xref: /linux/include/net/xsk_buff_pool.h (revision ebd297a2affadb6f6f4d2e5d975c1eda18ac762d)
1 /* SPDX-License-Identifier: GPL-2.0 */
2 /* Copyright(c) 2020 Intel Corporation. */
3 
4 #ifndef XSK_BUFF_POOL_H_
5 #define XSK_BUFF_POOL_H_
6 
7 #include <linux/if_xdp.h>
8 #include <linux/types.h>
9 #include <linux/dma-mapping.h>
10 #include <linux/bpf.h>
11 #include <net/xdp.h>
12 
13 struct xsk_buff_pool;
14 struct xdp_rxq_info;
15 struct xsk_cb_desc;
16 struct xsk_queue;
17 struct xdp_desc;
18 struct xdp_umem;
19 struct xdp_sock;
20 struct device;
21 struct page;
22 
23 #define XSK_PRIV_MAX 24
24 
25 struct xdp_buff_xsk {
26 	struct xdp_buff xdp;
27 	u8 cb[XSK_PRIV_MAX];
28 	dma_addr_t dma;
29 	dma_addr_t frame_dma;
30 	struct xsk_buff_pool *pool;
31 	struct list_head list_node;
32 } __aligned_largest;
33 
34 #define XSK_CHECK_PRIV_TYPE(t) BUILD_BUG_ON(sizeof(t) > offsetofend(struct xdp_buff_xsk, cb))
35 #define XSK_TX_COMPL_FITS(t) BUILD_BUG_ON(sizeof(struct xsk_tx_metadata_compl) > sizeof(t))
36 
37 struct xsk_dma_map {
38 	dma_addr_t *dma_pages;
39 	struct device *dev;
40 	struct net_device *netdev;
41 	refcount_t users;
42 	struct list_head list; /* Protected by the RTNL_LOCK */
43 	u32 dma_pages_cnt;
44 };
45 
46 struct xsk_buff_pool {
47 	/* Members only used in the control path first. */
48 	struct device *dev;
49 	struct net_device *netdev;
50 	struct list_head xsk_tx_list;
51 	/* Protects modifications to the xsk_tx_list */
52 	spinlock_t xsk_tx_list_lock;
53 	refcount_t users;
54 	struct xdp_umem *umem;
55 	struct work_struct work;
56 	/* Protects generic receive in shared and non-shared umem mode. */
57 	spinlock_t rx_lock;
58 	struct list_head free_list;
59 	struct list_head xskb_list;
60 	u32 heads_cnt;
61 	u16 queue_id;
62 
63 	/* Data path members as close to free_heads at the end as possible. */
64 	struct xsk_queue *fq ____cacheline_aligned_in_smp;
65 	struct xsk_queue *cq;
66 	/* For performance reasons, each buff pool has its own array of dma_pages
67 	 * even when they are identical.
68 	 */
69 	dma_addr_t *dma_pages;
70 	struct xdp_buff_xsk *heads;
71 	struct xdp_desc *tx_descs;
72 	u64 chunk_mask;
73 	u64 addrs_cnt;
74 	u32 free_list_cnt;
75 	u32 dma_pages_cnt;
76 	u32 free_heads_cnt;
77 	u32 headroom;
78 	u32 chunk_size;
79 	u32 chunk_shift;
80 	u32 frame_len;
81 	u32 xdp_zc_max_segs;
82 	u8 tx_metadata_len; /* inherited from umem */
83 	u8 cached_need_wakeup;
84 	bool uses_need_wakeup;
85 	bool unaligned;
86 	bool tx_sw_csum;
87 	void *addrs;
88 	/* Mutual exclusion of the completion ring in the SKB mode. Two cases to protect:
89 	 * NAPI TX thread and sendmsg error paths in the SKB destructor callback and when
90 	 * sockets share a single cq when the same netdev and queue id is shared.
91 	 */
92 	spinlock_t cq_lock;
93 	struct xdp_buff_xsk *free_heads[];
94 };
95 
96 /* Masks for xdp_umem_page flags.
97  * The low 12-bits of the addr will be 0 since this is the page address, so we
98  * can use them for flags.
99  */
100 #define XSK_NEXT_PG_CONTIG_SHIFT 0
101 #define XSK_NEXT_PG_CONTIG_MASK BIT_ULL(XSK_NEXT_PG_CONTIG_SHIFT)
102 
103 /* AF_XDP core. */
104 struct xsk_buff_pool *xp_create_and_assign_umem(struct xdp_sock *xs,
105 						struct xdp_umem *umem);
106 int xp_assign_dev(struct xsk_buff_pool *pool, struct net_device *dev,
107 		  u16 queue_id, u16 flags);
108 int xp_assign_dev_shared(struct xsk_buff_pool *pool, struct xdp_sock *umem_xs,
109 			 struct net_device *dev, u16 queue_id);
110 int xp_alloc_tx_descs(struct xsk_buff_pool *pool, struct xdp_sock *xs);
111 void xp_destroy(struct xsk_buff_pool *pool);
112 void xp_get_pool(struct xsk_buff_pool *pool);
113 bool xp_put_pool(struct xsk_buff_pool *pool);
114 void xp_clear_dev(struct xsk_buff_pool *pool);
115 void xp_add_xsk(struct xsk_buff_pool *pool, struct xdp_sock *xs);
116 void xp_del_xsk(struct xsk_buff_pool *pool, struct xdp_sock *xs);
117 
118 /* AF_XDP, and XDP core. */
119 void xp_free(struct xdp_buff_xsk *xskb);
120 
xp_init_xskb_addr(struct xdp_buff_xsk * xskb,struct xsk_buff_pool * pool,u64 addr)121 static inline void xp_init_xskb_addr(struct xdp_buff_xsk *xskb, struct xsk_buff_pool *pool,
122 				     u64 addr)
123 {
124 	xskb->xdp.data_hard_start = pool->addrs + addr + pool->headroom;
125 }
126 
xp_init_xskb_dma(struct xdp_buff_xsk * xskb,struct xsk_buff_pool * pool,dma_addr_t * dma_pages,u64 addr)127 static inline void xp_init_xskb_dma(struct xdp_buff_xsk *xskb, struct xsk_buff_pool *pool,
128 				    dma_addr_t *dma_pages, u64 addr)
129 {
130 	xskb->frame_dma = (dma_pages[addr >> PAGE_SHIFT] & ~XSK_NEXT_PG_CONTIG_MASK) +
131 		(addr & ~PAGE_MASK);
132 	xskb->dma = xskb->frame_dma + pool->headroom + XDP_PACKET_HEADROOM;
133 }
134 
135 /* AF_XDP ZC drivers, via xdp_sock_buff.h */
136 void xp_set_rxq_info(struct xsk_buff_pool *pool, struct xdp_rxq_info *rxq);
137 void xp_fill_cb(struct xsk_buff_pool *pool, struct xsk_cb_desc *desc);
138 int xp_dma_map(struct xsk_buff_pool *pool, struct device *dev,
139 	       unsigned long attrs, struct page **pages, u32 nr_pages);
140 void xp_dma_unmap(struct xsk_buff_pool *pool, unsigned long attrs);
141 struct xdp_buff *xp_alloc(struct xsk_buff_pool *pool);
142 u32 xp_alloc_batch(struct xsk_buff_pool *pool, struct xdp_buff **xdp, u32 max);
143 bool xp_can_alloc(struct xsk_buff_pool *pool, u32 count);
144 void *xp_raw_get_data(struct xsk_buff_pool *pool, u64 addr);
145 dma_addr_t xp_raw_get_dma(struct xsk_buff_pool *pool, u64 addr);
146 
147 struct xdp_desc_ctx {
148 	dma_addr_t dma;
149 	struct xsk_tx_metadata *meta;
150 };
151 
152 struct xdp_desc_ctx xp_raw_get_ctx(const struct xsk_buff_pool *pool, u64 addr);
153 
xp_get_dma(struct xdp_buff_xsk * xskb)154 static inline dma_addr_t xp_get_dma(struct xdp_buff_xsk *xskb)
155 {
156 	return xskb->dma;
157 }
158 
xp_get_frame_dma(struct xdp_buff_xsk * xskb)159 static inline dma_addr_t xp_get_frame_dma(struct xdp_buff_xsk *xskb)
160 {
161 	return xskb->frame_dma;
162 }
163 
xp_dma_sync_for_cpu(struct xdp_buff_xsk * xskb)164 static inline void xp_dma_sync_for_cpu(struct xdp_buff_xsk *xskb)
165 {
166 	dma_sync_single_for_cpu(xskb->pool->dev, xskb->dma,
167 				xskb->pool->frame_len,
168 				DMA_BIDIRECTIONAL);
169 }
170 
xp_dma_sync_for_device(struct xsk_buff_pool * pool,dma_addr_t dma,size_t size)171 static inline void xp_dma_sync_for_device(struct xsk_buff_pool *pool,
172 					  dma_addr_t dma, size_t size)
173 {
174 	dma_sync_single_for_device(pool->dev, dma, size, DMA_BIDIRECTIONAL);
175 }
176 
177 /* Masks for xdp_umem_page flags.
178  * The low 12-bits of the addr will be 0 since this is the page address, so we
179  * can use them for flags.
180  */
181 #define XSK_NEXT_PG_CONTIG_SHIFT 0
182 #define XSK_NEXT_PG_CONTIG_MASK BIT_ULL(XSK_NEXT_PG_CONTIG_SHIFT)
183 
xp_desc_crosses_non_contig_pg(struct xsk_buff_pool * pool,u64 addr,u32 len)184 static inline bool xp_desc_crosses_non_contig_pg(struct xsk_buff_pool *pool,
185 						 u64 addr, u32 len)
186 {
187 	bool cross_pg = (addr & (PAGE_SIZE - 1)) + len > PAGE_SIZE;
188 
189 	if (likely(!cross_pg))
190 		return false;
191 
192 	return pool->dma_pages &&
193 	       !(pool->dma_pages[addr >> PAGE_SHIFT] & XSK_NEXT_PG_CONTIG_MASK);
194 }
195 
xp_mb_desc(const struct xdp_desc * desc)196 static inline bool xp_mb_desc(const struct xdp_desc *desc)
197 {
198 	return desc->options & XDP_PKT_CONTD;
199 }
200 
xp_aligned_extract_addr(struct xsk_buff_pool * pool,u64 addr)201 static inline u64 xp_aligned_extract_addr(struct xsk_buff_pool *pool, u64 addr)
202 {
203 	return addr & pool->chunk_mask;
204 }
205 
xp_unaligned_extract_addr(u64 addr)206 static inline u64 xp_unaligned_extract_addr(u64 addr)
207 {
208 	return addr & XSK_UNALIGNED_BUF_ADDR_MASK;
209 }
210 
xp_unaligned_extract_offset(u64 addr)211 static inline u64 xp_unaligned_extract_offset(u64 addr)
212 {
213 	return addr >> XSK_UNALIGNED_BUF_OFFSET_SHIFT;
214 }
215 
xp_unaligned_add_offset_to_addr(u64 addr)216 static inline u64 xp_unaligned_add_offset_to_addr(u64 addr)
217 {
218 	return xp_unaligned_extract_addr(addr) +
219 		xp_unaligned_extract_offset(addr);
220 }
221 
xp_aligned_extract_idx(struct xsk_buff_pool * pool,u64 addr)222 static inline u32 xp_aligned_extract_idx(struct xsk_buff_pool *pool, u64 addr)
223 {
224 	return xp_aligned_extract_addr(pool, addr) >> pool->chunk_shift;
225 }
226 
xp_release(struct xdp_buff_xsk * xskb)227 static inline void xp_release(struct xdp_buff_xsk *xskb)
228 {
229 	if (xskb->pool->unaligned)
230 		xskb->pool->free_heads[xskb->pool->free_heads_cnt++] = xskb;
231 }
232 
xp_get_handle(struct xdp_buff_xsk * xskb,struct xsk_buff_pool * pool)233 static inline u64 xp_get_handle(struct xdp_buff_xsk *xskb,
234 				struct xsk_buff_pool *pool)
235 {
236 	u64 orig_addr = xskb->xdp.data - pool->addrs;
237 	u64 offset;
238 
239 	if (!pool->unaligned)
240 		return orig_addr;
241 
242 	offset = xskb->xdp.data - xskb->xdp.data_hard_start;
243 	offset += pool->headroom;
244 	orig_addr -= offset;
245 	return orig_addr + (offset << XSK_UNALIGNED_BUF_OFFSET_SHIFT);
246 }
247 
xp_tx_metadata_enabled(const struct xsk_buff_pool * pool)248 static inline bool xp_tx_metadata_enabled(const struct xsk_buff_pool *pool)
249 {
250 	return pool->tx_metadata_len > 0;
251 }
252 
253 #endif /* XSK_BUFF_POOL_H_ */
254