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Jie Yang43250dd2009-02-18 17:24:15 -08001/*
2 * Copyright(c) 2008 - 2009 Atheros Corporation. All rights reserved.
3 *
4 * Derived from Intel e1000 driver
5 * Copyright(c) 1999 - 2005 Intel Corporation. All rights reserved.
6 *
7 * This program is free software; you can redistribute it and/or modify it
8 * under the terms of the GNU General Public License as published by the Free
9 * Software Foundation; either version 2 of the License, or (at your option)
10 * any later version.
11 *
12 * This program is distributed in the hope that it will be useful, but WITHOUT
13 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
14 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
15 * more details.
16 *
17 * You should have received a copy of the GNU General Public License along with
18 * this program; if not, write to the Free Software Foundation, Inc., 59
19 * Temple Place - Suite 330, Boston, MA 02111-1307, USA.
20 */
21
22#ifndef _ATL1C_H_
23#define _ATL1C_H_
24
25#include <linux/version.h>
26#include <linux/init.h>
Alexey Dobriyana6b7a402011-06-06 10:43:46 +000027#include <linux/interrupt.h>
Jie Yang43250dd2009-02-18 17:24:15 -080028#include <linux/types.h>
29#include <linux/errno.h>
30#include <linux/module.h>
31#include <linux/pci.h>
32#include <linux/netdevice.h>
33#include <linux/etherdevice.h>
34#include <linux/skbuff.h>
35#include <linux/ioport.h>
36#include <linux/slab.h>
37#include <linux/list.h>
38#include <linux/delay.h>
39#include <linux/sched.h>
40#include <linux/in.h>
41#include <linux/ip.h>
42#include <linux/ipv6.h>
43#include <linux/udp.h>
44#include <linux/mii.h>
45#include <linux/io.h>
46#include <linux/vmalloc.h>
47#include <linux/pagemap.h>
48#include <linux/tcp.h>
Jie Yang43250dd2009-02-18 17:24:15 -080049#include <linux/ethtool.h>
50#include <linux/if_vlan.h>
51#include <linux/workqueue.h>
52#include <net/checksum.h>
53#include <net/ip6_checksum.h>
54
55#include "atl1c_hw.h"
56
57/* Wake Up Filter Control */
58#define AT_WUFC_LNKC 0x00000001 /* Link Status Change Wakeup Enable */
59#define AT_WUFC_MAG 0x00000002 /* Magic Packet Wakeup Enable */
60#define AT_WUFC_EX 0x00000004 /* Directed Exact Wakeup Enable */
61#define AT_WUFC_MC 0x00000008 /* Multicast Wakeup Enable */
62#define AT_WUFC_BC 0x00000010 /* Broadcast Wakeup Enable */
63
64#define AT_VLAN_TO_TAG(_vlan, _tag) \
65 _tag = ((((_vlan) >> 8) & 0xFF) |\
66 (((_vlan) & 0xFF) << 8))
67
68#define AT_TAG_TO_VLAN(_tag, _vlan) \
69 _vlan = ((((_tag) >> 8) & 0xFF) |\
70 (((_tag) & 0xFF) << 8))
71
72#define SPEED_0 0xffff
73#define HALF_DUPLEX 1
74#define FULL_DUPLEX 2
75
76#define AT_RX_BUF_SIZE (ETH_FRAME_LEN + VLAN_HLEN + ETH_FCS_LEN)
Jie Yang8f574b32010-06-01 00:28:12 -070077#define MAX_JUMBO_FRAME_SIZE (6*1024)
78#define MAX_TSO_FRAME_SIZE (7*1024)
Jie Yang43250dd2009-02-18 17:24:15 -080079#define MAX_TX_OFFLOAD_THRESH (9*1024)
80
81#define AT_MAX_RECEIVE_QUEUE 4
82#define AT_DEF_RECEIVE_QUEUE 1
83#define AT_MAX_TRANSMIT_QUEUE 2
84
85#define AT_DMA_HI_ADDR_MASK 0xffffffff00000000ULL
86#define AT_DMA_LO_ADDR_MASK 0x00000000ffffffffULL
87
88#define AT_TX_WATCHDOG (5 * HZ)
89#define AT_MAX_INT_WORK 5
90#define AT_TWSI_EEPROM_TIMEOUT 100
91#define AT_HW_MAX_IDLE_DELAY 10
Jie Yang8f574b32010-06-01 00:28:12 -070092#define AT_SUSPEND_LINK_TIMEOUT 100
Jie Yang43250dd2009-02-18 17:24:15 -080093
94#define AT_ASPM_L0S_TIMER 6
95#define AT_ASPM_L1_TIMER 12
Jie Yang8f574b32010-06-01 00:28:12 -070096#define AT_LCKDET_TIMER 12
Jie Yang43250dd2009-02-18 17:24:15 -080097
98#define ATL1C_PCIE_L0S_L1_DISABLE 0x01
99#define ATL1C_PCIE_PHY_RESET 0x02
100
101#define ATL1C_ASPM_L0s_ENABLE 0x0001
102#define ATL1C_ASPM_L1_ENABLE 0x0002
103
104#define AT_REGS_LEN (75 * sizeof(u32))
105#define AT_EEPROM_LEN 512
106
107#define ATL1C_GET_DESC(R, i, type) (&(((type *)((R)->desc))[i]))
108#define ATL1C_RFD_DESC(R, i) ATL1C_GET_DESC(R, i, struct atl1c_rx_free_desc)
109#define ATL1C_TPD_DESC(R, i) ATL1C_GET_DESC(R, i, struct atl1c_tpd_desc)
110#define ATL1C_RRD_DESC(R, i) ATL1C_GET_DESC(R, i, struct atl1c_recv_ret_status)
111
112/* tpd word 1 bit 0:7 General Checksum task offload */
113#define TPD_L4HDR_OFFSET_MASK 0x00FF
114#define TPD_L4HDR_OFFSET_SHIFT 0
115
116/* tpd word 1 bit 0:7 Large Send task offload (IPv4/IPV6) */
117#define TPD_TCPHDR_OFFSET_MASK 0x00FF
118#define TPD_TCPHDR_OFFSET_SHIFT 0
119
120/* tpd word 1 bit 0:7 Custom Checksum task offload */
121#define TPD_PLOADOFFSET_MASK 0x00FF
122#define TPD_PLOADOFFSET_SHIFT 0
123
124/* tpd word 1 bit 8:17 */
125#define TPD_CCSUM_EN_MASK 0x0001
126#define TPD_CCSUM_EN_SHIFT 8
127#define TPD_IP_CSUM_MASK 0x0001
128#define TPD_IP_CSUM_SHIFT 9
129#define TPD_TCP_CSUM_MASK 0x0001
130#define TPD_TCP_CSUM_SHIFT 10
131#define TPD_UDP_CSUM_MASK 0x0001
132#define TPD_UDP_CSUM_SHIFT 11
133#define TPD_LSO_EN_MASK 0x0001 /* TCP Large Send Offload */
134#define TPD_LSO_EN_SHIFT 12
135#define TPD_LSO_VER_MASK 0x0001
136#define TPD_LSO_VER_SHIFT 13 /* 0 : ipv4; 1 : ipv4/ipv6 */
137#define TPD_CON_VTAG_MASK 0x0001
138#define TPD_CON_VTAG_SHIFT 14
139#define TPD_INS_VTAG_MASK 0x0001
140#define TPD_INS_VTAG_SHIFT 15
141#define TPD_IPV4_PACKET_MASK 0x0001 /* valid when LSO VER is 1 */
142#define TPD_IPV4_PACKET_SHIFT 16
143#define TPD_ETH_TYPE_MASK 0x0001
144#define TPD_ETH_TYPE_SHIFT 17 /* 0 : 802.3 frame; 1 : Ethernet */
145
146/* tpd word 18:25 Custom Checksum task offload */
147#define TPD_CCSUM_OFFSET_MASK 0x00FF
148#define TPD_CCSUM_OFFSET_SHIFT 18
149#define TPD_CCSUM_EPAD_MASK 0x0001
150#define TPD_CCSUM_EPAD_SHIFT 30
151
152/* tpd word 18:30 Large Send task offload (IPv4/IPV6) */
153#define TPD_MSS_MASK 0x1FFF
154#define TPD_MSS_SHIFT 18
155
156#define TPD_EOP_MASK 0x0001
157#define TPD_EOP_SHIFT 31
158
159struct atl1c_tpd_desc {
160 __le16 buffer_len; /* include 4-byte CRC */
161 __le16 vlan_tag;
162 __le32 word1;
163 __le64 buffer_addr;
164};
165
166struct atl1c_tpd_ext_desc {
167 u32 reservd_0;
168 __le32 word1;
169 __le32 pkt_len;
170 u32 reservd_1;
171};
172/* rrs word 0 bit 0:31 */
173#define RRS_RX_CSUM_MASK 0xFFFF
174#define RRS_RX_CSUM_SHIFT 0
175#define RRS_RX_RFD_CNT_MASK 0x000F
176#define RRS_RX_RFD_CNT_SHIFT 16
177#define RRS_RX_RFD_INDEX_MASK 0x0FFF
178#define RRS_RX_RFD_INDEX_SHIFT 20
179
180/* rrs flag bit 0:16 */
181#define RRS_HEAD_LEN_MASK 0x00FF
182#define RRS_HEAD_LEN_SHIFT 0
183#define RRS_HDS_TYPE_MASK 0x0003
184#define RRS_HDS_TYPE_SHIFT 8
185#define RRS_CPU_NUM_MASK 0x0003
186#define RRS_CPU_NUM_SHIFT 10
187#define RRS_HASH_FLG_MASK 0x000F
188#define RRS_HASH_FLG_SHIFT 12
189
190#define RRS_HDS_TYPE_HEAD 1
191#define RRS_HDS_TYPE_DATA 2
192
193#define RRS_IS_NO_HDS_TYPE(flag) \
roel kluinc5ad4f52009-07-12 11:40:34 +0000194 ((((flag) >> (RRS_HDS_TYPE_SHIFT)) & RRS_HDS_TYPE_MASK) == 0)
Jie Yang43250dd2009-02-18 17:24:15 -0800195
196#define RRS_IS_HDS_HEAD(flag) \
roel kluinc5ad4f52009-07-12 11:40:34 +0000197 ((((flag) >> (RRS_HDS_TYPE_SHIFT)) & RRS_HDS_TYPE_MASK) == \
Jie Yang43250dd2009-02-18 17:24:15 -0800198 RRS_HDS_TYPE_HEAD)
199
200#define RRS_IS_HDS_DATA(flag) \
roel kluinc5ad4f52009-07-12 11:40:34 +0000201 ((((flag) >> (RRS_HDS_TYPE_SHIFT)) & RRS_HDS_TYPE_MASK) == \
Jie Yang43250dd2009-02-18 17:24:15 -0800202 RRS_HDS_TYPE_DATA)
203
204/* rrs word 3 bit 0:31 */
205#define RRS_PKT_SIZE_MASK 0x3FFF
206#define RRS_PKT_SIZE_SHIFT 0
207#define RRS_ERR_L4_CSUM_MASK 0x0001
208#define RRS_ERR_L4_CSUM_SHIFT 14
209#define RRS_ERR_IP_CSUM_MASK 0x0001
210#define RRS_ERR_IP_CSUM_SHIFT 15
211#define RRS_VLAN_INS_MASK 0x0001
212#define RRS_VLAN_INS_SHIFT 16
213#define RRS_PROT_ID_MASK 0x0007
214#define RRS_PROT_ID_SHIFT 17
215#define RRS_RX_ERR_SUM_MASK 0x0001
216#define RRS_RX_ERR_SUM_SHIFT 20
217#define RRS_RX_ERR_CRC_MASK 0x0001
218#define RRS_RX_ERR_CRC_SHIFT 21
219#define RRS_RX_ERR_FAE_MASK 0x0001
220#define RRS_RX_ERR_FAE_SHIFT 22
221#define RRS_RX_ERR_TRUNC_MASK 0x0001
222#define RRS_RX_ERR_TRUNC_SHIFT 23
223#define RRS_RX_ERR_RUNC_MASK 0x0001
224#define RRS_RX_ERR_RUNC_SHIFT 24
225#define RRS_RX_ERR_ICMP_MASK 0x0001
226#define RRS_RX_ERR_ICMP_SHIFT 25
227#define RRS_PACKET_BCAST_MASK 0x0001
228#define RRS_PACKET_BCAST_SHIFT 26
229#define RRS_PACKET_MCAST_MASK 0x0001
230#define RRS_PACKET_MCAST_SHIFT 27
231#define RRS_PACKET_TYPE_MASK 0x0001
232#define RRS_PACKET_TYPE_SHIFT 28
233#define RRS_FIFO_FULL_MASK 0x0001
234#define RRS_FIFO_FULL_SHIFT 29
235#define RRS_802_3_LEN_ERR_MASK 0x0001
236#define RRS_802_3_LEN_ERR_SHIFT 30
237#define RRS_RXD_UPDATED_MASK 0x0001
238#define RRS_RXD_UPDATED_SHIFT 31
239
240#define RRS_ERR_L4_CSUM 0x00004000
241#define RRS_ERR_IP_CSUM 0x00008000
242#define RRS_VLAN_INS 0x00010000
243#define RRS_RX_ERR_SUM 0x00100000
244#define RRS_RX_ERR_CRC 0x00200000
245#define RRS_802_3_LEN_ERR 0x40000000
246#define RRS_RXD_UPDATED 0x80000000
247
248#define RRS_PACKET_TYPE_802_3 1
249#define RRS_PACKET_TYPE_ETH 0
250#define RRS_PACKET_IS_ETH(word) \
roel kluinc5ad4f52009-07-12 11:40:34 +0000251 ((((word) >> RRS_PACKET_TYPE_SHIFT) & RRS_PACKET_TYPE_MASK) == \
Jie Yang43250dd2009-02-18 17:24:15 -0800252 RRS_PACKET_TYPE_ETH)
253#define RRS_RXD_IS_VALID(word) \
254 ((((word) >> RRS_RXD_UPDATED_SHIFT) & RRS_RXD_UPDATED_MASK) == 1)
255
256#define RRS_PACKET_PROT_IS_IPV4_ONLY(word) \
257 ((((word) >> RRS_PROT_ID_SHIFT) & RRS_PROT_ID_MASK) == 1)
258#define RRS_PACKET_PROT_IS_IPV6_ONLY(word) \
259 ((((word) >> RRS_PROT_ID_SHIFT) & RRS_PROT_ID_MASK) == 6)
260
261struct atl1c_recv_ret_status {
262 __le32 word0;
263 __le32 rss_hash;
264 __le16 vlan_tag;
265 __le16 flag;
266 __le32 word3;
267};
268
Justin P. Mattock5a3a7652011-01-19 15:36:38 +0100269/* RFD descriptor */
Jie Yang43250dd2009-02-18 17:24:15 -0800270struct atl1c_rx_free_desc {
271 __le64 buffer_addr;
272};
273
274/* DMA Order Settings */
275enum atl1c_dma_order {
276 atl1c_dma_ord_in = 1,
277 atl1c_dma_ord_enh = 2,
278 atl1c_dma_ord_out = 4
279};
280
281enum atl1c_dma_rcb {
282 atl1c_rcb_64 = 0,
283 atl1c_rcb_128 = 1
284};
285
286enum atl1c_mac_speed {
287 atl1c_mac_speed_0 = 0,
288 atl1c_mac_speed_10_100 = 1,
289 atl1c_mac_speed_1000 = 2
290};
291
292enum atl1c_dma_req_block {
293 atl1c_dma_req_128 = 0,
294 atl1c_dma_req_256 = 1,
295 atl1c_dma_req_512 = 2,
296 atl1c_dma_req_1024 = 3,
297 atl1c_dma_req_2048 = 4,
298 atl1c_dma_req_4096 = 5
299};
300
301enum atl1c_rss_mode {
302 atl1c_rss_mode_disable = 0,
303 atl1c_rss_sig_que = 1,
304 atl1c_rss_mul_que_sig_int = 2,
305 atl1c_rss_mul_que_mul_int = 4,
306};
307
308enum atl1c_rss_type {
309 atl1c_rss_disable = 0,
310 atl1c_rss_ipv4 = 1,
311 atl1c_rss_ipv4_tcp = 2,
312 atl1c_rss_ipv6 = 4,
313 atl1c_rss_ipv6_tcp = 8
314};
315
316enum atl1c_nic_type {
317 athr_l1c = 0,
318 athr_l2c = 1,
Luis R. Rodriguez496c1852010-02-16 15:16:45 -0800319 athr_l2c_b,
320 athr_l2c_b2,
321 athr_l1d,
Jie Yang8f574b32010-06-01 00:28:12 -0700322 athr_l1d_2,
Jie Yang43250dd2009-02-18 17:24:15 -0800323};
324
325enum atl1c_trans_queue {
326 atl1c_trans_normal = 0,
327 atl1c_trans_high = 1
328};
329
330struct atl1c_hw_stats {
331 /* rx */
332 unsigned long rx_ok; /* The number of good packet received. */
333 unsigned long rx_bcast; /* The number of good broadcast packet received. */
334 unsigned long rx_mcast; /* The number of good multicast packet received. */
335 unsigned long rx_pause; /* The number of Pause packet received. */
336 unsigned long rx_ctrl; /* The number of Control packet received other than Pause frame. */
337 unsigned long rx_fcs_err; /* The number of packets with bad FCS. */
338 unsigned long rx_len_err; /* The number of packets with mismatch of length field and actual size. */
339 unsigned long rx_byte_cnt; /* The number of bytes of good packet received. FCS is NOT included. */
340 unsigned long rx_runt; /* The number of packets received that are less than 64 byte long and with good FCS. */
341 unsigned long rx_frag; /* The number of packets received that are less than 64 byte long and with bad FCS. */
342 unsigned long rx_sz_64; /* The number of good and bad packets received that are 64 byte long. */
343 unsigned long rx_sz_65_127; /* The number of good and bad packets received that are between 65 and 127-byte long. */
344 unsigned long rx_sz_128_255; /* The number of good and bad packets received that are between 128 and 255-byte long. */
345 unsigned long rx_sz_256_511; /* The number of good and bad packets received that are between 256 and 511-byte long. */
346 unsigned long rx_sz_512_1023; /* The number of good and bad packets received that are between 512 and 1023-byte long. */
347 unsigned long rx_sz_1024_1518; /* The number of good and bad packets received that are between 1024 and 1518-byte long. */
348 unsigned long rx_sz_1519_max; /* The number of good and bad packets received that are between 1519-byte and MTU. */
349 unsigned long rx_sz_ov; /* The number of good and bad packets received that are more than MTU size truncated by Selene. */
350 unsigned long rx_rxf_ov; /* The number of frame dropped due to occurrence of RX FIFO overflow. */
351 unsigned long rx_rrd_ov; /* The number of frame dropped due to occurrence of RRD overflow. */
352 unsigned long rx_align_err; /* Alignment Error */
353 unsigned long rx_bcast_byte_cnt; /* The byte count of broadcast packet received, excluding FCS. */
354 unsigned long rx_mcast_byte_cnt; /* The byte count of multicast packet received, excluding FCS. */
355 unsigned long rx_err_addr; /* The number of packets dropped due to address filtering. */
356
357 /* tx */
358 unsigned long tx_ok; /* The number of good packet transmitted. */
359 unsigned long tx_bcast; /* The number of good broadcast packet transmitted. */
360 unsigned long tx_mcast; /* The number of good multicast packet transmitted. */
361 unsigned long tx_pause; /* The number of Pause packet transmitted. */
362 unsigned long tx_exc_defer; /* The number of packets transmitted with excessive deferral. */
363 unsigned long tx_ctrl; /* The number of packets transmitted is a control frame, excluding Pause frame. */
364 unsigned long tx_defer; /* The number of packets transmitted that is deferred. */
365 unsigned long tx_byte_cnt; /* The number of bytes of data transmitted. FCS is NOT included. */
366 unsigned long tx_sz_64; /* The number of good and bad packets transmitted that are 64 byte long. */
367 unsigned long tx_sz_65_127; /* The number of good and bad packets transmitted that are between 65 and 127-byte long. */
368 unsigned long tx_sz_128_255; /* The number of good and bad packets transmitted that are between 128 and 255-byte long. */
369 unsigned long tx_sz_256_511; /* The number of good and bad packets transmitted that are between 256 and 511-byte long. */
370 unsigned long tx_sz_512_1023; /* The number of good and bad packets transmitted that are between 512 and 1023-byte long. */
371 unsigned long tx_sz_1024_1518; /* The number of good and bad packets transmitted that are between 1024 and 1518-byte long. */
372 unsigned long tx_sz_1519_max; /* The number of good and bad packets transmitted that are between 1519-byte and MTU. */
373 unsigned long tx_1_col; /* The number of packets subsequently transmitted successfully with a single prior collision. */
374 unsigned long tx_2_col; /* The number of packets subsequently transmitted successfully with multiple prior collisions. */
375 unsigned long tx_late_col; /* The number of packets transmitted with late collisions. */
376 unsigned long tx_abort_col; /* The number of transmit packets aborted due to excessive collisions. */
377 unsigned long tx_underrun; /* The number of transmit packets aborted due to transmit FIFO underrun, or TRD FIFO underrun */
378 unsigned long tx_rd_eop; /* The number of times that read beyond the EOP into the next frame area when TRD was not written timely */
379 unsigned long tx_len_err; /* The number of transmit packets with length field does NOT match the actual frame size. */
380 unsigned long tx_trunc; /* The number of transmit packets truncated due to size exceeding MTU. */
381 unsigned long tx_bcast_byte; /* The byte count of broadcast packet transmitted, excluding FCS. */
382 unsigned long tx_mcast_byte; /* The byte count of multicast packet transmitted, excluding FCS. */
383};
384
385struct atl1c_hw {
386 u8 __iomem *hw_addr; /* inner register address */
387 struct atl1c_adapter *adapter;
388 enum atl1c_nic_type nic_type;
389 enum atl1c_dma_order dma_order;
390 enum atl1c_dma_rcb rcb_value;
391 enum atl1c_dma_req_block dmar_block;
392 enum atl1c_dma_req_block dmaw_block;
393
394 u16 device_id;
395 u16 vendor_id;
396 u16 subsystem_id;
397 u16 subsystem_vendor_id;
398 u8 revision_id;
Jie Yang8f574b32010-06-01 00:28:12 -0700399 u16 phy_id1;
400 u16 phy_id2;
Jie Yang43250dd2009-02-18 17:24:15 -0800401
402 u32 intr_mask;
403 u8 dmaw_dly_cnt;
404 u8 dmar_dly_cnt;
405
406 u8 preamble_len;
407 u16 max_frame_size;
408 u16 min_frame_size;
409
410 enum atl1c_mac_speed mac_speed;
411 bool mac_duplex;
412 bool hibernate;
413 u16 media_type;
414#define MEDIA_TYPE_AUTO_SENSOR 0
415#define MEDIA_TYPE_100M_FULL 1
416#define MEDIA_TYPE_100M_HALF 2
417#define MEDIA_TYPE_10M_FULL 3
418#define MEDIA_TYPE_10M_HALF 4
419
420 u16 autoneg_advertised;
421 u16 mii_autoneg_adv_reg;
422 u16 mii_1000t_ctrl_reg;
423
424 u16 tx_imt; /* TX Interrupt Moderator timer ( 2us resolution) */
425 u16 rx_imt; /* RX Interrupt Moderator timer ( 2us resolution) */
426 u16 ict; /* Interrupt Clear timer (2us resolution) */
427 u16 ctrl_flags;
428#define ATL1C_INTR_CLEAR_ON_READ 0x0001
429#define ATL1C_INTR_MODRT_ENABLE 0x0002
430#define ATL1C_CMB_ENABLE 0x0004
431#define ATL1C_SMB_ENABLE 0x0010
432#define ATL1C_TXQ_MODE_ENHANCE 0x0020
433#define ATL1C_RX_IPV6_CHKSUM 0x0040
434#define ATL1C_ASPM_L0S_SUPPORT 0x0080
435#define ATL1C_ASPM_L1_SUPPORT 0x0100
436#define ATL1C_ASPM_CTRL_MON 0x0200
437#define ATL1C_HIB_DISABLE 0x0400
Luis R. Rodriguez496c1852010-02-16 15:16:45 -0800438#define ATL1C_APS_MODE_ENABLE 0x0800
439#define ATL1C_LINK_EXT_SYNC 0x1000
440#define ATL1C_CLK_GATING_EN 0x2000
441#define ATL1C_FPGA_VERSION 0x8000
442 u16 link_cap_flags;
443#define ATL1C_LINK_CAP_1000M 0x0001
Jie Yang43250dd2009-02-18 17:24:15 -0800444 u16 cmb_tpd;
445 u16 cmb_rrd;
446 u16 cmb_rx_timer; /* 2us resolution */
447 u16 cmb_tx_timer;
448 u32 smb_timer;
449
450 u16 rrd_thresh; /* Threshold of number of RRD produced to trigger
451 interrupt request */
452 u16 tpd_thresh;
453 u8 tpd_burst; /* Number of TPD to prefetch in cache-aligned burst. */
454 u8 rfd_burst;
455 enum atl1c_rss_type rss_type;
456 enum atl1c_rss_mode rss_mode;
457 u8 rss_hash_bits;
458 u32 base_cpu;
459 u32 indirect_tab;
460 u8 mac_addr[ETH_ALEN];
461 u8 perm_mac_addr[ETH_ALEN];
462
463 bool phy_configured;
464 bool re_autoneg;
465 bool emi_ca;
466};
467
468/*
469 * atl1c_ring_header represents a single, contiguous block of DMA space
470 * mapped for the three descriptor rings (tpd, rfd, rrd) and the two
471 * message blocks (cmb, smb) described below
472 */
473struct atl1c_ring_header {
474 void *desc; /* virtual address */
475 dma_addr_t dma; /* physical address*/
476 unsigned int size; /* length in bytes */
477};
478
479/*
480 * atl1c_buffer is wrapper around a pointer to a socket buffer
481 * so a DMA handle can be stored along with the skb
482 */
483struct atl1c_buffer {
484 struct sk_buff *skb; /* socket buffer */
485 u16 length; /* rx buffer length */
Jie Yangc6060be2009-11-06 00:32:05 -0800486 u16 flags; /* information of buffer */
487#define ATL1C_BUFFER_FREE 0x0001
488#define ATL1C_BUFFER_BUSY 0x0002
489#define ATL1C_BUFFER_STATE_MASK 0x0003
490
491#define ATL1C_PCIMAP_SINGLE 0x0004
492#define ATL1C_PCIMAP_PAGE 0x0008
493#define ATL1C_PCIMAP_TYPE_MASK 0x000C
494
Jie Yang4b45e342009-12-06 22:56:59 +0000495#define ATL1C_PCIMAP_TODEVICE 0x0010
496#define ATL1C_PCIMAP_FROMDEVICE 0x0020
497#define ATL1C_PCIMAP_DIRECTION_MASK 0x0030
Jie Yang43250dd2009-02-18 17:24:15 -0800498 dma_addr_t dma;
499};
500
Jie Yangc6060be2009-11-06 00:32:05 -0800501#define ATL1C_SET_BUFFER_STATE(buff, state) do { \
502 ((buff)->flags) &= ~ATL1C_BUFFER_STATE_MASK; \
503 ((buff)->flags) |= (state); \
504 } while (0)
505
Jie Yang4b45e342009-12-06 22:56:59 +0000506#define ATL1C_SET_PCIMAP_TYPE(buff, type, direction) do { \
507 ((buff)->flags) &= ~ATL1C_PCIMAP_TYPE_MASK; \
508 ((buff)->flags) |= (type); \
509 ((buff)->flags) &= ~ATL1C_PCIMAP_DIRECTION_MASK; \
510 ((buff)->flags) |= (direction); \
Jie Yangc6060be2009-11-06 00:32:05 -0800511 } while (0)
512
Jie Yang43250dd2009-02-18 17:24:15 -0800513/* transimit packet descriptor (tpd) ring */
514struct atl1c_tpd_ring {
515 void *desc; /* descriptor ring virtual address */
516 dma_addr_t dma; /* descriptor ring physical address */
517 u16 size; /* descriptor ring length in bytes */
518 u16 count; /* number of descriptors in the ring */
519 u16 next_to_use; /* this is protectd by adapter->tx_lock */
520 atomic_t next_to_clean;
521 struct atl1c_buffer *buffer_info;
522};
523
524/* receive free descriptor (rfd) ring */
525struct atl1c_rfd_ring {
526 void *desc; /* descriptor ring virtual address */
527 dma_addr_t dma; /* descriptor ring physical address */
528 u16 size; /* descriptor ring length in bytes */
529 u16 count; /* number of descriptors in the ring */
530 u16 next_to_use;
531 u16 next_to_clean;
532 struct atl1c_buffer *buffer_info;
533};
534
Justin P. Mattock5a3a7652011-01-19 15:36:38 +0100535/* receive return descriptor (rrd) ring */
Jie Yang43250dd2009-02-18 17:24:15 -0800536struct atl1c_rrd_ring {
537 void *desc; /* descriptor ring virtual address */
538 dma_addr_t dma; /* descriptor ring physical address */
539 u16 size; /* descriptor ring length in bytes */
540 u16 count; /* number of descriptors in the ring */
541 u16 next_to_use;
542 u16 next_to_clean;
543};
544
545struct atl1c_cmb {
546 void *cmb;
547 dma_addr_t dma;
548};
549
550struct atl1c_smb {
551 void *smb;
552 dma_addr_t dma;
553};
554
555/* board specific private data structure */
556struct atl1c_adapter {
557 struct net_device *netdev;
558 struct pci_dev *pdev;
559 struct vlan_group *vlgrp;
560 struct napi_struct napi;
561 struct atl1c_hw hw;
562 struct atl1c_hw_stats hw_stats;
Jie Yang43250dd2009-02-18 17:24:15 -0800563 struct mii_if_info mii; /* MII interface info */
564 u16 rx_buffer_len;
565
566 unsigned long flags;
567#define __AT_TESTING 0x0001
568#define __AT_RESETTING 0x0002
569#define __AT_DOWN 0x0003
Tim Gardnercb771832011-04-20 09:00:49 +0000570 unsigned long work_event;
571#define ATL1C_WORK_EVENT_RESET 0
572#define ATL1C_WORK_EVENT_LINK_CHANGE 1
Jie Yang43250dd2009-02-18 17:24:15 -0800573 u32 msg_enable;
574
575 bool have_msi;
576 u32 wol;
577 u16 link_speed;
578 u16 link_duplex;
579
580 spinlock_t mdio_lock;
581 spinlock_t tx_lock;
582 atomic_t irq_sem;
583
Jie Yangcb190542009-12-06 23:16:58 +0000584 struct work_struct common_task;
Jie Yang43250dd2009-02-18 17:24:15 -0800585 struct timer_list watchdog_timer;
586 struct timer_list phy_config_timer;
587
588 /* All Descriptor memory */
589 struct atl1c_ring_header ring_header;
590 struct atl1c_tpd_ring tpd_ring[AT_MAX_TRANSMIT_QUEUE];
591 struct atl1c_rfd_ring rfd_ring[AT_MAX_RECEIVE_QUEUE];
592 struct atl1c_rrd_ring rrd_ring[AT_MAX_RECEIVE_QUEUE];
593 struct atl1c_cmb cmb;
594 struct atl1c_smb smb;
595 int num_rx_queues;
596 u32 bd_number; /* board number;*/
597};
598
599#define AT_WRITE_REG(a, reg, value) ( \
600 writel((value), ((a)->hw_addr + reg)))
601
602#define AT_WRITE_FLUSH(a) (\
603 readl((a)->hw_addr))
604
605#define AT_READ_REG(a, reg, pdata) do { \
606 if (unlikely((a)->hibernate)) { \
607 readl((a)->hw_addr + reg); \
608 *(u32 *)pdata = readl((a)->hw_addr + reg); \
609 } else { \
610 *(u32 *)pdata = readl((a)->hw_addr + reg); \
611 } \
612 } while (0)
613
614#define AT_WRITE_REGB(a, reg, value) (\
615 writeb((value), ((a)->hw_addr + reg)))
616
617#define AT_READ_REGB(a, reg) (\
618 readb((a)->hw_addr + reg))
619
620#define AT_WRITE_REGW(a, reg, value) (\
621 writew((value), ((a)->hw_addr + reg)))
622
623#define AT_READ_REGW(a, reg) (\
624 readw((a)->hw_addr + reg))
625
626#define AT_WRITE_REG_ARRAY(a, reg, offset, value) ( \
627 writel((value), (((a)->hw_addr + reg) + ((offset) << 2))))
628
629#define AT_READ_REG_ARRAY(a, reg, offset) ( \
630 readl(((a)->hw_addr + reg) + ((offset) << 2)))
631
632extern char atl1c_driver_name[];
633extern char atl1c_driver_version[];
634
Jie Yang43250dd2009-02-18 17:24:15 -0800635extern void atl1c_reinit_locked(struct atl1c_adapter *adapter);
636extern s32 atl1c_reset_hw(struct atl1c_hw *hw);
637extern void atl1c_set_ethtool_ops(struct net_device *netdev);
638#endif /* _ATL1C_H_ */