xilinx_emaclite.c 10.0 KB

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  1. /*
  2. * (C) Copyright 2007-2009 Michal Simek
  3. * (C) Copyright 2003 Xilinx Inc.
  4. *
  5. * Michal SIMEK <monstr@monstr.eu>
  6. *
  7. * See file CREDITS for list of people who contributed to this
  8. * project.
  9. *
  10. * This program is free software; you can redistribute it and/or
  11. * modify it under the terms of the GNU General Public License as
  12. * published by the Free Software Foundation; either version 2 of
  13. * the License, or (at your option) any later version.
  14. *
  15. * This program is distributed in the hope that it will be useful,
  16. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  17. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  18. * GNU General Public License for more details.
  19. *
  20. * You should have received a copy of the GNU General Public License
  21. * along with this program; if not, write to the Free Software
  22. * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
  23. * MA 02111-1307 USA
  24. */
  25. #include <common.h>
  26. #include <net.h>
  27. #include <config.h>
  28. #include <malloc.h>
  29. #include <asm/io.h>
  30. #undef DEBUG
  31. #define ENET_ADDR_LENGTH 6
  32. /* EmacLite constants */
  33. #define XEL_BUFFER_OFFSET 0x0800 /* Next buffer's offset */
  34. #define XEL_TPLR_OFFSET 0x07F4 /* Tx packet length */
  35. #define XEL_TSR_OFFSET 0x07FC /* Tx status */
  36. #define XEL_RSR_OFFSET 0x17FC /* Rx status */
  37. #define XEL_RXBUFF_OFFSET 0x1000 /* Receive Buffer */
  38. /* Xmit complete */
  39. #define XEL_TSR_XMIT_BUSY_MASK 0x00000001UL
  40. /* Xmit interrupt enable bit */
  41. #define XEL_TSR_XMIT_IE_MASK 0x00000008UL
  42. /* Buffer is active, SW bit only */
  43. #define XEL_TSR_XMIT_ACTIVE_MASK 0x80000000UL
  44. /* Program the MAC address */
  45. #define XEL_TSR_PROGRAM_MASK 0x00000002UL
  46. /* define for programming the MAC address into the EMAC Lite */
  47. #define XEL_TSR_PROG_MAC_ADDR (XEL_TSR_XMIT_BUSY_MASK | XEL_TSR_PROGRAM_MASK)
  48. /* Transmit packet length upper byte */
  49. #define XEL_TPLR_LENGTH_MASK_HI 0x0000FF00UL
  50. /* Transmit packet length lower byte */
  51. #define XEL_TPLR_LENGTH_MASK_LO 0x000000FFUL
  52. /* Recv complete */
  53. #define XEL_RSR_RECV_DONE_MASK 0x00000001UL
  54. /* Recv interrupt enable bit */
  55. #define XEL_RSR_RECV_IE_MASK 0x00000008UL
  56. struct xemaclite {
  57. u32 nexttxbuffertouse; /* Next TX buffer to write to */
  58. u32 nextrxbuffertouse; /* Next RX buffer to read from */
  59. u32 txpp; /* TX ping pong buffer */
  60. u32 rxpp; /* RX ping pong buffer */
  61. };
  62. static u32 etherrxbuff[PKTSIZE_ALIGN/4]; /* Receive buffer */
  63. static void xemaclite_alignedread(u32 *srcptr, void *destptr, u32 bytecount)
  64. {
  65. u32 i;
  66. u32 alignbuffer;
  67. u32 *to32ptr;
  68. u32 *from32ptr;
  69. u8 *to8ptr;
  70. u8 *from8ptr;
  71. from32ptr = (u32 *) srcptr;
  72. /* Word aligned buffer, no correction needed. */
  73. to32ptr = (u32 *) destptr;
  74. while (bytecount > 3) {
  75. *to32ptr++ = *from32ptr++;
  76. bytecount -= 4;
  77. }
  78. to8ptr = (u8 *) to32ptr;
  79. alignbuffer = *from32ptr++;
  80. from8ptr = (u8 *) &alignbuffer;
  81. for (i = 0; i < bytecount; i++)
  82. *to8ptr++ = *from8ptr++;
  83. }
  84. static void xemaclite_alignedwrite(void *srcptr, u32 destptr, u32 bytecount)
  85. {
  86. u32 i;
  87. u32 alignbuffer;
  88. u32 *to32ptr = (u32 *) destptr;
  89. u32 *from32ptr;
  90. u8 *to8ptr;
  91. u8 *from8ptr;
  92. from32ptr = (u32 *) srcptr;
  93. while (bytecount > 3) {
  94. *to32ptr++ = *from32ptr++;
  95. bytecount -= 4;
  96. }
  97. alignbuffer = 0;
  98. to8ptr = (u8 *) &alignbuffer;
  99. from8ptr = (u8 *) from32ptr;
  100. for (i = 0; i < bytecount; i++)
  101. *to8ptr++ = *from8ptr++;
  102. *to32ptr++ = alignbuffer;
  103. }
  104. static void emaclite_halt(struct eth_device *dev)
  105. {
  106. debug("eth_halt\n");
  107. }
  108. static int emaclite_init(struct eth_device *dev, bd_t *bis)
  109. {
  110. struct xemaclite *emaclite = dev->priv;
  111. debug("EmacLite Initialization Started\n");
  112. /*
  113. * TX - TX_PING & TX_PONG initialization
  114. */
  115. /* Restart PING TX */
  116. out_be32 (dev->iobase + XEL_TSR_OFFSET, 0);
  117. /* Copy MAC address */
  118. xemaclite_alignedwrite(dev->enetaddr, dev->iobase, ENET_ADDR_LENGTH);
  119. /* Set the length */
  120. out_be32 (dev->iobase + XEL_TPLR_OFFSET, ENET_ADDR_LENGTH);
  121. /* Update the MAC address in the EMAC Lite */
  122. out_be32 (dev->iobase + XEL_TSR_OFFSET, XEL_TSR_PROG_MAC_ADDR);
  123. /* Wait for EMAC Lite to finish with the MAC address update */
  124. while ((in_be32 (dev->iobase + XEL_TSR_OFFSET) &
  125. XEL_TSR_PROG_MAC_ADDR) != 0)
  126. ;
  127. if (emaclite->txpp) {
  128. /* The same operation with PONG TX */
  129. out_be32 (dev->iobase + XEL_TSR_OFFSET + XEL_BUFFER_OFFSET, 0);
  130. xemaclite_alignedwrite(dev->enetaddr, dev->iobase +
  131. XEL_BUFFER_OFFSET, ENET_ADDR_LENGTH);
  132. out_be32 (dev->iobase + XEL_TPLR_OFFSET, ENET_ADDR_LENGTH);
  133. out_be32 (dev->iobase + XEL_TSR_OFFSET + XEL_BUFFER_OFFSET,
  134. XEL_TSR_PROG_MAC_ADDR);
  135. while ((in_be32 (dev->iobase + XEL_TSR_OFFSET +
  136. XEL_BUFFER_OFFSET) & XEL_TSR_PROG_MAC_ADDR) != 0)
  137. ;
  138. }
  139. /*
  140. * RX - RX_PING & RX_PONG initialization
  141. */
  142. /* Write out the value to flush the RX buffer */
  143. out_be32 (dev->iobase + XEL_RSR_OFFSET, XEL_RSR_RECV_IE_MASK);
  144. if (emaclite->rxpp)
  145. out_be32 (dev->iobase + XEL_RSR_OFFSET + XEL_BUFFER_OFFSET,
  146. XEL_RSR_RECV_IE_MASK);
  147. debug("EmacLite Initialization complete\n");
  148. return 0;
  149. }
  150. static int xemaclite_txbufferavailable(struct eth_device *dev)
  151. {
  152. u32 reg;
  153. u32 txpingbusy;
  154. u32 txpongbusy;
  155. struct xemaclite *emaclite = dev->priv;
  156. /*
  157. * Read the other buffer register
  158. * and determine if the other buffer is available
  159. */
  160. reg = in_be32 (dev->iobase +
  161. emaclite->nexttxbuffertouse + 0);
  162. txpingbusy = ((reg & XEL_TSR_XMIT_BUSY_MASK) ==
  163. XEL_TSR_XMIT_BUSY_MASK);
  164. reg = in_be32 (dev->iobase +
  165. (emaclite->nexttxbuffertouse ^ XEL_TSR_OFFSET) + 0);
  166. txpongbusy = ((reg & XEL_TSR_XMIT_BUSY_MASK) ==
  167. XEL_TSR_XMIT_BUSY_MASK);
  168. return !(txpingbusy && txpongbusy);
  169. }
  170. static int emaclite_send(struct eth_device *dev, volatile void *ptr, int len)
  171. {
  172. u32 reg;
  173. u32 baseaddress;
  174. struct xemaclite *emaclite = dev->priv;
  175. u32 maxtry = 1000;
  176. if (len > PKTSIZE)
  177. len = PKTSIZE;
  178. while (!xemaclite_txbufferavailable(dev) && maxtry) {
  179. udelay(10);
  180. maxtry--;
  181. }
  182. if (!maxtry) {
  183. printf("Error: Timeout waiting for ethernet TX buffer\n");
  184. /* Restart PING TX */
  185. out_be32 (dev->iobase + XEL_TSR_OFFSET, 0);
  186. if (emaclite->txpp) {
  187. out_be32 (dev->iobase + XEL_TSR_OFFSET +
  188. XEL_BUFFER_OFFSET, 0);
  189. }
  190. return -1;
  191. }
  192. /* Determine the expected TX buffer address */
  193. baseaddress = (dev->iobase + emaclite->nexttxbuffertouse);
  194. /* Determine if the expected buffer address is empty */
  195. reg = in_be32 (baseaddress + XEL_TSR_OFFSET);
  196. if (((reg & XEL_TSR_XMIT_BUSY_MASK) == 0)
  197. && ((in_be32 ((baseaddress) + XEL_TSR_OFFSET)
  198. & XEL_TSR_XMIT_ACTIVE_MASK) == 0)) {
  199. if (emaclite->txpp)
  200. emaclite->nexttxbuffertouse ^= XEL_BUFFER_OFFSET;
  201. debug("Send packet from 0x%x\n", baseaddress);
  202. /* Write the frame to the buffer */
  203. xemaclite_alignedwrite((void *) ptr, baseaddress, len);
  204. out_be32 (baseaddress + XEL_TPLR_OFFSET,(len &
  205. (XEL_TPLR_LENGTH_MASK_HI | XEL_TPLR_LENGTH_MASK_LO)));
  206. reg = in_be32 (baseaddress + XEL_TSR_OFFSET);
  207. reg |= XEL_TSR_XMIT_BUSY_MASK;
  208. if ((reg & XEL_TSR_XMIT_IE_MASK) != 0)
  209. reg |= XEL_TSR_XMIT_ACTIVE_MASK;
  210. out_be32 (baseaddress + XEL_TSR_OFFSET, reg);
  211. return 0;
  212. }
  213. if (emaclite->txpp) {
  214. /* Switch to second buffer */
  215. baseaddress ^= XEL_BUFFER_OFFSET;
  216. /* Determine if the expected buffer address is empty */
  217. reg = in_be32 (baseaddress + XEL_TSR_OFFSET);
  218. if (((reg & XEL_TSR_XMIT_BUSY_MASK) == 0)
  219. && ((in_be32 ((baseaddress) + XEL_TSR_OFFSET)
  220. & XEL_TSR_XMIT_ACTIVE_MASK) == 0)) {
  221. debug("Send packet from 0x%x\n", baseaddress);
  222. /* Write the frame to the buffer */
  223. xemaclite_alignedwrite((void *) ptr, baseaddress, len);
  224. out_be32 (baseaddress + XEL_TPLR_OFFSET, (len &
  225. (XEL_TPLR_LENGTH_MASK_HI |
  226. XEL_TPLR_LENGTH_MASK_LO)));
  227. reg = in_be32 (baseaddress + XEL_TSR_OFFSET);
  228. reg |= XEL_TSR_XMIT_BUSY_MASK;
  229. if ((reg & XEL_TSR_XMIT_IE_MASK) != 0)
  230. reg |= XEL_TSR_XMIT_ACTIVE_MASK;
  231. out_be32 (baseaddress + XEL_TSR_OFFSET, reg);
  232. return 0;
  233. }
  234. }
  235. puts("Error while sending frame\n");
  236. return -1;
  237. }
  238. static int emaclite_recv(struct eth_device *dev)
  239. {
  240. u32 length;
  241. u32 reg;
  242. u32 baseaddress;
  243. struct xemaclite *emaclite = dev->priv;
  244. baseaddress = dev->iobase + emaclite->nextrxbuffertouse;
  245. reg = in_be32 (baseaddress + XEL_RSR_OFFSET);
  246. debug("Testing data at address 0x%x\n", baseaddress);
  247. if ((reg & XEL_RSR_RECV_DONE_MASK) == XEL_RSR_RECV_DONE_MASK) {
  248. if (emaclite->rxpp)
  249. emaclite->nextrxbuffertouse ^= XEL_BUFFER_OFFSET;
  250. } else {
  251. if (!emaclite->rxpp) {
  252. debug("No data was available - address 0x%x\n",
  253. baseaddress);
  254. return 0;
  255. } else {
  256. baseaddress ^= XEL_BUFFER_OFFSET;
  257. reg = in_be32 (baseaddress + XEL_RSR_OFFSET);
  258. if ((reg & XEL_RSR_RECV_DONE_MASK) !=
  259. XEL_RSR_RECV_DONE_MASK) {
  260. debug("No data was available - address 0x%x\n",
  261. baseaddress);
  262. return 0;
  263. }
  264. }
  265. }
  266. /* Get the length of the frame that arrived */
  267. switch(((ntohl(in_be32 (baseaddress + XEL_RXBUFF_OFFSET + 0xC))) &
  268. 0xFFFF0000 ) >> 16) {
  269. case 0x806:
  270. length = 42 + 20; /* FIXME size of ARP */
  271. debug("ARP Packet\n");
  272. break;
  273. case 0x800:
  274. length = 14 + 14 +
  275. (((ntohl(in_be32 (baseaddress + XEL_RXBUFF_OFFSET +
  276. 0x10))) & 0xFFFF0000) >> 16);
  277. /* FIXME size of IP packet */
  278. debug ("IP Packet\n");
  279. break;
  280. default:
  281. debug("Other Packet\n");
  282. length = PKTSIZE;
  283. break;
  284. }
  285. xemaclite_alignedread((u32 *) (baseaddress + XEL_RXBUFF_OFFSET),
  286. etherrxbuff, length);
  287. /* Acknowledge the frame */
  288. reg = in_be32 (baseaddress + XEL_RSR_OFFSET);
  289. reg &= ~XEL_RSR_RECV_DONE_MASK;
  290. out_be32 (baseaddress + XEL_RSR_OFFSET, reg);
  291. debug("Packet receive from 0x%x, length %dB\n", baseaddress, length);
  292. NetReceive((uchar *) etherrxbuff, length);
  293. return length;
  294. }
  295. int xilinx_emaclite_initialize(bd_t *bis, unsigned long base_addr,
  296. int txpp, int rxpp)
  297. {
  298. struct eth_device *dev;
  299. struct xemaclite *emaclite;
  300. dev = calloc(1, sizeof(*dev));
  301. if (dev == NULL)
  302. return -1;
  303. emaclite = calloc(1, sizeof(struct xemaclite));
  304. if (emaclite == NULL) {
  305. free(dev);
  306. return -1;
  307. }
  308. dev->priv = emaclite;
  309. emaclite->txpp = txpp;
  310. emaclite->rxpp = rxpp;
  311. sprintf(dev->name, "Xelite.%lx", base_addr);
  312. dev->iobase = base_addr;
  313. dev->init = emaclite_init;
  314. dev->halt = emaclite_halt;
  315. dev->send = emaclite_send;
  316. dev->recv = emaclite_recv;
  317. eth_register(dev);
  318. return 1;
  319. }