stih-cec.c 10.0 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. /*
  3. * STIH4xx CEC driver
  4. * Copyright (C) STMicroelectronics SA 2016
  5. *
  6. */
  7. #include <linux/clk.h>
  8. #include <linux/interrupt.h>
  9. #include <linux/kernel.h>
  10. #include <linux/mfd/syscon.h>
  11. #include <linux/module.h>
  12. #include <linux/of.h>
  13. #include <linux/of_platform.h>
  14. #include <linux/platform_device.h>
  15. #include <media/cec.h>
  16. #include <media/cec-notifier.h>
  17. #define CEC_NAME "stih-cec"
  18. /* CEC registers */
  19. #define CEC_CLK_DIV 0x0
  20. #define CEC_CTRL 0x4
  21. #define CEC_IRQ_CTRL 0x8
  22. #define CEC_STATUS 0xC
  23. #define CEC_EXT_STATUS 0x10
  24. #define CEC_TX_CTRL 0x14
  25. #define CEC_FREE_TIME_THRESH 0x18
  26. #define CEC_BIT_TOUT_THRESH 0x1C
  27. #define CEC_BIT_PULSE_THRESH 0x20
  28. #define CEC_DATA 0x24
  29. #define CEC_TX_ARRAY_CTRL 0x28
  30. #define CEC_CTRL2 0x2C
  31. #define CEC_TX_ERROR_STS 0x30
  32. #define CEC_ADDR_TABLE 0x34
  33. #define CEC_DATA_ARRAY_CTRL 0x38
  34. #define CEC_DATA_ARRAY_STATUS 0x3C
  35. #define CEC_TX_DATA_BASE 0x40
  36. #define CEC_TX_DATA_TOP 0x50
  37. #define CEC_TX_DATA_SIZE 0x1
  38. #define CEC_RX_DATA_BASE 0x54
  39. #define CEC_RX_DATA_TOP 0x64
  40. #define CEC_RX_DATA_SIZE 0x1
  41. /* CEC_CTRL2 */
  42. #define CEC_LINE_INACTIVE_EN BIT(0)
  43. #define CEC_AUTO_BUS_ERR_EN BIT(1)
  44. #define CEC_STOP_ON_ARB_ERR_EN BIT(2)
  45. #define CEC_TX_REQ_WAIT_EN BIT(3)
  46. /* CEC_DATA_ARRAY_CTRL */
  47. #define CEC_TX_ARRAY_EN BIT(0)
  48. #define CEC_RX_ARRAY_EN BIT(1)
  49. #define CEC_TX_ARRAY_RESET BIT(2)
  50. #define CEC_RX_ARRAY_RESET BIT(3)
  51. #define CEC_TX_N_OF_BYTES_IRQ_EN BIT(4)
  52. #define CEC_TX_STOP_ON_NACK BIT(7)
  53. /* CEC_TX_ARRAY_CTRL */
  54. #define CEC_TX_N_OF_BYTES 0x1F
  55. #define CEC_TX_START BIT(5)
  56. #define CEC_TX_AUTO_SOM_EN BIT(6)
  57. #define CEC_TX_AUTO_EOM_EN BIT(7)
  58. /* CEC_IRQ_CTRL */
  59. #define CEC_TX_DONE_IRQ_EN BIT(0)
  60. #define CEC_ERROR_IRQ_EN BIT(2)
  61. #define CEC_RX_DONE_IRQ_EN BIT(3)
  62. #define CEC_RX_SOM_IRQ_EN BIT(4)
  63. #define CEC_RX_EOM_IRQ_EN BIT(5)
  64. #define CEC_FREE_TIME_IRQ_EN BIT(6)
  65. #define CEC_PIN_STS_IRQ_EN BIT(7)
  66. /* CEC_CTRL */
  67. #define CEC_IN_FILTER_EN BIT(0)
  68. #define CEC_PWR_SAVE_EN BIT(1)
  69. #define CEC_EN BIT(4)
  70. #define CEC_ACK_CTRL BIT(5)
  71. #define CEC_RX_RESET_EN BIT(6)
  72. #define CEC_IGNORE_RX_ERROR BIT(7)
  73. /* CEC_STATUS */
  74. #define CEC_TX_DONE_STS BIT(0)
  75. #define CEC_TX_ACK_GET_STS BIT(1)
  76. #define CEC_ERROR_STS BIT(2)
  77. #define CEC_RX_DONE_STS BIT(3)
  78. #define CEC_RX_SOM_STS BIT(4)
  79. #define CEC_RX_EOM_STS BIT(5)
  80. #define CEC_FREE_TIME_IRQ_STS BIT(6)
  81. #define CEC_PIN_STS BIT(7)
  82. #define CEC_SBIT_TOUT_STS BIT(8)
  83. #define CEC_DBIT_TOUT_STS BIT(9)
  84. #define CEC_LPULSE_ERROR_STS BIT(10)
  85. #define CEC_HPULSE_ERROR_STS BIT(11)
  86. #define CEC_TX_ERROR BIT(12)
  87. #define CEC_TX_ARB_ERROR BIT(13)
  88. #define CEC_RX_ERROR_MIN BIT(14)
  89. #define CEC_RX_ERROR_MAX BIT(15)
  90. /* Signal free time in bit periods (2.4ms) */
  91. #define CEC_PRESENT_INIT_SFT 7
  92. #define CEC_NEW_INIT_SFT 5
  93. #define CEC_RETRANSMIT_SFT 3
  94. /* Constants for CEC_BIT_TOUT_THRESH register */
  95. #define CEC_SBIT_TOUT_47MS BIT(1)
  96. #define CEC_SBIT_TOUT_48MS (BIT(0) | BIT(1))
  97. #define CEC_SBIT_TOUT_50MS BIT(2)
  98. #define CEC_DBIT_TOUT_27MS BIT(0)
  99. #define CEC_DBIT_TOUT_28MS BIT(1)
  100. #define CEC_DBIT_TOUT_29MS (BIT(0) | BIT(1))
  101. /* Constants for CEC_BIT_PULSE_THRESH register */
  102. #define CEC_BIT_LPULSE_03MS BIT(1)
  103. #define CEC_BIT_HPULSE_03MS BIT(3)
  104. /* Constants for CEC_DATA_ARRAY_STATUS register */
  105. #define CEC_RX_N_OF_BYTES 0x1F
  106. #define CEC_TX_N_OF_BYTES_SENT BIT(5)
  107. #define CEC_RX_OVERRUN BIT(6)
  108. struct stih_cec {
  109. struct cec_adapter *adap;
  110. struct device *dev;
  111. struct clk *clk;
  112. void __iomem *regs;
  113. int irq;
  114. u32 irq_status;
  115. struct cec_notifier *notifier;
  116. };
  117. static int stih_cec_adap_enable(struct cec_adapter *adap, bool enable)
  118. {
  119. struct stih_cec *cec = cec_get_drvdata(adap);
  120. if (enable) {
  121. /* The doc says (input TCLK_PERIOD * CEC_CLK_DIV) = 0.1ms */
  122. unsigned long clk_freq = clk_get_rate(cec->clk);
  123. u32 cec_clk_div = clk_freq / 10000;
  124. writel(cec_clk_div, cec->regs + CEC_CLK_DIV);
  125. /* Configuration of the durations activating a timeout */
  126. writel(CEC_SBIT_TOUT_47MS | (CEC_DBIT_TOUT_28MS << 4),
  127. cec->regs + CEC_BIT_TOUT_THRESH);
  128. /* Configuration of the smallest allowed duration for pulses */
  129. writel(CEC_BIT_LPULSE_03MS | CEC_BIT_HPULSE_03MS,
  130. cec->regs + CEC_BIT_PULSE_THRESH);
  131. /* Minimum received bit period threshold */
  132. writel(BIT(5) | BIT(7), cec->regs + CEC_TX_CTRL);
  133. /* Configuration of transceiver data arrays */
  134. writel(CEC_TX_ARRAY_EN | CEC_RX_ARRAY_EN | CEC_TX_STOP_ON_NACK,
  135. cec->regs + CEC_DATA_ARRAY_CTRL);
  136. /* Configuration of the control bits for CEC Transceiver */
  137. writel(CEC_IN_FILTER_EN | CEC_EN | CEC_RX_RESET_EN,
  138. cec->regs + CEC_CTRL);
  139. /* Clear logical addresses */
  140. writel(0, cec->regs + CEC_ADDR_TABLE);
  141. /* Clear the status register */
  142. writel(0x0, cec->regs + CEC_STATUS);
  143. /* Enable the interrupts */
  144. writel(CEC_TX_DONE_IRQ_EN | CEC_RX_DONE_IRQ_EN |
  145. CEC_RX_SOM_IRQ_EN | CEC_RX_EOM_IRQ_EN |
  146. CEC_ERROR_IRQ_EN,
  147. cec->regs + CEC_IRQ_CTRL);
  148. } else {
  149. /* Clear logical addresses */
  150. writel(0, cec->regs + CEC_ADDR_TABLE);
  151. /* Clear the status register */
  152. writel(0x0, cec->regs + CEC_STATUS);
  153. /* Disable the interrupts */
  154. writel(0, cec->regs + CEC_IRQ_CTRL);
  155. }
  156. return 0;
  157. }
  158. static int stih_cec_adap_log_addr(struct cec_adapter *adap, u8 logical_addr)
  159. {
  160. struct stih_cec *cec = cec_get_drvdata(adap);
  161. u32 reg = readl(cec->regs + CEC_ADDR_TABLE);
  162. reg |= 1 << logical_addr;
  163. if (logical_addr == CEC_LOG_ADDR_INVALID)
  164. reg = 0;
  165. writel(reg, cec->regs + CEC_ADDR_TABLE);
  166. return 0;
  167. }
  168. static int stih_cec_adap_transmit(struct cec_adapter *adap, u8 attempts,
  169. u32 signal_free_time, struct cec_msg *msg)
  170. {
  171. struct stih_cec *cec = cec_get_drvdata(adap);
  172. int i;
  173. /* Copy message into registers */
  174. for (i = 0; i < msg->len; i++)
  175. writeb(msg->msg[i], cec->regs + CEC_TX_DATA_BASE + i);
  176. /*
  177. * Start transmission, configure hardware to add start and stop bits
  178. * Signal free time is handled by the hardware
  179. */
  180. writel(CEC_TX_AUTO_SOM_EN | CEC_TX_AUTO_EOM_EN | CEC_TX_START |
  181. msg->len, cec->regs + CEC_TX_ARRAY_CTRL);
  182. return 0;
  183. }
  184. static void stih_tx_done(struct stih_cec *cec, u32 status)
  185. {
  186. if (status & CEC_TX_ERROR) {
  187. cec_transmit_attempt_done(cec->adap, CEC_TX_STATUS_ERROR);
  188. return;
  189. }
  190. if (status & CEC_TX_ARB_ERROR) {
  191. cec_transmit_attempt_done(cec->adap, CEC_TX_STATUS_ARB_LOST);
  192. return;
  193. }
  194. if (!(status & CEC_TX_ACK_GET_STS)) {
  195. cec_transmit_attempt_done(cec->adap, CEC_TX_STATUS_NACK);
  196. return;
  197. }
  198. cec_transmit_attempt_done(cec->adap, CEC_TX_STATUS_OK);
  199. }
  200. static void stih_rx_done(struct stih_cec *cec, u32 status)
  201. {
  202. struct cec_msg msg = {};
  203. u8 i;
  204. if (status & CEC_RX_ERROR_MIN)
  205. return;
  206. if (status & CEC_RX_ERROR_MAX)
  207. return;
  208. msg.len = readl(cec->regs + CEC_DATA_ARRAY_STATUS) & 0x1f;
  209. if (!msg.len)
  210. return;
  211. if (msg.len > 16)
  212. msg.len = 16;
  213. for (i = 0; i < msg.len; i++)
  214. msg.msg[i] = readl(cec->regs + CEC_RX_DATA_BASE + i);
  215. cec_received_msg(cec->adap, &msg);
  216. }
  217. static irqreturn_t stih_cec_irq_handler_thread(int irq, void *priv)
  218. {
  219. struct stih_cec *cec = priv;
  220. if (cec->irq_status & CEC_TX_DONE_STS)
  221. stih_tx_done(cec, cec->irq_status);
  222. if (cec->irq_status & CEC_RX_DONE_STS)
  223. stih_rx_done(cec, cec->irq_status);
  224. cec->irq_status = 0;
  225. return IRQ_HANDLED;
  226. }
  227. static irqreturn_t stih_cec_irq_handler(int irq, void *priv)
  228. {
  229. struct stih_cec *cec = priv;
  230. cec->irq_status = readl(cec->regs + CEC_STATUS);
  231. writel(cec->irq_status, cec->regs + CEC_STATUS);
  232. return IRQ_WAKE_THREAD;
  233. }
  234. static const struct cec_adap_ops sti_cec_adap_ops = {
  235. .adap_enable = stih_cec_adap_enable,
  236. .adap_log_addr = stih_cec_adap_log_addr,
  237. .adap_transmit = stih_cec_adap_transmit,
  238. };
  239. static int stih_cec_probe(struct platform_device *pdev)
  240. {
  241. struct device *dev = &pdev->dev;
  242. struct resource *res;
  243. struct stih_cec *cec;
  244. struct device_node *np;
  245. struct platform_device *hdmi_dev;
  246. int ret;
  247. cec = devm_kzalloc(dev, sizeof(*cec), GFP_KERNEL);
  248. if (!cec)
  249. return -ENOMEM;
  250. np = of_parse_phandle(pdev->dev.of_node, "hdmi-phandle", 0);
  251. if (!np) {
  252. dev_err(&pdev->dev, "Failed to find hdmi node in device tree\n");
  253. return -ENODEV;
  254. }
  255. hdmi_dev = of_find_device_by_node(np);
  256. if (!hdmi_dev)
  257. return -EPROBE_DEFER;
  258. cec->notifier = cec_notifier_get(&hdmi_dev->dev);
  259. if (!cec->notifier)
  260. return -ENOMEM;
  261. cec->dev = dev;
  262. res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
  263. cec->regs = devm_ioremap_resource(dev, res);
  264. if (IS_ERR(cec->regs))
  265. return PTR_ERR(cec->regs);
  266. cec->irq = platform_get_irq(pdev, 0);
  267. if (cec->irq < 0)
  268. return cec->irq;
  269. ret = devm_request_threaded_irq(dev, cec->irq, stih_cec_irq_handler,
  270. stih_cec_irq_handler_thread, 0,
  271. pdev->name, cec);
  272. if (ret)
  273. return ret;
  274. cec->clk = devm_clk_get(dev, "cec-clk");
  275. if (IS_ERR(cec->clk)) {
  276. dev_err(dev, "Cannot get cec clock\n");
  277. return PTR_ERR(cec->clk);
  278. }
  279. cec->adap = cec_allocate_adapter(&sti_cec_adap_ops, cec,
  280. CEC_NAME, CEC_CAP_DEFAULTS, CEC_MAX_LOG_ADDRS);
  281. ret = PTR_ERR_OR_ZERO(cec->adap);
  282. if (ret)
  283. return ret;
  284. ret = cec_register_adapter(cec->adap, &pdev->dev);
  285. if (ret) {
  286. cec_delete_adapter(cec->adap);
  287. return ret;
  288. }
  289. cec_register_cec_notifier(cec->adap, cec->notifier);
  290. platform_set_drvdata(pdev, cec);
  291. return 0;
  292. }
  293. static int stih_cec_remove(struct platform_device *pdev)
  294. {
  295. struct stih_cec *cec = platform_get_drvdata(pdev);
  296. cec_unregister_adapter(cec->adap);
  297. cec_notifier_put(cec->notifier);
  298. return 0;
  299. }
  300. static const struct of_device_id stih_cec_match[] = {
  301. {
  302. .compatible = "st,stih-cec",
  303. },
  304. {},
  305. };
  306. MODULE_DEVICE_TABLE(of, stih_cec_match);
  307. static struct platform_driver stih_cec_pdrv = {
  308. .probe = stih_cec_probe,
  309. .remove = stih_cec_remove,
  310. .driver = {
  311. .name = CEC_NAME,
  312. .of_match_table = stih_cec_match,
  313. },
  314. };
  315. module_platform_driver(stih_cec_pdrv);
  316. MODULE_AUTHOR("Benjamin Gaignard <benjamin.gaignard@linaro.org>");
  317. MODULE_LICENSE("GPL");
  318. MODULE_DESCRIPTION("STIH4xx CEC driver");