mixart_hwdep.c 17 KB

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  1. // SPDX-License-Identifier: GPL-2.0-or-later
  2. /*
  3. * Driver for Digigram miXart soundcards
  4. *
  5. * DSP firmware management
  6. *
  7. * Copyright (c) 2003 by Digigram <[email protected]>
  8. */
  9. #include <linux/interrupt.h>
  10. #include <linux/pci.h>
  11. #include <linux/firmware.h>
  12. #include <linux/vmalloc.h>
  13. #include <linux/slab.h>
  14. #include <linux/module.h>
  15. #include <linux/io.h>
  16. #include <sound/core.h>
  17. #include "mixart.h"
  18. #include "mixart_mixer.h"
  19. #include "mixart_core.h"
  20. #include "mixart_hwdep.h"
  21. /**
  22. * mixart_wait_nice_for_register_value - wait for a value on a peudo register,
  23. * exit with a timeout
  24. *
  25. * @mgr: pointer to miXart manager structure
  26. * @offset: unsigned pseudo_register base + offset of value
  27. * @is_egal: wait for the equal value
  28. * @value: value
  29. * @timeout: timeout in centisenconds
  30. */
  31. static int mixart_wait_nice_for_register_value(struct mixart_mgr *mgr,
  32. u32 offset, int is_egal,
  33. u32 value, unsigned long timeout)
  34. {
  35. unsigned long end_time = jiffies + (timeout * HZ / 100);
  36. u32 read;
  37. do { /* we may take too long time in this loop.
  38. * so give controls back to kernel if needed.
  39. */
  40. cond_resched();
  41. read = readl_be( MIXART_MEM( mgr, offset ));
  42. if(is_egal) {
  43. if(read == value) return 0;
  44. }
  45. else { /* wait for different value */
  46. if(read != value) return 0;
  47. }
  48. } while ( time_after_eq(end_time, jiffies) );
  49. return -EBUSY;
  50. }
  51. /*
  52. structures needed to upload elf code packets
  53. */
  54. struct snd_mixart_elf32_ehdr {
  55. u8 e_ident[16];
  56. __be16 e_type;
  57. __be16 e_machine;
  58. __be32 e_version;
  59. __be32 e_entry;
  60. __be32 e_phoff;
  61. __be32 e_shoff;
  62. __be32 e_flags;
  63. __be16 e_ehsize;
  64. __be16 e_phentsize;
  65. __be16 e_phnum;
  66. __be16 e_shentsize;
  67. __be16 e_shnum;
  68. __be16 e_shstrndx;
  69. };
  70. struct snd_mixart_elf32_phdr {
  71. __be32 p_type;
  72. __be32 p_offset;
  73. __be32 p_vaddr;
  74. __be32 p_paddr;
  75. __be32 p_filesz;
  76. __be32 p_memsz;
  77. __be32 p_flags;
  78. __be32 p_align;
  79. };
  80. static int mixart_load_elf(struct mixart_mgr *mgr, const struct firmware *dsp )
  81. {
  82. char elf32_magic_number[4] = {0x7f,'E','L','F'};
  83. struct snd_mixart_elf32_ehdr *elf_header;
  84. int i;
  85. elf_header = (struct snd_mixart_elf32_ehdr *)dsp->data;
  86. for( i=0; i<4; i++ )
  87. if ( elf32_magic_number[i] != elf_header->e_ident[i] )
  88. return -EINVAL;
  89. if( elf_header->e_phoff != 0 ) {
  90. struct snd_mixart_elf32_phdr elf_programheader;
  91. for( i=0; i < be16_to_cpu(elf_header->e_phnum); i++ ) {
  92. u32 pos = be32_to_cpu(elf_header->e_phoff) + (u32)(i * be16_to_cpu(elf_header->e_phentsize));
  93. memcpy( &elf_programheader, dsp->data + pos, sizeof(elf_programheader) );
  94. if(elf_programheader.p_type != 0) {
  95. if( elf_programheader.p_filesz != 0 ) {
  96. memcpy_toio( MIXART_MEM( mgr, be32_to_cpu(elf_programheader.p_vaddr)),
  97. dsp->data + be32_to_cpu( elf_programheader.p_offset ),
  98. be32_to_cpu( elf_programheader.p_filesz ));
  99. }
  100. }
  101. }
  102. }
  103. return 0;
  104. }
  105. /*
  106. * get basic information and init miXart
  107. */
  108. /* audio IDs for request to the board */
  109. #define MIXART_FIRST_ANA_AUDIO_ID 0
  110. #define MIXART_FIRST_DIG_AUDIO_ID 8
  111. static int mixart_enum_connectors(struct mixart_mgr *mgr)
  112. {
  113. u32 k;
  114. int err;
  115. struct mixart_msg request;
  116. struct mixart_enum_connector_resp *connector;
  117. struct mixart_audio_info_req *audio_info_req;
  118. struct mixart_audio_info_resp *audio_info;
  119. connector = kmalloc(sizeof(*connector), GFP_KERNEL);
  120. audio_info_req = kmalloc(sizeof(*audio_info_req), GFP_KERNEL);
  121. audio_info = kmalloc(sizeof(*audio_info), GFP_KERNEL);
  122. if (! connector || ! audio_info_req || ! audio_info) {
  123. err = -ENOMEM;
  124. goto __error;
  125. }
  126. audio_info_req->line_max_level = MIXART_FLOAT_P_22_0_TO_HEX;
  127. audio_info_req->micro_max_level = MIXART_FLOAT_M_20_0_TO_HEX;
  128. audio_info_req->cd_max_level = MIXART_FLOAT____0_0_TO_HEX;
  129. request.message_id = MSG_SYSTEM_ENUM_PLAY_CONNECTOR;
  130. request.uid = (struct mixart_uid){0,0}; /* board num = 0 */
  131. request.data = NULL;
  132. request.size = 0;
  133. err = snd_mixart_send_msg(mgr, &request, sizeof(*connector), connector);
  134. if((err < 0) || (connector->error_code) || (connector->uid_count > MIXART_MAX_PHYS_CONNECTORS)) {
  135. dev_err(&mgr->pci->dev,
  136. "error MSG_SYSTEM_ENUM_PLAY_CONNECTOR\n");
  137. err = -EINVAL;
  138. goto __error;
  139. }
  140. for(k=0; k < connector->uid_count; k++) {
  141. struct mixart_pipe *pipe;
  142. if(k < MIXART_FIRST_DIG_AUDIO_ID) {
  143. pipe = &mgr->chip[k/2]->pipe_out_ana;
  144. } else {
  145. pipe = &mgr->chip[(k-MIXART_FIRST_DIG_AUDIO_ID)/2]->pipe_out_dig;
  146. }
  147. if(k & 1) {
  148. pipe->uid_right_connector = connector->uid[k]; /* odd */
  149. } else {
  150. pipe->uid_left_connector = connector->uid[k]; /* even */
  151. }
  152. /* dev_dbg(&mgr->pci->dev, "playback connector[%d].object_id = %x\n", k, connector->uid[k].object_id); */
  153. /* TODO: really need send_msg MSG_CONNECTOR_GET_AUDIO_INFO for each connector ? perhaps for analog level caps ? */
  154. request.message_id = MSG_CONNECTOR_GET_AUDIO_INFO;
  155. request.uid = connector->uid[k];
  156. request.data = audio_info_req;
  157. request.size = sizeof(*audio_info_req);
  158. err = snd_mixart_send_msg(mgr, &request, sizeof(*audio_info), audio_info);
  159. if( err < 0 ) {
  160. dev_err(&mgr->pci->dev,
  161. "error MSG_CONNECTOR_GET_AUDIO_INFO\n");
  162. goto __error;
  163. }
  164. /*dev_dbg(&mgr->pci->dev, "play analog_info.analog_level_present = %x\n", audio_info->info.analog_info.analog_level_present);*/
  165. }
  166. request.message_id = MSG_SYSTEM_ENUM_RECORD_CONNECTOR;
  167. request.uid = (struct mixart_uid){0,0}; /* board num = 0 */
  168. request.data = NULL;
  169. request.size = 0;
  170. err = snd_mixart_send_msg(mgr, &request, sizeof(*connector), connector);
  171. if((err < 0) || (connector->error_code) || (connector->uid_count > MIXART_MAX_PHYS_CONNECTORS)) {
  172. dev_err(&mgr->pci->dev,
  173. "error MSG_SYSTEM_ENUM_RECORD_CONNECTOR\n");
  174. err = -EINVAL;
  175. goto __error;
  176. }
  177. for(k=0; k < connector->uid_count; k++) {
  178. struct mixart_pipe *pipe;
  179. if(k < MIXART_FIRST_DIG_AUDIO_ID) {
  180. pipe = &mgr->chip[k/2]->pipe_in_ana;
  181. } else {
  182. pipe = &mgr->chip[(k-MIXART_FIRST_DIG_AUDIO_ID)/2]->pipe_in_dig;
  183. }
  184. if(k & 1) {
  185. pipe->uid_right_connector = connector->uid[k]; /* odd */
  186. } else {
  187. pipe->uid_left_connector = connector->uid[k]; /* even */
  188. }
  189. /* dev_dbg(&mgr->pci->dev, "capture connector[%d].object_id = %x\n", k, connector->uid[k].object_id); */
  190. /* TODO: really need send_msg MSG_CONNECTOR_GET_AUDIO_INFO for each connector ? perhaps for analog level caps ? */
  191. request.message_id = MSG_CONNECTOR_GET_AUDIO_INFO;
  192. request.uid = connector->uid[k];
  193. request.data = audio_info_req;
  194. request.size = sizeof(*audio_info_req);
  195. err = snd_mixart_send_msg(mgr, &request, sizeof(*audio_info), audio_info);
  196. if( err < 0 ) {
  197. dev_err(&mgr->pci->dev,
  198. "error MSG_CONNECTOR_GET_AUDIO_INFO\n");
  199. goto __error;
  200. }
  201. /*dev_dbg(&mgr->pci->dev, "rec analog_info.analog_level_present = %x\n", audio_info->info.analog_info.analog_level_present);*/
  202. }
  203. err = 0;
  204. __error:
  205. kfree(connector);
  206. kfree(audio_info_req);
  207. kfree(audio_info);
  208. return err;
  209. }
  210. static int mixart_enum_physio(struct mixart_mgr *mgr)
  211. {
  212. u32 k;
  213. int err;
  214. struct mixart_msg request;
  215. struct mixart_uid get_console_mgr;
  216. struct mixart_return_uid console_mgr;
  217. struct mixart_uid_enumeration phys_io;
  218. /* get the uid for the console manager */
  219. get_console_mgr.object_id = 0;
  220. get_console_mgr.desc = MSG_CONSOLE_MANAGER | 0; /* cardindex = 0 */
  221. request.message_id = MSG_CONSOLE_GET_CLOCK_UID;
  222. request.uid = get_console_mgr;
  223. request.data = &get_console_mgr;
  224. request.size = sizeof(get_console_mgr);
  225. err = snd_mixart_send_msg(mgr, &request, sizeof(console_mgr), &console_mgr);
  226. if( (err < 0) || (console_mgr.error_code != 0) ) {
  227. dev_dbg(&mgr->pci->dev,
  228. "error MSG_CONSOLE_GET_CLOCK_UID : err=%x\n",
  229. console_mgr.error_code);
  230. return -EINVAL;
  231. }
  232. /* used later for clock issues ! */
  233. mgr->uid_console_manager = console_mgr.uid;
  234. request.message_id = MSG_SYSTEM_ENUM_PHYSICAL_IO;
  235. request.uid = (struct mixart_uid){0,0};
  236. request.data = &console_mgr.uid;
  237. request.size = sizeof(console_mgr.uid);
  238. err = snd_mixart_send_msg(mgr, &request, sizeof(phys_io), &phys_io);
  239. if( (err < 0) || ( phys_io.error_code != 0 ) ) {
  240. dev_err(&mgr->pci->dev,
  241. "error MSG_SYSTEM_ENUM_PHYSICAL_IO err(%x) error_code(%x)\n",
  242. err, phys_io.error_code);
  243. return -EINVAL;
  244. }
  245. /* min 2 phys io per card (analog in + analog out) */
  246. if (phys_io.nb_uid < MIXART_MAX_CARDS * 2)
  247. return -EINVAL;
  248. for(k=0; k<mgr->num_cards; k++) {
  249. mgr->chip[k]->uid_in_analog_physio = phys_io.uid[k];
  250. mgr->chip[k]->uid_out_analog_physio = phys_io.uid[phys_io.nb_uid/2 + k];
  251. }
  252. return 0;
  253. }
  254. static int mixart_first_init(struct mixart_mgr *mgr)
  255. {
  256. u32 k;
  257. int err;
  258. struct mixart_msg request;
  259. err = mixart_enum_connectors(mgr);
  260. if (err < 0)
  261. return err;
  262. err = mixart_enum_physio(mgr);
  263. if (err < 0)
  264. return err;
  265. /* send a synchro command to card (necessary to do this before first MSG_STREAM_START_STREAM_GRP_PACKET) */
  266. /* though why not here */
  267. request.message_id = MSG_SYSTEM_SEND_SYNCHRO_CMD;
  268. request.uid = (struct mixart_uid){0,0};
  269. request.data = NULL;
  270. request.size = 0;
  271. /* this command has no data. response is a 32 bit status */
  272. err = snd_mixart_send_msg(mgr, &request, sizeof(k), &k);
  273. if( (err < 0) || (k != 0) ) {
  274. dev_err(&mgr->pci->dev, "error MSG_SYSTEM_SEND_SYNCHRO_CMD\n");
  275. return err == 0 ? -EINVAL : err;
  276. }
  277. return 0;
  278. }
  279. /* firmware base addresses (when hard coded) */
  280. #define MIXART_MOTHERBOARD_XLX_BASE_ADDRESS 0x00600000
  281. static int mixart_dsp_load(struct mixart_mgr* mgr, int index, const struct firmware *dsp)
  282. {
  283. int err, card_index;
  284. u32 status_xilinx, status_elf, status_daught;
  285. u32 val;
  286. /* read motherboard xilinx status */
  287. status_xilinx = readl_be( MIXART_MEM( mgr,MIXART_PSEUDOREG_MXLX_STATUS_OFFSET ));
  288. /* read elf status */
  289. status_elf = readl_be( MIXART_MEM( mgr,MIXART_PSEUDOREG_ELF_STATUS_OFFSET ));
  290. /* read daughterboard xilinx status */
  291. status_daught = readl_be( MIXART_MEM( mgr,MIXART_PSEUDOREG_DXLX_STATUS_OFFSET ));
  292. /* motherboard xilinx status 5 will say that the board is performing a reset */
  293. if (status_xilinx == 5) {
  294. dev_err(&mgr->pci->dev, "miXart is resetting !\n");
  295. return -EAGAIN; /* try again later */
  296. }
  297. switch (index) {
  298. case MIXART_MOTHERBOARD_XLX_INDEX:
  299. /* xilinx already loaded ? */
  300. if (status_xilinx == 4) {
  301. dev_dbg(&mgr->pci->dev, "xilinx is already loaded !\n");
  302. return 0;
  303. }
  304. /* the status should be 0 == "idle" */
  305. if (status_xilinx != 0) {
  306. dev_err(&mgr->pci->dev,
  307. "xilinx load error ! status = %d\n",
  308. status_xilinx);
  309. return -EIO; /* modprob -r may help ? */
  310. }
  311. /* check xilinx validity */
  312. if (((u32*)(dsp->data))[0] == 0xffffffff)
  313. return -EINVAL;
  314. if (dsp->size % 4)
  315. return -EINVAL;
  316. /* set xilinx status to copying */
  317. writel_be( 1, MIXART_MEM( mgr, MIXART_PSEUDOREG_MXLX_STATUS_OFFSET ));
  318. /* setup xilinx base address */
  319. writel_be( MIXART_MOTHERBOARD_XLX_BASE_ADDRESS, MIXART_MEM( mgr,MIXART_PSEUDOREG_MXLX_BASE_ADDR_OFFSET ));
  320. /* setup code size for xilinx file */
  321. writel_be( dsp->size, MIXART_MEM( mgr, MIXART_PSEUDOREG_MXLX_SIZE_OFFSET ));
  322. /* copy xilinx code */
  323. memcpy_toio( MIXART_MEM( mgr, MIXART_MOTHERBOARD_XLX_BASE_ADDRESS), dsp->data, dsp->size);
  324. /* set xilinx status to copy finished */
  325. writel_be( 2, MIXART_MEM( mgr, MIXART_PSEUDOREG_MXLX_STATUS_OFFSET ));
  326. /* return, because no further processing needed */
  327. return 0;
  328. case MIXART_MOTHERBOARD_ELF_INDEX:
  329. if (status_elf == 4) {
  330. dev_dbg(&mgr->pci->dev, "elf file already loaded !\n");
  331. return 0;
  332. }
  333. /* the status should be 0 == "idle" */
  334. if (status_elf != 0) {
  335. dev_err(&mgr->pci->dev,
  336. "elf load error ! status = %d\n",
  337. status_elf);
  338. return -EIO; /* modprob -r may help ? */
  339. }
  340. /* wait for xilinx status == 4 */
  341. err = mixart_wait_nice_for_register_value( mgr, MIXART_PSEUDOREG_MXLX_STATUS_OFFSET, 1, 4, 500); /* 5sec */
  342. if (err < 0) {
  343. dev_err(&mgr->pci->dev, "xilinx was not loaded or "
  344. "could not be started\n");
  345. return err;
  346. }
  347. /* init some data on the card */
  348. writel_be( 0, MIXART_MEM( mgr, MIXART_PSEUDOREG_BOARDNUMBER ) ); /* set miXart boardnumber to 0 */
  349. writel_be( 0, MIXART_MEM( mgr, MIXART_FLOWTABLE_PTR ) ); /* reset pointer to flow table on miXart */
  350. /* set elf status to copying */
  351. writel_be( 1, MIXART_MEM( mgr, MIXART_PSEUDOREG_ELF_STATUS_OFFSET ));
  352. /* process the copying of the elf packets */
  353. err = mixart_load_elf( mgr, dsp );
  354. if (err < 0) return err;
  355. /* set elf status to copy finished */
  356. writel_be( 2, MIXART_MEM( mgr, MIXART_PSEUDOREG_ELF_STATUS_OFFSET ));
  357. /* wait for elf status == 4 */
  358. err = mixart_wait_nice_for_register_value( mgr, MIXART_PSEUDOREG_ELF_STATUS_OFFSET, 1, 4, 300); /* 3sec */
  359. if (err < 0) {
  360. dev_err(&mgr->pci->dev, "elf could not be started\n");
  361. return err;
  362. }
  363. /* miXart waits at this point on the pointer to the flow table */
  364. writel_be( (u32)mgr->flowinfo.addr, MIXART_MEM( mgr, MIXART_FLOWTABLE_PTR ) ); /* give pointer of flow table to miXart */
  365. return 0; /* return, another xilinx file has to be loaded before */
  366. case MIXART_AESEBUBOARD_XLX_INDEX:
  367. default:
  368. /* elf and xilinx should be loaded */
  369. if (status_elf != 4 || status_xilinx != 4) {
  370. dev_err(&mgr->pci->dev, "xilinx or elf not "
  371. "successfully loaded\n");
  372. return -EIO; /* modprob -r may help ? */
  373. }
  374. /* wait for daughter detection != 0 */
  375. err = mixart_wait_nice_for_register_value( mgr, MIXART_PSEUDOREG_DBRD_PRESENCE_OFFSET, 0, 0, 30); /* 300msec */
  376. if (err < 0) {
  377. dev_err(&mgr->pci->dev, "error starting elf file\n");
  378. return err;
  379. }
  380. /* the board type can now be retrieved */
  381. mgr->board_type = (DAUGHTER_TYPE_MASK & readl_be( MIXART_MEM( mgr, MIXART_PSEUDOREG_DBRD_TYPE_OFFSET)));
  382. if (mgr->board_type == MIXART_DAUGHTER_TYPE_NONE)
  383. break; /* no daughter board; the file does not have to be loaded, continue after the switch */
  384. /* only if aesebu daughter board presence (elf code must run) */
  385. if (mgr->board_type != MIXART_DAUGHTER_TYPE_AES )
  386. return -EINVAL;
  387. /* daughter should be idle */
  388. if (status_daught != 0) {
  389. dev_err(&mgr->pci->dev,
  390. "daughter load error ! status = %d\n",
  391. status_daught);
  392. return -EIO; /* modprob -r may help ? */
  393. }
  394. /* check daughterboard xilinx validity */
  395. if (((u32*)(dsp->data))[0] == 0xffffffff)
  396. return -EINVAL;
  397. if (dsp->size % 4)
  398. return -EINVAL;
  399. /* inform mixart about the size of the file */
  400. writel_be( dsp->size, MIXART_MEM( mgr, MIXART_PSEUDOREG_DXLX_SIZE_OFFSET ));
  401. /* set daughterboard status to 1 */
  402. writel_be( 1, MIXART_MEM( mgr, MIXART_PSEUDOREG_DXLX_STATUS_OFFSET ));
  403. /* wait for status == 2 */
  404. err = mixart_wait_nice_for_register_value( mgr, MIXART_PSEUDOREG_DXLX_STATUS_OFFSET, 1, 2, 30); /* 300msec */
  405. if (err < 0) {
  406. dev_err(&mgr->pci->dev, "daughter board load error\n");
  407. return err;
  408. }
  409. /* get the address where to write the file */
  410. val = readl_be( MIXART_MEM( mgr, MIXART_PSEUDOREG_DXLX_BASE_ADDR_OFFSET ));
  411. if (!val)
  412. return -EINVAL;
  413. /* copy daughterboard xilinx code */
  414. memcpy_toio( MIXART_MEM( mgr, val), dsp->data, dsp->size);
  415. /* set daughterboard status to 4 */
  416. writel_be( 4, MIXART_MEM( mgr, MIXART_PSEUDOREG_DXLX_STATUS_OFFSET ));
  417. /* continue with init */
  418. break;
  419. } /* end of switch file index*/
  420. /* wait for daughter status == 3 */
  421. err = mixart_wait_nice_for_register_value( mgr, MIXART_PSEUDOREG_DXLX_STATUS_OFFSET, 1, 3, 300); /* 3sec */
  422. if (err < 0) {
  423. dev_err(&mgr->pci->dev,
  424. "daughter board could not be initialised\n");
  425. return err;
  426. }
  427. /* init mailbox (communication with embedded) */
  428. snd_mixart_init_mailbox(mgr);
  429. /* first communication with embedded */
  430. err = mixart_first_init(mgr);
  431. if (err < 0) {
  432. dev_err(&mgr->pci->dev, "miXart could not be set up\n");
  433. return err;
  434. }
  435. /* create devices and mixer in accordance with HW options*/
  436. for (card_index = 0; card_index < mgr->num_cards; card_index++) {
  437. struct snd_mixart *chip = mgr->chip[card_index];
  438. err = snd_mixart_create_pcm(chip);
  439. if (err < 0)
  440. return err;
  441. if (card_index == 0) {
  442. err = snd_mixart_create_mixer(chip->mgr);
  443. if (err < 0)
  444. return err;
  445. }
  446. err = snd_card_register(chip->card);
  447. if (err < 0)
  448. return err;
  449. }
  450. dev_dbg(&mgr->pci->dev,
  451. "miXart firmware downloaded and successfully set up\n");
  452. return 0;
  453. }
  454. int snd_mixart_setup_firmware(struct mixart_mgr *mgr)
  455. {
  456. static const char * const fw_files[3] = {
  457. "miXart8.xlx", "miXart8.elf", "miXart8AES.xlx"
  458. };
  459. char path[32];
  460. const struct firmware *fw_entry;
  461. int i, err;
  462. for (i = 0; i < 3; i++) {
  463. sprintf(path, "mixart/%s", fw_files[i]);
  464. if (request_firmware(&fw_entry, path, &mgr->pci->dev)) {
  465. dev_err(&mgr->pci->dev,
  466. "miXart: can't load firmware %s\n", path);
  467. return -ENOENT;
  468. }
  469. /* fake hwdep dsp record */
  470. err = mixart_dsp_load(mgr, i, fw_entry);
  471. release_firmware(fw_entry);
  472. if (err < 0)
  473. return err;
  474. mgr->dsp_loaded |= 1 << i;
  475. }
  476. return 0;
  477. }
  478. MODULE_FIRMWARE("mixart/miXart8.xlx");
  479. MODULE_FIRMWARE("mixart/miXart8.elf");
  480. MODULE_FIRMWARE("mixart/miXart8AES.xlx");