1 /*
2  *  drivers/net/ethernet/freescale/gianfar_ethtool.c
3  *
4  *  Gianfar Ethernet Driver
5  *  Ethtool support for Gianfar Enet
6  *  Based on e1000 ethtool support
7  *
8  *  Author: Andy Fleming
9  *  Maintainer: Kumar Gala
10  *  Modifier: Sandeep Gopalpet <sandeep.kumar@freescale.com>
11  *
12  *  Copyright 2003-2006, 2008-2009, 2011 Freescale Semiconductor, Inc.
13  *
14  *  This software may be used and distributed according to
15  *  the terms of the GNU Public License, Version 2, incorporated herein
16  *  by reference.
17  */
18 
19 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
20 
21 #include <linux/kernel.h>
22 #include <linux/string.h>
23 #include <linux/errno.h>
24 #include <linux/interrupt.h>
25 #include <linux/delay.h>
26 #include <linux/netdevice.h>
27 #include <linux/etherdevice.h>
28 #include <linux/net_tstamp.h>
29 #include <linux/skbuff.h>
30 #include <linux/spinlock.h>
31 #include <linux/mm.h>
32 
33 #include <asm/io.h>
34 #include <asm/irq.h>
35 #include <asm/uaccess.h>
36 #include <linux/module.h>
37 #include <linux/crc32.h>
38 #include <asm/types.h>
39 #include <linux/ethtool.h>
40 #include <linux/mii.h>
41 #include <linux/phy.h>
42 #include <linux/sort.h>
43 #include <linux/if_vlan.h>
44 
45 #include "gianfar.h"
46 
47 #define GFAR_MAX_COAL_USECS 0xffff
48 #define GFAR_MAX_COAL_FRAMES 0xff
49 static void gfar_fill_stats(struct net_device *dev, struct ethtool_stats *dummy,
50 			    u64 *buf);
51 static void gfar_gstrings(struct net_device *dev, u32 stringset, u8 * buf);
52 static int gfar_gcoalesce(struct net_device *dev,
53 			  struct ethtool_coalesce *cvals);
54 static int gfar_scoalesce(struct net_device *dev,
55 			  struct ethtool_coalesce *cvals);
56 static void gfar_gringparam(struct net_device *dev,
57 			    struct ethtool_ringparam *rvals);
58 static int gfar_sringparam(struct net_device *dev,
59 			   struct ethtool_ringparam *rvals);
60 static void gfar_gdrvinfo(struct net_device *dev,
61 			  struct ethtool_drvinfo *drvinfo);
62 
63 static const char stat_gstrings[][ETH_GSTRING_LEN] = {
64 	/* extra stats */
65 	"rx-allocation-errors",
66 	"rx-large-frame-errors",
67 	"rx-short-frame-errors",
68 	"rx-non-octet-errors",
69 	"rx-crc-errors",
70 	"rx-overrun-errors",
71 	"rx-busy-errors",
72 	"rx-babbling-errors",
73 	"rx-truncated-frames",
74 	"ethernet-bus-error",
75 	"tx-babbling-errors",
76 	"tx-underrun-errors",
77 	"tx-timeout-errors",
78 	/* rmon stats */
79 	"tx-rx-64-frames",
80 	"tx-rx-65-127-frames",
81 	"tx-rx-128-255-frames",
82 	"tx-rx-256-511-frames",
83 	"tx-rx-512-1023-frames",
84 	"tx-rx-1024-1518-frames",
85 	"tx-rx-1519-1522-good-vlan",
86 	"rx-bytes",
87 	"rx-packets",
88 	"rx-fcs-errors",
89 	"receive-multicast-packet",
90 	"receive-broadcast-packet",
91 	"rx-control-frame-packets",
92 	"rx-pause-frame-packets",
93 	"rx-unknown-op-code",
94 	"rx-alignment-error",
95 	"rx-frame-length-error",
96 	"rx-code-error",
97 	"rx-carrier-sense-error",
98 	"rx-undersize-packets",
99 	"rx-oversize-packets",
100 	"rx-fragmented-frames",
101 	"rx-jabber-frames",
102 	"rx-dropped-frames",
103 	"tx-byte-counter",
104 	"tx-packets",
105 	"tx-multicast-packets",
106 	"tx-broadcast-packets",
107 	"tx-pause-control-frames",
108 	"tx-deferral-packets",
109 	"tx-excessive-deferral-packets",
110 	"tx-single-collision-packets",
111 	"tx-multiple-collision-packets",
112 	"tx-late-collision-packets",
113 	"tx-excessive-collision-packets",
114 	"tx-total-collision",
115 	"reserved",
116 	"tx-dropped-frames",
117 	"tx-jabber-frames",
118 	"tx-fcs-errors",
119 	"tx-control-frames",
120 	"tx-oversize-frames",
121 	"tx-undersize-frames",
122 	"tx-fragmented-frames",
123 };
124 
125 /* Fill in a buffer with the strings which correspond to the
126  * stats */
127 static void gfar_gstrings(struct net_device *dev, u32 stringset, u8 * buf)
128 {
129 	struct gfar_private *priv = netdev_priv(dev);
130 
131 	if (priv->device_flags & FSL_GIANFAR_DEV_HAS_RMON)
132 		memcpy(buf, stat_gstrings, GFAR_STATS_LEN * ETH_GSTRING_LEN);
133 	else
134 		memcpy(buf, stat_gstrings,
135 		       GFAR_EXTRA_STATS_LEN * ETH_GSTRING_LEN);
136 }
137 
138 /* Fill in an array of 64-bit statistics from various sources.
139  * This array will be appended to the end of the ethtool_stats
140  * structure, and returned to user space
141  */
142 static void gfar_fill_stats(struct net_device *dev, struct ethtool_stats *dummy,
143 			    u64 *buf)
144 {
145 	int i;
146 	struct gfar_private *priv = netdev_priv(dev);
147 	struct gfar __iomem *regs = priv->gfargrp[0].regs;
148 	atomic64_t *extra = (atomic64_t *)&priv->extra_stats;
149 
150 	for (i = 0; i < GFAR_EXTRA_STATS_LEN; i++)
151 		buf[i] = atomic64_read(&extra[i]);
152 
153 	if (priv->device_flags & FSL_GIANFAR_DEV_HAS_RMON) {
154 		u32 __iomem *rmon = (u32 __iomem *) &regs->rmon;
155 
156 		for (; i < GFAR_STATS_LEN; i++, rmon++)
157 			buf[i] = (u64) gfar_read(rmon);
158 	}
159 }
160 
161 static int gfar_sset_count(struct net_device *dev, int sset)
162 {
163 	struct gfar_private *priv = netdev_priv(dev);
164 
165 	switch (sset) {
166 	case ETH_SS_STATS:
167 		if (priv->device_flags & FSL_GIANFAR_DEV_HAS_RMON)
168 			return GFAR_STATS_LEN;
169 		else
170 			return GFAR_EXTRA_STATS_LEN;
171 	default:
172 		return -EOPNOTSUPP;
173 	}
174 }
175 
176 /* Fills in the drvinfo structure with some basic info */
177 static void gfar_gdrvinfo(struct net_device *dev,
178 			  struct ethtool_drvinfo *drvinfo)
179 {
180 	strlcpy(drvinfo->driver, DRV_NAME, sizeof(drvinfo->driver));
181 	strlcpy(drvinfo->version, gfar_driver_version,
182 		sizeof(drvinfo->version));
183 	strlcpy(drvinfo->fw_version, "N/A", sizeof(drvinfo->fw_version));
184 	strlcpy(drvinfo->bus_info, "N/A", sizeof(drvinfo->bus_info));
185 	drvinfo->regdump_len = 0;
186 	drvinfo->eedump_len = 0;
187 }
188 
189 
190 static int gfar_ssettings(struct net_device *dev, struct ethtool_cmd *cmd)
191 {
192 	struct gfar_private *priv = netdev_priv(dev);
193 	struct phy_device *phydev = priv->phydev;
194 
195 	if (NULL == phydev)
196 		return -ENODEV;
197 
198 	return phy_ethtool_sset(phydev, cmd);
199 }
200 
201 
202 /* Return the current settings in the ethtool_cmd structure */
203 static int gfar_gsettings(struct net_device *dev, struct ethtool_cmd *cmd)
204 {
205 	struct gfar_private *priv = netdev_priv(dev);
206 	struct phy_device *phydev = priv->phydev;
207 	struct gfar_priv_rx_q *rx_queue = NULL;
208 	struct gfar_priv_tx_q *tx_queue = NULL;
209 
210 	if (NULL == phydev)
211 		return -ENODEV;
212 	tx_queue = priv->tx_queue[0];
213 	rx_queue = priv->rx_queue[0];
214 
215 	/* etsec-1.7 and older versions have only one txic
216 	 * and rxic regs although they support multiple queues */
217 	cmd->maxtxpkt = get_icft_value(tx_queue->txic);
218 	cmd->maxrxpkt = get_icft_value(rx_queue->rxic);
219 
220 	return phy_ethtool_gset(phydev, cmd);
221 }
222 
223 /* Return the length of the register structure */
224 static int gfar_reglen(struct net_device *dev)
225 {
226 	return sizeof (struct gfar);
227 }
228 
229 /* Return a dump of the GFAR register space */
230 static void gfar_get_regs(struct net_device *dev, struct ethtool_regs *regs,
231 			  void *regbuf)
232 {
233 	int i;
234 	struct gfar_private *priv = netdev_priv(dev);
235 	u32 __iomem *theregs = (u32 __iomem *) priv->gfargrp[0].regs;
236 	u32 *buf = (u32 *) regbuf;
237 
238 	for (i = 0; i < sizeof (struct gfar) / sizeof (u32); i++)
239 		buf[i] = gfar_read(&theregs[i]);
240 }
241 
242 /* Convert microseconds to ethernet clock ticks, which changes
243  * depending on what speed the controller is running at */
244 static unsigned int gfar_usecs2ticks(struct gfar_private *priv,
245 				     unsigned int usecs)
246 {
247 	unsigned int count;
248 
249 	/* The timer is different, depending on the interface speed */
250 	switch (priv->phydev->speed) {
251 	case SPEED_1000:
252 		count = GFAR_GBIT_TIME;
253 		break;
254 	case SPEED_100:
255 		count = GFAR_100_TIME;
256 		break;
257 	case SPEED_10:
258 	default:
259 		count = GFAR_10_TIME;
260 		break;
261 	}
262 
263 	/* Make sure we return a number greater than 0
264 	 * if usecs > 0 */
265 	return (usecs * 1000 + count - 1) / count;
266 }
267 
268 /* Convert ethernet clock ticks to microseconds */
269 static unsigned int gfar_ticks2usecs(struct gfar_private *priv,
270 				     unsigned int ticks)
271 {
272 	unsigned int count;
273 
274 	/* The timer is different, depending on the interface speed */
275 	switch (priv->phydev->speed) {
276 	case SPEED_1000:
277 		count = GFAR_GBIT_TIME;
278 		break;
279 	case SPEED_100:
280 		count = GFAR_100_TIME;
281 		break;
282 	case SPEED_10:
283 	default:
284 		count = GFAR_10_TIME;
285 		break;
286 	}
287 
288 	/* Make sure we return a number greater than 0 */
289 	/* if ticks is > 0 */
290 	return (ticks * count) / 1000;
291 }
292 
293 /* Get the coalescing parameters, and put them in the cvals
294  * structure.  */
295 static int gfar_gcoalesce(struct net_device *dev,
296 			  struct ethtool_coalesce *cvals)
297 {
298 	struct gfar_private *priv = netdev_priv(dev);
299 	struct gfar_priv_rx_q *rx_queue = NULL;
300 	struct gfar_priv_tx_q *tx_queue = NULL;
301 	unsigned long rxtime;
302 	unsigned long rxcount;
303 	unsigned long txtime;
304 	unsigned long txcount;
305 
306 	if (!(priv->device_flags & FSL_GIANFAR_DEV_HAS_COALESCE))
307 		return -EOPNOTSUPP;
308 
309 	if (NULL == priv->phydev)
310 		return -ENODEV;
311 
312 	rx_queue = priv->rx_queue[0];
313 	tx_queue = priv->tx_queue[0];
314 
315 	rxtime  = get_ictt_value(rx_queue->rxic);
316 	rxcount = get_icft_value(rx_queue->rxic);
317 	txtime  = get_ictt_value(tx_queue->txic);
318 	txcount = get_icft_value(tx_queue->txic);
319 	cvals->rx_coalesce_usecs = gfar_ticks2usecs(priv, rxtime);
320 	cvals->rx_max_coalesced_frames = rxcount;
321 
322 	cvals->tx_coalesce_usecs = gfar_ticks2usecs(priv, txtime);
323 	cvals->tx_max_coalesced_frames = txcount;
324 
325 	cvals->use_adaptive_rx_coalesce = 0;
326 	cvals->use_adaptive_tx_coalesce = 0;
327 
328 	cvals->pkt_rate_low = 0;
329 	cvals->rx_coalesce_usecs_low = 0;
330 	cvals->rx_max_coalesced_frames_low = 0;
331 	cvals->tx_coalesce_usecs_low = 0;
332 	cvals->tx_max_coalesced_frames_low = 0;
333 
334 	/* When the packet rate is below pkt_rate_high but above
335 	 * pkt_rate_low (both measured in packets per second) the
336 	 * normal {rx,tx}_* coalescing parameters are used.
337 	 */
338 
339 	/* When the packet rate is (measured in packets per second)
340 	 * is above pkt_rate_high, the {rx,tx}_*_high parameters are
341 	 * used.
342 	 */
343 	cvals->pkt_rate_high = 0;
344 	cvals->rx_coalesce_usecs_high = 0;
345 	cvals->rx_max_coalesced_frames_high = 0;
346 	cvals->tx_coalesce_usecs_high = 0;
347 	cvals->tx_max_coalesced_frames_high = 0;
348 
349 	/* How often to do adaptive coalescing packet rate sampling,
350 	 * measured in seconds.  Must not be zero.
351 	 */
352 	cvals->rate_sample_interval = 0;
353 
354 	return 0;
355 }
356 
357 /* Change the coalescing values.
358  * Both cvals->*_usecs and cvals->*_frames have to be > 0
359  * in order for coalescing to be active
360  */
361 static int gfar_scoalesce(struct net_device *dev,
362 			  struct ethtool_coalesce *cvals)
363 {
364 	struct gfar_private *priv = netdev_priv(dev);
365 	int i, err = 0;
366 
367 	if (!(priv->device_flags & FSL_GIANFAR_DEV_HAS_COALESCE))
368 		return -EOPNOTSUPP;
369 
370 	if (NULL == priv->phydev)
371 		return -ENODEV;
372 
373 	/* Check the bounds of the values */
374 	if (cvals->rx_coalesce_usecs > GFAR_MAX_COAL_USECS) {
375 		netdev_info(dev, "Coalescing is limited to %d microseconds\n",
376 			    GFAR_MAX_COAL_USECS);
377 		return -EINVAL;
378 	}
379 
380 	if (cvals->rx_max_coalesced_frames > GFAR_MAX_COAL_FRAMES) {
381 		netdev_info(dev, "Coalescing is limited to %d frames\n",
382 			    GFAR_MAX_COAL_FRAMES);
383 		return -EINVAL;
384 	}
385 
386 	/* Check the bounds of the values */
387 	if (cvals->tx_coalesce_usecs > GFAR_MAX_COAL_USECS) {
388 		netdev_info(dev, "Coalescing is limited to %d microseconds\n",
389 			    GFAR_MAX_COAL_USECS);
390 		return -EINVAL;
391 	}
392 
393 	if (cvals->tx_max_coalesced_frames > GFAR_MAX_COAL_FRAMES) {
394 		netdev_info(dev, "Coalescing is limited to %d frames\n",
395 			    GFAR_MAX_COAL_FRAMES);
396 		return -EINVAL;
397 	}
398 
399 	while (test_and_set_bit_lock(GFAR_RESETTING, &priv->state))
400 		cpu_relax();
401 
402 	/* Set up rx coalescing */
403 	if ((cvals->rx_coalesce_usecs == 0) ||
404 	    (cvals->rx_max_coalesced_frames == 0)) {
405 		for (i = 0; i < priv->num_rx_queues; i++)
406 			priv->rx_queue[i]->rxcoalescing = 0;
407 	} else {
408 		for (i = 0; i < priv->num_rx_queues; i++)
409 			priv->rx_queue[i]->rxcoalescing = 1;
410 	}
411 
412 	for (i = 0; i < priv->num_rx_queues; i++) {
413 		priv->rx_queue[i]->rxic = mk_ic_value(
414 			cvals->rx_max_coalesced_frames,
415 			gfar_usecs2ticks(priv, cvals->rx_coalesce_usecs));
416 	}
417 
418 	/* Set up tx coalescing */
419 	if ((cvals->tx_coalesce_usecs == 0) ||
420 	    (cvals->tx_max_coalesced_frames == 0)) {
421 		for (i = 0; i < priv->num_tx_queues; i++)
422 			priv->tx_queue[i]->txcoalescing = 0;
423 	} else {
424 		for (i = 0; i < priv->num_tx_queues; i++)
425 			priv->tx_queue[i]->txcoalescing = 1;
426 	}
427 
428 	for (i = 0; i < priv->num_tx_queues; i++) {
429 		priv->tx_queue[i]->txic = mk_ic_value(
430 			cvals->tx_max_coalesced_frames,
431 			gfar_usecs2ticks(priv, cvals->tx_coalesce_usecs));
432 	}
433 
434 	if (dev->flags & IFF_UP) {
435 		stop_gfar(dev);
436 		err = startup_gfar(dev);
437 	} else {
438 		gfar_mac_reset(priv);
439 	}
440 
441 	clear_bit_unlock(GFAR_RESETTING, &priv->state);
442 
443 	return err;
444 }
445 
446 /* Fills in rvals with the current ring parameters.  Currently,
447  * rx, rx_mini, and rx_jumbo rings are the same size, as mini and
448  * jumbo are ignored by the driver */
449 static void gfar_gringparam(struct net_device *dev,
450 			    struct ethtool_ringparam *rvals)
451 {
452 	struct gfar_private *priv = netdev_priv(dev);
453 	struct gfar_priv_tx_q *tx_queue = NULL;
454 	struct gfar_priv_rx_q *rx_queue = NULL;
455 
456 	tx_queue = priv->tx_queue[0];
457 	rx_queue = priv->rx_queue[0];
458 
459 	rvals->rx_max_pending = GFAR_RX_MAX_RING_SIZE;
460 	rvals->rx_mini_max_pending = GFAR_RX_MAX_RING_SIZE;
461 	rvals->rx_jumbo_max_pending = GFAR_RX_MAX_RING_SIZE;
462 	rvals->tx_max_pending = GFAR_TX_MAX_RING_SIZE;
463 
464 	/* Values changeable by the user.  The valid values are
465 	 * in the range 1 to the "*_max_pending" counterpart above.
466 	 */
467 	rvals->rx_pending = rx_queue->rx_ring_size;
468 	rvals->rx_mini_pending = rx_queue->rx_ring_size;
469 	rvals->rx_jumbo_pending = rx_queue->rx_ring_size;
470 	rvals->tx_pending = tx_queue->tx_ring_size;
471 }
472 
473 /* Change the current ring parameters, stopping the controller if
474  * necessary so that we don't mess things up while we're in motion.
475  */
476 static int gfar_sringparam(struct net_device *dev,
477 			   struct ethtool_ringparam *rvals)
478 {
479 	struct gfar_private *priv = netdev_priv(dev);
480 	int err = 0, i;
481 
482 	if (rvals->rx_pending > GFAR_RX_MAX_RING_SIZE)
483 		return -EINVAL;
484 
485 	if (!is_power_of_2(rvals->rx_pending)) {
486 		netdev_err(dev, "Ring sizes must be a power of 2\n");
487 		return -EINVAL;
488 	}
489 
490 	if (rvals->tx_pending > GFAR_TX_MAX_RING_SIZE)
491 		return -EINVAL;
492 
493 	if (!is_power_of_2(rvals->tx_pending)) {
494 		netdev_err(dev, "Ring sizes must be a power of 2\n");
495 		return -EINVAL;
496 	}
497 
498 	while (test_and_set_bit_lock(GFAR_RESETTING, &priv->state))
499 		cpu_relax();
500 
501 	if (dev->flags & IFF_UP)
502 		stop_gfar(dev);
503 
504 	/* Change the sizes */
505 	for (i = 0; i < priv->num_rx_queues; i++)
506 		priv->rx_queue[i]->rx_ring_size = rvals->rx_pending;
507 
508 	for (i = 0; i < priv->num_tx_queues; i++)
509 		priv->tx_queue[i]->tx_ring_size = rvals->tx_pending;
510 
511 	/* Rebuild the rings with the new size */
512 	if (dev->flags & IFF_UP)
513 		err = startup_gfar(dev);
514 
515 	clear_bit_unlock(GFAR_RESETTING, &priv->state);
516 
517 	return err;
518 }
519 
520 static void gfar_gpauseparam(struct net_device *dev,
521 			     struct ethtool_pauseparam *epause)
522 {
523 	struct gfar_private *priv = netdev_priv(dev);
524 
525 	epause->autoneg = !!priv->pause_aneg_en;
526 	epause->rx_pause = !!priv->rx_pause_en;
527 	epause->tx_pause = !!priv->tx_pause_en;
528 }
529 
530 static int gfar_spauseparam(struct net_device *dev,
531 			    struct ethtool_pauseparam *epause)
532 {
533 	struct gfar_private *priv = netdev_priv(dev);
534 	struct phy_device *phydev = priv->phydev;
535 	struct gfar __iomem *regs = priv->gfargrp[0].regs;
536 	u32 oldadv, newadv;
537 
538 	if (!phydev)
539 		return -ENODEV;
540 
541 	if (!(phydev->supported & SUPPORTED_Pause) ||
542 	    (!(phydev->supported & SUPPORTED_Asym_Pause) &&
543 	     (epause->rx_pause != epause->tx_pause)))
544 		return -EINVAL;
545 
546 	priv->rx_pause_en = priv->tx_pause_en = 0;
547 	if (epause->rx_pause) {
548 		priv->rx_pause_en = 1;
549 
550 		if (epause->tx_pause) {
551 			priv->tx_pause_en = 1;
552 			/* FLOW_CTRL_RX & TX */
553 			newadv = ADVERTISED_Pause;
554 		} else  /* FLOW_CTLR_RX */
555 			newadv = ADVERTISED_Pause | ADVERTISED_Asym_Pause;
556 	} else if (epause->tx_pause) {
557 		priv->tx_pause_en = 1;
558 		/* FLOW_CTLR_TX */
559 		newadv = ADVERTISED_Asym_Pause;
560 	} else
561 		newadv = 0;
562 
563 	if (epause->autoneg)
564 		priv->pause_aneg_en = 1;
565 	else
566 		priv->pause_aneg_en = 0;
567 
568 	oldadv = phydev->advertising &
569 		(ADVERTISED_Pause | ADVERTISED_Asym_Pause);
570 	if (oldadv != newadv) {
571 		phydev->advertising &=
572 			~(ADVERTISED_Pause | ADVERTISED_Asym_Pause);
573 		phydev->advertising |= newadv;
574 		if (phydev->autoneg)
575 			/* inform link partner of our
576 			 * new flow ctrl settings
577 			 */
578 			return phy_start_aneg(phydev);
579 
580 		if (!epause->autoneg) {
581 			u32 tempval;
582 			tempval = gfar_read(&regs->maccfg1);
583 			tempval &= ~(MACCFG1_TX_FLOW | MACCFG1_RX_FLOW);
584 
585 			priv->tx_actual_en = 0;
586 			if (priv->tx_pause_en) {
587 				priv->tx_actual_en = 1;
588 				tempval |= MACCFG1_TX_FLOW;
589 			}
590 
591 			if (priv->rx_pause_en)
592 				tempval |= MACCFG1_RX_FLOW;
593 			gfar_write(&regs->maccfg1, tempval);
594 		}
595 	}
596 
597 	return 0;
598 }
599 
600 int gfar_set_features(struct net_device *dev, netdev_features_t features)
601 {
602 	netdev_features_t changed = dev->features ^ features;
603 	struct gfar_private *priv = netdev_priv(dev);
604 	int err = 0;
605 
606 	if (!(changed & (NETIF_F_HW_VLAN_CTAG_TX | NETIF_F_HW_VLAN_CTAG_RX |
607 			 NETIF_F_RXCSUM)))
608 		return 0;
609 
610 	while (test_and_set_bit_lock(GFAR_RESETTING, &priv->state))
611 		cpu_relax();
612 
613 	dev->features = features;
614 
615 	if (dev->flags & IFF_UP) {
616 		/* Now we take down the rings to rebuild them */
617 		stop_gfar(dev);
618 		err = startup_gfar(dev);
619 	} else {
620 		gfar_mac_reset(priv);
621 	}
622 
623 	clear_bit_unlock(GFAR_RESETTING, &priv->state);
624 
625 	return err;
626 }
627 
628 static uint32_t gfar_get_msglevel(struct net_device *dev)
629 {
630 	struct gfar_private *priv = netdev_priv(dev);
631 
632 	return priv->msg_enable;
633 }
634 
635 static void gfar_set_msglevel(struct net_device *dev, uint32_t data)
636 {
637 	struct gfar_private *priv = netdev_priv(dev);
638 
639 	priv->msg_enable = data;
640 }
641 
642 #ifdef CONFIG_PM
643 static void gfar_get_wol(struct net_device *dev, struct ethtool_wolinfo *wol)
644 {
645 	struct gfar_private *priv = netdev_priv(dev);
646 
647 	if (priv->device_flags & FSL_GIANFAR_DEV_HAS_MAGIC_PACKET) {
648 		wol->supported = WAKE_MAGIC;
649 		wol->wolopts = priv->wol_en ? WAKE_MAGIC : 0;
650 	} else {
651 		wol->supported = wol->wolopts = 0;
652 	}
653 }
654 
655 static int gfar_set_wol(struct net_device *dev, struct ethtool_wolinfo *wol)
656 {
657 	struct gfar_private *priv = netdev_priv(dev);
658 
659 	if (!(priv->device_flags & FSL_GIANFAR_DEV_HAS_MAGIC_PACKET) &&
660 	    wol->wolopts != 0)
661 		return -EINVAL;
662 
663 	if (wol->wolopts & ~WAKE_MAGIC)
664 		return -EINVAL;
665 
666 	device_set_wakeup_enable(&dev->dev, wol->wolopts & WAKE_MAGIC);
667 
668 	priv->wol_en = !!device_may_wakeup(&dev->dev);
669 
670 	return 0;
671 }
672 #endif
673 
674 static void ethflow_to_filer_rules (struct gfar_private *priv, u64 ethflow)
675 {
676 	u32 fcr = 0x0, fpr = FPR_FILER_MASK;
677 
678 	if (ethflow & RXH_L2DA) {
679 		fcr = RQFCR_PID_DAH | RQFCR_CMP_NOMATCH |
680 		      RQFCR_HASH | RQFCR_AND | RQFCR_HASHTBL_0;
681 		priv->ftp_rqfpr[priv->cur_filer_idx] = fpr;
682 		priv->ftp_rqfcr[priv->cur_filer_idx] = fcr;
683 		gfar_write_filer(priv, priv->cur_filer_idx, fcr, fpr);
684 		priv->cur_filer_idx = priv->cur_filer_idx - 1;
685 
686 		fcr = RQFCR_PID_DAL | RQFCR_CMP_NOMATCH |
687 		      RQFCR_HASH | RQFCR_AND | RQFCR_HASHTBL_0;
688 		priv->ftp_rqfpr[priv->cur_filer_idx] = fpr;
689 		priv->ftp_rqfcr[priv->cur_filer_idx] = fcr;
690 		gfar_write_filer(priv, priv->cur_filer_idx, fcr, fpr);
691 		priv->cur_filer_idx = priv->cur_filer_idx - 1;
692 	}
693 
694 	if (ethflow & RXH_VLAN) {
695 		fcr = RQFCR_PID_VID | RQFCR_CMP_NOMATCH | RQFCR_HASH |
696 		      RQFCR_AND | RQFCR_HASHTBL_0;
697 		gfar_write_filer(priv, priv->cur_filer_idx, fcr, fpr);
698 		priv->ftp_rqfpr[priv->cur_filer_idx] = fpr;
699 		priv->ftp_rqfcr[priv->cur_filer_idx] = fcr;
700 		priv->cur_filer_idx = priv->cur_filer_idx - 1;
701 	}
702 
703 	if (ethflow & RXH_IP_SRC) {
704 		fcr = RQFCR_PID_SIA | RQFCR_CMP_NOMATCH | RQFCR_HASH |
705 		      RQFCR_AND | RQFCR_HASHTBL_0;
706 		priv->ftp_rqfpr[priv->cur_filer_idx] = fpr;
707 		priv->ftp_rqfcr[priv->cur_filer_idx] = fcr;
708 		gfar_write_filer(priv, priv->cur_filer_idx, fcr, fpr);
709 		priv->cur_filer_idx = priv->cur_filer_idx - 1;
710 	}
711 
712 	if (ethflow & (RXH_IP_DST)) {
713 		fcr = RQFCR_PID_DIA | RQFCR_CMP_NOMATCH | RQFCR_HASH |
714 		      RQFCR_AND | RQFCR_HASHTBL_0;
715 		priv->ftp_rqfpr[priv->cur_filer_idx] = fpr;
716 		priv->ftp_rqfcr[priv->cur_filer_idx] = fcr;
717 		gfar_write_filer(priv, priv->cur_filer_idx, fcr, fpr);
718 		priv->cur_filer_idx = priv->cur_filer_idx - 1;
719 	}
720 
721 	if (ethflow & RXH_L3_PROTO) {
722 		fcr = RQFCR_PID_L4P | RQFCR_CMP_NOMATCH | RQFCR_HASH |
723 		      RQFCR_AND | RQFCR_HASHTBL_0;
724 		priv->ftp_rqfpr[priv->cur_filer_idx] = fpr;
725 		priv->ftp_rqfcr[priv->cur_filer_idx] = fcr;
726 		gfar_write_filer(priv, priv->cur_filer_idx, fcr, fpr);
727 		priv->cur_filer_idx = priv->cur_filer_idx - 1;
728 	}
729 
730 	if (ethflow & RXH_L4_B_0_1) {
731 		fcr = RQFCR_PID_SPT | RQFCR_CMP_NOMATCH | RQFCR_HASH |
732 		      RQFCR_AND | RQFCR_HASHTBL_0;
733 		priv->ftp_rqfpr[priv->cur_filer_idx] = fpr;
734 		priv->ftp_rqfcr[priv->cur_filer_idx] = fcr;
735 		gfar_write_filer(priv, priv->cur_filer_idx, fcr, fpr);
736 		priv->cur_filer_idx = priv->cur_filer_idx - 1;
737 	}
738 
739 	if (ethflow & RXH_L4_B_2_3) {
740 		fcr = RQFCR_PID_DPT | RQFCR_CMP_NOMATCH | RQFCR_HASH |
741 		      RQFCR_AND | RQFCR_HASHTBL_0;
742 		priv->ftp_rqfpr[priv->cur_filer_idx] = fpr;
743 		priv->ftp_rqfcr[priv->cur_filer_idx] = fcr;
744 		gfar_write_filer(priv, priv->cur_filer_idx, fcr, fpr);
745 		priv->cur_filer_idx = priv->cur_filer_idx - 1;
746 	}
747 }
748 
749 static int gfar_ethflow_to_filer_table(struct gfar_private *priv, u64 ethflow,
750 				       u64 class)
751 {
752 	unsigned int last_rule_idx = priv->cur_filer_idx;
753 	unsigned int cmp_rqfpr;
754 	unsigned int *local_rqfpr;
755 	unsigned int *local_rqfcr;
756 	int i = 0x0, k = 0x0;
757 	int j = MAX_FILER_IDX, l = 0x0;
758 	int ret = 1;
759 
760 	local_rqfpr = kmalloc_array(MAX_FILER_IDX + 1, sizeof(unsigned int),
761 				    GFP_KERNEL);
762 	local_rqfcr = kmalloc_array(MAX_FILER_IDX + 1, sizeof(unsigned int),
763 				    GFP_KERNEL);
764 	if (!local_rqfpr || !local_rqfcr) {
765 		ret = 0;
766 		goto err;
767 	}
768 
769 	switch (class) {
770 	case TCP_V4_FLOW:
771 		cmp_rqfpr = RQFPR_IPV4 |RQFPR_TCP;
772 		break;
773 	case UDP_V4_FLOW:
774 		cmp_rqfpr = RQFPR_IPV4 |RQFPR_UDP;
775 		break;
776 	case TCP_V6_FLOW:
777 		cmp_rqfpr = RQFPR_IPV6 |RQFPR_TCP;
778 		break;
779 	case UDP_V6_FLOW:
780 		cmp_rqfpr = RQFPR_IPV6 |RQFPR_UDP;
781 		break;
782 	default:
783 		netdev_err(priv->ndev,
784 			   "Right now this class is not supported\n");
785 		ret = 0;
786 		goto err;
787 	}
788 
789 	for (i = 0; i < MAX_FILER_IDX + 1; i++) {
790 		local_rqfpr[j] = priv->ftp_rqfpr[i];
791 		local_rqfcr[j] = priv->ftp_rqfcr[i];
792 		j--;
793 		if ((priv->ftp_rqfcr[i] ==
794 		     (RQFCR_PID_PARSE | RQFCR_CLE | RQFCR_AND)) &&
795 		    (priv->ftp_rqfpr[i] == cmp_rqfpr))
796 			break;
797 	}
798 
799 	if (i == MAX_FILER_IDX + 1) {
800 		netdev_err(priv->ndev,
801 			   "No parse rule found, can't create hash rules\n");
802 		ret = 0;
803 		goto err;
804 	}
805 
806 	/* If a match was found, then it begins the starting of a cluster rule
807 	 * if it was already programmed, we need to overwrite these rules
808 	 */
809 	for (l = i+1; l < MAX_FILER_IDX; l++) {
810 		if ((priv->ftp_rqfcr[l] & RQFCR_CLE) &&
811 		    !(priv->ftp_rqfcr[l] & RQFCR_AND)) {
812 			priv->ftp_rqfcr[l] = RQFCR_CLE | RQFCR_CMP_EXACT |
813 					     RQFCR_HASHTBL_0 | RQFCR_PID_MASK;
814 			priv->ftp_rqfpr[l] = FPR_FILER_MASK;
815 			gfar_write_filer(priv, l, priv->ftp_rqfcr[l],
816 					 priv->ftp_rqfpr[l]);
817 			break;
818 		}
819 
820 		if (!(priv->ftp_rqfcr[l] & RQFCR_CLE) &&
821 			(priv->ftp_rqfcr[l] & RQFCR_AND))
822 			continue;
823 		else {
824 			local_rqfpr[j] = priv->ftp_rqfpr[l];
825 			local_rqfcr[j] = priv->ftp_rqfcr[l];
826 			j--;
827 		}
828 	}
829 
830 	priv->cur_filer_idx = l - 1;
831 	last_rule_idx = l;
832 
833 	/* hash rules */
834 	ethflow_to_filer_rules(priv, ethflow);
835 
836 	/* Write back the popped out rules again */
837 	for (k = j+1; k < MAX_FILER_IDX; k++) {
838 		priv->ftp_rqfpr[priv->cur_filer_idx] = local_rqfpr[k];
839 		priv->ftp_rqfcr[priv->cur_filer_idx] = local_rqfcr[k];
840 		gfar_write_filer(priv, priv->cur_filer_idx,
841 				 local_rqfcr[k], local_rqfpr[k]);
842 		if (!priv->cur_filer_idx)
843 			break;
844 		priv->cur_filer_idx = priv->cur_filer_idx - 1;
845 	}
846 
847 err:
848 	kfree(local_rqfcr);
849 	kfree(local_rqfpr);
850 	return ret;
851 }
852 
853 static int gfar_set_hash_opts(struct gfar_private *priv,
854 			      struct ethtool_rxnfc *cmd)
855 {
856 	/* write the filer rules here */
857 	if (!gfar_ethflow_to_filer_table(priv, cmd->data, cmd->flow_type))
858 		return -EINVAL;
859 
860 	return 0;
861 }
862 
863 static int gfar_check_filer_hardware(struct gfar_private *priv)
864 {
865 	struct gfar __iomem *regs = priv->gfargrp[0].regs;
866 	u32 i;
867 
868 	/* Check if we are in FIFO mode */
869 	i = gfar_read(&regs->ecntrl);
870 	i &= ECNTRL_FIFM;
871 	if (i == ECNTRL_FIFM) {
872 		netdev_notice(priv->ndev, "Interface in FIFO mode\n");
873 		i = gfar_read(&regs->rctrl);
874 		i &= RCTRL_PRSDEP_MASK | RCTRL_PRSFM;
875 		if (i == (RCTRL_PRSDEP_MASK | RCTRL_PRSFM)) {
876 			netdev_info(priv->ndev,
877 				    "Receive Queue Filtering enabled\n");
878 		} else {
879 			netdev_warn(priv->ndev,
880 				    "Receive Queue Filtering disabled\n");
881 			return -EOPNOTSUPP;
882 		}
883 	}
884 	/* Or in standard mode */
885 	else {
886 		i = gfar_read(&regs->rctrl);
887 		i &= RCTRL_PRSDEP_MASK;
888 		if (i == RCTRL_PRSDEP_MASK) {
889 			netdev_info(priv->ndev,
890 				    "Receive Queue Filtering enabled\n");
891 		} else {
892 			netdev_warn(priv->ndev,
893 				    "Receive Queue Filtering disabled\n");
894 			return -EOPNOTSUPP;
895 		}
896 	}
897 
898 	/* Sets the properties for arbitrary filer rule
899 	 * to the first 4 Layer 4 Bytes
900 	 */
901 	gfar_write(&regs->rbifx, 0xC0C1C2C3);
902 	return 0;
903 }
904 
905 /* Write a mask to filer cache */
906 static void gfar_set_mask(u32 mask, struct filer_table *tab)
907 {
908 	tab->fe[tab->index].ctrl = RQFCR_AND | RQFCR_PID_MASK | RQFCR_CMP_EXACT;
909 	tab->fe[tab->index].prop = mask;
910 	tab->index++;
911 }
912 
913 /* Sets parse bits (e.g. IP or TCP) */
914 static void gfar_set_parse_bits(u32 value, u32 mask, struct filer_table *tab)
915 {
916 	gfar_set_mask(mask, tab);
917 	tab->fe[tab->index].ctrl = RQFCR_CMP_EXACT | RQFCR_PID_PARSE |
918 				   RQFCR_AND;
919 	tab->fe[tab->index].prop = value;
920 	tab->index++;
921 }
922 
923 static void gfar_set_general_attribute(u32 value, u32 mask, u32 flag,
924 				       struct filer_table *tab)
925 {
926 	gfar_set_mask(mask, tab);
927 	tab->fe[tab->index].ctrl = RQFCR_CMP_EXACT | RQFCR_AND | flag;
928 	tab->fe[tab->index].prop = value;
929 	tab->index++;
930 }
931 
932 /* For setting a tuple of value and mask of type flag
933  * Example:
934  * IP-Src = 10.0.0.0/255.0.0.0
935  * value: 0x0A000000 mask: FF000000 flag: RQFPR_IPV4
936  *
937  * Ethtool gives us a value=0 and mask=~0 for don't care a tuple
938  * For a don't care mask it gives us a 0
939  *
940  * The check if don't care and the mask adjustment if mask=0 is done for VLAN
941  * and MAC stuff on an upper level (due to missing information on this level).
942  * For these guys we can discard them if they are value=0 and mask=0.
943  *
944  * Further the all masks are one-padded for better hardware efficiency.
945  */
946 static void gfar_set_attribute(u32 value, u32 mask, u32 flag,
947 			       struct filer_table *tab)
948 {
949 	switch (flag) {
950 		/* 3bit */
951 	case RQFCR_PID_PRI:
952 		if (!(value | mask))
953 			return;
954 		mask |= RQFCR_PID_PRI_MASK;
955 		break;
956 		/* 8bit */
957 	case RQFCR_PID_L4P:
958 	case RQFCR_PID_TOS:
959 		if (!~(mask | RQFCR_PID_L4P_MASK))
960 			return;
961 		if (!mask)
962 			mask = ~0;
963 		else
964 			mask |= RQFCR_PID_L4P_MASK;
965 		break;
966 		/* 12bit */
967 	case RQFCR_PID_VID:
968 		if (!(value | mask))
969 			return;
970 		mask |= RQFCR_PID_VID_MASK;
971 		break;
972 		/* 16bit */
973 	case RQFCR_PID_DPT:
974 	case RQFCR_PID_SPT:
975 	case RQFCR_PID_ETY:
976 		if (!~(mask | RQFCR_PID_PORT_MASK))
977 			return;
978 		if (!mask)
979 			mask = ~0;
980 		else
981 			mask |= RQFCR_PID_PORT_MASK;
982 		break;
983 		/* 24bit */
984 	case RQFCR_PID_DAH:
985 	case RQFCR_PID_DAL:
986 	case RQFCR_PID_SAH:
987 	case RQFCR_PID_SAL:
988 		if (!(value | mask))
989 			return;
990 		mask |= RQFCR_PID_MAC_MASK;
991 		break;
992 		/* for all real 32bit masks */
993 	default:
994 		if (!~mask)
995 			return;
996 		if (!mask)
997 			mask = ~0;
998 		break;
999 	}
1000 	gfar_set_general_attribute(value, mask, flag, tab);
1001 }
1002 
1003 /* Translates value and mask for UDP, TCP or SCTP */
1004 static void gfar_set_basic_ip(struct ethtool_tcpip4_spec *value,
1005 			      struct ethtool_tcpip4_spec *mask,
1006 			      struct filer_table *tab)
1007 {
1008 	gfar_set_attribute(be32_to_cpu(value->ip4src),
1009 			   be32_to_cpu(mask->ip4src),
1010 			   RQFCR_PID_SIA, tab);
1011 	gfar_set_attribute(be32_to_cpu(value->ip4dst),
1012 			   be32_to_cpu(mask->ip4dst),
1013 			   RQFCR_PID_DIA, tab);
1014 	gfar_set_attribute(be16_to_cpu(value->pdst),
1015 			   be16_to_cpu(mask->pdst),
1016 			   RQFCR_PID_DPT, tab);
1017 	gfar_set_attribute(be16_to_cpu(value->psrc),
1018 			   be16_to_cpu(mask->psrc),
1019 			   RQFCR_PID_SPT, tab);
1020 	gfar_set_attribute(value->tos, mask->tos, RQFCR_PID_TOS, tab);
1021 }
1022 
1023 /* Translates value and mask for RAW-IP4 */
1024 static void gfar_set_user_ip(struct ethtool_usrip4_spec *value,
1025 			     struct ethtool_usrip4_spec *mask,
1026 			     struct filer_table *tab)
1027 {
1028 	gfar_set_attribute(be32_to_cpu(value->ip4src),
1029 			   be32_to_cpu(mask->ip4src),
1030 			   RQFCR_PID_SIA, tab);
1031 	gfar_set_attribute(be32_to_cpu(value->ip4dst),
1032 			   be32_to_cpu(mask->ip4dst),
1033 			   RQFCR_PID_DIA, tab);
1034 	gfar_set_attribute(value->tos, mask->tos, RQFCR_PID_TOS, tab);
1035 	gfar_set_attribute(value->proto, mask->proto, RQFCR_PID_L4P, tab);
1036 	gfar_set_attribute(be32_to_cpu(value->l4_4_bytes),
1037 			   be32_to_cpu(mask->l4_4_bytes),
1038 			   RQFCR_PID_ARB, tab);
1039 
1040 }
1041 
1042 /* Translates value and mask for ETHER spec */
1043 static void gfar_set_ether(struct ethhdr *value, struct ethhdr *mask,
1044 			   struct filer_table *tab)
1045 {
1046 	u32 upper_temp_mask = 0;
1047 	u32 lower_temp_mask = 0;
1048 
1049 	/* Source address */
1050 	if (!is_broadcast_ether_addr(mask->h_source)) {
1051 		if (is_zero_ether_addr(mask->h_source)) {
1052 			upper_temp_mask = 0xFFFFFFFF;
1053 			lower_temp_mask = 0xFFFFFFFF;
1054 		} else {
1055 			upper_temp_mask = mask->h_source[0] << 16 |
1056 					  mask->h_source[1] << 8  |
1057 					  mask->h_source[2];
1058 			lower_temp_mask = mask->h_source[3] << 16 |
1059 					  mask->h_source[4] << 8  |
1060 					  mask->h_source[5];
1061 		}
1062 		/* Upper 24bit */
1063 		gfar_set_attribute(value->h_source[0] << 16 |
1064 				   value->h_source[1] << 8  |
1065 				   value->h_source[2],
1066 				   upper_temp_mask, RQFCR_PID_SAH, tab);
1067 		/* And the same for the lower part */
1068 		gfar_set_attribute(value->h_source[3] << 16 |
1069 				   value->h_source[4] << 8  |
1070 				   value->h_source[5],
1071 				   lower_temp_mask, RQFCR_PID_SAL, tab);
1072 	}
1073 	/* Destination address */
1074 	if (!is_broadcast_ether_addr(mask->h_dest)) {
1075 		/* Special for destination is limited broadcast */
1076 		if ((is_broadcast_ether_addr(value->h_dest) &&
1077 		    is_zero_ether_addr(mask->h_dest))) {
1078 			gfar_set_parse_bits(RQFPR_EBC, RQFPR_EBC, tab);
1079 		} else {
1080 			if (is_zero_ether_addr(mask->h_dest)) {
1081 				upper_temp_mask = 0xFFFFFFFF;
1082 				lower_temp_mask = 0xFFFFFFFF;
1083 			} else {
1084 				upper_temp_mask = mask->h_dest[0] << 16 |
1085 						  mask->h_dest[1] << 8  |
1086 						  mask->h_dest[2];
1087 				lower_temp_mask = mask->h_dest[3] << 16 |
1088 						  mask->h_dest[4] << 8  |
1089 						  mask->h_dest[5];
1090 			}
1091 
1092 			/* Upper 24bit */
1093 			gfar_set_attribute(value->h_dest[0] << 16 |
1094 					   value->h_dest[1] << 8  |
1095 					   value->h_dest[2],
1096 					   upper_temp_mask, RQFCR_PID_DAH, tab);
1097 			/* And the same for the lower part */
1098 			gfar_set_attribute(value->h_dest[3] << 16 |
1099 					   value->h_dest[4] << 8  |
1100 					   value->h_dest[5],
1101 					   lower_temp_mask, RQFCR_PID_DAL, tab);
1102 		}
1103 	}
1104 
1105 	gfar_set_attribute(be16_to_cpu(value->h_proto),
1106 			   be16_to_cpu(mask->h_proto),
1107 			   RQFCR_PID_ETY, tab);
1108 }
1109 
1110 static inline u32 vlan_tci_vid(struct ethtool_rx_flow_spec *rule)
1111 {
1112 	return be16_to_cpu(rule->h_ext.vlan_tci) & VLAN_VID_MASK;
1113 }
1114 
1115 static inline u32 vlan_tci_vidm(struct ethtool_rx_flow_spec *rule)
1116 {
1117 	return be16_to_cpu(rule->m_ext.vlan_tci) & VLAN_VID_MASK;
1118 }
1119 
1120 static inline u32 vlan_tci_cfi(struct ethtool_rx_flow_spec *rule)
1121 {
1122 	return be16_to_cpu(rule->h_ext.vlan_tci) & VLAN_CFI_MASK;
1123 }
1124 
1125 static inline u32 vlan_tci_cfim(struct ethtool_rx_flow_spec *rule)
1126 {
1127 	return be16_to_cpu(rule->m_ext.vlan_tci) & VLAN_CFI_MASK;
1128 }
1129 
1130 static inline u32 vlan_tci_prio(struct ethtool_rx_flow_spec *rule)
1131 {
1132 	return (be16_to_cpu(rule->h_ext.vlan_tci) & VLAN_PRIO_MASK) >>
1133 		VLAN_PRIO_SHIFT;
1134 }
1135 
1136 static inline u32 vlan_tci_priom(struct ethtool_rx_flow_spec *rule)
1137 {
1138 	return (be16_to_cpu(rule->m_ext.vlan_tci) & VLAN_PRIO_MASK) >>
1139 		VLAN_PRIO_SHIFT;
1140 }
1141 
1142 /* Convert a rule to binary filter format of gianfar */
1143 static int gfar_convert_to_filer(struct ethtool_rx_flow_spec *rule,
1144 				 struct filer_table *tab)
1145 {
1146 	u32 vlan = 0, vlan_mask = 0;
1147 	u32 id = 0, id_mask = 0;
1148 	u32 cfi = 0, cfi_mask = 0;
1149 	u32 prio = 0, prio_mask = 0;
1150 	u32 old_index = tab->index;
1151 
1152 	/* Check if vlan is wanted */
1153 	if ((rule->flow_type & FLOW_EXT) &&
1154 	    (rule->m_ext.vlan_tci != cpu_to_be16(0xFFFF))) {
1155 		if (!rule->m_ext.vlan_tci)
1156 			rule->m_ext.vlan_tci = cpu_to_be16(0xFFFF);
1157 
1158 		vlan = RQFPR_VLN;
1159 		vlan_mask = RQFPR_VLN;
1160 
1161 		/* Separate the fields */
1162 		id = vlan_tci_vid(rule);
1163 		id_mask = vlan_tci_vidm(rule);
1164 		cfi = vlan_tci_cfi(rule);
1165 		cfi_mask = vlan_tci_cfim(rule);
1166 		prio = vlan_tci_prio(rule);
1167 		prio_mask = vlan_tci_priom(rule);
1168 
1169 		if (cfi == VLAN_TAG_PRESENT && cfi_mask == VLAN_TAG_PRESENT) {
1170 			vlan |= RQFPR_CFI;
1171 			vlan_mask |= RQFPR_CFI;
1172 		} else if (cfi != VLAN_TAG_PRESENT &&
1173 			   cfi_mask == VLAN_TAG_PRESENT) {
1174 			vlan_mask |= RQFPR_CFI;
1175 		}
1176 	}
1177 
1178 	switch (rule->flow_type & ~FLOW_EXT) {
1179 	case TCP_V4_FLOW:
1180 		gfar_set_parse_bits(RQFPR_IPV4 | RQFPR_TCP | vlan,
1181 				    RQFPR_IPV4 | RQFPR_TCP | vlan_mask, tab);
1182 		gfar_set_basic_ip(&rule->h_u.tcp_ip4_spec,
1183 				  &rule->m_u.tcp_ip4_spec, tab);
1184 		break;
1185 	case UDP_V4_FLOW:
1186 		gfar_set_parse_bits(RQFPR_IPV4 | RQFPR_UDP | vlan,
1187 				    RQFPR_IPV4 | RQFPR_UDP | vlan_mask, tab);
1188 		gfar_set_basic_ip(&rule->h_u.udp_ip4_spec,
1189 				  &rule->m_u.udp_ip4_spec, tab);
1190 		break;
1191 	case SCTP_V4_FLOW:
1192 		gfar_set_parse_bits(RQFPR_IPV4 | vlan, RQFPR_IPV4 | vlan_mask,
1193 				    tab);
1194 		gfar_set_attribute(132, 0, RQFCR_PID_L4P, tab);
1195 		gfar_set_basic_ip((struct ethtool_tcpip4_spec *)&rule->h_u,
1196 				  (struct ethtool_tcpip4_spec *)&rule->m_u,
1197 				  tab);
1198 		break;
1199 	case IP_USER_FLOW:
1200 		gfar_set_parse_bits(RQFPR_IPV4 | vlan, RQFPR_IPV4 | vlan_mask,
1201 				    tab);
1202 		gfar_set_user_ip((struct ethtool_usrip4_spec *) &rule->h_u,
1203 				 (struct ethtool_usrip4_spec *) &rule->m_u,
1204 				 tab);
1205 		break;
1206 	case ETHER_FLOW:
1207 		if (vlan)
1208 			gfar_set_parse_bits(vlan, vlan_mask, tab);
1209 		gfar_set_ether((struct ethhdr *) &rule->h_u,
1210 			       (struct ethhdr *) &rule->m_u, tab);
1211 		break;
1212 	default:
1213 		return -1;
1214 	}
1215 
1216 	/* Set the vlan attributes in the end */
1217 	if (vlan) {
1218 		gfar_set_attribute(id, id_mask, RQFCR_PID_VID, tab);
1219 		gfar_set_attribute(prio, prio_mask, RQFCR_PID_PRI, tab);
1220 	}
1221 
1222 	/* If there has been nothing written till now, it must be a default */
1223 	if (tab->index == old_index) {
1224 		gfar_set_mask(0xFFFFFFFF, tab);
1225 		tab->fe[tab->index].ctrl = 0x20;
1226 		tab->fe[tab->index].prop = 0x0;
1227 		tab->index++;
1228 	}
1229 
1230 	/* Remove last AND */
1231 	tab->fe[tab->index - 1].ctrl &= (~RQFCR_AND);
1232 
1233 	/* Specify which queue to use or to drop */
1234 	if (rule->ring_cookie == RX_CLS_FLOW_DISC)
1235 		tab->fe[tab->index - 1].ctrl |= RQFCR_RJE;
1236 	else
1237 		tab->fe[tab->index - 1].ctrl |= (rule->ring_cookie << 10);
1238 
1239 	/* Only big enough entries can be clustered */
1240 	if (tab->index > (old_index + 2)) {
1241 		tab->fe[old_index + 1].ctrl |= RQFCR_CLE;
1242 		tab->fe[tab->index - 1].ctrl |= RQFCR_CLE;
1243 	}
1244 
1245 	/* In rare cases the cache can be full while there is
1246 	 * free space in hw
1247 	 */
1248 	if (tab->index > MAX_FILER_CACHE_IDX - 1)
1249 		return -EBUSY;
1250 
1251 	return 0;
1252 }
1253 
1254 /* Write the bit-pattern from software's buffer to hardware registers */
1255 static int gfar_write_filer_table(struct gfar_private *priv,
1256 				  struct filer_table *tab)
1257 {
1258 	u32 i = 0;
1259 	if (tab->index > MAX_FILER_IDX - 1)
1260 		return -EBUSY;
1261 
1262 	/* Fill regular entries */
1263 	for (; i < MAX_FILER_IDX && (tab->fe[i].ctrl | tab->fe[i].prop); i++)
1264 		gfar_write_filer(priv, i, tab->fe[i].ctrl, tab->fe[i].prop);
1265 	/* Fill the rest with fall-troughs */
1266 	for (; i < MAX_FILER_IDX; i++)
1267 		gfar_write_filer(priv, i, 0x60, 0xFFFFFFFF);
1268 	/* Last entry must be default accept
1269 	 * because that's what people expect
1270 	 */
1271 	gfar_write_filer(priv, i, 0x20, 0x0);
1272 
1273 	return 0;
1274 }
1275 
1276 static int gfar_check_capability(struct ethtool_rx_flow_spec *flow,
1277 				 struct gfar_private *priv)
1278 {
1279 
1280 	if (flow->flow_type & FLOW_EXT)	{
1281 		if (~flow->m_ext.data[0] || ~flow->m_ext.data[1])
1282 			netdev_warn(priv->ndev,
1283 				    "User-specific data not supported!\n");
1284 		if (~flow->m_ext.vlan_etype)
1285 			netdev_warn(priv->ndev,
1286 				    "VLAN-etype not supported!\n");
1287 	}
1288 	if (flow->flow_type == IP_USER_FLOW)
1289 		if (flow->h_u.usr_ip4_spec.ip_ver != ETH_RX_NFC_IP4)
1290 			netdev_warn(priv->ndev,
1291 				    "IP-Version differing from IPv4 not supported!\n");
1292 
1293 	return 0;
1294 }
1295 
1296 static int gfar_process_filer_changes(struct gfar_private *priv)
1297 {
1298 	struct ethtool_flow_spec_container *j;
1299 	struct filer_table *tab;
1300 	s32 ret = 0;
1301 
1302 	/* So index is set to zero, too! */
1303 	tab = kzalloc(sizeof(*tab), GFP_KERNEL);
1304 	if (tab == NULL)
1305 		return -ENOMEM;
1306 
1307 	/* Now convert the existing filer data from flow_spec into
1308 	 * filer tables binary format
1309 	 */
1310 	list_for_each_entry(j, &priv->rx_list.list, list) {
1311 		ret = gfar_convert_to_filer(&j->fs, tab);
1312 		if (ret == -EBUSY) {
1313 			netdev_err(priv->ndev,
1314 				   "Rule not added: No free space!\n");
1315 			goto end;
1316 		}
1317 		if (ret == -1) {
1318 			netdev_err(priv->ndev,
1319 				   "Rule not added: Unsupported Flow-type!\n");
1320 			goto end;
1321 		}
1322 	}
1323 
1324 	/* Write everything to hardware */
1325 	ret = gfar_write_filer_table(priv, tab);
1326 	if (ret == -EBUSY) {
1327 		netdev_err(priv->ndev, "Rule not added: No free space!\n");
1328 		goto end;
1329 	}
1330 
1331 end:
1332 	kfree(tab);
1333 	return ret;
1334 }
1335 
1336 static void gfar_invert_masks(struct ethtool_rx_flow_spec *flow)
1337 {
1338 	u32 i = 0;
1339 
1340 	for (i = 0; i < sizeof(flow->m_u); i++)
1341 		flow->m_u.hdata[i] ^= 0xFF;
1342 
1343 	flow->m_ext.vlan_etype ^= cpu_to_be16(0xFFFF);
1344 	flow->m_ext.vlan_tci ^= cpu_to_be16(0xFFFF);
1345 	flow->m_ext.data[0] ^= cpu_to_be32(~0);
1346 	flow->m_ext.data[1] ^= cpu_to_be32(~0);
1347 }
1348 
1349 static int gfar_add_cls(struct gfar_private *priv,
1350 			struct ethtool_rx_flow_spec *flow)
1351 {
1352 	struct ethtool_flow_spec_container *temp, *comp;
1353 	int ret = 0;
1354 
1355 	temp = kmalloc(sizeof(*temp), GFP_KERNEL);
1356 	if (temp == NULL)
1357 		return -ENOMEM;
1358 	memcpy(&temp->fs, flow, sizeof(temp->fs));
1359 
1360 	gfar_invert_masks(&temp->fs);
1361 	ret = gfar_check_capability(&temp->fs, priv);
1362 	if (ret)
1363 		goto clean_mem;
1364 	/* Link in the new element at the right @location */
1365 	if (list_empty(&priv->rx_list.list)) {
1366 		ret = gfar_check_filer_hardware(priv);
1367 		if (ret != 0)
1368 			goto clean_mem;
1369 		list_add(&temp->list, &priv->rx_list.list);
1370 		goto process;
1371 	} else {
1372 		list_for_each_entry(comp, &priv->rx_list.list, list) {
1373 			if (comp->fs.location > flow->location) {
1374 				list_add_tail(&temp->list, &comp->list);
1375 				goto process;
1376 			}
1377 			if (comp->fs.location == flow->location) {
1378 				netdev_err(priv->ndev,
1379 					   "Rule not added: ID %d not free!\n",
1380 					   flow->location);
1381 				ret = -EBUSY;
1382 				goto clean_mem;
1383 			}
1384 		}
1385 		list_add_tail(&temp->list, &priv->rx_list.list);
1386 	}
1387 
1388 process:
1389 	priv->rx_list.count++;
1390 	ret = gfar_process_filer_changes(priv);
1391 	if (ret)
1392 		goto clean_list;
1393 	return ret;
1394 
1395 clean_list:
1396 	priv->rx_list.count--;
1397 	list_del(&temp->list);
1398 clean_mem:
1399 	kfree(temp);
1400 	return ret;
1401 }
1402 
1403 static int gfar_del_cls(struct gfar_private *priv, u32 loc)
1404 {
1405 	struct ethtool_flow_spec_container *comp;
1406 	u32 ret = -EINVAL;
1407 
1408 	if (list_empty(&priv->rx_list.list))
1409 		return ret;
1410 
1411 	list_for_each_entry(comp, &priv->rx_list.list, list) {
1412 		if (comp->fs.location == loc) {
1413 			list_del(&comp->list);
1414 			kfree(comp);
1415 			priv->rx_list.count--;
1416 			gfar_process_filer_changes(priv);
1417 			ret = 0;
1418 			break;
1419 		}
1420 	}
1421 
1422 	return ret;
1423 }
1424 
1425 static int gfar_get_cls(struct gfar_private *priv, struct ethtool_rxnfc *cmd)
1426 {
1427 	struct ethtool_flow_spec_container *comp;
1428 	u32 ret = -EINVAL;
1429 
1430 	list_for_each_entry(comp, &priv->rx_list.list, list) {
1431 		if (comp->fs.location == cmd->fs.location) {
1432 			memcpy(&cmd->fs, &comp->fs, sizeof(cmd->fs));
1433 			gfar_invert_masks(&cmd->fs);
1434 			ret = 0;
1435 			break;
1436 		}
1437 	}
1438 
1439 	return ret;
1440 }
1441 
1442 static int gfar_get_cls_all(struct gfar_private *priv,
1443 			    struct ethtool_rxnfc *cmd, u32 *rule_locs)
1444 {
1445 	struct ethtool_flow_spec_container *comp;
1446 	u32 i = 0;
1447 
1448 	list_for_each_entry(comp, &priv->rx_list.list, list) {
1449 		if (i == cmd->rule_cnt)
1450 			return -EMSGSIZE;
1451 		rule_locs[i] = comp->fs.location;
1452 		i++;
1453 	}
1454 
1455 	cmd->data = MAX_FILER_IDX;
1456 	cmd->rule_cnt = i;
1457 
1458 	return 0;
1459 }
1460 
1461 static int gfar_set_nfc(struct net_device *dev, struct ethtool_rxnfc *cmd)
1462 {
1463 	struct gfar_private *priv = netdev_priv(dev);
1464 	int ret = 0;
1465 
1466 	if (test_bit(GFAR_RESETTING, &priv->state))
1467 		return -EBUSY;
1468 
1469 	mutex_lock(&priv->rx_queue_access);
1470 
1471 	switch (cmd->cmd) {
1472 	case ETHTOOL_SRXFH:
1473 		ret = gfar_set_hash_opts(priv, cmd);
1474 		break;
1475 	case ETHTOOL_SRXCLSRLINS:
1476 		if ((cmd->fs.ring_cookie != RX_CLS_FLOW_DISC &&
1477 		     cmd->fs.ring_cookie >= priv->num_rx_queues) ||
1478 		    cmd->fs.location >= MAX_FILER_IDX) {
1479 			ret = -EINVAL;
1480 			break;
1481 		}
1482 		ret = gfar_add_cls(priv, &cmd->fs);
1483 		break;
1484 	case ETHTOOL_SRXCLSRLDEL:
1485 		ret = gfar_del_cls(priv, cmd->fs.location);
1486 		break;
1487 	default:
1488 		ret = -EINVAL;
1489 	}
1490 
1491 	mutex_unlock(&priv->rx_queue_access);
1492 
1493 	return ret;
1494 }
1495 
1496 static int gfar_get_nfc(struct net_device *dev, struct ethtool_rxnfc *cmd,
1497 			u32 *rule_locs)
1498 {
1499 	struct gfar_private *priv = netdev_priv(dev);
1500 	int ret = 0;
1501 
1502 	switch (cmd->cmd) {
1503 	case ETHTOOL_GRXRINGS:
1504 		cmd->data = priv->num_rx_queues;
1505 		break;
1506 	case ETHTOOL_GRXCLSRLCNT:
1507 		cmd->rule_cnt = priv->rx_list.count;
1508 		break;
1509 	case ETHTOOL_GRXCLSRULE:
1510 		ret = gfar_get_cls(priv, cmd);
1511 		break;
1512 	case ETHTOOL_GRXCLSRLALL:
1513 		ret = gfar_get_cls_all(priv, cmd, rule_locs);
1514 		break;
1515 	default:
1516 		ret = -EINVAL;
1517 		break;
1518 	}
1519 
1520 	return ret;
1521 }
1522 
1523 int gfar_phc_index = -1;
1524 EXPORT_SYMBOL(gfar_phc_index);
1525 
1526 static int gfar_get_ts_info(struct net_device *dev,
1527 			    struct ethtool_ts_info *info)
1528 {
1529 	struct gfar_private *priv = netdev_priv(dev);
1530 
1531 	if (!(priv->device_flags & FSL_GIANFAR_DEV_HAS_TIMER)) {
1532 		info->so_timestamping = SOF_TIMESTAMPING_RX_SOFTWARE |
1533 					SOF_TIMESTAMPING_SOFTWARE;
1534 		info->phc_index = -1;
1535 		return 0;
1536 	}
1537 	info->so_timestamping = SOF_TIMESTAMPING_TX_HARDWARE |
1538 				SOF_TIMESTAMPING_RX_HARDWARE |
1539 				SOF_TIMESTAMPING_RAW_HARDWARE;
1540 	info->phc_index = gfar_phc_index;
1541 	info->tx_types = (1 << HWTSTAMP_TX_OFF) |
1542 			 (1 << HWTSTAMP_TX_ON);
1543 	info->rx_filters = (1 << HWTSTAMP_FILTER_NONE) |
1544 			   (1 << HWTSTAMP_FILTER_ALL);
1545 	return 0;
1546 }
1547 
1548 const struct ethtool_ops gfar_ethtool_ops = {
1549 	.get_settings = gfar_gsettings,
1550 	.set_settings = gfar_ssettings,
1551 	.get_drvinfo = gfar_gdrvinfo,
1552 	.get_regs_len = gfar_reglen,
1553 	.get_regs = gfar_get_regs,
1554 	.get_link = ethtool_op_get_link,
1555 	.get_coalesce = gfar_gcoalesce,
1556 	.set_coalesce = gfar_scoalesce,
1557 	.get_ringparam = gfar_gringparam,
1558 	.set_ringparam = gfar_sringparam,
1559 	.get_pauseparam = gfar_gpauseparam,
1560 	.set_pauseparam = gfar_spauseparam,
1561 	.get_strings = gfar_gstrings,
1562 	.get_sset_count = gfar_sset_count,
1563 	.get_ethtool_stats = gfar_fill_stats,
1564 	.get_msglevel = gfar_get_msglevel,
1565 	.set_msglevel = gfar_set_msglevel,
1566 #ifdef CONFIG_PM
1567 	.get_wol = gfar_get_wol,
1568 	.set_wol = gfar_set_wol,
1569 #endif
1570 	.set_rxnfc = gfar_set_nfc,
1571 	.get_rxnfc = gfar_get_nfc,
1572 	.get_ts_info = gfar_get_ts_info,
1573 };
1574