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4330c2f2
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1/*
2 * JMicron JMC2x0 series PCIe Ethernet Linux Device Driver
3 *
4 * Copyright 2008 JMicron Technology Corporation
5 * http://www.jmicron.com/
d3d584f5 6 * Copyright (c) 2009 - 2010 Guo-Fu Tseng <cooldavid@cooldavid.org>
4330c2f2 7 *
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8 * Author: Guo-Fu Tseng <cooldavid@cooldavid.org>
9 *
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10 * This program is free software; you can redistribute it and/or modify
11 * it under the terms of the GNU General Public License as published by
12 * the Free Software Foundation; either version 2 of the License.
13 *
14 * This program is distributed in the hope that it will be useful,
15 * but WITHOUT ANY WARRANTY; without even the implied warranty of
16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 * GNU General Public License for more details.
18 *
19 * You should have received a copy of the GNU General Public License
20 * along with this program; if not, write to the Free Software
21 * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
22 *
23 */
24
cd0ff491 25#ifndef __JME_H_INCLUDED__
3b70a6fa 26#define __JME_H_INCLUDED__
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27
28#define DRV_NAME "jme"
d3d584f5 29#define DRV_VERSION "1.0.7-jmmod"
cd0ff491 30#define PFX DRV_NAME ": "
d7699f87 31
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32#define PCI_DEVICE_ID_JMICRON_JMC250 0x0250
33#define PCI_DEVICE_ID_JMICRON_JMC260 0x0260
8d27293f 34
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35/*
36 * Message related definitions
37 */
38#define JME_DEF_MSG_ENABLE \
39 (NETIF_MSG_PROBE | \
40 NETIF_MSG_LINK | \
41 NETIF_MSG_RX_ERR | \
42 NETIF_MSG_TX_ERR | \
43 NETIF_MSG_HW)
44
937ef75a
JP
45#if LINUX_VERSION_CODE <= KERNEL_VERSION(2,6,23)
46#define pr_err(fmt, arg...) \
47 printk(KERN_ERR fmt, ##arg)
48#endif
49#if LINUX_VERSION_CODE <= KERNEL_VERSION(2,6,33)
50#define netdev_err(netdev, fmt, arg...) \
51 pr_err(fmt, ##arg)
52#endif
d7699f87 53
3bf61c55 54#ifdef TX_DEBUG
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55#define tx_dbg(priv, fmt, args...) \
56 printk(KERN_DEBUG "%s: " fmt, (priv)->dev->name, ##args)
3bf61c55 57#else
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58#define tx_dbg(priv, fmt, args...) \
59do { \
60 if (0) \
61 printk(KERN_DEBUG "%s: " fmt, (priv)->dev->name, ##args); \
62} while (0)
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63#endif
64
7ca9ebee 65#if LINUX_VERSION_CODE <= KERNEL_VERSION(2,6,33)
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66#define jme_msg(msglvl, type, priv, fmt, args...) \
67 if (netif_msg_##type(priv)) \
68 printk(msglvl "%s: " fmt, (priv)->dev->name, ## args)
3bf61c55 69
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70#define msg_probe(priv, fmt, args...) \
71 jme_msg(KERN_INFO, probe, priv, fmt, ## args)
29bdd921 72
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73#define msg_link(priv, fmt, args...) \
74 jme_msg(KERN_INFO, link, priv, fmt, ## args)
79ce639c 75
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76#define msg_intr(priv, fmt, args...) \
77 jme_msg(KERN_INFO, intr, priv, fmt, ## args)
78
79#define msg_rx_err(priv, fmt, args...) \
80 jme_msg(KERN_ERR, rx_err, priv, fmt, ## args)
b3821cc5 81
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82#define msg_rx_status(priv, fmt, args...) \
83 jme_msg(KERN_INFO, rx_status, priv, fmt, ## args)
4330c2f2 84
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85#define msg_tx_err(priv, fmt, args...) \
86 jme_msg(KERN_ERR, tx_err, priv, fmt, ## args)
4330c2f2 87
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88#define msg_tx_done(priv, fmt, args...) \
89 jme_msg(KERN_INFO, tx_done, priv, fmt, ## args)
d7699f87 90
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91#define msg_tx_queued(priv, fmt, args...) \
92 jme_msg(KERN_INFO, tx_queued, priv, fmt, ## args)
93
94#define msg_hw(priv, fmt, args...) \
95 jme_msg(KERN_ERR, hw, priv, fmt, ## args)
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96
97#define netif_info(priv, type, dev, fmt, args...) \
98 msg_ ## type(priv, fmt, ## args)
99#define netif_err(priv, type, dev, fmt, args...) \
100 msg_ ## type(priv, fmt, ## args)
7ca9ebee 101#endif
cd0ff491 102
1a0b42f4
MM
103#ifndef NETIF_F_TSO6
104#define NETIF_F_TSO6 0
105#endif
106#ifndef NETIF_F_IPV6_CSUM
107#define NETIF_F_IPV6_CSUM 0
108#endif
109
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110/*
111 * Extra PCI Configuration space interface
112 */
113#define PCI_DCSR_MRRS 0x59
114#define PCI_DCSR_MRRS_MASK 0x70
115
116enum pci_dcsr_mrrs_vals {
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117 MRRS_128B = 0x00,
118 MRRS_256B = 0x10,
119 MRRS_512B = 0x20,
120 MRRS_1024B = 0x30,
121 MRRS_2048B = 0x40,
122 MRRS_4096B = 0x50,
123};
d7699f87 124
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125#define PCI_SPI 0xB0
126
127enum pci_spi_bits {
128 SPI_EN = 0x10,
129 SPI_MISO = 0x08,
130 SPI_MOSI = 0x04,
131 SPI_SCLK = 0x02,
132 SPI_CS = 0x01,
133};
134
135struct jme_spi_op {
136 void __user *uwbuf;
137 void __user *urbuf;
138 __u8 wn; /* Number of write actions */
139 __u8 rn; /* Number of read actions */
140 __u8 bitn; /* Number of bits per action */
141 __u8 spd; /* The maxim acceptable speed of controller, in MHz.*/
142 __u8 mode; /* CPOL, CPHA, and Duplex mode of SPI */
143
144 /* Internal use only */
145 u8 *kwbuf;
146 u8 *krbuf;
147 u8 sr;
148 u16 halfclk; /* Half of clock cycle calculated from spd, in ns */
149};
79ce639c 150
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151enum jme_spi_op_bits {
152 SPI_MODE_CPHA = 0x01,
153 SPI_MODE_CPOL = 0x02,
154 SPI_MODE_DUP = 0x80,
155};
156
157#define HALF_US 500 /* 500 ns */
158#define JMESPIIOCTL SIOCDEVPRIVATE
159
160/*
161 * Dynamic(adaptive)/Static PCC values
162 */
3bf61c55 163enum dynamic_pcc_values {
192570e0 164 PCC_OFF = 0,
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165 PCC_P1 = 1,
166 PCC_P2 = 2,
167 PCC_P3 = 3,
168
192570e0 169 PCC_OFF_TO = 0,
3bf61c55 170 PCC_P1_TO = 1,
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171 PCC_P2_TO = 64,
172 PCC_P3_TO = 128,
3bf61c55 173
192570e0 174 PCC_OFF_CNT = 0,
3bf61c55 175 PCC_P1_CNT = 1,
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176 PCC_P2_CNT = 16,
177 PCC_P3_CNT = 32,
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178};
179struct dynpcc_info {
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180 unsigned long last_bytes;
181 unsigned long last_pkts;
79ce639c 182 unsigned long intr_cnt;
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183 unsigned char cur;
184 unsigned char attempt;
185 unsigned char cnt;
186};
79ce639c 187#define PCC_INTERVAL_US 100000
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188#define PCC_INTERVAL (HZ / (1000000 / PCC_INTERVAL_US))
189#define PCC_P3_THRESHOLD (2 * 1024 * 1024)
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190#define PCC_P2_THRESHOLD 800
191#define PCC_INTR_THRESHOLD 800
47220951 192#define PCC_TX_TO 1000
b3821cc5 193#define PCC_TX_CNT 8
3bf61c55 194
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195/*
196 * TX/RX Descriptors
4330c2f2 197 *
cd0ff491 198 * TX/RX Ring DESC Count Must be multiple of 16 and <= 1024
d7699f87 199 */
4330c2f2 200#define RING_DESC_ALIGN 16 /* Descriptor alignment */
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201#define TX_DESC_SIZE 16
202#define TX_RING_NR 8
cd0ff491 203#define TX_RING_ALLOC_SIZE(s) ((s * TX_DESC_SIZE) + RING_DESC_ALIGN)
d7699f87 204
3bf61c55 205struct txdesc {
d7699f87 206 union {
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207 __u8 all[16];
208 __le32 dw[4];
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209 struct {
210 /* DW0 */
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211 __le16 vlan;
212 __u8 rsv1;
213 __u8 flags;
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214
215 /* DW1 */
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216 __le16 datalen;
217 __le16 mss;
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218
219 /* DW2 */
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220 __le16 pktsize;
221 __le16 rsv2;
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222
223 /* DW3 */
cd0ff491 224 __le32 bufaddr;
d7699f87 225 } desc1;
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226 struct {
227 /* DW0 */
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228 __le16 rsv1;
229 __u8 rsv2;
230 __u8 flags;
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231
232 /* DW1 */
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233 __le16 datalen;
234 __le16 rsv3;
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235
236 /* DW2 */
cd0ff491 237 __le32 bufaddrh;
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238
239 /* DW3 */
cd0ff491 240 __le32 bufaddrl;
3bf61c55 241 } desc2;
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242 struct {
243 /* DW0 */
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244 __u8 ehdrsz;
245 __u8 rsv1;
246 __u8 rsv2;
247 __u8 flags;
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248
249 /* DW1 */
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250 __le16 trycnt;
251 __le16 segcnt;
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252
253 /* DW2 */
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254 __le16 pktsz;
255 __le16 rsv3;
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256
257 /* DW3 */
cd0ff491 258 __le32 bufaddrl;
8c198884 259 } descwb;
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260 };
261};
cd0ff491 262
8c198884 263enum jme_txdesc_flags_bits {
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264 TXFLAG_OWN = 0x80,
265 TXFLAG_INT = 0x40,
3bf61c55 266 TXFLAG_64BIT = 0x20,
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267 TXFLAG_TCPCS = 0x10,
268 TXFLAG_UDPCS = 0x08,
269 TXFLAG_IPCS = 0x04,
270 TXFLAG_LSEN = 0x02,
271 TXFLAG_TAGON = 0x01,
272};
cd0ff491 273
b3821cc5 274#define TXDESC_MSS_SHIFT 2
0ede469c 275enum jme_txwbdesc_flags_bits {
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276 TXWBFLAG_OWN = 0x80,
277 TXWBFLAG_INT = 0x40,
278 TXWBFLAG_TMOUT = 0x20,
279 TXWBFLAG_TRYOUT = 0x10,
280 TXWBFLAG_COL = 0x08,
281
282 TXWBFLAG_ALLERR = TXWBFLAG_TMOUT |
283 TXWBFLAG_TRYOUT |
284 TXWBFLAG_COL,
285};
d7699f87 286
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287#define RX_DESC_SIZE 16
288#define RX_RING_NR 4
cd0ff491 289#define RX_RING_ALLOC_SIZE(s) ((s * RX_DESC_SIZE) + RING_DESC_ALIGN)
d7699f87 290#define RX_BUF_DMA_ALIGN 8
3bf61c55 291#define RX_PREPAD_SIZE 10
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292#define ETH_CRC_LEN 2
293#define RX_VLANHDR_LEN 2
294#define RX_EXTRA_LEN (RX_PREPAD_SIZE + \
295 ETH_HLEN + \
296 ETH_CRC_LEN + \
297 RX_VLANHDR_LEN + \
298 RX_BUF_DMA_ALIGN)
d7699f87 299
3bf61c55 300struct rxdesc {
d7699f87 301 union {
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302 __u8 all[16];
303 __le32 dw[4];
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304 struct {
305 /* DW0 */
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306 __le16 rsv2;
307 __u8 rsv1;
308 __u8 flags;
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309
310 /* DW1 */
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311 __le16 datalen;
312 __le16 wbcpl;
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313
314 /* DW2 */
cd0ff491 315 __le32 bufaddrh;
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316
317 /* DW3 */
cd0ff491 318 __le32 bufaddrl;
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319 } desc1;
320 struct {
321 /* DW0 */
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322 __le16 vlan;
323 __le16 flags;
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324
325 /* DW1 */
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326 __le16 framesize;
327 __u8 errstat;
328 __u8 desccnt;
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329
330 /* DW2 */
cd0ff491 331 __le32 rsshash;
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332
333 /* DW3 */
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334 __u8 hashfun;
335 __u8 hashtype;
336 __le16 resrv;
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337 } descwb;
338 };
339};
cd0ff491 340
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341enum jme_rxdesc_flags_bits {
342 RXFLAG_OWN = 0x80,
343 RXFLAG_INT = 0x40,
344 RXFLAG_64BIT = 0x20,
345};
cd0ff491 346
d7699f87 347enum jme_rxwbdesc_flags_bits {
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348 RXWBFLAG_OWN = 0x8000,
349 RXWBFLAG_INT = 0x4000,
350 RXWBFLAG_MF = 0x2000,
351 RXWBFLAG_64BIT = 0x2000,
352 RXWBFLAG_TCPON = 0x1000,
353 RXWBFLAG_UDPON = 0x0800,
354 RXWBFLAG_IPCS = 0x0400,
355 RXWBFLAG_TCPCS = 0x0200,
356 RXWBFLAG_UDPCS = 0x0100,
357 RXWBFLAG_TAGON = 0x0080,
358 RXWBFLAG_IPV4 = 0x0040,
359 RXWBFLAG_IPV6 = 0x0020,
360 RXWBFLAG_PAUSE = 0x0010,
361 RXWBFLAG_MAGIC = 0x0008,
362 RXWBFLAG_WAKEUP = 0x0004,
363 RXWBFLAG_DEST = 0x0003,
364 RXWBFLAG_DEST_UNI = 0x0001,
365 RXWBFLAG_DEST_MUL = 0x0002,
366 RXWBFLAG_DEST_BRO = 0x0003,
d7699f87 367};
cd0ff491 368
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369enum jme_rxwbdesc_desccnt_mask {
370 RXWBDCNT_WBCPL = 0x80,
371 RXWBDCNT_DCNT = 0x7F,
372};
cd0ff491 373
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374enum jme_rxwbdesc_errstat_bits {
375 RXWBERR_LIMIT = 0x80,
376 RXWBERR_MIIER = 0x40,
377 RXWBERR_NIBON = 0x20,
378 RXWBERR_COLON = 0x10,
379 RXWBERR_ABORT = 0x08,
380 RXWBERR_SHORT = 0x04,
381 RXWBERR_OVERUN = 0x02,
382 RXWBERR_CRCERR = 0x01,
383 RXWBERR_ALLERR = 0xFF,
384};
385
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386/*
387 * Buffer information corresponding to ring descriptors.
388 */
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389struct jme_buffer_info {
390 struct sk_buff *skb;
391 dma_addr_t mapping;
392 int len;
3bf61c55 393 int nr_desc;
cdcdc9eb 394 unsigned long start_xmit;
4330c2f2 395};
d7699f87 396
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397/*
398 * The structure holding buffer information and ring descriptors all together.
399 */
d7699f87 400struct jme_ring {
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401 void *alloc; /* pointer to allocated memory */
402 void *desc; /* pointer to ring memory */
403 dma_addr_t dmaalloc; /* phys address of ring alloc */
404 dma_addr_t dma; /* phys address for ring dma */
d7699f87 405
4330c2f2 406 /* Buffer information corresponding to each descriptor */
0ede469c 407 struct jme_buffer_info *bufinf;
d7699f87 408
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409 int next_to_use;
410 atomic_t next_to_clean;
79ce639c 411 atomic_t nr_free;
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412};
413
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414#if LINUX_VERSION_CODE <= KERNEL_VERSION(2,6,18)
415#define false 0
416#define true 0
417#define netdev_alloc_skb(dev, len) dev_alloc_skb(len)
418#define PCI_VENDOR_ID_JMICRON 0x197B
419#endif
420
421#if LINUX_VERSION_CODE <= KERNEL_VERSION(2,6,19)
422#define PCI_VDEVICE(vendor, device) \
423 PCI_VENDOR_ID_##vendor, (device), \
424 PCI_ANY_ID, PCI_ANY_ID, 0, 0
425#endif
426
85776f33
GFT
427#if LINUX_VERSION_CODE <= KERNEL_VERSION(2,6,21)
428#define NET_STAT(priv) priv->stats
429#define NETDEV_GET_STATS(netdev, fun_ptr) \
430 netdev->get_stats = fun_ptr
431#define DECLARE_NET_DEVICE_STATS struct net_device_stats stats;
e5169728
GFT
432/*
433 * CentOS 5.5 have *_hdr helpers back-ported
434 */
435#ifdef RHEL_RELEASE_CODE
436#if RHEL_RELEASE_CODE < RHEL_RELEASE_VERSION(5,5)
437#define __DEFINE_IPHDR_HELPERS__
438#endif
439#else
440#define __DEFINE_IPHDR_HELPERS__
441#endif
442#else
443#define NET_STAT(priv) (priv->dev->stats)
444#define NETDEV_GET_STATS(netdev, fun_ptr)
445#define DECLARE_NET_DEVICE_STATS
446#endif
447
448#ifdef __DEFINE_IPHDR_HELPERS__
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GFT
449static inline struct iphdr *ip_hdr(const struct sk_buff *skb)
450{
451 return skb->nh.iph;
452}
453
454static inline struct ipv6hdr *ipv6_hdr(const struct sk_buff *skb)
455{
456 return skb->nh.ipv6h;
457}
458
459static inline struct tcphdr *tcp_hdr(const struct sk_buff *skb)
460{
461 return skb->h.th;
462}
85776f33 463#endif
3bf61c55 464
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GFT
465#if LINUX_VERSION_CODE <= KERNEL_VERSION(2,6,23)
466#define DECLARE_NAPI_STRUCT
467#define NETIF_NAPI_SET(dev, napis, pollfn, q) \
468 dev->poll = pollfn; \
469 dev->weight = q;
470#define JME_NAPI_HOLDER(holder) struct net_device *holder
471#define JME_NAPI_WEIGHT(w) int *w
472#define JME_NAPI_WEIGHT_VAL(w) *w
473#define JME_NAPI_WEIGHT_SET(w, r) *w = r
3b70a6fa 474#define DECLARE_NETDEV struct net_device *netdev = jme->dev;
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475#define JME_RX_COMPLETE(dev, napis) netif_rx_complete(dev)
476#define JME_NAPI_ENABLE(priv) netif_poll_enable(priv->dev);
477#define JME_NAPI_DISABLE(priv) netif_poll_disable(priv->dev);
478#define JME_RX_SCHEDULE_PREP(priv) \
479 netif_rx_schedule_prep(priv->dev)
480#define JME_RX_SCHEDULE(priv) \
481 __netif_rx_schedule(priv->dev);
0ede469c 482#else
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483#define DECLARE_NAPI_STRUCT struct napi_struct napi;
484#define NETIF_NAPI_SET(dev, napis, pollfn, q) \
485 netif_napi_add(dev, napis, pollfn, q);
486#define JME_NAPI_HOLDER(holder) struct napi_struct *holder
487#define JME_NAPI_WEIGHT(w) int w
488#define JME_NAPI_WEIGHT_VAL(w) w
489#define JME_NAPI_WEIGHT_SET(w, r)
490#define DECLARE_NETDEV
491#define JME_RX_COMPLETE(dev, napis) napi_complete(napis)
492#define JME_NAPI_ENABLE(priv) napi_enable(&priv->napi);
493#define JME_NAPI_DISABLE(priv) \
494 if (!napi_disable_pending(&priv->napi)) \
495 napi_disable(&priv->napi);
496#define JME_RX_SCHEDULE_PREP(priv) \
497 napi_schedule_prep(&priv->napi)
498#define JME_RX_SCHEDULE(priv) \
499 __napi_schedule(&priv->napi);
85776f33 500#endif
cdcdc9eb 501
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502/*
503 * Jmac Adapter Private data
504 */
505struct jme_adapter {
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506 struct pci_dev *pdev;
507 struct net_device *dev;
508 void __iomem *regs;
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509 struct mii_if_info mii_if;
510 struct jme_ring rxring[RX_RING_NR];
511 struct jme_ring txring[TX_RING_NR];
d7699f87 512 spinlock_t phy_lock;
fcf45b4c 513 spinlock_t macaddr_lock;
8c198884 514 spinlock_t rxmcs_lock;
fcf45b4c 515 struct tasklet_struct rxempty_task;
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GFT
516 struct tasklet_struct rxclean_task;
517 struct tasklet_struct txclean_task;
518 struct tasklet_struct linkch_task;
79ce639c 519 struct tasklet_struct pcc_task;
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520 unsigned long flags;
521 u32 reg_txcs;
522 u32 reg_txpfc;
523 u32 reg_rxcs;
524 u32 reg_rxmcs;
525 u32 reg_ghc;
526 u32 reg_pmcs;
527 u32 phylink;
528 u32 tx_ring_size;
529 u32 tx_ring_mask;
530 u32 tx_wake_threshold;
531 u32 rx_ring_size;
532 u32 rx_ring_mask;
533 u8 mrrs;
534 unsigned int fpgaver;
98ef18f1
GFT
535 u8 chiprev;
536 u8 chip_main_rev;
537 u8 chip_sub_rev;
538 u8 pcirev;
cd0ff491 539 u32 msg_enable;
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GFT
540 struct ethtool_cmd old_ecmd;
541 unsigned int old_mtu;
cd0ff491 542 struct vlan_group *vlgrp;
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GFT
543 struct dynpcc_info dpi;
544 atomic_t intr_sem;
fcf45b4c
GFT
545 atomic_t link_changing;
546 atomic_t tx_cleaning;
547 atomic_t rx_cleaning;
192570e0 548 atomic_t rx_empty;
cdcdc9eb
GFT
549 int (*jme_rx)(struct sk_buff *skb);
550 int (*jme_vlan_rx)(struct sk_buff *skb,
551 struct vlan_group *grp,
552 unsigned short vlan_tag);
553 DECLARE_NAPI_STRUCT
3bf61c55 554 DECLARE_NET_DEVICE_STATS
d7699f87 555};
cd0ff491 556
3b70a6fa
GFT
557#if LINUX_VERSION_CODE <= KERNEL_VERSION(2,6,21)
558static struct net_device_stats *
559jme_get_stats(struct net_device *netdev)
560{
561 struct jme_adapter *jme = netdev_priv(netdev);
562 return &jme->stats;
563}
564#endif
565
79ce639c 566enum jme_flags_bits {
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GFT
567 JME_FLAG_MSI = 1,
568 JME_FLAG_SSET = 2,
569 JME_FLAG_TXCSUM = 3,
570 JME_FLAG_TSO = 4,
571 JME_FLAG_POLL = 5,
572 JME_FLAG_SHUTDOWN = 6,
8c198884 573};
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574
575#define TX_TIMEOUT (5 * HZ)
186fc259 576#define JME_REG_LEN 0x500
cd0ff491 577#define MAX_ETHERNET_JUMBO_PACKET_SIZE 9216
8c198884 578
85776f33 579#if LINUX_VERSION_CODE <= KERNEL_VERSION(2,6,23)
7ee473a3 580static inline struct jme_adapter*
85776f33
GFT
581jme_napi_priv(struct net_device *holder)
582{
7ee473a3 583 struct jme_adapter *jme;
85776f33
GFT
584 jme = netdev_priv(holder);
585 return jme;
586}
587#else
7ee473a3 588static inline struct jme_adapter*
cdcdc9eb
GFT
589jme_napi_priv(struct napi_struct *napi)
590{
7ee473a3 591 struct jme_adapter *jme;
cdcdc9eb
GFT
592 jme = container_of(napi, struct jme_adapter, napi);
593 return jme;
594}
85776f33 595#endif
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GFT
596
597/*
598 * MMaped I/O Resters
599 */
600enum jme_iomap_offsets {
4330c2f2
GFT
601 JME_MAC = 0x0000,
602 JME_PHY = 0x0400,
d7699f87 603 JME_MISC = 0x0800,
4330c2f2 604 JME_RSS = 0x0C00,
d7699f87
GFT
605};
606
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GFT
607enum jme_iomap_lens {
608 JME_MAC_LEN = 0x80,
609 JME_PHY_LEN = 0x58,
610 JME_MISC_LEN = 0x98,
611 JME_RSS_LEN = 0xFF,
612};
613
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GFT
614enum jme_iomap_regs {
615 JME_TXCS = JME_MAC | 0x00, /* Transmit Control and Status */
3bf61c55
GFT
616 JME_TXDBA_LO = JME_MAC | 0x04, /* Transmit Queue Desc Base Addr */
617 JME_TXDBA_HI = JME_MAC | 0x08, /* Transmit Queue Desc Base Addr */
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GFT
618 JME_TXQDC = JME_MAC | 0x0C, /* Transmit Queue Desc Count */
619 JME_TXNDA = JME_MAC | 0x10, /* Transmit Queue Next Desc Addr */
620 JME_TXMCS = JME_MAC | 0x14, /* Transmit MAC Control Status */
621 JME_TXPFC = JME_MAC | 0x18, /* Transmit Pause Frame Control */
622 JME_TXTRHD = JME_MAC | 0x1C, /* Transmit Timer/Retry@Half-Dup */
623
624 JME_RXCS = JME_MAC | 0x20, /* Receive Control and Status */
3bf61c55
GFT
625 JME_RXDBA_LO = JME_MAC | 0x24, /* Receive Queue Desc Base Addr */
626 JME_RXDBA_HI = JME_MAC | 0x28, /* Receive Queue Desc Base Addr */
d7699f87
GFT
627 JME_RXQDC = JME_MAC | 0x2C, /* Receive Queue Desc Count */
628 JME_RXNDA = JME_MAC | 0x30, /* Receive Queue Next Desc Addr */
629 JME_RXMCS = JME_MAC | 0x34, /* Receive MAC Control Status */
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GFT
630 JME_RXUMA_LO = JME_MAC | 0x38, /* Receive Unicast MAC Address */
631 JME_RXUMA_HI = JME_MAC | 0x3C, /* Receive Unicast MAC Address */
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GFT
632 JME_RXMCHT_LO = JME_MAC | 0x40, /* Recv Multicast Addr HashTable */
633 JME_RXMCHT_HI = JME_MAC | 0x44, /* Recv Multicast Addr HashTable */
d7699f87
GFT
634 JME_WFODP = JME_MAC | 0x48, /* Wakeup Frame Output Data Port */
635 JME_WFOI = JME_MAC | 0x4C, /* Wakeup Frame Output Interface */
636
637 JME_SMI = JME_MAC | 0x50, /* Station Management Interface */
638 JME_GHC = JME_MAC | 0x54, /* Global Host Control */
639 JME_PMCS = JME_MAC | 0x60, /* Power Management Control/Stat */
640
641
3bf61c55 642 JME_PHY_CS = JME_PHY | 0x28, /* PHY Ctrl and Status Register */
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GFT
643 JME_PHY_LINK = JME_PHY | 0x30, /* PHY Link Status Register */
644 JME_SMBCSR = JME_PHY | 0x40, /* SMB Control and Status */
186fc259 645 JME_SMBINTF = JME_PHY | 0x44, /* SMB Interface */
d7699f87
GFT
646
647
cd0ff491
GFT
648 JME_TMCSR = JME_MISC | 0x00, /* Timer Control/Status Register */
649 JME_GPREG0 = JME_MISC | 0x08, /* General purpose REG-0 */
650 JME_GPREG1 = JME_MISC | 0x0C, /* General purpose REG-1 */
651 JME_IEVE = JME_MISC | 0x20, /* Interrupt Event Status */
652 JME_IREQ = JME_MISC | 0x24, /* Intr Req Status(For Debug) */
653 JME_IENS = JME_MISC | 0x28, /* Intr Enable - Setting Port */
654 JME_IENC = JME_MISC | 0x2C, /* Interrupt Enable - Clear Port */
655 JME_PCCRX0 = JME_MISC | 0x30, /* PCC Control for RX Queue 0 */
656 JME_PCCTX = JME_MISC | 0x40, /* PCC Control for TX Queues */
657 JME_CHIPMODE = JME_MISC | 0x44, /* Identify FPGA Version */
658 JME_SHBA_HI = JME_MISC | 0x48, /* Shadow Register Base HI */
659 JME_SHBA_LO = JME_MISC | 0x4C, /* Shadow Register Base LO */
660 JME_TIMER1 = JME_MISC | 0x70, /* Timer1 */
661 JME_TIMER2 = JME_MISC | 0x74, /* Timer2 */
662 JME_APMC = JME_MISC | 0x7C, /* Aggressive Power Mode Control */
663 JME_PCCSRX0 = JME_MISC | 0x80, /* PCC Status of RX0 */
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GFT
664};
665
666/*
667 * TX Control/Status Bits
668 */
669enum jme_txcs_bits {
670 TXCS_QUEUE7S = 0x00008000,
671 TXCS_QUEUE6S = 0x00004000,
672 TXCS_QUEUE5S = 0x00002000,
673 TXCS_QUEUE4S = 0x00001000,
674 TXCS_QUEUE3S = 0x00000800,
675 TXCS_QUEUE2S = 0x00000400,
676 TXCS_QUEUE1S = 0x00000200,
677 TXCS_QUEUE0S = 0x00000100,
678 TXCS_FIFOTH = 0x000000C0,
679 TXCS_DMASIZE = 0x00000030,
680 TXCS_BURST = 0x00000004,
681 TXCS_ENABLE = 0x00000001,
682};
cd0ff491 683
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GFT
684enum jme_txcs_value {
685 TXCS_FIFOTH_16QW = 0x000000C0,
686 TXCS_FIFOTH_12QW = 0x00000080,
687 TXCS_FIFOTH_8QW = 0x00000040,
688 TXCS_FIFOTH_4QW = 0x00000000,
689
690 TXCS_DMASIZE_64B = 0x00000000,
691 TXCS_DMASIZE_128B = 0x00000010,
692 TXCS_DMASIZE_256B = 0x00000020,
693 TXCS_DMASIZE_512B = 0x00000030,
694
695 TXCS_SELECT_QUEUE0 = 0x00000000,
696 TXCS_SELECT_QUEUE1 = 0x00010000,
697 TXCS_SELECT_QUEUE2 = 0x00020000,
698 TXCS_SELECT_QUEUE3 = 0x00030000,
699 TXCS_SELECT_QUEUE4 = 0x00040000,
700 TXCS_SELECT_QUEUE5 = 0x00050000,
701 TXCS_SELECT_QUEUE6 = 0x00060000,
702 TXCS_SELECT_QUEUE7 = 0x00070000,
703
704 TXCS_DEFAULT = TXCS_FIFOTH_4QW |
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GFT
705 TXCS_BURST,
706};
cd0ff491 707
29bdd921 708#define JME_TX_DISABLE_TIMEOUT 10 /* 10 msec */
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GFT
709
710/*
711 * TX MAC Control/Status Bits
712 */
713enum jme_txmcs_bit_masks {
714 TXMCS_IFG2 = 0xC0000000,
715 TXMCS_IFG1 = 0x30000000,
716 TXMCS_TTHOLD = 0x00000300,
717 TXMCS_FBURST = 0x00000080,
718 TXMCS_CARRIEREXT = 0x00000040,
719 TXMCS_DEFER = 0x00000020,
720 TXMCS_BACKOFF = 0x00000010,
721 TXMCS_CARRIERSENSE = 0x00000008,
722 TXMCS_COLLISION = 0x00000004,
723 TXMCS_CRC = 0x00000002,
724 TXMCS_PADDING = 0x00000001,
725};
cd0ff491 726
d7699f87
GFT
727enum jme_txmcs_values {
728 TXMCS_IFG2_6_4 = 0x00000000,
729 TXMCS_IFG2_8_5 = 0x40000000,
730 TXMCS_IFG2_10_6 = 0x80000000,
731 TXMCS_IFG2_12_7 = 0xC0000000,
732
733 TXMCS_IFG1_8_4 = 0x00000000,
734 TXMCS_IFG1_12_6 = 0x10000000,
735 TXMCS_IFG1_16_8 = 0x20000000,
736 TXMCS_IFG1_20_10 = 0x30000000,
737
738 TXMCS_TTHOLD_1_8 = 0x00000000,
739 TXMCS_TTHOLD_1_4 = 0x00000100,
740 TXMCS_TTHOLD_1_2 = 0x00000200,
741 TXMCS_TTHOLD_FULL = 0x00000300,
742
743 TXMCS_DEFAULT = TXMCS_IFG2_8_5 |
744 TXMCS_IFG1_16_8 |
745 TXMCS_TTHOLD_FULL |
746 TXMCS_DEFER |
747 TXMCS_CRC |
748 TXMCS_PADDING,
749};
750
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GFT
751enum jme_txpfc_bits_masks {
752 TXPFC_VLAN_TAG = 0xFFFF0000,
753 TXPFC_VLAN_EN = 0x00008000,
754 TXPFC_PF_EN = 0x00000001,
755};
756
757enum jme_txtrhd_bits_masks {
758 TXTRHD_TXPEN = 0x80000000,
759 TXTRHD_TXP = 0x7FFFFF00,
760 TXTRHD_TXREN = 0x00000080,
761 TXTRHD_TXRL = 0x0000007F,
762};
cd0ff491 763
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GFT
764enum jme_txtrhd_shifts {
765 TXTRHD_TXP_SHIFT = 8,
766 TXTRHD_TXRL_SHIFT = 0,
767};
768
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GFT
769/*
770 * RX Control/Status Bits
771 */
4330c2f2 772enum jme_rxcs_bit_masks {
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GFT
773 /* FIFO full threshold for transmitting Tx Pause Packet */
774 RXCS_FIFOTHTP = 0x30000000,
775 /* FIFO threshold for processing next packet */
776 RXCS_FIFOTHNP = 0x0C000000,
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GFT
777 RXCS_DMAREQSZ = 0x03000000, /* DMA Request Size */
778 RXCS_QUEUESEL = 0x00030000, /* Queue selection */
779 RXCS_RETRYGAP = 0x0000F000, /* RX Desc full retry gap */
780 RXCS_RETRYCNT = 0x00000F00, /* RX Desc full retry counter */
781 RXCS_WAKEUP = 0x00000040, /* Enable receive wakeup packet */
782 RXCS_MAGIC = 0x00000020, /* Enable receive magic packet */
783 RXCS_SHORT = 0x00000010, /* Enable receive short packet */
784 RXCS_ABORT = 0x00000008, /* Enable receive errorr packet */
785 RXCS_QST = 0x00000004, /* Receive queue start */
786 RXCS_SUSPEND = 0x00000002,
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GFT
787 RXCS_ENABLE = 0x00000001,
788};
cd0ff491 789
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GFT
790enum jme_rxcs_values {
791 RXCS_FIFOTHTP_16T = 0x00000000,
792 RXCS_FIFOTHTP_32T = 0x10000000,
793 RXCS_FIFOTHTP_64T = 0x20000000,
794 RXCS_FIFOTHTP_128T = 0x30000000,
795
796 RXCS_FIFOTHNP_16QW = 0x00000000,
797 RXCS_FIFOTHNP_32QW = 0x04000000,
798 RXCS_FIFOTHNP_64QW = 0x08000000,
799 RXCS_FIFOTHNP_128QW = 0x0C000000,
800
801 RXCS_DMAREQSZ_16B = 0x00000000,
802 RXCS_DMAREQSZ_32B = 0x01000000,
803 RXCS_DMAREQSZ_64B = 0x02000000,
804 RXCS_DMAREQSZ_128B = 0x03000000,
805
806 RXCS_QUEUESEL_Q0 = 0x00000000,
807 RXCS_QUEUESEL_Q1 = 0x00010000,
808 RXCS_QUEUESEL_Q2 = 0x00020000,
809 RXCS_QUEUESEL_Q3 = 0x00030000,
810
811 RXCS_RETRYGAP_256ns = 0x00000000,
812 RXCS_RETRYGAP_512ns = 0x00001000,
813 RXCS_RETRYGAP_1024ns = 0x00002000,
814 RXCS_RETRYGAP_2048ns = 0x00003000,
815 RXCS_RETRYGAP_4096ns = 0x00004000,
816 RXCS_RETRYGAP_8192ns = 0x00005000,
817 RXCS_RETRYGAP_16384ns = 0x00006000,
818 RXCS_RETRYGAP_32768ns = 0x00007000,
819
820 RXCS_RETRYCNT_0 = 0x00000000,
821 RXCS_RETRYCNT_4 = 0x00000100,
822 RXCS_RETRYCNT_8 = 0x00000200,
823 RXCS_RETRYCNT_12 = 0x00000300,
824 RXCS_RETRYCNT_16 = 0x00000400,
825 RXCS_RETRYCNT_20 = 0x00000500,
826 RXCS_RETRYCNT_24 = 0x00000600,
827 RXCS_RETRYCNT_28 = 0x00000700,
828 RXCS_RETRYCNT_32 = 0x00000800,
829 RXCS_RETRYCNT_36 = 0x00000900,
830 RXCS_RETRYCNT_40 = 0x00000A00,
831 RXCS_RETRYCNT_44 = 0x00000B00,
832 RXCS_RETRYCNT_48 = 0x00000C00,
833 RXCS_RETRYCNT_52 = 0x00000D00,
834 RXCS_RETRYCNT_56 = 0x00000E00,
835 RXCS_RETRYCNT_60 = 0x00000F00,
836
837 RXCS_DEFAULT = RXCS_FIFOTHTP_128T |
79ce639c 838 RXCS_FIFOTHNP_128QW |
4330c2f2
GFT
839 RXCS_DMAREQSZ_128B |
840 RXCS_RETRYGAP_256ns |
841 RXCS_RETRYCNT_32,
842};
cd0ff491 843
29bdd921 844#define JME_RX_DISABLE_TIMEOUT 10 /* 10 msec */
d7699f87
GFT
845
846/*
847 * RX MAC Control/Status Bits
848 */
849enum jme_rxmcs_bits {
850 RXMCS_ALLFRAME = 0x00000800,
851 RXMCS_BRDFRAME = 0x00000400,
852 RXMCS_MULFRAME = 0x00000200,
853 RXMCS_UNIFRAME = 0x00000100,
854 RXMCS_ALLMULFRAME = 0x00000080,
855 RXMCS_MULFILTERED = 0x00000040,
3bf61c55
GFT
856 RXMCS_RXCOLLDEC = 0x00000020,
857 RXMCS_FLOWCTRL = 0x00000008,
858 RXMCS_VTAGRM = 0x00000004,
859 RXMCS_PREPAD = 0x00000002,
860 RXMCS_CHECKSUM = 0x00000001,
b3821cc5 861
8c198884
GFT
862 RXMCS_DEFAULT = RXMCS_VTAGRM |
863 RXMCS_PREPAD |
864 RXMCS_FLOWCTRL |
865 RXMCS_CHECKSUM,
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GFT
866};
867
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GFT
868/*
869 * Wakeup Frame setup interface registers
870 */
871#define WAKEUP_FRAME_NR 8
872#define WAKEUP_FRAME_MASK_DWNR 4
cd0ff491 873
b3821cc5
GFT
874enum jme_wfoi_bit_masks {
875 WFOI_MASK_SEL = 0x00000070,
876 WFOI_CRC_SEL = 0x00000008,
877 WFOI_FRAME_SEL = 0x00000007,
878};
cd0ff491 879
b3821cc5
GFT
880enum jme_wfoi_shifts {
881 WFOI_MASK_SHIFT = 4,
882};
883
d7699f87
GFT
884/*
885 * SMI Related definitions
886 */
cd0ff491 887enum jme_smi_bit_mask {
d7699f87
GFT
888 SMI_DATA_MASK = 0xFFFF0000,
889 SMI_REG_ADDR_MASK = 0x0000F800,
890 SMI_PHY_ADDR_MASK = 0x000007C0,
891 SMI_OP_WRITE = 0x00000020,
3bf61c55
GFT
892 /* Set to 1, after req done it'll be cleared to 0 */
893 SMI_OP_REQ = 0x00000010,
d7699f87
GFT
894 SMI_OP_MDIO = 0x00000008, /* Software assess In/Out */
895 SMI_OP_MDOE = 0x00000004, /* Software Output Enable */
896 SMI_OP_MDC = 0x00000002, /* Software CLK Control */
897 SMI_OP_MDEN = 0x00000001, /* Software access Enable */
898};
cd0ff491
GFT
899
900enum jme_smi_bit_shift {
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GFT
901 SMI_DATA_SHIFT = 16,
902 SMI_REG_ADDR_SHIFT = 11,
903 SMI_PHY_ADDR_SHIFT = 6,
904};
cd0ff491
GFT
905
906static inline u32 smi_reg_addr(int x)
d7699f87 907{
cd0ff491 908 return (x << SMI_REG_ADDR_SHIFT) & SMI_REG_ADDR_MASK;
d7699f87 909}
cd0ff491
GFT
910
911static inline u32 smi_phy_addr(int x)
d7699f87 912{
cd0ff491 913 return (x << SMI_PHY_ADDR_SHIFT) & SMI_PHY_ADDR_MASK;
d7699f87 914}
cd0ff491 915
8d27293f 916#define JME_PHY_TIMEOUT 100 /* 100 msec */
186fc259 917#define JME_PHY_REG_NR 32
d7699f87
GFT
918
919/*
920 * Global Host Control
921 */
922enum jme_ghc_bit_mask {
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GFT
923 GHC_SWRST = 0x40000000,
924 GHC_DPX = 0x00000040,
925 GHC_SPEED = 0x00000030,
926 GHC_LINK_POLL = 0x00000001,
d7699f87 927};
cd0ff491 928
d7699f87 929enum jme_ghc_speed_val {
3b70a6fa
GFT
930 GHC_SPEED_10M = 0x00000010,
931 GHC_SPEED_100M = 0x00000020,
932 GHC_SPEED_1000M = 0x00000030,
933};
934
935enum jme_ghc_to_clk {
936 GHC_TO_CLK_OFF = 0x00000000,
937 GHC_TO_CLK_GPHY = 0x00400000,
938 GHC_TO_CLK_PCIE = 0x00800000,
939 GHC_TO_CLK_INVALID = 0x00C00000,
940};
941
942enum jme_ghc_txmac_clk {
943 GHC_TXMAC_CLK_OFF = 0x00000000,
944 GHC_TXMAC_CLK_GPHY = 0x00100000,
945 GHC_TXMAC_CLK_PCIE = 0x00200000,
946 GHC_TXMAC_CLK_INVALID = 0x00300000,
d7699f87
GFT
947};
948
29bdd921
GFT
949/*
950 * Power management control and status register
951 */
952enum jme_pmcs_bit_masks {
953 PMCS_WF7DET = 0x80000000,
954 PMCS_WF6DET = 0x40000000,
955 PMCS_WF5DET = 0x20000000,
956 PMCS_WF4DET = 0x10000000,
957 PMCS_WF3DET = 0x08000000,
958 PMCS_WF2DET = 0x04000000,
959 PMCS_WF1DET = 0x02000000,
960 PMCS_WF0DET = 0x01000000,
961 PMCS_LFDET = 0x00040000,
962 PMCS_LRDET = 0x00020000,
963 PMCS_MFDET = 0x00010000,
964 PMCS_WF7EN = 0x00008000,
965 PMCS_WF6EN = 0x00004000,
966 PMCS_WF5EN = 0x00002000,
967 PMCS_WF4EN = 0x00001000,
968 PMCS_WF3EN = 0x00000800,
969 PMCS_WF2EN = 0x00000400,
970 PMCS_WF1EN = 0x00000200,
971 PMCS_WF0EN = 0x00000100,
972 PMCS_LFEN = 0x00000004,
973 PMCS_LREN = 0x00000002,
974 PMCS_MFEN = 0x00000001,
975};
976
d7699f87 977/*
3bf61c55 978 * Giga PHY Status Registers
d7699f87
GFT
979 */
980enum jme_phy_link_bit_mask {
981 PHY_LINK_SPEED_MASK = 0x0000C000,
982 PHY_LINK_DUPLEX = 0x00002000,
983 PHY_LINK_SPEEDDPU_RESOLVED = 0x00000800,
984 PHY_LINK_UP = 0x00000400,
985 PHY_LINK_AUTONEG_COMPLETE = 0x00000200,
fcf45b4c 986 PHY_LINK_MDI_STAT = 0x00000040,
d7699f87 987};
cd0ff491 988
d7699f87
GFT
989enum jme_phy_link_speed_val {
990 PHY_LINK_SPEED_10M = 0x00000000,
991 PHY_LINK_SPEED_100M = 0x00004000,
992 PHY_LINK_SPEED_1000M = 0x00008000,
993};
cd0ff491 994
fcf45b4c 995#define JME_SPDRSV_TIMEOUT 500 /* 500 us */
d7699f87
GFT
996
997/*
998 * SMB Control and Status
999 */
79ce639c 1000enum jme_smbcsr_bit_mask {
d7699f87
GFT
1001 SMBCSR_CNACK = 0x00020000,
1002 SMBCSR_RELOAD = 0x00010000,
1003 SMBCSR_EEPROMD = 0x00000020,
186fc259
GFT
1004 SMBCSR_INITDONE = 0x00000010,
1005 SMBCSR_BUSY = 0x0000000F,
1006};
cd0ff491 1007
186fc259
GFT
1008enum jme_smbintf_bit_mask {
1009 SMBINTF_HWDATR = 0xFF000000,
1010 SMBINTF_HWDATW = 0x00FF0000,
1011 SMBINTF_HWADDR = 0x0000FF00,
1012 SMBINTF_HWRWN = 0x00000020,
1013 SMBINTF_HWCMD = 0x00000010,
1014 SMBINTF_FASTM = 0x00000008,
1015 SMBINTF_GPIOSCL = 0x00000004,
1016 SMBINTF_GPIOSDA = 0x00000002,
1017 SMBINTF_GPIOEN = 0x00000001,
1018};
cd0ff491 1019
186fc259
GFT
1020enum jme_smbintf_vals {
1021 SMBINTF_HWRWN_READ = 0x00000020,
1022 SMBINTF_HWRWN_WRITE = 0x00000000,
1023};
cd0ff491 1024
186fc259
GFT
1025enum jme_smbintf_shifts {
1026 SMBINTF_HWDATR_SHIFT = 24,
1027 SMBINTF_HWDATW_SHIFT = 16,
1028 SMBINTF_HWADDR_SHIFT = 8,
1029};
cd0ff491 1030
186fc259
GFT
1031#define JME_EEPROM_RELOAD_TIMEOUT 2000 /* 2000 msec */
1032#define JME_SMB_BUSY_TIMEOUT 20 /* 20 msec */
1033#define JME_SMB_LEN 256
1034#define JME_EEPROM_MAGIC 0x250
d7699f87 1035
79ce639c
GFT
1036/*
1037 * Timer Control/Status Register
1038 */
1039enum jme_tmcsr_bit_masks {
1040 TMCSR_SWIT = 0x80000000,
1041 TMCSR_EN = 0x01000000,
1042 TMCSR_CNT = 0x00FFFFFF,
1043};
1044
4330c2f2 1045/*
cd0ff491 1046 * General Purpose REG-0
4330c2f2
GFT
1047 */
1048enum jme_gpreg0_masks {
3bf61c55
GFT
1049 GPREG0_DISSH = 0xFF000000,
1050 GPREG0_PCIRLMT = 0x00300000,
1051 GPREG0_PCCNOMUTCLR = 0x00040000,
cdcdc9eb 1052 GPREG0_LNKINTPOLL = 0x00001000,
3bf61c55
GFT
1053 GPREG0_PCCTMR = 0x00000300,
1054 GPREG0_PHYADDR = 0x0000001F,
4330c2f2 1055};
cd0ff491 1056
4330c2f2
GFT
1057enum jme_gpreg0_vals {
1058 GPREG0_DISSH_DW7 = 0x80000000,
1059 GPREG0_DISSH_DW6 = 0x40000000,
1060 GPREG0_DISSH_DW5 = 0x20000000,
1061 GPREG0_DISSH_DW4 = 0x10000000,
1062 GPREG0_DISSH_DW3 = 0x08000000,
1063 GPREG0_DISSH_DW2 = 0x04000000,
1064 GPREG0_DISSH_DW1 = 0x02000000,
1065 GPREG0_DISSH_DW0 = 0x01000000,
1066 GPREG0_DISSH_ALL = 0xFF000000,
1067
1068 GPREG0_PCIRLMT_8 = 0x00000000,
1069 GPREG0_PCIRLMT_6 = 0x00100000,
1070 GPREG0_PCIRLMT_5 = 0x00200000,
1071 GPREG0_PCIRLMT_4 = 0x00300000,
1072
1073 GPREG0_PCCTMR_16ns = 0x00000000,
3bf61c55
GFT
1074 GPREG0_PCCTMR_256ns = 0x00000100,
1075 GPREG0_PCCTMR_1us = 0x00000200,
1076 GPREG0_PCCTMR_1ms = 0x00000300,
4330c2f2
GFT
1077
1078 GPREG0_PHYADDR_1 = 0x00000001,
1079
1080 GPREG0_DEFAULT = GPREG0_PCIRLMT_4 |
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GFT
1081 GPREG0_PCCTMR_1us |
1082 GPREG0_PHYADDR_1,
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GFT
1083};
1084
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GFT
1085/*
1086 * General Purpose REG-1
1087 * Note: All theses bits defined here are for
1088 * Chip mode revision 0x11 only
1089 */
1090enum jme_gpreg1_masks {
1091 GPREG1_INTRDELAYUNIT = 0x00000018,
1092 GPREG1_INTRDELAYENABLE = 0x00000007,
1093};
1094
1095enum jme_gpreg1_vals {
1096 GPREG1_RSSPATCH = 0x00000040,
1097 GPREG1_HALFMODEPATCH = 0x00000020,
1098
1099 GPREG1_INTDLYUNIT_16NS = 0x00000000,
1100 GPREG1_INTDLYUNIT_256NS = 0x00000008,
1101 GPREG1_INTDLYUNIT_1US = 0x00000010,
1102 GPREG1_INTDLYUNIT_16US = 0x00000018,
1103
1104 GPREG1_INTDLYEN_1U = 0x00000001,
1105 GPREG1_INTDLYEN_2U = 0x00000002,
1106 GPREG1_INTDLYEN_3U = 0x00000003,
1107 GPREG1_INTDLYEN_4U = 0x00000004,
1108 GPREG1_INTDLYEN_5U = 0x00000005,
1109 GPREG1_INTDLYEN_6U = 0x00000006,
1110 GPREG1_INTDLYEN_7U = 0x00000007,
1111
1112 GPREG1_DEFAULT = 0x00000000,
1113};
1114
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GFT
1115/*
1116 * Interrupt Status Bits
1117 */
cd0ff491 1118enum jme_interrupt_bits {
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GFT
1119 INTR_SWINTR = 0x80000000,
1120 INTR_TMINTR = 0x40000000,
1121 INTR_LINKCH = 0x20000000,
1122 INTR_PAUSERCV = 0x10000000,
1123 INTR_MAGICRCV = 0x08000000,
1124 INTR_WAKERCV = 0x04000000,
1125 INTR_PCCRX0TO = 0x02000000,
1126 INTR_PCCRX1TO = 0x01000000,
1127 INTR_PCCRX2TO = 0x00800000,
1128 INTR_PCCRX3TO = 0x00400000,
1129 INTR_PCCTXTO = 0x00200000,
1130 INTR_PCCRX0 = 0x00100000,
1131 INTR_PCCRX1 = 0x00080000,
1132 INTR_PCCRX2 = 0x00040000,
1133 INTR_PCCRX3 = 0x00020000,
1134 INTR_PCCTX = 0x00010000,
1135 INTR_RX3EMP = 0x00008000,
1136 INTR_RX2EMP = 0x00004000,
1137 INTR_RX1EMP = 0x00002000,
1138 INTR_RX0EMP = 0x00001000,
1139 INTR_RX3 = 0x00000800,
1140 INTR_RX2 = 0x00000400,
1141 INTR_RX1 = 0x00000200,
1142 INTR_RX0 = 0x00000100,
1143 INTR_TX7 = 0x00000080,
1144 INTR_TX6 = 0x00000040,
1145 INTR_TX5 = 0x00000020,
1146 INTR_TX4 = 0x00000010,
1147 INTR_TX3 = 0x00000008,
1148 INTR_TX2 = 0x00000004,
1149 INTR_TX1 = 0x00000002,
1150 INTR_TX0 = 0x00000001,
1151};
cd0ff491
GFT
1152
1153static const u32 INTR_ENABLE = INTR_SWINTR |
79ce639c
GFT
1154 INTR_TMINTR |
1155 INTR_LINKCH |
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GFT
1156 INTR_PCCRX0TO |
1157 INTR_PCCRX0 |
1158 INTR_PCCTXTO |
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GFT
1159 INTR_PCCTX |
1160 INTR_RX0EMP;
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GFT
1161
1162/*
1163 * PCC Control Registers
1164 */
1165enum jme_pccrx_masks {
1166 PCCRXTO_MASK = 0xFFFF0000,
1167 PCCRX_MASK = 0x0000FF00,
1168};
cd0ff491 1169
3bf61c55
GFT
1170enum jme_pcctx_masks {
1171 PCCTXTO_MASK = 0xFFFF0000,
1172 PCCTX_MASK = 0x0000FF00,
1173 PCCTX_QS_MASK = 0x000000FF,
1174};
cd0ff491 1175
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GFT
1176enum jme_pccrx_shifts {
1177 PCCRXTO_SHIFT = 16,
1178 PCCRX_SHIFT = 8,
1179};
cd0ff491 1180
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GFT
1181enum jme_pcctx_shifts {
1182 PCCTXTO_SHIFT = 16,
1183 PCCTX_SHIFT = 8,
1184};
cd0ff491 1185
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GFT
1186enum jme_pcctx_bits {
1187 PCCTXQ0_EN = 0x00000001,
1188 PCCTXQ1_EN = 0x00000002,
1189 PCCTXQ2_EN = 0x00000004,
1190 PCCTXQ3_EN = 0x00000008,
1191 PCCTXQ4_EN = 0x00000010,
1192 PCCTXQ5_EN = 0x00000020,
1193 PCCTXQ6_EN = 0x00000040,
1194 PCCTXQ7_EN = 0x00000080,
1195};
1196
cdcdc9eb
GFT
1197/*
1198 * Chip Mode Register
1199 */
1200enum jme_chipmode_bit_masks {
1201 CM_FPGAVER_MASK = 0xFFFF0000,
58c92f28 1202 CM_CHIPREV_MASK = 0x0000FF00,
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GFT
1203 CM_CHIPMODE_MASK = 0x0000000F,
1204};
cd0ff491 1205
cdcdc9eb
GFT
1206enum jme_chipmode_shifts {
1207 CM_FPGAVER_SHIFT = 16,
58c92f28 1208 CM_CHIPREV_SHIFT = 8,
cdcdc9eb 1209};
d7699f87 1210
cd0ff491
GFT
1211/*
1212 * Aggressive Power Mode Control
1213 */
1214enum jme_apmc_bits {
1215 JME_APMC_PCIE_SD_EN = 0x40000000,
1216 JME_APMC_PSEUDO_HP_EN = 0x20000000,
1217 JME_APMC_EPIEN = 0x04000000,
1218 JME_APMC_EPIEN_CTRL = 0x03000000,
1219};
1220
1221enum jme_apmc_values {
1222 JME_APMC_EPIEN_CTRL_EN = 0x02000000,
1223 JME_APMC_EPIEN_CTRL_DIS = 0x01000000,
1224};
1225
1226#define APMC_PHP_SHUTDOWN_DELAY (10 * 1000 * 1000)
1227
1228#ifdef REG_DEBUG
1229static char *MAC_REG_NAME[] = {
1230 "JME_TXCS", "JME_TXDBA_LO", "JME_TXDBA_HI", "JME_TXQDC",
1231 "JME_TXNDA", "JME_TXMCS", "JME_TXPFC", "JME_TXTRHD",
1232 "JME_RXCS", "JME_RXDBA_LO", "JME_RXDBA_HI", "JME_RXQDC",
1233 "JME_RXNDA", "JME_RXMCS", "JME_RXUMA_LO", "JME_RXUMA_HI",
1234 "JME_RXMCHT_LO", "JME_RXMCHT_HI", "JME_WFODP", "JME_WFOI",
1235 "JME_SMI", "JME_GHC", "UNKNOWN", "UNKNOWN",
1236 "JME_PMCS"};
7ee473a3 1237
cd0ff491
GFT
1238static char *PE_REG_NAME[] = {
1239 "UNKNOWN", "UNKNOWN", "UNKNOWN", "UNKNOWN",
1240 "UNKNOWN", "UNKNOWN", "UNKNOWN", "UNKNOWN",
1241 "UNKNOWN", "UNKNOWN", "JME_PHY_CS", "UNKNOWN",
1242 "JME_PHY_LINK", "UNKNOWN", "UNKNOWN", "UNKNOWN",
1243 "JME_SMBCSR", "JME_SMBINTF"};
7ee473a3 1244
cd0ff491
GFT
1245static char *MISC_REG_NAME[] = {
1246 "JME_TMCSR", "JME_GPIO", "JME_GPREG0", "JME_GPREG1",
1247 "JME_IEVE", "JME_IREQ", "JME_IENS", "JME_IENC",
1248 "JME_PCCRX0", "JME_PCCRX1", "JME_PCCRX2", "JME_PCCRX3",
1249 "JME_PCCTX0", "JME_CHIPMODE", "JME_SHBA_HI", "JME_SHBA_LO",
1250 "UNKNOWN", "UNKNOWN", "UNKNOWN", "UNKNOWN",
1251 "UNKNOWN", "UNKNOWN", "UNKNOWN", "UNKNOWN",
1252 "UNKNOWN", "UNKNOWN", "UNKNOWN", "UNKNOWN",
1253 "JME_TIMER1", "JME_TIMER2", "UNKNOWN", "JME_APMC",
1254 "JME_PCCSRX0"};
7ee473a3 1255
cd0ff491
GFT
1256static inline void reg_dbg(const struct jme_adapter *jme,
1257 const char *msg, u32 val, u32 reg)
1258{
1259 const char *regname;
58c92f28 1260 switch (reg & 0xF00) {
cd0ff491
GFT
1261 case 0x000:
1262 regname = MAC_REG_NAME[(reg & 0xFF) >> 2];
1263 break;
1264 case 0x400:
1265 regname = PE_REG_NAME[(reg & 0xFF) >> 2];
1266 break;
1267 case 0x800:
58c92f28 1268 regname = MISC_REG_NAME[(reg & 0xFF) >> 2];
cd0ff491
GFT
1269 break;
1270 default:
1271 regname = PE_REG_NAME[0];
1272 }
1273 printk(KERN_DEBUG "%s: %-20s %08x@%s\n", jme->dev->name,
1274 msg, val, regname);
1275}
1276#else
1277static inline void reg_dbg(const struct jme_adapter *jme,
1278 const char *msg, u32 val, u32 reg) {}
1279#endif
1280
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GFT
1281/*
1282 * Read/Write MMaped I/O Registers
1283 */
cd0ff491 1284static inline u32 jread32(struct jme_adapter *jme, u32 reg)
d7699f87 1285{
cd0ff491 1286 return readl(jme->regs + reg);
d7699f87 1287}
cd0ff491
GFT
1288
1289static inline void jwrite32(struct jme_adapter *jme, u32 reg, u32 val)
d7699f87 1290{
cd0ff491
GFT
1291 reg_dbg(jme, "REG WRITE", val, reg);
1292 writel(val, jme->regs + reg);
1293 reg_dbg(jme, "VAL AFTER WRITE", readl(jme->regs + reg), reg);
d7699f87 1294}
cd0ff491
GFT
1295
1296static inline void jwrite32f(struct jme_adapter *jme, u32 reg, u32 val)
d7699f87
GFT
1297{
1298 /*
1299 * Read after write should cause flush
1300 */
cd0ff491
GFT
1301 reg_dbg(jme, "REG WRITE FLUSH", val, reg);
1302 writel(val, jme->regs + reg);
1303 readl(jme->regs + reg);
1304 reg_dbg(jme, "VAL AFTER WRITE", readl(jme->regs + reg), reg);
d7699f87
GFT
1305}
1306
cdcdc9eb
GFT
1307/*
1308 * PHY Regs
1309 */
1310enum jme_phy_reg17_bit_masks {
1311 PREG17_SPEED = 0xC000,
1312 PREG17_DUPLEX = 0x2000,
1313 PREG17_SPDRSV = 0x0800,
1314 PREG17_LNKUP = 0x0400,
1315 PREG17_MDI = 0x0040,
1316};
cd0ff491 1317
cdcdc9eb
GFT
1318enum jme_phy_reg17_vals {
1319 PREG17_SPEED_10M = 0x0000,
1320 PREG17_SPEED_100M = 0x4000,
1321 PREG17_SPEED_1000M = 0x8000,
1322};
cd0ff491 1323
8d27293f 1324#define BMSR_ANCOMP 0x0020
cdcdc9eb 1325
58c92f28
GFT
1326/*
1327 * Workaround
1328 */
98ef18f1 1329static inline int is_buggy250(unsigned short device, u8 chiprev)
58c92f28
GFT
1330{
1331 return device == PCI_DEVICE_ID_JMICRON_JMC250 && chiprev == 0x11;
1332}
1333
d7699f87 1334/*
cd0ff491 1335 * Function prototypes
d7699f87 1336 */
d7699f87 1337static int jme_set_settings(struct net_device *netdev,
cd0ff491 1338 struct ethtool_cmd *ecmd);
d7699f87
GFT
1339static void jme_set_multi(struct net_device *netdev);
1340
cd0ff491 1341#endif
e5169728 1342