xref: /onnv-gate/usr/src/uts/common/io/igb/igb_defines.h (revision 5779:e875a8701bfc)
1 /*
2  * CDDL HEADER START
3  *
4  * Copyright(c) 2007-2008 Intel Corporation. All rights reserved.
5  * The contents of this file are subject to the terms of the
6  * Common Development and Distribution License (the "License").
7  * You may not use this file except in compliance with the License.
8  *
9  * You can obtain a copy of the license at:
10  *	http://www.opensolaris.org/os/licensing.
11  * See the License for the specific language governing permissions
12  * and limitations under the License.
13  *
14  * When using or redistributing this file, you may do so under the
15  * License only. No other modification of this header is permitted.
16  *
17  * If applicable, add the following below this CDDL HEADER, with the
18  * fields enclosed by brackets "[]" replaced with your own identifying
19  * information: Portions Copyright [yyyy] [name of copyright owner]
20  *
21  * CDDL HEADER END
22  */
23 
24 /*
25  * Copyright 2008 Sun Microsystems, Inc.  All rights reserved.
26  * Use is subject to license terms of the CDDL.
27  */
28 
29 #ifndef _IGB_DEFINES_H
30 #define	_IGB_DEFINES_H
31 
32 #pragma ident	"%Z%%M%	%I%	%E% SMI"
33 
34 #ifdef __cplusplus
35 extern "C" {
36 #endif
37 
38 /* Number of Transmit and Receive Descriptors must be a multiple of 8 */
39 #define	REQ_TX_DESCRIPTOR_MULTIPLE	8
40 #define	REQ_RX_DESCRIPTOR_MULTIPLE	8
41 
42 /* Definitions for power management and wakeup registers */
43 /* Wake Up Control */
44 #define	E1000_WUC_APME		0x00000001 /* APM Enable */
45 #define	E1000_WUC_PME_EN	0x00000002 /* PME Enable */
46 #define	E1000_WUC_PME_STATUS	0x00000004 /* PME Status */
47 #define	E1000_WUC_APMPME	0x00000008 /* Assert PME on APM Wakeup */
48 #define	E1000_WUC_LSCWE		0x00000010 /* Link Status wake up enable */
49 #define	E1000_WUC_LSCWO		0x00000020 /* Link Status wake up override */
50 #define	E1000_WUC_SPM		0x80000000 /* Enable SPM */
51 #define	E1000_WUC_PHY_WAKE	0x00000100 /* if PHY supports wakeup */
52 
53 /* Wake Up Filter Control */
54 #define	E1000_WUFC_LNKC	0x00000001 /* Link Status Change Wakeup Enable */
55 #define	E1000_WUFC_MAG	0x00000002 /* Magic Packet Wakeup Enable */
56 #define	E1000_WUFC_EX	0x00000004 /* Directed Exact Wakeup Enable */
57 #define	E1000_WUFC_MC	0x00000008 /* Directed Multicast Wakeup Enable */
58 #define	E1000_WUFC_BC	0x00000010 /* Broadcast Wakeup Enable */
59 #define	E1000_WUFC_ARP	0x00000020 /* ARP Request Packet Wakeup Enable */
60 #define	E1000_WUFC_IPV4	0x00000040 /* Directed IPv4 Packet Wakeup Enable */
61 #define	E1000_WUFC_IPV6	0x00000080 /* Directed IPv6 Packet Wakeup Enable */
62 #define	E1000_WUFC_IGNORE_TCO_BM 0x00000800 /* Ignore WakeOn TCO packets */
63 #define	E1000_WUFC_FLX0_BM	0x00001000 /* Flexible Filter 0 Enable */
64 #define	E1000_WUFC_FLX1_BM	0x00002000 /* Flexible Filter 1 Enable */
65 #define	E1000_WUFC_FLX2_BM	0x00004000 /* Flexible Filter 2 Enable */
66 #define	E1000_WUFC_FLX3_BM	0x00008000 /* Flexible Filter 3 Enable */
67 #define	E1000_WUFC_IGNORE_TCO	0x00008000 /* Ignore WakeOn TCO packets */
68 #define	E1000_WUFC_FLX0	0x00010000 /* Flexible Filter 0 Enable */
69 #define	E1000_WUFC_FLX1	0x00020000 /* Flexible Filter 1 Enable */
70 #define	E1000_WUFC_FLX2	0x00040000 /* Flexible Filter 2 Enable */
71 #define	E1000_WUFC_FLX3	0x00080000 /* Flexible Filter 3 Enable */
72 /* Mask for all wakeup filters */
73 #define	E1000_WUFC_ALL_FILTERS_BM	0x0000F0FF
74 /* Offset to the Flexible Filters bits */
75 #define	E1000_WUFC_FLX_OFFSET_BM	12
76 /* Mask for the 4 flexible filters */
77 #define	E1000_WUFC_FLX_FILTERS_BM	0x0000F000
78 #define	E1000_WUFC_ALL_FILTERS	0x000F00FF /* Mask for all wakeup filters */
79 #define	E1000_WUFC_FLX_OFFSET   16 /* Offset to the Flexible Filters bits */
80 #define	E1000_WUFC_FLX_FILTERS	0x000F0000 /* Mask for the 4 flexible filters */
81 
82 /* Wake Up Status */
83 #define	E1000_WUS_LNKC		E1000_WUFC_LNKC
84 #define	E1000_WUS_MAG		E1000_WUFC_MAG
85 #define	E1000_WUS_EX		E1000_WUFC_EX
86 #define	E1000_WUS_MC		E1000_WUFC_MC
87 #define	E1000_WUS_BC		E1000_WUFC_BC
88 #define	E1000_WUS_ARP		E1000_WUFC_ARP
89 #define	E1000_WUS_IPV4		E1000_WUFC_IPV4
90 #define	E1000_WUS_IPV6		E1000_WUFC_IPV6
91 #define	E1000_WUS_FLX0_BM	E1000_WUFC_FLX0_BM
92 #define	E1000_WUS_FLX1_BM	E1000_WUFC_FLX1_BM
93 #define	E1000_WUS_FLX2_BM	E1000_WUFC_FLX2_BM
94 #define	E1000_WUS_FLX3_BM	E1000_WUFC_FLX3_BM
95 #define	E1000_WUS_FLX_FILTERS_BM E1000_WUFC_FLX_FILTERS_BM
96 #define	E1000_WUS_FLX0		E1000_WUFC_FLX0
97 #define	E1000_WUS_FLX1		E1000_WUFC_FLX1
98 #define	E1000_WUS_FLX2		E1000_WUFC_FLX2
99 #define	E1000_WUS_FLX3		E1000_WUFC_FLX3
100 #define	E1000_WUS_FLX_FILTERS	E1000_WUFC_FLX_FILTERS
101 
102 /* Wake Up Packet Length */
103 #define	E1000_WUPL_LENGTH_MASK	0x0FFF   /* Only the lower 12 bits are valid */
104 
105 /* Four Flexible Filters are supported */
106 #define	E1000_FLEXIBLE_FILTER_COUNT_MAX	4
107 
108 /* Each Flexible Filter is at most 128 (0x80) bytes in length */
109 #define	E1000_FLEXIBLE_FILTER_SIZE_MAX	128
110 
111 #define	E1000_FFLT_SIZE E1000_FLEXIBLE_FILTER_COUNT_MAX
112 #define	E1000_FFMT_SIZE E1000_FLEXIBLE_FILTER_SIZE_MAX
113 #define	E1000_FFVT_SIZE E1000_FLEXIBLE_FILTER_SIZE_MAX
114 
115 /* Extended Device Control */
116 #define	E1000_CTRL_EXT_GPI0_EN	0x00000001 /* Maps SDP4 to GPI0 */
117 #define	E1000_CTRL_EXT_GPI1_EN	0x00000002 /* Maps SDP5 to GPI1 */
118 #define	E1000_CTRL_EXT_PHYINT_EN E1000_CTRL_EXT_GPI1_EN
119 #define	E1000_CTRL_EXT_GPI2_EN	0x00000004 /* Maps SDP6 to GPI2 */
120 #define	E1000_CTRL_EXT_GPI3_EN	0x00000008 /* Maps SDP7 to GPI3 */
121 /* Reserved (bits 4,5) in >= 82575 */
122 #define	E1000_CTRL_EXT_SDP4_DATA 0x00000010 /* Value of SW Defineable Pin 4 */
123 #define	E1000_CTRL_EXT_SDP5_DATA 0x00000020 /* Value of SW Defineable Pin 5 */
124 #define	E1000_CTRL_EXT_PHY_INT   E1000_CTRL_EXT_SDP5_DATA
125 #define	E1000_CTRL_EXT_SDP6_DATA 0x00000040 /* Value of SW Defineable Pin 6 */
126 #define	E1000_CTRL_EXT_SDP7_DATA 0x00000080 /* Value of SW Defineable Pin 7 */
127 /* SDP 4/5 (bits 8,9) are reserved in >= 82575 */
128 #define	E1000_CTRL_EXT_SDP4_DIR	0x00000100 /* Direction of SDP4 0=in 1=out */
129 #define	E1000_CTRL_EXT_SDP5_DIR	0x00000200 /* Direction of SDP5 0=in 1=out */
130 #define	E1000_CTRL_EXT_SDP6_DIR	0x00000400 /* Direction of SDP6 0=in 1=out */
131 #define	E1000_CTRL_EXT_SDP7_DIR	0x00000800 /* Direction of SDP7 0=in 1=out */
132 #define	E1000_CTRL_EXT_ASDCHK	0x00001000 /* Initiate an ASD sequence */
133 #define	E1000_CTRL_EXT_EE_RST	0x00002000 /* Reinitialize from EEPROM */
134 #define	E1000_CTRL_EXT_IPS	0x00004000 /* Invert Power State */
135 #define	E1000_CTRL_EXT_SPD_BYPS	0x00008000 /* Speed Select Bypass */
136 #define	E1000_CTRL_EXT_RO_DIS	0x00020000 /* Relaxed Ordering disable */
137 #define	E1000_CTRL_EXT_LINK_MODE_MASK	0x00C00000
138 #define	E1000_CTRL_EXT_LINK_MODE_GMII	0x00000000
139 #define	E1000_CTRL_EXT_LINK_MODE_TBI	0x00C00000
140 #define	E1000_CTRL_EXT_LINK_MODE_KMRN	0x00000000
141 #define	E1000_CTRL_EXT_LINK_MODE_PCIE_SERDES	0x00C00000
142 #define	E1000_CTRL_EXT_LINK_MODE_PCIX_SERDES	0x00800000
143 #define	E1000_CTRL_EXT_LINK_MODE_SGMII	0x00800000
144 #define	E1000_CTRL_EXT_EIAME		0x01000000
145 #define	E1000_CTRL_EXT_IRCA		0x00000001
146 #define	E1000_CTRL_EXT_WR_WMARK_MASK	0x03000000
147 #define	E1000_CTRL_EXT_WR_WMARK_256	0x00000000
148 #define	E1000_CTRL_EXT_WR_WMARK_320	0x01000000
149 #define	E1000_CTRL_EXT_WR_WMARK_384	0x02000000
150 #define	E1000_CTRL_EXT_WR_WMARK_448	0x03000000
151 #define	E1000_CTRL_EXT_CANC	0x04000000 /* Interrupt delay cancellation */
152 #define	E1000_CTRL_EXT_DRV_LOAD	0x10000000 /* Driver loaded bit for FW */
153 /* IAME enable bit (27) was removed in >= 82575 */
154 /* Interrupt acknowledge Auto-mask */
155 #define	E1000_CTRL_EXT_IAME		0x08000000
156 /* Clear Interrupt timers after IMS clear */
157 #define	E1000_CTRL_EXT_INT_TIMER_CLR	0x20000000
158 /* packet buffer parity error detection enabled */
159 #define	E1000_CRTL_EXT_PB_PAREN		0x01000000
160 /* descriptor FIFO parity error detection enable */
161 #define	E1000_CTRL_EXT_DF_PAREN		0x02000000
162 #define	E1000_CTRL_EXT_GHOST_PAREN	0x40000000
163 #define	E1000_CTRL_EXT_PBA_CLR		0x80000000 /* PBA Clear */
164 #define	E1000_I2CCMD_REG_ADDR_SHIFT	16
165 #define	E1000_I2CCMD_REG_ADDR		0x00FF0000
166 #define	E1000_I2CCMD_PHY_ADDR_SHIFT	24
167 #define	E1000_I2CCMD_PHY_ADDR		0x07000000
168 #define	E1000_I2CCMD_OPCODE_READ	0x08000000
169 #define	E1000_I2CCMD_OPCODE_WRITE	0x00000000
170 #define	E1000_I2CCMD_RESET		0x10000000
171 #define	E1000_I2CCMD_READY		0x20000000
172 #define	E1000_I2CCMD_INTERRUPT_ENA	0x40000000
173 #define	E1000_I2CCMD_ERROR		0x80000000
174 #define	E1000_MAX_SGMII_PHY_REG_ADDR	255
175 #define	E1000_I2CCMD_PHY_TIMEOUT	200
176 
177 /* Receive Decriptor bit definitions */
178 #define	E1000_RXD_STAT_DD	0x01    /* Descriptor Done */
179 #define	E1000_RXD_STAT_EOP	0x02    /* End of Packet */
180 #define	E1000_RXD_STAT_IXSM	0x04    /* Ignore checksum */
181 #define	E1000_RXD_STAT_VP	0x08    /* IEEE VLAN Packet */
182 #define	E1000_RXD_STAT_UDPCS	0x10    /* UDP xsum caculated */
183 #define	E1000_RXD_STAT_TCPCS	0x20    /* TCP xsum calculated */
184 #define	E1000_RXD_STAT_IPCS	0x40    /* IP xsum calculated */
185 #define	E1000_RXD_STAT_PIF	0x80    /* passed in-exact filter */
186 #define	E1000_RXD_STAT_CRCV	0x100   /* Speculative CRC Valid */
187 #define	E1000_RXD_STAT_IPIDV	0x200   /* IP identification valid */
188 #define	E1000_RXD_STAT_UDPV	0x400   /* Valid UDP checksum */
189 #define	E1000_RXD_STAT_DYNINT	0x800   /* Pkt caused INT via DYNINT */
190 #define	E1000_RXD_STAT_ACK	0x8000  /* ACK Packet indication */
191 #define	E1000_RXD_ERR_CE	0x01    /* CRC Error */
192 #define	E1000_RXD_ERR_SE	0x02    /* Symbol Error */
193 #define	E1000_RXD_ERR_SEQ	0x04    /* Sequence Error */
194 #define	E1000_RXD_ERR_CXE	0x10    /* Carrier Extension Error */
195 #define	E1000_RXD_ERR_TCPE	0x20    /* TCP/UDP Checksum Error */
196 #define	E1000_RXD_ERR_IPE	0x40    /* IP Checksum Error */
197 #define	E1000_RXD_ERR_RXE	0x80    /* Rx Data Error */
198 #define	E1000_RXD_SPC_VLAN_MASK	0x0FFF  /* VLAN ID is in lower 12 bits */
199 #define	E1000_RXD_SPC_PRI_MASK	0xE000  /* Priority is in upper 3 bits */
200 #define	E1000_RXD_SPC_PRI_SHIFT	13
201 #define	E1000_RXD_SPC_CFI_MASK	0x1000  /* CFI is bit 12 */
202 #define	E1000_RXD_SPC_CFI_SHIFT	12
203 
204 #define	E1000_RXDEXT_STATERR_CE		0x01000000
205 #define	E1000_RXDEXT_STATERR_SE		0x02000000
206 #define	E1000_RXDEXT_STATERR_SEQ	0x04000000
207 #define	E1000_RXDEXT_STATERR_CXE	0x10000000
208 #define	E1000_RXDEXT_STATERR_TCPE	0x20000000
209 #define	E1000_RXDEXT_STATERR_IPE	0x40000000
210 #define	E1000_RXDEXT_STATERR_RXE	0x80000000
211 
212 /* mask to determine if packets should be dropped due to frame errors */
213 #define	E1000_RXD_ERR_FRAME_ERR_MASK ( \
214     E1000_RXD_ERR_CE  |	\
215     E1000_RXD_ERR_SE  |	\
216     E1000_RXD_ERR_SEQ |	\
217     E1000_RXD_ERR_CXE |	\
218     E1000_RXD_ERR_RXE)
219 
220 /* Same mask, but for extended and packet split descriptors */
221 #define	E1000_RXDEXT_ERR_FRAME_ERR_MASK ( \
222     E1000_RXDEXT_STATERR_CE  |	\
223     E1000_RXDEXT_STATERR_SE  |	\
224     E1000_RXDEXT_STATERR_SEQ |	\
225     E1000_RXDEXT_STATERR_CXE |	\
226     E1000_RXDEXT_STATERR_RXE)
227 
228 #define	E1000_MRQC_ENABLE_MASK		0x00000007
229 #define	E1000_MRQC_ENABLE_RSS_2Q	0x00000001
230 #define	E1000_MRQC_ENABLE_RSS_INT	0x00000004
231 #define	E1000_MRQC_RSS_FIELD_MASK	0xFFFF0000
232 #define	E1000_MRQC_RSS_FIELD_IPV4_TCP	0x00010000
233 #define	E1000_MRQC_RSS_FIELD_IPV4	0x00020000
234 #define	E1000_MRQC_RSS_FIELD_IPV6_TCP_EX 0x00040000
235 #define	E1000_MRQC_RSS_FIELD_IPV6_EX	0x00080000
236 #define	E1000_MRQC_RSS_FIELD_IPV6	0x00100000
237 #define	E1000_MRQC_RSS_FIELD_IPV6_TCP	0x00200000
238 
239 #define	E1000_RXDPS_HDRSTAT_HDRSP	0x00008000
240 #define	E1000_RXDPS_HDRSTAT_HDRLEN_MASK	0x000003FF
241 
242 /* Management Control */
243 #define	E1000_MANC_SMBUS_EN	0x00000001 /* SMBus Enabled - RO */
244 #define	E1000_MANC_ASF_EN	0x00000002 /* ASF Enabled - RO */
245 #define	E1000_MANC_R_ON_FORCE	0x00000004 /* Reset on Force TCO - RO */
246 #define	E1000_MANC_RMCP_EN	0x00000100 /* Enable RCMP 026Fh Filtering */
247 #define	E1000_MANC_0298_EN	0x00000200 /* Enable RCMP 0298h Filtering */
248 #define	E1000_MANC_IPV4_EN	0x00000400 /* Enable IPv4 */
249 #define	E1000_MANC_IPV6_EN	0x00000800 /* Enable IPv6 */
250 #define	E1000_MANC_SNAP_EN	0x00001000 /* Accept LLC/SNAP */
251 #define	E1000_MANC_ARP_EN	0x00002000 /* Enable ARP Request Filtering */
252 /* Enable Neighbor Discovery Filtering */
253 #define	E1000_MANC_NEIGHBOR_EN	0x00004000
254 #define	E1000_MANC_ARP_RES_EN	0x00008000 /* Enable ARP response Filtering */
255 #define	E1000_MANC_TCO_RESET	0x00010000 /* TCO Reset Occurred */
256 #define	E1000_MANC_RCV_TCO_EN	0x00020000 /* Receive TCO Packets Enabled */
257 #define	E1000_MANC_REPORT_STATUS 0x00040000 /* Status Reporting Enabled */
258 #define	E1000_MANC_RCV_ALL	0x00080000 /* Receive All Enabled */
259 #define	E1000_MANC_BLK_PHY_RST_ON_IDE	0x00040000 /* Block phy resets */
260 /* Enable MAC address filtering */
261 #define	E1000_MANC_EN_MAC_ADDR_FILTER	0x00100000
262 /* Enable MNG packets to host memory */
263 #define	E1000_MANC_EN_MNG2HOST		0x00200000
264 /* Enable IP address filtering */
265 #define	E1000_MANC_EN_IP_ADDR_FILTER	0x00400000
266 #define	E1000_MANC_EN_XSUM_FILTER	0x00800000 /* Enable cksum filtering */
267 #define	E1000_MANC_BR_EN	0x01000000 /* Enable broadcast filtering */
268 #define	E1000_MANC_SMB_REQ	0x01000000 /* SMBus Request */
269 #define	E1000_MANC_SMB_GNT	0x02000000 /* SMBus Grant */
270 #define	E1000_MANC_SMB_CLK_IN	0x04000000 /* SMBus Clock In */
271 #define	E1000_MANC_SMB_DATA_IN	0x08000000 /* SMBus Data In */
272 #define	E1000_MANC_SMB_DATA_OUT	0x10000000 /* SMBus Data Out */
273 #define	E1000_MANC_SMB_CLK_OUT	0x20000000 /* SMBus Clock Out */
274 
275 #define	E1000_MANC_SMB_DATA_OUT_SHIFT  28 /* SMBus Data Out Shift */
276 #define	E1000_MANC_SMB_CLK_OUT_SHIFT   29 /* SMBus Clock Out Shift */
277 
278 /* Receive Control */
279 #define	E1000_RCTL_RST		0x00000001 /* Software reset */
280 #define	E1000_RCTL_EN		0x00000002 /* enable */
281 #define	E1000_RCTL_SBP		0x00000004 /* store bad packet */
282 #define	E1000_RCTL_UPE		0x00000008 /* unicast promiscuous enable */
283 #define	E1000_RCTL_MPE		0x00000010 /* multicast promiscuous enab */
284 #define	E1000_RCTL_LPE		0x00000020 /* long packet enable */
285 #define	E1000_RCTL_LBM_NO	0x00000000 /* no loopback mode */
286 #define	E1000_RCTL_LBM_MAC	0x00000040 /* MAC loopback mode */
287 #define	E1000_RCTL_LBM_SLP	0x00000080 /* serial link loopback mode */
288 #define	E1000_RCTL_LBM_TCVR	0x000000C0 /* tcvr loopback mode */
289 #define	E1000_RCTL_DTYP_MASK	0x00000C00 /* Descriptor type mask */
290 #define	E1000_RCTL_DTYP_PS	0x00000400 /* Packet Split descriptor */
291 #define	E1000_RCTL_RDMTS_HALF	0x00000000 /* rx desc min threshold size */
292 #define	E1000_RCTL_RDMTS_QUAT	0x00000100 /* rx desc min threshold size */
293 #define	E1000_RCTL_RDMTS_EIGTH	0x00000200 /* rx desc min threshold size */
294 #define	E1000_RCTL_MO_SHIFT	12	   /* multicast offset shift */
295 #define	E1000_RCTL_MO_0		0x00000000 /* multicast offset 11:0 */
296 #define	E1000_RCTL_MO_1		0x00001000 /* multicast offset 12:1 */
297 #define	E1000_RCTL_MO_2		0x00002000 /* multicast offset 13:2 */
298 #define	E1000_RCTL_MO_3		0x00003000 /* multicast offset 15:4 */
299 #define	E1000_RCTL_MDR		0x00004000 /* multicast desc ring 0 */
300 #define	E1000_RCTL_BAM		0x00008000 /* broadcast enable */
301 /* these buffer sizes are valid if E1000_RCTL_BSEX is 0 */
302 #define	E1000_RCTL_SZ_2048	0x00000000 /* rx buffer size 2048 */
303 #define	E1000_RCTL_SZ_1024	0x00010000 /* rx buffer size 1024 */
304 #define	E1000_RCTL_SZ_512	0x00020000 /* rx buffer size 512 */
305 #define	E1000_RCTL_SZ_256	0x00030000 /* rx buffer size 256 */
306 /* these buffer sizes are valid if E1000_RCTL_BSEX is 1 */
307 #define	E1000_RCTL_SZ_16384	0x00010000 /* rx buffer size 16384 */
308 #define	E1000_RCTL_SZ_8192	0x00020000 /* rx buffer size 8192 */
309 #define	E1000_RCTL_SZ_4096	0x00030000 /* rx buffer size 4096 */
310 #define	E1000_RCTL_VFE		0x00040000 /* vlan filter enable */
311 #define	E1000_RCTL_CFIEN	0x00080000 /* canonical form enable */
312 #define	E1000_RCTL_CFI		0x00100000 /* canonical form indicator */
313 #define	E1000_RCTL_DPF		0x00400000 /* discard pause frames */
314 #define	E1000_RCTL_PMCF		0x00800000 /* pass MAC control frames */
315 #define	E1000_RCTL_BSEX		0x02000000 /* Buffer size extension */
316 #define	E1000_RCTL_SECRC	0x04000000 /* Strip Ethernet CRC */
317 #define	E1000_RCTL_FLXBUF_MASK	0x78000000 /* Flexible buffer size */
318 #define	E1000_RCTL_FLXBUF_SHIFT	27	   /* Flexible buffer shift */
319 
320 /*
321  * Use byte values for the following shift parameters
322  * Usage:
323  *    psrctl |= (((ROUNDUP(value0, 128) >> E1000_PSRCTL_BSIZE0_SHIFT) &
324  *		E1000_PSRCTL_BSIZE0_MASK) |
325  *		((ROUNDUP(value1, 1024) >> E1000_PSRCTL_BSIZE1_SHIFT) &
326  *		E1000_PSRCTL_BSIZE1_MASK) |
327  *		((ROUNDUP(value2, 1024) << E1000_PSRCTL_BSIZE2_SHIFT) &
328  *		E1000_PSRCTL_BSIZE2_MASK) |
329  *		((ROUNDUP(value3, 1024) << E1000_PSRCTL_BSIZE3_SHIFT) |;
330  *		E1000_PSRCTL_BSIZE3_MASK))
331  * where value0 = [128..16256],  default=256
332  *	 value1 = [1024..64512], default=4096
333  *	 value2 = [0..64512],    default=4096
334  *	 value3 = [0..64512],    default=0
335  */
336 
337 #define	E1000_PSRCTL_BSIZE0_MASK	0x0000007F
338 #define	E1000_PSRCTL_BSIZE1_MASK	0x00003F00
339 #define	E1000_PSRCTL_BSIZE2_MASK	0x003F0000
340 #define	E1000_PSRCTL_BSIZE3_MASK	0x3F000000
341 
342 #define	E1000_PSRCTL_BSIZE0_SHIFT	7	/* Shift _right_ 7 */
343 #define	E1000_PSRCTL_BSIZE1_SHIFT	2	/* Shift _right_ 2 */
344 #define	E1000_PSRCTL_BSIZE2_SHIFT	6	/* Shift _left_ 6 */
345 #define	E1000_PSRCTL_BSIZE3_SHIFT	14	/* Shift _left_ 14 */
346 
347 /* SWFW_SYNC Definitions */
348 #define	E1000_SWFW_EEP_SM	0x1
349 #define	E1000_SWFW_PHY0_SM	0x2
350 #define	E1000_SWFW_PHY1_SM	0x4
351 
352 /* FACTPS Definitions */
353 #define	E1000_FACTPS_LFS	0x40000000  /* LAN Function Select */
354 /* Device Control */
355 #define	E1000_CTRL_FD		0x00000001  /* Full duplex.0=half; 1=full */
356 #define	E1000_CTRL_BEM		0x00000002  /* Endian Mode.0=little,1=big */
357 #define	E1000_CTRL_PRIOR	0x00000004  /* Priority on PCI. 0=rx,1=fair */
358 #define	E1000_CTRL_GIO_MASTER_DISABLE 0x00000004 /* Block new Master requests */
359 #define	E1000_CTRL_LRST		0x00000008  /* Link reset. 0=normal,1=reset */
360 #define	E1000_CTRL_TME		0x00000010  /* Test mode. 0=normal,1=test */
361 #define	E1000_CTRL_SLE		0x00000020  /* Serial Link on 0=dis,1=en */
362 #define	E1000_CTRL_ASDE		0x00000020  /* Auto-speed detect enable */
363 #define	E1000_CTRL_SLU		0x00000040  /* Set link up (Force Link) */
364 #define	E1000_CTRL_ILOS		0x00000080  /* Invert Loss-Of Signal */
365 #define	E1000_CTRL_SPD_SEL	0x00000300  /* Speed Select Mask */
366 #define	E1000_CTRL_SPD_10	0x00000000  /* Force 10Mb */
367 #define	E1000_CTRL_SPD_100	0x00000100  /* Force 100Mb */
368 #define	E1000_CTRL_SPD_1000	0x00000200  /* Force 1Gb */
369 #define	E1000_CTRL_BEM32	0x00000400  /* Big Endian 32 mode */
370 #define	E1000_CTRL_FRCSPD	0x00000800  /* Force Speed */
371 #define	E1000_CTRL_FRCDPX	0x00001000  /* Force Duplex */
372 #define	E1000_CTRL_D_UD_EN	0x00002000  /* Dock/Undock enable */
373 /* Defined polarity of Dock/Undock indication in SDP[0] */
374 #define	E1000_CTRL_D_UD_POLARITY	0x00004000
375 /* Reset both PHY ports, through PHYRST_N pin */
376 #define	E1000_CTRL_FORCE_PHY_RESET	0x00008000
377 /* enable link status from external LINK_0 and LINK_1 pins */
378 #define	E1000_CTRL_EXT_LINK_EN		0x00010000
379 #define	E1000_CTRL_SWDPIN0	0x00040000  /* SWDPIN 0 value */
380 #define	E1000_CTRL_SWDPIN1	0x00080000  /* SWDPIN 1 value */
381 #define	E1000_CTRL_SWDPIN2	0x00100000  /* SWDPIN 2 value */
382 #define	E1000_CTRL_SWDPIN3	0x00200000  /* SWDPIN 3 value */
383 #define	E1000_CTRL_SWDPIO0	0x00400000  /* SWDPIN 0 Input or output */
384 #define	E1000_CTRL_SWDPIO1	0x00800000  /* SWDPIN 1 input or output */
385 #define	E1000_CTRL_SWDPIO2	0x01000000  /* SWDPIN 2 input or output */
386 #define	E1000_CTRL_SWDPIO3	0x02000000  /* SWDPIN 3 input or output */
387 #define	E1000_CTRL_RST		0x04000000  /* Global reset */
388 #define	E1000_CTRL_RFCE		0x08000000  /* Receive Flow Control enable */
389 #define	E1000_CTRL_TFCE		0x10000000  /* Transmit flow control enable */
390 #define	E1000_CTRL_RTE		0x20000000  /* Routing tag enable */
391 #define	E1000_CTRL_VME		0x40000000  /* IEEE VLAN mode enable */
392 #define	E1000_CTRL_PHY_RST	0x80000000  /* PHY Reset */
393 /* Initiate an interrupt to manageability engine */
394 #define	E1000_CTRL_SW2FW_INT	0x02000000
395 #define	E1000_CTRL_I2C_ENA	0x02000000  /* I2C enable */
396 
397 /*
398  * Bit definitions for the Management Data IO (MDIO) and Management Data
399  * Clock (MDC) pins in the Device Control Register.
400  */
401 #define	E1000_CTRL_PHY_RESET_DIR	E1000_CTRL_SWDPIO0
402 #define	E1000_CTRL_PHY_RESET		E1000_CTRL_SWDPIN0
403 #define	E1000_CTRL_MDIO_DIR		E1000_CTRL_SWDPIO2
404 #define	E1000_CTRL_MDIO			E1000_CTRL_SWDPIN2
405 #define	E1000_CTRL_MDC_DIR		E1000_CTRL_SWDPIO3
406 #define	E1000_CTRL_MDC			E1000_CTRL_SWDPIN3
407 #define	E1000_CTRL_PHY_RESET_DIR4	E1000_CTRL_EXT_SDP4_DIR
408 #define	E1000_CTRL_PHY_RESET4		E1000_CTRL_EXT_SDP4_DATA
409 
410 #define	E1000_CONNSW_ENRGSRC		0x4
411 #define	E1000_PCS_LCTL_FLV_LINK_UP	1
412 #define	E1000_PCS_LCTL_FSV_10		0
413 #define	E1000_PCS_LCTL_FSV_100		2
414 #define	E1000_PCS_LCTL_FSV_1000		4
415 #define	E1000_PCS_LCTL_FDV_FULL		8
416 #define	E1000_PCS_LCTL_FSD		0x10
417 #define	E1000_PCS_LCTL_FORCE_LINK	0x20
418 #define	E1000_PCS_LCTL_LOW_LINK_LATCH	0x40
419 #define	E1000_PCS_LCTL_AN_ENABLE	0x10000
420 #define	E1000_PCS_LCTL_AN_RESTART	0x20000
421 #define	E1000_PCS_LCTL_AN_TIMEOUT	0x40000
422 #define	E1000_PCS_LCTL_AN_SGMII_BYPASS	0x80000
423 #define	E1000_PCS_LCTL_AN_SGMII_TRIGGER	0x100000
424 #define	E1000_PCS_LCTL_FAST_LINK_TIMER	0x1000000
425 #define	E1000_PCS_LCTL_LINK_OK_FIX	0x2000000
426 #define	E1000_PCS_LCTL_CRS_ON_NI	0x4000000
427 #define	E1000_ENABLE_SERDES_LOOPBACK	0x0410
428 
429 #define	E1000_PCS_LSTS_LINK_OK		1
430 #define	E1000_PCS_LSTS_SPEED_10		0
431 #define	E1000_PCS_LSTS_SPEED_100	2
432 #define	E1000_PCS_LSTS_SPEED_1000	4
433 #define	E1000_PCS_LSTS_DUPLEX_FULL	8
434 #define	E1000_PCS_LSTS_SYNK_OK		0x10
435 #define	E1000_PCS_LSTS_AN_COMPLETE	0x10000
436 #define	E1000_PCS_LSTS_AN_PAGE_RX	0x20000
437 #define	E1000_PCS_LSTS_AN_TIMED_OUT	0x40000
438 #define	E1000_PCS_LSTS_AN_REMOTE_FAULT	0x80000
439 #define	E1000_PCS_LSTS_AN_ERROR_RWS	0x100000
440 
441 /* Device Status */
442 #define	E1000_STATUS_FD		0x00000001 /* Full duplex.0=half,1=full */
443 #define	E1000_STATUS_LU		0x00000002 /* Link up.0=no,1=link */
444 #define	E1000_STATUS_FUNC_MASK	0x0000000C /* PCI Function Mask */
445 #define	E1000_STATUS_FUNC_SHIFT	2
446 #define	E1000_STATUS_FUNC_0	0x00000000 /* Function 0 */
447 #define	E1000_STATUS_FUNC_1	0x00000004 /* Function 1 */
448 #define	E1000_STATUS_TXOFF	0x00000010 /* transmission paused */
449 #define	E1000_STATUS_TBIMODE	0x00000020 /* TBI mode */
450 #define	E1000_STATUS_SPEED_MASK	0x000000C0
451 #define	E1000_STATUS_SPEED_10	0x00000000 /* Speed 10Mb/s */
452 #define	E1000_STATUS_SPEED_100	0x00000040 /* Speed 100Mb/s */
453 #define	E1000_STATUS_SPEED_1000	0x00000080 /* Speed 1000Mb/s */
454 #define	E1000_STATUS_LAN_INIT_DONE 0x00000200 /* Lan Init Completion by NVM */
455 #define	E1000_STATUS_ASDV	0x00000300 /* Auto speed detect value */
456 /* Change in Dock/Undock state. Clear on write '0'. */
457 #define	E1000_STATUS_DOCK_CI	0x00000800
458 /* Status of Master requests. */
459 #define	E1000_STATUS_GIO_MASTER_ENABLE	0x00080000
460 #define	E1000_STATUS_MTXCKOK	0x00000400 /* MTX clock running OK */
461 #define	E1000_STATUS_PCI66	0x00000800 /* In 66Mhz slot */
462 #define	E1000_STATUS_BUS64	0x00001000 /* In 64 bit slot */
463 #define	E1000_STATUS_PCIX_MODE	0x00002000 /* PCI-X mode */
464 #define	E1000_STATUS_PCIX_SPEED	0x0000C000 /* PCI-X bus speed */
465 #define	E1000_STATUS_BMC_SKU_0	0x00100000 /* BMC USB redirect disabled */
466 #define	E1000_STATUS_BMC_SKU_1	0x00200000 /* BMC SRAM disabled */
467 #define	E1000_STATUS_BMC_SKU_2	0x00400000 /* BMC SDRAM disabled */
468 #define	E1000_STATUS_BMC_CRYPTO	0x00800000 /* BMC crypto disabled */
469 /* BMC external code execution disabled */
470 #define	E1000_STATUS_BMC_LITE	0x01000000
471 #define	E1000_STATUS_RGMII_ENABLE 0x02000000 /* RGMII disabled */
472 #define	E1000_STATUS_FUSE_8	0x04000000
473 #define	E1000_STATUS_FUSE_9	0x08000000
474 #define	E1000_STATUS_SERDES0_DIS 0x10000000 /* SERDES disabled on port 0 */
475 #define	E1000_STATUS_SERDES1_DIS 0x20000000 /* SERDES disabled on port 1 */
476 
477 /* Constants used to intrepret the masked PCI-X bus speed. */
478 #define	E1000_STATUS_PCIX_SPEED_66  0x00000000 /* PCI-X bus speed  50-66 MHz */
479 #define	E1000_STATUS_PCIX_SPEED_100 0x00004000 /* PCI-X bus speed  66-100 MHz */
480 #define	E1000_STATUS_PCIX_SPEED_133 0x00008000 /* PCI-X bus speed 100-133 MHz */
481 
482 #define	SPEED_10	10
483 #define	SPEED_100	100
484 #define	SPEED_1000	1000
485 #define	HALF_DUPLEX	1
486 #define	FULL_DUPLEX	2
487 
488 #define	PHY_FORCE_TIME	20
489 
490 #define	ADVERTISE_10_HALF	0x0001
491 #define	ADVERTISE_10_FULL	0x0002
492 #define	ADVERTISE_100_HALF	0x0004
493 #define	ADVERTISE_100_FULL	0x0008
494 #define	ADVERTISE_1000_HALF	0x0010 /* Not used, just FYI */
495 #define	ADVERTISE_1000_FULL	0x0020
496 
497 /* 1000/H is not supported, nor spec-compliant. */
498 #define	E1000_ALL_SPEED_DUPLEX	(ADVERTISE_10_HALF | ADVERTISE_10_FULL | \
499 				ADVERTISE_100_HALF | ADVERTISE_100_FULL | \
500 				ADVERTISE_1000_FULL)
501 #define	E1000_ALL_NOT_GIG	(ADVERTISE_10_HALF | ADVERTISE_10_FULL | \
502 				ADVERTISE_100_HALF | ADVERTISE_100_FULL)
503 #define	E1000_ALL_100_SPEED	(ADVERTISE_100_HALF | ADVERTISE_100_FULL)
504 #define	E1000_ALL_10_SPEED	(ADVERTISE_10_HALF | ADVERTISE_10_FULL)
505 #define	E1000_ALL_FULL_DUPLEX	(ADVERTISE_10_FULL | ADVERTISE_100_FULL | \
506 				ADVERTISE_1000_FULL)
507 #define	E1000_ALL_HALF_DUPLEX	(ADVERTISE_10_HALF | ADVERTISE_100_HALF)
508 
509 #define	AUTONEG_ADVERTISE_SPEED_DEFAULT	E1000_ALL_SPEED_DUPLEX
510 
511 /* LED Control */
512 #define	E1000_LEDCTL_LED0_MODE_MASK	0x0000000F
513 #define	E1000_LEDCTL_LED0_MODE_SHIFT	0
514 #define	E1000_LEDCTL_LED0_BLINK_RATE	0x00000020
515 #define	E1000_LEDCTL_LED0_IVRT		0x00000040
516 #define	E1000_LEDCTL_LED0_BLINK		0x00000080
517 #define	E1000_LEDCTL_LED1_MODE_MASK	0x00000F00
518 #define	E1000_LEDCTL_LED1_MODE_SHIFT	8
519 #define	E1000_LEDCTL_LED1_BLINK_RATE	0x00002000
520 #define	E1000_LEDCTL_LED1_IVRT		0x00004000
521 #define	E1000_LEDCTL_LED1_BLINK		0x00008000
522 #define	E1000_LEDCTL_LED2_MODE_MASK	0x000F0000
523 #define	E1000_LEDCTL_LED2_MODE_SHIFT	16
524 #define	E1000_LEDCTL_LED2_BLINK_RATE	0x00200000
525 #define	E1000_LEDCTL_LED2_IVRT		0x00400000
526 #define	E1000_LEDCTL_LED2_BLINK		0x00800000
527 #define	E1000_LEDCTL_LED3_MODE_MASK	0x0F000000
528 #define	E1000_LEDCTL_LED3_MODE_SHIFT	24
529 #define	E1000_LEDCTL_LED3_BLINK_RATE	0x20000000
530 #define	E1000_LEDCTL_LED3_IVRT		0x40000000
531 #define	E1000_LEDCTL_LED3_BLINK		0x80000000
532 
533 #define	E1000_LEDCTL_MODE_LINK_10_1000	0x0
534 #define	E1000_LEDCTL_MODE_LINK_100_1000	0x1
535 #define	E1000_LEDCTL_MODE_LINK_UP	0x2
536 #define	E1000_LEDCTL_MODE_ACTIVITY	0x3
537 #define	E1000_LEDCTL_MODE_LINK_ACTIVITY	0x4
538 #define	E1000_LEDCTL_MODE_LINK_10	0x5
539 #define	E1000_LEDCTL_MODE_LINK_100	0x6
540 #define	E1000_LEDCTL_MODE_LINK_1000	0x7
541 #define	E1000_LEDCTL_MODE_PCIX_MODE	0x8
542 #define	E1000_LEDCTL_MODE_FULL_DUPLEX	0x9
543 #define	E1000_LEDCTL_MODE_COLLISION	0xA
544 #define	E1000_LEDCTL_MODE_BUS_SPEED	0xB
545 #define	E1000_LEDCTL_MODE_BUS_SIZE	0xC
546 #define	E1000_LEDCTL_MODE_PAUSED	0xD
547 #define	E1000_LEDCTL_MODE_LED_ON	0xE
548 #define	E1000_LEDCTL_MODE_LED_OFF	0xF
549 
550 /* Transmit Descriptor bit definitions */
551 #define	E1000_TXD_DTYP_D	0x00100000 /* Data Descriptor */
552 #define	E1000_TXD_DTYP_C	0x00000000 /* Context Descriptor */
553 #define	E1000_TXD_POPTS_SHIFT	8	   /* POPTS shift */
554 #define	E1000_TXD_POPTS_IXSM	0x01	   /* Insert IP checksum */
555 #define	E1000_TXD_POPTS_TXSM	0x02	   /* Insert TCP/UDP checksum */
556 #define	E1000_TXD_CMD_EOP	0x01000000 /* End of Packet */
557 #define	E1000_TXD_CMD_IFCS	0x02000000 /* Insert FCS (Ethernet CRC) */
558 #define	E1000_TXD_CMD_IC	0x04000000 /* Insert Checksum */
559 #define	E1000_TXD_CMD_RS	0x08000000 /* Report Status */
560 #define	E1000_TXD_CMD_RPS	0x10000000 /* Report Packet Sent */
561 #define	E1000_TXD_CMD_DEXT	0x20000000 /* Descriptor extension (0=legacy) */
562 #define	E1000_TXD_CMD_VLE	0x40000000 /* Add VLAN tag */
563 #define	E1000_TXD_CMD_IDE	0x80000000 /* Enable Tidv register */
564 #define	E1000_TXD_STAT_DD	0x00000001 /* Descriptor Done */
565 #define	E1000_TXD_STAT_EC	0x00000002 /* Excess Collisions */
566 #define	E1000_TXD_STAT_LC	0x00000004 /* Late Collisions */
567 #define	E1000_TXD_STAT_TU	0x00000008 /* Transmit underrun */
568 #define	E1000_TXD_CMD_TCP	0x01000000 /* TCP packet */
569 #define	E1000_TXD_CMD_IP	0x02000000 /* IP packet */
570 #define	E1000_TXD_CMD_TSE	0x04000000 /* TCP Seg enable */
571 #define	E1000_TXD_STAT_TC	0x00000004 /* Tx Underrun */
572 /* Extended desc bits for Linksec and timesync */
573 
574 /* Transmit Control */
575 #define	E1000_TCTL_RST	0x00000001	/* software reset */
576 #define	E1000_TCTL_EN	0x00000002	/* enable tx */
577 #define	E1000_TCTL_BCE	0x00000004	/* busy check enable */
578 #define	E1000_TCTL_PSP	0x00000008	/* pad short packets */
579 #define	E1000_TCTL_CT	0x00000ff0	/* collision threshold */
580 #define	E1000_TCTL_COLD	0x003ff000	/* collision distance */
581 #define	E1000_TCTL_SWXOFF 0x00400000	/* SW Xoff transmission */
582 #define	E1000_TCTL_PBE	0x00800000	/* Packet Burst Enable */
583 #define	E1000_TCTL_RTLC	0x01000000	/* Re-transmit on late collision */
584 #define	E1000_TCTL_NRTU	0x02000000	/* No Re-transmit on underrun */
585 #define	E1000_TCTL_MULR	0x10000000	/* Multiple request support */
586 
587 /* Transmit Arbitration Count */
588 #define	E1000_TARC0_ENABLE	0x00000400 /* Enable Tx Queue 0 */
589 
590 /* SerDes Control */
591 #define	E1000_SCTL_DISABLE_SERDES_LOOPBACK	0x0400
592 
593 /* Receive Checksum Control */
594 #define	E1000_RXCSUM_PCSS_MASK	0x000000FF /* Packet Checksum Start */
595 #define	E1000_RXCSUM_IPOFL	0x00000100 /* IPv4 checksum offload */
596 #define	E1000_RXCSUM_TUOFL	0x00000200 /* TCP / UDP checksum offload */
597 #define	E1000_RXCSUM_IPV6OFL	0x00000400 /* IPv6 checksum offload */
598 #define	E1000_RXCSUM_CRCOFL	0x00000800 /* CRC32 offload enable */
599 #define	E1000_RXCSUM_IPPCSE	0x00001000 /* IP payload checksum enable */
600 #define	E1000_RXCSUM_PCSD	0x00002000 /* packet checksum disabled */
601 
602 /* Header split receive */
603 #define	E1000_RFCTL_ISCSI_DIS		0x00000001
604 #define	E1000_RFCTL_ISCSI_DWC_MASK	0x0000003E
605 #define	E1000_RFCTL_ISCSI_DWC_SHIFT	1
606 #define	E1000_RFCTL_NFSW_DIS		0x00000040
607 #define	E1000_RFCTL_NFSR_DIS		0x00000080
608 #define	E1000_RFCTL_NFS_VER_MASK	0x00000300
609 #define	E1000_RFCTL_NFS_VER_SHIFT	8
610 #define	E1000_RFCTL_IPV6_DIS		0x00000400
611 #define	E1000_RFCTL_IPV6_XSUM_DIS	0x00000800
612 #define	E1000_RFCTL_ACK_DIS		0x00001000
613 #define	E1000_RFCTL_ACKD_DIS		0x00002000
614 #define	E1000_RFCTL_IPFRSP_DIS		0x00004000
615 #define	E1000_RFCTL_EXTEN		0x00008000
616 #define	E1000_RFCTL_IPV6_EX_DIS		0x00010000
617 #define	E1000_RFCTL_NEW_IPV6_EXT_DIS	0x00020000
618 
619 /* Collision related configuration parameters */
620 #define	E1000_COLLISION_THRESHOLD	15
621 #define	E1000_CT_SHIFT			4
622 #define	E1000_COLLISION_DISTANCE	63
623 #define	E1000_COLD_SHIFT		12
624 
625 /* Default values for the transmit IPG register */
626 #define	DEFAULT_82543_TIPG_IPGT_FIBER	9
627 #define	DEFAULT_82543_TIPG_IPGT_COPPER	8
628 
629 #define	E1000_TIPG_IPGT_MASK	0x000003FF
630 #define	E1000_TIPG_IPGR1_MASK	0x000FFC00
631 #define	E1000_TIPG_IPGR2_MASK	0x3FF00000
632 
633 #define	DEFAULT_82543_TIPG_IPGR1	8
634 #define	E1000_TIPG_IPGR1_SHIFT		10
635 
636 #define	DEFAULT_82543_TIPG_IPGR2	6
637 #define	DEFAULT_80003ES2LAN_TIPG_IPGR2	7
638 #define	E1000_TIPG_IPGR2_SHIFT		20
639 
640 /* Ethertype field values */
641 #define	ETHERNET_IEEE_VLAN_TYPE	0x8100  /* 802.3ac packet */
642 
643 #define	ETHERNET_FCS_SIZE	4
644 #define	MAX_JUMBO_FRAME_SIZE	0x3F00
645 
646 /* Extended Configuration Control and Size */
647 #define	E1000_EXTCNF_CTRL_MDIO_SW_OWNERSHIP	0x00000020
648 #define	E1000_EXTCNF_CTRL_LCD_WRITE_ENABLE	0x00000001
649 #define	E1000_EXTCNF_CTRL_SWFLAG		0x00000020
650 #define	E1000_EXTCNF_SIZE_EXT_PCIE_LENGTH_MASK	0x00FF0000
651 #define	E1000_EXTCNF_SIZE_EXT_PCIE_LENGTH_SHIFT	16
652 #define	E1000_EXTCNF_CTRL_EXT_CNF_POINTER_MASK	0x0FFF0000
653 #define	E1000_EXTCNF_CTRL_EXT_CNF_POINTER_SHIFT	16
654 
655 #define	E1000_PHY_CTRL_SPD_EN			0x00000001
656 #define	E1000_PHY_CTRL_D0A_LPLU			0x00000002
657 #define	E1000_PHY_CTRL_NOND0A_LPLU		0x00000004
658 #define	E1000_PHY_CTRL_NOND0A_GBE_DISABLE	0x00000008
659 #define	E1000_PHY_CTRL_GBE_DISABLE		0x00000040
660 
661 #define	E1000_KABGTXD_BGSQLBIAS			0x00050000
662 
663 /* PBA constants */
664 #define	E1000_PBA_8K	0x0008    /* 8KB */
665 #define	E1000_PBA_12K	0x000C    /* 12KB */
666 #define	E1000_PBA_16K	0x0010    /* 16KB */
667 #define	E1000_PBA_20K	0x0014
668 #define	E1000_PBA_22K	0x0016
669 #define	E1000_PBA_24K	0x0018
670 #define	E1000_PBA_30K	0x001E
671 #define	E1000_PBA_32K	0x0020
672 #define	E1000_PBA_34K	0x0022
673 #define	E1000_PBA_38K	0x0026
674 #define	E1000_PBA_40K	0x0028
675 #define	E1000_PBA_48K	0x0030    /* 48KB */
676 #define	E1000_PBA_64K	0x0040    /* 64KB */
677 
678 #define	E1000_PBS_16K	E1000_PBA_16K
679 #define	E1000_PBS_24K	E1000_PBA_24K
680 
681 #define	IFS_MAX		80
682 #define	IFS_MIN		40
683 #define	IFS_RATIO	4
684 #define	IFS_STEP	10
685 #define	MIN_NUM_XMITS	1000
686 
687 /* SW Semaphore Register */
688 #define	E1000_SWSM_SMBI		0x00000001 /* Driver Semaphore bit */
689 #define	E1000_SWSM_SWESMBI	0x00000002 /* FW Semaphore bit */
690 #define	E1000_SWSM_WMNG		0x00000004 /* Wake MNG Clock */
691 #define	E1000_SWSM_DRV_LOAD	0x00000008 /* Driver Loaded Bit */
692 
693 /* Interrupt Cause Read */
694 #define	E1000_ICR_TXDW		0x00000001 /* Transmit desc written back */
695 #define	E1000_ICR_TXQE		0x00000002 /* Transmit Queue empty */
696 #define	E1000_ICR_LSC		0x00000004 /* Link Status Change */
697 #define	E1000_ICR_RXSEQ		0x00000008 /* rx sequence error */
698 #define	E1000_ICR_RXDMT0	0x00000010 /* rx desc min. threshold (0) */
699 #define	E1000_ICR_RXO		0x00000040 /* rx overrun */
700 #define	E1000_ICR_RXT0		0x00000080 /* rx timer intr (ring 0) */
701 #define	E1000_ICR_MDAC		0x00000200 /* MDIO access complete */
702 #define	E1000_ICR_RXCFG		0x00000400 /* Rx /c/ ordered set */
703 #define	E1000_ICR_GPI_EN0	0x00000800 /* GP Int 0 */
704 #define	E1000_ICR_GPI_EN1	0x00001000 /* GP Int 1 */
705 #define	E1000_ICR_GPI_EN2	0x00002000 /* GP Int 2 */
706 #define	E1000_ICR_GPI_EN3	0x00004000 /* GP Int 3 */
707 #define	E1000_ICR_TXD_LOW	0x00008000
708 #define	E1000_ICR_SRPD		0x00010000
709 #define	E1000_ICR_ACK		0x00020000 /* Receive Ack frame */
710 #define	E1000_ICR_MNG		0x00040000 /* Manageability event */
711 #define	E1000_ICR_DOCK		0x00080000 /* Dock/Undock */
712 /* If this bit asserted, the driver should claim the interrupt */
713 #define	E1000_ICR_INT_ASSERTED	0x80000000
714 /* queue 0 Rx descriptor FIFO parity error */
715 #define	E1000_ICR_RXD_FIFO_PAR0	0x00100000
716 /* queue 0 Tx descriptor FIFO parity error */
717 #define	E1000_ICR_TXD_FIFO_PAR0	0x00200000
718 /* host arb read buffer parity error */
719 #define	E1000_ICR_HOST_ARB_PAR	0x00400000
720 #define	E1000_ICR_PB_PAR	0x00800000 /* packet buffer parity error */
721 /* queue 1 Rx descriptor FIFO parity error */
722 #define	E1000_ICR_RXD_FIFO_PAR1	0x01000000
723 /* queue 1 Tx descriptor FIFO parity error */
724 #define	E1000_ICR_TXD_FIFO_PAR1	0x02000000
725 #define	E1000_ICR_ALL_PARITY	0x03F00000 /* all parity error bits */
726 /* FW changed the status of DISSW bit in the FWSM */
727 #define	E1000_ICR_DSW		0x00000020
728 /* LAN connected device generates an interrupt */
729 #define	E1000_ICR_PHYINT	0x00001000
730 #define	E1000_ICR_EPRST		0x00100000 /* ME handware reset occurs */
731 #define	E1000_ICR_RXQ0		0x00100000 /* Rx Queue 0 Interrupt */
732 #define	E1000_ICR_RXQ1		0x00200000 /* Rx Queue 1 Interrupt */
733 #define	E1000_ICR_TXQ0		0x00400000 /* Tx Queue 0 Interrupt */
734 #define	E1000_ICR_TXQ1		0x00800000 /* Tx Queue 1 Interrupt */
735 #define	E1000_ICR_OTHER		0x01000000 /* Other Interrupts */
736 
737 /* Extended Interrupt Cause Read */
738 #define	E1000_EICR_RX_QUEUE0	0x00000001 /* Rx Queue 0 Interrupt */
739 #define	E1000_EICR_RX_QUEUE1	0x00000002 /* Rx Queue 1 Interrupt */
740 #define	E1000_EICR_RX_QUEUE2	0x00000004 /* Rx Queue 2 Interrupt */
741 #define	E1000_EICR_RX_QUEUE3	0x00000008 /* Rx Queue 3 Interrupt */
742 #define	E1000_EICR_TX_QUEUE0	0x00000100 /* Tx Queue 0 Interrupt */
743 #define	E1000_EICR_TX_QUEUE1	0x00000200 /* Tx Queue 1 Interrupt */
744 #define	E1000_EICR_TX_QUEUE2	0x00000400 /* Tx Queue 2 Interrupt */
745 #define	E1000_EICR_TX_QUEUE3	0x00000800 /* Tx Queue 3 Interrupt */
746 #define	E1000_EICR_TCP_TIMER	0x40000000 /* TCP Timer */
747 #define	E1000_EICR_OTHER	0x80000000 /* Interrupt Cause Active */
748 /* TCP Timer */
749 #define	E1000_TCPTIMER_KS	0x00000100 /* KickStart */
750 #define	E1000_TCPTIMER_COUNT_ENABLE	0x00000200 /* Count Enable */
751 #define	E1000_TCPTIMER_COUNT_FINISH	0x00000400 /* Count finish */
752 #define	E1000_TCPTIMER_LOOP	0x00000800 /* Loop */
753 
754 /*
755  * This defines the bits that are set in the Interrupt Mask
756  * Set/Read Register.  Each bit is documented below:
757  *   o RXDMT0 = Receive Descriptor Minimum Threshold hit (ring 0)
758  *   o RXSEQ  = Receive Sequence Error
759  */
760 #define	POLL_IMS_ENABLE_MASK ( \
761     E1000_IMS_RXDMT0 |    \
762     E1000_IMS_RXSEQ)
763 
764 /*
765  * This defines the bits that are set in the Interrupt Mask
766  * Set/Read Register.  Each bit is documented below:
767  *   o RXT0   = Receiver Timer Interrupt (ring 0)
768  *   o TXDW   = Transmit Descriptor Written Back
769  *   o RXDMT0 = Receive Descriptor Minimum Threshold hit (ring 0)
770  *   o RXSEQ  = Receive Sequence Error
771  *   o LSC    = Link Status Change
772  */
773 #define	IMS_ENABLE_MASK ( \
774     E1000_IMS_RXT0   |    \
775     E1000_IMS_TXDW   |    \
776     E1000_IMS_RXDMT0 |    \
777     E1000_IMS_RXSEQ  |    \
778     E1000_IMS_LSC)
779 
780 /* Interrupt Mask Set */
781 #define	E1000_IMS_TXDW		E1000_ICR_TXDW	/* Transmit desc written back */
782 #define	E1000_IMS_TXQE		E1000_ICR_TXQE	/* Transmit Queue empty */
783 #define	E1000_IMS_LSC		E1000_ICR_LSC	/* Link Status Change */
784 #define	E1000_IMS_RXSEQ		E1000_ICR_RXSEQ	/* rx sequence error */
785 #define	E1000_IMS_RXDMT0	E1000_ICR_RXDMT0 /* rx desc min. threshold */
786 #define	E1000_IMS_RXO		E1000_ICR_RXO	/* rx overrun */
787 #define	E1000_IMS_RXT0		E1000_ICR_RXT0	/* rx timer intr */
788 #define	E1000_IMS_MDAC		E1000_ICR_MDAC	/* MDIO access complete */
789 #define	E1000_IMS_RXCFG		E1000_ICR_RXCFG	/* Rx /c/ ordered set */
790 #define	E1000_IMS_GPI_EN0	E1000_ICR_GPI_EN0 /* GP Int 0 */
791 #define	E1000_IMS_GPI_EN1	E1000_ICR_GPI_EN1 /* GP Int 1 */
792 #define	E1000_IMS_GPI_EN2	E1000_ICR_GPI_EN2 /* GP Int 2 */
793 #define	E1000_IMS_GPI_EN3	E1000_ICR_GPI_EN3 /* GP Int 3 */
794 #define	E1000_IMS_TXD_LOW	E1000_ICR_TXD_LOW
795 #define	E1000_IMS_SRPD		E1000_ICR_SRPD
796 #define	E1000_IMS_ACK		E1000_ICR_ACK	/* Receive Ack frame */
797 #define	E1000_IMS_MNG		E1000_ICR_MNG	/* Manageability event */
798 #define	E1000_IMS_DOCK		E1000_ICR_DOCK	/* Dock/Undock */
799 /* queue 0 Rx descriptor FIFO parity error */
800 #define	E1000_IMS_RXD_FIFO_PAR0	E1000_ICR_RXD_FIFO_PAR0
801 /* queue 0 Tx descriptor FIFO parity error */
802 #define	E1000_IMS_TXD_FIFO_PAR0	E1000_ICR_TXD_FIFO_PAR0
803 /* host arb read buffer parity error */
804 #define	E1000_IMS_HOST_ARB_PAR	E1000_ICR_HOST_ARB_PAR
805 /* packet buffer parity error */
806 #define	E1000_IMS_PB_PAR	E1000_ICR_PB_PAR
807 /* queue 1 Rx descriptor FIFO parity error */
808 #define	E1000_IMS_RXD_FIFO_PAR1	E1000_ICR_RXD_FIFO_PAR1
809 /* queue 1 Tx descriptor FIFO parity error */
810 #define	E1000_IMS_TXD_FIFO_PAR1	E1000_ICR_TXD_FIFO_PAR1
811 #define	E1000_IMS_DSW		E1000_ICR_DSW
812 #define	E1000_IMS_PHYINT	E1000_ICR_PHYINT
813 #define	E1000_IMS_EPRST		E1000_ICR_EPRST
814 #define	E1000_IMS_RXQ0		E1000_ICR_RXQ0	/* Rx Queue 0 Interrupt */
815 #define	E1000_IMS_RXQ1		E1000_ICR_RXQ1	/* Rx Queue 1 Interrupt */
816 #define	E1000_IMS_TXQ0		E1000_ICR_TXQ0	/* Tx Queue 0 Interrupt */
817 #define	E1000_IMS_TXQ1		E1000_ICR_TXQ1	/* Tx Queue 1 Interrupt */
818 #define	E1000_IMS_OTHER		E1000_ICR_OTHER	/* Other Interrupts */
819 
820 /* Extended Interrupt Mask Set */
821 #define	E1000_EIMS_RX_QUEUE0	E1000_EICR_RX_QUEUE0 /* Rx Queue 0 Interrupt */
822 #define	E1000_EIMS_RX_QUEUE1	E1000_EICR_RX_QUEUE1 /* Rx Queue 1 Interrupt */
823 #define	E1000_EIMS_RX_QUEUE2	E1000_EICR_RX_QUEUE2 /* Rx Queue 2 Interrupt */
824 #define	E1000_EIMS_RX_QUEUE3	E1000_EICR_RX_QUEUE3 /* Rx Queue 3 Interrupt */
825 #define	E1000_EIMS_TX_QUEUE0	E1000_EICR_TX_QUEUE0 /* Tx Queue 0 Interrupt */
826 #define	E1000_EIMS_TX_QUEUE1	E1000_EICR_TX_QUEUE1 /* Tx Queue 1 Interrupt */
827 #define	E1000_EIMS_TX_QUEUE2	E1000_EICR_TX_QUEUE2 /* Tx Queue 2 Interrupt */
828 #define	E1000_EIMS_TX_QUEUE3	E1000_EICR_TX_QUEUE3 /* Tx Queue 3 Interrupt */
829 #define	E1000_EIMS_TCP_TIMER	E1000_EICR_TCP_TIMER /* TCP Timer */
830 #define	E1000_EIMS_OTHER	E1000_EICR_OTHER   /* Interrupt Cause Active */
831 
832 /* Interrupt Cause Set */
833 #define	E1000_ICS_TXDW		E1000_ICR_TXDW	/* Transmit desc written back */
834 #define	E1000_ICS_TXQE		E1000_ICR_TXQE	/* Transmit Queue empty */
835 #define	E1000_ICS_LSC		E1000_ICR_LSC	/* Link Status Change */
836 #define	E1000_ICS_RXSEQ		E1000_ICR_RXSEQ	/* rx sequence error */
837 #define	E1000_ICS_RXDMT0	E1000_ICR_RXDMT0 /* rx desc min. threshold */
838 #define	E1000_ICS_RXO		E1000_ICR_RXO	/* rx overrun */
839 #define	E1000_ICS_RXT0		E1000_ICR_RXT0	/* rx timer intr */
840 #define	E1000_ICS_MDAC		E1000_ICR_MDAC	/* MDIO access complete */
841 #define	E1000_ICS_RXCFG		E1000_ICR_RXCFG	/* Rx /c/ ordered set */
842 #define	E1000_ICS_GPI_EN0	E1000_ICR_GPI_EN0 /* GP Int 0 */
843 #define	E1000_ICS_GPI_EN1	E1000_ICR_GPI_EN1 /* GP Int 1 */
844 #define	E1000_ICS_GPI_EN2	E1000_ICR_GPI_EN2 /* GP Int 2 */
845 #define	E1000_ICS_GPI_EN3	E1000_ICR_GPI_EN3 /* GP Int 3 */
846 #define	E1000_ICS_TXD_LOW	E1000_ICR_TXD_LOW
847 #define	E1000_ICS_SRPD		E1000_ICR_SRPD
848 #define	E1000_ICS_ACK		E1000_ICR_ACK	/* Receive Ack frame */
849 #define	E1000_ICS_MNG		E1000_ICR_MNG	/* Manageability event */
850 #define	E1000_ICS_DOCK		E1000_ICR_DOCK	/* Dock/Undock */
851 /* queue 0 Rx descriptor FIFO parity error */
852 #define	E1000_ICS_RXD_FIFO_PAR0	E1000_ICR_RXD_FIFO_PAR0
853 /* queue 0 Tx descriptor FIFO parity error */
854 #define	E1000_ICS_TXD_FIFO_PAR0	E1000_ICR_TXD_FIFO_PAR0
855 /* host arb read buffer parity error */
856 #define	E1000_ICS_HOST_ARB_PAR	E1000_ICR_HOST_ARB_PAR
857 /* packet buffer parity error */
858 #define	E1000_ICS_PB_PAR	E1000_ICR_PB_PAR
859 /* queue 1 Rx descriptor FIFO parity error */
860 #define	E1000_ICS_RXD_FIFO_PAR1	E1000_ICR_RXD_FIFO_PAR1
861 /* queue 1 Tx descriptor FIFO parity error */
862 #define	E1000_ICS_TXD_FIFO_PAR1	E1000_ICR_TXD_FIFO_PAR1
863 #define	E1000_ICS_DSW		E1000_ICR_DSW
864 #define	E1000_ICS_PHYINT	E1000_ICR_PHYINT
865 #define	E1000_ICS_EPRST		E1000_ICR_EPRST
866 
867 /* Extended Interrupt Cause Set */
868 #define	E1000_EICS_RX_QUEUE0	E1000_EICR_RX_QUEUE0 /* Rx Queue 0 Interrupt */
869 #define	E1000_EICS_RX_QUEUE1	E1000_EICR_RX_QUEUE1 /* Rx Queue 1 Interrupt */
870 #define	E1000_EICS_RX_QUEUE2	E1000_EICR_RX_QUEUE2 /* Rx Queue 2 Interrupt */
871 #define	E1000_EICS_RX_QUEUE3	E1000_EICR_RX_QUEUE3 /* Rx Queue 3 Interrupt */
872 #define	E1000_EICS_TX_QUEUE0	E1000_EICR_TX_QUEUE0 /* Tx Queue 0 Interrupt */
873 #define	E1000_EICS_TX_QUEUE1	E1000_EICR_TX_QUEUE1 /* Tx Queue 1 Interrupt */
874 #define	E1000_EICS_TX_QUEUE2	E1000_EICR_TX_QUEUE2 /* Tx Queue 2 Interrupt */
875 #define	E1000_EICS_TX_QUEUE3	E1000_EICR_TX_QUEUE3 /* Tx Queue 3 Interrupt */
876 #define	E1000_EICS_TCP_TIMER	E1000_EICR_TCP_TIMER /* TCP Timer */
877 #define	E1000_EICS_OTHER	E1000_EICR_OTHER   /* Interrupt Cause Active */
878 
879 /* Transmit Descriptor Control */
880 #define	E1000_TXDCTL_PTHRESH	0x0000003F /* TXDCTL Prefetch Threshold */
881 #define	E1000_TXDCTL_HTHRESH	0x00003F00 /* TXDCTL Host Threshold */
882 #define	E1000_TXDCTL_WTHRESH	0x003F0000 /* TXDCTL Writeback Threshold */
883 #define	E1000_TXDCTL_GRAN	0x01000000 /* TXDCTL Granularity */
884 #define	E1000_TXDCTL_LWTHRESH	0xFE000000 /* TXDCTL Low Threshold */
885 #define	E1000_TXDCTL_FULL_TX_DESC_WB	0x01010000 /* GRAN=1, WTHRESH=1 */
886 #define	E1000_TXDCTL_MAX_TX_DESC_PREFETCH 0x0100001F /* GRAN=1, PTHRESH=31 */
887 /* Enable the counting of descriptors still to be processed. */
888 #define	E1000_TXDCTL_COUNT_DESC	0x00400000
889 
890 /* Flow Control Constants */
891 #define	FLOW_CONTROL_ADDRESS_LOW	0x00C28001
892 #define	FLOW_CONTROL_ADDRESS_HIGH	0x00000100
893 #define	FLOW_CONTROL_TYPE		0x8808
894 
895 /* 802.1q VLAN Packet Size */
896 #define	VLAN_TAG_SIZE			4    /* 802.3ac tag (not DMA'd) */
897 #define	E1000_VLAN_FILTER_TBL_SIZE	128  /* VLAN Filter Table (4096 bits) */
898 
899 /* Receive Address */
900 /*
901  * Number of high/low register pairs in the RAR. The RAR (Receive Address
902  * Registers) holds the directed and multicast addresses that we monitor.
903  * Technically, we have 16 spots.  However, we reserve one of these spots
904  * (RAR[15]) for our directed address used by controllers with
905  * manageability enabled, allowing us room for 15 multicast addresses.
906  */
907 #define	E1000_RAR_ENTRIES	15
908 #define	E1000_RAH_AV		0x80000000	/* Receive descriptor valid */
909 
910 /* Error Codes */
911 #define	E1000_SUCCESS		0
912 #define	E1000_ERR_NVM		1
913 #define	E1000_ERR_PHY		2
914 #define	E1000_ERR_CONFIG	3
915 #define	E1000_ERR_PARAM		4
916 #define	E1000_ERR_MAC_INIT	5
917 #define	E1000_ERR_PHY_TYPE	6
918 #define	E1000_ERR_RESET		9
919 #define	E1000_ERR_MASTER_REQUESTS_PENDING	10
920 #define	E1000_ERR_HOST_INTERFACE_COMMAND	11
921 #define	E1000_BLK_PHY_RESET	12
922 #define	E1000_ERR_SWFW_SYNC	13
923 #define	E1000_NOT_IMPLEMENTED	14
924 
925 /* Loop limit on how long we wait for auto-negotiation to complete */
926 #define	FIBER_LINK_UP_LIMIT	50
927 #define	COPPER_LINK_UP_LIMIT	10
928 #define	PHY_AUTO_NEG_LIMIT	45
929 #define	PHY_FORCE_LIMIT		20
930 /* Number of 100 microseconds we wait for PCI Express master disable */
931 #define	MASTER_DISABLE_TIMEOUT	800
932 /* Number of milliseconds we wait for PHY configuration done after MAC reset */
933 #define	PHY_CFG_TIMEOUT		100
934 /* Number of 2 milliseconds we wait for acquiring MDIO ownership. */
935 #define	MDIO_OWNERSHIP_TIMEOUT	10
936 /* Number of milliseconds for NVM auto read done after MAC reset. */
937 #define	AUTO_READ_DONE_TIMEOUT	10
938 
939 /* Flow Control */
940 #define	E1000_FCRTH_RTH		0x0000FFF8 /* Mask Bits[15:3] for RTH */
941 #define	E1000_FCRTH_XFCE	0x80000000 /* External Flow Control Enable */
942 #define	E1000_FCRTL_RTL		0x0000FFF8 /* Mask Bits[15:3] for RTL */
943 #define	E1000_FCRTL_XONE	0x80000000 /* Enable XON frame transmission */
944 
945 /* Transmit Configuration Word */
946 #define	E1000_TXCW_FD		0x00000020 /* TXCW full duplex */
947 #define	E1000_TXCW_HD		0x00000040 /* TXCW half duplex */
948 #define	E1000_TXCW_PAUSE	0x00000080 /* TXCW sym pause request */
949 #define	E1000_TXCW_ASM_DIR	0x00000100 /* TXCW astm pause direction */
950 #define	E1000_TXCW_PAUSE_MASK	0x00000180 /* TXCW pause request mask */
951 #define	E1000_TXCW_RF		0x00003000 /* TXCW remote fault */
952 #define	E1000_TXCW_NP		0x00008000 /* TXCW next page */
953 #define	E1000_TXCW_CW		0x0000ffff /* TxConfigWord mask */
954 #define	E1000_TXCW_TXC		0x40000000 /* Transmit Config control */
955 #define	E1000_TXCW_ANE		0x80000000 /* Auto-neg enable */
956 
957 /* Receive Configuration Word */
958 #define	E1000_RXCW_CW		0x0000ffff /* RxConfigWord mask */
959 #define	E1000_RXCW_NC		0x04000000 /* Receive config no carrier */
960 #define	E1000_RXCW_IV		0x08000000 /* Receive config invalid */
961 #define	E1000_RXCW_CC		0x10000000 /* Receive config change */
962 #define	E1000_RXCW_C		0x20000000 /* Receive config */
963 #define	E1000_RXCW_SYNCH	0x40000000 /* Receive config synch */
964 #define	E1000_RXCW_ANC		0x80000000 /* Auto-neg complete */
965 
966 /* PCI Express Control */
967 #define	E1000_GCR_RXD_NO_SNOOP		0x00000001
968 #define	E1000_GCR_RXDSCW_NO_SNOOP	0x00000002
969 #define	E1000_GCR_RXDSCR_NO_SNOOP	0x00000004
970 #define	E1000_GCR_TXD_NO_SNOOP		0x00000008
971 #define	E1000_GCR_TXDSCW_NO_SNOOP	0x00000010
972 #define	E1000_GCR_TXDSCR_NO_SNOOP	0x00000020
973 
974 #define	PCIE_NO_SNOOP_ALL (E1000_GCR_RXD_NO_SNOOP	| \
975 			E1000_GCR_RXDSCW_NO_SNOOP	| \
976 			E1000_GCR_RXDSCR_NO_SNOOP	| \
977 			E1000_GCR_TXD_NO_SNOOP		| \
978 			E1000_GCR_TXDSCW_NO_SNOOP	| \
979 			E1000_GCR_TXDSCR_NO_SNOOP)
980 
981 /* PHY Control Register */
982 #define	MII_CR_SPEED_SELECT_MSB	0x0040  /* bits 6,13: 10=1000, 01=100, 00=10 */
983 #define	MII_CR_COLL_TEST_ENABLE	0x0080  /* Collision test enable */
984 #define	MII_CR_FULL_DUPLEX	0x0100  /* FDX =1, half duplex =0 */
985 #define	MII_CR_RESTART_AUTO_NEG	0x0200  /* Restart auto negotiation */
986 #define	MII_CR_ISOLATE		0x0400  /* Isolate PHY from MII */
987 #define	MII_CR_POWER_DOWN	0x0800  /* Power down */
988 #define	MII_CR_AUTO_NEG_EN	0x1000  /* Auto Neg Enable */
989 #define	MII_CR_SPEED_SELECT_LSB	0x2000  /* bits 6,13: 10=1000, 01=100, 00=10 */
990 #define	MII_CR_LOOPBACK		0x4000  /* 0 = normal, 1 = loopback */
991 #define	MII_CR_RESET		0x8000  /* 0 = normal, 1 = PHY reset */
992 #define	MII_CR_SPEED_1000	0x0040
993 #define	MII_CR_SPEED_100	0x2000
994 #define	MII_CR_SPEED_10		0x0000
995 
996 /* PHY Status Register */
997 #define	MII_SR_EXTENDED_CAPS	0x0001 /* Extended register capabilities */
998 #define	MII_SR_JABBER_DETECT	0x0002 /* Jabber Detected */
999 #define	MII_SR_LINK_STATUS	0x0004 /* Link Status 1 = link */
1000 #define	MII_SR_AUTONEG_CAPS	0x0008 /* Auto Neg Capable */
1001 #define	MII_SR_REMOTE_FAULT	0x0010 /* Remote Fault Detect */
1002 #define	MII_SR_AUTONEG_COMPLETE	0x0020 /* Auto Neg Complete */
1003 #define	MII_SR_PREAMBLE_SUPPRESS 0x0040 /* Preamble may be suppressed */
1004 #define	MII_SR_EXTENDED_STATUS	0x0100 /* Ext. status info in Reg 0x0F */
1005 #define	MII_SR_100T2_HD_CAPS	0x0200 /* 100T2 Half Duplex Capable */
1006 #define	MII_SR_100T2_FD_CAPS	0x0400 /* 100T2 Full Duplex Capable */
1007 #define	MII_SR_10T_HD_CAPS	0x0800 /* 10T   Half Duplex Capable */
1008 #define	MII_SR_10T_FD_CAPS	0x1000 /* 10T   Full Duplex Capable */
1009 #define	MII_SR_100X_HD_CAPS	0x2000 /* 100X  Half Duplex Capable */
1010 #define	MII_SR_100X_FD_CAPS	0x4000 /* 100X  Full Duplex Capable */
1011 #define	MII_SR_100T4_CAPS	0x8000 /* 100T4 Capable */
1012 
1013 /* Autoneg Advertisement Register */
1014 #define	NWAY_AR_SELECTOR_FIELD	0x0001 /* indicates IEEE 802.3 CSMA/CD */
1015 #define	NWAY_AR_10T_HD_CAPS	0x0020 /* 10T   Half Duplex Capable */
1016 #define	NWAY_AR_10T_FD_CAPS	0x0040 /* 10T   Full Duplex Capable */
1017 #define	NWAY_AR_100TX_HD_CAPS	0x0080 /* 100TX Half Duplex Capable */
1018 #define	NWAY_AR_100TX_FD_CAPS	0x0100 /* 100TX Full Duplex Capable */
1019 #define	NWAY_AR_100T4_CAPS	0x0200 /* 100T4 Capable */
1020 #define	NWAY_AR_PAUSE		0x0400 /* Pause operation desired */
1021 #define	NWAY_AR_ASM_DIR		0x0800 /* Asymmetric Pause Direction bit */
1022 #define	NWAY_AR_REMOTE_FAULT	0x2000 /* Remote Fault detected */
1023 #define	NWAY_AR_NEXT_PAGE	0x8000 /* Next Page ability supported */
1024 
1025 /* Link Partner Ability Register (Base Page) */
1026 #define	NWAY_LPAR_SELECTOR_FIELD 0x0000 /* LP protocol selector field */
1027 #define	NWAY_LPAR_10T_HD_CAPS	0x0020 /* LP is 10T   Half Duplex Capable */
1028 #define	NWAY_LPAR_10T_FD_CAPS	0x0040 /* LP is 10T   Full Duplex Capable */
1029 #define	NWAY_LPAR_100TX_HD_CAPS	0x0080 /* LP is 100TX Half Duplex Capable */
1030 #define	NWAY_LPAR_100TX_FD_CAPS	0x0100 /* LP is 100TX Full Duplex Capable */
1031 #define	NWAY_LPAR_100T4_CAPS	0x0200 /* LP is 100T4 Capable */
1032 #define	NWAY_LPAR_PAUSE		0x0400 /* LP Pause operation desired */
1033 #define	NWAY_LPAR_ASM_DIR	0x0800 /* LP Asymmetric Pause Direction bit */
1034 #define	NWAY_LPAR_REMOTE_FAULT	0x2000 /* LP has detected Remote Fault */
1035 #define	NWAY_LPAR_ACKNOWLEDGE	0x4000 /* LP has rx'd link code word */
1036 #define	NWAY_LPAR_NEXT_PAGE	0x8000 /* Next Page ability supported */
1037 
1038 /* Autoneg Expansion Register */
1039 #define	NWAY_ER_LP_NWAY_CAPS	0x0001 /* LP has Auto Neg Capability */
1040 #define	NWAY_ER_PAGE_RXD	0x0002 /* LP is 10T   Half Duplex Capable */
1041 #define	NWAY_ER_NEXT_PAGE_CAPS	0x0004 /* LP is 10T   Full Duplex Capable */
1042 #define	NWAY_ER_LP_NEXT_PAGE_CAPS 0x0008 /* LP is 100TX Half Duplex Capable */
1043 #define	NWAY_ER_PAR_DETECT_FAULT  0x0010 /* LP is 100TX Full Duplex Capable */
1044 
1045 /* 1000BASE-T Control Register */
1046 #define	CR_1000T_ASYM_PAUSE	0x0080 /* Advertise asymmetric pause bit */
1047 #define	CR_1000T_HD_CAPS	0x0100 /* Advertise 1000T HD capability */
1048 #define	CR_1000T_FD_CAPS	0x0200 /* Advertise 1000T FD capability  */
1049 #define	CR_1000T_REPEATER_DTE	0x0400 /* 1=Repeater/switch device port */
1050 					/* 0=DTE device */
1051 #define	CR_1000T_MS_VALUE	0x0800 /* 1=Configure PHY as Master */
1052 					/* 0=Configure PHY as Slave */
1053 #define	CR_1000T_MS_ENABLE	0x1000 /* 1=Master/Slave manual config value */
1054 					/* 0=Automatic Master/Slave config */
1055 #define	CR_1000T_TEST_MODE_NORMAL 0x0000 /* Normal Operation */
1056 #define	CR_1000T_TEST_MODE_1	0x2000 /* Transmit Waveform test */
1057 #define	CR_1000T_TEST_MODE_2	0x4000 /* Master Transmit Jitter test */
1058 #define	CR_1000T_TEST_MODE_3	0x6000 /* Slave Transmit Jitter test */
1059 #define	CR_1000T_TEST_MODE_4	0x8000 /* Transmitter Distortion test */
1060 
1061 /* 1000BASE-T Status Register */
1062 #define	SR_1000T_IDLE_ERROR_CNT	0x00FF /* Num idle errors since last read */
1063 #define	SR_1000T_ASYM_PAUSE_DIR	0x0100 /* LP asymmetric pause direction bit */
1064 #define	SR_1000T_LP_HD_CAPS	0x0400 /* LP is 1000T HD capable */
1065 #define	SR_1000T_LP_FD_CAPS	0x0800 /* LP is 1000T FD capable */
1066 #define	SR_1000T_REMOTE_RX_STATUS 0x1000 /* Remote receiver OK */
1067 #define	SR_1000T_LOCAL_RX_STATUS 0x2000 /* Local receiver OK */
1068 #define	SR_1000T_MS_CONFIG_RES	0x4000 /* 1=Local Tx is Master, 0=Slave */
1069 #define	SR_1000T_MS_CONFIG_FAULT 0x8000 /* Master/Slave config fault */
1070 
1071 #define	SR_1000T_PHY_EXCESSIVE_IDLE_ERR_COUNT	5
1072 
1073 /* PHY 1000 MII Register/Bit Definitions */
1074 /* PHY Registers defined by IEEE */
1075 #define	PHY_CONTROL		0x00 /* Control Register */
1076 #define	PHY_STATUS		0x01 /* Status Regiser */
1077 #define	PHY_ID1			0x02 /* Phy Id Reg (word 1) */
1078 #define	PHY_ID2			0x03 /* Phy Id Reg (word 2) */
1079 #define	PHY_AUTONEG_ADV		0x04 /* Autoneg Advertisement */
1080 #define	PHY_LP_ABILITY		0x05 /* Link Partner Ability (Base Page) */
1081 #define	PHY_AUTONEG_EXP		0x06 /* Autoneg Expansion Reg */
1082 #define	PHY_NEXT_PAGE_TX	0x07 /* Next Page Tx */
1083 #define	PHY_LP_NEXT_PAGE	0x08 /* Link Partner Next Page */
1084 #define	PHY_1000T_CTRL		0x09 /* 1000Base-T Control Reg */
1085 #define	PHY_1000T_STATUS	0x0A /* 1000Base-T Status Reg */
1086 #define	PHY_EXT_STATUS		0x0F /* Extended Status Reg */
1087 
1088 /* NVM Control */
1089 #define	E1000_EECD_SK		0x00000001 /* NVM Clock */
1090 #define	E1000_EECD_CS		0x00000002 /* NVM Chip Select */
1091 #define	E1000_EECD_DI		0x00000004 /* NVM Data In */
1092 #define	E1000_EECD_DO		0x00000008 /* NVM Data Out */
1093 #define	E1000_EECD_FWE_MASK	0x00000030
1094 #define	E1000_EECD_FWE_DIS	0x00000010 /* Disable FLASH writes */
1095 #define	E1000_EECD_FWE_EN	0x00000020 /* Enable FLASH writes */
1096 #define	E1000_EECD_FWE_SHIFT	4
1097 #define	E1000_EECD_REQ		0x00000040 /* NVM Access Request */
1098 #define	E1000_EECD_GNT		0x00000080 /* NVM Access Grant */
1099 #define	E1000_EECD_PRES		0x00000100 /* NVM Present */
1100 #define	E1000_EECD_SIZE		0x00000200 /* NVM Size (0=64 word 1=256 word) */
1101 /* NVM Addressing bits based on type 0=small, 1=large */
1102 #define	E1000_EECD_ADDR_BITS	0x00000400
1103 #define	E1000_EECD_TYPE		0x00002000 /* NVM Type (1-SPI, 0-Microwire) */
1104 #ifndef E1000_NVM_GRANT_ATTEMPTS
1105 #define	E1000_NVM_GRANT_ATTEMPTS	1000 /* NVM # attempts to gain grant */
1106 #endif
1107 #define	E1000_EECD_AUTO_RD	0x00000200 /* NVM Auto Read done */
1108 #define	E1000_EECD_SIZE_EX_MASK	0x00007800 /* NVM Size */
1109 #define	E1000_EECD_SIZE_EX_SHIFT	11
1110 #define	E1000_EECD_NVADDS	0x00018000 /* NVM Address Size */
1111 #define	E1000_EECD_SELSHAD	0x00020000 /* Select Shadow RAM */
1112 #define	E1000_EECD_INITSRAM	0x00040000 /* Initialize Shadow RAM */
1113 #define	E1000_EECD_FLUPD	0x00080000 /* Update FLASH */
1114 #define	E1000_EECD_AUPDEN	0x00100000 /* Enable Autonomous FLASH update */
1115 #define	E1000_EECD_SHADV	0x00200000 /* Shadow RAM Data Valid */
1116 #define	E1000_EECD_SEC1VAL	0x00400000 /* Sector One Valid */
1117 #define	E1000_EECD_SECVAL_SHIFT		22
1118 
1119 #define	E1000_NVM_SWDPIN0	0x0001	/* SWDPIN 0 NVM Value */
1120 #define	E1000_NVM_LED_LOGIC	0x0020	/* Led Logic Word */
1121 /* Offset to data in NVM read/write registers */
1122 #define	E1000_NVM_RW_REG_DATA	16
1123 #define	E1000_NVM_RW_REG_DONE	2 /* Offset to READ/WRITE done bit */
1124 #define	E1000_NVM_RW_REG_START	1 /* Start operation */
1125 #define	E1000_NVM_RW_ADDR_SHIFT	2 /* Shift to the address bits */
1126 #define	E1000_NVM_POLL_WRITE	1 /* Flag for polling for write complete */
1127 #define	E1000_NVM_POLL_READ	0 /* Flag for polling for read complete */
1128 #define	E1000_FLASH_UPDATES	2000
1129 
1130 /* NVM Word Offsets */
1131 #define	NVM_COMPAT			0x0003
1132 #define	NVM_ID_LED_SETTINGS		0x0004
1133 #define	NVM_VERSION			0x0005
1134 /* For SERDES output amplitude adjustment. */
1135 #define	NVM_SERDES_AMPLITUDE		0x0006
1136 #define	NVM_PHY_CLASS_WORD		0x0007
1137 #define	NVM_INIT_CONTROL1_REG		0x000A
1138 #define	NVM_INIT_CONTROL2_REG		0x000F
1139 #define	NVM_SWDEF_PINS_CTRL_PORT_1	0x0010
1140 #define	NVM_INIT_CONTROL3_PORT_B	0x0014
1141 #define	NVM_INIT_3GIO_3			0x001A
1142 #define	NVM_SWDEF_PINS_CTRL_PORT_0	0x0020
1143 #define	NVM_INIT_CONTROL3_PORT_A	0x0024
1144 #define	NVM_CFG				0x0012
1145 #define	NVM_FLASH_VERSION		0x0032
1146 #define	NVM_ALT_MAC_ADDR_PTR		0x0037
1147 #define	NVM_CHECKSUM_REG		0x003F
1148 
1149 #define	E1000_NVM_CFG_DONE_PORT_0	0x40000 /* MNG config cycle done */
1150 #define	E1000_NVM_CFG_DONE_PORT_1	0x80000 /* ...for second port */
1151 
1152 /* Mask bits for fields in Word	0x0f of the NVM */
1153 #define	NVM_WORD0F_PAUSE_MASK		0x3000
1154 #define	NVM_WORD0F_PAUSE		0x1000
1155 #define	NVM_WORD0F_ASM_DIR		0x2000
1156 #define	NVM_WORD0F_ANE			0x0800
1157 #define	NVM_WORD0F_SWPDIO_EXT_MASK	0x00F0
1158 #define	NVM_WORD0F_LPLU			0x0001
1159 
1160 /* Mask bits for fields in Word	0x1a of the NVM */
1161 #define	NVM_WORD1A_ASPM_MASK		0x000C
1162 
1163 /* For checksumming, the sum of all words in the NVM should equal 0xBABA. */
1164 #define	NVM_SUM				0xBABA
1165 
1166 #define	NVM_MAC_ADDR_OFFSET		0
1167 #define	NVM_PBA_OFFSET_0		8
1168 #define	NVM_PBA_OFFSET_1		9
1169 #define	NVM_RESERVED_WORD		0xFFFF
1170 #define	NVM_PHY_CLASS_A			0x8000
1171 #define	NVM_SERDES_AMPLITUDE_MASK	0x000F
1172 #define	NVM_SIZE_MASK			0x1C00
1173 #define	NVM_SIZE_SHIFT			10
1174 #define	NVM_WORD_SIZE_BASE_SHIFT	6
1175 #define	NVM_SWDPIO_EXT_SHIFT		4
1176 
1177 /* NVM Commands - Microwire */
1178 #define	NVM_READ_OPCODE_MICROWIRE	0x6  /* NVM read opcode */
1179 #define	NVM_WRITE_OPCODE_MICROWIRE	0x5  /* NVM write opcode */
1180 #define	NVM_ERASE_OPCODE_MICROWIRE	0x7  /* NVM erase opcode */
1181 #define	NVM_EWEN_OPCODE_MICROWIRE	0x13 /* NVM erase/write enable */
1182 #define	NVM_EWDS_OPCODE_MICROWIRE	0x10 /* NVM erast/write disable */
1183 
1184 /* NVM Commands - SPI */
1185 #define	NVM_MAX_RETRY_SPI	5000 /* Max wait of 5ms, for RDY signal */
1186 #define	NVM_READ_OPCODE_SPI	0x03 /* NVM read opcode */
1187 #define	NVM_WRITE_OPCODE_SPI	0x02 /* NVM write opcode */
1188 #define	NVM_A8_OPCODE_SPI	0x08 /* opcode bit-3 = address bit-8 */
1189 #define	NVM_WREN_OPCODE_SPI	0x06 /* NVM set Write Enable latch */
1190 #define	NVM_WRDI_OPCODE_SPI	0x04 /* NVM reset Write Enable latch */
1191 #define	NVM_RDSR_OPCODE_SPI	0x05 /* NVM read Status register */
1192 #define	NVM_WRSR_OPCODE_SPI	0x01 /* NVM write Status register */
1193 
1194 /* SPI NVM Status Register */
1195 #define	NVM_STATUS_RDY_SPI	0x01
1196 #define	NVM_STATUS_WEN_SPI	0x02
1197 #define	NVM_STATUS_BP0_SPI	0x04
1198 #define	NVM_STATUS_BP1_SPI	0x08
1199 #define	NVM_STATUS_WPEN_SPI	0x80
1200 
1201 /* Word definitions for ID LED Settings */
1202 #define	ID_LED_RESERVED_0000	0x0000
1203 #define	ID_LED_RESERVED_FFFF	0xFFFF
1204 #define	ID_LED_DEFAULT		((ID_LED_OFF1_ON2  << 12) | \
1205 				(ID_LED_OFF1_OFF2 <<  8) | \
1206 				(ID_LED_DEF1_DEF2 <<  4) | \
1207 				(ID_LED_DEF1_DEF2))
1208 #define	ID_LED_DEF1_DEF2	0x1
1209 #define	ID_LED_DEF1_ON2		0x2
1210 #define	ID_LED_DEF1_OFF2	0x3
1211 #define	ID_LED_ON1_DEF2		0x4
1212 #define	ID_LED_ON1_ON2		0x5
1213 #define	ID_LED_ON1_OFF2		0x6
1214 #define	ID_LED_OFF1_DEF2	0x7
1215 #define	ID_LED_OFF1_ON2		0x8
1216 #define	ID_LED_OFF1_OFF2	0x9
1217 
1218 #define	IGP_ACTIVITY_LED_MASK	0xFFFFF0FF
1219 #define	IGP_ACTIVITY_LED_ENABLE	0x0300
1220 #define	IGP_LED3_MODE		0x07000000
1221 
1222 /* PCI/PCI-X/PCI-EX Config space */
1223 #define	PCIX_COMMAND_REGISTER		0xE6
1224 #define	PCIX_STATUS_REGISTER_LO		0xE8
1225 #define	PCIX_STATUS_REGISTER_HI		0xEA
1226 #define	PCI_HEADER_TYPE_REGISTER	0x0E
1227 #define	PCIE_LINK_STATUS		0x12
1228 
1229 #define	PCIX_COMMAND_MMRBC_MASK		0x000C
1230 #define	PCIX_COMMAND_MMRBC_SHIFT	0x2
1231 #define	PCIX_STATUS_HI_MMRBC_MASK	0x0060
1232 #define	PCIX_STATUS_HI_MMRBC_SHIFT	0x5
1233 #define	PCIX_STATUS_HI_MMRBC_4K		0x3
1234 #define	PCIX_STATUS_HI_MMRBC_2K		0x2
1235 #define	PCIX_STATUS_LO_FUNC_MASK	0x7
1236 #define	PCI_HEADER_TYPE_MULTIFUNC	0x80
1237 #define	PCIE_LINK_WIDTH_MASK		0x3F0
1238 #define	PCIE_LINK_WIDTH_SHIFT		4
1239 
1240 #ifndef ETH_ADDR_LEN
1241 #define	ETH_ADDR_LEN			6
1242 #endif
1243 
1244 #define	PHY_REVISION_MASK	0xFFFFFFF0
1245 #define	MAX_PHY_REG_ADDRESS	0x1F  /* 5 bit address bus (0-0x1F) */
1246 #define	MAX_PHY_MULTI_PAGE_REG	0xF
1247 
1248 /* Bit definitions for valid PHY IDs. */
1249 /*
1250  * I = Integrated
1251  * E = External
1252  */
1253 #define	M88E1000_E_PHY_ID	0x01410C50
1254 #define	M88E1000_I_PHY_ID	0x01410C30
1255 #define	M88E1011_I_PHY_ID	0x01410C20
1256 #define	IGP01E1000_I_PHY_ID	0x02A80380
1257 #define	M88E1011_I_REV_4	0x04
1258 #define	M88E1111_I_PHY_ID	0x01410CC0
1259 #define	GG82563_E_PHY_ID	0x01410CA0
1260 #define	IGP03E1000_E_PHY_ID	0x02A80390
1261 #define	IFE_E_PHY_ID		0x02A80330
1262 #define	IFE_PLUS_E_PHY_ID	0x02A80320
1263 #define	IFE_C_E_PHY_ID		0x02A80310
1264 #define	BME1000_E_PHY_ID	0x01410CB0
1265 #define	BME1000_E_PHY_ID_R2	0x01410CB1
1266 #define	M88_VENDOR		0x0141
1267 
1268 /* M88E1000 Specific Registers */
1269 #define	M88E1000_PHY_SPEC_CTRL		0x10 /* PHY Specific Control Register */
1270 #define	M88E1000_PHY_SPEC_STATUS	0x11 /* PHY Specific Status Register */
1271 #define	M88E1000_INT_ENABLE		0x12 /* Interrupt Enable Register */
1272 #define	M88E1000_INT_STATUS		0x13 /* Interrupt Status Register */
1273 #define	M88E1000_EXT_PHY_SPEC_CTRL	0x14 /* Extended PHY Specific Control */
1274 #define	M88E1000_RX_ERR_CNTR		0x15 /* Receive Error Counter */
1275 
1276 #define	M88E1000_PHY_EXT_CTRL		0x1A /* PHY extend control register */
1277 #define	M88E1000_PHY_PAGE_SELECT	0x1D /* Reg29 for page number setting */
1278 #define	M88E1000_PHY_GEN_CONTROL	0x1E /* Its meaning depends on reg 29 */
1279 #define	M88E1000_PHY_VCO_REG_BIT8	0x100 /* Bits 8 & 11 are adjusted for */
1280 #define	M88E1000_PHY_VCO_REG_BIT11	0x800    /* improved BER performance */
1281 
1282 /* M88E1000 PHY Specific Control Register */
1283 #define	M88E1000_PSCR_JABBER_DISABLE	0x0001 /* 1=Jabber Function disabled */
1284 #define	M88E1000_PSCR_POLARITY_REVERSAL	0x0002 /* 1=Polarity Reversal enabled */
1285 #define	M88E1000_PSCR_SQE_TEST		0x0004 /* 1=SQE Test enabled */
1286 /* 1=CLK125 low, 0=CLK125 toggling */
1287 #define	M88E1000_PSCR_CLK125_DISABLE	0x0010
1288 #define	M88E1000_PSCR_MDI_MANUAL_MODE	0x0000 /* MDI Crossover Mode bits 6:5 */
1289 						/* Manual MDI configuration */
1290 #define	M88E1000_PSCR_MDIX_MANUAL_MODE	0x0020 /* Manual MDIX configuration */
1291 /* 1000BASE-T: Auto crossover, 100BASE-TX/10BASE-T: MDI Mode */
1292 #define	M88E1000_PSCR_AUTO_X_1000T	0x0040
1293 /* Auto crossover enabled all speeds */
1294 #define	M88E1000_PSCR_AUTO_X_MODE	0x0060
1295 /*
1296  * 1=Enable Extended 10BASE-T distance (Lower 10BASE-T Rx Threshold
1297  * 0=Normal 10BASE-T Rx Threshold
1298  */
1299 #define	M88E1000_PSCR_EN_10BT_EXT_DIST	0x0080
1300 /* 1=5-bit interface in 100BASE-TX, 0=MII interface in 100BASE-TX */
1301 #define	M88E1000_PSCR_MII_5BIT_ENABLE	0x0100
1302 #define	M88E1000_PSCR_SCRAMBLER_DISABLE	0x0200 /* 1=Scrambler disable */
1303 #define	M88E1000_PSCR_FORCE_LINK_GOOD	0x0400 /* 1=Force link good */
1304 #define	M88E1000_PSCR_ASSERT_CRS_ON_TX	0x0800 /* 1=Assert CRS on Transmit */
1305 
1306 /* M88E1000 PHY Specific Status Register */
1307 #define	M88E1000_PSSR_JABBER		0x0001 /* 1=Jabber */
1308 #define	M88E1000_PSSR_REV_POLARITY	0x0002 /* 1=Polarity reversed */
1309 #define	M88E1000_PSSR_DOWNSHIFT		0x0020 /* 1=Downshifted */
1310 #define	M88E1000_PSSR_MDIX		0x0040 /* 1=MDIX; 0=MDI */
1311 /*
1312  * 0 = <50M
1313  * 1 = 50-80M
1314  * 2 = 80-110M
1315  * 3 = 110-140M
1316  * 4 = >140M
1317  */
1318 #define	M88E1000_PSSR_CABLE_LENGTH	0x0380
1319 #define	M88E1000_PSSR_LINK		0x0400 /* 1=Link up, 0=Link down */
1320 #define	M88E1000_PSSR_SPD_DPLX_RESOLVED	0x0800 /* 1=Speed & Duplex resolved */
1321 #define	M88E1000_PSSR_PAGE_RCVD		0x1000 /* 1=Page received */
1322 #define	M88E1000_PSSR_DPLX		0x2000 /* 1=Duplex 0=Half Duplex */
1323 #define	M88E1000_PSSR_SPEED		0xC000 /* Speed, bits 14:15 */
1324 #define	M88E1000_PSSR_10MBS		0x0000 /* 00=10Mbs */
1325 #define	M88E1000_PSSR_100MBS		0x4000 /* 01=100Mbs */
1326 #define	M88E1000_PSSR_1000MBS		0x8000 /* 10=1000Mbs */
1327 
1328 #define	M88E1000_PSSR_CABLE_LENGTH_SHIFT	7
1329 
1330 /* M88E1000 Extended PHY Specific Control Register */
1331 #define	M88E1000_EPSCR_FIBER_LOOPBACK	0x4000 /* 1=Fiber loopback */
1332 /*
1333  * 1 = Lost lock detect enabled.
1334  * Will assert lost lock and bring
1335  * link down if idle not seen
1336  * within 1ms in 1000BASE-T
1337  */
1338 #define	M88E1000_EPSCR_DOWN_NO_IDLE	0x8000
1339 /*
1340  * Number of times we will attempt to autonegotiate before downshifting if we
1341  * are the master
1342  */
1343 #define	M88E1000_EPSCR_MASTER_DOWNSHIFT_MASK	0x0C00
1344 #define	M88E1000_EPSCR_MASTER_DOWNSHIFT_1X	0x0000
1345 #define	M88E1000_EPSCR_MASTER_DOWNSHIFT_2X	0x0400
1346 #define	M88E1000_EPSCR_MASTER_DOWNSHIFT_3X	0x0800
1347 #define	M88E1000_EPSCR_MASTER_DOWNSHIFT_4X	0x0C00
1348 /*
1349  * Number of times we will attempt to autonegotiate before downshifting if we
1350  * are the slave
1351  */
1352 #define	M88E1000_EPSCR_SLAVE_DOWNSHIFT_MASK	0x0300
1353 #define	M88E1000_EPSCR_SLAVE_DOWNSHIFT_DIS	0x0000
1354 #define	M88E1000_EPSCR_SLAVE_DOWNSHIFT_1X	0x0100
1355 #define	M88E1000_EPSCR_SLAVE_DOWNSHIFT_2X	0x0200
1356 #define	M88E1000_EPSCR_SLAVE_DOWNSHIFT_3X	0x0300
1357 #define	M88E1000_EPSCR_TX_CLK_2_5	0x0060 /* 2.5 MHz TX_CLK */
1358 #define	M88E1000_EPSCR_TX_CLK_25	0x0070 /* 25  MHz TX_CLK */
1359 #define	M88E1000_EPSCR_TX_CLK_0		0x0000 /* NO  TX_CLK */
1360 
1361 /* M88EC018 Rev 2 specific DownShift settings */
1362 #define	M88EC018_EPSCR_DOWNSHIFT_COUNTER_MASK	0x0E00
1363 #define	M88EC018_EPSCR_DOWNSHIFT_COUNTER_1X	0x0000
1364 #define	M88EC018_EPSCR_DOWNSHIFT_COUNTER_2X	0x0200
1365 #define	M88EC018_EPSCR_DOWNSHIFT_COUNTER_3X	0x0400
1366 #define	M88EC018_EPSCR_DOWNSHIFT_COUNTER_4X	0x0600
1367 #define	M88EC018_EPSCR_DOWNSHIFT_COUNTER_5X	0x0800
1368 #define	M88EC018_EPSCR_DOWNSHIFT_COUNTER_6X	0x0A00
1369 #define	M88EC018_EPSCR_DOWNSHIFT_COUNTER_7X	0x0C00
1370 #define	M88EC018_EPSCR_DOWNSHIFT_COUNTER_8X	0x0E00
1371 
1372 /* BME1000 PHY Specific Control Register */
1373 #define	BME1000_PSCR_ENABLE_DOWNSHIFT	0x0800 /* 1 = enable downshift */
1374 
1375 /*
1376  * Bits...
1377  * 15-5: page
1378  * 4-0: register offset
1379  */
1380 #define	GG82563_PAGE_SHIFT	5
1381 #define	GG82563_REG(page, reg)	\
1382 	(((page) << GG82563_PAGE_SHIFT) | ((reg) & MAX_PHY_REG_ADDRESS))
1383 #define	GG82563_MIN_ALT_REG	30
1384 
1385 /* GG82563 Specific Registers */
1386 #define	GG82563_PHY_SPEC_CTRL		\
1387 	GG82563_REG(0, 16) /* PHY Specific Control */
1388 #define	GG82563_PHY_SPEC_STATUS		\
1389 	GG82563_REG(0, 17) /* PHY Specific Status */
1390 #define	GG82563_PHY_INT_ENABLE		\
1391 	GG82563_REG(0, 18) /* Interrupt Enable */
1392 #define	GG82563_PHY_SPEC_STATUS_2	\
1393 	GG82563_REG(0, 19) /* PHY Specific Status 2 */
1394 #define	GG82563_PHY_RX_ERR_CNTR		\
1395 	GG82563_REG(0, 21) /* Receive Error Counter */
1396 #define	GG82563_PHY_PAGE_SELECT		\
1397 	GG82563_REG(0, 22) /* Page Select */
1398 #define	GG82563_PHY_SPEC_CTRL_2		\
1399 	GG82563_REG(0, 26) /* PHY Specific Control 2 */
1400 #define	GG82563_PHY_PAGE_SELECT_ALT	\
1401 	GG82563_REG(0, 29) /* Alternate Page Select */
1402 #define	GG82563_PHY_TEST_CLK_CTRL	\
1403 	GG82563_REG(0, 30) /* Test Clock Control (use reg. 29 to select) */
1404 
1405 #define	GG82563_PHY_MAC_SPEC_CTRL	\
1406 	GG82563_REG(2, 21) /* MAC Specific Control Register */
1407 #define	GG82563_PHY_MAC_SPEC_CTRL_2	\
1408 	GG82563_REG(2, 26) /* MAC Specific Control 2 */
1409 
1410 #define	GG82563_PHY_DSP_DISTANCE	\
1411 	GG82563_REG(5, 26) /* DSP Distance */
1412 
1413 /* Page 193 - Port Control Registers */
1414 #define	GG82563_PHY_KMRN_MODE_CTRL	\
1415 	GG82563_REG(193, 16) /* Kumeran Mode Control */
1416 #define	GG82563_PHY_PORT_RESET		\
1417 	GG82563_REG(193, 17) /* Port Reset */
1418 #define	GG82563_PHY_REVISION_ID		\
1419 	GG82563_REG(193, 18) /* Revision ID */
1420 #define	GG82563_PHY_DEVICE_ID		\
1421 	GG82563_REG(193, 19) /* Device ID */
1422 #define	GG82563_PHY_PWR_MGMT_CTRL	\
1423 	GG82563_REG(193, 20) /* Power Management Control */
1424 #define	GG82563_PHY_RATE_ADAPT_CTRL	\
1425 	GG82563_REG(193, 25) /* Rate Adaptation Control */
1426 
1427 /* Page 194 - KMRN Registers */
1428 #define	GG82563_PHY_KMRN_FIFO_CTRL_STAT	\
1429 	GG82563_REG(194, 16) /* FIFO's Control/Status */
1430 #define	GG82563_PHY_KMRN_CTRL		\
1431 	GG82563_REG(194, 17) /* Control */
1432 #define	GG82563_PHY_INBAND_CTRL		\
1433 	GG82563_REG(194, 18) /* Inband Control */
1434 #define	GG82563_PHY_KMRN_DIAGNOSTIC	\
1435 	GG82563_REG(194, 19) /* Diagnostic */
1436 #define	GG82563_PHY_ACK_TIMEOUTS	\
1437 	GG82563_REG(194, 20) /* Acknowledge Timeouts */
1438 #define	GG82563_PHY_ADV_ABILITY		\
1439 	GG82563_REG(194, 21) /* Advertised Ability */
1440 #define	GG82563_PHY_LINK_PARTNER_ADV_ABILITY \
1441 	GG82563_REG(194, 23) /* Link Partner Advertised Ability */
1442 #define	GG82563_PHY_ADV_NEXT_PAGE	\
1443 	GG82563_REG(194, 24) /* Advertised Next Page */
1444 #define	GG82563_PHY_LINK_PARTNER_ADV_NEXT_PAGE \
1445 	GG82563_REG(194, 25) /* Link Partner Advertised Next page */
1446 #define	GG82563_PHY_KMRN_MISC		\
1447 	GG82563_REG(194, 26) /* Misc. */
1448 
1449 /* MDI Control */
1450 #define	E1000_MDIC_DATA_MASK	0x0000FFFF
1451 #define	E1000_MDIC_REG_MASK	0x001F0000
1452 #define	E1000_MDIC_REG_SHIFT	16
1453 #define	E1000_MDIC_PHY_MASK	0x03E00000
1454 #define	E1000_MDIC_PHY_SHIFT	21
1455 #define	E1000_MDIC_OP_WRITE	0x04000000
1456 #define	E1000_MDIC_OP_READ	0x08000000
1457 #define	E1000_MDIC_READY	0x10000000
1458 #define	E1000_MDIC_INT_EN	0x20000000
1459 #define	E1000_MDIC_ERROR	0x40000000
1460 
1461 /* SerDes Control */
1462 #define	E1000_GEN_CTL_READY	0x80000000
1463 #define	E1000_GEN_CTL_ADDRESS_SHIFT	8
1464 #define	E1000_GEN_POLL_TIMEOUT		640
1465 
1466 #ifndef UNREFERENCED_PARAMETER
1467 #define	UNREFERENCED_PARAMETER(_p)
1468 #endif
1469 
1470 #ifdef __cplusplus
1471 }
1472 #endif
1473 
1474 #endif	/* _IGB_DEFINES_H */
1475