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1 // SPDX-License-Identifier: (GPL-2.0+ OR BSD-3-Clause)
2 /* Copyright 2019 NXP */
3 
4 #include "enetc.h"
5 
6 #include <net/pkt_sched.h>
7 #include <linux/math64.h>
8 #include <linux/refcount.h>
9 #include <net/pkt_cls.h>
10 #include <net/tc_act/tc_gate.h>
11 
enetc_get_max_gcl_len(struct enetc_hw * hw)12 static u16 enetc_get_max_gcl_len(struct enetc_hw *hw)
13 {
14 	return enetc_rd(hw, ENETC_QBV_PTGCAPR_OFFSET)
15 		& ENETC_QBV_MAX_GCL_LEN_MASK;
16 }
17 
enetc_sched_speed_set(struct enetc_ndev_priv * priv,int speed)18 void enetc_sched_speed_set(struct enetc_ndev_priv *priv, int speed)
19 {
20 	struct enetc_hw *hw = &priv->si->hw;
21 	u32 old_speed = priv->speed;
22 	u32 pspeed, tmp;
23 
24 	if (speed == old_speed)
25 		return;
26 
27 	switch (speed) {
28 	case SPEED_1000:
29 		pspeed = ENETC_PMR_PSPEED_1000M;
30 		break;
31 	case SPEED_2500:
32 		pspeed = ENETC_PMR_PSPEED_2500M;
33 		break;
34 	case SPEED_100:
35 		pspeed = ENETC_PMR_PSPEED_100M;
36 		break;
37 	case SPEED_10:
38 	default:
39 		pspeed = ENETC_PMR_PSPEED_10M;
40 	}
41 
42 	priv->speed = speed;
43 	tmp = enetc_port_rd(hw, ENETC_PMR);
44 	enetc_port_wr(hw, ENETC_PMR, (tmp & ~ENETC_PMR_PSPEED_MASK) | pspeed);
45 }
46 
enetc_setup_taprio(struct net_device * ndev,struct tc_taprio_qopt_offload * admin_conf)47 static int enetc_setup_taprio(struct net_device *ndev,
48 			      struct tc_taprio_qopt_offload *admin_conf)
49 {
50 	struct enetc_ndev_priv *priv = netdev_priv(ndev);
51 	struct enetc_hw *hw = &priv->si->hw;
52 	struct enetc_cbd cbd = {.cmd = 0};
53 	struct tgs_gcl_conf *gcl_config;
54 	struct tgs_gcl_data *gcl_data;
55 	struct gce *gce;
56 	dma_addr_t dma;
57 	u16 data_size;
58 	u16 gcl_len;
59 	u32 tge;
60 	int err;
61 	int i;
62 
63 	if (admin_conf->num_entries > enetc_get_max_gcl_len(hw))
64 		return -EINVAL;
65 	gcl_len = admin_conf->num_entries;
66 
67 	tge = enetc_rd(hw, ENETC_QBV_PTGCR_OFFSET);
68 	if (!admin_conf->enable) {
69 		enetc_wr(hw, ENETC_QBV_PTGCR_OFFSET, tge & ~ENETC_QBV_TGE);
70 
71 		priv->active_offloads &= ~ENETC_F_QBV;
72 
73 		return 0;
74 	}
75 
76 	if (admin_conf->cycle_time > U32_MAX ||
77 	    admin_conf->cycle_time_extension > U32_MAX)
78 		return -EINVAL;
79 
80 	/* Configure the (administrative) gate control list using the
81 	 * control BD descriptor.
82 	 */
83 	gcl_config = &cbd.gcl_conf;
84 
85 	data_size = struct_size(gcl_data, entry, gcl_len);
86 	gcl_data = kzalloc(data_size, __GFP_DMA | GFP_KERNEL);
87 	if (!gcl_data)
88 		return -ENOMEM;
89 
90 	gce = (struct gce *)(gcl_data + 1);
91 
92 	/* Set all gates open as default */
93 	gcl_config->atc = 0xff;
94 	gcl_config->acl_len = cpu_to_le16(gcl_len);
95 
96 	gcl_data->btl = cpu_to_le32(lower_32_bits(admin_conf->base_time));
97 	gcl_data->bth = cpu_to_le32(upper_32_bits(admin_conf->base_time));
98 	gcl_data->ct = cpu_to_le32(admin_conf->cycle_time);
99 	gcl_data->cte = cpu_to_le32(admin_conf->cycle_time_extension);
100 
101 	for (i = 0; i < gcl_len; i++) {
102 		struct tc_taprio_sched_entry *temp_entry;
103 		struct gce *temp_gce = gce + i;
104 
105 		temp_entry = &admin_conf->entries[i];
106 
107 		temp_gce->gate = (u8)temp_entry->gate_mask;
108 		temp_gce->period = cpu_to_le32(temp_entry->interval);
109 	}
110 
111 	cbd.length = cpu_to_le16(data_size);
112 	cbd.status_flags = 0;
113 
114 	dma = dma_map_single(&priv->si->pdev->dev, gcl_data,
115 			     data_size, DMA_TO_DEVICE);
116 	if (dma_mapping_error(&priv->si->pdev->dev, dma)) {
117 		netdev_err(priv->si->ndev, "DMA mapping failed!\n");
118 		kfree(gcl_data);
119 		return -ENOMEM;
120 	}
121 
122 	cbd.addr[0] = lower_32_bits(dma);
123 	cbd.addr[1] = upper_32_bits(dma);
124 	cbd.cls = BDCR_CMD_PORT_GCL;
125 	cbd.status_flags = 0;
126 
127 	enetc_wr(hw, ENETC_QBV_PTGCR_OFFSET, tge | ENETC_QBV_TGE);
128 
129 	err = enetc_send_cmd(priv->si, &cbd);
130 	if (err)
131 		enetc_wr(hw, ENETC_QBV_PTGCR_OFFSET, tge & ~ENETC_QBV_TGE);
132 
133 	dma_unmap_single(&priv->si->pdev->dev, dma, data_size, DMA_TO_DEVICE);
134 	kfree(gcl_data);
135 
136 	if (!err)
137 		priv->active_offloads |= ENETC_F_QBV;
138 
139 	return err;
140 }
141 
enetc_setup_tc_taprio(struct net_device * ndev,void * type_data)142 int enetc_setup_tc_taprio(struct net_device *ndev, void *type_data)
143 {
144 	struct tc_taprio_qopt_offload *taprio = type_data;
145 	struct enetc_ndev_priv *priv = netdev_priv(ndev);
146 	struct enetc_hw *hw = &priv->si->hw;
147 	struct enetc_bdr *tx_ring;
148 	int err;
149 	int i;
150 
151 	/* TSD and Qbv are mutually exclusive in hardware */
152 	for (i = 0; i < priv->num_tx_rings; i++)
153 		if (priv->tx_ring[i]->tsd_enable)
154 			return -EBUSY;
155 
156 	for (i = 0; i < priv->num_tx_rings; i++) {
157 		tx_ring = priv->tx_ring[i];
158 		tx_ring->prio = taprio->enable ? i : 0;
159 		enetc_set_bdr_prio(hw, tx_ring->index, tx_ring->prio);
160 	}
161 
162 	err = enetc_setup_taprio(ndev, taprio);
163 	if (err) {
164 		for (i = 0; i < priv->num_tx_rings; i++) {
165 			tx_ring = priv->tx_ring[i];
166 			tx_ring->prio = taprio->enable ? 0 : i;
167 			enetc_set_bdr_prio(hw, tx_ring->index, tx_ring->prio);
168 		}
169 	}
170 
171 	return err;
172 }
173 
enetc_get_cbs_enable(struct enetc_hw * hw,u8 tc)174 static u32 enetc_get_cbs_enable(struct enetc_hw *hw, u8 tc)
175 {
176 	return enetc_port_rd(hw, ENETC_PTCCBSR0(tc)) & ENETC_CBSE;
177 }
178 
enetc_get_cbs_bw(struct enetc_hw * hw,u8 tc)179 static u8 enetc_get_cbs_bw(struct enetc_hw *hw, u8 tc)
180 {
181 	return enetc_port_rd(hw, ENETC_PTCCBSR0(tc)) & ENETC_CBS_BW_MASK;
182 }
183 
enetc_setup_tc_cbs(struct net_device * ndev,void * type_data)184 int enetc_setup_tc_cbs(struct net_device *ndev, void *type_data)
185 {
186 	struct enetc_ndev_priv *priv = netdev_priv(ndev);
187 	struct tc_cbs_qopt_offload *cbs = type_data;
188 	u32 port_transmit_rate = priv->speed;
189 	u8 tc_nums = netdev_get_num_tc(ndev);
190 	struct enetc_hw *hw = &priv->si->hw;
191 	u32 hi_credit_bit, hi_credit_reg;
192 	u32 max_interference_size;
193 	u32 port_frame_max_size;
194 	u8 tc = cbs->queue;
195 	u8 prio_top, prio_next;
196 	int bw_sum = 0;
197 	u8 bw;
198 
199 	prio_top = netdev_get_prio_tc_map(ndev, tc_nums - 1);
200 	prio_next = netdev_get_prio_tc_map(ndev, tc_nums - 2);
201 
202 	/* Support highest prio and second prio tc in cbs mode */
203 	if (tc != prio_top && tc != prio_next)
204 		return -EOPNOTSUPP;
205 
206 	if (!cbs->enable) {
207 		/* Make sure the other TC that are numerically
208 		 * lower than this TC have been disabled.
209 		 */
210 		if (tc == prio_top &&
211 		    enetc_get_cbs_enable(hw, prio_next)) {
212 			dev_err(&ndev->dev,
213 				"Disable TC%d before disable TC%d\n",
214 				prio_next, tc);
215 			return -EINVAL;
216 		}
217 
218 		enetc_port_wr(hw, ENETC_PTCCBSR1(tc), 0);
219 		enetc_port_wr(hw, ENETC_PTCCBSR0(tc), 0);
220 
221 		return 0;
222 	}
223 
224 	if (cbs->idleslope - cbs->sendslope != port_transmit_rate * 1000L ||
225 	    cbs->idleslope < 0 || cbs->sendslope > 0)
226 		return -EOPNOTSUPP;
227 
228 	port_frame_max_size = ndev->mtu + VLAN_ETH_HLEN + ETH_FCS_LEN;
229 
230 	bw = cbs->idleslope / (port_transmit_rate * 10UL);
231 
232 	/* Make sure the other TC that are numerically
233 	 * higher than this TC have been enabled.
234 	 */
235 	if (tc == prio_next) {
236 		if (!enetc_get_cbs_enable(hw, prio_top)) {
237 			dev_err(&ndev->dev,
238 				"Enable TC%d first before enable TC%d\n",
239 				prio_top, prio_next);
240 			return -EINVAL;
241 		}
242 		bw_sum += enetc_get_cbs_bw(hw, prio_top);
243 	}
244 
245 	if (bw_sum + bw >= 100) {
246 		dev_err(&ndev->dev,
247 			"The sum of all CBS Bandwidth can't exceed 100\n");
248 		return -EINVAL;
249 	}
250 
251 	enetc_port_rd(hw, ENETC_PTCMSDUR(tc));
252 
253 	/* For top prio TC, the max_interfrence_size is maxSizedFrame.
254 	 *
255 	 * For next prio TC, the max_interfrence_size is calculated as below:
256 	 *
257 	 *      max_interference_size = M0 + Ma + Ra * M0 / (R0 - Ra)
258 	 *
259 	 *	- RA: idleSlope for AVB Class A
260 	 *	- R0: port transmit rate
261 	 *	- M0: maximum sized frame for the port
262 	 *	- MA: maximum sized frame for AVB Class A
263 	 */
264 
265 	if (tc == prio_top) {
266 		max_interference_size = port_frame_max_size * 8;
267 	} else {
268 		u32 m0, ma, r0, ra;
269 
270 		m0 = port_frame_max_size * 8;
271 		ma = enetc_port_rd(hw, ENETC_PTCMSDUR(prio_top)) * 8;
272 		ra = enetc_get_cbs_bw(hw, prio_top) *
273 			port_transmit_rate * 10000ULL;
274 		r0 = port_transmit_rate * 1000000ULL;
275 		max_interference_size = m0 + ma +
276 			(u32)div_u64((u64)ra * m0, r0 - ra);
277 	}
278 
279 	/* hiCredit bits calculate by:
280 	 *
281 	 * maxSizedFrame * (idleSlope/portTxRate)
282 	 */
283 	hi_credit_bit = max_interference_size * bw / 100;
284 
285 	/* hiCredit bits to hiCredit register need to calculated as:
286 	 *
287 	 * (enetClockFrequency / portTransmitRate) * 100
288 	 */
289 	hi_credit_reg = (u32)div_u64((ENETC_CLK * 100ULL) * hi_credit_bit,
290 				     port_transmit_rate * 1000000ULL);
291 
292 	enetc_port_wr(hw, ENETC_PTCCBSR1(tc), hi_credit_reg);
293 
294 	/* Set bw register and enable this traffic class */
295 	enetc_port_wr(hw, ENETC_PTCCBSR0(tc), bw | ENETC_CBSE);
296 
297 	return 0;
298 }
299 
enetc_setup_tc_txtime(struct net_device * ndev,void * type_data)300 int enetc_setup_tc_txtime(struct net_device *ndev, void *type_data)
301 {
302 	struct enetc_ndev_priv *priv = netdev_priv(ndev);
303 	struct tc_etf_qopt_offload *qopt = type_data;
304 	u8 tc_nums = netdev_get_num_tc(ndev);
305 	struct enetc_hw *hw = &priv->si->hw;
306 	int tc;
307 
308 	if (!tc_nums)
309 		return -EOPNOTSUPP;
310 
311 	tc = qopt->queue;
312 
313 	if (tc < 0 || tc >= priv->num_tx_rings)
314 		return -EINVAL;
315 
316 	/* Do not support TXSTART and TX CSUM offload simutaniously */
317 	if (ndev->features & NETIF_F_CSUM_MASK)
318 		return -EBUSY;
319 
320 	/* TSD and Qbv are mutually exclusive in hardware */
321 	if (enetc_rd(hw, ENETC_QBV_PTGCR_OFFSET) & ENETC_QBV_TGE)
322 		return -EBUSY;
323 
324 	priv->tx_ring[tc]->tsd_enable = qopt->enable;
325 	enetc_port_wr(hw, ENETC_PTCTSDR(tc), qopt->enable ? ENETC_TSDE : 0);
326 
327 	return 0;
328 }
329 
330 enum streamid_type {
331 	STREAMID_TYPE_RESERVED = 0,
332 	STREAMID_TYPE_NULL,
333 	STREAMID_TYPE_SMAC,
334 };
335 
336 enum streamid_vlan_tagged {
337 	STREAMID_VLAN_RESERVED = 0,
338 	STREAMID_VLAN_TAGGED,
339 	STREAMID_VLAN_UNTAGGED,
340 	STREAMID_VLAN_ALL,
341 };
342 
343 #define ENETC_PSFP_WILDCARD -1
344 #define HANDLE_OFFSET 100
345 
346 enum forward_type {
347 	FILTER_ACTION_TYPE_PSFP = BIT(0),
348 	FILTER_ACTION_TYPE_ACL = BIT(1),
349 	FILTER_ACTION_TYPE_BOTH = GENMASK(1, 0),
350 };
351 
352 /* This is for limit output type for input actions */
353 struct actions_fwd {
354 	u64 actions;
355 	u64 keys;	/* include the must needed keys */
356 	enum forward_type output;
357 };
358 
359 struct psfp_streamfilter_counters {
360 	u64 matching_frames_count;
361 	u64 passing_frames_count;
362 	u64 not_passing_frames_count;
363 	u64 passing_sdu_count;
364 	u64 not_passing_sdu_count;
365 	u64 red_frames_count;
366 };
367 
368 struct enetc_streamid {
369 	u32 index;
370 	union {
371 		u8 src_mac[6];
372 		u8 dst_mac[6];
373 	};
374 	u8 filtertype;
375 	u16 vid;
376 	u8 tagged;
377 	s32 handle;
378 };
379 
380 struct enetc_psfp_filter {
381 	u32 index;
382 	s32 handle;
383 	s8 prio;
384 	u32 maxsdu;
385 	u32 gate_id;
386 	s32 meter_id;
387 	refcount_t refcount;
388 	struct hlist_node node;
389 };
390 
391 struct enetc_psfp_gate {
392 	u32 index;
393 	s8 init_ipv;
394 	u64 basetime;
395 	u64 cycletime;
396 	u64 cycletimext;
397 	u32 num_entries;
398 	refcount_t refcount;
399 	struct hlist_node node;
400 	struct action_gate_entry entries[];
401 };
402 
403 /* Only enable the green color frame now
404  * Will add eir and ebs color blind, couple flag etc when
405  * policing action add more offloading parameters
406  */
407 struct enetc_psfp_meter {
408 	u32 index;
409 	u32 cir;
410 	u32 cbs;
411 	refcount_t refcount;
412 	struct hlist_node node;
413 };
414 
415 #define ENETC_PSFP_FLAGS_FMI BIT(0)
416 
417 struct enetc_stream_filter {
418 	struct enetc_streamid sid;
419 	u32 sfi_index;
420 	u32 sgi_index;
421 	u32 flags;
422 	u32 fmi_index;
423 	struct flow_stats stats;
424 	struct hlist_node node;
425 };
426 
427 struct enetc_psfp {
428 	unsigned long dev_bitmap;
429 	unsigned long *psfp_sfi_bitmap;
430 	struct hlist_head stream_list;
431 	struct hlist_head psfp_filter_list;
432 	struct hlist_head psfp_gate_list;
433 	struct hlist_head psfp_meter_list;
434 	spinlock_t psfp_lock; /* spinlock for the struct enetc_psfp r/w */
435 };
436 
437 static struct actions_fwd enetc_act_fwd[] = {
438 	{
439 		BIT(FLOW_ACTION_GATE),
440 		BIT(FLOW_DISSECTOR_KEY_ETH_ADDRS),
441 		FILTER_ACTION_TYPE_PSFP
442 	},
443 	{
444 		BIT(FLOW_ACTION_POLICE) |
445 		BIT(FLOW_ACTION_GATE),
446 		BIT(FLOW_DISSECTOR_KEY_ETH_ADDRS),
447 		FILTER_ACTION_TYPE_PSFP
448 	},
449 	/* example for ACL actions */
450 	{
451 		BIT(FLOW_ACTION_DROP),
452 		0,
453 		FILTER_ACTION_TYPE_ACL
454 	}
455 };
456 
457 static struct enetc_psfp epsfp = {
458 	.psfp_sfi_bitmap = NULL,
459 };
460 
461 static LIST_HEAD(enetc_block_cb_list);
462 
enetc_get_port(struct enetc_ndev_priv * priv)463 static inline int enetc_get_port(struct enetc_ndev_priv *priv)
464 {
465 	return priv->si->pdev->devfn & 0x7;
466 }
467 
468 /* Stream Identity Entry Set Descriptor */
enetc_streamid_hw_set(struct enetc_ndev_priv * priv,struct enetc_streamid * sid,u8 enable)469 static int enetc_streamid_hw_set(struct enetc_ndev_priv *priv,
470 				 struct enetc_streamid *sid,
471 				 u8 enable)
472 {
473 	struct enetc_cbd cbd = {.cmd = 0};
474 	struct streamid_data *si_data;
475 	struct streamid_conf *si_conf;
476 	u16 data_size;
477 	dma_addr_t dma;
478 	int err;
479 
480 	if (sid->index >= priv->psfp_cap.max_streamid)
481 		return -EINVAL;
482 
483 	if (sid->filtertype != STREAMID_TYPE_NULL &&
484 	    sid->filtertype != STREAMID_TYPE_SMAC)
485 		return -EOPNOTSUPP;
486 
487 	/* Disable operation before enable */
488 	cbd.index = cpu_to_le16((u16)sid->index);
489 	cbd.cls = BDCR_CMD_STREAM_IDENTIFY;
490 	cbd.status_flags = 0;
491 
492 	data_size = sizeof(struct streamid_data);
493 	si_data = kzalloc(data_size, __GFP_DMA | GFP_KERNEL);
494 	if (!si_data)
495 		return -ENOMEM;
496 	cbd.length = cpu_to_le16(data_size);
497 
498 	dma = dma_map_single(&priv->si->pdev->dev, si_data,
499 			     data_size, DMA_FROM_DEVICE);
500 	if (dma_mapping_error(&priv->si->pdev->dev, dma)) {
501 		netdev_err(priv->si->ndev, "DMA mapping failed!\n");
502 		err = -ENOMEM;
503 		goto out;
504 	}
505 
506 	cbd.addr[0] = lower_32_bits(dma);
507 	cbd.addr[1] = upper_32_bits(dma);
508 	eth_broadcast_addr(si_data->dmac);
509 	si_data->vid_vidm_tg =
510 		cpu_to_le16(ENETC_CBDR_SID_VID_MASK
511 			    + ((0x3 << 14) | ENETC_CBDR_SID_VIDM));
512 
513 	si_conf = &cbd.sid_set;
514 	/* Only one port supported for one entry, set itself */
515 	si_conf->iports = 1 << enetc_get_port(priv);
516 	si_conf->id_type = 1;
517 	si_conf->oui[2] = 0x0;
518 	si_conf->oui[1] = 0x80;
519 	si_conf->oui[0] = 0xC2;
520 
521 	err = enetc_send_cmd(priv->si, &cbd);
522 	if (err)
523 		goto out;
524 
525 	if (!enable)
526 		goto out;
527 
528 	/* Enable the entry overwrite again incase space flushed by hardware */
529 	memset(&cbd, 0, sizeof(cbd));
530 
531 	cbd.index = cpu_to_le16((u16)sid->index);
532 	cbd.cmd = 0;
533 	cbd.cls = BDCR_CMD_STREAM_IDENTIFY;
534 	cbd.status_flags = 0;
535 
536 	si_conf->en = 0x80;
537 	si_conf->stream_handle = cpu_to_le32(sid->handle);
538 	si_conf->iports = 1 << enetc_get_port(priv);
539 	si_conf->id_type = sid->filtertype;
540 	si_conf->oui[2] = 0x0;
541 	si_conf->oui[1] = 0x80;
542 	si_conf->oui[0] = 0xC2;
543 
544 	memset(si_data, 0, data_size);
545 
546 	cbd.length = cpu_to_le16(data_size);
547 
548 	cbd.addr[0] = lower_32_bits(dma);
549 	cbd.addr[1] = upper_32_bits(dma);
550 
551 	/* VIDM default to be 1.
552 	 * VID Match. If set (b1) then the VID must match, otherwise
553 	 * any VID is considered a match. VIDM setting is only used
554 	 * when TG is set to b01.
555 	 */
556 	if (si_conf->id_type == STREAMID_TYPE_NULL) {
557 		ether_addr_copy(si_data->dmac, sid->dst_mac);
558 		si_data->vid_vidm_tg =
559 		cpu_to_le16((sid->vid & ENETC_CBDR_SID_VID_MASK) +
560 			    ((((u16)(sid->tagged) & 0x3) << 14)
561 			     | ENETC_CBDR_SID_VIDM));
562 	} else if (si_conf->id_type == STREAMID_TYPE_SMAC) {
563 		ether_addr_copy(si_data->smac, sid->src_mac);
564 		si_data->vid_vidm_tg =
565 		cpu_to_le16((sid->vid & ENETC_CBDR_SID_VID_MASK) +
566 			    ((((u16)(sid->tagged) & 0x3) << 14)
567 			     | ENETC_CBDR_SID_VIDM));
568 	}
569 
570 	err = enetc_send_cmd(priv->si, &cbd);
571 out:
572 	if (!dma_mapping_error(&priv->si->pdev->dev, dma))
573 		dma_unmap_single(&priv->si->pdev->dev, dma, data_size, DMA_FROM_DEVICE);
574 
575 	kfree(si_data);
576 
577 	return err;
578 }
579 
580 /* Stream Filter Instance Set Descriptor */
enetc_streamfilter_hw_set(struct enetc_ndev_priv * priv,struct enetc_psfp_filter * sfi,u8 enable)581 static int enetc_streamfilter_hw_set(struct enetc_ndev_priv *priv,
582 				     struct enetc_psfp_filter *sfi,
583 				     u8 enable)
584 {
585 	struct enetc_cbd cbd = {.cmd = 0};
586 	struct sfi_conf *sfi_config;
587 
588 	cbd.index = cpu_to_le16(sfi->index);
589 	cbd.cls = BDCR_CMD_STREAM_FILTER;
590 	cbd.status_flags = 0x80;
591 	cbd.length = cpu_to_le16(1);
592 
593 	sfi_config = &cbd.sfi_conf;
594 	if (!enable)
595 		goto exit;
596 
597 	sfi_config->en = 0x80;
598 
599 	if (sfi->handle >= 0) {
600 		sfi_config->stream_handle =
601 			cpu_to_le32(sfi->handle);
602 		sfi_config->sthm |= 0x80;
603 	}
604 
605 	sfi_config->sg_inst_table_index = cpu_to_le16(sfi->gate_id);
606 	sfi_config->input_ports = 1 << enetc_get_port(priv);
607 
608 	/* The priority value which may be matched against the
609 	 * frame’s priority value to determine a match for this entry.
610 	 */
611 	if (sfi->prio >= 0)
612 		sfi_config->multi |= (sfi->prio & 0x7) | 0x8;
613 
614 	/* Filter Type. Identifies the contents of the MSDU/FM_INST_INDEX
615 	 * field as being either an MSDU value or an index into the Flow
616 	 * Meter Instance table.
617 	 */
618 	if (sfi->maxsdu) {
619 		sfi_config->msdu =
620 		cpu_to_le16(sfi->maxsdu);
621 		sfi_config->multi |= 0x40;
622 	}
623 
624 	if (sfi->meter_id >= 0) {
625 		sfi_config->fm_inst_table_index = cpu_to_le16(sfi->meter_id);
626 		sfi_config->multi |= 0x80;
627 	}
628 
629 exit:
630 	return enetc_send_cmd(priv->si, &cbd);
631 }
632 
enetc_streamcounter_hw_get(struct enetc_ndev_priv * priv,u32 index,struct psfp_streamfilter_counters * cnt)633 static int enetc_streamcounter_hw_get(struct enetc_ndev_priv *priv,
634 				      u32 index,
635 				      struct psfp_streamfilter_counters *cnt)
636 {
637 	struct enetc_cbd cbd = { .cmd = 2 };
638 	struct sfi_counter_data *data_buf;
639 	dma_addr_t dma;
640 	u16 data_size;
641 	int err;
642 
643 	cbd.index = cpu_to_le16((u16)index);
644 	cbd.cmd = 2;
645 	cbd.cls = BDCR_CMD_STREAM_FILTER;
646 	cbd.status_flags = 0;
647 
648 	data_size = sizeof(struct sfi_counter_data);
649 	data_buf = kzalloc(data_size, __GFP_DMA | GFP_KERNEL);
650 	if (!data_buf)
651 		return -ENOMEM;
652 
653 	dma = dma_map_single(&priv->si->pdev->dev, data_buf,
654 			     data_size, DMA_FROM_DEVICE);
655 	if (dma_mapping_error(&priv->si->pdev->dev, dma)) {
656 		netdev_err(priv->si->ndev, "DMA mapping failed!\n");
657 		err = -ENOMEM;
658 		goto exit;
659 	}
660 	cbd.addr[0] = lower_32_bits(dma);
661 	cbd.addr[1] = upper_32_bits(dma);
662 
663 	cbd.length = cpu_to_le16(data_size);
664 
665 	err = enetc_send_cmd(priv->si, &cbd);
666 	if (err)
667 		goto exit;
668 
669 	cnt->matching_frames_count =
670 			((u64)le32_to_cpu(data_buf->matchh) << 32)
671 			+ data_buf->matchl;
672 
673 	cnt->not_passing_sdu_count =
674 			((u64)le32_to_cpu(data_buf->msdu_droph) << 32)
675 			+ data_buf->msdu_dropl;
676 
677 	cnt->passing_sdu_count = cnt->matching_frames_count
678 				- cnt->not_passing_sdu_count;
679 
680 	cnt->not_passing_frames_count =
681 		((u64)le32_to_cpu(data_buf->stream_gate_droph) << 32)
682 		+ le32_to_cpu(data_buf->stream_gate_dropl);
683 
684 	cnt->passing_frames_count = cnt->matching_frames_count
685 				- cnt->not_passing_sdu_count
686 				- cnt->not_passing_frames_count;
687 
688 	cnt->red_frames_count =
689 		((u64)le32_to_cpu(data_buf->flow_meter_droph) << 32)
690 		+ le32_to_cpu(data_buf->flow_meter_dropl);
691 
692 exit:
693 	kfree(data_buf);
694 	return err;
695 }
696 
get_ptp_now(struct enetc_hw * hw)697 static u64 get_ptp_now(struct enetc_hw *hw)
698 {
699 	u64 now_lo, now_hi, now;
700 
701 	now_lo = enetc_rd(hw, ENETC_SICTR0);
702 	now_hi = enetc_rd(hw, ENETC_SICTR1);
703 	now = now_lo | now_hi << 32;
704 
705 	return now;
706 }
707 
get_start_ns(u64 now,u64 cycle,u64 * start)708 static int get_start_ns(u64 now, u64 cycle, u64 *start)
709 {
710 	u64 n;
711 
712 	if (!cycle)
713 		return -EFAULT;
714 
715 	n = div64_u64(now, cycle);
716 
717 	*start = (n + 1) * cycle;
718 
719 	return 0;
720 }
721 
722 /* Stream Gate Instance Set Descriptor */
enetc_streamgate_hw_set(struct enetc_ndev_priv * priv,struct enetc_psfp_gate * sgi,u8 enable)723 static int enetc_streamgate_hw_set(struct enetc_ndev_priv *priv,
724 				   struct enetc_psfp_gate *sgi,
725 				   u8 enable)
726 {
727 	struct enetc_cbd cbd = { .cmd = 0 };
728 	struct sgi_table *sgi_config;
729 	struct sgcl_conf *sgcl_config;
730 	struct sgcl_data *sgcl_data;
731 	struct sgce *sgce;
732 	dma_addr_t dma;
733 	u16 data_size;
734 	int err, i;
735 	u64 now;
736 
737 	cbd.index = cpu_to_le16(sgi->index);
738 	cbd.cmd = 0;
739 	cbd.cls = BDCR_CMD_STREAM_GCL;
740 	cbd.status_flags = 0x80;
741 
742 	/* disable */
743 	if (!enable)
744 		return enetc_send_cmd(priv->si, &cbd);
745 
746 	if (!sgi->num_entries)
747 		return 0;
748 
749 	if (sgi->num_entries > priv->psfp_cap.max_psfp_gatelist ||
750 	    !sgi->cycletime)
751 		return -EINVAL;
752 
753 	/* enable */
754 	sgi_config = &cbd.sgi_table;
755 
756 	/* Keep open before gate list start */
757 	sgi_config->ocgtst = 0x80;
758 
759 	sgi_config->oipv = (sgi->init_ipv < 0) ?
760 				0x0 : ((sgi->init_ipv & 0x7) | 0x8);
761 
762 	sgi_config->en = 0x80;
763 
764 	/* Basic config */
765 	err = enetc_send_cmd(priv->si, &cbd);
766 	if (err)
767 		return -EINVAL;
768 
769 	memset(&cbd, 0, sizeof(cbd));
770 
771 	cbd.index = cpu_to_le16(sgi->index);
772 	cbd.cmd = 1;
773 	cbd.cls = BDCR_CMD_STREAM_GCL;
774 	cbd.status_flags = 0;
775 
776 	sgcl_config = &cbd.sgcl_conf;
777 
778 	sgcl_config->acl_len = (sgi->num_entries - 1) & 0x3;
779 
780 	data_size = struct_size(sgcl_data, sgcl, sgi->num_entries);
781 
782 	sgcl_data = kzalloc(data_size, __GFP_DMA | GFP_KERNEL);
783 	if (!sgcl_data)
784 		return -ENOMEM;
785 
786 	cbd.length = cpu_to_le16(data_size);
787 
788 	dma = dma_map_single(&priv->si->pdev->dev,
789 			     sgcl_data, data_size,
790 			     DMA_FROM_DEVICE);
791 	if (dma_mapping_error(&priv->si->pdev->dev, dma)) {
792 		netdev_err(priv->si->ndev, "DMA mapping failed!\n");
793 		kfree(sgcl_data);
794 		return -ENOMEM;
795 	}
796 
797 	cbd.addr[0] = lower_32_bits(dma);
798 	cbd.addr[1] = upper_32_bits(dma);
799 
800 	sgce = &sgcl_data->sgcl[0];
801 
802 	sgcl_config->agtst = 0x80;
803 
804 	sgcl_data->ct = cpu_to_le32(sgi->cycletime);
805 	sgcl_data->cte = cpu_to_le32(sgi->cycletimext);
806 
807 	if (sgi->init_ipv >= 0)
808 		sgcl_config->aipv = (sgi->init_ipv & 0x7) | 0x8;
809 
810 	for (i = 0; i < sgi->num_entries; i++) {
811 		struct action_gate_entry *from = &sgi->entries[i];
812 		struct sgce *to = &sgce[i];
813 
814 		if (from->gate_state)
815 			to->multi |= 0x10;
816 
817 		if (from->ipv >= 0)
818 			to->multi |= ((from->ipv & 0x7) << 5) | 0x08;
819 
820 		if (from->maxoctets >= 0) {
821 			to->multi |= 0x01;
822 			to->msdu[0] = from->maxoctets & 0xFF;
823 			to->msdu[1] = (from->maxoctets >> 8) & 0xFF;
824 			to->msdu[2] = (from->maxoctets >> 16) & 0xFF;
825 		}
826 
827 		to->interval = cpu_to_le32(from->interval);
828 	}
829 
830 	/* If basetime is less than now, calculate start time */
831 	now = get_ptp_now(&priv->si->hw);
832 
833 	if (sgi->basetime < now) {
834 		u64 start;
835 
836 		err = get_start_ns(now, sgi->cycletime, &start);
837 		if (err)
838 			goto exit;
839 		sgcl_data->btl = cpu_to_le32(lower_32_bits(start));
840 		sgcl_data->bth = cpu_to_le32(upper_32_bits(start));
841 	} else {
842 		u32 hi, lo;
843 
844 		hi = upper_32_bits(sgi->basetime);
845 		lo = lower_32_bits(sgi->basetime);
846 		sgcl_data->bth = cpu_to_le32(hi);
847 		sgcl_data->btl = cpu_to_le32(lo);
848 	}
849 
850 	err = enetc_send_cmd(priv->si, &cbd);
851 
852 exit:
853 	kfree(sgcl_data);
854 
855 	return err;
856 }
857 
enetc_flowmeter_hw_set(struct enetc_ndev_priv * priv,struct enetc_psfp_meter * fmi,u8 enable)858 static int enetc_flowmeter_hw_set(struct enetc_ndev_priv *priv,
859 				  struct enetc_psfp_meter *fmi,
860 				  u8 enable)
861 {
862 	struct enetc_cbd cbd = { .cmd = 0 };
863 	struct fmi_conf *fmi_config;
864 	u64 temp = 0;
865 
866 	cbd.index = cpu_to_le16((u16)fmi->index);
867 	cbd.cls = BDCR_CMD_FLOW_METER;
868 	cbd.status_flags = 0x80;
869 
870 	if (!enable)
871 		return enetc_send_cmd(priv->si, &cbd);
872 
873 	fmi_config = &cbd.fmi_conf;
874 	fmi_config->en = 0x80;
875 
876 	if (fmi->cir) {
877 		temp = (u64)8000 * fmi->cir;
878 		temp = div_u64(temp, 3725);
879 	}
880 
881 	fmi_config->cir = cpu_to_le32((u32)temp);
882 	fmi_config->cbs = cpu_to_le32(fmi->cbs);
883 
884 	/* Default for eir ebs disable */
885 	fmi_config->eir = 0;
886 	fmi_config->ebs = 0;
887 
888 	/* Default:
889 	 * mark red disable
890 	 * drop on yellow disable
891 	 * color mode disable
892 	 * couple flag disable
893 	 */
894 	fmi_config->conf = 0;
895 
896 	return enetc_send_cmd(priv->si, &cbd);
897 }
898 
enetc_get_stream_by_index(u32 index)899 static struct enetc_stream_filter *enetc_get_stream_by_index(u32 index)
900 {
901 	struct enetc_stream_filter *f;
902 
903 	hlist_for_each_entry(f, &epsfp.stream_list, node)
904 		if (f->sid.index == index)
905 			return f;
906 
907 	return NULL;
908 }
909 
enetc_get_gate_by_index(u32 index)910 static struct enetc_psfp_gate *enetc_get_gate_by_index(u32 index)
911 {
912 	struct enetc_psfp_gate *g;
913 
914 	hlist_for_each_entry(g, &epsfp.psfp_gate_list, node)
915 		if (g->index == index)
916 			return g;
917 
918 	return NULL;
919 }
920 
enetc_get_filter_by_index(u32 index)921 static struct enetc_psfp_filter *enetc_get_filter_by_index(u32 index)
922 {
923 	struct enetc_psfp_filter *s;
924 
925 	hlist_for_each_entry(s, &epsfp.psfp_filter_list, node)
926 		if (s->index == index)
927 			return s;
928 
929 	return NULL;
930 }
931 
enetc_get_meter_by_index(u32 index)932 static struct enetc_psfp_meter *enetc_get_meter_by_index(u32 index)
933 {
934 	struct enetc_psfp_meter *m;
935 
936 	hlist_for_each_entry(m, &epsfp.psfp_meter_list, node)
937 		if (m->index == index)
938 			return m;
939 
940 	return NULL;
941 }
942 
943 static struct enetc_psfp_filter
enetc_psfp_check_sfi(struct enetc_psfp_filter * sfi)944 	*enetc_psfp_check_sfi(struct enetc_psfp_filter *sfi)
945 {
946 	struct enetc_psfp_filter *s;
947 
948 	hlist_for_each_entry(s, &epsfp.psfp_filter_list, node)
949 		if (s->gate_id == sfi->gate_id &&
950 		    s->prio == sfi->prio &&
951 		    s->maxsdu == sfi->maxsdu &&
952 		    s->meter_id == sfi->meter_id)
953 			return s;
954 
955 	return NULL;
956 }
957 
enetc_get_free_index(struct enetc_ndev_priv * priv)958 static int enetc_get_free_index(struct enetc_ndev_priv *priv)
959 {
960 	u32 max_size = priv->psfp_cap.max_psfp_filter;
961 	unsigned long index;
962 
963 	index = find_first_zero_bit(epsfp.psfp_sfi_bitmap, max_size);
964 	if (index == max_size)
965 		return -1;
966 
967 	return index;
968 }
969 
stream_filter_unref(struct enetc_ndev_priv * priv,u32 index)970 static void stream_filter_unref(struct enetc_ndev_priv *priv, u32 index)
971 {
972 	struct enetc_psfp_filter *sfi;
973 	u8 z;
974 
975 	sfi = enetc_get_filter_by_index(index);
976 	WARN_ON(!sfi);
977 	z = refcount_dec_and_test(&sfi->refcount);
978 
979 	if (z) {
980 		enetc_streamfilter_hw_set(priv, sfi, false);
981 		hlist_del(&sfi->node);
982 		kfree(sfi);
983 		clear_bit(index, epsfp.psfp_sfi_bitmap);
984 	}
985 }
986 
stream_gate_unref(struct enetc_ndev_priv * priv,u32 index)987 static void stream_gate_unref(struct enetc_ndev_priv *priv, u32 index)
988 {
989 	struct enetc_psfp_gate *sgi;
990 	u8 z;
991 
992 	sgi = enetc_get_gate_by_index(index);
993 	WARN_ON(!sgi);
994 	z = refcount_dec_and_test(&sgi->refcount);
995 	if (z) {
996 		enetc_streamgate_hw_set(priv, sgi, false);
997 		hlist_del(&sgi->node);
998 		kfree(sgi);
999 	}
1000 }
1001 
flow_meter_unref(struct enetc_ndev_priv * priv,u32 index)1002 static void flow_meter_unref(struct enetc_ndev_priv *priv, u32 index)
1003 {
1004 	struct enetc_psfp_meter *fmi;
1005 	u8 z;
1006 
1007 	fmi = enetc_get_meter_by_index(index);
1008 	WARN_ON(!fmi);
1009 	z = refcount_dec_and_test(&fmi->refcount);
1010 	if (z) {
1011 		enetc_flowmeter_hw_set(priv, fmi, false);
1012 		hlist_del(&fmi->node);
1013 		kfree(fmi);
1014 	}
1015 }
1016 
remove_one_chain(struct enetc_ndev_priv * priv,struct enetc_stream_filter * filter)1017 static void remove_one_chain(struct enetc_ndev_priv *priv,
1018 			     struct enetc_stream_filter *filter)
1019 {
1020 	if (filter->flags & ENETC_PSFP_FLAGS_FMI)
1021 		flow_meter_unref(priv, filter->fmi_index);
1022 
1023 	stream_gate_unref(priv, filter->sgi_index);
1024 	stream_filter_unref(priv, filter->sfi_index);
1025 
1026 	hlist_del(&filter->node);
1027 	kfree(filter);
1028 }
1029 
enetc_psfp_hw_set(struct enetc_ndev_priv * priv,struct enetc_streamid * sid,struct enetc_psfp_filter * sfi,struct enetc_psfp_gate * sgi,struct enetc_psfp_meter * fmi)1030 static int enetc_psfp_hw_set(struct enetc_ndev_priv *priv,
1031 			     struct enetc_streamid *sid,
1032 			     struct enetc_psfp_filter *sfi,
1033 			     struct enetc_psfp_gate *sgi,
1034 			     struct enetc_psfp_meter *fmi)
1035 {
1036 	int err;
1037 
1038 	err = enetc_streamid_hw_set(priv, sid, true);
1039 	if (err)
1040 		return err;
1041 
1042 	if (sfi) {
1043 		err = enetc_streamfilter_hw_set(priv, sfi, true);
1044 		if (err)
1045 			goto revert_sid;
1046 	}
1047 
1048 	err = enetc_streamgate_hw_set(priv, sgi, true);
1049 	if (err)
1050 		goto revert_sfi;
1051 
1052 	if (fmi) {
1053 		err = enetc_flowmeter_hw_set(priv, fmi, true);
1054 		if (err)
1055 			goto revert_sgi;
1056 	}
1057 
1058 	return 0;
1059 
1060 revert_sgi:
1061 	enetc_streamgate_hw_set(priv, sgi, false);
1062 revert_sfi:
1063 	if (sfi)
1064 		enetc_streamfilter_hw_set(priv, sfi, false);
1065 revert_sid:
1066 	enetc_streamid_hw_set(priv, sid, false);
1067 	return err;
1068 }
1069 
enetc_check_flow_actions(u64 acts,unsigned int inputkeys)1070 static struct actions_fwd *enetc_check_flow_actions(u64 acts,
1071 						    unsigned int inputkeys)
1072 {
1073 	int i;
1074 
1075 	for (i = 0; i < ARRAY_SIZE(enetc_act_fwd); i++)
1076 		if (acts == enetc_act_fwd[i].actions &&
1077 		    inputkeys & enetc_act_fwd[i].keys)
1078 			return &enetc_act_fwd[i];
1079 
1080 	return NULL;
1081 }
1082 
enetc_psfp_parse_clsflower(struct enetc_ndev_priv * priv,struct flow_cls_offload * f)1083 static int enetc_psfp_parse_clsflower(struct enetc_ndev_priv *priv,
1084 				      struct flow_cls_offload *f)
1085 {
1086 	struct flow_action_entry *entryg = NULL, *entryp = NULL;
1087 	struct flow_rule *rule = flow_cls_offload_flow_rule(f);
1088 	struct netlink_ext_ack *extack = f->common.extack;
1089 	struct enetc_stream_filter *filter, *old_filter;
1090 	struct enetc_psfp_meter *fmi = NULL, *old_fmi;
1091 	struct enetc_psfp_filter *sfi, *old_sfi;
1092 	struct enetc_psfp_gate *sgi, *old_sgi;
1093 	struct flow_action_entry *entry;
1094 	struct action_gate_entry *e;
1095 	u8 sfi_overwrite = 0;
1096 	int entries_size;
1097 	int i, err;
1098 
1099 	if (f->common.chain_index >= priv->psfp_cap.max_streamid) {
1100 		NL_SET_ERR_MSG_MOD(extack, "No Stream identify resource!");
1101 		return -ENOSPC;
1102 	}
1103 
1104 	flow_action_for_each(i, entry, &rule->action)
1105 		if (entry->id == FLOW_ACTION_GATE)
1106 			entryg = entry;
1107 		else if (entry->id == FLOW_ACTION_POLICE)
1108 			entryp = entry;
1109 
1110 	/* Not support without gate action */
1111 	if (!entryg)
1112 		return -EINVAL;
1113 
1114 	filter = kzalloc(sizeof(*filter), GFP_KERNEL);
1115 	if (!filter)
1116 		return -ENOMEM;
1117 
1118 	filter->sid.index = f->common.chain_index;
1119 
1120 	if (flow_rule_match_key(rule, FLOW_DISSECTOR_KEY_ETH_ADDRS)) {
1121 		struct flow_match_eth_addrs match;
1122 
1123 		flow_rule_match_eth_addrs(rule, &match);
1124 
1125 		if (!is_zero_ether_addr(match.mask->dst) &&
1126 		    !is_zero_ether_addr(match.mask->src)) {
1127 			NL_SET_ERR_MSG_MOD(extack,
1128 					   "Cannot match on both source and destination MAC");
1129 			err = -EINVAL;
1130 			goto free_filter;
1131 		}
1132 
1133 		if (!is_zero_ether_addr(match.mask->dst)) {
1134 			if (!is_broadcast_ether_addr(match.mask->dst)) {
1135 				NL_SET_ERR_MSG_MOD(extack,
1136 						   "Masked matching on destination MAC not supported");
1137 				err = -EINVAL;
1138 				goto free_filter;
1139 			}
1140 			ether_addr_copy(filter->sid.dst_mac, match.key->dst);
1141 			filter->sid.filtertype = STREAMID_TYPE_NULL;
1142 		}
1143 
1144 		if (!is_zero_ether_addr(match.mask->src)) {
1145 			if (!is_broadcast_ether_addr(match.mask->src)) {
1146 				NL_SET_ERR_MSG_MOD(extack,
1147 						   "Masked matching on source MAC not supported");
1148 				err = -EINVAL;
1149 				goto free_filter;
1150 			}
1151 			ether_addr_copy(filter->sid.src_mac, match.key->src);
1152 			filter->sid.filtertype = STREAMID_TYPE_SMAC;
1153 		}
1154 	} else {
1155 		NL_SET_ERR_MSG_MOD(extack, "Unsupported, must include ETH_ADDRS");
1156 		err = -EINVAL;
1157 		goto free_filter;
1158 	}
1159 
1160 	if (flow_rule_match_key(rule, FLOW_DISSECTOR_KEY_VLAN)) {
1161 		struct flow_match_vlan match;
1162 
1163 		flow_rule_match_vlan(rule, &match);
1164 		if (match.mask->vlan_priority) {
1165 			if (match.mask->vlan_priority !=
1166 			    (VLAN_PRIO_MASK >> VLAN_PRIO_SHIFT)) {
1167 				NL_SET_ERR_MSG_MOD(extack, "Only full mask is supported for VLAN priority");
1168 				err = -EINVAL;
1169 				goto free_filter;
1170 			}
1171 		}
1172 
1173 		if (match.mask->vlan_id) {
1174 			if (match.mask->vlan_id != VLAN_VID_MASK) {
1175 				NL_SET_ERR_MSG_MOD(extack, "Only full mask is supported for VLAN id");
1176 				err = -EINVAL;
1177 				goto free_filter;
1178 			}
1179 
1180 			filter->sid.vid = match.key->vlan_id;
1181 			if (!filter->sid.vid)
1182 				filter->sid.tagged = STREAMID_VLAN_UNTAGGED;
1183 			else
1184 				filter->sid.tagged = STREAMID_VLAN_TAGGED;
1185 		}
1186 	} else {
1187 		filter->sid.tagged = STREAMID_VLAN_ALL;
1188 	}
1189 
1190 	/* parsing gate action */
1191 	if (entryg->gate.index >= priv->psfp_cap.max_psfp_gate) {
1192 		NL_SET_ERR_MSG_MOD(extack, "No Stream Gate resource!");
1193 		err = -ENOSPC;
1194 		goto free_filter;
1195 	}
1196 
1197 	if (entryg->gate.num_entries >= priv->psfp_cap.max_psfp_gatelist) {
1198 		NL_SET_ERR_MSG_MOD(extack, "No Stream Gate resource!");
1199 		err = -ENOSPC;
1200 		goto free_filter;
1201 	}
1202 
1203 	entries_size = struct_size(sgi, entries, entryg->gate.num_entries);
1204 	sgi = kzalloc(entries_size, GFP_KERNEL);
1205 	if (!sgi) {
1206 		err = -ENOMEM;
1207 		goto free_filter;
1208 	}
1209 
1210 	refcount_set(&sgi->refcount, 1);
1211 	sgi->index = entryg->gate.index;
1212 	sgi->init_ipv = entryg->gate.prio;
1213 	sgi->basetime = entryg->gate.basetime;
1214 	sgi->cycletime = entryg->gate.cycletime;
1215 	sgi->num_entries = entryg->gate.num_entries;
1216 
1217 	e = sgi->entries;
1218 	for (i = 0; i < entryg->gate.num_entries; i++) {
1219 		e[i].gate_state = entryg->gate.entries[i].gate_state;
1220 		e[i].interval = entryg->gate.entries[i].interval;
1221 		e[i].ipv = entryg->gate.entries[i].ipv;
1222 		e[i].maxoctets = entryg->gate.entries[i].maxoctets;
1223 	}
1224 
1225 	filter->sgi_index = sgi->index;
1226 
1227 	sfi = kzalloc(sizeof(*sfi), GFP_KERNEL);
1228 	if (!sfi) {
1229 		err = -ENOMEM;
1230 		goto free_gate;
1231 	}
1232 
1233 	refcount_set(&sfi->refcount, 1);
1234 	sfi->gate_id = sgi->index;
1235 	sfi->meter_id = ENETC_PSFP_WILDCARD;
1236 
1237 	/* Flow meter and max frame size */
1238 	if (entryp) {
1239 		if (entryp->police.burst) {
1240 			fmi = kzalloc(sizeof(*fmi), GFP_KERNEL);
1241 			if (!fmi) {
1242 				err = -ENOMEM;
1243 				goto free_sfi;
1244 			}
1245 			refcount_set(&fmi->refcount, 1);
1246 			fmi->cir = entryp->police.rate_bytes_ps;
1247 			fmi->cbs = entryp->police.burst;
1248 			fmi->index = entryp->police.index;
1249 			filter->flags |= ENETC_PSFP_FLAGS_FMI;
1250 			filter->fmi_index = fmi->index;
1251 			sfi->meter_id = fmi->index;
1252 		}
1253 
1254 		if (entryp->police.mtu)
1255 			sfi->maxsdu = entryp->police.mtu;
1256 	}
1257 
1258 	/* prio ref the filter prio */
1259 	if (f->common.prio && f->common.prio <= BIT(3))
1260 		sfi->prio = f->common.prio - 1;
1261 	else
1262 		sfi->prio = ENETC_PSFP_WILDCARD;
1263 
1264 	old_sfi = enetc_psfp_check_sfi(sfi);
1265 	if (!old_sfi) {
1266 		int index;
1267 
1268 		index = enetc_get_free_index(priv);
1269 		if (sfi->handle < 0) {
1270 			NL_SET_ERR_MSG_MOD(extack, "No Stream Filter resource!");
1271 			err = -ENOSPC;
1272 			goto free_fmi;
1273 		}
1274 
1275 		sfi->index = index;
1276 		sfi->handle = index + HANDLE_OFFSET;
1277 		/* Update the stream filter handle also */
1278 		filter->sid.handle = sfi->handle;
1279 		filter->sfi_index = sfi->index;
1280 		sfi_overwrite = 0;
1281 	} else {
1282 		filter->sfi_index = old_sfi->index;
1283 		filter->sid.handle = old_sfi->handle;
1284 		sfi_overwrite = 1;
1285 	}
1286 
1287 	err = enetc_psfp_hw_set(priv, &filter->sid,
1288 				sfi_overwrite ? NULL : sfi, sgi, fmi);
1289 	if (err)
1290 		goto free_fmi;
1291 
1292 	spin_lock(&epsfp.psfp_lock);
1293 	if (filter->flags & ENETC_PSFP_FLAGS_FMI) {
1294 		old_fmi = enetc_get_meter_by_index(filter->fmi_index);
1295 		if (old_fmi) {
1296 			fmi->refcount = old_fmi->refcount;
1297 			refcount_set(&fmi->refcount,
1298 				     refcount_read(&old_fmi->refcount) + 1);
1299 			hlist_del(&old_fmi->node);
1300 			kfree(old_fmi);
1301 		}
1302 		hlist_add_head(&fmi->node, &epsfp.psfp_meter_list);
1303 	}
1304 
1305 	/* Remove the old node if exist and update with a new node */
1306 	old_sgi = enetc_get_gate_by_index(filter->sgi_index);
1307 	if (old_sgi) {
1308 		refcount_set(&sgi->refcount,
1309 			     refcount_read(&old_sgi->refcount) + 1);
1310 		hlist_del(&old_sgi->node);
1311 		kfree(old_sgi);
1312 	}
1313 
1314 	hlist_add_head(&sgi->node, &epsfp.psfp_gate_list);
1315 
1316 	if (!old_sfi) {
1317 		hlist_add_head(&sfi->node, &epsfp.psfp_filter_list);
1318 		set_bit(sfi->index, epsfp.psfp_sfi_bitmap);
1319 	} else {
1320 		kfree(sfi);
1321 		refcount_inc(&old_sfi->refcount);
1322 	}
1323 
1324 	old_filter = enetc_get_stream_by_index(filter->sid.index);
1325 	if (old_filter)
1326 		remove_one_chain(priv, old_filter);
1327 
1328 	filter->stats.lastused = jiffies;
1329 	hlist_add_head(&filter->node, &epsfp.stream_list);
1330 
1331 	spin_unlock(&epsfp.psfp_lock);
1332 
1333 	return 0;
1334 
1335 free_fmi:
1336 	kfree(fmi);
1337 free_sfi:
1338 	kfree(sfi);
1339 free_gate:
1340 	kfree(sgi);
1341 free_filter:
1342 	kfree(filter);
1343 
1344 	return err;
1345 }
1346 
enetc_config_clsflower(struct enetc_ndev_priv * priv,struct flow_cls_offload * cls_flower)1347 static int enetc_config_clsflower(struct enetc_ndev_priv *priv,
1348 				  struct flow_cls_offload *cls_flower)
1349 {
1350 	struct flow_rule *rule = flow_cls_offload_flow_rule(cls_flower);
1351 	struct netlink_ext_ack *extack = cls_flower->common.extack;
1352 	struct flow_dissector *dissector = rule->match.dissector;
1353 	struct flow_action *action = &rule->action;
1354 	struct flow_action_entry *entry;
1355 	struct actions_fwd *fwd;
1356 	u64 actions = 0;
1357 	int i, err;
1358 
1359 	if (!flow_action_has_entries(action)) {
1360 		NL_SET_ERR_MSG_MOD(extack, "At least one action is needed");
1361 		return -EINVAL;
1362 	}
1363 
1364 	flow_action_for_each(i, entry, action)
1365 		actions |= BIT(entry->id);
1366 
1367 	fwd = enetc_check_flow_actions(actions, dissector->used_keys);
1368 	if (!fwd) {
1369 		NL_SET_ERR_MSG_MOD(extack, "Unsupported filter type!");
1370 		return -EOPNOTSUPP;
1371 	}
1372 
1373 	if (fwd->output & FILTER_ACTION_TYPE_PSFP) {
1374 		err = enetc_psfp_parse_clsflower(priv, cls_flower);
1375 		if (err) {
1376 			NL_SET_ERR_MSG_MOD(extack, "Invalid PSFP inputs");
1377 			return err;
1378 		}
1379 	} else {
1380 		NL_SET_ERR_MSG_MOD(extack, "Unsupported actions");
1381 		return -EOPNOTSUPP;
1382 	}
1383 
1384 	return 0;
1385 }
1386 
enetc_psfp_destroy_clsflower(struct enetc_ndev_priv * priv,struct flow_cls_offload * f)1387 static int enetc_psfp_destroy_clsflower(struct enetc_ndev_priv *priv,
1388 					struct flow_cls_offload *f)
1389 {
1390 	struct enetc_stream_filter *filter;
1391 	struct netlink_ext_ack *extack = f->common.extack;
1392 	int err;
1393 
1394 	if (f->common.chain_index >= priv->psfp_cap.max_streamid) {
1395 		NL_SET_ERR_MSG_MOD(extack, "No Stream identify resource!");
1396 		return -ENOSPC;
1397 	}
1398 
1399 	filter = enetc_get_stream_by_index(f->common.chain_index);
1400 	if (!filter)
1401 		return -EINVAL;
1402 
1403 	err = enetc_streamid_hw_set(priv, &filter->sid, false);
1404 	if (err)
1405 		return err;
1406 
1407 	remove_one_chain(priv, filter);
1408 
1409 	return 0;
1410 }
1411 
enetc_destroy_clsflower(struct enetc_ndev_priv * priv,struct flow_cls_offload * f)1412 static int enetc_destroy_clsflower(struct enetc_ndev_priv *priv,
1413 				   struct flow_cls_offload *f)
1414 {
1415 	return enetc_psfp_destroy_clsflower(priv, f);
1416 }
1417 
enetc_psfp_get_stats(struct enetc_ndev_priv * priv,struct flow_cls_offload * f)1418 static int enetc_psfp_get_stats(struct enetc_ndev_priv *priv,
1419 				struct flow_cls_offload *f)
1420 {
1421 	struct psfp_streamfilter_counters counters = {};
1422 	struct enetc_stream_filter *filter;
1423 	struct flow_stats stats = {};
1424 	int err;
1425 
1426 	filter = enetc_get_stream_by_index(f->common.chain_index);
1427 	if (!filter)
1428 		return -EINVAL;
1429 
1430 	err = enetc_streamcounter_hw_get(priv, filter->sfi_index, &counters);
1431 	if (err)
1432 		return -EINVAL;
1433 
1434 	spin_lock(&epsfp.psfp_lock);
1435 	stats.pkts = counters.matching_frames_count +
1436 		     counters.not_passing_sdu_count -
1437 		     filter->stats.pkts;
1438 	stats.drops = counters.not_passing_frames_count +
1439 		      counters.not_passing_sdu_count +
1440 		      counters.red_frames_count -
1441 		      filter->stats.drops;
1442 	stats.lastused = filter->stats.lastused;
1443 	filter->stats.pkts += stats.pkts;
1444 	filter->stats.drops += stats.drops;
1445 	spin_unlock(&epsfp.psfp_lock);
1446 
1447 	flow_stats_update(&f->stats, 0x0, stats.pkts, stats.drops,
1448 			  stats.lastused, FLOW_ACTION_HW_STATS_DELAYED);
1449 
1450 	return 0;
1451 }
1452 
enetc_setup_tc_cls_flower(struct enetc_ndev_priv * priv,struct flow_cls_offload * cls_flower)1453 static int enetc_setup_tc_cls_flower(struct enetc_ndev_priv *priv,
1454 				     struct flow_cls_offload *cls_flower)
1455 {
1456 	switch (cls_flower->command) {
1457 	case FLOW_CLS_REPLACE:
1458 		return enetc_config_clsflower(priv, cls_flower);
1459 	case FLOW_CLS_DESTROY:
1460 		return enetc_destroy_clsflower(priv, cls_flower);
1461 	case FLOW_CLS_STATS:
1462 		return enetc_psfp_get_stats(priv, cls_flower);
1463 	default:
1464 		return -EOPNOTSUPP;
1465 	}
1466 }
1467 
clean_psfp_sfi_bitmap(void)1468 static inline void clean_psfp_sfi_bitmap(void)
1469 {
1470 	bitmap_free(epsfp.psfp_sfi_bitmap);
1471 	epsfp.psfp_sfi_bitmap = NULL;
1472 }
1473 
clean_stream_list(void)1474 static void clean_stream_list(void)
1475 {
1476 	struct enetc_stream_filter *s;
1477 	struct hlist_node *tmp;
1478 
1479 	hlist_for_each_entry_safe(s, tmp, &epsfp.stream_list, node) {
1480 		hlist_del(&s->node);
1481 		kfree(s);
1482 	}
1483 }
1484 
clean_sfi_list(void)1485 static void clean_sfi_list(void)
1486 {
1487 	struct enetc_psfp_filter *sfi;
1488 	struct hlist_node *tmp;
1489 
1490 	hlist_for_each_entry_safe(sfi, tmp, &epsfp.psfp_filter_list, node) {
1491 		hlist_del(&sfi->node);
1492 		kfree(sfi);
1493 	}
1494 }
1495 
clean_sgi_list(void)1496 static void clean_sgi_list(void)
1497 {
1498 	struct enetc_psfp_gate *sgi;
1499 	struct hlist_node *tmp;
1500 
1501 	hlist_for_each_entry_safe(sgi, tmp, &epsfp.psfp_gate_list, node) {
1502 		hlist_del(&sgi->node);
1503 		kfree(sgi);
1504 	}
1505 }
1506 
clean_psfp_all(void)1507 static void clean_psfp_all(void)
1508 {
1509 	/* Disable all list nodes and free all memory */
1510 	clean_sfi_list();
1511 	clean_sgi_list();
1512 	clean_stream_list();
1513 	epsfp.dev_bitmap = 0;
1514 	clean_psfp_sfi_bitmap();
1515 }
1516 
enetc_setup_tc_block_cb(enum tc_setup_type type,void * type_data,void * cb_priv)1517 int enetc_setup_tc_block_cb(enum tc_setup_type type, void *type_data,
1518 			    void *cb_priv)
1519 {
1520 	struct net_device *ndev = cb_priv;
1521 
1522 	if (!tc_can_offload(ndev))
1523 		return -EOPNOTSUPP;
1524 
1525 	switch (type) {
1526 	case TC_SETUP_CLSFLOWER:
1527 		return enetc_setup_tc_cls_flower(netdev_priv(ndev), type_data);
1528 	default:
1529 		return -EOPNOTSUPP;
1530 	}
1531 }
1532 
enetc_set_psfp(struct net_device * ndev,bool en)1533 int enetc_set_psfp(struct net_device *ndev, bool en)
1534 {
1535 	struct enetc_ndev_priv *priv = netdev_priv(ndev);
1536 	int err;
1537 
1538 	if (en) {
1539 		err = enetc_psfp_enable(priv);
1540 		if (err)
1541 			return err;
1542 
1543 		priv->active_offloads |= ENETC_F_QCI;
1544 		return 0;
1545 	}
1546 
1547 	err = enetc_psfp_disable(priv);
1548 	if (err)
1549 		return err;
1550 
1551 	priv->active_offloads &= ~ENETC_F_QCI;
1552 
1553 	return 0;
1554 }
1555 
enetc_psfp_init(struct enetc_ndev_priv * priv)1556 int enetc_psfp_init(struct enetc_ndev_priv *priv)
1557 {
1558 	if (epsfp.psfp_sfi_bitmap)
1559 		return 0;
1560 
1561 	epsfp.psfp_sfi_bitmap = bitmap_zalloc(priv->psfp_cap.max_psfp_filter,
1562 					      GFP_KERNEL);
1563 	if (!epsfp.psfp_sfi_bitmap)
1564 		return -ENOMEM;
1565 
1566 	spin_lock_init(&epsfp.psfp_lock);
1567 
1568 	if (list_empty(&enetc_block_cb_list))
1569 		epsfp.dev_bitmap = 0;
1570 
1571 	return 0;
1572 }
1573 
enetc_psfp_clean(struct enetc_ndev_priv * priv)1574 int enetc_psfp_clean(struct enetc_ndev_priv *priv)
1575 {
1576 	if (!list_empty(&enetc_block_cb_list))
1577 		return -EBUSY;
1578 
1579 	clean_psfp_all();
1580 
1581 	return 0;
1582 }
1583 
enetc_setup_tc_psfp(struct net_device * ndev,void * type_data)1584 int enetc_setup_tc_psfp(struct net_device *ndev, void *type_data)
1585 {
1586 	struct enetc_ndev_priv *priv = netdev_priv(ndev);
1587 	struct flow_block_offload *f = type_data;
1588 	int err;
1589 
1590 	err = flow_block_cb_setup_simple(f, &enetc_block_cb_list,
1591 					 enetc_setup_tc_block_cb,
1592 					 ndev, ndev, true);
1593 	if (err)
1594 		return err;
1595 
1596 	switch (f->command) {
1597 	case FLOW_BLOCK_BIND:
1598 		set_bit(enetc_get_port(priv), &epsfp.dev_bitmap);
1599 		break;
1600 	case FLOW_BLOCK_UNBIND:
1601 		clear_bit(enetc_get_port(priv), &epsfp.dev_bitmap);
1602 		if (!epsfp.dev_bitmap)
1603 			clean_psfp_all();
1604 		break;
1605 	}
1606 
1607 	return 0;
1608 }
1609