1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3 *
4 * Copyright (C) 2009-2016 John Crispin <blogic@openwrt.org>
5 * Copyright (C) 2009-2016 Felix Fietkau <nbd@openwrt.org>
6 * Copyright (C) 2013-2016 Michael Lee <igvtee@gmail.com>
7 */
8
9 #include <linux/of.h>
10 #include <linux/of_mdio.h>
11 #include <linux/of_net.h>
12 #include <linux/of_address.h>
13 #include <linux/mfd/syscon.h>
14 #include <linux/platform_device.h>
15 #include <linux/regmap.h>
16 #include <linux/clk.h>
17 #include <linux/pm_runtime.h>
18 #include <linux/if_vlan.h>
19 #include <linux/reset.h>
20 #include <linux/tcp.h>
21 #include <linux/interrupt.h>
22 #include <linux/pinctrl/devinfo.h>
23 #include <linux/phylink.h>
24 #include <linux/pcs/pcs-mtk-lynxi.h>
25 #include <linux/jhash.h>
26 #include <linux/bitfield.h>
27 #include <net/dsa.h>
28 #include <net/dst_metadata.h>
29 #include <net/netdev_lock.h>
30 #include <net/page_pool/helpers.h>
31 #include <linux/genalloc.h>
32
33 #include "mtk_eth_soc.h"
34 #include "mtk_wed.h"
35
36 static int mtk_msg_level = -1;
37 module_param_named(msg_level, mtk_msg_level, int, 0);
38 MODULE_PARM_DESC(msg_level, "Message level (-1=defaults,0=none,...,16=all)");
39
40 #define MTK_ETHTOOL_STAT(x) { #x, \
41 offsetof(struct mtk_hw_stats, x) / sizeof(u64) }
42
43 #define MTK_ETHTOOL_XDP_STAT(x) { #x, \
44 offsetof(struct mtk_hw_stats, xdp_stats.x) / \
45 sizeof(u64) }
46
47 static const struct mtk_reg_map mtk_reg_map = {
48 .tx_irq_mask = 0x1a1c,
49 .tx_irq_status = 0x1a18,
50 .pdma = {
51 .rx_ptr = 0x0900,
52 .rx_cnt_cfg = 0x0904,
53 .pcrx_ptr = 0x0908,
54 .glo_cfg = 0x0a04,
55 .rst_idx = 0x0a08,
56 .delay_irq = 0x0a0c,
57 .irq_status = 0x0a20,
58 .irq_mask = 0x0a28,
59 .adma_rx_dbg0 = 0x0a38,
60 .int_grp = 0x0a50,
61 },
62 .qdma = {
63 .qtx_cfg = 0x1800,
64 .qtx_sch = 0x1804,
65 .rx_ptr = 0x1900,
66 .rx_cnt_cfg = 0x1904,
67 .qcrx_ptr = 0x1908,
68 .glo_cfg = 0x1a04,
69 .rst_idx = 0x1a08,
70 .delay_irq = 0x1a0c,
71 .fc_th = 0x1a10,
72 .tx_sch_rate = 0x1a14,
73 .int_grp = 0x1a20,
74 .hred = 0x1a44,
75 .ctx_ptr = 0x1b00,
76 .dtx_ptr = 0x1b04,
77 .crx_ptr = 0x1b10,
78 .drx_ptr = 0x1b14,
79 .fq_head = 0x1b20,
80 .fq_tail = 0x1b24,
81 .fq_count = 0x1b28,
82 .fq_blen = 0x1b2c,
83 },
84 .gdm1_cnt = 0x2400,
85 .gdma_to_ppe = {
86 [0] = 0x4444,
87 },
88 .ppe_base = 0x0c00,
89 .wdma_base = {
90 [0] = 0x2800,
91 [1] = 0x2c00,
92 },
93 .pse_iq_sta = 0x0110,
94 .pse_oq_sta = 0x0118,
95 };
96
97 static const struct mtk_reg_map mt7628_reg_map = {
98 .tx_irq_mask = 0x0a28,
99 .tx_irq_status = 0x0a20,
100 .pdma = {
101 .rx_ptr = 0x0900,
102 .rx_cnt_cfg = 0x0904,
103 .pcrx_ptr = 0x0908,
104 .glo_cfg = 0x0a04,
105 .rst_idx = 0x0a08,
106 .delay_irq = 0x0a0c,
107 .irq_status = 0x0a20,
108 .irq_mask = 0x0a28,
109 .int_grp = 0x0a50,
110 },
111 };
112
113 static const struct mtk_reg_map mt7986_reg_map = {
114 .tx_irq_mask = 0x461c,
115 .tx_irq_status = 0x4618,
116 .pdma = {
117 .rx_ptr = 0x4100,
118 .rx_cnt_cfg = 0x4104,
119 .pcrx_ptr = 0x4108,
120 .glo_cfg = 0x4204,
121 .rst_idx = 0x4208,
122 .delay_irq = 0x420c,
123 .irq_status = 0x4220,
124 .irq_mask = 0x4228,
125 .adma_rx_dbg0 = 0x4238,
126 .int_grp = 0x4250,
127 },
128 .qdma = {
129 .qtx_cfg = 0x4400,
130 .qtx_sch = 0x4404,
131 .rx_ptr = 0x4500,
132 .rx_cnt_cfg = 0x4504,
133 .qcrx_ptr = 0x4508,
134 .glo_cfg = 0x4604,
135 .rst_idx = 0x4608,
136 .delay_irq = 0x460c,
137 .fc_th = 0x4610,
138 .int_grp = 0x4620,
139 .hred = 0x4644,
140 .ctx_ptr = 0x4700,
141 .dtx_ptr = 0x4704,
142 .crx_ptr = 0x4710,
143 .drx_ptr = 0x4714,
144 .fq_head = 0x4720,
145 .fq_tail = 0x4724,
146 .fq_count = 0x4728,
147 .fq_blen = 0x472c,
148 .tx_sch_rate = 0x4798,
149 },
150 .gdm1_cnt = 0x1c00,
151 .gdma_to_ppe = {
152 [0] = 0x3333,
153 [1] = 0x4444,
154 },
155 .ppe_base = 0x2000,
156 .wdma_base = {
157 [0] = 0x4800,
158 [1] = 0x4c00,
159 },
160 .pse_iq_sta = 0x0180,
161 .pse_oq_sta = 0x01a0,
162 };
163
164 static const struct mtk_reg_map mt7988_reg_map = {
165 .tx_irq_mask = 0x461c,
166 .tx_irq_status = 0x4618,
167 .pdma = {
168 .rx_ptr = 0x6900,
169 .rx_cnt_cfg = 0x6904,
170 .pcrx_ptr = 0x6908,
171 .glo_cfg = 0x6a04,
172 .rst_idx = 0x6a08,
173 .delay_irq = 0x6a0c,
174 .irq_status = 0x6a20,
175 .irq_mask = 0x6a28,
176 .adma_rx_dbg0 = 0x6a38,
177 .int_grp = 0x6a50,
178 },
179 .qdma = {
180 .qtx_cfg = 0x4400,
181 .qtx_sch = 0x4404,
182 .rx_ptr = 0x4500,
183 .rx_cnt_cfg = 0x4504,
184 .qcrx_ptr = 0x4508,
185 .glo_cfg = 0x4604,
186 .rst_idx = 0x4608,
187 .delay_irq = 0x460c,
188 .fc_th = 0x4610,
189 .int_grp = 0x4620,
190 .hred = 0x4644,
191 .ctx_ptr = 0x4700,
192 .dtx_ptr = 0x4704,
193 .crx_ptr = 0x4710,
194 .drx_ptr = 0x4714,
195 .fq_head = 0x4720,
196 .fq_tail = 0x4724,
197 .fq_count = 0x4728,
198 .fq_blen = 0x472c,
199 .tx_sch_rate = 0x4798,
200 },
201 .gdm1_cnt = 0x1c00,
202 .gdma_to_ppe = {
203 [0] = 0x3333,
204 [1] = 0x4444,
205 [2] = 0xcccc,
206 },
207 .ppe_base = 0x2000,
208 .wdma_base = {
209 [0] = 0x4800,
210 [1] = 0x4c00,
211 [2] = 0x5000,
212 },
213 .pse_iq_sta = 0x0180,
214 .pse_oq_sta = 0x01a0,
215 };
216
217 /* strings used by ethtool */
218 static const struct mtk_ethtool_stats {
219 char str[ETH_GSTRING_LEN];
220 u32 offset;
221 } mtk_ethtool_stats[] = {
222 MTK_ETHTOOL_STAT(tx_bytes),
223 MTK_ETHTOOL_STAT(tx_packets),
224 MTK_ETHTOOL_STAT(tx_skip),
225 MTK_ETHTOOL_STAT(tx_collisions),
226 MTK_ETHTOOL_STAT(rx_bytes),
227 MTK_ETHTOOL_STAT(rx_packets),
228 MTK_ETHTOOL_STAT(rx_overflow),
229 MTK_ETHTOOL_STAT(rx_fcs_errors),
230 MTK_ETHTOOL_STAT(rx_short_errors),
231 MTK_ETHTOOL_STAT(rx_long_errors),
232 MTK_ETHTOOL_STAT(rx_checksum_errors),
233 MTK_ETHTOOL_STAT(rx_flow_control_packets),
234 MTK_ETHTOOL_XDP_STAT(rx_xdp_redirect),
235 MTK_ETHTOOL_XDP_STAT(rx_xdp_pass),
236 MTK_ETHTOOL_XDP_STAT(rx_xdp_drop),
237 MTK_ETHTOOL_XDP_STAT(rx_xdp_tx),
238 MTK_ETHTOOL_XDP_STAT(rx_xdp_tx_errors),
239 MTK_ETHTOOL_XDP_STAT(tx_xdp_xmit),
240 MTK_ETHTOOL_XDP_STAT(tx_xdp_xmit_errors),
241 };
242
243 static const char * const mtk_clks_source_name[] = {
244 "ethif",
245 "sgmiitop",
246 "esw",
247 "gp0",
248 "gp1",
249 "gp2",
250 "gp3",
251 "xgp1",
252 "xgp2",
253 "xgp3",
254 "crypto",
255 "fe",
256 "trgpll",
257 "sgmii_tx250m",
258 "sgmii_rx250m",
259 "sgmii_cdr_ref",
260 "sgmii_cdr_fb",
261 "sgmii2_tx250m",
262 "sgmii2_rx250m",
263 "sgmii2_cdr_ref",
264 "sgmii2_cdr_fb",
265 "sgmii_ck",
266 "eth2pll",
267 "wocpu0",
268 "wocpu1",
269 "netsys0",
270 "netsys1",
271 "ethwarp_wocpu2",
272 "ethwarp_wocpu1",
273 "ethwarp_wocpu0",
274 "top_sgm0_sel",
275 "top_sgm1_sel",
276 "top_eth_gmii_sel",
277 "top_eth_refck_50m_sel",
278 "top_eth_sys_200m_sel",
279 "top_eth_sys_sel",
280 "top_eth_xgmii_sel",
281 "top_eth_mii_sel",
282 "top_netsys_sel",
283 "top_netsys_500m_sel",
284 "top_netsys_pao_2x_sel",
285 "top_netsys_sync_250m_sel",
286 "top_netsys_ppefb_250m_sel",
287 "top_netsys_warp_sel",
288 };
289
mtk_w32(struct mtk_eth * eth,u32 val,unsigned reg)290 void mtk_w32(struct mtk_eth *eth, u32 val, unsigned reg)
291 {
292 __raw_writel(val, eth->base + reg);
293 }
294
mtk_r32(struct mtk_eth * eth,unsigned reg)295 u32 mtk_r32(struct mtk_eth *eth, unsigned reg)
296 {
297 return __raw_readl(eth->base + reg);
298 }
299
mtk_m32(struct mtk_eth * eth,u32 mask,u32 set,unsigned int reg)300 u32 mtk_m32(struct mtk_eth *eth, u32 mask, u32 set, unsigned int reg)
301 {
302 u32 val;
303
304 val = mtk_r32(eth, reg);
305 val &= ~mask;
306 val |= set;
307 mtk_w32(eth, val, reg);
308 return reg;
309 }
310
mtk_mdio_busy_wait(struct mtk_eth * eth)311 static int mtk_mdio_busy_wait(struct mtk_eth *eth)
312 {
313 unsigned long t_start = jiffies;
314
315 while (1) {
316 if (!(mtk_r32(eth, MTK_PHY_IAC) & PHY_IAC_ACCESS))
317 return 0;
318 if (time_after(jiffies, t_start + PHY_IAC_TIMEOUT))
319 break;
320 cond_resched();
321 }
322
323 dev_err(eth->dev, "mdio: MDIO timeout\n");
324 return -ETIMEDOUT;
325 }
326
_mtk_mdio_write_c22(struct mtk_eth * eth,u32 phy_addr,u32 phy_reg,u32 write_data)327 static int _mtk_mdio_write_c22(struct mtk_eth *eth, u32 phy_addr, u32 phy_reg,
328 u32 write_data)
329 {
330 int ret;
331
332 ret = mtk_mdio_busy_wait(eth);
333 if (ret < 0)
334 return ret;
335
336 mtk_w32(eth, PHY_IAC_ACCESS |
337 PHY_IAC_START_C22 |
338 PHY_IAC_CMD_WRITE |
339 PHY_IAC_REG(phy_reg) |
340 PHY_IAC_ADDR(phy_addr) |
341 PHY_IAC_DATA(write_data),
342 MTK_PHY_IAC);
343
344 ret = mtk_mdio_busy_wait(eth);
345 if (ret < 0)
346 return ret;
347
348 return 0;
349 }
350
_mtk_mdio_write_c45(struct mtk_eth * eth,u32 phy_addr,u32 devad,u32 phy_reg,u32 write_data)351 static int _mtk_mdio_write_c45(struct mtk_eth *eth, u32 phy_addr,
352 u32 devad, u32 phy_reg, u32 write_data)
353 {
354 int ret;
355
356 ret = mtk_mdio_busy_wait(eth);
357 if (ret < 0)
358 return ret;
359
360 mtk_w32(eth, PHY_IAC_ACCESS |
361 PHY_IAC_START_C45 |
362 PHY_IAC_CMD_C45_ADDR |
363 PHY_IAC_REG(devad) |
364 PHY_IAC_ADDR(phy_addr) |
365 PHY_IAC_DATA(phy_reg),
366 MTK_PHY_IAC);
367
368 ret = mtk_mdio_busy_wait(eth);
369 if (ret < 0)
370 return ret;
371
372 mtk_w32(eth, PHY_IAC_ACCESS |
373 PHY_IAC_START_C45 |
374 PHY_IAC_CMD_WRITE |
375 PHY_IAC_REG(devad) |
376 PHY_IAC_ADDR(phy_addr) |
377 PHY_IAC_DATA(write_data),
378 MTK_PHY_IAC);
379
380 ret = mtk_mdio_busy_wait(eth);
381 if (ret < 0)
382 return ret;
383
384 return 0;
385 }
386
_mtk_mdio_read_c22(struct mtk_eth * eth,u32 phy_addr,u32 phy_reg)387 static int _mtk_mdio_read_c22(struct mtk_eth *eth, u32 phy_addr, u32 phy_reg)
388 {
389 int ret;
390
391 ret = mtk_mdio_busy_wait(eth);
392 if (ret < 0)
393 return ret;
394
395 mtk_w32(eth, PHY_IAC_ACCESS |
396 PHY_IAC_START_C22 |
397 PHY_IAC_CMD_C22_READ |
398 PHY_IAC_REG(phy_reg) |
399 PHY_IAC_ADDR(phy_addr),
400 MTK_PHY_IAC);
401
402 ret = mtk_mdio_busy_wait(eth);
403 if (ret < 0)
404 return ret;
405
406 return mtk_r32(eth, MTK_PHY_IAC) & PHY_IAC_DATA_MASK;
407 }
408
_mtk_mdio_read_c45(struct mtk_eth * eth,u32 phy_addr,u32 devad,u32 phy_reg)409 static int _mtk_mdio_read_c45(struct mtk_eth *eth, u32 phy_addr,
410 u32 devad, u32 phy_reg)
411 {
412 int ret;
413
414 ret = mtk_mdio_busy_wait(eth);
415 if (ret < 0)
416 return ret;
417
418 mtk_w32(eth, PHY_IAC_ACCESS |
419 PHY_IAC_START_C45 |
420 PHY_IAC_CMD_C45_ADDR |
421 PHY_IAC_REG(devad) |
422 PHY_IAC_ADDR(phy_addr) |
423 PHY_IAC_DATA(phy_reg),
424 MTK_PHY_IAC);
425
426 ret = mtk_mdio_busy_wait(eth);
427 if (ret < 0)
428 return ret;
429
430 mtk_w32(eth, PHY_IAC_ACCESS |
431 PHY_IAC_START_C45 |
432 PHY_IAC_CMD_C45_READ |
433 PHY_IAC_REG(devad) |
434 PHY_IAC_ADDR(phy_addr),
435 MTK_PHY_IAC);
436
437 ret = mtk_mdio_busy_wait(eth);
438 if (ret < 0)
439 return ret;
440
441 return mtk_r32(eth, MTK_PHY_IAC) & PHY_IAC_DATA_MASK;
442 }
443
mtk_mdio_write_c22(struct mii_bus * bus,int phy_addr,int phy_reg,u16 val)444 static int mtk_mdio_write_c22(struct mii_bus *bus, int phy_addr,
445 int phy_reg, u16 val)
446 {
447 struct mtk_eth *eth = bus->priv;
448
449 return _mtk_mdio_write_c22(eth, phy_addr, phy_reg, val);
450 }
451
mtk_mdio_write_c45(struct mii_bus * bus,int phy_addr,int devad,int phy_reg,u16 val)452 static int mtk_mdio_write_c45(struct mii_bus *bus, int phy_addr,
453 int devad, int phy_reg, u16 val)
454 {
455 struct mtk_eth *eth = bus->priv;
456
457 return _mtk_mdio_write_c45(eth, phy_addr, devad, phy_reg, val);
458 }
459
mtk_mdio_read_c22(struct mii_bus * bus,int phy_addr,int phy_reg)460 static int mtk_mdio_read_c22(struct mii_bus *bus, int phy_addr, int phy_reg)
461 {
462 struct mtk_eth *eth = bus->priv;
463
464 return _mtk_mdio_read_c22(eth, phy_addr, phy_reg);
465 }
466
mtk_mdio_read_c45(struct mii_bus * bus,int phy_addr,int devad,int phy_reg)467 static int mtk_mdio_read_c45(struct mii_bus *bus, int phy_addr, int devad,
468 int phy_reg)
469 {
470 struct mtk_eth *eth = bus->priv;
471
472 return _mtk_mdio_read_c45(eth, phy_addr, devad, phy_reg);
473 }
474
mt7621_gmac0_rgmii_adjust(struct mtk_eth * eth,phy_interface_t interface)475 static int mt7621_gmac0_rgmii_adjust(struct mtk_eth *eth,
476 phy_interface_t interface)
477 {
478 u32 val;
479
480 val = (interface == PHY_INTERFACE_MODE_TRGMII) ?
481 ETHSYS_TRGMII_MT7621_DDR_PLL : 0;
482
483 regmap_update_bits(eth->ethsys, ETHSYS_CLKCFG0,
484 ETHSYS_TRGMII_MT7621_MASK, val);
485
486 return 0;
487 }
488
mtk_gmac0_rgmii_adjust(struct mtk_eth * eth,phy_interface_t interface)489 static void mtk_gmac0_rgmii_adjust(struct mtk_eth *eth,
490 phy_interface_t interface)
491 {
492 int ret;
493
494 if (interface == PHY_INTERFACE_MODE_TRGMII) {
495 mtk_w32(eth, TRGMII_MODE, INTF_MODE);
496 ret = clk_set_rate(eth->clks[MTK_CLK_TRGPLL], 500000000);
497 if (ret)
498 dev_err(eth->dev, "Failed to set trgmii pll: %d\n", ret);
499 return;
500 }
501
502 dev_err(eth->dev, "Missing PLL configuration, ethernet may not work\n");
503 }
504
mtk_setup_bridge_switch(struct mtk_eth * eth)505 static void mtk_setup_bridge_switch(struct mtk_eth *eth)
506 {
507 /* Force Port1 XGMAC Link Up */
508 mtk_m32(eth, 0, MTK_XGMAC_FORCE_MODE(MTK_GMAC1_ID),
509 MTK_XGMAC_STS(MTK_GMAC1_ID));
510
511 /* Adjust GSW bridge IPG to 11 */
512 mtk_m32(eth, GSWTX_IPG_MASK | GSWRX_IPG_MASK,
513 (GSW_IPG_11 << GSWTX_IPG_SHIFT) |
514 (GSW_IPG_11 << GSWRX_IPG_SHIFT),
515 MTK_GSW_CFG);
516 }
517
mtk_mac_select_pcs(struct phylink_config * config,phy_interface_t interface)518 static struct phylink_pcs *mtk_mac_select_pcs(struct phylink_config *config,
519 phy_interface_t interface)
520 {
521 struct mtk_mac *mac = container_of(config, struct mtk_mac,
522 phylink_config);
523 struct mtk_eth *eth = mac->hw;
524 unsigned int sid;
525
526 if (interface == PHY_INTERFACE_MODE_SGMII ||
527 phy_interface_mode_is_8023z(interface)) {
528 sid = (MTK_HAS_CAPS(eth->soc->caps, MTK_SHARED_SGMII)) ?
529 0 : mac->id;
530
531 return eth->sgmii_pcs[sid];
532 }
533
534 return NULL;
535 }
536
mtk_mac_prepare(struct phylink_config * config,unsigned int mode,phy_interface_t iface)537 static int mtk_mac_prepare(struct phylink_config *config, unsigned int mode,
538 phy_interface_t iface)
539 {
540 struct mtk_mac *mac = container_of(config, struct mtk_mac,
541 phylink_config);
542 struct mtk_eth *eth = mac->hw;
543
544 if (mtk_interface_mode_is_xgmii(eth, iface) &&
545 mac->id != MTK_GMAC1_ID) {
546 mtk_m32(mac->hw, XMAC_MCR_TRX_DISABLE,
547 XMAC_MCR_TRX_DISABLE, MTK_XMAC_MCR(mac->id));
548
549 mtk_m32(mac->hw, MTK_XGMAC_FORCE_MODE(mac->id) |
550 MTK_XGMAC_FORCE_LINK(mac->id),
551 MTK_XGMAC_FORCE_MODE(mac->id), MTK_XGMAC_STS(mac->id));
552 }
553
554 return 0;
555 }
556
mtk_mac_config(struct phylink_config * config,unsigned int mode,const struct phylink_link_state * state)557 static void mtk_mac_config(struct phylink_config *config, unsigned int mode,
558 const struct phylink_link_state *state)
559 {
560 struct mtk_mac *mac = container_of(config, struct mtk_mac,
561 phylink_config);
562 struct mtk_eth *eth = mac->hw;
563 int val, ge_mode, err = 0;
564 u32 i;
565
566 if (mac->interface != state->interface) {
567 /* Setup soc pin functions */
568 switch (state->interface) {
569 case PHY_INTERFACE_MODE_TRGMII:
570 case PHY_INTERFACE_MODE_RGMII_TXID:
571 case PHY_INTERFACE_MODE_RGMII_RXID:
572 case PHY_INTERFACE_MODE_RGMII_ID:
573 case PHY_INTERFACE_MODE_RGMII:
574 case PHY_INTERFACE_MODE_MII:
575 if (MTK_HAS_CAPS(eth->soc->caps, MTK_RGMII)) {
576 err = mtk_gmac_rgmii_path_setup(eth, mac->id);
577 if (err)
578 goto init_err;
579 }
580 break;
581 case PHY_INTERFACE_MODE_1000BASEX:
582 case PHY_INTERFACE_MODE_2500BASEX:
583 case PHY_INTERFACE_MODE_SGMII:
584 err = mtk_gmac_sgmii_path_setup(eth, mac->id);
585 if (err)
586 goto init_err;
587 break;
588 case PHY_INTERFACE_MODE_GMII:
589 if (MTK_HAS_CAPS(eth->soc->caps, MTK_GEPHY)) {
590 err = mtk_gmac_gephy_path_setup(eth, mac->id);
591 if (err)
592 goto init_err;
593 }
594 break;
595 case PHY_INTERFACE_MODE_INTERNAL:
596 if (mac->id == MTK_GMAC2_ID &&
597 MTK_HAS_CAPS(eth->soc->caps, MTK_2P5GPHY)) {
598 err = mtk_gmac_2p5gphy_path_setup(eth, mac->id);
599 if (err)
600 goto init_err;
601 }
602 break;
603 default:
604 goto err_phy;
605 }
606
607 /* Setup clock for 1st gmac */
608 if (!mac->id && state->interface != PHY_INTERFACE_MODE_SGMII &&
609 !phy_interface_mode_is_8023z(state->interface) &&
610 MTK_HAS_CAPS(mac->hw->soc->caps, MTK_GMAC1_TRGMII)) {
611 if (MTK_HAS_CAPS(mac->hw->soc->caps,
612 MTK_TRGMII_MT7621_CLK)) {
613 if (mt7621_gmac0_rgmii_adjust(mac->hw,
614 state->interface))
615 goto err_phy;
616 } else {
617 mtk_gmac0_rgmii_adjust(mac->hw,
618 state->interface);
619
620 /* mt7623_pad_clk_setup */
621 for (i = 0 ; i < NUM_TRGMII_CTRL; i++)
622 mtk_w32(mac->hw,
623 TD_DM_DRVP(8) | TD_DM_DRVN(8),
624 TRGMII_TD_ODT(i));
625
626 /* Assert/release MT7623 RXC reset */
627 mtk_m32(mac->hw, 0, RXC_RST | RXC_DQSISEL,
628 TRGMII_RCK_CTRL);
629 mtk_m32(mac->hw, RXC_RST, 0, TRGMII_RCK_CTRL);
630 }
631 }
632
633 switch (state->interface) {
634 case PHY_INTERFACE_MODE_MII:
635 case PHY_INTERFACE_MODE_GMII:
636 ge_mode = 1;
637 break;
638 default:
639 ge_mode = 0;
640 break;
641 }
642
643 /* put the gmac into the right mode */
644 regmap_read(eth->ethsys, ETHSYS_SYSCFG0, &val);
645 val &= ~SYSCFG0_GE_MODE(SYSCFG0_GE_MASK, mac->id);
646 val |= SYSCFG0_GE_MODE(ge_mode, mac->id);
647 regmap_write(eth->ethsys, ETHSYS_SYSCFG0, val);
648
649 mac->interface = state->interface;
650 }
651
652 /* SGMII */
653 if (state->interface == PHY_INTERFACE_MODE_SGMII ||
654 phy_interface_mode_is_8023z(state->interface)) {
655 /* The path GMAC to SGMII will be enabled once the SGMIISYS is
656 * being setup done.
657 */
658 regmap_read(eth->ethsys, ETHSYS_SYSCFG0, &val);
659
660 regmap_update_bits(eth->ethsys, ETHSYS_SYSCFG0,
661 SYSCFG0_SGMII_MASK,
662 ~(u32)SYSCFG0_SGMII_MASK);
663
664 /* Save the syscfg0 value for mac_finish */
665 mac->syscfg0 = val;
666 } else if (phylink_autoneg_inband(mode)) {
667 dev_err(eth->dev,
668 "In-band mode not supported in non SGMII mode!\n");
669 return;
670 }
671
672 /* Setup gmac */
673 if (mtk_interface_mode_is_xgmii(eth, state->interface)) {
674 mtk_w32(mac->hw, MTK_GDMA_XGDM_SEL, MTK_GDMA_EG_CTRL(mac->id));
675 mtk_w32(mac->hw, MAC_MCR_FORCE_LINK_DOWN, MTK_MAC_MCR(mac->id));
676
677 if (mac->id == MTK_GMAC1_ID)
678 mtk_setup_bridge_switch(eth);
679 }
680
681 return;
682
683 err_phy:
684 dev_err(eth->dev, "%s: GMAC%d mode %s not supported!\n", __func__,
685 mac->id, phy_modes(state->interface));
686 return;
687
688 init_err:
689 dev_err(eth->dev, "%s: GMAC%d mode %s err: %d!\n", __func__,
690 mac->id, phy_modes(state->interface), err);
691 }
692
mtk_mac_finish(struct phylink_config * config,unsigned int mode,phy_interface_t interface)693 static int mtk_mac_finish(struct phylink_config *config, unsigned int mode,
694 phy_interface_t interface)
695 {
696 struct mtk_mac *mac = container_of(config, struct mtk_mac,
697 phylink_config);
698 struct mtk_eth *eth = mac->hw;
699 u32 mcr_cur, mcr_new;
700
701 /* Enable SGMII */
702 if (interface == PHY_INTERFACE_MODE_SGMII ||
703 phy_interface_mode_is_8023z(interface))
704 regmap_update_bits(eth->ethsys, ETHSYS_SYSCFG0,
705 SYSCFG0_SGMII_MASK, mac->syscfg0);
706
707 /* Setup gmac */
708 mcr_cur = mtk_r32(mac->hw, MTK_MAC_MCR(mac->id));
709 mcr_new = mcr_cur;
710 mcr_new |= MAC_MCR_IPG_CFG | MAC_MCR_FORCE_MODE |
711 MAC_MCR_BACKOFF_EN | MAC_MCR_BACKPR_EN | MAC_MCR_RX_FIFO_CLR_DIS;
712
713 /* Only update control register when needed! */
714 if (mcr_new != mcr_cur)
715 mtk_w32(mac->hw, mcr_new, MTK_MAC_MCR(mac->id));
716
717 return 0;
718 }
719
mtk_mac_link_down(struct phylink_config * config,unsigned int mode,phy_interface_t interface)720 static void mtk_mac_link_down(struct phylink_config *config, unsigned int mode,
721 phy_interface_t interface)
722 {
723 struct mtk_mac *mac = container_of(config, struct mtk_mac,
724 phylink_config);
725
726 if (!mtk_interface_mode_is_xgmii(mac->hw, interface)) {
727 /* GMAC modes */
728 mtk_m32(mac->hw,
729 MAC_MCR_TX_EN | MAC_MCR_RX_EN | MAC_MCR_FORCE_LINK, 0,
730 MTK_MAC_MCR(mac->id));
731 } else if (mac->id != MTK_GMAC1_ID) {
732 /* XGMAC except for built-in switch */
733 mtk_m32(mac->hw, XMAC_MCR_TRX_DISABLE, XMAC_MCR_TRX_DISABLE,
734 MTK_XMAC_MCR(mac->id));
735 mtk_m32(mac->hw, MTK_XGMAC_FORCE_LINK(mac->id), 0,
736 MTK_XGMAC_STS(mac->id));
737 }
738 }
739
mtk_set_queue_speed(struct mtk_eth * eth,unsigned int idx,int speed)740 static void mtk_set_queue_speed(struct mtk_eth *eth, unsigned int idx,
741 int speed)
742 {
743 const struct mtk_soc_data *soc = eth->soc;
744 u32 ofs, val;
745
746 if (!MTK_HAS_CAPS(soc->caps, MTK_QDMA))
747 return;
748
749 val = MTK_QTX_SCH_MIN_RATE_EN |
750 /* minimum: 10 Mbps */
751 FIELD_PREP(MTK_QTX_SCH_MIN_RATE_MAN, 1) |
752 FIELD_PREP(MTK_QTX_SCH_MIN_RATE_EXP, 4) |
753 MTK_QTX_SCH_LEAKY_BUCKET_SIZE;
754 if (mtk_is_netsys_v1(eth))
755 val |= MTK_QTX_SCH_LEAKY_BUCKET_EN;
756
757 if (IS_ENABLED(CONFIG_SOC_MT7621)) {
758 switch (speed) {
759 case SPEED_10:
760 val |= MTK_QTX_SCH_MAX_RATE_EN |
761 FIELD_PREP(MTK_QTX_SCH_MAX_RATE_MAN, 103) |
762 FIELD_PREP(MTK_QTX_SCH_MAX_RATE_EXP, 2) |
763 FIELD_PREP(MTK_QTX_SCH_MAX_RATE_WEIGHT, 1);
764 break;
765 case SPEED_100:
766 val |= MTK_QTX_SCH_MAX_RATE_EN |
767 FIELD_PREP(MTK_QTX_SCH_MAX_RATE_MAN, 103) |
768 FIELD_PREP(MTK_QTX_SCH_MAX_RATE_EXP, 3) |
769 FIELD_PREP(MTK_QTX_SCH_MAX_RATE_WEIGHT, 1);
770 break;
771 case SPEED_1000:
772 val |= MTK_QTX_SCH_MAX_RATE_EN |
773 FIELD_PREP(MTK_QTX_SCH_MAX_RATE_MAN, 105) |
774 FIELD_PREP(MTK_QTX_SCH_MAX_RATE_EXP, 4) |
775 FIELD_PREP(MTK_QTX_SCH_MAX_RATE_WEIGHT, 10);
776 break;
777 default:
778 break;
779 }
780 } else {
781 switch (speed) {
782 case SPEED_10:
783 val |= MTK_QTX_SCH_MAX_RATE_EN |
784 FIELD_PREP(MTK_QTX_SCH_MAX_RATE_MAN, 1) |
785 FIELD_PREP(MTK_QTX_SCH_MAX_RATE_EXP, 4) |
786 FIELD_PREP(MTK_QTX_SCH_MAX_RATE_WEIGHT, 1);
787 break;
788 case SPEED_100:
789 val |= MTK_QTX_SCH_MAX_RATE_EN |
790 FIELD_PREP(MTK_QTX_SCH_MAX_RATE_MAN, 1) |
791 FIELD_PREP(MTK_QTX_SCH_MAX_RATE_EXP, 5) |
792 FIELD_PREP(MTK_QTX_SCH_MAX_RATE_WEIGHT, 1);
793 break;
794 case SPEED_1000:
795 val |= MTK_QTX_SCH_MAX_RATE_EN |
796 FIELD_PREP(MTK_QTX_SCH_MAX_RATE_MAN, 1) |
797 FIELD_PREP(MTK_QTX_SCH_MAX_RATE_EXP, 6) |
798 FIELD_PREP(MTK_QTX_SCH_MAX_RATE_WEIGHT, 10);
799 break;
800 default:
801 break;
802 }
803 }
804
805 ofs = MTK_QTX_OFFSET * idx;
806 mtk_w32(eth, val, soc->reg_map->qdma.qtx_sch + ofs);
807 }
808
mtk_gdm_mac_link_up(struct mtk_mac * mac,struct phy_device * phy,unsigned int mode,phy_interface_t interface,int speed,int duplex,bool tx_pause,bool rx_pause)809 static void mtk_gdm_mac_link_up(struct mtk_mac *mac,
810 struct phy_device *phy,
811 unsigned int mode, phy_interface_t interface,
812 int speed, int duplex, bool tx_pause,
813 bool rx_pause)
814 {
815 u32 mcr;
816
817 mcr = mtk_r32(mac->hw, MTK_MAC_MCR(mac->id));
818 mcr &= ~(MAC_MCR_SPEED_100 | MAC_MCR_SPEED_1000 |
819 MAC_MCR_FORCE_DPX | MAC_MCR_FORCE_TX_FC |
820 MAC_MCR_FORCE_RX_FC);
821
822 /* Configure speed */
823 mac->speed = speed;
824 switch (speed) {
825 case SPEED_2500:
826 case SPEED_1000:
827 mcr |= MAC_MCR_SPEED_1000;
828 break;
829 case SPEED_100:
830 mcr |= MAC_MCR_SPEED_100;
831 break;
832 }
833
834 /* Configure duplex */
835 if (duplex == DUPLEX_FULL)
836 mcr |= MAC_MCR_FORCE_DPX;
837
838 /* Configure pause modes - phylink will avoid these for half duplex */
839 if (tx_pause)
840 mcr |= MAC_MCR_FORCE_TX_FC;
841 if (rx_pause)
842 mcr |= MAC_MCR_FORCE_RX_FC;
843
844 mcr |= MAC_MCR_TX_EN | MAC_MCR_RX_EN | MAC_MCR_FORCE_LINK;
845 mtk_w32(mac->hw, mcr, MTK_MAC_MCR(mac->id));
846 }
847
mtk_xgdm_mac_link_up(struct mtk_mac * mac,struct phy_device * phy,unsigned int mode,phy_interface_t interface,int speed,int duplex,bool tx_pause,bool rx_pause)848 static void mtk_xgdm_mac_link_up(struct mtk_mac *mac,
849 struct phy_device *phy,
850 unsigned int mode, phy_interface_t interface,
851 int speed, int duplex, bool tx_pause,
852 bool rx_pause)
853 {
854 u32 mcr;
855
856 if (mac->id == MTK_GMAC1_ID)
857 return;
858
859 /* Eliminate the interference(before link-up) caused by PHY noise */
860 mtk_m32(mac->hw, XMAC_LOGIC_RST, 0, MTK_XMAC_LOGIC_RST(mac->id));
861 mdelay(20);
862 mtk_m32(mac->hw, XMAC_GLB_CNTCLR, XMAC_GLB_CNTCLR,
863 MTK_XMAC_CNT_CTRL(mac->id));
864
865 mtk_m32(mac->hw, MTK_XGMAC_FORCE_LINK(mac->id),
866 MTK_XGMAC_FORCE_LINK(mac->id), MTK_XGMAC_STS(mac->id));
867
868 mcr = mtk_r32(mac->hw, MTK_XMAC_MCR(mac->id));
869 mcr &= ~(XMAC_MCR_FORCE_TX_FC | XMAC_MCR_FORCE_RX_FC |
870 XMAC_MCR_TRX_DISABLE);
871 /* Configure pause modes -
872 * phylink will avoid these for half duplex
873 */
874 if (tx_pause)
875 mcr |= XMAC_MCR_FORCE_TX_FC;
876 if (rx_pause)
877 mcr |= XMAC_MCR_FORCE_RX_FC;
878
879 mtk_w32(mac->hw, mcr, MTK_XMAC_MCR(mac->id));
880 }
881
mtk_mac_link_up(struct phylink_config * config,struct phy_device * phy,unsigned int mode,phy_interface_t interface,int speed,int duplex,bool tx_pause,bool rx_pause)882 static void mtk_mac_link_up(struct phylink_config *config,
883 struct phy_device *phy,
884 unsigned int mode, phy_interface_t interface,
885 int speed, int duplex, bool tx_pause, bool rx_pause)
886 {
887 struct mtk_mac *mac = container_of(config, struct mtk_mac,
888 phylink_config);
889
890 if (mtk_interface_mode_is_xgmii(mac->hw, interface))
891 mtk_xgdm_mac_link_up(mac, phy, mode, interface, speed, duplex,
892 tx_pause, rx_pause);
893 else
894 mtk_gdm_mac_link_up(mac, phy, mode, interface, speed, duplex,
895 tx_pause, rx_pause);
896 }
897
mtk_mac_disable_tx_lpi(struct phylink_config * config)898 static void mtk_mac_disable_tx_lpi(struct phylink_config *config)
899 {
900 struct mtk_mac *mac = container_of(config, struct mtk_mac,
901 phylink_config);
902 struct mtk_eth *eth = mac->hw;
903
904 mtk_m32(eth, MAC_MCR_EEE100M | MAC_MCR_EEE1G, 0, MTK_MAC_MCR(mac->id));
905 }
906
mtk_mac_enable_tx_lpi(struct phylink_config * config,u32 timer,bool tx_clk_stop)907 static int mtk_mac_enable_tx_lpi(struct phylink_config *config, u32 timer,
908 bool tx_clk_stop)
909 {
910 struct mtk_mac *mac = container_of(config, struct mtk_mac,
911 phylink_config);
912 struct mtk_eth *eth = mac->hw;
913 u32 val;
914
915 if (mtk_interface_mode_is_xgmii(eth, mac->interface))
916 return -EOPNOTSUPP;
917
918 /* Tx idle timer in ms */
919 timer = DIV_ROUND_UP(timer, 1000);
920
921 /* If the timer is zero, then set LPI_MODE, which allows the
922 * system to enter LPI mode immediately rather than waiting for
923 * the LPI threshold.
924 */
925 if (!timer)
926 val = MAC_EEE_LPI_MODE;
927 else if (FIELD_FIT(MAC_EEE_LPI_TXIDLE_THD, timer))
928 val = FIELD_PREP(MAC_EEE_LPI_TXIDLE_THD, timer);
929 else
930 val = MAC_EEE_LPI_TXIDLE_THD;
931
932 if (tx_clk_stop)
933 val |= MAC_EEE_CKG_TXIDLE;
934
935 /* PHY Wake-up time, this field does not have a reset value, so use the
936 * reset value from MT7531 (36us for 100M and 17us for 1000M).
937 */
938 val |= FIELD_PREP(MAC_EEE_WAKEUP_TIME_1000, 17) |
939 FIELD_PREP(MAC_EEE_WAKEUP_TIME_100, 36);
940
941 mtk_w32(eth, val, MTK_MAC_EEECR(mac->id));
942 mtk_m32(eth, 0, MAC_MCR_EEE100M | MAC_MCR_EEE1G, MTK_MAC_MCR(mac->id));
943
944 return 0;
945 }
946
947 static const struct phylink_mac_ops mtk_phylink_ops = {
948 .mac_prepare = mtk_mac_prepare,
949 .mac_select_pcs = mtk_mac_select_pcs,
950 .mac_config = mtk_mac_config,
951 .mac_finish = mtk_mac_finish,
952 .mac_link_down = mtk_mac_link_down,
953 .mac_link_up = mtk_mac_link_up,
954 .mac_disable_tx_lpi = mtk_mac_disable_tx_lpi,
955 .mac_enable_tx_lpi = mtk_mac_enable_tx_lpi,
956 };
957
rt5350_mac_config(struct phylink_config * config,unsigned int mode,const struct phylink_link_state * state)958 static void rt5350_mac_config(struct phylink_config *config, unsigned int mode,
959 const struct phylink_link_state *state)
960 {
961 }
962
rt5350_mac_link_down(struct phylink_config * config,unsigned int mode,phy_interface_t interface)963 static void rt5350_mac_link_down(struct phylink_config *config, unsigned int mode,
964 phy_interface_t interface)
965 {
966 }
967
rt5350_mac_link_up(struct phylink_config * config,struct phy_device * phy,unsigned int mode,phy_interface_t interface,int speed,int duplex,bool tx_pause,bool rx_pause)968 static void rt5350_mac_link_up(struct phylink_config *config,
969 struct phy_device *phy,
970 unsigned int mode, phy_interface_t interface,
971 int speed, int duplex, bool tx_pause, bool rx_pause)
972 {
973 }
974
975 /* MT76x8 (rt5350-eth) does not expose any MAC control registers */
976 static const struct phylink_mac_ops rt5350_phylink_ops = {
977 .mac_config = rt5350_mac_config,
978 .mac_link_down = rt5350_mac_link_down,
979 .mac_link_up = rt5350_mac_link_up,
980 };
981
mtk_mdio_config(struct mtk_eth * eth)982 static void mtk_mdio_config(struct mtk_eth *eth)
983 {
984 u32 val;
985
986 /* Configure MDC Divider */
987 val = FIELD_PREP(PPSC_MDC_CFG, eth->mdc_divider);
988
989 /* Configure MDC Turbo Mode */
990 if (mtk_is_netsys_v3_or_greater(eth))
991 mtk_m32(eth, 0, MISC_MDC_TURBO, MTK_MAC_MISC_V3);
992 else
993 val |= PPSC_MDC_TURBO;
994
995 mtk_m32(eth, PPSC_MDC_CFG, val, MTK_PPSC);
996 }
997
mtk_mdio_init(struct mtk_eth * eth)998 static int mtk_mdio_init(struct mtk_eth *eth)
999 {
1000 unsigned int max_clk = 2500000;
1001 struct device_node *mii_np;
1002 int ret;
1003 u32 val;
1004
1005 mii_np = of_get_available_child_by_name(eth->dev->of_node, "mdio-bus");
1006 if (!mii_np) {
1007 dev_err(eth->dev, "no %s child node found", "mdio-bus");
1008 return -ENODEV;
1009 }
1010
1011 eth->mii_bus = devm_mdiobus_alloc(eth->dev);
1012 if (!eth->mii_bus) {
1013 ret = -ENOMEM;
1014 goto err_put_node;
1015 }
1016
1017 eth->mii_bus->name = "mdio";
1018 eth->mii_bus->read = mtk_mdio_read_c22;
1019 eth->mii_bus->write = mtk_mdio_write_c22;
1020 eth->mii_bus->read_c45 = mtk_mdio_read_c45;
1021 eth->mii_bus->write_c45 = mtk_mdio_write_c45;
1022 eth->mii_bus->priv = eth;
1023 eth->mii_bus->parent = eth->dev;
1024
1025 snprintf(eth->mii_bus->id, MII_BUS_ID_SIZE, "%pOFn", mii_np);
1026
1027 if (!of_property_read_u32(mii_np, "clock-frequency", &val)) {
1028 if (val > MDC_MAX_FREQ || val < MDC_MAX_FREQ / MDC_MAX_DIVIDER) {
1029 dev_err(eth->dev, "MDIO clock frequency out of range");
1030 ret = -EINVAL;
1031 goto err_put_node;
1032 }
1033 max_clk = val;
1034 }
1035 eth->mdc_divider = min_t(unsigned int, DIV_ROUND_UP(MDC_MAX_FREQ, max_clk), 63);
1036 mtk_mdio_config(eth);
1037 dev_dbg(eth->dev, "MDC is running on %d Hz\n", MDC_MAX_FREQ / eth->mdc_divider);
1038 ret = of_mdiobus_register(eth->mii_bus, mii_np);
1039
1040 err_put_node:
1041 of_node_put(mii_np);
1042 return ret;
1043 }
1044
mtk_mdio_cleanup(struct mtk_eth * eth)1045 static void mtk_mdio_cleanup(struct mtk_eth *eth)
1046 {
1047 if (!eth->mii_bus)
1048 return;
1049
1050 mdiobus_unregister(eth->mii_bus);
1051 }
1052
mtk_tx_irq_disable(struct mtk_eth * eth,u32 mask)1053 static inline void mtk_tx_irq_disable(struct mtk_eth *eth, u32 mask)
1054 {
1055 unsigned long flags;
1056 u32 val;
1057
1058 spin_lock_irqsave(ð->tx_irq_lock, flags);
1059 val = mtk_r32(eth, eth->soc->reg_map->tx_irq_mask);
1060 mtk_w32(eth, val & ~mask, eth->soc->reg_map->tx_irq_mask);
1061 spin_unlock_irqrestore(ð->tx_irq_lock, flags);
1062 }
1063
mtk_tx_irq_enable(struct mtk_eth * eth,u32 mask)1064 static inline void mtk_tx_irq_enable(struct mtk_eth *eth, u32 mask)
1065 {
1066 unsigned long flags;
1067 u32 val;
1068
1069 spin_lock_irqsave(ð->tx_irq_lock, flags);
1070 val = mtk_r32(eth, eth->soc->reg_map->tx_irq_mask);
1071 mtk_w32(eth, val | mask, eth->soc->reg_map->tx_irq_mask);
1072 spin_unlock_irqrestore(ð->tx_irq_lock, flags);
1073 }
1074
mtk_rx_irq_disable(struct mtk_eth * eth,u32 mask)1075 static inline void mtk_rx_irq_disable(struct mtk_eth *eth, u32 mask)
1076 {
1077 unsigned long flags;
1078 u32 val;
1079
1080 spin_lock_irqsave(ð->rx_irq_lock, flags);
1081 val = mtk_r32(eth, eth->soc->reg_map->pdma.irq_mask);
1082 mtk_w32(eth, val & ~mask, eth->soc->reg_map->pdma.irq_mask);
1083 spin_unlock_irqrestore(ð->rx_irq_lock, flags);
1084 }
1085
mtk_rx_irq_enable(struct mtk_eth * eth,u32 mask)1086 static inline void mtk_rx_irq_enable(struct mtk_eth *eth, u32 mask)
1087 {
1088 unsigned long flags;
1089 u32 val;
1090
1091 spin_lock_irqsave(ð->rx_irq_lock, flags);
1092 val = mtk_r32(eth, eth->soc->reg_map->pdma.irq_mask);
1093 mtk_w32(eth, val | mask, eth->soc->reg_map->pdma.irq_mask);
1094 spin_unlock_irqrestore(ð->rx_irq_lock, flags);
1095 }
1096
mtk_set_mac_address(struct net_device * dev,void * p)1097 static int mtk_set_mac_address(struct net_device *dev, void *p)
1098 {
1099 int ret = eth_mac_addr(dev, p);
1100 struct mtk_mac *mac = netdev_priv(dev);
1101 struct mtk_eth *eth = mac->hw;
1102 const char *macaddr = dev->dev_addr;
1103
1104 if (ret)
1105 return ret;
1106
1107 if (unlikely(test_bit(MTK_RESETTING, &mac->hw->state)))
1108 return -EBUSY;
1109
1110 spin_lock_bh(&mac->hw->page_lock);
1111 if (MTK_HAS_CAPS(eth->soc->caps, MTK_SOC_MT7628)) {
1112 mtk_w32(mac->hw, (macaddr[0] << 8) | macaddr[1],
1113 MT7628_SDM_MAC_ADRH);
1114 mtk_w32(mac->hw, (macaddr[2] << 24) | (macaddr[3] << 16) |
1115 (macaddr[4] << 8) | macaddr[5],
1116 MT7628_SDM_MAC_ADRL);
1117 } else {
1118 mtk_w32(mac->hw, (macaddr[0] << 8) | macaddr[1],
1119 MTK_GDMA_MAC_ADRH(mac->id));
1120 mtk_w32(mac->hw, (macaddr[2] << 24) | (macaddr[3] << 16) |
1121 (macaddr[4] << 8) | macaddr[5],
1122 MTK_GDMA_MAC_ADRL(mac->id));
1123 }
1124 spin_unlock_bh(&mac->hw->page_lock);
1125
1126 return 0;
1127 }
1128
mtk_stats_update_mac(struct mtk_mac * mac)1129 void mtk_stats_update_mac(struct mtk_mac *mac)
1130 {
1131 struct mtk_hw_stats *hw_stats = mac->hw_stats;
1132 struct mtk_eth *eth = mac->hw;
1133
1134 u64_stats_update_begin(&hw_stats->syncp);
1135
1136 if (MTK_HAS_CAPS(eth->soc->caps, MTK_SOC_MT7628)) {
1137 hw_stats->tx_packets += mtk_r32(mac->hw, MT7628_SDM_TPCNT);
1138 hw_stats->tx_bytes += mtk_r32(mac->hw, MT7628_SDM_TBCNT);
1139 hw_stats->rx_packets += mtk_r32(mac->hw, MT7628_SDM_RPCNT);
1140 hw_stats->rx_bytes += mtk_r32(mac->hw, MT7628_SDM_RBCNT);
1141 hw_stats->rx_checksum_errors +=
1142 mtk_r32(mac->hw, MT7628_SDM_CS_ERR);
1143 } else {
1144 const struct mtk_reg_map *reg_map = eth->soc->reg_map;
1145 unsigned int offs = hw_stats->reg_offset;
1146 u64 stats;
1147
1148 hw_stats->rx_bytes += mtk_r32(mac->hw, reg_map->gdm1_cnt + offs);
1149 stats = mtk_r32(mac->hw, reg_map->gdm1_cnt + 0x4 + offs);
1150 if (stats)
1151 hw_stats->rx_bytes += (stats << 32);
1152 hw_stats->rx_packets +=
1153 mtk_r32(mac->hw, reg_map->gdm1_cnt + 0x8 + offs);
1154 hw_stats->rx_overflow +=
1155 mtk_r32(mac->hw, reg_map->gdm1_cnt + 0x10 + offs);
1156 hw_stats->rx_fcs_errors +=
1157 mtk_r32(mac->hw, reg_map->gdm1_cnt + 0x14 + offs);
1158 hw_stats->rx_short_errors +=
1159 mtk_r32(mac->hw, reg_map->gdm1_cnt + 0x18 + offs);
1160 hw_stats->rx_long_errors +=
1161 mtk_r32(mac->hw, reg_map->gdm1_cnt + 0x1c + offs);
1162 hw_stats->rx_checksum_errors +=
1163 mtk_r32(mac->hw, reg_map->gdm1_cnt + 0x20 + offs);
1164 hw_stats->rx_flow_control_packets +=
1165 mtk_r32(mac->hw, reg_map->gdm1_cnt + 0x24 + offs);
1166
1167 if (mtk_is_netsys_v3_or_greater(eth)) {
1168 hw_stats->tx_skip +=
1169 mtk_r32(mac->hw, reg_map->gdm1_cnt + 0x50 + offs);
1170 hw_stats->tx_collisions +=
1171 mtk_r32(mac->hw, reg_map->gdm1_cnt + 0x54 + offs);
1172 hw_stats->tx_bytes +=
1173 mtk_r32(mac->hw, reg_map->gdm1_cnt + 0x40 + offs);
1174 stats = mtk_r32(mac->hw, reg_map->gdm1_cnt + 0x44 + offs);
1175 if (stats)
1176 hw_stats->tx_bytes += (stats << 32);
1177 hw_stats->tx_packets +=
1178 mtk_r32(mac->hw, reg_map->gdm1_cnt + 0x48 + offs);
1179 } else {
1180 hw_stats->tx_skip +=
1181 mtk_r32(mac->hw, reg_map->gdm1_cnt + 0x28 + offs);
1182 hw_stats->tx_collisions +=
1183 mtk_r32(mac->hw, reg_map->gdm1_cnt + 0x2c + offs);
1184 hw_stats->tx_bytes +=
1185 mtk_r32(mac->hw, reg_map->gdm1_cnt + 0x30 + offs);
1186 stats = mtk_r32(mac->hw, reg_map->gdm1_cnt + 0x34 + offs);
1187 if (stats)
1188 hw_stats->tx_bytes += (stats << 32);
1189 hw_stats->tx_packets +=
1190 mtk_r32(mac->hw, reg_map->gdm1_cnt + 0x38 + offs);
1191 }
1192 }
1193
1194 u64_stats_update_end(&hw_stats->syncp);
1195 }
1196
mtk_stats_update(struct mtk_eth * eth)1197 static void mtk_stats_update(struct mtk_eth *eth)
1198 {
1199 int i;
1200
1201 for (i = 0; i < MTK_MAX_DEVS; i++) {
1202 if (!eth->mac[i] || !eth->mac[i]->hw_stats)
1203 continue;
1204 if (spin_trylock(ð->mac[i]->hw_stats->stats_lock)) {
1205 mtk_stats_update_mac(eth->mac[i]);
1206 spin_unlock(ð->mac[i]->hw_stats->stats_lock);
1207 }
1208 }
1209 }
1210
mtk_get_stats64(struct net_device * dev,struct rtnl_link_stats64 * storage)1211 static void mtk_get_stats64(struct net_device *dev,
1212 struct rtnl_link_stats64 *storage)
1213 {
1214 struct mtk_mac *mac = netdev_priv(dev);
1215 struct mtk_hw_stats *hw_stats = mac->hw_stats;
1216 unsigned int start;
1217
1218 if (netif_running(dev) && netif_device_present(dev)) {
1219 if (spin_trylock_bh(&hw_stats->stats_lock)) {
1220 mtk_stats_update_mac(mac);
1221 spin_unlock_bh(&hw_stats->stats_lock);
1222 }
1223 }
1224
1225 do {
1226 start = u64_stats_fetch_begin(&hw_stats->syncp);
1227 storage->rx_packets = hw_stats->rx_packets;
1228 storage->tx_packets = hw_stats->tx_packets;
1229 storage->rx_bytes = hw_stats->rx_bytes;
1230 storage->tx_bytes = hw_stats->tx_bytes;
1231 storage->collisions = hw_stats->tx_collisions;
1232 storage->rx_length_errors = hw_stats->rx_short_errors +
1233 hw_stats->rx_long_errors;
1234 storage->rx_over_errors = hw_stats->rx_overflow;
1235 storage->rx_crc_errors = hw_stats->rx_fcs_errors;
1236 storage->rx_errors = hw_stats->rx_checksum_errors;
1237 storage->tx_aborted_errors = hw_stats->tx_skip;
1238 } while (u64_stats_fetch_retry(&hw_stats->syncp, start));
1239
1240 storage->tx_errors = dev->stats.tx_errors;
1241 storage->rx_dropped = dev->stats.rx_dropped;
1242 storage->tx_dropped = dev->stats.tx_dropped;
1243 }
1244
mtk_max_frag_size(int mtu)1245 static inline int mtk_max_frag_size(int mtu)
1246 {
1247 /* make sure buf_size will be at least MTK_MAX_RX_LENGTH */
1248 if (mtu + MTK_RX_ETH_HLEN < MTK_MAX_RX_LENGTH_2K)
1249 mtu = MTK_MAX_RX_LENGTH_2K - MTK_RX_ETH_HLEN;
1250
1251 return SKB_DATA_ALIGN(MTK_RX_HLEN + mtu) +
1252 SKB_DATA_ALIGN(sizeof(struct skb_shared_info));
1253 }
1254
mtk_max_buf_size(int frag_size)1255 static inline int mtk_max_buf_size(int frag_size)
1256 {
1257 int buf_size = frag_size - NET_SKB_PAD - NET_IP_ALIGN -
1258 SKB_DATA_ALIGN(sizeof(struct skb_shared_info));
1259
1260 WARN_ON(buf_size < MTK_MAX_RX_LENGTH_2K);
1261
1262 return buf_size;
1263 }
1264
mtk_rx_get_desc(struct mtk_eth * eth,struct mtk_rx_dma_v2 * rxd,struct mtk_rx_dma_v2 * dma_rxd)1265 static bool mtk_rx_get_desc(struct mtk_eth *eth, struct mtk_rx_dma_v2 *rxd,
1266 struct mtk_rx_dma_v2 *dma_rxd)
1267 {
1268 rxd->rxd2 = READ_ONCE(dma_rxd->rxd2);
1269 if (!(rxd->rxd2 & RX_DMA_DONE))
1270 return false;
1271
1272 rxd->rxd1 = READ_ONCE(dma_rxd->rxd1);
1273 rxd->rxd3 = READ_ONCE(dma_rxd->rxd3);
1274 rxd->rxd4 = READ_ONCE(dma_rxd->rxd4);
1275 if (mtk_is_netsys_v3_or_greater(eth)) {
1276 rxd->rxd5 = READ_ONCE(dma_rxd->rxd5);
1277 rxd->rxd6 = READ_ONCE(dma_rxd->rxd6);
1278 }
1279
1280 return true;
1281 }
1282
mtk_max_lro_buf_alloc(gfp_t gfp_mask)1283 static void *mtk_max_lro_buf_alloc(gfp_t gfp_mask)
1284 {
1285 unsigned int size = mtk_max_frag_size(MTK_MAX_LRO_RX_LENGTH);
1286 unsigned long data;
1287
1288 data = __get_free_pages(gfp_mask | __GFP_COMP | __GFP_NOWARN,
1289 get_order(size));
1290
1291 return (void *)data;
1292 }
1293
mtk_dma_ring_alloc(struct mtk_eth * eth,size_t size,dma_addr_t * dma_handle,bool use_sram)1294 static void *mtk_dma_ring_alloc(struct mtk_eth *eth, size_t size,
1295 dma_addr_t *dma_handle, bool use_sram)
1296 {
1297 void *dma_ring;
1298
1299 if (use_sram && eth->sram_pool) {
1300 dma_ring = (void *)gen_pool_alloc(eth->sram_pool, size);
1301 if (!dma_ring)
1302 return dma_ring;
1303 *dma_handle = gen_pool_virt_to_phys(eth->sram_pool,
1304 (unsigned long)dma_ring);
1305 } else {
1306 dma_ring = dma_alloc_coherent(eth->dma_dev, size, dma_handle,
1307 GFP_KERNEL);
1308 }
1309
1310 return dma_ring;
1311 }
1312
mtk_dma_ring_free(struct mtk_eth * eth,size_t size,void * dma_ring,dma_addr_t dma_handle,bool in_sram)1313 static void mtk_dma_ring_free(struct mtk_eth *eth, size_t size, void *dma_ring,
1314 dma_addr_t dma_handle, bool in_sram)
1315 {
1316 if (in_sram && eth->sram_pool)
1317 gen_pool_free(eth->sram_pool, (unsigned long)dma_ring, size);
1318 else
1319 dma_free_coherent(eth->dma_dev, size, dma_ring, dma_handle);
1320 }
1321
1322 /* the qdma core needs scratch memory to be setup */
mtk_init_fq_dma(struct mtk_eth * eth)1323 static int mtk_init_fq_dma(struct mtk_eth *eth)
1324 {
1325 const struct mtk_soc_data *soc = eth->soc;
1326 dma_addr_t phy_ring_tail;
1327 int cnt = soc->tx.fq_dma_size;
1328 dma_addr_t dma_addr;
1329 int i, j, len;
1330
1331 eth->scratch_ring = mtk_dma_ring_alloc(eth, cnt * soc->tx.desc_size,
1332 ð->phy_scratch_ring, true);
1333
1334 if (unlikely(!eth->scratch_ring))
1335 return -ENOMEM;
1336
1337 phy_ring_tail = eth->phy_scratch_ring + soc->tx.desc_size * (cnt - 1);
1338
1339 for (j = 0; j < DIV_ROUND_UP(soc->tx.fq_dma_size, MTK_FQ_DMA_LENGTH); j++) {
1340 len = min_t(int, cnt - j * MTK_FQ_DMA_LENGTH, MTK_FQ_DMA_LENGTH);
1341 eth->scratch_head[j] = kcalloc(len, MTK_QDMA_PAGE_SIZE, GFP_KERNEL);
1342
1343 if (unlikely(!eth->scratch_head[j]))
1344 return -ENOMEM;
1345
1346 dma_addr = dma_map_single(eth->dma_dev,
1347 eth->scratch_head[j], len * MTK_QDMA_PAGE_SIZE,
1348 DMA_FROM_DEVICE);
1349
1350 if (unlikely(dma_mapping_error(eth->dma_dev, dma_addr)))
1351 return -ENOMEM;
1352
1353 for (i = 0; i < len; i++) {
1354 struct mtk_tx_dma_v2 *txd;
1355
1356 txd = eth->scratch_ring + (j * MTK_FQ_DMA_LENGTH + i) * soc->tx.desc_size;
1357 txd->txd1 = dma_addr + i * MTK_QDMA_PAGE_SIZE;
1358 if (j * MTK_FQ_DMA_LENGTH + i < cnt)
1359 txd->txd2 = eth->phy_scratch_ring +
1360 (j * MTK_FQ_DMA_LENGTH + i + 1) * soc->tx.desc_size;
1361
1362 txd->txd3 = TX_DMA_PLEN0(MTK_QDMA_PAGE_SIZE);
1363 if (MTK_HAS_CAPS(soc->caps, MTK_36BIT_DMA))
1364 txd->txd3 |= TX_DMA_PREP_ADDR64(dma_addr + i * MTK_QDMA_PAGE_SIZE);
1365
1366 txd->txd4 = 0;
1367 if (mtk_is_netsys_v2_or_greater(eth)) {
1368 txd->txd5 = 0;
1369 txd->txd6 = 0;
1370 txd->txd7 = 0;
1371 txd->txd8 = 0;
1372 }
1373 }
1374 }
1375
1376 mtk_w32(eth, eth->phy_scratch_ring, soc->reg_map->qdma.fq_head);
1377 mtk_w32(eth, phy_ring_tail, soc->reg_map->qdma.fq_tail);
1378 mtk_w32(eth, (cnt << 16) | cnt, soc->reg_map->qdma.fq_count);
1379 mtk_w32(eth, MTK_QDMA_PAGE_SIZE << 16, soc->reg_map->qdma.fq_blen);
1380
1381 return 0;
1382 }
1383
mtk_qdma_phys_to_virt(struct mtk_tx_ring * ring,u32 desc)1384 static void *mtk_qdma_phys_to_virt(struct mtk_tx_ring *ring, u32 desc)
1385 {
1386 return ring->dma + (desc - ring->phys);
1387 }
1388
mtk_desc_to_tx_buf(struct mtk_tx_ring * ring,void * txd,u32 txd_size)1389 static struct mtk_tx_buf *mtk_desc_to_tx_buf(struct mtk_tx_ring *ring,
1390 void *txd, u32 txd_size)
1391 {
1392 int idx = (txd - ring->dma) / txd_size;
1393
1394 return &ring->buf[idx];
1395 }
1396
qdma_to_pdma(struct mtk_tx_ring * ring,struct mtk_tx_dma * dma)1397 static struct mtk_tx_dma *qdma_to_pdma(struct mtk_tx_ring *ring,
1398 struct mtk_tx_dma *dma)
1399 {
1400 return ring->dma_pdma - (struct mtk_tx_dma *)ring->dma + dma;
1401 }
1402
txd_to_idx(struct mtk_tx_ring * ring,void * dma,u32 txd_size)1403 static int txd_to_idx(struct mtk_tx_ring *ring, void *dma, u32 txd_size)
1404 {
1405 return (dma - ring->dma) / txd_size;
1406 }
1407
mtk_tx_unmap(struct mtk_eth * eth,struct mtk_tx_buf * tx_buf,struct xdp_frame_bulk * bq,bool napi)1408 static void mtk_tx_unmap(struct mtk_eth *eth, struct mtk_tx_buf *tx_buf,
1409 struct xdp_frame_bulk *bq, bool napi)
1410 {
1411 if (MTK_HAS_CAPS(eth->soc->caps, MTK_QDMA)) {
1412 if (tx_buf->flags & MTK_TX_FLAGS_SINGLE0) {
1413 dma_unmap_single(eth->dma_dev,
1414 dma_unmap_addr(tx_buf, dma_addr0),
1415 dma_unmap_len(tx_buf, dma_len0),
1416 DMA_TO_DEVICE);
1417 } else if (tx_buf->flags & MTK_TX_FLAGS_PAGE0) {
1418 dma_unmap_page(eth->dma_dev,
1419 dma_unmap_addr(tx_buf, dma_addr0),
1420 dma_unmap_len(tx_buf, dma_len0),
1421 DMA_TO_DEVICE);
1422 }
1423 } else {
1424 if (dma_unmap_len(tx_buf, dma_len0)) {
1425 dma_unmap_page(eth->dma_dev,
1426 dma_unmap_addr(tx_buf, dma_addr0),
1427 dma_unmap_len(tx_buf, dma_len0),
1428 DMA_TO_DEVICE);
1429 }
1430
1431 if (dma_unmap_len(tx_buf, dma_len1)) {
1432 dma_unmap_page(eth->dma_dev,
1433 dma_unmap_addr(tx_buf, dma_addr1),
1434 dma_unmap_len(tx_buf, dma_len1),
1435 DMA_TO_DEVICE);
1436 }
1437 }
1438
1439 if (tx_buf->data && tx_buf->data != (void *)MTK_DMA_DUMMY_DESC) {
1440 if (tx_buf->type == MTK_TYPE_SKB) {
1441 struct sk_buff *skb = tx_buf->data;
1442
1443 if (napi)
1444 napi_consume_skb(skb, napi);
1445 else
1446 dev_kfree_skb_any(skb);
1447 } else {
1448 struct xdp_frame *xdpf = tx_buf->data;
1449
1450 if (napi && tx_buf->type == MTK_TYPE_XDP_TX)
1451 xdp_return_frame_rx_napi(xdpf);
1452 else if (bq)
1453 xdp_return_frame_bulk(xdpf, bq);
1454 else
1455 xdp_return_frame(xdpf);
1456 }
1457 }
1458 tx_buf->flags = 0;
1459 tx_buf->data = NULL;
1460 }
1461
setup_tx_buf(struct mtk_eth * eth,struct mtk_tx_buf * tx_buf,struct mtk_tx_dma * txd,dma_addr_t mapped_addr,size_t size,int idx)1462 static void setup_tx_buf(struct mtk_eth *eth, struct mtk_tx_buf *tx_buf,
1463 struct mtk_tx_dma *txd, dma_addr_t mapped_addr,
1464 size_t size, int idx)
1465 {
1466 if (MTK_HAS_CAPS(eth->soc->caps, MTK_QDMA)) {
1467 dma_unmap_addr_set(tx_buf, dma_addr0, mapped_addr);
1468 dma_unmap_len_set(tx_buf, dma_len0, size);
1469 } else {
1470 if (idx & 1) {
1471 txd->txd3 = mapped_addr;
1472 txd->txd2 |= TX_DMA_PLEN1(size);
1473 dma_unmap_addr_set(tx_buf, dma_addr1, mapped_addr);
1474 dma_unmap_len_set(tx_buf, dma_len1, size);
1475 } else {
1476 tx_buf->data = (void *)MTK_DMA_DUMMY_DESC;
1477 txd->txd1 = mapped_addr;
1478 txd->txd2 = TX_DMA_PLEN0(size);
1479 dma_unmap_addr_set(tx_buf, dma_addr0, mapped_addr);
1480 dma_unmap_len_set(tx_buf, dma_len0, size);
1481 }
1482 }
1483 }
1484
mtk_tx_set_dma_desc_v1(struct net_device * dev,void * txd,struct mtk_tx_dma_desc_info * info)1485 static void mtk_tx_set_dma_desc_v1(struct net_device *dev, void *txd,
1486 struct mtk_tx_dma_desc_info *info)
1487 {
1488 struct mtk_mac *mac = netdev_priv(dev);
1489 struct mtk_eth *eth = mac->hw;
1490 struct mtk_tx_dma *desc = txd;
1491 u32 data;
1492
1493 WRITE_ONCE(desc->txd1, info->addr);
1494
1495 data = TX_DMA_SWC | TX_DMA_PLEN0(info->size) |
1496 FIELD_PREP(TX_DMA_PQID, info->qid);
1497 if (info->last)
1498 data |= TX_DMA_LS0;
1499 WRITE_ONCE(desc->txd3, data);
1500
1501 data = (mac->id + 1) << TX_DMA_FPORT_SHIFT; /* forward port */
1502 if (info->first) {
1503 if (info->gso)
1504 data |= TX_DMA_TSO;
1505 /* tx checksum offload */
1506 if (info->csum)
1507 data |= TX_DMA_CHKSUM;
1508 /* vlan header offload */
1509 if (info->vlan)
1510 data |= TX_DMA_INS_VLAN | info->vlan_tci;
1511 }
1512 WRITE_ONCE(desc->txd4, data);
1513 }
1514
mtk_tx_set_dma_desc_v2(struct net_device * dev,void * txd,struct mtk_tx_dma_desc_info * info)1515 static void mtk_tx_set_dma_desc_v2(struct net_device *dev, void *txd,
1516 struct mtk_tx_dma_desc_info *info)
1517 {
1518 struct mtk_mac *mac = netdev_priv(dev);
1519 struct mtk_tx_dma_v2 *desc = txd;
1520 struct mtk_eth *eth = mac->hw;
1521 u32 data;
1522
1523 WRITE_ONCE(desc->txd1, info->addr);
1524
1525 data = TX_DMA_PLEN0(info->size);
1526 if (info->last)
1527 data |= TX_DMA_LS0;
1528
1529 if (MTK_HAS_CAPS(eth->soc->caps, MTK_36BIT_DMA))
1530 data |= TX_DMA_PREP_ADDR64(info->addr);
1531
1532 WRITE_ONCE(desc->txd3, data);
1533
1534 /* set forward port */
1535 switch (mac->id) {
1536 case MTK_GMAC1_ID:
1537 data = PSE_GDM1_PORT << TX_DMA_FPORT_SHIFT_V2;
1538 break;
1539 case MTK_GMAC2_ID:
1540 data = PSE_GDM2_PORT << TX_DMA_FPORT_SHIFT_V2;
1541 break;
1542 case MTK_GMAC3_ID:
1543 data = PSE_GDM3_PORT << TX_DMA_FPORT_SHIFT_V2;
1544 break;
1545 }
1546
1547 data |= TX_DMA_SWC_V2 | QID_BITS_V2(info->qid);
1548 WRITE_ONCE(desc->txd4, data);
1549
1550 data = 0;
1551 if (info->first) {
1552 if (info->gso)
1553 data |= TX_DMA_TSO_V2;
1554 /* tx checksum offload */
1555 if (info->csum)
1556 data |= TX_DMA_CHKSUM_V2;
1557 if (mtk_is_netsys_v3_or_greater(eth) && netdev_uses_dsa(dev))
1558 data |= TX_DMA_SPTAG_V3;
1559 }
1560 WRITE_ONCE(desc->txd5, data);
1561
1562 data = 0;
1563 if (info->first && info->vlan)
1564 data |= TX_DMA_INS_VLAN_V2 | info->vlan_tci;
1565 WRITE_ONCE(desc->txd6, data);
1566
1567 WRITE_ONCE(desc->txd7, 0);
1568 WRITE_ONCE(desc->txd8, 0);
1569 }
1570
mtk_tx_set_dma_desc(struct net_device * dev,void * txd,struct mtk_tx_dma_desc_info * info)1571 static void mtk_tx_set_dma_desc(struct net_device *dev, void *txd,
1572 struct mtk_tx_dma_desc_info *info)
1573 {
1574 struct mtk_mac *mac = netdev_priv(dev);
1575 struct mtk_eth *eth = mac->hw;
1576
1577 if (mtk_is_netsys_v2_or_greater(eth))
1578 mtk_tx_set_dma_desc_v2(dev, txd, info);
1579 else
1580 mtk_tx_set_dma_desc_v1(dev, txd, info);
1581 }
1582
mtk_tx_map(struct sk_buff * skb,struct net_device * dev,int tx_num,struct mtk_tx_ring * ring,bool gso)1583 static int mtk_tx_map(struct sk_buff *skb, struct net_device *dev,
1584 int tx_num, struct mtk_tx_ring *ring, bool gso)
1585 {
1586 struct mtk_tx_dma_desc_info txd_info = {
1587 .size = skb_headlen(skb),
1588 .gso = gso,
1589 .csum = skb->ip_summed == CHECKSUM_PARTIAL,
1590 .vlan = skb_vlan_tag_present(skb),
1591 .qid = skb_get_queue_mapping(skb),
1592 .vlan_tci = skb_vlan_tag_get(skb),
1593 .first = true,
1594 .last = !skb_is_nonlinear(skb),
1595 };
1596 struct netdev_queue *txq;
1597 struct mtk_mac *mac = netdev_priv(dev);
1598 struct mtk_eth *eth = mac->hw;
1599 const struct mtk_soc_data *soc = eth->soc;
1600 struct mtk_tx_dma *itxd, *txd;
1601 struct mtk_tx_dma *itxd_pdma, *txd_pdma;
1602 struct mtk_tx_buf *itx_buf, *tx_buf;
1603 int i, n_desc = 1;
1604 int queue = skb_get_queue_mapping(skb);
1605 int k = 0;
1606
1607 txq = netdev_get_tx_queue(dev, queue);
1608 itxd = ring->next_free;
1609 itxd_pdma = qdma_to_pdma(ring, itxd);
1610 if (itxd == ring->last_free)
1611 return -ENOMEM;
1612
1613 itx_buf = mtk_desc_to_tx_buf(ring, itxd, soc->tx.desc_size);
1614 memset(itx_buf, 0, sizeof(*itx_buf));
1615
1616 txd_info.addr = dma_map_single(eth->dma_dev, skb->data, txd_info.size,
1617 DMA_TO_DEVICE);
1618 if (unlikely(dma_mapping_error(eth->dma_dev, txd_info.addr)))
1619 return -ENOMEM;
1620
1621 mtk_tx_set_dma_desc(dev, itxd, &txd_info);
1622
1623 itx_buf->flags |= MTK_TX_FLAGS_SINGLE0;
1624 itx_buf->mac_id = mac->id;
1625 setup_tx_buf(eth, itx_buf, itxd_pdma, txd_info.addr, txd_info.size,
1626 k++);
1627
1628 /* TX SG offload */
1629 txd = itxd;
1630 txd_pdma = qdma_to_pdma(ring, txd);
1631
1632 for (i = 0; i < skb_shinfo(skb)->nr_frags; i++) {
1633 skb_frag_t *frag = &skb_shinfo(skb)->frags[i];
1634 unsigned int offset = 0;
1635 int frag_size = skb_frag_size(frag);
1636
1637 while (frag_size) {
1638 bool new_desc = true;
1639
1640 if (MTK_HAS_CAPS(soc->caps, MTK_QDMA) ||
1641 (i & 0x1)) {
1642 txd = mtk_qdma_phys_to_virt(ring, txd->txd2);
1643 txd_pdma = qdma_to_pdma(ring, txd);
1644 if (txd == ring->last_free)
1645 goto err_dma;
1646
1647 n_desc++;
1648 } else {
1649 new_desc = false;
1650 }
1651
1652 memset(&txd_info, 0, sizeof(struct mtk_tx_dma_desc_info));
1653 txd_info.size = min_t(unsigned int, frag_size,
1654 soc->tx.dma_max_len);
1655 txd_info.qid = queue;
1656 txd_info.last = i == skb_shinfo(skb)->nr_frags - 1 &&
1657 !(frag_size - txd_info.size);
1658 txd_info.addr = skb_frag_dma_map(eth->dma_dev, frag,
1659 offset, txd_info.size,
1660 DMA_TO_DEVICE);
1661 if (unlikely(dma_mapping_error(eth->dma_dev, txd_info.addr)))
1662 goto err_dma;
1663
1664 mtk_tx_set_dma_desc(dev, txd, &txd_info);
1665
1666 tx_buf = mtk_desc_to_tx_buf(ring, txd,
1667 soc->tx.desc_size);
1668 if (new_desc)
1669 memset(tx_buf, 0, sizeof(*tx_buf));
1670 tx_buf->data = (void *)MTK_DMA_DUMMY_DESC;
1671 tx_buf->flags |= MTK_TX_FLAGS_PAGE0;
1672 tx_buf->mac_id = mac->id;
1673
1674 setup_tx_buf(eth, tx_buf, txd_pdma, txd_info.addr,
1675 txd_info.size, k++);
1676
1677 frag_size -= txd_info.size;
1678 offset += txd_info.size;
1679 }
1680 }
1681
1682 /* store skb to cleanup */
1683 itx_buf->type = MTK_TYPE_SKB;
1684 itx_buf->data = skb;
1685
1686 if (!MTK_HAS_CAPS(soc->caps, MTK_QDMA)) {
1687 if (k & 0x1)
1688 txd_pdma->txd2 |= TX_DMA_LS0;
1689 else
1690 txd_pdma->txd2 |= TX_DMA_LS1;
1691 }
1692
1693 netdev_tx_sent_queue(txq, skb->len);
1694 skb_tx_timestamp(skb);
1695
1696 ring->next_free = mtk_qdma_phys_to_virt(ring, txd->txd2);
1697 atomic_sub(n_desc, &ring->free_count);
1698
1699 /* make sure that all changes to the dma ring are flushed before we
1700 * continue
1701 */
1702 wmb();
1703
1704 if (MTK_HAS_CAPS(soc->caps, MTK_QDMA)) {
1705 if (netif_xmit_stopped(txq) || !netdev_xmit_more())
1706 mtk_w32(eth, txd->txd2, soc->reg_map->qdma.ctx_ptr);
1707 } else {
1708 int next_idx;
1709
1710 next_idx = NEXT_DESP_IDX(txd_to_idx(ring, txd, soc->tx.desc_size),
1711 ring->dma_size);
1712 mtk_w32(eth, next_idx, MT7628_TX_CTX_IDX0);
1713 }
1714
1715 return 0;
1716
1717 err_dma:
1718 do {
1719 tx_buf = mtk_desc_to_tx_buf(ring, itxd, soc->tx.desc_size);
1720
1721 /* unmap dma */
1722 mtk_tx_unmap(eth, tx_buf, NULL, false);
1723
1724 itxd->txd3 = TX_DMA_LS0 | TX_DMA_OWNER_CPU;
1725 if (!MTK_HAS_CAPS(soc->caps, MTK_QDMA))
1726 itxd_pdma->txd2 = TX_DMA_DESP2_DEF;
1727
1728 itxd = mtk_qdma_phys_to_virt(ring, itxd->txd2);
1729 itxd_pdma = qdma_to_pdma(ring, itxd);
1730 } while (itxd != txd);
1731
1732 return -ENOMEM;
1733 }
1734
mtk_cal_txd_req(struct mtk_eth * eth,struct sk_buff * skb)1735 static int mtk_cal_txd_req(struct mtk_eth *eth, struct sk_buff *skb)
1736 {
1737 int i, nfrags = 1;
1738 skb_frag_t *frag;
1739
1740 if (skb_is_gso(skb)) {
1741 for (i = 0; i < skb_shinfo(skb)->nr_frags; i++) {
1742 frag = &skb_shinfo(skb)->frags[i];
1743 nfrags += DIV_ROUND_UP(skb_frag_size(frag),
1744 eth->soc->tx.dma_max_len);
1745 }
1746 } else {
1747 nfrags += skb_shinfo(skb)->nr_frags;
1748 }
1749
1750 return nfrags;
1751 }
1752
mtk_queue_stopped(struct mtk_eth * eth)1753 static int mtk_queue_stopped(struct mtk_eth *eth)
1754 {
1755 int i;
1756
1757 for (i = 0; i < MTK_MAX_DEVS; i++) {
1758 if (!eth->netdev[i])
1759 continue;
1760 if (netif_queue_stopped(eth->netdev[i]))
1761 return 1;
1762 }
1763
1764 return 0;
1765 }
1766
mtk_wake_queue(struct mtk_eth * eth)1767 static void mtk_wake_queue(struct mtk_eth *eth)
1768 {
1769 int i;
1770
1771 for (i = 0; i < MTK_MAX_DEVS; i++) {
1772 if (!eth->netdev[i])
1773 continue;
1774 netif_tx_wake_all_queues(eth->netdev[i]);
1775 }
1776 }
1777
mtk_start_xmit(struct sk_buff * skb,struct net_device * dev)1778 static netdev_tx_t mtk_start_xmit(struct sk_buff *skb, struct net_device *dev)
1779 {
1780 struct mtk_mac *mac = netdev_priv(dev);
1781 struct mtk_eth *eth = mac->hw;
1782 struct mtk_tx_ring *ring = ð->tx_ring;
1783 struct net_device_stats *stats = &dev->stats;
1784 bool gso = false;
1785 int tx_num;
1786
1787 if (skb_vlan_tag_present(skb) &&
1788 !eth_proto_is_802_3(eth_hdr(skb)->h_proto)) {
1789 skb = __vlan_hwaccel_push_inside(skb);
1790 if (!skb)
1791 goto dropped;
1792 }
1793
1794 /* normally we can rely on the stack not calling this more than once,
1795 * however we have 2 queues running on the same ring so we need to lock
1796 * the ring access
1797 */
1798 spin_lock(ð->page_lock);
1799
1800 if (unlikely(test_bit(MTK_RESETTING, ð->state)))
1801 goto drop;
1802
1803 tx_num = mtk_cal_txd_req(eth, skb);
1804 if (unlikely(atomic_read(&ring->free_count) <= tx_num)) {
1805 netif_tx_stop_all_queues(dev);
1806 netif_err(eth, tx_queued, dev,
1807 "Tx Ring full when queue awake!\n");
1808 spin_unlock(ð->page_lock);
1809 return NETDEV_TX_BUSY;
1810 }
1811
1812 /* TSO: fill MSS info in tcp checksum field */
1813 if (skb_is_gso(skb)) {
1814 if (skb_cow_head(skb, 0)) {
1815 netif_warn(eth, tx_err, dev,
1816 "GSO expand head fail.\n");
1817 goto drop;
1818 }
1819
1820 if (skb_shinfo(skb)->gso_type &
1821 (SKB_GSO_TCPV4 | SKB_GSO_TCPV6)) {
1822 gso = true;
1823 tcp_hdr(skb)->check = htons(skb_shinfo(skb)->gso_size);
1824 }
1825 }
1826
1827 if (mtk_tx_map(skb, dev, tx_num, ring, gso) < 0)
1828 goto drop;
1829
1830 if (unlikely(atomic_read(&ring->free_count) <= ring->thresh))
1831 netif_tx_stop_all_queues(dev);
1832
1833 spin_unlock(ð->page_lock);
1834
1835 return NETDEV_TX_OK;
1836
1837 drop:
1838 spin_unlock(ð->page_lock);
1839 dev_kfree_skb_any(skb);
1840 dropped:
1841 stats->tx_dropped++;
1842 return NETDEV_TX_OK;
1843 }
1844
mtk_get_rx_ring(struct mtk_eth * eth)1845 static struct mtk_rx_ring *mtk_get_rx_ring(struct mtk_eth *eth)
1846 {
1847 int i;
1848 struct mtk_rx_ring *ring;
1849 int idx;
1850
1851 if (!eth->hwlro)
1852 return ð->rx_ring[0];
1853
1854 for (i = 0; i < MTK_MAX_RX_RING_NUM; i++) {
1855 struct mtk_rx_dma *rxd;
1856
1857 ring = ð->rx_ring[i];
1858 idx = NEXT_DESP_IDX(ring->calc_idx, ring->dma_size);
1859 rxd = ring->dma + idx * eth->soc->rx.desc_size;
1860 if (rxd->rxd2 & RX_DMA_DONE) {
1861 ring->calc_idx_update = true;
1862 return ring;
1863 }
1864 }
1865
1866 return NULL;
1867 }
1868
mtk_update_rx_cpu_idx(struct mtk_eth * eth)1869 static void mtk_update_rx_cpu_idx(struct mtk_eth *eth)
1870 {
1871 struct mtk_rx_ring *ring;
1872 int i;
1873
1874 if (!eth->hwlro) {
1875 ring = ð->rx_ring[0];
1876 mtk_w32(eth, ring->calc_idx, ring->crx_idx_reg);
1877 } else {
1878 for (i = 0; i < MTK_MAX_RX_RING_NUM; i++) {
1879 ring = ð->rx_ring[i];
1880 if (ring->calc_idx_update) {
1881 ring->calc_idx_update = false;
1882 mtk_w32(eth, ring->calc_idx, ring->crx_idx_reg);
1883 }
1884 }
1885 }
1886 }
1887
mtk_page_pool_enabled(struct mtk_eth * eth)1888 static bool mtk_page_pool_enabled(struct mtk_eth *eth)
1889 {
1890 return mtk_is_netsys_v2_or_greater(eth);
1891 }
1892
mtk_create_page_pool(struct mtk_eth * eth,struct xdp_rxq_info * xdp_q,int id,int size)1893 static struct page_pool *mtk_create_page_pool(struct mtk_eth *eth,
1894 struct xdp_rxq_info *xdp_q,
1895 int id, int size)
1896 {
1897 struct page_pool_params pp_params = {
1898 .order = 0,
1899 .flags = PP_FLAG_DMA_MAP | PP_FLAG_DMA_SYNC_DEV,
1900 .pool_size = size,
1901 .nid = NUMA_NO_NODE,
1902 .dev = eth->dma_dev,
1903 .offset = MTK_PP_HEADROOM,
1904 .max_len = MTK_PP_MAX_BUF_SIZE,
1905 };
1906 struct page_pool *pp;
1907 int err;
1908
1909 pp_params.dma_dir = rcu_access_pointer(eth->prog) ? DMA_BIDIRECTIONAL
1910 : DMA_FROM_DEVICE;
1911 pp = page_pool_create(&pp_params);
1912 if (IS_ERR(pp))
1913 return pp;
1914
1915 err = __xdp_rxq_info_reg(xdp_q, eth->dummy_dev, id,
1916 eth->rx_napi.napi_id, PAGE_SIZE);
1917 if (err < 0)
1918 goto err_free_pp;
1919
1920 err = xdp_rxq_info_reg_mem_model(xdp_q, MEM_TYPE_PAGE_POOL, pp);
1921 if (err)
1922 goto err_unregister_rxq;
1923
1924 return pp;
1925
1926 err_unregister_rxq:
1927 xdp_rxq_info_unreg(xdp_q);
1928 err_free_pp:
1929 page_pool_destroy(pp);
1930
1931 return ERR_PTR(err);
1932 }
1933
mtk_page_pool_get_buff(struct page_pool * pp,dma_addr_t * dma_addr,gfp_t gfp_mask)1934 static void *mtk_page_pool_get_buff(struct page_pool *pp, dma_addr_t *dma_addr,
1935 gfp_t gfp_mask)
1936 {
1937 struct page *page;
1938
1939 page = page_pool_alloc_pages(pp, gfp_mask | __GFP_NOWARN);
1940 if (!page)
1941 return NULL;
1942
1943 *dma_addr = page_pool_get_dma_addr(page) + MTK_PP_HEADROOM;
1944 return page_address(page);
1945 }
1946
mtk_rx_put_buff(struct mtk_rx_ring * ring,void * data,bool napi)1947 static void mtk_rx_put_buff(struct mtk_rx_ring *ring, void *data, bool napi)
1948 {
1949 if (ring->page_pool)
1950 page_pool_put_full_page(ring->page_pool,
1951 virt_to_head_page(data), napi);
1952 else
1953 skb_free_frag(data);
1954 }
1955
mtk_xdp_frame_map(struct mtk_eth * eth,struct net_device * dev,struct mtk_tx_dma_desc_info * txd_info,struct mtk_tx_dma * txd,struct mtk_tx_buf * tx_buf,void * data,u16 headroom,int index,bool dma_map)1956 static int mtk_xdp_frame_map(struct mtk_eth *eth, struct net_device *dev,
1957 struct mtk_tx_dma_desc_info *txd_info,
1958 struct mtk_tx_dma *txd, struct mtk_tx_buf *tx_buf,
1959 void *data, u16 headroom, int index, bool dma_map)
1960 {
1961 struct mtk_tx_ring *ring = ð->tx_ring;
1962 struct mtk_mac *mac = netdev_priv(dev);
1963 struct mtk_tx_dma *txd_pdma;
1964
1965 if (dma_map) { /* ndo_xdp_xmit */
1966 txd_info->addr = dma_map_single(eth->dma_dev, data,
1967 txd_info->size, DMA_TO_DEVICE);
1968 if (unlikely(dma_mapping_error(eth->dma_dev, txd_info->addr)))
1969 return -ENOMEM;
1970
1971 tx_buf->flags |= MTK_TX_FLAGS_SINGLE0;
1972 } else {
1973 struct page *page = virt_to_head_page(data);
1974
1975 txd_info->addr = page_pool_get_dma_addr(page) +
1976 sizeof(struct xdp_frame) + headroom;
1977 dma_sync_single_for_device(eth->dma_dev, txd_info->addr,
1978 txd_info->size, DMA_BIDIRECTIONAL);
1979 }
1980 mtk_tx_set_dma_desc(dev, txd, txd_info);
1981
1982 tx_buf->mac_id = mac->id;
1983 tx_buf->type = dma_map ? MTK_TYPE_XDP_NDO : MTK_TYPE_XDP_TX;
1984 tx_buf->data = (void *)MTK_DMA_DUMMY_DESC;
1985
1986 txd_pdma = qdma_to_pdma(ring, txd);
1987 setup_tx_buf(eth, tx_buf, txd_pdma, txd_info->addr, txd_info->size,
1988 index);
1989
1990 return 0;
1991 }
1992
mtk_xdp_submit_frame(struct mtk_eth * eth,struct xdp_frame * xdpf,struct net_device * dev,bool dma_map)1993 static int mtk_xdp_submit_frame(struct mtk_eth *eth, struct xdp_frame *xdpf,
1994 struct net_device *dev, bool dma_map)
1995 {
1996 struct skb_shared_info *sinfo = xdp_get_shared_info_from_frame(xdpf);
1997 const struct mtk_soc_data *soc = eth->soc;
1998 struct mtk_tx_ring *ring = ð->tx_ring;
1999 struct mtk_mac *mac = netdev_priv(dev);
2000 struct mtk_tx_dma_desc_info txd_info = {
2001 .size = xdpf->len,
2002 .first = true,
2003 .last = !xdp_frame_has_frags(xdpf),
2004 .qid = mac->id,
2005 };
2006 int err, index = 0, n_desc = 1, nr_frags;
2007 struct mtk_tx_buf *htx_buf, *tx_buf;
2008 struct mtk_tx_dma *htxd, *txd;
2009 void *data = xdpf->data;
2010
2011 if (unlikely(test_bit(MTK_RESETTING, ð->state)))
2012 return -EBUSY;
2013
2014 nr_frags = unlikely(xdp_frame_has_frags(xdpf)) ? sinfo->nr_frags : 0;
2015 if (unlikely(atomic_read(&ring->free_count) <= 1 + nr_frags))
2016 return -EBUSY;
2017
2018 spin_lock(ð->page_lock);
2019
2020 txd = ring->next_free;
2021 if (txd == ring->last_free) {
2022 spin_unlock(ð->page_lock);
2023 return -ENOMEM;
2024 }
2025 htxd = txd;
2026
2027 tx_buf = mtk_desc_to_tx_buf(ring, txd, soc->tx.desc_size);
2028 memset(tx_buf, 0, sizeof(*tx_buf));
2029 htx_buf = tx_buf;
2030
2031 for (;;) {
2032 err = mtk_xdp_frame_map(eth, dev, &txd_info, txd, tx_buf,
2033 data, xdpf->headroom, index, dma_map);
2034 if (err < 0)
2035 goto unmap;
2036
2037 if (txd_info.last)
2038 break;
2039
2040 if (MTK_HAS_CAPS(soc->caps, MTK_QDMA) || (index & 0x1)) {
2041 txd = mtk_qdma_phys_to_virt(ring, txd->txd2);
2042 if (txd == ring->last_free)
2043 goto unmap;
2044
2045 tx_buf = mtk_desc_to_tx_buf(ring, txd,
2046 soc->tx.desc_size);
2047 memset(tx_buf, 0, sizeof(*tx_buf));
2048 n_desc++;
2049 }
2050
2051 memset(&txd_info, 0, sizeof(struct mtk_tx_dma_desc_info));
2052 txd_info.size = skb_frag_size(&sinfo->frags[index]);
2053 txd_info.last = index + 1 == nr_frags;
2054 txd_info.qid = mac->id;
2055 data = skb_frag_address(&sinfo->frags[index]);
2056
2057 index++;
2058 }
2059 /* store xdpf for cleanup */
2060 htx_buf->data = xdpf;
2061
2062 if (!MTK_HAS_CAPS(soc->caps, MTK_QDMA)) {
2063 struct mtk_tx_dma *txd_pdma = qdma_to_pdma(ring, txd);
2064
2065 if (index & 1)
2066 txd_pdma->txd2 |= TX_DMA_LS0;
2067 else
2068 txd_pdma->txd2 |= TX_DMA_LS1;
2069 }
2070
2071 ring->next_free = mtk_qdma_phys_to_virt(ring, txd->txd2);
2072 atomic_sub(n_desc, &ring->free_count);
2073
2074 /* make sure that all changes to the dma ring are flushed before we
2075 * continue
2076 */
2077 wmb();
2078
2079 if (MTK_HAS_CAPS(soc->caps, MTK_QDMA)) {
2080 mtk_w32(eth, txd->txd2, soc->reg_map->qdma.ctx_ptr);
2081 } else {
2082 int idx;
2083
2084 idx = txd_to_idx(ring, txd, soc->tx.desc_size);
2085 mtk_w32(eth, NEXT_DESP_IDX(idx, ring->dma_size),
2086 MT7628_TX_CTX_IDX0);
2087 }
2088
2089 spin_unlock(ð->page_lock);
2090
2091 return 0;
2092
2093 unmap:
2094 while (htxd != txd) {
2095 tx_buf = mtk_desc_to_tx_buf(ring, htxd, soc->tx.desc_size);
2096 mtk_tx_unmap(eth, tx_buf, NULL, false);
2097
2098 htxd->txd3 = TX_DMA_LS0 | TX_DMA_OWNER_CPU;
2099 if (!MTK_HAS_CAPS(soc->caps, MTK_QDMA)) {
2100 struct mtk_tx_dma *txd_pdma = qdma_to_pdma(ring, htxd);
2101
2102 txd_pdma->txd2 = TX_DMA_DESP2_DEF;
2103 }
2104
2105 htxd = mtk_qdma_phys_to_virt(ring, htxd->txd2);
2106 }
2107
2108 spin_unlock(ð->page_lock);
2109
2110 return err;
2111 }
2112
mtk_xdp_xmit(struct net_device * dev,int num_frame,struct xdp_frame ** frames,u32 flags)2113 static int mtk_xdp_xmit(struct net_device *dev, int num_frame,
2114 struct xdp_frame **frames, u32 flags)
2115 {
2116 struct mtk_mac *mac = netdev_priv(dev);
2117 struct mtk_hw_stats *hw_stats = mac->hw_stats;
2118 struct mtk_eth *eth = mac->hw;
2119 int i, nxmit = 0;
2120
2121 if (unlikely(flags & ~XDP_XMIT_FLAGS_MASK))
2122 return -EINVAL;
2123
2124 for (i = 0; i < num_frame; i++) {
2125 if (mtk_xdp_submit_frame(eth, frames[i], dev, true))
2126 break;
2127 nxmit++;
2128 }
2129
2130 u64_stats_update_begin(&hw_stats->syncp);
2131 hw_stats->xdp_stats.tx_xdp_xmit += nxmit;
2132 hw_stats->xdp_stats.tx_xdp_xmit_errors += num_frame - nxmit;
2133 u64_stats_update_end(&hw_stats->syncp);
2134
2135 return nxmit;
2136 }
2137
mtk_xdp_run(struct mtk_eth * eth,struct mtk_rx_ring * ring,struct xdp_buff * xdp,struct net_device * dev)2138 static u32 mtk_xdp_run(struct mtk_eth *eth, struct mtk_rx_ring *ring,
2139 struct xdp_buff *xdp, struct net_device *dev)
2140 {
2141 struct mtk_mac *mac = netdev_priv(dev);
2142 struct mtk_hw_stats *hw_stats = mac->hw_stats;
2143 u64 *count = &hw_stats->xdp_stats.rx_xdp_drop;
2144 struct bpf_prog *prog;
2145 u32 act = XDP_PASS;
2146
2147 rcu_read_lock();
2148
2149 prog = rcu_dereference(eth->prog);
2150 if (!prog)
2151 goto out;
2152
2153 act = bpf_prog_run_xdp(prog, xdp);
2154 switch (act) {
2155 case XDP_PASS:
2156 count = &hw_stats->xdp_stats.rx_xdp_pass;
2157 goto update_stats;
2158 case XDP_REDIRECT:
2159 if (unlikely(xdp_do_redirect(dev, xdp, prog))) {
2160 act = XDP_DROP;
2161 break;
2162 }
2163
2164 count = &hw_stats->xdp_stats.rx_xdp_redirect;
2165 goto update_stats;
2166 case XDP_TX: {
2167 struct xdp_frame *xdpf = xdp_convert_buff_to_frame(xdp);
2168
2169 if (!xdpf || mtk_xdp_submit_frame(eth, xdpf, dev, false)) {
2170 count = &hw_stats->xdp_stats.rx_xdp_tx_errors;
2171 act = XDP_DROP;
2172 break;
2173 }
2174
2175 count = &hw_stats->xdp_stats.rx_xdp_tx;
2176 goto update_stats;
2177 }
2178 default:
2179 bpf_warn_invalid_xdp_action(dev, prog, act);
2180 fallthrough;
2181 case XDP_ABORTED:
2182 trace_xdp_exception(dev, prog, act);
2183 fallthrough;
2184 case XDP_DROP:
2185 break;
2186 }
2187
2188 page_pool_put_full_page(ring->page_pool,
2189 virt_to_head_page(xdp->data), true);
2190
2191 update_stats:
2192 u64_stats_update_begin(&hw_stats->syncp);
2193 *count = *count + 1;
2194 u64_stats_update_end(&hw_stats->syncp);
2195 out:
2196 rcu_read_unlock();
2197
2198 return act;
2199 }
2200
mtk_poll_rx(struct napi_struct * napi,int budget,struct mtk_eth * eth)2201 static int mtk_poll_rx(struct napi_struct *napi, int budget,
2202 struct mtk_eth *eth)
2203 {
2204 struct dim_sample dim_sample = {};
2205 struct mtk_rx_ring *ring;
2206 bool xdp_flush = false;
2207 int idx;
2208 struct sk_buff *skb;
2209 u64 addr64 = 0;
2210 u8 *data, *new_data;
2211 struct mtk_rx_dma_v2 *rxd, trxd;
2212 int done = 0, bytes = 0;
2213 dma_addr_t dma_addr = DMA_MAPPING_ERROR;
2214 int ppe_idx = 0;
2215
2216 while (done < budget) {
2217 unsigned int pktlen, *rxdcsum;
2218 struct net_device *netdev;
2219 u32 hash, reason;
2220 int mac = 0;
2221
2222 ring = mtk_get_rx_ring(eth);
2223 if (unlikely(!ring))
2224 goto rx_done;
2225
2226 idx = NEXT_DESP_IDX(ring->calc_idx, ring->dma_size);
2227 rxd = ring->dma + idx * eth->soc->rx.desc_size;
2228 data = ring->data[idx];
2229
2230 if (!mtk_rx_get_desc(eth, &trxd, rxd))
2231 break;
2232
2233 /* find out which mac the packet come from. values start at 1 */
2234 if (mtk_is_netsys_v3_or_greater(eth)) {
2235 u32 val = RX_DMA_GET_SPORT_V2(trxd.rxd5);
2236
2237 switch (val) {
2238 case PSE_GDM1_PORT:
2239 case PSE_GDM2_PORT:
2240 mac = val - 1;
2241 break;
2242 case PSE_GDM3_PORT:
2243 mac = MTK_GMAC3_ID;
2244 break;
2245 default:
2246 break;
2247 }
2248 } else if (!MTK_HAS_CAPS(eth->soc->caps, MTK_SOC_MT7628) &&
2249 !(trxd.rxd4 & RX_DMA_SPECIAL_TAG)) {
2250 mac = RX_DMA_GET_SPORT(trxd.rxd4) - 1;
2251 }
2252
2253 if (unlikely(mac < 0 || mac >= MTK_MAX_DEVS ||
2254 !eth->netdev[mac]))
2255 goto release_desc;
2256
2257 netdev = eth->netdev[mac];
2258 ppe_idx = eth->mac[mac]->ppe_idx;
2259
2260 if (unlikely(test_bit(MTK_RESETTING, ð->state)))
2261 goto release_desc;
2262
2263 pktlen = RX_DMA_GET_PLEN0(trxd.rxd2);
2264
2265 /* alloc new buffer */
2266 if (ring->page_pool) {
2267 struct page *page = virt_to_head_page(data);
2268 struct xdp_buff xdp;
2269 u32 ret, metasize;
2270
2271 new_data = mtk_page_pool_get_buff(ring->page_pool,
2272 &dma_addr,
2273 GFP_ATOMIC);
2274 if (unlikely(!new_data)) {
2275 netdev->stats.rx_dropped++;
2276 goto release_desc;
2277 }
2278
2279 dma_sync_single_for_cpu(eth->dma_dev,
2280 page_pool_get_dma_addr(page) + MTK_PP_HEADROOM,
2281 pktlen, page_pool_get_dma_dir(ring->page_pool));
2282
2283 xdp_init_buff(&xdp, PAGE_SIZE, &ring->xdp_q);
2284 xdp_prepare_buff(&xdp, data, MTK_PP_HEADROOM, pktlen,
2285 true);
2286 xdp_buff_clear_frags_flag(&xdp);
2287
2288 ret = mtk_xdp_run(eth, ring, &xdp, netdev);
2289 if (ret == XDP_REDIRECT)
2290 xdp_flush = true;
2291
2292 if (ret != XDP_PASS)
2293 goto skip_rx;
2294
2295 skb = build_skb(data, PAGE_SIZE);
2296 if (unlikely(!skb)) {
2297 page_pool_put_full_page(ring->page_pool,
2298 page, true);
2299 netdev->stats.rx_dropped++;
2300 goto skip_rx;
2301 }
2302
2303 skb_reserve(skb, xdp.data - xdp.data_hard_start);
2304 skb_put(skb, xdp.data_end - xdp.data);
2305 metasize = xdp.data - xdp.data_meta;
2306 if (metasize)
2307 skb_metadata_set(skb, metasize);
2308 skb_mark_for_recycle(skb);
2309 } else {
2310 if (ring->frag_size <= PAGE_SIZE)
2311 new_data = napi_alloc_frag(ring->frag_size);
2312 else
2313 new_data = mtk_max_lro_buf_alloc(GFP_ATOMIC);
2314
2315 if (unlikely(!new_data)) {
2316 netdev->stats.rx_dropped++;
2317 goto release_desc;
2318 }
2319
2320 dma_addr = dma_map_single(eth->dma_dev,
2321 new_data + NET_SKB_PAD + eth->ip_align,
2322 ring->buf_size, DMA_FROM_DEVICE);
2323 if (unlikely(dma_mapping_error(eth->dma_dev,
2324 dma_addr))) {
2325 skb_free_frag(new_data);
2326 netdev->stats.rx_dropped++;
2327 goto release_desc;
2328 }
2329
2330 if (MTK_HAS_CAPS(eth->soc->caps, MTK_36BIT_DMA))
2331 addr64 = RX_DMA_GET_ADDR64(trxd.rxd2);
2332
2333 dma_unmap_single(eth->dma_dev, ((u64)trxd.rxd1 | addr64),
2334 ring->buf_size, DMA_FROM_DEVICE);
2335
2336 skb = build_skb(data, ring->frag_size);
2337 if (unlikely(!skb)) {
2338 netdev->stats.rx_dropped++;
2339 skb_free_frag(data);
2340 goto skip_rx;
2341 }
2342
2343 skb_reserve(skb, NET_SKB_PAD + NET_IP_ALIGN);
2344 skb_put(skb, pktlen);
2345 }
2346
2347 skb->dev = netdev;
2348 bytes += skb->len;
2349
2350 if (mtk_is_netsys_v3_or_greater(eth)) {
2351 reason = FIELD_GET(MTK_RXD5_PPE_CPU_REASON, trxd.rxd5);
2352 hash = trxd.rxd5 & MTK_RXD5_FOE_ENTRY;
2353 if (hash != MTK_RXD5_FOE_ENTRY)
2354 skb_set_hash(skb, jhash_1word(hash, 0),
2355 PKT_HASH_TYPE_L4);
2356 rxdcsum = &trxd.rxd3;
2357 } else {
2358 reason = FIELD_GET(MTK_RXD4_PPE_CPU_REASON, trxd.rxd4);
2359 hash = trxd.rxd4 & MTK_RXD4_FOE_ENTRY;
2360 if (hash != MTK_RXD4_FOE_ENTRY)
2361 skb_set_hash(skb, jhash_1word(hash, 0),
2362 PKT_HASH_TYPE_L4);
2363 rxdcsum = &trxd.rxd4;
2364 }
2365
2366 if (*rxdcsum & eth->soc->rx.dma_l4_valid)
2367 skb->ip_summed = CHECKSUM_UNNECESSARY;
2368 else
2369 skb_checksum_none_assert(skb);
2370 skb->protocol = eth_type_trans(skb, netdev);
2371
2372 /* When using VLAN untagging in combination with DSA, the
2373 * hardware treats the MTK special tag as a VLAN and untags it.
2374 */
2375 if (mtk_is_netsys_v1(eth) && (trxd.rxd2 & RX_DMA_VTAG) &&
2376 netdev_uses_dsa(netdev)) {
2377 unsigned int port = RX_DMA_VPID(trxd.rxd3) & GENMASK(2, 0);
2378
2379 if (port < ARRAY_SIZE(eth->dsa_meta) &&
2380 eth->dsa_meta[port])
2381 skb_dst_set_noref(skb, ð->dsa_meta[port]->dst);
2382 }
2383
2384 if (reason == MTK_PPE_CPU_REASON_HIT_UNBIND_RATE_REACHED)
2385 mtk_ppe_check_skb(eth->ppe[ppe_idx], skb, hash);
2386
2387 skb_record_rx_queue(skb, 0);
2388 napi_gro_receive(napi, skb);
2389
2390 skip_rx:
2391 ring->data[idx] = new_data;
2392 rxd->rxd1 = (unsigned int)dma_addr;
2393 release_desc:
2394 if (MTK_HAS_CAPS(eth->soc->caps, MTK_36BIT_DMA)) {
2395 if (unlikely(dma_addr == DMA_MAPPING_ERROR))
2396 addr64 = FIELD_GET(RX_DMA_ADDR64_MASK,
2397 rxd->rxd2);
2398 else
2399 addr64 = RX_DMA_PREP_ADDR64(dma_addr);
2400 }
2401
2402 if (MTK_HAS_CAPS(eth->soc->caps, MTK_SOC_MT7628))
2403 rxd->rxd2 = RX_DMA_LSO;
2404 else
2405 rxd->rxd2 = RX_DMA_PREP_PLEN0(ring->buf_size) | addr64;
2406
2407 ring->calc_idx = idx;
2408 done++;
2409 }
2410
2411 rx_done:
2412 if (done) {
2413 /* make sure that all changes to the dma ring are flushed before
2414 * we continue
2415 */
2416 wmb();
2417 mtk_update_rx_cpu_idx(eth);
2418 }
2419
2420 eth->rx_packets += done;
2421 eth->rx_bytes += bytes;
2422 dim_update_sample(eth->rx_events, eth->rx_packets, eth->rx_bytes,
2423 &dim_sample);
2424 net_dim(ð->rx_dim, &dim_sample);
2425
2426 if (xdp_flush)
2427 xdp_do_flush();
2428
2429 return done;
2430 }
2431
2432 struct mtk_poll_state {
2433 struct netdev_queue *txq;
2434 unsigned int total;
2435 unsigned int done;
2436 unsigned int bytes;
2437 };
2438
2439 static void
mtk_poll_tx_done(struct mtk_eth * eth,struct mtk_poll_state * state,u8 mac,struct sk_buff * skb)2440 mtk_poll_tx_done(struct mtk_eth *eth, struct mtk_poll_state *state, u8 mac,
2441 struct sk_buff *skb)
2442 {
2443 struct netdev_queue *txq;
2444 struct net_device *dev;
2445 unsigned int bytes = skb->len;
2446
2447 state->total++;
2448 eth->tx_packets++;
2449 eth->tx_bytes += bytes;
2450
2451 dev = eth->netdev[mac];
2452 if (!dev)
2453 return;
2454
2455 txq = netdev_get_tx_queue(dev, skb_get_queue_mapping(skb));
2456 if (state->txq == txq) {
2457 state->done++;
2458 state->bytes += bytes;
2459 return;
2460 }
2461
2462 if (state->txq)
2463 netdev_tx_completed_queue(state->txq, state->done, state->bytes);
2464
2465 state->txq = txq;
2466 state->done = 1;
2467 state->bytes = bytes;
2468 }
2469
mtk_poll_tx_qdma(struct mtk_eth * eth,int budget,struct mtk_poll_state * state)2470 static int mtk_poll_tx_qdma(struct mtk_eth *eth, int budget,
2471 struct mtk_poll_state *state)
2472 {
2473 const struct mtk_reg_map *reg_map = eth->soc->reg_map;
2474 struct mtk_tx_ring *ring = ð->tx_ring;
2475 struct mtk_tx_buf *tx_buf;
2476 struct xdp_frame_bulk bq;
2477 struct mtk_tx_dma *desc;
2478 u32 cpu, dma;
2479
2480 cpu = ring->last_free_ptr;
2481 dma = mtk_r32(eth, reg_map->qdma.drx_ptr);
2482
2483 desc = mtk_qdma_phys_to_virt(ring, cpu);
2484 xdp_frame_bulk_init(&bq);
2485
2486 while ((cpu != dma) && budget) {
2487 u32 next_cpu = desc->txd2;
2488
2489 desc = mtk_qdma_phys_to_virt(ring, desc->txd2);
2490 if ((desc->txd3 & TX_DMA_OWNER_CPU) == 0)
2491 break;
2492
2493 tx_buf = mtk_desc_to_tx_buf(ring, desc,
2494 eth->soc->tx.desc_size);
2495 if (!tx_buf->data)
2496 break;
2497
2498 if (tx_buf->data != (void *)MTK_DMA_DUMMY_DESC) {
2499 if (tx_buf->type == MTK_TYPE_SKB)
2500 mtk_poll_tx_done(eth, state, tx_buf->mac_id,
2501 tx_buf->data);
2502
2503 budget--;
2504 }
2505 mtk_tx_unmap(eth, tx_buf, &bq, true);
2506
2507 ring->last_free = desc;
2508 atomic_inc(&ring->free_count);
2509
2510 cpu = next_cpu;
2511 }
2512 xdp_flush_frame_bulk(&bq);
2513
2514 ring->last_free_ptr = cpu;
2515 mtk_w32(eth, cpu, reg_map->qdma.crx_ptr);
2516
2517 return budget;
2518 }
2519
mtk_poll_tx_pdma(struct mtk_eth * eth,int budget,struct mtk_poll_state * state)2520 static int mtk_poll_tx_pdma(struct mtk_eth *eth, int budget,
2521 struct mtk_poll_state *state)
2522 {
2523 struct mtk_tx_ring *ring = ð->tx_ring;
2524 struct mtk_tx_buf *tx_buf;
2525 struct xdp_frame_bulk bq;
2526 struct mtk_tx_dma *desc;
2527 u32 cpu, dma;
2528
2529 cpu = ring->cpu_idx;
2530 dma = mtk_r32(eth, MT7628_TX_DTX_IDX0);
2531 xdp_frame_bulk_init(&bq);
2532
2533 while ((cpu != dma) && budget) {
2534 tx_buf = &ring->buf[cpu];
2535 if (!tx_buf->data)
2536 break;
2537
2538 if (tx_buf->data != (void *)MTK_DMA_DUMMY_DESC) {
2539 if (tx_buf->type == MTK_TYPE_SKB)
2540 mtk_poll_tx_done(eth, state, 0, tx_buf->data);
2541 budget--;
2542 }
2543 mtk_tx_unmap(eth, tx_buf, &bq, true);
2544
2545 desc = ring->dma + cpu * eth->soc->tx.desc_size;
2546 ring->last_free = desc;
2547 atomic_inc(&ring->free_count);
2548
2549 cpu = NEXT_DESP_IDX(cpu, ring->dma_size);
2550 }
2551 xdp_flush_frame_bulk(&bq);
2552
2553 ring->cpu_idx = cpu;
2554
2555 return budget;
2556 }
2557
mtk_poll_tx(struct mtk_eth * eth,int budget)2558 static int mtk_poll_tx(struct mtk_eth *eth, int budget)
2559 {
2560 struct mtk_tx_ring *ring = ð->tx_ring;
2561 struct dim_sample dim_sample = {};
2562 struct mtk_poll_state state = {};
2563
2564 if (MTK_HAS_CAPS(eth->soc->caps, MTK_QDMA))
2565 budget = mtk_poll_tx_qdma(eth, budget, &state);
2566 else
2567 budget = mtk_poll_tx_pdma(eth, budget, &state);
2568
2569 if (state.txq)
2570 netdev_tx_completed_queue(state.txq, state.done, state.bytes);
2571
2572 dim_update_sample(eth->tx_events, eth->tx_packets, eth->tx_bytes,
2573 &dim_sample);
2574 net_dim(ð->tx_dim, &dim_sample);
2575
2576 if (mtk_queue_stopped(eth) &&
2577 (atomic_read(&ring->free_count) > ring->thresh))
2578 mtk_wake_queue(eth);
2579
2580 return state.total;
2581 }
2582
mtk_handle_status_irq(struct mtk_eth * eth)2583 static void mtk_handle_status_irq(struct mtk_eth *eth)
2584 {
2585 u32 status2 = mtk_r32(eth, MTK_INT_STATUS2);
2586
2587 if (unlikely(status2 & (MTK_GDM1_AF | MTK_GDM2_AF))) {
2588 mtk_stats_update(eth);
2589 mtk_w32(eth, (MTK_GDM1_AF | MTK_GDM2_AF),
2590 MTK_INT_STATUS2);
2591 }
2592 }
2593
mtk_napi_tx(struct napi_struct * napi,int budget)2594 static int mtk_napi_tx(struct napi_struct *napi, int budget)
2595 {
2596 struct mtk_eth *eth = container_of(napi, struct mtk_eth, tx_napi);
2597 const struct mtk_reg_map *reg_map = eth->soc->reg_map;
2598 int tx_done = 0;
2599
2600 if (MTK_HAS_CAPS(eth->soc->caps, MTK_QDMA))
2601 mtk_handle_status_irq(eth);
2602 mtk_w32(eth, MTK_TX_DONE_INT, reg_map->tx_irq_status);
2603 tx_done = mtk_poll_tx(eth, budget);
2604
2605 if (unlikely(netif_msg_intr(eth))) {
2606 dev_info(eth->dev,
2607 "done tx %d, intr 0x%08x/0x%x\n", tx_done,
2608 mtk_r32(eth, reg_map->tx_irq_status),
2609 mtk_r32(eth, reg_map->tx_irq_mask));
2610 }
2611
2612 if (tx_done == budget)
2613 return budget;
2614
2615 if (mtk_r32(eth, reg_map->tx_irq_status) & MTK_TX_DONE_INT)
2616 return budget;
2617
2618 if (napi_complete_done(napi, tx_done))
2619 mtk_tx_irq_enable(eth, MTK_TX_DONE_INT);
2620
2621 return tx_done;
2622 }
2623
mtk_napi_rx(struct napi_struct * napi,int budget)2624 static int mtk_napi_rx(struct napi_struct *napi, int budget)
2625 {
2626 struct mtk_eth *eth = container_of(napi, struct mtk_eth, rx_napi);
2627 const struct mtk_reg_map *reg_map = eth->soc->reg_map;
2628 int rx_done_total = 0;
2629
2630 mtk_handle_status_irq(eth);
2631
2632 do {
2633 int rx_done;
2634
2635 mtk_w32(eth, eth->soc->rx.irq_done_mask,
2636 reg_map->pdma.irq_status);
2637 rx_done = mtk_poll_rx(napi, budget - rx_done_total, eth);
2638 rx_done_total += rx_done;
2639
2640 if (unlikely(netif_msg_intr(eth))) {
2641 dev_info(eth->dev,
2642 "done rx %d, intr 0x%08x/0x%x\n", rx_done,
2643 mtk_r32(eth, reg_map->pdma.irq_status),
2644 mtk_r32(eth, reg_map->pdma.irq_mask));
2645 }
2646
2647 if (rx_done_total == budget)
2648 return budget;
2649
2650 } while (mtk_r32(eth, reg_map->pdma.irq_status) &
2651 eth->soc->rx.irq_done_mask);
2652
2653 if (napi_complete_done(napi, rx_done_total))
2654 mtk_rx_irq_enable(eth, eth->soc->rx.irq_done_mask);
2655
2656 return rx_done_total;
2657 }
2658
mtk_tx_alloc(struct mtk_eth * eth)2659 static int mtk_tx_alloc(struct mtk_eth *eth)
2660 {
2661 const struct mtk_soc_data *soc = eth->soc;
2662 struct mtk_tx_ring *ring = ð->tx_ring;
2663 int i, sz = soc->tx.desc_size;
2664 struct mtk_tx_dma_v2 *txd;
2665 int ring_size;
2666 u32 ofs, val;
2667
2668 if (MTK_HAS_CAPS(soc->caps, MTK_QDMA))
2669 ring_size = MTK_QDMA_RING_SIZE;
2670 else
2671 ring_size = soc->tx.dma_size;
2672
2673 ring->buf = kzalloc_objs(*ring->buf, ring_size);
2674 if (!ring->buf)
2675 goto no_tx_mem;
2676
2677 ring->dma = mtk_dma_ring_alloc(eth, ring_size * sz, &ring->phys, true);
2678 if (!ring->dma)
2679 goto no_tx_mem;
2680
2681 for (i = 0; i < ring_size; i++) {
2682 int next = (i + 1) % ring_size;
2683 u32 next_ptr = ring->phys + next * sz;
2684
2685 txd = ring->dma + i * sz;
2686 txd->txd2 = next_ptr;
2687 txd->txd3 = TX_DMA_LS0 | TX_DMA_OWNER_CPU;
2688 txd->txd4 = 0;
2689 if (mtk_is_netsys_v2_or_greater(eth)) {
2690 txd->txd5 = 0;
2691 txd->txd6 = 0;
2692 txd->txd7 = 0;
2693 txd->txd8 = 0;
2694 }
2695 }
2696
2697 /* On MT7688 (PDMA only) this driver uses the ring->dma structs
2698 * only as the framework. The real HW descriptors are the PDMA
2699 * descriptors in ring->dma_pdma.
2700 */
2701 if (!MTK_HAS_CAPS(soc->caps, MTK_QDMA)) {
2702 ring->dma_pdma = dma_alloc_coherent(eth->dma_dev, ring_size * sz,
2703 &ring->phys_pdma, GFP_KERNEL);
2704 if (!ring->dma_pdma)
2705 goto no_tx_mem;
2706
2707 for (i = 0; i < ring_size; i++) {
2708 ring->dma_pdma[i].txd2 = TX_DMA_DESP2_DEF;
2709 ring->dma_pdma[i].txd4 = 0;
2710 }
2711 }
2712
2713 ring->dma_size = ring_size;
2714 atomic_set(&ring->free_count, ring_size - 2);
2715 ring->next_free = ring->dma;
2716 ring->last_free = (void *)txd;
2717 ring->last_free_ptr = (u32)(ring->phys + ((ring_size - 1) * sz));
2718 ring->thresh = MAX_SKB_FRAGS;
2719
2720 /* make sure that all changes to the dma ring are flushed before we
2721 * continue
2722 */
2723 wmb();
2724
2725 if (MTK_HAS_CAPS(soc->caps, MTK_QDMA)) {
2726 mtk_w32(eth, ring->phys, soc->reg_map->qdma.ctx_ptr);
2727 mtk_w32(eth, ring->phys, soc->reg_map->qdma.dtx_ptr);
2728 mtk_w32(eth,
2729 ring->phys + ((ring_size - 1) * sz),
2730 soc->reg_map->qdma.crx_ptr);
2731 mtk_w32(eth, ring->last_free_ptr, soc->reg_map->qdma.drx_ptr);
2732
2733 for (i = 0, ofs = 0; i < MTK_QDMA_NUM_QUEUES; i++) {
2734 val = (QDMA_RES_THRES << 8) | QDMA_RES_THRES;
2735 mtk_w32(eth, val, soc->reg_map->qdma.qtx_cfg + ofs);
2736
2737 val = MTK_QTX_SCH_MIN_RATE_EN |
2738 /* minimum: 10 Mbps */
2739 FIELD_PREP(MTK_QTX_SCH_MIN_RATE_MAN, 1) |
2740 FIELD_PREP(MTK_QTX_SCH_MIN_RATE_EXP, 4) |
2741 MTK_QTX_SCH_LEAKY_BUCKET_SIZE;
2742 if (mtk_is_netsys_v1(eth))
2743 val |= MTK_QTX_SCH_LEAKY_BUCKET_EN;
2744 mtk_w32(eth, val, soc->reg_map->qdma.qtx_sch + ofs);
2745 ofs += MTK_QTX_OFFSET;
2746 }
2747 val = MTK_QDMA_TX_SCH_MAX_WFQ | (MTK_QDMA_TX_SCH_MAX_WFQ << 16);
2748 mtk_w32(eth, val, soc->reg_map->qdma.tx_sch_rate);
2749 if (mtk_is_netsys_v2_or_greater(eth))
2750 mtk_w32(eth, val, soc->reg_map->qdma.tx_sch_rate + 4);
2751 } else {
2752 mtk_w32(eth, ring->phys_pdma, MT7628_TX_BASE_PTR0);
2753 mtk_w32(eth, ring_size, MT7628_TX_MAX_CNT0);
2754 mtk_w32(eth, 0, MT7628_TX_CTX_IDX0);
2755 mtk_w32(eth, MT7628_PST_DTX_IDX0, soc->reg_map->pdma.rst_idx);
2756 }
2757
2758 return 0;
2759
2760 no_tx_mem:
2761 return -ENOMEM;
2762 }
2763
mtk_tx_clean(struct mtk_eth * eth)2764 static void mtk_tx_clean(struct mtk_eth *eth)
2765 {
2766 const struct mtk_soc_data *soc = eth->soc;
2767 struct mtk_tx_ring *ring = ð->tx_ring;
2768 int i;
2769
2770 if (ring->buf) {
2771 for (i = 0; i < ring->dma_size; i++)
2772 mtk_tx_unmap(eth, &ring->buf[i], NULL, false);
2773 kfree(ring->buf);
2774 ring->buf = NULL;
2775 }
2776
2777 if (ring->dma) {
2778 mtk_dma_ring_free(eth, ring->dma_size * soc->tx.desc_size,
2779 ring->dma, ring->phys, true);
2780 ring->dma = NULL;
2781 }
2782
2783 if (ring->dma_pdma) {
2784 dma_free_coherent(eth->dma_dev,
2785 ring->dma_size * soc->tx.desc_size,
2786 ring->dma_pdma, ring->phys_pdma);
2787 ring->dma_pdma = NULL;
2788 }
2789 }
2790
mtk_rx_alloc(struct mtk_eth * eth,int ring_no,int rx_flag)2791 static int mtk_rx_alloc(struct mtk_eth *eth, int ring_no, int rx_flag)
2792 {
2793 const struct mtk_reg_map *reg_map = eth->soc->reg_map;
2794 const struct mtk_soc_data *soc = eth->soc;
2795 struct mtk_rx_ring *ring;
2796 int rx_data_len, rx_dma_size;
2797 int i;
2798
2799 if (rx_flag == MTK_RX_FLAGS_QDMA) {
2800 if (ring_no)
2801 return -EINVAL;
2802 ring = ð->rx_ring_qdma;
2803 } else {
2804 ring = ð->rx_ring[ring_no];
2805 }
2806
2807 if (rx_flag == MTK_RX_FLAGS_HWLRO) {
2808 rx_data_len = MTK_MAX_LRO_RX_LENGTH;
2809 rx_dma_size = MTK_HW_LRO_DMA_SIZE;
2810 } else {
2811 rx_data_len = ETH_DATA_LEN;
2812 rx_dma_size = soc->rx.dma_size;
2813 }
2814
2815 ring->frag_size = mtk_max_frag_size(rx_data_len);
2816 ring->buf_size = mtk_max_buf_size(ring->frag_size);
2817 ring->data = kcalloc(rx_dma_size, sizeof(*ring->data),
2818 GFP_KERNEL);
2819 if (!ring->data)
2820 return -ENOMEM;
2821
2822 if (mtk_page_pool_enabled(eth)) {
2823 struct page_pool *pp;
2824
2825 pp = mtk_create_page_pool(eth, &ring->xdp_q, ring_no,
2826 rx_dma_size);
2827 if (IS_ERR(pp))
2828 return PTR_ERR(pp);
2829
2830 ring->page_pool = pp;
2831 }
2832
2833 ring->dma = mtk_dma_ring_alloc(eth,
2834 rx_dma_size * eth->soc->rx.desc_size,
2835 &ring->phys,
2836 rx_flag == MTK_RX_FLAGS_NORMAL);
2837 if (!ring->dma)
2838 return -ENOMEM;
2839
2840 for (i = 0; i < rx_dma_size; i++) {
2841 struct mtk_rx_dma_v2 *rxd;
2842 dma_addr_t dma_addr;
2843 void *data;
2844
2845 rxd = ring->dma + i * eth->soc->rx.desc_size;
2846 if (ring->page_pool) {
2847 data = mtk_page_pool_get_buff(ring->page_pool,
2848 &dma_addr, GFP_KERNEL);
2849 if (!data)
2850 return -ENOMEM;
2851 } else {
2852 if (ring->frag_size <= PAGE_SIZE)
2853 data = netdev_alloc_frag(ring->frag_size);
2854 else
2855 data = mtk_max_lro_buf_alloc(GFP_KERNEL);
2856
2857 if (!data)
2858 return -ENOMEM;
2859
2860 dma_addr = dma_map_single(eth->dma_dev,
2861 data + NET_SKB_PAD + eth->ip_align,
2862 ring->buf_size, DMA_FROM_DEVICE);
2863 if (unlikely(dma_mapping_error(eth->dma_dev,
2864 dma_addr))) {
2865 skb_free_frag(data);
2866 return -ENOMEM;
2867 }
2868 }
2869 rxd->rxd1 = (unsigned int)dma_addr;
2870 ring->data[i] = data;
2871
2872 if (MTK_HAS_CAPS(eth->soc->caps, MTK_SOC_MT7628))
2873 rxd->rxd2 = RX_DMA_LSO;
2874 else
2875 rxd->rxd2 = RX_DMA_PREP_PLEN0(ring->buf_size);
2876
2877 if (MTK_HAS_CAPS(eth->soc->caps, MTK_36BIT_DMA))
2878 rxd->rxd2 |= RX_DMA_PREP_ADDR64(dma_addr);
2879
2880 rxd->rxd3 = 0;
2881 rxd->rxd4 = 0;
2882 if (mtk_is_netsys_v3_or_greater(eth)) {
2883 rxd->rxd5 = 0;
2884 rxd->rxd6 = 0;
2885 rxd->rxd7 = 0;
2886 rxd->rxd8 = 0;
2887 }
2888 }
2889
2890 ring->dma_size = rx_dma_size;
2891 ring->calc_idx_update = false;
2892 ring->calc_idx = rx_dma_size - 1;
2893 if (rx_flag == MTK_RX_FLAGS_QDMA)
2894 ring->crx_idx_reg = reg_map->qdma.qcrx_ptr +
2895 ring_no * MTK_QRX_OFFSET;
2896 else
2897 ring->crx_idx_reg = reg_map->pdma.pcrx_ptr +
2898 ring_no * MTK_QRX_OFFSET;
2899 /* make sure that all changes to the dma ring are flushed before we
2900 * continue
2901 */
2902 wmb();
2903
2904 if (rx_flag == MTK_RX_FLAGS_QDMA) {
2905 mtk_w32(eth, ring->phys,
2906 reg_map->qdma.rx_ptr + ring_no * MTK_QRX_OFFSET);
2907 mtk_w32(eth, rx_dma_size,
2908 reg_map->qdma.rx_cnt_cfg + ring_no * MTK_QRX_OFFSET);
2909 mtk_w32(eth, MTK_PST_DRX_IDX_CFG(ring_no),
2910 reg_map->qdma.rst_idx);
2911 } else {
2912 mtk_w32(eth, ring->phys,
2913 reg_map->pdma.rx_ptr + ring_no * MTK_QRX_OFFSET);
2914 mtk_w32(eth, rx_dma_size,
2915 reg_map->pdma.rx_cnt_cfg + ring_no * MTK_QRX_OFFSET);
2916 mtk_w32(eth, MTK_PST_DRX_IDX_CFG(ring_no),
2917 reg_map->pdma.rst_idx);
2918 }
2919 mtk_w32(eth, ring->calc_idx, ring->crx_idx_reg);
2920
2921 return 0;
2922 }
2923
mtk_rx_clean(struct mtk_eth * eth,struct mtk_rx_ring * ring,bool in_sram)2924 static void mtk_rx_clean(struct mtk_eth *eth, struct mtk_rx_ring *ring, bool in_sram)
2925 {
2926 u64 addr64 = 0;
2927 int i;
2928
2929 if (ring->data && ring->dma) {
2930 for (i = 0; i < ring->dma_size; i++) {
2931 struct mtk_rx_dma *rxd;
2932
2933 if (!ring->data[i])
2934 continue;
2935
2936 rxd = ring->dma + i * eth->soc->rx.desc_size;
2937 if (!rxd->rxd1)
2938 continue;
2939
2940 if (MTK_HAS_CAPS(eth->soc->caps, MTK_36BIT_DMA))
2941 addr64 = RX_DMA_GET_ADDR64(rxd->rxd2);
2942
2943 dma_unmap_single(eth->dma_dev, ((u64)rxd->rxd1 | addr64),
2944 ring->buf_size, DMA_FROM_DEVICE);
2945 mtk_rx_put_buff(ring, ring->data[i], false);
2946 }
2947 kfree(ring->data);
2948 ring->data = NULL;
2949 }
2950
2951 if (ring->dma) {
2952 mtk_dma_ring_free(eth, ring->dma_size * eth->soc->rx.desc_size,
2953 ring->dma, ring->phys, in_sram);
2954 ring->dma = NULL;
2955 }
2956
2957 if (ring->page_pool) {
2958 if (xdp_rxq_info_is_reg(&ring->xdp_q))
2959 xdp_rxq_info_unreg(&ring->xdp_q);
2960 page_pool_destroy(ring->page_pool);
2961 ring->page_pool = NULL;
2962 }
2963 }
2964
mtk_hwlro_rx_init(struct mtk_eth * eth)2965 static int mtk_hwlro_rx_init(struct mtk_eth *eth)
2966 {
2967 int i;
2968 u32 ring_ctrl_dw1 = 0, ring_ctrl_dw2 = 0, ring_ctrl_dw3 = 0;
2969 u32 lro_ctrl_dw0 = 0, lro_ctrl_dw3 = 0;
2970
2971 /* set LRO rings to auto-learn modes */
2972 ring_ctrl_dw2 |= MTK_RING_AUTO_LERAN_MODE;
2973
2974 /* validate LRO ring */
2975 ring_ctrl_dw2 |= MTK_RING_VLD;
2976
2977 /* set AGE timer (unit: 20us) */
2978 ring_ctrl_dw2 |= MTK_RING_AGE_TIME_H;
2979 ring_ctrl_dw1 |= MTK_RING_AGE_TIME_L;
2980
2981 /* set max AGG timer (unit: 20us) */
2982 ring_ctrl_dw2 |= MTK_RING_MAX_AGG_TIME;
2983
2984 /* set max LRO AGG count */
2985 ring_ctrl_dw2 |= MTK_RING_MAX_AGG_CNT_L;
2986 ring_ctrl_dw3 |= MTK_RING_MAX_AGG_CNT_H;
2987
2988 for (i = 1; i < MTK_MAX_RX_RING_NUM; i++) {
2989 mtk_w32(eth, ring_ctrl_dw1, MTK_LRO_CTRL_DW1_CFG(i));
2990 mtk_w32(eth, ring_ctrl_dw2, MTK_LRO_CTRL_DW2_CFG(i));
2991 mtk_w32(eth, ring_ctrl_dw3, MTK_LRO_CTRL_DW3_CFG(i));
2992 }
2993
2994 /* IPv4 checksum update enable */
2995 lro_ctrl_dw0 |= MTK_L3_CKS_UPD_EN;
2996
2997 /* switch priority comparison to packet count mode */
2998 lro_ctrl_dw0 |= MTK_LRO_ALT_PKT_CNT_MODE;
2999
3000 /* bandwidth threshold setting */
3001 mtk_w32(eth, MTK_HW_LRO_BW_THRE, MTK_PDMA_LRO_CTRL_DW2);
3002
3003 /* auto-learn score delta setting */
3004 mtk_w32(eth, MTK_HW_LRO_REPLACE_DELTA, MTK_PDMA_LRO_ALT_SCORE_DELTA);
3005
3006 /* set refresh timer for altering flows to 1 sec. (unit: 20us) */
3007 mtk_w32(eth, (MTK_HW_LRO_TIMER_UNIT << 16) | MTK_HW_LRO_REFRESH_TIME,
3008 MTK_PDMA_LRO_ALT_REFRESH_TIMER);
3009
3010 /* set HW LRO mode & the max aggregation count for rx packets */
3011 lro_ctrl_dw3 |= MTK_ADMA_MODE | (MTK_HW_LRO_MAX_AGG_CNT & 0xff);
3012
3013 /* the minimal remaining room of SDL0 in RXD for lro aggregation */
3014 lro_ctrl_dw3 |= MTK_LRO_MIN_RXD_SDL;
3015
3016 /* enable HW LRO */
3017 lro_ctrl_dw0 |= MTK_LRO_EN;
3018
3019 mtk_w32(eth, lro_ctrl_dw3, MTK_PDMA_LRO_CTRL_DW3);
3020 mtk_w32(eth, lro_ctrl_dw0, MTK_PDMA_LRO_CTRL_DW0);
3021
3022 return 0;
3023 }
3024
mtk_hwlro_rx_uninit(struct mtk_eth * eth)3025 static void mtk_hwlro_rx_uninit(struct mtk_eth *eth)
3026 {
3027 int i;
3028 u32 val;
3029
3030 /* relinquish lro rings, flush aggregated packets */
3031 mtk_w32(eth, MTK_LRO_RING_RELINQUISH_REQ, MTK_PDMA_LRO_CTRL_DW0);
3032
3033 /* wait for relinquishments done */
3034 for (i = 0; i < 10; i++) {
3035 val = mtk_r32(eth, MTK_PDMA_LRO_CTRL_DW0);
3036 if (val & MTK_LRO_RING_RELINQUISH_DONE) {
3037 msleep(20);
3038 continue;
3039 }
3040 break;
3041 }
3042
3043 /* invalidate lro rings */
3044 for (i = 1; i < MTK_MAX_RX_RING_NUM; i++)
3045 mtk_w32(eth, 0, MTK_LRO_CTRL_DW2_CFG(i));
3046
3047 /* disable HW LRO */
3048 mtk_w32(eth, 0, MTK_PDMA_LRO_CTRL_DW0);
3049 }
3050
mtk_hwlro_val_ipaddr(struct mtk_eth * eth,int idx,__be32 ip)3051 static void mtk_hwlro_val_ipaddr(struct mtk_eth *eth, int idx, __be32 ip)
3052 {
3053 u32 reg_val;
3054
3055 reg_val = mtk_r32(eth, MTK_LRO_CTRL_DW2_CFG(idx));
3056
3057 /* invalidate the IP setting */
3058 mtk_w32(eth, (reg_val & ~MTK_RING_MYIP_VLD), MTK_LRO_CTRL_DW2_CFG(idx));
3059
3060 mtk_w32(eth, ip, MTK_LRO_DIP_DW0_CFG(idx));
3061
3062 /* validate the IP setting */
3063 mtk_w32(eth, (reg_val | MTK_RING_MYIP_VLD), MTK_LRO_CTRL_DW2_CFG(idx));
3064 }
3065
mtk_hwlro_inval_ipaddr(struct mtk_eth * eth,int idx)3066 static void mtk_hwlro_inval_ipaddr(struct mtk_eth *eth, int idx)
3067 {
3068 u32 reg_val;
3069
3070 reg_val = mtk_r32(eth, MTK_LRO_CTRL_DW2_CFG(idx));
3071
3072 /* invalidate the IP setting */
3073 mtk_w32(eth, (reg_val & ~MTK_RING_MYIP_VLD), MTK_LRO_CTRL_DW2_CFG(idx));
3074
3075 mtk_w32(eth, 0, MTK_LRO_DIP_DW0_CFG(idx));
3076 }
3077
mtk_hwlro_get_ip_cnt(struct mtk_mac * mac)3078 static int mtk_hwlro_get_ip_cnt(struct mtk_mac *mac)
3079 {
3080 int cnt = 0;
3081 int i;
3082
3083 for (i = 0; i < MTK_MAX_LRO_IP_CNT; i++) {
3084 if (mac->hwlro_ip[i])
3085 cnt++;
3086 }
3087
3088 return cnt;
3089 }
3090
mtk_hwlro_add_ipaddr(struct net_device * dev,struct ethtool_rxnfc * cmd)3091 static int mtk_hwlro_add_ipaddr(struct net_device *dev,
3092 struct ethtool_rxnfc *cmd)
3093 {
3094 struct ethtool_rx_flow_spec *fsp =
3095 (struct ethtool_rx_flow_spec *)&cmd->fs;
3096 struct mtk_mac *mac = netdev_priv(dev);
3097 struct mtk_eth *eth = mac->hw;
3098 int hwlro_idx;
3099
3100 if ((fsp->flow_type != TCP_V4_FLOW) ||
3101 (!fsp->h_u.tcp_ip4_spec.ip4dst) ||
3102 (fsp->location > 1))
3103 return -EINVAL;
3104
3105 mac->hwlro_ip[fsp->location] = htonl(fsp->h_u.tcp_ip4_spec.ip4dst);
3106 hwlro_idx = (mac->id * MTK_MAX_LRO_IP_CNT) + fsp->location;
3107
3108 mac->hwlro_ip_cnt = mtk_hwlro_get_ip_cnt(mac);
3109
3110 mtk_hwlro_val_ipaddr(eth, hwlro_idx, mac->hwlro_ip[fsp->location]);
3111
3112 return 0;
3113 }
3114
mtk_hwlro_del_ipaddr(struct net_device * dev,struct ethtool_rxnfc * cmd)3115 static int mtk_hwlro_del_ipaddr(struct net_device *dev,
3116 struct ethtool_rxnfc *cmd)
3117 {
3118 struct ethtool_rx_flow_spec *fsp =
3119 (struct ethtool_rx_flow_spec *)&cmd->fs;
3120 struct mtk_mac *mac = netdev_priv(dev);
3121 struct mtk_eth *eth = mac->hw;
3122 int hwlro_idx;
3123
3124 if (fsp->location > 1)
3125 return -EINVAL;
3126
3127 mac->hwlro_ip[fsp->location] = 0;
3128 hwlro_idx = (mac->id * MTK_MAX_LRO_IP_CNT) + fsp->location;
3129
3130 mac->hwlro_ip_cnt = mtk_hwlro_get_ip_cnt(mac);
3131
3132 mtk_hwlro_inval_ipaddr(eth, hwlro_idx);
3133
3134 return 0;
3135 }
3136
mtk_hwlro_netdev_disable(struct net_device * dev)3137 static void mtk_hwlro_netdev_disable(struct net_device *dev)
3138 {
3139 struct mtk_mac *mac = netdev_priv(dev);
3140 struct mtk_eth *eth = mac->hw;
3141 int i, hwlro_idx;
3142
3143 for (i = 0; i < MTK_MAX_LRO_IP_CNT; i++) {
3144 mac->hwlro_ip[i] = 0;
3145 hwlro_idx = (mac->id * MTK_MAX_LRO_IP_CNT) + i;
3146
3147 mtk_hwlro_inval_ipaddr(eth, hwlro_idx);
3148 }
3149
3150 mac->hwlro_ip_cnt = 0;
3151 }
3152
mtk_hwlro_get_fdir_entry(struct net_device * dev,struct ethtool_rxnfc * cmd)3153 static int mtk_hwlro_get_fdir_entry(struct net_device *dev,
3154 struct ethtool_rxnfc *cmd)
3155 {
3156 struct mtk_mac *mac = netdev_priv(dev);
3157 struct ethtool_rx_flow_spec *fsp =
3158 (struct ethtool_rx_flow_spec *)&cmd->fs;
3159
3160 if (fsp->location >= ARRAY_SIZE(mac->hwlro_ip))
3161 return -EINVAL;
3162
3163 /* only tcp dst ipv4 is meaningful, others are meaningless */
3164 fsp->flow_type = TCP_V4_FLOW;
3165 fsp->h_u.tcp_ip4_spec.ip4dst = ntohl(mac->hwlro_ip[fsp->location]);
3166 fsp->m_u.tcp_ip4_spec.ip4dst = 0;
3167
3168 fsp->h_u.tcp_ip4_spec.ip4src = 0;
3169 fsp->m_u.tcp_ip4_spec.ip4src = 0xffffffff;
3170 fsp->h_u.tcp_ip4_spec.psrc = 0;
3171 fsp->m_u.tcp_ip4_spec.psrc = 0xffff;
3172 fsp->h_u.tcp_ip4_spec.pdst = 0;
3173 fsp->m_u.tcp_ip4_spec.pdst = 0xffff;
3174 fsp->h_u.tcp_ip4_spec.tos = 0;
3175 fsp->m_u.tcp_ip4_spec.tos = 0xff;
3176
3177 return 0;
3178 }
3179
mtk_hwlro_get_fdir_all(struct net_device * dev,struct ethtool_rxnfc * cmd,u32 * rule_locs)3180 static int mtk_hwlro_get_fdir_all(struct net_device *dev,
3181 struct ethtool_rxnfc *cmd,
3182 u32 *rule_locs)
3183 {
3184 struct mtk_mac *mac = netdev_priv(dev);
3185 int cnt = 0;
3186 int i;
3187
3188 for (i = 0; i < MTK_MAX_LRO_IP_CNT; i++) {
3189 if (cnt == cmd->rule_cnt)
3190 return -EMSGSIZE;
3191
3192 if (mac->hwlro_ip[i]) {
3193 rule_locs[cnt] = i;
3194 cnt++;
3195 }
3196 }
3197
3198 cmd->rule_cnt = cnt;
3199
3200 return 0;
3201 }
3202
mtk_fix_features(struct net_device * dev,netdev_features_t features)3203 static netdev_features_t mtk_fix_features(struct net_device *dev,
3204 netdev_features_t features)
3205 {
3206 if (!(features & NETIF_F_LRO)) {
3207 struct mtk_mac *mac = netdev_priv(dev);
3208 int ip_cnt = mtk_hwlro_get_ip_cnt(mac);
3209
3210 if (ip_cnt) {
3211 netdev_info(dev, "RX flow is programmed, LRO should keep on\n");
3212
3213 features |= NETIF_F_LRO;
3214 }
3215 }
3216
3217 return features;
3218 }
3219
mtk_set_features(struct net_device * dev,netdev_features_t features)3220 static int mtk_set_features(struct net_device *dev, netdev_features_t features)
3221 {
3222 netdev_features_t diff = dev->features ^ features;
3223
3224 if ((diff & NETIF_F_LRO) && !(features & NETIF_F_LRO))
3225 mtk_hwlro_netdev_disable(dev);
3226
3227 return 0;
3228 }
3229
3230 /* wait for DMA to finish whatever it is doing before we start using it again */
mtk_dma_busy_wait(struct mtk_eth * eth)3231 static int mtk_dma_busy_wait(struct mtk_eth *eth)
3232 {
3233 unsigned int reg;
3234 int ret;
3235 u32 val;
3236
3237 if (MTK_HAS_CAPS(eth->soc->caps, MTK_QDMA))
3238 reg = eth->soc->reg_map->qdma.glo_cfg;
3239 else
3240 reg = eth->soc->reg_map->pdma.glo_cfg;
3241
3242 ret = readx_poll_timeout_atomic(__raw_readl, eth->base + reg, val,
3243 !(val & (MTK_RX_DMA_BUSY | MTK_TX_DMA_BUSY)),
3244 5, MTK_DMA_BUSY_TIMEOUT_US);
3245 if (ret)
3246 dev_err(eth->dev, "DMA init timeout\n");
3247
3248 return ret;
3249 }
3250
mtk_dma_init(struct mtk_eth * eth)3251 static int mtk_dma_init(struct mtk_eth *eth)
3252 {
3253 int err;
3254 u32 i;
3255
3256 if (mtk_dma_busy_wait(eth))
3257 return -EBUSY;
3258
3259 if (MTK_HAS_CAPS(eth->soc->caps, MTK_QDMA)) {
3260 /* QDMA needs scratch memory for internal reordering of the
3261 * descriptors
3262 */
3263 err = mtk_init_fq_dma(eth);
3264 if (err)
3265 return err;
3266 }
3267
3268 err = mtk_tx_alloc(eth);
3269 if (err)
3270 return err;
3271
3272 if (MTK_HAS_CAPS(eth->soc->caps, MTK_QDMA)) {
3273 err = mtk_rx_alloc(eth, 0, MTK_RX_FLAGS_QDMA);
3274 if (err)
3275 return err;
3276 }
3277
3278 err = mtk_rx_alloc(eth, 0, MTK_RX_FLAGS_NORMAL);
3279 if (err)
3280 return err;
3281
3282 if (eth->hwlro) {
3283 for (i = 1; i < MTK_MAX_RX_RING_NUM; i++) {
3284 err = mtk_rx_alloc(eth, i, MTK_RX_FLAGS_HWLRO);
3285 if (err)
3286 return err;
3287 }
3288 err = mtk_hwlro_rx_init(eth);
3289 if (err)
3290 return err;
3291 }
3292
3293 if (MTK_HAS_CAPS(eth->soc->caps, MTK_QDMA)) {
3294 /* Enable random early drop and set drop threshold
3295 * automatically
3296 */
3297 mtk_w32(eth, FC_THRES_DROP_MODE | FC_THRES_DROP_EN |
3298 FC_THRES_MIN, eth->soc->reg_map->qdma.fc_th);
3299 mtk_w32(eth, 0x0, eth->soc->reg_map->qdma.hred);
3300 }
3301
3302 return 0;
3303 }
3304
mtk_dma_free(struct mtk_eth * eth)3305 static void mtk_dma_free(struct mtk_eth *eth)
3306 {
3307 const struct mtk_soc_data *soc = eth->soc;
3308 int i, j, txqs = 1;
3309
3310 if (MTK_HAS_CAPS(eth->soc->caps, MTK_QDMA))
3311 txqs = MTK_QDMA_NUM_QUEUES;
3312
3313 for (i = 0; i < MTK_MAX_DEVS; i++) {
3314 if (!eth->netdev[i])
3315 continue;
3316
3317 for (j = 0; j < txqs; j++)
3318 netdev_tx_reset_subqueue(eth->netdev[i], j);
3319 }
3320
3321 if (eth->scratch_ring) {
3322 mtk_dma_ring_free(eth, soc->tx.fq_dma_size * soc->tx.desc_size,
3323 eth->scratch_ring, eth->phy_scratch_ring,
3324 true);
3325 eth->scratch_ring = NULL;
3326 eth->phy_scratch_ring = 0;
3327 }
3328
3329 mtk_tx_clean(eth);
3330 mtk_rx_clean(eth, ð->rx_ring[0], true);
3331 mtk_rx_clean(eth, ð->rx_ring_qdma, false);
3332
3333 if (eth->hwlro) {
3334 mtk_hwlro_rx_uninit(eth);
3335 for (i = 1; i < MTK_MAX_RX_RING_NUM; i++)
3336 mtk_rx_clean(eth, ð->rx_ring[i], false);
3337 }
3338
3339 for (i = 0; i < DIV_ROUND_UP(soc->tx.fq_dma_size, MTK_FQ_DMA_LENGTH); i++) {
3340 kfree(eth->scratch_head[i]);
3341 eth->scratch_head[i] = NULL;
3342 }
3343 }
3344
mtk_hw_reset_check(struct mtk_eth * eth)3345 static bool mtk_hw_reset_check(struct mtk_eth *eth)
3346 {
3347 u32 val = mtk_r32(eth, MTK_INT_STATUS2);
3348
3349 return (val & MTK_FE_INT_FQ_EMPTY) || (val & MTK_FE_INT_RFIFO_UF) ||
3350 (val & MTK_FE_INT_RFIFO_OV) || (val & MTK_FE_INT_TSO_FAIL) ||
3351 (val & MTK_FE_INT_TSO_ALIGN) || (val & MTK_FE_INT_TSO_ILLEGAL);
3352 }
3353
mtk_tx_timeout(struct net_device * dev,unsigned int txqueue)3354 static void mtk_tx_timeout(struct net_device *dev, unsigned int txqueue)
3355 {
3356 struct mtk_mac *mac = netdev_priv(dev);
3357 struct mtk_eth *eth = mac->hw;
3358
3359 if (test_bit(MTK_RESETTING, ð->state))
3360 return;
3361
3362 if (!mtk_hw_reset_check(eth))
3363 return;
3364
3365 eth->netdev[mac->id]->stats.tx_errors++;
3366 netif_err(eth, tx_err, dev, "transmit timed out\n");
3367
3368 schedule_work(ð->pending_work);
3369 }
3370
mtk_get_irqs(struct platform_device * pdev,struct mtk_eth * eth)3371 static int mtk_get_irqs(struct platform_device *pdev, struct mtk_eth *eth)
3372 {
3373 int i;
3374
3375 /* future SoCs beginning with MT7988 should use named IRQs in dts */
3376 eth->irq[MTK_FE_IRQ_TX] = platform_get_irq_byname_optional(pdev, "fe1");
3377 eth->irq[MTK_FE_IRQ_RX] = platform_get_irq_byname_optional(pdev, "fe2");
3378 if (eth->irq[MTK_FE_IRQ_TX] >= 0 && eth->irq[MTK_FE_IRQ_RX] >= 0)
3379 return 0;
3380
3381 /* only use legacy mode if platform_get_irq_byname_optional returned -ENXIO */
3382 if (eth->irq[MTK_FE_IRQ_TX] != -ENXIO)
3383 return dev_err_probe(&pdev->dev, eth->irq[MTK_FE_IRQ_TX],
3384 "Error requesting FE TX IRQ\n");
3385
3386 if (eth->irq[MTK_FE_IRQ_RX] != -ENXIO)
3387 return dev_err_probe(&pdev->dev, eth->irq[MTK_FE_IRQ_RX],
3388 "Error requesting FE RX IRQ\n");
3389
3390 if (!MTK_HAS_CAPS(eth->soc->caps, MTK_SHARED_INT))
3391 dev_warn(&pdev->dev, "legacy DT: missing interrupt-names.");
3392
3393 /* legacy way:
3394 * On MTK_SHARED_INT SoCs (MT7621 + MT7628) the first IRQ is taken
3395 * from devicetree and used for both RX and TX - it is shared.
3396 * On SoCs with non-shared IRQs the first entry is not used,
3397 * the second is for TX, and the third is for RX.
3398 */
3399 for (i = 0; i < MTK_FE_IRQ_NUM; i++) {
3400 if (MTK_HAS_CAPS(eth->soc->caps, MTK_SHARED_INT)) {
3401 if (i == MTK_FE_IRQ_SHARED)
3402 eth->irq[MTK_FE_IRQ_SHARED] = platform_get_irq(pdev, i);
3403 else
3404 eth->irq[i] = eth->irq[MTK_FE_IRQ_SHARED];
3405 } else {
3406 eth->irq[i] = platform_get_irq(pdev, i + 1);
3407 }
3408
3409 if (eth->irq[i] < 0) {
3410 dev_err(&pdev->dev, "no IRQ%d resource found\n", i);
3411 return -ENXIO;
3412 }
3413 }
3414
3415 return 0;
3416 }
3417
mtk_handle_irq_rx(int irq,void * _eth)3418 static irqreturn_t mtk_handle_irq_rx(int irq, void *_eth)
3419 {
3420 struct mtk_eth *eth = _eth;
3421
3422 eth->rx_events++;
3423 if (likely(napi_schedule_prep(ð->rx_napi))) {
3424 mtk_rx_irq_disable(eth, eth->soc->rx.irq_done_mask);
3425 __napi_schedule(ð->rx_napi);
3426 }
3427
3428 return IRQ_HANDLED;
3429 }
3430
mtk_handle_irq_tx(int irq,void * _eth)3431 static irqreturn_t mtk_handle_irq_tx(int irq, void *_eth)
3432 {
3433 struct mtk_eth *eth = _eth;
3434
3435 eth->tx_events++;
3436 if (likely(napi_schedule_prep(ð->tx_napi))) {
3437 mtk_tx_irq_disable(eth, MTK_TX_DONE_INT);
3438 __napi_schedule(ð->tx_napi);
3439 }
3440
3441 return IRQ_HANDLED;
3442 }
3443
mtk_handle_irq(int irq,void * _eth)3444 static irqreturn_t mtk_handle_irq(int irq, void *_eth)
3445 {
3446 struct mtk_eth *eth = _eth;
3447 const struct mtk_reg_map *reg_map = eth->soc->reg_map;
3448
3449 if (mtk_r32(eth, reg_map->pdma.irq_mask) &
3450 eth->soc->rx.irq_done_mask) {
3451 if (mtk_r32(eth, reg_map->pdma.irq_status) &
3452 eth->soc->rx.irq_done_mask)
3453 mtk_handle_irq_rx(irq, _eth);
3454 }
3455 if (mtk_r32(eth, reg_map->tx_irq_mask) & MTK_TX_DONE_INT) {
3456 if (mtk_r32(eth, reg_map->tx_irq_status) & MTK_TX_DONE_INT)
3457 mtk_handle_irq_tx(irq, _eth);
3458 }
3459
3460 return IRQ_HANDLED;
3461 }
3462
3463 #ifdef CONFIG_NET_POLL_CONTROLLER
mtk_poll_controller(struct net_device * dev)3464 static void mtk_poll_controller(struct net_device *dev)
3465 {
3466 struct mtk_mac *mac = netdev_priv(dev);
3467 struct mtk_eth *eth = mac->hw;
3468
3469 mtk_tx_irq_disable(eth, MTK_TX_DONE_INT);
3470 mtk_rx_irq_disable(eth, eth->soc->rx.irq_done_mask);
3471 mtk_handle_irq_rx(eth->irq[MTK_FE_IRQ_RX], eth);
3472 mtk_tx_irq_enable(eth, MTK_TX_DONE_INT);
3473 mtk_rx_irq_enable(eth, eth->soc->rx.irq_done_mask);
3474 }
3475 #endif
3476
mtk_start_dma(struct mtk_eth * eth)3477 static int mtk_start_dma(struct mtk_eth *eth)
3478 {
3479 u32 val, rx_2b_offset = (NET_IP_ALIGN == 2) ? MTK_RX_2B_OFFSET : 0;
3480 const struct mtk_reg_map *reg_map = eth->soc->reg_map;
3481 int err;
3482
3483 err = mtk_dma_init(eth);
3484 if (err) {
3485 mtk_dma_free(eth);
3486 return err;
3487 }
3488
3489 if (MTK_HAS_CAPS(eth->soc->caps, MTK_QDMA)) {
3490 val = mtk_r32(eth, reg_map->qdma.glo_cfg);
3491 val |= MTK_TX_DMA_EN | MTK_RX_DMA_EN |
3492 MTK_TX_BT_32DWORDS | MTK_NDP_CO_PRO |
3493 MTK_RX_2B_OFFSET | MTK_TX_WB_DDONE;
3494
3495 if (mtk_is_netsys_v2_or_greater(eth))
3496 val |= MTK_MUTLI_CNT | MTK_RESV_BUF |
3497 MTK_WCOMP_EN | MTK_DMAD_WR_WDONE |
3498 MTK_CHK_DDONE_EN;
3499 else
3500 val |= MTK_RX_BT_32DWORDS;
3501 mtk_w32(eth, val, reg_map->qdma.glo_cfg);
3502
3503 mtk_w32(eth,
3504 MTK_RX_DMA_EN | rx_2b_offset |
3505 MTK_RX_BT_32DWORDS | MTK_MULTI_EN,
3506 reg_map->pdma.glo_cfg);
3507 } else {
3508 mtk_w32(eth, MTK_TX_WB_DDONE | MTK_TX_DMA_EN | MTK_RX_DMA_EN |
3509 MTK_MULTI_EN | MTK_PDMA_SIZE_8DWORDS,
3510 reg_map->pdma.glo_cfg);
3511 }
3512
3513 return 0;
3514 }
3515
mtk_gdm_config(struct mtk_eth * eth,u32 id,u32 config)3516 static void mtk_gdm_config(struct mtk_eth *eth, u32 id, u32 config)
3517 {
3518 u32 val;
3519
3520 if (MTK_HAS_CAPS(eth->soc->caps, MTK_SOC_MT7628))
3521 return;
3522
3523 val = mtk_r32(eth, MTK_GDMA_FWD_CFG(id));
3524
3525 /* default setup the forward port to send frame to PDMA */
3526 val &= ~0xffff;
3527
3528 /* Enable RX checksum */
3529 val |= MTK_GDMA_ICS_EN | MTK_GDMA_TCS_EN | MTK_GDMA_UCS_EN;
3530
3531 val |= config;
3532
3533 if (eth->netdev[id] && netdev_uses_dsa(eth->netdev[id]))
3534 val |= MTK_GDMA_SPECIAL_TAG;
3535
3536 mtk_w32(eth, val, MTK_GDMA_FWD_CFG(id));
3537 }
3538
3539
mtk_uses_dsa(struct net_device * dev)3540 static bool mtk_uses_dsa(struct net_device *dev)
3541 {
3542 #if IS_ENABLED(CONFIG_NET_DSA)
3543 return netdev_uses_dsa(dev) &&
3544 dev->dsa_ptr->tag_ops->proto == DSA_TAG_PROTO_MTK;
3545 #else
3546 return false;
3547 #endif
3548 }
3549
mtk_device_event(struct notifier_block * n,unsigned long event,void * ptr)3550 static int mtk_device_event(struct notifier_block *n, unsigned long event, void *ptr)
3551 {
3552 struct mtk_mac *mac = container_of(n, struct mtk_mac, device_notifier);
3553 struct mtk_eth *eth = mac->hw;
3554 struct net_device *dev = netdev_notifier_info_to_dev(ptr);
3555 struct ethtool_link_ksettings s;
3556 struct net_device *ldev;
3557 struct list_head *iter;
3558 struct dsa_port *dp;
3559
3560 if (event != NETDEV_CHANGE)
3561 return NOTIFY_DONE;
3562
3563 netdev_for_each_lower_dev(dev, ldev, iter) {
3564 if (netdev_priv(ldev) == mac)
3565 goto found;
3566 }
3567
3568 return NOTIFY_DONE;
3569
3570 found:
3571 if (!dsa_user_dev_check(dev))
3572 return NOTIFY_DONE;
3573
3574 if (__ethtool_get_link_ksettings(dev, &s))
3575 return NOTIFY_DONE;
3576
3577 if (s.base.speed == 0 || s.base.speed == ((__u32)-1))
3578 return NOTIFY_DONE;
3579
3580 dp = dsa_port_from_netdev(dev);
3581 if (dp->index >= MTK_QDMA_NUM_QUEUES)
3582 return NOTIFY_DONE;
3583
3584 if (mac->speed > 0 && mac->speed <= s.base.speed)
3585 s.base.speed = 0;
3586
3587 mtk_set_queue_speed(eth, dp->index + 3, s.base.speed);
3588
3589 return NOTIFY_DONE;
3590 }
3591
mtk_max_gmac_mtu(struct mtk_eth * eth)3592 static int mtk_max_gmac_mtu(struct mtk_eth *eth)
3593 {
3594 int i, max_mtu = ETH_DATA_LEN;
3595
3596 for (i = 0; i < ARRAY_SIZE(eth->netdev); i++)
3597 if (eth->netdev[i] && eth->netdev[i]->mtu > max_mtu)
3598 max_mtu = eth->netdev[i]->mtu;
3599
3600 return max_mtu;
3601 }
3602
mtk_open(struct net_device * dev)3603 static int mtk_open(struct net_device *dev)
3604 {
3605 struct mtk_mac *mac = netdev_priv(dev);
3606 struct mtk_eth *eth = mac->hw;
3607 struct mtk_mac *target_mac;
3608 int i, err, ppe_num, mtu;
3609
3610 ppe_num = eth->soc->ppe_num;
3611
3612 err = phylink_of_phy_connect(mac->phylink, mac->of_node, 0);
3613 if (err) {
3614 netdev_err(dev, "%s: could not attach PHY: %d\n", __func__,
3615 err);
3616 return err;
3617 }
3618
3619 /* we run 2 netdevs on the same dma ring so we only bring it up once */
3620 if (!refcount_read(ð->dma_refcnt)) {
3621 const struct mtk_soc_data *soc = eth->soc;
3622 u32 gdm_config;
3623 int i;
3624
3625 err = mtk_start_dma(eth);
3626 if (err) {
3627 phylink_disconnect_phy(mac->phylink);
3628 return err;
3629 }
3630
3631 for (i = 0; i < ARRAY_SIZE(eth->ppe); i++)
3632 mtk_ppe_start(eth->ppe[i]);
3633
3634 for (i = 0; i < MTK_MAX_DEVS; i++) {
3635 if (!eth->netdev[i])
3636 continue;
3637
3638 target_mac = netdev_priv(eth->netdev[i]);
3639 if (!soc->offload_version) {
3640 target_mac->ppe_idx = 0;
3641 gdm_config = MTK_GDMA_TO_PDMA;
3642 } else if (ppe_num >= 3 && target_mac->id == 2) {
3643 target_mac->ppe_idx = 2;
3644 gdm_config = soc->reg_map->gdma_to_ppe[2];
3645 } else if (ppe_num >= 2 && target_mac->id == 1) {
3646 target_mac->ppe_idx = 1;
3647 gdm_config = soc->reg_map->gdma_to_ppe[1];
3648 } else {
3649 target_mac->ppe_idx = 0;
3650 gdm_config = soc->reg_map->gdma_to_ppe[0];
3651 }
3652 mtk_gdm_config(eth, target_mac->id, gdm_config);
3653 }
3654
3655 mtu = mtk_max_gmac_mtu(eth);
3656 for (i = 0; i < ARRAY_SIZE(eth->ppe); i++)
3657 mtk_ppe_update_mtu(eth->ppe[i], mtu);
3658
3659 napi_enable(ð->tx_napi);
3660 napi_enable(ð->rx_napi);
3661 mtk_tx_irq_enable(eth, MTK_TX_DONE_INT);
3662 mtk_rx_irq_enable(eth, soc->rx.irq_done_mask);
3663 refcount_set(ð->dma_refcnt, 1);
3664 } else {
3665 refcount_inc(ð->dma_refcnt);
3666 }
3667
3668 phylink_start(mac->phylink);
3669 netif_tx_start_all_queues(dev);
3670
3671 if (mtk_is_netsys_v2_or_greater(eth))
3672 return 0;
3673
3674 if (mtk_uses_dsa(dev) && !eth->prog) {
3675 for (i = 0; i < ARRAY_SIZE(eth->dsa_meta); i++) {
3676 struct metadata_dst *md_dst = eth->dsa_meta[i];
3677
3678 if (md_dst)
3679 continue;
3680
3681 md_dst = metadata_dst_alloc(0, METADATA_HW_PORT_MUX,
3682 GFP_KERNEL);
3683 if (!md_dst)
3684 return -ENOMEM;
3685
3686 md_dst->u.port_info.port_id = i;
3687 eth->dsa_meta[i] = md_dst;
3688 }
3689 } else {
3690 /* Hardware DSA untagging and VLAN RX offloading need to be
3691 * disabled if at least one MAC does not use DSA.
3692 */
3693 u32 val = mtk_r32(eth, MTK_CDMP_IG_CTRL);
3694
3695 val &= ~MTK_CDMP_STAG_EN;
3696 mtk_w32(eth, val, MTK_CDMP_IG_CTRL);
3697
3698 mtk_w32(eth, 0, MTK_CDMP_EG_CTRL);
3699 }
3700
3701 return 0;
3702 }
3703
mtk_stop_dma(struct mtk_eth * eth,u32 glo_cfg)3704 static void mtk_stop_dma(struct mtk_eth *eth, u32 glo_cfg)
3705 {
3706 u32 val;
3707 int i;
3708
3709 /* stop the dma engine */
3710 spin_lock_bh(ð->page_lock);
3711 val = mtk_r32(eth, glo_cfg);
3712 mtk_w32(eth, val & ~(MTK_TX_WB_DDONE | MTK_RX_DMA_EN | MTK_TX_DMA_EN),
3713 glo_cfg);
3714 spin_unlock_bh(ð->page_lock);
3715
3716 /* wait for dma stop */
3717 for (i = 0; i < 10; i++) {
3718 val = mtk_r32(eth, glo_cfg);
3719 if (val & (MTK_TX_DMA_BUSY | MTK_RX_DMA_BUSY)) {
3720 msleep(20);
3721 continue;
3722 }
3723 break;
3724 }
3725 }
3726
mtk_stop(struct net_device * dev)3727 static int mtk_stop(struct net_device *dev)
3728 {
3729 struct mtk_mac *mac = netdev_priv(dev);
3730 struct mtk_eth *eth = mac->hw;
3731 int i;
3732
3733 phylink_stop(mac->phylink);
3734
3735 netif_tx_disable(dev);
3736
3737 phylink_disconnect_phy(mac->phylink);
3738
3739 /* only shutdown DMA if this is the last user */
3740 if (!refcount_dec_and_test(ð->dma_refcnt))
3741 return 0;
3742
3743 for (i = 0; i < MTK_MAX_DEVS; i++)
3744 mtk_gdm_config(eth, i, MTK_GDMA_DROP_ALL);
3745
3746 mtk_tx_irq_disable(eth, MTK_TX_DONE_INT);
3747 mtk_rx_irq_disable(eth, eth->soc->rx.irq_done_mask);
3748 napi_disable(ð->tx_napi);
3749 napi_disable(ð->rx_napi);
3750
3751 cancel_work_sync(ð->rx_dim.work);
3752 cancel_work_sync(ð->tx_dim.work);
3753
3754 if (MTK_HAS_CAPS(eth->soc->caps, MTK_QDMA))
3755 mtk_stop_dma(eth, eth->soc->reg_map->qdma.glo_cfg);
3756 mtk_stop_dma(eth, eth->soc->reg_map->pdma.glo_cfg);
3757
3758 mtk_dma_free(eth);
3759
3760 for (i = 0; i < ARRAY_SIZE(eth->ppe); i++)
3761 mtk_ppe_stop(eth->ppe[i]);
3762
3763 return 0;
3764 }
3765
mtk_xdp_setup(struct net_device * dev,struct bpf_prog * prog,struct netlink_ext_ack * extack)3766 static int mtk_xdp_setup(struct net_device *dev, struct bpf_prog *prog,
3767 struct netlink_ext_ack *extack)
3768 {
3769 struct mtk_mac *mac = netdev_priv(dev);
3770 struct mtk_eth *eth = mac->hw;
3771 struct bpf_prog *old_prog;
3772 bool need_update;
3773
3774 if (eth->hwlro) {
3775 NL_SET_ERR_MSG_MOD(extack, "XDP not supported with HWLRO");
3776 return -EOPNOTSUPP;
3777 }
3778
3779 if (dev->mtu > MTK_PP_MAX_BUF_SIZE) {
3780 NL_SET_ERR_MSG_MOD(extack, "MTU too large for XDP");
3781 return -EOPNOTSUPP;
3782 }
3783
3784 need_update = !!eth->prog != !!prog;
3785 if (netif_running(dev) && need_update)
3786 mtk_stop(dev);
3787
3788 old_prog = rcu_replace_pointer(eth->prog, prog, lockdep_rtnl_is_held());
3789
3790 if (netif_running(dev) && need_update) {
3791 int err;
3792
3793 err = mtk_open(dev);
3794 if (err) {
3795 rcu_assign_pointer(eth->prog, old_prog);
3796
3797 return err;
3798 }
3799 }
3800
3801 if (old_prog)
3802 bpf_prog_put(old_prog);
3803
3804 return 0;
3805 }
3806
mtk_xdp(struct net_device * dev,struct netdev_bpf * xdp)3807 static int mtk_xdp(struct net_device *dev, struct netdev_bpf *xdp)
3808 {
3809 switch (xdp->command) {
3810 case XDP_SETUP_PROG:
3811 return mtk_xdp_setup(dev, xdp->prog, xdp->extack);
3812 default:
3813 return -EINVAL;
3814 }
3815 }
3816
ethsys_reset(struct mtk_eth * eth,u32 reset_bits)3817 static void ethsys_reset(struct mtk_eth *eth, u32 reset_bits)
3818 {
3819 regmap_update_bits(eth->ethsys, ETHSYS_RSTCTRL,
3820 reset_bits,
3821 reset_bits);
3822
3823 usleep_range(1000, 1100);
3824 regmap_update_bits(eth->ethsys, ETHSYS_RSTCTRL,
3825 reset_bits,
3826 ~reset_bits);
3827 mdelay(10);
3828 }
3829
mtk_clk_disable(struct mtk_eth * eth)3830 static void mtk_clk_disable(struct mtk_eth *eth)
3831 {
3832 int clk;
3833
3834 for (clk = MTK_CLK_MAX - 1; clk >= 0; clk--)
3835 clk_disable_unprepare(eth->clks[clk]);
3836 }
3837
mtk_clk_enable(struct mtk_eth * eth)3838 static int mtk_clk_enable(struct mtk_eth *eth)
3839 {
3840 int clk, ret;
3841
3842 for (clk = 0; clk < MTK_CLK_MAX ; clk++) {
3843 ret = clk_prepare_enable(eth->clks[clk]);
3844 if (ret)
3845 goto err_disable_clks;
3846 }
3847
3848 return 0;
3849
3850 err_disable_clks:
3851 while (--clk >= 0)
3852 clk_disable_unprepare(eth->clks[clk]);
3853
3854 return ret;
3855 }
3856
mtk_dim_rx(struct work_struct * work)3857 static void mtk_dim_rx(struct work_struct *work)
3858 {
3859 struct dim *dim = container_of(work, struct dim, work);
3860 struct mtk_eth *eth = container_of(dim, struct mtk_eth, rx_dim);
3861 const struct mtk_reg_map *reg_map = eth->soc->reg_map;
3862 struct dim_cq_moder cur_profile;
3863 u32 val, cur;
3864
3865 cur_profile = net_dim_get_rx_moderation(eth->rx_dim.mode,
3866 dim->profile_ix);
3867 spin_lock_bh(ð->dim_lock);
3868
3869 val = mtk_r32(eth, reg_map->pdma.delay_irq);
3870 val &= MTK_PDMA_DELAY_TX_MASK;
3871 val |= MTK_PDMA_DELAY_RX_EN;
3872
3873 cur = min_t(u32, DIV_ROUND_UP(cur_profile.usec, 20), MTK_PDMA_DELAY_PTIME_MASK);
3874 val |= cur << MTK_PDMA_DELAY_RX_PTIME_SHIFT;
3875
3876 cur = min_t(u32, cur_profile.pkts, MTK_PDMA_DELAY_PINT_MASK);
3877 val |= cur << MTK_PDMA_DELAY_RX_PINT_SHIFT;
3878
3879 mtk_w32(eth, val, reg_map->pdma.delay_irq);
3880 if (MTK_HAS_CAPS(eth->soc->caps, MTK_QDMA))
3881 mtk_w32(eth, val, reg_map->qdma.delay_irq);
3882
3883 spin_unlock_bh(ð->dim_lock);
3884
3885 dim->state = DIM_START_MEASURE;
3886 }
3887
mtk_dim_tx(struct work_struct * work)3888 static void mtk_dim_tx(struct work_struct *work)
3889 {
3890 struct dim *dim = container_of(work, struct dim, work);
3891 struct mtk_eth *eth = container_of(dim, struct mtk_eth, tx_dim);
3892 const struct mtk_reg_map *reg_map = eth->soc->reg_map;
3893 struct dim_cq_moder cur_profile;
3894 u32 val, cur;
3895
3896 cur_profile = net_dim_get_tx_moderation(eth->tx_dim.mode,
3897 dim->profile_ix);
3898 spin_lock_bh(ð->dim_lock);
3899
3900 val = mtk_r32(eth, reg_map->pdma.delay_irq);
3901 val &= MTK_PDMA_DELAY_RX_MASK;
3902 val |= MTK_PDMA_DELAY_TX_EN;
3903
3904 cur = min_t(u32, DIV_ROUND_UP(cur_profile.usec, 20), MTK_PDMA_DELAY_PTIME_MASK);
3905 val |= cur << MTK_PDMA_DELAY_TX_PTIME_SHIFT;
3906
3907 cur = min_t(u32, cur_profile.pkts, MTK_PDMA_DELAY_PINT_MASK);
3908 val |= cur << MTK_PDMA_DELAY_TX_PINT_SHIFT;
3909
3910 mtk_w32(eth, val, reg_map->pdma.delay_irq);
3911 if (MTK_HAS_CAPS(eth->soc->caps, MTK_QDMA))
3912 mtk_w32(eth, val, reg_map->qdma.delay_irq);
3913
3914 spin_unlock_bh(ð->dim_lock);
3915
3916 dim->state = DIM_START_MEASURE;
3917 }
3918
mtk_set_mcr_max_rx(struct mtk_mac * mac,u32 val)3919 static void mtk_set_mcr_max_rx(struct mtk_mac *mac, u32 val)
3920 {
3921 struct mtk_eth *eth = mac->hw;
3922 u32 mcr_cur, mcr_new;
3923
3924 if (MTK_HAS_CAPS(eth->soc->caps, MTK_SOC_MT7628))
3925 return;
3926
3927 mcr_cur = mtk_r32(mac->hw, MTK_MAC_MCR(mac->id));
3928 mcr_new = mcr_cur & ~MAC_MCR_MAX_RX_MASK;
3929
3930 if (val <= 1518)
3931 mcr_new |= MAC_MCR_MAX_RX(MAC_MCR_MAX_RX_1518);
3932 else if (val <= 1536)
3933 mcr_new |= MAC_MCR_MAX_RX(MAC_MCR_MAX_RX_1536);
3934 else if (val <= 1552)
3935 mcr_new |= MAC_MCR_MAX_RX(MAC_MCR_MAX_RX_1552);
3936 else
3937 mcr_new |= MAC_MCR_MAX_RX(MAC_MCR_MAX_RX_2048);
3938
3939 if (mcr_new != mcr_cur)
3940 mtk_w32(mac->hw, mcr_new, MTK_MAC_MCR(mac->id));
3941 }
3942
mtk_hw_reset(struct mtk_eth * eth)3943 static void mtk_hw_reset(struct mtk_eth *eth)
3944 {
3945 u32 val;
3946
3947 if (mtk_is_netsys_v2_or_greater(eth))
3948 regmap_write(eth->ethsys, ETHSYS_FE_RST_CHK_IDLE_EN, 0);
3949
3950 if (mtk_is_netsys_v3_or_greater(eth)) {
3951 val = RSTCTRL_PPE0_V3;
3952
3953 if (MTK_HAS_CAPS(eth->soc->caps, MTK_RSTCTRL_PPE1))
3954 val |= RSTCTRL_PPE1_V3;
3955
3956 if (MTK_HAS_CAPS(eth->soc->caps, MTK_RSTCTRL_PPE2))
3957 val |= RSTCTRL_PPE2;
3958
3959 val |= RSTCTRL_WDMA0 | RSTCTRL_WDMA1 | RSTCTRL_WDMA2;
3960 } else if (mtk_is_netsys_v2_or_greater(eth)) {
3961 val = RSTCTRL_PPE0_V2;
3962
3963 if (MTK_HAS_CAPS(eth->soc->caps, MTK_RSTCTRL_PPE1))
3964 val |= RSTCTRL_PPE1;
3965 } else {
3966 val = RSTCTRL_PPE0;
3967 }
3968
3969 ethsys_reset(eth, RSTCTRL_ETH | RSTCTRL_FE | val);
3970
3971 if (mtk_is_netsys_v3_or_greater(eth))
3972 regmap_write(eth->ethsys, ETHSYS_FE_RST_CHK_IDLE_EN,
3973 0x6f8ff);
3974 else if (mtk_is_netsys_v2_or_greater(eth))
3975 regmap_write(eth->ethsys, ETHSYS_FE_RST_CHK_IDLE_EN,
3976 0x3ffffff);
3977 }
3978
mtk_hw_reset_read(struct mtk_eth * eth)3979 static u32 mtk_hw_reset_read(struct mtk_eth *eth)
3980 {
3981 u32 val;
3982
3983 regmap_read(eth->ethsys, ETHSYS_RSTCTRL, &val);
3984 return val;
3985 }
3986
mtk_hw_warm_reset(struct mtk_eth * eth)3987 static void mtk_hw_warm_reset(struct mtk_eth *eth)
3988 {
3989 u32 rst_mask, val;
3990
3991 regmap_update_bits(eth->ethsys, ETHSYS_RSTCTRL, RSTCTRL_FE,
3992 RSTCTRL_FE);
3993 if (readx_poll_timeout_atomic(mtk_hw_reset_read, eth, val,
3994 val & RSTCTRL_FE, 1, 1000)) {
3995 dev_err(eth->dev, "warm reset failed\n");
3996 mtk_hw_reset(eth);
3997 return;
3998 }
3999
4000 if (mtk_is_netsys_v3_or_greater(eth)) {
4001 rst_mask = RSTCTRL_ETH | RSTCTRL_PPE0_V3;
4002 if (MTK_HAS_CAPS(eth->soc->caps, MTK_RSTCTRL_PPE1))
4003 rst_mask |= RSTCTRL_PPE1_V3;
4004 if (MTK_HAS_CAPS(eth->soc->caps, MTK_RSTCTRL_PPE2))
4005 rst_mask |= RSTCTRL_PPE2;
4006
4007 rst_mask |= RSTCTRL_WDMA0 | RSTCTRL_WDMA1 | RSTCTRL_WDMA2;
4008 } else if (mtk_is_netsys_v2_or_greater(eth)) {
4009 rst_mask = RSTCTRL_ETH | RSTCTRL_PPE0_V2;
4010 if (MTK_HAS_CAPS(eth->soc->caps, MTK_RSTCTRL_PPE1))
4011 rst_mask |= RSTCTRL_PPE1;
4012 } else {
4013 rst_mask = RSTCTRL_ETH | RSTCTRL_PPE0;
4014 }
4015
4016 regmap_update_bits(eth->ethsys, ETHSYS_RSTCTRL, rst_mask, rst_mask);
4017
4018 udelay(1);
4019 val = mtk_hw_reset_read(eth);
4020 if (!(val & rst_mask))
4021 dev_err(eth->dev, "warm reset stage0 failed %08x (%08x)\n",
4022 val, rst_mask);
4023
4024 rst_mask |= RSTCTRL_FE;
4025 regmap_update_bits(eth->ethsys, ETHSYS_RSTCTRL, rst_mask, ~rst_mask);
4026
4027 udelay(1);
4028 val = mtk_hw_reset_read(eth);
4029 if (val & rst_mask)
4030 dev_err(eth->dev, "warm reset stage1 failed %08x (%08x)\n",
4031 val, rst_mask);
4032 }
4033
mtk_hw_check_dma_hang(struct mtk_eth * eth)4034 static bool mtk_hw_check_dma_hang(struct mtk_eth *eth)
4035 {
4036 const struct mtk_reg_map *reg_map = eth->soc->reg_map;
4037 bool gmac1_tx, gmac2_tx, gdm1_tx, gdm2_tx;
4038 bool oq_hang, cdm1_busy, adma_busy;
4039 bool wtx_busy, cdm_full, oq_free;
4040 u32 wdidx, val, gdm1_fc, gdm2_fc;
4041 bool qfsm_hang, qfwd_hang;
4042 bool ret = false;
4043
4044 if (MTK_HAS_CAPS(eth->soc->caps, MTK_SOC_MT7628))
4045 return false;
4046
4047 /* WDMA sanity checks */
4048 wdidx = mtk_r32(eth, reg_map->wdma_base[0] + 0xc);
4049
4050 val = mtk_r32(eth, reg_map->wdma_base[0] + 0x204);
4051 wtx_busy = FIELD_GET(MTK_TX_DMA_BUSY, val);
4052
4053 val = mtk_r32(eth, reg_map->wdma_base[0] + 0x230);
4054 cdm_full = !FIELD_GET(MTK_CDM_TXFIFO_RDY, val);
4055
4056 oq_free = (!(mtk_r32(eth, reg_map->pse_oq_sta) & GENMASK(24, 16)) &&
4057 !(mtk_r32(eth, reg_map->pse_oq_sta + 0x4) & GENMASK(8, 0)) &&
4058 !(mtk_r32(eth, reg_map->pse_oq_sta + 0x10) & GENMASK(24, 16)));
4059
4060 if (wdidx == eth->reset.wdidx && wtx_busy && cdm_full && oq_free) {
4061 if (++eth->reset.wdma_hang_count > 2) {
4062 eth->reset.wdma_hang_count = 0;
4063 ret = true;
4064 }
4065 goto out;
4066 }
4067
4068 /* QDMA sanity checks */
4069 qfsm_hang = !!mtk_r32(eth, reg_map->qdma.qtx_cfg + 0x234);
4070 qfwd_hang = !mtk_r32(eth, reg_map->qdma.qtx_cfg + 0x308);
4071
4072 gdm1_tx = FIELD_GET(GENMASK(31, 16), mtk_r32(eth, MTK_FE_GDM1_FSM)) > 0;
4073 gdm2_tx = FIELD_GET(GENMASK(31, 16), mtk_r32(eth, MTK_FE_GDM2_FSM)) > 0;
4074 gmac1_tx = FIELD_GET(GENMASK(31, 24), mtk_r32(eth, MTK_MAC_FSM(0))) != 1;
4075 gmac2_tx = FIELD_GET(GENMASK(31, 24), mtk_r32(eth, MTK_MAC_FSM(1))) != 1;
4076 gdm1_fc = mtk_r32(eth, reg_map->gdm1_cnt + 0x24);
4077 gdm2_fc = mtk_r32(eth, reg_map->gdm1_cnt + 0x64);
4078
4079 if (qfsm_hang && qfwd_hang &&
4080 ((gdm1_tx && gmac1_tx && gdm1_fc < 1) ||
4081 (gdm2_tx && gmac2_tx && gdm2_fc < 1))) {
4082 if (++eth->reset.qdma_hang_count > 2) {
4083 eth->reset.qdma_hang_count = 0;
4084 ret = true;
4085 }
4086 goto out;
4087 }
4088
4089 /* ADMA sanity checks */
4090 oq_hang = !!(mtk_r32(eth, reg_map->pse_oq_sta) & GENMASK(8, 0));
4091 cdm1_busy = !!(mtk_r32(eth, MTK_FE_CDM1_FSM) & GENMASK(31, 16));
4092 adma_busy = !(mtk_r32(eth, reg_map->pdma.adma_rx_dbg0) & GENMASK(4, 0)) &&
4093 !(mtk_r32(eth, reg_map->pdma.adma_rx_dbg0) & BIT(6));
4094
4095 if (oq_hang && cdm1_busy && adma_busy) {
4096 if (++eth->reset.adma_hang_count > 2) {
4097 eth->reset.adma_hang_count = 0;
4098 ret = true;
4099 }
4100 goto out;
4101 }
4102
4103 eth->reset.wdma_hang_count = 0;
4104 eth->reset.qdma_hang_count = 0;
4105 eth->reset.adma_hang_count = 0;
4106 out:
4107 eth->reset.wdidx = wdidx;
4108
4109 return ret;
4110 }
4111
mtk_hw_reset_monitor_work(struct work_struct * work)4112 static void mtk_hw_reset_monitor_work(struct work_struct *work)
4113 {
4114 struct delayed_work *del_work = to_delayed_work(work);
4115 struct mtk_eth *eth = container_of(del_work, struct mtk_eth,
4116 reset.monitor_work);
4117
4118 if (test_bit(MTK_RESETTING, ð->state))
4119 goto out;
4120
4121 /* DMA stuck checks */
4122 if (mtk_hw_check_dma_hang(eth))
4123 schedule_work(ð->pending_work);
4124
4125 out:
4126 schedule_delayed_work(ð->reset.monitor_work,
4127 MTK_DMA_MONITOR_TIMEOUT);
4128 }
4129
mtk_hw_init(struct mtk_eth * eth,bool reset)4130 static int mtk_hw_init(struct mtk_eth *eth, bool reset)
4131 {
4132 u32 dma_mask = ETHSYS_DMA_AG_MAP_PDMA | ETHSYS_DMA_AG_MAP_QDMA |
4133 ETHSYS_DMA_AG_MAP_PPE;
4134 const struct mtk_reg_map *reg_map = eth->soc->reg_map;
4135 int i, val, ret;
4136
4137 if (!reset && test_and_set_bit(MTK_HW_INIT, ð->state))
4138 return 0;
4139
4140 if (!reset) {
4141 pm_runtime_enable(eth->dev);
4142 pm_runtime_get_sync(eth->dev);
4143
4144 ret = mtk_clk_enable(eth);
4145 if (ret)
4146 goto err_disable_pm;
4147 }
4148
4149 if (eth->ethsys)
4150 regmap_update_bits(eth->ethsys, ETHSYS_DMA_AG_MAP, dma_mask,
4151 of_dma_is_coherent(eth->dma_dev->of_node) * dma_mask);
4152
4153 if (MTK_HAS_CAPS(eth->soc->caps, MTK_SOC_MT7628)) {
4154 ret = device_reset(eth->dev);
4155 if (ret) {
4156 dev_err(eth->dev, "MAC reset failed!\n");
4157 goto err_disable_pm;
4158 }
4159
4160 /* set interrupt delays based on current Net DIM sample */
4161 mtk_dim_rx(ð->rx_dim.work);
4162 mtk_dim_tx(ð->tx_dim.work);
4163
4164 /* disable delay and normal interrupt */
4165 mtk_tx_irq_disable(eth, ~0);
4166 mtk_rx_irq_disable(eth, ~0);
4167
4168 return 0;
4169 }
4170
4171 msleep(100);
4172
4173 if (reset)
4174 mtk_hw_warm_reset(eth);
4175 else
4176 mtk_hw_reset(eth);
4177
4178 /* No MT7628/88 support yet */
4179 if (reset && !MTK_HAS_CAPS(eth->soc->caps, MTK_SOC_MT7628))
4180 mtk_mdio_config(eth);
4181
4182 if (mtk_is_netsys_v3_or_greater(eth)) {
4183 /* Set FE to PDMAv2 if necessary */
4184 val = mtk_r32(eth, MTK_FE_GLO_MISC);
4185 mtk_w32(eth, val | BIT(4), MTK_FE_GLO_MISC);
4186 }
4187
4188 if (eth->pctl) {
4189 /* Set GE2 driving and slew rate */
4190 regmap_write(eth->pctl, GPIO_DRV_SEL10, 0xa00);
4191
4192 /* set GE2 TDSEL */
4193 regmap_write(eth->pctl, GPIO_OD33_CTRL8, 0x5);
4194
4195 /* set GE2 TUNE */
4196 regmap_write(eth->pctl, GPIO_BIAS_CTRL, 0x0);
4197 }
4198
4199 /* Set linkdown as the default for each GMAC. Its own MCR would be set
4200 * up with the more appropriate value when mtk_mac_config call is being
4201 * invoked.
4202 */
4203 for (i = 0; i < MTK_MAX_DEVS; i++) {
4204 struct net_device *dev = eth->netdev[i];
4205
4206 if (!dev)
4207 continue;
4208
4209 mtk_w32(eth, MAC_MCR_FORCE_LINK_DOWN, MTK_MAC_MCR(i));
4210 mtk_set_mcr_max_rx(netdev_priv(dev),
4211 dev->mtu + MTK_RX_ETH_HLEN);
4212 }
4213
4214 /* Indicates CDM to parse the MTK special tag from CPU
4215 * which also is working out for untag packets.
4216 */
4217 val = mtk_r32(eth, MTK_CDMQ_IG_CTRL);
4218 mtk_w32(eth, val | MTK_CDMQ_STAG_EN, MTK_CDMQ_IG_CTRL);
4219 if (mtk_is_netsys_v1(eth)) {
4220 val = mtk_r32(eth, MTK_CDMP_IG_CTRL);
4221 mtk_w32(eth, val | MTK_CDMP_STAG_EN, MTK_CDMP_IG_CTRL);
4222
4223 mtk_w32(eth, 1, MTK_CDMP_EG_CTRL);
4224 }
4225
4226 /* set interrupt delays based on current Net DIM sample */
4227 mtk_dim_rx(ð->rx_dim.work);
4228 mtk_dim_tx(ð->tx_dim.work);
4229
4230 /* disable delay and normal interrupt */
4231 mtk_tx_irq_disable(eth, ~0);
4232 mtk_rx_irq_disable(eth, ~0);
4233
4234 /* FE int grouping */
4235 mtk_w32(eth, MTK_TX_DONE_INT, reg_map->pdma.int_grp);
4236 mtk_w32(eth, eth->soc->rx.irq_done_mask, reg_map->pdma.int_grp + 4);
4237 mtk_w32(eth, MTK_TX_DONE_INT, reg_map->qdma.int_grp);
4238 mtk_w32(eth, eth->soc->rx.irq_done_mask, reg_map->qdma.int_grp + 4);
4239 mtk_w32(eth, 0x21021000, MTK_FE_INT_GRP);
4240
4241 if (mtk_is_netsys_v3_or_greater(eth)) {
4242 /* PSE dummy page mechanism */
4243 mtk_w32(eth, PSE_DUMMY_WORK_GDM(1) | PSE_DUMMY_WORK_GDM(2) |
4244 PSE_DUMMY_WORK_GDM(3) | DUMMY_PAGE_THR, PSE_DUMY_REQ);
4245
4246 /* PSE free buffer drop threshold */
4247 mtk_w32(eth, 0x00600009, PSE_IQ_REV(8));
4248
4249 /* PSE should not drop port8, port9 and port13 packets from
4250 * WDMA Tx
4251 */
4252 mtk_w32(eth, 0x00002300, PSE_DROP_CFG);
4253
4254 /* PSE should drop packets to port8, port9 and port13 on WDMA Rx
4255 * ring full
4256 */
4257 mtk_w32(eth, 0x00002300, PSE_PPE_DROP(0));
4258 mtk_w32(eth, 0x00002300, PSE_PPE_DROP(1));
4259 mtk_w32(eth, 0x00002300, PSE_PPE_DROP(2));
4260
4261 /* GDM and CDM Threshold */
4262 mtk_w32(eth, 0x08000707, MTK_CDMW0_THRES);
4263 mtk_w32(eth, 0x00000077, MTK_CDMW1_THRES);
4264
4265 /* Disable GDM1 RX CRC stripping */
4266 mtk_m32(eth, MTK_GDMA_STRP_CRC, 0, MTK_GDMA_FWD_CFG(0));
4267
4268 /* PSE GDM3 MIB counter has incorrect hw default values,
4269 * so the driver ought to read clear the values beforehand
4270 * in case ethtool retrieve wrong mib values.
4271 */
4272 for (i = 0; i < 0x80; i += 0x4)
4273 mtk_r32(eth, reg_map->gdm1_cnt + 0x100 + i);
4274 } else if (!mtk_is_netsys_v1(eth)) {
4275 /* PSE should not drop port8 and port9 packets from WDMA Tx */
4276 mtk_w32(eth, 0x00000300, PSE_DROP_CFG);
4277
4278 /* PSE should drop packets to port 8/9 on WDMA Rx ring full */
4279 mtk_w32(eth, 0x00000300, PSE_PPE_DROP(0));
4280
4281 /* PSE Free Queue Flow Control */
4282 mtk_w32(eth, 0x01fa01f4, PSE_FQFC_CFG2);
4283
4284 /* PSE config input queue threshold */
4285 mtk_w32(eth, 0x001a000e, PSE_IQ_REV(1));
4286 mtk_w32(eth, 0x01ff001a, PSE_IQ_REV(2));
4287 mtk_w32(eth, 0x000e01ff, PSE_IQ_REV(3));
4288 mtk_w32(eth, 0x000e000e, PSE_IQ_REV(4));
4289 mtk_w32(eth, 0x000e000e, PSE_IQ_REV(5));
4290 mtk_w32(eth, 0x000e000e, PSE_IQ_REV(6));
4291 mtk_w32(eth, 0x000e000e, PSE_IQ_REV(7));
4292 mtk_w32(eth, 0x000e000e, PSE_IQ_REV(8));
4293
4294 /* PSE config output queue threshold */
4295 mtk_w32(eth, 0x000f000a, PSE_OQ_TH(1));
4296 mtk_w32(eth, 0x001a000f, PSE_OQ_TH(2));
4297 mtk_w32(eth, 0x000f001a, PSE_OQ_TH(3));
4298 mtk_w32(eth, 0x01ff000f, PSE_OQ_TH(4));
4299 mtk_w32(eth, 0x000f000f, PSE_OQ_TH(5));
4300 mtk_w32(eth, 0x0006000f, PSE_OQ_TH(6));
4301 mtk_w32(eth, 0x00060006, PSE_OQ_TH(7));
4302 mtk_w32(eth, 0x00060006, PSE_OQ_TH(8));
4303
4304 /* GDM and CDM Threshold */
4305 mtk_w32(eth, 0x00000004, MTK_GDM2_THRES);
4306 mtk_w32(eth, 0x00000004, MTK_CDMW0_THRES);
4307 mtk_w32(eth, 0x00000004, MTK_CDMW1_THRES);
4308 mtk_w32(eth, 0x00000004, MTK_CDME0_THRES);
4309 mtk_w32(eth, 0x00000004, MTK_CDME1_THRES);
4310 mtk_w32(eth, 0x00000004, MTK_CDMM_THRES);
4311 }
4312
4313 return 0;
4314
4315 err_disable_pm:
4316 if (!reset) {
4317 pm_runtime_put_sync(eth->dev);
4318 pm_runtime_disable(eth->dev);
4319 }
4320
4321 return ret;
4322 }
4323
mtk_hw_deinit(struct mtk_eth * eth)4324 static int mtk_hw_deinit(struct mtk_eth *eth)
4325 {
4326 if (!test_and_clear_bit(MTK_HW_INIT, ð->state))
4327 return 0;
4328
4329 mtk_clk_disable(eth);
4330
4331 pm_runtime_put_sync(eth->dev);
4332 pm_runtime_disable(eth->dev);
4333
4334 return 0;
4335 }
4336
mtk_uninit(struct net_device * dev)4337 static void mtk_uninit(struct net_device *dev)
4338 {
4339 struct mtk_mac *mac = netdev_priv(dev);
4340 struct mtk_eth *eth = mac->hw;
4341
4342 phylink_disconnect_phy(mac->phylink);
4343 mtk_tx_irq_disable(eth, ~0);
4344 mtk_rx_irq_disable(eth, ~0);
4345 }
4346
mtk_change_mtu(struct net_device * dev,int new_mtu)4347 static int mtk_change_mtu(struct net_device *dev, int new_mtu)
4348 {
4349 int length = new_mtu + MTK_RX_ETH_HLEN;
4350 struct mtk_mac *mac = netdev_priv(dev);
4351 struct mtk_eth *eth = mac->hw;
4352 int max_mtu, i;
4353
4354 if (rcu_access_pointer(eth->prog) &&
4355 length > MTK_PP_MAX_BUF_SIZE) {
4356 netdev_err(dev, "Invalid MTU for XDP mode\n");
4357 return -EINVAL;
4358 }
4359
4360 mtk_set_mcr_max_rx(mac, length);
4361 WRITE_ONCE(dev->mtu, new_mtu);
4362
4363 max_mtu = mtk_max_gmac_mtu(eth);
4364 for (i = 0; i < ARRAY_SIZE(eth->ppe); i++)
4365 mtk_ppe_update_mtu(eth->ppe[i], max_mtu);
4366
4367 return 0;
4368 }
4369
mtk_do_ioctl(struct net_device * dev,struct ifreq * ifr,int cmd)4370 static int mtk_do_ioctl(struct net_device *dev, struct ifreq *ifr, int cmd)
4371 {
4372 struct mtk_mac *mac = netdev_priv(dev);
4373
4374 switch (cmd) {
4375 case SIOCGMIIPHY:
4376 case SIOCGMIIREG:
4377 case SIOCSMIIREG:
4378 return phylink_mii_ioctl(mac->phylink, ifr, cmd);
4379 default:
4380 break;
4381 }
4382
4383 return -EOPNOTSUPP;
4384 }
4385
mtk_prepare_for_reset(struct mtk_eth * eth)4386 static void mtk_prepare_for_reset(struct mtk_eth *eth)
4387 {
4388 u32 val;
4389 int i;
4390
4391 /* set FE PPE ports link down */
4392 for (i = MTK_GMAC1_ID;
4393 i <= (mtk_is_netsys_v3_or_greater(eth) ? MTK_GMAC3_ID : MTK_GMAC2_ID);
4394 i += 2) {
4395 val = mtk_r32(eth, MTK_FE_GLO_CFG(i)) | MTK_FE_LINK_DOWN_P(PSE_PPE0_PORT);
4396 if (MTK_HAS_CAPS(eth->soc->caps, MTK_RSTCTRL_PPE1))
4397 val |= MTK_FE_LINK_DOWN_P(PSE_PPE1_PORT);
4398 if (MTK_HAS_CAPS(eth->soc->caps, MTK_RSTCTRL_PPE2))
4399 val |= MTK_FE_LINK_DOWN_P(PSE_PPE2_PORT);
4400 mtk_w32(eth, val, MTK_FE_GLO_CFG(i));
4401 }
4402
4403 /* adjust PPE configurations to prepare for reset */
4404 for (i = 0; i < ARRAY_SIZE(eth->ppe); i++)
4405 mtk_ppe_prepare_reset(eth->ppe[i]);
4406
4407 /* disable NETSYS interrupts */
4408 mtk_w32(eth, 0, MTK_FE_INT_ENABLE);
4409
4410 /* force link down GMAC */
4411 for (i = 0; i < 2; i++) {
4412 val = mtk_r32(eth, MTK_MAC_MCR(i)) & ~MAC_MCR_FORCE_LINK;
4413 mtk_w32(eth, val, MTK_MAC_MCR(i));
4414 }
4415 }
4416
mtk_pending_work(struct work_struct * work)4417 static void mtk_pending_work(struct work_struct *work)
4418 {
4419 struct mtk_eth *eth = container_of(work, struct mtk_eth, pending_work);
4420 unsigned long restart = 0;
4421 u32 val;
4422 int i;
4423
4424 rtnl_lock();
4425 set_bit(MTK_RESETTING, ð->state);
4426
4427 mtk_prepare_for_reset(eth);
4428 mtk_wed_fe_reset();
4429 /* Run again reset preliminary configuration in order to avoid any
4430 * possible race during FE reset since it can run releasing RTNL lock.
4431 */
4432 mtk_prepare_for_reset(eth);
4433
4434 /* stop all devices to make sure that dma is properly shut down */
4435 for (i = 0; i < MTK_MAX_DEVS; i++) {
4436 if (!eth->netdev[i] || !netif_running(eth->netdev[i]))
4437 continue;
4438
4439 mtk_stop(eth->netdev[i]);
4440 __set_bit(i, &restart);
4441 }
4442
4443 usleep_range(15000, 16000);
4444
4445 if (eth->dev->pins)
4446 pinctrl_select_state(eth->dev->pins->p,
4447 eth->dev->pins->default_state);
4448 mtk_hw_init(eth, true);
4449
4450 /* restart DMA and enable IRQs */
4451 for (i = 0; i < MTK_MAX_DEVS; i++) {
4452 if (!eth->netdev[i] || !test_bit(i, &restart))
4453 continue;
4454
4455 if (mtk_open(eth->netdev[i])) {
4456 netif_alert(eth, ifup, eth->netdev[i],
4457 "Driver up/down cycle failed\n");
4458 dev_close(eth->netdev[i]);
4459 }
4460 }
4461
4462 /* set FE PPE ports link up */
4463 for (i = MTK_GMAC1_ID;
4464 i <= (mtk_is_netsys_v3_or_greater(eth) ? MTK_GMAC3_ID : MTK_GMAC2_ID);
4465 i += 2) {
4466 val = mtk_r32(eth, MTK_FE_GLO_CFG(i)) & ~MTK_FE_LINK_DOWN_P(PSE_PPE0_PORT);
4467 if (MTK_HAS_CAPS(eth->soc->caps, MTK_RSTCTRL_PPE1))
4468 val &= ~MTK_FE_LINK_DOWN_P(PSE_PPE1_PORT);
4469 if (MTK_HAS_CAPS(eth->soc->caps, MTK_RSTCTRL_PPE2))
4470 val &= ~MTK_FE_LINK_DOWN_P(PSE_PPE2_PORT);
4471
4472 mtk_w32(eth, val, MTK_FE_GLO_CFG(i));
4473 }
4474
4475 clear_bit(MTK_RESETTING, ð->state);
4476
4477 mtk_wed_fe_reset_complete();
4478
4479 rtnl_unlock();
4480 }
4481
mtk_free_dev(struct mtk_eth * eth)4482 static int mtk_free_dev(struct mtk_eth *eth)
4483 {
4484 int i;
4485
4486 for (i = 0; i < MTK_MAX_DEVS; i++) {
4487 if (!eth->netdev[i])
4488 continue;
4489 free_netdev(eth->netdev[i]);
4490 }
4491
4492 for (i = 0; i < ARRAY_SIZE(eth->dsa_meta); i++) {
4493 if (!eth->dsa_meta[i])
4494 break;
4495 dst_release(ð->dsa_meta[i]->dst);
4496 }
4497
4498 return 0;
4499 }
4500
mtk_unreg_dev(struct mtk_eth * eth)4501 static int mtk_unreg_dev(struct mtk_eth *eth)
4502 {
4503 int i;
4504
4505 for (i = 0; i < MTK_MAX_DEVS; i++) {
4506 struct mtk_mac *mac;
4507 if (!eth->netdev[i])
4508 continue;
4509 mac = netdev_priv(eth->netdev[i]);
4510 if (MTK_HAS_CAPS(eth->soc->caps, MTK_QDMA))
4511 unregister_netdevice_notifier(&mac->device_notifier);
4512 unregister_netdev(eth->netdev[i]);
4513 }
4514
4515 return 0;
4516 }
4517
mtk_sgmii_destroy(struct mtk_eth * eth)4518 static void mtk_sgmii_destroy(struct mtk_eth *eth)
4519 {
4520 int i;
4521
4522 for (i = 0; i < MTK_MAX_DEVS; i++)
4523 mtk_pcs_lynxi_destroy(eth->sgmii_pcs[i]);
4524 }
4525
mtk_cleanup(struct mtk_eth * eth)4526 static int mtk_cleanup(struct mtk_eth *eth)
4527 {
4528 mtk_sgmii_destroy(eth);
4529 mtk_unreg_dev(eth);
4530 mtk_free_dev(eth);
4531 cancel_work_sync(ð->pending_work);
4532 cancel_delayed_work_sync(ð->reset.monitor_work);
4533
4534 return 0;
4535 }
4536
mtk_get_link_ksettings(struct net_device * ndev,struct ethtool_link_ksettings * cmd)4537 static int mtk_get_link_ksettings(struct net_device *ndev,
4538 struct ethtool_link_ksettings *cmd)
4539 {
4540 struct mtk_mac *mac = netdev_priv(ndev);
4541
4542 if (unlikely(test_bit(MTK_RESETTING, &mac->hw->state)))
4543 return -EBUSY;
4544
4545 return phylink_ethtool_ksettings_get(mac->phylink, cmd);
4546 }
4547
mtk_set_link_ksettings(struct net_device * ndev,const struct ethtool_link_ksettings * cmd)4548 static int mtk_set_link_ksettings(struct net_device *ndev,
4549 const struct ethtool_link_ksettings *cmd)
4550 {
4551 struct mtk_mac *mac = netdev_priv(ndev);
4552
4553 if (unlikely(test_bit(MTK_RESETTING, &mac->hw->state)))
4554 return -EBUSY;
4555
4556 return phylink_ethtool_ksettings_set(mac->phylink, cmd);
4557 }
4558
mtk_get_drvinfo(struct net_device * dev,struct ethtool_drvinfo * info)4559 static void mtk_get_drvinfo(struct net_device *dev,
4560 struct ethtool_drvinfo *info)
4561 {
4562 struct mtk_mac *mac = netdev_priv(dev);
4563
4564 strscpy(info->driver, mac->hw->dev->driver->name, sizeof(info->driver));
4565 strscpy(info->bus_info, dev_name(mac->hw->dev), sizeof(info->bus_info));
4566 info->n_stats = ARRAY_SIZE(mtk_ethtool_stats);
4567 }
4568
mtk_get_msglevel(struct net_device * dev)4569 static u32 mtk_get_msglevel(struct net_device *dev)
4570 {
4571 struct mtk_mac *mac = netdev_priv(dev);
4572
4573 return mac->hw->msg_enable;
4574 }
4575
mtk_set_msglevel(struct net_device * dev,u32 value)4576 static void mtk_set_msglevel(struct net_device *dev, u32 value)
4577 {
4578 struct mtk_mac *mac = netdev_priv(dev);
4579
4580 mac->hw->msg_enable = value;
4581 }
4582
mtk_nway_reset(struct net_device * dev)4583 static int mtk_nway_reset(struct net_device *dev)
4584 {
4585 struct mtk_mac *mac = netdev_priv(dev);
4586
4587 if (unlikely(test_bit(MTK_RESETTING, &mac->hw->state)))
4588 return -EBUSY;
4589
4590 if (!mac->phylink)
4591 return -ENOTSUPP;
4592
4593 return phylink_ethtool_nway_reset(mac->phylink);
4594 }
4595
mtk_get_strings(struct net_device * dev,u32 stringset,u8 * data)4596 static void mtk_get_strings(struct net_device *dev, u32 stringset, u8 *data)
4597 {
4598 int i;
4599
4600 switch (stringset) {
4601 case ETH_SS_STATS: {
4602 struct mtk_mac *mac = netdev_priv(dev);
4603
4604 for (i = 0; i < ARRAY_SIZE(mtk_ethtool_stats); i++)
4605 ethtool_puts(&data, mtk_ethtool_stats[i].str);
4606 if (mtk_page_pool_enabled(mac->hw))
4607 page_pool_ethtool_stats_get_strings(data);
4608 break;
4609 }
4610 default:
4611 break;
4612 }
4613 }
4614
mtk_get_sset_count(struct net_device * dev,int sset)4615 static int mtk_get_sset_count(struct net_device *dev, int sset)
4616 {
4617 switch (sset) {
4618 case ETH_SS_STATS: {
4619 int count = ARRAY_SIZE(mtk_ethtool_stats);
4620 struct mtk_mac *mac = netdev_priv(dev);
4621
4622 if (mtk_page_pool_enabled(mac->hw))
4623 count += page_pool_ethtool_stats_get_count();
4624 return count;
4625 }
4626 default:
4627 return -EOPNOTSUPP;
4628 }
4629 }
4630
mtk_ethtool_pp_stats(struct mtk_eth * eth,u64 * data)4631 static void mtk_ethtool_pp_stats(struct mtk_eth *eth, u64 *data)
4632 {
4633 struct page_pool_stats stats = {};
4634 int i;
4635
4636 for (i = 0; i < ARRAY_SIZE(eth->rx_ring); i++) {
4637 struct mtk_rx_ring *ring = ð->rx_ring[i];
4638
4639 if (!ring->page_pool)
4640 continue;
4641
4642 page_pool_get_stats(ring->page_pool, &stats);
4643 }
4644 page_pool_ethtool_stats_get(data, &stats);
4645 }
4646
mtk_get_ethtool_stats(struct net_device * dev,struct ethtool_stats * stats,u64 * data)4647 static void mtk_get_ethtool_stats(struct net_device *dev,
4648 struct ethtool_stats *stats, u64 *data)
4649 {
4650 struct mtk_mac *mac = netdev_priv(dev);
4651 struct mtk_hw_stats *hwstats = mac->hw_stats;
4652 u64 *data_src, *data_dst;
4653 unsigned int start;
4654 int i;
4655
4656 if (unlikely(test_bit(MTK_RESETTING, &mac->hw->state)))
4657 return;
4658
4659 if (netif_running(dev) && netif_device_present(dev)) {
4660 if (spin_trylock_bh(&hwstats->stats_lock)) {
4661 mtk_stats_update_mac(mac);
4662 spin_unlock_bh(&hwstats->stats_lock);
4663 }
4664 }
4665
4666 data_src = (u64 *)hwstats;
4667
4668 do {
4669 data_dst = data;
4670 start = u64_stats_fetch_begin(&hwstats->syncp);
4671
4672 for (i = 0; i < ARRAY_SIZE(mtk_ethtool_stats); i++)
4673 *data_dst++ = *(data_src + mtk_ethtool_stats[i].offset);
4674 if (mtk_page_pool_enabled(mac->hw))
4675 mtk_ethtool_pp_stats(mac->hw, data_dst);
4676 } while (u64_stats_fetch_retry(&hwstats->syncp, start));
4677 }
4678
mtk_get_rx_ring_count(struct net_device * dev)4679 static u32 mtk_get_rx_ring_count(struct net_device *dev)
4680 {
4681 if (dev->hw_features & NETIF_F_LRO)
4682 return MTK_MAX_RX_RING_NUM;
4683
4684 return 0;
4685 }
4686
mtk_get_rxnfc(struct net_device * dev,struct ethtool_rxnfc * cmd,u32 * rule_locs)4687 static int mtk_get_rxnfc(struct net_device *dev, struct ethtool_rxnfc *cmd,
4688 u32 *rule_locs)
4689 {
4690 int ret = -EOPNOTSUPP;
4691
4692 switch (cmd->cmd) {
4693 case ETHTOOL_GRXCLSRLCNT:
4694 if (dev->hw_features & NETIF_F_LRO) {
4695 struct mtk_mac *mac = netdev_priv(dev);
4696
4697 cmd->rule_cnt = mac->hwlro_ip_cnt;
4698 ret = 0;
4699 }
4700 break;
4701 case ETHTOOL_GRXCLSRULE:
4702 if (dev->hw_features & NETIF_F_LRO)
4703 ret = mtk_hwlro_get_fdir_entry(dev, cmd);
4704 break;
4705 case ETHTOOL_GRXCLSRLALL:
4706 if (dev->hw_features & NETIF_F_LRO)
4707 ret = mtk_hwlro_get_fdir_all(dev, cmd,
4708 rule_locs);
4709 break;
4710 default:
4711 break;
4712 }
4713
4714 return ret;
4715 }
4716
mtk_set_rxnfc(struct net_device * dev,struct ethtool_rxnfc * cmd)4717 static int mtk_set_rxnfc(struct net_device *dev, struct ethtool_rxnfc *cmd)
4718 {
4719 int ret = -EOPNOTSUPP;
4720
4721 switch (cmd->cmd) {
4722 case ETHTOOL_SRXCLSRLINS:
4723 if (dev->hw_features & NETIF_F_LRO)
4724 ret = mtk_hwlro_add_ipaddr(dev, cmd);
4725 break;
4726 case ETHTOOL_SRXCLSRLDEL:
4727 if (dev->hw_features & NETIF_F_LRO)
4728 ret = mtk_hwlro_del_ipaddr(dev, cmd);
4729 break;
4730 default:
4731 break;
4732 }
4733
4734 return ret;
4735 }
4736
mtk_get_pauseparam(struct net_device * dev,struct ethtool_pauseparam * pause)4737 static void mtk_get_pauseparam(struct net_device *dev, struct ethtool_pauseparam *pause)
4738 {
4739 struct mtk_mac *mac = netdev_priv(dev);
4740
4741 phylink_ethtool_get_pauseparam(mac->phylink, pause);
4742 }
4743
mtk_set_pauseparam(struct net_device * dev,struct ethtool_pauseparam * pause)4744 static int mtk_set_pauseparam(struct net_device *dev, struct ethtool_pauseparam *pause)
4745 {
4746 struct mtk_mac *mac = netdev_priv(dev);
4747
4748 return phylink_ethtool_set_pauseparam(mac->phylink, pause);
4749 }
4750
mtk_get_eee(struct net_device * dev,struct ethtool_keee * eee)4751 static int mtk_get_eee(struct net_device *dev, struct ethtool_keee *eee)
4752 {
4753 struct mtk_mac *mac = netdev_priv(dev);
4754
4755 return phylink_ethtool_get_eee(mac->phylink, eee);
4756 }
4757
mtk_set_eee(struct net_device * dev,struct ethtool_keee * eee)4758 static int mtk_set_eee(struct net_device *dev, struct ethtool_keee *eee)
4759 {
4760 struct mtk_mac *mac = netdev_priv(dev);
4761
4762 return phylink_ethtool_set_eee(mac->phylink, eee);
4763 }
4764
mtk_select_queue(struct net_device * dev,struct sk_buff * skb,struct net_device * sb_dev)4765 static u16 mtk_select_queue(struct net_device *dev, struct sk_buff *skb,
4766 struct net_device *sb_dev)
4767 {
4768 struct mtk_mac *mac = netdev_priv(dev);
4769 unsigned int queue = 0;
4770
4771 if (netdev_uses_dsa(dev))
4772 queue = skb_get_queue_mapping(skb) + 3;
4773 else
4774 queue = mac->id;
4775
4776 if (queue >= dev->num_tx_queues)
4777 queue = 0;
4778
4779 return queue;
4780 }
4781
4782 static const struct ethtool_ops mtk_ethtool_ops = {
4783 .get_link_ksettings = mtk_get_link_ksettings,
4784 .set_link_ksettings = mtk_set_link_ksettings,
4785 .get_drvinfo = mtk_get_drvinfo,
4786 .get_msglevel = mtk_get_msglevel,
4787 .set_msglevel = mtk_set_msglevel,
4788 .nway_reset = mtk_nway_reset,
4789 .get_link = ethtool_op_get_link,
4790 .get_strings = mtk_get_strings,
4791 .get_sset_count = mtk_get_sset_count,
4792 .get_ethtool_stats = mtk_get_ethtool_stats,
4793 .get_pauseparam = mtk_get_pauseparam,
4794 .set_pauseparam = mtk_set_pauseparam,
4795 .get_rxnfc = mtk_get_rxnfc,
4796 .set_rxnfc = mtk_set_rxnfc,
4797 .get_rx_ring_count = mtk_get_rx_ring_count,
4798 .get_eee = mtk_get_eee,
4799 .set_eee = mtk_set_eee,
4800 };
4801
4802 static const struct net_device_ops mtk_netdev_ops = {
4803 .ndo_uninit = mtk_uninit,
4804 .ndo_open = mtk_open,
4805 .ndo_stop = mtk_stop,
4806 .ndo_start_xmit = mtk_start_xmit,
4807 .ndo_set_mac_address = mtk_set_mac_address,
4808 .ndo_validate_addr = eth_validate_addr,
4809 .ndo_eth_ioctl = mtk_do_ioctl,
4810 .ndo_change_mtu = mtk_change_mtu,
4811 .ndo_tx_timeout = mtk_tx_timeout,
4812 .ndo_get_stats64 = mtk_get_stats64,
4813 .ndo_fix_features = mtk_fix_features,
4814 .ndo_set_features = mtk_set_features,
4815 #ifdef CONFIG_NET_POLL_CONTROLLER
4816 .ndo_poll_controller = mtk_poll_controller,
4817 #endif
4818 .ndo_setup_tc = mtk_eth_setup_tc,
4819 .ndo_bpf = mtk_xdp,
4820 .ndo_xdp_xmit = mtk_xdp_xmit,
4821 .ndo_select_queue = mtk_select_queue,
4822 };
4823
mtk_add_mac(struct mtk_eth * eth,struct device_node * np)4824 static int mtk_add_mac(struct mtk_eth *eth, struct device_node *np)
4825 {
4826 const struct phylink_mac_ops *mac_ops = &mtk_phylink_ops;
4827 const __be32 *_id = of_get_property(np, "reg", NULL);
4828 phy_interface_t phy_mode;
4829 struct phylink *phylink;
4830 struct mtk_mac *mac;
4831 int id, err;
4832 int txqs = 1;
4833 u32 val;
4834
4835 if (!_id) {
4836 dev_err(eth->dev, "missing mac id\n");
4837 return -EINVAL;
4838 }
4839
4840 id = be32_to_cpup(_id);
4841 if (id >= MTK_MAX_DEVS) {
4842 dev_err(eth->dev, "%d is not a valid mac id\n", id);
4843 return -EINVAL;
4844 }
4845
4846 if (eth->netdev[id]) {
4847 dev_err(eth->dev, "duplicate mac id found: %d\n", id);
4848 return -EINVAL;
4849 }
4850
4851 if (MTK_HAS_CAPS(eth->soc->caps, MTK_QDMA))
4852 txqs = MTK_QDMA_NUM_QUEUES;
4853
4854 eth->netdev[id] = alloc_etherdev_mqs(sizeof(*mac), txqs, 1);
4855 if (!eth->netdev[id]) {
4856 dev_err(eth->dev, "alloc_etherdev failed\n");
4857 return -ENOMEM;
4858 }
4859 mac = netdev_priv(eth->netdev[id]);
4860 eth->mac[id] = mac;
4861 mac->id = id;
4862 mac->hw = eth;
4863 mac->of_node = np;
4864
4865 err = of_get_ethdev_address(mac->of_node, eth->netdev[id]);
4866 if (err == -EPROBE_DEFER)
4867 return err;
4868
4869 if (err) {
4870 /* If the mac address is invalid, use random mac address */
4871 eth_hw_addr_random(eth->netdev[id]);
4872 dev_err(eth->dev, "generated random MAC address %pM\n",
4873 eth->netdev[id]->dev_addr);
4874 }
4875
4876 memset(mac->hwlro_ip, 0, sizeof(mac->hwlro_ip));
4877 mac->hwlro_ip_cnt = 0;
4878
4879 mac->hw_stats = devm_kzalloc(eth->dev,
4880 sizeof(*mac->hw_stats),
4881 GFP_KERNEL);
4882 if (!mac->hw_stats) {
4883 dev_err(eth->dev, "failed to allocate counter memory\n");
4884 err = -ENOMEM;
4885 goto free_netdev;
4886 }
4887 spin_lock_init(&mac->hw_stats->stats_lock);
4888 u64_stats_init(&mac->hw_stats->syncp);
4889
4890 if (mtk_is_netsys_v3_or_greater(eth))
4891 mac->hw_stats->reg_offset = id * 0x80;
4892 else
4893 mac->hw_stats->reg_offset = id * 0x40;
4894
4895 /* phylink create */
4896 err = of_get_phy_mode(np, &phy_mode);
4897 if (err) {
4898 dev_err(eth->dev, "incorrect phy-mode\n");
4899 goto free_netdev;
4900 }
4901
4902 /* mac config is not set */
4903 mac->interface = PHY_INTERFACE_MODE_NA;
4904 mac->speed = SPEED_UNKNOWN;
4905
4906 mac->phylink_config.dev = ð->netdev[id]->dev;
4907 mac->phylink_config.type = PHYLINK_NETDEV;
4908 mac->phylink_config.mac_capabilities = MAC_ASYM_PAUSE | MAC_SYM_PAUSE |
4909 MAC_10 | MAC_100 | MAC_1000 | MAC_2500FD;
4910 mac->phylink_config.lpi_capabilities = MAC_100FD | MAC_1000FD |
4911 MAC_2500FD;
4912 mac->phylink_config.lpi_timer_default = 1000;
4913
4914 /* MT7623 gmac0 is now missing its speed-specific PLL configuration
4915 * in its .mac_config method (since state->speed is not valid there.
4916 * Disable support for MII, GMII and RGMII.
4917 */
4918 if (!mac->hw->soc->disable_pll_modes || mac->id != 0) {
4919 __set_bit(PHY_INTERFACE_MODE_MII,
4920 mac->phylink_config.supported_interfaces);
4921 __set_bit(PHY_INTERFACE_MODE_GMII,
4922 mac->phylink_config.supported_interfaces);
4923
4924 if (MTK_HAS_CAPS(mac->hw->soc->caps, MTK_RGMII))
4925 phy_interface_set_rgmii(mac->phylink_config.supported_interfaces);
4926 }
4927
4928 if (MTK_HAS_CAPS(mac->hw->soc->caps, MTK_TRGMII) && !mac->id)
4929 __set_bit(PHY_INTERFACE_MODE_TRGMII,
4930 mac->phylink_config.supported_interfaces);
4931
4932 /* TRGMII is not permitted on MT7621 if using DDR2 */
4933 if (MTK_HAS_CAPS(mac->hw->soc->caps, MTK_GMAC1_TRGMII) &&
4934 MTK_HAS_CAPS(mac->hw->soc->caps, MTK_TRGMII_MT7621_CLK)) {
4935 regmap_read(eth->ethsys, ETHSYS_SYSCFG, &val);
4936 if (val & SYSCFG_DRAM_TYPE_DDR2)
4937 __clear_bit(PHY_INTERFACE_MODE_TRGMII,
4938 mac->phylink_config.supported_interfaces);
4939 }
4940
4941 if (MTK_HAS_CAPS(mac->hw->soc->caps, MTK_SGMII)) {
4942 __set_bit(PHY_INTERFACE_MODE_SGMII,
4943 mac->phylink_config.supported_interfaces);
4944 __set_bit(PHY_INTERFACE_MODE_1000BASEX,
4945 mac->phylink_config.supported_interfaces);
4946 __set_bit(PHY_INTERFACE_MODE_2500BASEX,
4947 mac->phylink_config.supported_interfaces);
4948 }
4949
4950 if (mtk_is_netsys_v3_or_greater(mac->hw) &&
4951 MTK_HAS_CAPS(mac->hw->soc->caps, MTK_ESW) &&
4952 id == MTK_GMAC1_ID) {
4953 mac->phylink_config.mac_capabilities = MAC_ASYM_PAUSE |
4954 MAC_SYM_PAUSE |
4955 MAC_10000FD;
4956 phy_interface_zero(mac->phylink_config.supported_interfaces);
4957 __set_bit(PHY_INTERFACE_MODE_INTERNAL,
4958 mac->phylink_config.supported_interfaces);
4959 }
4960
4961 if (MTK_HAS_CAPS(eth->soc->caps, MTK_SOC_MT7628))
4962 mac_ops = &rt5350_phylink_ops;
4963
4964 if (MTK_HAS_CAPS(mac->hw->soc->caps, MTK_2P5GPHY) &&
4965 id == MTK_GMAC2_ID)
4966 __set_bit(PHY_INTERFACE_MODE_INTERNAL,
4967 mac->phylink_config.supported_interfaces);
4968
4969 phylink = phylink_create(&mac->phylink_config,
4970 of_fwnode_handle(mac->of_node),
4971 phy_mode, mac_ops);
4972 if (IS_ERR(phylink)) {
4973 err = PTR_ERR(phylink);
4974 goto free_netdev;
4975 }
4976
4977 mac->phylink = phylink;
4978
4979 SET_NETDEV_DEV(eth->netdev[id], eth->dev);
4980 eth->netdev[id]->watchdog_timeo = 5 * HZ;
4981 eth->netdev[id]->netdev_ops = &mtk_netdev_ops;
4982 eth->netdev[id]->base_addr = (unsigned long)eth->base;
4983
4984 eth->netdev[id]->hw_features = eth->soc->hw_features;
4985 if (eth->hwlro)
4986 eth->netdev[id]->hw_features |= NETIF_F_LRO;
4987
4988 eth->netdev[id]->vlan_features = eth->soc->hw_features &
4989 ~NETIF_F_HW_VLAN_CTAG_TX;
4990 eth->netdev[id]->features |= eth->soc->hw_features;
4991 eth->netdev[id]->ethtool_ops = &mtk_ethtool_ops;
4992
4993 eth->netdev[id]->irq = eth->irq[MTK_FE_IRQ_SHARED];
4994 eth->netdev[id]->dev.of_node = np;
4995
4996 if (MTK_HAS_CAPS(eth->soc->caps, MTK_SOC_MT7628))
4997 eth->netdev[id]->max_mtu = MTK_MAX_RX_LENGTH - MTK_RX_ETH_HLEN;
4998 else
4999 eth->netdev[id]->max_mtu = MTK_MAX_RX_LENGTH_2K - MTK_RX_ETH_HLEN;
5000
5001 if (MTK_HAS_CAPS(eth->soc->caps, MTK_QDMA)) {
5002 mac->device_notifier.notifier_call = mtk_device_event;
5003 register_netdevice_notifier(&mac->device_notifier);
5004 }
5005
5006 if (mtk_page_pool_enabled(eth))
5007 eth->netdev[id]->xdp_features = NETDEV_XDP_ACT_BASIC |
5008 NETDEV_XDP_ACT_REDIRECT |
5009 NETDEV_XDP_ACT_NDO_XMIT |
5010 NETDEV_XDP_ACT_NDO_XMIT_SG;
5011
5012 return 0;
5013
5014 free_netdev:
5015 free_netdev(eth->netdev[id]);
5016 return err;
5017 }
5018
mtk_eth_set_dma_device(struct mtk_eth * eth,struct device * dma_dev)5019 void mtk_eth_set_dma_device(struct mtk_eth *eth, struct device *dma_dev)
5020 {
5021 struct net_device *dev, *tmp;
5022 LIST_HEAD(dev_list);
5023 int i;
5024
5025 rtnl_lock();
5026
5027 for (i = 0; i < MTK_MAX_DEVS; i++) {
5028 dev = eth->netdev[i];
5029
5030 if (!dev || !(dev->flags & IFF_UP))
5031 continue;
5032
5033 list_add_tail(&dev->close_list, &dev_list);
5034 netdev_lock_ops(dev);
5035 }
5036
5037 netif_close_many(&dev_list, false);
5038
5039 list_for_each_entry(dev, &dev_list, close_list)
5040 netdev_unlock_ops(dev);
5041
5042 eth->dma_dev = dma_dev;
5043
5044 list_for_each_entry_safe(dev, tmp, &dev_list, close_list) {
5045 list_del_init(&dev->close_list);
5046 dev_open(dev, NULL);
5047 }
5048
5049 rtnl_unlock();
5050 }
5051
mtk_sgmii_init(struct mtk_eth * eth)5052 static int mtk_sgmii_init(struct mtk_eth *eth)
5053 {
5054 struct device_node *np;
5055 struct regmap *regmap;
5056 int i;
5057
5058 for (i = 0; i < MTK_MAX_DEVS; i++) {
5059 np = of_parse_phandle(eth->dev->of_node, "mediatek,sgmiisys", i);
5060 if (!np)
5061 break;
5062
5063 regmap = syscon_node_to_regmap(np);
5064 if (IS_ERR(regmap)) {
5065 of_node_put(np);
5066 return PTR_ERR(regmap);
5067 }
5068
5069 eth->sgmii_pcs[i] = mtk_pcs_lynxi_create(eth->dev,
5070 of_fwnode_handle(np),
5071 regmap,
5072 eth->soc->ana_rgc3);
5073 of_node_put(np);
5074 }
5075
5076 return 0;
5077 }
5078
mtk_setup_legacy_sram(struct mtk_eth * eth,struct resource * res)5079 static int mtk_setup_legacy_sram(struct mtk_eth *eth, struct resource *res)
5080 {
5081 dev_warn(eth->dev, "legacy DT: using hard-coded SRAM offset.\n");
5082
5083 if (res->start + MTK_ETH_SRAM_OFFSET + MTK_ETH_NETSYS_V2_SRAM_SIZE - 1 >
5084 res->end)
5085 return -EINVAL;
5086
5087 eth->sram_pool = devm_gen_pool_create(eth->dev,
5088 const_ilog2(MTK_ETH_SRAM_GRANULARITY),
5089 NUMA_NO_NODE, dev_name(eth->dev));
5090
5091 if (IS_ERR(eth->sram_pool))
5092 return PTR_ERR(eth->sram_pool);
5093
5094 return gen_pool_add_virt(eth->sram_pool,
5095 (unsigned long)eth->base + MTK_ETH_SRAM_OFFSET,
5096 res->start + MTK_ETH_SRAM_OFFSET,
5097 MTK_ETH_NETSYS_V2_SRAM_SIZE, NUMA_NO_NODE);
5098 }
5099
mtk_probe(struct platform_device * pdev)5100 static int mtk_probe(struct platform_device *pdev)
5101 {
5102 struct resource *res = NULL;
5103 struct device_node *mac_np;
5104 struct mtk_eth *eth;
5105 int err, i;
5106
5107 eth = devm_kzalloc(&pdev->dev, sizeof(*eth), GFP_KERNEL);
5108 if (!eth)
5109 return -ENOMEM;
5110
5111 eth->soc = of_device_get_match_data(&pdev->dev);
5112
5113 eth->dev = &pdev->dev;
5114 eth->dma_dev = &pdev->dev;
5115 eth->base = devm_platform_ioremap_resource(pdev, 0);
5116 if (IS_ERR(eth->base))
5117 return PTR_ERR(eth->base);
5118
5119 if (MTK_HAS_CAPS(eth->soc->caps, MTK_SOC_MT7628))
5120 eth->ip_align = NET_IP_ALIGN;
5121
5122 if (MTK_HAS_CAPS(eth->soc->caps, MTK_36BIT_DMA)) {
5123 err = dma_set_mask(&pdev->dev, DMA_BIT_MASK(36));
5124 if (!err)
5125 err = dma_set_coherent_mask(&pdev->dev, DMA_BIT_MASK(32));
5126
5127 if (err) {
5128 dev_err(&pdev->dev, "Wrong DMA config\n");
5129 return -EINVAL;
5130 }
5131 }
5132
5133 spin_lock_init(ð->page_lock);
5134 spin_lock_init(ð->tx_irq_lock);
5135 spin_lock_init(ð->rx_irq_lock);
5136 spin_lock_init(ð->dim_lock);
5137
5138 eth->rx_dim.mode = DIM_CQ_PERIOD_MODE_START_FROM_EQE;
5139 INIT_WORK(ð->rx_dim.work, mtk_dim_rx);
5140 INIT_DELAYED_WORK(ð->reset.monitor_work, mtk_hw_reset_monitor_work);
5141
5142 eth->tx_dim.mode = DIM_CQ_PERIOD_MODE_START_FROM_EQE;
5143 INIT_WORK(ð->tx_dim.work, mtk_dim_tx);
5144
5145 if (!MTK_HAS_CAPS(eth->soc->caps, MTK_SOC_MT7628)) {
5146 eth->ethsys = syscon_regmap_lookup_by_phandle(pdev->dev.of_node,
5147 "mediatek,ethsys");
5148 if (IS_ERR(eth->ethsys)) {
5149 dev_err(&pdev->dev, "no ethsys regmap found\n");
5150 return PTR_ERR(eth->ethsys);
5151 }
5152 }
5153
5154 if (MTK_HAS_CAPS(eth->soc->caps, MTK_INFRA)) {
5155 eth->infra = syscon_regmap_lookup_by_phandle(pdev->dev.of_node,
5156 "mediatek,infracfg");
5157 if (IS_ERR(eth->infra)) {
5158 dev_err(&pdev->dev, "no infracfg regmap found\n");
5159 return PTR_ERR(eth->infra);
5160 }
5161 }
5162
5163 if (of_dma_is_coherent(pdev->dev.of_node)) {
5164 struct regmap *cci;
5165
5166 cci = syscon_regmap_lookup_by_phandle(pdev->dev.of_node,
5167 "cci-control-port");
5168 /* enable CPU/bus coherency */
5169 if (!IS_ERR(cci))
5170 regmap_write(cci, 0, 3);
5171 }
5172
5173 if (MTK_HAS_CAPS(eth->soc->caps, MTK_SGMII)) {
5174 err = mtk_sgmii_init(eth);
5175
5176 if (err)
5177 return err;
5178 }
5179
5180 if (eth->soc->required_pctl) {
5181 eth->pctl = syscon_regmap_lookup_by_phandle(pdev->dev.of_node,
5182 "mediatek,pctl");
5183 if (IS_ERR(eth->pctl)) {
5184 dev_err(&pdev->dev, "no pctl regmap found\n");
5185 err = PTR_ERR(eth->pctl);
5186 goto err_destroy_sgmii;
5187 }
5188 }
5189
5190 if (mtk_is_netsys_v2_or_greater(eth)) {
5191 res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
5192 if (!res) {
5193 err = -EINVAL;
5194 goto err_destroy_sgmii;
5195 }
5196
5197 if (MTK_HAS_CAPS(eth->soc->caps, MTK_SRAM)) {
5198 eth->sram_pool = of_gen_pool_get(pdev->dev.of_node,
5199 "sram", 0);
5200 if (!eth->sram_pool) {
5201 if (!mtk_is_netsys_v3_or_greater(eth)) {
5202 err = mtk_setup_legacy_sram(eth, res);
5203 if (err)
5204 goto err_destroy_sgmii;
5205 } else {
5206 dev_err(&pdev->dev,
5207 "Could not get SRAM pool\n");
5208 err = -EINVAL;
5209 goto err_destroy_sgmii;
5210 }
5211 }
5212 }
5213 }
5214
5215 if (eth->soc->offload_version) {
5216 for (i = 0;; i++) {
5217 struct device_node *np;
5218 phys_addr_t wdma_phy;
5219 u32 wdma_base;
5220
5221 if (i >= ARRAY_SIZE(eth->soc->reg_map->wdma_base))
5222 break;
5223
5224 np = of_parse_phandle(pdev->dev.of_node,
5225 "mediatek,wed", i);
5226 if (!np)
5227 break;
5228
5229 wdma_base = eth->soc->reg_map->wdma_base[i];
5230 wdma_phy = res ? res->start + wdma_base : 0;
5231 mtk_wed_add_hw(np, eth, eth->base + wdma_base,
5232 wdma_phy, i);
5233 }
5234 }
5235
5236 err = mtk_get_irqs(pdev, eth);
5237 if (err)
5238 goto err_wed_exit;
5239
5240 for (i = 0; i < ARRAY_SIZE(eth->clks); i++) {
5241 eth->clks[i] = devm_clk_get(eth->dev,
5242 mtk_clks_source_name[i]);
5243 if (IS_ERR(eth->clks[i])) {
5244 if (PTR_ERR(eth->clks[i]) == -EPROBE_DEFER) {
5245 err = -EPROBE_DEFER;
5246 goto err_wed_exit;
5247 }
5248 if (eth->soc->required_clks & BIT(i)) {
5249 dev_err(&pdev->dev, "clock %s not found\n",
5250 mtk_clks_source_name[i]);
5251 err = -EINVAL;
5252 goto err_wed_exit;
5253 }
5254 eth->clks[i] = NULL;
5255 }
5256 }
5257
5258 eth->msg_enable = netif_msg_init(mtk_msg_level, MTK_DEFAULT_MSG_ENABLE);
5259 INIT_WORK(ð->pending_work, mtk_pending_work);
5260
5261 err = mtk_hw_init(eth, false);
5262 if (err)
5263 goto err_wed_exit;
5264
5265 eth->hwlro = MTK_HAS_CAPS(eth->soc->caps, MTK_HWLRO);
5266
5267 for_each_child_of_node(pdev->dev.of_node, mac_np) {
5268 if (!of_device_is_compatible(mac_np,
5269 "mediatek,eth-mac"))
5270 continue;
5271
5272 if (!of_device_is_available(mac_np))
5273 continue;
5274
5275 err = mtk_add_mac(eth, mac_np);
5276 if (err) {
5277 of_node_put(mac_np);
5278 goto err_deinit_hw;
5279 }
5280 }
5281
5282 if (MTK_HAS_CAPS(eth->soc->caps, MTK_SHARED_INT)) {
5283 err = devm_request_irq(eth->dev, eth->irq[MTK_FE_IRQ_SHARED],
5284 mtk_handle_irq, 0,
5285 dev_name(eth->dev), eth);
5286 } else {
5287 err = devm_request_irq(eth->dev, eth->irq[MTK_FE_IRQ_TX],
5288 mtk_handle_irq_tx, 0,
5289 dev_name(eth->dev), eth);
5290 if (err)
5291 goto err_free_dev;
5292
5293 err = devm_request_irq(eth->dev, eth->irq[MTK_FE_IRQ_RX],
5294 mtk_handle_irq_rx, 0,
5295 dev_name(eth->dev), eth);
5296 }
5297 if (err)
5298 goto err_free_dev;
5299
5300 /* No MT7628/88 support yet */
5301 if (!MTK_HAS_CAPS(eth->soc->caps, MTK_SOC_MT7628)) {
5302 err = mtk_mdio_init(eth);
5303 if (err)
5304 goto err_free_dev;
5305 }
5306
5307 if (eth->soc->offload_version) {
5308 u8 ppe_num = eth->soc->ppe_num;
5309
5310 ppe_num = min_t(u8, ARRAY_SIZE(eth->ppe), ppe_num);
5311 for (i = 0; i < ppe_num; i++) {
5312 u32 ppe_addr = eth->soc->reg_map->ppe_base;
5313
5314 ppe_addr += (i == 2 ? 0xc00 : i * 0x400);
5315 eth->ppe[i] = mtk_ppe_init(eth, eth->base + ppe_addr, i);
5316
5317 if (!eth->ppe[i]) {
5318 err = -ENOMEM;
5319 goto err_deinit_ppe;
5320 }
5321 err = mtk_eth_offload_init(eth, i);
5322
5323 if (err)
5324 goto err_deinit_ppe;
5325 }
5326 }
5327
5328 for (i = 0; i < MTK_MAX_DEVS; i++) {
5329 if (!eth->netdev[i])
5330 continue;
5331
5332 err = register_netdev(eth->netdev[i]);
5333 if (err) {
5334 dev_err(eth->dev, "error bringing up device\n");
5335 goto err_deinit_ppe;
5336 } else
5337 netif_info(eth, probe, eth->netdev[i],
5338 "mediatek frame engine at 0x%08lx, irq %d\n",
5339 eth->netdev[i]->base_addr, eth->irq[MTK_FE_IRQ_SHARED]);
5340 }
5341
5342 /* we run 2 devices on the same DMA ring so we need a dummy device
5343 * for NAPI to work
5344 */
5345 eth->dummy_dev = alloc_netdev_dummy(0);
5346 if (!eth->dummy_dev) {
5347 err = -ENOMEM;
5348 dev_err(eth->dev, "failed to allocated dummy device\n");
5349 goto err_unreg_netdev;
5350 }
5351 netif_napi_add(eth->dummy_dev, ð->tx_napi, mtk_napi_tx);
5352 netif_napi_add(eth->dummy_dev, ð->rx_napi, mtk_napi_rx);
5353
5354 platform_set_drvdata(pdev, eth);
5355 schedule_delayed_work(ð->reset.monitor_work,
5356 MTK_DMA_MONITOR_TIMEOUT);
5357
5358 return 0;
5359
5360 err_unreg_netdev:
5361 mtk_unreg_dev(eth);
5362 err_deinit_ppe:
5363 mtk_ppe_deinit(eth);
5364 mtk_mdio_cleanup(eth);
5365 err_free_dev:
5366 mtk_free_dev(eth);
5367 err_deinit_hw:
5368 mtk_hw_deinit(eth);
5369 err_wed_exit:
5370 mtk_wed_exit();
5371 err_destroy_sgmii:
5372 mtk_sgmii_destroy(eth);
5373
5374 return err;
5375 }
5376
mtk_remove(struct platform_device * pdev)5377 static void mtk_remove(struct platform_device *pdev)
5378 {
5379 struct mtk_eth *eth = platform_get_drvdata(pdev);
5380 struct mtk_mac *mac;
5381 int i;
5382
5383 /* stop all devices to make sure that dma is properly shut down */
5384 for (i = 0; i < MTK_MAX_DEVS; i++) {
5385 if (!eth->netdev[i])
5386 continue;
5387 mtk_stop(eth->netdev[i]);
5388 mac = netdev_priv(eth->netdev[i]);
5389 phylink_disconnect_phy(mac->phylink);
5390 }
5391
5392 mtk_wed_exit();
5393 mtk_hw_deinit(eth);
5394
5395 netif_napi_del(ð->tx_napi);
5396 netif_napi_del(ð->rx_napi);
5397 mtk_cleanup(eth);
5398 free_netdev(eth->dummy_dev);
5399 mtk_mdio_cleanup(eth);
5400 }
5401
5402 static const struct mtk_soc_data mt2701_data = {
5403 .reg_map = &mtk_reg_map,
5404 .caps = MT7623_CAPS | MTK_HWLRO,
5405 .hw_features = MTK_HW_FEATURES,
5406 .required_clks = MT7623_CLKS_BITMAP,
5407 .required_pctl = true,
5408 .version = 1,
5409 .tx = {
5410 .desc_size = sizeof(struct mtk_tx_dma),
5411 .dma_max_len = MTK_TX_DMA_BUF_LEN,
5412 .dma_len_offset = 16,
5413 .dma_size = MTK_DMA_SIZE(2K),
5414 .fq_dma_size = MTK_DMA_SIZE(2K),
5415 },
5416 .rx = {
5417 .desc_size = sizeof(struct mtk_rx_dma),
5418 .irq_done_mask = MTK_RX_DONE_INT,
5419 .dma_l4_valid = RX_DMA_L4_VALID,
5420 .dma_size = MTK_DMA_SIZE(2K),
5421 .dma_max_len = MTK_TX_DMA_BUF_LEN,
5422 .dma_len_offset = 16,
5423 },
5424 };
5425
5426 static const struct mtk_soc_data mt7621_data = {
5427 .reg_map = &mtk_reg_map,
5428 .caps = MT7621_CAPS,
5429 .hw_features = MTK_HW_FEATURES,
5430 .required_clks = MT7621_CLKS_BITMAP,
5431 .required_pctl = false,
5432 .version = 1,
5433 .offload_version = 1,
5434 .ppe_num = 1,
5435 .hash_offset = 2,
5436 .foe_entry_size = MTK_FOE_ENTRY_V1_SIZE,
5437 .tx = {
5438 .desc_size = sizeof(struct mtk_tx_dma),
5439 .dma_max_len = MTK_TX_DMA_BUF_LEN,
5440 .dma_len_offset = 16,
5441 .dma_size = MTK_DMA_SIZE(2K),
5442 .fq_dma_size = MTK_DMA_SIZE(2K),
5443 },
5444 .rx = {
5445 .desc_size = sizeof(struct mtk_rx_dma),
5446 .irq_done_mask = MTK_RX_DONE_INT,
5447 .dma_l4_valid = RX_DMA_L4_VALID,
5448 .dma_size = MTK_DMA_SIZE(2K),
5449 .dma_max_len = MTK_TX_DMA_BUF_LEN,
5450 .dma_len_offset = 16,
5451 },
5452 };
5453
5454 static const struct mtk_soc_data mt7622_data = {
5455 .reg_map = &mtk_reg_map,
5456 .ana_rgc3 = 0x2028,
5457 .caps = MT7622_CAPS | MTK_HWLRO,
5458 .hw_features = MTK_HW_FEATURES,
5459 .required_clks = MT7622_CLKS_BITMAP,
5460 .required_pctl = false,
5461 .version = 1,
5462 .offload_version = 2,
5463 .ppe_num = 1,
5464 .hash_offset = 2,
5465 .has_accounting = true,
5466 .foe_entry_size = MTK_FOE_ENTRY_V1_SIZE,
5467 .tx = {
5468 .desc_size = sizeof(struct mtk_tx_dma),
5469 .dma_max_len = MTK_TX_DMA_BUF_LEN,
5470 .dma_len_offset = 16,
5471 .dma_size = MTK_DMA_SIZE(2K),
5472 .fq_dma_size = MTK_DMA_SIZE(2K),
5473 },
5474 .rx = {
5475 .desc_size = sizeof(struct mtk_rx_dma),
5476 .irq_done_mask = MTK_RX_DONE_INT,
5477 .dma_l4_valid = RX_DMA_L4_VALID,
5478 .dma_size = MTK_DMA_SIZE(2K),
5479 .dma_max_len = MTK_TX_DMA_BUF_LEN,
5480 .dma_len_offset = 16,
5481 },
5482 };
5483
5484 static const struct mtk_soc_data mt7623_data = {
5485 .reg_map = &mtk_reg_map,
5486 .caps = MT7623_CAPS | MTK_HWLRO,
5487 .hw_features = MTK_HW_FEATURES,
5488 .required_clks = MT7623_CLKS_BITMAP,
5489 .required_pctl = true,
5490 .version = 1,
5491 .offload_version = 1,
5492 .ppe_num = 1,
5493 .hash_offset = 2,
5494 .foe_entry_size = MTK_FOE_ENTRY_V1_SIZE,
5495 .disable_pll_modes = true,
5496 .tx = {
5497 .desc_size = sizeof(struct mtk_tx_dma),
5498 .dma_max_len = MTK_TX_DMA_BUF_LEN,
5499 .dma_len_offset = 16,
5500 .dma_size = MTK_DMA_SIZE(2K),
5501 .fq_dma_size = MTK_DMA_SIZE(2K),
5502 },
5503 .rx = {
5504 .desc_size = sizeof(struct mtk_rx_dma),
5505 .irq_done_mask = MTK_RX_DONE_INT,
5506 .dma_l4_valid = RX_DMA_L4_VALID,
5507 .dma_size = MTK_DMA_SIZE(2K),
5508 .dma_max_len = MTK_TX_DMA_BUF_LEN,
5509 .dma_len_offset = 16,
5510 },
5511 };
5512
5513 static const struct mtk_soc_data mt7629_data = {
5514 .reg_map = &mtk_reg_map,
5515 .ana_rgc3 = 0x128,
5516 .caps = MT7629_CAPS | MTK_HWLRO,
5517 .hw_features = MTK_HW_FEATURES,
5518 .required_clks = MT7629_CLKS_BITMAP,
5519 .required_pctl = false,
5520 .has_accounting = true,
5521 .version = 1,
5522 .tx = {
5523 .desc_size = sizeof(struct mtk_tx_dma),
5524 .dma_max_len = MTK_TX_DMA_BUF_LEN,
5525 .dma_len_offset = 16,
5526 .dma_size = MTK_DMA_SIZE(2K),
5527 .fq_dma_size = MTK_DMA_SIZE(2K),
5528 },
5529 .rx = {
5530 .desc_size = sizeof(struct mtk_rx_dma),
5531 .irq_done_mask = MTK_RX_DONE_INT,
5532 .dma_l4_valid = RX_DMA_L4_VALID,
5533 .dma_size = MTK_DMA_SIZE(2K),
5534 .dma_max_len = MTK_TX_DMA_BUF_LEN,
5535 .dma_len_offset = 16,
5536 },
5537 };
5538
5539 static const struct mtk_soc_data mt7981_data = {
5540 .reg_map = &mt7986_reg_map,
5541 .ana_rgc3 = 0x128,
5542 .caps = MT7981_CAPS,
5543 .hw_features = MTK_HW_FEATURES,
5544 .required_clks = MT7981_CLKS_BITMAP,
5545 .required_pctl = false,
5546 .version = 2,
5547 .offload_version = 2,
5548 .ppe_num = 2,
5549 .hash_offset = 4,
5550 .has_accounting = true,
5551 .foe_entry_size = MTK_FOE_ENTRY_V2_SIZE,
5552 .tx = {
5553 .desc_size = sizeof(struct mtk_tx_dma_v2),
5554 .dma_max_len = MTK_TX_DMA_BUF_LEN_V2,
5555 .dma_len_offset = 8,
5556 .dma_size = MTK_DMA_SIZE(2K),
5557 .fq_dma_size = MTK_DMA_SIZE(2K),
5558 },
5559 .rx = {
5560 .desc_size = sizeof(struct mtk_rx_dma),
5561 .irq_done_mask = MTK_RX_DONE_INT,
5562 .dma_l4_valid = RX_DMA_L4_VALID_V2,
5563 .dma_max_len = MTK_TX_DMA_BUF_LEN,
5564 .dma_len_offset = 16,
5565 .dma_size = MTK_DMA_SIZE(2K),
5566 },
5567 };
5568
5569 static const struct mtk_soc_data mt7986_data = {
5570 .reg_map = &mt7986_reg_map,
5571 .ana_rgc3 = 0x128,
5572 .caps = MT7986_CAPS,
5573 .hw_features = MTK_HW_FEATURES,
5574 .required_clks = MT7986_CLKS_BITMAP,
5575 .required_pctl = false,
5576 .version = 2,
5577 .offload_version = 2,
5578 .ppe_num = 2,
5579 .hash_offset = 4,
5580 .has_accounting = true,
5581 .foe_entry_size = MTK_FOE_ENTRY_V2_SIZE,
5582 .tx = {
5583 .desc_size = sizeof(struct mtk_tx_dma_v2),
5584 .dma_max_len = MTK_TX_DMA_BUF_LEN_V2,
5585 .dma_len_offset = 8,
5586 .dma_size = MTK_DMA_SIZE(2K),
5587 .fq_dma_size = MTK_DMA_SIZE(2K),
5588 },
5589 .rx = {
5590 .desc_size = sizeof(struct mtk_rx_dma),
5591 .irq_done_mask = MTK_RX_DONE_INT,
5592 .dma_l4_valid = RX_DMA_L4_VALID_V2,
5593 .dma_max_len = MTK_TX_DMA_BUF_LEN,
5594 .dma_len_offset = 16,
5595 .dma_size = MTK_DMA_SIZE(2K),
5596 },
5597 };
5598
5599 static const struct mtk_soc_data mt7988_data = {
5600 .reg_map = &mt7988_reg_map,
5601 .ana_rgc3 = 0x128,
5602 .caps = MT7988_CAPS,
5603 .hw_features = MTK_HW_FEATURES,
5604 .required_clks = MT7988_CLKS_BITMAP,
5605 .required_pctl = false,
5606 .version = 3,
5607 .offload_version = 2,
5608 .ppe_num = 3,
5609 .hash_offset = 4,
5610 .has_accounting = true,
5611 .foe_entry_size = MTK_FOE_ENTRY_V3_SIZE,
5612 .tx = {
5613 .desc_size = sizeof(struct mtk_tx_dma_v2),
5614 .dma_max_len = MTK_TX_DMA_BUF_LEN_V2,
5615 .dma_len_offset = 8,
5616 .dma_size = MTK_DMA_SIZE(2K),
5617 .fq_dma_size = MTK_DMA_SIZE(4K),
5618 },
5619 .rx = {
5620 .desc_size = sizeof(struct mtk_rx_dma_v2),
5621 .irq_done_mask = MTK_RX_DONE_INT_V2,
5622 .dma_l4_valid = RX_DMA_L4_VALID_V2,
5623 .dma_max_len = MTK_TX_DMA_BUF_LEN_V2,
5624 .dma_len_offset = 8,
5625 .dma_size = MTK_DMA_SIZE(2K),
5626 },
5627 };
5628
5629 static const struct mtk_soc_data rt5350_data = {
5630 .reg_map = &mt7628_reg_map,
5631 .caps = MT7628_CAPS,
5632 .hw_features = MTK_HW_FEATURES_MT7628,
5633 .required_clks = MT7628_CLKS_BITMAP,
5634 .required_pctl = false,
5635 .version = 1,
5636 .tx = {
5637 .desc_size = sizeof(struct mtk_tx_dma),
5638 .dma_max_len = MTK_TX_DMA_BUF_LEN,
5639 .dma_len_offset = 16,
5640 .dma_size = MTK_DMA_SIZE(2K),
5641 },
5642 .rx = {
5643 .desc_size = sizeof(struct mtk_rx_dma),
5644 .irq_done_mask = MTK_RX_DONE_INT,
5645 .dma_l4_valid = RX_DMA_L4_VALID_PDMA,
5646 .dma_max_len = MTK_TX_DMA_BUF_LEN,
5647 .dma_len_offset = 16,
5648 .dma_size = MTK_DMA_SIZE(2K),
5649 },
5650 };
5651
5652 const struct of_device_id of_mtk_match[] = {
5653 { .compatible = "mediatek,mt2701-eth", .data = &mt2701_data },
5654 { .compatible = "mediatek,mt7621-eth", .data = &mt7621_data },
5655 { .compatible = "mediatek,mt7622-eth", .data = &mt7622_data },
5656 { .compatible = "mediatek,mt7623-eth", .data = &mt7623_data },
5657 { .compatible = "mediatek,mt7629-eth", .data = &mt7629_data },
5658 { .compatible = "mediatek,mt7981-eth", .data = &mt7981_data },
5659 { .compatible = "mediatek,mt7986-eth", .data = &mt7986_data },
5660 { .compatible = "mediatek,mt7988-eth", .data = &mt7988_data },
5661 { .compatible = "ralink,rt5350-eth", .data = &rt5350_data },
5662 {},
5663 };
5664 MODULE_DEVICE_TABLE(of, of_mtk_match);
5665
5666 static struct platform_driver mtk_driver = {
5667 .probe = mtk_probe,
5668 .remove = mtk_remove,
5669 .driver = {
5670 .name = "mtk_soc_eth",
5671 .of_match_table = of_mtk_match,
5672 },
5673 };
5674
5675 module_platform_driver(mtk_driver);
5676
5677 MODULE_LICENSE("GPL");
5678 MODULE_AUTHOR("John Crispin <blogic@openwrt.org>");
5679 MODULE_DESCRIPTION("Ethernet driver for MediaTek SoC");
5680 MODULE_IMPORT_NS("NETDEV_INTERNAL");
5681