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dwc_eth_qos: release descriptors outside netif_tx_lock
[people/arne_f/kernel.git] / drivers / net / ethernet / synopsys / dwc_eth_qos.c
1 /* Synopsys DWC Ethernet Quality-of-Service v4.10a linux driver
2 *
3 * This is a driver for the Synopsys DWC Ethernet QoS IP version 4.10a (GMAC).
4 * This version introduced a lot of changes which breaks backwards
5 * compatibility the non-QoS IP from Synopsys (used in the ST Micro drivers).
6 * Some fields differ between version 4.00a and 4.10a, mainly the interrupt
7 * bit fields. The driver could be made compatible with 4.00, if all relevant
8 * HW erratas are handled.
9 *
10 * The GMAC is highly configurable at synthesis time. This driver has been
11 * developed for a subset of the total available feature set. Currently
12 * it supports:
13 * - TSO
14 * - Checksum offload for RX and TX.
15 * - Energy efficient ethernet.
16 * - GMII phy interface.
17 * - The statistics module.
18 * - Single RX and TX queue.
19 *
20 * Copyright (C) 2015 Axis Communications AB.
21 *
22 * This program is free software; you can redistribute it and/or modify it
23 * under the terms and conditions of the GNU General Public License,
24 * version 2, as published by the Free Software Foundation.
25 */
26
27 #include <linux/clk.h>
28 #include <linux/module.h>
29 #include <linux/kernel.h>
30 #include <linux/init.h>
31 #include <linux/io.h>
32 #include <linux/ethtool.h>
33 #include <linux/stat.h>
34 #include <linux/types.h>
35
36 #include <linux/types.h>
37 #include <linux/slab.h>
38 #include <linux/delay.h>
39 #include <linux/mm.h>
40 #include <linux/netdevice.h>
41 #include <linux/etherdevice.h>
42 #include <linux/platform_device.h>
43
44 #include <linux/phy.h>
45 #include <linux/mii.h>
46 #include <linux/delay.h>
47 #include <linux/dma-mapping.h>
48 #include <linux/vmalloc.h>
49 #include <linux/version.h>
50
51 #include <linux/device.h>
52 #include <linux/bitrev.h>
53 #include <linux/crc32.h>
54
55 #include <linux/of.h>
56 #include <linux/interrupt.h>
57 #include <linux/clocksource.h>
58 #include <linux/net_tstamp.h>
59 #include <linux/pm_runtime.h>
60 #include <linux/of_net.h>
61 #include <linux/of_address.h>
62 #include <linux/of_mdio.h>
63 #include <linux/timer.h>
64 #include <linux/tcp.h>
65
66 #define DRIVER_NAME "dwceqos"
67 #define DRIVER_DESCRIPTION "Synopsys DWC Ethernet QoS driver"
68 #define DRIVER_VERSION "0.9"
69
70 #define DWCEQOS_MSG_DEFAULT (NETIF_MSG_DRV | NETIF_MSG_PROBE | \
71 NETIF_MSG_LINK | NETIF_MSG_IFDOWN | NETIF_MSG_IFUP)
72
73 #define DWCEQOS_TX_TIMEOUT 5 /* Seconds */
74
75 #define DWCEQOS_LPI_TIMER_MIN 8
76 #define DWCEQOS_LPI_TIMER_MAX ((1 << 20) - 1)
77
78 #define DWCEQOS_RX_BUF_SIZE 2048
79
80 #define DWCEQOS_RX_DCNT 256
81 #define DWCEQOS_TX_DCNT 256
82
83 #define DWCEQOS_HASH_TABLE_SIZE 64
84
85 /* The size field in the DMA descriptor is 14 bits */
86 #define BYTES_PER_DMA_DESC 16376
87
88 /* Hardware registers */
89 #define START_MAC_REG_OFFSET 0x0000
90 #define MAX_MAC_REG_OFFSET 0x0bd0
91 #define START_MTL_REG_OFFSET 0x0c00
92 #define MAX_MTL_REG_OFFSET 0x0d7c
93 #define START_DMA_REG_OFFSET 0x1000
94 #define MAX_DMA_REG_OFFSET 0x117C
95
96 #define REG_SPACE_SIZE 0x1800
97
98 /* DMA */
99 #define REG_DWCEQOS_DMA_MODE 0x1000
100 #define REG_DWCEQOS_DMA_SYSBUS_MODE 0x1004
101 #define REG_DWCEQOS_DMA_IS 0x1008
102 #define REG_DWCEQOS_DMA_DEBUG_ST0 0x100c
103
104 /* DMA channel registers */
105 #define REG_DWCEQOS_DMA_CH0_CTRL 0x1100
106 #define REG_DWCEQOS_DMA_CH0_TX_CTRL 0x1104
107 #define REG_DWCEQOS_DMA_CH0_RX_CTRL 0x1108
108 #define REG_DWCEQOS_DMA_CH0_TXDESC_LIST 0x1114
109 #define REG_DWCEQOS_DMA_CH0_RXDESC_LIST 0x111c
110 #define REG_DWCEQOS_DMA_CH0_TXDESC_TAIL 0x1120
111 #define REG_DWCEQOS_DMA_CH0_RXDESC_TAIL 0x1128
112 #define REG_DWCEQOS_DMA_CH0_TXDESC_LEN 0x112c
113 #define REG_DWCEQOS_DMA_CH0_RXDESC_LEN 0x1130
114 #define REG_DWCEQOS_DMA_CH0_IE 0x1134
115 #define REG_DWCEQOS_DMA_CH0_CUR_TXDESC 0x1144
116 #define REG_DWCEQOS_DMA_CH0_CUR_RXDESC 0x114c
117 #define REG_DWCEQOS_DMA_CH0_CUR_TXBUF 0x1154
118 #define REG_DWCEQOS_DMA_CH0_CUR_RXBUG 0x115c
119 #define REG_DWCEQOS_DMA_CH0_STA 0x1160
120
121 #define DWCEQOS_DMA_MODE_TXPR BIT(11)
122 #define DWCEQOS_DMA_MODE_DA BIT(1)
123
124 #define DWCEQOS_DMA_SYSBUS_MODE_EN_LPI BIT(31)
125 #define DWCEQOS_DMA_SYSBUS_MODE_FB BIT(0)
126 #define DWCEQOS_DMA_SYSBUS_MODE_AAL BIT(12)
127
128 #define DWCEQOS_DMA_SYSBUS_MODE_RD_OSR_LIMIT(x) \
129 (((x) << 16) & 0x000F0000)
130 #define DWCEQOS_DMA_SYSBUS_MODE_RD_OSR_LIMIT_DEFAULT 3
131 #define DWCEQOS_DMA_SYSBUS_MODE_RD_OSR_LIMIT_MASK GENMASK(19, 16)
132
133 #define DWCEQOS_DMA_SYSBUS_MODE_WR_OSR_LIMIT(x) \
134 (((x) << 24) & 0x0F000000)
135 #define DWCEQOS_DMA_SYSBUS_MODE_WR_OSR_LIMIT_DEFAULT 3
136 #define DWCEQOS_DMA_SYSBUS_MODE_WR_OSR_LIMIT_MASK GENMASK(27, 24)
137
138 #define DWCEQOS_DMA_SYSBUS_MODE_BURST_MASK GENMASK(7, 1)
139 #define DWCEQOS_DMA_SYSBUS_MODE_BURST(x) \
140 (((x) << 1) & DWCEQOS_DMA_SYSBUS_MODE_BURST_MASK)
141 #define DWCEQOS_DMA_SYSBUS_MODE_BURST_DEFAULT GENMASK(3, 1)
142
143 #define DWCEQOS_DMA_CH_CTRL_PBLX8 BIT(16)
144 #define DWCEQOS_DMA_CH_CTRL_DSL(x) ((x) << 18)
145
146 #define DWCEQOS_DMA_CH_CTRL_PBL(x) ((x) << 16)
147 #define DWCEQOS_DMA_CH_CTRL_START BIT(0)
148 #define DWCEQOS_DMA_CH_RX_CTRL_BUFSIZE(x) ((x) << 1)
149 #define DWCEQOS_DMA_CH_TX_OSP BIT(4)
150 #define DWCEQOS_DMA_CH_TX_TSE BIT(12)
151
152 #define DWCEQOS_DMA_CH0_IE_NIE BIT(15)
153 #define DWCEQOS_DMA_CH0_IE_AIE BIT(14)
154 #define DWCEQOS_DMA_CH0_IE_RIE BIT(6)
155 #define DWCEQOS_DMA_CH0_IE_TIE BIT(0)
156 #define DWCEQOS_DMA_CH0_IE_FBEE BIT(12)
157 #define DWCEQOS_DMA_CH0_IE_RBUE BIT(7)
158
159 #define DWCEQOS_DMA_IS_DC0IS BIT(0)
160 #define DWCEQOS_DMA_IS_MTLIS BIT(16)
161 #define DWCEQOS_DMA_IS_MACIS BIT(17)
162
163 #define DWCEQOS_DMA_CH0_IS_TI BIT(0)
164 #define DWCEQOS_DMA_CH0_IS_RI BIT(6)
165 #define DWCEQOS_DMA_CH0_IS_RBU BIT(7)
166 #define DWCEQOS_DMA_CH0_IS_FBE BIT(12)
167 #define DWCEQOS_DMA_CH0_IS_CDE BIT(13)
168 #define DWCEQOS_DMA_CH0_IS_AIS BIT(14)
169
170 #define DWCEQOS_DMA_CH0_IS_TEB GENMASK(18, 16)
171 #define DWCEQOS_DMA_CH0_IS_TX_ERR_READ BIT(16)
172 #define DWCEQOS_DMA_CH0_IS_TX_ERR_DESCR BIT(17)
173
174 #define DWCEQOS_DMA_CH0_IS_REB GENMASK(21, 19)
175 #define DWCEQOS_DMA_CH0_IS_RX_ERR_READ BIT(19)
176 #define DWCEQOS_DMA_CH0_IS_RX_ERR_DESCR BIT(20)
177
178 /* DMA descriptor bits for RX normal descriptor (read format) */
179 #define DWCEQOS_DMA_RDES3_OWN BIT(31)
180 #define DWCEQOS_DMA_RDES3_INTE BIT(30)
181 #define DWCEQOS_DMA_RDES3_BUF2V BIT(25)
182 #define DWCEQOS_DMA_RDES3_BUF1V BIT(24)
183
184 /* DMA descriptor bits for RX normal descriptor (write back format) */
185 #define DWCEQOS_DMA_RDES1_IPCE BIT(7)
186 #define DWCEQOS_DMA_RDES3_ES BIT(15)
187 #define DWCEQOS_DMA_RDES3_E_JT BIT(14)
188 #define DWCEQOS_DMA_RDES3_PL(x) ((x) & 0x7fff)
189 #define DWCEQOS_DMA_RDES1_PT 0x00000007
190 #define DWCEQOS_DMA_RDES1_PT_UDP BIT(0)
191 #define DWCEQOS_DMA_RDES1_PT_TCP BIT(1)
192 #define DWCEQOS_DMA_RDES1_PT_ICMP 0x00000003
193
194 /* DMA descriptor bits for TX normal descriptor (read format) */
195 #define DWCEQOS_DMA_TDES2_IOC BIT(31)
196 #define DWCEQOS_DMA_TDES3_OWN BIT(31)
197 #define DWCEQOS_DMA_TDES3_CTXT BIT(30)
198 #define DWCEQOS_DMA_TDES3_FD BIT(29)
199 #define DWCEQOS_DMA_TDES3_LD BIT(28)
200 #define DWCEQOS_DMA_TDES3_CIPH BIT(16)
201 #define DWCEQOS_DMA_TDES3_CIPP BIT(17)
202 #define DWCEQOS_DMA_TDES3_CA 0x00030000
203 #define DWCEQOS_DMA_TDES3_TSE BIT(18)
204 #define DWCEQOS_DMA_DES3_THL(x) ((x) << 19)
205 #define DWCEQOS_DMA_DES2_B2L(x) ((x) << 16)
206
207 #define DWCEQOS_DMA_TDES3_TCMSSV BIT(26)
208
209 /* DMA channel states */
210 #define DMA_TX_CH_STOPPED 0
211 #define DMA_TX_CH_SUSPENDED 6
212
213 #define DMA_GET_TX_STATE_CH0(status0) ((status0 & 0xF000) >> 12)
214
215 /* MTL */
216 #define REG_DWCEQOS_MTL_OPER 0x0c00
217 #define REG_DWCEQOS_MTL_DEBUG_ST 0x0c0c
218 #define REG_DWCEQOS_MTL_TXQ0_DEBUG_ST 0x0d08
219 #define REG_DWCEQOS_MTL_RXQ0_DEBUG_ST 0x0d38
220
221 #define REG_DWCEQOS_MTL_IS 0x0c20
222 #define REG_DWCEQOS_MTL_TXQ0_OPER 0x0d00
223 #define REG_DWCEQOS_MTL_RXQ0_OPER 0x0d30
224 #define REG_DWCEQOS_MTL_RXQ0_MIS_CNT 0x0d34
225 #define REG_DWCEQOS_MTL_RXQ0_CTRL 0x0d3c
226
227 #define REG_DWCEQOS_MTL_Q0_ISCTRL 0x0d2c
228
229 #define DWCEQOS_MTL_SCHALG_STRICT 0x00000060
230
231 #define DWCEQOS_MTL_TXQ_TXQEN BIT(3)
232 #define DWCEQOS_MTL_TXQ_TSF BIT(1)
233 #define DWCEQOS_MTL_TXQ_FTQ BIT(0)
234 #define DWCEQOS_MTL_TXQ_TTC512 0x00000070
235
236 #define DWCEQOS_MTL_TXQ_SIZE(x) ((((x) - 256) & 0xff00) << 8)
237
238 #define DWCEQOS_MTL_RXQ_SIZE(x) ((((x) - 256) & 0xff00) << 12)
239 #define DWCEQOS_MTL_RXQ_EHFC BIT(7)
240 #define DWCEQOS_MTL_RXQ_DIS_TCP_EF BIT(6)
241 #define DWCEQOS_MTL_RXQ_FEP BIT(4)
242 #define DWCEQOS_MTL_RXQ_FUP BIT(3)
243 #define DWCEQOS_MTL_RXQ_RSF BIT(5)
244 #define DWCEQOS_MTL_RXQ_RTC32 BIT(0)
245
246 /* MAC */
247 #define REG_DWCEQOS_MAC_CFG 0x0000
248 #define REG_DWCEQOS_MAC_EXT_CFG 0x0004
249 #define REG_DWCEQOS_MAC_PKT_FILT 0x0008
250 #define REG_DWCEQOS_MAC_WD_TO 0x000c
251 #define REG_DWCEQOS_HASTABLE_LO 0x0010
252 #define REG_DWCEQOS_HASTABLE_HI 0x0014
253 #define REG_DWCEQOS_MAC_IS 0x00b0
254 #define REG_DWCEQOS_MAC_IE 0x00b4
255 #define REG_DWCEQOS_MAC_STAT 0x00b8
256 #define REG_DWCEQOS_MAC_MDIO_ADDR 0x0200
257 #define REG_DWCEQOS_MAC_MDIO_DATA 0x0204
258 #define REG_DWCEQOS_MAC_MAC_ADDR0_HI 0x0300
259 #define REG_DWCEQOS_MAC_MAC_ADDR0_LO 0x0304
260 #define REG_DWCEQOS_MAC_RXQ0_CTRL0 0x00a0
261 #define REG_DWCEQOS_MAC_HW_FEATURE0 0x011c
262 #define REG_DWCEQOS_MAC_HW_FEATURE1 0x0120
263 #define REG_DWCEQOS_MAC_HW_FEATURE2 0x0124
264 #define REG_DWCEQOS_MAC_HASHTABLE_LO 0x0010
265 #define REG_DWCEQOS_MAC_HASHTABLE_HI 0x0014
266 #define REG_DWCEQOS_MAC_LPI_CTRL_STATUS 0x00d0
267 #define REG_DWCEQOS_MAC_LPI_TIMERS_CTRL 0x00d4
268 #define REG_DWCEQOS_MAC_LPI_ENTRY_TIMER 0x00d8
269 #define REG_DWCEQOS_MAC_1US_TIC_COUNTER 0x00dc
270 #define REG_DWCEQOS_MAC_RX_FLOW_CTRL 0x0090
271 #define REG_DWCEQOS_MAC_Q0_TX_FLOW 0x0070
272
273 #define DWCEQOS_MAC_CFG_ACS BIT(20)
274 #define DWCEQOS_MAC_CFG_JD BIT(17)
275 #define DWCEQOS_MAC_CFG_JE BIT(16)
276 #define DWCEQOS_MAC_CFG_PS BIT(15)
277 #define DWCEQOS_MAC_CFG_FES BIT(14)
278 #define DWCEQOS_MAC_CFG_DM BIT(13)
279 #define DWCEQOS_MAC_CFG_DO BIT(10)
280 #define DWCEQOS_MAC_CFG_TE BIT(1)
281 #define DWCEQOS_MAC_CFG_IPC BIT(27)
282 #define DWCEQOS_MAC_CFG_RE BIT(0)
283
284 #define DWCEQOS_ADDR_HIGH(reg) (0x00000300 + (reg * 8))
285 #define DWCEQOS_ADDR_LOW(reg) (0x00000304 + (reg * 8))
286
287 #define DWCEQOS_MAC_IS_LPI_INT BIT(5)
288 #define DWCEQOS_MAC_IS_MMC_INT BIT(8)
289
290 #define DWCEQOS_MAC_RXQ_EN BIT(1)
291 #define DWCEQOS_MAC_MAC_ADDR_HI_EN BIT(31)
292 #define DWCEQOS_MAC_PKT_FILT_RA BIT(31)
293 #define DWCEQOS_MAC_PKT_FILT_HPF BIT(10)
294 #define DWCEQOS_MAC_PKT_FILT_SAF BIT(9)
295 #define DWCEQOS_MAC_PKT_FILT_SAIF BIT(8)
296 #define DWCEQOS_MAC_PKT_FILT_DBF BIT(5)
297 #define DWCEQOS_MAC_PKT_FILT_PM BIT(4)
298 #define DWCEQOS_MAC_PKT_FILT_DAIF BIT(3)
299 #define DWCEQOS_MAC_PKT_FILT_HMC BIT(2)
300 #define DWCEQOS_MAC_PKT_FILT_HUC BIT(1)
301 #define DWCEQOS_MAC_PKT_FILT_PR BIT(0)
302
303 #define DWCEQOS_MAC_MDIO_ADDR_CR(x) (((x & 15)) << 8)
304 #define DWCEQOS_MAC_MDIO_ADDR_CR_20 2
305 #define DWCEQOS_MAC_MDIO_ADDR_CR_35 3
306 #define DWCEQOS_MAC_MDIO_ADDR_CR_60 0
307 #define DWCEQOS_MAC_MDIO_ADDR_CR_100 1
308 #define DWCEQOS_MAC_MDIO_ADDR_CR_150 4
309 #define DWCEQOS_MAC_MDIO_ADDR_CR_250 5
310 #define DWCEQOS_MAC_MDIO_ADDR_GOC_READ 0x0000000c
311 #define DWCEQOS_MAC_MDIO_ADDR_GOC_WRITE BIT(2)
312 #define DWCEQOS_MAC_MDIO_ADDR_GB BIT(0)
313
314 #define DWCEQOS_MAC_LPI_CTRL_STATUS_TLPIEN BIT(0)
315 #define DWCEQOS_MAC_LPI_CTRL_STATUS_TLPIEX BIT(1)
316 #define DWCEQOS_MAC_LPI_CTRL_STATUS_RLPIEN BIT(2)
317 #define DWCEQOS_MAC_LPI_CTRL_STATUS_RLPIEX BIT(3)
318 #define DWCEQOS_MAC_LPI_CTRL_STATUS_TLPIST BIT(8)
319 #define DWCEQOS_MAC_LPI_CTRL_STATUS_RLPIST BIT(9)
320 #define DWCEQOS_MAC_LPI_CTRL_STATUS_LPIEN BIT(16)
321 #define DWCEQOS_MAC_LPI_CTRL_STATUS_PLS BIT(17)
322 #define DWCEQOS_MAC_LPI_CTRL_STATUS_PLSEN BIT(18)
323 #define DWCEQOS_MAC_LPI_CTRL_STATUS_LIPTXA BIT(19)
324 #define DWCEQOS_MAC_LPI_CTRL_STATUS_LPITE BIT(20)
325 #define DWCEQOS_MAC_LPI_CTRL_STATUS_LPITCSE BIT(21)
326
327 #define DWCEQOS_MAC_1US_TIC_COUNTER_VAL(x) ((x) & GENMASK(11, 0))
328
329 #define DWCEQOS_LPI_CTRL_ENABLE_EEE (DWCEQOS_MAC_LPI_CTRL_STATUS_LPITE | \
330 DWCEQOS_MAC_LPI_CTRL_STATUS_LIPTXA | \
331 DWCEQOS_MAC_LPI_CTRL_STATUS_LPIEN)
332
333 #define DWCEQOS_MAC_RX_FLOW_CTRL_RFE BIT(0)
334
335 #define DWCEQOS_MAC_Q0_TX_FLOW_TFE BIT(1)
336 #define DWCEQOS_MAC_Q0_TX_FLOW_PT(time) ((time) << 16)
337 #define DWCEQOS_MAC_Q0_TX_FLOW_PLT_4_SLOTS (0 << 4)
338
339 /* Features */
340 #define DWCEQOS_MAC_HW_FEATURE0_RXCOESEL BIT(16)
341 #define DWCEQOS_MAC_HW_FEATURE0_TXCOESEL BIT(14)
342 #define DWCEQOS_MAC_HW_FEATURE0_HDSEL BIT(2)
343 #define DWCEQOS_MAC_HW_FEATURE0_EEESEL BIT(13)
344 #define DWCEQOS_MAC_HW_FEATURE0_GMIISEL BIT(1)
345 #define DWCEQOS_MAC_HW_FEATURE0_MIISEL BIT(0)
346
347 #define DWCEQOS_MAC_HW_FEATURE1_TSOEN BIT(18)
348 #define DWCEQOS_MAC_HW_FEATURE1_TXFIFOSIZE(x) ((128 << ((x) & 0x7c0)) >> 6)
349 #define DWCEQOS_MAC_HW_FEATURE1_RXFIFOSIZE(x) (128 << ((x) & 0x1f))
350
351 #define DWCEQOS_MAX_PERFECT_ADDRESSES(feature1) \
352 (1 + (((feature1) & 0x1fc0000) >> 18))
353
354 #define DWCEQOS_MDIO_PHYADDR(x) (((x) & 0x1f) << 21)
355 #define DWCEQOS_MDIO_PHYREG(x) (((x) & 0x1f) << 16)
356
357 #define DWCEQOS_DMA_MODE_SWR BIT(0)
358
359 #define DWCEQOS_DWCEQOS_RX_BUF_SIZE 2048
360
361 /* Mac Management Counters */
362 #define REG_DWCEQOS_MMC_CTRL 0x0700
363 #define REG_DWCEQOS_MMC_RXIRQ 0x0704
364 #define REG_DWCEQOS_MMC_TXIRQ 0x0708
365 #define REG_DWCEQOS_MMC_RXIRQMASK 0x070c
366 #define REG_DWCEQOS_MMC_TXIRQMASK 0x0710
367
368 #define DWCEQOS_MMC_CTRL_CNTRST BIT(0)
369 #define DWCEQOS_MMC_CTRL_RSTONRD BIT(2)
370
371 #define DWC_MMC_TXLPITRANSCNTR 0x07F0
372 #define DWC_MMC_TXLPIUSCNTR 0x07EC
373 #define DWC_MMC_TXOVERSIZE_G 0x0778
374 #define DWC_MMC_TXVLANPACKETS_G 0x0774
375 #define DWC_MMC_TXPAUSEPACKETS 0x0770
376 #define DWC_MMC_TXEXCESSDEF 0x076C
377 #define DWC_MMC_TXPACKETCOUNT_G 0x0768
378 #define DWC_MMC_TXOCTETCOUNT_G 0x0764
379 #define DWC_MMC_TXCARRIERERROR 0x0760
380 #define DWC_MMC_TXEXCESSCOL 0x075C
381 #define DWC_MMC_TXLATECOL 0x0758
382 #define DWC_MMC_TXDEFERRED 0x0754
383 #define DWC_MMC_TXMULTICOL_G 0x0750
384 #define DWC_MMC_TXSINGLECOL_G 0x074C
385 #define DWC_MMC_TXUNDERFLOWERROR 0x0748
386 #define DWC_MMC_TXBROADCASTPACKETS_GB 0x0744
387 #define DWC_MMC_TXMULTICASTPACKETS_GB 0x0740
388 #define DWC_MMC_TXUNICASTPACKETS_GB 0x073C
389 #define DWC_MMC_TX1024TOMAXOCTETS_GB 0x0738
390 #define DWC_MMC_TX512TO1023OCTETS_GB 0x0734
391 #define DWC_MMC_TX256TO511OCTETS_GB 0x0730
392 #define DWC_MMC_TX128TO255OCTETS_GB 0x072C
393 #define DWC_MMC_TX65TO127OCTETS_GB 0x0728
394 #define DWC_MMC_TX64OCTETS_GB 0x0724
395 #define DWC_MMC_TXMULTICASTPACKETS_G 0x0720
396 #define DWC_MMC_TXBROADCASTPACKETS_G 0x071C
397 #define DWC_MMC_TXPACKETCOUNT_GB 0x0718
398 #define DWC_MMC_TXOCTETCOUNT_GB 0x0714
399
400 #define DWC_MMC_RXLPITRANSCNTR 0x07F8
401 #define DWC_MMC_RXLPIUSCNTR 0x07F4
402 #define DWC_MMC_RXCTRLPACKETS_G 0x07E4
403 #define DWC_MMC_RXRCVERROR 0x07E0
404 #define DWC_MMC_RXWATCHDOG 0x07DC
405 #define DWC_MMC_RXVLANPACKETS_GB 0x07D8
406 #define DWC_MMC_RXFIFOOVERFLOW 0x07D4
407 #define DWC_MMC_RXPAUSEPACKETS 0x07D0
408 #define DWC_MMC_RXOUTOFRANGETYPE 0x07CC
409 #define DWC_MMC_RXLENGTHERROR 0x07C8
410 #define DWC_MMC_RXUNICASTPACKETS_G 0x07C4
411 #define DWC_MMC_RX1024TOMAXOCTETS_GB 0x07C0
412 #define DWC_MMC_RX512TO1023OCTETS_GB 0x07BC
413 #define DWC_MMC_RX256TO511OCTETS_GB 0x07B8
414 #define DWC_MMC_RX128TO255OCTETS_GB 0x07B4
415 #define DWC_MMC_RX65TO127OCTETS_GB 0x07B0
416 #define DWC_MMC_RX64OCTETS_GB 0x07AC
417 #define DWC_MMC_RXOVERSIZE_G 0x07A8
418 #define DWC_MMC_RXUNDERSIZE_G 0x07A4
419 #define DWC_MMC_RXJABBERERROR 0x07A0
420 #define DWC_MMC_RXRUNTERROR 0x079C
421 #define DWC_MMC_RXALIGNMENTERROR 0x0798
422 #define DWC_MMC_RXCRCERROR 0x0794
423 #define DWC_MMC_RXMULTICASTPACKETS_G 0x0790
424 #define DWC_MMC_RXBROADCASTPACKETS_G 0x078C
425 #define DWC_MMC_RXOCTETCOUNT_G 0x0788
426 #define DWC_MMC_RXOCTETCOUNT_GB 0x0784
427 #define DWC_MMC_RXPACKETCOUNT_GB 0x0780
428
429 static int debug = 3;
430 module_param(debug, int, 0);
431 MODULE_PARM_DESC(debug, "DWC_eth_qos debug level (0=none,...,16=all)");
432
433 /* DMA ring descriptor. These are used as support descriptors for the HW DMA */
434 struct ring_desc {
435 struct sk_buff *skb;
436 dma_addr_t mapping;
437 size_t len;
438 };
439
440 /* DMA hardware descriptor */
441 struct dwceqos_dma_desc {
442 u32 des0;
443 u32 des1;
444 u32 des2;
445 u32 des3;
446 } ____cacheline_aligned;
447
448 struct dwceqos_mmc_counters {
449 __u64 txlpitranscntr;
450 __u64 txpiuscntr;
451 __u64 txoversize_g;
452 __u64 txvlanpackets_g;
453 __u64 txpausepackets;
454 __u64 txexcessdef;
455 __u64 txpacketcount_g;
456 __u64 txoctetcount_g;
457 __u64 txcarriererror;
458 __u64 txexcesscol;
459 __u64 txlatecol;
460 __u64 txdeferred;
461 __u64 txmulticol_g;
462 __u64 txsinglecol_g;
463 __u64 txunderflowerror;
464 __u64 txbroadcastpackets_gb;
465 __u64 txmulticastpackets_gb;
466 __u64 txunicastpackets_gb;
467 __u64 tx1024tomaxoctets_gb;
468 __u64 tx512to1023octets_gb;
469 __u64 tx256to511octets_gb;
470 __u64 tx128to255octets_gb;
471 __u64 tx65to127octets_gb;
472 __u64 tx64octets_gb;
473 __u64 txmulticastpackets_g;
474 __u64 txbroadcastpackets_g;
475 __u64 txpacketcount_gb;
476 __u64 txoctetcount_gb;
477
478 __u64 rxlpitranscntr;
479 __u64 rxlpiuscntr;
480 __u64 rxctrlpackets_g;
481 __u64 rxrcverror;
482 __u64 rxwatchdog;
483 __u64 rxvlanpackets_gb;
484 __u64 rxfifooverflow;
485 __u64 rxpausepackets;
486 __u64 rxoutofrangetype;
487 __u64 rxlengtherror;
488 __u64 rxunicastpackets_g;
489 __u64 rx1024tomaxoctets_gb;
490 __u64 rx512to1023octets_gb;
491 __u64 rx256to511octets_gb;
492 __u64 rx128to255octets_gb;
493 __u64 rx65to127octets_gb;
494 __u64 rx64octets_gb;
495 __u64 rxoversize_g;
496 __u64 rxundersize_g;
497 __u64 rxjabbererror;
498 __u64 rxrunterror;
499 __u64 rxalignmenterror;
500 __u64 rxcrcerror;
501 __u64 rxmulticastpackets_g;
502 __u64 rxbroadcastpackets_g;
503 __u64 rxoctetcount_g;
504 __u64 rxoctetcount_gb;
505 __u64 rxpacketcount_gb;
506 };
507
508 /* Ethtool statistics */
509
510 struct dwceqos_stat {
511 const char stat_name[ETH_GSTRING_LEN];
512 int offset;
513 };
514
515 #define STAT_ITEM(name, var) \
516 {\
517 name,\
518 offsetof(struct dwceqos_mmc_counters, var),\
519 }
520
521 static const struct dwceqos_stat dwceqos_ethtool_stats[] = {
522 STAT_ITEM("tx_bytes", txoctetcount_gb),
523 STAT_ITEM("tx_packets", txpacketcount_gb),
524 STAT_ITEM("tx_unicst_packets", txunicastpackets_gb),
525 STAT_ITEM("tx_broadcast_packets", txbroadcastpackets_gb),
526 STAT_ITEM("tx_multicast_packets", txmulticastpackets_gb),
527 STAT_ITEM("tx_pause_packets", txpausepackets),
528 STAT_ITEM("tx_up_to_64_byte_packets", tx64octets_gb),
529 STAT_ITEM("tx_65_to_127_byte_packets", tx65to127octets_gb),
530 STAT_ITEM("tx_128_to_255_byte_packets", tx128to255octets_gb),
531 STAT_ITEM("tx_256_to_511_byte_packets", tx256to511octets_gb),
532 STAT_ITEM("tx_512_to_1023_byte_packets", tx512to1023octets_gb),
533 STAT_ITEM("tx_1024_to_maxsize_packets", tx1024tomaxoctets_gb),
534 STAT_ITEM("tx_underflow_errors", txunderflowerror),
535 STAT_ITEM("tx_lpi_count", txlpitranscntr),
536
537 STAT_ITEM("rx_bytes", rxoctetcount_gb),
538 STAT_ITEM("rx_packets", rxpacketcount_gb),
539 STAT_ITEM("rx_unicast_packets", rxunicastpackets_g),
540 STAT_ITEM("rx_broadcast_packets", rxbroadcastpackets_g),
541 STAT_ITEM("rx_multicast_packets", rxmulticastpackets_g),
542 STAT_ITEM("rx_vlan_packets", rxvlanpackets_gb),
543 STAT_ITEM("rx_pause_packets", rxpausepackets),
544 STAT_ITEM("rx_up_to_64_byte_packets", rx64octets_gb),
545 STAT_ITEM("rx_65_to_127_byte_packets", rx65to127octets_gb),
546 STAT_ITEM("rx_128_to_255_byte_packets", rx128to255octets_gb),
547 STAT_ITEM("rx_256_to_511_byte_packets", rx256to511octets_gb),
548 STAT_ITEM("rx_512_to_1023_byte_packets", rx512to1023octets_gb),
549 STAT_ITEM("rx_1024_to_maxsize_packets", rx1024tomaxoctets_gb),
550 STAT_ITEM("rx_fifo_overflow_errors", rxfifooverflow),
551 STAT_ITEM("rx_oversize_packets", rxoversize_g),
552 STAT_ITEM("rx_undersize_packets", rxundersize_g),
553 STAT_ITEM("rx_jabbers", rxjabbererror),
554 STAT_ITEM("rx_align_errors", rxalignmenterror),
555 STAT_ITEM("rx_crc_errors", rxcrcerror),
556 STAT_ITEM("rx_lpi_count", rxlpitranscntr),
557 };
558
559 /* Configuration of AXI bus parameters.
560 * These values depend on the parameters set on the MAC core as well
561 * as the AXI interconnect.
562 */
563 struct dwceqos_bus_cfg {
564 /* Enable AXI low-power interface. */
565 bool en_lpi;
566 /* Limit on number of outstanding AXI write requests. */
567 u32 write_requests;
568 /* Limit on number of outstanding AXI read requests. */
569 u32 read_requests;
570 /* Bitmap of allowed AXI burst lengths, 4-256 beats. */
571 u32 burst_map;
572 /* DMA Programmable burst length*/
573 u32 tx_pbl;
574 u32 rx_pbl;
575 };
576
577 struct dwceqos_flowcontrol {
578 int autoneg;
579 int rx;
580 int rx_current;
581 int tx;
582 int tx_current;
583 };
584
585 struct net_local {
586 void __iomem *baseaddr;
587 struct clk *phy_ref_clk;
588 struct clk *apb_pclk;
589
590 struct device_node *phy_node;
591 struct net_device *ndev;
592 struct platform_device *pdev;
593
594 u32 msg_enable;
595
596 struct tasklet_struct tx_bdreclaim_tasklet;
597 struct workqueue_struct *txtimeout_handler_wq;
598 struct work_struct txtimeout_reinit;
599
600 phy_interface_t phy_interface;
601 struct phy_device *phy_dev;
602 struct mii_bus *mii_bus;
603
604 unsigned int link;
605 unsigned int speed;
606 unsigned int duplex;
607
608 struct napi_struct napi;
609
610 /* DMA Descriptor Areas */
611 struct ring_desc *rx_skb;
612 struct ring_desc *tx_skb;
613
614 struct dwceqos_dma_desc *tx_descs;
615 struct dwceqos_dma_desc *rx_descs;
616
617 /* DMA Mapped Descriptor areas*/
618 dma_addr_t tx_descs_addr;
619 dma_addr_t rx_descs_addr;
620 dma_addr_t tx_descs_tail_addr;
621 dma_addr_t rx_descs_tail_addr;
622
623 size_t tx_free;
624 size_t tx_next;
625 size_t rx_cur;
626 size_t tx_cur;
627
628 /* Spinlocks for accessing DMA Descriptors */
629 spinlock_t tx_lock;
630
631 /* Spinlock for register read-modify-writes. */
632 spinlock_t hw_lock;
633
634 u32 feature0;
635 u32 feature1;
636 u32 feature2;
637
638 struct dwceqos_bus_cfg bus_cfg;
639 bool en_tx_lpi_clockgating;
640
641 int eee_enabled;
642 int eee_active;
643 int csr_val;
644 u32 gso_size;
645
646 struct dwceqos_mmc_counters mmc_counters;
647 /* Protect the mmc_counter updates. */
648 spinlock_t stats_lock;
649 u32 mmc_rx_counters_mask;
650 u32 mmc_tx_counters_mask;
651
652 struct dwceqos_flowcontrol flowcontrol;
653 };
654
655 static void dwceqos_read_mmc_counters(struct net_local *lp, u32 rx_mask,
656 u32 tx_mask);
657
658 static void dwceqos_set_umac_addr(struct net_local *lp, unsigned char *addr,
659 unsigned int reg_n);
660 static int dwceqos_stop(struct net_device *ndev);
661 static int dwceqos_open(struct net_device *ndev);
662 static void dwceqos_tx_poll_demand(struct net_local *lp);
663
664 static void dwceqos_set_rx_flowcontrol(struct net_local *lp, bool enable);
665 static void dwceqos_set_tx_flowcontrol(struct net_local *lp, bool enable);
666
667 static void dwceqos_reset_state(struct net_local *lp);
668
669 #define dwceqos_read(lp, reg) \
670 readl_relaxed(((void __iomem *)((lp)->baseaddr)) + (reg))
671 #define dwceqos_write(lp, reg, val) \
672 writel_relaxed((val), ((void __iomem *)((lp)->baseaddr)) + (reg))
673
674 static void dwceqos_reset_state(struct net_local *lp)
675 {
676 lp->link = 0;
677 lp->speed = 0;
678 lp->duplex = DUPLEX_UNKNOWN;
679 lp->flowcontrol.rx_current = 0;
680 lp->flowcontrol.tx_current = 0;
681 lp->eee_active = 0;
682 lp->eee_enabled = 0;
683 }
684
685 static void print_descriptor(struct net_local *lp, int index, int tx)
686 {
687 struct dwceqos_dma_desc *dd;
688
689 if (tx)
690 dd = (struct dwceqos_dma_desc *)&lp->tx_descs[index];
691 else
692 dd = (struct dwceqos_dma_desc *)&lp->rx_descs[index];
693
694 pr_info("%s DMA Descriptor #%d@%p Contents:\n", tx ? "TX" : "RX",
695 index, dd);
696 pr_info("0x%08x 0x%08x 0x%08x 0x%08x\n", dd->des0, dd->des1, dd->des2,
697 dd->des3);
698 }
699
700 static void print_status(struct net_local *lp)
701 {
702 size_t desci, i;
703
704 pr_info("tx_free %zu, tx_cur %zu, tx_next %zu\n", lp->tx_free,
705 lp->tx_cur, lp->tx_next);
706
707 print_descriptor(lp, lp->rx_cur, 0);
708
709 for (desci = (lp->tx_cur - 10) % DWCEQOS_TX_DCNT, i = 0;
710 i < DWCEQOS_TX_DCNT;
711 ++i) {
712 print_descriptor(lp, desci, 1);
713 desci = (desci + 1) % DWCEQOS_TX_DCNT;
714 }
715
716 pr_info("DMA_Debug_Status0: 0x%08x\n",
717 dwceqos_read(lp, REG_DWCEQOS_DMA_DEBUG_ST0));
718 pr_info("DMA_CH0_Status: 0x%08x\n",
719 dwceqos_read(lp, REG_DWCEQOS_DMA_IS));
720 pr_info("DMA_CH0_Current_App_TxDesc: 0x%08x\n",
721 dwceqos_read(lp, 0x1144));
722 pr_info("DMA_CH0_Current_App_TxBuff: 0x%08x\n",
723 dwceqos_read(lp, 0x1154));
724 pr_info("MTL_Debug_Status: 0x%08x\n",
725 dwceqos_read(lp, REG_DWCEQOS_MTL_DEBUG_ST));
726 pr_info("MTL_TXQ0_Debug_Status: 0x%08x\n",
727 dwceqos_read(lp, REG_DWCEQOS_MTL_TXQ0_DEBUG_ST));
728 pr_info("MTL_RXQ0_Debug_Status: 0x%08x\n",
729 dwceqos_read(lp, REG_DWCEQOS_MTL_RXQ0_DEBUG_ST));
730 pr_info("Current TX DMA: 0x%08x, RX DMA: 0x%08x\n",
731 dwceqos_read(lp, REG_DWCEQOS_DMA_CH0_CUR_TXDESC),
732 dwceqos_read(lp, REG_DWCEQOS_DMA_CH0_CUR_RXDESC));
733 }
734
735 static void dwceqos_mdio_set_csr(struct net_local *lp)
736 {
737 int rate = clk_get_rate(lp->apb_pclk);
738
739 if (rate <= 20000000)
740 lp->csr_val = DWCEQOS_MAC_MDIO_ADDR_CR_20;
741 else if (rate <= 35000000)
742 lp->csr_val = DWCEQOS_MAC_MDIO_ADDR_CR_35;
743 else if (rate <= 60000000)
744 lp->csr_val = DWCEQOS_MAC_MDIO_ADDR_CR_60;
745 else if (rate <= 100000000)
746 lp->csr_val = DWCEQOS_MAC_MDIO_ADDR_CR_100;
747 else if (rate <= 150000000)
748 lp->csr_val = DWCEQOS_MAC_MDIO_ADDR_CR_150;
749 else if (rate <= 250000000)
750 lp->csr_val = DWCEQOS_MAC_MDIO_ADDR_CR_250;
751 }
752
753 /* Simple MDIO functions implementing mii_bus */
754 static int dwceqos_mdio_read(struct mii_bus *bus, int mii_id, int phyreg)
755 {
756 struct net_local *lp = bus->priv;
757 u32 regval;
758 int i;
759 int data;
760
761 regval = DWCEQOS_MDIO_PHYADDR(mii_id) |
762 DWCEQOS_MDIO_PHYREG(phyreg) |
763 DWCEQOS_MAC_MDIO_ADDR_CR(lp->csr_val) |
764 DWCEQOS_MAC_MDIO_ADDR_GB |
765 DWCEQOS_MAC_MDIO_ADDR_GOC_READ;
766 dwceqos_write(lp, REG_DWCEQOS_MAC_MDIO_ADDR, regval);
767
768 for (i = 0; i < 5; ++i) {
769 usleep_range(64, 128);
770 if (!(dwceqos_read(lp, REG_DWCEQOS_MAC_MDIO_ADDR) &
771 DWCEQOS_MAC_MDIO_ADDR_GB))
772 break;
773 }
774
775 data = dwceqos_read(lp, REG_DWCEQOS_MAC_MDIO_DATA);
776 if (i == 5) {
777 netdev_warn(lp->ndev, "MDIO read timed out\n");
778 data = 0xffff;
779 }
780
781 return data & 0xffff;
782 }
783
784 static int dwceqos_mdio_write(struct mii_bus *bus, int mii_id, int phyreg,
785 u16 value)
786 {
787 struct net_local *lp = bus->priv;
788 u32 regval;
789 int i;
790
791 dwceqos_write(lp, REG_DWCEQOS_MAC_MDIO_DATA, value);
792
793 regval = DWCEQOS_MDIO_PHYADDR(mii_id) |
794 DWCEQOS_MDIO_PHYREG(phyreg) |
795 DWCEQOS_MAC_MDIO_ADDR_CR(lp->csr_val) |
796 DWCEQOS_MAC_MDIO_ADDR_GB |
797 DWCEQOS_MAC_MDIO_ADDR_GOC_WRITE;
798 dwceqos_write(lp, REG_DWCEQOS_MAC_MDIO_ADDR, regval);
799
800 for (i = 0; i < 5; ++i) {
801 usleep_range(64, 128);
802 if (!(dwceqos_read(lp, REG_DWCEQOS_MAC_MDIO_ADDR) &
803 DWCEQOS_MAC_MDIO_ADDR_GB))
804 break;
805 }
806 if (i == 5)
807 netdev_warn(lp->ndev, "MDIO write timed out\n");
808 return 0;
809 }
810
811 static int dwceqos_ioctl(struct net_device *ndev, struct ifreq *rq, int cmd)
812 {
813 struct net_local *lp = netdev_priv(ndev);
814 struct phy_device *phydev = lp->phy_dev;
815
816 if (!netif_running(ndev))
817 return -EINVAL;
818
819 if (!phydev)
820 return -ENODEV;
821
822 switch (cmd) {
823 case SIOCGMIIPHY:
824 case SIOCGMIIREG:
825 case SIOCSMIIREG:
826 return phy_mii_ioctl(phydev, rq, cmd);
827 default:
828 dev_info(&lp->pdev->dev, "ioctl %X not implemented.\n", cmd);
829 return -EOPNOTSUPP;
830 }
831 }
832
833 static void dwceqos_link_down(struct net_local *lp)
834 {
835 u32 regval;
836 unsigned long flags;
837
838 /* Indicate link down to the LPI state machine */
839 spin_lock_irqsave(&lp->hw_lock, flags);
840 regval = dwceqos_read(lp, REG_DWCEQOS_MAC_LPI_CTRL_STATUS);
841 regval &= ~DWCEQOS_MAC_LPI_CTRL_STATUS_PLS;
842 dwceqos_write(lp, REG_DWCEQOS_MAC_LPI_CTRL_STATUS, regval);
843 spin_unlock_irqrestore(&lp->hw_lock, flags);
844 }
845
846 static void dwceqos_link_up(struct net_local *lp)
847 {
848 u32 regval;
849 unsigned long flags;
850
851 /* Indicate link up to the LPI state machine */
852 spin_lock_irqsave(&lp->hw_lock, flags);
853 regval = dwceqos_read(lp, REG_DWCEQOS_MAC_LPI_CTRL_STATUS);
854 regval |= DWCEQOS_MAC_LPI_CTRL_STATUS_PLS;
855 dwceqos_write(lp, REG_DWCEQOS_MAC_LPI_CTRL_STATUS, regval);
856 spin_unlock_irqrestore(&lp->hw_lock, flags);
857
858 lp->eee_active = !phy_init_eee(lp->phy_dev, 0);
859
860 /* Check for changed EEE capability */
861 if (!lp->eee_active && lp->eee_enabled) {
862 lp->eee_enabled = 0;
863
864 spin_lock_irqsave(&lp->hw_lock, flags);
865 regval = dwceqos_read(lp, REG_DWCEQOS_MAC_LPI_CTRL_STATUS);
866 regval &= ~DWCEQOS_LPI_CTRL_ENABLE_EEE;
867 dwceqos_write(lp, REG_DWCEQOS_MAC_LPI_CTRL_STATUS, regval);
868 spin_unlock_irqrestore(&lp->hw_lock, flags);
869 }
870 }
871
872 static void dwceqos_set_speed(struct net_local *lp)
873 {
874 struct phy_device *phydev = lp->phy_dev;
875 u32 regval;
876
877 regval = dwceqos_read(lp, REG_DWCEQOS_MAC_CFG);
878 regval &= ~(DWCEQOS_MAC_CFG_PS | DWCEQOS_MAC_CFG_FES |
879 DWCEQOS_MAC_CFG_DM);
880
881 if (phydev->duplex)
882 regval |= DWCEQOS_MAC_CFG_DM;
883 if (phydev->speed == SPEED_10) {
884 regval |= DWCEQOS_MAC_CFG_PS;
885 } else if (phydev->speed == SPEED_100) {
886 regval |= DWCEQOS_MAC_CFG_PS |
887 DWCEQOS_MAC_CFG_FES;
888 } else if (phydev->speed != SPEED_1000) {
889 netdev_err(lp->ndev,
890 "unknown PHY speed %d\n",
891 phydev->speed);
892 return;
893 }
894
895 dwceqos_write(lp, REG_DWCEQOS_MAC_CFG, regval);
896 }
897
898 static void dwceqos_adjust_link(struct net_device *ndev)
899 {
900 struct net_local *lp = netdev_priv(ndev);
901 struct phy_device *phydev = lp->phy_dev;
902 int status_change = 0;
903
904 if (phydev->link) {
905 if ((lp->speed != phydev->speed) ||
906 (lp->duplex != phydev->duplex)) {
907 dwceqos_set_speed(lp);
908
909 lp->speed = phydev->speed;
910 lp->duplex = phydev->duplex;
911 status_change = 1;
912 }
913
914 if (lp->flowcontrol.autoneg) {
915 lp->flowcontrol.rx = phydev->pause ||
916 phydev->asym_pause;
917 lp->flowcontrol.tx = phydev->pause ||
918 phydev->asym_pause;
919 }
920
921 if (lp->flowcontrol.rx != lp->flowcontrol.rx_current) {
922 if (netif_msg_link(lp))
923 netdev_dbg(ndev, "set rx flow to %d\n",
924 lp->flowcontrol.rx);
925 dwceqos_set_rx_flowcontrol(lp, lp->flowcontrol.rx);
926 lp->flowcontrol.rx_current = lp->flowcontrol.rx;
927 }
928 if (lp->flowcontrol.tx != lp->flowcontrol.tx_current) {
929 if (netif_msg_link(lp))
930 netdev_dbg(ndev, "set tx flow to %d\n",
931 lp->flowcontrol.tx);
932 dwceqos_set_tx_flowcontrol(lp, lp->flowcontrol.tx);
933 lp->flowcontrol.tx_current = lp->flowcontrol.tx;
934 }
935 }
936
937 if (phydev->link != lp->link) {
938 lp->link = phydev->link;
939 status_change = 1;
940 }
941
942 if (status_change) {
943 if (phydev->link) {
944 lp->ndev->trans_start = jiffies;
945 dwceqos_link_up(lp);
946 } else {
947 dwceqos_link_down(lp);
948 }
949 phy_print_status(phydev);
950 }
951 }
952
953 static int dwceqos_mii_probe(struct net_device *ndev)
954 {
955 struct net_local *lp = netdev_priv(ndev);
956 struct phy_device *phydev = NULL;
957
958 if (lp->phy_node) {
959 phydev = of_phy_connect(lp->ndev,
960 lp->phy_node,
961 &dwceqos_adjust_link,
962 0,
963 lp->phy_interface);
964
965 if (!phydev) {
966 netdev_err(ndev, "no PHY found\n");
967 return -1;
968 }
969 } else {
970 netdev_err(ndev, "no PHY configured\n");
971 return -ENODEV;
972 }
973
974 if (netif_msg_probe(lp))
975 phy_attached_info(phydev);
976
977 phydev->supported &= PHY_GBIT_FEATURES;
978
979 lp->link = 0;
980 lp->speed = 0;
981 lp->duplex = DUPLEX_UNKNOWN;
982 lp->phy_dev = phydev;
983
984 return 0;
985 }
986
987 static void dwceqos_alloc_rxring_desc(struct net_local *lp, int index)
988 {
989 struct sk_buff *new_skb;
990 dma_addr_t new_skb_baddr = 0;
991
992 new_skb = netdev_alloc_skb(lp->ndev, DWCEQOS_RX_BUF_SIZE);
993 if (!new_skb) {
994 netdev_err(lp->ndev, "alloc_skb error for desc %d\n", index);
995 goto err_out;
996 }
997
998 new_skb_baddr = dma_map_single(lp->ndev->dev.parent,
999 new_skb->data, DWCEQOS_RX_BUF_SIZE,
1000 DMA_FROM_DEVICE);
1001 if (dma_mapping_error(lp->ndev->dev.parent, new_skb_baddr)) {
1002 netdev_err(lp->ndev, "DMA map error\n");
1003 dev_kfree_skb(new_skb);
1004 new_skb = NULL;
1005 goto err_out;
1006 }
1007
1008 lp->rx_descs[index].des0 = new_skb_baddr;
1009 lp->rx_descs[index].des1 = 0;
1010 lp->rx_descs[index].des2 = 0;
1011 lp->rx_descs[index].des3 = DWCEQOS_DMA_RDES3_INTE |
1012 DWCEQOS_DMA_RDES3_BUF1V |
1013 DWCEQOS_DMA_RDES3_OWN;
1014
1015 lp->rx_skb[index].mapping = new_skb_baddr;
1016 lp->rx_skb[index].len = DWCEQOS_RX_BUF_SIZE;
1017
1018 err_out:
1019 lp->rx_skb[index].skb = new_skb;
1020 }
1021
1022 static void dwceqos_clean_rings(struct net_local *lp)
1023 {
1024 int i;
1025
1026 if (lp->rx_skb) {
1027 for (i = 0; i < DWCEQOS_RX_DCNT; i++) {
1028 if (lp->rx_skb[i].skb) {
1029 dma_unmap_single(lp->ndev->dev.parent,
1030 lp->rx_skb[i].mapping,
1031 lp->rx_skb[i].len,
1032 DMA_FROM_DEVICE);
1033
1034 dev_kfree_skb(lp->rx_skb[i].skb);
1035 lp->rx_skb[i].skb = NULL;
1036 lp->rx_skb[i].mapping = 0;
1037 }
1038 }
1039 }
1040
1041 if (lp->tx_skb) {
1042 for (i = 0; i < DWCEQOS_TX_DCNT; i++) {
1043 if (lp->tx_skb[i].skb) {
1044 dev_kfree_skb(lp->tx_skb[i].skb);
1045 lp->tx_skb[i].skb = NULL;
1046 }
1047 if (lp->tx_skb[i].mapping) {
1048 dma_unmap_single(lp->ndev->dev.parent,
1049 lp->tx_skb[i].mapping,
1050 lp->tx_skb[i].len,
1051 DMA_TO_DEVICE);
1052 lp->tx_skb[i].mapping = 0;
1053 }
1054 }
1055 }
1056 }
1057
1058 static void dwceqos_descriptor_free(struct net_local *lp)
1059 {
1060 int size;
1061
1062 dwceqos_clean_rings(lp);
1063
1064 kfree(lp->tx_skb);
1065 lp->tx_skb = NULL;
1066 kfree(lp->rx_skb);
1067 lp->rx_skb = NULL;
1068
1069 size = DWCEQOS_RX_DCNT * sizeof(struct dwceqos_dma_desc);
1070 if (lp->rx_descs) {
1071 dma_free_coherent(lp->ndev->dev.parent, size,
1072 (void *)(lp->rx_descs), lp->rx_descs_addr);
1073 lp->rx_descs = NULL;
1074 }
1075
1076 size = DWCEQOS_TX_DCNT * sizeof(struct dwceqos_dma_desc);
1077 if (lp->tx_descs) {
1078 dma_free_coherent(lp->ndev->dev.parent, size,
1079 (void *)(lp->tx_descs), lp->tx_descs_addr);
1080 lp->tx_descs = NULL;
1081 }
1082 }
1083
1084 static int dwceqos_descriptor_init(struct net_local *lp)
1085 {
1086 int size;
1087 u32 i;
1088
1089 lp->gso_size = 0;
1090
1091 lp->tx_skb = NULL;
1092 lp->rx_skb = NULL;
1093 lp->rx_descs = NULL;
1094 lp->tx_descs = NULL;
1095
1096 /* Reset the DMA indexes */
1097 lp->rx_cur = 0;
1098 lp->tx_cur = 0;
1099 lp->tx_next = 0;
1100 lp->tx_free = DWCEQOS_TX_DCNT;
1101
1102 /* Allocate Ring descriptors */
1103 size = DWCEQOS_RX_DCNT * sizeof(struct ring_desc);
1104 lp->rx_skb = kzalloc(size, GFP_KERNEL);
1105 if (!lp->rx_skb)
1106 goto err_out;
1107
1108 size = DWCEQOS_TX_DCNT * sizeof(struct ring_desc);
1109 lp->tx_skb = kzalloc(size, GFP_KERNEL);
1110 if (!lp->tx_skb)
1111 goto err_out;
1112
1113 /* Allocate DMA descriptors */
1114 size = DWCEQOS_RX_DCNT * sizeof(struct dwceqos_dma_desc);
1115 lp->rx_descs = dma_alloc_coherent(lp->ndev->dev.parent, size,
1116 &lp->rx_descs_addr, 0);
1117 if (!lp->rx_descs)
1118 goto err_out;
1119 lp->rx_descs_tail_addr = lp->rx_descs_addr +
1120 sizeof(struct dwceqos_dma_desc) * DWCEQOS_RX_DCNT;
1121
1122 size = DWCEQOS_TX_DCNT * sizeof(struct dwceqos_dma_desc);
1123 lp->tx_descs = dma_alloc_coherent(lp->ndev->dev.parent, size,
1124 &lp->tx_descs_addr, 0);
1125 if (!lp->tx_descs)
1126 goto err_out;
1127 lp->tx_descs_tail_addr = lp->tx_descs_addr +
1128 sizeof(struct dwceqos_dma_desc) * DWCEQOS_TX_DCNT;
1129
1130 /* Initialize RX Ring Descriptors and buffers */
1131 for (i = 0; i < DWCEQOS_RX_DCNT; ++i) {
1132 dwceqos_alloc_rxring_desc(lp, i);
1133 if (!(lp->rx_skb[lp->rx_cur].skb))
1134 goto err_out;
1135 }
1136
1137 /* Initialize TX Descriptors */
1138 for (i = 0; i < DWCEQOS_TX_DCNT; ++i) {
1139 lp->tx_descs[i].des0 = 0;
1140 lp->tx_descs[i].des1 = 0;
1141 lp->tx_descs[i].des2 = 0;
1142 lp->tx_descs[i].des3 = 0;
1143 }
1144
1145 /* Make descriptor writes visible to the DMA. */
1146 wmb();
1147
1148 return 0;
1149
1150 err_out:
1151 dwceqos_descriptor_free(lp);
1152 return -ENOMEM;
1153 }
1154
1155 static int dwceqos_packet_avail(struct net_local *lp)
1156 {
1157 return !(lp->rx_descs[lp->rx_cur].des3 & DWCEQOS_DMA_RDES3_OWN);
1158 }
1159
1160 static void dwceqos_get_hwfeatures(struct net_local *lp)
1161 {
1162 lp->feature0 = dwceqos_read(lp, REG_DWCEQOS_MAC_HW_FEATURE0);
1163 lp->feature1 = dwceqos_read(lp, REG_DWCEQOS_MAC_HW_FEATURE1);
1164 lp->feature2 = dwceqos_read(lp, REG_DWCEQOS_MAC_HW_FEATURE2);
1165 }
1166
1167 static void dwceqos_dma_enable_txirq(struct net_local *lp)
1168 {
1169 u32 regval;
1170 unsigned long flags;
1171
1172 spin_lock_irqsave(&lp->hw_lock, flags);
1173 regval = dwceqos_read(lp, REG_DWCEQOS_DMA_CH0_IE);
1174 regval |= DWCEQOS_DMA_CH0_IE_TIE;
1175 dwceqos_write(lp, REG_DWCEQOS_DMA_CH0_IE, regval);
1176 spin_unlock_irqrestore(&lp->hw_lock, flags);
1177 }
1178
1179 static void dwceqos_dma_disable_txirq(struct net_local *lp)
1180 {
1181 u32 regval;
1182 unsigned long flags;
1183
1184 spin_lock_irqsave(&lp->hw_lock, flags);
1185 regval = dwceqos_read(lp, REG_DWCEQOS_DMA_CH0_IE);
1186 regval &= ~DWCEQOS_DMA_CH0_IE_TIE;
1187 dwceqos_write(lp, REG_DWCEQOS_DMA_CH0_IE, regval);
1188 spin_unlock_irqrestore(&lp->hw_lock, flags);
1189 }
1190
1191 static void dwceqos_dma_enable_rxirq(struct net_local *lp)
1192 {
1193 u32 regval;
1194 unsigned long flags;
1195
1196 spin_lock_irqsave(&lp->hw_lock, flags);
1197 regval = dwceqos_read(lp, REG_DWCEQOS_DMA_CH0_IE);
1198 regval |= DWCEQOS_DMA_CH0_IE_RIE;
1199 dwceqos_write(lp, REG_DWCEQOS_DMA_CH0_IE, regval);
1200 spin_unlock_irqrestore(&lp->hw_lock, flags);
1201 }
1202
1203 static void dwceqos_dma_disable_rxirq(struct net_local *lp)
1204 {
1205 u32 regval;
1206 unsigned long flags;
1207
1208 spin_lock_irqsave(&lp->hw_lock, flags);
1209 regval = dwceqos_read(lp, REG_DWCEQOS_DMA_CH0_IE);
1210 regval &= ~DWCEQOS_DMA_CH0_IE_RIE;
1211 dwceqos_write(lp, REG_DWCEQOS_DMA_CH0_IE, regval);
1212 spin_unlock_irqrestore(&lp->hw_lock, flags);
1213 }
1214
1215 static void dwceqos_enable_mmc_interrupt(struct net_local *lp)
1216 {
1217 dwceqos_write(lp, REG_DWCEQOS_MMC_RXIRQMASK, 0);
1218 dwceqos_write(lp, REG_DWCEQOS_MMC_TXIRQMASK, 0);
1219 }
1220
1221 static int dwceqos_mii_init(struct net_local *lp)
1222 {
1223 int ret = -ENXIO;
1224 struct resource res;
1225 struct device_node *mdionode;
1226
1227 mdionode = of_get_child_by_name(lp->pdev->dev.of_node, "mdio");
1228
1229 if (!mdionode)
1230 return 0;
1231
1232 lp->mii_bus = mdiobus_alloc();
1233 if (!lp->mii_bus) {
1234 ret = -ENOMEM;
1235 goto err_out;
1236 }
1237
1238 lp->mii_bus->name = "DWCEQOS MII bus";
1239 lp->mii_bus->read = &dwceqos_mdio_read;
1240 lp->mii_bus->write = &dwceqos_mdio_write;
1241 lp->mii_bus->priv = lp;
1242 lp->mii_bus->parent = &lp->ndev->dev;
1243
1244 of_address_to_resource(lp->pdev->dev.of_node, 0, &res);
1245 snprintf(lp->mii_bus->id, MII_BUS_ID_SIZE, "%.8llx",
1246 (unsigned long long)res.start);
1247 if (of_mdiobus_register(lp->mii_bus, mdionode))
1248 goto err_out_free_mdiobus;
1249
1250 return 0;
1251
1252 err_out_free_mdiobus:
1253 mdiobus_free(lp->mii_bus);
1254 err_out:
1255 of_node_put(mdionode);
1256 return ret;
1257 }
1258
1259 /* DMA reset. When issued also resets all MTL and MAC registers as well */
1260 static void dwceqos_reset_hw(struct net_local *lp)
1261 {
1262 /* Wait (at most) 0.5 seconds for DMA reset*/
1263 int i = 5000;
1264 u32 reg;
1265
1266 /* Force gigabit to guarantee a TX clock for GMII. */
1267 reg = dwceqos_read(lp, REG_DWCEQOS_MAC_CFG);
1268 reg &= ~(DWCEQOS_MAC_CFG_PS | DWCEQOS_MAC_CFG_FES);
1269 reg |= DWCEQOS_MAC_CFG_DM;
1270 dwceqos_write(lp, REG_DWCEQOS_MAC_CFG, reg);
1271
1272 dwceqos_write(lp, REG_DWCEQOS_DMA_MODE, DWCEQOS_DMA_MODE_SWR);
1273
1274 do {
1275 udelay(100);
1276 i--;
1277 reg = dwceqos_read(lp, REG_DWCEQOS_DMA_MODE);
1278 } while ((reg & DWCEQOS_DMA_MODE_SWR) && i);
1279 /* We might experience a timeout if the chip clock mux is broken */
1280 if (!i)
1281 netdev_err(lp->ndev, "DMA reset timed out!\n");
1282 }
1283
1284 static void dwceqos_fatal_bus_error(struct net_local *lp, u32 dma_status)
1285 {
1286 if (dma_status & DWCEQOS_DMA_CH0_IS_TEB) {
1287 netdev_err(lp->ndev, "txdma bus error %s %s (status=%08x)\n",
1288 dma_status & DWCEQOS_DMA_CH0_IS_TX_ERR_READ ?
1289 "read" : "write",
1290 dma_status & DWCEQOS_DMA_CH0_IS_TX_ERR_DESCR ?
1291 "descr" : "data",
1292 dma_status);
1293
1294 print_status(lp);
1295 }
1296 if (dma_status & DWCEQOS_DMA_CH0_IS_REB) {
1297 netdev_err(lp->ndev, "rxdma bus error %s %s (status=%08x)\n",
1298 dma_status & DWCEQOS_DMA_CH0_IS_RX_ERR_READ ?
1299 "read" : "write",
1300 dma_status & DWCEQOS_DMA_CH0_IS_RX_ERR_DESCR ?
1301 "descr" : "data",
1302 dma_status);
1303
1304 print_status(lp);
1305 }
1306 }
1307
1308 static void dwceqos_mmc_interrupt(struct net_local *lp)
1309 {
1310 unsigned long flags;
1311
1312 spin_lock_irqsave(&lp->stats_lock, flags);
1313
1314 /* A latched mmc interrupt can not be masked, we must read
1315 * all the counters with an interrupt pending.
1316 */
1317 dwceqos_read_mmc_counters(lp,
1318 dwceqos_read(lp, REG_DWCEQOS_MMC_RXIRQ),
1319 dwceqos_read(lp, REG_DWCEQOS_MMC_TXIRQ));
1320
1321 spin_unlock_irqrestore(&lp->stats_lock, flags);
1322 }
1323
1324 static void dwceqos_mac_interrupt(struct net_local *lp)
1325 {
1326 u32 cause;
1327
1328 cause = dwceqos_read(lp, REG_DWCEQOS_MAC_IS);
1329
1330 if (cause & DWCEQOS_MAC_IS_MMC_INT)
1331 dwceqos_mmc_interrupt(lp);
1332 }
1333
1334 static irqreturn_t dwceqos_interrupt(int irq, void *dev_id)
1335 {
1336 struct net_device *ndev = dev_id;
1337 struct net_local *lp = netdev_priv(ndev);
1338
1339 u32 cause;
1340 u32 dma_status;
1341 irqreturn_t ret = IRQ_NONE;
1342
1343 cause = dwceqos_read(lp, REG_DWCEQOS_DMA_IS);
1344 /* DMA Channel 0 Interrupt */
1345 if (cause & DWCEQOS_DMA_IS_DC0IS) {
1346 dma_status = dwceqos_read(lp, REG_DWCEQOS_DMA_CH0_STA);
1347
1348 /* Transmit Interrupt */
1349 if (dma_status & DWCEQOS_DMA_CH0_IS_TI) {
1350 tasklet_schedule(&lp->tx_bdreclaim_tasklet);
1351 dwceqos_dma_disable_txirq(lp);
1352 }
1353
1354 /* Receive Interrupt */
1355 if (dma_status & DWCEQOS_DMA_CH0_IS_RI) {
1356 /* Disable RX IRQs */
1357 dwceqos_dma_disable_rxirq(lp);
1358 napi_schedule(&lp->napi);
1359 }
1360
1361 /* Fatal Bus Error interrupt */
1362 if (unlikely(dma_status & DWCEQOS_DMA_CH0_IS_FBE)) {
1363 dwceqos_fatal_bus_error(lp, dma_status);
1364
1365 /* errata 9000831707 */
1366 dma_status |= DWCEQOS_DMA_CH0_IS_TEB |
1367 DWCEQOS_DMA_CH0_IS_REB;
1368 }
1369
1370 /* Ack all DMA Channel 0 IRQs */
1371 dwceqos_write(lp, REG_DWCEQOS_DMA_CH0_STA, dma_status);
1372 ret = IRQ_HANDLED;
1373 }
1374
1375 if (cause & DWCEQOS_DMA_IS_MTLIS) {
1376 u32 val = dwceqos_read(lp, REG_DWCEQOS_MTL_Q0_ISCTRL);
1377
1378 dwceqos_write(lp, REG_DWCEQOS_MTL_Q0_ISCTRL, val);
1379 ret = IRQ_HANDLED;
1380 }
1381
1382 if (cause & DWCEQOS_DMA_IS_MACIS) {
1383 dwceqos_mac_interrupt(lp);
1384 ret = IRQ_HANDLED;
1385 }
1386 return ret;
1387 }
1388
1389 static void dwceqos_set_rx_flowcontrol(struct net_local *lp, bool enable)
1390 {
1391 u32 regval;
1392 unsigned long flags;
1393
1394 spin_lock_irqsave(&lp->hw_lock, flags);
1395
1396 regval = dwceqos_read(lp, REG_DWCEQOS_MAC_RX_FLOW_CTRL);
1397 if (enable)
1398 regval |= DWCEQOS_MAC_RX_FLOW_CTRL_RFE;
1399 else
1400 regval &= ~DWCEQOS_MAC_RX_FLOW_CTRL_RFE;
1401 dwceqos_write(lp, REG_DWCEQOS_MAC_RX_FLOW_CTRL, regval);
1402
1403 spin_unlock_irqrestore(&lp->hw_lock, flags);
1404 }
1405
1406 static void dwceqos_set_tx_flowcontrol(struct net_local *lp, bool enable)
1407 {
1408 u32 regval;
1409 unsigned long flags;
1410
1411 spin_lock_irqsave(&lp->hw_lock, flags);
1412
1413 /* MTL flow control */
1414 regval = dwceqos_read(lp, REG_DWCEQOS_MTL_RXQ0_OPER);
1415 if (enable)
1416 regval |= DWCEQOS_MTL_RXQ_EHFC;
1417 else
1418 regval &= ~DWCEQOS_MTL_RXQ_EHFC;
1419
1420 dwceqos_write(lp, REG_DWCEQOS_MTL_RXQ0_OPER, regval);
1421
1422 /* MAC flow control */
1423 regval = dwceqos_read(lp, REG_DWCEQOS_MAC_Q0_TX_FLOW);
1424 if (enable)
1425 regval |= DWCEQOS_MAC_Q0_TX_FLOW_TFE;
1426 else
1427 regval &= ~DWCEQOS_MAC_Q0_TX_FLOW_TFE;
1428 dwceqos_write(lp, REG_DWCEQOS_MAC_Q0_TX_FLOW, regval);
1429
1430 spin_unlock_irqrestore(&lp->hw_lock, flags);
1431 }
1432
1433 static void dwceqos_configure_flow_control(struct net_local *lp)
1434 {
1435 u32 regval;
1436 unsigned long flags;
1437 int RQS, RFD, RFA;
1438
1439 spin_lock_irqsave(&lp->hw_lock, flags);
1440
1441 regval = dwceqos_read(lp, REG_DWCEQOS_MTL_RXQ0_OPER);
1442
1443 /* The queue size is in units of 256 bytes. We want 512 bytes units for
1444 * the threshold fields.
1445 */
1446 RQS = ((regval >> 20) & 0x3FF) + 1;
1447 RQS /= 2;
1448
1449 /* The thresholds are relative to a full queue, with a bias
1450 * of 1 KiByte below full.
1451 */
1452 RFD = RQS / 2 - 2;
1453 RFA = RQS / 8 - 2;
1454
1455 regval = (regval & 0xFFF000FF) | (RFD << 14) | (RFA << 8);
1456
1457 if (RFD >= 0 && RFA >= 0) {
1458 dwceqos_write(lp, REG_DWCEQOS_MTL_RXQ0_OPER, regval);
1459 } else {
1460 netdev_warn(lp->ndev,
1461 "FIFO too small for flow control.");
1462 }
1463
1464 regval = DWCEQOS_MAC_Q0_TX_FLOW_PT(256) |
1465 DWCEQOS_MAC_Q0_TX_FLOW_PLT_4_SLOTS;
1466
1467 dwceqos_write(lp, REG_DWCEQOS_MAC_Q0_TX_FLOW, regval);
1468
1469 spin_unlock_irqrestore(&lp->hw_lock, flags);
1470 }
1471
1472 static void dwceqos_configure_clock(struct net_local *lp)
1473 {
1474 unsigned long rate_mhz = clk_get_rate(lp->apb_pclk) / 1000000;
1475
1476 BUG_ON(!rate_mhz);
1477
1478 dwceqos_write(lp,
1479 REG_DWCEQOS_MAC_1US_TIC_COUNTER,
1480 DWCEQOS_MAC_1US_TIC_COUNTER_VAL(rate_mhz - 1));
1481 }
1482
1483 static void dwceqos_configure_bus(struct net_local *lp)
1484 {
1485 u32 sysbus_reg;
1486
1487 /* N.B. We do not support the Fixed Burst mode because it
1488 * opens a race window by making HW access to DMA descriptors
1489 * non-atomic.
1490 */
1491
1492 sysbus_reg = DWCEQOS_DMA_SYSBUS_MODE_AAL;
1493
1494 if (lp->bus_cfg.en_lpi)
1495 sysbus_reg |= DWCEQOS_DMA_SYSBUS_MODE_EN_LPI;
1496
1497 if (lp->bus_cfg.burst_map)
1498 sysbus_reg |= DWCEQOS_DMA_SYSBUS_MODE_BURST(
1499 lp->bus_cfg.burst_map);
1500 else
1501 sysbus_reg |= DWCEQOS_DMA_SYSBUS_MODE_BURST(
1502 DWCEQOS_DMA_SYSBUS_MODE_BURST_DEFAULT);
1503
1504 if (lp->bus_cfg.read_requests)
1505 sysbus_reg |= DWCEQOS_DMA_SYSBUS_MODE_RD_OSR_LIMIT(
1506 lp->bus_cfg.read_requests - 1);
1507 else
1508 sysbus_reg |= DWCEQOS_DMA_SYSBUS_MODE_RD_OSR_LIMIT(
1509 DWCEQOS_DMA_SYSBUS_MODE_RD_OSR_LIMIT_DEFAULT);
1510
1511 if (lp->bus_cfg.write_requests)
1512 sysbus_reg |= DWCEQOS_DMA_SYSBUS_MODE_WR_OSR_LIMIT(
1513 lp->bus_cfg.write_requests - 1);
1514 else
1515 sysbus_reg |= DWCEQOS_DMA_SYSBUS_MODE_WR_OSR_LIMIT(
1516 DWCEQOS_DMA_SYSBUS_MODE_WR_OSR_LIMIT_DEFAULT);
1517
1518 if (netif_msg_hw(lp))
1519 netdev_dbg(lp->ndev, "SysbusMode %#X\n", sysbus_reg);
1520
1521 dwceqos_write(lp, REG_DWCEQOS_DMA_SYSBUS_MODE, sysbus_reg);
1522 }
1523
1524 static void dwceqos_init_hw(struct net_local *lp)
1525 {
1526 u32 regval;
1527 u32 buswidth;
1528 u32 dma_skip;
1529
1530 /* Software reset */
1531 dwceqos_reset_hw(lp);
1532
1533 dwceqos_configure_bus(lp);
1534
1535 /* Probe data bus width, 32/64/128 bits. */
1536 dwceqos_write(lp, REG_DWCEQOS_DMA_CH0_TXDESC_TAIL, 0xF);
1537 regval = dwceqos_read(lp, REG_DWCEQOS_DMA_CH0_TXDESC_TAIL);
1538 buswidth = (regval ^ 0xF) + 1;
1539
1540 /* Cache-align dma descriptors. */
1541 dma_skip = (sizeof(struct dwceqos_dma_desc) - 16) / buswidth;
1542 dwceqos_write(lp, REG_DWCEQOS_DMA_CH0_CTRL,
1543 DWCEQOS_DMA_CH_CTRL_DSL(dma_skip) |
1544 DWCEQOS_DMA_CH_CTRL_PBLX8);
1545
1546 /* Initialize DMA Channel 0 */
1547 dwceqos_write(lp, REG_DWCEQOS_DMA_CH0_TXDESC_LEN, DWCEQOS_TX_DCNT - 1);
1548 dwceqos_write(lp, REG_DWCEQOS_DMA_CH0_RXDESC_LEN, DWCEQOS_RX_DCNT - 1);
1549 dwceqos_write(lp, REG_DWCEQOS_DMA_CH0_TXDESC_LIST,
1550 (u32)lp->tx_descs_addr);
1551 dwceqos_write(lp, REG_DWCEQOS_DMA_CH0_RXDESC_LIST,
1552 (u32)lp->rx_descs_addr);
1553
1554 dwceqos_write(lp, REG_DWCEQOS_DMA_CH0_TXDESC_TAIL,
1555 lp->tx_descs_tail_addr);
1556 dwceqos_write(lp, REG_DWCEQOS_DMA_CH0_RXDESC_TAIL,
1557 lp->rx_descs_tail_addr);
1558
1559 if (lp->bus_cfg.tx_pbl)
1560 regval = DWCEQOS_DMA_CH_CTRL_PBL(lp->bus_cfg.tx_pbl);
1561 else
1562 regval = DWCEQOS_DMA_CH_CTRL_PBL(2);
1563
1564 /* Enable TSO if the HW support it */
1565 if (lp->feature1 & DWCEQOS_MAC_HW_FEATURE1_TSOEN)
1566 regval |= DWCEQOS_DMA_CH_TX_TSE;
1567
1568 dwceqos_write(lp, REG_DWCEQOS_DMA_CH0_TX_CTRL, regval);
1569
1570 if (lp->bus_cfg.rx_pbl)
1571 regval = DWCEQOS_DMA_CH_CTRL_PBL(lp->bus_cfg.rx_pbl);
1572 else
1573 regval = DWCEQOS_DMA_CH_CTRL_PBL(2);
1574
1575 regval |= DWCEQOS_DMA_CH_RX_CTRL_BUFSIZE(DWCEQOS_DWCEQOS_RX_BUF_SIZE);
1576 dwceqos_write(lp, REG_DWCEQOS_DMA_CH0_RX_CTRL, regval);
1577
1578 regval |= DWCEQOS_DMA_CH_CTRL_START;
1579 dwceqos_write(lp, REG_DWCEQOS_DMA_CH0_RX_CTRL, regval);
1580
1581 /* Initialize MTL Queues */
1582 regval = DWCEQOS_MTL_SCHALG_STRICT;
1583 dwceqos_write(lp, REG_DWCEQOS_MTL_OPER, regval);
1584
1585 regval = DWCEQOS_MTL_TXQ_SIZE(
1586 DWCEQOS_MAC_HW_FEATURE1_TXFIFOSIZE(lp->feature1)) |
1587 DWCEQOS_MTL_TXQ_TXQEN | DWCEQOS_MTL_TXQ_TSF |
1588 DWCEQOS_MTL_TXQ_TTC512;
1589 dwceqos_write(lp, REG_DWCEQOS_MTL_TXQ0_OPER, regval);
1590
1591 regval = DWCEQOS_MTL_RXQ_SIZE(
1592 DWCEQOS_MAC_HW_FEATURE1_RXFIFOSIZE(lp->feature1)) |
1593 DWCEQOS_MTL_RXQ_FUP | DWCEQOS_MTL_RXQ_FEP | DWCEQOS_MTL_RXQ_RSF;
1594 dwceqos_write(lp, REG_DWCEQOS_MTL_RXQ0_OPER, regval);
1595
1596 dwceqos_configure_flow_control(lp);
1597
1598 /* Initialize MAC */
1599 dwceqos_set_umac_addr(lp, lp->ndev->dev_addr, 0);
1600
1601 lp->eee_enabled = 0;
1602
1603 dwceqos_configure_clock(lp);
1604
1605 /* MMC counters */
1606
1607 /* probe implemented counters */
1608 dwceqos_write(lp, REG_DWCEQOS_MMC_RXIRQMASK, ~0u);
1609 dwceqos_write(lp, REG_DWCEQOS_MMC_TXIRQMASK, ~0u);
1610 lp->mmc_rx_counters_mask = dwceqos_read(lp, REG_DWCEQOS_MMC_RXIRQMASK);
1611 lp->mmc_tx_counters_mask = dwceqos_read(lp, REG_DWCEQOS_MMC_TXIRQMASK);
1612
1613 dwceqos_write(lp, REG_DWCEQOS_MMC_CTRL, DWCEQOS_MMC_CTRL_CNTRST |
1614 DWCEQOS_MMC_CTRL_RSTONRD);
1615 dwceqos_enable_mmc_interrupt(lp);
1616
1617 /* Enable Interrupts */
1618 dwceqos_write(lp, REG_DWCEQOS_DMA_CH0_IE,
1619 DWCEQOS_DMA_CH0_IE_NIE |
1620 DWCEQOS_DMA_CH0_IE_RIE | DWCEQOS_DMA_CH0_IE_TIE |
1621 DWCEQOS_DMA_CH0_IE_AIE |
1622 DWCEQOS_DMA_CH0_IE_FBEE);
1623
1624 dwceqos_write(lp, REG_DWCEQOS_MAC_IE, 0);
1625
1626 dwceqos_write(lp, REG_DWCEQOS_MAC_CFG, DWCEQOS_MAC_CFG_IPC |
1627 DWCEQOS_MAC_CFG_DM | DWCEQOS_MAC_CFG_TE | DWCEQOS_MAC_CFG_RE);
1628
1629 /* Start TX DMA */
1630 regval = dwceqos_read(lp, REG_DWCEQOS_DMA_CH0_TX_CTRL);
1631 dwceqos_write(lp, REG_DWCEQOS_DMA_CH0_TX_CTRL,
1632 regval | DWCEQOS_DMA_CH_CTRL_START);
1633
1634 /* Enable MAC TX/RX */
1635 regval = dwceqos_read(lp, REG_DWCEQOS_MAC_CFG);
1636 dwceqos_write(lp, REG_DWCEQOS_MAC_CFG,
1637 regval | DWCEQOS_MAC_CFG_TE | DWCEQOS_MAC_CFG_RE);
1638 }
1639
1640 static void dwceqos_tx_reclaim(unsigned long data)
1641 {
1642 struct net_device *ndev = (struct net_device *)data;
1643 struct net_local *lp = netdev_priv(ndev);
1644 unsigned int tx_bytes = 0;
1645 unsigned int tx_packets = 0;
1646
1647 spin_lock(&lp->tx_lock);
1648
1649 while (lp->tx_free < DWCEQOS_TX_DCNT) {
1650 struct dwceqos_dma_desc *dd = &lp->tx_descs[lp->tx_cur];
1651 struct ring_desc *rd = &lp->tx_skb[lp->tx_cur];
1652
1653 /* Descriptor still being held by DMA ? */
1654 if (dd->des3 & DWCEQOS_DMA_TDES3_OWN)
1655 break;
1656
1657 if (rd->mapping)
1658 dma_unmap_single(ndev->dev.parent, rd->mapping, rd->len,
1659 DMA_TO_DEVICE);
1660
1661 if (unlikely(rd->skb)) {
1662 ++tx_packets;
1663 tx_bytes += rd->skb->len;
1664 dev_consume_skb_any(rd->skb);
1665 }
1666
1667 rd->skb = NULL;
1668 rd->mapping = 0;
1669 lp->tx_free++;
1670 lp->tx_cur = (lp->tx_cur + 1) % DWCEQOS_TX_DCNT;
1671
1672 if ((dd->des3 & DWCEQOS_DMA_TDES3_LD) &&
1673 (dd->des3 & DWCEQOS_DMA_RDES3_ES)) {
1674 if (netif_msg_tx_err(lp))
1675 netdev_err(ndev, "TX Error, TDES3 = 0x%x\n",
1676 dd->des3);
1677 if (netif_msg_hw(lp))
1678 print_status(lp);
1679 }
1680 }
1681 spin_unlock(&lp->tx_lock);
1682
1683 netdev_completed_queue(ndev, tx_packets, tx_bytes);
1684
1685 dwceqos_dma_enable_txirq(lp);
1686 netif_wake_queue(ndev);
1687 }
1688
1689 static int dwceqos_rx(struct net_local *lp, int budget)
1690 {
1691 struct sk_buff *skb;
1692 u32 tot_size = 0;
1693 unsigned int n_packets = 0;
1694 unsigned int n_descs = 0;
1695 u32 len;
1696
1697 struct dwceqos_dma_desc *dd;
1698 struct sk_buff *new_skb;
1699 dma_addr_t new_skb_baddr = 0;
1700
1701 while (n_descs < budget) {
1702 if (!dwceqos_packet_avail(lp))
1703 break;
1704
1705 new_skb = netdev_alloc_skb(lp->ndev, DWCEQOS_RX_BUF_SIZE);
1706 if (!new_skb) {
1707 netdev_err(lp->ndev, "no memory for new sk_buff\n");
1708 break;
1709 }
1710
1711 /* Get dma handle of skb->data */
1712 new_skb_baddr = (u32)dma_map_single(lp->ndev->dev.parent,
1713 new_skb->data,
1714 DWCEQOS_RX_BUF_SIZE,
1715 DMA_FROM_DEVICE);
1716 if (dma_mapping_error(lp->ndev->dev.parent, new_skb_baddr)) {
1717 netdev_err(lp->ndev, "DMA map error\n");
1718 dev_kfree_skb(new_skb);
1719 break;
1720 }
1721
1722 /* Read descriptor data after reading owner bit. */
1723 dma_rmb();
1724
1725 dd = &lp->rx_descs[lp->rx_cur];
1726 len = DWCEQOS_DMA_RDES3_PL(dd->des3);
1727 skb = lp->rx_skb[lp->rx_cur].skb;
1728
1729 /* Unmap old buffer */
1730 dma_unmap_single(lp->ndev->dev.parent,
1731 lp->rx_skb[lp->rx_cur].mapping,
1732 lp->rx_skb[lp->rx_cur].len, DMA_FROM_DEVICE);
1733
1734 /* Discard packet on reception error or bad checksum */
1735 if ((dd->des3 & DWCEQOS_DMA_RDES3_ES) ||
1736 (dd->des1 & DWCEQOS_DMA_RDES1_IPCE)) {
1737 dev_kfree_skb(skb);
1738 skb = NULL;
1739 } else {
1740 skb_put(skb, len);
1741 skb->protocol = eth_type_trans(skb, lp->ndev);
1742 switch (dd->des1 & DWCEQOS_DMA_RDES1_PT) {
1743 case DWCEQOS_DMA_RDES1_PT_UDP:
1744 case DWCEQOS_DMA_RDES1_PT_TCP:
1745 case DWCEQOS_DMA_RDES1_PT_ICMP:
1746 skb->ip_summed = CHECKSUM_UNNECESSARY;
1747 break;
1748 default:
1749 skb->ip_summed = CHECKSUM_NONE;
1750 break;
1751 }
1752 }
1753
1754 if (unlikely(!skb)) {
1755 if (netif_msg_rx_err(lp))
1756 netdev_dbg(lp->ndev, "rx error: des3=%X\n",
1757 lp->rx_descs[lp->rx_cur].des3);
1758 } else {
1759 tot_size += skb->len;
1760 n_packets++;
1761
1762 netif_receive_skb(skb);
1763 }
1764
1765 lp->rx_descs[lp->rx_cur].des0 = new_skb_baddr;
1766 lp->rx_descs[lp->rx_cur].des1 = 0;
1767 lp->rx_descs[lp->rx_cur].des2 = 0;
1768 /* The DMA must observe des0/1/2 written before des3. */
1769 wmb();
1770 lp->rx_descs[lp->rx_cur].des3 = DWCEQOS_DMA_RDES3_INTE |
1771 DWCEQOS_DMA_RDES3_OWN |
1772 DWCEQOS_DMA_RDES3_BUF1V;
1773
1774 lp->rx_skb[lp->rx_cur].mapping = new_skb_baddr;
1775 lp->rx_skb[lp->rx_cur].len = DWCEQOS_RX_BUF_SIZE;
1776 lp->rx_skb[lp->rx_cur].skb = new_skb;
1777
1778 n_descs++;
1779 lp->rx_cur = (lp->rx_cur + 1) % DWCEQOS_RX_DCNT;
1780 }
1781
1782 /* Make sure any ownership update is written to the descriptors before
1783 * DMA wakeup.
1784 */
1785 wmb();
1786
1787 dwceqos_write(lp, REG_DWCEQOS_DMA_CH0_STA, DWCEQOS_DMA_CH0_IS_RI);
1788 /* Wake up RX by writing tail pointer */
1789 dwceqos_write(lp, REG_DWCEQOS_DMA_CH0_RXDESC_TAIL,
1790 lp->rx_descs_tail_addr);
1791
1792 return n_descs;
1793 }
1794
1795 static int dwceqos_rx_poll(struct napi_struct *napi, int budget)
1796 {
1797 struct net_local *lp = container_of(napi, struct net_local, napi);
1798 int work_done = 0;
1799
1800 work_done = dwceqos_rx(lp, budget - work_done);
1801
1802 if (!dwceqos_packet_avail(lp) && work_done < budget) {
1803 napi_complete(napi);
1804 dwceqos_dma_enable_rxirq(lp);
1805 } else {
1806 work_done = budget;
1807 }
1808
1809 return work_done;
1810 }
1811
1812 /* Reinitialize function if a TX timed out */
1813 static void dwceqos_reinit_for_txtimeout(struct work_struct *data)
1814 {
1815 struct net_local *lp = container_of(data, struct net_local,
1816 txtimeout_reinit);
1817
1818 netdev_err(lp->ndev, "transmit timeout %d s, resetting...\n",
1819 DWCEQOS_TX_TIMEOUT);
1820
1821 if (netif_msg_hw(lp))
1822 print_status(lp);
1823
1824 rtnl_lock();
1825 dwceqos_stop(lp->ndev);
1826 dwceqos_open(lp->ndev);
1827 rtnl_unlock();
1828 }
1829
1830 /* DT Probing function called by main probe */
1831 static inline int dwceqos_probe_config_dt(struct platform_device *pdev)
1832 {
1833 struct net_device *ndev;
1834 struct net_local *lp;
1835 const void *mac_address;
1836 struct dwceqos_bus_cfg *bus_cfg;
1837 struct device_node *np = pdev->dev.of_node;
1838
1839 ndev = platform_get_drvdata(pdev);
1840 lp = netdev_priv(ndev);
1841 bus_cfg = &lp->bus_cfg;
1842
1843 /* Set the MAC address. */
1844 mac_address = of_get_mac_address(pdev->dev.of_node);
1845 if (mac_address)
1846 ether_addr_copy(ndev->dev_addr, mac_address);
1847
1848 /* These are all optional parameters */
1849 lp->en_tx_lpi_clockgating = of_property_read_bool(np,
1850 "snps,en-tx-lpi-clockgating");
1851 bus_cfg->en_lpi = of_property_read_bool(np, "snps,en-lpi");
1852 of_property_read_u32(np, "snps,write-requests",
1853 &bus_cfg->write_requests);
1854 of_property_read_u32(np, "snps,read-requests", &bus_cfg->read_requests);
1855 of_property_read_u32(np, "snps,burst-map", &bus_cfg->burst_map);
1856 of_property_read_u32(np, "snps,txpbl", &bus_cfg->tx_pbl);
1857 of_property_read_u32(np, "snps,rxpbl", &bus_cfg->rx_pbl);
1858
1859 netdev_dbg(ndev, "BusCfg: lpi:%u wr:%u rr:%u bm:%X rxpbl:%u txpbl:%d\n",
1860 bus_cfg->en_lpi,
1861 bus_cfg->write_requests,
1862 bus_cfg->read_requests,
1863 bus_cfg->burst_map,
1864 bus_cfg->rx_pbl,
1865 bus_cfg->tx_pbl);
1866
1867 return 0;
1868 }
1869
1870 static int dwceqos_open(struct net_device *ndev)
1871 {
1872 struct net_local *lp = netdev_priv(ndev);
1873 int res;
1874
1875 dwceqos_reset_state(lp);
1876 res = dwceqos_descriptor_init(lp);
1877 if (res) {
1878 netdev_err(ndev, "Unable to allocate DMA memory, rc %d\n", res);
1879 return res;
1880 }
1881 netdev_reset_queue(ndev);
1882
1883 dwceqos_init_hw(lp);
1884 napi_enable(&lp->napi);
1885 phy_start(lp->phy_dev);
1886
1887 netif_start_queue(ndev);
1888 tasklet_enable(&lp->tx_bdreclaim_tasklet);
1889
1890 return 0;
1891 }
1892
1893 static bool dweqos_is_tx_dma_suspended(struct net_local *lp)
1894 {
1895 u32 reg;
1896
1897 reg = dwceqos_read(lp, REG_DWCEQOS_DMA_DEBUG_ST0);
1898 reg = DMA_GET_TX_STATE_CH0(reg);
1899
1900 return reg == DMA_TX_CH_SUSPENDED;
1901 }
1902
1903 static void dwceqos_drain_dma(struct net_local *lp)
1904 {
1905 /* Wait for all pending TX buffers to be sent. Upper limit based
1906 * on max frame size on a 10 Mbit link.
1907 */
1908 size_t limit = (DWCEQOS_TX_DCNT * 1250) / 100;
1909
1910 while (!dweqos_is_tx_dma_suspended(lp) && limit--)
1911 usleep_range(100, 200);
1912 }
1913
1914 static int dwceqos_stop(struct net_device *ndev)
1915 {
1916 struct net_local *lp = netdev_priv(ndev);
1917
1918 phy_stop(lp->phy_dev);
1919
1920 tasklet_disable(&lp->tx_bdreclaim_tasklet);
1921 napi_disable(&lp->napi);
1922
1923 /* Stop all tx before we drain the tx dma. */
1924 netif_tx_lock_bh(lp->ndev);
1925 netif_stop_queue(ndev);
1926 netif_tx_unlock_bh(lp->ndev);
1927
1928 dwceqos_drain_dma(lp);
1929 dwceqos_reset_hw(lp);
1930
1931 dwceqos_descriptor_free(lp);
1932
1933 return 0;
1934 }
1935
1936 static void dwceqos_dmadesc_set_ctx(struct net_local *lp,
1937 unsigned short gso_size)
1938 {
1939 struct dwceqos_dma_desc *dd = &lp->tx_descs[lp->tx_next];
1940
1941 dd->des0 = 0;
1942 dd->des1 = 0;
1943 dd->des2 = gso_size;
1944 dd->des3 = DWCEQOS_DMA_TDES3_CTXT | DWCEQOS_DMA_TDES3_TCMSSV;
1945
1946 lp->tx_next = (lp->tx_next + 1) % DWCEQOS_TX_DCNT;
1947 }
1948
1949 static void dwceqos_tx_poll_demand(struct net_local *lp)
1950 {
1951 dwceqos_write(lp, REG_DWCEQOS_DMA_CH0_TXDESC_TAIL,
1952 lp->tx_descs_tail_addr);
1953 }
1954
1955 struct dwceqos_tx {
1956 size_t nr_descriptors;
1957 size_t initial_descriptor;
1958 size_t last_descriptor;
1959 size_t prev_gso_size;
1960 size_t network_header_len;
1961 };
1962
1963 static void dwceqos_tx_prepare(struct sk_buff *skb, struct net_local *lp,
1964 struct dwceqos_tx *tx)
1965 {
1966 size_t n = 1;
1967 size_t i;
1968
1969 if (skb_is_gso(skb) && skb_shinfo(skb)->gso_size != lp->gso_size)
1970 ++n;
1971
1972 for (i = 0; i < skb_shinfo(skb)->nr_frags; ++i) {
1973 skb_frag_t *frag = &skb_shinfo(skb)->frags[i];
1974
1975 n += (skb_frag_size(frag) + BYTES_PER_DMA_DESC - 1) /
1976 BYTES_PER_DMA_DESC;
1977 }
1978
1979 tx->nr_descriptors = n;
1980 tx->initial_descriptor = lp->tx_next;
1981 tx->last_descriptor = lp->tx_next;
1982 tx->prev_gso_size = lp->gso_size;
1983
1984 tx->network_header_len = skb_transport_offset(skb);
1985 if (skb_is_gso(skb))
1986 tx->network_header_len += tcp_hdrlen(skb);
1987 }
1988
1989 static int dwceqos_tx_linear(struct sk_buff *skb, struct net_local *lp,
1990 struct dwceqos_tx *tx)
1991 {
1992 struct ring_desc *rd;
1993 struct dwceqos_dma_desc *dd;
1994 size_t payload_len;
1995 dma_addr_t dma_handle;
1996
1997 if (skb_is_gso(skb) && skb_shinfo(skb)->gso_size != lp->gso_size) {
1998 dwceqos_dmadesc_set_ctx(lp, skb_shinfo(skb)->gso_size);
1999 lp->gso_size = skb_shinfo(skb)->gso_size;
2000 }
2001
2002 dma_handle = dma_map_single(lp->ndev->dev.parent, skb->data,
2003 skb_headlen(skb), DMA_TO_DEVICE);
2004
2005 if (dma_mapping_error(lp->ndev->dev.parent, dma_handle)) {
2006 netdev_err(lp->ndev, "TX DMA Mapping error\n");
2007 return -ENOMEM;
2008 }
2009
2010 rd = &lp->tx_skb[lp->tx_next];
2011 dd = &lp->tx_descs[lp->tx_next];
2012
2013 rd->skb = NULL;
2014 rd->len = skb_headlen(skb);
2015 rd->mapping = dma_handle;
2016
2017 /* Set up DMA Descriptor */
2018 dd->des0 = dma_handle;
2019
2020 if (skb_is_gso(skb)) {
2021 payload_len = skb_headlen(skb) - tx->network_header_len;
2022
2023 if (payload_len)
2024 dd->des1 = dma_handle + tx->network_header_len;
2025 dd->des2 = tx->network_header_len |
2026 DWCEQOS_DMA_DES2_B2L(payload_len);
2027 dd->des3 = DWCEQOS_DMA_TDES3_TSE |
2028 DWCEQOS_DMA_DES3_THL((tcp_hdrlen(skb) / 4)) |
2029 (skb->len - tx->network_header_len);
2030 } else {
2031 dd->des1 = 0;
2032 dd->des2 = skb_headlen(skb);
2033 dd->des3 = skb->len;
2034
2035 switch (skb->ip_summed) {
2036 case CHECKSUM_PARTIAL:
2037 dd->des3 |= DWCEQOS_DMA_TDES3_CA;
2038 case CHECKSUM_NONE:
2039 case CHECKSUM_UNNECESSARY:
2040 case CHECKSUM_COMPLETE:
2041 default:
2042 break;
2043 }
2044 }
2045
2046 dd->des3 |= DWCEQOS_DMA_TDES3_FD;
2047 if (lp->tx_next != tx->initial_descriptor)
2048 dd->des3 |= DWCEQOS_DMA_TDES3_OWN;
2049
2050 tx->last_descriptor = lp->tx_next;
2051 lp->tx_next = (lp->tx_next + 1) % DWCEQOS_TX_DCNT;
2052
2053 return 0;
2054 }
2055
2056 static int dwceqos_tx_frags(struct sk_buff *skb, struct net_local *lp,
2057 struct dwceqos_tx *tx)
2058 {
2059 struct ring_desc *rd = NULL;
2060 struct dwceqos_dma_desc *dd;
2061 dma_addr_t dma_handle;
2062 size_t i;
2063
2064 /* Setup more ring and DMA descriptor if the packet is fragmented */
2065 for (i = 0; i < skb_shinfo(skb)->nr_frags; ++i) {
2066 skb_frag_t *frag = &skb_shinfo(skb)->frags[i];
2067 size_t frag_size;
2068 size_t consumed_size;
2069
2070 /* Map DMA Area */
2071 dma_handle = skb_frag_dma_map(lp->ndev->dev.parent, frag, 0,
2072 skb_frag_size(frag),
2073 DMA_TO_DEVICE);
2074 if (dma_mapping_error(lp->ndev->dev.parent, dma_handle)) {
2075 netdev_err(lp->ndev, "DMA Mapping error\n");
2076 return -ENOMEM;
2077 }
2078
2079 /* order-3 fragments span more than one descriptor. */
2080 frag_size = skb_frag_size(frag);
2081 consumed_size = 0;
2082 while (consumed_size < frag_size) {
2083 size_t dma_size = min_t(size_t, 16376,
2084 frag_size - consumed_size);
2085
2086 rd = &lp->tx_skb[lp->tx_next];
2087 memset(rd, 0, sizeof(*rd));
2088
2089 dd = &lp->tx_descs[lp->tx_next];
2090
2091 /* Set DMA Descriptor fields */
2092 dd->des0 = dma_handle + consumed_size;
2093 dd->des1 = 0;
2094 dd->des2 = dma_size;
2095
2096 if (skb_is_gso(skb))
2097 dd->des3 = (skb->len - tx->network_header_len);
2098 else
2099 dd->des3 = skb->len;
2100
2101 dd->des3 |= DWCEQOS_DMA_TDES3_OWN;
2102
2103 tx->last_descriptor = lp->tx_next;
2104 lp->tx_next = (lp->tx_next + 1) % DWCEQOS_TX_DCNT;
2105 consumed_size += dma_size;
2106 }
2107
2108 rd->len = skb_frag_size(frag);
2109 rd->mapping = dma_handle;
2110 }
2111
2112 return 0;
2113 }
2114
2115 static void dwceqos_tx_finalize(struct sk_buff *skb, struct net_local *lp,
2116 struct dwceqos_tx *tx)
2117 {
2118 lp->tx_descs[tx->last_descriptor].des3 |= DWCEQOS_DMA_TDES3_LD;
2119 lp->tx_descs[tx->last_descriptor].des2 |= DWCEQOS_DMA_TDES2_IOC;
2120
2121 lp->tx_skb[tx->last_descriptor].skb = skb;
2122
2123 /* Make all descriptor updates visible to the DMA before setting the
2124 * owner bit.
2125 */
2126 wmb();
2127
2128 lp->tx_descs[tx->initial_descriptor].des3 |= DWCEQOS_DMA_TDES3_OWN;
2129
2130 /* Make the owner bit visible before TX wakeup. */
2131 wmb();
2132
2133 dwceqos_tx_poll_demand(lp);
2134 }
2135
2136 static void dwceqos_tx_rollback(struct net_local *lp, struct dwceqos_tx *tx)
2137 {
2138 size_t i = tx->initial_descriptor;
2139
2140 while (i != lp->tx_next) {
2141 if (lp->tx_skb[i].mapping)
2142 dma_unmap_single(lp->ndev->dev.parent,
2143 lp->tx_skb[i].mapping,
2144 lp->tx_skb[i].len,
2145 DMA_TO_DEVICE);
2146
2147 lp->tx_skb[i].mapping = 0;
2148 lp->tx_skb[i].skb = NULL;
2149
2150 memset(&lp->tx_descs[i], 0, sizeof(lp->tx_descs[i]));
2151
2152 i = (i + 1) % DWCEQOS_TX_DCNT;
2153 }
2154
2155 lp->tx_next = tx->initial_descriptor;
2156 lp->gso_size = tx->prev_gso_size;
2157 }
2158
2159 static int dwceqos_start_xmit(struct sk_buff *skb, struct net_device *ndev)
2160 {
2161 struct net_local *lp = netdev_priv(ndev);
2162 struct dwceqos_tx trans;
2163 int err;
2164
2165 dwceqos_tx_prepare(skb, lp, &trans);
2166 if (lp->tx_free < trans.nr_descriptors) {
2167 netif_stop_queue(ndev);
2168 return NETDEV_TX_BUSY;
2169 }
2170
2171 err = dwceqos_tx_linear(skb, lp, &trans);
2172 if (err)
2173 goto tx_error;
2174
2175 err = dwceqos_tx_frags(skb, lp, &trans);
2176 if (err)
2177 goto tx_error;
2178
2179 WARN_ON(lp->tx_next !=
2180 ((trans.initial_descriptor + trans.nr_descriptors) %
2181 DWCEQOS_TX_DCNT));
2182
2183 spin_lock_bh(&lp->tx_lock);
2184 lp->tx_free -= trans.nr_descriptors;
2185 dwceqos_tx_finalize(skb, lp, &trans);
2186 netdev_sent_queue(ndev, skb->len);
2187 spin_unlock_bh(&lp->tx_lock);
2188
2189 ndev->trans_start = jiffies;
2190 return 0;
2191
2192 tx_error:
2193 dwceqos_tx_rollback(lp, &trans);
2194 dev_kfree_skb(skb);
2195 return 0;
2196 }
2197
2198 /* Set MAC address and then update HW accordingly */
2199 static int dwceqos_set_mac_address(struct net_device *ndev, void *addr)
2200 {
2201 struct net_local *lp = netdev_priv(ndev);
2202 struct sockaddr *hwaddr = (struct sockaddr *)addr;
2203
2204 if (netif_running(ndev))
2205 return -EBUSY;
2206
2207 if (!is_valid_ether_addr(hwaddr->sa_data))
2208 return -EADDRNOTAVAIL;
2209
2210 memcpy(ndev->dev_addr, hwaddr->sa_data, ndev->addr_len);
2211
2212 dwceqos_set_umac_addr(lp, lp->ndev->dev_addr, 0);
2213 return 0;
2214 }
2215
2216 static void dwceqos_tx_timeout(struct net_device *ndev)
2217 {
2218 struct net_local *lp = netdev_priv(ndev);
2219
2220 queue_work(lp->txtimeout_handler_wq, &lp->txtimeout_reinit);
2221 }
2222
2223 static void dwceqos_set_umac_addr(struct net_local *lp, unsigned char *addr,
2224 unsigned int reg_n)
2225 {
2226 unsigned long data;
2227
2228 data = (addr[5] << 8) | addr[4];
2229 dwceqos_write(lp, DWCEQOS_ADDR_HIGH(reg_n),
2230 data | DWCEQOS_MAC_MAC_ADDR_HI_EN);
2231 data = (addr[3] << 24) | (addr[2] << 16) | (addr[1] << 8) | addr[0];
2232 dwceqos_write(lp, DWCEQOS_ADDR_LOW(reg_n), data);
2233 }
2234
2235 static void dwceqos_disable_umac_addr(struct net_local *lp, unsigned int reg_n)
2236 {
2237 /* Do not disable MAC address 0 */
2238 if (reg_n != 0)
2239 dwceqos_write(lp, DWCEQOS_ADDR_HIGH(reg_n), 0);
2240 }
2241
2242 static void dwceqos_set_rx_mode(struct net_device *ndev)
2243 {
2244 struct net_local *lp = netdev_priv(ndev);
2245 u32 regval = 0;
2246 u32 mc_filter[2];
2247 int reg = 1;
2248 struct netdev_hw_addr *ha;
2249 unsigned int max_mac_addr;
2250
2251 max_mac_addr = DWCEQOS_MAX_PERFECT_ADDRESSES(lp->feature1);
2252
2253 if (ndev->flags & IFF_PROMISC) {
2254 regval = DWCEQOS_MAC_PKT_FILT_PR;
2255 } else if (((netdev_mc_count(ndev) > DWCEQOS_HASH_TABLE_SIZE) ||
2256 (ndev->flags & IFF_ALLMULTI))) {
2257 regval = DWCEQOS_MAC_PKT_FILT_PM;
2258 dwceqos_write(lp, REG_DWCEQOS_HASTABLE_LO, 0xffffffff);
2259 dwceqos_write(lp, REG_DWCEQOS_HASTABLE_HI, 0xffffffff);
2260 } else if (!netdev_mc_empty(ndev)) {
2261 regval = DWCEQOS_MAC_PKT_FILT_HMC;
2262 memset(mc_filter, 0, sizeof(mc_filter));
2263 netdev_for_each_mc_addr(ha, ndev) {
2264 /* The upper 6 bits of the calculated CRC are used to
2265 * index the contens of the hash table
2266 */
2267 int bit_nr = bitrev32(~crc32_le(~0, ha->addr, 6)) >> 26;
2268 /* The most significant bit determines the register
2269 * to use (H/L) while the other 5 bits determine
2270 * the bit within the register.
2271 */
2272 mc_filter[bit_nr >> 5] |= 1 << (bit_nr & 31);
2273 }
2274 dwceqos_write(lp, REG_DWCEQOS_HASTABLE_LO, mc_filter[0]);
2275 dwceqos_write(lp, REG_DWCEQOS_HASTABLE_HI, mc_filter[1]);
2276 }
2277 if (netdev_uc_count(ndev) > max_mac_addr) {
2278 regval |= DWCEQOS_MAC_PKT_FILT_PR;
2279 } else {
2280 netdev_for_each_uc_addr(ha, ndev) {
2281 dwceqos_set_umac_addr(lp, ha->addr, reg);
2282 reg++;
2283 }
2284 for (; reg < DWCEQOS_MAX_PERFECT_ADDRESSES(lp->feature1); reg++)
2285 dwceqos_disable_umac_addr(lp, reg);
2286 }
2287 dwceqos_write(lp, REG_DWCEQOS_MAC_PKT_FILT, regval);
2288 }
2289
2290 #ifdef CONFIG_NET_POLL_CONTROLLER
2291 static void dwceqos_poll_controller(struct net_device *ndev)
2292 {
2293 disable_irq(ndev->irq);
2294 dwceqos_interrupt(ndev->irq, ndev);
2295 enable_irq(ndev->irq);
2296 }
2297 #endif
2298
2299 static void dwceqos_read_mmc_counters(struct net_local *lp, u32 rx_mask,
2300 u32 tx_mask)
2301 {
2302 if (tx_mask & BIT(27))
2303 lp->mmc_counters.txlpitranscntr +=
2304 dwceqos_read(lp, DWC_MMC_TXLPITRANSCNTR);
2305 if (tx_mask & BIT(26))
2306 lp->mmc_counters.txpiuscntr +=
2307 dwceqos_read(lp, DWC_MMC_TXLPIUSCNTR);
2308 if (tx_mask & BIT(25))
2309 lp->mmc_counters.txoversize_g +=
2310 dwceqos_read(lp, DWC_MMC_TXOVERSIZE_G);
2311 if (tx_mask & BIT(24))
2312 lp->mmc_counters.txvlanpackets_g +=
2313 dwceqos_read(lp, DWC_MMC_TXVLANPACKETS_G);
2314 if (tx_mask & BIT(23))
2315 lp->mmc_counters.txpausepackets +=
2316 dwceqos_read(lp, DWC_MMC_TXPAUSEPACKETS);
2317 if (tx_mask & BIT(22))
2318 lp->mmc_counters.txexcessdef +=
2319 dwceqos_read(lp, DWC_MMC_TXEXCESSDEF);
2320 if (tx_mask & BIT(21))
2321 lp->mmc_counters.txpacketcount_g +=
2322 dwceqos_read(lp, DWC_MMC_TXPACKETCOUNT_G);
2323 if (tx_mask & BIT(20))
2324 lp->mmc_counters.txoctetcount_g +=
2325 dwceqos_read(lp, DWC_MMC_TXOCTETCOUNT_G);
2326 if (tx_mask & BIT(19))
2327 lp->mmc_counters.txcarriererror +=
2328 dwceqos_read(lp, DWC_MMC_TXCARRIERERROR);
2329 if (tx_mask & BIT(18))
2330 lp->mmc_counters.txexcesscol +=
2331 dwceqos_read(lp, DWC_MMC_TXEXCESSCOL);
2332 if (tx_mask & BIT(17))
2333 lp->mmc_counters.txlatecol +=
2334 dwceqos_read(lp, DWC_MMC_TXLATECOL);
2335 if (tx_mask & BIT(16))
2336 lp->mmc_counters.txdeferred +=
2337 dwceqos_read(lp, DWC_MMC_TXDEFERRED);
2338 if (tx_mask & BIT(15))
2339 lp->mmc_counters.txmulticol_g +=
2340 dwceqos_read(lp, DWC_MMC_TXMULTICOL_G);
2341 if (tx_mask & BIT(14))
2342 lp->mmc_counters.txsinglecol_g +=
2343 dwceqos_read(lp, DWC_MMC_TXSINGLECOL_G);
2344 if (tx_mask & BIT(13))
2345 lp->mmc_counters.txunderflowerror +=
2346 dwceqos_read(lp, DWC_MMC_TXUNDERFLOWERROR);
2347 if (tx_mask & BIT(12))
2348 lp->mmc_counters.txbroadcastpackets_gb +=
2349 dwceqos_read(lp, DWC_MMC_TXBROADCASTPACKETS_GB);
2350 if (tx_mask & BIT(11))
2351 lp->mmc_counters.txmulticastpackets_gb +=
2352 dwceqos_read(lp, DWC_MMC_TXMULTICASTPACKETS_GB);
2353 if (tx_mask & BIT(10))
2354 lp->mmc_counters.txunicastpackets_gb +=
2355 dwceqos_read(lp, DWC_MMC_TXUNICASTPACKETS_GB);
2356 if (tx_mask & BIT(9))
2357 lp->mmc_counters.tx1024tomaxoctets_gb +=
2358 dwceqos_read(lp, DWC_MMC_TX1024TOMAXOCTETS_GB);
2359 if (tx_mask & BIT(8))
2360 lp->mmc_counters.tx512to1023octets_gb +=
2361 dwceqos_read(lp, DWC_MMC_TX512TO1023OCTETS_GB);
2362 if (tx_mask & BIT(7))
2363 lp->mmc_counters.tx256to511octets_gb +=
2364 dwceqos_read(lp, DWC_MMC_TX256TO511OCTETS_GB);
2365 if (tx_mask & BIT(6))
2366 lp->mmc_counters.tx128to255octets_gb +=
2367 dwceqos_read(lp, DWC_MMC_TX128TO255OCTETS_GB);
2368 if (tx_mask & BIT(5))
2369 lp->mmc_counters.tx65to127octets_gb +=
2370 dwceqos_read(lp, DWC_MMC_TX65TO127OCTETS_GB);
2371 if (tx_mask & BIT(4))
2372 lp->mmc_counters.tx64octets_gb +=
2373 dwceqos_read(lp, DWC_MMC_TX64OCTETS_GB);
2374 if (tx_mask & BIT(3))
2375 lp->mmc_counters.txmulticastpackets_g +=
2376 dwceqos_read(lp, DWC_MMC_TXMULTICASTPACKETS_G);
2377 if (tx_mask & BIT(2))
2378 lp->mmc_counters.txbroadcastpackets_g +=
2379 dwceqos_read(lp, DWC_MMC_TXBROADCASTPACKETS_G);
2380 if (tx_mask & BIT(1))
2381 lp->mmc_counters.txpacketcount_gb +=
2382 dwceqos_read(lp, DWC_MMC_TXPACKETCOUNT_GB);
2383 if (tx_mask & BIT(0))
2384 lp->mmc_counters.txoctetcount_gb +=
2385 dwceqos_read(lp, DWC_MMC_TXOCTETCOUNT_GB);
2386
2387 if (rx_mask & BIT(27))
2388 lp->mmc_counters.rxlpitranscntr +=
2389 dwceqos_read(lp, DWC_MMC_RXLPITRANSCNTR);
2390 if (rx_mask & BIT(26))
2391 lp->mmc_counters.rxlpiuscntr +=
2392 dwceqos_read(lp, DWC_MMC_RXLPIUSCNTR);
2393 if (rx_mask & BIT(25))
2394 lp->mmc_counters.rxctrlpackets_g +=
2395 dwceqos_read(lp, DWC_MMC_RXCTRLPACKETS_G);
2396 if (rx_mask & BIT(24))
2397 lp->mmc_counters.rxrcverror +=
2398 dwceqos_read(lp, DWC_MMC_RXRCVERROR);
2399 if (rx_mask & BIT(23))
2400 lp->mmc_counters.rxwatchdog +=
2401 dwceqos_read(lp, DWC_MMC_RXWATCHDOG);
2402 if (rx_mask & BIT(22))
2403 lp->mmc_counters.rxvlanpackets_gb +=
2404 dwceqos_read(lp, DWC_MMC_RXVLANPACKETS_GB);
2405 if (rx_mask & BIT(21))
2406 lp->mmc_counters.rxfifooverflow +=
2407 dwceqos_read(lp, DWC_MMC_RXFIFOOVERFLOW);
2408 if (rx_mask & BIT(20))
2409 lp->mmc_counters.rxpausepackets +=
2410 dwceqos_read(lp, DWC_MMC_RXPAUSEPACKETS);
2411 if (rx_mask & BIT(19))
2412 lp->mmc_counters.rxoutofrangetype +=
2413 dwceqos_read(lp, DWC_MMC_RXOUTOFRANGETYPE);
2414 if (rx_mask & BIT(18))
2415 lp->mmc_counters.rxlengtherror +=
2416 dwceqos_read(lp, DWC_MMC_RXLENGTHERROR);
2417 if (rx_mask & BIT(17))
2418 lp->mmc_counters.rxunicastpackets_g +=
2419 dwceqos_read(lp, DWC_MMC_RXUNICASTPACKETS_G);
2420 if (rx_mask & BIT(16))
2421 lp->mmc_counters.rx1024tomaxoctets_gb +=
2422 dwceqos_read(lp, DWC_MMC_RX1024TOMAXOCTETS_GB);
2423 if (rx_mask & BIT(15))
2424 lp->mmc_counters.rx512to1023octets_gb +=
2425 dwceqos_read(lp, DWC_MMC_RX512TO1023OCTETS_GB);
2426 if (rx_mask & BIT(14))
2427 lp->mmc_counters.rx256to511octets_gb +=
2428 dwceqos_read(lp, DWC_MMC_RX256TO511OCTETS_GB);
2429 if (rx_mask & BIT(13))
2430 lp->mmc_counters.rx128to255octets_gb +=
2431 dwceqos_read(lp, DWC_MMC_RX128TO255OCTETS_GB);
2432 if (rx_mask & BIT(12))
2433 lp->mmc_counters.rx65to127octets_gb +=
2434 dwceqos_read(lp, DWC_MMC_RX65TO127OCTETS_GB);
2435 if (rx_mask & BIT(11))
2436 lp->mmc_counters.rx64octets_gb +=
2437 dwceqos_read(lp, DWC_MMC_RX64OCTETS_GB);
2438 if (rx_mask & BIT(10))
2439 lp->mmc_counters.rxoversize_g +=
2440 dwceqos_read(lp, DWC_MMC_RXOVERSIZE_G);
2441 if (rx_mask & BIT(9))
2442 lp->mmc_counters.rxundersize_g +=
2443 dwceqos_read(lp, DWC_MMC_RXUNDERSIZE_G);
2444 if (rx_mask & BIT(8))
2445 lp->mmc_counters.rxjabbererror +=
2446 dwceqos_read(lp, DWC_MMC_RXJABBERERROR);
2447 if (rx_mask & BIT(7))
2448 lp->mmc_counters.rxrunterror +=
2449 dwceqos_read(lp, DWC_MMC_RXRUNTERROR);
2450 if (rx_mask & BIT(6))
2451 lp->mmc_counters.rxalignmenterror +=
2452 dwceqos_read(lp, DWC_MMC_RXALIGNMENTERROR);
2453 if (rx_mask & BIT(5))
2454 lp->mmc_counters.rxcrcerror +=
2455 dwceqos_read(lp, DWC_MMC_RXCRCERROR);
2456 if (rx_mask & BIT(4))
2457 lp->mmc_counters.rxmulticastpackets_g +=
2458 dwceqos_read(lp, DWC_MMC_RXMULTICASTPACKETS_G);
2459 if (rx_mask & BIT(3))
2460 lp->mmc_counters.rxbroadcastpackets_g +=
2461 dwceqos_read(lp, DWC_MMC_RXBROADCASTPACKETS_G);
2462 if (rx_mask & BIT(2))
2463 lp->mmc_counters.rxoctetcount_g +=
2464 dwceqos_read(lp, DWC_MMC_RXOCTETCOUNT_G);
2465 if (rx_mask & BIT(1))
2466 lp->mmc_counters.rxoctetcount_gb +=
2467 dwceqos_read(lp, DWC_MMC_RXOCTETCOUNT_GB);
2468 if (rx_mask & BIT(0))
2469 lp->mmc_counters.rxpacketcount_gb +=
2470 dwceqos_read(lp, DWC_MMC_RXPACKETCOUNT_GB);
2471 }
2472
2473 static struct rtnl_link_stats64*
2474 dwceqos_get_stats64(struct net_device *ndev, struct rtnl_link_stats64 *s)
2475 {
2476 unsigned long flags;
2477 struct net_local *lp = netdev_priv(ndev);
2478 struct dwceqos_mmc_counters *hwstats = &lp->mmc_counters;
2479
2480 spin_lock_irqsave(&lp->stats_lock, flags);
2481 dwceqos_read_mmc_counters(lp, lp->mmc_rx_counters_mask,
2482 lp->mmc_tx_counters_mask);
2483 spin_unlock_irqrestore(&lp->stats_lock, flags);
2484
2485 s->rx_packets = hwstats->rxpacketcount_gb;
2486 s->rx_bytes = hwstats->rxoctetcount_gb;
2487 s->rx_errors = hwstats->rxpacketcount_gb -
2488 hwstats->rxbroadcastpackets_g -
2489 hwstats->rxmulticastpackets_g -
2490 hwstats->rxunicastpackets_g;
2491 s->multicast = hwstats->rxmulticastpackets_g;
2492 s->rx_length_errors = hwstats->rxlengtherror;
2493 s->rx_crc_errors = hwstats->rxcrcerror;
2494 s->rx_fifo_errors = hwstats->rxfifooverflow;
2495
2496 s->tx_packets = hwstats->txpacketcount_gb;
2497 s->tx_bytes = hwstats->txoctetcount_gb;
2498
2499 if (lp->mmc_tx_counters_mask & BIT(21))
2500 s->tx_errors = hwstats->txpacketcount_gb -
2501 hwstats->txpacketcount_g;
2502 else
2503 s->tx_errors = hwstats->txunderflowerror +
2504 hwstats->txcarriererror;
2505
2506 return s;
2507 }
2508
2509 static int
2510 dwceqos_get_settings(struct net_device *ndev, struct ethtool_cmd *ecmd)
2511 {
2512 struct net_local *lp = netdev_priv(ndev);
2513 struct phy_device *phydev = lp->phy_dev;
2514
2515 if (!phydev)
2516 return -ENODEV;
2517
2518 return phy_ethtool_gset(phydev, ecmd);
2519 }
2520
2521 static int
2522 dwceqos_set_settings(struct net_device *ndev, struct ethtool_cmd *ecmd)
2523 {
2524 struct net_local *lp = netdev_priv(ndev);
2525 struct phy_device *phydev = lp->phy_dev;
2526
2527 if (!phydev)
2528 return -ENODEV;
2529
2530 return phy_ethtool_sset(phydev, ecmd);
2531 }
2532
2533 static void
2534 dwceqos_get_drvinfo(struct net_device *ndev, struct ethtool_drvinfo *ed)
2535 {
2536 const struct net_local *lp = netdev_priv(ndev);
2537
2538 strcpy(ed->driver, lp->pdev->dev.driver->name);
2539 strcpy(ed->version, DRIVER_VERSION);
2540 }
2541
2542 static void dwceqos_get_pauseparam(struct net_device *ndev,
2543 struct ethtool_pauseparam *pp)
2544 {
2545 const struct net_local *lp = netdev_priv(ndev);
2546
2547 pp->autoneg = lp->flowcontrol.autoneg;
2548 pp->tx_pause = lp->flowcontrol.tx;
2549 pp->rx_pause = lp->flowcontrol.rx;
2550 }
2551
2552 static int dwceqos_set_pauseparam(struct net_device *ndev,
2553 struct ethtool_pauseparam *pp)
2554 {
2555 struct net_local *lp = netdev_priv(ndev);
2556 int ret = 0;
2557
2558 lp->flowcontrol.autoneg = pp->autoneg;
2559 if (pp->autoneg) {
2560 lp->phy_dev->advertising |= ADVERTISED_Pause;
2561 lp->phy_dev->advertising |= ADVERTISED_Asym_Pause;
2562 } else {
2563 lp->phy_dev->advertising &= ~ADVERTISED_Pause;
2564 lp->phy_dev->advertising &= ~ADVERTISED_Asym_Pause;
2565 lp->flowcontrol.rx = pp->rx_pause;
2566 lp->flowcontrol.tx = pp->tx_pause;
2567 }
2568
2569 if (netif_running(ndev))
2570 ret = phy_start_aneg(lp->phy_dev);
2571
2572 return ret;
2573 }
2574
2575 static void dwceqos_get_strings(struct net_device *ndev, u32 stringset,
2576 u8 *data)
2577 {
2578 size_t i;
2579
2580 if (stringset != ETH_SS_STATS)
2581 return;
2582
2583 for (i = 0; i < ARRAY_SIZE(dwceqos_ethtool_stats); ++i) {
2584 memcpy(data, dwceqos_ethtool_stats[i].stat_name,
2585 ETH_GSTRING_LEN);
2586 data += ETH_GSTRING_LEN;
2587 }
2588 }
2589
2590 static void dwceqos_get_ethtool_stats(struct net_device *ndev,
2591 struct ethtool_stats *stats, u64 *data)
2592 {
2593 struct net_local *lp = netdev_priv(ndev);
2594 unsigned long flags;
2595 size_t i;
2596 u8 *mmcstat = (u8 *)&lp->mmc_counters;
2597
2598 spin_lock_irqsave(&lp->stats_lock, flags);
2599 dwceqos_read_mmc_counters(lp, lp->mmc_rx_counters_mask,
2600 lp->mmc_tx_counters_mask);
2601 spin_unlock_irqrestore(&lp->stats_lock, flags);
2602
2603 for (i = 0; i < ARRAY_SIZE(dwceqos_ethtool_stats); ++i) {
2604 memcpy(data,
2605 mmcstat + dwceqos_ethtool_stats[i].offset,
2606 sizeof(u64));
2607 data++;
2608 }
2609 }
2610
2611 static int dwceqos_get_sset_count(struct net_device *ndev, int sset)
2612 {
2613 if (sset == ETH_SS_STATS)
2614 return ARRAY_SIZE(dwceqos_ethtool_stats);
2615
2616 return -EOPNOTSUPP;
2617 }
2618
2619 static void dwceqos_get_regs(struct net_device *dev, struct ethtool_regs *regs,
2620 void *space)
2621 {
2622 const struct net_local *lp = netdev_priv(dev);
2623 u32 *reg_space = (u32 *)space;
2624 int reg_offset;
2625 int reg_ix = 0;
2626
2627 /* MAC registers */
2628 for (reg_offset = START_MAC_REG_OFFSET;
2629 reg_offset <= MAX_DMA_REG_OFFSET; reg_offset += 4) {
2630 reg_space[reg_ix] = dwceqos_read(lp, reg_offset);
2631 reg_ix++;
2632 }
2633 /* MTL registers */
2634 for (reg_offset = START_MTL_REG_OFFSET;
2635 reg_offset <= MAX_MTL_REG_OFFSET; reg_offset += 4) {
2636 reg_space[reg_ix] = dwceqos_read(lp, reg_offset);
2637 reg_ix++;
2638 }
2639
2640 /* DMA registers */
2641 for (reg_offset = START_DMA_REG_OFFSET;
2642 reg_offset <= MAX_DMA_REG_OFFSET; reg_offset += 4) {
2643 reg_space[reg_ix] = dwceqos_read(lp, reg_offset);
2644 reg_ix++;
2645 }
2646
2647 BUG_ON(4 * reg_ix > REG_SPACE_SIZE);
2648 }
2649
2650 static int dwceqos_get_regs_len(struct net_device *dev)
2651 {
2652 return REG_SPACE_SIZE;
2653 }
2654
2655 static inline const char *dwceqos_get_rx_lpi_state(u32 lpi_ctrl)
2656 {
2657 return (lpi_ctrl & DWCEQOS_MAC_LPI_CTRL_STATUS_RLPIST) ? "on" : "off";
2658 }
2659
2660 static inline const char *dwceqos_get_tx_lpi_state(u32 lpi_ctrl)
2661 {
2662 return (lpi_ctrl & DWCEQOS_MAC_LPI_CTRL_STATUS_TLPIST) ? "on" : "off";
2663 }
2664
2665 static int dwceqos_get_eee(struct net_device *ndev, struct ethtool_eee *edata)
2666 {
2667 struct net_local *lp = netdev_priv(ndev);
2668 u32 lpi_status;
2669 u32 lpi_enabled;
2670
2671 if (!(lp->feature0 & DWCEQOS_MAC_HW_FEATURE0_EEESEL))
2672 return -EOPNOTSUPP;
2673
2674 edata->eee_active = lp->eee_active;
2675 edata->eee_enabled = lp->eee_enabled;
2676 edata->tx_lpi_timer = dwceqos_read(lp, REG_DWCEQOS_MAC_LPI_ENTRY_TIMER);
2677 lpi_status = dwceqos_read(lp, REG_DWCEQOS_MAC_LPI_CTRL_STATUS);
2678 lpi_enabled = !!(lpi_status & DWCEQOS_MAC_LPI_CTRL_STATUS_LIPTXA);
2679 edata->tx_lpi_enabled = lpi_enabled;
2680
2681 if (netif_msg_hw(lp)) {
2682 u32 regval;
2683
2684 regval = dwceqos_read(lp, REG_DWCEQOS_MAC_LPI_CTRL_STATUS);
2685
2686 netdev_info(lp->ndev, "MAC LPI State: RX:%s TX:%s\n",
2687 dwceqos_get_rx_lpi_state(regval),
2688 dwceqos_get_tx_lpi_state(regval));
2689 }
2690
2691 return phy_ethtool_get_eee(lp->phy_dev, edata);
2692 }
2693
2694 static int dwceqos_set_eee(struct net_device *ndev, struct ethtool_eee *edata)
2695 {
2696 struct net_local *lp = netdev_priv(ndev);
2697 u32 regval;
2698 unsigned long flags;
2699
2700 if (!(lp->feature0 & DWCEQOS_MAC_HW_FEATURE0_EEESEL))
2701 return -EOPNOTSUPP;
2702
2703 if (edata->eee_enabled && !lp->eee_active)
2704 return -EOPNOTSUPP;
2705
2706 if (edata->tx_lpi_enabled) {
2707 if (edata->tx_lpi_timer < DWCEQOS_LPI_TIMER_MIN ||
2708 edata->tx_lpi_timer > DWCEQOS_LPI_TIMER_MAX)
2709 return -EINVAL;
2710 }
2711
2712 lp->eee_enabled = edata->eee_enabled;
2713
2714 if (edata->eee_enabled && edata->tx_lpi_enabled) {
2715 dwceqos_write(lp, REG_DWCEQOS_MAC_LPI_ENTRY_TIMER,
2716 edata->tx_lpi_timer);
2717
2718 spin_lock_irqsave(&lp->hw_lock, flags);
2719 regval = dwceqos_read(lp, REG_DWCEQOS_MAC_LPI_CTRL_STATUS);
2720 regval |= DWCEQOS_LPI_CTRL_ENABLE_EEE;
2721 if (lp->en_tx_lpi_clockgating)
2722 regval |= DWCEQOS_MAC_LPI_CTRL_STATUS_LPITCSE;
2723 dwceqos_write(lp, REG_DWCEQOS_MAC_LPI_CTRL_STATUS, regval);
2724 spin_unlock_irqrestore(&lp->hw_lock, flags);
2725 } else {
2726 spin_lock_irqsave(&lp->hw_lock, flags);
2727 regval = dwceqos_read(lp, REG_DWCEQOS_MAC_LPI_CTRL_STATUS);
2728 regval &= ~DWCEQOS_LPI_CTRL_ENABLE_EEE;
2729 dwceqos_write(lp, REG_DWCEQOS_MAC_LPI_CTRL_STATUS, regval);
2730 spin_unlock_irqrestore(&lp->hw_lock, flags);
2731 }
2732
2733 return phy_ethtool_set_eee(lp->phy_dev, edata);
2734 }
2735
2736 static u32 dwceqos_get_msglevel(struct net_device *ndev)
2737 {
2738 const struct net_local *lp = netdev_priv(ndev);
2739
2740 return lp->msg_enable;
2741 }
2742
2743 static void dwceqos_set_msglevel(struct net_device *ndev, u32 msglevel)
2744 {
2745 struct net_local *lp = netdev_priv(ndev);
2746
2747 lp->msg_enable = msglevel;
2748 }
2749
2750 static struct ethtool_ops dwceqos_ethtool_ops = {
2751 .get_settings = dwceqos_get_settings,
2752 .set_settings = dwceqos_set_settings,
2753 .get_drvinfo = dwceqos_get_drvinfo,
2754 .get_link = ethtool_op_get_link,
2755 .get_pauseparam = dwceqos_get_pauseparam,
2756 .set_pauseparam = dwceqos_set_pauseparam,
2757 .get_strings = dwceqos_get_strings,
2758 .get_ethtool_stats = dwceqos_get_ethtool_stats,
2759 .get_sset_count = dwceqos_get_sset_count,
2760 .get_regs = dwceqos_get_regs,
2761 .get_regs_len = dwceqos_get_regs_len,
2762 .get_eee = dwceqos_get_eee,
2763 .set_eee = dwceqos_set_eee,
2764 .get_msglevel = dwceqos_get_msglevel,
2765 .set_msglevel = dwceqos_set_msglevel,
2766 };
2767
2768 static struct net_device_ops netdev_ops = {
2769 .ndo_open = dwceqos_open,
2770 .ndo_stop = dwceqos_stop,
2771 .ndo_start_xmit = dwceqos_start_xmit,
2772 .ndo_set_rx_mode = dwceqos_set_rx_mode,
2773 .ndo_set_mac_address = dwceqos_set_mac_address,
2774 #ifdef CONFIG_NET_POLL_CONTROLLER
2775 .ndo_poll_controller = dwceqos_poll_controller,
2776 #endif
2777 .ndo_do_ioctl = dwceqos_ioctl,
2778 .ndo_tx_timeout = dwceqos_tx_timeout,
2779 .ndo_get_stats64 = dwceqos_get_stats64,
2780 };
2781
2782 static const struct of_device_id dwceq_of_match[] = {
2783 { .compatible = "snps,dwc-qos-ethernet-4.10", },
2784 {}
2785 };
2786 MODULE_DEVICE_TABLE(of, dwceq_of_match);
2787
2788 static int dwceqos_probe(struct platform_device *pdev)
2789 {
2790 struct resource *r_mem = NULL;
2791 struct net_device *ndev;
2792 struct net_local *lp;
2793 int ret = -ENXIO;
2794
2795 r_mem = platform_get_resource(pdev, IORESOURCE_MEM, 0);
2796 if (!r_mem) {
2797 dev_err(&pdev->dev, "no IO resource defined.\n");
2798 return -ENXIO;
2799 }
2800
2801 ndev = alloc_etherdev(sizeof(*lp));
2802 if (!ndev) {
2803 dev_err(&pdev->dev, "etherdev allocation failed.\n");
2804 return -ENOMEM;
2805 }
2806
2807 SET_NETDEV_DEV(ndev, &pdev->dev);
2808
2809 lp = netdev_priv(ndev);
2810 lp->ndev = ndev;
2811 lp->pdev = pdev;
2812 lp->msg_enable = netif_msg_init(debug, DWCEQOS_MSG_DEFAULT);
2813
2814 spin_lock_init(&lp->tx_lock);
2815 spin_lock_init(&lp->hw_lock);
2816 spin_lock_init(&lp->stats_lock);
2817
2818 lp->apb_pclk = devm_clk_get(&pdev->dev, "apb_pclk");
2819 if (IS_ERR(lp->apb_pclk)) {
2820 dev_err(&pdev->dev, "apb_pclk clock not found.\n");
2821 ret = PTR_ERR(lp->apb_pclk);
2822 goto err_out_free_netdev;
2823 }
2824
2825 ret = clk_prepare_enable(lp->apb_pclk);
2826 if (ret) {
2827 dev_err(&pdev->dev, "Unable to enable APER clock.\n");
2828 goto err_out_free_netdev;
2829 }
2830
2831 lp->baseaddr = devm_ioremap_resource(&pdev->dev, r_mem);
2832 if (IS_ERR(lp->baseaddr)) {
2833 dev_err(&pdev->dev, "failed to map baseaddress.\n");
2834 ret = PTR_ERR(lp->baseaddr);
2835 goto err_out_clk_dis_aper;
2836 }
2837
2838 ndev->irq = platform_get_irq(pdev, 0);
2839 ndev->watchdog_timeo = DWCEQOS_TX_TIMEOUT * HZ;
2840 ndev->netdev_ops = &netdev_ops;
2841 ndev->ethtool_ops = &dwceqos_ethtool_ops;
2842 ndev->base_addr = r_mem->start;
2843
2844 dwceqos_get_hwfeatures(lp);
2845 dwceqos_mdio_set_csr(lp);
2846
2847 ndev->hw_features = NETIF_F_SG;
2848
2849 if (lp->feature1 & DWCEQOS_MAC_HW_FEATURE1_TSOEN)
2850 ndev->hw_features |= NETIF_F_TSO | NETIF_F_TSO6;
2851
2852 if (lp->feature0 & DWCEQOS_MAC_HW_FEATURE0_TXCOESEL)
2853 ndev->hw_features |= NETIF_F_IP_CSUM | NETIF_F_IPV6_CSUM;
2854
2855 if (lp->feature0 & DWCEQOS_MAC_HW_FEATURE0_RXCOESEL)
2856 ndev->hw_features |= NETIF_F_RXCSUM;
2857
2858 ndev->features = ndev->hw_features;
2859
2860 netif_napi_add(ndev, &lp->napi, dwceqos_rx_poll, NAPI_POLL_WEIGHT);
2861
2862 ret = register_netdev(ndev);
2863 if (ret) {
2864 dev_err(&pdev->dev, "Cannot register net device, aborting.\n");
2865 goto err_out_clk_dis_aper;
2866 }
2867
2868 lp->phy_ref_clk = devm_clk_get(&pdev->dev, "phy_ref_clk");
2869 if (IS_ERR(lp->phy_ref_clk)) {
2870 dev_err(&pdev->dev, "phy_ref_clk clock not found.\n");
2871 ret = PTR_ERR(lp->phy_ref_clk);
2872 goto err_out_unregister_netdev;
2873 }
2874
2875 ret = clk_prepare_enable(lp->phy_ref_clk);
2876 if (ret) {
2877 dev_err(&pdev->dev, "Unable to enable device clock.\n");
2878 goto err_out_unregister_netdev;
2879 }
2880
2881 lp->phy_node = of_parse_phandle(lp->pdev->dev.of_node,
2882 "phy-handle", 0);
2883 if (!lp->phy_node && of_phy_is_fixed_link(lp->pdev->dev.of_node)) {
2884 ret = of_phy_register_fixed_link(lp->pdev->dev.of_node);
2885 if (ret < 0) {
2886 dev_err(&pdev->dev, "invalid fixed-link");
2887 goto err_out_unregister_netdev;
2888 }
2889
2890 lp->phy_node = of_node_get(lp->pdev->dev.of_node);
2891 }
2892
2893 ret = of_get_phy_mode(lp->pdev->dev.of_node);
2894 if (ret < 0) {
2895 dev_err(&lp->pdev->dev, "error in getting phy i/f\n");
2896 goto err_out_unregister_clk_notifier;
2897 }
2898
2899 lp->phy_interface = ret;
2900
2901 ret = dwceqos_mii_init(lp);
2902 if (ret) {
2903 dev_err(&lp->pdev->dev, "error in dwceqos_mii_init\n");
2904 goto err_out_unregister_clk_notifier;
2905 }
2906
2907 ret = dwceqos_mii_probe(ndev);
2908 if (ret != 0) {
2909 netdev_err(ndev, "mii_probe fail.\n");
2910 ret = -ENXIO;
2911 goto err_out_unregister_clk_notifier;
2912 }
2913
2914 dwceqos_set_umac_addr(lp, lp->ndev->dev_addr, 0);
2915
2916 tasklet_init(&lp->tx_bdreclaim_tasklet, dwceqos_tx_reclaim,
2917 (unsigned long)ndev);
2918 tasklet_disable(&lp->tx_bdreclaim_tasklet);
2919
2920 lp->txtimeout_handler_wq = create_singlethread_workqueue(DRIVER_NAME);
2921 INIT_WORK(&lp->txtimeout_reinit, dwceqos_reinit_for_txtimeout);
2922
2923 platform_set_drvdata(pdev, ndev);
2924 ret = dwceqos_probe_config_dt(pdev);
2925 if (ret) {
2926 dev_err(&lp->pdev->dev, "Unable to retrieve DT, error %d\n",
2927 ret);
2928 goto err_out_unregister_clk_notifier;
2929 }
2930 dev_info(&lp->pdev->dev, "pdev->id %d, baseaddr 0x%08lx, irq %d\n",
2931 pdev->id, ndev->base_addr, ndev->irq);
2932
2933 ret = devm_request_irq(&pdev->dev, ndev->irq, &dwceqos_interrupt, 0,
2934 ndev->name, ndev);
2935 if (ret) {
2936 dev_err(&lp->pdev->dev, "Unable to request IRQ %d, error %d\n",
2937 ndev->irq, ret);
2938 goto err_out_unregister_clk_notifier;
2939 }
2940
2941 if (netif_msg_probe(lp))
2942 netdev_dbg(ndev, "net_local@%p\n", lp);
2943
2944 return 0;
2945
2946 err_out_unregister_clk_notifier:
2947 clk_disable_unprepare(lp->phy_ref_clk);
2948 err_out_unregister_netdev:
2949 unregister_netdev(ndev);
2950 err_out_clk_dis_aper:
2951 clk_disable_unprepare(lp->apb_pclk);
2952 err_out_free_netdev:
2953 of_node_put(lp->phy_node);
2954 free_netdev(ndev);
2955 platform_set_drvdata(pdev, NULL);
2956 return ret;
2957 }
2958
2959 static int dwceqos_remove(struct platform_device *pdev)
2960 {
2961 struct net_device *ndev = platform_get_drvdata(pdev);
2962 struct net_local *lp;
2963
2964 if (ndev) {
2965 lp = netdev_priv(ndev);
2966
2967 if (lp->phy_dev)
2968 phy_disconnect(lp->phy_dev);
2969 mdiobus_unregister(lp->mii_bus);
2970 mdiobus_free(lp->mii_bus);
2971
2972 unregister_netdev(ndev);
2973
2974 clk_disable_unprepare(lp->phy_ref_clk);
2975 clk_disable_unprepare(lp->apb_pclk);
2976
2977 free_netdev(ndev);
2978 }
2979
2980 return 0;
2981 }
2982
2983 static struct platform_driver dwceqos_driver = {
2984 .probe = dwceqos_probe,
2985 .remove = dwceqos_remove,
2986 .driver = {
2987 .name = DRIVER_NAME,
2988 .of_match_table = dwceq_of_match,
2989 },
2990 };
2991
2992 module_platform_driver(dwceqos_driver);
2993
2994 MODULE_DESCRIPTION("DWC Ethernet QoS v4.10a driver");
2995 MODULE_LICENSE("GPL v2");
2996 MODULE_AUTHOR("Andreas Irestaal <andreas.irestal@axis.com>");
2997 MODULE_AUTHOR("Lars Persson <lars.persson@axis.com>");