1 /* 2 * This file is provided under a dual BSD/GPLv2 license. When using or 3 * redistributing this file, you may do so under either license. 4 * 5 * GPL LICENSE SUMMARY 6 * 7 * Copyright(c) 2008 - 2011 Intel Corporation. All rights reserved. 8 * 9 * This program is free software; you can redistribute it and/or modify 10 * it under the terms of version 2 of the GNU General Public License as 11 * published by the Free Software Foundation. 12 * 13 * This program is distributed in the hope that it will be useful, but 14 * WITHOUT ANY WARRANTY; without even the implied warranty of 15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU 16 * General Public License for more details. 17 * 18 * You should have received a copy of the GNU General Public License 19 * along with this program; if not, write to the Free Software 20 * Foundation, Inc., 51 Franklin St - Fifth Floor, Boston, MA 02110-1301 USA. 21 * The full GNU General Public License is included in this distribution 22 * in the file called LICENSE.GPL. 23 * 24 * BSD LICENSE 25 * 26 * Copyright(c) 2008 - 2011 Intel Corporation. All rights reserved. 27 * All rights reserved. 28 * 29 * Redistribution and use in source and binary forms, with or without 30 * modification, are permitted provided that the following conditions 31 * are met: 32 * 33 * * Redistributions of source code must retain the above copyright 34 * notice, this list of conditions and the following disclaimer. 35 * * Redistributions in binary form must reproduce the above copyright 36 * notice, this list of conditions and the following disclaimer in 37 * the documentation and/or other materials provided with the 38 * distribution. 39 * * Neither the name of Intel Corporation nor the names of its 40 * contributors may be used to endorse or promote products derived 41 * from this software without specific prior written permission. 42 * 43 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 44 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 45 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR 46 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 47 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 48 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT 49 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 50 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 51 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 52 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 53 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 54 */ 55 #ifndef _SCI_HOST_H_ 56 #define _SCI_HOST_H_ 57 58 #include "remote_device.h" 59 #include "phy.h" 60 #include "isci.h" 61 #include "remote_node_table.h" 62 #include "registers.h" 63 #include "unsolicited_frame_control.h" 64 #include "probe_roms.h" 65 66 struct isci_request; 67 struct scu_task_context; 68 69 70 /** 71 * struct sci_power_control - 72 * 73 * This structure defines the fields for managing power control for direct 74 * attached disk devices. 75 */ 76 struct sci_power_control { 77 /** 78 * This field is set when the power control timer is running and cleared when 79 * it is not. 80 */ 81 bool timer_started; 82 83 /** 84 * Timer to control when the directed attached disks can consume power. 85 */ 86 struct sci_timer timer; 87 88 /** 89 * This field is used to keep track of how many phys are put into the 90 * requesters field. 91 */ 92 u8 phys_waiting; 93 94 /** 95 * This field is used to keep track of how many phys have been granted to consume power 96 */ 97 u8 phys_granted_power; 98 99 /** 100 * This field is an array of phys that we are waiting on. The phys are direct 101 * mapped into requesters via struct sci_phy.phy_index 102 */ 103 struct isci_phy *requesters[SCI_MAX_PHYS]; 104 105 }; 106 107 struct sci_port_configuration_agent; 108 typedef void (*port_config_fn)(struct isci_host *, 109 struct sci_port_configuration_agent *, 110 struct isci_port *, struct isci_phy *); 111 112 struct sci_port_configuration_agent { 113 u16 phy_configured_mask; 114 u16 phy_ready_mask; 115 struct { 116 u8 min_index; 117 u8 max_index; 118 } phy_valid_port_range[SCI_MAX_PHYS]; 119 bool timer_pending; 120 port_config_fn link_up_handler; 121 port_config_fn link_down_handler; 122 struct sci_timer timer; 123 }; 124 125 /** 126 * isci_host - primary host/controller object 127 * @timer: timeout start/stop operations 128 * @device_table: rni (hw remote node index) to remote device lookup table 129 * @available_remote_nodes: rni allocator 130 * @power_control: manage device spin up 131 * @io_request_sequence: generation number for tci's (task contexts) 132 * @task_context_table: hw task context table 133 * @remote_node_context_table: hw remote node context table 134 * @completion_queue: hw-producer driver-consumer communication ring 135 * @completion_queue_get: tracks the driver 'head' of the ring to notify hw 136 * @logical_port_entries: min({driver|silicon}-supported-port-count) 137 * @remote_node_entries: min({driver|silicon}-supported-node-count) 138 * @task_context_entries: min({driver|silicon}-supported-task-count) 139 * @phy_timer: phy startup timer 140 * @invalid_phy_mask: if an invalid_link_up notification is reported a bit for 141 * the phy index is set so further notifications are not 142 * made. Once the phy reports link up and is made part of a 143 * port then this bit is cleared. 144 145 */ 146 struct isci_host { 147 struct sci_base_state_machine sm; 148 /* XXX can we time this externally */ 149 struct sci_timer timer; 150 /* XXX drop reference module params directly */ 151 struct sci_user_parameters user_parameters; 152 /* XXX no need to be a union */ 153 struct sci_oem_params oem_parameters; 154 struct sci_port_configuration_agent port_agent; 155 struct isci_remote_device *device_table[SCI_MAX_REMOTE_DEVICES]; 156 struct sci_remote_node_table available_remote_nodes; 157 struct sci_power_control power_control; 158 u8 io_request_sequence[SCI_MAX_IO_REQUESTS]; 159 struct scu_task_context *task_context_table; 160 dma_addr_t task_context_dma; 161 union scu_remote_node_context *remote_node_context_table; 162 u32 *completion_queue; 163 u32 completion_queue_get; 164 u32 logical_port_entries; 165 u32 remote_node_entries; 166 u32 task_context_entries; 167 struct sci_unsolicited_frame_control uf_control; 168 169 /* phy startup */ 170 struct sci_timer phy_timer; 171 /* XXX kill */ 172 bool phy_startup_timer_pending; 173 u32 next_phy_to_start; 174 /* XXX convert to unsigned long and use bitops */ 175 u8 invalid_phy_mask; 176 177 /* TODO attempt dynamic interrupt coalescing scheme */ 178 u16 interrupt_coalesce_number; 179 u32 interrupt_coalesce_timeout; 180 struct smu_registers __iomem *smu_registers; 181 struct scu_registers __iomem *scu_registers; 182 183 u16 tci_head; 184 u16 tci_tail; 185 u16 tci_pool[SCI_MAX_IO_REQUESTS]; 186 187 int id; /* unique within a given pci device */ 188 struct isci_phy phys[SCI_MAX_PHYS]; 189 struct isci_port ports[SCI_MAX_PORTS + 1]; /* includes dummy port */ 190 struct sas_ha_struct sas_ha; 191 192 spinlock_t state_lock; 193 struct pci_dev *pdev; 194 enum isci_status status; 195 #define IHOST_START_PENDING 0 196 #define IHOST_STOP_PENDING 1 197 unsigned long flags; 198 wait_queue_head_t eventq; 199 struct Scsi_Host *shost; 200 struct tasklet_struct completion_tasklet; 201 struct list_head requests_to_complete; 202 struct list_head requests_to_errorback; 203 spinlock_t scic_lock; 204 struct isci_request *reqs[SCI_MAX_IO_REQUESTS]; 205 struct isci_remote_device devices[SCI_MAX_REMOTE_DEVICES]; 206 }; 207 208 /** 209 * enum sci_controller_states - This enumeration depicts all the states 210 * for the common controller state machine. 211 */ 212 enum sci_controller_states { 213 /** 214 * Simply the initial state for the base controller state machine. 215 */ 216 SCIC_INITIAL = 0, 217 218 /** 219 * This state indicates that the controller is reset. The memory for 220 * the controller is in it's initial state, but the controller requires 221 * initialization. 222 * This state is entered from the INITIAL state. 223 * This state is entered from the RESETTING state. 224 */ 225 SCIC_RESET, 226 227 /** 228 * This state is typically an action state that indicates the controller 229 * is in the process of initialization. In this state no new IO operations 230 * are permitted. 231 * This state is entered from the RESET state. 232 */ 233 SCIC_INITIALIZING, 234 235 /** 236 * This state indicates that the controller has been successfully 237 * initialized. In this state no new IO operations are permitted. 238 * This state is entered from the INITIALIZING state. 239 */ 240 SCIC_INITIALIZED, 241 242 /** 243 * This state indicates the the controller is in the process of becoming 244 * ready (i.e. starting). In this state no new IO operations are permitted. 245 * This state is entered from the INITIALIZED state. 246 */ 247 SCIC_STARTING, 248 249 /** 250 * This state indicates the controller is now ready. Thus, the user 251 * is able to perform IO operations on the controller. 252 * This state is entered from the STARTING state. 253 */ 254 SCIC_READY, 255 256 /** 257 * This state is typically an action state that indicates the controller 258 * is in the process of resetting. Thus, the user is unable to perform 259 * IO operations on the controller. A reset is considered destructive in 260 * most cases. 261 * This state is entered from the READY state. 262 * This state is entered from the FAILED state. 263 * This state is entered from the STOPPED state. 264 */ 265 SCIC_RESETTING, 266 267 /** 268 * This state indicates that the controller is in the process of stopping. 269 * In this state no new IO operations are permitted, but existing IO 270 * operations are allowed to complete. 271 * This state is entered from the READY state. 272 */ 273 SCIC_STOPPING, 274 275 /** 276 * This state indicates that the controller has successfully been stopped. 277 * In this state no new IO operations are permitted. 278 * This state is entered from the STOPPING state. 279 */ 280 SCIC_STOPPED, 281 282 /** 283 * This state indicates that the controller could not successfully be 284 * initialized. In this state no new IO operations are permitted. 285 * This state is entered from the INITIALIZING state. 286 * This state is entered from the STARTING state. 287 * This state is entered from the STOPPING state. 288 * This state is entered from the RESETTING state. 289 */ 290 SCIC_FAILED, 291 }; 292 293 /** 294 * struct isci_pci_info - This class represents the pci function containing the 295 * controllers. Depending on PCI SKU, there could be up to 2 controllers in 296 * the PCI function. 297 */ 298 #define SCI_MAX_MSIX_INT (SCI_NUM_MSI_X_INT*SCI_MAX_CONTROLLERS) 299 300 struct isci_pci_info { 301 struct msix_entry msix_entries[SCI_MAX_MSIX_INT]; 302 struct isci_host *hosts[SCI_MAX_CONTROLLERS]; 303 struct isci_orom *orom; 304 }; 305 306 static inline struct isci_pci_info *to_pci_info(struct pci_dev *pdev) 307 { 308 return pci_get_drvdata(pdev); 309 } 310 311 #define for_each_isci_host(id, ihost, pdev) \ 312 for (id = 0, ihost = to_pci_info(pdev)->hosts[id]; \ 313 id < ARRAY_SIZE(to_pci_info(pdev)->hosts) && ihost; \ 314 ihost = to_pci_info(pdev)->hosts[++id]) 315 316 static inline enum isci_status isci_host_get_state(struct isci_host *isci_host) 317 { 318 return isci_host->status; 319 } 320 321 static inline void isci_host_change_state(struct isci_host *isci_host, 322 enum isci_status status) 323 { 324 unsigned long flags; 325 326 dev_dbg(&isci_host->pdev->dev, 327 "%s: isci_host = %p, state = 0x%x", 328 __func__, 329 isci_host, 330 status); 331 spin_lock_irqsave(&isci_host->state_lock, flags); 332 isci_host->status = status; 333 spin_unlock_irqrestore(&isci_host->state_lock, flags); 334 335 } 336 337 static inline void wait_for_start(struct isci_host *ihost) 338 { 339 wait_event(ihost->eventq, !test_bit(IHOST_START_PENDING, &ihost->flags)); 340 } 341 342 static inline void wait_for_stop(struct isci_host *ihost) 343 { 344 wait_event(ihost->eventq, !test_bit(IHOST_STOP_PENDING, &ihost->flags)); 345 } 346 347 static inline void wait_for_device_start(struct isci_host *ihost, struct isci_remote_device *idev) 348 { 349 wait_event(ihost->eventq, !test_bit(IDEV_START_PENDING, &idev->flags)); 350 } 351 352 static inline void wait_for_device_stop(struct isci_host *ihost, struct isci_remote_device *idev) 353 { 354 wait_event(ihost->eventq, !test_bit(IDEV_STOP_PENDING, &idev->flags)); 355 } 356 357 static inline struct isci_host *dev_to_ihost(struct domain_device *dev) 358 { 359 return dev->port->ha->lldd_ha; 360 } 361 362 /* we always use protocol engine group zero */ 363 #define ISCI_PEG 0 364 365 /* see sci_controller_io_tag_allocate|free for how seq and tci are built */ 366 #define ISCI_TAG(seq, tci) (((u16) (seq)) << 12 | tci) 367 368 /* these are returned by the hardware, so sanitize them */ 369 #define ISCI_TAG_SEQ(tag) (((tag) >> 12) & (SCI_MAX_SEQ-1)) 370 #define ISCI_TAG_TCI(tag) ((tag) & (SCI_MAX_IO_REQUESTS-1)) 371 372 /* interrupt coalescing baseline: 9 == 3 to 5us interrupt delay per command */ 373 #define ISCI_COALESCE_BASE 9 374 375 /* expander attached sata devices require 3 rnc slots */ 376 static inline int sci_remote_device_node_count(struct isci_remote_device *idev) 377 { 378 struct domain_device *dev = idev->domain_dev; 379 380 if ((dev->dev_type == SATA_DEV || (dev->tproto & SAS_PROTOCOL_STP)) && 381 !idev->is_direct_attached) 382 return SCU_STP_REMOTE_NODE_COUNT; 383 return SCU_SSP_REMOTE_NODE_COUNT; 384 } 385 386 /** 387 * sci_controller_clear_invalid_phy() - 388 * 389 * This macro will clear the bit in the invalid phy mask for this controller 390 * object. This is used to control messages reported for invalid link up 391 * notifications. 392 */ 393 #define sci_controller_clear_invalid_phy(controller, phy) \ 394 ((controller)->invalid_phy_mask &= ~(1 << (phy)->phy_index)) 395 396 static inline struct device *sciphy_to_dev(struct isci_phy *iphy) 397 { 398 399 if (!iphy || !iphy->isci_port || !iphy->isci_port->isci_host) 400 return NULL; 401 402 return &iphy->isci_port->isci_host->pdev->dev; 403 } 404 405 static inline struct device *sciport_to_dev(struct isci_port *iport) 406 { 407 408 if (!iport || !iport->isci_host) 409 return NULL; 410 411 return &iport->isci_host->pdev->dev; 412 } 413 414 static inline struct device *scirdev_to_dev(struct isci_remote_device *idev) 415 { 416 if (!idev || !idev->isci_port || !idev->isci_port->isci_host) 417 return NULL; 418 419 return &idev->isci_port->isci_host->pdev->dev; 420 } 421 422 static inline bool is_a2(struct pci_dev *pdev) 423 { 424 if (pdev->revision < 4) 425 return true; 426 return false; 427 } 428 429 static inline bool is_b0(struct pci_dev *pdev) 430 { 431 if (pdev->revision == 4) 432 return true; 433 return false; 434 } 435 436 static inline bool is_c0(struct pci_dev *pdev) 437 { 438 if (pdev->revision >= 5) 439 return true; 440 return false; 441 } 442 443 /* set hw control for 'activity', even though active enclosures seem to drive 444 * the activity led on their own. Skip setting FSENG control on 'status' due 445 * to unexpected operation and 'error' due to not being a supported automatic 446 * FSENG output 447 */ 448 #define SGPIO_HW_CONTROL 0x00000443 449 450 static inline int isci_gpio_count(struct isci_host *ihost) 451 { 452 return ARRAY_SIZE(ihost->scu_registers->peg0.sgpio.output_data_select); 453 } 454 455 void sci_controller_post_request(struct isci_host *ihost, 456 u32 request); 457 void sci_controller_release_frame(struct isci_host *ihost, 458 u32 frame_index); 459 void sci_controller_copy_sata_response(void *response_buffer, 460 void *frame_header, 461 void *frame_buffer); 462 enum sci_status sci_controller_allocate_remote_node_context(struct isci_host *ihost, 463 struct isci_remote_device *idev, 464 u16 *node_id); 465 void sci_controller_free_remote_node_context( 466 struct isci_host *ihost, 467 struct isci_remote_device *idev, 468 u16 node_id); 469 470 struct isci_request *sci_request_by_tag(struct isci_host *ihost, 471 u16 io_tag); 472 473 void sci_controller_power_control_queue_insert( 474 struct isci_host *ihost, 475 struct isci_phy *iphy); 476 477 void sci_controller_power_control_queue_remove( 478 struct isci_host *ihost, 479 struct isci_phy *iphy); 480 481 void sci_controller_link_up( 482 struct isci_host *ihost, 483 struct isci_port *iport, 484 struct isci_phy *iphy); 485 486 void sci_controller_link_down( 487 struct isci_host *ihost, 488 struct isci_port *iport, 489 struct isci_phy *iphy); 490 491 void sci_controller_remote_device_stopped( 492 struct isci_host *ihost, 493 struct isci_remote_device *idev); 494 495 void sci_controller_copy_task_context( 496 struct isci_host *ihost, 497 struct isci_request *ireq); 498 499 void sci_controller_register_setup(struct isci_host *ihost); 500 501 enum sci_status sci_controller_continue_io(struct isci_request *ireq); 502 int isci_host_scan_finished(struct Scsi_Host *, unsigned long); 503 void isci_host_scan_start(struct Scsi_Host *); 504 u16 isci_alloc_tag(struct isci_host *ihost); 505 enum sci_status isci_free_tag(struct isci_host *ihost, u16 io_tag); 506 void isci_tci_free(struct isci_host *ihost, u16 tci); 507 508 int isci_host_init(struct isci_host *); 509 510 void isci_host_init_controller_names( 511 struct isci_host *isci_host, 512 unsigned int controller_idx); 513 514 void isci_host_deinit( 515 struct isci_host *); 516 517 void isci_host_port_link_up( 518 struct isci_host *, 519 struct isci_port *, 520 struct isci_phy *); 521 int isci_host_dev_found(struct domain_device *); 522 523 void isci_host_remote_device_start_complete( 524 struct isci_host *, 525 struct isci_remote_device *, 526 enum sci_status); 527 528 void sci_controller_disable_interrupts( 529 struct isci_host *ihost); 530 531 enum sci_status sci_controller_start_io( 532 struct isci_host *ihost, 533 struct isci_remote_device *idev, 534 struct isci_request *ireq); 535 536 enum sci_task_status sci_controller_start_task( 537 struct isci_host *ihost, 538 struct isci_remote_device *idev, 539 struct isci_request *ireq); 540 541 enum sci_status sci_controller_terminate_request( 542 struct isci_host *ihost, 543 struct isci_remote_device *idev, 544 struct isci_request *ireq); 545 546 enum sci_status sci_controller_complete_io( 547 struct isci_host *ihost, 548 struct isci_remote_device *idev, 549 struct isci_request *ireq); 550 551 void sci_port_configuration_agent_construct( 552 struct sci_port_configuration_agent *port_agent); 553 554 enum sci_status sci_port_configuration_agent_initialize( 555 struct isci_host *ihost, 556 struct sci_port_configuration_agent *port_agent); 557 558 int isci_gpio_write(struct sas_ha_struct *, u8 reg_type, u8 reg_index, 559 u8 reg_count, u8 *write_data); 560 #endif 561