xref: /freebsd/sys/dev/cxgb/cxgb_offload.h (revision 7aff6d8ed3abaade70dbae63504df473d568ce81)
1 
2 /**************************************************************************
3 
4 Copyright (c) 2007, Chelsio Inc.
5 All rights reserved.
6 
7 Redistribution and use in source and binary forms, with or without
8 modification, are permitted provided that the following conditions are met:
9 
10  1. Redistributions of source code must retain the above copyright notice,
11     this list of conditions and the following disclaimer.
12 
13  2. Neither the name of the Chelsio Corporation nor the names of its
14     contributors may be used to endorse or promote products derived from
15     this software without specific prior written permission.
16 
17 THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
18 AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
19 IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
20 ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
21 LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
22 CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
23 SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
24 INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
25 CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
26 ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
27 POSSIBILITY OF SUCH DAMAGE.
28 
29 $FreeBSD$
30 
31 ***************************************************************************/
32 
33 #ifndef _CXGB_OFFLOAD_H
34 #define _CXGB_OFFLOAD_H
35 
36 
37 #include <dev/cxgb/common/cxgb_tcb.h>
38 #include <dev/cxgb/cxgb_l2t.h>
39 
40 #include <dev/cxgb/ulp/toecore/toedev.h>
41 #include <dev/cxgb/common/cxgb_t3_cpl.h>
42 
43 struct adapter;
44 struct cxgb_client;
45 
46 void cxgb_offload_init(void);
47 void cxgb_offload_exit(void);
48 
49 void cxgb_adapter_ofld(struct adapter *adapter);
50 void cxgb_adapter_unofld(struct adapter *adapter);
51 int cxgb_offload_activate(struct adapter *adapter);
52 void cxgb_offload_deactivate(struct adapter *adapter);
53 int cxgb_ofld_recv(struct toedev *dev, struct mbuf **m, int n);
54 
55 void cxgb_set_dummy_ops(struct toedev *dev);
56 
57 
58 /*
59  * Client registration.  Users of T3 driver must register themselves.
60  * The T3 driver will call the add function of every client for each T3
61  * adapter activated, passing up the toedev ptr.  Each client fills out an
62  * array of callback functions to process CPL messages.
63  */
64 
65 void cxgb_register_client(struct cxgb_client *client);
66 void cxgb_unregister_client(struct cxgb_client *client);
67 void cxgb_add_clients(struct toedev *tdev);
68 void cxgb_remove_clients(struct toedev *tdev);
69 
70 typedef int (*cxgb_cpl_handler_func)(struct toedev *dev,
71 				      struct mbuf *m, void *ctx);
72 
73 struct cxgb_client {
74 	char 			*name;
75 	void 			(*add) (struct toedev *);
76 	void 			(*remove) (struct toedev *);
77 	cxgb_cpl_handler_func 	*handlers;
78 	int			(*redirect)(void *ctx, struct rtentry *old,
79 					    struct rtentry *new,
80 					    struct l2t_entry *l2t);
81 	TAILQ_ENTRY(cxgb_client)         client_entry;
82 };
83 
84 /*
85  * TID allocation services.
86  */
87 int cxgb_alloc_atid(struct toedev *dev, struct cxgb_client *client,
88 		     void *ctx);
89 int cxgb_alloc_stid(struct toedev *dev, struct cxgb_client *client,
90 		     void *ctx);
91 void *cxgb_free_atid(struct toedev *dev, int atid);
92 void cxgb_free_stid(struct toedev *dev, int stid);
93 void cxgb_insert_tid(struct toedev *dev, struct cxgb_client *client,
94 		      void *ctx,
95 	unsigned int tid);
96 void cxgb_queue_tid_release(struct toedev *dev, unsigned int tid);
97 void cxgb_remove_tid(struct toedev *dev, void *ctx, unsigned int tid);
98 
99 struct toe_tid_entry {
100 	struct cxgb_client 	*client;
101 	void 			*ctx;
102 };
103 
104 /* CPL message priority levels */
105 enum {
106 	CPL_PRIORITY_DATA = 0,     /* data messages */
107 	CPL_PRIORITY_SETUP = 1,	   /* connection setup messages */
108 	CPL_PRIORITY_TEARDOWN = 0, /* connection teardown messages */
109 	CPL_PRIORITY_LISTEN = 1,   /* listen start/stop messages */
110 	CPL_PRIORITY_ACK = 1,      /* RX ACK messages */
111 	CPL_PRIORITY_CONTROL = 1   /* offload control messages */
112 };
113 
114 /* Flags for return value of CPL message handlers */
115 enum {
116 	CPL_RET_BUF_DONE = 1,   // buffer processing done, buffer may be freed
117 	CPL_RET_BAD_MSG = 2,    // bad CPL message (e.g., unknown opcode)
118 	CPL_RET_UNKNOWN_TID = 4	// unexpected unknown TID
119 };
120 
121 typedef int (*cpl_handler_func)(struct toedev *dev, struct mbuf *m);
122 
123 /*
124  * Returns a pointer to the first byte of the CPL header in an sk_buff that
125  * contains a CPL message.
126  */
127 static inline void *cplhdr(struct mbuf *m)
128 {
129 	return mtod(m, uint8_t *);
130 }
131 
132 void t3_register_cpl_handler(unsigned int opcode, cpl_handler_func h);
133 
134 union listen_entry {
135 	struct toe_tid_entry toe_tid;
136 	union listen_entry *next;
137 };
138 
139 union active_open_entry {
140 	struct toe_tid_entry toe_tid;
141 	union active_open_entry *next;
142 };
143 
144 /*
145  * Holds the size, base address, free list start, etc of the TID, server TID,
146  * and active-open TID tables for a offload device.
147  * The tables themselves are allocated dynamically.
148  */
149 struct tid_info {
150 	struct toe_tid_entry *tid_tab;
151 	unsigned int ntids;
152 	volatile unsigned int tids_in_use;
153 
154 	union listen_entry *stid_tab;
155 	unsigned int nstids;
156 	unsigned int stid_base;
157 
158 	union active_open_entry *atid_tab;
159 	unsigned int natids;
160 	unsigned int atid_base;
161 
162 	/*
163 	 * The following members are accessed R/W so we put them in their own
164 	 * cache lines.
165 	 *
166 	 * XXX We could combine the atid fields above with the lock here since
167 	 * atids are use once (unlike other tids).  OTOH the above fields are
168 	 * usually in cache due to tid_tab.
169 	 */
170 	struct mtx atid_lock /* ____cacheline_aligned_in_smp */;
171 	union active_open_entry *afree;
172 	unsigned int atids_in_use;
173 
174 	struct mtx stid_lock /*____cacheline_aligned */;
175 	union listen_entry *sfree;
176 	unsigned int stids_in_use;
177 };
178 
179 struct toe_data {
180 #ifdef notyet
181 	struct list_head list_node;
182 #endif
183 	struct toedev *dev;
184 	unsigned int tx_max_chunk;  /* max payload for TX_DATA */
185 	unsigned int max_wrs;       /* max in-flight WRs per connection */
186 	unsigned int nmtus;
187 	const unsigned short *mtus;
188 	struct tid_info tid_maps;
189 
190 	struct toe_tid_entry *tid_release_list;
191 	struct mtx tid_release_lock;
192 	struct task tid_release_task;
193 };
194 
195 /*
196  * toedev -> toe_data accessor
197  */
198 #define TOE_DATA(dev) (*(struct toe_data **)&(dev)->l4opt)
199 
200 /*
201  * Map an ATID or STID to their entries in the corresponding TID tables.
202  */
203 static inline union active_open_entry *atid2entry(const struct tid_info *t,
204                                                   unsigned int atid)
205 {
206         return &t->atid_tab[atid - t->atid_base];
207 }
208 
209 
210 static inline union listen_entry *stid2entry(const struct tid_info *t,
211                                              unsigned int stid)
212 {
213         return &t->stid_tab[stid - t->stid_base];
214 }
215 
216 /*
217  * Find the connection corresponding to a TID.
218  */
219 static inline struct toe_tid_entry *lookup_tid(const struct tid_info *t,
220                                                unsigned int tid)
221 {
222         return tid < t->ntids ? &(t->tid_tab[tid]) : NULL;
223 }
224 
225 /*
226  * Find the connection corresponding to a server TID.
227  */
228 static inline struct toe_tid_entry *lookup_stid(const struct tid_info *t,
229                                                 unsigned int tid)
230 {
231         if (tid < t->stid_base || tid >= t->stid_base + t->nstids)
232                 return NULL;
233         return &(stid2entry(t, tid)->toe_tid);
234 }
235 
236 /*
237  * Find the connection corresponding to an active-open TID.
238  */
239 static inline struct toe_tid_entry *lookup_atid(const struct tid_info *t,
240                                                 unsigned int tid)
241 {
242         if (tid < t->atid_base || tid >= t->atid_base + t->natids)
243                 return NULL;
244         return &(atid2entry(t, tid)->toe_tid);
245 }
246 
247 void *cxgb_alloc_mem(unsigned long size);
248 void cxgb_free_mem(void *addr);
249 void cxgb_neigh_update(struct rtentry *rt);
250 void cxgb_redirect(struct rtentry *old, struct rtentry *new);
251 int process_rx(struct toedev *dev, struct mbuf **m, int n);
252 int attach_toedev(struct toedev *dev);
253 void detach_toedev(struct toedev *dev);
254 
255 
256 #endif
257