audioreach.c 32 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. // Copyright (c) 2020, Linaro Limited
  3. #include <linux/kernel.h>
  4. #include <linux/slab.h>
  5. #include <linux/soc/qcom/apr.h>
  6. #include <sound/soc.h>
  7. #include <sound/soc-dai.h>
  8. #include <sound/pcm.h>
  9. #include <sound/pcm_params.h>
  10. #include <dt-bindings/soc/qcom,gpr.h>
  11. #include "q6apm.h"
  12. #include "audioreach.h"
  13. /* SubGraph Config */
  14. struct apm_sub_graph_data {
  15. struct apm_sub_graph_cfg sub_graph_cfg;
  16. struct apm_prop_data perf_data;
  17. struct apm_sg_prop_id_perf_mode perf;
  18. struct apm_prop_data dir_data;
  19. struct apm_sg_prop_id_direction dir;
  20. struct apm_prop_data sid_data;
  21. struct apm_sg_prop_id_scenario_id sid;
  22. } __packed;
  23. #define APM_SUB_GRAPH_CFG_NPROP 3
  24. struct apm_sub_graph_params {
  25. struct apm_module_param_data param_data;
  26. uint32_t num_sub_graphs;
  27. struct apm_sub_graph_data sg_cfg[];
  28. } __packed;
  29. #define APM_SUB_GRAPH_PSIZE(p, n) ALIGN(struct_size(p, sg_cfg, n), 8)
  30. /* container config */
  31. struct apm_container_obj {
  32. struct apm_container_cfg container_cfg;
  33. /* Capability ID list */
  34. struct apm_prop_data cap_data;
  35. uint32_t num_capability_id;
  36. uint32_t capability_id;
  37. /* Container graph Position */
  38. struct apm_prop_data pos_data;
  39. struct apm_cont_prop_id_graph_pos pos;
  40. /* Container Stack size */
  41. struct apm_prop_data stack_data;
  42. struct apm_cont_prop_id_stack_size stack;
  43. /* Container proc domain id */
  44. struct apm_prop_data domain_data;
  45. struct apm_cont_prop_id_domain domain;
  46. } __packed;
  47. struct apm_container_params {
  48. struct apm_module_param_data param_data;
  49. uint32_t num_containers;
  50. struct apm_container_obj cont_obj[];
  51. } __packed;
  52. #define APM_CONTAINER_PSIZE(p, n) ALIGN(struct_size(p, cont_obj, n), 8)
  53. /* Module List config */
  54. struct apm_mod_list_obj {
  55. /* Modules list cfg */
  56. uint32_t sub_graph_id;
  57. uint32_t container_id;
  58. uint32_t num_modules;
  59. struct apm_module_obj mod_cfg[];
  60. } __packed;
  61. #define APM_MOD_LIST_OBJ_PSIZE(p, n) struct_size(p, mod_cfg, n)
  62. struct apm_module_list_params {
  63. struct apm_module_param_data param_data;
  64. uint32_t num_modules_list;
  65. /* Module list config array */
  66. struct apm_mod_list_obj mod_list_obj[];
  67. } __packed;
  68. /* Module Properties */
  69. struct apm_mod_prop_obj {
  70. u32 instance_id;
  71. u32 num_props;
  72. struct apm_prop_data prop_data_1;
  73. struct apm_module_prop_id_port_info prop_id_port;
  74. } __packed;
  75. struct apm_prop_list_params {
  76. struct apm_module_param_data param_data;
  77. u32 num_modules_prop_cfg;
  78. struct apm_mod_prop_obj mod_prop_obj[];
  79. } __packed;
  80. #define APM_MOD_PROP_PSIZE(p, n) ALIGN(struct_size(p, mod_prop_obj, n), 8)
  81. /* Module Connections */
  82. struct apm_mod_conn_list_params {
  83. struct apm_module_param_data param_data;
  84. u32 num_connections;
  85. struct apm_module_conn_obj conn_obj[];
  86. } __packed;
  87. #define APM_MOD_CONN_PSIZE(p, n) ALIGN(struct_size(p, conn_obj, n), 8)
  88. struct apm_graph_open_params {
  89. struct apm_cmd_header *cmd_header;
  90. struct apm_sub_graph_params *sg_data;
  91. struct apm_container_params *cont_data;
  92. struct apm_module_list_params *mod_list_data;
  93. struct apm_prop_list_params *mod_prop_data;
  94. struct apm_mod_conn_list_params *mod_conn_list_data;
  95. } __packed;
  96. struct apm_pcm_module_media_fmt_cmd {
  97. struct apm_module_param_data param_data;
  98. struct param_id_pcm_output_format_cfg header;
  99. struct payload_pcm_output_format_cfg media_cfg;
  100. } __packed;
  101. struct apm_rd_shmem_module_config_cmd {
  102. struct apm_module_param_data param_data;
  103. struct param_id_rd_sh_mem_cfg cfg;
  104. } __packed;
  105. struct apm_sh_module_media_fmt_cmd {
  106. struct media_format header;
  107. struct payload_media_fmt_pcm cfg;
  108. } __packed;
  109. #define APM_SHMEM_FMT_CFG_PSIZE(ch) ALIGN( \
  110. sizeof(struct apm_sh_module_media_fmt_cmd) + \
  111. ch * sizeof(uint8_t), 8)
  112. /* num of channels as argument */
  113. #define APM_PCM_MODULE_FMT_CMD_PSIZE(ch) ALIGN( \
  114. sizeof(struct apm_pcm_module_media_fmt_cmd) + \
  115. ch * sizeof(uint8_t), 8)
  116. #define APM_PCM_OUT_FMT_CFG_PSIZE(p, n) ALIGN(struct_size(p, channel_mapping, n), 4)
  117. struct apm_i2s_module_intf_cfg {
  118. struct apm_module_param_data param_data;
  119. struct param_id_i2s_intf_cfg cfg;
  120. } __packed;
  121. #define APM_I2S_INTF_CFG_PSIZE ALIGN(sizeof(struct apm_i2s_module_intf_cfg), 8)
  122. struct apm_module_hw_ep_mf_cfg {
  123. struct apm_module_param_data param_data;
  124. struct param_id_hw_ep_mf mf;
  125. } __packed;
  126. #define APM_HW_EP_CFG_PSIZE ALIGN(sizeof(struct apm_module_hw_ep_mf_cfg), 8)
  127. struct apm_module_frame_size_factor_cfg {
  128. struct apm_module_param_data param_data;
  129. uint32_t frame_size_factor;
  130. } __packed;
  131. #define APM_FS_CFG_PSIZE ALIGN(sizeof(struct apm_module_frame_size_factor_cfg), 8)
  132. struct apm_module_hw_ep_power_mode_cfg {
  133. struct apm_module_param_data param_data;
  134. struct param_id_hw_ep_power_mode_cfg power_mode;
  135. } __packed;
  136. #define APM_HW_EP_PMODE_CFG_PSIZE ALIGN(sizeof(struct apm_module_hw_ep_power_mode_cfg), 8)
  137. struct apm_module_hw_ep_dma_data_align_cfg {
  138. struct apm_module_param_data param_data;
  139. struct param_id_hw_ep_dma_data_align align;
  140. } __packed;
  141. #define APM_HW_EP_DALIGN_CFG_PSIZE ALIGN(sizeof(struct apm_module_hw_ep_dma_data_align_cfg), 8)
  142. struct apm_gain_module_cfg {
  143. struct apm_module_param_data param_data;
  144. struct param_id_gain_cfg gain_cfg;
  145. } __packed;
  146. #define APM_GAIN_CFG_PSIZE ALIGN(sizeof(struct apm_gain_module_cfg), 8)
  147. struct apm_codec_dma_module_intf_cfg {
  148. struct apm_module_param_data param_data;
  149. struct param_id_codec_dma_intf_cfg cfg;
  150. } __packed;
  151. #define APM_CDMA_INTF_CFG_PSIZE ALIGN(sizeof(struct apm_codec_dma_module_intf_cfg), 8)
  152. static void *__audioreach_alloc_pkt(int payload_size, uint32_t opcode, uint32_t token,
  153. uint32_t src_port, uint32_t dest_port, bool has_cmd_hdr)
  154. {
  155. struct gpr_pkt *pkt;
  156. void *p;
  157. int pkt_size = GPR_HDR_SIZE + payload_size;
  158. if (has_cmd_hdr)
  159. pkt_size += APM_CMD_HDR_SIZE;
  160. p = kzalloc(pkt_size, GFP_KERNEL);
  161. if (!p)
  162. return ERR_PTR(-ENOMEM);
  163. pkt = p;
  164. pkt->hdr.version = GPR_PKT_VER;
  165. pkt->hdr.hdr_size = GPR_PKT_HEADER_WORD_SIZE;
  166. pkt->hdr.pkt_size = pkt_size;
  167. pkt->hdr.dest_port = dest_port;
  168. pkt->hdr.src_port = src_port;
  169. pkt->hdr.dest_domain = GPR_DOMAIN_ID_ADSP;
  170. pkt->hdr.src_domain = GPR_DOMAIN_ID_APPS;
  171. pkt->hdr.token = token;
  172. pkt->hdr.opcode = opcode;
  173. if (has_cmd_hdr) {
  174. struct apm_cmd_header *cmd_header;
  175. p = p + GPR_HDR_SIZE;
  176. cmd_header = p;
  177. cmd_header->payload_size = payload_size;
  178. }
  179. return pkt;
  180. }
  181. void *audioreach_alloc_pkt(int payload_size, uint32_t opcode, uint32_t token,
  182. uint32_t src_port, uint32_t dest_port)
  183. {
  184. return __audioreach_alloc_pkt(payload_size, opcode, token, src_port, dest_port, false);
  185. }
  186. EXPORT_SYMBOL_GPL(audioreach_alloc_pkt);
  187. void *audioreach_alloc_apm_pkt(int pkt_size, uint32_t opcode, uint32_t token, uint32_t src_port)
  188. {
  189. return __audioreach_alloc_pkt(pkt_size, opcode, token, src_port, APM_MODULE_INSTANCE_ID,
  190. false);
  191. }
  192. EXPORT_SYMBOL_GPL(audioreach_alloc_apm_pkt);
  193. void *audioreach_alloc_cmd_pkt(int payload_size, uint32_t opcode, uint32_t token,
  194. uint32_t src_port, uint32_t dest_port)
  195. {
  196. return __audioreach_alloc_pkt(payload_size, opcode, token, src_port, dest_port, true);
  197. }
  198. EXPORT_SYMBOL_GPL(audioreach_alloc_cmd_pkt);
  199. void *audioreach_alloc_apm_cmd_pkt(int pkt_size, uint32_t opcode, uint32_t token)
  200. {
  201. return __audioreach_alloc_pkt(pkt_size, opcode, token, GPR_APM_MODULE_IID,
  202. APM_MODULE_INSTANCE_ID, true);
  203. }
  204. EXPORT_SYMBOL_GPL(audioreach_alloc_apm_cmd_pkt);
  205. static void apm_populate_container_config(struct apm_container_obj *cfg,
  206. struct audioreach_container *cont)
  207. {
  208. /* Container Config */
  209. cfg->container_cfg.container_id = cont->container_id;
  210. cfg->container_cfg.num_prop = 4;
  211. /* Capability list */
  212. cfg->cap_data.prop_id = APM_CONTAINER_PROP_ID_CAPABILITY_LIST;
  213. cfg->cap_data.prop_size = APM_CONTAINER_PROP_ID_CAPABILITY_SIZE;
  214. cfg->num_capability_id = 1;
  215. cfg->capability_id = cont->capability_id;
  216. /* Graph Position */
  217. cfg->pos_data.prop_id = APM_CONTAINER_PROP_ID_GRAPH_POS;
  218. cfg->pos_data.prop_size = sizeof(struct apm_cont_prop_id_graph_pos);
  219. cfg->pos.graph_pos = cont->graph_pos;
  220. /* Stack size */
  221. cfg->stack_data.prop_id = APM_CONTAINER_PROP_ID_STACK_SIZE;
  222. cfg->stack_data.prop_size = sizeof(struct apm_cont_prop_id_stack_size);
  223. cfg->stack.stack_size = cont->stack_size;
  224. /* Proc domain */
  225. cfg->domain_data.prop_id = APM_CONTAINER_PROP_ID_PROC_DOMAIN;
  226. cfg->domain_data.prop_size = sizeof(struct apm_cont_prop_id_domain);
  227. cfg->domain.proc_domain = cont->proc_domain;
  228. }
  229. static void apm_populate_sub_graph_config(struct apm_sub_graph_data *cfg,
  230. struct audioreach_sub_graph *sg)
  231. {
  232. cfg->sub_graph_cfg.sub_graph_id = sg->sub_graph_id;
  233. cfg->sub_graph_cfg.num_sub_graph_prop = APM_SUB_GRAPH_CFG_NPROP;
  234. /* Perf Mode */
  235. cfg->perf_data.prop_id = APM_SUB_GRAPH_PROP_ID_PERF_MODE;
  236. cfg->perf_data.prop_size = APM_SG_PROP_ID_PERF_MODE_SIZE;
  237. cfg->perf.perf_mode = sg->perf_mode;
  238. /* Direction */
  239. cfg->dir_data.prop_id = APM_SUB_GRAPH_PROP_ID_DIRECTION;
  240. cfg->dir_data.prop_size = APM_SG_PROP_ID_DIR_SIZE;
  241. cfg->dir.direction = sg->direction;
  242. /* Scenario ID */
  243. cfg->sid_data.prop_id = APM_SUB_GRAPH_PROP_ID_SCENARIO_ID;
  244. cfg->sid_data.prop_size = APM_SG_PROP_ID_SID_SIZE;
  245. cfg->sid.scenario_id = sg->scenario_id;
  246. }
  247. static void apm_populate_connection_obj(struct apm_module_conn_obj *obj,
  248. struct audioreach_module *module)
  249. {
  250. obj->src_mod_inst_id = module->src_mod_inst_id;
  251. obj->src_mod_op_port_id = module->src_mod_op_port_id;
  252. obj->dst_mod_inst_id = module->instance_id;
  253. obj->dst_mod_ip_port_id = module->in_port;
  254. }
  255. static void apm_populate_module_prop_obj(struct apm_mod_prop_obj *obj,
  256. struct audioreach_module *module)
  257. {
  258. obj->instance_id = module->instance_id;
  259. obj->num_props = 1;
  260. obj->prop_data_1.prop_id = APM_MODULE_PROP_ID_PORT_INFO;
  261. obj->prop_data_1.prop_size = APM_MODULE_PROP_ID_PORT_INFO_SZ;
  262. obj->prop_id_port.max_ip_port = module->max_ip_port;
  263. obj->prop_id_port.max_op_port = module->max_op_port;
  264. }
  265. struct audioreach_module *audioreach_get_container_last_module(
  266. struct audioreach_container *container)
  267. {
  268. struct audioreach_module *module;
  269. list_for_each_entry(module, &container->modules_list, node) {
  270. if (module->dst_mod_inst_id == 0)
  271. return module;
  272. }
  273. return NULL;
  274. }
  275. EXPORT_SYMBOL_GPL(audioreach_get_container_last_module);
  276. static bool is_module_in_container(struct audioreach_container *container, int module_iid)
  277. {
  278. struct audioreach_module *module;
  279. list_for_each_entry(module, &container->modules_list, node) {
  280. if (module->instance_id == module_iid)
  281. return true;
  282. }
  283. return false;
  284. }
  285. struct audioreach_module *audioreach_get_container_first_module(
  286. struct audioreach_container *container)
  287. {
  288. struct audioreach_module *module;
  289. /* get the first module from both connected or un-connected containers */
  290. list_for_each_entry(module, &container->modules_list, node) {
  291. if (module->src_mod_inst_id == 0 ||
  292. !is_module_in_container(container, module->src_mod_inst_id))
  293. return module;
  294. }
  295. return NULL;
  296. }
  297. EXPORT_SYMBOL_GPL(audioreach_get_container_first_module);
  298. struct audioreach_module *audioreach_get_container_next_module(
  299. struct audioreach_container *container,
  300. struct audioreach_module *module)
  301. {
  302. int nmodule_iid = module->dst_mod_inst_id;
  303. struct audioreach_module *nmodule;
  304. list_for_each_entry(nmodule, &container->modules_list, node) {
  305. if (nmodule->instance_id == nmodule_iid)
  306. return nmodule;
  307. }
  308. return NULL;
  309. }
  310. EXPORT_SYMBOL_GPL(audioreach_get_container_next_module);
  311. static void apm_populate_module_list_obj(struct apm_mod_list_obj *obj,
  312. struct audioreach_container *container,
  313. int sub_graph_id)
  314. {
  315. struct audioreach_module *module;
  316. int i;
  317. obj->sub_graph_id = sub_graph_id;
  318. obj->container_id = container->container_id;
  319. obj->num_modules = container->num_modules;
  320. i = 0;
  321. list_for_each_container_module(module, container) {
  322. obj->mod_cfg[i].module_id = module->module_id;
  323. obj->mod_cfg[i].instance_id = module->instance_id;
  324. i++;
  325. }
  326. }
  327. static void audioreach_populate_graph(struct apm_graph_open_params *open,
  328. struct list_head *sg_list,
  329. int num_sub_graphs)
  330. {
  331. struct apm_mod_conn_list_params *mc_data = open->mod_conn_list_data;
  332. struct apm_module_list_params *ml_data = open->mod_list_data;
  333. struct apm_prop_list_params *mp_data = open->mod_prop_data;
  334. struct apm_container_params *c_data = open->cont_data;
  335. struct apm_sub_graph_params *sg_data = open->sg_data;
  336. int ncontainer = 0, nmodule = 0, nconn = 0;
  337. struct apm_mod_prop_obj *module_prop_obj;
  338. struct audioreach_container *container;
  339. struct apm_module_conn_obj *conn_obj;
  340. struct audioreach_module *module;
  341. struct audioreach_sub_graph *sg;
  342. struct apm_container_obj *cobj;
  343. struct apm_mod_list_obj *mlobj;
  344. int i = 0;
  345. mlobj = &ml_data->mod_list_obj[0];
  346. list_for_each_entry(sg, sg_list, node) {
  347. struct apm_sub_graph_data *sg_cfg = &sg_data->sg_cfg[i++];
  348. apm_populate_sub_graph_config(sg_cfg, sg);
  349. list_for_each_entry(container, &sg->container_list, node) {
  350. cobj = &c_data->cont_obj[ncontainer];
  351. apm_populate_container_config(cobj, container);
  352. apm_populate_module_list_obj(mlobj, container, sg->sub_graph_id);
  353. list_for_each_container_module(module, container) {
  354. uint32_t src_mod_inst_id;
  355. src_mod_inst_id = module->src_mod_inst_id;
  356. module_prop_obj = &mp_data->mod_prop_obj[nmodule];
  357. apm_populate_module_prop_obj(module_prop_obj, module);
  358. if (src_mod_inst_id) {
  359. conn_obj = &mc_data->conn_obj[nconn];
  360. apm_populate_connection_obj(conn_obj, module);
  361. nconn++;
  362. }
  363. nmodule++;
  364. }
  365. mlobj = (void *) mlobj + APM_MOD_LIST_OBJ_PSIZE(mlobj, container->num_modules);
  366. ncontainer++;
  367. }
  368. }
  369. }
  370. void *audioreach_alloc_graph_pkt(struct q6apm *apm, struct list_head *sg_list, int graph_id)
  371. {
  372. int payload_size, sg_sz, cont_sz, ml_sz, mp_sz, mc_sz;
  373. struct apm_module_param_data *param_data;
  374. struct apm_container_params *cont_params;
  375. struct audioreach_container *container;
  376. struct apm_sub_graph_params *sg_params;
  377. struct apm_mod_conn_list_params *mcon;
  378. struct apm_graph_open_params params;
  379. struct apm_prop_list_params *mprop;
  380. struct audioreach_module *module;
  381. struct audioreach_sub_graph *sgs;
  382. struct apm_mod_list_obj *mlobj;
  383. int num_modules_per_list;
  384. int num_connections = 0;
  385. int num_containers = 0;
  386. int num_sub_graphs = 0;
  387. int num_modules = 0;
  388. int num_modules_list;
  389. struct gpr_pkt *pkt;
  390. void *p;
  391. list_for_each_entry(sgs, sg_list, node) {
  392. num_sub_graphs++;
  393. list_for_each_entry(container, &sgs->container_list, node) {
  394. num_containers++;
  395. num_modules += container->num_modules;
  396. list_for_each_container_module(module, container) {
  397. if (module->src_mod_inst_id)
  398. num_connections++;
  399. }
  400. }
  401. }
  402. num_modules_list = num_containers;
  403. num_modules_per_list = num_modules/num_containers;
  404. sg_sz = APM_SUB_GRAPH_PSIZE(sg_params, num_sub_graphs);
  405. cont_sz = APM_CONTAINER_PSIZE(cont_params, num_containers);
  406. ml_sz = ALIGN(sizeof(struct apm_module_list_params) +
  407. num_modules_list * APM_MOD_LIST_OBJ_PSIZE(mlobj, num_modules_per_list), 8);
  408. mp_sz = APM_MOD_PROP_PSIZE(mprop, num_modules);
  409. mc_sz = APM_MOD_CONN_PSIZE(mcon, num_connections);
  410. payload_size = sg_sz + cont_sz + ml_sz + mp_sz + mc_sz;
  411. pkt = audioreach_alloc_apm_cmd_pkt(payload_size, APM_CMD_GRAPH_OPEN, 0);
  412. if (IS_ERR(pkt))
  413. return pkt;
  414. p = (void *)pkt + GPR_HDR_SIZE + APM_CMD_HDR_SIZE;
  415. /* SubGraph */
  416. params.sg_data = p;
  417. param_data = &params.sg_data->param_data;
  418. param_data->module_instance_id = APM_MODULE_INSTANCE_ID;
  419. param_data->param_id = APM_PARAM_ID_SUB_GRAPH_CONFIG;
  420. param_data->param_size = sg_sz - APM_MODULE_PARAM_DATA_SIZE;
  421. params.sg_data->num_sub_graphs = num_sub_graphs;
  422. p += sg_sz;
  423. /* Container */
  424. params.cont_data = p;
  425. param_data = &params.cont_data->param_data;
  426. param_data->module_instance_id = APM_MODULE_INSTANCE_ID;
  427. param_data->param_id = APM_PARAM_ID_CONTAINER_CONFIG;
  428. param_data->param_size = cont_sz - APM_MODULE_PARAM_DATA_SIZE;
  429. params.cont_data->num_containers = num_containers;
  430. p += cont_sz;
  431. /* Module List*/
  432. params.mod_list_data = p;
  433. param_data = &params.mod_list_data->param_data;
  434. param_data->module_instance_id = APM_MODULE_INSTANCE_ID;
  435. param_data->param_id = APM_PARAM_ID_MODULE_LIST;
  436. param_data->param_size = ml_sz - APM_MODULE_PARAM_DATA_SIZE;
  437. params.mod_list_data->num_modules_list = num_sub_graphs;
  438. p += ml_sz;
  439. /* Module Properties */
  440. params.mod_prop_data = p;
  441. param_data = &params.mod_prop_data->param_data;
  442. param_data->module_instance_id = APM_MODULE_INSTANCE_ID;
  443. param_data->param_id = APM_PARAM_ID_MODULE_PROP;
  444. param_data->param_size = mp_sz - APM_MODULE_PARAM_DATA_SIZE;
  445. params.mod_prop_data->num_modules_prop_cfg = num_modules;
  446. p += mp_sz;
  447. /* Module Connections */
  448. params.mod_conn_list_data = p;
  449. param_data = &params.mod_conn_list_data->param_data;
  450. param_data->module_instance_id = APM_MODULE_INSTANCE_ID;
  451. param_data->param_id = APM_PARAM_ID_MODULE_CONN;
  452. param_data->param_size = mc_sz - APM_MODULE_PARAM_DATA_SIZE;
  453. params.mod_conn_list_data->num_connections = num_connections;
  454. p += mc_sz;
  455. audioreach_populate_graph(&params, sg_list, num_sub_graphs);
  456. return pkt;
  457. }
  458. EXPORT_SYMBOL_GPL(audioreach_alloc_graph_pkt);
  459. int audioreach_send_cmd_sync(struct device *dev, gpr_device_t *gdev,
  460. struct gpr_ibasic_rsp_result_t *result, struct mutex *cmd_lock,
  461. gpr_port_t *port, wait_queue_head_t *cmd_wait,
  462. struct gpr_pkt *pkt, uint32_t rsp_opcode)
  463. {
  464. struct gpr_hdr *hdr = &pkt->hdr;
  465. int rc;
  466. mutex_lock(cmd_lock);
  467. result->opcode = 0;
  468. result->status = 0;
  469. if (port)
  470. rc = gpr_send_port_pkt(port, pkt);
  471. else if (gdev)
  472. rc = gpr_send_pkt(gdev, pkt);
  473. else
  474. rc = -EINVAL;
  475. if (rc < 0)
  476. goto err;
  477. if (rsp_opcode)
  478. rc = wait_event_timeout(*cmd_wait, (result->opcode == hdr->opcode) ||
  479. (result->opcode == rsp_opcode), 5 * HZ);
  480. else
  481. rc = wait_event_timeout(*cmd_wait, (result->opcode == hdr->opcode), 5 * HZ);
  482. if (!rc) {
  483. dev_err(dev, "CMD timeout for [%x] opcode\n", hdr->opcode);
  484. rc = -ETIMEDOUT;
  485. } else if (result->status > 0) {
  486. dev_err(dev, "DSP returned error[%x] %x\n", hdr->opcode, result->status);
  487. rc = -EINVAL;
  488. } else {
  489. /* DSP successfully finished the command */
  490. rc = 0;
  491. }
  492. err:
  493. mutex_unlock(cmd_lock);
  494. return rc;
  495. }
  496. EXPORT_SYMBOL_GPL(audioreach_send_cmd_sync);
  497. int audioreach_graph_send_cmd_sync(struct q6apm_graph *graph, struct gpr_pkt *pkt,
  498. uint32_t rsp_opcode)
  499. {
  500. return audioreach_send_cmd_sync(graph->dev, NULL, &graph->result, &graph->lock,
  501. graph->port, &graph->cmd_wait, pkt, rsp_opcode);
  502. }
  503. EXPORT_SYMBOL_GPL(audioreach_graph_send_cmd_sync);
  504. /* LPASS Codec DMA port Module Media Format Setup */
  505. static int audioreach_codec_dma_set_media_format(struct q6apm_graph *graph,
  506. struct audioreach_module *module,
  507. struct audioreach_module_config *cfg)
  508. {
  509. struct apm_codec_dma_module_intf_cfg *intf_cfg;
  510. struct apm_module_frame_size_factor_cfg *fs_cfg;
  511. struct apm_module_hw_ep_power_mode_cfg *pm_cfg;
  512. struct apm_module_param_data *param_data;
  513. struct apm_module_hw_ep_mf_cfg *hw_cfg;
  514. int ic_sz, ep_sz, fs_sz, pm_sz, dl_sz;
  515. int rc, payload_size;
  516. struct gpr_pkt *pkt;
  517. void *p;
  518. ic_sz = APM_CDMA_INTF_CFG_PSIZE;
  519. ep_sz = APM_HW_EP_CFG_PSIZE;
  520. fs_sz = APM_FS_CFG_PSIZE;
  521. pm_sz = APM_HW_EP_PMODE_CFG_PSIZE;
  522. dl_sz = 0;
  523. payload_size = ic_sz + ep_sz + fs_sz + pm_sz + dl_sz;
  524. pkt = audioreach_alloc_apm_cmd_pkt(payload_size, APM_CMD_SET_CFG, 0);
  525. if (IS_ERR(pkt))
  526. return PTR_ERR(pkt);
  527. p = (void *)pkt + GPR_HDR_SIZE + APM_CMD_HDR_SIZE;
  528. hw_cfg = p;
  529. param_data = &hw_cfg->param_data;
  530. param_data->module_instance_id = module->instance_id;
  531. param_data->error_code = 0;
  532. param_data->param_id = PARAM_ID_HW_EP_MF_CFG;
  533. param_data->param_size = ep_sz - APM_MODULE_PARAM_DATA_SIZE;
  534. hw_cfg->mf.sample_rate = cfg->sample_rate;
  535. hw_cfg->mf.bit_width = cfg->bit_width;
  536. hw_cfg->mf.num_channels = cfg->num_channels;
  537. hw_cfg->mf.data_format = module->data_format;
  538. p += ep_sz;
  539. fs_cfg = p;
  540. param_data = &fs_cfg->param_data;
  541. param_data->module_instance_id = module->instance_id;
  542. param_data->error_code = 0;
  543. param_data->param_id = PARAM_ID_HW_EP_FRAME_SIZE_FACTOR;
  544. param_data->param_size = fs_sz - APM_MODULE_PARAM_DATA_SIZE;
  545. fs_cfg->frame_size_factor = 1;
  546. p += fs_sz;
  547. intf_cfg = p;
  548. param_data = &intf_cfg->param_data;
  549. param_data->module_instance_id = module->instance_id;
  550. param_data->error_code = 0;
  551. param_data->param_id = PARAM_ID_CODEC_DMA_INTF_CFG;
  552. param_data->param_size = ic_sz - APM_MODULE_PARAM_DATA_SIZE;
  553. intf_cfg->cfg.lpaif_type = module->hw_interface_type;
  554. intf_cfg->cfg.intf_index = module->hw_interface_idx;
  555. intf_cfg->cfg.active_channels_mask = (1 << cfg->num_channels) - 1;
  556. p += ic_sz;
  557. pm_cfg = p;
  558. param_data = &pm_cfg->param_data;
  559. param_data->module_instance_id = module->instance_id;
  560. param_data->error_code = 0;
  561. param_data->param_id = PARAM_ID_HW_EP_POWER_MODE_CFG;
  562. param_data->param_size = pm_sz - APM_MODULE_PARAM_DATA_SIZE;
  563. pm_cfg->power_mode.power_mode = 0;
  564. rc = q6apm_send_cmd_sync(graph->apm, pkt, 0);
  565. kfree(pkt);
  566. return rc;
  567. }
  568. static int audioreach_i2s_set_media_format(struct q6apm_graph *graph,
  569. struct audioreach_module *module,
  570. struct audioreach_module_config *cfg)
  571. {
  572. struct apm_module_frame_size_factor_cfg *fs_cfg;
  573. struct apm_module_param_data *param_data;
  574. struct apm_i2s_module_intf_cfg *intf_cfg;
  575. struct apm_module_hw_ep_mf_cfg *hw_cfg;
  576. int ic_sz, ep_sz, fs_sz;
  577. int rc, payload_size;
  578. struct gpr_pkt *pkt;
  579. void *p;
  580. ic_sz = APM_I2S_INTF_CFG_PSIZE;
  581. ep_sz = APM_HW_EP_CFG_PSIZE;
  582. fs_sz = APM_FS_CFG_PSIZE;
  583. payload_size = ic_sz + ep_sz + fs_sz;
  584. pkt = audioreach_alloc_apm_cmd_pkt(payload_size, APM_CMD_SET_CFG, 0);
  585. if (IS_ERR(pkt))
  586. return PTR_ERR(pkt);
  587. p = (void *)pkt + GPR_HDR_SIZE + APM_CMD_HDR_SIZE;
  588. intf_cfg = p;
  589. param_data = &intf_cfg->param_data;
  590. param_data->module_instance_id = module->instance_id;
  591. param_data->error_code = 0;
  592. param_data->param_id = PARAM_ID_I2S_INTF_CFG;
  593. param_data->param_size = ic_sz - APM_MODULE_PARAM_DATA_SIZE;
  594. intf_cfg->cfg.intf_idx = module->hw_interface_idx;
  595. intf_cfg->cfg.sd_line_idx = module->sd_line_idx;
  596. switch (cfg->fmt & SND_SOC_DAIFMT_CLOCK_PROVIDER_MASK) {
  597. case SND_SOC_DAIFMT_BP_FP:
  598. intf_cfg->cfg.ws_src = CONFIG_I2S_WS_SRC_INTERNAL;
  599. break;
  600. case SND_SOC_DAIFMT_BC_FC:
  601. /* CPU is slave */
  602. intf_cfg->cfg.ws_src = CONFIG_I2S_WS_SRC_EXTERNAL;
  603. break;
  604. default:
  605. break;
  606. }
  607. p += ic_sz;
  608. hw_cfg = p;
  609. param_data = &hw_cfg->param_data;
  610. param_data->module_instance_id = module->instance_id;
  611. param_data->error_code = 0;
  612. param_data->param_id = PARAM_ID_HW_EP_MF_CFG;
  613. param_data->param_size = ep_sz - APM_MODULE_PARAM_DATA_SIZE;
  614. hw_cfg->mf.sample_rate = cfg->sample_rate;
  615. hw_cfg->mf.bit_width = cfg->bit_width;
  616. hw_cfg->mf.num_channels = cfg->num_channels;
  617. hw_cfg->mf.data_format = module->data_format;
  618. p += ep_sz;
  619. fs_cfg = p;
  620. param_data = &fs_cfg->param_data;
  621. param_data->module_instance_id = module->instance_id;
  622. param_data->error_code = 0;
  623. param_data->param_id = PARAM_ID_HW_EP_FRAME_SIZE_FACTOR;
  624. param_data->param_size = fs_sz - APM_MODULE_PARAM_DATA_SIZE;
  625. fs_cfg->frame_size_factor = 1;
  626. rc = q6apm_send_cmd_sync(graph->apm, pkt, 0);
  627. kfree(pkt);
  628. return rc;
  629. }
  630. static int audioreach_logging_set_media_format(struct q6apm_graph *graph,
  631. struct audioreach_module *module)
  632. {
  633. struct apm_module_param_data *param_data;
  634. struct data_logging_config *cfg;
  635. int rc, payload_size;
  636. struct gpr_pkt *pkt;
  637. void *p;
  638. payload_size = sizeof(*cfg) + APM_MODULE_PARAM_DATA_SIZE;
  639. pkt = audioreach_alloc_apm_cmd_pkt(payload_size, APM_CMD_SET_CFG, 0);
  640. if (IS_ERR(pkt))
  641. return PTR_ERR(pkt);
  642. p = (void *)pkt + GPR_HDR_SIZE + APM_CMD_HDR_SIZE;
  643. param_data = p;
  644. param_data->module_instance_id = module->instance_id;
  645. param_data->error_code = 0;
  646. param_data->param_id = PARAM_ID_DATA_LOGGING_CONFIG;
  647. param_data->param_size = payload_size - APM_MODULE_PARAM_DATA_SIZE;
  648. p = p + APM_MODULE_PARAM_DATA_SIZE;
  649. cfg = p;
  650. cfg->log_code = module->log_code;
  651. cfg->log_tap_point_id = module->log_tap_point_id;
  652. cfg->mode = module->log_mode;
  653. rc = q6apm_send_cmd_sync(graph->apm, pkt, 0);
  654. kfree(pkt);
  655. return rc;
  656. }
  657. static int audioreach_pcm_set_media_format(struct q6apm_graph *graph,
  658. struct audioreach_module *module,
  659. struct audioreach_module_config *mcfg)
  660. {
  661. struct payload_pcm_output_format_cfg *media_cfg;
  662. uint32_t num_channels = mcfg->num_channels;
  663. struct apm_pcm_module_media_fmt_cmd *cfg;
  664. struct apm_module_param_data *param_data;
  665. int rc, payload_size;
  666. struct gpr_pkt *pkt;
  667. if (num_channels > 2) {
  668. dev_err(graph->dev, "Error: Invalid channels (%d)!\n", num_channels);
  669. return -EINVAL;
  670. }
  671. payload_size = APM_PCM_MODULE_FMT_CMD_PSIZE(num_channels);
  672. pkt = audioreach_alloc_apm_cmd_pkt(payload_size, APM_CMD_SET_CFG, 0);
  673. if (IS_ERR(pkt))
  674. return PTR_ERR(pkt);
  675. cfg = (void *)pkt + GPR_HDR_SIZE + APM_CMD_HDR_SIZE;
  676. param_data = &cfg->param_data;
  677. param_data->module_instance_id = module->instance_id;
  678. param_data->error_code = 0;
  679. param_data->param_id = PARAM_ID_PCM_OUTPUT_FORMAT_CFG;
  680. param_data->param_size = payload_size - APM_MODULE_PARAM_DATA_SIZE;
  681. cfg->header.data_format = DATA_FORMAT_FIXED_POINT;
  682. cfg->header.fmt_id = MEDIA_FMT_ID_PCM;
  683. cfg->header.payload_size = APM_PCM_OUT_FMT_CFG_PSIZE(media_cfg, num_channels);
  684. media_cfg = &cfg->media_cfg;
  685. media_cfg->alignment = PCM_LSB_ALIGNED;
  686. media_cfg->bit_width = mcfg->bit_width;
  687. media_cfg->endianness = PCM_LITTLE_ENDIAN;
  688. media_cfg->interleaved = module->interleave_type;
  689. media_cfg->num_channels = mcfg->num_channels;
  690. media_cfg->q_factor = mcfg->bit_width - 1;
  691. media_cfg->bits_per_sample = mcfg->bit_width;
  692. if (num_channels == 1) {
  693. media_cfg->channel_mapping[0] = PCM_CHANNEL_L;
  694. } else if (num_channels == 2) {
  695. media_cfg->channel_mapping[0] = PCM_CHANNEL_L;
  696. media_cfg->channel_mapping[1] = PCM_CHANNEL_R;
  697. }
  698. rc = q6apm_send_cmd_sync(graph->apm, pkt, 0);
  699. kfree(pkt);
  700. return rc;
  701. }
  702. static int audioreach_shmem_set_media_format(struct q6apm_graph *graph,
  703. struct audioreach_module *module,
  704. struct audioreach_module_config *mcfg)
  705. {
  706. uint32_t num_channels = mcfg->num_channels;
  707. struct apm_module_param_data *param_data;
  708. struct payload_media_fmt_pcm *cfg;
  709. struct media_format *header;
  710. int rc, payload_size;
  711. struct gpr_pkt *pkt;
  712. void *p;
  713. if (num_channels > 2) {
  714. dev_err(graph->dev, "Error: Invalid channels (%d)!\n", num_channels);
  715. return -EINVAL;
  716. }
  717. payload_size = APM_SHMEM_FMT_CFG_PSIZE(num_channels) + APM_MODULE_PARAM_DATA_SIZE;
  718. pkt = audioreach_alloc_cmd_pkt(payload_size, APM_CMD_SET_CFG, 0,
  719. graph->port->id, module->instance_id);
  720. if (IS_ERR(pkt))
  721. return PTR_ERR(pkt);
  722. p = (void *)pkt + GPR_HDR_SIZE + APM_CMD_HDR_SIZE;
  723. param_data = p;
  724. param_data->module_instance_id = module->instance_id;
  725. param_data->error_code = 0;
  726. param_data->param_id = PARAM_ID_MEDIA_FORMAT;
  727. param_data->param_size = payload_size - APM_MODULE_PARAM_DATA_SIZE;
  728. p = p + APM_MODULE_PARAM_DATA_SIZE;
  729. header = p;
  730. header->data_format = DATA_FORMAT_FIXED_POINT;
  731. header->fmt_id = MEDIA_FMT_ID_PCM;
  732. header->payload_size = payload_size - sizeof(*header);
  733. p = p + sizeof(*header);
  734. cfg = p;
  735. cfg->sample_rate = mcfg->sample_rate;
  736. cfg->bit_width = mcfg->bit_width;
  737. cfg->alignment = PCM_LSB_ALIGNED;
  738. cfg->bits_per_sample = mcfg->bit_width;
  739. cfg->q_factor = mcfg->bit_width - 1;
  740. cfg->endianness = PCM_LITTLE_ENDIAN;
  741. cfg->num_channels = mcfg->num_channels;
  742. if (mcfg->num_channels == 1) {
  743. cfg->channel_mapping[0] = PCM_CHANNEL_L;
  744. } else if (num_channels == 2) {
  745. cfg->channel_mapping[0] = PCM_CHANNEL_L;
  746. cfg->channel_mapping[1] = PCM_CHANNEL_R;
  747. }
  748. rc = audioreach_graph_send_cmd_sync(graph, pkt, 0);
  749. kfree(pkt);
  750. return rc;
  751. }
  752. int audioreach_gain_set_vol_ctrl(struct q6apm *apm, struct audioreach_module *module, int vol)
  753. {
  754. struct param_id_vol_ctrl_master_gain *cfg;
  755. struct apm_module_param_data *param_data;
  756. int rc, payload_size;
  757. struct gpr_pkt *pkt;
  758. void *p;
  759. payload_size = sizeof(*cfg) + APM_MODULE_PARAM_DATA_SIZE;
  760. pkt = audioreach_alloc_apm_cmd_pkt(payload_size, APM_CMD_SET_CFG, 0);
  761. if (IS_ERR(pkt))
  762. return PTR_ERR(pkt);
  763. p = (void *)pkt + GPR_HDR_SIZE + APM_CMD_HDR_SIZE;
  764. param_data = p;
  765. param_data->module_instance_id = module->instance_id;
  766. param_data->error_code = 0;
  767. param_data->param_id = PARAM_ID_VOL_CTRL_MASTER_GAIN;
  768. param_data->param_size = payload_size - APM_MODULE_PARAM_DATA_SIZE;
  769. p = p + APM_MODULE_PARAM_DATA_SIZE;
  770. cfg = p;
  771. cfg->master_gain = vol;
  772. rc = q6apm_send_cmd_sync(apm, pkt, 0);
  773. kfree(pkt);
  774. return rc;
  775. }
  776. EXPORT_SYMBOL_GPL(audioreach_gain_set_vol_ctrl);
  777. static int audioreach_gain_set(struct q6apm_graph *graph, struct audioreach_module *module)
  778. {
  779. struct apm_module_param_data *param_data;
  780. struct apm_gain_module_cfg *cfg;
  781. int rc, payload_size;
  782. struct gpr_pkt *pkt;
  783. payload_size = APM_GAIN_CFG_PSIZE;
  784. pkt = audioreach_alloc_apm_cmd_pkt(payload_size, APM_CMD_SET_CFG, 0);
  785. if (IS_ERR(pkt))
  786. return PTR_ERR(pkt);
  787. cfg = (void *)pkt + GPR_HDR_SIZE + APM_CMD_HDR_SIZE;
  788. param_data = &cfg->param_data;
  789. param_data->module_instance_id = module->instance_id;
  790. param_data->error_code = 0;
  791. param_data->param_id = APM_PARAM_ID_GAIN;
  792. param_data->param_size = payload_size - APM_MODULE_PARAM_DATA_SIZE;
  793. cfg->gain_cfg.gain = module->gain;
  794. rc = q6apm_send_cmd_sync(graph->apm, pkt, 0);
  795. kfree(pkt);
  796. return rc;
  797. }
  798. int audioreach_set_media_format(struct q6apm_graph *graph, struct audioreach_module *module,
  799. struct audioreach_module_config *cfg)
  800. {
  801. int rc;
  802. switch (module->module_id) {
  803. case MODULE_ID_DATA_LOGGING:
  804. rc = audioreach_logging_set_media_format(graph, module);
  805. break;
  806. case MODULE_ID_PCM_DEC:
  807. case MODULE_ID_PCM_ENC:
  808. case MODULE_ID_PCM_CNV:
  809. rc = audioreach_pcm_set_media_format(graph, module, cfg);
  810. break;
  811. case MODULE_ID_I2S_SOURCE:
  812. case MODULE_ID_I2S_SINK:
  813. rc = audioreach_i2s_set_media_format(graph, module, cfg);
  814. break;
  815. case MODULE_ID_WR_SHARED_MEM_EP:
  816. rc = audioreach_shmem_set_media_format(graph, module, cfg);
  817. break;
  818. case MODULE_ID_GAIN:
  819. rc = audioreach_gain_set(graph, module);
  820. break;
  821. case MODULE_ID_CODEC_DMA_SINK:
  822. case MODULE_ID_CODEC_DMA_SOURCE:
  823. rc = audioreach_codec_dma_set_media_format(graph, module, cfg);
  824. break;
  825. default:
  826. rc = 0;
  827. }
  828. return rc;
  829. }
  830. EXPORT_SYMBOL_GPL(audioreach_set_media_format);
  831. void audioreach_graph_free_buf(struct q6apm_graph *graph)
  832. {
  833. struct audioreach_graph_data *port;
  834. mutex_lock(&graph->lock);
  835. port = &graph->rx_data;
  836. port->num_periods = 0;
  837. kfree(port->buf);
  838. port->buf = NULL;
  839. port = &graph->tx_data;
  840. port->num_periods = 0;
  841. kfree(port->buf);
  842. port->buf = NULL;
  843. mutex_unlock(&graph->lock);
  844. }
  845. EXPORT_SYMBOL_GPL(audioreach_graph_free_buf);
  846. int audioreach_map_memory_regions(struct q6apm_graph *graph, unsigned int dir, size_t period_sz,
  847. unsigned int periods, bool is_contiguous)
  848. {
  849. struct apm_shared_map_region_payload *mregions;
  850. struct apm_cmd_shared_mem_map_regions *cmd;
  851. uint32_t num_regions, buf_sz, payload_size;
  852. struct audioreach_graph_data *data;
  853. struct gpr_pkt *pkt;
  854. void *p;
  855. int rc, i;
  856. if (dir == SNDRV_PCM_STREAM_PLAYBACK)
  857. data = &graph->rx_data;
  858. else
  859. data = &graph->tx_data;
  860. if (is_contiguous) {
  861. num_regions = 1;
  862. buf_sz = period_sz * periods;
  863. } else {
  864. buf_sz = period_sz;
  865. num_regions = periods;
  866. }
  867. /* DSP expects size should be aligned to 4K */
  868. buf_sz = ALIGN(buf_sz, 4096);
  869. payload_size = sizeof(*cmd) + (sizeof(*mregions) * num_regions);
  870. pkt = audioreach_alloc_apm_pkt(payload_size, APM_CMD_SHARED_MEM_MAP_REGIONS, dir,
  871. graph->port->id);
  872. if (IS_ERR(pkt))
  873. return PTR_ERR(pkt);
  874. p = (void *)pkt + GPR_HDR_SIZE;
  875. cmd = p;
  876. cmd->mem_pool_id = APM_MEMORY_MAP_SHMEM8_4K_POOL;
  877. cmd->num_regions = num_regions;
  878. cmd->property_flag = 0x0;
  879. mregions = p + sizeof(*cmd);
  880. mutex_lock(&graph->lock);
  881. for (i = 0; i < num_regions; i++) {
  882. struct audio_buffer *ab;
  883. ab = &data->buf[i];
  884. mregions->shm_addr_lsw = lower_32_bits(ab->phys);
  885. mregions->shm_addr_msw = upper_32_bits(ab->phys);
  886. mregions->mem_size_bytes = buf_sz;
  887. ++mregions;
  888. }
  889. mutex_unlock(&graph->lock);
  890. rc = audioreach_graph_send_cmd_sync(graph, pkt, APM_CMD_RSP_SHARED_MEM_MAP_REGIONS);
  891. kfree(pkt);
  892. return rc;
  893. }
  894. EXPORT_SYMBOL_GPL(audioreach_map_memory_regions);
  895. int audioreach_shared_memory_send_eos(struct q6apm_graph *graph)
  896. {
  897. struct data_cmd_wr_sh_mem_ep_eos *eos;
  898. struct gpr_pkt *pkt;
  899. int rc = 0, iid;
  900. iid = q6apm_graph_get_rx_shmem_module_iid(graph);
  901. pkt = audioreach_alloc_cmd_pkt(sizeof(*eos), DATA_CMD_WR_SH_MEM_EP_EOS, 0,
  902. graph->port->id, iid);
  903. if (IS_ERR(pkt))
  904. return PTR_ERR(pkt);
  905. eos = (void *)pkt + GPR_HDR_SIZE + APM_CMD_HDR_SIZE;
  906. eos->policy = WR_SH_MEM_EP_EOS_POLICY_LAST;
  907. rc = gpr_send_port_pkt(graph->port, pkt);
  908. kfree(pkt);
  909. return rc;
  910. }
  911. EXPORT_SYMBOL_GPL(audioreach_shared_memory_send_eos);