mii.h 12 KB

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  1. /*
  2. * linux/mii.h: definitions for MII-compatible transceivers
  3. * Originally drivers/net/sunhme.h.
  4. *
  5. * Copyright (C) 1996, 1999, 2001 David S. Miller (davem@redhat.com)
  6. */
  7. #ifndef __LINUX_MII_H__
  8. #define __LINUX_MII_H__
  9. #include <linux/types.h>
  10. /* Generic MII registers. */
  11. #define MII_BMCR 0x00 /* Basic mode control register */
  12. #define MII_BMSR 0x01 /* Basic mode status register */
  13. #define MII_PHYSID1 0x02 /* PHYS ID 1 */
  14. #define MII_PHYSID2 0x03 /* PHYS ID 2 */
  15. #define MII_ADVERTISE 0x04 /* Advertisement control reg */
  16. #define MII_LPA 0x05 /* Link partner ability reg */
  17. #define MII_EXPANSION 0x06 /* Expansion register */
  18. #define MII_CTRL1000 0x09 /* 1000BASE-T control */
  19. #define MII_STAT1000 0x0a /* 1000BASE-T status */
  20. #define MII_ESTATUS 0x0f /* Extended Status */
  21. #define MII_DCOUNTER 0x12 /* Disconnect counter */
  22. #define MII_FCSCOUNTER 0x13 /* False carrier counter */
  23. #define MII_NWAYTEST 0x14 /* N-way auto-neg test reg */
  24. #define MII_RERRCOUNTER 0x15 /* Receive error counter */
  25. #define MII_SREVISION 0x16 /* Silicon revision */
  26. #define MII_RESV1 0x17 /* Reserved... */
  27. #define MII_LBRERROR 0x18 /* Lpback, rx, bypass error */
  28. #define MII_PHYADDR 0x19 /* PHY address */
  29. #define MII_RESV2 0x1a /* Reserved... */
  30. #define MII_TPISTATUS 0x1b /* TPI status for 10mbps */
  31. #define MII_NCONFIG 0x1c /* Network interface config */
  32. /* Basic mode control register. */
  33. #define BMCR_RESV 0x003f /* Unused... */
  34. #define BMCR_SPEED1000 0x0040 /* MSB of Speed (1000) */
  35. #define BMCR_CTST 0x0080 /* Collision test */
  36. #define BMCR_FULLDPLX 0x0100 /* Full duplex */
  37. #define BMCR_ANRESTART 0x0200 /* Auto negotiation restart */
  38. #define BMCR_ISOLATE 0x0400 /* Disconnect DP83840 from MII */
  39. #define BMCR_PDOWN 0x0800 /* Powerdown the DP83840 */
  40. #define BMCR_ANENABLE 0x1000 /* Enable auto negotiation */
  41. #define BMCR_SPEED100 0x2000 /* Select 100Mbps */
  42. #define BMCR_LOOPBACK 0x4000 /* TXD loopback bits */
  43. #define BMCR_RESET 0x8000 /* Reset the DP83840 */
  44. /* Basic mode status register. */
  45. #define BMSR_ERCAP 0x0001 /* Ext-reg capability */
  46. #define BMSR_JCD 0x0002 /* Jabber detected */
  47. #define BMSR_LSTATUS 0x0004 /* Link status */
  48. #define BMSR_ANEGCAPABLE 0x0008 /* Able to do auto-negotiation */
  49. #define BMSR_RFAULT 0x0010 /* Remote fault detected */
  50. #define BMSR_ANEGCOMPLETE 0x0020 /* Auto-negotiation complete */
  51. #define BMSR_RESV 0x00c0 /* Unused... */
  52. #define BMSR_ESTATEN 0x0100 /* Extended Status in R15 */
  53. #define BMSR_100HALF2 0x0200 /* Can do 100BASE-T2 HDX */
  54. #define BMSR_100FULL2 0x0400 /* Can do 100BASE-T2 FDX */
  55. #define BMSR_10HALF 0x0800 /* Can do 10mbps, half-duplex */
  56. #define BMSR_10FULL 0x1000 /* Can do 10mbps, full-duplex */
  57. #define BMSR_100HALF 0x2000 /* Can do 100mbps, half-duplex */
  58. #define BMSR_100FULL 0x4000 /* Can do 100mbps, full-duplex */
  59. #define BMSR_100BASE4 0x8000 /* Can do 100mbps, 4k packets */
  60. /* Advertisement control register. */
  61. #define ADVERTISE_SLCT 0x001f /* Selector bits */
  62. #define ADVERTISE_CSMA 0x0001 /* Only selector supported */
  63. #define ADVERTISE_10HALF 0x0020 /* Try for 10mbps half-duplex */
  64. #define ADVERTISE_1000XFULL 0x0020 /* Try for 1000BASE-X full-duplex */
  65. #define ADVERTISE_10FULL 0x0040 /* Try for 10mbps full-duplex */
  66. #define ADVERTISE_1000XHALF 0x0040 /* Try for 1000BASE-X half-duplex */
  67. #define ADVERTISE_100HALF 0x0080 /* Try for 100mbps half-duplex */
  68. #define ADVERTISE_1000XPAUSE 0x0080 /* Try for 1000BASE-X pause */
  69. #define ADVERTISE_100FULL 0x0100 /* Try for 100mbps full-duplex */
  70. #define ADVERTISE_1000XPSE_ASYM 0x0100 /* Try for 1000BASE-X asym pause */
  71. #define ADVERTISE_100BASE4 0x0200 /* Try for 100mbps 4k packets */
  72. #define ADVERTISE_PAUSE_CAP 0x0400 /* Try for pause */
  73. #define ADVERTISE_PAUSE_ASYM 0x0800 /* Try for asymetric pause */
  74. #define ADVERTISE_RESV 0x1000 /* Unused... */
  75. #define ADVERTISE_RFAULT 0x2000 /* Say we can detect faults */
  76. #define ADVERTISE_LPACK 0x4000 /* Ack link partners response */
  77. #define ADVERTISE_NPAGE 0x8000 /* Next page bit */
  78. #define ADVERTISE_FULL (ADVERTISE_100FULL | ADVERTISE_10FULL | \
  79. ADVERTISE_CSMA)
  80. #define ADVERTISE_ALL (ADVERTISE_10HALF | ADVERTISE_10FULL | \
  81. ADVERTISE_100HALF | ADVERTISE_100FULL)
  82. /* Link partner ability register. */
  83. #define LPA_SLCT 0x001f /* Same as advertise selector */
  84. #define LPA_10HALF 0x0020 /* Can do 10mbps half-duplex */
  85. #define LPA_1000XFULL 0x0020 /* Can do 1000BASE-X full-duplex */
  86. #define LPA_10FULL 0x0040 /* Can do 10mbps full-duplex */
  87. #define LPA_1000XHALF 0x0040 /* Can do 1000BASE-X half-duplex */
  88. #define LPA_100HALF 0x0080 /* Can do 100mbps half-duplex */
  89. #define LPA_1000XPAUSE 0x0080 /* Can do 1000BASE-X pause */
  90. #define LPA_100FULL 0x0100 /* Can do 100mbps full-duplex */
  91. #define LPA_1000XPAUSE_ASYM 0x0100 /* Can do 1000BASE-X pause asym*/
  92. #define LPA_100BASE4 0x0200 /* Can do 100mbps 4k packets */
  93. #define LPA_PAUSE_CAP 0x0400 /* Can pause */
  94. #define LPA_PAUSE_ASYM 0x0800 /* Can pause asymetrically */
  95. #define LPA_RESV 0x1000 /* Unused... */
  96. #define LPA_RFAULT 0x2000 /* Link partner faulted */
  97. #define LPA_LPACK 0x4000 /* Link partner acked us */
  98. #define LPA_NPAGE 0x8000 /* Next page bit */
  99. #define LPA_DUPLEX (LPA_10FULL | LPA_100FULL)
  100. #define LPA_100 (LPA_100FULL | LPA_100HALF | LPA_100BASE4)
  101. /* Expansion register for auto-negotiation. */
  102. #define EXPANSION_NWAY 0x0001 /* Can do N-way auto-nego */
  103. #define EXPANSION_LCWP 0x0002 /* Got new RX page code word */
  104. #define EXPANSION_ENABLENPAGE 0x0004 /* This enables npage words */
  105. #define EXPANSION_NPCAPABLE 0x0008 /* Link partner supports npage */
  106. #define EXPANSION_MFAULTS 0x0010 /* Multiple faults detected */
  107. #define EXPANSION_RESV 0xffe0 /* Unused... */
  108. #define ESTATUS_1000_TFULL 0x2000 /* Can do 1000BT Full */
  109. #define ESTATUS_1000_THALF 0x1000 /* Can do 1000BT Half */
  110. /* N-way test register. */
  111. #define NWAYTEST_RESV1 0x00ff /* Unused... */
  112. #define NWAYTEST_LOOPBACK 0x0100 /* Enable loopback for N-way */
  113. #define NWAYTEST_RESV2 0xfe00 /* Unused... */
  114. /* 1000BASE-T Control register */
  115. #define ADVERTISE_1000FULL 0x0200 /* Advertise 1000BASE-T full duplex */
  116. #define ADVERTISE_1000HALF 0x0100 /* Advertise 1000BASE-T half duplex */
  117. /* 1000BASE-T Status register */
  118. #define LPA_1000LOCALRXOK 0x2000 /* Link partner local receiver status */
  119. #define LPA_1000REMRXOK 0x1000 /* Link partner remote receiver status */
  120. #define LPA_1000FULL 0x0800 /* Link partner 1000BASE-T full duplex */
  121. #define LPA_1000HALF 0x0400 /* Link partner 1000BASE-T half duplex */
  122. /* Flow control flags */
  123. #define FLOW_CTRL_TX 0x01
  124. #define FLOW_CTRL_RX 0x02
  125. /* This structure is used in all SIOCxMIIxxx ioctl calls */
  126. struct mii_ioctl_data {
  127. __u16 phy_id;
  128. __u16 reg_num;
  129. __u16 val_in;
  130. __u16 val_out;
  131. };
  132. #ifdef __KERNEL__
  133. #include <linux/if.h>
  134. struct ethtool_cmd;
  135. struct mii_if_info {
  136. int phy_id;
  137. int advertising;
  138. int phy_id_mask;
  139. int reg_num_mask;
  140. unsigned int full_duplex : 1; /* is full duplex? */
  141. unsigned int force_media : 1; /* is autoneg. disabled? */
  142. unsigned int supports_gmii : 1; /* are GMII registers supported? */
  143. struct net_device *dev;
  144. int (*mdio_read) (struct net_device *dev, int phy_id, int location);
  145. void (*mdio_write) (struct net_device *dev, int phy_id, int location, int val);
  146. };
  147. extern int mii_link_ok (struct mii_if_info *mii);
  148. extern int mii_nway_restart (struct mii_if_info *mii);
  149. extern int mii_ethtool_gset(struct mii_if_info *mii, struct ethtool_cmd *ecmd);
  150. extern int mii_ethtool_sset(struct mii_if_info *mii, struct ethtool_cmd *ecmd);
  151. extern int mii_check_gmii_support(struct mii_if_info *mii);
  152. extern void mii_check_link (struct mii_if_info *mii);
  153. extern unsigned int mii_check_media (struct mii_if_info *mii,
  154. unsigned int ok_to_print,
  155. unsigned int init_media);
  156. extern int generic_mii_ioctl(struct mii_if_info *mii_if,
  157. struct mii_ioctl_data *mii_data, int cmd,
  158. unsigned int *duplex_changed);
  159. static inline struct mii_ioctl_data *if_mii(struct ifreq *rq)
  160. {
  161. return (struct mii_ioctl_data *) &rq->ifr_ifru;
  162. }
  163. /**
  164. * mii_nway_result
  165. * @negotiated: value of MII ANAR and'd with ANLPAR
  166. *
  167. * Given a set of MII abilities, check each bit and returns the
  168. * currently supported media, in the priority order defined by
  169. * IEEE 802.3u. We use LPA_xxx constants but note this is not the
  170. * value of LPA solely, as described above.
  171. *
  172. * The one exception to IEEE 802.3u is that 100baseT4 is placed
  173. * between 100T-full and 100T-half. If your phy does not support
  174. * 100T4 this is fine. If your phy places 100T4 elsewhere in the
  175. * priority order, you will need to roll your own function.
  176. */
  177. static inline unsigned int mii_nway_result (unsigned int negotiated)
  178. {
  179. unsigned int ret;
  180. if (negotiated & LPA_100FULL)
  181. ret = LPA_100FULL;
  182. else if (negotiated & LPA_100BASE4)
  183. ret = LPA_100BASE4;
  184. else if (negotiated & LPA_100HALF)
  185. ret = LPA_100HALF;
  186. else if (negotiated & LPA_10FULL)
  187. ret = LPA_10FULL;
  188. else
  189. ret = LPA_10HALF;
  190. return ret;
  191. }
  192. /**
  193. * mii_duplex
  194. * @duplex_lock: Non-zero if duplex is locked at full
  195. * @negotiated: value of MII ANAR and'd with ANLPAR
  196. *
  197. * A small helper function for a common case. Returns one
  198. * if the media is operating or locked at full duplex, and
  199. * returns zero otherwise.
  200. */
  201. static inline unsigned int mii_duplex (unsigned int duplex_lock,
  202. unsigned int negotiated)
  203. {
  204. if (duplex_lock)
  205. return 1;
  206. if (mii_nway_result(negotiated) & LPA_DUPLEX)
  207. return 1;
  208. return 0;
  209. }
  210. /**
  211. * mii_advertise_flowctrl - get flow control advertisement flags
  212. * @cap: Flow control capabilities (FLOW_CTRL_RX, FLOW_CTRL_TX or both)
  213. */
  214. static inline u16 mii_advertise_flowctrl(int cap)
  215. {
  216. u16 adv = 0;
  217. if (cap & FLOW_CTRL_RX)
  218. adv = ADVERTISE_PAUSE_CAP | ADVERTISE_PAUSE_ASYM;
  219. if (cap & FLOW_CTRL_TX)
  220. adv ^= ADVERTISE_PAUSE_ASYM;
  221. return adv;
  222. }
  223. /**
  224. * mii_resolve_flowctrl_fdx
  225. * @lcladv: value of MII ADVERTISE register
  226. * @rmtadv: value of MII LPA register
  227. *
  228. * Resolve full duplex flow control as per IEEE 802.3-2005 table 28B-3
  229. */
  230. static inline u8 mii_resolve_flowctrl_fdx(u16 lcladv, u16 rmtadv)
  231. {
  232. u8 cap = 0;
  233. if (lcladv & rmtadv & ADVERTISE_PAUSE_CAP) {
  234. cap = FLOW_CTRL_TX | FLOW_CTRL_RX;
  235. } else if (lcladv & rmtadv & ADVERTISE_PAUSE_ASYM) {
  236. if (lcladv & ADVERTISE_PAUSE_CAP)
  237. cap = FLOW_CTRL_RX;
  238. else if (rmtadv & ADVERTISE_PAUSE_CAP)
  239. cap = FLOW_CTRL_TX;
  240. }
  241. return cap;
  242. }
  243. #endif /* __KERNEL__ */
  244. #endif /* __LINUX_MII_H__ */