1 /* 2 * This file is part of the Chelsio T4 Ethernet driver for Linux. 3 * 4 * Copyright (c) 2003-2016 Chelsio Communications, Inc. All rights reserved. 5 * 6 * This software is available to you under a choice of one of two 7 * licenses. You may choose to be licensed under the terms of the GNU 8 * General Public License (GPL) Version 2, available from the file 9 * COPYING in the main directory of this source tree, or the 10 * OpenIB.org BSD license below: 11 * 12 * Redistribution and use in source and binary forms, with or 13 * without modification, are permitted provided that the following 14 * conditions are met: 15 * 16 * - Redistributions of source code must retain the above 17 * copyright notice, this list of conditions and the following 18 * disclaimer. 19 * 20 * - Redistributions in binary form must reproduce the above 21 * copyright notice, this list of conditions and the following 22 * disclaimer in the documentation and/or other materials 23 * provided with the distribution. 24 * 25 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, 26 * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF 27 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND 28 * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS 29 * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN 30 * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN 31 * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE 32 * SOFTWARE. 33 */ 34 35 #ifndef __CXGB4_H__ 36 #define __CXGB4_H__ 37 38 #include "t4_hw.h" 39 40 #include <linux/bitops.h> 41 #include <linux/cache.h> 42 #include <linux/interrupt.h> 43 #include <linux/list.h> 44 #include <linux/netdevice.h> 45 #include <linux/pci.h> 46 #include <linux/spinlock.h> 47 #include <linux/timer.h> 48 #include <linux/vmalloc.h> 49 #include <linux/rhashtable.h> 50 #include <linux/etherdevice.h> 51 #include <linux/net_tstamp.h> 52 #include <linux/ptp_clock_kernel.h> 53 #include <linux/ptp_classify.h> 54 #include <linux/crash_dump.h> 55 #include <linux/thermal.h> 56 #include <asm/io.h> 57 #include "t4_chip_type.h" 58 #include "cxgb4_uld.h" 59 60 #define CH_WARN(adap, fmt, ...) dev_warn(adap->pdev_dev, fmt, ## __VA_ARGS__) 61 extern struct list_head adapter_list; 62 extern struct mutex uld_mutex; 63 64 /* Suspend an Ethernet Tx queue with fewer available descriptors than this. 65 * This is the same as calc_tx_descs() for a TSO packet with 66 * nr_frags == MAX_SKB_FRAGS. 67 */ 68 #define ETHTXQ_STOP_THRES \ 69 (1 + DIV_ROUND_UP((3 * MAX_SKB_FRAGS) / 2 + (MAX_SKB_FRAGS & 1), 8)) 70 71 enum { 72 MAX_NPORTS = 4, /* max # of ports */ 73 SERNUM_LEN = 24, /* Serial # length */ 74 EC_LEN = 16, /* E/C length */ 75 ID_LEN = 16, /* ID length */ 76 PN_LEN = 16, /* Part Number length */ 77 MACADDR_LEN = 12, /* MAC Address length */ 78 }; 79 80 enum { 81 T4_REGMAP_SIZE = (160 * 1024), 82 T5_REGMAP_SIZE = (332 * 1024), 83 }; 84 85 enum { 86 MEM_EDC0, 87 MEM_EDC1, 88 MEM_MC, 89 MEM_MC0 = MEM_MC, 90 MEM_MC1, 91 MEM_HMA, 92 }; 93 94 enum { 95 MEMWIN0_APERTURE = 2048, 96 MEMWIN0_BASE = 0x1b800, 97 MEMWIN1_APERTURE = 32768, 98 MEMWIN1_BASE = 0x28000, 99 MEMWIN1_BASE_T5 = 0x52000, 100 MEMWIN2_APERTURE = 65536, 101 MEMWIN2_BASE = 0x30000, 102 MEMWIN2_APERTURE_T5 = 131072, 103 MEMWIN2_BASE_T5 = 0x60000, 104 }; 105 106 enum dev_master { 107 MASTER_CANT, 108 MASTER_MAY, 109 MASTER_MUST 110 }; 111 112 enum dev_state { 113 DEV_STATE_UNINIT, 114 DEV_STATE_INIT, 115 DEV_STATE_ERR 116 }; 117 118 enum cc_pause { 119 PAUSE_RX = 1 << 0, 120 PAUSE_TX = 1 << 1, 121 PAUSE_AUTONEG = 1 << 2 122 }; 123 124 enum cc_fec { 125 FEC_AUTO = 1 << 0, /* IEEE 802.3 "automatic" */ 126 FEC_RS = 1 << 1, /* Reed-Solomon */ 127 FEC_BASER_RS = 1 << 2 /* BaseR/Reed-Solomon */ 128 }; 129 130 struct port_stats { 131 u64 tx_octets; /* total # of octets in good frames */ 132 u64 tx_frames; /* all good frames */ 133 u64 tx_bcast_frames; /* all broadcast frames */ 134 u64 tx_mcast_frames; /* all multicast frames */ 135 u64 tx_ucast_frames; /* all unicast frames */ 136 u64 tx_error_frames; /* all error frames */ 137 138 u64 tx_frames_64; /* # of Tx frames in a particular range */ 139 u64 tx_frames_65_127; 140 u64 tx_frames_128_255; 141 u64 tx_frames_256_511; 142 u64 tx_frames_512_1023; 143 u64 tx_frames_1024_1518; 144 u64 tx_frames_1519_max; 145 146 u64 tx_drop; /* # of dropped Tx frames */ 147 u64 tx_pause; /* # of transmitted pause frames */ 148 u64 tx_ppp0; /* # of transmitted PPP prio 0 frames */ 149 u64 tx_ppp1; /* # of transmitted PPP prio 1 frames */ 150 u64 tx_ppp2; /* # of transmitted PPP prio 2 frames */ 151 u64 tx_ppp3; /* # of transmitted PPP prio 3 frames */ 152 u64 tx_ppp4; /* # of transmitted PPP prio 4 frames */ 153 u64 tx_ppp5; /* # of transmitted PPP prio 5 frames */ 154 u64 tx_ppp6; /* # of transmitted PPP prio 6 frames */ 155 u64 tx_ppp7; /* # of transmitted PPP prio 7 frames */ 156 157 u64 rx_octets; /* total # of octets in good frames */ 158 u64 rx_frames; /* all good frames */ 159 u64 rx_bcast_frames; /* all broadcast frames */ 160 u64 rx_mcast_frames; /* all multicast frames */ 161 u64 rx_ucast_frames; /* all unicast frames */ 162 u64 rx_too_long; /* # of frames exceeding MTU */ 163 u64 rx_jabber; /* # of jabber frames */ 164 u64 rx_fcs_err; /* # of received frames with bad FCS */ 165 u64 rx_len_err; /* # of received frames with length error */ 166 u64 rx_symbol_err; /* symbol errors */ 167 u64 rx_runt; /* # of short frames */ 168 169 u64 rx_frames_64; /* # of Rx frames in a particular range */ 170 u64 rx_frames_65_127; 171 u64 rx_frames_128_255; 172 u64 rx_frames_256_511; 173 u64 rx_frames_512_1023; 174 u64 rx_frames_1024_1518; 175 u64 rx_frames_1519_max; 176 177 u64 rx_pause; /* # of received pause frames */ 178 u64 rx_ppp0; /* # of received PPP prio 0 frames */ 179 u64 rx_ppp1; /* # of received PPP prio 1 frames */ 180 u64 rx_ppp2; /* # of received PPP prio 2 frames */ 181 u64 rx_ppp3; /* # of received PPP prio 3 frames */ 182 u64 rx_ppp4; /* # of received PPP prio 4 frames */ 183 u64 rx_ppp5; /* # of received PPP prio 5 frames */ 184 u64 rx_ppp6; /* # of received PPP prio 6 frames */ 185 u64 rx_ppp7; /* # of received PPP prio 7 frames */ 186 187 u64 rx_ovflow0; /* drops due to buffer-group 0 overflows */ 188 u64 rx_ovflow1; /* drops due to buffer-group 1 overflows */ 189 u64 rx_ovflow2; /* drops due to buffer-group 2 overflows */ 190 u64 rx_ovflow3; /* drops due to buffer-group 3 overflows */ 191 u64 rx_trunc0; /* buffer-group 0 truncated packets */ 192 u64 rx_trunc1; /* buffer-group 1 truncated packets */ 193 u64 rx_trunc2; /* buffer-group 2 truncated packets */ 194 u64 rx_trunc3; /* buffer-group 3 truncated packets */ 195 }; 196 197 struct lb_port_stats { 198 u64 octets; 199 u64 frames; 200 u64 bcast_frames; 201 u64 mcast_frames; 202 u64 ucast_frames; 203 u64 error_frames; 204 205 u64 frames_64; 206 u64 frames_65_127; 207 u64 frames_128_255; 208 u64 frames_256_511; 209 u64 frames_512_1023; 210 u64 frames_1024_1518; 211 u64 frames_1519_max; 212 213 u64 drop; 214 215 u64 ovflow0; 216 u64 ovflow1; 217 u64 ovflow2; 218 u64 ovflow3; 219 u64 trunc0; 220 u64 trunc1; 221 u64 trunc2; 222 u64 trunc3; 223 }; 224 225 struct tp_tcp_stats { 226 u32 tcp_out_rsts; 227 u64 tcp_in_segs; 228 u64 tcp_out_segs; 229 u64 tcp_retrans_segs; 230 }; 231 232 struct tp_usm_stats { 233 u32 frames; 234 u32 drops; 235 u64 octets; 236 }; 237 238 struct tp_fcoe_stats { 239 u32 frames_ddp; 240 u32 frames_drop; 241 u64 octets_ddp; 242 }; 243 244 struct tp_err_stats { 245 u32 mac_in_errs[4]; 246 u32 hdr_in_errs[4]; 247 u32 tcp_in_errs[4]; 248 u32 tnl_cong_drops[4]; 249 u32 ofld_chan_drops[4]; 250 u32 tnl_tx_drops[4]; 251 u32 ofld_vlan_drops[4]; 252 u32 tcp6_in_errs[4]; 253 u32 ofld_no_neigh; 254 u32 ofld_cong_defer; 255 }; 256 257 struct tp_cpl_stats { 258 u32 req[4]; 259 u32 rsp[4]; 260 }; 261 262 struct tp_rdma_stats { 263 u32 rqe_dfr_pkt; 264 u32 rqe_dfr_mod; 265 }; 266 267 struct sge_params { 268 u32 hps; /* host page size for our PF/VF */ 269 u32 eq_qpp; /* egress queues/page for our PF/VF */ 270 u32 iq_qpp; /* egress queues/page for our PF/VF */ 271 }; 272 273 struct tp_params { 274 unsigned int tre; /* log2 of core clocks per TP tick */ 275 unsigned int la_mask; /* what events are recorded by TP LA */ 276 unsigned short tx_modq_map; /* TX modulation scheduler queue to */ 277 /* channel map */ 278 279 uint32_t dack_re; /* DACK timer resolution */ 280 unsigned short tx_modq[NCHAN]; /* channel to modulation queue map */ 281 282 u32 vlan_pri_map; /* cached TP_VLAN_PRI_MAP */ 283 u32 ingress_config; /* cached TP_INGRESS_CONFIG */ 284 285 /* cached TP_OUT_CONFIG compressed error vector 286 * and passing outer header info for encapsulated packets. 287 */ 288 int rx_pkt_encap; 289 290 /* TP_VLAN_PRI_MAP Compressed Filter Tuple field offsets. This is a 291 * subset of the set of fields which may be present in the Compressed 292 * Filter Tuple portion of filters and TCP TCB connections. The 293 * fields which are present are controlled by the TP_VLAN_PRI_MAP. 294 * Since a variable number of fields may or may not be present, their 295 * shifted field positions within the Compressed Filter Tuple may 296 * vary, or not even be present if the field isn't selected in 297 * TP_VLAN_PRI_MAP. Since some of these fields are needed in various 298 * places we store their offsets here, or a -1 if the field isn't 299 * present. 300 */ 301 int fcoe_shift; 302 int port_shift; 303 int vnic_shift; 304 int vlan_shift; 305 int tos_shift; 306 int protocol_shift; 307 int ethertype_shift; 308 int macmatch_shift; 309 int matchtype_shift; 310 int frag_shift; 311 312 u64 hash_filter_mask; 313 }; 314 315 struct vpd_params { 316 unsigned int cclk; 317 u8 ec[EC_LEN + 1]; 318 u8 sn[SERNUM_LEN + 1]; 319 u8 id[ID_LEN + 1]; 320 u8 pn[PN_LEN + 1]; 321 u8 na[MACADDR_LEN + 1]; 322 }; 323 324 /* Maximum resources provisioned for a PCI PF. 325 */ 326 struct pf_resources { 327 unsigned int nvi; /* N virtual interfaces */ 328 unsigned int neq; /* N egress Qs */ 329 unsigned int nethctrl; /* N egress ETH or CTRL Qs */ 330 unsigned int niqflint; /* N ingress Qs/w free list(s) & intr */ 331 unsigned int niq; /* N ingress Qs */ 332 unsigned int tc; /* PCI-E traffic class */ 333 unsigned int pmask; /* port access rights mask */ 334 unsigned int nexactf; /* N exact MPS filters */ 335 unsigned int r_caps; /* read capabilities */ 336 unsigned int wx_caps; /* write/execute capabilities */ 337 }; 338 339 struct pci_params { 340 unsigned int vpd_cap_addr; 341 unsigned char speed; 342 unsigned char width; 343 }; 344 345 struct devlog_params { 346 u32 memtype; /* which memory (EDC0, EDC1, MC) */ 347 u32 start; /* start of log in firmware memory */ 348 u32 size; /* size of log */ 349 }; 350 351 /* Stores chip specific parameters */ 352 struct arch_specific_params { 353 u8 nchan; 354 u8 pm_stats_cnt; 355 u8 cng_ch_bits_log; /* congestion channel map bits width */ 356 u16 mps_rplc_size; 357 u16 vfcount; 358 u32 sge_fl_db; 359 u16 mps_tcam_size; 360 }; 361 362 struct adapter_params { 363 struct sge_params sge; 364 struct tp_params tp; 365 struct vpd_params vpd; 366 struct pf_resources pfres; 367 struct pci_params pci; 368 struct devlog_params devlog; 369 enum pcie_memwin drv_memwin; 370 371 unsigned int cim_la_size; 372 373 unsigned int sf_size; /* serial flash size in bytes */ 374 unsigned int sf_nsec; /* # of flash sectors */ 375 376 unsigned int fw_vers; /* firmware version */ 377 unsigned int bs_vers; /* bootstrap version */ 378 unsigned int tp_vers; /* TP microcode version */ 379 unsigned int er_vers; /* expansion ROM version */ 380 unsigned int scfg_vers; /* Serial Configuration version */ 381 unsigned int vpd_vers; /* VPD Version */ 382 u8 api_vers[7]; 383 384 unsigned short mtus[NMTUS]; 385 unsigned short a_wnd[NCCTRL_WIN]; 386 unsigned short b_wnd[NCCTRL_WIN]; 387 388 unsigned char nports; /* # of ethernet ports */ 389 unsigned char portvec; 390 enum chip_type chip; /* chip code */ 391 struct arch_specific_params arch; /* chip specific params */ 392 unsigned char offload; 393 unsigned char crypto; /* HW capability for crypto */ 394 395 unsigned char bypass; 396 unsigned char hash_filter; 397 398 unsigned int ofldq_wr_cred; 399 bool ulptx_memwrite_dsgl; /* use of T5 DSGL allowed */ 400 401 unsigned int nsched_cls; /* number of traffic classes */ 402 unsigned int max_ordird_qp; /* Max read depth per RDMA QP */ 403 unsigned int max_ird_adapter; /* Max read depth per adapter */ 404 bool fr_nsmr_tpte_wr_support; /* FW support for FR_NSMR_TPTE_WR */ 405 u8 fw_caps_support; /* 32-bit Port Capabilities */ 406 bool filter2_wr_support; /* FW support for FILTER2_WR */ 407 unsigned int viid_smt_extn_support:1; /* FW returns vin and smt index */ 408 409 /* MPS Buffer Group Map[per Port]. Bit i is set if buffer group i is 410 * used by the Port 411 */ 412 u8 mps_bg_map[MAX_NPORTS]; /* MPS Buffer Group Map */ 413 bool write_w_imm_support; /* FW supports WRITE_WITH_IMMEDIATE */ 414 bool write_cmpl_support; /* FW supports WRITE_CMPL */ 415 }; 416 417 /* State needed to monitor the forward progress of SGE Ingress DMA activities 418 * and possible hangs. 419 */ 420 struct sge_idma_monitor_state { 421 unsigned int idma_1s_thresh; /* 1s threshold in Core Clock ticks */ 422 unsigned int idma_stalled[2]; /* synthesized stalled timers in HZ */ 423 unsigned int idma_state[2]; /* IDMA Hang detect state */ 424 unsigned int idma_qid[2]; /* IDMA Hung Ingress Queue ID */ 425 unsigned int idma_warn[2]; /* time to warning in HZ */ 426 }; 427 428 /* Firmware Mailbox Command/Reply log. All values are in Host-Endian format. 429 * The access and execute times are signed in order to accommodate negative 430 * error returns. 431 */ 432 struct mbox_cmd { 433 u64 cmd[MBOX_LEN / 8]; /* a Firmware Mailbox Command/Reply */ 434 u64 timestamp; /* OS-dependent timestamp */ 435 u32 seqno; /* sequence number */ 436 s16 access; /* time (ms) to access mailbox */ 437 s16 execute; /* time (ms) to execute */ 438 }; 439 440 struct mbox_cmd_log { 441 unsigned int size; /* number of entries in the log */ 442 unsigned int cursor; /* next position in the log to write */ 443 u32 seqno; /* next sequence number */ 444 /* variable length mailbox command log starts here */ 445 }; 446 447 /* Given a pointer to a Firmware Mailbox Command Log and a log entry index, 448 * return a pointer to the specified entry. 449 */ 450 static inline struct mbox_cmd *mbox_cmd_log_entry(struct mbox_cmd_log *log, 451 unsigned int entry_idx) 452 { 453 return &((struct mbox_cmd *)&(log)[1])[entry_idx]; 454 } 455 456 #include "t4fw_api.h" 457 458 #define FW_VERSION(chip) ( \ 459 FW_HDR_FW_VER_MAJOR_G(chip##FW_VERSION_MAJOR) | \ 460 FW_HDR_FW_VER_MINOR_G(chip##FW_VERSION_MINOR) | \ 461 FW_HDR_FW_VER_MICRO_G(chip##FW_VERSION_MICRO) | \ 462 FW_HDR_FW_VER_BUILD_G(chip##FW_VERSION_BUILD)) 463 #define FW_INTFVER(chip, intf) (FW_HDR_INTFVER_##intf) 464 465 struct fw_info { 466 u8 chip; 467 char *fs_name; 468 char *fw_mod_name; 469 struct fw_hdr fw_hdr; 470 }; 471 472 struct trace_params { 473 u32 data[TRACE_LEN / 4]; 474 u32 mask[TRACE_LEN / 4]; 475 unsigned short snap_len; 476 unsigned short min_len; 477 unsigned char skip_ofst; 478 unsigned char skip_len; 479 unsigned char invert; 480 unsigned char port; 481 }; 482 483 /* Firmware Port Capabilities types. */ 484 485 typedef u16 fw_port_cap16_t; /* 16-bit Port Capabilities integral value */ 486 typedef u32 fw_port_cap32_t; /* 32-bit Port Capabilities integral value */ 487 488 enum fw_caps { 489 FW_CAPS_UNKNOWN = 0, /* 0'ed out initial state */ 490 FW_CAPS16 = 1, /* old Firmware: 16-bit Port Capabilities */ 491 FW_CAPS32 = 2, /* new Firmware: 32-bit Port Capabilities */ 492 }; 493 494 struct link_config { 495 fw_port_cap32_t pcaps; /* link capabilities */ 496 fw_port_cap32_t def_acaps; /* default advertised capabilities */ 497 fw_port_cap32_t acaps; /* advertised capabilities */ 498 fw_port_cap32_t lpacaps; /* peer advertised capabilities */ 499 500 fw_port_cap32_t speed_caps; /* speed(s) user has requested */ 501 unsigned int speed; /* actual link speed (Mb/s) */ 502 503 enum cc_pause requested_fc; /* flow control user has requested */ 504 enum cc_pause fc; /* actual link flow control */ 505 506 enum cc_fec requested_fec; /* Forward Error Correction: */ 507 enum cc_fec fec; /* requested and actual in use */ 508 509 unsigned char autoneg; /* autonegotiating? */ 510 511 unsigned char link_ok; /* link up? */ 512 unsigned char link_down_rc; /* link down reason */ 513 514 bool new_module; /* ->OS Transceiver Module inserted */ 515 bool redo_l1cfg; /* ->CC redo current "sticky" L1 CFG */ 516 }; 517 518 #define FW_LEN16(fw_struct) FW_CMD_LEN16_V(sizeof(fw_struct) / 16) 519 520 enum { 521 MAX_ETH_QSETS = 32, /* # of Ethernet Tx/Rx queue sets */ 522 MAX_OFLD_QSETS = 16, /* # of offload Tx, iscsi Rx queue sets */ 523 MAX_CTRL_QUEUES = NCHAN, /* # of control Tx queues */ 524 }; 525 526 enum { 527 MAX_TXQ_ENTRIES = 16384, 528 MAX_CTRL_TXQ_ENTRIES = 1024, 529 MAX_RSPQ_ENTRIES = 16384, 530 MAX_RX_BUFFERS = 16384, 531 MIN_TXQ_ENTRIES = 32, 532 MIN_CTRL_TXQ_ENTRIES = 32, 533 MIN_RSPQ_ENTRIES = 128, 534 MIN_FL_ENTRIES = 16 535 }; 536 537 enum { 538 MAX_TXQ_DESC_SIZE = 64, 539 MAX_RXQ_DESC_SIZE = 128, 540 MAX_FL_DESC_SIZE = 8, 541 MAX_CTRL_TXQ_DESC_SIZE = 64, 542 }; 543 544 enum { 545 INGQ_EXTRAS = 2, /* firmware event queue and */ 546 /* forwarded interrupts */ 547 MAX_INGQ = MAX_ETH_QSETS + INGQ_EXTRAS, 548 }; 549 550 enum { 551 PRIV_FLAG_PORT_TX_VM_BIT, 552 }; 553 554 #define PRIV_FLAG_PORT_TX_VM BIT(PRIV_FLAG_PORT_TX_VM_BIT) 555 556 #define PRIV_FLAGS_ADAP 0 557 #define PRIV_FLAGS_PORT PRIV_FLAG_PORT_TX_VM 558 559 struct adapter; 560 struct sge_rspq; 561 562 #include "cxgb4_dcb.h" 563 564 #ifdef CONFIG_CHELSIO_T4_FCOE 565 #include "cxgb4_fcoe.h" 566 #endif /* CONFIG_CHELSIO_T4_FCOE */ 567 568 struct port_info { 569 struct adapter *adapter; 570 u16 viid; 571 int xact_addr_filt; /* index of exact MAC address filter */ 572 u16 rss_size; /* size of VI's RSS table slice */ 573 s8 mdio_addr; 574 enum fw_port_type port_type; 575 u8 mod_type; 576 u8 port_id; 577 u8 tx_chan; 578 u8 lport; /* associated offload logical port */ 579 u8 nqsets; /* # of qsets */ 580 u8 first_qset; /* index of first qset */ 581 u8 rss_mode; 582 struct link_config link_cfg; 583 u16 *rss; 584 struct port_stats stats_base; 585 #ifdef CONFIG_CHELSIO_T4_DCB 586 struct port_dcb_info dcb; /* Data Center Bridging support */ 587 #endif 588 #ifdef CONFIG_CHELSIO_T4_FCOE 589 struct cxgb_fcoe fcoe; 590 #endif /* CONFIG_CHELSIO_T4_FCOE */ 591 bool rxtstamp; /* Enable TS */ 592 struct hwtstamp_config tstamp_config; 593 bool ptp_enable; 594 struct sched_table *sched_tbl; 595 u32 eth_flags; 596 597 /* viid and smt fields either returned by fw 598 * or decoded by parsing viid by driver. 599 */ 600 u8 vin; 601 u8 vivld; 602 u8 smt_idx; 603 }; 604 605 struct dentry; 606 struct work_struct; 607 608 enum { /* adapter flags */ 609 CXGB4_FULL_INIT_DONE = (1 << 0), 610 CXGB4_DEV_ENABLED = (1 << 1), 611 CXGB4_USING_MSI = (1 << 2), 612 CXGB4_USING_MSIX = (1 << 3), 613 CXGB4_FW_OK = (1 << 4), 614 CXGB4_RSS_TNLALLLOOKUP = (1 << 5), 615 CXGB4_USING_SOFT_PARAMS = (1 << 6), 616 CXGB4_MASTER_PF = (1 << 7), 617 CXGB4_FW_OFLD_CONN = (1 << 9), 618 CXGB4_ROOT_NO_RELAXED_ORDERING = (1 << 10), 619 CXGB4_SHUTTING_DOWN = (1 << 11), 620 CXGB4_SGE_DBQ_TIMER = (1 << 12), 621 }; 622 623 enum { 624 ULP_CRYPTO_LOOKASIDE = 1 << 0, 625 ULP_CRYPTO_IPSEC_INLINE = 1 << 1, 626 }; 627 628 struct rx_sw_desc; 629 630 struct sge_fl { /* SGE free-buffer queue state */ 631 unsigned int avail; /* # of available Rx buffers */ 632 unsigned int pend_cred; /* new buffers since last FL DB ring */ 633 unsigned int cidx; /* consumer index */ 634 unsigned int pidx; /* producer index */ 635 unsigned long alloc_failed; /* # of times buffer allocation failed */ 636 unsigned long large_alloc_failed; 637 unsigned long mapping_err; /* # of RX Buffer DMA Mapping failures */ 638 unsigned long low; /* # of times momentarily starving */ 639 unsigned long starving; 640 /* RO fields */ 641 unsigned int cntxt_id; /* SGE context id for the free list */ 642 unsigned int size; /* capacity of free list */ 643 struct rx_sw_desc *sdesc; /* address of SW Rx descriptor ring */ 644 __be64 *desc; /* address of HW Rx descriptor ring */ 645 dma_addr_t addr; /* bus address of HW ring start */ 646 void __iomem *bar2_addr; /* address of BAR2 Queue registers */ 647 unsigned int bar2_qid; /* Queue ID for BAR2 Queue registers */ 648 }; 649 650 /* A packet gather list */ 651 struct pkt_gl { 652 u64 sgetstamp; /* SGE Time Stamp for Ingress Packet */ 653 struct page_frag frags[MAX_SKB_FRAGS]; 654 void *va; /* virtual address of first byte */ 655 unsigned int nfrags; /* # of fragments */ 656 unsigned int tot_len; /* total length of fragments */ 657 }; 658 659 typedef int (*rspq_handler_t)(struct sge_rspq *q, const __be64 *rsp, 660 const struct pkt_gl *gl); 661 typedef void (*rspq_flush_handler_t)(struct sge_rspq *q); 662 /* LRO related declarations for ULD */ 663 struct t4_lro_mgr { 664 #define MAX_LRO_SESSIONS 64 665 u8 lro_session_cnt; /* # of sessions to aggregate */ 666 unsigned long lro_pkts; /* # of LRO super packets */ 667 unsigned long lro_merged; /* # of wire packets merged by LRO */ 668 struct sk_buff_head lroq; /* list of aggregated sessions */ 669 }; 670 671 struct sge_rspq { /* state for an SGE response queue */ 672 struct napi_struct napi; 673 const __be64 *cur_desc; /* current descriptor in queue */ 674 unsigned int cidx; /* consumer index */ 675 u8 gen; /* current generation bit */ 676 u8 intr_params; /* interrupt holdoff parameters */ 677 u8 next_intr_params; /* holdoff params for next interrupt */ 678 u8 adaptive_rx; 679 u8 pktcnt_idx; /* interrupt packet threshold */ 680 u8 uld; /* ULD handling this queue */ 681 u8 idx; /* queue index within its group */ 682 int offset; /* offset into current Rx buffer */ 683 u16 cntxt_id; /* SGE context id for the response q */ 684 u16 abs_id; /* absolute SGE id for the response q */ 685 __be64 *desc; /* address of HW response ring */ 686 dma_addr_t phys_addr; /* physical address of the ring */ 687 void __iomem *bar2_addr; /* address of BAR2 Queue registers */ 688 unsigned int bar2_qid; /* Queue ID for BAR2 Queue registers */ 689 unsigned int iqe_len; /* entry size */ 690 unsigned int size; /* capacity of response queue */ 691 struct adapter *adap; 692 struct net_device *netdev; /* associated net device */ 693 rspq_handler_t handler; 694 rspq_flush_handler_t flush_handler; 695 struct t4_lro_mgr lro_mgr; 696 }; 697 698 struct sge_eth_stats { /* Ethernet queue statistics */ 699 unsigned long pkts; /* # of ethernet packets */ 700 unsigned long lro_pkts; /* # of LRO super packets */ 701 unsigned long lro_merged; /* # of wire packets merged by LRO */ 702 unsigned long rx_cso; /* # of Rx checksum offloads */ 703 unsigned long vlan_ex; /* # of Rx VLAN extractions */ 704 unsigned long rx_drops; /* # of packets dropped due to no mem */ 705 unsigned long bad_rx_pkts; /* # of packets with err_vec!=0 */ 706 }; 707 708 struct sge_eth_rxq { /* SW Ethernet Rx queue */ 709 struct sge_rspq rspq; 710 struct sge_fl fl; 711 struct sge_eth_stats stats; 712 } ____cacheline_aligned_in_smp; 713 714 struct sge_ofld_stats { /* offload queue statistics */ 715 unsigned long pkts; /* # of packets */ 716 unsigned long imm; /* # of immediate-data packets */ 717 unsigned long an; /* # of asynchronous notifications */ 718 unsigned long nomem; /* # of responses deferred due to no mem */ 719 }; 720 721 struct sge_ofld_rxq { /* SW offload Rx queue */ 722 struct sge_rspq rspq; 723 struct sge_fl fl; 724 struct sge_ofld_stats stats; 725 } ____cacheline_aligned_in_smp; 726 727 struct tx_desc { 728 __be64 flit[8]; 729 }; 730 731 struct tx_sw_desc; 732 733 struct sge_txq { 734 unsigned int in_use; /* # of in-use Tx descriptors */ 735 unsigned int q_type; /* Q type Eth/Ctrl/Ofld */ 736 unsigned int size; /* # of descriptors */ 737 unsigned int cidx; /* SW consumer index */ 738 unsigned int pidx; /* producer index */ 739 unsigned long stops; /* # of times q has been stopped */ 740 unsigned long restarts; /* # of queue restarts */ 741 unsigned int cntxt_id; /* SGE context id for the Tx q */ 742 struct tx_desc *desc; /* address of HW Tx descriptor ring */ 743 struct tx_sw_desc *sdesc; /* address of SW Tx descriptor ring */ 744 struct sge_qstat *stat; /* queue status entry */ 745 dma_addr_t phys_addr; /* physical address of the ring */ 746 spinlock_t db_lock; 747 int db_disabled; 748 unsigned short db_pidx; 749 unsigned short db_pidx_inc; 750 void __iomem *bar2_addr; /* address of BAR2 Queue registers */ 751 unsigned int bar2_qid; /* Queue ID for BAR2 Queue registers */ 752 }; 753 754 struct sge_eth_txq { /* state for an SGE Ethernet Tx queue */ 755 struct sge_txq q; 756 struct netdev_queue *txq; /* associated netdev TX queue */ 757 #ifdef CONFIG_CHELSIO_T4_DCB 758 u8 dcb_prio; /* DCB Priority bound to queue */ 759 #endif 760 u8 dbqt; /* SGE Doorbell Queue Timer in use */ 761 unsigned int dbqtimerix; /* SGE Doorbell Queue Timer Index */ 762 unsigned long tso; /* # of TSO requests */ 763 unsigned long tx_cso; /* # of Tx checksum offloads */ 764 unsigned long vlan_ins; /* # of Tx VLAN insertions */ 765 unsigned long mapping_err; /* # of I/O MMU packet mapping errors */ 766 } ____cacheline_aligned_in_smp; 767 768 struct sge_uld_txq { /* state for an SGE offload Tx queue */ 769 struct sge_txq q; 770 struct adapter *adap; 771 struct sk_buff_head sendq; /* list of backpressured packets */ 772 struct tasklet_struct qresume_tsk; /* restarts the queue */ 773 bool service_ofldq_running; /* service_ofldq() is processing sendq */ 774 u8 full; /* the Tx ring is full */ 775 unsigned long mapping_err; /* # of I/O MMU packet mapping errors */ 776 } ____cacheline_aligned_in_smp; 777 778 struct sge_ctrl_txq { /* state for an SGE control Tx queue */ 779 struct sge_txq q; 780 struct adapter *adap; 781 struct sk_buff_head sendq; /* list of backpressured packets */ 782 struct tasklet_struct qresume_tsk; /* restarts the queue */ 783 u8 full; /* the Tx ring is full */ 784 } ____cacheline_aligned_in_smp; 785 786 struct sge_uld_rxq_info { 787 char name[IFNAMSIZ]; /* name of ULD driver */ 788 struct sge_ofld_rxq *uldrxq; /* Rxq's for ULD */ 789 u16 *msix_tbl; /* msix_tbl for uld */ 790 u16 *rspq_id; /* response queue id's of rxq */ 791 u16 nrxq; /* # of ingress uld queues */ 792 u16 nciq; /* # of completion queues */ 793 u8 uld; /* uld type */ 794 }; 795 796 struct sge_uld_txq_info { 797 struct sge_uld_txq *uldtxq; /* Txq's for ULD */ 798 atomic_t users; /* num users */ 799 u16 ntxq; /* # of egress uld queues */ 800 }; 801 802 struct sge { 803 struct sge_eth_txq ethtxq[MAX_ETH_QSETS]; 804 struct sge_eth_txq ptptxq; 805 struct sge_ctrl_txq ctrlq[MAX_CTRL_QUEUES]; 806 807 struct sge_eth_rxq ethrxq[MAX_ETH_QSETS]; 808 struct sge_rspq fw_evtq ____cacheline_aligned_in_smp; 809 struct sge_uld_rxq_info **uld_rxq_info; 810 struct sge_uld_txq_info **uld_txq_info; 811 812 struct sge_rspq intrq ____cacheline_aligned_in_smp; 813 spinlock_t intrq_lock; 814 815 u16 max_ethqsets; /* # of available Ethernet queue sets */ 816 u16 ethqsets; /* # of active Ethernet queue sets */ 817 u16 ethtxq_rover; /* Tx queue to clean up next */ 818 u16 ofldqsets; /* # of active ofld queue sets */ 819 u16 nqs_per_uld; /* # of Rx queues per ULD */ 820 u16 timer_val[SGE_NTIMERS]; 821 u8 counter_val[SGE_NCOUNTERS]; 822 u16 dbqtimer_tick; 823 u16 dbqtimer_val[SGE_NDBQTIMERS]; 824 u32 fl_pg_order; /* large page allocation size */ 825 u32 stat_len; /* length of status page at ring end */ 826 u32 pktshift; /* padding between CPL & packet data */ 827 u32 fl_align; /* response queue message alignment */ 828 u32 fl_starve_thres; /* Free List starvation threshold */ 829 830 struct sge_idma_monitor_state idma_monitor; 831 unsigned int egr_start; 832 unsigned int egr_sz; 833 unsigned int ingr_start; 834 unsigned int ingr_sz; 835 void **egr_map; /* qid->queue egress queue map */ 836 struct sge_rspq **ingr_map; /* qid->queue ingress queue map */ 837 unsigned long *starving_fl; 838 unsigned long *txq_maperr; 839 unsigned long *blocked_fl; 840 struct timer_list rx_timer; /* refills starving FLs */ 841 struct timer_list tx_timer; /* checks Tx queues */ 842 }; 843 844 #define for_each_ethrxq(sge, i) for (i = 0; i < (sge)->ethqsets; i++) 845 #define for_each_ofldtxq(sge, i) for (i = 0; i < (sge)->ofldqsets; i++) 846 847 struct l2t_data; 848 849 #ifdef CONFIG_PCI_IOV 850 851 /* T4 supports SRIOV on PF0-3 and T5 on PF0-7. However, the Serial 852 * Configuration initialization for T5 only has SR-IOV functionality enabled 853 * on PF0-3 in order to simplify everything. 854 */ 855 #define NUM_OF_PF_WITH_SRIOV 4 856 857 #endif 858 859 struct doorbell_stats { 860 u32 db_drop; 861 u32 db_empty; 862 u32 db_full; 863 }; 864 865 struct hash_mac_addr { 866 struct list_head list; 867 u8 addr[ETH_ALEN]; 868 unsigned int iface_mac; 869 }; 870 871 struct uld_msix_bmap { 872 unsigned long *msix_bmap; 873 unsigned int mapsize; 874 spinlock_t lock; /* lock for acquiring bitmap */ 875 }; 876 877 struct uld_msix_info { 878 unsigned short vec; 879 char desc[IFNAMSIZ + 10]; 880 unsigned int idx; 881 }; 882 883 struct vf_info { 884 unsigned char vf_mac_addr[ETH_ALEN]; 885 unsigned int tx_rate; 886 bool pf_set_mac; 887 u16 vlan; 888 int link_state; 889 }; 890 891 enum { 892 HMA_DMA_MAPPED_FLAG = 1 893 }; 894 895 struct hma_data { 896 unsigned char flags; 897 struct sg_table *sgt; 898 dma_addr_t *phy_addr; /* physical address of the page */ 899 }; 900 901 struct mbox_list { 902 struct list_head list; 903 }; 904 905 struct mps_encap_entry { 906 atomic_t refcnt; 907 }; 908 909 #if IS_ENABLED(CONFIG_THERMAL) 910 struct ch_thermal { 911 struct thermal_zone_device *tzdev; 912 int trip_temp; 913 int trip_type; 914 }; 915 #endif 916 917 struct adapter { 918 void __iomem *regs; 919 void __iomem *bar2; 920 u32 t4_bar0; 921 struct pci_dev *pdev; 922 struct device *pdev_dev; 923 const char *name; 924 unsigned int mbox; 925 unsigned int pf; 926 unsigned int flags; 927 unsigned int adap_idx; 928 enum chip_type chip; 929 u32 eth_flags; 930 931 int msg_enable; 932 __be16 vxlan_port; 933 u8 vxlan_port_cnt; 934 __be16 geneve_port; 935 u8 geneve_port_cnt; 936 937 struct adapter_params params; 938 struct cxgb4_virt_res vres; 939 unsigned int swintr; 940 941 struct { 942 unsigned short vec; 943 char desc[IFNAMSIZ + 10]; 944 } msix_info[MAX_INGQ + 1]; 945 struct uld_msix_info *msix_info_ulds; /* msix info for uld's */ 946 struct uld_msix_bmap msix_bmap_ulds; /* msix bitmap for all uld */ 947 int msi_idx; 948 949 struct doorbell_stats db_stats; 950 struct sge sge; 951 952 struct net_device *port[MAX_NPORTS]; 953 u8 chan_map[NCHAN]; /* channel -> port map */ 954 955 struct vf_info *vfinfo; 956 u8 num_vfs; 957 958 u32 filter_mode; 959 unsigned int l2t_start; 960 unsigned int l2t_end; 961 struct l2t_data *l2t; 962 unsigned int clipt_start; 963 unsigned int clipt_end; 964 struct clip_tbl *clipt; 965 unsigned int rawf_start; 966 unsigned int rawf_cnt; 967 struct smt_data *smt; 968 struct mps_encap_entry *mps_encap; 969 struct cxgb4_uld_info *uld; 970 void *uld_handle[CXGB4_ULD_MAX]; 971 unsigned int num_uld; 972 unsigned int num_ofld_uld; 973 struct list_head list_node; 974 struct list_head rcu_node; 975 struct list_head mac_hlist; /* list of MAC addresses in MPS Hash */ 976 977 void *iscsi_ppm; 978 979 struct tid_info tids; 980 void **tid_release_head; 981 spinlock_t tid_release_lock; 982 struct workqueue_struct *workq; 983 struct work_struct tid_release_task; 984 struct work_struct db_full_task; 985 struct work_struct db_drop_task; 986 struct work_struct fatal_err_notify_task; 987 bool tid_release_task_busy; 988 989 /* lock for mailbox cmd list */ 990 spinlock_t mbox_lock; 991 struct mbox_list mlist; 992 993 /* support for mailbox command/reply logging */ 994 #define T4_OS_LOG_MBOX_CMDS 256 995 struct mbox_cmd_log *mbox_log; 996 997 struct mutex uld_mutex; 998 999 struct dentry *debugfs_root; 1000 bool use_bd; /* Use SGE Back Door intfc for reading SGE Contexts */ 1001 bool trace_rss; /* 1 implies that different RSS flit per filter is 1002 * used per filter else if 0 default RSS flit is 1003 * used for all 4 filters. 1004 */ 1005 1006 struct ptp_clock *ptp_clock; 1007 struct ptp_clock_info ptp_clock_info; 1008 struct sk_buff *ptp_tx_skb; 1009 /* ptp lock */ 1010 spinlock_t ptp_lock; 1011 spinlock_t stats_lock; 1012 spinlock_t win0_lock ____cacheline_aligned_in_smp; 1013 1014 /* TC u32 offload */ 1015 struct cxgb4_tc_u32_table *tc_u32; 1016 struct chcr_stats_debug chcr_stats; 1017 1018 /* TC flower offload */ 1019 bool tc_flower_initialized; 1020 struct rhashtable flower_tbl; 1021 struct rhashtable_params flower_ht_params; 1022 struct timer_list flower_stats_timer; 1023 struct work_struct flower_stats_work; 1024 1025 /* Ethtool Dump */ 1026 struct ethtool_dump eth_dump; 1027 1028 /* HMA */ 1029 struct hma_data hma; 1030 1031 struct srq_data *srq; 1032 1033 /* Dump buffer for collecting logs in kdump kernel */ 1034 struct vmcoredd_data vmcoredd; 1035 #if IS_ENABLED(CONFIG_THERMAL) 1036 struct ch_thermal ch_thermal; 1037 #endif 1038 }; 1039 1040 /* Support for "sched-class" command to allow a TX Scheduling Class to be 1041 * programmed with various parameters. 1042 */ 1043 struct ch_sched_params { 1044 s8 type; /* packet or flow */ 1045 union { 1046 struct { 1047 s8 level; /* scheduler hierarchy level */ 1048 s8 mode; /* per-class or per-flow */ 1049 s8 rateunit; /* bit or packet rate */ 1050 s8 ratemode; /* %port relative or kbps absolute */ 1051 s8 channel; /* scheduler channel [0..N] */ 1052 s8 class; /* scheduler class [0..N] */ 1053 s32 minrate; /* minimum rate */ 1054 s32 maxrate; /* maximum rate */ 1055 s16 weight; /* percent weight */ 1056 s16 pktsize; /* average packet size */ 1057 } params; 1058 } u; 1059 }; 1060 1061 enum { 1062 SCHED_CLASS_TYPE_PACKET = 0, /* class type */ 1063 }; 1064 1065 enum { 1066 SCHED_CLASS_LEVEL_CL_RL = 0, /* class rate limiter */ 1067 }; 1068 1069 enum { 1070 SCHED_CLASS_MODE_CLASS = 0, /* per-class scheduling */ 1071 }; 1072 1073 enum { 1074 SCHED_CLASS_RATEUNIT_BITS = 0, /* bit rate scheduling */ 1075 }; 1076 1077 enum { 1078 SCHED_CLASS_RATEMODE_ABS = 1, /* Kb/s */ 1079 }; 1080 1081 struct tx_sw_desc { /* SW state per Tx descriptor */ 1082 struct sk_buff *skb; 1083 struct ulptx_sgl *sgl; 1084 }; 1085 1086 /* Support for "sched_queue" command to allow one or more NIC TX Queues 1087 * to be bound to a TX Scheduling Class. 1088 */ 1089 struct ch_sched_queue { 1090 s8 queue; /* queue index */ 1091 s8 class; /* class index */ 1092 }; 1093 1094 /* Defined bit width of user definable filter tuples 1095 */ 1096 #define ETHTYPE_BITWIDTH 16 1097 #define FRAG_BITWIDTH 1 1098 #define MACIDX_BITWIDTH 9 1099 #define FCOE_BITWIDTH 1 1100 #define IPORT_BITWIDTH 3 1101 #define MATCHTYPE_BITWIDTH 3 1102 #define PROTO_BITWIDTH 8 1103 #define TOS_BITWIDTH 8 1104 #define PF_BITWIDTH 8 1105 #define VF_BITWIDTH 8 1106 #define IVLAN_BITWIDTH 16 1107 #define OVLAN_BITWIDTH 16 1108 #define ENCAP_VNI_BITWIDTH 24 1109 1110 /* Filter matching rules. These consist of a set of ingress packet field 1111 * (value, mask) tuples. The associated ingress packet field matches the 1112 * tuple when ((field & mask) == value). (Thus a wildcard "don't care" field 1113 * rule can be constructed by specifying a tuple of (0, 0).) A filter rule 1114 * matches an ingress packet when all of the individual individual field 1115 * matching rules are true. 1116 * 1117 * Partial field masks are always valid, however, while it may be easy to 1118 * understand their meanings for some fields (e.g. IP address to match a 1119 * subnet), for others making sensible partial masks is less intuitive (e.g. 1120 * MPS match type) ... 1121 * 1122 * Most of the following data structures are modeled on T4 capabilities. 1123 * Drivers for earlier chips use the subsets which make sense for those chips. 1124 * We really need to come up with a hardware-independent mechanism to 1125 * represent hardware filter capabilities ... 1126 */ 1127 struct ch_filter_tuple { 1128 /* Compressed header matching field rules. The TP_VLAN_PRI_MAP 1129 * register selects which of these fields will participate in the 1130 * filter match rules -- up to a maximum of 36 bits. Because 1131 * TP_VLAN_PRI_MAP is a global register, all filters must use the same 1132 * set of fields. 1133 */ 1134 uint32_t ethtype:ETHTYPE_BITWIDTH; /* Ethernet type */ 1135 uint32_t frag:FRAG_BITWIDTH; /* IP fragmentation header */ 1136 uint32_t ivlan_vld:1; /* inner VLAN valid */ 1137 uint32_t ovlan_vld:1; /* outer VLAN valid */ 1138 uint32_t pfvf_vld:1; /* PF/VF valid */ 1139 uint32_t encap_vld:1; /* Encapsulation valid */ 1140 uint32_t macidx:MACIDX_BITWIDTH; /* exact match MAC index */ 1141 uint32_t fcoe:FCOE_BITWIDTH; /* FCoE packet */ 1142 uint32_t iport:IPORT_BITWIDTH; /* ingress port */ 1143 uint32_t matchtype:MATCHTYPE_BITWIDTH; /* MPS match type */ 1144 uint32_t proto:PROTO_BITWIDTH; /* protocol type */ 1145 uint32_t tos:TOS_BITWIDTH; /* TOS/Traffic Type */ 1146 uint32_t pf:PF_BITWIDTH; /* PCI-E PF ID */ 1147 uint32_t vf:VF_BITWIDTH; /* PCI-E VF ID */ 1148 uint32_t ivlan:IVLAN_BITWIDTH; /* inner VLAN */ 1149 uint32_t ovlan:OVLAN_BITWIDTH; /* outer VLAN */ 1150 uint32_t vni:ENCAP_VNI_BITWIDTH; /* VNI of tunnel */ 1151 1152 /* Uncompressed header matching field rules. These are always 1153 * available for field rules. 1154 */ 1155 uint8_t lip[16]; /* local IP address (IPv4 in [3:0]) */ 1156 uint8_t fip[16]; /* foreign IP address (IPv4 in [3:0]) */ 1157 uint16_t lport; /* local port */ 1158 uint16_t fport; /* foreign port */ 1159 }; 1160 1161 /* A filter ioctl command. 1162 */ 1163 struct ch_filter_specification { 1164 /* Administrative fields for filter. 1165 */ 1166 uint32_t hitcnts:1; /* count filter hits in TCB */ 1167 uint32_t prio:1; /* filter has priority over active/server */ 1168 1169 /* Fundamental filter typing. This is the one element of filter 1170 * matching that doesn't exist as a (value, mask) tuple. 1171 */ 1172 uint32_t type:1; /* 0 => IPv4, 1 => IPv6 */ 1173 u32 hash:1; /* 0 => wild-card, 1 => exact-match */ 1174 1175 /* Packet dispatch information. Ingress packets which match the 1176 * filter rules will be dropped, passed to the host or switched back 1177 * out as egress packets. 1178 */ 1179 uint32_t action:2; /* drop, pass, switch */ 1180 1181 uint32_t rpttid:1; /* report TID in RSS hash field */ 1182 1183 uint32_t dirsteer:1; /* 0 => RSS, 1 => steer to iq */ 1184 uint32_t iq:10; /* ingress queue */ 1185 1186 uint32_t maskhash:1; /* dirsteer=0: store RSS hash in TCB */ 1187 uint32_t dirsteerhash:1;/* dirsteer=1: 0 => TCB contains RSS hash */ 1188 /* 1 => TCB contains IQ ID */ 1189 1190 /* Switch proxy/rewrite fields. An ingress packet which matches a 1191 * filter with "switch" set will be looped back out as an egress 1192 * packet -- potentially with some Ethernet header rewriting. 1193 */ 1194 uint32_t eport:2; /* egress port to switch packet out */ 1195 uint32_t newdmac:1; /* rewrite destination MAC address */ 1196 uint32_t newsmac:1; /* rewrite source MAC address */ 1197 uint32_t newvlan:2; /* rewrite VLAN Tag */ 1198 uint32_t nat_mode:3; /* specify NAT operation mode */ 1199 uint8_t dmac[ETH_ALEN]; /* new destination MAC address */ 1200 uint8_t smac[ETH_ALEN]; /* new source MAC address */ 1201 uint16_t vlan; /* VLAN Tag to insert */ 1202 1203 u8 nat_lip[16]; /* local IP to use after NAT'ing */ 1204 u8 nat_fip[16]; /* foreign IP to use after NAT'ing */ 1205 u16 nat_lport; /* local port to use after NAT'ing */ 1206 u16 nat_fport; /* foreign port to use after NAT'ing */ 1207 1208 /* reservation for future additions */ 1209 u8 rsvd[24]; 1210 1211 /* Filter rule value/mask pairs. 1212 */ 1213 struct ch_filter_tuple val; 1214 struct ch_filter_tuple mask; 1215 }; 1216 1217 enum { 1218 FILTER_PASS = 0, /* default */ 1219 FILTER_DROP, 1220 FILTER_SWITCH 1221 }; 1222 1223 enum { 1224 VLAN_NOCHANGE = 0, /* default */ 1225 VLAN_REMOVE, 1226 VLAN_INSERT, 1227 VLAN_REWRITE 1228 }; 1229 1230 enum { 1231 NAT_MODE_NONE = 0, /* No NAT performed */ 1232 NAT_MODE_DIP, /* NAT on Dst IP */ 1233 NAT_MODE_DIP_DP, /* NAT on Dst IP, Dst Port */ 1234 NAT_MODE_DIP_DP_SIP, /* NAT on Dst IP, Dst Port and Src IP */ 1235 NAT_MODE_DIP_DP_SP, /* NAT on Dst IP, Dst Port and Src Port */ 1236 NAT_MODE_SIP_SP, /* NAT on Src IP and Src Port */ 1237 NAT_MODE_DIP_SIP_SP, /* NAT on Dst IP, Src IP and Src Port */ 1238 NAT_MODE_ALL /* NAT on entire 4-tuple */ 1239 }; 1240 1241 /* Host shadow copy of ingress filter entry. This is in host native format 1242 * and doesn't match the ordering or bit order, etc. of the hardware of the 1243 * firmware command. The use of bit-field structure elements is purely to 1244 * remind ourselves of the field size limitations and save memory in the case 1245 * where the filter table is large. 1246 */ 1247 struct filter_entry { 1248 /* Administrative fields for filter. */ 1249 u32 valid:1; /* filter allocated and valid */ 1250 u32 locked:1; /* filter is administratively locked */ 1251 1252 u32 pending:1; /* filter action is pending firmware reply */ 1253 struct filter_ctx *ctx; /* Caller's completion hook */ 1254 struct l2t_entry *l2t; /* Layer Two Table entry for dmac */ 1255 struct smt_entry *smt; /* Source Mac Table entry for smac */ 1256 struct net_device *dev; /* Associated net device */ 1257 u32 tid; /* This will store the actual tid */ 1258 1259 /* The filter itself. Most of this is a straight copy of information 1260 * provided by the extended ioctl(). Some fields are translated to 1261 * internal forms -- for instance the Ingress Queue ID passed in from 1262 * the ioctl() is translated into the Absolute Ingress Queue ID. 1263 */ 1264 struct ch_filter_specification fs; 1265 }; 1266 1267 static inline int is_offload(const struct adapter *adap) 1268 { 1269 return adap->params.offload; 1270 } 1271 1272 static inline int is_hashfilter(const struct adapter *adap) 1273 { 1274 return adap->params.hash_filter; 1275 } 1276 1277 static inline int is_pci_uld(const struct adapter *adap) 1278 { 1279 return adap->params.crypto; 1280 } 1281 1282 static inline int is_uld(const struct adapter *adap) 1283 { 1284 return (adap->params.offload || adap->params.crypto); 1285 } 1286 1287 static inline u32 t4_read_reg(struct adapter *adap, u32 reg_addr) 1288 { 1289 return readl(adap->regs + reg_addr); 1290 } 1291 1292 static inline void t4_write_reg(struct adapter *adap, u32 reg_addr, u32 val) 1293 { 1294 writel(val, adap->regs + reg_addr); 1295 } 1296 1297 #ifndef readq 1298 static inline u64 readq(const volatile void __iomem *addr) 1299 { 1300 return readl(addr) + ((u64)readl(addr + 4) << 32); 1301 } 1302 1303 static inline void writeq(u64 val, volatile void __iomem *addr) 1304 { 1305 writel(val, addr); 1306 writel(val >> 32, addr + 4); 1307 } 1308 #endif 1309 1310 static inline u64 t4_read_reg64(struct adapter *adap, u32 reg_addr) 1311 { 1312 return readq(adap->regs + reg_addr); 1313 } 1314 1315 static inline void t4_write_reg64(struct adapter *adap, u32 reg_addr, u64 val) 1316 { 1317 writeq(val, adap->regs + reg_addr); 1318 } 1319 1320 /** 1321 * t4_set_hw_addr - store a port's MAC address in SW 1322 * @adapter: the adapter 1323 * @port_idx: the port index 1324 * @hw_addr: the Ethernet address 1325 * 1326 * Store the Ethernet address of the given port in SW. Called by the common 1327 * code when it retrieves a port's Ethernet address from EEPROM. 1328 */ 1329 static inline void t4_set_hw_addr(struct adapter *adapter, int port_idx, 1330 u8 hw_addr[]) 1331 { 1332 ether_addr_copy(adapter->port[port_idx]->dev_addr, hw_addr); 1333 ether_addr_copy(adapter->port[port_idx]->perm_addr, hw_addr); 1334 } 1335 1336 /** 1337 * netdev2pinfo - return the port_info structure associated with a net_device 1338 * @dev: the netdev 1339 * 1340 * Return the struct port_info associated with a net_device 1341 */ 1342 static inline struct port_info *netdev2pinfo(const struct net_device *dev) 1343 { 1344 return netdev_priv(dev); 1345 } 1346 1347 /** 1348 * adap2pinfo - return the port_info of a port 1349 * @adap: the adapter 1350 * @idx: the port index 1351 * 1352 * Return the port_info structure for the port of the given index. 1353 */ 1354 static inline struct port_info *adap2pinfo(struct adapter *adap, int idx) 1355 { 1356 return netdev_priv(adap->port[idx]); 1357 } 1358 1359 /** 1360 * netdev2adap - return the adapter structure associated with a net_device 1361 * @dev: the netdev 1362 * 1363 * Return the struct adapter associated with a net_device 1364 */ 1365 static inline struct adapter *netdev2adap(const struct net_device *dev) 1366 { 1367 return netdev2pinfo(dev)->adapter; 1368 } 1369 1370 /* Return a version number to identify the type of adapter. The scheme is: 1371 * - bits 0..9: chip version 1372 * - bits 10..15: chip revision 1373 * - bits 16..23: register dump version 1374 */ 1375 static inline unsigned int mk_adap_vers(struct adapter *ap) 1376 { 1377 return CHELSIO_CHIP_VERSION(ap->params.chip) | 1378 (CHELSIO_CHIP_RELEASE(ap->params.chip) << 10) | (1 << 16); 1379 } 1380 1381 /* Return a queue's interrupt hold-off time in us. 0 means no timer. */ 1382 static inline unsigned int qtimer_val(const struct adapter *adap, 1383 const struct sge_rspq *q) 1384 { 1385 unsigned int idx = q->intr_params >> 1; 1386 1387 return idx < SGE_NTIMERS ? adap->sge.timer_val[idx] : 0; 1388 } 1389 1390 /* driver version & name used for ethtool_drvinfo */ 1391 extern char cxgb4_driver_name[]; 1392 extern const char cxgb4_driver_version[]; 1393 1394 void t4_os_portmod_changed(struct adapter *adap, int port_id); 1395 void t4_os_link_changed(struct adapter *adap, int port_id, int link_stat); 1396 1397 void t4_free_sge_resources(struct adapter *adap); 1398 void t4_free_ofld_rxqs(struct adapter *adap, int n, struct sge_ofld_rxq *q); 1399 irq_handler_t t4_intr_handler(struct adapter *adap); 1400 netdev_tx_t t4_start_xmit(struct sk_buff *skb, struct net_device *dev); 1401 int t4_ethrx_handler(struct sge_rspq *q, const __be64 *rsp, 1402 const struct pkt_gl *gl); 1403 int t4_mgmt_tx(struct adapter *adap, struct sk_buff *skb); 1404 int t4_ofld_send(struct adapter *adap, struct sk_buff *skb); 1405 int t4_sge_alloc_rxq(struct adapter *adap, struct sge_rspq *iq, bool fwevtq, 1406 struct net_device *dev, int intr_idx, 1407 struct sge_fl *fl, rspq_handler_t hnd, 1408 rspq_flush_handler_t flush_handler, int cong); 1409 int t4_sge_alloc_eth_txq(struct adapter *adap, struct sge_eth_txq *txq, 1410 struct net_device *dev, struct netdev_queue *netdevq, 1411 unsigned int iqid, u8 dbqt); 1412 int t4_sge_alloc_ctrl_txq(struct adapter *adap, struct sge_ctrl_txq *txq, 1413 struct net_device *dev, unsigned int iqid, 1414 unsigned int cmplqid); 1415 int t4_sge_mod_ctrl_txq(struct adapter *adap, unsigned int eqid, 1416 unsigned int cmplqid); 1417 int t4_sge_alloc_uld_txq(struct adapter *adap, struct sge_uld_txq *txq, 1418 struct net_device *dev, unsigned int iqid, 1419 unsigned int uld_type); 1420 irqreturn_t t4_sge_intr_msix(int irq, void *cookie); 1421 int t4_sge_init(struct adapter *adap); 1422 void t4_sge_start(struct adapter *adap); 1423 void t4_sge_stop(struct adapter *adap); 1424 int t4_sge_eth_txq_egress_update(struct adapter *adap, struct sge_eth_txq *q, 1425 int maxreclaim); 1426 void cxgb4_set_ethtool_ops(struct net_device *netdev); 1427 int cxgb4_write_rss(const struct port_info *pi, const u16 *queues); 1428 enum cpl_tx_tnl_lso_type cxgb_encap_offload_supported(struct sk_buff *skb); 1429 extern int dbfifo_int_thresh; 1430 1431 #define for_each_port(adapter, iter) \ 1432 for (iter = 0; iter < (adapter)->params.nports; ++iter) 1433 1434 static inline int is_bypass(struct adapter *adap) 1435 { 1436 return adap->params.bypass; 1437 } 1438 1439 static inline int is_bypass_device(int device) 1440 { 1441 /* this should be set based upon device capabilities */ 1442 switch (device) { 1443 case 0x440b: 1444 case 0x440c: 1445 return 1; 1446 default: 1447 return 0; 1448 } 1449 } 1450 1451 static inline int is_10gbt_device(int device) 1452 { 1453 /* this should be set based upon device capabilities */ 1454 switch (device) { 1455 case 0x4409: 1456 case 0x4486: 1457 return 1; 1458 1459 default: 1460 return 0; 1461 } 1462 } 1463 1464 static inline unsigned int core_ticks_per_usec(const struct adapter *adap) 1465 { 1466 return adap->params.vpd.cclk / 1000; 1467 } 1468 1469 static inline unsigned int us_to_core_ticks(const struct adapter *adap, 1470 unsigned int us) 1471 { 1472 return (us * adap->params.vpd.cclk) / 1000; 1473 } 1474 1475 static inline unsigned int core_ticks_to_us(const struct adapter *adapter, 1476 unsigned int ticks) 1477 { 1478 /* add Core Clock / 2 to round ticks to nearest uS */ 1479 return ((ticks * 1000 + adapter->params.vpd.cclk/2) / 1480 adapter->params.vpd.cclk); 1481 } 1482 1483 static inline unsigned int dack_ticks_to_usec(const struct adapter *adap, 1484 unsigned int ticks) 1485 { 1486 return (ticks << adap->params.tp.dack_re) / core_ticks_per_usec(adap); 1487 } 1488 1489 void t4_set_reg_field(struct adapter *adap, unsigned int addr, u32 mask, 1490 u32 val); 1491 1492 int t4_wr_mbox_meat_timeout(struct adapter *adap, int mbox, const void *cmd, 1493 int size, void *rpl, bool sleep_ok, int timeout); 1494 int t4_wr_mbox_meat(struct adapter *adap, int mbox, const void *cmd, int size, 1495 void *rpl, bool sleep_ok); 1496 1497 static inline int t4_wr_mbox_timeout(struct adapter *adap, int mbox, 1498 const void *cmd, int size, void *rpl, 1499 int timeout) 1500 { 1501 return t4_wr_mbox_meat_timeout(adap, mbox, cmd, size, rpl, true, 1502 timeout); 1503 } 1504 1505 static inline int t4_wr_mbox(struct adapter *adap, int mbox, const void *cmd, 1506 int size, void *rpl) 1507 { 1508 return t4_wr_mbox_meat(adap, mbox, cmd, size, rpl, true); 1509 } 1510 1511 static inline int t4_wr_mbox_ns(struct adapter *adap, int mbox, const void *cmd, 1512 int size, void *rpl) 1513 { 1514 return t4_wr_mbox_meat(adap, mbox, cmd, size, rpl, false); 1515 } 1516 1517 /** 1518 * hash_mac_addr - return the hash value of a MAC address 1519 * @addr: the 48-bit Ethernet MAC address 1520 * 1521 * Hashes a MAC address according to the hash function used by HW inexact 1522 * (hash) address matching. 1523 */ 1524 static inline int hash_mac_addr(const u8 *addr) 1525 { 1526 u32 a = ((u32)addr[0] << 16) | ((u32)addr[1] << 8) | addr[2]; 1527 u32 b = ((u32)addr[3] << 16) | ((u32)addr[4] << 8) | addr[5]; 1528 1529 a ^= b; 1530 a ^= (a >> 12); 1531 a ^= (a >> 6); 1532 return a & 0x3f; 1533 } 1534 1535 int cxgb4_set_rspq_intr_params(struct sge_rspq *q, unsigned int us, 1536 unsigned int cnt); 1537 static inline void init_rspq(struct adapter *adap, struct sge_rspq *q, 1538 unsigned int us, unsigned int cnt, 1539 unsigned int size, unsigned int iqe_size) 1540 { 1541 q->adap = adap; 1542 cxgb4_set_rspq_intr_params(q, us, cnt); 1543 q->iqe_len = iqe_size; 1544 q->size = size; 1545 } 1546 1547 /** 1548 * t4_is_inserted_mod_type - is a plugged in Firmware Module Type 1549 * @fw_mod_type: the Firmware Mofule Type 1550 * 1551 * Return whether the Firmware Module Type represents a real Transceiver 1552 * Module/Cable Module Type which has been inserted. 1553 */ 1554 static inline bool t4_is_inserted_mod_type(unsigned int fw_mod_type) 1555 { 1556 return (fw_mod_type != FW_PORT_MOD_TYPE_NONE && 1557 fw_mod_type != FW_PORT_MOD_TYPE_NOTSUPPORTED && 1558 fw_mod_type != FW_PORT_MOD_TYPE_UNKNOWN && 1559 fw_mod_type != FW_PORT_MOD_TYPE_ERROR); 1560 } 1561 1562 void t4_write_indirect(struct adapter *adap, unsigned int addr_reg, 1563 unsigned int data_reg, const u32 *vals, 1564 unsigned int nregs, unsigned int start_idx); 1565 void t4_read_indirect(struct adapter *adap, unsigned int addr_reg, 1566 unsigned int data_reg, u32 *vals, unsigned int nregs, 1567 unsigned int start_idx); 1568 void t4_hw_pci_read_cfg4(struct adapter *adapter, int reg, u32 *val); 1569 1570 struct fw_filter_wr; 1571 1572 void t4_intr_enable(struct adapter *adapter); 1573 void t4_intr_disable(struct adapter *adapter); 1574 int t4_slow_intr_handler(struct adapter *adapter); 1575 1576 int t4_wait_dev_ready(void __iomem *regs); 1577 1578 fw_port_cap32_t t4_link_acaps(struct adapter *adapter, unsigned int port, 1579 struct link_config *lc); 1580 int t4_link_l1cfg_core(struct adapter *adap, unsigned int mbox, 1581 unsigned int port, struct link_config *lc, 1582 u8 sleep_ok, int timeout); 1583 1584 static inline int t4_link_l1cfg(struct adapter *adapter, unsigned int mbox, 1585 unsigned int port, struct link_config *lc) 1586 { 1587 return t4_link_l1cfg_core(adapter, mbox, port, lc, 1588 true, FW_CMD_MAX_TIMEOUT); 1589 } 1590 1591 static inline int t4_link_l1cfg_ns(struct adapter *adapter, unsigned int mbox, 1592 unsigned int port, struct link_config *lc) 1593 { 1594 return t4_link_l1cfg_core(adapter, mbox, port, lc, 1595 false, FW_CMD_MAX_TIMEOUT); 1596 } 1597 1598 int t4_restart_aneg(struct adapter *adap, unsigned int mbox, unsigned int port); 1599 1600 u32 t4_read_pcie_cfg4(struct adapter *adap, int reg); 1601 u32 t4_get_util_window(struct adapter *adap); 1602 void t4_setup_memwin(struct adapter *adap, u32 memwin_base, u32 window); 1603 1604 int t4_memory_rw_init(struct adapter *adap, int win, int mtype, u32 *mem_off, 1605 u32 *mem_base, u32 *mem_aperture); 1606 void t4_memory_update_win(struct adapter *adap, int win, u32 addr); 1607 void t4_memory_rw_residual(struct adapter *adap, u32 off, u32 addr, u8 *buf, 1608 int dir); 1609 #define T4_MEMORY_WRITE 0 1610 #define T4_MEMORY_READ 1 1611 int t4_memory_rw(struct adapter *adap, int win, int mtype, u32 addr, u32 len, 1612 void *buf, int dir); 1613 static inline int t4_memory_write(struct adapter *adap, int mtype, u32 addr, 1614 u32 len, __be32 *buf) 1615 { 1616 return t4_memory_rw(adap, 0, mtype, addr, len, buf, 0); 1617 } 1618 1619 unsigned int t4_get_regs_len(struct adapter *adapter); 1620 void t4_get_regs(struct adapter *adap, void *buf, size_t buf_size); 1621 1622 int t4_eeprom_ptov(unsigned int phys_addr, unsigned int fn, unsigned int sz); 1623 int t4_seeprom_wp(struct adapter *adapter, bool enable); 1624 int t4_get_raw_vpd_params(struct adapter *adapter, struct vpd_params *p); 1625 int t4_get_vpd_params(struct adapter *adapter, struct vpd_params *p); 1626 int t4_get_pfres(struct adapter *adapter); 1627 int t4_read_flash(struct adapter *adapter, unsigned int addr, 1628 unsigned int nwords, u32 *data, int byte_oriented); 1629 int t4_load_fw(struct adapter *adapter, const u8 *fw_data, unsigned int size); 1630 int t4_load_phy_fw(struct adapter *adap, 1631 int win, spinlock_t *lock, 1632 int (*phy_fw_version)(const u8 *, size_t), 1633 const u8 *phy_fw_data, size_t phy_fw_size); 1634 int t4_phy_fw_ver(struct adapter *adap, int *phy_fw_ver); 1635 int t4_fwcache(struct adapter *adap, enum fw_params_param_dev_fwcache op); 1636 int t4_fw_upgrade(struct adapter *adap, unsigned int mbox, 1637 const u8 *fw_data, unsigned int size, int force); 1638 int t4_fl_pkt_align(struct adapter *adap); 1639 unsigned int t4_flash_cfg_addr(struct adapter *adapter); 1640 int t4_check_fw_version(struct adapter *adap); 1641 int t4_load_cfg(struct adapter *adapter, const u8 *cfg_data, unsigned int size); 1642 int t4_get_fw_version(struct adapter *adapter, u32 *vers); 1643 int t4_get_bs_version(struct adapter *adapter, u32 *vers); 1644 int t4_get_tp_version(struct adapter *adapter, u32 *vers); 1645 int t4_get_exprom_version(struct adapter *adapter, u32 *vers); 1646 int t4_get_scfg_version(struct adapter *adapter, u32 *vers); 1647 int t4_get_vpd_version(struct adapter *adapter, u32 *vers); 1648 int t4_get_version_info(struct adapter *adapter); 1649 void t4_dump_version_info(struct adapter *adapter); 1650 int t4_prep_fw(struct adapter *adap, struct fw_info *fw_info, 1651 const u8 *fw_data, unsigned int fw_size, 1652 struct fw_hdr *card_fw, enum dev_state state, int *reset); 1653 int t4_prep_adapter(struct adapter *adapter); 1654 int t4_shutdown_adapter(struct adapter *adapter); 1655 1656 enum t4_bar2_qtype { T4_BAR2_QTYPE_EGRESS, T4_BAR2_QTYPE_INGRESS }; 1657 int t4_bar2_sge_qregs(struct adapter *adapter, 1658 unsigned int qid, 1659 enum t4_bar2_qtype qtype, 1660 int user, 1661 u64 *pbar2_qoffset, 1662 unsigned int *pbar2_qid); 1663 1664 unsigned int qtimer_val(const struct adapter *adap, 1665 const struct sge_rspq *q); 1666 1667 int t4_init_devlog_params(struct adapter *adapter); 1668 int t4_init_sge_params(struct adapter *adapter); 1669 int t4_init_tp_params(struct adapter *adap, bool sleep_ok); 1670 int t4_filter_field_shift(const struct adapter *adap, int filter_sel); 1671 int t4_init_rss_mode(struct adapter *adap, int mbox); 1672 int t4_init_portinfo(struct port_info *pi, int mbox, 1673 int port, int pf, int vf, u8 mac[]); 1674 int t4_port_init(struct adapter *adap, int mbox, int pf, int vf); 1675 void t4_fatal_err(struct adapter *adapter); 1676 unsigned int t4_chip_rss_size(struct adapter *adapter); 1677 int t4_config_rss_range(struct adapter *adapter, int mbox, unsigned int viid, 1678 int start, int n, const u16 *rspq, unsigned int nrspq); 1679 int t4_config_glbl_rss(struct adapter *adapter, int mbox, unsigned int mode, 1680 unsigned int flags); 1681 int t4_config_vi_rss(struct adapter *adapter, int mbox, unsigned int viid, 1682 unsigned int flags, unsigned int defq); 1683 int t4_read_rss(struct adapter *adapter, u16 *entries); 1684 void t4_read_rss_key(struct adapter *adapter, u32 *key, bool sleep_ok); 1685 void t4_write_rss_key(struct adapter *adap, const u32 *key, int idx, 1686 bool sleep_ok); 1687 void t4_read_rss_pf_config(struct adapter *adapter, unsigned int index, 1688 u32 *valp, bool sleep_ok); 1689 void t4_read_rss_vf_config(struct adapter *adapter, unsigned int index, 1690 u32 *vfl, u32 *vfh, bool sleep_ok); 1691 u32 t4_read_rss_pf_map(struct adapter *adapter, bool sleep_ok); 1692 u32 t4_read_rss_pf_mask(struct adapter *adapter, bool sleep_ok); 1693 1694 unsigned int t4_get_mps_bg_map(struct adapter *adapter, int pidx); 1695 unsigned int t4_get_tp_ch_map(struct adapter *adapter, int pidx); 1696 void t4_pmtx_get_stats(struct adapter *adap, u32 cnt[], u64 cycles[]); 1697 void t4_pmrx_get_stats(struct adapter *adap, u32 cnt[], u64 cycles[]); 1698 int t4_read_cim_ibq(struct adapter *adap, unsigned int qid, u32 *data, 1699 size_t n); 1700 int t4_read_cim_obq(struct adapter *adap, unsigned int qid, u32 *data, 1701 size_t n); 1702 int t4_cim_read(struct adapter *adap, unsigned int addr, unsigned int n, 1703 unsigned int *valp); 1704 int t4_cim_write(struct adapter *adap, unsigned int addr, unsigned int n, 1705 const unsigned int *valp); 1706 int t4_cim_read_la(struct adapter *adap, u32 *la_buf, unsigned int *wrptr); 1707 void t4_cim_read_pif_la(struct adapter *adap, u32 *pif_req, u32 *pif_rsp, 1708 unsigned int *pif_req_wrptr, 1709 unsigned int *pif_rsp_wrptr); 1710 void t4_cim_read_ma_la(struct adapter *adap, u32 *ma_req, u32 *ma_rsp); 1711 void t4_read_cimq_cfg(struct adapter *adap, u16 *base, u16 *size, u16 *thres); 1712 const char *t4_get_port_type_description(enum fw_port_type port_type); 1713 void t4_get_port_stats(struct adapter *adap, int idx, struct port_stats *p); 1714 void t4_get_port_stats_offset(struct adapter *adap, int idx, 1715 struct port_stats *stats, 1716 struct port_stats *offset); 1717 void t4_get_lb_stats(struct adapter *adap, int idx, struct lb_port_stats *p); 1718 void t4_read_mtu_tbl(struct adapter *adap, u16 *mtus, u8 *mtu_log); 1719 void t4_read_cong_tbl(struct adapter *adap, u16 incr[NMTUS][NCCTRL_WIN]); 1720 void t4_tp_wr_bits_indirect(struct adapter *adap, unsigned int addr, 1721 unsigned int mask, unsigned int val); 1722 void t4_tp_read_la(struct adapter *adap, u64 *la_buf, unsigned int *wrptr); 1723 void t4_tp_get_err_stats(struct adapter *adap, struct tp_err_stats *st, 1724 bool sleep_ok); 1725 void t4_tp_get_cpl_stats(struct adapter *adap, struct tp_cpl_stats *st, 1726 bool sleep_ok); 1727 void t4_tp_get_rdma_stats(struct adapter *adap, struct tp_rdma_stats *st, 1728 bool sleep_ok); 1729 void t4_get_usm_stats(struct adapter *adap, struct tp_usm_stats *st, 1730 bool sleep_ok); 1731 void t4_tp_get_tcp_stats(struct adapter *adap, struct tp_tcp_stats *v4, 1732 struct tp_tcp_stats *v6, bool sleep_ok); 1733 void t4_get_fcoe_stats(struct adapter *adap, unsigned int idx, 1734 struct tp_fcoe_stats *st, bool sleep_ok); 1735 void t4_load_mtus(struct adapter *adap, const unsigned short *mtus, 1736 const unsigned short *alpha, const unsigned short *beta); 1737 1738 void t4_ulprx_read_la(struct adapter *adap, u32 *la_buf); 1739 1740 void t4_get_chan_txrate(struct adapter *adap, u64 *nic_rate, u64 *ofld_rate); 1741 void t4_mk_filtdelwr(unsigned int ftid, struct fw_filter_wr *wr, int qid); 1742 1743 void t4_wol_magic_enable(struct adapter *adap, unsigned int port, 1744 const u8 *addr); 1745 int t4_wol_pat_enable(struct adapter *adap, unsigned int port, unsigned int map, 1746 u64 mask0, u64 mask1, unsigned int crc, bool enable); 1747 1748 int t4_fw_hello(struct adapter *adap, unsigned int mbox, unsigned int evt_mbox, 1749 enum dev_master master, enum dev_state *state); 1750 int t4_fw_bye(struct adapter *adap, unsigned int mbox); 1751 int t4_early_init(struct adapter *adap, unsigned int mbox); 1752 int t4_fw_reset(struct adapter *adap, unsigned int mbox, int reset); 1753 int t4_fixup_host_params(struct adapter *adap, unsigned int page_size, 1754 unsigned int cache_line_size); 1755 int t4_fw_initialize(struct adapter *adap, unsigned int mbox); 1756 int t4_query_params(struct adapter *adap, unsigned int mbox, unsigned int pf, 1757 unsigned int vf, unsigned int nparams, const u32 *params, 1758 u32 *val); 1759 int t4_query_params_ns(struct adapter *adap, unsigned int mbox, unsigned int pf, 1760 unsigned int vf, unsigned int nparams, const u32 *params, 1761 u32 *val); 1762 int t4_query_params_rw(struct adapter *adap, unsigned int mbox, unsigned int pf, 1763 unsigned int vf, unsigned int nparams, const u32 *params, 1764 u32 *val, int rw, bool sleep_ok); 1765 int t4_set_params_timeout(struct adapter *adap, unsigned int mbox, 1766 unsigned int pf, unsigned int vf, 1767 unsigned int nparams, const u32 *params, 1768 const u32 *val, int timeout); 1769 int t4_set_params(struct adapter *adap, unsigned int mbox, unsigned int pf, 1770 unsigned int vf, unsigned int nparams, const u32 *params, 1771 const u32 *val); 1772 int t4_cfg_pfvf(struct adapter *adap, unsigned int mbox, unsigned int pf, 1773 unsigned int vf, unsigned int txq, unsigned int txq_eth_ctrl, 1774 unsigned int rxqi, unsigned int rxq, unsigned int tc, 1775 unsigned int vi, unsigned int cmask, unsigned int pmask, 1776 unsigned int nexact, unsigned int rcaps, unsigned int wxcaps); 1777 int t4_alloc_vi(struct adapter *adap, unsigned int mbox, unsigned int port, 1778 unsigned int pf, unsigned int vf, unsigned int nmac, u8 *mac, 1779 unsigned int *rss_size, u8 *vivld, u8 *vin); 1780 int t4_free_vi(struct adapter *adap, unsigned int mbox, 1781 unsigned int pf, unsigned int vf, 1782 unsigned int viid); 1783 int t4_set_rxmode(struct adapter *adap, unsigned int mbox, unsigned int viid, 1784 int mtu, int promisc, int all_multi, int bcast, int vlanex, 1785 bool sleep_ok); 1786 int t4_free_raw_mac_filt(struct adapter *adap, unsigned int viid, 1787 const u8 *addr, const u8 *mask, unsigned int idx, 1788 u8 lookup_type, u8 port_id, bool sleep_ok); 1789 int t4_free_encap_mac_filt(struct adapter *adap, unsigned int viid, int idx, 1790 bool sleep_ok); 1791 int t4_alloc_encap_mac_filt(struct adapter *adap, unsigned int viid, 1792 const u8 *addr, const u8 *mask, unsigned int vni, 1793 unsigned int vni_mask, u8 dip_hit, u8 lookup_type, 1794 bool sleep_ok); 1795 int t4_alloc_raw_mac_filt(struct adapter *adap, unsigned int viid, 1796 const u8 *addr, const u8 *mask, unsigned int idx, 1797 u8 lookup_type, u8 port_id, bool sleep_ok); 1798 int t4_alloc_mac_filt(struct adapter *adap, unsigned int mbox, 1799 unsigned int viid, bool free, unsigned int naddr, 1800 const u8 **addr, u16 *idx, u64 *hash, bool sleep_ok); 1801 int t4_free_mac_filt(struct adapter *adap, unsigned int mbox, 1802 unsigned int viid, unsigned int naddr, 1803 const u8 **addr, bool sleep_ok); 1804 int t4_change_mac(struct adapter *adap, unsigned int mbox, unsigned int viid, 1805 int idx, const u8 *addr, bool persist, u8 *smt_idx); 1806 int t4_set_addr_hash(struct adapter *adap, unsigned int mbox, unsigned int viid, 1807 bool ucast, u64 vec, bool sleep_ok); 1808 int t4_enable_vi_params(struct adapter *adap, unsigned int mbox, 1809 unsigned int viid, bool rx_en, bool tx_en, bool dcb_en); 1810 int t4_enable_pi_params(struct adapter *adap, unsigned int mbox, 1811 struct port_info *pi, 1812 bool rx_en, bool tx_en, bool dcb_en); 1813 int t4_enable_vi(struct adapter *adap, unsigned int mbox, unsigned int viid, 1814 bool rx_en, bool tx_en); 1815 int t4_identify_port(struct adapter *adap, unsigned int mbox, unsigned int viid, 1816 unsigned int nblinks); 1817 int t4_mdio_rd(struct adapter *adap, unsigned int mbox, unsigned int phy_addr, 1818 unsigned int mmd, unsigned int reg, u16 *valp); 1819 int t4_mdio_wr(struct adapter *adap, unsigned int mbox, unsigned int phy_addr, 1820 unsigned int mmd, unsigned int reg, u16 val); 1821 int t4_iq_stop(struct adapter *adap, unsigned int mbox, unsigned int pf, 1822 unsigned int vf, unsigned int iqtype, unsigned int iqid, 1823 unsigned int fl0id, unsigned int fl1id); 1824 int t4_iq_free(struct adapter *adap, unsigned int mbox, unsigned int pf, 1825 unsigned int vf, unsigned int iqtype, unsigned int iqid, 1826 unsigned int fl0id, unsigned int fl1id); 1827 int t4_eth_eq_free(struct adapter *adap, unsigned int mbox, unsigned int pf, 1828 unsigned int vf, unsigned int eqid); 1829 int t4_ctrl_eq_free(struct adapter *adap, unsigned int mbox, unsigned int pf, 1830 unsigned int vf, unsigned int eqid); 1831 int t4_ofld_eq_free(struct adapter *adap, unsigned int mbox, unsigned int pf, 1832 unsigned int vf, unsigned int eqid); 1833 int t4_sge_ctxt_flush(struct adapter *adap, unsigned int mbox, int ctxt_type); 1834 int t4_read_sge_dbqtimers(struct adapter *adap, unsigned int ndbqtimers, 1835 u16 *dbqtimers); 1836 void t4_handle_get_port_info(struct port_info *pi, const __be64 *rpl); 1837 int t4_update_port_info(struct port_info *pi); 1838 int t4_get_link_params(struct port_info *pi, unsigned int *link_okp, 1839 unsigned int *speedp, unsigned int *mtup); 1840 int t4_handle_fw_rpl(struct adapter *adap, const __be64 *rpl); 1841 void t4_db_full(struct adapter *adapter); 1842 void t4_db_dropped(struct adapter *adapter); 1843 int t4_set_trace_filter(struct adapter *adapter, const struct trace_params *tp, 1844 int filter_index, int enable); 1845 void t4_get_trace_filter(struct adapter *adapter, struct trace_params *tp, 1846 int filter_index, int *enabled); 1847 int t4_fwaddrspace_write(struct adapter *adap, unsigned int mbox, 1848 u32 addr, u32 val); 1849 void t4_read_pace_tbl(struct adapter *adap, unsigned int pace_vals[NTX_SCHED]); 1850 void t4_get_tx_sched(struct adapter *adap, unsigned int sched, 1851 unsigned int *kbps, unsigned int *ipg, bool sleep_ok); 1852 int t4_sge_ctxt_rd(struct adapter *adap, unsigned int mbox, unsigned int cid, 1853 enum ctxt_type ctype, u32 *data); 1854 int t4_sge_ctxt_rd_bd(struct adapter *adap, unsigned int cid, 1855 enum ctxt_type ctype, u32 *data); 1856 int t4_sched_params(struct adapter *adapter, int type, int level, int mode, 1857 int rateunit, int ratemode, int channel, int class, 1858 int minrate, int maxrate, int weight, int pktsize); 1859 void t4_sge_decode_idma_state(struct adapter *adapter, int state); 1860 void t4_idma_monitor_init(struct adapter *adapter, 1861 struct sge_idma_monitor_state *idma); 1862 void t4_idma_monitor(struct adapter *adapter, 1863 struct sge_idma_monitor_state *idma, 1864 int hz, int ticks); 1865 int t4_set_vf_mac_acl(struct adapter *adapter, unsigned int vf, 1866 unsigned int naddr, u8 *addr); 1867 void t4_tp_pio_read(struct adapter *adap, u32 *buff, u32 nregs, 1868 u32 start_index, bool sleep_ok); 1869 void t4_tp_tm_pio_read(struct adapter *adap, u32 *buff, u32 nregs, 1870 u32 start_index, bool sleep_ok); 1871 void t4_tp_mib_read(struct adapter *adap, u32 *buff, u32 nregs, 1872 u32 start_index, bool sleep_ok); 1873 1874 void t4_uld_mem_free(struct adapter *adap); 1875 int t4_uld_mem_alloc(struct adapter *adap); 1876 void t4_uld_clean_up(struct adapter *adap); 1877 void t4_register_netevent_notifier(void); 1878 int t4_i2c_rd(struct adapter *adap, unsigned int mbox, int port, 1879 unsigned int devid, unsigned int offset, 1880 unsigned int len, u8 *buf); 1881 void free_rspq_fl(struct adapter *adap, struct sge_rspq *rq, struct sge_fl *fl); 1882 void free_tx_desc(struct adapter *adap, struct sge_txq *q, 1883 unsigned int n, bool unmap); 1884 void free_txq(struct adapter *adap, struct sge_txq *q); 1885 void cxgb4_reclaim_completed_tx(struct adapter *adap, 1886 struct sge_txq *q, bool unmap); 1887 int cxgb4_map_skb(struct device *dev, const struct sk_buff *skb, 1888 dma_addr_t *addr); 1889 void cxgb4_inline_tx_skb(const struct sk_buff *skb, const struct sge_txq *q, 1890 void *pos); 1891 void cxgb4_write_sgl(const struct sk_buff *skb, struct sge_txq *q, 1892 struct ulptx_sgl *sgl, u64 *end, unsigned int start, 1893 const dma_addr_t *addr); 1894 void cxgb4_ring_tx_db(struct adapter *adap, struct sge_txq *q, int n); 1895 int t4_set_vlan_acl(struct adapter *adap, unsigned int mbox, unsigned int vf, 1896 u16 vlan); 1897 int cxgb4_dcb_enabled(const struct net_device *dev); 1898 1899 int cxgb4_thermal_init(struct adapter *adap); 1900 int cxgb4_thermal_remove(struct adapter *adap); 1901 1902 #endif /* __CXGB4_H__ */ 1903