
  5843. (ib->gpu_addr & 0xFFFFFFFC));
  5844. amdgpu_ring_write(ring, upper_32_bits(ib->gpu_addr) & 0xFFFF);
  5845. amdgpu_ring_write(ring, control);
  5846. }
  5847. static void gfx_v8_0_ring_emit_fence_gfx(struct amdgpu_ring *ring, u64 addr,
  5848. u64 seq, unsigned flags)
  5849. {
  5850. bool write64bit = flags & AMDGPU_FENCE_FLAG_64BIT;
  5851. bool int_sel = flags & AMDGPU_FENCE_FLAG_INT;
  5852. /* EVENT_WRITE_EOP - flush caches, send int */
  5853. amdgpu_ring_write(ring, PACKET3(PACKET3_EVENT_WRITE_EOP, 4));
  5854. amdgpu_ring_write(ring, (EOP_TCL1_ACTION_EN |
  5855. EOP_TC_ACTION_EN |
  5856. EOP_TC_WB_ACTION_EN |
  5857. EVENT_TYPE(CACHE_FLUSH_AND_INV_TS_EVENT) |
  5858. EVENT_INDEX(5)));
  5859. amdgpu_ring_write(ring, addr & 0xfffffffc);
  5860. amdgpu_ring_write(ring, (upper_32_bits(addr) & 0xffff) |
  5861. DATA_SEL(write64bit ? 2 : 1) | INT_SEL(int_sel ? 2 : 0));
  5862. amdgpu_ring_write(ring, lower_32_bits(seq));
  5863. amdgpu_ring_write(ring, upper_32_bits(seq));
  5864. }
  5865. static void gfx_v8_0_ring_emit_pipeline_sync(struct amdgpu_ring *ring)
  5866. {
  5867. int usepfp = (ring->funcs->type == AMDGPU_RING_TYPE_GFX);
  5868. uint32_t seq = ring->fence_drv.sync_seq;
  5869. uint64_t addr = ring->fence_drv.gpu_addr;
  5870. amdgpu_ring_write(ring, PACKET3(PACKET3_WAIT_REG_MEM, 5));
  5871. amdgpu_ring_write(ring, (WAIT_REG_MEM_MEM_SPACE(1) | /* memory */
  5872. WAIT_REG_MEM_FUNCTION(3) | /* equal */
  5873. WAIT_REG_MEM_ENGINE(usepfp))); /* pfp or me */
  5874. amdgpu_ring_write(ring, addr & 0xfffffffc);
  5875. amdgpu_ring_write(ring, upper_32_bits(addr) & 0xffffffff);
  5876. amdgpu_ring_write(ring, seq);
  5877. amdgpu_ring_write(ring, 0xffffffff);
  5878. amdgpu_ring_write(ring, 4); /* poll interval */
  5879. }
  5880. static void gfx_v8_0_ring_emit_vm_flush(struct amdgpu_ring *ring,
  5881. unsigned vm_id, uint64_t pd_addr)
  5882. {
  5883. int usepfp = (ring->funcs->type == AMDGPU_RING_TYPE_GFX);
  5884. amdgpu_ring_write(ring, PACKET3(PACKET3_WRITE_DATA, 3));
  5885. amdgpu_ring_write(ring, (WRITE_DATA_ENGINE_SEL(usepfp) |
  5886. WRITE_DATA_DST_SEL(0)) |
  5887. WR_CONFIRM);
  5888. if (vm_id < 8) {
  5889. amdgpu_ring_write(ring,
  5890. (mmVM_CONTEXT0_PAGE_TABLE_BASE_ADDR + vm_id));
  5891. } else {
  5892. amdgpu_ring_write(ring,
  5893. (mmVM_CONTEXT8_PAGE_TABLE_BASE_ADDR + vm_id - 8));
  5894. }
  5895. amdgpu_ring_write(ring, 0);
  5896. amdgpu_ring_write(ring, pd_addr >> 12);
  5897. /* bits 0-15 are the VM contexts0-15 */
  5898. /* invalidate the cache */
  5899. amdgpu_ring_write(ring, PACKET3(PACKET3_WRITE_DATA, 3));
  5900. amdgpu_ring_write(ring, (WRITE_DATA_ENGINE_SEL(0) |
  5901. WRITE_DATA_DST_SEL(0)));
  5902. amdgpu_ring_write(ring, mmVM_INVALIDATE_REQUEST);
  5903. amdgpu_ring_write(ring, 0);
  5904. amdgpu_ring_write(ring, 1 << vm_id);
  5905. /* wait for the invalidate to complete */
  5906. amdgpu_ring_write(ring, PACKET3(PACKET3_WAIT_REG_MEM, 5));
  5907. amdgpu_ring_write(ring, (WAIT_REG_MEM_OPERATION(0) | /* wait */
  5908. WAIT_REG_MEM_FUNCTION(0) | /* always */
  5909. WAIT_REG_MEM_ENGINE(0))); /* me */
  5910. amdgpu_ring_write(ring, mmVM_INVALIDATE_REQUEST);
  5911. amdgpu_ring_write(ring, 0);
  5912. amdgpu_ring_write(ring, 0); /* ref */
  5913. amdgpu_ring_write(ring, 0); /* mask */
  5914. amdgpu_ring_write(ring, 0x20); /* poll interval */
  5915. /* compute doesn't have PFP */
  5916. if (usepfp) {
  5917. /* sync PFP to ME, otherwise we might get invalid PFP reads */
  5918. amdgpu_ring_write(ring, PACKET3(PACKET3_PFP_SYNC_ME, 0));
  5919. amdgpu_ring_write(ring, 0x0);
  5920. }
  5921. }
  5922. static u64 gfx_v8_0_ring_get_wptr_compute(struct amdgpu_ring *ring)
  5923. {
  5924. return ring->adev->wb.wb[ring->wptr_offs];
  5925. }
  5926. static void gfx_v8_0_ring_set_wptr_compute(struct amdgpu_ring *ring)
  5927. {
  5928. struct amdgpu_device *adev = ring->adev;
  5929. /* XXX check if swapping is necessary on BE */
  5930. adev->wb.wb[ring->wptr_offs] = lower_32_bits(ring->wptr);
  5931. WDOORBELL32(ring->doorbell_index, lower_32_bits(ring->wptr));
  5932. }
  5933. static void gfx_v8_0_ring_emit_fence_compute(struct amdgpu_ring *ring,
  5934. u64 addr, u64 seq,
  5935. unsigned flags)
  5936. {
  5937. bool write64bit = flags & AMDGPU_FENCE_FLAG_64BIT;
  5938. bool int_sel = flags & AMDGPU_FENCE_FLAG_INT;
  5939. /* RELEASE_MEM - flush caches, send int */
  5940. amdgpu_ring_write(ring, PACKET3(PACKET3_RELEASE_MEM, 5));
  5941. amdgpu_ring_write(ring, (EOP_TCL1_ACTION_EN |
  5942. EOP_TC_ACTION_EN |
  5943. EOP_TC_WB_ACTION_EN |
  5944. EVENT_TYPE(CACHE_FLUSH_AND_INV_TS_EVENT) |
  5945. EVENT_INDEX(5)));
  5946. amdgpu_ring_write(ring, DATA_SEL(write64bit ? 2 : 1) | INT_SEL(int_sel ? 2 : 0));
  5947. amdgpu_ring_write(ring, addr & 0xfffffffc);
  5948. amdgpu_ring_write(ring, upper_32_bits(addr));
  5949. amdgpu_ring_write(ring, lower_32_bits(seq));
  5950. amdgpu_ring_write(ring, upper_32_bits(seq));
  5951. }
  5952. static void gfx_v8_0_ring_emit_fence_kiq(struct amdgpu_ring *ring, u64 addr,
  5953. u64 seq, unsigned int flags)
  5954. {
  5955. /* we only allocate 32bit for each seq wb address */
  5956. BUG_ON(flags & AMDGPU_FENCE_FLAG_64BIT);
  5957. /* write fence seq to the "addr" */
  5958. amdgpu_ring_write(ring, PACKET3(PACKET3_WRITE_DATA, 3));
  5959. amdgpu_ring_write(ring, (WRITE_DATA_ENGINE_SEL(0) |
  5960. WRITE_DATA_DST_SEL(5) | WR_CONFIRM));
  5961. amdgpu_ring_write(ring, lower_32_bits(addr));
  5962. amdgpu_ring_write(ring, upper_32_bits(addr));
  5963. amdgpu_ring_write(ring, lower_32_bits(seq));
  5964. if (flags & AMDGPU_FENCE_FLAG_INT) {
  5965. /* set register to trigger INT */
  5966. amdgpu_ring_write(ring, PACKET3(PACKET3_WRITE_DATA, 3));
  5967. amdgpu_ring_write(ring, (WRITE_DATA_ENGINE_SEL(0) |
  5968. WRITE_DATA_DST_SEL(0) | WR_CONFIRM));
  5969. amdgpu_ring_write(ring, mmCPC_INT_STATUS);
  5970. amdgpu_ring_write(ring, 0);
  5971. amdgpu_ring_write(ring, 0x20000000); /* src_id is 178 */
  5972. }
  5973. }
  5974. static void gfx_v8_ring_emit_sb(struct amdgpu_ring *ring)
  5975. {
  5976. amdgpu_ring_write(ring, PACKET3(PACKET3_SWITCH_BUFFER, 0));
  5977. amdgpu_ring_write(ring, 0);
  5978. }
  5979. static void gfx_v8_ring_emit_cntxcntl(struct amdgpu_ring *ring, uint32_t flags)
  5980. {
  5981. uint32_t dw2 = 0;
  5982. if (amdgpu_sriov_vf(ring->adev))
  5983. gfx_v8_0_ring_emit_ce_meta_init(ring,
  5984. (flags & AMDGPU_VM_DOMAIN) ? AMDGPU_CSA_VADDR : ring->adev->virt.csa_vmid0_addr);
  5985. dw2 |= 0x80000000; /* set load_enable otherwise this package is just NOPs */
  5986. if (flags & AMDGPU_HAVE_CTX_SWITCH) {
  5987. gfx_v8_0_ring_emit_vgt_flush(ring);
  5988. /* set load_global_config & load_global_uconfig */
  5989. dw2 |= 0x8001;
  5990. /* set load_cs_sh_regs */
  5991. dw2 |= 0x01000000;
  5992. /* set load_per_context_state & load_gfx_sh_regs for GFX */
  5993. dw2 |= 0x10002;
  5994. /* set load_ce_ram if preamble presented */
  5995. if (AMDGPU_PREAMBLE_IB_PRESENT & flags)
  5996. dw2 |= 0x10000000;
  5997. } else {
  5998. /* still load_ce_ram if this is the first time preamble presented
  5999. * although there is no context switch happens.
  6000. */
  6001. if (AMDGPU_PREAMBLE_IB_PRESENT_FIRST & flags)
  6002. dw2 |= 0x10000000;
  6003. }
  6004. amdgpu_ring_write(ring, PACKET3(PACKET3_CONTEXT_CONTROL, 1));
  6005. amdgpu_ring_write(ring, dw2);
  6006. amdgpu_ring_write(ring, 0);
  6007. if (amdgpu_sriov_vf(ring->adev))
  6008. gfx_v8_0_ring_emit_de_meta_init(ring,
  6009. (flags & AMDGPU_VM_DOMAIN) ? AMDGPU_CSA_VADDR : ring->adev->virt.csa_vmid0_addr);
  6010. }
  6011. static unsigned gfx_v8_0_ring_emit_init_cond_exec(struct amdgpu_ring *ring)
  6012. {
  6013. unsigned ret;
  6014. amdgpu_ring_write(ring, PACKET3(PACKET3_COND_EXEC, 3));
  6015. amdgpu_ring_write(ring, lower_32_bits(ring->cond_exe_gpu_addr));
  6016. amdgpu_ring_write(ring, upper_32_bits(ring->cond_exe_gpu_addr));
  6017. amdgpu_ring_write(ring, 0); /* discard following DWs if *cond_exec_gpu_addr==0 */
  6018. ret = ring->wptr & ring->buf_mask;
  6019. amdgpu_ring_write(ring, 0x55aa55aa); /* patch dummy value later */
  6020. return ret;
  6021. }
  6022. static void gfx_v8_0_ring_emit_patch_cond_exec(struct amdgpu_ring *ring, unsigned offset)
  6023. {
  6024. unsigned cur;
  6025. BUG_ON(offset > ring->buf_mask);
  6026. BUG_ON(ring->ring[offset] != 0x55aa55aa);
  6027. cur = (ring->wptr & ring->buf_mask) - 1;
  6028. if (likely(cur > offset))
  6029. ring->ring[offset] = cur - offset;
  6030. else
  6031. ring->ring[offset] = (ring->ring_size >> 2) - offset + cur;
  6032. }
  6033. static void gfx_v8_0_ring_emit_rreg(struct amdgpu_ring *ring, uint32_t reg)
  6034. {
  6035. struct amdgpu_device *adev = ring->adev;
  6036. amdgpu_ring_write(ring, PACKET3(PACKET3_COPY_DATA, 4));
  6037. amdgpu_ring_write(ring, 0 | /* src: register*/
  6038. (5 << 8) | /* dst: memory */
  6039. (1 << 20)); /* write confirm */
  6040. amdgpu_ring_write(ring, reg);
  6041. amdgpu_ring_write(ring, 0);
  6042. amdgpu_ring_write(ring, lower_32_bits(adev->wb.gpu_addr +
  6043. adev->virt.reg_val_offs * 4));
  6044. amdgpu_ring_write(ring, upper_32_bits(adev->wb.gpu_addr +
  6045. adev->virt.reg_val_offs * 4));
  6046. }
  6047. static void gfx_v8_0_ring_emit_wreg(struct amdgpu_ring *ring, uint32_t reg,
  6048. uint32_t val)
  6049. {
  6050. amdgpu_ring_write(ring, PACKET3(PACKET3_WRITE_DATA, 3));
  6051. amdgpu_ring_write(ring, (1 << 16)); /* no inc addr */
  6052. amdgpu_ring_write(ring, reg);
  6053. amdgpu_ring_write(ring, 0);
  6054. amdgpu_ring_write(ring, val);
  6055. }
  6056. static void gfx_v8_0_set_gfx_eop_interrupt_state(struct amdgpu_device *adev,
  6057. enum amdgpu_interrupt_state state)
  6058. {
  6059. WREG32_FIELD(CP_INT_CNTL_RING0, TIME_STAMP_INT_ENABLE,
  6060. state == AMDGPU_IRQ_STATE_DISABLE ? 0 : 1);
  6061. }
  6062. static void gfx_v8_0_set_compute_eop_interrupt_state(struct amdgpu_device *adev,
  6063. int me, int pipe,
  6064. enum amdgpu_interrupt_state state)
  6065. {
  6066. /*
  6067. * amdgpu controls only pipe 0 of MEC1. That's why this function only
  6068. * handles the setting of interrupts for this specific pipe. All other
  6069. * pipes' interrupts are set by amdkfd.
  6070. */
  6071. if (me == 1) {
  6072. switch (pipe) {
  6073. case 0:
  6074. break;
  6075. default:
  6076. DRM_DEBUG("invalid pipe %d\n", pipe);
  6077. return;
  6078. }
  6079. } else {
  6080. DRM_DEBUG("invalid me %d\n", me);
  6081. return;
  6082. }
  6083. WREG32_FIELD(CP_ME1_PIPE0_INT_CNTL, TIME_STAMP_INT_ENABLE,
  6084. state == AMDGPU_IRQ_STATE_DISABLE ? 0 : 1);
  6085. }
  6086. static int gfx_v8_0_set_priv_reg_fault_state(struct amdgpu_device *adev,
  6087. struct amdgpu_irq_src *source,
  6088. unsigned type,
  6089. enum amdgpu_interrupt_state state)
  6090. {
  6091. WREG32_FIELD(CP_INT_CNTL_RING0, PRIV_REG_INT_ENABLE,
  6092. state == AMDGPU_IRQ_STATE_DISABLE ? 0 : 1);
  6093. return 0;
  6094. }
  6095. static int gfx_v8_0_set_priv_inst_fault_state(struct amdgpu_device *adev,
  6096. struct amdgpu_irq_src *source,
  6097. unsigned type,
  6098. enum amdgpu_interrupt_state state)
  6099. {
  6100. WREG32_FIELD(CP_INT_CNTL_RING0, PRIV_INSTR_INT_ENABLE,
  6101. state == AMDGPU_IRQ_STATE_DISABLE ? 0 : 1);
  6102. return 0;
  6103. }
  6104. static int gfx_v8_0_set_eop_interrupt_state(struct amdgpu_device *adev,
  6105. struct amdgpu_irq_src *src,
  6106. unsigned type,
  6107. enum amdgpu_interrupt_state state)
  6108. {
  6109. switch (type) {
  6110. case AMDGPU_CP_IRQ_GFX_EOP:
  6111. gfx_v8_0_set_gfx_eop_interrupt_state(adev, state);
  6112. break;
  6113. case AMDGPU_CP_IRQ_COMPUTE_MEC1_PIPE0_EOP:
  6114. gfx_v8_0_set_compute_eop_interrupt_state(adev, 1, 0, state);
  6115. break;
  6116. case AMDGPU_CP_IRQ_COMPUTE_MEC1_PIPE1_EOP:
  6117. gfx_v8_0_set_compute_eop_interrupt_state(adev, 1, 1, state);
  6118. break;
  6119. case AMDGPU_CP_IRQ_COMPUTE_MEC1_PIPE2_EOP:
  6120. gfx_v8_0_set_compute_eop_interrupt_state(adev, 1, 2, state);
  6121. break;
  6122. case AMDGPU_CP_IRQ_COMPUTE_MEC1_PIPE3_EOP:
  6123. gfx_v8_0_set_compute_eop_interrupt_state(adev, 1, 3, state);
  6124. break;
  6125. case AMDGPU_CP_IRQ_COMPUTE_MEC2_PIPE0_EOP:
  6126. gfx_v8_0_set_compute_eop_interrupt_state(adev, 2, 0, state);
  6127. break;
  6128. case AMDGPU_CP_IRQ_COMPUTE_MEC2_PIPE1_EOP:
  6129. gfx_v8_0_set_compute_eop_interrupt_state(adev, 2, 1, state);
  6130. break;
  6131. case AMDGPU_CP_IRQ_COMPUTE_MEC2_PIPE2_EOP:
  6132. gfx_v8_0_set_compute_eop_interrupt_state(adev, 2, 2, state);
  6133. break;
  6134. case AMDGPU_CP_IRQ_COMPUTE_MEC2_PIPE3_EOP:
  6135. gfx_v8_0_set_compute_eop_interrupt_state(adev, 2, 3, state);
  6136. break;
  6137. default:
  6138. break;
  6139. }
  6140. return 0;
  6141. }
  6142. static int gfx_v8_0_eop_irq(struct amdgpu_device *adev,
  6143. struct amdgpu_irq_src *source,
  6144. struct amdgpu_iv_entry *entry)
  6145. {
  6146. int i;
  6147. u8 me_id, pipe_id, queue_id;
  6148. struct amdgpu_ring *ring;
  6149. DRM_DEBUG("IH: CP EOP\n");
  6150. me_id = (entry->ring_id & 0x0c) >> 2;
  6151. pipe_id = (entry->ring_id & 0x03) >> 0;
  6152. queue_id = (entry->ring_id & 0x70) >> 4;
  6153. switch (me_id) {
  6154. case 0:
  6155. amdgpu_fence_process(&adev->gfx.gfx_ring[0]);
  6156. break;
  6157. case 1:
  6158. case 2:
  6159. for (i = 0; i < adev->gfx.num_compute_rings; i++) {
  6160. ring = &adev->gfx.compute_ring[i];
  6161. /* Per-queue interrupt is supported for MEC starting from VI.
  6162. * The interrupt can only be enabled/disabled per pipe instead of per queue.
  6163. */
  6164. if ((ring->me == me_id) && (ring->pipe == pipe_id) && (ring->queue == queue_id))
  6165. amdgpu_fence_process(ring);
  6166. }
  6167. break;
  6168. }
  6169. return 0;
  6170. }
  6171. static int gfx_v8_0_priv_reg_irq(struct amdgpu_device *adev,
  6172. struct amdgpu_irq_src *source,
  6173. struct amdgpu_iv_entry *entry)
  6174. {
  6175. DRM_ERROR("Illegal register access in command stream\n");
  6176. schedule_work(&adev->reset_work);
  6177. return 0;
  6178. }
  6179. static int gfx_v8_0_priv_inst_irq(struct amdgpu_device *adev,
  6180. struct amdgpu_irq_src *source,
  6181. struct amdgpu_iv_entry *entry)
  6182. {
  6183. DRM_ERROR("Illegal instruction in command stream\n");
  6184. schedule_work(&adev->reset_work);
  6185. return 0;
  6186. }
  6187. static int gfx_v8_0_kiq_set_interrupt_state(struct amdgpu_device *adev,
  6188. struct amdgpu_irq_src *src,
  6189. unsigned int type,
  6190. enum amdgpu_interrupt_state state)
  6191. {
  6192. struct amdgpu_ring *ring = &(adev->gfx.kiq.ring);
  6193. BUG_ON(ring->funcs->type != AMDGPU_RING_TYPE_KIQ);
  6194. switch (type) {
  6195. case AMDGPU_CP_KIQ_IRQ_DRIVER0:
  6196. WREG32_FIELD(CPC_INT_CNTL, GENERIC2_INT_ENABLE,
  6197. state == AMDGPU_IRQ_STATE_DISABLE ? 0 : 1);
  6198. if (ring->me == 1)
  6199. WREG32_FIELD_OFFSET(CP_ME1_PIPE0_INT_CNTL,
  6200. ring->pipe,
  6201. GENERIC2_INT_ENABLE,
  6202. state == AMDGPU_IRQ_STATE_DISABLE ? 0 : 1);
  6203. else
  6204. WREG32_FIELD_OFFSET(CP_ME2_PIPE0_INT_CNTL,
  6205. ring->pipe,
  6206. GENERIC2_INT_ENABLE,
  6207. state == AMDGPU_IRQ_STATE_DISABLE ? 0 : 1);
  6208. break;
  6209. default:
  6210. BUG(); /* kiq only support GENERIC2_INT now */
  6211. break;
  6212. }
  6213. return 0;
  6214. }
  6215. static int gfx_v8_0_kiq_irq(struct amdgpu_device *adev,
  6216. struct amdgpu_irq_src *source,
  6217. struct amdgpu_iv_entry *entry)
  6218. {
  6219. u8 me_id, pipe_id, queue_id;
  6220. struct amdgpu_ring *ring = &(adev->gfx.kiq.ring);
  6221. BUG_ON(ring->funcs->type != AMDGPU_RING_TYPE_KIQ);
  6222. me_id = (entry->ring_id & 0x0c) >> 2;
  6223. pipe_id = (entry->ring_id & 0x03) >> 0;
  6224. queue_id = (entry->ring_id & 0x70) >> 4;
  6225. DRM_DEBUG("IH: CPC GENERIC2_INT, me:%d, pipe:%d, queue:%d\n",
  6226. me_id, pipe_id, queue_id);
  6227. amdgpu_fence_process(ring);
  6228. return 0;
  6229. }
  6230. static const struct amd_ip_funcs gfx_v8_0_ip_funcs = {
  6231. .name = "gfx_v8_0",
  6232. .early_init = gfx_v8_0_early_init,
  6233. .late_init = gfx_v8_0_late_init,
  6234. .sw_init = gfx_v8_0_sw_init,
  6235. .sw_fini = gfx_v8_0_sw_fini,
  6236. .hw_init = gfx_v8_0_hw_init,
  6237. .hw_fini = gfx_v8_0_hw_fini,
  6238. .suspend = gfx_v8_0_suspend,
  6239. .resume = gfx_v8_0_resume,
  6240. .is_idle = gfx_v8_0_is_idle,
  6241. .wait_for_idle = gfx_v8_0_wait_for_idle,
  6242. .check_soft_reset = gfx_v8_0_check_soft_reset,
  6243. .pre_soft_reset = gfx_v8_0_pre_soft_reset,
  6244. .soft_reset = gfx_v8_0_soft_reset,
  6245. .post_soft_reset = gfx_v8_0_post_soft_reset,
  6246. .set_clockgating_state = gfx_v8_0_set_clockgating_state,
  6247. .set_powergating_state = gfx_v8_0_set_powergating_state,
  6248. .get_clockgating_state = gfx_v8_0_get_clockgating_state,
  6249. };
  6250. static const struct amdgpu_ring_funcs gfx_v8_0_ring_funcs_gfx = {
  6251. .type = AMDGPU_RING_TYPE_GFX,
  6252. .align_mask = 0xff,
  6253. .nop = PACKET3(PACKET3_NOP, 0x3FFF),
  6254. .support_64bit_ptrs = false,
  6255. .get_rptr = gfx_v8_0_ring_get_rptr,
  6256. .get_wptr = gfx_v8_0_ring_get_wptr_gfx,
  6257. .set_wptr = gfx_v8_0_ring_set_wptr_gfx,
  6258. .emit_frame_size = /* maximum 215dw if count 16 IBs in */
  6259. 5 + /* COND_EXEC */
  6260. 7 + /* PIPELINE_SYNC */
  6261. 19 + /* VM_FLUSH */
  6262. 8 + /* FENCE for VM_FLUSH */
  6263. 20 + /* GDS switch */
  6264. 4 + /* double SWITCH_BUFFER,
  6265. the first COND_EXEC jump to the place just
  6266. prior to this double SWITCH_BUFFER */
  6267. 5 + /* COND_EXEC */
  6268. 7 + /* HDP_flush */
  6269. 4 + /* VGT_flush */
  6270. 14 + /* CE_META */
  6271. 31 + /* DE_META */
  6272. 3 + /* CNTX_CTRL */
  6273. 5 + /* HDP_INVL */
  6274. 8 + 8 + /* FENCE x2 */
  6275. 2, /* SWITCH_BUFFER */
  6276. .emit_ib_size = 4, /* gfx_v8_0_ring_emit_ib_gfx */
  6277. .emit_ib = gfx_v8_0_ring_emit_ib_gfx,
  6278. .emit_fence = gfx_v8_0_ring_emit_fence_gfx,
  6279. .emit_pipeline_sync = gfx_v8_0_ring_emit_pipeline_sync,
  6280. .emit_vm_flush = gfx_v8_0_ring_emit_vm_flush,
  6281. .emit_gds_switch = gfx_v8_0_ring_emit_gds_switch,
  6282. .emit_hdp_flush = gfx_v8_0_ring_emit_hdp_flush,
  6283. .emit_hdp_invalidate = gfx_v8_0_ring_emit_hdp_invalidate,
  6284. .test_ring = gfx_v8_0_ring_test_ring,
  6285. .test_ib = gfx_v8_0_ring_test_ib,
  6286. .insert_nop = amdgpu_ring_insert_nop,
  6287. .pad_ib = amdgpu_ring_generic_pad_ib,
  6288. .emit_switch_buffer = gfx_v8_ring_emit_sb,
  6289. .emit_cntxcntl = gfx_v8_ring_emit_cntxcntl,
  6290. .init_cond_exec = gfx_v8_0_ring_emit_init_cond_exec,
  6291. .patch_cond_exec = gfx_v8_0_ring_emit_patch_cond_exec,
  6292. };
  6293. static const struct amdgpu_ring_funcs gfx_v8_0_ring_funcs_compute = {
  6294. .type = AMDGPU_RING_TYPE_COMPUTE,
  6295. .align_mask = 0xff,
  6296. .nop = PACKET3(PACKET3_NOP, 0x3FFF),
  6297. .support_64bit_ptrs = false,
  6298. .get_rptr = gfx_v8_0_ring_get_rptr,
  6299. .get_wptr = gfx_v8_0_ring_get_wptr_compute,
  6300. .set_wptr = gfx_v8_0_ring_set_wptr_compute,
  6301. .emit_frame_size =
  6302. 20 + /* gfx_v8_0_ring_emit_gds_switch */
  6303. 7 + /* gfx_v8_0_ring_emit_hdp_flush */
  6304. 5 + /* gfx_v8_0_ring_emit_hdp_invalidate */
  6305. 7 + /* gfx_v8_0_ring_emit_pipeline_sync */
  6306. 17 + /* gfx_v8_0_ring_emit_vm_flush */
  6307. 7 + 7 + 7, /* gfx_v8_0_ring_emit_fence_compute x3 for user fence, vm fence */
  6308. .emit_ib_size = 4, /* gfx_v8_0_ring_emit_ib_compute */
  6309. .emit_ib = gfx_v8_0_ring_emit_ib_compute,
  6310. .emit_fence = gfx_v8_0_ring_emit_fence_compute,
  6311. .emit_pipeline_sync = gfx_v8_0_ring_emit_pipeline_sync,
  6312. .emit_vm_flush = gfx_v8_0_ring_emit_vm_flush,
  6313. .emit_gds_switch = gfx_v8_0_ring_emit_gds_switch,
  6314. .emit_hdp_flush = gfx_v8_0_ring_emit_hdp_flush,
  6315. .emit_hdp_invalidate = gfx_v8_0_ring_emit_hdp_invalidate,
  6316. .test_ring = gfx_v8_0_ring_test_ring,
  6317. .test_ib = gfx_v8_0_ring_test_ib,
  6318. .insert_nop = amdgpu_ring_insert_nop,
  6319. .pad_ib = amdgpu_ring_generic_pad_ib,
  6320. };
  6321. static const struct amdgpu_ring_funcs gfx_v8_0_ring_funcs_kiq = {
  6322. .type = AMDGPU_RING_TYPE_KIQ,
  6323. .align_mask = 0xff,
  6324. .nop = PACKET3(PACKET3_NOP, 0x3FFF),
  6325. .support_64bit_ptrs = false,
  6326. .get_rptr = gfx_v8_0_ring_get_rptr,
  6327. .get_wptr = gfx_v8_0_ring_get_wptr_compute,
  6328. .set_wptr = gfx_v8_0_ring_set_wptr_compute,
  6329. .emit_frame_size =
  6330. 20 + /* gfx_v8_0_ring_emit_gds_switch */
  6331. 7 + /* gfx_v8_0_ring_emit_hdp_flush */
  6332. 5 + /* gfx_v8_0_ring_emit_hdp_invalidate */
  6333. 7 + /* gfx_v8_0_ring_emit_pipeline_sync */
  6334. 17 + /* gfx_v8_0_ring_emit_vm_flush */
  6335. 7 + 7 + 7, /* gfx_v8_0_ring_emit_fence_kiq x3 for user fence, vm fence */
  6336. .emit_ib_size = 4, /* gfx_v8_0_ring_emit_ib_compute */
  6337. .emit_ib = gfx_v8_0_ring_emit_ib_compute,
  6338. .emit_fence = gfx_v8_0_ring_emit_fence_kiq,
  6339. .test_ring = gfx_v8_0_ring_test_ring,
  6340. .test_ib = gfx_v8_0_ring_test_ib,
  6341. .insert_nop = amdgpu_ring_insert_nop,
  6342. .pad_ib = amdgpu_ring_generic_pad_ib,
  6343. .emit_rreg = gfx_v8_0_ring_emit_rreg,
  6344. .emit_wreg = gfx_v8_0_ring_emit_wreg,
  6345. };
  6346. static void gfx_v8_0_set_ring_funcs(struct amdgpu_device *adev)
  6347. {
  6348. int i;
  6349. adev->gfx.kiq.ring.funcs = &gfx_v8_0_ring_funcs_kiq;
  6350. for (i = 0; i < adev->gfx.num_gfx_rings; i++)
  6351. adev->gfx.gfx_ring[i].funcs = &gfx_v8_0_ring_funcs_gfx;
  6352. for (i = 0; i < adev->gfx.num_compute_rings; i++)
  6353. adev->gfx.compute_ring[i].funcs = &gfx_v8_0_ring_funcs_compute;
  6354. }
  6355. static const struct amdgpu_irq_src_funcs gfx_v8_0_eop_irq_funcs = {
  6356. .set = gfx_v8_0_set_eop_interrupt_state,
  6357. .process = gfx_v8_0_eop_irq,
  6358. };
  6359. static const struct amdgpu_irq_src_funcs gfx_v8_0_priv_reg_irq_funcs = {
  6360. .set = gfx_v8_0_set_priv_reg_fault_state,
  6361. .process = gfx_v8_0_priv_reg_irq,
  6362. };
  6363. static const struct amdgpu_irq_src_funcs gfx_v8_0_priv_inst_irq_funcs = {
  6364. .set = gfx_v8_0_set_priv_inst_fault_state,
  6365. .process = gfx_v8_0_priv_inst_irq,
  6366. };
  6367. static const struct amdgpu_irq_src_funcs gfx_v8_0_kiq_irq_funcs = {
  6368. .set = gfx_v8_0_kiq_set_interrupt_state,
  6369. .process = gfx_v8_0_kiq_irq,
  6370. };
  6371. static void gfx_v8_0_set_irq_funcs(struct amdgpu_device *adev)
  6372. {
  6373. adev->gfx.eop_irq.num_types = AMDGPU_CP_IRQ_LAST;
  6374. adev->gfx.eop_irq.funcs = &gfx_v8_0_eop_irq_funcs;
  6375. adev->gfx.priv_reg_irq.num_types = 1;
  6376. adev->gfx.priv_reg_irq.funcs = &gfx_v8_0_priv_reg_irq_funcs;
  6377. adev->gfx.priv_inst_irq.num_types = 1;
  6378. adev->gfx.priv_inst_irq.funcs = &gfx_v8_0_priv_inst_irq_funcs;
  6379. adev->gfx.kiq.irq.num_types = AMDGPU_CP_KIQ_IRQ_LAST;
  6380. adev->gfx.kiq.irq.funcs = &gfx_v8_0_kiq_irq_funcs;
  6381. }
  6382. static void gfx_v8_0_set_rlc_funcs(struct amdgpu_device *adev)
  6383. {
  6384. adev->gfx.rlc.funcs = &iceland_rlc_funcs;
  6385. }
  6386. static void gfx_v8_0_set_gds_init(struct amdgpu_device *adev)
  6387. {
  6388. /* init asci gds info */
  6389. adev->gds.mem.total_size = RREG32(mmGDS_VMID0_SIZE);
  6390. adev->gds.gws.total_size = 64;
  6391. adev->gds.oa.total_size = 16;
  6392. if (adev->gds.mem.total_size == 64 * 1024) {
  6393. adev->gds.mem.gfx_partition_size = 4096;
  6394. adev->gds.mem.cs_partition_size = 4096;
  6395. adev->gds.gws.gfx_partition_size = 4;
  6396. adev->gds.gws.cs_partition_size = 4;
  6397. adev->gds.oa.gfx_partition_size = 4;
  6398. adev->gds.oa.cs_partition_size = 1;
  6399. } else {
  6400. adev->gds.mem.gfx_partition_size = 1024;
  6401. adev->gds.mem.cs_partition_size = 1024;
  6402. adev->gds.gws.gfx_partition_size = 16;
  6403. adev->gds.gws.cs_partition_size = 16;
  6404. adev->gds.oa.gfx_partition_size = 4;
  6405. adev->gds.oa.cs_partition_size = 4;
  6406. }
  6407. }
  6408. static void gfx_v8_0_set_user_cu_inactive_bitmap(struct amdgpu_device *adev,
  6409. u32 bitmap)
  6410. {
  6411. u32 data;
  6412. if (!bitmap)
  6413. return;
  6414. data = bitmap << GC_USER_SHADER_ARRAY_CONFIG__INACTIVE_CUS__SHIFT;
  6415. data &= GC_USER_SHADER_ARRAY_CONFIG__INACTIVE_CUS_MASK;
  6416. WREG32(mmGC_USER_SHADER_ARRAY_CONFIG, data);
  6417. }
  6418. static u32 gfx_v8_0_get_cu_active_bitmap(struct amdgpu_device *adev)
  6419. {
  6420. u32 data, mask;
  6421. data = RREG32(mmCC_GC_SHADER_ARRAY_CONFIG) |
  6422. RREG32(mmGC_USER_SHADER_ARRAY_CONFIG);
  6423. mask = gfx_v8_0_create_bitmask(adev->gfx.config.max_cu_per_sh);
  6424. return ~REG_GET_FIELD(data, CC_GC_SHADER_ARRAY_CONFIG, INACTIVE_CUS) & mask;
  6425. }
  6426. static void gfx_v8_0_get_cu_info(struct amdgpu_device *adev)
  6427. {
  6428. int i, j, k, counter, active_cu_number = 0;
  6429. u32 mask, bitmap, ao_bitmap, ao_cu_mask = 0;
  6430. struct amdgpu_cu_info *cu_info = &adev->gfx.cu_info;
  6431. unsigned disable_masks[4 * 2];
  6432. memset(cu_info, 0, sizeof(*cu_info));
  6433. amdgpu_gfx_parse_disable_cu(disable_masks, 4, 2);
  6434. mutex_lock(&adev->grbm_idx_mutex);
  6435. for (i = 0; i < adev->gfx.config.max_shader_engines; i++) {
  6436. for (j = 0; j < adev->gfx.config.max_sh_per_se; j++) {
  6437. mask = 1;
  6438. ao_bitmap = 0;
  6439. counter = 0;
  6440. gfx_v8_0_select_se_sh(adev, i, j, 0xffffffff);
  6441. if (i < 4 && j < 2)
  6442. gfx_v8_0_set_user_cu_inactive_bitmap(
  6443. adev, disable_masks[i * 2 + j]);
  6444. bitmap = gfx_v8_0_get_cu_active_bitmap(adev);
  6445. cu_info->bitmap[i][j] = bitmap;
  6446. for (k = 0; k < 16; k ++) {
  6447. if (bitmap & mask) {
  6448. if (counter < 2)
  6449. ao_bitmap |= mask;
  6450. counter ++;
  6451. }
  6452. mask <<= 1;
  6453. }
  6454. active_cu_number += counter;
  6455. ao_cu_mask |= (ao_bitmap << (i * 16 + j * 8));
  6456. }
  6457. }
  6458. gfx_v8_0_select_se_sh(adev, 0xffffffff, 0xffffffff, 0xffffffff);
  6459. mutex_unlock(&adev->grbm_idx_mutex);
  6460. cu_info->number = active_cu_number;
  6461. cu_info->ao_cu_mask = ao_cu_mask;
  6462. }
  6463. const struct amdgpu_ip_block_version gfx_v8_0_ip_block =
  6464. {
  6465. .type = AMD_IP_BLOCK_TYPE_GFX,
  6466. .major = 8,
  6467. .minor = 0,
  6468. .rev = 0,
  6469. .funcs = &gfx_v8_0_ip_funcs,
  6470. };
  6471. const struct amdgpu_ip_block_version gfx_v8_1_ip_block =
  6472. {
  6473. .type = AMD_IP_BLOCK_TYPE_GFX,
  6474. .major = 8,
  6475. .minor = 1,
  6476. .rev = 0,
  6477. .funcs = &gfx_v8_0_ip_funcs,
  6478. };
  6479. static void gfx_v8_0_ring_emit_ce_meta_init(struct amdgpu_ring *ring, uint64_t csa_addr)
  6480. {
  6481. uint64_t ce_payload_addr;
  6482. int cnt_ce;
  6483. static union {
  6484. struct vi_ce_ib_state regular;
  6485. struct vi_ce_ib_state_chained_ib chained;
  6486. } ce_payload = {};
  6487. if (ring->adev->virt.chained_ib_support) {
  6488. ce_payload_addr = csa_addr + offsetof(struct vi_gfx_meta_data_chained_ib, ce_payload);
  6489. cnt_ce = (sizeof(ce_payload.chained) >> 2) + 4 - 2;
  6490. } else {
  6491. ce_payload_addr = csa_addr + offsetof(struct vi_gfx_meta_data, ce_payload);
  6492. cnt_ce = (sizeof(ce_payload.regular) >> 2) + 4 - 2;
  6493. }
  6494. amdgpu_ring_write(ring, PACKET3(PACKET3_WRITE_DATA, cnt_ce));
  6495. amdgpu_ring_write(ring, (WRITE_DATA_ENGINE_SEL(2) |
  6496. WRITE_DATA_DST_SEL(8) |
  6497. WR_CONFIRM) |
  6498. WRITE_DATA_CACHE_POLICY(0));
  6499. amdgpu_ring_write(ring, lower_32_bits(ce_payload_addr));
  6500. amdgpu_ring_write(ring, upper_32_bits(ce_payload_addr));
  6501. amdgpu_ring_write_multiple(ring, (void *)&ce_payload, cnt_ce - 2);
  6502. }
  6503. static void gfx_v8_0_ring_emit_de_meta_init(struct amdgpu_ring *ring, uint64_t csa_addr)
  6504. {
  6505. uint64_t de_payload_addr, gds_addr;
  6506. int cnt_de;
  6507. static union {
  6508. struct vi_de_ib_state regular;
  6509. struct vi_de_ib_state_chained_ib chained;
  6510. } de_payload = {};
  6511. gds_addr = csa_addr + 4096;
  6512. if (ring->adev->virt.chained_ib_support) {
  6513. de_payload.chained.gds_backup_addrlo = lower_32_bits(gds_addr);
  6514. de_payload.chained.gds_backup_addrhi = upper_32_bits(gds_addr);
  6515. de_payload_addr = csa_addr + offsetof(struct vi_gfx_meta_data_chained_ib, de_payload);
  6516. cnt_de = (sizeof(de_payload.chained) >> 2) + 4 - 2;
  6517. } else {
  6518. de_payload.regular.gds_backup_addrlo = lower_32_bits(gds_addr);
  6519. de_payload.regular.gds_backup_addrhi = upper_32_bits(gds_addr);
  6520. de_payload_addr = csa_addr + offsetof(struct vi_gfx_meta_data, de_payload);
  6521. cnt_de = (sizeof(de_payload.regular) >> 2) + 4 - 2;
  6522. }
  6523. amdgpu_ring_write(ring, PACKET3(PACKET3_WRITE_DATA, cnt_de));
  6524. amdgpu_ring_write(ring, (WRITE_DATA_ENGINE_SEL(1) |
  6525. WRITE_DATA_DST_SEL(8) |
  6526. WR_CONFIRM) |
  6527. WRITE_DATA_CACHE_POLICY(0));
  6528. amdgpu_ring_write(ring, lower_32_bits(de_payload_addr));
  6529. amdgpu_ring_write(ring, upper_32_bits(de_payload_addr));
  6530. amdgpu_ring_write_multiple(ring, (void *)&de_payload, cnt_de - 2);
  6531. }
  6532. /* create MQD for each compute queue */
  6533. static int gfx_v8_0_compute_mqd_sw_init(struct amdgpu_device *adev)
  6534. {
  6535. struct amdgpu_ring *ring = NULL;
  6536. int r, i;
  6537. /* create MQD for KIQ */
  6538. ring = &adev->gfx.kiq.ring;
  6539. if (!ring->mqd_obj) {
  6540. r = amdgpu_bo_create_kernel(adev, sizeof(struct vi_mqd), PAGE_SIZE,
  6541. AMDGPU_GEM_DOMAIN_GTT, &ring->mqd_obj,
  6542. &ring->mqd_gpu_addr, &ring->mqd_ptr);
  6543. if (r) {
  6544. dev_warn(adev->dev, "failed to create ring mqd ob (%d)", r);
  6545. return r;
  6546. }
  6547. /* prepare MQD backup */
  6548. adev->gfx.mec.mqd_backup[AMDGPU_MAX_COMPUTE_RINGS] = kmalloc(sizeof(struct vi_mqd), GFP_KERNEL);
  6549. if (!adev->gfx.mec.mqd_backup[AMDGPU_MAX_COMPUTE_RINGS])
  6550. dev_warn(adev->dev, "no memory to create MQD backup for ring %s\n", ring->name);
  6551. }
  6552. /* create MQD for each KCQ */
  6553. for (i = 0; i < adev->gfx.num_compute_rings; i++) {
  6554. ring = &adev->gfx.compute_ring[i];
  6555. if (!ring->mqd_obj) {
  6556. r = amdgpu_bo_create_kernel(adev, sizeof(struct vi_mqd), PAGE_SIZE,
  6557. AMDGPU_GEM_DOMAIN_GTT, &ring->mqd_obj,
  6558. &ring->mqd_gpu_addr, &ring->mqd_ptr);
  6559. if (r) {
  6560. dev_warn(adev->dev, "failed to create ring mqd ob (%d)", r);
  6561. return r;
  6562. }
  6563. /* prepare MQD backup */
  6564. adev->gfx.mec.mqd_backup[i] = kmalloc(sizeof(struct vi_mqd), GFP_KERNEL);
  6565. if (!adev->gfx.mec.mqd_backup[i])
  6566. dev_warn(adev->dev, "no memory to create MQD backup for ring %s\n", ring->name);
  6567. }
  6568. }
  6569. return 0;
  6570. }
  6571. static void gfx_v8_0_compute_mqd_sw_fini(struct amdgpu_device *adev)
  6572. {
  6573. struct amdgpu_ring *ring = NULL;
  6574. int i;
  6575. for (i = 0; i < adev->gfx.num_compute_rings; i++) {
  6576. ring = &adev->gfx.compute_ring[i];
  6577. kfree(adev->gfx.mec.mqd_backup[i]);
  6578. amdgpu_bo_free_kernel(&ring->mqd_obj,
  6579. &ring->mqd_gpu_addr,
  6580. &ring->mqd_ptr);
  6581. }
  6582. ring = &adev->gfx.kiq.ring;
  6583. kfree(adev->gfx.mec.mqd_backup[AMDGPU_MAX_COMPUTE_RINGS]);
  6584. amdgpu_bo_free_kernel(&ring->mqd_obj,
  6585. &ring->mqd_gpu_addr,
  6586. &ring->mqd_ptr);
  6587. }