1cdedef59SAnirudh Venkataramanan // SPDX-License-Identifier: GPL-2.0
2cdedef59SAnirudh Venkataramanan /* Copyright (c) 2018, Intel Corporation. */
3cdedef59SAnirudh Venkataramanan 
4cdedef59SAnirudh Venkataramanan /* The driver transmit and receive code */
5cdedef59SAnirudh Venkataramanan 
6cdedef59SAnirudh Venkataramanan #include <linux/mm.h>
7cc14db11SJesse Brandeburg #include <linux/netdevice.h>
8cc14db11SJesse Brandeburg #include <linux/prefetch.h>
9efc2214bSMaciej Fijalkowski #include <linux/bpf_trace.h>
102a87bd73SDave Ertman #include <net/dsfield.h>
1169e66c04SJoe Damato #include <net/mpls.h>
12efc2214bSMaciej Fijalkowski #include <net/xdp.h>
130891d6d4SKrzysztof Kazimierczak #include "ice_txrx_lib.h"
14efc2214bSMaciej Fijalkowski #include "ice_lib.h"
15cdedef59SAnirudh Venkataramanan #include "ice.h"
163089cf6dSJesse Brandeburg #include "ice_trace.h"
175f6aa50eSAnirudh Venkataramanan #include "ice_dcb_lib.h"
182d4238f5SKrzysztof Kazimierczak #include "ice_xsk.h"
19f5396b8aSGrzegorz Nitka #include "ice_eswitch.h"
20cdedef59SAnirudh Venkataramanan 
212b245cb2SAnirudh Venkataramanan #define ICE_RX_HDR_SIZE		256
222b245cb2SAnirudh Venkataramanan 
23148beb61SHenry Tieman #define FDIR_DESC_RXDID 0x40
24cac2a27cSHenry Tieman #define ICE_FDIR_CLEAN_DELAY 10
25cac2a27cSHenry Tieman 
26cac2a27cSHenry Tieman /**
27cac2a27cSHenry Tieman  * ice_prgm_fdir_fltr - Program a Flow Director filter
28cac2a27cSHenry Tieman  * @vsi: VSI to send dummy packet
29cac2a27cSHenry Tieman  * @fdir_desc: flow director descriptor
30cac2a27cSHenry Tieman  * @raw_packet: allocated buffer for flow director
31cac2a27cSHenry Tieman  */
32cac2a27cSHenry Tieman int
ice_prgm_fdir_fltr(struct ice_vsi * vsi,struct ice_fltr_desc * fdir_desc,u8 * raw_packet)33cac2a27cSHenry Tieman ice_prgm_fdir_fltr(struct ice_vsi *vsi, struct ice_fltr_desc *fdir_desc,
34cac2a27cSHenry Tieman 		   u8 *raw_packet)
35cac2a27cSHenry Tieman {
36cac2a27cSHenry Tieman 	struct ice_tx_buf *tx_buf, *first;
37cac2a27cSHenry Tieman 	struct ice_fltr_desc *f_desc;
38cac2a27cSHenry Tieman 	struct ice_tx_desc *tx_desc;
39e72bba21SMaciej Fijalkowski 	struct ice_tx_ring *tx_ring;
40cac2a27cSHenry Tieman 	struct device *dev;
41cac2a27cSHenry Tieman 	dma_addr_t dma;
42cac2a27cSHenry Tieman 	u32 td_cmd;
43cac2a27cSHenry Tieman 	u16 i;
44cac2a27cSHenry Tieman 
45cac2a27cSHenry Tieman 	/* VSI and Tx ring */
46cac2a27cSHenry Tieman 	if (!vsi)
47cac2a27cSHenry Tieman 		return -ENOENT;
48cac2a27cSHenry Tieman 	tx_ring = vsi->tx_rings[0];
49cac2a27cSHenry Tieman 	if (!tx_ring || !tx_ring->desc)
50cac2a27cSHenry Tieman 		return -ENOENT;
51cac2a27cSHenry Tieman 	dev = tx_ring->dev;
52cac2a27cSHenry Tieman 
53cac2a27cSHenry Tieman 	/* we are using two descriptors to add/del a filter and we can wait */
54cac2a27cSHenry Tieman 	for (i = ICE_FDIR_CLEAN_DELAY; ICE_DESC_UNUSED(tx_ring) < 2; i--) {
55cac2a27cSHenry Tieman 		if (!i)
56cac2a27cSHenry Tieman 			return -EAGAIN;
57cac2a27cSHenry Tieman 		msleep_interruptible(1);
58cac2a27cSHenry Tieman 	}
59cac2a27cSHenry Tieman 
60cac2a27cSHenry Tieman 	dma = dma_map_single(dev, raw_packet, ICE_FDIR_MAX_RAW_PKT_SIZE,
61cac2a27cSHenry Tieman 			     DMA_TO_DEVICE);
62cac2a27cSHenry Tieman 
63cac2a27cSHenry Tieman 	if (dma_mapping_error(dev, dma))
64cac2a27cSHenry Tieman 		return -EINVAL;
65cac2a27cSHenry Tieman 
66cac2a27cSHenry Tieman 	/* grab the next descriptor */
67cac2a27cSHenry Tieman 	i = tx_ring->next_to_use;
68cac2a27cSHenry Tieman 	first = &tx_ring->tx_buf[i];
69cac2a27cSHenry Tieman 	f_desc = ICE_TX_FDIRDESC(tx_ring, i);
70cac2a27cSHenry Tieman 	memcpy(f_desc, fdir_desc, sizeof(*f_desc));
71cac2a27cSHenry Tieman 
72cac2a27cSHenry Tieman 	i++;
73cac2a27cSHenry Tieman 	i = (i < tx_ring->count) ? i : 0;
74cac2a27cSHenry Tieman 	tx_desc = ICE_TX_DESC(tx_ring, i);
75cac2a27cSHenry Tieman 	tx_buf = &tx_ring->tx_buf[i];
76cac2a27cSHenry Tieman 
77cac2a27cSHenry Tieman 	i++;
78cac2a27cSHenry Tieman 	tx_ring->next_to_use = (i < tx_ring->count) ? i : 0;
79cac2a27cSHenry Tieman 
80cac2a27cSHenry Tieman 	memset(tx_buf, 0, sizeof(*tx_buf));
81cac2a27cSHenry Tieman 	dma_unmap_len_set(tx_buf, len, ICE_FDIR_MAX_RAW_PKT_SIZE);
82cac2a27cSHenry Tieman 	dma_unmap_addr_set(tx_buf, dma, dma);
83cac2a27cSHenry Tieman 
84cac2a27cSHenry Tieman 	tx_desc->buf_addr = cpu_to_le64(dma);
85cac2a27cSHenry Tieman 	td_cmd = ICE_TXD_LAST_DESC_CMD | ICE_TX_DESC_CMD_DUMMY |
86cac2a27cSHenry Tieman 		 ICE_TX_DESC_CMD_RE;
87cac2a27cSHenry Tieman 
88aa1d3fafSAlexander Lobakin 	tx_buf->type = ICE_TX_BUF_DUMMY;
89cac2a27cSHenry Tieman 	tx_buf->raw_buf = raw_packet;
90cac2a27cSHenry Tieman 
91cac2a27cSHenry Tieman 	tx_desc->cmd_type_offset_bsz =
92cac2a27cSHenry Tieman 		ice_build_ctob(td_cmd, 0, ICE_FDIR_MAX_RAW_PKT_SIZE, 0);
93cac2a27cSHenry Tieman 
94cac2a27cSHenry Tieman 	/* Force memory write to complete before letting h/w know
95cac2a27cSHenry Tieman 	 * there are new descriptors to fetch.
96cac2a27cSHenry Tieman 	 */
97cac2a27cSHenry Tieman 	wmb();
98cac2a27cSHenry Tieman 
99cac2a27cSHenry Tieman 	/* mark the data descriptor to be watched */
100cac2a27cSHenry Tieman 	first->next_to_watch = tx_desc;
101cac2a27cSHenry Tieman 
102cac2a27cSHenry Tieman 	writel(tx_ring->next_to_use, tx_ring->tail);
103cac2a27cSHenry Tieman 
104cac2a27cSHenry Tieman 	return 0;
105cac2a27cSHenry Tieman }
106148beb61SHenry Tieman 
107cdedef59SAnirudh Venkataramanan /**
108cdedef59SAnirudh Venkataramanan  * ice_unmap_and_free_tx_buf - Release a Tx buffer
109cdedef59SAnirudh Venkataramanan  * @ring: the ring that owns the buffer
110cdedef59SAnirudh Venkataramanan  * @tx_buf: the buffer to free
111cdedef59SAnirudh Venkataramanan  */
112cdedef59SAnirudh Venkataramanan static void
ice_unmap_and_free_tx_buf(struct ice_tx_ring * ring,struct ice_tx_buf * tx_buf)113e72bba21SMaciej Fijalkowski ice_unmap_and_free_tx_buf(struct ice_tx_ring *ring, struct ice_tx_buf *tx_buf)
114cdedef59SAnirudh Venkataramanan {
115cdedef59SAnirudh Venkataramanan 	if (dma_unmap_len(tx_buf, len))
116cdedef59SAnirudh Venkataramanan 		dma_unmap_page(ring->dev,
117cdedef59SAnirudh Venkataramanan 			       dma_unmap_addr(tx_buf, dma),
118cdedef59SAnirudh Venkataramanan 			       dma_unmap_len(tx_buf, len),
119cdedef59SAnirudh Venkataramanan 			       DMA_TO_DEVICE);
120aa1d3fafSAlexander Lobakin 
121aa1d3fafSAlexander Lobakin 	switch (tx_buf->type) {
122aa1d3fafSAlexander Lobakin 	case ICE_TX_BUF_DUMMY:
123aa1d3fafSAlexander Lobakin 		devm_kfree(ring->dev, tx_buf->raw_buf);
124aa1d3fafSAlexander Lobakin 		break;
125aa1d3fafSAlexander Lobakin 	case ICE_TX_BUF_SKB:
126aa1d3fafSAlexander Lobakin 		dev_kfree_skb_any(tx_buf->skb);
127aa1d3fafSAlexander Lobakin 		break;
128aa1d3fafSAlexander Lobakin 	case ICE_TX_BUF_XDP_TX:
129aa1d3fafSAlexander Lobakin 		page_frag_free(tx_buf->raw_buf);
130aa1d3fafSAlexander Lobakin 		break;
131055d0920SAlexander Lobakin 	case ICE_TX_BUF_XDP_XMIT:
132055d0920SAlexander Lobakin 		xdp_return_frame(tx_buf->xdpf);
133055d0920SAlexander Lobakin 		break;
134cdedef59SAnirudh Venkataramanan 	}
135cdedef59SAnirudh Venkataramanan 
136cdedef59SAnirudh Venkataramanan 	tx_buf->next_to_watch = NULL;
137aa1d3fafSAlexander Lobakin 	tx_buf->type = ICE_TX_BUF_EMPTY;
138cdedef59SAnirudh Venkataramanan 	dma_unmap_len_set(tx_buf, len, 0);
139cdedef59SAnirudh Venkataramanan 	/* tx_buf must be completely set up in the transmit path */
140cdedef59SAnirudh Venkataramanan }
141cdedef59SAnirudh Venkataramanan 
txring_txq(const struct ice_tx_ring * ring)142e72bba21SMaciej Fijalkowski static struct netdev_queue *txring_txq(const struct ice_tx_ring *ring)
143cdedef59SAnirudh Venkataramanan {
144cdedef59SAnirudh Venkataramanan 	return netdev_get_tx_queue(ring->netdev, ring->q_index);
145cdedef59SAnirudh Venkataramanan }
146cdedef59SAnirudh Venkataramanan 
147cdedef59SAnirudh Venkataramanan /**
148cdedef59SAnirudh Venkataramanan  * ice_clean_tx_ring - Free any empty Tx buffers
149cdedef59SAnirudh Venkataramanan  * @tx_ring: ring to be cleaned
150cdedef59SAnirudh Venkataramanan  */
ice_clean_tx_ring(struct ice_tx_ring * tx_ring)151e72bba21SMaciej Fijalkowski void ice_clean_tx_ring(struct ice_tx_ring *tx_ring)
152cdedef59SAnirudh Venkataramanan {
153e72bba21SMaciej Fijalkowski 	u32 size;
154cdedef59SAnirudh Venkataramanan 	u16 i;
155cdedef59SAnirudh Venkataramanan 
1561742b3d5SMagnus Karlsson 	if (ice_ring_is_xdp(tx_ring) && tx_ring->xsk_pool) {
1572d4238f5SKrzysztof Kazimierczak 		ice_xsk_clean_xdp_ring(tx_ring);
1582d4238f5SKrzysztof Kazimierczak 		goto tx_skip_free;
1592d4238f5SKrzysztof Kazimierczak 	}
1602d4238f5SKrzysztof Kazimierczak 
161cdedef59SAnirudh Venkataramanan 	/* ring already cleared, nothing to do */
162cdedef59SAnirudh Venkataramanan 	if (!tx_ring->tx_buf)
163cdedef59SAnirudh Venkataramanan 		return;
164cdedef59SAnirudh Venkataramanan 
1652f2da36eSAnirudh Venkataramanan 	/* Free all the Tx ring sk_buffs */
166cdedef59SAnirudh Venkataramanan 	for (i = 0; i < tx_ring->count; i++)
167cdedef59SAnirudh Venkataramanan 		ice_unmap_and_free_tx_buf(tx_ring, &tx_ring->tx_buf[i]);
168cdedef59SAnirudh Venkataramanan 
1692d4238f5SKrzysztof Kazimierczak tx_skip_free:
170c6dfd690SBruce Allan 	memset(tx_ring->tx_buf, 0, sizeof(*tx_ring->tx_buf) * tx_ring->count);
171cdedef59SAnirudh Venkataramanan 
172e72bba21SMaciej Fijalkowski 	size = ALIGN(tx_ring->count * sizeof(struct ice_tx_desc),
173e72bba21SMaciej Fijalkowski 		     PAGE_SIZE);
174cdedef59SAnirudh Venkataramanan 	/* Zero out the descriptor ring */
175e72bba21SMaciej Fijalkowski 	memset(tx_ring->desc, 0, size);
176cdedef59SAnirudh Venkataramanan 
177cdedef59SAnirudh Venkataramanan 	tx_ring->next_to_use = 0;
178cdedef59SAnirudh Venkataramanan 	tx_ring->next_to_clean = 0;
179cdedef59SAnirudh Venkataramanan 
180cdedef59SAnirudh Venkataramanan 	if (!tx_ring->netdev)
181cdedef59SAnirudh Venkataramanan 		return;
182cdedef59SAnirudh Venkataramanan 
183cdedef59SAnirudh Venkataramanan 	/* cleanup Tx queue statistics */
184cdedef59SAnirudh Venkataramanan 	netdev_tx_reset_queue(txring_txq(tx_ring));
185cdedef59SAnirudh Venkataramanan }
186cdedef59SAnirudh Venkataramanan 
187cdedef59SAnirudh Venkataramanan /**
188cdedef59SAnirudh Venkataramanan  * ice_free_tx_ring - Free Tx resources per queue
189cdedef59SAnirudh Venkataramanan  * @tx_ring: Tx descriptor ring for a specific queue
190cdedef59SAnirudh Venkataramanan  *
191cdedef59SAnirudh Venkataramanan  * Free all transmit software resources
192cdedef59SAnirudh Venkataramanan  */
ice_free_tx_ring(struct ice_tx_ring * tx_ring)193e72bba21SMaciej Fijalkowski void ice_free_tx_ring(struct ice_tx_ring *tx_ring)
194cdedef59SAnirudh Venkataramanan {
195e72bba21SMaciej Fijalkowski 	u32 size;
196e72bba21SMaciej Fijalkowski 
197cdedef59SAnirudh Venkataramanan 	ice_clean_tx_ring(tx_ring);
198cdedef59SAnirudh Venkataramanan 	devm_kfree(tx_ring->dev, tx_ring->tx_buf);
199cdedef59SAnirudh Venkataramanan 	tx_ring->tx_buf = NULL;
200cdedef59SAnirudh Venkataramanan 
201cdedef59SAnirudh Venkataramanan 	if (tx_ring->desc) {
202e72bba21SMaciej Fijalkowski 		size = ALIGN(tx_ring->count * sizeof(struct ice_tx_desc),
203e72bba21SMaciej Fijalkowski 			     PAGE_SIZE);
204e72bba21SMaciej Fijalkowski 		dmam_free_coherent(tx_ring->dev, size,
205cdedef59SAnirudh Venkataramanan 				   tx_ring->desc, tx_ring->dma);
206cdedef59SAnirudh Venkataramanan 		tx_ring->desc = NULL;
207cdedef59SAnirudh Venkataramanan 	}
208cdedef59SAnirudh Venkataramanan }
209cdedef59SAnirudh Venkataramanan 
210cdedef59SAnirudh Venkataramanan /**
2112b245cb2SAnirudh Venkataramanan  * ice_clean_tx_irq - Reclaim resources after transmit completes
2122b245cb2SAnirudh Venkataramanan  * @tx_ring: Tx ring to clean
2132b245cb2SAnirudh Venkataramanan  * @napi_budget: Used to determine if we are in netpoll
2142b245cb2SAnirudh Venkataramanan  *
2152b245cb2SAnirudh Venkataramanan  * Returns true if there's any budget left (e.g. the clean is finished)
2162b245cb2SAnirudh Venkataramanan  */
ice_clean_tx_irq(struct ice_tx_ring * tx_ring,int napi_budget)217e72bba21SMaciej Fijalkowski static bool ice_clean_tx_irq(struct ice_tx_ring *tx_ring, int napi_budget)
2182b245cb2SAnirudh Venkataramanan {
2192b245cb2SAnirudh Venkataramanan 	unsigned int total_bytes = 0, total_pkts = 0;
2202fb0821fSJesse Brandeburg 	unsigned int budget = ICE_DFLT_IRQ_WORK;
2212fb0821fSJesse Brandeburg 	struct ice_vsi *vsi = tx_ring->vsi;
2222b245cb2SAnirudh Venkataramanan 	s16 i = tx_ring->next_to_clean;
2232b245cb2SAnirudh Venkataramanan 	struct ice_tx_desc *tx_desc;
2242b245cb2SAnirudh Venkataramanan 	struct ice_tx_buf *tx_buf;
2252b245cb2SAnirudh Venkataramanan 
226cc14db11SJesse Brandeburg 	/* get the bql data ready */
227cc14db11SJesse Brandeburg 	netdev_txq_bql_complete_prefetchw(txring_txq(tx_ring));
228cc14db11SJesse Brandeburg 
2292b245cb2SAnirudh Venkataramanan 	tx_buf = &tx_ring->tx_buf[i];
2302b245cb2SAnirudh Venkataramanan 	tx_desc = ICE_TX_DESC(tx_ring, i);
2312b245cb2SAnirudh Venkataramanan 	i -= tx_ring->count;
2322b245cb2SAnirudh Venkataramanan 
2332fb0821fSJesse Brandeburg 	prefetch(&vsi->state);
2342fb0821fSJesse Brandeburg 
2352b245cb2SAnirudh Venkataramanan 	do {
2362b245cb2SAnirudh Venkataramanan 		struct ice_tx_desc *eop_desc = tx_buf->next_to_watch;
2372b245cb2SAnirudh Venkataramanan 
2382b245cb2SAnirudh Venkataramanan 		/* if next_to_watch is not set then there is no work pending */
2392b245cb2SAnirudh Venkataramanan 		if (!eop_desc)
2402b245cb2SAnirudh Venkataramanan 			break;
2412b245cb2SAnirudh Venkataramanan 
242cc14db11SJesse Brandeburg 		/* follow the guidelines of other drivers */
243cc14db11SJesse Brandeburg 		prefetchw(&tx_buf->skb->users);
244cc14db11SJesse Brandeburg 
2452b245cb2SAnirudh Venkataramanan 		smp_rmb();	/* prevent any other reads prior to eop_desc */
2462b245cb2SAnirudh Venkataramanan 
2473089cf6dSJesse Brandeburg 		ice_trace(clean_tx_irq, tx_ring, tx_desc, tx_buf);
2482b245cb2SAnirudh Venkataramanan 		/* if the descriptor isn't done, no work yet to do */
2492b245cb2SAnirudh Venkataramanan 		if (!(eop_desc->cmd_type_offset_bsz &
2502b245cb2SAnirudh Venkataramanan 		      cpu_to_le64(ICE_TX_DESC_DTYPE_DESC_DONE)))
2512b245cb2SAnirudh Venkataramanan 			break;
2522b245cb2SAnirudh Venkataramanan 
2532b245cb2SAnirudh Venkataramanan 		/* clear next_to_watch to prevent false hangs */
2542b245cb2SAnirudh Venkataramanan 		tx_buf->next_to_watch = NULL;
2552b245cb2SAnirudh Venkataramanan 
2562b245cb2SAnirudh Venkataramanan 		/* update the statistics for this packet */
2572b245cb2SAnirudh Venkataramanan 		total_bytes += tx_buf->bytecount;
2582b245cb2SAnirudh Venkataramanan 		total_pkts += tx_buf->gso_segs;
2592b245cb2SAnirudh Venkataramanan 
2602b245cb2SAnirudh Venkataramanan 		/* free the skb */
2612b245cb2SAnirudh Venkataramanan 		napi_consume_skb(tx_buf->skb, napi_budget);
2622b245cb2SAnirudh Venkataramanan 
2632b245cb2SAnirudh Venkataramanan 		/* unmap skb header data */
2642b245cb2SAnirudh Venkataramanan 		dma_unmap_single(tx_ring->dev,
2652b245cb2SAnirudh Venkataramanan 				 dma_unmap_addr(tx_buf, dma),
2662b245cb2SAnirudh Venkataramanan 				 dma_unmap_len(tx_buf, len),
2672b245cb2SAnirudh Venkataramanan 				 DMA_TO_DEVICE);
2682b245cb2SAnirudh Venkataramanan 
2692b245cb2SAnirudh Venkataramanan 		/* clear tx_buf data */
270aa1d3fafSAlexander Lobakin 		tx_buf->type = ICE_TX_BUF_EMPTY;
2712b245cb2SAnirudh Venkataramanan 		dma_unmap_len_set(tx_buf, len, 0);
2722b245cb2SAnirudh Venkataramanan 
2732b245cb2SAnirudh Venkataramanan 		/* unmap remaining buffers */
2742b245cb2SAnirudh Venkataramanan 		while (tx_desc != eop_desc) {
2753089cf6dSJesse Brandeburg 			ice_trace(clean_tx_irq_unmap, tx_ring, tx_desc, tx_buf);
2762b245cb2SAnirudh Venkataramanan 			tx_buf++;
2772b245cb2SAnirudh Venkataramanan 			tx_desc++;
2782b245cb2SAnirudh Venkataramanan 			i++;
2792b245cb2SAnirudh Venkataramanan 			if (unlikely(!i)) {
2802b245cb2SAnirudh Venkataramanan 				i -= tx_ring->count;
2812b245cb2SAnirudh Venkataramanan 				tx_buf = tx_ring->tx_buf;
2822b245cb2SAnirudh Venkataramanan 				tx_desc = ICE_TX_DESC(tx_ring, 0);
2832b245cb2SAnirudh Venkataramanan 			}
2842b245cb2SAnirudh Venkataramanan 
2852b245cb2SAnirudh Venkataramanan 			/* unmap any remaining paged data */
2862b245cb2SAnirudh Venkataramanan 			if (dma_unmap_len(tx_buf, len)) {
2872b245cb2SAnirudh Venkataramanan 				dma_unmap_page(tx_ring->dev,
2882b245cb2SAnirudh Venkataramanan 					       dma_unmap_addr(tx_buf, dma),
2892b245cb2SAnirudh Venkataramanan 					       dma_unmap_len(tx_buf, len),
2902b245cb2SAnirudh Venkataramanan 					       DMA_TO_DEVICE);
2912b245cb2SAnirudh Venkataramanan 				dma_unmap_len_set(tx_buf, len, 0);
2922b245cb2SAnirudh Venkataramanan 			}
2932b245cb2SAnirudh Venkataramanan 		}
2943089cf6dSJesse Brandeburg 		ice_trace(clean_tx_irq_unmap_eop, tx_ring, tx_desc, tx_buf);
2952b245cb2SAnirudh Venkataramanan 
2962b245cb2SAnirudh Venkataramanan 		/* move us one more past the eop_desc for start of next pkt */
2972b245cb2SAnirudh Venkataramanan 		tx_buf++;
2982b245cb2SAnirudh Venkataramanan 		tx_desc++;
2992b245cb2SAnirudh Venkataramanan 		i++;
3002b245cb2SAnirudh Venkataramanan 		if (unlikely(!i)) {
3012b245cb2SAnirudh Venkataramanan 			i -= tx_ring->count;
3022b245cb2SAnirudh Venkataramanan 			tx_buf = tx_ring->tx_buf;
3032b245cb2SAnirudh Venkataramanan 			tx_desc = ICE_TX_DESC(tx_ring, 0);
3042b245cb2SAnirudh Venkataramanan 		}
3052b245cb2SAnirudh Venkataramanan 
3062b245cb2SAnirudh Venkataramanan 		prefetch(tx_desc);
3072b245cb2SAnirudh Venkataramanan 
3082b245cb2SAnirudh Venkataramanan 		/* update budget accounting */
3092b245cb2SAnirudh Venkataramanan 		budget--;
3102b245cb2SAnirudh Venkataramanan 	} while (likely(budget));
3112b245cb2SAnirudh Venkataramanan 
3122b245cb2SAnirudh Venkataramanan 	i += tx_ring->count;
3132b245cb2SAnirudh Venkataramanan 	tx_ring->next_to_clean = i;
3142d4238f5SKrzysztof Kazimierczak 
3152d4238f5SKrzysztof Kazimierczak 	ice_update_tx_ring_stats(tx_ring, total_pkts, total_bytes);
3161c96c168SJesse Brandeburg 	netdev_tx_completed_queue(txring_txq(tx_ring), total_pkts, total_bytes);
3172b245cb2SAnirudh Venkataramanan 
3182b245cb2SAnirudh Venkataramanan #define TX_WAKE_THRESHOLD ((s16)(DESC_NEEDED * 2))
3192b245cb2SAnirudh Venkataramanan 	if (unlikely(total_pkts && netif_carrier_ok(tx_ring->netdev) &&
3202b245cb2SAnirudh Venkataramanan 		     (ICE_DESC_UNUSED(tx_ring) >= TX_WAKE_THRESHOLD))) {
3212b245cb2SAnirudh Venkataramanan 		/* Make sure that anybody stopping the queue after this
3222b245cb2SAnirudh Venkataramanan 		 * sees the new next_to_clean.
3232b245cb2SAnirudh Venkataramanan 		 */
3242b245cb2SAnirudh Venkataramanan 		smp_mb();
3251c96c168SJesse Brandeburg 		if (netif_tx_queue_stopped(txring_txq(tx_ring)) &&
326e97fb1aeSAnirudh Venkataramanan 		    !test_bit(ICE_VSI_DOWN, vsi->state)) {
3271c96c168SJesse Brandeburg 			netif_tx_wake_queue(txring_txq(tx_ring));
328288ecf49SBenjamin Mikailenko 			++tx_ring->ring_stats->tx_stats.restart_q;
3292b245cb2SAnirudh Venkataramanan 		}
3302b245cb2SAnirudh Venkataramanan 	}
3312b245cb2SAnirudh Venkataramanan 
3322b245cb2SAnirudh Venkataramanan 	return !!budget;
3332b245cb2SAnirudh Venkataramanan }
3342b245cb2SAnirudh Venkataramanan 
3352b245cb2SAnirudh Venkataramanan /**
336cdedef59SAnirudh Venkataramanan  * ice_setup_tx_ring - Allocate the Tx descriptors
337d337f2afSAnirudh Venkataramanan  * @tx_ring: the Tx ring to set up
338cdedef59SAnirudh Venkataramanan  *
339cdedef59SAnirudh Venkataramanan  * Return 0 on success, negative on error
340cdedef59SAnirudh Venkataramanan  */
ice_setup_tx_ring(struct ice_tx_ring * tx_ring)341e72bba21SMaciej Fijalkowski int ice_setup_tx_ring(struct ice_tx_ring *tx_ring)
342cdedef59SAnirudh Venkataramanan {
343cdedef59SAnirudh Venkataramanan 	struct device *dev = tx_ring->dev;
344e72bba21SMaciej Fijalkowski 	u32 size;
345cdedef59SAnirudh Venkataramanan 
346cdedef59SAnirudh Venkataramanan 	if (!dev)
347cdedef59SAnirudh Venkataramanan 		return -ENOMEM;
348cdedef59SAnirudh Venkataramanan 
349cdedef59SAnirudh Venkataramanan 	/* warn if we are about to overwrite the pointer */
350cdedef59SAnirudh Venkataramanan 	WARN_ON(tx_ring->tx_buf);
351c6dfd690SBruce Allan 	tx_ring->tx_buf =
3526f332353SGustavo A. R. Silva 		devm_kcalloc(dev, sizeof(*tx_ring->tx_buf), tx_ring->count,
353c6dfd690SBruce Allan 			     GFP_KERNEL);
354cdedef59SAnirudh Venkataramanan 	if (!tx_ring->tx_buf)
355cdedef59SAnirudh Venkataramanan 		return -ENOMEM;
356cdedef59SAnirudh Venkataramanan 
357ad71b256SBrett Creeley 	/* round up to nearest page */
358e72bba21SMaciej Fijalkowski 	size = ALIGN(tx_ring->count * sizeof(struct ice_tx_desc),
359ad71b256SBrett Creeley 		     PAGE_SIZE);
360e72bba21SMaciej Fijalkowski 	tx_ring->desc = dmam_alloc_coherent(dev, size, &tx_ring->dma,
361cdedef59SAnirudh Venkataramanan 					    GFP_KERNEL);
362cdedef59SAnirudh Venkataramanan 	if (!tx_ring->desc) {
363cdedef59SAnirudh Venkataramanan 		dev_err(dev, "Unable to allocate memory for the Tx descriptor ring, size=%d\n",
364e72bba21SMaciej Fijalkowski 			size);
365cdedef59SAnirudh Venkataramanan 		goto err;
366cdedef59SAnirudh Venkataramanan 	}
367cdedef59SAnirudh Venkataramanan 
368cdedef59SAnirudh Venkataramanan 	tx_ring->next_to_use = 0;
369cdedef59SAnirudh Venkataramanan 	tx_ring->next_to_clean = 0;
370288ecf49SBenjamin Mikailenko 	tx_ring->ring_stats->tx_stats.prev_pkt = -1;
371cdedef59SAnirudh Venkataramanan 	return 0;
372cdedef59SAnirudh Venkataramanan 
373cdedef59SAnirudh Venkataramanan err:
374cdedef59SAnirudh Venkataramanan 	devm_kfree(dev, tx_ring->tx_buf);
375cdedef59SAnirudh Venkataramanan 	tx_ring->tx_buf = NULL;
376cdedef59SAnirudh Venkataramanan 	return -ENOMEM;
377cdedef59SAnirudh Venkataramanan }
378cdedef59SAnirudh Venkataramanan 
379cdedef59SAnirudh Venkataramanan /**
380cdedef59SAnirudh Venkataramanan  * ice_clean_rx_ring - Free Rx buffers
381cdedef59SAnirudh Venkataramanan  * @rx_ring: ring to be cleaned
382cdedef59SAnirudh Venkataramanan  */
ice_clean_rx_ring(struct ice_rx_ring * rx_ring)383e72bba21SMaciej Fijalkowski void ice_clean_rx_ring(struct ice_rx_ring *rx_ring)
384cdedef59SAnirudh Venkataramanan {
3852fba7dc5SMaciej Fijalkowski 	struct xdp_buff *xdp = &rx_ring->xdp;
386cdedef59SAnirudh Venkataramanan 	struct device *dev = rx_ring->dev;
387e72bba21SMaciej Fijalkowski 	u32 size;
388cdedef59SAnirudh Venkataramanan 	u16 i;
389cdedef59SAnirudh Venkataramanan 
390cdedef59SAnirudh Venkataramanan 	/* ring already cleared, nothing to do */
391cdedef59SAnirudh Venkataramanan 	if (!rx_ring->rx_buf)
392cdedef59SAnirudh Venkataramanan 		return;
393cdedef59SAnirudh Venkataramanan 
3941742b3d5SMagnus Karlsson 	if (rx_ring->xsk_pool) {
3952d4238f5SKrzysztof Kazimierczak 		ice_xsk_clean_rx_ring(rx_ring);
3962d4238f5SKrzysztof Kazimierczak 		goto rx_skip_free;
3972d4238f5SKrzysztof Kazimierczak 	}
3982d4238f5SKrzysztof Kazimierczak 
3992fba7dc5SMaciej Fijalkowski 	if (xdp->data) {
4002fba7dc5SMaciej Fijalkowski 		xdp_return_buff(xdp);
4012fba7dc5SMaciej Fijalkowski 		xdp->data = NULL;
4022fba7dc5SMaciej Fijalkowski 	}
4032fba7dc5SMaciej Fijalkowski 
404cdedef59SAnirudh Venkataramanan 	/* Free all the Rx ring sk_buffs */
405cdedef59SAnirudh Venkataramanan 	for (i = 0; i < rx_ring->count; i++) {
406cdedef59SAnirudh Venkataramanan 		struct ice_rx_buf *rx_buf = &rx_ring->rx_buf[i];
407cdedef59SAnirudh Venkataramanan 
408cdedef59SAnirudh Venkataramanan 		if (!rx_buf->page)
409cdedef59SAnirudh Venkataramanan 			continue;
410cdedef59SAnirudh Venkataramanan 
411a65f71feSMaciej Fijalkowski 		/* Invalidate cache lines that may have been written to by
412a65f71feSMaciej Fijalkowski 		 * device so that we avoid corrupting memory.
413a65f71feSMaciej Fijalkowski 		 */
414a65f71feSMaciej Fijalkowski 		dma_sync_single_range_for_cpu(dev, rx_buf->dma,
415a65f71feSMaciej Fijalkowski 					      rx_buf->page_offset,
4167237f5b0SMaciej Fijalkowski 					      rx_ring->rx_buf_len,
4177237f5b0SMaciej Fijalkowski 					      DMA_FROM_DEVICE);
418a65f71feSMaciej Fijalkowski 
419a65f71feSMaciej Fijalkowski 		/* free resources associated with mapping */
4207237f5b0SMaciej Fijalkowski 		dma_unmap_page_attrs(dev, rx_buf->dma, ice_rx_pg_size(rx_ring),
421a65f71feSMaciej Fijalkowski 				     DMA_FROM_DEVICE, ICE_RX_DMA_ATTR);
42203c66a13SMaciej Fijalkowski 		__page_frag_cache_drain(rx_buf->page, rx_buf->pagecnt_bias);
423cdedef59SAnirudh Venkataramanan 
424cdedef59SAnirudh Venkataramanan 		rx_buf->page = NULL;
425cdedef59SAnirudh Venkataramanan 		rx_buf->page_offset = 0;
426cdedef59SAnirudh Venkataramanan 	}
427cdedef59SAnirudh Venkataramanan 
4282d4238f5SKrzysztof Kazimierczak rx_skip_free:
429617f3e1bSMaciej Fijalkowski 	if (rx_ring->xsk_pool)
430617f3e1bSMaciej Fijalkowski 		memset(rx_ring->xdp_buf, 0, array_size(rx_ring->count, sizeof(*rx_ring->xdp_buf)));
431617f3e1bSMaciej Fijalkowski 	else
432617f3e1bSMaciej Fijalkowski 		memset(rx_ring->rx_buf, 0, array_size(rx_ring->count, sizeof(*rx_ring->rx_buf)));
433cdedef59SAnirudh Venkataramanan 
434cdedef59SAnirudh Venkataramanan 	/* Zero out the descriptor ring */
435e72bba21SMaciej Fijalkowski 	size = ALIGN(rx_ring->count * sizeof(union ice_32byte_rx_desc),
436e72bba21SMaciej Fijalkowski 		     PAGE_SIZE);
437e72bba21SMaciej Fijalkowski 	memset(rx_ring->desc, 0, size);
438cdedef59SAnirudh Venkataramanan 
439cdedef59SAnirudh Venkataramanan 	rx_ring->next_to_alloc = 0;
440cdedef59SAnirudh Venkataramanan 	rx_ring->next_to_clean = 0;
4412fba7dc5SMaciej Fijalkowski 	rx_ring->first_desc = 0;
442cdedef59SAnirudh Venkataramanan 	rx_ring->next_to_use = 0;
443cdedef59SAnirudh Venkataramanan }
444cdedef59SAnirudh Venkataramanan 
445cdedef59SAnirudh Venkataramanan /**
446cdedef59SAnirudh Venkataramanan  * ice_free_rx_ring - Free Rx resources
447cdedef59SAnirudh Venkataramanan  * @rx_ring: ring to clean the resources from
448cdedef59SAnirudh Venkataramanan  *
449cdedef59SAnirudh Venkataramanan  * Free all receive software resources
450cdedef59SAnirudh Venkataramanan  */
ice_free_rx_ring(struct ice_rx_ring * rx_ring)451e72bba21SMaciej Fijalkowski void ice_free_rx_ring(struct ice_rx_ring *rx_ring)
452cdedef59SAnirudh Venkataramanan {
453e72bba21SMaciej Fijalkowski 	u32 size;
454e72bba21SMaciej Fijalkowski 
455cdedef59SAnirudh Venkataramanan 	ice_clean_rx_ring(rx_ring);
456efc2214bSMaciej Fijalkowski 	if (rx_ring->vsi->type == ICE_VSI_PF)
457efc2214bSMaciej Fijalkowski 		if (xdp_rxq_info_is_reg(&rx_ring->xdp_rxq))
458efc2214bSMaciej Fijalkowski 			xdp_rxq_info_unreg(&rx_ring->xdp_rxq);
459efc2214bSMaciej Fijalkowski 	rx_ring->xdp_prog = NULL;
460617f3e1bSMaciej Fijalkowski 	if (rx_ring->xsk_pool) {
461617f3e1bSMaciej Fijalkowski 		kfree(rx_ring->xdp_buf);
462617f3e1bSMaciej Fijalkowski 		rx_ring->xdp_buf = NULL;
463617f3e1bSMaciej Fijalkowski 	} else {
464617f3e1bSMaciej Fijalkowski 		kfree(rx_ring->rx_buf);
465cdedef59SAnirudh Venkataramanan 		rx_ring->rx_buf = NULL;
466617f3e1bSMaciej Fijalkowski 	}
467cdedef59SAnirudh Venkataramanan 
468cdedef59SAnirudh Venkataramanan 	if (rx_ring->desc) {
469e72bba21SMaciej Fijalkowski 		size = ALIGN(rx_ring->count * sizeof(union ice_32byte_rx_desc),
470e72bba21SMaciej Fijalkowski 			     PAGE_SIZE);
471e72bba21SMaciej Fijalkowski 		dmam_free_coherent(rx_ring->dev, size,
472cdedef59SAnirudh Venkataramanan 				   rx_ring->desc, rx_ring->dma);
473cdedef59SAnirudh Venkataramanan 		rx_ring->desc = NULL;
474cdedef59SAnirudh Venkataramanan 	}
475cdedef59SAnirudh Venkataramanan }
476cdedef59SAnirudh Venkataramanan 
477cdedef59SAnirudh Venkataramanan /**
478cdedef59SAnirudh Venkataramanan  * ice_setup_rx_ring - Allocate the Rx descriptors
479d337f2afSAnirudh Venkataramanan  * @rx_ring: the Rx ring to set up
480cdedef59SAnirudh Venkataramanan  *
481cdedef59SAnirudh Venkataramanan  * Return 0 on success, negative on error
482cdedef59SAnirudh Venkataramanan  */
ice_setup_rx_ring(struct ice_rx_ring * rx_ring)483e72bba21SMaciej Fijalkowski int ice_setup_rx_ring(struct ice_rx_ring *rx_ring)
484cdedef59SAnirudh Venkataramanan {
485cdedef59SAnirudh Venkataramanan 	struct device *dev = rx_ring->dev;
486e72bba21SMaciej Fijalkowski 	u32 size;
487cdedef59SAnirudh Venkataramanan 
488cdedef59SAnirudh Venkataramanan 	if (!dev)
489cdedef59SAnirudh Venkataramanan 		return -ENOMEM;
490cdedef59SAnirudh Venkataramanan 
491cdedef59SAnirudh Venkataramanan 	/* warn if we are about to overwrite the pointer */
492cdedef59SAnirudh Venkataramanan 	WARN_ON(rx_ring->rx_buf);
493c6dfd690SBruce Allan 	rx_ring->rx_buf =
494617f3e1bSMaciej Fijalkowski 		kcalloc(rx_ring->count, sizeof(*rx_ring->rx_buf), GFP_KERNEL);
495cdedef59SAnirudh Venkataramanan 	if (!rx_ring->rx_buf)
496cdedef59SAnirudh Venkataramanan 		return -ENOMEM;
497cdedef59SAnirudh Venkataramanan 
498ad71b256SBrett Creeley 	/* round up to nearest page */
499e72bba21SMaciej Fijalkowski 	size = ALIGN(rx_ring->count * sizeof(union ice_32byte_rx_desc),
500ad71b256SBrett Creeley 		     PAGE_SIZE);
501e72bba21SMaciej Fijalkowski 	rx_ring->desc = dmam_alloc_coherent(dev, size, &rx_ring->dma,
502cdedef59SAnirudh Venkataramanan 					    GFP_KERNEL);
503cdedef59SAnirudh Venkataramanan 	if (!rx_ring->desc) {
504cdedef59SAnirudh Venkataramanan 		dev_err(dev, "Unable to allocate memory for the Rx descriptor ring, size=%d\n",
505e72bba21SMaciej Fijalkowski 			size);
506cdedef59SAnirudh Venkataramanan 		goto err;
507cdedef59SAnirudh Venkataramanan 	}
508cdedef59SAnirudh Venkataramanan 
509cdedef59SAnirudh Venkataramanan 	rx_ring->next_to_use = 0;
510cdedef59SAnirudh Venkataramanan 	rx_ring->next_to_clean = 0;
5112fba7dc5SMaciej Fijalkowski 	rx_ring->first_desc = 0;
512efc2214bSMaciej Fijalkowski 
513efc2214bSMaciej Fijalkowski 	if (ice_is_xdp_ena_vsi(rx_ring->vsi))
514efc2214bSMaciej Fijalkowski 		WRITE_ONCE(rx_ring->xdp_prog, rx_ring->vsi->xdp_prog);
515efc2214bSMaciej Fijalkowski 
516cdedef59SAnirudh Venkataramanan 	return 0;
517cdedef59SAnirudh Venkataramanan 
518cdedef59SAnirudh Venkataramanan err:
519617f3e1bSMaciej Fijalkowski 	kfree(rx_ring->rx_buf);
520cdedef59SAnirudh Venkataramanan 	rx_ring->rx_buf = NULL;
521cdedef59SAnirudh Venkataramanan 	return -ENOMEM;
522cdedef59SAnirudh Venkataramanan }
523cdedef59SAnirudh Venkataramanan 
524cb0473e0SMaciej Fijalkowski /**
525cb0473e0SMaciej Fijalkowski  * ice_rx_frame_truesize
526cb0473e0SMaciej Fijalkowski  * @rx_ring: ptr to Rx ring
527cb0473e0SMaciej Fijalkowski  * @size: size
528cb0473e0SMaciej Fijalkowski  *
529cb0473e0SMaciej Fijalkowski  * calculate the truesize with taking into the account PAGE_SIZE of
530cb0473e0SMaciej Fijalkowski  * underlying arch
531cb0473e0SMaciej Fijalkowski  */
5326221595fSTony Nguyen static unsigned int
ice_rx_frame_truesize(struct ice_rx_ring * rx_ring,const unsigned int size)533cb0473e0SMaciej Fijalkowski ice_rx_frame_truesize(struct ice_rx_ring *rx_ring, const unsigned int size)
534d4ecdbf7SJesper Dangaard Brouer {
535d4ecdbf7SJesper Dangaard Brouer 	unsigned int truesize;
536d4ecdbf7SJesper Dangaard Brouer 
537d4ecdbf7SJesper Dangaard Brouer #if (PAGE_SIZE < 8192)
538d4ecdbf7SJesper Dangaard Brouer 	truesize = ice_rx_pg_size(rx_ring) / 2; /* Must be power-of-2 */
539d4ecdbf7SJesper Dangaard Brouer #else
540f1b1f409SMaciej Fijalkowski 	truesize = rx_ring->rx_offset ?
541f1b1f409SMaciej Fijalkowski 		SKB_DATA_ALIGN(rx_ring->rx_offset + size) +
542d4ecdbf7SJesper Dangaard Brouer 		SKB_DATA_ALIGN(sizeof(struct skb_shared_info)) :
543d4ecdbf7SJesper Dangaard Brouer 		SKB_DATA_ALIGN(size);
544d4ecdbf7SJesper Dangaard Brouer #endif
545d4ecdbf7SJesper Dangaard Brouer 	return truesize;
546d4ecdbf7SJesper Dangaard Brouer }
547d4ecdbf7SJesper Dangaard Brouer 
548efc2214bSMaciej Fijalkowski /**
549efc2214bSMaciej Fijalkowski  * ice_run_xdp - Executes an XDP program on initialized xdp_buff
550efc2214bSMaciej Fijalkowski  * @rx_ring: Rx ring
551efc2214bSMaciej Fijalkowski  * @xdp: xdp_buff used as input to the XDP program
552efc2214bSMaciej Fijalkowski  * @xdp_prog: XDP program to run
553eb087cd8SMaciej Fijalkowski  * @xdp_ring: ring to be used for XDP_TX action
5541dc1a7e7SMaciej Fijalkowski  * @rx_buf: Rx buffer to store the XDP action
555efc2214bSMaciej Fijalkowski  *
556efc2214bSMaciej Fijalkowski  * Returns any of ICE_XDP_{PASS, CONSUMED, TX, REDIR}
557efc2214bSMaciej Fijalkowski  */
5581dc1a7e7SMaciej Fijalkowski static void
ice_run_xdp(struct ice_rx_ring * rx_ring,struct xdp_buff * xdp,struct bpf_prog * xdp_prog,struct ice_tx_ring * xdp_ring,struct ice_rx_buf * rx_buf)559e72bba21SMaciej Fijalkowski ice_run_xdp(struct ice_rx_ring *rx_ring, struct xdp_buff *xdp,
5601dc1a7e7SMaciej Fijalkowski 	    struct bpf_prog *xdp_prog, struct ice_tx_ring *xdp_ring,
5611dc1a7e7SMaciej Fijalkowski 	    struct ice_rx_buf *rx_buf)
562efc2214bSMaciej Fijalkowski {
5631dc1a7e7SMaciej Fijalkowski 	unsigned int ret = ICE_XDP_PASS;
564efc2214bSMaciej Fijalkowski 	u32 act;
565efc2214bSMaciej Fijalkowski 
5661dc1a7e7SMaciej Fijalkowski 	if (!xdp_prog)
5671dc1a7e7SMaciej Fijalkowski 		goto exit;
5681dc1a7e7SMaciej Fijalkowski 
569efc2214bSMaciej Fijalkowski 	act = bpf_prog_run_xdp(xdp_prog, xdp);
570efc2214bSMaciej Fijalkowski 	switch (act) {
571efc2214bSMaciej Fijalkowski 	case XDP_PASS:
5721dc1a7e7SMaciej Fijalkowski 		break;
573efc2214bSMaciej Fijalkowski 	case XDP_TX:
57422bf877eSMaciej Fijalkowski 		if (static_branch_unlikely(&ice_xdp_locking_key))
57522bf877eSMaciej Fijalkowski 			spin_lock(&xdp_ring->tx_lock);
576055d0920SAlexander Lobakin 		ret = __ice_xmit_xdp_ring(xdp, xdp_ring, false);
57722bf877eSMaciej Fijalkowski 		if (static_branch_unlikely(&ice_xdp_locking_key))
57822bf877eSMaciej Fijalkowski 			spin_unlock(&xdp_ring->tx_lock);
5791dc1a7e7SMaciej Fijalkowski 		if (ret == ICE_XDP_CONSUMED)
58089d65df0SMagnus Karlsson 			goto out_failure;
5811dc1a7e7SMaciej Fijalkowski 		break;
582efc2214bSMaciej Fijalkowski 	case XDP_REDIRECT:
5831dc1a7e7SMaciej Fijalkowski 		if (xdp_do_redirect(rx_ring->netdev, xdp, xdp_prog))
58489d65df0SMagnus Karlsson 			goto out_failure;
5851dc1a7e7SMaciej Fijalkowski 		ret = ICE_XDP_REDIR;
5861dc1a7e7SMaciej Fijalkowski 		break;
587efc2214bSMaciej Fijalkowski 	default:
588c8064e5bSPaolo Abeni 		bpf_warn_invalid_xdp_action(rx_ring->netdev, xdp_prog, act);
5894e83fc93SBruce Allan 		fallthrough;
590efc2214bSMaciej Fijalkowski 	case XDP_ABORTED:
59189d65df0SMagnus Karlsson out_failure:
592efc2214bSMaciej Fijalkowski 		trace_xdp_exception(rx_ring->netdev, xdp_prog, act);
5934e83fc93SBruce Allan 		fallthrough;
594efc2214bSMaciej Fijalkowski 	case XDP_DROP:
5951dc1a7e7SMaciej Fijalkowski 		ret = ICE_XDP_CONSUMED;
596efc2214bSMaciej Fijalkowski 	}
5971dc1a7e7SMaciej Fijalkowski exit:
5982fba7dc5SMaciej Fijalkowski 	ice_set_rx_bufs_act(xdp, rx_ring, ret);
599efc2214bSMaciej Fijalkowski }
600efc2214bSMaciej Fijalkowski 
601efc2214bSMaciej Fijalkowski /**
602ad07f29bSAlexander Lobakin  * ice_xmit_xdp_ring - submit frame to XDP ring for transmission
603ad07f29bSAlexander Lobakin  * @xdpf: XDP frame that will be converted to XDP buff
604ad07f29bSAlexander Lobakin  * @xdp_ring: XDP ring for transmission
605ad07f29bSAlexander Lobakin  */
ice_xmit_xdp_ring(const struct xdp_frame * xdpf,struct ice_tx_ring * xdp_ring)606ad07f29bSAlexander Lobakin static int ice_xmit_xdp_ring(const struct xdp_frame *xdpf,
607ad07f29bSAlexander Lobakin 			     struct ice_tx_ring *xdp_ring)
608ad07f29bSAlexander Lobakin {
609ad07f29bSAlexander Lobakin 	struct xdp_buff xdp;
610ad07f29bSAlexander Lobakin 
611ad07f29bSAlexander Lobakin 	xdp.data_hard_start = (void *)xdpf;
612ad07f29bSAlexander Lobakin 	xdp.data = xdpf->data;
613ad07f29bSAlexander Lobakin 	xdp.data_end = xdp.data + xdpf->len;
614ad07f29bSAlexander Lobakin 	xdp.frame_sz = xdpf->frame_sz;
615ad07f29bSAlexander Lobakin 	xdp.flags = xdpf->flags;
616ad07f29bSAlexander Lobakin 
617ad07f29bSAlexander Lobakin 	return __ice_xmit_xdp_ring(&xdp, xdp_ring, true);
618ad07f29bSAlexander Lobakin }
619ad07f29bSAlexander Lobakin 
620ad07f29bSAlexander Lobakin /**
621efc2214bSMaciej Fijalkowski  * ice_xdp_xmit - submit packets to XDP ring for transmission
622efc2214bSMaciej Fijalkowski  * @dev: netdev
623efc2214bSMaciej Fijalkowski  * @n: number of XDP frames to be transmitted
624efc2214bSMaciej Fijalkowski  * @frames: XDP frames to be transmitted
625efc2214bSMaciej Fijalkowski  * @flags: transmit flags
626efc2214bSMaciej Fijalkowski  *
627fdc13979SLorenzo Bianconi  * Returns number of frames successfully sent. Failed frames
628fdc13979SLorenzo Bianconi  * will be free'ed by XDP core.
629efc2214bSMaciej Fijalkowski  * For error cases, a negative errno code is returned and no-frames
630efc2214bSMaciej Fijalkowski  * are transmitted (caller must handle freeing frames).
631efc2214bSMaciej Fijalkowski  */
632efc2214bSMaciej Fijalkowski int
ice_xdp_xmit(struct net_device * dev,int n,struct xdp_frame ** frames,u32 flags)633efc2214bSMaciej Fijalkowski ice_xdp_xmit(struct net_device *dev, int n, struct xdp_frame **frames,
634efc2214bSMaciej Fijalkowski 	     u32 flags)
635efc2214bSMaciej Fijalkowski {
636efc2214bSMaciej Fijalkowski 	struct ice_netdev_priv *np = netdev_priv(dev);
637efc2214bSMaciej Fijalkowski 	unsigned int queue_index = smp_processor_id();
638efc2214bSMaciej Fijalkowski 	struct ice_vsi *vsi = np->vsi;
639e72bba21SMaciej Fijalkowski 	struct ice_tx_ring *xdp_ring;
6403246a107SMaciej Fijalkowski 	struct ice_tx_buf *tx_buf;
641fdc13979SLorenzo Bianconi 	int nxmit = 0, i;
642efc2214bSMaciej Fijalkowski 
643e97fb1aeSAnirudh Venkataramanan 	if (test_bit(ICE_VSI_DOWN, vsi->state))
644efc2214bSMaciej Fijalkowski 		return -ENETDOWN;
645efc2214bSMaciej Fijalkowski 
646114f398dSLarysa Zaremba 	if (!ice_is_xdp_ena_vsi(vsi))
647efc2214bSMaciej Fijalkowski 		return -ENXIO;
648efc2214bSMaciej Fijalkowski 
649efc2214bSMaciej Fijalkowski 	if (unlikely(flags & ~XDP_XMIT_FLAGS_MASK))
650efc2214bSMaciej Fijalkowski 		return -EINVAL;
651efc2214bSMaciej Fijalkowski 
65222bf877eSMaciej Fijalkowski 	if (static_branch_unlikely(&ice_xdp_locking_key)) {
65322bf877eSMaciej Fijalkowski 		queue_index %= vsi->num_xdp_txq;
654efc2214bSMaciej Fijalkowski 		xdp_ring = vsi->xdp_rings[queue_index];
65522bf877eSMaciej Fijalkowski 		spin_lock(&xdp_ring->tx_lock);
65622bf877eSMaciej Fijalkowski 	} else {
657114f398dSLarysa Zaremba 		/* Generally, should not happen */
658114f398dSLarysa Zaremba 		if (unlikely(queue_index >= vsi->num_xdp_txq))
659114f398dSLarysa Zaremba 			return -ENXIO;
66022bf877eSMaciej Fijalkowski 		xdp_ring = vsi->xdp_rings[queue_index];
66122bf877eSMaciej Fijalkowski 	}
66222bf877eSMaciej Fijalkowski 
6633246a107SMaciej Fijalkowski 	tx_buf = &xdp_ring->tx_buf[xdp_ring->next_to_use];
664efc2214bSMaciej Fijalkowski 	for (i = 0; i < n; i++) {
665ad07f29bSAlexander Lobakin 		const struct xdp_frame *xdpf = frames[i];
666efc2214bSMaciej Fijalkowski 		int err;
667efc2214bSMaciej Fijalkowski 
6683246a107SMaciej Fijalkowski 		err = ice_xmit_xdp_ring(xdpf, xdp_ring);
669fdc13979SLorenzo Bianconi 		if (err != ICE_XDP_TX)
670fdc13979SLorenzo Bianconi 			break;
671fdc13979SLorenzo Bianconi 		nxmit++;
672efc2214bSMaciej Fijalkowski 	}
673efc2214bSMaciej Fijalkowski 
6743246a107SMaciej Fijalkowski 	tx_buf->rs_idx = ice_set_rs_bit(xdp_ring);
675efc2214bSMaciej Fijalkowski 	if (unlikely(flags & XDP_XMIT_FLUSH))
676efc2214bSMaciej Fijalkowski 		ice_xdp_ring_update_tail(xdp_ring);
677efc2214bSMaciej Fijalkowski 
67822bf877eSMaciej Fijalkowski 	if (static_branch_unlikely(&ice_xdp_locking_key))
67922bf877eSMaciej Fijalkowski 		spin_unlock(&xdp_ring->tx_lock);
68022bf877eSMaciej Fijalkowski 
681fdc13979SLorenzo Bianconi 	return nxmit;
682efc2214bSMaciej Fijalkowski }
683efc2214bSMaciej Fijalkowski 
684efc2214bSMaciej Fijalkowski /**
685cdedef59SAnirudh Venkataramanan  * ice_alloc_mapped_page - recycle or make a new page
686cdedef59SAnirudh Venkataramanan  * @rx_ring: ring to use
687cdedef59SAnirudh Venkataramanan  * @bi: rx_buf struct to modify
688cdedef59SAnirudh Venkataramanan  *
689cdedef59SAnirudh Venkataramanan  * Returns true if the page was successfully allocated or
690cdedef59SAnirudh Venkataramanan  * reused.
691cdedef59SAnirudh Venkataramanan  */
692c8b7abddSBruce Allan static bool
ice_alloc_mapped_page(struct ice_rx_ring * rx_ring,struct ice_rx_buf * bi)693e72bba21SMaciej Fijalkowski ice_alloc_mapped_page(struct ice_rx_ring *rx_ring, struct ice_rx_buf *bi)
694cdedef59SAnirudh Venkataramanan {
695cdedef59SAnirudh Venkataramanan 	struct page *page = bi->page;
696cdedef59SAnirudh Venkataramanan 	dma_addr_t dma;
697cdedef59SAnirudh Venkataramanan 
698cdedef59SAnirudh Venkataramanan 	/* since we are recycling buffers we should seldom need to alloc */
6997dbc63f0STony Nguyen 	if (likely(page))
700cdedef59SAnirudh Venkataramanan 		return true;
701cdedef59SAnirudh Venkataramanan 
702cdedef59SAnirudh Venkataramanan 	/* alloc new page for storage */
7037237f5b0SMaciej Fijalkowski 	page = dev_alloc_pages(ice_rx_pg_order(rx_ring));
7042b245cb2SAnirudh Venkataramanan 	if (unlikely(!page)) {
705288ecf49SBenjamin Mikailenko 		rx_ring->ring_stats->rx_stats.alloc_page_failed++;
706cdedef59SAnirudh Venkataramanan 		return false;
7072b245cb2SAnirudh Venkataramanan 	}
708cdedef59SAnirudh Venkataramanan 
709cdedef59SAnirudh Venkataramanan 	/* map page for use */
7107237f5b0SMaciej Fijalkowski 	dma = dma_map_page_attrs(rx_ring->dev, page, 0, ice_rx_pg_size(rx_ring),
711a65f71feSMaciej Fijalkowski 				 DMA_FROM_DEVICE, ICE_RX_DMA_ATTR);
712cdedef59SAnirudh Venkataramanan 
713cdedef59SAnirudh Venkataramanan 	/* if mapping failed free memory back to system since
714cdedef59SAnirudh Venkataramanan 	 * there isn't much point in holding memory we can't use
715cdedef59SAnirudh Venkataramanan 	 */
716cdedef59SAnirudh Venkataramanan 	if (dma_mapping_error(rx_ring->dev, dma)) {
7177237f5b0SMaciej Fijalkowski 		__free_pages(page, ice_rx_pg_order(rx_ring));
718288ecf49SBenjamin Mikailenko 		rx_ring->ring_stats->rx_stats.alloc_page_failed++;
719cdedef59SAnirudh Venkataramanan 		return false;
720cdedef59SAnirudh Venkataramanan 	}
721cdedef59SAnirudh Venkataramanan 
722cdedef59SAnirudh Venkataramanan 	bi->dma = dma;
723cdedef59SAnirudh Venkataramanan 	bi->page = page;
724f1b1f409SMaciej Fijalkowski 	bi->page_offset = rx_ring->rx_offset;
72503c66a13SMaciej Fijalkowski 	page_ref_add(page, USHRT_MAX - 1);
72603c66a13SMaciej Fijalkowski 	bi->pagecnt_bias = USHRT_MAX;
727cdedef59SAnirudh Venkataramanan 
728cdedef59SAnirudh Venkataramanan 	return true;
729cdedef59SAnirudh Venkataramanan }
730cdedef59SAnirudh Venkataramanan 
731cdedef59SAnirudh Venkataramanan /**
732cdedef59SAnirudh Venkataramanan  * ice_alloc_rx_bufs - Replace used receive buffers
733cdedef59SAnirudh Venkataramanan  * @rx_ring: ring to place buffers on
734cdedef59SAnirudh Venkataramanan  * @cleaned_count: number of buffers to replace
735cdedef59SAnirudh Venkataramanan  *
736cb7db356SBrett Creeley  * Returns false if all allocations were successful, true if any fail. Returning
737cb7db356SBrett Creeley  * true signals to the caller that we didn't replace cleaned_count buffers and
738cb7db356SBrett Creeley  * there is more work to do.
739cb7db356SBrett Creeley  *
740cb7db356SBrett Creeley  * First, try to clean "cleaned_count" Rx buffers. Then refill the cleaned Rx
741cb7db356SBrett Creeley  * buffers. Then bump tail at most one time. Grouping like this lets us avoid
742cb7db356SBrett Creeley  * multiple tail writes per call.
743cdedef59SAnirudh Venkataramanan  */
ice_alloc_rx_bufs(struct ice_rx_ring * rx_ring,unsigned int cleaned_count)7442fba7dc5SMaciej Fijalkowski bool ice_alloc_rx_bufs(struct ice_rx_ring *rx_ring, unsigned int cleaned_count)
745cdedef59SAnirudh Venkataramanan {
746cdedef59SAnirudh Venkataramanan 	union ice_32b_rx_flex_desc *rx_desc;
747cdedef59SAnirudh Venkataramanan 	u16 ntu = rx_ring->next_to_use;
748cdedef59SAnirudh Venkataramanan 	struct ice_rx_buf *bi;
749cdedef59SAnirudh Venkataramanan 
750cdedef59SAnirudh Venkataramanan 	/* do nothing if no valid netdev defined */
751148beb61SHenry Tieman 	if ((!rx_ring->netdev && rx_ring->vsi->type != ICE_VSI_CTRL) ||
752148beb61SHenry Tieman 	    !cleaned_count)
753cdedef59SAnirudh Venkataramanan 		return false;
754cdedef59SAnirudh Venkataramanan 
755f9867df6SAnirudh Venkataramanan 	/* get the Rx descriptor and buffer based on next_to_use */
756cdedef59SAnirudh Venkataramanan 	rx_desc = ICE_RX_DESC(rx_ring, ntu);
757cdedef59SAnirudh Venkataramanan 	bi = &rx_ring->rx_buf[ntu];
758cdedef59SAnirudh Venkataramanan 
759cdedef59SAnirudh Venkataramanan 	do {
760a1e99685SBrett Creeley 		/* if we fail here, we have work remaining */
761cdedef59SAnirudh Venkataramanan 		if (!ice_alloc_mapped_page(rx_ring, bi))
762a1e99685SBrett Creeley 			break;
763cdedef59SAnirudh Venkataramanan 
764a65f71feSMaciej Fijalkowski 		/* sync the buffer for use by the device */
765a65f71feSMaciej Fijalkowski 		dma_sync_single_range_for_device(rx_ring->dev, bi->dma,
766a65f71feSMaciej Fijalkowski 						 bi->page_offset,
7677237f5b0SMaciej Fijalkowski 						 rx_ring->rx_buf_len,
768a65f71feSMaciej Fijalkowski 						 DMA_FROM_DEVICE);
769a65f71feSMaciej Fijalkowski 
770cdedef59SAnirudh Venkataramanan 		/* Refresh the desc even if buffer_addrs didn't change
771cdedef59SAnirudh Venkataramanan 		 * because each write-back erases this info.
772cdedef59SAnirudh Venkataramanan 		 */
773cdedef59SAnirudh Venkataramanan 		rx_desc->read.pkt_addr = cpu_to_le64(bi->dma + bi->page_offset);
774cdedef59SAnirudh Venkataramanan 
775cdedef59SAnirudh Venkataramanan 		rx_desc++;
776cdedef59SAnirudh Venkataramanan 		bi++;
777cdedef59SAnirudh Venkataramanan 		ntu++;
778cdedef59SAnirudh Venkataramanan 		if (unlikely(ntu == rx_ring->count)) {
779cdedef59SAnirudh Venkataramanan 			rx_desc = ICE_RX_DESC(rx_ring, 0);
780cdedef59SAnirudh Venkataramanan 			bi = rx_ring->rx_buf;
781cdedef59SAnirudh Venkataramanan 			ntu = 0;
782cdedef59SAnirudh Venkataramanan 		}
783cdedef59SAnirudh Venkataramanan 
784cdedef59SAnirudh Venkataramanan 		/* clear the status bits for the next_to_use descriptor */
785cdedef59SAnirudh Venkataramanan 		rx_desc->wb.status_error0 = 0;
786cdedef59SAnirudh Venkataramanan 
787cdedef59SAnirudh Venkataramanan 		cleaned_count--;
788cdedef59SAnirudh Venkataramanan 	} while (cleaned_count);
789cdedef59SAnirudh Venkataramanan 
790cdedef59SAnirudh Venkataramanan 	if (rx_ring->next_to_use != ntu)
791cdedef59SAnirudh Venkataramanan 		ice_release_rx_desc(rx_ring, ntu);
792cdedef59SAnirudh Venkataramanan 
793a1e99685SBrett Creeley 	return !!cleaned_count;
794cdedef59SAnirudh Venkataramanan }
7952b245cb2SAnirudh Venkataramanan 
7962b245cb2SAnirudh Venkataramanan /**
7971d032bc7SMaciej Fijalkowski  * ice_rx_buf_adjust_pg_offset - Prepare Rx buffer for reuse
7981d032bc7SMaciej Fijalkowski  * @rx_buf: Rx buffer to adjust
7991d032bc7SMaciej Fijalkowski  * @size: Size of adjustment
8002b245cb2SAnirudh Venkataramanan  *
8011d032bc7SMaciej Fijalkowski  * Update the offset within page so that Rx buf will be ready to be reused.
8021d032bc7SMaciej Fijalkowski  * For systems with PAGE_SIZE < 8192 this function will flip the page offset
8031d032bc7SMaciej Fijalkowski  * so the second half of page assigned to Rx buffer will be used, otherwise
8044ee656bbSTony Nguyen  * the offset is moved by "size" bytes
8052b245cb2SAnirudh Venkataramanan  */
8061d032bc7SMaciej Fijalkowski static void
ice_rx_buf_adjust_pg_offset(struct ice_rx_buf * rx_buf,unsigned int size)8071d032bc7SMaciej Fijalkowski ice_rx_buf_adjust_pg_offset(struct ice_rx_buf *rx_buf, unsigned int size)
8082b245cb2SAnirudh Venkataramanan {
8092b245cb2SAnirudh Venkataramanan #if (PAGE_SIZE < 8192)
8101d032bc7SMaciej Fijalkowski 	/* flip page offset to other buffer */
8111d032bc7SMaciej Fijalkowski 	rx_buf->page_offset ^= size;
8122b245cb2SAnirudh Venkataramanan #else
8131d032bc7SMaciej Fijalkowski 	/* move offset up to the next cache line */
8141d032bc7SMaciej Fijalkowski 	rx_buf->page_offset += size;
8151d032bc7SMaciej Fijalkowski #endif
8162b245cb2SAnirudh Venkataramanan }
8172b245cb2SAnirudh Venkataramanan 
8181d032bc7SMaciej Fijalkowski /**
819bbb97808SMaciej Fijalkowski  * ice_can_reuse_rx_page - Determine if page can be reused for another Rx
820bbb97808SMaciej Fijalkowski  * @rx_buf: buffer containing the page
821bbb97808SMaciej Fijalkowski  *
822bbb97808SMaciej Fijalkowski  * If page is reusable, we have a green light for calling ice_reuse_rx_page,
823bbb97808SMaciej Fijalkowski  * which will assign the current buffer to the buffer that next_to_alloc is
824bbb97808SMaciej Fijalkowski  * pointing to; otherwise, the DMA mapping needs to be destroyed and
825bbb97808SMaciej Fijalkowski  * page freed
826bbb97808SMaciej Fijalkowski  */
8271beb7830SBjörn Töpel static bool
ice_can_reuse_rx_page(struct ice_rx_buf * rx_buf)828ac075339SMaciej Fijalkowski ice_can_reuse_rx_page(struct ice_rx_buf *rx_buf)
829bbb97808SMaciej Fijalkowski {
83003c66a13SMaciej Fijalkowski 	unsigned int pagecnt_bias = rx_buf->pagecnt_bias;
831bbb97808SMaciej Fijalkowski 	struct page *page = rx_buf->page;
8322b245cb2SAnirudh Venkataramanan 
833a79afa78SAlexander Lobakin 	/* avoid re-using remote and pfmemalloc pages */
834a79afa78SAlexander Lobakin 	if (!dev_page_is_reusable(page))
8352b245cb2SAnirudh Venkataramanan 		return false;
8362b245cb2SAnirudh Venkataramanan 
8372b245cb2SAnirudh Venkataramanan #if (PAGE_SIZE < 8192)
8382b245cb2SAnirudh Venkataramanan 	/* if we are only owner of page we can reuse it */
839ac075339SMaciej Fijalkowski 	if (unlikely(rx_buf->pgcnt - pagecnt_bias > 1))
8402b245cb2SAnirudh Venkataramanan 		return false;
8412b245cb2SAnirudh Venkataramanan #else
8427237f5b0SMaciej Fijalkowski #define ICE_LAST_OFFSET \
8437237f5b0SMaciej Fijalkowski 	(SKB_WITH_OVERHEAD(PAGE_SIZE) - ICE_RXBUF_2048)
8447237f5b0SMaciej Fijalkowski 	if (rx_buf->page_offset > ICE_LAST_OFFSET)
8452b245cb2SAnirudh Venkataramanan 		return false;
8462b245cb2SAnirudh Venkataramanan #endif /* PAGE_SIZE < 8192) */
8472b245cb2SAnirudh Venkataramanan 
84803c66a13SMaciej Fijalkowski 	/* If we have drained the page fragment pool we need to update
84903c66a13SMaciej Fijalkowski 	 * the pagecnt_bias and page count so that we fully restock the
85003c66a13SMaciej Fijalkowski 	 * number of references the driver holds.
8512b245cb2SAnirudh Venkataramanan 	 */
85203c66a13SMaciej Fijalkowski 	if (unlikely(pagecnt_bias == 1)) {
85303c66a13SMaciej Fijalkowski 		page_ref_add(page, USHRT_MAX - 1);
85403c66a13SMaciej Fijalkowski 		rx_buf->pagecnt_bias = USHRT_MAX;
85503c66a13SMaciej Fijalkowski 	}
8562b245cb2SAnirudh Venkataramanan 
8572b245cb2SAnirudh Venkataramanan 	return true;
8582b245cb2SAnirudh Venkataramanan }
8592b245cb2SAnirudh Venkataramanan 
8602b245cb2SAnirudh Venkataramanan /**
8612fba7dc5SMaciej Fijalkowski  * ice_add_xdp_frag - Add contents of Rx buffer to xdp buf as a frag
8627237f5b0SMaciej Fijalkowski  * @rx_ring: Rx descriptor ring to transact packets on
8632fba7dc5SMaciej Fijalkowski  * @xdp: xdp buff to place the data into
8642b245cb2SAnirudh Venkataramanan  * @rx_buf: buffer containing page to add
865712edbbbSMaciej Fijalkowski  * @size: packet length from rx_desc
8662b245cb2SAnirudh Venkataramanan  *
8672fba7dc5SMaciej Fijalkowski  * This function will add the data contained in rx_buf->page to the xdp buf.
8682fba7dc5SMaciej Fijalkowski  * It will just attach the page as a frag.
8692b245cb2SAnirudh Venkataramanan  */
8702fba7dc5SMaciej Fijalkowski static int
ice_add_xdp_frag(struct ice_rx_ring * rx_ring,struct xdp_buff * xdp,struct ice_rx_buf * rx_buf,const unsigned int size)8712fba7dc5SMaciej Fijalkowski ice_add_xdp_frag(struct ice_rx_ring *rx_ring, struct xdp_buff *xdp,
8722fba7dc5SMaciej Fijalkowski 		 struct ice_rx_buf *rx_buf, const unsigned int size)
8732b245cb2SAnirudh Venkataramanan {
8742fba7dc5SMaciej Fijalkowski 	struct skb_shared_info *sinfo = xdp_get_shared_info_from_buff(xdp);
8752fba7dc5SMaciej Fijalkowski 
876ac6f733aSMitch Williams 	if (!size)
8772fba7dc5SMaciej Fijalkowski 		return 0;
8782fba7dc5SMaciej Fijalkowski 
8792fba7dc5SMaciej Fijalkowski 	if (!xdp_buff_has_frags(xdp)) {
8802fba7dc5SMaciej Fijalkowski 		sinfo->nr_frags = 0;
8812fba7dc5SMaciej Fijalkowski 		sinfo->xdp_frags_size = 0;
8822fba7dc5SMaciej Fijalkowski 		xdp_buff_set_frags_flag(xdp);
8832fba7dc5SMaciej Fijalkowski 	}
8842fba7dc5SMaciej Fijalkowski 
8852fba7dc5SMaciej Fijalkowski 	if (unlikely(sinfo->nr_frags == MAX_SKB_FRAGS)) {
8862fba7dc5SMaciej Fijalkowski 		ice_set_rx_bufs_act(xdp, rx_ring, ICE_XDP_CONSUMED);
8872fba7dc5SMaciej Fijalkowski 		return -ENOMEM;
8882fba7dc5SMaciej Fijalkowski 	}
8892fba7dc5SMaciej Fijalkowski 
8902fba7dc5SMaciej Fijalkowski 	__skb_fill_page_desc_noacc(sinfo, sinfo->nr_frags++, rx_buf->page,
8912fba7dc5SMaciej Fijalkowski 				   rx_buf->page_offset, size);
8922fba7dc5SMaciej Fijalkowski 	sinfo->xdp_frags_size += size;
893*728e112dSMaciej Fijalkowski 	/* remember frag count before XDP prog execution; bpf_xdp_adjust_tail()
894*728e112dSMaciej Fijalkowski 	 * can pop off frags but driver has to handle it on its own
895*728e112dSMaciej Fijalkowski 	 */
896*728e112dSMaciej Fijalkowski 	rx_ring->nr_frags = sinfo->nr_frags;
8972fba7dc5SMaciej Fijalkowski 
8982fba7dc5SMaciej Fijalkowski 	if (page_is_pfmemalloc(rx_buf->page))
8992fba7dc5SMaciej Fijalkowski 		xdp_buff_set_frag_pfmemalloc(xdp);
9002fba7dc5SMaciej Fijalkowski 
9012fba7dc5SMaciej Fijalkowski 	return 0;
9022b245cb2SAnirudh Venkataramanan }
9032b245cb2SAnirudh Venkataramanan 
9042b245cb2SAnirudh Venkataramanan /**
9052b245cb2SAnirudh Venkataramanan  * ice_reuse_rx_page - page flip buffer and store it back on the ring
906d337f2afSAnirudh Venkataramanan  * @rx_ring: Rx descriptor ring to store buffers on
9072b245cb2SAnirudh Venkataramanan  * @old_buf: donor buffer to have page reused
9082b245cb2SAnirudh Venkataramanan  *
9092b245cb2SAnirudh Venkataramanan  * Synchronizes page for reuse by the adapter
9102b245cb2SAnirudh Venkataramanan  */
911c8b7abddSBruce Allan static void
ice_reuse_rx_page(struct ice_rx_ring * rx_ring,struct ice_rx_buf * old_buf)912e72bba21SMaciej Fijalkowski ice_reuse_rx_page(struct ice_rx_ring *rx_ring, struct ice_rx_buf *old_buf)
9132b245cb2SAnirudh Venkataramanan {
9142b245cb2SAnirudh Venkataramanan 	u16 nta = rx_ring->next_to_alloc;
9152b245cb2SAnirudh Venkataramanan 	struct ice_rx_buf *new_buf;
9162b245cb2SAnirudh Venkataramanan 
9172b245cb2SAnirudh Venkataramanan 	new_buf = &rx_ring->rx_buf[nta];
9182b245cb2SAnirudh Venkataramanan 
9192b245cb2SAnirudh Venkataramanan 	/* update, and store next to alloc */
9202b245cb2SAnirudh Venkataramanan 	nta++;
9212b245cb2SAnirudh Venkataramanan 	rx_ring->next_to_alloc = (nta < rx_ring->count) ? nta : 0;
9222b245cb2SAnirudh Venkataramanan 
923712edbbbSMaciej Fijalkowski 	/* Transfer page from old buffer to new buffer.
924712edbbbSMaciej Fijalkowski 	 * Move each member individually to avoid possible store
925712edbbbSMaciej Fijalkowski 	 * forwarding stalls and unnecessary copy of skb.
926712edbbbSMaciej Fijalkowski 	 */
927712edbbbSMaciej Fijalkowski 	new_buf->dma = old_buf->dma;
928712edbbbSMaciej Fijalkowski 	new_buf->page = old_buf->page;
929712edbbbSMaciej Fijalkowski 	new_buf->page_offset = old_buf->page_offset;
930712edbbbSMaciej Fijalkowski 	new_buf->pagecnt_bias = old_buf->pagecnt_bias;
9312b245cb2SAnirudh Venkataramanan }
9322b245cb2SAnirudh Venkataramanan 
9332b245cb2SAnirudh Venkataramanan /**
9346c869cb7SMaciej Fijalkowski  * ice_get_rx_buf - Fetch Rx buffer and synchronize data for use
935d337f2afSAnirudh Venkataramanan  * @rx_ring: Rx descriptor ring to transact packets on
9366c869cb7SMaciej Fijalkowski  * @size: size of buffer to add to skb
93766ceaa4cSJesse Brandeburg  * @ntc: index of next to clean element
9382b245cb2SAnirudh Venkataramanan  *
9396c869cb7SMaciej Fijalkowski  * This function will pull an Rx buffer from the ring and synchronize it
9406c869cb7SMaciej Fijalkowski  * for use by the CPU.
9412b245cb2SAnirudh Venkataramanan  */
9426c869cb7SMaciej Fijalkowski static struct ice_rx_buf *
ice_get_rx_buf(struct ice_rx_ring * rx_ring,const unsigned int size,const unsigned int ntc)943d7956d81SMaciej Fijalkowski ice_get_rx_buf(struct ice_rx_ring *rx_ring, const unsigned int size,
944d7956d81SMaciej Fijalkowski 	       const unsigned int ntc)
9452b245cb2SAnirudh Venkataramanan {
9462b245cb2SAnirudh Venkataramanan 	struct ice_rx_buf *rx_buf;
9472b245cb2SAnirudh Venkataramanan 
948d7956d81SMaciej Fijalkowski 	rx_buf = &rx_ring->rx_buf[ntc];
949ac075339SMaciej Fijalkowski 	rx_buf->pgcnt =
9501beb7830SBjörn Töpel #if (PAGE_SIZE < 8192)
9511beb7830SBjörn Töpel 		page_count(rx_buf->page);
9521beb7830SBjörn Töpel #else
9531beb7830SBjörn Töpel 		0;
9541beb7830SBjörn Töpel #endif
9556c869cb7SMaciej Fijalkowski 	prefetchw(rx_buf->page);
9562b245cb2SAnirudh Venkataramanan 
957ac6f733aSMitch Williams 	if (!size)
958ac6f733aSMitch Williams 		return rx_buf;
9596c869cb7SMaciej Fijalkowski 	/* we are reusing so sync this buffer for CPU use */
9606c869cb7SMaciej Fijalkowski 	dma_sync_single_range_for_cpu(rx_ring->dev, rx_buf->dma,
9616c869cb7SMaciej Fijalkowski 				      rx_buf->page_offset, size,
9626c869cb7SMaciej Fijalkowski 				      DMA_FROM_DEVICE);
9632b245cb2SAnirudh Venkataramanan 
96403c66a13SMaciej Fijalkowski 	/* We have pulled a buffer for use, so decrement pagecnt_bias */
96503c66a13SMaciej Fijalkowski 	rx_buf->pagecnt_bias--;
96603c66a13SMaciej Fijalkowski 
9676c869cb7SMaciej Fijalkowski 	return rx_buf;
9686c869cb7SMaciej Fijalkowski }
9696c869cb7SMaciej Fijalkowski 
9706c869cb7SMaciej Fijalkowski /**
971aaf27254SMaciej Fijalkowski  * ice_build_skb - Build skb around an existing buffer
972aaf27254SMaciej Fijalkowski  * @rx_ring: Rx descriptor ring to transact packets on
973aaf27254SMaciej Fijalkowski  * @xdp: xdp_buff pointing to the data
974aaf27254SMaciej Fijalkowski  *
9752fba7dc5SMaciej Fijalkowski  * This function builds an skb around an existing XDP buffer, taking care
9762fba7dc5SMaciej Fijalkowski  * to set up the skb correctly and avoid any memcpy overhead. Driver has
9772fba7dc5SMaciej Fijalkowski  * already combined frags (if any) to skb_shared_info.
978aaf27254SMaciej Fijalkowski  */
979aaf27254SMaciej Fijalkowski static struct sk_buff *
ice_build_skb(struct ice_rx_ring * rx_ring,struct xdp_buff * xdp)9802fba7dc5SMaciej Fijalkowski ice_build_skb(struct ice_rx_ring *rx_ring, struct xdp_buff *xdp)
981aaf27254SMaciej Fijalkowski {
98288865fc4SKarol Kolacinski 	u8 metasize = xdp->data - xdp->data_meta;
9832fba7dc5SMaciej Fijalkowski 	struct skb_shared_info *sinfo = NULL;
9842fba7dc5SMaciej Fijalkowski 	unsigned int nr_frags;
985aaf27254SMaciej Fijalkowski 	struct sk_buff *skb;
986aaf27254SMaciej Fijalkowski 
9872fba7dc5SMaciej Fijalkowski 	if (unlikely(xdp_buff_has_frags(xdp))) {
9882fba7dc5SMaciej Fijalkowski 		sinfo = xdp_get_shared_info_from_buff(xdp);
9892fba7dc5SMaciej Fijalkowski 		nr_frags = sinfo->nr_frags;
9902fba7dc5SMaciej Fijalkowski 	}
9912fba7dc5SMaciej Fijalkowski 
992aaf27254SMaciej Fijalkowski 	/* Prefetch first cache line of first page. If xdp->data_meta
993aaf27254SMaciej Fijalkowski 	 * is unused, this points exactly as xdp->data, otherwise we
994aaf27254SMaciej Fijalkowski 	 * likely have a consumer accessing first few bytes of meta
995aaf27254SMaciej Fijalkowski 	 * data, and then actual data.
996aaf27254SMaciej Fijalkowski 	 */
997f468f21bSTariq Toukan 	net_prefetch(xdp->data_meta);
998aaf27254SMaciej Fijalkowski 	/* build an skb around the page buffer */
9998a11b334SMaciej Fijalkowski 	skb = napi_build_skb(xdp->data_hard_start, xdp->frame_sz);
1000aaf27254SMaciej Fijalkowski 	if (unlikely(!skb))
1001aaf27254SMaciej Fijalkowski 		return NULL;
1002aaf27254SMaciej Fijalkowski 
1003aaf27254SMaciej Fijalkowski 	/* must to record Rx queue, otherwise OS features such as
1004aaf27254SMaciej Fijalkowski 	 * symmetric queue won't work
1005aaf27254SMaciej Fijalkowski 	 */
1006aaf27254SMaciej Fijalkowski 	skb_record_rx_queue(skb, rx_ring->q_index);
1007aaf27254SMaciej Fijalkowski 
1008aaf27254SMaciej Fijalkowski 	/* update pointers within the skb to store the data */
1009aaf27254SMaciej Fijalkowski 	skb_reserve(skb, xdp->data - xdp->data_hard_start);
1010aaf27254SMaciej Fijalkowski 	__skb_put(skb, xdp->data_end - xdp->data);
1011aaf27254SMaciej Fijalkowski 	if (metasize)
1012aaf27254SMaciej Fijalkowski 		skb_metadata_set(skb, metasize);
1013aaf27254SMaciej Fijalkowski 
10142fba7dc5SMaciej Fijalkowski 	if (unlikely(xdp_buff_has_frags(xdp)))
10152fba7dc5SMaciej Fijalkowski 		xdp_update_skb_shared_info(skb, nr_frags,
10162fba7dc5SMaciej Fijalkowski 					   sinfo->xdp_frags_size,
10172fba7dc5SMaciej Fijalkowski 					   nr_frags * xdp->frame_sz,
10182fba7dc5SMaciej Fijalkowski 					   xdp_buff_is_frag_pfmemalloc(xdp));
10192fba7dc5SMaciej Fijalkowski 
1020aaf27254SMaciej Fijalkowski 	return skb;
1021aaf27254SMaciej Fijalkowski }
1022aaf27254SMaciej Fijalkowski 
1023aaf27254SMaciej Fijalkowski /**
1024712edbbbSMaciej Fijalkowski  * ice_construct_skb - Allocate skb and populate it
10252b245cb2SAnirudh Venkataramanan  * @rx_ring: Rx descriptor ring to transact packets on
1026efc2214bSMaciej Fijalkowski  * @xdp: xdp_buff pointing to the data
10272b245cb2SAnirudh Venkataramanan  *
1028712edbbbSMaciej Fijalkowski  * This function allocates an skb. It then populates it with the page
1029712edbbbSMaciej Fijalkowski  * data from the current receive descriptor, taking care to set up the
1030712edbbbSMaciej Fijalkowski  * skb correctly.
10312b245cb2SAnirudh Venkataramanan  */
1032c8b7abddSBruce Allan static struct sk_buff *
ice_construct_skb(struct ice_rx_ring * rx_ring,struct xdp_buff * xdp)10332fba7dc5SMaciej Fijalkowski ice_construct_skb(struct ice_rx_ring *rx_ring, struct xdp_buff *xdp)
10342b245cb2SAnirudh Venkataramanan {
1035efc2214bSMaciej Fijalkowski 	unsigned int size = xdp->data_end - xdp->data;
10362fba7dc5SMaciej Fijalkowski 	struct skb_shared_info *sinfo = NULL;
10372fba7dc5SMaciej Fijalkowski 	struct ice_rx_buf *rx_buf;
10382fba7dc5SMaciej Fijalkowski 	unsigned int nr_frags = 0;
1039712edbbbSMaciej Fijalkowski 	unsigned int headlen;
1040712edbbbSMaciej Fijalkowski 	struct sk_buff *skb;
10412b245cb2SAnirudh Venkataramanan 
10422b245cb2SAnirudh Venkataramanan 	/* prefetch first cache line of first page */
1043c61bcebdSMaciej Fijalkowski 	net_prefetch(xdp->data);
10442b245cb2SAnirudh Venkataramanan 
10452fba7dc5SMaciej Fijalkowski 	if (unlikely(xdp_buff_has_frags(xdp))) {
10462fba7dc5SMaciej Fijalkowski 		sinfo = xdp_get_shared_info_from_buff(xdp);
10472fba7dc5SMaciej Fijalkowski 		nr_frags = sinfo->nr_frags;
10482fba7dc5SMaciej Fijalkowski 	}
10492fba7dc5SMaciej Fijalkowski 
10502b245cb2SAnirudh Venkataramanan 	/* allocate a skb to store the frags */
1051c61bcebdSMaciej Fijalkowski 	skb = __napi_alloc_skb(&rx_ring->q_vector->napi, ICE_RX_HDR_SIZE,
10522b245cb2SAnirudh Venkataramanan 			       GFP_ATOMIC | __GFP_NOWARN);
1053712edbbbSMaciej Fijalkowski 	if (unlikely(!skb))
10542b245cb2SAnirudh Venkataramanan 		return NULL;
10552b245cb2SAnirudh Venkataramanan 
10562fba7dc5SMaciej Fijalkowski 	rx_buf = &rx_ring->rx_buf[rx_ring->first_desc];
10572b245cb2SAnirudh Venkataramanan 	skb_record_rx_queue(skb, rx_ring->q_index);
1058712edbbbSMaciej Fijalkowski 	/* Determine available headroom for copy */
1059712edbbbSMaciej Fijalkowski 	headlen = size;
1060712edbbbSMaciej Fijalkowski 	if (headlen > ICE_RX_HDR_SIZE)
1061efc2214bSMaciej Fijalkowski 		headlen = eth_get_headlen(skb->dev, xdp->data, ICE_RX_HDR_SIZE);
10622b245cb2SAnirudh Venkataramanan 
1063712edbbbSMaciej Fijalkowski 	/* align pull length to size of long to optimize memcpy performance */
1064c61bcebdSMaciej Fijalkowski 	memcpy(__skb_put(skb, headlen), xdp->data, ALIGN(headlen,
1065c61bcebdSMaciej Fijalkowski 							 sizeof(long)));
1066712edbbbSMaciej Fijalkowski 
1067712edbbbSMaciej Fijalkowski 	/* if we exhaust the linear part then add what is left as a frag */
1068712edbbbSMaciej Fijalkowski 	size -= headlen;
1069712edbbbSMaciej Fijalkowski 	if (size) {
10702fba7dc5SMaciej Fijalkowski 		/* besides adding here a partial frag, we are going to add
10712fba7dc5SMaciej Fijalkowski 		 * frags from xdp_buff, make sure there is enough space for
10722fba7dc5SMaciej Fijalkowski 		 * them
10732fba7dc5SMaciej Fijalkowski 		 */
10742fba7dc5SMaciej Fijalkowski 		if (unlikely(nr_frags >= MAX_SKB_FRAGS - 1)) {
10752fba7dc5SMaciej Fijalkowski 			dev_kfree_skb(skb);
10762fba7dc5SMaciej Fijalkowski 			return NULL;
10772fba7dc5SMaciej Fijalkowski 		}
1078712edbbbSMaciej Fijalkowski 		skb_add_rx_frag(skb, 0, rx_buf->page,
10798a11b334SMaciej Fijalkowski 				rx_buf->page_offset + headlen, size,
10808a11b334SMaciej Fijalkowski 				xdp->frame_sz);
10812b245cb2SAnirudh Venkataramanan 	} else {
10821dc1a7e7SMaciej Fijalkowski 		/* buffer is unused, change the act that should be taken later
10831dc1a7e7SMaciej Fijalkowski 		 * on; data was copied onto skb's linear part so there's no
10841dc1a7e7SMaciej Fijalkowski 		 * need for adjusting page offset and we can reuse this buffer
10851dc1a7e7SMaciej Fijalkowski 		 * as-is
1086712edbbbSMaciej Fijalkowski 		 */
10872fba7dc5SMaciej Fijalkowski 		rx_buf->act = ICE_SKB_CONSUMED;
10882fba7dc5SMaciej Fijalkowski 	}
10892fba7dc5SMaciej Fijalkowski 
10902fba7dc5SMaciej Fijalkowski 	if (unlikely(xdp_buff_has_frags(xdp))) {
10912fba7dc5SMaciej Fijalkowski 		struct skb_shared_info *skinfo = skb_shinfo(skb);
10922fba7dc5SMaciej Fijalkowski 
10932fba7dc5SMaciej Fijalkowski 		memcpy(&skinfo->frags[skinfo->nr_frags], &sinfo->frags[0],
10942fba7dc5SMaciej Fijalkowski 		       sizeof(skb_frag_t) * nr_frags);
10952fba7dc5SMaciej Fijalkowski 
10962fba7dc5SMaciej Fijalkowski 		xdp_update_skb_shared_info(skb, skinfo->nr_frags + nr_frags,
10972fba7dc5SMaciej Fijalkowski 					   sinfo->xdp_frags_size,
10982fba7dc5SMaciej Fijalkowski 					   nr_frags * xdp->frame_sz,
10992fba7dc5SMaciej Fijalkowski 					   xdp_buff_is_frag_pfmemalloc(xdp));
11002b245cb2SAnirudh Venkataramanan 	}
11012b245cb2SAnirudh Venkataramanan 
11022b245cb2SAnirudh Venkataramanan 	return skb;
11032b245cb2SAnirudh Venkataramanan }
11042b245cb2SAnirudh Venkataramanan 
11052b245cb2SAnirudh Venkataramanan /**
11061d032bc7SMaciej Fijalkowski  * ice_put_rx_buf - Clean up used buffer and either recycle or free
11071d032bc7SMaciej Fijalkowski  * @rx_ring: Rx descriptor ring to transact packets on
11081d032bc7SMaciej Fijalkowski  * @rx_buf: Rx buffer to pull data from
11092b245cb2SAnirudh Venkataramanan  *
1110d7956d81SMaciej Fijalkowski  * This function will clean up the contents of the rx_buf. It will either
1111d7956d81SMaciej Fijalkowski  * recycle the buffer or unmap it and free the associated resources.
11122b245cb2SAnirudh Venkataramanan  */
11131beb7830SBjörn Töpel static void
ice_put_rx_buf(struct ice_rx_ring * rx_ring,struct ice_rx_buf * rx_buf)1114ac075339SMaciej Fijalkowski ice_put_rx_buf(struct ice_rx_ring *rx_ring, struct ice_rx_buf *rx_buf)
11152b245cb2SAnirudh Venkataramanan {
1116ac6f733aSMitch Williams 	if (!rx_buf)
1117ac6f733aSMitch Williams 		return;
1118ac6f733aSMitch Williams 
1119ac075339SMaciej Fijalkowski 	if (ice_can_reuse_rx_page(rx_buf)) {
1120ac6f733aSMitch Williams 		/* hand second half of page back to the ring */
11212b245cb2SAnirudh Venkataramanan 		ice_reuse_rx_page(rx_ring, rx_buf);
11222b245cb2SAnirudh Venkataramanan 	} else {
11232b245cb2SAnirudh Venkataramanan 		/* we are not reusing the buffer so unmap it */
11247237f5b0SMaciej Fijalkowski 		dma_unmap_page_attrs(rx_ring->dev, rx_buf->dma,
11257237f5b0SMaciej Fijalkowski 				     ice_rx_pg_size(rx_ring), DMA_FROM_DEVICE,
11267237f5b0SMaciej Fijalkowski 				     ICE_RX_DMA_ATTR);
112703c66a13SMaciej Fijalkowski 		__page_frag_cache_drain(rx_buf->page, rx_buf->pagecnt_bias);
11282b245cb2SAnirudh Venkataramanan 	}
11292b245cb2SAnirudh Venkataramanan 
11302b245cb2SAnirudh Venkataramanan 	/* clear contents of buffer_info */
11312b245cb2SAnirudh Venkataramanan 	rx_buf->page = NULL;
11322b245cb2SAnirudh Venkataramanan }
11332b245cb2SAnirudh Venkataramanan 
11342b245cb2SAnirudh Venkataramanan /**
11352b245cb2SAnirudh Venkataramanan  * ice_clean_rx_irq - Clean completed descriptors from Rx ring - bounce buf
1136d337f2afSAnirudh Venkataramanan  * @rx_ring: Rx descriptor ring to transact packets on
11372b245cb2SAnirudh Venkataramanan  * @budget: Total limit on number of packets to process
11382b245cb2SAnirudh Venkataramanan  *
11392b245cb2SAnirudh Venkataramanan  * This function provides a "bounce buffer" approach to Rx interrupt
11402b245cb2SAnirudh Venkataramanan  * processing. The advantage to this is that on systems that have
11412b245cb2SAnirudh Venkataramanan  * expensive overhead for IOMMU access this provides a means of avoiding
11422b245cb2SAnirudh Venkataramanan  * it by maintaining the mapping of the page to the system.
11432b245cb2SAnirudh Venkataramanan  *
11442b245cb2SAnirudh Venkataramanan  * Returns amount of work completed
11452b245cb2SAnirudh Venkataramanan  */
ice_clean_rx_irq(struct ice_rx_ring * rx_ring,int budget)1146e72bba21SMaciej Fijalkowski int ice_clean_rx_irq(struct ice_rx_ring *rx_ring, int budget)
11472b245cb2SAnirudh Venkataramanan {
1148cb0473e0SMaciej Fijalkowski 	unsigned int total_rx_bytes = 0, total_rx_pkts = 0;
1149f1b1f409SMaciej Fijalkowski 	unsigned int offset = rx_ring->rx_offset;
1150cb0473e0SMaciej Fijalkowski 	struct xdp_buff *xdp = &rx_ring->xdp;
1151abaf8d51SMaciej Fijalkowski 	u32 cached_ntc = rx_ring->first_desc;
1152eb087cd8SMaciej Fijalkowski 	struct ice_tx_ring *xdp_ring = NULL;
1153efc2214bSMaciej Fijalkowski 	struct bpf_prog *xdp_prog = NULL;
1154d7956d81SMaciej Fijalkowski 	u32 ntc = rx_ring->next_to_clean;
1155d7956d81SMaciej Fijalkowski 	u32 cnt = rx_ring->count;
11561dc1a7e7SMaciej Fijalkowski 	u32 xdp_xmit = 0;
11573246a107SMaciej Fijalkowski 	u32 cached_ntu;
1158cb7db356SBrett Creeley 	bool failure;
11592fba7dc5SMaciej Fijalkowski 	u32 first;
11602b245cb2SAnirudh Venkataramanan 
1161d4ecdbf7SJesper Dangaard Brouer 	/* Frame size depend on rx_ring setup when PAGE_SIZE=4K */
1162d4ecdbf7SJesper Dangaard Brouer #if (PAGE_SIZE < 8192)
1163cb0473e0SMaciej Fijalkowski 	xdp->frame_sz = ice_rx_frame_truesize(rx_ring, 0);
1164d4ecdbf7SJesper Dangaard Brouer #endif
1165efc2214bSMaciej Fijalkowski 
1166eb087cd8SMaciej Fijalkowski 	xdp_prog = READ_ONCE(rx_ring->xdp_prog);
11673246a107SMaciej Fijalkowski 	if (xdp_prog) {
1168eb087cd8SMaciej Fijalkowski 		xdp_ring = rx_ring->xdp_ring;
11693246a107SMaciej Fijalkowski 		cached_ntu = xdp_ring->next_to_use;
11703246a107SMaciej Fijalkowski 	}
1171eb087cd8SMaciej Fijalkowski 
1172f9867df6SAnirudh Venkataramanan 	/* start the loop to process Rx packets bounded by 'budget' */
11732b245cb2SAnirudh Venkataramanan 	while (likely(total_rx_pkts < (unsigned int)budget)) {
11742b245cb2SAnirudh Venkataramanan 		union ice_32b_rx_flex_desc *rx_desc;
11756c869cb7SMaciej Fijalkowski 		struct ice_rx_buf *rx_buf;
11762fba7dc5SMaciej Fijalkowski 		struct sk_buff *skb;
11776c869cb7SMaciej Fijalkowski 		unsigned int size;
11782b245cb2SAnirudh Venkataramanan 		u16 stat_err_bits;
11792b245cb2SAnirudh Venkataramanan 		u16 vlan_tag = 0;
1180dda90cb9SJesse Brandeburg 		u16 rx_ptype;
11812b245cb2SAnirudh Venkataramanan 
1182f9867df6SAnirudh Venkataramanan 		/* get the Rx desc from Rx ring based on 'next_to_clean' */
1183d7956d81SMaciej Fijalkowski 		rx_desc = ICE_RX_DESC(rx_ring, ntc);
11842b245cb2SAnirudh Venkataramanan 
11852b245cb2SAnirudh Venkataramanan 		/* status_error_len will always be zero for unused descriptors
11862b245cb2SAnirudh Venkataramanan 		 * because it's cleared in cleanup, and overlaps with hdr_addr
11872b245cb2SAnirudh Venkataramanan 		 * which is always zero because packet split isn't used, if the
11882b245cb2SAnirudh Venkataramanan 		 * hardware wrote DD then it will be non-zero
11892b245cb2SAnirudh Venkataramanan 		 */
11902b245cb2SAnirudh Venkataramanan 		stat_err_bits = BIT(ICE_RX_FLEX_DESC_STATUS0_DD_S);
11910d54d8f7SBrett Creeley 		if (!ice_test_staterr(rx_desc->wb.status_error0, stat_err_bits))
11922b245cb2SAnirudh Venkataramanan 			break;
11932b245cb2SAnirudh Venkataramanan 
11942b245cb2SAnirudh Venkataramanan 		/* This memory barrier is needed to keep us from reading
11952b245cb2SAnirudh Venkataramanan 		 * any other fields out of the rx_desc until we know the
11962b245cb2SAnirudh Venkataramanan 		 * DD bit is set.
11972b245cb2SAnirudh Venkataramanan 		 */
11982b245cb2SAnirudh Venkataramanan 		dma_rmb();
11992b245cb2SAnirudh Venkataramanan 
12003089cf6dSJesse Brandeburg 		ice_trace(clean_rx_irq, rx_ring, rx_desc);
1201148beb61SHenry Tieman 		if (rx_desc->wb.rxdid == FDIR_DESC_RXDID || !rx_ring->netdev) {
1202d6218317SQi Zhang 			struct ice_vsi *ctrl_vsi = rx_ring->vsi;
1203d6218317SQi Zhang 
1204d6218317SQi Zhang 			if (rx_desc->wb.rxdid == FDIR_DESC_RXDID &&
1205b03d519dSJacob Keller 			    ctrl_vsi->vf)
1206d6218317SQi Zhang 				ice_vc_fdir_irq_handler(ctrl_vsi, rx_desc);
1207d7956d81SMaciej Fijalkowski 			if (++ntc == cnt)
1208d7956d81SMaciej Fijalkowski 				ntc = 0;
1209387d42aeSPiotr Raczynski 			rx_ring->first_desc = ntc;
1210148beb61SHenry Tieman 			continue;
1211148beb61SHenry Tieman 		}
1212148beb61SHenry Tieman 
12136c869cb7SMaciej Fijalkowski 		size = le16_to_cpu(rx_desc->wb.pkt_len) &
12146c869cb7SMaciej Fijalkowski 			ICE_RX_FLX_DESC_PKT_LEN_M;
12152b245cb2SAnirudh Venkataramanan 
1216ac6f733aSMitch Williams 		/* retrieve a buffer from the ring */
1217d7956d81SMaciej Fijalkowski 		rx_buf = ice_get_rx_buf(rx_ring, size, ntc);
1218ac6f733aSMitch Williams 
12192fba7dc5SMaciej Fijalkowski 		if (!xdp->data) {
12202fba7dc5SMaciej Fijalkowski 			void *hard_start;
1221efc2214bSMaciej Fijalkowski 
1222be9df4afSLorenzo Bianconi 			hard_start = page_address(rx_buf->page) + rx_buf->page_offset -
1223be9df4afSLorenzo Bianconi 				     offset;
1224cb0473e0SMaciej Fijalkowski 			xdp_prepare_buff(xdp, hard_start, offset, size, !!offset);
1225d4ecdbf7SJesper Dangaard Brouer #if (PAGE_SIZE > 4096)
1226d4ecdbf7SJesper Dangaard Brouer 			/* At larger PAGE_SIZE, frame_sz depend on len size */
1227cb0473e0SMaciej Fijalkowski 			xdp->frame_sz = ice_rx_frame_truesize(rx_ring, size);
1228d4ecdbf7SJesper Dangaard Brouer #endif
12292fba7dc5SMaciej Fijalkowski 			xdp_buff_clear_frags_flag(xdp);
12302fba7dc5SMaciej Fijalkowski 		} else if (ice_add_xdp_frag(rx_ring, xdp, rx_buf, size)) {
12312b245cb2SAnirudh Venkataramanan 			break;
1232712edbbbSMaciej Fijalkowski 		}
1233d7956d81SMaciej Fijalkowski 		if (++ntc == cnt)
1234d7956d81SMaciej Fijalkowski 			ntc = 0;
12352b245cb2SAnirudh Venkataramanan 
12362b245cb2SAnirudh Venkataramanan 		/* skip if it is NOP desc */
123729b82f2aSMaciej Fijalkowski 		if (ice_is_non_eop(rx_ring, rx_desc))
12382b245cb2SAnirudh Venkataramanan 			continue;
12392b245cb2SAnirudh Venkataramanan 
12402fba7dc5SMaciej Fijalkowski 		ice_run_xdp(rx_ring, xdp, xdp_prog, xdp_ring, rx_buf);
12412fba7dc5SMaciej Fijalkowski 		if (rx_buf->act == ICE_XDP_PASS)
12422fba7dc5SMaciej Fijalkowski 			goto construct_skb;
12432fba7dc5SMaciej Fijalkowski 		total_rx_bytes += xdp_get_buff_len(xdp);
12442fba7dc5SMaciej Fijalkowski 		total_rx_pkts++;
12452fba7dc5SMaciej Fijalkowski 
12462fba7dc5SMaciej Fijalkowski 		xdp->data = NULL;
12472fba7dc5SMaciej Fijalkowski 		rx_ring->first_desc = ntc;
1248*728e112dSMaciej Fijalkowski 		rx_ring->nr_frags = 0;
12492fba7dc5SMaciej Fijalkowski 		continue;
12502fba7dc5SMaciej Fijalkowski construct_skb:
12512fba7dc5SMaciej Fijalkowski 		if (likely(ice_ring_uses_build_skb(rx_ring)))
12522fba7dc5SMaciej Fijalkowski 			skb = ice_build_skb(rx_ring, xdp);
12532fba7dc5SMaciej Fijalkowski 		else
12542fba7dc5SMaciej Fijalkowski 			skb = ice_construct_skb(rx_ring, xdp);
12552fba7dc5SMaciej Fijalkowski 		/* exit if we failed to retrieve a buffer */
12562fba7dc5SMaciej Fijalkowski 		if (!skb) {
12572fba7dc5SMaciej Fijalkowski 			rx_ring->ring_stats->rx_stats.alloc_page_failed++;
12582fba7dc5SMaciej Fijalkowski 			rx_buf->act = ICE_XDP_CONSUMED;
12592fba7dc5SMaciej Fijalkowski 			if (unlikely(xdp_buff_has_frags(xdp)))
12602fba7dc5SMaciej Fijalkowski 				ice_set_rx_bufs_act(xdp, rx_ring,
12612fba7dc5SMaciej Fijalkowski 						    ICE_XDP_CONSUMED);
12622fba7dc5SMaciej Fijalkowski 			xdp->data = NULL;
12632fba7dc5SMaciej Fijalkowski 			rx_ring->first_desc = ntc;
1264*728e112dSMaciej Fijalkowski 			rx_ring->nr_frags = 0;
12652fba7dc5SMaciej Fijalkowski 			break;
12662fba7dc5SMaciej Fijalkowski 		}
12672fba7dc5SMaciej Fijalkowski 		xdp->data = NULL;
12682fba7dc5SMaciej Fijalkowski 		rx_ring->first_desc = ntc;
1269*728e112dSMaciej Fijalkowski 		rx_ring->nr_frags = 0;
12702fba7dc5SMaciej Fijalkowski 
12712b245cb2SAnirudh Venkataramanan 		stat_err_bits = BIT(ICE_RX_FLEX_DESC_STATUS0_RXE_S);
12720d54d8f7SBrett Creeley 		if (unlikely(ice_test_staterr(rx_desc->wb.status_error0,
12730d54d8f7SBrett Creeley 					      stat_err_bits))) {
12742b245cb2SAnirudh Venkataramanan 			dev_kfree_skb_any(skb);
12752b245cb2SAnirudh Venkataramanan 			continue;
12762b245cb2SAnirudh Venkataramanan 		}
12772b245cb2SAnirudh Venkataramanan 
12780d54d8f7SBrett Creeley 		vlan_tag = ice_get_vlan_tag_from_rx_desc(rx_desc);
12792b245cb2SAnirudh Venkataramanan 
1280133f4883SKrzysztof Kazimierczak 		/* pad the skb if needed, to make a valid ethernet frame */
12812fba7dc5SMaciej Fijalkowski 		if (eth_skb_pad(skb))
12822b245cb2SAnirudh Venkataramanan 			continue;
12832b245cb2SAnirudh Venkataramanan 
12842b245cb2SAnirudh Venkataramanan 		/* probably a little skewed due to removing CRC */
12852b245cb2SAnirudh Venkataramanan 		total_rx_bytes += skb->len;
12862b245cb2SAnirudh Venkataramanan 
1287d76a60baSAnirudh Venkataramanan 		/* populate checksum, VLAN, and protocol */
12886503b659SJesse Brandeburg 		rx_ptype = le16_to_cpu(rx_desc->wb.ptype_flex_flags0) &
12896503b659SJesse Brandeburg 			ICE_RX_FLEX_DESC_PTYPE_M;
12906503b659SJesse Brandeburg 
1291d76a60baSAnirudh Venkataramanan 		ice_process_skb_fields(rx_ring, rx_desc, skb, rx_ptype);
1292d76a60baSAnirudh Venkataramanan 
12933089cf6dSJesse Brandeburg 		ice_trace(clean_rx_irq_indicate, rx_ring, rx_desc, skb);
12942b245cb2SAnirudh Venkataramanan 		/* send completed skb up the stack */
12952b245cb2SAnirudh Venkataramanan 		ice_receive_skb(rx_ring, skb, vlan_tag);
12962b245cb2SAnirudh Venkataramanan 
12972b245cb2SAnirudh Venkataramanan 		/* update budget accounting */
12982b245cb2SAnirudh Venkataramanan 		total_rx_pkts++;
12992b245cb2SAnirudh Venkataramanan 	}
13002b245cb2SAnirudh Venkataramanan 
13012fba7dc5SMaciej Fijalkowski 	first = rx_ring->first_desc;
13022fba7dc5SMaciej Fijalkowski 	while (cached_ntc != first) {
13031dc1a7e7SMaciej Fijalkowski 		struct ice_rx_buf *buf = &rx_ring->rx_buf[cached_ntc];
13041dc1a7e7SMaciej Fijalkowski 
13051dc1a7e7SMaciej Fijalkowski 		if (buf->act & (ICE_XDP_TX | ICE_XDP_REDIR)) {
13061dc1a7e7SMaciej Fijalkowski 			ice_rx_buf_adjust_pg_offset(buf, xdp->frame_sz);
13071dc1a7e7SMaciej Fijalkowski 			xdp_xmit |= buf->act;
13081dc1a7e7SMaciej Fijalkowski 		} else if (buf->act & ICE_XDP_CONSUMED) {
13091dc1a7e7SMaciej Fijalkowski 			buf->pagecnt_bias++;
13101dc1a7e7SMaciej Fijalkowski 		} else if (buf->act == ICE_XDP_PASS) {
13111dc1a7e7SMaciej Fijalkowski 			ice_rx_buf_adjust_pg_offset(buf, xdp->frame_sz);
13121dc1a7e7SMaciej Fijalkowski 		}
13131dc1a7e7SMaciej Fijalkowski 
13141dc1a7e7SMaciej Fijalkowski 		ice_put_rx_buf(rx_ring, buf);
13151dc1a7e7SMaciej Fijalkowski 		if (++cached_ntc >= cnt)
13161dc1a7e7SMaciej Fijalkowski 			cached_ntc = 0;
13171dc1a7e7SMaciej Fijalkowski 	}
1318d7956d81SMaciej Fijalkowski 	rx_ring->next_to_clean = ntc;
1319cb7db356SBrett Creeley 	/* return up to cleaned_count buffers to hardware */
13202fba7dc5SMaciej Fijalkowski 	failure = ice_alloc_rx_bufs(rx_ring, ICE_RX_DESC_UNUSED(rx_ring));
1321cb7db356SBrett Creeley 
13229070fe3dSMaciej Fijalkowski 	if (xdp_xmit)
13233246a107SMaciej Fijalkowski 		ice_finalize_xdp_rx(xdp_ring, xdp_xmit, cached_ntu);
1324efc2214bSMaciej Fijalkowski 
1325288ecf49SBenjamin Mikailenko 	if (rx_ring->ring_stats)
1326288ecf49SBenjamin Mikailenko 		ice_update_rx_ring_stats(rx_ring, total_rx_pkts,
1327288ecf49SBenjamin Mikailenko 					 total_rx_bytes);
13282b245cb2SAnirudh Venkataramanan 
13292b245cb2SAnirudh Venkataramanan 	/* guarantee a trip back through this routine if there was a failure */
13302b245cb2SAnirudh Venkataramanan 	return failure ? budget : (int)total_rx_pkts;
13312b245cb2SAnirudh Venkataramanan }
13322b245cb2SAnirudh Venkataramanan 
__ice_update_sample(struct ice_q_vector * q_vector,struct ice_ring_container * rc,struct dim_sample * sample,bool is_tx)1333d8eb7ad5SJesse Brandeburg static void __ice_update_sample(struct ice_q_vector *q_vector,
1334d8eb7ad5SJesse Brandeburg 				struct ice_ring_container *rc,
1335d8eb7ad5SJesse Brandeburg 				struct dim_sample *sample,
1336d8eb7ad5SJesse Brandeburg 				bool is_tx)
1337d8eb7ad5SJesse Brandeburg {
1338d8eb7ad5SJesse Brandeburg 	u64 packets = 0, bytes = 0;
1339d8eb7ad5SJesse Brandeburg 
1340d8eb7ad5SJesse Brandeburg 	if (is_tx) {
1341d8eb7ad5SJesse Brandeburg 		struct ice_tx_ring *tx_ring;
1342d8eb7ad5SJesse Brandeburg 
1343d8eb7ad5SJesse Brandeburg 		ice_for_each_tx_ring(tx_ring, *rc) {
1344288ecf49SBenjamin Mikailenko 			struct ice_ring_stats *ring_stats;
1345288ecf49SBenjamin Mikailenko 
1346288ecf49SBenjamin Mikailenko 			ring_stats = tx_ring->ring_stats;
1347288ecf49SBenjamin Mikailenko 			if (!ring_stats)
1348288ecf49SBenjamin Mikailenko 				continue;
1349288ecf49SBenjamin Mikailenko 			packets += ring_stats->stats.pkts;
1350288ecf49SBenjamin Mikailenko 			bytes += ring_stats->stats.bytes;
1351d8eb7ad5SJesse Brandeburg 		}
1352d8eb7ad5SJesse Brandeburg 	} else {
1353d8eb7ad5SJesse Brandeburg 		struct ice_rx_ring *rx_ring;
1354d8eb7ad5SJesse Brandeburg 
1355d8eb7ad5SJesse Brandeburg 		ice_for_each_rx_ring(rx_ring, *rc) {
1356288ecf49SBenjamin Mikailenko 			struct ice_ring_stats *ring_stats;
1357288ecf49SBenjamin Mikailenko 
1358288ecf49SBenjamin Mikailenko 			ring_stats = rx_ring->ring_stats;
1359288ecf49SBenjamin Mikailenko 			if (!ring_stats)
1360288ecf49SBenjamin Mikailenko 				continue;
1361288ecf49SBenjamin Mikailenko 			packets += ring_stats->stats.pkts;
1362288ecf49SBenjamin Mikailenko 			bytes += ring_stats->stats.bytes;
1363d8eb7ad5SJesse Brandeburg 		}
1364d8eb7ad5SJesse Brandeburg 	}
1365d8eb7ad5SJesse Brandeburg 
1366d8eb7ad5SJesse Brandeburg 	dim_update_sample(q_vector->total_events, packets, bytes, sample);
1367d8eb7ad5SJesse Brandeburg 	sample->comp_ctr = 0;
1368d8eb7ad5SJesse Brandeburg 
1369d8eb7ad5SJesse Brandeburg 	/* if dim settings get stale, like when not updated for 1
1370d8eb7ad5SJesse Brandeburg 	 * second or longer, force it to start again. This addresses the
1371d8eb7ad5SJesse Brandeburg 	 * frequent case of an idle queue being switched to by the
1372d8eb7ad5SJesse Brandeburg 	 * scheduler. The 1,000 here means 1,000 milliseconds.
1373d8eb7ad5SJesse Brandeburg 	 */
1374d8eb7ad5SJesse Brandeburg 	if (ktime_ms_delta(sample->time, rc->dim.start_sample.time) >= 1000)
1375d8eb7ad5SJesse Brandeburg 		rc->dim.state = DIM_START_MEASURE;
1376d8eb7ad5SJesse Brandeburg }
1377d8eb7ad5SJesse Brandeburg 
13782b245cb2SAnirudh Venkataramanan /**
1379cdf1f1f1SJacob Keller  * ice_net_dim - Update net DIM algorithm
1380cdf1f1f1SJacob Keller  * @q_vector: the vector associated with the interrupt
1381711987bbSBrett Creeley  *
1382cdf1f1f1SJacob Keller  * Create a DIM sample and notify net_dim() so that it can possibly decide
1383cdf1f1f1SJacob Keller  * a new ITR value based on incoming packets, bytes, and interrupts.
1384711987bbSBrett Creeley  *
1385cdf1f1f1SJacob Keller  * This function is a no-op if the ring is not configured to dynamic ITR.
1386711987bbSBrett Creeley  */
ice_net_dim(struct ice_q_vector * q_vector)1387cdf1f1f1SJacob Keller static void ice_net_dim(struct ice_q_vector *q_vector)
138864a59d05SAnirudh Venkataramanan {
1389cdf1f1f1SJacob Keller 	struct ice_ring_container *tx = &q_vector->tx;
1390cdf1f1f1SJacob Keller 	struct ice_ring_container *rx = &q_vector->rx;
1391cdf1f1f1SJacob Keller 
1392d59684a0SJesse Brandeburg 	if (ITR_IS_DYNAMIC(tx)) {
1393d8eb7ad5SJesse Brandeburg 		struct dim_sample dim_sample;
1394cdf1f1f1SJacob Keller 
1395d8eb7ad5SJesse Brandeburg 		__ice_update_sample(q_vector, tx, &dim_sample, true);
1396cdf1f1f1SJacob Keller 		net_dim(&tx->dim, dim_sample);
1397711987bbSBrett Creeley 	}
1398711987bbSBrett Creeley 
1399d59684a0SJesse Brandeburg 	if (ITR_IS_DYNAMIC(rx)) {
1400d8eb7ad5SJesse Brandeburg 		struct dim_sample dim_sample;
1401cdf1f1f1SJacob Keller 
1402d8eb7ad5SJesse Brandeburg 		__ice_update_sample(q_vector, rx, &dim_sample, false);
1403cdf1f1f1SJacob Keller 		net_dim(&rx->dim, dim_sample);
140464a59d05SAnirudh Venkataramanan 	}
140564a59d05SAnirudh Venkataramanan }
140664a59d05SAnirudh Venkataramanan 
14072b245cb2SAnirudh Venkataramanan /**
140863f545edSBrett Creeley  * ice_buildreg_itr - build value for writing to the GLINT_DYN_CTL register
140963f545edSBrett Creeley  * @itr_idx: interrupt throttling index
141064a59d05SAnirudh Venkataramanan  * @itr: interrupt throttling value in usecs
141163f545edSBrett Creeley  */
ice_buildreg_itr(u16 itr_idx,u16 itr)14128244dd2dSBrett Creeley static u32 ice_buildreg_itr(u16 itr_idx, u16 itr)
141363f545edSBrett Creeley {
14142f2da36eSAnirudh Venkataramanan 	/* The ITR value is reported in microseconds, and the register value is
141564a59d05SAnirudh Venkataramanan 	 * recorded in 2 microsecond units. For this reason we only need to
141664a59d05SAnirudh Venkataramanan 	 * shift by the GLINT_DYN_CTL_INTERVAL_S - ICE_ITR_GRAN_S to apply this
141764a59d05SAnirudh Venkataramanan 	 * granularity as a shift instead of division. The mask makes sure the
141864a59d05SAnirudh Venkataramanan 	 * ITR value is never odd so we don't accidentally write into the field
141964a59d05SAnirudh Venkataramanan 	 * prior to the ITR field.
142064a59d05SAnirudh Venkataramanan 	 */
142164a59d05SAnirudh Venkataramanan 	itr &= ICE_ITR_MASK;
142264a59d05SAnirudh Venkataramanan 
142363f545edSBrett Creeley 	return GLINT_DYN_CTL_INTENA_M | GLINT_DYN_CTL_CLEARPBA_M |
142463f545edSBrett Creeley 		(itr_idx << GLINT_DYN_CTL_ITR_INDX_S) |
142564a59d05SAnirudh Venkataramanan 		(itr << (GLINT_DYN_CTL_INTERVAL_S - ICE_ITR_GRAN_S));
142663f545edSBrett Creeley }
142763f545edSBrett Creeley 
142863f545edSBrett Creeley /**
1429d8eb7ad5SJesse Brandeburg  * ice_enable_interrupt - re-enable MSI-X interrupt
1430cdf1f1f1SJacob Keller  * @q_vector: the vector associated with the interrupt to enable
1431cdf1f1f1SJacob Keller  *
1432d8eb7ad5SJesse Brandeburg  * If the VSI is down, the interrupt will not be re-enabled. Also,
1433d8eb7ad5SJesse Brandeburg  * when enabling the interrupt always reset the wb_on_itr to false
1434d8eb7ad5SJesse Brandeburg  * and trigger a software interrupt to clean out internal state.
143563f545edSBrett Creeley  */
ice_enable_interrupt(struct ice_q_vector * q_vector)1436d8eb7ad5SJesse Brandeburg static void ice_enable_interrupt(struct ice_q_vector *q_vector)
143763f545edSBrett Creeley {
14382fb0821fSJesse Brandeburg 	struct ice_vsi *vsi = q_vector->vsi;
1439b7306b42SJesse Brandeburg 	bool wb_en = q_vector->wb_on_itr;
144063f545edSBrett Creeley 	u32 itr_val;
144163f545edSBrett Creeley 
1442cdf1f1f1SJacob Keller 	if (test_bit(ICE_DOWN, vsi->state))
1443cdf1f1f1SJacob Keller 		return;
14442ab28bb0SBrett Creeley 
144523be7075SJesse Brandeburg 	/* trigger an ITR delayed software interrupt when exiting busy poll, to
144623be7075SJesse Brandeburg 	 * make sure to catch any pending cleanups that might have been missed
144723be7075SJesse Brandeburg 	 * due to interrupt state transition. If busy poll or poll isn't
144823be7075SJesse Brandeburg 	 * enabled, then don't update ITR, and just enable the interrupt.
1449cdf1f1f1SJacob Keller 	 */
145023be7075SJesse Brandeburg 	if (!wb_en) {
145123be7075SJesse Brandeburg 		itr_val = ice_buildreg_itr(ICE_ITR_NONE, 0);
145223be7075SJesse Brandeburg 	} else {
1453cdf1f1f1SJacob Keller 		q_vector->wb_on_itr = false;
145464a59d05SAnirudh Venkataramanan 
145523be7075SJesse Brandeburg 		/* do two things here with a single write. Set up the third ITR
145623be7075SJesse Brandeburg 		 * index to be used for software interrupt moderation, and then
145723be7075SJesse Brandeburg 		 * trigger a software interrupt with a rate limit of 20K on
145823be7075SJesse Brandeburg 		 * software interrupts, this will help avoid high interrupt
145923be7075SJesse Brandeburg 		 * loads due to frequently polling and exiting polling.
1460b7306b42SJesse Brandeburg 		 */
146123be7075SJesse Brandeburg 		itr_val = ice_buildreg_itr(ICE_IDX_ITR2, ICE_ITR_20K);
1462b7306b42SJesse Brandeburg 		itr_val |= GLINT_DYN_CTL_SWINT_TRIG_M |
146323be7075SJesse Brandeburg 			   ICE_IDX_ITR2 << GLINT_DYN_CTL_SW_ITR_INDX_S |
1464b7306b42SJesse Brandeburg 			   GLINT_DYN_CTL_SW_ITR_INDX_ENA_M;
1465b7306b42SJesse Brandeburg 	}
14661d9f7ca3SJesse Brandeburg 	wr32(&vsi->back->hw, GLINT_DYN_CTL(q_vector->reg_idx), itr_val);
146763f545edSBrett Creeley }
146863f545edSBrett Creeley 
146963f545edSBrett Creeley /**
14702ab28bb0SBrett Creeley  * ice_set_wb_on_itr - set WB_ON_ITR for this q_vector
14712ab28bb0SBrett Creeley  * @q_vector: q_vector to set WB_ON_ITR on
14722ab28bb0SBrett Creeley  *
14732ab28bb0SBrett Creeley  * We need to tell hardware to write-back completed descriptors even when
14742ab28bb0SBrett Creeley  * interrupts are disabled. Descriptors will be written back on cache line
14752ab28bb0SBrett Creeley  * boundaries without WB_ON_ITR enabled, but if we don't enable WB_ON_ITR
14761d9f7ca3SJesse Brandeburg  * descriptors may not be written back if they don't fill a cache line until
14771d9f7ca3SJesse Brandeburg  * the next interrupt.
14782ab28bb0SBrett Creeley  *
14791d9f7ca3SJesse Brandeburg  * This sets the write-back frequency to whatever was set previously for the
14801d9f7ca3SJesse Brandeburg  * ITR indices. Also, set the INTENA_MSK bit to make sure hardware knows we
14811d9f7ca3SJesse Brandeburg  * aren't meddling with the INTENA_M bit.
14822ab28bb0SBrett Creeley  */
ice_set_wb_on_itr(struct ice_q_vector * q_vector)14832fb0821fSJesse Brandeburg static void ice_set_wb_on_itr(struct ice_q_vector *q_vector)
14842ab28bb0SBrett Creeley {
14852fb0821fSJesse Brandeburg 	struct ice_vsi *vsi = q_vector->vsi;
14862fb0821fSJesse Brandeburg 
14871d9f7ca3SJesse Brandeburg 	/* already in wb_on_itr mode no need to change it */
1488cdf1f1f1SJacob Keller 	if (q_vector->wb_on_itr)
14892ab28bb0SBrett Creeley 		return;
14902ab28bb0SBrett Creeley 
14911d9f7ca3SJesse Brandeburg 	/* use previously set ITR values for all of the ITR indices by
14921d9f7ca3SJesse Brandeburg 	 * specifying ICE_ITR_NONE, which will vary in adaptive (AIM) mode and
14931d9f7ca3SJesse Brandeburg 	 * be static in non-adaptive mode (user configured)
14941d9f7ca3SJesse Brandeburg 	 */
14952ab28bb0SBrett Creeley 	wr32(&vsi->back->hw, GLINT_DYN_CTL(q_vector->reg_idx),
14961d9f7ca3SJesse Brandeburg 	     ((ICE_ITR_NONE << GLINT_DYN_CTL_ITR_INDX_S) &
14971d9f7ca3SJesse Brandeburg 	      GLINT_DYN_CTL_ITR_INDX_M) | GLINT_DYN_CTL_INTENA_MSK_M |
14981d9f7ca3SJesse Brandeburg 	     GLINT_DYN_CTL_WB_ON_ITR_M);
14992ab28bb0SBrett Creeley 
1500cdf1f1f1SJacob Keller 	q_vector->wb_on_itr = true;
15012ab28bb0SBrett Creeley }
15022ab28bb0SBrett Creeley 
15032ab28bb0SBrett Creeley /**
15042b245cb2SAnirudh Venkataramanan  * ice_napi_poll - NAPI polling Rx/Tx cleanup routine
15052b245cb2SAnirudh Venkataramanan  * @napi: napi struct with our devices info in it
15062b245cb2SAnirudh Venkataramanan  * @budget: amount of work driver is allowed to do this pass, in packets
15072b245cb2SAnirudh Venkataramanan  *
15082b245cb2SAnirudh Venkataramanan  * This function will clean all queues associated with a q_vector.
15092b245cb2SAnirudh Venkataramanan  *
15102b245cb2SAnirudh Venkataramanan  * Returns the amount of work done
15112b245cb2SAnirudh Venkataramanan  */
ice_napi_poll(struct napi_struct * napi,int budget)15122b245cb2SAnirudh Venkataramanan int ice_napi_poll(struct napi_struct *napi, int budget)
15132b245cb2SAnirudh Venkataramanan {
15142b245cb2SAnirudh Venkataramanan 	struct ice_q_vector *q_vector =
15152b245cb2SAnirudh Venkataramanan 				container_of(napi, struct ice_q_vector, napi);
1516e72bba21SMaciej Fijalkowski 	struct ice_tx_ring *tx_ring;
1517e72bba21SMaciej Fijalkowski 	struct ice_rx_ring *rx_ring;
15182b245cb2SAnirudh Venkataramanan 	bool clean_complete = true;
15199118fcd5SBrett Creeley 	int budget_per_ring;
15202b245cb2SAnirudh Venkataramanan 	int work_done = 0;
15212b245cb2SAnirudh Venkataramanan 
15222b245cb2SAnirudh Venkataramanan 	/* Since the actual Tx work is minimal, we can give the Tx a larger
15232b245cb2SAnirudh Venkataramanan 	 * budget and be more aggressive about cleaning up the Tx descriptors.
15242b245cb2SAnirudh Venkataramanan 	 */
1525e72bba21SMaciej Fijalkowski 	ice_for_each_tx_ring(tx_ring, q_vector->tx) {
15269610bd98SMaciej Fijalkowski 		bool wd;
15279610bd98SMaciej Fijalkowski 
15289610bd98SMaciej Fijalkowski 		if (tx_ring->xsk_pool)
152929322791SMaciej Fijalkowski 			wd = ice_xmit_zc(tx_ring);
15309610bd98SMaciej Fijalkowski 		else if (ice_ring_is_xdp(tx_ring))
15319610bd98SMaciej Fijalkowski 			wd = true;
15329610bd98SMaciej Fijalkowski 		else
15339610bd98SMaciej Fijalkowski 			wd = ice_clean_tx_irq(tx_ring, budget);
15342d4238f5SKrzysztof Kazimierczak 
15352d4238f5SKrzysztof Kazimierczak 		if (!wd)
15362b245cb2SAnirudh Venkataramanan 			clean_complete = false;
15372d4238f5SKrzysztof Kazimierczak 	}
15382b245cb2SAnirudh Venkataramanan 
15392b245cb2SAnirudh Venkataramanan 	/* Handle case where we are called by netpoll with a budget of 0 */
1540d27525ecSJesse Brandeburg 	if (unlikely(budget <= 0))
15412b245cb2SAnirudh Venkataramanan 		return budget;
15422b245cb2SAnirudh Venkataramanan 
15439118fcd5SBrett Creeley 	/* normally we have 1 Rx ring per q_vector */
15449118fcd5SBrett Creeley 	if (unlikely(q_vector->num_ring_rx > 1))
15459118fcd5SBrett Creeley 		/* We attempt to distribute budget to each Rx queue fairly, but
15469118fcd5SBrett Creeley 		 * don't allow the budget to go below 1 because that would exit
15479118fcd5SBrett Creeley 		 * polling early.
15482b245cb2SAnirudh Venkataramanan 		 */
154988865fc4SKarol Kolacinski 		budget_per_ring = max_t(int, budget / q_vector->num_ring_rx, 1);
15509118fcd5SBrett Creeley 	else
15519118fcd5SBrett Creeley 		/* Max of 1 Rx ring in this q_vector so give it the budget */
15529118fcd5SBrett Creeley 		budget_per_ring = budget;
15532b245cb2SAnirudh Venkataramanan 
1554e72bba21SMaciej Fijalkowski 	ice_for_each_rx_ring(rx_ring, q_vector->rx) {
15552b245cb2SAnirudh Venkataramanan 		int cleaned;
15562b245cb2SAnirudh Venkataramanan 
15572d4238f5SKrzysztof Kazimierczak 		/* A dedicated path for zero-copy allows making a single
15582d4238f5SKrzysztof Kazimierczak 		 * comparison in the irq context instead of many inside the
15592d4238f5SKrzysztof Kazimierczak 		 * ice_clean_rx_irq function and makes the codebase cleaner.
15602d4238f5SKrzysztof Kazimierczak 		 */
1561e72bba21SMaciej Fijalkowski 		cleaned = rx_ring->xsk_pool ?
1562e72bba21SMaciej Fijalkowski 			  ice_clean_rx_irq_zc(rx_ring, budget_per_ring) :
1563e72bba21SMaciej Fijalkowski 			  ice_clean_rx_irq(rx_ring, budget_per_ring);
15642b245cb2SAnirudh Venkataramanan 		work_done += cleaned;
15652b245cb2SAnirudh Venkataramanan 		/* if we clean as many as budgeted, we must not be done */
15662b245cb2SAnirudh Venkataramanan 		if (cleaned >= budget_per_ring)
15672b245cb2SAnirudh Venkataramanan 			clean_complete = false;
15682b245cb2SAnirudh Venkataramanan 	}
15692b245cb2SAnirudh Venkataramanan 
15702b245cb2SAnirudh Venkataramanan 	/* If work not completed, return budget and polling will return */
15711d9f7ca3SJesse Brandeburg 	if (!clean_complete) {
15721d9f7ca3SJesse Brandeburg 		/* Set the writeback on ITR so partial completions of
15731d9f7ca3SJesse Brandeburg 		 * cache-lines will still continue even if we're polling.
15741d9f7ca3SJesse Brandeburg 		 */
15751d9f7ca3SJesse Brandeburg 		ice_set_wb_on_itr(q_vector);
15762b245cb2SAnirudh Venkataramanan 		return budget;
15771d9f7ca3SJesse Brandeburg 	}
15782b245cb2SAnirudh Venkataramanan 
15790bcd952fSJesse Brandeburg 	/* Exit the polling mode, but don't re-enable interrupts if stack might
15800bcd952fSJesse Brandeburg 	 * poll us due to busy-polling
15810bcd952fSJesse Brandeburg 	 */
1582a4e18669SMaciej Fijalkowski 	if (napi_complete_done(napi, work_done)) {
1583d8eb7ad5SJesse Brandeburg 		ice_net_dim(q_vector);
1584d8eb7ad5SJesse Brandeburg 		ice_enable_interrupt(q_vector);
1585d8eb7ad5SJesse Brandeburg 	} else {
15862fb0821fSJesse Brandeburg 		ice_set_wb_on_itr(q_vector);
1587d8eb7ad5SJesse Brandeburg 	}
1588e0c9fd9bSDave Ertman 
158932a64994SBruce Allan 	return min_t(int, work_done, budget - 1);
15902b245cb2SAnirudh Venkataramanan }
15912b245cb2SAnirudh Venkataramanan 
15922b245cb2SAnirudh Venkataramanan /**
1593d337f2afSAnirudh Venkataramanan  * __ice_maybe_stop_tx - 2nd level check for Tx stop conditions
15942b245cb2SAnirudh Venkataramanan  * @tx_ring: the ring to be checked
15952b245cb2SAnirudh Venkataramanan  * @size: the size buffer we want to assure is available
15962b245cb2SAnirudh Venkataramanan  *
15972b245cb2SAnirudh Venkataramanan  * Returns -EBUSY if a stop is needed, else 0
15982b245cb2SAnirudh Venkataramanan  */
__ice_maybe_stop_tx(struct ice_tx_ring * tx_ring,unsigned int size)1599e72bba21SMaciej Fijalkowski static int __ice_maybe_stop_tx(struct ice_tx_ring *tx_ring, unsigned int size)
16002b245cb2SAnirudh Venkataramanan {
16011c96c168SJesse Brandeburg 	netif_tx_stop_queue(txring_txq(tx_ring));
16022b245cb2SAnirudh Venkataramanan 	/* Memory barrier before checking head and tail */
16032b245cb2SAnirudh Venkataramanan 	smp_mb();
16042b245cb2SAnirudh Venkataramanan 
16052b245cb2SAnirudh Venkataramanan 	/* Check again in a case another CPU has just made room available. */
16062b245cb2SAnirudh Venkataramanan 	if (likely(ICE_DESC_UNUSED(tx_ring) < size))
16072b245cb2SAnirudh Venkataramanan 		return -EBUSY;
16082b245cb2SAnirudh Venkataramanan 
16091c96c168SJesse Brandeburg 	/* A reprieve! - use start_queue because it doesn't call schedule */
16101c96c168SJesse Brandeburg 	netif_tx_start_queue(txring_txq(tx_ring));
1611288ecf49SBenjamin Mikailenko 	++tx_ring->ring_stats->tx_stats.restart_q;
16122b245cb2SAnirudh Venkataramanan 	return 0;
16132b245cb2SAnirudh Venkataramanan }
16142b245cb2SAnirudh Venkataramanan 
16152b245cb2SAnirudh Venkataramanan /**
1616d337f2afSAnirudh Venkataramanan  * ice_maybe_stop_tx - 1st level check for Tx stop conditions
16172b245cb2SAnirudh Venkataramanan  * @tx_ring: the ring to be checked
16182b245cb2SAnirudh Venkataramanan  * @size:    the size buffer we want to assure is available
16192b245cb2SAnirudh Venkataramanan  *
16202b245cb2SAnirudh Venkataramanan  * Returns 0 if stop is not needed
16212b245cb2SAnirudh Venkataramanan  */
ice_maybe_stop_tx(struct ice_tx_ring * tx_ring,unsigned int size)1622e72bba21SMaciej Fijalkowski static int ice_maybe_stop_tx(struct ice_tx_ring *tx_ring, unsigned int size)
16232b245cb2SAnirudh Venkataramanan {
16242b245cb2SAnirudh Venkataramanan 	if (likely(ICE_DESC_UNUSED(tx_ring) >= size))
16252b245cb2SAnirudh Venkataramanan 		return 0;
1626d337f2afSAnirudh Venkataramanan 
16272b245cb2SAnirudh Venkataramanan 	return __ice_maybe_stop_tx(tx_ring, size);
16282b245cb2SAnirudh Venkataramanan }
16292b245cb2SAnirudh Venkataramanan 
16302b245cb2SAnirudh Venkataramanan /**
16312b245cb2SAnirudh Venkataramanan  * ice_tx_map - Build the Tx descriptor
16322b245cb2SAnirudh Venkataramanan  * @tx_ring: ring to send buffer on
16332b245cb2SAnirudh Venkataramanan  * @first: first buffer info buffer to use
1634d76a60baSAnirudh Venkataramanan  * @off: pointer to struct that holds offload parameters
16352b245cb2SAnirudh Venkataramanan  *
16362b245cb2SAnirudh Venkataramanan  * This function loops over the skb data pointed to by *first
16372b245cb2SAnirudh Venkataramanan  * and gets a physical address for each memory location and programs
16382b245cb2SAnirudh Venkataramanan  * it and the length into the transmit descriptor.
16392b245cb2SAnirudh Venkataramanan  */
1640d76a60baSAnirudh Venkataramanan static void
ice_tx_map(struct ice_tx_ring * tx_ring,struct ice_tx_buf * first,struct ice_tx_offload_params * off)1641e72bba21SMaciej Fijalkowski ice_tx_map(struct ice_tx_ring *tx_ring, struct ice_tx_buf *first,
1642d76a60baSAnirudh Venkataramanan 	   struct ice_tx_offload_params *off)
16432b245cb2SAnirudh Venkataramanan {
1644d76a60baSAnirudh Venkataramanan 	u64 td_offset, td_tag, td_cmd;
16452b245cb2SAnirudh Venkataramanan 	u16 i = tx_ring->next_to_use;
16462b245cb2SAnirudh Venkataramanan 	unsigned int data_len, size;
16472b245cb2SAnirudh Venkataramanan 	struct ice_tx_desc *tx_desc;
16482b245cb2SAnirudh Venkataramanan 	struct ice_tx_buf *tx_buf;
16492b245cb2SAnirudh Venkataramanan 	struct sk_buff *skb;
16504ee656bbSTony Nguyen 	skb_frag_t *frag;
16512b245cb2SAnirudh Venkataramanan 	dma_addr_t dma;
16529c99d099SJesse Brandeburg 	bool kick;
16532b245cb2SAnirudh Venkataramanan 
1654d76a60baSAnirudh Venkataramanan 	td_tag = off->td_l2tag1;
1655d76a60baSAnirudh Venkataramanan 	td_cmd = off->td_cmd;
1656d76a60baSAnirudh Venkataramanan 	td_offset = off->td_offset;
16572b245cb2SAnirudh Venkataramanan 	skb = first->skb;
16582b245cb2SAnirudh Venkataramanan 
16592b245cb2SAnirudh Venkataramanan 	data_len = skb->data_len;
16602b245cb2SAnirudh Venkataramanan 	size = skb_headlen(skb);
16612b245cb2SAnirudh Venkataramanan 
16622b245cb2SAnirudh Venkataramanan 	tx_desc = ICE_TX_DESC(tx_ring, i);
16632b245cb2SAnirudh Venkataramanan 
1664d76a60baSAnirudh Venkataramanan 	if (first->tx_flags & ICE_TX_FLAGS_HW_VLAN) {
1665d76a60baSAnirudh Venkataramanan 		td_cmd |= (u64)ICE_TX_DESC_CMD_IL2TAG1;
16669113302bSJan Sokolowski 		td_tag = first->vid;
1667d76a60baSAnirudh Venkataramanan 	}
1668d76a60baSAnirudh Venkataramanan 
16692b245cb2SAnirudh Venkataramanan 	dma = dma_map_single(tx_ring->dev, skb->data, size, DMA_TO_DEVICE);
16702b245cb2SAnirudh Venkataramanan 
16712b245cb2SAnirudh Venkataramanan 	tx_buf = first;
16722b245cb2SAnirudh Venkataramanan 
16732b245cb2SAnirudh Venkataramanan 	for (frag = &skb_shinfo(skb)->frags[0];; frag++) {
16742b245cb2SAnirudh Venkataramanan 		unsigned int max_data = ICE_MAX_DATA_PER_TXD_ALIGNED;
16752b245cb2SAnirudh Venkataramanan 
16762b245cb2SAnirudh Venkataramanan 		if (dma_mapping_error(tx_ring->dev, dma))
16772b245cb2SAnirudh Venkataramanan 			goto dma_error;
16782b245cb2SAnirudh Venkataramanan 
16792b245cb2SAnirudh Venkataramanan 		/* record length, and DMA address */
16802b245cb2SAnirudh Venkataramanan 		dma_unmap_len_set(tx_buf, len, size);
16812b245cb2SAnirudh Venkataramanan 		dma_unmap_addr_set(tx_buf, dma, dma);
16822b245cb2SAnirudh Venkataramanan 
16832b245cb2SAnirudh Venkataramanan 		/* align size to end of page */
16842b245cb2SAnirudh Venkataramanan 		max_data += -dma & (ICE_MAX_READ_REQ_SIZE - 1);
16852b245cb2SAnirudh Venkataramanan 		tx_desc->buf_addr = cpu_to_le64(dma);
16862b245cb2SAnirudh Venkataramanan 
16872b245cb2SAnirudh Venkataramanan 		/* account for data chunks larger than the hardware
16882b245cb2SAnirudh Venkataramanan 		 * can handle
16892b245cb2SAnirudh Venkataramanan 		 */
16902b245cb2SAnirudh Venkataramanan 		while (unlikely(size > ICE_MAX_DATA_PER_TXD)) {
16912b245cb2SAnirudh Venkataramanan 			tx_desc->cmd_type_offset_bsz =
16925757cc7cSTony Nguyen 				ice_build_ctob(td_cmd, td_offset, max_data,
16935757cc7cSTony Nguyen 					       td_tag);
16942b245cb2SAnirudh Venkataramanan 
16952b245cb2SAnirudh Venkataramanan 			tx_desc++;
16962b245cb2SAnirudh Venkataramanan 			i++;
16972b245cb2SAnirudh Venkataramanan 
16982b245cb2SAnirudh Venkataramanan 			if (i == tx_ring->count) {
16992b245cb2SAnirudh Venkataramanan 				tx_desc = ICE_TX_DESC(tx_ring, 0);
17002b245cb2SAnirudh Venkataramanan 				i = 0;
17012b245cb2SAnirudh Venkataramanan 			}
17022b245cb2SAnirudh Venkataramanan 
17032b245cb2SAnirudh Venkataramanan 			dma += max_data;
17042b245cb2SAnirudh Venkataramanan 			size -= max_data;
17052b245cb2SAnirudh Venkataramanan 
17062b245cb2SAnirudh Venkataramanan 			max_data = ICE_MAX_DATA_PER_TXD_ALIGNED;
17072b245cb2SAnirudh Venkataramanan 			tx_desc->buf_addr = cpu_to_le64(dma);
17082b245cb2SAnirudh Venkataramanan 		}
17092b245cb2SAnirudh Venkataramanan 
17102b245cb2SAnirudh Venkataramanan 		if (likely(!data_len))
17112b245cb2SAnirudh Venkataramanan 			break;
17122b245cb2SAnirudh Venkataramanan 
17135757cc7cSTony Nguyen 		tx_desc->cmd_type_offset_bsz = ice_build_ctob(td_cmd, td_offset,
17142b245cb2SAnirudh Venkataramanan 							      size, td_tag);
17152b245cb2SAnirudh Venkataramanan 
17162b245cb2SAnirudh Venkataramanan 		tx_desc++;
17172b245cb2SAnirudh Venkataramanan 		i++;
17182b245cb2SAnirudh Venkataramanan 
17192b245cb2SAnirudh Venkataramanan 		if (i == tx_ring->count) {
17202b245cb2SAnirudh Venkataramanan 			tx_desc = ICE_TX_DESC(tx_ring, 0);
17212b245cb2SAnirudh Venkataramanan 			i = 0;
17222b245cb2SAnirudh Venkataramanan 		}
17232b245cb2SAnirudh Venkataramanan 
17242b245cb2SAnirudh Venkataramanan 		size = skb_frag_size(frag);
17252b245cb2SAnirudh Venkataramanan 		data_len -= size;
17262b245cb2SAnirudh Venkataramanan 
17272b245cb2SAnirudh Venkataramanan 		dma = skb_frag_dma_map(tx_ring->dev, frag, 0, size,
17282b245cb2SAnirudh Venkataramanan 				       DMA_TO_DEVICE);
17292b245cb2SAnirudh Venkataramanan 
17302b245cb2SAnirudh Venkataramanan 		tx_buf = &tx_ring->tx_buf[i];
1731aa1d3fafSAlexander Lobakin 		tx_buf->type = ICE_TX_BUF_FRAG;
17322b245cb2SAnirudh Venkataramanan 	}
17332b245cb2SAnirudh Venkataramanan 
17342b245cb2SAnirudh Venkataramanan 	/* record SW timestamp if HW timestamp is not available */
17352b245cb2SAnirudh Venkataramanan 	skb_tx_timestamp(first->skb);
17362b245cb2SAnirudh Venkataramanan 
17372b245cb2SAnirudh Venkataramanan 	i++;
17382b245cb2SAnirudh Venkataramanan 	if (i == tx_ring->count)
17392b245cb2SAnirudh Venkataramanan 		i = 0;
17402b245cb2SAnirudh Venkataramanan 
17412b245cb2SAnirudh Venkataramanan 	/* write last descriptor with RS and EOP bits */
1742efc2214bSMaciej Fijalkowski 	td_cmd |= (u64)ICE_TXD_LAST_DESC_CMD;
17435757cc7cSTony Nguyen 	tx_desc->cmd_type_offset_bsz =
17445757cc7cSTony Nguyen 			ice_build_ctob(td_cmd, td_offset, size, td_tag);
17452b245cb2SAnirudh Venkataramanan 
17462b245cb2SAnirudh Venkataramanan 	/* Force memory writes to complete before letting h/w know there
17472b245cb2SAnirudh Venkataramanan 	 * are new descriptors to fetch.
17482b245cb2SAnirudh Venkataramanan 	 *
17492b245cb2SAnirudh Venkataramanan 	 * We also use this memory barrier to make certain all of the
17502b245cb2SAnirudh Venkataramanan 	 * status bits have been updated before next_to_watch is written.
17512b245cb2SAnirudh Venkataramanan 	 */
17522b245cb2SAnirudh Venkataramanan 	wmb();
17532b245cb2SAnirudh Venkataramanan 
17542b245cb2SAnirudh Venkataramanan 	/* set next_to_watch value indicating a packet is present */
17552b245cb2SAnirudh Venkataramanan 	first->next_to_watch = tx_desc;
17562b245cb2SAnirudh Venkataramanan 
17572b245cb2SAnirudh Venkataramanan 	tx_ring->next_to_use = i;
17582b245cb2SAnirudh Venkataramanan 
17592b245cb2SAnirudh Venkataramanan 	ice_maybe_stop_tx(tx_ring, DESC_NEEDED);
17602b245cb2SAnirudh Venkataramanan 
17612b245cb2SAnirudh Venkataramanan 	/* notify HW of packet */
17629c99d099SJesse Brandeburg 	kick = __netdev_tx_sent_queue(txring_txq(tx_ring), first->bytecount,
17639c99d099SJesse Brandeburg 				      netdev_xmit_more());
17649c99d099SJesse Brandeburg 	if (kick)
17659c99d099SJesse Brandeburg 		/* notify HW of packet */
17662b245cb2SAnirudh Venkataramanan 		writel(i, tx_ring->tail);
17672b245cb2SAnirudh Venkataramanan 
17682b245cb2SAnirudh Venkataramanan 	return;
17692b245cb2SAnirudh Venkataramanan 
17702b245cb2SAnirudh Venkataramanan dma_error:
17712f2da36eSAnirudh Venkataramanan 	/* clear DMA mappings for failed tx_buf map */
17722b245cb2SAnirudh Venkataramanan 	for (;;) {
17732b245cb2SAnirudh Venkataramanan 		tx_buf = &tx_ring->tx_buf[i];
17742b245cb2SAnirudh Venkataramanan 		ice_unmap_and_free_tx_buf(tx_ring, tx_buf);
17752b245cb2SAnirudh Venkataramanan 		if (tx_buf == first)
17762b245cb2SAnirudh Venkataramanan 			break;
17772b245cb2SAnirudh Venkataramanan 		if (i == 0)
17782b245cb2SAnirudh Venkataramanan 			i = tx_ring->count;
17792b245cb2SAnirudh Venkataramanan 		i--;
17802b245cb2SAnirudh Venkataramanan 	}
17812b245cb2SAnirudh Venkataramanan 
17822b245cb2SAnirudh Venkataramanan 	tx_ring->next_to_use = i;
17832b245cb2SAnirudh Venkataramanan }
17842b245cb2SAnirudh Venkataramanan 
17852b245cb2SAnirudh Venkataramanan /**
1786d76a60baSAnirudh Venkataramanan  * ice_tx_csum - Enable Tx checksum offloads
1787d76a60baSAnirudh Venkataramanan  * @first: pointer to the first descriptor
1788d76a60baSAnirudh Venkataramanan  * @off: pointer to struct that holds offload parameters
1789d76a60baSAnirudh Venkataramanan  *
1790d76a60baSAnirudh Venkataramanan  * Returns 0 or error (negative) if checksum offload can't happen, 1 otherwise.
1791d76a60baSAnirudh Venkataramanan  */
1792d76a60baSAnirudh Venkataramanan static
ice_tx_csum(struct ice_tx_buf * first,struct ice_tx_offload_params * off)1793d76a60baSAnirudh Venkataramanan int ice_tx_csum(struct ice_tx_buf *first, struct ice_tx_offload_params *off)
1794d76a60baSAnirudh Venkataramanan {
1795d76a60baSAnirudh Venkataramanan 	u32 l4_len = 0, l3_len = 0, l2_len = 0;
1796d76a60baSAnirudh Venkataramanan 	struct sk_buff *skb = first->skb;
1797d76a60baSAnirudh Venkataramanan 	union {
1798d76a60baSAnirudh Venkataramanan 		struct iphdr *v4;
1799d76a60baSAnirudh Venkataramanan 		struct ipv6hdr *v6;
1800d76a60baSAnirudh Venkataramanan 		unsigned char *hdr;
1801d76a60baSAnirudh Venkataramanan 	} ip;
1802d76a60baSAnirudh Venkataramanan 	union {
1803d76a60baSAnirudh Venkataramanan 		struct tcphdr *tcp;
1804d76a60baSAnirudh Venkataramanan 		unsigned char *hdr;
1805d76a60baSAnirudh Venkataramanan 	} l4;
1806d76a60baSAnirudh Venkataramanan 	__be16 frag_off, protocol;
1807d76a60baSAnirudh Venkataramanan 	unsigned char *exthdr;
1808d76a60baSAnirudh Venkataramanan 	u32 offset, cmd = 0;
1809d76a60baSAnirudh Venkataramanan 	u8 l4_proto = 0;
1810d76a60baSAnirudh Venkataramanan 
1811d76a60baSAnirudh Venkataramanan 	if (skb->ip_summed != CHECKSUM_PARTIAL)
1812d76a60baSAnirudh Venkataramanan 		return 0;
1813d76a60baSAnirudh Venkataramanan 
181469e66c04SJoe Damato 	protocol = vlan_get_protocol(skb);
181569e66c04SJoe Damato 
181601658aeeSPrzemyslaw Patynowski 	if (eth_p_mpls(protocol)) {
181769e66c04SJoe Damato 		ip.hdr = skb_inner_network_header(skb);
181869e66c04SJoe Damato 		l4.hdr = skb_checksum_start(skb);
181901658aeeSPrzemyslaw Patynowski 	} else {
182001658aeeSPrzemyslaw Patynowski 		ip.hdr = skb_network_header(skb);
182101658aeeSPrzemyslaw Patynowski 		l4.hdr = skb_transport_header(skb);
182201658aeeSPrzemyslaw Patynowski 	}
1823d76a60baSAnirudh Venkataramanan 
1824d76a60baSAnirudh Venkataramanan 	/* compute outer L2 header size */
1825d76a60baSAnirudh Venkataramanan 	l2_len = ip.hdr - skb->data;
1826d76a60baSAnirudh Venkataramanan 	offset = (l2_len / 2) << ICE_TX_DESC_LEN_MACLEN_S;
1827d76a60baSAnirudh Venkataramanan 
182869e66c04SJoe Damato 	/* set the tx_flags to indicate the IP protocol type. this is
182969e66c04SJoe Damato 	 * required so that checksum header computation below is accurate.
183069e66c04SJoe Damato 	 */
183169e66c04SJoe Damato 	if (ip.v4->version == 4)
1832a4e82a81STony Nguyen 		first->tx_flags |= ICE_TX_FLAGS_IPV4;
183369e66c04SJoe Damato 	else if (ip.v6->version == 6)
1834a4e82a81STony Nguyen 		first->tx_flags |= ICE_TX_FLAGS_IPV6;
1835a4e82a81STony Nguyen 
1836a4e82a81STony Nguyen 	if (skb->encapsulation) {
1837a4e82a81STony Nguyen 		bool gso_ena = false;
1838a4e82a81STony Nguyen 		u32 tunnel = 0;
1839a4e82a81STony Nguyen 
1840a4e82a81STony Nguyen 		/* define outer network header type */
1841a4e82a81STony Nguyen 		if (first->tx_flags & ICE_TX_FLAGS_IPV4) {
1842a4e82a81STony Nguyen 			tunnel |= (first->tx_flags & ICE_TX_FLAGS_TSO) ?
1843a4e82a81STony Nguyen 				  ICE_TX_CTX_EIPT_IPV4 :
1844a4e82a81STony Nguyen 				  ICE_TX_CTX_EIPT_IPV4_NO_CSUM;
1845a4e82a81STony Nguyen 			l4_proto = ip.v4->protocol;
1846a4e82a81STony Nguyen 		} else if (first->tx_flags & ICE_TX_FLAGS_IPV6) {
18471b0b0b58SNick Nunley 			int ret;
18481b0b0b58SNick Nunley 
1849a4e82a81STony Nguyen 			tunnel |= ICE_TX_CTX_EIPT_IPV6;
1850a4e82a81STony Nguyen 			exthdr = ip.hdr + sizeof(*ip.v6);
1851a4e82a81STony Nguyen 			l4_proto = ip.v6->nexthdr;
18521b0b0b58SNick Nunley 			ret = ipv6_skip_exthdr(skb, exthdr - skb->data,
1853a4e82a81STony Nguyen 					       &l4_proto, &frag_off);
18541b0b0b58SNick Nunley 			if (ret < 0)
18551b0b0b58SNick Nunley 				return -1;
1856a4e82a81STony Nguyen 		}
1857a4e82a81STony Nguyen 
1858a4e82a81STony Nguyen 		/* define outer transport */
1859a4e82a81STony Nguyen 		switch (l4_proto) {
1860a4e82a81STony Nguyen 		case IPPROTO_UDP:
1861a4e82a81STony Nguyen 			tunnel |= ICE_TXD_CTX_UDP_TUNNELING;
1862a4e82a81STony Nguyen 			first->tx_flags |= ICE_TX_FLAGS_TUNNEL;
1863a4e82a81STony Nguyen 			break;
1864a4e82a81STony Nguyen 		case IPPROTO_GRE:
1865a4e82a81STony Nguyen 			tunnel |= ICE_TXD_CTX_GRE_TUNNELING;
1866a4e82a81STony Nguyen 			first->tx_flags |= ICE_TX_FLAGS_TUNNEL;
1867a4e82a81STony Nguyen 			break;
1868a4e82a81STony Nguyen 		case IPPROTO_IPIP:
1869a4e82a81STony Nguyen 		case IPPROTO_IPV6:
1870a4e82a81STony Nguyen 			first->tx_flags |= ICE_TX_FLAGS_TUNNEL;
1871a4e82a81STony Nguyen 			l4.hdr = skb_inner_network_header(skb);
1872a4e82a81STony Nguyen 			break;
1873a4e82a81STony Nguyen 		default:
1874a4e82a81STony Nguyen 			if (first->tx_flags & ICE_TX_FLAGS_TSO)
1875d76a60baSAnirudh Venkataramanan 				return -1;
1876d76a60baSAnirudh Venkataramanan 
1877a4e82a81STony Nguyen 			skb_checksum_help(skb);
1878a4e82a81STony Nguyen 			return 0;
1879a4e82a81STony Nguyen 		}
1880a4e82a81STony Nguyen 
1881a4e82a81STony Nguyen 		/* compute outer L3 header size */
1882a4e82a81STony Nguyen 		tunnel |= ((l4.hdr - ip.hdr) / 4) <<
1883a4e82a81STony Nguyen 			  ICE_TXD_CTX_QW0_EIPLEN_S;
1884a4e82a81STony Nguyen 
1885a4e82a81STony Nguyen 		/* switch IP header pointer from outer to inner header */
1886a4e82a81STony Nguyen 		ip.hdr = skb_inner_network_header(skb);
1887a4e82a81STony Nguyen 
1888a4e82a81STony Nguyen 		/* compute tunnel header size */
1889a4e82a81STony Nguyen 		tunnel |= ((ip.hdr - l4.hdr) / 2) <<
1890a4e82a81STony Nguyen 			   ICE_TXD_CTX_QW0_NATLEN_S;
1891a4e82a81STony Nguyen 
1892a4e82a81STony Nguyen 		gso_ena = skb_shinfo(skb)->gso_type & SKB_GSO_PARTIAL;
1893a4e82a81STony Nguyen 		/* indicate if we need to offload outer UDP header */
1894a4e82a81STony Nguyen 		if ((first->tx_flags & ICE_TX_FLAGS_TSO) && !gso_ena &&
1895a4e82a81STony Nguyen 		    (skb_shinfo(skb)->gso_type & SKB_GSO_UDP_TUNNEL_CSUM))
1896a4e82a81STony Nguyen 			tunnel |= ICE_TXD_CTX_QW0_L4T_CS_M;
1897a4e82a81STony Nguyen 
1898a4e82a81STony Nguyen 		/* record tunnel offload values */
1899a4e82a81STony Nguyen 		off->cd_tunnel_params |= tunnel;
1900a4e82a81STony Nguyen 
1901a4e82a81STony Nguyen 		/* set DTYP=1 to indicate that it's an Tx context descriptor
1902a4e82a81STony Nguyen 		 * in IPsec tunnel mode with Tx offloads in Quad word 1
1903a4e82a81STony Nguyen 		 */
1904a4e82a81STony Nguyen 		off->cd_qw1 |= (u64)ICE_TX_DESC_DTYPE_CTX;
1905a4e82a81STony Nguyen 
1906a4e82a81STony Nguyen 		/* switch L4 header pointer from outer to inner */
1907a4e82a81STony Nguyen 		l4.hdr = skb_inner_transport_header(skb);
1908a4e82a81STony Nguyen 		l4_proto = 0;
1909a4e82a81STony Nguyen 
1910a4e82a81STony Nguyen 		/* reset type as we transition from outer to inner headers */
1911a4e82a81STony Nguyen 		first->tx_flags &= ~(ICE_TX_FLAGS_IPV4 | ICE_TX_FLAGS_IPV6);
1912a4e82a81STony Nguyen 		if (ip.v4->version == 4)
1913a4e82a81STony Nguyen 			first->tx_flags |= ICE_TX_FLAGS_IPV4;
1914a4e82a81STony Nguyen 		if (ip.v6->version == 6)
1915a4e82a81STony Nguyen 			first->tx_flags |= ICE_TX_FLAGS_IPV6;
1916a4e82a81STony Nguyen 	}
1917a4e82a81STony Nguyen 
1918d76a60baSAnirudh Venkataramanan 	/* Enable IP checksum offloads */
1919a4e82a81STony Nguyen 	if (first->tx_flags & ICE_TX_FLAGS_IPV4) {
1920d76a60baSAnirudh Venkataramanan 		l4_proto = ip.v4->protocol;
1921d76a60baSAnirudh Venkataramanan 		/* the stack computes the IP header already, the only time we
1922d76a60baSAnirudh Venkataramanan 		 * need the hardware to recompute it is in the case of TSO.
1923d76a60baSAnirudh Venkataramanan 		 */
1924d76a60baSAnirudh Venkataramanan 		if (first->tx_flags & ICE_TX_FLAGS_TSO)
1925d76a60baSAnirudh Venkataramanan 			cmd |= ICE_TX_DESC_CMD_IIPT_IPV4_CSUM;
1926d76a60baSAnirudh Venkataramanan 		else
1927d76a60baSAnirudh Venkataramanan 			cmd |= ICE_TX_DESC_CMD_IIPT_IPV4;
1928d76a60baSAnirudh Venkataramanan 
1929a4e82a81STony Nguyen 	} else if (first->tx_flags & ICE_TX_FLAGS_IPV6) {
1930d76a60baSAnirudh Venkataramanan 		cmd |= ICE_TX_DESC_CMD_IIPT_IPV6;
1931d76a60baSAnirudh Venkataramanan 		exthdr = ip.hdr + sizeof(*ip.v6);
1932d76a60baSAnirudh Venkataramanan 		l4_proto = ip.v6->nexthdr;
1933d76a60baSAnirudh Venkataramanan 		if (l4.hdr != exthdr)
1934d76a60baSAnirudh Venkataramanan 			ipv6_skip_exthdr(skb, exthdr - skb->data, &l4_proto,
1935d76a60baSAnirudh Venkataramanan 					 &frag_off);
1936d76a60baSAnirudh Venkataramanan 	} else {
1937d76a60baSAnirudh Venkataramanan 		return -1;
1938d76a60baSAnirudh Venkataramanan 	}
1939d76a60baSAnirudh Venkataramanan 
1940d76a60baSAnirudh Venkataramanan 	/* compute inner L3 header size */
1941d76a60baSAnirudh Venkataramanan 	l3_len = l4.hdr - ip.hdr;
1942d76a60baSAnirudh Venkataramanan 	offset |= (l3_len / 4) << ICE_TX_DESC_LEN_IPLEN_S;
1943d76a60baSAnirudh Venkataramanan 
1944d76a60baSAnirudh Venkataramanan 	/* Enable L4 checksum offloads */
1945d76a60baSAnirudh Venkataramanan 	switch (l4_proto) {
1946d76a60baSAnirudh Venkataramanan 	case IPPROTO_TCP:
1947d76a60baSAnirudh Venkataramanan 		/* enable checksum offloads */
1948d76a60baSAnirudh Venkataramanan 		cmd |= ICE_TX_DESC_CMD_L4T_EOFT_TCP;
1949d76a60baSAnirudh Venkataramanan 		l4_len = l4.tcp->doff;
1950d76a60baSAnirudh Venkataramanan 		offset |= l4_len << ICE_TX_DESC_LEN_L4_LEN_S;
1951d76a60baSAnirudh Venkataramanan 		break;
1952d76a60baSAnirudh Venkataramanan 	case IPPROTO_UDP:
1953d76a60baSAnirudh Venkataramanan 		/* enable UDP checksum offload */
1954d76a60baSAnirudh Venkataramanan 		cmd |= ICE_TX_DESC_CMD_L4T_EOFT_UDP;
1955d76a60baSAnirudh Venkataramanan 		l4_len = (sizeof(struct udphdr) >> 2);
1956d76a60baSAnirudh Venkataramanan 		offset |= l4_len << ICE_TX_DESC_LEN_L4_LEN_S;
1957d76a60baSAnirudh Venkataramanan 		break;
1958d76a60baSAnirudh Venkataramanan 	case IPPROTO_SCTP:
1959cf909e19SAnirudh Venkataramanan 		/* enable SCTP checksum offload */
1960cf909e19SAnirudh Venkataramanan 		cmd |= ICE_TX_DESC_CMD_L4T_EOFT_SCTP;
1961cf909e19SAnirudh Venkataramanan 		l4_len = sizeof(struct sctphdr) >> 2;
1962cf909e19SAnirudh Venkataramanan 		offset |= l4_len << ICE_TX_DESC_LEN_L4_LEN_S;
1963cf909e19SAnirudh Venkataramanan 		break;
1964cf909e19SAnirudh Venkataramanan 
1965d76a60baSAnirudh Venkataramanan 	default:
1966d76a60baSAnirudh Venkataramanan 		if (first->tx_flags & ICE_TX_FLAGS_TSO)
1967d76a60baSAnirudh Venkataramanan 			return -1;
1968d76a60baSAnirudh Venkataramanan 		skb_checksum_help(skb);
1969d76a60baSAnirudh Venkataramanan 		return 0;
1970d76a60baSAnirudh Venkataramanan 	}
1971d76a60baSAnirudh Venkataramanan 
1972d76a60baSAnirudh Venkataramanan 	off->td_cmd |= cmd;
1973d76a60baSAnirudh Venkataramanan 	off->td_offset |= offset;
1974d76a60baSAnirudh Venkataramanan 	return 1;
1975d76a60baSAnirudh Venkataramanan }
1976d76a60baSAnirudh Venkataramanan 
1977d76a60baSAnirudh Venkataramanan /**
1978f9867df6SAnirudh Venkataramanan  * ice_tx_prepare_vlan_flags - prepare generic Tx VLAN tagging flags for HW
1979d76a60baSAnirudh Venkataramanan  * @tx_ring: ring to send buffer on
1980d76a60baSAnirudh Venkataramanan  * @first: pointer to struct ice_tx_buf
1981d76a60baSAnirudh Venkataramanan  *
1982d76a60baSAnirudh Venkataramanan  * Checks the skb and set up correspondingly several generic transmit flags
1983d76a60baSAnirudh Venkataramanan  * related to VLAN tagging for the HW, such as VLAN, DCB, etc.
1984d76a60baSAnirudh Venkataramanan  */
19852bb19d6eSBrett Creeley static void
ice_tx_prepare_vlan_flags(struct ice_tx_ring * tx_ring,struct ice_tx_buf * first)1986e72bba21SMaciej Fijalkowski ice_tx_prepare_vlan_flags(struct ice_tx_ring *tx_ring, struct ice_tx_buf *first)
1987d76a60baSAnirudh Venkataramanan {
1988d76a60baSAnirudh Venkataramanan 	struct sk_buff *skb = first->skb;
1989d76a60baSAnirudh Venkataramanan 
19902bb19d6eSBrett Creeley 	/* nothing left to do, software offloaded VLAN */
19912bb19d6eSBrett Creeley 	if (!skb_vlan_tag_present(skb) && eth_type_vlan(skb->protocol))
19922bb19d6eSBrett Creeley 		return;
19932bb19d6eSBrett Creeley 
19940d54d8f7SBrett Creeley 	/* the VLAN ethertype/tpid is determined by VSI configuration and netdev
19950d54d8f7SBrett Creeley 	 * feature flags, which the driver only allows either 802.1Q or 802.1ad
19960d54d8f7SBrett Creeley 	 * VLAN offloads exclusively so we only care about the VLAN ID here
1997d76a60baSAnirudh Venkataramanan 	 */
1998d76a60baSAnirudh Venkataramanan 	if (skb_vlan_tag_present(skb)) {
19999113302bSJan Sokolowski 		first->vid = skb_vlan_tag_get(skb);
20000d54d8f7SBrett Creeley 		if (tx_ring->flags & ICE_TX_FLAGS_RING_VLAN_L2TAG2)
20010d54d8f7SBrett Creeley 			first->tx_flags |= ICE_TX_FLAGS_HW_OUTER_SINGLE_VLAN;
20020d54d8f7SBrett Creeley 		else
2003d76a60baSAnirudh Venkataramanan 			first->tx_flags |= ICE_TX_FLAGS_HW_VLAN;
2004d76a60baSAnirudh Venkataramanan 	}
2005d76a60baSAnirudh Venkataramanan 
20062bb19d6eSBrett Creeley 	ice_tx_prepare_vlan_flags_dcb(tx_ring, first);
2007d76a60baSAnirudh Venkataramanan }
2008d76a60baSAnirudh Venkataramanan 
2009d76a60baSAnirudh Venkataramanan /**
2010d76a60baSAnirudh Venkataramanan  * ice_tso - computes mss and TSO length to prepare for TSO
2011d76a60baSAnirudh Venkataramanan  * @first: pointer to struct ice_tx_buf
2012d76a60baSAnirudh Venkataramanan  * @off: pointer to struct that holds offload parameters
2013d76a60baSAnirudh Venkataramanan  *
2014d76a60baSAnirudh Venkataramanan  * Returns 0 or error (negative) if TSO can't happen, 1 otherwise.
2015d76a60baSAnirudh Venkataramanan  */
2016d76a60baSAnirudh Venkataramanan static
ice_tso(struct ice_tx_buf * first,struct ice_tx_offload_params * off)2017d76a60baSAnirudh Venkataramanan int ice_tso(struct ice_tx_buf *first, struct ice_tx_offload_params *off)
2018d76a60baSAnirudh Venkataramanan {
2019d76a60baSAnirudh Venkataramanan 	struct sk_buff *skb = first->skb;
2020d76a60baSAnirudh Venkataramanan 	union {
2021d76a60baSAnirudh Venkataramanan 		struct iphdr *v4;
2022d76a60baSAnirudh Venkataramanan 		struct ipv6hdr *v6;
2023d76a60baSAnirudh Venkataramanan 		unsigned char *hdr;
2024d76a60baSAnirudh Venkataramanan 	} ip;
2025d76a60baSAnirudh Venkataramanan 	union {
2026d76a60baSAnirudh Venkataramanan 		struct tcphdr *tcp;
2027a54e3b8cSBrett Creeley 		struct udphdr *udp;
2028d76a60baSAnirudh Venkataramanan 		unsigned char *hdr;
2029d76a60baSAnirudh Venkataramanan 	} l4;
2030d76a60baSAnirudh Venkataramanan 	u64 cd_mss, cd_tso_len;
203169e66c04SJoe Damato 	__be16 protocol;
203288865fc4SKarol Kolacinski 	u32 paylen;
203388865fc4SKarol Kolacinski 	u8 l4_start;
2034d76a60baSAnirudh Venkataramanan 	int err;
2035d76a60baSAnirudh Venkataramanan 
2036d76a60baSAnirudh Venkataramanan 	if (skb->ip_summed != CHECKSUM_PARTIAL)
2037d76a60baSAnirudh Venkataramanan 		return 0;
2038d76a60baSAnirudh Venkataramanan 
2039d76a60baSAnirudh Venkataramanan 	if (!skb_is_gso(skb))
2040d76a60baSAnirudh Venkataramanan 		return 0;
2041d76a60baSAnirudh Venkataramanan 
2042d76a60baSAnirudh Venkataramanan 	err = skb_cow_head(skb, 0);
2043d76a60baSAnirudh Venkataramanan 	if (err < 0)
2044d76a60baSAnirudh Venkataramanan 		return err;
2045d76a60baSAnirudh Venkataramanan 
204669e66c04SJoe Damato 	protocol = vlan_get_protocol(skb);
204769e66c04SJoe Damato 
204869e66c04SJoe Damato 	if (eth_p_mpls(protocol))
204969e66c04SJoe Damato 		ip.hdr = skb_inner_network_header(skb);
205069e66c04SJoe Damato 	else
2051d76a60baSAnirudh Venkataramanan 		ip.hdr = skb_network_header(skb);
205269e66c04SJoe Damato 	l4.hdr = skb_checksum_start(skb);
2053d76a60baSAnirudh Venkataramanan 
2054d76a60baSAnirudh Venkataramanan 	/* initialize outer IP header fields */
2055d76a60baSAnirudh Venkataramanan 	if (ip.v4->version == 4) {
2056d76a60baSAnirudh Venkataramanan 		ip.v4->tot_len = 0;
2057d76a60baSAnirudh Venkataramanan 		ip.v4->check = 0;
2058d76a60baSAnirudh Venkataramanan 	} else {
2059d76a60baSAnirudh Venkataramanan 		ip.v6->payload_len = 0;
2060d76a60baSAnirudh Venkataramanan 	}
2061d76a60baSAnirudh Venkataramanan 
2062a4e82a81STony Nguyen 	if (skb_shinfo(skb)->gso_type & (SKB_GSO_GRE |
2063a4e82a81STony Nguyen 					 SKB_GSO_GRE_CSUM |
2064a4e82a81STony Nguyen 					 SKB_GSO_IPXIP4 |
2065a4e82a81STony Nguyen 					 SKB_GSO_IPXIP6 |
2066a4e82a81STony Nguyen 					 SKB_GSO_UDP_TUNNEL |
2067a4e82a81STony Nguyen 					 SKB_GSO_UDP_TUNNEL_CSUM)) {
2068a4e82a81STony Nguyen 		if (!(skb_shinfo(skb)->gso_type & SKB_GSO_PARTIAL) &&
2069a4e82a81STony Nguyen 		    (skb_shinfo(skb)->gso_type & SKB_GSO_UDP_TUNNEL_CSUM)) {
2070a4e82a81STony Nguyen 			l4.udp->len = 0;
2071a4e82a81STony Nguyen 
2072a4e82a81STony Nguyen 			/* determine offset of outer transport header */
207388865fc4SKarol Kolacinski 			l4_start = (u8)(l4.hdr - skb->data);
2074a4e82a81STony Nguyen 
2075a4e82a81STony Nguyen 			/* remove payload length from outer checksum */
2076a4e82a81STony Nguyen 			paylen = skb->len - l4_start;
2077a4e82a81STony Nguyen 			csum_replace_by_diff(&l4.udp->check,
2078a4e82a81STony Nguyen 					     (__force __wsum)htonl(paylen));
2079a4e82a81STony Nguyen 		}
2080a4e82a81STony Nguyen 
2081a4e82a81STony Nguyen 		/* reset pointers to inner headers */
2082a4e82a81STony Nguyen 		ip.hdr = skb_inner_network_header(skb);
2083a4e82a81STony Nguyen 		l4.hdr = skb_inner_transport_header(skb);
2084a4e82a81STony Nguyen 
2085a4e82a81STony Nguyen 		/* initialize inner IP header fields */
2086a4e82a81STony Nguyen 		if (ip.v4->version == 4) {
2087a4e82a81STony Nguyen 			ip.v4->tot_len = 0;
2088a4e82a81STony Nguyen 			ip.v4->check = 0;
2089a4e82a81STony Nguyen 		} else {
2090a4e82a81STony Nguyen 			ip.v6->payload_len = 0;
2091a4e82a81STony Nguyen 		}
2092a4e82a81STony Nguyen 	}
2093a4e82a81STony Nguyen 
2094d76a60baSAnirudh Venkataramanan 	/* determine offset of transport header */
209588865fc4SKarol Kolacinski 	l4_start = (u8)(l4.hdr - skb->data);
2096d76a60baSAnirudh Venkataramanan 
2097d76a60baSAnirudh Venkataramanan 	/* remove payload length from checksum */
2098d76a60baSAnirudh Venkataramanan 	paylen = skb->len - l4_start;
2099d76a60baSAnirudh Venkataramanan 
2100a54e3b8cSBrett Creeley 	if (skb_shinfo(skb)->gso_type & SKB_GSO_UDP_L4) {
2101a54e3b8cSBrett Creeley 		csum_replace_by_diff(&l4.udp->check,
2102a54e3b8cSBrett Creeley 				     (__force __wsum)htonl(paylen));
2103a54e3b8cSBrett Creeley 		/* compute length of UDP segmentation header */
210488865fc4SKarol Kolacinski 		off->header_len = (u8)sizeof(l4.udp) + l4_start;
2105a54e3b8cSBrett Creeley 	} else {
2106a54e3b8cSBrett Creeley 		csum_replace_by_diff(&l4.tcp->check,
2107a54e3b8cSBrett Creeley 				     (__force __wsum)htonl(paylen));
2108a54e3b8cSBrett Creeley 		/* compute length of TCP segmentation header */
210988865fc4SKarol Kolacinski 		off->header_len = (u8)((l4.tcp->doff * 4) + l4_start);
2110a54e3b8cSBrett Creeley 	}
2111d76a60baSAnirudh Venkataramanan 
2112d76a60baSAnirudh Venkataramanan 	/* update gso_segs and bytecount */
2113d76a60baSAnirudh Venkataramanan 	first->gso_segs = skb_shinfo(skb)->gso_segs;
2114d944b469SBrett Creeley 	first->bytecount += (first->gso_segs - 1) * off->header_len;
2115d76a60baSAnirudh Venkataramanan 
2116d76a60baSAnirudh Venkataramanan 	cd_tso_len = skb->len - off->header_len;
2117d76a60baSAnirudh Venkataramanan 	cd_mss = skb_shinfo(skb)->gso_size;
2118d76a60baSAnirudh Venkataramanan 
2119d76a60baSAnirudh Venkataramanan 	/* record cdesc_qw1 with TSO parameters */
2120e65e9e15SBruce Allan 	off->cd_qw1 |= (u64)(ICE_TX_DESC_DTYPE_CTX |
2121d76a60baSAnirudh Venkataramanan 			     (ICE_TX_CTX_DESC_TSO << ICE_TXD_CTX_QW1_CMD_S) |
2122d76a60baSAnirudh Venkataramanan 			     (cd_tso_len << ICE_TXD_CTX_QW1_TSO_LEN_S) |
2123e65e9e15SBruce Allan 			     (cd_mss << ICE_TXD_CTX_QW1_MSS_S));
2124d76a60baSAnirudh Venkataramanan 	first->tx_flags |= ICE_TX_FLAGS_TSO;
2125d76a60baSAnirudh Venkataramanan 	return 1;
2126d76a60baSAnirudh Venkataramanan }
2127d76a60baSAnirudh Venkataramanan 
2128d76a60baSAnirudh Venkataramanan /**
21292b245cb2SAnirudh Venkataramanan  * ice_txd_use_count  - estimate the number of descriptors needed for Tx
21302b245cb2SAnirudh Venkataramanan  * @size: transmit request size in bytes
21312b245cb2SAnirudh Venkataramanan  *
21322b245cb2SAnirudh Venkataramanan  * Due to hardware alignment restrictions (4K alignment), we need to
21332b245cb2SAnirudh Venkataramanan  * assume that we can have no more than 12K of data per descriptor, even
21342b245cb2SAnirudh Venkataramanan  * though each descriptor can take up to 16K - 1 bytes of aligned memory.
21352b245cb2SAnirudh Venkataramanan  * Thus, we need to divide by 12K. But division is slow! Instead,
21362b245cb2SAnirudh Venkataramanan  * we decompose the operation into shifts and one relatively cheap
21372b245cb2SAnirudh Venkataramanan  * multiply operation.
21382b245cb2SAnirudh Venkataramanan  *
21392b245cb2SAnirudh Venkataramanan  * To divide by 12K, we first divide by 4K, then divide by 3:
21402b245cb2SAnirudh Venkataramanan  *     To divide by 4K, shift right by 12 bits
21412b245cb2SAnirudh Venkataramanan  *     To divide by 3, multiply by 85, then divide by 256
21422b245cb2SAnirudh Venkataramanan  *     (Divide by 256 is done by shifting right by 8 bits)
21432b245cb2SAnirudh Venkataramanan  * Finally, we add one to round up. Because 256 isn't an exact multiple of
21442b245cb2SAnirudh Venkataramanan  * 3, we'll underestimate near each multiple of 12K. This is actually more
21452b245cb2SAnirudh Venkataramanan  * accurate as we have 4K - 1 of wiggle room that we can fit into the last
21462b245cb2SAnirudh Venkataramanan  * segment. For our purposes this is accurate out to 1M which is orders of
21472b245cb2SAnirudh Venkataramanan  * magnitude greater than our largest possible GSO size.
21482b245cb2SAnirudh Venkataramanan  *
21492b245cb2SAnirudh Venkataramanan  * This would then be implemented as:
2150c585ea42SBrett Creeley  *     return (((size >> 12) * 85) >> 8) + ICE_DESCS_FOR_SKB_DATA_PTR;
21512b245cb2SAnirudh Venkataramanan  *
21522b245cb2SAnirudh Venkataramanan  * Since multiplication and division are commutative, we can reorder
21532b245cb2SAnirudh Venkataramanan  * operations into:
2154c585ea42SBrett Creeley  *     return ((size * 85) >> 20) + ICE_DESCS_FOR_SKB_DATA_PTR;
21552b245cb2SAnirudh Venkataramanan  */
ice_txd_use_count(unsigned int size)21562b245cb2SAnirudh Venkataramanan static unsigned int ice_txd_use_count(unsigned int size)
21572b245cb2SAnirudh Venkataramanan {
2158c585ea42SBrett Creeley 	return ((size * 85) >> 20) + ICE_DESCS_FOR_SKB_DATA_PTR;
21592b245cb2SAnirudh Venkataramanan }
21602b245cb2SAnirudh Venkataramanan 
21612b245cb2SAnirudh Venkataramanan /**
2162d337f2afSAnirudh Venkataramanan  * ice_xmit_desc_count - calculate number of Tx descriptors needed
21632b245cb2SAnirudh Venkataramanan  * @skb: send buffer
21642b245cb2SAnirudh Venkataramanan  *
21652b245cb2SAnirudh Venkataramanan  * Returns number of data descriptors needed for this skb.
21662b245cb2SAnirudh Venkataramanan  */
ice_xmit_desc_count(struct sk_buff * skb)21672b245cb2SAnirudh Venkataramanan static unsigned int ice_xmit_desc_count(struct sk_buff *skb)
21682b245cb2SAnirudh Venkataramanan {
2169d7840976SMatthew Wilcox (Oracle) 	const skb_frag_t *frag = &skb_shinfo(skb)->frags[0];
21702b245cb2SAnirudh Venkataramanan 	unsigned int nr_frags = skb_shinfo(skb)->nr_frags;
21712b245cb2SAnirudh Venkataramanan 	unsigned int count = 0, size = skb_headlen(skb);
21722b245cb2SAnirudh Venkataramanan 
21732b245cb2SAnirudh Venkataramanan 	for (;;) {
21742b245cb2SAnirudh Venkataramanan 		count += ice_txd_use_count(size);
21752b245cb2SAnirudh Venkataramanan 
21762b245cb2SAnirudh Venkataramanan 		if (!nr_frags--)
21772b245cb2SAnirudh Venkataramanan 			break;
21782b245cb2SAnirudh Venkataramanan 
21792b245cb2SAnirudh Venkataramanan 		size = skb_frag_size(frag++);
21802b245cb2SAnirudh Venkataramanan 	}
21812b245cb2SAnirudh Venkataramanan 
21822b245cb2SAnirudh Venkataramanan 	return count;
21832b245cb2SAnirudh Venkataramanan }
21842b245cb2SAnirudh Venkataramanan 
21852b245cb2SAnirudh Venkataramanan /**
21862b245cb2SAnirudh Venkataramanan  * __ice_chk_linearize - Check if there are more than 8 buffers per packet
21872b245cb2SAnirudh Venkataramanan  * @skb: send buffer
21882b245cb2SAnirudh Venkataramanan  *
21892b245cb2SAnirudh Venkataramanan  * Note: This HW can't DMA more than 8 buffers to build a packet on the wire
21902b245cb2SAnirudh Venkataramanan  * and so we need to figure out the cases where we need to linearize the skb.
21912b245cb2SAnirudh Venkataramanan  *
21922b245cb2SAnirudh Venkataramanan  * For TSO we need to count the TSO header and segment payload separately.
21932b245cb2SAnirudh Venkataramanan  * As such we need to check cases where we have 7 fragments or more as we
21942b245cb2SAnirudh Venkataramanan  * can potentially require 9 DMA transactions, 1 for the TSO header, 1 for
21952b245cb2SAnirudh Venkataramanan  * the segment payload in the first descriptor, and another 7 for the
21962b245cb2SAnirudh Venkataramanan  * fragments.
21972b245cb2SAnirudh Venkataramanan  */
__ice_chk_linearize(struct sk_buff * skb)21982b245cb2SAnirudh Venkataramanan static bool __ice_chk_linearize(struct sk_buff *skb)
21992b245cb2SAnirudh Venkataramanan {
2200d7840976SMatthew Wilcox (Oracle) 	const skb_frag_t *frag, *stale;
22012b245cb2SAnirudh Venkataramanan 	int nr_frags, sum;
22022b245cb2SAnirudh Venkataramanan 
22032b245cb2SAnirudh Venkataramanan 	/* no need to check if number of frags is less than 7 */
22042b245cb2SAnirudh Venkataramanan 	nr_frags = skb_shinfo(skb)->nr_frags;
22052b245cb2SAnirudh Venkataramanan 	if (nr_frags < (ICE_MAX_BUF_TXD - 1))
22062b245cb2SAnirudh Venkataramanan 		return false;
22072b245cb2SAnirudh Venkataramanan 
22082b245cb2SAnirudh Venkataramanan 	/* We need to walk through the list and validate that each group
22092b245cb2SAnirudh Venkataramanan 	 * of 6 fragments totals at least gso_size.
22102b245cb2SAnirudh Venkataramanan 	 */
22112b245cb2SAnirudh Venkataramanan 	nr_frags -= ICE_MAX_BUF_TXD - 2;
22122b245cb2SAnirudh Venkataramanan 	frag = &skb_shinfo(skb)->frags[0];
22132b245cb2SAnirudh Venkataramanan 
22142b245cb2SAnirudh Venkataramanan 	/* Initialize size to the negative value of gso_size minus 1. We
22154ee656bbSTony Nguyen 	 * use this as the worst case scenario in which the frag ahead
22162b245cb2SAnirudh Venkataramanan 	 * of us only provides one byte which is why we are limited to 6
22172b245cb2SAnirudh Venkataramanan 	 * descriptors for a single transmit as the header and previous
22182b245cb2SAnirudh Venkataramanan 	 * fragment are already consuming 2 descriptors.
22192b245cb2SAnirudh Venkataramanan 	 */
22202b245cb2SAnirudh Venkataramanan 	sum = 1 - skb_shinfo(skb)->gso_size;
22212b245cb2SAnirudh Venkataramanan 
22222b245cb2SAnirudh Venkataramanan 	/* Add size of frags 0 through 4 to create our initial sum */
22232b245cb2SAnirudh Venkataramanan 	sum += skb_frag_size(frag++);
22242b245cb2SAnirudh Venkataramanan 	sum += skb_frag_size(frag++);
22252b245cb2SAnirudh Venkataramanan 	sum += skb_frag_size(frag++);
22262b245cb2SAnirudh Venkataramanan 	sum += skb_frag_size(frag++);
22272b245cb2SAnirudh Venkataramanan 	sum += skb_frag_size(frag++);
22282b245cb2SAnirudh Venkataramanan 
22292b245cb2SAnirudh Venkataramanan 	/* Walk through fragments adding latest fragment, testing it, and
22302b245cb2SAnirudh Venkataramanan 	 * then removing stale fragments from the sum.
22312b245cb2SAnirudh Venkataramanan 	 */
22320a37abfaSKiran Patil 	for (stale = &skb_shinfo(skb)->frags[0];; stale++) {
22330a37abfaSKiran Patil 		int stale_size = skb_frag_size(stale);
22340a37abfaSKiran Patil 
22352b245cb2SAnirudh Venkataramanan 		sum += skb_frag_size(frag++);
22362b245cb2SAnirudh Venkataramanan 
22370a37abfaSKiran Patil 		/* The stale fragment may present us with a smaller
22380a37abfaSKiran Patil 		 * descriptor than the actual fragment size. To account
22390a37abfaSKiran Patil 		 * for that we need to remove all the data on the front and
22400a37abfaSKiran Patil 		 * figure out what the remainder would be in the last
22410a37abfaSKiran Patil 		 * descriptor associated with the fragment.
22420a37abfaSKiran Patil 		 */
22430a37abfaSKiran Patil 		if (stale_size > ICE_MAX_DATA_PER_TXD) {
22440a37abfaSKiran Patil 			int align_pad = -(skb_frag_off(stale)) &
22450a37abfaSKiran Patil 					(ICE_MAX_READ_REQ_SIZE - 1);
22460a37abfaSKiran Patil 
22470a37abfaSKiran Patil 			sum -= align_pad;
22480a37abfaSKiran Patil 			stale_size -= align_pad;
22490a37abfaSKiran Patil 
22500a37abfaSKiran Patil 			do {
22510a37abfaSKiran Patil 				sum -= ICE_MAX_DATA_PER_TXD_ALIGNED;
22520a37abfaSKiran Patil 				stale_size -= ICE_MAX_DATA_PER_TXD_ALIGNED;
22530a37abfaSKiran Patil 			} while (stale_size > ICE_MAX_DATA_PER_TXD);
22540a37abfaSKiran Patil 		}
22550a37abfaSKiran Patil 
22562b245cb2SAnirudh Venkataramanan 		/* if sum is negative we failed to make sufficient progress */
22572b245cb2SAnirudh Venkataramanan 		if (sum < 0)
22582b245cb2SAnirudh Venkataramanan 			return true;
22592b245cb2SAnirudh Venkataramanan 
22602b245cb2SAnirudh Venkataramanan 		if (!nr_frags--)
22612b245cb2SAnirudh Venkataramanan 			break;
22622b245cb2SAnirudh Venkataramanan 
22630a37abfaSKiran Patil 		sum -= stale_size;
22642b245cb2SAnirudh Venkataramanan 	}
22652b245cb2SAnirudh Venkataramanan 
22662b245cb2SAnirudh Venkataramanan 	return false;
22672b245cb2SAnirudh Venkataramanan }
22682b245cb2SAnirudh Venkataramanan 
22692b245cb2SAnirudh Venkataramanan /**
22702b245cb2SAnirudh Venkataramanan  * ice_chk_linearize - Check if there are more than 8 fragments per packet
22712b245cb2SAnirudh Venkataramanan  * @skb:      send buffer
22722b245cb2SAnirudh Venkataramanan  * @count:    number of buffers used
22732b245cb2SAnirudh Venkataramanan  *
22742b245cb2SAnirudh Venkataramanan  * Note: Our HW can't scatter-gather more than 8 fragments to build
22752b245cb2SAnirudh Venkataramanan  * a packet on the wire and so we need to figure out the cases where we
22762b245cb2SAnirudh Venkataramanan  * need to linearize the skb.
22772b245cb2SAnirudh Venkataramanan  */
ice_chk_linearize(struct sk_buff * skb,unsigned int count)22782b245cb2SAnirudh Venkataramanan static bool ice_chk_linearize(struct sk_buff *skb, unsigned int count)
22792b245cb2SAnirudh Venkataramanan {
22802b245cb2SAnirudh Venkataramanan 	/* Both TSO and single send will work if count is less than 8 */
22812b245cb2SAnirudh Venkataramanan 	if (likely(count < ICE_MAX_BUF_TXD))
22822b245cb2SAnirudh Venkataramanan 		return false;
22832b245cb2SAnirudh Venkataramanan 
22842b245cb2SAnirudh Venkataramanan 	if (skb_is_gso(skb))
22852b245cb2SAnirudh Venkataramanan 		return __ice_chk_linearize(skb);
22862b245cb2SAnirudh Venkataramanan 
22872b245cb2SAnirudh Venkataramanan 	/* we can support up to 8 data buffers for a single send */
22882b245cb2SAnirudh Venkataramanan 	return count != ICE_MAX_BUF_TXD;
22892b245cb2SAnirudh Venkataramanan }
22902b245cb2SAnirudh Venkataramanan 
22912b245cb2SAnirudh Venkataramanan /**
2292ea9b847cSJacob Keller  * ice_tstamp - set up context descriptor for hardware timestamp
2293ea9b847cSJacob Keller  * @tx_ring: pointer to the Tx ring to send buffer on
2294ea9b847cSJacob Keller  * @skb: pointer to the SKB we're sending
2295ea9b847cSJacob Keller  * @first: Tx buffer
2296ea9b847cSJacob Keller  * @off: Tx offload parameters
2297ea9b847cSJacob Keller  */
2298ea9b847cSJacob Keller static void
ice_tstamp(struct ice_tx_ring * tx_ring,struct sk_buff * skb,struct ice_tx_buf * first,struct ice_tx_offload_params * off)2299e72bba21SMaciej Fijalkowski ice_tstamp(struct ice_tx_ring *tx_ring, struct sk_buff *skb,
2300ea9b847cSJacob Keller 	   struct ice_tx_buf *first, struct ice_tx_offload_params *off)
2301ea9b847cSJacob Keller {
2302ea9b847cSJacob Keller 	s8 idx;
2303ea9b847cSJacob Keller 
2304ea9b847cSJacob Keller 	/* only timestamp the outbound packet if the user has requested it */
2305ea9b847cSJacob Keller 	if (likely(!(skb_shinfo(skb)->tx_flags & SKBTX_HW_TSTAMP)))
2306ea9b847cSJacob Keller 		return;
2307ea9b847cSJacob Keller 
2308ea9b847cSJacob Keller 	if (!tx_ring->ptp_tx)
2309ea9b847cSJacob Keller 		return;
2310ea9b847cSJacob Keller 
2311ea9b847cSJacob Keller 	/* Tx timestamps cannot be sampled when doing TSO */
2312ea9b847cSJacob Keller 	if (first->tx_flags & ICE_TX_FLAGS_TSO)
2313ea9b847cSJacob Keller 		return;
2314ea9b847cSJacob Keller 
2315ea9b847cSJacob Keller 	/* Grab an open timestamp slot */
2316ea9b847cSJacob Keller 	idx = ice_ptp_request_ts(tx_ring->tx_tstamps, skb);
2317f020481bSJacob Keller 	if (idx < 0) {
2318f020481bSJacob Keller 		tx_ring->vsi->back->ptp.tx_hwtstamp_skipped++;
2319ea9b847cSJacob Keller 		return;
2320f020481bSJacob Keller 	}
2321ea9b847cSJacob Keller 
2322ea9b847cSJacob Keller 	off->cd_qw1 |= (u64)(ICE_TX_DESC_DTYPE_CTX |
2323ea9b847cSJacob Keller 			     (ICE_TX_CTX_DESC_TSYN << ICE_TXD_CTX_QW1_CMD_S) |
2324ea9b847cSJacob Keller 			     ((u64)idx << ICE_TXD_CTX_QW1_TSO_LEN_S));
2325ea9b847cSJacob Keller 	first->tx_flags |= ICE_TX_FLAGS_TSYN;
2326ea9b847cSJacob Keller }
2327ea9b847cSJacob Keller 
2328ea9b847cSJacob Keller /**
23292b245cb2SAnirudh Venkataramanan  * ice_xmit_frame_ring - Sends buffer on Tx ring
23302b245cb2SAnirudh Venkataramanan  * @skb: send buffer
23312b245cb2SAnirudh Venkataramanan  * @tx_ring: ring to send buffer on
23322b245cb2SAnirudh Venkataramanan  *
23332b245cb2SAnirudh Venkataramanan  * Returns NETDEV_TX_OK if sent, else an error code
23342b245cb2SAnirudh Venkataramanan  */
23352b245cb2SAnirudh Venkataramanan static netdev_tx_t
ice_xmit_frame_ring(struct sk_buff * skb,struct ice_tx_ring * tx_ring)2336e72bba21SMaciej Fijalkowski ice_xmit_frame_ring(struct sk_buff *skb, struct ice_tx_ring *tx_ring)
23372b245cb2SAnirudh Venkataramanan {
2338d76a60baSAnirudh Venkataramanan 	struct ice_tx_offload_params offload = { 0 };
23390c3a6101SDave Ertman 	struct ice_vsi *vsi = tx_ring->vsi;
23402b245cb2SAnirudh Venkataramanan 	struct ice_tx_buf *first;
2341f9f83202SDave Ertman 	struct ethhdr *eth;
23422b245cb2SAnirudh Venkataramanan 	unsigned int count;
2343d76a60baSAnirudh Venkataramanan 	int tso, csum;
23442b245cb2SAnirudh Venkataramanan 
23453089cf6dSJesse Brandeburg 	ice_trace(xmit_frame_ring, tx_ring, skb);
23463089cf6dSJesse Brandeburg 
2347fce92dbcSPawel Chmielewski 	if (unlikely(ipv6_hopopt_jumbo_remove(skb)))
2348fce92dbcSPawel Chmielewski 		goto out_drop;
2349fce92dbcSPawel Chmielewski 
23502b245cb2SAnirudh Venkataramanan 	count = ice_xmit_desc_count(skb);
23512b245cb2SAnirudh Venkataramanan 	if (ice_chk_linearize(skb, count)) {
23522b245cb2SAnirudh Venkataramanan 		if (__skb_linearize(skb))
23532b245cb2SAnirudh Venkataramanan 			goto out_drop;
23542b245cb2SAnirudh Venkataramanan 		count = ice_txd_use_count(skb->len);
2355288ecf49SBenjamin Mikailenko 		tx_ring->ring_stats->tx_stats.tx_linearize++;
23562b245cb2SAnirudh Venkataramanan 	}
23572b245cb2SAnirudh Venkataramanan 
23582b245cb2SAnirudh Venkataramanan 	/* need: 1 descriptor per page * PAGE_SIZE/ICE_MAX_DATA_PER_TXD,
23592b245cb2SAnirudh Venkataramanan 	 *       + 1 desc for skb_head_len/ICE_MAX_DATA_PER_TXD,
23602b245cb2SAnirudh Venkataramanan 	 *       + 4 desc gap to avoid the cache line where head is,
23612b245cb2SAnirudh Venkataramanan 	 *       + 1 desc for context descriptor,
23622b245cb2SAnirudh Venkataramanan 	 * otherwise try next time
23632b245cb2SAnirudh Venkataramanan 	 */
2364c585ea42SBrett Creeley 	if (ice_maybe_stop_tx(tx_ring, count + ICE_DESCS_PER_CACHE_LINE +
2365c585ea42SBrett Creeley 			      ICE_DESCS_FOR_CTX_DESC)) {
2366288ecf49SBenjamin Mikailenko 		tx_ring->ring_stats->tx_stats.tx_busy++;
23672b245cb2SAnirudh Venkataramanan 		return NETDEV_TX_BUSY;
23682b245cb2SAnirudh Venkataramanan 	}
23692b245cb2SAnirudh Venkataramanan 
2370cc14db11SJesse Brandeburg 	/* prefetch for bql data which is infrequently used */
2371cc14db11SJesse Brandeburg 	netdev_txq_bql_enqueue_prefetchw(txring_txq(tx_ring));
2372cc14db11SJesse Brandeburg 
2373d76a60baSAnirudh Venkataramanan 	offload.tx_ring = tx_ring;
2374d76a60baSAnirudh Venkataramanan 
23752b245cb2SAnirudh Venkataramanan 	/* record the location of the first descriptor for this packet */
23762b245cb2SAnirudh Venkataramanan 	first = &tx_ring->tx_buf[tx_ring->next_to_use];
23772b245cb2SAnirudh Venkataramanan 	first->skb = skb;
2378aa1d3fafSAlexander Lobakin 	first->type = ICE_TX_BUF_SKB;
23792b245cb2SAnirudh Venkataramanan 	first->bytecount = max_t(unsigned int, skb->len, ETH_ZLEN);
23802b245cb2SAnirudh Venkataramanan 	first->gso_segs = 1;
2381d76a60baSAnirudh Venkataramanan 	first->tx_flags = 0;
23822b245cb2SAnirudh Venkataramanan 
2383d76a60baSAnirudh Venkataramanan 	/* prepare the VLAN tagging flags for Tx */
23842bb19d6eSBrett Creeley 	ice_tx_prepare_vlan_flags(tx_ring, first);
23850d54d8f7SBrett Creeley 	if (first->tx_flags & ICE_TX_FLAGS_HW_OUTER_SINGLE_VLAN) {
23860d54d8f7SBrett Creeley 		offload.cd_qw1 |= (u64)(ICE_TX_DESC_DTYPE_CTX |
23870d54d8f7SBrett Creeley 					(ICE_TX_CTX_DESC_IL2TAG2 <<
23880d54d8f7SBrett Creeley 					ICE_TXD_CTX_QW1_CMD_S));
23899113302bSJan Sokolowski 		offload.cd_l2tag2 = first->vid;
23900d54d8f7SBrett Creeley 	}
2391d76a60baSAnirudh Venkataramanan 
2392d76a60baSAnirudh Venkataramanan 	/* set up TSO offload */
2393d76a60baSAnirudh Venkataramanan 	tso = ice_tso(first, &offload);
2394d76a60baSAnirudh Venkataramanan 	if (tso < 0)
2395d76a60baSAnirudh Venkataramanan 		goto out_drop;
2396d76a60baSAnirudh Venkataramanan 
2397d76a60baSAnirudh Venkataramanan 	/* always set up Tx checksum offload */
2398d76a60baSAnirudh Venkataramanan 	csum = ice_tx_csum(first, &offload);
2399d76a60baSAnirudh Venkataramanan 	if (csum < 0)
2400d76a60baSAnirudh Venkataramanan 		goto out_drop;
2401d76a60baSAnirudh Venkataramanan 
24020c3a6101SDave Ertman 	/* allow CONTROL frames egress from main VSI if FW LLDP disabled */
2403f9f83202SDave Ertman 	eth = (struct ethhdr *)skb_mac_header(skb);
2404f9f83202SDave Ertman 	if (unlikely((skb->priority == TC_PRIO_CONTROL ||
2405f9f83202SDave Ertman 		      eth->h_proto == htons(ETH_P_LLDP)) &&
24060c3a6101SDave Ertman 		     vsi->type == ICE_VSI_PF &&
2407fc2d1165SChinh T Cao 		     vsi->port_info->qos_cfg.is_sw_lldp))
24080c3a6101SDave Ertman 		offload.cd_qw1 |= (u64)(ICE_TX_DESC_DTYPE_CTX |
24090c3a6101SDave Ertman 					ICE_TX_CTX_DESC_SWTCH_UPLINK <<
24100c3a6101SDave Ertman 					ICE_TXD_CTX_QW1_CMD_S);
24110c3a6101SDave Ertman 
2412ea9b847cSJacob Keller 	ice_tstamp(tx_ring, skb, first, &offload);
2413f5396b8aSGrzegorz Nitka 	if (ice_is_switchdev_running(vsi->back))
2414f5396b8aSGrzegorz Nitka 		ice_eswitch_set_target_vsi(skb, &offload);
2415ea9b847cSJacob Keller 
24160c3a6101SDave Ertman 	if (offload.cd_qw1 & ICE_TX_DESC_DTYPE_CTX) {
2417d76a60baSAnirudh Venkataramanan 		struct ice_tx_ctx_desc *cdesc;
241888865fc4SKarol Kolacinski 		u16 i = tx_ring->next_to_use;
2419d76a60baSAnirudh Venkataramanan 
2420d76a60baSAnirudh Venkataramanan 		/* grab the next descriptor */
2421d76a60baSAnirudh Venkataramanan 		cdesc = ICE_TX_CTX_DESC(tx_ring, i);
2422d76a60baSAnirudh Venkataramanan 		i++;
2423d76a60baSAnirudh Venkataramanan 		tx_ring->next_to_use = (i < tx_ring->count) ? i : 0;
2424d76a60baSAnirudh Venkataramanan 
2425d76a60baSAnirudh Venkataramanan 		/* setup context descriptor */
2426d76a60baSAnirudh Venkataramanan 		cdesc->tunneling_params = cpu_to_le32(offload.cd_tunnel_params);
2427d76a60baSAnirudh Venkataramanan 		cdesc->l2tag2 = cpu_to_le16(offload.cd_l2tag2);
2428d76a60baSAnirudh Venkataramanan 		cdesc->rsvd = cpu_to_le16(0);
2429d76a60baSAnirudh Venkataramanan 		cdesc->qw1 = cpu_to_le64(offload.cd_qw1);
2430d76a60baSAnirudh Venkataramanan 	}
2431d76a60baSAnirudh Venkataramanan 
2432d76a60baSAnirudh Venkataramanan 	ice_tx_map(tx_ring, first, &offload);
24332b245cb2SAnirudh Venkataramanan 	return NETDEV_TX_OK;
24342b245cb2SAnirudh Venkataramanan 
24352b245cb2SAnirudh Venkataramanan out_drop:
24363089cf6dSJesse Brandeburg 	ice_trace(xmit_frame_ring_drop, tx_ring, skb);
24372b245cb2SAnirudh Venkataramanan 	dev_kfree_skb_any(skb);
24382b245cb2SAnirudh Venkataramanan 	return NETDEV_TX_OK;
24392b245cb2SAnirudh Venkataramanan }
24402b245cb2SAnirudh Venkataramanan 
24412b245cb2SAnirudh Venkataramanan /**
24422b245cb2SAnirudh Venkataramanan  * ice_start_xmit - Selects the correct VSI and Tx queue to send buffer
24432b245cb2SAnirudh Venkataramanan  * @skb: send buffer
24442b245cb2SAnirudh Venkataramanan  * @netdev: network interface device structure
24452b245cb2SAnirudh Venkataramanan  *
24462b245cb2SAnirudh Venkataramanan  * Returns NETDEV_TX_OK if sent, else an error code
24472b245cb2SAnirudh Venkataramanan  */
ice_start_xmit(struct sk_buff * skb,struct net_device * netdev)24482b245cb2SAnirudh Venkataramanan netdev_tx_t ice_start_xmit(struct sk_buff *skb, struct net_device *netdev)
24492b245cb2SAnirudh Venkataramanan {
24502b245cb2SAnirudh Venkataramanan 	struct ice_netdev_priv *np = netdev_priv(netdev);
24512b245cb2SAnirudh Venkataramanan 	struct ice_vsi *vsi = np->vsi;
2452e72bba21SMaciej Fijalkowski 	struct ice_tx_ring *tx_ring;
24532b245cb2SAnirudh Venkataramanan 
24542b245cb2SAnirudh Venkataramanan 	tx_ring = vsi->tx_rings[skb->queue_mapping];
24552b245cb2SAnirudh Venkataramanan 
24562b245cb2SAnirudh Venkataramanan 	/* hardware can't handle really short frames, hardware padding works
24572b245cb2SAnirudh Venkataramanan 	 * beyond this point
24582b245cb2SAnirudh Venkataramanan 	 */
24592b245cb2SAnirudh Venkataramanan 	if (skb_put_padto(skb, ICE_MIN_TX_LEN))
24602b245cb2SAnirudh Venkataramanan 		return NETDEV_TX_OK;
24612b245cb2SAnirudh Venkataramanan 
24622b245cb2SAnirudh Venkataramanan 	return ice_xmit_frame_ring(skb, tx_ring);
24632b245cb2SAnirudh Venkataramanan }
2464148beb61SHenry Tieman 
2465148beb61SHenry Tieman /**
24662a87bd73SDave Ertman  * ice_get_dscp_up - return the UP/TC value for a SKB
24672a87bd73SDave Ertman  * @dcbcfg: DCB config that contains DSCP to UP/TC mapping
24682a87bd73SDave Ertman  * @skb: SKB to query for info to determine UP/TC
24692a87bd73SDave Ertman  *
24702a87bd73SDave Ertman  * This function is to only be called when the PF is in L3 DSCP PFC mode
24712a87bd73SDave Ertman  */
ice_get_dscp_up(struct ice_dcbx_cfg * dcbcfg,struct sk_buff * skb)24722a87bd73SDave Ertman static u8 ice_get_dscp_up(struct ice_dcbx_cfg *dcbcfg, struct sk_buff *skb)
24732a87bd73SDave Ertman {
24742a87bd73SDave Ertman 	u8 dscp = 0;
24752a87bd73SDave Ertman 
24762a87bd73SDave Ertman 	if (skb->protocol == htons(ETH_P_IP))
24772a87bd73SDave Ertman 		dscp = ipv4_get_dsfield(ip_hdr(skb)) >> 2;
24782a87bd73SDave Ertman 	else if (skb->protocol == htons(ETH_P_IPV6))
24792a87bd73SDave Ertman 		dscp = ipv6_get_dsfield(ipv6_hdr(skb)) >> 2;
24802a87bd73SDave Ertman 
24812a87bd73SDave Ertman 	return dcbcfg->dscp_map[dscp];
24822a87bd73SDave Ertman }
24832a87bd73SDave Ertman 
24842a87bd73SDave Ertman u16
ice_select_queue(struct net_device * netdev,struct sk_buff * skb,struct net_device * sb_dev)24852a87bd73SDave Ertman ice_select_queue(struct net_device *netdev, struct sk_buff *skb,
24862a87bd73SDave Ertman 		 struct net_device *sb_dev)
24872a87bd73SDave Ertman {
24882a87bd73SDave Ertman 	struct ice_pf *pf = ice_netdev_to_pf(netdev);
24892a87bd73SDave Ertman 	struct ice_dcbx_cfg *dcbcfg;
24902a87bd73SDave Ertman 
24912a87bd73SDave Ertman 	dcbcfg = &pf->hw.port_info->qos_cfg.local_dcbx_cfg;
24922a87bd73SDave Ertman 	if (dcbcfg->pfc_mode == ICE_QOS_MODE_DSCP)
24932a87bd73SDave Ertman 		skb->priority = ice_get_dscp_up(dcbcfg, skb);
24942a87bd73SDave Ertman 
24952a87bd73SDave Ertman 	return netdev_pick_tx(netdev, skb, sb_dev);
24962a87bd73SDave Ertman }
24972a87bd73SDave Ertman 
24982a87bd73SDave Ertman /**
2499148beb61SHenry Tieman  * ice_clean_ctrl_tx_irq - interrupt handler for flow director Tx queue
2500148beb61SHenry Tieman  * @tx_ring: tx_ring to clean
2501148beb61SHenry Tieman  */
ice_clean_ctrl_tx_irq(struct ice_tx_ring * tx_ring)2502e72bba21SMaciej Fijalkowski void ice_clean_ctrl_tx_irq(struct ice_tx_ring *tx_ring)
2503148beb61SHenry Tieman {
2504148beb61SHenry Tieman 	struct ice_vsi *vsi = tx_ring->vsi;
2505148beb61SHenry Tieman 	s16 i = tx_ring->next_to_clean;
2506148beb61SHenry Tieman 	int budget = ICE_DFLT_IRQ_WORK;
2507148beb61SHenry Tieman 	struct ice_tx_desc *tx_desc;
2508148beb61SHenry Tieman 	struct ice_tx_buf *tx_buf;
2509148beb61SHenry Tieman 
2510148beb61SHenry Tieman 	tx_buf = &tx_ring->tx_buf[i];
2511148beb61SHenry Tieman 	tx_desc = ICE_TX_DESC(tx_ring, i);
2512148beb61SHenry Tieman 	i -= tx_ring->count;
2513148beb61SHenry Tieman 
2514148beb61SHenry Tieman 	do {
2515148beb61SHenry Tieman 		struct ice_tx_desc *eop_desc = tx_buf->next_to_watch;
2516148beb61SHenry Tieman 
2517148beb61SHenry Tieman 		/* if next_to_watch is not set then there is no pending work */
2518148beb61SHenry Tieman 		if (!eop_desc)
2519148beb61SHenry Tieman 			break;
2520148beb61SHenry Tieman 
2521148beb61SHenry Tieman 		/* prevent any other reads prior to eop_desc */
2522148beb61SHenry Tieman 		smp_rmb();
2523148beb61SHenry Tieman 
2524148beb61SHenry Tieman 		/* if the descriptor isn't done, no work to do */
2525148beb61SHenry Tieman 		if (!(eop_desc->cmd_type_offset_bsz &
2526148beb61SHenry Tieman 		      cpu_to_le64(ICE_TX_DESC_DTYPE_DESC_DONE)))
2527148beb61SHenry Tieman 			break;
2528148beb61SHenry Tieman 
2529148beb61SHenry Tieman 		/* clear next_to_watch to prevent false hangs */
2530148beb61SHenry Tieman 		tx_buf->next_to_watch = NULL;
2531148beb61SHenry Tieman 		tx_desc->buf_addr = 0;
2532148beb61SHenry Tieman 		tx_desc->cmd_type_offset_bsz = 0;
2533148beb61SHenry Tieman 
2534148beb61SHenry Tieman 		/* move past filter desc */
2535148beb61SHenry Tieman 		tx_buf++;
2536148beb61SHenry Tieman 		tx_desc++;
2537148beb61SHenry Tieman 		i++;
2538148beb61SHenry Tieman 		if (unlikely(!i)) {
2539148beb61SHenry Tieman 			i -= tx_ring->count;
2540148beb61SHenry Tieman 			tx_buf = tx_ring->tx_buf;
2541148beb61SHenry Tieman 			tx_desc = ICE_TX_DESC(tx_ring, 0);
2542148beb61SHenry Tieman 		}
2543148beb61SHenry Tieman 
2544148beb61SHenry Tieman 		/* unmap the data header */
2545148beb61SHenry Tieman 		if (dma_unmap_len(tx_buf, len))
2546148beb61SHenry Tieman 			dma_unmap_single(tx_ring->dev,
2547148beb61SHenry Tieman 					 dma_unmap_addr(tx_buf, dma),
2548148beb61SHenry Tieman 					 dma_unmap_len(tx_buf, len),
2549148beb61SHenry Tieman 					 DMA_TO_DEVICE);
2550aa1d3fafSAlexander Lobakin 		if (tx_buf->type == ICE_TX_BUF_DUMMY)
2551148beb61SHenry Tieman 			devm_kfree(tx_ring->dev, tx_buf->raw_buf);
2552148beb61SHenry Tieman 
2553148beb61SHenry Tieman 		/* clear next_to_watch to prevent false hangs */
2554aa1d3fafSAlexander Lobakin 		tx_buf->type = ICE_TX_BUF_EMPTY;
2555148beb61SHenry Tieman 		tx_buf->tx_flags = 0;
2556148beb61SHenry Tieman 		tx_buf->next_to_watch = NULL;
2557148beb61SHenry Tieman 		dma_unmap_len_set(tx_buf, len, 0);
2558148beb61SHenry Tieman 		tx_desc->buf_addr = 0;
2559148beb61SHenry Tieman 		tx_desc->cmd_type_offset_bsz = 0;
2560148beb61SHenry Tieman 
2561148beb61SHenry Tieman 		/* move past eop_desc for start of next FD desc */
2562148beb61SHenry Tieman 		tx_buf++;
2563148beb61SHenry Tieman 		tx_desc++;
2564148beb61SHenry Tieman 		i++;
2565148beb61SHenry Tieman 		if (unlikely(!i)) {
2566148beb61SHenry Tieman 			i -= tx_ring->count;
2567148beb61SHenry Tieman 			tx_buf = tx_ring->tx_buf;
2568148beb61SHenry Tieman 			tx_desc = ICE_TX_DESC(tx_ring, 0);
2569148beb61SHenry Tieman 		}
2570148beb61SHenry Tieman 
2571148beb61SHenry Tieman 		budget--;
2572148beb61SHenry Tieman 	} while (likely(budget));
2573148beb61SHenry Tieman 
2574148beb61SHenry Tieman 	i += tx_ring->count;
2575148beb61SHenry Tieman 	tx_ring->next_to_clean = i;
2576148beb61SHenry Tieman 
2577148beb61SHenry Tieman 	/* re-enable interrupt if needed */
2578148beb61SHenry Tieman 	ice_irq_dynamic_ena(&vsi->back->hw, vsi, vsi->q_vectors[0]);
2579148beb61SHenry Tieman }
2580