1 // SPDX-License-Identifier: (GPL-2.0 or MIT)
2 /*
3  * DSA driver for:
4  * Hirschmann Hellcreek TSN switch.
5  *
6  * Copyright (C) 2019-2021 Linutronix GmbH
7  * Author Kurt Kanzenbach <kurt@linutronix.de>
8  */
9 
10 #include <linux/kernel.h>
11 #include <linux/module.h>
12 #include <linux/device.h>
13 #include <linux/of.h>
14 #include <linux/of_device.h>
15 #include <linux/of_mdio.h>
16 #include <linux/platform_device.h>
17 #include <linux/bitops.h>
18 #include <linux/if_bridge.h>
19 #include <linux/if_vlan.h>
20 #include <linux/etherdevice.h>
21 #include <linux/random.h>
22 #include <linux/iopoll.h>
23 #include <linux/mutex.h>
24 #include <linux/delay.h>
25 #include <net/dsa.h>
26 
27 #include "hellcreek.h"
28 #include "hellcreek_ptp.h"
29 #include "hellcreek_hwtstamp.h"
30 
31 static const struct hellcreek_counter hellcreek_counter[] = {
32 	{ 0x00, "RxFiltered", },
33 	{ 0x01, "RxOctets1k", },
34 	{ 0x02, "RxVTAG", },
35 	{ 0x03, "RxL2BAD", },
36 	{ 0x04, "RxOverloadDrop", },
37 	{ 0x05, "RxUC", },
38 	{ 0x06, "RxMC", },
39 	{ 0x07, "RxBC", },
40 	{ 0x08, "RxRS<64", },
41 	{ 0x09, "RxRS64", },
42 	{ 0x0a, "RxRS65_127", },
43 	{ 0x0b, "RxRS128_255", },
44 	{ 0x0c, "RxRS256_511", },
45 	{ 0x0d, "RxRS512_1023", },
46 	{ 0x0e, "RxRS1024_1518", },
47 	{ 0x0f, "RxRS>1518", },
48 	{ 0x10, "TxTailDropQueue0", },
49 	{ 0x11, "TxTailDropQueue1", },
50 	{ 0x12, "TxTailDropQueue2", },
51 	{ 0x13, "TxTailDropQueue3", },
52 	{ 0x14, "TxTailDropQueue4", },
53 	{ 0x15, "TxTailDropQueue5", },
54 	{ 0x16, "TxTailDropQueue6", },
55 	{ 0x17, "TxTailDropQueue7", },
56 	{ 0x18, "RxTrafficClass0", },
57 	{ 0x19, "RxTrafficClass1", },
58 	{ 0x1a, "RxTrafficClass2", },
59 	{ 0x1b, "RxTrafficClass3", },
60 	{ 0x1c, "RxTrafficClass4", },
61 	{ 0x1d, "RxTrafficClass5", },
62 	{ 0x1e, "RxTrafficClass6", },
63 	{ 0x1f, "RxTrafficClass7", },
64 	{ 0x21, "TxOctets1k", },
65 	{ 0x22, "TxVTAG", },
66 	{ 0x23, "TxL2BAD", },
67 	{ 0x25, "TxUC", },
68 	{ 0x26, "TxMC", },
69 	{ 0x27, "TxBC", },
70 	{ 0x28, "TxTS<64", },
71 	{ 0x29, "TxTS64", },
72 	{ 0x2a, "TxTS65_127", },
73 	{ 0x2b, "TxTS128_255", },
74 	{ 0x2c, "TxTS256_511", },
75 	{ 0x2d, "TxTS512_1023", },
76 	{ 0x2e, "TxTS1024_1518", },
77 	{ 0x2f, "TxTS>1518", },
78 	{ 0x30, "TxTrafficClassOverrun0", },
79 	{ 0x31, "TxTrafficClassOverrun1", },
80 	{ 0x32, "TxTrafficClassOverrun2", },
81 	{ 0x33, "TxTrafficClassOverrun3", },
82 	{ 0x34, "TxTrafficClassOverrun4", },
83 	{ 0x35, "TxTrafficClassOverrun5", },
84 	{ 0x36, "TxTrafficClassOverrun6", },
85 	{ 0x37, "TxTrafficClassOverrun7", },
86 	{ 0x38, "TxTrafficClass0", },
87 	{ 0x39, "TxTrafficClass1", },
88 	{ 0x3a, "TxTrafficClass2", },
89 	{ 0x3b, "TxTrafficClass3", },
90 	{ 0x3c, "TxTrafficClass4", },
91 	{ 0x3d, "TxTrafficClass5", },
92 	{ 0x3e, "TxTrafficClass6", },
93 	{ 0x3f, "TxTrafficClass7", },
94 };
95 
96 static u16 hellcreek_read(struct hellcreek *hellcreek, unsigned int offset)
97 {
98 	return readw(hellcreek->base + offset);
99 }
100 
101 static u16 hellcreek_read_ctrl(struct hellcreek *hellcreek)
102 {
103 	return readw(hellcreek->base + HR_CTRL_C);
104 }
105 
106 static u16 hellcreek_read_stat(struct hellcreek *hellcreek)
107 {
108 	return readw(hellcreek->base + HR_SWSTAT);
109 }
110 
111 static void hellcreek_write(struct hellcreek *hellcreek, u16 data,
112 			    unsigned int offset)
113 {
114 	writew(data, hellcreek->base + offset);
115 }
116 
117 static void hellcreek_select_port(struct hellcreek *hellcreek, int port)
118 {
119 	u16 val = port << HR_PSEL_PTWSEL_SHIFT;
120 
121 	hellcreek_write(hellcreek, val, HR_PSEL);
122 }
123 
124 static void hellcreek_select_prio(struct hellcreek *hellcreek, int prio)
125 {
126 	u16 val = prio << HR_PSEL_PRTCWSEL_SHIFT;
127 
128 	hellcreek_write(hellcreek, val, HR_PSEL);
129 }
130 
131 static void hellcreek_select_counter(struct hellcreek *hellcreek, int counter)
132 {
133 	u16 val = counter << HR_CSEL_SHIFT;
134 
135 	hellcreek_write(hellcreek, val, HR_CSEL);
136 
137 	/* Data sheet states to wait at least 20 internal clock cycles */
138 	ndelay(200);
139 }
140 
141 static void hellcreek_select_vlan(struct hellcreek *hellcreek, int vid,
142 				  bool pvid)
143 {
144 	u16 val = 0;
145 
146 	/* Set pvid bit first */
147 	if (pvid)
148 		val |= HR_VIDCFG_PVID;
149 	hellcreek_write(hellcreek, val, HR_VIDCFG);
150 
151 	/* Set vlan */
152 	val |= vid << HR_VIDCFG_VID_SHIFT;
153 	hellcreek_write(hellcreek, val, HR_VIDCFG);
154 }
155 
156 static void hellcreek_select_tgd(struct hellcreek *hellcreek, int port)
157 {
158 	u16 val = port << TR_TGDSEL_TDGSEL_SHIFT;
159 
160 	hellcreek_write(hellcreek, val, TR_TGDSEL);
161 }
162 
163 static int hellcreek_wait_until_ready(struct hellcreek *hellcreek)
164 {
165 	u16 val;
166 
167 	/* Wait up to 1ms, although 3 us should be enough */
168 	return readx_poll_timeout(hellcreek_read_ctrl, hellcreek,
169 				  val, val & HR_CTRL_C_READY,
170 				  3, 1000);
171 }
172 
173 static int hellcreek_wait_until_transitioned(struct hellcreek *hellcreek)
174 {
175 	u16 val;
176 
177 	return readx_poll_timeout_atomic(hellcreek_read_ctrl, hellcreek,
178 					 val, !(val & HR_CTRL_C_TRANSITION),
179 					 1, 1000);
180 }
181 
182 static int hellcreek_wait_fdb_ready(struct hellcreek *hellcreek)
183 {
184 	u16 val;
185 
186 	return readx_poll_timeout_atomic(hellcreek_read_stat, hellcreek,
187 					 val, !(val & HR_SWSTAT_BUSY),
188 					 1, 1000);
189 }
190 
191 static int hellcreek_detect(struct hellcreek *hellcreek)
192 {
193 	u16 id, rel_low, rel_high, date_low, date_high, tgd_ver;
194 	u8 tgd_maj, tgd_min;
195 	u32 rel, date;
196 
197 	id	  = hellcreek_read(hellcreek, HR_MODID_C);
198 	rel_low	  = hellcreek_read(hellcreek, HR_REL_L_C);
199 	rel_high  = hellcreek_read(hellcreek, HR_REL_H_C);
200 	date_low  = hellcreek_read(hellcreek, HR_BLD_L_C);
201 	date_high = hellcreek_read(hellcreek, HR_BLD_H_C);
202 	tgd_ver   = hellcreek_read(hellcreek, TR_TGDVER);
203 
204 	if (id != hellcreek->pdata->module_id)
205 		return -ENODEV;
206 
207 	rel	= rel_low | (rel_high << 16);
208 	date	= date_low | (date_high << 16);
209 	tgd_maj = (tgd_ver & TR_TGDVER_REV_MAJ_MASK) >> TR_TGDVER_REV_MAJ_SHIFT;
210 	tgd_min = (tgd_ver & TR_TGDVER_REV_MIN_MASK) >> TR_TGDVER_REV_MIN_SHIFT;
211 
212 	dev_info(hellcreek->dev, "Module ID=%02x Release=%04x Date=%04x TGD Version=%02x.%02x\n",
213 		 id, rel, date, tgd_maj, tgd_min);
214 
215 	return 0;
216 }
217 
218 static void hellcreek_feature_detect(struct hellcreek *hellcreek)
219 {
220 	u16 features;
221 
222 	features = hellcreek_read(hellcreek, HR_FEABITS0);
223 
224 	/* Only detect the size of the FDB table. The size and current
225 	 * utilization can be queried via devlink.
226 	 */
227 	hellcreek->fdb_entries = ((features & HR_FEABITS0_FDBBINS_MASK) >>
228 			       HR_FEABITS0_FDBBINS_SHIFT) * 32;
229 }
230 
231 static enum dsa_tag_protocol hellcreek_get_tag_protocol(struct dsa_switch *ds,
232 							int port,
233 							enum dsa_tag_protocol mp)
234 {
235 	return DSA_TAG_PROTO_HELLCREEK;
236 }
237 
238 static int hellcreek_port_enable(struct dsa_switch *ds, int port,
239 				 struct phy_device *phy)
240 {
241 	struct hellcreek *hellcreek = ds->priv;
242 	struct hellcreek_port *hellcreek_port;
243 	u16 val;
244 
245 	hellcreek_port = &hellcreek->ports[port];
246 
247 	dev_dbg(hellcreek->dev, "Enable port %d\n", port);
248 
249 	mutex_lock(&hellcreek->reg_lock);
250 
251 	hellcreek_select_port(hellcreek, port);
252 	val = hellcreek_port->ptcfg;
253 	val |= HR_PTCFG_ADMIN_EN;
254 	hellcreek_write(hellcreek, val, HR_PTCFG);
255 	hellcreek_port->ptcfg = val;
256 
257 	mutex_unlock(&hellcreek->reg_lock);
258 
259 	return 0;
260 }
261 
262 static void hellcreek_port_disable(struct dsa_switch *ds, int port)
263 {
264 	struct hellcreek *hellcreek = ds->priv;
265 	struct hellcreek_port *hellcreek_port;
266 	u16 val;
267 
268 	hellcreek_port = &hellcreek->ports[port];
269 
270 	dev_dbg(hellcreek->dev, "Disable port %d\n", port);
271 
272 	mutex_lock(&hellcreek->reg_lock);
273 
274 	hellcreek_select_port(hellcreek, port);
275 	val = hellcreek_port->ptcfg;
276 	val &= ~HR_PTCFG_ADMIN_EN;
277 	hellcreek_write(hellcreek, val, HR_PTCFG);
278 	hellcreek_port->ptcfg = val;
279 
280 	mutex_unlock(&hellcreek->reg_lock);
281 }
282 
283 static void hellcreek_get_strings(struct dsa_switch *ds, int port,
284 				  u32 stringset, uint8_t *data)
285 {
286 	int i;
287 
288 	for (i = 0; i < ARRAY_SIZE(hellcreek_counter); ++i) {
289 		const struct hellcreek_counter *counter = &hellcreek_counter[i];
290 
291 		strlcpy(data + i * ETH_GSTRING_LEN,
292 			counter->name, ETH_GSTRING_LEN);
293 	}
294 }
295 
296 static int hellcreek_get_sset_count(struct dsa_switch *ds, int port, int sset)
297 {
298 	if (sset != ETH_SS_STATS)
299 		return 0;
300 
301 	return ARRAY_SIZE(hellcreek_counter);
302 }
303 
304 static void hellcreek_get_ethtool_stats(struct dsa_switch *ds, int port,
305 					uint64_t *data)
306 {
307 	struct hellcreek *hellcreek = ds->priv;
308 	struct hellcreek_port *hellcreek_port;
309 	int i;
310 
311 	hellcreek_port = &hellcreek->ports[port];
312 
313 	for (i = 0; i < ARRAY_SIZE(hellcreek_counter); ++i) {
314 		const struct hellcreek_counter *counter = &hellcreek_counter[i];
315 		u8 offset = counter->offset + port * 64;
316 		u16 high, low;
317 		u64 value;
318 
319 		mutex_lock(&hellcreek->reg_lock);
320 
321 		hellcreek_select_counter(hellcreek, offset);
322 
323 		/* The registers are locked internally by selecting the
324 		 * counter. So low and high can be read without reading high
325 		 * again.
326 		 */
327 		high  = hellcreek_read(hellcreek, HR_CRDH);
328 		low   = hellcreek_read(hellcreek, HR_CRDL);
329 		value = ((u64)high << 16) | low;
330 
331 		hellcreek_port->counter_values[i] += value;
332 		data[i] = hellcreek_port->counter_values[i];
333 
334 		mutex_unlock(&hellcreek->reg_lock);
335 	}
336 }
337 
338 static u16 hellcreek_private_vid(int port)
339 {
340 	return VLAN_N_VID - port + 1;
341 }
342 
343 static int hellcreek_vlan_prepare(struct dsa_switch *ds, int port,
344 				  const struct switchdev_obj_port_vlan *vlan,
345 				  struct netlink_ext_ack *extack)
346 {
347 	struct hellcreek *hellcreek = ds->priv;
348 	int i;
349 
350 	dev_dbg(hellcreek->dev, "VLAN prepare for port %d\n", port);
351 
352 	/* Restriction: Make sure that nobody uses the "private" VLANs. These
353 	 * VLANs are internally used by the driver to ensure port
354 	 * separation. Thus, they cannot be used by someone else.
355 	 */
356 	for (i = 0; i < hellcreek->pdata->num_ports; ++i) {
357 		const u16 restricted_vid = hellcreek_private_vid(i);
358 
359 		if (!dsa_is_user_port(ds, i))
360 			continue;
361 
362 		if (vlan->vid == restricted_vid) {
363 			NL_SET_ERR_MSG_MOD(extack, "VID restricted by driver");
364 			return -EBUSY;
365 		}
366 	}
367 
368 	return 0;
369 }
370 
371 static void hellcreek_select_vlan_params(struct hellcreek *hellcreek, int port,
372 					 int *shift, int *mask)
373 {
374 	switch (port) {
375 	case 0:
376 		*shift = HR_VIDMBRCFG_P0MBR_SHIFT;
377 		*mask  = HR_VIDMBRCFG_P0MBR_MASK;
378 		break;
379 	case 1:
380 		*shift = HR_VIDMBRCFG_P1MBR_SHIFT;
381 		*mask  = HR_VIDMBRCFG_P1MBR_MASK;
382 		break;
383 	case 2:
384 		*shift = HR_VIDMBRCFG_P2MBR_SHIFT;
385 		*mask  = HR_VIDMBRCFG_P2MBR_MASK;
386 		break;
387 	case 3:
388 		*shift = HR_VIDMBRCFG_P3MBR_SHIFT;
389 		*mask  = HR_VIDMBRCFG_P3MBR_MASK;
390 		break;
391 	default:
392 		*shift = *mask = 0;
393 		dev_err(hellcreek->dev, "Unknown port %d selected!\n", port);
394 	}
395 }
396 
397 static void hellcreek_apply_vlan(struct hellcreek *hellcreek, int port, u16 vid,
398 				 bool pvid, bool untagged)
399 {
400 	int shift, mask;
401 	u16 val;
402 
403 	dev_dbg(hellcreek->dev, "Apply VLAN: port=%d vid=%u pvid=%d untagged=%d",
404 		port, vid, pvid, untagged);
405 
406 	mutex_lock(&hellcreek->reg_lock);
407 
408 	hellcreek_select_port(hellcreek, port);
409 	hellcreek_select_vlan(hellcreek, vid, pvid);
410 
411 	/* Setup port vlan membership */
412 	hellcreek_select_vlan_params(hellcreek, port, &shift, &mask);
413 	val = hellcreek->vidmbrcfg[vid];
414 	val &= ~mask;
415 	if (untagged)
416 		val |= HELLCREEK_VLAN_UNTAGGED_MEMBER << shift;
417 	else
418 		val |= HELLCREEK_VLAN_TAGGED_MEMBER << shift;
419 
420 	hellcreek_write(hellcreek, val, HR_VIDMBRCFG);
421 	hellcreek->vidmbrcfg[vid] = val;
422 
423 	mutex_unlock(&hellcreek->reg_lock);
424 }
425 
426 static void hellcreek_unapply_vlan(struct hellcreek *hellcreek, int port,
427 				   u16 vid)
428 {
429 	int shift, mask;
430 	u16 val;
431 
432 	dev_dbg(hellcreek->dev, "Unapply VLAN: port=%d vid=%u\n", port, vid);
433 
434 	mutex_lock(&hellcreek->reg_lock);
435 
436 	hellcreek_select_vlan(hellcreek, vid, false);
437 
438 	/* Setup port vlan membership */
439 	hellcreek_select_vlan_params(hellcreek, port, &shift, &mask);
440 	val = hellcreek->vidmbrcfg[vid];
441 	val &= ~mask;
442 	val |= HELLCREEK_VLAN_NO_MEMBER << shift;
443 
444 	hellcreek_write(hellcreek, val, HR_VIDMBRCFG);
445 	hellcreek->vidmbrcfg[vid] = val;
446 
447 	mutex_unlock(&hellcreek->reg_lock);
448 }
449 
450 static int hellcreek_vlan_add(struct dsa_switch *ds, int port,
451 			      const struct switchdev_obj_port_vlan *vlan,
452 			      struct netlink_ext_ack *extack)
453 {
454 	bool untagged = vlan->flags & BRIDGE_VLAN_INFO_UNTAGGED;
455 	bool pvid = vlan->flags & BRIDGE_VLAN_INFO_PVID;
456 	struct hellcreek *hellcreek = ds->priv;
457 	int err;
458 
459 	err = hellcreek_vlan_prepare(ds, port, vlan, extack);
460 	if (err)
461 		return err;
462 
463 	dev_dbg(hellcreek->dev, "Add VLAN %d on port %d, %s, %s\n",
464 		vlan->vid, port, untagged ? "untagged" : "tagged",
465 		pvid ? "PVID" : "no PVID");
466 
467 	hellcreek_apply_vlan(hellcreek, port, vlan->vid, pvid, untagged);
468 
469 	return 0;
470 }
471 
472 static int hellcreek_vlan_del(struct dsa_switch *ds, int port,
473 			      const struct switchdev_obj_port_vlan *vlan)
474 {
475 	struct hellcreek *hellcreek = ds->priv;
476 
477 	dev_dbg(hellcreek->dev, "Remove VLAN %d on port %d\n", vlan->vid, port);
478 
479 	hellcreek_unapply_vlan(hellcreek, port, vlan->vid);
480 
481 	return 0;
482 }
483 
484 static void hellcreek_port_stp_state_set(struct dsa_switch *ds, int port,
485 					 u8 state)
486 {
487 	struct hellcreek *hellcreek = ds->priv;
488 	struct hellcreek_port *hellcreek_port;
489 	const char *new_state;
490 	u16 val;
491 
492 	mutex_lock(&hellcreek->reg_lock);
493 
494 	hellcreek_port = &hellcreek->ports[port];
495 	val = hellcreek_port->ptcfg;
496 
497 	switch (state) {
498 	case BR_STATE_DISABLED:
499 		new_state = "DISABLED";
500 		val |= HR_PTCFG_BLOCKED;
501 		val &= ~HR_PTCFG_LEARNING_EN;
502 		break;
503 	case BR_STATE_BLOCKING:
504 		new_state = "BLOCKING";
505 		val |= HR_PTCFG_BLOCKED;
506 		val &= ~HR_PTCFG_LEARNING_EN;
507 		break;
508 	case BR_STATE_LISTENING:
509 		new_state = "LISTENING";
510 		val |= HR_PTCFG_BLOCKED;
511 		val &= ~HR_PTCFG_LEARNING_EN;
512 		break;
513 	case BR_STATE_LEARNING:
514 		new_state = "LEARNING";
515 		val |= HR_PTCFG_BLOCKED;
516 		val |= HR_PTCFG_LEARNING_EN;
517 		break;
518 	case BR_STATE_FORWARDING:
519 		new_state = "FORWARDING";
520 		val &= ~HR_PTCFG_BLOCKED;
521 		val |= HR_PTCFG_LEARNING_EN;
522 		break;
523 	default:
524 		new_state = "UNKNOWN";
525 	}
526 
527 	hellcreek_select_port(hellcreek, port);
528 	hellcreek_write(hellcreek, val, HR_PTCFG);
529 	hellcreek_port->ptcfg = val;
530 
531 	mutex_unlock(&hellcreek->reg_lock);
532 
533 	dev_dbg(hellcreek->dev, "Configured STP state for port %d: %s\n",
534 		port, new_state);
535 }
536 
537 static void hellcreek_setup_ingressflt(struct hellcreek *hellcreek, int port,
538 				       bool enable)
539 {
540 	struct hellcreek_port *hellcreek_port = &hellcreek->ports[port];
541 	u16 ptcfg;
542 
543 	mutex_lock(&hellcreek->reg_lock);
544 
545 	ptcfg = hellcreek_port->ptcfg;
546 
547 	if (enable)
548 		ptcfg |= HR_PTCFG_INGRESSFLT;
549 	else
550 		ptcfg &= ~HR_PTCFG_INGRESSFLT;
551 
552 	hellcreek_select_port(hellcreek, port);
553 	hellcreek_write(hellcreek, ptcfg, HR_PTCFG);
554 	hellcreek_port->ptcfg = ptcfg;
555 
556 	mutex_unlock(&hellcreek->reg_lock);
557 }
558 
559 static void hellcreek_setup_vlan_awareness(struct hellcreek *hellcreek,
560 					   bool enable)
561 {
562 	u16 swcfg;
563 
564 	mutex_lock(&hellcreek->reg_lock);
565 
566 	swcfg = hellcreek->swcfg;
567 
568 	if (enable)
569 		swcfg |= HR_SWCFG_VLAN_UNAWARE;
570 	else
571 		swcfg &= ~HR_SWCFG_VLAN_UNAWARE;
572 
573 	hellcreek_write(hellcreek, swcfg, HR_SWCFG);
574 
575 	mutex_unlock(&hellcreek->reg_lock);
576 }
577 
578 /* Default setup for DSA: VLAN <X>: CPU and Port <X> egress untagged. */
579 static void hellcreek_setup_vlan_membership(struct dsa_switch *ds, int port,
580 					    bool enabled)
581 {
582 	const u16 vid = hellcreek_private_vid(port);
583 	int upstream = dsa_upstream_port(ds, port);
584 	struct hellcreek *hellcreek = ds->priv;
585 
586 	/* Apply vid to port as egress untagged and port vlan id */
587 	if (enabled)
588 		hellcreek_apply_vlan(hellcreek, port, vid, true, true);
589 	else
590 		hellcreek_unapply_vlan(hellcreek, port, vid);
591 
592 	/* Apply vid to cpu port as well */
593 	if (enabled)
594 		hellcreek_apply_vlan(hellcreek, upstream, vid, false, true);
595 	else
596 		hellcreek_unapply_vlan(hellcreek, upstream, vid);
597 }
598 
599 static void hellcreek_port_set_ucast_flood(struct hellcreek *hellcreek,
600 					   int port, bool enable)
601 {
602 	struct hellcreek_port *hellcreek_port;
603 	u16 val;
604 
605 	hellcreek_port = &hellcreek->ports[port];
606 
607 	dev_dbg(hellcreek->dev, "%s unicast flooding on port %d\n",
608 		enable ? "Enable" : "Disable", port);
609 
610 	mutex_lock(&hellcreek->reg_lock);
611 
612 	hellcreek_select_port(hellcreek, port);
613 	val = hellcreek_port->ptcfg;
614 	if (enable)
615 		val &= ~HR_PTCFG_UUC_FLT;
616 	else
617 		val |= HR_PTCFG_UUC_FLT;
618 	hellcreek_write(hellcreek, val, HR_PTCFG);
619 	hellcreek_port->ptcfg = val;
620 
621 	mutex_unlock(&hellcreek->reg_lock);
622 }
623 
624 static void hellcreek_port_set_mcast_flood(struct hellcreek *hellcreek,
625 					   int port, bool enable)
626 {
627 	struct hellcreek_port *hellcreek_port;
628 	u16 val;
629 
630 	hellcreek_port = &hellcreek->ports[port];
631 
632 	dev_dbg(hellcreek->dev, "%s multicast flooding on port %d\n",
633 		enable ? "Enable" : "Disable", port);
634 
635 	mutex_lock(&hellcreek->reg_lock);
636 
637 	hellcreek_select_port(hellcreek, port);
638 	val = hellcreek_port->ptcfg;
639 	if (enable)
640 		val &= ~HR_PTCFG_UMC_FLT;
641 	else
642 		val |= HR_PTCFG_UMC_FLT;
643 	hellcreek_write(hellcreek, val, HR_PTCFG);
644 	hellcreek_port->ptcfg = val;
645 
646 	mutex_unlock(&hellcreek->reg_lock);
647 }
648 
649 static int hellcreek_pre_bridge_flags(struct dsa_switch *ds, int port,
650 				      struct switchdev_brport_flags flags,
651 				      struct netlink_ext_ack *extack)
652 {
653 	if (flags.mask & ~(BR_FLOOD | BR_MCAST_FLOOD))
654 		return -EINVAL;
655 
656 	return 0;
657 }
658 
659 static int hellcreek_bridge_flags(struct dsa_switch *ds, int port,
660 				  struct switchdev_brport_flags flags,
661 				  struct netlink_ext_ack *extack)
662 {
663 	struct hellcreek *hellcreek = ds->priv;
664 
665 	if (flags.mask & BR_FLOOD)
666 		hellcreek_port_set_ucast_flood(hellcreek, port,
667 					       !!(flags.val & BR_FLOOD));
668 
669 	if (flags.mask & BR_MCAST_FLOOD)
670 		hellcreek_port_set_mcast_flood(hellcreek, port,
671 					       !!(flags.val & BR_MCAST_FLOOD));
672 
673 	return 0;
674 }
675 
676 static int hellcreek_port_bridge_join(struct dsa_switch *ds, int port,
677 				      struct net_device *br)
678 {
679 	struct hellcreek *hellcreek = ds->priv;
680 
681 	dev_dbg(hellcreek->dev, "Port %d joins a bridge\n", port);
682 
683 	/* When joining a vlan_filtering bridge, keep the switch VLAN aware */
684 	if (!ds->vlan_filtering)
685 		hellcreek_setup_vlan_awareness(hellcreek, false);
686 
687 	/* Drop private vlans */
688 	hellcreek_setup_vlan_membership(ds, port, false);
689 
690 	return 0;
691 }
692 
693 static void hellcreek_port_bridge_leave(struct dsa_switch *ds, int port,
694 					struct net_device *br)
695 {
696 	struct hellcreek *hellcreek = ds->priv;
697 
698 	dev_dbg(hellcreek->dev, "Port %d leaves a bridge\n", port);
699 
700 	/* Enable VLAN awareness */
701 	hellcreek_setup_vlan_awareness(hellcreek, true);
702 
703 	/* Enable private vlans */
704 	hellcreek_setup_vlan_membership(ds, port, true);
705 }
706 
707 static int __hellcreek_fdb_add(struct hellcreek *hellcreek,
708 			       const struct hellcreek_fdb_entry *entry)
709 {
710 	u16 meta = 0;
711 
712 	dev_dbg(hellcreek->dev, "Add static FDB entry: MAC=%pM, MASK=0x%02x, "
713 		"OBT=%d, REPRIO_EN=%d, PRIO=%d\n", entry->mac, entry->portmask,
714 		entry->is_obt, entry->reprio_en, entry->reprio_tc);
715 
716 	/* Add mac address */
717 	hellcreek_write(hellcreek, entry->mac[1] | (entry->mac[0] << 8), HR_FDBWDH);
718 	hellcreek_write(hellcreek, entry->mac[3] | (entry->mac[2] << 8), HR_FDBWDM);
719 	hellcreek_write(hellcreek, entry->mac[5] | (entry->mac[4] << 8), HR_FDBWDL);
720 
721 	/* Meta data */
722 	meta |= entry->portmask << HR_FDBWRM0_PORTMASK_SHIFT;
723 	if (entry->is_obt)
724 		meta |= HR_FDBWRM0_OBT;
725 	if (entry->reprio_en) {
726 		meta |= HR_FDBWRM0_REPRIO_EN;
727 		meta |= entry->reprio_tc << HR_FDBWRM0_REPRIO_TC_SHIFT;
728 	}
729 	hellcreek_write(hellcreek, meta, HR_FDBWRM0);
730 
731 	/* Commit */
732 	hellcreek_write(hellcreek, 0x00, HR_FDBWRCMD);
733 
734 	/* Wait until done */
735 	return hellcreek_wait_fdb_ready(hellcreek);
736 }
737 
738 static int __hellcreek_fdb_del(struct hellcreek *hellcreek,
739 			       const struct hellcreek_fdb_entry *entry)
740 {
741 	dev_dbg(hellcreek->dev, "Delete FDB entry: MAC=%pM!\n", entry->mac);
742 
743 	/* Delete by matching idx */
744 	hellcreek_write(hellcreek, entry->idx | HR_FDBWRCMD_FDBDEL, HR_FDBWRCMD);
745 
746 	/* Wait until done */
747 	return hellcreek_wait_fdb_ready(hellcreek);
748 }
749 
750 static void hellcreek_populate_fdb_entry(struct hellcreek *hellcreek,
751 					 struct hellcreek_fdb_entry *entry,
752 					 size_t idx)
753 {
754 	unsigned char addr[ETH_ALEN];
755 	u16 meta, mac;
756 
757 	/* Read values */
758 	meta	= hellcreek_read(hellcreek, HR_FDBMDRD);
759 	mac	= hellcreek_read(hellcreek, HR_FDBRDL);
760 	addr[5] = mac & 0xff;
761 	addr[4] = (mac & 0xff00) >> 8;
762 	mac	= hellcreek_read(hellcreek, HR_FDBRDM);
763 	addr[3] = mac & 0xff;
764 	addr[2] = (mac & 0xff00) >> 8;
765 	mac	= hellcreek_read(hellcreek, HR_FDBRDH);
766 	addr[1] = mac & 0xff;
767 	addr[0] = (mac & 0xff00) >> 8;
768 
769 	/* Populate @entry */
770 	memcpy(entry->mac, addr, sizeof(addr));
771 	entry->idx	    = idx;
772 	entry->portmask	    = (meta & HR_FDBMDRD_PORTMASK_MASK) >>
773 		HR_FDBMDRD_PORTMASK_SHIFT;
774 	entry->age	    = (meta & HR_FDBMDRD_AGE_MASK) >>
775 		HR_FDBMDRD_AGE_SHIFT;
776 	entry->is_obt	    = !!(meta & HR_FDBMDRD_OBT);
777 	entry->pass_blocked = !!(meta & HR_FDBMDRD_PASS_BLOCKED);
778 	entry->is_static    = !!(meta & HR_FDBMDRD_STATIC);
779 	entry->reprio_tc    = (meta & HR_FDBMDRD_REPRIO_TC_MASK) >>
780 		HR_FDBMDRD_REPRIO_TC_SHIFT;
781 	entry->reprio_en    = !!(meta & HR_FDBMDRD_REPRIO_EN);
782 }
783 
784 /* Retrieve the index of a FDB entry by mac address. Currently we search through
785  * the complete table in hardware. If that's too slow, we might have to cache
786  * the complete FDB table in software.
787  */
788 static int hellcreek_fdb_get(struct hellcreek *hellcreek,
789 			     const unsigned char *dest,
790 			     struct hellcreek_fdb_entry *entry)
791 {
792 	size_t i;
793 
794 	/* Set read pointer to zero: The read of HR_FDBMAX (read-only register)
795 	 * should reset the internal pointer. But, that doesn't work. The vendor
796 	 * suggested a subsequent write as workaround. Same for HR_FDBRDH below.
797 	 */
798 	hellcreek_read(hellcreek, HR_FDBMAX);
799 	hellcreek_write(hellcreek, 0x00, HR_FDBMAX);
800 
801 	/* We have to read the complete table, because the switch/driver might
802 	 * enter new entries anywhere.
803 	 */
804 	for (i = 0; i < hellcreek->fdb_entries; ++i) {
805 		struct hellcreek_fdb_entry tmp = { 0 };
806 
807 		/* Read entry */
808 		hellcreek_populate_fdb_entry(hellcreek, &tmp, i);
809 
810 		/* Force next entry */
811 		hellcreek_write(hellcreek, 0x00, HR_FDBRDH);
812 
813 		if (memcmp(tmp.mac, dest, ETH_ALEN))
814 			continue;
815 
816 		/* Match found */
817 		memcpy(entry, &tmp, sizeof(*entry));
818 
819 		return 0;
820 	}
821 
822 	return -ENOENT;
823 }
824 
825 static int hellcreek_fdb_add(struct dsa_switch *ds, int port,
826 			     const unsigned char *addr, u16 vid)
827 {
828 	struct hellcreek_fdb_entry entry = { 0 };
829 	struct hellcreek *hellcreek = ds->priv;
830 	int ret;
831 
832 	dev_dbg(hellcreek->dev, "Add FDB entry for MAC=%pM\n", addr);
833 
834 	mutex_lock(&hellcreek->reg_lock);
835 
836 	ret = hellcreek_fdb_get(hellcreek, addr, &entry);
837 	if (ret) {
838 		/* Not found */
839 		memcpy(entry.mac, addr, sizeof(entry.mac));
840 		entry.portmask = BIT(port);
841 
842 		ret = __hellcreek_fdb_add(hellcreek, &entry);
843 		if (ret) {
844 			dev_err(hellcreek->dev, "Failed to add FDB entry!\n");
845 			goto out;
846 		}
847 	} else {
848 		/* Found */
849 		ret = __hellcreek_fdb_del(hellcreek, &entry);
850 		if (ret) {
851 			dev_err(hellcreek->dev, "Failed to delete FDB entry!\n");
852 			goto out;
853 		}
854 
855 		entry.portmask |= BIT(port);
856 
857 		ret = __hellcreek_fdb_add(hellcreek, &entry);
858 		if (ret) {
859 			dev_err(hellcreek->dev, "Failed to add FDB entry!\n");
860 			goto out;
861 		}
862 	}
863 
864 out:
865 	mutex_unlock(&hellcreek->reg_lock);
866 
867 	return ret;
868 }
869 
870 static int hellcreek_fdb_del(struct dsa_switch *ds, int port,
871 			     const unsigned char *addr, u16 vid)
872 {
873 	struct hellcreek_fdb_entry entry = { 0 };
874 	struct hellcreek *hellcreek = ds->priv;
875 	int ret;
876 
877 	dev_dbg(hellcreek->dev, "Delete FDB entry for MAC=%pM\n", addr);
878 
879 	mutex_lock(&hellcreek->reg_lock);
880 
881 	ret = hellcreek_fdb_get(hellcreek, addr, &entry);
882 	if (ret) {
883 		/* Not found */
884 		dev_err(hellcreek->dev, "FDB entry for deletion not found!\n");
885 	} else {
886 		/* Found */
887 		ret = __hellcreek_fdb_del(hellcreek, &entry);
888 		if (ret) {
889 			dev_err(hellcreek->dev, "Failed to delete FDB entry!\n");
890 			goto out;
891 		}
892 
893 		entry.portmask &= ~BIT(port);
894 
895 		if (entry.portmask != 0x00) {
896 			ret = __hellcreek_fdb_add(hellcreek, &entry);
897 			if (ret) {
898 				dev_err(hellcreek->dev, "Failed to add FDB entry!\n");
899 				goto out;
900 			}
901 		}
902 	}
903 
904 out:
905 	mutex_unlock(&hellcreek->reg_lock);
906 
907 	return ret;
908 }
909 
910 static int hellcreek_fdb_dump(struct dsa_switch *ds, int port,
911 			      dsa_fdb_dump_cb_t *cb, void *data)
912 {
913 	struct hellcreek *hellcreek = ds->priv;
914 	u16 entries;
915 	size_t i;
916 
917 	mutex_lock(&hellcreek->reg_lock);
918 
919 	/* Set read pointer to zero: The read of HR_FDBMAX (read-only register)
920 	 * should reset the internal pointer. But, that doesn't work. The vendor
921 	 * suggested a subsequent write as workaround. Same for HR_FDBRDH below.
922 	 */
923 	entries = hellcreek_read(hellcreek, HR_FDBMAX);
924 	hellcreek_write(hellcreek, 0x00, HR_FDBMAX);
925 
926 	dev_dbg(hellcreek->dev, "FDB dump for port %d, entries=%d!\n", port, entries);
927 
928 	/* Read table */
929 	for (i = 0; i < hellcreek->fdb_entries; ++i) {
930 		unsigned char null_addr[ETH_ALEN] = { 0 };
931 		struct hellcreek_fdb_entry entry = { 0 };
932 
933 		/* Read entry */
934 		hellcreek_populate_fdb_entry(hellcreek, &entry, i);
935 
936 		/* Force next entry */
937 		hellcreek_write(hellcreek, 0x00, HR_FDBRDH);
938 
939 		/* Check valid */
940 		if (!memcmp(entry.mac, null_addr, ETH_ALEN))
941 			continue;
942 
943 		/* Check port mask */
944 		if (!(entry.portmask & BIT(port)))
945 			continue;
946 
947 		cb(entry.mac, 0, entry.is_static, data);
948 	}
949 
950 	mutex_unlock(&hellcreek->reg_lock);
951 
952 	return 0;
953 }
954 
955 static int hellcreek_vlan_filtering(struct dsa_switch *ds, int port,
956 				    bool vlan_filtering,
957 				    struct netlink_ext_ack *extack)
958 {
959 	struct hellcreek *hellcreek = ds->priv;
960 
961 	dev_dbg(hellcreek->dev, "%s VLAN filtering on port %d\n",
962 		vlan_filtering ? "Enable" : "Disable", port);
963 
964 	/* Configure port to drop packages with not known vids */
965 	hellcreek_setup_ingressflt(hellcreek, port, vlan_filtering);
966 
967 	/* Enable VLAN awareness on the switch. This save due to
968 	 * ds->vlan_filtering_is_global.
969 	 */
970 	hellcreek_setup_vlan_awareness(hellcreek, vlan_filtering);
971 
972 	return 0;
973 }
974 
975 static int hellcreek_enable_ip_core(struct hellcreek *hellcreek)
976 {
977 	int ret;
978 	u16 val;
979 
980 	mutex_lock(&hellcreek->reg_lock);
981 
982 	val = hellcreek_read(hellcreek, HR_CTRL_C);
983 	val |= HR_CTRL_C_ENABLE;
984 	hellcreek_write(hellcreek, val, HR_CTRL_C);
985 	ret = hellcreek_wait_until_transitioned(hellcreek);
986 
987 	mutex_unlock(&hellcreek->reg_lock);
988 
989 	return ret;
990 }
991 
992 static void hellcreek_setup_cpu_and_tunnel_port(struct hellcreek *hellcreek)
993 {
994 	struct hellcreek_port *tunnel_port = &hellcreek->ports[TUNNEL_PORT];
995 	struct hellcreek_port *cpu_port = &hellcreek->ports[CPU_PORT];
996 	u16 ptcfg = 0;
997 
998 	ptcfg |= HR_PTCFG_LEARNING_EN | HR_PTCFG_ADMIN_EN;
999 
1000 	mutex_lock(&hellcreek->reg_lock);
1001 
1002 	hellcreek_select_port(hellcreek, CPU_PORT);
1003 	hellcreek_write(hellcreek, ptcfg, HR_PTCFG);
1004 
1005 	hellcreek_select_port(hellcreek, TUNNEL_PORT);
1006 	hellcreek_write(hellcreek, ptcfg, HR_PTCFG);
1007 
1008 	cpu_port->ptcfg	   = ptcfg;
1009 	tunnel_port->ptcfg = ptcfg;
1010 
1011 	mutex_unlock(&hellcreek->reg_lock);
1012 }
1013 
1014 static void hellcreek_setup_tc_identity_mapping(struct hellcreek *hellcreek)
1015 {
1016 	int i;
1017 
1018 	/* The switch has multiple egress queues per port. The queue is selected
1019 	 * via the PCP field in the VLAN header. The switch internally deals
1020 	 * with traffic classes instead of PCP values and this mapping is
1021 	 * configurable.
1022 	 *
1023 	 * The default mapping is (PCP - TC):
1024 	 *  7 - 7
1025 	 *  6 - 6
1026 	 *  5 - 5
1027 	 *  4 - 4
1028 	 *  3 - 3
1029 	 *  2 - 1
1030 	 *  1 - 0
1031 	 *  0 - 2
1032 	 *
1033 	 * The default should be an identity mapping.
1034 	 */
1035 
1036 	for (i = 0; i < 8; ++i) {
1037 		mutex_lock(&hellcreek->reg_lock);
1038 
1039 		hellcreek_select_prio(hellcreek, i);
1040 		hellcreek_write(hellcreek,
1041 				i << HR_PRTCCFG_PCP_TC_MAP_SHIFT,
1042 				HR_PRTCCFG);
1043 
1044 		mutex_unlock(&hellcreek->reg_lock);
1045 	}
1046 }
1047 
1048 static int hellcreek_setup_fdb(struct hellcreek *hellcreek)
1049 {
1050 	static struct hellcreek_fdb_entry ptp = {
1051 		/* MAC: 01-1B-19-00-00-00 */
1052 		.mac	      = { 0x01, 0x1b, 0x19, 0x00, 0x00, 0x00 },
1053 		.portmask     = 0x03,	/* Management ports */
1054 		.age	      = 0,
1055 		.is_obt	      = 0,
1056 		.pass_blocked = 0,
1057 		.is_static    = 1,
1058 		.reprio_tc    = 6,	/* TC: 6 as per IEEE 802.1AS */
1059 		.reprio_en    = 1,
1060 	};
1061 	static struct hellcreek_fdb_entry p2p = {
1062 		/* MAC: 01-80-C2-00-00-0E */
1063 		.mac	      = { 0x01, 0x80, 0xc2, 0x00, 0x00, 0x0e },
1064 		.portmask     = 0x03,	/* Management ports */
1065 		.age	      = 0,
1066 		.is_obt	      = 0,
1067 		.pass_blocked = 0,
1068 		.is_static    = 1,
1069 		.reprio_tc    = 6,	/* TC: 6 as per IEEE 802.1AS */
1070 		.reprio_en    = 1,
1071 	};
1072 	int ret;
1073 
1074 	mutex_lock(&hellcreek->reg_lock);
1075 	ret = __hellcreek_fdb_add(hellcreek, &ptp);
1076 	if (ret)
1077 		goto out;
1078 	ret = __hellcreek_fdb_add(hellcreek, &p2p);
1079 out:
1080 	mutex_unlock(&hellcreek->reg_lock);
1081 
1082 	return ret;
1083 }
1084 
1085 static int hellcreek_devlink_info_get(struct dsa_switch *ds,
1086 				      struct devlink_info_req *req,
1087 				      struct netlink_ext_ack *extack)
1088 {
1089 	struct hellcreek *hellcreek = ds->priv;
1090 	int ret;
1091 
1092 	ret = devlink_info_driver_name_put(req, "hellcreek");
1093 	if (ret)
1094 		return ret;
1095 
1096 	return devlink_info_version_fixed_put(req,
1097 					      DEVLINK_INFO_VERSION_GENERIC_ASIC_ID,
1098 					      hellcreek->pdata->name);
1099 }
1100 
1101 static u64 hellcreek_devlink_vlan_table_get(void *priv)
1102 {
1103 	struct hellcreek *hellcreek = priv;
1104 	u64 count = 0;
1105 	int i;
1106 
1107 	mutex_lock(&hellcreek->reg_lock);
1108 	for (i = 0; i < VLAN_N_VID; ++i)
1109 		if (hellcreek->vidmbrcfg[i])
1110 			count++;
1111 	mutex_unlock(&hellcreek->reg_lock);
1112 
1113 	return count;
1114 }
1115 
1116 static u64 hellcreek_devlink_fdb_table_get(void *priv)
1117 {
1118 	struct hellcreek *hellcreek = priv;
1119 	u64 count = 0;
1120 
1121 	/* Reading this register has side effects. Synchronize against the other
1122 	 * FDB operations.
1123 	 */
1124 	mutex_lock(&hellcreek->reg_lock);
1125 	count = hellcreek_read(hellcreek, HR_FDBMAX);
1126 	mutex_unlock(&hellcreek->reg_lock);
1127 
1128 	return count;
1129 }
1130 
1131 static int hellcreek_setup_devlink_resources(struct dsa_switch *ds)
1132 {
1133 	struct devlink_resource_size_params size_vlan_params;
1134 	struct devlink_resource_size_params size_fdb_params;
1135 	struct hellcreek *hellcreek = ds->priv;
1136 	int err;
1137 
1138 	devlink_resource_size_params_init(&size_vlan_params, VLAN_N_VID,
1139 					  VLAN_N_VID,
1140 					  1, DEVLINK_RESOURCE_UNIT_ENTRY);
1141 
1142 	devlink_resource_size_params_init(&size_fdb_params,
1143 					  hellcreek->fdb_entries,
1144 					  hellcreek->fdb_entries,
1145 					  1, DEVLINK_RESOURCE_UNIT_ENTRY);
1146 
1147 	err = dsa_devlink_resource_register(ds, "VLAN", VLAN_N_VID,
1148 					    HELLCREEK_DEVLINK_PARAM_ID_VLAN_TABLE,
1149 					    DEVLINK_RESOURCE_ID_PARENT_TOP,
1150 					    &size_vlan_params);
1151 	if (err)
1152 		goto out;
1153 
1154 	err = dsa_devlink_resource_register(ds, "FDB", hellcreek->fdb_entries,
1155 					    HELLCREEK_DEVLINK_PARAM_ID_FDB_TABLE,
1156 					    DEVLINK_RESOURCE_ID_PARENT_TOP,
1157 					    &size_fdb_params);
1158 	if (err)
1159 		goto out;
1160 
1161 	dsa_devlink_resource_occ_get_register(ds,
1162 					      HELLCREEK_DEVLINK_PARAM_ID_VLAN_TABLE,
1163 					      hellcreek_devlink_vlan_table_get,
1164 					      hellcreek);
1165 
1166 	dsa_devlink_resource_occ_get_register(ds,
1167 					      HELLCREEK_DEVLINK_PARAM_ID_FDB_TABLE,
1168 					      hellcreek_devlink_fdb_table_get,
1169 					      hellcreek);
1170 
1171 	return 0;
1172 
1173 out:
1174 	dsa_devlink_resources_unregister(ds);
1175 
1176 	return err;
1177 }
1178 
1179 static int hellcreek_devlink_region_vlan_snapshot(struct devlink *dl,
1180 						  const struct devlink_region_ops *ops,
1181 						  struct netlink_ext_ack *extack,
1182 						  u8 **data)
1183 {
1184 	struct hellcreek_devlink_vlan_entry *table, *entry;
1185 	struct dsa_switch *ds = dsa_devlink_to_ds(dl);
1186 	struct hellcreek *hellcreek = ds->priv;
1187 	int i;
1188 
1189 	table = kcalloc(VLAN_N_VID, sizeof(*entry), GFP_KERNEL);
1190 	if (!table)
1191 		return -ENOMEM;
1192 
1193 	entry = table;
1194 
1195 	mutex_lock(&hellcreek->reg_lock);
1196 	for (i = 0; i < VLAN_N_VID; ++i, ++entry) {
1197 		entry->member = hellcreek->vidmbrcfg[i];
1198 		entry->vid    = i;
1199 	}
1200 	mutex_unlock(&hellcreek->reg_lock);
1201 
1202 	*data = (u8 *)table;
1203 
1204 	return 0;
1205 }
1206 
1207 static int hellcreek_devlink_region_fdb_snapshot(struct devlink *dl,
1208 						 const struct devlink_region_ops *ops,
1209 						 struct netlink_ext_ack *extack,
1210 						 u8 **data)
1211 {
1212 	struct dsa_switch *ds = dsa_devlink_to_ds(dl);
1213 	struct hellcreek_fdb_entry *table, *entry;
1214 	struct hellcreek *hellcreek = ds->priv;
1215 	size_t i;
1216 
1217 	table = kcalloc(hellcreek->fdb_entries, sizeof(*entry), GFP_KERNEL);
1218 	if (!table)
1219 		return -ENOMEM;
1220 
1221 	entry = table;
1222 
1223 	mutex_lock(&hellcreek->reg_lock);
1224 
1225 	/* Start table read */
1226 	hellcreek_read(hellcreek, HR_FDBMAX);
1227 	hellcreek_write(hellcreek, 0x00, HR_FDBMAX);
1228 
1229 	for (i = 0; i < hellcreek->fdb_entries; ++i, ++entry) {
1230 		/* Read current entry */
1231 		hellcreek_populate_fdb_entry(hellcreek, entry, i);
1232 
1233 		/* Advance read pointer */
1234 		hellcreek_write(hellcreek, 0x00, HR_FDBRDH);
1235 	}
1236 
1237 	mutex_unlock(&hellcreek->reg_lock);
1238 
1239 	*data = (u8 *)table;
1240 
1241 	return 0;
1242 }
1243 
1244 static struct devlink_region_ops hellcreek_region_vlan_ops = {
1245 	.name	    = "vlan",
1246 	.snapshot   = hellcreek_devlink_region_vlan_snapshot,
1247 	.destructor = kfree,
1248 };
1249 
1250 static struct devlink_region_ops hellcreek_region_fdb_ops = {
1251 	.name	    = "fdb",
1252 	.snapshot   = hellcreek_devlink_region_fdb_snapshot,
1253 	.destructor = kfree,
1254 };
1255 
1256 static int hellcreek_setup_devlink_regions(struct dsa_switch *ds)
1257 {
1258 	struct hellcreek *hellcreek = ds->priv;
1259 	struct devlink_region_ops *ops;
1260 	struct devlink_region *region;
1261 	u64 size;
1262 	int ret;
1263 
1264 	/* VLAN table */
1265 	size = VLAN_N_VID * sizeof(struct hellcreek_devlink_vlan_entry);
1266 	ops  = &hellcreek_region_vlan_ops;
1267 
1268 	region = dsa_devlink_region_create(ds, ops, 1, size);
1269 	if (IS_ERR(region))
1270 		return PTR_ERR(region);
1271 
1272 	hellcreek->vlan_region = region;
1273 
1274 	/* FDB table */
1275 	size = hellcreek->fdb_entries * sizeof(struct hellcreek_fdb_entry);
1276 	ops  = &hellcreek_region_fdb_ops;
1277 
1278 	region = dsa_devlink_region_create(ds, ops, 1, size);
1279 	if (IS_ERR(region)) {
1280 		ret = PTR_ERR(region);
1281 		goto err_fdb;
1282 	}
1283 
1284 	hellcreek->fdb_region = region;
1285 
1286 	return 0;
1287 
1288 err_fdb:
1289 	dsa_devlink_region_destroy(hellcreek->vlan_region);
1290 
1291 	return ret;
1292 }
1293 
1294 static void hellcreek_teardown_devlink_regions(struct dsa_switch *ds)
1295 {
1296 	struct hellcreek *hellcreek = ds->priv;
1297 
1298 	dsa_devlink_region_destroy(hellcreek->fdb_region);
1299 	dsa_devlink_region_destroy(hellcreek->vlan_region);
1300 }
1301 
1302 static int hellcreek_setup(struct dsa_switch *ds)
1303 {
1304 	struct hellcreek *hellcreek = ds->priv;
1305 	u16 swcfg = 0;
1306 	int ret, i;
1307 
1308 	dev_dbg(hellcreek->dev, "Set up the switch\n");
1309 
1310 	/* Let's go */
1311 	ret = hellcreek_enable_ip_core(hellcreek);
1312 	if (ret) {
1313 		dev_err(hellcreek->dev, "Failed to enable IP core!\n");
1314 		return ret;
1315 	}
1316 
1317 	/* Enable CPU/Tunnel ports */
1318 	hellcreek_setup_cpu_and_tunnel_port(hellcreek);
1319 
1320 	/* Switch config: Keep defaults, enable FDB aging and learning and tag
1321 	 * each frame from/to cpu port for DSA tagging.  Also enable the length
1322 	 * aware shaping mode. This eliminates the need for Qbv guard bands.
1323 	 */
1324 	swcfg |= HR_SWCFG_FDBAGE_EN |
1325 		HR_SWCFG_FDBLRN_EN  |
1326 		HR_SWCFG_ALWAYS_OBT |
1327 		(HR_SWCFG_LAS_ON << HR_SWCFG_LAS_MODE_SHIFT);
1328 	hellcreek->swcfg = swcfg;
1329 	hellcreek_write(hellcreek, swcfg, HR_SWCFG);
1330 
1331 	/* Initial vlan membership to reflect port separation */
1332 	for (i = 0; i < ds->num_ports; ++i) {
1333 		if (!dsa_is_user_port(ds, i))
1334 			continue;
1335 
1336 		hellcreek_setup_vlan_membership(ds, i, true);
1337 	}
1338 
1339 	/* Configure PCP <-> TC mapping */
1340 	hellcreek_setup_tc_identity_mapping(hellcreek);
1341 
1342 	/* The VLAN awareness is a global switch setting. Therefore, mixed vlan
1343 	 * filtering setups are not supported.
1344 	 */
1345 	ds->vlan_filtering_is_global = true;
1346 
1347 	/* Intercept _all_ PTP multicast traffic */
1348 	ret = hellcreek_setup_fdb(hellcreek);
1349 	if (ret) {
1350 		dev_err(hellcreek->dev,
1351 			"Failed to insert static PTP FDB entries\n");
1352 		return ret;
1353 	}
1354 
1355 	/* Register devlink resources with DSA */
1356 	ret = hellcreek_setup_devlink_resources(ds);
1357 	if (ret) {
1358 		dev_err(hellcreek->dev,
1359 			"Failed to setup devlink resources!\n");
1360 		return ret;
1361 	}
1362 
1363 	ret = hellcreek_setup_devlink_regions(ds);
1364 	if (ret) {
1365 		dev_err(hellcreek->dev,
1366 			"Failed to setup devlink regions!\n");
1367 		goto err_regions;
1368 	}
1369 
1370 	return 0;
1371 
1372 err_regions:
1373 	dsa_devlink_resources_unregister(ds);
1374 
1375 	return ret;
1376 }
1377 
1378 static void hellcreek_teardown(struct dsa_switch *ds)
1379 {
1380 	hellcreek_teardown_devlink_regions(ds);
1381 	dsa_devlink_resources_unregister(ds);
1382 }
1383 
1384 static void hellcreek_phylink_validate(struct dsa_switch *ds, int port,
1385 				       unsigned long *supported,
1386 				       struct phylink_link_state *state)
1387 {
1388 	__ETHTOOL_DECLARE_LINK_MODE_MASK(mask) = { 0, };
1389 	struct hellcreek *hellcreek = ds->priv;
1390 
1391 	dev_dbg(hellcreek->dev, "Phylink validate for port %d\n", port);
1392 
1393 	/* The MAC settings are a hardware configuration option and cannot be
1394 	 * changed at run time or by strapping. Therefore the attached PHYs
1395 	 * should be programmed to only advertise settings which are supported
1396 	 * by the hardware.
1397 	 */
1398 	if (hellcreek->pdata->is_100_mbits)
1399 		phylink_set(mask, 100baseT_Full);
1400 	else
1401 		phylink_set(mask, 1000baseT_Full);
1402 
1403 	bitmap_and(supported, supported, mask,
1404 		   __ETHTOOL_LINK_MODE_MASK_NBITS);
1405 	bitmap_and(state->advertising, state->advertising, mask,
1406 		   __ETHTOOL_LINK_MODE_MASK_NBITS);
1407 }
1408 
1409 static int
1410 hellcreek_port_prechangeupper(struct dsa_switch *ds, int port,
1411 			      struct netdev_notifier_changeupper_info *info)
1412 {
1413 	struct hellcreek *hellcreek = ds->priv;
1414 	bool used = true;
1415 	int ret = -EBUSY;
1416 	u16 vid;
1417 	int i;
1418 
1419 	dev_dbg(hellcreek->dev, "Pre change upper for port %d\n", port);
1420 
1421 	/*
1422 	 * Deny VLAN devices on top of lan ports with the same VLAN ids, because
1423 	 * it breaks the port separation due to the private VLANs. Example:
1424 	 *
1425 	 * lan0.100 *and* lan1.100 cannot be used in parallel. However, lan0.99
1426 	 * and lan1.100 works.
1427 	 */
1428 
1429 	if (!is_vlan_dev(info->upper_dev))
1430 		return 0;
1431 
1432 	vid = vlan_dev_vlan_id(info->upper_dev);
1433 
1434 	/* For all ports, check bitmaps */
1435 	mutex_lock(&hellcreek->vlan_lock);
1436 	for (i = 0; i < hellcreek->pdata->num_ports; ++i) {
1437 		if (!dsa_is_user_port(ds, i))
1438 			continue;
1439 
1440 		if (port == i)
1441 			continue;
1442 
1443 		used = used && test_bit(vid, hellcreek->ports[i].vlan_dev_bitmap);
1444 	}
1445 
1446 	if (used)
1447 		goto out;
1448 
1449 	/* Update bitmap */
1450 	set_bit(vid, hellcreek->ports[port].vlan_dev_bitmap);
1451 
1452 	ret = 0;
1453 
1454 out:
1455 	mutex_unlock(&hellcreek->vlan_lock);
1456 
1457 	return ret;
1458 }
1459 
1460 static void hellcreek_setup_gcl(struct hellcreek *hellcreek, int port,
1461 				const struct tc_taprio_qopt_offload *schedule)
1462 {
1463 	const struct tc_taprio_sched_entry *cur, *initial, *next;
1464 	size_t i;
1465 
1466 	cur = initial = &schedule->entries[0];
1467 	next = cur + 1;
1468 
1469 	for (i = 1; i <= schedule->num_entries; ++i) {
1470 		u16 data;
1471 		u8 gates;
1472 
1473 		cur++;
1474 		next++;
1475 
1476 		if (i == schedule->num_entries)
1477 			gates = initial->gate_mask ^
1478 				cur->gate_mask;
1479 		else
1480 			gates = next->gate_mask ^
1481 				cur->gate_mask;
1482 
1483 		data = gates;
1484 
1485 		if (i == schedule->num_entries)
1486 			data |= TR_GCLDAT_GCLWRLAST;
1487 
1488 		/* Gates states */
1489 		hellcreek_write(hellcreek, data, TR_GCLDAT);
1490 
1491 		/* Time interval */
1492 		hellcreek_write(hellcreek,
1493 				cur->interval & 0x0000ffff,
1494 				TR_GCLTIL);
1495 		hellcreek_write(hellcreek,
1496 				(cur->interval & 0xffff0000) >> 16,
1497 				TR_GCLTIH);
1498 
1499 		/* Commit entry */
1500 		data = ((i - 1) << TR_GCLCMD_GCLWRADR_SHIFT) |
1501 			(initial->gate_mask <<
1502 			 TR_GCLCMD_INIT_GATE_STATES_SHIFT);
1503 		hellcreek_write(hellcreek, data, TR_GCLCMD);
1504 	}
1505 }
1506 
1507 static void hellcreek_set_cycle_time(struct hellcreek *hellcreek,
1508 				     const struct tc_taprio_qopt_offload *schedule)
1509 {
1510 	u32 cycle_time = schedule->cycle_time;
1511 
1512 	hellcreek_write(hellcreek, cycle_time & 0x0000ffff, TR_CTWRL);
1513 	hellcreek_write(hellcreek, (cycle_time & 0xffff0000) >> 16, TR_CTWRH);
1514 }
1515 
1516 static void hellcreek_switch_schedule(struct hellcreek *hellcreek,
1517 				      ktime_t start_time)
1518 {
1519 	struct timespec64 ts = ktime_to_timespec64(start_time);
1520 
1521 	/* Start schedule at this point of time */
1522 	hellcreek_write(hellcreek, ts.tv_nsec & 0x0000ffff, TR_ESTWRL);
1523 	hellcreek_write(hellcreek, (ts.tv_nsec & 0xffff0000) >> 16, TR_ESTWRH);
1524 
1525 	/* Arm timer, set seconds and switch schedule */
1526 	hellcreek_write(hellcreek, TR_ESTCMD_ESTARM | TR_ESTCMD_ESTSWCFG |
1527 			((ts.tv_sec & TR_ESTCMD_ESTSEC_MASK) <<
1528 			 TR_ESTCMD_ESTSEC_SHIFT), TR_ESTCMD);
1529 }
1530 
1531 static bool hellcreek_schedule_startable(struct hellcreek *hellcreek, int port)
1532 {
1533 	struct hellcreek_port *hellcreek_port = &hellcreek->ports[port];
1534 	s64 base_time_ns, current_ns;
1535 
1536 	/* The switch allows a schedule to be started only eight seconds within
1537 	 * the future. Therefore, check the current PTP time if the schedule is
1538 	 * startable or not.
1539 	 */
1540 
1541 	/* Use the "cached" time. That should be alright, as it's updated quite
1542 	 * frequently in the PTP code.
1543 	 */
1544 	mutex_lock(&hellcreek->ptp_lock);
1545 	current_ns = hellcreek->seconds * NSEC_PER_SEC + hellcreek->last_ts;
1546 	mutex_unlock(&hellcreek->ptp_lock);
1547 
1548 	/* Calculate difference to admin base time */
1549 	base_time_ns = ktime_to_ns(hellcreek_port->current_schedule->base_time);
1550 
1551 	return base_time_ns - current_ns < (s64)8 * NSEC_PER_SEC;
1552 }
1553 
1554 static void hellcreek_start_schedule(struct hellcreek *hellcreek, int port)
1555 {
1556 	struct hellcreek_port *hellcreek_port = &hellcreek->ports[port];
1557 	ktime_t base_time, current_time;
1558 	s64 current_ns;
1559 	u32 cycle_time;
1560 
1561 	/* First select port */
1562 	hellcreek_select_tgd(hellcreek, port);
1563 
1564 	/* Forward base time into the future if needed */
1565 	mutex_lock(&hellcreek->ptp_lock);
1566 	current_ns = hellcreek->seconds * NSEC_PER_SEC + hellcreek->last_ts;
1567 	mutex_unlock(&hellcreek->ptp_lock);
1568 
1569 	current_time = ns_to_ktime(current_ns);
1570 	base_time    = hellcreek_port->current_schedule->base_time;
1571 	cycle_time   = hellcreek_port->current_schedule->cycle_time;
1572 
1573 	if (ktime_compare(current_time, base_time) > 0) {
1574 		s64 n;
1575 
1576 		n = div64_s64(ktime_sub_ns(current_time, base_time),
1577 			      cycle_time);
1578 		base_time = ktime_add_ns(base_time, (n + 1) * cycle_time);
1579 	}
1580 
1581 	/* Set admin base time and switch schedule */
1582 	hellcreek_switch_schedule(hellcreek, base_time);
1583 
1584 	taprio_offload_free(hellcreek_port->current_schedule);
1585 	hellcreek_port->current_schedule = NULL;
1586 
1587 	dev_dbg(hellcreek->dev, "Armed EST timer for port %d\n",
1588 		hellcreek_port->port);
1589 }
1590 
1591 static void hellcreek_check_schedule(struct work_struct *work)
1592 {
1593 	struct delayed_work *dw = to_delayed_work(work);
1594 	struct hellcreek_port *hellcreek_port;
1595 	struct hellcreek *hellcreek;
1596 	bool startable;
1597 
1598 	hellcreek_port = dw_to_hellcreek_port(dw);
1599 	hellcreek = hellcreek_port->hellcreek;
1600 
1601 	mutex_lock(&hellcreek->reg_lock);
1602 
1603 	/* Check starting time */
1604 	startable = hellcreek_schedule_startable(hellcreek,
1605 						 hellcreek_port->port);
1606 	if (startable) {
1607 		hellcreek_start_schedule(hellcreek, hellcreek_port->port);
1608 		mutex_unlock(&hellcreek->reg_lock);
1609 		return;
1610 	}
1611 
1612 	mutex_unlock(&hellcreek->reg_lock);
1613 
1614 	/* Reschedule */
1615 	schedule_delayed_work(&hellcreek_port->schedule_work,
1616 			      HELLCREEK_SCHEDULE_PERIOD);
1617 }
1618 
1619 static int hellcreek_port_set_schedule(struct dsa_switch *ds, int port,
1620 				       struct tc_taprio_qopt_offload *taprio)
1621 {
1622 	struct hellcreek *hellcreek = ds->priv;
1623 	struct hellcreek_port *hellcreek_port;
1624 	bool startable;
1625 	u16 ctrl;
1626 
1627 	hellcreek_port = &hellcreek->ports[port];
1628 
1629 	dev_dbg(hellcreek->dev, "Configure traffic schedule on port %d\n",
1630 		port);
1631 
1632 	/* First cancel delayed work */
1633 	cancel_delayed_work_sync(&hellcreek_port->schedule_work);
1634 
1635 	mutex_lock(&hellcreek->reg_lock);
1636 
1637 	if (hellcreek_port->current_schedule) {
1638 		taprio_offload_free(hellcreek_port->current_schedule);
1639 		hellcreek_port->current_schedule = NULL;
1640 	}
1641 	hellcreek_port->current_schedule = taprio_offload_get(taprio);
1642 
1643 	/* Then select port */
1644 	hellcreek_select_tgd(hellcreek, port);
1645 
1646 	/* Enable gating and keep defaults */
1647 	ctrl = (0xff << TR_TGDCTRL_ADMINGATESTATES_SHIFT) | TR_TGDCTRL_GATE_EN;
1648 	hellcreek_write(hellcreek, ctrl, TR_TGDCTRL);
1649 
1650 	/* Cancel pending schedule */
1651 	hellcreek_write(hellcreek, 0x00, TR_ESTCMD);
1652 
1653 	/* Setup a new schedule */
1654 	hellcreek_setup_gcl(hellcreek, port, hellcreek_port->current_schedule);
1655 
1656 	/* Configure cycle time */
1657 	hellcreek_set_cycle_time(hellcreek, hellcreek_port->current_schedule);
1658 
1659 	/* Check starting time */
1660 	startable = hellcreek_schedule_startable(hellcreek, port);
1661 	if (startable) {
1662 		hellcreek_start_schedule(hellcreek, port);
1663 		mutex_unlock(&hellcreek->reg_lock);
1664 		return 0;
1665 	}
1666 
1667 	mutex_unlock(&hellcreek->reg_lock);
1668 
1669 	/* Schedule periodic schedule check */
1670 	schedule_delayed_work(&hellcreek_port->schedule_work,
1671 			      HELLCREEK_SCHEDULE_PERIOD);
1672 
1673 	return 0;
1674 }
1675 
1676 static int hellcreek_port_del_schedule(struct dsa_switch *ds, int port)
1677 {
1678 	struct hellcreek *hellcreek = ds->priv;
1679 	struct hellcreek_port *hellcreek_port;
1680 
1681 	hellcreek_port = &hellcreek->ports[port];
1682 
1683 	dev_dbg(hellcreek->dev, "Remove traffic schedule on port %d\n", port);
1684 
1685 	/* First cancel delayed work */
1686 	cancel_delayed_work_sync(&hellcreek_port->schedule_work);
1687 
1688 	mutex_lock(&hellcreek->reg_lock);
1689 
1690 	if (hellcreek_port->current_schedule) {
1691 		taprio_offload_free(hellcreek_port->current_schedule);
1692 		hellcreek_port->current_schedule = NULL;
1693 	}
1694 
1695 	/* Then select port */
1696 	hellcreek_select_tgd(hellcreek, port);
1697 
1698 	/* Disable gating and return to regular switching flow */
1699 	hellcreek_write(hellcreek, 0xff << TR_TGDCTRL_ADMINGATESTATES_SHIFT,
1700 			TR_TGDCTRL);
1701 
1702 	mutex_unlock(&hellcreek->reg_lock);
1703 
1704 	return 0;
1705 }
1706 
1707 static bool hellcreek_validate_schedule(struct hellcreek *hellcreek,
1708 					struct tc_taprio_qopt_offload *schedule)
1709 {
1710 	size_t i;
1711 
1712 	/* Does this hellcreek version support Qbv in hardware? */
1713 	if (!hellcreek->pdata->qbv_support)
1714 		return false;
1715 
1716 	/* cycle time can only be 32bit */
1717 	if (schedule->cycle_time > (u32)-1)
1718 		return false;
1719 
1720 	/* cycle time extension is not supported */
1721 	if (schedule->cycle_time_extension)
1722 		return false;
1723 
1724 	/* Only set command is supported */
1725 	for (i = 0; i < schedule->num_entries; ++i)
1726 		if (schedule->entries[i].command != TC_TAPRIO_CMD_SET_GATES)
1727 			return false;
1728 
1729 	return true;
1730 }
1731 
1732 static int hellcreek_port_setup_tc(struct dsa_switch *ds, int port,
1733 				   enum tc_setup_type type, void *type_data)
1734 {
1735 	struct tc_taprio_qopt_offload *taprio = type_data;
1736 	struct hellcreek *hellcreek = ds->priv;
1737 
1738 	if (type != TC_SETUP_QDISC_TAPRIO)
1739 		return -EOPNOTSUPP;
1740 
1741 	if (!hellcreek_validate_schedule(hellcreek, taprio))
1742 		return -EOPNOTSUPP;
1743 
1744 	if (taprio->enable)
1745 		return hellcreek_port_set_schedule(ds, port, taprio);
1746 
1747 	return hellcreek_port_del_schedule(ds, port);
1748 }
1749 
1750 static const struct dsa_switch_ops hellcreek_ds_ops = {
1751 	.devlink_info_get      = hellcreek_devlink_info_get,
1752 	.get_ethtool_stats     = hellcreek_get_ethtool_stats,
1753 	.get_sset_count	       = hellcreek_get_sset_count,
1754 	.get_strings	       = hellcreek_get_strings,
1755 	.get_tag_protocol      = hellcreek_get_tag_protocol,
1756 	.get_ts_info	       = hellcreek_get_ts_info,
1757 	.phylink_validate      = hellcreek_phylink_validate,
1758 	.port_bridge_flags     = hellcreek_bridge_flags,
1759 	.port_bridge_join      = hellcreek_port_bridge_join,
1760 	.port_bridge_leave     = hellcreek_port_bridge_leave,
1761 	.port_disable	       = hellcreek_port_disable,
1762 	.port_enable	       = hellcreek_port_enable,
1763 	.port_fdb_add	       = hellcreek_fdb_add,
1764 	.port_fdb_del	       = hellcreek_fdb_del,
1765 	.port_fdb_dump	       = hellcreek_fdb_dump,
1766 	.port_hwtstamp_set     = hellcreek_port_hwtstamp_set,
1767 	.port_hwtstamp_get     = hellcreek_port_hwtstamp_get,
1768 	.port_pre_bridge_flags = hellcreek_pre_bridge_flags,
1769 	.port_prechangeupper   = hellcreek_port_prechangeupper,
1770 	.port_rxtstamp	       = hellcreek_port_rxtstamp,
1771 	.port_setup_tc	       = hellcreek_port_setup_tc,
1772 	.port_stp_state_set    = hellcreek_port_stp_state_set,
1773 	.port_txtstamp	       = hellcreek_port_txtstamp,
1774 	.port_vlan_add	       = hellcreek_vlan_add,
1775 	.port_vlan_del	       = hellcreek_vlan_del,
1776 	.port_vlan_filtering   = hellcreek_vlan_filtering,
1777 	.setup		       = hellcreek_setup,
1778 	.teardown	       = hellcreek_teardown,
1779 };
1780 
1781 static int hellcreek_probe(struct platform_device *pdev)
1782 {
1783 	struct device *dev = &pdev->dev;
1784 	struct hellcreek *hellcreek;
1785 	struct resource *res;
1786 	int ret, i;
1787 
1788 	hellcreek = devm_kzalloc(dev, sizeof(*hellcreek), GFP_KERNEL);
1789 	if (!hellcreek)
1790 		return -ENOMEM;
1791 
1792 	hellcreek->vidmbrcfg = devm_kcalloc(dev, VLAN_N_VID,
1793 					    sizeof(*hellcreek->vidmbrcfg),
1794 					    GFP_KERNEL);
1795 	if (!hellcreek->vidmbrcfg)
1796 		return -ENOMEM;
1797 
1798 	hellcreek->pdata = of_device_get_match_data(dev);
1799 
1800 	hellcreek->ports = devm_kcalloc(dev, hellcreek->pdata->num_ports,
1801 					sizeof(*hellcreek->ports),
1802 					GFP_KERNEL);
1803 	if (!hellcreek->ports)
1804 		return -ENOMEM;
1805 
1806 	for (i = 0; i < hellcreek->pdata->num_ports; ++i) {
1807 		struct hellcreek_port *port = &hellcreek->ports[i];
1808 
1809 		port->counter_values =
1810 			devm_kcalloc(dev,
1811 				     ARRAY_SIZE(hellcreek_counter),
1812 				     sizeof(*port->counter_values),
1813 				     GFP_KERNEL);
1814 		if (!port->counter_values)
1815 			return -ENOMEM;
1816 
1817 		port->vlan_dev_bitmap =
1818 			devm_kcalloc(dev,
1819 				     BITS_TO_LONGS(VLAN_N_VID),
1820 				     sizeof(unsigned long),
1821 				     GFP_KERNEL);
1822 		if (!port->vlan_dev_bitmap)
1823 			return -ENOMEM;
1824 
1825 		port->hellcreek	= hellcreek;
1826 		port->port	= i;
1827 
1828 		INIT_DELAYED_WORK(&port->schedule_work,
1829 				  hellcreek_check_schedule);
1830 	}
1831 
1832 	mutex_init(&hellcreek->reg_lock);
1833 	mutex_init(&hellcreek->vlan_lock);
1834 	mutex_init(&hellcreek->ptp_lock);
1835 
1836 	hellcreek->dev = dev;
1837 
1838 	res = platform_get_resource_byname(pdev, IORESOURCE_MEM, "tsn");
1839 	if (!res) {
1840 		dev_err(dev, "No memory region provided!\n");
1841 		return -ENODEV;
1842 	}
1843 
1844 	hellcreek->base = devm_ioremap_resource(dev, res);
1845 	if (IS_ERR(hellcreek->base))
1846 		return PTR_ERR(hellcreek->base);
1847 
1848 	res = platform_get_resource_byname(pdev, IORESOURCE_MEM, "ptp");
1849 	if (!res) {
1850 		dev_err(dev, "No PTP memory region provided!\n");
1851 		return -ENODEV;
1852 	}
1853 
1854 	hellcreek->ptp_base = devm_ioremap_resource(dev, res);
1855 	if (IS_ERR(hellcreek->ptp_base))
1856 		return PTR_ERR(hellcreek->ptp_base);
1857 
1858 	ret = hellcreek_detect(hellcreek);
1859 	if (ret) {
1860 		dev_err(dev, "No (known) chip found!\n");
1861 		return ret;
1862 	}
1863 
1864 	ret = hellcreek_wait_until_ready(hellcreek);
1865 	if (ret) {
1866 		dev_err(dev, "Switch didn't become ready!\n");
1867 		return ret;
1868 	}
1869 
1870 	hellcreek_feature_detect(hellcreek);
1871 
1872 	hellcreek->ds = devm_kzalloc(dev, sizeof(*hellcreek->ds), GFP_KERNEL);
1873 	if (!hellcreek->ds)
1874 		return -ENOMEM;
1875 
1876 	hellcreek->ds->dev	     = dev;
1877 	hellcreek->ds->priv	     = hellcreek;
1878 	hellcreek->ds->ops	     = &hellcreek_ds_ops;
1879 	hellcreek->ds->num_ports     = hellcreek->pdata->num_ports;
1880 	hellcreek->ds->num_tx_queues = HELLCREEK_NUM_EGRESS_QUEUES;
1881 
1882 	ret = dsa_register_switch(hellcreek->ds);
1883 	if (ret) {
1884 		dev_err_probe(dev, ret, "Unable to register switch\n");
1885 		return ret;
1886 	}
1887 
1888 	ret = hellcreek_ptp_setup(hellcreek);
1889 	if (ret) {
1890 		dev_err(dev, "Failed to setup PTP!\n");
1891 		goto err_ptp_setup;
1892 	}
1893 
1894 	ret = hellcreek_hwtstamp_setup(hellcreek);
1895 	if (ret) {
1896 		dev_err(dev, "Failed to setup hardware timestamping!\n");
1897 		goto err_tstamp_setup;
1898 	}
1899 
1900 	platform_set_drvdata(pdev, hellcreek);
1901 
1902 	return 0;
1903 
1904 err_tstamp_setup:
1905 	hellcreek_ptp_free(hellcreek);
1906 err_ptp_setup:
1907 	dsa_unregister_switch(hellcreek->ds);
1908 
1909 	return ret;
1910 }
1911 
1912 static int hellcreek_remove(struct platform_device *pdev)
1913 {
1914 	struct hellcreek *hellcreek = platform_get_drvdata(pdev);
1915 
1916 	hellcreek_hwtstamp_free(hellcreek);
1917 	hellcreek_ptp_free(hellcreek);
1918 	dsa_unregister_switch(hellcreek->ds);
1919 	platform_set_drvdata(pdev, NULL);
1920 
1921 	return 0;
1922 }
1923 
1924 static const struct hellcreek_platform_data de1soc_r1_pdata = {
1925 	.name		 = "r4c30",
1926 	.num_ports	 = 4,
1927 	.is_100_mbits	 = 1,
1928 	.qbv_support	 = 1,
1929 	.qbv_on_cpu_port = 1,
1930 	.qbu_support	 = 0,
1931 	.module_id	 = 0x4c30,
1932 };
1933 
1934 static const struct of_device_id hellcreek_of_match[] = {
1935 	{
1936 		.compatible = "hirschmann,hellcreek-de1soc-r1",
1937 		.data	    = &de1soc_r1_pdata,
1938 	},
1939 	{ /* sentinel */ },
1940 };
1941 MODULE_DEVICE_TABLE(of, hellcreek_of_match);
1942 
1943 static struct platform_driver hellcreek_driver = {
1944 	.probe	= hellcreek_probe,
1945 	.remove = hellcreek_remove,
1946 	.driver = {
1947 		.name = "hellcreek",
1948 		.of_match_table = hellcreek_of_match,
1949 	},
1950 };
1951 module_platform_driver(hellcreek_driver);
1952 
1953 MODULE_AUTHOR("Kurt Kanzenbach <kurt@linutronix.de>");
1954 MODULE_DESCRIPTION("Hirschmann Hellcreek driver");
1955 MODULE_LICENSE("Dual MIT/GPL");
1956