1 /* SPDX-License-Identifier: GPL-2.0 */ 2 /* Copyright(c) 2013 - 2018 Intel Corporation. */ 3 4 #ifndef _IAVF_H_ 5 #define _IAVF_H_ 6 7 #include <linux/module.h> 8 #include <linux/pci.h> 9 #include <linux/aer.h> 10 #include <linux/netdevice.h> 11 #include <linux/vmalloc.h> 12 #include <linux/interrupt.h> 13 #include <linux/ethtool.h> 14 #include <linux/if_vlan.h> 15 #include <linux/ip.h> 16 #include <linux/tcp.h> 17 #include <linux/sctp.h> 18 #include <linux/ipv6.h> 19 #include <linux/kernel.h> 20 #include <linux/bitops.h> 21 #include <linux/timer.h> 22 #include <linux/workqueue.h> 23 #include <linux/wait.h> 24 #include <linux/delay.h> 25 #include <linux/gfp.h> 26 #include <linux/skbuff.h> 27 #include <linux/dma-mapping.h> 28 #include <linux/etherdevice.h> 29 #include <linux/socket.h> 30 #include <linux/jiffies.h> 31 #include <net/ip6_checksum.h> 32 #include <net/pkt_cls.h> 33 #include <net/pkt_sched.h> 34 #include <net/udp.h> 35 #include <net/tc_act/tc_gact.h> 36 #include <net/tc_act/tc_mirred.h> 37 38 #include "iavf_type.h" 39 #include <linux/avf/virtchnl.h> 40 #include "iavf_txrx.h" 41 #include "iavf_fdir.h" 42 #include "iavf_adv_rss.h" 43 #include <linux/bitmap.h> 44 45 #define DEFAULT_DEBUG_LEVEL_SHIFT 3 46 #define PFX "iavf: " 47 48 int iavf_status_to_errno(enum iavf_status status); 49 int virtchnl_status_to_errno(enum virtchnl_status_code v_status); 50 51 /* VSI state flags shared with common code */ 52 enum iavf_vsi_state_t { 53 __IAVF_VSI_DOWN, 54 /* This must be last as it determines the size of the BITMAP */ 55 __IAVF_VSI_STATE_SIZE__, 56 }; 57 58 /* dummy struct to make common code less painful */ 59 struct iavf_vsi { 60 struct iavf_adapter *back; 61 struct net_device *netdev; 62 u16 seid; 63 u16 id; 64 DECLARE_BITMAP(state, __IAVF_VSI_STATE_SIZE__); 65 int base_vector; 66 u16 qs_handle; 67 void *priv; /* client driver data reference. */ 68 }; 69 70 /* How many Rx Buffers do we bundle into one write to the hardware ? */ 71 #define IAVF_RX_BUFFER_WRITE 16 /* Must be power of 2 */ 72 #define IAVF_DEFAULT_TXD 512 73 #define IAVF_DEFAULT_RXD 512 74 #define IAVF_MAX_TXD 4096 75 #define IAVF_MIN_TXD 64 76 #define IAVF_MAX_RXD 4096 77 #define IAVF_MIN_RXD 64 78 #define IAVF_REQ_DESCRIPTOR_MULTIPLE 32 79 #define IAVF_MAX_AQ_BUF_SIZE 4096 80 #define IAVF_AQ_LEN 32 81 #define IAVF_AQ_MAX_ERR 20 /* times to try before resetting AQ */ 82 83 #define MAXIMUM_ETHERNET_VLAN_SIZE (VLAN_ETH_FRAME_LEN + ETH_FCS_LEN) 84 85 #define IAVF_RX_DESC(R, i) (&(((union iavf_32byte_rx_desc *)((R)->desc))[i])) 86 #define IAVF_TX_DESC(R, i) (&(((struct iavf_tx_desc *)((R)->desc))[i])) 87 #define IAVF_TX_CTXTDESC(R, i) \ 88 (&(((struct iavf_tx_context_desc *)((R)->desc))[i])) 89 #define IAVF_MAX_REQ_QUEUES 16 90 91 #define IAVF_HKEY_ARRAY_SIZE ((IAVF_VFQF_HKEY_MAX_INDEX + 1) * 4) 92 #define IAVF_HLUT_ARRAY_SIZE ((IAVF_VFQF_HLUT_MAX_INDEX + 1) * 4) 93 #define IAVF_MBPS_DIVISOR 125000 /* divisor to convert to Mbps */ 94 #define IAVF_MBPS_QUANTA 50 95 96 #define IAVF_VIRTCHNL_VF_RESOURCE_SIZE (sizeof(struct virtchnl_vf_resource) + \ 97 (IAVF_MAX_VF_VSI * \ 98 sizeof(struct virtchnl_vsi_resource))) 99 100 /* MAX_MSIX_Q_VECTORS of these are allocated, 101 * but we only use one per queue-specific vector. 102 */ 103 struct iavf_q_vector { 104 struct iavf_adapter *adapter; 105 struct iavf_vsi *vsi; 106 struct napi_struct napi; 107 struct iavf_ring_container rx; 108 struct iavf_ring_container tx; 109 u32 ring_mask; 110 u8 itr_countdown; /* when 0 should adjust adaptive ITR */ 111 u8 num_ringpairs; /* total number of ring pairs in vector */ 112 u16 v_idx; /* index in the vsi->q_vector array. */ 113 u16 reg_idx; /* register index of the interrupt */ 114 char name[IFNAMSIZ + 15]; 115 bool arm_wb_state; 116 cpumask_t affinity_mask; 117 struct irq_affinity_notify affinity_notify; 118 }; 119 120 /* Helper macros to switch between ints/sec and what the register uses. 121 * And yes, it's the same math going both ways. The lowest value 122 * supported by all of the iavf hardware is 8. 123 */ 124 #define EITR_INTS_PER_SEC_TO_REG(_eitr) \ 125 ((_eitr) ? (1000000000 / ((_eitr) * 256)) : 8) 126 #define EITR_REG_TO_INTS_PER_SEC EITR_INTS_PER_SEC_TO_REG 127 128 #define IAVF_DESC_UNUSED(R) \ 129 ((((R)->next_to_clean > (R)->next_to_use) ? 0 : (R)->count) + \ 130 (R)->next_to_clean - (R)->next_to_use - 1) 131 132 #define OTHER_VECTOR 1 133 #define NONQ_VECS (OTHER_VECTOR) 134 135 #define MIN_MSIX_Q_VECTORS 1 136 #define MIN_MSIX_COUNT (MIN_MSIX_Q_VECTORS + NONQ_VECS) 137 138 #define IAVF_QUEUE_END_OF_LIST 0x7FF 139 #define IAVF_FREE_VECTOR 0x7FFF 140 struct iavf_mac_filter { 141 struct list_head list; 142 u8 macaddr[ETH_ALEN]; 143 struct { 144 u8 is_new_mac:1; /* filter is new, wait for PF decision */ 145 u8 remove:1; /* filter needs to be removed */ 146 u8 add:1; /* filter needs to be added */ 147 u8 is_primary:1; /* filter is a default VF MAC */ 148 u8 add_handled:1; /* received response for filter add */ 149 u8 padding:3; 150 }; 151 }; 152 153 #define IAVF_VLAN(vid, tpid) ((struct iavf_vlan){ vid, tpid }) 154 struct iavf_vlan { 155 u16 vid; 156 u16 tpid; 157 }; 158 159 enum iavf_vlan_state_t { 160 IAVF_VLAN_INVALID, 161 IAVF_VLAN_ADD, /* filter needs to be added */ 162 IAVF_VLAN_IS_NEW, /* filter is new, wait for PF answer */ 163 IAVF_VLAN_ACTIVE, /* filter is accepted by PF */ 164 IAVF_VLAN_DISABLE, /* filter needs to be deleted by PF, then marked INACTIVE */ 165 IAVF_VLAN_INACTIVE, /* filter is inactive, we are in IFF_DOWN */ 166 IAVF_VLAN_REMOVE, /* filter needs to be removed from list */ 167 }; 168 169 struct iavf_vlan_filter { 170 struct list_head list; 171 struct iavf_vlan vlan; 172 enum iavf_vlan_state_t state; 173 }; 174 175 #define IAVF_MAX_TRAFFIC_CLASS 4 176 /* State of traffic class creation */ 177 enum iavf_tc_state_t { 178 __IAVF_TC_INVALID, /* no traffic class, default state */ 179 __IAVF_TC_RUNNING, /* traffic classes have been created */ 180 }; 181 182 /* channel info */ 183 struct iavf_channel_config { 184 struct virtchnl_channel_info ch_info[IAVF_MAX_TRAFFIC_CLASS]; 185 enum iavf_tc_state_t state; 186 u8 total_qps; 187 }; 188 189 /* State of cloud filter */ 190 enum iavf_cloud_filter_state_t { 191 __IAVF_CF_INVALID, /* cloud filter not added */ 192 __IAVF_CF_ADD_PENDING, /* cloud filter pending add by the PF */ 193 __IAVF_CF_DEL_PENDING, /* cloud filter pending del by the PF */ 194 __IAVF_CF_ACTIVE, /* cloud filter is active */ 195 }; 196 197 /* Driver state. The order of these is important! */ 198 enum iavf_state_t { 199 __IAVF_STARTUP, /* driver loaded, probe complete */ 200 __IAVF_REMOVE, /* driver is being unloaded */ 201 __IAVF_INIT_VERSION_CHECK, /* aq msg sent, awaiting reply */ 202 __IAVF_INIT_GET_RESOURCES, /* aq msg sent, awaiting reply */ 203 __IAVF_INIT_EXTENDED_CAPS, /* process extended caps which require aq msg exchange */ 204 __IAVF_INIT_CONFIG_ADAPTER, 205 __IAVF_INIT_SW, /* got resources, setting up structs */ 206 __IAVF_INIT_FAILED, /* init failed, restarting procedure */ 207 __IAVF_RESETTING, /* in reset */ 208 __IAVF_COMM_FAILED, /* communication with PF failed */ 209 /* Below here, watchdog is running */ 210 __IAVF_DOWN, /* ready, can be opened */ 211 __IAVF_DOWN_PENDING, /* descending, waiting for watchdog */ 212 __IAVF_TESTING, /* in ethtool self-test */ 213 __IAVF_RUNNING, /* opened, working */ 214 }; 215 216 enum iavf_critical_section_t { 217 __IAVF_IN_REMOVE_TASK, /* device being removed */ 218 }; 219 220 #define IAVF_CLOUD_FIELD_OMAC 0x01 221 #define IAVF_CLOUD_FIELD_IMAC 0x02 222 #define IAVF_CLOUD_FIELD_IVLAN 0x04 223 #define IAVF_CLOUD_FIELD_TEN_ID 0x08 224 #define IAVF_CLOUD_FIELD_IIP 0x10 225 226 #define IAVF_CF_FLAGS_OMAC IAVF_CLOUD_FIELD_OMAC 227 #define IAVF_CF_FLAGS_IMAC IAVF_CLOUD_FIELD_IMAC 228 #define IAVF_CF_FLAGS_IMAC_IVLAN (IAVF_CLOUD_FIELD_IMAC |\ 229 IAVF_CLOUD_FIELD_IVLAN) 230 #define IAVF_CF_FLAGS_IMAC_TEN_ID (IAVF_CLOUD_FIELD_IMAC |\ 231 IAVF_CLOUD_FIELD_TEN_ID) 232 #define IAVF_CF_FLAGS_OMAC_TEN_ID_IMAC (IAVF_CLOUD_FIELD_OMAC |\ 233 IAVF_CLOUD_FIELD_IMAC |\ 234 IAVF_CLOUD_FIELD_TEN_ID) 235 #define IAVF_CF_FLAGS_IMAC_IVLAN_TEN_ID (IAVF_CLOUD_FIELD_IMAC |\ 236 IAVF_CLOUD_FIELD_IVLAN |\ 237 IAVF_CLOUD_FIELD_TEN_ID) 238 #define IAVF_CF_FLAGS_IIP IAVF_CLOUD_FIELD_IIP 239 240 /* bookkeeping of cloud filters */ 241 struct iavf_cloud_filter { 242 enum iavf_cloud_filter_state_t state; 243 struct list_head list; 244 struct virtchnl_filter f; 245 unsigned long cookie; 246 bool del; /* filter needs to be deleted */ 247 bool add; /* filter needs to be added */ 248 }; 249 250 #define IAVF_RESET_WAIT_MS 10 251 #define IAVF_RESET_WAIT_DETECTED_COUNT 500 252 #define IAVF_RESET_WAIT_COMPLETE_COUNT 2000 253 254 /* board specific private data structure */ 255 struct iavf_adapter { 256 struct workqueue_struct *wq; 257 struct work_struct reset_task; 258 struct work_struct adminq_task; 259 struct delayed_work client_task; 260 wait_queue_head_t down_waitqueue; 261 wait_queue_head_t vc_waitqueue; 262 struct iavf_q_vector *q_vectors; 263 struct list_head vlan_filter_list; 264 int num_vlan_filters; 265 struct list_head mac_filter_list; 266 struct mutex crit_lock; 267 struct mutex client_lock; 268 /* Lock to protect accesses to MAC and VLAN lists */ 269 spinlock_t mac_vlan_list_lock; 270 char misc_vector_name[IFNAMSIZ + 9]; 271 int num_active_queues; 272 int num_req_queues; 273 274 /* TX */ 275 struct iavf_ring *tx_rings; 276 u32 tx_timeout_count; 277 u32 tx_desc_count; 278 279 /* RX */ 280 struct iavf_ring *rx_rings; 281 u64 hw_csum_rx_error; 282 u32 rx_desc_count; 283 int num_msix_vectors; 284 int num_rdma_msix; 285 int rdma_base_vector; 286 u32 client_pending; 287 struct iavf_client_instance *cinst; 288 struct msix_entry *msix_entries; 289 290 u32 flags; 291 #define IAVF_FLAG_RX_CSUM_ENABLED BIT(0) 292 #define IAVF_FLAG_PF_COMMS_FAILED BIT(3) 293 #define IAVF_FLAG_RESET_PENDING BIT(4) 294 #define IAVF_FLAG_RESET_NEEDED BIT(5) 295 #define IAVF_FLAG_WB_ON_ITR_CAPABLE BIT(6) 296 #define IAVF_FLAG_SERVICE_CLIENT_REQUESTED BIT(9) 297 #define IAVF_FLAG_CLIENT_NEEDS_OPEN BIT(10) 298 #define IAVF_FLAG_CLIENT_NEEDS_CLOSE BIT(11) 299 #define IAVF_FLAG_CLIENT_NEEDS_L2_PARAMS BIT(12) 300 #define IAVF_FLAG_PROMISC_ON BIT(13) 301 #define IAVF_FLAG_ALLMULTI_ON BIT(14) 302 #define IAVF_FLAG_LEGACY_RX BIT(15) 303 #define IAVF_FLAG_REINIT_ITR_NEEDED BIT(16) 304 #define IAVF_FLAG_QUEUES_DISABLED BIT(17) 305 #define IAVF_FLAG_SETUP_NETDEV_FEATURES BIT(18) 306 #define IAVF_FLAG_REINIT_MSIX_NEEDED BIT(20) 307 /* duplicates for common code */ 308 #define IAVF_FLAG_DCB_ENABLED 0 309 /* flags for admin queue service task */ 310 u64 aq_required; 311 #define IAVF_FLAG_AQ_ENABLE_QUEUES BIT_ULL(0) 312 #define IAVF_FLAG_AQ_DISABLE_QUEUES BIT_ULL(1) 313 #define IAVF_FLAG_AQ_ADD_MAC_FILTER BIT_ULL(2) 314 #define IAVF_FLAG_AQ_ADD_VLAN_FILTER BIT_ULL(3) 315 #define IAVF_FLAG_AQ_DEL_MAC_FILTER BIT_ULL(4) 316 #define IAVF_FLAG_AQ_DEL_VLAN_FILTER BIT_ULL(5) 317 #define IAVF_FLAG_AQ_CONFIGURE_QUEUES BIT_ULL(6) 318 #define IAVF_FLAG_AQ_MAP_VECTORS BIT_ULL(7) 319 #define IAVF_FLAG_AQ_HANDLE_RESET BIT_ULL(8) 320 #define IAVF_FLAG_AQ_CONFIGURE_RSS BIT_ULL(9) /* direct AQ config */ 321 #define IAVF_FLAG_AQ_GET_CONFIG BIT_ULL(10) 322 /* Newer style, RSS done by the PF so we can ignore hardware vagaries. */ 323 #define IAVF_FLAG_AQ_GET_HENA BIT_ULL(11) 324 #define IAVF_FLAG_AQ_SET_HENA BIT_ULL(12) 325 #define IAVF_FLAG_AQ_SET_RSS_KEY BIT_ULL(13) 326 #define IAVF_FLAG_AQ_SET_RSS_LUT BIT_ULL(14) 327 #define IAVF_FLAG_AQ_REQUEST_PROMISC BIT_ULL(15) 328 #define IAVF_FLAG_AQ_RELEASE_PROMISC BIT_ULL(16) 329 #define IAVF_FLAG_AQ_REQUEST_ALLMULTI BIT_ULL(17) 330 #define IAVF_FLAG_AQ_RELEASE_ALLMULTI BIT_ULL(18) 331 #define IAVF_FLAG_AQ_ENABLE_VLAN_STRIPPING BIT_ULL(19) 332 #define IAVF_FLAG_AQ_DISABLE_VLAN_STRIPPING BIT_ULL(20) 333 #define IAVF_FLAG_AQ_ENABLE_CHANNELS BIT_ULL(21) 334 #define IAVF_FLAG_AQ_DISABLE_CHANNELS BIT_ULL(22) 335 #define IAVF_FLAG_AQ_ADD_CLOUD_FILTER BIT_ULL(23) 336 #define IAVF_FLAG_AQ_DEL_CLOUD_FILTER BIT_ULL(24) 337 #define IAVF_FLAG_AQ_ADD_FDIR_FILTER BIT_ULL(25) 338 #define IAVF_FLAG_AQ_DEL_FDIR_FILTER BIT_ULL(26) 339 #define IAVF_FLAG_AQ_ADD_ADV_RSS_CFG BIT_ULL(27) 340 #define IAVF_FLAG_AQ_DEL_ADV_RSS_CFG BIT_ULL(28) 341 #define IAVF_FLAG_AQ_REQUEST_STATS BIT_ULL(29) 342 #define IAVF_FLAG_AQ_GET_OFFLOAD_VLAN_V2_CAPS BIT_ULL(30) 343 #define IAVF_FLAG_AQ_ENABLE_CTAG_VLAN_STRIPPING BIT_ULL(31) 344 #define IAVF_FLAG_AQ_DISABLE_CTAG_VLAN_STRIPPING BIT_ULL(32) 345 #define IAVF_FLAG_AQ_ENABLE_STAG_VLAN_STRIPPING BIT_ULL(33) 346 #define IAVF_FLAG_AQ_DISABLE_STAG_VLAN_STRIPPING BIT_ULL(34) 347 #define IAVF_FLAG_AQ_ENABLE_CTAG_VLAN_INSERTION BIT_ULL(35) 348 #define IAVF_FLAG_AQ_DISABLE_CTAG_VLAN_INSERTION BIT_ULL(36) 349 #define IAVF_FLAG_AQ_ENABLE_STAG_VLAN_INSERTION BIT_ULL(37) 350 #define IAVF_FLAG_AQ_DISABLE_STAG_VLAN_INSERTION BIT_ULL(38) 351 352 /* flags for processing extended capability messages during 353 * __IAVF_INIT_EXTENDED_CAPS. Each capability exchange requires 354 * both a SEND and a RECV step, which must be processed in sequence. 355 * 356 * During the __IAVF_INIT_EXTENDED_CAPS state, the driver will 357 * process one flag at a time during each state loop. 358 */ 359 u64 extended_caps; 360 #define IAVF_EXTENDED_CAP_SEND_VLAN_V2 BIT_ULL(0) 361 #define IAVF_EXTENDED_CAP_RECV_VLAN_V2 BIT_ULL(1) 362 363 #define IAVF_EXTENDED_CAPS \ 364 (IAVF_EXTENDED_CAP_SEND_VLAN_V2 | \ 365 IAVF_EXTENDED_CAP_RECV_VLAN_V2) 366 367 /* OS defined structs */ 368 struct net_device *netdev; 369 struct pci_dev *pdev; 370 371 struct iavf_hw hw; /* defined in iavf_type.h */ 372 373 enum iavf_state_t state; 374 enum iavf_state_t last_state; 375 unsigned long crit_section; 376 377 struct delayed_work watchdog_task; 378 bool netdev_registered; 379 bool link_up; 380 enum virtchnl_link_speed link_speed; 381 /* This is only populated if the VIRTCHNL_VF_CAP_ADV_LINK_SPEED is set 382 * in vf_res->vf_cap_flags. Use ADV_LINK_SUPPORT macro to determine if 383 * this field is valid. This field should be used going forward and the 384 * enum virtchnl_link_speed above should be considered the legacy way of 385 * storing/communicating link speeds. 386 */ 387 u32 link_speed_mbps; 388 389 enum virtchnl_ops current_op; 390 #define CLIENT_ALLOWED(_a) ((_a)->vf_res ? \ 391 (_a)->vf_res->vf_cap_flags & \ 392 VIRTCHNL_VF_OFFLOAD_RDMA : \ 393 0) 394 #define CLIENT_ENABLED(_a) ((_a)->cinst) 395 /* RSS by the PF should be preferred over RSS via other methods. */ 396 #define RSS_PF(_a) ((_a)->vf_res->vf_cap_flags & \ 397 VIRTCHNL_VF_OFFLOAD_RSS_PF) 398 #define RSS_AQ(_a) ((_a)->vf_res->vf_cap_flags & \ 399 VIRTCHNL_VF_OFFLOAD_RSS_AQ) 400 #define RSS_REG(_a) (!((_a)->vf_res->vf_cap_flags & \ 401 (VIRTCHNL_VF_OFFLOAD_RSS_AQ | \ 402 VIRTCHNL_VF_OFFLOAD_RSS_PF))) 403 #define VLAN_ALLOWED(_a) ((_a)->vf_res->vf_cap_flags & \ 404 VIRTCHNL_VF_OFFLOAD_VLAN) 405 #define VLAN_V2_ALLOWED(_a) ((_a)->vf_res->vf_cap_flags & \ 406 VIRTCHNL_VF_OFFLOAD_VLAN_V2) 407 #define VLAN_V2_FILTERING_ALLOWED(_a) \ 408 (VLAN_V2_ALLOWED((_a)) && \ 409 ((_a)->vlan_v2_caps.filtering.filtering_support.outer || \ 410 (_a)->vlan_v2_caps.filtering.filtering_support.inner)) 411 #define VLAN_FILTERING_ALLOWED(_a) \ 412 (VLAN_ALLOWED((_a)) || VLAN_V2_FILTERING_ALLOWED((_a))) 413 #define ADV_LINK_SUPPORT(_a) ((_a)->vf_res->vf_cap_flags & \ 414 VIRTCHNL_VF_CAP_ADV_LINK_SPEED) 415 #define FDIR_FLTR_SUPPORT(_a) ((_a)->vf_res->vf_cap_flags & \ 416 VIRTCHNL_VF_OFFLOAD_FDIR_PF) 417 #define ADV_RSS_SUPPORT(_a) ((_a)->vf_res->vf_cap_flags & \ 418 VIRTCHNL_VF_OFFLOAD_ADV_RSS_PF) 419 struct virtchnl_vf_resource *vf_res; /* incl. all VSIs */ 420 struct virtchnl_vsi_resource *vsi_res; /* our LAN VSI */ 421 struct virtchnl_version_info pf_version; 422 #define PF_IS_V11(_a) (((_a)->pf_version.major == 1) && \ 423 ((_a)->pf_version.minor == 1)) 424 struct virtchnl_vlan_caps vlan_v2_caps; 425 u16 msg_enable; 426 struct iavf_eth_stats current_stats; 427 struct iavf_vsi vsi; 428 u32 aq_wait_count; 429 /* RSS stuff */ 430 u64 hena; 431 u16 rss_key_size; 432 u16 rss_lut_size; 433 u8 *rss_key; 434 u8 *rss_lut; 435 /* ADQ related members */ 436 struct iavf_channel_config ch_config; 437 u8 num_tc; 438 struct list_head cloud_filter_list; 439 /* lock to protect access to the cloud filter list */ 440 spinlock_t cloud_filter_list_lock; 441 u16 num_cloud_filters; 442 /* snapshot of "num_active_queues" before setup_tc for qdisc add 443 * is invoked. This information is useful during qdisc del flow, 444 * to restore correct number of queues 445 */ 446 int orig_num_active_queues; 447 448 #define IAVF_MAX_FDIR_FILTERS 128 /* max allowed Flow Director filters */ 449 u16 fdir_active_fltr; 450 struct list_head fdir_list_head; 451 spinlock_t fdir_fltr_lock; /* protect the Flow Director filter list */ 452 453 struct list_head adv_rss_list_head; 454 spinlock_t adv_rss_lock; /* protect the RSS management list */ 455 }; 456 457 458 /* Ethtool Private Flags */ 459 460 /* lan device, used by client interface */ 461 struct iavf_device { 462 struct list_head list; 463 struct iavf_adapter *vf; 464 }; 465 466 /* needed by iavf_ethtool.c */ 467 extern char iavf_driver_name[]; 468 469 static inline const char *iavf_state_str(enum iavf_state_t state) 470 { 471 switch (state) { 472 case __IAVF_STARTUP: 473 return "__IAVF_STARTUP"; 474 case __IAVF_REMOVE: 475 return "__IAVF_REMOVE"; 476 case __IAVF_INIT_VERSION_CHECK: 477 return "__IAVF_INIT_VERSION_CHECK"; 478 case __IAVF_INIT_GET_RESOURCES: 479 return "__IAVF_INIT_GET_RESOURCES"; 480 case __IAVF_INIT_EXTENDED_CAPS: 481 return "__IAVF_INIT_EXTENDED_CAPS"; 482 case __IAVF_INIT_CONFIG_ADAPTER: 483 return "__IAVF_INIT_CONFIG_ADAPTER"; 484 case __IAVF_INIT_SW: 485 return "__IAVF_INIT_SW"; 486 case __IAVF_INIT_FAILED: 487 return "__IAVF_INIT_FAILED"; 488 case __IAVF_RESETTING: 489 return "__IAVF_RESETTING"; 490 case __IAVF_COMM_FAILED: 491 return "__IAVF_COMM_FAILED"; 492 case __IAVF_DOWN: 493 return "__IAVF_DOWN"; 494 case __IAVF_DOWN_PENDING: 495 return "__IAVF_DOWN_PENDING"; 496 case __IAVF_TESTING: 497 return "__IAVF_TESTING"; 498 case __IAVF_RUNNING: 499 return "__IAVF_RUNNING"; 500 default: 501 return "__IAVF_UNKNOWN_STATE"; 502 } 503 } 504 505 static inline void iavf_change_state(struct iavf_adapter *adapter, 506 enum iavf_state_t state) 507 { 508 if (adapter->state != state) { 509 adapter->last_state = adapter->state; 510 adapter->state = state; 511 } 512 dev_dbg(&adapter->pdev->dev, 513 "state transition from:%s to:%s\n", 514 iavf_state_str(adapter->last_state), 515 iavf_state_str(adapter->state)); 516 } 517 518 int iavf_up(struct iavf_adapter *adapter); 519 void iavf_down(struct iavf_adapter *adapter); 520 int iavf_process_config(struct iavf_adapter *adapter); 521 int iavf_parse_vf_resource_msg(struct iavf_adapter *adapter); 522 void iavf_schedule_reset(struct iavf_adapter *adapter); 523 void iavf_schedule_request_stats(struct iavf_adapter *adapter); 524 void iavf_reset(struct iavf_adapter *adapter); 525 void iavf_set_ethtool_ops(struct net_device *netdev); 526 void iavf_update_stats(struct iavf_adapter *adapter); 527 void iavf_reset_interrupt_capability(struct iavf_adapter *adapter); 528 int iavf_init_interrupt_scheme(struct iavf_adapter *adapter); 529 void iavf_irq_enable_queues(struct iavf_adapter *adapter, u32 mask); 530 void iavf_free_all_tx_resources(struct iavf_adapter *adapter); 531 void iavf_free_all_rx_resources(struct iavf_adapter *adapter); 532 533 void iavf_napi_add_all(struct iavf_adapter *adapter); 534 void iavf_napi_del_all(struct iavf_adapter *adapter); 535 536 int iavf_send_api_ver(struct iavf_adapter *adapter); 537 int iavf_verify_api_ver(struct iavf_adapter *adapter); 538 int iavf_send_vf_config_msg(struct iavf_adapter *adapter); 539 int iavf_get_vf_config(struct iavf_adapter *adapter); 540 int iavf_get_vf_vlan_v2_caps(struct iavf_adapter *adapter); 541 int iavf_send_vf_offload_vlan_v2_msg(struct iavf_adapter *adapter); 542 void iavf_set_queue_vlan_tag_loc(struct iavf_adapter *adapter); 543 u16 iavf_get_num_vlans_added(struct iavf_adapter *adapter); 544 void iavf_irq_enable(struct iavf_adapter *adapter, bool flush); 545 void iavf_configure_queues(struct iavf_adapter *adapter); 546 void iavf_deconfigure_queues(struct iavf_adapter *adapter); 547 void iavf_enable_queues(struct iavf_adapter *adapter); 548 void iavf_disable_queues(struct iavf_adapter *adapter); 549 void iavf_map_queues(struct iavf_adapter *adapter); 550 int iavf_request_queues(struct iavf_adapter *adapter, int num); 551 void iavf_add_ether_addrs(struct iavf_adapter *adapter); 552 void iavf_del_ether_addrs(struct iavf_adapter *adapter); 553 void iavf_add_vlans(struct iavf_adapter *adapter); 554 void iavf_del_vlans(struct iavf_adapter *adapter); 555 void iavf_set_promiscuous(struct iavf_adapter *adapter, int flags); 556 void iavf_request_stats(struct iavf_adapter *adapter); 557 int iavf_request_reset(struct iavf_adapter *adapter); 558 void iavf_get_hena(struct iavf_adapter *adapter); 559 void iavf_set_hena(struct iavf_adapter *adapter); 560 void iavf_set_rss_key(struct iavf_adapter *adapter); 561 void iavf_set_rss_lut(struct iavf_adapter *adapter); 562 void iavf_enable_vlan_stripping(struct iavf_adapter *adapter); 563 void iavf_disable_vlan_stripping(struct iavf_adapter *adapter); 564 void iavf_virtchnl_completion(struct iavf_adapter *adapter, 565 enum virtchnl_ops v_opcode, 566 enum iavf_status v_retval, u8 *msg, u16 msglen); 567 int iavf_config_rss(struct iavf_adapter *adapter); 568 int iavf_lan_add_device(struct iavf_adapter *adapter); 569 int iavf_lan_del_device(struct iavf_adapter *adapter); 570 void iavf_client_subtask(struct iavf_adapter *adapter); 571 void iavf_notify_client_message(struct iavf_vsi *vsi, u8 *msg, u16 len); 572 void iavf_notify_client_l2_params(struct iavf_vsi *vsi); 573 void iavf_notify_client_open(struct iavf_vsi *vsi); 574 void iavf_notify_client_close(struct iavf_vsi *vsi, bool reset); 575 void iavf_enable_channels(struct iavf_adapter *adapter); 576 void iavf_disable_channels(struct iavf_adapter *adapter); 577 void iavf_add_cloud_filter(struct iavf_adapter *adapter); 578 void iavf_del_cloud_filter(struct iavf_adapter *adapter); 579 void iavf_enable_vlan_stripping_v2(struct iavf_adapter *adapter, u16 tpid); 580 void iavf_disable_vlan_stripping_v2(struct iavf_adapter *adapter, u16 tpid); 581 void iavf_enable_vlan_insertion_v2(struct iavf_adapter *adapter, u16 tpid); 582 void iavf_disable_vlan_insertion_v2(struct iavf_adapter *adapter, u16 tpid); 583 int iavf_replace_primary_mac(struct iavf_adapter *adapter, 584 const u8 *new_mac); 585 void 586 iavf_set_vlan_offload_features(struct iavf_adapter *adapter, 587 netdev_features_t prev_features, 588 netdev_features_t features); 589 void iavf_add_fdir_filter(struct iavf_adapter *adapter); 590 void iavf_del_fdir_filter(struct iavf_adapter *adapter); 591 void iavf_add_adv_rss_cfg(struct iavf_adapter *adapter); 592 void iavf_del_adv_rss_cfg(struct iavf_adapter *adapter); 593 struct iavf_mac_filter *iavf_add_filter(struct iavf_adapter *adapter, 594 const u8 *macaddr); 595 int iavf_lock_timeout(struct mutex *lock, unsigned int msecs); 596 #endif /* _IAVF_H_ */ 597