Merge remote-tracking branch 'omap_dss2/for-next'
[deliverable/linux.git] / drivers / net / ethernet / apm / xgene / xgene_enet_xgmac.c
1 /* Applied Micro X-Gene SoC Ethernet Driver
2 *
3 * Copyright (c) 2014, Applied Micro Circuits Corporation
4 * Authors: Iyappan Subramanian <isubramanian@apm.com>
5 * Keyur Chudgar <kchudgar@apm.com>
6 *
7 * This program is free software; you can redistribute it and/or modify it
8 * under the terms of the GNU General Public License as published by the
9 * Free Software Foundation; either version 2 of the License, or (at your
10 * option) any later version.
11 *
12 * This program is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 * GNU General Public License for more details.
16 *
17 * You should have received a copy of the GNU General Public License
18 * along with this program. If not, see <http://www.gnu.org/licenses/>.
19 */
20
21 #include <linux/of_gpio.h>
22 #include <linux/gpio.h>
23 #include "xgene_enet_main.h"
24 #include "xgene_enet_hw.h"
25 #include "xgene_enet_xgmac.h"
26
27 static void xgene_enet_wr_csr(struct xgene_enet_pdata *pdata,
28 u32 offset, u32 val)
29 {
30 void __iomem *addr = pdata->eth_csr_addr + offset;
31
32 iowrite32(val, addr);
33 }
34
35 static void xgene_enet_wr_ring_if(struct xgene_enet_pdata *pdata,
36 u32 offset, u32 val)
37 {
38 void __iomem *addr = pdata->eth_ring_if_addr + offset;
39
40 iowrite32(val, addr);
41 }
42
43 static void xgene_enet_wr_diag_csr(struct xgene_enet_pdata *pdata,
44 u32 offset, u32 val)
45 {
46 void __iomem *addr = pdata->eth_diag_csr_addr + offset;
47
48 iowrite32(val, addr);
49 }
50
51 static bool xgene_enet_wr_indirect(void __iomem *addr, void __iomem *wr,
52 void __iomem *cmd, void __iomem *cmd_done,
53 u32 wr_addr, u32 wr_data)
54 {
55 u32 done;
56 u8 wait = 10;
57
58 iowrite32(wr_addr, addr);
59 iowrite32(wr_data, wr);
60 iowrite32(XGENE_ENET_WR_CMD, cmd);
61
62 /* wait for write command to complete */
63 while (!(done = ioread32(cmd_done)) && wait--)
64 udelay(1);
65
66 if (!done)
67 return false;
68
69 iowrite32(0, cmd);
70
71 return true;
72 }
73
74 static void xgene_enet_wr_mac(struct xgene_enet_pdata *pdata,
75 u32 wr_addr, u32 wr_data)
76 {
77 void __iomem *addr, *wr, *cmd, *cmd_done;
78
79 addr = pdata->mcx_mac_addr + MAC_ADDR_REG_OFFSET;
80 wr = pdata->mcx_mac_addr + MAC_WRITE_REG_OFFSET;
81 cmd = pdata->mcx_mac_addr + MAC_COMMAND_REG_OFFSET;
82 cmd_done = pdata->mcx_mac_addr + MAC_COMMAND_DONE_REG_OFFSET;
83
84 if (!xgene_enet_wr_indirect(addr, wr, cmd, cmd_done, wr_addr, wr_data))
85 netdev_err(pdata->ndev, "MCX mac write failed, addr: %04x\n",
86 wr_addr);
87 }
88
89 static void xgene_enet_wr_pcs(struct xgene_enet_pdata *pdata,
90 u32 wr_addr, u32 wr_data)
91 {
92 void __iomem *addr, *wr, *cmd, *cmd_done;
93
94 addr = pdata->pcs_addr + PCS_ADDR_REG_OFFSET;
95 wr = pdata->pcs_addr + PCS_WRITE_REG_OFFSET;
96 cmd = pdata->pcs_addr + PCS_COMMAND_REG_OFFSET;
97 cmd_done = pdata->pcs_addr + PCS_COMMAND_DONE_REG_OFFSET;
98
99 if (!xgene_enet_wr_indirect(addr, wr, cmd, cmd_done, wr_addr, wr_data))
100 netdev_err(pdata->ndev, "PCS write failed, addr: %04x\n",
101 wr_addr);
102 }
103
104 static void xgene_enet_rd_csr(struct xgene_enet_pdata *pdata,
105 u32 offset, u32 *val)
106 {
107 void __iomem *addr = pdata->eth_csr_addr + offset;
108
109 *val = ioread32(addr);
110 }
111
112 static void xgene_enet_rd_diag_csr(struct xgene_enet_pdata *pdata,
113 u32 offset, u32 *val)
114 {
115 void __iomem *addr = pdata->eth_diag_csr_addr + offset;
116
117 *val = ioread32(addr);
118 }
119
120 static bool xgene_enet_rd_indirect(void __iomem *addr, void __iomem *rd,
121 void __iomem *cmd, void __iomem *cmd_done,
122 u32 rd_addr, u32 *rd_data)
123 {
124 u32 done;
125 u8 wait = 10;
126
127 iowrite32(rd_addr, addr);
128 iowrite32(XGENE_ENET_RD_CMD, cmd);
129
130 /* wait for read command to complete */
131 while (!(done = ioread32(cmd_done)) && wait--)
132 udelay(1);
133
134 if (!done)
135 return false;
136
137 *rd_data = ioread32(rd);
138 iowrite32(0, cmd);
139
140 return true;
141 }
142
143 static void xgene_enet_rd_mac(struct xgene_enet_pdata *pdata,
144 u32 rd_addr, u32 *rd_data)
145 {
146 void __iomem *addr, *rd, *cmd, *cmd_done;
147
148 addr = pdata->mcx_mac_addr + MAC_ADDR_REG_OFFSET;
149 rd = pdata->mcx_mac_addr + MAC_READ_REG_OFFSET;
150 cmd = pdata->mcx_mac_addr + MAC_COMMAND_REG_OFFSET;
151 cmd_done = pdata->mcx_mac_addr + MAC_COMMAND_DONE_REG_OFFSET;
152
153 if (!xgene_enet_rd_indirect(addr, rd, cmd, cmd_done, rd_addr, rd_data))
154 netdev_err(pdata->ndev, "MCX mac read failed, addr: %04x\n",
155 rd_addr);
156 }
157
158 static bool xgene_enet_rd_pcs(struct xgene_enet_pdata *pdata,
159 u32 rd_addr, u32 *rd_data)
160 {
161 void __iomem *addr, *rd, *cmd, *cmd_done;
162 bool success;
163
164 addr = pdata->pcs_addr + PCS_ADDR_REG_OFFSET;
165 rd = pdata->pcs_addr + PCS_READ_REG_OFFSET;
166 cmd = pdata->pcs_addr + PCS_COMMAND_REG_OFFSET;
167 cmd_done = pdata->pcs_addr + PCS_COMMAND_DONE_REG_OFFSET;
168
169 success = xgene_enet_rd_indirect(addr, rd, cmd, cmd_done, rd_addr, rd_data);
170 if (!success)
171 netdev_err(pdata->ndev, "PCS read failed, addr: %04x\n",
172 rd_addr);
173
174 return success;
175 }
176
177 static int xgene_enet_ecc_init(struct xgene_enet_pdata *pdata)
178 {
179 struct net_device *ndev = pdata->ndev;
180 u32 data;
181 u8 wait = 10;
182
183 xgene_enet_wr_diag_csr(pdata, ENET_CFG_MEM_RAM_SHUTDOWN_ADDR, 0x0);
184 do {
185 usleep_range(100, 110);
186 xgene_enet_rd_diag_csr(pdata, ENET_BLOCK_MEM_RDY_ADDR, &data);
187 } while ((data != 0xffffffff) && wait--);
188
189 if (data != 0xffffffff) {
190 netdev_err(ndev, "Failed to release memory from shutdown\n");
191 return -ENODEV;
192 }
193
194 return 0;
195 }
196
197 static void xgene_enet_config_ring_if_assoc(struct xgene_enet_pdata *pdata)
198 {
199 xgene_enet_wr_ring_if(pdata, ENET_CFGSSQMIWQASSOC_ADDR, 0);
200 xgene_enet_wr_ring_if(pdata, ENET_CFGSSQMIFPQASSOC_ADDR, 0);
201 xgene_enet_wr_ring_if(pdata, ENET_CFGSSQMIQMLITEWQASSOC_ADDR, 0);
202 xgene_enet_wr_ring_if(pdata, ENET_CFGSSQMIQMLITEFPQASSOC_ADDR, 0);
203 }
204
205 static void xgene_xgmac_reset(struct xgene_enet_pdata *pdata)
206 {
207 xgene_enet_wr_mac(pdata, AXGMAC_CONFIG_0, HSTMACRST);
208 xgene_enet_wr_mac(pdata, AXGMAC_CONFIG_0, 0);
209 }
210
211 static void xgene_pcs_reset(struct xgene_enet_pdata *pdata)
212 {
213 u32 data;
214
215 if (!xgene_enet_rd_pcs(pdata, PCS_CONTROL_1, &data))
216 return;
217
218 xgene_enet_wr_pcs(pdata, PCS_CONTROL_1, data | PCS_CTRL_PCS_RST);
219 xgene_enet_wr_pcs(pdata, PCS_CONTROL_1, data & ~PCS_CTRL_PCS_RST);
220 }
221
222 static void xgene_xgmac_set_mac_addr(struct xgene_enet_pdata *pdata)
223 {
224 u32 addr0, addr1;
225 u8 *dev_addr = pdata->ndev->dev_addr;
226
227 addr0 = (dev_addr[3] << 24) | (dev_addr[2] << 16) |
228 (dev_addr[1] << 8) | dev_addr[0];
229 addr1 = (dev_addr[5] << 24) | (dev_addr[4] << 16);
230
231 xgene_enet_wr_mac(pdata, HSTMACADR_LSW_ADDR, addr0);
232 xgene_enet_wr_mac(pdata, HSTMACADR_MSW_ADDR, addr1);
233 }
234
235 static void xgene_xgmac_set_mss(struct xgene_enet_pdata *pdata)
236 {
237 xgene_enet_wr_csr(pdata, XG_TSIF_MSS_REG0_ADDR, pdata->mss);
238 }
239
240 static u32 xgene_enet_link_status(struct xgene_enet_pdata *pdata)
241 {
242 u32 data;
243
244 xgene_enet_rd_csr(pdata, XG_LINK_STATUS_ADDR, &data);
245
246 return data;
247 }
248
249 static void xgene_xgmac_init(struct xgene_enet_pdata *pdata)
250 {
251 u32 data;
252
253 xgene_xgmac_reset(pdata);
254
255 xgene_enet_rd_mac(pdata, AXGMAC_CONFIG_1, &data);
256 data |= HSTPPEN;
257 data &= ~HSTLENCHK;
258 xgene_enet_wr_mac(pdata, AXGMAC_CONFIG_1, data);
259
260 xgene_xgmac_set_mac_addr(pdata);
261 xgene_xgmac_set_mss(pdata);
262
263 xgene_enet_rd_csr(pdata, XG_RSIF_CONFIG_REG_ADDR, &data);
264 data |= CFG_RSIF_FPBUFF_TIMEOUT_EN;
265 xgene_enet_wr_csr(pdata, XG_RSIF_CONFIG_REG_ADDR, data);
266
267 xgene_enet_rd_csr(pdata, XG_ENET_SPARE_CFG_REG_ADDR, &data);
268 data |= BIT(12);
269 xgene_enet_wr_csr(pdata, XG_ENET_SPARE_CFG_REG_ADDR, data);
270 xgene_enet_wr_csr(pdata, XG_ENET_SPARE_CFG_REG_1_ADDR, 0x82);
271 xgene_enet_wr_csr(pdata, XGENET_RX_DV_GATE_REG_0_ADDR, 0);
272 xgene_enet_wr_csr(pdata, XG_CFG_BYPASS_ADDR, RESUME_TX);
273 }
274
275 static void xgene_xgmac_rx_enable(struct xgene_enet_pdata *pdata)
276 {
277 u32 data;
278
279 xgene_enet_rd_mac(pdata, AXGMAC_CONFIG_1, &data);
280 xgene_enet_wr_mac(pdata, AXGMAC_CONFIG_1, data | HSTRFEN);
281 }
282
283 static void xgene_xgmac_tx_enable(struct xgene_enet_pdata *pdata)
284 {
285 u32 data;
286
287 xgene_enet_rd_mac(pdata, AXGMAC_CONFIG_1, &data);
288 xgene_enet_wr_mac(pdata, AXGMAC_CONFIG_1, data | HSTTFEN);
289 }
290
291 static void xgene_xgmac_rx_disable(struct xgene_enet_pdata *pdata)
292 {
293 u32 data;
294
295 xgene_enet_rd_mac(pdata, AXGMAC_CONFIG_1, &data);
296 xgene_enet_wr_mac(pdata, AXGMAC_CONFIG_1, data & ~HSTRFEN);
297 }
298
299 static void xgene_xgmac_tx_disable(struct xgene_enet_pdata *pdata)
300 {
301 u32 data;
302
303 xgene_enet_rd_mac(pdata, AXGMAC_CONFIG_1, &data);
304 xgene_enet_wr_mac(pdata, AXGMAC_CONFIG_1, data & ~HSTTFEN);
305 }
306
307 static int xgene_enet_reset(struct xgene_enet_pdata *pdata)
308 {
309 struct device *dev = &pdata->pdev->dev;
310
311 if (!xgene_ring_mgr_init(pdata))
312 return -ENODEV;
313
314 if (dev->of_node) {
315 clk_prepare_enable(pdata->clk);
316 udelay(5);
317 clk_disable_unprepare(pdata->clk);
318 udelay(5);
319 clk_prepare_enable(pdata->clk);
320 udelay(5);
321 } else {
322 #ifdef CONFIG_ACPI
323 if (acpi_has_method(ACPI_HANDLE(&pdata->pdev->dev), "_RST")) {
324 acpi_evaluate_object(ACPI_HANDLE(&pdata->pdev->dev),
325 "_RST", NULL, NULL);
326 } else if (acpi_has_method(ACPI_HANDLE(&pdata->pdev->dev),
327 "_INI")) {
328 acpi_evaluate_object(ACPI_HANDLE(&pdata->pdev->dev),
329 "_INI", NULL, NULL);
330 }
331 #endif
332 }
333
334 xgene_enet_ecc_init(pdata);
335 xgene_enet_config_ring_if_assoc(pdata);
336
337 return 0;
338 }
339
340 static void xgene_enet_xgcle_bypass(struct xgene_enet_pdata *pdata,
341 u32 dst_ring_num, u16 bufpool_id)
342 {
343 u32 cb, fpsel;
344
345 xgene_enet_rd_csr(pdata, XCLE_BYPASS_REG0_ADDR, &cb);
346 cb |= CFG_CLE_BYPASS_EN0;
347 CFG_CLE_IP_PROTOCOL0_SET(&cb, 3);
348 xgene_enet_wr_csr(pdata, XCLE_BYPASS_REG0_ADDR, cb);
349
350 fpsel = xgene_enet_ring_bufnum(bufpool_id) - 0x20;
351 xgene_enet_rd_csr(pdata, XCLE_BYPASS_REG1_ADDR, &cb);
352 CFG_CLE_DSTQID0_SET(&cb, dst_ring_num);
353 CFG_CLE_FPSEL0_SET(&cb, fpsel);
354 xgene_enet_wr_csr(pdata, XCLE_BYPASS_REG1_ADDR, cb);
355 }
356
357 static void xgene_enet_shutdown(struct xgene_enet_pdata *pdata)
358 {
359 struct device *dev = &pdata->pdev->dev;
360 struct xgene_enet_desc_ring *ring;
361 u32 pb, val;
362 int i;
363
364 pb = 0;
365 for (i = 0; i < pdata->rxq_cnt; i++) {
366 ring = pdata->rx_ring[i]->buf_pool;
367
368 val = xgene_enet_ring_bufnum(ring->id);
369 pb |= BIT(val - 0x20);
370 }
371 xgene_enet_wr_ring_if(pdata, ENET_CFGSSQMIFPRESET_ADDR, pb);
372
373 pb = 0;
374 for (i = 0; i < pdata->txq_cnt; i++) {
375 ring = pdata->tx_ring[i];
376
377 val = xgene_enet_ring_bufnum(ring->id);
378 pb |= BIT(val);
379 }
380 xgene_enet_wr_ring_if(pdata, ENET_CFGSSQMIWQRESET_ADDR, pb);
381
382 if (dev->of_node) {
383 if (!IS_ERR(pdata->clk))
384 clk_disable_unprepare(pdata->clk);
385 }
386 }
387
388 static void xgene_enet_clear(struct xgene_enet_pdata *pdata,
389 struct xgene_enet_desc_ring *ring)
390 {
391 u32 addr, val, data;
392
393 val = xgene_enet_ring_bufnum(ring->id);
394
395 if (xgene_enet_is_bufpool(ring->id)) {
396 addr = ENET_CFGSSQMIFPRESET_ADDR;
397 data = BIT(val - 0x20);
398 } else {
399 addr = ENET_CFGSSQMIWQRESET_ADDR;
400 data = BIT(val);
401 }
402
403 xgene_enet_wr_ring_if(pdata, addr, data);
404 }
405
406 static void xgene_enet_link_state(struct work_struct *work)
407 {
408 struct xgene_enet_pdata *pdata = container_of(to_delayed_work(work),
409 struct xgene_enet_pdata, link_work);
410 struct gpio_desc *sfp_rdy = pdata->sfp_rdy;
411 struct net_device *ndev = pdata->ndev;
412 u32 link_status, poll_interval;
413
414 link_status = xgene_enet_link_status(pdata);
415 if (link_status && !IS_ERR(sfp_rdy) && !gpiod_get_value(sfp_rdy))
416 link_status = 0;
417
418 if (link_status) {
419 if (!netif_carrier_ok(ndev)) {
420 netif_carrier_on(ndev);
421 xgene_xgmac_rx_enable(pdata);
422 xgene_xgmac_tx_enable(pdata);
423 netdev_info(ndev, "Link is Up - 10Gbps\n");
424 }
425 poll_interval = PHY_POLL_LINK_ON;
426 } else {
427 if (netif_carrier_ok(ndev)) {
428 xgene_xgmac_rx_disable(pdata);
429 xgene_xgmac_tx_disable(pdata);
430 netif_carrier_off(ndev);
431 netdev_info(ndev, "Link is Down\n");
432 }
433 poll_interval = PHY_POLL_LINK_OFF;
434
435 xgene_pcs_reset(pdata);
436 }
437
438 schedule_delayed_work(&pdata->link_work, poll_interval);
439 }
440
441 const struct xgene_mac_ops xgene_xgmac_ops = {
442 .init = xgene_xgmac_init,
443 .reset = xgene_xgmac_reset,
444 .rx_enable = xgene_xgmac_rx_enable,
445 .tx_enable = xgene_xgmac_tx_enable,
446 .rx_disable = xgene_xgmac_rx_disable,
447 .tx_disable = xgene_xgmac_tx_disable,
448 .set_mac_addr = xgene_xgmac_set_mac_addr,
449 .set_mss = xgene_xgmac_set_mss,
450 .link_state = xgene_enet_link_state
451 };
452
453 const struct xgene_port_ops xgene_xgport_ops = {
454 .reset = xgene_enet_reset,
455 .clear = xgene_enet_clear,
456 .cle_bypass = xgene_enet_xgcle_bypass,
457 .shutdown = xgene_enet_shutdown,
458 };
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