xref: /linux/drivers/net/ethernet/mellanox/mlx5/core/fs_core.h (revision ab93e0dd72c37d378dd936f031ffb83ff2bd87ce)
1 /*
2  * Copyright (c) 2015, Mellanox Technologies. All rights reserved.
3  *
4  * This software is available to you under a choice of one of two
5  * licenses.  You may choose to be licensed under the terms of the GNU
6  * General Public License (GPL) Version 2, available from the file
7  * COPYING in the main directory of this source tree, or the
8  * OpenIB.org BSD license below:
9  *
10  *     Redistribution and use in source and binary forms, with or
11  *     without modification, are permitted provided that the following
12  *     conditions are met:
13  *
14  *      - Redistributions of source code must retain the above
15  *        copyright notice, this list of conditions and the following
16  *        disclaimer.
17  *
18  *      - Redistributions in binary form must reproduce the above
19  *        copyright notice, this list of conditions and the following
20  *        disclaimer in the documentation and/or other materials
21  *        provided with the distribution.
22  *
23  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
24  * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
25  * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
26  * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
27  * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
28  * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
29  * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
30  * SOFTWARE.
31  */
32 
33 #ifndef _MLX5_FS_CORE_
34 #define _MLX5_FS_CORE_
35 
36 #include <linux/refcount.h>
37 #include <linux/mlx5/fs.h>
38 #include <linux/rhashtable.h>
39 #include <linux/llist.h>
40 #include <steering/sws/fs_dr.h>
41 #include <steering/hws/fs_hws.h>
42 
43 #define FDB_TC_MAX_CHAIN 3
44 #define FDB_FT_CHAIN (FDB_TC_MAX_CHAIN + 1)
45 #define FDB_TC_SLOW_PATH_CHAIN (FDB_FT_CHAIN + 1)
46 
47 /* The index of the last real chain (FT) + 1 as chain zero is valid as well */
48 #define FDB_NUM_CHAINS (FDB_FT_CHAIN + 1)
49 
50 #define FDB_TC_MAX_PRIO 16
51 #define FDB_TC_LEVELS_PER_PRIO 2
52 
53 struct mlx5_flow_definer {
54 	enum mlx5_flow_namespace_type ns_type;
55 	u32 id;
56 };
57 
58 enum mlx5_flow_resource_owner {
59 	MLX5_FLOW_RESOURCE_OWNER_FW,
60 	MLX5_FLOW_RESOURCE_OWNER_SW,
61 	MLX5_FLOW_RESOURCE_OWNER_HWS,
62 };
63 
64 struct mlx5_modify_hdr {
65 	enum mlx5_flow_namespace_type ns_type;
66 	enum mlx5_flow_resource_owner owner;
67 	union {
68 		struct mlx5_fs_dr_action fs_dr_action;
69 		struct mlx5_fs_hws_action fs_hws_action;
70 		u32 id;
71 	};
72 };
73 
74 struct mlx5_pkt_reformat {
75 	enum mlx5_flow_namespace_type ns_type;
76 	int reformat_type; /* from mlx5_ifc */
77 	enum mlx5_flow_resource_owner owner;
78 	union {
79 		struct mlx5_fs_dr_action fs_dr_action;
80 		struct mlx5_fs_hws_action fs_hws_action;
81 		u32 id;
82 	};
83 };
84 
85 /* FS_TYPE_PRIO_CHAINS is a PRIO that will have namespaces only,
86  * and those are in parallel to one another when going over them to connect
87  * a new flow table. Meaning the last flow table in a TYPE_PRIO prio in one
88  * parallel namespace will not automatically connect to the first flow table
89  * found in any prio in any next namespace, but skip the entire containing
90  * TYPE_PRIO_CHAINS prio.
91  *
92  * This is used to implement tc chains, each chain of prios is a different
93  * namespace inside a containing TYPE_PRIO_CHAINS prio.
94  */
95 
96 enum fs_node_type {
97 	FS_TYPE_NAMESPACE,
98 	FS_TYPE_PRIO,
99 	FS_TYPE_PRIO_CHAINS,
100 	FS_TYPE_FLOW_TABLE,
101 	FS_TYPE_FLOW_GROUP,
102 	FS_TYPE_FLOW_ENTRY,
103 	FS_TYPE_FLOW_DEST
104 };
105 
106 enum fs_flow_table_type {
107 	FS_FT_NIC_RX          = 0x0,
108 	FS_FT_NIC_TX          = 0x1,
109 	FS_FT_ESW_EGRESS_ACL  = 0x2,
110 	FS_FT_ESW_INGRESS_ACL = 0x3,
111 	FS_FT_FDB             = 0X4,
112 	FS_FT_SNIFFER_RX	= 0X5,
113 	FS_FT_SNIFFER_TX	= 0X6,
114 	FS_FT_RDMA_RX		= 0X7,
115 	FS_FT_RDMA_TX		= 0X8,
116 	FS_FT_PORT_SEL		= 0X9,
117 	FS_FT_FDB_RX		= 0xa,
118 	FS_FT_FDB_TX		= 0xb,
119 	FS_FT_RDMA_TRANSPORT_RX	= 0xd,
120 	FS_FT_RDMA_TRANSPORT_TX	= 0xe,
121 	FS_FT_MAX_TYPE = FS_FT_RDMA_TRANSPORT_TX,
122 };
123 
124 enum fs_flow_table_op_mod {
125 	FS_FT_OP_MOD_NORMAL,
126 	FS_FT_OP_MOD_LAG_DEMUX,
127 };
128 
129 enum fs_fte_status {
130 	FS_FTE_STATUS_EXISTING = 1UL << 0,
131 };
132 
133 enum mlx5_flow_steering_mode {
134 	MLX5_FLOW_STEERING_MODE_DMFS,
135 	MLX5_FLOW_STEERING_MODE_SMFS,
136 	MLX5_FLOW_STEERING_MODE_HMFS,
137 };
138 
139 enum mlx5_flow_steering_capabilty {
140 	MLX5_FLOW_STEERING_CAP_VLAN_PUSH_ON_RX = 1UL << 0,
141 	MLX5_FLOW_STEERING_CAP_VLAN_POP_ON_TX = 1UL << 1,
142 	MLX5_FLOW_STEERING_CAP_MATCH_RANGES = 1UL << 2,
143 	MLX5_FLOW_STEERING_CAP_DUPLICATE_MATCH = 1UL << 3,
144 };
145 
146 struct mlx5_flow_steering {
147 	struct mlx5_core_dev *dev;
148 	enum   mlx5_flow_steering_mode	mode;
149 	struct kmem_cache		*fgs_cache;
150 	struct kmem_cache               *ftes_cache;
151 	struct mlx5_flow_root_namespace *root_ns;
152 	struct mlx5_flow_root_namespace *fdb_root_ns;
153 	struct mlx5_flow_namespace	**fdb_sub_ns;
154 	struct mlx5_flow_root_namespace **esw_egress_root_ns;
155 	struct mlx5_flow_root_namespace **esw_ingress_root_ns;
156 	struct mlx5_flow_root_namespace	*sniffer_tx_root_ns;
157 	struct mlx5_flow_root_namespace	*sniffer_rx_root_ns;
158 	struct mlx5_flow_root_namespace	*rdma_rx_root_ns;
159 	struct mlx5_flow_root_namespace	*rdma_tx_root_ns;
160 	struct mlx5_flow_root_namespace	*egress_root_ns;
161 	struct mlx5_flow_root_namespace	*port_sel_root_ns;
162 	int esw_egress_acl_vports;
163 	int esw_ingress_acl_vports;
164 	struct mlx5_flow_root_namespace **rdma_transport_rx_root_ns;
165 	struct mlx5_flow_root_namespace **rdma_transport_tx_root_ns;
166 	int rdma_transport_rx_vports;
167 	int rdma_transport_tx_vports;
168 };
169 
170 struct fs_node {
171 	struct list_head	list;
172 	struct list_head	children;
173 	enum fs_node_type	type;
174 	struct fs_node		*parent;
175 	struct fs_node		*root;
176 	/* lock the node for writing and traversing */
177 	struct rw_semaphore	lock;
178 	refcount_t		refcount;
179 	bool			active;
180 	void			(*del_hw_func)(struct fs_node *);
181 	void			(*del_sw_func)(struct fs_node *);
182 	atomic_t		version;
183 };
184 
185 struct mlx5_flow_rule {
186 	struct fs_node				node;
187 	struct mlx5_flow_table			*ft;
188 	struct mlx5_flow_destination		dest_attr;
189 	/* next_ft should be accessed under chain_lock and only of
190 	 * destination type is FWD_NEXT_fT.
191 	 */
192 	struct list_head			next_ft;
193 	u32					sw_action;
194 };
195 
196 struct mlx5_flow_handle {
197 	int num_rules;
198 	struct mlx5_flow_rule *rule[] __counted_by(num_rules);
199 };
200 
201 /* Type of children is mlx5_flow_group */
202 struct mlx5_flow_table {
203 	struct fs_node			node;
204 	union {
205 		struct mlx5_fs_dr_table		fs_dr_table;
206 		struct mlx5_fs_hws_table	fs_hws_table;
207 	};
208 	u32				id;
209 	u16				vport;
210 	unsigned int			max_fte;
211 	unsigned int			level;
212 	enum fs_flow_table_type		type;
213 	enum fs_flow_table_op_mod	op_mod;
214 	struct {
215 		bool			active;
216 		unsigned int		required_groups;
217 		unsigned int		group_size;
218 		unsigned int		num_groups;
219 		unsigned int		max_fte;
220 	} autogroup;
221 	/* Protect fwd_rules */
222 	struct mutex			lock;
223 	/* FWD rules that point on this flow table */
224 	struct list_head		fwd_rules;
225 	u32				flags;
226 	struct rhltable			fgs_hash;
227 	enum mlx5_flow_table_miss_action def_miss_action;
228 	struct mlx5_flow_namespace	*ns;
229 };
230 
231 struct mlx5_ft_underlay_qp {
232 	struct list_head list;
233 	u32 qpn;
234 };
235 
236 #define MLX5_FTE_MATCH_PARAM_RESERVED	reserved_at_e00
237 /* Calculate the fte_match_param length and without the reserved length.
238  * Make sure the reserved field is the last.
239  */
240 #define MLX5_ST_SZ_DW_MATCH_PARAM					    \
241 	((MLX5_BYTE_OFF(fte_match_param, MLX5_FTE_MATCH_PARAM_RESERVED) / sizeof(u32)) + \
242 	 BUILD_BUG_ON_ZERO(MLX5_ST_SZ_BYTES(fte_match_param) !=		     \
243 			   MLX5_FLD_SZ_BYTES(fte_match_param,		     \
244 					     MLX5_FTE_MATCH_PARAM_RESERVED) +\
245 			   MLX5_BYTE_OFF(fte_match_param,		     \
246 					 MLX5_FTE_MATCH_PARAM_RESERVED)))
247 
248 struct fs_fte_action {
249 	int				modify_mask;
250 	u32				dests_size;
251 	u32				fwd_dests;
252 	struct mlx5_flow_context	flow_context;
253 	struct mlx5_flow_act		action;
254 };
255 
256 struct fs_fte_dup {
257 	struct list_head children;
258 	struct fs_fte_action act_dests;
259 };
260 
261 /* Type of children is mlx5_flow_rule */
262 struct fs_fte {
263 	struct fs_node			node;
264 	union {
265 		struct mlx5_fs_dr_rule		fs_dr_rule;
266 		struct mlx5_fs_hws_rule		fs_hws_rule;
267 	};
268 	u32				val[MLX5_ST_SZ_DW_MATCH_PARAM];
269 	struct fs_fte_action		act_dests;
270 	struct fs_fte_dup		*dup;
271 	u32				index;
272 	enum fs_fte_status		status;
273 	struct rhash_head		hash;
274 };
275 
276 /* Type of children is mlx5_flow_table/namespace */
277 struct fs_prio {
278 	struct fs_node			node;
279 	unsigned int			num_levels;
280 	unsigned int			start_level;
281 	unsigned int			prio;
282 	unsigned int			num_ft;
283 };
284 
285 /* Type of children is fs_prio */
286 struct mlx5_flow_namespace {
287 	/* parent == NULL => root ns */
288 	struct	fs_node			node;
289 	enum mlx5_flow_table_miss_action def_miss_action;
290 };
291 
292 struct mlx5_flow_group_mask {
293 	u8	match_criteria_enable;
294 	u32	match_criteria[MLX5_ST_SZ_DW_MATCH_PARAM];
295 };
296 
297 /* Type of children is fs_fte */
298 struct mlx5_flow_group {
299 	struct fs_node			node;
300 	union {
301 		struct mlx5_fs_dr_matcher	fs_dr_matcher;
302 		struct mlx5_fs_hws_matcher	fs_hws_matcher;
303 	};
304 	struct mlx5_flow_group_mask	mask;
305 	u32				start_index;
306 	u32				max_ftes;
307 	struct ida			fte_allocator;
308 	u32				id;
309 	struct rhashtable		ftes_hash;
310 	struct rhlist_head		hash;
311 };
312 
313 struct mlx5_flow_root_namespace {
314 	struct mlx5_flow_namespace	ns;
315 	enum   mlx5_flow_steering_mode	mode;
316 	union {
317 		struct mlx5_fs_dr_domain	fs_dr_domain;
318 		struct mlx5_fs_hws_context	fs_hws_context;
319 	};
320 	enum   fs_flow_table_type	table_type;
321 	struct mlx5_core_dev		*dev;
322 	struct mlx5_flow_table		*root_ft;
323 	/* Should be held when chaining flow tables */
324 	struct mutex			chain_lock;
325 	struct list_head		underlay_qpns;
326 	const struct mlx5_flow_cmds	*cmds;
327 };
328 
329 enum mlx5_fc_type {
330 	MLX5_FC_TYPE_ACQUIRED = 0,
331 	MLX5_FC_TYPE_LOCAL,
332 };
333 
334 struct mlx5_fc_cache {
335 	u64 packets;
336 	u64 bytes;
337 	u64 lastuse;
338 };
339 
340 struct mlx5_fc {
341 	u32 id;
342 	bool aging;
343 	enum mlx5_fc_type type;
344 	struct mlx5_fc_bulk *bulk;
345 	struct mlx5_fc_cache cache;
346 	/* last{packets,bytes} are used for calculating deltas since last reading. */
347 	u64 lastpackets;
348 	u64 lastbytes;
349 };
350 
351 struct mlx5_fc_bulk {
352 	struct mlx5_fs_bulk fs_bulk;
353 	u32 base_id;
354 	struct mlx5_fs_hws_data hws_data;
355 	struct mlx5_fc fcs[];
356 };
357 
358 u32 mlx5_fc_get_base_id(struct mlx5_fc *counter);
359 int mlx5_init_fc_stats(struct mlx5_core_dev *dev);
360 void mlx5_cleanup_fc_stats(struct mlx5_core_dev *dev);
361 void mlx5_fc_queue_stats_work(struct mlx5_core_dev *dev,
362 			      struct delayed_work *dwork,
363 			      unsigned long delay);
364 void mlx5_fc_update_sampling_interval(struct mlx5_core_dev *dev,
365 				      unsigned long interval);
366 
367 const struct mlx5_flow_cmds *mlx5_fs_cmd_get_fw_cmds(void);
368 
369 int mlx5_flow_namespace_set_peer(struct mlx5_flow_root_namespace *ns,
370 				 struct mlx5_flow_root_namespace *peer_ns,
371 				 u16 peer_vhca_id);
372 
373 int mlx5_flow_namespace_set_mode(struct mlx5_flow_namespace *ns,
374 				 enum mlx5_flow_steering_mode mode);
375 
376 int mlx5_fs_core_alloc(struct mlx5_core_dev *dev);
377 void mlx5_fs_core_free(struct mlx5_core_dev *dev);
378 int mlx5_fs_core_init(struct mlx5_core_dev *dev);
379 void mlx5_fs_core_cleanup(struct mlx5_core_dev *dev);
380 
381 int mlx5_fs_egress_acls_init(struct mlx5_core_dev *dev, int total_vports);
382 void mlx5_fs_egress_acls_cleanup(struct mlx5_core_dev *dev);
383 int mlx5_fs_ingress_acls_init(struct mlx5_core_dev *dev, int total_vports);
384 void mlx5_fs_ingress_acls_cleanup(struct mlx5_core_dev *dev);
385 
386 u32 mlx5_fs_get_capabilities(struct mlx5_core_dev *dev, enum mlx5_flow_namespace_type type);
387 
388 struct mlx5_flow_root_namespace *find_root(struct fs_node *node);
389 
390 int mlx5_fs_get_packet_reformat_id(struct mlx5_pkt_reformat *pkt_reformat,
391 				   u32 *id);
392 
393 #define fs_get_obj(v, _node)  {v = container_of((_node), typeof(*v), node); }
394 
395 #define fs_list_for_each_entry(pos, root)		\
396 	list_for_each_entry(pos, root, node.list)
397 
398 #define fs_list_for_each_entry_safe(pos, tmp, root)		\
399 	list_for_each_entry_safe(pos, tmp, root, node.list)
400 
401 #define fs_for_each_ns_or_ft_reverse(pos, prio)				\
402 	list_for_each_entry_reverse(pos, &(prio)->node.children, list)
403 
404 #define fs_for_each_ns_or_ft(pos, prio)					\
405 	list_for_each_entry(pos, (&(prio)->node.children), list)
406 
407 #define fs_for_each_prio(pos, ns)			\
408 	fs_list_for_each_entry(pos, &(ns)->node.children)
409 
410 #define fs_for_each_ns(pos, prio)			\
411 	fs_list_for_each_entry(pos, &(prio)->node.children)
412 
413 #define fs_for_each_ft(pos, prio)			\
414 	fs_list_for_each_entry(pos, &(prio)->node.children)
415 
416 #define fs_for_each_ft_safe(pos, tmp, prio)			\
417 	fs_list_for_each_entry_safe(pos, tmp, &(prio)->node.children)
418 
419 #define fs_for_each_fg(pos, ft)			\
420 	fs_list_for_each_entry(pos, &(ft)->node.children)
421 
422 #define fs_for_each_fte(pos, fg)			\
423 	fs_list_for_each_entry(pos, &(fg)->node.children)
424 
425 #define fs_for_each_dst(pos, fte)			\
426 	fs_list_for_each_entry(pos, &(fte)->node.children)
427 
428 #define MLX5_CAP_FLOWTABLE_TYPE(mdev, cap, type) (		\
429 	(type == FS_FT_NIC_RX) ? MLX5_CAP_FLOWTABLE_NIC_RX(mdev, cap) :		\
430 	(type == FS_FT_NIC_TX) ? MLX5_CAP_FLOWTABLE_NIC_TX(mdev, cap) :		\
431 	(type == FS_FT_ESW_EGRESS_ACL) ? MLX5_CAP_ESW_EGRESS_ACL(mdev, cap) :		\
432 	(type == FS_FT_ESW_INGRESS_ACL) ? MLX5_CAP_ESW_INGRESS_ACL(mdev, cap) :		\
433 	(type == FS_FT_FDB) ? MLX5_CAP_ESW_FLOWTABLE_FDB(mdev, cap) :		\
434 	(type == FS_FT_SNIFFER_RX) ? MLX5_CAP_FLOWTABLE_SNIFFER_RX(mdev, cap) :		\
435 	(type == FS_FT_SNIFFER_TX) ? MLX5_CAP_FLOWTABLE_SNIFFER_TX(mdev, cap) :		\
436 	(type == FS_FT_RDMA_RX) ? MLX5_CAP_FLOWTABLE_RDMA_RX(mdev, cap) :		\
437 	(type == FS_FT_RDMA_TX) ? MLX5_CAP_FLOWTABLE_RDMA_TX(mdev, cap) :      \
438 	(type == FS_FT_PORT_SEL) ? MLX5_CAP_FLOWTABLE_PORT_SELECTION(mdev, cap) :      \
439 	(type == FS_FT_FDB_RX) ? MLX5_CAP_ESW_FLOWTABLE_FDB(mdev, cap) :      \
440 	(type == FS_FT_FDB_TX) ? MLX5_CAP_ESW_FLOWTABLE_FDB(mdev, cap) :      \
441 	(type == FS_FT_RDMA_TRANSPORT_RX) ? MLX5_CAP_FLOWTABLE_RDMA_TRANSPORT_RX(mdev, cap) :      \
442 	(type == FS_FT_RDMA_TRANSPORT_TX) ? MLX5_CAP_FLOWTABLE_RDMA_TRANSPORT_TX(mdev, cap) :      \
443 	(BUILD_BUG_ON_ZERO(FS_FT_RDMA_TRANSPORT_TX != FS_FT_MAX_TYPE))\
444 	)
445 
446 #endif
447