cam_isp.h 38 KB

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  1. /* SPDX-License-Identifier: GPL-2.0-only WITH Linux-syscall-note */
  2. /*
  3. * Copyright (c) 2016-2021, The Linux Foundation. All rights reserved.
  4. */
  5. #ifndef __UAPI_CAM_ISP_H__
  6. #define __UAPI_CAM_ISP_H__
  7. #include <media/cam_defs.h>
  8. #include <media/cam_isp_vfe.h>
  9. #include <media/cam_isp_ife.h>
  10. #include <media/cam_isp_sfe.h>
  11. #include <media/cam_cpas.h>
  12. /* ISP driver name */
  13. #define CAM_ISP_DEV_NAME "cam-isp"
  14. /* HW type */
  15. #define CAM_ISP_HW_BASE 0
  16. #define CAM_ISP_HW_CSID 1
  17. #define CAM_ISP_HW_VFE 2
  18. #define CAM_ISP_HW_IFE 3
  19. #define CAM_ISP_HW_ISPIF 4
  20. #define CAM_ISP_HW_IFE_LITE 5
  21. #define CAM_ISP_HW_CSID_LITE 6
  22. #define CAM_ISP_HW_SFE 7
  23. #define CAM_ISP_HW_MAX 8
  24. /* Color Pattern */
  25. #define CAM_ISP_PATTERN_BAYER_RGRGRG 0
  26. #define CAM_ISP_PATTERN_BAYER_GRGRGR 1
  27. #define CAM_ISP_PATTERN_BAYER_BGBGBG 2
  28. #define CAM_ISP_PATTERN_BAYER_GBGBGB 3
  29. #define CAM_ISP_PATTERN_YUV_YCBYCR 4
  30. #define CAM_ISP_PATTERN_YUV_YCRYCB 5
  31. #define CAM_ISP_PATTERN_YUV_CBYCRY 6
  32. #define CAM_ISP_PATTERN_YUV_CRYCBY 7
  33. #define CAM_ISP_PATTERN_MAX 8
  34. /* Usage Type */
  35. #define CAM_ISP_RES_USAGE_SINGLE 0
  36. #define CAM_ISP_RES_USAGE_DUAL 1
  37. #define CAM_ISP_RES_USAGE_MAX 2
  38. /* Resource ID */
  39. #define CAM_ISP_RES_ID_PORT 0
  40. #define CAM_ISP_RES_ID_CLK 1
  41. #define CAM_ISP_RES_ID_MAX 2
  42. /* Resource Type - Type of resource for the resource id
  43. * defined in cam_isp_vfe.h, cam_isp_ife.h
  44. */
  45. /* Lane Type in input resource for Port */
  46. #define CAM_ISP_LANE_TYPE_DPHY 0
  47. #define CAM_ISP_LANE_TYPE_CPHY 1
  48. #define CAM_ISP_LANE_TYPE_MAX 2
  49. /* ISP Resurce Composite Group ID */
  50. #define CAM_ISP_RES_COMP_GROUP_NONE 0
  51. #define CAM_ISP_RES_COMP_GROUP_ID_0 1
  52. #define CAM_ISP_RES_COMP_GROUP_ID_1 2
  53. #define CAM_ISP_RES_COMP_GROUP_ID_2 3
  54. #define CAM_ISP_RES_COMP_GROUP_ID_3 4
  55. #define CAM_ISP_RES_COMP_GROUP_ID_4 5
  56. #define CAM_ISP_RES_COMP_GROUP_ID_5 6
  57. #define CAM_ISP_RES_COMP_GROUP_ID_MAX 6
  58. /* ISP packet opcode for ISP */
  59. #define CAM_ISP_PACKET_OP_BASE 0
  60. #define CAM_ISP_PACKET_INIT_DEV 1
  61. #define CAM_ISP_PACKET_UPDATE_DEV 2
  62. #define CAM_ISP_PACKET_OP_MAX 3
  63. /* ISP packet meta_data type for command buffer */
  64. #define CAM_ISP_PACKET_META_BASE 0
  65. #define CAM_ISP_PACKET_META_LEFT 1
  66. #define CAM_ISP_PACKET_META_RIGHT 2
  67. #define CAM_ISP_PACKET_META_COMMON 3
  68. #define CAM_ISP_PACKET_META_DMI_LEFT 4
  69. #define CAM_ISP_PACKET_META_DMI_RIGHT 5
  70. #define CAM_ISP_PACKET_META_DMI_COMMON 6
  71. #define CAM_ISP_PACKET_META_CLOCK 7
  72. #define CAM_ISP_PACKET_META_CSID 8
  73. #define CAM_ISP_PACKET_META_DUAL_CONFIG 9
  74. #define CAM_ISP_PACKET_META_GENERIC_BLOB_LEFT 10
  75. #define CAM_ISP_PACKET_META_GENERIC_BLOB_RIGHT 11
  76. #define CAM_ISP_PACKET_META_GENERIC_BLOB_COMMON 12
  77. #define CAM_ISP_PACKET_META_REG_DUMP_PER_REQUEST 13
  78. #define CAM_ISP_PACKET_META_REG_DUMP_ON_FLUSH 14
  79. #define CAM_ISP_PACKET_META_REG_DUMP_ON_ERROR 15
  80. #define CAM_ISP_PACKET_META_CSID_LEFT 16
  81. #define CAM_ISP_PACKET_META_CSID_RIGHT 17
  82. #define CAM_ISP_PACKET_META_CSID_COMMON 18
  83. /* SFE packet meta_data type for command buffer */
  84. #define CAM_ISP_SFE_PACKET_META_LEFT 0x15
  85. #define CAM_ISP_SFE_PACKET_META_RIGHT 0x16
  86. #define CAM_ISP_SFE_PACKET_META_COMMON 0x17
  87. #define CAM_ISP_SFE_PACKET_META_DUAL_CONFIG 0x18
  88. /* DSP mode */
  89. #define CAM_ISP_DSP_MODE_NONE 0
  90. #define CAM_ISP_DSP_MODE_ONE_WAY 1
  91. #define CAM_ISP_DSP_MODE_ROUND 2
  92. /* ISP Generic Cmd Buffer Blob types */
  93. #define CAM_ISP_GENERIC_BLOB_TYPE_HFR_CONFIG 0
  94. #define CAM_ISP_GENERIC_BLOB_TYPE_CLOCK_CONFIG 1
  95. #define CAM_ISP_GENERIC_BLOB_TYPE_BW_CONFIG 2
  96. #define CAM_ISP_GENERIC_BLOB_TYPE_UBWC_CONFIG 3
  97. #define CAM_ISP_GENERIC_BLOB_TYPE_CSID_CLOCK_CONFIG 4
  98. #define CAM_ISP_GENERIC_BLOB_TYPE_FE_CONFIG 5
  99. #define CAM_ISP_GENERIC_BLOB_TYPE_UBWC_CONFIG_V2 6
  100. #define CAM_ISP_GENERIC_BLOB_TYPE_IFE_CORE_CONFIG 7
  101. #define CAM_ISP_GENERIC_BLOB_TYPE_VFE_OUT_CONFIG 8
  102. #define CAM_ISP_GENERIC_BLOB_TYPE_BW_CONFIG_V2 9
  103. #define CAM_ISP_GENERIC_BLOB_TYPE_DISCARD_INITIAL_FRAMES 10
  104. #define CAM_ISP_GENERIC_BLOB_TYPE_SENSOR_DIMENSION_CONFIG 11
  105. #define CAM_ISP_GENERIC_BLOB_TYPE_CSID_QCFA_CONFIG 12
  106. #define CAM_ISP_GENERIC_BLOB_TYPE_SENSOR_BLANKING_CONFIG 13
  107. #define CAM_ISP_GENERIC_BLOB_TYPE_TPG_CORE_CONFIG 14
  108. #define CAM_ISP_GENERIC_BLOB_TYPE_DYNAMIC_MODE_SWITCH 15
  109. #define CAM_ISP_GENERIC_BLOB_TYPE_BW_LIMITER_CFG 16
  110. #define CAM_ISP_GENERIC_BLOB_TYPE_FPS_CONFIG 17
  111. #define CAM_ISP_GENERIC_BLOB_TYPE_INIT_CONFIG 18
  112. #define CAM_ISP_GENERIC_BLOB_TYPE_SFE_CLOCK_CONFIG 21
  113. #define CAM_ISP_GENERIC_BLOB_TYPE_SFE_CORE_CONFIG 22
  114. #define CAM_ISP_GENERIC_BLOB_TYPE_SFE_OUT_CONFIG 23
  115. #define CAM_ISP_GENERIC_BLOB_TYPE_SFE_HFR_CONFIG 24
  116. #define CAM_ISP_GENERIC_BLOB_TYPE_SFE_FE_CONFIG 25
  117. #define CAM_ISP_GENERIC_BLOB_TYPE_SFE_SCRATCH_BUF_CFG 26
  118. #define CAM_ISP_GENERIC_BLOB_TYPE_SFE_EXP_ORDER_CFG 27
  119. #define CAM_ISP_VC_DT_CFG 4
  120. #define CAM_ISP_IFE0_HW 0x1
  121. #define CAM_ISP_IFE1_HW 0x2
  122. #define CAM_ISP_IFE0_LITE_HW 0x4
  123. #define CAM_ISP_IFE1_LITE_HW 0x8
  124. #define CAM_ISP_IFE2_LITE_HW 0x10
  125. #define CAM_ISP_IFE3_LITE_HW 0x20
  126. #define CAM_ISP_IFE4_LITE_HW 0x40
  127. #define CAM_ISP_IFE2_HW 0x100
  128. #define CAM_ISP_SFE0_HW 0x1000
  129. #define CAM_ISP_SFE1_HW 0x2000
  130. #define CAM_ISP_PXL_PATH 0x1
  131. #define CAM_ISP_PPP_PATH 0x2
  132. #define CAM_ISP_LCR_PATH 0x4
  133. #define CAM_ISP_RDI0_PATH 0x8
  134. #define CAM_ISP_RDI1_PATH 0x10
  135. #define CAM_ISP_RDI2_PATH 0x20
  136. #define CAM_ISP_RDI3_PATH 0x40
  137. /* Per Path Usage Data */
  138. #define CAM_ISP_USAGE_INVALID 0
  139. #define CAM_ISP_USAGE_LEFT_PX 1
  140. #define CAM_ISP_USAGE_RIGHT_PX 2
  141. #define CAM_ISP_USAGE_RDI 3
  142. #define CAM_ISP_USAGE_SFE_LEFT 4
  143. #define CAM_ISP_USAGE_SFE_RIGHT 5
  144. #define CAM_ISP_USAGE_SFE_RDI 6
  145. /* Acquire with custom hw */
  146. #define CAM_ISP_ACQ_CUSTOM_NONE 0
  147. #define CAM_ISP_ACQ_CUSTOM_PRIMARY 1
  148. #define CAM_ISP_ACQ_CUSTOM_SECONDARY 2
  149. #define CAM_IFE_CSID_RDI_MAX 5
  150. /* Feature Flag indicators */
  151. #define CAM_ISP_PARAM_FETCH_SECURITY_MODE BIT(0)
  152. #define CAM_ISP_CAN_USE_LITE_MODE BIT(1)
  153. #define CAM_ISP_DYNAMIC_SENOR_SWITCH_EN BIT(2)
  154. #define CAM_ISP_SFE_BINNED_EPOCH_CFG_ENABLE BIT(3)
  155. #define CAM_ISP_EPD_SUPPORT BIT(4)
  156. #define CAM_ISP_SFE_FS_MODE_EN BIT(5)
  157. #define CAM_ISP_SFE_SHDR_MODE_EN BIT(6)
  158. #define CAM_ISP_AEB_MODE_EN BIT(7)
  159. /* ISP core cfg flag params */
  160. #define CAM_ISP_PARAM_CORE_CFG_HDR_MUX_SEL BIT(0)
  161. #define CAM_ISP_PARAM_CORE_CFG_PP_FORMAT BIT(16)
  162. /**
  163. * Decode format1 Support for multi VCDT use case.
  164. * Format type is packed in 8 bits. BIT(0-7) is
  165. * format and BIT(8-15) is format1 type in the format
  166. * variable
  167. */
  168. #define CAM_IFE_DECODE_FORMAT_MASK 0xFF
  169. #define CAM_IFE_DECODE_FORMAT_SHIFT_VAL 8
  170. /* Query devices */
  171. /**
  172. * struct cam_isp_dev_cap_info - A cap info for particular hw type
  173. *
  174. * @hw_type: Hardware type for the cap info
  175. * @num_hw: Number of HW of type @hw_type
  176. * @hw_version: Hardware version
  177. *
  178. */
  179. struct cam_isp_dev_cap_info {
  180. __u32 hw_type;
  181. __u32 num_hw;
  182. struct cam_hw_version hw_version;
  183. };
  184. /**
  185. * struct cam_isp_query_cap_cmd - ISP query device capability payload
  186. *
  187. * @device_iommu: returned iommu handles for device
  188. * @cdm_iommu: returned iommu handles for cdm
  189. * @num_dev: returned number of device capabilities
  190. * @reserved: reserved field for alignment
  191. * @dev_caps: returned device capability array
  192. *
  193. */
  194. struct cam_isp_query_cap_cmd {
  195. struct cam_iommu_handle device_iommu;
  196. struct cam_iommu_handle cdm_iommu;
  197. __s32 num_dev;
  198. __u32 reserved;
  199. struct cam_isp_dev_cap_info dev_caps[CAM_ISP_HW_MAX];
  200. };
  201. /* Acquire Device */
  202. /**
  203. * struct cam_isp_out_port_info - An output port resource info
  204. *
  205. * @res_type: output resource type defined in file
  206. * cam_isp_vfe.h or cam_isp_ife.h
  207. * @format: output format of the resource
  208. * @wdith: output width in pixels
  209. * @height: output height in lines
  210. * @comp_grp_id: composite group id for the resource.
  211. * @split_point: split point in pixels for the dual VFE.
  212. * @secure_mode: flag to tell if output should be run in secure
  213. * mode or not. See cam_defs.h for definition
  214. * @reserved: reserved field for alignment
  215. *
  216. */
  217. struct cam_isp_out_port_info {
  218. __u32 res_type;
  219. __u32 format;
  220. __u32 width;
  221. __u32 height;
  222. __u32 comp_grp_id;
  223. __u32 split_point;
  224. __u32 secure_mode;
  225. __u32 reserved;
  226. };
  227. /**
  228. * struct cam_isp_out_port_info_v2 - An output port resource info
  229. *
  230. * @res_type: output resource type defined in file
  231. * cam_isp_vfe.h or cam_isp_ife.h
  232. * @format: output format of the resource
  233. * @wdith: output width in pixels
  234. * @height: output height in lines
  235. * @comp_grp_id: composite group id for the resource.
  236. * @split_point: split point in pixels for the dual VFE.
  237. * @secure_mode: flag to tell if output should be run in secure
  238. * mode or not. See cam_defs.h for definition
  239. * @wm_mode: WM mode
  240. * @out_port_res1: Output reserved field
  241. * @out_port_res2: Output reserved field
  242. *
  243. */
  244. struct cam_isp_out_port_info_v2 {
  245. __u32 res_type;
  246. __u32 format;
  247. __u32 width;
  248. __u32 height;
  249. __u32 comp_grp_id;
  250. __u32 split_point;
  251. __u32 secure_mode;
  252. __u32 wm_mode;
  253. __u32 out_port_res1;
  254. __u32 out_port_res2;
  255. };
  256. /**
  257. * struct cam_isp_in_port_info - An input port resource info
  258. *
  259. * @res_type: input resource type define in file
  260. * cam_isp_vfe.h or cam_isp_ife.h
  261. * @lane_type: lane type: c-phy or d-phy.
  262. * @lane_num: active lane number
  263. * @lane_cfg: lane configurations: 4 bits per lane
  264. * @vc: input virtual channel number
  265. * @dt: input data type number
  266. * @format: input format
  267. * @test_pattern: test pattern for the testgen
  268. * @usage_type: whether dual vfe is required
  269. * @left_start: left input start offset in pixels
  270. * @left_stop: left input stop offset in pixels
  271. * @left_width: left input width in pixels
  272. * @right_start: right input start offset in pixels.
  273. * Only for Dual VFE
  274. * @right_stop: right input stop offset in pixels.
  275. * Only for Dual VFE
  276. * @right_width: right input width in pixels.
  277. * Only for dual VFE
  278. * @line_start: top of the line number
  279. * @line_stop: bottome of the line number
  280. * @height: input height in lines
  281. * @pixel_clk; sensor output clock
  282. * @batch_size: batch size for HFR mode
  283. * @dsp_mode: DSP stream mode (Defines as CAM_ISP_DSP_MODE_*)
  284. * @hbi_cnt: HBI count for the camif input
  285. * @reserved: Reserved field for alignment
  286. * @num_out_res: number of the output resource associated
  287. * @data: payload that contains the output resources
  288. *
  289. */
  290. struct cam_isp_in_port_info {
  291. __u32 res_type;
  292. __u32 lane_type;
  293. __u32 lane_num;
  294. __u32 lane_cfg;
  295. __u32 vc;
  296. __u32 dt;
  297. __u32 format;
  298. __u32 test_pattern;
  299. __u32 usage_type;
  300. __u32 left_start;
  301. __u32 left_stop;
  302. __u32 left_width;
  303. __u32 right_start;
  304. __u32 right_stop;
  305. __u32 right_width;
  306. __u32 line_start;
  307. __u32 line_stop;
  308. __u32 height;
  309. __u32 pixel_clk;
  310. __u32 batch_size;
  311. __u32 dsp_mode;
  312. __u32 hbi_cnt;
  313. __u32 reserved;
  314. __u32 num_out_res;
  315. struct cam_isp_out_port_info data[1];
  316. };
  317. /**
  318. * struct cam_isp_in_port_info_v2 - An input port resource info
  319. *
  320. * @res_type: input resource type define in file
  321. * cam_isp_vfe.h or cam_isp_ife.h
  322. * @lane_type: lane type: c-phy or d-phy.
  323. * @lane_num: active lane number
  324. * @lane_cfg: lane configurations: 4 bits per lane
  325. * @vc: input virtual channel number
  326. * @dt: input data type number
  327. * @num_valid_vc_dt: valid vc and dt in array
  328. * @format: input format
  329. * @test_pattern: test pattern for the testgen
  330. * @usage_type: whether dual vfe is required
  331. * @left_start: left input start offset in pixels
  332. * @left_stop: left input stop offset in pixels
  333. * @left_width: left input width in pixels
  334. * @right_start: right input start offset in pixels.
  335. * Only for Dual VFE
  336. * @right_stop: right input stop offset in pixels.
  337. * only for Dual VFE
  338. * @right_width: right input width in pixels.
  339. * only for dual VFE
  340. * @line_start: top of the line number
  341. * @line_stop: bottome of the line number
  342. * @height: input height in lines
  343. * @pixel_clk; sensor output clock
  344. * @batch_size: batch size for HFR mode
  345. * @dsp_mode: DSP stream mode (Defines as CAM_ISP_DSP_MODE_*)
  346. * @hbi_cnt: HBI count for the camif input
  347. * @cust_node: if any custom HW block is present before IFE
  348. * @num_out_res: number of the output resource associated
  349. * @bidirectional_bin: [0 : 15] - Set 1 for Horizontal binning
  350. * [16 : 31] - Set 1 for Vertical binning
  351. * @qcfa_bin: Quadra Binning info
  352. * @sfe_in_path_type: SFE input path type
  353. * 0:15 - refer to cam_isp_sfe.h for SFE paths
  354. * 16:31 - Corresponding IFE i/p path type
  355. * Example:((CAM_ISP_PXL_PATH << 16) |
  356. * CAM_ISP_SFE_INLINE_PIX)
  357. * This will acquire SFE inline IPP and IFE IPP
  358. * PPP is an exception CSID PPP -> IFE PPP
  359. * @feature_flag: See the macros defined under feature flag above
  360. * @ife_res_1: payload for future use.
  361. * @ife_res_2: payload for future use.
  362. * @data: payload that contains the output resources
  363. *
  364. */
  365. struct cam_isp_in_port_info_v2 {
  366. __u32 res_type;
  367. __u32 lane_type;
  368. __u32 lane_num;
  369. __u32 lane_cfg;
  370. __u32 vc[CAM_ISP_VC_DT_CFG];
  371. __u32 dt[CAM_ISP_VC_DT_CFG];
  372. __u32 num_valid_vc_dt;
  373. __u32 format;
  374. __u32 test_pattern;
  375. __u32 usage_type;
  376. __u32 left_start;
  377. __u32 left_stop;
  378. __u32 left_width;
  379. __u32 right_start;
  380. __u32 right_stop;
  381. __u32 right_width;
  382. __u32 line_start;
  383. __u32 line_stop;
  384. __u32 height;
  385. __u32 pixel_clk;
  386. __u32 batch_size;
  387. __u32 dsp_mode;
  388. __u32 hbi_cnt;
  389. __u32 cust_node;
  390. __u32 num_out_res;
  391. __u32 offline_mode;
  392. __u32 bidirectional_bin;
  393. __u32 qcfa_bin;
  394. __u32 sfe_in_path_type;
  395. __u32 feature_flag;
  396. __u32 ife_res_1;
  397. __u32 ife_res_2;
  398. struct cam_isp_out_port_info_v2 data[1];
  399. };
  400. /**
  401. * struct cam_isp_resource - A resource bundle
  402. *
  403. * @resoruce_id: resource id for the resource bundle
  404. * @length: length of the while resource blob
  405. * @handle_type: type of the resource handle
  406. * @reserved: reserved field for alignment
  407. * @res_hdl: resource handle that points to the
  408. * resource array;
  409. *
  410. */
  411. struct cam_isp_resource {
  412. __u32 resource_id;
  413. __u32 length;
  414. __u32 handle_type;
  415. __u32 reserved;
  416. __u64 res_hdl;
  417. };
  418. /**
  419. * struct cam_isp_port_hfr_config - HFR configuration for this port
  420. *
  421. * @resource_type: Resource type
  422. * @subsample_pattern: Subsample pattern. Used in HFR mode. It
  423. * should be consistent with batchSize and
  424. * CAMIF programming.
  425. * @subsample_period: Subsample period. Used in HFR mode. It
  426. * should be consistent with batchSize and
  427. * CAMIF programming.
  428. * @framedrop_pattern: Framedrop pattern
  429. * @framedrop_period: Framedrop period
  430. * @reserved: Reserved for alignment
  431. */
  432. struct cam_isp_port_hfr_config {
  433. __u32 resource_type;
  434. __u32 subsample_pattern;
  435. __u32 subsample_period;
  436. __u32 framedrop_pattern;
  437. __u32 framedrop_period;
  438. __u32 reserved;
  439. } __attribute__((packed));
  440. /**
  441. * struct cam_isp_resource_hfr_config - Resource HFR configuration
  442. *
  443. * @num_ports: Number of ports
  444. * @reserved: Reserved for alignment
  445. * @port_hfr_config: HFR configuration for each IO port
  446. */
  447. struct cam_isp_resource_hfr_config {
  448. __u32 num_ports;
  449. __u32 reserved;
  450. struct cam_isp_port_hfr_config port_hfr_config[1];
  451. } __attribute__((packed));
  452. /**
  453. * struct cam_isp_dual_split_params - dual isp spilt parameters
  454. *
  455. * @split_point: Split point information x, where (0 < x < width)
  456. * left ISP's input ends at x + righ padding and
  457. * Right ISP's input starts at x - left padding
  458. * @right_padding: Padding added past the split point for left
  459. * ISP's input
  460. * @left_padding: Padding added before split point for right
  461. * ISP's input
  462. * @reserved: Reserved filed for alignment
  463. *
  464. */
  465. struct cam_isp_dual_split_params {
  466. __u32 split_point;
  467. __u32 right_padding;
  468. __u32 left_padding;
  469. __u32 reserved;
  470. };
  471. /**
  472. * struct cam_isp_dual_stripe_config - stripe config per bus client
  473. *
  474. * @offset: Start horizontal offset relative to
  475. * output buffer
  476. * In UBWC mode, this value indicates the H_INIT
  477. * value in pixel
  478. * @width: Width of the stripe in bytes
  479. * @tileconfig Ubwc meta tile config. Contain the partial
  480. * tile info
  481. * @port_id: port id of ISP output
  482. *
  483. */
  484. struct cam_isp_dual_stripe_config {
  485. __u32 offset;
  486. __u32 width;
  487. __u32 tileconfig;
  488. __u32 port_id;
  489. };
  490. /**
  491. * struct cam_isp_dual_config - dual isp configuration
  492. *
  493. * @num_ports Number of isp output ports
  494. * @reserved Reserved field for alignment
  495. * @split_params: Inpput split parameters
  496. * @stripes: Stripe information
  497. *
  498. */
  499. struct cam_isp_dual_config {
  500. __u32 num_ports;
  501. __u32 reserved;
  502. struct cam_isp_dual_split_params split_params;
  503. struct cam_isp_dual_stripe_config stripes[1];
  504. } __attribute__((packed));
  505. /**
  506. * struct cam_isp_clock_config - Clock configuration
  507. *
  508. * @usage_type: Usage type (Single/Dual)
  509. * @num_rdi: Number of RDI votes
  510. * @left_pix_hz: Pixel Clock for Left ISP
  511. * @right_pix_hz: Pixel Clock for Right ISP, valid only if Dual
  512. * @rdi_hz: RDI Clock. ISP clock will be max of RDI and
  513. * PIX clocks. For a particular context which ISP
  514. * HW the RDI is allocated to is not known to UMD.
  515. * Hence pass the clock and let KMD decide.
  516. */
  517. struct cam_isp_clock_config {
  518. __u32 usage_type;
  519. __u32 num_rdi;
  520. __u64 left_pix_hz;
  521. __u64 right_pix_hz;
  522. __u64 rdi_hz[1];
  523. } __attribute__((packed));
  524. /**
  525. * struct cam_isp_csid_clock_config - CSID clock configuration
  526. *
  527. * @csid_clock CSID clock
  528. */
  529. struct cam_isp_csid_clock_config {
  530. __u64 csid_clock;
  531. } __attribute__((packed));
  532. /**
  533. * struct cam_isp_csid_qcfa_config - CSID qcfa binning support configuration
  534. *
  535. * @csid_binning CSID binning
  536. */
  537. struct cam_isp_csid_qcfa_config {
  538. __u32 csid_binning;
  539. } __attribute__((packed));
  540. /**
  541. * struct cam_isp_bw_vote - Bandwidth vote information
  542. *
  543. * @resource_id: Resource ID
  544. * @reserved: Reserved field for alignment
  545. * @cam_bw_bps: Bandwidth vote for CAMNOC
  546. * @ext_bw_bps: Bandwidth vote for path-to-DDR after CAMNOC
  547. */
  548. struct cam_isp_bw_vote {
  549. __u32 resource_id;
  550. __u32 reserved;
  551. __u64 cam_bw_bps;
  552. __u64 ext_bw_bps;
  553. } __attribute__((packed));
  554. /**
  555. * struct cam_isp_bw_config - Bandwidth configuration
  556. *
  557. * @usage_type: Usage type (Single/Dual)
  558. * @num_rdi: Number of RDI votes
  559. * @left_pix_vote: Bandwidth vote for left ISP
  560. * @right_pix_vote: Bandwidth vote for right ISP
  561. * @rdi_vote: RDI bandwidth requirements
  562. */
  563. struct cam_isp_bw_config {
  564. __u32 usage_type;
  565. __u32 num_rdi;
  566. struct cam_isp_bw_vote left_pix_vote;
  567. struct cam_isp_bw_vote right_pix_vote;
  568. struct cam_isp_bw_vote rdi_vote[1];
  569. } __attribute__((packed));
  570. /**
  571. * struct cam_isp_bw_config_v2 - Bandwidth configuration
  572. *
  573. * @usage_type: Usage type (Single/Dual)
  574. * @num_paths: Number of axi data paths
  575. * @axi_path Per path vote info
  576. */
  577. struct cam_isp_bw_config_v2 {
  578. __u32 usage_type;
  579. __u32 num_paths;
  580. struct cam_axi_per_path_bw_vote axi_path[1];
  581. } __attribute__((packed));
  582. /**
  583. * struct cam_fe_config - Fetch Engine configuration
  584. *
  585. * @version: fetch engine veriosn
  586. * @min_vbi: require min vbi
  587. * @fs_mode: indicates if fs mode enabled
  588. * @fs_line_sync_en: frame level sync or line level
  589. * sync for fetch engine
  590. * @hbi_count: hbi count
  591. * @fs_sync_enable: indicates if fetch engine working
  592. * wokring in sync with write engine
  593. * @go_cmd_sel: softwrae go_cmd or hw go_cmd
  594. * @client_enable: enable read engine
  595. * @source_addr: adrress of buffer to read from
  596. * @width: buffer width
  597. * @height: buffer height
  598. * @stride: buffer stride (here equal to width)
  599. * @format: format of image in buffer
  600. * @unpacker_cfg: unpacker config type
  601. * @latency_buf_size: latency buffer for read engine
  602. */
  603. struct cam_fe_config {
  604. __u64 version;
  605. __u32 min_vbi;
  606. __u32 fs_mode;
  607. __u32 fs_line_sync_en;
  608. __u32 hbi_count;
  609. __u32 fs_sync_enable;
  610. __u32 go_cmd_sel;
  611. __u32 client_enable;
  612. __u32 source_addr;
  613. __u32 width;
  614. __u32 height;
  615. __u32 stride;
  616. __u32 format;
  617. __u32 unpacker_cfg;
  618. __u32 latency_buf_size;
  619. } __attribute__((packed));
  620. /**
  621. * struct cam_isp_sensor_path_dimension
  622. *
  623. * @width expected width
  624. * @height expected height
  625. * @measure_enabled flag to indicate if pixel measurement is to be enabled
  626. */
  627. struct cam_isp_sensor_dimension {
  628. __u32 width;
  629. __u32 height;
  630. __u32 measure_enabled;
  631. } __attribute__((packed));
  632. /**
  633. * struct cam_isp_sensor_blanking_config
  634. *
  635. * @hbi HBI value
  636. * @vbi VBI value
  637. */
  638. struct cam_isp_sensor_blanking_config {
  639. __u32 hbi;
  640. __u32 vbi;
  641. } __attribute__((packed));
  642. /**
  643. * struct cam_isp_sensor_config - Sensor Dimension configuration
  644. *
  645. * @ppp_path: expected ppp path configuration
  646. * @ipp_path: expected ipp path configuration
  647. * @rdi_path: expected rdi path configuration
  648. * @hbi: HBI value
  649. * @vbi: VBI value
  650. */
  651. struct cam_isp_sensor_config {
  652. struct cam_isp_sensor_dimension ppp_path;
  653. struct cam_isp_sensor_dimension ipp_path;
  654. struct cam_isp_sensor_dimension rdi_path[CAM_IFE_CSID_RDI_MAX];
  655. __u32 hbi;
  656. __u32 vbi;
  657. } __attribute__((packed));
  658. /**
  659. * struct cam_isp_core_config - ISP core registers configuration
  660. *
  661. * @version: Version info
  662. * @vid_ds16_r2pd: Enables Y and C merging PD output for video DS16
  663. * @vid_ds4_r2pd: Enables Y and C merging PD output for video DS4
  664. * @disp_ds16_r2pd: Enables Y and C merging PD output for disp DS16
  665. * @disp_ds4_r2pd: Enables Y and C merging PD output for disp DS4
  666. * @dsp_streaming_tap_point: This selects source for DSP streaming interface
  667. * @ihist_src_sel: Selects input for IHIST module
  668. * @hdr_be_src_sel: Selects input for HDR BE module
  669. * @hdr_bhist_src_sel: Selects input for HDR BHIST module
  670. * @input_mux_sel_pdaf: Selects input for PDAF
  671. * @input_mux_sel_pp: Selects input for Pixel Pipe
  672. * @core_cfg_flag: Core config flag to set HDR mux/PP
  673. * input format type
  674. */
  675. struct cam_isp_core_config {
  676. __u32 version;
  677. __u32 vid_ds16_r2pd;
  678. __u32 vid_ds4_r2pd;
  679. __u32 disp_ds16_r2pd;
  680. __u32 disp_ds4_r2pd;
  681. __u32 dsp_streaming_tap_point;
  682. __u32 ihist_src_sel;
  683. __u32 hdr_be_src_sel;
  684. __u32 hdr_bhist_src_sel;
  685. __u32 input_mux_sel_pdaf;
  686. __u32 input_mux_sel_pp;
  687. __u32 core_cfg_flag;
  688. } __attribute__((packed));
  689. /**
  690. * struct cam_isp_sfe_core_config - SFE core registers configuration
  691. *
  692. * @version : Version info
  693. * @mode_sel : Selects core for sHDR/non-sHDR mode
  694. * @ops_mode_cfg : Selects core if is inline/offline mode
  695. * @fs_mode_cfg : Selects output in fast shutter mode
  696. * @sfe_params : SFE params for future use
  697. */
  698. struct cam_isp_sfe_core_config {
  699. __u32 version;
  700. __u32 mode_sel;
  701. __u32 ops_mode_cfg;
  702. __u32 fs_mode_cfg;
  703. __u32 sfe_params[6];
  704. } __attribute__((packed));
  705. /**
  706. * struct cam_isp_sfe_scratch_buf_info - Scratch buf info
  707. *
  708. * @mem_handle : Scratch buffer handle
  709. * @offset : Offset to the buffer
  710. * @width : Width in pixels
  711. * @height : Height in pixels
  712. * @stride : Stride in pixels
  713. * @slice_height : Slice height in lines
  714. * @resource_type : rsrc type
  715. * @scratch_buf_params : for future use
  716. */
  717. struct cam_isp_sfe_scratch_buf_info {
  718. __s32 mem_handle;
  719. __u32 offset;
  720. __u32 width;
  721. __u32 height;
  722. __u32 stride;
  723. __u32 slice_height;
  724. __u32 resource_type;
  725. __u32 scratch_buf_params[5];
  726. };
  727. /**
  728. * struct cam_isp_sfe_init_scratch_buf_config - SFE init buffer cfg
  729. * Provides scratch buffer info for SFE ports
  730. * as part of INIT packet
  731. *
  732. * @num_ports : Number of ports
  733. * @reserved : reserved
  734. * @port_scratch_cfg : scratch buffer info
  735. */
  736. struct cam_isp_sfe_init_scratch_buf_config {
  737. __u32 num_ports;
  738. __u32 reserved;
  739. struct cam_isp_sfe_scratch_buf_info port_scratch_cfg[1];
  740. };
  741. /**
  742. * struct cam_isp_tpg_core_config - TPG core registers configuration
  743. *
  744. * @version : Version info
  745. * @vc_dt_pattern_id : TPG pattern - SparsePD, sHDR etc.
  746. * @qcfa_en : Selects qcfa in color bar
  747. * @pix_pattern : Pix pattern color bar cfg
  748. * @hbi_clk_cnt : Number of HBI # of cycles
  749. * @vbi_clk_cnt : Number of VBI # of cycles
  750. * @throttle_pattern : Defines bubble pattern in throttler
  751. * @tpg_params : TPG params for future use
  752. */
  753. struct cam_isp_tpg_core_config {
  754. __u32 version;
  755. __u32 vc_dt_pattern_id;
  756. __u32 qcfa_en;
  757. __u32 pix_pattern;
  758. __u32 hbi_clk_cnt;
  759. __u32 vbi_clk_cnt;
  760. __u32 throttle_pattern;
  761. __u32 tpg_params[3];
  762. } __attribute__((packed));
  763. /**
  764. * struct cam_isp_acquire_hw_info - ISP acquire HW params
  765. *
  766. * @common_info_version : Version of common info struct used
  767. * @common_info_size : Size of common info struct used
  768. * @common_info_offset : Offset of common info from start of data
  769. * @num_inputs : Number of inputs
  770. * @input_info_version : Version of input info struct used
  771. * @input_info_size : Size of input info struct used
  772. * @input_info_offset : Offset of input info from start of data
  773. * @data : Start of data region
  774. */
  775. struct cam_isp_acquire_hw_info {
  776. __u16 common_info_version;
  777. __u16 common_info_size;
  778. __u32 common_info_offset;
  779. __u32 num_inputs;
  780. __u32 input_info_version;
  781. __u32 input_info_size;
  782. __u32 input_info_offset;
  783. __u64 data;
  784. };
  785. /**
  786. * struct cam_fps_config - FPS info per request
  787. *
  788. * @fps : Fps value
  789. * @reserved: : Reserved field for alignment
  790. *
  791. */
  792. struct cam_fps_config {
  793. __u32 fps;
  794. __u32 reserved_params[3];
  795. } __attribute__((packed));
  796. /**
  797. * struct cam_isp_vfe_wm_config - VFE write master config per port
  798. *
  799. * @port_type : Unique ID of output port
  800. * @wm_mode : Write master mode
  801. * 0x0 - Line based mode
  802. * 0x1 - Frame based mode
  803. * 0x2 - Index based mode, valid for BAF only
  804. * @h_init : Horizontal starting coordinate in pixels. Must be a
  805. * multiple of 3 for TP10 format
  806. * @height : Height in pixels
  807. * @width : Width in pixels
  808. * @virtual_frame_en : Enabling virtual frame will prevent actual request from
  809. * being sent to NOC
  810. * @stride : Write master stride
  811. * @offset : Write master offset
  812. * @addr_reuse_en : Enabling addr-reuse will write output to the same addr
  813. * after the last addr that was read from FIFO.
  814. * @packer_format : Update packer format for Write master config
  815. * @reserved_3 : Reserved field for Write master config
  816. * @reserved_4 : Reserved field for Write master config
  817. */
  818. struct cam_isp_vfe_wm_config {
  819. __u32 port_type;
  820. __u32 wm_mode;
  821. __u32 h_init;
  822. __u32 height;
  823. __u32 width;
  824. __u32 virtual_frame_en;
  825. __u32 stride;
  826. __u32 offset;
  827. __u32 addr_reuse_en;
  828. __u32 packer_format;
  829. __u32 reserved_3;
  830. __u32 reserved_4;
  831. };
  832. /**
  833. * struct cam_isp_vfe_out_config - VFE write master config
  834. *
  835. * @num_ports : Number of ports
  836. * @reserved : Reserved field
  837. * @wm_config : VFE out config
  838. */
  839. struct cam_isp_vfe_out_config {
  840. __u32 num_ports;
  841. __u32 reserved;
  842. struct cam_isp_vfe_wm_config wm_config[1];
  843. };
  844. /**
  845. * struct cam_isp_mode_switch_info - Dynamic mode switch info
  846. *
  847. * @mup : MUP for incoming VC of next frame
  848. * @num_expoures : Number of exposures
  849. * @reserved : Reserved
  850. */
  851. struct cam_isp_mode_switch_info{
  852. __u32 mup;
  853. __u32 num_expoures;
  854. __u32 reserved;
  855. } __attribute__((packed));
  856. /**
  857. * struct cam_isp_sfe_wm_exp_order_config - SFE write master
  858. * exposure order config
  859. *
  860. * This config will reflect for corresponding RM as well
  861. *
  862. * @res_type : output resource type defined in file
  863. * cam_isp_sfe.h or cam_isp_ife.h
  864. * @additional_params : Params for future use
  865. */
  866. struct cam_isp_sfe_wm_exp_order_config {
  867. __u32 res_type;
  868. __u32 additional_params[5];
  869. };
  870. /**
  871. * struct cam_isp_sfe_exp_config - SFE out exposure config
  872. *
  873. * Exp order is determined by it's index in wm_config[]
  874. * The last resource in the array will be considered as
  875. * last [shortest] exposure.
  876. *
  877. * @num_ports : Number of ports
  878. * @reserved : Reserved field
  879. * @wm_config : WM exp config
  880. */
  881. struct cam_isp_sfe_exp_config {
  882. __u32 num_ports;
  883. __u32 reserved;
  884. struct cam_isp_sfe_wm_exp_order_config wm_config[1];
  885. };
  886. /**
  887. * struct cam_isp_discard_initial_frames - Discard init frames
  888. *
  889. * Some sensors require discarding the initial frames
  890. * after the sensor is streamed on. The discard would be
  891. * applied on all paths [IPP/PPP/RDIx] for the given
  892. * pipeline.
  893. *
  894. * @num_frames : Number of frames to be discarded
  895. * @discard_params : Params for future use
  896. */
  897. struct cam_isp_discard_initial_frames {
  898. __u32 num_frames;
  899. __u32 discard_params[5];
  900. } __attribute__((packed));
  901. /**
  902. * struct cam_isp_wm_bw_limiter_config - ISP write master
  903. * BW limter config
  904. *
  905. *
  906. * @res_type : output resource type defined in file
  907. * cam_isp_sfe.h or cam_isp_ife.h
  908. * @enable_limiter : 0 for disable else enabled
  909. * @counter_limit : Max counter value
  910. * @additional_params : Params for future use
  911. */
  912. struct cam_isp_wm_bw_limiter_config {
  913. __u32 res_type;
  914. __u32 enable_limiter;
  915. __u32 counter_limit[CAM_PACKET_MAX_PLANES];
  916. __u32 additional_params[5];
  917. };
  918. /**
  919. * struct cam_isp_out_rsrc_bw_limiter_config - ISP out rsrc BW limiter config
  920. *
  921. * Configure BW limiter for ISP WMs
  922. *
  923. * @num_ports : Number of ports
  924. * @reserved : Reserved field
  925. * @bw_limit_config : WM BW limiter config
  926. */
  927. struct cam_isp_out_rsrc_bw_limiter_config {
  928. __u32 num_ports;
  929. __u32 reserved;
  930. struct cam_isp_wm_bw_limiter_config bw_limiter_config[1];
  931. };
  932. /**
  933. * struct cam_isp_init_config - Init config for IFE/CSID/SFE
  934. *
  935. * Any configurations to be consumed by KMD
  936. * prior to stream on - one time configuration per stream.
  937. * This blob is expected only in INIT packet. Per frame
  938. * dynamic settings will not be part of this blob.
  939. *
  940. * @epoch_factor : % factor for epoch config with respect to frame height
  941. * If factor is 60, epoch will be configured to 3/5th of
  942. * the frame height. If this field is 0,
  943. * KMD will configure default 50% of the height
  944. * @additional_params : Reserved fields for future use
  945. */
  946. struct cam_isp_init_config {
  947. struct cam_isp_epoch_height_config {
  948. __u32 epoch_factor;
  949. } epoch_cfg;
  950. __u32 additional_params[19];
  951. };
  952. #define CAM_ISP_ACQUIRE_COMMON_VER0 0x1000
  953. #define CAM_ISP_ACQUIRE_COMMON_SIZE_VER0 0x0
  954. #define CAM_ISP_ACQUIRE_INPUT_VER0 0x2000
  955. #define CAM_ISP_ACQUIRE_INPUT_SIZE_VER0 sizeof(struct cam_isp_in_port_info)
  956. #define CAM_ISP_ACQUIRE_OUT_VER0 0x3000
  957. #define CAM_ISP_ACQUIRE_OUT_SIZE_VER0 sizeof(struct cam_isp_out_port_info)
  958. #endif /* __UAPI_CAM_ISP_H__ */