cadence_master.c 48 KB

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  1. // SPDX-License-Identifier: (GPL-2.0 OR BSD-3-Clause)
  2. // Copyright(c) 2015-17 Intel Corporation.
  3. /*
  4. * Cadence SoundWire Master module
  5. * Used by Master driver
  6. */
  7. #include <linux/delay.h>
  8. #include <linux/device.h>
  9. #include <linux/debugfs.h>
  10. #include <linux/interrupt.h>
  11. #include <linux/io.h>
  12. #include <linux/module.h>
  13. #include <linux/mod_devicetable.h>
  14. #include <linux/pm_runtime.h>
  15. #include <linux/soundwire/sdw_registers.h>
  16. #include <linux/soundwire/sdw.h>
  17. #include <sound/pcm_params.h>
  18. #include <sound/soc.h>
  19. #include <linux/workqueue.h>
  20. #include "bus.h"
  21. #include "cadence_master.h"
  22. static int interrupt_mask;
  23. module_param_named(cnds_mcp_int_mask, interrupt_mask, int, 0444);
  24. MODULE_PARM_DESC(cdns_mcp_int_mask, "Cadence MCP IntMask");
  25. #define CDNS_MCP_CONFIG 0x0
  26. #define CDNS_MCP_CONFIG_MCMD_RETRY GENMASK(27, 24)
  27. #define CDNS_MCP_CONFIG_MPREQ_DELAY GENMASK(20, 16)
  28. #define CDNS_MCP_CONFIG_MMASTER BIT(7)
  29. #define CDNS_MCP_CONFIG_BUS_REL BIT(6)
  30. #define CDNS_MCP_CONFIG_SNIFFER BIT(5)
  31. #define CDNS_MCP_CONFIG_SSPMOD BIT(4)
  32. #define CDNS_MCP_CONFIG_CMD BIT(3)
  33. #define CDNS_MCP_CONFIG_OP GENMASK(2, 0)
  34. #define CDNS_MCP_CONFIG_OP_NORMAL 0
  35. #define CDNS_MCP_CONTROL 0x4
  36. #define CDNS_MCP_CONTROL_RST_DELAY GENMASK(10, 8)
  37. #define CDNS_MCP_CONTROL_CMD_RST BIT(7)
  38. #define CDNS_MCP_CONTROL_SOFT_RST BIT(6)
  39. #define CDNS_MCP_CONTROL_SW_RST BIT(5)
  40. #define CDNS_MCP_CONTROL_HW_RST BIT(4)
  41. #define CDNS_MCP_CONTROL_CLK_PAUSE BIT(3)
  42. #define CDNS_MCP_CONTROL_CLK_STOP_CLR BIT(2)
  43. #define CDNS_MCP_CONTROL_CMD_ACCEPT BIT(1)
  44. #define CDNS_MCP_CONTROL_BLOCK_WAKEUP BIT(0)
  45. #define CDNS_MCP_CMDCTRL 0x8
  46. #define CDNS_MCP_CMDCTRL_INSERT_PARITY_ERR BIT(2)
  47. #define CDNS_MCP_SSPSTAT 0xC
  48. #define CDNS_MCP_FRAME_SHAPE 0x10
  49. #define CDNS_MCP_FRAME_SHAPE_INIT 0x14
  50. #define CDNS_MCP_FRAME_SHAPE_COL_MASK GENMASK(2, 0)
  51. #define CDNS_MCP_FRAME_SHAPE_ROW_MASK GENMASK(7, 3)
  52. #define CDNS_MCP_CONFIG_UPDATE 0x18
  53. #define CDNS_MCP_CONFIG_UPDATE_BIT BIT(0)
  54. #define CDNS_MCP_PHYCTRL 0x1C
  55. #define CDNS_MCP_SSP_CTRL0 0x20
  56. #define CDNS_MCP_SSP_CTRL1 0x28
  57. #define CDNS_MCP_CLK_CTRL0 0x30
  58. #define CDNS_MCP_CLK_CTRL1 0x38
  59. #define CDNS_MCP_CLK_MCLKD_MASK GENMASK(7, 0)
  60. #define CDNS_MCP_STAT 0x40
  61. #define CDNS_MCP_STAT_ACTIVE_BANK BIT(20)
  62. #define CDNS_MCP_STAT_CLK_STOP BIT(16)
  63. #define CDNS_MCP_INTSTAT 0x44
  64. #define CDNS_MCP_INTMASK 0x48
  65. #define CDNS_MCP_INT_IRQ BIT(31)
  66. #define CDNS_MCP_INT_RESERVED1 GENMASK(30, 17)
  67. #define CDNS_MCP_INT_WAKEUP BIT(16)
  68. #define CDNS_MCP_INT_SLAVE_RSVD BIT(15)
  69. #define CDNS_MCP_INT_SLAVE_ALERT BIT(14)
  70. #define CDNS_MCP_INT_SLAVE_ATTACH BIT(13)
  71. #define CDNS_MCP_INT_SLAVE_NATTACH BIT(12)
  72. #define CDNS_MCP_INT_SLAVE_MASK GENMASK(15, 12)
  73. #define CDNS_MCP_INT_DPINT BIT(11)
  74. #define CDNS_MCP_INT_CTRL_CLASH BIT(10)
  75. #define CDNS_MCP_INT_DATA_CLASH BIT(9)
  76. #define CDNS_MCP_INT_PARITY BIT(8)
  77. #define CDNS_MCP_INT_CMD_ERR BIT(7)
  78. #define CDNS_MCP_INT_RESERVED2 GENMASK(6, 4)
  79. #define CDNS_MCP_INT_RX_NE BIT(3)
  80. #define CDNS_MCP_INT_RX_WL BIT(2)
  81. #define CDNS_MCP_INT_TXE BIT(1)
  82. #define CDNS_MCP_INT_TXF BIT(0)
  83. #define CDNS_MCP_INT_RESERVED (CDNS_MCP_INT_RESERVED1 | CDNS_MCP_INT_RESERVED2)
  84. #define CDNS_MCP_INTSET 0x4C
  85. #define CDNS_MCP_SLAVE_STAT 0x50
  86. #define CDNS_MCP_SLAVE_STAT_MASK GENMASK(1, 0)
  87. #define CDNS_MCP_SLAVE_INTSTAT0 0x54
  88. #define CDNS_MCP_SLAVE_INTSTAT1 0x58
  89. #define CDNS_MCP_SLAVE_INTSTAT_NPRESENT BIT(0)
  90. #define CDNS_MCP_SLAVE_INTSTAT_ATTACHED BIT(1)
  91. #define CDNS_MCP_SLAVE_INTSTAT_ALERT BIT(2)
  92. #define CDNS_MCP_SLAVE_INTSTAT_RESERVED BIT(3)
  93. #define CDNS_MCP_SLAVE_STATUS_BITS GENMASK(3, 0)
  94. #define CDNS_MCP_SLAVE_STATUS_NUM 4
  95. #define CDNS_MCP_SLAVE_INTMASK0 0x5C
  96. #define CDNS_MCP_SLAVE_INTMASK1 0x60
  97. #define CDNS_MCP_SLAVE_INTMASK0_MASK GENMASK(31, 0)
  98. #define CDNS_MCP_SLAVE_INTMASK1_MASK GENMASK(15, 0)
  99. #define CDNS_MCP_PORT_INTSTAT 0x64
  100. #define CDNS_MCP_PDI_STAT 0x6C
  101. #define CDNS_MCP_FIFOLEVEL 0x78
  102. #define CDNS_MCP_FIFOSTAT 0x7C
  103. #define CDNS_MCP_RX_FIFO_AVAIL GENMASK(5, 0)
  104. #define CDNS_MCP_CMD_BASE 0x80
  105. #define CDNS_MCP_RESP_BASE 0x80
  106. /* FIFO can hold 8 commands */
  107. #define CDNS_MCP_CMD_LEN 8
  108. #define CDNS_MCP_CMD_WORD_LEN 0x4
  109. #define CDNS_MCP_CMD_SSP_TAG BIT(31)
  110. #define CDNS_MCP_CMD_COMMAND GENMASK(30, 28)
  111. #define CDNS_MCP_CMD_DEV_ADDR GENMASK(27, 24)
  112. #define CDNS_MCP_CMD_REG_ADDR GENMASK(23, 8)
  113. #define CDNS_MCP_CMD_REG_DATA GENMASK(7, 0)
  114. #define CDNS_MCP_CMD_READ 2
  115. #define CDNS_MCP_CMD_WRITE 3
  116. #define CDNS_MCP_RESP_RDATA GENMASK(15, 8)
  117. #define CDNS_MCP_RESP_ACK BIT(0)
  118. #define CDNS_MCP_RESP_NACK BIT(1)
  119. #define CDNS_DP_SIZE 128
  120. #define CDNS_DPN_B0_CONFIG(n) (0x100 + CDNS_DP_SIZE * (n))
  121. #define CDNS_DPN_B0_CH_EN(n) (0x104 + CDNS_DP_SIZE * (n))
  122. #define CDNS_DPN_B0_SAMPLE_CTRL(n) (0x108 + CDNS_DP_SIZE * (n))
  123. #define CDNS_DPN_B0_OFFSET_CTRL(n) (0x10C + CDNS_DP_SIZE * (n))
  124. #define CDNS_DPN_B0_HCTRL(n) (0x110 + CDNS_DP_SIZE * (n))
  125. #define CDNS_DPN_B0_ASYNC_CTRL(n) (0x114 + CDNS_DP_SIZE * (n))
  126. #define CDNS_DPN_B1_CONFIG(n) (0x118 + CDNS_DP_SIZE * (n))
  127. #define CDNS_DPN_B1_CH_EN(n) (0x11C + CDNS_DP_SIZE * (n))
  128. #define CDNS_DPN_B1_SAMPLE_CTRL(n) (0x120 + CDNS_DP_SIZE * (n))
  129. #define CDNS_DPN_B1_OFFSET_CTRL(n) (0x124 + CDNS_DP_SIZE * (n))
  130. #define CDNS_DPN_B1_HCTRL(n) (0x128 + CDNS_DP_SIZE * (n))
  131. #define CDNS_DPN_B1_ASYNC_CTRL(n) (0x12C + CDNS_DP_SIZE * (n))
  132. #define CDNS_DPN_CONFIG_BPM BIT(18)
  133. #define CDNS_DPN_CONFIG_BGC GENMASK(17, 16)
  134. #define CDNS_DPN_CONFIG_WL GENMASK(12, 8)
  135. #define CDNS_DPN_CONFIG_PORT_DAT GENMASK(3, 2)
  136. #define CDNS_DPN_CONFIG_PORT_FLOW GENMASK(1, 0)
  137. #define CDNS_DPN_SAMPLE_CTRL_SI GENMASK(15, 0)
  138. #define CDNS_DPN_OFFSET_CTRL_1 GENMASK(7, 0)
  139. #define CDNS_DPN_OFFSET_CTRL_2 GENMASK(15, 8)
  140. #define CDNS_DPN_HCTRL_HSTOP GENMASK(3, 0)
  141. #define CDNS_DPN_HCTRL_HSTART GENMASK(7, 4)
  142. #define CDNS_DPN_HCTRL_LCTRL GENMASK(10, 8)
  143. #define CDNS_PORTCTRL 0x130
  144. #define CDNS_PORTCTRL_TEST_FAILED BIT(1)
  145. #define CDNS_PORTCTRL_DIRN BIT(7)
  146. #define CDNS_PORTCTRL_BANK_INVERT BIT(8)
  147. #define CDNS_PORT_OFFSET 0x80
  148. #define CDNS_PDI_CONFIG(n) (0x1100 + (n) * 16)
  149. #define CDNS_PDI_CONFIG_SOFT_RESET BIT(24)
  150. #define CDNS_PDI_CONFIG_CHANNEL GENMASK(15, 8)
  151. #define CDNS_PDI_CONFIG_PORT GENMASK(4, 0)
  152. /* Driver defaults */
  153. #define CDNS_TX_TIMEOUT 500
  154. #define CDNS_SCP_RX_FIFOLEVEL 0x2
  155. /*
  156. * register accessor helpers
  157. */
  158. static inline u32 cdns_readl(struct sdw_cdns *cdns, int offset)
  159. {
  160. return readl(cdns->registers + offset);
  161. }
  162. static inline void cdns_writel(struct sdw_cdns *cdns, int offset, u32 value)
  163. {
  164. writel(value, cdns->registers + offset);
  165. }
  166. static inline void cdns_updatel(struct sdw_cdns *cdns,
  167. int offset, u32 mask, u32 val)
  168. {
  169. u32 tmp;
  170. tmp = cdns_readl(cdns, offset);
  171. tmp = (tmp & ~mask) | val;
  172. cdns_writel(cdns, offset, tmp);
  173. }
  174. static int cdns_set_wait(struct sdw_cdns *cdns, int offset, u32 mask, u32 value)
  175. {
  176. int timeout = 10;
  177. u32 reg_read;
  178. /* Wait for bit to be set */
  179. do {
  180. reg_read = readl(cdns->registers + offset);
  181. if ((reg_read & mask) == value)
  182. return 0;
  183. timeout--;
  184. usleep_range(50, 100);
  185. } while (timeout != 0);
  186. return -ETIMEDOUT;
  187. }
  188. static int cdns_clear_bit(struct sdw_cdns *cdns, int offset, u32 value)
  189. {
  190. writel(value, cdns->registers + offset);
  191. /* Wait for bit to be self cleared */
  192. return cdns_set_wait(cdns, offset, value, 0);
  193. }
  194. /*
  195. * all changes to the MCP_CONFIG, MCP_CONTROL, MCP_CMDCTRL and MCP_PHYCTRL
  196. * need to be confirmed with a write to MCP_CONFIG_UPDATE
  197. */
  198. static int cdns_config_update(struct sdw_cdns *cdns)
  199. {
  200. int ret;
  201. if (sdw_cdns_is_clock_stop(cdns)) {
  202. dev_err(cdns->dev, "Cannot program MCP_CONFIG_UPDATE in ClockStopMode\n");
  203. return -EINVAL;
  204. }
  205. ret = cdns_clear_bit(cdns, CDNS_MCP_CONFIG_UPDATE,
  206. CDNS_MCP_CONFIG_UPDATE_BIT);
  207. if (ret < 0)
  208. dev_err(cdns->dev, "Config update timedout\n");
  209. return ret;
  210. }
  211. /*
  212. * debugfs
  213. */
  214. #ifdef CONFIG_DEBUG_FS
  215. #define RD_BUF (2 * PAGE_SIZE)
  216. static ssize_t cdns_sprintf(struct sdw_cdns *cdns,
  217. char *buf, size_t pos, unsigned int reg)
  218. {
  219. return scnprintf(buf + pos, RD_BUF - pos,
  220. "%4x\t%8x\n", reg, cdns_readl(cdns, reg));
  221. }
  222. static int cdns_reg_show(struct seq_file *s, void *data)
  223. {
  224. struct sdw_cdns *cdns = s->private;
  225. char *buf;
  226. ssize_t ret;
  227. int num_ports;
  228. int i, j;
  229. buf = kzalloc(RD_BUF, GFP_KERNEL);
  230. if (!buf)
  231. return -ENOMEM;
  232. ret = scnprintf(buf, RD_BUF, "Register Value\n");
  233. ret += scnprintf(buf + ret, RD_BUF - ret, "\nMCP Registers\n");
  234. /* 8 MCP registers */
  235. for (i = CDNS_MCP_CONFIG; i <= CDNS_MCP_PHYCTRL; i += sizeof(u32))
  236. ret += cdns_sprintf(cdns, buf, ret, i);
  237. ret += scnprintf(buf + ret, RD_BUF - ret,
  238. "\nStatus & Intr Registers\n");
  239. /* 13 Status & Intr registers (offsets 0x70 and 0x74 not defined) */
  240. for (i = CDNS_MCP_STAT; i <= CDNS_MCP_FIFOSTAT; i += sizeof(u32))
  241. ret += cdns_sprintf(cdns, buf, ret, i);
  242. ret += scnprintf(buf + ret, RD_BUF - ret,
  243. "\nSSP & Clk ctrl Registers\n");
  244. ret += cdns_sprintf(cdns, buf, ret, CDNS_MCP_SSP_CTRL0);
  245. ret += cdns_sprintf(cdns, buf, ret, CDNS_MCP_SSP_CTRL1);
  246. ret += cdns_sprintf(cdns, buf, ret, CDNS_MCP_CLK_CTRL0);
  247. ret += cdns_sprintf(cdns, buf, ret, CDNS_MCP_CLK_CTRL1);
  248. ret += scnprintf(buf + ret, RD_BUF - ret,
  249. "\nDPn B0 Registers\n");
  250. num_ports = cdns->num_ports;
  251. for (i = 0; i < num_ports; i++) {
  252. ret += scnprintf(buf + ret, RD_BUF - ret,
  253. "\nDP-%d\n", i);
  254. for (j = CDNS_DPN_B0_CONFIG(i);
  255. j < CDNS_DPN_B0_ASYNC_CTRL(i); j += sizeof(u32))
  256. ret += cdns_sprintf(cdns, buf, ret, j);
  257. }
  258. ret += scnprintf(buf + ret, RD_BUF - ret,
  259. "\nDPn B1 Registers\n");
  260. for (i = 0; i < num_ports; i++) {
  261. ret += scnprintf(buf + ret, RD_BUF - ret,
  262. "\nDP-%d\n", i);
  263. for (j = CDNS_DPN_B1_CONFIG(i);
  264. j < CDNS_DPN_B1_ASYNC_CTRL(i); j += sizeof(u32))
  265. ret += cdns_sprintf(cdns, buf, ret, j);
  266. }
  267. ret += scnprintf(buf + ret, RD_BUF - ret,
  268. "\nDPn Control Registers\n");
  269. for (i = 0; i < num_ports; i++)
  270. ret += cdns_sprintf(cdns, buf, ret,
  271. CDNS_PORTCTRL + i * CDNS_PORT_OFFSET);
  272. ret += scnprintf(buf + ret, RD_BUF - ret,
  273. "\nPDIn Config Registers\n");
  274. /* number of PDI and ports is interchangeable */
  275. for (i = 0; i < num_ports; i++)
  276. ret += cdns_sprintf(cdns, buf, ret, CDNS_PDI_CONFIG(i));
  277. seq_printf(s, "%s", buf);
  278. kfree(buf);
  279. return 0;
  280. }
  281. DEFINE_SHOW_ATTRIBUTE(cdns_reg);
  282. static int cdns_hw_reset(void *data, u64 value)
  283. {
  284. struct sdw_cdns *cdns = data;
  285. int ret;
  286. if (value != 1)
  287. return -EINVAL;
  288. /* Userspace changed the hardware state behind the kernel's back */
  289. add_taint(TAINT_USER, LOCKDEP_STILL_OK);
  290. ret = sdw_cdns_exit_reset(cdns);
  291. dev_dbg(cdns->dev, "link hw_reset done: %d\n", ret);
  292. return ret;
  293. }
  294. DEFINE_DEBUGFS_ATTRIBUTE(cdns_hw_reset_fops, NULL, cdns_hw_reset, "%llu\n");
  295. static int cdns_parity_error_injection(void *data, u64 value)
  296. {
  297. struct sdw_cdns *cdns = data;
  298. struct sdw_bus *bus;
  299. int ret;
  300. if (value != 1)
  301. return -EINVAL;
  302. bus = &cdns->bus;
  303. /*
  304. * Resume Master device. If this results in a bus reset, the
  305. * Slave devices will re-attach and be re-enumerated.
  306. */
  307. ret = pm_runtime_resume_and_get(bus->dev);
  308. if (ret < 0 && ret != -EACCES) {
  309. dev_err_ratelimited(cdns->dev,
  310. "pm_runtime_resume_and_get failed in %s, ret %d\n",
  311. __func__, ret);
  312. return ret;
  313. }
  314. /*
  315. * wait long enough for Slave(s) to be in steady state. This
  316. * does not need to be super precise.
  317. */
  318. msleep(200);
  319. /*
  320. * Take the bus lock here to make sure that any bus transactions
  321. * will be queued while we inject a parity error on a dummy read
  322. */
  323. mutex_lock(&bus->bus_lock);
  324. /* program hardware to inject parity error */
  325. cdns_updatel(cdns, CDNS_MCP_CMDCTRL,
  326. CDNS_MCP_CMDCTRL_INSERT_PARITY_ERR,
  327. CDNS_MCP_CMDCTRL_INSERT_PARITY_ERR);
  328. /* commit changes */
  329. cdns_updatel(cdns, CDNS_MCP_CONFIG_UPDATE,
  330. CDNS_MCP_CONFIG_UPDATE_BIT,
  331. CDNS_MCP_CONFIG_UPDATE_BIT);
  332. /* do a broadcast dummy read to avoid bus clashes */
  333. ret = sdw_bread_no_pm_unlocked(&cdns->bus, 0xf, SDW_SCP_DEVID_0);
  334. dev_info(cdns->dev, "parity error injection, read: %d\n", ret);
  335. /* program hardware to disable parity error */
  336. cdns_updatel(cdns, CDNS_MCP_CMDCTRL,
  337. CDNS_MCP_CMDCTRL_INSERT_PARITY_ERR,
  338. 0);
  339. /* commit changes */
  340. cdns_updatel(cdns, CDNS_MCP_CONFIG_UPDATE,
  341. CDNS_MCP_CONFIG_UPDATE_BIT,
  342. CDNS_MCP_CONFIG_UPDATE_BIT);
  343. /* Continue bus operation with parity error injection disabled */
  344. mutex_unlock(&bus->bus_lock);
  345. /* Userspace changed the hardware state behind the kernel's back */
  346. add_taint(TAINT_USER, LOCKDEP_STILL_OK);
  347. /*
  348. * allow Master device to enter pm_runtime suspend. This may
  349. * also result in Slave devices suspending.
  350. */
  351. pm_runtime_mark_last_busy(bus->dev);
  352. pm_runtime_put_autosuspend(bus->dev);
  353. return 0;
  354. }
  355. DEFINE_DEBUGFS_ATTRIBUTE(cdns_parity_error_fops, NULL,
  356. cdns_parity_error_injection, "%llu\n");
  357. static int cdns_set_pdi_loopback_source(void *data, u64 value)
  358. {
  359. struct sdw_cdns *cdns = data;
  360. unsigned int pdi_out_num = cdns->pcm.num_bd + cdns->pcm.num_out;
  361. if (value > pdi_out_num)
  362. return -EINVAL;
  363. /* Userspace changed the hardware state behind the kernel's back */
  364. add_taint(TAINT_USER, LOCKDEP_STILL_OK);
  365. cdns->pdi_loopback_source = value;
  366. return 0;
  367. }
  368. DEFINE_DEBUGFS_ATTRIBUTE(cdns_pdi_loopback_source_fops, NULL, cdns_set_pdi_loopback_source, "%llu\n");
  369. static int cdns_set_pdi_loopback_target(void *data, u64 value)
  370. {
  371. struct sdw_cdns *cdns = data;
  372. unsigned int pdi_in_num = cdns->pcm.num_bd + cdns->pcm.num_in;
  373. if (value > pdi_in_num)
  374. return -EINVAL;
  375. /* Userspace changed the hardware state behind the kernel's back */
  376. add_taint(TAINT_USER, LOCKDEP_STILL_OK);
  377. cdns->pdi_loopback_target = value;
  378. return 0;
  379. }
  380. DEFINE_DEBUGFS_ATTRIBUTE(cdns_pdi_loopback_target_fops, NULL, cdns_set_pdi_loopback_target, "%llu\n");
  381. /**
  382. * sdw_cdns_debugfs_init() - Cadence debugfs init
  383. * @cdns: Cadence instance
  384. * @root: debugfs root
  385. */
  386. void sdw_cdns_debugfs_init(struct sdw_cdns *cdns, struct dentry *root)
  387. {
  388. debugfs_create_file("cdns-registers", 0400, root, cdns, &cdns_reg_fops);
  389. debugfs_create_file("cdns-hw-reset", 0200, root, cdns,
  390. &cdns_hw_reset_fops);
  391. debugfs_create_file("cdns-parity-error-injection", 0200, root, cdns,
  392. &cdns_parity_error_fops);
  393. cdns->pdi_loopback_source = -1;
  394. cdns->pdi_loopback_target = -1;
  395. debugfs_create_file("cdns-pdi-loopback-source", 0200, root, cdns,
  396. &cdns_pdi_loopback_source_fops);
  397. debugfs_create_file("cdns-pdi-loopback-target", 0200, root, cdns,
  398. &cdns_pdi_loopback_target_fops);
  399. }
  400. EXPORT_SYMBOL_GPL(sdw_cdns_debugfs_init);
  401. #endif /* CONFIG_DEBUG_FS */
  402. /*
  403. * IO Calls
  404. */
  405. static enum sdw_command_response
  406. cdns_fill_msg_resp(struct sdw_cdns *cdns,
  407. struct sdw_msg *msg, int count, int offset)
  408. {
  409. int nack = 0, no_ack = 0;
  410. int i;
  411. /* check message response */
  412. for (i = 0; i < count; i++) {
  413. if (!(cdns->response_buf[i] & CDNS_MCP_RESP_ACK)) {
  414. no_ack = 1;
  415. dev_vdbg(cdns->dev, "Msg Ack not received, cmd %d\n", i);
  416. }
  417. if (cdns->response_buf[i] & CDNS_MCP_RESP_NACK) {
  418. nack = 1;
  419. dev_err_ratelimited(cdns->dev, "Msg NACK received, cmd %d\n", i);
  420. }
  421. }
  422. if (nack) {
  423. dev_err_ratelimited(cdns->dev, "Msg NACKed for Slave %d\n", msg->dev_num);
  424. return SDW_CMD_FAIL;
  425. }
  426. if (no_ack) {
  427. dev_dbg_ratelimited(cdns->dev, "Msg ignored for Slave %d\n", msg->dev_num);
  428. return SDW_CMD_IGNORED;
  429. }
  430. if (msg->flags == SDW_MSG_FLAG_READ) {
  431. /* fill response */
  432. for (i = 0; i < count; i++)
  433. msg->buf[i + offset] = FIELD_GET(CDNS_MCP_RESP_RDATA,
  434. cdns->response_buf[i]);
  435. }
  436. return SDW_CMD_OK;
  437. }
  438. static void cdns_read_response(struct sdw_cdns *cdns)
  439. {
  440. u32 num_resp, cmd_base;
  441. int i;
  442. /* RX_FIFO_AVAIL can be 2 entries more than the FIFO size */
  443. BUILD_BUG_ON(ARRAY_SIZE(cdns->response_buf) < CDNS_MCP_CMD_LEN + 2);
  444. num_resp = cdns_readl(cdns, CDNS_MCP_FIFOSTAT);
  445. num_resp &= CDNS_MCP_RX_FIFO_AVAIL;
  446. if (num_resp > ARRAY_SIZE(cdns->response_buf)) {
  447. dev_warn(cdns->dev, "RX AVAIL %d too long\n", num_resp);
  448. num_resp = ARRAY_SIZE(cdns->response_buf);
  449. }
  450. cmd_base = CDNS_MCP_CMD_BASE;
  451. for (i = 0; i < num_resp; i++) {
  452. cdns->response_buf[i] = cdns_readl(cdns, cmd_base);
  453. cmd_base += CDNS_MCP_CMD_WORD_LEN;
  454. }
  455. }
  456. static enum sdw_command_response
  457. _cdns_xfer_msg(struct sdw_cdns *cdns, struct sdw_msg *msg, int cmd,
  458. int offset, int count, bool defer)
  459. {
  460. unsigned long time;
  461. u32 base, i, data;
  462. u16 addr;
  463. /* Program the watermark level for RX FIFO */
  464. if (cdns->msg_count != count) {
  465. cdns_writel(cdns, CDNS_MCP_FIFOLEVEL, count);
  466. cdns->msg_count = count;
  467. }
  468. base = CDNS_MCP_CMD_BASE;
  469. addr = msg->addr + offset;
  470. for (i = 0; i < count; i++) {
  471. data = FIELD_PREP(CDNS_MCP_CMD_DEV_ADDR, msg->dev_num);
  472. data |= FIELD_PREP(CDNS_MCP_CMD_COMMAND, cmd);
  473. data |= FIELD_PREP(CDNS_MCP_CMD_REG_ADDR, addr);
  474. addr++;
  475. if (msg->flags == SDW_MSG_FLAG_WRITE)
  476. data |= msg->buf[i + offset];
  477. data |= FIELD_PREP(CDNS_MCP_CMD_SSP_TAG, msg->ssp_sync);
  478. cdns_writel(cdns, base, data);
  479. base += CDNS_MCP_CMD_WORD_LEN;
  480. }
  481. if (defer)
  482. return SDW_CMD_OK;
  483. /* wait for timeout or response */
  484. time = wait_for_completion_timeout(&cdns->tx_complete,
  485. msecs_to_jiffies(CDNS_TX_TIMEOUT));
  486. if (!time) {
  487. dev_err(cdns->dev, "IO transfer timed out, cmd %d device %d addr %x len %d\n",
  488. cmd, msg->dev_num, msg->addr, msg->len);
  489. msg->len = 0;
  490. /* Drain anything in the RX_FIFO */
  491. cdns_read_response(cdns);
  492. return SDW_CMD_TIMEOUT;
  493. }
  494. return cdns_fill_msg_resp(cdns, msg, count, offset);
  495. }
  496. static enum sdw_command_response
  497. cdns_program_scp_addr(struct sdw_cdns *cdns, struct sdw_msg *msg)
  498. {
  499. int nack = 0, no_ack = 0;
  500. unsigned long time;
  501. u32 data[2], base;
  502. int i;
  503. /* Program the watermark level for RX FIFO */
  504. if (cdns->msg_count != CDNS_SCP_RX_FIFOLEVEL) {
  505. cdns_writel(cdns, CDNS_MCP_FIFOLEVEL, CDNS_SCP_RX_FIFOLEVEL);
  506. cdns->msg_count = CDNS_SCP_RX_FIFOLEVEL;
  507. }
  508. data[0] = FIELD_PREP(CDNS_MCP_CMD_DEV_ADDR, msg->dev_num);
  509. data[0] |= FIELD_PREP(CDNS_MCP_CMD_COMMAND, 0x3);
  510. data[1] = data[0];
  511. data[0] |= FIELD_PREP(CDNS_MCP_CMD_REG_ADDR, SDW_SCP_ADDRPAGE1);
  512. data[1] |= FIELD_PREP(CDNS_MCP_CMD_REG_ADDR, SDW_SCP_ADDRPAGE2);
  513. data[0] |= msg->addr_page1;
  514. data[1] |= msg->addr_page2;
  515. base = CDNS_MCP_CMD_BASE;
  516. cdns_writel(cdns, base, data[0]);
  517. base += CDNS_MCP_CMD_WORD_LEN;
  518. cdns_writel(cdns, base, data[1]);
  519. time = wait_for_completion_timeout(&cdns->tx_complete,
  520. msecs_to_jiffies(CDNS_TX_TIMEOUT));
  521. if (!time) {
  522. dev_err(cdns->dev, "SCP Msg trf timed out\n");
  523. msg->len = 0;
  524. return SDW_CMD_TIMEOUT;
  525. }
  526. /* check response the writes */
  527. for (i = 0; i < 2; i++) {
  528. if (!(cdns->response_buf[i] & CDNS_MCP_RESP_ACK)) {
  529. no_ack = 1;
  530. dev_err(cdns->dev, "Program SCP Ack not received\n");
  531. if (cdns->response_buf[i] & CDNS_MCP_RESP_NACK) {
  532. nack = 1;
  533. dev_err(cdns->dev, "Program SCP NACK received\n");
  534. }
  535. }
  536. }
  537. /* For NACK, NO ack, don't return err if we are in Broadcast mode */
  538. if (nack) {
  539. dev_err_ratelimited(cdns->dev,
  540. "SCP_addrpage NACKed for Slave %d\n", msg->dev_num);
  541. return SDW_CMD_FAIL;
  542. }
  543. if (no_ack) {
  544. dev_dbg_ratelimited(cdns->dev,
  545. "SCP_addrpage ignored for Slave %d\n", msg->dev_num);
  546. return SDW_CMD_IGNORED;
  547. }
  548. return SDW_CMD_OK;
  549. }
  550. static int cdns_prep_msg(struct sdw_cdns *cdns, struct sdw_msg *msg, int *cmd)
  551. {
  552. int ret;
  553. if (msg->page) {
  554. ret = cdns_program_scp_addr(cdns, msg);
  555. if (ret) {
  556. msg->len = 0;
  557. return ret;
  558. }
  559. }
  560. switch (msg->flags) {
  561. case SDW_MSG_FLAG_READ:
  562. *cmd = CDNS_MCP_CMD_READ;
  563. break;
  564. case SDW_MSG_FLAG_WRITE:
  565. *cmd = CDNS_MCP_CMD_WRITE;
  566. break;
  567. default:
  568. dev_err(cdns->dev, "Invalid msg cmd: %d\n", msg->flags);
  569. return -EINVAL;
  570. }
  571. return 0;
  572. }
  573. enum sdw_command_response
  574. cdns_xfer_msg(struct sdw_bus *bus, struct sdw_msg *msg)
  575. {
  576. struct sdw_cdns *cdns = bus_to_cdns(bus);
  577. int cmd = 0, ret, i;
  578. ret = cdns_prep_msg(cdns, msg, &cmd);
  579. if (ret)
  580. return SDW_CMD_FAIL_OTHER;
  581. for (i = 0; i < msg->len / CDNS_MCP_CMD_LEN; i++) {
  582. ret = _cdns_xfer_msg(cdns, msg, cmd, i * CDNS_MCP_CMD_LEN,
  583. CDNS_MCP_CMD_LEN, false);
  584. if (ret != SDW_CMD_OK)
  585. return ret;
  586. }
  587. if (!(msg->len % CDNS_MCP_CMD_LEN))
  588. return SDW_CMD_OK;
  589. return _cdns_xfer_msg(cdns, msg, cmd, i * CDNS_MCP_CMD_LEN,
  590. msg->len % CDNS_MCP_CMD_LEN, false);
  591. }
  592. EXPORT_SYMBOL(cdns_xfer_msg);
  593. enum sdw_command_response
  594. cdns_xfer_msg_defer(struct sdw_bus *bus,
  595. struct sdw_msg *msg, struct sdw_defer *defer)
  596. {
  597. struct sdw_cdns *cdns = bus_to_cdns(bus);
  598. int cmd = 0, ret;
  599. /* for defer only 1 message is supported */
  600. if (msg->len > 1)
  601. return -ENOTSUPP;
  602. ret = cdns_prep_msg(cdns, msg, &cmd);
  603. if (ret)
  604. return SDW_CMD_FAIL_OTHER;
  605. cdns->defer = defer;
  606. cdns->defer->length = msg->len;
  607. return _cdns_xfer_msg(cdns, msg, cmd, 0, msg->len, true);
  608. }
  609. EXPORT_SYMBOL(cdns_xfer_msg_defer);
  610. enum sdw_command_response
  611. cdns_reset_page_addr(struct sdw_bus *bus, unsigned int dev_num)
  612. {
  613. struct sdw_cdns *cdns = bus_to_cdns(bus);
  614. struct sdw_msg msg;
  615. /* Create dummy message with valid device number */
  616. memset(&msg, 0, sizeof(msg));
  617. msg.dev_num = dev_num;
  618. return cdns_program_scp_addr(cdns, &msg);
  619. }
  620. EXPORT_SYMBOL(cdns_reset_page_addr);
  621. u32 cdns_read_ping_status(struct sdw_bus *bus)
  622. {
  623. struct sdw_cdns *cdns = bus_to_cdns(bus);
  624. return cdns_readl(cdns, CDNS_MCP_SLAVE_STAT);
  625. }
  626. EXPORT_SYMBOL(cdns_read_ping_status);
  627. /*
  628. * IRQ handling
  629. */
  630. static int cdns_update_slave_status(struct sdw_cdns *cdns,
  631. u64 slave_intstat)
  632. {
  633. enum sdw_slave_status status[SDW_MAX_DEVICES + 1];
  634. bool is_slave = false;
  635. u32 mask;
  636. u32 val;
  637. int i, set_status;
  638. memset(status, 0, sizeof(status));
  639. for (i = 0; i <= SDW_MAX_DEVICES; i++) {
  640. mask = (slave_intstat >> (i * CDNS_MCP_SLAVE_STATUS_NUM)) &
  641. CDNS_MCP_SLAVE_STATUS_BITS;
  642. set_status = 0;
  643. if (mask) {
  644. is_slave = true;
  645. if (mask & CDNS_MCP_SLAVE_INTSTAT_RESERVED) {
  646. status[i] = SDW_SLAVE_RESERVED;
  647. set_status++;
  648. }
  649. if (mask & CDNS_MCP_SLAVE_INTSTAT_ATTACHED) {
  650. status[i] = SDW_SLAVE_ATTACHED;
  651. set_status++;
  652. }
  653. if (mask & CDNS_MCP_SLAVE_INTSTAT_ALERT) {
  654. status[i] = SDW_SLAVE_ALERT;
  655. set_status++;
  656. }
  657. if (mask & CDNS_MCP_SLAVE_INTSTAT_NPRESENT) {
  658. status[i] = SDW_SLAVE_UNATTACHED;
  659. set_status++;
  660. }
  661. }
  662. /*
  663. * check that there was a single reported Slave status and when
  664. * there is not use the latest status extracted from PING commands
  665. */
  666. if (set_status != 1) {
  667. val = cdns_readl(cdns, CDNS_MCP_SLAVE_STAT);
  668. val >>= (i * 2);
  669. switch (val & 0x3) {
  670. case 0:
  671. status[i] = SDW_SLAVE_UNATTACHED;
  672. break;
  673. case 1:
  674. status[i] = SDW_SLAVE_ATTACHED;
  675. break;
  676. case 2:
  677. status[i] = SDW_SLAVE_ALERT;
  678. break;
  679. case 3:
  680. default:
  681. status[i] = SDW_SLAVE_RESERVED;
  682. break;
  683. }
  684. }
  685. }
  686. if (is_slave)
  687. return sdw_handle_slave_status(&cdns->bus, status);
  688. return 0;
  689. }
  690. /**
  691. * sdw_cdns_irq() - Cadence interrupt handler
  692. * @irq: irq number
  693. * @dev_id: irq context
  694. */
  695. irqreturn_t sdw_cdns_irq(int irq, void *dev_id)
  696. {
  697. struct sdw_cdns *cdns = dev_id;
  698. u32 int_status;
  699. /* Check if the link is up */
  700. if (!cdns->link_up)
  701. return IRQ_NONE;
  702. int_status = cdns_readl(cdns, CDNS_MCP_INTSTAT);
  703. /* check for reserved values read as zero */
  704. if (int_status & CDNS_MCP_INT_RESERVED)
  705. return IRQ_NONE;
  706. if (!(int_status & CDNS_MCP_INT_IRQ))
  707. return IRQ_NONE;
  708. if (int_status & CDNS_MCP_INT_RX_WL) {
  709. cdns_read_response(cdns);
  710. if (cdns->defer) {
  711. cdns_fill_msg_resp(cdns, cdns->defer->msg,
  712. cdns->defer->length, 0);
  713. complete(&cdns->defer->complete);
  714. cdns->defer = NULL;
  715. } else {
  716. complete(&cdns->tx_complete);
  717. }
  718. }
  719. if (int_status & CDNS_MCP_INT_PARITY) {
  720. /* Parity error detected by Master */
  721. dev_err_ratelimited(cdns->dev, "Parity error\n");
  722. }
  723. if (int_status & CDNS_MCP_INT_CTRL_CLASH) {
  724. /* Slave is driving bit slot during control word */
  725. dev_err_ratelimited(cdns->dev, "Bus clash for control word\n");
  726. }
  727. if (int_status & CDNS_MCP_INT_DATA_CLASH) {
  728. /*
  729. * Multiple slaves trying to drive bit slot, or issue with
  730. * ownership of data bits or Slave gone bonkers
  731. */
  732. dev_err_ratelimited(cdns->dev, "Bus clash for data word\n");
  733. }
  734. if (cdns->bus.params.m_data_mode != SDW_PORT_DATA_MODE_NORMAL &&
  735. int_status & CDNS_MCP_INT_DPINT) {
  736. u32 port_intstat;
  737. /* just log which ports report an error */
  738. port_intstat = cdns_readl(cdns, CDNS_MCP_PORT_INTSTAT);
  739. dev_err_ratelimited(cdns->dev, "DP interrupt: PortIntStat %8x\n",
  740. port_intstat);
  741. /* clear status w/ write1 */
  742. cdns_writel(cdns, CDNS_MCP_PORT_INTSTAT, port_intstat);
  743. }
  744. if (int_status & CDNS_MCP_INT_SLAVE_MASK) {
  745. /* Mask the Slave interrupt and wake thread */
  746. cdns_updatel(cdns, CDNS_MCP_INTMASK,
  747. CDNS_MCP_INT_SLAVE_MASK, 0);
  748. int_status &= ~CDNS_MCP_INT_SLAVE_MASK;
  749. /*
  750. * Deal with possible race condition between interrupt
  751. * handling and disabling interrupts on suspend.
  752. *
  753. * If the master is in the process of disabling
  754. * interrupts, don't schedule a workqueue
  755. */
  756. if (cdns->interrupt_enabled)
  757. schedule_work(&cdns->work);
  758. }
  759. cdns_writel(cdns, CDNS_MCP_INTSTAT, int_status);
  760. return IRQ_HANDLED;
  761. }
  762. EXPORT_SYMBOL(sdw_cdns_irq);
  763. /**
  764. * cdns_update_slave_status_work - update slave status in a work since we will need to handle
  765. * other interrupts eg. CDNS_MCP_INT_RX_WL during the update slave
  766. * process.
  767. * @work: cdns worker thread
  768. */
  769. static void cdns_update_slave_status_work(struct work_struct *work)
  770. {
  771. struct sdw_cdns *cdns =
  772. container_of(work, struct sdw_cdns, work);
  773. u32 slave0, slave1;
  774. u64 slave_intstat;
  775. u32 device0_status;
  776. int retry_count = 0;
  777. /*
  778. * Clear main interrupt first so we don't lose any assertions
  779. * that happen during this function.
  780. */
  781. cdns_writel(cdns, CDNS_MCP_INTSTAT, CDNS_MCP_INT_SLAVE_MASK);
  782. slave0 = cdns_readl(cdns, CDNS_MCP_SLAVE_INTSTAT0);
  783. slave1 = cdns_readl(cdns, CDNS_MCP_SLAVE_INTSTAT1);
  784. /*
  785. * Clear the bits before handling so we don't lose any
  786. * bits that re-assert.
  787. */
  788. cdns_writel(cdns, CDNS_MCP_SLAVE_INTSTAT0, slave0);
  789. cdns_writel(cdns, CDNS_MCP_SLAVE_INTSTAT1, slave1);
  790. /* combine the two status */
  791. slave_intstat = ((u64)slave1 << 32) | slave0;
  792. dev_dbg_ratelimited(cdns->dev, "Slave status change: 0x%llx\n", slave_intstat);
  793. update_status:
  794. cdns_update_slave_status(cdns, slave_intstat);
  795. /*
  796. * When there is more than one peripheral per link, it's
  797. * possible that a deviceB becomes attached after we deal with
  798. * the attachment of deviceA. Since the hardware does a
  799. * logical AND, the attachment of the second device does not
  800. * change the status seen by the driver.
  801. *
  802. * In that case, clearing the registers above would result in
  803. * the deviceB never being detected - until a change of status
  804. * is observed on the bus.
  805. *
  806. * To avoid this race condition, re-check if any device0 needs
  807. * attention with PING commands. There is no need to check for
  808. * ALERTS since they are not allowed until a non-zero
  809. * device_number is assigned.
  810. *
  811. * Do not clear the INTSTAT0/1. While looping to enumerate devices on
  812. * #0 there could be status changes on other devices - these must
  813. * be kept in the INTSTAT so they can be handled when all #0 devices
  814. * have been handled.
  815. */
  816. device0_status = cdns_readl(cdns, CDNS_MCP_SLAVE_STAT);
  817. device0_status &= 3;
  818. if (device0_status == SDW_SLAVE_ATTACHED) {
  819. if (retry_count++ < SDW_MAX_DEVICES) {
  820. dev_dbg_ratelimited(cdns->dev,
  821. "Device0 detected after clearing status, iteration %d\n",
  822. retry_count);
  823. slave_intstat = CDNS_MCP_SLAVE_INTSTAT_ATTACHED;
  824. goto update_status;
  825. } else {
  826. dev_err_ratelimited(cdns->dev,
  827. "Device0 detected after %d iterations\n",
  828. retry_count);
  829. }
  830. }
  831. /* unmask Slave interrupt now */
  832. cdns_updatel(cdns, CDNS_MCP_INTMASK,
  833. CDNS_MCP_INT_SLAVE_MASK, CDNS_MCP_INT_SLAVE_MASK);
  834. }
  835. /* paranoia check to make sure self-cleared bits are indeed cleared */
  836. void sdw_cdns_check_self_clearing_bits(struct sdw_cdns *cdns, const char *string,
  837. bool initial_delay, int reset_iterations)
  838. {
  839. u32 mcp_control;
  840. u32 mcp_config_update;
  841. int i;
  842. if (initial_delay)
  843. usleep_range(1000, 1500);
  844. mcp_control = cdns_readl(cdns, CDNS_MCP_CONTROL);
  845. /* the following bits should be cleared immediately */
  846. if (mcp_control & CDNS_MCP_CONTROL_CMD_RST)
  847. dev_err(cdns->dev, "%s failed: MCP_CONTROL_CMD_RST is not cleared\n", string);
  848. if (mcp_control & CDNS_MCP_CONTROL_SOFT_RST)
  849. dev_err(cdns->dev, "%s failed: MCP_CONTROL_SOFT_RST is not cleared\n", string);
  850. if (mcp_control & CDNS_MCP_CONTROL_SW_RST)
  851. dev_err(cdns->dev, "%s failed: MCP_CONTROL_SW_RST is not cleared\n", string);
  852. if (mcp_control & CDNS_MCP_CONTROL_CLK_STOP_CLR)
  853. dev_err(cdns->dev, "%s failed: MCP_CONTROL_CLK_STOP_CLR is not cleared\n", string);
  854. mcp_config_update = cdns_readl(cdns, CDNS_MCP_CONFIG_UPDATE);
  855. if (mcp_config_update & CDNS_MCP_CONFIG_UPDATE_BIT)
  856. dev_err(cdns->dev, "%s failed: MCP_CONFIG_UPDATE_BIT is not cleared\n", string);
  857. i = 0;
  858. while (mcp_control & CDNS_MCP_CONTROL_HW_RST) {
  859. if (i == reset_iterations) {
  860. dev_err(cdns->dev, "%s failed: MCP_CONTROL_HW_RST is not cleared\n", string);
  861. break;
  862. }
  863. dev_dbg(cdns->dev, "%s: MCP_CONTROL_HW_RST is not cleared at iteration %d\n", string, i);
  864. i++;
  865. usleep_range(1000, 1500);
  866. mcp_control = cdns_readl(cdns, CDNS_MCP_CONTROL);
  867. }
  868. }
  869. EXPORT_SYMBOL(sdw_cdns_check_self_clearing_bits);
  870. /*
  871. * init routines
  872. */
  873. /**
  874. * sdw_cdns_exit_reset() - Program reset parameters and start bus operations
  875. * @cdns: Cadence instance
  876. */
  877. int sdw_cdns_exit_reset(struct sdw_cdns *cdns)
  878. {
  879. /* keep reset delay unchanged to 4096 cycles */
  880. /* use hardware generated reset */
  881. cdns_updatel(cdns, CDNS_MCP_CONTROL,
  882. CDNS_MCP_CONTROL_HW_RST,
  883. CDNS_MCP_CONTROL_HW_RST);
  884. /* commit changes */
  885. cdns_updatel(cdns, CDNS_MCP_CONFIG_UPDATE,
  886. CDNS_MCP_CONFIG_UPDATE_BIT,
  887. CDNS_MCP_CONFIG_UPDATE_BIT);
  888. /* don't wait here */
  889. return 0;
  890. }
  891. EXPORT_SYMBOL(sdw_cdns_exit_reset);
  892. /**
  893. * cdns_enable_slave_interrupts() - Enable SDW slave interrupts
  894. * @cdns: Cadence instance
  895. * @state: boolean for true/false
  896. */
  897. static void cdns_enable_slave_interrupts(struct sdw_cdns *cdns, bool state)
  898. {
  899. u32 mask;
  900. mask = cdns_readl(cdns, CDNS_MCP_INTMASK);
  901. if (state)
  902. mask |= CDNS_MCP_INT_SLAVE_MASK;
  903. else
  904. mask &= ~CDNS_MCP_INT_SLAVE_MASK;
  905. cdns_writel(cdns, CDNS_MCP_INTMASK, mask);
  906. }
  907. /**
  908. * sdw_cdns_enable_interrupt() - Enable SDW interrupts
  909. * @cdns: Cadence instance
  910. * @state: True if we are trying to enable interrupt.
  911. */
  912. int sdw_cdns_enable_interrupt(struct sdw_cdns *cdns, bool state)
  913. {
  914. u32 slave_intmask0 = 0;
  915. u32 slave_intmask1 = 0;
  916. u32 mask = 0;
  917. if (!state)
  918. goto update_masks;
  919. slave_intmask0 = CDNS_MCP_SLAVE_INTMASK0_MASK;
  920. slave_intmask1 = CDNS_MCP_SLAVE_INTMASK1_MASK;
  921. /* enable detection of all slave state changes */
  922. mask = CDNS_MCP_INT_SLAVE_MASK;
  923. /* enable detection of bus issues */
  924. mask |= CDNS_MCP_INT_CTRL_CLASH | CDNS_MCP_INT_DATA_CLASH |
  925. CDNS_MCP_INT_PARITY;
  926. /* port interrupt limited to test modes for now */
  927. if (cdns->bus.params.m_data_mode != SDW_PORT_DATA_MODE_NORMAL)
  928. mask |= CDNS_MCP_INT_DPINT;
  929. /* enable detection of RX fifo level */
  930. mask |= CDNS_MCP_INT_RX_WL;
  931. /*
  932. * CDNS_MCP_INT_IRQ needs to be set otherwise all previous
  933. * settings are irrelevant
  934. */
  935. mask |= CDNS_MCP_INT_IRQ;
  936. if (interrupt_mask) /* parameter override */
  937. mask = interrupt_mask;
  938. update_masks:
  939. /* clear slave interrupt status before enabling interrupt */
  940. if (state) {
  941. u32 slave_state;
  942. slave_state = cdns_readl(cdns, CDNS_MCP_SLAVE_INTSTAT0);
  943. cdns_writel(cdns, CDNS_MCP_SLAVE_INTSTAT0, slave_state);
  944. slave_state = cdns_readl(cdns, CDNS_MCP_SLAVE_INTSTAT1);
  945. cdns_writel(cdns, CDNS_MCP_SLAVE_INTSTAT1, slave_state);
  946. }
  947. cdns->interrupt_enabled = state;
  948. /*
  949. * Complete any on-going status updates before updating masks,
  950. * and cancel queued status updates.
  951. *
  952. * There could be a race with a new interrupt thrown before
  953. * the 3 mask updates below are complete, so in the interrupt
  954. * we use the 'interrupt_enabled' status to prevent new work
  955. * from being queued.
  956. */
  957. if (!state)
  958. cancel_work_sync(&cdns->work);
  959. cdns_writel(cdns, CDNS_MCP_SLAVE_INTMASK0, slave_intmask0);
  960. cdns_writel(cdns, CDNS_MCP_SLAVE_INTMASK1, slave_intmask1);
  961. cdns_writel(cdns, CDNS_MCP_INTMASK, mask);
  962. return 0;
  963. }
  964. EXPORT_SYMBOL(sdw_cdns_enable_interrupt);
  965. static int cdns_allocate_pdi(struct sdw_cdns *cdns,
  966. struct sdw_cdns_pdi **stream,
  967. u32 num, u32 pdi_offset)
  968. {
  969. struct sdw_cdns_pdi *pdi;
  970. int i;
  971. if (!num)
  972. return 0;
  973. pdi = devm_kcalloc(cdns->dev, num, sizeof(*pdi), GFP_KERNEL);
  974. if (!pdi)
  975. return -ENOMEM;
  976. for (i = 0; i < num; i++) {
  977. pdi[i].num = i + pdi_offset;
  978. }
  979. *stream = pdi;
  980. return 0;
  981. }
  982. /**
  983. * sdw_cdns_pdi_init() - PDI initialization routine
  984. *
  985. * @cdns: Cadence instance
  986. * @config: Stream configurations
  987. */
  988. int sdw_cdns_pdi_init(struct sdw_cdns *cdns,
  989. struct sdw_cdns_stream_config config)
  990. {
  991. struct sdw_cdns_streams *stream;
  992. int offset;
  993. int ret;
  994. cdns->pcm.num_bd = config.pcm_bd;
  995. cdns->pcm.num_in = config.pcm_in;
  996. cdns->pcm.num_out = config.pcm_out;
  997. /* Allocate PDIs for PCMs */
  998. stream = &cdns->pcm;
  999. /* we allocate PDI0 and PDI1 which are used for Bulk */
  1000. offset = 0;
  1001. ret = cdns_allocate_pdi(cdns, &stream->bd,
  1002. stream->num_bd, offset);
  1003. if (ret)
  1004. return ret;
  1005. offset += stream->num_bd;
  1006. ret = cdns_allocate_pdi(cdns, &stream->in,
  1007. stream->num_in, offset);
  1008. if (ret)
  1009. return ret;
  1010. offset += stream->num_in;
  1011. ret = cdns_allocate_pdi(cdns, &stream->out,
  1012. stream->num_out, offset);
  1013. if (ret)
  1014. return ret;
  1015. /* Update total number of PCM PDIs */
  1016. stream->num_pdi = stream->num_bd + stream->num_in + stream->num_out;
  1017. cdns->num_ports = stream->num_pdi;
  1018. return 0;
  1019. }
  1020. EXPORT_SYMBOL(sdw_cdns_pdi_init);
  1021. static u32 cdns_set_initial_frame_shape(int n_rows, int n_cols)
  1022. {
  1023. u32 val;
  1024. int c;
  1025. int r;
  1026. r = sdw_find_row_index(n_rows);
  1027. c = sdw_find_col_index(n_cols);
  1028. val = FIELD_PREP(CDNS_MCP_FRAME_SHAPE_ROW_MASK, r);
  1029. val |= FIELD_PREP(CDNS_MCP_FRAME_SHAPE_COL_MASK, c);
  1030. return val;
  1031. }
  1032. static void cdns_init_clock_ctrl(struct sdw_cdns *cdns)
  1033. {
  1034. struct sdw_bus *bus = &cdns->bus;
  1035. struct sdw_master_prop *prop = &bus->prop;
  1036. u32 val;
  1037. u32 ssp_interval;
  1038. int divider;
  1039. /* Set clock divider */
  1040. divider = (prop->mclk_freq / prop->max_clk_freq) - 1;
  1041. cdns_updatel(cdns, CDNS_MCP_CLK_CTRL0,
  1042. CDNS_MCP_CLK_MCLKD_MASK, divider);
  1043. cdns_updatel(cdns, CDNS_MCP_CLK_CTRL1,
  1044. CDNS_MCP_CLK_MCLKD_MASK, divider);
  1045. /*
  1046. * Frame shape changes after initialization have to be done
  1047. * with the bank switch mechanism
  1048. */
  1049. val = cdns_set_initial_frame_shape(prop->default_row,
  1050. prop->default_col);
  1051. cdns_writel(cdns, CDNS_MCP_FRAME_SHAPE_INIT, val);
  1052. /* Set SSP interval to default value */
  1053. ssp_interval = prop->default_frame_rate / SDW_CADENCE_GSYNC_HZ;
  1054. cdns_writel(cdns, CDNS_MCP_SSP_CTRL0, ssp_interval);
  1055. cdns_writel(cdns, CDNS_MCP_SSP_CTRL1, ssp_interval);
  1056. }
  1057. /**
  1058. * sdw_cdns_init() - Cadence initialization
  1059. * @cdns: Cadence instance
  1060. */
  1061. int sdw_cdns_init(struct sdw_cdns *cdns)
  1062. {
  1063. u32 val;
  1064. cdns_init_clock_ctrl(cdns);
  1065. sdw_cdns_check_self_clearing_bits(cdns, __func__, false, 0);
  1066. /* reset msg_count to default value of FIFOLEVEL */
  1067. cdns->msg_count = cdns_readl(cdns, CDNS_MCP_FIFOLEVEL);
  1068. /* flush command FIFOs */
  1069. cdns_updatel(cdns, CDNS_MCP_CONTROL, CDNS_MCP_CONTROL_CMD_RST,
  1070. CDNS_MCP_CONTROL_CMD_RST);
  1071. /* Set cmd accept mode */
  1072. cdns_updatel(cdns, CDNS_MCP_CONTROL, CDNS_MCP_CONTROL_CMD_ACCEPT,
  1073. CDNS_MCP_CONTROL_CMD_ACCEPT);
  1074. /* Configure mcp config */
  1075. val = cdns_readl(cdns, CDNS_MCP_CONFIG);
  1076. /* enable bus operations with clock and data */
  1077. val &= ~CDNS_MCP_CONFIG_OP;
  1078. val |= CDNS_MCP_CONFIG_OP_NORMAL;
  1079. /* Set cmd mode for Tx and Rx cmds */
  1080. val &= ~CDNS_MCP_CONFIG_CMD;
  1081. /* Disable sniffer mode */
  1082. val &= ~CDNS_MCP_CONFIG_SNIFFER;
  1083. /* Disable auto bus release */
  1084. val &= ~CDNS_MCP_CONFIG_BUS_REL;
  1085. if (cdns->bus.multi_link)
  1086. /* Set Multi-master mode to take gsync into account */
  1087. val |= CDNS_MCP_CONFIG_MMASTER;
  1088. /* leave frame delay to hardware default of 0x1F */
  1089. /* leave command retry to hardware default of 0 */
  1090. cdns_writel(cdns, CDNS_MCP_CONFIG, val);
  1091. /* changes will be committed later */
  1092. return 0;
  1093. }
  1094. EXPORT_SYMBOL(sdw_cdns_init);
  1095. int cdns_bus_conf(struct sdw_bus *bus, struct sdw_bus_params *params)
  1096. {
  1097. struct sdw_master_prop *prop = &bus->prop;
  1098. struct sdw_cdns *cdns = bus_to_cdns(bus);
  1099. int mcp_clkctrl_off;
  1100. int divider;
  1101. if (!params->curr_dr_freq) {
  1102. dev_err(cdns->dev, "NULL curr_dr_freq\n");
  1103. return -EINVAL;
  1104. }
  1105. divider = prop->mclk_freq * SDW_DOUBLE_RATE_FACTOR /
  1106. params->curr_dr_freq;
  1107. divider--; /* divider is 1/(N+1) */
  1108. if (params->next_bank)
  1109. mcp_clkctrl_off = CDNS_MCP_CLK_CTRL1;
  1110. else
  1111. mcp_clkctrl_off = CDNS_MCP_CLK_CTRL0;
  1112. cdns_updatel(cdns, mcp_clkctrl_off, CDNS_MCP_CLK_MCLKD_MASK, divider);
  1113. return 0;
  1114. }
  1115. EXPORT_SYMBOL(cdns_bus_conf);
  1116. static int cdns_port_params(struct sdw_bus *bus,
  1117. struct sdw_port_params *p_params, unsigned int bank)
  1118. {
  1119. struct sdw_cdns *cdns = bus_to_cdns(bus);
  1120. int dpn_config_off_source;
  1121. int dpn_config_off_target;
  1122. int target_num = p_params->num;
  1123. int source_num = p_params->num;
  1124. bool override = false;
  1125. int dpn_config;
  1126. if (target_num == cdns->pdi_loopback_target &&
  1127. cdns->pdi_loopback_source != -1) {
  1128. source_num = cdns->pdi_loopback_source;
  1129. override = true;
  1130. }
  1131. if (bank) {
  1132. dpn_config_off_source = CDNS_DPN_B1_CONFIG(source_num);
  1133. dpn_config_off_target = CDNS_DPN_B1_CONFIG(target_num);
  1134. } else {
  1135. dpn_config_off_source = CDNS_DPN_B0_CONFIG(source_num);
  1136. dpn_config_off_target = CDNS_DPN_B0_CONFIG(target_num);
  1137. }
  1138. dpn_config = cdns_readl(cdns, dpn_config_off_source);
  1139. /* use port params if there is no loopback, otherwise use source as is */
  1140. if (!override) {
  1141. u32p_replace_bits(&dpn_config, p_params->bps - 1, CDNS_DPN_CONFIG_WL);
  1142. u32p_replace_bits(&dpn_config, p_params->flow_mode, CDNS_DPN_CONFIG_PORT_FLOW);
  1143. u32p_replace_bits(&dpn_config, p_params->data_mode, CDNS_DPN_CONFIG_PORT_DAT);
  1144. }
  1145. cdns_writel(cdns, dpn_config_off_target, dpn_config);
  1146. return 0;
  1147. }
  1148. static int cdns_transport_params(struct sdw_bus *bus,
  1149. struct sdw_transport_params *t_params,
  1150. enum sdw_reg_bank bank)
  1151. {
  1152. struct sdw_cdns *cdns = bus_to_cdns(bus);
  1153. int dpn_config;
  1154. int dpn_config_off_source;
  1155. int dpn_config_off_target;
  1156. int dpn_hctrl;
  1157. int dpn_hctrl_off_source;
  1158. int dpn_hctrl_off_target;
  1159. int dpn_offsetctrl;
  1160. int dpn_offsetctrl_off_source;
  1161. int dpn_offsetctrl_off_target;
  1162. int dpn_samplectrl;
  1163. int dpn_samplectrl_off_source;
  1164. int dpn_samplectrl_off_target;
  1165. int source_num = t_params->port_num;
  1166. int target_num = t_params->port_num;
  1167. bool override = false;
  1168. if (target_num == cdns->pdi_loopback_target &&
  1169. cdns->pdi_loopback_source != -1) {
  1170. source_num = cdns->pdi_loopback_source;
  1171. override = true;
  1172. }
  1173. /*
  1174. * Note: Only full data port is supported on the Master side for
  1175. * both PCM and PDM ports.
  1176. */
  1177. if (bank) {
  1178. dpn_config_off_source = CDNS_DPN_B1_CONFIG(source_num);
  1179. dpn_hctrl_off_source = CDNS_DPN_B1_HCTRL(source_num);
  1180. dpn_offsetctrl_off_source = CDNS_DPN_B1_OFFSET_CTRL(source_num);
  1181. dpn_samplectrl_off_source = CDNS_DPN_B1_SAMPLE_CTRL(source_num);
  1182. dpn_config_off_target = CDNS_DPN_B1_CONFIG(target_num);
  1183. dpn_hctrl_off_target = CDNS_DPN_B1_HCTRL(target_num);
  1184. dpn_offsetctrl_off_target = CDNS_DPN_B1_OFFSET_CTRL(target_num);
  1185. dpn_samplectrl_off_target = CDNS_DPN_B1_SAMPLE_CTRL(target_num);
  1186. } else {
  1187. dpn_config_off_source = CDNS_DPN_B0_CONFIG(source_num);
  1188. dpn_hctrl_off_source = CDNS_DPN_B0_HCTRL(source_num);
  1189. dpn_offsetctrl_off_source = CDNS_DPN_B0_OFFSET_CTRL(source_num);
  1190. dpn_samplectrl_off_source = CDNS_DPN_B0_SAMPLE_CTRL(source_num);
  1191. dpn_config_off_target = CDNS_DPN_B0_CONFIG(target_num);
  1192. dpn_hctrl_off_target = CDNS_DPN_B0_HCTRL(target_num);
  1193. dpn_offsetctrl_off_target = CDNS_DPN_B0_OFFSET_CTRL(target_num);
  1194. dpn_samplectrl_off_target = CDNS_DPN_B0_SAMPLE_CTRL(target_num);
  1195. }
  1196. dpn_config = cdns_readl(cdns, dpn_config_off_source);
  1197. if (!override) {
  1198. u32p_replace_bits(&dpn_config, t_params->blk_grp_ctrl, CDNS_DPN_CONFIG_BGC);
  1199. u32p_replace_bits(&dpn_config, t_params->blk_pkg_mode, CDNS_DPN_CONFIG_BPM);
  1200. }
  1201. cdns_writel(cdns, dpn_config_off_target, dpn_config);
  1202. if (!override) {
  1203. dpn_offsetctrl = 0;
  1204. u32p_replace_bits(&dpn_offsetctrl, t_params->offset1, CDNS_DPN_OFFSET_CTRL_1);
  1205. u32p_replace_bits(&dpn_offsetctrl, t_params->offset2, CDNS_DPN_OFFSET_CTRL_2);
  1206. } else {
  1207. dpn_offsetctrl = cdns_readl(cdns, dpn_offsetctrl_off_source);
  1208. }
  1209. cdns_writel(cdns, dpn_offsetctrl_off_target, dpn_offsetctrl);
  1210. if (!override) {
  1211. dpn_hctrl = 0;
  1212. u32p_replace_bits(&dpn_hctrl, t_params->hstart, CDNS_DPN_HCTRL_HSTART);
  1213. u32p_replace_bits(&dpn_hctrl, t_params->hstop, CDNS_DPN_HCTRL_HSTOP);
  1214. u32p_replace_bits(&dpn_hctrl, t_params->lane_ctrl, CDNS_DPN_HCTRL_LCTRL);
  1215. } else {
  1216. dpn_hctrl = cdns_readl(cdns, dpn_hctrl_off_source);
  1217. }
  1218. cdns_writel(cdns, dpn_hctrl_off_target, dpn_hctrl);
  1219. if (!override)
  1220. dpn_samplectrl = t_params->sample_interval - 1;
  1221. else
  1222. dpn_samplectrl = cdns_readl(cdns, dpn_samplectrl_off_source);
  1223. cdns_writel(cdns, dpn_samplectrl_off_target, dpn_samplectrl);
  1224. return 0;
  1225. }
  1226. static int cdns_port_enable(struct sdw_bus *bus,
  1227. struct sdw_enable_ch *enable_ch, unsigned int bank)
  1228. {
  1229. struct sdw_cdns *cdns = bus_to_cdns(bus);
  1230. int dpn_chnen_off, ch_mask;
  1231. if (bank)
  1232. dpn_chnen_off = CDNS_DPN_B1_CH_EN(enable_ch->port_num);
  1233. else
  1234. dpn_chnen_off = CDNS_DPN_B0_CH_EN(enable_ch->port_num);
  1235. ch_mask = enable_ch->ch_mask * enable_ch->enable;
  1236. cdns_writel(cdns, dpn_chnen_off, ch_mask);
  1237. return 0;
  1238. }
  1239. static const struct sdw_master_port_ops cdns_port_ops = {
  1240. .dpn_set_port_params = cdns_port_params,
  1241. .dpn_set_port_transport_params = cdns_transport_params,
  1242. .dpn_port_enable_ch = cdns_port_enable,
  1243. };
  1244. /**
  1245. * sdw_cdns_is_clock_stop: Check clock status
  1246. *
  1247. * @cdns: Cadence instance
  1248. */
  1249. bool sdw_cdns_is_clock_stop(struct sdw_cdns *cdns)
  1250. {
  1251. return !!(cdns_readl(cdns, CDNS_MCP_STAT) & CDNS_MCP_STAT_CLK_STOP);
  1252. }
  1253. EXPORT_SYMBOL(sdw_cdns_is_clock_stop);
  1254. /**
  1255. * sdw_cdns_clock_stop: Cadence clock stop configuration routine
  1256. *
  1257. * @cdns: Cadence instance
  1258. * @block_wake: prevent wakes if required by the platform
  1259. */
  1260. int sdw_cdns_clock_stop(struct sdw_cdns *cdns, bool block_wake)
  1261. {
  1262. bool slave_present = false;
  1263. struct sdw_slave *slave;
  1264. int ret;
  1265. sdw_cdns_check_self_clearing_bits(cdns, __func__, false, 0);
  1266. /* Check suspend status */
  1267. if (sdw_cdns_is_clock_stop(cdns)) {
  1268. dev_dbg(cdns->dev, "Clock is already stopped\n");
  1269. return 0;
  1270. }
  1271. /*
  1272. * Before entering clock stop we mask the Slave
  1273. * interrupts. This helps avoid having to deal with e.g. a
  1274. * Slave becoming UNATTACHED while the clock is being stopped
  1275. */
  1276. cdns_enable_slave_interrupts(cdns, false);
  1277. /*
  1278. * For specific platforms, it is required to be able to put
  1279. * master into a state in which it ignores wake-up trials
  1280. * in clock stop state
  1281. */
  1282. if (block_wake)
  1283. cdns_updatel(cdns, CDNS_MCP_CONTROL,
  1284. CDNS_MCP_CONTROL_BLOCK_WAKEUP,
  1285. CDNS_MCP_CONTROL_BLOCK_WAKEUP);
  1286. list_for_each_entry(slave, &cdns->bus.slaves, node) {
  1287. if (slave->status == SDW_SLAVE_ATTACHED ||
  1288. slave->status == SDW_SLAVE_ALERT) {
  1289. slave_present = true;
  1290. break;
  1291. }
  1292. }
  1293. /* commit changes */
  1294. ret = cdns_config_update(cdns);
  1295. if (ret < 0) {
  1296. dev_err(cdns->dev, "%s: config_update failed\n", __func__);
  1297. return ret;
  1298. }
  1299. /* Prepare slaves for clock stop */
  1300. if (slave_present) {
  1301. ret = sdw_bus_prep_clk_stop(&cdns->bus);
  1302. if (ret < 0 && ret != -ENODATA) {
  1303. dev_err(cdns->dev, "prepare clock stop failed %d\n", ret);
  1304. return ret;
  1305. }
  1306. }
  1307. /*
  1308. * Enter clock stop mode and only report errors if there are
  1309. * Slave devices present (ALERT or ATTACHED)
  1310. */
  1311. ret = sdw_bus_clk_stop(&cdns->bus);
  1312. if (ret < 0 && slave_present && ret != -ENODATA) {
  1313. dev_err(cdns->dev, "bus clock stop failed %d\n", ret);
  1314. return ret;
  1315. }
  1316. ret = cdns_set_wait(cdns, CDNS_MCP_STAT,
  1317. CDNS_MCP_STAT_CLK_STOP,
  1318. CDNS_MCP_STAT_CLK_STOP);
  1319. if (ret < 0)
  1320. dev_err(cdns->dev, "Clock stop failed %d\n", ret);
  1321. return ret;
  1322. }
  1323. EXPORT_SYMBOL(sdw_cdns_clock_stop);
  1324. /**
  1325. * sdw_cdns_clock_restart: Cadence PM clock restart configuration routine
  1326. *
  1327. * @cdns: Cadence instance
  1328. * @bus_reset: context may be lost while in low power modes and the bus
  1329. * may require a Severe Reset and re-enumeration after a wake.
  1330. */
  1331. int sdw_cdns_clock_restart(struct sdw_cdns *cdns, bool bus_reset)
  1332. {
  1333. int ret;
  1334. /* unmask Slave interrupts that were masked when stopping the clock */
  1335. cdns_enable_slave_interrupts(cdns, true);
  1336. ret = cdns_clear_bit(cdns, CDNS_MCP_CONTROL,
  1337. CDNS_MCP_CONTROL_CLK_STOP_CLR);
  1338. if (ret < 0) {
  1339. dev_err(cdns->dev, "Couldn't exit from clock stop\n");
  1340. return ret;
  1341. }
  1342. ret = cdns_set_wait(cdns, CDNS_MCP_STAT, CDNS_MCP_STAT_CLK_STOP, 0);
  1343. if (ret < 0) {
  1344. dev_err(cdns->dev, "clock stop exit failed %d\n", ret);
  1345. return ret;
  1346. }
  1347. cdns_updatel(cdns, CDNS_MCP_CONTROL,
  1348. CDNS_MCP_CONTROL_BLOCK_WAKEUP, 0);
  1349. cdns_updatel(cdns, CDNS_MCP_CONTROL, CDNS_MCP_CONTROL_CMD_ACCEPT,
  1350. CDNS_MCP_CONTROL_CMD_ACCEPT);
  1351. if (!bus_reset) {
  1352. /* enable bus operations with clock and data */
  1353. cdns_updatel(cdns, CDNS_MCP_CONFIG,
  1354. CDNS_MCP_CONFIG_OP,
  1355. CDNS_MCP_CONFIG_OP_NORMAL);
  1356. ret = cdns_config_update(cdns);
  1357. if (ret < 0) {
  1358. dev_err(cdns->dev, "%s: config_update failed\n", __func__);
  1359. return ret;
  1360. }
  1361. ret = sdw_bus_exit_clk_stop(&cdns->bus);
  1362. if (ret < 0)
  1363. dev_err(cdns->dev, "bus failed to exit clock stop %d\n", ret);
  1364. }
  1365. return ret;
  1366. }
  1367. EXPORT_SYMBOL(sdw_cdns_clock_restart);
  1368. /**
  1369. * sdw_cdns_probe() - Cadence probe routine
  1370. * @cdns: Cadence instance
  1371. */
  1372. int sdw_cdns_probe(struct sdw_cdns *cdns)
  1373. {
  1374. init_completion(&cdns->tx_complete);
  1375. cdns->bus.port_ops = &cdns_port_ops;
  1376. INIT_WORK(&cdns->work, cdns_update_slave_status_work);
  1377. return 0;
  1378. }
  1379. EXPORT_SYMBOL(sdw_cdns_probe);
  1380. int cdns_set_sdw_stream(struct snd_soc_dai *dai,
  1381. void *stream, int direction)
  1382. {
  1383. struct sdw_cdns *cdns = snd_soc_dai_get_drvdata(dai);
  1384. struct sdw_cdns_dai_runtime *dai_runtime;
  1385. if (stream) {
  1386. /* first paranoia check */
  1387. if (direction == SNDRV_PCM_STREAM_PLAYBACK)
  1388. dai_runtime = dai->playback_dma_data;
  1389. else
  1390. dai_runtime = dai->capture_dma_data;
  1391. if (dai_runtime) {
  1392. dev_err(dai->dev,
  1393. "dai_runtime already allocated for dai %s\n",
  1394. dai->name);
  1395. return -EINVAL;
  1396. }
  1397. /* allocate and set dai_runtime info */
  1398. dai_runtime = kzalloc(sizeof(*dai_runtime), GFP_KERNEL);
  1399. if (!dai_runtime)
  1400. return -ENOMEM;
  1401. dai_runtime->stream_type = SDW_STREAM_PCM;
  1402. dai_runtime->bus = &cdns->bus;
  1403. dai_runtime->link_id = cdns->instance;
  1404. dai_runtime->stream = stream;
  1405. if (direction == SNDRV_PCM_STREAM_PLAYBACK)
  1406. dai->playback_dma_data = dai_runtime;
  1407. else
  1408. dai->capture_dma_data = dai_runtime;
  1409. } else {
  1410. /* for NULL stream we release allocated dai_runtime */
  1411. if (direction == SNDRV_PCM_STREAM_PLAYBACK) {
  1412. kfree(dai->playback_dma_data);
  1413. dai->playback_dma_data = NULL;
  1414. } else {
  1415. kfree(dai->capture_dma_data);
  1416. dai->capture_dma_data = NULL;
  1417. }
  1418. }
  1419. return 0;
  1420. }
  1421. EXPORT_SYMBOL(cdns_set_sdw_stream);
  1422. /**
  1423. * cdns_find_pdi() - Find a free PDI
  1424. *
  1425. * @cdns: Cadence instance
  1426. * @offset: Starting offset
  1427. * @num: Number of PDIs
  1428. * @pdi: PDI instances
  1429. * @dai_id: DAI id
  1430. *
  1431. * Find a PDI for a given PDI array. The PDI num and dai_id are
  1432. * expected to match, return NULL otherwise.
  1433. */
  1434. static struct sdw_cdns_pdi *cdns_find_pdi(struct sdw_cdns *cdns,
  1435. unsigned int offset,
  1436. unsigned int num,
  1437. struct sdw_cdns_pdi *pdi,
  1438. int dai_id)
  1439. {
  1440. int i;
  1441. for (i = offset; i < offset + num; i++)
  1442. if (pdi[i].num == dai_id)
  1443. return &pdi[i];
  1444. return NULL;
  1445. }
  1446. /**
  1447. * sdw_cdns_config_stream: Configure a stream
  1448. *
  1449. * @cdns: Cadence instance
  1450. * @ch: Channel count
  1451. * @dir: Data direction
  1452. * @pdi: PDI to be used
  1453. */
  1454. void sdw_cdns_config_stream(struct sdw_cdns *cdns,
  1455. u32 ch, u32 dir, struct sdw_cdns_pdi *pdi)
  1456. {
  1457. u32 offset, val = 0;
  1458. if (dir == SDW_DATA_DIR_RX) {
  1459. val = CDNS_PORTCTRL_DIRN;
  1460. if (cdns->bus.params.m_data_mode != SDW_PORT_DATA_MODE_NORMAL)
  1461. val |= CDNS_PORTCTRL_TEST_FAILED;
  1462. }
  1463. offset = CDNS_PORTCTRL + pdi->num * CDNS_PORT_OFFSET;
  1464. cdns_updatel(cdns, offset,
  1465. CDNS_PORTCTRL_DIRN | CDNS_PORTCTRL_TEST_FAILED,
  1466. val);
  1467. val = pdi->num;
  1468. val |= CDNS_PDI_CONFIG_SOFT_RESET;
  1469. val |= FIELD_PREP(CDNS_PDI_CONFIG_CHANNEL, (1 << ch) - 1);
  1470. cdns_writel(cdns, CDNS_PDI_CONFIG(pdi->num), val);
  1471. }
  1472. EXPORT_SYMBOL(sdw_cdns_config_stream);
  1473. /**
  1474. * sdw_cdns_alloc_pdi() - Allocate a PDI
  1475. *
  1476. * @cdns: Cadence instance
  1477. * @stream: Stream to be allocated
  1478. * @ch: Channel count
  1479. * @dir: Data direction
  1480. * @dai_id: DAI id
  1481. */
  1482. struct sdw_cdns_pdi *sdw_cdns_alloc_pdi(struct sdw_cdns *cdns,
  1483. struct sdw_cdns_streams *stream,
  1484. u32 ch, u32 dir, int dai_id)
  1485. {
  1486. struct sdw_cdns_pdi *pdi = NULL;
  1487. if (dir == SDW_DATA_DIR_RX)
  1488. pdi = cdns_find_pdi(cdns, 0, stream->num_in, stream->in,
  1489. dai_id);
  1490. else
  1491. pdi = cdns_find_pdi(cdns, 0, stream->num_out, stream->out,
  1492. dai_id);
  1493. /* check if we found a PDI, else find in bi-directional */
  1494. if (!pdi)
  1495. pdi = cdns_find_pdi(cdns, 2, stream->num_bd, stream->bd,
  1496. dai_id);
  1497. if (pdi) {
  1498. pdi->l_ch_num = 0;
  1499. pdi->h_ch_num = ch - 1;
  1500. pdi->dir = dir;
  1501. pdi->ch_count = ch;
  1502. }
  1503. return pdi;
  1504. }
  1505. EXPORT_SYMBOL(sdw_cdns_alloc_pdi);
  1506. MODULE_LICENSE("Dual BSD/GPL");
  1507. MODULE_DESCRIPTION("Cadence Soundwire Library");