usb_dc_kinetis.c 13 KB

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  1. /*
  2. * Copyright (c) 2024, sakumisu
  3. *
  4. * SPDX-License-Identifier: Apache-2.0
  5. */
  6. #include "usbd_core.h"
  7. #include "usb_kinetis_reg.h"
  8. #define USB_OTG_DEV ((KINETIS_TypeDef *)g_usbdev_bus[busid].reg_base)
  9. /* Endpoint state */
  10. struct kinetis_ep_state {
  11. uint16_t ep_mps; /* Endpoint max packet size */
  12. uint8_t ep_type; /* Endpoint type */
  13. uint8_t ep_stalled; /* Endpoint stall flag */
  14. uint8_t ep_enable; /* Endpoint enable */
  15. bool ep_odd; /* Endpoint odd */
  16. uint8_t *xfer_buf;
  17. uint32_t xfer_len;
  18. uint32_t actual_xfer_len;
  19. };
  20. /* Driver state */
  21. struct kinetis_udc {
  22. uint8_t dev_addr;
  23. struct kinetis_ep_state in_ep[CONFIG_USBDEV_EP_NUM]; /*!< IN endpoint parameters*/
  24. struct kinetis_ep_state out_ep[CONFIG_USBDEV_EP_NUM]; /*!< OUT endpoint parameters */
  25. } g_kinetis_udc[CONFIG_USBDEV_MAX_BUS];
  26. USB_NOCACHE_RAM_SECTION __attribute__((aligned(512))) kinetis_bd_table_t g_kinetis_bdt[CONFIG_USBDEV_MAX_BUS];
  27. USB_NOCACHE_RAM_SECTION __attribute__((aligned(32))) uint8_t setup_packet[CONFIG_USBDEV_MAX_BUS][8];
  28. static int kinetis_start_transfer(uint8_t busid, uint8_t ep, uint8_t *buffer, uint16_t buflen)
  29. {
  30. uint8_t ep_idx = USB_EP_GET_IDX(ep);
  31. uint8_t dir;
  32. uint8_t odd;
  33. uint16_t ep_mps;
  34. kinetis_bd_t *bd;
  35. kinetis_bd_t *next;
  36. if (USB_EP_DIR_IS_OUT(ep)) {
  37. dir = 0;
  38. odd = g_kinetis_udc[busid].out_ep[ep_idx].ep_odd;
  39. ep_mps = g_kinetis_udc[busid].out_ep[ep_idx].ep_mps;
  40. } else {
  41. dir = 1;
  42. odd = g_kinetis_udc[busid].in_ep[ep_idx].ep_odd;
  43. ep_mps = g_kinetis_udc[busid].in_ep[ep_idx].ep_mps;
  44. }
  45. bd = &g_kinetis_bdt[busid].table[ep_idx][dir][odd];
  46. if (bd->own) {
  47. USB_LOG_INFO("ep%02x is busy\r\n", ep);
  48. return -1;
  49. }
  50. bd->bc = buflen >= ep_mps ? ep_mps : buflen;
  51. bd->addr = (uint32_t)buffer;
  52. bd->own = 1;
  53. return 0;
  54. }
  55. static void kinetis_read_setup(uint8_t busid)
  56. {
  57. uint8_t out_odd = g_kinetis_udc[busid].out_ep[0].ep_odd;
  58. uint8_t in_odd = g_kinetis_udc[busid].in_ep[0].ep_odd;
  59. if (g_kinetis_bdt[busid].table[0][0][out_odd].own) {
  60. USB_LOG_INFO("ep0 is busy\r\n");
  61. return;
  62. }
  63. g_kinetis_bdt[busid].table[0][0][out_odd].data = 0;
  64. g_kinetis_bdt[busid].table[0][0][out_odd ^ 1].data = 1;
  65. g_kinetis_bdt[busid].table[0][1][in_odd].data = 1;
  66. g_kinetis_bdt[busid].table[0][1][in_odd ^ 1].data = 0;
  67. kinetis_start_transfer(busid, USB_CONTROL_OUT_EP0, setup_packet[busid], 8);
  68. }
  69. __WEAK void usb_dc_low_level_init(uint8_t busid)
  70. {
  71. }
  72. __WEAK void usb_dc_low_level_deinit(uint8_t busid)
  73. {
  74. }
  75. int usb_dc_init(uint8_t busid)
  76. {
  77. usb_dc_low_level_init(busid);
  78. memset(&g_kinetis_udc[busid], 0, sizeof(g_kinetis_udc[busid]));
  79. USB_OTG_DEV->BDTPAGE1 = (uint8_t)((uintptr_t)&g_kinetis_bdt[busid] >> 8);
  80. USB_OTG_DEV->BDTPAGE2 = (uint8_t)((uintptr_t)&g_kinetis_bdt[busid] >> 16);
  81. USB_OTG_DEV->BDTPAGE3 = (uint8_t)((uintptr_t)&g_kinetis_bdt[busid] >> 24);
  82. USB_OTG_DEV->INTEN = USB_INTEN_USBRSTEN_MASK | USB_INTEN_TOKDNEEN_MASK |
  83. USB_INTEN_SLEEPEN_MASK | USB_INTEN_RESUMEEN_MASK |
  84. USB_INTEN_ERROREN_MASK;
  85. USB_OTG_DEV->CTL |= USB_CTL_USBENSOFEN_MASK;
  86. return 0;
  87. }
  88. int usb_dc_deinit(uint8_t busid)
  89. {
  90. usb_dc_low_level_deinit(busid);
  91. return 0;
  92. }
  93. int usbd_set_address(uint8_t busid, const uint8_t addr)
  94. {
  95. g_kinetis_udc[busid].dev_addr = addr;
  96. if (addr == 0) {
  97. USB_OTG_DEV->ADDR = 0;
  98. }
  99. return 0;
  100. }
  101. int usbd_set_remote_wakeup(uint8_t busid)
  102. {
  103. USB_OTG_DEV->CTL |= USB_CTL_RESUME_MASK;
  104. usbd_kinetis_delay_ms(10);
  105. USB_OTG_DEV->CTL &= ~USB_CTL_RESUME_MASK;
  106. return 0;
  107. }
  108. uint8_t usbd_get_port_speed(uint8_t busid)
  109. {
  110. return USB_SPEED_FULL;
  111. }
  112. int usbd_ep_open(uint8_t busid, const struct usb_endpoint_descriptor *ep)
  113. {
  114. uint8_t ep_idx = USB_EP_GET_IDX(ep->bEndpointAddress);
  115. uint8_t odd;
  116. uint8_t dir;
  117. kinetis_bd_t *bd;
  118. uint8_t regval;
  119. /* Must not exceed max endpoint number */
  120. if (ep_idx >= CONFIG_USBDEV_EP_NUM) {
  121. return -1;
  122. }
  123. if (USB_EP_DIR_IS_OUT(ep->bEndpointAddress)) {
  124. g_kinetis_udc[busid].out_ep[ep_idx].ep_mps = USB_GET_MAXPACKETSIZE(ep->wMaxPacketSize);
  125. g_kinetis_udc[busid].out_ep[ep_idx].ep_type = USB_GET_ENDPOINT_TYPE(ep->bmAttributes);
  126. g_kinetis_udc[busid].out_ep[ep_idx].ep_enable = true;
  127. dir = 0;
  128. odd = g_kinetis_udc[busid].out_ep[ep_idx].ep_odd;
  129. } else {
  130. g_kinetis_udc[busid].in_ep[ep_idx].ep_mps = USB_GET_MAXPACKETSIZE(ep->wMaxPacketSize);
  131. g_kinetis_udc[busid].in_ep[ep_idx].ep_type = USB_GET_ENDPOINT_TYPE(ep->bmAttributes);
  132. g_kinetis_udc[busid].in_ep[ep_idx].ep_enable = true;
  133. dir = 1;
  134. odd = g_kinetis_udc[busid].in_ep[ep_idx].ep_odd;
  135. }
  136. if (ep_idx != 0) {
  137. regval = USB_ENDPT_EPCTLDIS_MASK;
  138. regval |= (USB_GET_ENDPOINT_TYPE(ep->bmAttributes) != USB_ENDPOINT_TYPE_ISOCHRONOUS) ? USB_ENDPT_EPHSHK_MASK : 0;
  139. regval |= dir ? USB_ENDPT_EPTXEN_MASK : USB_ENDPT_EPRXEN_MASK;
  140. USB_OTG_DEV->ENDPOINT[ep_idx].ENDPT |= regval;
  141. if (USB_GET_ENDPOINT_TYPE(ep->bmAttributes) != USB_ENDPOINT_TYPE_ISOCHRONOUS) {
  142. bd = &g_kinetis_bdt[busid].table[ep_idx][dir][odd];
  143. bd->dts = 1;
  144. bd->data = 0;
  145. bd = &g_kinetis_bdt[busid].table[ep_idx][dir][odd ^ 1];
  146. bd->dts = 1;
  147. bd->data = 1;
  148. }
  149. }
  150. return 0;
  151. }
  152. int usbd_ep_close(uint8_t busid, const uint8_t ep)
  153. {
  154. uint8_t ep_idx = USB_EP_GET_IDX(ep);
  155. uint8_t dir;
  156. kinetis_bd_t *bd;
  157. if (USB_EP_DIR_IS_OUT(ep)) {
  158. g_kinetis_udc[busid].out_ep[ep_idx].ep_enable = false;
  159. dir = 0;
  160. } else {
  161. g_kinetis_udc[busid].in_ep[ep_idx].ep_enable = false;
  162. dir = 1;
  163. }
  164. bd = &g_kinetis_bdt[busid].table[ep_idx][dir][0];
  165. bd->head = 0;
  166. bd = &g_kinetis_bdt[busid].table[ep_idx][dir][1];
  167. bd->head = 0;
  168. USB_OTG_DEV->ENDPOINT[ep_idx].ENDPT &= ~(dir ? USB_ENDPT_EPTXEN_MASK : USB_ENDPT_EPRXEN_MASK);
  169. return 0;
  170. }
  171. int usbd_ep_set_stall(uint8_t busid, const uint8_t ep)
  172. {
  173. uint8_t ep_idx = USB_EP_GET_IDX(ep);
  174. kinetis_bd_t *bd;
  175. uint8_t odd;
  176. uint8_t dir;
  177. if (0 == ep_idx) {
  178. USB_OTG_DEV->ENDPOINT[ep_idx].ENDPT |= USB_ENDPT_EPSTALL_MASK;
  179. if (ep_idx == 0) {
  180. kinetis_read_setup(busid);
  181. }
  182. } else {
  183. if (USB_EP_DIR_IS_OUT(ep)) {
  184. dir = 0;
  185. odd = g_kinetis_udc[busid].out_ep[ep_idx].ep_odd;
  186. } else {
  187. dir = 1;
  188. odd = g_kinetis_udc[busid].in_ep[ep_idx].ep_odd;
  189. }
  190. bd = &g_kinetis_bdt[busid].table[ep_idx][dir][odd];
  191. bd->bdt_stall = 1;
  192. bd->own = 1;
  193. }
  194. return 0;
  195. }
  196. int usbd_ep_clear_stall(uint8_t busid, const uint8_t ep)
  197. {
  198. uint8_t ep_idx = USB_EP_GET_IDX(ep);
  199. kinetis_bd_t *bd;
  200. uint8_t odd;
  201. uint8_t dir;
  202. if (USB_EP_DIR_IS_OUT(ep)) {
  203. dir = 0;
  204. odd = g_kinetis_udc[busid].out_ep[ep_idx].ep_odd;
  205. } else {
  206. dir = 1;
  207. odd = g_kinetis_udc[busid].in_ep[ep_idx].ep_odd;
  208. }
  209. bd = &g_kinetis_bdt[busid].table[ep_idx][dir][odd];
  210. bd->own = 0;
  211. bd->bdt_stall = 0;
  212. bd->data = 0;
  213. bd = &g_kinetis_bdt[busid].table[ep_idx][dir][odd ^ 1];
  214. bd->data = 1;
  215. uint8_t regval = USB_OTG_DEV->ENDPOINT[ep_idx].ENDPT;
  216. if (regval & USB_ENDPT_EPSTALL_MASK) {
  217. USB_OTG_DEV->ENDPOINT[ep_idx].ENDPT = regval & ~USB_ENDPT_EPSTALL_MASK;
  218. }
  219. return 0;
  220. }
  221. int usbd_ep_is_stalled(uint8_t busid, const uint8_t ep, uint8_t *stalled)
  222. {
  223. uint8_t ep_idx = USB_EP_GET_IDX(ep);
  224. uint8_t regval = USB_OTG_DEV->ENDPOINT[ep_idx].ENDPT;
  225. if (regval & USB_ENDPT_EPSTALL_MASK) {
  226. *stalled = 1;
  227. } else {
  228. *stalled = 0;
  229. }
  230. return 0;
  231. }
  232. int usbd_ep_start_write(uint8_t busid, const uint8_t ep, const uint8_t *data,
  233. uint32_t data_len)
  234. {
  235. uint8_t ep_idx = USB_EP_GET_IDX(ep);
  236. if (!data && data_len) {
  237. return -1;
  238. }
  239. if (!g_kinetis_udc[busid].in_ep[ep_idx].ep_enable) {
  240. return -2;
  241. }
  242. g_kinetis_udc[busid].in_ep[ep_idx].xfer_buf = (uint8_t *)data;
  243. g_kinetis_udc[busid].in_ep[ep_idx].xfer_len = data_len;
  244. g_kinetis_udc[busid].in_ep[ep_idx].actual_xfer_len = 0;
  245. return kinetis_start_transfer(busid, ep, (uint8_t *)data, MIN(data_len, g_kinetis_udc[busid].in_ep[ep_idx].ep_mps));
  246. }
  247. int usbd_ep_start_read(uint8_t busid, const uint8_t ep, uint8_t *data,
  248. uint32_t data_len)
  249. {
  250. uint8_t ep_idx = USB_EP_GET_IDX(ep);
  251. if (!data && data_len) {
  252. return -1;
  253. }
  254. if (!g_kinetis_udc[busid].out_ep[ep_idx].ep_enable) {
  255. return -2;
  256. }
  257. g_kinetis_udc[busid].out_ep[ep_idx].xfer_buf = (uint8_t *)data;
  258. g_kinetis_udc[busid].out_ep[ep_idx].xfer_len = data_len;
  259. g_kinetis_udc[busid].out_ep[ep_idx].actual_xfer_len = 0;
  260. return kinetis_start_transfer(busid, ep, (uint8_t *)data, MIN(data_len, g_kinetis_udc[busid].out_ep[ep_idx].ep_mps));
  261. }
  262. void USBD_IRQHandler(uint8_t busid)
  263. {
  264. uint8_t s;
  265. uint8_t pid;
  266. uint8_t ep_idx;
  267. uint8_t dir;
  268. uint8_t odd;
  269. uint16_t bc;
  270. uint8_t is = USB_OTG_DEV->ISTAT;
  271. uint8_t mask = USB_OTG_DEV->INTEN;
  272. kinetis_bd_t *bd;
  273. USB_OTG_DEV->ISTAT = is & ~mask;
  274. is &= mask;
  275. if (is & USB_ISTAT_ERROR_MASK) {
  276. uint32_t es = USB_OTG_DEV->ERRSTAT;
  277. USB_OTG_DEV->ERRSTAT = es;
  278. USB_OTG_DEV->ISTAT = is;
  279. }
  280. if (is & USB_ISTAT_USBRST_MASK) {
  281. USB_OTG_DEV->ISTAT = is;
  282. USB_OTG_DEV->CTL |= USB_CTL_ODDRST_MASK;
  283. USB_OTG_DEV->ADDR = 0;
  284. USB_OTG_DEV->ENDPOINT[0].ENDPT = USB_ENDPT_EPHSHK_MASK | USB_ENDPT_EPRXEN_MASK | USB_ENDPT_EPTXEN_MASK;
  285. for (uint8_t i = 1; i < 16; i++) {
  286. USB_OTG_DEV->ENDPOINT[i].ENDPT = 0;
  287. }
  288. memset(&g_kinetis_bdt[busid], 0, sizeof(g_kinetis_bdt[busid]));
  289. memset(g_kinetis_udc[busid].in_ep, 0, sizeof(struct kinetis_ep_state) * CONFIG_USBDEV_EP_NUM);
  290. memset(g_kinetis_udc[busid].out_ep, 0, sizeof(struct kinetis_ep_state) * CONFIG_USBDEV_EP_NUM);
  291. usbd_event_reset_handler(busid);
  292. kinetis_read_setup(busid);
  293. USB_OTG_DEV->CTL &= ~USB_CTL_ODDRST_MASK;
  294. }
  295. if (is & USB_ISTAT_SLEEP_MASK) {
  296. USB_OTG_DEV->ISTAT = USB_ISTAT_SLEEP_MASK;
  297. }
  298. if (is & USB_ISTAT_RESUME_MASK) {
  299. USB_OTG_DEV->ISTAT = USB_ISTAT_RESUME_MASK;
  300. }
  301. if (is & USB_ISTAT_SOFTOK_MASK) {
  302. USB_OTG_DEV->ISTAT = USB_ISTAT_SOFTOK_MASK;
  303. }
  304. if (is & USB_ISTAT_STALL_MASK) {
  305. USB_OTG_DEV->ISTAT = USB_ISTAT_STALL_MASK;
  306. }
  307. if (is & USB_ISTAT_TOKDNE_MASK) {
  308. s = USB_OTG_DEV->STAT;
  309. USB_OTG_DEV->ISTAT = USB_ISTAT_TOKDNE_MASK; /* must be cleared after get STAT */
  310. ep_idx = (s & USB_STAT_ENDP_MASK) >> USB_STAT_ENDP_SHIFT;
  311. dir = (s & USB_STAT_TX_MASK) >> USB_STAT_TX_SHIFT;
  312. odd = (s & USB_STAT_ODD_MASK) >> USB_STAT_ODD_SHIFT;
  313. bd = &g_kinetis_bdt[busid].table[ep_idx][dir][odd];
  314. pid = bd->tok_pid;
  315. bc = bd->bc;
  316. bd->bdt_stall = 0;
  317. bd->dts = 1;
  318. bd->ninc = 0;
  319. bd->keep = 0;
  320. if (dir) {
  321. g_kinetis_udc[busid].in_ep[ep_idx].ep_odd = odd ^ 1;
  322. } else {
  323. g_kinetis_udc[busid].out_ep[ep_idx].ep_odd = odd ^ 1;
  324. }
  325. if (pid == USB_TOKEN_PID_SETUP) {
  326. USB_OTG_DEV->CTL &= ~USB_CTL_TXSUSPENDTOKENBUSY_MASK;
  327. usbd_event_ep0_setup_complete_handler(busid, (uint8_t *)bd->addr);
  328. return;
  329. }
  330. if (dir) {
  331. g_kinetis_udc[busid].in_ep[ep_idx].xfer_buf += bc;
  332. g_kinetis_udc[busid].in_ep[ep_idx].xfer_len -= bc;
  333. g_kinetis_udc[busid].in_ep[ep_idx].actual_xfer_len += bc;
  334. if (g_kinetis_udc[busid].in_ep[ep_idx].xfer_len == 0) {
  335. usbd_event_ep_in_complete_handler(busid, ep_idx | 0x80, g_kinetis_udc[busid].in_ep[ep_idx].actual_xfer_len);
  336. } else {
  337. kinetis_start_transfer(busid, ep_idx | 0x80, g_kinetis_udc[busid].in_ep[ep_idx].xfer_buf,
  338. MIN(g_kinetis_udc[busid].in_ep[ep_idx].xfer_len, g_kinetis_udc[busid].in_ep[ep_idx].ep_mps));
  339. }
  340. } else {
  341. g_kinetis_udc[busid].out_ep[ep_idx].xfer_buf += bc;
  342. g_kinetis_udc[busid].out_ep[ep_idx].xfer_len -= bc;
  343. g_kinetis_udc[busid].out_ep[ep_idx].actual_xfer_len += bc;
  344. if ((bc < g_kinetis_udc[busid].out_ep[ep_idx].ep_mps) || (g_kinetis_udc[busid].out_ep[ep_idx].xfer_len == 0)) {
  345. usbd_event_ep_out_complete_handler(busid, ep_idx, g_kinetis_udc[busid].out_ep[ep_idx].actual_xfer_len);
  346. } else {
  347. kinetis_start_transfer(busid, ep_idx, g_kinetis_udc[busid].out_ep[ep_idx].xfer_buf,
  348. MIN(g_kinetis_udc[busid].out_ep[ep_idx].xfer_len, g_kinetis_udc[busid].out_ep[ep_idx].ep_mps));
  349. }
  350. }
  351. if ((bc == 0) && (ep_idx == 0)) {
  352. if ((g_kinetis_udc[busid].dev_addr > 0) && dir) {
  353. USB_OTG_DEV->ADDR = g_kinetis_udc[busid].dev_addr;
  354. g_kinetis_udc[busid].dev_addr = 0;
  355. }
  356. kinetis_read_setup(busid);
  357. }
  358. }
  359. }