1 #ifndef _CHIP_H 2 #define _CHIP_H 3 /* 4 * Copyright(c) 2015 - 2017 Intel Corporation. 5 * 6 * This file is provided under a dual BSD/GPLv2 license. When using or 7 * redistributing this file, you may do so under either license. 8 * 9 * GPL LICENSE SUMMARY 10 * 11 * This program is free software; you can redistribute it and/or modify 12 * it under the terms of version 2 of the GNU General Public License as 13 * published by the Free Software Foundation. 14 * 15 * This program is distributed in the hope that it will be useful, but 16 * WITHOUT ANY WARRANTY; without even the implied warranty of 17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU 18 * General Public License for more details. 19 * 20 * BSD LICENSE 21 * 22 * Redistribution and use in source and binary forms, with or without 23 * modification, are permitted provided that the following conditions 24 * are met: 25 * 26 * - Redistributions of source code must retain the above copyright 27 * notice, this list of conditions and the following disclaimer. 28 * - Redistributions in binary form must reproduce the above copyright 29 * notice, this list of conditions and the following disclaimer in 30 * the documentation and/or other materials provided with the 31 * distribution. 32 * - Neither the name of Intel Corporation nor the names of its 33 * contributors may be used to endorse or promote products derived 34 * from this software without specific prior written permission. 35 * 36 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 37 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 38 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR 39 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 40 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 41 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT 42 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 43 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 44 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 45 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 46 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 47 * 48 */ 49 50 /* 51 * This file contains all of the defines that is specific to the HFI chip 52 */ 53 54 /* sizes */ 55 #define CCE_NUM_MSIX_VECTORS 256 56 #define CCE_NUM_INT_CSRS 12 57 #define CCE_NUM_INT_MAP_CSRS 96 58 #define NUM_INTERRUPT_SOURCES 768 59 #define RXE_NUM_CONTEXTS 160 60 #define RXE_PER_CONTEXT_SIZE 0x1000 /* 4k */ 61 #define RXE_NUM_TID_FLOWS 32 62 #define RXE_NUM_DATA_VL 8 63 #define TXE_NUM_CONTEXTS 160 64 #define TXE_NUM_SDMA_ENGINES 16 65 #define NUM_CONTEXTS_PER_SET 8 66 #define VL_ARB_HIGH_PRIO_TABLE_SIZE 16 67 #define VL_ARB_LOW_PRIO_TABLE_SIZE 16 68 #define VL_ARB_TABLE_SIZE 16 69 #define TXE_NUM_32_BIT_COUNTER 7 70 #define TXE_NUM_64_BIT_COUNTER 30 71 #define TXE_NUM_DATA_VL 8 72 #define TXE_PIO_SIZE (32 * 0x100000) /* 32 MB */ 73 #define PIO_BLOCK_SIZE 64 /* bytes */ 74 #define SDMA_BLOCK_SIZE 64 /* bytes */ 75 #define RCV_BUF_BLOCK_SIZE 64 /* bytes */ 76 #define PIO_CMASK 0x7ff /* counter mask for free and fill counters */ 77 #define MAX_EAGER_ENTRIES 2048 /* max receive eager entries */ 78 #define MAX_TID_PAIR_ENTRIES 1024 /* max receive expected pairs */ 79 /* 80 * Virtual? Allocation Unit, defined as AU = 8*2^vAU, 64 bytes, AU is fixed 81 * at 64 bytes for all generation one devices 82 */ 83 #define CM_VAU 3 84 /* HFI link credit count, AKA receive buffer depth (RBUF_DEPTH) */ 85 #define CM_GLOBAL_CREDITS 0x880 86 /* Number of PKey entries in the HW */ 87 #define MAX_PKEY_VALUES 16 88 89 #include "chip_registers.h" 90 91 #define RXE_PER_CONTEXT_USER (RXE + RXE_PER_CONTEXT_OFFSET) 92 #define TXE_PIO_SEND (TXE + TXE_PIO_SEND_OFFSET) 93 94 /* PBC flags */ 95 #define PBC_INTR BIT_ULL(31) 96 #define PBC_DC_INFO_SHIFT (30) 97 #define PBC_DC_INFO BIT_ULL(PBC_DC_INFO_SHIFT) 98 #define PBC_TEST_EBP BIT_ULL(29) 99 #define PBC_PACKET_BYPASS BIT_ULL(28) 100 #define PBC_CREDIT_RETURN BIT_ULL(25) 101 #define PBC_INSERT_BYPASS_ICRC BIT_ULL(24) 102 #define PBC_TEST_BAD_ICRC BIT_ULL(23) 103 #define PBC_FECN BIT_ULL(22) 104 105 /* PbcInsertHcrc field settings */ 106 #define PBC_IHCRC_LKDETH 0x0 /* insert @ local KDETH offset */ 107 #define PBC_IHCRC_GKDETH 0x1 /* insert @ global KDETH offset */ 108 #define PBC_IHCRC_NONE 0x2 /* no HCRC inserted */ 109 110 /* PBC fields */ 111 #define PBC_STATIC_RATE_CONTROL_COUNT_SHIFT 32 112 #define PBC_STATIC_RATE_CONTROL_COUNT_MASK 0xffffull 113 #define PBC_STATIC_RATE_CONTROL_COUNT_SMASK \ 114 (PBC_STATIC_RATE_CONTROL_COUNT_MASK << \ 115 PBC_STATIC_RATE_CONTROL_COUNT_SHIFT) 116 117 #define PBC_INSERT_HCRC_SHIFT 26 118 #define PBC_INSERT_HCRC_MASK 0x3ull 119 #define PBC_INSERT_HCRC_SMASK \ 120 (PBC_INSERT_HCRC_MASK << PBC_INSERT_HCRC_SHIFT) 121 122 #define PBC_VL_SHIFT 12 123 #define PBC_VL_MASK 0xfull 124 #define PBC_VL_SMASK (PBC_VL_MASK << PBC_VL_SHIFT) 125 126 #define PBC_LENGTH_DWS_SHIFT 0 127 #define PBC_LENGTH_DWS_MASK 0xfffull 128 #define PBC_LENGTH_DWS_SMASK \ 129 (PBC_LENGTH_DWS_MASK << PBC_LENGTH_DWS_SHIFT) 130 131 /* Credit Return Fields */ 132 #define CR_COUNTER_SHIFT 0 133 #define CR_COUNTER_MASK 0x7ffull 134 #define CR_COUNTER_SMASK (CR_COUNTER_MASK << CR_COUNTER_SHIFT) 135 136 #define CR_STATUS_SHIFT 11 137 #define CR_STATUS_MASK 0x1ull 138 #define CR_STATUS_SMASK (CR_STATUS_MASK << CR_STATUS_SHIFT) 139 140 #define CR_CREDIT_RETURN_DUE_TO_PBC_SHIFT 12 141 #define CR_CREDIT_RETURN_DUE_TO_PBC_MASK 0x1ull 142 #define CR_CREDIT_RETURN_DUE_TO_PBC_SMASK \ 143 (CR_CREDIT_RETURN_DUE_TO_PBC_MASK << \ 144 CR_CREDIT_RETURN_DUE_TO_PBC_SHIFT) 145 146 #define CR_CREDIT_RETURN_DUE_TO_THRESHOLD_SHIFT 13 147 #define CR_CREDIT_RETURN_DUE_TO_THRESHOLD_MASK 0x1ull 148 #define CR_CREDIT_RETURN_DUE_TO_THRESHOLD_SMASK \ 149 (CR_CREDIT_RETURN_DUE_TO_THRESHOLD_MASK << \ 150 CR_CREDIT_RETURN_DUE_TO_THRESHOLD_SHIFT) 151 152 #define CR_CREDIT_RETURN_DUE_TO_ERR_SHIFT 14 153 #define CR_CREDIT_RETURN_DUE_TO_ERR_MASK 0x1ull 154 #define CR_CREDIT_RETURN_DUE_TO_ERR_SMASK \ 155 (CR_CREDIT_RETURN_DUE_TO_ERR_MASK << \ 156 CR_CREDIT_RETURN_DUE_TO_ERR_SHIFT) 157 158 #define CR_CREDIT_RETURN_DUE_TO_FORCE_SHIFT 15 159 #define CR_CREDIT_RETURN_DUE_TO_FORCE_MASK 0x1ull 160 #define CR_CREDIT_RETURN_DUE_TO_FORCE_SMASK \ 161 (CR_CREDIT_RETURN_DUE_TO_FORCE_MASK << \ 162 CR_CREDIT_RETURN_DUE_TO_FORCE_SHIFT) 163 164 /* interrupt source numbers */ 165 #define IS_GENERAL_ERR_START 0 166 #define IS_SDMAENG_ERR_START 16 167 #define IS_SENDCTXT_ERR_START 32 168 #define IS_SDMA_START 192 /* includes SDmaProgress,SDmaIdle */ 169 #define IS_VARIOUS_START 240 170 #define IS_DC_START 248 171 #define IS_RCVAVAIL_START 256 172 #define IS_RCVURGENT_START 416 173 #define IS_SENDCREDIT_START 576 174 #define IS_RESERVED_START 736 175 #define IS_MAX_SOURCES 768 176 177 /* derived interrupt source values */ 178 #define IS_GENERAL_ERR_END IS_SDMAENG_ERR_START 179 #define IS_SDMAENG_ERR_END IS_SENDCTXT_ERR_START 180 #define IS_SENDCTXT_ERR_END IS_SDMA_START 181 #define IS_SDMA_END IS_VARIOUS_START 182 #define IS_VARIOUS_END IS_DC_START 183 #define IS_DC_END IS_RCVAVAIL_START 184 #define IS_RCVAVAIL_END IS_RCVURGENT_START 185 #define IS_RCVURGENT_END IS_SENDCREDIT_START 186 #define IS_SENDCREDIT_END IS_RESERVED_START 187 #define IS_RESERVED_END IS_MAX_SOURCES 188 189 /* absolute interrupt numbers for QSFP1Int and QSFP2Int */ 190 #define QSFP1_INT 242 191 #define QSFP2_INT 243 192 193 /* DCC_CFG_PORT_CONFIG logical link states */ 194 #define LSTATE_DOWN 0x1 195 #define LSTATE_INIT 0x2 196 #define LSTATE_ARMED 0x3 197 #define LSTATE_ACTIVE 0x4 198 199 /* DCC_CFG_RESET reset states */ 200 #define LCB_RX_FPE_TX_FPE_INTO_RESET (DCC_CFG_RESET_RESET_LCB | \ 201 DCC_CFG_RESET_RESET_TX_FPE | \ 202 DCC_CFG_RESET_RESET_RX_FPE | \ 203 DCC_CFG_RESET_ENABLE_CCLK_BCC) 204 /* 0x17 */ 205 206 #define LCB_RX_FPE_TX_FPE_OUT_OF_RESET DCC_CFG_RESET_ENABLE_CCLK_BCC /* 0x10 */ 207 208 /* DC8051_STS_CUR_STATE port values (physical link states) */ 209 #define PLS_DISABLED 0x30 210 #define PLS_OFFLINE 0x90 211 #define PLS_OFFLINE_QUIET 0x90 212 #define PLS_OFFLINE_PLANNED_DOWN_INFORM 0x91 213 #define PLS_OFFLINE_READY_TO_QUIET_LT 0x92 214 #define PLS_OFFLINE_REPORT_FAILURE 0x93 215 #define PLS_OFFLINE_READY_TO_QUIET_BCC 0x94 216 #define PLS_OFFLINE_QUIET_DURATION 0x95 217 #define PLS_POLLING 0x20 218 #define PLS_POLLING_QUIET 0x20 219 #define PLS_POLLING_ACTIVE 0x21 220 #define PLS_CONFIGPHY 0x40 221 #define PLS_CONFIGPHY_DEBOUCE 0x40 222 #define PLS_CONFIGPHY_ESTCOMM 0x41 223 #define PLS_CONFIGPHY_ESTCOMM_TXRX_HUNT 0x42 224 #define PLS_CONFIGPHY_ESTCOMM_LOCAL_COMPLETE 0x43 225 #define PLS_CONFIGPHY_OPTEQ 0x44 226 #define PLS_CONFIGPHY_OPTEQ_OPTIMIZING 0x44 227 #define PLS_CONFIGPHY_OPTEQ_LOCAL_COMPLETE 0x45 228 #define PLS_CONFIGPHY_VERIFYCAP 0x46 229 #define PLS_CONFIGPHY_VERIFYCAP_EXCHANGE 0x46 230 #define PLS_CONFIGPHY_VERIFYCAP_LOCAL_COMPLETE 0x47 231 #define PLS_CONFIGLT 0x48 232 #define PLS_CONFIGLT_CONFIGURE 0x48 233 #define PLS_CONFIGLT_LINK_TRANSFER_ACTIVE 0x49 234 #define PLS_LINKUP 0x50 235 #define PLS_PHYTEST 0xB0 236 #define PLS_INTERNAL_SERDES_LOOPBACK 0xe1 237 #define PLS_QUICK_LINKUP 0xe2 238 239 /* DC_DC8051_CFG_HOST_CMD_0.REQ_TYPE - 8051 host commands */ 240 #define HCMD_LOAD_CONFIG_DATA 0x01 241 #define HCMD_READ_CONFIG_DATA 0x02 242 #define HCMD_CHANGE_PHY_STATE 0x03 243 #define HCMD_SEND_LCB_IDLE_MSG 0x04 244 #define HCMD_MISC 0x05 245 #define HCMD_READ_LCB_IDLE_MSG 0x06 246 #define HCMD_READ_LCB_CSR 0x07 247 #define HCMD_WRITE_LCB_CSR 0x08 248 #define HCMD_INTERFACE_TEST 0xff 249 250 /* DC_DC8051_CFG_HOST_CMD_1.RETURN_CODE - 8051 host command return */ 251 #define HCMD_SUCCESS 2 252 253 /* DC_DC8051_DBG_ERR_INFO_SET_BY_8051.ERROR - error flags */ 254 #define SPICO_ROM_FAILED BIT(0) 255 #define UNKNOWN_FRAME BIT(1) 256 #define TARGET_BER_NOT_MET BIT(2) 257 #define FAILED_SERDES_INTERNAL_LOOPBACK BIT(3) 258 #define FAILED_SERDES_INIT BIT(4) 259 #define FAILED_LNI_POLLING BIT(5) 260 #define FAILED_LNI_DEBOUNCE BIT(6) 261 #define FAILED_LNI_ESTBCOMM BIT(7) 262 #define FAILED_LNI_OPTEQ BIT(8) 263 #define FAILED_LNI_VERIFY_CAP1 BIT(9) 264 #define FAILED_LNI_VERIFY_CAP2 BIT(10) 265 #define FAILED_LNI_CONFIGLT BIT(11) 266 #define HOST_HANDSHAKE_TIMEOUT BIT(12) 267 #define EXTERNAL_DEVICE_REQ_TIMEOUT BIT(13) 268 269 #define FAILED_LNI (FAILED_LNI_POLLING | FAILED_LNI_DEBOUNCE \ 270 | FAILED_LNI_ESTBCOMM | FAILED_LNI_OPTEQ \ 271 | FAILED_LNI_VERIFY_CAP1 \ 272 | FAILED_LNI_VERIFY_CAP2 \ 273 | FAILED_LNI_CONFIGLT | HOST_HANDSHAKE_TIMEOUT \ 274 | EXTERNAL_DEVICE_REQ_TIMEOUT) 275 276 /* DC_DC8051_DBG_ERR_INFO_SET_BY_8051.HOST_MSG - host message flags */ 277 #define HOST_REQ_DONE BIT(0) 278 #define BC_PWR_MGM_MSG BIT(1) 279 #define BC_SMA_MSG BIT(2) 280 #define BC_BCC_UNKNOWN_MSG BIT(3) 281 #define BC_IDLE_UNKNOWN_MSG BIT(4) 282 #define EXT_DEVICE_CFG_REQ BIT(5) 283 #define VERIFY_CAP_FRAME BIT(6) 284 #define LINKUP_ACHIEVED BIT(7) 285 #define LINK_GOING_DOWN BIT(8) 286 #define LINK_WIDTH_DOWNGRADED BIT(9) 287 288 /* DC_DC8051_CFG_EXT_DEV_1.REQ_TYPE - 8051 host requests */ 289 #define HREQ_LOAD_CONFIG 0x01 290 #define HREQ_SAVE_CONFIG 0x02 291 #define HREQ_READ_CONFIG 0x03 292 #define HREQ_SET_TX_EQ_ABS 0x04 293 #define HREQ_SET_TX_EQ_REL 0x05 294 #define HREQ_ENABLE 0x06 295 #define HREQ_LCB_RESET 0x07 296 #define HREQ_CONFIG_DONE 0xfe 297 #define HREQ_INTERFACE_TEST 0xff 298 299 /* DC_DC8051_CFG_EXT_DEV_0.RETURN_CODE - 8051 host request return codes */ 300 #define HREQ_INVALID 0x01 301 #define HREQ_SUCCESS 0x02 302 #define HREQ_NOT_SUPPORTED 0x03 303 #define HREQ_FEATURE_NOT_SUPPORTED 0x04 /* request specific feature */ 304 #define HREQ_REQUEST_REJECTED 0xfe 305 #define HREQ_EXECUTION_ONGOING 0xff 306 307 /* MISC host command functions */ 308 #define HCMD_MISC_REQUEST_LCB_ACCESS 0x1 309 #define HCMD_MISC_GRANT_LCB_ACCESS 0x2 310 311 /* idle flit message types */ 312 #define IDLE_PHYSICAL_LINK_MGMT 0x1 313 #define IDLE_CRU 0x2 314 #define IDLE_SMA 0x3 315 #define IDLE_POWER_MGMT 0x4 316 317 /* idle flit message send fields (both send and read) */ 318 #define IDLE_PAYLOAD_MASK 0xffffffffffull /* 40 bits */ 319 #define IDLE_PAYLOAD_SHIFT 8 320 #define IDLE_MSG_TYPE_MASK 0xf 321 #define IDLE_MSG_TYPE_SHIFT 0 322 323 /* idle flit message read fields */ 324 #define READ_IDLE_MSG_TYPE_MASK 0xf 325 #define READ_IDLE_MSG_TYPE_SHIFT 0 326 327 /* SMA idle flit payload commands */ 328 #define SMA_IDLE_ARM 1 329 #define SMA_IDLE_ACTIVE 2 330 331 /* DC_DC8051_CFG_MODE.GENERAL bits */ 332 #define DISABLE_SELF_GUID_CHECK 0x2 333 334 /* Bad L2 frame error code */ 335 #define BAD_L2_ERR 0x6 336 337 /* 338 * Eager buffer minimum and maximum sizes supported by the hardware. 339 * All power-of-two sizes in between are supported as well. 340 * MAX_EAGER_BUFFER_TOTAL is the maximum size of memory 341 * allocatable for Eager buffer to a single context. All others 342 * are limits for the RcvArray entries. 343 */ 344 #define MIN_EAGER_BUFFER (4 * 1024) 345 #define MAX_EAGER_BUFFER (256 * 1024) 346 #define MAX_EAGER_BUFFER_TOTAL (64 * (1 << 20)) /* max per ctxt 64MB */ 347 #define MAX_EXPECTED_BUFFER (2048 * 1024) 348 349 /* 350 * Receive expected base and count and eager base and count increment - 351 * the CSR fields hold multiples of this value. 352 */ 353 #define RCV_SHIFT 3 354 #define RCV_INCREMENT BIT(RCV_SHIFT) 355 356 /* 357 * Receive header queue entry increment - the CSR holds multiples of 358 * this value. 359 */ 360 #define HDRQ_SIZE_SHIFT 5 361 #define HDRQ_INCREMENT BIT(HDRQ_SIZE_SHIFT) 362 363 /* 364 * Freeze handling flags 365 */ 366 #define FREEZE_ABORT 0x01 /* do not do recovery */ 367 #define FREEZE_SELF 0x02 /* initiate the freeze */ 368 #define FREEZE_LINK_DOWN 0x04 /* link is down */ 369 370 /* 371 * Chip implementation codes. 372 */ 373 #define ICODE_RTL_SILICON 0x00 374 #define ICODE_RTL_VCS_SIMULATION 0x01 375 #define ICODE_FPGA_EMULATION 0x02 376 #define ICODE_FUNCTIONAL_SIMULATOR 0x03 377 378 /* 379 * 8051 data memory size. 380 */ 381 #define DC8051_DATA_MEM_SIZE 0x1000 382 383 /* 384 * 8051 firmware registers 385 */ 386 #define NUM_GENERAL_FIELDS 0x17 387 #define NUM_LANE_FIELDS 0x8 388 389 /* 8051 general register Field IDs */ 390 #define LINK_OPTIMIZATION_SETTINGS 0x00 391 #define LINK_TUNING_PARAMETERS 0x02 392 #define DC_HOST_COMM_SETTINGS 0x03 393 #define TX_SETTINGS 0x06 394 #define VERIFY_CAP_LOCAL_PHY 0x07 395 #define VERIFY_CAP_LOCAL_FABRIC 0x08 396 #define VERIFY_CAP_LOCAL_LINK_MODE 0x09 397 #define LOCAL_DEVICE_ID 0x0a 398 #define RESERVED_REGISTERS 0x0b 399 #define LOCAL_LNI_INFO 0x0c 400 #define REMOTE_LNI_INFO 0x0d 401 #define MISC_STATUS 0x0e 402 #define VERIFY_CAP_REMOTE_PHY 0x0f 403 #define VERIFY_CAP_REMOTE_FABRIC 0x10 404 #define VERIFY_CAP_REMOTE_LINK_WIDTH 0x11 405 #define LAST_LOCAL_STATE_COMPLETE 0x12 406 #define LAST_REMOTE_STATE_COMPLETE 0x13 407 #define LINK_QUALITY_INFO 0x14 408 #define REMOTE_DEVICE_ID 0x15 409 #define LINK_DOWN_REASON 0x16 /* first byte of offset 0x16 */ 410 #define VERSION_PATCH 0x16 /* last byte of offset 0x16 */ 411 412 /* 8051 lane specific register field IDs */ 413 #define TX_EQ_SETTINGS 0x00 414 #define CHANNEL_LOSS_SETTINGS 0x05 415 416 /* Lane ID for general configuration registers */ 417 #define GENERAL_CONFIG 4 418 419 /* LINK_TUNING_PARAMETERS fields */ 420 #define TUNING_METHOD_SHIFT 24 421 422 /* LINK_OPTIMIZATION_SETTINGS fields */ 423 #define ENABLE_EXT_DEV_CONFIG_SHIFT 24 424 425 /* LOAD_DATA 8051 command shifts and fields */ 426 #define LOAD_DATA_FIELD_ID_SHIFT 40 427 #define LOAD_DATA_FIELD_ID_MASK 0xfull 428 #define LOAD_DATA_LANE_ID_SHIFT 32 429 #define LOAD_DATA_LANE_ID_MASK 0xfull 430 #define LOAD_DATA_DATA_SHIFT 0x0 431 #define LOAD_DATA_DATA_MASK 0xffffffffull 432 433 /* READ_DATA 8051 command shifts and fields */ 434 #define READ_DATA_FIELD_ID_SHIFT 40 435 #define READ_DATA_FIELD_ID_MASK 0xffull 436 #define READ_DATA_LANE_ID_SHIFT 32 437 #define READ_DATA_LANE_ID_MASK 0xffull 438 #define READ_DATA_DATA_SHIFT 0x0 439 #define READ_DATA_DATA_MASK 0xffffffffull 440 441 /* TX settings fields */ 442 #define ENABLE_LANE_TX_SHIFT 0 443 #define ENABLE_LANE_TX_MASK 0xff 444 #define TX_POLARITY_INVERSION_SHIFT 8 445 #define TX_POLARITY_INVERSION_MASK 0xff 446 #define RX_POLARITY_INVERSION_SHIFT 16 447 #define RX_POLARITY_INVERSION_MASK 0xff 448 #define MAX_RATE_SHIFT 24 449 #define MAX_RATE_MASK 0xff 450 451 /* verify capability PHY fields */ 452 #define CONTINIOUS_REMOTE_UPDATE_SUPPORT_SHIFT 0x4 453 #define CONTINIOUS_REMOTE_UPDATE_SUPPORT_MASK 0x1 454 #define POWER_MANAGEMENT_SHIFT 0x0 455 #define POWER_MANAGEMENT_MASK 0xf 456 457 /* 8051 lane register Field IDs */ 458 #define SPICO_FW_VERSION 0x7 /* SPICO firmware version */ 459 460 /* SPICO firmware version fields */ 461 #define SPICO_ROM_VERSION_SHIFT 0 462 #define SPICO_ROM_VERSION_MASK 0xffff 463 #define SPICO_ROM_PROD_ID_SHIFT 16 464 #define SPICO_ROM_PROD_ID_MASK 0xffff 465 466 /* verify capability fabric fields */ 467 #define VAU_SHIFT 0 468 #define VAU_MASK 0x0007 469 #define Z_SHIFT 3 470 #define Z_MASK 0x0001 471 #define VCU_SHIFT 4 472 #define VCU_MASK 0x0007 473 #define VL15BUF_SHIFT 8 474 #define VL15BUF_MASK 0x0fff 475 #define CRC_SIZES_SHIFT 20 476 #define CRC_SIZES_MASK 0x7 477 478 /* verify capability local link width fields */ 479 #define LINK_WIDTH_SHIFT 0 /* also for remote link width */ 480 #define LINK_WIDTH_MASK 0xffff /* also for remote link width */ 481 #define LOCAL_FLAG_BITS_SHIFT 16 482 #define LOCAL_FLAG_BITS_MASK 0xff 483 #define MISC_CONFIG_BITS_SHIFT 24 484 #define MISC_CONFIG_BITS_MASK 0xff 485 486 /* verify capability remote link width fields */ 487 #define REMOTE_TX_RATE_SHIFT 16 488 #define REMOTE_TX_RATE_MASK 0xff 489 490 /* LOCAL_DEVICE_ID fields */ 491 #define LOCAL_DEVICE_REV_SHIFT 0 492 #define LOCAL_DEVICE_REV_MASK 0xff 493 #define LOCAL_DEVICE_ID_SHIFT 8 494 #define LOCAL_DEVICE_ID_MASK 0xffff 495 496 /* REMOTE_DEVICE_ID fields */ 497 #define REMOTE_DEVICE_REV_SHIFT 0 498 #define REMOTE_DEVICE_REV_MASK 0xff 499 #define REMOTE_DEVICE_ID_SHIFT 8 500 #define REMOTE_DEVICE_ID_MASK 0xffff 501 502 /* local LNI link width fields */ 503 #define ENABLE_LANE_RX_SHIFT 16 504 #define ENABLE_LANE_RX_MASK 0xff 505 506 /* mask, shift for reading 'mgmt_enabled' value from REMOTE_LNI_INFO field */ 507 #define MGMT_ALLOWED_SHIFT 23 508 #define MGMT_ALLOWED_MASK 0x1 509 510 /* mask, shift for 'link_quality' within LINK_QUALITY_INFO field */ 511 #define LINK_QUALITY_SHIFT 24 512 #define LINK_QUALITY_MASK 0x7 513 514 /* 515 * mask, shift for reading 'planned_down_remote_reason_code' 516 * from LINK_QUALITY_INFO field 517 */ 518 #define DOWN_REMOTE_REASON_SHIFT 16 519 #define DOWN_REMOTE_REASON_MASK 0xff 520 521 #define HOST_INTERFACE_VERSION 1 522 #define HOST_INTERFACE_VERSION_SHIFT 16 523 #define HOST_INTERFACE_VERSION_MASK 0xff 524 525 /* verify capability PHY power management bits */ 526 #define PWRM_BER_CONTROL 0x1 527 #define PWRM_BANDWIDTH_CONTROL 0x2 528 529 /* 8051 link down reasons */ 530 #define LDR_LINK_TRANSFER_ACTIVE_LOW 0xa 531 #define LDR_RECEIVED_LINKDOWN_IDLE_MSG 0xb 532 #define LDR_RECEIVED_HOST_OFFLINE_REQ 0xc 533 534 /* verify capability fabric CRC size bits */ 535 enum { 536 CAP_CRC_14B = (1 << 0), /* 14b CRC */ 537 CAP_CRC_48B = (1 << 1), /* 48b CRC */ 538 CAP_CRC_12B_16B_PER_LANE = (1 << 2) /* 12b-16b per lane CRC */ 539 }; 540 541 #define SUPPORTED_CRCS (CAP_CRC_14B | CAP_CRC_48B) 542 543 /* misc status version fields */ 544 #define STS_FM_VERSION_MINOR_SHIFT 16 545 #define STS_FM_VERSION_MINOR_MASK 0xff 546 #define STS_FM_VERSION_MAJOR_SHIFT 24 547 #define STS_FM_VERSION_MAJOR_MASK 0xff 548 #define STS_FM_VERSION_PATCH_SHIFT 24 549 #define STS_FM_VERSION_PATCH_MASK 0xff 550 551 /* LCB_CFG_CRC_MODE TX_VAL and RX_VAL CRC mode values */ 552 #define LCB_CRC_16B 0x0 /* 16b CRC */ 553 #define LCB_CRC_14B 0x1 /* 14b CRC */ 554 #define LCB_CRC_48B 0x2 /* 48b CRC */ 555 #define LCB_CRC_12B_16B_PER_LANE 0x3 /* 12b-16b per lane CRC */ 556 557 /* 558 * the following enum is (almost) a copy/paste of the definition 559 * in the OPA spec, section 20.2.2.6.8 (PortInfo) 560 */ 561 enum { 562 PORT_LTP_CRC_MODE_NONE = 0, 563 PORT_LTP_CRC_MODE_14 = 1, /* 14-bit LTP CRC mode (optional) */ 564 PORT_LTP_CRC_MODE_16 = 2, /* 16-bit LTP CRC mode */ 565 PORT_LTP_CRC_MODE_48 = 4, 566 /* 48-bit overlapping LTP CRC mode (optional) */ 567 PORT_LTP_CRC_MODE_PER_LANE = 8 568 /* 12 to 16 bit per lane LTP CRC mode (optional) */ 569 }; 570 571 /* timeouts */ 572 #define LINK_RESTART_DELAY 1000 /* link restart delay, in ms */ 573 #define TIMEOUT_8051_START 5000 /* 8051 start timeout, in ms */ 574 #define DC8051_COMMAND_TIMEOUT 1000 /* DC8051 command timeout, in ms */ 575 #define FREEZE_STATUS_TIMEOUT 20 /* wait for freeze indicators, in ms */ 576 #define VL_STATUS_CLEAR_TIMEOUT 5000 /* per-VL status clear, in ms */ 577 #define CCE_STATUS_TIMEOUT 10 /* time to clear CCE Status, in ms */ 578 579 /* cclock tick time, in picoseconds per tick: 1/speed * 10^12 */ 580 #define ASIC_CCLOCK_PS 1242 /* 805 MHz */ 581 #define FPGA_CCLOCK_PS 30300 /* 33 MHz */ 582 583 /* 584 * Mask of enabled MISC errors. Do not enable the two RSA engine errors - 585 * see firmware.c:run_rsa() for details. 586 */ 587 #define DRIVER_MISC_MASK \ 588 (~(MISC_ERR_STATUS_MISC_FW_AUTH_FAILED_ERR_SMASK \ 589 | MISC_ERR_STATUS_MISC_KEY_MISMATCH_ERR_SMASK)) 590 591 /* valid values for the loopback module parameter */ 592 #define LOOPBACK_NONE 0 /* no loopback - default */ 593 #define LOOPBACK_SERDES 1 594 #define LOOPBACK_LCB 2 595 #define LOOPBACK_CABLE 3 /* external cable */ 596 597 /* set up bits in MISC_CONFIG_BITS */ 598 #define LOOPBACK_SERDES_CONFIG_BIT_MASK_SHIFT 0 599 #define EXT_CFG_LCB_RESET_SUPPORTED_SHIFT 3 600 601 /* read and write hardware registers */ 602 u64 read_csr(const struct hfi1_devdata *dd, u32 offset); 603 void write_csr(const struct hfi1_devdata *dd, u32 offset, u64 value); 604 605 /* 606 * The *_kctxt_* flavor of the CSR read/write functions are for 607 * per-context or per-SDMA CSRs that are not mappable to user-space. 608 * Their spacing is not a PAGE_SIZE multiple. 609 */ 610 static inline u64 read_kctxt_csr(const struct hfi1_devdata *dd, int ctxt, 611 u32 offset0) 612 { 613 /* kernel per-context CSRs are separated by 0x100 */ 614 return read_csr(dd, offset0 + (0x100 * ctxt)); 615 } 616 617 static inline void write_kctxt_csr(struct hfi1_devdata *dd, int ctxt, 618 u32 offset0, u64 value) 619 { 620 /* kernel per-context CSRs are separated by 0x100 */ 621 write_csr(dd, offset0 + (0x100 * ctxt), value); 622 } 623 624 int read_lcb_csr(struct hfi1_devdata *dd, u32 offset, u64 *data); 625 int write_lcb_csr(struct hfi1_devdata *dd, u32 offset, u64 data); 626 627 void __iomem *get_csr_addr( 628 const struct hfi1_devdata *dd, 629 u32 offset); 630 631 static inline void __iomem *get_kctxt_csr_addr( 632 const struct hfi1_devdata *dd, 633 int ctxt, 634 u32 offset0) 635 { 636 return get_csr_addr(dd, offset0 + (0x100 * ctxt)); 637 } 638 639 /* 640 * The *_uctxt_* flavor of the CSR read/write functions are for 641 * per-context CSRs that are mappable to user space. All these CSRs 642 * are spaced by a PAGE_SIZE multiple in order to be mappable to 643 * different processes without exposing other contexts' CSRs 644 */ 645 static inline u64 read_uctxt_csr(const struct hfi1_devdata *dd, int ctxt, 646 u32 offset0) 647 { 648 /* user per-context CSRs are separated by 0x1000 */ 649 return read_csr(dd, offset0 + (0x1000 * ctxt)); 650 } 651 652 static inline void write_uctxt_csr(struct hfi1_devdata *dd, int ctxt, 653 u32 offset0, u64 value) 654 { 655 /* user per-context CSRs are separated by 0x1000 */ 656 write_csr(dd, offset0 + (0x1000 * ctxt), value); 657 } 658 659 static inline u32 chip_rcv_contexts(struct hfi1_devdata *dd) 660 { 661 return read_csr(dd, RCV_CONTEXTS); 662 } 663 664 static inline u32 chip_send_contexts(struct hfi1_devdata *dd) 665 { 666 return read_csr(dd, SEND_CONTEXTS); 667 } 668 669 static inline u32 chip_sdma_engines(struct hfi1_devdata *dd) 670 { 671 return read_csr(dd, SEND_DMA_ENGINES); 672 } 673 674 static inline u32 chip_pio_mem_size(struct hfi1_devdata *dd) 675 { 676 return read_csr(dd, SEND_PIO_MEM_SIZE); 677 } 678 679 static inline u32 chip_sdma_mem_size(struct hfi1_devdata *dd) 680 { 681 return read_csr(dd, SEND_DMA_MEM_SIZE); 682 } 683 684 static inline u32 chip_rcv_array_count(struct hfi1_devdata *dd) 685 { 686 return read_csr(dd, RCV_ARRAY_CNT); 687 } 688 689 u64 create_pbc(struct hfi1_pportdata *ppd, u64 flags, int srate_mbs, u32 vl, 690 u32 dw_len); 691 692 /* firmware.c */ 693 #define SBUS_MASTER_BROADCAST 0xfd 694 #define NUM_PCIE_SERDES 16 /* number of PCIe serdes on the SBus */ 695 extern const u8 pcie_serdes_broadcast[]; 696 extern const u8 pcie_pcs_addrs[2][NUM_PCIE_SERDES]; 697 698 /* SBus commands */ 699 #define RESET_SBUS_RECEIVER 0x20 700 #define WRITE_SBUS_RECEIVER 0x21 701 #define READ_SBUS_RECEIVER 0x22 702 void sbus_request(struct hfi1_devdata *dd, 703 u8 receiver_addr, u8 data_addr, u8 command, u32 data_in); 704 int sbus_request_slow(struct hfi1_devdata *dd, 705 u8 receiver_addr, u8 data_addr, u8 command, u32 data_in); 706 void set_sbus_fast_mode(struct hfi1_devdata *dd); 707 void clear_sbus_fast_mode(struct hfi1_devdata *dd); 708 int hfi1_firmware_init(struct hfi1_devdata *dd); 709 int load_pcie_firmware(struct hfi1_devdata *dd); 710 int load_firmware(struct hfi1_devdata *dd); 711 void dispose_firmware(void); 712 int acquire_hw_mutex(struct hfi1_devdata *dd); 713 void release_hw_mutex(struct hfi1_devdata *dd); 714 715 /* 716 * Bitmask of dynamic access for ASIC block chip resources. Each HFI has its 717 * own range of bits for the resource so it can clear its own bits on 718 * starting and exiting. If either HFI has the resource bit set, the 719 * resource is in use. The separate bit ranges are: 720 * HFI0 bits 7:0 721 * HFI1 bits 15:8 722 */ 723 #define CR_SBUS 0x01 /* SBUS, THERM, and PCIE registers */ 724 #define CR_EPROM 0x02 /* EEP, GPIO registers */ 725 #define CR_I2C1 0x04 /* QSFP1_OE register */ 726 #define CR_I2C2 0x08 /* QSFP2_OE register */ 727 #define CR_DYN_SHIFT 8 /* dynamic flag shift */ 728 #define CR_DYN_MASK ((1ull << CR_DYN_SHIFT) - 1) 729 730 /* 731 * Bitmask of static ASIC states these are outside of the dynamic ASIC 732 * block chip resources above. These are to be set once and never cleared. 733 * Must be holding the SBus dynamic flag when setting. 734 */ 735 #define CR_THERM_INIT 0x010000 736 737 int acquire_chip_resource(struct hfi1_devdata *dd, u32 resource, u32 mswait); 738 void release_chip_resource(struct hfi1_devdata *dd, u32 resource); 739 bool check_chip_resource(struct hfi1_devdata *dd, u32 resource, 740 const char *func); 741 void init_chip_resources(struct hfi1_devdata *dd); 742 void finish_chip_resources(struct hfi1_devdata *dd); 743 744 /* ms wait time for access to an SBus resoure */ 745 #define SBUS_TIMEOUT 4000 /* long enough for a FW download and SBR */ 746 747 /* ms wait time for a qsfp (i2c) chain to become available */ 748 #define QSFP_WAIT 20000 /* long enough for FW update to the F4 uc */ 749 750 void fabric_serdes_reset(struct hfi1_devdata *dd); 751 int read_8051_data(struct hfi1_devdata *dd, u32 addr, u32 len, u64 *result); 752 753 /* chip.c */ 754 void read_misc_status(struct hfi1_devdata *dd, u8 *ver_major, u8 *ver_minor, 755 u8 *ver_patch); 756 int write_host_interface_version(struct hfi1_devdata *dd, u8 version); 757 void read_guid(struct hfi1_devdata *dd); 758 int wait_fm_ready(struct hfi1_devdata *dd, u32 mstimeout); 759 void set_link_down_reason(struct hfi1_pportdata *ppd, u8 lcl_reason, 760 u8 neigh_reason, u8 rem_reason); 761 int set_link_state(struct hfi1_pportdata *, u32 state); 762 int port_ltp_to_cap(int port_ltp); 763 void handle_verify_cap(struct work_struct *work); 764 void handle_freeze(struct work_struct *work); 765 void handle_link_up(struct work_struct *work); 766 void handle_link_down(struct work_struct *work); 767 void handle_link_downgrade(struct work_struct *work); 768 void handle_link_bounce(struct work_struct *work); 769 void handle_start_link(struct work_struct *work); 770 void handle_sma_message(struct work_struct *work); 771 int reset_qsfp(struct hfi1_pportdata *ppd); 772 void qsfp_event(struct work_struct *work); 773 void start_freeze_handling(struct hfi1_pportdata *ppd, int flags); 774 int send_idle_sma(struct hfi1_devdata *dd, u64 message); 775 int load_8051_config(struct hfi1_devdata *, u8, u8, u32); 776 int read_8051_config(struct hfi1_devdata *, u8, u8, u32 *); 777 int start_link(struct hfi1_pportdata *ppd); 778 int bringup_serdes(struct hfi1_pportdata *ppd); 779 void set_intr_state(struct hfi1_devdata *dd, u32 enable); 780 bool apply_link_downgrade_policy(struct hfi1_pportdata *ppd, 781 bool refresh_widths); 782 void update_usrhead(struct hfi1_ctxtdata *rcd, u32 hd, u32 updegr, u32 egrhd, 783 u32 intr_adjust, u32 npkts); 784 int stop_drain_data_vls(struct hfi1_devdata *dd); 785 int open_fill_data_vls(struct hfi1_devdata *dd); 786 u32 ns_to_cclock(struct hfi1_devdata *dd, u32 ns); 787 u32 cclock_to_ns(struct hfi1_devdata *dd, u32 cclock); 788 void get_linkup_link_widths(struct hfi1_pportdata *ppd); 789 void read_ltp_rtt(struct hfi1_devdata *dd); 790 void clear_linkup_counters(struct hfi1_devdata *dd); 791 u32 hdrqempty(struct hfi1_ctxtdata *rcd); 792 int is_ax(struct hfi1_devdata *dd); 793 int is_bx(struct hfi1_devdata *dd); 794 u32 read_physical_state(struct hfi1_devdata *dd); 795 u32 chip_to_opa_pstate(struct hfi1_devdata *dd, u32 chip_pstate); 796 const char *opa_lstate_name(u32 lstate); 797 const char *opa_pstate_name(u32 pstate); 798 u32 driver_pstate(struct hfi1_pportdata *ppd); 799 u32 driver_lstate(struct hfi1_pportdata *ppd); 800 801 int acquire_lcb_access(struct hfi1_devdata *dd, int sleep_ok); 802 int release_lcb_access(struct hfi1_devdata *dd, int sleep_ok); 803 #define LCB_START DC_LCB_CSRS 804 #define LCB_END DC_8051_CSRS /* next block is 8051 */ 805 static inline int is_lcb_offset(u32 offset) 806 { 807 return (offset >= LCB_START && offset < LCB_END); 808 } 809 810 extern uint num_vls; 811 812 extern uint disable_integrity; 813 u64 read_dev_cntr(struct hfi1_devdata *dd, int index, int vl); 814 u64 write_dev_cntr(struct hfi1_devdata *dd, int index, int vl, u64 data); 815 u64 read_port_cntr(struct hfi1_pportdata *ppd, int index, int vl); 816 u64 write_port_cntr(struct hfi1_pportdata *ppd, int index, int vl, u64 data); 817 u32 read_logical_state(struct hfi1_devdata *dd); 818 void force_recv_intr(struct hfi1_ctxtdata *rcd); 819 820 /* Per VL indexes */ 821 enum { 822 C_VL_0 = 0, 823 C_VL_1, 824 C_VL_2, 825 C_VL_3, 826 C_VL_4, 827 C_VL_5, 828 C_VL_6, 829 C_VL_7, 830 C_VL_15, 831 C_VL_COUNT 832 }; 833 834 static inline int vl_from_idx(int idx) 835 { 836 return (idx == C_VL_15 ? 15 : idx); 837 } 838 839 static inline int idx_from_vl(int vl) 840 { 841 return (vl == 15 ? C_VL_15 : vl); 842 } 843 844 /* Per device counter indexes */ 845 enum { 846 C_RCV_OVF = 0, 847 C_RX_TID_FULL, 848 C_RX_TID_INVALID, 849 C_RX_TID_FLGMS, 850 C_RX_CTX_EGRS, 851 C_RCV_TID_FLSMS, 852 C_CCE_PCI_CR_ST, 853 C_CCE_PCI_TR_ST, 854 C_CCE_PIO_WR_ST, 855 C_CCE_ERR_INT, 856 C_CCE_SDMA_INT, 857 C_CCE_MISC_INT, 858 C_CCE_RCV_AV_INT, 859 C_CCE_RCV_URG_INT, 860 C_CCE_SEND_CR_INT, 861 C_DC_UNC_ERR, 862 C_DC_RCV_ERR, 863 C_DC_FM_CFG_ERR, 864 C_DC_RMT_PHY_ERR, 865 C_DC_DROPPED_PKT, 866 C_DC_MC_XMIT_PKTS, 867 C_DC_MC_RCV_PKTS, 868 C_DC_XMIT_CERR, 869 C_DC_RCV_CERR, 870 C_DC_RCV_FCC, 871 C_DC_XMIT_FCC, 872 C_DC_XMIT_FLITS, 873 C_DC_RCV_FLITS, 874 C_DC_XMIT_PKTS, 875 C_DC_RCV_PKTS, 876 C_DC_RX_FLIT_VL, 877 C_DC_RX_PKT_VL, 878 C_DC_RCV_FCN, 879 C_DC_RCV_FCN_VL, 880 C_DC_RCV_BCN, 881 C_DC_RCV_BCN_VL, 882 C_DC_RCV_BBL, 883 C_DC_RCV_BBL_VL, 884 C_DC_MARK_FECN, 885 C_DC_MARK_FECN_VL, 886 C_DC_TOTAL_CRC, 887 C_DC_CRC_LN0, 888 C_DC_CRC_LN1, 889 C_DC_CRC_LN2, 890 C_DC_CRC_LN3, 891 C_DC_CRC_MULT_LN, 892 C_DC_TX_REPLAY, 893 C_DC_RX_REPLAY, 894 C_DC_SEQ_CRC_CNT, 895 C_DC_ESC0_ONLY_CNT, 896 C_DC_ESC0_PLUS1_CNT, 897 C_DC_ESC0_PLUS2_CNT, 898 C_DC_REINIT_FROM_PEER_CNT, 899 C_DC_SBE_CNT, 900 C_DC_MISC_FLG_CNT, 901 C_DC_PRF_GOOD_LTP_CNT, 902 C_DC_PRF_ACCEPTED_LTP_CNT, 903 C_DC_PRF_RX_FLIT_CNT, 904 C_DC_PRF_TX_FLIT_CNT, 905 C_DC_PRF_CLK_CNTR, 906 C_DC_PG_DBG_FLIT_CRDTS_CNT, 907 C_DC_PG_STS_PAUSE_COMPLETE_CNT, 908 C_DC_PG_STS_TX_SBE_CNT, 909 C_DC_PG_STS_TX_MBE_CNT, 910 C_SW_CPU_INTR, 911 C_SW_CPU_RCV_LIM, 912 C_SW_VTX_WAIT, 913 C_SW_PIO_WAIT, 914 C_SW_PIO_DRAIN, 915 C_SW_KMEM_WAIT, 916 C_SW_SEND_SCHED, 917 C_SDMA_DESC_FETCHED_CNT, 918 C_SDMA_INT_CNT, 919 C_SDMA_ERR_CNT, 920 C_SDMA_IDLE_INT_CNT, 921 C_SDMA_PROGRESS_INT_CNT, 922 /* MISC_ERR_STATUS */ 923 C_MISC_PLL_LOCK_FAIL_ERR, 924 C_MISC_MBIST_FAIL_ERR, 925 C_MISC_INVALID_EEP_CMD_ERR, 926 C_MISC_EFUSE_DONE_PARITY_ERR, 927 C_MISC_EFUSE_WRITE_ERR, 928 C_MISC_EFUSE_READ_BAD_ADDR_ERR, 929 C_MISC_EFUSE_CSR_PARITY_ERR, 930 C_MISC_FW_AUTH_FAILED_ERR, 931 C_MISC_KEY_MISMATCH_ERR, 932 C_MISC_SBUS_WRITE_FAILED_ERR, 933 C_MISC_CSR_WRITE_BAD_ADDR_ERR, 934 C_MISC_CSR_READ_BAD_ADDR_ERR, 935 C_MISC_CSR_PARITY_ERR, 936 /* CceErrStatus */ 937 /* 938 * A special counter that is the aggregate count 939 * of all the cce_err_status errors. The remainder 940 * are actual bits in the CceErrStatus register. 941 */ 942 C_CCE_ERR_STATUS_AGGREGATED_CNT, 943 C_CCE_MSIX_CSR_PARITY_ERR, 944 C_CCE_INT_MAP_UNC_ERR, 945 C_CCE_INT_MAP_COR_ERR, 946 C_CCE_MSIX_TABLE_UNC_ERR, 947 C_CCE_MSIX_TABLE_COR_ERR, 948 C_CCE_RXDMA_CONV_FIFO_PARITY_ERR, 949 C_CCE_RCPL_ASYNC_FIFO_PARITY_ERR, 950 C_CCE_SEG_WRITE_BAD_ADDR_ERR, 951 C_CCE_SEG_READ_BAD_ADDR_ERR, 952 C_LA_TRIGGERED, 953 C_CCE_TRGT_CPL_TIMEOUT_ERR, 954 C_PCIC_RECEIVE_PARITY_ERR, 955 C_PCIC_TRANSMIT_BACK_PARITY_ERR, 956 C_PCIC_TRANSMIT_FRONT_PARITY_ERR, 957 C_PCIC_CPL_DAT_Q_UNC_ERR, 958 C_PCIC_CPL_HD_Q_UNC_ERR, 959 C_PCIC_POST_DAT_Q_UNC_ERR, 960 C_PCIC_POST_HD_Q_UNC_ERR, 961 C_PCIC_RETRY_SOT_MEM_UNC_ERR, 962 C_PCIC_RETRY_MEM_UNC_ERR, 963 C_PCIC_N_POST_DAT_Q_PARITY_ERR, 964 C_PCIC_N_POST_H_Q_PARITY_ERR, 965 C_PCIC_CPL_DAT_Q_COR_ERR, 966 C_PCIC_CPL_HD_Q_COR_ERR, 967 C_PCIC_POST_DAT_Q_COR_ERR, 968 C_PCIC_POST_HD_Q_COR_ERR, 969 C_PCIC_RETRY_SOT_MEM_COR_ERR, 970 C_PCIC_RETRY_MEM_COR_ERR, 971 C_CCE_CLI1_ASYNC_FIFO_DBG_PARITY_ERR, 972 C_CCE_CLI1_ASYNC_FIFO_RXDMA_PARITY_ERR, 973 C_CCE_CLI1_ASYNC_FIFO_SDMA_HD_PARITY_ERR, 974 C_CCE_CLI1_ASYNC_FIFO_PIO_CRDT_PARITY_ERR, 975 C_CCE_CLI2_ASYNC_FIFO_PARITY_ERR, 976 C_CCE_CSR_CFG_BUS_PARITY_ERR, 977 C_CCE_CLI0_ASYNC_FIFO_PARTIY_ERR, 978 C_CCE_RSPD_DATA_PARITY_ERR, 979 C_CCE_TRGT_ACCESS_ERR, 980 C_CCE_TRGT_ASYNC_FIFO_PARITY_ERR, 981 C_CCE_CSR_WRITE_BAD_ADDR_ERR, 982 C_CCE_CSR_READ_BAD_ADDR_ERR, 983 C_CCE_CSR_PARITY_ERR, 984 /* RcvErrStatus */ 985 C_RX_CSR_PARITY_ERR, 986 C_RX_CSR_WRITE_BAD_ADDR_ERR, 987 C_RX_CSR_READ_BAD_ADDR_ERR, 988 C_RX_DMA_CSR_UNC_ERR, 989 C_RX_DMA_DQ_FSM_ENCODING_ERR, 990 C_RX_DMA_EQ_FSM_ENCODING_ERR, 991 C_RX_DMA_CSR_PARITY_ERR, 992 C_RX_RBUF_DATA_COR_ERR, 993 C_RX_RBUF_DATA_UNC_ERR, 994 C_RX_DMA_DATA_FIFO_RD_COR_ERR, 995 C_RX_DMA_DATA_FIFO_RD_UNC_ERR, 996 C_RX_DMA_HDR_FIFO_RD_COR_ERR, 997 C_RX_DMA_HDR_FIFO_RD_UNC_ERR, 998 C_RX_RBUF_DESC_PART2_COR_ERR, 999 C_RX_RBUF_DESC_PART2_UNC_ERR, 1000 C_RX_RBUF_DESC_PART1_COR_ERR, 1001 C_RX_RBUF_DESC_PART1_UNC_ERR, 1002 C_RX_HQ_INTR_FSM_ERR, 1003 C_RX_HQ_INTR_CSR_PARITY_ERR, 1004 C_RX_LOOKUP_CSR_PARITY_ERR, 1005 C_RX_LOOKUP_RCV_ARRAY_COR_ERR, 1006 C_RX_LOOKUP_RCV_ARRAY_UNC_ERR, 1007 C_RX_LOOKUP_DES_PART2_PARITY_ERR, 1008 C_RX_LOOKUP_DES_PART1_UNC_COR_ERR, 1009 C_RX_LOOKUP_DES_PART1_UNC_ERR, 1010 C_RX_RBUF_NEXT_FREE_BUF_COR_ERR, 1011 C_RX_RBUF_NEXT_FREE_BUF_UNC_ERR, 1012 C_RX_RBUF_FL_INIT_WR_ADDR_PARITY_ERR, 1013 C_RX_RBUF_FL_INITDONE_PARITY_ERR, 1014 C_RX_RBUF_FL_WRITE_ADDR_PARITY_ERR, 1015 C_RX_RBUF_FL_RD_ADDR_PARITY_ERR, 1016 C_RX_RBUF_EMPTY_ERR, 1017 C_RX_RBUF_FULL_ERR, 1018 C_RX_RBUF_BAD_LOOKUP_ERR, 1019 C_RX_RBUF_CTX_ID_PARITY_ERR, 1020 C_RX_RBUF_CSR_QEOPDW_PARITY_ERR, 1021 C_RX_RBUF_CSR_Q_NUM_OF_PKT_PARITY_ERR, 1022 C_RX_RBUF_CSR_Q_T1_PTR_PARITY_ERR, 1023 C_RX_RBUF_CSR_Q_HD_PTR_PARITY_ERR, 1024 C_RX_RBUF_CSR_Q_VLD_BIT_PARITY_ERR, 1025 C_RX_RBUF_CSR_Q_NEXT_BUF_PARITY_ERR, 1026 C_RX_RBUF_CSR_Q_ENT_CNT_PARITY_ERR, 1027 C_RX_RBUF_CSR_Q_HEAD_BUF_NUM_PARITY_ERR, 1028 C_RX_RBUF_BLOCK_LIST_READ_COR_ERR, 1029 C_RX_RBUF_BLOCK_LIST_READ_UNC_ERR, 1030 C_RX_RBUF_LOOKUP_DES_COR_ERR, 1031 C_RX_RBUF_LOOKUP_DES_UNC_ERR, 1032 C_RX_RBUF_LOOKUP_DES_REG_UNC_COR_ERR, 1033 C_RX_RBUF_LOOKUP_DES_REG_UNC_ERR, 1034 C_RX_RBUF_FREE_LIST_COR_ERR, 1035 C_RX_RBUF_FREE_LIST_UNC_ERR, 1036 C_RX_RCV_FSM_ENCODING_ERR, 1037 C_RX_DMA_FLAG_COR_ERR, 1038 C_RX_DMA_FLAG_UNC_ERR, 1039 C_RX_DC_SOP_EOP_PARITY_ERR, 1040 C_RX_RCV_CSR_PARITY_ERR, 1041 C_RX_RCV_QP_MAP_TABLE_COR_ERR, 1042 C_RX_RCV_QP_MAP_TABLE_UNC_ERR, 1043 C_RX_RCV_DATA_COR_ERR, 1044 C_RX_RCV_DATA_UNC_ERR, 1045 C_RX_RCV_HDR_COR_ERR, 1046 C_RX_RCV_HDR_UNC_ERR, 1047 C_RX_DC_INTF_PARITY_ERR, 1048 C_RX_DMA_CSR_COR_ERR, 1049 /* SendPioErrStatus */ 1050 C_PIO_PEC_SOP_HEAD_PARITY_ERR, 1051 C_PIO_PCC_SOP_HEAD_PARITY_ERR, 1052 C_PIO_LAST_RETURNED_CNT_PARITY_ERR, 1053 C_PIO_CURRENT_FREE_CNT_PARITY_ERR, 1054 C_PIO_RSVD_31_ERR, 1055 C_PIO_RSVD_30_ERR, 1056 C_PIO_PPMC_SOP_LEN_ERR, 1057 C_PIO_PPMC_BQC_MEM_PARITY_ERR, 1058 C_PIO_VL_FIFO_PARITY_ERR, 1059 C_PIO_VLF_SOP_PARITY_ERR, 1060 C_PIO_VLF_V1_LEN_PARITY_ERR, 1061 C_PIO_BLOCK_QW_COUNT_PARITY_ERR, 1062 C_PIO_WRITE_QW_VALID_PARITY_ERR, 1063 C_PIO_STATE_MACHINE_ERR, 1064 C_PIO_WRITE_DATA_PARITY_ERR, 1065 C_PIO_HOST_ADDR_MEM_COR_ERR, 1066 C_PIO_HOST_ADDR_MEM_UNC_ERR, 1067 C_PIO_PKT_EVICT_SM_OR_ARM_SM_ERR, 1068 C_PIO_INIT_SM_IN_ERR, 1069 C_PIO_PPMC_PBL_FIFO_ERR, 1070 C_PIO_CREDIT_RET_FIFO_PARITY_ERR, 1071 C_PIO_V1_LEN_MEM_BANK1_COR_ERR, 1072 C_PIO_V1_LEN_MEM_BANK0_COR_ERR, 1073 C_PIO_V1_LEN_MEM_BANK1_UNC_ERR, 1074 C_PIO_V1_LEN_MEM_BANK0_UNC_ERR, 1075 C_PIO_SM_PKT_RESET_PARITY_ERR, 1076 C_PIO_PKT_EVICT_FIFO_PARITY_ERR, 1077 C_PIO_SBRDCTRL_CRREL_FIFO_PARITY_ERR, 1078 C_PIO_SBRDCTL_CRREL_PARITY_ERR, 1079 C_PIO_PEC_FIFO_PARITY_ERR, 1080 C_PIO_PCC_FIFO_PARITY_ERR, 1081 C_PIO_SB_MEM_FIFO1_ERR, 1082 C_PIO_SB_MEM_FIFO0_ERR, 1083 C_PIO_CSR_PARITY_ERR, 1084 C_PIO_WRITE_ADDR_PARITY_ERR, 1085 C_PIO_WRITE_BAD_CTXT_ERR, 1086 /* SendDmaErrStatus */ 1087 C_SDMA_PCIE_REQ_TRACKING_COR_ERR, 1088 C_SDMA_PCIE_REQ_TRACKING_UNC_ERR, 1089 C_SDMA_CSR_PARITY_ERR, 1090 C_SDMA_RPY_TAG_ERR, 1091 /* SendEgressErrStatus */ 1092 C_TX_READ_PIO_MEMORY_CSR_UNC_ERR, 1093 C_TX_READ_SDMA_MEMORY_CSR_UNC_ERR, 1094 C_TX_EGRESS_FIFO_COR_ERR, 1095 C_TX_READ_PIO_MEMORY_COR_ERR, 1096 C_TX_READ_SDMA_MEMORY_COR_ERR, 1097 C_TX_SB_HDR_COR_ERR, 1098 C_TX_CREDIT_OVERRUN_ERR, 1099 C_TX_LAUNCH_FIFO8_COR_ERR, 1100 C_TX_LAUNCH_FIFO7_COR_ERR, 1101 C_TX_LAUNCH_FIFO6_COR_ERR, 1102 C_TX_LAUNCH_FIFO5_COR_ERR, 1103 C_TX_LAUNCH_FIFO4_COR_ERR, 1104 C_TX_LAUNCH_FIFO3_COR_ERR, 1105 C_TX_LAUNCH_FIFO2_COR_ERR, 1106 C_TX_LAUNCH_FIFO1_COR_ERR, 1107 C_TX_LAUNCH_FIFO0_COR_ERR, 1108 C_TX_CREDIT_RETURN_VL_ERR, 1109 C_TX_HCRC_INSERTION_ERR, 1110 C_TX_EGRESS_FIFI_UNC_ERR, 1111 C_TX_READ_PIO_MEMORY_UNC_ERR, 1112 C_TX_READ_SDMA_MEMORY_UNC_ERR, 1113 C_TX_SB_HDR_UNC_ERR, 1114 C_TX_CREDIT_RETURN_PARITY_ERR, 1115 C_TX_LAUNCH_FIFO8_UNC_OR_PARITY_ERR, 1116 C_TX_LAUNCH_FIFO7_UNC_OR_PARITY_ERR, 1117 C_TX_LAUNCH_FIFO6_UNC_OR_PARITY_ERR, 1118 C_TX_LAUNCH_FIFO5_UNC_OR_PARITY_ERR, 1119 C_TX_LAUNCH_FIFO4_UNC_OR_PARITY_ERR, 1120 C_TX_LAUNCH_FIFO3_UNC_OR_PARITY_ERR, 1121 C_TX_LAUNCH_FIFO2_UNC_OR_PARITY_ERR, 1122 C_TX_LAUNCH_FIFO1_UNC_OR_PARITY_ERR, 1123 C_TX_LAUNCH_FIFO0_UNC_OR_PARITY_ERR, 1124 C_TX_SDMA15_DISALLOWED_PACKET_ERR, 1125 C_TX_SDMA14_DISALLOWED_PACKET_ERR, 1126 C_TX_SDMA13_DISALLOWED_PACKET_ERR, 1127 C_TX_SDMA12_DISALLOWED_PACKET_ERR, 1128 C_TX_SDMA11_DISALLOWED_PACKET_ERR, 1129 C_TX_SDMA10_DISALLOWED_PACKET_ERR, 1130 C_TX_SDMA9_DISALLOWED_PACKET_ERR, 1131 C_TX_SDMA8_DISALLOWED_PACKET_ERR, 1132 C_TX_SDMA7_DISALLOWED_PACKET_ERR, 1133 C_TX_SDMA6_DISALLOWED_PACKET_ERR, 1134 C_TX_SDMA5_DISALLOWED_PACKET_ERR, 1135 C_TX_SDMA4_DISALLOWED_PACKET_ERR, 1136 C_TX_SDMA3_DISALLOWED_PACKET_ERR, 1137 C_TX_SDMA2_DISALLOWED_PACKET_ERR, 1138 C_TX_SDMA1_DISALLOWED_PACKET_ERR, 1139 C_TX_SDMA0_DISALLOWED_PACKET_ERR, 1140 C_TX_CONFIG_PARITY_ERR, 1141 C_TX_SBRD_CTL_CSR_PARITY_ERR, 1142 C_TX_LAUNCH_CSR_PARITY_ERR, 1143 C_TX_ILLEGAL_CL_ERR, 1144 C_TX_SBRD_CTL_STATE_MACHINE_PARITY_ERR, 1145 C_TX_RESERVED_10, 1146 C_TX_RESERVED_9, 1147 C_TX_SDMA_LAUNCH_INTF_PARITY_ERR, 1148 C_TX_PIO_LAUNCH_INTF_PARITY_ERR, 1149 C_TX_RESERVED_6, 1150 C_TX_INCORRECT_LINK_STATE_ERR, 1151 C_TX_LINK_DOWN_ERR, 1152 C_TX_EGRESS_FIFO_UNDERRUN_OR_PARITY_ERR, 1153 C_TX_RESERVED_2, 1154 C_TX_PKT_INTEGRITY_MEM_UNC_ERR, 1155 C_TX_PKT_INTEGRITY_MEM_COR_ERR, 1156 /* SendErrStatus */ 1157 C_SEND_CSR_WRITE_BAD_ADDR_ERR, 1158 C_SEND_CSR_READ_BAD_ADD_ERR, 1159 C_SEND_CSR_PARITY_ERR, 1160 /* SendCtxtErrStatus */ 1161 C_PIO_WRITE_OUT_OF_BOUNDS_ERR, 1162 C_PIO_WRITE_OVERFLOW_ERR, 1163 C_PIO_WRITE_CROSSES_BOUNDARY_ERR, 1164 C_PIO_DISALLOWED_PACKET_ERR, 1165 C_PIO_INCONSISTENT_SOP_ERR, 1166 /*SendDmaEngErrStatus */ 1167 C_SDMA_HEADER_REQUEST_FIFO_COR_ERR, 1168 C_SDMA_HEADER_STORAGE_COR_ERR, 1169 C_SDMA_PACKET_TRACKING_COR_ERR, 1170 C_SDMA_ASSEMBLY_COR_ERR, 1171 C_SDMA_DESC_TABLE_COR_ERR, 1172 C_SDMA_HEADER_REQUEST_FIFO_UNC_ERR, 1173 C_SDMA_HEADER_STORAGE_UNC_ERR, 1174 C_SDMA_PACKET_TRACKING_UNC_ERR, 1175 C_SDMA_ASSEMBLY_UNC_ERR, 1176 C_SDMA_DESC_TABLE_UNC_ERR, 1177 C_SDMA_TIMEOUT_ERR, 1178 C_SDMA_HEADER_LENGTH_ERR, 1179 C_SDMA_HEADER_ADDRESS_ERR, 1180 C_SDMA_HEADER_SELECT_ERR, 1181 C_SMDA_RESERVED_9, 1182 C_SDMA_PACKET_DESC_OVERFLOW_ERR, 1183 C_SDMA_LENGTH_MISMATCH_ERR, 1184 C_SDMA_HALT_ERR, 1185 C_SDMA_MEM_READ_ERR, 1186 C_SDMA_FIRST_DESC_ERR, 1187 C_SDMA_TAIL_OUT_OF_BOUNDS_ERR, 1188 C_SDMA_TOO_LONG_ERR, 1189 C_SDMA_GEN_MISMATCH_ERR, 1190 C_SDMA_WRONG_DW_ERR, 1191 DEV_CNTR_LAST /* Must be kept last */ 1192 }; 1193 1194 /* Per port counter indexes */ 1195 enum { 1196 C_TX_UNSUP_VL = 0, 1197 C_TX_INVAL_LEN, 1198 C_TX_MM_LEN_ERR, 1199 C_TX_UNDERRUN, 1200 C_TX_FLOW_STALL, 1201 C_TX_DROPPED, 1202 C_TX_HDR_ERR, 1203 C_TX_PKT, 1204 C_TX_WORDS, 1205 C_TX_WAIT, 1206 C_TX_FLIT_VL, 1207 C_TX_PKT_VL, 1208 C_TX_WAIT_VL, 1209 C_RX_PKT, 1210 C_RX_WORDS, 1211 C_SW_LINK_DOWN, 1212 C_SW_LINK_UP, 1213 C_SW_UNKNOWN_FRAME, 1214 C_SW_XMIT_DSCD, 1215 C_SW_XMIT_DSCD_VL, 1216 C_SW_XMIT_CSTR_ERR, 1217 C_SW_RCV_CSTR_ERR, 1218 C_SW_IBP_LOOP_PKTS, 1219 C_SW_IBP_RC_RESENDS, 1220 C_SW_IBP_RNR_NAKS, 1221 C_SW_IBP_OTHER_NAKS, 1222 C_SW_IBP_RC_TIMEOUTS, 1223 C_SW_IBP_PKT_DROPS, 1224 C_SW_IBP_DMA_WAIT, 1225 C_SW_IBP_RC_SEQNAK, 1226 C_SW_IBP_RC_DUPREQ, 1227 C_SW_IBP_RDMA_SEQ, 1228 C_SW_IBP_UNALIGNED, 1229 C_SW_IBP_SEQ_NAK, 1230 C_SW_CPU_RC_ACKS, 1231 C_SW_CPU_RC_QACKS, 1232 C_SW_CPU_RC_DELAYED_COMP, 1233 C_RCV_HDR_OVF_0, 1234 C_RCV_HDR_OVF_1, 1235 C_RCV_HDR_OVF_2, 1236 C_RCV_HDR_OVF_3, 1237 C_RCV_HDR_OVF_4, 1238 C_RCV_HDR_OVF_5, 1239 C_RCV_HDR_OVF_6, 1240 C_RCV_HDR_OVF_7, 1241 C_RCV_HDR_OVF_8, 1242 C_RCV_HDR_OVF_9, 1243 C_RCV_HDR_OVF_10, 1244 C_RCV_HDR_OVF_11, 1245 C_RCV_HDR_OVF_12, 1246 C_RCV_HDR_OVF_13, 1247 C_RCV_HDR_OVF_14, 1248 C_RCV_HDR_OVF_15, 1249 C_RCV_HDR_OVF_16, 1250 C_RCV_HDR_OVF_17, 1251 C_RCV_HDR_OVF_18, 1252 C_RCV_HDR_OVF_19, 1253 C_RCV_HDR_OVF_20, 1254 C_RCV_HDR_OVF_21, 1255 C_RCV_HDR_OVF_22, 1256 C_RCV_HDR_OVF_23, 1257 C_RCV_HDR_OVF_24, 1258 C_RCV_HDR_OVF_25, 1259 C_RCV_HDR_OVF_26, 1260 C_RCV_HDR_OVF_27, 1261 C_RCV_HDR_OVF_28, 1262 C_RCV_HDR_OVF_29, 1263 C_RCV_HDR_OVF_30, 1264 C_RCV_HDR_OVF_31, 1265 C_RCV_HDR_OVF_32, 1266 C_RCV_HDR_OVF_33, 1267 C_RCV_HDR_OVF_34, 1268 C_RCV_HDR_OVF_35, 1269 C_RCV_HDR_OVF_36, 1270 C_RCV_HDR_OVF_37, 1271 C_RCV_HDR_OVF_38, 1272 C_RCV_HDR_OVF_39, 1273 C_RCV_HDR_OVF_40, 1274 C_RCV_HDR_OVF_41, 1275 C_RCV_HDR_OVF_42, 1276 C_RCV_HDR_OVF_43, 1277 C_RCV_HDR_OVF_44, 1278 C_RCV_HDR_OVF_45, 1279 C_RCV_HDR_OVF_46, 1280 C_RCV_HDR_OVF_47, 1281 C_RCV_HDR_OVF_48, 1282 C_RCV_HDR_OVF_49, 1283 C_RCV_HDR_OVF_50, 1284 C_RCV_HDR_OVF_51, 1285 C_RCV_HDR_OVF_52, 1286 C_RCV_HDR_OVF_53, 1287 C_RCV_HDR_OVF_54, 1288 C_RCV_HDR_OVF_55, 1289 C_RCV_HDR_OVF_56, 1290 C_RCV_HDR_OVF_57, 1291 C_RCV_HDR_OVF_58, 1292 C_RCV_HDR_OVF_59, 1293 C_RCV_HDR_OVF_60, 1294 C_RCV_HDR_OVF_61, 1295 C_RCV_HDR_OVF_62, 1296 C_RCV_HDR_OVF_63, 1297 C_RCV_HDR_OVF_64, 1298 C_RCV_HDR_OVF_65, 1299 C_RCV_HDR_OVF_66, 1300 C_RCV_HDR_OVF_67, 1301 C_RCV_HDR_OVF_68, 1302 C_RCV_HDR_OVF_69, 1303 C_RCV_HDR_OVF_70, 1304 C_RCV_HDR_OVF_71, 1305 C_RCV_HDR_OVF_72, 1306 C_RCV_HDR_OVF_73, 1307 C_RCV_HDR_OVF_74, 1308 C_RCV_HDR_OVF_75, 1309 C_RCV_HDR_OVF_76, 1310 C_RCV_HDR_OVF_77, 1311 C_RCV_HDR_OVF_78, 1312 C_RCV_HDR_OVF_79, 1313 C_RCV_HDR_OVF_80, 1314 C_RCV_HDR_OVF_81, 1315 C_RCV_HDR_OVF_82, 1316 C_RCV_HDR_OVF_83, 1317 C_RCV_HDR_OVF_84, 1318 C_RCV_HDR_OVF_85, 1319 C_RCV_HDR_OVF_86, 1320 C_RCV_HDR_OVF_87, 1321 C_RCV_HDR_OVF_88, 1322 C_RCV_HDR_OVF_89, 1323 C_RCV_HDR_OVF_90, 1324 C_RCV_HDR_OVF_91, 1325 C_RCV_HDR_OVF_92, 1326 C_RCV_HDR_OVF_93, 1327 C_RCV_HDR_OVF_94, 1328 C_RCV_HDR_OVF_95, 1329 C_RCV_HDR_OVF_96, 1330 C_RCV_HDR_OVF_97, 1331 C_RCV_HDR_OVF_98, 1332 C_RCV_HDR_OVF_99, 1333 C_RCV_HDR_OVF_100, 1334 C_RCV_HDR_OVF_101, 1335 C_RCV_HDR_OVF_102, 1336 C_RCV_HDR_OVF_103, 1337 C_RCV_HDR_OVF_104, 1338 C_RCV_HDR_OVF_105, 1339 C_RCV_HDR_OVF_106, 1340 C_RCV_HDR_OVF_107, 1341 C_RCV_HDR_OVF_108, 1342 C_RCV_HDR_OVF_109, 1343 C_RCV_HDR_OVF_110, 1344 C_RCV_HDR_OVF_111, 1345 C_RCV_HDR_OVF_112, 1346 C_RCV_HDR_OVF_113, 1347 C_RCV_HDR_OVF_114, 1348 C_RCV_HDR_OVF_115, 1349 C_RCV_HDR_OVF_116, 1350 C_RCV_HDR_OVF_117, 1351 C_RCV_HDR_OVF_118, 1352 C_RCV_HDR_OVF_119, 1353 C_RCV_HDR_OVF_120, 1354 C_RCV_HDR_OVF_121, 1355 C_RCV_HDR_OVF_122, 1356 C_RCV_HDR_OVF_123, 1357 C_RCV_HDR_OVF_124, 1358 C_RCV_HDR_OVF_125, 1359 C_RCV_HDR_OVF_126, 1360 C_RCV_HDR_OVF_127, 1361 C_RCV_HDR_OVF_128, 1362 C_RCV_HDR_OVF_129, 1363 C_RCV_HDR_OVF_130, 1364 C_RCV_HDR_OVF_131, 1365 C_RCV_HDR_OVF_132, 1366 C_RCV_HDR_OVF_133, 1367 C_RCV_HDR_OVF_134, 1368 C_RCV_HDR_OVF_135, 1369 C_RCV_HDR_OVF_136, 1370 C_RCV_HDR_OVF_137, 1371 C_RCV_HDR_OVF_138, 1372 C_RCV_HDR_OVF_139, 1373 C_RCV_HDR_OVF_140, 1374 C_RCV_HDR_OVF_141, 1375 C_RCV_HDR_OVF_142, 1376 C_RCV_HDR_OVF_143, 1377 C_RCV_HDR_OVF_144, 1378 C_RCV_HDR_OVF_145, 1379 C_RCV_HDR_OVF_146, 1380 C_RCV_HDR_OVF_147, 1381 C_RCV_HDR_OVF_148, 1382 C_RCV_HDR_OVF_149, 1383 C_RCV_HDR_OVF_150, 1384 C_RCV_HDR_OVF_151, 1385 C_RCV_HDR_OVF_152, 1386 C_RCV_HDR_OVF_153, 1387 C_RCV_HDR_OVF_154, 1388 C_RCV_HDR_OVF_155, 1389 C_RCV_HDR_OVF_156, 1390 C_RCV_HDR_OVF_157, 1391 C_RCV_HDR_OVF_158, 1392 C_RCV_HDR_OVF_159, 1393 PORT_CNTR_LAST /* Must be kept last */ 1394 }; 1395 1396 u64 get_all_cpu_total(u64 __percpu *cntr); 1397 void hfi1_start_cleanup(struct hfi1_devdata *dd); 1398 void hfi1_clear_tids(struct hfi1_ctxtdata *rcd); 1399 void hfi1_init_ctxt(struct send_context *sc); 1400 void hfi1_put_tid(struct hfi1_devdata *dd, u32 index, 1401 u32 type, unsigned long pa, u16 order); 1402 void hfi1_quiet_serdes(struct hfi1_pportdata *ppd); 1403 void hfi1_rcvctrl(struct hfi1_devdata *dd, unsigned int op, 1404 struct hfi1_ctxtdata *rcd); 1405 u32 hfi1_read_cntrs(struct hfi1_devdata *dd, char **namep, u64 **cntrp); 1406 u32 hfi1_read_portcntrs(struct hfi1_pportdata *ppd, char **namep, u64 **cntrp); 1407 int hfi1_get_ib_cfg(struct hfi1_pportdata *ppd, int which); 1408 int hfi1_set_ib_cfg(struct hfi1_pportdata *ppd, int which, u32 val); 1409 int hfi1_set_ctxt_jkey(struct hfi1_devdata *dd, struct hfi1_ctxtdata *rcd, 1410 u16 jkey); 1411 int hfi1_clear_ctxt_jkey(struct hfi1_devdata *dd, struct hfi1_ctxtdata *ctxt); 1412 int hfi1_set_ctxt_pkey(struct hfi1_devdata *dd, struct hfi1_ctxtdata *ctxt, 1413 u16 pkey); 1414 int hfi1_clear_ctxt_pkey(struct hfi1_devdata *dd, struct hfi1_ctxtdata *ctxt); 1415 void hfi1_read_link_quality(struct hfi1_devdata *dd, u8 *link_quality); 1416 void hfi1_init_vnic_rsm(struct hfi1_devdata *dd); 1417 void hfi1_deinit_vnic_rsm(struct hfi1_devdata *dd); 1418 1419 /* 1420 * Interrupt source table. 1421 * 1422 * Each entry is an interrupt source "type". It is ordered by increasing 1423 * number. 1424 */ 1425 struct is_table { 1426 int start; /* interrupt source type start */ 1427 int end; /* interrupt source type end */ 1428 /* routine that returns the name of the interrupt source */ 1429 char *(*is_name)(char *name, size_t size, unsigned int source); 1430 /* routine to call when receiving an interrupt */ 1431 void (*is_int)(struct hfi1_devdata *dd, unsigned int source); 1432 }; 1433 1434 #endif /* _CHIP_H */ 1435