net: aquantia: Fix internal stats calculation on rx
[linux-2.6/btrfs-unstable.git] / drivers / net / ethernet / aquantia / atlantic / aq_ring.c
blob0be6a11370bb3e233370c0dd377c8558310ab0f5
1 /*
2 * aQuantia Corporation Network Driver
3 * Copyright (C) 2014-2017 aQuantia Corporation. All rights reserved
5 * This program is free software; you can redistribute it and/or modify it
6 * under the terms and conditions of the GNU General Public License,
7 * version 2, as published by the Free Software Foundation.
8 */
10 /* File aq_ring.c: Definition of functions for Rx/Tx rings. */
12 #include "aq_ring.h"
13 #include "aq_nic.h"
14 #include "aq_hw.h"
16 #include <linux/netdevice.h>
17 #include <linux/etherdevice.h>
19 static struct aq_ring_s *aq_ring_alloc(struct aq_ring_s *self,
20 struct aq_nic_s *aq_nic)
22 int err = 0;
24 self->buff_ring =
25 kcalloc(self->size, sizeof(struct aq_ring_buff_s), GFP_KERNEL);
27 if (!self->buff_ring) {
28 err = -ENOMEM;
29 goto err_exit;
31 self->dx_ring = dma_alloc_coherent(aq_nic_get_dev(aq_nic),
32 self->size * self->dx_size,
33 &self->dx_ring_pa, GFP_KERNEL);
34 if (!self->dx_ring) {
35 err = -ENOMEM;
36 goto err_exit;
39 err_exit:
40 if (err < 0) {
41 aq_ring_free(self);
42 self = NULL;
44 return self;
47 struct aq_ring_s *aq_ring_tx_alloc(struct aq_ring_s *self,
48 struct aq_nic_s *aq_nic,
49 unsigned int idx,
50 struct aq_nic_cfg_s *aq_nic_cfg)
52 int err = 0;
54 self->aq_nic = aq_nic;
55 self->idx = idx;
56 self->size = aq_nic_cfg->txds;
57 self->dx_size = aq_nic_cfg->aq_hw_caps->txd_size;
59 self = aq_ring_alloc(self, aq_nic);
60 if (!self) {
61 err = -ENOMEM;
62 goto err_exit;
65 err_exit:
66 if (err < 0) {
67 aq_ring_free(self);
68 self = NULL;
70 return self;
73 struct aq_ring_s *aq_ring_rx_alloc(struct aq_ring_s *self,
74 struct aq_nic_s *aq_nic,
75 unsigned int idx,
76 struct aq_nic_cfg_s *aq_nic_cfg)
78 int err = 0;
80 self->aq_nic = aq_nic;
81 self->idx = idx;
82 self->size = aq_nic_cfg->rxds;
83 self->dx_size = aq_nic_cfg->aq_hw_caps->rxd_size;
85 self = aq_ring_alloc(self, aq_nic);
86 if (!self) {
87 err = -ENOMEM;
88 goto err_exit;
91 err_exit:
92 if (err < 0) {
93 aq_ring_free(self);
94 self = NULL;
96 return self;
99 int aq_ring_init(struct aq_ring_s *self)
101 self->hw_head = 0;
102 self->sw_head = 0;
103 self->sw_tail = 0;
104 return 0;
107 static inline bool aq_ring_dx_in_range(unsigned int h, unsigned int i,
108 unsigned int t)
110 return (h < t) ? ((h < i) && (i < t)) : ((h < i) || (i < t));
113 void aq_ring_update_queue_state(struct aq_ring_s *ring)
115 if (aq_ring_avail_dx(ring) <= AQ_CFG_SKB_FRAGS_MAX)
116 aq_ring_queue_stop(ring);
117 else if (aq_ring_avail_dx(ring) > AQ_CFG_RESTART_DESC_THRES)
118 aq_ring_queue_wake(ring);
121 void aq_ring_queue_wake(struct aq_ring_s *ring)
123 struct net_device *ndev = aq_nic_get_ndev(ring->aq_nic);
125 if (__netif_subqueue_stopped(ndev, ring->idx)) {
126 netif_wake_subqueue(ndev, ring->idx);
127 ring->stats.tx.queue_restarts++;
131 void aq_ring_queue_stop(struct aq_ring_s *ring)
133 struct net_device *ndev = aq_nic_get_ndev(ring->aq_nic);
135 if (!__netif_subqueue_stopped(ndev, ring->idx))
136 netif_stop_subqueue(ndev, ring->idx);
139 void aq_ring_tx_clean(struct aq_ring_s *self)
141 struct device *dev = aq_nic_get_dev(self->aq_nic);
143 for (; self->sw_head != self->hw_head;
144 self->sw_head = aq_ring_next_dx(self, self->sw_head)) {
145 struct aq_ring_buff_s *buff = &self->buff_ring[self->sw_head];
147 if (likely(buff->is_mapped)) {
148 if (unlikely(buff->is_sop)) {
149 if (!buff->is_eop &&
150 buff->eop_index != 0xffffU &&
151 (!aq_ring_dx_in_range(self->sw_head,
152 buff->eop_index,
153 self->hw_head)))
154 break;
156 dma_unmap_single(dev, buff->pa, buff->len,
157 DMA_TO_DEVICE);
158 } else {
159 dma_unmap_page(dev, buff->pa, buff->len,
160 DMA_TO_DEVICE);
164 if (unlikely(buff->is_eop))
165 dev_kfree_skb_any(buff->skb);
167 buff->pa = 0U;
168 buff->eop_index = 0xffffU;
172 #define AQ_SKB_ALIGN SKB_DATA_ALIGN(sizeof(struct skb_shared_info))
173 int aq_ring_rx_clean(struct aq_ring_s *self,
174 struct napi_struct *napi,
175 int *work_done,
176 int budget)
178 struct net_device *ndev = aq_nic_get_ndev(self->aq_nic);
179 int err = 0;
180 bool is_rsc_completed = true;
182 for (; (self->sw_head != self->hw_head) && budget;
183 self->sw_head = aq_ring_next_dx(self, self->sw_head),
184 --budget, ++(*work_done)) {
185 struct aq_ring_buff_s *buff = &self->buff_ring[self->sw_head];
186 struct sk_buff *skb = NULL;
187 unsigned int next_ = 0U;
188 unsigned int i = 0U;
189 struct aq_ring_buff_s *buff_ = NULL;
191 if (buff->is_error) {
192 __free_pages(buff->page, 0);
193 continue;
196 if (buff->is_cleaned)
197 continue;
199 if (!buff->is_eop) {
200 for (next_ = buff->next,
201 buff_ = &self->buff_ring[next_]; true;
202 next_ = buff_->next,
203 buff_ = &self->buff_ring[next_]) {
204 is_rsc_completed =
205 aq_ring_dx_in_range(self->sw_head,
206 next_,
207 self->hw_head);
209 if (unlikely(!is_rsc_completed)) {
210 is_rsc_completed = false;
211 break;
214 if (buff_->is_eop)
215 break;
218 if (!is_rsc_completed) {
219 err = 0;
220 goto err_exit;
224 /* for single fragment packets use build_skb() */
225 if (buff->is_eop) {
226 skb = build_skb(page_address(buff->page),
227 buff->len + AQ_SKB_ALIGN);
228 if (unlikely(!skb)) {
229 err = -ENOMEM;
230 goto err_exit;
233 skb_put(skb, buff->len);
234 } else {
235 skb = netdev_alloc_skb(ndev, ETH_HLEN);
236 if (unlikely(!skb)) {
237 err = -ENOMEM;
238 goto err_exit;
240 skb_put(skb, ETH_HLEN);
241 memcpy(skb->data, page_address(buff->page), ETH_HLEN);
243 skb_add_rx_frag(skb, 0, buff->page, ETH_HLEN,
244 buff->len - ETH_HLEN,
245 SKB_TRUESIZE(buff->len - ETH_HLEN));
247 for (i = 1U, next_ = buff->next,
248 buff_ = &self->buff_ring[next_]; true;
249 next_ = buff_->next,
250 buff_ = &self->buff_ring[next_], ++i) {
251 skb_add_rx_frag(skb, i, buff_->page, 0,
252 buff_->len,
253 SKB_TRUESIZE(buff->len -
254 ETH_HLEN));
255 buff_->is_cleaned = 1;
257 if (buff_->is_eop)
258 break;
262 skb->protocol = eth_type_trans(skb, ndev);
263 if (unlikely(buff->is_cso_err)) {
264 ++self->stats.rx.errors;
265 skb->ip_summed = CHECKSUM_NONE;
266 } else {
267 if (buff->is_ip_cso) {
268 __skb_incr_checksum_unnecessary(skb);
269 if (buff->is_udp_cso || buff->is_tcp_cso)
270 __skb_incr_checksum_unnecessary(skb);
271 } else {
272 skb->ip_summed = CHECKSUM_NONE;
276 skb_set_hash(skb, buff->rss_hash,
277 buff->is_hash_l4 ? PKT_HASH_TYPE_L4 :
278 PKT_HASH_TYPE_NONE);
280 skb_record_rx_queue(skb, self->idx);
282 ++self->stats.rx.packets;
283 self->stats.rx.bytes += skb->len;
285 napi_gro_receive(napi, skb);
288 err_exit:
289 return err;
292 int aq_ring_rx_fill(struct aq_ring_s *self)
294 unsigned int pages_order = fls(AQ_CFG_RX_FRAME_MAX / PAGE_SIZE +
295 (AQ_CFG_RX_FRAME_MAX % PAGE_SIZE ? 1 : 0)) - 1;
296 struct aq_ring_buff_s *buff = NULL;
297 int err = 0;
298 int i = 0;
300 for (i = aq_ring_avail_dx(self); i--;
301 self->sw_tail = aq_ring_next_dx(self, self->sw_tail)) {
302 buff = &self->buff_ring[self->sw_tail];
304 buff->flags = 0U;
305 buff->len = AQ_CFG_RX_FRAME_MAX;
307 buff->page = alloc_pages(GFP_ATOMIC | __GFP_COMP, pages_order);
308 if (!buff->page) {
309 err = -ENOMEM;
310 goto err_exit;
313 buff->pa = dma_map_page(aq_nic_get_dev(self->aq_nic),
314 buff->page, 0,
315 AQ_CFG_RX_FRAME_MAX, DMA_FROM_DEVICE);
317 if (dma_mapping_error(aq_nic_get_dev(self->aq_nic), buff->pa)) {
318 err = -ENOMEM;
319 goto err_exit;
322 buff = NULL;
325 err_exit:
326 if (err < 0) {
327 if (buff && buff->page)
328 __free_pages(buff->page, 0);
331 return err;
334 void aq_ring_rx_deinit(struct aq_ring_s *self)
336 if (!self)
337 goto err_exit;
339 for (; self->sw_head != self->sw_tail;
340 self->sw_head = aq_ring_next_dx(self, self->sw_head)) {
341 struct aq_ring_buff_s *buff = &self->buff_ring[self->sw_head];
343 dma_unmap_page(aq_nic_get_dev(self->aq_nic), buff->pa,
344 AQ_CFG_RX_FRAME_MAX, DMA_FROM_DEVICE);
346 __free_pages(buff->page, 0);
349 err_exit:;
352 void aq_ring_free(struct aq_ring_s *self)
354 if (!self)
355 goto err_exit;
357 kfree(self->buff_ring);
359 if (self->dx_ring)
360 dma_free_coherent(aq_nic_get_dev(self->aq_nic),
361 self->size * self->dx_size, self->dx_ring,
362 self->dx_ring_pa);
364 err_exit:;