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1 // SPDX-License-Identifier: GPL-2.0
2 /*
3  * Driver for Marvell PPv2 network controller for Armada 375 SoC.
4  *
5  * Copyright (C) 2014 Marvell
6  *
7  * Marcin Wojtas <mw@semihalf.com>
8  */
9 
10 #include <linux/acpi.h>
11 #include <linux/kernel.h>
12 #include <linux/netdevice.h>
13 #include <linux/etherdevice.h>
14 #include <linux/platform_device.h>
15 #include <linux/skbuff.h>
16 #include <linux/inetdevice.h>
17 #include <linux/mbus.h>
18 #include <linux/module.h>
19 #include <linux/mfd/syscon.h>
20 #include <linux/interrupt.h>
21 #include <linux/cpumask.h>
22 #include <linux/of.h>
23 #include <linux/of_irq.h>
24 #include <linux/of_mdio.h>
25 #include <linux/of_net.h>
26 #include <linux/of_address.h>
27 #include <linux/of_device.h>
28 #include <linux/phy.h>
29 #include <linux/phylink.h>
30 #include <linux/phy/phy.h>
31 #include <linux/ptp_classify.h>
32 #include <linux/clk.h>
33 #include <linux/hrtimer.h>
34 #include <linux/ktime.h>
35 #include <linux/regmap.h>
36 #include <uapi/linux/ppp_defs.h>
37 #include <net/ip.h>
38 #include <net/ipv6.h>
39 #include <net/tso.h>
40 #include <linux/bpf_trace.h>
41 
42 #include "mvpp2.h"
43 #include "mvpp2_prs.h"
44 #include "mvpp2_cls.h"
45 
46 enum mvpp2_bm_pool_log_num {
47 	MVPP2_BM_SHORT,
48 	MVPP2_BM_LONG,
49 	MVPP2_BM_JUMBO,
50 	MVPP2_BM_POOLS_NUM
51 };
52 
53 static struct {
54 	int pkt_size;
55 	int buf_num;
56 } mvpp2_pools[MVPP2_BM_POOLS_NUM];
57 
58 /* The prototype is added here to be used in start_dev when using ACPI. This
59  * will be removed once phylink is used for all modes (dt+ACPI).
60  */
61 static void mvpp2_acpi_start(struct mvpp2_port *port);
62 
63 /* Queue modes */
64 #define MVPP2_QDIST_SINGLE_MODE	0
65 #define MVPP2_QDIST_MULTI_MODE	1
66 
67 static int queue_mode = MVPP2_QDIST_MULTI_MODE;
68 
69 module_param(queue_mode, int, 0444);
70 MODULE_PARM_DESC(queue_mode, "Set queue_mode (single=0, multi=1)");
71 
72 /* Utility/helper methods */
73 
mvpp2_write(struct mvpp2 * priv,u32 offset,u32 data)74 void mvpp2_write(struct mvpp2 *priv, u32 offset, u32 data)
75 {
76 	writel(data, priv->swth_base[0] + offset);
77 }
78 
mvpp2_read(struct mvpp2 * priv,u32 offset)79 u32 mvpp2_read(struct mvpp2 *priv, u32 offset)
80 {
81 	return readl(priv->swth_base[0] + offset);
82 }
83 
mvpp2_read_relaxed(struct mvpp2 * priv,u32 offset)84 static u32 mvpp2_read_relaxed(struct mvpp2 *priv, u32 offset)
85 {
86 	return readl_relaxed(priv->swth_base[0] + offset);
87 }
88 
mvpp2_cpu_to_thread(struct mvpp2 * priv,int cpu)89 static inline u32 mvpp2_cpu_to_thread(struct mvpp2 *priv, int cpu)
90 {
91 	return cpu % priv->nthreads;
92 }
93 
94 static struct page_pool *
mvpp2_create_page_pool(struct device * dev,int num,int len,enum dma_data_direction dma_dir)95 mvpp2_create_page_pool(struct device *dev, int num, int len,
96 		       enum dma_data_direction dma_dir)
97 {
98 	struct page_pool_params pp_params = {
99 		/* internal DMA mapping in page_pool */
100 		.flags = PP_FLAG_DMA_MAP | PP_FLAG_DMA_SYNC_DEV,
101 		.pool_size = num,
102 		.nid = NUMA_NO_NODE,
103 		.dev = dev,
104 		.dma_dir = dma_dir,
105 		.offset = MVPP2_SKB_HEADROOM,
106 		.max_len = len,
107 	};
108 
109 	return page_pool_create(&pp_params);
110 }
111 
112 /* These accessors should be used to access:
113  *
114  * - per-thread registers, where each thread has its own copy of the
115  *   register.
116  *
117  *   MVPP2_BM_VIRT_ALLOC_REG
118  *   MVPP2_BM_ADDR_HIGH_ALLOC
119  *   MVPP22_BM_ADDR_HIGH_RLS_REG
120  *   MVPP2_BM_VIRT_RLS_REG
121  *   MVPP2_ISR_RX_TX_CAUSE_REG
122  *   MVPP2_ISR_RX_TX_MASK_REG
123  *   MVPP2_TXQ_NUM_REG
124  *   MVPP2_AGGR_TXQ_UPDATE_REG
125  *   MVPP2_TXQ_RSVD_REQ_REG
126  *   MVPP2_TXQ_RSVD_RSLT_REG
127  *   MVPP2_TXQ_SENT_REG
128  *   MVPP2_RXQ_NUM_REG
129  *
130  * - global registers that must be accessed through a specific thread
131  *   window, because they are related to an access to a per-thread
132  *   register
133  *
134  *   MVPP2_BM_PHY_ALLOC_REG    (related to MVPP2_BM_VIRT_ALLOC_REG)
135  *   MVPP2_BM_PHY_RLS_REG      (related to MVPP2_BM_VIRT_RLS_REG)
136  *   MVPP2_RXQ_THRESH_REG      (related to MVPP2_RXQ_NUM_REG)
137  *   MVPP2_RXQ_DESC_ADDR_REG   (related to MVPP2_RXQ_NUM_REG)
138  *   MVPP2_RXQ_DESC_SIZE_REG   (related to MVPP2_RXQ_NUM_REG)
139  *   MVPP2_RXQ_INDEX_REG       (related to MVPP2_RXQ_NUM_REG)
140  *   MVPP2_TXQ_PENDING_REG     (related to MVPP2_TXQ_NUM_REG)
141  *   MVPP2_TXQ_DESC_ADDR_REG   (related to MVPP2_TXQ_NUM_REG)
142  *   MVPP2_TXQ_DESC_SIZE_REG   (related to MVPP2_TXQ_NUM_REG)
143  *   MVPP2_TXQ_INDEX_REG       (related to MVPP2_TXQ_NUM_REG)
144  *   MVPP2_TXQ_PENDING_REG     (related to MVPP2_TXQ_NUM_REG)
145  *   MVPP2_TXQ_PREF_BUF_REG    (related to MVPP2_TXQ_NUM_REG)
146  *   MVPP2_TXQ_PREF_BUF_REG    (related to MVPP2_TXQ_NUM_REG)
147  */
mvpp2_thread_write(struct mvpp2 * priv,unsigned int thread,u32 offset,u32 data)148 static void mvpp2_thread_write(struct mvpp2 *priv, unsigned int thread,
149 			       u32 offset, u32 data)
150 {
151 	writel(data, priv->swth_base[thread] + offset);
152 }
153 
mvpp2_thread_read(struct mvpp2 * priv,unsigned int thread,u32 offset)154 static u32 mvpp2_thread_read(struct mvpp2 *priv, unsigned int thread,
155 			     u32 offset)
156 {
157 	return readl(priv->swth_base[thread] + offset);
158 }
159 
mvpp2_thread_write_relaxed(struct mvpp2 * priv,unsigned int thread,u32 offset,u32 data)160 static void mvpp2_thread_write_relaxed(struct mvpp2 *priv, unsigned int thread,
161 				       u32 offset, u32 data)
162 {
163 	writel_relaxed(data, priv->swth_base[thread] + offset);
164 }
165 
mvpp2_thread_read_relaxed(struct mvpp2 * priv,unsigned int thread,u32 offset)166 static u32 mvpp2_thread_read_relaxed(struct mvpp2 *priv, unsigned int thread,
167 				     u32 offset)
168 {
169 	return readl_relaxed(priv->swth_base[thread] + offset);
170 }
171 
mvpp2_txdesc_dma_addr_get(struct mvpp2_port * port,struct mvpp2_tx_desc * tx_desc)172 static dma_addr_t mvpp2_txdesc_dma_addr_get(struct mvpp2_port *port,
173 					    struct mvpp2_tx_desc *tx_desc)
174 {
175 	if (port->priv->hw_version == MVPP21)
176 		return le32_to_cpu(tx_desc->pp21.buf_dma_addr);
177 	else
178 		return le64_to_cpu(tx_desc->pp22.buf_dma_addr_ptp) &
179 		       MVPP2_DESC_DMA_MASK;
180 }
181 
mvpp2_txdesc_dma_addr_set(struct mvpp2_port * port,struct mvpp2_tx_desc * tx_desc,dma_addr_t dma_addr)182 static void mvpp2_txdesc_dma_addr_set(struct mvpp2_port *port,
183 				      struct mvpp2_tx_desc *tx_desc,
184 				      dma_addr_t dma_addr)
185 {
186 	dma_addr_t addr, offset;
187 
188 	addr = dma_addr & ~MVPP2_TX_DESC_ALIGN;
189 	offset = dma_addr & MVPP2_TX_DESC_ALIGN;
190 
191 	if (port->priv->hw_version == MVPP21) {
192 		tx_desc->pp21.buf_dma_addr = cpu_to_le32(addr);
193 		tx_desc->pp21.packet_offset = offset;
194 	} else {
195 		__le64 val = cpu_to_le64(addr);
196 
197 		tx_desc->pp22.buf_dma_addr_ptp &= ~cpu_to_le64(MVPP2_DESC_DMA_MASK);
198 		tx_desc->pp22.buf_dma_addr_ptp |= val;
199 		tx_desc->pp22.packet_offset = offset;
200 	}
201 }
202 
mvpp2_txdesc_size_get(struct mvpp2_port * port,struct mvpp2_tx_desc * tx_desc)203 static size_t mvpp2_txdesc_size_get(struct mvpp2_port *port,
204 				    struct mvpp2_tx_desc *tx_desc)
205 {
206 	if (port->priv->hw_version == MVPP21)
207 		return le16_to_cpu(tx_desc->pp21.data_size);
208 	else
209 		return le16_to_cpu(tx_desc->pp22.data_size);
210 }
211 
mvpp2_txdesc_size_set(struct mvpp2_port * port,struct mvpp2_tx_desc * tx_desc,size_t size)212 static void mvpp2_txdesc_size_set(struct mvpp2_port *port,
213 				  struct mvpp2_tx_desc *tx_desc,
214 				  size_t size)
215 {
216 	if (port->priv->hw_version == MVPP21)
217 		tx_desc->pp21.data_size = cpu_to_le16(size);
218 	else
219 		tx_desc->pp22.data_size = cpu_to_le16(size);
220 }
221 
mvpp2_txdesc_txq_set(struct mvpp2_port * port,struct mvpp2_tx_desc * tx_desc,unsigned int txq)222 static void mvpp2_txdesc_txq_set(struct mvpp2_port *port,
223 				 struct mvpp2_tx_desc *tx_desc,
224 				 unsigned int txq)
225 {
226 	if (port->priv->hw_version == MVPP21)
227 		tx_desc->pp21.phys_txq = txq;
228 	else
229 		tx_desc->pp22.phys_txq = txq;
230 }
231 
mvpp2_txdesc_cmd_set(struct mvpp2_port * port,struct mvpp2_tx_desc * tx_desc,unsigned int command)232 static void mvpp2_txdesc_cmd_set(struct mvpp2_port *port,
233 				 struct mvpp2_tx_desc *tx_desc,
234 				 unsigned int command)
235 {
236 	if (port->priv->hw_version == MVPP21)
237 		tx_desc->pp21.command = cpu_to_le32(command);
238 	else
239 		tx_desc->pp22.command = cpu_to_le32(command);
240 }
241 
mvpp2_txdesc_offset_get(struct mvpp2_port * port,struct mvpp2_tx_desc * tx_desc)242 static unsigned int mvpp2_txdesc_offset_get(struct mvpp2_port *port,
243 					    struct mvpp2_tx_desc *tx_desc)
244 {
245 	if (port->priv->hw_version == MVPP21)
246 		return tx_desc->pp21.packet_offset;
247 	else
248 		return tx_desc->pp22.packet_offset;
249 }
250 
mvpp2_rxdesc_dma_addr_get(struct mvpp2_port * port,struct mvpp2_rx_desc * rx_desc)251 static dma_addr_t mvpp2_rxdesc_dma_addr_get(struct mvpp2_port *port,
252 					    struct mvpp2_rx_desc *rx_desc)
253 {
254 	if (port->priv->hw_version == MVPP21)
255 		return le32_to_cpu(rx_desc->pp21.buf_dma_addr);
256 	else
257 		return le64_to_cpu(rx_desc->pp22.buf_dma_addr_key_hash) &
258 		       MVPP2_DESC_DMA_MASK;
259 }
260 
mvpp2_rxdesc_cookie_get(struct mvpp2_port * port,struct mvpp2_rx_desc * rx_desc)261 static unsigned long mvpp2_rxdesc_cookie_get(struct mvpp2_port *port,
262 					     struct mvpp2_rx_desc *rx_desc)
263 {
264 	if (port->priv->hw_version == MVPP21)
265 		return le32_to_cpu(rx_desc->pp21.buf_cookie);
266 	else
267 		return le64_to_cpu(rx_desc->pp22.buf_cookie_misc) &
268 		       MVPP2_DESC_DMA_MASK;
269 }
270 
mvpp2_rxdesc_size_get(struct mvpp2_port * port,struct mvpp2_rx_desc * rx_desc)271 static size_t mvpp2_rxdesc_size_get(struct mvpp2_port *port,
272 				    struct mvpp2_rx_desc *rx_desc)
273 {
274 	if (port->priv->hw_version == MVPP21)
275 		return le16_to_cpu(rx_desc->pp21.data_size);
276 	else
277 		return le16_to_cpu(rx_desc->pp22.data_size);
278 }
279 
mvpp2_rxdesc_status_get(struct mvpp2_port * port,struct mvpp2_rx_desc * rx_desc)280 static u32 mvpp2_rxdesc_status_get(struct mvpp2_port *port,
281 				   struct mvpp2_rx_desc *rx_desc)
282 {
283 	if (port->priv->hw_version == MVPP21)
284 		return le32_to_cpu(rx_desc->pp21.status);
285 	else
286 		return le32_to_cpu(rx_desc->pp22.status);
287 }
288 
mvpp2_txq_inc_get(struct mvpp2_txq_pcpu * txq_pcpu)289 static void mvpp2_txq_inc_get(struct mvpp2_txq_pcpu *txq_pcpu)
290 {
291 	txq_pcpu->txq_get_index++;
292 	if (txq_pcpu->txq_get_index == txq_pcpu->size)
293 		txq_pcpu->txq_get_index = 0;
294 }
295 
mvpp2_txq_inc_put(struct mvpp2_port * port,struct mvpp2_txq_pcpu * txq_pcpu,void * data,struct mvpp2_tx_desc * tx_desc,enum mvpp2_tx_buf_type buf_type)296 static void mvpp2_txq_inc_put(struct mvpp2_port *port,
297 			      struct mvpp2_txq_pcpu *txq_pcpu,
298 			      void *data,
299 			      struct mvpp2_tx_desc *tx_desc,
300 			      enum mvpp2_tx_buf_type buf_type)
301 {
302 	struct mvpp2_txq_pcpu_buf *tx_buf =
303 		txq_pcpu->buffs + txq_pcpu->txq_put_index;
304 	tx_buf->type = buf_type;
305 	if (buf_type == MVPP2_TYPE_SKB)
306 		tx_buf->skb = data;
307 	else
308 		tx_buf->xdpf = data;
309 	tx_buf->size = mvpp2_txdesc_size_get(port, tx_desc);
310 	tx_buf->dma = mvpp2_txdesc_dma_addr_get(port, tx_desc) +
311 		mvpp2_txdesc_offset_get(port, tx_desc);
312 	txq_pcpu->txq_put_index++;
313 	if (txq_pcpu->txq_put_index == txq_pcpu->size)
314 		txq_pcpu->txq_put_index = 0;
315 }
316 
317 /* Get number of maximum RXQ */
mvpp2_get_nrxqs(struct mvpp2 * priv)318 static int mvpp2_get_nrxqs(struct mvpp2 *priv)
319 {
320 	unsigned int nrxqs;
321 
322 	if (priv->hw_version == MVPP22 && queue_mode == MVPP2_QDIST_SINGLE_MODE)
323 		return 1;
324 
325 	/* According to the PPv2.2 datasheet and our experiments on
326 	 * PPv2.1, RX queues have an allocation granularity of 4 (when
327 	 * more than a single one on PPv2.2).
328 	 * Round up to nearest multiple of 4.
329 	 */
330 	nrxqs = (num_possible_cpus() + 3) & ~0x3;
331 	if (nrxqs > MVPP2_PORT_MAX_RXQ)
332 		nrxqs = MVPP2_PORT_MAX_RXQ;
333 
334 	return nrxqs;
335 }
336 
337 /* Get number of physical egress port */
mvpp2_egress_port(struct mvpp2_port * port)338 static inline int mvpp2_egress_port(struct mvpp2_port *port)
339 {
340 	return MVPP2_MAX_TCONT + port->id;
341 }
342 
343 /* Get number of physical TXQ */
mvpp2_txq_phys(int port,int txq)344 static inline int mvpp2_txq_phys(int port, int txq)
345 {
346 	return (MVPP2_MAX_TCONT + port) * MVPP2_MAX_TXQ + txq;
347 }
348 
349 /* Returns a struct page if page_pool is set, otherwise a buffer */
mvpp2_frag_alloc(const struct mvpp2_bm_pool * pool,struct page_pool * page_pool)350 static void *mvpp2_frag_alloc(const struct mvpp2_bm_pool *pool,
351 			      struct page_pool *page_pool)
352 {
353 	if (page_pool)
354 		return page_pool_dev_alloc_pages(page_pool);
355 
356 	if (likely(pool->frag_size <= PAGE_SIZE))
357 		return netdev_alloc_frag(pool->frag_size);
358 
359 	return kmalloc(pool->frag_size, GFP_ATOMIC);
360 }
361 
mvpp2_frag_free(const struct mvpp2_bm_pool * pool,struct page_pool * page_pool,void * data)362 static void mvpp2_frag_free(const struct mvpp2_bm_pool *pool,
363 			    struct page_pool *page_pool, void *data)
364 {
365 	if (page_pool)
366 		page_pool_put_full_page(page_pool, virt_to_head_page(data), false);
367 	else if (likely(pool->frag_size <= PAGE_SIZE))
368 		skb_free_frag(data);
369 	else
370 		kfree(data);
371 }
372 
373 /* Buffer Manager configuration routines */
374 
375 /* Create pool */
mvpp2_bm_pool_create(struct device * dev,struct mvpp2 * priv,struct mvpp2_bm_pool * bm_pool,int size)376 static int mvpp2_bm_pool_create(struct device *dev, struct mvpp2 *priv,
377 				struct mvpp2_bm_pool *bm_pool, int size)
378 {
379 	u32 val;
380 
381 	/* Number of buffer pointers must be a multiple of 16, as per
382 	 * hardware constraints
383 	 */
384 	if (!IS_ALIGNED(size, 16))
385 		return -EINVAL;
386 
387 	/* PPv2.1 needs 8 bytes per buffer pointer, PPv2.2 needs 16
388 	 * bytes per buffer pointer
389 	 */
390 	if (priv->hw_version == MVPP21)
391 		bm_pool->size_bytes = 2 * sizeof(u32) * size;
392 	else
393 		bm_pool->size_bytes = 2 * sizeof(u64) * size;
394 
395 	bm_pool->virt_addr = dma_alloc_coherent(dev, bm_pool->size_bytes,
396 						&bm_pool->dma_addr,
397 						GFP_KERNEL);
398 	if (!bm_pool->virt_addr)
399 		return -ENOMEM;
400 
401 	if (!IS_ALIGNED((unsigned long)bm_pool->virt_addr,
402 			MVPP2_BM_POOL_PTR_ALIGN)) {
403 		dma_free_coherent(dev, bm_pool->size_bytes,
404 				  bm_pool->virt_addr, bm_pool->dma_addr);
405 		dev_err(dev, "BM pool %d is not %d bytes aligned\n",
406 			bm_pool->id, MVPP2_BM_POOL_PTR_ALIGN);
407 		return -ENOMEM;
408 	}
409 
410 	mvpp2_write(priv, MVPP2_BM_POOL_BASE_REG(bm_pool->id),
411 		    lower_32_bits(bm_pool->dma_addr));
412 	mvpp2_write(priv, MVPP2_BM_POOL_SIZE_REG(bm_pool->id), size);
413 
414 	val = mvpp2_read(priv, MVPP2_BM_POOL_CTRL_REG(bm_pool->id));
415 	val |= MVPP2_BM_START_MASK;
416 	mvpp2_write(priv, MVPP2_BM_POOL_CTRL_REG(bm_pool->id), val);
417 
418 	bm_pool->size = size;
419 	bm_pool->pkt_size = 0;
420 	bm_pool->buf_num = 0;
421 
422 	return 0;
423 }
424 
425 /* Set pool buffer size */
mvpp2_bm_pool_bufsize_set(struct mvpp2 * priv,struct mvpp2_bm_pool * bm_pool,int buf_size)426 static void mvpp2_bm_pool_bufsize_set(struct mvpp2 *priv,
427 				      struct mvpp2_bm_pool *bm_pool,
428 				      int buf_size)
429 {
430 	u32 val;
431 
432 	bm_pool->buf_size = buf_size;
433 
434 	val = ALIGN(buf_size, 1 << MVPP2_POOL_BUF_SIZE_OFFSET);
435 	mvpp2_write(priv, MVPP2_POOL_BUF_SIZE_REG(bm_pool->id), val);
436 }
437 
mvpp2_bm_bufs_get_addrs(struct device * dev,struct mvpp2 * priv,struct mvpp2_bm_pool * bm_pool,dma_addr_t * dma_addr,phys_addr_t * phys_addr)438 static void mvpp2_bm_bufs_get_addrs(struct device *dev, struct mvpp2 *priv,
439 				    struct mvpp2_bm_pool *bm_pool,
440 				    dma_addr_t *dma_addr,
441 				    phys_addr_t *phys_addr)
442 {
443 	unsigned int thread = mvpp2_cpu_to_thread(priv, get_cpu());
444 
445 	*dma_addr = mvpp2_thread_read(priv, thread,
446 				      MVPP2_BM_PHY_ALLOC_REG(bm_pool->id));
447 	*phys_addr = mvpp2_thread_read(priv, thread, MVPP2_BM_VIRT_ALLOC_REG);
448 
449 	if (priv->hw_version == MVPP22) {
450 		u32 val;
451 		u32 dma_addr_highbits, phys_addr_highbits;
452 
453 		val = mvpp2_thread_read(priv, thread, MVPP22_BM_ADDR_HIGH_ALLOC);
454 		dma_addr_highbits = (val & MVPP22_BM_ADDR_HIGH_PHYS_MASK);
455 		phys_addr_highbits = (val & MVPP22_BM_ADDR_HIGH_VIRT_MASK) >>
456 			MVPP22_BM_ADDR_HIGH_VIRT_SHIFT;
457 
458 		if (sizeof(dma_addr_t) == 8)
459 			*dma_addr |= (u64)dma_addr_highbits << 32;
460 
461 		if (sizeof(phys_addr_t) == 8)
462 			*phys_addr |= (u64)phys_addr_highbits << 32;
463 	}
464 
465 	put_cpu();
466 }
467 
468 /* Free all buffers from the pool */
mvpp2_bm_bufs_free(struct device * dev,struct mvpp2 * priv,struct mvpp2_bm_pool * bm_pool,int buf_num)469 static void mvpp2_bm_bufs_free(struct device *dev, struct mvpp2 *priv,
470 			       struct mvpp2_bm_pool *bm_pool, int buf_num)
471 {
472 	struct page_pool *pp = NULL;
473 	int i;
474 
475 	if (buf_num > bm_pool->buf_num) {
476 		WARN(1, "Pool does not have so many bufs pool(%d) bufs(%d)\n",
477 		     bm_pool->id, buf_num);
478 		buf_num = bm_pool->buf_num;
479 	}
480 
481 	if (priv->percpu_pools)
482 		pp = priv->page_pool[bm_pool->id];
483 
484 	for (i = 0; i < buf_num; i++) {
485 		dma_addr_t buf_dma_addr;
486 		phys_addr_t buf_phys_addr;
487 		void *data;
488 
489 		mvpp2_bm_bufs_get_addrs(dev, priv, bm_pool,
490 					&buf_dma_addr, &buf_phys_addr);
491 
492 		if (!pp)
493 			dma_unmap_single(dev, buf_dma_addr,
494 					 bm_pool->buf_size, DMA_FROM_DEVICE);
495 
496 		data = (void *)phys_to_virt(buf_phys_addr);
497 		if (!data)
498 			break;
499 
500 		mvpp2_frag_free(bm_pool, pp, data);
501 	}
502 
503 	/* Update BM driver with number of buffers removed from pool */
504 	bm_pool->buf_num -= i;
505 }
506 
507 /* Check number of buffers in BM pool */
mvpp2_check_hw_buf_num(struct mvpp2 * priv,struct mvpp2_bm_pool * bm_pool)508 static int mvpp2_check_hw_buf_num(struct mvpp2 *priv, struct mvpp2_bm_pool *bm_pool)
509 {
510 	int buf_num = 0;
511 
512 	buf_num += mvpp2_read(priv, MVPP2_BM_POOL_PTRS_NUM_REG(bm_pool->id)) &
513 				    MVPP22_BM_POOL_PTRS_NUM_MASK;
514 	buf_num += mvpp2_read(priv, MVPP2_BM_BPPI_PTRS_NUM_REG(bm_pool->id)) &
515 				    MVPP2_BM_BPPI_PTR_NUM_MASK;
516 
517 	/* HW has one buffer ready which is not reflected in the counters */
518 	if (buf_num)
519 		buf_num += 1;
520 
521 	return buf_num;
522 }
523 
524 /* Cleanup pool */
mvpp2_bm_pool_destroy(struct device * dev,struct mvpp2 * priv,struct mvpp2_bm_pool * bm_pool)525 static int mvpp2_bm_pool_destroy(struct device *dev, struct mvpp2 *priv,
526 				 struct mvpp2_bm_pool *bm_pool)
527 {
528 	int buf_num;
529 	u32 val;
530 
531 	buf_num = mvpp2_check_hw_buf_num(priv, bm_pool);
532 	mvpp2_bm_bufs_free(dev, priv, bm_pool, buf_num);
533 
534 	/* Check buffer counters after free */
535 	buf_num = mvpp2_check_hw_buf_num(priv, bm_pool);
536 	if (buf_num) {
537 		WARN(1, "cannot free all buffers in pool %d, buf_num left %d\n",
538 		     bm_pool->id, bm_pool->buf_num);
539 		return 0;
540 	}
541 
542 	val = mvpp2_read(priv, MVPP2_BM_POOL_CTRL_REG(bm_pool->id));
543 	val |= MVPP2_BM_STOP_MASK;
544 	mvpp2_write(priv, MVPP2_BM_POOL_CTRL_REG(bm_pool->id), val);
545 
546 	if (priv->percpu_pools) {
547 		page_pool_destroy(priv->page_pool[bm_pool->id]);
548 		priv->page_pool[bm_pool->id] = NULL;
549 	}
550 
551 	dma_free_coherent(dev, bm_pool->size_bytes,
552 			  bm_pool->virt_addr,
553 			  bm_pool->dma_addr);
554 	return 0;
555 }
556 
mvpp2_bm_pools_init(struct device * dev,struct mvpp2 * priv)557 static int mvpp2_bm_pools_init(struct device *dev, struct mvpp2 *priv)
558 {
559 	int i, err, size, poolnum = MVPP2_BM_POOLS_NUM;
560 	struct mvpp2_bm_pool *bm_pool;
561 
562 	if (priv->percpu_pools)
563 		poolnum = mvpp2_get_nrxqs(priv) * 2;
564 
565 	/* Create all pools with maximum size */
566 	size = MVPP2_BM_POOL_SIZE_MAX;
567 	for (i = 0; i < poolnum; i++) {
568 		bm_pool = &priv->bm_pools[i];
569 		bm_pool->id = i;
570 		err = mvpp2_bm_pool_create(dev, priv, bm_pool, size);
571 		if (err)
572 			goto err_unroll_pools;
573 		mvpp2_bm_pool_bufsize_set(priv, bm_pool, 0);
574 	}
575 	return 0;
576 
577 err_unroll_pools:
578 	dev_err(dev, "failed to create BM pool %d, size %d\n", i, size);
579 	for (i = i - 1; i >= 0; i--)
580 		mvpp2_bm_pool_destroy(dev, priv, &priv->bm_pools[i]);
581 	return err;
582 }
583 
mvpp2_bm_init(struct device * dev,struct mvpp2 * priv)584 static int mvpp2_bm_init(struct device *dev, struct mvpp2 *priv)
585 {
586 	enum dma_data_direction dma_dir = DMA_FROM_DEVICE;
587 	int i, err, poolnum = MVPP2_BM_POOLS_NUM;
588 	struct mvpp2_port *port;
589 
590 	if (priv->percpu_pools) {
591 		for (i = 0; i < priv->port_count; i++) {
592 			port = priv->port_list[i];
593 			if (port->xdp_prog) {
594 				dma_dir = DMA_BIDIRECTIONAL;
595 				break;
596 			}
597 		}
598 
599 		poolnum = mvpp2_get_nrxqs(priv) * 2;
600 		for (i = 0; i < poolnum; i++) {
601 			/* the pool in use */
602 			int pn = i / (poolnum / 2);
603 
604 			priv->page_pool[i] =
605 				mvpp2_create_page_pool(dev,
606 						       mvpp2_pools[pn].buf_num,
607 						       mvpp2_pools[pn].pkt_size,
608 						       dma_dir);
609 			if (IS_ERR(priv->page_pool[i])) {
610 				int j;
611 
612 				for (j = 0; j < i; j++) {
613 					page_pool_destroy(priv->page_pool[j]);
614 					priv->page_pool[j] = NULL;
615 				}
616 				return PTR_ERR(priv->page_pool[i]);
617 			}
618 		}
619 	}
620 
621 	dev_info(dev, "using %d %s buffers\n", poolnum,
622 		 priv->percpu_pools ? "per-cpu" : "shared");
623 
624 	for (i = 0; i < poolnum; i++) {
625 		/* Mask BM all interrupts */
626 		mvpp2_write(priv, MVPP2_BM_INTR_MASK_REG(i), 0);
627 		/* Clear BM cause register */
628 		mvpp2_write(priv, MVPP2_BM_INTR_CAUSE_REG(i), 0);
629 	}
630 
631 	/* Allocate and initialize BM pools */
632 	priv->bm_pools = devm_kcalloc(dev, poolnum,
633 				      sizeof(*priv->bm_pools), GFP_KERNEL);
634 	if (!priv->bm_pools)
635 		return -ENOMEM;
636 
637 	err = mvpp2_bm_pools_init(dev, priv);
638 	if (err < 0)
639 		return err;
640 	return 0;
641 }
642 
mvpp2_setup_bm_pool(void)643 static void mvpp2_setup_bm_pool(void)
644 {
645 	/* Short pool */
646 	mvpp2_pools[MVPP2_BM_SHORT].buf_num  = MVPP2_BM_SHORT_BUF_NUM;
647 	mvpp2_pools[MVPP2_BM_SHORT].pkt_size = MVPP2_BM_SHORT_PKT_SIZE;
648 
649 	/* Long pool */
650 	mvpp2_pools[MVPP2_BM_LONG].buf_num  = MVPP2_BM_LONG_BUF_NUM;
651 	mvpp2_pools[MVPP2_BM_LONG].pkt_size = MVPP2_BM_LONG_PKT_SIZE;
652 
653 	/* Jumbo pool */
654 	mvpp2_pools[MVPP2_BM_JUMBO].buf_num  = MVPP2_BM_JUMBO_BUF_NUM;
655 	mvpp2_pools[MVPP2_BM_JUMBO].pkt_size = MVPP2_BM_JUMBO_PKT_SIZE;
656 }
657 
658 /* Attach long pool to rxq */
mvpp2_rxq_long_pool_set(struct mvpp2_port * port,int lrxq,int long_pool)659 static void mvpp2_rxq_long_pool_set(struct mvpp2_port *port,
660 				    int lrxq, int long_pool)
661 {
662 	u32 val, mask;
663 	int prxq;
664 
665 	/* Get queue physical ID */
666 	prxq = port->rxqs[lrxq]->id;
667 
668 	if (port->priv->hw_version == MVPP21)
669 		mask = MVPP21_RXQ_POOL_LONG_MASK;
670 	else
671 		mask = MVPP22_RXQ_POOL_LONG_MASK;
672 
673 	val = mvpp2_read(port->priv, MVPP2_RXQ_CONFIG_REG(prxq));
674 	val &= ~mask;
675 	val |= (long_pool << MVPP2_RXQ_POOL_LONG_OFFS) & mask;
676 	mvpp2_write(port->priv, MVPP2_RXQ_CONFIG_REG(prxq), val);
677 }
678 
679 /* Attach short pool to rxq */
mvpp2_rxq_short_pool_set(struct mvpp2_port * port,int lrxq,int short_pool)680 static void mvpp2_rxq_short_pool_set(struct mvpp2_port *port,
681 				     int lrxq, int short_pool)
682 {
683 	u32 val, mask;
684 	int prxq;
685 
686 	/* Get queue physical ID */
687 	prxq = port->rxqs[lrxq]->id;
688 
689 	if (port->priv->hw_version == MVPP21)
690 		mask = MVPP21_RXQ_POOL_SHORT_MASK;
691 	else
692 		mask = MVPP22_RXQ_POOL_SHORT_MASK;
693 
694 	val = mvpp2_read(port->priv, MVPP2_RXQ_CONFIG_REG(prxq));
695 	val &= ~mask;
696 	val |= (short_pool << MVPP2_RXQ_POOL_SHORT_OFFS) & mask;
697 	mvpp2_write(port->priv, MVPP2_RXQ_CONFIG_REG(prxq), val);
698 }
699 
mvpp2_buf_alloc(struct mvpp2_port * port,struct mvpp2_bm_pool * bm_pool,struct page_pool * page_pool,dma_addr_t * buf_dma_addr,phys_addr_t * buf_phys_addr,gfp_t gfp_mask)700 static void *mvpp2_buf_alloc(struct mvpp2_port *port,
701 			     struct mvpp2_bm_pool *bm_pool,
702 			     struct page_pool *page_pool,
703 			     dma_addr_t *buf_dma_addr,
704 			     phys_addr_t *buf_phys_addr,
705 			     gfp_t gfp_mask)
706 {
707 	dma_addr_t dma_addr;
708 	struct page *page;
709 	void *data;
710 
711 	data = mvpp2_frag_alloc(bm_pool, page_pool);
712 	if (!data)
713 		return NULL;
714 
715 	if (page_pool) {
716 		page = (struct page *)data;
717 		dma_addr = page_pool_get_dma_addr(page);
718 		data = page_to_virt(page);
719 	} else {
720 		dma_addr = dma_map_single(port->dev->dev.parent, data,
721 					  MVPP2_RX_BUF_SIZE(bm_pool->pkt_size),
722 					  DMA_FROM_DEVICE);
723 		if (unlikely(dma_mapping_error(port->dev->dev.parent, dma_addr))) {
724 			mvpp2_frag_free(bm_pool, NULL, data);
725 			return NULL;
726 		}
727 	}
728 	*buf_dma_addr = dma_addr;
729 	*buf_phys_addr = virt_to_phys(data);
730 
731 	return data;
732 }
733 
734 /* Release buffer to BM */
mvpp2_bm_pool_put(struct mvpp2_port * port,int pool,dma_addr_t buf_dma_addr,phys_addr_t buf_phys_addr)735 static inline void mvpp2_bm_pool_put(struct mvpp2_port *port, int pool,
736 				     dma_addr_t buf_dma_addr,
737 				     phys_addr_t buf_phys_addr)
738 {
739 	unsigned int thread = mvpp2_cpu_to_thread(port->priv, get_cpu());
740 	unsigned long flags = 0;
741 
742 	if (test_bit(thread, &port->priv->lock_map))
743 		spin_lock_irqsave(&port->bm_lock[thread], flags);
744 
745 	if (port->priv->hw_version == MVPP22) {
746 		u32 val = 0;
747 
748 		if (sizeof(dma_addr_t) == 8)
749 			val |= upper_32_bits(buf_dma_addr) &
750 				MVPP22_BM_ADDR_HIGH_PHYS_RLS_MASK;
751 
752 		if (sizeof(phys_addr_t) == 8)
753 			val |= (upper_32_bits(buf_phys_addr)
754 				<< MVPP22_BM_ADDR_HIGH_VIRT_RLS_SHIFT) &
755 				MVPP22_BM_ADDR_HIGH_VIRT_RLS_MASK;
756 
757 		mvpp2_thread_write_relaxed(port->priv, thread,
758 					   MVPP22_BM_ADDR_HIGH_RLS_REG, val);
759 	}
760 
761 	/* MVPP2_BM_VIRT_RLS_REG is not interpreted by HW, and simply
762 	 * returned in the "cookie" field of the RX
763 	 * descriptor. Instead of storing the virtual address, we
764 	 * store the physical address
765 	 */
766 	mvpp2_thread_write_relaxed(port->priv, thread,
767 				   MVPP2_BM_VIRT_RLS_REG, buf_phys_addr);
768 	mvpp2_thread_write_relaxed(port->priv, thread,
769 				   MVPP2_BM_PHY_RLS_REG(pool), buf_dma_addr);
770 
771 	if (test_bit(thread, &port->priv->lock_map))
772 		spin_unlock_irqrestore(&port->bm_lock[thread], flags);
773 
774 	put_cpu();
775 }
776 
777 /* Allocate buffers for the pool */
mvpp2_bm_bufs_add(struct mvpp2_port * port,struct mvpp2_bm_pool * bm_pool,int buf_num)778 static int mvpp2_bm_bufs_add(struct mvpp2_port *port,
779 			     struct mvpp2_bm_pool *bm_pool, int buf_num)
780 {
781 	int i, buf_size, total_size;
782 	dma_addr_t dma_addr;
783 	phys_addr_t phys_addr;
784 	struct page_pool *pp = NULL;
785 	void *buf;
786 
787 	if (port->priv->percpu_pools &&
788 	    bm_pool->pkt_size > MVPP2_BM_LONG_PKT_SIZE) {
789 		netdev_err(port->dev,
790 			   "attempted to use jumbo frames with per-cpu pools");
791 		return 0;
792 	}
793 
794 	buf_size = MVPP2_RX_BUF_SIZE(bm_pool->pkt_size);
795 	total_size = MVPP2_RX_TOTAL_SIZE(buf_size);
796 
797 	if (buf_num < 0 ||
798 	    (buf_num + bm_pool->buf_num > bm_pool->size)) {
799 		netdev_err(port->dev,
800 			   "cannot allocate %d buffers for pool %d\n",
801 			   buf_num, bm_pool->id);
802 		return 0;
803 	}
804 
805 	if (port->priv->percpu_pools)
806 		pp = port->priv->page_pool[bm_pool->id];
807 	for (i = 0; i < buf_num; i++) {
808 		buf = mvpp2_buf_alloc(port, bm_pool, pp, &dma_addr,
809 				      &phys_addr, GFP_KERNEL);
810 		if (!buf)
811 			break;
812 
813 		mvpp2_bm_pool_put(port, bm_pool->id, dma_addr,
814 				  phys_addr);
815 	}
816 
817 	/* Update BM driver with number of buffers added to pool */
818 	bm_pool->buf_num += i;
819 
820 	netdev_dbg(port->dev,
821 		   "pool %d: pkt_size=%4d, buf_size=%4d, total_size=%4d\n",
822 		   bm_pool->id, bm_pool->pkt_size, buf_size, total_size);
823 
824 	netdev_dbg(port->dev,
825 		   "pool %d: %d of %d buffers added\n",
826 		   bm_pool->id, i, buf_num);
827 	return i;
828 }
829 
830 /* Notify the driver that BM pool is being used as specific type and return the
831  * pool pointer on success
832  */
833 static struct mvpp2_bm_pool *
mvpp2_bm_pool_use(struct mvpp2_port * port,unsigned pool,int pkt_size)834 mvpp2_bm_pool_use(struct mvpp2_port *port, unsigned pool, int pkt_size)
835 {
836 	struct mvpp2_bm_pool *new_pool = &port->priv->bm_pools[pool];
837 	int num;
838 
839 	if ((port->priv->percpu_pools && pool > mvpp2_get_nrxqs(port->priv) * 2) ||
840 	    (!port->priv->percpu_pools && pool >= MVPP2_BM_POOLS_NUM)) {
841 		netdev_err(port->dev, "Invalid pool %d\n", pool);
842 		return NULL;
843 	}
844 
845 	/* Allocate buffers in case BM pool is used as long pool, but packet
846 	 * size doesn't match MTU or BM pool hasn't being used yet
847 	 */
848 	if (new_pool->pkt_size == 0) {
849 		int pkts_num;
850 
851 		/* Set default buffer number or free all the buffers in case
852 		 * the pool is not empty
853 		 */
854 		pkts_num = new_pool->buf_num;
855 		if (pkts_num == 0) {
856 			if (port->priv->percpu_pools) {
857 				if (pool < port->nrxqs)
858 					pkts_num = mvpp2_pools[MVPP2_BM_SHORT].buf_num;
859 				else
860 					pkts_num = mvpp2_pools[MVPP2_BM_LONG].buf_num;
861 			} else {
862 				pkts_num = mvpp2_pools[pool].buf_num;
863 			}
864 		} else {
865 			mvpp2_bm_bufs_free(port->dev->dev.parent,
866 					   port->priv, new_pool, pkts_num);
867 		}
868 
869 		new_pool->pkt_size = pkt_size;
870 		new_pool->frag_size =
871 			SKB_DATA_ALIGN(MVPP2_RX_BUF_SIZE(pkt_size)) +
872 			MVPP2_SKB_SHINFO_SIZE;
873 
874 		/* Allocate buffers for this pool */
875 		num = mvpp2_bm_bufs_add(port, new_pool, pkts_num);
876 		if (num != pkts_num) {
877 			WARN(1, "pool %d: %d of %d allocated\n",
878 			     new_pool->id, num, pkts_num);
879 			return NULL;
880 		}
881 	}
882 
883 	mvpp2_bm_pool_bufsize_set(port->priv, new_pool,
884 				  MVPP2_RX_BUF_SIZE(new_pool->pkt_size));
885 
886 	return new_pool;
887 }
888 
889 static struct mvpp2_bm_pool *
mvpp2_bm_pool_use_percpu(struct mvpp2_port * port,int type,unsigned int pool,int pkt_size)890 mvpp2_bm_pool_use_percpu(struct mvpp2_port *port, int type,
891 			 unsigned int pool, int pkt_size)
892 {
893 	struct mvpp2_bm_pool *new_pool = &port->priv->bm_pools[pool];
894 	int num;
895 
896 	if (pool > port->nrxqs * 2) {
897 		netdev_err(port->dev, "Invalid pool %d\n", pool);
898 		return NULL;
899 	}
900 
901 	/* Allocate buffers in case BM pool is used as long pool, but packet
902 	 * size doesn't match MTU or BM pool hasn't being used yet
903 	 */
904 	if (new_pool->pkt_size == 0) {
905 		int pkts_num;
906 
907 		/* Set default buffer number or free all the buffers in case
908 		 * the pool is not empty
909 		 */
910 		pkts_num = new_pool->buf_num;
911 		if (pkts_num == 0)
912 			pkts_num = mvpp2_pools[type].buf_num;
913 		else
914 			mvpp2_bm_bufs_free(port->dev->dev.parent,
915 					   port->priv, new_pool, pkts_num);
916 
917 		new_pool->pkt_size = pkt_size;
918 		new_pool->frag_size =
919 			SKB_DATA_ALIGN(MVPP2_RX_BUF_SIZE(pkt_size)) +
920 			MVPP2_SKB_SHINFO_SIZE;
921 
922 		/* Allocate buffers for this pool */
923 		num = mvpp2_bm_bufs_add(port, new_pool, pkts_num);
924 		if (num != pkts_num) {
925 			WARN(1, "pool %d: %d of %d allocated\n",
926 			     new_pool->id, num, pkts_num);
927 			return NULL;
928 		}
929 	}
930 
931 	mvpp2_bm_pool_bufsize_set(port->priv, new_pool,
932 				  MVPP2_RX_BUF_SIZE(new_pool->pkt_size));
933 
934 	return new_pool;
935 }
936 
937 /* Initialize pools for swf, shared buffers variant */
mvpp2_swf_bm_pool_init_shared(struct mvpp2_port * port)938 static int mvpp2_swf_bm_pool_init_shared(struct mvpp2_port *port)
939 {
940 	enum mvpp2_bm_pool_log_num long_log_pool, short_log_pool;
941 	int rxq;
942 
943 	/* If port pkt_size is higher than 1518B:
944 	 * HW Long pool - SW Jumbo pool, HW Short pool - SW Long pool
945 	 * else: HW Long pool - SW Long pool, HW Short pool - SW Short pool
946 	 */
947 	if (port->pkt_size > MVPP2_BM_LONG_PKT_SIZE) {
948 		long_log_pool = MVPP2_BM_JUMBO;
949 		short_log_pool = MVPP2_BM_LONG;
950 	} else {
951 		long_log_pool = MVPP2_BM_LONG;
952 		short_log_pool = MVPP2_BM_SHORT;
953 	}
954 
955 	if (!port->pool_long) {
956 		port->pool_long =
957 			mvpp2_bm_pool_use(port, long_log_pool,
958 					  mvpp2_pools[long_log_pool].pkt_size);
959 		if (!port->pool_long)
960 			return -ENOMEM;
961 
962 		port->pool_long->port_map |= BIT(port->id);
963 
964 		for (rxq = 0; rxq < port->nrxqs; rxq++)
965 			mvpp2_rxq_long_pool_set(port, rxq, port->pool_long->id);
966 	}
967 
968 	if (!port->pool_short) {
969 		port->pool_short =
970 			mvpp2_bm_pool_use(port, short_log_pool,
971 					  mvpp2_pools[short_log_pool].pkt_size);
972 		if (!port->pool_short)
973 			return -ENOMEM;
974 
975 		port->pool_short->port_map |= BIT(port->id);
976 
977 		for (rxq = 0; rxq < port->nrxqs; rxq++)
978 			mvpp2_rxq_short_pool_set(port, rxq,
979 						 port->pool_short->id);
980 	}
981 
982 	return 0;
983 }
984 
985 /* Initialize pools for swf, percpu buffers variant */
mvpp2_swf_bm_pool_init_percpu(struct mvpp2_port * port)986 static int mvpp2_swf_bm_pool_init_percpu(struct mvpp2_port *port)
987 {
988 	struct mvpp2_bm_pool *bm_pool;
989 	int i;
990 
991 	for (i = 0; i < port->nrxqs; i++) {
992 		bm_pool = mvpp2_bm_pool_use_percpu(port, MVPP2_BM_SHORT, i,
993 						   mvpp2_pools[MVPP2_BM_SHORT].pkt_size);
994 		if (!bm_pool)
995 			return -ENOMEM;
996 
997 		bm_pool->port_map |= BIT(port->id);
998 		mvpp2_rxq_short_pool_set(port, i, bm_pool->id);
999 	}
1000 
1001 	for (i = 0; i < port->nrxqs; i++) {
1002 		bm_pool = mvpp2_bm_pool_use_percpu(port, MVPP2_BM_LONG, i + port->nrxqs,
1003 						   mvpp2_pools[MVPP2_BM_LONG].pkt_size);
1004 		if (!bm_pool)
1005 			return -ENOMEM;
1006 
1007 		bm_pool->port_map |= BIT(port->id);
1008 		mvpp2_rxq_long_pool_set(port, i, bm_pool->id);
1009 	}
1010 
1011 	port->pool_long = NULL;
1012 	port->pool_short = NULL;
1013 
1014 	return 0;
1015 }
1016 
mvpp2_swf_bm_pool_init(struct mvpp2_port * port)1017 static int mvpp2_swf_bm_pool_init(struct mvpp2_port *port)
1018 {
1019 	if (port->priv->percpu_pools)
1020 		return mvpp2_swf_bm_pool_init_percpu(port);
1021 	else
1022 		return mvpp2_swf_bm_pool_init_shared(port);
1023 }
1024 
mvpp2_set_hw_csum(struct mvpp2_port * port,enum mvpp2_bm_pool_log_num new_long_pool)1025 static void mvpp2_set_hw_csum(struct mvpp2_port *port,
1026 			      enum mvpp2_bm_pool_log_num new_long_pool)
1027 {
1028 	const netdev_features_t csums = NETIF_F_IP_CSUM | NETIF_F_IPV6_CSUM;
1029 
1030 	/* Update L4 checksum when jumbo enable/disable on port.
1031 	 * Only port 0 supports hardware checksum offload due to
1032 	 * the Tx FIFO size limitation.
1033 	 * Also, don't set NETIF_F_HW_CSUM because L3_offset in TX descriptor
1034 	 * has 7 bits, so the maximum L3 offset is 128.
1035 	 */
1036 	if (new_long_pool == MVPP2_BM_JUMBO && port->id != 0) {
1037 		port->dev->features &= ~csums;
1038 		port->dev->hw_features &= ~csums;
1039 	} else {
1040 		port->dev->features |= csums;
1041 		port->dev->hw_features |= csums;
1042 	}
1043 }
1044 
mvpp2_bm_update_mtu(struct net_device * dev,int mtu)1045 static int mvpp2_bm_update_mtu(struct net_device *dev, int mtu)
1046 {
1047 	struct mvpp2_port *port = netdev_priv(dev);
1048 	enum mvpp2_bm_pool_log_num new_long_pool;
1049 	int pkt_size = MVPP2_RX_PKT_SIZE(mtu);
1050 
1051 	if (port->priv->percpu_pools)
1052 		goto out_set;
1053 
1054 	/* If port MTU is higher than 1518B:
1055 	 * HW Long pool - SW Jumbo pool, HW Short pool - SW Long pool
1056 	 * else: HW Long pool - SW Long pool, HW Short pool - SW Short pool
1057 	 */
1058 	if (pkt_size > MVPP2_BM_LONG_PKT_SIZE)
1059 		new_long_pool = MVPP2_BM_JUMBO;
1060 	else
1061 		new_long_pool = MVPP2_BM_LONG;
1062 
1063 	if (new_long_pool != port->pool_long->id) {
1064 		/* Remove port from old short & long pool */
1065 		port->pool_long = mvpp2_bm_pool_use(port, port->pool_long->id,
1066 						    port->pool_long->pkt_size);
1067 		port->pool_long->port_map &= ~BIT(port->id);
1068 		port->pool_long = NULL;
1069 
1070 		port->pool_short = mvpp2_bm_pool_use(port, port->pool_short->id,
1071 						     port->pool_short->pkt_size);
1072 		port->pool_short->port_map &= ~BIT(port->id);
1073 		port->pool_short = NULL;
1074 
1075 		port->pkt_size =  pkt_size;
1076 
1077 		/* Add port to new short & long pool */
1078 		mvpp2_swf_bm_pool_init(port);
1079 
1080 		mvpp2_set_hw_csum(port, new_long_pool);
1081 	}
1082 
1083 out_set:
1084 	dev->mtu = mtu;
1085 	dev->wanted_features = dev->features;
1086 
1087 	netdev_update_features(dev);
1088 	return 0;
1089 }
1090 
mvpp2_interrupts_enable(struct mvpp2_port * port)1091 static inline void mvpp2_interrupts_enable(struct mvpp2_port *port)
1092 {
1093 	int i, sw_thread_mask = 0;
1094 
1095 	for (i = 0; i < port->nqvecs; i++)
1096 		sw_thread_mask |= port->qvecs[i].sw_thread_mask;
1097 
1098 	mvpp2_write(port->priv, MVPP2_ISR_ENABLE_REG(port->id),
1099 		    MVPP2_ISR_ENABLE_INTERRUPT(sw_thread_mask));
1100 }
1101 
mvpp2_interrupts_disable(struct mvpp2_port * port)1102 static inline void mvpp2_interrupts_disable(struct mvpp2_port *port)
1103 {
1104 	int i, sw_thread_mask = 0;
1105 
1106 	for (i = 0; i < port->nqvecs; i++)
1107 		sw_thread_mask |= port->qvecs[i].sw_thread_mask;
1108 
1109 	mvpp2_write(port->priv, MVPP2_ISR_ENABLE_REG(port->id),
1110 		    MVPP2_ISR_DISABLE_INTERRUPT(sw_thread_mask));
1111 }
1112 
mvpp2_qvec_interrupt_enable(struct mvpp2_queue_vector * qvec)1113 static inline void mvpp2_qvec_interrupt_enable(struct mvpp2_queue_vector *qvec)
1114 {
1115 	struct mvpp2_port *port = qvec->port;
1116 
1117 	mvpp2_write(port->priv, MVPP2_ISR_ENABLE_REG(port->id),
1118 		    MVPP2_ISR_ENABLE_INTERRUPT(qvec->sw_thread_mask));
1119 }
1120 
mvpp2_qvec_interrupt_disable(struct mvpp2_queue_vector * qvec)1121 static inline void mvpp2_qvec_interrupt_disable(struct mvpp2_queue_vector *qvec)
1122 {
1123 	struct mvpp2_port *port = qvec->port;
1124 
1125 	mvpp2_write(port->priv, MVPP2_ISR_ENABLE_REG(port->id),
1126 		    MVPP2_ISR_DISABLE_INTERRUPT(qvec->sw_thread_mask));
1127 }
1128 
1129 /* Mask the current thread's Rx/Tx interrupts
1130  * Called by on_each_cpu(), guaranteed to run with migration disabled,
1131  * using smp_processor_id() is OK.
1132  */
mvpp2_interrupts_mask(void * arg)1133 static void mvpp2_interrupts_mask(void *arg)
1134 {
1135 	struct mvpp2_port *port = arg;
1136 
1137 	/* If the thread isn't used, don't do anything */
1138 	if (smp_processor_id() > port->priv->nthreads)
1139 		return;
1140 
1141 	mvpp2_thread_write(port->priv,
1142 			   mvpp2_cpu_to_thread(port->priv, smp_processor_id()),
1143 			   MVPP2_ISR_RX_TX_MASK_REG(port->id), 0);
1144 }
1145 
1146 /* Unmask the current thread's Rx/Tx interrupts.
1147  * Called by on_each_cpu(), guaranteed to run with migration disabled,
1148  * using smp_processor_id() is OK.
1149  */
mvpp2_interrupts_unmask(void * arg)1150 static void mvpp2_interrupts_unmask(void *arg)
1151 {
1152 	struct mvpp2_port *port = arg;
1153 	u32 val;
1154 
1155 	/* If the thread isn't used, don't do anything */
1156 	if (smp_processor_id() >= port->priv->nthreads)
1157 		return;
1158 
1159 	val = MVPP2_CAUSE_MISC_SUM_MASK |
1160 		MVPP2_CAUSE_RXQ_OCCUP_DESC_ALL_MASK(port->priv->hw_version);
1161 	if (port->has_tx_irqs)
1162 		val |= MVPP2_CAUSE_TXQ_OCCUP_DESC_ALL_MASK;
1163 
1164 	mvpp2_thread_write(port->priv,
1165 			   mvpp2_cpu_to_thread(port->priv, smp_processor_id()),
1166 			   MVPP2_ISR_RX_TX_MASK_REG(port->id), val);
1167 }
1168 
1169 static void
mvpp2_shared_interrupt_mask_unmask(struct mvpp2_port * port,bool mask)1170 mvpp2_shared_interrupt_mask_unmask(struct mvpp2_port *port, bool mask)
1171 {
1172 	u32 val;
1173 	int i;
1174 
1175 	if (port->priv->hw_version != MVPP22)
1176 		return;
1177 
1178 	if (mask)
1179 		val = 0;
1180 	else
1181 		val = MVPP2_CAUSE_RXQ_OCCUP_DESC_ALL_MASK(MVPP22);
1182 
1183 	for (i = 0; i < port->nqvecs; i++) {
1184 		struct mvpp2_queue_vector *v = port->qvecs + i;
1185 
1186 		if (v->type != MVPP2_QUEUE_VECTOR_SHARED)
1187 			continue;
1188 
1189 		mvpp2_thread_write(port->priv, v->sw_thread_id,
1190 				   MVPP2_ISR_RX_TX_MASK_REG(port->id), val);
1191 	}
1192 }
1193 
1194 /* Only GOP port 0 has an XLG MAC */
mvpp2_port_supports_xlg(struct mvpp2_port * port)1195 static bool mvpp2_port_supports_xlg(struct mvpp2_port *port)
1196 {
1197 	return port->gop_id == 0;
1198 }
1199 
mvpp2_port_supports_rgmii(struct mvpp2_port * port)1200 static bool mvpp2_port_supports_rgmii(struct mvpp2_port *port)
1201 {
1202 	return !(port->priv->hw_version == MVPP22 && port->gop_id == 0);
1203 }
1204 
1205 /* Port configuration routines */
mvpp2_is_xlg(phy_interface_t interface)1206 static bool mvpp2_is_xlg(phy_interface_t interface)
1207 {
1208 	return interface == PHY_INTERFACE_MODE_10GBASER ||
1209 	       interface == PHY_INTERFACE_MODE_XAUI;
1210 }
1211 
mvpp2_modify(void __iomem * ptr,u32 mask,u32 set)1212 static void mvpp2_modify(void __iomem *ptr, u32 mask, u32 set)
1213 {
1214 	u32 old, val;
1215 
1216 	old = val = readl(ptr);
1217 	val &= ~mask;
1218 	val |= set;
1219 	if (old != val)
1220 		writel(val, ptr);
1221 }
1222 
mvpp22_gop_init_rgmii(struct mvpp2_port * port)1223 static void mvpp22_gop_init_rgmii(struct mvpp2_port *port)
1224 {
1225 	struct mvpp2 *priv = port->priv;
1226 	u32 val;
1227 
1228 	regmap_read(priv->sysctrl_base, GENCONF_PORT_CTRL0, &val);
1229 	val |= GENCONF_PORT_CTRL0_BUS_WIDTH_SELECT;
1230 	regmap_write(priv->sysctrl_base, GENCONF_PORT_CTRL0, val);
1231 
1232 	regmap_read(priv->sysctrl_base, GENCONF_CTRL0, &val);
1233 	if (port->gop_id == 2)
1234 		val |= GENCONF_CTRL0_PORT0_RGMII;
1235 	else if (port->gop_id == 3)
1236 		val |= GENCONF_CTRL0_PORT1_RGMII_MII;
1237 	regmap_write(priv->sysctrl_base, GENCONF_CTRL0, val);
1238 }
1239 
mvpp22_gop_init_sgmii(struct mvpp2_port * port)1240 static void mvpp22_gop_init_sgmii(struct mvpp2_port *port)
1241 {
1242 	struct mvpp2 *priv = port->priv;
1243 	u32 val;
1244 
1245 	regmap_read(priv->sysctrl_base, GENCONF_PORT_CTRL0, &val);
1246 	val |= GENCONF_PORT_CTRL0_BUS_WIDTH_SELECT |
1247 	       GENCONF_PORT_CTRL0_RX_DATA_SAMPLE;
1248 	regmap_write(priv->sysctrl_base, GENCONF_PORT_CTRL0, val);
1249 
1250 	if (port->gop_id > 1) {
1251 		regmap_read(priv->sysctrl_base, GENCONF_CTRL0, &val);
1252 		if (port->gop_id == 2)
1253 			val &= ~GENCONF_CTRL0_PORT0_RGMII;
1254 		else if (port->gop_id == 3)
1255 			val &= ~GENCONF_CTRL0_PORT1_RGMII_MII;
1256 		regmap_write(priv->sysctrl_base, GENCONF_CTRL0, val);
1257 	}
1258 }
1259 
mvpp22_gop_init_10gkr(struct mvpp2_port * port)1260 static void mvpp22_gop_init_10gkr(struct mvpp2_port *port)
1261 {
1262 	struct mvpp2 *priv = port->priv;
1263 	void __iomem *mpcs = priv->iface_base + MVPP22_MPCS_BASE(port->gop_id);
1264 	void __iomem *xpcs = priv->iface_base + MVPP22_XPCS_BASE(port->gop_id);
1265 	u32 val;
1266 
1267 	val = readl(xpcs + MVPP22_XPCS_CFG0);
1268 	val &= ~(MVPP22_XPCS_CFG0_PCS_MODE(0x3) |
1269 		 MVPP22_XPCS_CFG0_ACTIVE_LANE(0x3));
1270 	val |= MVPP22_XPCS_CFG0_ACTIVE_LANE(2);
1271 	writel(val, xpcs + MVPP22_XPCS_CFG0);
1272 
1273 	val = readl(mpcs + MVPP22_MPCS_CTRL);
1274 	val &= ~MVPP22_MPCS_CTRL_FWD_ERR_CONN;
1275 	writel(val, mpcs + MVPP22_MPCS_CTRL);
1276 
1277 	val = readl(mpcs + MVPP22_MPCS_CLK_RESET);
1278 	val &= ~MVPP22_MPCS_CLK_RESET_DIV_RATIO(0x7);
1279 	val |= MVPP22_MPCS_CLK_RESET_DIV_RATIO(1);
1280 	writel(val, mpcs + MVPP22_MPCS_CLK_RESET);
1281 }
1282 
mvpp22_gop_init(struct mvpp2_port * port)1283 static int mvpp22_gop_init(struct mvpp2_port *port)
1284 {
1285 	struct mvpp2 *priv = port->priv;
1286 	u32 val;
1287 
1288 	if (!priv->sysctrl_base)
1289 		return 0;
1290 
1291 	switch (port->phy_interface) {
1292 	case PHY_INTERFACE_MODE_RGMII:
1293 	case PHY_INTERFACE_MODE_RGMII_ID:
1294 	case PHY_INTERFACE_MODE_RGMII_RXID:
1295 	case PHY_INTERFACE_MODE_RGMII_TXID:
1296 		if (!mvpp2_port_supports_rgmii(port))
1297 			goto invalid_conf;
1298 		mvpp22_gop_init_rgmii(port);
1299 		break;
1300 	case PHY_INTERFACE_MODE_SGMII:
1301 	case PHY_INTERFACE_MODE_1000BASEX:
1302 	case PHY_INTERFACE_MODE_2500BASEX:
1303 		mvpp22_gop_init_sgmii(port);
1304 		break;
1305 	case PHY_INTERFACE_MODE_10GBASER:
1306 		if (!mvpp2_port_supports_xlg(port))
1307 			goto invalid_conf;
1308 		mvpp22_gop_init_10gkr(port);
1309 		break;
1310 	default:
1311 		goto unsupported_conf;
1312 	}
1313 
1314 	regmap_read(priv->sysctrl_base, GENCONF_PORT_CTRL1, &val);
1315 	val |= GENCONF_PORT_CTRL1_RESET(port->gop_id) |
1316 	       GENCONF_PORT_CTRL1_EN(port->gop_id);
1317 	regmap_write(priv->sysctrl_base, GENCONF_PORT_CTRL1, val);
1318 
1319 	regmap_read(priv->sysctrl_base, GENCONF_PORT_CTRL0, &val);
1320 	val |= GENCONF_PORT_CTRL0_CLK_DIV_PHASE_CLR;
1321 	regmap_write(priv->sysctrl_base, GENCONF_PORT_CTRL0, val);
1322 
1323 	regmap_read(priv->sysctrl_base, GENCONF_SOFT_RESET1, &val);
1324 	val |= GENCONF_SOFT_RESET1_GOP;
1325 	regmap_write(priv->sysctrl_base, GENCONF_SOFT_RESET1, val);
1326 
1327 unsupported_conf:
1328 	return 0;
1329 
1330 invalid_conf:
1331 	netdev_err(port->dev, "Invalid port configuration\n");
1332 	return -EINVAL;
1333 }
1334 
mvpp22_gop_unmask_irq(struct mvpp2_port * port)1335 static void mvpp22_gop_unmask_irq(struct mvpp2_port *port)
1336 {
1337 	u32 val;
1338 
1339 	if (phy_interface_mode_is_rgmii(port->phy_interface) ||
1340 	    phy_interface_mode_is_8023z(port->phy_interface) ||
1341 	    port->phy_interface == PHY_INTERFACE_MODE_SGMII) {
1342 		/* Enable the GMAC link status irq for this port */
1343 		val = readl(port->base + MVPP22_GMAC_INT_SUM_MASK);
1344 		val |= MVPP22_GMAC_INT_SUM_MASK_LINK_STAT;
1345 		writel(val, port->base + MVPP22_GMAC_INT_SUM_MASK);
1346 	}
1347 
1348 	if (mvpp2_port_supports_xlg(port)) {
1349 		/* Enable the XLG/GIG irqs for this port */
1350 		val = readl(port->base + MVPP22_XLG_EXT_INT_MASK);
1351 		if (mvpp2_is_xlg(port->phy_interface))
1352 			val |= MVPP22_XLG_EXT_INT_MASK_XLG;
1353 		else
1354 			val |= MVPP22_XLG_EXT_INT_MASK_GIG;
1355 		writel(val, port->base + MVPP22_XLG_EXT_INT_MASK);
1356 	}
1357 }
1358 
mvpp22_gop_mask_irq(struct mvpp2_port * port)1359 static void mvpp22_gop_mask_irq(struct mvpp2_port *port)
1360 {
1361 	u32 val;
1362 
1363 	if (mvpp2_port_supports_xlg(port)) {
1364 		val = readl(port->base + MVPP22_XLG_EXT_INT_MASK);
1365 		val &= ~(MVPP22_XLG_EXT_INT_MASK_XLG |
1366 			 MVPP22_XLG_EXT_INT_MASK_GIG);
1367 		writel(val, port->base + MVPP22_XLG_EXT_INT_MASK);
1368 	}
1369 
1370 	if (phy_interface_mode_is_rgmii(port->phy_interface) ||
1371 	    phy_interface_mode_is_8023z(port->phy_interface) ||
1372 	    port->phy_interface == PHY_INTERFACE_MODE_SGMII) {
1373 		val = readl(port->base + MVPP22_GMAC_INT_SUM_MASK);
1374 		val &= ~MVPP22_GMAC_INT_SUM_MASK_LINK_STAT;
1375 		writel(val, port->base + MVPP22_GMAC_INT_SUM_MASK);
1376 	}
1377 }
1378 
mvpp22_gop_setup_irq(struct mvpp2_port * port)1379 static void mvpp22_gop_setup_irq(struct mvpp2_port *port)
1380 {
1381 	u32 val;
1382 
1383 	mvpp2_modify(port->base + MVPP22_GMAC_INT_SUM_MASK,
1384 		     MVPP22_GMAC_INT_SUM_MASK_PTP,
1385 		     MVPP22_GMAC_INT_SUM_MASK_PTP);
1386 
1387 	if (port->phylink ||
1388 	    phy_interface_mode_is_rgmii(port->phy_interface) ||
1389 	    phy_interface_mode_is_8023z(port->phy_interface) ||
1390 	    port->phy_interface == PHY_INTERFACE_MODE_SGMII) {
1391 		val = readl(port->base + MVPP22_GMAC_INT_MASK);
1392 		val |= MVPP22_GMAC_INT_MASK_LINK_STAT;
1393 		writel(val, port->base + MVPP22_GMAC_INT_MASK);
1394 	}
1395 
1396 	if (mvpp2_port_supports_xlg(port)) {
1397 		val = readl(port->base + MVPP22_XLG_INT_MASK);
1398 		val |= MVPP22_XLG_INT_MASK_LINK;
1399 		writel(val, port->base + MVPP22_XLG_INT_MASK);
1400 
1401 		mvpp2_modify(port->base + MVPP22_XLG_EXT_INT_MASK,
1402 			     MVPP22_XLG_EXT_INT_MASK_PTP,
1403 			     MVPP22_XLG_EXT_INT_MASK_PTP);
1404 	}
1405 
1406 	mvpp22_gop_unmask_irq(port);
1407 }
1408 
1409 /* Sets the PHY mode of the COMPHY (which configures the serdes lanes).
1410  *
1411  * The PHY mode used by the PPv2 driver comes from the network subsystem, while
1412  * the one given to the COMPHY comes from the generic PHY subsystem. Hence they
1413  * differ.
1414  *
1415  * The COMPHY configures the serdes lanes regardless of the actual use of the
1416  * lanes by the physical layer. This is why configurations like
1417  * "PPv2 (2500BaseX) - COMPHY (2500SGMII)" are valid.
1418  */
mvpp22_comphy_init(struct mvpp2_port * port)1419 static int mvpp22_comphy_init(struct mvpp2_port *port)
1420 {
1421 	int ret;
1422 
1423 	if (!port->comphy)
1424 		return 0;
1425 
1426 	ret = phy_set_mode_ext(port->comphy, PHY_MODE_ETHERNET,
1427 			       port->phy_interface);
1428 	if (ret)
1429 		return ret;
1430 
1431 	return phy_power_on(port->comphy);
1432 }
1433 
mvpp2_port_enable(struct mvpp2_port * port)1434 static void mvpp2_port_enable(struct mvpp2_port *port)
1435 {
1436 	u32 val;
1437 
1438 	if (mvpp2_port_supports_xlg(port) &&
1439 	    mvpp2_is_xlg(port->phy_interface)) {
1440 		val = readl(port->base + MVPP22_XLG_CTRL0_REG);
1441 		val |= MVPP22_XLG_CTRL0_PORT_EN;
1442 		val &= ~MVPP22_XLG_CTRL0_MIB_CNT_DIS;
1443 		writel(val, port->base + MVPP22_XLG_CTRL0_REG);
1444 	} else {
1445 		val = readl(port->base + MVPP2_GMAC_CTRL_0_REG);
1446 		val |= MVPP2_GMAC_PORT_EN_MASK;
1447 		val |= MVPP2_GMAC_MIB_CNTR_EN_MASK;
1448 		writel(val, port->base + MVPP2_GMAC_CTRL_0_REG);
1449 	}
1450 }
1451 
mvpp2_port_disable(struct mvpp2_port * port)1452 static void mvpp2_port_disable(struct mvpp2_port *port)
1453 {
1454 	u32 val;
1455 
1456 	if (mvpp2_port_supports_xlg(port) &&
1457 	    mvpp2_is_xlg(port->phy_interface)) {
1458 		val = readl(port->base + MVPP22_XLG_CTRL0_REG);
1459 		val &= ~MVPP22_XLG_CTRL0_PORT_EN;
1460 		writel(val, port->base + MVPP22_XLG_CTRL0_REG);
1461 	}
1462 
1463 	val = readl(port->base + MVPP2_GMAC_CTRL_0_REG);
1464 	val &= ~(MVPP2_GMAC_PORT_EN_MASK);
1465 	writel(val, port->base + MVPP2_GMAC_CTRL_0_REG);
1466 }
1467 
1468 /* Set IEEE 802.3x Flow Control Xon Packet Transmission Mode */
mvpp2_port_periodic_xon_disable(struct mvpp2_port * port)1469 static void mvpp2_port_periodic_xon_disable(struct mvpp2_port *port)
1470 {
1471 	u32 val;
1472 
1473 	val = readl(port->base + MVPP2_GMAC_CTRL_1_REG) &
1474 		    ~MVPP2_GMAC_PERIODIC_XON_EN_MASK;
1475 	writel(val, port->base + MVPP2_GMAC_CTRL_1_REG);
1476 }
1477 
1478 /* Configure loopback port */
mvpp2_port_loopback_set(struct mvpp2_port * port,const struct phylink_link_state * state)1479 static void mvpp2_port_loopback_set(struct mvpp2_port *port,
1480 				    const struct phylink_link_state *state)
1481 {
1482 	u32 val;
1483 
1484 	val = readl(port->base + MVPP2_GMAC_CTRL_1_REG);
1485 
1486 	if (state->speed == 1000)
1487 		val |= MVPP2_GMAC_GMII_LB_EN_MASK;
1488 	else
1489 		val &= ~MVPP2_GMAC_GMII_LB_EN_MASK;
1490 
1491 	if (phy_interface_mode_is_8023z(state->interface) ||
1492 	    state->interface == PHY_INTERFACE_MODE_SGMII)
1493 		val |= MVPP2_GMAC_PCS_LB_EN_MASK;
1494 	else
1495 		val &= ~MVPP2_GMAC_PCS_LB_EN_MASK;
1496 
1497 	writel(val, port->base + MVPP2_GMAC_CTRL_1_REG);
1498 }
1499 
1500 enum {
1501 	ETHTOOL_XDP_REDIRECT,
1502 	ETHTOOL_XDP_PASS,
1503 	ETHTOOL_XDP_DROP,
1504 	ETHTOOL_XDP_TX,
1505 	ETHTOOL_XDP_TX_ERR,
1506 	ETHTOOL_XDP_XMIT,
1507 	ETHTOOL_XDP_XMIT_ERR,
1508 };
1509 
1510 struct mvpp2_ethtool_counter {
1511 	unsigned int offset;
1512 	const char string[ETH_GSTRING_LEN];
1513 	bool reg_is_64b;
1514 };
1515 
mvpp2_read_count(struct mvpp2_port * port,const struct mvpp2_ethtool_counter * counter)1516 static u64 mvpp2_read_count(struct mvpp2_port *port,
1517 			    const struct mvpp2_ethtool_counter *counter)
1518 {
1519 	u64 val;
1520 
1521 	val = readl(port->stats_base + counter->offset);
1522 	if (counter->reg_is_64b)
1523 		val += (u64)readl(port->stats_base + counter->offset + 4) << 32;
1524 
1525 	return val;
1526 }
1527 
1528 /* Some counters are accessed indirectly by first writing an index to
1529  * MVPP2_CTRS_IDX. The index can represent various resources depending on the
1530  * register we access, it can be a hit counter for some classification tables,
1531  * a counter specific to a rxq, a txq or a buffer pool.
1532  */
mvpp2_read_index(struct mvpp2 * priv,u32 index,u32 reg)1533 static u32 mvpp2_read_index(struct mvpp2 *priv, u32 index, u32 reg)
1534 {
1535 	mvpp2_write(priv, MVPP2_CTRS_IDX, index);
1536 	return mvpp2_read(priv, reg);
1537 }
1538 
1539 /* Due to the fact that software statistics and hardware statistics are, by
1540  * design, incremented at different moments in the chain of packet processing,
1541  * it is very likely that incoming packets could have been dropped after being
1542  * counted by hardware but before reaching software statistics (most probably
1543  * multicast packets), and in the oppposite way, during transmission, FCS bytes
1544  * are added in between as well as TSO skb will be split and header bytes added.
1545  * Hence, statistics gathered from userspace with ifconfig (software) and
1546  * ethtool (hardware) cannot be compared.
1547  */
1548 static const struct mvpp2_ethtool_counter mvpp2_ethtool_mib_regs[] = {
1549 	{ MVPP2_MIB_GOOD_OCTETS_RCVD, "good_octets_received", true },
1550 	{ MVPP2_MIB_BAD_OCTETS_RCVD, "bad_octets_received" },
1551 	{ MVPP2_MIB_CRC_ERRORS_SENT, "crc_errors_sent" },
1552 	{ MVPP2_MIB_UNICAST_FRAMES_RCVD, "unicast_frames_received" },
1553 	{ MVPP2_MIB_BROADCAST_FRAMES_RCVD, "broadcast_frames_received" },
1554 	{ MVPP2_MIB_MULTICAST_FRAMES_RCVD, "multicast_frames_received" },
1555 	{ MVPP2_MIB_FRAMES_64_OCTETS, "frames_64_octets" },
1556 	{ MVPP2_MIB_FRAMES_65_TO_127_OCTETS, "frames_65_to_127_octet" },
1557 	{ MVPP2_MIB_FRAMES_128_TO_255_OCTETS, "frames_128_to_255_octet" },
1558 	{ MVPP2_MIB_FRAMES_256_TO_511_OCTETS, "frames_256_to_511_octet" },
1559 	{ MVPP2_MIB_FRAMES_512_TO_1023_OCTETS, "frames_512_to_1023_octet" },
1560 	{ MVPP2_MIB_FRAMES_1024_TO_MAX_OCTETS, "frames_1024_to_max_octet" },
1561 	{ MVPP2_MIB_GOOD_OCTETS_SENT, "good_octets_sent", true },
1562 	{ MVPP2_MIB_UNICAST_FRAMES_SENT, "unicast_frames_sent" },
1563 	{ MVPP2_MIB_MULTICAST_FRAMES_SENT, "multicast_frames_sent" },
1564 	{ MVPP2_MIB_BROADCAST_FRAMES_SENT, "broadcast_frames_sent" },
1565 	{ MVPP2_MIB_FC_SENT, "fc_sent" },
1566 	{ MVPP2_MIB_FC_RCVD, "fc_received" },
1567 	{ MVPP2_MIB_RX_FIFO_OVERRUN, "rx_fifo_overrun" },
1568 	{ MVPP2_MIB_UNDERSIZE_RCVD, "undersize_received" },
1569 	{ MVPP2_MIB_FRAGMENTS_RCVD, "fragments_received" },
1570 	{ MVPP2_MIB_OVERSIZE_RCVD, "oversize_received" },
1571 	{ MVPP2_MIB_JABBER_RCVD, "jabber_received" },
1572 	{ MVPP2_MIB_MAC_RCV_ERROR, "mac_receive_error" },
1573 	{ MVPP2_MIB_BAD_CRC_EVENT, "bad_crc_event" },
1574 	{ MVPP2_MIB_COLLISION, "collision" },
1575 	{ MVPP2_MIB_LATE_COLLISION, "late_collision" },
1576 };
1577 
1578 static const struct mvpp2_ethtool_counter mvpp2_ethtool_port_regs[] = {
1579 	{ MVPP2_OVERRUN_ETH_DROP, "rx_fifo_or_parser_overrun_drops" },
1580 	{ MVPP2_CLS_ETH_DROP, "rx_classifier_drops" },
1581 };
1582 
1583 static const struct mvpp2_ethtool_counter mvpp2_ethtool_txq_regs[] = {
1584 	{ MVPP2_TX_DESC_ENQ_CTR, "txq_%d_desc_enqueue" },
1585 	{ MVPP2_TX_DESC_ENQ_TO_DDR_CTR, "txq_%d_desc_enqueue_to_ddr" },
1586 	{ MVPP2_TX_BUFF_ENQ_TO_DDR_CTR, "txq_%d_buff_euqueue_to_ddr" },
1587 	{ MVPP2_TX_DESC_ENQ_HW_FWD_CTR, "txq_%d_desc_hardware_forwarded" },
1588 	{ MVPP2_TX_PKTS_DEQ_CTR, "txq_%d_packets_dequeued" },
1589 	{ MVPP2_TX_PKTS_FULL_QUEUE_DROP_CTR, "txq_%d_queue_full_drops" },
1590 	{ MVPP2_TX_PKTS_EARLY_DROP_CTR, "txq_%d_packets_early_drops" },
1591 	{ MVPP2_TX_PKTS_BM_DROP_CTR, "txq_%d_packets_bm_drops" },
1592 	{ MVPP2_TX_PKTS_BM_MC_DROP_CTR, "txq_%d_packets_rep_bm_drops" },
1593 };
1594 
1595 static const struct mvpp2_ethtool_counter mvpp2_ethtool_rxq_regs[] = {
1596 	{ MVPP2_RX_DESC_ENQ_CTR, "rxq_%d_desc_enqueue" },
1597 	{ MVPP2_RX_PKTS_FULL_QUEUE_DROP_CTR, "rxq_%d_queue_full_drops" },
1598 	{ MVPP2_RX_PKTS_EARLY_DROP_CTR, "rxq_%d_packets_early_drops" },
1599 	{ MVPP2_RX_PKTS_BM_DROP_CTR, "rxq_%d_packets_bm_drops" },
1600 };
1601 
1602 static const struct mvpp2_ethtool_counter mvpp2_ethtool_xdp[] = {
1603 	{ ETHTOOL_XDP_REDIRECT, "rx_xdp_redirect", },
1604 	{ ETHTOOL_XDP_PASS, "rx_xdp_pass", },
1605 	{ ETHTOOL_XDP_DROP, "rx_xdp_drop", },
1606 	{ ETHTOOL_XDP_TX, "rx_xdp_tx", },
1607 	{ ETHTOOL_XDP_TX_ERR, "rx_xdp_tx_errors", },
1608 	{ ETHTOOL_XDP_XMIT, "tx_xdp_xmit", },
1609 	{ ETHTOOL_XDP_XMIT_ERR, "tx_xdp_xmit_errors", },
1610 };
1611 
1612 #define MVPP2_N_ETHTOOL_STATS(ntxqs, nrxqs)	(ARRAY_SIZE(mvpp2_ethtool_mib_regs) + \
1613 						 ARRAY_SIZE(mvpp2_ethtool_port_regs) + \
1614 						 (ARRAY_SIZE(mvpp2_ethtool_txq_regs) * (ntxqs)) + \
1615 						 (ARRAY_SIZE(mvpp2_ethtool_rxq_regs) * (nrxqs)) + \
1616 						 ARRAY_SIZE(mvpp2_ethtool_xdp))
1617 
mvpp2_ethtool_get_strings(struct net_device * netdev,u32 sset,u8 * data)1618 static void mvpp2_ethtool_get_strings(struct net_device *netdev, u32 sset,
1619 				      u8 *data)
1620 {
1621 	struct mvpp2_port *port = netdev_priv(netdev);
1622 	int i, q;
1623 
1624 	if (sset != ETH_SS_STATS)
1625 		return;
1626 
1627 	for (i = 0; i < ARRAY_SIZE(mvpp2_ethtool_mib_regs); i++) {
1628 		strscpy(data, mvpp2_ethtool_mib_regs[i].string,
1629 			ETH_GSTRING_LEN);
1630 		data += ETH_GSTRING_LEN;
1631 	}
1632 
1633 	for (i = 0; i < ARRAY_SIZE(mvpp2_ethtool_port_regs); i++) {
1634 		strscpy(data, mvpp2_ethtool_port_regs[i].string,
1635 			ETH_GSTRING_LEN);
1636 		data += ETH_GSTRING_LEN;
1637 	}
1638 
1639 	for (q = 0; q < port->ntxqs; q++) {
1640 		for (i = 0; i < ARRAY_SIZE(mvpp2_ethtool_txq_regs); i++) {
1641 			snprintf(data, ETH_GSTRING_LEN,
1642 				 mvpp2_ethtool_txq_regs[i].string, q);
1643 			data += ETH_GSTRING_LEN;
1644 		}
1645 	}
1646 
1647 	for (q = 0; q < port->nrxqs; q++) {
1648 		for (i = 0; i < ARRAY_SIZE(mvpp2_ethtool_rxq_regs); i++) {
1649 			snprintf(data, ETH_GSTRING_LEN,
1650 				 mvpp2_ethtool_rxq_regs[i].string,
1651 				 q);
1652 			data += ETH_GSTRING_LEN;
1653 		}
1654 	}
1655 
1656 	for (i = 0; i < ARRAY_SIZE(mvpp2_ethtool_xdp); i++) {
1657 		strscpy(data, mvpp2_ethtool_xdp[i].string,
1658 			ETH_GSTRING_LEN);
1659 		data += ETH_GSTRING_LEN;
1660 	}
1661 }
1662 
1663 static void
mvpp2_get_xdp_stats(struct mvpp2_port * port,struct mvpp2_pcpu_stats * xdp_stats)1664 mvpp2_get_xdp_stats(struct mvpp2_port *port, struct mvpp2_pcpu_stats *xdp_stats)
1665 {
1666 	unsigned int start;
1667 	unsigned int cpu;
1668 
1669 	/* Gather XDP Statistics */
1670 	for_each_possible_cpu(cpu) {
1671 		struct mvpp2_pcpu_stats *cpu_stats;
1672 		u64	xdp_redirect;
1673 		u64	xdp_pass;
1674 		u64	xdp_drop;
1675 		u64	xdp_xmit;
1676 		u64	xdp_xmit_err;
1677 		u64	xdp_tx;
1678 		u64	xdp_tx_err;
1679 
1680 		cpu_stats = per_cpu_ptr(port->stats, cpu);
1681 		do {
1682 			start = u64_stats_fetch_begin_irq(&cpu_stats->syncp);
1683 			xdp_redirect = cpu_stats->xdp_redirect;
1684 			xdp_pass   = cpu_stats->xdp_pass;
1685 			xdp_drop = cpu_stats->xdp_drop;
1686 			xdp_xmit   = cpu_stats->xdp_xmit;
1687 			xdp_xmit_err   = cpu_stats->xdp_xmit_err;
1688 			xdp_tx   = cpu_stats->xdp_tx;
1689 			xdp_tx_err   = cpu_stats->xdp_tx_err;
1690 		} while (u64_stats_fetch_retry_irq(&cpu_stats->syncp, start));
1691 
1692 		xdp_stats->xdp_redirect += xdp_redirect;
1693 		xdp_stats->xdp_pass   += xdp_pass;
1694 		xdp_stats->xdp_drop += xdp_drop;
1695 		xdp_stats->xdp_xmit   += xdp_xmit;
1696 		xdp_stats->xdp_xmit_err   += xdp_xmit_err;
1697 		xdp_stats->xdp_tx   += xdp_tx;
1698 		xdp_stats->xdp_tx_err   += xdp_tx_err;
1699 	}
1700 }
1701 
mvpp2_read_stats(struct mvpp2_port * port)1702 static void mvpp2_read_stats(struct mvpp2_port *port)
1703 {
1704 	struct mvpp2_pcpu_stats xdp_stats = {};
1705 	const struct mvpp2_ethtool_counter *s;
1706 	u64 *pstats;
1707 	int i, q;
1708 
1709 	pstats = port->ethtool_stats;
1710 
1711 	for (i = 0; i < ARRAY_SIZE(mvpp2_ethtool_mib_regs); i++)
1712 		*pstats++ += mvpp2_read_count(port, &mvpp2_ethtool_mib_regs[i]);
1713 
1714 	for (i = 0; i < ARRAY_SIZE(mvpp2_ethtool_port_regs); i++)
1715 		*pstats++ += mvpp2_read(port->priv,
1716 					mvpp2_ethtool_port_regs[i].offset +
1717 					4 * port->id);
1718 
1719 	for (q = 0; q < port->ntxqs; q++)
1720 		for (i = 0; i < ARRAY_SIZE(mvpp2_ethtool_txq_regs); i++)
1721 			*pstats++ += mvpp2_read_index(port->priv,
1722 						      MVPP22_CTRS_TX_CTR(port->id, q),
1723 						      mvpp2_ethtool_txq_regs[i].offset);
1724 
1725 	/* Rxqs are numbered from 0 from the user standpoint, but not from the
1726 	 * driver's. We need to add the  port->first_rxq offset.
1727 	 */
1728 	for (q = 0; q < port->nrxqs; q++)
1729 		for (i = 0; i < ARRAY_SIZE(mvpp2_ethtool_rxq_regs); i++)
1730 			*pstats++ += mvpp2_read_index(port->priv,
1731 						      port->first_rxq + q,
1732 						      mvpp2_ethtool_rxq_regs[i].offset);
1733 
1734 	/* Gather XDP Statistics */
1735 	mvpp2_get_xdp_stats(port, &xdp_stats);
1736 
1737 	for (i = 0, s = mvpp2_ethtool_xdp;
1738 		 s < mvpp2_ethtool_xdp + ARRAY_SIZE(mvpp2_ethtool_xdp);
1739 	     s++, i++) {
1740 		switch (s->offset) {
1741 		case ETHTOOL_XDP_REDIRECT:
1742 			*pstats++ = xdp_stats.xdp_redirect;
1743 			break;
1744 		case ETHTOOL_XDP_PASS:
1745 			*pstats++ = xdp_stats.xdp_pass;
1746 			break;
1747 		case ETHTOOL_XDP_DROP:
1748 			*pstats++ = xdp_stats.xdp_drop;
1749 			break;
1750 		case ETHTOOL_XDP_TX:
1751 			*pstats++ = xdp_stats.xdp_tx;
1752 			break;
1753 		case ETHTOOL_XDP_TX_ERR:
1754 			*pstats++ = xdp_stats.xdp_tx_err;
1755 			break;
1756 		case ETHTOOL_XDP_XMIT:
1757 			*pstats++ = xdp_stats.xdp_xmit;
1758 			break;
1759 		case ETHTOOL_XDP_XMIT_ERR:
1760 			*pstats++ = xdp_stats.xdp_xmit_err;
1761 			break;
1762 		}
1763 	}
1764 }
1765 
mvpp2_gather_hw_statistics(struct work_struct * work)1766 static void mvpp2_gather_hw_statistics(struct work_struct *work)
1767 {
1768 	struct delayed_work *del_work = to_delayed_work(work);
1769 	struct mvpp2_port *port = container_of(del_work, struct mvpp2_port,
1770 					       stats_work);
1771 
1772 	mutex_lock(&port->gather_stats_lock);
1773 
1774 	mvpp2_read_stats(port);
1775 
1776 	/* No need to read again the counters right after this function if it
1777 	 * was called asynchronously by the user (ie. use of ethtool).
1778 	 */
1779 	cancel_delayed_work(&port->stats_work);
1780 	queue_delayed_work(port->priv->stats_queue, &port->stats_work,
1781 			   MVPP2_MIB_COUNTERS_STATS_DELAY);
1782 
1783 	mutex_unlock(&port->gather_stats_lock);
1784 }
1785 
mvpp2_ethtool_get_stats(struct net_device * dev,struct ethtool_stats * stats,u64 * data)1786 static void mvpp2_ethtool_get_stats(struct net_device *dev,
1787 				    struct ethtool_stats *stats, u64 *data)
1788 {
1789 	struct mvpp2_port *port = netdev_priv(dev);
1790 
1791 	/* Update statistics for the given port, then take the lock to avoid
1792 	 * concurrent accesses on the ethtool_stats structure during its copy.
1793 	 */
1794 	mvpp2_gather_hw_statistics(&port->stats_work.work);
1795 
1796 	mutex_lock(&port->gather_stats_lock);
1797 	memcpy(data, port->ethtool_stats,
1798 	       sizeof(u64) * MVPP2_N_ETHTOOL_STATS(port->ntxqs, port->nrxqs));
1799 	mutex_unlock(&port->gather_stats_lock);
1800 }
1801 
mvpp2_ethtool_get_sset_count(struct net_device * dev,int sset)1802 static int mvpp2_ethtool_get_sset_count(struct net_device *dev, int sset)
1803 {
1804 	struct mvpp2_port *port = netdev_priv(dev);
1805 
1806 	if (sset == ETH_SS_STATS)
1807 		return MVPP2_N_ETHTOOL_STATS(port->ntxqs, port->nrxqs);
1808 
1809 	return -EOPNOTSUPP;
1810 }
1811 
mvpp2_mac_reset_assert(struct mvpp2_port * port)1812 static void mvpp2_mac_reset_assert(struct mvpp2_port *port)
1813 {
1814 	u32 val;
1815 
1816 	val = readl(port->base + MVPP2_GMAC_CTRL_2_REG) |
1817 	      MVPP2_GMAC_PORT_RESET_MASK;
1818 	writel(val, port->base + MVPP2_GMAC_CTRL_2_REG);
1819 
1820 	if (port->priv->hw_version == MVPP22 && port->gop_id == 0) {
1821 		val = readl(port->base + MVPP22_XLG_CTRL0_REG) &
1822 		      ~MVPP22_XLG_CTRL0_MAC_RESET_DIS;
1823 		writel(val, port->base + MVPP22_XLG_CTRL0_REG);
1824 	}
1825 }
1826 
mvpp22_pcs_reset_assert(struct mvpp2_port * port)1827 static void mvpp22_pcs_reset_assert(struct mvpp2_port *port)
1828 {
1829 	struct mvpp2 *priv = port->priv;
1830 	void __iomem *mpcs, *xpcs;
1831 	u32 val;
1832 
1833 	if (port->priv->hw_version != MVPP22 || port->gop_id != 0)
1834 		return;
1835 
1836 	mpcs = priv->iface_base + MVPP22_MPCS_BASE(port->gop_id);
1837 	xpcs = priv->iface_base + MVPP22_XPCS_BASE(port->gop_id);
1838 
1839 	val = readl(mpcs + MVPP22_MPCS_CLK_RESET);
1840 	val &= ~(MAC_CLK_RESET_MAC | MAC_CLK_RESET_SD_RX | MAC_CLK_RESET_SD_TX);
1841 	val |= MVPP22_MPCS_CLK_RESET_DIV_SET;
1842 	writel(val, mpcs + MVPP22_MPCS_CLK_RESET);
1843 
1844 	val = readl(xpcs + MVPP22_XPCS_CFG0);
1845 	writel(val & ~MVPP22_XPCS_CFG0_RESET_DIS, xpcs + MVPP22_XPCS_CFG0);
1846 }
1847 
mvpp22_pcs_reset_deassert(struct mvpp2_port * port)1848 static void mvpp22_pcs_reset_deassert(struct mvpp2_port *port)
1849 {
1850 	struct mvpp2 *priv = port->priv;
1851 	void __iomem *mpcs, *xpcs;
1852 	u32 val;
1853 
1854 	if (port->priv->hw_version != MVPP22 || port->gop_id != 0)
1855 		return;
1856 
1857 	mpcs = priv->iface_base + MVPP22_MPCS_BASE(port->gop_id);
1858 	xpcs = priv->iface_base + MVPP22_XPCS_BASE(port->gop_id);
1859 
1860 	switch (port->phy_interface) {
1861 	case PHY_INTERFACE_MODE_10GBASER:
1862 		val = readl(mpcs + MVPP22_MPCS_CLK_RESET);
1863 		val |= MAC_CLK_RESET_MAC | MAC_CLK_RESET_SD_RX |
1864 		       MAC_CLK_RESET_SD_TX;
1865 		val &= ~MVPP22_MPCS_CLK_RESET_DIV_SET;
1866 		writel(val, mpcs + MVPP22_MPCS_CLK_RESET);
1867 		break;
1868 	case PHY_INTERFACE_MODE_XAUI:
1869 	case PHY_INTERFACE_MODE_RXAUI:
1870 		val = readl(xpcs + MVPP22_XPCS_CFG0);
1871 		writel(val | MVPP22_XPCS_CFG0_RESET_DIS, xpcs + MVPP22_XPCS_CFG0);
1872 		break;
1873 	default:
1874 		break;
1875 	}
1876 }
1877 
1878 /* Change maximum receive size of the port */
mvpp2_gmac_max_rx_size_set(struct mvpp2_port * port)1879 static inline void mvpp2_gmac_max_rx_size_set(struct mvpp2_port *port)
1880 {
1881 	u32 val;
1882 
1883 	val = readl(port->base + MVPP2_GMAC_CTRL_0_REG);
1884 	val &= ~MVPP2_GMAC_MAX_RX_SIZE_MASK;
1885 	val |= (((port->pkt_size - MVPP2_MH_SIZE) / 2) <<
1886 		    MVPP2_GMAC_MAX_RX_SIZE_OFFS);
1887 	writel(val, port->base + MVPP2_GMAC_CTRL_0_REG);
1888 }
1889 
1890 /* Change maximum receive size of the port */
mvpp2_xlg_max_rx_size_set(struct mvpp2_port * port)1891 static inline void mvpp2_xlg_max_rx_size_set(struct mvpp2_port *port)
1892 {
1893 	u32 val;
1894 
1895 	val =  readl(port->base + MVPP22_XLG_CTRL1_REG);
1896 	val &= ~MVPP22_XLG_CTRL1_FRAMESIZELIMIT_MASK;
1897 	val |= ((port->pkt_size - MVPP2_MH_SIZE) / 2) <<
1898 	       MVPP22_XLG_CTRL1_FRAMESIZELIMIT_OFFS;
1899 	writel(val, port->base + MVPP22_XLG_CTRL1_REG);
1900 }
1901 
1902 /* Set defaults to the MVPP2 port */
mvpp2_defaults_set(struct mvpp2_port * port)1903 static void mvpp2_defaults_set(struct mvpp2_port *port)
1904 {
1905 	int tx_port_num, val, queue, lrxq;
1906 
1907 	if (port->priv->hw_version == MVPP21) {
1908 		/* Update TX FIFO MIN Threshold */
1909 		val = readl(port->base + MVPP2_GMAC_PORT_FIFO_CFG_1_REG);
1910 		val &= ~MVPP2_GMAC_TX_FIFO_MIN_TH_ALL_MASK;
1911 		/* Min. TX threshold must be less than minimal packet length */
1912 		val |= MVPP2_GMAC_TX_FIFO_MIN_TH_MASK(64 - 4 - 2);
1913 		writel(val, port->base + MVPP2_GMAC_PORT_FIFO_CFG_1_REG);
1914 	}
1915 
1916 	/* Disable Legacy WRR, Disable EJP, Release from reset */
1917 	tx_port_num = mvpp2_egress_port(port);
1918 	mvpp2_write(port->priv, MVPP2_TXP_SCHED_PORT_INDEX_REG,
1919 		    tx_port_num);
1920 	mvpp2_write(port->priv, MVPP2_TXP_SCHED_CMD_1_REG, 0);
1921 
1922 	/* Set TXQ scheduling to Round-Robin */
1923 	mvpp2_write(port->priv, MVPP2_TXP_SCHED_FIXED_PRIO_REG, 0);
1924 
1925 	/* Close bandwidth for all queues */
1926 	for (queue = 0; queue < MVPP2_MAX_TXQ; queue++)
1927 		mvpp2_write(port->priv,
1928 			    MVPP2_TXQ_SCHED_TOKEN_CNTR_REG(queue), 0);
1929 
1930 	/* Set refill period to 1 usec, refill tokens
1931 	 * and bucket size to maximum
1932 	 */
1933 	mvpp2_write(port->priv, MVPP2_TXP_SCHED_PERIOD_REG,
1934 		    port->priv->tclk / USEC_PER_SEC);
1935 	val = mvpp2_read(port->priv, MVPP2_TXP_SCHED_REFILL_REG);
1936 	val &= ~MVPP2_TXP_REFILL_PERIOD_ALL_MASK;
1937 	val |= MVPP2_TXP_REFILL_PERIOD_MASK(1);
1938 	val |= MVPP2_TXP_REFILL_TOKENS_ALL_MASK;
1939 	mvpp2_write(port->priv, MVPP2_TXP_SCHED_REFILL_REG, val);
1940 	val = MVPP2_TXP_TOKEN_SIZE_MAX;
1941 	mvpp2_write(port->priv, MVPP2_TXP_SCHED_TOKEN_SIZE_REG, val);
1942 
1943 	/* Set MaximumLowLatencyPacketSize value to 256 */
1944 	mvpp2_write(port->priv, MVPP2_RX_CTRL_REG(port->id),
1945 		    MVPP2_RX_USE_PSEUDO_FOR_CSUM_MASK |
1946 		    MVPP2_RX_LOW_LATENCY_PKT_SIZE(256));
1947 
1948 	/* Enable Rx cache snoop */
1949 	for (lrxq = 0; lrxq < port->nrxqs; lrxq++) {
1950 		queue = port->rxqs[lrxq]->id;
1951 		val = mvpp2_read(port->priv, MVPP2_RXQ_CONFIG_REG(queue));
1952 		val |= MVPP2_SNOOP_PKT_SIZE_MASK |
1953 			   MVPP2_SNOOP_BUF_HDR_MASK;
1954 		mvpp2_write(port->priv, MVPP2_RXQ_CONFIG_REG(queue), val);
1955 	}
1956 
1957 	/* At default, mask all interrupts to all present cpus */
1958 	mvpp2_interrupts_disable(port);
1959 }
1960 
1961 /* Enable/disable receiving packets */
mvpp2_ingress_enable(struct mvpp2_port * port)1962 static void mvpp2_ingress_enable(struct mvpp2_port *port)
1963 {
1964 	u32 val;
1965 	int lrxq, queue;
1966 
1967 	for (lrxq = 0; lrxq < port->nrxqs; lrxq++) {
1968 		queue = port->rxqs[lrxq]->id;
1969 		val = mvpp2_read(port->priv, MVPP2_RXQ_CONFIG_REG(queue));
1970 		val &= ~MVPP2_RXQ_DISABLE_MASK;
1971 		mvpp2_write(port->priv, MVPP2_RXQ_CONFIG_REG(queue), val);
1972 	}
1973 }
1974 
mvpp2_ingress_disable(struct mvpp2_port * port)1975 static void mvpp2_ingress_disable(struct mvpp2_port *port)
1976 {
1977 	u32 val;
1978 	int lrxq, queue;
1979 
1980 	for (lrxq = 0; lrxq < port->nrxqs; lrxq++) {
1981 		queue = port->rxqs[lrxq]->id;
1982 		val = mvpp2_read(port->priv, MVPP2_RXQ_CONFIG_REG(queue));
1983 		val |= MVPP2_RXQ_DISABLE_MASK;
1984 		mvpp2_write(port->priv, MVPP2_RXQ_CONFIG_REG(queue), val);
1985 	}
1986 }
1987 
1988 /* Enable transmit via physical egress queue
1989  * - HW starts take descriptors from DRAM
1990  */
mvpp2_egress_enable(struct mvpp2_port * port)1991 static void mvpp2_egress_enable(struct mvpp2_port *port)
1992 {
1993 	u32 qmap;
1994 	int queue;
1995 	int tx_port_num = mvpp2_egress_port(port);
1996 
1997 	/* Enable all initialized TXs. */
1998 	qmap = 0;
1999 	for (queue = 0; queue < port->ntxqs; queue++) {
2000 		struct mvpp2_tx_queue *txq = port->txqs[queue];
2001 
2002 		if (txq->descs)
2003 			qmap |= (1 << queue);
2004 	}
2005 
2006 	mvpp2_write(port->priv, MVPP2_TXP_SCHED_PORT_INDEX_REG, tx_port_num);
2007 	mvpp2_write(port->priv, MVPP2_TXP_SCHED_Q_CMD_REG, qmap);
2008 }
2009 
2010 /* Disable transmit via physical egress queue
2011  * - HW doesn't take descriptors from DRAM
2012  */
mvpp2_egress_disable(struct mvpp2_port * port)2013 static void mvpp2_egress_disable(struct mvpp2_port *port)
2014 {
2015 	u32 reg_data;
2016 	int delay;
2017 	int tx_port_num = mvpp2_egress_port(port);
2018 
2019 	/* Issue stop command for active channels only */
2020 	mvpp2_write(port->priv, MVPP2_TXP_SCHED_PORT_INDEX_REG, tx_port_num);
2021 	reg_data = (mvpp2_read(port->priv, MVPP2_TXP_SCHED_Q_CMD_REG)) &
2022 		    MVPP2_TXP_SCHED_ENQ_MASK;
2023 	if (reg_data != 0)
2024 		mvpp2_write(port->priv, MVPP2_TXP_SCHED_Q_CMD_REG,
2025 			    (reg_data << MVPP2_TXP_SCHED_DISQ_OFFSET));
2026 
2027 	/* Wait for all Tx activity to terminate. */
2028 	delay = 0;
2029 	do {
2030 		if (delay >= MVPP2_TX_DISABLE_TIMEOUT_MSEC) {
2031 			netdev_warn(port->dev,
2032 				    "Tx stop timed out, status=0x%08x\n",
2033 				    reg_data);
2034 			break;
2035 		}
2036 		mdelay(1);
2037 		delay++;
2038 
2039 		/* Check port TX Command register that all
2040 		 * Tx queues are stopped
2041 		 */
2042 		reg_data = mvpp2_read(port->priv, MVPP2_TXP_SCHED_Q_CMD_REG);
2043 	} while (reg_data & MVPP2_TXP_SCHED_ENQ_MASK);
2044 }
2045 
2046 /* Rx descriptors helper methods */
2047 
2048 /* Get number of Rx descriptors occupied by received packets */
2049 static inline int
mvpp2_rxq_received(struct mvpp2_port * port,int rxq_id)2050 mvpp2_rxq_received(struct mvpp2_port *port, int rxq_id)
2051 {
2052 	u32 val = mvpp2_read(port->priv, MVPP2_RXQ_STATUS_REG(rxq_id));
2053 
2054 	return val & MVPP2_RXQ_OCCUPIED_MASK;
2055 }
2056 
2057 /* Update Rx queue status with the number of occupied and available
2058  * Rx descriptor slots.
2059  */
2060 static inline void
mvpp2_rxq_status_update(struct mvpp2_port * port,int rxq_id,int used_count,int free_count)2061 mvpp2_rxq_status_update(struct mvpp2_port *port, int rxq_id,
2062 			int used_count, int free_count)
2063 {
2064 	/* Decrement the number of used descriptors and increment count
2065 	 * increment the number of free descriptors.
2066 	 */
2067 	u32 val = used_count | (free_count << MVPP2_RXQ_NUM_NEW_OFFSET);
2068 
2069 	mvpp2_write(port->priv, MVPP2_RXQ_STATUS_UPDATE_REG(rxq_id), val);
2070 }
2071 
2072 /* Get pointer to next RX descriptor to be processed by SW */
2073 static inline struct mvpp2_rx_desc *
mvpp2_rxq_next_desc_get(struct mvpp2_rx_queue * rxq)2074 mvpp2_rxq_next_desc_get(struct mvpp2_rx_queue *rxq)
2075 {
2076 	int rx_desc = rxq->next_desc_to_proc;
2077 
2078 	rxq->next_desc_to_proc = MVPP2_QUEUE_NEXT_DESC(rxq, rx_desc);
2079 	prefetch(rxq->descs + rxq->next_desc_to_proc);
2080 	return rxq->descs + rx_desc;
2081 }
2082 
2083 /* Set rx queue offset */
mvpp2_rxq_offset_set(struct mvpp2_port * port,int prxq,int offset)2084 static void mvpp2_rxq_offset_set(struct mvpp2_port *port,
2085 				 int prxq, int offset)
2086 {
2087 	u32 val;
2088 
2089 	/* Convert offset from bytes to units of 32 bytes */
2090 	offset = offset >> 5;
2091 
2092 	val = mvpp2_read(port->priv, MVPP2_RXQ_CONFIG_REG(prxq));
2093 	val &= ~MVPP2_RXQ_PACKET_OFFSET_MASK;
2094 
2095 	/* Offset is in */
2096 	val |= ((offset << MVPP2_RXQ_PACKET_OFFSET_OFFS) &
2097 		    MVPP2_RXQ_PACKET_OFFSET_MASK);
2098 
2099 	mvpp2_write(port->priv, MVPP2_RXQ_CONFIG_REG(prxq), val);
2100 }
2101 
2102 /* Tx descriptors helper methods */
2103 
2104 /* Get pointer to next Tx descriptor to be processed (send) by HW */
2105 static struct mvpp2_tx_desc *
mvpp2_txq_next_desc_get(struct mvpp2_tx_queue * txq)2106 mvpp2_txq_next_desc_get(struct mvpp2_tx_queue *txq)
2107 {
2108 	int tx_desc = txq->next_desc_to_proc;
2109 
2110 	txq->next_desc_to_proc = MVPP2_QUEUE_NEXT_DESC(txq, tx_desc);
2111 	return txq->descs + tx_desc;
2112 }
2113 
2114 /* Update HW with number of aggregated Tx descriptors to be sent
2115  *
2116  * Called only from mvpp2_tx(), so migration is disabled, using
2117  * smp_processor_id() is OK.
2118  */
mvpp2_aggr_txq_pend_desc_add(struct mvpp2_port * port,int pending)2119 static void mvpp2_aggr_txq_pend_desc_add(struct mvpp2_port *port, int pending)
2120 {
2121 	/* aggregated access - relevant TXQ number is written in TX desc */
2122 	mvpp2_thread_write(port->priv,
2123 			   mvpp2_cpu_to_thread(port->priv, smp_processor_id()),
2124 			   MVPP2_AGGR_TXQ_UPDATE_REG, pending);
2125 }
2126 
2127 /* Check if there are enough free descriptors in aggregated txq.
2128  * If not, update the number of occupied descriptors and repeat the check.
2129  *
2130  * Called only from mvpp2_tx(), so migration is disabled, using
2131  * smp_processor_id() is OK.
2132  */
mvpp2_aggr_desc_num_check(struct mvpp2_port * port,struct mvpp2_tx_queue * aggr_txq,int num)2133 static int mvpp2_aggr_desc_num_check(struct mvpp2_port *port,
2134 				     struct mvpp2_tx_queue *aggr_txq, int num)
2135 {
2136 	if ((aggr_txq->count + num) > MVPP2_AGGR_TXQ_SIZE) {
2137 		/* Update number of occupied aggregated Tx descriptors */
2138 		unsigned int thread =
2139 			mvpp2_cpu_to_thread(port->priv, smp_processor_id());
2140 		u32 val = mvpp2_read_relaxed(port->priv,
2141 					     MVPP2_AGGR_TXQ_STATUS_REG(thread));
2142 
2143 		aggr_txq->count = val & MVPP2_AGGR_TXQ_PENDING_MASK;
2144 
2145 		if ((aggr_txq->count + num) > MVPP2_AGGR_TXQ_SIZE)
2146 			return -ENOMEM;
2147 	}
2148 	return 0;
2149 }
2150 
2151 /* Reserved Tx descriptors allocation request
2152  *
2153  * Called only from mvpp2_txq_reserved_desc_num_proc(), itself called
2154  * only by mvpp2_tx(), so migration is disabled, using
2155  * smp_processor_id() is OK.
2156  */
mvpp2_txq_alloc_reserved_desc(struct mvpp2_port * port,struct mvpp2_tx_queue * txq,int num)2157 static int mvpp2_txq_alloc_reserved_desc(struct mvpp2_port *port,
2158 					 struct mvpp2_tx_queue *txq, int num)
2159 {
2160 	unsigned int thread = mvpp2_cpu_to_thread(port->priv, smp_processor_id());
2161 	struct mvpp2 *priv = port->priv;
2162 	u32 val;
2163 
2164 	val = (txq->id << MVPP2_TXQ_RSVD_REQ_Q_OFFSET) | num;
2165 	mvpp2_thread_write_relaxed(priv, thread, MVPP2_TXQ_RSVD_REQ_REG, val);
2166 
2167 	val = mvpp2_thread_read_relaxed(priv, thread, MVPP2_TXQ_RSVD_RSLT_REG);
2168 
2169 	return val & MVPP2_TXQ_RSVD_RSLT_MASK;
2170 }
2171 
2172 /* Check if there are enough reserved descriptors for transmission.
2173  * If not, request chunk of reserved descriptors and check again.
2174  */
mvpp2_txq_reserved_desc_num_proc(struct mvpp2_port * port,struct mvpp2_tx_queue * txq,struct mvpp2_txq_pcpu * txq_pcpu,int num)2175 static int mvpp2_txq_reserved_desc_num_proc(struct mvpp2_port *port,
2176 					    struct mvpp2_tx_queue *txq,
2177 					    struct mvpp2_txq_pcpu *txq_pcpu,
2178 					    int num)
2179 {
2180 	int req, desc_count;
2181 	unsigned int thread;
2182 
2183 	if (txq_pcpu->reserved_num >= num)
2184 		return 0;
2185 
2186 	/* Not enough descriptors reserved! Update the reserved descriptor
2187 	 * count and check again.
2188 	 */
2189 
2190 	desc_count = 0;
2191 	/* Compute total of used descriptors */
2192 	for (thread = 0; thread < port->priv->nthreads; thread++) {
2193 		struct mvpp2_txq_pcpu *txq_pcpu_aux;
2194 
2195 		txq_pcpu_aux = per_cpu_ptr(txq->pcpu, thread);
2196 		desc_count += txq_pcpu_aux->count;
2197 		desc_count += txq_pcpu_aux->reserved_num;
2198 	}
2199 
2200 	req = max(MVPP2_CPU_DESC_CHUNK, num - txq_pcpu->reserved_num);
2201 	desc_count += req;
2202 
2203 	if (desc_count >
2204 	   (txq->size - (MVPP2_MAX_THREADS * MVPP2_CPU_DESC_CHUNK)))
2205 		return -ENOMEM;
2206 
2207 	txq_pcpu->reserved_num += mvpp2_txq_alloc_reserved_desc(port, txq, req);
2208 
2209 	/* OK, the descriptor could have been updated: check again. */
2210 	if (txq_pcpu->reserved_num < num)
2211 		return -ENOMEM;
2212 	return 0;
2213 }
2214 
2215 /* Release the last allocated Tx descriptor. Useful to handle DMA
2216  * mapping failures in the Tx path.
2217  */
mvpp2_txq_desc_put(struct mvpp2_tx_queue * txq)2218 static void mvpp2_txq_desc_put(struct mvpp2_tx_queue *txq)
2219 {
2220 	if (txq->next_desc_to_proc == 0)
2221 		txq->next_desc_to_proc = txq->last_desc - 1;
2222 	else
2223 		txq->next_desc_to_proc--;
2224 }
2225 
2226 /* Set Tx descriptors fields relevant for CSUM calculation */
mvpp2_txq_desc_csum(int l3_offs,__be16 l3_proto,int ip_hdr_len,int l4_proto)2227 static u32 mvpp2_txq_desc_csum(int l3_offs, __be16 l3_proto,
2228 			       int ip_hdr_len, int l4_proto)
2229 {
2230 	u32 command;
2231 
2232 	/* fields: L3_offset, IP_hdrlen, L3_type, G_IPv4_chk,
2233 	 * G_L4_chk, L4_type required only for checksum calculation
2234 	 */
2235 	command = (l3_offs << MVPP2_TXD_L3_OFF_SHIFT);
2236 	command |= (ip_hdr_len << MVPP2_TXD_IP_HLEN_SHIFT);
2237 	command |= MVPP2_TXD_IP_CSUM_DISABLE;
2238 
2239 	if (l3_proto == htons(ETH_P_IP)) {
2240 		command &= ~MVPP2_TXD_IP_CSUM_DISABLE;	/* enable IPv4 csum */
2241 		command &= ~MVPP2_TXD_L3_IP6;		/* enable IPv4 */
2242 	} else {
2243 		command |= MVPP2_TXD_L3_IP6;		/* enable IPv6 */
2244 	}
2245 
2246 	if (l4_proto == IPPROTO_TCP) {
2247 		command &= ~MVPP2_TXD_L4_UDP;		/* enable TCP */
2248 		command &= ~MVPP2_TXD_L4_CSUM_FRAG;	/* generate L4 csum */
2249 	} else if (l4_proto == IPPROTO_UDP) {
2250 		command |= MVPP2_TXD_L4_UDP;		/* enable UDP */
2251 		command &= ~MVPP2_TXD_L4_CSUM_FRAG;	/* generate L4 csum */
2252 	} else {
2253 		command |= MVPP2_TXD_L4_CSUM_NOT;
2254 	}
2255 
2256 	return command;
2257 }
2258 
2259 /* Get number of sent descriptors and decrement counter.
2260  * The number of sent descriptors is returned.
2261  * Per-thread access
2262  *
2263  * Called only from mvpp2_txq_done(), called from mvpp2_tx()
2264  * (migration disabled) and from the TX completion tasklet (migration
2265  * disabled) so using smp_processor_id() is OK.
2266  */
mvpp2_txq_sent_desc_proc(struct mvpp2_port * port,struct mvpp2_tx_queue * txq)2267 static inline int mvpp2_txq_sent_desc_proc(struct mvpp2_port *port,
2268 					   struct mvpp2_tx_queue *txq)
2269 {
2270 	u32 val;
2271 
2272 	/* Reading status reg resets transmitted descriptor counter */
2273 	val = mvpp2_thread_read_relaxed(port->priv,
2274 					mvpp2_cpu_to_thread(port->priv, smp_processor_id()),
2275 					MVPP2_TXQ_SENT_REG(txq->id));
2276 
2277 	return (val & MVPP2_TRANSMITTED_COUNT_MASK) >>
2278 		MVPP2_TRANSMITTED_COUNT_OFFSET;
2279 }
2280 
2281 /* Called through on_each_cpu(), so runs on all CPUs, with migration
2282  * disabled, therefore using smp_processor_id() is OK.
2283  */
mvpp2_txq_sent_counter_clear(void * arg)2284 static void mvpp2_txq_sent_counter_clear(void *arg)
2285 {
2286 	struct mvpp2_port *port = arg;
2287 	int queue;
2288 
2289 	/* If the thread isn't used, don't do anything */
2290 	if (smp_processor_id() >= port->priv->nthreads)
2291 		return;
2292 
2293 	for (queue = 0; queue < port->ntxqs; queue++) {
2294 		int id = port->txqs[queue]->id;
2295 
2296 		mvpp2_thread_read(port->priv,
2297 				  mvpp2_cpu_to_thread(port->priv, smp_processor_id()),
2298 				  MVPP2_TXQ_SENT_REG(id));
2299 	}
2300 }
2301 
2302 /* Set max sizes for Tx queues */
mvpp2_txp_max_tx_size_set(struct mvpp2_port * port)2303 static void mvpp2_txp_max_tx_size_set(struct mvpp2_port *port)
2304 {
2305 	u32	val, size, mtu;
2306 	int	txq, tx_port_num;
2307 
2308 	mtu = port->pkt_size * 8;
2309 	if (mtu > MVPP2_TXP_MTU_MAX)
2310 		mtu = MVPP2_TXP_MTU_MAX;
2311 
2312 	/* WA for wrong Token bucket update: Set MTU value = 3*real MTU value */
2313 	mtu = 3 * mtu;
2314 
2315 	/* Indirect access to registers */
2316 	tx_port_num = mvpp2_egress_port(port);
2317 	mvpp2_write(port->priv, MVPP2_TXP_SCHED_PORT_INDEX_REG, tx_port_num);
2318 
2319 	/* Set MTU */
2320 	val = mvpp2_read(port->priv, MVPP2_TXP_SCHED_MTU_REG);
2321 	val &= ~MVPP2_TXP_MTU_MAX;
2322 	val |= mtu;
2323 	mvpp2_write(port->priv, MVPP2_TXP_SCHED_MTU_REG, val);
2324 
2325 	/* TXP token size and all TXQs token size must be larger that MTU */
2326 	val = mvpp2_read(port->priv, MVPP2_TXP_SCHED_TOKEN_SIZE_REG);
2327 	size = val & MVPP2_TXP_TOKEN_SIZE_MAX;
2328 	if (size < mtu) {
2329 		size = mtu;
2330 		val &= ~MVPP2_TXP_TOKEN_SIZE_MAX;
2331 		val |= size;
2332 		mvpp2_write(port->priv, MVPP2_TXP_SCHED_TOKEN_SIZE_REG, val);
2333 	}
2334 
2335 	for (txq = 0; txq < port->ntxqs; txq++) {
2336 		val = mvpp2_read(port->priv,
2337 				 MVPP2_TXQ_SCHED_TOKEN_SIZE_REG(txq));
2338 		size = val & MVPP2_TXQ_TOKEN_SIZE_MAX;
2339 
2340 		if (size < mtu) {
2341 			size = mtu;
2342 			val &= ~MVPP2_TXQ_TOKEN_SIZE_MAX;
2343 			val |= size;
2344 			mvpp2_write(port->priv,
2345 				    MVPP2_TXQ_SCHED_TOKEN_SIZE_REG(txq),
2346 				    val);
2347 		}
2348 	}
2349 }
2350 
2351 /* Set the number of packets that will be received before Rx interrupt
2352  * will be generated by HW.
2353  */
mvpp2_rx_pkts_coal_set(struct mvpp2_port * port,struct mvpp2_rx_queue * rxq)2354 static void mvpp2_rx_pkts_coal_set(struct mvpp2_port *port,
2355 				   struct mvpp2_rx_queue *rxq)
2356 {
2357 	unsigned int thread = mvpp2_cpu_to_thread(port->priv, get_cpu());
2358 
2359 	if (rxq->pkts_coal > MVPP2_OCCUPIED_THRESH_MASK)
2360 		rxq->pkts_coal = MVPP2_OCCUPIED_THRESH_MASK;
2361 
2362 	mvpp2_thread_write(port->priv, thread, MVPP2_RXQ_NUM_REG, rxq->id);
2363 	mvpp2_thread_write(port->priv, thread, MVPP2_RXQ_THRESH_REG,
2364 			   rxq->pkts_coal);
2365 
2366 	put_cpu();
2367 }
2368 
2369 /* For some reason in the LSP this is done on each CPU. Why ? */
mvpp2_tx_pkts_coal_set(struct mvpp2_port * port,struct mvpp2_tx_queue * txq)2370 static void mvpp2_tx_pkts_coal_set(struct mvpp2_port *port,
2371 				   struct mvpp2_tx_queue *txq)
2372 {
2373 	unsigned int thread;
2374 	u32 val;
2375 
2376 	if (txq->done_pkts_coal > MVPP2_TXQ_THRESH_MASK)
2377 		txq->done_pkts_coal = MVPP2_TXQ_THRESH_MASK;
2378 
2379 	val = (txq->done_pkts_coal << MVPP2_TXQ_THRESH_OFFSET);
2380 	/* PKT-coalescing registers are per-queue + per-thread */
2381 	for (thread = 0; thread < MVPP2_MAX_THREADS; thread++) {
2382 		mvpp2_thread_write(port->priv, thread, MVPP2_TXQ_NUM_REG, txq->id);
2383 		mvpp2_thread_write(port->priv, thread, MVPP2_TXQ_THRESH_REG, val);
2384 	}
2385 }
2386 
mvpp2_usec_to_cycles(u32 usec,unsigned long clk_hz)2387 static u32 mvpp2_usec_to_cycles(u32 usec, unsigned long clk_hz)
2388 {
2389 	u64 tmp = (u64)clk_hz * usec;
2390 
2391 	do_div(tmp, USEC_PER_SEC);
2392 
2393 	return tmp > U32_MAX ? U32_MAX : tmp;
2394 }
2395 
mvpp2_cycles_to_usec(u32 cycles,unsigned long clk_hz)2396 static u32 mvpp2_cycles_to_usec(u32 cycles, unsigned long clk_hz)
2397 {
2398 	u64 tmp = (u64)cycles * USEC_PER_SEC;
2399 
2400 	do_div(tmp, clk_hz);
2401 
2402 	return tmp > U32_MAX ? U32_MAX : tmp;
2403 }
2404 
2405 /* Set the time delay in usec before Rx interrupt */
mvpp2_rx_time_coal_set(struct mvpp2_port * port,struct mvpp2_rx_queue * rxq)2406 static void mvpp2_rx_time_coal_set(struct mvpp2_port *port,
2407 				   struct mvpp2_rx_queue *rxq)
2408 {
2409 	unsigned long freq = port->priv->tclk;
2410 	u32 val = mvpp2_usec_to_cycles(rxq->time_coal, freq);
2411 
2412 	if (val > MVPP2_MAX_ISR_RX_THRESHOLD) {
2413 		rxq->time_coal =
2414 			mvpp2_cycles_to_usec(MVPP2_MAX_ISR_RX_THRESHOLD, freq);
2415 
2416 		/* re-evaluate to get actual register value */
2417 		val = mvpp2_usec_to_cycles(rxq->time_coal, freq);
2418 	}
2419 
2420 	mvpp2_write(port->priv, MVPP2_ISR_RX_THRESHOLD_REG(rxq->id), val);
2421 }
2422 
mvpp2_tx_time_coal_set(struct mvpp2_port * port)2423 static void mvpp2_tx_time_coal_set(struct mvpp2_port *port)
2424 {
2425 	unsigned long freq = port->priv->tclk;
2426 	u32 val = mvpp2_usec_to_cycles(port->tx_time_coal, freq);
2427 
2428 	if (val > MVPP2_MAX_ISR_TX_THRESHOLD) {
2429 		port->tx_time_coal =
2430 			mvpp2_cycles_to_usec(MVPP2_MAX_ISR_TX_THRESHOLD, freq);
2431 
2432 		/* re-evaluate to get actual register value */
2433 		val = mvpp2_usec_to_cycles(port->tx_time_coal, freq);
2434 	}
2435 
2436 	mvpp2_write(port->priv, MVPP2_ISR_TX_THRESHOLD_REG(port->id), val);
2437 }
2438 
2439 /* Free Tx queue skbuffs */
mvpp2_txq_bufs_free(struct mvpp2_port * port,struct mvpp2_tx_queue * txq,struct mvpp2_txq_pcpu * txq_pcpu,int num)2440 static void mvpp2_txq_bufs_free(struct mvpp2_port *port,
2441 				struct mvpp2_tx_queue *txq,
2442 				struct mvpp2_txq_pcpu *txq_pcpu, int num)
2443 {
2444 	int i;
2445 
2446 	for (i = 0; i < num; i++) {
2447 		struct mvpp2_txq_pcpu_buf *tx_buf =
2448 			txq_pcpu->buffs + txq_pcpu->txq_get_index;
2449 
2450 		if (!IS_TSO_HEADER(txq_pcpu, tx_buf->dma) &&
2451 		    tx_buf->type != MVPP2_TYPE_XDP_TX)
2452 			dma_unmap_single(port->dev->dev.parent, tx_buf->dma,
2453 					 tx_buf->size, DMA_TO_DEVICE);
2454 		if (tx_buf->type == MVPP2_TYPE_SKB && tx_buf->skb)
2455 			dev_kfree_skb_any(tx_buf->skb);
2456 		else if (tx_buf->type == MVPP2_TYPE_XDP_TX ||
2457 			 tx_buf->type == MVPP2_TYPE_XDP_NDO)
2458 			xdp_return_frame(tx_buf->xdpf);
2459 
2460 		mvpp2_txq_inc_get(txq_pcpu);
2461 	}
2462 }
2463 
mvpp2_get_rx_queue(struct mvpp2_port * port,u32 cause)2464 static inline struct mvpp2_rx_queue *mvpp2_get_rx_queue(struct mvpp2_port *port,
2465 							u32 cause)
2466 {
2467 	int queue = fls(cause) - 1;
2468 
2469 	return port->rxqs[queue];
2470 }
2471 
mvpp2_get_tx_queue(struct mvpp2_port * port,u32 cause)2472 static inline struct mvpp2_tx_queue *mvpp2_get_tx_queue(struct mvpp2_port *port,
2473 							u32 cause)
2474 {
2475 	int queue = fls(cause) - 1;
2476 
2477 	return port->txqs[queue];
2478 }
2479 
2480 /* Handle end of transmission */
mvpp2_txq_done(struct mvpp2_port * port,struct mvpp2_tx_queue * txq,struct mvpp2_txq_pcpu * txq_pcpu)2481 static void mvpp2_txq_done(struct mvpp2_port *port, struct mvpp2_tx_queue *txq,
2482 			   struct mvpp2_txq_pcpu *txq_pcpu)
2483 {
2484 	struct netdev_queue *nq = netdev_get_tx_queue(port->dev, txq->log_id);
2485 	int tx_done;
2486 
2487 	if (txq_pcpu->thread != mvpp2_cpu_to_thread(port->priv, smp_processor_id()))
2488 		netdev_err(port->dev, "wrong cpu on the end of Tx processing\n");
2489 
2490 	tx_done = mvpp2_txq_sent_desc_proc(port, txq);
2491 	if (!tx_done)
2492 		return;
2493 	mvpp2_txq_bufs_free(port, txq, txq_pcpu, tx_done);
2494 
2495 	txq_pcpu->count -= tx_done;
2496 
2497 	if (netif_tx_queue_stopped(nq))
2498 		if (txq_pcpu->count <= txq_pcpu->wake_threshold)
2499 			netif_tx_wake_queue(nq);
2500 }
2501 
mvpp2_tx_done(struct mvpp2_port * port,u32 cause,unsigned int thread)2502 static unsigned int mvpp2_tx_done(struct mvpp2_port *port, u32 cause,
2503 				  unsigned int thread)
2504 {
2505 	struct mvpp2_tx_queue *txq;
2506 	struct mvpp2_txq_pcpu *txq_pcpu;
2507 	unsigned int tx_todo = 0;
2508 
2509 	while (cause) {
2510 		txq = mvpp2_get_tx_queue(port, cause);
2511 		if (!txq)
2512 			break;
2513 
2514 		txq_pcpu = per_cpu_ptr(txq->pcpu, thread);
2515 
2516 		if (txq_pcpu->count) {
2517 			mvpp2_txq_done(port, txq, txq_pcpu);
2518 			tx_todo += txq_pcpu->count;
2519 		}
2520 
2521 		cause &= ~(1 << txq->log_id);
2522 	}
2523 	return tx_todo;
2524 }
2525 
2526 /* Rx/Tx queue initialization/cleanup methods */
2527 
2528 /* Allocate and initialize descriptors for aggr TXQ */
mvpp2_aggr_txq_init(struct platform_device * pdev,struct mvpp2_tx_queue * aggr_txq,unsigned int thread,struct mvpp2 * priv)2529 static int mvpp2_aggr_txq_init(struct platform_device *pdev,
2530 			       struct mvpp2_tx_queue *aggr_txq,
2531 			       unsigned int thread, struct mvpp2 *priv)
2532 {
2533 	u32 txq_dma;
2534 
2535 	/* Allocate memory for TX descriptors */
2536 	aggr_txq->descs = dma_alloc_coherent(&pdev->dev,
2537 					     MVPP2_AGGR_TXQ_SIZE * MVPP2_DESC_ALIGNED_SIZE,
2538 					     &aggr_txq->descs_dma, GFP_KERNEL);
2539 	if (!aggr_txq->descs)
2540 		return -ENOMEM;
2541 
2542 	aggr_txq->last_desc = MVPP2_AGGR_TXQ_SIZE - 1;
2543 
2544 	/* Aggr TXQ no reset WA */
2545 	aggr_txq->next_desc_to_proc = mvpp2_read(priv,
2546 						 MVPP2_AGGR_TXQ_INDEX_REG(thread));
2547 
2548 	/* Set Tx descriptors queue starting address indirect
2549 	 * access
2550 	 */
2551 	if (priv->hw_version == MVPP21)
2552 		txq_dma = aggr_txq->descs_dma;
2553 	else
2554 		txq_dma = aggr_txq->descs_dma >>
2555 			MVPP22_AGGR_TXQ_DESC_ADDR_OFFS;
2556 
2557 	mvpp2_write(priv, MVPP2_AGGR_TXQ_DESC_ADDR_REG(thread), txq_dma);
2558 	mvpp2_write(priv, MVPP2_AGGR_TXQ_DESC_SIZE_REG(thread),
2559 		    MVPP2_AGGR_TXQ_SIZE);
2560 
2561 	return 0;
2562 }
2563 
2564 /* Create a specified Rx queue */
mvpp2_rxq_init(struct mvpp2_port * port,struct mvpp2_rx_queue * rxq)2565 static int mvpp2_rxq_init(struct mvpp2_port *port,
2566 			  struct mvpp2_rx_queue *rxq)
2567 {
2568 	struct mvpp2 *priv = port->priv;
2569 	unsigned int thread;
2570 	u32 rxq_dma;
2571 	int err;
2572 
2573 	rxq->size = port->rx_ring_size;
2574 
2575 	/* Allocate memory for RX descriptors */
2576 	rxq->descs = dma_alloc_coherent(port->dev->dev.parent,
2577 					rxq->size * MVPP2_DESC_ALIGNED_SIZE,
2578 					&rxq->descs_dma, GFP_KERNEL);
2579 	if (!rxq->descs)
2580 		return -ENOMEM;
2581 
2582 	rxq->last_desc = rxq->size - 1;
2583 
2584 	/* Zero occupied and non-occupied counters - direct access */
2585 	mvpp2_write(port->priv, MVPP2_RXQ_STATUS_REG(rxq->id), 0);
2586 
2587 	/* Set Rx descriptors queue starting address - indirect access */
2588 	thread = mvpp2_cpu_to_thread(port->priv, get_cpu());
2589 	mvpp2_thread_write(port->priv, thread, MVPP2_RXQ_NUM_REG, rxq->id);
2590 	if (port->priv->hw_version == MVPP21)
2591 		rxq_dma = rxq->descs_dma;
2592 	else
2593 		rxq_dma = rxq->descs_dma >> MVPP22_DESC_ADDR_OFFS;
2594 	mvpp2_thread_write(port->priv, thread, MVPP2_RXQ_DESC_ADDR_REG, rxq_dma);
2595 	mvpp2_thread_write(port->priv, thread, MVPP2_RXQ_DESC_SIZE_REG, rxq->size);
2596 	mvpp2_thread_write(port->priv, thread, MVPP2_RXQ_INDEX_REG, 0);
2597 	put_cpu();
2598 
2599 	/* Set Offset */
2600 	mvpp2_rxq_offset_set(port, rxq->id, MVPP2_SKB_HEADROOM);
2601 
2602 	/* Set coalescing pkts and time */
2603 	mvpp2_rx_pkts_coal_set(port, rxq);
2604 	mvpp2_rx_time_coal_set(port, rxq);
2605 
2606 	/* Add number of descriptors ready for receiving packets */
2607 	mvpp2_rxq_status_update(port, rxq->id, 0, rxq->size);
2608 
2609 	if (priv->percpu_pools) {
2610 		err = xdp_rxq_info_reg(&rxq->xdp_rxq_short, port->dev, rxq->id);
2611 		if (err < 0)
2612 			goto err_free_dma;
2613 
2614 		err = xdp_rxq_info_reg(&rxq->xdp_rxq_long, port->dev, rxq->id);
2615 		if (err < 0)
2616 			goto err_unregister_rxq_short;
2617 
2618 		/* Every RXQ has a pool for short and another for long packets */
2619 		err = xdp_rxq_info_reg_mem_model(&rxq->xdp_rxq_short,
2620 						 MEM_TYPE_PAGE_POOL,
2621 						 priv->page_pool[rxq->logic_rxq]);
2622 		if (err < 0)
2623 			goto err_unregister_rxq_long;
2624 
2625 		err = xdp_rxq_info_reg_mem_model(&rxq->xdp_rxq_long,
2626 						 MEM_TYPE_PAGE_POOL,
2627 						 priv->page_pool[rxq->logic_rxq +
2628 								 port->nrxqs]);
2629 		if (err < 0)
2630 			goto err_unregister_mem_rxq_short;
2631 	}
2632 
2633 	return 0;
2634 
2635 err_unregister_mem_rxq_short:
2636 	xdp_rxq_info_unreg_mem_model(&rxq->xdp_rxq_short);
2637 err_unregister_rxq_long:
2638 	xdp_rxq_info_unreg(&rxq->xdp_rxq_long);
2639 err_unregister_rxq_short:
2640 	xdp_rxq_info_unreg(&rxq->xdp_rxq_short);
2641 err_free_dma:
2642 	dma_free_coherent(port->dev->dev.parent,
2643 			  rxq->size * MVPP2_DESC_ALIGNED_SIZE,
2644 			  rxq->descs, rxq->descs_dma);
2645 	return err;
2646 }
2647 
2648 /* Push packets received by the RXQ to BM pool */
mvpp2_rxq_drop_pkts(struct mvpp2_port * port,struct mvpp2_rx_queue * rxq)2649 static void mvpp2_rxq_drop_pkts(struct mvpp2_port *port,
2650 				struct mvpp2_rx_queue *rxq)
2651 {
2652 	int rx_received, i;
2653 
2654 	rx_received = mvpp2_rxq_received(port, rxq->id);
2655 	if (!rx_received)
2656 		return;
2657 
2658 	for (i = 0; i < rx_received; i++) {
2659 		struct mvpp2_rx_desc *rx_desc = mvpp2_rxq_next_desc_get(rxq);
2660 		u32 status = mvpp2_rxdesc_status_get(port, rx_desc);
2661 		int pool;
2662 
2663 		pool = (status & MVPP2_RXD_BM_POOL_ID_MASK) >>
2664 			MVPP2_RXD_BM_POOL_ID_OFFS;
2665 
2666 		mvpp2_bm_pool_put(port, pool,
2667 				  mvpp2_rxdesc_dma_addr_get(port, rx_desc),
2668 				  mvpp2_rxdesc_cookie_get(port, rx_desc));
2669 	}
2670 	mvpp2_rxq_status_update(port, rxq->id, rx_received, rx_received);
2671 }
2672 
2673 /* Cleanup Rx queue */
mvpp2_rxq_deinit(struct mvpp2_port * port,struct mvpp2_rx_queue * rxq)2674 static void mvpp2_rxq_deinit(struct mvpp2_port *port,
2675 			     struct mvpp2_rx_queue *rxq)
2676 {
2677 	unsigned int thread;
2678 
2679 	if (xdp_rxq_info_is_reg(&rxq->xdp_rxq_short))
2680 		xdp_rxq_info_unreg(&rxq->xdp_rxq_short);
2681 
2682 	if (xdp_rxq_info_is_reg(&rxq->xdp_rxq_long))
2683 		xdp_rxq_info_unreg(&rxq->xdp_rxq_long);
2684 
2685 	mvpp2_rxq_drop_pkts(port, rxq);
2686 
2687 	if (rxq->descs)
2688 		dma_free_coherent(port->dev->dev.parent,
2689 				  rxq->size * MVPP2_DESC_ALIGNED_SIZE,
2690 				  rxq->descs,
2691 				  rxq->descs_dma);
2692 
2693 	rxq->descs             = NULL;
2694 	rxq->last_desc         = 0;
2695 	rxq->next_desc_to_proc = 0;
2696 	rxq->descs_dma         = 0;
2697 
2698 	/* Clear Rx descriptors queue starting address and size;
2699 	 * free descriptor number
2700 	 */
2701 	mvpp2_write(port->priv, MVPP2_RXQ_STATUS_REG(rxq->id), 0);
2702 	thread = mvpp2_cpu_to_thread(port->priv, get_cpu());
2703 	mvpp2_thread_write(port->priv, thread, MVPP2_RXQ_NUM_REG, rxq->id);
2704 	mvpp2_thread_write(port->priv, thread, MVPP2_RXQ_DESC_ADDR_REG, 0);
2705 	mvpp2_thread_write(port->priv, thread, MVPP2_RXQ_DESC_SIZE_REG, 0);
2706 	put_cpu();
2707 }
2708 
2709 /* Create and initialize a Tx queue */
mvpp2_txq_init(struct mvpp2_port * port,struct mvpp2_tx_queue * txq)2710 static int mvpp2_txq_init(struct mvpp2_port *port,
2711 			  struct mvpp2_tx_queue *txq)
2712 {
2713 	u32 val;
2714 	unsigned int thread;
2715 	int desc, desc_per_txq, tx_port_num;
2716 	struct mvpp2_txq_pcpu *txq_pcpu;
2717 
2718 	txq->size = port->tx_ring_size;
2719 
2720 	/* Allocate memory for Tx descriptors */
2721 	txq->descs = dma_alloc_coherent(port->dev->dev.parent,
2722 				txq->size * MVPP2_DESC_ALIGNED_SIZE,
2723 				&txq->descs_dma, GFP_KERNEL);
2724 	if (!txq->descs)
2725 		return -ENOMEM;
2726 
2727 	txq->last_desc = txq->size - 1;
2728 
2729 	/* Set Tx descriptors queue starting address - indirect access */
2730 	thread = mvpp2_cpu_to_thread(port->priv, get_cpu());
2731 	mvpp2_thread_write(port->priv, thread, MVPP2_TXQ_NUM_REG, txq->id);
2732 	mvpp2_thread_write(port->priv, thread, MVPP2_TXQ_DESC_ADDR_REG,
2733 			   txq->descs_dma);
2734 	mvpp2_thread_write(port->priv, thread, MVPP2_TXQ_DESC_SIZE_REG,
2735 			   txq->size & MVPP2_TXQ_DESC_SIZE_MASK);
2736 	mvpp2_thread_write(port->priv, thread, MVPP2_TXQ_INDEX_REG, 0);
2737 	mvpp2_thread_write(port->priv, thread, MVPP2_TXQ_RSVD_CLR_REG,
2738 			   txq->id << MVPP2_TXQ_RSVD_CLR_OFFSET);
2739 	val = mvpp2_thread_read(port->priv, thread, MVPP2_TXQ_PENDING_REG);
2740 	val &= ~MVPP2_TXQ_PENDING_MASK;
2741 	mvpp2_thread_write(port->priv, thread, MVPP2_TXQ_PENDING_REG, val);
2742 
2743 	/* Calculate base address in prefetch buffer. We reserve 16 descriptors
2744 	 * for each existing TXQ.
2745 	 * TCONTS for PON port must be continuous from 0 to MVPP2_MAX_TCONT
2746 	 * GBE ports assumed to be continuous from 0 to MVPP2_MAX_PORTS
2747 	 */
2748 	desc_per_txq = 16;
2749 	desc = (port->id * MVPP2_MAX_TXQ * desc_per_txq) +
2750 	       (txq->log_id * desc_per_txq);
2751 
2752 	mvpp2_thread_write(port->priv, thread, MVPP2_TXQ_PREF_BUF_REG,
2753 			   MVPP2_PREF_BUF_PTR(desc) | MVPP2_PREF_BUF_SIZE_16 |
2754 			   MVPP2_PREF_BUF_THRESH(desc_per_txq / 2));
2755 	put_cpu();
2756 
2757 	/* WRR / EJP configuration - indirect access */
2758 	tx_port_num = mvpp2_egress_port(port);
2759 	mvpp2_write(port->priv, MVPP2_TXP_SCHED_PORT_INDEX_REG, tx_port_num);
2760 
2761 	val = mvpp2_read(port->priv, MVPP2_TXQ_SCHED_REFILL_REG(txq->log_id));
2762 	val &= ~MVPP2_TXQ_REFILL_PERIOD_ALL_MASK;
2763 	val |= MVPP2_TXQ_REFILL_PERIOD_MASK(1);
2764 	val |= MVPP2_TXQ_REFILL_TOKENS_ALL_MASK;
2765 	mvpp2_write(port->priv, MVPP2_TXQ_SCHED_REFILL_REG(txq->log_id), val);
2766 
2767 	val = MVPP2_TXQ_TOKEN_SIZE_MAX;
2768 	mvpp2_write(port->priv, MVPP2_TXQ_SCHED_TOKEN_SIZE_REG(txq->log_id),
2769 		    val);
2770 
2771 	for (thread = 0; thread < port->priv->nthreads; thread++) {
2772 		txq_pcpu = per_cpu_ptr(txq->pcpu, thread);
2773 		txq_pcpu->size = txq->size;
2774 		txq_pcpu->buffs = kmalloc_array(txq_pcpu->size,
2775 						sizeof(*txq_pcpu->buffs),
2776 						GFP_KERNEL);
2777 		if (!txq_pcpu->buffs)
2778 			return -ENOMEM;
2779 
2780 		txq_pcpu->count = 0;
2781 		txq_pcpu->reserved_num = 0;
2782 		txq_pcpu->txq_put_index = 0;
2783 		txq_pcpu->txq_get_index = 0;
2784 		txq_pcpu->tso_headers = NULL;
2785 
2786 		txq_pcpu->stop_threshold = txq->size - MVPP2_MAX_SKB_DESCS;
2787 		txq_pcpu->wake_threshold = txq_pcpu->stop_threshold / 2;
2788 
2789 		txq_pcpu->tso_headers =
2790 			dma_alloc_coherent(port->dev->dev.parent,
2791 					   txq_pcpu->size * TSO_HEADER_SIZE,
2792 					   &txq_pcpu->tso_headers_dma,
2793 					   GFP_KERNEL);
2794 		if (!txq_pcpu->tso_headers)
2795 			return -ENOMEM;
2796 	}
2797 
2798 	return 0;
2799 }
2800 
2801 /* Free allocated TXQ resources */
mvpp2_txq_deinit(struct mvpp2_port * port,struct mvpp2_tx_queue * txq)2802 static void mvpp2_txq_deinit(struct mvpp2_port *port,
2803 			     struct mvpp2_tx_queue *txq)
2804 {
2805 	struct mvpp2_txq_pcpu *txq_pcpu;
2806 	unsigned int thread;
2807 
2808 	for (thread = 0; thread < port->priv->nthreads; thread++) {
2809 		txq_pcpu = per_cpu_ptr(txq->pcpu, thread);
2810 		kfree(txq_pcpu->buffs);
2811 
2812 		if (txq_pcpu->tso_headers)
2813 			dma_free_coherent(port->dev->dev.parent,
2814 					  txq_pcpu->size * TSO_HEADER_SIZE,
2815 					  txq_pcpu->tso_headers,
2816 					  txq_pcpu->tso_headers_dma);
2817 
2818 		txq_pcpu->tso_headers = NULL;
2819 	}
2820 
2821 	if (txq->descs)
2822 		dma_free_coherent(port->dev->dev.parent,
2823 				  txq->size * MVPP2_DESC_ALIGNED_SIZE,
2824 				  txq->descs, txq->descs_dma);
2825 
2826 	txq->descs             = NULL;
2827 	txq->last_desc         = 0;
2828 	txq->next_desc_to_proc = 0;
2829 	txq->descs_dma         = 0;
2830 
2831 	/* Set minimum bandwidth for disabled TXQs */
2832 	mvpp2_write(port->priv, MVPP2_TXQ_SCHED_TOKEN_CNTR_REG(txq->log_id), 0);
2833 
2834 	/* Set Tx descriptors queue starting address and size */
2835 	thread = mvpp2_cpu_to_thread(port->priv, get_cpu());
2836 	mvpp2_thread_write(port->priv, thread, MVPP2_TXQ_NUM_REG, txq->id);
2837 	mvpp2_thread_write(port->priv, thread, MVPP2_TXQ_DESC_ADDR_REG, 0);
2838 	mvpp2_thread_write(port->priv, thread, MVPP2_TXQ_DESC_SIZE_REG, 0);
2839 	put_cpu();
2840 }
2841 
2842 /* Cleanup Tx ports */
mvpp2_txq_clean(struct mvpp2_port * port,struct mvpp2_tx_queue * txq)2843 static void mvpp2_txq_clean(struct mvpp2_port *port, struct mvpp2_tx_queue *txq)
2844 {
2845 	struct mvpp2_txq_pcpu *txq_pcpu;
2846 	int delay, pending;
2847 	unsigned int thread = mvpp2_cpu_to_thread(port->priv, get_cpu());
2848 	u32 val;
2849 
2850 	mvpp2_thread_write(port->priv, thread, MVPP2_TXQ_NUM_REG, txq->id);
2851 	val = mvpp2_thread_read(port->priv, thread, MVPP2_TXQ_PREF_BUF_REG);
2852 	val |= MVPP2_TXQ_DRAIN_EN_MASK;
2853 	mvpp2_thread_write(port->priv, thread, MVPP2_TXQ_PREF_BUF_REG, val);
2854 
2855 	/* The napi queue has been stopped so wait for all packets
2856 	 * to be transmitted.
2857 	 */
2858 	delay = 0;
2859 	do {
2860 		if (delay >= MVPP2_TX_PENDING_TIMEOUT_MSEC) {
2861 			netdev_warn(port->dev,
2862 				    "port %d: cleaning queue %d timed out\n",
2863 				    port->id, txq->log_id);
2864 			break;
2865 		}
2866 		mdelay(1);
2867 		delay++;
2868 
2869 		pending = mvpp2_thread_read(port->priv, thread,
2870 					    MVPP2_TXQ_PENDING_REG);
2871 		pending &= MVPP2_TXQ_PENDING_MASK;
2872 	} while (pending);
2873 
2874 	val &= ~MVPP2_TXQ_DRAIN_EN_MASK;
2875 	mvpp2_thread_write(port->priv, thread, MVPP2_TXQ_PREF_BUF_REG, val);
2876 	put_cpu();
2877 
2878 	for (thread = 0; thread < port->priv->nthreads; thread++) {
2879 		txq_pcpu = per_cpu_ptr(txq->pcpu, thread);
2880 
2881 		/* Release all packets */
2882 		mvpp2_txq_bufs_free(port, txq, txq_pcpu, txq_pcpu->count);
2883 
2884 		/* Reset queue */
2885 		txq_pcpu->count = 0;
2886 		txq_pcpu->txq_put_index = 0;
2887 		txq_pcpu->txq_get_index = 0;
2888 	}
2889 }
2890 
2891 /* Cleanup all Tx queues */
mvpp2_cleanup_txqs(struct mvpp2_port * port)2892 static void mvpp2_cleanup_txqs(struct mvpp2_port *port)
2893 {
2894 	struct mvpp2_tx_queue *txq;
2895 	int queue;
2896 	u32 val;
2897 
2898 	val = mvpp2_read(port->priv, MVPP2_TX_PORT_FLUSH_REG);
2899 
2900 	/* Reset Tx ports and delete Tx queues */
2901 	val |= MVPP2_TX_PORT_FLUSH_MASK(port->id);
2902 	mvpp2_write(port->priv, MVPP2_TX_PORT_FLUSH_REG, val);
2903 
2904 	for (queue = 0; queue < port->ntxqs; queue++) {
2905 		txq = port->txqs[queue];
2906 		mvpp2_txq_clean(port, txq);
2907 		mvpp2_txq_deinit(port, txq);
2908 	}
2909 
2910 	on_each_cpu(mvpp2_txq_sent_counter_clear, port, 1);
2911 
2912 	val &= ~MVPP2_TX_PORT_FLUSH_MASK(port->id);
2913 	mvpp2_write(port->priv, MVPP2_TX_PORT_FLUSH_REG, val);
2914 }
2915 
2916 /* Cleanup all Rx queues */
mvpp2_cleanup_rxqs(struct mvpp2_port * port)2917 static void mvpp2_cleanup_rxqs(struct mvpp2_port *port)
2918 {
2919 	int queue;
2920 
2921 	for (queue = 0; queue < port->nrxqs; queue++)
2922 		mvpp2_rxq_deinit(port, port->rxqs[queue]);
2923 }
2924 
2925 /* Init all Rx queues for port */
mvpp2_setup_rxqs(struct mvpp2_port * port)2926 static int mvpp2_setup_rxqs(struct mvpp2_port *port)
2927 {
2928 	int queue, err;
2929 
2930 	for (queue = 0; queue < port->nrxqs; queue++) {
2931 		err = mvpp2_rxq_init(port, port->rxqs[queue]);
2932 		if (err)
2933 			goto err_cleanup;
2934 	}
2935 	return 0;
2936 
2937 err_cleanup:
2938 	mvpp2_cleanup_rxqs(port);
2939 	return err;
2940 }
2941 
2942 /* Init all tx queues for port */
mvpp2_setup_txqs(struct mvpp2_port * port)2943 static int mvpp2_setup_txqs(struct mvpp2_port *port)
2944 {
2945 	struct mvpp2_tx_queue *txq;
2946 	int queue, err;
2947 
2948 	for (queue = 0; queue < port->ntxqs; queue++) {
2949 		txq = port->txqs[queue];
2950 		err = mvpp2_txq_init(port, txq);
2951 		if (err)
2952 			goto err_cleanup;
2953 
2954 		/* Assign this queue to a CPU */
2955 		if (queue < num_possible_cpus())
2956 			netif_set_xps_queue(port->dev, cpumask_of(queue), queue);
2957 	}
2958 
2959 	if (port->has_tx_irqs) {
2960 		mvpp2_tx_time_coal_set(port);
2961 		for (queue = 0; queue < port->ntxqs; queue++) {
2962 			txq = port->txqs[queue];
2963 			mvpp2_tx_pkts_coal_set(port, txq);
2964 		}
2965 	}
2966 
2967 	on_each_cpu(mvpp2_txq_sent_counter_clear, port, 1);
2968 	return 0;
2969 
2970 err_cleanup:
2971 	mvpp2_cleanup_txqs(port);
2972 	return err;
2973 }
2974 
2975 /* The callback for per-port interrupt */
mvpp2_isr(int irq,void * dev_id)2976 static irqreturn_t mvpp2_isr(int irq, void *dev_id)
2977 {
2978 	struct mvpp2_queue_vector *qv = dev_id;
2979 
2980 	mvpp2_qvec_interrupt_disable(qv);
2981 
2982 	napi_schedule(&qv->napi);
2983 
2984 	return IRQ_HANDLED;
2985 }
2986 
mvpp2_isr_handle_ptp_queue(struct mvpp2_port * port,int nq)2987 static void mvpp2_isr_handle_ptp_queue(struct mvpp2_port *port, int nq)
2988 {
2989 	struct skb_shared_hwtstamps shhwtstamps;
2990 	struct mvpp2_hwtstamp_queue *queue;
2991 	struct sk_buff *skb;
2992 	void __iomem *ptp_q;
2993 	unsigned int id;
2994 	u32 r0, r1, r2;
2995 
2996 	ptp_q = port->priv->iface_base + MVPP22_PTP_BASE(port->gop_id);
2997 	if (nq)
2998 		ptp_q += MVPP22_PTP_TX_Q1_R0 - MVPP22_PTP_TX_Q0_R0;
2999 
3000 	queue = &port->tx_hwtstamp_queue[nq];
3001 
3002 	while (1) {
3003 		r0 = readl_relaxed(ptp_q + MVPP22_PTP_TX_Q0_R0) & 0xffff;
3004 		if (!r0)
3005 			break;
3006 
3007 		r1 = readl_relaxed(ptp_q + MVPP22_PTP_TX_Q0_R1) & 0xffff;
3008 		r2 = readl_relaxed(ptp_q + MVPP22_PTP_TX_Q0_R2) & 0xffff;
3009 
3010 		id = (r0 >> 1) & 31;
3011 
3012 		skb = queue->skb[id];
3013 		queue->skb[id] = NULL;
3014 		if (skb) {
3015 			u32 ts = r2 << 19 | r1 << 3 | r0 >> 13;
3016 
3017 			mvpp22_tai_tstamp(port->priv->tai, ts, &shhwtstamps);
3018 			skb_tstamp_tx(skb, &shhwtstamps);
3019 			dev_kfree_skb_any(skb);
3020 		}
3021 	}
3022 }
3023 
mvpp2_isr_handle_ptp(struct mvpp2_port * port)3024 static void mvpp2_isr_handle_ptp(struct mvpp2_port *port)
3025 {
3026 	void __iomem *ptp;
3027 	u32 val;
3028 
3029 	ptp = port->priv->iface_base + MVPP22_PTP_BASE(port->gop_id);
3030 	val = readl(ptp + MVPP22_PTP_INT_CAUSE);
3031 	if (val & MVPP22_PTP_INT_CAUSE_QUEUE0)
3032 		mvpp2_isr_handle_ptp_queue(port, 0);
3033 	if (val & MVPP22_PTP_INT_CAUSE_QUEUE1)
3034 		mvpp2_isr_handle_ptp_queue(port, 1);
3035 }
3036 
mvpp2_isr_handle_link(struct mvpp2_port * port,bool link)3037 static void mvpp2_isr_handle_link(struct mvpp2_port *port, bool link)
3038 {
3039 	struct net_device *dev = port->dev;
3040 
3041 	if (port->phylink) {
3042 		phylink_mac_change(port->phylink, link);
3043 		return;
3044 	}
3045 
3046 	if (!netif_running(dev))
3047 		return;
3048 
3049 	if (link) {
3050 		mvpp2_interrupts_enable(port);
3051 
3052 		mvpp2_egress_enable(port);
3053 		mvpp2_ingress_enable(port);
3054 		netif_carrier_on(dev);
3055 		netif_tx_wake_all_queues(dev);
3056 	} else {
3057 		netif_tx_stop_all_queues(dev);
3058 		netif_carrier_off(dev);
3059 		mvpp2_ingress_disable(port);
3060 		mvpp2_egress_disable(port);
3061 
3062 		mvpp2_interrupts_disable(port);
3063 	}
3064 }
3065 
mvpp2_isr_handle_xlg(struct mvpp2_port * port)3066 static void mvpp2_isr_handle_xlg(struct mvpp2_port *port)
3067 {
3068 	bool link;
3069 	u32 val;
3070 
3071 	val = readl(port->base + MVPP22_XLG_INT_STAT);
3072 	if (val & MVPP22_XLG_INT_STAT_LINK) {
3073 		val = readl(port->base + MVPP22_XLG_STATUS);
3074 		link = (val & MVPP22_XLG_STATUS_LINK_UP);
3075 		mvpp2_isr_handle_link(port, link);
3076 	}
3077 }
3078 
mvpp2_isr_handle_gmac_internal(struct mvpp2_port * port)3079 static void mvpp2_isr_handle_gmac_internal(struct mvpp2_port *port)
3080 {
3081 	bool link;
3082 	u32 val;
3083 
3084 	if (phy_interface_mode_is_rgmii(port->phy_interface) ||
3085 	    phy_interface_mode_is_8023z(port->phy_interface) ||
3086 	    port->phy_interface == PHY_INTERFACE_MODE_SGMII) {
3087 		val = readl(port->base + MVPP22_GMAC_INT_STAT);
3088 		if (val & MVPP22_GMAC_INT_STAT_LINK) {
3089 			val = readl(port->base + MVPP2_GMAC_STATUS0);
3090 			link = (val & MVPP2_GMAC_STATUS0_LINK_UP);
3091 			mvpp2_isr_handle_link(port, link);
3092 		}
3093 	}
3094 }
3095 
3096 /* Per-port interrupt for link status changes */
mvpp2_port_isr(int irq,void * dev_id)3097 static irqreturn_t mvpp2_port_isr(int irq, void *dev_id)
3098 {
3099 	struct mvpp2_port *port = (struct mvpp2_port *)dev_id;
3100 	u32 val;
3101 
3102 	mvpp22_gop_mask_irq(port);
3103 
3104 	if (mvpp2_port_supports_xlg(port) &&
3105 	    mvpp2_is_xlg(port->phy_interface)) {
3106 		/* Check the external status register */
3107 		val = readl(port->base + MVPP22_XLG_EXT_INT_STAT);
3108 		if (val & MVPP22_XLG_EXT_INT_STAT_XLG)
3109 			mvpp2_isr_handle_xlg(port);
3110 		if (val & MVPP22_XLG_EXT_INT_STAT_PTP)
3111 			mvpp2_isr_handle_ptp(port);
3112 	} else {
3113 		/* If it's not the XLG, we must be using the GMAC.
3114 		 * Check the summary status.
3115 		 */
3116 		val = readl(port->base + MVPP22_GMAC_INT_SUM_STAT);
3117 		if (val & MVPP22_GMAC_INT_SUM_STAT_INTERNAL)
3118 			mvpp2_isr_handle_gmac_internal(port);
3119 		if (val & MVPP22_GMAC_INT_SUM_STAT_PTP)
3120 			mvpp2_isr_handle_ptp(port);
3121 	}
3122 
3123 	mvpp22_gop_unmask_irq(port);
3124 	return IRQ_HANDLED;
3125 }
3126 
mvpp2_hr_timer_cb(struct hrtimer * timer)3127 static enum hrtimer_restart mvpp2_hr_timer_cb(struct hrtimer *timer)
3128 {
3129 	struct net_device *dev;
3130 	struct mvpp2_port *port;
3131 	struct mvpp2_port_pcpu *port_pcpu;
3132 	unsigned int tx_todo, cause;
3133 
3134 	port_pcpu = container_of(timer, struct mvpp2_port_pcpu, tx_done_timer);
3135 	dev = port_pcpu->dev;
3136 
3137 	if (!netif_running(dev))
3138 		return HRTIMER_NORESTART;
3139 
3140 	port_pcpu->timer_scheduled = false;
3141 	port = netdev_priv(dev);
3142 
3143 	/* Process all the Tx queues */
3144 	cause = (1 << port->ntxqs) - 1;
3145 	tx_todo = mvpp2_tx_done(port, cause,
3146 				mvpp2_cpu_to_thread(port->priv, smp_processor_id()));
3147 
3148 	/* Set the timer in case not all the packets were processed */
3149 	if (tx_todo && !port_pcpu->timer_scheduled) {
3150 		port_pcpu->timer_scheduled = true;
3151 		hrtimer_forward_now(&port_pcpu->tx_done_timer,
3152 				    MVPP2_TXDONE_HRTIMER_PERIOD_NS);
3153 
3154 		return HRTIMER_RESTART;
3155 	}
3156 	return HRTIMER_NORESTART;
3157 }
3158 
3159 /* Main RX/TX processing routines */
3160 
3161 /* Display more error info */
mvpp2_rx_error(struct mvpp2_port * port,struct mvpp2_rx_desc * rx_desc)3162 static void mvpp2_rx_error(struct mvpp2_port *port,
3163 			   struct mvpp2_rx_desc *rx_desc)
3164 {
3165 	u32 status = mvpp2_rxdesc_status_get(port, rx_desc);
3166 	size_t sz = mvpp2_rxdesc_size_get(port, rx_desc);
3167 	char *err_str = NULL;
3168 
3169 	switch (status & MVPP2_RXD_ERR_CODE_MASK) {
3170 	case MVPP2_RXD_ERR_CRC:
3171 		err_str = "crc";
3172 		break;
3173 	case MVPP2_RXD_ERR_OVERRUN:
3174 		err_str = "overrun";
3175 		break;
3176 	case MVPP2_RXD_ERR_RESOURCE:
3177 		err_str = "resource";
3178 		break;
3179 	}
3180 	if (err_str && net_ratelimit())
3181 		netdev_err(port->dev,
3182 			   "bad rx status %08x (%s error), size=%zu\n",
3183 			   status, err_str, sz);
3184 }
3185 
3186 /* Handle RX checksum offload */
mvpp2_rx_csum(struct mvpp2_port * port,u32 status,struct sk_buff * skb)3187 static void mvpp2_rx_csum(struct mvpp2_port *port, u32 status,
3188 			  struct sk_buff *skb)
3189 {
3190 	if (((status & MVPP2_RXD_L3_IP4) &&
3191 	     !(status & MVPP2_RXD_IP4_HEADER_ERR)) ||
3192 	    (status & MVPP2_RXD_L3_IP6))
3193 		if (((status & MVPP2_RXD_L4_UDP) ||
3194 		     (status & MVPP2_RXD_L4_TCP)) &&
3195 		     (status & MVPP2_RXD_L4_CSUM_OK)) {
3196 			skb->csum = 0;
3197 			skb->ip_summed = CHECKSUM_UNNECESSARY;
3198 			return;
3199 		}
3200 
3201 	skb->ip_summed = CHECKSUM_NONE;
3202 }
3203 
3204 /* Allocate a new skb and add it to BM pool */
mvpp2_rx_refill(struct mvpp2_port * port,struct mvpp2_bm_pool * bm_pool,struct page_pool * page_pool,int pool)3205 static int mvpp2_rx_refill(struct mvpp2_port *port,
3206 			   struct mvpp2_bm_pool *bm_pool,
3207 			   struct page_pool *page_pool, int pool)
3208 {
3209 	dma_addr_t dma_addr;
3210 	phys_addr_t phys_addr;
3211 	void *buf;
3212 
3213 	buf = mvpp2_buf_alloc(port, bm_pool, page_pool,
3214 			      &dma_addr, &phys_addr, GFP_ATOMIC);
3215 	if (!buf)
3216 		return -ENOMEM;
3217 
3218 	mvpp2_bm_pool_put(port, pool, dma_addr, phys_addr);
3219 
3220 	return 0;
3221 }
3222 
3223 /* Handle tx checksum */
mvpp2_skb_tx_csum(struct mvpp2_port * port,struct sk_buff * skb)3224 static u32 mvpp2_skb_tx_csum(struct mvpp2_port *port, struct sk_buff *skb)
3225 {
3226 	if (skb->ip_summed == CHECKSUM_PARTIAL) {
3227 		int ip_hdr_len = 0;
3228 		u8 l4_proto;
3229 		__be16 l3_proto = vlan_get_protocol(skb);
3230 
3231 		if (l3_proto == htons(ETH_P_IP)) {
3232 			struct iphdr *ip4h = ip_hdr(skb);
3233 
3234 			/* Calculate IPv4 checksum and L4 checksum */
3235 			ip_hdr_len = ip4h->ihl;
3236 			l4_proto = ip4h->protocol;
3237 		} else if (l3_proto == htons(ETH_P_IPV6)) {
3238 			struct ipv6hdr *ip6h = ipv6_hdr(skb);
3239 
3240 			/* Read l4_protocol from one of IPv6 extra headers */
3241 			if (skb_network_header_len(skb) > 0)
3242 				ip_hdr_len = (skb_network_header_len(skb) >> 2);
3243 			l4_proto = ip6h->nexthdr;
3244 		} else {
3245 			return MVPP2_TXD_L4_CSUM_NOT;
3246 		}
3247 
3248 		return mvpp2_txq_desc_csum(skb_network_offset(skb),
3249 					   l3_proto, ip_hdr_len, l4_proto);
3250 	}
3251 
3252 	return MVPP2_TXD_L4_CSUM_NOT | MVPP2_TXD_IP_CSUM_DISABLE;
3253 }
3254 
mvpp2_xdp_finish_tx(struct mvpp2_port * port,u16 txq_id,int nxmit,int nxmit_byte)3255 static void mvpp2_xdp_finish_tx(struct mvpp2_port *port, u16 txq_id, int nxmit, int nxmit_byte)
3256 {
3257 	unsigned int thread = mvpp2_cpu_to_thread(port->priv, smp_processor_id());
3258 	struct mvpp2_tx_queue *aggr_txq;
3259 	struct mvpp2_txq_pcpu *txq_pcpu;
3260 	struct mvpp2_tx_queue *txq;
3261 	struct netdev_queue *nq;
3262 
3263 	txq = port->txqs[txq_id];
3264 	txq_pcpu = per_cpu_ptr(txq->pcpu, thread);
3265 	nq = netdev_get_tx_queue(port->dev, txq_id);
3266 	aggr_txq = &port->priv->aggr_txqs[thread];
3267 
3268 	txq_pcpu->reserved_num -= nxmit;
3269 	txq_pcpu->count += nxmit;
3270 	aggr_txq->count += nxmit;
3271 
3272 	/* Enable transmit */
3273 	wmb();
3274 	mvpp2_aggr_txq_pend_desc_add(port, nxmit);
3275 
3276 	if (txq_pcpu->count >= txq_pcpu->stop_threshold)
3277 		netif_tx_stop_queue(nq);
3278 
3279 	/* Finalize TX processing */
3280 	if (!port->has_tx_irqs && txq_pcpu->count >= txq->done_pkts_coal)
3281 		mvpp2_txq_done(port, txq, txq_pcpu);
3282 }
3283 
3284 static int
mvpp2_xdp_submit_frame(struct mvpp2_port * port,u16 txq_id,struct xdp_frame * xdpf,bool dma_map)3285 mvpp2_xdp_submit_frame(struct mvpp2_port *port, u16 txq_id,
3286 		       struct xdp_frame *xdpf, bool dma_map)
3287 {
3288 	unsigned int thread = mvpp2_cpu_to_thread(port->priv, smp_processor_id());
3289 	u32 tx_cmd = MVPP2_TXD_L4_CSUM_NOT | MVPP2_TXD_IP_CSUM_DISABLE |
3290 		     MVPP2_TXD_F_DESC | MVPP2_TXD_L_DESC;
3291 	enum mvpp2_tx_buf_type buf_type;
3292 	struct mvpp2_txq_pcpu *txq_pcpu;
3293 	struct mvpp2_tx_queue *aggr_txq;
3294 	struct mvpp2_tx_desc *tx_desc;
3295 	struct mvpp2_tx_queue *txq;
3296 	int ret = MVPP2_XDP_TX;
3297 	dma_addr_t dma_addr;
3298 
3299 	txq = port->txqs[txq_id];
3300 	txq_pcpu = per_cpu_ptr(txq->pcpu, thread);
3301 	aggr_txq = &port->priv->aggr_txqs[thread];
3302 
3303 	/* Check number of available descriptors */
3304 	if (mvpp2_aggr_desc_num_check(port, aggr_txq, 1) ||
3305 	    mvpp2_txq_reserved_desc_num_proc(port, txq, txq_pcpu, 1)) {
3306 		ret = MVPP2_XDP_DROPPED;
3307 		goto out;
3308 	}
3309 
3310 	/* Get a descriptor for the first part of the packet */
3311 	tx_desc = mvpp2_txq_next_desc_get(aggr_txq);
3312 	mvpp2_txdesc_txq_set(port, tx_desc, txq->id);
3313 	mvpp2_txdesc_size_set(port, tx_desc, xdpf->len);
3314 
3315 	if (dma_map) {
3316 		/* XDP_REDIRECT or AF_XDP */
3317 		dma_addr = dma_map_single(port->dev->dev.parent, xdpf->data,
3318 					  xdpf->len, DMA_TO_DEVICE);
3319 
3320 		if (unlikely(dma_mapping_error(port->dev->dev.parent, dma_addr))) {
3321 			mvpp2_txq_desc_put(txq);
3322 			ret = MVPP2_XDP_DROPPED;
3323 			goto out;
3324 		}
3325 
3326 		buf_type = MVPP2_TYPE_XDP_NDO;
3327 	} else {
3328 		/* XDP_TX */
3329 		struct page *page = virt_to_page(xdpf->data);
3330 
3331 		dma_addr = page_pool_get_dma_addr(page) +
3332 			   sizeof(*xdpf) + xdpf->headroom;
3333 		dma_sync_single_for_device(port->dev->dev.parent, dma_addr,
3334 					   xdpf->len, DMA_BIDIRECTIONAL);
3335 
3336 		buf_type = MVPP2_TYPE_XDP_TX;
3337 	}
3338 
3339 	mvpp2_txdesc_dma_addr_set(port, tx_desc, dma_addr);
3340 
3341 	mvpp2_txdesc_cmd_set(port, tx_desc, tx_cmd);
3342 	mvpp2_txq_inc_put(port, txq_pcpu, xdpf, tx_desc, buf_type);
3343 
3344 out:
3345 	return ret;
3346 }
3347 
3348 static int
mvpp2_xdp_xmit_back(struct mvpp2_port * port,struct xdp_buff * xdp)3349 mvpp2_xdp_xmit_back(struct mvpp2_port *port, struct xdp_buff *xdp)
3350 {
3351 	struct mvpp2_pcpu_stats *stats = this_cpu_ptr(port->stats);
3352 	struct xdp_frame *xdpf;
3353 	u16 txq_id;
3354 	int ret;
3355 
3356 	xdpf = xdp_convert_buff_to_frame(xdp);
3357 	if (unlikely(!xdpf))
3358 		return MVPP2_XDP_DROPPED;
3359 
3360 	/* The first of the TX queues are used for XPS,
3361 	 * the second half for XDP_TX
3362 	 */
3363 	txq_id = mvpp2_cpu_to_thread(port->priv, smp_processor_id()) + (port->ntxqs / 2);
3364 
3365 	ret = mvpp2_xdp_submit_frame(port, txq_id, xdpf, false);
3366 	if (ret == MVPP2_XDP_TX) {
3367 		u64_stats_update_begin(&stats->syncp);
3368 		stats->tx_bytes += xdpf->len;
3369 		stats->tx_packets++;
3370 		stats->xdp_tx++;
3371 		u64_stats_update_end(&stats->syncp);
3372 
3373 		mvpp2_xdp_finish_tx(port, txq_id, 1, xdpf->len);
3374 	} else {
3375 		u64_stats_update_begin(&stats->syncp);
3376 		stats->xdp_tx_err++;
3377 		u64_stats_update_end(&stats->syncp);
3378 	}
3379 
3380 	return ret;
3381 }
3382 
3383 static int
mvpp2_xdp_xmit(struct net_device * dev,int num_frame,struct xdp_frame ** frames,u32 flags)3384 mvpp2_xdp_xmit(struct net_device *dev, int num_frame,
3385 	       struct xdp_frame **frames, u32 flags)
3386 {
3387 	struct mvpp2_port *port = netdev_priv(dev);
3388 	int i, nxmit_byte = 0, nxmit = num_frame;
3389 	struct mvpp2_pcpu_stats *stats;
3390 	u16 txq_id;
3391 	u32 ret;
3392 
3393 	if (unlikely(test_bit(0, &port->state)))
3394 		return -ENETDOWN;
3395 
3396 	if (unlikely(flags & ~XDP_XMIT_FLAGS_MASK))
3397 		return -EINVAL;
3398 
3399 	/* The first of the TX queues are used for XPS,
3400 	 * the second half for XDP_TX
3401 	 */
3402 	txq_id = mvpp2_cpu_to_thread(port->priv, smp_processor_id()) + (port->ntxqs / 2);
3403 
3404 	for (i = 0; i < num_frame; i++) {
3405 		ret = mvpp2_xdp_submit_frame(port, txq_id, frames[i], true);
3406 		if (ret == MVPP2_XDP_TX) {
3407 			nxmit_byte += frames[i]->len;
3408 		} else {
3409 			xdp_return_frame_rx_napi(frames[i]);
3410 			nxmit--;
3411 		}
3412 	}
3413 
3414 	if (likely(nxmit > 0))
3415 		mvpp2_xdp_finish_tx(port, txq_id, nxmit, nxmit_byte);
3416 
3417 	stats = this_cpu_ptr(port->stats);
3418 	u64_stats_update_begin(&stats->syncp);
3419 	stats->tx_bytes += nxmit_byte;
3420 	stats->tx_packets += nxmit;
3421 	stats->xdp_xmit += nxmit;
3422 	stats->xdp_xmit_err += num_frame - nxmit;
3423 	u64_stats_update_end(&stats->syncp);
3424 
3425 	return nxmit;
3426 }
3427 
3428 static int
mvpp2_run_xdp(struct mvpp2_port * port,struct mvpp2_rx_queue * rxq,struct bpf_prog * prog,struct xdp_buff * xdp,struct page_pool * pp,struct mvpp2_pcpu_stats * stats)3429 mvpp2_run_xdp(struct mvpp2_port *port, struct mvpp2_rx_queue *rxq,
3430 	      struct bpf_prog *prog, struct xdp_buff *xdp,
3431 	      struct page_pool *pp, struct mvpp2_pcpu_stats *stats)
3432 {
3433 	unsigned int len, sync, err;
3434 	struct page *page;
3435 	u32 ret, act;
3436 
3437 	len = xdp->data_end - xdp->data_hard_start - MVPP2_SKB_HEADROOM;
3438 	act = bpf_prog_run_xdp(prog, xdp);
3439 
3440 	/* Due xdp_adjust_tail: DMA sync for_device cover max len CPU touch */
3441 	sync = xdp->data_end - xdp->data_hard_start - MVPP2_SKB_HEADROOM;
3442 	sync = max(sync, len);
3443 
3444 	switch (act) {
3445 	case XDP_PASS:
3446 		stats->xdp_pass++;
3447 		ret = MVPP2_XDP_PASS;
3448 		break;
3449 	case XDP_REDIRECT:
3450 		err = xdp_do_redirect(port->dev, xdp, prog);
3451 		if (unlikely(err)) {
3452 			ret = MVPP2_XDP_DROPPED;
3453 			page = virt_to_head_page(xdp->data);
3454 			page_pool_put_page(pp, page, sync, true);
3455 		} else {
3456 			ret = MVPP2_XDP_REDIR;
3457 			stats->xdp_redirect++;
3458 		}
3459 		break;
3460 	case XDP_TX:
3461 		ret = mvpp2_xdp_xmit_back(port, xdp);
3462 		if (ret != MVPP2_XDP_TX) {
3463 			page = virt_to_head_page(xdp->data);
3464 			page_pool_put_page(pp, page, sync, true);
3465 		}
3466 		break;
3467 	default:
3468 		bpf_warn_invalid_xdp_action(act);
3469 		fallthrough;
3470 	case XDP_ABORTED:
3471 		trace_xdp_exception(port->dev, prog, act);
3472 		fallthrough;
3473 	case XDP_DROP:
3474 		page = virt_to_head_page(xdp->data);
3475 		page_pool_put_page(pp, page, sync, true);
3476 		ret = MVPP2_XDP_DROPPED;
3477 		stats->xdp_drop++;
3478 		break;
3479 	}
3480 
3481 	return ret;
3482 }
3483 
mvpp2_buff_hdr_pool_put(struct mvpp2_port * port,struct mvpp2_rx_desc * rx_desc,int pool,u32 rx_status)3484 static void mvpp2_buff_hdr_pool_put(struct mvpp2_port *port, struct mvpp2_rx_desc *rx_desc,
3485 				    int pool, u32 rx_status)
3486 {
3487 	phys_addr_t phys_addr, phys_addr_next;
3488 	dma_addr_t dma_addr, dma_addr_next;
3489 	struct mvpp2_buff_hdr *buff_hdr;
3490 
3491 	phys_addr = mvpp2_rxdesc_dma_addr_get(port, rx_desc);
3492 	dma_addr = mvpp2_rxdesc_cookie_get(port, rx_desc);
3493 
3494 	do {
3495 		buff_hdr = (struct mvpp2_buff_hdr *)phys_to_virt(phys_addr);
3496 
3497 		phys_addr_next = le32_to_cpu(buff_hdr->next_phys_addr);
3498 		dma_addr_next = le32_to_cpu(buff_hdr->next_dma_addr);
3499 
3500 		if (port->priv->hw_version >= MVPP22) {
3501 			phys_addr_next |= ((u64)buff_hdr->next_phys_addr_high << 32);
3502 			dma_addr_next |= ((u64)buff_hdr->next_dma_addr_high << 32);
3503 		}
3504 
3505 		mvpp2_bm_pool_put(port, pool, dma_addr, phys_addr);
3506 
3507 		phys_addr = phys_addr_next;
3508 		dma_addr = dma_addr_next;
3509 
3510 	} while (!MVPP2_B_HDR_INFO_IS_LAST(le16_to_cpu(buff_hdr->info)));
3511 }
3512 
3513 /* Main rx processing */
mvpp2_rx(struct mvpp2_port * port,struct napi_struct * napi,int rx_todo,struct mvpp2_rx_queue * rxq)3514 static int mvpp2_rx(struct mvpp2_port *port, struct napi_struct *napi,
3515 		    int rx_todo, struct mvpp2_rx_queue *rxq)
3516 {
3517 	struct net_device *dev = port->dev;
3518 	struct mvpp2_pcpu_stats ps = {};
3519 	enum dma_data_direction dma_dir;
3520 	struct bpf_prog *xdp_prog;
3521 	struct xdp_buff xdp;
3522 	int rx_received;
3523 	int rx_done = 0;
3524 	u32 xdp_ret = 0;
3525 
3526 	rcu_read_lock();
3527 
3528 	xdp_prog = READ_ONCE(port->xdp_prog);
3529 
3530 	/* Get number of received packets and clamp the to-do */
3531 	rx_received = mvpp2_rxq_received(port, rxq->id);
3532 	if (rx_todo > rx_received)
3533 		rx_todo = rx_received;
3534 
3535 	while (rx_done < rx_todo) {
3536 		struct mvpp2_rx_desc *rx_desc = mvpp2_rxq_next_desc_get(rxq);
3537 		struct mvpp2_bm_pool *bm_pool;
3538 		struct page_pool *pp = NULL;
3539 		struct sk_buff *skb;
3540 		unsigned int frag_size;
3541 		dma_addr_t dma_addr;
3542 		phys_addr_t phys_addr;
3543 		u32 rx_status, timestamp;
3544 		int pool, rx_bytes, err, ret;
3545 		void *data;
3546 
3547 		rx_done++;
3548 		rx_status = mvpp2_rxdesc_status_get(port, rx_desc);
3549 		rx_bytes = mvpp2_rxdesc_size_get(port, rx_desc);
3550 		rx_bytes -= MVPP2_MH_SIZE;
3551 		dma_addr = mvpp2_rxdesc_dma_addr_get(port, rx_desc);
3552 		phys_addr = mvpp2_rxdesc_cookie_get(port, rx_desc);
3553 		data = (void *)phys_to_virt(phys_addr);
3554 
3555 		pool = (rx_status & MVPP2_RXD_BM_POOL_ID_MASK) >>
3556 			MVPP2_RXD_BM_POOL_ID_OFFS;
3557 		bm_pool = &port->priv->bm_pools[pool];
3558 
3559 		if (port->priv->percpu_pools) {
3560 			pp = port->priv->page_pool[pool];
3561 			dma_dir = page_pool_get_dma_dir(pp);
3562 		} else {
3563 			dma_dir = DMA_FROM_DEVICE;
3564 		}
3565 
3566 		dma_sync_single_for_cpu(dev->dev.parent, dma_addr,
3567 					rx_bytes + MVPP2_MH_SIZE,
3568 					dma_dir);
3569 
3570 		/* Buffer header not supported */
3571 		if (rx_status & MVPP2_RXD_BUF_HDR)
3572 			goto err_drop_frame;
3573 
3574 		/* In case of an error, release the requested buffer pointer
3575 		 * to the Buffer Manager. This request process is controlled
3576 		 * by the hardware, and the information about the buffer is
3577 		 * comprised by the RX descriptor.
3578 		 */
3579 		if (rx_status & MVPP2_RXD_ERR_SUMMARY)
3580 			goto err_drop_frame;
3581 
3582 		/* Prefetch header */
3583 		prefetch(data);
3584 
3585 		if (bm_pool->frag_size > PAGE_SIZE)
3586 			frag_size = 0;
3587 		else
3588 			frag_size = bm_pool->frag_size;
3589 
3590 		if (xdp_prog) {
3591 			xdp.data_hard_start = data;
3592 			xdp.data = data + MVPP2_MH_SIZE + MVPP2_SKB_HEADROOM;
3593 			xdp.data_end = xdp.data + rx_bytes;
3594 			xdp.frame_sz = PAGE_SIZE;
3595 
3596 			if (bm_pool->pkt_size == MVPP2_BM_SHORT_PKT_SIZE)
3597 				xdp.rxq = &rxq->xdp_rxq_short;
3598 			else
3599 				xdp.rxq = &rxq->xdp_rxq_long;
3600 
3601 			xdp_set_data_meta_invalid(&xdp);
3602 
3603 			ret = mvpp2_run_xdp(port, rxq, xdp_prog, &xdp, pp, &ps);
3604 
3605 			if (ret) {
3606 				xdp_ret |= ret;
3607 				err = mvpp2_rx_refill(port, bm_pool, pp, pool);
3608 				if (err) {
3609 					netdev_err(port->dev, "failed to refill BM pools\n");
3610 					goto err_drop_frame;
3611 				}
3612 
3613 				ps.rx_packets++;
3614 				ps.rx_bytes += rx_bytes;
3615 				continue;
3616 			}
3617 		}
3618 
3619 		skb = build_skb(data, frag_size);
3620 		if (!skb) {
3621 			netdev_warn(port->dev, "skb build failed\n");
3622 			goto err_drop_frame;
3623 		}
3624 
3625 		/* If we have RX hardware timestamping enabled, grab the
3626 		 * timestamp from the queue and convert.
3627 		 */
3628 		if (mvpp22_rx_hwtstamping(port)) {
3629 			timestamp = le32_to_cpu(rx_desc->pp22.timestamp);
3630 			mvpp22_tai_tstamp(port->priv->tai, timestamp,
3631 					 skb_hwtstamps(skb));
3632 		}
3633 
3634 		err = mvpp2_rx_refill(port, bm_pool, pp, pool);
3635 		if (err) {
3636 			netdev_err(port->dev, "failed to refill BM pools\n");
3637 			dev_kfree_skb_any(skb);
3638 			goto err_drop_frame;
3639 		}
3640 
3641 		if (pp)
3642 			page_pool_release_page(pp, virt_to_page(data));
3643 		else
3644 			dma_unmap_single_attrs(dev->dev.parent, dma_addr,
3645 					       bm_pool->buf_size, DMA_FROM_DEVICE,
3646 					       DMA_ATTR_SKIP_CPU_SYNC);
3647 
3648 		ps.rx_packets++;
3649 		ps.rx_bytes += rx_bytes;
3650 
3651 		skb_reserve(skb, MVPP2_MH_SIZE + MVPP2_SKB_HEADROOM);
3652 		skb_put(skb, rx_bytes);
3653 		skb->protocol = eth_type_trans(skb, dev);
3654 		mvpp2_rx_csum(port, rx_status, skb);
3655 
3656 		napi_gro_receive(napi, skb);
3657 		continue;
3658 
3659 err_drop_frame:
3660 		dev->stats.rx_errors++;
3661 		mvpp2_rx_error(port, rx_desc);
3662 		/* Return the buffer to the pool */
3663 		if (rx_status & MVPP2_RXD_BUF_HDR)
3664 			mvpp2_buff_hdr_pool_put(port, rx_desc, pool, rx_status);
3665 		else
3666 			mvpp2_bm_pool_put(port, pool, dma_addr, phys_addr);
3667 	}
3668 
3669 	rcu_read_unlock();
3670 
3671 	if (xdp_ret & MVPP2_XDP_REDIR)
3672 		xdp_do_flush_map();
3673 
3674 	if (ps.rx_packets) {
3675 		struct mvpp2_pcpu_stats *stats = this_cpu_ptr(port->stats);
3676 
3677 		u64_stats_update_begin(&stats->syncp);
3678 		stats->rx_packets += ps.rx_packets;
3679 		stats->rx_bytes   += ps.rx_bytes;
3680 		/* xdp */
3681 		stats->xdp_redirect += ps.xdp_redirect;
3682 		stats->xdp_pass += ps.xdp_pass;
3683 		stats->xdp_drop += ps.xdp_drop;
3684 		u64_stats_update_end(&stats->syncp);
3685 	}
3686 
3687 	/* Update Rx queue management counters */
3688 	wmb();
3689 	mvpp2_rxq_status_update(port, rxq->id, rx_done, rx_done);
3690 
3691 	return rx_todo;
3692 }
3693 
3694 static inline void
tx_desc_unmap_put(struct mvpp2_port * port,struct mvpp2_tx_queue * txq,struct mvpp2_tx_desc * desc)3695 tx_desc_unmap_put(struct mvpp2_port *port, struct mvpp2_tx_queue *txq,
3696 		  struct mvpp2_tx_desc *desc)
3697 {
3698 	unsigned int thread = mvpp2_cpu_to_thread(port->priv, smp_processor_id());
3699 	struct mvpp2_txq_pcpu *txq_pcpu = per_cpu_ptr(txq->pcpu, thread);
3700 
3701 	dma_addr_t buf_dma_addr =
3702 		mvpp2_txdesc_dma_addr_get(port, desc);
3703 	size_t buf_sz =
3704 		mvpp2_txdesc_size_get(port, desc);
3705 	if (!IS_TSO_HEADER(txq_pcpu, buf_dma_addr))
3706 		dma_unmap_single(port->dev->dev.parent, buf_dma_addr,
3707 				 buf_sz, DMA_TO_DEVICE);
3708 	mvpp2_txq_desc_put(txq);
3709 }
3710 
mvpp2_txdesc_clear_ptp(struct mvpp2_port * port,struct mvpp2_tx_desc * desc)3711 static void mvpp2_txdesc_clear_ptp(struct mvpp2_port *port,
3712 				   struct mvpp2_tx_desc *desc)
3713 {
3714 	/* We only need to clear the low bits */
3715 	if (port->priv->hw_version != MVPP21)
3716 		desc->pp22.ptp_descriptor &=
3717 			cpu_to_le32(~MVPP22_PTP_DESC_MASK_LOW);
3718 }
3719 
mvpp2_tx_hw_tstamp(struct mvpp2_port * port,struct mvpp2_tx_desc * tx_desc,struct sk_buff * skb)3720 static bool mvpp2_tx_hw_tstamp(struct mvpp2_port *port,
3721 			       struct mvpp2_tx_desc *tx_desc,
3722 			       struct sk_buff *skb)
3723 {
3724 	struct mvpp2_hwtstamp_queue *queue;
3725 	unsigned int mtype, type, i;
3726 	struct ptp_header *hdr;
3727 	u64 ptpdesc;
3728 
3729 	if (port->priv->hw_version == MVPP21 ||
3730 	    port->tx_hwtstamp_type == HWTSTAMP_TX_OFF)
3731 		return false;
3732 
3733 	type = ptp_classify_raw(skb);
3734 	if (!type)
3735 		return false;
3736 
3737 	hdr = ptp_parse_header(skb, type);
3738 	if (!hdr)
3739 		return false;
3740 
3741 	skb_shinfo(skb)->tx_flags |= SKBTX_IN_PROGRESS;
3742 
3743 	ptpdesc = MVPP22_PTP_MACTIMESTAMPINGEN |
3744 		  MVPP22_PTP_ACTION_CAPTURE;
3745 	queue = &port->tx_hwtstamp_queue[0];
3746 
3747 	switch (type & PTP_CLASS_VMASK) {
3748 	case PTP_CLASS_V1:
3749 		ptpdesc |= MVPP22_PTP_PACKETFORMAT(MVPP22_PTP_PKT_FMT_PTPV1);
3750 		break;
3751 
3752 	case PTP_CLASS_V2:
3753 		ptpdesc |= MVPP22_PTP_PACKETFORMAT(MVPP22_PTP_PKT_FMT_PTPV2);
3754 		mtype = hdr->tsmt & 15;
3755 		/* Direct PTP Sync messages to queue 1 */
3756 		if (mtype == 0) {
3757 			ptpdesc |= MVPP22_PTP_TIMESTAMPQUEUESELECT;
3758 			queue = &port->tx_hwtstamp_queue[1];
3759 		}
3760 		break;
3761 	}
3762 
3763 	/* Take a reference on the skb and insert into our queue */
3764 	i = queue->next;
3765 	queue->next = (i + 1) & 31;
3766 	if (queue->skb[i])
3767 		dev_kfree_skb_any(queue->skb[i]);
3768 	queue->skb[i] = skb_get(skb);
3769 
3770 	ptpdesc |= MVPP22_PTP_TIMESTAMPENTRYID(i);
3771 
3772 	/*
3773 	 * 3:0		- PTPAction
3774 	 * 6:4		- PTPPacketFormat
3775 	 * 7		- PTP_CF_WraparoundCheckEn
3776 	 * 9:8		- IngressTimestampSeconds[1:0]
3777 	 * 10		- Reserved
3778 	 * 11		- MACTimestampingEn
3779 	 * 17:12	- PTP_TimestampQueueEntryID[5:0]
3780 	 * 18		- PTPTimestampQueueSelect
3781 	 * 19		- UDPChecksumUpdateEn
3782 	 * 27:20	- TimestampOffset
3783 	 *			PTP, NTPTransmit, OWAMP/TWAMP - L3 to PTP header
3784 	 *			NTPTs, Y.1731 - L3 to timestamp entry
3785 	 * 35:28	- UDP Checksum Offset
3786 	 *
3787 	 * stored in tx descriptor bits 75:64 (11:0) and 191:168 (35:12)
3788 	 */
3789 	tx_desc->pp22.ptp_descriptor &=
3790 		cpu_to_le32(~MVPP22_PTP_DESC_MASK_LOW);
3791 	tx_desc->pp22.ptp_descriptor |=
3792 		cpu_to_le32(ptpdesc & MVPP22_PTP_DESC_MASK_LOW);
3793 	tx_desc->pp22.buf_dma_addr_ptp &= cpu_to_le64(~0xffffff0000000000ULL);
3794 	tx_desc->pp22.buf_dma_addr_ptp |= cpu_to_le64((ptpdesc >> 12) << 40);
3795 
3796 	return true;
3797 }
3798 
3799 /* Handle tx fragmentation processing */
mvpp2_tx_frag_process(struct mvpp2_port * port,struct sk_buff * skb,struct mvpp2_tx_queue * aggr_txq,struct mvpp2_tx_queue * txq)3800 static int mvpp2_tx_frag_process(struct mvpp2_port *port, struct sk_buff *skb,
3801 				 struct mvpp2_tx_queue *aggr_txq,
3802 				 struct mvpp2_tx_queue *txq)
3803 {
3804 	unsigned int thread = mvpp2_cpu_to_thread(port->priv, smp_processor_id());
3805 	struct mvpp2_txq_pcpu *txq_pcpu = per_cpu_ptr(txq->pcpu, thread);
3806 	struct mvpp2_tx_desc *tx_desc;
3807 	int i;
3808 	dma_addr_t buf_dma_addr;
3809 
3810 	for (i = 0; i < skb_shinfo(skb)->nr_frags; i++) {
3811 		skb_frag_t *frag = &skb_shinfo(skb)->frags[i];
3812 		void *addr = skb_frag_address(frag);
3813 
3814 		tx_desc = mvpp2_txq_next_desc_get(aggr_txq);
3815 		mvpp2_txdesc_clear_ptp(port, tx_desc);
3816 		mvpp2_txdesc_txq_set(port, tx_desc, txq->id);
3817 		mvpp2_txdesc_size_set(port, tx_desc, skb_frag_size(frag));
3818 
3819 		buf_dma_addr = dma_map_single(port->dev->dev.parent, addr,
3820 					      skb_frag_size(frag),
3821 					      DMA_TO_DEVICE);
3822 		if (dma_mapping_error(port->dev->dev.parent, buf_dma_addr)) {
3823 			mvpp2_txq_desc_put(txq);
3824 			goto cleanup;
3825 		}
3826 
3827 		mvpp2_txdesc_dma_addr_set(port, tx_desc, buf_dma_addr);
3828 
3829 		if (i == (skb_shinfo(skb)->nr_frags - 1)) {
3830 			/* Last descriptor */
3831 			mvpp2_txdesc_cmd_set(port, tx_desc,
3832 					     MVPP2_TXD_L_DESC);
3833 			mvpp2_txq_inc_put(port, txq_pcpu, skb, tx_desc, MVPP2_TYPE_SKB);
3834 		} else {
3835 			/* Descriptor in the middle: Not First, Not Last */
3836 			mvpp2_txdesc_cmd_set(port, tx_desc, 0);
3837 			mvpp2_txq_inc_put(port, txq_pcpu, NULL, tx_desc, MVPP2_TYPE_SKB);
3838 		}
3839 	}
3840 
3841 	return 0;
3842 cleanup:
3843 	/* Release all descriptors that were used to map fragments of
3844 	 * this packet, as well as the corresponding DMA mappings
3845 	 */
3846 	for (i = i - 1; i >= 0; i--) {
3847 		tx_desc = txq->descs + i;
3848 		tx_desc_unmap_put(port, txq, tx_desc);
3849 	}
3850 
3851 	return -ENOMEM;
3852 }
3853 
mvpp2_tso_put_hdr(struct sk_buff * skb,struct net_device * dev,struct mvpp2_tx_queue * txq,struct mvpp2_tx_queue * aggr_txq,struct mvpp2_txq_pcpu * txq_pcpu,int hdr_sz)3854 static inline void mvpp2_tso_put_hdr(struct sk_buff *skb,
3855 				     struct net_device *dev,
3856 				     struct mvpp2_tx_queue *txq,
3857 				     struct mvpp2_tx_queue *aggr_txq,
3858 				     struct mvpp2_txq_pcpu *txq_pcpu,
3859 				     int hdr_sz)
3860 {
3861 	struct mvpp2_port *port = netdev_priv(dev);
3862 	struct mvpp2_tx_desc *tx_desc = mvpp2_txq_next_desc_get(aggr_txq);
3863 	dma_addr_t addr;
3864 
3865 	mvpp2_txdesc_clear_ptp(port, tx_desc);
3866 	mvpp2_txdesc_txq_set(port, tx_desc, txq->id);
3867 	mvpp2_txdesc_size_set(port, tx_desc, hdr_sz);
3868 
3869 	addr = txq_pcpu->tso_headers_dma +
3870 	       txq_pcpu->txq_put_index * TSO_HEADER_SIZE;
3871 	mvpp2_txdesc_dma_addr_set(port, tx_desc, addr);
3872 
3873 	mvpp2_txdesc_cmd_set(port, tx_desc, mvpp2_skb_tx_csum(port, skb) |
3874 					    MVPP2_TXD_F_DESC |
3875 					    MVPP2_TXD_PADDING_DISABLE);
3876 	mvpp2_txq_inc_put(port, txq_pcpu, NULL, tx_desc, MVPP2_TYPE_SKB);
3877 }
3878 
mvpp2_tso_put_data(struct sk_buff * skb,struct net_device * dev,struct tso_t * tso,struct mvpp2_tx_queue * txq,struct mvpp2_tx_queue * aggr_txq,struct mvpp2_txq_pcpu * txq_pcpu,int sz,bool left,bool last)3879 static inline int mvpp2_tso_put_data(struct sk_buff *skb,
3880 				     struct net_device *dev, struct tso_t *tso,
3881 				     struct mvpp2_tx_queue *txq,
3882 				     struct mvpp2_tx_queue *aggr_txq,
3883 				     struct mvpp2_txq_pcpu *txq_pcpu,
3884 				     int sz, bool left, bool last)
3885 {
3886 	struct mvpp2_port *port = netdev_priv(dev);
3887 	struct mvpp2_tx_desc *tx_desc = mvpp2_txq_next_desc_get(aggr_txq);
3888 	dma_addr_t buf_dma_addr;
3889 
3890 	mvpp2_txdesc_clear_ptp(port, tx_desc);
3891 	mvpp2_txdesc_txq_set(port, tx_desc, txq->id);
3892 	mvpp2_txdesc_size_set(port, tx_desc, sz);
3893 
3894 	buf_dma_addr = dma_map_single(dev->dev.parent, tso->data, sz,
3895 				      DMA_TO_DEVICE);
3896 	if (unlikely(dma_mapping_error(dev->dev.parent, buf_dma_addr))) {
3897 		mvpp2_txq_desc_put(txq);
3898 		return -ENOMEM;
3899 	}
3900 
3901 	mvpp2_txdesc_dma_addr_set(port, tx_desc, buf_dma_addr);
3902 
3903 	if (!left) {
3904 		mvpp2_txdesc_cmd_set(port, tx_desc, MVPP2_TXD_L_DESC);
3905 		if (last) {
3906 			mvpp2_txq_inc_put(port, txq_pcpu, skb, tx_desc, MVPP2_TYPE_SKB);
3907 			return 0;
3908 		}
3909 	} else {
3910 		mvpp2_txdesc_cmd_set(port, tx_desc, 0);
3911 	}
3912 
3913 	mvpp2_txq_inc_put(port, txq_pcpu, NULL, tx_desc, MVPP2_TYPE_SKB);
3914 	return 0;
3915 }
3916 
mvpp2_tx_tso(struct sk_buff * skb,struct net_device * dev,struct mvpp2_tx_queue * txq,struct mvpp2_tx_queue * aggr_txq,struct mvpp2_txq_pcpu * txq_pcpu)3917 static int mvpp2_tx_tso(struct sk_buff *skb, struct net_device *dev,
3918 			struct mvpp2_tx_queue *txq,
3919 			struct mvpp2_tx_queue *aggr_txq,
3920 			struct mvpp2_txq_pcpu *txq_pcpu)
3921 {
3922 	struct mvpp2_port *port = netdev_priv(dev);
3923 	int hdr_sz, i, len, descs = 0;
3924 	struct tso_t tso;
3925 
3926 	/* Check number of available descriptors */
3927 	if (mvpp2_aggr_desc_num_check(port, aggr_txq, tso_count_descs(skb)) ||
3928 	    mvpp2_txq_reserved_desc_num_proc(port, txq, txq_pcpu,
3929 					     tso_count_descs(skb)))
3930 		return 0;
3931 
3932 	hdr_sz = tso_start(skb, &tso);
3933 
3934 	len = skb->len - hdr_sz;
3935 	while (len > 0) {
3936 		int left = min_t(int, skb_shinfo(skb)->gso_size, len);
3937 		char *hdr = txq_pcpu->tso_headers +
3938 			    txq_pcpu->txq_put_index * TSO_HEADER_SIZE;
3939 
3940 		len -= left;
3941 		descs++;
3942 
3943 		tso_build_hdr(skb, hdr, &tso, left, len == 0);
3944 		mvpp2_tso_put_hdr(skb, dev, txq, aggr_txq, txq_pcpu, hdr_sz);
3945 
3946 		while (left > 0) {
3947 			int sz = min_t(int, tso.size, left);
3948 			left -= sz;
3949 			descs++;
3950 
3951 			if (mvpp2_tso_put_data(skb, dev, &tso, txq, aggr_txq,
3952 					       txq_pcpu, sz, left, len == 0))
3953 				goto release;
3954 			tso_build_data(skb, &tso, sz);
3955 		}
3956 	}
3957 
3958 	return descs;
3959 
3960 release:
3961 	for (i = descs - 1; i >= 0; i--) {
3962 		struct mvpp2_tx_desc *tx_desc = txq->descs + i;
3963 		tx_desc_unmap_put(port, txq, tx_desc);
3964 	}
3965 	return 0;
3966 }
3967 
3968 /* Main tx processing */
mvpp2_tx(struct sk_buff * skb,struct net_device * dev)3969 static netdev_tx_t mvpp2_tx(struct sk_buff *skb, struct net_device *dev)
3970 {
3971 	struct mvpp2_port *port = netdev_priv(dev);
3972 	struct mvpp2_tx_queue *txq, *aggr_txq;
3973 	struct mvpp2_txq_pcpu *txq_pcpu;
3974 	struct mvpp2_tx_desc *tx_desc;
3975 	dma_addr_t buf_dma_addr;
3976 	unsigned long flags = 0;
3977 	unsigned int thread;
3978 	int frags = 0;
3979 	u16 txq_id;
3980 	u32 tx_cmd;
3981 
3982 	thread = mvpp2_cpu_to_thread(port->priv, smp_processor_id());
3983 
3984 	txq_id = skb_get_queue_mapping(skb);
3985 	txq = port->txqs[txq_id];
3986 	txq_pcpu = per_cpu_ptr(txq->pcpu, thread);
3987 	aggr_txq = &port->priv->aggr_txqs[thread];
3988 
3989 	if (test_bit(thread, &port->priv->lock_map))
3990 		spin_lock_irqsave(&port->tx_lock[thread], flags);
3991 
3992 	if (skb_is_gso(skb)) {
3993 		frags = mvpp2_tx_tso(skb, dev, txq, aggr_txq, txq_pcpu);
3994 		goto out;
3995 	}
3996 	frags = skb_shinfo(skb)->nr_frags + 1;
3997 
3998 	/* Check number of available descriptors */
3999 	if (mvpp2_aggr_desc_num_check(port, aggr_txq, frags) ||
4000 	    mvpp2_txq_reserved_desc_num_proc(port, txq, txq_pcpu, frags)) {
4001 		frags = 0;
4002 		goto out;
4003 	}
4004 
4005 	/* Get a descriptor for the first part of the packet */
4006 	tx_desc = mvpp2_txq_next_desc_get(aggr_txq);
4007 	if (!(skb_shinfo(skb)->tx_flags & SKBTX_HW_TSTAMP) ||
4008 	    !mvpp2_tx_hw_tstamp(port, tx_desc, skb))
4009 		mvpp2_txdesc_clear_ptp(port, tx_desc);
4010 	mvpp2_txdesc_txq_set(port, tx_desc, txq->id);
4011 	mvpp2_txdesc_size_set(port, tx_desc, skb_headlen(skb));
4012 
4013 	buf_dma_addr = dma_map_single(dev->dev.parent, skb->data,
4014 				      skb_headlen(skb), DMA_TO_DEVICE);
4015 	if (unlikely(dma_mapping_error(dev->dev.parent, buf_dma_addr))) {
4016 		mvpp2_txq_desc_put(txq);
4017 		frags = 0;
4018 		goto out;
4019 	}
4020 
4021 	mvpp2_txdesc_dma_addr_set(port, tx_desc, buf_dma_addr);
4022 
4023 	tx_cmd = mvpp2_skb_tx_csum(port, skb);
4024 
4025 	if (frags == 1) {
4026 		/* First and Last descriptor */
4027 		tx_cmd |= MVPP2_TXD_F_DESC | MVPP2_TXD_L_DESC;
4028 		mvpp2_txdesc_cmd_set(port, tx_desc, tx_cmd);
4029 		mvpp2_txq_inc_put(port, txq_pcpu, skb, tx_desc, MVPP2_TYPE_SKB);
4030 	} else {
4031 		/* First but not Last */
4032 		tx_cmd |= MVPP2_TXD_F_DESC | MVPP2_TXD_PADDING_DISABLE;
4033 		mvpp2_txdesc_cmd_set(port, tx_desc, tx_cmd);
4034 		mvpp2_txq_inc_put(port, txq_pcpu, NULL, tx_desc, MVPP2_TYPE_SKB);
4035 
4036 		/* Continue with other skb fragments */
4037 		if (mvpp2_tx_frag_process(port, skb, aggr_txq, txq)) {
4038 			tx_desc_unmap_put(port, txq, tx_desc);
4039 			frags = 0;
4040 		}
4041 	}
4042 
4043 out:
4044 	if (frags > 0) {
4045 		struct mvpp2_pcpu_stats *stats = per_cpu_ptr(port->stats, thread);
4046 		struct netdev_queue *nq = netdev_get_tx_queue(dev, txq_id);
4047 
4048 		txq_pcpu->reserved_num -= frags;
4049 		txq_pcpu->count += frags;
4050 		aggr_txq->count += frags;
4051 
4052 		/* Enable transmit */
4053 		wmb();
4054 		mvpp2_aggr_txq_pend_desc_add(port, frags);
4055 
4056 		if (txq_pcpu->count >= txq_pcpu->stop_threshold)
4057 			netif_tx_stop_queue(nq);
4058 
4059 		u64_stats_update_begin(&stats->syncp);
4060 		stats->tx_packets++;
4061 		stats->tx_bytes += skb->len;
4062 		u64_stats_update_end(&stats->syncp);
4063 	} else {
4064 		dev->stats.tx_dropped++;
4065 		dev_kfree_skb_any(skb);
4066 	}
4067 
4068 	/* Finalize TX processing */
4069 	if (!port->has_tx_irqs && txq_pcpu->count >= txq->done_pkts_coal)
4070 		mvpp2_txq_done(port, txq, txq_pcpu);
4071 
4072 	/* Set the timer in case not all frags were processed */
4073 	if (!port->has_tx_irqs && txq_pcpu->count <= frags &&
4074 	    txq_pcpu->count > 0) {
4075 		struct mvpp2_port_pcpu *port_pcpu = per_cpu_ptr(port->pcpu, thread);
4076 
4077 		if (!port_pcpu->timer_scheduled) {
4078 			port_pcpu->timer_scheduled = true;
4079 			hrtimer_start(&port_pcpu->tx_done_timer,
4080 				      MVPP2_TXDONE_HRTIMER_PERIOD_NS,
4081 				      HRTIMER_MODE_REL_PINNED_SOFT);
4082 		}
4083 	}
4084 
4085 	if (test_bit(thread, &port->priv->lock_map))
4086 		spin_unlock_irqrestore(&port->tx_lock[thread], flags);
4087 
4088 	return NETDEV_TX_OK;
4089 }
4090 
mvpp2_cause_error(struct net_device * dev,int cause)4091 static inline void mvpp2_cause_error(struct net_device *dev, int cause)
4092 {
4093 	if (cause & MVPP2_CAUSE_FCS_ERR_MASK)
4094 		netdev_err(dev, "FCS error\n");
4095 	if (cause & MVPP2_CAUSE_RX_FIFO_OVERRUN_MASK)
4096 		netdev_err(dev, "rx fifo overrun error\n");
4097 	if (cause & MVPP2_CAUSE_TX_FIFO_UNDERRUN_MASK)
4098 		netdev_err(dev, "tx fifo underrun error\n");
4099 }
4100 
mvpp2_poll(struct napi_struct * napi,int budget)4101 static int mvpp2_poll(struct napi_struct *napi, int budget)
4102 {
4103 	u32 cause_rx_tx, cause_rx, cause_tx, cause_misc;
4104 	int rx_done = 0;
4105 	struct mvpp2_port *port = netdev_priv(napi->dev);
4106 	struct mvpp2_queue_vector *qv;
4107 	unsigned int thread = mvpp2_cpu_to_thread(port->priv, smp_processor_id());
4108 
4109 	qv = container_of(napi, struct mvpp2_queue_vector, napi);
4110 
4111 	/* Rx/Tx cause register
4112 	 *
4113 	 * Bits 0-15: each bit indicates received packets on the Rx queue
4114 	 * (bit 0 is for Rx queue 0).
4115 	 *
4116 	 * Bits 16-23: each bit indicates transmitted packets on the Tx queue
4117 	 * (bit 16 is for Tx queue 0).
4118 	 *
4119 	 * Each CPU has its own Rx/Tx cause register
4120 	 */
4121 	cause_rx_tx = mvpp2_thread_read_relaxed(port->priv, qv->sw_thread_id,
4122 						MVPP2_ISR_RX_TX_CAUSE_REG(port->id));
4123 
4124 	cause_misc = cause_rx_tx & MVPP2_CAUSE_MISC_SUM_MASK;
4125 	if (cause_misc) {
4126 		mvpp2_cause_error(port->dev, cause_misc);
4127 
4128 		/* Clear the cause register */
4129 		mvpp2_write(port->priv, MVPP2_ISR_MISC_CAUSE_REG, 0);
4130 		mvpp2_thread_write(port->priv, thread,
4131 				   MVPP2_ISR_RX_TX_CAUSE_REG(port->id),
4132 				   cause_rx_tx & ~MVPP2_CAUSE_MISC_SUM_MASK);
4133 	}
4134 
4135 	if (port->has_tx_irqs) {
4136 		cause_tx = cause_rx_tx & MVPP2_CAUSE_TXQ_OCCUP_DESC_ALL_MASK;
4137 		if (cause_tx) {
4138 			cause_tx >>= MVPP2_CAUSE_TXQ_OCCUP_DESC_ALL_OFFSET;
4139 			mvpp2_tx_done(port, cause_tx, qv->sw_thread_id);
4140 		}
4141 	}
4142 
4143 	/* Process RX packets */
4144 	cause_rx = cause_rx_tx &
4145 		   MVPP2_CAUSE_RXQ_OCCUP_DESC_ALL_MASK(port->priv->hw_version);
4146 	cause_rx <<= qv->first_rxq;
4147 	cause_rx |= qv->pending_cause_rx;
4148 	while (cause_rx && budget > 0) {
4149 		int count;
4150 		struct mvpp2_rx_queue *rxq;
4151 
4152 		rxq = mvpp2_get_rx_queue(port, cause_rx);
4153 		if (!rxq)
4154 			break;
4155 
4156 		count = mvpp2_rx(port, napi, budget, rxq);
4157 		rx_done += count;
4158 		budget -= count;
4159 		if (budget > 0) {
4160 			/* Clear the bit associated to this Rx queue
4161 			 * so that next iteration will continue from
4162 			 * the next Rx queue.
4163 			 */
4164 			cause_rx &= ~(1 << rxq->logic_rxq);
4165 		}
4166 	}
4167 
4168 	if (budget > 0) {
4169 		cause_rx = 0;
4170 		napi_complete_done(napi, rx_done);
4171 
4172 		mvpp2_qvec_interrupt_enable(qv);
4173 	}
4174 	qv->pending_cause_rx = cause_rx;
4175 	return rx_done;
4176 }
4177 
mvpp22_mode_reconfigure(struct mvpp2_port * port)4178 static void mvpp22_mode_reconfigure(struct mvpp2_port *port)
4179 {
4180 	u32 ctrl3;
4181 
4182 	/* Set the GMAC & XLG MAC in reset */
4183 	mvpp2_mac_reset_assert(port);
4184 
4185 	/* Set the MPCS and XPCS in reset */
4186 	mvpp22_pcs_reset_assert(port);
4187 
4188 	/* comphy reconfiguration */
4189 	mvpp22_comphy_init(port);
4190 
4191 	/* gop reconfiguration */
4192 	mvpp22_gop_init(port);
4193 
4194 	mvpp22_pcs_reset_deassert(port);
4195 
4196 	if (mvpp2_port_supports_xlg(port)) {
4197 		ctrl3 = readl(port->base + MVPP22_XLG_CTRL3_REG);
4198 		ctrl3 &= ~MVPP22_XLG_CTRL3_MACMODESELECT_MASK;
4199 
4200 		if (mvpp2_is_xlg(port->phy_interface))
4201 			ctrl3 |= MVPP22_XLG_CTRL3_MACMODESELECT_10G;
4202 		else
4203 			ctrl3 |= MVPP22_XLG_CTRL3_MACMODESELECT_GMAC;
4204 
4205 		writel(ctrl3, port->base + MVPP22_XLG_CTRL3_REG);
4206 	}
4207 
4208 	if (mvpp2_port_supports_xlg(port) && mvpp2_is_xlg(port->phy_interface))
4209 		mvpp2_xlg_max_rx_size_set(port);
4210 	else
4211 		mvpp2_gmac_max_rx_size_set(port);
4212 }
4213 
4214 /* Set hw internals when starting port */
mvpp2_start_dev(struct mvpp2_port * port)4215 static void mvpp2_start_dev(struct mvpp2_port *port)
4216 {
4217 	int i;
4218 
4219 	mvpp2_txp_max_tx_size_set(port);
4220 
4221 	for (i = 0; i < port->nqvecs; i++)
4222 		napi_enable(&port->qvecs[i].napi);
4223 
4224 	/* Enable interrupts on all threads */
4225 	mvpp2_interrupts_enable(port);
4226 
4227 	if (port->priv->hw_version == MVPP22)
4228 		mvpp22_mode_reconfigure(port);
4229 
4230 	if (port->phylink) {
4231 		phylink_start(port->phylink);
4232 	} else {
4233 		mvpp2_acpi_start(port);
4234 	}
4235 
4236 	netif_tx_start_all_queues(port->dev);
4237 
4238 	clear_bit(0, &port->state);
4239 }
4240 
4241 /* Set hw internals when stopping port */
mvpp2_stop_dev(struct mvpp2_port * port)4242 static void mvpp2_stop_dev(struct mvpp2_port *port)
4243 {
4244 	int i;
4245 
4246 	set_bit(0, &port->state);
4247 
4248 	/* Disable interrupts on all threads */
4249 	mvpp2_interrupts_disable(port);
4250 
4251 	for (i = 0; i < port->nqvecs; i++)
4252 		napi_disable(&port->qvecs[i].napi);
4253 
4254 	if (port->phylink)
4255 		phylink_stop(port->phylink);
4256 	phy_power_off(port->comphy);
4257 }
4258 
mvpp2_check_ringparam_valid(struct net_device * dev,struct ethtool_ringparam * ring)4259 static int mvpp2_check_ringparam_valid(struct net_device *dev,
4260 				       struct ethtool_ringparam *ring)
4261 {
4262 	u16 new_rx_pending = ring->rx_pending;
4263 	u16 new_tx_pending = ring->tx_pending;
4264 
4265 	if (ring->rx_pending == 0 || ring->tx_pending == 0)
4266 		return -EINVAL;
4267 
4268 	if (ring->rx_pending > MVPP2_MAX_RXD_MAX)
4269 		new_rx_pending = MVPP2_MAX_RXD_MAX;
4270 	else if (!IS_ALIGNED(ring->rx_pending, 16))
4271 		new_rx_pending = ALIGN(ring->rx_pending, 16);
4272 
4273 	if (ring->tx_pending > MVPP2_MAX_TXD_MAX)
4274 		new_tx_pending = MVPP2_MAX_TXD_MAX;
4275 	else if (!IS_ALIGNED(ring->tx_pending, 32))
4276 		new_tx_pending = ALIGN(ring->tx_pending, 32);
4277 
4278 	/* The Tx ring size cannot be smaller than the minimum number of
4279 	 * descriptors needed for TSO.
4280 	 */
4281 	if (new_tx_pending < MVPP2_MAX_SKB_DESCS)
4282 		new_tx_pending = ALIGN(MVPP2_MAX_SKB_DESCS, 32);
4283 
4284 	if (ring->rx_pending != new_rx_pending) {
4285 		netdev_info(dev, "illegal Rx ring size value %d, round to %d\n",
4286 			    ring->rx_pending, new_rx_pending);
4287 		ring->rx_pending = new_rx_pending;
4288 	}
4289 
4290 	if (ring->tx_pending != new_tx_pending) {
4291 		netdev_info(dev, "illegal Tx ring size value %d, round to %d\n",
4292 			    ring->tx_pending, new_tx_pending);
4293 		ring->tx_pending = new_tx_pending;
4294 	}
4295 
4296 	return 0;
4297 }
4298 
mvpp21_get_mac_address(struct mvpp2_port * port,unsigned char * addr)4299 static void mvpp21_get_mac_address(struct mvpp2_port *port, unsigned char *addr)
4300 {
4301 	u32 mac_addr_l, mac_addr_m, mac_addr_h;
4302 
4303 	mac_addr_l = readl(port->base + MVPP2_GMAC_CTRL_1_REG);
4304 	mac_addr_m = readl(port->priv->lms_base + MVPP2_SRC_ADDR_MIDDLE);
4305 	mac_addr_h = readl(port->priv->lms_base + MVPP2_SRC_ADDR_HIGH);
4306 	addr[0] = (mac_addr_h >> 24) & 0xFF;
4307 	addr[1] = (mac_addr_h >> 16) & 0xFF;
4308 	addr[2] = (mac_addr_h >> 8) & 0xFF;
4309 	addr[3] = mac_addr_h & 0xFF;
4310 	addr[4] = mac_addr_m & 0xFF;
4311 	addr[5] = (mac_addr_l >> MVPP2_GMAC_SA_LOW_OFFS) & 0xFF;
4312 }
4313 
mvpp2_irqs_init(struct mvpp2_port * port)4314 static int mvpp2_irqs_init(struct mvpp2_port *port)
4315 {
4316 	int err, i;
4317 
4318 	for (i = 0; i < port->nqvecs; i++) {
4319 		struct mvpp2_queue_vector *qv = port->qvecs + i;
4320 
4321 		if (qv->type == MVPP2_QUEUE_VECTOR_PRIVATE) {
4322 			qv->mask = kzalloc(cpumask_size(), GFP_KERNEL);
4323 			if (!qv->mask) {
4324 				err = -ENOMEM;
4325 				goto err;
4326 			}
4327 
4328 			irq_set_status_flags(qv->irq, IRQ_NO_BALANCING);
4329 		}
4330 
4331 		err = request_irq(qv->irq, mvpp2_isr, 0, port->dev->name, qv);
4332 		if (err)
4333 			goto err;
4334 
4335 		if (qv->type == MVPP2_QUEUE_VECTOR_PRIVATE) {
4336 			unsigned int cpu;
4337 
4338 			for_each_present_cpu(cpu) {
4339 				if (mvpp2_cpu_to_thread(port->priv, cpu) ==
4340 				    qv->sw_thread_id)
4341 					cpumask_set_cpu(cpu, qv->mask);
4342 			}
4343 
4344 			irq_set_affinity_hint(qv->irq, qv->mask);
4345 		}
4346 	}
4347 
4348 	return 0;
4349 err:
4350 	for (i = 0; i < port->nqvecs; i++) {
4351 		struct mvpp2_queue_vector *qv = port->qvecs + i;
4352 
4353 		irq_set_affinity_hint(qv->irq, NULL);
4354 		kfree(qv->mask);
4355 		qv->mask = NULL;
4356 		free_irq(qv->irq, qv);
4357 	}
4358 
4359 	return err;
4360 }
4361 
mvpp2_irqs_deinit(struct mvpp2_port * port)4362 static void mvpp2_irqs_deinit(struct mvpp2_port *port)
4363 {
4364 	int i;
4365 
4366 	for (i = 0; i < port->nqvecs; i++) {
4367 		struct mvpp2_queue_vector *qv = port->qvecs + i;
4368 
4369 		irq_set_affinity_hint(qv->irq, NULL);
4370 		kfree(qv->mask);
4371 		qv->mask = NULL;
4372 		irq_clear_status_flags(qv->irq, IRQ_NO_BALANCING);
4373 		free_irq(qv->irq, qv);
4374 	}
4375 }
4376 
mvpp22_rss_is_supported(void)4377 static bool mvpp22_rss_is_supported(void)
4378 {
4379 	return queue_mode == MVPP2_QDIST_MULTI_MODE;
4380 }
4381 
mvpp2_open(struct net_device * dev)4382 static int mvpp2_open(struct net_device *dev)
4383 {
4384 	struct mvpp2_port *port = netdev_priv(dev);
4385 	struct mvpp2 *priv = port->priv;
4386 	unsigned char mac_bcast[ETH_ALEN] = {
4387 			0xff, 0xff, 0xff, 0xff, 0xff, 0xff };
4388 	bool valid = false;
4389 	int err;
4390 
4391 	err = mvpp2_prs_mac_da_accept(port, mac_bcast, true);
4392 	if (err) {
4393 		netdev_err(dev, "mvpp2_prs_mac_da_accept BC failed\n");
4394 		return err;
4395 	}
4396 	err = mvpp2_prs_mac_da_accept(port, dev->dev_addr, true);
4397 	if (err) {
4398 		netdev_err(dev, "mvpp2_prs_mac_da_accept own addr failed\n");
4399 		return err;
4400 	}
4401 	err = mvpp2_prs_tag_mode_set(port->priv, port->id, MVPP2_TAG_TYPE_MH);
4402 	if (err) {
4403 		netdev_err(dev, "mvpp2_prs_tag_mode_set failed\n");
4404 		return err;
4405 	}
4406 	err = mvpp2_prs_def_flow(port);
4407 	if (err) {
4408 		netdev_err(dev, "mvpp2_prs_def_flow failed\n");
4409 		return err;
4410 	}
4411 
4412 	/* Allocate the Rx/Tx queues */
4413 	err = mvpp2_setup_rxqs(port);
4414 	if (err) {
4415 		netdev_err(port->dev, "cannot allocate Rx queues\n");
4416 		return err;
4417 	}
4418 
4419 	err = mvpp2_setup_txqs(port);
4420 	if (err) {
4421 		netdev_err(port->dev, "cannot allocate Tx queues\n");
4422 		goto err_cleanup_rxqs;
4423 	}
4424 
4425 	err = mvpp2_irqs_init(port);
4426 	if (err) {
4427 		netdev_err(port->dev, "cannot init IRQs\n");
4428 		goto err_cleanup_txqs;
4429 	}
4430 
4431 	/* Phylink isn't supported yet in ACPI mode */
4432 	if (port->of_node) {
4433 		err = phylink_of_phy_connect(port->phylink, port->of_node, 0);
4434 		if (err) {
4435 			netdev_err(port->dev, "could not attach PHY (%d)\n",
4436 				   err);
4437 			goto err_free_irq;
4438 		}
4439 
4440 		valid = true;
4441 	}
4442 
4443 	if (priv->hw_version == MVPP22 && port->port_irq) {
4444 		err = request_irq(port->port_irq, mvpp2_port_isr, 0,
4445 				  dev->name, port);
4446 		if (err) {
4447 			netdev_err(port->dev,
4448 				   "cannot request port link/ptp IRQ %d\n",
4449 				   port->port_irq);
4450 			goto err_free_irq;
4451 		}
4452 
4453 		mvpp22_gop_setup_irq(port);
4454 
4455 		/* In default link is down */
4456 		netif_carrier_off(port->dev);
4457 
4458 		valid = true;
4459 	} else {
4460 		port->port_irq = 0;
4461 	}
4462 
4463 	if (!valid) {
4464 		netdev_err(port->dev,
4465 			   "invalid configuration: no dt or link IRQ");
4466 		err = -ENOENT;
4467 		goto err_free_irq;
4468 	}
4469 
4470 	/* Unmask interrupts on all CPUs */
4471 	on_each_cpu(mvpp2_interrupts_unmask, port, 1);
4472 	mvpp2_shared_interrupt_mask_unmask(port, false);
4473 
4474 	mvpp2_start_dev(port);
4475 
4476 	/* Start hardware statistics gathering */
4477 	queue_delayed_work(priv->stats_queue, &port->stats_work,
4478 			   MVPP2_MIB_COUNTERS_STATS_DELAY);
4479 
4480 	return 0;
4481 
4482 err_free_irq:
4483 	mvpp2_irqs_deinit(port);
4484 err_cleanup_txqs:
4485 	mvpp2_cleanup_txqs(port);
4486 err_cleanup_rxqs:
4487 	mvpp2_cleanup_rxqs(port);
4488 	return err;
4489 }
4490 
mvpp2_stop(struct net_device * dev)4491 static int mvpp2_stop(struct net_device *dev)
4492 {
4493 	struct mvpp2_port *port = netdev_priv(dev);
4494 	struct mvpp2_port_pcpu *port_pcpu;
4495 	unsigned int thread;
4496 
4497 	mvpp2_stop_dev(port);
4498 
4499 	/* Mask interrupts on all threads */
4500 	on_each_cpu(mvpp2_interrupts_mask, port, 1);
4501 	mvpp2_shared_interrupt_mask_unmask(port, true);
4502 
4503 	if (port->phylink)
4504 		phylink_disconnect_phy(port->phylink);
4505 	if (port->port_irq)
4506 		free_irq(port->port_irq, port);
4507 
4508 	mvpp2_irqs_deinit(port);
4509 	if (!port->has_tx_irqs) {
4510 		for (thread = 0; thread < port->priv->nthreads; thread++) {
4511 			port_pcpu = per_cpu_ptr(port->pcpu, thread);
4512 
4513 			hrtimer_cancel(&port_pcpu->tx_done_timer);
4514 			port_pcpu->timer_scheduled = false;
4515 		}
4516 	}
4517 	mvpp2_cleanup_rxqs(port);
4518 	mvpp2_cleanup_txqs(port);
4519 
4520 	cancel_delayed_work_sync(&port->stats_work);
4521 
4522 	mvpp2_mac_reset_assert(port);
4523 	mvpp22_pcs_reset_assert(port);
4524 
4525 	return 0;
4526 }
4527 
mvpp2_prs_mac_da_accept_list(struct mvpp2_port * port,struct netdev_hw_addr_list * list)4528 static int mvpp2_prs_mac_da_accept_list(struct mvpp2_port *port,
4529 					struct netdev_hw_addr_list *list)
4530 {
4531 	struct netdev_hw_addr *ha;
4532 	int ret;
4533 
4534 	netdev_hw_addr_list_for_each(ha, list) {
4535 		ret = mvpp2_prs_mac_da_accept(port, ha->addr, true);
4536 		if (ret)
4537 			return ret;
4538 	}
4539 
4540 	return 0;
4541 }
4542 
mvpp2_set_rx_promisc(struct mvpp2_port * port,bool enable)4543 static void mvpp2_set_rx_promisc(struct mvpp2_port *port, bool enable)
4544 {
4545 	if (!enable && (port->dev->features & NETIF_F_HW_VLAN_CTAG_FILTER))
4546 		mvpp2_prs_vid_enable_filtering(port);
4547 	else
4548 		mvpp2_prs_vid_disable_filtering(port);
4549 
4550 	mvpp2_prs_mac_promisc_set(port->priv, port->id,
4551 				  MVPP2_PRS_L2_UNI_CAST, enable);
4552 
4553 	mvpp2_prs_mac_promisc_set(port->priv, port->id,
4554 				  MVPP2_PRS_L2_MULTI_CAST, enable);
4555 }
4556 
mvpp2_set_rx_mode(struct net_device * dev)4557 static void mvpp2_set_rx_mode(struct net_device *dev)
4558 {
4559 	struct mvpp2_port *port = netdev_priv(dev);
4560 
4561 	/* Clear the whole UC and MC list */
4562 	mvpp2_prs_mac_del_all(port);
4563 
4564 	if (dev->flags & IFF_PROMISC) {
4565 		mvpp2_set_rx_promisc(port, true);
4566 		return;
4567 	}
4568 
4569 	mvpp2_set_rx_promisc(port, false);
4570 
4571 	if (netdev_uc_count(dev) > MVPP2_PRS_MAC_UC_FILT_MAX ||
4572 	    mvpp2_prs_mac_da_accept_list(port, &dev->uc))
4573 		mvpp2_prs_mac_promisc_set(port->priv, port->id,
4574 					  MVPP2_PRS_L2_UNI_CAST, true);
4575 
4576 	if (dev->flags & IFF_ALLMULTI) {
4577 		mvpp2_prs_mac_promisc_set(port->priv, port->id,
4578 					  MVPP2_PRS_L2_MULTI_CAST, true);
4579 		return;
4580 	}
4581 
4582 	if (netdev_mc_count(dev) > MVPP2_PRS_MAC_MC_FILT_MAX ||
4583 	    mvpp2_prs_mac_da_accept_list(port, &dev->mc))
4584 		mvpp2_prs_mac_promisc_set(port->priv, port->id,
4585 					  MVPP2_PRS_L2_MULTI_CAST, true);
4586 }
4587 
mvpp2_set_mac_address(struct net_device * dev,void * p)4588 static int mvpp2_set_mac_address(struct net_device *dev, void *p)
4589 {
4590 	const struct sockaddr *addr = p;
4591 	int err;
4592 
4593 	if (!is_valid_ether_addr(addr->sa_data))
4594 		return -EADDRNOTAVAIL;
4595 
4596 	err = mvpp2_prs_update_mac_da(dev, addr->sa_data);
4597 	if (err) {
4598 		/* Reconfigure parser accept the original MAC address */
4599 		mvpp2_prs_update_mac_da(dev, dev->dev_addr);
4600 		netdev_err(dev, "failed to change MAC address\n");
4601 	}
4602 	return err;
4603 }
4604 
4605 /* Shut down all the ports, reconfigure the pools as percpu or shared,
4606  * then bring up again all ports.
4607  */
mvpp2_bm_switch_buffers(struct mvpp2 * priv,bool percpu)4608 static int mvpp2_bm_switch_buffers(struct mvpp2 *priv, bool percpu)
4609 {
4610 	int numbufs = MVPP2_BM_POOLS_NUM, i;
4611 	struct mvpp2_port *port = NULL;
4612 	bool status[MVPP2_MAX_PORTS];
4613 
4614 	for (i = 0; i < priv->port_count; i++) {
4615 		port = priv->port_list[i];
4616 		status[i] = netif_running(port->dev);
4617 		if (status[i])
4618 			mvpp2_stop(port->dev);
4619 	}
4620 
4621 	/* nrxqs is the same for all ports */
4622 	if (priv->percpu_pools)
4623 		numbufs = port->nrxqs * 2;
4624 
4625 	for (i = 0; i < numbufs; i++)
4626 		mvpp2_bm_pool_destroy(port->dev->dev.parent, priv, &priv->bm_pools[i]);
4627 
4628 	devm_kfree(port->dev->dev.parent, priv->bm_pools);
4629 	priv->percpu_pools = percpu;
4630 	mvpp2_bm_init(port->dev->dev.parent, priv);
4631 
4632 	for (i = 0; i < priv->port_count; i++) {
4633 		port = priv->port_list[i];
4634 		mvpp2_swf_bm_pool_init(port);
4635 		if (status[i])
4636 			mvpp2_open(port->dev);
4637 	}
4638 
4639 	return 0;
4640 }
4641 
mvpp2_change_mtu(struct net_device * dev,int mtu)4642 static int mvpp2_change_mtu(struct net_device *dev, int mtu)
4643 {
4644 	struct mvpp2_port *port = netdev_priv(dev);
4645 	bool running = netif_running(dev);
4646 	struct mvpp2 *priv = port->priv;
4647 	int err;
4648 
4649 	if (!IS_ALIGNED(MVPP2_RX_PKT_SIZE(mtu), 8)) {
4650 		netdev_info(dev, "illegal MTU value %d, round to %d\n", mtu,
4651 			    ALIGN(MVPP2_RX_PKT_SIZE(mtu), 8));
4652 		mtu = ALIGN(MVPP2_RX_PKT_SIZE(mtu), 8);
4653 	}
4654 
4655 	if (MVPP2_RX_PKT_SIZE(mtu) > MVPP2_BM_LONG_PKT_SIZE) {
4656 		if (port->xdp_prog) {
4657 			netdev_err(dev, "Jumbo frames are not supported with XDP\n");
4658 			return -EINVAL;
4659 		}
4660 		if (priv->percpu_pools) {
4661 			netdev_warn(dev, "mtu %d too high, switching to shared buffers", mtu);
4662 			mvpp2_bm_switch_buffers(priv, false);
4663 		}
4664 	} else {
4665 		bool jumbo = false;
4666 		int i;
4667 
4668 		for (i = 0; i < priv->port_count; i++)
4669 			if (priv->port_list[i] != port &&
4670 			    MVPP2_RX_PKT_SIZE(priv->port_list[i]->dev->mtu) >
4671 			    MVPP2_BM_LONG_PKT_SIZE) {
4672 				jumbo = true;
4673 				break;
4674 			}
4675 
4676 		/* No port is using jumbo frames */
4677 		if (!jumbo) {
4678 			dev_info(port->dev->dev.parent,
4679 				 "all ports have a low MTU, switching to per-cpu buffers");
4680 			mvpp2_bm_switch_buffers(priv, true);
4681 		}
4682 	}
4683 
4684 	if (running)
4685 		mvpp2_stop_dev(port);
4686 
4687 	err = mvpp2_bm_update_mtu(dev, mtu);
4688 	if (err) {
4689 		netdev_err(dev, "failed to change MTU\n");
4690 		/* Reconfigure BM to the original MTU */
4691 		mvpp2_bm_update_mtu(dev, dev->mtu);
4692 	} else {
4693 		port->pkt_size =  MVPP2_RX_PKT_SIZE(mtu);
4694 	}
4695 
4696 	if (running) {
4697 		mvpp2_start_dev(port);
4698 		mvpp2_egress_enable(port);
4699 		mvpp2_ingress_enable(port);
4700 	}
4701 
4702 	return err;
4703 }
4704 
mvpp2_check_pagepool_dma(struct mvpp2_port * port)4705 static int mvpp2_check_pagepool_dma(struct mvpp2_port *port)
4706 {
4707 	enum dma_data_direction dma_dir = DMA_FROM_DEVICE;
4708 	struct mvpp2 *priv = port->priv;
4709 	int err = -1, i;
4710 
4711 	if (!priv->percpu_pools)
4712 		return err;
4713 
4714 	if (!priv->page_pool[0])
4715 		return -ENOMEM;
4716 
4717 	for (i = 0; i < priv->port_count; i++) {
4718 		port = priv->port_list[i];
4719 		if (port->xdp_prog) {
4720 			dma_dir = DMA_BIDIRECTIONAL;
4721 			break;
4722 		}
4723 	}
4724 
4725 	/* All pools are equal in terms of DMA direction */
4726 	if (priv->page_pool[0]->p.dma_dir != dma_dir)
4727 		err = mvpp2_bm_switch_buffers(priv, true);
4728 
4729 	return err;
4730 }
4731 
4732 static void
mvpp2_get_stats64(struct net_device * dev,struct rtnl_link_stats64 * stats)4733 mvpp2_get_stats64(struct net_device *dev, struct rtnl_link_stats64 *stats)
4734 {
4735 	struct mvpp2_port *port = netdev_priv(dev);
4736 	unsigned int start;
4737 	unsigned int cpu;
4738 
4739 	for_each_possible_cpu(cpu) {
4740 		struct mvpp2_pcpu_stats *cpu_stats;
4741 		u64 rx_packets;
4742 		u64 rx_bytes;
4743 		u64 tx_packets;
4744 		u64 tx_bytes;
4745 
4746 		cpu_stats = per_cpu_ptr(port->stats, cpu);
4747 		do {
4748 			start = u64_stats_fetch_begin_irq(&cpu_stats->syncp);
4749 			rx_packets = cpu_stats->rx_packets;
4750 			rx_bytes   = cpu_stats->rx_bytes;
4751 			tx_packets = cpu_stats->tx_packets;
4752 			tx_bytes   = cpu_stats->tx_bytes;
4753 		} while (u64_stats_fetch_retry_irq(&cpu_stats->syncp, start));
4754 
4755 		stats->rx_packets += rx_packets;
4756 		stats->rx_bytes   += rx_bytes;
4757 		stats->tx_packets += tx_packets;
4758 		stats->tx_bytes   += tx_bytes;
4759 	}
4760 
4761 	stats->rx_errors	= dev->stats.rx_errors;
4762 	stats->rx_dropped	= dev->stats.rx_dropped;
4763 	stats->tx_dropped	= dev->stats.tx_dropped;
4764 }
4765 
mvpp2_set_ts_config(struct mvpp2_port * port,struct ifreq * ifr)4766 static int mvpp2_set_ts_config(struct mvpp2_port *port, struct ifreq *ifr)
4767 {
4768 	struct hwtstamp_config config;
4769 	void __iomem *ptp;
4770 	u32 gcr, int_mask;
4771 
4772 	if (copy_from_user(&config, ifr->ifr_data, sizeof(config)))
4773 		return -EFAULT;
4774 
4775 	if (config.flags)
4776 		return -EINVAL;
4777 
4778 	if (config.tx_type != HWTSTAMP_TX_OFF &&
4779 	    config.tx_type != HWTSTAMP_TX_ON)
4780 		return -ERANGE;
4781 
4782 	ptp = port->priv->iface_base + MVPP22_PTP_BASE(port->gop_id);
4783 
4784 	int_mask = gcr = 0;
4785 	if (config.tx_type != HWTSTAMP_TX_OFF) {
4786 		gcr |= MVPP22_PTP_GCR_TSU_ENABLE | MVPP22_PTP_GCR_TX_RESET;
4787 		int_mask |= MVPP22_PTP_INT_MASK_QUEUE1 |
4788 			    MVPP22_PTP_INT_MASK_QUEUE0;
4789 	}
4790 
4791 	/* It seems we must also release the TX reset when enabling the TSU */
4792 	if (config.rx_filter != HWTSTAMP_FILTER_NONE)
4793 		gcr |= MVPP22_PTP_GCR_TSU_ENABLE | MVPP22_PTP_GCR_RX_RESET |
4794 		       MVPP22_PTP_GCR_TX_RESET;
4795 
4796 	if (gcr & MVPP22_PTP_GCR_TSU_ENABLE)
4797 		mvpp22_tai_start(port->priv->tai);
4798 
4799 	if (config.rx_filter != HWTSTAMP_FILTER_NONE) {
4800 		config.rx_filter = HWTSTAMP_FILTER_ALL;
4801 		mvpp2_modify(ptp + MVPP22_PTP_GCR,
4802 			     MVPP22_PTP_GCR_RX_RESET |
4803 			     MVPP22_PTP_GCR_TX_RESET |
4804 			     MVPP22_PTP_GCR_TSU_ENABLE, gcr);
4805 		port->rx_hwtstamp = true;
4806 	} else {
4807 		port->rx_hwtstamp = false;
4808 		mvpp2_modify(ptp + MVPP22_PTP_GCR,
4809 			     MVPP22_PTP_GCR_RX_RESET |
4810 			     MVPP22_PTP_GCR_TX_RESET |
4811 			     MVPP22_PTP_GCR_TSU_ENABLE, gcr);
4812 	}
4813 
4814 	mvpp2_modify(ptp + MVPP22_PTP_INT_MASK,
4815 		     MVPP22_PTP_INT_MASK_QUEUE1 |
4816 		     MVPP22_PTP_INT_MASK_QUEUE0, int_mask);
4817 
4818 	if (!(gcr & MVPP22_PTP_GCR_TSU_ENABLE))
4819 		mvpp22_tai_stop(port->priv->tai);
4820 
4821 	port->tx_hwtstamp_type = config.tx_type;
4822 
4823 	if (copy_to_user(ifr->ifr_data, &config, sizeof(config)))
4824 		return -EFAULT;
4825 
4826 	return 0;
4827 }
4828 
mvpp2_get_ts_config(struct mvpp2_port * port,struct ifreq * ifr)4829 static int mvpp2_get_ts_config(struct mvpp2_port *port, struct ifreq *ifr)
4830 {
4831 	struct hwtstamp_config config;
4832 
4833 	memset(&config, 0, sizeof(config));
4834 
4835 	config.tx_type = port->tx_hwtstamp_type;
4836 	config.rx_filter = port->rx_hwtstamp ?
4837 		HWTSTAMP_FILTER_ALL : HWTSTAMP_FILTER_NONE;
4838 
4839 	if (copy_to_user(ifr->ifr_data, &config, sizeof(config)))
4840 		return -EFAULT;
4841 
4842 	return 0;
4843 }
4844 
mvpp2_ethtool_get_ts_info(struct net_device * dev,struct ethtool_ts_info * info)4845 static int mvpp2_ethtool_get_ts_info(struct net_device *dev,
4846 				     struct ethtool_ts_info *info)
4847 {
4848 	struct mvpp2_port *port = netdev_priv(dev);
4849 
4850 	if (!port->hwtstamp)
4851 		return -EOPNOTSUPP;
4852 
4853 	info->phc_index = mvpp22_tai_ptp_clock_index(port->priv->tai);
4854 	info->so_timestamping = SOF_TIMESTAMPING_TX_SOFTWARE |
4855 				SOF_TIMESTAMPING_RX_SOFTWARE |
4856 				SOF_TIMESTAMPING_SOFTWARE |
4857 				SOF_TIMESTAMPING_TX_HARDWARE |
4858 				SOF_TIMESTAMPING_RX_HARDWARE |
4859 				SOF_TIMESTAMPING_RAW_HARDWARE;
4860 	info->tx_types = BIT(HWTSTAMP_TX_OFF) |
4861 			 BIT(HWTSTAMP_TX_ON);
4862 	info->rx_filters = BIT(HWTSTAMP_FILTER_NONE) |
4863 			   BIT(HWTSTAMP_FILTER_ALL);
4864 
4865 	return 0;
4866 }
4867 
mvpp2_ioctl(struct net_device * dev,struct ifreq * ifr,int cmd)4868 static int mvpp2_ioctl(struct net_device *dev, struct ifreq *ifr, int cmd)
4869 {
4870 	struct mvpp2_port *port = netdev_priv(dev);
4871 
4872 	switch (cmd) {
4873 	case SIOCSHWTSTAMP:
4874 		if (port->hwtstamp)
4875 			return mvpp2_set_ts_config(port, ifr);
4876 		break;
4877 
4878 	case SIOCGHWTSTAMP:
4879 		if (port->hwtstamp)
4880 			return mvpp2_get_ts_config(port, ifr);
4881 		break;
4882 	}
4883 
4884 	if (!port->phylink)
4885 		return -ENOTSUPP;
4886 
4887 	return phylink_mii_ioctl(port->phylink, ifr, cmd);
4888 }
4889 
mvpp2_vlan_rx_add_vid(struct net_device * dev,__be16 proto,u16 vid)4890 static int mvpp2_vlan_rx_add_vid(struct net_device *dev, __be16 proto, u16 vid)
4891 {
4892 	struct mvpp2_port *port = netdev_priv(dev);
4893 	int ret;
4894 
4895 	ret = mvpp2_prs_vid_entry_add(port, vid);
4896 	if (ret)
4897 		netdev_err(dev, "rx-vlan-filter offloading cannot accept more than %d VIDs per port\n",
4898 			   MVPP2_PRS_VLAN_FILT_MAX - 1);
4899 	return ret;
4900 }
4901 
mvpp2_vlan_rx_kill_vid(struct net_device * dev,__be16 proto,u16 vid)4902 static int mvpp2_vlan_rx_kill_vid(struct net_device *dev, __be16 proto, u16 vid)
4903 {
4904 	struct mvpp2_port *port = netdev_priv(dev);
4905 
4906 	mvpp2_prs_vid_entry_remove(port, vid);
4907 	return 0;
4908 }
4909 
mvpp2_set_features(struct net_device * dev,netdev_features_t features)4910 static int mvpp2_set_features(struct net_device *dev,
4911 			      netdev_features_t features)
4912 {
4913 	netdev_features_t changed = dev->features ^ features;
4914 	struct mvpp2_port *port = netdev_priv(dev);
4915 
4916 	if (changed & NETIF_F_HW_VLAN_CTAG_FILTER) {
4917 		if (features & NETIF_F_HW_VLAN_CTAG_FILTER) {
4918 			mvpp2_prs_vid_enable_filtering(port);
4919 		} else {
4920 			/* Invalidate all registered VID filters for this
4921 			 * port
4922 			 */
4923 			mvpp2_prs_vid_remove_all(port);
4924 
4925 			mvpp2_prs_vid_disable_filtering(port);
4926 		}
4927 	}
4928 
4929 	if (changed & NETIF_F_RXHASH) {
4930 		if (features & NETIF_F_RXHASH)
4931 			mvpp22_port_rss_enable(port);
4932 		else
4933 			mvpp22_port_rss_disable(port);
4934 	}
4935 
4936 	return 0;
4937 }
4938 
mvpp2_xdp_setup(struct mvpp2_port * port,struct netdev_bpf * bpf)4939 static int mvpp2_xdp_setup(struct mvpp2_port *port, struct netdev_bpf *bpf)
4940 {
4941 	struct bpf_prog *prog = bpf->prog, *old_prog;
4942 	bool running = netif_running(port->dev);
4943 	bool reset = !prog != !port->xdp_prog;
4944 
4945 	if (port->dev->mtu > ETH_DATA_LEN) {
4946 		NL_SET_ERR_MSG_MOD(bpf->extack, "XDP is not supported with jumbo frames enabled");
4947 		return -EOPNOTSUPP;
4948 	}
4949 
4950 	if (!port->priv->percpu_pools) {
4951 		NL_SET_ERR_MSG_MOD(bpf->extack, "Per CPU Pools required for XDP");
4952 		return -EOPNOTSUPP;
4953 	}
4954 
4955 	if (port->ntxqs < num_possible_cpus() * 2) {
4956 		NL_SET_ERR_MSG_MOD(bpf->extack, "XDP_TX needs two TX queues per CPU");
4957 		return -EOPNOTSUPP;
4958 	}
4959 
4960 	/* device is up and bpf is added/removed, must setup the RX queues */
4961 	if (running && reset)
4962 		mvpp2_stop(port->dev);
4963 
4964 	old_prog = xchg(&port->xdp_prog, prog);
4965 	if (old_prog)
4966 		bpf_prog_put(old_prog);
4967 
4968 	/* bpf is just replaced, RXQ and MTU are already setup */
4969 	if (!reset)
4970 		return 0;
4971 
4972 	/* device was up, restore the link */
4973 	if (running)
4974 		mvpp2_open(port->dev);
4975 
4976 	/* Check Page Pool DMA Direction */
4977 	mvpp2_check_pagepool_dma(port);
4978 
4979 	return 0;
4980 }
4981 
mvpp2_xdp(struct net_device * dev,struct netdev_bpf * xdp)4982 static int mvpp2_xdp(struct net_device *dev, struct netdev_bpf *xdp)
4983 {
4984 	struct mvpp2_port *port = netdev_priv(dev);
4985 
4986 	switch (xdp->command) {
4987 	case XDP_SETUP_PROG:
4988 		return mvpp2_xdp_setup(port, xdp);
4989 	default:
4990 		return -EINVAL;
4991 	}
4992 }
4993 
4994 /* Ethtool methods */
4995 
mvpp2_ethtool_nway_reset(struct net_device * dev)4996 static int mvpp2_ethtool_nway_reset(struct net_device *dev)
4997 {
4998 	struct mvpp2_port *port = netdev_priv(dev);
4999 
5000 	if (!port->phylink)
5001 		return -ENOTSUPP;
5002 
5003 	return phylink_ethtool_nway_reset(port->phylink);
5004 }
5005 
5006 /* Set interrupt coalescing for ethtools */
mvpp2_ethtool_set_coalesce(struct net_device * dev,struct ethtool_coalesce * c)5007 static int mvpp2_ethtool_set_coalesce(struct net_device *dev,
5008 				      struct ethtool_coalesce *c)
5009 {
5010 	struct mvpp2_port *port = netdev_priv(dev);
5011 	int queue;
5012 
5013 	for (queue = 0; queue < port->nrxqs; queue++) {
5014 		struct mvpp2_rx_queue *rxq = port->rxqs[queue];
5015 
5016 		rxq->time_coal = c->rx_coalesce_usecs;
5017 		rxq->pkts_coal = c->rx_max_coalesced_frames;
5018 		mvpp2_rx_pkts_coal_set(port, rxq);
5019 		mvpp2_rx_time_coal_set(port, rxq);
5020 	}
5021 
5022 	if (port->has_tx_irqs) {
5023 		port->tx_time_coal = c->tx_coalesce_usecs;
5024 		mvpp2_tx_time_coal_set(port);
5025 	}
5026 
5027 	for (queue = 0; queue < port->ntxqs; queue++) {
5028 		struct mvpp2_tx_queue *txq = port->txqs[queue];
5029 
5030 		txq->done_pkts_coal = c->tx_max_coalesced_frames;
5031 
5032 		if (port->has_tx_irqs)
5033 			mvpp2_tx_pkts_coal_set(port, txq);
5034 	}
5035 
5036 	return 0;
5037 }
5038 
5039 /* get coalescing for ethtools */
mvpp2_ethtool_get_coalesce(struct net_device * dev,struct ethtool_coalesce * c)5040 static int mvpp2_ethtool_get_coalesce(struct net_device *dev,
5041 				      struct ethtool_coalesce *c)
5042 {
5043 	struct mvpp2_port *port = netdev_priv(dev);
5044 
5045 	c->rx_coalesce_usecs       = port->rxqs[0]->time_coal;
5046 	c->rx_max_coalesced_frames = port->rxqs[0]->pkts_coal;
5047 	c->tx_max_coalesced_frames = port->txqs[0]->done_pkts_coal;
5048 	c->tx_coalesce_usecs       = port->tx_time_coal;
5049 	return 0;
5050 }
5051 
mvpp2_ethtool_get_drvinfo(struct net_device * dev,struct ethtool_drvinfo * drvinfo)5052 static void mvpp2_ethtool_get_drvinfo(struct net_device *dev,
5053 				      struct ethtool_drvinfo *drvinfo)
5054 {
5055 	strlcpy(drvinfo->driver, MVPP2_DRIVER_NAME,
5056 		sizeof(drvinfo->driver));
5057 	strlcpy(drvinfo->version, MVPP2_DRIVER_VERSION,
5058 		sizeof(drvinfo->version));
5059 	strlcpy(drvinfo->bus_info, dev_name(&dev->dev),
5060 		sizeof(drvinfo->bus_info));
5061 }
5062 
mvpp2_ethtool_get_ringparam(struct net_device * dev,struct ethtool_ringparam * ring)5063 static void mvpp2_ethtool_get_ringparam(struct net_device *dev,
5064 					struct ethtool_ringparam *ring)
5065 {
5066 	struct mvpp2_port *port = netdev_priv(dev);
5067 
5068 	ring->rx_max_pending = MVPP2_MAX_RXD_MAX;
5069 	ring->tx_max_pending = MVPP2_MAX_TXD_MAX;
5070 	ring->rx_pending = port->rx_ring_size;
5071 	ring->tx_pending = port->tx_ring_size;
5072 }
5073 
mvpp2_ethtool_set_ringparam(struct net_device * dev,struct ethtool_ringparam * ring)5074 static int mvpp2_ethtool_set_ringparam(struct net_device *dev,
5075 				       struct ethtool_ringparam *ring)
5076 {
5077 	struct mvpp2_port *port = netdev_priv(dev);
5078 	u16 prev_rx_ring_size = port->rx_ring_size;
5079 	u16 prev_tx_ring_size = port->tx_ring_size;
5080 	int err;
5081 
5082 	err = mvpp2_check_ringparam_valid(dev, ring);
5083 	if (err)
5084 		return err;
5085 
5086 	if (!netif_running(dev)) {
5087 		port->rx_ring_size = ring->rx_pending;
5088 		port->tx_ring_size = ring->tx_pending;
5089 		return 0;
5090 	}
5091 
5092 	/* The interface is running, so we have to force a
5093 	 * reallocation of the queues
5094 	 */
5095 	mvpp2_stop_dev(port);
5096 	mvpp2_cleanup_rxqs(port);
5097 	mvpp2_cleanup_txqs(port);
5098 
5099 	port->rx_ring_size = ring->rx_pending;
5100 	port->tx_ring_size = ring->tx_pending;
5101 
5102 	err = mvpp2_setup_rxqs(port);
5103 	if (err) {
5104 		/* Reallocate Rx queues with the original ring size */
5105 		port->rx_ring_size = prev_rx_ring_size;
5106 		ring->rx_pending = prev_rx_ring_size;
5107 		err = mvpp2_setup_rxqs(port);
5108 		if (err)
5109 			goto err_out;
5110 	}
5111 	err = mvpp2_setup_txqs(port);
5112 	if (err) {
5113 		/* Reallocate Tx queues with the original ring size */
5114 		port->tx_ring_size = prev_tx_ring_size;
5115 		ring->tx_pending = prev_tx_ring_size;
5116 		err = mvpp2_setup_txqs(port);
5117 		if (err)
5118 			goto err_clean_rxqs;
5119 	}
5120 
5121 	mvpp2_start_dev(port);
5122 	mvpp2_egress_enable(port);
5123 	mvpp2_ingress_enable(port);
5124 
5125 	return 0;
5126 
5127 err_clean_rxqs:
5128 	mvpp2_cleanup_rxqs(port);
5129 err_out:
5130 	netdev_err(dev, "failed to change ring parameters");
5131 	return err;
5132 }
5133 
mvpp2_ethtool_get_pause_param(struct net_device * dev,struct ethtool_pauseparam * pause)5134 static void mvpp2_ethtool_get_pause_param(struct net_device *dev,
5135 					  struct ethtool_pauseparam *pause)
5136 {
5137 	struct mvpp2_port *port = netdev_priv(dev);
5138 
5139 	if (!port->phylink)
5140 		return;
5141 
5142 	phylink_ethtool_get_pauseparam(port->phylink, pause);
5143 }
5144 
mvpp2_ethtool_set_pause_param(struct net_device * dev,struct ethtool_pauseparam * pause)5145 static int mvpp2_ethtool_set_pause_param(struct net_device *dev,
5146 					 struct ethtool_pauseparam *pause)
5147 {
5148 	struct mvpp2_port *port = netdev_priv(dev);
5149 
5150 	if (!port->phylink)
5151 		return -ENOTSUPP;
5152 
5153 	return phylink_ethtool_set_pauseparam(port->phylink, pause);
5154 }
5155 
mvpp2_ethtool_get_link_ksettings(struct net_device * dev,struct ethtool_link_ksettings * cmd)5156 static int mvpp2_ethtool_get_link_ksettings(struct net_device *dev,
5157 					    struct ethtool_link_ksettings *cmd)
5158 {
5159 	struct mvpp2_port *port = netdev_priv(dev);
5160 
5161 	if (!port->phylink)
5162 		return -ENOTSUPP;
5163 
5164 	return phylink_ethtool_ksettings_get(port->phylink, cmd);
5165 }
5166 
mvpp2_ethtool_set_link_ksettings(struct net_device * dev,const struct ethtool_link_ksettings * cmd)5167 static int mvpp2_ethtool_set_link_ksettings(struct net_device *dev,
5168 					    const struct ethtool_link_ksettings *cmd)
5169 {
5170 	struct mvpp2_port *port = netdev_priv(dev);
5171 
5172 	if (!port->phylink)
5173 		return -ENOTSUPP;
5174 
5175 	return phylink_ethtool_ksettings_set(port->phylink, cmd);
5176 }
5177 
mvpp2_ethtool_get_rxnfc(struct net_device * dev,struct ethtool_rxnfc * info,u32 * rules)5178 static int mvpp2_ethtool_get_rxnfc(struct net_device *dev,
5179 				   struct ethtool_rxnfc *info, u32 *rules)
5180 {
5181 	struct mvpp2_port *port = netdev_priv(dev);
5182 	int ret = 0, i, loc = 0;
5183 
5184 	if (!mvpp22_rss_is_supported())
5185 		return -EOPNOTSUPP;
5186 
5187 	switch (info->cmd) {
5188 	case ETHTOOL_GRXFH:
5189 		ret = mvpp2_ethtool_rxfh_get(port, info);
5190 		break;
5191 	case ETHTOOL_GRXRINGS:
5192 		info->data = port->nrxqs;
5193 		break;
5194 	case ETHTOOL_GRXCLSRLCNT:
5195 		info->rule_cnt = port->n_rfs_rules;
5196 		break;
5197 	case ETHTOOL_GRXCLSRULE:
5198 		ret = mvpp2_ethtool_cls_rule_get(port, info);
5199 		break;
5200 	case ETHTOOL_GRXCLSRLALL:
5201 		for (i = 0; i < MVPP2_N_RFS_ENTRIES_PER_FLOW; i++) {
5202 			if (port->rfs_rules[i])
5203 				rules[loc++] = i;
5204 		}
5205 		break;
5206 	default:
5207 		return -ENOTSUPP;
5208 	}
5209 
5210 	return ret;
5211 }
5212 
mvpp2_ethtool_set_rxnfc(struct net_device * dev,struct ethtool_rxnfc * info)5213 static int mvpp2_ethtool_set_rxnfc(struct net_device *dev,
5214 				   struct ethtool_rxnfc *info)
5215 {
5216 	struct mvpp2_port *port = netdev_priv(dev);
5217 	int ret = 0;
5218 
5219 	if (!mvpp22_rss_is_supported())
5220 		return -EOPNOTSUPP;
5221 
5222 	switch (info->cmd) {
5223 	case ETHTOOL_SRXFH:
5224 		ret = mvpp2_ethtool_rxfh_set(port, info);
5225 		break;
5226 	case ETHTOOL_SRXCLSRLINS:
5227 		ret = mvpp2_ethtool_cls_rule_ins(port, info);
5228 		break;
5229 	case ETHTOOL_SRXCLSRLDEL:
5230 		ret = mvpp2_ethtool_cls_rule_del(port, info);
5231 		break;
5232 	default:
5233 		return -EOPNOTSUPP;
5234 	}
5235 	return ret;
5236 }
5237 
mvpp2_ethtool_get_rxfh_indir_size(struct net_device * dev)5238 static u32 mvpp2_ethtool_get_rxfh_indir_size(struct net_device *dev)
5239 {
5240 	return mvpp22_rss_is_supported() ? MVPP22_RSS_TABLE_ENTRIES : 0;
5241 }
5242 
mvpp2_ethtool_get_rxfh(struct net_device * dev,u32 * indir,u8 * key,u8 * hfunc)5243 static int mvpp2_ethtool_get_rxfh(struct net_device *dev, u32 *indir, u8 *key,
5244 				  u8 *hfunc)
5245 {
5246 	struct mvpp2_port *port = netdev_priv(dev);
5247 	int ret = 0;
5248 
5249 	if (!mvpp22_rss_is_supported())
5250 		return -EOPNOTSUPP;
5251 
5252 	if (indir)
5253 		ret = mvpp22_port_rss_ctx_indir_get(port, 0, indir);
5254 
5255 	if (hfunc)
5256 		*hfunc = ETH_RSS_HASH_CRC32;
5257 
5258 	return ret;
5259 }
5260 
mvpp2_ethtool_set_rxfh(struct net_device * dev,const u32 * indir,const u8 * key,const u8 hfunc)5261 static int mvpp2_ethtool_set_rxfh(struct net_device *dev, const u32 *indir,
5262 				  const u8 *key, const u8 hfunc)
5263 {
5264 	struct mvpp2_port *port = netdev_priv(dev);
5265 	int ret = 0;
5266 
5267 	if (!mvpp22_rss_is_supported())
5268 		return -EOPNOTSUPP;
5269 
5270 	if (hfunc != ETH_RSS_HASH_NO_CHANGE && hfunc != ETH_RSS_HASH_CRC32)
5271 		return -EOPNOTSUPP;
5272 
5273 	if (key)
5274 		return -EOPNOTSUPP;
5275 
5276 	if (indir)
5277 		ret = mvpp22_port_rss_ctx_indir_set(port, 0, indir);
5278 
5279 	return ret;
5280 }
5281 
mvpp2_ethtool_get_rxfh_context(struct net_device * dev,u32 * indir,u8 * key,u8 * hfunc,u32 rss_context)5282 static int mvpp2_ethtool_get_rxfh_context(struct net_device *dev, u32 *indir,
5283 					  u8 *key, u8 *hfunc, u32 rss_context)
5284 {
5285 	struct mvpp2_port *port = netdev_priv(dev);
5286 	int ret = 0;
5287 
5288 	if (!mvpp22_rss_is_supported())
5289 		return -EOPNOTSUPP;
5290 	if (rss_context >= MVPP22_N_RSS_TABLES)
5291 		return -EINVAL;
5292 
5293 	if (hfunc)
5294 		*hfunc = ETH_RSS_HASH_CRC32;
5295 
5296 	if (indir)
5297 		ret = mvpp22_port_rss_ctx_indir_get(port, rss_context, indir);
5298 
5299 	return ret;
5300 }
5301 
mvpp2_ethtool_set_rxfh_context(struct net_device * dev,const u32 * indir,const u8 * key,const u8 hfunc,u32 * rss_context,bool delete)5302 static int mvpp2_ethtool_set_rxfh_context(struct net_device *dev,
5303 					  const u32 *indir, const u8 *key,
5304 					  const u8 hfunc, u32 *rss_context,
5305 					  bool delete)
5306 {
5307 	struct mvpp2_port *port = netdev_priv(dev);
5308 	int ret;
5309 
5310 	if (!mvpp22_rss_is_supported())
5311 		return -EOPNOTSUPP;
5312 
5313 	if (hfunc != ETH_RSS_HASH_NO_CHANGE && hfunc != ETH_RSS_HASH_CRC32)
5314 		return -EOPNOTSUPP;
5315 
5316 	if (key)
5317 		return -EOPNOTSUPP;
5318 
5319 	if (delete)
5320 		return mvpp22_port_rss_ctx_delete(port, *rss_context);
5321 
5322 	if (*rss_context == ETH_RXFH_CONTEXT_ALLOC) {
5323 		ret = mvpp22_port_rss_ctx_create(port, rss_context);
5324 		if (ret)
5325 			return ret;
5326 	}
5327 
5328 	return mvpp22_port_rss_ctx_indir_set(port, *rss_context, indir);
5329 }
5330 /* Device ops */
5331 
5332 static const struct net_device_ops mvpp2_netdev_ops = {
5333 	.ndo_open		= mvpp2_open,
5334 	.ndo_stop		= mvpp2_stop,
5335 	.ndo_start_xmit		= mvpp2_tx,
5336 	.ndo_set_rx_mode	= mvpp2_set_rx_mode,
5337 	.ndo_set_mac_address	= mvpp2_set_mac_address,
5338 	.ndo_change_mtu		= mvpp2_change_mtu,
5339 	.ndo_get_stats64	= mvpp2_get_stats64,
5340 	.ndo_do_ioctl		= mvpp2_ioctl,
5341 	.ndo_vlan_rx_add_vid	= mvpp2_vlan_rx_add_vid,
5342 	.ndo_vlan_rx_kill_vid	= mvpp2_vlan_rx_kill_vid,
5343 	.ndo_set_features	= mvpp2_set_features,
5344 	.ndo_bpf		= mvpp2_xdp,
5345 	.ndo_xdp_xmit		= mvpp2_xdp_xmit,
5346 };
5347 
5348 static const struct ethtool_ops mvpp2_eth_tool_ops = {
5349 	.supported_coalesce_params = ETHTOOL_COALESCE_USECS |
5350 				     ETHTOOL_COALESCE_MAX_FRAMES,
5351 	.nway_reset		= mvpp2_ethtool_nway_reset,
5352 	.get_link		= ethtool_op_get_link,
5353 	.get_ts_info		= mvpp2_ethtool_get_ts_info,
5354 	.set_coalesce		= mvpp2_ethtool_set_coalesce,
5355 	.get_coalesce		= mvpp2_ethtool_get_coalesce,
5356 	.get_drvinfo		= mvpp2_ethtool_get_drvinfo,
5357 	.get_ringparam		= mvpp2_ethtool_get_ringparam,
5358 	.set_ringparam		= mvpp2_ethtool_set_ringparam,
5359 	.get_strings		= mvpp2_ethtool_get_strings,
5360 	.get_ethtool_stats	= mvpp2_ethtool_get_stats,
5361 	.get_sset_count		= mvpp2_ethtool_get_sset_count,
5362 	.get_pauseparam		= mvpp2_ethtool_get_pause_param,
5363 	.set_pauseparam		= mvpp2_ethtool_set_pause_param,
5364 	.get_link_ksettings	= mvpp2_ethtool_get_link_ksettings,
5365 	.set_link_ksettings	= mvpp2_ethtool_set_link_ksettings,
5366 	.get_rxnfc		= mvpp2_ethtool_get_rxnfc,
5367 	.set_rxnfc		= mvpp2_ethtool_set_rxnfc,
5368 	.get_rxfh_indir_size	= mvpp2_ethtool_get_rxfh_indir_size,
5369 	.get_rxfh		= mvpp2_ethtool_get_rxfh,
5370 	.set_rxfh		= mvpp2_ethtool_set_rxfh,
5371 	.get_rxfh_context	= mvpp2_ethtool_get_rxfh_context,
5372 	.set_rxfh_context	= mvpp2_ethtool_set_rxfh_context,
5373 };
5374 
5375 /* Used for PPv2.1, or PPv2.2 with the old Device Tree binding that
5376  * had a single IRQ defined per-port.
5377  */
mvpp2_simple_queue_vectors_init(struct mvpp2_port * port,struct device_node * port_node)5378 static int mvpp2_simple_queue_vectors_init(struct mvpp2_port *port,
5379 					   struct device_node *port_node)
5380 {
5381 	struct mvpp2_queue_vector *v = &port->qvecs[0];
5382 
5383 	v->first_rxq = 0;
5384 	v->nrxqs = port->nrxqs;
5385 	v->type = MVPP2_QUEUE_VECTOR_SHARED;
5386 	v->sw_thread_id = 0;
5387 	v->sw_thread_mask = *cpumask_bits(cpu_online_mask);
5388 	v->port = port;
5389 	v->irq = irq_of_parse_and_map(port_node, 0);
5390 	if (v->irq <= 0)
5391 		return -EINVAL;
5392 	netif_napi_add(port->dev, &v->napi, mvpp2_poll,
5393 		       NAPI_POLL_WEIGHT);
5394 
5395 	port->nqvecs = 1;
5396 
5397 	return 0;
5398 }
5399 
mvpp2_multi_queue_vectors_init(struct mvpp2_port * port,struct device_node * port_node)5400 static int mvpp2_multi_queue_vectors_init(struct mvpp2_port *port,
5401 					  struct device_node *port_node)
5402 {
5403 	struct mvpp2 *priv = port->priv;
5404 	struct mvpp2_queue_vector *v;
5405 	int i, ret;
5406 
5407 	switch (queue_mode) {
5408 	case MVPP2_QDIST_SINGLE_MODE:
5409 		port->nqvecs = priv->nthreads + 1;
5410 		break;
5411 	case MVPP2_QDIST_MULTI_MODE:
5412 		port->nqvecs = priv->nthreads;
5413 		break;
5414 	}
5415 
5416 	for (i = 0; i < port->nqvecs; i++) {
5417 		char irqname[16];
5418 
5419 		v = port->qvecs + i;
5420 
5421 		v->port = port;
5422 		v->type = MVPP2_QUEUE_VECTOR_PRIVATE;
5423 		v->sw_thread_id = i;
5424 		v->sw_thread_mask = BIT(i);
5425 
5426 		if (port->flags & MVPP2_F_DT_COMPAT)
5427 			snprintf(irqname, sizeof(irqname), "tx-cpu%d", i);
5428 		else
5429 			snprintf(irqname, sizeof(irqname), "hif%d", i);
5430 
5431 		if (queue_mode == MVPP2_QDIST_MULTI_MODE) {
5432 			v->first_rxq = i;
5433 			v->nrxqs = 1;
5434 		} else if (queue_mode == MVPP2_QDIST_SINGLE_MODE &&
5435 			   i == (port->nqvecs - 1)) {
5436 			v->first_rxq = 0;
5437 			v->nrxqs = port->nrxqs;
5438 			v->type = MVPP2_QUEUE_VECTOR_SHARED;
5439 
5440 			if (port->flags & MVPP2_F_DT_COMPAT)
5441 				strncpy(irqname, "rx-shared", sizeof(irqname));
5442 		}
5443 
5444 		if (port_node)
5445 			v->irq = of_irq_get_byname(port_node, irqname);
5446 		else
5447 			v->irq = fwnode_irq_get(port->fwnode, i);
5448 		if (v->irq <= 0) {
5449 			ret = -EINVAL;
5450 			goto err;
5451 		}
5452 
5453 		netif_napi_add(port->dev, &v->napi, mvpp2_poll,
5454 			       NAPI_POLL_WEIGHT);
5455 	}
5456 
5457 	return 0;
5458 
5459 err:
5460 	for (i = 0; i < port->nqvecs; i++)
5461 		irq_dispose_mapping(port->qvecs[i].irq);
5462 	return ret;
5463 }
5464 
mvpp2_queue_vectors_init(struct mvpp2_port * port,struct device_node * port_node)5465 static int mvpp2_queue_vectors_init(struct mvpp2_port *port,
5466 				    struct device_node *port_node)
5467 {
5468 	if (port->has_tx_irqs)
5469 		return mvpp2_multi_queue_vectors_init(port, port_node);
5470 	else
5471 		return mvpp2_simple_queue_vectors_init(port, port_node);
5472 }
5473 
mvpp2_queue_vectors_deinit(struct mvpp2_port * port)5474 static void mvpp2_queue_vectors_deinit(struct mvpp2_port *port)
5475 {
5476 	int i;
5477 
5478 	for (i = 0; i < port->nqvecs; i++)
5479 		irq_dispose_mapping(port->qvecs[i].irq);
5480 }
5481 
5482 /* Configure Rx queue group interrupt for this port */
mvpp2_rx_irqs_setup(struct mvpp2_port * port)5483 static void mvpp2_rx_irqs_setup(struct mvpp2_port *port)
5484 {
5485 	struct mvpp2 *priv = port->priv;
5486 	u32 val;
5487 	int i;
5488 
5489 	if (priv->hw_version == MVPP21) {
5490 		mvpp2_write(priv, MVPP21_ISR_RXQ_GROUP_REG(port->id),
5491 			    port->nrxqs);
5492 		return;
5493 	}
5494 
5495 	/* Handle the more complicated PPv2.2 case */
5496 	for (i = 0; i < port->nqvecs; i++) {
5497 		struct mvpp2_queue_vector *qv = port->qvecs + i;
5498 
5499 		if (!qv->nrxqs)
5500 			continue;
5501 
5502 		val = qv->sw_thread_id;
5503 		val |= port->id << MVPP22_ISR_RXQ_GROUP_INDEX_GROUP_OFFSET;
5504 		mvpp2_write(priv, MVPP22_ISR_RXQ_GROUP_INDEX_REG, val);
5505 
5506 		val = qv->first_rxq;
5507 		val |= qv->nrxqs << MVPP22_ISR_RXQ_SUB_GROUP_SIZE_OFFSET;
5508 		mvpp2_write(priv, MVPP22_ISR_RXQ_SUB_GROUP_CONFIG_REG, val);
5509 	}
5510 }
5511 
5512 /* Initialize port HW */
mvpp2_port_init(struct mvpp2_port * port)5513 static int mvpp2_port_init(struct mvpp2_port *port)
5514 {
5515 	struct device *dev = port->dev->dev.parent;
5516 	struct mvpp2 *priv = port->priv;
5517 	struct mvpp2_txq_pcpu *txq_pcpu;
5518 	unsigned int thread;
5519 	int queue, err, val;
5520 
5521 	/* Checks for hardware constraints */
5522 	if (port->first_rxq + port->nrxqs >
5523 	    MVPP2_MAX_PORTS * priv->max_port_rxqs)
5524 		return -EINVAL;
5525 
5526 	if (port->nrxqs > priv->max_port_rxqs || port->ntxqs > MVPP2_MAX_TXQ)
5527 		return -EINVAL;
5528 
5529 	/* Disable port */
5530 	mvpp2_egress_disable(port);
5531 	mvpp2_port_disable(port);
5532 
5533 	if (mvpp2_is_xlg(port->phy_interface)) {
5534 		val = readl(port->base + MVPP22_XLG_CTRL0_REG);
5535 		val &= ~MVPP22_XLG_CTRL0_FORCE_LINK_PASS;
5536 		val |= MVPP22_XLG_CTRL0_FORCE_LINK_DOWN;
5537 		writel(val, port->base + MVPP22_XLG_CTRL0_REG);
5538 	} else {
5539 		val = readl(port->base + MVPP2_GMAC_AUTONEG_CONFIG);
5540 		val &= ~MVPP2_GMAC_FORCE_LINK_PASS;
5541 		val |= MVPP2_GMAC_FORCE_LINK_DOWN;
5542 		writel(val, port->base + MVPP2_GMAC_AUTONEG_CONFIG);
5543 	}
5544 
5545 	port->tx_time_coal = MVPP2_TXDONE_COAL_USEC;
5546 
5547 	port->txqs = devm_kcalloc(dev, port->ntxqs, sizeof(*port->txqs),
5548 				  GFP_KERNEL);
5549 	if (!port->txqs)
5550 		return -ENOMEM;
5551 
5552 	/* Associate physical Tx queues to this port and initialize.
5553 	 * The mapping is predefined.
5554 	 */
5555 	for (queue = 0; queue < port->ntxqs; queue++) {
5556 		int queue_phy_id = mvpp2_txq_phys(port->id, queue);
5557 		struct mvpp2_tx_queue *txq;
5558 
5559 		txq = devm_kzalloc(dev, sizeof(*txq), GFP_KERNEL);
5560 		if (!txq) {
5561 			err = -ENOMEM;
5562 			goto err_free_percpu;
5563 		}
5564 
5565 		txq->pcpu = alloc_percpu(struct mvpp2_txq_pcpu);
5566 		if (!txq->pcpu) {
5567 			err = -ENOMEM;
5568 			goto err_free_percpu;
5569 		}
5570 
5571 		txq->id = queue_phy_id;
5572 		txq->log_id = queue;
5573 		txq->done_pkts_coal = MVPP2_TXDONE_COAL_PKTS_THRESH;
5574 		for (thread = 0; thread < priv->nthreads; thread++) {
5575 			txq_pcpu = per_cpu_ptr(txq->pcpu, thread);
5576 			txq_pcpu->thread = thread;
5577 		}
5578 
5579 		port->txqs[queue] = txq;
5580 	}
5581 
5582 	port->rxqs = devm_kcalloc(dev, port->nrxqs, sizeof(*port->rxqs),
5583 				  GFP_KERNEL);
5584 	if (!port->rxqs) {
5585 		err = -ENOMEM;
5586 		goto err_free_percpu;
5587 	}
5588 
5589 	/* Allocate and initialize Rx queue for this port */
5590 	for (queue = 0; queue < port->nrxqs; queue++) {
5591 		struct mvpp2_rx_queue *rxq;
5592 
5593 		/* Map physical Rx queue to port's logical Rx queue */
5594 		rxq = devm_kzalloc(dev, sizeof(*rxq), GFP_KERNEL);
5595 		if (!rxq) {
5596 			err = -ENOMEM;
5597 			goto err_free_percpu;
5598 		}
5599 		/* Map this Rx queue to a physical queue */
5600 		rxq->id = port->first_rxq + queue;
5601 		rxq->port = port->id;
5602 		rxq->logic_rxq = queue;
5603 
5604 		port->rxqs[queue] = rxq;
5605 	}
5606 
5607 	mvpp2_rx_irqs_setup(port);
5608 
5609 	/* Create Rx descriptor rings */
5610 	for (queue = 0; queue < port->nrxqs; queue++) {
5611 		struct mvpp2_rx_queue *rxq = port->rxqs[queue];
5612 
5613 		rxq->size = port->rx_ring_size;
5614 		rxq->pkts_coal = MVPP2_RX_COAL_PKTS;
5615 		rxq->time_coal = MVPP2_RX_COAL_USEC;
5616 	}
5617 
5618 	mvpp2_ingress_disable(port);
5619 
5620 	/* Port default configuration */
5621 	mvpp2_defaults_set(port);
5622 
5623 	/* Port's classifier configuration */
5624 	mvpp2_cls_oversize_rxq_set(port);
5625 	mvpp2_cls_port_config(port);
5626 
5627 	if (mvpp22_rss_is_supported())
5628 		mvpp22_port_rss_init(port);
5629 
5630 	/* Provide an initial Rx packet size */
5631 	port->pkt_size = MVPP2_RX_PKT_SIZE(port->dev->mtu);
5632 
5633 	/* Initialize pools for swf */
5634 	err = mvpp2_swf_bm_pool_init(port);
5635 	if (err)
5636 		goto err_free_percpu;
5637 
5638 	/* Clear all port stats */
5639 	mvpp2_read_stats(port);
5640 	memset(port->ethtool_stats, 0,
5641 	       MVPP2_N_ETHTOOL_STATS(port->ntxqs, port->nrxqs) * sizeof(u64));
5642 
5643 	return 0;
5644 
5645 err_free_percpu:
5646 	for (queue = 0; queue < port->ntxqs; queue++) {
5647 		if (!port->txqs[queue])
5648 			continue;
5649 		free_percpu(port->txqs[queue]->pcpu);
5650 	}
5651 	return err;
5652 }
5653 
mvpp22_port_has_legacy_tx_irqs(struct device_node * port_node,unsigned long * flags)5654 static bool mvpp22_port_has_legacy_tx_irqs(struct device_node *port_node,
5655 					   unsigned long *flags)
5656 {
5657 	char *irqs[5] = { "rx-shared", "tx-cpu0", "tx-cpu1", "tx-cpu2",
5658 			  "tx-cpu3" };
5659 	int i;
5660 
5661 	for (i = 0; i < 5; i++)
5662 		if (of_property_match_string(port_node, "interrupt-names",
5663 					     irqs[i]) < 0)
5664 			return false;
5665 
5666 	*flags |= MVPP2_F_DT_COMPAT;
5667 	return true;
5668 }
5669 
5670 /* Checks if the port dt description has the required Tx interrupts:
5671  * - PPv2.1: there are no such interrupts.
5672  * - PPv2.2:
5673  *   - The old DTs have: "rx-shared", "tx-cpuX" with X in [0...3]
5674  *   - The new ones have: "hifX" with X in [0..8]
5675  *
5676  * All those variants are supported to keep the backward compatibility.
5677  */
mvpp2_port_has_irqs(struct mvpp2 * priv,struct device_node * port_node,unsigned long * flags)5678 static bool mvpp2_port_has_irqs(struct mvpp2 *priv,
5679 				struct device_node *port_node,
5680 				unsigned long *flags)
5681 {
5682 	char name[5];
5683 	int i;
5684 
5685 	/* ACPI */
5686 	if (!port_node)
5687 		return true;
5688 
5689 	if (priv->hw_version == MVPP21)
5690 		return false;
5691 
5692 	if (mvpp22_port_has_legacy_tx_irqs(port_node, flags))
5693 		return true;
5694 
5695 	for (i = 0; i < MVPP2_MAX_THREADS; i++) {
5696 		snprintf(name, 5, "hif%d", i);
5697 		if (of_property_match_string(port_node, "interrupt-names",
5698 					     name) < 0)
5699 			return false;
5700 	}
5701 
5702 	return true;
5703 }
5704 
mvpp2_port_copy_mac_addr(struct net_device * dev,struct mvpp2 * priv,struct fwnode_handle * fwnode,char ** mac_from)5705 static void mvpp2_port_copy_mac_addr(struct net_device *dev, struct mvpp2 *priv,
5706 				     struct fwnode_handle *fwnode,
5707 				     char **mac_from)
5708 {
5709 	struct mvpp2_port *port = netdev_priv(dev);
5710 	char hw_mac_addr[ETH_ALEN] = {0};
5711 	char fw_mac_addr[ETH_ALEN];
5712 
5713 	if (fwnode_get_mac_address(fwnode, fw_mac_addr, ETH_ALEN)) {
5714 		*mac_from = "firmware node";
5715 		ether_addr_copy(dev->dev_addr, fw_mac_addr);
5716 		return;
5717 	}
5718 
5719 	if (priv->hw_version == MVPP21) {
5720 		mvpp21_get_mac_address(port, hw_mac_addr);
5721 		if (is_valid_ether_addr(hw_mac_addr)) {
5722 			*mac_from = "hardware";
5723 			ether_addr_copy(dev->dev_addr, hw_mac_addr);
5724 			return;
5725 		}
5726 	}
5727 
5728 	*mac_from = "random";
5729 	eth_hw_addr_random(dev);
5730 }
5731 
mvpp2_phylink_to_port(struct phylink_config * config)5732 static struct mvpp2_port *mvpp2_phylink_to_port(struct phylink_config *config)
5733 {
5734 	return container_of(config, struct mvpp2_port, phylink_config);
5735 }
5736 
mvpp2_pcs_to_port(struct phylink_pcs * pcs)5737 static struct mvpp2_port *mvpp2_pcs_to_port(struct phylink_pcs *pcs)
5738 {
5739 	return container_of(pcs, struct mvpp2_port, phylink_pcs);
5740 }
5741 
mvpp2_xlg_pcs_get_state(struct phylink_pcs * pcs,struct phylink_link_state * state)5742 static void mvpp2_xlg_pcs_get_state(struct phylink_pcs *pcs,
5743 				    struct phylink_link_state *state)
5744 {
5745 	struct mvpp2_port *port = mvpp2_pcs_to_port(pcs);
5746 	u32 val;
5747 
5748 	state->speed = SPEED_10000;
5749 	state->duplex = 1;
5750 	state->an_complete = 1;
5751 
5752 	val = readl(port->base + MVPP22_XLG_STATUS);
5753 	state->link = !!(val & MVPP22_XLG_STATUS_LINK_UP);
5754 
5755 	state->pause = 0;
5756 	val = readl(port->base + MVPP22_XLG_CTRL0_REG);
5757 	if (val & MVPP22_XLG_CTRL0_TX_FLOW_CTRL_EN)
5758 		state->pause |= MLO_PAUSE_TX;
5759 	if (val & MVPP22_XLG_CTRL0_RX_FLOW_CTRL_EN)
5760 		state->pause |= MLO_PAUSE_RX;
5761 }
5762 
mvpp2_xlg_pcs_config(struct phylink_pcs * pcs,unsigned int mode,phy_interface_t interface,const unsigned long * advertising,bool permit_pause_to_mac)5763 static int mvpp2_xlg_pcs_config(struct phylink_pcs *pcs,
5764 				unsigned int mode,
5765 				phy_interface_t interface,
5766 				const unsigned long *advertising,
5767 				bool permit_pause_to_mac)
5768 {
5769 	return 0;
5770 }
5771 
5772 static const struct phylink_pcs_ops mvpp2_phylink_xlg_pcs_ops = {
5773 	.pcs_get_state = mvpp2_xlg_pcs_get_state,
5774 	.pcs_config = mvpp2_xlg_pcs_config,
5775 };
5776 
mvpp2_gmac_pcs_get_state(struct phylink_pcs * pcs,struct phylink_link_state * state)5777 static void mvpp2_gmac_pcs_get_state(struct phylink_pcs *pcs,
5778 				     struct phylink_link_state *state)
5779 {
5780 	struct mvpp2_port *port = mvpp2_pcs_to_port(pcs);
5781 	u32 val;
5782 
5783 	val = readl(port->base + MVPP2_GMAC_STATUS0);
5784 
5785 	state->an_complete = !!(val & MVPP2_GMAC_STATUS0_AN_COMPLETE);
5786 	state->link = !!(val & MVPP2_GMAC_STATUS0_LINK_UP);
5787 	state->duplex = !!(val & MVPP2_GMAC_STATUS0_FULL_DUPLEX);
5788 
5789 	switch (port->phy_interface) {
5790 	case PHY_INTERFACE_MODE_1000BASEX:
5791 		state->speed = SPEED_1000;
5792 		break;
5793 	case PHY_INTERFACE_MODE_2500BASEX:
5794 		state->speed = SPEED_2500;
5795 		break;
5796 	default:
5797 		if (val & MVPP2_GMAC_STATUS0_GMII_SPEED)
5798 			state->speed = SPEED_1000;
5799 		else if (val & MVPP2_GMAC_STATUS0_MII_SPEED)
5800 			state->speed = SPEED_100;
5801 		else
5802 			state->speed = SPEED_10;
5803 	}
5804 
5805 	state->pause = 0;
5806 	if (val & MVPP2_GMAC_STATUS0_RX_PAUSE)
5807 		state->pause |= MLO_PAUSE_RX;
5808 	if (val & MVPP2_GMAC_STATUS0_TX_PAUSE)
5809 		state->pause |= MLO_PAUSE_TX;
5810 }
5811 
mvpp2_gmac_pcs_config(struct phylink_pcs * pcs,unsigned int mode,phy_interface_t interface,const unsigned long * advertising,bool permit_pause_to_mac)5812 static int mvpp2_gmac_pcs_config(struct phylink_pcs *pcs, unsigned int mode,
5813 				 phy_interface_t interface,
5814 				 const unsigned long *advertising,
5815 				 bool permit_pause_to_mac)
5816 {
5817 	struct mvpp2_port *port = mvpp2_pcs_to_port(pcs);
5818 	u32 mask, val, an, old_an, changed;
5819 
5820 	mask = MVPP2_GMAC_IN_BAND_AUTONEG_BYPASS |
5821 	       MVPP2_GMAC_IN_BAND_AUTONEG |
5822 	       MVPP2_GMAC_AN_SPEED_EN |
5823 	       MVPP2_GMAC_FLOW_CTRL_AUTONEG |
5824 	       MVPP2_GMAC_AN_DUPLEX_EN;
5825 
5826 	if (phylink_autoneg_inband(mode)) {
5827 		mask |= MVPP2_GMAC_CONFIG_MII_SPEED |
5828 			MVPP2_GMAC_CONFIG_GMII_SPEED |
5829 			MVPP2_GMAC_CONFIG_FULL_DUPLEX;
5830 		val = MVPP2_GMAC_IN_BAND_AUTONEG;
5831 
5832 		if (interface == PHY_INTERFACE_MODE_SGMII) {
5833 			/* SGMII mode receives the speed and duplex from PHY */
5834 			val |= MVPP2_GMAC_AN_SPEED_EN |
5835 			       MVPP2_GMAC_AN_DUPLEX_EN;
5836 		} else {
5837 			/* 802.3z mode has fixed speed and duplex */
5838 			val |= MVPP2_GMAC_CONFIG_GMII_SPEED |
5839 			       MVPP2_GMAC_CONFIG_FULL_DUPLEX;
5840 
5841 			/* The FLOW_CTRL_AUTONEG bit selects either the hardware
5842 			 * automatically or the bits in MVPP22_GMAC_CTRL_4_REG
5843 			 * manually controls the GMAC pause modes.
5844 			 */
5845 			if (permit_pause_to_mac)
5846 				val |= MVPP2_GMAC_FLOW_CTRL_AUTONEG;
5847 
5848 			/* Configure advertisement bits */
5849 			mask |= MVPP2_GMAC_FC_ADV_EN | MVPP2_GMAC_FC_ADV_ASM_EN;
5850 			if (phylink_test(advertising, Pause))
5851 				val |= MVPP2_GMAC_FC_ADV_EN;
5852 			if (phylink_test(advertising, Asym_Pause))
5853 				val |= MVPP2_GMAC_FC_ADV_ASM_EN;
5854 		}
5855 	} else {
5856 		val = 0;
5857 	}
5858 
5859 	old_an = an = readl(port->base + MVPP2_GMAC_AUTONEG_CONFIG);
5860 	an = (an & ~mask) | val;
5861 	changed = an ^ old_an;
5862 	if (changed)
5863 		writel(an, port->base + MVPP2_GMAC_AUTONEG_CONFIG);
5864 
5865 	/* We are only interested in the advertisement bits changing */
5866 	return changed & (MVPP2_GMAC_FC_ADV_EN | MVPP2_GMAC_FC_ADV_ASM_EN);
5867 }
5868 
mvpp2_gmac_pcs_an_restart(struct phylink_pcs * pcs)5869 static void mvpp2_gmac_pcs_an_restart(struct phylink_pcs *pcs)
5870 {
5871 	struct mvpp2_port *port = mvpp2_pcs_to_port(pcs);
5872 	u32 val = readl(port->base + MVPP2_GMAC_AUTONEG_CONFIG);
5873 
5874 	writel(val | MVPP2_GMAC_IN_BAND_RESTART_AN,
5875 	       port->base + MVPP2_GMAC_AUTONEG_CONFIG);
5876 	writel(val & ~MVPP2_GMAC_IN_BAND_RESTART_AN,
5877 	       port->base + MVPP2_GMAC_AUTONEG_CONFIG);
5878 }
5879 
5880 static const struct phylink_pcs_ops mvpp2_phylink_gmac_pcs_ops = {
5881 	.pcs_get_state = mvpp2_gmac_pcs_get_state,
5882 	.pcs_config = mvpp2_gmac_pcs_config,
5883 	.pcs_an_restart = mvpp2_gmac_pcs_an_restart,
5884 };
5885 
mvpp2_phylink_validate(struct phylink_config * config,unsigned long * supported,struct phylink_link_state * state)5886 static void mvpp2_phylink_validate(struct phylink_config *config,
5887 				   unsigned long *supported,
5888 				   struct phylink_link_state *state)
5889 {
5890 	struct mvpp2_port *port = mvpp2_phylink_to_port(config);
5891 	__ETHTOOL_DECLARE_LINK_MODE_MASK(mask) = { 0, };
5892 
5893 	/* Invalid combinations */
5894 	switch (state->interface) {
5895 	case PHY_INTERFACE_MODE_10GBASER:
5896 	case PHY_INTERFACE_MODE_XAUI:
5897 		if (!mvpp2_port_supports_xlg(port))
5898 			goto empty_set;
5899 		break;
5900 	case PHY_INTERFACE_MODE_RGMII:
5901 	case PHY_INTERFACE_MODE_RGMII_ID:
5902 	case PHY_INTERFACE_MODE_RGMII_RXID:
5903 	case PHY_INTERFACE_MODE_RGMII_TXID:
5904 		if (!mvpp2_port_supports_rgmii(port))
5905 			goto empty_set;
5906 		break;
5907 	default:
5908 		break;
5909 	}
5910 
5911 	phylink_set(mask, Autoneg);
5912 	phylink_set_port_modes(mask);
5913 
5914 	switch (state->interface) {
5915 	case PHY_INTERFACE_MODE_10GBASER:
5916 	case PHY_INTERFACE_MODE_XAUI:
5917 	case PHY_INTERFACE_MODE_NA:
5918 		if (mvpp2_port_supports_xlg(port)) {
5919 			phylink_set(mask, 10000baseT_Full);
5920 			phylink_set(mask, 10000baseCR_Full);
5921 			phylink_set(mask, 10000baseSR_Full);
5922 			phylink_set(mask, 10000baseLR_Full);
5923 			phylink_set(mask, 10000baseLRM_Full);
5924 			phylink_set(mask, 10000baseER_Full);
5925 			phylink_set(mask, 10000baseKR_Full);
5926 		}
5927 		if (state->interface != PHY_INTERFACE_MODE_NA)
5928 			break;
5929 		fallthrough;
5930 	case PHY_INTERFACE_MODE_RGMII:
5931 	case PHY_INTERFACE_MODE_RGMII_ID:
5932 	case PHY_INTERFACE_MODE_RGMII_RXID:
5933 	case PHY_INTERFACE_MODE_RGMII_TXID:
5934 	case PHY_INTERFACE_MODE_SGMII:
5935 		phylink_set(mask, 10baseT_Half);
5936 		phylink_set(mask, 10baseT_Full);
5937 		phylink_set(mask, 100baseT_Half);
5938 		phylink_set(mask, 100baseT_Full);
5939 		phylink_set(mask, 1000baseT_Full);
5940 		phylink_set(mask, 1000baseX_Full);
5941 		if (state->interface != PHY_INTERFACE_MODE_NA)
5942 			break;
5943 		fallthrough;
5944 	case PHY_INTERFACE_MODE_1000BASEX:
5945 	case PHY_INTERFACE_MODE_2500BASEX:
5946 		if (port->comphy ||
5947 		    state->interface != PHY_INTERFACE_MODE_2500BASEX) {
5948 			phylink_set(mask, 1000baseT_Full);
5949 			phylink_set(mask, 1000baseX_Full);
5950 		}
5951 		if (port->comphy ||
5952 		    state->interface == PHY_INTERFACE_MODE_2500BASEX) {
5953 			phylink_set(mask, 2500baseT_Full);
5954 			phylink_set(mask, 2500baseX_Full);
5955 		}
5956 		break;
5957 	default:
5958 		goto empty_set;
5959 	}
5960 
5961 	bitmap_and(supported, supported, mask, __ETHTOOL_LINK_MODE_MASK_NBITS);
5962 	bitmap_and(state->advertising, state->advertising, mask,
5963 		   __ETHTOOL_LINK_MODE_MASK_NBITS);
5964 
5965 	phylink_helper_basex_speed(state);
5966 	return;
5967 
5968 empty_set:
5969 	bitmap_zero(supported, __ETHTOOL_LINK_MODE_MASK_NBITS);
5970 }
5971 
mvpp2_xlg_config(struct mvpp2_port * port,unsigned int mode,const struct phylink_link_state * state)5972 static void mvpp2_xlg_config(struct mvpp2_port *port, unsigned int mode,
5973 			     const struct phylink_link_state *state)
5974 {
5975 	u32 val;
5976 
5977 	mvpp2_modify(port->base + MVPP22_XLG_CTRL0_REG,
5978 		     MVPP22_XLG_CTRL0_MAC_RESET_DIS,
5979 		     MVPP22_XLG_CTRL0_MAC_RESET_DIS);
5980 	mvpp2_modify(port->base + MVPP22_XLG_CTRL4_REG,
5981 		     MVPP22_XLG_CTRL4_MACMODSELECT_GMAC |
5982 		     MVPP22_XLG_CTRL4_EN_IDLE_CHECK |
5983 		     MVPP22_XLG_CTRL4_FWD_FC | MVPP22_XLG_CTRL4_FWD_PFC,
5984 		     MVPP22_XLG_CTRL4_FWD_FC | MVPP22_XLG_CTRL4_FWD_PFC);
5985 
5986 	/* Wait for reset to deassert */
5987 	do {
5988 		val = readl(port->base + MVPP22_XLG_CTRL0_REG);
5989 	} while (!(val & MVPP22_XLG_CTRL0_MAC_RESET_DIS));
5990 }
5991 
mvpp2_gmac_config(struct mvpp2_port * port,unsigned int mode,const struct phylink_link_state * state)5992 static void mvpp2_gmac_config(struct mvpp2_port *port, unsigned int mode,
5993 			      const struct phylink_link_state *state)
5994 {
5995 	u32 old_ctrl0, ctrl0;
5996 	u32 old_ctrl2, ctrl2;
5997 	u32 old_ctrl4, ctrl4;
5998 
5999 	old_ctrl0 = ctrl0 = readl(port->base + MVPP2_GMAC_CTRL_0_REG);
6000 	old_ctrl2 = ctrl2 = readl(port->base + MVPP2_GMAC_CTRL_2_REG);
6001 	old_ctrl4 = ctrl4 = readl(port->base + MVPP22_GMAC_CTRL_4_REG);
6002 
6003 	ctrl0 &= ~MVPP2_GMAC_PORT_TYPE_MASK;
6004 	ctrl2 &= ~(MVPP2_GMAC_INBAND_AN_MASK | MVPP2_GMAC_PCS_ENABLE_MASK);
6005 
6006 	/* Configure port type */
6007 	if (phy_interface_mode_is_8023z(state->interface)) {
6008 		ctrl2 |= MVPP2_GMAC_PCS_ENABLE_MASK;
6009 		ctrl4 &= ~MVPP22_CTRL4_EXT_PIN_GMII_SEL;
6010 		ctrl4 |= MVPP22_CTRL4_SYNC_BYPASS_DIS |
6011 			 MVPP22_CTRL4_DP_CLK_SEL |
6012 			 MVPP22_CTRL4_QSGMII_BYPASS_ACTIVE;
6013 	} else if (state->interface == PHY_INTERFACE_MODE_SGMII) {
6014 		ctrl2 |= MVPP2_GMAC_PCS_ENABLE_MASK | MVPP2_GMAC_INBAND_AN_MASK;
6015 		ctrl4 &= ~MVPP22_CTRL4_EXT_PIN_GMII_SEL;
6016 		ctrl4 |= MVPP22_CTRL4_SYNC_BYPASS_DIS |
6017 			 MVPP22_CTRL4_DP_CLK_SEL |
6018 			 MVPP22_CTRL4_QSGMII_BYPASS_ACTIVE;
6019 	} else if (phy_interface_mode_is_rgmii(state->interface)) {
6020 		ctrl4 &= ~MVPP22_CTRL4_DP_CLK_SEL;
6021 		ctrl4 |= MVPP22_CTRL4_EXT_PIN_GMII_SEL |
6022 			 MVPP22_CTRL4_SYNC_BYPASS_DIS |
6023 			 MVPP22_CTRL4_QSGMII_BYPASS_ACTIVE;
6024 	}
6025 
6026 	/* Configure negotiation style */
6027 	if (!phylink_autoneg_inband(mode)) {
6028 		/* Phy or fixed speed - no in-band AN, nothing to do, leave the
6029 		 * configured speed, duplex and flow control as-is.
6030 		 */
6031 	} else if (state->interface == PHY_INTERFACE_MODE_SGMII) {
6032 		/* SGMII in-band mode receives the speed and duplex from
6033 		 * the PHY. Flow control information is not received. */
6034 	} else if (phy_interface_mode_is_8023z(state->interface)) {
6035 		/* 1000BaseX and 2500BaseX ports cannot negotiate speed nor can
6036 		 * they negotiate duplex: they are always operating with a fixed
6037 		 * speed of 1000/2500Mbps in full duplex, so force 1000/2500
6038 		 * speed and full duplex here.
6039 		 */
6040 		ctrl0 |= MVPP2_GMAC_PORT_TYPE_MASK;
6041 	}
6042 
6043 	if (old_ctrl0 != ctrl0)
6044 		writel(ctrl0, port->base + MVPP2_GMAC_CTRL_0_REG);
6045 	if (old_ctrl2 != ctrl2)
6046 		writel(ctrl2, port->base + MVPP2_GMAC_CTRL_2_REG);
6047 	if (old_ctrl4 != ctrl4)
6048 		writel(ctrl4, port->base + MVPP22_GMAC_CTRL_4_REG);
6049 }
6050 
mvpp2__mac_prepare(struct phylink_config * config,unsigned int mode,phy_interface_t interface)6051 static int mvpp2__mac_prepare(struct phylink_config *config, unsigned int mode,
6052 			      phy_interface_t interface)
6053 {
6054 	struct mvpp2_port *port = mvpp2_phylink_to_port(config);
6055 
6056 	/* Check for invalid configuration */
6057 	if (mvpp2_is_xlg(interface) && port->gop_id != 0) {
6058 		netdev_err(port->dev, "Invalid mode on %s\n", port->dev->name);
6059 		return -EINVAL;
6060 	}
6061 
6062 	if (port->phy_interface != interface ||
6063 	    phylink_autoneg_inband(mode)) {
6064 		/* Force the link down when changing the interface or if in
6065 		 * in-band mode to ensure we do not change the configuration
6066 		 * while the hardware is indicating link is up. We force both
6067 		 * XLG and GMAC down to ensure that they're both in a known
6068 		 * state.
6069 		 */
6070 		mvpp2_modify(port->base + MVPP2_GMAC_AUTONEG_CONFIG,
6071 			     MVPP2_GMAC_FORCE_LINK_PASS |
6072 			     MVPP2_GMAC_FORCE_LINK_DOWN,
6073 			     MVPP2_GMAC_FORCE_LINK_DOWN);
6074 
6075 		if (mvpp2_port_supports_xlg(port))
6076 			mvpp2_modify(port->base + MVPP22_XLG_CTRL0_REG,
6077 				     MVPP22_XLG_CTRL0_FORCE_LINK_PASS |
6078 				     MVPP22_XLG_CTRL0_FORCE_LINK_DOWN,
6079 				     MVPP22_XLG_CTRL0_FORCE_LINK_DOWN);
6080 	}
6081 
6082 	/* Make sure the port is disabled when reconfiguring the mode */
6083 	mvpp2_port_disable(port);
6084 
6085 	if (port->phy_interface != interface) {
6086 		/* Place GMAC into reset */
6087 		mvpp2_modify(port->base + MVPP2_GMAC_CTRL_2_REG,
6088 			     MVPP2_GMAC_PORT_RESET_MASK,
6089 			     MVPP2_GMAC_PORT_RESET_MASK);
6090 
6091 		if (port->priv->hw_version == MVPP22) {
6092 			mvpp22_gop_mask_irq(port);
6093 
6094 			phy_power_off(port->comphy);
6095 		}
6096 	}
6097 
6098 	/* Select the appropriate PCS operations depending on the
6099 	 * configured interface mode. We will only switch to a mode
6100 	 * that the validate() checks have already passed.
6101 	 */
6102 	if (mvpp2_is_xlg(interface))
6103 		port->phylink_pcs.ops = &mvpp2_phylink_xlg_pcs_ops;
6104 	else
6105 		port->phylink_pcs.ops = &mvpp2_phylink_gmac_pcs_ops;
6106 
6107 	return 0;
6108 }
6109 
mvpp2_mac_prepare(struct phylink_config * config,unsigned int mode,phy_interface_t interface)6110 static int mvpp2_mac_prepare(struct phylink_config *config, unsigned int mode,
6111 			     phy_interface_t interface)
6112 {
6113 	struct mvpp2_port *port = mvpp2_phylink_to_port(config);
6114 	int ret;
6115 
6116 	ret = mvpp2__mac_prepare(config, mode, interface);
6117 	if (ret == 0)
6118 		phylink_set_pcs(port->phylink, &port->phylink_pcs);
6119 
6120 	return ret;
6121 }
6122 
mvpp2_mac_config(struct phylink_config * config,unsigned int mode,const struct phylink_link_state * state)6123 static void mvpp2_mac_config(struct phylink_config *config, unsigned int mode,
6124 			     const struct phylink_link_state *state)
6125 {
6126 	struct mvpp2_port *port = mvpp2_phylink_to_port(config);
6127 
6128 	/* mac (re)configuration */
6129 	if (mvpp2_is_xlg(state->interface))
6130 		mvpp2_xlg_config(port, mode, state);
6131 	else if (phy_interface_mode_is_rgmii(state->interface) ||
6132 		 phy_interface_mode_is_8023z(state->interface) ||
6133 		 state->interface == PHY_INTERFACE_MODE_SGMII)
6134 		mvpp2_gmac_config(port, mode, state);
6135 
6136 	if (port->priv->hw_version == MVPP21 && port->flags & MVPP2_F_LOOPBACK)
6137 		mvpp2_port_loopback_set(port, state);
6138 }
6139 
mvpp2_mac_finish(struct phylink_config * config,unsigned int mode,phy_interface_t interface)6140 static int mvpp2_mac_finish(struct phylink_config *config, unsigned int mode,
6141 			    phy_interface_t interface)
6142 {
6143 	struct mvpp2_port *port = mvpp2_phylink_to_port(config);
6144 
6145 	if (port->priv->hw_version == MVPP22 &&
6146 	    port->phy_interface != interface) {
6147 		port->phy_interface = interface;
6148 
6149 		/* Reconfigure the serdes lanes */
6150 		mvpp22_mode_reconfigure(port);
6151 
6152 		/* Unmask interrupts */
6153 		mvpp22_gop_unmask_irq(port);
6154 	}
6155 
6156 	if (!mvpp2_is_xlg(interface)) {
6157 		/* Release GMAC reset and wait */
6158 		mvpp2_modify(port->base + MVPP2_GMAC_CTRL_2_REG,
6159 			     MVPP2_GMAC_PORT_RESET_MASK, 0);
6160 
6161 		while (readl(port->base + MVPP2_GMAC_CTRL_2_REG) &
6162 		       MVPP2_GMAC_PORT_RESET_MASK)
6163 			continue;
6164 	}
6165 
6166 	mvpp2_port_enable(port);
6167 
6168 	/* Allow the link to come up if in in-band mode, otherwise the
6169 	 * link is forced via mac_link_down()/mac_link_up()
6170 	 */
6171 	if (phylink_autoneg_inband(mode)) {
6172 		if (mvpp2_is_xlg(interface))
6173 			mvpp2_modify(port->base + MVPP22_XLG_CTRL0_REG,
6174 				     MVPP22_XLG_CTRL0_FORCE_LINK_PASS |
6175 				     MVPP22_XLG_CTRL0_FORCE_LINK_DOWN, 0);
6176 		else
6177 			mvpp2_modify(port->base + MVPP2_GMAC_AUTONEG_CONFIG,
6178 				     MVPP2_GMAC_FORCE_LINK_PASS |
6179 				     MVPP2_GMAC_FORCE_LINK_DOWN, 0);
6180 	}
6181 
6182 	return 0;
6183 }
6184 
mvpp2_mac_link_up(struct phylink_config * config,struct phy_device * phy,unsigned int mode,phy_interface_t interface,int speed,int duplex,bool tx_pause,bool rx_pause)6185 static void mvpp2_mac_link_up(struct phylink_config *config,
6186 			      struct phy_device *phy,
6187 			      unsigned int mode, phy_interface_t interface,
6188 			      int speed, int duplex,
6189 			      bool tx_pause, bool rx_pause)
6190 {
6191 	struct mvpp2_port *port = mvpp2_phylink_to_port(config);
6192 	u32 val;
6193 
6194 	if (mvpp2_is_xlg(interface)) {
6195 		if (!phylink_autoneg_inband(mode)) {
6196 			val = MVPP22_XLG_CTRL0_FORCE_LINK_PASS;
6197 			if (tx_pause)
6198 				val |= MVPP22_XLG_CTRL0_TX_FLOW_CTRL_EN;
6199 			if (rx_pause)
6200 				val |= MVPP22_XLG_CTRL0_RX_FLOW_CTRL_EN;
6201 
6202 			mvpp2_modify(port->base + MVPP22_XLG_CTRL0_REG,
6203 				     MVPP22_XLG_CTRL0_FORCE_LINK_DOWN |
6204 				     MVPP22_XLG_CTRL0_FORCE_LINK_PASS |
6205 				     MVPP22_XLG_CTRL0_TX_FLOW_CTRL_EN |
6206 				     MVPP22_XLG_CTRL0_RX_FLOW_CTRL_EN, val);
6207 		}
6208 	} else {
6209 		if (!phylink_autoneg_inband(mode)) {
6210 			val = MVPP2_GMAC_FORCE_LINK_PASS;
6211 
6212 			if (speed == SPEED_1000 || speed == SPEED_2500)
6213 				val |= MVPP2_GMAC_CONFIG_GMII_SPEED;
6214 			else if (speed == SPEED_100)
6215 				val |= MVPP2_GMAC_CONFIG_MII_SPEED;
6216 
6217 			if (duplex == DUPLEX_FULL)
6218 				val |= MVPP2_GMAC_CONFIG_FULL_DUPLEX;
6219 
6220 			mvpp2_modify(port->base + MVPP2_GMAC_AUTONEG_CONFIG,
6221 				     MVPP2_GMAC_FORCE_LINK_DOWN |
6222 				     MVPP2_GMAC_FORCE_LINK_PASS |
6223 				     MVPP2_GMAC_CONFIG_MII_SPEED |
6224 				     MVPP2_GMAC_CONFIG_GMII_SPEED |
6225 				     MVPP2_GMAC_CONFIG_FULL_DUPLEX, val);
6226 		}
6227 
6228 		/* We can always update the flow control enable bits;
6229 		 * these will only be effective if flow control AN
6230 		 * (MVPP2_GMAC_FLOW_CTRL_AUTONEG) is disabled.
6231 		 */
6232 		val = 0;
6233 		if (tx_pause)
6234 			val |= MVPP22_CTRL4_TX_FC_EN;
6235 		if (rx_pause)
6236 			val |= MVPP22_CTRL4_RX_FC_EN;
6237 
6238 		mvpp2_modify(port->base + MVPP22_GMAC_CTRL_4_REG,
6239 			     MVPP22_CTRL4_RX_FC_EN | MVPP22_CTRL4_TX_FC_EN,
6240 			     val);
6241 	}
6242 
6243 	mvpp2_port_enable(port);
6244 
6245 	mvpp2_egress_enable(port);
6246 	mvpp2_ingress_enable(port);
6247 	netif_tx_wake_all_queues(port->dev);
6248 }
6249 
mvpp2_mac_link_down(struct phylink_config * config,unsigned int mode,phy_interface_t interface)6250 static void mvpp2_mac_link_down(struct phylink_config *config,
6251 				unsigned int mode, phy_interface_t interface)
6252 {
6253 	struct mvpp2_port *port = mvpp2_phylink_to_port(config);
6254 	u32 val;
6255 
6256 	if (!phylink_autoneg_inband(mode)) {
6257 		if (mvpp2_is_xlg(interface)) {
6258 			val = readl(port->base + MVPP22_XLG_CTRL0_REG);
6259 			val &= ~MVPP22_XLG_CTRL0_FORCE_LINK_PASS;
6260 			val |= MVPP22_XLG_CTRL0_FORCE_LINK_DOWN;
6261 			writel(val, port->base + MVPP22_XLG_CTRL0_REG);
6262 		} else {
6263 			val = readl(port->base + MVPP2_GMAC_AUTONEG_CONFIG);
6264 			val &= ~MVPP2_GMAC_FORCE_LINK_PASS;
6265 			val |= MVPP2_GMAC_FORCE_LINK_DOWN;
6266 			writel(val, port->base + MVPP2_GMAC_AUTONEG_CONFIG);
6267 		}
6268 	}
6269 
6270 	netif_tx_stop_all_queues(port->dev);
6271 	mvpp2_egress_disable(port);
6272 	mvpp2_ingress_disable(port);
6273 
6274 	mvpp2_port_disable(port);
6275 }
6276 
6277 static const struct phylink_mac_ops mvpp2_phylink_ops = {
6278 	.validate = mvpp2_phylink_validate,
6279 	.mac_prepare = mvpp2_mac_prepare,
6280 	.mac_config = mvpp2_mac_config,
6281 	.mac_finish = mvpp2_mac_finish,
6282 	.mac_link_up = mvpp2_mac_link_up,
6283 	.mac_link_down = mvpp2_mac_link_down,
6284 };
6285 
6286 /* Work-around for ACPI */
mvpp2_acpi_start(struct mvpp2_port * port)6287 static void mvpp2_acpi_start(struct mvpp2_port *port)
6288 {
6289 	/* Phylink isn't used as of now for ACPI, so the MAC has to be
6290 	 * configured manually when the interface is started. This will
6291 	 * be removed as soon as the phylink ACPI support lands in.
6292 	 */
6293 	struct phylink_link_state state = {
6294 		.interface = port->phy_interface,
6295 	};
6296 	mvpp2__mac_prepare(&port->phylink_config, MLO_AN_INBAND,
6297 			   port->phy_interface);
6298 	mvpp2_mac_config(&port->phylink_config, MLO_AN_INBAND, &state);
6299 	port->phylink_pcs.ops->pcs_config(&port->phylink_pcs, MLO_AN_INBAND,
6300 					  port->phy_interface,
6301 					  state.advertising, false);
6302 	mvpp2_mac_finish(&port->phylink_config, MLO_AN_INBAND,
6303 			 port->phy_interface);
6304 	mvpp2_mac_link_up(&port->phylink_config, NULL,
6305 			  MLO_AN_INBAND, port->phy_interface,
6306 			  SPEED_UNKNOWN, DUPLEX_UNKNOWN, false, false);
6307 }
6308 
6309 /* Ports initialization */
mvpp2_port_probe(struct platform_device * pdev,struct fwnode_handle * port_fwnode,struct mvpp2 * priv)6310 static int mvpp2_port_probe(struct platform_device *pdev,
6311 			    struct fwnode_handle *port_fwnode,
6312 			    struct mvpp2 *priv)
6313 {
6314 	struct phy *comphy = NULL;
6315 	struct mvpp2_port *port;
6316 	struct mvpp2_port_pcpu *port_pcpu;
6317 	struct device_node *port_node = to_of_node(port_fwnode);
6318 	netdev_features_t features;
6319 	struct net_device *dev;
6320 	struct phylink *phylink;
6321 	char *mac_from = "";
6322 	unsigned int ntxqs, nrxqs, thread;
6323 	unsigned long flags = 0;
6324 	bool has_tx_irqs;
6325 	u32 id;
6326 	int phy_mode;
6327 	int err, i;
6328 
6329 	has_tx_irqs = mvpp2_port_has_irqs(priv, port_node, &flags);
6330 	if (!has_tx_irqs && queue_mode == MVPP2_QDIST_MULTI_MODE) {
6331 		dev_err(&pdev->dev,
6332 			"not enough IRQs to support multi queue mode\n");
6333 		return -EINVAL;
6334 	}
6335 
6336 	ntxqs = MVPP2_MAX_TXQ;
6337 	nrxqs = mvpp2_get_nrxqs(priv);
6338 
6339 	dev = alloc_etherdev_mqs(sizeof(*port), ntxqs, nrxqs);
6340 	if (!dev)
6341 		return -ENOMEM;
6342 
6343 	phy_mode = fwnode_get_phy_mode(port_fwnode);
6344 	if (phy_mode < 0) {
6345 		dev_err(&pdev->dev, "incorrect phy mode\n");
6346 		err = phy_mode;
6347 		goto err_free_netdev;
6348 	}
6349 
6350 	/*
6351 	 * Rewrite 10GBASE-KR to 10GBASE-R for compatibility with existing DT.
6352 	 * Existing usage of 10GBASE-KR is not correct; no backplane
6353 	 * negotiation is done, and this driver does not actually support
6354 	 * 10GBASE-KR.
6355 	 */
6356 	if (phy_mode == PHY_INTERFACE_MODE_10GKR)
6357 		phy_mode = PHY_INTERFACE_MODE_10GBASER;
6358 
6359 	if (port_node) {
6360 		comphy = devm_of_phy_get(&pdev->dev, port_node, NULL);
6361 		if (IS_ERR(comphy)) {
6362 			if (PTR_ERR(comphy) == -EPROBE_DEFER) {
6363 				err = -EPROBE_DEFER;
6364 				goto err_free_netdev;
6365 			}
6366 			comphy = NULL;
6367 		}
6368 	}
6369 
6370 	if (fwnode_property_read_u32(port_fwnode, "port-id", &id)) {
6371 		err = -EINVAL;
6372 		dev_err(&pdev->dev, "missing port-id value\n");
6373 		goto err_free_netdev;
6374 	}
6375 
6376 	dev->tx_queue_len = MVPP2_MAX_TXD_MAX;
6377 	dev->watchdog_timeo = 5 * HZ;
6378 	dev->netdev_ops = &mvpp2_netdev_ops;
6379 	dev->ethtool_ops = &mvpp2_eth_tool_ops;
6380 
6381 	port = netdev_priv(dev);
6382 	port->dev = dev;
6383 	port->fwnode = port_fwnode;
6384 	port->has_phy = !!of_find_property(port_node, "phy", NULL);
6385 	port->ntxqs = ntxqs;
6386 	port->nrxqs = nrxqs;
6387 	port->priv = priv;
6388 	port->has_tx_irqs = has_tx_irqs;
6389 	port->flags = flags;
6390 
6391 	err = mvpp2_queue_vectors_init(port, port_node);
6392 	if (err)
6393 		goto err_free_netdev;
6394 
6395 	if (port_node)
6396 		port->port_irq = of_irq_get_byname(port_node, "link");
6397 	else
6398 		port->port_irq = fwnode_irq_get(port_fwnode, port->nqvecs + 1);
6399 	if (port->port_irq == -EPROBE_DEFER) {
6400 		err = -EPROBE_DEFER;
6401 		goto err_deinit_qvecs;
6402 	}
6403 	if (port->port_irq <= 0)
6404 		/* the link irq is optional */
6405 		port->port_irq = 0;
6406 
6407 	if (fwnode_property_read_bool(port_fwnode, "marvell,loopback"))
6408 		port->flags |= MVPP2_F_LOOPBACK;
6409 
6410 	port->id = id;
6411 	if (priv->hw_version == MVPP21)
6412 		port->first_rxq = port->id * port->nrxqs;
6413 	else
6414 		port->first_rxq = port->id * priv->max_port_rxqs;
6415 
6416 	port->of_node = port_node;
6417 	port->phy_interface = phy_mode;
6418 	port->comphy = comphy;
6419 
6420 	if (priv->hw_version == MVPP21) {
6421 		port->base = devm_platform_ioremap_resource(pdev, 2 + id);
6422 		if (IS_ERR(port->base)) {
6423 			err = PTR_ERR(port->base);
6424 			goto err_free_irq;
6425 		}
6426 
6427 		port->stats_base = port->priv->lms_base +
6428 				   MVPP21_MIB_COUNTERS_OFFSET +
6429 				   port->gop_id * MVPP21_MIB_COUNTERS_PORT_SZ;
6430 	} else {
6431 		if (fwnode_property_read_u32(port_fwnode, "gop-port-id",
6432 					     &port->gop_id)) {
6433 			err = -EINVAL;
6434 			dev_err(&pdev->dev, "missing gop-port-id value\n");
6435 			goto err_deinit_qvecs;
6436 		}
6437 
6438 		port->base = priv->iface_base + MVPP22_GMAC_BASE(port->gop_id);
6439 		port->stats_base = port->priv->iface_base +
6440 				   MVPP22_MIB_COUNTERS_OFFSET +
6441 				   port->gop_id * MVPP22_MIB_COUNTERS_PORT_SZ;
6442 
6443 		/* We may want a property to describe whether we should use
6444 		 * MAC hardware timestamping.
6445 		 */
6446 		if (priv->tai)
6447 			port->hwtstamp = true;
6448 	}
6449 
6450 	/* Alloc per-cpu and ethtool stats */
6451 	port->stats = netdev_alloc_pcpu_stats(struct mvpp2_pcpu_stats);
6452 	if (!port->stats) {
6453 		err = -ENOMEM;
6454 		goto err_free_irq;
6455 	}
6456 
6457 	port->ethtool_stats = devm_kcalloc(&pdev->dev,
6458 					   MVPP2_N_ETHTOOL_STATS(ntxqs, nrxqs),
6459 					   sizeof(u64), GFP_KERNEL);
6460 	if (!port->ethtool_stats) {
6461 		err = -ENOMEM;
6462 		goto err_free_stats;
6463 	}
6464 
6465 	mutex_init(&port->gather_stats_lock);
6466 	INIT_DELAYED_WORK(&port->stats_work, mvpp2_gather_hw_statistics);
6467 
6468 	mvpp2_port_copy_mac_addr(dev, priv, port_fwnode, &mac_from);
6469 
6470 	port->tx_ring_size = MVPP2_MAX_TXD_DFLT;
6471 	port->rx_ring_size = MVPP2_MAX_RXD_DFLT;
6472 	SET_NETDEV_DEV(dev, &pdev->dev);
6473 
6474 	err = mvpp2_port_init(port);
6475 	if (err < 0) {
6476 		dev_err(&pdev->dev, "failed to init port %d\n", id);
6477 		goto err_free_stats;
6478 	}
6479 
6480 	mvpp2_port_periodic_xon_disable(port);
6481 
6482 	mvpp2_mac_reset_assert(port);
6483 	mvpp22_pcs_reset_assert(port);
6484 
6485 	port->pcpu = alloc_percpu(struct mvpp2_port_pcpu);
6486 	if (!port->pcpu) {
6487 		err = -ENOMEM;
6488 		goto err_free_txq_pcpu;
6489 	}
6490 
6491 	if (!port->has_tx_irqs) {
6492 		for (thread = 0; thread < priv->nthreads; thread++) {
6493 			port_pcpu = per_cpu_ptr(port->pcpu, thread);
6494 
6495 			hrtimer_init(&port_pcpu->tx_done_timer, CLOCK_MONOTONIC,
6496 				     HRTIMER_MODE_REL_PINNED_SOFT);
6497 			port_pcpu->tx_done_timer.function = mvpp2_hr_timer_cb;
6498 			port_pcpu->timer_scheduled = false;
6499 			port_pcpu->dev = dev;
6500 		}
6501 	}
6502 
6503 	features = NETIF_F_SG | NETIF_F_IP_CSUM | NETIF_F_IPV6_CSUM |
6504 		   NETIF_F_TSO;
6505 	dev->features = features | NETIF_F_RXCSUM;
6506 	dev->hw_features |= features | NETIF_F_RXCSUM | NETIF_F_GRO |
6507 			    NETIF_F_HW_VLAN_CTAG_FILTER;
6508 
6509 	if (mvpp22_rss_is_supported()) {
6510 		dev->hw_features |= NETIF_F_RXHASH;
6511 		dev->features |= NETIF_F_NTUPLE;
6512 	}
6513 
6514 	if (!port->priv->percpu_pools)
6515 		mvpp2_set_hw_csum(port, port->pool_long->id);
6516 
6517 	dev->vlan_features |= features;
6518 	dev->gso_max_segs = MVPP2_MAX_TSO_SEGS;
6519 	dev->priv_flags |= IFF_UNICAST_FLT;
6520 
6521 	/* MTU range: 68 - 9704 */
6522 	dev->min_mtu = ETH_MIN_MTU;
6523 	/* 9704 == 9728 - 20 and rounding to 8 */
6524 	dev->max_mtu = MVPP2_BM_JUMBO_PKT_SIZE;
6525 	dev->dev.of_node = port_node;
6526 
6527 	/* Phylink isn't used w/ ACPI as of now */
6528 	if (port_node) {
6529 		port->phylink_config.dev = &dev->dev;
6530 		port->phylink_config.type = PHYLINK_NETDEV;
6531 
6532 		phylink = phylink_create(&port->phylink_config, port_fwnode,
6533 					 phy_mode, &mvpp2_phylink_ops);
6534 		if (IS_ERR(phylink)) {
6535 			err = PTR_ERR(phylink);
6536 			goto err_free_port_pcpu;
6537 		}
6538 		port->phylink = phylink;
6539 	} else {
6540 		port->phylink = NULL;
6541 	}
6542 
6543 	/* Cycle the comphy to power it down, saving 270mW per port -
6544 	 * don't worry about an error powering it up. When the comphy
6545 	 * driver does this, we can remove this code.
6546 	 */
6547 	if (port->comphy) {
6548 		err = mvpp22_comphy_init(port);
6549 		if (err == 0)
6550 			phy_power_off(port->comphy);
6551 	}
6552 
6553 	err = register_netdev(dev);
6554 	if (err < 0) {
6555 		dev_err(&pdev->dev, "failed to register netdev\n");
6556 		goto err_phylink;
6557 	}
6558 	netdev_info(dev, "Using %s mac address %pM\n", mac_from, dev->dev_addr);
6559 
6560 	priv->port_list[priv->port_count++] = port;
6561 
6562 	return 0;
6563 
6564 err_phylink:
6565 	if (port->phylink)
6566 		phylink_destroy(port->phylink);
6567 err_free_port_pcpu:
6568 	free_percpu(port->pcpu);
6569 err_free_txq_pcpu:
6570 	for (i = 0; i < port->ntxqs; i++)
6571 		free_percpu(port->txqs[i]->pcpu);
6572 err_free_stats:
6573 	free_percpu(port->stats);
6574 err_free_irq:
6575 	if (port->port_irq)
6576 		irq_dispose_mapping(port->port_irq);
6577 err_deinit_qvecs:
6578 	mvpp2_queue_vectors_deinit(port);
6579 err_free_netdev:
6580 	free_netdev(dev);
6581 	return err;
6582 }
6583 
6584 /* Ports removal routine */
mvpp2_port_remove(struct mvpp2_port * port)6585 static void mvpp2_port_remove(struct mvpp2_port *port)
6586 {
6587 	int i;
6588 
6589 	unregister_netdev(port->dev);
6590 	if (port->phylink)
6591 		phylink_destroy(port->phylink);
6592 	free_percpu(port->pcpu);
6593 	free_percpu(port->stats);
6594 	for (i = 0; i < port->ntxqs; i++)
6595 		free_percpu(port->txqs[i]->pcpu);
6596 	mvpp2_queue_vectors_deinit(port);
6597 	if (port->port_irq)
6598 		irq_dispose_mapping(port->port_irq);
6599 	free_netdev(port->dev);
6600 }
6601 
6602 /* Initialize decoding windows */
mvpp2_conf_mbus_windows(const struct mbus_dram_target_info * dram,struct mvpp2 * priv)6603 static void mvpp2_conf_mbus_windows(const struct mbus_dram_target_info *dram,
6604 				    struct mvpp2 *priv)
6605 {
6606 	u32 win_enable;
6607 	int i;
6608 
6609 	for (i = 0; i < 6; i++) {
6610 		mvpp2_write(priv, MVPP2_WIN_BASE(i), 0);
6611 		mvpp2_write(priv, MVPP2_WIN_SIZE(i), 0);
6612 
6613 		if (i < 4)
6614 			mvpp2_write(priv, MVPP2_WIN_REMAP(i), 0);
6615 	}
6616 
6617 	win_enable = 0;
6618 
6619 	for (i = 0; i < dram->num_cs; i++) {
6620 		const struct mbus_dram_window *cs = dram->cs + i;
6621 
6622 		mvpp2_write(priv, MVPP2_WIN_BASE(i),
6623 			    (cs->base & 0xffff0000) | (cs->mbus_attr << 8) |
6624 			    dram->mbus_dram_target_id);
6625 
6626 		mvpp2_write(priv, MVPP2_WIN_SIZE(i),
6627 			    (cs->size - 1) & 0xffff0000);
6628 
6629 		win_enable |= (1 << i);
6630 	}
6631 
6632 	mvpp2_write(priv, MVPP2_BASE_ADDR_ENABLE, win_enable);
6633 }
6634 
6635 /* Initialize Rx FIFO's */
mvpp2_rx_fifo_init(struct mvpp2 * priv)6636 static void mvpp2_rx_fifo_init(struct mvpp2 *priv)
6637 {
6638 	int port;
6639 
6640 	for (port = 0; port < MVPP2_MAX_PORTS; port++) {
6641 		mvpp2_write(priv, MVPP2_RX_DATA_FIFO_SIZE_REG(port),
6642 			    MVPP2_RX_FIFO_PORT_DATA_SIZE_4KB);
6643 		mvpp2_write(priv, MVPP2_RX_ATTR_FIFO_SIZE_REG(port),
6644 			    MVPP2_RX_FIFO_PORT_ATTR_SIZE_4KB);
6645 	}
6646 
6647 	mvpp2_write(priv, MVPP2_RX_MIN_PKT_SIZE_REG,
6648 		    MVPP2_RX_FIFO_PORT_MIN_PKT);
6649 	mvpp2_write(priv, MVPP2_RX_FIFO_INIT_REG, 0x1);
6650 }
6651 
mvpp22_rx_fifo_init(struct mvpp2 * priv)6652 static void mvpp22_rx_fifo_init(struct mvpp2 *priv)
6653 {
6654 	int port;
6655 
6656 	/* The FIFO size parameters are set depending on the maximum speed a
6657 	 * given port can handle:
6658 	 * - Port 0: 10Gbps
6659 	 * - Port 1: 2.5Gbps
6660 	 * - Ports 2 and 3: 1Gbps
6661 	 */
6662 
6663 	mvpp2_write(priv, MVPP2_RX_DATA_FIFO_SIZE_REG(0),
6664 		    MVPP2_RX_FIFO_PORT_DATA_SIZE_32KB);
6665 	mvpp2_write(priv, MVPP2_RX_ATTR_FIFO_SIZE_REG(0),
6666 		    MVPP2_RX_FIFO_PORT_ATTR_SIZE_32KB);
6667 
6668 	mvpp2_write(priv, MVPP2_RX_DATA_FIFO_SIZE_REG(1),
6669 		    MVPP2_RX_FIFO_PORT_DATA_SIZE_8KB);
6670 	mvpp2_write(priv, MVPP2_RX_ATTR_FIFO_SIZE_REG(1),
6671 		    MVPP2_RX_FIFO_PORT_ATTR_SIZE_8KB);
6672 
6673 	for (port = 2; port < MVPP2_MAX_PORTS; port++) {
6674 		mvpp2_write(priv, MVPP2_RX_DATA_FIFO_SIZE_REG(port),
6675 			    MVPP2_RX_FIFO_PORT_DATA_SIZE_4KB);
6676 		mvpp2_write(priv, MVPP2_RX_ATTR_FIFO_SIZE_REG(port),
6677 			    MVPP2_RX_FIFO_PORT_ATTR_SIZE_4KB);
6678 	}
6679 
6680 	mvpp2_write(priv, MVPP2_RX_MIN_PKT_SIZE_REG,
6681 		    MVPP2_RX_FIFO_PORT_MIN_PKT);
6682 	mvpp2_write(priv, MVPP2_RX_FIFO_INIT_REG, 0x1);
6683 }
6684 
6685 /* Initialize Tx FIFO's: the total FIFO size is 19kB on PPv2.2 and 10G
6686  * interfaces must have a Tx FIFO size of 10kB. As only port 0 can do 10G,
6687  * configure its Tx FIFO size to 10kB and the others ports Tx FIFO size to 3kB.
6688  */
mvpp22_tx_fifo_init(struct mvpp2 * priv)6689 static void mvpp22_tx_fifo_init(struct mvpp2 *priv)
6690 {
6691 	int port, size, thrs;
6692 
6693 	for (port = 0; port < MVPP2_MAX_PORTS; port++) {
6694 		if (port == 0) {
6695 			size = MVPP22_TX_FIFO_DATA_SIZE_10KB;
6696 			thrs = MVPP2_TX_FIFO_THRESHOLD_10KB;
6697 		} else {
6698 			size = MVPP22_TX_FIFO_DATA_SIZE_3KB;
6699 			thrs = MVPP2_TX_FIFO_THRESHOLD_3KB;
6700 		}
6701 		mvpp2_write(priv, MVPP22_TX_FIFO_SIZE_REG(port), size);
6702 		mvpp2_write(priv, MVPP22_TX_FIFO_THRESH_REG(port), thrs);
6703 	}
6704 }
6705 
mvpp2_axi_init(struct mvpp2 * priv)6706 static void mvpp2_axi_init(struct mvpp2 *priv)
6707 {
6708 	u32 val, rdval, wrval;
6709 
6710 	mvpp2_write(priv, MVPP22_BM_ADDR_HIGH_RLS_REG, 0x0);
6711 
6712 	/* AXI Bridge Configuration */
6713 
6714 	rdval = MVPP22_AXI_CODE_CACHE_RD_CACHE
6715 		<< MVPP22_AXI_ATTR_CACHE_OFFS;
6716 	rdval |= MVPP22_AXI_CODE_DOMAIN_OUTER_DOM
6717 		<< MVPP22_AXI_ATTR_DOMAIN_OFFS;
6718 
6719 	wrval = MVPP22_AXI_CODE_CACHE_WR_CACHE
6720 		<< MVPP22_AXI_ATTR_CACHE_OFFS;
6721 	wrval |= MVPP22_AXI_CODE_DOMAIN_OUTER_DOM
6722 		<< MVPP22_AXI_ATTR_DOMAIN_OFFS;
6723 
6724 	/* BM */
6725 	mvpp2_write(priv, MVPP22_AXI_BM_WR_ATTR_REG, wrval);
6726 	mvpp2_write(priv, MVPP22_AXI_BM_RD_ATTR_REG, rdval);
6727 
6728 	/* Descriptors */
6729 	mvpp2_write(priv, MVPP22_AXI_AGGRQ_DESCR_RD_ATTR_REG, rdval);
6730 	mvpp2_write(priv, MVPP22_AXI_TXQ_DESCR_WR_ATTR_REG, wrval);
6731 	mvpp2_write(priv, MVPP22_AXI_TXQ_DESCR_RD_ATTR_REG, rdval);
6732 	mvpp2_write(priv, MVPP22_AXI_RXQ_DESCR_WR_ATTR_REG, wrval);
6733 
6734 	/* Buffer Data */
6735 	mvpp2_write(priv, MVPP22_AXI_TX_DATA_RD_ATTR_REG, rdval);
6736 	mvpp2_write(priv, MVPP22_AXI_RX_DATA_WR_ATTR_REG, wrval);
6737 
6738 	val = MVPP22_AXI_CODE_CACHE_NON_CACHE
6739 		<< MVPP22_AXI_CODE_CACHE_OFFS;
6740 	val |= MVPP22_AXI_CODE_DOMAIN_SYSTEM
6741 		<< MVPP22_AXI_CODE_DOMAIN_OFFS;
6742 	mvpp2_write(priv, MVPP22_AXI_RD_NORMAL_CODE_REG, val);
6743 	mvpp2_write(priv, MVPP22_AXI_WR_NORMAL_CODE_REG, val);
6744 
6745 	val = MVPP22_AXI_CODE_CACHE_RD_CACHE
6746 		<< MVPP22_AXI_CODE_CACHE_OFFS;
6747 	val |= MVPP22_AXI_CODE_DOMAIN_OUTER_DOM
6748 		<< MVPP22_AXI_CODE_DOMAIN_OFFS;
6749 
6750 	mvpp2_write(priv, MVPP22_AXI_RD_SNOOP_CODE_REG, val);
6751 
6752 	val = MVPP22_AXI_CODE_CACHE_WR_CACHE
6753 		<< MVPP22_AXI_CODE_CACHE_OFFS;
6754 	val |= MVPP22_AXI_CODE_DOMAIN_OUTER_DOM
6755 		<< MVPP22_AXI_CODE_DOMAIN_OFFS;
6756 
6757 	mvpp2_write(priv, MVPP22_AXI_WR_SNOOP_CODE_REG, val);
6758 }
6759 
6760 /* Initialize network controller common part HW */
mvpp2_init(struct platform_device * pdev,struct mvpp2 * priv)6761 static int mvpp2_init(struct platform_device *pdev, struct mvpp2 *priv)
6762 {
6763 	const struct mbus_dram_target_info *dram_target_info;
6764 	int err, i;
6765 	u32 val;
6766 
6767 	/* MBUS windows configuration */
6768 	dram_target_info = mv_mbus_dram_info();
6769 	if (dram_target_info)
6770 		mvpp2_conf_mbus_windows(dram_target_info, priv);
6771 
6772 	if (priv->hw_version == MVPP22)
6773 		mvpp2_axi_init(priv);
6774 
6775 	/* Disable HW PHY polling */
6776 	if (priv->hw_version == MVPP21) {
6777 		val = readl(priv->lms_base + MVPP2_PHY_AN_CFG0_REG);
6778 		val |= MVPP2_PHY_AN_STOP_SMI0_MASK;
6779 		writel(val, priv->lms_base + MVPP2_PHY_AN_CFG0_REG);
6780 	} else {
6781 		val = readl(priv->iface_base + MVPP22_SMI_MISC_CFG_REG);
6782 		val &= ~MVPP22_SMI_POLLING_EN;
6783 		writel(val, priv->iface_base + MVPP22_SMI_MISC_CFG_REG);
6784 	}
6785 
6786 	/* Allocate and initialize aggregated TXQs */
6787 	priv->aggr_txqs = devm_kcalloc(&pdev->dev, MVPP2_MAX_THREADS,
6788 				       sizeof(*priv->aggr_txqs),
6789 				       GFP_KERNEL);
6790 	if (!priv->aggr_txqs)
6791 		return -ENOMEM;
6792 
6793 	for (i = 0; i < MVPP2_MAX_THREADS; i++) {
6794 		priv->aggr_txqs[i].id = i;
6795 		priv->aggr_txqs[i].size = MVPP2_AGGR_TXQ_SIZE;
6796 		err = mvpp2_aggr_txq_init(pdev, &priv->aggr_txqs[i], i, priv);
6797 		if (err < 0)
6798 			return err;
6799 	}
6800 
6801 	/* Fifo Init */
6802 	if (priv->hw_version == MVPP21) {
6803 		mvpp2_rx_fifo_init(priv);
6804 	} else {
6805 		mvpp22_rx_fifo_init(priv);
6806 		mvpp22_tx_fifo_init(priv);
6807 	}
6808 
6809 	if (priv->hw_version == MVPP21)
6810 		writel(MVPP2_EXT_GLOBAL_CTRL_DEFAULT,
6811 		       priv->lms_base + MVPP2_MNG_EXTENDED_GLOBAL_CTRL_REG);
6812 
6813 	/* Allow cache snoop when transmiting packets */
6814 	mvpp2_write(priv, MVPP2_TX_SNOOP_REG, 0x1);
6815 
6816 	/* Buffer Manager initialization */
6817 	err = mvpp2_bm_init(&pdev->dev, priv);
6818 	if (err < 0)
6819 		return err;
6820 
6821 	/* Parser default initialization */
6822 	err = mvpp2_prs_default_init(pdev, priv);
6823 	if (err < 0)
6824 		return err;
6825 
6826 	/* Classifier default initialization */
6827 	mvpp2_cls_init(priv);
6828 
6829 	return 0;
6830 }
6831 
mvpp2_probe(struct platform_device * pdev)6832 static int mvpp2_probe(struct platform_device *pdev)
6833 {
6834 	const struct acpi_device_id *acpi_id;
6835 	struct fwnode_handle *fwnode = pdev->dev.fwnode;
6836 	struct fwnode_handle *port_fwnode;
6837 	struct mvpp2 *priv;
6838 	struct resource *res;
6839 	void __iomem *base;
6840 	int i, shared;
6841 	int err;
6842 
6843 	priv = devm_kzalloc(&pdev->dev, sizeof(*priv), GFP_KERNEL);
6844 	if (!priv)
6845 		return -ENOMEM;
6846 
6847 	if (has_acpi_companion(&pdev->dev)) {
6848 		acpi_id = acpi_match_device(pdev->dev.driver->acpi_match_table,
6849 					    &pdev->dev);
6850 		if (!acpi_id)
6851 			return -EINVAL;
6852 		priv->hw_version = (unsigned long)acpi_id->driver_data;
6853 	} else {
6854 		priv->hw_version =
6855 			(unsigned long)of_device_get_match_data(&pdev->dev);
6856 	}
6857 
6858 	/* multi queue mode isn't supported on PPV2.1, fallback to single
6859 	 * mode
6860 	 */
6861 	if (priv->hw_version == MVPP21)
6862 		queue_mode = MVPP2_QDIST_SINGLE_MODE;
6863 
6864 	base = devm_platform_ioremap_resource(pdev, 0);
6865 	if (IS_ERR(base))
6866 		return PTR_ERR(base);
6867 
6868 	if (priv->hw_version == MVPP21) {
6869 		priv->lms_base = devm_platform_ioremap_resource(pdev, 1);
6870 		if (IS_ERR(priv->lms_base))
6871 			return PTR_ERR(priv->lms_base);
6872 	} else {
6873 		res = platform_get_resource(pdev, IORESOURCE_MEM, 1);
6874 		if (!res) {
6875 			dev_err(&pdev->dev, "Invalid resource\n");
6876 			return -EINVAL;
6877 		}
6878 		if (has_acpi_companion(&pdev->dev)) {
6879 			/* In case the MDIO memory region is declared in
6880 			 * the ACPI, it can already appear as 'in-use'
6881 			 * in the OS. Because it is overlapped by second
6882 			 * region of the network controller, make
6883 			 * sure it is released, before requesting it again.
6884 			 * The care is taken by mvpp2 driver to avoid
6885 			 * concurrent access to this memory region.
6886 			 */
6887 			release_resource(res);
6888 		}
6889 		priv->iface_base = devm_ioremap_resource(&pdev->dev, res);
6890 		if (IS_ERR(priv->iface_base))
6891 			return PTR_ERR(priv->iface_base);
6892 	}
6893 
6894 	if (priv->hw_version == MVPP22 && dev_of_node(&pdev->dev)) {
6895 		priv->sysctrl_base =
6896 			syscon_regmap_lookup_by_phandle(pdev->dev.of_node,
6897 							"marvell,system-controller");
6898 		if (IS_ERR(priv->sysctrl_base))
6899 			/* The system controller regmap is optional for dt
6900 			 * compatibility reasons. When not provided, the
6901 			 * configuration of the GoP relies on the
6902 			 * firmware/bootloader.
6903 			 */
6904 			priv->sysctrl_base = NULL;
6905 	}
6906 
6907 	if (priv->hw_version == MVPP22 &&
6908 	    mvpp2_get_nrxqs(priv) * 2 <= MVPP2_BM_MAX_POOLS)
6909 		priv->percpu_pools = 1;
6910 
6911 	mvpp2_setup_bm_pool();
6912 
6913 
6914 	priv->nthreads = min_t(unsigned int, num_present_cpus(),
6915 			       MVPP2_MAX_THREADS);
6916 
6917 	shared = num_present_cpus() - priv->nthreads;
6918 	if (shared > 0)
6919 		bitmap_fill(&priv->lock_map,
6920 			    min_t(int, shared, MVPP2_MAX_THREADS));
6921 
6922 	for (i = 0; i < MVPP2_MAX_THREADS; i++) {
6923 		u32 addr_space_sz;
6924 
6925 		addr_space_sz = (priv->hw_version == MVPP21 ?
6926 				 MVPP21_ADDR_SPACE_SZ : MVPP22_ADDR_SPACE_SZ);
6927 		priv->swth_base[i] = base + i * addr_space_sz;
6928 	}
6929 
6930 	if (priv->hw_version == MVPP21)
6931 		priv->max_port_rxqs = 8;
6932 	else
6933 		priv->max_port_rxqs = 32;
6934 
6935 	if (dev_of_node(&pdev->dev)) {
6936 		priv->pp_clk = devm_clk_get(&pdev->dev, "pp_clk");
6937 		if (IS_ERR(priv->pp_clk))
6938 			return PTR_ERR(priv->pp_clk);
6939 		err = clk_prepare_enable(priv->pp_clk);
6940 		if (err < 0)
6941 			return err;
6942 
6943 		priv->gop_clk = devm_clk_get(&pdev->dev, "gop_clk");
6944 		if (IS_ERR(priv->gop_clk)) {
6945 			err = PTR_ERR(priv->gop_clk);
6946 			goto err_pp_clk;
6947 		}
6948 		err = clk_prepare_enable(priv->gop_clk);
6949 		if (err < 0)
6950 			goto err_pp_clk;
6951 
6952 		if (priv->hw_version == MVPP22) {
6953 			priv->mg_clk = devm_clk_get(&pdev->dev, "mg_clk");
6954 			if (IS_ERR(priv->mg_clk)) {
6955 				err = PTR_ERR(priv->mg_clk);
6956 				goto err_gop_clk;
6957 			}
6958 
6959 			err = clk_prepare_enable(priv->mg_clk);
6960 			if (err < 0)
6961 				goto err_gop_clk;
6962 
6963 			priv->mg_core_clk = devm_clk_get(&pdev->dev, "mg_core_clk");
6964 			if (IS_ERR(priv->mg_core_clk)) {
6965 				priv->mg_core_clk = NULL;
6966 			} else {
6967 				err = clk_prepare_enable(priv->mg_core_clk);
6968 				if (err < 0)
6969 					goto err_mg_clk;
6970 			}
6971 		}
6972 
6973 		priv->axi_clk = devm_clk_get(&pdev->dev, "axi_clk");
6974 		if (IS_ERR(priv->axi_clk)) {
6975 			err = PTR_ERR(priv->axi_clk);
6976 			if (err == -EPROBE_DEFER)
6977 				goto err_mg_core_clk;
6978 			priv->axi_clk = NULL;
6979 		} else {
6980 			err = clk_prepare_enable(priv->axi_clk);
6981 			if (err < 0)
6982 				goto err_mg_core_clk;
6983 		}
6984 
6985 		/* Get system's tclk rate */
6986 		priv->tclk = clk_get_rate(priv->pp_clk);
6987 	} else if (device_property_read_u32(&pdev->dev, "clock-frequency",
6988 					    &priv->tclk)) {
6989 		dev_err(&pdev->dev, "missing clock-frequency value\n");
6990 		return -EINVAL;
6991 	}
6992 
6993 	if (priv->hw_version == MVPP22) {
6994 		err = dma_set_mask(&pdev->dev, MVPP2_DESC_DMA_MASK);
6995 		if (err)
6996 			goto err_axi_clk;
6997 		/* Sadly, the BM pools all share the same register to
6998 		 * store the high 32 bits of their address. So they
6999 		 * must all have the same high 32 bits, which forces
7000 		 * us to restrict coherent memory to DMA_BIT_MASK(32).
7001 		 */
7002 		err = dma_set_coherent_mask(&pdev->dev, DMA_BIT_MASK(32));
7003 		if (err)
7004 			goto err_axi_clk;
7005 	}
7006 
7007 	/* Initialize network controller */
7008 	err = mvpp2_init(pdev, priv);
7009 	if (err < 0) {
7010 		dev_err(&pdev->dev, "failed to initialize controller\n");
7011 		goto err_axi_clk;
7012 	}
7013 
7014 	err = mvpp22_tai_probe(&pdev->dev, priv);
7015 	if (err < 0)
7016 		goto err_axi_clk;
7017 
7018 	/* Initialize ports */
7019 	fwnode_for_each_available_child_node(fwnode, port_fwnode) {
7020 		err = mvpp2_port_probe(pdev, port_fwnode, priv);
7021 		if (err < 0)
7022 			goto err_port_probe;
7023 	}
7024 
7025 	if (priv->port_count == 0) {
7026 		dev_err(&pdev->dev, "no ports enabled\n");
7027 		err = -ENODEV;
7028 		goto err_axi_clk;
7029 	}
7030 
7031 	/* Statistics must be gathered regularly because some of them (like
7032 	 * packets counters) are 32-bit registers and could overflow quite
7033 	 * quickly. For instance, a 10Gb link used at full bandwidth with the
7034 	 * smallest packets (64B) will overflow a 32-bit counter in less than
7035 	 * 30 seconds. Then, use a workqueue to fill 64-bit counters.
7036 	 */
7037 	snprintf(priv->queue_name, sizeof(priv->queue_name),
7038 		 "stats-wq-%s%s", netdev_name(priv->port_list[0]->dev),
7039 		 priv->port_count > 1 ? "+" : "");
7040 	priv->stats_queue = create_singlethread_workqueue(priv->queue_name);
7041 	if (!priv->stats_queue) {
7042 		err = -ENOMEM;
7043 		goto err_port_probe;
7044 	}
7045 
7046 	mvpp2_dbgfs_init(priv, pdev->name);
7047 
7048 	platform_set_drvdata(pdev, priv);
7049 	return 0;
7050 
7051 err_port_probe:
7052 	fwnode_handle_put(port_fwnode);
7053 
7054 	i = 0;
7055 	fwnode_for_each_available_child_node(fwnode, port_fwnode) {
7056 		if (priv->port_list[i])
7057 			mvpp2_port_remove(priv->port_list[i]);
7058 		i++;
7059 	}
7060 err_axi_clk:
7061 	clk_disable_unprepare(priv->axi_clk);
7062 
7063 err_mg_core_clk:
7064 	if (priv->hw_version == MVPP22)
7065 		clk_disable_unprepare(priv->mg_core_clk);
7066 err_mg_clk:
7067 	if (priv->hw_version == MVPP22)
7068 		clk_disable_unprepare(priv->mg_clk);
7069 err_gop_clk:
7070 	clk_disable_unprepare(priv->gop_clk);
7071 err_pp_clk:
7072 	clk_disable_unprepare(priv->pp_clk);
7073 	return err;
7074 }
7075 
mvpp2_remove(struct platform_device * pdev)7076 static int mvpp2_remove(struct platform_device *pdev)
7077 {
7078 	struct mvpp2 *priv = platform_get_drvdata(pdev);
7079 	struct fwnode_handle *fwnode = pdev->dev.fwnode;
7080 	int i = 0, poolnum = MVPP2_BM_POOLS_NUM;
7081 	struct fwnode_handle *port_fwnode;
7082 
7083 	mvpp2_dbgfs_cleanup(priv);
7084 
7085 	fwnode_for_each_available_child_node(fwnode, port_fwnode) {
7086 		if (priv->port_list[i]) {
7087 			mutex_destroy(&priv->port_list[i]->gather_stats_lock);
7088 			mvpp2_port_remove(priv->port_list[i]);
7089 		}
7090 		i++;
7091 	}
7092 
7093 	destroy_workqueue(priv->stats_queue);
7094 
7095 	if (priv->percpu_pools)
7096 		poolnum = mvpp2_get_nrxqs(priv) * 2;
7097 
7098 	for (i = 0; i < poolnum; i++) {
7099 		struct mvpp2_bm_pool *bm_pool = &priv->bm_pools[i];
7100 
7101 		mvpp2_bm_pool_destroy(&pdev->dev, priv, bm_pool);
7102 	}
7103 
7104 	for (i = 0; i < MVPP2_MAX_THREADS; i++) {
7105 		struct mvpp2_tx_queue *aggr_txq = &priv->aggr_txqs[i];
7106 
7107 		dma_free_coherent(&pdev->dev,
7108 				  MVPP2_AGGR_TXQ_SIZE * MVPP2_DESC_ALIGNED_SIZE,
7109 				  aggr_txq->descs,
7110 				  aggr_txq->descs_dma);
7111 	}
7112 
7113 	if (is_acpi_node(port_fwnode))
7114 		return 0;
7115 
7116 	clk_disable_unprepare(priv->axi_clk);
7117 	clk_disable_unprepare(priv->mg_core_clk);
7118 	clk_disable_unprepare(priv->mg_clk);
7119 	clk_disable_unprepare(priv->pp_clk);
7120 	clk_disable_unprepare(priv->gop_clk);
7121 
7122 	return 0;
7123 }
7124 
7125 static const struct of_device_id mvpp2_match[] = {
7126 	{
7127 		.compatible = "marvell,armada-375-pp2",
7128 		.data = (void *)MVPP21,
7129 	},
7130 	{
7131 		.compatible = "marvell,armada-7k-pp22",
7132 		.data = (void *)MVPP22,
7133 	},
7134 	{ }
7135 };
7136 MODULE_DEVICE_TABLE(of, mvpp2_match);
7137 
7138 #ifdef CONFIG_ACPI
7139 static const struct acpi_device_id mvpp2_acpi_match[] = {
7140 	{ "MRVL0110", MVPP22 },
7141 	{ },
7142 };
7143 MODULE_DEVICE_TABLE(acpi, mvpp2_acpi_match);
7144 #endif
7145 
7146 static struct platform_driver mvpp2_driver = {
7147 	.probe = mvpp2_probe,
7148 	.remove = mvpp2_remove,
7149 	.driver = {
7150 		.name = MVPP2_DRIVER_NAME,
7151 		.of_match_table = mvpp2_match,
7152 		.acpi_match_table = ACPI_PTR(mvpp2_acpi_match),
7153 	},
7154 };
7155 
mvpp2_driver_init(void)7156 static int __init mvpp2_driver_init(void)
7157 {
7158 	return platform_driver_register(&mvpp2_driver);
7159 }
7160 module_init(mvpp2_driver_init);
7161 
mvpp2_driver_exit(void)7162 static void __exit mvpp2_driver_exit(void)
7163 {
7164 	platform_driver_unregister(&mvpp2_driver);
7165 	mvpp2_dbgfs_exit();
7166 }
7167 module_exit(mvpp2_driver_exit);
7168 
7169 MODULE_DESCRIPTION("Marvell PPv2 Ethernet Driver - www.marvell.com");
7170 MODULE_AUTHOR("Marcin Wojtas <mw@semihalf.com>");
7171 MODULE_LICENSE("GPL v2");
7172