lantiq: kernel 4.14: update patches and config
[openwrt/openwrt.git] / target / linux / lantiq / patches-4.14 / 0025-NET-MIPS-lantiq-adds-xrx200-net.patch
1 From fb0c9601f4414c39ff68e26b88681bef0bb04954 Mon Sep 17 00:00:00 2001
2 From: John Crispin <blogic@openwrt.org>
3 Date: Mon, 22 Oct 2012 12:22:23 +0200
4 Subject: [PATCH 25/36] NET: MIPS: lantiq: adds xrx200-net
5
6 ---
7 drivers/net/ethernet/Kconfig | 8 +-
8 drivers/net/ethernet/Makefile | 1 +
9 drivers/net/ethernet/lantiq_pce.h | 163 +++
10 drivers/net/ethernet/lantiq_xrx200.c | 1798 +++++++++++++++++++++++++++++++
11 drivers/net/ethernet/lantiq_xrx200_sw.h | 1328 +++++++++++++++++++++++
12 5 files changed, 3297 insertions(+), 1 deletion(-)
13 create mode 100644 drivers/net/ethernet/lantiq_pce.h
14 create mode 100644 drivers/net/ethernet/lantiq_xrx200.c
15 create mode 100644 drivers/net/ethernet/lantiq_xrx200_sw.h
16
17 --- a/drivers/net/ethernet/Kconfig
18 +++ b/drivers/net/ethernet/Kconfig
19 @@ -107,7 +107,13 @@ config LANTIQ_ETOP
20 tristate "Lantiq SoC ETOP driver"
21 depends on SOC_TYPE_XWAY
22 ---help---
23 - Support for the MII0 inside the Lantiq SoC
24 + Support for the MII0 inside the Lantiq ADSL SoC
25 +
26 +config LANTIQ_XRX200
27 + tristate "Lantiq SoC XRX200 driver"
28 + depends on SOC_TYPE_XWAY
29 + ---help---
30 + Support for the MII0 inside the Lantiq VDSL SoC
31
32 source "drivers/net/ethernet/marvell/Kconfig"
33 source "drivers/net/ethernet/mediatek/Kconfig"
34 --- a/drivers/net/ethernet/Makefile
35 +++ b/drivers/net/ethernet/Makefile
36 @@ -50,6 +50,7 @@ obj-$(CONFIG_NET_VENDOR_XSCALE) += xscal
37 obj-$(CONFIG_JME) += jme.o
38 obj-$(CONFIG_KORINA) += korina.o
39 obj-$(CONFIG_LANTIQ_ETOP) += lantiq_etop.o
40 +obj-$(CONFIG_LANTIQ_XRX200) += lantiq_xrx200.o
41 obj-$(CONFIG_NET_VENDOR_MARVELL) += marvell/
42 obj-$(CONFIG_NET_VENDOR_MEDIATEK) += mediatek/
43 obj-$(CONFIG_NET_VENDOR_MELLANOX) += mellanox/
44 --- /dev/null
45 +++ b/drivers/net/ethernet/lantiq_pce.h
46 @@ -0,0 +1,163 @@
47 +/*
48 + * This program is free software; you can redistribute it and/or modify it
49 + * under the terms of the GNU General Public License version 2 as published
50 + * by the Free Software Foundation.
51 + *
52 + * This program is distributed in the hope that it will be useful,
53 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
54 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
55 + * GNU General Public License for more details.
56 + *
57 + * You should have received a copy of the GNU General Public License
58 + * along with this program; if not, write to the Free Software
59 + * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307, USA.
60 + *
61 + * Copyright (C) 2010 Lantiq Deutschland GmbH
62 + * Copyright (C) 2012 John Crispin <blogic@openwrt.org>
63 + *
64 + * PCE microcode extracted from UGW5.2 switch api
65 + */
66 +
67 +/* Switch API Micro Code V0.3 */
68 +enum {
69 + OUT_MAC0 = 0,
70 + OUT_MAC1,
71 + OUT_MAC2,
72 + OUT_MAC3,
73 + OUT_MAC4,
74 + OUT_MAC5,
75 + OUT_ETHTYP,
76 + OUT_VTAG0,
77 + OUT_VTAG1,
78 + OUT_ITAG0,
79 + OUT_ITAG1, /*10 */
80 + OUT_ITAG2,
81 + OUT_ITAG3,
82 + OUT_IP0,
83 + OUT_IP1,
84 + OUT_IP2,
85 + OUT_IP3,
86 + OUT_SIP0,
87 + OUT_SIP1,
88 + OUT_SIP2,
89 + OUT_SIP3, /*20*/
90 + OUT_SIP4,
91 + OUT_SIP5,
92 + OUT_SIP6,
93 + OUT_SIP7,
94 + OUT_DIP0,
95 + OUT_DIP1,
96 + OUT_DIP2,
97 + OUT_DIP3,
98 + OUT_DIP4,
99 + OUT_DIP5, /*30*/
100 + OUT_DIP6,
101 + OUT_DIP7,
102 + OUT_SESID,
103 + OUT_PROT,
104 + OUT_APP0,
105 + OUT_APP1,
106 + OUT_IGMP0,
107 + OUT_IGMP1,
108 + OUT_IPOFF, /*39*/
109 + OUT_NONE = 63
110 +};
111 +
112 +/* parser's microcode length type */
113 +#define INSTR 0
114 +#define IPV6 1
115 +#define LENACCU 2
116 +
117 +/* parser's microcode flag type */
118 +enum {
119 + FLAG_ITAG = 0,
120 + FLAG_VLAN,
121 + FLAG_SNAP,
122 + FLAG_PPPOE,
123 + FLAG_IPV6,
124 + FLAG_IPV6FL,
125 + FLAG_IPV4,
126 + FLAG_IGMP,
127 + FLAG_TU,
128 + FLAG_HOP,
129 + FLAG_NN1, /*10 */
130 + FLAG_NN2,
131 + FLAG_END,
132 + FLAG_NO, /*13*/
133 +};
134 +
135 +/* Micro code version V2_11 (extension for parsing IPv6 in PPPoE) */
136 +#define MC_ENTRY(val, msk, ns, out, len, type, flags, ipv4_len) \
137 + { {val, msk, (ns<<10 | out<<4 | len>>1), (len&1)<<15 | type<<13 | flags<<9 | ipv4_len<<8 }}
138 +struct pce_microcode {
139 + unsigned short val[4];
140 +/* unsigned short val_2;
141 + unsigned short val_1;
142 + unsigned short val_0;*/
143 +} pce_microcode[] = {
144 + /* value mask ns fields L type flags ipv4_len */
145 + MC_ENTRY(0x88c3, 0xFFFF, 1, OUT_ITAG0, 4, INSTR, FLAG_ITAG, 0),
146 + MC_ENTRY(0x8100, 0xFFFF, 2, OUT_VTAG0, 2, INSTR, FLAG_VLAN, 0),
147 + MC_ENTRY(0x88A8, 0xFFFF, 1, OUT_VTAG0, 2, INSTR, FLAG_VLAN, 0),
148 + MC_ENTRY(0x8100, 0xFFFF, 1, OUT_VTAG0, 2, INSTR, FLAG_VLAN, 0),
149 + MC_ENTRY(0x8864, 0xFFFF, 17, OUT_ETHTYP, 1, INSTR, FLAG_NO, 0),
150 + MC_ENTRY(0x0800, 0xFFFF, 21, OUT_ETHTYP, 1, INSTR, FLAG_NO, 0),
151 + MC_ENTRY(0x86DD, 0xFFFF, 22, OUT_ETHTYP, 1, INSTR, FLAG_NO, 0),
152 + MC_ENTRY(0x8863, 0xFFFF, 16, OUT_ETHTYP, 1, INSTR, FLAG_NO, 0),
153 + MC_ENTRY(0x0000, 0xF800, 10, OUT_NONE, 0, INSTR, FLAG_NO, 0),
154 + MC_ENTRY(0x0000, 0x0000, 38, OUT_ETHTYP, 1, INSTR, FLAG_NO, 0),
155 + MC_ENTRY(0x0600, 0x0600, 38, OUT_ETHTYP, 1, INSTR, FLAG_NO, 0),
156 + MC_ENTRY(0x0000, 0x0000, 12, OUT_NONE, 1, INSTR, FLAG_NO, 0),
157 + MC_ENTRY(0xAAAA, 0xFFFF, 14, OUT_NONE, 1, INSTR, FLAG_NO, 0),
158 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_NO, 0),
159 + MC_ENTRY(0x0300, 0xFF00, 39, OUT_NONE, 0, INSTR, FLAG_SNAP, 0),
160 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_NO, 0),
161 + MC_ENTRY(0x0000, 0x0000, 39, OUT_DIP7, 3, INSTR, FLAG_NO, 0),
162 + MC_ENTRY(0x0000, 0x0000, 18, OUT_DIP7, 3, INSTR, FLAG_PPPOE, 0),
163 + MC_ENTRY(0x0021, 0xFFFF, 21, OUT_NONE, 1, INSTR, FLAG_NO, 0),
164 + MC_ENTRY(0x0057, 0xFFFF, 22, OUT_NONE, 1, INSTR, FLAG_NO, 0),
165 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_NO, 0),
166 + MC_ENTRY(0x4000, 0xF000, 24, OUT_IP0, 4, INSTR, FLAG_IPV4, 1),
167 + MC_ENTRY(0x6000, 0xF000, 27, OUT_IP0, 3, INSTR, FLAG_IPV6, 0),
168 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_NO, 0),
169 + MC_ENTRY(0x0000, 0x0000, 25, OUT_IP3, 2, INSTR, FLAG_NO, 0),
170 + MC_ENTRY(0x0000, 0x0000, 26, OUT_SIP0, 4, INSTR, FLAG_NO, 0),
171 + MC_ENTRY(0x0000, 0x0000, 38, OUT_NONE, 0, LENACCU, FLAG_NO, 0),
172 + MC_ENTRY(0x1100, 0xFF00, 37, OUT_PROT, 1, INSTR, FLAG_NO, 0),
173 + MC_ENTRY(0x0600, 0xFF00, 37, OUT_PROT, 1, INSTR, FLAG_NO, 0),
174 + MC_ENTRY(0x0000, 0xFF00, 33, OUT_IP3, 17, INSTR, FLAG_HOP, 0),
175 + MC_ENTRY(0x2B00, 0xFF00, 33, OUT_IP3, 17, INSTR, FLAG_NN1, 0),
176 + MC_ENTRY(0x3C00, 0xFF00, 33, OUT_IP3, 17, INSTR, FLAG_NN2, 0),
177 + MC_ENTRY(0x0000, 0x0000, 37, OUT_PROT, 1, INSTR, FLAG_NO, 0),
178 + MC_ENTRY(0x0000, 0xFF00, 33, OUT_NONE, 0, IPV6, FLAG_HOP, 0),
179 + MC_ENTRY(0x2B00, 0xFF00, 33, OUT_NONE, 0, IPV6, FLAG_NN1, 0),
180 + MC_ENTRY(0x3C00, 0xFF00, 33, OUT_NONE, 0, IPV6, FLAG_NN2, 0),
181 + MC_ENTRY(0x0000, 0x0000, 38, OUT_PROT, 1, IPV6, FLAG_NO, 0),
182 + MC_ENTRY(0x0000, 0x0000, 38, OUT_SIP0, 16, INSTR, FLAG_NO, 0),
183 + MC_ENTRY(0x0000, 0x0000, 39, OUT_APP0, 4, INSTR, FLAG_IGMP, 0),
184 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_END, 0),
185 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_END, 0),
186 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_END, 0),
187 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_END, 0),
188 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_END, 0),
189 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_END, 0),
190 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_END, 0),
191 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_END, 0),
192 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_END, 0),
193 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_END, 0),
194 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_END, 0),
195 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_END, 0),
196 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_END, 0),
197 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_END, 0),
198 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_END, 0),
199 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_END, 0),
200 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_END, 0),
201 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_END, 0),
202 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_END, 0),
203 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_END, 0),
204 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_END, 0),
205 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_END, 0),
206 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_END, 0),
207 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_END, 0),
208 + MC_ENTRY(0x0000, 0x0000, 39, OUT_NONE, 0, INSTR, FLAG_END, 0),
209 +};
210 --- /dev/null
211 +++ b/drivers/net/ethernet/lantiq_xrx200.c
212 @@ -0,0 +1,1887 @@
213 +/*
214 + * This program is free software; you can redistribute it and/or modify it
215 + * under the terms of the GNU General Public License version 2 as published
216 + * by the Free Software Foundation.
217 + *
218 + * This program is distributed in the hope that it will be useful,
219 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
220 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
221 + * GNU General Public License for more details.
222 + *
223 + * You should have received a copy of the GNU General Public License
224 + * along with this program; if not, write to the Free Software
225 + * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307, USA.
226 + *
227 + * Copyright (C) 2010 Lantiq Deutschland
228 + * Copyright (C) 2012 John Crispin <blogic@openwrt.org>
229 + */
230 +
231 +#include <linux/switch.h>
232 +#include <linux/etherdevice.h>
233 +#include <linux/module.h>
234 +#include <linux/platform_device.h>
235 +#include <linux/interrupt.h>
236 +#include <linux/clk.h>
237 +#include <linux/if_vlan.h>
238 +#include <asm/delay.h>
239 +
240 +#include <linux/of_net.h>
241 +#include <linux/of_mdio.h>
242 +#include <linux/of_gpio.h>
243 +#include <linux/of_platform.h>
244 +
245 +#include <xway_dma.h>
246 +#include <lantiq_soc.h>
247 +
248 +#include "lantiq_pce.h"
249 +#include "lantiq_xrx200_sw.h"
250 +
251 +#define SW_POLLING
252 +#define SW_ROUTING
253 +
254 +#ifdef SW_ROUTING
255 +#define XRX200_MAX_DEV 2
256 +#else
257 +#define XRX200_MAX_DEV 1
258 +#endif
259 +
260 +#define XRX200_MAX_VLAN 64
261 +#define XRX200_PCE_ACTVLAN_IDX 0x01
262 +#define XRX200_PCE_VLANMAP_IDX 0x02
263 +
264 +#define XRX200_MAX_PORT 7
265 +#define XRX200_MAX_DMA 8
266 +
267 +#define XRX200_HEADROOM 4
268 +
269 +#define XRX200_TX_TIMEOUT (10 * HZ)
270 +
271 +/* port type */
272 +#define XRX200_PORT_TYPE_PHY 1
273 +#define XRX200_PORT_TYPE_MAC 2
274 +
275 +/* DMA */
276 +#define XRX200_DMA_DATA_LEN 0x600
277 +#define XRX200_DMA_IRQ INT_NUM_IM2_IRL0
278 +#define XRX200_DMA_RX 0
279 +#define XRX200_DMA_TX 1
280 +#define XRX200_DMA_TX_2 3
281 +#define XRX200_DMA_IS_TX(x) (x%2)
282 +#define XRX200_DMA_IS_RX(x) (!XRX200_DMA_IS_TX(x))
283 +
284 +/* fetch / store dma */
285 +#define FDMA_PCTRL0 0x2A00
286 +#define FDMA_PCTRLx(x) (FDMA_PCTRL0 + (x * 0x18))
287 +#define SDMA_PCTRL0 0x2F00
288 +#define SDMA_PCTRLx(x) (SDMA_PCTRL0 + (x * 0x18))
289 +
290 +/* buffer management */
291 +#define BM_PCFG0 0x200
292 +#define BM_PCFGx(x) (BM_PCFG0 + (x * 8))
293 +
294 +/* MDIO */
295 +#define MDIO_GLOB 0x0000
296 +#define MDIO_CTRL 0x0020
297 +#define MDIO_READ 0x0024
298 +#define MDIO_WRITE 0x0028
299 +#define MDIO_PHY0 0x0054
300 +#define MDIO_PHY(x) (0x0054 - (x * sizeof(unsigned)))
301 +#define MDIO_CLK_CFG0 0x002C
302 +#define MDIO_CLK_CFG1 0x0030
303 +
304 +#define MDIO_GLOB_ENABLE 0x8000
305 +#define MDIO_BUSY BIT(12)
306 +#define MDIO_RD BIT(11)
307 +#define MDIO_WR BIT(10)
308 +#define MDIO_MASK 0x1f
309 +#define MDIO_ADDRSHIFT 5
310 +#define MDIO1_25MHZ 9
311 +
312 +#define MDIO_PHY_LINK_DOWN 0x4000
313 +#define MDIO_PHY_LINK_UP 0x2000
314 +
315 +#define MDIO_PHY_SPEED_M10 0x0000
316 +#define MDIO_PHY_SPEED_M100 0x0800
317 +#define MDIO_PHY_SPEED_G1 0x1000
318 +
319 +#define MDIO_PHY_FDUP_EN 0x0200
320 +#define MDIO_PHY_FDUP_DIS 0x0600
321 +
322 +#define MDIO_PHY_LINK_MASK 0x6000
323 +#define MDIO_PHY_SPEED_MASK 0x1800
324 +#define MDIO_PHY_FDUP_MASK 0x0600
325 +#define MDIO_PHY_ADDR_MASK 0x001f
326 +#define MDIO_UPDATE_MASK MDIO_PHY_ADDR_MASK | MDIO_PHY_LINK_MASK | \
327 + MDIO_PHY_SPEED_MASK | MDIO_PHY_FDUP_MASK
328 +
329 +/* MII */
330 +#define MII_CFG(p) (p * 8)
331 +
332 +#define MII_CFG_EN BIT(14)
333 +
334 +#define MII_CFG_MODE_MIIP 0x0
335 +#define MII_CFG_MODE_MIIM 0x1
336 +#define MII_CFG_MODE_RMIIP 0x2
337 +#define MII_CFG_MODE_RMIIM 0x3
338 +#define MII_CFG_MODE_RGMII 0x4
339 +#define MII_CFG_MODE_MASK 0xf
340 +
341 +#define MII_CFG_RATE_M2P5 0x00
342 +#define MII_CFG_RATE_M25 0x10
343 +#define MII_CFG_RATE_M125 0x20
344 +#define MII_CFG_RATE_M50 0x30
345 +#define MII_CFG_RATE_AUTO 0x40
346 +#define MII_CFG_RATE_MASK 0x70
347 +
348 +/* cpu port mac */
349 +#define PMAC_HD_CTL 0x0000
350 +#define PMAC_RX_IPG 0x0024
351 +#define PMAC_EWAN 0x002c
352 +
353 +#define PMAC_IPG_MASK 0xf
354 +#define PMAC_HD_CTL_AS 0x0008
355 +#define PMAC_HD_CTL_AC 0x0004
356 +#define PMAC_HD_CTL_RC 0x0010
357 +#define PMAC_HD_CTL_RXSH 0x0040
358 +#define PMAC_HD_CTL_AST 0x0080
359 +#define PMAC_HD_CTL_RST 0x0100
360 +
361 +/* PCE */
362 +#define PCE_TBL_KEY(x) (0x1100 + ((7 - x) * 4))
363 +#define PCE_TBL_MASK 0x1120
364 +#define PCE_TBL_VAL(x) (0x1124 + ((4 - x) * 4))
365 +#define PCE_TBL_ADDR 0x1138
366 +#define PCE_TBL_CTRL 0x113c
367 +#define PCE_PMAP1 0x114c
368 +#define PCE_PMAP2 0x1150
369 +#define PCE_PMAP3 0x1154
370 +#define PCE_GCTRL_REG(x) (0x1158 + (x * 4))
371 +#define PCE_PCTRL_REG(p, x) (0x1200 + (((p * 0xa) + x) * 4))
372 +
373 +#define PCE_TBL_BUSY BIT(15)
374 +#define PCE_TBL_CFG_ADDR_MASK 0x1f
375 +#define PCE_TBL_CFG_ADWR 0x20
376 +#define PCE_TBL_CFG_ADWR_MASK 0x60
377 +#define PCE_INGRESS BIT(11)
378 +
379 +/* MAC */
380 +#define MAC_FLEN_REG (0x2314)
381 +#define MAC_CTRL_REG(p, x) (0x240c + (((p * 0xc) + x) * 4))
382 +
383 +/* buffer management */
384 +#define BM_PCFG(p) (0x200 + (p * 8))
385 +
386 +/* special tag in TX path header */
387 +#define SPID_SHIFT 24
388 +#define DPID_SHIFT 16
389 +#define DPID_ENABLE 1
390 +#define SPID_CPU_PORT 2
391 +#define PORT_MAP_SEL BIT(15)
392 +#define PORT_MAP_EN BIT(14)
393 +#define PORT_MAP_SHIFT 1
394 +#define PORT_MAP_MASK 0x3f
395 +
396 +#define SPPID_MASK 0x7
397 +#define SPPID_SHIFT 4
398 +
399 +/* MII regs not yet in linux */
400 +#define MDIO_DEVAD_NONE (-1)
401 +#define ADVERTIZE_MPD (1 << 10)
402 +
403 +struct xrx200_port {
404 + u8 num;
405 + u8 phy_addr;
406 + u16 flags;
407 + phy_interface_t phy_if;
408 +
409 + int link;
410 + int gpio;
411 + enum of_gpio_flags gpio_flags;
412 +
413 + struct phy_device *phydev;
414 + struct device_node *phy_node;
415 +};
416 +
417 +struct xrx200_chan {
418 + int idx;
419 + int refcount;
420 + int tx_free;
421 +
422 + struct net_device dummy_dev;
423 + struct net_device *devs[XRX200_MAX_DEV];
424 +
425 + struct tasklet_struct tasklet;
426 + struct napi_struct napi;
427 + struct ltq_dma_channel dma;
428 + struct sk_buff *skb[LTQ_DESC_NUM];
429 +
430 + spinlock_t lock;
431 +};
432 +
433 +struct xrx200_hw {
434 + struct clk *clk;
435 + struct mii_bus *mii_bus;
436 +
437 + struct xrx200_chan chan[XRX200_MAX_DMA];
438 + u16 vlan_vid[XRX200_MAX_VLAN];
439 + u16 vlan_port_map[XRX200_MAX_VLAN];
440 +
441 + struct net_device *devs[XRX200_MAX_DEV];
442 + int num_devs;
443 +
444 + int port_map[XRX200_MAX_PORT];
445 + unsigned short wan_map;
446 +
447 + struct switch_dev swdev;
448 +};
449 +
450 +struct xrx200_priv {
451 + struct net_device_stats stats;
452 + int id;
453 +
454 + struct xrx200_port port[XRX200_MAX_PORT];
455 + int num_port;
456 + bool wan;
457 + bool sw;
458 + unsigned short port_map;
459 + unsigned char mac[6];
460 +
461 + struct xrx200_hw *hw;
462 +};
463 +
464 +static __iomem void *xrx200_switch_membase;
465 +static __iomem void *xrx200_mii_membase;
466 +static __iomem void *xrx200_mdio_membase;
467 +static __iomem void *xrx200_pmac_membase;
468 +
469 +#define ltq_switch_r32(x) ltq_r32(xrx200_switch_membase + (x))
470 +#define ltq_switch_w32(x, y) ltq_w32(x, xrx200_switch_membase + (y))
471 +#define ltq_switch_w32_mask(x, y, z) \
472 + ltq_w32_mask(x, y, xrx200_switch_membase + (z))
473 +
474 +#define ltq_mdio_r32(x) ltq_r32(xrx200_mdio_membase + (x))
475 +#define ltq_mdio_w32(x, y) ltq_w32(x, xrx200_mdio_membase + (y))
476 +#define ltq_mdio_w32_mask(x, y, z) \
477 + ltq_w32_mask(x, y, xrx200_mdio_membase + (z))
478 +
479 +#define ltq_mii_r32(x) ltq_r32(xrx200_mii_membase + (x))
480 +#define ltq_mii_w32(x, y) ltq_w32(x, xrx200_mii_membase + (y))
481 +#define ltq_mii_w32_mask(x, y, z) \
482 + ltq_w32_mask(x, y, xrx200_mii_membase + (z))
483 +
484 +#define ltq_pmac_r32(x) ltq_r32(xrx200_pmac_membase + (x))
485 +#define ltq_pmac_w32(x, y) ltq_w32(x, xrx200_pmac_membase + (y))
486 +#define ltq_pmac_w32_mask(x, y, z) \
487 + ltq_w32_mask(x, y, xrx200_pmac_membase + (z))
488 +
489 +#define XRX200_GLOBAL_REGATTR(reg) \
490 + .id = reg, \
491 + .type = SWITCH_TYPE_INT, \
492 + .set = xrx200_set_global_attr, \
493 + .get = xrx200_get_global_attr
494 +
495 +#define XRX200_PORT_REGATTR(reg) \
496 + .id = reg, \
497 + .type = SWITCH_TYPE_INT, \
498 + .set = xrx200_set_port_attr, \
499 + .get = xrx200_get_port_attr
500 +
501 +static int xrx200sw_read_x(int reg, int x)
502 +{
503 + int value, mask, addr;
504 +
505 + addr = xrx200sw_reg[reg].offset + (xrx200sw_reg[reg].mult * x);
506 + value = ltq_switch_r32(addr);
507 + mask = (1 << xrx200sw_reg[reg].size) - 1;
508 + value = (value >> xrx200sw_reg[reg].shift);
509 +
510 + return (value & mask);
511 +}
512 +
513 +static int xrx200sw_read(int reg)
514 +{
515 + return xrx200sw_read_x(reg, 0);
516 +}
517 +
518 +static void xrx200sw_write_x(int value, int reg, int x)
519 +{
520 + int mask, addr;
521 +
522 + addr = xrx200sw_reg[reg].offset + (xrx200sw_reg[reg].mult * x);
523 + mask = (1 << xrx200sw_reg[reg].size) - 1;
524 + mask = (mask << xrx200sw_reg[reg].shift);
525 + value = (value << xrx200sw_reg[reg].shift) & mask;
526 +
527 + ltq_switch_w32_mask(mask, value, addr);
528 +}
529 +
530 +static void xrx200sw_write(int value, int reg)
531 +{
532 + xrx200sw_write_x(value, reg, 0);
533 +}
534 +
535 +struct xrx200_pce_table_entry {
536 + int index; // PCE_TBL_ADDR.ADDR = pData->table_index
537 + int table; // PCE_TBL_CTRL.ADDR = pData->table
538 + unsigned short key[8];
539 + unsigned short val[5];
540 + unsigned short mask;
541 + unsigned short type;
542 + unsigned short valid;
543 + unsigned short gmap;
544 +};
545 +
546 +static int xrx200_pce_table_entry_read(struct xrx200_pce_table_entry *tbl)
547 +{
548 + // wait until hardware is ready
549 + while (xrx200sw_read(XRX200_PCE_TBL_CTRL_BAS)) {};
550 +
551 + // prepare the table access:
552 + // PCE_TBL_ADDR.ADDR = pData->table_index
553 + xrx200sw_write(tbl->index, XRX200_PCE_TBL_ADDR_ADDR);
554 + // PCE_TBL_CTRL.ADDR = pData->table
555 + xrx200sw_write(tbl->table, XRX200_PCE_TBL_CTRL_ADDR);
556 +
557 + //(address-based read)
558 + xrx200sw_write(0, XRX200_PCE_TBL_CTRL_OPMOD); // OPMOD_ADRD
559 +
560 + xrx200sw_write(1, XRX200_PCE_TBL_CTRL_BAS); // start access
561 +
562 + // wait until hardware is ready
563 + while (xrx200sw_read(XRX200_PCE_TBL_CTRL_BAS)) {};
564 +
565 + // read the keys
566 + tbl->key[7] = xrx200sw_read(XRX200_PCE_TBL_KEY_7);
567 + tbl->key[6] = xrx200sw_read(XRX200_PCE_TBL_KEY_6);
568 + tbl->key[5] = xrx200sw_read(XRX200_PCE_TBL_KEY_5);
569 + tbl->key[4] = xrx200sw_read(XRX200_PCE_TBL_KEY_4);
570 + tbl->key[3] = xrx200sw_read(XRX200_PCE_TBL_KEY_3);
571 + tbl->key[2] = xrx200sw_read(XRX200_PCE_TBL_KEY_2);
572 + tbl->key[1] = xrx200sw_read(XRX200_PCE_TBL_KEY_1);
573 + tbl->key[0] = xrx200sw_read(XRX200_PCE_TBL_KEY_0);
574 +
575 + // read the values
576 + tbl->val[4] = xrx200sw_read(XRX200_PCE_TBL_VAL_4);
577 + tbl->val[3] = xrx200sw_read(XRX200_PCE_TBL_VAL_3);
578 + tbl->val[2] = xrx200sw_read(XRX200_PCE_TBL_VAL_2);
579 + tbl->val[1] = xrx200sw_read(XRX200_PCE_TBL_VAL_1);
580 + tbl->val[0] = xrx200sw_read(XRX200_PCE_TBL_VAL_0);
581 +
582 + // read the mask
583 + tbl->mask = xrx200sw_read(XRX200_PCE_TBL_MASK_0);
584 + // read the type
585 + tbl->type = xrx200sw_read(XRX200_PCE_TBL_CTRL_TYPE);
586 + // read the valid flag
587 + tbl->valid = xrx200sw_read(XRX200_PCE_TBL_CTRL_VLD);
588 + // read the group map
589 + tbl->gmap = xrx200sw_read(XRX200_PCE_TBL_CTRL_GMAP);
590 +
591 + return 0;
592 +}
593 +
594 +static int xrx200_pce_table_entry_write(struct xrx200_pce_table_entry *tbl)
595 +{
596 + // wait until hardware is ready
597 + while (xrx200sw_read(XRX200_PCE_TBL_CTRL_BAS)) {};
598 +
599 + // prepare the table access:
600 + // PCE_TBL_ADDR.ADDR = pData->table_index
601 + xrx200sw_write(tbl->index, XRX200_PCE_TBL_ADDR_ADDR);
602 + // PCE_TBL_CTRL.ADDR = pData->table
603 + xrx200sw_write(tbl->table, XRX200_PCE_TBL_CTRL_ADDR);
604 +
605 + //(address-based write)
606 + xrx200sw_write(1, XRX200_PCE_TBL_CTRL_OPMOD); // OPMOD_ADRD
607 +
608 + // read the keys
609 + xrx200sw_write(tbl->key[7], XRX200_PCE_TBL_KEY_7);
610 + xrx200sw_write(tbl->key[6], XRX200_PCE_TBL_KEY_6);
611 + xrx200sw_write(tbl->key[5], XRX200_PCE_TBL_KEY_5);
612 + xrx200sw_write(tbl->key[4], XRX200_PCE_TBL_KEY_4);
613 + xrx200sw_write(tbl->key[3], XRX200_PCE_TBL_KEY_3);
614 + xrx200sw_write(tbl->key[2], XRX200_PCE_TBL_KEY_2);
615 + xrx200sw_write(tbl->key[1], XRX200_PCE_TBL_KEY_1);
616 + xrx200sw_write(tbl->key[0], XRX200_PCE_TBL_KEY_0);
617 +
618 + // read the values
619 + xrx200sw_write(tbl->val[4], XRX200_PCE_TBL_VAL_4);
620 + xrx200sw_write(tbl->val[3], XRX200_PCE_TBL_VAL_3);
621 + xrx200sw_write(tbl->val[2], XRX200_PCE_TBL_VAL_2);
622 + xrx200sw_write(tbl->val[1], XRX200_PCE_TBL_VAL_1);
623 + xrx200sw_write(tbl->val[0], XRX200_PCE_TBL_VAL_0);
624 +
625 + // read the mask
626 + xrx200sw_write(tbl->mask, XRX200_PCE_TBL_MASK_0);
627 + // read the type
628 + xrx200sw_write(tbl->type, XRX200_PCE_TBL_CTRL_TYPE);
629 + // read the valid flag
630 + xrx200sw_write(tbl->valid, XRX200_PCE_TBL_CTRL_VLD);
631 + // read the group map
632 + xrx200sw_write(tbl->gmap, XRX200_PCE_TBL_CTRL_GMAP);
633 +
634 + xrx200sw_write(1, XRX200_PCE_TBL_CTRL_BAS); // start access
635 +
636 + // wait until hardware is ready
637 + while (xrx200sw_read(XRX200_PCE_TBL_CTRL_BAS)) {};
638 +
639 + return 0;
640 +}
641 +
642 +static void xrx200sw_fixup_pvids(void)
643 +{
644 + int index, p, portmap, untagged;
645 + struct xrx200_pce_table_entry tem;
646 + struct xrx200_pce_table_entry tev;
647 +
648 + portmap = 0;
649 + for (p = 0; p < XRX200_MAX_PORT; p++)
650 + portmap |= BIT(p);
651 +
652 + tem.table = XRX200_PCE_VLANMAP_IDX;
653 + tev.table = XRX200_PCE_ACTVLAN_IDX;
654 +
655 + for (index = XRX200_MAX_VLAN; index-- > 0;)
656 + {
657 + tev.index = index;
658 + xrx200_pce_table_entry_read(&tev);
659 +
660 + if (tev.valid == 0)
661 + continue;
662 +
663 + tem.index = index;
664 + xrx200_pce_table_entry_read(&tem);
665 +
666 + if (tem.val[0] == 0)
667 + continue;
668 +
669 + untagged = portmap & (tem.val[1] ^ tem.val[2]);
670 +
671 + for (p = 0; p < XRX200_MAX_PORT; p++)
672 + if (untagged & BIT(p))
673 + {
674 + portmap &= ~BIT(p);
675 + xrx200sw_write_x(index, XRX200_PCE_DEFPVID_PVID, p);
676 + }
677 +
678 + for (p = 0; p < XRX200_MAX_PORT; p++)
679 + if (portmap & BIT(p))
680 + xrx200sw_write_x(index, XRX200_PCE_DEFPVID_PVID, p);
681 + }
682 +}
683 +
684 +// swconfig interface
685 +static void xrx200_hw_init(struct xrx200_hw *hw);
686 +
687 +// global
688 +static int xrx200sw_reset_switch(struct switch_dev *dev)
689 +{
690 + struct xrx200_hw *hw = container_of(dev, struct xrx200_hw, swdev);
691 +
692 + xrx200_hw_init(hw);
693 +
694 + return 0;
695 +}
696 +
697 +static int xrx200_set_vlan_mode_enable(struct switch_dev *dev, const struct switch_attr *attr, struct switch_val *val)
698 +{
699 + int p;
700 +
701 + if ((attr->max > 0) && (val->value.i > attr->max))
702 + return -EINVAL;
703 +
704 + for (p = 0; p < XRX200_MAX_PORT; p++) {
705 + xrx200sw_write_x(val->value.i, XRX200_PCE_VCTRL_VEMR, p);
706 + xrx200sw_write_x(val->value.i, XRX200_PCE_VCTRL_VIMR, p);
707 + }
708 +
709 + xrx200sw_write(val->value.i, XRX200_PCE_GCTRL_0_VLAN);
710 + return 0;
711 +}
712 +
713 +static int xrx200_get_vlan_mode_enable(struct switch_dev *dev, const struct switch_attr *attr, struct switch_val *val)
714 +{
715 + val->value.i = xrx200sw_read(attr->id);
716 + return 0;
717 +}
718 +
719 +static int xrx200_set_global_attr(struct switch_dev *dev, const struct switch_attr *attr, struct switch_val *val)
720 +{
721 + if ((attr->max > 0) && (val->value.i > attr->max))
722 + return -EINVAL;
723 +
724 + xrx200sw_write(val->value.i, attr->id);
725 + return 0;
726 +}
727 +
728 +static int xrx200_get_global_attr(struct switch_dev *dev, const struct switch_attr *attr, struct switch_val *val)
729 +{
730 + val->value.i = xrx200sw_read(attr->id);
731 + return 0;
732 +}
733 +
734 +// vlan
735 +static int xrx200sw_set_vlan_vid(struct switch_dev *dev, const struct switch_attr *attr,
736 + struct switch_val *val)
737 +{
738 + struct xrx200_hw *hw = container_of(dev, struct xrx200_hw, swdev);
739 + int i;
740 + struct xrx200_pce_table_entry tev;
741 + struct xrx200_pce_table_entry tem;
742 +
743 + tev.table = XRX200_PCE_ACTVLAN_IDX;
744 +
745 + for (i = 0; i < XRX200_MAX_VLAN; i++)
746 + {
747 + tev.index = i;
748 + xrx200_pce_table_entry_read(&tev);
749 + if (tev.key[0] == val->value.i && i != val->port_vlan)
750 + return -EINVAL;
751 + }
752 +
753 + hw->vlan_vid[val->port_vlan] = val->value.i;
754 +
755 + tev.index = val->port_vlan;
756 + xrx200_pce_table_entry_read(&tev);
757 + tev.key[0] = val->value.i;
758 + tev.valid = val->value.i > 0;
759 + xrx200_pce_table_entry_write(&tev);
760 +
761 + tem.table = XRX200_PCE_VLANMAP_IDX;
762 + tem.index = val->port_vlan;
763 + xrx200_pce_table_entry_read(&tem);
764 + tem.val[0] = val->value.i;
765 + xrx200_pce_table_entry_write(&tem);
766 +
767 + xrx200sw_fixup_pvids();
768 + return 0;
769 +}
770 +
771 +static int xrx200sw_get_vlan_vid(struct switch_dev *dev, const struct switch_attr *attr,
772 + struct switch_val *val)
773 +{
774 + struct xrx200_pce_table_entry te;
775 +
776 + te.table = XRX200_PCE_ACTVLAN_IDX;
777 + te.index = val->port_vlan;
778 + xrx200_pce_table_entry_read(&te);
779 + val->value.i = te.key[0];
780 +
781 + return 0;
782 +}
783 +
784 +static int xrx200sw_set_vlan_ports(struct switch_dev *dev, struct switch_val *val)
785 +{
786 + struct xrx200_hw *hw = container_of(dev, struct xrx200_hw, swdev);
787 + int i, portmap, tagmap, untagged;
788 + struct xrx200_pce_table_entry tem;
789 +
790 + portmap = 0;
791 + tagmap = 0;
792 + for (i = 0; i < val->len; i++)
793 + {
794 + struct switch_port *p = &val->value.ports[i];
795 +
796 + portmap |= (1 << p->id);
797 + if (p->flags & (1 << SWITCH_PORT_FLAG_TAGGED))
798 + tagmap |= (1 << p->id);
799 + }
800 +
801 + tem.table = XRX200_PCE_VLANMAP_IDX;
802 +
803 + untagged = portmap ^ tagmap;
804 + for (i = 0; i < XRX200_MAX_VLAN; i++)
805 + {
806 + tem.index = i;
807 + xrx200_pce_table_entry_read(&tem);
808 +
809 + if (tem.val[0] == 0)
810 + continue;
811 +
812 + if ((untagged & (tem.val[1] ^ tem.val[2])) && (val->port_vlan != i))
813 + return -EINVAL;
814 + }
815 +
816 + tem.index = val->port_vlan;
817 + xrx200_pce_table_entry_read(&tem);
818 +
819 + // auto-enable this vlan if not enabled already
820 + if (tem.val[0] == 0)
821 + {
822 + struct switch_val v;
823 + v.port_vlan = val->port_vlan;
824 + v.value.i = val->port_vlan;
825 + if(xrx200sw_set_vlan_vid(dev, NULL, &v))
826 + return -EINVAL;
827 +
828 + //read updated tem
829 + tem.index = val->port_vlan;
830 + xrx200_pce_table_entry_read(&tem);
831 + }
832 +
833 + tem.val[1] = portmap;
834 + tem.val[2] = tagmap;
835 + xrx200_pce_table_entry_write(&tem);
836 +
837 + ltq_switch_w32_mask(0, portmap, PCE_PMAP2);
838 + ltq_switch_w32_mask(0, portmap, PCE_PMAP3);
839 + hw->vlan_port_map[val->port_vlan] = portmap;
840 +
841 + xrx200sw_fixup_pvids();
842 +
843 + return 0;
844 +}
845 +
846 +static int xrx200sw_get_vlan_ports(struct switch_dev *dev, struct switch_val *val)
847 +{
848 + int i;
849 + unsigned short ports, tags;
850 + struct xrx200_pce_table_entry tem;
851 +
852 + tem.table = XRX200_PCE_VLANMAP_IDX;
853 + tem.index = val->port_vlan;
854 + xrx200_pce_table_entry_read(&tem);
855 +
856 + ports = tem.val[1];
857 + tags = tem.val[2];
858 +
859 + for (i = 0; i < XRX200_MAX_PORT; i++) {
860 + struct switch_port *p;
861 +
862 + if (!(ports & (1 << i)))
863 + continue;
864 +
865 + p = &val->value.ports[val->len++];
866 + p->id = i;
867 + if (tags & (1 << i))
868 + p->flags = (1 << SWITCH_PORT_FLAG_TAGGED);
869 + else
870 + p->flags = 0;
871 + }
872 +
873 + return 0;
874 +}
875 +
876 +static int xrx200sw_set_vlan_enable(struct switch_dev *dev, const struct switch_attr *attr,
877 + struct switch_val *val)
878 +{
879 + struct xrx200_pce_table_entry tev;
880 +
881 + tev.table = XRX200_PCE_ACTVLAN_IDX;
882 + tev.index = val->port_vlan;
883 + xrx200_pce_table_entry_read(&tev);
884 +
885 + if (tev.key[0] == 0)
886 + return -EINVAL;
887 +
888 + tev.valid = val->value.i;
889 + xrx200_pce_table_entry_write(&tev);
890 +
891 + xrx200sw_fixup_pvids();
892 + return 0;
893 +}
894 +
895 +static int xrx200sw_get_vlan_enable(struct switch_dev *dev, const struct switch_attr *attr,
896 + struct switch_val *val)
897 +{
898 + struct xrx200_pce_table_entry tev;
899 +
900 + tev.table = XRX200_PCE_ACTVLAN_IDX;
901 + tev.index = val->port_vlan;
902 + xrx200_pce_table_entry_read(&tev);
903 + val->value.i = tev.valid;
904 +
905 + return 0;
906 +}
907 +
908 +// port
909 +static int xrx200sw_get_port_pvid(struct switch_dev *dev, int port, int *val)
910 +{
911 + struct xrx200_pce_table_entry tev;
912 +
913 + if (port >= XRX200_MAX_PORT)
914 + return -EINVAL;
915 +
916 + tev.table = XRX200_PCE_ACTVLAN_IDX;
917 + tev.index = xrx200sw_read_x(XRX200_PCE_DEFPVID_PVID, port);
918 + xrx200_pce_table_entry_read(&tev);
919 +
920 + *val = tev.key[0];
921 + return 0;
922 +}
923 +
924 +static int xrx200sw_get_port_link(struct switch_dev *dev,
925 + int port,
926 + struct switch_port_link *link)
927 +{
928 + if (port >= XRX200_MAX_PORT)
929 + return -EINVAL;
930 +
931 + link->link = xrx200sw_read_x(XRX200_MAC_PSTAT_LSTAT, port);
932 + if (!link->link)
933 + return 0;
934 +
935 + link->duplex = xrx200sw_read_x(XRX200_MAC_PSTAT_FDUP, port);
936 +
937 + link->rx_flow = !!(xrx200sw_read_x(XRX200_MAC_CTRL_0_FCON, port) && 0x0010);
938 + link->tx_flow = !!(xrx200sw_read_x(XRX200_MAC_CTRL_0_FCON, port) && 0x0020);
939 + link->aneg = !(xrx200sw_read_x(XRX200_MAC_CTRL_0_FCON, port));
940 +
941 + link->speed = SWITCH_PORT_SPEED_10;
942 + if (xrx200sw_read_x(XRX200_MAC_PSTAT_MBIT, port))
943 + link->speed = SWITCH_PORT_SPEED_100;
944 + if (xrx200sw_read_x(XRX200_MAC_PSTAT_GBIT, port))
945 + link->speed = SWITCH_PORT_SPEED_1000;
946 +
947 + return 0;
948 +}
949 +
950 +static int xrx200_set_port_attr(struct switch_dev *dev, const struct switch_attr *attr, struct switch_val *val)
951 +{
952 + if (val->port_vlan >= XRX200_MAX_PORT)
953 + return -EINVAL;
954 +
955 + if ((attr->max > 0) && (val->value.i > attr->max))
956 + return -EINVAL;
957 +
958 + xrx200sw_write_x(val->value.i, attr->id, val->port_vlan);
959 + return 0;
960 +}
961 +
962 +static int xrx200_get_port_attr(struct switch_dev *dev, const struct switch_attr *attr, struct switch_val *val)
963 +{
964 + if (val->port_vlan >= XRX200_MAX_PORT)
965 + return -EINVAL;
966 +
967 + val->value.i = xrx200sw_read_x(attr->id, val->port_vlan);
968 + return 0;
969 +}
970 +
971 +// attributes
972 +static struct switch_attr xrx200sw_globals[] = {
973 + {
974 + .type = SWITCH_TYPE_INT,
975 + .set = xrx200_set_vlan_mode_enable,
976 + .get = xrx200_get_vlan_mode_enable,
977 + .name = "enable_vlan",
978 + .description = "Enable VLAN mode",
979 + .max = 1},
980 +};
981 +
982 +static struct switch_attr xrx200sw_port[] = {
983 + {
984 + XRX200_PORT_REGATTR(XRX200_PCE_VCTRL_UVR),
985 + .name = "uvr",
986 + .description = "Unknown VLAN Rule",
987 + .max = 1,
988 + },
989 + {
990 + XRX200_PORT_REGATTR(XRX200_PCE_VCTRL_VSR),
991 + .name = "vsr",
992 + .description = "VLAN Security Rule",
993 + .max = 1,
994 + },
995 + {
996 + XRX200_PORT_REGATTR(XRX200_PCE_VCTRL_VINR),
997 + .name = "vinr",
998 + .description = "VLAN Ingress Tag Rule",
999 + .max = 2,
1000 + },
1001 + {
1002 + XRX200_PORT_REGATTR(XRX200_PCE_PCTRL_0_TVM),
1003 + .name = "tvm",
1004 + .description = "Transparent VLAN Mode",
1005 + .max = 1,
1006 + },
1007 +};
1008 +
1009 +static struct switch_attr xrx200sw_vlan[] = {
1010 + {
1011 + .type = SWITCH_TYPE_INT,
1012 + .name = "vid",
1013 + .description = "VLAN ID (0-4094)",
1014 + .set = xrx200sw_set_vlan_vid,
1015 + .get = xrx200sw_get_vlan_vid,
1016 + .max = 4094,
1017 + },
1018 + {
1019 + .type = SWITCH_TYPE_INT,
1020 + .name = "enable",
1021 + .description = "Enable VLAN",
1022 + .set = xrx200sw_set_vlan_enable,
1023 + .get = xrx200sw_get_vlan_enable,
1024 + .max = 1,
1025 + },
1026 +};
1027 +
1028 +static const struct switch_dev_ops xrx200sw_ops = {
1029 + .attr_global = {
1030 + .attr = xrx200sw_globals,
1031 + .n_attr = ARRAY_SIZE(xrx200sw_globals),
1032 + },
1033 + .attr_port = {
1034 + .attr = xrx200sw_port,
1035 + .n_attr = ARRAY_SIZE(xrx200sw_port),
1036 + },
1037 + .attr_vlan = {
1038 + .attr = xrx200sw_vlan,
1039 + .n_attr = ARRAY_SIZE(xrx200sw_vlan),
1040 + },
1041 + .get_vlan_ports = xrx200sw_get_vlan_ports,
1042 + .set_vlan_ports = xrx200sw_set_vlan_ports,
1043 + .get_port_pvid = xrx200sw_get_port_pvid,
1044 + .reset_switch = xrx200sw_reset_switch,
1045 + .get_port_link = xrx200sw_get_port_link,
1046 +// .get_port_stats = xrx200sw_get_port_stats, //TODO
1047 +};
1048 +
1049 +static int xrx200sw_init(struct xrx200_hw *hw)
1050 +{
1051 + int netdev_num;
1052 +
1053 + for (netdev_num = 0; netdev_num < hw->num_devs; netdev_num++)
1054 + {
1055 + struct switch_dev *swdev;
1056 + struct net_device *dev = hw->devs[netdev_num];
1057 + struct xrx200_priv *priv = netdev_priv(dev);
1058 + if (!priv->sw)
1059 + continue;
1060 +
1061 + swdev = &hw->swdev;
1062 +
1063 + swdev->name = "Lantiq XRX200 Switch";
1064 + swdev->vlans = XRX200_MAX_VLAN;
1065 + swdev->ports = XRX200_MAX_PORT;
1066 + swdev->cpu_port = 6;
1067 + swdev->ops = &xrx200sw_ops;
1068 +
1069 + register_switch(swdev, dev);
1070 + return 0; // enough switches
1071 + }
1072 + return 0;
1073 +}
1074 +
1075 +static int xrx200_open(struct net_device *dev)
1076 +{
1077 + struct xrx200_priv *priv = netdev_priv(dev);
1078 + int i;
1079 +
1080 + for (i = 0; i < XRX200_MAX_DMA; i++) {
1081 + if (!priv->hw->chan[i].dma.irq)
1082 + continue;
1083 + spin_lock_bh(&priv->hw->chan[i].lock);
1084 + if (!priv->hw->chan[i].refcount) {
1085 + if (XRX200_DMA_IS_RX(i))
1086 + napi_enable(&priv->hw->chan[i].napi);
1087 + ltq_dma_open(&priv->hw->chan[i].dma);
1088 + }
1089 + priv->hw->chan[i].refcount++;
1090 + spin_unlock_bh(&priv->hw->chan[i].lock);
1091 + }
1092 + for (i = 0; i < priv->num_port; i++)
1093 + if (priv->port[i].phydev)
1094 + phy_start(priv->port[i].phydev);
1095 + netif_wake_queue(dev);
1096 +
1097 + return 0;
1098 +}
1099 +
1100 +static int xrx200_close(struct net_device *dev)
1101 +{
1102 + struct xrx200_priv *priv = netdev_priv(dev);
1103 + int i;
1104 +
1105 + netif_stop_queue(dev);
1106 +
1107 + for (i = 0; i < priv->num_port; i++)
1108 + if (priv->port[i].phydev)
1109 + phy_stop(priv->port[i].phydev);
1110 +
1111 + for (i = 0; i < XRX200_MAX_DMA; i++) {
1112 + if (!priv->hw->chan[i].dma.irq)
1113 + continue;
1114 +
1115 + priv->hw->chan[i].refcount--;
1116 + if (!priv->hw->chan[i].refcount) {
1117 + if (XRX200_DMA_IS_RX(i))
1118 + napi_disable(&priv->hw->chan[i].napi);
1119 + spin_lock_bh(&priv->hw->chan[i].lock);
1120 + ltq_dma_close(&priv->hw->chan[XRX200_DMA_RX].dma);
1121 + spin_unlock_bh(&priv->hw->chan[i].lock);
1122 + }
1123 + }
1124 +
1125 + return 0;
1126 +}
1127 +
1128 +static int xrx200_alloc_skb(struct xrx200_chan *ch)
1129 +{
1130 +#define DMA_PAD (NET_IP_ALIGN + NET_SKB_PAD)
1131 + ch->skb[ch->dma.desc] = dev_alloc_skb(XRX200_DMA_DATA_LEN + DMA_PAD);
1132 + if (!ch->skb[ch->dma.desc])
1133 + goto skip;
1134 +
1135 + skb_reserve(ch->skb[ch->dma.desc], NET_SKB_PAD);
1136 + ch->dma.desc_base[ch->dma.desc].addr = dma_map_single(NULL,
1137 + ch->skb[ch->dma.desc]->data, XRX200_DMA_DATA_LEN,
1138 + DMA_FROM_DEVICE);
1139 + ch->dma.desc_base[ch->dma.desc].addr =
1140 + CPHYSADDR(ch->skb[ch->dma.desc]->data);
1141 + skb_reserve(ch->skb[ch->dma.desc], NET_IP_ALIGN);
1142 +
1143 +skip:
1144 + ch->dma.desc_base[ch->dma.desc].ctl =
1145 + LTQ_DMA_OWN | LTQ_DMA_RX_OFFSET(NET_IP_ALIGN) |
1146 + XRX200_DMA_DATA_LEN;
1147 +
1148 + return 0;
1149 +}
1150 +
1151 +static void xrx200_hw_receive(struct xrx200_chan *ch, int id)
1152 +{
1153 + struct net_device *dev = ch->devs[id];
1154 + struct xrx200_priv *priv = netdev_priv(dev);
1155 + struct ltq_dma_desc *desc = &ch->dma.desc_base[ch->dma.desc];
1156 + struct sk_buff *skb = ch->skb[ch->dma.desc];
1157 + int len = (desc->ctl & LTQ_DMA_SIZE_MASK);
1158 + int ret;
1159 +
1160 + ret = xrx200_alloc_skb(ch);
1161 +
1162 + ch->dma.desc++;
1163 + ch->dma.desc %= LTQ_DESC_NUM;
1164 +
1165 + if (ret) {
1166 + netdev_err(dev,
1167 + "failed to allocate new rx buffer\n");
1168 + return;
1169 + }
1170 +
1171 + skb_put(skb, len);
1172 +#ifdef SW_ROUTING
1173 + skb_pull(skb, 8);
1174 +#endif
1175 + skb->dev = dev;
1176 + skb->protocol = eth_type_trans(skb, dev);
1177 + netif_receive_skb(skb);
1178 + priv->stats.rx_packets++;
1179 + priv->stats.rx_bytes+=len;
1180 +}
1181 +
1182 +static int xrx200_poll_rx(struct napi_struct *napi, int budget)
1183 +{
1184 + struct xrx200_chan *ch = container_of(napi,
1185 + struct xrx200_chan, napi);
1186 + struct xrx200_priv *priv = netdev_priv(ch->devs[0]);
1187 + int rx = 0;
1188 + int complete = 0;
1189 +
1190 + while ((rx < budget) && !complete) {
1191 + struct ltq_dma_desc *desc = &ch->dma.desc_base[ch->dma.desc];
1192 + if ((desc->ctl & (LTQ_DMA_OWN | LTQ_DMA_C)) == LTQ_DMA_C) {
1193 +#ifdef SW_ROUTING
1194 + struct sk_buff *skb = ch->skb[ch->dma.desc];
1195 + u8 *special_tag = (u8*)skb->data;
1196 + int port = (special_tag[7] >> SPPID_SHIFT) & SPPID_MASK;
1197 + xrx200_hw_receive(ch, priv->hw->port_map[port]);
1198 +#else
1199 + xrx200_hw_receive(ch, 0);
1200 +#endif
1201 + rx++;
1202 + } else {
1203 + complete = 1;
1204 + }
1205 + }
1206 +
1207 + if (complete || !rx) {
1208 + napi_complete(&ch->napi);
1209 + ltq_dma_enable_irq(&ch->dma);
1210 + }
1211 +
1212 + return rx;
1213 +}
1214 +
1215 +static void xrx200_tx_housekeeping(unsigned long ptr)
1216 +{
1217 + struct xrx200_chan *ch = (struct xrx200_chan *) ptr;
1218 + int pkts = 0;
1219 + int i;
1220 +
1221 + spin_lock_bh(&ch->lock);
1222 + ltq_dma_ack_irq(&ch->dma);
1223 + while ((ch->dma.desc_base[ch->tx_free].ctl & (LTQ_DMA_OWN | LTQ_DMA_C)) == LTQ_DMA_C) {
1224 + struct sk_buff *skb = ch->skb[ch->tx_free];
1225 +
1226 + pkts++;
1227 + ch->skb[ch->tx_free] = NULL;
1228 + dev_kfree_skb(skb);
1229 + memset(&ch->dma.desc_base[ch->tx_free], 0,
1230 + sizeof(struct ltq_dma_desc));
1231 + ch->tx_free++;
1232 + ch->tx_free %= LTQ_DESC_NUM;
1233 + }
1234 + ltq_dma_enable_irq(&ch->dma);
1235 + spin_unlock_bh(&ch->lock);
1236 +
1237 + if (!pkts)
1238 + return;
1239 +
1240 + for (i = 0; i < XRX200_MAX_DEV && ch->devs[i]; i++)
1241 + netif_wake_queue(ch->devs[i]);
1242 +}
1243 +
1244 +static struct net_device_stats *xrx200_get_stats (struct net_device *dev)
1245 +{
1246 + struct xrx200_priv *priv = netdev_priv(dev);
1247 +
1248 + return &priv->stats;
1249 +}
1250 +
1251 +static void xrx200_tx_timeout(struct net_device *dev)
1252 +{
1253 + struct xrx200_priv *priv = netdev_priv(dev);
1254 +
1255 + printk(KERN_ERR "%s: transmit timed out, disable the dma channel irq\n", dev->name);
1256 +
1257 + priv->stats.tx_errors++;
1258 + netif_wake_queue(dev);
1259 +}
1260 +
1261 +static int xrx200_start_xmit(struct sk_buff *skb, struct net_device *dev)
1262 +{
1263 + struct xrx200_priv *priv = netdev_priv(dev);
1264 + struct xrx200_chan *ch;
1265 + struct ltq_dma_desc *desc;
1266 + u32 byte_offset;
1267 + int ret = NETDEV_TX_OK;
1268 + int len;
1269 +#ifdef SW_ROUTING
1270 + u32 special_tag = (SPID_CPU_PORT << SPID_SHIFT) | DPID_ENABLE;
1271 +#endif
1272 + if(priv->id)
1273 + ch = &priv->hw->chan[XRX200_DMA_TX_2];
1274 + else
1275 + ch = &priv->hw->chan[XRX200_DMA_TX];
1276 +
1277 + desc = &ch->dma.desc_base[ch->dma.desc];
1278 +
1279 + skb->dev = dev;
1280 + len = skb->len < ETH_ZLEN ? ETH_ZLEN : skb->len;
1281 +
1282 +#ifdef SW_ROUTING
1283 + if (is_multicast_ether_addr(eth_hdr(skb)->h_dest)) {
1284 + u16 port_map = priv->port_map;
1285 +
1286 + if (priv->sw && skb->protocol == htons(ETH_P_8021Q)) {
1287 + u16 vid;
1288 + int i;
1289 +
1290 + port_map = 0;
1291 + if (!__vlan_get_tag(skb, &vid)) {
1292 + for (i = 0; i < XRX200_MAX_VLAN; i++) {
1293 + if (priv->hw->vlan_vid[i] != vid)
1294 + continue;
1295 + port_map = priv->hw->vlan_port_map[i];
1296 + break;
1297 + }
1298 + }
1299 + }
1300 +
1301 + special_tag |= (port_map << PORT_MAP_SHIFT) |
1302 + PORT_MAP_SEL | PORT_MAP_EN;
1303 + }
1304 + if(priv->wan)
1305 + special_tag |= (1 << DPID_SHIFT);
1306 + if(skb_headroom(skb) < 4) {
1307 + struct sk_buff *tmp = skb_realloc_headroom(skb, 4);
1308 + dev_kfree_skb_any(skb);
1309 + skb = tmp;
1310 + }
1311 + skb_push(skb, 4);
1312 + memcpy(skb->data, &special_tag, sizeof(u32));
1313 + len += 4;
1314 +#endif
1315 +
1316 + /* dma needs to start on a 16 byte aligned address */
1317 + byte_offset = CPHYSADDR(skb->data) % 16;
1318 +
1319 + spin_lock_bh(&ch->lock);
1320 + if ((desc->ctl & (LTQ_DMA_OWN | LTQ_DMA_C)) || ch->skb[ch->dma.desc]) {
1321 + netdev_err(dev, "tx ring full\n");
1322 + netif_stop_queue(dev);
1323 + ret = NETDEV_TX_BUSY;
1324 + goto out;
1325 + }
1326 +
1327 + ch->skb[ch->dma.desc] = skb;
1328 +
1329 + netif_trans_update(dev);
1330 +
1331 + desc->addr = ((unsigned int) dma_map_single(NULL, skb->data, len,
1332 + DMA_TO_DEVICE)) - byte_offset;
1333 + wmb();
1334 + desc->ctl = LTQ_DMA_OWN | LTQ_DMA_SOP | LTQ_DMA_EOP |
1335 + LTQ_DMA_TX_OFFSET(byte_offset) | (len & LTQ_DMA_SIZE_MASK);
1336 + ch->dma.desc++;
1337 + ch->dma.desc %= LTQ_DESC_NUM;
1338 + if (ch->dma.desc == ch->tx_free)
1339 + netif_stop_queue(dev);
1340 +
1341 +
1342 + priv->stats.tx_packets++;
1343 + priv->stats.tx_bytes+=len;
1344 +
1345 +out:
1346 + spin_unlock_bh(&ch->lock);
1347 +
1348 + return ret;
1349 +}
1350 +
1351 +static irqreturn_t xrx200_dma_irq(int irq, void *priv)
1352 +{
1353 + struct xrx200_hw *hw = priv;
1354 + int chnr = irq - XRX200_DMA_IRQ;
1355 + struct xrx200_chan *ch = &hw->chan[chnr];
1356 +
1357 + ltq_dma_disable_irq(&ch->dma);
1358 + ltq_dma_ack_irq(&ch->dma);
1359 +
1360 + if (chnr % 2)
1361 + tasklet_schedule(&ch->tasklet);
1362 + else
1363 + napi_schedule(&ch->napi);
1364 +
1365 + return IRQ_HANDLED;
1366 +}
1367 +
1368 +static int xrx200_dma_init(struct xrx200_hw *hw)
1369 +{
1370 + int i, err = 0;
1371 +
1372 + ltq_dma_init_port(DMA_PORT_ETOP);
1373 +
1374 + for (i = 0; i < 8 && !err; i++) {
1375 + int irq = XRX200_DMA_IRQ + i;
1376 + struct xrx200_chan *ch = &hw->chan[i];
1377 +
1378 + spin_lock_init(&ch->lock);
1379 +
1380 + ch->idx = ch->dma.nr = i;
1381 +
1382 + if (i == XRX200_DMA_TX) {
1383 + ltq_dma_alloc_tx(&ch->dma);
1384 + err = request_irq(irq, xrx200_dma_irq, 0, "vrx200_tx", hw);
1385 + } else if (i == XRX200_DMA_TX_2) {
1386 + ltq_dma_alloc_tx(&ch->dma);
1387 + err = request_irq(irq, xrx200_dma_irq, 0, "vrx200_tx_2", hw);
1388 + } else if (i == XRX200_DMA_RX) {
1389 + ltq_dma_alloc_rx(&ch->dma);
1390 + for (ch->dma.desc = 0; ch->dma.desc < LTQ_DESC_NUM;
1391 + ch->dma.desc++)
1392 + if (xrx200_alloc_skb(ch))
1393 + err = -ENOMEM;
1394 + ch->dma.desc = 0;
1395 + err = request_irq(irq, xrx200_dma_irq, 0, "vrx200_rx", hw);
1396 + } else
1397 + continue;
1398 +
1399 + if (!err)
1400 + ch->dma.irq = irq;
1401 + else
1402 + pr_err("net-xrx200: failed to request irq %d\n", irq);
1403 + }
1404 +
1405 + return err;
1406 +}
1407 +
1408 +#ifdef SW_POLLING
1409 +static void xrx200_gmac_update(struct xrx200_port *port)
1410 +{
1411 + u16 phyaddr = port->phydev->mdio.addr & MDIO_PHY_ADDR_MASK;
1412 + u16 miimode = ltq_mii_r32(MII_CFG(port->num)) & MII_CFG_MODE_MASK;
1413 + u16 miirate = 0;
1414 +
1415 + switch (port->phydev->speed) {
1416 + case SPEED_1000:
1417 + phyaddr |= MDIO_PHY_SPEED_G1;
1418 + miirate = MII_CFG_RATE_M125;
1419 + break;
1420 +
1421 + case SPEED_100:
1422 + phyaddr |= MDIO_PHY_SPEED_M100;
1423 + switch (miimode) {
1424 + case MII_CFG_MODE_RMIIM:
1425 + case MII_CFG_MODE_RMIIP:
1426 + miirate = MII_CFG_RATE_M50;
1427 + break;
1428 + default:
1429 + miirate = MII_CFG_RATE_M25;
1430 + break;
1431 + }
1432 + break;
1433 +
1434 + default:
1435 + phyaddr |= MDIO_PHY_SPEED_M10;
1436 + miirate = MII_CFG_RATE_M2P5;
1437 + break;
1438 + }
1439 +
1440 + if (port->phydev->link)
1441 + phyaddr |= MDIO_PHY_LINK_UP;
1442 + else
1443 + phyaddr |= MDIO_PHY_LINK_DOWN;
1444 +
1445 + if (port->phydev->duplex == DUPLEX_FULL)
1446 + phyaddr |= MDIO_PHY_FDUP_EN;
1447 + else
1448 + phyaddr |= MDIO_PHY_FDUP_DIS;
1449 +
1450 + ltq_mdio_w32_mask(MDIO_UPDATE_MASK, phyaddr, MDIO_PHY(port->num));
1451 + ltq_mii_w32_mask(MII_CFG_RATE_MASK, miirate, MII_CFG(port->num));
1452 + udelay(1);
1453 +}
1454 +#else
1455 +static void xrx200_gmac_update(struct xrx200_port *port)
1456 +{
1457 +
1458 +}
1459 +#endif
1460 +
1461 +static void xrx200_mdio_link(struct net_device *dev)
1462 +{
1463 + struct xrx200_priv *priv = netdev_priv(dev);
1464 + int i;
1465 +
1466 + for (i = 0; i < priv->num_port; i++) {
1467 + if (!priv->port[i].phydev)
1468 + continue;
1469 +
1470 + if (priv->port[i].link != priv->port[i].phydev->link) {
1471 + xrx200_gmac_update(&priv->port[i]);
1472 + priv->port[i].link = priv->port[i].phydev->link;
1473 + netdev_info(dev, "port %d %s link\n",
1474 + priv->port[i].num,
1475 + (priv->port[i].link)?("got"):("lost"));
1476 + }
1477 + }
1478 +}
1479 +
1480 +static inline int xrx200_mdio_poll(struct mii_bus *bus)
1481 +{
1482 + unsigned cnt = 10000;
1483 +
1484 + while (likely(cnt--)) {
1485 + unsigned ctrl = ltq_mdio_r32(MDIO_CTRL);
1486 + if ((ctrl & MDIO_BUSY) == 0)
1487 + return 0;
1488 + }
1489 +
1490 + return 1;
1491 +}
1492 +
1493 +static int xrx200_mdio_wr(struct mii_bus *bus, int addr, int reg, u16 val)
1494 +{
1495 + if (xrx200_mdio_poll(bus))
1496 + return 1;
1497 +
1498 + ltq_mdio_w32(val, MDIO_WRITE);
1499 + ltq_mdio_w32(MDIO_BUSY | MDIO_WR |
1500 + ((addr & MDIO_MASK) << MDIO_ADDRSHIFT) |
1501 + (reg & MDIO_MASK),
1502 + MDIO_CTRL);
1503 +
1504 + return 0;
1505 +}
1506 +
1507 +static int xrx200_mdio_rd(struct mii_bus *bus, int addr, int reg)
1508 +{
1509 + if (xrx200_mdio_poll(bus))
1510 + return -1;
1511 +
1512 + ltq_mdio_w32(MDIO_BUSY | MDIO_RD |
1513 + ((addr & MDIO_MASK) << MDIO_ADDRSHIFT) |
1514 + (reg & MDIO_MASK),
1515 + MDIO_CTRL);
1516 +
1517 + if (xrx200_mdio_poll(bus))
1518 + return -1;
1519 +
1520 + return ltq_mdio_r32(MDIO_READ);
1521 +}
1522 +
1523 +static int xrx200_phy_has_link(struct net_device *dev)
1524 +{
1525 + struct xrx200_priv *priv = netdev_priv(dev);
1526 + int i;
1527 +
1528 + for (i = 0; i < priv->num_port; i++) {
1529 + if (!priv->port[i].phydev)
1530 + continue;
1531 +
1532 + if (priv->port[i].phydev->link)
1533 + return 1;
1534 + }
1535 +
1536 + return 0;
1537 +}
1538 +
1539 +static void xrx200_phy_link_change(struct phy_device *phydev, bool up, bool do_carrier)
1540 +{
1541 + struct net_device *netdev = phydev->attached_dev;
1542 +
1543 + if (do_carrier)
1544 + if (up)
1545 + netif_carrier_on(netdev);
1546 + else if (!xrx200_phy_has_link(netdev))
1547 + netif_carrier_off(netdev);
1548 +
1549 + phydev->adjust_link(netdev);
1550 +}
1551 +
1552 +static int xrx200_mdio_probe(struct net_device *dev, struct xrx200_port *port)
1553 +{
1554 + struct xrx200_priv *priv = netdev_priv(dev);
1555 + struct phy_device *phydev = NULL;
1556 + unsigned val;
1557 +
1558 + phydev = mdiobus_get_phy(priv->hw->mii_bus, port->phy_addr);
1559 +
1560 + if (!phydev) {
1561 + netdev_err(dev, "no PHY found\n");
1562 + return -ENODEV;
1563 + }
1564 +
1565 + phydev = phy_connect(dev, phydev_name(phydev), &xrx200_mdio_link,
1566 + port->phy_if);
1567 +
1568 + if (IS_ERR(phydev)) {
1569 + netdev_err(dev, "Could not attach to PHY\n");
1570 + return PTR_ERR(phydev);
1571 + }
1572 +
1573 + phydev->supported &= (SUPPORTED_10baseT_Half
1574 + | SUPPORTED_10baseT_Full
1575 + | SUPPORTED_100baseT_Half
1576 + | SUPPORTED_100baseT_Full
1577 + | SUPPORTED_1000baseT_Half
1578 + | SUPPORTED_1000baseT_Full
1579 + | SUPPORTED_Autoneg
1580 + | SUPPORTED_MII
1581 + | SUPPORTED_TP);
1582 + phydev->advertising = phydev->supported;
1583 + port->phydev = phydev;
1584 + phydev->phy_link_change = xrx200_phy_link_change;
1585 +
1586 + phy_attached_info(phydev);
1587 +
1588 +#ifdef SW_POLLING
1589 + phy_read_status(phydev);
1590 +
1591 + val = xrx200_mdio_rd(priv->hw->mii_bus, MDIO_DEVAD_NONE, MII_CTRL1000);
1592 + val |= ADVERTIZE_MPD;
1593 + xrx200_mdio_wr(priv->hw->mii_bus, MDIO_DEVAD_NONE, MII_CTRL1000, val);
1594 + xrx200_mdio_wr(priv->hw->mii_bus, 0, 0, 0x1040);
1595 +
1596 + phy_start_aneg(phydev);
1597 +#endif
1598 + return 0;
1599 +}
1600 +
1601 +static void xrx200_port_config(struct xrx200_priv *priv,
1602 + const struct xrx200_port *port)
1603 +{
1604 + u16 miimode = 0;
1605 +
1606 + switch (port->num) {
1607 + case 0: /* xMII0 */
1608 + case 1: /* xMII1 */
1609 + switch (port->phy_if) {
1610 + case PHY_INTERFACE_MODE_MII:
1611 + if (port->flags & XRX200_PORT_TYPE_PHY)
1612 + /* MII MAC mode, connected to external PHY */
1613 + miimode = MII_CFG_MODE_MIIM;
1614 + else
1615 + /* MII PHY mode, connected to external MAC */
1616 + miimode = MII_CFG_MODE_MIIP;
1617 + break;
1618 + case PHY_INTERFACE_MODE_RMII:
1619 + if (port->flags & XRX200_PORT_TYPE_PHY)
1620 + /* RMII MAC mode, connected to external PHY */
1621 + miimode = MII_CFG_MODE_RMIIM;
1622 + else
1623 + /* RMII PHY mode, connected to external MAC */
1624 + miimode = MII_CFG_MODE_RMIIP;
1625 + break;
1626 + case PHY_INTERFACE_MODE_RGMII:
1627 + /* RGMII MAC mode, connected to external PHY */
1628 + miimode = MII_CFG_MODE_RGMII;
1629 + break;
1630 + default:
1631 + break;
1632 + }
1633 + break;
1634 + case 2: /* internal GPHY0 */
1635 + case 3: /* internal GPHY0 */
1636 + case 4: /* internal GPHY1 */
1637 + switch (port->phy_if) {
1638 + case PHY_INTERFACE_MODE_MII:
1639 + case PHY_INTERFACE_MODE_GMII:
1640 + /* MII MAC mode, connected to internal GPHY */
1641 + miimode = MII_CFG_MODE_MIIM;
1642 + break;
1643 + default:
1644 + break;
1645 + }
1646 + break;
1647 + case 5: /* internal GPHY1 or xMII2 */
1648 + switch (port->phy_if) {
1649 + case PHY_INTERFACE_MODE_MII:
1650 + /* MII MAC mode, connected to internal GPHY */
1651 + miimode = MII_CFG_MODE_MIIM;
1652 + break;
1653 + case PHY_INTERFACE_MODE_RGMII:
1654 + /* RGMII MAC mode, connected to external PHY */
1655 + miimode = MII_CFG_MODE_RGMII;
1656 + break;
1657 + default:
1658 + break;
1659 + }
1660 + break;
1661 + default:
1662 + break;
1663 + }
1664 +
1665 + ltq_mii_w32_mask(MII_CFG_MODE_MASK, miimode | MII_CFG_EN,
1666 + MII_CFG(port->num));
1667 +}
1668 +
1669 +static int xrx200_init(struct net_device *dev)
1670 +{
1671 + struct xrx200_priv *priv = netdev_priv(dev);
1672 + struct sockaddr mac;
1673 + int err, i;
1674 +
1675 +#ifndef SW_POLLING
1676 + unsigned int reg = 0;
1677 +
1678 + /* enable auto polling */
1679 + for (i = 0; i < priv->num_port; i++)
1680 + reg |= BIT(priv->port[i].num);
1681 + ltq_mdio_w32(reg, MDIO_CLK_CFG0);
1682 + ltq_mdio_w32(MDIO1_25MHZ, MDIO_CLK_CFG1);
1683 +#endif
1684 +
1685 + /* setup each port */
1686 + for (i = 0; i < priv->num_port; i++)
1687 + xrx200_port_config(priv, &priv->port[i]);
1688 +
1689 + memcpy(&mac.sa_data, priv->mac, ETH_ALEN);
1690 + if (!is_valid_ether_addr(mac.sa_data)) {
1691 + pr_warn("net-xrx200: invalid MAC, using random\n");
1692 + eth_random_addr(mac.sa_data);
1693 + dev->addr_assign_type |= NET_ADDR_RANDOM;
1694 + }
1695 +
1696 + err = eth_mac_addr(dev, &mac);
1697 + if (err)
1698 + goto err_netdev;
1699 +
1700 + for (i = 0; i < priv->num_port; i++)
1701 + if (xrx200_mdio_probe(dev, &priv->port[i]))
1702 + pr_warn("xrx200-mdio: probing phy of port %d failed\n",
1703 + priv->port[i].num);
1704 +
1705 + return 0;
1706 +
1707 +err_netdev:
1708 + unregister_netdev(dev);
1709 + free_netdev(dev);
1710 + return err;
1711 +}
1712 +
1713 +static void xrx200_pci_microcode(void)
1714 +{
1715 + int i;
1716 +
1717 + ltq_switch_w32_mask(PCE_TBL_CFG_ADDR_MASK | PCE_TBL_CFG_ADWR_MASK,
1718 + PCE_TBL_CFG_ADWR, PCE_TBL_CTRL);
1719 + ltq_switch_w32(0, PCE_TBL_MASK);
1720 +
1721 + for (i = 0; i < ARRAY_SIZE(pce_microcode); i++) {
1722 + ltq_switch_w32(i, PCE_TBL_ADDR);
1723 + ltq_switch_w32(pce_microcode[i].val[3], PCE_TBL_VAL(0));
1724 + ltq_switch_w32(pce_microcode[i].val[2], PCE_TBL_VAL(1));
1725 + ltq_switch_w32(pce_microcode[i].val[1], PCE_TBL_VAL(2));
1726 + ltq_switch_w32(pce_microcode[i].val[0], PCE_TBL_VAL(3));
1727 +
1728 + // start the table access:
1729 + ltq_switch_w32_mask(0, PCE_TBL_BUSY, PCE_TBL_CTRL);
1730 + while (ltq_switch_r32(PCE_TBL_CTRL) & PCE_TBL_BUSY);
1731 + }
1732 +
1733 + /* tell the switch that the microcode is loaded */
1734 + ltq_switch_w32_mask(0, BIT(3), PCE_GCTRL_REG(0));
1735 +}
1736 +
1737 +static void xrx200_hw_init(struct xrx200_hw *hw)
1738 +{
1739 + int i;
1740 +
1741 + /* enable clock gate */
1742 + clk_enable(hw->clk);
1743 +
1744 + ltq_switch_w32(1, 0);
1745 + mdelay(100);
1746 + ltq_switch_w32(0, 0);
1747 + /*
1748 + * TODO: we should really disbale all phys/miis here and explicitly
1749 + * enable them in the device secific init function
1750 + */
1751 +
1752 + /* disable port fetch/store dma */
1753 + for (i = 0; i < 7; i++ ) {
1754 + ltq_switch_w32(0, FDMA_PCTRLx(i));
1755 + ltq_switch_w32(0, SDMA_PCTRLx(i));
1756 + }
1757 +
1758 + /* enable Switch */
1759 + ltq_mdio_w32_mask(0, MDIO_GLOB_ENABLE, MDIO_GLOB);
1760 +
1761 + /* load the pce microcode */
1762 + xrx200_pci_microcode();
1763 +
1764 + /* Default unknown Broadcat/Multicast/Unicast port maps */
1765 + ltq_switch_w32(0x40, PCE_PMAP1);
1766 + ltq_switch_w32(0x40, PCE_PMAP2);
1767 + ltq_switch_w32(0x40, PCE_PMAP3);
1768 +
1769 + /* RMON Counter Enable for all physical ports */
1770 + for (i = 0; i < 7; i++)
1771 + ltq_switch_w32(0x1, BM_PCFG(i));
1772 +
1773 + /* disable auto polling */
1774 + ltq_mdio_w32(0x0, MDIO_CLK_CFG0);
1775 +
1776 + /* enable port statistic counters */
1777 + for (i = 0; i < 7; i++)
1778 + ltq_switch_w32(0x1, BM_PCFGx(i));
1779 +
1780 + /* set IPG to 12 */
1781 + ltq_pmac_w32_mask(PMAC_IPG_MASK, 0xb, PMAC_RX_IPG);
1782 +
1783 +#ifdef SW_ROUTING
1784 + /* enable status header, enable CRC */
1785 + ltq_pmac_w32_mask(0,
1786 + PMAC_HD_CTL_RST | PMAC_HD_CTL_AST | PMAC_HD_CTL_RXSH | PMAC_HD_CTL_AS | PMAC_HD_CTL_AC | PMAC_HD_CTL_RC,
1787 + PMAC_HD_CTL);
1788 +#else
1789 + /* disable status header, enable CRC */
1790 + ltq_pmac_w32_mask(PMAC_HD_CTL_AST | PMAC_HD_CTL_RXSH | PMAC_HD_CTL_AS,
1791 + PMAC_HD_CTL_AC | PMAC_HD_CTL_RC,
1792 + PMAC_HD_CTL);
1793 +#endif
1794 +
1795 + /* enable port fetch/store dma & VLAN Modification */
1796 + for (i = 0; i < 7; i++ ) {
1797 + ltq_switch_w32_mask(0, 0x19, FDMA_PCTRLx(i));
1798 + ltq_switch_w32_mask(0, 0x01, SDMA_PCTRLx(i));
1799 + ltq_switch_w32_mask(0, PCE_INGRESS, PCE_PCTRL_REG(i, 0));
1800 + }
1801 +
1802 + /* enable special tag insertion on cpu port */
1803 + ltq_switch_w32_mask(0, 0x02, FDMA_PCTRLx(6));
1804 + ltq_switch_w32_mask(0, PCE_INGRESS, PCE_PCTRL_REG(6, 0));
1805 + ltq_switch_w32_mask(0, BIT(3), MAC_CTRL_REG(6, 2));
1806 + ltq_switch_w32(1518 + 8 + 4 * 2, MAC_FLEN_REG);
1807 + xrx200sw_write_x(1, XRX200_BM_QUEUE_GCTRL_GL_MOD, 0);
1808 +
1809 + for (i = 0; i < XRX200_MAX_VLAN; i++)
1810 + hw->vlan_vid[i] = i;
1811 +}
1812 +
1813 +static void xrx200_hw_cleanup(struct xrx200_hw *hw)
1814 +{
1815 + int i;
1816 +
1817 + /* disable the switch */
1818 + ltq_mdio_w32_mask(MDIO_GLOB_ENABLE, 0, MDIO_GLOB);
1819 +
1820 + /* free the channels and IRQs */
1821 + for (i = 0; i < 2; i++) {
1822 + ltq_dma_free(&hw->chan[i].dma);
1823 + if (hw->chan[i].dma.irq)
1824 + free_irq(hw->chan[i].dma.irq, hw);
1825 + }
1826 +
1827 + /* free the allocated RX ring */
1828 + for (i = 0; i < LTQ_DESC_NUM; i++)
1829 + dev_kfree_skb_any(hw->chan[XRX200_DMA_RX].skb[i]);
1830 +
1831 + /* clear the mdio bus */
1832 + mdiobus_unregister(hw->mii_bus);
1833 + mdiobus_free(hw->mii_bus);
1834 +
1835 + /* release the clock */
1836 + clk_disable(hw->clk);
1837 + clk_put(hw->clk);
1838 +}
1839 +
1840 +static int xrx200_of_mdio(struct xrx200_hw *hw, struct device_node *np)
1841 +{
1842 + hw->mii_bus = mdiobus_alloc();
1843 + if (!hw->mii_bus)
1844 + return -ENOMEM;
1845 +
1846 + hw->mii_bus->read = xrx200_mdio_rd;
1847 + hw->mii_bus->write = xrx200_mdio_wr;
1848 + hw->mii_bus->name = "lantiq,xrx200-mdio";
1849 + snprintf(hw->mii_bus->id, MII_BUS_ID_SIZE, "%x", 0);
1850 +
1851 + if (of_mdiobus_register(hw->mii_bus, np)) {
1852 + mdiobus_free(hw->mii_bus);
1853 + return -ENXIO;
1854 + }
1855 +
1856 + return 0;
1857 +}
1858 +
1859 +static void xrx200_of_port(struct xrx200_priv *priv, struct device_node *port)
1860 +{
1861 + const __be32 *addr, *id = of_get_property(port, "reg", NULL);
1862 + struct xrx200_port *p = &priv->port[priv->num_port];
1863 +
1864 + if (!id)
1865 + return;
1866 +
1867 + memset(p, 0, sizeof(struct xrx200_port));
1868 + p->phy_node = of_parse_phandle(port, "phy-handle", 0);
1869 + addr = of_get_property(p->phy_node, "reg", NULL);
1870 + if (!addr)
1871 + return;
1872 +
1873 + p->num = *id;
1874 + p->phy_addr = *addr;
1875 + p->phy_if = of_get_phy_mode(port);
1876 + if (p->phy_addr > 0x10)
1877 + p->flags = XRX200_PORT_TYPE_MAC;
1878 + else
1879 + p->flags = XRX200_PORT_TYPE_PHY;
1880 + priv->num_port++;
1881 +
1882 + p->gpio = of_get_gpio_flags(port, 0, &p->gpio_flags);
1883 + if (gpio_is_valid(p->gpio))
1884 + if (!gpio_request(p->gpio, "phy-reset")) {
1885 + gpio_direction_output(p->gpio,
1886 + (p->gpio_flags & OF_GPIO_ACTIVE_LOW) ? (1) : (0));
1887 + udelay(100);
1888 + gpio_set_value(p->gpio, (p->gpio_flags & OF_GPIO_ACTIVE_LOW) ? (0) : (1));
1889 + }
1890 + /* is this port a wan port ? */
1891 + if (priv->wan)
1892 + priv->hw->wan_map |= BIT(p->num);
1893 +
1894 + priv->port_map |= BIT(p->num);
1895 +
1896 + /* store the port id in the hw struct so we can map ports -> devices */
1897 + priv->hw->port_map[p->num] = priv->hw->num_devs;
1898 +}
1899 +
1900 +static const struct net_device_ops xrx200_netdev_ops = {
1901 + .ndo_init = xrx200_init,
1902 + .ndo_open = xrx200_open,
1903 + .ndo_stop = xrx200_close,
1904 + .ndo_start_xmit = xrx200_start_xmit,
1905 + .ndo_set_mac_address = eth_mac_addr,
1906 + .ndo_validate_addr = eth_validate_addr,
1907 + .ndo_get_stats = xrx200_get_stats,
1908 + .ndo_tx_timeout = xrx200_tx_timeout,
1909 +};
1910 +
1911 +static void xrx200_of_iface(struct xrx200_hw *hw, struct device_node *iface, struct device *dev)
1912 +{
1913 + struct xrx200_priv *priv;
1914 + struct device_node *port;
1915 + const __be32 *wan;
1916 + const u8 *mac;
1917 +
1918 + /* alloc the network device */
1919 + hw->devs[hw->num_devs] = alloc_etherdev(sizeof(struct xrx200_priv));
1920 + if (!hw->devs[hw->num_devs])
1921 + return;
1922 +
1923 + /* setup the network device */
1924 + strcpy(hw->devs[hw->num_devs]->name, "eth%d");
1925 + hw->devs[hw->num_devs]->netdev_ops = &xrx200_netdev_ops;
1926 + hw->devs[hw->num_devs]->watchdog_timeo = XRX200_TX_TIMEOUT;
1927 + hw->devs[hw->num_devs]->needed_headroom = XRX200_HEADROOM;
1928 + SET_NETDEV_DEV(hw->devs[hw->num_devs], dev);
1929 +
1930 + /* setup our private data */
1931 + priv = netdev_priv(hw->devs[hw->num_devs]);
1932 + priv->hw = hw;
1933 + priv->id = hw->num_devs;
1934 +
1935 + mac = of_get_mac_address(iface);
1936 + if (mac)
1937 + memcpy(priv->mac, mac, ETH_ALEN);
1938 +
1939 + /* is this the wan interface ? */
1940 + wan = of_get_property(iface, "lantiq,wan", NULL);
1941 + if (wan && (*wan == 1))
1942 + priv->wan = 1;
1943 +
1944 + /* should the switch be enabled on this interface ? */
1945 + if (of_find_property(iface, "lantiq,switch", NULL))
1946 + priv->sw = 1;
1947 +
1948 + /* load the ports that are part of the interface */
1949 + for_each_child_of_node(iface, port)
1950 + if (of_device_is_compatible(port, "lantiq,xrx200-pdi-port"))
1951 + xrx200_of_port(priv, port);
1952 +
1953 + /* register the actual device */
1954 + if (!register_netdev(hw->devs[hw->num_devs]))
1955 + hw->num_devs++;
1956 +}
1957 +
1958 +static struct xrx200_hw xrx200_hw;
1959 +
1960 +static int xrx200_probe(struct platform_device *pdev)
1961 +{
1962 + struct resource *res[4];
1963 + struct device_node *mdio_np, *iface_np, *phy_np;
1964 + struct of_phandle_iterator it;
1965 + int err;
1966 + int i;
1967 +
1968 + /* load the memory ranges */
1969 + for (i = 0; i < 4; i++) {
1970 + res[i] = platform_get_resource(pdev, IORESOURCE_MEM, i);
1971 + if (!res[i]) {
1972 + dev_err(&pdev->dev, "failed to get resources\n");
1973 + return -ENOENT;
1974 + }
1975 + }
1976 + xrx200_switch_membase = devm_ioremap_resource(&pdev->dev, res[0]);
1977 + xrx200_mdio_membase = devm_ioremap_resource(&pdev->dev, res[1]);
1978 + xrx200_mii_membase = devm_ioremap_resource(&pdev->dev, res[2]);
1979 + xrx200_pmac_membase = devm_ioremap_resource(&pdev->dev, res[3]);
1980 + if (!xrx200_switch_membase || !xrx200_mdio_membase ||
1981 + !xrx200_mii_membase || !xrx200_pmac_membase) {
1982 + dev_err(&pdev->dev, "failed to request and remap io ranges \n");
1983 + return -ENOMEM;
1984 + }
1985 +
1986 + of_for_each_phandle(&it, err, pdev->dev.of_node, "lantiq,phys", NULL, 0) {
1987 + phy_np = it.node;
1988 + if (phy_np) {
1989 + struct platform_device *phy = of_find_device_by_node(phy_np);
1990 +
1991 + of_node_put(phy_np);
1992 + if (!platform_get_drvdata(phy))
1993 + return -EPROBE_DEFER;
1994 + }
1995 + }
1996 +
1997 + /* get the clock */
1998 + xrx200_hw.clk = clk_get(&pdev->dev, NULL);
1999 + if (IS_ERR(xrx200_hw.clk)) {
2000 + dev_err(&pdev->dev, "failed to get clock\n");
2001 + return PTR_ERR(xrx200_hw.clk);
2002 + }
2003 +
2004 + /* bring up the dma engine and IP core */
2005 + xrx200_dma_init(&xrx200_hw);
2006 + xrx200_hw_init(&xrx200_hw);
2007 + tasklet_init(&xrx200_hw.chan[XRX200_DMA_TX].tasklet, xrx200_tx_housekeeping, (u32) &xrx200_hw.chan[XRX200_DMA_TX]);
2008 + tasklet_init(&xrx200_hw.chan[XRX200_DMA_TX_2].tasklet, xrx200_tx_housekeeping, (u32) &xrx200_hw.chan[XRX200_DMA_TX_2]);
2009 +
2010 + /* bring up the mdio bus */
2011 + mdio_np = of_find_compatible_node(pdev->dev.of_node, NULL,
2012 + "lantiq,xrx200-mdio");
2013 + if (mdio_np)
2014 + if (xrx200_of_mdio(&xrx200_hw, mdio_np))
2015 + dev_err(&pdev->dev, "mdio probe failed\n");
2016 +
2017 + /* load the interfaces */
2018 + for_each_child_of_node(pdev->dev.of_node, iface_np)
2019 + if (of_device_is_compatible(iface_np, "lantiq,xrx200-pdi")) {
2020 + if (xrx200_hw.num_devs < XRX200_MAX_DEV)
2021 + xrx200_of_iface(&xrx200_hw, iface_np, &pdev->dev);
2022 + else
2023 + dev_err(&pdev->dev,
2024 + "only %d interfaces allowed\n",
2025 + XRX200_MAX_DEV);
2026 + }
2027 +
2028 + if (!xrx200_hw.num_devs) {
2029 + xrx200_hw_cleanup(&xrx200_hw);
2030 + dev_err(&pdev->dev, "failed to load interfaces\n");
2031 + return -ENOENT;
2032 + }
2033 +
2034 + xrx200sw_init(&xrx200_hw);
2035 +
2036 + /* set wan port mask */
2037 + ltq_pmac_w32(xrx200_hw.wan_map, PMAC_EWAN);
2038 +
2039 + for (i = 0; i < xrx200_hw.num_devs; i++) {
2040 + xrx200_hw.chan[XRX200_DMA_RX].devs[i] = xrx200_hw.devs[i];
2041 + xrx200_hw.chan[XRX200_DMA_TX].devs[i] = xrx200_hw.devs[i];
2042 + xrx200_hw.chan[XRX200_DMA_TX_2].devs[i] = xrx200_hw.devs[i];
2043 + }
2044 +
2045 + /* setup NAPI */
2046 + init_dummy_netdev(&xrx200_hw.chan[XRX200_DMA_RX].dummy_dev);
2047 + netif_napi_add(&xrx200_hw.chan[XRX200_DMA_RX].dummy_dev,
2048 + &xrx200_hw.chan[XRX200_DMA_RX].napi, xrx200_poll_rx, 32);
2049 +
2050 + platform_set_drvdata(pdev, &xrx200_hw);
2051 +
2052 + return 0;
2053 +}
2054 +
2055 +static int xrx200_remove(struct platform_device *pdev)
2056 +{
2057 + struct net_device *dev = platform_get_drvdata(pdev);
2058 + struct xrx200_priv *priv;
2059 +
2060 + if (!dev)
2061 + return 0;
2062 +
2063 + priv = netdev_priv(dev);
2064 +
2065 + /* free stack related instances */
2066 + netif_stop_queue(dev);
2067 + netif_napi_del(&xrx200_hw.chan[XRX200_DMA_RX].napi);
2068 +
2069 + /* shut down hardware */
2070 + xrx200_hw_cleanup(&xrx200_hw);
2071 +
2072 + /* remove the actual device */
2073 + unregister_netdev(dev);
2074 + free_netdev(dev);
2075 +
2076 + return 0;
2077 +}
2078 +
2079 +static const struct of_device_id xrx200_match[] = {
2080 + { .compatible = "lantiq,xrx200-net" },
2081 + {},
2082 +};
2083 +MODULE_DEVICE_TABLE(of, xrx200_match);
2084 +
2085 +static struct platform_driver xrx200_driver = {
2086 + .probe = xrx200_probe,
2087 + .remove = xrx200_remove,
2088 + .driver = {
2089 + .name = "lantiq,xrx200-net",
2090 + .of_match_table = xrx200_match,
2091 + .owner = THIS_MODULE,
2092 + },
2093 +};
2094 +
2095 +module_platform_driver(xrx200_driver);
2096 +
2097 +MODULE_AUTHOR("John Crispin <blogic@openwrt.org>");
2098 +MODULE_DESCRIPTION("Lantiq SoC XRX200 ethernet");
2099 +MODULE_LICENSE("GPL");
2100 --- /dev/null
2101 +++ b/drivers/net/ethernet/lantiq_xrx200_sw.h
2102 @@ -0,0 +1,1328 @@
2103 +/*
2104 + * This program is free software; you can redistribute it and/or modify it
2105 + * under the terms of the GNU General Public License version 2 as published
2106 + * by the Free Software Foundation.
2107 + *
2108 + * This program is distributed in the hope that it will be useful,
2109 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
2110 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
2111 + * GNU General Public License for more details.
2112 + *
2113 + * You should have received a copy of the GNU General Public License
2114 + * along with this program; if not, write to the Free Software
2115 + * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307, USA.
2116 + *
2117 + * Copyright (C) 2010 Lantiq Deutschland GmbH
2118 + * Copyright (C) 2013 Antonios Vamporakis <vamporakis@yahoo.com>
2119 + *
2120 + * VR9 switch registers extracted from 310TUJ0 switch api
2121 + * WARNING mult values of 0x00 may not be correct
2122 + *
2123 + */
2124 +
2125 +enum {
2126 +// XRX200_ETHSW_SWRES, /* Ethernet Switch ResetControl Register */
2127 +// XRX200_ETHSW_SWRES_R1, /* Hardware Reset */
2128 +// XRX200_ETHSW_SWRES_R0, /* Register Configuration */
2129 +// XRX200_ETHSW_CLK_MAC_GAT, /* Ethernet Switch Clock ControlRegister */
2130 +// XRX200_ETHSW_CLK_EXP_SLEEP, /* Exponent to put system into sleep */
2131 +// XRX200_ETHSW_CLK_EXP_WAKE, /* Exponent to wake up system */
2132 +// XRX200_ETHSW_CLK_CLK2_EN, /* CLK2 Input for MAC */
2133 +// XRX200_ETHSW_CLK_EXT_DIV_EN, /* External Clock Divider Enable */
2134 +// XRX200_ETHSW_CLK_RAM_DBG_EN, /* Clock Gating Enable */
2135 +// XRX200_ETHSW_CLK_REG_GAT_EN, /* Clock Gating Enable */
2136 +// XRX200_ETHSW_CLK_GAT_EN, /* Clock Gating Enable */
2137 +// XRX200_ETHSW_CLK_MAC_GAT_EN, /* Clock Gating Enable */
2138 +// XRX200_ETHSW_DBG_STEP, /* Ethernet Switch Debug ControlRegister */
2139 +// XRX200_ETHSW_DBG_CLK_SEL, /* Trigger Enable */
2140 +// XRX200_ETHSW_DBG_MON_EN, /* Monitoring Enable */
2141 +// XRX200_ETHSW_DBG_TRIG_EN, /* Trigger Enable */
2142 +// XRX200_ETHSW_DBG_MODE, /* Debug Mode */
2143 +// XRX200_ETHSW_DBG_STEP_TIME, /* Clock Step Size */
2144 +// XRX200_ETHSW_SSB_MODE, /* Ethernet Switch SharedSegment Buffer Mode Register */
2145 +// XRX200_ETHSW_SSB_MODE_ADDE, /* Memory Address */
2146 +// XRX200_ETHSW_SSB_MODE_MODE, /* Memory Access Mode */
2147 +// XRX200_ETHSW_SSB_ADDR, /* Ethernet Switch SharedSegment Buffer Address Register */
2148 +// XRX200_ETHSW_SSB_ADDR_ADDE, /* Memory Address */
2149 +// XRX200_ETHSW_SSB_DATA, /* Ethernet Switch SharedSegment Buffer Data Register */
2150 +// XRX200_ETHSW_SSB_DATA_DATA, /* Data Value */
2151 +// XRX200_ETHSW_CAP_0, /* Ethernet Switch CapabilityRegister 0 */
2152 +// XRX200_ETHSW_CAP_0_SPEED, /* Clock frequency */
2153 +// XRX200_ETHSW_CAP_1, /* Ethernet Switch CapabilityRegister 1 */
2154 +// XRX200_ETHSW_CAP_1_GMAC, /* MAC operation mode */
2155 +// XRX200_ETHSW_CAP_1_QUEUE, /* Number of queues */
2156 +// XRX200_ETHSW_CAP_1_VPORTS, /* Number of virtual ports */
2157 +// XRX200_ETHSW_CAP_1_PPORTS, /* Number of physical ports */
2158 +// XRX200_ETHSW_CAP_2, /* Ethernet Switch CapabilityRegister 2 */
2159 +// XRX200_ETHSW_CAP_2_PACKETS, /* Number of packets */
2160 +// XRX200_ETHSW_CAP_3, /* Ethernet Switch CapabilityRegister 3 */
2161 +// XRX200_ETHSW_CAP_3_METERS, /* Number of traffic meters */
2162 +// XRX200_ETHSW_CAP_3_SHAPERS, /* Number of traffic shapers */
2163 +// XRX200_ETHSW_CAP_4, /* Ethernet Switch CapabilityRegister 4 */
2164 +// XRX200_ETHSW_CAP_4_PPPOE, /* PPPoE table size */
2165 +// XRX200_ETHSW_CAP_4_VLAN, /* Active VLAN table size */
2166 +// XRX200_ETHSW_CAP_5, /* Ethernet Switch CapabilityRegister 5 */
2167 +// XRX200_ETHSW_CAP_5_IPPLEN, /* IP packet length table size */
2168 +// XRX200_ETHSW_CAP_5_PROT, /* Protocol table size */
2169 +// XRX200_ETHSW_CAP_6, /* Ethernet Switch CapabilityRegister 6 */
2170 +// XRX200_ETHSW_CAP_6_MACDASA, /* MAC DA/SA table size */
2171 +// XRX200_ETHSW_CAP_6_APPL, /* Application table size */
2172 +// XRX200_ETHSW_CAP_7, /* Ethernet Switch CapabilityRegister 7 */
2173 +// XRX200_ETHSW_CAP_7_IPDASAM, /* IP DA/SA MSB table size */
2174 +// XRX200_ETHSW_CAP_7_IPDASAL, /* IP DA/SA LSB table size */
2175 +// XRX200_ETHSW_CAP_8, /* Ethernet Switch CapabilityRegister 8 */
2176 +// XRX200_ETHSW_CAP_8_MCAST, /* Multicast table size */
2177 +// XRX200_ETHSW_CAP_9, /* Ethernet Switch CapabilityRegister 9 */
2178 +// XRX200_ETHSW_CAP_9_FLAGG, /* Flow Aggregation table size */
2179 +// XRX200_ETHSW_CAP_10, /* Ethernet Switch CapabilityRegister 10 */
2180 +// XRX200_ETHSW_CAP_10_MACBT, /* MAC bridging table size */
2181 +// XRX200_ETHSW_CAP_11, /* Ethernet Switch CapabilityRegister 11 */
2182 +// XRX200_ETHSW_CAP_11_BSIZEL, /* Packet buffer size (lower part, in byte) */
2183 +// XRX200_ETHSW_CAP_12, /* Ethernet Switch CapabilityRegister 12 */
2184 +// XRX200_ETHSW_CAP_12_BSIZEH, /* Packet buffer size (higher part, in byte) */
2185 +// XRX200_ETHSW_VERSION_REV, /* Ethernet Switch VersionRegister */
2186 +// XRX200_ETHSW_VERSION_MOD_ID, /* Module Identification */
2187 +// XRX200_ETHSW_VERSION_REV_ID, /* Hardware Revision Identification */
2188 +// XRX200_ETHSW_IER, /* Interrupt Enable Register */
2189 +// XRX200_ETHSW_IER_FDMAIE, /* Fetch DMA Interrupt Enable */
2190 +// XRX200_ETHSW_IER_SDMAIE, /* Store DMA Interrupt Enable */
2191 +// XRX200_ETHSW_IER_MACIE, /* Ethernet MAC Interrupt Enable */
2192 +// XRX200_ETHSW_IER_PCEIE, /* Parser and Classification Engine Interrupt Enable */
2193 +// XRX200_ETHSW_IER_BMIE, /* Buffer Manager Interrupt Enable */
2194 +// XRX200_ETHSW_ISR, /* Interrupt Status Register */
2195 +// XRX200_ETHSW_ISR_FDMAINT, /* Fetch DMA Interrupt */
2196 +// XRX200_ETHSW_ISR_SDMAINT, /* Store DMA Interrupt */
2197 +// XRX200_ETHSW_ISR_MACINT, /* Ethernet MAC Interrupt */
2198 +// XRX200_ETHSW_ISR_PCEINT, /* Parser and Classification Engine Interrupt */
2199 +// XRX200_ETHSW_ISR_BMINT, /* Buffer Manager Interrupt */
2200 +// XRX200_ETHSW_SPARE_0, /* Ethernet Switch SpareCells 0 */
2201 +// XRX200_ETHSW_SPARE_0_SPARE, /* SPARE0 */
2202 +// XRX200_ETHSW_SPARE_1, /* Ethernet Switch SpareCells 1 */
2203 +// XRX200_ETHSW_SPARE_1_SPARE, /* SPARE1 */
2204 +// XRX200_ETHSW_SPARE_2, /* Ethernet Switch SpareCells 2 */
2205 +// XRX200_ETHSW_SPARE_2_SPARE, /* SPARE2 */
2206 +// XRX200_ETHSW_SPARE_3, /* Ethernet Switch SpareCells 3 */
2207 +// XRX200_ETHSW_SPARE_3_SPARE, /* SPARE3 */
2208 +// XRX200_ETHSW_SPARE_4, /* Ethernet Switch SpareCells 4 */
2209 +// XRX200_ETHSW_SPARE_4_SPARE, /* SPARE4 */
2210 +// XRX200_ETHSW_SPARE_5, /* Ethernet Switch SpareCells 5 */
2211 +// XRX200_ETHSW_SPARE_5_SPARE, /* SPARE5 */
2212 +// XRX200_ETHSW_SPARE_6, /* Ethernet Switch SpareCells 6 */
2213 +// XRX200_ETHSW_SPARE_6_SPARE, /* SPARE6 */
2214 +// XRX200_ETHSW_SPARE_7, /* Ethernet Switch SpareCells 7 */
2215 +// XRX200_ETHSW_SPARE_7_SPARE, /* SPARE7 */
2216 +// XRX200_ETHSW_SPARE_8, /* Ethernet Switch SpareCells 8 */
2217 +// XRX200_ETHSW_SPARE_8_SPARE, /* SPARE8 */
2218 +// XRX200_ETHSW_SPARE_9, /* Ethernet Switch SpareCells 9 */
2219 +// XRX200_ETHSW_SPARE_9_SPARE, /* SPARE9 */
2220 +// XRX200_ETHSW_SPARE_10, /* Ethernet Switch SpareCells 10 */
2221 +// XRX200_ETHSW_SPARE_10_SPARE, /* SPARE10 */
2222 +// XRX200_ETHSW_SPARE_11, /* Ethernet Switch SpareCells 11 */
2223 +// XRX200_ETHSW_SPARE_11_SPARE, /* SPARE11 */
2224 +// XRX200_ETHSW_SPARE_12, /* Ethernet Switch SpareCells 12 */
2225 +// XRX200_ETHSW_SPARE_12_SPARE, /* SPARE12 */
2226 +// XRX200_ETHSW_SPARE_13, /* Ethernet Switch SpareCells 13 */
2227 +// XRX200_ETHSW_SPARE_13_SPARE, /* SPARE13 */
2228 +// XRX200_ETHSW_SPARE_14, /* Ethernet Switch SpareCells 14 */
2229 +// XRX200_ETHSW_SPARE_14_SPARE, /* SPARE14 */
2230 +// XRX200_ETHSW_SPARE_15, /* Ethernet Switch SpareCells 15 */
2231 +// XRX200_ETHSW_SPARE_15_SPARE, /* SPARE15 */
2232 +// XRX200_BM_RAM_VAL_3, /* RAM Value Register 3 */
2233 +// XRX200_BM_RAM_VAL_3_VAL3, /* Data value [15:0] */
2234 +// XRX200_BM_RAM_VAL_2, /* RAM Value Register 2 */
2235 +// XRX200_BM_RAM_VAL_2_VAL2, /* Data value [15:0] */
2236 +// XRX200_BM_RAM_VAL_1, /* RAM Value Register 1 */
2237 +// XRX200_BM_RAM_VAL_1_VAL1, /* Data value [15:0] */
2238 +// XRX200_BM_RAM_VAL_0, /* RAM Value Register 0 */
2239 +// XRX200_BM_RAM_VAL_0_VAL0, /* Data value [15:0] */
2240 +// XRX200_BM_RAM_ADDR, /* RAM Address Register */
2241 +// XRX200_BM_RAM_ADDR_ADDR, /* RAM Address */
2242 +// XRX200_BM_RAM_CTRL, /* RAM Access Control Register */
2243 +// XRX200_BM_RAM_CTRL_BAS, /* Access Busy/Access Start */
2244 +// XRX200_BM_RAM_CTRL_OPMOD, /* Lookup Table Access Operation Mode */
2245 +// XRX200_BM_RAM_CTRL_ADDR, /* Address for RAM selection */
2246 +// XRX200_BM_FSQM_GCTRL, /* Free Segment Queue ManagerGlobal Control Register */
2247 +// XRX200_BM_FSQM_GCTRL_SEGNUM, /* Maximum Segment Number */
2248 +// XRX200_BM_CONS_SEG, /* Number of Consumed SegmentsRegister */
2249 +// XRX200_BM_CONS_SEG_FSEG, /* Number of Consumed Segments */
2250 +// XRX200_BM_CONS_PKT, /* Number of Consumed PacketPointers Register */
2251 +// XRX200_BM_CONS_PKT_FQP, /* Number of Consumed Packet Pointers */
2252 +// XRX200_BM_GCTRL_F, /* Buffer Manager Global ControlRegister 0 */
2253 +// XRX200_BM_GCTRL_BM_STA, /* Buffer Manager Initialization Status Bit */
2254 +// XRX200_BM_GCTRL_SAT, /* RMON Counter Update Mode */
2255 +// XRX200_BM_GCTRL_FR_RBC, /* Freeze RMON RX Bad Byte 64 Bit Counter */
2256 +// XRX200_BM_GCTRL_FR_RGC, /* Freeze RMON RX Good Byte 64 Bit Counter */
2257 +// XRX200_BM_GCTRL_FR_TGC, /* Freeze RMON TX Good Byte 64 Bit Counter */
2258 +// XRX200_BM_GCTRL_I_FIN, /* RAM initialization finished */
2259 +// XRX200_BM_GCTRL_CX_INI, /* PQM Context RAM initialization */
2260 +// XRX200_BM_GCTRL_FP_INI, /* FPQM RAM initialization */
2261 +// XRX200_BM_GCTRL_FS_INI, /* FSQM RAM initialization */
2262 +// XRX200_BM_GCTRL_R_SRES, /* Software Reset for RMON */
2263 +// XRX200_BM_GCTRL_S_SRES, /* Software Reset for Scheduler */
2264 +// XRX200_BM_GCTRL_A_SRES, /* Software Reset for AVG */
2265 +// XRX200_BM_GCTRL_P_SRES, /* Software Reset for PQM */
2266 +// XRX200_BM_GCTRL_F_SRES, /* Software Reset for FSQM */
2267 +// XRX200_BM_QUEUE_GCTRL, /* Queue Manager GlobalControl Register 0 */
2268 + XRX200_BM_QUEUE_GCTRL_GL_MOD, /* WRED Mode Signal */
2269 +// XRX200_BM_QUEUE_GCTRL_AQUI, /* Average Queue Update Interval */
2270 +// XRX200_BM_QUEUE_GCTRL_AQWF, /* Average Queue Weight Factor */
2271 +// XRX200_BM_QUEUE_GCTRL_QAVGEN, /* Queue Average Calculation Enable */
2272 +// XRX200_BM_QUEUE_GCTRL_DPROB, /* Drop Probability Profile */
2273 +// XRX200_BM_WRED_RTH_0, /* WRED Red Threshold Register0 */
2274 +// XRX200_BM_WRED_RTH_0_MINTH, /* Minimum Threshold */
2275 +// XRX200_BM_WRED_RTH_1, /* WRED Red Threshold Register1 */
2276 +// XRX200_BM_WRED_RTH_1_MAXTH, /* Maximum Threshold */
2277 +// XRX200_BM_WRED_YTH_0, /* WRED Yellow ThresholdRegister 0 */
2278 +// XRX200_BM_WRED_YTH_0_MINTH, /* Minimum Threshold */
2279 +// XRX200_BM_WRED_YTH_1, /* WRED Yellow ThresholdRegister 1 */
2280 +// XRX200_BM_WRED_YTH_1_MAXTH, /* Maximum Threshold */
2281 +// XRX200_BM_WRED_GTH_0, /* WRED Green ThresholdRegister 0 */
2282 +// XRX200_BM_WRED_GTH_0_MINTH, /* Minimum Threshold */
2283 +// XRX200_BM_WRED_GTH_1, /* WRED Green ThresholdRegister 1 */
2284 +// XRX200_BM_WRED_GTH_1_MAXTH, /* Maximum Threshold */
2285 +// XRX200_BM_DROP_GTH_0_THR, /* Drop Threshold ConfigurationRegister 0 */
2286 +// XRX200_BM_DROP_GTH_0_THR_FQ, /* Threshold for frames marked red */
2287 +// XRX200_BM_DROP_GTH_1_THY, /* Drop Threshold ConfigurationRegister 1 */
2288 +// XRX200_BM_DROP_GTH_1_THY_FQ, /* Threshold for frames marked yellow */
2289 +// XRX200_BM_DROP_GTH_2_THG, /* Drop Threshold ConfigurationRegister 2 */
2290 +// XRX200_BM_DROP_GTH_2_THG_FQ, /* Threshold for frames marked green */
2291 +// XRX200_BM_IER, /* Buffer Manager Global InterruptEnable Register */
2292 +// XRX200_BM_IER_CNT4, /* Counter Group 4 (RMON-CLASSIFICATION) Interrupt Enable */
2293 +// XRX200_BM_IER_CNT3, /* Counter Group 3 (RMON-PQM) Interrupt Enable */
2294 +// XRX200_BM_IER_CNT2, /* Counter Group 2 (RMON-SCHEDULER) Interrupt Enable */
2295 +// XRX200_BM_IER_CNT1, /* Counter Group 1 (RMON-QFETCH) Interrupt Enable */
2296 +// XRX200_BM_IER_CNT0, /* Counter Group 0 (RMON-QSTOR) Interrupt Enable */
2297 +// XRX200_BM_IER_DEQ, /* PQM dequeue Interrupt Enable */
2298 +// XRX200_BM_IER_ENQ, /* PQM Enqueue Interrupt Enable */
2299 +// XRX200_BM_IER_FSQM, /* Buffer Empty Interrupt Enable */
2300 +// XRX200_BM_ISR, /* Buffer Manager Global InterruptStatus Register */
2301 +// XRX200_BM_ISR_CNT4, /* Counter Group 4 Interrupt */
2302 +// XRX200_BM_ISR_CNT3, /* Counter Group 3 Interrupt */
2303 +// XRX200_BM_ISR_CNT2, /* Counter Group 2 Interrupt */
2304 +// XRX200_BM_ISR_CNT1, /* Counter Group 1 Interrupt */
2305 +// XRX200_BM_ISR_CNT0, /* Counter Group 0 Interrupt */
2306 +// XRX200_BM_ISR_DEQ, /* PQM dequeue Interrupt Enable */
2307 +// XRX200_BM_ISR_ENQ, /* PQM Enqueue Interrupt */
2308 +// XRX200_BM_ISR_FSQM, /* Buffer Empty Interrupt */
2309 +// XRX200_BM_CISEL, /* Buffer Manager RMON CounterInterrupt Select Register */
2310 +// XRX200_BM_CISEL_PORT, /* Port Number */
2311 +// XRX200_BM_DEBUG_CTRL_DBG, /* Debug Control Register */
2312 +// XRX200_BM_DEBUG_CTRL_DBG_SEL, /* Select Signal for Debug Multiplexer */
2313 +// XRX200_BM_DEBUG_VAL_DBG, /* Debug Value Register */
2314 +// XRX200_BM_DEBUG_VAL_DBG_DAT, /* Debug Data Value */
2315 +// XRX200_BM_PCFG, /* Buffer Manager PortConfiguration Register */
2316 +// XRX200_BM_PCFG_CNTEN, /* RMON Counter Enable */
2317 +// XRX200_BM_RMON_CTRL_RAM1, /* Buffer ManagerRMON Control Register */
2318 +// XRX200_BM_RMON_CTRL_RAM2_RES, /* Software Reset for RMON RAM2 */
2319 +// XRX200_BM_RMON_CTRL_RAM1_RES, /* Software Reset for RMON RAM1 */
2320 +// XRX200_PQM_DP, /* Packet Queue ManagerDrop Probability Register */
2321 +// XRX200_PQM_DP_DPROB, /* Drop Probability Profile */
2322 +// XRX200_PQM_RS, /* Packet Queue ManagerRate Shaper Assignment Register */
2323 +// XRX200_PQM_RS_EN2, /* Rate Shaper 2 Enable */
2324 +// XRX200_PQM_RS_RS2, /* Rate Shaper 2 */
2325 +// XRX200_PQM_RS_EN1, /* Rate Shaper 1 Enable */
2326 +// XRX200_PQM_RS_RS1, /* Rate Shaper 1 */
2327 +// XRX200_RS_CTRL, /* Rate Shaper ControlRegister */
2328 +// XRX200_RS_CTRL_RSEN, /* Rate Shaper Enable */
2329 +// XRX200_RS_CBS, /* Rate Shaper CommittedBurst Size Register */
2330 +// XRX200_RS_CBS_CBS, /* Committed Burst Size */
2331 +// XRX200_RS_IBS, /* Rate Shaper InstantaneousBurst Size Register */
2332 +// XRX200_RS_IBS_IBS, /* Instantaneous Burst Size */
2333 +// XRX200_RS_CIR_EXP, /* Rate Shaper RateExponent Register */
2334 +// XRX200_RS_CIR_EXP_EXP, /* Exponent */
2335 +// XRX200_RS_CIR_MANT, /* Rate Shaper RateMantissa Register */
2336 +// XRX200_RS_CIR_MANT_MANT, /* Mantissa */
2337 + XRX200_PCE_TBL_KEY_7, /* Table Key Data 7 */
2338 +// XRX200_PCE_TBL_KEY_7_KEY7, /* Key Value[15:0] */
2339 + XRX200_PCE_TBL_KEY_6, /* Table Key Data 6 */
2340 +// XRX200_PCE_TBL_KEY_6_KEY6, /* Key Value[15:0] */
2341 + XRX200_PCE_TBL_KEY_5, /* Table Key Data 5 */
2342 +// XRX200_PCE_TBL_KEY_5_KEY5, /* Key Value[15:0] */
2343 + XRX200_PCE_TBL_KEY_4, /* Table Key Data 4 */
2344 +// XRX200_PCE_TBL_KEY_4_KEY4, /* Key Value[15:0] */
2345 + XRX200_PCE_TBL_KEY_3, /* Table Key Data 3 */
2346 +// XRX200_PCE_TBL_KEY_3_KEY3, /* Key Value[15:0] */
2347 + XRX200_PCE_TBL_KEY_2, /* Table Key Data 2 */
2348 +// XRX200_PCE_TBL_KEY_2_KEY2, /* Key Value[15:0] */
2349 + XRX200_PCE_TBL_KEY_1, /* Table Key Data 1 */
2350 +// XRX200_PCE_TBL_KEY_1_KEY1, /* Key Value[31:16] */
2351 + XRX200_PCE_TBL_KEY_0, /* Table Key Data 0 */
2352 +// XRX200_PCE_TBL_KEY_0_KEY0, /* Key Value[15:0] */
2353 + XRX200_PCE_TBL_MASK_0, /* Table Mask Write Register0 */
2354 +// XRX200_PCE_TBL_MASK_0_MASK0, /* Mask Pattern [15:0] */
2355 + XRX200_PCE_TBL_VAL_4, /* Table Value Register4 */
2356 +// XRX200_PCE_TBL_VAL_4_VAL4, /* Data value [15:0] */
2357 + XRX200_PCE_TBL_VAL_3, /* Table Value Register3 */
2358 +// XRX200_PCE_TBL_VAL_3_VAL3, /* Data value [15:0] */
2359 + XRX200_PCE_TBL_VAL_2, /* Table Value Register2 */
2360 +// XRX200_PCE_TBL_VAL_2_VAL2, /* Data value [15:0] */
2361 + XRX200_PCE_TBL_VAL_1, /* Table Value Register1 */
2362 +// XRX200_PCE_TBL_VAL_1_VAL1, /* Data value [15:0] */
2363 + XRX200_PCE_TBL_VAL_0, /* Table Value Register0 */
2364 +// XRX200_PCE_TBL_VAL_0_VAL0, /* Data value [15:0] */
2365 +// XRX200_PCE_TBL_ADDR, /* Table Entry AddressRegister */
2366 + XRX200_PCE_TBL_ADDR_ADDR, /* Table Address */
2367 +// XRX200_PCE_TBL_CTRL, /* Table Access ControlRegister */
2368 + XRX200_PCE_TBL_CTRL_BAS, /* Access Busy/Access Start */
2369 + XRX200_PCE_TBL_CTRL_TYPE, /* Lookup Entry Type */
2370 + XRX200_PCE_TBL_CTRL_VLD, /* Lookup Entry Valid */
2371 + XRX200_PCE_TBL_CTRL_GMAP, /* Group Map */
2372 + XRX200_PCE_TBL_CTRL_OPMOD, /* Lookup Table Access Operation Mode */
2373 + XRX200_PCE_TBL_CTRL_ADDR, /* Lookup Table Address */
2374 +// XRX200_PCE_TBL_STAT, /* Table General StatusRegister */
2375 +// XRX200_PCE_TBL_STAT_TBUSY, /* Table Access Busy */
2376 +// XRX200_PCE_TBL_STAT_TEMPT, /* Table Empty */
2377 +// XRX200_PCE_TBL_STAT_TFUL, /* Table Full */
2378 +// XRX200_PCE_AGE_0, /* Aging Counter ConfigurationRegister 0 */
2379 +// XRX200_PCE_AGE_0_EXP, /* Aging Counter Exponent Value */
2380 +// XRX200_PCE_AGE_1, /* Aging Counter ConfigurationRegister 1 */
2381 +// XRX200_PCE_AGE_1_MANT, /* Aging Counter Mantissa Value */
2382 +// XRX200_PCE_PMAP_1, /* Port Map Register 1 */
2383 +// XRX200_PCE_PMAP_1_MPMAP, /* Monitoring Port Map */
2384 +// XRX200_PCE_PMAP_2, /* Port Map Register 2 */
2385 +// XRX200_PCE_PMAP_2_DMCPMAP, /* Default Multicast Port Map */
2386 +// XRX200_PCE_PMAP_3, /* Port Map Register 3 */
2387 +// XRX200_PCE_PMAP_3_UUCMAP, /* Default Unknown Unicast Port Map */
2388 +// XRX200_PCE_GCTRL_0, /* PCE Global Control Register0 */
2389 +// XRX200_PCE_GCTRL_0_IGMP, /* IGMP Mode Selection */
2390 + XRX200_PCE_GCTRL_0_VLAN, /* VLAN-aware Switching */
2391 +// XRX200_PCE_GCTRL_0_NOPM, /* No Port Map Forwarding */
2392 +// XRX200_PCE_GCTRL_0_SCONUC, /* Unknown Unicast Storm Control */
2393 +// XRX200_PCE_GCTRL_0_SCONMC, /* Multicast Storm Control */
2394 +// XRX200_PCE_GCTRL_0_SCONBC, /* Broadcast Storm Control */
2395 +// XRX200_PCE_GCTRL_0_SCONMOD, /* Storm Control Mode */
2396 +// XRX200_PCE_GCTRL_0_SCONMET, /* Storm Control Metering Instance */
2397 +// XRX200_PCE_GCTRL_0_MC_VALID, /* Access Request */
2398 +// XRX200_PCE_GCTRL_0_PLCKMOD, /* Port Lock Mode */
2399 +// XRX200_PCE_GCTRL_0_PLIMMOD, /* MAC Address Learning Limitation Mode */
2400 +// XRX200_PCE_GCTRL_0_MTFL, /* MAC Table Flushing */
2401 +// XRX200_PCE_GCTRL_1, /* PCE Global Control Register1 */
2402 +// XRX200_PCE_GCTRL_1_PCE_DIS, /* PCE Disable after currently processed packet */
2403 +// XRX200_PCE_GCTRL_1_LRNMOD, /* MAC Address Learning Mode */
2404 +// XRX200_PCE_TCM_GLOB_CTRL, /* Three-color MarkerGlobal Control Register */
2405 +// XRX200_PCE_TCM_GLOB_CTRL_DPRED, /* Re-marking Drop Precedence Red Encoding */
2406 +// XRX200_PCE_TCM_GLOB_CTRL_DPYEL, /* Re-marking Drop Precedence Yellow Encoding */
2407 +// XRX200_PCE_TCM_GLOB_CTRL_DPGRN, /* Re-marking Drop Precedence Green Encoding */
2408 +// XRX200_PCE_IGMP_CTRL, /* IGMP Control Register */
2409 +// XRX200_PCE_IGMP_CTRL_FAGEEN, /* Force Aging of Table Entries Enable */
2410 +// XRX200_PCE_IGMP_CTRL_FLEAVE, /* Fast Leave Enable */
2411 +// XRX200_PCE_IGMP_CTRL_DMRTEN, /* Default Maximum Response Time Enable */
2412 +// XRX200_PCE_IGMP_CTRL_JASUP, /* Join Aggregation Suppression Enable */
2413 +// XRX200_PCE_IGMP_CTRL_REPSUP, /* Report Suppression Enable */
2414 +// XRX200_PCE_IGMP_CTRL_SRPEN, /* Snooping of Router Port Enable */
2415 +// XRX200_PCE_IGMP_CTRL_ROB, /* Robustness Variable */
2416 +// XRX200_PCE_IGMP_CTRL_DMRT, /* IGMP Default Maximum Response Time */
2417 +// XRX200_PCE_IGMP_DRPM, /* IGMP Default RouterPort Map Register */
2418 +// XRX200_PCE_IGMP_DRPM_DRPM, /* IGMP Default Router Port Map */
2419 +// XRX200_PCE_IGMP_AGE_0, /* IGMP Aging Register0 */
2420 +// XRX200_PCE_IGMP_AGE_0_MANT, /* IGMP Group Aging Time Mantissa */
2421 +// XRX200_PCE_IGMP_AGE_0_EXP, /* IGMP Group Aging Time Exponent */
2422 +// XRX200_PCE_IGMP_AGE_1, /* IGMP Aging Register1 */
2423 +// XRX200_PCE_IGMP_AGE_1_MANT, /* IGMP Router Port Aging Time Mantissa */
2424 +// XRX200_PCE_IGMP_STAT, /* IGMP Status Register */
2425 +// XRX200_PCE_IGMP_STAT_IGPM, /* IGMP Port Map */
2426 +// XRX200_WOL_GLB_CTRL, /* Wake-on-LAN ControlRegister */
2427 +// XRX200_WOL_GLB_CTRL_PASSEN, /* WoL Password Enable */
2428 +// XRX200_WOL_DA_0, /* Wake-on-LAN DestinationAddress Register 0 */
2429 +// XRX200_WOL_DA_0_DA0, /* WoL Destination Address [15:0] */
2430 +// XRX200_WOL_DA_1, /* Wake-on-LAN DestinationAddress Register 1 */
2431 +// XRX200_WOL_DA_1_DA1, /* WoL Destination Address [31:16] */
2432 +// XRX200_WOL_DA_2, /* Wake-on-LAN DestinationAddress Register 2 */
2433 +// XRX200_WOL_DA_2_DA2, /* WoL Destination Address [47:32] */
2434 +// XRX200_WOL_PW_0, /* Wake-on-LAN Password Register0 */
2435 +// XRX200_WOL_PW_0_PW0, /* WoL Password [15:0] */
2436 +// XRX200_WOL_PW_1, /* Wake-on-LAN Password Register1 */
2437 +// XRX200_WOL_PW_1_PW1, /* WoL Password [31:16] */
2438 +// XRX200_WOL_PW_2, /* Wake-on-LAN Password Register2 */
2439 +// XRX200_WOL_PW_2_PW2, /* WoL Password [47:32] */
2440 +// XRX200_PCE_IER_0_PINT, /* Parser and ClassificationEngine Global Interrupt Enable Register 0 */
2441 +// XRX200_PCE_IER_0_PINT_15, /* Port Interrupt Enable */
2442 +// XRX200_PCE_IER_0_PINT_14, /* Port Interrupt Enable */
2443 +// XRX200_PCE_IER_0_PINT_13, /* Port Interrupt Enable */
2444 +// XRX200_PCE_IER_0_PINT_12, /* Port Interrupt Enable */
2445 +// XRX200_PCE_IER_0_PINT_11, /* Port Interrupt Enable */
2446 +// XRX200_PCE_IER_0_PINT_10, /* Port Interrupt Enable */
2447 +// XRX200_PCE_IER_0_PINT_9, /* Port Interrupt Enable */
2448 +// XRX200_PCE_IER_0_PINT_8, /* Port Interrupt Enable */
2449 +// XRX200_PCE_IER_0_PINT_7, /* Port Interrupt Enable */
2450 +// XRX200_PCE_IER_0_PINT_6, /* Port Interrupt Enable */
2451 +// XRX200_PCE_IER_0_PINT_5, /* Port Interrupt Enable */
2452 +// XRX200_PCE_IER_0_PINT_4, /* Port Interrupt Enable */
2453 +// XRX200_PCE_IER_0_PINT_3, /* Port Interrupt Enable */
2454 +// XRX200_PCE_IER_0_PINT_2, /* Port Interrupt Enable */
2455 +// XRX200_PCE_IER_0_PINT_1, /* Port Interrupt Enable */
2456 +// XRX200_PCE_IER_0_PINT_0, /* Port Interrupt Enable */
2457 +// XRX200_PCE_IER_1, /* Parser and ClassificationEngine Global Interrupt Enable Register 1 */
2458 +// XRX200_PCE_IER_1_FLOWINT, /* Traffic Flow Table Interrupt Rule matched Interrupt Enable */
2459 +// XRX200_PCE_IER_1_CPH2, /* Classification Phase 2 Ready Interrupt Enable */
2460 +// XRX200_PCE_IER_1_CPH1, /* Classification Phase 1 Ready Interrupt Enable */
2461 +// XRX200_PCE_IER_1_CPH0, /* Classification Phase 0 Ready Interrupt Enable */
2462 +// XRX200_PCE_IER_1_PRDY, /* Parser Ready Interrupt Enable */
2463 +// XRX200_PCE_IER_1_IGTF, /* IGMP Table Full Interrupt Enable */
2464 +// XRX200_PCE_IER_1_MTF, /* MAC Table Full Interrupt Enable */
2465 +// XRX200_PCE_ISR_0_PINT, /* Parser and ClassificationEngine Global Interrupt Status Register 0 */
2466 +// XRX200_PCE_ISR_0_PINT_15, /* Port Interrupt */
2467 +// XRX200_PCE_ISR_0_PINT_14, /* Port Interrupt */
2468 +// XRX200_PCE_ISR_0_PINT_13, /* Port Interrupt */
2469 +// XRX200_PCE_ISR_0_PINT_12, /* Port Interrupt */
2470 +// XRX200_PCE_ISR_0_PINT_11, /* Port Interrupt */
2471 +// XRX200_PCE_ISR_0_PINT_10, /* Port Interrupt */
2472 +// XRX200_PCE_ISR_0_PINT_9, /* Port Interrupt */
2473 +// XRX200_PCE_ISR_0_PINT_8, /* Port Interrupt */
2474 +// XRX200_PCE_ISR_0_PINT_7, /* Port Interrupt */
2475 +// XRX200_PCE_ISR_0_PINT_6, /* Port Interrupt */
2476 +// XRX200_PCE_ISR_0_PINT_5, /* Port Interrupt */
2477 +// XRX200_PCE_ISR_0_PINT_4, /* Port Interrupt */
2478 +// XRX200_PCE_ISR_0_PINT_3, /* Port Interrupt */
2479 +// XRX200_PCE_ISR_0_PINT_2, /* Port Interrupt */
2480 +// XRX200_PCE_ISR_0_PINT_1, /* Port Interrupt */
2481 +// XRX200_PCE_ISR_0_PINT_0, /* Port Interrupt */
2482 +// XRX200_PCE_ISR_1, /* Parser and ClassificationEngine Global Interrupt Status Register 1 */
2483 +// XRX200_PCE_ISR_1_FLOWINT, /* Traffic Flow Table Interrupt Rule matched */
2484 +// XRX200_PCE_ISR_1_CPH2, /* Classification Phase 2 Ready Interrupt */
2485 +// XRX200_PCE_ISR_1_CPH1, /* Classification Phase 1 Ready Interrupt */
2486 +// XRX200_PCE_ISR_1_CPH0, /* Classification Phase 0 Ready Interrupt */
2487 +// XRX200_PCE_ISR_1_PRDY, /* Parser Ready Interrupt */
2488 +// XRX200_PCE_ISR_1_IGTF, /* IGMP Table Full Interrupt */
2489 +// XRX200_PCE_ISR_1_MTF, /* MAC Table Full Interrupt */
2490 +// XRX200_PARSER_STAT_FIFO, /* Parser Status Register */
2491 +// XRX200_PARSER_STAT_FSM_DAT_CNT, /* Parser FSM Data Counter */
2492 +// XRX200_PARSER_STAT_FSM_STATE, /* Parser FSM State */
2493 +// XRX200_PARSER_STAT_PKT_ERR, /* Packet error detected */
2494 +// XRX200_PARSER_STAT_FSM_FIN, /* Parser FSM finished */
2495 +// XRX200_PARSER_STAT_FSM_START, /* Parser FSM start */
2496 +// XRX200_PARSER_STAT_FIFO_RDY, /* Parser FIFO ready for read. */
2497 +// XRX200_PARSER_STAT_FIFO_FULL, /* Parser */
2498 +// XRX200_PCE_PCTRL_0, /* PCE Port ControlRegister 0 */
2499 +// XRX200_PCE_PCTRL_0_MCST, /* Multicast Forwarding Mode Selection */
2500 +// XRX200_PCE_PCTRL_0_EGSTEN, /* Table-based Egress Special Tag Enable */
2501 +// XRX200_PCE_PCTRL_0_IGSTEN, /* Ingress Special Tag Enable */
2502 +// XRX200_PCE_PCTRL_0_PCPEN, /* PCP Remarking Mode */
2503 +// XRX200_PCE_PCTRL_0_CLPEN, /* Class Remarking Mode */
2504 +// XRX200_PCE_PCTRL_0_DPEN, /* Drop Precedence Remarking Mode */
2505 +// XRX200_PCE_PCTRL_0_CMOD, /* Three-color Marker Color Mode */
2506 +// XRX200_PCE_PCTRL_0_VREP, /* VLAN Replacement Mode */
2507 + XRX200_PCE_PCTRL_0_TVM, /* Transparent VLAN Mode */
2508 +// XRX200_PCE_PCTRL_0_PLOCK, /* Port Locking Enable */
2509 +// XRX200_PCE_PCTRL_0_AGEDIS, /* Aging Disable */
2510 +// XRX200_PCE_PCTRL_0_PSTATE, /* Port State */
2511 +// XRX200_PCE_PCTRL_1, /* PCE Port ControlRegister 1 */
2512 +// XRX200_PCE_PCTRL_1_LRNLIM, /* MAC Address Learning Limit */
2513 +// XRX200_PCE_PCTRL_2, /* PCE Port ControlRegister 2 */
2514 +// XRX200_PCE_PCTRL_2_DSCPMOD, /* DSCP Mode Selection */
2515 +// XRX200_PCE_PCTRL_2_DSCP, /* Enable DSCP to select the Class of Service */
2516 +// XRX200_PCE_PCTRL_2_PCP, /* Enable VLAN PCP to select the Class of Service */
2517 +// XRX200_PCE_PCTRL_2_PCLASS, /* Port-based Traffic Class */
2518 +// XRX200_PCE_PCTRL_3_VIO, /* PCE Port ControlRegister 3 */
2519 +// XRX200_PCE_PCTRL_3_EDIR, /* Egress Redirection Mode */
2520 +// XRX200_PCE_PCTRL_3_RXDMIR, /* Receive Mirroring Enable for dropped frames */
2521 +// XRX200_PCE_PCTRL_3_RXVMIR, /* Receive Mirroring Enable for valid frames */
2522 +// XRX200_PCE_PCTRL_3_TXMIR, /* Transmit Mirroring Enable */
2523 +// XRX200_PCE_PCTRL_3_VIO_7, /* Violation Type 7 Mirroring Enable */
2524 +// XRX200_PCE_PCTRL_3_VIO_6, /* Violation Type 6 Mirroring Enable */
2525 +// XRX200_PCE_PCTRL_3_VIO_5, /* Violation Type 5 Mirroring Enable */
2526 +// XRX200_PCE_PCTRL_3_VIO_4, /* Violation Type 4 Mirroring Enable */
2527 +// XRX200_PCE_PCTRL_3_VIO_3, /* Violation Type 3 Mirroring Enable */
2528 +// XRX200_PCE_PCTRL_3_VIO_2, /* Violation Type 2 Mirroring Enable */
2529 +// XRX200_PCE_PCTRL_3_VIO_1, /* Violation Type 1 Mirroring Enable */
2530 +// XRX200_PCE_PCTRL_3_VIO_0, /* Violation Type 0 Mirroring Enable */
2531 +// XRX200_WOL_CTRL, /* Wake-on-LAN ControlRegister */
2532 +// XRX200_WOL_CTRL_PORT, /* WoL Enable */
2533 +// XRX200_PCE_VCTRL, /* PCE VLAN ControlRegister */
2534 + XRX200_PCE_VCTRL_VSR, /* VLAN Security Rule */
2535 + XRX200_PCE_VCTRL_VEMR, /* VLAN Egress Member Violation Rule */
2536 + XRX200_PCE_VCTRL_VIMR, /* VLAN Ingress Member Violation Rule */
2537 + XRX200_PCE_VCTRL_VINR, /* VLAN Ingress Tag Rule */
2538 + XRX200_PCE_VCTRL_UVR, /* Unknown VLAN Rule */
2539 +// XRX200_PCE_DEFPVID, /* PCE Default PortVID Register */
2540 + XRX200_PCE_DEFPVID_PVID, /* Default Port VID Index */
2541 +// XRX200_PCE_PSTAT, /* PCE Port StatusRegister */
2542 +// XRX200_PCE_PSTAT_LRNCNT, /* Learning Count */
2543 +// XRX200_PCE_PIER, /* Parser and ClassificationEngine Port Interrupt Enable Register */
2544 +// XRX200_PCE_PIER_CLDRP, /* Classification Drop Interrupt Enable */
2545 +// XRX200_PCE_PIER_PTDRP, /* Port Drop Interrupt Enable */
2546 +// XRX200_PCE_PIER_VLAN, /* VLAN Violation Interrupt Enable */
2547 +// XRX200_PCE_PIER_WOL, /* Wake-on-LAN Interrupt Enable */
2548 +// XRX200_PCE_PIER_LOCK, /* Port Limit Alert Interrupt Enable */
2549 +// XRX200_PCE_PIER_LIM, /* Port Lock Alert Interrupt Enable */
2550 +// XRX200_PCE_PISR, /* Parser and ClassificationEngine Port Interrupt Status Register */
2551 +// XRX200_PCE_PISR_CLDRP, /* Classification Drop Interrupt */
2552 +// XRX200_PCE_PISR_PTDRP, /* Port Drop Interrupt */
2553 +// XRX200_PCE_PISR_VLAN, /* VLAN Violation Interrupt */
2554 +// XRX200_PCE_PISR_WOL, /* Wake-on-LAN Interrupt */
2555 +// XRX200_PCE_PISR_LOCK, /* Port Lock Alert Interrupt */
2556 +// XRX200_PCE_PISR_LIMIT, /* Port Limitation Alert Interrupt */
2557 +// XRX200_PCE_TCM_CTRL, /* Three-colorMarker Control Register */
2558 +// XRX200_PCE_TCM_CTRL_TCMEN, /* Three-color Marker metering instance enable */
2559 +// XRX200_PCE_TCM_STAT, /* Three-colorMarker Status Register */
2560 +// XRX200_PCE_TCM_STAT_AL1, /* Three-color Marker Alert 1 Status */
2561 +// XRX200_PCE_TCM_STAT_AL0, /* Three-color Marker Alert 0 Status */
2562 +// XRX200_PCE_TCM_CBS, /* Three-color MarkerCommitted Burst Size Register */
2563 +// XRX200_PCE_TCM_CBS_CBS, /* Committed Burst Size */
2564 +// XRX200_PCE_TCM_EBS, /* Three-color MarkerExcess Burst Size Register */
2565 +// XRX200_PCE_TCM_EBS_EBS, /* Excess Burst Size */
2566 +// XRX200_PCE_TCM_IBS, /* Three-color MarkerInstantaneous Burst Size Register */
2567 +// XRX200_PCE_TCM_IBS_IBS, /* Instantaneous Burst Size */
2568 +// XRX200_PCE_TCM_CIR_MANT, /* Three-colorMarker Constant Information Rate Mantissa Register */
2569 +// XRX200_PCE_TCM_CIR_MANT_MANT, /* Rate Counter Mantissa */
2570 +// XRX200_PCE_TCM_CIR_EXP, /* Three-colorMarker Constant Information Rate Exponent Register */
2571 +// XRX200_PCE_TCM_CIR_EXP_EXP, /* Rate Counter Exponent */
2572 +// XRX200_MAC_TEST, /* MAC Test Register */
2573 +// XRX200_MAC_TEST_JTP, /* Jitter Test Pattern */
2574 +// XRX200_MAC_PFAD_CFG, /* MAC Pause FrameSource Address Configuration Register */
2575 +// XRX200_MAC_PFAD_CFG_SAMOD, /* Source Address Mode */
2576 +// XRX200_MAC_PFSA_0, /* Pause Frame SourceAddress Part 0 */
2577 +// XRX200_MAC_PFSA_0_PFAD, /* Pause Frame Source Address Part 0 */
2578 +// XRX200_MAC_PFSA_1, /* Pause Frame SourceAddress Part 1 */
2579 +// XRX200_MAC_PFSA_1_PFAD, /* Pause Frame Source Address Part 1 */
2580 +// XRX200_MAC_PFSA_2, /* Pause Frame SourceAddress Part 2 */
2581 +// XRX200_MAC_PFSA_2_PFAD, /* Pause Frame Source Address Part 2 */
2582 +// XRX200_MAC_FLEN, /* MAC Frame Length Register */
2583 +// XRX200_MAC_FLEN_LEN, /* Maximum Frame Length */
2584 +// XRX200_MAC_VLAN_ETYPE_0, /* MAC VLAN EthertypeRegister 0 */
2585 +// XRX200_MAC_VLAN_ETYPE_0_OUTER, /* Ethertype */
2586 +// XRX200_MAC_VLAN_ETYPE_1, /* MAC VLAN EthertypeRegister 1 */
2587 +// XRX200_MAC_VLAN_ETYPE_1_INNER, /* Ethertype */
2588 +// XRX200_MAC_IER, /* MAC Interrupt EnableRegister */
2589 +// XRX200_MAC_IER_MACIEN, /* MAC Interrupt Enable */
2590 +// XRX200_MAC_ISR, /* MAC Interrupt StatusRegister */
2591 +// XRX200_MAC_ISR_MACINT, /* MAC Interrupt */
2592 +// XRX200_MAC_PSTAT, /* MAC Port Status Register */
2593 +// XRX200_MAC_PSTAT_PACT, /* PHY Active Status */
2594 + XRX200_MAC_PSTAT_GBIT, /* Gigabit Speed Status */
2595 + XRX200_MAC_PSTAT_MBIT, /* Megabit Speed Status */
2596 + XRX200_MAC_PSTAT_FDUP, /* Full Duplex Status */
2597 +// XRX200_MAC_PSTAT_RXPAU, /* Receive Pause Status */
2598 +// XRX200_MAC_PSTAT_TXPAU, /* Transmit Pause Status */
2599 +// XRX200_MAC_PSTAT_RXPAUEN, /* Receive Pause Enable Status */
2600 +// XRX200_MAC_PSTAT_TXPAUEN, /* Transmit Pause Enable Status */
2601 + XRX200_MAC_PSTAT_LSTAT, /* Link Status */
2602 +// XRX200_MAC_PSTAT_CRS, /* Carrier Sense Status */
2603 +// XRX200_MAC_PSTAT_TXLPI, /* Transmit Low-power Idle Status */
2604 +// XRX200_MAC_PSTAT_RXLPI, /* Receive Low-power Idle Status */
2605 +// XRX200_MAC_PISR, /* MAC Interrupt Status Register */
2606 +// XRX200_MAC_PISR_PACT, /* PHY Active Status */
2607 +// XRX200_MAC_PISR_SPEED, /* Megabit Speed Status */
2608 +// XRX200_MAC_PISR_FDUP, /* Full Duplex Status */
2609 +// XRX200_MAC_PISR_RXPAUEN, /* Receive Pause Enable Status */
2610 +// XRX200_MAC_PISR_TXPAUEN, /* Transmit Pause Enable Status */
2611 +// XRX200_MAC_PISR_LPIOFF, /* Receive Low-power Idle Mode is left */
2612 +// XRX200_MAC_PISR_LPION, /* Receive Low-power Idle Mode is entered */
2613 +// XRX200_MAC_PISR_JAM, /* Jam Status Detected */
2614 +// XRX200_MAC_PISR_TOOSHORT, /* Too Short Frame Error Detected */
2615 +// XRX200_MAC_PISR_TOOLONG, /* Too Long Frame Error Detected */
2616 +// XRX200_MAC_PISR_LENERR, /* Length Mismatch Error Detected */
2617 +// XRX200_MAC_PISR_FCSERR, /* Frame Checksum Error Detected */
2618 +// XRX200_MAC_PISR_TXPAUSE, /* Pause Frame Transmitted */
2619 +// XRX200_MAC_PISR_RXPAUSE, /* Pause Frame Received */
2620 +// XRX200_MAC_PIER, /* MAC Interrupt Enable Register */
2621 +// XRX200_MAC_PIER_PACT, /* PHY Active Status */
2622 +// XRX200_MAC_PIER_SPEED, /* Megabit Speed Status */
2623 +// XRX200_MAC_PIER_FDUP, /* Full Duplex Status */
2624 +// XRX200_MAC_PIER_RXPAUEN, /* Receive Pause Enable Status */
2625 +// XRX200_MAC_PIER_TXPAUEN, /* Transmit Pause Enable Status */
2626 +// XRX200_MAC_PIER_LPIOFF, /* Low-power Idle Off Interrupt Mask */
2627 +// XRX200_MAC_PIER_LPION, /* Low-power Idle On Interrupt Mask */
2628 +// XRX200_MAC_PIER_JAM, /* Jam Status Interrupt Mask */
2629 +// XRX200_MAC_PIER_TOOSHORT, /* Too Short Frame Error Interrupt Mask */
2630 +// XRX200_MAC_PIER_TOOLONG, /* Too Long Frame Error Interrupt Mask */
2631 +// XRX200_MAC_PIER_LENERR, /* Length Mismatch Error Interrupt Mask */
2632 +// XRX200_MAC_PIER_FCSERR, /* Frame Checksum Error Interrupt Mask */
2633 +// XRX200_MAC_PIER_TXPAUSE, /* Transmit Pause Frame Interrupt Mask */
2634 +// XRX200_MAC_PIER_RXPAUSE, /* Receive Pause Frame Interrupt Mask */
2635 +// XRX200_MAC_CTRL_0, /* MAC Control Register0 */
2636 +// XRX200_MAC_CTRL_0_LCOL, /* Late Collision Control */
2637 +// XRX200_MAC_CTRL_0_BM, /* Burst Mode Control */
2638 +// XRX200_MAC_CTRL_0_APADEN, /* Automatic VLAN Padding Enable */
2639 +// XRX200_MAC_CTRL_0_VPAD2EN, /* Stacked VLAN Padding Enable */
2640 +// XRX200_MAC_CTRL_0_VPADEN, /* VLAN Padding Enable */
2641 +// XRX200_MAC_CTRL_0_PADEN, /* Padding Enable */
2642 +// XRX200_MAC_CTRL_0_FCS, /* Transmit FCS Control */
2643 + XRX200_MAC_CTRL_0_FCON, /* Flow Control Mode */
2644 +// XRX200_MAC_CTRL_0_FDUP, /* Full Duplex Control */
2645 +// XRX200_MAC_CTRL_0_GMII, /* GMII/MII interface mode selection */
2646 +// XRX200_MAC_CTRL_1, /* MAC Control Register1 */
2647 +// XRX200_MAC_CTRL_1_SHORTPRE, /* Short Preamble Control */
2648 +// XRX200_MAC_CTRL_1_IPG, /* Minimum Inter Packet Gap Size */
2649 +// XRX200_MAC_CTRL_2, /* MAC Control Register2 */
2650 +// XRX200_MAC_CTRL_2_MLEN, /* Maximum Untagged Frame Length */
2651 +// XRX200_MAC_CTRL_2_LCHKL, /* Frame Length Check Long Enable */
2652 +// XRX200_MAC_CTRL_2_LCHKS, /* Frame Length Check Short Enable */
2653 +// XRX200_MAC_CTRL_3, /* MAC Control Register3 */
2654 +// XRX200_MAC_CTRL_3_RCNT, /* Retry Count */
2655 +// XRX200_MAC_CTRL_4, /* MAC Control Register4 */
2656 +// XRX200_MAC_CTRL_4_LPIEN, /* LPI Mode Enable */
2657 +// XRX200_MAC_CTRL_4_WAIT, /* LPI Wait Time */
2658 +// XRX200_MAC_CTRL_5_PJPS, /* MAC Control Register5 */
2659 +// XRX200_MAC_CTRL_5_PJPS_NOBP, /* Prolonged Jam pattern size during no-backpressure state */
2660 +// XRX200_MAC_CTRL_5_PJPS_BP, /* Prolonged Jam pattern size during backpressure state */
2661 +// XRX200_MAC_CTRL_6_XBUF, /* Transmit and ReceiveBuffer Control Register */
2662 +// XRX200_MAC_CTRL_6_RBUF_DLY_WP, /* Delay */
2663 +// XRX200_MAC_CTRL_6_RBUF_INIT, /* Receive Buffer Initialization */
2664 +// XRX200_MAC_CTRL_6_RBUF_BYPASS, /* Bypass the Receive Buffer */
2665 +// XRX200_MAC_CTRL_6_XBUF_DLY_WP, /* Delay */
2666 +// XRX200_MAC_CTRL_6_XBUF_INIT, /* Initialize the Transmit Buffer */
2667 +// XRX200_MAC_CTRL_6_XBUF_BYPASS, /* Bypass the Transmit Buffer */
2668 +// XRX200_MAC_BUFST_XBUF, /* MAC Receive and TransmitBuffer Status Register */
2669 +// XRX200_MAC_BUFST_RBUF_UFL, /* Receive Buffer Underflow Indicator */
2670 +// XRX200_MAC_BUFST_RBUF_OFL, /* Receive Buffer Overflow Indicator */
2671 +// XRX200_MAC_BUFST_XBUF_UFL, /* Transmit Buffer Underflow Indicator */
2672 +// XRX200_MAC_BUFST_XBUF_OFL, /* Transmit Buffer Overflow Indicator */
2673 +// XRX200_MAC_TESTEN, /* MAC Test Enable Register */
2674 +// XRX200_MAC_TESTEN_JTEN, /* Jitter Test Enable */
2675 +// XRX200_MAC_TESTEN_TXER, /* Transmit Error Insertion */
2676 +// XRX200_MAC_TESTEN_LOOP, /* MAC Loopback Enable */
2677 +// XRX200_FDMA_CTRL, /* Ethernet Switch FetchDMA Control Register */
2678 +// XRX200_FDMA_CTRL_LPI_THRESHOLD, /* Low Power Idle Threshold */
2679 +// XRX200_FDMA_CTRL_LPI_MODE, /* Low Power Idle Mode */
2680 +// XRX200_FDMA_CTRL_EGSTAG, /* Egress Special Tag Size */
2681 +// XRX200_FDMA_CTRL_IGSTAG, /* Ingress Special Tag Size */
2682 +// XRX200_FDMA_CTRL_EXCOL, /* Excessive Collision Handling */
2683 +// XRX200_FDMA_STETYPE, /* Special Tag EthertypeControl Register */
2684 +// XRX200_FDMA_STETYPE_ETYPE, /* Special Tag Ethertype */
2685 +// XRX200_FDMA_VTETYPE, /* VLAN Tag EthertypeControl Register */
2686 +// XRX200_FDMA_VTETYPE_ETYPE, /* VLAN Tag Ethertype */
2687 +// XRX200_FDMA_STAT_0, /* FDMA Status Register0 */
2688 +// XRX200_FDMA_STAT_0_FSMS, /* FSM states status */
2689 +// XRX200_FDMA_IER, /* Fetch DMA Global InterruptEnable Register */
2690 +// XRX200_FDMA_IER_PCKD, /* Packet Drop Interrupt Enable */
2691 +// XRX200_FDMA_IER_PCKR, /* Packet Ready Interrupt Enable */
2692 +// XRX200_FDMA_IER_PCKT, /* Packet Sent Interrupt Enable */
2693 +// XRX200_FDMA_ISR, /* Fetch DMA Global InterruptStatus Register */
2694 +// XRX200_FDMA_ISR_PCKTD, /* Packet Drop */
2695 +// XRX200_FDMA_ISR_PCKR, /* Packet is Ready for Transmission */
2696 +// XRX200_FDMA_ISR_PCKT, /* Packet Sent Event */
2697 +// XRX200_FDMA_PCTRL, /* Ethernet SwitchFetch DMA Port Control Register */
2698 +// XRX200_FDMA_PCTRL_VLANMOD, /* VLAN Modification Enable */
2699 +// XRX200_FDMA_PCTRL_DSCPRM, /* DSCP Re-marking Enable */
2700 +// XRX200_FDMA_PCTRL_STEN, /* Special Tag Insertion Enable */
2701 +// XRX200_FDMA_PCTRL_EN, /* FDMA Port Enable */
2702 +// XRX200_FDMA_PRIO, /* Ethernet SwitchFetch DMA Port Priority Register */
2703 +// XRX200_FDMA_PRIO_PRIO, /* FDMA PRIO */
2704 +// XRX200_FDMA_PSTAT0, /* Ethernet SwitchFetch DMA Port Status Register 0 */
2705 +// XRX200_FDMA_PSTAT0_PKT_AVAIL, /* Port Egress Packet Available */
2706 +// XRX200_FDMA_PSTAT0_POK, /* Port Status OK */
2707 +// XRX200_FDMA_PSTAT0_PSEG, /* Port Egress Segment Count */
2708 +// XRX200_FDMA_PSTAT1_HDR, /* Ethernet SwitchFetch DMA Port Status Register 1 */
2709 +// XRX200_FDMA_PSTAT1_HDR_PTR, /* Header Pointer */
2710 +// XRX200_FDMA_TSTAMP0, /* Egress TimeStamp Register 0 */
2711 +// XRX200_FDMA_TSTAMP0_TSTL, /* Time Stamp [15:0] */
2712 +// XRX200_FDMA_TSTAMP1, /* Egress TimeStamp Register 1 */
2713 +// XRX200_FDMA_TSTAMP1_TSTH, /* Time Stamp [31:16] */
2714 +// XRX200_SDMA_CTRL, /* Ethernet Switch StoreDMA Control Register */
2715 +// XRX200_SDMA_CTRL_TSTEN, /* Time Stamp Enable */
2716 +// XRX200_SDMA_FCTHR1, /* SDMA Flow Control Threshold1 Register */
2717 +// XRX200_SDMA_FCTHR1_THR1, /* Threshold 1 */
2718 +// XRX200_SDMA_FCTHR2, /* SDMA Flow Control Threshold2 Register */
2719 +// XRX200_SDMA_FCTHR2_THR2, /* Threshold 2 */
2720 +// XRX200_SDMA_FCTHR3, /* SDMA Flow Control Threshold3 Register */
2721 +// XRX200_SDMA_FCTHR3_THR3, /* Threshold 3 */
2722 +// XRX200_SDMA_FCTHR4, /* SDMA Flow Control Threshold4 Register */
2723 +// XRX200_SDMA_FCTHR4_THR4, /* Threshold 4 */
2724 +// XRX200_SDMA_FCTHR5, /* SDMA Flow Control Threshold5 Register */
2725 +// XRX200_SDMA_FCTHR5_THR5, /* Threshold 5 */
2726 +// XRX200_SDMA_FCTHR6, /* SDMA Flow Control Threshold6 Register */
2727 +// XRX200_SDMA_FCTHR6_THR6, /* Threshold 6 */
2728 +// XRX200_SDMA_FCTHR7, /* SDMA Flow Control Threshold7 Register */
2729 +// XRX200_SDMA_FCTHR7_THR7, /* Threshold 7 */
2730 +// XRX200_SDMA_STAT_0, /* SDMA Status Register0 */
2731 +// XRX200_SDMA_STAT_0_BPS_FILL, /* Back Pressure Status */
2732 +// XRX200_SDMA_STAT_0_BPS_PNT, /* Back Pressure Status */
2733 +// XRX200_SDMA_STAT_0_DROP, /* Back Pressure Status */
2734 +// XRX200_SDMA_STAT_1, /* SDMA Status Register1 */
2735 +// XRX200_SDMA_STAT_1_FILL, /* Buffer Filling Level */
2736 +// XRX200_SDMA_STAT_2, /* SDMA Status Register2 */
2737 +// XRX200_SDMA_STAT_2_FSMS, /* FSM states status */
2738 +// XRX200_SDMA_IER, /* SDMA Interrupt Enable Register */
2739 +// XRX200_SDMA_IER_BPEX, /* Buffer Pointers Exceeded */
2740 +// XRX200_SDMA_IER_BFULL, /* Buffer Full */
2741 +// XRX200_SDMA_IER_FERR, /* Frame Error */
2742 +// XRX200_SDMA_IER_FRX, /* Frame Received Successfully */
2743 +// XRX200_SDMA_ISR, /* SDMA Interrupt Status Register */
2744 +// XRX200_SDMA_ISR_BPEX, /* Packet Descriptors Exceeded */
2745 +// XRX200_SDMA_ISR_BFULL, /* Buffer Full */
2746 +// XRX200_SDMA_ISR_FERR, /* Frame Error */
2747 +// XRX200_SDMA_ISR_FRX, /* Frame Received Successfully */
2748 +// XRX200_SDMA_PCTRL, /* Ethernet SwitchStore DMA Port Control Register */
2749 +// XRX200_SDMA_PCTRL_DTHR, /* Drop Threshold Selection */
2750 +// XRX200_SDMA_PCTRL_PTHR, /* Pause Threshold Selection */
2751 +// XRX200_SDMA_PCTRL_PHYEFWD, /* Forward PHY Error Frames */
2752 +// XRX200_SDMA_PCTRL_ALGFWD, /* Forward Alignment Error Frames */
2753 +// XRX200_SDMA_PCTRL_LENFWD, /* Forward Length Errored Frames */
2754 +// XRX200_SDMA_PCTRL_OSFWD, /* Forward Oversized Frames */
2755 +// XRX200_SDMA_PCTRL_USFWD, /* Forward Undersized Frames */
2756 +// XRX200_SDMA_PCTRL_FCSIGN, /* Ignore FCS Errors */
2757 +// XRX200_SDMA_PCTRL_FCSFWD, /* Forward FCS Errored Frames */
2758 +// XRX200_SDMA_PCTRL_PAUFWD, /* Pause Frame Forwarding */
2759 +// XRX200_SDMA_PCTRL_MFCEN, /* Metering Flow Control Enable */
2760 +// XRX200_SDMA_PCTRL_FCEN, /* Flow Control Enable */
2761 +// XRX200_SDMA_PCTRL_PEN, /* Port Enable */
2762 +// XRX200_SDMA_PRIO, /* Ethernet SwitchStore DMA Port Priority Register */
2763 +// XRX200_SDMA_PRIO_PRIO, /* SDMA PRIO */
2764 +// XRX200_SDMA_PSTAT0_HDR, /* Ethernet SwitchStore DMA Port Status Register 0 */
2765 +// XRX200_SDMA_PSTAT0_HDR_PTR, /* Port Ingress Queue Header Pointer */
2766 +// XRX200_SDMA_PSTAT1, /* Ethernet SwitchStore DMA Port Status Register 1 */
2767 +// XRX200_SDMA_PSTAT1_PPKT, /* Port Ingress Packet Count */
2768 +// XRX200_SDMA_TSTAMP0, /* Ingress TimeStamp Register 0 */
2769 +// XRX200_SDMA_TSTAMP0_TSTL, /* Time Stamp [15:0] */
2770 +// XRX200_SDMA_TSTAMP1, /* Ingress TimeStamp Register 1 */
2771 +// XRX200_SDMA_TSTAMP1_TSTH, /* Time Stamp [31:16] */
2772 +};
2773 +
2774 +
2775 +struct xrx200sw_reg {
2776 + int offset;
2777 + int shift;
2778 + int size;
2779 + int mult;
2780 +} xrx200sw_reg[] = {
2781 +// offeset shift size mult
2782 +// {0x0000, 0, 16, 0x00}, /* XRX200_ETHSW_SWRES Ethernet Switch ResetControl Register */
2783 +// {0x0000, 1, 1, 0x00}, /* XRX200_ETHSW_SWRES_R1 Hardware Reset */
2784 +// {0x0000, 0, 1, 0x00}, /* XRX200_ETHSW_SWRES_R0 Register Configuration */
2785 +// {0x0004, 0, 16, 0x00}, /* XRX200_ETHSW_CLK_MAC_GAT Ethernet Switch Clock ControlRegister */
2786 +// {0x0004, 12, 4, 0x00}, /* XRX200_ETHSW_CLK_EXP_SLEEP Exponent to put system into sleep */
2787 +// {0x0004, 8, 4, 0x00}, /* XRX200_ETHSW_CLK_EXP_WAKE Exponent to wake up system */
2788 +// {0x0004, 7, 1, 0x00}, /* XRX200_ETHSW_CLK_CLK2_EN CLK2 Input for MAC */
2789 +// {0x0004, 6, 1, 0x00}, /* XRX200_ETHSW_CLK_EXT_DIV_EN External Clock Divider Enable */
2790 +// {0x0004, 5, 1, 0x00}, /* XRX200_ETHSW_CLK_RAM_DBG_EN Clock Gating Enable */
2791 +// {0x0004, 4, 1, 0x00}, /* XRX200_ETHSW_CLK_REG_GAT_EN Clock Gating Enable */
2792 +// {0x0004, 3, 1, 0x00}, /* XRX200_ETHSW_CLK_GAT_EN Clock Gating Enable */
2793 +// {0x0004, 2, 1, 0x00}, /* XRX200_ETHSW_CLK_MAC_GAT_EN Clock Gating Enable */
2794 +// {0x0008, 0, 16, 0x00}, /* XRX200_ETHSW_DBG_STEP Ethernet Switch Debug ControlRegister */
2795 +// {0x0008, 12, 4, 0x00}, /* XRX200_ETHSW_DBG_CLK_SEL Trigger Enable */
2796 +// {0x0008, 11, 1, 0x00}, /* XRX200_ETHSW_DBG_MON_EN Monitoring Enable */
2797 +// {0x0008, 9, 2, 0x00}, /* XRX200_ETHSW_DBG_TRIG_EN Trigger Enable */
2798 +// {0x0008, 8, 1, 0x00}, /* XRX200_ETHSW_DBG_MODE Debug Mode */
2799 +// {0x0008, 0, 8, 0x00}, /* XRX200_ETHSW_DBG_STEP_TIME Clock Step Size */
2800 +// {0x000C, 0, 16, 0x00}, /* XRX200_ETHSW_SSB_MODE Ethernet Switch SharedSegment Buffer Mode Register */
2801 +// {0x000C, 2, 4, 0x00}, /* XRX200_ETHSW_SSB_MODE_ADDE Memory Address */
2802 +// {0x000C, 0, 2, 0x00}, /* XRX200_ETHSW_SSB_MODE_MODE Memory Access Mode */
2803 +// {0x0010, 0, 16, 0x00}, /* XRX200_ETHSW_SSB_ADDR Ethernet Switch SharedSegment Buffer Address Register */
2804 +// {0x0010, 0, 16, 0x00}, /* XRX200_ETHSW_SSB_ADDR_ADDE Memory Address */
2805 +// {0x0014, 0, 16, 0x00}, /* XRX200_ETHSW_SSB_DATA Ethernet Switch SharedSegment Buffer Data Register */
2806 +// {0x0014, 0, 16, 0x00}, /* XRX200_ETHSW_SSB_DATA_DATA Data Value */
2807 +// {0x0018, 0, 16, 0x00}, /* XRX200_ETHSW_CAP_0 Ethernet Switch CapabilityRegister 0 */
2808 +// {0x0018, 0, 16, 0x00}, /* XRX200_ETHSW_CAP_0_SPEED Clock frequency */
2809 +// {0x001C, 0, 16, 0x00}, /* XRX200_ETHSW_CAP_1 Ethernet Switch CapabilityRegister 1 */
2810 +// {0x001C, 15, 1, 0x00}, /* XRX200_ETHSW_CAP_1_GMAC MAC operation mode */
2811 +// {0x001C, 8, 7, 0x00}, /* XRX200_ETHSW_CAP_1_QUEUE Number of queues */
2812 +// {0x001C, 4, 4, 0x00}, /* XRX200_ETHSW_CAP_1_VPORTS Number of virtual ports */
2813 +// {0x001C, 0, 4, 0x00}, /* XRX200_ETHSW_CAP_1_PPORTS Number of physical ports */
2814 +// {0x0020, 0, 16, 0x00}, /* XRX200_ETHSW_CAP_2 Ethernet Switch CapabilityRegister 2 */
2815 +// {0x0020, 0, 11, 0x00}, /* XRX200_ETHSW_CAP_2_PACKETS Number of packets */
2816 +// {0x0024, 0, 16, 0x00}, /* XRX200_ETHSW_CAP_3 Ethernet Switch CapabilityRegister 3 */
2817 +// {0x0024, 8, 8, 0x00}, /* XRX200_ETHSW_CAP_3_METERS Number of traffic meters */
2818 +// {0x0024, 0, 8, 0x00}, /* XRX200_ETHSW_CAP_3_SHAPERS Number of traffic shapers */
2819 +// {0x0028, 0, 16, 0x00}, /* XRX200_ETHSW_CAP_4 Ethernet Switch CapabilityRegister 4 */
2820 +// {0x0028, 8, 8, 0x00}, /* XRX200_ETHSW_CAP_4_PPPOE PPPoE table size */
2821 +// {0x0028, 0, 8, 0x00}, /* XRX200_ETHSW_CAP_4_VLAN Active VLAN table size */
2822 +// {0x002C, 0, 16, 0x00}, /* XRX200_ETHSW_CAP_5 Ethernet Switch CapabilityRegister 5 */
2823 +// {0x002C, 8, 8, 0x00}, /* XRX200_ETHSW_CAP_5_IPPLEN IP packet length table size */
2824 +// {0x002C, 0, 8, 0x00}, /* XRX200_ETHSW_CAP_5_PROT Protocol table size */
2825 +// {0x0030, 0, 16, 0x00}, /* XRX200_ETHSW_CAP_6 Ethernet Switch CapabilityRegister 6 */
2826 +// {0x0030, 8, 8, 0x00}, /* XRX200_ETHSW_CAP_6_MACDASA MAC DA/SA table size */
2827 +// {0x0030, 0, 8, 0x00}, /* XRX200_ETHSW_CAP_6_APPL Application table size */
2828 +// {0x0034, 0, 16, 0x00}, /* XRX200_ETHSW_CAP_7 Ethernet Switch CapabilityRegister 7 */
2829 +// {0x0034, 8, 8, 0x00}, /* XRX200_ETHSW_CAP_7_IPDASAM IP DA/SA MSB table size */
2830 +// {0x0034, 0, 8, 0x00}, /* XRX200_ETHSW_CAP_7_IPDASAL IP DA/SA LSB table size */
2831 +// {0x0038, 0, 16, 0x00}, /* XRX200_ETHSW_CAP_8 Ethernet Switch CapabilityRegister 8 */
2832 +// {0x0038, 0, 8, 0x00}, /* XRX200_ETHSW_CAP_8_MCAST Multicast table size */
2833 +// {0x003C, 0, 16, 0x00}, /* XRX200_ETHSW_CAP_9 Ethernet Switch CapabilityRegister 9 */
2834 +// {0x003C, 0, 8, 0x00}, /* XRX200_ETHSW_CAP_9_FLAGG Flow Aggregation table size */
2835 +// {0x0040, 0, 16, 0x00}, /* XRX200_ETHSW_CAP_10 Ethernet Switch CapabilityRegister 10 */
2836 +// {0x0040, 0, 13, 0x00}, /* XRX200_ETHSW_CAP_10_MACBT MAC bridging table size */
2837 +// {0x0044, 0, 16, 0x00}, /* XRX200_ETHSW_CAP_11 Ethernet Switch CapabilityRegister 11 */
2838 +// {0x0044, 0, 16, 0x00}, /* XRX200_ETHSW_CAP_11_BSIZEL Packet buffer size (lower part, in byte) */
2839 +// {0x0048, 0, 16, 0x00}, /* XRX200_ETHSW_CAP_12 Ethernet Switch CapabilityRegister 12 */
2840 +// {0x0048, 0, 3, 0x00}, /* XRX200_ETHSW_CAP_12_BSIZEH Packet buffer size (higher part, in byte) */
2841 +// {0x004C, 0, 16, 0x00}, /* XRX200_ETHSW_VERSION_REV Ethernet Switch VersionRegister */
2842 +// {0x004C, 8, 8, 0x00}, /* XRX200_ETHSW_VERSION_MOD_ID Module Identification */
2843 +// {0x004C, 0, 8, 0x00}, /* XRX200_ETHSW_VERSION_REV_ID Hardware Revision Identification */
2844 +// {0x0050, 0, 16, 0x00}, /* XRX200_ETHSW_IER Interrupt Enable Register */
2845 +// {0x0050, 4, 1, 0x00}, /* XRX200_ETHSW_IER_FDMAIE Fetch DMA Interrupt Enable */
2846 +// {0x0050, 3, 1, 0x00}, /* XRX200_ETHSW_IER_SDMAIE Store DMA Interrupt Enable */
2847 +// {0x0050, 2, 1, 0x00}, /* XRX200_ETHSW_IER_MACIE Ethernet MAC Interrupt Enable */
2848 +// {0x0050, 1, 1, 0x00}, /* XRX200_ETHSW_IER_PCEIE Parser and Classification Engine Interrupt Enable */
2849 +// {0x0050, 0, 1, 0x00}, /* XRX200_ETHSW_IER_BMIE Buffer Manager Interrupt Enable */
2850 +// {0x0054, 0, 16, 0x00}, /* XRX200_ETHSW_ISR Interrupt Status Register */
2851 +// {0x0054, 4, 1, 0x00}, /* XRX200_ETHSW_ISR_FDMAINT Fetch DMA Interrupt */
2852 +// {0x0054, 3, 1, 0x00}, /* XRX200_ETHSW_ISR_SDMAINT Store DMA Interrupt */
2853 +// {0x0054, 2, 1, 0x00}, /* XRX200_ETHSW_ISR_MACINT Ethernet MAC Interrupt */
2854 +// {0x0054, 1, 1, 0x00}, /* XRX200_ETHSW_ISR_PCEINT Parser and Classification Engine Interrupt */
2855 +// {0x0054, 0, 1, 0x00}, /* XRX200_ETHSW_ISR_BMINT Buffer Manager Interrupt */
2856 +// {0x0058, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_0 Ethernet Switch SpareCells 0 */
2857 +// {0x0058, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_0_SPARE SPARE0 */
2858 +// {0x005C, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_1 Ethernet Switch SpareCells 1 */
2859 +// {0x005C, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_1_SPARE SPARE1 */
2860 +// {0x0060, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_2 Ethernet Switch SpareCells 2 */
2861 +// {0x0060, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_2_SPARE SPARE2 */
2862 +// {0x0064, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_3 Ethernet Switch SpareCells 3 */
2863 +// {0x0064, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_3_SPARE SPARE3 */
2864 +// {0x0068, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_4 Ethernet Switch SpareCells 4 */
2865 +// {0x0068, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_4_SPARE SPARE4 */
2866 +// {0x006C, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_5 Ethernet Switch SpareCells 5 */
2867 +// {0x006C, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_5_SPARE SPARE5 */
2868 +// {0x0070, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_6 Ethernet Switch SpareCells 6 */
2869 +// {0x0070, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_6_SPARE SPARE6 */
2870 +// {0x0074, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_7 Ethernet Switch SpareCells 7 */
2871 +// {0x0074, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_7_SPARE SPARE7 */
2872 +// {0x0078, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_8 Ethernet Switch SpareCells 8 */
2873 +// {0x0078, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_8_SPARE SPARE8 */
2874 +// {0x007C, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_9 Ethernet Switch SpareCells 9 */
2875 +// {0x007C, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_9_SPARE SPARE9 */
2876 +// {0x0080, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_10 Ethernet Switch SpareCells 10 */
2877 +// {0x0080, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_10_SPARE SPARE10 */
2878 +// {0x0084, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_11 Ethernet Switch SpareCells 11 */
2879 +// {0x0084, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_11_SPARE SPARE11 */
2880 +// {0x0088, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_12 Ethernet Switch SpareCells 12 */
2881 +// {0x0088, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_12_SPARE SPARE12 */
2882 +// {0x008C, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_13 Ethernet Switch SpareCells 13 */
2883 +// {0x008C, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_13_SPARE SPARE13 */
2884 +// {0x0090, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_14 Ethernet Switch SpareCells 14 */
2885 +// {0x0090, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_14_SPARE SPARE14 */
2886 +// {0x0094, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_15 Ethernet Switch SpareCells 15 */
2887 +// {0x0094, 0, 16, 0x00}, /* XRX200_ETHSW_SPARE_15_SPARE SPARE15 */
2888 +// {0x0100, 0, 16, 0x00}, /* XRX200_BM_RAM_VAL_3 RAM Value Register 3 */
2889 +// {0x0100, 0, 16, 0x00}, /* XRX200_BM_RAM_VAL_3_VAL3 Data value [15:0] */
2890 +// {0x0104, 0, 16, 0x00}, /* XRX200_BM_RAM_VAL_2 RAM Value Register 2 */
2891 +// {0x0104, 0, 16, 0x00}, /* XRX200_BM_RAM_VAL_2_VAL2 Data value [15:0] */
2892 +// {0x0108, 0, 16, 0x00}, /* XRX200_BM_RAM_VAL_1 RAM Value Register 1 */
2893 +// {0x0108, 0, 16, 0x00}, /* XRX200_BM_RAM_VAL_1_VAL1 Data value [15:0] */
2894 +// {0x010C, 0, 16, 0x00}, /* XRX200_BM_RAM_VAL_0 RAM Value Register 0 */
2895 +// {0x010C, 0, 16, 0x00}, /* XRX200_BM_RAM_VAL_0_VAL0 Data value [15:0] */
2896 +// {0x0110, 0, 16, 0x00}, /* XRX200_BM_RAM_ADDR RAM Address Register */
2897 +// {0x0110, 0, 11, 0x00}, /* XRX200_BM_RAM_ADDR_ADDR RAM Address */
2898 +// {0x0114, 0, 16, 0x00}, /* XRX200_BM_RAM_CTRL RAM Access Control Register */
2899 +// {0x0114, 15, 1, 0x00}, /* XRX200_BM_RAM_CTRL_BAS Access Busy/Access Start */
2900 +// {0x0114, 5, 1, 0x00}, /* XRX200_BM_RAM_CTRL_OPMOD Lookup Table Access Operation Mode */
2901 +// {0x0114, 0, 5, 0x00}, /* XRX200_BM_RAM_CTRL_ADDR Address for RAM selection */
2902 +// {0x0118, 0, 16, 0x00}, /* XRX200_BM_FSQM_GCTRL Free Segment Queue ManagerGlobal Control Register */
2903 +// {0x0118, 0, 10, 0x00}, /* XRX200_BM_FSQM_GCTRL_SEGNUM Maximum Segment Number */
2904 +// {0x011C, 0, 16, 0x00}, /* XRX200_BM_CONS_SEG Number of Consumed SegmentsRegister */
2905 +// {0x011C, 0, 10, 0x00}, /* XRX200_BM_CONS_SEG_FSEG Number of Consumed Segments */
2906 +// {0x0120, 0, 16, 0x00}, /* XRX200_BM_CONS_PKT Number of Consumed PacketPointers Register */
2907 +// {0x0120, 0, 11, 0x00}, /* XRX200_BM_CONS_PKT_FQP Number of Consumed Packet Pointers */
2908 +// {0x0124, 0, 16, 0x00}, /* XRX200_BM_GCTRL_F Buffer Manager Global ControlRegister 0 */
2909 +// {0x0124, 13, 1, 0x00}, /* XRX200_BM_GCTRL_BM_STA Buffer Manager Initialization Status Bit */
2910 +// {0x0124, 12, 1, 0x00}, /* XRX200_BM_GCTRL_SAT RMON Counter Update Mode */
2911 +// {0x0124, 11, 1, 0x00}, /* XRX200_BM_GCTRL_FR_RBC Freeze RMON RX Bad Byte 64 Bit Counter */
2912 +// {0x0124, 10, 1, 0x00}, /* XRX200_BM_GCTRL_FR_RGC Freeze RMON RX Good Byte 64 Bit Counter */
2913 +// {0x0124, 9, 1, 0x00}, /* XRX200_BM_GCTRL_FR_TGC Freeze RMON TX Good Byte 64 Bit Counter */
2914 +// {0x0124, 8, 1, 0x00}, /* XRX200_BM_GCTRL_I_FIN RAM initialization finished */
2915 +// {0x0124, 7, 1, 0x00}, /* XRX200_BM_GCTRL_CX_INI PQM Context RAM initialization */
2916 +// {0x0124, 6, 1, 0x00}, /* XRX200_BM_GCTRL_FP_INI FPQM RAM initialization */
2917 +// {0x0124, 5, 1, 0x00}, /* XRX200_BM_GCTRL_FS_INI FSQM RAM initialization */
2918 +// {0x0124, 4, 1, 0x00}, /* XRX200_BM_GCTRL_R_SRES Software Reset for RMON */
2919 +// {0x0124, 3, 1, 0x00}, /* XRX200_BM_GCTRL_S_SRES Software Reset for Scheduler */
2920 +// {0x0124, 2, 1, 0x00}, /* XRX200_BM_GCTRL_A_SRES Software Reset for AVG */
2921 +// {0x0124, 1, 1, 0x00}, /* XRX200_BM_GCTRL_P_SRES Software Reset for PQM */
2922 +// {0x0124, 0, 1, 0x00}, /* XRX200_BM_GCTRL_F_SRES Software Reset for FSQM */
2923 +// {0x0128, 0, 16, 0x00}, /* XRX200_BM_QUEUE_GCTRL Queue Manager GlobalControl Register 0 */
2924 + {0x0128, 10, 1, 0x00}, /* XRX200_BM_QUEUE_GCTRL_GL_MOD WRED Mode Signal */
2925 +// {0x0128, 7, 3, 0x00}, /* XRX200_BM_QUEUE_GCTRL_AQUI Average Queue Update Interval */
2926 +// {0x0128, 3, 4, 0x00}, /* XRX200_BM_QUEUE_GCTRL_AQWF Average Queue Weight Factor */
2927 +// {0x0128, 2, 1, 0x00}, /* XRX200_BM_QUEUE_GCTRL_QAVGEN Queue Average Calculation Enable */
2928 +// {0x0128, 0, 2, 0x00}, /* XRX200_BM_QUEUE_GCTRL_DPROB Drop Probability Profile */
2929 +// {0x012C, 0, 16, 0x00}, /* XRX200_BM_WRED_RTH_0 WRED Red Threshold Register0 */
2930 +// {0x012C, 0, 10, 0x00}, /* XRX200_BM_WRED_RTH_0_MINTH Minimum Threshold */
2931 +// {0x0130, 0, 16, 0x00}, /* XRX200_BM_WRED_RTH_1 WRED Red Threshold Register1 */
2932 +// {0x0130, 0, 10, 0x00}, /* XRX200_BM_WRED_RTH_1_MAXTH Maximum Threshold */
2933 +// {0x0134, 0, 16, 0x00}, /* XRX200_BM_WRED_YTH_0 WRED Yellow ThresholdRegister 0 */
2934 +// {0x0134, 0, 10, 0x00}, /* XRX200_BM_WRED_YTH_0_MINTH Minimum Threshold */
2935 +// {0x0138, 0, 16, 0x00}, /* XRX200_BM_WRED_YTH_1 WRED Yellow ThresholdRegister 1 */
2936 +// {0x0138, 0, 10, 0x00}, /* XRX200_BM_WRED_YTH_1_MAXTH Maximum Threshold */
2937 +// {0x013C, 0, 16, 0x00}, /* XRX200_BM_WRED_GTH_0 WRED Green ThresholdRegister 0 */
2938 +// {0x013C, 0, 10, 0x00}, /* XRX200_BM_WRED_GTH_0_MINTH Minimum Threshold */
2939 +// {0x0140, 0, 16, 0x00}, /* XRX200_BM_WRED_GTH_1 WRED Green ThresholdRegister 1 */
2940 +// {0x0140, 0, 10, 0x00}, /* XRX200_BM_WRED_GTH_1_MAXTH Maximum Threshold */
2941 +// {0x0144, 0, 16, 0x00}, /* XRX200_BM_DROP_GTH_0_THR Drop Threshold ConfigurationRegister 0 */
2942 +// {0x0144, 0, 11, 0x00}, /* XRX200_BM_DROP_GTH_0_THR_FQ Threshold for frames marked red */
2943 +// {0x0148, 0, 16, 0x00}, /* XRX200_BM_DROP_GTH_1_THY Drop Threshold ConfigurationRegister 1 */
2944 +// {0x0148, 0, 11, 0x00}, /* XRX200_BM_DROP_GTH_1_THY_FQ Threshold for frames marked yellow */
2945 +// {0x014C, 0, 16, 0x00}, /* XRX200_BM_DROP_GTH_2_THG Drop Threshold ConfigurationRegister 2 */
2946 +// {0x014C, 0, 11, 0x00}, /* XRX200_BM_DROP_GTH_2_THG_FQ Threshold for frames marked green */
2947 +// {0x0150, 0, 16, 0x00}, /* XRX200_BM_IER Buffer Manager Global InterruptEnable Register */
2948 +// {0x0150, 7, 1, 0x00}, /* XRX200_BM_IER_CNT4 Counter Group 4 (RMON-CLASSIFICATION) Interrupt Enable */
2949 +// {0x0150, 6, 1, 0x00}, /* XRX200_BM_IER_CNT3 Counter Group 3 (RMON-PQM) Interrupt Enable */
2950 +// {0x0150, 5, 1, 0x00}, /* XRX200_BM_IER_CNT2 Counter Group 2 (RMON-SCHEDULER) Interrupt Enable */
2951 +// {0x0150, 4, 1, 0x00}, /* XRX200_BM_IER_CNT1 Counter Group 1 (RMON-QFETCH) Interrupt Enable */
2952 +// {0x0150, 3, 1, 0x00}, /* XRX200_BM_IER_CNT0 Counter Group 0 (RMON-QSTOR) Interrupt Enable */
2953 +// {0x0150, 2, 1, 0x00}, /* XRX200_BM_IER_DEQ PQM dequeue Interrupt Enable */
2954 +// {0x0150, 1, 1, 0x00}, /* XRX200_BM_IER_ENQ PQM Enqueue Interrupt Enable */
2955 +// {0x0150, 0, 1, 0x00}, /* XRX200_BM_IER_FSQM Buffer Empty Interrupt Enable */
2956 +// {0x0154, 0, 16, 0x00}, /* XRX200_BM_ISR Buffer Manager Global InterruptStatus Register */
2957 +// {0x0154, 7, 1, 0x00}, /* XRX200_BM_ISR_CNT4 Counter Group 4 Interrupt */
2958 +// {0x0154, 6, 1, 0x00}, /* XRX200_BM_ISR_CNT3 Counter Group 3 Interrupt */
2959 +// {0x0154, 5, 1, 0x00}, /* XRX200_BM_ISR_CNT2 Counter Group 2 Interrupt */
2960 +// {0x0154, 4, 1, 0x00}, /* XRX200_BM_ISR_CNT1 Counter Group 1 Interrupt */
2961 +// {0x0154, 3, 1, 0x00}, /* XRX200_BM_ISR_CNT0 Counter Group 0 Interrupt */
2962 +// {0x0154, 2, 1, 0x00}, /* XRX200_BM_ISR_DEQ PQM dequeue Interrupt Enable */
2963 +// {0x0154, 1, 1, 0x00}, /* XRX200_BM_ISR_ENQ PQM Enqueue Interrupt */
2964 +// {0x0154, 0, 1, 0x00}, /* XRX200_BM_ISR_FSQM Buffer Empty Interrupt */
2965 +// {0x0158, 0, 16, 0x00}, /* XRX200_BM_CISEL Buffer Manager RMON CounterInterrupt Select Register */
2966 +// {0x0158, 0, 3, 0x00}, /* XRX200_BM_CISEL_PORT Port Number */
2967 +// {0x015C, 0, 16, 0x00}, /* XRX200_BM_DEBUG_CTRL_DBG Debug Control Register */
2968 +// {0x015C, 0, 8, 0x00}, /* XRX200_BM_DEBUG_CTRL_DBG_SEL Select Signal for Debug Multiplexer */
2969 +// {0x0160, 0, 16, 0x00}, /* XRX200_BM_DEBUG_VAL_DBG Debug Value Register */
2970 +// {0x0160, 0, 16, 0x00}, /* XRX200_BM_DEBUG_VAL_DBG_DAT Debug Data Value */
2971 +// {0x0200, 0, 16, 0x08}, /* XRX200_BM_PCFG Buffer Manager PortConfiguration Register */
2972 +// {0x0200, 0, 1, 0x08}, /* XRX200_BM_PCFG_CNTEN RMON Counter Enable */
2973 +// {0x0204, 0, 16, 0x08}, /* XRX200_BM_RMON_CTRL_RAM1 Buffer ManagerRMON Control Register */
2974 +// {0x0204, 1, 1, 0x08}, /* XRX200_BM_RMON_CTRL_RAM2_RES Software Reset for RMON RAM2 */
2975 +// {0x0204, 0, 1, 0x08}, /* XRX200_BM_RMON_CTRL_RAM1_RES Software Reset for RMON RAM1 */
2976 +// {0x0400, 0, 16, 0x08}, /* XRX200_PQM_DP Packet Queue ManagerDrop Probability Register */
2977 +// {0x0400, 0, 2, 0x08}, /* XRX200_PQM_DP_DPROB Drop Probability Profile */
2978 +// {0x0404, 0, 16, 0x08}, /* XRX200_PQM_RS Packet Queue ManagerRate Shaper Assignment Register */
2979 +// {0x0404, 15, 1, 0x08}, /* XRX200_PQM_RS_EN2 Rate Shaper 2 Enable */
2980 +// {0x0404, 8, 6, 0x08}, /* XRX200_PQM_RS_RS2 Rate Shaper 2 */
2981 +// {0x0404, 7, 1, 0x08}, /* XRX200_PQM_RS_EN1 Rate Shaper 1 Enable */
2982 +// {0x0404, 0, 6, 0x08}, /* XRX200_PQM_RS_RS1 Rate Shaper 1 */
2983 +// {0x0500, 0, 16, 0x14}, /* XRX200_RS_CTRL Rate Shaper ControlRegister */
2984 +// {0x0500, 0, 1, 0x14}, /* XRX200_RS_CTRL_RSEN Rate Shaper Enable */
2985 +// {0x0504, 0, 16, 0x14}, /* XRX200_RS_CBS Rate Shaper CommittedBurst Size Register */
2986 +// {0x0504, 0, 10, 0x14}, /* XRX200_RS_CBS_CBS Committed Burst Size */
2987 +// {0x0508, 0, 16, 0x14}, /* XRX200_RS_IBS Rate Shaper InstantaneousBurst Size Register */
2988 +// {0x0508, 0, 2, 0x14}, /* XRX200_RS_IBS_IBS Instantaneous Burst Size */
2989 +// {0x050C, 0, 16, 0x14}, /* XRX200_RS_CIR_EXP Rate Shaper RateExponent Register */
2990 +// {0x050C, 0, 4, 0x14}, /* XRX200_RS_CIR_EXP_EXP Exponent */
2991 +// {0x0510, 0, 16, 0x14}, /* XRX200_RS_CIR_MANT Rate Shaper RateMantissa Register */
2992 +// {0x0510, 0, 10, 0x14}, /* XRX200_RS_CIR_MANT_MANT Mantissa */
2993 + {0x1100, 0, 16, 0x00}, /* XRX200_PCE_TBL_KEY_7 Table Key Data 7 */
2994 +// {0x1100, 0, 16, 0x00}, /* XRX200_PCE_TBL_KEY_7_KEY7 Key Value[15:0] */
2995 + {0x1104, 0, 16, 0x00}, /* XRX200_PCE_TBL_KEY_6 Table Key Data 6 */
2996 +// {0x1104, 0, 16, 0x00}, /* XRX200_PCE_TBL_KEY_6_KEY6 Key Value[15:0] */
2997 + {0x1108, 0, 16, 0x00}, /* XRX200_PCE_TBL_KEY_5 Table Key Data 5 */
2998 +// {0x1108, 0, 16, 0x00}, /* XRX200_PCE_TBL_KEY_5_KEY5 Key Value[15:0] */
2999 + {0x110C, 0, 16, 0x00}, /* XRX200_PCE_TBL_KEY_4 Table Key Data 4 */
3000 +// {0x110C, 0, 16, 0x00}, /* XRX200_PCE_TBL_KEY_4_KEY4 Key Value[15:0] */
3001 + {0x1110, 0, 16, 0x00}, /* XRX200_PCE_TBL_KEY_3 Table Key Data 3 */
3002 +// {0x1110, 0, 16, 0x00}, /* XRX200_PCE_TBL_KEY_3_KEY3 Key Value[15:0] */
3003 + {0x1114, 0, 16, 0x00}, /* XRX200_PCE_TBL_KEY_2 Table Key Data 2 */
3004 +// {0x1114, 0, 16, 0x00}, /* XRX200_PCE_TBL_KEY_2_KEY2 Key Value[15:0] */
3005 + {0x1118, 0, 16, 0x00}, /* XRX200_PCE_TBL_KEY_1 Table Key Data 1 */
3006 +// {0x1118, 0, 16, 0x00}, /* XRX200_PCE_TBL_KEY_1_KEY1 Key Value[31:16] */
3007 + {0x111C, 0, 16, 0x00}, /* XRX200_PCE_TBL_KEY_0 Table Key Data 0 */
3008 +// {0x111C, 0, 16, 0x00}, /* XRX200_PCE_TBL_KEY_0_KEY0 Key Value[15:0] */
3009 + {0x1120, 0, 16, 0x00}, /* XRX200_PCE_TBL_MASK_0 Table Mask Write Register0 */
3010 +// {0x1120, 0, 16, 0x00}, /* XRX200_PCE_TBL_MASK_0_MASK0 Mask Pattern [15:0] */
3011 + {0x1124, 0, 16, 0x00}, /* XRX200_PCE_TBL_VAL_4 Table Value Register4 */
3012 +// {0x1124, 0, 16, 0x00}, /* XRX200_PCE_TBL_VAL_4_VAL4 Data value [15:0] */
3013 + {0x1128, 0, 16, 0x00}, /* XRX200_PCE_TBL_VAL_3 Table Value Register3 */
3014 +// {0x1128, 0, 16, 0x00}, /* XRX200_PCE_TBL_VAL_3_VAL3 Data value [15:0] */
3015 + {0x112C, 0, 16, 0x00}, /* XRX200_PCE_TBL_VAL_2 Table Value Register2 */
3016 +// {0x112C, 0, 16, 0x00}, /* XRX200_PCE_TBL_VAL_2_VAL2 Data value [15:0] */
3017 + {0x1130, 0, 16, 0x00}, /* XRX200_PCE_TBL_VAL_1 Table Value Register1 */
3018 +// {0x1130, 0, 16, 0x00}, /* XRX200_PCE_TBL_VAL_1_VAL1 Data value [15:0] */
3019 + {0x1134, 0, 16, 0x00}, /* XRX200_PCE_TBL_VAL_0 Table Value Register0 */
3020 +// {0x1134, 0, 16, 0x00}, /* XRX200_PCE_TBL_VAL_0_VAL0 Data value [15:0] */
3021 +// {0x1138, 0, 16, 0x00}, /* XRX200_PCE_TBL_ADDR Table Entry AddressRegister */
3022 + {0x1138, 0, 11, 0x00}, /* XRX200_PCE_TBL_ADDR_ADDR Table Address */
3023 +// {0x113C, 0, 16, 0x00}, /* XRX200_PCE_TBL_CTRL Table Access ControlRegister */
3024 + {0x113C, 15, 1, 0x00}, /* XRX200_PCE_TBL_CTRL_BAS Access Busy/Access Start */
3025 + {0x113C, 13, 1, 0x00}, /* XRX200_PCE_TBL_CTRL_TYPE Lookup Entry Type */
3026 + {0x113C, 12, 1, 0x00}, /* XRX200_PCE_TBL_CTRL_VLD Lookup Entry Valid */
3027 + {0x113C, 7, 4, 0x00}, /* XRX200_PCE_TBL_CTRL_GMAP Group Map */
3028 + {0x113C, 5, 2, 0x00}, /* XRX200_PCE_TBL_CTRL_OPMOD Lookup Table Access Operation Mode */
3029 + {0x113C, 0, 5, 0x00}, /* XRX200_PCE_TBL_CTRL_ADDR Lookup Table Address */
3030 +// {0x1140, 0, 16, 0x00}, /* XRX200_PCE_TBL_STAT Table General StatusRegister */
3031 +// {0x1140, 2, 1, 0x00}, /* XRX200_PCE_TBL_STAT_TBUSY Table Access Busy */
3032 +// {0x1140, 1, 1, 0x00}, /* XRX200_PCE_TBL_STAT_TEMPT Table Empty */
3033 +// {0x1140, 0, 1, 0x00}, /* XRX200_PCE_TBL_STAT_TFUL Table Full */
3034 +// {0x1144, 0, 16, 0x00}, /* XRX200_PCE_AGE_0 Aging Counter ConfigurationRegister 0 */
3035 +// {0x1144, 0, 4, 0x00}, /* XRX200_PCE_AGE_0_EXP Aging Counter Exponent Value */
3036 +// {0x1148, 0, 16, 0x00}, /* XRX200_PCE_AGE_1 Aging Counter ConfigurationRegister 1 */
3037 +// {0x1148, 0, 16, 0x00}, /* XRX200_PCE_AGE_1_MANT Aging Counter Mantissa Value */
3038 +// {0x114C, 0, 16, 0x00}, /* XRX200_PCE_PMAP_1 Port Map Register 1 */
3039 +// {0x114C, 0, 16, 0x00}, /* XRX200_PCE_PMAP_1_MPMAP Monitoring Port Map */
3040 +// {0x1150, 0, 16, 0x00}, /* XRX200_PCE_PMAP_2 Port Map Register 2 */
3041 +// {0x1150, 0, 16, 0x00}, /* XRX200_PCE_PMAP_2_DMCPMAP Default Multicast Port Map */
3042 +// {0x1154, 0, 16, 0x00}, /* XRX200_PCE_PMAP_3 Port Map Register 3 */
3043 +// {0x1154, 0, 16, 0x00}, /* XRX200_PCE_PMAP_3_UUCMAP Default Unknown Unicast Port Map */
3044 +// {0x1158, 0, 16, 0x00}, /* XRX200_PCE_GCTRL_0 PCE Global Control Register0 */
3045 +// {0x1158, 15, 1, 0x00}, /* XRX200_PCE_GCTRL_0_IGMP IGMP Mode Selection */
3046 + {0x1158, 14, 1, 0x00}, /* XRX200_PCE_GCTRL_0_VLAN VLAN-aware Switching */
3047 +// {0x1158, 13, 1, 0x00}, /* XRX200_PCE_GCTRL_0_NOPM No Port Map Forwarding */
3048 +// {0x1158, 12, 1, 0x00}, /* XRX200_PCE_GCTRL_0_SCONUC Unknown Unicast Storm Control */
3049 +// {0x1158, 11, 1, 0x00}, /* XRX200_PCE_GCTRL_0_SCONMC Multicast Storm Control */
3050 +// {0x1158, 10, 1, 0x00}, /* XRX200_PCE_GCTRL_0_SCONBC Broadcast Storm Control */
3051 +// {0x1158, 8, 2, 0x00}, /* XRX200_PCE_GCTRL_0_SCONMOD Storm Control Mode */
3052 +// {0x1158, 4, 4, 0x00}, /* XRX200_PCE_GCTRL_0_SCONMET Storm Control Metering Instance */
3053 +// {0x1158, 3, 1, 0x00}, /* XRX200_PCE_GCTRL_0_MC_VALID Access Request */
3054 +// {0x1158, 2, 1, 0x00}, /* XRX200_PCE_GCTRL_0_PLCKMOD Port Lock Mode */
3055 +// {0x1158, 1, 1, 0x00}, /* XRX200_PCE_GCTRL_0_PLIMMOD MAC Address Learning Limitation Mode */
3056 +// {0x1158, 0, 1, 0x00}, /* XRX200_PCE_GCTRL_0_MTFL MAC Table Flushing */
3057 +// {0x115C, 0, 16, 0x00}, /* XRX200_PCE_GCTRL_1 PCE Global Control Register1 */
3058 +// {0x115C, 1, 1, 0x00}, /* XRX200_PCE_GCTRL_1_PCE_DIS PCE Disable after currently processed packet */
3059 +// {0x115C, 0, 1, 0x00}, /* XRX200_PCE_GCTRL_1_LRNMOD MAC Address Learning Mode */
3060 +// {0x1160, 0, 16, 0x00}, /* XRX200_PCE_TCM_GLOB_CTRL Three-color MarkerGlobal Control Register */
3061 +// {0x1160, 6, 3, 0x00}, /* XRX200_PCE_TCM_GLOB_CTRL_DPRED Re-marking Drop Precedence Red Encoding */
3062 +// {0x1160, 3, 3, 0x00}, /* XRX200_PCE_TCM_GLOB_CTRL_DPYEL Re-marking Drop Precedence Yellow Encoding */
3063 +// {0x1160, 0, 3, 0x00}, /* XRX200_PCE_TCM_GLOB_CTRL_DPGRN Re-marking Drop Precedence Green Encoding */
3064 +// {0x1164, 0, 16, 0x00}, /* XRX200_PCE_IGMP_CTRL IGMP Control Register */
3065 +// {0x1164, 15, 1, 0x00}, /* XRX200_PCE_IGMP_CTRL_FAGEEN Force Aging of Table Entries Enable */
3066 +// {0x1164, 14, 1, 0x00}, /* XRX200_PCE_IGMP_CTRL_FLEAVE Fast Leave Enable */
3067 +// {0x1164, 13, 1, 0x00}, /* XRX200_PCE_IGMP_CTRL_DMRTEN Default Maximum Response Time Enable */
3068 +// {0x1164, 12, 1, 0x00}, /* XRX200_PCE_IGMP_CTRL_JASUP Join Aggregation Suppression Enable */
3069 +// {0x1164, 11, 1, 0x00}, /* XRX200_PCE_IGMP_CTRL_REPSUP Report Suppression Enable */
3070 +// {0x1164, 10, 1, 0x00}, /* XRX200_PCE_IGMP_CTRL_SRPEN Snooping of Router Port Enable */
3071 +// {0x1164, 8, 2, 0x00}, /* XRX200_PCE_IGMP_CTRL_ROB Robustness Variable */
3072 +// {0x1164, 0, 8, 0x00}, /* XRX200_PCE_IGMP_CTRL_DMRT IGMP Default Maximum Response Time */
3073 +// {0x1168, 0, 16, 0x00}, /* XRX200_PCE_IGMP_DRPM IGMP Default RouterPort Map Register */
3074 +// {0x1168, 0, 16, 0x00}, /* XRX200_PCE_IGMP_DRPM_DRPM IGMP Default Router Port Map */
3075 +// {0x116C, 0, 16, 0x00}, /* XRX200_PCE_IGMP_AGE_0 IGMP Aging Register0 */
3076 +// {0x116C, 3, 8, 0x00}, /* XRX200_PCE_IGMP_AGE_0_MANT IGMP Group Aging Time Mantissa */
3077 +// {0x116C, 0, 3, 0x00}, /* XRX200_PCE_IGMP_AGE_0_EXP IGMP Group Aging Time Exponent */
3078 +// {0x1170, 0, 16, 0x00}, /* XRX200_PCE_IGMP_AGE_1 IGMP Aging Register1 */
3079 +// {0x1170, 0, 12, 0x00}, /* XRX200_PCE_IGMP_AGE_1_MANT IGMP Router Port Aging Time Mantissa */
3080 +// {0x1174, 0, 16, 0x00}, /* XRX200_PCE_IGMP_STAT IGMP Status Register */
3081 +// {0x1174, 0, 16, 0x00}, /* XRX200_PCE_IGMP_STAT_IGPM IGMP Port Map */
3082 +// {0x1178, 0, 16, 0x00}, /* XRX200_WOL_GLB_CTRL Wake-on-LAN ControlRegister */
3083 +// {0x1178, 0, 1, 0x00}, /* XRX200_WOL_GLB_CTRL_PASSEN WoL Password Enable */
3084 +// {0x117C, 0, 16, 0x00}, /* XRX200_WOL_DA_0 Wake-on-LAN DestinationAddress Register 0 */
3085 +// {0x117C, 0, 16, 0x00}, /* XRX200_WOL_DA_0_DA0 WoL Destination Address [15:0] */
3086 +// {0x1180, 0, 16, 0x00}, /* XRX200_WOL_DA_1 Wake-on-LAN DestinationAddress Register 1 */
3087 +// {0x1180, 0, 16, 0x00}, /* XRX200_WOL_DA_1_DA1 WoL Destination Address [31:16] */
3088 +// {0x1184, 0, 16, 0x00}, /* XRX200_WOL_DA_2 Wake-on-LAN DestinationAddress Register 2 */
3089 +// {0x1184, 0, 16, 0x00}, /* XRX200_WOL_DA_2_DA2 WoL Destination Address [47:32] */
3090 +// {0x1188, 0, 16, 0x00}, /* XRX200_WOL_PW_0 Wake-on-LAN Password Register0 */
3091 +// {0x1188, 0, 16, 0x00}, /* XRX200_WOL_PW_0_PW0 WoL Password [15:0] */
3092 +// {0x118C, 0, 16, 0x00}, /* XRX200_WOL_PW_1 Wake-on-LAN Password Register1 */
3093 +// {0x118C, 0, 16, 0x00}, /* XRX200_WOL_PW_1_PW1 WoL Password [31:16] */
3094 +// {0x1190, 0, 16, 0x00}, /* XRX200_WOL_PW_2 Wake-on-LAN Password Register2 */
3095 +// {0x1190, 0, 16, 0x00}, /* XRX200_WOL_PW_2_PW2 WoL Password [47:32] */
3096 +// {0x1194, 0, 16, 0x00}, /* XRX200_PCE_IER_0_PINT Parser and ClassificationEngine Global Interrupt Enable Register 0 */
3097 +// {0x1194, 15, 1, 0x00}, /* XRX200_PCE_IER_0_PINT_15 Port Interrupt Enable */
3098 +// {0x1194, 14, 1, 0x00}, /* XRX200_PCE_IER_0_PINT_14 Port Interrupt Enable */
3099 +// {0x1194, 13, 1, 0x00}, /* XRX200_PCE_IER_0_PINT_13 Port Interrupt Enable */
3100 +// {0x1194, 12, 1, 0x00}, /* XRX200_PCE_IER_0_PINT_12 Port Interrupt Enable */
3101 +// {0x1194, 11, 1, 0x00}, /* XRX200_PCE_IER_0_PINT_11 Port Interrupt Enable */
3102 +// {0x1194, 10, 1, 0x00}, /* XRX200_PCE_IER_0_PINT_10 Port Interrupt Enable */
3103 +// {0x1194, 9, 1, 0x00}, /* XRX200_PCE_IER_0_PINT_9 Port Interrupt Enable */
3104 +// {0x1194, 8, 1, 0x00}, /* XRX200_PCE_IER_0_PINT_8 Port Interrupt Enable */
3105 +// {0x1194, 7, 1, 0x00}, /* XRX200_PCE_IER_0_PINT_7 Port Interrupt Enable */
3106 +// {0x1194, 6, 1, 0x00}, /* XRX200_PCE_IER_0_PINT_6 Port Interrupt Enable */
3107 +// {0x1194, 5, 1, 0x00}, /* XRX200_PCE_IER_0_PINT_5 Port Interrupt Enable */
3108 +// {0x1194, 4, 1, 0x00}, /* XRX200_PCE_IER_0_PINT_4 Port Interrupt Enable */
3109 +// {0x1194, 3, 1, 0x00}, /* XRX200_PCE_IER_0_PINT_3 Port Interrupt Enable */
3110 +// {0x1194, 2, 1, 0x00}, /* XRX200_PCE_IER_0_PINT_2 Port Interrupt Enable */
3111 +// {0x1194, 1, 1, 0x00}, /* XRX200_PCE_IER_0_PINT_1 Port Interrupt Enable */
3112 +// {0x1194, 0, 1, 0x00}, /* XRX200_PCE_IER_0_PINT_0 Port Interrupt Enable */
3113 +// {0x1198, 0, 16, 0x00}, /* XRX200_PCE_IER_1 Parser and ClassificationEngine Global Interrupt Enable Register 1 */
3114 +// {0x1198, 6, 1, 0x00}, /* XRX200_PCE_IER_1_FLOWINT Traffic Flow Table Interrupt Rule matched Interrupt Enable */
3115 +// {0x1198, 5, 1, 0x00}, /* XRX200_PCE_IER_1_CPH2 Classification Phase 2 Ready Interrupt Enable */
3116 +// {0x1198, 4, 1, 0x00}, /* XRX200_PCE_IER_1_CPH1 Classification Phase 1 Ready Interrupt Enable */
3117 +// {0x1198, 3, 1, 0x00}, /* XRX200_PCE_IER_1_CPH0 Classification Phase 0 Ready Interrupt Enable */
3118 +// {0x1198, 2, 1, 0x00}, /* XRX200_PCE_IER_1_PRDY Parser Ready Interrupt Enable */
3119 +// {0x1198, 1, 1, 0x00}, /* XRX200_PCE_IER_1_IGTF IGMP Table Full Interrupt Enable */
3120 +// {0x1198, 0, 1, 0x00}, /* XRX200_PCE_IER_1_MTF MAC Table Full Interrupt Enable */
3121 +// {0x119C, 0, 16, 0x00}, /* XRX200_PCE_ISR_0_PINT Parser and ClassificationEngine Global Interrupt Status Register 0 */
3122 +// {0x119C, 15, 1, 0x00}, /* XRX200_PCE_ISR_0_PINT_15 Port Interrupt */
3123 +// {0x119C, 14, 1, 0x00}, /* XRX200_PCE_ISR_0_PINT_14 Port Interrupt */
3124 +// {0x119C, 13, 1, 0x00}, /* XRX200_PCE_ISR_0_PINT_13 Port Interrupt */
3125 +// {0x119C, 12, 1, 0x00}, /* XRX200_PCE_ISR_0_PINT_12 Port Interrupt */
3126 +// {0x119C, 11, 1, 0x00}, /* XRX200_PCE_ISR_0_PINT_11 Port Interrupt */
3127 +// {0x119C, 10, 1, 0x00}, /* XRX200_PCE_ISR_0_PINT_10 Port Interrupt */
3128 +// {0x119C, 9, 1, 0x00}, /* XRX200_PCE_ISR_0_PINT_9 Port Interrupt */
3129 +// {0x119C, 8, 1, 0x00}, /* XRX200_PCE_ISR_0_PINT_8 Port Interrupt */
3130 +// {0x119C, 7, 1, 0x00}, /* XRX200_PCE_ISR_0_PINT_7 Port Interrupt */
3131 +// {0x119C, 6, 1, 0x00}, /* XRX200_PCE_ISR_0_PINT_6 Port Interrupt */
3132 +// {0x119C, 5, 1, 0x00}, /* XRX200_PCE_ISR_0_PINT_5 Port Interrupt */
3133 +// {0x119C, 4, 1, 0x00}, /* XRX200_PCE_ISR_0_PINT_4 Port Interrupt */
3134 +// {0x119C, 3, 1, 0x00}, /* XRX200_PCE_ISR_0_PINT_3 Port Interrupt */
3135 +// {0x119C, 2, 1, 0x00}, /* XRX200_PCE_ISR_0_PINT_2 Port Interrupt */
3136 +// {0x119C, 1, 1, 0x00}, /* XRX200_PCE_ISR_0_PINT_1 Port Interrupt */
3137 +// {0x119C, 0, 1, 0x00}, /* XRX200_PCE_ISR_0_PINT_0 Port Interrupt */
3138 +// {0x11A0, 0, 16, 0x00}, /* XRX200_PCE_ISR_1 Parser and ClassificationEngine Global Interrupt Status Register 1 */
3139 +// {0x11A0, 6, 1, 0x00}, /* XRX200_PCE_ISR_1_FLOWINT Traffic Flow Table Interrupt Rule matched */
3140 +// {0x11A0, 5, 1, 0x00}, /* XRX200_PCE_ISR_1_CPH2 Classification Phase 2 Ready Interrupt */
3141 +// {0x11A0, 4, 1, 0x00}, /* XRX200_PCE_ISR_1_CPH1 Classification Phase 1 Ready Interrupt */
3142 +// {0x11A0, 3, 1, 0x00}, /* XRX200_PCE_ISR_1_CPH0 Classification Phase 0 Ready Interrupt */
3143 +// {0x11A0, 2, 1, 0x00}, /* XRX200_PCE_ISR_1_PRDY Parser Ready Interrupt */
3144 +// {0x11A0, 1, 1, 0x00}, /* XRX200_PCE_ISR_1_IGTF IGMP Table Full Interrupt */
3145 +// {0x11A0, 0, 1, 0x00}, /* XRX200_PCE_ISR_1_MTF MAC Table Full Interrupt */
3146 +// {0x11A4, 0, 16, 0x00}, /* XRX200_PARSER_STAT_FIFO Parser Status Register */
3147 +// {0x11A4, 8, 8, 0x00}, /* XRX200_PARSER_STAT_FSM_DAT_CNT Parser FSM Data Counter */
3148 +// {0x11A4, 5, 3, 0x00}, /* XRX200_PARSER_STAT_FSM_STATE Parser FSM State */
3149 +// {0x11A4, 4, 1, 0x00}, /* XRX200_PARSER_STAT_PKT_ERR Packet error detected */
3150 +// {0x11A4, 3, 1, 0x00}, /* XRX200_PARSER_STAT_FSM_FIN Parser FSM finished */
3151 +// {0x11A4, 2, 1, 0x00}, /* XRX200_PARSER_STAT_FSM_START Parser FSM start */
3152 +// {0x11A4, 1, 1, 0x00}, /* XRX200_PARSER_STAT_FIFO_RDY Parser FIFO ready for read. */
3153 +// {0x11A4, 0, 1, 0x00}, /* XRX200_PARSER_STAT_FIFO_FULL Parser */
3154 +// {0x1200, 0, 16, 0x28}, /* XRX200_PCE_PCTRL_0 PCE Port ControlRegister 0 */
3155 +// {0x1200, 13, 1, 0x28}, /* XRX200_PCE_PCTRL_0_MCST Multicast Forwarding Mode Selection */
3156 +// {0x1200, 12, 1, 0x28}, /* XRX200_PCE_PCTRL_0_EGSTEN Table-based Egress Special Tag Enable */
3157 +// {0x1200, 11, 1, 0x28}, /* XRX200_PCE_PCTRL_0_IGSTEN Ingress Special Tag Enable */
3158 +// {0x1200, 10, 1, 0x28}, /* XRX200_PCE_PCTRL_0_PCPEN PCP Remarking Mode */
3159 +// {0x1200, 9, 1, 0x28}, /* XRX200_PCE_PCTRL_0_CLPEN Class Remarking Mode */
3160 +// {0x1200, 8, 1, 0x28}, /* XRX200_PCE_PCTRL_0_DPEN Drop Precedence Remarking Mode */
3161 +// {0x1200, 7, 1, 0x28}, /* XRX200_PCE_PCTRL_0_CMOD Three-color Marker Color Mode */
3162 +// {0x1200, 6, 1, 0x28}, /* XRX200_PCE_PCTRL_0_VREP VLAN Replacement Mode */
3163 + {0x1200, 5, 1, 0x28}, /* XRX200_PCE_PCTRL_0_TVM Transparent VLAN Mode */
3164 +// {0x1200, 4, 1, 0x28}, /* XRX200_PCE_PCTRL_0_PLOCK Port Locking Enable */
3165 +// {0x1200, 3, 1, 0x28}, /* XRX200_PCE_PCTRL_0_AGEDIS Aging Disable */
3166 +// {0x1200, 0, 3, 0x28}, /* XRX200_PCE_PCTRL_0_PSTATE Port State */
3167 +// {0x1204, 0, 16, 0x28}, /* XRX200_PCE_PCTRL_1 PCE Port ControlRegister 1 */
3168 +// {0x1204, 0, 8, 0x28}, /* XRX200_PCE_PCTRL_1_LRNLIM MAC Address Learning Limit */
3169 +// {0x1208, 0, 16, 0x28}, /* XRX200_PCE_PCTRL_2 PCE Port ControlRegister 2 */
3170 +// {0x1208, 7, 1, 0x28}, /* XRX200_PCE_PCTRL_2_DSCPMOD DSCP Mode Selection */
3171 +// {0x1208, 5, 2, 0x28}, /* XRX200_PCE_PCTRL_2_DSCP Enable DSCP to select the Class of Service */
3172 +// {0x1208, 4, 1, 0x28}, /* XRX200_PCE_PCTRL_2_PCP Enable VLAN PCP to select the Class of Service */
3173 +// {0x1208, 0, 4, 0x28}, /* XRX200_PCE_PCTRL_2_PCLASS Port-based Traffic Class */
3174 +// {0x120C, 0, 16, 0x28}, /* XRX200_PCE_PCTRL_3_VIO PCE Port ControlRegister 3 */
3175 +// {0x120C, 11, 1, 0x28}, /* XRX200_PCE_PCTRL_3_EDIR Egress Redirection Mode */
3176 +// {0x120C, 10, 1, 0x28}, /* XRX200_PCE_PCTRL_3_RXDMIR Receive Mirroring Enable for dropped frames */
3177 +// {0x120C, 9, 1, 0x28}, /* XRX200_PCE_PCTRL_3_RXVMIR Receive Mirroring Enable for valid frames */
3178 +// {0x120C, 8, 1, 0x28}, /* XRX200_PCE_PCTRL_3_TXMIR Transmit Mirroring Enable */
3179 +// {0x120C, 7, 1, 0x28}, /* XRX200_PCE_PCTRL_3_VIO_7 Violation Type 7 Mirroring Enable */
3180 +// {0x120C, 6, 1, 0x28}, /* XRX200_PCE_PCTRL_3_VIO_6 Violation Type 6 Mirroring Enable */
3181 +// {0x120C, 5, 1, 0x28}, /* XRX200_PCE_PCTRL_3_VIO_5 Violation Type 5 Mirroring Enable */
3182 +// {0x120C, 4, 1, 0x28}, /* XRX200_PCE_PCTRL_3_VIO_4 Violation Type 4 Mirroring Enable */
3183 +// {0x120C, 3, 1, 0x28}, /* XRX200_PCE_PCTRL_3_VIO_3 Violation Type 3 Mirroring Enable */
3184 +// {0x120C, 2, 1, 0x28}, /* XRX200_PCE_PCTRL_3_VIO_2 Violation Type 2 Mirroring Enable */
3185 +// {0x120C, 1, 1, 0x28}, /* XRX200_PCE_PCTRL_3_VIO_1 Violation Type 1 Mirroring Enable */
3186 +// {0x120C, 0, 1, 0x28}, /* XRX200_PCE_PCTRL_3_VIO_0 Violation Type 0 Mirroring Enable */
3187 +// {0x1210, 0, 16, 0x28}, /* XRX200_WOL_CTRL Wake-on-LAN ControlRegister */
3188 +// {0x1210, 0, 1, 0x28}, /* XRX200_WOL_CTRL_PORT WoL Enable */
3189 +// {0x1214, 0, 16, 0x28}, /* XRX200_PCE_VCTRL PCE VLAN ControlRegister */
3190 + {0x1214, 5, 1, 0x28}, /* XRX200_PCE_VCTRL_VSR VLAN Security Rule */
3191 + {0x1214, 4, 1, 0x28}, /* XRX200_PCE_VCTRL_VEMR VLAN Egress Member Violation Rule */
3192 + {0x1214, 3, 1, 0x28}, /* XRX200_PCE_VCTRL_VIMR VLAN Ingress Member Violation Rule */
3193 + {0x1214, 1, 2, 0x28}, /* XRX200_PCE_VCTRL_VINR VLAN Ingress Tag Rule */
3194 + {0x1214, 0, 1, 0x28}, /* XRX200_PCE_VCTRL_UVR Unknown VLAN Rule */
3195 +// {0x1218, 0, 16, 0x28}, /* XRX200_PCE_DEFPVID PCE Default PortVID Register */
3196 + {0x1218, 0, 6, 0x28}, /* XRX200_PCE_DEFPVID_PVID Default Port VID Index */
3197 +// {0x121C, 0, 16, 0x28}, /* XRX200_PCE_PSTAT PCE Port StatusRegister */
3198 +// {0x121C, 0, 16, 0x28}, /* XRX200_PCE_PSTAT_LRNCNT Learning Count */
3199 +// {0x1220, 0, 16, 0x28}, /* XRX200_PCE_PIER Parser and ClassificationEngine Port Interrupt Enable Register */
3200 +// {0x1220, 5, 1, 0x28}, /* XRX200_PCE_PIER_CLDRP Classification Drop Interrupt Enable */
3201 +// {0x1220, 4, 1, 0x28}, /* XRX200_PCE_PIER_PTDRP Port Drop Interrupt Enable */
3202 +// {0x1220, 3, 1, 0x28}, /* XRX200_PCE_PIER_VLAN VLAN Violation Interrupt Enable */
3203 +// {0x1220, 2, 1, 0x28}, /* XRX200_PCE_PIER_WOL Wake-on-LAN Interrupt Enable */
3204 +// {0x1220, 1, 1, 0x28}, /* XRX200_PCE_PIER_LOCK Port Limit Alert Interrupt Enable */
3205 +// {0x1220, 0, 1, 0x28}, /* XRX200_PCE_PIER_LIM Port Lock Alert Interrupt Enable */
3206 +// {0x1224, 0, 16, 0x28}, /* XRX200_PCE_PISR Parser and ClassificationEngine Port Interrupt Status Register */
3207 +// {0x1224, 5, 1, 0x28}, /* XRX200_PCE_PISR_CLDRP Classification Drop Interrupt */
3208 +// {0x1224, 4, 1, 0x28}, /* XRX200_PCE_PISR_PTDRP Port Drop Interrupt */
3209 +// {0x1224, 3, 1, 0x28}, /* XRX200_PCE_PISR_VLAN VLAN Violation Interrupt */
3210 +// {0x1224, 2, 1, 0x28}, /* XRX200_PCE_PISR_WOL Wake-on-LAN Interrupt */
3211 +// {0x1224, 1, 1, 0x28}, /* XRX200_PCE_PISR_LOCK Port Lock Alert Interrupt */
3212 +// {0x1224, 0, 1, 0x28}, /* XRX200_PCE_PISR_LIMIT Port Limitation Alert Interrupt */
3213 +// {0x1600, 0, 16, 0x1c}, /* XRX200_PCE_TCM_CTRL Three-colorMarker Control Register */
3214 +// {0x1600, 0, 1, 0x1c}, /* XRX200_PCE_TCM_CTRL_TCMEN Three-color Marker metering instance enable */
3215 +// {0x1604, 0, 16, 0x1c}, /* XRX200_PCE_TCM_STAT Three-colorMarker Status Register */
3216 +// {0x1604, 1, 1, 0x1c}, /* XRX200_PCE_TCM_STAT_AL1 Three-color Marker Alert 1 Status */
3217 +// {0x1604, 0, 1, 0x1c}, /* XRX200_PCE_TCM_STAT_AL0 Three-color Marker Alert 0 Status */
3218 +// {0x1608, 0, 16, 0x1c}, /* XRX200_PCE_TCM_CBS Three-color MarkerCommitted Burst Size Register */
3219 +// {0x1608, 0, 10, 0x1c}, /* XRX200_PCE_TCM_CBS_CBS Committed Burst Size */
3220 +// {0x160C, 0, 16, 0x1c}, /* XRX200_PCE_TCM_EBS Three-color MarkerExcess Burst Size Register */
3221 +// {0x160C, 0, 10, 0x1c}, /* XRX200_PCE_TCM_EBS_EBS Excess Burst Size */
3222 +// {0x1610, 0, 16, 0x1c}, /* XRX200_PCE_TCM_IBS Three-color MarkerInstantaneous Burst Size Register */
3223 +// {0x1610, 0, 2, 0x1c}, /* XRX200_PCE_TCM_IBS_IBS Instantaneous Burst Size */
3224 +// {0x1614, 0, 16, 0x1c}, /* XRX200_PCE_TCM_CIR_MANT Three-colorMarker Constant Information Rate Mantissa Register */
3225 +// {0x1614, 0, 10, 0x1c}, /* XRX200_PCE_TCM_CIR_MANT_MANT Rate Counter Mantissa */
3226 +// {0x1618, 0, 16, 0x1c}, /* XRX200_PCE_TCM_CIR_EXP Three-colorMarker Constant Information Rate Exponent Register */
3227 +// {0x1618, 0, 4, 0x1c}, /* XRX200_PCE_TCM_CIR_EXP_EXP Rate Counter Exponent */
3228 +// {0x2300, 0, 16, 0x00}, /* XRX200_MAC_TEST MAC Test Register */
3229 +// {0x2300, 0, 16, 0x00}, /* XRX200_MAC_TEST_JTP Jitter Test Pattern */
3230 +// {0x2304, 0, 16, 0x00}, /* XRX200_MAC_PFAD_CFG MAC Pause FrameSource Address Configuration Register */
3231 +// {0x2304, 0, 1, 0x00}, /* XRX200_MAC_PFAD_CFG_SAMOD Source Address Mode */
3232 +// {0x2308, 0, 16, 0x00}, /* XRX200_MAC_PFSA_0 Pause Frame SourceAddress Part 0 */
3233 +// {0x2308, 0, 16, 0x00}, /* XRX200_MAC_PFSA_0_PFAD Pause Frame Source Address Part 0 */
3234 +// {0x230C, 0, 16, 0x00}, /* XRX200_MAC_PFSA_1 Pause Frame SourceAddress Part 1 */
3235 +// {0x230C, 0, 16, 0x00}, /* XRX200_MAC_PFSA_1_PFAD Pause Frame Source Address Part 1 */
3236 +// {0x2310, 0, 16, 0x00}, /* XRX200_MAC_PFSA_2 Pause Frame SourceAddress Part 2 */
3237 +// {0x2310, 0, 16, 0x00}, /* XRX200_MAC_PFSA_2_PFAD Pause Frame Source Address Part 2 */
3238 +// {0x2314, 0, 16, 0x00}, /* XRX200_MAC_FLEN MAC Frame Length Register */
3239 +// {0x2314, 0, 14, 0x00}, /* XRX200_MAC_FLEN_LEN Maximum Frame Length */
3240 +// {0x2318, 0, 16, 0x00}, /* XRX200_MAC_VLAN_ETYPE_0 MAC VLAN EthertypeRegister 0 */
3241 +// {0x2318, 0, 16, 0x00}, /* XRX200_MAC_VLAN_ETYPE_0_OUTER Ethertype */
3242 +// {0x231C, 0, 16, 0x00}, /* XRX200_MAC_VLAN_ETYPE_1 MAC VLAN EthertypeRegister 1 */
3243 +// {0x231C, 0, 16, 0x00}, /* XRX200_MAC_VLAN_ETYPE_1_INNER Ethertype */
3244 +// {0x2320, 0, 16, 0x00}, /* XRX200_MAC_IER MAC Interrupt EnableRegister */
3245 +// {0x2320, 0, 8, 0x00}, /* XRX200_MAC_IER_MACIEN MAC Interrupt Enable */
3246 +// {0x2324, 0, 16, 0x00}, /* XRX200_MAC_ISR MAC Interrupt StatusRegister */
3247 +// {0x2324, 0, 8, 0x00}, /* XRX200_MAC_ISR_MACINT MAC Interrupt */
3248 +// {0x2400, 0, 16, 0x30}, /* XRX200_MAC_PSTAT MAC Port Status Register */
3249 +// {0x2400, 11, 1, 0x30}, /* XRX200_MAC_PSTAT_PACT PHY Active Status */
3250 + {0x2400, 10, 1, 0x30}, /* XRX200_MAC_PSTAT_GBIT Gigabit Speed Status */
3251 + {0x2400, 9, 1, 0x30}, /* XRX200_MAC_PSTAT_MBIT Megabit Speed Status */
3252 + {0x2400, 8, 1, 0x30}, /* XRX200_MAC_PSTAT_FDUP Full Duplex Status */
3253 +// {0x2400, 7, 1, 0x30}, /* XRX200_MAC_PSTAT_RXPAU Receive Pause Status */
3254 +// {0x2400, 6, 1, 0x30}, /* XRX200_MAC_PSTAT_TXPAU Transmit Pause Status */
3255 +// {0x2400, 5, 1, 0x30}, /* XRX200_MAC_PSTAT_RXPAUEN Receive Pause Enable Status */
3256 +// {0x2400, 4, 1, 0x30}, /* XRX200_MAC_PSTAT_TXPAUEN Transmit Pause Enable Status */
3257 + {0x2400, 3, 1, 0x30}, /* XRX200_MAC_PSTAT_LSTAT Link Status */
3258 +// {0x2400, 2, 1, 0x30}, /* XRX200_MAC_PSTAT_CRS Carrier Sense Status */
3259 +// {0x2400, 1, 1, 0x30}, /* XRX200_MAC_PSTAT_TXLPI Transmit Low-power Idle Status */
3260 +// {0x2400, 0, 1, 0x30}, /* XRX200_MAC_PSTAT_RXLPI Receive Low-power Idle Status */
3261 +// {0x2404, 0, 16, 0x30}, /* XRX200_MAC_PISR MAC Interrupt Status Register */
3262 +// {0x2404, 13, 1, 0x30}, /* XRX200_MAC_PISR_PACT PHY Active Status */
3263 +// {0x2404, 12, 1, 0x30}, /* XRX200_MAC_PISR_SPEED Megabit Speed Status */
3264 +// {0x2404, 11, 1, 0x30}, /* XRX200_MAC_PISR_FDUP Full Duplex Status */
3265 +// {0x2404, 10, 1, 0x30}, /* XRX200_MAC_PISR_RXPAUEN Receive Pause Enable Status */
3266 +// {0x2404, 9, 1, 0x30}, /* XRX200_MAC_PISR_TXPAUEN Transmit Pause Enable Status */
3267 +// {0x2404, 8, 1, 0x30}, /* XRX200_MAC_PISR_LPIOFF Receive Low-power Idle Mode is left */
3268 +// {0x2404, 7, 1, 0x30}, /* XRX200_MAC_PISR_LPION Receive Low-power Idle Mode is entered */
3269 +// {0x2404, 6, 1, 0x30}, /* XRX200_MAC_PISR_JAM Jam Status Detected */
3270 +// {0x2404, 5, 1, 0x30}, /* XRX200_MAC_PISR_TOOSHORT Too Short Frame Error Detected */
3271 +// {0x2404, 4, 1, 0x30}, /* XRX200_MAC_PISR_TOOLONG Too Long Frame Error Detected */
3272 +// {0x2404, 3, 1, 0x30}, /* XRX200_MAC_PISR_LENERR Length Mismatch Error Detected */
3273 +// {0x2404, 2, 1, 0x30}, /* XRX200_MAC_PISR_FCSERR Frame Checksum Error Detected */
3274 +// {0x2404, 1, 1, 0x30}, /* XRX200_MAC_PISR_TXPAUSE Pause Frame Transmitted */
3275 +// {0x2404, 0, 1, 0x30}, /* XRX200_MAC_PISR_RXPAUSE Pause Frame Received */
3276 +// {0x2408, 0, 16, 0x30}, /* XRX200_MAC_PIER MAC Interrupt Enable Register */
3277 +// {0x2408, 13, 1, 0x30}, /* XRX200_MAC_PIER_PACT PHY Active Status */
3278 +// {0x2408, 12, 1, 0x30}, /* XRX200_MAC_PIER_SPEED Megabit Speed Status */
3279 +// {0x2408, 11, 1, 0x30}, /* XRX200_MAC_PIER_FDUP Full Duplex Status */
3280 +// {0x2408, 10, 1, 0x30}, /* XRX200_MAC_PIER_RXPAUEN Receive Pause Enable Status */
3281 +// {0x2408, 9, 1, 0x30}, /* XRX200_MAC_PIER_TXPAUEN Transmit Pause Enable Status */
3282 +// {0x2408, 8, 1, 0x30}, /* XRX200_MAC_PIER_LPIOFF Low-power Idle Off Interrupt Mask */
3283 +// {0x2408, 7, 1, 0x30}, /* XRX200_MAC_PIER_LPION Low-power Idle On Interrupt Mask */
3284 +// {0x2408, 6, 1, 0x30}, /* XRX200_MAC_PIER_JAM Jam Status Interrupt Mask */
3285 +// {0x2408, 5, 1, 0x30}, /* XRX200_MAC_PIER_TOOSHORT Too Short Frame Error Interrupt Mask */
3286 +// {0x2408, 4, 1, 0x30}, /* XRX200_MAC_PIER_TOOLONG Too Long Frame Error Interrupt Mask */
3287 +// {0x2408, 3, 1, 0x30}, /* XRX200_MAC_PIER_LENERR Length Mismatch Error Interrupt Mask */
3288 +// {0x2408, 2, 1, 0x30}, /* XRX200_MAC_PIER_FCSERR Frame Checksum Error Interrupt Mask */
3289 +// {0x2408, 1, 1, 0x30}, /* XRX200_MAC_PIER_TXPAUSE Transmit Pause Frame Interrupt Mask */
3290 +// {0x2408, 0, 1, 0x30}, /* XRX200_MAC_PIER_RXPAUSE Receive Pause Frame Interrupt Mask */
3291 +// {0x240C, 0, 16, 0x30}, /* XRX200_MAC_CTRL_0 MAC Control Register0 */
3292 +// {0x240C, 13, 2, 0x30}, /* XRX200_MAC_CTRL_0_LCOL Late Collision Control */
3293 +// {0x240C, 12, 1, 0x30}, /* XRX200_MAC_CTRL_0_BM Burst Mode Control */
3294 +// {0x240C, 11, 1, 0x30}, /* XRX200_MAC_CTRL_0_APADEN Automatic VLAN Padding Enable */
3295 +// {0x240C, 10, 1, 0x30}, /* XRX200_MAC_CTRL_0_VPAD2EN Stacked VLAN Padding Enable */
3296 +// {0x240C, 9, 1, 0x30}, /* XRX200_MAC_CTRL_0_VPADEN VLAN Padding Enable */
3297 +// {0x240C, 8, 1, 0x30}, /* XRX200_MAC_CTRL_0_PADEN Padding Enable */
3298 +// {0x240C, 7, 1, 0x30}, /* XRX200_MAC_CTRL_0_FCS Transmit FCS Control */
3299 + {0x240C, 4, 3, 0x30}, /* XRX200_MAC_CTRL_0_FCON Flow Control Mode */
3300 +// {0x240C, 2, 2, 0x30}, /* XRX200_MAC_CTRL_0_FDUP Full Duplex Control */
3301 +// {0x240C, 0, 2, 0x30}, /* XRX200_MAC_CTRL_0_GMII GMII/MII interface mode selection */
3302 +// {0x2410, 0, 16, 0x30}, /* XRX200_MAC_CTRL_1 MAC Control Register1 */
3303 +// {0x2410, 8, 1, 0x30}, /* XRX200_MAC_CTRL_1_SHORTPRE Short Preamble Control */
3304 +// {0x2410, 0, 4, 0x30}, /* XRX200_MAC_CTRL_1_IPG Minimum Inter Packet Gap Size */
3305 +// {0x2414, 0, 16, 0x30}, /* XRX200_MAC_CTRL_2 MAC Control Register2 */
3306 +// {0x2414, 3, 1, 0x30}, /* XRX200_MAC_CTRL_2_MLEN Maximum Untagged Frame Length */
3307 +// {0x2414, 2, 1, 0x30}, /* XRX200_MAC_CTRL_2_LCHKL Frame Length Check Long Enable */
3308 +// {0x2414, 0, 2, 0x30}, /* XRX200_MAC_CTRL_2_LCHKS Frame Length Check Short Enable */
3309 +// {0x2418, 0, 16, 0x30}, /* XRX200_MAC_CTRL_3 MAC Control Register3 */
3310 +// {0x2418, 0, 4, 0x30}, /* XRX200_MAC_CTRL_3_RCNT Retry Count */
3311 +// {0x241C, 0, 16, 0x30}, /* XRX200_MAC_CTRL_4 MAC Control Register4 */
3312 +// {0x241C, 7, 1, 0x30}, /* XRX200_MAC_CTRL_4_LPIEN LPI Mode Enable */
3313 +// {0x241C, 0, 7, 0x30}, /* XRX200_MAC_CTRL_4_WAIT LPI Wait Time */
3314 +// {0x2420, 0, 16, 0x30}, /* XRX200_MAC_CTRL_5_PJPS MAC Control Register5 */
3315 +// {0x2420, 1, 1, 0x30}, /* XRX200_MAC_CTRL_5_PJPS_NOBP Prolonged Jam pattern size during no-backpressure state */
3316 +// {0x2420, 0, 1, 0x30}, /* XRX200_MAC_CTRL_5_PJPS_BP Prolonged Jam pattern size during backpressure state */
3317 +// {0x2424, 0, 16, 0x30}, /* XRX200_MAC_CTRL_6_XBUF Transmit and ReceiveBuffer Control Register */
3318 +// {0x2424, 9, 3, 0x30}, /* XRX200_MAC_CTRL_6_RBUF_DLY_WP Delay */
3319 +// {0x2424, 8, 1, 0x30}, /* XRX200_MAC_CTRL_6_RBUF_INIT Receive Buffer Initialization */
3320 +// {0x2424, 6, 1, 0x30}, /* XRX200_MAC_CTRL_6_RBUF_BYPASS Bypass the Receive Buffer */
3321 +// {0x2424, 3, 3, 0x30}, /* XRX200_MAC_CTRL_6_XBUF_DLY_WP Delay */
3322 +// {0x2424, 2, 1, 0x30}, /* XRX200_MAC_CTRL_6_XBUF_INIT Initialize the Transmit Buffer */
3323 +// {0x2424, 0, 1, 0x30}, /* XRX200_MAC_CTRL_6_XBUF_BYPASS Bypass the Transmit Buffer */
3324 +// {0x2428, 0, 16, 0x30}, /* XRX200_MAC_BUFST_XBUF MAC Receive and TransmitBuffer Status Register */
3325 +// {0x2428, 3, 1, 0x30}, /* XRX200_MAC_BUFST_RBUF_UFL Receive Buffer Underflow Indicator */
3326 +// {0x2428, 2, 1, 0x30}, /* XRX200_MAC_BUFST_RBUF_OFL Receive Buffer Overflow Indicator */
3327 +// {0x2428, 1, 1, 0x30}, /* XRX200_MAC_BUFST_XBUF_UFL Transmit Buffer Underflow Indicator */
3328 +// {0x2428, 0, 1, 0x30}, /* XRX200_MAC_BUFST_XBUF_OFL Transmit Buffer Overflow Indicator */
3329 +// {0x242C, 0, 16, 0x30}, /* XRX200_MAC_TESTEN MAC Test Enable Register */
3330 +// {0x242C, 2, 1, 0x30}, /* XRX200_MAC_TESTEN_JTEN Jitter Test Enable */
3331 +// {0x242C, 1, 1, 0x30}, /* XRX200_MAC_TESTEN_TXER Transmit Error Insertion */
3332 +// {0x242C, 0, 1, 0x30}, /* XRX200_MAC_TESTEN_LOOP MAC Loopback Enable */
3333 +// {0x2900, 0, 16, 0x00}, /* XRX200_FDMA_CTRL Ethernet Switch FetchDMA Control Register */
3334 +// {0x2900, 7, 5, 0x00}, /* XRX200_FDMA_CTRL_LPI_THRESHOLD Low Power Idle Threshold */
3335 +// {0x2900, 4, 3, 0x00}, /* XRX200_FDMA_CTRL_LPI_MODE Low Power Idle Mode */
3336 +// {0x2900, 2, 2, 0x00}, /* XRX200_FDMA_CTRL_EGSTAG Egress Special Tag Size */
3337 +// {0x2900, 1, 1, 0x00}, /* XRX200_FDMA_CTRL_IGSTAG Ingress Special Tag Size */
3338 +// {0x2900, 0, 1, 0x00}, /* XRX200_FDMA_CTRL_EXCOL Excessive Collision Handling */
3339 +// {0x2904, 0, 16, 0x00}, /* XRX200_FDMA_STETYPE Special Tag EthertypeControl Register */
3340 +// {0x2904, 0, 16, 0x00}, /* XRX200_FDMA_STETYPE_ETYPE Special Tag Ethertype */
3341 +// {0x2908, 0, 16, 0x00}, /* XRX200_FDMA_VTETYPE VLAN Tag EthertypeControl Register */
3342 +// {0x2908, 0, 16, 0x00}, /* XRX200_FDMA_VTETYPE_ETYPE VLAN Tag Ethertype */
3343 +// {0x290C, 0, 16, 0x00}, /* XRX200_FDMA_STAT_0 FDMA Status Register0 */
3344 +// {0x290C, 0, 16, 0x00}, /* XRX200_FDMA_STAT_0_FSMS FSM states status */
3345 +// {0x2910, 0, 16, 0x00}, /* XRX200_FDMA_IER Fetch DMA Global InterruptEnable Register */
3346 +// {0x2910, 14, 1, 0x00}, /* XRX200_FDMA_IER_PCKD Packet Drop Interrupt Enable */
3347 +// {0x2910, 13, 1, 0x00}, /* XRX200_FDMA_IER_PCKR Packet Ready Interrupt Enable */
3348 +// {0x2910, 0, 8, 0x00}, /* XRX200_FDMA_IER_PCKT Packet Sent Interrupt Enable */
3349 +// {0x2914, 0, 16, 0x00}, /* XRX200_FDMA_ISR Fetch DMA Global InterruptStatus Register */
3350 +// {0x2914, 14, 1, 0x00}, /* XRX200_FDMA_ISR_PCKTD Packet Drop */
3351 +// {0x2914, 13, 1, 0x00}, /* XRX200_FDMA_ISR_PCKR Packet is Ready for Transmission */
3352 +// {0x2914, 0, 8, 0x00}, /* XRX200_FDMA_ISR_PCKT Packet Sent Event */
3353 +// {0x2A00, 0, 16, 0x18}, /* XRX200_FDMA_PCTRL Ethernet SwitchFetch DMA Port Control Register */
3354 +// {0x2A00, 3, 2, 0x18}, /* XRX200_FDMA_PCTRL_VLANMOD VLAN Modification Enable */
3355 +// {0x2A00, 2, 1, 0x18}, /* XRX200_FDMA_PCTRL_DSCPRM DSCP Re-marking Enable */
3356 +// {0x2A00, 1, 1, 0x18}, /* XRX200_FDMA_PCTRL_STEN Special Tag Insertion Enable */
3357 +// {0x2A00, 0, 1, 0x18}, /* XRX200_FDMA_PCTRL_EN FDMA Port Enable */
3358 +// {0x2A04, 0, 16, 0x18}, /* XRX200_FDMA_PRIO Ethernet SwitchFetch DMA Port Priority Register */
3359 +// {0x2A04, 0, 2, 0x18}, /* XRX200_FDMA_PRIO_PRIO FDMA PRIO */
3360 +// {0x2A08, 0, 16, 0x18}, /* XRX200_FDMA_PSTAT0 Ethernet SwitchFetch DMA Port Status Register 0 */
3361 +// {0x2A08, 15, 1, 0x18}, /* XRX200_FDMA_PSTAT0_PKT_AVAIL Port Egress Packet Available */
3362 +// {0x2A08, 14, 1, 0x18}, /* XRX200_FDMA_PSTAT0_POK Port Status OK */
3363 +// {0x2A08, 0, 6, 0x18}, /* XRX200_FDMA_PSTAT0_PSEG Port Egress Segment Count */
3364 +// {0x2A0C, 0, 16, 0x18}, /* XRX200_FDMA_PSTAT1_HDR Ethernet SwitchFetch DMA Port Status Register 1 */
3365 +// {0x2A0C, 0, 10, 0x18}, /* XRX200_FDMA_PSTAT1_HDR_PTR Header Pointer */
3366 +// {0x2A10, 0, 16, 0x18}, /* XRX200_FDMA_TSTAMP0 Egress TimeStamp Register 0 */
3367 +// {0x2A10, 0, 16, 0x18}, /* XRX200_FDMA_TSTAMP0_TSTL Time Stamp [15:0] */
3368 +// {0x2A14, 0, 16, 0x18}, /* XRX200_FDMA_TSTAMP1 Egress TimeStamp Register 1 */
3369 +// {0x2A14, 0, 16, 0x18}, /* XRX200_FDMA_TSTAMP1_TSTH Time Stamp [31:16] */
3370 +// {0x2D00, 0, 16, 0x00}, /* XRX200_SDMA_CTRL Ethernet Switch StoreDMA Control Register */
3371 +// {0x2D00, 0, 1, 0x00}, /* XRX200_SDMA_CTRL_TSTEN Time Stamp Enable */
3372 +// {0x2D04, 0, 16, 0x00}, /* XRX200_SDMA_FCTHR1 SDMA Flow Control Threshold1 Register */
3373 +// {0x2D04, 0, 10, 0x00}, /* XRX200_SDMA_FCTHR1_THR1 Threshold 1 */
3374 +// {0x2D08, 0, 16, 0x00}, /* XRX200_SDMA_FCTHR2 SDMA Flow Control Threshold2 Register */
3375 +// {0x2D08, 0, 10, 0x00}, /* XRX200_SDMA_FCTHR2_THR2 Threshold 2 */
3376 +// {0x2D0C, 0, 16, 0x00}, /* XRX200_SDMA_FCTHR3 SDMA Flow Control Threshold3 Register */
3377 +// {0x2D0C, 0, 10, 0x00}, /* XRX200_SDMA_FCTHR3_THR3 Threshold 3 */
3378 +// {0x2D10, 0, 16, 0x00}, /* XRX200_SDMA_FCTHR4 SDMA Flow Control Threshold4 Register */
3379 +// {0x2D10, 0, 10, 0x00}, /* XRX200_SDMA_FCTHR4_THR4 Threshold 4 */
3380 +// {0x2D14, 0, 16, 0x00}, /* XRX200_SDMA_FCTHR5 SDMA Flow Control Threshold5 Register */
3381 +// {0x2D14, 0, 10, 0x00}, /* XRX200_SDMA_FCTHR5_THR5 Threshold 5 */
3382 +// {0x2D18, 0, 16, 0x00}, /* XRX200_SDMA_FCTHR6 SDMA Flow Control Threshold6 Register */
3383 +// {0x2D18, 0, 10, 0x00}, /* XRX200_SDMA_FCTHR6_THR6 Threshold 6 */
3384 +// {0x2D1C, 0, 16, 0x00}, /* XRX200_SDMA_FCTHR7 SDMA Flow Control Threshold7 Register */
3385 +// {0x2D1C, 0, 11, 0x00}, /* XRX200_SDMA_FCTHR7_THR7 Threshold 7 */
3386 +// {0x2D20, 0, 16, 0x00}, /* XRX200_SDMA_STAT_0 SDMA Status Register0 */
3387 +// {0x2D20, 4, 3, 0x00}, /* XRX200_SDMA_STAT_0_BPS_FILL Back Pressure Status */
3388 +// {0x2D20, 2, 2, 0x00}, /* XRX200_SDMA_STAT_0_BPS_PNT Back Pressure Status */
3389 +// {0x2D20, 0, 2, 0x00}, /* XRX200_SDMA_STAT_0_DROP Back Pressure Status */
3390 +// {0x2D24, 0, 16, 0x00}, /* XRX200_SDMA_STAT_1 SDMA Status Register1 */
3391 +// {0x2D24, 0, 10, 0x00}, /* XRX200_SDMA_STAT_1_FILL Buffer Filling Level */
3392 +// {0x2D28, 0, 16, 0x00}, /* XRX200_SDMA_STAT_2 SDMA Status Register2 */
3393 +// {0x2D28, 0, 16, 0x00}, /* XRX200_SDMA_STAT_2_FSMS FSM states status */
3394 +// {0x2D2C, 0, 16, 0x00}, /* XRX200_SDMA_IER SDMA Interrupt Enable Register */
3395 +// {0x2D2C, 15, 1, 0x00}, /* XRX200_SDMA_IER_BPEX Buffer Pointers Exceeded */
3396 +// {0x2D2C, 14, 1, 0x00}, /* XRX200_SDMA_IER_BFULL Buffer Full */
3397 +// {0x2D2C, 13, 1, 0x00}, /* XRX200_SDMA_IER_FERR Frame Error */
3398 +// {0x2D2C, 0, 8, 0x00}, /* XRX200_SDMA_IER_FRX Frame Received Successfully */
3399 +// {0x2D30, 0, 16, 0x00}, /* XRX200_SDMA_ISR SDMA Interrupt Status Register */
3400 +// {0x2D30, 15, 1, 0x00}, /* XRX200_SDMA_ISR_BPEX Packet Descriptors Exceeded */
3401 +// {0x2D30, 14, 1, 0x00}, /* XRX200_SDMA_ISR_BFULL Buffer Full */
3402 +// {0x2D30, 13, 1, 0x00}, /* XRX200_SDMA_ISR_FERR Frame Error */
3403 +// {0x2D30, 0, 8, 0x00}, /* XRX200_SDMA_ISR_FRX Frame Received Successfully */
3404 +// {0x2F00, 0, 16, 0x18}, /* XRX200_SDMA_PCTRL Ethernet SwitchStore DMA Port Control Register */
3405 +// {0x2F00, 13, 2, 0x18}, /* XRX200_SDMA_PCTRL_DTHR Drop Threshold Selection */
3406 +// {0x2F00, 11, 2, 0x18}, /* XRX200_SDMA_PCTRL_PTHR Pause Threshold Selection */
3407 +// {0x2F00, 10, 1, 0x18}, /* XRX200_SDMA_PCTRL_PHYEFWD Forward PHY Error Frames */
3408 +// {0x2F00, 9, 1, 0x18}, /* XRX200_SDMA_PCTRL_ALGFWD Forward Alignment Error Frames */
3409 +// {0x2F00, 8, 1, 0x18}, /* XRX200_SDMA_PCTRL_LENFWD Forward Length Errored Frames */
3410 +// {0x2F00, 7, 1, 0x18}, /* XRX200_SDMA_PCTRL_OSFWD Forward Oversized Frames */
3411 +// {0x2F00, 6, 1, 0x18}, /* XRX200_SDMA_PCTRL_USFWD Forward Undersized Frames */
3412 +// {0x2F00, 5, 1, 0x18}, /* XRX200_SDMA_PCTRL_FCSIGN Ignore FCS Errors */
3413 +// {0x2F00, 4, 1, 0x18}, /* XRX200_SDMA_PCTRL_FCSFWD Forward FCS Errored Frames */
3414 +// {0x2F00, 3, 1, 0x18}, /* XRX200_SDMA_PCTRL_PAUFWD Pause Frame Forwarding */
3415 +// {0x2F00, 2, 1, 0x18}, /* XRX200_SDMA_PCTRL_MFCEN Metering Flow Control Enable */
3416 +// {0x2F00, 1, 1, 0x18}, /* XRX200_SDMA_PCTRL_FCEN Flow Control Enable */
3417 +// {0x2F00, 0, 1, 0x18}, /* XRX200_SDMA_PCTRL_PEN Port Enable */
3418 +// {0x2F04, 0, 16, 0x18}, /* XRX200_SDMA_PRIO Ethernet SwitchStore DMA Port Priority Register */
3419 +// {0x2F04, 0, 2, 0x18}, /* XRX200_SDMA_PRIO_PRIO SDMA PRIO */
3420 +// {0x2F08, 0, 16, 0x18}, /* XRX200_SDMA_PSTAT0_HDR Ethernet SwitchStore DMA Port Status Register 0 */
3421 +// {0x2F08, 0, 10, 0x18}, /* XRX200_SDMA_PSTAT0_HDR_PTR Port Ingress Queue Header Pointer */
3422 +// {0x2F0C, 0, 16, 0x18}, /* XRX200_SDMA_PSTAT1 Ethernet SwitchStore DMA Port Status Register 1 */
3423 +// {0x2F0C, 0, 10, 0x18}, /* XRX200_SDMA_PSTAT1_PPKT Port Ingress Packet Count */
3424 +// {0x2F10, 0, 16, 0x18}, /* XRX200_SDMA_TSTAMP0 Ingress TimeStamp Register 0 */
3425 +// {0x2F10, 0, 16, 0x18}, /* XRX200_SDMA_TSTAMP0_TSTL Time Stamp [15:0] */
3426 +// {0x2F14, 0, 16, 0x18}, /* XRX200_SDMA_TSTAMP1 Ingress TimeStamp Register 1 */
3427 +// {0x2F14, 0, 16, 0x18}, /* XRX200_SDMA_TSTAMP1_TSTH Time Stamp [31:16] */
3428 +};
3429 +
3430 +