usb_rp2040.c 11 KB

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  1. // SPDX-License-Identifier: BSD-3-Clause
  2. // Copyright (c) 2022, Alex Taradov <alex@taradov.com>. All rights reserved.
  3. /*- Includes ----------------------------------------------------------------*/
  4. #include "rp2040.h"
  5. #include "usb.h"
  6. #include "usb_std.h"
  7. #include "usb_descriptors.h"
  8. /*- Definitions -------------------------------------------------------------*/
  9. #define USB_EP_NUM 16
  10. #define USB_DPRAM_SIZE 4096
  11. #define USB_DPRAM ((usb_dpram_t *)USBCTRL_DPRAM_BASE)
  12. #define USB_DPRAM_FIXED_SIZE 0x100
  13. #define USB_DPRAM_BUF_OFFSET (USB_DPRAM_FIXED_SIZE + USB_CTRL_EP_SIZE*2)
  14. /*- Types -------------------------------------------------------------------*/
  15. typedef struct
  16. {
  17. __IOM uint8_t SETUP[8];
  18. struct // Starts with EP1
  19. {
  20. __IOM uint32_t IN;
  21. __IOM uint32_t OUT;
  22. } EP_CTRL[USB_EP_NUM-1];
  23. struct // Starts with EP0
  24. {
  25. __IOM uint32_t IN;
  26. __IOM uint32_t OUT;
  27. } EP_BUF_CTRL[USB_EP_NUM];
  28. __IOM uint8_t EP0_BUF[USB_CTRL_EP_SIZE];
  29. __IOM uint8_t DUMMY[USB_CTRL_EP_SIZE];
  30. } usb_dpram_t;
  31. typedef struct
  32. {
  33. int in_pid;
  34. volatile uint8_t *in_buf;
  35. int out_pid;
  36. volatile uint8_t *out_buf;
  37. uint8_t *out_data;
  38. } usb_ep_t;
  39. /*- Variables ---------------------------------------------------------------*/
  40. static int usb_ep_buf_ptr = 0;
  41. static usb_ep_t usb_ep[USB_EP_NUM];
  42. static void (*usb_control_recv_callback)(uint8_t *data, int size);
  43. static int usb_setup_length;
  44. /*- Prototypes --------------------------------------------------------------*/
  45. static void usb_reset_endpoints(void);
  46. /*- Implementations ---------------------------------------------------------*/
  47. //-----------------------------------------------------------------------------
  48. void usb_hw_init(void)
  49. {
  50. RESETS_CLR->RESET = RESETS_RESET_usbctrl_Msk;
  51. while (0 == RESETS->RESET_DONE_b.usbctrl);
  52. memset(USBCTRL_DPRAM, 0, USB_DPRAM_SIZE);
  53. USBCTRL_REGS->USB_MUXING = USBCTRL_REGS_USB_MUXING_TO_PHY_Msk |
  54. USBCTRL_REGS_USB_MUXING_SOFTCON_Msk;
  55. USBCTRL_REGS->USB_PWR = USBCTRL_REGS_USB_PWR_VBUS_DETECT_Msk |
  56. USBCTRL_REGS_USB_PWR_VBUS_DETECT_OVERRIDE_EN_Msk;
  57. USBCTRL_REGS->MAIN_CTRL = USBCTRL_REGS_MAIN_CTRL_CONTROLLER_EN_Msk;
  58. USBCTRL_REGS->SIE_CTRL = USBCTRL_REGS_SIE_CTRL_EP0_INT_1BUF_Msk;
  59. USBCTRL_REGS->ADDR_ENDP = 0;
  60. USBCTRL_REGS->INTE = USBCTRL_REGS_INTE_BUFF_STATUS_Msk |
  61. USBCTRL_REGS_INTE_SETUP_REQ_Msk | USBCTRL_REGS_INTE_BUS_RESET_Msk;
  62. usb_reset_endpoints();
  63. usb_attach();
  64. }
  65. //-----------------------------------------------------------------------------
  66. void usb_attach(void)
  67. {
  68. USBCTRL_REGS_SET->SIE_CTRL = USBCTRL_REGS_SIE_CTRL_PULLUP_EN_Msk;
  69. }
  70. //-----------------------------------------------------------------------------
  71. void usb_detach(void)
  72. {
  73. USBCTRL_REGS_CLR->SIE_CTRL = USBCTRL_REGS_SIE_CTRL_PULLUP_EN_Msk;
  74. }
  75. //-----------------------------------------------------------------------------
  76. static void usb_reset_endpoints(void)
  77. {
  78. for (int i = 0; i < USB_EP_NUM-1; i++)
  79. {
  80. USB_DPRAM->EP_CTRL[i].IN = 0;
  81. USB_DPRAM->EP_CTRL[i].OUT = 0;
  82. }
  83. memset(&usb_ep, 0, sizeof(usb_ep));
  84. usb_ep_buf_ptr = USB_DPRAM_BUF_OFFSET;
  85. }
  86. //-----------------------------------------------------------------------------
  87. void usb_configure_endpoint(usb_endpoint_descriptor_t *desc)
  88. {
  89. int ep, dir, type, size;
  90. ep = desc->bEndpointAddress & USB_INDEX_MASK;
  91. dir = desc->bEndpointAddress & USB_DIRECTION_MASK;
  92. type = desc->bmAttributes & 0x03;
  93. size = desc->wMaxPacketSize & 0x3ff;
  94. if (size <= 64)
  95. size = 64;
  96. else if (size <= 128)
  97. size = 128;
  98. else if (size <= 256)
  99. size = 256;
  100. else if (size <= 512)
  101. size = 512;
  102. else
  103. size = 1024;
  104. if (USB_IN_ENDPOINT == dir)
  105. {
  106. usb_ep[ep].in_buf = (volatile uint8_t *)(USBCTRL_DPRAM_BASE + usb_ep_buf_ptr);
  107. USB_DPRAM->EP_CTRL[ep-1].IN = USBCTRL_DPRAM_EP1_IN_CONTROL_ENABLE_Msk |
  108. USBCTRL_DPRAM_EP1_IN_CONTROL_INTERRUPT_PER_BUFF_Msk |
  109. (type << USBCTRL_DPRAM_EP1_IN_CONTROL_ENDPOINT_TYPE_Pos) |
  110. (usb_ep_buf_ptr << USBCTRL_DPRAM_EP1_IN_CONTROL_BUFFER_ADDRESS_Pos);
  111. }
  112. else
  113. {
  114. usb_ep[ep].out_buf = (volatile uint8_t *)(USBCTRL_DPRAM_BASE + usb_ep_buf_ptr);
  115. USB_DPRAM->EP_CTRL[ep-1].OUT = USBCTRL_DPRAM_EP1_OUT_CONTROL_ENABLE_Msk |
  116. USBCTRL_DPRAM_EP1_OUT_CONTROL_INTERRUPT_PER_BUFF_Msk |
  117. (type << USBCTRL_DPRAM_EP1_OUT_CONTROL_ENDPOINT_TYPE_Pos) |
  118. (usb_ep_buf_ptr << USBCTRL_DPRAM_EP1_OUT_CONTROL_BUFFER_ADDRESS_Pos);
  119. }
  120. usb_ep_buf_ptr += size;
  121. }
  122. //-----------------------------------------------------------------------------
  123. bool usb_endpoint_configured(int ep, int dir)
  124. {
  125. if (USB_IN_ENDPOINT == dir)
  126. return (USB_DPRAM->EP_CTRL[ep-1].IN & USBCTRL_DPRAM_EP1_IN_CONTROL_ENABLE_Msk) != 0;
  127. else
  128. return (USB_DPRAM->EP_CTRL[ep-1].OUT & USBCTRL_DPRAM_EP1_OUT_CONTROL_ENABLE_Msk) != 0;
  129. }
  130. //-----------------------------------------------------------------------------
  131. int usb_endpoint_get_status(int ep, int dir)
  132. {
  133. if (USB_IN_ENDPOINT == dir)
  134. return (USB_DPRAM->EP_BUF_CTRL[ep].IN & USBCTRL_DPRAM_EP0_IN_BUFFER_CONTROL_STALL_Msk) != 0;
  135. else
  136. return (USB_DPRAM->EP_BUF_CTRL[ep].OUT & USBCTRL_DPRAM_EP0_OUT_BUFFER_CONTROL_STALL_Msk) != 0;
  137. }
  138. //-----------------------------------------------------------------------------
  139. void usb_endpoint_set_feature(int ep, int dir)
  140. {
  141. if (USB_IN_ENDPOINT == dir)
  142. USB_DPRAM->EP_BUF_CTRL[ep].IN = USBCTRL_DPRAM_EP0_IN_BUFFER_CONTROL_STALL_Msk;
  143. else
  144. USB_DPRAM->EP_BUF_CTRL[ep].OUT = USBCTRL_DPRAM_EP0_OUT_BUFFER_CONTROL_STALL_Msk;
  145. }
  146. //-----------------------------------------------------------------------------
  147. void usb_endpoint_clear_feature(int ep, int dir)
  148. {
  149. if (USB_IN_ENDPOINT == dir)
  150. {
  151. usb_ep[ep].in_pid = 0;
  152. USB_DPRAM->EP_BUF_CTRL[ep].IN &= ~USBCTRL_DPRAM_EP0_IN_BUFFER_CONTROL_STALL_Msk;
  153. }
  154. else
  155. {
  156. usb_ep[0].out_pid = 0;
  157. USB_DPRAM->EP_BUF_CTRL[ep].OUT &= ~USBCTRL_DPRAM_EP0_OUT_BUFFER_CONTROL_STALL_Msk;
  158. }
  159. }
  160. //-----------------------------------------------------------------------------
  161. void usb_set_address(int address)
  162. {
  163. USBCTRL_REGS->ADDR_ENDP = address;
  164. }
  165. //-----------------------------------------------------------------------------
  166. static void usb_start_in_transfer(int ep, int size)
  167. {
  168. uint32_t v = size | USBCTRL_DPRAM_EP0_IN_BUFFER_CONTROL_FULL_0_Msk |
  169. (usb_ep[ep].in_pid ? USBCTRL_DPRAM_EP0_IN_BUFFER_CONTROL_PID_0_Msk : 0);
  170. usb_ep[ep].in_pid ^= 1;
  171. USB_DPRAM->EP_BUF_CTRL[ep].IN = v;
  172. asm("nop");
  173. asm("nop");
  174. asm("nop");
  175. asm("nop");
  176. USB_DPRAM->EP_BUF_CTRL[ep].IN = v | USBCTRL_DPRAM_EP0_IN_BUFFER_CONTROL_AVAILABLE_0_Msk;
  177. }
  178. //-----------------------------------------------------------------------------
  179. static void usb_start_out_transfer(int ep, int size)
  180. {
  181. uint32_t v = size | (usb_ep[ep].out_pid ? USBCTRL_DPRAM_EP0_OUT_BUFFER_CONTROL_PID_0_Msk : 0);
  182. usb_ep[ep].out_pid ^= 1;
  183. USB_DPRAM->EP_BUF_CTRL[ep].OUT = v;
  184. asm("nop");
  185. asm("nop");
  186. asm("nop");
  187. asm("nop");
  188. USB_DPRAM->EP_BUF_CTRL[ep].OUT = v | USBCTRL_DPRAM_EP0_OUT_BUFFER_CONTROL_AVAILABLE_0_Msk;
  189. }
  190. //-----------------------------------------------------------------------------
  191. void usb_send(int ep, uint8_t *data, int size)
  192. {
  193. for (int i = 0; i < size; i++)
  194. usb_ep[ep].in_buf[i] = data[i];
  195. usb_start_in_transfer(ep, size);
  196. }
  197. //-----------------------------------------------------------------------------
  198. void usb_recv(int ep, uint8_t *data, int size)
  199. {
  200. usb_ep[ep].out_data = data;
  201. usb_start_out_transfer(ep, size);
  202. }
  203. //-----------------------------------------------------------------------------
  204. void usb_control_send_zlp(void)
  205. {
  206. usb_start_in_transfer(0, 0);
  207. while (0 == (USBCTRL_REGS->BUFF_STATUS & USBCTRL_REGS_BUFF_STATUS_EP0_IN_Msk));
  208. USBCTRL_REGS->BUFF_STATUS = USBCTRL_REGS_BUFF_STATUS_EP0_IN_Msk;
  209. }
  210. //-----------------------------------------------------------------------------
  211. void usb_control_stall(void)
  212. {
  213. USBCTRL_REGS->EP_STALL_ARM = USBCTRL_REGS_EP_STALL_ARM_EP0_IN_Msk;
  214. USB_DPRAM->EP_BUF_CTRL[0].IN = USBCTRL_DPRAM_EP0_IN_BUFFER_CONTROL_STALL_Msk;
  215. }
  216. //-----------------------------------------------------------------------------
  217. void usb_control_send(uint8_t *data, int size)
  218. {
  219. bool need_zlp = (size < usb_setup_length) &&
  220. ((size & (usb_device_descriptor.bMaxPacketSize0-1)) == 0);
  221. while (size)
  222. {
  223. int transfer_size = USB_LIMIT(size, usb_device_descriptor.bMaxPacketSize0);
  224. for (int i = 0; i < transfer_size; i++)
  225. usb_ep[0].in_buf[i] = data[i];
  226. usb_start_in_transfer(0, transfer_size);
  227. while (0 == (USBCTRL_REGS->BUFF_STATUS & USBCTRL_REGS_BUFF_STATUS_EP0_IN_Msk));
  228. USBCTRL_REGS->BUFF_STATUS = USBCTRL_REGS_BUFF_STATUS_EP0_IN_Msk;
  229. size -= transfer_size;
  230. data += transfer_size;
  231. }
  232. if (need_zlp)
  233. usb_control_send_zlp();
  234. usb_start_out_transfer(0, USB_CTRL_EP_SIZE);
  235. }
  236. //-----------------------------------------------------------------------------
  237. void usb_control_recv(void (*callback)(uint8_t *data, int size))
  238. {
  239. usb_control_recv_callback = callback;
  240. usb_start_out_transfer(0, USB_CTRL_EP_SIZE);
  241. }
  242. //-----------------------------------------------------------------------------
  243. void usb_task(void)
  244. {
  245. uint32_t status = USBCTRL_REGS->INTS;
  246. uint32_t flags;
  247. if (status & USBCTRL_REGS_INTS_BUS_RESET_Msk)
  248. {
  249. USBCTRL_REGS_CLR->SIE_STATUS = USBCTRL_REGS_SIE_STATUS_BUS_RESET_Msk;
  250. USBCTRL_REGS->ADDR_ENDP = 0;
  251. usb_reset_endpoints();
  252. usb_ep[0].in_buf = (volatile uint8_t *)(USBCTRL_DPRAM_BASE + USB_DPRAM_FIXED_SIZE);
  253. usb_ep[0].out_buf = (volatile uint8_t *)(USBCTRL_DPRAM_BASE + USB_DPRAM_FIXED_SIZE);
  254. }
  255. if (status & USBCTRL_REGS_INTS_SETUP_REQ_Msk)
  256. {
  257. usb_request_t *request = (usb_request_t *)USBCTRL_DPRAM;
  258. usb_setup_length = request->wLength;
  259. usb_ep[0].in_pid = 1;
  260. usb_ep[0].out_pid = 1;
  261. USBCTRL_REGS_CLR->SIE_STATUS = USBCTRL_REGS_SIE_STATUS_SETUP_REC_Msk;
  262. if (!usb_handle_standard_request(request))
  263. usb_control_stall();
  264. usb_setup_length = -1;
  265. }
  266. if (status & USBCTRL_REGS_INTS_BUFF_STATUS_Msk)
  267. {
  268. status = USBCTRL_REGS->BUFF_STATUS;
  269. if (status & USBCTRL_REGS_BUFF_STATUS_EP0_OUT_Msk)
  270. {
  271. int size = USB_DPRAM->EP_BUF_CTRL[0].OUT & USBCTRL_DPRAM_EP0_OUT_BUFFER_CONTROL_LENGTH_0_Msk;
  272. if (usb_control_recv_callback)
  273. {
  274. usb_control_recv_callback((uint8_t *)usb_ep[0].out_buf, size);
  275. usb_control_recv_callback = NULL;
  276. usb_control_send_zlp();
  277. }
  278. }
  279. flags = status >> 2;
  280. for (int ep = 1; ep < USB_EP_NUM && flags > 0; ep++)
  281. {
  282. if (flags & 1) // IN
  283. {
  284. usb_send_callback(ep);
  285. }
  286. if (flags & 2) // OUT
  287. {
  288. int size = USB_DPRAM->EP_BUF_CTRL[ep].OUT & USBCTRL_DPRAM_EP0_OUT_BUFFER_CONTROL_LENGTH_0_Msk;
  289. for (int i = 0; i < size; i++)
  290. usb_ep[ep].out_data[i] = usb_ep[ep].out_buf[i];
  291. usb_recv_callback(ep, size);
  292. }
  293. flags >>= 2;
  294. }
  295. USBCTRL_REGS->BUFF_STATUS = status;
  296. }
  297. }