1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3 * Copyright (c) 2024 AIROHA Inc
4 * Author: Lorenzo Bianconi <lorenzo@kernel.org>
5 */
6 #include <linux/of.h>
7 #include <linux/of_net.h>
8 #include <linux/of_reserved_mem.h>
9 #include <linux/platform_device.h>
10 #include <linux/tcp.h>
11 #include <linux/u64_stats_sync.h>
12 #include <net/dst_metadata.h>
13 #include <net/page_pool/helpers.h>
14 #include <net/pkt_cls.h>
15 #include <uapi/linux/ppp_defs.h>
16
17 #include "airoha_regs.h"
18 #include "airoha_eth.h"
19
airoha_rr(void __iomem * base,u32 offset)20 u32 airoha_rr(void __iomem *base, u32 offset)
21 {
22 return readl(base + offset);
23 }
24
airoha_wr(void __iomem * base,u32 offset,u32 val)25 void airoha_wr(void __iomem *base, u32 offset, u32 val)
26 {
27 writel(val, base + offset);
28 }
29
airoha_rmw(void __iomem * base,u32 offset,u32 mask,u32 val)30 u32 airoha_rmw(void __iomem *base, u32 offset, u32 mask, u32 val)
31 {
32 val |= (airoha_rr(base, offset) & ~mask);
33 airoha_wr(base, offset, val);
34
35 return val;
36 }
37
airoha_qdma_set_irqmask(struct airoha_irq_bank * irq_bank,int index,u32 clear,u32 set)38 static void airoha_qdma_set_irqmask(struct airoha_irq_bank *irq_bank,
39 int index, u32 clear, u32 set)
40 {
41 struct airoha_qdma *qdma = irq_bank->qdma;
42 int bank = irq_bank - &qdma->irq_banks[0];
43 unsigned long flags;
44
45 if (WARN_ON_ONCE(index >= ARRAY_SIZE(irq_bank->irqmask)))
46 return;
47
48 spin_lock_irqsave(&irq_bank->irq_lock, flags);
49
50 irq_bank->irqmask[index] &= ~clear;
51 irq_bank->irqmask[index] |= set;
52 airoha_qdma_wr(qdma, REG_INT_ENABLE(bank, index),
53 irq_bank->irqmask[index]);
54 /* Read irq_enable register in order to guarantee the update above
55 * completes in the spinlock critical section.
56 */
57 airoha_qdma_rr(qdma, REG_INT_ENABLE(bank, index));
58
59 spin_unlock_irqrestore(&irq_bank->irq_lock, flags);
60 }
61
airoha_qdma_irq_enable(struct airoha_irq_bank * irq_bank,int index,u32 mask)62 static void airoha_qdma_irq_enable(struct airoha_irq_bank *irq_bank,
63 int index, u32 mask)
64 {
65 airoha_qdma_set_irqmask(irq_bank, index, 0, mask);
66 }
67
airoha_qdma_irq_disable(struct airoha_irq_bank * irq_bank,int index,u32 mask)68 static void airoha_qdma_irq_disable(struct airoha_irq_bank *irq_bank,
69 int index, u32 mask)
70 {
71 airoha_qdma_set_irqmask(irq_bank, index, mask, 0);
72 }
73
airoha_set_macaddr(struct airoha_gdm_dev * dev,const u8 * addr)74 static int airoha_set_macaddr(struct airoha_gdm_dev *dev, const u8 *addr)
75 {
76 u8 ref_addr[ETH_ALEN] __aligned(2);
77 struct airoha_eth *eth = dev->eth;
78 u32 reg, val, lmin, lmax;
79 int i;
80
81 eth_zero_addr(ref_addr);
82 lmin = (addr[3] << 16) | (addr[4] << 8) | addr[5];
83 lmax = lmin;
84
85 for (i = 0; i < ARRAY_SIZE(eth->ports); i++) {
86 struct airoha_gdm_port *port = eth->ports[i];
87 int j;
88
89 if (!port)
90 continue;
91
92 for (j = 0; j < ARRAY_SIZE(port->devs); j++) {
93 struct airoha_gdm_dev *iter_dev;
94 struct net_device *netdev;
95
96 iter_dev = port->devs[j];
97 if (!iter_dev || iter_dev == dev)
98 continue;
99
100 if (airoha_is_lan_gdm_dev(iter_dev) !=
101 airoha_is_lan_gdm_dev(dev))
102 continue;
103
104 netdev = netdev_from_priv(iter_dev);
105 if (netdev->reg_state != NETREG_REGISTERED)
106 continue;
107
108 ether_addr_copy(ref_addr, netdev->dev_addr);
109 val = (netdev->dev_addr[3] << 16) |
110 (netdev->dev_addr[4] << 8) | netdev->dev_addr[5];
111 if (val < lmin)
112 lmin = val;
113 if (val > lmax)
114 lmax = val;
115 }
116 }
117
118 if (!is_zero_ether_addr(ref_addr) && memcmp(ref_addr, addr, 3)) {
119 /* According to the HW design, hw mac address MSBs must be
120 * the same for each net_device with the same LAN/WAN
121 * configuration.
122 */
123 struct net_device *netdev = netdev_from_priv(dev);
124
125 dev_warn(eth->dev,
126 "%s: wrong mac addr, MSBs must be %02x:%02x:%02x\n",
127 netdev->name, ref_addr[0], ref_addr[1],
128 ref_addr[2]);
129 dev_warn(eth->dev, "FE hw forwarding won't work properly\n");
130
131 return -EINVAL;
132 }
133
134 reg = airoha_is_lan_gdm_dev(dev) ? REG_FE_LAN_MAC_H : REG_FE_WAN_MAC_H;
135 val = (addr[0] << 16) | (addr[1] << 8) | addr[2];
136 airoha_fe_wr(eth, reg, val);
137
138 airoha_fe_wr(eth, REG_FE_MAC_LMIN(reg), lmin);
139 airoha_fe_wr(eth, REG_FE_MAC_LMAX(reg), lmax);
140
141 airoha_ppe_init_upd_mem(dev, addr);
142
143 return 0;
144 }
145
airoha_set_gdm_port_fwd_cfg(struct airoha_eth * eth,u32 addr,u32 val)146 static void airoha_set_gdm_port_fwd_cfg(struct airoha_eth *eth, u32 addr,
147 u32 val)
148 {
149 airoha_fe_rmw(eth, addr, GDM_OCFQ_MASK,
150 FIELD_PREP(GDM_OCFQ_MASK, val));
151 airoha_fe_rmw(eth, addr, GDM_MCFQ_MASK,
152 FIELD_PREP(GDM_MCFQ_MASK, val));
153 airoha_fe_rmw(eth, addr, GDM_BCFQ_MASK,
154 FIELD_PREP(GDM_BCFQ_MASK, val));
155 airoha_fe_rmw(eth, addr, GDM_UCFQ_MASK,
156 FIELD_PREP(GDM_UCFQ_MASK, val));
157 }
158
airoha_set_vip_for_gdm_port(struct airoha_gdm_dev * dev,bool enable)159 static int airoha_set_vip_for_gdm_port(struct airoha_gdm_dev *dev, bool enable)
160 {
161 struct airoha_gdm_port *port = dev->port;
162 struct airoha_eth *eth = dev->eth;
163 u32 vip_port;
164
165 vip_port = eth->soc->ops.get_vip_port(port, dev->nbq);
166 if (enable) {
167 airoha_fe_set(eth, REG_FE_VIP_PORT_EN, vip_port);
168 airoha_fe_set(eth, REG_FE_IFC_PORT_EN, vip_port);
169 } else {
170 airoha_fe_clear(eth, REG_FE_VIP_PORT_EN, vip_port);
171 airoha_fe_clear(eth, REG_FE_IFC_PORT_EN, vip_port);
172 }
173
174 return 0;
175 }
176
airoha_fe_maccr_init(struct airoha_eth * eth)177 static void airoha_fe_maccr_init(struct airoha_eth *eth)
178 {
179 int p;
180
181 for (p = 1; p <= ARRAY_SIZE(eth->ports); p++) {
182 airoha_fe_set(eth, REG_GDM_FWD_CFG(p),
183 GDM_TCP_CKSUM_MASK | GDM_UDP_CKSUM_MASK |
184 GDM_IP4_CKSUM_MASK | GDM_DROP_CRC_ERR_MASK);
185 airoha_fe_rmw(eth, REG_GDM_LEN_CFG(p),
186 GDM_SHORT_LEN_MASK | GDM_LONG_LEN_MASK,
187 FIELD_PREP(GDM_SHORT_LEN_MASK, 60) |
188 FIELD_PREP(GDM_LONG_LEN_MASK, AIROHA_MAX_RX_SIZE));
189 }
190
191 airoha_fe_rmw(eth, REG_CDM_VLAN_CTRL(1), CDM_VLAN_MASK,
192 FIELD_PREP(CDM_VLAN_MASK, 0x8100));
193
194 airoha_fe_set(eth, REG_FE_CPORT_CFG, FE_CPORT_PAD);
195 }
196
airoha_fe_vip_setup(struct airoha_eth * eth)197 static void airoha_fe_vip_setup(struct airoha_eth *eth)
198 {
199 airoha_fe_wr(eth, REG_FE_VIP_PATN(3), ETH_P_PPP_DISC);
200 airoha_fe_wr(eth, REG_FE_VIP_EN(3), PATN_FCPU_EN_MASK | PATN_EN_MASK);
201
202 airoha_fe_wr(eth, REG_FE_VIP_PATN(4), PPP_LCP);
203 airoha_fe_wr(eth, REG_FE_VIP_EN(4),
204 PATN_FCPU_EN_MASK | FIELD_PREP(PATN_TYPE_MASK, 1) |
205 PATN_EN_MASK);
206
207 airoha_fe_wr(eth, REG_FE_VIP_PATN(6), PPP_IPCP);
208 airoha_fe_wr(eth, REG_FE_VIP_EN(6),
209 PATN_FCPU_EN_MASK | FIELD_PREP(PATN_TYPE_MASK, 1) |
210 PATN_EN_MASK);
211
212 airoha_fe_wr(eth, REG_FE_VIP_PATN(7), PPP_CHAP);
213 airoha_fe_wr(eth, REG_FE_VIP_EN(7),
214 PATN_FCPU_EN_MASK | FIELD_PREP(PATN_TYPE_MASK, 1) |
215 PATN_EN_MASK);
216
217 /* BOOTP (0x43) */
218 airoha_fe_wr(eth, REG_FE_VIP_PATN(8), 0x43);
219 airoha_fe_wr(eth, REG_FE_VIP_EN(8),
220 PATN_FCPU_EN_MASK | PATN_SP_EN_MASK |
221 FIELD_PREP(PATN_TYPE_MASK, 4) | PATN_EN_MASK);
222
223 /* BOOTP (0x44) */
224 airoha_fe_wr(eth, REG_FE_VIP_PATN(9), 0x44);
225 airoha_fe_wr(eth, REG_FE_VIP_EN(9),
226 PATN_FCPU_EN_MASK | PATN_SP_EN_MASK |
227 FIELD_PREP(PATN_TYPE_MASK, 4) | PATN_EN_MASK);
228
229 /* ISAKMP */
230 airoha_fe_wr(eth, REG_FE_VIP_PATN(10), 0x1f401f4);
231 airoha_fe_wr(eth, REG_FE_VIP_EN(10),
232 PATN_FCPU_EN_MASK | PATN_DP_EN_MASK | PATN_SP_EN_MASK |
233 FIELD_PREP(PATN_TYPE_MASK, 4) | PATN_EN_MASK);
234
235 airoha_fe_wr(eth, REG_FE_VIP_PATN(11), PPP_IPV6CP);
236 airoha_fe_wr(eth, REG_FE_VIP_EN(11),
237 PATN_FCPU_EN_MASK | FIELD_PREP(PATN_TYPE_MASK, 1) |
238 PATN_EN_MASK);
239
240 /* DHCPv6 */
241 airoha_fe_wr(eth, REG_FE_VIP_PATN(12), 0x2220223);
242 airoha_fe_wr(eth, REG_FE_VIP_EN(12),
243 PATN_FCPU_EN_MASK | PATN_DP_EN_MASK | PATN_SP_EN_MASK |
244 FIELD_PREP(PATN_TYPE_MASK, 4) | PATN_EN_MASK);
245
246 airoha_fe_wr(eth, REG_FE_VIP_PATN(19), PPP_PAP);
247 airoha_fe_wr(eth, REG_FE_VIP_EN(19),
248 PATN_FCPU_EN_MASK | FIELD_PREP(PATN_TYPE_MASK, 1) |
249 PATN_EN_MASK);
250
251 /* ETH->ETH_P_1905 (0x893a) */
252 airoha_fe_wr(eth, REG_FE_VIP_PATN(20), 0x893a);
253 airoha_fe_wr(eth, REG_FE_VIP_EN(20),
254 PATN_FCPU_EN_MASK | PATN_EN_MASK);
255
256 airoha_fe_wr(eth, REG_FE_VIP_PATN(21), ETH_P_LLDP);
257 airoha_fe_wr(eth, REG_FE_VIP_EN(21),
258 PATN_FCPU_EN_MASK | PATN_EN_MASK);
259 }
260
airoha_fe_get_pse_queue_rsv_pages(struct airoha_eth * eth,u32 port,u32 queue)261 static u32 airoha_fe_get_pse_queue_rsv_pages(struct airoha_eth *eth,
262 u32 port, u32 queue)
263 {
264 airoha_fe_rmw(eth, REG_FE_PSE_QUEUE_CFG_WR,
265 PSE_CFG_PORT_ID_MASK | PSE_CFG_QUEUE_ID_MASK,
266 FIELD_PREP(PSE_CFG_PORT_ID_MASK, port) |
267 FIELD_PREP(PSE_CFG_QUEUE_ID_MASK, queue));
268
269 return airoha_fe_get(eth, REG_FE_PSE_QUEUE_CFG_VAL,
270 PSE_CFG_OQ_RSV_MASK);
271 }
272
airoha_fe_set_pse_queue_rsv_pages(struct airoha_eth * eth,u32 port,u32 queue,u32 val)273 static void airoha_fe_set_pse_queue_rsv_pages(struct airoha_eth *eth,
274 u32 port, u32 queue, u32 val)
275 {
276 airoha_fe_rmw(eth, REG_FE_PSE_QUEUE_CFG_VAL, PSE_CFG_OQ_RSV_MASK,
277 FIELD_PREP(PSE_CFG_OQ_RSV_MASK, val));
278 airoha_fe_rmw(eth, REG_FE_PSE_QUEUE_CFG_WR,
279 PSE_CFG_PORT_ID_MASK | PSE_CFG_QUEUE_ID_MASK |
280 PSE_CFG_WR_EN_MASK | PSE_CFG_OQRSV_SEL_MASK,
281 FIELD_PREP(PSE_CFG_PORT_ID_MASK, port) |
282 FIELD_PREP(PSE_CFG_QUEUE_ID_MASK, queue) |
283 PSE_CFG_WR_EN_MASK | PSE_CFG_OQRSV_SEL_MASK);
284 }
285
airoha_fe_get_pse_all_rsv(struct airoha_eth * eth)286 static u32 airoha_fe_get_pse_all_rsv(struct airoha_eth *eth)
287 {
288 return airoha_fe_get(eth, REG_FE_PSE_BUF_SET, PSE_ALLRSV_MASK);
289 }
290
airoha_fe_set_pse_oq_rsv(struct airoha_eth * eth,u32 port,u32 queue,u32 val)291 static int airoha_fe_set_pse_oq_rsv(struct airoha_eth *eth,
292 u32 port, u32 queue, u32 val)
293 {
294 u32 orig_val = airoha_fe_get_pse_queue_rsv_pages(eth, port, queue);
295 u32 tmp, all_rsv, fq_limit;
296
297 airoha_fe_set_pse_queue_rsv_pages(eth, port, queue, val);
298
299 /* modify all rsv */
300 all_rsv = airoha_fe_get_pse_all_rsv(eth);
301 all_rsv += (val - orig_val);
302 airoha_fe_rmw(eth, REG_FE_PSE_BUF_SET, PSE_ALLRSV_MASK,
303 FIELD_PREP(PSE_ALLRSV_MASK, all_rsv));
304
305 /* modify hthd */
306 fq_limit = airoha_fe_get(eth, PSE_FQ_CFG, PSE_FQ_LIMIT_MASK);
307 tmp = fq_limit - all_rsv - 0x20;
308 airoha_fe_rmw(eth, REG_PSE_SHARE_USED_THD,
309 PSE_SHARE_USED_HTHD_MASK,
310 FIELD_PREP(PSE_SHARE_USED_HTHD_MASK, tmp));
311
312 tmp = fq_limit - all_rsv - 0x100;
313 airoha_fe_rmw(eth, REG_PSE_SHARE_USED_THD,
314 PSE_SHARE_USED_MTHD_MASK,
315 FIELD_PREP(PSE_SHARE_USED_MTHD_MASK, tmp));
316 tmp = (3 * tmp) >> 2;
317 airoha_fe_rmw(eth, REG_FE_PSE_BUF_SET,
318 PSE_SHARE_USED_LTHD_MASK,
319 FIELD_PREP(PSE_SHARE_USED_LTHD_MASK, tmp));
320
321 return 0;
322 }
323
airoha_fe_pse_ports_init(struct airoha_eth * eth)324 static void airoha_fe_pse_ports_init(struct airoha_eth *eth)
325 {
326 const u32 pse_port_num_queues[] = {
327 [FE_PSE_PORT_CDM1] = 6,
328 [FE_PSE_PORT_GDM1] = 6,
329 [FE_PSE_PORT_GDM2] = 32,
330 [FE_PSE_PORT_GDM3] = 6,
331 [FE_PSE_PORT_PPE1] = 4,
332 [FE_PSE_PORT_CDM2] = 6,
333 [FE_PSE_PORT_CDM3] = 8,
334 [FE_PSE_PORT_CDM4] = 10,
335 [FE_PSE_PORT_PPE2] = 4,
336 [FE_PSE_PORT_GDM4] = 2,
337 [FE_PSE_PORT_CDM5] = 2,
338 };
339 int q;
340
341 if (airoha_ppe_is_enabled(eth, 1)) {
342 u32 all_rsv;
343
344 /* hw misses PPE2 oq rsv */
345 all_rsv = airoha_fe_get_pse_all_rsv(eth);
346 all_rsv += PSE_RSV_PAGES *
347 pse_port_num_queues[FE_PSE_PORT_PPE2];
348 airoha_fe_rmw(eth, REG_FE_PSE_BUF_SET, PSE_ALLRSV_MASK,
349 FIELD_PREP(PSE_ALLRSV_MASK, all_rsv));
350 }
351
352 /* CDM1 */
353 for (q = 0; q < pse_port_num_queues[FE_PSE_PORT_CDM1]; q++)
354 airoha_fe_set_pse_oq_rsv(eth, FE_PSE_PORT_CDM1, q,
355 PSE_QUEUE_RSV_PAGES);
356 /* GDM1 */
357 for (q = 0; q < pse_port_num_queues[FE_PSE_PORT_GDM1]; q++)
358 airoha_fe_set_pse_oq_rsv(eth, FE_PSE_PORT_GDM1, q,
359 PSE_QUEUE_RSV_PAGES);
360 /* GDM2 */
361 for (q = 6; q < pse_port_num_queues[FE_PSE_PORT_GDM2]; q++)
362 airoha_fe_set_pse_oq_rsv(eth, FE_PSE_PORT_GDM2, q, 0);
363 /* GDM3 */
364 for (q = 0; q < pse_port_num_queues[FE_PSE_PORT_GDM3]; q++)
365 airoha_fe_set_pse_oq_rsv(eth, FE_PSE_PORT_GDM3, q,
366 PSE_QUEUE_RSV_PAGES);
367 /* PPE1 */
368 for (q = 0; q < pse_port_num_queues[FE_PSE_PORT_PPE1]; q++) {
369 if (q < pse_port_num_queues[FE_PSE_PORT_PPE1] / 2)
370 airoha_fe_set_pse_oq_rsv(eth, FE_PSE_PORT_PPE1, q,
371 PSE_QUEUE_RSV_PAGES);
372 else
373 airoha_fe_set_pse_oq_rsv(eth, FE_PSE_PORT_PPE1, q, 0);
374 }
375 /* CDM2 */
376 for (q = 0; q < pse_port_num_queues[FE_PSE_PORT_CDM2]; q++)
377 airoha_fe_set_pse_oq_rsv(eth, FE_PSE_PORT_CDM2, q,
378 PSE_QUEUE_RSV_PAGES);
379 /* CDM3 */
380 for (q = 0; q < pse_port_num_queues[FE_PSE_PORT_CDM3] - 1; q++)
381 airoha_fe_set_pse_oq_rsv(eth, FE_PSE_PORT_CDM3, q, 0);
382 /* CDM4 */
383 for (q = 4; q < pse_port_num_queues[FE_PSE_PORT_CDM4]; q++)
384 airoha_fe_set_pse_oq_rsv(eth, FE_PSE_PORT_CDM4, q,
385 PSE_QUEUE_RSV_PAGES);
386 if (airoha_ppe_is_enabled(eth, 1)) {
387 /* PPE2 */
388 for (q = 0; q < pse_port_num_queues[FE_PSE_PORT_PPE2]; q++) {
389 if (q < pse_port_num_queues[FE_PSE_PORT_PPE2] / 2)
390 airoha_fe_set_pse_oq_rsv(eth, FE_PSE_PORT_PPE2,
391 q,
392 PSE_QUEUE_RSV_PAGES);
393 else
394 airoha_fe_set_pse_oq_rsv(eth, FE_PSE_PORT_PPE2,
395 q, 0);
396 }
397 }
398 /* GDM4 */
399 for (q = 0; q < pse_port_num_queues[FE_PSE_PORT_GDM4]; q++)
400 airoha_fe_set_pse_oq_rsv(eth, FE_PSE_PORT_GDM4, q,
401 PSE_QUEUE_RSV_PAGES);
402 /* CDM5 */
403 for (q = 0; q < pse_port_num_queues[FE_PSE_PORT_CDM5]; q++)
404 airoha_fe_set_pse_oq_rsv(eth, FE_PSE_PORT_CDM5, q,
405 PSE_QUEUE_RSV_PAGES);
406 }
407
airoha_fe_mc_vlan_clear(struct airoha_eth * eth)408 static int airoha_fe_mc_vlan_clear(struct airoha_eth *eth)
409 {
410 int i;
411
412 for (i = 0; i < AIROHA_FE_MC_MAX_VLAN_TABLE; i++) {
413 int err, j;
414 u32 val;
415
416 airoha_fe_wr(eth, REG_MC_VLAN_DATA, 0x0);
417
418 val = FIELD_PREP(MC_VLAN_CFG_TABLE_ID_MASK, i) |
419 MC_VLAN_CFG_TABLE_SEL_MASK | MC_VLAN_CFG_RW_MASK;
420 airoha_fe_wr(eth, REG_MC_VLAN_CFG, val);
421 err = read_poll_timeout(airoha_fe_rr, val,
422 val & MC_VLAN_CFG_CMD_DONE_MASK,
423 USEC_PER_MSEC, 5 * USEC_PER_MSEC,
424 false, eth, REG_MC_VLAN_CFG);
425 if (err)
426 return err;
427
428 for (j = 0; j < AIROHA_FE_MC_MAX_VLAN_PORT; j++) {
429 airoha_fe_wr(eth, REG_MC_VLAN_DATA, 0x0);
430
431 val = FIELD_PREP(MC_VLAN_CFG_TABLE_ID_MASK, i) |
432 FIELD_PREP(MC_VLAN_CFG_PORT_ID_MASK, j) |
433 MC_VLAN_CFG_RW_MASK;
434 airoha_fe_wr(eth, REG_MC_VLAN_CFG, val);
435 err = read_poll_timeout(airoha_fe_rr, val,
436 val & MC_VLAN_CFG_CMD_DONE_MASK,
437 USEC_PER_MSEC,
438 5 * USEC_PER_MSEC, false, eth,
439 REG_MC_VLAN_CFG);
440 if (err)
441 return err;
442 }
443 }
444
445 return 0;
446 }
447
airoha_fe_crsn_qsel_init(struct airoha_eth * eth)448 static void airoha_fe_crsn_qsel_init(struct airoha_eth *eth)
449 {
450 /* CDM1_CRSN_QSEL */
451 airoha_fe_rmw(eth, REG_CDM_CRSN_QSEL(1, CRSN_22 >> 2),
452 CDM_CRSN_QSEL_REASON_MASK(CRSN_22),
453 FIELD_PREP(CDM_CRSN_QSEL_REASON_MASK(CRSN_22),
454 CDM_CRSN_QSEL_Q1));
455 airoha_fe_rmw(eth, REG_CDM_CRSN_QSEL(1, CRSN_08 >> 2),
456 CDM_CRSN_QSEL_REASON_MASK(CRSN_08),
457 FIELD_PREP(CDM_CRSN_QSEL_REASON_MASK(CRSN_08),
458 CDM_CRSN_QSEL_Q1));
459 airoha_fe_rmw(eth, REG_CDM_CRSN_QSEL(1, CRSN_21 >> 2),
460 CDM_CRSN_QSEL_REASON_MASK(CRSN_21),
461 FIELD_PREP(CDM_CRSN_QSEL_REASON_MASK(CRSN_21),
462 CDM_CRSN_QSEL_Q1));
463 airoha_fe_rmw(eth, REG_CDM_CRSN_QSEL(1, CRSN_24 >> 2),
464 CDM_CRSN_QSEL_REASON_MASK(CRSN_24),
465 FIELD_PREP(CDM_CRSN_QSEL_REASON_MASK(CRSN_24),
466 CDM_CRSN_QSEL_Q6));
467 airoha_fe_rmw(eth, REG_CDM_CRSN_QSEL(1, CRSN_25 >> 2),
468 CDM_CRSN_QSEL_REASON_MASK(CRSN_25),
469 FIELD_PREP(CDM_CRSN_QSEL_REASON_MASK(CRSN_25),
470 CDM_CRSN_QSEL_Q1));
471 /* CDM2_CRSN_QSEL */
472 airoha_fe_rmw(eth, REG_CDM_CRSN_QSEL(2, CRSN_08 >> 2),
473 CDM_CRSN_QSEL_REASON_MASK(CRSN_08),
474 FIELD_PREP(CDM_CRSN_QSEL_REASON_MASK(CRSN_08),
475 CDM_CRSN_QSEL_Q1));
476 airoha_fe_rmw(eth, REG_CDM_CRSN_QSEL(2, CRSN_21 >> 2),
477 CDM_CRSN_QSEL_REASON_MASK(CRSN_21),
478 FIELD_PREP(CDM_CRSN_QSEL_REASON_MASK(CRSN_21),
479 CDM_CRSN_QSEL_Q1));
480 airoha_fe_rmw(eth, REG_CDM_CRSN_QSEL(2, CRSN_22 >> 2),
481 CDM_CRSN_QSEL_REASON_MASK(CRSN_22),
482 FIELD_PREP(CDM_CRSN_QSEL_REASON_MASK(CRSN_22),
483 CDM_CRSN_QSEL_Q1));
484 airoha_fe_rmw(eth, REG_CDM_CRSN_QSEL(2, CRSN_24 >> 2),
485 CDM_CRSN_QSEL_REASON_MASK(CRSN_24),
486 FIELD_PREP(CDM_CRSN_QSEL_REASON_MASK(CRSN_24),
487 CDM_CRSN_QSEL_Q6));
488 airoha_fe_rmw(eth, REG_CDM_CRSN_QSEL(2, CRSN_25 >> 2),
489 CDM_CRSN_QSEL_REASON_MASK(CRSN_25),
490 FIELD_PREP(CDM_CRSN_QSEL_REASON_MASK(CRSN_25),
491 CDM_CRSN_QSEL_Q1));
492 }
493
airoha_fe_init(struct airoha_eth * eth)494 static int airoha_fe_init(struct airoha_eth *eth)
495 {
496 airoha_fe_maccr_init(eth);
497
498 /* PSE IQ reserve */
499 airoha_fe_rmw(eth, REG_PSE_IQ_REV1, PSE_IQ_RES1_P2_MASK,
500 FIELD_PREP(PSE_IQ_RES1_P2_MASK, 0x10));
501 airoha_fe_rmw(eth, REG_PSE_IQ_REV2,
502 PSE_IQ_RES2_P5_MASK | PSE_IQ_RES2_P4_MASK,
503 FIELD_PREP(PSE_IQ_RES2_P5_MASK, 0x40) |
504 FIELD_PREP(PSE_IQ_RES2_P4_MASK, 0x34));
505
506 /* enable FE copy engine for KA/DPI */
507 airoha_fe_wr(eth, REG_FE_PCE_CFG, PCE_DPI_EN_MASK | PCE_KA_EN_MASK);
508 /* set vip queue selection to ring 1 */
509 airoha_fe_rmw(eth, REG_CDM_FWD_CFG(1), CDM_VIP_QSEL_MASK,
510 FIELD_PREP(CDM_VIP_QSEL_MASK, 0x4));
511 airoha_fe_rmw(eth, REG_CDM_FWD_CFG(2), CDM_VIP_QSEL_MASK,
512 FIELD_PREP(CDM_VIP_QSEL_MASK, 0x4));
513 /* set GDM4 source interface offset to 8 */
514 airoha_fe_rmw(eth, REG_GDM_SRC_PORT_SET(4),
515 GDM_SPORT_OFF2_MASK |
516 GDM_SPORT_OFF1_MASK |
517 GDM_SPORT_OFF0_MASK,
518 FIELD_PREP(GDM_SPORT_OFF2_MASK, 8) |
519 FIELD_PREP(GDM_SPORT_OFF1_MASK, 8) |
520 FIELD_PREP(GDM_SPORT_OFF0_MASK, 8));
521
522 /* set PSE Page as 128B */
523 airoha_fe_rmw(eth, REG_FE_DMA_GLO_CFG,
524 FE_DMA_GLO_L2_SPACE_MASK | FE_DMA_GLO_PG_SZ_MASK,
525 FIELD_PREP(FE_DMA_GLO_L2_SPACE_MASK, 2) |
526 FE_DMA_GLO_PG_SZ_MASK);
527 airoha_fe_wr(eth, REG_FE_RST_GLO_CFG,
528 FE_RST_CORE_MASK | FE_RST_GDM3_MBI_ARB_MASK |
529 FE_RST_GDM4_MBI_ARB_MASK);
530 usleep_range(1000, 2000);
531
532 /* connect RxRing1 and RxRing15 to PSE Port0 OQ-1
533 * connect other rings to PSE Port0 OQ-0
534 */
535 airoha_fe_wr(eth, REG_FE_CDM1_OQ_MAP0, BIT(4));
536 airoha_fe_wr(eth, REG_FE_CDM1_OQ_MAP1, BIT(28));
537 airoha_fe_wr(eth, REG_FE_CDM1_OQ_MAP2, BIT(4));
538 airoha_fe_wr(eth, REG_FE_CDM1_OQ_MAP3, BIT(28));
539
540 airoha_fe_vip_setup(eth);
541 airoha_fe_pse_ports_init(eth);
542
543 airoha_fe_set(eth, REG_GDM_MISC_CFG,
544 GDM2_RDM_ACK_WAIT_PREF_MASK |
545 GDM2_CHN_VLD_MODE_MASK);
546 airoha_fe_rmw(eth, REG_CDM_FWD_CFG(2), CDM_OAM_QSEL_MASK,
547 FIELD_PREP(CDM_OAM_QSEL_MASK, 15));
548
549 /* init fragment and assemble Force Port */
550 /* NPU Core-3, NPU Bridge Channel-3 */
551 airoha_fe_rmw(eth, REG_IP_FRAG_FP,
552 IP_FRAGMENT_PORT_MASK | IP_FRAGMENT_NBQ_MASK,
553 FIELD_PREP(IP_FRAGMENT_PORT_MASK, 6) |
554 FIELD_PREP(IP_FRAGMENT_NBQ_MASK, 3));
555 /* QDMA LAN, RX Ring-22 */
556 airoha_fe_rmw(eth, REG_IP_FRAG_FP,
557 IP_ASSEMBLE_PORT_MASK | IP_ASSEMBLE_NBQ_MASK,
558 FIELD_PREP(IP_ASSEMBLE_PORT_MASK, 0) |
559 FIELD_PREP(IP_ASSEMBLE_NBQ_MASK, 22));
560
561 airoha_fe_set(eth, REG_GDM_FWD_CFG(AIROHA_GDM3_IDX), GDM_PAD_EN_MASK);
562 airoha_fe_set(eth, REG_GDM_FWD_CFG(AIROHA_GDM4_IDX), GDM_PAD_EN_MASK);
563
564 /* Enable split for MIB counters for GDM3 and GDM4 */
565 airoha_fe_set(eth, REG_FE_GDM_MIB_CFG(AIROHA_GDM3_IDX),
566 FE_GDM_TX_MIB_SPLIT_EN_MASK |
567 FE_GDM_RX_MIB_SPLIT_EN_MASK);
568 airoha_fe_set(eth, REG_FE_GDM_MIB_CFG(AIROHA_GDM4_IDX),
569 FE_GDM_TX_MIB_SPLIT_EN_MASK |
570 FE_GDM_RX_MIB_SPLIT_EN_MASK);
571
572 airoha_fe_crsn_qsel_init(eth);
573
574 airoha_fe_clear(eth, REG_FE_CPORT_CFG, FE_CPORT_QUEUE_XFC_MASK);
575 airoha_fe_set(eth, REG_FE_CPORT_CFG, FE_CPORT_PORT_XFC_MASK);
576
577 /* default aging mode for mbi unlock issue */
578 airoha_fe_rmw(eth, REG_GDM_CHN_RLS(2),
579 MBI_RX_AGE_SEL_MASK | MBI_TX_AGE_SEL_MASK,
580 FIELD_PREP(MBI_RX_AGE_SEL_MASK, 3) |
581 FIELD_PREP(MBI_TX_AGE_SEL_MASK, 3));
582
583 /* disable IFC by default */
584 airoha_fe_clear(eth, REG_FE_CSR_IFC_CFG, FE_IFC_EN_MASK);
585
586 /* enable 1:N vlan action, init vlan table */
587 airoha_fe_set(eth, REG_MC_VLAN_EN, MC_VLAN_EN_MASK);
588
589 return airoha_fe_mc_vlan_clear(eth);
590 }
591
airoha_qdma_fill_rx_queue(struct airoha_queue * q)592 static int airoha_qdma_fill_rx_queue(struct airoha_queue *q)
593 {
594 struct airoha_qdma *qdma = q->qdma;
595 int qid = q - &qdma->q_rx[0];
596 int nframes = 0;
597
598 while (q->queued < q->ndesc - 1) {
599 struct airoha_queue_entry *e = &q->entry[q->head];
600 struct airoha_qdma_desc *desc = &q->desc[q->head];
601 struct page *page;
602 int offset;
603 u32 val;
604
605 page = page_pool_dev_alloc_frag(q->page_pool, &offset,
606 q->buf_size);
607 if (!page)
608 break;
609
610 q->head = (q->head + 1) % q->ndesc;
611 q->queued++;
612 nframes++;
613
614 offset += AIROHA_RX_HEADROOM;
615 e->buf = page_address(page) + offset;
616 e->dma_addr = page_pool_get_dma_addr(page) + offset;
617 e->dma_len = SKB_WITH_OVERHEAD(AIROHA_RX_LEN(q->buf_size));
618
619 val = FIELD_PREP(QDMA_DESC_LEN_MASK, e->dma_len);
620 WRITE_ONCE(desc->ctrl, cpu_to_le32(val));
621 WRITE_ONCE(desc->addr, cpu_to_le32(e->dma_addr));
622 val = FIELD_PREP(QDMA_DESC_NEXT_ID_MASK, q->head);
623 WRITE_ONCE(desc->data, cpu_to_le32(val));
624 WRITE_ONCE(desc->msg0, 0);
625 WRITE_ONCE(desc->msg1, 0);
626 WRITE_ONCE(desc->msg2, 0);
627 WRITE_ONCE(desc->msg3, 0);
628 }
629
630 if (nframes)
631 airoha_qdma_rmw(qdma, REG_RX_CPU_IDX(qid),
632 RX_RING_CPU_IDX_MASK,
633 FIELD_PREP(RX_RING_CPU_IDX_MASK, q->head));
634
635 return nframes;
636 }
637
638 static struct airoha_gdm_dev *
airoha_qdma_get_gdm_dev(struct airoha_eth * eth,struct airoha_qdma_desc * desc)639 airoha_qdma_get_gdm_dev(struct airoha_eth *eth, struct airoha_qdma_desc *desc)
640 {
641 struct airoha_gdm_port *port;
642 u16 p, d;
643
644 if (eth->soc->ops.get_dev_from_sport(desc, &p, &d))
645 return ERR_PTR(-ENODEV);
646
647 if (p >= ARRAY_SIZE(eth->ports))
648 return ERR_PTR(-ENODEV);
649
650 port = eth->ports[p];
651 if (!port)
652 return ERR_PTR(-ENODEV);
653
654 if (d >= ARRAY_SIZE(port->devs))
655 return ERR_PTR(-ENODEV);
656
657 return port->devs[d] ? port->devs[d] : ERR_PTR(-ENODEV);
658 }
659
airoha_qdma_rx_process(struct airoha_queue * q,int budget)660 static int airoha_qdma_rx_process(struct airoha_queue *q, int budget)
661 {
662 enum dma_data_direction dir = page_pool_get_dma_dir(q->page_pool);
663 struct airoha_qdma *qdma = q->qdma;
664 struct airoha_eth *eth = qdma->eth;
665 int qid = q - &qdma->q_rx[0];
666 int done = 0;
667
668 while (done < budget) {
669 struct airoha_queue_entry *e = &q->entry[q->tail];
670 struct airoha_qdma_desc *desc = &q->desc[q->tail];
671 u32 hash, reason, msg1, desc_ctrl;
672 struct airoha_gdm_dev *dev;
673 struct net_device *netdev;
674 int data_len, len;
675 struct page *page;
676
677 desc_ctrl = le32_to_cpu(READ_ONCE(desc->ctrl));
678 if (!(desc_ctrl & QDMA_DESC_DONE_MASK))
679 break;
680
681 dma_rmb();
682
683 q->tail = (q->tail + 1) % q->ndesc;
684 q->queued--;
685
686 dma_sync_single_for_cpu(eth->dev, e->dma_addr, e->dma_len,
687 dir);
688
689 page = virt_to_head_page(e->buf);
690 len = FIELD_GET(QDMA_DESC_LEN_MASK, desc_ctrl);
691 data_len = q->skb ? AIROHA_RX_LEN(q->buf_size) : e->dma_len;
692 if (!len || data_len < len)
693 goto free_frag;
694
695 dev = airoha_qdma_get_gdm_dev(eth, desc);
696 if (IS_ERR(dev))
697 goto free_frag;
698
699 netdev = netdev_from_priv(dev);
700 if (!q->skb) { /* first buffer */
701 q->skb = napi_build_skb(e->buf - AIROHA_RX_HEADROOM,
702 q->buf_size);
703 if (!q->skb)
704 goto free_frag;
705
706 skb_reserve(q->skb, AIROHA_RX_HEADROOM);
707 __skb_put(q->skb, len);
708 skb_mark_for_recycle(q->skb);
709 q->skb->dev = netdev;
710 q->skb->protocol = eth_type_trans(q->skb, netdev);
711 q->skb->ip_summed = CHECKSUM_UNNECESSARY;
712 skb_record_rx_queue(q->skb, qid);
713 } else { /* scattered frame */
714 struct skb_shared_info *shinfo = skb_shinfo(q->skb);
715 int nr_frags = shinfo->nr_frags;
716
717 if (nr_frags >= ARRAY_SIZE(shinfo->frags))
718 goto free_frag;
719
720 skb_add_rx_frag(q->skb, nr_frags, page,
721 e->buf - page_address(page), len,
722 q->buf_size);
723 }
724
725 if (FIELD_GET(QDMA_DESC_MORE_MASK, desc_ctrl))
726 continue;
727
728 if (netdev_uses_dsa(netdev)) {
729 struct airoha_gdm_port *port = dev->port;
730
731 /* PPE module requires untagged packets to work
732 * properly and it provides DSA port index via the
733 * DMA descriptor. Report DSA tag to the DSA stack
734 * via skb dst info.
735 */
736 u32 msg0 = le32_to_cpu(READ_ONCE(desc->msg0));
737 u32 sptag = FIELD_GET(QDMA_ETH_RXMSG_SPTAG, msg0);
738
739 if (sptag < ARRAY_SIZE(port->dsa_meta) &&
740 port->dsa_meta[sptag])
741 skb_dst_set_noref(q->skb,
742 &port->dsa_meta[sptag]->dst);
743 }
744
745 msg1 = le32_to_cpu(READ_ONCE(desc->msg1));
746 hash = FIELD_GET(AIROHA_RXD4_FOE_ENTRY, msg1);
747 if (hash != AIROHA_RXD4_FOE_ENTRY)
748 skb_set_hash(q->skb, jhash_1word(hash, 0),
749 PKT_HASH_TYPE_L4);
750
751 reason = FIELD_GET(AIROHA_RXD4_PPE_CPU_REASON, msg1);
752 if (reason == PPE_CPU_REASON_HIT_UNBIND_RATE_REACHED)
753 airoha_ppe_check_skb(ð->ppe->dev, q->skb, hash,
754 false);
755
756 done++;
757 napi_gro_receive(&q->napi, q->skb);
758 q->skb = NULL;
759 continue;
760 free_frag:
761 if (q->skb) {
762 dev_kfree_skb(q->skb);
763 q->skb = NULL;
764 }
765 page_pool_put_full_page(q->page_pool, page, true);
766 }
767 airoha_qdma_fill_rx_queue(q);
768
769 return done;
770 }
771
airoha_qdma_rx_napi_poll(struct napi_struct * napi,int budget)772 static int airoha_qdma_rx_napi_poll(struct napi_struct *napi, int budget)
773 {
774 struct airoha_queue *q = container_of(napi, struct airoha_queue, napi);
775 int cur, done = 0;
776
777 do {
778 cur = airoha_qdma_rx_process(q, budget - done);
779 done += cur;
780 } while (cur && done < budget);
781
782 if (done < budget && napi_complete(napi)) {
783 struct airoha_qdma *qdma = q->qdma;
784 int i, qid = q - &qdma->q_rx[0];
785 int intr_reg = qid < RX_DONE_HIGH_OFFSET ? QDMA_INT_REG_IDX1
786 : QDMA_INT_REG_IDX2;
787
788 for (i = 0; i < ARRAY_SIZE(qdma->irq_banks); i++) {
789 if (!(BIT(qid) & RX_IRQ_BANK_PIN_MASK(i)))
790 continue;
791
792 airoha_qdma_irq_enable(&qdma->irq_banks[i], intr_reg,
793 BIT(qid % RX_DONE_HIGH_OFFSET));
794 }
795 }
796
797 return done;
798 }
799
airoha_qdma_init_rx_queue(struct airoha_queue * q,struct airoha_qdma * qdma,int ndesc)800 static int airoha_qdma_init_rx_queue(struct airoha_queue *q,
801 struct airoha_qdma *qdma, int ndesc)
802 {
803 const struct page_pool_params pp_params = {
804 .order = 0,
805 .pool_size = 256,
806 .flags = PP_FLAG_DMA_MAP | PP_FLAG_DMA_SYNC_DEV,
807 .dma_dir = DMA_FROM_DEVICE,
808 .max_len = PAGE_SIZE,
809 .nid = NUMA_NO_NODE,
810 .dev = qdma->eth->dev,
811 .napi = &q->napi,
812 };
813 struct airoha_eth *eth = qdma->eth;
814 int qid = q - &qdma->q_rx[0], thr;
815 dma_addr_t dma_addr;
816
817 q->buf_size = PAGE_SIZE / 2;
818 q->qdma = qdma;
819
820 q->entry = devm_kzalloc(eth->dev, ndesc * sizeof(*q->entry),
821 GFP_KERNEL);
822 if (!q->entry)
823 return -ENOMEM;
824
825 q->desc = dmam_alloc_coherent(eth->dev, ndesc * sizeof(*q->desc),
826 &dma_addr, GFP_KERNEL);
827 if (!q->desc)
828 return -ENOMEM;
829
830 q->page_pool = page_pool_create(&pp_params);
831 if (IS_ERR(q->page_pool)) {
832 int err = PTR_ERR(q->page_pool);
833
834 q->page_pool = NULL;
835 return err;
836 }
837
838 q->ndesc = ndesc;
839 netif_napi_add(eth->napi_dev, &q->napi, airoha_qdma_rx_napi_poll);
840
841 airoha_qdma_wr(qdma, REG_RX_RING_BASE(qid), dma_addr);
842 airoha_qdma_rmw(qdma, REG_RX_RING_SIZE(qid),
843 RX_RING_SIZE_MASK,
844 FIELD_PREP(RX_RING_SIZE_MASK, ndesc));
845
846 thr = clamp(ndesc >> 3, 1, 32);
847 airoha_qdma_rmw(qdma, REG_RX_RING_SIZE(qid), RX_RING_THR_MASK,
848 FIELD_PREP(RX_RING_THR_MASK, thr));
849 airoha_qdma_rmw(qdma, REG_RX_DMA_IDX(qid), RX_RING_DMA_IDX_MASK,
850 FIELD_PREP(RX_RING_DMA_IDX_MASK, q->head));
851 airoha_qdma_set(qdma, REG_RX_SCATTER_CFG(qid), RX_RING_SG_EN_MASK);
852
853 airoha_qdma_fill_rx_queue(q);
854
855 return 0;
856 }
857
airoha_qdma_cleanup_rx_queue(struct airoha_queue * q)858 static void airoha_qdma_cleanup_rx_queue(struct airoha_queue *q)
859 {
860 struct airoha_qdma *qdma = q->qdma;
861 struct airoha_eth *eth = qdma->eth;
862 int qid = q - &qdma->q_rx[0];
863
864 while (q->queued) {
865 struct airoha_queue_entry *e = &q->entry[q->tail];
866 struct airoha_qdma_desc *desc = &q->desc[q->tail];
867 struct page *page = virt_to_head_page(e->buf);
868
869 dma_sync_single_for_cpu(eth->dev, e->dma_addr, e->dma_len,
870 page_pool_get_dma_dir(q->page_pool));
871 page_pool_put_full_page(q->page_pool, page, false);
872 /* Reset DMA descriptor */
873 WRITE_ONCE(desc->ctrl, 0);
874 WRITE_ONCE(desc->addr, 0);
875 WRITE_ONCE(desc->data, 0);
876 WRITE_ONCE(desc->msg0, 0);
877 WRITE_ONCE(desc->msg1, 0);
878 WRITE_ONCE(desc->msg2, 0);
879 WRITE_ONCE(desc->msg3, 0);
880
881 q->tail = (q->tail + 1) % q->ndesc;
882 q->queued--;
883 }
884
885 q->head = q->tail;
886 /* Set RX_DMA_IDX to RX_CPU_IDX to notify the hw the QDMA RX ring is
887 * empty.
888 */
889 airoha_qdma_rmw(qdma, REG_RX_CPU_IDX(qid), RX_RING_CPU_IDX_MASK,
890 FIELD_PREP(RX_RING_CPU_IDX_MASK, q->head));
891 airoha_qdma_rmw(qdma, REG_RX_DMA_IDX(qid), RX_RING_DMA_IDX_MASK,
892 FIELD_PREP(RX_RING_DMA_IDX_MASK, q->tail));
893 }
894
airoha_qdma_init_rx(struct airoha_qdma * qdma)895 static int airoha_qdma_init_rx(struct airoha_qdma *qdma)
896 {
897 int i;
898
899 for (i = 0; i < ARRAY_SIZE(qdma->q_rx); i++) {
900 int err;
901
902 if (!(RX_DONE_INT_MASK & BIT(i))) {
903 /* rx-queue not binded to irq */
904 continue;
905 }
906
907 err = airoha_qdma_init_rx_queue(&qdma->q_rx[i], qdma,
908 RX_DSCP_NUM(i));
909 if (err)
910 return err;
911 }
912
913 return 0;
914 }
915
airoha_qdma_wake_netdev_txqs(struct airoha_queue * q)916 static void airoha_qdma_wake_netdev_txqs(struct airoha_queue *q)
917 {
918 struct airoha_qdma *qdma = q->qdma;
919 struct airoha_eth *eth = qdma->eth;
920 int i, qid = q - &qdma->q_tx[0];
921
922 for (i = 0; i < ARRAY_SIZE(eth->ports); i++) {
923 struct airoha_gdm_port *port = eth->ports[i];
924 int d;
925
926 if (!port)
927 continue;
928
929 for (d = 0; d < ARRAY_SIZE(port->devs); d++) {
930 struct airoha_gdm_dev *dev = port->devs[d];
931 struct net_device *netdev;
932 int j;
933
934 if (!dev)
935 continue;
936
937 if (rcu_access_pointer(dev->qdma) != qdma)
938 continue;
939
940 netdev = netdev_from_priv(dev);
941 for (j = 0; j < netdev->num_tx_queues; j++) {
942 if (airoha_qdma_get_txq(qdma, j) != qid)
943 continue;
944
945 netif_wake_subqueue(netdev, j);
946 }
947 }
948 }
949 q->txq_stopped = false;
950 }
951
airoha_unmap_xmit_buf(struct airoha_eth * eth,struct airoha_queue_entry * e)952 static void airoha_unmap_xmit_buf(struct airoha_eth *eth,
953 struct airoha_queue_entry *e)
954 {
955 switch (e->dma_type) {
956 case AIROHA_DMA_MAP_PAGE:
957 dma_unmap_page(eth->dev, e->dma_addr, e->dma_len,
958 DMA_TO_DEVICE);
959 break;
960 case AIROHA_DMA_MAP_SINGLE:
961 dma_unmap_single(eth->dev, e->dma_addr, e->dma_len,
962 DMA_TO_DEVICE);
963 break;
964 case AIROHA_DMA_UNMAPPED:
965 default:
966 break;
967 }
968 e->dma_type = AIROHA_DMA_UNMAPPED;
969 }
970
airoha_qdma_tx_napi_poll(struct napi_struct * napi,int budget)971 static int airoha_qdma_tx_napi_poll(struct napi_struct *napi, int budget)
972 {
973 struct airoha_tx_irq_queue *irq_q;
974 int id, done = 0, irq_queued;
975 struct airoha_qdma *qdma;
976 struct airoha_eth *eth;
977 u32 status, head;
978
979 irq_q = container_of(napi, struct airoha_tx_irq_queue, napi);
980 qdma = irq_q->qdma;
981 id = irq_q - &qdma->q_tx_irq[0];
982 eth = qdma->eth;
983
984 status = airoha_qdma_rr(qdma, REG_IRQ_STATUS(id));
985 head = FIELD_GET(IRQ_HEAD_IDX_MASK, status);
986 head = head % irq_q->size;
987 irq_queued = FIELD_GET(IRQ_ENTRY_LEN_MASK, status);
988
989 while (irq_queued > 0 && done < budget) {
990 u32 qid, val = irq_q->q[head];
991 struct airoha_qdma_desc *desc;
992 struct airoha_queue_entry *e;
993 struct airoha_queue *q;
994 u32 index, desc_ctrl;
995 struct sk_buff *skb;
996
997 if (val == 0xff)
998 break;
999
1000 irq_q->q[head] = 0xff; /* mark as done */
1001 head = (head + 1) % irq_q->size;
1002 irq_queued--;
1003 done++;
1004
1005 qid = FIELD_GET(IRQ_RING_IDX_MASK, val);
1006 if (qid >= ARRAY_SIZE(qdma->q_tx))
1007 continue;
1008
1009 q = &qdma->q_tx[qid];
1010 if (!q->ndesc)
1011 continue;
1012
1013 index = FIELD_GET(IRQ_DESC_IDX_MASK, val);
1014 if (index >= q->ndesc)
1015 continue;
1016
1017 spin_lock_bh(&q->lock);
1018
1019 if (!q->queued)
1020 goto unlock;
1021
1022 desc = &q->desc[index];
1023 desc_ctrl = le32_to_cpu(desc->ctrl);
1024
1025 if (!(desc_ctrl & QDMA_DESC_DONE_MASK) &&
1026 !(desc_ctrl & QDMA_DESC_DROP_MASK))
1027 goto unlock;
1028
1029 e = &q->entry[index];
1030 skb = e->skb;
1031 e->skb = NULL;
1032
1033 airoha_unmap_xmit_buf(eth, e);
1034 list_add_tail(&e->list, &q->tx_list);
1035
1036 WRITE_ONCE(desc->msg0, 0);
1037 WRITE_ONCE(desc->msg1, 0);
1038 q->queued--;
1039
1040 if (skb) {
1041 struct airoha_gdm_dev *dev = netdev_priv(skb->dev);
1042 u16 qidx = skb_get_queue_mapping(skb);
1043 struct netdev_queue *txq;
1044
1045 txq = skb_get_tx_queue(skb->dev, skb);
1046
1047 spin_lock_bh(&dev->txq_lock[qidx]);
1048 netdev_tx_completed_queue(txq, 1, skb->len);
1049 spin_unlock_bh(&dev->txq_lock[qidx]);
1050
1051 dev_kfree_skb_any(skb);
1052 }
1053
1054 if (q->txq_stopped && q->ndesc - q->queued >= q->free_thr) {
1055 /* Since multiple net_device TX queues can share the
1056 * same hw QDMA TX queue, there is no guarantee we have
1057 * inflight packets queued in hw belonging to a
1058 * net_device TX queue stopped in the xmit path.
1059 * In order to avoid any potential net_device TX queue
1060 * stall, we need to wake all the net_device TX queues
1061 * feeding the same hw QDMA TX queue.
1062 */
1063 airoha_qdma_wake_netdev_txqs(q);
1064 }
1065
1066 unlock:
1067 spin_unlock_bh(&q->lock);
1068 }
1069
1070 if (done) {
1071 int i, len = done >> 7;
1072
1073 for (i = 0; i < len; i++)
1074 airoha_qdma_rmw(qdma, REG_IRQ_CLEAR_LEN(id),
1075 IRQ_CLEAR_LEN_MASK, 0x80);
1076 airoha_qdma_rmw(qdma, REG_IRQ_CLEAR_LEN(id),
1077 IRQ_CLEAR_LEN_MASK, (done & 0x7f));
1078 }
1079
1080 if (done < budget && napi_complete(napi))
1081 airoha_qdma_irq_enable(&qdma->irq_banks[0], QDMA_INT_REG_IDX0,
1082 TX_DONE_INT_MASK(id));
1083
1084 return done;
1085 }
1086
airoha_qdma_init_tx_queue(struct airoha_queue * q,struct airoha_qdma * qdma,int size)1087 static int airoha_qdma_init_tx_queue(struct airoha_queue *q,
1088 struct airoha_qdma *qdma, int size)
1089 {
1090 struct airoha_eth *eth = qdma->eth;
1091 int i, qid = q - &qdma->q_tx[0];
1092 dma_addr_t dma_addr;
1093
1094 spin_lock_init(&q->lock);
1095 q->qdma = qdma;
1096 q->free_thr = 1 + MAX_SKB_FRAGS;
1097 INIT_LIST_HEAD(&q->tx_list);
1098
1099 q->entry = devm_kzalloc(eth->dev, size * sizeof(*q->entry),
1100 GFP_KERNEL);
1101 if (!q->entry)
1102 return -ENOMEM;
1103
1104 q->desc = dmam_alloc_coherent(eth->dev, size * sizeof(*q->desc),
1105 &dma_addr, GFP_KERNEL);
1106 if (!q->desc)
1107 return -ENOMEM;
1108
1109 for (i = 0; i < size; i++) {
1110 u32 val = FIELD_PREP(QDMA_DESC_DONE_MASK, 1);
1111
1112 list_add_tail(&q->entry[i].list, &q->tx_list);
1113 WRITE_ONCE(q->desc[i].ctrl, cpu_to_le32(val));
1114 }
1115 q->ndesc = size;
1116
1117 /* xmit ring drop default setting */
1118 airoha_qdma_set(qdma, REG_TX_RING_BLOCKING(qid),
1119 TX_RING_IRQ_BLOCKING_TX_DROP_EN_MASK);
1120
1121 airoha_qdma_wr(qdma, REG_TX_RING_BASE(qid), dma_addr);
1122 airoha_qdma_rmw(qdma, REG_TX_CPU_IDX(qid), TX_RING_CPU_IDX_MASK,
1123 FIELD_PREP(TX_RING_CPU_IDX_MASK, 0));
1124 airoha_qdma_rmw(qdma, REG_TX_DMA_IDX(qid), TX_RING_DMA_IDX_MASK,
1125 FIELD_PREP(TX_RING_DMA_IDX_MASK, 0));
1126
1127 return 0;
1128 }
1129
airoha_qdma_tx_irq_init(struct airoha_tx_irq_queue * irq_q,struct airoha_qdma * qdma,int size)1130 static int airoha_qdma_tx_irq_init(struct airoha_tx_irq_queue *irq_q,
1131 struct airoha_qdma *qdma, int size)
1132 {
1133 int id = irq_q - &qdma->q_tx_irq[0];
1134 struct airoha_eth *eth = qdma->eth;
1135 dma_addr_t dma_addr;
1136
1137 irq_q->q = dmam_alloc_coherent(eth->dev, size * sizeof(u32),
1138 &dma_addr, GFP_KERNEL);
1139 if (!irq_q->q)
1140 return -ENOMEM;
1141
1142 memset(irq_q->q, 0xff, size * sizeof(u32));
1143 irq_q->size = size;
1144 irq_q->qdma = qdma;
1145
1146 netif_napi_add_tx(eth->napi_dev, &irq_q->napi,
1147 airoha_qdma_tx_napi_poll);
1148
1149 airoha_qdma_wr(qdma, REG_TX_IRQ_BASE(id), dma_addr);
1150 airoha_qdma_rmw(qdma, REG_TX_IRQ_CFG(id), TX_IRQ_DEPTH_MASK,
1151 FIELD_PREP(TX_IRQ_DEPTH_MASK, size));
1152 airoha_qdma_rmw(qdma, REG_TX_IRQ_CFG(id), TX_IRQ_THR_MASK,
1153 FIELD_PREP(TX_IRQ_THR_MASK, 1));
1154
1155 return 0;
1156 }
1157
airoha_qdma_init_tx(struct airoha_qdma * qdma)1158 static int airoha_qdma_init_tx(struct airoha_qdma *qdma)
1159 {
1160 int i, err;
1161
1162 for (i = 0; i < ARRAY_SIZE(qdma->q_tx_irq); i++) {
1163 err = airoha_qdma_tx_irq_init(&qdma->q_tx_irq[i], qdma,
1164 IRQ_QUEUE_LEN(i));
1165 if (err)
1166 return err;
1167 }
1168
1169 for (i = 0; i < ARRAY_SIZE(qdma->q_tx); i++) {
1170 err = airoha_qdma_init_tx_queue(&qdma->q_tx[i], qdma,
1171 TX_DSCP_NUM);
1172 if (err)
1173 return err;
1174 }
1175
1176 return 0;
1177 }
1178
airoha_qdma_tx_cleanup(struct airoha_qdma * qdma)1179 static void airoha_qdma_tx_cleanup(struct airoha_qdma *qdma)
1180 {
1181 u32 status;
1182 int i;
1183
1184 airoha_qdma_clear(qdma, REG_QDMA_GLOBAL_CFG,
1185 GLOBAL_CFG_TX_DMA_EN_MASK);
1186 if (read_poll_timeout(airoha_qdma_rr, status,
1187 !(status & GLOBAL_CFG_TX_DMA_BUSY_MASK),
1188 USEC_PER_MSEC, 50 * USEC_PER_MSEC, true,
1189 qdma, REG_QDMA_GLOBAL_CFG))
1190 dev_warn(qdma->eth->dev, "QDMA TX DMA busy timeout\n");
1191
1192 for (i = 0; i < ARRAY_SIZE(qdma->q_tx); i++) {
1193 struct airoha_queue *q = &qdma->q_tx[i];
1194 u16 index = 0;
1195 int j;
1196
1197 if (!q->ndesc)
1198 continue;
1199
1200 spin_lock_bh(&q->lock);
1201
1202 q->flushing = true;
1203 for (j = 0; j < q->ndesc; j++) {
1204 struct airoha_queue_entry *e = &q->entry[j];
1205 struct airoha_qdma_desc *desc = &q->desc[j];
1206 struct sk_buff *skb = e->skb;
1207
1208 if (e->dma_type == AIROHA_DMA_UNMAPPED)
1209 continue;
1210
1211 airoha_unmap_xmit_buf(qdma->eth, e);
1212 list_add_tail(&e->list, &q->tx_list);
1213
1214 WRITE_ONCE(desc->ctrl, 0);
1215 WRITE_ONCE(desc->addr, 0);
1216 WRITE_ONCE(desc->data, 0);
1217 WRITE_ONCE(desc->msg0, 0);
1218 WRITE_ONCE(desc->msg1, 0);
1219 WRITE_ONCE(desc->msg2, 0);
1220
1221 if (skb) {
1222 struct netdev_queue *txq;
1223
1224 txq = skb_get_tx_queue(skb->dev, skb);
1225 netdev_tx_completed_queue(txq, 1, skb->len);
1226 dev_kfree_skb_any(skb);
1227 e->skb = NULL;
1228 }
1229
1230 q->queued--;
1231 }
1232
1233 if (!list_empty(&q->tx_list)) {
1234 struct airoha_queue_entry *e;
1235
1236 e = list_first_entry(&q->tx_list,
1237 struct airoha_queue_entry, list);
1238 index = e - q->entry;
1239 }
1240 airoha_qdma_rmw(qdma, REG_TX_CPU_IDX(i), TX_RING_CPU_IDX_MASK,
1241 FIELD_PREP(TX_RING_CPU_IDX_MASK, index));
1242 airoha_qdma_rmw(qdma, REG_TX_DMA_IDX(i), TX_RING_DMA_IDX_MASK,
1243 FIELD_PREP(TX_RING_DMA_IDX_MASK, index));
1244
1245 spin_unlock_bh(&q->lock);
1246 }
1247 }
1248
airoha_qdma_init_hfwd_queues(struct airoha_qdma * qdma)1249 static int airoha_qdma_init_hfwd_queues(struct airoha_qdma *qdma)
1250 {
1251 int size, index, num_desc = HW_DSCP_NUM;
1252 struct airoha_eth *eth = qdma->eth;
1253 int id = qdma - ð->qdma[0];
1254 u32 status, buf_size;
1255 dma_addr_t dma_addr;
1256 const char *name;
1257
1258 name = devm_kasprintf(eth->dev, GFP_KERNEL, "qdma%d-buf", id);
1259 if (!name)
1260 return -ENOMEM;
1261
1262 buf_size = id ? AIROHA_MAX_PACKET_SIZE / 2 : AIROHA_MAX_PACKET_SIZE;
1263 index = of_property_match_string(eth->dev->of_node,
1264 "memory-region-names", name);
1265 if (index >= 0) {
1266 struct reserved_mem *rmem;
1267 struct device_node *np;
1268
1269 /* Consume reserved memory for hw forwarding buffers queue if
1270 * available in the DTS
1271 */
1272 np = of_parse_phandle(eth->dev->of_node, "memory-region",
1273 index);
1274 if (!np)
1275 return -ENODEV;
1276
1277 rmem = of_reserved_mem_lookup(np);
1278 of_node_put(np);
1279 if (!rmem)
1280 return -ENODEV;
1281
1282 dma_addr = rmem->base;
1283 /* Compute the number of hw descriptors according to the
1284 * reserved memory size and the payload buffer size
1285 */
1286 num_desc = div_u64(rmem->size, buf_size);
1287 } else {
1288 size = buf_size * num_desc;
1289 if (!dmam_alloc_coherent(eth->dev, size, &dma_addr,
1290 GFP_KERNEL))
1291 return -ENOMEM;
1292 }
1293
1294 airoha_qdma_wr(qdma, REG_FWD_BUF_BASE, dma_addr);
1295
1296 size = num_desc * sizeof(struct airoha_qdma_fwd_desc);
1297 if (!dmam_alloc_coherent(eth->dev, size, &dma_addr, GFP_KERNEL))
1298 return -ENOMEM;
1299
1300 airoha_qdma_wr(qdma, REG_FWD_DSCP_BASE, dma_addr);
1301 /* QDMA0: 2KB. QDMA1: 1KB */
1302 airoha_qdma_rmw(qdma, REG_HW_FWD_DSCP_CFG,
1303 HW_FWD_DSCP_PAYLOAD_SIZE_MASK,
1304 FIELD_PREP(HW_FWD_DSCP_PAYLOAD_SIZE_MASK, !!id));
1305 airoha_qdma_rmw(qdma, REG_FWD_DSCP_LOW_THR, FWD_DSCP_LOW_THR_MASK,
1306 FIELD_PREP(FWD_DSCP_LOW_THR_MASK, 128));
1307 airoha_qdma_rmw(qdma, REG_LMGR_INIT_CFG,
1308 LMGR_INIT_START | LMGR_SRAM_MODE_MASK |
1309 HW_FWD_DESC_NUM_MASK,
1310 FIELD_PREP(HW_FWD_DESC_NUM_MASK, num_desc) |
1311 LMGR_INIT_START | LMGR_SRAM_MODE_MASK);
1312
1313 return read_poll_timeout(airoha_qdma_rr, status,
1314 !(status & LMGR_INIT_START), USEC_PER_MSEC,
1315 30 * USEC_PER_MSEC, true, qdma,
1316 REG_LMGR_INIT_CFG);
1317 }
1318
airoha_qdma_init_qos(struct airoha_qdma * qdma)1319 static void airoha_qdma_init_qos(struct airoha_qdma *qdma)
1320 {
1321 airoha_qdma_clear(qdma, REG_TXWRR_MODE_CFG, TWRR_WEIGHT_SCALE_MASK);
1322 airoha_qdma_set(qdma, REG_TXWRR_MODE_CFG, TWRR_WEIGHT_BASE_MASK);
1323
1324 airoha_qdma_clear(qdma, REG_PSE_BUF_USAGE_CFG,
1325 PSE_BUF_ESTIMATE_EN_MASK);
1326
1327 airoha_qdma_set(qdma, REG_EGRESS_RATE_METER_CFG,
1328 EGRESS_RATE_METER_EN_MASK |
1329 EGRESS_RATE_METER_EQ_RATE_EN_MASK);
1330 /* 2047us x 31 = 63.457ms */
1331 airoha_qdma_rmw(qdma, REG_EGRESS_RATE_METER_CFG,
1332 EGRESS_RATE_METER_WINDOW_SZ_MASK,
1333 FIELD_PREP(EGRESS_RATE_METER_WINDOW_SZ_MASK, 0x1f));
1334 airoha_qdma_rmw(qdma, REG_EGRESS_RATE_METER_CFG,
1335 EGRESS_RATE_METER_TIMESLICE_MASK,
1336 FIELD_PREP(EGRESS_RATE_METER_TIMESLICE_MASK, 0x7ff));
1337
1338 /* ratelimit init */
1339 airoha_qdma_set(qdma, REG_GLB_TRTCM_CFG, GLB_TRTCM_EN_MASK);
1340 /* fast-tick 25us */
1341 airoha_qdma_rmw(qdma, REG_GLB_TRTCM_CFG, GLB_FAST_TICK_MASK,
1342 FIELD_PREP(GLB_FAST_TICK_MASK, 25));
1343 airoha_qdma_rmw(qdma, REG_GLB_TRTCM_CFG, GLB_SLOW_TICK_RATIO_MASK,
1344 FIELD_PREP(GLB_SLOW_TICK_RATIO_MASK, 40));
1345
1346 airoha_qdma_set(qdma, REG_EGRESS_TRTCM_CFG, EGRESS_TRTCM_EN_MASK);
1347 airoha_qdma_rmw(qdma, REG_EGRESS_TRTCM_CFG, EGRESS_FAST_TICK_MASK,
1348 FIELD_PREP(EGRESS_FAST_TICK_MASK, 25));
1349 airoha_qdma_rmw(qdma, REG_EGRESS_TRTCM_CFG,
1350 EGRESS_SLOW_TICK_RATIO_MASK,
1351 FIELD_PREP(EGRESS_SLOW_TICK_RATIO_MASK, 40));
1352
1353 airoha_qdma_set(qdma, REG_INGRESS_TRTCM_CFG, INGRESS_TRTCM_EN_MASK);
1354 airoha_qdma_clear(qdma, REG_INGRESS_TRTCM_CFG,
1355 INGRESS_TRTCM_MODE_MASK);
1356 airoha_qdma_rmw(qdma, REG_INGRESS_TRTCM_CFG, INGRESS_FAST_TICK_MASK,
1357 FIELD_PREP(INGRESS_FAST_TICK_MASK, 125));
1358 airoha_qdma_rmw(qdma, REG_INGRESS_TRTCM_CFG,
1359 INGRESS_SLOW_TICK_RATIO_MASK,
1360 FIELD_PREP(INGRESS_SLOW_TICK_RATIO_MASK, 8));
1361
1362 airoha_qdma_set(qdma, REG_SLA_TRTCM_CFG, SLA_TRTCM_EN_MASK);
1363 airoha_qdma_rmw(qdma, REG_SLA_TRTCM_CFG, SLA_FAST_TICK_MASK,
1364 FIELD_PREP(SLA_FAST_TICK_MASK, 25));
1365 airoha_qdma_rmw(qdma, REG_SLA_TRTCM_CFG, SLA_SLOW_TICK_RATIO_MASK,
1366 FIELD_PREP(SLA_SLOW_TICK_RATIO_MASK, 40));
1367 }
1368
airoha_qdma_init_qos_stats(struct airoha_qdma * qdma)1369 static void airoha_qdma_init_qos_stats(struct airoha_qdma *qdma)
1370 {
1371 int i;
1372
1373 for (i = 0; i < AIROHA_NUM_QOS_CHANNELS; i++) {
1374 /* Tx-cpu transferred count */
1375 airoha_qdma_wr(qdma, REG_CNTR_VAL(i << 1), 0);
1376 airoha_qdma_wr(qdma, REG_CNTR_CFG(i << 1),
1377 CNTR_EN_MASK | CNTR_ALL_QUEUE_EN_MASK |
1378 CNTR_ALL_DSCP_RING_EN_MASK |
1379 FIELD_PREP(CNTR_CHAN_MASK, i));
1380 /* Tx-fwd transferred count */
1381 airoha_qdma_wr(qdma, REG_CNTR_VAL((i << 1) + 1), 0);
1382 airoha_qdma_wr(qdma, REG_CNTR_CFG((i << 1) + 1),
1383 CNTR_EN_MASK | CNTR_ALL_QUEUE_EN_MASK |
1384 CNTR_ALL_DSCP_RING_EN_MASK |
1385 FIELD_PREP(CNTR_SRC_MASK, 1) |
1386 FIELD_PREP(CNTR_CHAN_MASK, i));
1387 }
1388 }
1389
airoha_qdma_hw_init(struct airoha_qdma * qdma)1390 static int airoha_qdma_hw_init(struct airoha_qdma *qdma)
1391 {
1392 int i;
1393
1394 for (i = 0; i < ARRAY_SIZE(qdma->irq_banks); i++) {
1395 /* clear pending irqs */
1396 airoha_qdma_wr(qdma, REG_INT_STATUS(i), 0xffffffff);
1397 /* setup rx irqs */
1398 airoha_qdma_irq_enable(&qdma->irq_banks[i], QDMA_INT_REG_IDX0,
1399 INT_RX0_MASK(RX_IRQ_BANK_PIN_MASK(i)));
1400 airoha_qdma_irq_enable(&qdma->irq_banks[i], QDMA_INT_REG_IDX1,
1401 INT_RX1_MASK(RX_IRQ_BANK_PIN_MASK(i)));
1402 airoha_qdma_irq_enable(&qdma->irq_banks[i], QDMA_INT_REG_IDX2,
1403 INT_RX2_MASK(RX_IRQ_BANK_PIN_MASK(i)));
1404 airoha_qdma_irq_enable(&qdma->irq_banks[i], QDMA_INT_REG_IDX3,
1405 INT_RX3_MASK(RX_IRQ_BANK_PIN_MASK(i)));
1406 }
1407 /* setup tx irqs */
1408 airoha_qdma_irq_enable(&qdma->irq_banks[0], QDMA_INT_REG_IDX0,
1409 TX_COHERENT_LOW_INT_MASK | INT_TX_MASK);
1410 airoha_qdma_irq_enable(&qdma->irq_banks[0], QDMA_INT_REG_IDX4,
1411 TX_COHERENT_HIGH_INT_MASK);
1412
1413 /* setup irq binding */
1414 for (i = 0; i < ARRAY_SIZE(qdma->q_tx); i++) {
1415 if (!qdma->q_tx[i].ndesc)
1416 continue;
1417
1418 if (TX_RING_IRQ_BLOCKING_MAP_MASK & BIT(i))
1419 airoha_qdma_set(qdma, REG_TX_RING_BLOCKING(i),
1420 TX_RING_IRQ_BLOCKING_CFG_MASK);
1421 else
1422 airoha_qdma_clear(qdma, REG_TX_RING_BLOCKING(i),
1423 TX_RING_IRQ_BLOCKING_CFG_MASK);
1424 }
1425
1426 airoha_qdma_wr(qdma, REG_QDMA_GLOBAL_CFG,
1427 FIELD_PREP(GLOBAL_CFG_DMA_PREFERENCE_MASK, 3) |
1428 GLOBAL_CFG_CPU_TXR_RR_MASK |
1429 GLOBAL_CFG_PAYLOAD_BYTE_SWAP_MASK |
1430 GLOBAL_CFG_MULTICAST_MODIFY_FP_MASK |
1431 GLOBAL_CFG_MULTICAST_EN_MASK |
1432 GLOBAL_CFG_IRQ0_EN_MASK | GLOBAL_CFG_IRQ1_EN_MASK |
1433 GLOBAL_CFG_TX_WB_DONE_MASK |
1434 FIELD_PREP(GLOBAL_CFG_MAX_ISSUE_NUM_MASK, 2));
1435
1436 airoha_qdma_init_qos(qdma);
1437
1438 /* disable qdma rx delay interrupt */
1439 for (i = 0; i < ARRAY_SIZE(qdma->q_rx); i++) {
1440 if (!qdma->q_rx[i].ndesc)
1441 continue;
1442
1443 airoha_qdma_clear(qdma, REG_RX_DELAY_INT_IDX(i),
1444 RX_DELAY_INT_MASK);
1445 }
1446
1447 airoha_qdma_set(qdma, REG_TXQ_CNGST_CFG,
1448 TXQ_CNGST_DROP_EN | TXQ_CNGST_DEI_DROP_EN);
1449 airoha_qdma_init_qos_stats(qdma);
1450
1451 return 0;
1452 }
1453
airoha_irq_handler(int irq,void * dev_instance)1454 static irqreturn_t airoha_irq_handler(int irq, void *dev_instance)
1455 {
1456 struct airoha_irq_bank *irq_bank = dev_instance;
1457 struct airoha_qdma *qdma = irq_bank->qdma;
1458 u32 rx_intr_mask = 0, rx_intr1, rx_intr2;
1459 u32 intr[ARRAY_SIZE(irq_bank->irqmask)];
1460 int i;
1461
1462 for (i = 0; i < ARRAY_SIZE(intr); i++) {
1463 intr[i] = airoha_qdma_rr(qdma, REG_INT_STATUS(i));
1464 intr[i] &= irq_bank->irqmask[i];
1465 airoha_qdma_wr(qdma, REG_INT_STATUS(i), intr[i]);
1466 }
1467
1468 if (!test_bit(DEV_STATE_INITIALIZED, &qdma->eth->state))
1469 return IRQ_NONE;
1470
1471 rx_intr1 = intr[1] & RX_DONE_LOW_INT_MASK;
1472 if (rx_intr1) {
1473 airoha_qdma_irq_disable(irq_bank, QDMA_INT_REG_IDX1, rx_intr1);
1474 rx_intr_mask |= rx_intr1;
1475 }
1476
1477 rx_intr2 = intr[2] & RX_DONE_HIGH_INT_MASK;
1478 if (rx_intr2) {
1479 airoha_qdma_irq_disable(irq_bank, QDMA_INT_REG_IDX2, rx_intr2);
1480 rx_intr_mask |= (rx_intr2 << 16);
1481 }
1482
1483 for (i = 0; rx_intr_mask && i < ARRAY_SIZE(qdma->q_rx); i++) {
1484 if (!qdma->q_rx[i].ndesc)
1485 continue;
1486
1487 if (rx_intr_mask & BIT(i))
1488 napi_schedule(&qdma->q_rx[i].napi);
1489 }
1490
1491 if (intr[0] & INT_TX_MASK) {
1492 for (i = 0; i < ARRAY_SIZE(qdma->q_tx_irq); i++) {
1493 if (!(intr[0] & TX_DONE_INT_MASK(i)))
1494 continue;
1495
1496 airoha_qdma_irq_disable(irq_bank, QDMA_INT_REG_IDX0,
1497 TX_DONE_INT_MASK(i));
1498 napi_schedule(&qdma->q_tx_irq[i].napi);
1499 }
1500 }
1501
1502 return IRQ_HANDLED;
1503 }
1504
airoha_qdma_init_irq_banks(struct platform_device * pdev,struct airoha_qdma * qdma)1505 static int airoha_qdma_init_irq_banks(struct platform_device *pdev,
1506 struct airoha_qdma *qdma)
1507 {
1508 struct airoha_eth *eth = qdma->eth;
1509 int i, id = qdma - ð->qdma[0];
1510
1511 for (i = 0; i < ARRAY_SIZE(qdma->irq_banks); i++) {
1512 struct airoha_irq_bank *irq_bank = &qdma->irq_banks[i];
1513 int err, irq_index = 4 * id + i;
1514 const char *name;
1515
1516 spin_lock_init(&irq_bank->irq_lock);
1517 irq_bank->qdma = qdma;
1518
1519 irq_bank->irq = platform_get_irq(pdev, irq_index);
1520 if (irq_bank->irq < 0)
1521 return irq_bank->irq;
1522
1523 name = devm_kasprintf(eth->dev, GFP_KERNEL,
1524 KBUILD_MODNAME ".%d", irq_index);
1525 if (!name)
1526 return -ENOMEM;
1527
1528 err = devm_request_irq(eth->dev, irq_bank->irq,
1529 airoha_irq_handler, IRQF_SHARED, name,
1530 irq_bank);
1531 if (err)
1532 return err;
1533 }
1534
1535 return 0;
1536 }
1537
airoha_qdma_init(struct platform_device * pdev,struct airoha_eth * eth,struct airoha_qdma * qdma)1538 static int airoha_qdma_init(struct platform_device *pdev,
1539 struct airoha_eth *eth,
1540 struct airoha_qdma *qdma)
1541 {
1542 int err, id = qdma - ð->qdma[0];
1543 const char *res;
1544
1545 qdma->eth = eth;
1546 res = devm_kasprintf(eth->dev, GFP_KERNEL, "qdma%d", id);
1547 if (!res)
1548 return -ENOMEM;
1549
1550 qdma->regs = devm_platform_ioremap_resource_byname(pdev, res);
1551 if (IS_ERR(qdma->regs))
1552 return dev_err_probe(eth->dev, PTR_ERR(qdma->regs),
1553 "failed to iomap qdma%d regs\n", id);
1554
1555 err = airoha_qdma_init_irq_banks(pdev, qdma);
1556 if (err)
1557 return err;
1558
1559 err = airoha_qdma_init_rx(qdma);
1560 if (err)
1561 return err;
1562
1563 err = airoha_qdma_init_tx(qdma);
1564 if (err)
1565 return err;
1566
1567 err = airoha_qdma_init_hfwd_queues(qdma);
1568 if (err)
1569 return err;
1570
1571 return airoha_qdma_hw_init(qdma);
1572 }
1573
airoha_qdma_cleanup(struct airoha_eth * eth,struct airoha_qdma * qdma)1574 static void airoha_qdma_cleanup(struct airoha_eth *eth,
1575 struct airoha_qdma *qdma)
1576 {
1577 int i;
1578
1579 if (test_bit(DEV_STATE_INITIALIZED, ð->state)) {
1580 u32 status;
1581
1582 airoha_qdma_clear(qdma, REG_QDMA_GLOBAL_CFG,
1583 GLOBAL_CFG_RX_DMA_EN_MASK);
1584 if (read_poll_timeout(airoha_qdma_rr, status,
1585 !(status & GLOBAL_CFG_RX_DMA_BUSY_MASK),
1586 USEC_PER_MSEC, 50 * USEC_PER_MSEC, true,
1587 qdma, REG_QDMA_GLOBAL_CFG))
1588 dev_warn(eth->dev, "QDMA RX DMA busy timeout\n");
1589 }
1590
1591 for (i = 0; i < ARRAY_SIZE(qdma->q_rx); i++) {
1592 if (!qdma->q_rx[i].ndesc)
1593 continue;
1594
1595 netif_napi_del(&qdma->q_rx[i].napi);
1596 airoha_qdma_cleanup_rx_queue(&qdma->q_rx[i]);
1597 if (qdma->q_rx[i].page_pool) {
1598 page_pool_destroy(qdma->q_rx[i].page_pool);
1599 qdma->q_rx[i].page_pool = NULL;
1600 }
1601 }
1602
1603 for (i = 0; i < ARRAY_SIZE(qdma->q_tx_irq); i++) {
1604 if (!qdma->q_tx_irq[i].size)
1605 continue;
1606
1607 netif_napi_del(&qdma->q_tx_irq[i].napi);
1608 }
1609
1610 }
1611
airoha_hw_init(struct platform_device * pdev,struct airoha_eth * eth)1612 static int airoha_hw_init(struct platform_device *pdev,
1613 struct airoha_eth *eth)
1614 {
1615 int err, i;
1616
1617 /* disable xsi */
1618 err = reset_control_bulk_assert(eth->soc->num_xsi_rsts, eth->xsi_rsts);
1619 if (err)
1620 return err;
1621
1622 err = reset_control_bulk_assert(ARRAY_SIZE(eth->rsts), eth->rsts);
1623 if (err)
1624 return err;
1625
1626 msleep(20);
1627 err = reset_control_bulk_deassert(ARRAY_SIZE(eth->rsts), eth->rsts);
1628 if (err)
1629 return err;
1630
1631 msleep(20);
1632 err = airoha_fe_init(eth);
1633 if (err)
1634 return err;
1635
1636 for (i = 0; i < ARRAY_SIZE(eth->qdma); i++) {
1637 err = airoha_qdma_init(pdev, eth, ð->qdma[i]);
1638 if (err)
1639 goto error;
1640 }
1641
1642 err = airoha_ppe_init(eth);
1643 if (err)
1644 goto error;
1645
1646 set_bit(DEV_STATE_INITIALIZED, ð->state);
1647
1648 return 0;
1649 error:
1650 for (i = 0; i < ARRAY_SIZE(eth->qdma); i++)
1651 airoha_qdma_cleanup(eth, ð->qdma[i]);
1652
1653 return err;
1654 }
1655
airoha_hw_cleanup(struct airoha_eth * eth)1656 static void airoha_hw_cleanup(struct airoha_eth *eth)
1657 {
1658 int i;
1659
1660 for (i = 0; i < ARRAY_SIZE(eth->qdma); i++)
1661 airoha_qdma_cleanup(eth, ð->qdma[i]);
1662 airoha_ppe_deinit(eth);
1663 }
1664
airoha_qdma_start_napi(struct airoha_qdma * qdma)1665 static void airoha_qdma_start_napi(struct airoha_qdma *qdma)
1666 {
1667 int i;
1668
1669 for (i = 0; i < ARRAY_SIZE(qdma->q_tx_irq); i++)
1670 napi_enable(&qdma->q_tx_irq[i].napi);
1671
1672 for (i = 0; i < ARRAY_SIZE(qdma->q_rx); i++) {
1673 if (!qdma->q_rx[i].ndesc)
1674 continue;
1675
1676 napi_enable(&qdma->q_rx[i].napi);
1677 }
1678 }
1679
airoha_qdma_stop_napi(struct airoha_qdma * qdma)1680 static void airoha_qdma_stop_napi(struct airoha_qdma *qdma)
1681 {
1682 int i;
1683
1684 for (i = 0; i < ARRAY_SIZE(qdma->q_tx_irq); i++)
1685 napi_disable(&qdma->q_tx_irq[i].napi);
1686
1687 for (i = 0; i < ARRAY_SIZE(qdma->q_rx); i++) {
1688 if (!qdma->q_rx[i].ndesc)
1689 continue;
1690
1691 napi_disable(&qdma->q_rx[i].napi);
1692 }
1693 }
1694
airoha_update_hw_stats(struct airoha_gdm_dev * dev)1695 static void airoha_update_hw_stats(struct airoha_gdm_dev *dev)
1696 {
1697 struct airoha_gdm_port *port = dev->port;
1698 struct airoha_eth *eth = dev->eth;
1699 u32 val, i = 0;
1700 u64 data;
1701
1702 spin_lock(&port->stats_lock);
1703
1704 /* Read relevant MIB for GDM with multiple port attached */
1705 if (port->id == AIROHA_GDM3_IDX || port->id == AIROHA_GDM4_IDX)
1706 airoha_fe_rmw(eth, REG_FE_GDM_MIB_CFG(port->id),
1707 FE_TX_MIB_ID_MASK | FE_RX_MIB_ID_MASK,
1708 FIELD_PREP(FE_TX_MIB_ID_MASK, dev->nbq) |
1709 FIELD_PREP(FE_RX_MIB_ID_MASK, dev->nbq));
1710
1711 u64_stats_update_begin(&dev->stats.syncp);
1712
1713 /* TX - 64-bit H+L registers: hw accumulates the total, read directly.
1714 * Use local variable to prevent readers from seeing intermediate values.
1715 * Clamp to prevent regression from torn reads between H and L.
1716 */
1717 val = airoha_fe_rr(eth, REG_FE_GDM_TX_OK_PKT_CNT_H(port->id));
1718 data = (u64)val << 32;
1719 val = airoha_fe_rr(eth, REG_FE_GDM_TX_OK_PKT_CNT_L(port->id));
1720 data += val;
1721 dev->stats.tx_ok_pkts = max(data, dev->stats.tx_ok_pkts);
1722
1723 val = airoha_fe_rr(eth, REG_FE_GDM_TX_OK_BYTE_CNT_H(port->id));
1724 data = (u64)val << 32;
1725 val = airoha_fe_rr(eth, REG_FE_GDM_TX_OK_BYTE_CNT_L(port->id));
1726 data += val;
1727 dev->stats.tx_ok_bytes = max(data, dev->stats.tx_ok_bytes);
1728
1729 /* TX - 32-bit registers: accumulate delta to handle wrap-around. */
1730 val = airoha_fe_rr(eth, REG_FE_GDM_TX_ETH_DROP_CNT(port->id));
1731 dev->stats.tx_drops += (u32)(val - dev->stats.mib_prev.tx_drops);
1732 dev->stats.mib_prev.tx_drops = val;
1733
1734 val = airoha_fe_rr(eth, REG_FE_GDM_TX_ETH_BC_CNT(port->id));
1735 dev->stats.tx_broadcast += (u32)(val - dev->stats.mib_prev.tx_broadcast);
1736 dev->stats.mib_prev.tx_broadcast = val;
1737
1738 val = airoha_fe_rr(eth, REG_FE_GDM_TX_ETH_MC_CNT(port->id));
1739 dev->stats.tx_multicast += (u32)(val - dev->stats.mib_prev.tx_multicast);
1740 dev->stats.mib_prev.tx_multicast = val;
1741
1742 val = airoha_fe_rr(eth, REG_FE_GDM_TX_ETH_RUNT_CNT(port->id));
1743 dev->stats.mib_prev.tx_runt64 +=
1744 (u32)(val - dev->stats.mib_prev.tx_runt);
1745 dev->stats.mib_prev.tx_runt = val;
1746
1747 /* tx_len[0]: RUNT (32-bit, delta) + E64 (64-bit, absolute). */
1748 data = dev->stats.mib_prev.tx_runt64;
1749 val = airoha_fe_rr(eth, REG_FE_GDM_TX_ETH_E64_CNT_H(port->id));
1750 data += (u64)val << 32;
1751 val = airoha_fe_rr(eth, REG_FE_GDM_TX_ETH_E64_CNT_L(port->id));
1752 data += val;
1753 dev->stats.tx_len[i] = max(data, dev->stats.tx_len[i]);
1754 i++;
1755
1756 val = airoha_fe_rr(eth, REG_FE_GDM_TX_ETH_L64_CNT_H(port->id));
1757 data = (u64)val << 32;
1758 val = airoha_fe_rr(eth, REG_FE_GDM_TX_ETH_L64_CNT_L(port->id));
1759 data += val;
1760 dev->stats.tx_len[i] = max(data, dev->stats.tx_len[i]);
1761 i++;
1762
1763 val = airoha_fe_rr(eth, REG_FE_GDM_TX_ETH_L127_CNT_H(port->id));
1764 data = (u64)val << 32;
1765 val = airoha_fe_rr(eth, REG_FE_GDM_TX_ETH_L127_CNT_L(port->id));
1766 data += val;
1767 dev->stats.tx_len[i] = max(data, dev->stats.tx_len[i]);
1768 i++;
1769
1770 val = airoha_fe_rr(eth, REG_FE_GDM_TX_ETH_L255_CNT_H(port->id));
1771 data = (u64)val << 32;
1772 val = airoha_fe_rr(eth, REG_FE_GDM_TX_ETH_L255_CNT_L(port->id));
1773 data += val;
1774 dev->stats.tx_len[i] = max(data, dev->stats.tx_len[i]);
1775 i++;
1776
1777 val = airoha_fe_rr(eth, REG_FE_GDM_TX_ETH_L511_CNT_H(port->id));
1778 data = (u64)val << 32;
1779 val = airoha_fe_rr(eth, REG_FE_GDM_TX_ETH_L511_CNT_L(port->id));
1780 data += val;
1781 dev->stats.tx_len[i] = max(data, dev->stats.tx_len[i]);
1782 i++;
1783
1784 val = airoha_fe_rr(eth, REG_FE_GDM_TX_ETH_L1023_CNT_H(port->id));
1785 data = (u64)val << 32;
1786 val = airoha_fe_rr(eth, REG_FE_GDM_TX_ETH_L1023_CNT_L(port->id));
1787 data += val;
1788 dev->stats.tx_len[i] = max(data, dev->stats.tx_len[i]);
1789 i++;
1790
1791 val = airoha_fe_rr(eth, REG_FE_GDM_TX_ETH_LONG_CNT(port->id));
1792 dev->stats.tx_len[i++] += (u32)(val - dev->stats.mib_prev.tx_long);
1793 dev->stats.mib_prev.tx_long = val;
1794
1795 /* RX */
1796 val = airoha_fe_rr(eth, REG_FE_GDM_RX_OK_PKT_CNT_H(port->id));
1797 data = (u64)val << 32;
1798 val = airoha_fe_rr(eth, REG_FE_GDM_RX_OK_PKT_CNT_L(port->id));
1799 data += val;
1800 dev->stats.rx_ok_pkts = max(data, dev->stats.rx_ok_pkts);
1801
1802 val = airoha_fe_rr(eth, REG_FE_GDM_RX_OK_BYTE_CNT_H(port->id));
1803 data = (u64)val << 32;
1804 val = airoha_fe_rr(eth, REG_FE_GDM_RX_OK_BYTE_CNT_L(port->id));
1805 data += val;
1806 dev->stats.rx_ok_bytes = max(data, dev->stats.rx_ok_bytes);
1807
1808 val = airoha_fe_rr(eth, REG_FE_GDM_RX_ETH_DROP_CNT(port->id));
1809 dev->stats.rx_drops += (u32)(val - dev->stats.mib_prev.rx_drops);
1810 dev->stats.mib_prev.rx_drops = val;
1811
1812 val = airoha_fe_rr(eth, REG_FE_GDM_RX_ETH_BC_CNT(port->id));
1813 dev->stats.rx_broadcast += (u32)(val - dev->stats.mib_prev.rx_broadcast);
1814 dev->stats.mib_prev.rx_broadcast = val;
1815
1816 val = airoha_fe_rr(eth, REG_FE_GDM_RX_ETH_MC_CNT(port->id));
1817 dev->stats.rx_multicast += (u32)(val - dev->stats.mib_prev.rx_multicast);
1818 dev->stats.mib_prev.rx_multicast = val;
1819
1820 val = airoha_fe_rr(eth, REG_FE_GDM_RX_ERROR_DROP_CNT(port->id));
1821 dev->stats.rx_errors += (u32)(val - dev->stats.mib_prev.rx_errors);
1822 dev->stats.mib_prev.rx_errors = val;
1823
1824 val = airoha_fe_rr(eth, REG_FE_GDM_RX_ETH_CRC_ERR_CNT(port->id));
1825 dev->stats.rx_crc_error += (u32)(val - dev->stats.mib_prev.rx_crc_error);
1826 dev->stats.mib_prev.rx_crc_error = val;
1827
1828 val = airoha_fe_rr(eth, REG_FE_GDM_RX_OVERFLOW_DROP_CNT(port->id));
1829 dev->stats.rx_over_errors += (u32)(val - dev->stats.mib_prev.rx_over_errors);
1830 dev->stats.mib_prev.rx_over_errors = val;
1831
1832 val = airoha_fe_rr(eth, REG_FE_GDM_RX_ETH_FRAG_CNT(port->id));
1833 dev->stats.rx_fragment += (u32)(val - dev->stats.mib_prev.rx_fragment);
1834 dev->stats.mib_prev.rx_fragment = val;
1835
1836 val = airoha_fe_rr(eth, REG_FE_GDM_RX_ETH_JABBER_CNT(port->id));
1837 dev->stats.rx_jabber += (u32)(val - dev->stats.mib_prev.rx_jabber);
1838 dev->stats.mib_prev.rx_jabber = val;
1839
1840 i = 0;
1841 val = airoha_fe_rr(eth, REG_FE_GDM_RX_ETH_RUNT_CNT(port->id));
1842 dev->stats.mib_prev.rx_runt64 +=
1843 (u32)(val - dev->stats.mib_prev.rx_runt);
1844 dev->stats.mib_prev.rx_runt = val;
1845
1846 /* rx_len[0]: RUNT (32-bit, delta) + E64 (64-bit, absolute). */
1847 data = dev->stats.mib_prev.rx_runt64;
1848 val = airoha_fe_rr(eth, REG_FE_GDM_RX_ETH_E64_CNT_H(port->id));
1849 data += (u64)val << 32;
1850 val = airoha_fe_rr(eth, REG_FE_GDM_RX_ETH_E64_CNT_L(port->id));
1851 data += val;
1852 dev->stats.rx_len[i] = max(data, dev->stats.rx_len[i]);
1853 i++;
1854
1855 val = airoha_fe_rr(eth, REG_FE_GDM_RX_ETH_L64_CNT_H(port->id));
1856 data = (u64)val << 32;
1857 val = airoha_fe_rr(eth, REG_FE_GDM_RX_ETH_L64_CNT_L(port->id));
1858 data += val;
1859 dev->stats.rx_len[i] = max(data, dev->stats.rx_len[i]);
1860 i++;
1861
1862 val = airoha_fe_rr(eth, REG_FE_GDM_RX_ETH_L127_CNT_H(port->id));
1863 data = (u64)val << 32;
1864 val = airoha_fe_rr(eth, REG_FE_GDM_RX_ETH_L127_CNT_L(port->id));
1865 data += val;
1866 dev->stats.rx_len[i] = max(data, dev->stats.rx_len[i]);
1867 i++;
1868
1869 val = airoha_fe_rr(eth, REG_FE_GDM_RX_ETH_L255_CNT_H(port->id));
1870 data = (u64)val << 32;
1871 val = airoha_fe_rr(eth, REG_FE_GDM_RX_ETH_L255_CNT_L(port->id));
1872 data += val;
1873 dev->stats.rx_len[i] = max(data, dev->stats.rx_len[i]);
1874 i++;
1875
1876 val = airoha_fe_rr(eth, REG_FE_GDM_RX_ETH_L511_CNT_H(port->id));
1877 data = (u64)val << 32;
1878 val = airoha_fe_rr(eth, REG_FE_GDM_RX_ETH_L511_CNT_L(port->id));
1879 data += val;
1880 dev->stats.rx_len[i] = max(data, dev->stats.rx_len[i]);
1881 i++;
1882
1883 val = airoha_fe_rr(eth, REG_FE_GDM_RX_ETH_L1023_CNT_H(port->id));
1884 data = (u64)val << 32;
1885 val = airoha_fe_rr(eth, REG_FE_GDM_RX_ETH_L1023_CNT_L(port->id));
1886 data += val;
1887 dev->stats.rx_len[i] = max(data, dev->stats.rx_len[i]);
1888 i++;
1889
1890 val = airoha_fe_rr(eth, REG_FE_GDM_RX_ETH_LONG_CNT(port->id));
1891 dev->stats.rx_len[i] += (u32)(val - dev->stats.mib_prev.rx_long);
1892 dev->stats.mib_prev.rx_long = val;
1893
1894 u64_stats_update_end(&dev->stats.syncp);
1895
1896 spin_unlock(&port->stats_lock);
1897 }
1898
airoha_dev_set_xmit_frame_size(struct net_device * netdev)1899 static void airoha_dev_set_xmit_frame_size(struct net_device *netdev)
1900 {
1901 struct airoha_gdm_dev *dev = netdev_priv(netdev);
1902
1903 airoha_ppe_set_xmit_frame_size(dev);
1904 if (!airoha_is_lan_gdm_dev(dev))
1905 airoha_fe_rmw(dev->eth, REG_WAN_MTU0, WAN_MTU0_MASK,
1906 FIELD_PREP(WAN_MTU0_MASK,
1907 VLAN_ETH_HLEN + netdev->mtu));
1908 }
1909
airoha_dev_open(struct net_device * netdev)1910 static int airoha_dev_open(struct net_device *netdev)
1911 {
1912 struct airoha_gdm_dev *dev = netdev_priv(netdev);
1913 struct airoha_gdm_port *port = dev->port;
1914 u32 pse_port = FE_PSE_PORT_PPE1;
1915 struct airoha_qdma *qdma;
1916 int err;
1917
1918 netif_tx_start_all_queues(netdev);
1919 err = airoha_set_vip_for_gdm_port(dev, true);
1920 if (err)
1921 return err;
1922
1923 qdma = airoha_qdma_deref(dev);
1924 if (netdev_uses_dsa(netdev))
1925 airoha_fe_set(qdma->eth, REG_GDM_INGRESS_CFG(port->id),
1926 GDM_STAG_EN_MASK);
1927 else
1928 airoha_fe_clear(qdma->eth, REG_GDM_INGRESS_CFG(port->id),
1929 GDM_STAG_EN_MASK);
1930
1931 airoha_dev_set_xmit_frame_size(netdev);
1932 port->users++;
1933
1934 if (!airoha_is_lan_gdm_dev(dev) &&
1935 airoha_ppe_is_enabled(qdma->eth, 1))
1936 pse_port = FE_PSE_PORT_PPE2;
1937 airoha_set_gdm_port_fwd_cfg(qdma->eth, REG_GDM_FWD_CFG(port->id),
1938 pse_port);
1939
1940 return 0;
1941 }
1942
airoha_dev_stop(struct net_device * netdev)1943 static int airoha_dev_stop(struct net_device *netdev)
1944 {
1945 struct airoha_gdm_dev *dev = netdev_priv(netdev);
1946 struct airoha_gdm_port *port = dev->port;
1947
1948 netif_tx_disable(netdev);
1949 airoha_set_vip_for_gdm_port(dev, false);
1950
1951 if (--port->users)
1952 airoha_ppe_set_xmit_frame_size(dev);
1953 else
1954 airoha_set_gdm_port_fwd_cfg(dev->eth,
1955 REG_GDM_FWD_CFG(port->id),
1956 FE_PSE_PORT_DROP);
1957 return 0;
1958 }
1959
airoha_dev_set_macaddr(struct net_device * netdev,void * p)1960 static int airoha_dev_set_macaddr(struct net_device *netdev, void *p)
1961 {
1962 struct airoha_gdm_dev *dev = netdev_priv(netdev);
1963 struct sockaddr *addr = p;
1964 int err;
1965
1966 err = eth_prepare_mac_addr_change(netdev, p);
1967 if (err)
1968 return err;
1969
1970 err = airoha_set_macaddr(dev, addr->sa_data);
1971 if (err)
1972 return err;
1973
1974 eth_commit_mac_addr_change(netdev, p);
1975
1976 return 0;
1977 }
1978
airoha_enable_gdm2_loopback(struct airoha_gdm_dev * dev)1979 static int airoha_enable_gdm2_loopback(struct airoha_gdm_dev *dev)
1980 {
1981 struct airoha_gdm_port *port = dev->port;
1982 struct airoha_eth *eth = dev->eth;
1983 u32 val, pse_port, chan;
1984 int i, src_port;
1985
1986 src_port = eth->soc->ops.get_sport(port, dev->nbq);
1987 if (src_port < 0)
1988 return src_port;
1989
1990 airoha_set_gdm_port_fwd_cfg(eth, REG_GDM_FWD_CFG(AIROHA_GDM2_IDX),
1991 FE_PSE_PORT_DROP);
1992 airoha_fe_clear(eth, REG_GDM_FWD_CFG(AIROHA_GDM2_IDX),
1993 GDM_STRIP_CRC_MASK);
1994
1995 /* Enable GDM2 loopback */
1996 airoha_fe_wr(eth, REG_GDM_TXCHN_EN(AIROHA_GDM2_IDX), 0xffffffff);
1997 airoha_fe_wr(eth, REG_GDM_RXCHN_EN(AIROHA_GDM2_IDX), 0xffff);
1998
1999 chan = port->id == AIROHA_GDM3_IDX ? airoha_is_7581(eth) ? 4 : 3 : 0;
2000 airoha_fe_rmw(eth, REG_GDM_LPBK_CFG(AIROHA_GDM2_IDX),
2001 LPBK_CHAN_MASK | LPBK_MODE_MASK | LPBK_EN_MASK,
2002 FIELD_PREP(LPBK_CHAN_MASK, chan) |
2003 LBK_GAP_MODE_MASK | LBK_LEN_MODE_MASK |
2004 LBK_CHAN_MODE_MASK | LPBK_EN_MASK);
2005 /* Forward the traffic to the proper GDM port */
2006 pse_port = port->id == AIROHA_GDM3_IDX ? FE_PSE_PORT_GDM3
2007 : FE_PSE_PORT_GDM4;
2008 airoha_set_gdm_port_fwd_cfg(eth, REG_GDM_FWD_CFG(AIROHA_GDM2_IDX),
2009 pse_port);
2010
2011 /* Disable VIP and IFC for GDM2 */
2012 airoha_fe_clear(eth, REG_FE_VIP_PORT_EN, BIT(AIROHA_GDM2_IDX));
2013 airoha_fe_clear(eth, REG_FE_IFC_PORT_EN, BIT(AIROHA_GDM2_IDX));
2014
2015 airoha_fe_rmw(eth, REG_FE_WAN_PORT,
2016 WAN1_EN_MASK | WAN1_MASK | WAN0_MASK,
2017 FIELD_PREP(WAN0_MASK, src_port));
2018 val = src_port & SP_CPORT_DFT_MASK;
2019 airoha_fe_rmw(eth,
2020 REG_SP_DFT_CPORT(src_port >> fls(SP_CPORT_DFT_MASK)),
2021 SP_CPORT_MASK(val),
2022 __field_prep(SP_CPORT_MASK(val), FE_PSE_PORT_CDM2));
2023
2024 for (i = 0; i < eth->soc->num_ppe; i++)
2025 airoha_ppe_set_cpu_port(dev, i, AIROHA_GDM2_IDX);
2026
2027 if (port->id == AIROHA_GDM4_IDX && airoha_is_7581(eth)) {
2028 u32 mask = FC_ID_OF_SRC_PORT_MASK(dev->nbq);
2029
2030 airoha_fe_rmw(eth, REG_SRC_PORT_FC_MAP6, mask,
2031 __field_prep(mask, AIROHA_GDM2_IDX));
2032 }
2033
2034 return 0;
2035 }
2036
airoha_disable_gdm2_loopback(struct airoha_gdm_dev * dev)2037 static int airoha_disable_gdm2_loopback(struct airoha_gdm_dev *dev)
2038 {
2039 struct airoha_gdm_port *port = dev->port;
2040 struct airoha_eth *eth = dev->eth;
2041 int i, src_port;
2042 u32 pse_port;
2043
2044 src_port = eth->soc->ops.get_sport(dev->port, dev->nbq);
2045 if (src_port < 0)
2046 return src_port;
2047
2048 airoha_fe_clear(eth,
2049 REG_SP_DFT_CPORT(src_port >> fls(SP_CPORT_DFT_MASK)),
2050 SP_CPORT_MASK(src_port & SP_CPORT_DFT_MASK));
2051
2052 airoha_fe_set(eth, REG_GDM_FWD_CFG(AIROHA_GDM2_IDX),
2053 GDM_STRIP_CRC_MASK);
2054 airoha_set_gdm_port_fwd_cfg(eth, REG_GDM_FWD_CFG(AIROHA_GDM2_IDX),
2055 FE_PSE_PORT_DROP);
2056 airoha_fe_clear(eth, REG_GDM_LPBK_CFG(AIROHA_GDM2_IDX),
2057 LPBK_CHAN_MASK | LPBK_MODE_MASK | LPBK_EN_MASK);
2058 pse_port = airoha_ppe_is_enabled(eth, 1) ? FE_PSE_PORT_PPE2
2059 : FE_PSE_PORT_PPE1;
2060 airoha_set_gdm_port_fwd_cfg(eth, REG_GDM_FWD_CFG(AIROHA_GDM2_IDX),
2061 pse_port);
2062
2063 airoha_fe_rmw(eth, REG_FE_WAN_PORT, WAN0_MASK,
2064 FIELD_PREP(WAN0_MASK, AIROHA_GDM2_IDX));
2065
2066 for (i = 0; i < eth->soc->num_ppe; i++)
2067 airoha_fe_clear(eth, REG_PPE_DFT_CPORT(i, AIROHA_GDM2_IDX),
2068 DFT_CPORT_MASK(AIROHA_GDM2_IDX));
2069
2070 /* Enable VIP and IFC for GDM2 */
2071 airoha_fe_set(eth, REG_FE_VIP_PORT_EN, BIT(AIROHA_GDM2_IDX));
2072 airoha_fe_set(eth, REG_FE_IFC_PORT_EN, BIT(AIROHA_GDM2_IDX));
2073
2074 if (port->id == AIROHA_GDM4_IDX && airoha_is_7581(eth)) {
2075 u32 mask = FC_ID_OF_SRC_PORT_MASK(dev->nbq);
2076
2077 airoha_fe_rmw(eth, REG_SRC_PORT_FC_MAP6, mask,
2078 FC_MAP6_DEF_VALUE & mask);
2079 }
2080
2081 return 0;
2082 }
2083
2084 static struct airoha_gdm_dev *
airoha_get_wan_gdm_dev(struct airoha_eth * eth)2085 airoha_get_wan_gdm_dev(struct airoha_eth *eth)
2086 {
2087 int i;
2088
2089 for (i = 0; i < ARRAY_SIZE(eth->ports); i++) {
2090 struct airoha_gdm_port *port = eth->ports[i];
2091 int j;
2092
2093 if (!port)
2094 continue;
2095
2096 for (j = 0; j < ARRAY_SIZE(port->devs); j++) {
2097 struct airoha_gdm_dev *dev = port->devs[j];
2098
2099 if (dev && !airoha_is_lan_gdm_dev(dev))
2100 return dev;
2101 }
2102 }
2103
2104 return NULL;
2105 }
2106
airoha_dev_set_qdma(struct airoha_gdm_dev * dev)2107 static void airoha_dev_set_qdma(struct airoha_gdm_dev *dev)
2108 {
2109 struct net_device *netdev = netdev_from_priv(dev);
2110 struct airoha_qdma *cur_qdma, *qdma;
2111 struct airoha_eth *eth = dev->eth;
2112 int i, ppe_id;
2113
2114 /* QDMA0 is used for lan ports while QDMA1 is used for WAN ports */
2115 qdma = ð->qdma[!airoha_is_lan_gdm_dev(dev)];
2116 cur_qdma = airoha_qdma_deref(dev);
2117
2118 if (cur_qdma)
2119 netif_tx_stop_all_queues(netdev);
2120
2121 rcu_assign_pointer(dev->qdma, qdma);
2122 netdev->irq = qdma->irq_banks[0].irq;
2123 synchronize_rcu();
2124
2125 ppe_id = !airoha_is_lan_gdm_dev(dev) && airoha_ppe_is_enabled(eth, 1);
2126 airoha_ppe_set_cpu_port(dev, ppe_id, airoha_get_fe_port(dev));
2127
2128 /* Seed qos_stats baselines with the new QDMA block's current
2129 * counter values to avoid a spurious spike on the first stats
2130 * query after init or migration.
2131 */
2132 for (i = 0; i < ARRAY_SIZE(dev->qos_stats); i++) {
2133 dev->qos_stats[i].cpu_tx_packets =
2134 airoha_qdma_rr(qdma, REG_CNTR_VAL(i << 1));
2135 dev->qos_stats[i].fwd_tx_packets =
2136 airoha_qdma_rr(qdma, REG_CNTR_VAL((i << 1) + 1));
2137 }
2138
2139 if (cur_qdma)
2140 netif_tx_wake_all_queues(netdev);
2141 }
2142
airoha_dev_init(struct net_device * netdev)2143 static int airoha_dev_init(struct net_device *netdev)
2144 {
2145 struct airoha_gdm_dev *dev = netdev_priv(netdev);
2146 struct airoha_gdm_port *port = dev->port;
2147
2148 switch (port->id) {
2149 case AIROHA_GDM3_IDX:
2150 case AIROHA_GDM4_IDX:
2151 if (airoha_get_wan_gdm_dev(dev->eth))
2152 break;
2153 fallthrough;
2154 case AIROHA_GDM2_IDX:
2155 /* GDM2 is always used as wan */
2156 set_bit(AIROHA_DEV_F_WAN, &dev->flags);
2157 break;
2158 default:
2159 break;
2160 }
2161
2162 airoha_dev_set_qdma(dev);
2163 airoha_set_macaddr(dev, netdev->dev_addr);
2164
2165 if (!airoha_is_lan_gdm_dev(dev) &&
2166 (port->id == AIROHA_GDM3_IDX || port->id == AIROHA_GDM4_IDX)) {
2167 int err;
2168
2169 err = airoha_enable_gdm2_loopback(dev);
2170 if (err)
2171 return err;
2172 }
2173
2174 return 0;
2175 }
2176
airoha_dev_get_stats64(struct net_device * netdev,struct rtnl_link_stats64 * storage)2177 static void airoha_dev_get_stats64(struct net_device *netdev,
2178 struct rtnl_link_stats64 *storage)
2179 {
2180 struct airoha_gdm_dev *dev = netdev_priv(netdev);
2181 unsigned int start;
2182
2183 airoha_update_hw_stats(dev);
2184 do {
2185 start = u64_stats_fetch_begin(&dev->stats.syncp);
2186 storage->rx_packets = dev->stats.rx_ok_pkts;
2187 storage->tx_packets = dev->stats.tx_ok_pkts;
2188 storage->rx_bytes = dev->stats.rx_ok_bytes;
2189 storage->tx_bytes = dev->stats.tx_ok_bytes;
2190 storage->multicast = dev->stats.rx_multicast;
2191 storage->rx_errors = dev->stats.rx_errors;
2192 storage->rx_dropped = dev->stats.rx_drops;
2193 storage->tx_dropped = dev->stats.tx_drops;
2194 storage->rx_crc_errors = dev->stats.rx_crc_error;
2195 storage->rx_over_errors = dev->stats.rx_over_errors;
2196 } while (u64_stats_fetch_retry(&dev->stats.syncp, start));
2197 }
2198
airoha_dev_change_mtu(struct net_device * netdev,int mtu)2199 static int airoha_dev_change_mtu(struct net_device *netdev, int mtu)
2200 {
2201 struct airoha_gdm_dev *dev = netdev_priv(netdev);
2202 struct airoha_gdm_port *port = dev->port;
2203
2204 WRITE_ONCE(netdev->mtu, mtu);
2205 if (port->users)
2206 airoha_dev_set_xmit_frame_size(netdev);
2207
2208 return 0;
2209 }
2210
airoha_dev_select_queue(struct net_device * netdev,struct sk_buff * skb,struct net_device * sb_dev)2211 static u16 airoha_dev_select_queue(struct net_device *netdev,
2212 struct sk_buff *skb,
2213 struct net_device *sb_dev)
2214 {
2215 struct airoha_gdm_dev *dev = netdev_priv(netdev);
2216 struct airoha_gdm_port *port = dev->port;
2217 int queue, channel;
2218
2219 /* For dsa device select QoS channel according to the dsa user port
2220 * index, rely on port id otherwise. Select QoS queue based on the
2221 * skb priority.
2222 */
2223 channel = netdev_uses_dsa(netdev) ? skb_get_queue_mapping(skb) : port->id;
2224 channel = channel % AIROHA_NUM_QOS_CHANNELS;
2225 queue = skb->priority % AIROHA_NUM_QOS_QUEUES;
2226 queue = channel * AIROHA_NUM_QOS_QUEUES + queue;
2227
2228 return queue < netdev->num_tx_queues ? queue : 0;
2229 }
2230
airoha_get_dsa_tag(struct sk_buff * skb,struct net_device * dev)2231 static u32 airoha_get_dsa_tag(struct sk_buff *skb, struct net_device *dev)
2232 {
2233 #if IS_ENABLED(CONFIG_NET_DSA)
2234 struct ethhdr *ehdr;
2235 u8 xmit_tpid;
2236 u16 tag;
2237
2238 if (!netdev_uses_dsa(dev))
2239 return 0;
2240
2241 if (dev->dsa_ptr->tag_ops->proto != DSA_TAG_PROTO_MTK)
2242 return 0;
2243
2244 if (skb_cow_head(skb, 0))
2245 return 0;
2246
2247 ehdr = (struct ethhdr *)skb->data;
2248 tag = be16_to_cpu(ehdr->h_proto);
2249 xmit_tpid = tag >> 8;
2250
2251 switch (xmit_tpid) {
2252 case MTK_HDR_XMIT_TAGGED_TPID_8100:
2253 ehdr->h_proto = cpu_to_be16(ETH_P_8021Q);
2254 tag &= ~(MTK_HDR_XMIT_TAGGED_TPID_8100 << 8);
2255 break;
2256 case MTK_HDR_XMIT_TAGGED_TPID_88A8:
2257 ehdr->h_proto = cpu_to_be16(ETH_P_8021AD);
2258 tag &= ~(MTK_HDR_XMIT_TAGGED_TPID_88A8 << 8);
2259 break;
2260 default:
2261 /* PPE module requires untagged DSA packets to work properly,
2262 * so move DSA tag to DMA descriptor.
2263 */
2264 memmove(skb->data + MTK_HDR_LEN, skb->data, 2 * ETH_ALEN);
2265 __skb_pull(skb, MTK_HDR_LEN);
2266 break;
2267 }
2268
2269 return tag;
2270 #else
2271 return 0;
2272 #endif
2273 }
2274
airoha_get_fe_port(struct airoha_gdm_dev * dev)2275 int airoha_get_fe_port(struct airoha_gdm_dev *dev)
2276 {
2277 struct airoha_gdm_port *port = dev->port;
2278 struct airoha_eth *eth = dev->eth;
2279
2280 switch (eth->soc->version) {
2281 case 0x7583:
2282 return port->id == AIROHA_GDM3_IDX ? FE_PSE_PORT_GDM3
2283 : port->id;
2284 case 0x7581:
2285 default:
2286 return port->id == AIROHA_GDM4_IDX ? FE_PSE_PORT_GDM4
2287 : port->id;
2288 }
2289 }
2290
airoha_dev_xmit(struct sk_buff * skb,struct net_device * netdev)2291 static netdev_tx_t airoha_dev_xmit(struct sk_buff *skb,
2292 struct net_device *netdev)
2293 {
2294 struct airoha_gdm_dev *dev = netdev_priv(netdev);
2295 u32 nr_frags, tag, msg0, msg1, len;
2296 struct airoha_queue_entry *e;
2297 struct airoha_qdma *qdma;
2298 struct netdev_queue *txq;
2299 struct airoha_queue *q;
2300 LIST_HEAD(tx_list);
2301 dma_addr_t addr;
2302 int i = 0, qid;
2303 u16 index;
2304 u8 fport;
2305
2306 rcu_read_lock();
2307 qdma = rcu_dereference(dev->qdma);
2308 qid = airoha_qdma_get_txq(qdma, skb_get_queue_mapping(skb));
2309 tag = airoha_get_dsa_tag(skb, netdev);
2310
2311 msg0 = FIELD_PREP(QDMA_ETH_TXMSG_CHAN_MASK,
2312 qid / AIROHA_NUM_QOS_QUEUES) |
2313 FIELD_PREP(QDMA_ETH_TXMSG_QUEUE_MASK,
2314 qid % AIROHA_NUM_QOS_QUEUES) |
2315 FIELD_PREP(QDMA_ETH_TXMSG_SP_TAG_MASK, tag);
2316 if (skb->ip_summed == CHECKSUM_PARTIAL)
2317 msg0 |= FIELD_PREP(QDMA_ETH_TXMSG_TCO_MASK, 1) |
2318 FIELD_PREP(QDMA_ETH_TXMSG_UCO_MASK, 1) |
2319 FIELD_PREP(QDMA_ETH_TXMSG_ICO_MASK, 1);
2320
2321 /* TSO: fill MSS info in tcp checksum field */
2322 if (skb_is_gso(skb)) {
2323 if (skb_cow_head(skb, 0))
2324 goto error;
2325
2326 if (skb_shinfo(skb)->gso_type & (SKB_GSO_TCPV4 |
2327 SKB_GSO_TCPV6)) {
2328 __be16 csum = cpu_to_be16(skb_shinfo(skb)->gso_size);
2329
2330 tcp_hdr(skb)->check = (__force __sum16)csum;
2331 msg0 |= FIELD_PREP(QDMA_ETH_TXMSG_TSO_MASK, 1);
2332 }
2333 }
2334
2335 fport = airoha_get_fe_port(dev);
2336 msg1 = FIELD_PREP(QDMA_ETH_TXMSG_NBOQ_MASK, dev->nbq) |
2337 FIELD_PREP(QDMA_ETH_TXMSG_FPORT_MASK, fport) |
2338 FIELD_PREP(QDMA_ETH_TXMSG_METER_MASK, 0x7f);
2339
2340 q = &qdma->q_tx[qid];
2341 if (WARN_ON_ONCE(!q->ndesc))
2342 goto error;
2343
2344 spin_lock_bh(&q->lock);
2345
2346 if (q->flushing)
2347 goto error_unlock;
2348
2349 txq = skb_get_tx_queue(netdev, skb);
2350 nr_frags = 1 + skb_shinfo(skb)->nr_frags;
2351
2352 if (q->queued + nr_frags >= q->ndesc) {
2353 /* not enough space in the queue */
2354 netif_tx_stop_queue(txq);
2355 q->txq_stopped = true;
2356 spin_unlock_bh(&q->lock);
2357 rcu_read_unlock();
2358
2359 return NETDEV_TX_BUSY;
2360 }
2361
2362 e = list_first_entry(&q->tx_list, struct airoha_queue_entry,
2363 list);
2364 len = skb_headlen(skb);
2365 addr = dma_map_single(netdev->dev.parent, skb->data, len,
2366 DMA_TO_DEVICE);
2367 if (unlikely(dma_mapping_error(netdev->dev.parent, addr)))
2368 goto error_unlock;
2369
2370 e->dma_type = AIROHA_DMA_MAP_SINGLE;
2371 index = e - q->entry;
2372
2373 while (true) {
2374 struct airoha_qdma_desc *desc = &q->desc[index];
2375 skb_frag_t *frag = &skb_shinfo(skb)->frags[i];
2376 u32 val;
2377
2378 list_move_tail(&e->list, &tx_list);
2379 e->skb = i == nr_frags - 1 ? skb : NULL;
2380 e->dma_addr = addr;
2381 e->dma_len = len;
2382
2383 e = list_first_entry(&q->tx_list, struct airoha_queue_entry,
2384 list);
2385 index = e - q->entry;
2386
2387 val = FIELD_PREP(QDMA_DESC_LEN_MASK, len);
2388 if (i < nr_frags - 1)
2389 val |= FIELD_PREP(QDMA_DESC_MORE_MASK, 1);
2390 WRITE_ONCE(desc->ctrl, cpu_to_le32(val));
2391 WRITE_ONCE(desc->addr, cpu_to_le32(addr));
2392 val = FIELD_PREP(QDMA_DESC_NEXT_ID_MASK, index);
2393 WRITE_ONCE(desc->data, cpu_to_le32(val));
2394 WRITE_ONCE(desc->msg0, cpu_to_le32(msg0));
2395 WRITE_ONCE(desc->msg1, cpu_to_le32(msg1));
2396 WRITE_ONCE(desc->msg2, cpu_to_le32(0xffff));
2397
2398 if (++i == nr_frags)
2399 break;
2400
2401 len = skb_frag_size(frag);
2402 addr = skb_frag_dma_map(netdev->dev.parent, frag, 0, len,
2403 DMA_TO_DEVICE);
2404 if (unlikely(dma_mapping_error(netdev->dev.parent, addr)))
2405 goto error_unmap;
2406
2407 e->dma_type = AIROHA_DMA_MAP_PAGE;
2408 }
2409 q->queued += i;
2410
2411 skb_tx_timestamp(skb);
2412 netdev_tx_sent_queue(txq, skb->len);
2413 if (q->ndesc - q->queued < q->free_thr) {
2414 netif_tx_stop_queue(txq);
2415 q->txq_stopped = true;
2416 }
2417
2418 if (netif_xmit_stopped(txq) || !netdev_xmit_more())
2419 airoha_qdma_rmw(qdma, REG_TX_CPU_IDX(qid),
2420 TX_RING_CPU_IDX_MASK,
2421 FIELD_PREP(TX_RING_CPU_IDX_MASK, index));
2422
2423 spin_unlock_bh(&q->lock);
2424 rcu_read_unlock();
2425
2426 return NETDEV_TX_OK;
2427
2428 error_unmap:
2429 list_for_each_entry(e, &tx_list, list)
2430 airoha_unmap_xmit_buf(dev->eth, e);
2431 list_splice(&tx_list, &q->tx_list);
2432 error_unlock:
2433 spin_unlock_bh(&q->lock);
2434 error:
2435 dev_kfree_skb_any(skb);
2436 netdev->stats.tx_dropped++;
2437 rcu_read_unlock();
2438
2439 return NETDEV_TX_OK;
2440 }
2441
airoha_ethtool_get_drvinfo(struct net_device * netdev,struct ethtool_drvinfo * info)2442 static void airoha_ethtool_get_drvinfo(struct net_device *netdev,
2443 struct ethtool_drvinfo *info)
2444 {
2445 struct airoha_gdm_dev *dev = netdev_priv(netdev);
2446 struct airoha_eth *eth = dev->eth;
2447
2448 strscpy(info->driver, eth->dev->driver->name, sizeof(info->driver));
2449 strscpy(info->bus_info, dev_name(eth->dev), sizeof(info->bus_info));
2450 }
2451
airoha_ethtool_get_mac_stats(struct net_device * netdev,struct ethtool_eth_mac_stats * stats)2452 static void airoha_ethtool_get_mac_stats(struct net_device *netdev,
2453 struct ethtool_eth_mac_stats *stats)
2454 {
2455 struct airoha_gdm_dev *dev = netdev_priv(netdev);
2456 unsigned int start;
2457
2458 airoha_update_hw_stats(dev);
2459 do {
2460 start = u64_stats_fetch_begin(&dev->stats.syncp);
2461 stats->FramesTransmittedOK = dev->stats.tx_ok_pkts;
2462 stats->OctetsTransmittedOK = dev->stats.tx_ok_bytes;
2463 stats->MulticastFramesXmittedOK = dev->stats.tx_multicast;
2464 stats->BroadcastFramesXmittedOK = dev->stats.tx_broadcast;
2465 stats->FramesReceivedOK = dev->stats.rx_ok_pkts;
2466 stats->OctetsReceivedOK = dev->stats.rx_ok_bytes;
2467 stats->BroadcastFramesReceivedOK = dev->stats.rx_broadcast;
2468 } while (u64_stats_fetch_retry(&dev->stats.syncp, start));
2469 }
2470
2471 static const struct ethtool_rmon_hist_range airoha_ethtool_rmon_ranges[] = {
2472 { 0, 64 },
2473 { 65, 127 },
2474 { 128, 255 },
2475 { 256, 511 },
2476 { 512, 1023 },
2477 { 1024, 1518 },
2478 { 1519, 10239 },
2479 {},
2480 };
2481
2482 static void
airoha_ethtool_get_rmon_stats(struct net_device * netdev,struct ethtool_rmon_stats * stats,const struct ethtool_rmon_hist_range ** ranges)2483 airoha_ethtool_get_rmon_stats(struct net_device *netdev,
2484 struct ethtool_rmon_stats *stats,
2485 const struct ethtool_rmon_hist_range **ranges)
2486 {
2487 struct airoha_gdm_dev *dev = netdev_priv(netdev);
2488 struct airoha_hw_stats *hw_stats = &dev->stats;
2489 unsigned int start;
2490
2491 BUILD_BUG_ON(ARRAY_SIZE(airoha_ethtool_rmon_ranges) !=
2492 ARRAY_SIZE(hw_stats->tx_len) + 1);
2493 BUILD_BUG_ON(ARRAY_SIZE(airoha_ethtool_rmon_ranges) !=
2494 ARRAY_SIZE(hw_stats->rx_len) + 1);
2495
2496 *ranges = airoha_ethtool_rmon_ranges;
2497 airoha_update_hw_stats(dev);
2498 do {
2499 int i;
2500
2501 start = u64_stats_fetch_begin(&dev->stats.syncp);
2502 stats->fragments = hw_stats->rx_fragment;
2503 stats->jabbers = hw_stats->rx_jabber;
2504 for (i = 0; i < ARRAY_SIZE(airoha_ethtool_rmon_ranges) - 1;
2505 i++) {
2506 stats->hist[i] = hw_stats->rx_len[i];
2507 stats->hist_tx[i] = hw_stats->tx_len[i];
2508 }
2509 } while (u64_stats_fetch_retry(&dev->stats.syncp, start));
2510 }
2511
airoha_qdma_set_chan_tx_sched(struct net_device * netdev,int channel,enum tx_sched_mode mode,const u16 * weights,u8 n_weights)2512 static int airoha_qdma_set_chan_tx_sched(struct net_device *netdev,
2513 int channel, enum tx_sched_mode mode,
2514 const u16 *weights, u8 n_weights)
2515 {
2516 struct airoha_gdm_dev *dev = netdev_priv(netdev);
2517 struct airoha_qdma *qdma;
2518 int i;
2519
2520 qdma = airoha_qdma_deref(dev);
2521 for (i = 0; i < AIROHA_NUM_QOS_QUEUES; i++)
2522 airoha_qdma_clear(qdma, REG_QUEUE_CLOSE_CFG(channel),
2523 TXQ_DISABLE_CHAN_QUEUE_MASK(channel, i));
2524
2525 for (i = 0; i < n_weights; i++) {
2526 u32 status;
2527 int err;
2528
2529 airoha_qdma_wr(qdma, REG_TXWRR_WEIGHT_CFG,
2530 TWRR_RW_CMD_MASK |
2531 FIELD_PREP(TWRR_CHAN_IDX_MASK, channel) |
2532 FIELD_PREP(TWRR_QUEUE_IDX_MASK, i) |
2533 FIELD_PREP(TWRR_VALUE_MASK, weights[i]));
2534 err = read_poll_timeout(airoha_qdma_rr, status,
2535 status & TWRR_RW_CMD_DONE,
2536 USEC_PER_MSEC, 10 * USEC_PER_MSEC,
2537 true, qdma, REG_TXWRR_WEIGHT_CFG);
2538 if (err)
2539 return err;
2540 }
2541
2542 airoha_qdma_rmw(qdma, REG_CHAN_QOS_MODE(channel >> 3),
2543 CHAN_QOS_MODE_MASK(channel),
2544 __field_prep(CHAN_QOS_MODE_MASK(channel), mode));
2545
2546 return 0;
2547 }
2548
airoha_qdma_set_tx_prio_sched(struct net_device * dev,int channel)2549 static int airoha_qdma_set_tx_prio_sched(struct net_device *dev, int channel)
2550 {
2551 static const u16 w[AIROHA_NUM_QOS_QUEUES] = {};
2552
2553 return airoha_qdma_set_chan_tx_sched(dev, channel, TC_SCH_SP, w,
2554 ARRAY_SIZE(w));
2555 }
2556
airoha_qdma_set_tx_ets_sched(struct net_device * dev,int channel,struct tc_ets_qopt_offload * opt)2557 static int airoha_qdma_set_tx_ets_sched(struct net_device *dev, int channel,
2558 struct tc_ets_qopt_offload *opt)
2559 {
2560 struct tc_ets_qopt_offload_replace_params *p = &opt->replace_params;
2561 enum tx_sched_mode mode = TC_SCH_SP;
2562 u16 w[AIROHA_NUM_QOS_QUEUES] = {};
2563 int i, nstrict = 0;
2564
2565 if (p->bands > AIROHA_NUM_QOS_QUEUES)
2566 return -EINVAL;
2567
2568 for (i = 0; i < p->bands; i++) {
2569 if (!p->quanta[i])
2570 nstrict++;
2571 }
2572
2573 /* this configuration is not supported by the hw */
2574 if (nstrict == AIROHA_NUM_QOS_QUEUES - 1)
2575 return -EINVAL;
2576
2577 /* EN7581 SoC supports fixed QoS band priority where WRR queues have
2578 * lowest priorities with respect to SP ones.
2579 * e.g: WRR0, WRR1, .., WRRm, SP0, SP1, .., SPn
2580 */
2581 for (i = 0; i < nstrict; i++) {
2582 if (p->priomap[p->bands - i - 1] != i)
2583 return -EINVAL;
2584 }
2585
2586 for (i = 0; i < p->bands - nstrict; i++) {
2587 if (p->priomap[i] != nstrict + i)
2588 return -EINVAL;
2589
2590 w[i] = p->weights[nstrict + i];
2591 }
2592
2593 if (!nstrict)
2594 mode = TC_SCH_WRR8;
2595 else if (nstrict < AIROHA_NUM_QOS_QUEUES - 1)
2596 mode = nstrict + 1;
2597
2598 return airoha_qdma_set_chan_tx_sched(dev, channel, mode, w,
2599 ARRAY_SIZE(w));
2600 }
2601
airoha_qdma_get_tx_ets_stats(struct net_device * netdev,int channel,struct tc_ets_qopt_offload * opt)2602 static int airoha_qdma_get_tx_ets_stats(struct net_device *netdev, int channel,
2603 struct tc_ets_qopt_offload *opt)
2604 {
2605 struct airoha_gdm_dev *dev = netdev_priv(netdev);
2606 u32 cpu_tx_packets, fwd_tx_packets;
2607 struct airoha_qdma *qdma;
2608 u64 tx_packets;
2609
2610 qdma = airoha_qdma_deref(dev);
2611 cpu_tx_packets = airoha_qdma_rr(qdma, REG_CNTR_VAL(channel << 1));
2612 fwd_tx_packets = airoha_qdma_rr(qdma,
2613 REG_CNTR_VAL((channel << 1) + 1));
2614 tx_packets = (u32)(cpu_tx_packets -
2615 dev->qos_stats[channel].cpu_tx_packets);
2616 tx_packets += (u32)(fwd_tx_packets -
2617 dev->qos_stats[channel].fwd_tx_packets);
2618
2619 _bstats_update(opt->stats.bstats, 0, tx_packets);
2620 dev->qos_stats[channel].cpu_tx_packets = cpu_tx_packets;
2621 dev->qos_stats[channel].fwd_tx_packets = fwd_tx_packets;
2622
2623 return 0;
2624 }
2625
airoha_tc_setup_qdisc_ets(struct net_device * dev,struct tc_ets_qopt_offload * opt)2626 static int airoha_tc_setup_qdisc_ets(struct net_device *dev,
2627 struct tc_ets_qopt_offload *opt)
2628 {
2629 int channel;
2630
2631 if (opt->parent == TC_H_ROOT)
2632 return -EINVAL;
2633
2634 channel = TC_H_MIN(opt->parent) % AIROHA_NUM_QOS_CHANNELS;
2635
2636 switch (opt->command) {
2637 case TC_ETS_REPLACE:
2638 return airoha_qdma_set_tx_ets_sched(dev, channel, opt);
2639 case TC_ETS_DESTROY:
2640 /* PRIO is default qdisc scheduler */
2641 return airoha_qdma_set_tx_prio_sched(dev, channel);
2642 case TC_ETS_STATS:
2643 return airoha_qdma_get_tx_ets_stats(dev, channel, opt);
2644 default:
2645 return -EOPNOTSUPP;
2646 }
2647 }
2648
airoha_qdma_get_rl_param(struct airoha_qdma * qdma,int queue_id,u32 addr,enum trtcm_param_type param,u32 * val_low,u32 * val_high)2649 static int airoha_qdma_get_rl_param(struct airoha_qdma *qdma, int queue_id,
2650 u32 addr, enum trtcm_param_type param,
2651 u32 *val_low, u32 *val_high)
2652 {
2653 u32 idx = QDMA_METER_IDX(queue_id), group = QDMA_METER_GROUP(queue_id);
2654 u32 val, config = FIELD_PREP(RATE_LIMIT_PARAM_TYPE_MASK, param) |
2655 FIELD_PREP(RATE_LIMIT_METER_GROUP_MASK, group) |
2656 FIELD_PREP(RATE_LIMIT_PARAM_INDEX_MASK, idx);
2657
2658 airoha_qdma_wr(qdma, REG_TRTCM_CFG_PARAM(addr), config);
2659 if (read_poll_timeout(airoha_qdma_rr, val,
2660 val & RATE_LIMIT_PARAM_RW_DONE_MASK,
2661 USEC_PER_MSEC, 10 * USEC_PER_MSEC, true, qdma,
2662 REG_TRTCM_CFG_PARAM(addr)))
2663 return -ETIMEDOUT;
2664
2665 *val_low = airoha_qdma_rr(qdma, REG_TRTCM_DATA_LOW(addr));
2666 if (val_high)
2667 *val_high = airoha_qdma_rr(qdma, REG_TRTCM_DATA_HIGH(addr));
2668
2669 return 0;
2670 }
2671
airoha_qdma_set_rl_param(struct airoha_qdma * qdma,int queue_id,u32 addr,enum trtcm_param_type param,u32 val)2672 static int airoha_qdma_set_rl_param(struct airoha_qdma *qdma, int queue_id,
2673 u32 addr, enum trtcm_param_type param,
2674 u32 val)
2675 {
2676 u32 idx = QDMA_METER_IDX(queue_id), group = QDMA_METER_GROUP(queue_id);
2677 u32 config = RATE_LIMIT_PARAM_RW_MASK |
2678 FIELD_PREP(RATE_LIMIT_PARAM_TYPE_MASK, param) |
2679 FIELD_PREP(RATE_LIMIT_METER_GROUP_MASK, group) |
2680 FIELD_PREP(RATE_LIMIT_PARAM_INDEX_MASK, idx);
2681
2682 airoha_qdma_wr(qdma, REG_TRTCM_DATA_LOW(addr), val);
2683 airoha_qdma_wr(qdma, REG_TRTCM_CFG_PARAM(addr), config);
2684
2685 return read_poll_timeout(airoha_qdma_rr, val,
2686 val & RATE_LIMIT_PARAM_RW_DONE_MASK,
2687 USEC_PER_MSEC, 10 * USEC_PER_MSEC, true,
2688 qdma, REG_TRTCM_CFG_PARAM(addr));
2689 }
2690
airoha_qdma_set_rl_config(struct airoha_qdma * qdma,int queue_id,u32 addr,bool enable,u32 enable_mask)2691 static int airoha_qdma_set_rl_config(struct airoha_qdma *qdma, int queue_id,
2692 u32 addr, bool enable, u32 enable_mask)
2693 {
2694 u32 val;
2695 int err;
2696
2697 err = airoha_qdma_get_rl_param(qdma, queue_id, addr, TRTCM_MISC_MODE,
2698 &val, NULL);
2699 if (err)
2700 return err;
2701
2702 val = enable ? val | enable_mask : val & ~enable_mask;
2703
2704 return airoha_qdma_set_rl_param(qdma, queue_id, addr, TRTCM_MISC_MODE,
2705 val);
2706 }
2707
airoha_qdma_set_rl_token_bucket(struct airoha_qdma * qdma,int queue_id,u32 rate_val,u32 bucket_size)2708 static int airoha_qdma_set_rl_token_bucket(struct airoha_qdma *qdma,
2709 int queue_id, u32 rate_val,
2710 u32 bucket_size)
2711 {
2712 u32 val, config, tick, unit, rate, rate_frac;
2713 int err;
2714
2715 err = airoha_qdma_get_rl_param(qdma, queue_id, REG_INGRESS_TRTCM_CFG,
2716 TRTCM_MISC_MODE, &config, NULL);
2717 if (err)
2718 return err;
2719
2720 val = airoha_qdma_rr(qdma, REG_INGRESS_TRTCM_CFG);
2721 tick = FIELD_GET(INGRESS_FAST_TICK_MASK, val);
2722 if (config & TRTCM_TICK_SEL)
2723 tick *= FIELD_GET(INGRESS_SLOW_TICK_RATIO_MASK, val);
2724 if (!tick)
2725 return -EINVAL;
2726
2727 unit = (config & TRTCM_PKT_MODE) ? 1000000 / tick : 8000 / tick;
2728 if (!unit)
2729 return -EINVAL;
2730
2731 rate = rate_val / unit;
2732 rate_frac = rate_val % unit;
2733 rate_frac = FIELD_PREP(TRTCM_TOKEN_RATE_MASK, rate_frac) / unit;
2734 rate = FIELD_PREP(TRTCM_TOKEN_RATE_MASK, rate) |
2735 FIELD_PREP(TRTCM_TOKEN_RATE_FRACTION_MASK, rate_frac);
2736
2737 err = airoha_qdma_set_rl_param(qdma, queue_id, REG_INGRESS_TRTCM_CFG,
2738 TRTCM_TOKEN_RATE_MODE, rate);
2739 if (err)
2740 return err;
2741
2742 val = bucket_size;
2743 if (!(config & TRTCM_PKT_MODE))
2744 val = max_t(u32, val, MIN_TOKEN_SIZE);
2745 val = min_t(u32, __fls(val), MAX_TOKEN_SIZE_OFFSET);
2746
2747 return airoha_qdma_set_rl_param(qdma, queue_id, REG_INGRESS_TRTCM_CFG,
2748 TRTCM_BUCKETSIZE_SHIFT_MODE, val);
2749 }
2750
airoha_qdma_init_rl_config(struct airoha_qdma * qdma,int queue_id,bool enable,enum trtcm_unit_type unit)2751 static int airoha_qdma_init_rl_config(struct airoha_qdma *qdma, int queue_id,
2752 bool enable, enum trtcm_unit_type unit)
2753 {
2754 bool tick_sel = queue_id == 0 || queue_id == 2 || queue_id == 8;
2755 enum trtcm_param mode = TRTCM_METER_MODE;
2756 int err;
2757
2758 mode |= unit == TRTCM_PACKET_UNIT ? TRTCM_PKT_MODE : 0;
2759 err = airoha_qdma_set_rl_config(qdma, queue_id, REG_INGRESS_TRTCM_CFG,
2760 enable, mode);
2761 if (err)
2762 return err;
2763
2764 return airoha_qdma_set_rl_config(qdma, queue_id, REG_INGRESS_TRTCM_CFG,
2765 tick_sel, TRTCM_TICK_SEL);
2766 }
2767
airoha_qdma_get_trtcm_param(struct airoha_qdma * qdma,int channel,u32 addr,enum trtcm_param_type param,enum trtcm_mode_type mode,u32 * val_low,u32 * val_high)2768 static int airoha_qdma_get_trtcm_param(struct airoha_qdma *qdma, int channel,
2769 u32 addr, enum trtcm_param_type param,
2770 enum trtcm_mode_type mode,
2771 u32 *val_low, u32 *val_high)
2772 {
2773 u32 idx = QDMA_METER_IDX(channel), group = QDMA_METER_GROUP(channel);
2774 u32 val, config = FIELD_PREP(TRTCM_PARAM_TYPE_MASK, param) |
2775 FIELD_PREP(TRTCM_METER_GROUP_MASK, group) |
2776 FIELD_PREP(TRTCM_PARAM_INDEX_MASK, idx) |
2777 FIELD_PREP(TRTCM_PARAM_RATE_TYPE_MASK, mode);
2778
2779 airoha_qdma_wr(qdma, REG_TRTCM_CFG_PARAM(addr), config);
2780 if (read_poll_timeout(airoha_qdma_rr, val,
2781 val & TRTCM_PARAM_RW_DONE_MASK,
2782 USEC_PER_MSEC, 10 * USEC_PER_MSEC, true,
2783 qdma, REG_TRTCM_CFG_PARAM(addr)))
2784 return -ETIMEDOUT;
2785
2786 *val_low = airoha_qdma_rr(qdma, REG_TRTCM_DATA_LOW(addr));
2787 if (val_high)
2788 *val_high = airoha_qdma_rr(qdma, REG_TRTCM_DATA_HIGH(addr));
2789
2790 return 0;
2791 }
2792
airoha_qdma_set_trtcm_param(struct airoha_qdma * qdma,int channel,u32 addr,enum trtcm_param_type param,enum trtcm_mode_type mode,u32 val)2793 static int airoha_qdma_set_trtcm_param(struct airoha_qdma *qdma, int channel,
2794 u32 addr, enum trtcm_param_type param,
2795 enum trtcm_mode_type mode, u32 val)
2796 {
2797 u32 idx = QDMA_METER_IDX(channel), group = QDMA_METER_GROUP(channel);
2798 u32 config = TRTCM_PARAM_RW_MASK |
2799 FIELD_PREP(TRTCM_PARAM_TYPE_MASK, param) |
2800 FIELD_PREP(TRTCM_METER_GROUP_MASK, group) |
2801 FIELD_PREP(TRTCM_PARAM_INDEX_MASK, idx) |
2802 FIELD_PREP(TRTCM_PARAM_RATE_TYPE_MASK, mode);
2803
2804 airoha_qdma_wr(qdma, REG_TRTCM_DATA_LOW(addr), val);
2805 airoha_qdma_wr(qdma, REG_TRTCM_CFG_PARAM(addr), config);
2806
2807 return read_poll_timeout(airoha_qdma_rr, val,
2808 val & TRTCM_PARAM_RW_DONE_MASK,
2809 USEC_PER_MSEC, 10 * USEC_PER_MSEC, true,
2810 qdma, REG_TRTCM_CFG_PARAM(addr));
2811 }
2812
airoha_qdma_set_trtcm_config(struct airoha_qdma * qdma,int channel,u32 addr,enum trtcm_mode_type mode,bool enable,u32 enable_mask)2813 static int airoha_qdma_set_trtcm_config(struct airoha_qdma *qdma, int channel,
2814 u32 addr, enum trtcm_mode_type mode,
2815 bool enable, u32 enable_mask)
2816 {
2817 u32 val;
2818
2819 if (airoha_qdma_get_trtcm_param(qdma, channel, addr, TRTCM_MISC_MODE,
2820 mode, &val, NULL))
2821 return -EINVAL;
2822
2823 val = enable ? val | enable_mask : val & ~enable_mask;
2824
2825 return airoha_qdma_set_trtcm_param(qdma, channel, addr, TRTCM_MISC_MODE,
2826 mode, val);
2827 }
2828
airoha_qdma_set_trtcm_token_bucket(struct airoha_qdma * qdma,int channel,u32 addr,enum trtcm_mode_type mode,u32 rate_val,u32 bucket_size)2829 static int airoha_qdma_set_trtcm_token_bucket(struct airoha_qdma *qdma,
2830 int channel, u32 addr,
2831 enum trtcm_mode_type mode,
2832 u32 rate_val, u32 bucket_size)
2833 {
2834 u32 val, config, tick, unit, rate, rate_frac;
2835 int err;
2836
2837 if (airoha_qdma_get_trtcm_param(qdma, channel, addr, TRTCM_MISC_MODE,
2838 mode, &config, NULL))
2839 return -EINVAL;
2840
2841 val = airoha_qdma_rr(qdma, addr);
2842 tick = FIELD_GET(INGRESS_FAST_TICK_MASK, val);
2843 if (config & TRTCM_TICK_SEL)
2844 tick *= FIELD_GET(INGRESS_SLOW_TICK_RATIO_MASK, val);
2845 if (!tick)
2846 return -EINVAL;
2847
2848 unit = (config & TRTCM_PKT_MODE) ? 1000000 / tick : 8000 / tick;
2849 if (!unit)
2850 return -EINVAL;
2851
2852 rate = rate_val / unit;
2853 rate_frac = rate_val % unit;
2854 rate_frac = FIELD_PREP(TRTCM_TOKEN_RATE_MASK, rate_frac) / unit;
2855 rate = FIELD_PREP(TRTCM_TOKEN_RATE_MASK, rate) |
2856 FIELD_PREP(TRTCM_TOKEN_RATE_FRACTION_MASK, rate_frac);
2857
2858 err = airoha_qdma_set_trtcm_param(qdma, channel, addr,
2859 TRTCM_TOKEN_RATE_MODE, mode, rate);
2860 if (err)
2861 return err;
2862
2863 val = max_t(u32, bucket_size, MIN_TOKEN_SIZE);
2864 val = min_t(u32, __fls(val), MAX_TOKEN_SIZE_OFFSET);
2865
2866 return airoha_qdma_set_trtcm_param(qdma, channel, addr,
2867 TRTCM_BUCKETSIZE_SHIFT_MODE,
2868 mode, val);
2869 }
2870
airoha_qdma_set_tx_rate_limit(struct net_device * netdev,int channel,u32 rate,u32 bucket_size)2871 static int airoha_qdma_set_tx_rate_limit(struct net_device *netdev,
2872 int channel, u32 rate,
2873 u32 bucket_size)
2874 {
2875 struct airoha_gdm_dev *dev = netdev_priv(netdev);
2876 struct airoha_qdma *qdma;
2877 int i, err;
2878
2879 qdma = airoha_qdma_deref(dev);
2880 for (i = 0; i <= TRTCM_PEAK_MODE; i++) {
2881 err = airoha_qdma_set_trtcm_config(qdma, channel,
2882 REG_EGRESS_TRTCM_CFG, i,
2883 !!rate, TRTCM_METER_MODE);
2884 if (err)
2885 return err;
2886
2887 err = airoha_qdma_set_trtcm_token_bucket(qdma, channel,
2888 REG_EGRESS_TRTCM_CFG,
2889 i, rate, bucket_size);
2890 if (err)
2891 return err;
2892 }
2893
2894 return 0;
2895 }
2896
airoha_tc_htb_modify_queue(struct net_device * dev,struct tc_htb_qopt_offload * opt)2897 static int airoha_tc_htb_modify_queue(struct net_device *dev,
2898 struct tc_htb_qopt_offload *opt)
2899 {
2900 u32 channel = TC_H_MIN(opt->classid) % AIROHA_NUM_QOS_CHANNELS;
2901 u32 rate = div_u64(opt->rate, 1000) << 3; /* kbps */
2902 int err;
2903
2904 if (opt->parent_classid != TC_HTB_CLASSID_ROOT) {
2905 NL_SET_ERR_MSG_MOD(opt->extack, "invalid parent classid");
2906 return -EINVAL;
2907 }
2908
2909 err = airoha_qdma_set_tx_rate_limit(dev, channel, rate, opt->quantum);
2910 if (err)
2911 NL_SET_ERR_MSG_MOD(opt->extack,
2912 "failed configuring htb offload");
2913
2914 return err;
2915 }
2916
airoha_tc_htb_alloc_leaf_queue(struct net_device * netdev,struct tc_htb_qopt_offload * opt)2917 static int airoha_tc_htb_alloc_leaf_queue(struct net_device *netdev,
2918 struct tc_htb_qopt_offload *opt)
2919 {
2920 u32 channel = TC_H_MIN(opt->classid) % AIROHA_NUM_QOS_CHANNELS;
2921 int err, num_tx_queues = AIROHA_NUM_TX_RING + channel + 1;
2922 struct airoha_gdm_dev *dev = netdev_priv(netdev);
2923 struct airoha_qdma *qdma;
2924
2925 /* Here we need to check the requested QDMA channel is not already
2926 * in use by another net_device running on the same QDMA block.
2927 */
2928 qdma = airoha_qdma_deref(dev);
2929 if (test_and_set_bit(channel, qdma->qos_channel_map)) {
2930 NL_SET_ERR_MSG_MOD(opt->extack,
2931 "qdma qos channel already in use");
2932 return -EBUSY;
2933 }
2934
2935 err = airoha_tc_htb_modify_queue(netdev, opt);
2936 if (err)
2937 goto error;
2938
2939 if (num_tx_queues > netdev->real_num_tx_queues) {
2940 err = netif_set_real_num_tx_queues(netdev, num_tx_queues);
2941 if (err) {
2942 airoha_qdma_set_tx_rate_limit(netdev, channel, 0,
2943 opt->quantum);
2944 NL_SET_ERR_MSG_MOD(opt->extack,
2945 "failed setting real_num_tx_queues");
2946 goto error;
2947 }
2948 }
2949
2950 set_bit(channel, dev->qos_sq_bmap);
2951 opt->qid = AIROHA_NUM_TX_RING + channel;
2952
2953 return 0;
2954 error:
2955 clear_bit(channel, qdma->qos_channel_map);
2956
2957 return err;
2958 }
2959
airoha_qdma_set_rx_meter(struct airoha_gdm_dev * dev,u32 rate,u32 bucket_size,enum trtcm_unit_type unit_type)2960 static int airoha_qdma_set_rx_meter(struct airoha_gdm_dev *dev,
2961 u32 rate, u32 bucket_size,
2962 enum trtcm_unit_type unit_type)
2963 {
2964 struct airoha_qdma *qdma = airoha_qdma_deref(dev);
2965 int i;
2966
2967 for (i = 0; i < ARRAY_SIZE(qdma->q_rx); i++) {
2968 int err;
2969
2970 if (!qdma->q_rx[i].ndesc)
2971 continue;
2972
2973 err = airoha_qdma_init_rl_config(qdma, i, !!rate, unit_type);
2974 if (err)
2975 return err;
2976
2977 err = airoha_qdma_set_rl_token_bucket(qdma, i, rate,
2978 bucket_size);
2979 if (err)
2980 return err;
2981 }
2982
2983 return 0;
2984 }
2985
airoha_tc_matchall_act_validate(struct tc_cls_matchall_offload * f)2986 static int airoha_tc_matchall_act_validate(struct tc_cls_matchall_offload *f)
2987 {
2988 const struct flow_action *actions = &f->rule->action;
2989 const struct flow_action_entry *act;
2990
2991 if (!flow_action_has_entries(actions)) {
2992 NL_SET_ERR_MSG_MOD(f->common.extack,
2993 "filter run with no actions");
2994 return -EINVAL;
2995 }
2996
2997 if (!flow_offload_has_one_action(actions)) {
2998 NL_SET_ERR_MSG_MOD(f->common.extack,
2999 "only once action per filter is supported");
3000 return -EOPNOTSUPP;
3001 }
3002
3003 act = &actions->entries[0];
3004 if (act->id != FLOW_ACTION_POLICE) {
3005 NL_SET_ERR_MSG_MOD(f->common.extack, "unsupported action");
3006 return -EOPNOTSUPP;
3007 }
3008
3009 if (act->police.exceed.act_id != FLOW_ACTION_DROP) {
3010 NL_SET_ERR_MSG_MOD(f->common.extack,
3011 "invalid exceed action id");
3012 return -EOPNOTSUPP;
3013 }
3014
3015 if (act->police.notexceed.act_id != FLOW_ACTION_ACCEPT) {
3016 NL_SET_ERR_MSG_MOD(f->common.extack,
3017 "invalid notexceed action id");
3018 return -EOPNOTSUPP;
3019 }
3020
3021 if (act->police.notexceed.act_id == FLOW_ACTION_ACCEPT &&
3022 !flow_action_is_last_entry(actions, act)) {
3023 NL_SET_ERR_MSG_MOD(f->common.extack,
3024 "action accept must be last");
3025 return -EOPNOTSUPP;
3026 }
3027
3028 if (act->police.peakrate_bytes_ps || act->police.avrate ||
3029 act->police.overhead || act->police.mtu) {
3030 NL_SET_ERR_MSG_MOD(f->common.extack,
3031 "peakrate/avrate/overhead/mtu unsupported");
3032 return -EOPNOTSUPP;
3033 }
3034
3035 return 0;
3036 }
3037
airoha_dev_tc_matchall(struct net_device * netdev,struct tc_cls_matchall_offload * f)3038 static int airoha_dev_tc_matchall(struct net_device *netdev,
3039 struct tc_cls_matchall_offload *f)
3040 {
3041 enum trtcm_unit_type unit_type = TRTCM_BYTE_UNIT;
3042 struct airoha_gdm_dev *dev = netdev_priv(netdev);
3043 u32 rate = 0, bucket_size = 0;
3044
3045 switch (f->command) {
3046 case TC_CLSMATCHALL_REPLACE: {
3047 const struct flow_action_entry *act;
3048 int err;
3049
3050 err = airoha_tc_matchall_act_validate(f);
3051 if (err)
3052 return err;
3053
3054 act = &f->rule->action.entries[0];
3055 if (act->police.rate_pkt_ps) {
3056 rate = act->police.rate_pkt_ps;
3057 bucket_size = act->police.burst_pkt;
3058 unit_type = TRTCM_PACKET_UNIT;
3059 } else {
3060 rate = div_u64(act->police.rate_bytes_ps, 1000);
3061 rate = rate << 3; /* Kbps */
3062 bucket_size = act->police.burst;
3063 }
3064 fallthrough;
3065 }
3066 case TC_CLSMATCHALL_DESTROY:
3067 return airoha_qdma_set_rx_meter(dev, rate, bucket_size,
3068 unit_type);
3069 default:
3070 return -EOPNOTSUPP;
3071 }
3072 }
3073
airoha_dev_setup_tc_block_cb(enum tc_setup_type type,void * type_data,void * cb_priv)3074 static int airoha_dev_setup_tc_block_cb(enum tc_setup_type type,
3075 void *type_data, void *cb_priv)
3076 {
3077 struct net_device *netdev = cb_priv;
3078 struct airoha_gdm_dev *dev = netdev_priv(netdev);
3079 struct airoha_eth *eth = dev->eth;
3080
3081 if (!tc_can_offload(netdev))
3082 return -EOPNOTSUPP;
3083
3084 switch (type) {
3085 case TC_SETUP_CLSFLOWER:
3086 return airoha_ppe_setup_tc_block_cb(ð->ppe->dev, type_data);
3087 case TC_SETUP_CLSMATCHALL:
3088 return airoha_dev_tc_matchall(netdev, type_data);
3089 default:
3090 return -EOPNOTSUPP;
3091 }
3092 }
3093
airoha_dev_setup_tc_block(struct net_device * dev,struct flow_block_offload * f)3094 static int airoha_dev_setup_tc_block(struct net_device *dev,
3095 struct flow_block_offload *f)
3096 {
3097 flow_setup_cb_t *cb = airoha_dev_setup_tc_block_cb;
3098 static LIST_HEAD(block_cb_list);
3099 struct flow_block_cb *block_cb;
3100
3101 if (f->binder_type != FLOW_BLOCK_BINDER_TYPE_CLSACT_INGRESS)
3102 return -EOPNOTSUPP;
3103
3104 f->driver_block_list = &block_cb_list;
3105 switch (f->command) {
3106 case FLOW_BLOCK_BIND:
3107 block_cb = flow_block_cb_lookup(f->block, cb, dev);
3108 if (block_cb) {
3109 flow_block_cb_incref(block_cb);
3110 return 0;
3111 }
3112 block_cb = flow_block_cb_alloc(cb, dev, dev, NULL);
3113 if (IS_ERR(block_cb))
3114 return PTR_ERR(block_cb);
3115
3116 flow_block_cb_incref(block_cb);
3117 flow_block_cb_add(block_cb, f);
3118 list_add_tail(&block_cb->driver_list, &block_cb_list);
3119 return 0;
3120 case FLOW_BLOCK_UNBIND:
3121 block_cb = flow_block_cb_lookup(f->block, cb, dev);
3122 if (!block_cb)
3123 return -ENOENT;
3124
3125 if (!flow_block_cb_decref(block_cb)) {
3126 flow_block_cb_remove(block_cb, f);
3127 list_del(&block_cb->driver_list);
3128 }
3129 return 0;
3130 default:
3131 return -EOPNOTSUPP;
3132 }
3133 }
3134
airoha_tc_remove_htb_queue(struct net_device * netdev,int queue)3135 static void airoha_tc_remove_htb_queue(struct net_device *netdev, int queue)
3136 {
3137 struct airoha_gdm_dev *dev = netdev_priv(netdev);
3138 int num_tx_queues = AIROHA_NUM_TX_RING;
3139 struct airoha_qdma *qdma;
3140
3141 airoha_qdma_set_tx_rate_limit(netdev, queue, 0, 0);
3142
3143 qdma = airoha_qdma_deref(dev);
3144 clear_bit(queue, qdma->qos_channel_map);
3145 clear_bit(queue, dev->qos_sq_bmap);
3146
3147 if (!bitmap_empty(dev->qos_sq_bmap, AIROHA_NUM_QOS_CHANNELS))
3148 num_tx_queues += find_last_bit(dev->qos_sq_bmap,
3149 AIROHA_NUM_QOS_CHANNELS) + 1;
3150 netif_set_real_num_tx_queues(netdev, num_tx_queues);
3151 }
3152
airoha_tc_htb_delete_leaf_queue(struct net_device * netdev,struct tc_htb_qopt_offload * opt)3153 static int airoha_tc_htb_delete_leaf_queue(struct net_device *netdev,
3154 struct tc_htb_qopt_offload *opt)
3155 {
3156 u32 channel = TC_H_MIN(opt->classid) % AIROHA_NUM_QOS_CHANNELS;
3157 struct airoha_gdm_dev *dev = netdev_priv(netdev);
3158
3159 if (!test_bit(channel, dev->qos_sq_bmap)) {
3160 NL_SET_ERR_MSG_MOD(opt->extack, "invalid queue id");
3161 return -EINVAL;
3162 }
3163
3164 airoha_tc_remove_htb_queue(netdev, channel);
3165
3166 return 0;
3167 }
3168
airoha_disable_qos_for_gdm34(struct net_device * netdev)3169 static void airoha_disable_qos_for_gdm34(struct net_device *netdev)
3170 {
3171 struct airoha_gdm_dev *dev = netdev_priv(netdev);
3172 struct airoha_gdm_port *port = dev->port;
3173 int err;
3174
3175 if (port->id != AIROHA_GDM3_IDX &&
3176 port->id != AIROHA_GDM4_IDX)
3177 return;
3178
3179 err = airoha_disable_gdm2_loopback(dev);
3180 if (err)
3181 netdev_warn(netdev,
3182 "failed disabling GDM2 loopback: %d\n", err);
3183
3184 clear_bit(AIROHA_DEV_F_WAN, &dev->flags);
3185 airoha_dev_set_qdma(dev);
3186
3187 airoha_set_macaddr(dev, netdev->dev_addr);
3188 airoha_ppe_set_xmit_frame_size(dev);
3189
3190 if (netif_running(netdev))
3191 airoha_set_gdm_port_fwd_cfg(dev->eth,
3192 REG_GDM_FWD_CFG(port->id),
3193 FE_PSE_PORT_PPE1);
3194 }
3195
airoha_enable_qos_for_gdm34(struct net_device * netdev,struct netlink_ext_ack * extack)3196 static int airoha_enable_qos_for_gdm34(struct net_device *netdev,
3197 struct netlink_ext_ack *extack)
3198 {
3199 struct airoha_gdm_dev *wan_dev, *dev = netdev_priv(netdev);
3200 struct airoha_gdm_port *port = dev->port;
3201 struct airoha_eth *eth = dev->eth;
3202 int err = -EBUSY;
3203
3204 if (port->id != AIROHA_GDM3_IDX &&
3205 port->id != AIROHA_GDM4_IDX) {
3206 /* HW QoS is always supported by GDM1 and GDM2 */
3207 return 0;
3208 }
3209
3210 if (!airoha_is_lan_gdm_dev(dev)) /* Already enabled */
3211 return 0;
3212
3213 mutex_lock(&flow_offload_mutex);
3214
3215 wan_dev = airoha_get_wan_gdm_dev(eth);
3216 if (wan_dev) {
3217 if (test_bit(AIROHA_DEV_F_TX_QOS, &wan_dev->flags) ||
3218 wan_dev->port->id == AIROHA_GDM2_IDX) {
3219 NL_SET_ERR_MSG_MOD(extack,
3220 "QoS configured for WAN device");
3221 goto error_unlock;
3222 }
3223 airoha_disable_qos_for_gdm34(netdev_from_priv(wan_dev));
3224 }
3225
3226 set_bit(AIROHA_DEV_F_WAN, &dev->flags);
3227 airoha_dev_set_qdma(dev);
3228 err = airoha_enable_gdm2_loopback(dev);
3229 if (err)
3230 goto error_disable_wan;
3231
3232 err = airoha_set_macaddr(dev, netdev->dev_addr);
3233 if (err)
3234 goto error_disable_loopback;
3235
3236 airoha_dev_set_xmit_frame_size(netdev);
3237 if (netif_running(netdev)) {
3238 u32 pse_port;
3239
3240 pse_port = airoha_ppe_is_enabled(eth, 1) ? FE_PSE_PORT_PPE2
3241 : FE_PSE_PORT_PPE1;
3242 airoha_set_gdm_port_fwd_cfg(eth, REG_GDM_FWD_CFG(port->id),
3243 pse_port);
3244 }
3245
3246 mutex_unlock(&flow_offload_mutex);
3247
3248 return 0;
3249
3250 error_disable_loopback:
3251 airoha_disable_gdm2_loopback(dev);
3252 error_disable_wan:
3253 clear_bit(AIROHA_DEV_F_WAN, &dev->flags);
3254 airoha_dev_set_qdma(dev);
3255 error_unlock:
3256 mutex_unlock(&flow_offload_mutex);
3257
3258 return err;
3259 }
3260
airoha_tc_htb_destroy(struct net_device * netdev)3261 static int airoha_tc_htb_destroy(struct net_device *netdev)
3262 {
3263 struct airoha_gdm_dev *dev = netdev_priv(netdev);
3264 int q;
3265
3266 for_each_set_bit(q, dev->qos_sq_bmap, AIROHA_NUM_QOS_CHANNELS)
3267 airoha_tc_remove_htb_queue(netdev, q);
3268
3269 clear_bit(AIROHA_DEV_F_TX_QOS, &dev->flags);
3270
3271 return 0;
3272 }
3273
airoha_tc_get_htb_get_leaf_queue(struct net_device * netdev,struct tc_htb_qopt_offload * opt)3274 static int airoha_tc_get_htb_get_leaf_queue(struct net_device *netdev,
3275 struct tc_htb_qopt_offload *opt)
3276 {
3277 u32 channel = TC_H_MIN(opt->classid) % AIROHA_NUM_QOS_CHANNELS;
3278 struct airoha_gdm_dev *dev = netdev_priv(netdev);
3279
3280 if (!test_bit(channel, dev->qos_sq_bmap)) {
3281 NL_SET_ERR_MSG_MOD(opt->extack, "invalid queue id");
3282 return -EINVAL;
3283 }
3284
3285 opt->qid = AIROHA_NUM_TX_RING + channel;
3286
3287 return 0;
3288 }
3289
airoha_tc_setup_qdisc_htb(struct net_device * netdev,struct tc_htb_qopt_offload * opt)3290 static int airoha_tc_setup_qdisc_htb(struct net_device *netdev,
3291 struct tc_htb_qopt_offload *opt)
3292 {
3293 switch (opt->command) {
3294 case TC_HTB_CREATE: {
3295 struct airoha_gdm_dev *dev = netdev_priv(netdev);
3296 int err;
3297
3298 err = airoha_enable_qos_for_gdm34(netdev, opt->extack);
3299 if (err)
3300 return err;
3301
3302 set_bit(AIROHA_DEV_F_TX_QOS, &dev->flags);
3303 break;
3304 }
3305 case TC_HTB_DESTROY:
3306 return airoha_tc_htb_destroy(netdev);
3307 case TC_HTB_NODE_MODIFY:
3308 return airoha_tc_htb_modify_queue(netdev, opt);
3309 case TC_HTB_LEAF_ALLOC_QUEUE:
3310 return airoha_tc_htb_alloc_leaf_queue(netdev, opt);
3311 case TC_HTB_LEAF_DEL:
3312 case TC_HTB_LEAF_DEL_LAST:
3313 case TC_HTB_LEAF_DEL_LAST_FORCE:
3314 return airoha_tc_htb_delete_leaf_queue(netdev, opt);
3315 case TC_HTB_LEAF_QUERY_QUEUE:
3316 return airoha_tc_get_htb_get_leaf_queue(netdev, opt);
3317 default:
3318 return -EOPNOTSUPP;
3319 }
3320
3321 return 0;
3322 }
3323
airoha_dev_tc_setup(struct net_device * dev,enum tc_setup_type type,void * type_data)3324 static int airoha_dev_tc_setup(struct net_device *dev,
3325 enum tc_setup_type type, void *type_data)
3326 {
3327 switch (type) {
3328 case TC_SETUP_QDISC_ETS:
3329 return airoha_tc_setup_qdisc_ets(dev, type_data);
3330 case TC_SETUP_QDISC_HTB:
3331 return airoha_tc_setup_qdisc_htb(dev, type_data);
3332 case TC_SETUP_BLOCK:
3333 case TC_SETUP_FT:
3334 return airoha_dev_setup_tc_block(dev, type_data);
3335 default:
3336 return -EOPNOTSUPP;
3337 }
3338 }
3339
3340 static const struct net_device_ops airoha_netdev_ops = {
3341 .ndo_init = airoha_dev_init,
3342 .ndo_open = airoha_dev_open,
3343 .ndo_stop = airoha_dev_stop,
3344 .ndo_change_mtu = airoha_dev_change_mtu,
3345 .ndo_select_queue = airoha_dev_select_queue,
3346 .ndo_start_xmit = airoha_dev_xmit,
3347 .ndo_get_stats64 = airoha_dev_get_stats64,
3348 .ndo_set_mac_address = airoha_dev_set_macaddr,
3349 .ndo_setup_tc = airoha_dev_tc_setup,
3350 };
3351
3352 static const struct ethtool_ops airoha_ethtool_ops = {
3353 .get_drvinfo = airoha_ethtool_get_drvinfo,
3354 .get_eth_mac_stats = airoha_ethtool_get_mac_stats,
3355 .get_rmon_stats = airoha_ethtool_get_rmon_stats,
3356 .get_link_ksettings = phy_ethtool_get_link_ksettings,
3357 .get_link = ethtool_op_get_link,
3358 };
3359
airoha_metadata_dst_alloc(struct airoha_gdm_port * port)3360 static int airoha_metadata_dst_alloc(struct airoha_gdm_port *port)
3361 {
3362 int i;
3363
3364 for (i = 0; i < ARRAY_SIZE(port->dsa_meta); i++) {
3365 struct metadata_dst *md_dst;
3366
3367 md_dst = metadata_dst_alloc(0, METADATA_HW_PORT_MUX,
3368 GFP_KERNEL);
3369 if (!md_dst)
3370 return -ENOMEM;
3371
3372 md_dst->u.port_info.port_id = i;
3373 port->dsa_meta[i] = md_dst;
3374 }
3375
3376 return 0;
3377 }
3378
airoha_metadata_dst_free(struct airoha_gdm_port * port)3379 static void airoha_metadata_dst_free(struct airoha_gdm_port *port)
3380 {
3381 int i;
3382
3383 for (i = 0; i < ARRAY_SIZE(port->dsa_meta); i++) {
3384 if (!port->dsa_meta[i])
3385 continue;
3386
3387 dst_release(&port->dsa_meta[i]->dst);
3388 }
3389 }
3390
airoha_is_valid_gdm_dev(struct airoha_eth * eth,struct airoha_gdm_dev * dev)3391 bool airoha_is_valid_gdm_dev(struct airoha_eth *eth,
3392 struct airoha_gdm_dev *dev)
3393 {
3394 int i;
3395
3396 for (i = 0; i < ARRAY_SIZE(eth->ports); i++) {
3397 struct airoha_gdm_port *port = eth->ports[i];
3398 int j;
3399
3400 if (!port)
3401 continue;
3402
3403 for (j = 0; j < ARRAY_SIZE(port->devs); j++) {
3404 if (port->devs[j] == dev)
3405 return true;
3406 }
3407 }
3408
3409 return false;
3410 }
3411
airoha_alloc_gdm_device(struct airoha_eth * eth,struct airoha_gdm_port * port,int nbq,struct device_node * np)3412 static int airoha_alloc_gdm_device(struct airoha_eth *eth,
3413 struct airoha_gdm_port *port,
3414 int nbq, struct device_node *np)
3415 {
3416 struct net_device *netdev;
3417 struct airoha_gdm_dev *dev;
3418 int err, i;
3419 u8 index;
3420
3421 netdev = devm_alloc_etherdev_mqs(eth->dev, sizeof(*dev),
3422 AIROHA_NUM_NETDEV_TX_RINGS,
3423 AIROHA_NUM_RX_RING);
3424 if (!netdev) {
3425 dev_err(eth->dev, "alloc_etherdev failed\n");
3426 return -ENOMEM;
3427 }
3428
3429 netdev->netdev_ops = &airoha_netdev_ops;
3430 netdev->ethtool_ops = &airoha_ethtool_ops;
3431 netdev->max_mtu = AIROHA_MAX_MTU;
3432 netdev->watchdog_timeo = 5 * HZ;
3433 netdev->hw_features = NETIF_F_IP_CSUM | NETIF_F_RXCSUM | NETIF_F_TSO6 |
3434 NETIF_F_IPV6_CSUM | NETIF_F_SG | NETIF_F_TSO |
3435 NETIF_F_HW_TC;
3436 netdev->features |= netdev->hw_features;
3437 netdev->vlan_features = netdev->hw_features;
3438 SET_NETDEV_DEV(netdev, eth->dev);
3439
3440 /* reserve hw queues for HTB offloading */
3441 err = netif_set_real_num_tx_queues(netdev, AIROHA_NUM_TX_RING);
3442 if (err)
3443 return err;
3444
3445 err = of_get_ethdev_address(np, netdev);
3446 if (err) {
3447 if (err == -EPROBE_DEFER)
3448 return err;
3449
3450 eth_hw_addr_random(netdev);
3451 dev_info(eth->dev, "generated random MAC address %pM\n",
3452 netdev->dev_addr);
3453 }
3454
3455 /* Allowed nbq for EN7581 on GDM3 port are 4 and 5 for PCIE0
3456 * and PCIE1 respectively.
3457 */
3458 index = nbq;
3459 if (index && airoha_is_7581(eth) && port->id == AIROHA_GDM3_IDX)
3460 index -= 4;
3461
3462 if (index >= ARRAY_SIZE(port->devs) || port->devs[index]) {
3463 dev_err(eth->dev, "invalid nbq id: %d\n", nbq);
3464 return -EINVAL;
3465 }
3466
3467 netdev->dev.of_node = of_node_get(np);
3468 dev = netdev_priv(netdev);
3469 u64_stats_init(&dev->stats.syncp);
3470 for (i = 0; i < AIROHA_NUM_NETDEV_TX_RINGS; i++)
3471 spin_lock_init(&dev->txq_lock[i]);
3472 dev->port = port;
3473 dev->eth = eth;
3474 dev->nbq = nbq;
3475 port->devs[index] = dev;
3476
3477 return 0;
3478 }
3479
airoha_alloc_gdm_port(struct airoha_eth * eth,struct device_node * np)3480 static int airoha_alloc_gdm_port(struct airoha_eth *eth,
3481 struct device_node *np)
3482 {
3483 const __be32 *id_ptr = of_get_property(np, "reg", NULL);
3484 struct airoha_gdm_port *port;
3485 struct device_node *node;
3486 int err, nbq, p, d = 0;
3487 u32 id;
3488
3489 if (!id_ptr) {
3490 dev_err(eth->dev, "missing gdm port id\n");
3491 return -EINVAL;
3492 }
3493
3494 id = be32_to_cpup(id_ptr);
3495 p = id - 1;
3496
3497 if (!id || id > ARRAY_SIZE(eth->ports)) {
3498 dev_err(eth->dev, "invalid gdm port id: %d\n", id);
3499 return -EINVAL;
3500 }
3501
3502 if (eth->ports[p]) {
3503 dev_err(eth->dev, "duplicate gdm port id: %d\n", id);
3504 return -EINVAL;
3505 }
3506
3507 port = devm_kzalloc(eth->dev, sizeof(*port), GFP_KERNEL);
3508 if (!port)
3509 return -ENOMEM;
3510
3511 port->id = id;
3512 spin_lock_init(&port->stats_lock);
3513 eth->ports[p] = port;
3514
3515 err = airoha_metadata_dst_alloc(port);
3516 if (err)
3517 return err;
3518
3519 /* Default nbq value to ensure backward compatibility */
3520 nbq = id == AIROHA_GDM3_IDX && airoha_is_7581(eth) ? 4 : 0;
3521
3522 for_each_child_of_node(np, node) {
3523 /* Multiple external serdes connected to the FE GDM port via an
3524 * external arbiter.
3525 */
3526 const __be32 *nbq_ptr;
3527
3528 if (!of_device_is_compatible(node, "airoha,eth-port"))
3529 continue;
3530
3531 d++;
3532 if (!of_device_is_available(node))
3533 continue;
3534
3535 nbq_ptr = of_get_property(node, "reg", NULL);
3536 if (!nbq_ptr) {
3537 dev_err(eth->dev, "missing nbq id\n");
3538 of_node_put(node);
3539 return -EINVAL;
3540 }
3541
3542 /* Verify the provided nbq parameter is valid */
3543 nbq = be32_to_cpup(nbq_ptr);
3544 err = eth->soc->ops.get_sport(port, nbq);
3545 if (err < 0) {
3546 of_node_put(node);
3547 return err;
3548 }
3549
3550 err = airoha_alloc_gdm_device(eth, port, nbq, node);
3551 if (err) {
3552 of_node_put(node);
3553 return err;
3554 }
3555 }
3556
3557 return !d ? airoha_alloc_gdm_device(eth, port, nbq, np) : 0;
3558 }
3559
airoha_register_gdm_devices(struct airoha_eth * eth)3560 static int airoha_register_gdm_devices(struct airoha_eth *eth)
3561 {
3562 int i;
3563
3564 for (i = 0; i < ARRAY_SIZE(eth->ports); i++) {
3565 struct airoha_gdm_port *port = eth->ports[i];
3566 int j;
3567
3568 if (!port)
3569 continue;
3570
3571 for (j = 0; j < ARRAY_SIZE(port->devs); j++) {
3572 struct airoha_gdm_dev *dev = port->devs[j];
3573 int err;
3574
3575 if (!dev)
3576 continue;
3577
3578 err = register_netdev(netdev_from_priv(dev));
3579 if (err)
3580 return err;
3581 }
3582 }
3583
3584 set_bit(DEV_STATE_REGISTERED, ð->state);
3585
3586 return 0;
3587 }
3588
airoha_probe(struct platform_device * pdev)3589 static int airoha_probe(struct platform_device *pdev)
3590 {
3591 struct reset_control_bulk_data *xsi_rsts;
3592 struct device_node *np;
3593 struct airoha_eth *eth;
3594 int i, err;
3595
3596 eth = devm_kzalloc(&pdev->dev, sizeof(*eth), GFP_KERNEL);
3597 if (!eth)
3598 return -ENOMEM;
3599
3600 eth->soc = of_device_get_match_data(&pdev->dev);
3601 if (!eth->soc)
3602 return -EINVAL;
3603
3604 eth->dev = &pdev->dev;
3605
3606 err = dma_set_mask_and_coherent(eth->dev, DMA_BIT_MASK(32));
3607 if (err) {
3608 dev_err(eth->dev, "failed configuring DMA mask\n");
3609 return err;
3610 }
3611
3612 eth->fe_regs = devm_platform_ioremap_resource_byname(pdev, "fe");
3613 if (IS_ERR(eth->fe_regs))
3614 return dev_err_probe(eth->dev, PTR_ERR(eth->fe_regs),
3615 "failed to iomap fe regs\n");
3616
3617 eth->rsts[0].id = "fe";
3618 eth->rsts[1].id = "pdma";
3619 eth->rsts[2].id = "qdma";
3620 err = devm_reset_control_bulk_get_exclusive(eth->dev,
3621 ARRAY_SIZE(eth->rsts),
3622 eth->rsts);
3623 if (err) {
3624 dev_err(eth->dev, "failed to get bulk reset lines\n");
3625 return err;
3626 }
3627
3628 xsi_rsts = devm_kcalloc(eth->dev,
3629 eth->soc->num_xsi_rsts, sizeof(*xsi_rsts),
3630 GFP_KERNEL);
3631 if (!xsi_rsts)
3632 return -ENOMEM;
3633
3634 eth->xsi_rsts = xsi_rsts;
3635 for (i = 0; i < eth->soc->num_xsi_rsts; i++)
3636 eth->xsi_rsts[i].id = eth->soc->xsi_rsts_names[i];
3637
3638 err = devm_reset_control_bulk_get_exclusive(eth->dev,
3639 eth->soc->num_xsi_rsts,
3640 eth->xsi_rsts);
3641 if (err) {
3642 dev_err(eth->dev, "failed to get bulk xsi reset lines\n");
3643 return err;
3644 }
3645
3646 eth->napi_dev = alloc_netdev_dummy(0);
3647 if (!eth->napi_dev)
3648 return -ENOMEM;
3649
3650 /* Enable threaded NAPI by default */
3651 eth->napi_dev->threaded = true;
3652 strscpy(eth->napi_dev->name, "qdma_eth", sizeof(eth->napi_dev->name));
3653 platform_set_drvdata(pdev, eth);
3654
3655 err = airoha_hw_init(pdev, eth);
3656 if (err)
3657 goto error_netdev_free;
3658
3659 for (i = 0; i < ARRAY_SIZE(eth->qdma); i++) {
3660 airoha_qdma_start_napi(ð->qdma[i]);
3661 airoha_qdma_set(ð->qdma[i], REG_QDMA_GLOBAL_CFG,
3662 GLOBAL_CFG_TX_DMA_EN_MASK |
3663 GLOBAL_CFG_RX_DMA_EN_MASK);
3664 }
3665
3666 for_each_child_of_node(pdev->dev.of_node, np) {
3667 if (!of_device_is_compatible(np, "airoha,eth-mac"))
3668 continue;
3669
3670 if (!of_device_is_available(np))
3671 continue;
3672
3673 err = airoha_alloc_gdm_port(eth, np);
3674 if (err) {
3675 of_node_put(np);
3676 goto error_napi_stop;
3677 }
3678 }
3679
3680 err = airoha_register_gdm_devices(eth);
3681 if (err)
3682 goto error_napi_stop;
3683
3684 return 0;
3685
3686 error_napi_stop:
3687 for (i = 0; i < ARRAY_SIZE(eth->qdma); i++) {
3688 airoha_qdma_stop_napi(ð->qdma[i]);
3689 airoha_qdma_tx_cleanup(ð->qdma[i]);
3690 }
3691
3692 for (i = 0; i < ARRAY_SIZE(eth->ports); i++) {
3693 struct airoha_gdm_port *port = eth->ports[i];
3694 int j;
3695
3696 if (!port)
3697 continue;
3698
3699 for (j = 0; j < ARRAY_SIZE(port->devs); j++) {
3700 struct airoha_gdm_dev *dev = port->devs[j];
3701 struct net_device *netdev;
3702
3703 if (!dev)
3704 continue;
3705
3706 netdev = netdev_from_priv(dev);
3707 if (netdev->reg_state == NETREG_REGISTERED)
3708 unregister_netdev(netdev);
3709 of_node_put(netdev->dev.of_node);
3710 }
3711 airoha_metadata_dst_free(port);
3712 }
3713 airoha_hw_cleanup(eth);
3714 error_netdev_free:
3715 free_netdev(eth->napi_dev);
3716 platform_set_drvdata(pdev, NULL);
3717
3718 return err;
3719 }
3720
airoha_remove(struct platform_device * pdev)3721 static void airoha_remove(struct platform_device *pdev)
3722 {
3723 struct airoha_eth *eth = platform_get_drvdata(pdev);
3724 int i;
3725
3726 for (i = 0; i < ARRAY_SIZE(eth->qdma); i++) {
3727 airoha_qdma_stop_napi(ð->qdma[i]);
3728 airoha_qdma_tx_cleanup(ð->qdma[i]);
3729 }
3730
3731 for (i = 0; i < ARRAY_SIZE(eth->ports); i++) {
3732 struct airoha_gdm_port *port = eth->ports[i];
3733 int j;
3734
3735 if (!port)
3736 continue;
3737
3738 for (j = 0; j < ARRAY_SIZE(port->devs); j++) {
3739 struct airoha_gdm_dev *dev = port->devs[j];
3740 struct net_device *netdev;
3741
3742 if (!dev)
3743 continue;
3744
3745 netdev = netdev_from_priv(dev);
3746 unregister_netdev(netdev);
3747 of_node_put(netdev->dev.of_node);
3748 }
3749 airoha_metadata_dst_free(port);
3750 }
3751 airoha_hw_cleanup(eth);
3752
3753 free_netdev(eth->napi_dev);
3754 platform_set_drvdata(pdev, NULL);
3755 }
3756
3757 static const char * const en7581_xsi_rsts_names[] = {
3758 "xsi-mac",
3759 "hsi0-mac",
3760 "hsi1-mac",
3761 "hsi-mac",
3762 "xfp-mac",
3763 };
3764
airoha_en7581_get_sport(struct airoha_gdm_port * port,int nbq)3765 static int airoha_en7581_get_sport(struct airoha_gdm_port *port, int nbq)
3766 {
3767 switch (port->id) {
3768 case AIROHA_GDM3_IDX:
3769 /* 7581 SoC supports PCIe serdes on GDM3 port */
3770 if (nbq == 4)
3771 return HSGMII_LAN_7581_PCIE0_SRCPORT;
3772 if (nbq == 5)
3773 return HSGMII_LAN_7581_PCIE1_SRCPORT;
3774 break;
3775 case AIROHA_GDM4_IDX:
3776 /* 7581 SoC supports eth and usb serdes on GDM4 port */
3777 if (!nbq)
3778 return HSGMII_LAN_7581_ETH_SRCPORT;
3779 if (nbq == 1)
3780 return HSGMII_LAN_7581_USB_SRCPORT;
3781 break;
3782 default:
3783 break;
3784 }
3785
3786 return -EINVAL;
3787 }
3788
airoha_en7581_get_vip_port(struct airoha_gdm_port * port,int nbq)3789 static u32 airoha_en7581_get_vip_port(struct airoha_gdm_port *port, int nbq)
3790 {
3791 switch (port->id) {
3792 case AIROHA_GDM3_IDX:
3793 if (nbq == 4)
3794 return XSI_PCIE0_VIP_PORT_MASK;
3795 if (nbq == 5)
3796 return XSI_PCIE1_VIP_PORT_MASK;
3797 break;
3798 case AIROHA_GDM4_IDX:
3799 if (!nbq)
3800 return XSI_ETH_VIP_PORT_MASK;
3801 if (nbq == 1)
3802 return XSI_USB_VIP_PORT_MASK;
3803 break;
3804 default:
3805 break;
3806 }
3807
3808 return 0;
3809 }
3810
airoha_en7581_get_dev_from_sport(struct airoha_qdma_desc * desc,u16 * port,u16 * dev)3811 static int airoha_en7581_get_dev_from_sport(struct airoha_qdma_desc *desc,
3812 u16 *port, u16 *dev)
3813 {
3814 u32 sport = FIELD_GET(QDMA_ETH_RXMSG_SPORT_MASK,
3815 le32_to_cpu(READ_ONCE(desc->msg1)));
3816
3817 *dev = 0;
3818 switch (sport) {
3819 case 0x10 ... 0x14:
3820 *port = 0; /* GDM1 */
3821 break;
3822 case 0x2 ... 0x4:
3823 *port = sport - 1;
3824 break;
3825 case HSGMII_LAN_7581_PCIE1_SRCPORT:
3826 *dev = 1;
3827 fallthrough;
3828 case HSGMII_LAN_7581_PCIE0_SRCPORT:
3829 *port = 2; /* GDM3 */
3830 break;
3831 case HSGMII_LAN_7581_USB_SRCPORT:
3832 *dev = 1;
3833 fallthrough;
3834 case HSGMII_LAN_7581_ETH_SRCPORT:
3835 *port = 3; /* GDM4 */
3836 break;
3837 default:
3838 return -EINVAL;
3839 }
3840
3841 return 0;
3842 }
3843
3844 static const char * const an7583_xsi_rsts_names[] = {
3845 "xsi-mac",
3846 "hsi0-mac",
3847 "hsi1-mac",
3848 "xfp-mac",
3849 };
3850
airoha_an7583_get_sport(struct airoha_gdm_port * port,int nbq)3851 static int airoha_an7583_get_sport(struct airoha_gdm_port *port, int nbq)
3852 {
3853 switch (port->id) {
3854 case AIROHA_GDM3_IDX:
3855 /* 7583 SoC supports eth serdes on GDM3 port */
3856 if (!nbq)
3857 return HSGMII_LAN_7583_ETH_SRCPORT;
3858 break;
3859 case AIROHA_GDM4_IDX:
3860 /* 7583 SoC supports PCIe and USB serdes on GDM4 port */
3861 if (!nbq)
3862 return HSGMII_LAN_7583_PCIE_SRCPORT;
3863 if (nbq == 1)
3864 return HSGMII_LAN_7583_USB_SRCPORT;
3865 break;
3866 default:
3867 break;
3868 }
3869
3870 return -EINVAL;
3871 }
3872
airoha_an7583_get_vip_port(struct airoha_gdm_port * port,int nbq)3873 static u32 airoha_an7583_get_vip_port(struct airoha_gdm_port *port, int nbq)
3874 {
3875 switch (port->id) {
3876 case AIROHA_GDM3_IDX:
3877 if (!nbq)
3878 return XSI_ETH_VIP_PORT_MASK;
3879 break;
3880 case AIROHA_GDM4_IDX:
3881 if (!nbq)
3882 return XSI_PCIE0_VIP_PORT_MASK;
3883 if (nbq == 1)
3884 return XSI_USB_VIP_PORT_MASK;
3885 break;
3886 default:
3887 break;
3888 }
3889
3890 return 0;
3891 }
3892
airoha_an7583_get_dev_from_sport(struct airoha_qdma_desc * desc,u16 * port,u16 * dev)3893 static int airoha_an7583_get_dev_from_sport(struct airoha_qdma_desc *desc,
3894 u16 *port, u16 *dev)
3895 {
3896 u32 sport = FIELD_GET(QDMA_ETH_RXMSG_SPORT_MASK,
3897 le32_to_cpu(READ_ONCE(desc->msg1)));
3898
3899 *dev = 0;
3900 switch (sport) {
3901 case 0x10 ... 0x14:
3902 *port = 0; /* GDM1 */
3903 break;
3904 case 0x2 ... 0x4:
3905 *port = sport - 1;
3906 break;
3907 case HSGMII_LAN_7583_ETH_SRCPORT:
3908 *port = 2; /* GDM3 */
3909 break;
3910 case HSGMII_LAN_7583_USB_SRCPORT:
3911 *dev = 1;
3912 fallthrough;
3913 case HSGMII_LAN_7583_PCIE_SRCPORT:
3914 *port = 3; /* GDM4 */
3915 break;
3916 default:
3917 return -EINVAL;
3918 }
3919
3920 return 0;
3921 }
3922
3923 static const struct airoha_eth_soc_data en7581_soc_data = {
3924 .version = 0x7581,
3925 .xsi_rsts_names = en7581_xsi_rsts_names,
3926 .num_xsi_rsts = ARRAY_SIZE(en7581_xsi_rsts_names),
3927 .num_ppe = 2,
3928 .ops = {
3929 .get_sport = airoha_en7581_get_sport,
3930 .get_vip_port = airoha_en7581_get_vip_port,
3931 .get_dev_from_sport = airoha_en7581_get_dev_from_sport,
3932 },
3933 };
3934
3935 static const struct airoha_eth_soc_data an7583_soc_data = {
3936 .version = 0x7583,
3937 .xsi_rsts_names = an7583_xsi_rsts_names,
3938 .num_xsi_rsts = ARRAY_SIZE(an7583_xsi_rsts_names),
3939 .num_ppe = 1,
3940 .ops = {
3941 .get_sport = airoha_an7583_get_sport,
3942 .get_vip_port = airoha_an7583_get_vip_port,
3943 .get_dev_from_sport = airoha_an7583_get_dev_from_sport,
3944 },
3945 };
3946
3947 static const struct of_device_id of_airoha_match[] = {
3948 { .compatible = "airoha,en7581-eth", .data = &en7581_soc_data },
3949 { .compatible = "airoha,an7583-eth", .data = &an7583_soc_data },
3950 { /* sentinel */ }
3951 };
3952 MODULE_DEVICE_TABLE(of, of_airoha_match);
3953
3954 static struct platform_driver airoha_driver = {
3955 .probe = airoha_probe,
3956 .remove = airoha_remove,
3957 .driver = {
3958 .name = KBUILD_MODNAME,
3959 .of_match_table = of_airoha_match,
3960 },
3961 };
3962 module_platform_driver(airoha_driver);
3963
3964 MODULE_LICENSE("GPL v2");
3965 MODULE_AUTHOR("Lorenzo Bianconi <lorenzo@kernel.org>");
3966 MODULE_DESCRIPTION("Ethernet driver for Airoha SoC");
3967