890a04d0e62acc796eabf0114d6e6f3387b5cc22
[dpdk.git] / drivers / net / sfc / sfc.h
1 /* SPDX-License-Identifier: BSD-3-Clause
2  *
3  * Copyright (c) 2016-2018 Solarflare Communications Inc.
4  * All rights reserved.
5  *
6  * This software was jointly developed between OKTET Labs (under contract
7  * for Solarflare) and Solarflare Communications, Inc.
8  */
9
10 #ifndef _SFC_H
11 #define _SFC_H
12
13 #include <stdbool.h>
14
15 #include <rte_pci.h>
16 #include <rte_bus_pci.h>
17 #include <rte_ethdev_driver.h>
18 #include <rte_kvargs.h>
19 #include <rte_spinlock.h>
20 #include <rte_atomic.h>
21
22 #include "efx.h"
23
24 #include "sfc_filter.h"
25
26 #ifdef __cplusplus
27 extern "C" {
28 #endif
29
30 /*
31  * +---------------+
32  * | UNINITIALIZED |<-----------+
33  * +---------------+            |
34  *      |.eth_dev_init          |.eth_dev_uninit
35  *      V                       |
36  * +---------------+------------+
37  * |  INITIALIZED  |
38  * +---------------+<-----------<---------------+
39  *      |.dev_configure         |               |
40  *      V                       |failed         |
41  * +---------------+------------+               |
42  * |  CONFIGURING  |                            |
43  * +---------------+----+                       |
44  *      |success        |                       |
45  *      |               |               +---------------+
46  *      |               |               |    CLOSING    |
47  *      |               |               +---------------+
48  *      |               |                       ^
49  *      V               |.dev_configure         |
50  * +---------------+----+                       |.dev_close
51  * |  CONFIGURED   |----------------------------+
52  * +---------------+<-----------+
53  *      |.dev_start             |
54  *      V                       |
55  * +---------------+            |
56  * |   STARTING    |------------^
57  * +---------------+ failed     |
58  *      |success                |
59  *      |               +---------------+
60  *      |               |   STOPPING    |
61  *      |               +---------------+
62  *      |                       ^
63  *      V                       |.dev_stop
64  * +---------------+------------+
65  * |    STARTED    |
66  * +---------------+
67  */
68 enum sfc_adapter_state {
69         SFC_ADAPTER_UNINITIALIZED = 0,
70         SFC_ADAPTER_INITIALIZED,
71         SFC_ADAPTER_CONFIGURING,
72         SFC_ADAPTER_CONFIGURED,
73         SFC_ADAPTER_CLOSING,
74         SFC_ADAPTER_STARTING,
75         SFC_ADAPTER_STARTED,
76         SFC_ADAPTER_STOPPING,
77
78         SFC_ADAPTER_NSTATES
79 };
80
81 enum sfc_dev_filter_mode {
82         SFC_DEV_FILTER_MODE_PROMISC = 0,
83         SFC_DEV_FILTER_MODE_ALLMULTI,
84
85         SFC_DEV_FILTER_NMODES
86 };
87
88 enum sfc_mcdi_state {
89         SFC_MCDI_UNINITIALIZED = 0,
90         SFC_MCDI_INITIALIZED,
91         SFC_MCDI_BUSY,
92         SFC_MCDI_COMPLETED,
93
94         SFC_MCDI_NSTATES
95 };
96
97 struct sfc_mcdi {
98         rte_spinlock_t                  lock;
99         efsys_mem_t                     mem;
100         enum sfc_mcdi_state             state;
101         efx_mcdi_transport_t            transport;
102         uint32_t                        logtype;
103         uint32_t                        proxy_handle;
104         efx_rc_t                        proxy_result;
105 };
106
107 struct sfc_intr {
108         efx_intr_type_t                 type;
109         rte_intr_callback_fn            handler;
110         boolean_t                       lsc_intr;
111 };
112
113 struct sfc_rxq;
114 struct sfc_txq;
115
116 struct sfc_rxq_info;
117 struct sfc_txq_info;
118 struct sfc_dp_rx;
119
120 struct sfc_port {
121         unsigned int                    lsc_seq;
122
123         uint32_t                        phy_adv_cap_mask;
124         uint32_t                        phy_adv_cap;
125
126         unsigned int                    flow_ctrl;
127         boolean_t                       flow_ctrl_autoneg;
128         size_t                          pdu;
129
130         /*
131          * Flow API isolated mode overrides promisc and allmulti settings;
132          * they won't be applied if isolated mode is active
133          */
134         boolean_t                       isolated;
135         boolean_t                       promisc;
136         boolean_t                       allmulti;
137
138         struct ether_addr               default_mac_addr;
139
140         unsigned int                    max_mcast_addrs;
141         unsigned int                    nb_mcast_addrs;
142         uint8_t                         *mcast_addrs;
143
144         rte_spinlock_t                  mac_stats_lock;
145         uint64_t                        *mac_stats_buf;
146         unsigned int                    mac_stats_nb_supported;
147         efsys_mem_t                     mac_stats_dma_mem;
148         boolean_t                       mac_stats_reset_pending;
149         uint16_t                        mac_stats_update_period_ms;
150         uint32_t                        mac_stats_update_generation;
151         boolean_t                       mac_stats_periodic_dma_supported;
152         uint64_t                        mac_stats_last_request_timestamp;
153
154         uint32_t                mac_stats_mask[EFX_MAC_STATS_MASK_NPAGES];
155
156         uint64_t                        ipackets;
157 };
158
159 struct sfc_rss_hf_rte_to_efx {
160         uint64_t                        rte;
161         efx_rx_hash_type_t              efx;
162 };
163
164 struct sfc_rss {
165         unsigned int                    channels;
166         efx_rx_scale_context_type_t     context_type;
167         efx_rx_hash_support_t           hash_support;
168         efx_rx_hash_alg_t               hash_alg;
169         unsigned int                    hf_map_nb_entries;
170         struct sfc_rss_hf_rte_to_efx    *hf_map;
171
172         efx_rx_hash_type_t              hash_types;
173         unsigned int                    tbl[EFX_RSS_TBL_SIZE];
174         uint8_t                         key[EFX_RSS_KEY_SIZE];
175 };
176
177 /* Adapter private data shared by primary and secondary processes */
178 struct sfc_adapter_shared {
179         struct rte_pci_addr             pci_addr;
180         uint16_t                        port_id;
181
182         char                            *dp_rx_name;
183         char                            *dp_tx_name;
184 };
185
186 /* Adapter process private data */
187 struct sfc_adapter_priv {
188         struct sfc_adapter_shared       *shared;
189         const struct sfc_dp_rx          *dp_rx;
190         const struct sfc_dp_tx          *dp_tx;
191         uint32_t                        logtype_main;
192 };
193
194 static inline struct sfc_adapter_priv *
195 sfc_adapter_priv_by_eth_dev(struct rte_eth_dev *eth_dev)
196 {
197         struct sfc_adapter_priv *sap = eth_dev->process_private;
198
199         SFC_ASSERT(sap != NULL);
200         return sap;
201 }
202
203 /* Adapter private data */
204 struct sfc_adapter {
205         /*
206          * It must be the first field of the sfc_adapter structure since
207          * sfc_adapter is the primary process private data (i.e.  process
208          * private data plus additional primary process specific data).
209          */
210         struct sfc_adapter_priv         priv;
211
212         /*
213          * Temporary placeholder for multi-process shared data for
214          * transition.
215          */
216         struct sfc_adapter_shared       _shared;
217
218         /*
219          * PMD setup and configuration is not thread safe. Since it is not
220          * performance sensitive, it is better to guarantee thread-safety
221          * and add device level lock. Adapter control operations which
222          * change its state should acquire the lock.
223          */
224         rte_spinlock_t                  lock;
225         enum sfc_adapter_state          state;
226         struct rte_eth_dev              *eth_dev;
227         struct rte_kvargs               *kvargs;
228         int                             socket_id;
229         efsys_bar_t                     mem_bar;
230         efx_family_t                    family;
231         efx_nic_t                       *nic;
232         rte_spinlock_t                  nic_lock;
233         rte_atomic32_t                  restart_required;
234
235         struct sfc_mcdi                 mcdi;
236         struct sfc_intr                 intr;
237         struct sfc_port                 port;
238         struct sfc_filter               filter;
239
240         unsigned int                    rxq_max;
241         unsigned int                    txq_max;
242
243         unsigned int                    txq_max_entries;
244
245         uint32_t                        evq_flags;
246         unsigned int                    evq_count;
247
248         unsigned int                    mgmt_evq_index;
249         /*
250          * The lock is used to serialise management event queue polling
251          * which can be done from different context. Also the lock
252          * guarantees that mgmt_evq_running is preserved while the lock
253          * is held. It is used to serialise polling and start/stop
254          * operations.
255          *
256          * Locks which may be held when the lock is acquired:
257          *  - adapter lock, when:
258          *    - device start/stop to change mgmt_evq_running
259          *    - any control operations in client side MCDI proxy handling to
260          *      poll management event queue waiting for proxy response
261          *  - MCDI lock, when:
262          *    - any control operations in client side MCDI proxy handling to
263          *      poll management event queue waiting for proxy response
264          *
265          * Locks which are acquired with the lock held:
266          *  - nic_lock, when:
267          *    - MC event processing on management event queue polling
268          *      (e.g. MC REBOOT or BADASSERT events)
269          */
270         rte_spinlock_t                  mgmt_evq_lock;
271         bool                            mgmt_evq_running;
272         struct sfc_evq                  *mgmt_evq;
273
274         unsigned int                    rxq_count;
275         struct sfc_rxq_info             *rxq_info;
276         struct sfc_rxq                  *rxq_ctrl;
277
278         unsigned int                    txq_count;
279         struct sfc_txq_info             *txq_info;
280         struct sfc_txq                  *txq_ctrl;
281
282         boolean_t                       tso;
283
284         uint32_t                        rxd_wait_timeout_ns;
285
286         struct sfc_rss                  rss;
287 };
288
289 static inline struct sfc_adapter_shared *
290 sfc_adapter_shared_by_eth_dev(struct rte_eth_dev *eth_dev)
291 {
292         struct sfc_adapter *sa = eth_dev->data->dev_private;
293
294         return sa->priv.shared;
295 }
296
297 /*
298  * Add wrapper functions to acquire/release lock to be able to remove or
299  * change the lock in one place.
300  */
301
302 static inline void
303 sfc_adapter_lock_init(struct sfc_adapter *sa)
304 {
305         rte_spinlock_init(&sa->lock);
306 }
307
308 static inline int
309 sfc_adapter_is_locked(struct sfc_adapter *sa)
310 {
311         return rte_spinlock_is_locked(&sa->lock);
312 }
313
314 static inline void
315 sfc_adapter_lock(struct sfc_adapter *sa)
316 {
317         rte_spinlock_lock(&sa->lock);
318 }
319
320 static inline int
321 sfc_adapter_trylock(struct sfc_adapter *sa)
322 {
323         return rte_spinlock_trylock(&sa->lock);
324 }
325
326 static inline void
327 sfc_adapter_unlock(struct sfc_adapter *sa)
328 {
329         rte_spinlock_unlock(&sa->lock);
330 }
331
332 static inline void
333 sfc_adapter_lock_fini(__rte_unused struct sfc_adapter *sa)
334 {
335         /* Just for symmetry of the API */
336 }
337
338 /** Get the number of milliseconds since boot from the default timer */
339 static inline uint64_t
340 sfc_get_system_msecs(void)
341 {
342         return rte_get_timer_cycles() * MS_PER_S / rte_get_timer_hz();
343 }
344
345 int sfc_dma_alloc(const struct sfc_adapter *sa, const char *name, uint16_t id,
346                   size_t len, int socket_id, efsys_mem_t *esmp);
347 void sfc_dma_free(const struct sfc_adapter *sa, efsys_mem_t *esmp);
348
349 uint32_t sfc_register_logtype(const struct rte_pci_addr *pci_addr,
350                               const char *lt_prefix_str,
351                               uint32_t ll_default);
352
353 int sfc_probe(struct sfc_adapter *sa);
354 void sfc_unprobe(struct sfc_adapter *sa);
355 int sfc_attach(struct sfc_adapter *sa);
356 void sfc_detach(struct sfc_adapter *sa);
357 int sfc_start(struct sfc_adapter *sa);
358 void sfc_stop(struct sfc_adapter *sa);
359
360 void sfc_schedule_restart(struct sfc_adapter *sa);
361
362 int sfc_mcdi_init(struct sfc_adapter *sa);
363 void sfc_mcdi_fini(struct sfc_adapter *sa);
364
365 int sfc_configure(struct sfc_adapter *sa);
366 void sfc_close(struct sfc_adapter *sa);
367
368 int sfc_intr_attach(struct sfc_adapter *sa);
369 void sfc_intr_detach(struct sfc_adapter *sa);
370 int sfc_intr_configure(struct sfc_adapter *sa);
371 void sfc_intr_close(struct sfc_adapter *sa);
372 int sfc_intr_start(struct sfc_adapter *sa);
373 void sfc_intr_stop(struct sfc_adapter *sa);
374
375 int sfc_port_attach(struct sfc_adapter *sa);
376 void sfc_port_detach(struct sfc_adapter *sa);
377 int sfc_port_configure(struct sfc_adapter *sa);
378 void sfc_port_close(struct sfc_adapter *sa);
379 int sfc_port_start(struct sfc_adapter *sa);
380 void sfc_port_stop(struct sfc_adapter *sa);
381 void sfc_port_link_mode_to_info(efx_link_mode_t link_mode,
382                                 struct rte_eth_link *link_info);
383 int sfc_port_update_mac_stats(struct sfc_adapter *sa);
384 int sfc_port_reset_mac_stats(struct sfc_adapter *sa);
385 int sfc_set_rx_mode(struct sfc_adapter *sa);
386
387
388 #ifdef __cplusplus
389 }
390 #endif
391
392 #endif  /* _SFC_H */