1// SPDX-License-Identifier: GPL-2.0
2/*
3 * Texas Instruments Ethernet Switch Driver
4 *
5 * Copyright (C) 2012 Texas Instruments
6 *
7 */
8
9#include <linux/kernel.h>
10#include <linux/io.h>
11#include <linux/clk.h>
12#include <linux/timer.h>
13#include <linux/module.h>
14#include <linux/platform_device.h>
15#include <linux/irqreturn.h>
16#include <linux/interrupt.h>
17#include <linux/if_ether.h>
18#include <linux/etherdevice.h>
19#include <linux/netdevice.h>
20#include <linux/net_tstamp.h>
21#include <linux/phy.h>
22#include <linux/phy/phy.h>
23#include <linux/workqueue.h>
24#include <linux/delay.h>
25#include <linux/pm_runtime.h>
26#include <linux/gpio/consumer.h>
27#include <linux/of.h>
28#include <linux/of_mdio.h>
29#include <linux/of_net.h>
30#include <linux/of_device.h>
31#include <linux/if_vlan.h>
32#include <linux/kmemleak.h>
33#include <linux/sys_soc.h>
34#include <net/page_pool.h>
35#include <linux/bpf.h>
36#include <linux/bpf_trace.h>
37
38#include <linux/pinctrl/consumer.h>
39#include <net/pkt_cls.h>
40
41#include "cpsw.h"
42#include "cpsw_ale.h"
43#include "cpsw_priv.h"
44#include "cpsw_sl.h"
45#include "cpts.h"
46#include "davinci_cpdma.h"
47
48#include <net/pkt_sched.h>
49
50static int debug_level;
51module_param(debug_level, int, 0);
52MODULE_PARM_DESC(debug_level, "cpsw debug level (NETIF_MSG bits)");
53
54static int ale_ageout = 10;
55module_param(ale_ageout, int, 0);
56MODULE_PARM_DESC(ale_ageout, "cpsw ale ageout interval (seconds)");
57
58static int rx_packet_max = CPSW_MAX_PACKET_SIZE;
59module_param(rx_packet_max, int, 0);
60MODULE_PARM_DESC(rx_packet_max, "maximum receive packet size (bytes)");
61
62static int descs_pool_size = CPSW_CPDMA_DESCS_POOL_SIZE_DEFAULT;
63module_param(descs_pool_size, int, 0444);
64MODULE_PARM_DESC(descs_pool_size, "Number of CPDMA CPPI descriptors in pool");
65
66#define for_each_slave(priv, func, arg...)				\
67	do {								\
68		struct cpsw_slave *slave;				\
69		struct cpsw_common *cpsw = (priv)->cpsw;		\
70		int n;							\
71		if (cpsw->data.dual_emac)				\
72			(func)((cpsw)->slaves + priv->emac_port, ##arg);\
73		else							\
74			for (n = cpsw->data.slaves,			\
75					slave = cpsw->slaves;		\
76					n; n--)				\
77				(func)(slave++, ##arg);			\
78	} while (0)
79
80static int cpsw_slave_index_priv(struct cpsw_common *cpsw,
81				 struct cpsw_priv *priv)
82{
83	return cpsw->data.dual_emac ? priv->emac_port : cpsw->data.active_slave;
84}
85
86static int cpsw_get_slave_port(u32 slave_num)
87{
88	return slave_num + 1;
89}
90
91static int cpsw_ndo_vlan_rx_add_vid(struct net_device *ndev,
92				    __be16 proto, u16 vid);
93
94static void cpsw_set_promiscious(struct net_device *ndev, bool enable)
95{
96	struct cpsw_common *cpsw = ndev_to_cpsw(ndev);
97	struct cpsw_ale *ale = cpsw->ale;
98	int i;
99
100	if (cpsw->data.dual_emac) {
101		bool flag = false;
102
103		/* Enabling promiscuous mode for one interface will be
104		 * common for both the interface as the interface shares
105		 * the same hardware resource.
106		 */
107		for (i = 0; i < cpsw->data.slaves; i++)
108			if (cpsw->slaves[i].ndev->flags & IFF_PROMISC)
109				flag = true;
110
111		if (!enable && flag) {
112			enable = true;
113			dev_err(&ndev->dev, "promiscuity not disabled as the other interface is still in promiscuity mode\n");
114		}
115
116		if (enable) {
117			/* Enable Bypass */
118			cpsw_ale_control_set(ale, 0, ALE_BYPASS, 1);
119
120			dev_dbg(&ndev->dev, "promiscuity enabled\n");
121		} else {
122			/* Disable Bypass */
123			cpsw_ale_control_set(ale, 0, ALE_BYPASS, 0);
124			dev_dbg(&ndev->dev, "promiscuity disabled\n");
125		}
126	} else {
127		if (enable) {
128			unsigned long timeout = jiffies + HZ;
129
130			/* Disable Learn for all ports (host is port 0 and slaves are port 1 and up */
131			for (i = 0; i <= cpsw->data.slaves; i++) {
132				cpsw_ale_control_set(ale, i,
133						     ALE_PORT_NOLEARN, 1);
134				cpsw_ale_control_set(ale, i,
135						     ALE_PORT_NO_SA_UPDATE, 1);
136			}
137
138			/* Clear All Untouched entries */
139			cpsw_ale_control_set(ale, 0, ALE_AGEOUT, 1);
140			do {
141				cpu_relax();
142				if (cpsw_ale_control_get(ale, 0, ALE_AGEOUT))
143					break;
144			} while (time_after(timeout, jiffies));
145			cpsw_ale_control_set(ale, 0, ALE_AGEOUT, 1);
146
147			/* Clear all mcast from ALE */
148			cpsw_ale_flush_multicast(ale, ALE_ALL_PORTS, -1);
149			__hw_addr_ref_unsync_dev(&ndev->mc, ndev, NULL);
150
151			/* Flood All Unicast Packets to Host port */
152			cpsw_ale_control_set(ale, 0, ALE_P0_UNI_FLOOD, 1);
153			dev_dbg(&ndev->dev, "promiscuity enabled\n");
154		} else {
155			/* Don't Flood All Unicast Packets to Host port */
156			cpsw_ale_control_set(ale, 0, ALE_P0_UNI_FLOOD, 0);
157
158			/* Enable Learn for all ports (host is port 0 and slaves are port 1 and up */
159			for (i = 0; i <= cpsw->data.slaves; i++) {
160				cpsw_ale_control_set(ale, i,
161						     ALE_PORT_NOLEARN, 0);
162				cpsw_ale_control_set(ale, i,
163						     ALE_PORT_NO_SA_UPDATE, 0);
164			}
165			dev_dbg(&ndev->dev, "promiscuity disabled\n");
166		}
167	}
168}
169
170/**
171 * cpsw_set_mc - adds multicast entry to the table if it's not added or deletes
172 * if it's not deleted
173 * @ndev: device to sync
174 * @addr: address to be added or deleted
175 * @vid: vlan id, if vid < 0 set/unset address for real device
176 * @add: add address if the flag is set or remove otherwise
177 */
178static int cpsw_set_mc(struct net_device *ndev, const u8 *addr,
179		       int vid, int add)
180{
181	struct cpsw_priv *priv = netdev_priv(ndev);
182	struct cpsw_common *cpsw = priv->cpsw;
183	int mask, flags, ret;
184
185	if (vid < 0) {
186		if (cpsw->data.dual_emac)
187			vid = cpsw->slaves[priv->emac_port].port_vlan;
188		else
189			vid = 0;
190	}
191
192	mask = cpsw->data.dual_emac ? ALE_PORT_HOST : ALE_ALL_PORTS;
193	flags = vid ? ALE_VLAN : 0;
194
195	if (add)
196		ret = cpsw_ale_add_mcast(cpsw->ale, addr, mask, flags, vid, 0);
197	else
198		ret = cpsw_ale_del_mcast(cpsw->ale, addr, 0, flags, vid);
199
200	return ret;
201}
202
203static int cpsw_update_vlan_mc(struct net_device *vdev, int vid, void *ctx)
204{
205	struct addr_sync_ctx *sync_ctx = ctx;
206	struct netdev_hw_addr *ha;
207	int found = 0, ret = 0;
208
209	if (!vdev || !(vdev->flags & IFF_UP))
210		return 0;
211
212	/* vlan address is relevant if its sync_cnt != 0 */
213	netdev_for_each_mc_addr(ha, vdev) {
214		if (ether_addr_equal(ha->addr, sync_ctx->addr)) {
215			found = ha->sync_cnt;
216			break;
217		}
218	}
219
220	if (found)
221		sync_ctx->consumed++;
222
223	if (sync_ctx->flush) {
224		if (!found)
225			cpsw_set_mc(sync_ctx->ndev, sync_ctx->addr, vid, 0);
226		return 0;
227	}
228
229	if (found)
230		ret = cpsw_set_mc(sync_ctx->ndev, sync_ctx->addr, vid, 1);
231
232	return ret;
233}
234
235static int cpsw_add_mc_addr(struct net_device *ndev, const u8 *addr, int num)
236{
237	struct addr_sync_ctx sync_ctx;
238	int ret;
239
240	sync_ctx.consumed = 0;
241	sync_ctx.addr = addr;
242	sync_ctx.ndev = ndev;
243	sync_ctx.flush = 0;
244
245	ret = vlan_for_each(ndev, cpsw_update_vlan_mc, &sync_ctx);
246	if (sync_ctx.consumed < num && !ret)
247		ret = cpsw_set_mc(ndev, addr, -1, 1);
248
249	return ret;
250}
251
252static int cpsw_del_mc_addr(struct net_device *ndev, const u8 *addr, int num)
253{
254	struct addr_sync_ctx sync_ctx;
255
256	sync_ctx.consumed = 0;
257	sync_ctx.addr = addr;
258	sync_ctx.ndev = ndev;
259	sync_ctx.flush = 1;
260
261	vlan_for_each(ndev, cpsw_update_vlan_mc, &sync_ctx);
262	if (sync_ctx.consumed == num)
263		cpsw_set_mc(ndev, addr, -1, 0);
264
265	return 0;
266}
267
268static int cpsw_purge_vlan_mc(struct net_device *vdev, int vid, void *ctx)
269{
270	struct addr_sync_ctx *sync_ctx = ctx;
271	struct netdev_hw_addr *ha;
272	int found = 0;
273
274	if (!vdev || !(vdev->flags & IFF_UP))
275		return 0;
276
277	/* vlan address is relevant if its sync_cnt != 0 */
278	netdev_for_each_mc_addr(ha, vdev) {
279		if (ether_addr_equal(ha->addr, sync_ctx->addr)) {
280			found = ha->sync_cnt;
281			break;
282		}
283	}
284
285	if (!found)
286		return 0;
287
288	sync_ctx->consumed++;
289	cpsw_set_mc(sync_ctx->ndev, sync_ctx->addr, vid, 0);
290	return 0;
291}
292
293static int cpsw_purge_all_mc(struct net_device *ndev, const u8 *addr, int num)
294{
295	struct addr_sync_ctx sync_ctx;
296
297	sync_ctx.addr = addr;
298	sync_ctx.ndev = ndev;
299	sync_ctx.consumed = 0;
300
301	vlan_for_each(ndev, cpsw_purge_vlan_mc, &sync_ctx);
302	if (sync_ctx.consumed < num)
303		cpsw_set_mc(ndev, addr, -1, 0);
304
305	return 0;
306}
307
308static void cpsw_ndo_set_rx_mode(struct net_device *ndev)
309{
310	struct cpsw_priv *priv = netdev_priv(ndev);
311	struct cpsw_common *cpsw = priv->cpsw;
312	int slave_port = -1;
313
314	if (cpsw->data.dual_emac)
315		slave_port = priv->emac_port + 1;
316
317	if (ndev->flags & IFF_PROMISC) {
318		/* Enable promiscuous mode */
319		cpsw_set_promiscious(ndev, true);
320		cpsw_ale_set_allmulti(cpsw->ale, IFF_ALLMULTI, slave_port);
321		return;
322	} else {
323		/* Disable promiscuous mode */
324		cpsw_set_promiscious(ndev, false);
325	}
326
327	/* Restore allmulti on vlans if necessary */
328	cpsw_ale_set_allmulti(cpsw->ale,
329			      ndev->flags & IFF_ALLMULTI, slave_port);
330
331	/* add/remove mcast address either for real netdev or for vlan */
332	__hw_addr_ref_sync_dev(&ndev->mc, ndev, cpsw_add_mc_addr,
333			       cpsw_del_mc_addr);
334}
335
336static unsigned int cpsw_rxbuf_total_len(unsigned int len)
337{
338	len += CPSW_HEADROOM;
339	len += SKB_DATA_ALIGN(sizeof(struct skb_shared_info));
340
341	return SKB_DATA_ALIGN(len);
342}
343
344static void cpsw_rx_handler(void *token, int len, int status)
345{
346	struct page		*new_page, *page = token;
347	void			*pa = page_address(page);
348	struct cpsw_meta_xdp	*xmeta = pa + CPSW_XMETA_OFFSET;
349	struct cpsw_common	*cpsw = ndev_to_cpsw(xmeta->ndev);
350	int			pkt_size = cpsw->rx_packet_max;
351	int			ret = 0, port, ch = xmeta->ch;
352	int			headroom = CPSW_HEADROOM;
353	struct net_device	*ndev = xmeta->ndev;
354	struct cpsw_priv	*priv;
355	struct page_pool	*pool;
356	struct sk_buff		*skb;
357	struct xdp_buff		xdp;
358	dma_addr_t		dma;
359
360	if (cpsw->data.dual_emac && status >= 0) {
361		port = CPDMA_RX_SOURCE_PORT(status);
362		if (port)
363			ndev = cpsw->slaves[--port].ndev;
364	}
365
366	priv = netdev_priv(ndev);
367	pool = cpsw->page_pool[ch];
368	if (unlikely(status < 0) || unlikely(!netif_running(ndev))) {
369		/* In dual emac mode check for all interfaces */
370		if (cpsw->data.dual_emac && cpsw->usage_count &&
371		    (status >= 0)) {
372			/* The packet received is for the interface which
373			 * is already down and the other interface is up
374			 * and running, instead of freeing which results
375			 * in reducing of the number of rx descriptor in
376			 * DMA engine, requeue page back to cpdma.
377			 */
378			new_page = page;
379			goto requeue;
380		}
381
382		/* the interface is going down, pages are purged */
383		page_pool_recycle_direct(pool, page);
384		return;
385	}
386
387	new_page = page_pool_dev_alloc_pages(pool);
388	if (unlikely(!new_page)) {
389		new_page = page;
390		ndev->stats.rx_dropped++;
391		goto requeue;
392	}
393
394	if (priv->xdp_prog) {
395		if (status & CPDMA_RX_VLAN_ENCAP) {
396			xdp.data = pa + CPSW_HEADROOM +
397				   CPSW_RX_VLAN_ENCAP_HDR_SIZE;
398			xdp.data_end = xdp.data + len -
399				       CPSW_RX_VLAN_ENCAP_HDR_SIZE;
400		} else {
401			xdp.data = pa + CPSW_HEADROOM;
402			xdp.data_end = xdp.data + len;
403		}
404
405		xdp_set_data_meta_invalid(&xdp);
406
407		xdp.data_hard_start = pa;
408		xdp.rxq = &priv->xdp_rxq[ch];
409		xdp.frame_sz = PAGE_SIZE;
410
411		port = priv->emac_port + cpsw->data.dual_emac;
412		ret = cpsw_run_xdp(priv, ch, &xdp, page, port);
413		if (ret != CPSW_XDP_PASS)
414			goto requeue;
415
416		/* XDP prog might have changed packet data and boundaries */
417		len = xdp.data_end - xdp.data;
418		headroom = xdp.data - xdp.data_hard_start;
419
420		/* XDP prog can modify vlan tag, so can't use encap header */
421		status &= ~CPDMA_RX_VLAN_ENCAP;
422	}
423
424	/* pass skb to netstack if no XDP prog or returned XDP_PASS */
425	skb = build_skb(pa, cpsw_rxbuf_total_len(pkt_size));
426	if (!skb) {
427		ndev->stats.rx_dropped++;
428		page_pool_recycle_direct(pool, page);
429		goto requeue;
430	}
431
432	skb_reserve(skb, headroom);
433	skb_put(skb, len);
434	skb->dev = ndev;
435	if (status & CPDMA_RX_VLAN_ENCAP)
436		cpsw_rx_vlan_encap(skb);
437	if (priv->rx_ts_enabled)
438		cpts_rx_timestamp(cpsw->cpts, skb);
439	skb->protocol = eth_type_trans(skb, ndev);
440
441	/* unmap page as no netstack skb page recycling */
442	page_pool_release_page(pool, page);
443	netif_receive_skb(skb);
444
445	ndev->stats.rx_bytes += len;
446	ndev->stats.rx_packets++;
447
448requeue:
449	xmeta = page_address(new_page) + CPSW_XMETA_OFFSET;
450	xmeta->ndev = ndev;
451	xmeta->ch = ch;
452
453	dma = page_pool_get_dma_addr(new_page) + CPSW_HEADROOM;
454	ret = cpdma_chan_submit_mapped(cpsw->rxv[ch].ch, new_page, dma,
455				       pkt_size, 0);
456	if (ret < 0) {
457		WARN_ON(ret == -ENOMEM);
458		page_pool_recycle_direct(pool, new_page);
459	}
460}
461
462static void _cpsw_adjust_link(struct cpsw_slave *slave,
463			      struct cpsw_priv *priv, bool *link)
464{
465	struct phy_device	*phy = slave->phy;
466	u32			mac_control = 0;
467	u32			slave_port;
468	struct cpsw_common *cpsw = priv->cpsw;
469
470	if (!phy)
471		return;
472
473	slave_port = cpsw_get_slave_port(slave->slave_num);
474
475	if (phy->link) {
476		mac_control = CPSW_SL_CTL_GMII_EN;
477
478		if (phy->speed == 1000)
479			mac_control |= CPSW_SL_CTL_GIG;
480		if (phy->duplex)
481			mac_control |= CPSW_SL_CTL_FULLDUPLEX;
482
483		/* set speed_in input in case RMII mode is used in 100Mbps */
484		if (phy->speed == 100)
485			mac_control |= CPSW_SL_CTL_IFCTL_A;
486		/* in band mode only works in 10Mbps RGMII mode */
487		else if ((phy->speed == 10) && phy_interface_is_rgmii(phy))
488			mac_control |= CPSW_SL_CTL_EXT_EN; /* In Band mode */
489
490		if (priv->rx_pause)
491			mac_control |= CPSW_SL_CTL_RX_FLOW_EN;
492
493		if (priv->tx_pause)
494			mac_control |= CPSW_SL_CTL_TX_FLOW_EN;
495
496		if (mac_control != slave->mac_control)
497			cpsw_sl_ctl_set(slave->mac_sl, mac_control);
498
499		/* enable forwarding */
500		cpsw_ale_control_set(cpsw->ale, slave_port,
501				     ALE_PORT_STATE, ALE_PORT_STATE_FORWARD);
502
503		*link = true;
504
505		if (priv->shp_cfg_speed &&
506		    priv->shp_cfg_speed != slave->phy->speed &&
507		    !cpsw_shp_is_off(priv))
508			dev_warn(priv->dev,
509				 "Speed was changed, CBS shaper speeds are changed!");
510	} else {
511		mac_control = 0;
512		/* disable forwarding */
513		cpsw_ale_control_set(cpsw->ale, slave_port,
514				     ALE_PORT_STATE, ALE_PORT_STATE_DISABLE);
515
516		cpsw_sl_wait_for_idle(slave->mac_sl, 100);
517
518		cpsw_sl_ctl_reset(slave->mac_sl);
519	}
520
521	if (mac_control != slave->mac_control)
522		phy_print_status(phy);
523
524	slave->mac_control = mac_control;
525}
526
527static void cpsw_adjust_link(struct net_device *ndev)
528{
529	struct cpsw_priv	*priv = netdev_priv(ndev);
530	struct cpsw_common	*cpsw = priv->cpsw;
531	bool			link = false;
532
533	for_each_slave(priv, _cpsw_adjust_link, priv, &link);
534
535	if (link) {
536		if (cpsw_need_resplit(cpsw))
537			cpsw_split_res(cpsw);
538
539		netif_carrier_on(ndev);
540		if (netif_running(ndev))
541			netif_tx_wake_all_queues(ndev);
542	} else {
543		netif_carrier_off(ndev);
544		netif_tx_stop_all_queues(ndev);
545	}
546}
547
548static inline void cpsw_add_dual_emac_def_ale_entries(
549		struct cpsw_priv *priv, struct cpsw_slave *slave,
550		u32 slave_port)
551{
552	struct cpsw_common *cpsw = priv->cpsw;
553	u32 port_mask = 1 << slave_port | ALE_PORT_HOST;
554
555	if (cpsw->version == CPSW_VERSION_1)
556		slave_write(slave, slave->port_vlan, CPSW1_PORT_VLAN);
557	else
558		slave_write(slave, slave->port_vlan, CPSW2_PORT_VLAN);
559	cpsw_ale_add_vlan(cpsw->ale, slave->port_vlan, port_mask,
560			  port_mask, port_mask, 0);
561	cpsw_ale_add_mcast(cpsw->ale, priv->ndev->broadcast,
562			   ALE_PORT_HOST, ALE_VLAN, slave->port_vlan, 0);
563	cpsw_ale_add_ucast(cpsw->ale, priv->mac_addr,
564			   HOST_PORT_NUM, ALE_VLAN |
565			   ALE_SECURE, slave->port_vlan);
566	cpsw_ale_control_set(cpsw->ale, slave_port,
567			     ALE_PORT_DROP_UNKNOWN_VLAN, 1);
568}
569
570static void cpsw_slave_open(struct cpsw_slave *slave, struct cpsw_priv *priv)
571{
572	u32 slave_port;
573	struct phy_device *phy;
574	struct cpsw_common *cpsw = priv->cpsw;
575
576	cpsw_sl_reset(slave->mac_sl, 100);
577	cpsw_sl_ctl_reset(slave->mac_sl);
578
579	/* setup priority mapping */
580	cpsw_sl_reg_write(slave->mac_sl, CPSW_SL_RX_PRI_MAP,
581			  RX_PRIORITY_MAPPING);
582
583	switch (cpsw->version) {
584	case CPSW_VERSION_1:
585		slave_write(slave, TX_PRIORITY_MAPPING, CPSW1_TX_PRI_MAP);
586		/* Increase RX FIFO size to 5 for supporting fullduplex
587		 * flow control mode
588		 */
589		slave_write(slave,
590			    (CPSW_MAX_BLKS_TX << CPSW_MAX_BLKS_TX_SHIFT) |
591			    CPSW_MAX_BLKS_RX, CPSW1_MAX_BLKS);
592		break;
593	case CPSW_VERSION_2:
594	case CPSW_VERSION_3:
595	case CPSW_VERSION_4:
596		slave_write(slave, TX_PRIORITY_MAPPING, CPSW2_TX_PRI_MAP);
597		/* Increase RX FIFO size to 5 for supporting fullduplex
598		 * flow control mode
599		 */
600		slave_write(slave,
601			    (CPSW_MAX_BLKS_TX << CPSW_MAX_BLKS_TX_SHIFT) |
602			    CPSW_MAX_BLKS_RX, CPSW2_MAX_BLKS);
603		break;
604	}
605
606	/* setup max packet size, and mac address */
607	cpsw_sl_reg_write(slave->mac_sl, CPSW_SL_RX_MAXLEN,
608			  cpsw->rx_packet_max);
609	cpsw_set_slave_mac(slave, priv);
610
611	slave->mac_control = 0;	/* no link yet */
612
613	slave_port = cpsw_get_slave_port(slave->slave_num);
614
615	if (cpsw->data.dual_emac)
616		cpsw_add_dual_emac_def_ale_entries(priv, slave, slave_port);
617	else
618		cpsw_ale_add_mcast(cpsw->ale, priv->ndev->broadcast,
619				   1 << slave_port, 0, 0, ALE_MCAST_FWD_2);
620
621	if (slave->data->phy_node) {
622		phy = of_phy_connect(priv->ndev, slave->data->phy_node,
623				 &cpsw_adjust_link, 0, slave->data->phy_if);
624		if (!phy) {
625			dev_err(priv->dev, "phy \"%pOF\" not found on slave %d\n",
626				slave->data->phy_node,
627				slave->slave_num);
628			return;
629		}
630	} else {
631		phy = phy_connect(priv->ndev, slave->data->phy_id,
632				 &cpsw_adjust_link, slave->data->phy_if);
633		if (IS_ERR(phy)) {
634			dev_err(priv->dev,
635				"phy \"%s\" not found on slave %d, err %ld\n",
636				slave->data->phy_id, slave->slave_num,
637				PTR_ERR(phy));
638			return;
639		}
640	}
641
642	slave->phy = phy;
643
644	phy_attached_info(slave->phy);
645
646	phy_start(slave->phy);
647
648	/* Configure GMII_SEL register */
649	if (!IS_ERR(slave->data->ifphy))
650		phy_set_mode_ext(slave->data->ifphy, PHY_MODE_ETHERNET,
651				 slave->data->phy_if);
652	else
653		cpsw_phy_sel(cpsw->dev, slave->phy->interface,
654			     slave->slave_num);
655}
656
657static inline void cpsw_add_default_vlan(struct cpsw_priv *priv)
658{
659	struct cpsw_common *cpsw = priv->cpsw;
660	const int vlan = cpsw->data.default_vlan;
661	u32 reg;
662	int i;
663	int unreg_mcast_mask;
664
665	reg = (cpsw->version == CPSW_VERSION_1) ? CPSW1_PORT_VLAN :
666	       CPSW2_PORT_VLAN;
667
668	writel(vlan, &cpsw->host_port_regs->port_vlan);
669
670	for (i = 0; i < cpsw->data.slaves; i++)
671		slave_write(cpsw->slaves + i, vlan, reg);
672
673	if (priv->ndev->flags & IFF_ALLMULTI)
674		unreg_mcast_mask = ALE_ALL_PORTS;
675	else
676		unreg_mcast_mask = ALE_PORT_1 | ALE_PORT_2;
677
678	cpsw_ale_add_vlan(cpsw->ale, vlan, ALE_ALL_PORTS,
679			  ALE_ALL_PORTS, ALE_ALL_PORTS,
680			  unreg_mcast_mask);
681}
682
683static void cpsw_init_host_port(struct cpsw_priv *priv)
684{
685	u32 fifo_mode;
686	u32 control_reg;
687	struct cpsw_common *cpsw = priv->cpsw;
688
689	/* soft reset the controller and initialize ale */
690	soft_reset("cpsw", &cpsw->regs->soft_reset);
691	cpsw_ale_start(cpsw->ale);
692
693	/* switch to vlan unaware mode */
694	cpsw_ale_control_set(cpsw->ale, HOST_PORT_NUM, ALE_VLAN_AWARE,
695			     CPSW_ALE_VLAN_AWARE);
696	control_reg = readl(&cpsw->regs->control);
697	control_reg |= CPSW_VLAN_AWARE | CPSW_RX_VLAN_ENCAP;
698	writel(control_reg, &cpsw->regs->control);
699	fifo_mode = (cpsw->data.dual_emac) ? CPSW_FIFO_DUAL_MAC_MODE :
700		     CPSW_FIFO_NORMAL_MODE;
701	writel(fifo_mode, &cpsw->host_port_regs->tx_in_ctl);
702
703	/* setup host port priority mapping */
704	writel_relaxed(CPDMA_TX_PRIORITY_MAP,
705		       &cpsw->host_port_regs->cpdma_tx_pri_map);
706	writel_relaxed(0, &cpsw->host_port_regs->cpdma_rx_chan_map);
707
708	cpsw_ale_control_set(cpsw->ale, HOST_PORT_NUM,
709			     ALE_PORT_STATE, ALE_PORT_STATE_FORWARD);
710
711	if (!cpsw->data.dual_emac) {
712		cpsw_ale_add_ucast(cpsw->ale, priv->mac_addr, HOST_PORT_NUM,
713				   0, 0);
714		cpsw_ale_add_mcast(cpsw->ale, priv->ndev->broadcast,
715				   ALE_PORT_HOST, 0, 0, ALE_MCAST_FWD_2);
716	}
717}
718
719static void cpsw_slave_stop(struct cpsw_slave *slave, struct cpsw_common *cpsw)
720{
721	u32 slave_port;
722
723	slave_port = cpsw_get_slave_port(slave->slave_num);
724
725	if (!slave->phy)
726		return;
727	phy_stop(slave->phy);
728	phy_disconnect(slave->phy);
729	slave->phy = NULL;
730	cpsw_ale_control_set(cpsw->ale, slave_port,
731			     ALE_PORT_STATE, ALE_PORT_STATE_DISABLE);
732	cpsw_sl_reset(slave->mac_sl, 100);
733	cpsw_sl_ctl_reset(slave->mac_sl);
734}
735
736static int cpsw_restore_vlans(struct net_device *vdev, int vid, void *arg)
737{
738	struct cpsw_priv *priv = arg;
739
740	if (!vdev)
741		return 0;
742
743	cpsw_ndo_vlan_rx_add_vid(priv->ndev, 0, vid);
744	return 0;
745}
746
747/* restore resources after port reset */
748static void cpsw_restore(struct cpsw_priv *priv)
749{
750	/* restore vlan configurations */
751	vlan_for_each(priv->ndev, cpsw_restore_vlans, priv);
752
753	/* restore MQPRIO offload */
754	for_each_slave(priv, cpsw_mqprio_resume, priv);
755
756	/* restore CBS offload */
757	for_each_slave(priv, cpsw_cbs_resume, priv);
758}
759
760static int cpsw_ndo_open(struct net_device *ndev)
761{
762	struct cpsw_priv *priv = netdev_priv(ndev);
763	struct cpsw_common *cpsw = priv->cpsw;
764	int ret;
765	u32 reg;
766
767	ret = pm_runtime_get_sync(cpsw->dev);
768	if (ret < 0) {
769		pm_runtime_put_noidle(cpsw->dev);
770		return ret;
771	}
772
773	netif_carrier_off(ndev);
774
775	/* Notify the stack of the actual queue counts. */
776	ret = netif_set_real_num_tx_queues(ndev, cpsw->tx_ch_num);
777	if (ret) {
778		dev_err(priv->dev, "cannot set real number of tx queues\n");
779		goto err_cleanup;
780	}
781
782	ret = netif_set_real_num_rx_queues(ndev, cpsw->rx_ch_num);
783	if (ret) {
784		dev_err(priv->dev, "cannot set real number of rx queues\n");
785		goto err_cleanup;
786	}
787
788	reg = cpsw->version;
789
790	dev_info(priv->dev, "initializing cpsw version %d.%d (%d)\n",
791		 CPSW_MAJOR_VERSION(reg), CPSW_MINOR_VERSION(reg),
792		 CPSW_RTL_VERSION(reg));
793
794	/* Initialize host and slave ports */
795	if (!cpsw->usage_count)
796		cpsw_init_host_port(priv);
797	for_each_slave(priv, cpsw_slave_open, priv);
798
799	/* Add default VLAN */
800	if (!cpsw->data.dual_emac)
801		cpsw_add_default_vlan(priv);
802	else
803		cpsw_ale_add_vlan(cpsw->ale, cpsw->data.default_vlan,
804				  ALE_ALL_PORTS, ALE_ALL_PORTS, 0, 0);
805
806	/* initialize shared resources for every ndev */
807	if (!cpsw->usage_count) {
808		/* disable priority elevation */
809		writel_relaxed(0, &cpsw->regs->ptype);
810
811		/* enable statistics collection only on all ports */
812		writel_relaxed(0x7, &cpsw->regs->stat_port_en);
813
814		/* Enable internal fifo flow control */
815		writel(0x7, &cpsw->regs->flow_control);
816
817		napi_enable(&cpsw->napi_rx);
818		napi_enable(&cpsw->napi_tx);
819
820		if (cpsw->tx_irq_disabled) {
821			cpsw->tx_irq_disabled = false;
822			enable_irq(cpsw->irqs_table[1]);
823		}
824
825		if (cpsw->rx_irq_disabled) {
826			cpsw->rx_irq_disabled = false;
827			enable_irq(cpsw->irqs_table[0]);
828		}
829
830		/* create rxqs for both infs in dual mac as they use same pool
831		 * and must be destroyed together when no users.
832		 */
833		ret = cpsw_create_xdp_rxqs(cpsw);
834		if (ret < 0)
835			goto err_cleanup;
836
837		ret = cpsw_fill_rx_channels(priv);
838		if (ret < 0)
839			goto err_cleanup;
840
841		if (cpsw->cpts) {
842			if (cpts_register(cpsw->cpts))
843				dev_err(priv->dev, "error registering cpts device\n");
844			else
845				writel(0x10, &cpsw->wr_regs->misc_en);
846		}
847	}
848
849	cpsw_restore(priv);
850
851	/* Enable Interrupt pacing if configured */
852	if (cpsw->coal_intvl != 0) {
853		struct ethtool_coalesce coal;
854
855		coal.rx_coalesce_usecs = cpsw->coal_intvl;
856		cpsw_set_coalesce(ndev, &coal);
857	}
858
859	cpdma_ctlr_start(cpsw->dma);
860	cpsw_intr_enable(cpsw);
861	cpsw->usage_count++;
862
863	return 0;
864
865err_cleanup:
866	if (!cpsw->usage_count) {
867		napi_disable(&cpsw->napi_rx);
868		napi_disable(&cpsw->napi_tx);
869		cpdma_ctlr_stop(cpsw->dma);
870		cpsw_destroy_xdp_rxqs(cpsw);
871	}
872
873	for_each_slave(priv, cpsw_slave_stop, cpsw);
874	pm_runtime_put_sync(cpsw->dev);
875	netif_carrier_off(priv->ndev);
876	return ret;
877}
878
879static int cpsw_ndo_stop(struct net_device *ndev)
880{
881	struct cpsw_priv *priv = netdev_priv(ndev);
882	struct cpsw_common *cpsw = priv->cpsw;
883
884	cpsw_info(priv, ifdown, "shutting down cpsw device\n");
885	__hw_addr_ref_unsync_dev(&ndev->mc, ndev, cpsw_purge_all_mc);
886	netif_tx_stop_all_queues(priv->ndev);
887	netif_carrier_off(priv->ndev);
888
889	if (cpsw->usage_count <= 1) {
890		napi_disable(&cpsw->napi_rx);
891		napi_disable(&cpsw->napi_tx);
892		cpts_unregister(cpsw->cpts);
893		cpsw_intr_disable(cpsw);
894		cpdma_ctlr_stop(cpsw->dma);
895		cpsw_ale_stop(cpsw->ale);
896		cpsw_destroy_xdp_rxqs(cpsw);
897	}
898	for_each_slave(priv, cpsw_slave_stop, cpsw);
899
900	if (cpsw_need_resplit(cpsw))
901		cpsw_split_res(cpsw);
902
903	cpsw->usage_count--;
904	pm_runtime_put_sync(cpsw->dev);
905	return 0;
906}
907
908static netdev_tx_t cpsw_ndo_start_xmit(struct sk_buff *skb,
909				       struct net_device *ndev)
910{
911	struct cpsw_priv *priv = netdev_priv(ndev);
912	struct cpsw_common *cpsw = priv->cpsw;
913	struct cpts *cpts = cpsw->cpts;
914	struct netdev_queue *txq;
915	struct cpdma_chan *txch;
916	int ret, q_idx;
917
918	if (skb_padto(skb, CPSW_MIN_PACKET_SIZE)) {
919		cpsw_err(priv, tx_err, "packet pad failed\n");
920		ndev->stats.tx_dropped++;
921		return NET_XMIT_DROP;
922	}
923
924	if (skb_shinfo(skb)->tx_flags & SKBTX_HW_TSTAMP &&
925	    priv->tx_ts_enabled && cpts_can_timestamp(cpts, skb))
926		skb_shinfo(skb)->tx_flags |= SKBTX_IN_PROGRESS;
927
928	q_idx = skb_get_queue_mapping(skb);
929	if (q_idx >= cpsw->tx_ch_num)
930		q_idx = q_idx % cpsw->tx_ch_num;
931
932	txch = cpsw->txv[q_idx].ch;
933	txq = netdev_get_tx_queue(ndev, q_idx);
934	skb_tx_timestamp(skb);
935	ret = cpdma_chan_submit(txch, skb, skb->data, skb->len,
936				priv->emac_port + cpsw->data.dual_emac);
937	if (unlikely(ret != 0)) {
938		cpsw_err(priv, tx_err, "desc submit failed\n");
939		goto fail;
940	}
941
942	/* If there is no more tx desc left free then we need to
943	 * tell the kernel to stop sending us tx frames.
944	 */
945	if (unlikely(!cpdma_check_free_tx_desc(txch))) {
946		netif_tx_stop_queue(txq);
947
948		/* Barrier, so that stop_queue visible to other cpus */
949		smp_mb__after_atomic();
950
951		if (cpdma_check_free_tx_desc(txch))
952			netif_tx_wake_queue(txq);
953	}
954
955	return NETDEV_TX_OK;
956fail:
957	ndev->stats.tx_dropped++;
958	netif_tx_stop_queue(txq);
959
960	/* Barrier, so that stop_queue visible to other cpus */
961	smp_mb__after_atomic();
962
963	if (cpdma_check_free_tx_desc(txch))
964		netif_tx_wake_queue(txq);
965
966	return NETDEV_TX_BUSY;
967}
968
969static int cpsw_ndo_set_mac_address(struct net_device *ndev, void *p)
970{
971	struct cpsw_priv *priv = netdev_priv(ndev);
972	struct sockaddr *addr = (struct sockaddr *)p;
973	struct cpsw_common *cpsw = priv->cpsw;
974	int flags = 0;
975	u16 vid = 0;
976	int ret;
977
978	if (!is_valid_ether_addr(addr->sa_data))
979		return -EADDRNOTAVAIL;
980
981	ret = pm_runtime_get_sync(cpsw->dev);
982	if (ret < 0) {
983		pm_runtime_put_noidle(cpsw->dev);
984		return ret;
985	}
986
987	if (cpsw->data.dual_emac) {
988		vid = cpsw->slaves[priv->emac_port].port_vlan;
989		flags = ALE_VLAN;
990	}
991
992	cpsw_ale_del_ucast(cpsw->ale, priv->mac_addr, HOST_PORT_NUM,
993			   flags, vid);
994	cpsw_ale_add_ucast(cpsw->ale, addr->sa_data, HOST_PORT_NUM,
995			   flags, vid);
996
997	memcpy(priv->mac_addr, addr->sa_data, ETH_ALEN);
998	memcpy(ndev->dev_addr, priv->mac_addr, ETH_ALEN);
999	for_each_slave(priv, cpsw_set_slave_mac, priv);
1000
1001	pm_runtime_put(cpsw->dev);
1002
1003	return 0;
1004}
1005
1006static inline int cpsw_add_vlan_ale_entry(struct cpsw_priv *priv,
1007				unsigned short vid)
1008{
1009	int ret;
1010	int unreg_mcast_mask = 0;
1011	int mcast_mask;
1012	u32 port_mask;
1013	struct cpsw_common *cpsw = priv->cpsw;
1014
1015	if (cpsw->data.dual_emac) {
1016		port_mask = (1 << (priv->emac_port + 1)) | ALE_PORT_HOST;
1017
1018		mcast_mask = ALE_PORT_HOST;
1019		if (priv->ndev->flags & IFF_ALLMULTI)
1020			unreg_mcast_mask = mcast_mask;
1021	} else {
1022		port_mask = ALE_ALL_PORTS;
1023		mcast_mask = port_mask;
1024
1025		if (priv->ndev->flags & IFF_ALLMULTI)
1026			unreg_mcast_mask = ALE_ALL_PORTS;
1027		else
1028			unreg_mcast_mask = ALE_PORT_1 | ALE_PORT_2;
1029	}
1030
1031	ret = cpsw_ale_add_vlan(cpsw->ale, vid, port_mask, 0, port_mask,
1032				unreg_mcast_mask);
1033	if (ret != 0)
1034		return ret;
1035
1036	ret = cpsw_ale_add_ucast(cpsw->ale, priv->mac_addr,
1037				 HOST_PORT_NUM, ALE_VLAN, vid);
1038	if (ret != 0)
1039		goto clean_vid;
1040
1041	ret = cpsw_ale_add_mcast(cpsw->ale, priv->ndev->broadcast,
1042				 mcast_mask, ALE_VLAN, vid, 0);
1043	if (ret != 0)
1044		goto clean_vlan_ucast;
1045	return 0;
1046
1047clean_vlan_ucast:
1048	cpsw_ale_del_ucast(cpsw->ale, priv->mac_addr,
1049			   HOST_PORT_NUM, ALE_VLAN, vid);
1050clean_vid:
1051	cpsw_ale_del_vlan(cpsw->ale, vid, 0);
1052	return ret;
1053}
1054
1055static int cpsw_ndo_vlan_rx_add_vid(struct net_device *ndev,
1056				    __be16 proto, u16 vid)
1057{
1058	struct cpsw_priv *priv = netdev_priv(ndev);
1059	struct cpsw_common *cpsw = priv->cpsw;
1060	int ret;
1061
1062	if (vid == cpsw->data.default_vlan)
1063		return 0;
1064
1065	ret = pm_runtime_get_sync(cpsw->dev);
1066	if (ret < 0) {
1067		pm_runtime_put_noidle(cpsw->dev);
1068		return ret;
1069	}
1070
1071	if (cpsw->data.dual_emac) {
1072		/* In dual EMAC, reserved VLAN id should not be used for
1073		 * creating VLAN interfaces as this can break the dual
1074		 * EMAC port separation
1075		 */
1076		int i;
1077
1078		for (i = 0; i < cpsw->data.slaves; i++) {
1079			if (vid == cpsw->slaves[i].port_vlan) {
1080				ret = -EINVAL;
1081				goto err;
1082			}
1083		}
1084	}
1085
1086	dev_info(priv->dev, "Adding vlanid %d to vlan filter\n", vid);
1087	ret = cpsw_add_vlan_ale_entry(priv, vid);
1088err:
1089	pm_runtime_put(cpsw->dev);
1090	return ret;
1091}
1092
1093static int cpsw_ndo_vlan_rx_kill_vid(struct net_device *ndev,
1094				     __be16 proto, u16 vid)
1095{
1096	struct cpsw_priv *priv = netdev_priv(ndev);
1097	struct cpsw_common *cpsw = priv->cpsw;
1098	int ret;
1099
1100	if (vid == cpsw->data.default_vlan)
1101		return 0;
1102
1103	ret = pm_runtime_get_sync(cpsw->dev);
1104	if (ret < 0) {
1105		pm_runtime_put_noidle(cpsw->dev);
1106		return ret;
1107	}
1108
1109	if (cpsw->data.dual_emac) {
1110		int i;
1111
1112		for (i = 0; i < cpsw->data.slaves; i++) {
1113			if (vid == cpsw->slaves[i].port_vlan)
1114				goto err;
1115		}
1116	}
1117
1118	dev_info(priv->dev, "removing vlanid %d from vlan filter\n", vid);
1119	ret = cpsw_ale_del_vlan(cpsw->ale, vid, 0);
1120	ret |= cpsw_ale_del_ucast(cpsw->ale, priv->mac_addr,
1121				  HOST_PORT_NUM, ALE_VLAN, vid);
1122	ret |= cpsw_ale_del_mcast(cpsw->ale, priv->ndev->broadcast,
1123				  0, ALE_VLAN, vid);
1124	ret |= cpsw_ale_flush_multicast(cpsw->ale, ALE_PORT_HOST, vid);
1125err:
1126	pm_runtime_put(cpsw->dev);
1127	return ret;
1128}
1129
1130static int cpsw_ndo_xdp_xmit(struct net_device *ndev, int n,
1131			     struct xdp_frame **frames, u32 flags)
1132{
1133	struct cpsw_priv *priv = netdev_priv(ndev);
1134	struct cpsw_common *cpsw = priv->cpsw;
1135	struct xdp_frame *xdpf;
1136	int i, drops = 0, port;
1137
1138	if (unlikely(flags & ~XDP_XMIT_FLAGS_MASK))
1139		return -EINVAL;
1140
1141	for (i = 0; i < n; i++) {
1142		xdpf = frames[i];
1143		if (xdpf->len < CPSW_MIN_PACKET_SIZE) {
1144			xdp_return_frame_rx_napi(xdpf);
1145			drops++;
1146			continue;
1147		}
1148
1149		port = priv->emac_port + cpsw->data.dual_emac;
1150		if (cpsw_xdp_tx_frame(priv, xdpf, NULL, port))
1151			drops++;
1152	}
1153
1154	return n - drops;
1155}
1156
1157#ifdef CONFIG_NET_POLL_CONTROLLER
1158static void cpsw_ndo_poll_controller(struct net_device *ndev)
1159{
1160	struct cpsw_common *cpsw = ndev_to_cpsw(ndev);
1161
1162	cpsw_intr_disable(cpsw);
1163	cpsw_rx_interrupt(cpsw->irqs_table[0], cpsw);
1164	cpsw_tx_interrupt(cpsw->irqs_table[1], cpsw);
1165	cpsw_intr_enable(cpsw);
1166}
1167#endif
1168
1169static const struct net_device_ops cpsw_netdev_ops = {
1170	.ndo_open		= cpsw_ndo_open,
1171	.ndo_stop		= cpsw_ndo_stop,
1172	.ndo_start_xmit		= cpsw_ndo_start_xmit,
1173	.ndo_set_mac_address	= cpsw_ndo_set_mac_address,
1174	.ndo_do_ioctl		= cpsw_ndo_ioctl,
1175	.ndo_validate_addr	= eth_validate_addr,
1176	.ndo_tx_timeout		= cpsw_ndo_tx_timeout,
1177	.ndo_set_rx_mode	= cpsw_ndo_set_rx_mode,
1178	.ndo_set_tx_maxrate	= cpsw_ndo_set_tx_maxrate,
1179#ifdef CONFIG_NET_POLL_CONTROLLER
1180	.ndo_poll_controller	= cpsw_ndo_poll_controller,
1181#endif
1182	.ndo_vlan_rx_add_vid	= cpsw_ndo_vlan_rx_add_vid,
1183	.ndo_vlan_rx_kill_vid	= cpsw_ndo_vlan_rx_kill_vid,
1184	.ndo_setup_tc           = cpsw_ndo_setup_tc,
1185	.ndo_bpf		= cpsw_ndo_bpf,
1186	.ndo_xdp_xmit		= cpsw_ndo_xdp_xmit,
1187};
1188
1189static void cpsw_get_drvinfo(struct net_device *ndev,
1190			     struct ethtool_drvinfo *info)
1191{
1192	struct cpsw_common *cpsw = ndev_to_cpsw(ndev);
1193	struct platform_device	*pdev = to_platform_device(cpsw->dev);
1194
1195	strlcpy(info->driver, "cpsw", sizeof(info->driver));
1196	strlcpy(info->version, "1.0", sizeof(info->version));
1197	strlcpy(info->bus_info, pdev->name, sizeof(info->bus_info));
1198}
1199
1200static int cpsw_set_pauseparam(struct net_device *ndev,
1201			       struct ethtool_pauseparam *pause)
1202{
1203	struct cpsw_priv *priv = netdev_priv(ndev);
1204	bool link;
1205
1206	priv->rx_pause = pause->rx_pause ? true : false;
1207	priv->tx_pause = pause->tx_pause ? true : false;
1208
1209	for_each_slave(priv, _cpsw_adjust_link, priv, &link);
1210	return 0;
1211}
1212
1213static int cpsw_set_channels(struct net_device *ndev,
1214			     struct ethtool_channels *chs)
1215{
1216	return cpsw_set_channels_common(ndev, chs, cpsw_rx_handler);
1217}
1218
1219static const struct ethtool_ops cpsw_ethtool_ops = {
1220	.supported_coalesce_params = ETHTOOL_COALESCE_RX_USECS,
1221	.get_drvinfo	= cpsw_get_drvinfo,
1222	.get_msglevel	= cpsw_get_msglevel,
1223	.set_msglevel	= cpsw_set_msglevel,
1224	.get_link	= ethtool_op_get_link,
1225	.get_ts_info	= cpsw_get_ts_info,
1226	.get_coalesce	= cpsw_get_coalesce,
1227	.set_coalesce	= cpsw_set_coalesce,
1228	.get_sset_count		= cpsw_get_sset_count,
1229	.get_strings		= cpsw_get_strings,
1230	.get_ethtool_stats	= cpsw_get_ethtool_stats,
1231	.get_pauseparam		= cpsw_get_pauseparam,
1232	.set_pauseparam		= cpsw_set_pauseparam,
1233	.get_wol	= cpsw_get_wol,
1234	.set_wol	= cpsw_set_wol,
1235	.get_regs_len	= cpsw_get_regs_len,
1236	.get_regs	= cpsw_get_regs,
1237	.begin		= cpsw_ethtool_op_begin,
1238	.complete	= cpsw_ethtool_op_complete,
1239	.get_channels	= cpsw_get_channels,
1240	.set_channels	= cpsw_set_channels,
1241	.get_link_ksettings	= cpsw_get_link_ksettings,
1242	.set_link_ksettings	= cpsw_set_link_ksettings,
1243	.get_eee	= cpsw_get_eee,
1244	.set_eee	= cpsw_set_eee,
1245	.nway_reset	= cpsw_nway_reset,
1246	.get_ringparam = cpsw_get_ringparam,
1247	.set_ringparam = cpsw_set_ringparam,
1248};
1249
1250static int cpsw_probe_dt(struct cpsw_platform_data *data,
1251			 struct platform_device *pdev)
1252{
1253	struct device_node *node = pdev->dev.of_node;
1254	struct device_node *slave_node;
1255	int i = 0, ret;
1256	u32 prop;
1257
1258	if (!node)
1259		return -EINVAL;
1260
1261	if (of_property_read_u32(node, "slaves", &prop)) {
1262		dev_err(&pdev->dev, "Missing slaves property in the DT.\n");
1263		return -EINVAL;
1264	}
1265	data->slaves = prop;
1266
1267	if (of_property_read_u32(node, "active_slave", &prop)) {
1268		dev_err(&pdev->dev, "Missing active_slave property in the DT.\n");
1269		return -EINVAL;
1270	}
1271	data->active_slave = prop;
1272
1273	data->slave_data = devm_kcalloc(&pdev->dev,
1274					data->slaves,
1275					sizeof(struct cpsw_slave_data),
1276					GFP_KERNEL);
1277	if (!data->slave_data)
1278		return -ENOMEM;
1279
1280	if (of_property_read_u32(node, "cpdma_channels", &prop)) {
1281		dev_err(&pdev->dev, "Missing cpdma_channels property in the DT.\n");
1282		return -EINVAL;
1283	}
1284	data->channels = prop;
1285
1286	if (of_property_read_u32(node, "bd_ram_size", &prop)) {
1287		dev_err(&pdev->dev, "Missing bd_ram_size property in the DT.\n");
1288		return -EINVAL;
1289	}
1290	data->bd_ram_size = prop;
1291
1292	if (of_property_read_u32(node, "mac_control", &prop)) {
1293		dev_err(&pdev->dev, "Missing mac_control property in the DT.\n");
1294		return -EINVAL;
1295	}
1296	data->mac_control = prop;
1297
1298	if (of_property_read_bool(node, "dual_emac"))
1299		data->dual_emac = true;
1300
1301	/*
1302	 * Populate all the child nodes here...
1303	 */
1304	ret = of_platform_populate(node, NULL, NULL, &pdev->dev);
1305	/* We do not want to force this, as in some cases may not have child */
1306	if (ret)
1307		dev_warn(&pdev->dev, "Doesn't have any child node\n");
1308
1309	for_each_available_child_of_node(node, slave_node) {
1310		struct cpsw_slave_data *slave_data = data->slave_data + i;
1311		const void *mac_addr = NULL;
1312		int lenp;
1313		const __be32 *parp;
1314
1315		/* This is no slave child node, continue */
1316		if (!of_node_name_eq(slave_node, "slave"))
1317			continue;
1318
1319		slave_data->ifphy = devm_of_phy_get(&pdev->dev, slave_node,
1320						    NULL);
1321		if (!IS_ENABLED(CONFIG_TI_CPSW_PHY_SEL) &&
1322		    IS_ERR(slave_data->ifphy)) {
1323			ret = PTR_ERR(slave_data->ifphy);
1324			dev_err(&pdev->dev,
1325				"%d: Error retrieving port phy: %d\n", i, ret);
1326			goto err_node_put;
1327		}
1328
1329		slave_data->slave_node = slave_node;
1330		slave_data->phy_node = of_parse_phandle(slave_node,
1331							"phy-handle", 0);
1332		parp = of_get_property(slave_node, "phy_id", &lenp);
1333		if (slave_data->phy_node) {
1334			dev_dbg(&pdev->dev,
1335				"slave[%d] using phy-handle=\"%pOF\"\n",
1336				i, slave_data->phy_node);
1337		} else if (of_phy_is_fixed_link(slave_node)) {
1338			/* In the case of a fixed PHY, the DT node associated
1339			 * to the PHY is the Ethernet MAC DT node.
1340			 */
1341			ret = of_phy_register_fixed_link(slave_node);
1342			if (ret) {
1343				if (ret != -EPROBE_DEFER)
1344					dev_err(&pdev->dev, "failed to register fixed-link phy: %d\n", ret);
1345				goto err_node_put;
1346			}
1347			slave_data->phy_node = of_node_get(slave_node);
1348		} else if (parp) {
1349			u32 phyid;
1350			struct device_node *mdio_node;
1351			struct platform_device *mdio;
1352
1353			if (lenp != (sizeof(__be32) * 2)) {
1354				dev_err(&pdev->dev, "Invalid slave[%d] phy_id property\n", i);
1355				goto no_phy_slave;
1356			}
1357			mdio_node = of_find_node_by_phandle(be32_to_cpup(parp));
1358			phyid = be32_to_cpup(parp+1);
1359			mdio = of_find_device_by_node(mdio_node);
1360			of_node_put(mdio_node);
1361			if (!mdio) {
1362				dev_err(&pdev->dev, "Missing mdio platform device\n");
1363				ret = -EINVAL;
1364				goto err_node_put;
1365			}
1366			snprintf(slave_data->phy_id, sizeof(slave_data->phy_id),
1367				 PHY_ID_FMT, mdio->name, phyid);
1368			put_device(&mdio->dev);
1369		} else {
1370			dev_err(&pdev->dev,
1371				"No slave[%d] phy_id, phy-handle, or fixed-link property\n",
1372				i);
1373			goto no_phy_slave;
1374		}
1375		ret = of_get_phy_mode(slave_node, &slave_data->phy_if);
1376		if (ret) {
1377			dev_err(&pdev->dev, "Missing or malformed slave[%d] phy-mode property\n",
1378				i);
1379			goto err_node_put;
1380		}
1381
1382no_phy_slave:
1383		mac_addr = of_get_mac_address(slave_node);
1384		if (!IS_ERR(mac_addr)) {
1385			ether_addr_copy(slave_data->mac_addr, mac_addr);
1386		} else {
1387			ret = ti_cm_get_macid(&pdev->dev, i,
1388					      slave_data->mac_addr);
1389			if (ret)
1390				goto err_node_put;
1391		}
1392		if (data->dual_emac) {
1393			if (of_property_read_u32(slave_node, "dual_emac_res_vlan",
1394						 &prop)) {
1395				dev_err(&pdev->dev, "Missing dual_emac_res_vlan in DT.\n");
1396				slave_data->dual_emac_res_vlan = i+1;
1397				dev_err(&pdev->dev, "Using %d as Reserved VLAN for %d slave\n",
1398					slave_data->dual_emac_res_vlan, i);
1399			} else {
1400				slave_data->dual_emac_res_vlan = prop;
1401			}
1402		}
1403
1404		i++;
1405		if (i == data->slaves) {
1406			ret = 0;
1407			goto err_node_put;
1408		}
1409	}
1410
1411	return 0;
1412
1413err_node_put:
1414	of_node_put(slave_node);
1415	return ret;
1416}
1417
1418static void cpsw_remove_dt(struct platform_device *pdev)
1419{
1420	struct cpsw_common *cpsw = platform_get_drvdata(pdev);
1421	struct cpsw_platform_data *data = &cpsw->data;
1422	struct device_node *node = pdev->dev.of_node;
1423	struct device_node *slave_node;
1424	int i = 0;
1425
1426	for_each_available_child_of_node(node, slave_node) {
1427		struct cpsw_slave_data *slave_data = &data->slave_data[i];
1428
1429		if (!of_node_name_eq(slave_node, "slave"))
1430			continue;
1431
1432		if (of_phy_is_fixed_link(slave_node))
1433			of_phy_deregister_fixed_link(slave_node);
1434
1435		of_node_put(slave_data->phy_node);
1436
1437		i++;
1438		if (i == data->slaves) {
1439			of_node_put(slave_node);
1440			break;
1441		}
1442	}
1443
1444	of_platform_depopulate(&pdev->dev);
1445}
1446
1447static int cpsw_probe_dual_emac(struct cpsw_priv *priv)
1448{
1449	struct cpsw_common		*cpsw = priv->cpsw;
1450	struct cpsw_platform_data	*data = &cpsw->data;
1451	struct net_device		*ndev;
1452	struct cpsw_priv		*priv_sl2;
1453	int ret = 0;
1454
1455	ndev = devm_alloc_etherdev_mqs(cpsw->dev, sizeof(struct cpsw_priv),
1456				       CPSW_MAX_QUEUES, CPSW_MAX_QUEUES);
1457	if (!ndev) {
1458		dev_err(cpsw->dev, "cpsw: error allocating net_device\n");
1459		return -ENOMEM;
1460	}
1461
1462	priv_sl2 = netdev_priv(ndev);
1463	priv_sl2->cpsw = cpsw;
1464	priv_sl2->ndev = ndev;
1465	priv_sl2->dev  = &ndev->dev;
1466	priv_sl2->msg_enable = netif_msg_init(debug_level, CPSW_DEBUG);
1467
1468	if (is_valid_ether_addr(data->slave_data[1].mac_addr)) {
1469		memcpy(priv_sl2->mac_addr, data->slave_data[1].mac_addr,
1470			ETH_ALEN);
1471		dev_info(cpsw->dev, "cpsw: Detected MACID = %pM\n",
1472			 priv_sl2->mac_addr);
1473	} else {
1474		eth_random_addr(priv_sl2->mac_addr);
1475		dev_info(cpsw->dev, "cpsw: Random MACID = %pM\n",
1476			 priv_sl2->mac_addr);
1477	}
1478	memcpy(ndev->dev_addr, priv_sl2->mac_addr, ETH_ALEN);
1479
1480	priv_sl2->emac_port = 1;
1481	cpsw->slaves[1].ndev = ndev;
1482	ndev->features |= NETIF_F_HW_VLAN_CTAG_FILTER | NETIF_F_HW_VLAN_CTAG_RX;
1483
1484	ndev->netdev_ops = &cpsw_netdev_ops;
1485	ndev->ethtool_ops = &cpsw_ethtool_ops;
1486
1487	/* register the network device */
1488	SET_NETDEV_DEV(ndev, cpsw->dev);
1489	ndev->dev.of_node = cpsw->slaves[1].data->slave_node;
1490	ret = register_netdev(ndev);
1491	if (ret)
1492		dev_err(cpsw->dev, "cpsw: error registering net device\n");
1493
1494	return ret;
1495}
1496
1497static const struct of_device_id cpsw_of_mtable[] = {
1498	{ .compatible = "ti,cpsw"},
1499	{ .compatible = "ti,am335x-cpsw"},
1500	{ .compatible = "ti,am4372-cpsw"},
1501	{ .compatible = "ti,dra7-cpsw"},
1502	{ /* sentinel */ },
1503};
1504MODULE_DEVICE_TABLE(of, cpsw_of_mtable);
1505
1506static const struct soc_device_attribute cpsw_soc_devices[] = {
1507	{ .family = "AM33xx", .revision = "ES1.0"},
1508	{ /* sentinel */ }
1509};
1510
1511static int cpsw_probe(struct platform_device *pdev)
1512{
1513	struct device			*dev = &pdev->dev;
1514	struct clk			*clk;
1515	struct cpsw_platform_data	*data;
1516	struct net_device		*ndev;
1517	struct cpsw_priv		*priv;
1518	void __iomem			*ss_regs;
1519	struct resource			*ss_res;
1520	struct gpio_descs		*mode;
1521	const struct soc_device_attribute *soc;
1522	struct cpsw_common		*cpsw;
1523	int ret = 0, ch;
1524	int irq;
1525
1526	cpsw = devm_kzalloc(dev, sizeof(struct cpsw_common), GFP_KERNEL);
1527	if (!cpsw)
1528		return -ENOMEM;
1529
1530	platform_set_drvdata(pdev, cpsw);
1531	cpsw_slave_index = cpsw_slave_index_priv;
1532
1533	cpsw->dev = dev;
1534
1535	mode = devm_gpiod_get_array_optional(dev, "mode", GPIOD_OUT_LOW);
1536	if (IS_ERR(mode)) {
1537		ret = PTR_ERR(mode);
1538		dev_err(dev, "gpio request failed, ret %d\n", ret);
1539		return ret;
1540	}
1541
1542	clk = devm_clk_get(dev, "fck");
1543	if (IS_ERR(clk)) {
1544		ret = PTR_ERR(clk);
1545		dev_err(dev, "fck is not found %d\n", ret);
1546		return ret;
1547	}
1548	cpsw->bus_freq_mhz = clk_get_rate(clk) / 1000000;
1549
1550	ss_res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
1551	ss_regs = devm_ioremap_resource(dev, ss_res);
1552	if (IS_ERR(ss_regs))
1553		return PTR_ERR(ss_regs);
1554	cpsw->regs = ss_regs;
1555
1556	cpsw->wr_regs = devm_platform_ioremap_resource(pdev, 1);
1557	if (IS_ERR(cpsw->wr_regs))
1558		return PTR_ERR(cpsw->wr_regs);
1559
1560	/* RX IRQ */
1561	irq = platform_get_irq(pdev, 1);
1562	if (irq < 0)
1563		return irq;
1564	cpsw->irqs_table[0] = irq;
1565
1566	/* TX IRQ */
1567	irq = platform_get_irq(pdev, 2);
1568	if (irq < 0)
1569		return irq;
1570	cpsw->irqs_table[1] = irq;
1571
1572	/* get misc irq*/
1573	irq = platform_get_irq(pdev, 3);
1574	if (irq <= 0)
1575		return irq;
1576	cpsw->misc_irq = irq;
1577
1578	/*
1579	 * This may be required here for child devices.
1580	 */
1581	pm_runtime_enable(dev);
1582
1583	/* Need to enable clocks with runtime PM api to access module
1584	 * registers
1585	 */
1586	ret = pm_runtime_get_sync(dev);
1587	if (ret < 0) {
1588		pm_runtime_put_noidle(dev);
1589		goto clean_runtime_disable_ret;
1590	}
1591
1592	ret = cpsw_probe_dt(&cpsw->data, pdev);
1593	if (ret)
1594		goto clean_dt_ret;
1595
1596	soc = soc_device_match(cpsw_soc_devices);
1597	if (soc)
1598		cpsw->quirk_irq = true;
1599
1600	data = &cpsw->data;
1601	cpsw->slaves = devm_kcalloc(dev,
1602				    data->slaves, sizeof(struct cpsw_slave),
1603				    GFP_KERNEL);
1604	if (!cpsw->slaves) {
1605		ret = -ENOMEM;
1606		goto clean_dt_ret;
1607	}
1608
1609	cpsw->rx_packet_max = max(rx_packet_max, CPSW_MAX_PACKET_SIZE);
1610	cpsw->descs_pool_size = descs_pool_size;
1611
1612	ret = cpsw_init_common(cpsw, ss_regs, ale_ageout,
1613			       ss_res->start + CPSW2_BD_OFFSET,
1614			       descs_pool_size);
1615	if (ret)
1616		goto clean_dt_ret;
1617
1618	ch = cpsw->quirk_irq ? 0 : 7;
1619	cpsw->txv[0].ch = cpdma_chan_create(cpsw->dma, ch, cpsw_tx_handler, 0);
1620	if (IS_ERR(cpsw->txv[0].ch)) {
1621		dev_err(dev, "error initializing tx dma channel\n");
1622		ret = PTR_ERR(cpsw->txv[0].ch);
1623		goto clean_cpts;
1624	}
1625
1626	cpsw->rxv[0].ch = cpdma_chan_create(cpsw->dma, 0, cpsw_rx_handler, 1);
1627	if (IS_ERR(cpsw->rxv[0].ch)) {
1628		dev_err(dev, "error initializing rx dma channel\n");
1629		ret = PTR_ERR(cpsw->rxv[0].ch);
1630		goto clean_cpts;
1631	}
1632	cpsw_split_res(cpsw);
1633
1634	/* setup netdev */
1635	ndev = devm_alloc_etherdev_mqs(dev, sizeof(struct cpsw_priv),
1636				       CPSW_MAX_QUEUES, CPSW_MAX_QUEUES);
1637	if (!ndev) {
1638		dev_err(dev, "error allocating net_device\n");
1639		ret = -ENOMEM;
1640		goto clean_cpts;
1641	}
1642
1643	priv = netdev_priv(ndev);
1644	priv->cpsw = cpsw;
1645	priv->ndev = ndev;
1646	priv->dev  = dev;
1647	priv->msg_enable = netif_msg_init(debug_level, CPSW_DEBUG);
1648	priv->emac_port = 0;
1649
1650	if (is_valid_ether_addr(data->slave_data[0].mac_addr)) {
1651		memcpy(priv->mac_addr, data->slave_data[0].mac_addr, ETH_ALEN);
1652		dev_info(dev, "Detected MACID = %pM\n", priv->mac_addr);
1653	} else {
1654		eth_random_addr(priv->mac_addr);
1655		dev_info(dev, "Random MACID = %pM\n", priv->mac_addr);
1656	}
1657
1658	memcpy(ndev->dev_addr, priv->mac_addr, ETH_ALEN);
1659
1660	cpsw->slaves[0].ndev = ndev;
1661
1662	ndev->features |= NETIF_F_HW_VLAN_CTAG_FILTER | NETIF_F_HW_VLAN_CTAG_RX;
1663
1664	ndev->netdev_ops = &cpsw_netdev_ops;
1665	ndev->ethtool_ops = &cpsw_ethtool_ops;
1666	netif_napi_add(ndev, &cpsw->napi_rx,
1667		       cpsw->quirk_irq ? cpsw_rx_poll : cpsw_rx_mq_poll,
1668		       CPSW_POLL_WEIGHT);
1669	netif_tx_napi_add(ndev, &cpsw->napi_tx,
1670			  cpsw->quirk_irq ? cpsw_tx_poll : cpsw_tx_mq_poll,
1671			  CPSW_POLL_WEIGHT);
1672
1673	/* register the network device */
1674	SET_NETDEV_DEV(ndev, dev);
1675	ndev->dev.of_node = cpsw->slaves[0].data->slave_node;
1676	ret = register_netdev(ndev);
1677	if (ret) {
1678		dev_err(dev, "error registering net device\n");
1679		ret = -ENODEV;
1680		goto clean_cpts;
1681	}
1682
1683	if (cpsw->data.dual_emac) {
1684		ret = cpsw_probe_dual_emac(priv);
1685		if (ret) {
1686			cpsw_err(priv, probe, "error probe slave 2 emac interface\n");
1687			goto clean_unregister_netdev_ret;
1688		}
1689	}
1690
1691	/* Grab RX and TX IRQs. Note that we also have RX_THRESHOLD and
1692	 * MISC IRQs which are always kept disabled with this driver so
1693	 * we will not request them.
1694	 *
1695	 * If anyone wants to implement support for those, make sure to
1696	 * first request and append them to irqs_table array.
1697	 */
1698	ret = devm_request_irq(dev, cpsw->irqs_table[0], cpsw_rx_interrupt,
1699			       0, dev_name(dev), cpsw);
1700	if (ret < 0) {
1701		dev_err(dev, "error attaching irq (%d)\n", ret);
1702		goto clean_unregister_netdev_ret;
1703	}
1704
1705
1706	ret = devm_request_irq(dev, cpsw->irqs_table[1], cpsw_tx_interrupt,
1707			       0, dev_name(&pdev->dev), cpsw);
1708	if (ret < 0) {
1709		dev_err(dev, "error attaching irq (%d)\n", ret);
1710		goto clean_unregister_netdev_ret;
1711	}
1712
1713	if (!cpsw->cpts)
1714		goto skip_cpts;
1715
1716	ret = devm_request_irq(&pdev->dev, cpsw->misc_irq, cpsw_misc_interrupt,
1717			       0, dev_name(&pdev->dev), cpsw);
1718	if (ret < 0) {
1719		dev_err(dev, "error attaching misc irq (%d)\n", ret);
1720		goto clean_unregister_netdev_ret;
1721	}
1722
1723	/* Enable misc CPTS evnt_pend IRQ */
1724	cpts_set_irqpoll(cpsw->cpts, false);
1725
1726skip_cpts:
1727	cpsw_notice(priv, probe,
1728		    "initialized device (regs %pa, irq %d, pool size %d)\n",
1729		    &ss_res->start, cpsw->irqs_table[0], descs_pool_size);
1730
1731	pm_runtime_put(&pdev->dev);
1732
1733	return 0;
1734
1735clean_unregister_netdev_ret:
1736	unregister_netdev(ndev);
1737clean_cpts:
1738	cpts_release(cpsw->cpts);
1739	cpdma_ctlr_destroy(cpsw->dma);
1740clean_dt_ret:
1741	cpsw_remove_dt(pdev);
1742	pm_runtime_put_sync(&pdev->dev);
1743clean_runtime_disable_ret:
1744	pm_runtime_disable(&pdev->dev);
1745	return ret;
1746}
1747
1748static int cpsw_remove(struct platform_device *pdev)
1749{
1750	struct cpsw_common *cpsw = platform_get_drvdata(pdev);
1751	int i, ret;
1752
1753	ret = pm_runtime_get_sync(&pdev->dev);
1754	if (ret < 0) {
1755		pm_runtime_put_noidle(&pdev->dev);
1756		return ret;
1757	}
1758
1759	for (i = 0; i < cpsw->data.slaves; i++)
1760		if (cpsw->slaves[i].ndev)
1761			unregister_netdev(cpsw->slaves[i].ndev);
1762
1763	cpts_release(cpsw->cpts);
1764	cpdma_ctlr_destroy(cpsw->dma);
1765	cpsw_remove_dt(pdev);
1766	pm_runtime_put_sync(&pdev->dev);
1767	pm_runtime_disable(&pdev->dev);
1768	return 0;
1769}
1770
1771#ifdef CONFIG_PM_SLEEP
1772static int cpsw_suspend(struct device *dev)
1773{
1774	struct cpsw_common *cpsw = dev_get_drvdata(dev);
1775	int i;
1776
1777	rtnl_lock();
1778
1779	for (i = 0; i < cpsw->data.slaves; i++)
1780		if (cpsw->slaves[i].ndev)
1781			if (netif_running(cpsw->slaves[i].ndev))
1782				cpsw_ndo_stop(cpsw->slaves[i].ndev);
1783
1784	rtnl_unlock();
1785
1786	/* Select sleep pin state */
1787	pinctrl_pm_select_sleep_state(dev);
1788
1789	return 0;
1790}
1791
1792static int cpsw_resume(struct device *dev)
1793{
1794	struct cpsw_common *cpsw = dev_get_drvdata(dev);
1795	int i;
1796
1797	/* Select default pin state */
1798	pinctrl_pm_select_default_state(dev);
1799
1800	/* shut up ASSERT_RTNL() warning in netif_set_real_num_tx/rx_queues */
1801	rtnl_lock();
1802
1803	for (i = 0; i < cpsw->data.slaves; i++)
1804		if (cpsw->slaves[i].ndev)
1805			if (netif_running(cpsw->slaves[i].ndev))
1806				cpsw_ndo_open(cpsw->slaves[i].ndev);
1807
1808	rtnl_unlock();
1809
1810	return 0;
1811}
1812#endif
1813
1814static SIMPLE_DEV_PM_OPS(cpsw_pm_ops, cpsw_suspend, cpsw_resume);
1815
1816static struct platform_driver cpsw_driver = {
1817	.driver = {
1818		.name	 = "cpsw",
1819		.pm	 = &cpsw_pm_ops,
1820		.of_match_table = cpsw_of_mtable,
1821	},
1822	.probe = cpsw_probe,
1823	.remove = cpsw_remove,
1824};
1825
1826module_platform_driver(cpsw_driver);
1827
1828MODULE_LICENSE("GPL");
1829MODULE_AUTHOR("Cyril Chemparathy <cyril@ti.com>");
1830MODULE_AUTHOR("Mugunthan V N <mugunthanvnm@ti.com>");
1831MODULE_DESCRIPTION("TI CPSW Ethernet driver");
1832