Linux Audio

Check our new training course

Loading...
v3.1
 
   1/*
   2 * pmcraid.c -- driver for PMC Sierra MaxRAID controller adapters
   3 *
   4 * Written By: Anil Ravindranath<anil_ravindranath@pmc-sierra.com>
   5 *             PMC-Sierra Inc
   6 *
   7 * Copyright (C) 2008, 2009 PMC Sierra Inc
   8 *
   9 * This program is free software; you can redistribute it and/or modify
  10 * it under the terms of the GNU General Public License as published by
  11 * the Free Software Foundation; either version 2 of the License, or
  12 * (at your option) any later version.
  13 *
  14 * This program is distributed in the hope that it will be useful,
  15 * but WITHOUT ANY WARRANTY; without even the implied warranty of
  16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
  17 * GNU General Public License for more details.
  18 *
  19 * You should have received a copy of the GNU General Public License
  20 * along with this program; if not, write to the Free Software
  21 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307,
  22 * USA
  23 *
  24 */
  25#include <linux/fs.h>
  26#include <linux/init.h>
  27#include <linux/types.h>
  28#include <linux/errno.h>
  29#include <linux/kernel.h>
  30#include <linux/ioport.h>
  31#include <linux/delay.h>
  32#include <linux/pci.h>
  33#include <linux/wait.h>
  34#include <linux/spinlock.h>
  35#include <linux/sched.h>
  36#include <linux/interrupt.h>
  37#include <linux/blkdev.h>
  38#include <linux/firmware.h>
  39#include <linux/module.h>
  40#include <linux/moduleparam.h>
  41#include <linux/hdreg.h>
  42#include <linux/version.h>
  43#include <linux/io.h>
  44#include <linux/slab.h>
  45#include <asm/irq.h>
  46#include <asm/processor.h>
  47#include <linux/libata.h>
  48#include <linux/mutex.h>
 
  49#include <scsi/scsi.h>
  50#include <scsi/scsi_host.h>
  51#include <scsi/scsi_device.h>
  52#include <scsi/scsi_tcq.h>
  53#include <scsi/scsi_eh.h>
  54#include <scsi/scsi_cmnd.h>
  55#include <scsi/scsicam.h>
  56
  57#include "pmcraid.h"
  58
  59/*
  60 *   Module configuration parameters
  61 */
  62static unsigned int pmcraid_debug_log;
  63static unsigned int pmcraid_disable_aen;
  64static unsigned int pmcraid_log_level = IOASC_LOG_LEVEL_MUST;
  65static unsigned int pmcraid_enable_msix;
  66
  67/*
  68 * Data structures to support multiple adapters by the LLD.
  69 * pmcraid_adapter_count - count of configured adapters
  70 */
  71static atomic_t pmcraid_adapter_count = ATOMIC_INIT(0);
  72
  73/*
  74 * Supporting user-level control interface through IOCTL commands.
  75 * pmcraid_major - major number to use
  76 * pmcraid_minor - minor number(s) to use
  77 */
  78static unsigned int pmcraid_major;
  79static struct class *pmcraid_class;
  80DECLARE_BITMAP(pmcraid_minor, PMCRAID_MAX_ADAPTERS);
 
 
  81
  82/*
  83 * Module parameters
  84 */
  85MODULE_AUTHOR("Anil Ravindranath<anil_ravindranath@pmc-sierra.com>");
  86MODULE_DESCRIPTION("PMC Sierra MaxRAID Controller Driver");
  87MODULE_LICENSE("GPL");
  88MODULE_VERSION(PMCRAID_DRIVER_VERSION);
  89
  90module_param_named(log_level, pmcraid_log_level, uint, (S_IRUGO | S_IWUSR));
  91MODULE_PARM_DESC(log_level,
  92		 "Enables firmware error code logging, default :1 high-severity"
  93		 " errors, 2: all errors including high-severity errors,"
  94		 " 0: disables logging");
  95
  96module_param_named(debug, pmcraid_debug_log, uint, (S_IRUGO | S_IWUSR));
  97MODULE_PARM_DESC(debug,
  98		 "Enable driver verbose message logging. Set 1 to enable."
  99		 "(default: 0)");
 100
 101module_param_named(disable_aen, pmcraid_disable_aen, uint, (S_IRUGO | S_IWUSR));
 102MODULE_PARM_DESC(disable_aen,
 103		 "Disable driver aen notifications to apps. Set 1 to disable."
 104		 "(default: 0)");
 105
 106/* chip specific constants for PMC MaxRAID controllers (same for
 107 * 0x5220 and 0x8010
 108 */
 109static struct pmcraid_chip_details pmcraid_chip_cfg[] = {
 110	{
 111	 .ioastatus = 0x0,
 112	 .ioarrin = 0x00040,
 113	 .mailbox = 0x7FC30,
 114	 .global_intr_mask = 0x00034,
 115	 .ioa_host_intr = 0x0009C,
 116	 .ioa_host_intr_clr = 0x000A0,
 117	 .ioa_host_msix_intr = 0x7FC40,
 118	 .ioa_host_mask = 0x7FC28,
 119	 .ioa_host_mask_clr = 0x7FC28,
 120	 .host_ioa_intr = 0x00020,
 121	 .host_ioa_intr_clr = 0x00020,
 122	 .transop_timeout = 300
 123	 }
 124};
 125
 126/*
 127 * PCI device ids supported by pmcraid driver
 128 */
 129static struct pci_device_id pmcraid_pci_table[] __devinitdata = {
 130	{ PCI_DEVICE(PCI_VENDOR_ID_PMC, PCI_DEVICE_ID_PMC_MAXRAID),
 131	  0, 0, (kernel_ulong_t)&pmcraid_chip_cfg[0]
 132	},
 133	{}
 134};
 135
 136MODULE_DEVICE_TABLE(pci, pmcraid_pci_table);
 137
 138
 139
 140/**
 141 * pmcraid_slave_alloc - Prepare for commands to a device
 142 * @scsi_dev: scsi device struct
 143 *
 144 * This function is called by mid-layer prior to sending any command to the new
 145 * device. Stores resource entry details of the device in scsi_device struct.
 146 * Queuecommand uses the resource handle and other details to fill up IOARCB
 147 * while sending commands to the device.
 148 *
 149 * Return value:
 150 *	  0 on success / -ENXIO if device does not exist
 151 */
 152static int pmcraid_slave_alloc(struct scsi_device *scsi_dev)
 153{
 154	struct pmcraid_resource_entry *temp, *res = NULL;
 155	struct pmcraid_instance *pinstance;
 156	u8 target, bus, lun;
 157	unsigned long lock_flags;
 158	int rc = -ENXIO;
 159	u16 fw_version;
 160
 161	pinstance = shost_priv(scsi_dev->host);
 162
 163	fw_version = be16_to_cpu(pinstance->inq_data->fw_version);
 164
 165	/* Driver exposes VSET and GSCSI resources only; all other device types
 166	 * are not exposed. Resource list is synchronized using resource lock
 167	 * so any traversal or modifications to the list should be done inside
 168	 * this lock
 169	 */
 170	spin_lock_irqsave(&pinstance->resource_lock, lock_flags);
 171	list_for_each_entry(temp, &pinstance->used_res_q, queue) {
 172
 173		/* do not expose VSETs with order-ids > MAX_VSET_TARGETS */
 174		if (RES_IS_VSET(temp->cfg_entry)) {
 175			if (fw_version <= PMCRAID_FW_VERSION_1)
 176				target = temp->cfg_entry.unique_flags1;
 177			else
 178				target = temp->cfg_entry.array_id & 0xFF;
 179
 180			if (target > PMCRAID_MAX_VSET_TARGETS)
 181				continue;
 182			bus = PMCRAID_VSET_BUS_ID;
 183			lun = 0;
 184		} else if (RES_IS_GSCSI(temp->cfg_entry)) {
 185			target = RES_TARGET(temp->cfg_entry.resource_address);
 186			bus = PMCRAID_PHYS_BUS_ID;
 187			lun = RES_LUN(temp->cfg_entry.resource_address);
 188		} else {
 189			continue;
 190		}
 191
 192		if (bus == scsi_dev->channel &&
 193		    target == scsi_dev->id &&
 194		    lun == scsi_dev->lun) {
 195			res = temp;
 196			break;
 197		}
 198	}
 199
 200	if (res) {
 201		res->scsi_dev = scsi_dev;
 202		scsi_dev->hostdata = res;
 203		res->change_detected = 0;
 204		atomic_set(&res->read_failures, 0);
 205		atomic_set(&res->write_failures, 0);
 206		rc = 0;
 207	}
 208	spin_unlock_irqrestore(&pinstance->resource_lock, lock_flags);
 209	return rc;
 210}
 211
 212/**
 213 * pmcraid_slave_configure - Configures a SCSI device
 214 * @scsi_dev: scsi device struct
 
 215 *
 216 * This function is executed by SCSI mid layer just after a device is first
 217 * scanned (i.e. it has responded to an INQUIRY). For VSET resources, the
 218 * timeout value (default 30s) will be over-written to a higher value (60s)
 219 * and max_sectors value will be over-written to 512. It also sets queue depth
 220 * to host->cmd_per_lun value
 221 *
 222 * Return value:
 223 *	  0 on success
 224 */
 225static int pmcraid_slave_configure(struct scsi_device *scsi_dev)
 
 226{
 227	struct pmcraid_resource_entry *res = scsi_dev->hostdata;
 228
 229	if (!res)
 230		return 0;
 231
 232	/* LLD exposes VSETs and Enclosure devices only */
 233	if (RES_IS_GSCSI(res->cfg_entry) &&
 234	    scsi_dev->type != TYPE_ENCLOSURE)
 235		return -ENXIO;
 236
 237	pmcraid_info("configuring %x:%x:%x:%x\n",
 238		     scsi_dev->host->unique_id,
 239		     scsi_dev->channel,
 240		     scsi_dev->id,
 241		     scsi_dev->lun);
 242
 243	if (RES_IS_GSCSI(res->cfg_entry)) {
 244		scsi_dev->allow_restart = 1;
 245	} else if (RES_IS_VSET(res->cfg_entry)) {
 246		scsi_dev->allow_restart = 1;
 247		blk_queue_rq_timeout(scsi_dev->request_queue,
 248				     PMCRAID_VSET_IO_TIMEOUT);
 249		blk_queue_max_hw_sectors(scsi_dev->request_queue,
 250				      PMCRAID_VSET_MAX_SECTORS);
 251	}
 252
 253	if (scsi_dev->tagged_supported &&
 254	    (RES_IS_GSCSI(res->cfg_entry) || RES_IS_VSET(res->cfg_entry))) {
 255		scsi_activate_tcq(scsi_dev, scsi_dev->queue_depth);
 256		scsi_adjust_queue_depth(scsi_dev, MSG_SIMPLE_TAG,
 257					scsi_dev->host->cmd_per_lun);
 258	} else {
 259		scsi_adjust_queue_depth(scsi_dev, 0,
 260					scsi_dev->host->cmd_per_lun);
 261	}
 262
 263	return 0;
 264}
 265
 266/**
 267 * pmcraid_slave_destroy - Unconfigure a SCSI device before removing it
 268 *
 269 * @scsi_dev: scsi device struct
 270 *
 271 * This is called by mid-layer before removing a device. Pointer assignments
 272 * done in pmcraid_slave_alloc will be reset to NULL here.
 273 *
 274 * Return value
 275 *   none
 276 */
 277static void pmcraid_slave_destroy(struct scsi_device *scsi_dev)
 278{
 279	struct pmcraid_resource_entry *res;
 280
 281	res = (struct pmcraid_resource_entry *)scsi_dev->hostdata;
 282
 283	if (res)
 284		res->scsi_dev = NULL;
 285
 286	scsi_dev->hostdata = NULL;
 287}
 288
 289/**
 290 * pmcraid_change_queue_depth - Change the device's queue depth
 291 * @scsi_dev: scsi device struct
 292 * @depth: depth to set
 293 * @reason: calling context
 294 *
 295 * Return value
 296 *	actual depth set
 297 */
 298static int pmcraid_change_queue_depth(struct scsi_device *scsi_dev, int depth,
 299				      int reason)
 300{
 301	if (reason != SCSI_QDEPTH_DEFAULT)
 302		return -EOPNOTSUPP;
 303
 304	if (depth > PMCRAID_MAX_CMD_PER_LUN)
 305		depth = PMCRAID_MAX_CMD_PER_LUN;
 306
 307	scsi_adjust_queue_depth(scsi_dev, scsi_get_tag_type(scsi_dev), depth);
 308
 309	return scsi_dev->queue_depth;
 310}
 311
 312/**
 313 * pmcraid_change_queue_type - Change the device's queue type
 314 * @scsi_dev: scsi device struct
 315 * @tag: type of tags to use
 316 *
 317 * Return value:
 318 *	actual queue type set
 319 */
 320static int pmcraid_change_queue_type(struct scsi_device *scsi_dev, int tag)
 321{
 322	struct pmcraid_resource_entry *res;
 323
 324	res = (struct pmcraid_resource_entry *)scsi_dev->hostdata;
 325
 326	if ((res) && scsi_dev->tagged_supported &&
 327	    (RES_IS_GSCSI(res->cfg_entry) || RES_IS_VSET(res->cfg_entry))) {
 328		scsi_set_tag_type(scsi_dev, tag);
 329
 330		if (tag)
 331			scsi_activate_tcq(scsi_dev, scsi_dev->queue_depth);
 332		else
 333			scsi_deactivate_tcq(scsi_dev, scsi_dev->queue_depth);
 334	} else
 335		tag = 0;
 336
 337	return tag;
 338}
 339
 340
 341/**
 342 * pmcraid_init_cmdblk - initializes a command block
 343 *
 344 * @cmd: pointer to struct pmcraid_cmd to be initialized
 345 * @index: if >=0 first time initialization; otherwise reinitialization
 346 *
 347 * Return Value
 348 *	 None
 349 */
 350void pmcraid_init_cmdblk(struct pmcraid_cmd *cmd, int index)
 351{
 352	struct pmcraid_ioarcb *ioarcb = &(cmd->ioa_cb->ioarcb);
 353	dma_addr_t dma_addr = cmd->ioa_cb_bus_addr;
 354
 355	if (index >= 0) {
 356		/* first time initialization (called from  probe) */
 357		u32 ioasa_offset =
 358			offsetof(struct pmcraid_control_block, ioasa);
 359
 360		cmd->index = index;
 361		ioarcb->response_handle = cpu_to_le32(index << 2);
 362		ioarcb->ioarcb_bus_addr = cpu_to_le64(dma_addr);
 363		ioarcb->ioasa_bus_addr = cpu_to_le64(dma_addr + ioasa_offset);
 364		ioarcb->ioasa_len = cpu_to_le16(sizeof(struct pmcraid_ioasa));
 365	} else {
 366		/* re-initialization of various lengths, called once command is
 367		 * processed by IOA
 368		 */
 369		memset(&cmd->ioa_cb->ioarcb.cdb, 0, PMCRAID_MAX_CDB_LEN);
 370		ioarcb->hrrq_id = 0;
 371		ioarcb->request_flags0 = 0;
 372		ioarcb->request_flags1 = 0;
 373		ioarcb->cmd_timeout = 0;
 374		ioarcb->ioarcb_bus_addr &= (~0x1FULL);
 375		ioarcb->ioadl_bus_addr = 0;
 376		ioarcb->ioadl_length = 0;
 377		ioarcb->data_transfer_length = 0;
 378		ioarcb->add_cmd_param_length = 0;
 379		ioarcb->add_cmd_param_offset = 0;
 380		cmd->ioa_cb->ioasa.ioasc = 0;
 381		cmd->ioa_cb->ioasa.residual_data_length = 0;
 382		cmd->time_left = 0;
 383	}
 384
 385	cmd->cmd_done = NULL;
 386	cmd->scsi_cmd = NULL;
 387	cmd->release = 0;
 388	cmd->completion_req = 0;
 389	cmd->sense_buffer = 0;
 390	cmd->sense_buffer_dma = 0;
 391	cmd->dma_handle = 0;
 392	init_timer(&cmd->timer);
 393}
 394
 395/**
 396 * pmcraid_reinit_cmdblk - reinitialize a command block
 397 *
 398 * @cmd: pointer to struct pmcraid_cmd to be reinitialized
 399 *
 400 * Return Value
 401 *	 None
 402 */
 403static void pmcraid_reinit_cmdblk(struct pmcraid_cmd *cmd)
 404{
 405	pmcraid_init_cmdblk(cmd, -1);
 406}
 407
 408/**
 409 * pmcraid_get_free_cmd - get a free cmd block from command block pool
 410 * @pinstance: adapter instance structure
 411 *
 412 * Return Value:
 413 *	returns pointer to cmd block or NULL if no blocks are available
 414 */
 415static struct pmcraid_cmd *pmcraid_get_free_cmd(
 416	struct pmcraid_instance *pinstance
 417)
 418{
 419	struct pmcraid_cmd *cmd = NULL;
 420	unsigned long lock_flags;
 421
 422	/* free cmd block list is protected by free_pool_lock */
 423	spin_lock_irqsave(&pinstance->free_pool_lock, lock_flags);
 424
 425	if (!list_empty(&pinstance->free_cmd_pool)) {
 426		cmd = list_entry(pinstance->free_cmd_pool.next,
 427				 struct pmcraid_cmd, free_list);
 428		list_del(&cmd->free_list);
 429	}
 430	spin_unlock_irqrestore(&pinstance->free_pool_lock, lock_flags);
 431
 432	/* Initialize the command block before giving it the caller */
 433	if (cmd != NULL)
 434		pmcraid_reinit_cmdblk(cmd);
 435	return cmd;
 436}
 437
 438/**
 439 * pmcraid_return_cmd - return a completed command block back into free pool
 440 * @cmd: pointer to the command block
 441 *
 442 * Return Value:
 443 *	nothing
 444 */
 445void pmcraid_return_cmd(struct pmcraid_cmd *cmd)
 446{
 447	struct pmcraid_instance *pinstance = cmd->drv_inst;
 448	unsigned long lock_flags;
 449
 450	spin_lock_irqsave(&pinstance->free_pool_lock, lock_flags);
 451	list_add_tail(&cmd->free_list, &pinstance->free_cmd_pool);
 452	spin_unlock_irqrestore(&pinstance->free_pool_lock, lock_flags);
 453}
 454
 455/**
 456 * pmcraid_read_interrupts -  reads IOA interrupts
 457 *
 458 * @pinstance: pointer to adapter instance structure
 459 *
 460 * Return value
 461 *	 interrupts read from IOA
 462 */
 463static u32 pmcraid_read_interrupts(struct pmcraid_instance *pinstance)
 464{
 465	return (pinstance->interrupt_mode) ?
 466		ioread32(pinstance->int_regs.ioa_host_msix_interrupt_reg) :
 467		ioread32(pinstance->int_regs.ioa_host_interrupt_reg);
 468}
 469
 470/**
 471 * pmcraid_disable_interrupts - Masks and clears all specified interrupts
 472 *
 473 * @pinstance: pointer to per adapter instance structure
 474 * @intrs: interrupts to disable
 475 *
 476 * Return Value
 477 *	 None
 478 */
 479static void pmcraid_disable_interrupts(
 480	struct pmcraid_instance *pinstance,
 481	u32 intrs
 482)
 483{
 484	u32 gmask = ioread32(pinstance->int_regs.global_interrupt_mask_reg);
 485	u32 nmask = gmask | GLOBAL_INTERRUPT_MASK;
 486
 487	iowrite32(intrs, pinstance->int_regs.ioa_host_interrupt_clr_reg);
 488	iowrite32(nmask, pinstance->int_regs.global_interrupt_mask_reg);
 489	ioread32(pinstance->int_regs.global_interrupt_mask_reg);
 490
 491	if (!pinstance->interrupt_mode) {
 492		iowrite32(intrs,
 493			pinstance->int_regs.ioa_host_interrupt_mask_reg);
 494		ioread32(pinstance->int_regs.ioa_host_interrupt_mask_reg);
 495	}
 496}
 497
 498/**
 499 * pmcraid_enable_interrupts - Enables specified interrupts
 500 *
 501 * @pinstance: pointer to per adapter instance structure
 502 * @intr: interrupts to enable
 503 *
 504 * Return Value
 505 *	 None
 506 */
 507static void pmcraid_enable_interrupts(
 508	struct pmcraid_instance *pinstance,
 509	u32 intrs
 510)
 511{
 512	u32 gmask = ioread32(pinstance->int_regs.global_interrupt_mask_reg);
 513	u32 nmask = gmask & (~GLOBAL_INTERRUPT_MASK);
 514
 515	iowrite32(nmask, pinstance->int_regs.global_interrupt_mask_reg);
 516
 517	if (!pinstance->interrupt_mode) {
 518		iowrite32(~intrs,
 519			 pinstance->int_regs.ioa_host_interrupt_mask_reg);
 520		ioread32(pinstance->int_regs.ioa_host_interrupt_mask_reg);
 521	}
 522
 523	pmcraid_info("enabled interrupts global mask = %x intr_mask = %x\n",
 524		ioread32(pinstance->int_regs.global_interrupt_mask_reg),
 525		ioread32(pinstance->int_regs.ioa_host_interrupt_mask_reg));
 526}
 527
 528/**
 529 * pmcraid_clr_trans_op - clear trans to op interrupt
 530 *
 531 * @pinstance: pointer to per adapter instance structure
 532 *
 533 * Return Value
 534 *	 None
 535 */
 536static void pmcraid_clr_trans_op(
 537	struct pmcraid_instance *pinstance
 538)
 539{
 540	unsigned long lock_flags;
 541
 542	if (!pinstance->interrupt_mode) {
 543		iowrite32(INTRS_TRANSITION_TO_OPERATIONAL,
 544			pinstance->int_regs.ioa_host_interrupt_mask_reg);
 545		ioread32(pinstance->int_regs.ioa_host_interrupt_mask_reg);
 546		iowrite32(INTRS_TRANSITION_TO_OPERATIONAL,
 547			pinstance->int_regs.ioa_host_interrupt_clr_reg);
 548		ioread32(pinstance->int_regs.ioa_host_interrupt_clr_reg);
 549	}
 550
 551	if (pinstance->reset_cmd != NULL) {
 552		del_timer(&pinstance->reset_cmd->timer);
 553		spin_lock_irqsave(
 554			pinstance->host->host_lock, lock_flags);
 555		pinstance->reset_cmd->cmd_done(pinstance->reset_cmd);
 556		spin_unlock_irqrestore(
 557			pinstance->host->host_lock, lock_flags);
 558	}
 559}
 560
 561/**
 562 * pmcraid_reset_type - Determine the required reset type
 563 * @pinstance: pointer to adapter instance structure
 564 *
 565 * IOA requires hard reset if any of the following conditions is true.
 566 * 1. If HRRQ valid interrupt is not masked
 567 * 2. IOA reset alert doorbell is set
 568 * 3. If there are any error interrupts
 569 */
 570static void pmcraid_reset_type(struct pmcraid_instance *pinstance)
 571{
 572	u32 mask;
 573	u32 intrs;
 574	u32 alerts;
 575
 576	mask = ioread32(pinstance->int_regs.ioa_host_interrupt_mask_reg);
 577	intrs = ioread32(pinstance->int_regs.ioa_host_interrupt_reg);
 578	alerts = ioread32(pinstance->int_regs.host_ioa_interrupt_reg);
 579
 580	if ((mask & INTRS_HRRQ_VALID) == 0 ||
 581	    (alerts & DOORBELL_IOA_RESET_ALERT) ||
 582	    (intrs & PMCRAID_ERROR_INTERRUPTS)) {
 583		pmcraid_info("IOA requires hard reset\n");
 584		pinstance->ioa_hard_reset = 1;
 585	}
 586
 587	/* If unit check is active, trigger the dump */
 588	if (intrs & INTRS_IOA_UNIT_CHECK)
 589		pinstance->ioa_unit_check = 1;
 590}
 591
 
 592/**
 593 * pmcraid_bist_done - completion function for PCI BIST
 594 * @cmd: pointer to reset command
 595 * Return Value
 596 *	none
 597 */
 598
 599static void pmcraid_ioa_reset(struct pmcraid_cmd *);
 600
 601static void pmcraid_bist_done(struct pmcraid_cmd *cmd)
 602{
 
 603	struct pmcraid_instance *pinstance = cmd->drv_inst;
 604	unsigned long lock_flags;
 605	int rc;
 606	u16 pci_reg;
 607
 608	rc = pci_read_config_word(pinstance->pdev, PCI_COMMAND, &pci_reg);
 609
 610	/* If PCI config space can't be accessed wait for another two secs */
 611	if ((rc != PCIBIOS_SUCCESSFUL || (!(pci_reg & PCI_COMMAND_MEMORY))) &&
 612	    cmd->time_left > 0) {
 613		pmcraid_info("BIST not complete, waiting another 2 secs\n");
 614		cmd->timer.expires = jiffies + cmd->time_left;
 615		cmd->time_left = 0;
 616		cmd->timer.data = (unsigned long)cmd;
 617		cmd->timer.function =
 618			(void (*)(unsigned long))pmcraid_bist_done;
 619		add_timer(&cmd->timer);
 620	} else {
 621		cmd->time_left = 0;
 622		pmcraid_info("BIST is complete, proceeding with reset\n");
 623		spin_lock_irqsave(pinstance->host->host_lock, lock_flags);
 624		pmcraid_ioa_reset(cmd);
 625		spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
 626	}
 627}
 628
 629/**
 630 * pmcraid_start_bist - starts BIST
 631 * @cmd: pointer to reset cmd
 632 * Return Value
 633 *   none
 634 */
 635static void pmcraid_start_bist(struct pmcraid_cmd *cmd)
 636{
 637	struct pmcraid_instance *pinstance = cmd->drv_inst;
 638	u32 doorbells, intrs;
 639
 640	/* proceed with bist and wait for 2 seconds */
 641	iowrite32(DOORBELL_IOA_START_BIST,
 642		pinstance->int_regs.host_ioa_interrupt_reg);
 643	doorbells = ioread32(pinstance->int_regs.host_ioa_interrupt_reg);
 644	intrs = ioread32(pinstance->int_regs.ioa_host_interrupt_reg);
 645	pmcraid_info("doorbells after start bist: %x intrs: %x\n",
 646		      doorbells, intrs);
 647
 648	cmd->time_left = msecs_to_jiffies(PMCRAID_BIST_TIMEOUT);
 649	cmd->timer.data = (unsigned long)cmd;
 650	cmd->timer.expires = jiffies + msecs_to_jiffies(PMCRAID_BIST_TIMEOUT);
 651	cmd->timer.function = (void (*)(unsigned long))pmcraid_bist_done;
 652	add_timer(&cmd->timer);
 653}
 654
 655/**
 656 * pmcraid_reset_alert_done - completion routine for reset_alert
 657 * @cmd: pointer to command block used in reset sequence
 658 * Return value
 659 *  None
 660 */
 661static void pmcraid_reset_alert_done(struct pmcraid_cmd *cmd)
 662{
 
 663	struct pmcraid_instance *pinstance = cmd->drv_inst;
 664	u32 status = ioread32(pinstance->ioa_status);
 665	unsigned long lock_flags;
 666
 667	/* if the critical operation in progress bit is set or the wait times
 668	 * out, invoke reset engine to proceed with hard reset. If there is
 669	 * some more time to wait, restart the timer
 670	 */
 671	if (((status & INTRS_CRITICAL_OP_IN_PROGRESS) == 0) ||
 672	    cmd->time_left <= 0) {
 673		pmcraid_info("critical op is reset proceeding with reset\n");
 674		spin_lock_irqsave(pinstance->host->host_lock, lock_flags);
 675		pmcraid_ioa_reset(cmd);
 676		spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
 677	} else {
 678		pmcraid_info("critical op is not yet reset waiting again\n");
 679		/* restart timer if some more time is available to wait */
 680		cmd->time_left -= PMCRAID_CHECK_FOR_RESET_TIMEOUT;
 681		cmd->timer.data = (unsigned long)cmd;
 682		cmd->timer.expires = jiffies + PMCRAID_CHECK_FOR_RESET_TIMEOUT;
 683		cmd->timer.function =
 684			(void (*)(unsigned long))pmcraid_reset_alert_done;
 685		add_timer(&cmd->timer);
 686	}
 687}
 688
 
 689/**
 690 * pmcraid_reset_alert - alerts IOA for a possible reset
 691 * @cmd : command block to be used for reset sequence.
 692 *
 693 * Return Value
 694 *	returns 0 if pci config-space is accessible and RESET_DOORBELL is
 695 *	successfully written to IOA. Returns non-zero in case pci_config_space
 696 *	is not accessible
 697 */
 698static void pmcraid_notify_ioastate(struct pmcraid_instance *, u32);
 699static void pmcraid_reset_alert(struct pmcraid_cmd *cmd)
 700{
 701	struct pmcraid_instance *pinstance = cmd->drv_inst;
 702	u32 doorbells;
 703	int rc;
 704	u16 pci_reg;
 705
 706	/* If we are able to access IOA PCI config space, alert IOA that we are
 707	 * going to reset it soon. This enables IOA to preserv persistent error
 708	 * data if any. In case memory space is not accessible, proceed with
 709	 * BIST or slot_reset
 710	 */
 711	rc = pci_read_config_word(pinstance->pdev, PCI_COMMAND, &pci_reg);
 712	if ((rc == PCIBIOS_SUCCESSFUL) && (pci_reg & PCI_COMMAND_MEMORY)) {
 713
 714		/* wait for IOA permission i.e until CRITICAL_OPERATION bit is
 715		 * reset IOA doesn't generate any interrupts when CRITICAL
 716		 * OPERATION bit is reset. A timer is started to wait for this
 717		 * bit to be reset.
 718		 */
 719		cmd->time_left = PMCRAID_RESET_TIMEOUT;
 720		cmd->timer.data = (unsigned long)cmd;
 721		cmd->timer.expires = jiffies + PMCRAID_CHECK_FOR_RESET_TIMEOUT;
 722		cmd->timer.function =
 723			(void (*)(unsigned long))pmcraid_reset_alert_done;
 724		add_timer(&cmd->timer);
 725
 726		iowrite32(DOORBELL_IOA_RESET_ALERT,
 727			pinstance->int_regs.host_ioa_interrupt_reg);
 728		doorbells =
 729			ioread32(pinstance->int_regs.host_ioa_interrupt_reg);
 730		pmcraid_info("doorbells after reset alert: %x\n", doorbells);
 731	} else {
 732		pmcraid_info("PCI config is not accessible starting BIST\n");
 733		pinstance->ioa_state = IOA_STATE_IN_HARD_RESET;
 734		pmcraid_start_bist(cmd);
 735	}
 736}
 737
 738/**
 739 * pmcraid_timeout_handler -  Timeout handler for internally generated ops
 740 *
 741 * @cmd : pointer to command structure, that got timedout
 742 *
 743 * This function blocks host requests and initiates an adapter reset.
 744 *
 745 * Return value:
 746 *   None
 747 */
 748static void pmcraid_timeout_handler(struct pmcraid_cmd *cmd)
 749{
 
 750	struct pmcraid_instance *pinstance = cmd->drv_inst;
 751	unsigned long lock_flags;
 752
 753	dev_info(&pinstance->pdev->dev,
 754		"Adapter being reset due to cmd(CDB[0] = %x) timeout\n",
 755		cmd->ioa_cb->ioarcb.cdb[0]);
 756
 757	/* Command timeouts result in hard reset sequence. The command that got
 758	 * timed out may be the one used as part of reset sequence. In this
 759	 * case restart reset sequence using the same command block even if
 760	 * reset is in progress. Otherwise fail this command and get a free
 761	 * command block to restart the reset sequence.
 762	 */
 763	spin_lock_irqsave(pinstance->host->host_lock, lock_flags);
 764	if (!pinstance->ioa_reset_in_progress) {
 765		pinstance->ioa_reset_attempts = 0;
 766		cmd = pmcraid_get_free_cmd(pinstance);
 767
 768		/* If we are out of command blocks, just return here itself.
 769		 * Some other command's timeout handler can do the reset job
 770		 */
 771		if (cmd == NULL) {
 772			spin_unlock_irqrestore(pinstance->host->host_lock,
 773					       lock_flags);
 774			pmcraid_err("no free cmnd block for timeout handler\n");
 775			return;
 776		}
 777
 778		pinstance->reset_cmd = cmd;
 779		pinstance->ioa_reset_in_progress = 1;
 780	} else {
 781		pmcraid_info("reset is already in progress\n");
 782
 783		if (pinstance->reset_cmd != cmd) {
 784			/* This command should have been given to IOA, this
 785			 * command will be completed by fail_outstanding_cmds
 786			 * anyway
 787			 */
 788			pmcraid_err("cmd is pending but reset in progress\n");
 789		}
 790
 791		/* If this command was being used as part of the reset
 792		 * sequence, set cmd_done pointer to pmcraid_ioa_reset. This
 793		 * causes fail_outstanding_commands not to return the command
 794		 * block back to free pool
 795		 */
 796		if (cmd == pinstance->reset_cmd)
 797			cmd->cmd_done = pmcraid_ioa_reset;
 798	}
 799
 800	/* Notify apps of important IOA bringup/bringdown sequences */
 801	if (pinstance->scn.ioa_state != PMC_DEVICE_EVENT_RESET_START &&
 802	    pinstance->scn.ioa_state != PMC_DEVICE_EVENT_SHUTDOWN_START)
 803		pmcraid_notify_ioastate(pinstance,
 804					PMC_DEVICE_EVENT_RESET_START);
 805
 806	pinstance->ioa_state = IOA_STATE_IN_RESET_ALERT;
 807	scsi_block_requests(pinstance->host);
 808	pmcraid_reset_alert(cmd);
 809	spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
 810}
 811
 812/**
 813 * pmcraid_internal_done - completion routine for internally generated cmds
 814 *
 815 * @cmd: command that got response from IOA
 816 *
 817 * Return Value:
 818 *	 none
 819 */
 820static void pmcraid_internal_done(struct pmcraid_cmd *cmd)
 821{
 822	pmcraid_info("response internal cmd CDB[0] = %x ioasc = %x\n",
 823		     cmd->ioa_cb->ioarcb.cdb[0],
 824		     le32_to_cpu(cmd->ioa_cb->ioasa.ioasc));
 825
 826	/* Some of the internal commands are sent with callers blocking for the
 827	 * response. Same will be indicated as part of cmd->completion_req
 828	 * field. Response path needs to wake up any waiters waiting for cmd
 829	 * completion if this flag is set.
 830	 */
 831	if (cmd->completion_req) {
 832		cmd->completion_req = 0;
 833		complete(&cmd->wait_for_completion);
 834	}
 835
 836	/* most of the internal commands are completed by caller itself, so
 837	 * no need to return the command block back to free pool until we are
 838	 * required to do so (e.g once done with initialization).
 839	 */
 840	if (cmd->release) {
 841		cmd->release = 0;
 842		pmcraid_return_cmd(cmd);
 843	}
 844}
 845
 846/**
 847 * pmcraid_reinit_cfgtable_done - done function for cfg table reinitialization
 848 *
 849 * @cmd: command that got response from IOA
 850 *
 851 * This routine is called after driver re-reads configuration table due to a
 852 * lost CCN. It returns the command block back to free pool and schedules
 853 * worker thread to add/delete devices into the system.
 854 *
 855 * Return Value:
 856 *	 none
 857 */
 858static void pmcraid_reinit_cfgtable_done(struct pmcraid_cmd *cmd)
 859{
 860	pmcraid_info("response internal cmd CDB[0] = %x ioasc = %x\n",
 861		     cmd->ioa_cb->ioarcb.cdb[0],
 862		     le32_to_cpu(cmd->ioa_cb->ioasa.ioasc));
 863
 864	if (cmd->release) {
 865		cmd->release = 0;
 866		pmcraid_return_cmd(cmd);
 867	}
 868	pmcraid_info("scheduling worker for config table reinitialization\n");
 869	schedule_work(&cmd->drv_inst->worker_q);
 870}
 871
 872/**
 873 * pmcraid_erp_done - Process completion of SCSI error response from device
 874 * @cmd: pmcraid_command
 875 *
 876 * This function copies the sense buffer into the scsi_cmd struct and completes
 877 * scsi_cmd by calling scsi_done function.
 878 *
 879 * Return value:
 880 *  none
 881 */
 882static void pmcraid_erp_done(struct pmcraid_cmd *cmd)
 883{
 884	struct scsi_cmnd *scsi_cmd = cmd->scsi_cmd;
 885	struct pmcraid_instance *pinstance = cmd->drv_inst;
 886	u32 ioasc = le32_to_cpu(cmd->ioa_cb->ioasa.ioasc);
 887
 888	if (PMCRAID_IOASC_SENSE_KEY(ioasc) > 0) {
 889		scsi_cmd->result |= (DID_ERROR << 16);
 890		scmd_printk(KERN_INFO, scsi_cmd,
 891			    "command CDB[0] = %x failed with IOASC: 0x%08X\n",
 892			    cmd->ioa_cb->ioarcb.cdb[0], ioasc);
 893	}
 894
 895	/* if we had allocated sense buffers for request sense, copy the sense
 896	 * release the buffers
 897	 */
 898	if (cmd->sense_buffer != NULL) {
 899		memcpy(scsi_cmd->sense_buffer,
 900		       cmd->sense_buffer,
 901		       SCSI_SENSE_BUFFERSIZE);
 902		pci_free_consistent(pinstance->pdev,
 903				    SCSI_SENSE_BUFFERSIZE,
 904				    cmd->sense_buffer, cmd->sense_buffer_dma);
 905		cmd->sense_buffer = NULL;
 906		cmd->sense_buffer_dma = 0;
 907	}
 908
 909	scsi_dma_unmap(scsi_cmd);
 910	pmcraid_return_cmd(cmd);
 911	scsi_cmd->scsi_done(scsi_cmd);
 912}
 913
 914/**
 915 * pmcraid_fire_command - sends an IOA command to adapter
 916 *
 917 * This function adds the given block into pending command list
 918 * and returns without waiting
 919 *
 920 * @cmd : command to be sent to the device
 921 *
 922 * Return Value
 923 *	None
 924 */
 925static void _pmcraid_fire_command(struct pmcraid_cmd *cmd)
 926{
 927	struct pmcraid_instance *pinstance = cmd->drv_inst;
 928	unsigned long lock_flags;
 929
 930	/* Add this command block to pending cmd pool. We do this prior to
 931	 * writting IOARCB to ioarrin because IOA might complete the command
 932	 * by the time we are about to add it to the list. Response handler
 933	 * (isr/tasklet) looks for cmd block in the pending pending list.
 934	 */
 935	spin_lock_irqsave(&pinstance->pending_pool_lock, lock_flags);
 936	list_add_tail(&cmd->free_list, &pinstance->pending_cmd_pool);
 937	spin_unlock_irqrestore(&pinstance->pending_pool_lock, lock_flags);
 938	atomic_inc(&pinstance->outstanding_cmds);
 939
 940	/* driver writes lower 32-bit value of IOARCB address only */
 941	mb();
 942	iowrite32(le32_to_cpu(cmd->ioa_cb->ioarcb.ioarcb_bus_addr),
 943		  pinstance->ioarrin);
 944}
 945
 946/**
 947 * pmcraid_send_cmd - fires a command to IOA
 948 *
 949 * This function also sets up timeout function, and command completion
 950 * function
 951 *
 952 * @cmd: pointer to the command block to be fired to IOA
 953 * @cmd_done: command completion function, called once IOA responds
 954 * @timeout: timeout to wait for this command completion
 955 * @timeout_func: timeout handler
 956 *
 957 * Return value
 958 *   none
 959 */
 960static void pmcraid_send_cmd(
 961	struct pmcraid_cmd *cmd,
 962	void (*cmd_done) (struct pmcraid_cmd *),
 963	unsigned long timeout,
 964	void (*timeout_func) (struct pmcraid_cmd *)
 965)
 966{
 967	/* initialize done function */
 968	cmd->cmd_done = cmd_done;
 969
 970	if (timeout_func) {
 971		/* setup timeout handler */
 972		cmd->timer.data = (unsigned long)cmd;
 973		cmd->timer.expires = jiffies + timeout;
 974		cmd->timer.function = (void (*)(unsigned long))timeout_func;
 975		add_timer(&cmd->timer);
 976	}
 977
 978	/* fire the command to IOA */
 979	_pmcraid_fire_command(cmd);
 980}
 981
 982/**
 983 * pmcraid_ioa_shutdown_done - completion function for IOA shutdown command
 984 * @cmd: pointer to the command block used for sending IOA shutdown command
 985 *
 986 * Return value
 987 *  None
 988 */
 989static void pmcraid_ioa_shutdown_done(struct pmcraid_cmd *cmd)
 990{
 991	struct pmcraid_instance *pinstance = cmd->drv_inst;
 992	unsigned long lock_flags;
 993
 994	spin_lock_irqsave(pinstance->host->host_lock, lock_flags);
 995	pmcraid_ioa_reset(cmd);
 996	spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
 997}
 998
 999/**
1000 * pmcraid_ioa_shutdown - sends SHUTDOWN command to ioa
1001 *
1002 * @cmd: pointer to the command block used as part of reset sequence
1003 *
1004 * Return Value
1005 *  None
1006 */
1007static void pmcraid_ioa_shutdown(struct pmcraid_cmd *cmd)
1008{
1009	pmcraid_info("response for Cancel CCN CDB[0] = %x ioasc = %x\n",
1010		     cmd->ioa_cb->ioarcb.cdb[0],
1011		     le32_to_cpu(cmd->ioa_cb->ioasa.ioasc));
1012
1013	/* Note that commands sent during reset require next command to be sent
1014	 * to IOA. Hence reinit the done function as well as timeout function
1015	 */
1016	pmcraid_reinit_cmdblk(cmd);
1017	cmd->ioa_cb->ioarcb.request_type = REQ_TYPE_IOACMD;
1018	cmd->ioa_cb->ioarcb.resource_handle =
1019		cpu_to_le32(PMCRAID_IOA_RES_HANDLE);
1020	cmd->ioa_cb->ioarcb.cdb[0] = PMCRAID_IOA_SHUTDOWN;
1021	cmd->ioa_cb->ioarcb.cdb[1] = PMCRAID_SHUTDOWN_NORMAL;
1022
1023	/* fire shutdown command to hardware. */
1024	pmcraid_info("firing normal shutdown command (%d) to IOA\n",
1025		     le32_to_cpu(cmd->ioa_cb->ioarcb.response_handle));
1026
1027	pmcraid_notify_ioastate(cmd->drv_inst, PMC_DEVICE_EVENT_SHUTDOWN_START);
1028
1029	pmcraid_send_cmd(cmd, pmcraid_ioa_shutdown_done,
1030			 PMCRAID_SHUTDOWN_TIMEOUT,
1031			 pmcraid_timeout_handler);
1032}
1033
 
1034/**
1035 * pmcraid_get_fwversion_done - completion function for get_fwversion
1036 *
1037 * @cmd: pointer to command block used to send INQUIRY command
1038 *
1039 * Return Value
1040 *	none
1041 */
1042static void pmcraid_querycfg(struct pmcraid_cmd *);
1043
1044static void pmcraid_get_fwversion_done(struct pmcraid_cmd *cmd)
1045{
1046	struct pmcraid_instance *pinstance = cmd->drv_inst;
1047	u32 ioasc = le32_to_cpu(cmd->ioa_cb->ioasa.ioasc);
1048	unsigned long lock_flags;
1049
1050	/* configuration table entry size depends on firmware version. If fw
1051	 * version is not known, it is not possible to interpret IOA config
1052	 * table
1053	 */
1054	if (ioasc) {
1055		pmcraid_err("IOA Inquiry failed with %x\n", ioasc);
1056		spin_lock_irqsave(pinstance->host->host_lock, lock_flags);
1057		pinstance->ioa_state = IOA_STATE_IN_RESET_ALERT;
1058		pmcraid_reset_alert(cmd);
1059		spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
1060	} else  {
1061		pmcraid_querycfg(cmd);
1062	}
1063}
1064
1065/**
1066 * pmcraid_get_fwversion - reads firmware version information
1067 *
1068 * @cmd: pointer to command block used to send INQUIRY command
1069 *
1070 * Return Value
1071 *	none
1072 */
1073static void pmcraid_get_fwversion(struct pmcraid_cmd *cmd)
1074{
1075	struct pmcraid_ioarcb *ioarcb = &cmd->ioa_cb->ioarcb;
1076	struct pmcraid_ioadl_desc *ioadl = ioarcb->add_data.u.ioadl;
1077	struct pmcraid_instance *pinstance = cmd->drv_inst;
1078	u16 data_size = sizeof(struct pmcraid_inquiry_data);
1079
1080	pmcraid_reinit_cmdblk(cmd);
1081	ioarcb->request_type = REQ_TYPE_SCSI;
1082	ioarcb->resource_handle = cpu_to_le32(PMCRAID_IOA_RES_HANDLE);
1083	ioarcb->cdb[0] = INQUIRY;
1084	ioarcb->cdb[1] = 1;
1085	ioarcb->cdb[2] = 0xD0;
1086	ioarcb->cdb[3] = (data_size >> 8) & 0xFF;
1087	ioarcb->cdb[4] = data_size & 0xFF;
1088
1089	/* Since entire inquiry data it can be part of IOARCB itself
1090	 */
1091	ioarcb->ioadl_bus_addr = cpu_to_le64((cmd->ioa_cb_bus_addr) +
1092					offsetof(struct pmcraid_ioarcb,
1093						add_data.u.ioadl[0]));
1094	ioarcb->ioadl_length = cpu_to_le32(sizeof(struct pmcraid_ioadl_desc));
1095	ioarcb->ioarcb_bus_addr &= ~(0x1FULL);
1096
1097	ioarcb->request_flags0 |= NO_LINK_DESCS;
1098	ioarcb->data_transfer_length = cpu_to_le32(data_size);
1099	ioadl = &(ioarcb->add_data.u.ioadl[0]);
1100	ioadl->flags = IOADL_FLAGS_LAST_DESC;
1101	ioadl->address = cpu_to_le64(pinstance->inq_data_baddr);
1102	ioadl->data_len = cpu_to_le32(data_size);
1103
1104	pmcraid_send_cmd(cmd, pmcraid_get_fwversion_done,
1105			 PMCRAID_INTERNAL_TIMEOUT, pmcraid_timeout_handler);
1106}
1107
1108/**
1109 * pmcraid_identify_hrrq - registers host rrq buffers with IOA
1110 * @cmd: pointer to command block to be used for identify hrrq
1111 *
1112 * Return Value
1113 *	 none
1114 */
1115static void pmcraid_identify_hrrq(struct pmcraid_cmd *cmd)
1116{
1117	struct pmcraid_instance *pinstance = cmd->drv_inst;
1118	struct pmcraid_ioarcb *ioarcb = &cmd->ioa_cb->ioarcb;
1119	int index = cmd->hrrq_index;
1120	__be64 hrrq_addr = cpu_to_be64(pinstance->hrrq_start_bus_addr[index]);
1121	u32 hrrq_size = cpu_to_be32(sizeof(u32) * PMCRAID_MAX_CMD);
1122	void (*done_function)(struct pmcraid_cmd *);
1123
1124	pmcraid_reinit_cmdblk(cmd);
1125	cmd->hrrq_index = index + 1;
1126
1127	if (cmd->hrrq_index < pinstance->num_hrrq) {
1128		done_function = pmcraid_identify_hrrq;
1129	} else {
1130		cmd->hrrq_index = 0;
1131		done_function = pmcraid_get_fwversion;
1132	}
1133
1134	/* Initialize ioarcb */
1135	ioarcb->request_type = REQ_TYPE_IOACMD;
1136	ioarcb->resource_handle = cpu_to_le32(PMCRAID_IOA_RES_HANDLE);
1137
1138	/* initialize the hrrq number where IOA will respond to this command */
1139	ioarcb->hrrq_id = index;
1140	ioarcb->cdb[0] = PMCRAID_IDENTIFY_HRRQ;
1141	ioarcb->cdb[1] = index;
1142
1143	/* IOA expects 64-bit pci address to be written in B.E format
1144	 * (i.e cdb[2]=MSByte..cdb[9]=LSB.
1145	 */
1146	pmcraid_info("HRRQ_IDENTIFY with hrrq:ioarcb:index => %llx:%llx:%x\n",
1147		     hrrq_addr, ioarcb->ioarcb_bus_addr, index);
1148
1149	memcpy(&(ioarcb->cdb[2]), &hrrq_addr, sizeof(hrrq_addr));
1150	memcpy(&(ioarcb->cdb[10]), &hrrq_size, sizeof(hrrq_size));
1151
1152	/* Subsequent commands require HRRQ identification to be successful.
1153	 * Note that this gets called even during reset from SCSI mid-layer
1154	 * or tasklet
1155	 */
1156	pmcraid_send_cmd(cmd, done_function,
1157			 PMCRAID_INTERNAL_TIMEOUT,
1158			 pmcraid_timeout_handler);
1159}
1160
1161static void pmcraid_process_ccn(struct pmcraid_cmd *cmd);
1162static void pmcraid_process_ldn(struct pmcraid_cmd *cmd);
1163
1164/**
1165 * pmcraid_send_hcam_cmd - send an initialized command block(HCAM) to IOA
1166 *
1167 * @cmd: initialized command block pointer
1168 *
1169 * Return Value
1170 *   none
1171 */
1172static void pmcraid_send_hcam_cmd(struct pmcraid_cmd *cmd)
1173{
1174	if (cmd->ioa_cb->ioarcb.cdb[1] == PMCRAID_HCAM_CODE_CONFIG_CHANGE)
1175		atomic_set(&(cmd->drv_inst->ccn.ignore), 0);
1176	else
1177		atomic_set(&(cmd->drv_inst->ldn.ignore), 0);
1178
1179	pmcraid_send_cmd(cmd, cmd->cmd_done, 0, NULL);
1180}
1181
1182/**
1183 * pmcraid_init_hcam - send an initialized command block(HCAM) to IOA
1184 *
1185 * @pinstance: pointer to adapter instance structure
1186 * @type: HCAM type
1187 *
1188 * Return Value
1189 *   pointer to initialized pmcraid_cmd structure or NULL
1190 */
1191static struct pmcraid_cmd *pmcraid_init_hcam
1192(
1193	struct pmcraid_instance *pinstance,
1194	u8 type
1195)
1196{
1197	struct pmcraid_cmd *cmd;
1198	struct pmcraid_ioarcb *ioarcb;
1199	struct pmcraid_ioadl_desc *ioadl;
1200	struct pmcraid_hostrcb *hcam;
1201	void (*cmd_done) (struct pmcraid_cmd *);
1202	dma_addr_t dma;
1203	int rcb_size;
1204
1205	cmd = pmcraid_get_free_cmd(pinstance);
1206
1207	if (!cmd) {
1208		pmcraid_err("no free command blocks for hcam\n");
1209		return cmd;
1210	}
1211
1212	if (type == PMCRAID_HCAM_CODE_CONFIG_CHANGE) {
1213		rcb_size = sizeof(struct pmcraid_hcam_ccn_ext);
1214		cmd_done = pmcraid_process_ccn;
1215		dma = pinstance->ccn.baddr + PMCRAID_AEN_HDR_SIZE;
1216		hcam = &pinstance->ccn;
1217	} else {
1218		rcb_size = sizeof(struct pmcraid_hcam_ldn);
1219		cmd_done = pmcraid_process_ldn;
1220		dma = pinstance->ldn.baddr + PMCRAID_AEN_HDR_SIZE;
1221		hcam = &pinstance->ldn;
1222	}
1223
1224	/* initialize command pointer used for HCAM registration */
1225	hcam->cmd = cmd;
1226
1227	ioarcb = &cmd->ioa_cb->ioarcb;
1228	ioarcb->ioadl_bus_addr = cpu_to_le64((cmd->ioa_cb_bus_addr) +
1229					offsetof(struct pmcraid_ioarcb,
1230						add_data.u.ioadl[0]));
1231	ioarcb->ioadl_length = cpu_to_le32(sizeof(struct pmcraid_ioadl_desc));
1232	ioadl = ioarcb->add_data.u.ioadl;
1233
1234	/* Initialize ioarcb */
1235	ioarcb->request_type = REQ_TYPE_HCAM;
1236	ioarcb->resource_handle = cpu_to_le32(PMCRAID_IOA_RES_HANDLE);
1237	ioarcb->cdb[0] = PMCRAID_HOST_CONTROLLED_ASYNC;
1238	ioarcb->cdb[1] = type;
1239	ioarcb->cdb[7] = (rcb_size >> 8) & 0xFF;
1240	ioarcb->cdb[8] = (rcb_size) & 0xFF;
1241
1242	ioarcb->data_transfer_length = cpu_to_le32(rcb_size);
1243
1244	ioadl[0].flags |= IOADL_FLAGS_READ_LAST;
1245	ioadl[0].data_len = cpu_to_le32(rcb_size);
1246	ioadl[0].address = cpu_to_le32(dma);
1247
1248	cmd->cmd_done = cmd_done;
1249	return cmd;
1250}
1251
1252/**
1253 * pmcraid_send_hcam - Send an HCAM to IOA
1254 * @pinstance: ioa config struct
1255 * @type: HCAM type
1256 *
1257 * This function will send a Host Controlled Async command to IOA.
1258 *
1259 * Return value:
1260 *	none
1261 */
1262static void pmcraid_send_hcam(struct pmcraid_instance *pinstance, u8 type)
1263{
1264	struct pmcraid_cmd *cmd = pmcraid_init_hcam(pinstance, type);
1265	pmcraid_send_hcam_cmd(cmd);
1266}
1267
1268
1269/**
1270 * pmcraid_prepare_cancel_cmd - prepares a command block to abort another
1271 *
1272 * @cmd: pointer to cmd that is used as cancelling command
1273 * @cmd_to_cancel: pointer to the command that needs to be cancelled
1274 */
1275static void pmcraid_prepare_cancel_cmd(
1276	struct pmcraid_cmd *cmd,
1277	struct pmcraid_cmd *cmd_to_cancel
1278)
1279{
1280	struct pmcraid_ioarcb *ioarcb = &cmd->ioa_cb->ioarcb;
1281	__be64 ioarcb_addr = cmd_to_cancel->ioa_cb->ioarcb.ioarcb_bus_addr;
 
 
 
 
 
 
1282
1283	/* Get the resource handle to where the command to be aborted has been
1284	 * sent.
1285	 */
1286	ioarcb->resource_handle = cmd_to_cancel->ioa_cb->ioarcb.resource_handle;
1287	ioarcb->request_type = REQ_TYPE_IOACMD;
1288	memset(ioarcb->cdb, 0, PMCRAID_MAX_CDB_LEN);
1289	ioarcb->cdb[0] = PMCRAID_ABORT_CMD;
1290
1291	/* IOARCB address of the command to be cancelled is given in
1292	 * cdb[2]..cdb[9] is Big-Endian format. Note that length bits in
1293	 * IOARCB address are not masked.
1294	 */
1295	ioarcb_addr = cpu_to_be64(ioarcb_addr);
1296	memcpy(&(ioarcb->cdb[2]), &ioarcb_addr, sizeof(ioarcb_addr));
1297}
1298
1299/**
1300 * pmcraid_cancel_hcam - sends ABORT task to abort a given HCAM
1301 *
1302 * @cmd: command to be used as cancelling command
1303 * @type: HCAM type
1304 * @cmd_done: op done function for the cancelling command
1305 */
1306static void pmcraid_cancel_hcam(
1307	struct pmcraid_cmd *cmd,
1308	u8 type,
1309	void (*cmd_done) (struct pmcraid_cmd *)
1310)
1311{
1312	struct pmcraid_instance *pinstance;
1313	struct pmcraid_hostrcb  *hcam;
1314
1315	pinstance = cmd->drv_inst;
1316	hcam =  (type == PMCRAID_HCAM_CODE_LOG_DATA) ?
1317		&pinstance->ldn : &pinstance->ccn;
1318
1319	/* prepare for cancelling previous hcam command. If the HCAM is
1320	 * currently not pending with IOA, we would have hcam->cmd as non-null
1321	 */
1322	if (hcam->cmd == NULL)
1323		return;
1324
1325	pmcraid_prepare_cancel_cmd(cmd, hcam->cmd);
1326
1327	/* writing to IOARRIN must be protected by host_lock, as mid-layer
1328	 * schedule queuecommand while we are doing this
1329	 */
1330	pmcraid_send_cmd(cmd, cmd_done,
1331			 PMCRAID_INTERNAL_TIMEOUT,
1332			 pmcraid_timeout_handler);
1333}
1334
1335/**
1336 * pmcraid_cancel_ccn - cancel CCN HCAM already registered with IOA
1337 *
1338 * @cmd: command block to be used for cancelling the HCAM
1339 */
1340static void pmcraid_cancel_ccn(struct pmcraid_cmd *cmd)
1341{
1342	pmcraid_info("response for Cancel LDN CDB[0] = %x ioasc = %x\n",
1343		     cmd->ioa_cb->ioarcb.cdb[0],
1344		     le32_to_cpu(cmd->ioa_cb->ioasa.ioasc));
1345
1346	pmcraid_reinit_cmdblk(cmd);
1347
1348	pmcraid_cancel_hcam(cmd,
1349			    PMCRAID_HCAM_CODE_CONFIG_CHANGE,
1350			    pmcraid_ioa_shutdown);
1351}
1352
1353/**
1354 * pmcraid_cancel_ldn - cancel LDN HCAM already registered with IOA
1355 *
1356 * @cmd: command block to be used for cancelling the HCAM
1357 */
1358static void pmcraid_cancel_ldn(struct pmcraid_cmd *cmd)
1359{
1360	pmcraid_cancel_hcam(cmd,
1361			    PMCRAID_HCAM_CODE_LOG_DATA,
1362			    pmcraid_cancel_ccn);
1363}
1364
1365/**
1366 * pmcraid_expose_resource - check if the resource can be exposed to OS
1367 *
1368 * @fw_version: firmware version code
1369 * @cfgte: pointer to configuration table entry of the resource
1370 *
1371 * Return value:
1372 *	true if resource can be added to midlayer, false(0) otherwise
1373 */
1374static int pmcraid_expose_resource(u16 fw_version,
1375				   struct pmcraid_config_table_entry *cfgte)
1376{
1377	int retval = 0;
1378
1379	if (cfgte->resource_type == RES_TYPE_VSET) {
1380		if (fw_version <= PMCRAID_FW_VERSION_1)
1381			retval = ((cfgte->unique_flags1 & 0x80) == 0);
1382		else
1383			retval = ((cfgte->unique_flags0 & 0x80) == 0 &&
1384				  (cfgte->unique_flags1 & 0x80) == 0);
1385
1386	} else if (cfgte->resource_type == RES_TYPE_GSCSI)
1387		retval = (RES_BUS(cfgte->resource_address) !=
1388				PMCRAID_VIRTUAL_ENCL_BUS_ID);
1389	return retval;
1390}
1391
1392/* attributes supported by pmcraid_event_family */
1393enum {
1394	PMCRAID_AEN_ATTR_UNSPEC,
1395	PMCRAID_AEN_ATTR_EVENT,
1396	__PMCRAID_AEN_ATTR_MAX,
1397};
1398#define PMCRAID_AEN_ATTR_MAX (__PMCRAID_AEN_ATTR_MAX - 1)
1399
1400/* commands supported by pmcraid_event_family */
1401enum {
1402	PMCRAID_AEN_CMD_UNSPEC,
1403	PMCRAID_AEN_CMD_EVENT,
1404	__PMCRAID_AEN_CMD_MAX,
1405};
1406#define PMCRAID_AEN_CMD_MAX (__PMCRAID_AEN_CMD_MAX - 1)
1407
1408static struct genl_family pmcraid_event_family = {
1409	.id = GENL_ID_GENERATE,
 
 
 
 
1410	.name = "pmcraid",
1411	.version = 1,
1412	.maxattr = PMCRAID_AEN_ATTR_MAX
 
 
1413};
1414
1415/**
1416 * pmcraid_netlink_init - registers pmcraid_event_family
1417 *
1418 * Return value:
1419 *	0 if the pmcraid_event_family is successfully registered
1420 *	with netlink generic, non-zero otherwise
1421 */
1422static int pmcraid_netlink_init(void)
1423{
1424	int result;
1425
1426	result = genl_register_family(&pmcraid_event_family);
1427
1428	if (result)
1429		return result;
1430
1431	pmcraid_info("registered NETLINK GENERIC group: %d\n",
1432		     pmcraid_event_family.id);
1433
1434	return result;
1435}
1436
1437/**
1438 * pmcraid_netlink_release - unregisters pmcraid_event_family
1439 *
1440 * Return value:
1441 *	none
1442 */
1443static void pmcraid_netlink_release(void)
1444{
1445	genl_unregister_family(&pmcraid_event_family);
1446}
1447
1448/**
1449 * pmcraid_notify_aen - sends event msg to user space application
1450 * @pinstance: pointer to adapter instance structure
1451 * @type: HCAM type
1452 *
1453 * Return value:
1454 *	0 if success, error value in case of any failure.
1455 */
1456static int pmcraid_notify_aen(
1457	struct pmcraid_instance *pinstance,
1458	struct pmcraid_aen_msg  *aen_msg,
1459	u32    data_size
1460)
1461{
1462	struct sk_buff *skb;
1463	void *msg_header;
1464	u32  total_size, nla_genl_hdr_total_size;
1465	int result;
1466
1467	aen_msg->hostno = (pinstance->host->unique_id << 16 |
1468			   MINOR(pinstance->cdev.dev));
1469	aen_msg->length = data_size;
1470
1471	data_size += sizeof(*aen_msg);
1472
1473	total_size = nla_total_size(data_size);
1474	/* Add GENL_HDR to total_size */
1475	nla_genl_hdr_total_size =
1476		(total_size + (GENL_HDRLEN +
1477		((struct genl_family *)&pmcraid_event_family)->hdrsize)
1478		 + NLMSG_HDRLEN);
1479	skb = genlmsg_new(nla_genl_hdr_total_size, GFP_ATOMIC);
1480
1481
1482	if (!skb) {
1483		pmcraid_err("Failed to allocate aen data SKB of size: %x\n",
1484			     total_size);
1485		return -ENOMEM;
1486	}
1487
1488	/* add the genetlink message header */
1489	msg_header = genlmsg_put(skb, 0, 0,
1490				 &pmcraid_event_family, 0,
1491				 PMCRAID_AEN_CMD_EVENT);
1492	if (!msg_header) {
1493		pmcraid_err("failed to copy command details\n");
1494		nlmsg_free(skb);
1495		return -ENOMEM;
1496	}
1497
1498	result = nla_put(skb, PMCRAID_AEN_ATTR_EVENT, data_size, aen_msg);
1499
1500	if (result) {
1501		pmcraid_err("failed to copy AEN attribute data\n");
1502		nlmsg_free(skb);
1503		return -EINVAL;
1504	}
1505
1506	/* send genetlink multicast message to notify appplications */
1507	result = genlmsg_end(skb, msg_header);
1508
1509	if (result < 0) {
1510		pmcraid_err("genlmsg_end failed\n");
1511		nlmsg_free(skb);
1512		return result;
1513	}
1514
1515	result =
1516		genlmsg_multicast(skb, 0, pmcraid_event_family.id, GFP_ATOMIC);
1517
1518	/* If there are no listeners, genlmsg_multicast may return non-zero
1519	 * value.
1520	 */
1521	if (result)
1522		pmcraid_info("error (%x) sending aen event message\n", result);
1523	return result;
1524}
1525
1526/**
1527 * pmcraid_notify_ccn - notifies about CCN event msg to user space
1528 * @pinstance: pointer adapter instance structure
1529 *
1530 * Return value:
1531 *	0 if success, error value in case of any failure
1532 */
1533static int pmcraid_notify_ccn(struct pmcraid_instance *pinstance)
1534{
1535	return pmcraid_notify_aen(pinstance,
1536				pinstance->ccn.msg,
1537				pinstance->ccn.hcam->data_len +
1538				sizeof(struct pmcraid_hcam_hdr));
1539}
1540
1541/**
1542 * pmcraid_notify_ldn - notifies about CCN event msg to user space
1543 * @pinstance: pointer adapter instance structure
1544 *
1545 * Return value:
1546 *	0 if success, error value in case of any failure
1547 */
1548static int pmcraid_notify_ldn(struct pmcraid_instance *pinstance)
1549{
1550	return pmcraid_notify_aen(pinstance,
1551				pinstance->ldn.msg,
1552				pinstance->ldn.hcam->data_len +
1553				sizeof(struct pmcraid_hcam_hdr));
1554}
1555
1556/**
1557 * pmcraid_notify_ioastate - sends IOA state event msg to user space
1558 * @pinstance: pointer adapter instance structure
1559 * @evt: controller state event to be sent
1560 *
1561 * Return value:
1562 *	0 if success, error value in case of any failure
1563 */
1564static void pmcraid_notify_ioastate(struct pmcraid_instance *pinstance, u32 evt)
1565{
1566	pinstance->scn.ioa_state = evt;
1567	pmcraid_notify_aen(pinstance,
1568			  &pinstance->scn.msg,
1569			  sizeof(u32));
1570}
1571
1572/**
1573 * pmcraid_handle_config_change - Handle a config change from the adapter
1574 * @pinstance: pointer to per adapter instance structure
1575 *
1576 * Return value:
1577 *  none
1578 */
1579
1580static void pmcraid_handle_config_change(struct pmcraid_instance *pinstance)
1581{
1582	struct pmcraid_config_table_entry *cfg_entry;
1583	struct pmcraid_hcam_ccn *ccn_hcam;
1584	struct pmcraid_cmd *cmd;
1585	struct pmcraid_cmd *cfgcmd;
1586	struct pmcraid_resource_entry *res = NULL;
1587	unsigned long lock_flags;
1588	unsigned long host_lock_flags;
1589	u32 new_entry = 1;
1590	u32 hidden_entry = 0;
1591	u16 fw_version;
1592	int rc;
1593
1594	ccn_hcam = (struct pmcraid_hcam_ccn *)pinstance->ccn.hcam;
1595	cfg_entry = &ccn_hcam->cfg_entry;
1596	fw_version = be16_to_cpu(pinstance->inq_data->fw_version);
1597
1598	pmcraid_info("CCN(%x): %x timestamp: %llx type: %x lost: %x flags: %x \
1599		 res: %x:%x:%x:%x\n",
1600		 pinstance->ccn.hcam->ilid,
1601		 pinstance->ccn.hcam->op_code,
1602		((pinstance->ccn.hcam->timestamp1) |
1603		((pinstance->ccn.hcam->timestamp2 & 0xffffffffLL) << 32)),
1604		 pinstance->ccn.hcam->notification_type,
1605		 pinstance->ccn.hcam->notification_lost,
1606		 pinstance->ccn.hcam->flags,
1607		 pinstance->host->unique_id,
1608		 RES_IS_VSET(*cfg_entry) ? PMCRAID_VSET_BUS_ID :
1609		 (RES_IS_GSCSI(*cfg_entry) ? PMCRAID_PHYS_BUS_ID :
1610			RES_BUS(cfg_entry->resource_address)),
1611		 RES_IS_VSET(*cfg_entry) ?
1612			(fw_version <= PMCRAID_FW_VERSION_1 ?
1613				cfg_entry->unique_flags1 :
1614					cfg_entry->array_id & 0xFF) :
1615			RES_TARGET(cfg_entry->resource_address),
1616		 RES_LUN(cfg_entry->resource_address));
1617
1618
1619	/* If this HCAM indicates a lost notification, read the config table */
1620	if (pinstance->ccn.hcam->notification_lost) {
1621		cfgcmd = pmcraid_get_free_cmd(pinstance);
1622		if (cfgcmd) {
1623			pmcraid_info("lost CCN, reading config table\b");
1624			pinstance->reinit_cfg_table = 1;
1625			pmcraid_querycfg(cfgcmd);
1626		} else {
1627			pmcraid_err("lost CCN, no free cmd for querycfg\n");
1628		}
1629		goto out_notify_apps;
1630	}
1631
1632	/* If this resource is not going to be added to mid-layer, just notify
1633	 * applications and return. If this notification is about hiding a VSET
1634	 * resource, check if it was exposed already.
1635	 */
1636	if (pinstance->ccn.hcam->notification_type ==
1637	    NOTIFICATION_TYPE_ENTRY_CHANGED &&
1638	    cfg_entry->resource_type == RES_TYPE_VSET) {
1639
1640		if (fw_version <= PMCRAID_FW_VERSION_1)
1641			hidden_entry = (cfg_entry->unique_flags1 & 0x80) != 0;
1642		else
1643			hidden_entry = (cfg_entry->unique_flags1 & 0x80) != 0;
1644
1645	} else if (!pmcraid_expose_resource(fw_version, cfg_entry)) {
1646		goto out_notify_apps;
1647	}
1648
1649	spin_lock_irqsave(&pinstance->resource_lock, lock_flags);
1650	list_for_each_entry(res, &pinstance->used_res_q, queue) {
1651		rc = memcmp(&res->cfg_entry.resource_address,
1652			    &cfg_entry->resource_address,
1653			    sizeof(cfg_entry->resource_address));
1654		if (!rc) {
1655			new_entry = 0;
1656			break;
1657		}
1658	}
1659
1660	if (new_entry) {
1661
1662		if (hidden_entry) {
1663			spin_unlock_irqrestore(&pinstance->resource_lock,
1664						lock_flags);
1665			goto out_notify_apps;
1666		}
1667
1668		/* If there are more number of resources than what driver can
1669		 * manage, do not notify the applications about the CCN. Just
1670		 * ignore this notifications and re-register the same HCAM
1671		 */
1672		if (list_empty(&pinstance->free_res_q)) {
1673			spin_unlock_irqrestore(&pinstance->resource_lock,
1674						lock_flags);
1675			pmcraid_err("too many resources attached\n");
1676			spin_lock_irqsave(pinstance->host->host_lock,
1677					  host_lock_flags);
1678			pmcraid_send_hcam(pinstance,
1679					  PMCRAID_HCAM_CODE_CONFIG_CHANGE);
1680			spin_unlock_irqrestore(pinstance->host->host_lock,
1681					       host_lock_flags);
1682			return;
1683		}
1684
1685		res = list_entry(pinstance->free_res_q.next,
1686				 struct pmcraid_resource_entry, queue);
1687
1688		list_del(&res->queue);
1689		res->scsi_dev = NULL;
1690		res->reset_progress = 0;
1691		list_add_tail(&res->queue, &pinstance->used_res_q);
1692	}
1693
1694	memcpy(&res->cfg_entry, cfg_entry, pinstance->config_table_entry_size);
1695
1696	if (pinstance->ccn.hcam->notification_type ==
1697	    NOTIFICATION_TYPE_ENTRY_DELETED || hidden_entry) {
1698		if (res->scsi_dev) {
1699			if (fw_version <= PMCRAID_FW_VERSION_1)
1700				res->cfg_entry.unique_flags1 &= 0x7F;
1701			else
1702				res->cfg_entry.array_id &= 0xFF;
1703			res->change_detected = RES_CHANGE_DEL;
1704			res->cfg_entry.resource_handle =
1705				PMCRAID_INVALID_RES_HANDLE;
1706			schedule_work(&pinstance->worker_q);
1707		} else {
1708			/* This may be one of the non-exposed resources */
1709			list_move_tail(&res->queue, &pinstance->free_res_q);
1710		}
1711	} else if (!res->scsi_dev) {
1712		res->change_detected = RES_CHANGE_ADD;
1713		schedule_work(&pinstance->worker_q);
1714	}
1715	spin_unlock_irqrestore(&pinstance->resource_lock, lock_flags);
1716
1717out_notify_apps:
1718
1719	/* Notify configuration changes to registered applications.*/
1720	if (!pmcraid_disable_aen)
1721		pmcraid_notify_ccn(pinstance);
1722
1723	cmd = pmcraid_init_hcam(pinstance, PMCRAID_HCAM_CODE_CONFIG_CHANGE);
1724	if (cmd)
1725		pmcraid_send_hcam_cmd(cmd);
1726}
1727
1728/**
1729 * pmcraid_get_error_info - return error string for an ioasc
1730 * @ioasc: ioasc code
1731 * Return Value
1732 *	 none
1733 */
1734static struct pmcraid_ioasc_error *pmcraid_get_error_info(u32 ioasc)
1735{
1736	int i;
1737	for (i = 0; i < ARRAY_SIZE(pmcraid_ioasc_error_table); i++) {
1738		if (pmcraid_ioasc_error_table[i].ioasc_code == ioasc)
1739			return &pmcraid_ioasc_error_table[i];
1740	}
1741	return NULL;
1742}
1743
1744/**
1745 * pmcraid_ioasc_logger - log IOASC information based user-settings
1746 * @ioasc: ioasc code
1747 * @cmd: pointer to command that resulted in 'ioasc'
1748 */
1749void pmcraid_ioasc_logger(u32 ioasc, struct pmcraid_cmd *cmd)
1750{
1751	struct pmcraid_ioasc_error *error_info = pmcraid_get_error_info(ioasc);
1752
1753	if (error_info == NULL ||
1754		cmd->drv_inst->current_log_level < error_info->log_level)
1755		return;
1756
1757	/* log the error string */
1758	pmcraid_err("cmd [%x] for resource %x failed with %x(%s)\n",
1759		cmd->ioa_cb->ioarcb.cdb[0],
1760		cmd->ioa_cb->ioarcb.resource_handle,
1761		le32_to_cpu(ioasc), error_info->error_string);
1762}
1763
1764/**
1765 * pmcraid_handle_error_log - Handle a config change (error log) from the IOA
1766 *
1767 * @pinstance: pointer to per adapter instance structure
1768 *
1769 * Return value:
1770 *  none
1771 */
1772static void pmcraid_handle_error_log(struct pmcraid_instance *pinstance)
1773{
1774	struct pmcraid_hcam_ldn *hcam_ldn;
1775	u32 ioasc;
1776
1777	hcam_ldn = (struct pmcraid_hcam_ldn *)pinstance->ldn.hcam;
1778
1779	pmcraid_info
1780		("LDN(%x): %x type: %x lost: %x flags: %x overlay id: %x\n",
1781		 pinstance->ldn.hcam->ilid,
1782		 pinstance->ldn.hcam->op_code,
1783		 pinstance->ldn.hcam->notification_type,
1784		 pinstance->ldn.hcam->notification_lost,
1785		 pinstance->ldn.hcam->flags,
1786		 pinstance->ldn.hcam->overlay_id);
1787
1788	/* log only the errors, no need to log informational log entries */
1789	if (pinstance->ldn.hcam->notification_type !=
1790	    NOTIFICATION_TYPE_ERROR_LOG)
1791		return;
1792
1793	if (pinstance->ldn.hcam->notification_lost ==
1794	    HOSTRCB_NOTIFICATIONS_LOST)
1795		dev_info(&pinstance->pdev->dev, "Error notifications lost\n");
1796
1797	ioasc = le32_to_cpu(hcam_ldn->error_log.fd_ioasc);
1798
1799	if (ioasc == PMCRAID_IOASC_UA_BUS_WAS_RESET ||
1800		ioasc == PMCRAID_IOASC_UA_BUS_WAS_RESET_BY_OTHER) {
1801		dev_info(&pinstance->pdev->dev,
1802			"UnitAttention due to IOA Bus Reset\n");
1803		scsi_report_bus_reset(
1804			pinstance->host,
1805			RES_BUS(hcam_ldn->error_log.fd_ra));
1806	}
1807
1808	return;
1809}
1810
1811/**
1812 * pmcraid_process_ccn - Op done function for a CCN.
1813 * @cmd: pointer to command struct
1814 *
1815 * This function is the op done function for a configuration
1816 * change notification
1817 *
1818 * Return value:
1819 * none
1820 */
1821static void pmcraid_process_ccn(struct pmcraid_cmd *cmd)
1822{
1823	struct pmcraid_instance *pinstance = cmd->drv_inst;
1824	u32 ioasc = le32_to_cpu(cmd->ioa_cb->ioasa.ioasc);
1825	unsigned long lock_flags;
1826
1827	pinstance->ccn.cmd = NULL;
1828	pmcraid_return_cmd(cmd);
1829
1830	/* If driver initiated IOA reset happened while this hcam was pending
1831	 * with IOA, or IOA bringdown sequence is in progress, no need to
1832	 * re-register the hcam
1833	 */
1834	if (ioasc == PMCRAID_IOASC_IOA_WAS_RESET ||
1835	    atomic_read(&pinstance->ccn.ignore) == 1) {
1836		return;
1837	} else if (ioasc) {
1838		dev_info(&pinstance->pdev->dev,
1839			"Host RCB (CCN) failed with IOASC: 0x%08X\n", ioasc);
1840		spin_lock_irqsave(pinstance->host->host_lock, lock_flags);
1841		pmcraid_send_hcam(pinstance, PMCRAID_HCAM_CODE_CONFIG_CHANGE);
1842		spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
1843	} else {
1844		pmcraid_handle_config_change(pinstance);
1845	}
1846}
1847
 
 
1848/**
1849 * pmcraid_process_ldn - op done function for an LDN
1850 * @cmd: pointer to command block
1851 *
1852 * Return value
1853 *   none
1854 */
1855static void pmcraid_initiate_reset(struct pmcraid_instance *);
1856static void pmcraid_set_timestamp(struct pmcraid_cmd *cmd);
1857
1858static void pmcraid_process_ldn(struct pmcraid_cmd *cmd)
1859{
1860	struct pmcraid_instance *pinstance = cmd->drv_inst;
1861	struct pmcraid_hcam_ldn *ldn_hcam =
1862			(struct pmcraid_hcam_ldn *)pinstance->ldn.hcam;
1863	u32 ioasc = le32_to_cpu(cmd->ioa_cb->ioasa.ioasc);
1864	u32 fd_ioasc = le32_to_cpu(ldn_hcam->error_log.fd_ioasc);
1865	unsigned long lock_flags;
1866
1867	/* return the command block back to freepool */
1868	pinstance->ldn.cmd = NULL;
1869	pmcraid_return_cmd(cmd);
1870
1871	/* If driver initiated IOA reset happened while this hcam was pending
1872	 * with IOA, no need to re-register the hcam as reset engine will do it
1873	 * once reset sequence is complete
1874	 */
1875	if (ioasc == PMCRAID_IOASC_IOA_WAS_RESET ||
1876	    atomic_read(&pinstance->ccn.ignore) == 1) {
1877		return;
1878	} else if (!ioasc) {
1879		pmcraid_handle_error_log(pinstance);
1880		if (fd_ioasc == PMCRAID_IOASC_NR_IOA_RESET_REQUIRED) {
1881			spin_lock_irqsave(pinstance->host->host_lock,
1882					  lock_flags);
1883			pmcraid_initiate_reset(pinstance);
1884			spin_unlock_irqrestore(pinstance->host->host_lock,
1885					       lock_flags);
1886			return;
1887		}
1888		if (fd_ioasc == PMCRAID_IOASC_TIME_STAMP_OUT_OF_SYNC) {
1889			pinstance->timestamp_error = 1;
1890			pmcraid_set_timestamp(cmd);
1891		}
1892	} else {
1893		dev_info(&pinstance->pdev->dev,
1894			"Host RCB(LDN) failed with IOASC: 0x%08X\n", ioasc);
1895	}
1896	/* send netlink message for HCAM notification if enabled */
1897	if (!pmcraid_disable_aen)
1898		pmcraid_notify_ldn(pinstance);
1899
1900	cmd = pmcraid_init_hcam(pinstance, PMCRAID_HCAM_CODE_LOG_DATA);
1901	if (cmd)
1902		pmcraid_send_hcam_cmd(cmd);
1903}
1904
1905/**
1906 * pmcraid_register_hcams - register HCAMs for CCN and LDN
1907 *
1908 * @pinstance: pointer per adapter instance structure
1909 *
1910 * Return Value
1911 *   none
1912 */
1913static void pmcraid_register_hcams(struct pmcraid_instance *pinstance)
1914{
1915	pmcraid_send_hcam(pinstance, PMCRAID_HCAM_CODE_CONFIG_CHANGE);
1916	pmcraid_send_hcam(pinstance, PMCRAID_HCAM_CODE_LOG_DATA);
1917}
1918
1919/**
1920 * pmcraid_unregister_hcams - cancel HCAMs registered already
1921 * @cmd: pointer to command used as part of reset sequence
1922 */
1923static void pmcraid_unregister_hcams(struct pmcraid_cmd *cmd)
1924{
1925	struct pmcraid_instance *pinstance = cmd->drv_inst;
1926
1927	/* During IOA bringdown, HCAM gets fired and tasklet proceeds with
1928	 * handling hcam response though it is not necessary. In order to
1929	 * prevent this, set 'ignore', so that bring-down sequence doesn't
1930	 * re-send any more hcams
1931	 */
1932	atomic_set(&pinstance->ccn.ignore, 1);
1933	atomic_set(&pinstance->ldn.ignore, 1);
1934
1935	/* If adapter reset was forced as part of runtime reset sequence,
1936	 * start the reset sequence. Reset will be triggered even in case
1937	 * IOA unit_check.
1938	 */
1939	if ((pinstance->force_ioa_reset && !pinstance->ioa_bringdown) ||
1940	     pinstance->ioa_unit_check) {
1941		pinstance->force_ioa_reset = 0;
1942		pinstance->ioa_unit_check = 0;
1943		pinstance->ioa_state = IOA_STATE_IN_RESET_ALERT;
1944		pmcraid_reset_alert(cmd);
1945		return;
1946	}
1947
1948	/* Driver tries to cancel HCAMs by sending ABORT TASK for each HCAM
1949	 * one after the other. So CCN cancellation will be triggered by
1950	 * pmcraid_cancel_ldn itself.
1951	 */
1952	pmcraid_cancel_ldn(cmd);
1953}
1954
 
 
1955/**
1956 * pmcraid_reset_enable_ioa - re-enable IOA after a hard reset
1957 * @pinstance: pointer to adapter instance structure
1958 * Return Value
1959 *  1 if TRANSITION_TO_OPERATIONAL is active, otherwise 0
1960 */
1961static void pmcraid_reinit_buffers(struct pmcraid_instance *);
1962
1963static int pmcraid_reset_enable_ioa(struct pmcraid_instance *pinstance)
1964{
1965	u32 intrs;
1966
1967	pmcraid_reinit_buffers(pinstance);
1968	intrs = pmcraid_read_interrupts(pinstance);
1969
1970	pmcraid_enable_interrupts(pinstance, PMCRAID_PCI_INTERRUPTS);
1971
1972	if (intrs & INTRS_TRANSITION_TO_OPERATIONAL) {
1973		if (!pinstance->interrupt_mode) {
1974			iowrite32(INTRS_TRANSITION_TO_OPERATIONAL,
1975				pinstance->int_regs.
1976				ioa_host_interrupt_mask_reg);
1977			iowrite32(INTRS_TRANSITION_TO_OPERATIONAL,
1978				pinstance->int_regs.ioa_host_interrupt_clr_reg);
1979		}
1980		return 1;
1981	} else {
1982		return 0;
1983	}
1984}
1985
1986/**
1987 * pmcraid_soft_reset - performs a soft reset and makes IOA become ready
1988 * @cmd : pointer to reset command block
1989 *
1990 * Return Value
1991 *	none
1992 */
1993static void pmcraid_soft_reset(struct pmcraid_cmd *cmd)
1994{
1995	struct pmcraid_instance *pinstance = cmd->drv_inst;
1996	u32 int_reg;
1997	u32 doorbell;
1998
1999	/* There will be an interrupt when Transition to Operational bit is
2000	 * set so tasklet would execute next reset task. The timeout handler
2001	 * would re-initiate a reset
2002	 */
2003	cmd->cmd_done = pmcraid_ioa_reset;
2004	cmd->timer.data = (unsigned long)cmd;
2005	cmd->timer.expires = jiffies +
2006			     msecs_to_jiffies(PMCRAID_TRANSOP_TIMEOUT);
2007	cmd->timer.function = (void (*)(unsigned long))pmcraid_timeout_handler;
2008
2009	if (!timer_pending(&cmd->timer))
2010		add_timer(&cmd->timer);
2011
2012	/* Enable destructive diagnostics on IOA if it is not yet in
2013	 * operational state
2014	 */
2015	doorbell = DOORBELL_RUNTIME_RESET |
2016		   DOORBELL_ENABLE_DESTRUCTIVE_DIAGS;
2017
2018	/* Since we do RESET_ALERT and Start BIST we have to again write
2019	 * MSIX Doorbell to indicate the interrupt mode
2020	 */
2021	if (pinstance->interrupt_mode) {
2022		iowrite32(DOORBELL_INTR_MODE_MSIX,
2023			  pinstance->int_regs.host_ioa_interrupt_reg);
2024		ioread32(pinstance->int_regs.host_ioa_interrupt_reg);
2025	}
2026
2027	iowrite32(doorbell, pinstance->int_regs.host_ioa_interrupt_reg);
2028	ioread32(pinstance->int_regs.host_ioa_interrupt_reg),
2029	int_reg = ioread32(pinstance->int_regs.ioa_host_interrupt_reg);
2030
2031	pmcraid_info("Waiting for IOA to become operational %x:%x\n",
2032		     ioread32(pinstance->int_regs.host_ioa_interrupt_reg),
2033		     int_reg);
2034}
2035
2036/**
2037 * pmcraid_get_dump - retrieves IOA dump in case of Unit Check interrupt
2038 *
2039 * @pinstance: pointer to adapter instance structure
2040 *
2041 * Return Value
2042 *	none
2043 */
2044static void pmcraid_get_dump(struct pmcraid_instance *pinstance)
2045{
2046	pmcraid_info("%s is not yet implemented\n", __func__);
2047}
2048
2049/**
2050 * pmcraid_fail_outstanding_cmds - Fails all outstanding ops.
2051 * @pinstance: pointer to adapter instance structure
2052 *
2053 * This function fails all outstanding ops. If they are submitted to IOA
2054 * already, it sends cancel all messages if IOA is still accepting IOARCBs,
2055 * otherwise just completes the commands and returns the cmd blocks to free
2056 * pool.
2057 *
2058 * Return value:
2059 *	 none
2060 */
2061static void pmcraid_fail_outstanding_cmds(struct pmcraid_instance *pinstance)
2062{
2063	struct pmcraid_cmd *cmd, *temp;
2064	unsigned long lock_flags;
2065
2066	/* pending command list is protected by pending_pool_lock. Its
2067	 * traversal must be done as within this lock
2068	 */
2069	spin_lock_irqsave(&pinstance->pending_pool_lock, lock_flags);
2070	list_for_each_entry_safe(cmd, temp, &pinstance->pending_cmd_pool,
2071				 free_list) {
2072		list_del(&cmd->free_list);
2073		spin_unlock_irqrestore(&pinstance->pending_pool_lock,
2074					lock_flags);
2075		cmd->ioa_cb->ioasa.ioasc =
2076			cpu_to_le32(PMCRAID_IOASC_IOA_WAS_RESET);
2077		cmd->ioa_cb->ioasa.ilid =
2078			cpu_to_be32(PMCRAID_DRIVER_ILID);
2079
2080		/* In case the command timer is still running */
2081		del_timer(&cmd->timer);
2082
2083		/* If this is an IO command, complete it by invoking scsi_done
2084		 * function. If this is one of the internal commands other
2085		 * than pmcraid_ioa_reset and HCAM commands invoke cmd_done to
2086		 * complete it
2087		 */
2088		if (cmd->scsi_cmd) {
2089
2090			struct scsi_cmnd *scsi_cmd = cmd->scsi_cmd;
2091			__le32 resp = cmd->ioa_cb->ioarcb.response_handle;
2092
2093			scsi_cmd->result |= DID_ERROR << 16;
2094
2095			scsi_dma_unmap(scsi_cmd);
2096			pmcraid_return_cmd(cmd);
2097
2098			pmcraid_info("failing(%d) CDB[0] = %x result: %x\n",
2099				     le32_to_cpu(resp) >> 2,
2100				     cmd->ioa_cb->ioarcb.cdb[0],
2101				     scsi_cmd->result);
2102			scsi_cmd->scsi_done(scsi_cmd);
2103		} else if (cmd->cmd_done == pmcraid_internal_done ||
2104			   cmd->cmd_done == pmcraid_erp_done) {
2105			cmd->cmd_done(cmd);
2106		} else if (cmd->cmd_done != pmcraid_ioa_reset &&
2107			   cmd->cmd_done != pmcraid_ioa_shutdown_done) {
2108			pmcraid_return_cmd(cmd);
2109		}
2110
2111		atomic_dec(&pinstance->outstanding_cmds);
2112		spin_lock_irqsave(&pinstance->pending_pool_lock, lock_flags);
2113	}
2114
2115	spin_unlock_irqrestore(&pinstance->pending_pool_lock, lock_flags);
2116}
2117
2118/**
2119 * pmcraid_ioa_reset - Implementation of IOA reset logic
2120 *
2121 * @cmd: pointer to the cmd block to be used for entire reset process
2122 *
2123 * This function executes most of the steps required for IOA reset. This gets
2124 * called by user threads (modprobe/insmod/rmmod) timer, tasklet and midlayer's
2125 * 'eh_' thread. Access to variables used for controlling the reset sequence is
2126 * synchronized using host lock. Various functions called during reset process
2127 * would make use of a single command block, pointer to which is also stored in
2128 * adapter instance structure.
2129 *
2130 * Return Value
2131 *	 None
2132 */
2133static void pmcraid_ioa_reset(struct pmcraid_cmd *cmd)
2134{
2135	struct pmcraid_instance *pinstance = cmd->drv_inst;
2136	u8 reset_complete = 0;
2137
2138	pinstance->ioa_reset_in_progress = 1;
2139
2140	if (pinstance->reset_cmd != cmd) {
2141		pmcraid_err("reset is called with different command block\n");
2142		pinstance->reset_cmd = cmd;
2143	}
2144
2145	pmcraid_info("reset_engine: state = %d, command = %p\n",
2146		      pinstance->ioa_state, cmd);
2147
2148	switch (pinstance->ioa_state) {
2149
2150	case IOA_STATE_DEAD:
2151		/* If IOA is offline, whatever may be the reset reason, just
2152		 * return. callers might be waiting on the reset wait_q, wake
2153		 * up them
2154		 */
2155		pmcraid_err("IOA is offline no reset is possible\n");
2156		reset_complete = 1;
2157		break;
2158
2159	case IOA_STATE_IN_BRINGDOWN:
2160		/* we enter here, once ioa shutdown command is processed by IOA
2161		 * Alert IOA for a possible reset. If reset alert fails, IOA
2162		 * goes through hard-reset
2163		 */
2164		pmcraid_disable_interrupts(pinstance, ~0);
2165		pinstance->ioa_state = IOA_STATE_IN_RESET_ALERT;
2166		pmcraid_reset_alert(cmd);
2167		break;
2168
2169	case IOA_STATE_UNKNOWN:
2170		/* We may be called during probe or resume. Some pre-processing
2171		 * is required for prior to reset
2172		 */
2173		scsi_block_requests(pinstance->host);
2174
2175		/* If asked to reset while IOA was processing responses or
2176		 * there are any error responses then IOA may require
2177		 * hard-reset.
2178		 */
2179		if (pinstance->ioa_hard_reset == 0) {
2180			if (ioread32(pinstance->ioa_status) &
2181			    INTRS_TRANSITION_TO_OPERATIONAL) {
2182				pmcraid_info("sticky bit set, bring-up\n");
2183				pinstance->ioa_state = IOA_STATE_IN_BRINGUP;
2184				pmcraid_reinit_cmdblk(cmd);
2185				pmcraid_identify_hrrq(cmd);
2186			} else {
2187				pinstance->ioa_state = IOA_STATE_IN_SOFT_RESET;
2188				pmcraid_soft_reset(cmd);
2189			}
2190		} else {
2191			/* Alert IOA of a possible reset and wait for critical
2192			 * operation in progress bit to reset
2193			 */
2194			pinstance->ioa_state = IOA_STATE_IN_RESET_ALERT;
2195			pmcraid_reset_alert(cmd);
2196		}
2197		break;
2198
2199	case IOA_STATE_IN_RESET_ALERT:
2200		/* If critical operation in progress bit is reset or wait gets
2201		 * timed out, reset proceeds with starting BIST on the IOA.
2202		 * pmcraid_ioa_hard_reset keeps a count of reset attempts. If
2203		 * they are 3 or more, reset engine marks IOA dead and returns
2204		 */
2205		pinstance->ioa_state = IOA_STATE_IN_HARD_RESET;
2206		pmcraid_start_bist(cmd);
2207		break;
2208
2209	case IOA_STATE_IN_HARD_RESET:
2210		pinstance->ioa_reset_attempts++;
2211
2212		/* retry reset if we haven't reached maximum allowed limit */
2213		if (pinstance->ioa_reset_attempts > PMCRAID_RESET_ATTEMPTS) {
2214			pinstance->ioa_reset_attempts = 0;
2215			pmcraid_err("IOA didn't respond marking it as dead\n");
2216			pinstance->ioa_state = IOA_STATE_DEAD;
2217
2218			if (pinstance->ioa_bringdown)
2219				pmcraid_notify_ioastate(pinstance,
2220					PMC_DEVICE_EVENT_SHUTDOWN_FAILED);
2221			else
2222				pmcraid_notify_ioastate(pinstance,
2223						PMC_DEVICE_EVENT_RESET_FAILED);
2224			reset_complete = 1;
2225			break;
2226		}
2227
2228		/* Once either bist or pci reset is done, restore PCI config
2229		 * space. If this fails, proceed with hard reset again
2230		 */
2231		pci_restore_state(pinstance->pdev);
2232
2233		/* fail all pending commands */
2234		pmcraid_fail_outstanding_cmds(pinstance);
2235
2236		/* check if unit check is active, if so extract dump */
2237		if (pinstance->ioa_unit_check) {
2238			pmcraid_info("unit check is active\n");
2239			pinstance->ioa_unit_check = 0;
2240			pmcraid_get_dump(pinstance);
2241			pinstance->ioa_reset_attempts--;
2242			pinstance->ioa_state = IOA_STATE_IN_RESET_ALERT;
2243			pmcraid_reset_alert(cmd);
2244			break;
2245		}
2246
2247		/* if the reset reason is to bring-down the ioa, we might be
2248		 * done with the reset restore pci_config_space and complete
2249		 * the reset
2250		 */
2251		if (pinstance->ioa_bringdown) {
2252			pmcraid_info("bringing down the adapter\n");
2253			pinstance->ioa_shutdown_type = SHUTDOWN_NONE;
2254			pinstance->ioa_bringdown = 0;
2255			pinstance->ioa_state = IOA_STATE_UNKNOWN;
2256			pmcraid_notify_ioastate(pinstance,
2257					PMC_DEVICE_EVENT_SHUTDOWN_SUCCESS);
2258			reset_complete = 1;
2259		} else {
2260			/* bring-up IOA, so proceed with soft reset
2261			 * Reinitialize hrrq_buffers and their indices also
2262			 * enable interrupts after a pci_restore_state
2263			 */
2264			if (pmcraid_reset_enable_ioa(pinstance)) {
2265				pinstance->ioa_state = IOA_STATE_IN_BRINGUP;
2266				pmcraid_info("bringing up the adapter\n");
2267				pmcraid_reinit_cmdblk(cmd);
2268				pmcraid_identify_hrrq(cmd);
2269			} else {
2270				pinstance->ioa_state = IOA_STATE_IN_SOFT_RESET;
2271				pmcraid_soft_reset(cmd);
2272			}
2273		}
2274		break;
2275
2276	case IOA_STATE_IN_SOFT_RESET:
2277		/* TRANSITION TO OPERATIONAL is on so start initialization
2278		 * sequence
2279		 */
2280		pmcraid_info("In softreset proceeding with bring-up\n");
2281		pinstance->ioa_state = IOA_STATE_IN_BRINGUP;
2282
2283		/* Initialization commands start with HRRQ identification. From
2284		 * now on tasklet completes most of the commands as IOA is up
2285		 * and intrs are enabled
2286		 */
2287		pmcraid_identify_hrrq(cmd);
2288		break;
2289
2290	case IOA_STATE_IN_BRINGUP:
2291		/* we are done with bringing up of IOA, change the ioa_state to
2292		 * operational and wake up any waiters
2293		 */
2294		pinstance->ioa_state = IOA_STATE_OPERATIONAL;
2295		reset_complete = 1;
2296		break;
2297
2298	case IOA_STATE_OPERATIONAL:
2299	default:
2300		/* When IOA is operational and a reset is requested, check for
2301		 * the reset reason. If reset is to bring down IOA, unregister
2302		 * HCAMs and initiate shutdown; if adapter reset is forced then
2303		 * restart reset sequence again
2304		 */
2305		if (pinstance->ioa_shutdown_type == SHUTDOWN_NONE &&
2306		    pinstance->force_ioa_reset == 0) {
2307			pmcraid_notify_ioastate(pinstance,
2308						PMC_DEVICE_EVENT_RESET_SUCCESS);
2309			reset_complete = 1;
2310		} else {
2311			if (pinstance->ioa_shutdown_type != SHUTDOWN_NONE)
2312				pinstance->ioa_state = IOA_STATE_IN_BRINGDOWN;
2313			pmcraid_reinit_cmdblk(cmd);
2314			pmcraid_unregister_hcams(cmd);
2315		}
2316		break;
2317	}
2318
2319	/* reset will be completed if ioa_state is either DEAD or UNKNOWN or
2320	 * OPERATIONAL. Reset all control variables used during reset, wake up
2321	 * any waiting threads and let the SCSI mid-layer send commands. Note
2322	 * that host_lock must be held before invoking scsi_report_bus_reset.
2323	 */
2324	if (reset_complete) {
2325		pinstance->ioa_reset_in_progress = 0;
2326		pinstance->ioa_reset_attempts = 0;
2327		pinstance->reset_cmd = NULL;
2328		pinstance->ioa_shutdown_type = SHUTDOWN_NONE;
2329		pinstance->ioa_bringdown = 0;
2330		pmcraid_return_cmd(cmd);
2331
2332		/* If target state is to bring up the adapter, proceed with
2333		 * hcam registration and resource exposure to mid-layer.
2334		 */
2335		if (pinstance->ioa_state == IOA_STATE_OPERATIONAL)
2336			pmcraid_register_hcams(pinstance);
2337
2338		wake_up_all(&pinstance->reset_wait_q);
2339	}
2340
2341	return;
2342}
2343
2344/**
2345 * pmcraid_initiate_reset - initiates reset sequence. This is called from
2346 * ISR/tasklet during error interrupts including IOA unit check. If reset
2347 * is already in progress, it just returns, otherwise initiates IOA reset
2348 * to bring IOA up to operational state.
2349 *
2350 * @pinstance: pointer to adapter instance structure
2351 *
2352 * Return value
2353 *	 none
2354 */
2355static void pmcraid_initiate_reset(struct pmcraid_instance *pinstance)
2356{
2357	struct pmcraid_cmd *cmd;
2358
2359	/* If the reset is already in progress, just return, otherwise start
2360	 * reset sequence and return
2361	 */
2362	if (!pinstance->ioa_reset_in_progress) {
2363		scsi_block_requests(pinstance->host);
2364		cmd = pmcraid_get_free_cmd(pinstance);
2365
2366		if (cmd == NULL) {
2367			pmcraid_err("no cmnd blocks for initiate_reset\n");
2368			return;
2369		}
2370
2371		pinstance->ioa_shutdown_type = SHUTDOWN_NONE;
2372		pinstance->reset_cmd = cmd;
2373		pinstance->force_ioa_reset = 1;
2374		pmcraid_notify_ioastate(pinstance,
2375					PMC_DEVICE_EVENT_RESET_START);
2376		pmcraid_ioa_reset(cmd);
2377	}
2378}
2379
2380/**
2381 * pmcraid_reset_reload - utility routine for doing IOA reset either to bringup
2382 *			  or bringdown IOA
2383 * @pinstance: pointer adapter instance structure
2384 * @shutdown_type: shutdown type to be used NONE, NORMAL or ABRREV
2385 * @target_state: expected target state after reset
2386 *
2387 * Note: This command initiates reset and waits for its completion. Hence this
2388 * should not be called from isr/timer/tasklet functions (timeout handlers,
2389 * error response handlers and interrupt handlers).
2390 *
2391 * Return Value
2392 *	 1 in case ioa_state is not target_state, 0 otherwise.
2393 */
2394static int pmcraid_reset_reload(
2395	struct pmcraid_instance *pinstance,
2396	u8 shutdown_type,
2397	u8 target_state
2398)
2399{
2400	struct pmcraid_cmd *reset_cmd = NULL;
2401	unsigned long lock_flags;
2402	int reset = 1;
2403
2404	spin_lock_irqsave(pinstance->host->host_lock, lock_flags);
2405
2406	if (pinstance->ioa_reset_in_progress) {
2407		pmcraid_info("reset_reload: reset is already in progress\n");
2408
2409		spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
2410
2411		wait_event(pinstance->reset_wait_q,
2412			   !pinstance->ioa_reset_in_progress);
2413
2414		spin_lock_irqsave(pinstance->host->host_lock, lock_flags);
2415
2416		if (pinstance->ioa_state == IOA_STATE_DEAD) {
2417			spin_unlock_irqrestore(pinstance->host->host_lock,
2418					       lock_flags);
2419			pmcraid_info("reset_reload: IOA is dead\n");
2420			return reset;
2421		} else if (pinstance->ioa_state == target_state) {
2422			reset = 0;
2423		}
2424	}
2425
2426	if (reset) {
2427		pmcraid_info("reset_reload: proceeding with reset\n");
2428		scsi_block_requests(pinstance->host);
2429		reset_cmd = pmcraid_get_free_cmd(pinstance);
2430
2431		if (reset_cmd == NULL) {
2432			pmcraid_err("no free cmnd for reset_reload\n");
2433			spin_unlock_irqrestore(pinstance->host->host_lock,
2434					       lock_flags);
2435			return reset;
2436		}
 
2437
2438		if (shutdown_type == SHUTDOWN_NORMAL)
2439			pinstance->ioa_bringdown = 1;
 
 
 
 
 
2440
2441		pinstance->ioa_shutdown_type = shutdown_type;
2442		pinstance->reset_cmd = reset_cmd;
2443		pinstance->force_ioa_reset = reset;
2444		pmcraid_info("reset_reload: initiating reset\n");
2445		pmcraid_ioa_reset(reset_cmd);
2446		spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
2447		pmcraid_info("reset_reload: waiting for reset to complete\n");
2448		wait_event(pinstance->reset_wait_q,
2449			   !pinstance->ioa_reset_in_progress);
 
 
 
2450
2451		pmcraid_info("reset_reload: reset is complete !!\n");
2452		scsi_unblock_requests(pinstance->host);
2453		if (pinstance->ioa_state == target_state)
2454			reset = 0;
2455	}
2456
 
 
2457	return reset;
2458}
2459
2460/**
2461 * pmcraid_reset_bringdown - wrapper over pmcraid_reset_reload to bringdown IOA
2462 *
2463 * @pinstance: pointer to adapter instance structure
2464 *
2465 * Return Value
2466 *	 whatever is returned from pmcraid_reset_reload
2467 */
2468static int pmcraid_reset_bringdown(struct pmcraid_instance *pinstance)
2469{
2470	return pmcraid_reset_reload(pinstance,
2471				    SHUTDOWN_NORMAL,
2472				    IOA_STATE_UNKNOWN);
2473}
2474
2475/**
2476 * pmcraid_reset_bringup - wrapper over pmcraid_reset_reload to bring up IOA
2477 *
2478 * @pinstance: pointer to adapter instance structure
2479 *
2480 * Return Value
2481 *	 whatever is returned from pmcraid_reset_reload
2482 */
2483static int pmcraid_reset_bringup(struct pmcraid_instance *pinstance)
2484{
2485	pmcraid_notify_ioastate(pinstance, PMC_DEVICE_EVENT_RESET_START);
2486
2487	return pmcraid_reset_reload(pinstance,
2488				    SHUTDOWN_NONE,
2489				    IOA_STATE_OPERATIONAL);
2490}
2491
2492/**
2493 * pmcraid_request_sense - Send request sense to a device
2494 * @cmd: pmcraid command struct
2495 *
2496 * This function sends a request sense to a device as a result of a check
2497 * condition. This method re-uses the same command block that failed earlier.
2498 */
2499static void pmcraid_request_sense(struct pmcraid_cmd *cmd)
2500{
2501	struct pmcraid_ioarcb *ioarcb = &cmd->ioa_cb->ioarcb;
2502	struct pmcraid_ioadl_desc *ioadl = ioarcb->add_data.u.ioadl;
 
2503
2504	/* allocate DMAable memory for sense buffers */
2505	cmd->sense_buffer = pci_alloc_consistent(cmd->drv_inst->pdev,
2506						 SCSI_SENSE_BUFFERSIZE,
2507						 &cmd->sense_buffer_dma);
2508
2509	if (cmd->sense_buffer == NULL) {
2510		pmcraid_err
2511			("couldn't allocate sense buffer for request sense\n");
2512		pmcraid_erp_done(cmd);
2513		return;
2514	}
2515
2516	/* re-use the command block */
2517	memset(&cmd->ioa_cb->ioasa, 0, sizeof(struct pmcraid_ioasa));
2518	memset(ioarcb->cdb, 0, PMCRAID_MAX_CDB_LEN);
2519	ioarcb->request_flags0 = (SYNC_COMPLETE |
2520				  NO_LINK_DESCS |
2521				  INHIBIT_UL_CHECK);
2522	ioarcb->request_type = REQ_TYPE_SCSI;
2523	ioarcb->cdb[0] = REQUEST_SENSE;
2524	ioarcb->cdb[4] = SCSI_SENSE_BUFFERSIZE;
2525
2526	ioarcb->ioadl_bus_addr = cpu_to_le64((cmd->ioa_cb_bus_addr) +
2527					offsetof(struct pmcraid_ioarcb,
2528						add_data.u.ioadl[0]));
2529	ioarcb->ioadl_length = cpu_to_le32(sizeof(struct pmcraid_ioadl_desc));
2530
2531	ioarcb->data_transfer_length = cpu_to_le32(SCSI_SENSE_BUFFERSIZE);
2532
2533	ioadl->address = cpu_to_le64(cmd->sense_buffer_dma);
2534	ioadl->data_len = cpu_to_le32(SCSI_SENSE_BUFFERSIZE);
2535	ioadl->flags = IOADL_FLAGS_LAST_DESC;
2536
2537	/* request sense might be called as part of error response processing
2538	 * which runs in tasklets context. It is possible that mid-layer might
2539	 * schedule queuecommand during this time, hence, writting to IOARRIN
2540	 * must be protect by host_lock
2541	 */
2542	pmcraid_send_cmd(cmd, pmcraid_erp_done,
2543			 PMCRAID_REQUEST_SENSE_TIMEOUT,
2544			 pmcraid_timeout_handler);
2545}
2546
2547/**
2548 * pmcraid_cancel_all - cancel all outstanding IOARCBs as part of error recovery
2549 * @cmd: command that failed
2550 * @sense: true if request_sense is required after cancel all
2551 *
2552 * This function sends a cancel all to a device to clear the queue.
2553 */
2554static void pmcraid_cancel_all(struct pmcraid_cmd *cmd, u32 sense)
2555{
2556	struct scsi_cmnd *scsi_cmd = cmd->scsi_cmd;
2557	struct pmcraid_ioarcb *ioarcb = &cmd->ioa_cb->ioarcb;
2558	struct pmcraid_resource_entry *res = scsi_cmd->device->hostdata;
2559	void (*cmd_done) (struct pmcraid_cmd *) = sense ? pmcraid_erp_done
2560							: pmcraid_request_sense;
2561
2562	memset(ioarcb->cdb, 0, PMCRAID_MAX_CDB_LEN);
2563	ioarcb->request_flags0 = SYNC_OVERRIDE;
2564	ioarcb->request_type = REQ_TYPE_IOACMD;
2565	ioarcb->cdb[0] = PMCRAID_CANCEL_ALL_REQUESTS;
2566
2567	if (RES_IS_GSCSI(res->cfg_entry))
2568		ioarcb->cdb[1] = PMCRAID_SYNC_COMPLETE_AFTER_CANCEL;
2569
2570	ioarcb->ioadl_bus_addr = 0;
2571	ioarcb->ioadl_length = 0;
2572	ioarcb->data_transfer_length = 0;
2573	ioarcb->ioarcb_bus_addr &= (~0x1FULL);
2574
2575	/* writing to IOARRIN must be protected by host_lock, as mid-layer
2576	 * schedule queuecommand while we are doing this
2577	 */
2578	pmcraid_send_cmd(cmd, cmd_done,
 
2579			 PMCRAID_REQUEST_SENSE_TIMEOUT,
2580			 pmcraid_timeout_handler);
2581}
2582
2583/**
2584 * pmcraid_frame_auto_sense: frame fixed format sense information
2585 *
2586 * @cmd: pointer to failing command block
2587 *
2588 * Return value
2589 *  none
2590 */
2591static void pmcraid_frame_auto_sense(struct pmcraid_cmd *cmd)
2592{
2593	u8 *sense_buf = cmd->scsi_cmd->sense_buffer;
2594	struct pmcraid_resource_entry *res = cmd->scsi_cmd->device->hostdata;
2595	struct pmcraid_ioasa *ioasa = &cmd->ioa_cb->ioasa;
2596	u32 ioasc = le32_to_cpu(ioasa->ioasc);
2597	u32 failing_lba = 0;
2598
2599	memset(sense_buf, 0, SCSI_SENSE_BUFFERSIZE);
2600	cmd->scsi_cmd->result = SAM_STAT_CHECK_CONDITION;
2601
2602	if (RES_IS_VSET(res->cfg_entry) &&
2603	    ioasc == PMCRAID_IOASC_ME_READ_ERROR_NO_REALLOC &&
2604	    ioasa->u.vset.failing_lba_hi != 0) {
2605
2606		sense_buf[0] = 0x72;
2607		sense_buf[1] = PMCRAID_IOASC_SENSE_KEY(ioasc);
2608		sense_buf[2] = PMCRAID_IOASC_SENSE_CODE(ioasc);
2609		sense_buf[3] = PMCRAID_IOASC_SENSE_QUAL(ioasc);
2610
2611		sense_buf[7] = 12;
2612		sense_buf[8] = 0;
2613		sense_buf[9] = 0x0A;
2614		sense_buf[10] = 0x80;
2615
2616		failing_lba = le32_to_cpu(ioasa->u.vset.failing_lba_hi);
2617
2618		sense_buf[12] = (failing_lba & 0xff000000) >> 24;
2619		sense_buf[13] = (failing_lba & 0x00ff0000) >> 16;
2620		sense_buf[14] = (failing_lba & 0x0000ff00) >> 8;
2621		sense_buf[15] = failing_lba & 0x000000ff;
2622
2623		failing_lba = le32_to_cpu(ioasa->u.vset.failing_lba_lo);
2624
2625		sense_buf[16] = (failing_lba & 0xff000000) >> 24;
2626		sense_buf[17] = (failing_lba & 0x00ff0000) >> 16;
2627		sense_buf[18] = (failing_lba & 0x0000ff00) >> 8;
2628		sense_buf[19] = failing_lba & 0x000000ff;
2629	} else {
2630		sense_buf[0] = 0x70;
2631		sense_buf[2] = PMCRAID_IOASC_SENSE_KEY(ioasc);
2632		sense_buf[12] = PMCRAID_IOASC_SENSE_CODE(ioasc);
2633		sense_buf[13] = PMCRAID_IOASC_SENSE_QUAL(ioasc);
2634
2635		if (ioasc == PMCRAID_IOASC_ME_READ_ERROR_NO_REALLOC) {
2636			if (RES_IS_VSET(res->cfg_entry))
2637				failing_lba =
2638					le32_to_cpu(ioasa->u.
2639						 vset.failing_lba_lo);
2640			sense_buf[0] |= 0x80;
2641			sense_buf[3] = (failing_lba >> 24) & 0xff;
2642			sense_buf[4] = (failing_lba >> 16) & 0xff;
2643			sense_buf[5] = (failing_lba >> 8) & 0xff;
2644			sense_buf[6] = failing_lba & 0xff;
2645		}
2646
2647		sense_buf[7] = 6; /* additional length */
2648	}
2649}
2650
2651/**
2652 * pmcraid_error_handler - Error response handlers for a SCSI op
2653 * @cmd: pointer to pmcraid_cmd that has failed
2654 *
2655 * This function determines whether or not to initiate ERP on the affected
2656 * device. This is called from a tasklet, which doesn't hold any locks.
2657 *
2658 * Return value:
2659 *	 0 it caller can complete the request, otherwise 1 where in error
2660 *	 handler itself completes the request and returns the command block
2661 *	 back to free-pool
2662 */
2663static int pmcraid_error_handler(struct pmcraid_cmd *cmd)
2664{
2665	struct scsi_cmnd *scsi_cmd = cmd->scsi_cmd;
2666	struct pmcraid_resource_entry *res = scsi_cmd->device->hostdata;
2667	struct pmcraid_instance *pinstance = cmd->drv_inst;
2668	struct pmcraid_ioasa *ioasa = &cmd->ioa_cb->ioasa;
2669	u32 ioasc = le32_to_cpu(ioasa->ioasc);
2670	u32 masked_ioasc = ioasc & PMCRAID_IOASC_SENSE_MASK;
2671	u32 sense_copied = 0;
2672
2673	if (!res) {
2674		pmcraid_info("resource pointer is NULL\n");
2675		return 0;
2676	}
2677
2678	/* If this was a SCSI read/write command keep count of errors */
2679	if (SCSI_CMD_TYPE(scsi_cmd->cmnd[0]) == SCSI_READ_CMD)
2680		atomic_inc(&res->read_failures);
2681	else if (SCSI_CMD_TYPE(scsi_cmd->cmnd[0]) == SCSI_WRITE_CMD)
2682		atomic_inc(&res->write_failures);
2683
2684	if (!RES_IS_GSCSI(res->cfg_entry) &&
2685		masked_ioasc != PMCRAID_IOASC_HW_DEVICE_BUS_STATUS_ERROR) {
2686		pmcraid_frame_auto_sense(cmd);
2687	}
2688
2689	/* Log IOASC/IOASA information based on user settings */
2690	pmcraid_ioasc_logger(ioasc, cmd);
2691
2692	switch (masked_ioasc) {
2693
2694	case PMCRAID_IOASC_AC_TERMINATED_BY_HOST:
2695		scsi_cmd->result |= (DID_ABORT << 16);
2696		break;
2697
2698	case PMCRAID_IOASC_IR_INVALID_RESOURCE_HANDLE:
2699	case PMCRAID_IOASC_HW_CANNOT_COMMUNICATE:
2700		scsi_cmd->result |= (DID_NO_CONNECT << 16);
2701		break;
2702
2703	case PMCRAID_IOASC_NR_SYNC_REQUIRED:
2704		res->sync_reqd = 1;
2705		scsi_cmd->result |= (DID_IMM_RETRY << 16);
2706		break;
2707
2708	case PMCRAID_IOASC_ME_READ_ERROR_NO_REALLOC:
2709		scsi_cmd->result |= (DID_PASSTHROUGH << 16);
2710		break;
2711
2712	case PMCRAID_IOASC_UA_BUS_WAS_RESET:
2713	case PMCRAID_IOASC_UA_BUS_WAS_RESET_BY_OTHER:
2714		if (!res->reset_progress)
2715			scsi_report_bus_reset(pinstance->host,
2716					      scsi_cmd->device->channel);
2717		scsi_cmd->result |= (DID_ERROR << 16);
2718		break;
2719
2720	case PMCRAID_IOASC_HW_DEVICE_BUS_STATUS_ERROR:
2721		scsi_cmd->result |= PMCRAID_IOASC_SENSE_STATUS(ioasc);
2722		res->sync_reqd = 1;
2723
2724		/* if check_condition is not active return with error otherwise
2725		 * get/frame the sense buffer
2726		 */
2727		if (PMCRAID_IOASC_SENSE_STATUS(ioasc) !=
2728		    SAM_STAT_CHECK_CONDITION &&
2729		    PMCRAID_IOASC_SENSE_STATUS(ioasc) != SAM_STAT_ACA_ACTIVE)
2730			return 0;
2731
2732		/* If we have auto sense data as part of IOASA pass it to
2733		 * mid-layer
2734		 */
2735		if (ioasa->auto_sense_length != 0) {
2736			short sense_len = ioasa->auto_sense_length;
2737			int data_size = min_t(u16, le16_to_cpu(sense_len),
2738					      SCSI_SENSE_BUFFERSIZE);
2739
2740			memcpy(scsi_cmd->sense_buffer,
2741			       ioasa->sense_data,
2742			       data_size);
2743			sense_copied = 1;
2744		}
2745
2746		if (RES_IS_GSCSI(res->cfg_entry))
2747			pmcraid_cancel_all(cmd, sense_copied);
2748		else if (sense_copied)
2749			pmcraid_erp_done(cmd);
2750		else
2751			pmcraid_request_sense(cmd);
2752
2753		return 1;
2754
2755	case PMCRAID_IOASC_NR_INIT_CMD_REQUIRED:
2756		break;
2757
2758	default:
2759		if (PMCRAID_IOASC_SENSE_KEY(ioasc) > RECOVERED_ERROR)
2760			scsi_cmd->result |= (DID_ERROR << 16);
2761		break;
2762	}
2763	return 0;
2764}
2765
2766/**
2767 * pmcraid_reset_device - device reset handler functions
2768 *
2769 * @scsi_cmd: scsi command struct
 
2770 * @modifier: reset modifier indicating the reset sequence to be performed
2771 *
2772 * This function issues a device reset to the affected device.
2773 * A LUN reset will be sent to the device first. If that does
2774 * not work, a target reset will be sent.
2775 *
2776 * Return value:
2777 *	SUCCESS / FAILED
2778 */
2779static int pmcraid_reset_device(
2780	struct scsi_cmnd *scsi_cmd,
2781	unsigned long timeout,
2782	u8 modifier
2783)
2784{
2785	struct pmcraid_cmd *cmd;
2786	struct pmcraid_instance *pinstance;
2787	struct pmcraid_resource_entry *res;
2788	struct pmcraid_ioarcb *ioarcb;
2789	unsigned long lock_flags;
2790	u32 ioasc;
2791
2792	pinstance =
2793		(struct pmcraid_instance *)scsi_cmd->device->host->hostdata;
2794	res = scsi_cmd->device->hostdata;
2795
2796	if (!res) {
2797		sdev_printk(KERN_ERR, scsi_cmd->device,
2798			    "reset_device: NULL resource pointer\n");
2799		return FAILED;
2800	}
2801
2802	/* If adapter is currently going through reset/reload, return failed.
2803	 * This will force the mid-layer to call _eh_bus/host reset, which
2804	 * will then go to sleep and wait for the reset to complete
2805	 */
2806	spin_lock_irqsave(pinstance->host->host_lock, lock_flags);
2807	if (pinstance->ioa_reset_in_progress ||
2808	    pinstance->ioa_state == IOA_STATE_DEAD) {
2809		spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
2810		return FAILED;
2811	}
2812
2813	res->reset_progress = 1;
2814	pmcraid_info("Resetting %s resource with addr %x\n",
2815		     ((modifier & RESET_DEVICE_LUN) ? "LUN" :
2816		     ((modifier & RESET_DEVICE_TARGET) ? "TARGET" : "BUS")),
2817		     le32_to_cpu(res->cfg_entry.resource_address));
2818
2819	/* get a free cmd block */
2820	cmd = pmcraid_get_free_cmd(pinstance);
2821
2822	if (cmd == NULL) {
2823		spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
2824		pmcraid_err("%s: no cmd blocks are available\n", __func__);
2825		return FAILED;
2826	}
2827
2828	ioarcb = &cmd->ioa_cb->ioarcb;
2829	ioarcb->resource_handle = res->cfg_entry.resource_handle;
2830	ioarcb->request_type = REQ_TYPE_IOACMD;
2831	ioarcb->cdb[0] = PMCRAID_RESET_DEVICE;
2832
2833	/* Initialize reset modifier bits */
2834	if (modifier)
2835		modifier = ENABLE_RESET_MODIFIER | modifier;
2836
2837	ioarcb->cdb[1] = modifier;
2838
2839	init_completion(&cmd->wait_for_completion);
2840	cmd->completion_req = 1;
2841
2842	pmcraid_info("cmd(CDB[0] = %x) for %x with index = %d\n",
2843		     cmd->ioa_cb->ioarcb.cdb[0],
2844		     le32_to_cpu(cmd->ioa_cb->ioarcb.resource_handle),
2845		     le32_to_cpu(cmd->ioa_cb->ioarcb.response_handle) >> 2);
2846
2847	pmcraid_send_cmd(cmd,
2848			 pmcraid_internal_done,
2849			 timeout,
2850			 pmcraid_timeout_handler);
2851
2852	spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
2853
2854	/* RESET_DEVICE command completes after all pending IOARCBs are
2855	 * completed. Once this command is completed, pmcraind_internal_done
2856	 * will wake up the 'completion' queue.
2857	 */
2858	wait_for_completion(&cmd->wait_for_completion);
2859
2860	/* complete the command here itself and return the command block
2861	 * to free list
2862	 */
2863	pmcraid_return_cmd(cmd);
2864	res->reset_progress = 0;
2865	ioasc = le32_to_cpu(cmd->ioa_cb->ioasa.ioasc);
2866
2867	/* set the return value based on the returned ioasc */
2868	return PMCRAID_IOASC_SENSE_KEY(ioasc) ? FAILED : SUCCESS;
2869}
2870
2871/**
2872 * _pmcraid_io_done - helper for pmcraid_io_done function
2873 *
2874 * @cmd: pointer to pmcraid command struct
2875 * @reslen: residual data length to be set in the ioasa
2876 * @ioasc: ioasc either returned by IOA or set by driver itself.
2877 *
2878 * This function is invoked by pmcraid_io_done to complete mid-layer
2879 * scsi ops.
2880 *
2881 * Return value:
2882 *	  0 if caller is required to return it to free_pool. Returns 1 if
2883 *	  caller need not worry about freeing command block as error handler
2884 *	  will take care of that.
2885 */
2886
2887static int _pmcraid_io_done(struct pmcraid_cmd *cmd, int reslen, int ioasc)
2888{
2889	struct scsi_cmnd *scsi_cmd = cmd->scsi_cmd;
2890	int rc = 0;
2891
2892	scsi_set_resid(scsi_cmd, reslen);
2893
2894	pmcraid_info("response(%d) CDB[0] = %x ioasc:result: %x:%x\n",
2895		le32_to_cpu(cmd->ioa_cb->ioarcb.response_handle) >> 2,
2896		cmd->ioa_cb->ioarcb.cdb[0],
2897		ioasc, scsi_cmd->result);
2898
2899	if (PMCRAID_IOASC_SENSE_KEY(ioasc) != 0)
2900		rc = pmcraid_error_handler(cmd);
2901
2902	if (rc == 0) {
2903		scsi_dma_unmap(scsi_cmd);
2904		scsi_cmd->scsi_done(scsi_cmd);
2905	}
2906
2907	return rc;
2908}
2909
2910/**
2911 * pmcraid_io_done - SCSI completion function
2912 *
2913 * @cmd: pointer to pmcraid command struct
2914 *
2915 * This function is invoked by tasklet/mid-layer error handler to completing
2916 * the SCSI ops sent from mid-layer.
2917 *
2918 * Return value
2919 *	  none
2920 */
2921
2922static void pmcraid_io_done(struct pmcraid_cmd *cmd)
2923{
2924	u32 ioasc = le32_to_cpu(cmd->ioa_cb->ioasa.ioasc);
2925	u32 reslen = le32_to_cpu(cmd->ioa_cb->ioasa.residual_data_length);
2926
2927	if (_pmcraid_io_done(cmd, reslen, ioasc) == 0)
2928		pmcraid_return_cmd(cmd);
2929}
2930
2931/**
2932 * pmcraid_abort_cmd - Aborts a single IOARCB already submitted to IOA
2933 *
2934 * @cmd: command block of the command to be aborted
2935 *
2936 * Return Value:
2937 *	 returns pointer to command structure used as cancelling cmd
2938 */
2939static struct pmcraid_cmd *pmcraid_abort_cmd(struct pmcraid_cmd *cmd)
2940{
2941	struct pmcraid_cmd *cancel_cmd;
2942	struct pmcraid_instance *pinstance;
2943	struct pmcraid_resource_entry *res;
2944
2945	pinstance = (struct pmcraid_instance *)cmd->drv_inst;
2946	res = cmd->scsi_cmd->device->hostdata;
2947
2948	cancel_cmd = pmcraid_get_free_cmd(pinstance);
2949
2950	if (cancel_cmd == NULL) {
2951		pmcraid_err("%s: no cmd blocks are available\n", __func__);
2952		return NULL;
2953	}
2954
2955	pmcraid_prepare_cancel_cmd(cancel_cmd, cmd);
2956
2957	pmcraid_info("aborting command CDB[0]= %x with index = %d\n",
2958		cmd->ioa_cb->ioarcb.cdb[0],
2959		cmd->ioa_cb->ioarcb.response_handle >> 2);
2960
2961	init_completion(&cancel_cmd->wait_for_completion);
2962	cancel_cmd->completion_req = 1;
2963
2964	pmcraid_info("command (%d) CDB[0] = %x for %x\n",
2965		le32_to_cpu(cancel_cmd->ioa_cb->ioarcb.response_handle) >> 2,
2966		cancel_cmd->ioa_cb->ioarcb.cdb[0],
2967		le32_to_cpu(cancel_cmd->ioa_cb->ioarcb.resource_handle));
2968
2969	pmcraid_send_cmd(cancel_cmd,
2970			 pmcraid_internal_done,
2971			 PMCRAID_INTERNAL_TIMEOUT,
2972			 pmcraid_timeout_handler);
2973	return cancel_cmd;
2974}
2975
2976/**
2977 * pmcraid_abort_complete - Waits for ABORT TASK completion
2978 *
2979 * @cancel_cmd: command block use as cancelling command
2980 *
2981 * Return Value:
2982 *	 returns SUCCESS if ABORT TASK has good completion
2983 *	 otherwise FAILED
2984 */
2985static int pmcraid_abort_complete(struct pmcraid_cmd *cancel_cmd)
2986{
2987	struct pmcraid_resource_entry *res;
2988	u32 ioasc;
2989
2990	wait_for_completion(&cancel_cmd->wait_for_completion);
2991	res = cancel_cmd->res;
2992	cancel_cmd->res = NULL;
2993	ioasc = le32_to_cpu(cancel_cmd->ioa_cb->ioasa.ioasc);
2994
2995	/* If the abort task is not timed out we will get a Good completion
2996	 * as sense_key, otherwise we may get one the following responses
2997	 * due to subsequent bus reset or device reset. In case IOASC is
2998	 * NR_SYNC_REQUIRED, set sync_reqd flag for the corresponding resource
2999	 */
3000	if (ioasc == PMCRAID_IOASC_UA_BUS_WAS_RESET ||
3001	    ioasc == PMCRAID_IOASC_NR_SYNC_REQUIRED) {
3002		if (ioasc == PMCRAID_IOASC_NR_SYNC_REQUIRED)
3003			res->sync_reqd = 1;
3004		ioasc = 0;
3005	}
3006
3007	/* complete the command here itself */
3008	pmcraid_return_cmd(cancel_cmd);
3009	return PMCRAID_IOASC_SENSE_KEY(ioasc) ? FAILED : SUCCESS;
3010}
3011
3012/**
3013 * pmcraid_eh_abort_handler - entry point for aborting a single task on errors
3014 *
3015 * @scsi_cmd:   scsi command struct given by mid-layer. When this is called
3016 *		mid-layer ensures that no other commands are queued. This
3017 *		never gets called under interrupt, but a separate eh thread.
3018 *
3019 * Return value:
3020 *	 SUCCESS / FAILED
3021 */
3022static int pmcraid_eh_abort_handler(struct scsi_cmnd *scsi_cmd)
3023{
3024	struct pmcraid_instance *pinstance;
3025	struct pmcraid_cmd *cmd;
3026	struct pmcraid_resource_entry *res;
3027	unsigned long host_lock_flags;
3028	unsigned long pending_lock_flags;
3029	struct pmcraid_cmd *cancel_cmd = NULL;
3030	int cmd_found = 0;
3031	int rc = FAILED;
3032
3033	pinstance =
3034		(struct pmcraid_instance *)scsi_cmd->device->host->hostdata;
3035
3036	scmd_printk(KERN_INFO, scsi_cmd,
3037		    "I/O command timed out, aborting it.\n");
3038
3039	res = scsi_cmd->device->hostdata;
3040
3041	if (res == NULL)
3042		return rc;
3043
3044	/* If we are currently going through reset/reload, return failed.
3045	 * This will force the mid-layer to eventually call
3046	 * pmcraid_eh_host_reset which will then go to sleep and wait for the
3047	 * reset to complete
3048	 */
3049	spin_lock_irqsave(pinstance->host->host_lock, host_lock_flags);
3050
3051	if (pinstance->ioa_reset_in_progress ||
3052	    pinstance->ioa_state == IOA_STATE_DEAD) {
3053		spin_unlock_irqrestore(pinstance->host->host_lock,
3054				       host_lock_flags);
3055		return rc;
3056	}
3057
3058	/* loop over pending cmd list to find cmd corresponding to this
3059	 * scsi_cmd. Note that this command might not have been completed
3060	 * already. locking: all pending commands are protected with
3061	 * pending_pool_lock.
3062	 */
3063	spin_lock_irqsave(&pinstance->pending_pool_lock, pending_lock_flags);
3064	list_for_each_entry(cmd, &pinstance->pending_cmd_pool, free_list) {
3065
3066		if (cmd->scsi_cmd == scsi_cmd) {
3067			cmd_found = 1;
3068			break;
3069		}
3070	}
3071
3072	spin_unlock_irqrestore(&pinstance->pending_pool_lock,
3073				pending_lock_flags);
3074
3075	/* If the command to be aborted was given to IOA and still pending with
3076	 * it, send ABORT_TASK to abort this and wait for its completion
3077	 */
3078	if (cmd_found)
3079		cancel_cmd = pmcraid_abort_cmd(cmd);
3080
3081	spin_unlock_irqrestore(pinstance->host->host_lock,
3082			       host_lock_flags);
3083
3084	if (cancel_cmd) {
3085		cancel_cmd->res = cmd->scsi_cmd->device->hostdata;
3086		rc = pmcraid_abort_complete(cancel_cmd);
3087	}
3088
3089	return cmd_found ? rc : SUCCESS;
3090}
3091
3092/**
3093 * pmcraid_eh_xxxx_reset_handler - bus/target/device reset handler callbacks
3094 *
3095 * @scmd: pointer to scsi_cmd that was sent to the resource to be reset.
3096 *
3097 * All these routines invokve pmcraid_reset_device with appropriate parameters.
3098 * Since these are called from mid-layer EH thread, no other IO will be queued
3099 * to the resource being reset. However, control path (IOCTL) may be active so
3100 * it is necessary to synchronize IOARRIN writes which pmcraid_reset_device
3101 * takes care by locking/unlocking host_lock.
3102 *
3103 * Return value
3104 *	SUCCESS or FAILED
3105 */
3106static int pmcraid_eh_device_reset_handler(struct scsi_cmnd *scmd)
3107{
3108	scmd_printk(KERN_INFO, scmd,
3109		    "resetting device due to an I/O command timeout.\n");
3110	return pmcraid_reset_device(scmd,
3111				    PMCRAID_INTERNAL_TIMEOUT,
3112				    RESET_DEVICE_LUN);
3113}
3114
3115static int pmcraid_eh_bus_reset_handler(struct scsi_cmnd *scmd)
3116{
3117	scmd_printk(KERN_INFO, scmd,
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
3118		    "Doing bus reset due to an I/O command timeout.\n");
3119	return pmcraid_reset_device(scmd,
3120				    PMCRAID_RESET_BUS_TIMEOUT,
3121				    RESET_DEVICE_BUS);
3122}
3123
3124static int pmcraid_eh_target_reset_handler(struct scsi_cmnd *scmd)
3125{
3126	scmd_printk(KERN_INFO, scmd,
 
 
 
 
 
 
 
 
 
 
 
 
 
3127		    "Doing target reset due to an I/O command timeout.\n");
3128	return pmcraid_reset_device(scmd,
3129				    PMCRAID_INTERNAL_TIMEOUT,
3130				    RESET_DEVICE_TARGET);
 
 
3131}
3132
3133/**
3134 * pmcraid_eh_host_reset_handler - adapter reset handler callback
3135 *
3136 * @scmd: pointer to scsi_cmd that was sent to a resource of adapter
3137 *
3138 * Initiates adapter reset to bring it up to operational state
3139 *
3140 * Return value
3141 *	SUCCESS or FAILED
3142 */
3143static int pmcraid_eh_host_reset_handler(struct scsi_cmnd *scmd)
3144{
3145	unsigned long interval = 10000; /* 10 seconds interval */
3146	int waits = jiffies_to_msecs(PMCRAID_RESET_HOST_TIMEOUT) / interval;
3147	struct pmcraid_instance *pinstance =
3148		(struct pmcraid_instance *)(scmd->device->host->hostdata);
3149
3150
3151	/* wait for an additional 150 seconds just in case firmware could come
3152	 * up and if it could complete all the pending commands excluding the
3153	 * two HCAM (CCN and LDN).
3154	 */
3155	while (waits--) {
3156		if (atomic_read(&pinstance->outstanding_cmds) <=
3157		    PMCRAID_MAX_HCAM_CMD)
3158			return SUCCESS;
3159		msleep(interval);
3160	}
3161
3162	dev_err(&pinstance->pdev->dev,
3163		"Adapter being reset due to an I/O command timeout.\n");
3164	return pmcraid_reset_bringup(pinstance) == 0 ? SUCCESS : FAILED;
3165}
3166
3167/**
3168 * pmcraid_task_attributes - Translate SPI Q-Tags to task attributes
3169 * @scsi_cmd:   scsi command struct
3170 *
3171 * Return value
3172 *	  number of tags or 0 if the task is not tagged
3173 */
3174static u8 pmcraid_task_attributes(struct scsi_cmnd *scsi_cmd)
3175{
3176	char tag[2];
3177	u8 rc = 0;
3178
3179	if (scsi_populate_tag_msg(scsi_cmd, tag)) {
3180		switch (tag[0]) {
3181		case MSG_SIMPLE_TAG:
3182			rc = TASK_TAG_SIMPLE;
3183			break;
3184		case MSG_HEAD_TAG:
3185			rc = TASK_TAG_QUEUE_HEAD;
3186			break;
3187		case MSG_ORDERED_TAG:
3188			rc = TASK_TAG_ORDERED;
3189			break;
3190		};
3191	}
3192
3193	return rc;
3194}
3195
3196
3197/**
3198 * pmcraid_init_ioadls - initializes IOADL related fields in IOARCB
3199 * @cmd: pmcraid command struct
3200 * @sgcount: count of scatter-gather elements
3201 *
3202 * Return value
3203 *   returns pointer pmcraid_ioadl_desc, initialized to point to internal
3204 *   or external IOADLs
3205 */
3206struct pmcraid_ioadl_desc *
3207pmcraid_init_ioadls(struct pmcraid_cmd *cmd, int sgcount)
3208{
3209	struct pmcraid_ioadl_desc *ioadl;
3210	struct pmcraid_ioarcb *ioarcb = &cmd->ioa_cb->ioarcb;
3211	int ioadl_count = 0;
3212
3213	if (ioarcb->add_cmd_param_length)
3214		ioadl_count = DIV_ROUND_UP(ioarcb->add_cmd_param_length, 16);
3215	ioarcb->ioadl_length =
3216		sizeof(struct pmcraid_ioadl_desc) * sgcount;
3217
3218	if ((sgcount + ioadl_count) > (ARRAY_SIZE(ioarcb->add_data.u.ioadl))) {
3219		/* external ioadls start at offset 0x80 from control_block
3220		 * structure, re-using 24 out of 27 ioadls part of IOARCB.
3221		 * It is necessary to indicate to firmware that driver is
3222		 * using ioadls to be treated as external to IOARCB.
3223		 */
3224		ioarcb->ioarcb_bus_addr &= ~(0x1FULL);
3225		ioarcb->ioadl_bus_addr =
3226			cpu_to_le64((cmd->ioa_cb_bus_addr) +
3227				offsetof(struct pmcraid_ioarcb,
3228					add_data.u.ioadl[3]));
3229		ioadl = &ioarcb->add_data.u.ioadl[3];
3230	} else {
3231		ioarcb->ioadl_bus_addr =
3232			cpu_to_le64((cmd->ioa_cb_bus_addr) +
3233				offsetof(struct pmcraid_ioarcb,
3234					add_data.u.ioadl[ioadl_count]));
3235
3236		ioadl = &ioarcb->add_data.u.ioadl[ioadl_count];
3237		ioarcb->ioarcb_bus_addr |=
3238				DIV_ROUND_CLOSEST(sgcount + ioadl_count, 8);
3239	}
3240
3241	return ioadl;
3242}
3243
3244/**
3245 * pmcraid_build_ioadl - Build a scatter/gather list and map the buffer
3246 * @pinstance: pointer to adapter instance structure
3247 * @cmd: pmcraid command struct
3248 *
3249 * This function is invoked by queuecommand entry point while sending a command
3250 * to firmware. This builds ioadl descriptors and sets up ioarcb fields.
3251 *
3252 * Return value:
3253 *	0 on success or -1 on failure
3254 */
3255static int pmcraid_build_ioadl(
3256	struct pmcraid_instance *pinstance,
3257	struct pmcraid_cmd *cmd
3258)
3259{
3260	int i, nseg;
3261	struct scatterlist *sglist;
3262
3263	struct scsi_cmnd *scsi_cmd = cmd->scsi_cmd;
3264	struct pmcraid_ioarcb *ioarcb = &(cmd->ioa_cb->ioarcb);
3265	struct pmcraid_ioadl_desc *ioadl = ioarcb->add_data.u.ioadl;
3266
3267	u32 length = scsi_bufflen(scsi_cmd);
3268
3269	if (!length)
3270		return 0;
3271
3272	nseg = scsi_dma_map(scsi_cmd);
3273
3274	if (nseg < 0) {
3275		scmd_printk(KERN_ERR, scsi_cmd, "scsi_map_dma failed!\n");
3276		return -1;
3277	} else if (nseg > PMCRAID_MAX_IOADLS) {
3278		scsi_dma_unmap(scsi_cmd);
3279		scmd_printk(KERN_ERR, scsi_cmd,
3280			"sg count is (%d) more than allowed!\n", nseg);
3281		return -1;
3282	}
3283
3284	/* Initialize IOARCB data transfer length fields */
3285	if (scsi_cmd->sc_data_direction == DMA_TO_DEVICE)
3286		ioarcb->request_flags0 |= TRANSFER_DIR_WRITE;
3287
3288	ioarcb->request_flags0 |= NO_LINK_DESCS;
3289	ioarcb->data_transfer_length = cpu_to_le32(length);
3290	ioadl = pmcraid_init_ioadls(cmd, nseg);
3291
3292	/* Initialize IOADL descriptor addresses */
3293	scsi_for_each_sg(scsi_cmd, sglist, nseg, i) {
3294		ioadl[i].data_len = cpu_to_le32(sg_dma_len(sglist));
3295		ioadl[i].address = cpu_to_le64(sg_dma_address(sglist));
3296		ioadl[i].flags = 0;
3297	}
3298	/* setup last descriptor */
3299	ioadl[i - 1].flags = IOADL_FLAGS_LAST_DESC;
3300
3301	return 0;
3302}
3303
3304/**
3305 * pmcraid_free_sglist - Frees an allocated SG buffer list
3306 * @sglist: scatter/gather list pointer
3307 *
3308 * Free a DMA'able memory previously allocated with pmcraid_alloc_sglist
3309 *
3310 * Return value:
3311 *	none
3312 */
3313static void pmcraid_free_sglist(struct pmcraid_sglist *sglist)
3314{
3315	int i;
3316
3317	for (i = 0; i < sglist->num_sg; i++)
3318		__free_pages(sg_page(&(sglist->scatterlist[i])),
3319			     sglist->order);
3320
3321	kfree(sglist);
3322}
3323
3324/**
3325 * pmcraid_alloc_sglist - Allocates memory for a SG list
3326 * @buflen: buffer length
3327 *
3328 * Allocates a DMA'able buffer in chunks and assembles a scatter/gather
3329 * list.
3330 *
3331 * Return value
3332 *	pointer to sglist / NULL on failure
3333 */
3334static struct pmcraid_sglist *pmcraid_alloc_sglist(int buflen)
3335{
3336	struct pmcraid_sglist *sglist;
3337	struct scatterlist *scatterlist;
3338	struct page *page;
3339	int num_elem, i, j;
3340	int sg_size;
3341	int order;
3342	int bsize_elem;
3343
3344	sg_size = buflen / (PMCRAID_MAX_IOADLS - 1);
3345	order = (sg_size > 0) ? get_order(sg_size) : 0;
3346	bsize_elem = PAGE_SIZE * (1 << order);
3347
3348	/* Determine the actual number of sg entries needed */
3349	if (buflen % bsize_elem)
3350		num_elem = (buflen / bsize_elem) + 1;
3351	else
3352		num_elem = buflen / bsize_elem;
3353
3354	/* Allocate a scatter/gather list for the DMA */
3355	sglist = kzalloc(sizeof(struct pmcraid_sglist) +
3356			 (sizeof(struct scatterlist) * (num_elem - 1)),
3357			 GFP_KERNEL);
3358
3359	if (sglist == NULL)
3360		return NULL;
3361
3362	scatterlist = sglist->scatterlist;
3363	sg_init_table(scatterlist, num_elem);
3364	sglist->order = order;
3365	sglist->num_sg = num_elem;
3366	sg_size = buflen;
3367
3368	for (i = 0; i < num_elem; i++) {
3369		page = alloc_pages(GFP_KERNEL|GFP_DMA|__GFP_ZERO, order);
3370		if (!page) {
3371			for (j = i - 1; j >= 0; j--)
3372				__free_pages(sg_page(&scatterlist[j]), order);
3373			kfree(sglist);
3374			return NULL;
3375		}
3376
3377		sg_set_page(&scatterlist[i], page,
3378			sg_size < bsize_elem ? sg_size : bsize_elem, 0);
3379		sg_size -= bsize_elem;
3380	}
3381
3382	return sglist;
3383}
3384
3385/**
3386 * pmcraid_copy_sglist - Copy user buffer to kernel buffer's SG list
3387 * @sglist: scatter/gather list pointer
3388 * @buffer: buffer pointer
3389 * @len: buffer length
3390 * @direction: data transfer direction
3391 *
3392 * Copy a user buffer into a buffer allocated by pmcraid_alloc_sglist
3393 *
3394 * Return value:
3395 * 0 on success / other on failure
3396 */
3397static int pmcraid_copy_sglist(
3398	struct pmcraid_sglist *sglist,
3399	unsigned long buffer,
3400	u32 len,
3401	int direction
3402)
3403{
3404	struct scatterlist *scatterlist;
3405	void *kaddr;
3406	int bsize_elem;
3407	int i;
3408	int rc = 0;
3409
3410	/* Determine the actual number of bytes per element */
3411	bsize_elem = PAGE_SIZE * (1 << sglist->order);
3412
3413	scatterlist = sglist->scatterlist;
3414
3415	for (i = 0; i < (len / bsize_elem); i++, buffer += bsize_elem) {
3416		struct page *page = sg_page(&scatterlist[i]);
3417
3418		kaddr = kmap(page);
3419		if (direction == DMA_TO_DEVICE)
3420			rc = __copy_from_user(kaddr,
3421					      (void *)buffer,
3422					      bsize_elem);
3423		else
3424			rc = __copy_to_user((void *)buffer, kaddr, bsize_elem);
3425
3426		kunmap(page);
3427
3428		if (rc) {
3429			pmcraid_err("failed to copy user data into sg list\n");
3430			return -EFAULT;
3431		}
3432
3433		scatterlist[i].length = bsize_elem;
3434	}
3435
3436	if (len % bsize_elem) {
3437		struct page *page = sg_page(&scatterlist[i]);
3438
3439		kaddr = kmap(page);
3440
3441		if (direction == DMA_TO_DEVICE)
3442			rc = __copy_from_user(kaddr,
3443					      (void *)buffer,
3444					      len % bsize_elem);
3445		else
3446			rc = __copy_to_user((void *)buffer,
3447					    kaddr,
3448					    len % bsize_elem);
3449
3450		kunmap(page);
3451
3452		scatterlist[i].length = len % bsize_elem;
3453	}
3454
3455	if (rc) {
3456		pmcraid_err("failed to copy user data into sg list\n");
3457		rc = -EFAULT;
3458	}
3459
3460	return rc;
3461}
3462
3463/**
3464 * pmcraid_queuecommand - Queue a mid-layer request
3465 * @scsi_cmd: scsi command struct
3466 * @done: done function
3467 *
3468 * This function queues a request generated by the mid-layer. Midlayer calls
3469 * this routine within host->lock. Some of the functions called by queuecommand
3470 * would use cmd block queue locks (free_pool_lock and pending_pool_lock)
3471 *
3472 * Return value:
3473 *	  0 on success
3474 *	  SCSI_MLQUEUE_DEVICE_BUSY if device is busy
3475 *	  SCSI_MLQUEUE_HOST_BUSY if host is busy
3476 */
3477static int pmcraid_queuecommand_lck(
3478	struct scsi_cmnd *scsi_cmd,
3479	void (*done) (struct scsi_cmnd *)
3480)
3481{
3482	struct pmcraid_instance *pinstance;
3483	struct pmcraid_resource_entry *res;
3484	struct pmcraid_ioarcb *ioarcb;
3485	struct pmcraid_cmd *cmd;
3486	u32 fw_version;
3487	int rc = 0;
3488
3489	pinstance =
3490		(struct pmcraid_instance *)scsi_cmd->device->host->hostdata;
3491	fw_version = be16_to_cpu(pinstance->inq_data->fw_version);
3492	scsi_cmd->scsi_done = done;
3493	res = scsi_cmd->device->hostdata;
3494	scsi_cmd->result = (DID_OK << 16);
3495
3496	/* if adapter is marked as dead, set result to DID_NO_CONNECT complete
3497	 * the command
3498	 */
3499	if (pinstance->ioa_state == IOA_STATE_DEAD) {
3500		pmcraid_info("IOA is dead, but queuecommand is scheduled\n");
3501		scsi_cmd->result = (DID_NO_CONNECT << 16);
3502		scsi_cmd->scsi_done(scsi_cmd);
3503		return 0;
3504	}
3505
3506	/* If IOA reset is in progress, can't queue the commands */
3507	if (pinstance->ioa_reset_in_progress)
3508		return SCSI_MLQUEUE_HOST_BUSY;
3509
3510	/* Firmware doesn't support SYNCHRONIZE_CACHE command (0x35), complete
3511	 * the command here itself with success return
3512	 */
3513	if (scsi_cmd->cmnd[0] == SYNCHRONIZE_CACHE) {
3514		pmcraid_info("SYNC_CACHE(0x35), completing in driver itself\n");
3515		scsi_cmd->scsi_done(scsi_cmd);
3516		return 0;
3517	}
3518
3519	/* initialize the command and IOARCB to be sent to IOA */
3520	cmd = pmcraid_get_free_cmd(pinstance);
3521
3522	if (cmd == NULL) {
3523		pmcraid_err("free command block is not available\n");
3524		return SCSI_MLQUEUE_HOST_BUSY;
3525	}
3526
3527	cmd->scsi_cmd = scsi_cmd;
3528	ioarcb = &(cmd->ioa_cb->ioarcb);
3529	memcpy(ioarcb->cdb, scsi_cmd->cmnd, scsi_cmd->cmd_len);
3530	ioarcb->resource_handle = res->cfg_entry.resource_handle;
3531	ioarcb->request_type = REQ_TYPE_SCSI;
3532
3533	/* set hrrq number where the IOA should respond to. Note that all cmds
3534	 * generated internally uses hrrq_id 0, exception to this is the cmd
3535	 * block of scsi_cmd which is re-used (e.g. cancel/abort), which uses
3536	 * hrrq_id assigned here in queuecommand
3537	 */
3538	ioarcb->hrrq_id = atomic_add_return(1, &(pinstance->last_message_id)) %
3539			  pinstance->num_hrrq;
3540	cmd->cmd_done = pmcraid_io_done;
3541
3542	if (RES_IS_GSCSI(res->cfg_entry) || RES_IS_VSET(res->cfg_entry)) {
3543		if (scsi_cmd->underflow == 0)
3544			ioarcb->request_flags0 |= INHIBIT_UL_CHECK;
3545
3546		if (res->sync_reqd) {
3547			ioarcb->request_flags0 |= SYNC_COMPLETE;
3548			res->sync_reqd = 0;
3549		}
3550
3551		ioarcb->request_flags0 |= NO_LINK_DESCS;
3552		ioarcb->request_flags1 |= pmcraid_task_attributes(scsi_cmd);
 
 
3553
3554		if (RES_IS_GSCSI(res->cfg_entry))
3555			ioarcb->request_flags1 |= DELAY_AFTER_RESET;
3556	}
3557
3558	rc = pmcraid_build_ioadl(pinstance, cmd);
3559
3560	pmcraid_info("command (%d) CDB[0] = %x for %x:%x:%x:%x\n",
3561		     le32_to_cpu(ioarcb->response_handle) >> 2,
3562		     scsi_cmd->cmnd[0], pinstance->host->unique_id,
3563		     RES_IS_VSET(res->cfg_entry) ? PMCRAID_VSET_BUS_ID :
3564			PMCRAID_PHYS_BUS_ID,
3565		     RES_IS_VSET(res->cfg_entry) ?
3566			(fw_version <= PMCRAID_FW_VERSION_1 ?
3567				res->cfg_entry.unique_flags1 :
3568					res->cfg_entry.array_id & 0xFF) :
3569			RES_TARGET(res->cfg_entry.resource_address),
3570		     RES_LUN(res->cfg_entry.resource_address));
3571
3572	if (likely(rc == 0)) {
3573		_pmcraid_fire_command(cmd);
3574	} else {
3575		pmcraid_err("queuecommand could not build ioadl\n");
3576		pmcraid_return_cmd(cmd);
3577		rc = SCSI_MLQUEUE_HOST_BUSY;
3578	}
3579
3580	return rc;
3581}
3582
3583static DEF_SCSI_QCMD(pmcraid_queuecommand)
3584
3585/**
3586 * pmcraid_open -char node "open" entry, allowed only users with admin access
3587 */
3588static int pmcraid_chr_open(struct inode *inode, struct file *filep)
3589{
3590	struct pmcraid_instance *pinstance;
3591
3592	if (!capable(CAP_SYS_ADMIN))
3593		return -EACCES;
3594
3595	/* Populate adapter instance * pointer for use by ioctl */
3596	pinstance = container_of(inode->i_cdev, struct pmcraid_instance, cdev);
3597	filep->private_data = pinstance;
3598
3599	return 0;
3600}
3601
3602/**
3603 * pmcraid_release - char node "release" entry point
3604 */
3605static int pmcraid_chr_release(struct inode *inode, struct file *filep)
3606{
3607	struct pmcraid_instance *pinstance = filep->private_data;
3608
3609	filep->private_data = NULL;
3610	fasync_helper(-1, filep, 0, &pinstance->aen_queue);
3611
3612	return 0;
3613}
3614
3615/**
3616 * pmcraid_fasync - Async notifier registration from applications
3617 *
3618 * This function adds the calling process to a driver global queue. When an
3619 * event occurs, SIGIO will be sent to all processes in this queue.
3620 */
3621static int pmcraid_chr_fasync(int fd, struct file *filep, int mode)
3622{
3623	struct pmcraid_instance *pinstance;
3624	int rc;
3625
3626	pinstance = filep->private_data;
3627	mutex_lock(&pinstance->aen_queue_lock);
3628	rc = fasync_helper(fd, filep, mode, &pinstance->aen_queue);
3629	mutex_unlock(&pinstance->aen_queue_lock);
3630
3631	return rc;
3632}
3633
3634
3635/**
3636 * pmcraid_build_passthrough_ioadls - builds SG elements for passthrough
3637 * commands sent over IOCTL interface
3638 *
3639 * @cmd       : pointer to struct pmcraid_cmd
3640 * @buflen    : length of the request buffer
3641 * @direction : data transfer direction
3642 *
3643 * Return value
3644 *  0 on success, non-zero error code on failure
3645 */
3646static int pmcraid_build_passthrough_ioadls(
3647	struct pmcraid_cmd *cmd,
3648	int buflen,
3649	int direction
3650)
3651{
3652	struct pmcraid_sglist *sglist = NULL;
3653	struct scatterlist *sg = NULL;
3654	struct pmcraid_ioarcb *ioarcb = &cmd->ioa_cb->ioarcb;
3655	struct pmcraid_ioadl_desc *ioadl;
3656	int i;
3657
3658	sglist = pmcraid_alloc_sglist(buflen);
3659
3660	if (!sglist) {
3661		pmcraid_err("can't allocate memory for passthrough SGls\n");
3662		return -ENOMEM;
3663	}
3664
3665	sglist->num_dma_sg = pci_map_sg(cmd->drv_inst->pdev,
3666					sglist->scatterlist,
3667					sglist->num_sg, direction);
3668
3669	if (!sglist->num_dma_sg || sglist->num_dma_sg > PMCRAID_MAX_IOADLS) {
3670		dev_err(&cmd->drv_inst->pdev->dev,
3671			"Failed to map passthrough buffer!\n");
3672		pmcraid_free_sglist(sglist);
3673		return -EIO;
3674	}
3675
3676	cmd->sglist = sglist;
3677	ioarcb->request_flags0 |= NO_LINK_DESCS;
3678
3679	ioadl = pmcraid_init_ioadls(cmd, sglist->num_dma_sg);
3680
3681	/* Initialize IOADL descriptor addresses */
3682	for_each_sg(sglist->scatterlist, sg, sglist->num_dma_sg, i) {
3683		ioadl[i].data_len = cpu_to_le32(sg_dma_len(sg));
3684		ioadl[i].address = cpu_to_le64(sg_dma_address(sg));
3685		ioadl[i].flags = 0;
3686	}
3687
3688	/* setup the last descriptor */
3689	ioadl[i - 1].flags = IOADL_FLAGS_LAST_DESC;
3690
3691	return 0;
3692}
3693
3694
3695/**
3696 * pmcraid_release_passthrough_ioadls - release passthrough ioadls
3697 *
3698 * @cmd: pointer to struct pmcraid_cmd for which ioadls were allocated
3699 * @buflen: size of the request buffer
3700 * @direction: data transfer direction
3701 *
3702 * Return value
3703 *  0 on success, non-zero error code on failure
3704 */
3705static void pmcraid_release_passthrough_ioadls(
3706	struct pmcraid_cmd *cmd,
3707	int buflen,
3708	int direction
3709)
3710{
3711	struct pmcraid_sglist *sglist = cmd->sglist;
3712
3713	if (buflen > 0) {
3714		pci_unmap_sg(cmd->drv_inst->pdev,
3715			     sglist->scatterlist,
3716			     sglist->num_sg,
3717			     direction);
3718		pmcraid_free_sglist(sglist);
3719		cmd->sglist = NULL;
3720	}
3721}
3722
3723/**
3724 * pmcraid_ioctl_passthrough - handling passthrough IOCTL commands
3725 *
3726 * @pinstance: pointer to adapter instance structure
3727 * @cmd: ioctl code
3728 * @arg: pointer to pmcraid_passthrough_buffer user buffer
3729 *
3730 * Return value
3731 *  0 on success, non-zero error code on failure
3732 */
3733static long pmcraid_ioctl_passthrough(
3734	struct pmcraid_instance *pinstance,
3735	unsigned int ioctl_cmd,
3736	unsigned int buflen,
3737	unsigned long arg
3738)
3739{
3740	struct pmcraid_passthrough_ioctl_buffer *buffer;
3741	struct pmcraid_ioarcb *ioarcb;
3742	struct pmcraid_cmd *cmd;
3743	struct pmcraid_cmd *cancel_cmd;
3744	unsigned long request_buffer;
3745	unsigned long request_offset;
3746	unsigned long lock_flags;
3747	void *ioasa;
3748	u32 ioasc;
3749	int request_size;
3750	int buffer_size;
3751	u8 access, direction;
3752	int rc = 0;
3753
3754	/* If IOA reset is in progress, wait 10 secs for reset to complete */
3755	if (pinstance->ioa_reset_in_progress) {
3756		rc = wait_event_interruptible_timeout(
3757				pinstance->reset_wait_q,
3758				!pinstance->ioa_reset_in_progress,
3759				msecs_to_jiffies(10000));
3760
3761		if (!rc)
3762			return -ETIMEDOUT;
3763		else if (rc < 0)
3764			return -ERESTARTSYS;
3765	}
3766
3767	/* If adapter is not in operational state, return error */
3768	if (pinstance->ioa_state != IOA_STATE_OPERATIONAL) {
3769		pmcraid_err("IOA is not operational\n");
3770		return -ENOTTY;
3771	}
3772
3773	buffer_size = sizeof(struct pmcraid_passthrough_ioctl_buffer);
3774	buffer = kmalloc(buffer_size, GFP_KERNEL);
3775
3776	if (!buffer) {
3777		pmcraid_err("no memory for passthrough buffer\n");
3778		return -ENOMEM;
3779	}
3780
3781	request_offset =
3782	    offsetof(struct pmcraid_passthrough_ioctl_buffer, request_buffer);
3783
3784	request_buffer = arg + request_offset;
3785
3786	rc = __copy_from_user(buffer,
3787			     (struct pmcraid_passthrough_ioctl_buffer *) arg,
3788			     sizeof(struct pmcraid_passthrough_ioctl_buffer));
3789
3790	ioasa =
3791	(void *)(arg +
3792		offsetof(struct pmcraid_passthrough_ioctl_buffer, ioasa));
3793
3794	if (rc) {
3795		pmcraid_err("ioctl: can't copy passthrough buffer\n");
3796		rc = -EFAULT;
3797		goto out_free_buffer;
3798	}
3799
3800	request_size = buffer->ioarcb.data_transfer_length;
3801
3802	if (buffer->ioarcb.request_flags0 & TRANSFER_DIR_WRITE) {
3803		access = VERIFY_READ;
3804		direction = DMA_TO_DEVICE;
3805	} else {
3806		access = VERIFY_WRITE;
3807		direction = DMA_FROM_DEVICE;
3808	}
3809
3810	if (request_size > 0) {
3811		rc = access_ok(access, arg, request_offset + request_size);
3812
3813		if (!rc) {
3814			rc = -EFAULT;
3815			goto out_free_buffer;
3816		}
3817	} else if (request_size < 0) {
3818		rc = -EINVAL;
3819		goto out_free_buffer;
3820	}
3821
3822	/* check if we have any additional command parameters */
3823	if (buffer->ioarcb.add_cmd_param_length > PMCRAID_ADD_CMD_PARAM_LEN) {
3824		rc = -EINVAL;
3825		goto out_free_buffer;
3826	}
3827
3828	cmd = pmcraid_get_free_cmd(pinstance);
3829
3830	if (!cmd) {
3831		pmcraid_err("free command block is not available\n");
3832		rc = -ENOMEM;
3833		goto out_free_buffer;
3834	}
3835
3836	cmd->scsi_cmd = NULL;
3837	ioarcb = &(cmd->ioa_cb->ioarcb);
3838
3839	/* Copy the user-provided IOARCB stuff field by field */
3840	ioarcb->resource_handle = buffer->ioarcb.resource_handle;
3841	ioarcb->data_transfer_length = buffer->ioarcb.data_transfer_length;
3842	ioarcb->cmd_timeout = buffer->ioarcb.cmd_timeout;
3843	ioarcb->request_type = buffer->ioarcb.request_type;
3844	ioarcb->request_flags0 = buffer->ioarcb.request_flags0;
3845	ioarcb->request_flags1 = buffer->ioarcb.request_flags1;
3846	memcpy(ioarcb->cdb, buffer->ioarcb.cdb, PMCRAID_MAX_CDB_LEN);
3847
3848	if (buffer->ioarcb.add_cmd_param_length) {
3849		ioarcb->add_cmd_param_length =
3850			buffer->ioarcb.add_cmd_param_length;
3851		ioarcb->add_cmd_param_offset =
3852			buffer->ioarcb.add_cmd_param_offset;
3853		memcpy(ioarcb->add_data.u.add_cmd_params,
3854			buffer->ioarcb.add_data.u.add_cmd_params,
3855			buffer->ioarcb.add_cmd_param_length);
3856	}
3857
3858	/* set hrrq number where the IOA should respond to. Note that all cmds
3859	 * generated internally uses hrrq_id 0, exception to this is the cmd
3860	 * block of scsi_cmd which is re-used (e.g. cancel/abort), which uses
3861	 * hrrq_id assigned here in queuecommand
3862	 */
3863	ioarcb->hrrq_id = atomic_add_return(1, &(pinstance->last_message_id)) %
3864			  pinstance->num_hrrq;
3865
3866	if (request_size) {
3867		rc = pmcraid_build_passthrough_ioadls(cmd,
3868						      request_size,
3869						      direction);
3870		if (rc) {
3871			pmcraid_err("couldn't build passthrough ioadls\n");
3872			goto out_free_buffer;
3873		}
3874	} else if (request_size < 0) {
3875		rc = -EINVAL;
3876		goto out_free_buffer;
3877	}
3878
3879	/* If data is being written into the device, copy the data from user
3880	 * buffers
3881	 */
3882	if (direction == DMA_TO_DEVICE && request_size > 0) {
3883		rc = pmcraid_copy_sglist(cmd->sglist,
3884					 request_buffer,
3885					 request_size,
3886					 direction);
3887		if (rc) {
3888			pmcraid_err("failed to copy user buffer\n");
3889			goto out_free_sglist;
3890		}
3891	}
3892
3893	/* passthrough ioctl is a blocking command so, put the user to sleep
3894	 * until timeout. Note that a timeout value of 0 means, do timeout.
3895	 */
3896	cmd->cmd_done = pmcraid_internal_done;
3897	init_completion(&cmd->wait_for_completion);
3898	cmd->completion_req = 1;
3899
3900	pmcraid_info("command(%d) (CDB[0] = %x) for %x\n",
3901		     le32_to_cpu(cmd->ioa_cb->ioarcb.response_handle) >> 2,
3902		     cmd->ioa_cb->ioarcb.cdb[0],
3903		     le32_to_cpu(cmd->ioa_cb->ioarcb.resource_handle));
3904
3905	spin_lock_irqsave(pinstance->host->host_lock, lock_flags);
3906	_pmcraid_fire_command(cmd);
3907	spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
3908
3909	/* NOTE ! Remove the below line once abort_task is implemented
3910	 * in firmware. This line disables ioctl command timeout handling logic
3911	 * similar to IO command timeout handling, making ioctl commands to wait
3912	 * until the command completion regardless of timeout value specified in
3913	 * ioarcb
3914	 */
3915	buffer->ioarcb.cmd_timeout = 0;
3916
3917	/* If command timeout is specified put caller to wait till that time,
3918	 * otherwise it would be blocking wait. If command gets timed out, it
3919	 * will be aborted.
3920	 */
3921	if (buffer->ioarcb.cmd_timeout == 0) {
3922		wait_for_completion(&cmd->wait_for_completion);
3923	} else if (!wait_for_completion_timeout(
3924			&cmd->wait_for_completion,
3925			msecs_to_jiffies(buffer->ioarcb.cmd_timeout * 1000))) {
3926
3927		pmcraid_info("aborting cmd %d (CDB[0] = %x) due to timeout\n",
3928			le32_to_cpu(cmd->ioa_cb->ioarcb.response_handle >> 2),
3929			cmd->ioa_cb->ioarcb.cdb[0]);
3930
3931		spin_lock_irqsave(pinstance->host->host_lock, lock_flags);
3932		cancel_cmd = pmcraid_abort_cmd(cmd);
3933		spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
3934
3935		if (cancel_cmd) {
3936			wait_for_completion(&cancel_cmd->wait_for_completion);
3937			ioasc = cancel_cmd->ioa_cb->ioasa.ioasc;
3938			pmcraid_return_cmd(cancel_cmd);
3939
3940			/* if abort task couldn't find the command i.e it got
3941			 * completed prior to aborting, return good completion.
3942			 * if command got aborted successfully or there was IOA
3943			 * reset due to abort task itself getting timedout then
3944			 * return -ETIMEDOUT
3945			 */
3946			if (ioasc == PMCRAID_IOASC_IOA_WAS_RESET ||
3947			    PMCRAID_IOASC_SENSE_KEY(ioasc) == 0x00) {
3948				if (ioasc != PMCRAID_IOASC_GC_IOARCB_NOTFOUND)
3949					rc = -ETIMEDOUT;
3950				goto out_handle_response;
3951			}
3952		}
3953
3954		/* no command block for abort task or abort task failed to abort
3955		 * the IOARCB, then wait for 150 more seconds and initiate reset
3956		 * sequence after timeout
3957		 */
3958		if (!wait_for_completion_timeout(
3959			&cmd->wait_for_completion,
3960			msecs_to_jiffies(150 * 1000))) {
3961			pmcraid_reset_bringup(cmd->drv_inst);
3962			rc = -ETIMEDOUT;
3963		}
3964	}
3965
3966out_handle_response:
3967	/* copy entire IOASA buffer and return IOCTL success.
3968	 * If copying IOASA to user-buffer fails, return
3969	 * EFAULT
3970	 */
3971	if (copy_to_user(ioasa, &cmd->ioa_cb->ioasa,
3972		sizeof(struct pmcraid_ioasa))) {
3973		pmcraid_err("failed to copy ioasa buffer to user\n");
3974		rc = -EFAULT;
3975	}
3976
3977	/* If the data transfer was from device, copy the data onto user
3978	 * buffers
3979	 */
3980	else if (direction == DMA_FROM_DEVICE && request_size > 0) {
3981		rc = pmcraid_copy_sglist(cmd->sglist,
3982					 request_buffer,
3983					 request_size,
3984					 direction);
3985		if (rc) {
3986			pmcraid_err("failed to copy user buffer\n");
3987			rc = -EFAULT;
3988		}
3989	}
3990
3991out_free_sglist:
3992	pmcraid_release_passthrough_ioadls(cmd, request_size, direction);
3993	pmcraid_return_cmd(cmd);
3994
3995out_free_buffer:
3996	kfree(buffer);
3997
3998	return rc;
3999}
4000
4001
4002
4003
4004/**
4005 * pmcraid_ioctl_driver - ioctl handler for commands handled by driver itself
4006 *
4007 * @pinstance: pointer to adapter instance structure
4008 * @cmd: ioctl command passed in
4009 * @buflen: length of user_buffer
4010 * @user_buffer: user buffer pointer
4011 *
4012 * Return Value
4013 *   0 in case of success, otherwise appropriate error code
4014 */
4015static long pmcraid_ioctl_driver(
4016	struct pmcraid_instance *pinstance,
4017	unsigned int cmd,
4018	unsigned int buflen,
4019	void __user *user_buffer
4020)
4021{
4022	int rc = -ENOSYS;
4023
4024	if (!access_ok(VERIFY_READ, user_buffer, _IOC_SIZE(cmd))) {
4025		pmcraid_err("ioctl_driver: access fault in request buffer\n");
4026		return -EFAULT;
4027	}
4028
4029	switch (cmd) {
4030	case PMCRAID_IOCTL_RESET_ADAPTER:
4031		pmcraid_reset_bringup(pinstance);
4032		rc = 0;
4033		break;
4034
4035	default:
4036		break;
4037	}
4038
4039	return rc;
4040}
4041
4042/**
4043 * pmcraid_check_ioctl_buffer - check for proper access to user buffer
4044 *
4045 * @cmd: ioctl command
4046 * @arg: user buffer
4047 * @hdr: pointer to kernel memory for pmcraid_ioctl_header
4048 *
4049 * Return Value
4050 *	negetive error code if there are access issues, otherwise zero.
4051 *	Upon success, returns ioctl header copied out of user buffer.
4052 */
4053
4054static int pmcraid_check_ioctl_buffer(
4055	int cmd,
4056	void __user *arg,
4057	struct pmcraid_ioctl_header *hdr
4058)
4059{
4060	int rc = 0;
4061	int access = VERIFY_READ;
4062
4063	if (copy_from_user(hdr, arg, sizeof(struct pmcraid_ioctl_header))) {
4064		pmcraid_err("couldn't copy ioctl header from user buffer\n");
4065		return -EFAULT;
4066	}
4067
4068	/* check for valid driver signature */
4069	rc = memcmp(hdr->signature,
4070		    PMCRAID_IOCTL_SIGNATURE,
4071		    sizeof(hdr->signature));
4072	if (rc) {
4073		pmcraid_err("signature verification failed\n");
4074		return -EINVAL;
4075	}
4076
4077	/* check for appropriate buffer access */
4078	if ((_IOC_DIR(cmd) & _IOC_READ) == _IOC_READ)
4079		access = VERIFY_WRITE;
4080
4081	rc = access_ok(access,
4082		       (arg + sizeof(struct pmcraid_ioctl_header)),
4083		       hdr->buffer_length);
4084	if (!rc) {
4085		pmcraid_err("access failed for user buffer of size %d\n",
4086			     hdr->buffer_length);
4087		return -EFAULT;
4088	}
4089
4090	return 0;
4091}
4092
4093/**
4094 *  pmcraid_ioctl - char node ioctl entry point
4095 */
4096static long pmcraid_chr_ioctl(
4097	struct file *filep,
4098	unsigned int cmd,
4099	unsigned long arg
4100)
4101{
4102	struct pmcraid_instance *pinstance = NULL;
4103	struct pmcraid_ioctl_header *hdr = NULL;
 
4104	int retval = -ENOTTY;
4105
4106	hdr = kmalloc(GFP_KERNEL, sizeof(struct pmcraid_ioctl_header));
4107
4108	if (!hdr) {
4109		pmcraid_err("faile to allocate memory for ioctl header\n");
4110		return -ENOMEM;
4111	}
4112
4113	retval = pmcraid_check_ioctl_buffer(cmd, (void *)arg, hdr);
4114
4115	if (retval) {
4116		pmcraid_info("chr_ioctl: header check failed\n");
4117		kfree(hdr);
4118		return retval;
4119	}
4120
4121	pinstance = filep->private_data;
4122
4123	if (!pinstance) {
4124		pmcraid_info("adapter instance is not found\n");
4125		kfree(hdr);
4126		return -ENOTTY;
4127	}
4128
4129	switch (_IOC_TYPE(cmd)) {
4130
4131	case PMCRAID_PASSTHROUGH_IOCTL:
4132		/* If ioctl code is to download microcode, we need to block
4133		 * mid-layer requests.
4134		 */
4135		if (cmd == PMCRAID_IOCTL_DOWNLOAD_MICROCODE)
4136			scsi_block_requests(pinstance->host);
4137
4138		retval = pmcraid_ioctl_passthrough(pinstance,
4139						   cmd,
4140						   hdr->buffer_length,
4141						   arg);
4142
4143		if (cmd == PMCRAID_IOCTL_DOWNLOAD_MICROCODE)
4144			scsi_unblock_requests(pinstance->host);
4145		break;
4146
4147	case PMCRAID_DRIVER_IOCTL:
4148		arg += sizeof(struct pmcraid_ioctl_header);
4149		retval = pmcraid_ioctl_driver(pinstance,
4150					      cmd,
4151					      hdr->buffer_length,
4152					      (void __user *)arg);
4153		break;
4154
4155	default:
4156		retval = -ENOTTY;
4157		break;
4158	}
4159
4160	kfree(hdr);
4161
4162	return retval;
4163}
4164
4165/**
4166 * File operations structure for management interface
4167 */
4168static const struct file_operations pmcraid_fops = {
4169	.owner = THIS_MODULE,
4170	.open = pmcraid_chr_open,
4171	.release = pmcraid_chr_release,
4172	.fasync = pmcraid_chr_fasync,
4173	.unlocked_ioctl = pmcraid_chr_ioctl,
4174#ifdef CONFIG_COMPAT
4175	.compat_ioctl = pmcraid_chr_ioctl,
4176#endif
4177	.llseek = noop_llseek,
4178};
4179
4180
4181
4182
4183/**
4184 * pmcraid_show_log_level - Display adapter's error logging level
4185 * @dev: class device struct
 
4186 * @buf: buffer
4187 *
4188 * Return value:
4189 *  number of bytes printed to buffer
4190 */
4191static ssize_t pmcraid_show_log_level(
4192	struct device *dev,
4193	struct device_attribute *attr,
4194	char *buf)
4195{
4196	struct Scsi_Host *shost = class_to_shost(dev);
4197	struct pmcraid_instance *pinstance =
4198		(struct pmcraid_instance *)shost->hostdata;
4199	return snprintf(buf, PAGE_SIZE, "%d\n", pinstance->current_log_level);
4200}
4201
4202/**
4203 * pmcraid_store_log_level - Change the adapter's error logging level
4204 * @dev: class device struct
 
4205 * @buf: buffer
4206 * @count: not used
4207 *
4208 * Return value:
4209 *  number of bytes printed to buffer
4210 */
4211static ssize_t pmcraid_store_log_level(
4212	struct device *dev,
4213	struct device_attribute *attr,
4214	const char *buf,
4215	size_t count
4216)
4217{
4218	struct Scsi_Host *shost;
4219	struct pmcraid_instance *pinstance;
4220	unsigned long val;
4221
4222	if (strict_strtoul(buf, 10, &val))
4223		return -EINVAL;
4224	/* log-level should be from 0 to 2 */
4225	if (val > 2)
4226		return -EINVAL;
4227
4228	shost = class_to_shost(dev);
4229	pinstance = (struct pmcraid_instance *)shost->hostdata;
4230	pinstance->current_log_level = val;
4231
4232	return strlen(buf);
4233}
4234
4235static struct device_attribute pmcraid_log_level_attr = {
4236	.attr = {
4237		 .name = "log_level",
4238		 .mode = S_IRUGO | S_IWUSR,
4239		 },
4240	.show = pmcraid_show_log_level,
4241	.store = pmcraid_store_log_level,
4242};
4243
4244/**
4245 * pmcraid_show_drv_version - Display driver version
4246 * @dev: class device struct
 
4247 * @buf: buffer
4248 *
4249 * Return value:
4250 *  number of bytes printed to buffer
4251 */
4252static ssize_t pmcraid_show_drv_version(
4253	struct device *dev,
4254	struct device_attribute *attr,
4255	char *buf
4256)
4257{
4258	return snprintf(buf, PAGE_SIZE, "version: %s\n",
4259			PMCRAID_DRIVER_VERSION);
4260}
4261
4262static struct device_attribute pmcraid_driver_version_attr = {
4263	.attr = {
4264		 .name = "drv_version",
4265		 .mode = S_IRUGO,
4266		 },
4267	.show = pmcraid_show_drv_version,
4268};
4269
4270/**
4271 * pmcraid_show_io_adapter_id - Display driver assigned adapter id
4272 * @dev: class device struct
 
4273 * @buf: buffer
4274 *
4275 * Return value:
4276 *  number of bytes printed to buffer
4277 */
4278static ssize_t pmcraid_show_adapter_id(
4279	struct device *dev,
4280	struct device_attribute *attr,
4281	char *buf
4282)
4283{
4284	struct Scsi_Host *shost = class_to_shost(dev);
4285	struct pmcraid_instance *pinstance =
4286		(struct pmcraid_instance *)shost->hostdata;
4287	u32 adapter_id = (pinstance->pdev->bus->number << 8) |
4288		pinstance->pdev->devfn;
4289	u32 aen_group = pmcraid_event_family.id;
4290
4291	return snprintf(buf, PAGE_SIZE,
4292			"adapter id: %d\nminor: %d\naen group: %d\n",
4293			adapter_id, MINOR(pinstance->cdev.dev), aen_group);
4294}
4295
4296static struct device_attribute pmcraid_adapter_id_attr = {
4297	.attr = {
4298		 .name = "adapter_id",
4299		 .mode = S_IRUGO | S_IWUSR,
4300		 },
4301	.show = pmcraid_show_adapter_id,
4302};
4303
4304static struct device_attribute *pmcraid_host_attrs[] = {
4305	&pmcraid_log_level_attr,
4306	&pmcraid_driver_version_attr,
4307	&pmcraid_adapter_id_attr,
4308	NULL,
4309};
4310
 
4311
4312/* host template structure for pmcraid driver */
4313static struct scsi_host_template pmcraid_host_template = {
4314	.module = THIS_MODULE,
4315	.name = PMCRAID_DRIVER_NAME,
4316	.queuecommand = pmcraid_queuecommand,
4317	.eh_abort_handler = pmcraid_eh_abort_handler,
4318	.eh_bus_reset_handler = pmcraid_eh_bus_reset_handler,
4319	.eh_target_reset_handler = pmcraid_eh_target_reset_handler,
4320	.eh_device_reset_handler = pmcraid_eh_device_reset_handler,
4321	.eh_host_reset_handler = pmcraid_eh_host_reset_handler,
4322
4323	.slave_alloc = pmcraid_slave_alloc,
4324	.slave_configure = pmcraid_slave_configure,
4325	.slave_destroy = pmcraid_slave_destroy,
4326	.change_queue_depth = pmcraid_change_queue_depth,
4327	.change_queue_type  = pmcraid_change_queue_type,
4328	.can_queue = PMCRAID_MAX_IO_CMD,
4329	.this_id = -1,
4330	.sg_tablesize = PMCRAID_MAX_IOADLS,
4331	.max_sectors = PMCRAID_IOA_MAX_SECTORS,
 
4332	.cmd_per_lun = PMCRAID_MAX_CMD_PER_LUN,
4333	.use_clustering = ENABLE_CLUSTERING,
4334	.shost_attrs = pmcraid_host_attrs,
4335	.proc_name = PMCRAID_DRIVER_NAME
4336};
4337
4338/*
4339 * pmcraid_isr_msix - implements MSI-X interrupt handling routine
4340 * @irq: interrupt vector number
4341 * @dev_id: pointer hrrq_vector
4342 *
4343 * Return Value
4344 *	 IRQ_HANDLED if interrupt is handled or IRQ_NONE if ignored
4345 */
4346
4347static irqreturn_t pmcraid_isr_msix(int irq, void *dev_id)
4348{
4349	struct pmcraid_isr_param *hrrq_vector;
4350	struct pmcraid_instance *pinstance;
4351	unsigned long lock_flags;
4352	u32 intrs_val;
4353	int hrrq_id;
4354
4355	hrrq_vector = (struct pmcraid_isr_param *)dev_id;
4356	hrrq_id = hrrq_vector->hrrq_id;
4357	pinstance = hrrq_vector->drv_inst;
4358
4359	if (!hrrq_id) {
4360		/* Read the interrupt */
4361		intrs_val = pmcraid_read_interrupts(pinstance);
4362		if (intrs_val &&
4363			((ioread32(pinstance->int_regs.host_ioa_interrupt_reg)
4364			& DOORBELL_INTR_MSIX_CLR) == 0)) {
4365			/* Any error interrupts including unit_check,
4366			 * initiate IOA reset.In case of unit check indicate
4367			 * to reset_sequence that IOA unit checked and prepare
4368			 * for a dump during reset sequence
4369			 */
4370			if (intrs_val & PMCRAID_ERROR_INTERRUPTS) {
4371				if (intrs_val & INTRS_IOA_UNIT_CHECK)
4372					pinstance->ioa_unit_check = 1;
4373
4374				pmcraid_err("ISR: error interrupts: %x \
4375					initiating reset\n", intrs_val);
4376				spin_lock_irqsave(pinstance->host->host_lock,
4377					lock_flags);
4378				pmcraid_initiate_reset(pinstance);
4379				spin_unlock_irqrestore(
4380					pinstance->host->host_lock,
4381					lock_flags);
4382			}
4383			/* If interrupt was as part of the ioa initialization,
4384			 * clear it. Delete the timer and wakeup the
4385			 * reset engine to proceed with reset sequence
4386			 */
4387			if (intrs_val & INTRS_TRANSITION_TO_OPERATIONAL)
4388				pmcraid_clr_trans_op(pinstance);
4389
4390			/* Clear the interrupt register by writing
4391			 * to host to ioa doorbell. Once done
4392			 * FW will clear the interrupt.
4393			 */
4394			iowrite32(DOORBELL_INTR_MSIX_CLR,
4395				pinstance->int_regs.host_ioa_interrupt_reg);
4396			ioread32(pinstance->int_regs.host_ioa_interrupt_reg);
4397
4398
4399		}
4400	}
4401
4402	tasklet_schedule(&(pinstance->isr_tasklet[hrrq_id]));
4403
4404	return IRQ_HANDLED;
4405}
4406
4407/**
4408 * pmcraid_isr  - implements legacy interrupt handling routine
4409 *
4410 * @irq: interrupt vector number
4411 * @dev_id: pointer hrrq_vector
4412 *
4413 * Return Value
4414 *	 IRQ_HANDLED if interrupt is handled or IRQ_NONE if ignored
4415 */
4416static irqreturn_t pmcraid_isr(int irq, void *dev_id)
4417{
4418	struct pmcraid_isr_param *hrrq_vector;
4419	struct pmcraid_instance *pinstance;
4420	u32 intrs;
4421	unsigned long lock_flags;
4422	int hrrq_id = 0;
4423
4424	/* In case of legacy interrupt mode where interrupts are shared across
4425	 * isrs, it may be possible that the current interrupt is not from IOA
4426	 */
4427	if (!dev_id) {
4428		printk(KERN_INFO "%s(): NULL host pointer\n", __func__);
4429		return IRQ_NONE;
4430	}
4431	hrrq_vector = (struct pmcraid_isr_param *)dev_id;
4432	pinstance = hrrq_vector->drv_inst;
4433
4434	intrs = pmcraid_read_interrupts(pinstance);
4435
4436	if (unlikely((intrs & PMCRAID_PCI_INTERRUPTS) == 0))
4437		return IRQ_NONE;
4438
4439	/* Any error interrupts including unit_check, initiate IOA reset.
4440	 * In case of unit check indicate to reset_sequence that IOA unit
4441	 * checked and prepare for a dump during reset sequence
4442	 */
4443	if (intrs & PMCRAID_ERROR_INTERRUPTS) {
4444
4445		if (intrs & INTRS_IOA_UNIT_CHECK)
4446			pinstance->ioa_unit_check = 1;
4447
4448		iowrite32(intrs,
4449			  pinstance->int_regs.ioa_host_interrupt_clr_reg);
4450		pmcraid_err("ISR: error interrupts: %x initiating reset\n",
4451			    intrs);
4452		intrs = ioread32(
4453				pinstance->int_regs.ioa_host_interrupt_clr_reg);
4454		spin_lock_irqsave(pinstance->host->host_lock, lock_flags);
4455		pmcraid_initiate_reset(pinstance);
4456		spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
4457	} else {
4458		/* If interrupt was as part of the ioa initialization,
4459		 * clear. Delete the timer and wakeup the
4460		 * reset engine to proceed with reset sequence
4461		 */
4462		if (intrs & INTRS_TRANSITION_TO_OPERATIONAL) {
4463			pmcraid_clr_trans_op(pinstance);
4464		} else {
4465			iowrite32(intrs,
4466				pinstance->int_regs.ioa_host_interrupt_clr_reg);
4467			ioread32(
4468				pinstance->int_regs.ioa_host_interrupt_clr_reg);
4469
4470			tasklet_schedule(
4471					&(pinstance->isr_tasklet[hrrq_id]));
4472		}
4473	}
4474
4475	return IRQ_HANDLED;
4476}
4477
4478
4479/**
4480 * pmcraid_worker_function -  worker thread function
4481 *
4482 * @workp: pointer to struct work queue
4483 *
4484 * Return Value
4485 *	 None
4486 */
4487
4488static void pmcraid_worker_function(struct work_struct *workp)
4489{
4490	struct pmcraid_instance *pinstance;
4491	struct pmcraid_resource_entry *res;
4492	struct pmcraid_resource_entry *temp;
4493	struct scsi_device *sdev;
4494	unsigned long lock_flags;
4495	unsigned long host_lock_flags;
4496	u16 fw_version;
4497	u8 bus, target, lun;
4498
4499	pinstance = container_of(workp, struct pmcraid_instance, worker_q);
4500	/* add resources only after host is added into system */
4501	if (!atomic_read(&pinstance->expose_resources))
4502		return;
4503
4504	fw_version = be16_to_cpu(pinstance->inq_data->fw_version);
4505
4506	spin_lock_irqsave(&pinstance->resource_lock, lock_flags);
4507	list_for_each_entry_safe(res, temp, &pinstance->used_res_q, queue) {
4508
4509		if (res->change_detected == RES_CHANGE_DEL && res->scsi_dev) {
4510			sdev = res->scsi_dev;
4511
4512			/* host_lock must be held before calling
4513			 * scsi_device_get
4514			 */
4515			spin_lock_irqsave(pinstance->host->host_lock,
4516					  host_lock_flags);
4517			if (!scsi_device_get(sdev)) {
4518				spin_unlock_irqrestore(
4519						pinstance->host->host_lock,
4520						host_lock_flags);
4521				pmcraid_info("deleting %x from midlayer\n",
4522					     res->cfg_entry.resource_address);
4523				list_move_tail(&res->queue,
4524						&pinstance->free_res_q);
4525				spin_unlock_irqrestore(
4526					&pinstance->resource_lock,
4527					lock_flags);
4528				scsi_remove_device(sdev);
4529				scsi_device_put(sdev);
4530				spin_lock_irqsave(&pinstance->resource_lock,
4531						   lock_flags);
4532				res->change_detected = 0;
4533			} else {
4534				spin_unlock_irqrestore(
4535						pinstance->host->host_lock,
4536						host_lock_flags);
4537			}
4538		}
4539	}
4540
4541	list_for_each_entry(res, &pinstance->used_res_q, queue) {
4542
4543		if (res->change_detected == RES_CHANGE_ADD) {
4544
4545			if (!pmcraid_expose_resource(fw_version,
4546						     &res->cfg_entry))
4547				continue;
4548
4549			if (RES_IS_VSET(res->cfg_entry)) {
4550				bus = PMCRAID_VSET_BUS_ID;
4551				if (fw_version <= PMCRAID_FW_VERSION_1)
4552					target = res->cfg_entry.unique_flags1;
4553				else
4554					target = res->cfg_entry.array_id & 0xFF;
4555				lun = PMCRAID_VSET_LUN_ID;
4556			} else {
4557				bus = PMCRAID_PHYS_BUS_ID;
4558				target =
4559				     RES_TARGET(
4560					res->cfg_entry.resource_address);
4561				lun = RES_LUN(res->cfg_entry.resource_address);
4562			}
4563
4564			res->change_detected = 0;
4565			spin_unlock_irqrestore(&pinstance->resource_lock,
4566						lock_flags);
4567			scsi_add_device(pinstance->host, bus, target, lun);
4568			spin_lock_irqsave(&pinstance->resource_lock,
4569					   lock_flags);
4570		}
4571	}
4572
4573	spin_unlock_irqrestore(&pinstance->resource_lock, lock_flags);
4574}
4575
4576/**
4577 * pmcraid_tasklet_function - Tasklet function
4578 *
4579 * @instance: pointer to msix param structure
4580 *
4581 * Return Value
4582 *	None
4583 */
4584static void pmcraid_tasklet_function(unsigned long instance)
4585{
4586	struct pmcraid_isr_param *hrrq_vector;
4587	struct pmcraid_instance *pinstance;
4588	unsigned long hrrq_lock_flags;
4589	unsigned long pending_lock_flags;
4590	unsigned long host_lock_flags;
4591	spinlock_t *lockp; /* hrrq buffer lock */
4592	int id;
4593	__le32 resp;
4594
4595	hrrq_vector = (struct pmcraid_isr_param *)instance;
4596	pinstance = hrrq_vector->drv_inst;
4597	id = hrrq_vector->hrrq_id;
4598	lockp = &(pinstance->hrrq_lock[id]);
4599
4600	/* loop through each of the commands responded by IOA. Each HRRQ buf is
4601	 * protected by its own lock. Traversals must be done within this lock
4602	 * as there may be multiple tasklets running on multiple CPUs. Note
4603	 * that the lock is held just for picking up the response handle and
4604	 * manipulating hrrq_curr/toggle_bit values.
4605	 */
4606	spin_lock_irqsave(lockp, hrrq_lock_flags);
4607
4608	resp = le32_to_cpu(*(pinstance->hrrq_curr[id]));
4609
4610	while ((resp & HRRQ_TOGGLE_BIT) ==
4611		pinstance->host_toggle_bit[id]) {
4612
4613		int cmd_index = resp >> 2;
4614		struct pmcraid_cmd *cmd = NULL;
4615
4616		if (pinstance->hrrq_curr[id] < pinstance->hrrq_end[id]) {
4617			pinstance->hrrq_curr[id]++;
4618		} else {
4619			pinstance->hrrq_curr[id] = pinstance->hrrq_start[id];
4620			pinstance->host_toggle_bit[id] ^= 1u;
4621		}
4622
4623		if (cmd_index >= PMCRAID_MAX_CMD) {
4624			/* In case of invalid response handle, log message */
4625			pmcraid_err("Invalid response handle %d\n", cmd_index);
4626			resp = le32_to_cpu(*(pinstance->hrrq_curr[id]));
4627			continue;
4628		}
4629
4630		cmd = pinstance->cmd_list[cmd_index];
4631		spin_unlock_irqrestore(lockp, hrrq_lock_flags);
4632
4633		spin_lock_irqsave(&pinstance->pending_pool_lock,
4634				   pending_lock_flags);
4635		list_del(&cmd->free_list);
4636		spin_unlock_irqrestore(&pinstance->pending_pool_lock,
4637					pending_lock_flags);
4638		del_timer(&cmd->timer);
4639		atomic_dec(&pinstance->outstanding_cmds);
4640
4641		if (cmd->cmd_done == pmcraid_ioa_reset) {
4642			spin_lock_irqsave(pinstance->host->host_lock,
4643					  host_lock_flags);
4644			cmd->cmd_done(cmd);
4645			spin_unlock_irqrestore(pinstance->host->host_lock,
4646					       host_lock_flags);
4647		} else if (cmd->cmd_done != NULL) {
4648			cmd->cmd_done(cmd);
4649		}
4650		/* loop over until we are done with all responses */
4651		spin_lock_irqsave(lockp, hrrq_lock_flags);
4652		resp = le32_to_cpu(*(pinstance->hrrq_curr[id]));
4653	}
4654
4655	spin_unlock_irqrestore(lockp, hrrq_lock_flags);
4656}
4657
4658/**
4659 * pmcraid_unregister_interrupt_handler - de-register interrupts handlers
4660 * @pinstance: pointer to adapter instance structure
4661 *
4662 * This routine un-registers registered interrupt handler and
4663 * also frees irqs/vectors.
4664 *
4665 * Retun Value
4666 *	None
4667 */
4668static
4669void pmcraid_unregister_interrupt_handler(struct pmcraid_instance *pinstance)
4670{
 
4671	int i;
4672
4673	for (i = 0; i < pinstance->num_hrrq; i++)
4674		free_irq(pinstance->hrrq_vector[i].vector,
4675			 &(pinstance->hrrq_vector[i]));
4676
4677	if (pinstance->interrupt_mode) {
4678		pci_disable_msix(pinstance->pdev);
4679		pinstance->interrupt_mode = 0;
4680	}
4681}
4682
4683/**
4684 * pmcraid_register_interrupt_handler - registers interrupt handler
4685 * @pinstance: pointer to per-adapter instance structure
4686 *
4687 * Return Value
4688 *	0 on success, non-zero error code otherwise.
4689 */
4690static int
4691pmcraid_register_interrupt_handler(struct pmcraid_instance *pinstance)
4692{
4693	int rc;
4694	struct pci_dev *pdev = pinstance->pdev;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
4695
4696	if ((pmcraid_enable_msix) &&
4697		(pci_find_capability(pdev, PCI_CAP_ID_MSIX))) {
4698		int num_hrrq = PMCRAID_NUM_MSIX_VECTORS;
4699		struct msix_entry entries[PMCRAID_NUM_MSIX_VECTORS];
4700		int i;
4701		for (i = 0; i < PMCRAID_NUM_MSIX_VECTORS; i++)
4702			entries[i].entry = i;
4703
4704		rc = pci_enable_msix(pdev, entries, num_hrrq);
4705		if (rc < 0)
4706			goto pmcraid_isr_legacy;
4707
4708		/* Check how many MSIX vectors are allocated and register
4709		 * msi-x handlers for each of them giving appropriate buffer
4710		 */
4711		if (rc > 0) {
4712			num_hrrq = rc;
4713			if (pci_enable_msix(pdev, entries, num_hrrq))
4714				goto pmcraid_isr_legacy;
4715		}
4716
4717		for (i = 0; i < num_hrrq; i++) {
4718			pinstance->hrrq_vector[i].hrrq_id = i;
4719			pinstance->hrrq_vector[i].drv_inst = pinstance;
4720			pinstance->hrrq_vector[i].vector = entries[i].vector;
4721			rc = request_irq(pinstance->hrrq_vector[i].vector,
4722					pmcraid_isr_msix, 0,
4723					PMCRAID_DRIVER_NAME,
4724					&(pinstance->hrrq_vector[i]));
4725
4726			if (rc) {
4727				int j;
4728				for (j = 0; j < i; j++)
4729					free_irq(entries[j].vector,
4730						 &(pinstance->hrrq_vector[j]));
4731				pci_disable_msix(pdev);
4732				goto pmcraid_isr_legacy;
4733			}
4734		}
4735
4736		pinstance->num_hrrq = num_hrrq;
 
4737		pinstance->interrupt_mode = 1;
4738		iowrite32(DOORBELL_INTR_MODE_MSIX,
4739			  pinstance->int_regs.host_ioa_interrupt_reg);
4740		ioread32(pinstance->int_regs.host_ioa_interrupt_reg);
4741		goto pmcraid_isr_out;
4742	}
4743
4744pmcraid_isr_legacy:
4745	/* If MSI-X registration failed fallback to legacy mode, where
4746	 * only one hrrq entry will be used
4747	 */
4748	pinstance->hrrq_vector[0].hrrq_id = 0;
4749	pinstance->hrrq_vector[0].drv_inst = pinstance;
4750	pinstance->hrrq_vector[0].vector = pdev->irq;
4751	pinstance->num_hrrq = 1;
4752	rc = 0;
4753
4754	rc = request_irq(pdev->irq, pmcraid_isr, IRQF_SHARED,
4755			 PMCRAID_DRIVER_NAME, &pinstance->hrrq_vector[0]);
4756pmcraid_isr_out:
4757	return rc;
4758}
4759
4760/**
4761 * pmcraid_release_cmd_blocks - release buufers allocated for command blocks
4762 * @pinstance: per adapter instance structure pointer
4763 * @max_index: number of buffer blocks to release
4764 *
4765 * Return Value
4766 *  None
4767 */
4768static void
4769pmcraid_release_cmd_blocks(struct pmcraid_instance *pinstance, int max_index)
4770{
4771	int i;
4772	for (i = 0; i < max_index; i++) {
4773		kmem_cache_free(pinstance->cmd_cachep, pinstance->cmd_list[i]);
4774		pinstance->cmd_list[i] = NULL;
4775	}
4776	kmem_cache_destroy(pinstance->cmd_cachep);
4777	pinstance->cmd_cachep = NULL;
4778}
4779
4780/**
4781 * pmcraid_release_control_blocks - releases buffers alloced for control blocks
4782 * @pinstance: pointer to per adapter instance structure
4783 * @max_index: number of buffers (from 0 onwards) to release
4784 *
4785 * This function assumes that the command blocks for which control blocks are
4786 * linked are not released.
4787 *
4788 * Return Value
4789 *	 None
4790 */
4791static void
4792pmcraid_release_control_blocks(
4793	struct pmcraid_instance *pinstance,
4794	int max_index
4795)
4796{
4797	int i;
4798
4799	if (pinstance->control_pool == NULL)
4800		return;
4801
4802	for (i = 0; i < max_index; i++) {
4803		pci_pool_free(pinstance->control_pool,
4804			      pinstance->cmd_list[i]->ioa_cb,
4805			      pinstance->cmd_list[i]->ioa_cb_bus_addr);
4806		pinstance->cmd_list[i]->ioa_cb = NULL;
4807		pinstance->cmd_list[i]->ioa_cb_bus_addr = 0;
4808	}
4809	pci_pool_destroy(pinstance->control_pool);
4810	pinstance->control_pool = NULL;
4811}
4812
4813/**
4814 * pmcraid_allocate_cmd_blocks - allocate memory for cmd block structures
4815 * @pinstance - pointer to per adapter instance structure
4816 *
4817 * Allocates memory for command blocks using kernel slab allocator.
4818 *
4819 * Return Value
4820 *	0 in case of success; -ENOMEM in case of failure
4821 */
4822static int __devinit
4823pmcraid_allocate_cmd_blocks(struct pmcraid_instance *pinstance)
4824{
4825	int i;
4826
4827	sprintf(pinstance->cmd_pool_name, "pmcraid_cmd_pool_%d",
4828		pinstance->host->unique_id);
4829
4830
4831	pinstance->cmd_cachep = kmem_cache_create(
4832					pinstance->cmd_pool_name,
4833					sizeof(struct pmcraid_cmd), 0,
4834					SLAB_HWCACHE_ALIGN, NULL);
4835	if (!pinstance->cmd_cachep)
4836		return -ENOMEM;
4837
4838	for (i = 0; i < PMCRAID_MAX_CMD; i++) {
4839		pinstance->cmd_list[i] =
4840			kmem_cache_alloc(pinstance->cmd_cachep, GFP_KERNEL);
4841		if (!pinstance->cmd_list[i]) {
4842			pmcraid_release_cmd_blocks(pinstance, i);
4843			return -ENOMEM;
4844		}
4845	}
4846	return 0;
4847}
4848
4849/**
4850 * pmcraid_allocate_control_blocks - allocates memory control blocks
4851 * @pinstance : pointer to per adapter instance structure
4852 *
4853 * This function allocates PCI memory for DMAable buffers like IOARCB, IOADLs
4854 * and IOASAs. This is called after command blocks are already allocated.
4855 *
4856 * Return Value
4857 *  0 in case it can allocate all control blocks, otherwise -ENOMEM
4858 */
4859static int __devinit
4860pmcraid_allocate_control_blocks(struct pmcraid_instance *pinstance)
4861{
4862	int i;
4863
4864	sprintf(pinstance->ctl_pool_name, "pmcraid_control_pool_%d",
4865		pinstance->host->unique_id);
4866
4867	pinstance->control_pool =
4868		pci_pool_create(pinstance->ctl_pool_name,
4869				pinstance->pdev,
4870				sizeof(struct pmcraid_control_block),
4871				PMCRAID_IOARCB_ALIGNMENT, 0);
4872
4873	if (!pinstance->control_pool)
4874		return -ENOMEM;
4875
4876	for (i = 0; i < PMCRAID_MAX_CMD; i++) {
4877		pinstance->cmd_list[i]->ioa_cb =
4878			pci_pool_alloc(
4879				pinstance->control_pool,
4880				GFP_KERNEL,
4881				&(pinstance->cmd_list[i]->ioa_cb_bus_addr));
4882
4883		if (!pinstance->cmd_list[i]->ioa_cb) {
4884			pmcraid_release_control_blocks(pinstance, i);
4885			return -ENOMEM;
4886		}
4887		memset(pinstance->cmd_list[i]->ioa_cb, 0,
4888			sizeof(struct pmcraid_control_block));
4889	}
4890	return 0;
4891}
4892
4893/**
4894 * pmcraid_release_host_rrqs - release memory allocated for hrrq buffer(s)
4895 * @pinstance: pointer to per adapter instance structure
4896 * @maxindex: size of hrrq buffer pointer array
4897 *
4898 * Return Value
4899 *	None
4900 */
4901static void
4902pmcraid_release_host_rrqs(struct pmcraid_instance *pinstance, int maxindex)
4903{
4904	int i;
4905	for (i = 0; i < maxindex; i++) {
4906
4907		pci_free_consistent(pinstance->pdev,
 
4908				    HRRQ_ENTRY_SIZE * PMCRAID_MAX_CMD,
4909				    pinstance->hrrq_start[i],
4910				    pinstance->hrrq_start_bus_addr[i]);
4911
4912		/* reset pointers and toggle bit to zeros */
4913		pinstance->hrrq_start[i] = NULL;
4914		pinstance->hrrq_start_bus_addr[i] = 0;
4915		pinstance->host_toggle_bit[i] = 0;
4916	}
4917}
4918
4919/**
4920 * pmcraid_allocate_host_rrqs - Allocate and initialize host RRQ buffers
4921 * @pinstance: pointer to per adapter instance structure
4922 *
4923 * Return value
4924 *	0 hrrq buffers are allocated, -ENOMEM otherwise.
4925 */
4926static int __devinit
4927pmcraid_allocate_host_rrqs(struct pmcraid_instance *pinstance)
4928{
4929	int i, buffer_size;
4930
4931	buffer_size = HRRQ_ENTRY_SIZE * PMCRAID_MAX_CMD;
4932
4933	for (i = 0; i < pinstance->num_hrrq; i++) {
4934		pinstance->hrrq_start[i] =
4935			pci_alloc_consistent(
4936					pinstance->pdev,
4937					buffer_size,
4938					&(pinstance->hrrq_start_bus_addr[i]));
4939
4940		if (pinstance->hrrq_start[i] == 0) {
4941			pmcraid_err("pci_alloc failed for hrrq vector : %d\n",
4942				    i);
4943			pmcraid_release_host_rrqs(pinstance, i);
4944			return -ENOMEM;
4945		}
4946
4947		memset(pinstance->hrrq_start[i], 0, buffer_size);
4948		pinstance->hrrq_curr[i] = pinstance->hrrq_start[i];
4949		pinstance->hrrq_end[i] =
4950			pinstance->hrrq_start[i] + PMCRAID_MAX_CMD - 1;
4951		pinstance->host_toggle_bit[i] = 1;
4952		spin_lock_init(&pinstance->hrrq_lock[i]);
4953	}
4954	return 0;
4955}
4956
4957/**
4958 * pmcraid_release_hcams - release HCAM buffers
4959 *
4960 * @pinstance: pointer to per adapter instance structure
4961 *
4962 * Return value
4963 *  none
4964 */
4965static void pmcraid_release_hcams(struct pmcraid_instance *pinstance)
4966{
4967	if (pinstance->ccn.msg != NULL) {
4968		pci_free_consistent(pinstance->pdev,
4969				    PMCRAID_AEN_HDR_SIZE +
4970				    sizeof(struct pmcraid_hcam_ccn_ext),
4971				    pinstance->ccn.msg,
4972				    pinstance->ccn.baddr);
4973
4974		pinstance->ccn.msg = NULL;
4975		pinstance->ccn.hcam = NULL;
4976		pinstance->ccn.baddr = 0;
4977	}
4978
4979	if (pinstance->ldn.msg != NULL) {
4980		pci_free_consistent(pinstance->pdev,
4981				    PMCRAID_AEN_HDR_SIZE +
4982				    sizeof(struct pmcraid_hcam_ldn),
4983				    pinstance->ldn.msg,
4984				    pinstance->ldn.baddr);
4985
4986		pinstance->ldn.msg = NULL;
4987		pinstance->ldn.hcam = NULL;
4988		pinstance->ldn.baddr = 0;
4989	}
4990}
4991
4992/**
4993 * pmcraid_allocate_hcams - allocates HCAM buffers
4994 * @pinstance : pointer to per adapter instance structure
4995 *
4996 * Return Value:
4997 *   0 in case of successful allocation, non-zero otherwise
4998 */
4999static int pmcraid_allocate_hcams(struct pmcraid_instance *pinstance)
5000{
5001	pinstance->ccn.msg = pci_alloc_consistent(
5002					pinstance->pdev,
5003					PMCRAID_AEN_HDR_SIZE +
5004					sizeof(struct pmcraid_hcam_ccn_ext),
5005					&(pinstance->ccn.baddr));
5006
5007	pinstance->ldn.msg = pci_alloc_consistent(
5008					pinstance->pdev,
5009					PMCRAID_AEN_HDR_SIZE +
5010					sizeof(struct pmcraid_hcam_ldn),
5011					&(pinstance->ldn.baddr));
5012
5013	if (pinstance->ldn.msg == NULL || pinstance->ccn.msg == NULL) {
5014		pmcraid_release_hcams(pinstance);
5015	} else {
5016		pinstance->ccn.hcam =
5017			(void *)pinstance->ccn.msg + PMCRAID_AEN_HDR_SIZE;
5018		pinstance->ldn.hcam =
5019			(void *)pinstance->ldn.msg + PMCRAID_AEN_HDR_SIZE;
5020
5021		atomic_set(&pinstance->ccn.ignore, 0);
5022		atomic_set(&pinstance->ldn.ignore, 0);
5023	}
5024
5025	return (pinstance->ldn.msg == NULL) ? -ENOMEM : 0;
5026}
5027
5028/**
5029 * pmcraid_release_config_buffers - release config.table buffers
5030 * @pinstance: pointer to per adapter instance structure
5031 *
5032 * Return Value
5033 *	 none
5034 */
5035static void pmcraid_release_config_buffers(struct pmcraid_instance *pinstance)
5036{
5037	if (pinstance->cfg_table != NULL &&
5038	    pinstance->cfg_table_bus_addr != 0) {
5039		pci_free_consistent(pinstance->pdev,
5040				    sizeof(struct pmcraid_config_table),
5041				    pinstance->cfg_table,
5042				    pinstance->cfg_table_bus_addr);
5043		pinstance->cfg_table = NULL;
5044		pinstance->cfg_table_bus_addr = 0;
5045	}
5046
5047	if (pinstance->res_entries != NULL) {
5048		int i;
5049
5050		for (i = 0; i < PMCRAID_MAX_RESOURCES; i++)
5051			list_del(&pinstance->res_entries[i].queue);
5052		kfree(pinstance->res_entries);
5053		pinstance->res_entries = NULL;
5054	}
5055
5056	pmcraid_release_hcams(pinstance);
5057}
5058
5059/**
5060 * pmcraid_allocate_config_buffers - allocates DMAable memory for config table
5061 * @pinstance : pointer to per adapter instance structure
5062 *
5063 * Return Value
5064 *	0 for successful allocation, -ENOMEM for any failure
5065 */
5066static int __devinit
5067pmcraid_allocate_config_buffers(struct pmcraid_instance *pinstance)
5068{
5069	int i;
5070
5071	pinstance->res_entries =
5072			kzalloc(sizeof(struct pmcraid_resource_entry) *
5073				PMCRAID_MAX_RESOURCES, GFP_KERNEL);
 
5074
5075	if (NULL == pinstance->res_entries) {
5076		pmcraid_err("failed to allocate memory for resource table\n");
5077		return -ENOMEM;
5078	}
5079
5080	for (i = 0; i < PMCRAID_MAX_RESOURCES; i++)
5081		list_add_tail(&pinstance->res_entries[i].queue,
5082			      &pinstance->free_res_q);
5083
5084	pinstance->cfg_table =
5085		pci_alloc_consistent(pinstance->pdev,
5086				     sizeof(struct pmcraid_config_table),
5087				     &pinstance->cfg_table_bus_addr);
 
5088
5089	if (NULL == pinstance->cfg_table) {
5090		pmcraid_err("couldn't alloc DMA memory for config table\n");
5091		pmcraid_release_config_buffers(pinstance);
5092		return -ENOMEM;
5093	}
5094
5095	if (pmcraid_allocate_hcams(pinstance)) {
5096		pmcraid_err("could not alloc DMA memory for HCAMS\n");
5097		pmcraid_release_config_buffers(pinstance);
5098		return -ENOMEM;
5099	}
5100
5101	return 0;
5102}
5103
5104/**
5105 * pmcraid_init_tasklets - registers tasklets for response handling
5106 *
5107 * @pinstance: pointer adapter instance structure
5108 *
5109 * Return value
5110 *	none
5111 */
5112static void pmcraid_init_tasklets(struct pmcraid_instance *pinstance)
5113{
5114	int i;
5115	for (i = 0; i < pinstance->num_hrrq; i++)
5116		tasklet_init(&pinstance->isr_tasklet[i],
5117			     pmcraid_tasklet_function,
5118			     (unsigned long)&pinstance->hrrq_vector[i]);
5119}
5120
5121/**
5122 * pmcraid_kill_tasklets - destroys tasklets registered for response handling
5123 *
5124 * @pinstance: pointer to adapter instance structure
5125 *
5126 * Return value
5127 *	none
5128 */
5129static void pmcraid_kill_tasklets(struct pmcraid_instance *pinstance)
5130{
5131	int i;
5132	for (i = 0; i < pinstance->num_hrrq; i++)
5133		tasklet_kill(&pinstance->isr_tasklet[i]);
5134}
5135
5136/**
5137 * pmcraid_release_buffers - release per-adapter buffers allocated
5138 *
5139 * @pinstance: pointer to adapter soft state
5140 *
5141 * Return Value
5142 *	none
5143 */
5144static void pmcraid_release_buffers(struct pmcraid_instance *pinstance)
5145{
5146	pmcraid_release_config_buffers(pinstance);
5147	pmcraid_release_control_blocks(pinstance, PMCRAID_MAX_CMD);
5148	pmcraid_release_cmd_blocks(pinstance, PMCRAID_MAX_CMD);
5149	pmcraid_release_host_rrqs(pinstance, pinstance->num_hrrq);
5150
5151	if (pinstance->inq_data != NULL) {
5152		pci_free_consistent(pinstance->pdev,
5153				    sizeof(struct pmcraid_inquiry_data),
5154				    pinstance->inq_data,
5155				    pinstance->inq_data_baddr);
5156
5157		pinstance->inq_data = NULL;
5158		pinstance->inq_data_baddr = 0;
5159	}
5160
5161	if (pinstance->timestamp_data != NULL) {
5162		pci_free_consistent(pinstance->pdev,
5163				    sizeof(struct pmcraid_timestamp_data),
5164				    pinstance->timestamp_data,
5165				    pinstance->timestamp_data_baddr);
5166
5167		pinstance->timestamp_data = NULL;
5168		pinstance->timestamp_data_baddr = 0;
5169	}
5170}
5171
5172/**
5173 * pmcraid_init_buffers - allocates memory and initializes various structures
5174 * @pinstance: pointer to per adapter instance structure
5175 *
5176 * This routine pre-allocates memory based on the type of block as below:
5177 * cmdblocks(PMCRAID_MAX_CMD): kernel memory using kernel's slab_allocator,
5178 * IOARCBs(PMCRAID_MAX_CMD)  : DMAable memory, using pci pool allocator
5179 * config-table entries      : DMAable memory using pci_alloc_consistent
5180 * HostRRQs                  : DMAable memory, using pci_alloc_consistent
5181 *
5182 * Return Value
5183 *	 0 in case all of the blocks are allocated, -ENOMEM otherwise.
5184 */
5185static int __devinit pmcraid_init_buffers(struct pmcraid_instance *pinstance)
5186{
5187	int i;
5188
5189	if (pmcraid_allocate_host_rrqs(pinstance)) {
5190		pmcraid_err("couldn't allocate memory for %d host rrqs\n",
5191			     pinstance->num_hrrq);
5192		return -ENOMEM;
5193	}
5194
5195	if (pmcraid_allocate_config_buffers(pinstance)) {
5196		pmcraid_err("couldn't allocate memory for config buffers\n");
5197		pmcraid_release_host_rrqs(pinstance, pinstance->num_hrrq);
5198		return -ENOMEM;
5199	}
5200
5201	if (pmcraid_allocate_cmd_blocks(pinstance)) {
5202		pmcraid_err("couldn't allocate memory for cmd blocks\n");
5203		pmcraid_release_config_buffers(pinstance);
5204		pmcraid_release_host_rrqs(pinstance, pinstance->num_hrrq);
5205		return -ENOMEM;
5206	}
5207
5208	if (pmcraid_allocate_control_blocks(pinstance)) {
5209		pmcraid_err("couldn't allocate memory control blocks\n");
5210		pmcraid_release_config_buffers(pinstance);
5211		pmcraid_release_cmd_blocks(pinstance, PMCRAID_MAX_CMD);
5212		pmcraid_release_host_rrqs(pinstance, pinstance->num_hrrq);
5213		return -ENOMEM;
5214	}
5215
5216	/* allocate DMAable memory for page D0 INQUIRY buffer */
5217	pinstance->inq_data = pci_alloc_consistent(
5218					pinstance->pdev,
5219					sizeof(struct pmcraid_inquiry_data),
5220					&pinstance->inq_data_baddr);
5221
5222	if (pinstance->inq_data == NULL) {
5223		pmcraid_err("couldn't allocate DMA memory for INQUIRY\n");
5224		pmcraid_release_buffers(pinstance);
5225		return -ENOMEM;
5226	}
5227
5228	/* allocate DMAable memory for set timestamp data buffer */
5229	pinstance->timestamp_data = pci_alloc_consistent(
5230					pinstance->pdev,
5231					sizeof(struct pmcraid_timestamp_data),
5232					&pinstance->timestamp_data_baddr);
5233
5234	if (pinstance->timestamp_data == NULL) {
5235		pmcraid_err("couldn't allocate DMA memory for \
5236				set time_stamp \n");
5237		pmcraid_release_buffers(pinstance);
5238		return -ENOMEM;
5239	}
5240
5241
5242	/* Initialize all the command blocks and add them to free pool. No
5243	 * need to lock (free_pool_lock) as this is done in initialization
5244	 * itself
5245	 */
5246	for (i = 0; i < PMCRAID_MAX_CMD; i++) {
5247		struct pmcraid_cmd *cmdp = pinstance->cmd_list[i];
5248		pmcraid_init_cmdblk(cmdp, i);
5249		cmdp->drv_inst = pinstance;
5250		list_add_tail(&cmdp->free_list, &pinstance->free_cmd_pool);
5251	}
5252
5253	return 0;
5254}
5255
5256/**
5257 * pmcraid_reinit_buffers - resets various buffer pointers
5258 * @pinstance: pointer to adapter instance
5259 * Return value
5260 *	none
5261 */
5262static void pmcraid_reinit_buffers(struct pmcraid_instance *pinstance)
5263{
5264	int i;
5265	int buffer_size = HRRQ_ENTRY_SIZE * PMCRAID_MAX_CMD;
5266
5267	for (i = 0; i < pinstance->num_hrrq; i++) {
5268		memset(pinstance->hrrq_start[i], 0, buffer_size);
5269		pinstance->hrrq_curr[i] = pinstance->hrrq_start[i];
5270		pinstance->hrrq_end[i] =
5271			pinstance->hrrq_start[i] + PMCRAID_MAX_CMD - 1;
5272		pinstance->host_toggle_bit[i] = 1;
5273	}
5274}
5275
5276/**
5277 * pmcraid_init_instance - initialize per instance data structure
5278 * @pdev: pointer to pci device structure
5279 * @host: pointer to Scsi_Host structure
5280 * @mapped_pci_addr: memory mapped IOA configuration registers
5281 *
5282 * Return Value
5283 *	 0 on success, non-zero in case of any failure
5284 */
5285static int __devinit pmcraid_init_instance(
5286	struct pci_dev *pdev,
5287	struct Scsi_Host *host,
5288	void __iomem *mapped_pci_addr
5289)
5290{
5291	struct pmcraid_instance *pinstance =
5292		(struct pmcraid_instance *)host->hostdata;
5293
5294	pinstance->host = host;
5295	pinstance->pdev = pdev;
5296
5297	/* Initialize register addresses */
5298	pinstance->mapped_dma_addr = mapped_pci_addr;
5299
5300	/* Initialize chip-specific details */
5301	{
5302		struct pmcraid_chip_details *chip_cfg = pinstance->chip_cfg;
5303		struct pmcraid_interrupts *pint_regs = &pinstance->int_regs;
5304
5305		pinstance->ioarrin = mapped_pci_addr + chip_cfg->ioarrin;
5306
5307		pint_regs->ioa_host_interrupt_reg =
5308			mapped_pci_addr + chip_cfg->ioa_host_intr;
5309		pint_regs->ioa_host_interrupt_clr_reg =
5310			mapped_pci_addr + chip_cfg->ioa_host_intr_clr;
5311		pint_regs->ioa_host_msix_interrupt_reg =
5312			mapped_pci_addr + chip_cfg->ioa_host_msix_intr;
5313		pint_regs->host_ioa_interrupt_reg =
5314			mapped_pci_addr + chip_cfg->host_ioa_intr;
5315		pint_regs->host_ioa_interrupt_clr_reg =
5316			mapped_pci_addr + chip_cfg->host_ioa_intr_clr;
5317
5318		/* Current version of firmware exposes interrupt mask set
5319		 * and mask clr registers through memory mapped bar0.
5320		 */
5321		pinstance->mailbox = mapped_pci_addr + chip_cfg->mailbox;
5322		pinstance->ioa_status = mapped_pci_addr + chip_cfg->ioastatus;
5323		pint_regs->ioa_host_interrupt_mask_reg =
5324			mapped_pci_addr + chip_cfg->ioa_host_mask;
5325		pint_regs->ioa_host_interrupt_mask_clr_reg =
5326			mapped_pci_addr + chip_cfg->ioa_host_mask_clr;
5327		pint_regs->global_interrupt_mask_reg =
5328			mapped_pci_addr + chip_cfg->global_intr_mask;
5329	};
5330
5331	pinstance->ioa_reset_attempts = 0;
5332	init_waitqueue_head(&pinstance->reset_wait_q);
5333
5334	atomic_set(&pinstance->outstanding_cmds, 0);
5335	atomic_set(&pinstance->last_message_id, 0);
5336	atomic_set(&pinstance->expose_resources, 0);
5337
5338	INIT_LIST_HEAD(&pinstance->free_res_q);
5339	INIT_LIST_HEAD(&pinstance->used_res_q);
5340	INIT_LIST_HEAD(&pinstance->free_cmd_pool);
5341	INIT_LIST_HEAD(&pinstance->pending_cmd_pool);
5342
5343	spin_lock_init(&pinstance->free_pool_lock);
5344	spin_lock_init(&pinstance->pending_pool_lock);
5345	spin_lock_init(&pinstance->resource_lock);
5346	mutex_init(&pinstance->aen_queue_lock);
5347
5348	/* Work-queue (Shared) for deferred processing error handling */
5349	INIT_WORK(&pinstance->worker_q, pmcraid_worker_function);
5350
5351	/* Initialize the default log_level */
5352	pinstance->current_log_level = pmcraid_log_level;
5353
5354	/* Setup variables required for reset engine */
5355	pinstance->ioa_state = IOA_STATE_UNKNOWN;
5356	pinstance->reset_cmd = NULL;
5357	return 0;
5358}
5359
5360/**
5361 * pmcraid_shutdown - shutdown adapter controller.
5362 * @pdev: pci device struct
5363 *
5364 * Issues an adapter shutdown to the card waits for its completion
5365 *
5366 * Return value
5367 *	  none
5368 */
5369static void pmcraid_shutdown(struct pci_dev *pdev)
5370{
5371	struct pmcraid_instance *pinstance = pci_get_drvdata(pdev);
5372	pmcraid_reset_bringdown(pinstance);
5373}
5374
5375
5376/**
5377 * pmcraid_get_minor - returns unused minor number from minor number bitmap
5378 */
5379static unsigned short pmcraid_get_minor(void)
5380{
5381	int minor;
5382
5383	minor = find_first_zero_bit(pmcraid_minor, sizeof(pmcraid_minor));
5384	__set_bit(minor, pmcraid_minor);
5385	return minor;
5386}
5387
5388/**
5389 * pmcraid_release_minor - releases given minor back to minor number bitmap
5390 */
5391static void pmcraid_release_minor(unsigned short minor)
5392{
5393	__clear_bit(minor, pmcraid_minor);
5394}
5395
5396/**
5397 * pmcraid_setup_chrdev - allocates a minor number and registers a char device
5398 *
5399 * @pinstance: pointer to adapter instance for which to register device
5400 *
5401 * Return value
5402 *	0 in case of success, otherwise non-zero
5403 */
5404static int pmcraid_setup_chrdev(struct pmcraid_instance *pinstance)
5405{
5406	int minor;
5407	int error;
5408
5409	minor = pmcraid_get_minor();
5410	cdev_init(&pinstance->cdev, &pmcraid_fops);
5411	pinstance->cdev.owner = THIS_MODULE;
5412
5413	error = cdev_add(&pinstance->cdev, MKDEV(pmcraid_major, minor), 1);
5414
5415	if (error)
5416		pmcraid_release_minor(minor);
5417	else
5418		device_create(pmcraid_class, NULL, MKDEV(pmcraid_major, minor),
5419			      NULL, "%s%u", PMCRAID_DEVFILE, minor);
5420	return error;
5421}
5422
5423/**
5424 * pmcraid_release_chrdev - unregisters per-adapter management interface
5425 *
5426 * @pinstance: pointer to adapter instance structure
5427 *
5428 * Return value
5429 *  none
5430 */
5431static void pmcraid_release_chrdev(struct pmcraid_instance *pinstance)
5432{
5433	pmcraid_release_minor(MINOR(pinstance->cdev.dev));
5434	device_destroy(pmcraid_class,
5435		       MKDEV(pmcraid_major, MINOR(pinstance->cdev.dev)));
5436	cdev_del(&pinstance->cdev);
5437}
5438
5439/**
5440 * pmcraid_remove - IOA hot plug remove entry point
5441 * @pdev: pci device struct
5442 *
5443 * Return value
5444 *	  none
5445 */
5446static void __devexit pmcraid_remove(struct pci_dev *pdev)
5447{
5448	struct pmcraid_instance *pinstance = pci_get_drvdata(pdev);
5449
5450	/* remove the management interface (/dev file) for this device */
5451	pmcraid_release_chrdev(pinstance);
5452
5453	/* remove host template from scsi midlayer */
5454	scsi_remove_host(pinstance->host);
5455
5456	/* block requests from mid-layer */
5457	scsi_block_requests(pinstance->host);
5458
5459	/* initiate shutdown adapter */
5460	pmcraid_shutdown(pdev);
5461
5462	pmcraid_disable_interrupts(pinstance, ~0);
5463	flush_work_sync(&pinstance->worker_q);
5464
5465	pmcraid_kill_tasklets(pinstance);
5466	pmcraid_unregister_interrupt_handler(pinstance);
5467	pmcraid_release_buffers(pinstance);
5468	iounmap(pinstance->mapped_dma_addr);
5469	pci_release_regions(pdev);
5470	scsi_host_put(pinstance->host);
5471	pci_disable_device(pdev);
5472
5473	return;
5474}
5475
5476#ifdef CONFIG_PM
5477/**
5478 * pmcraid_suspend - driver suspend entry point for power management
5479 * @pdev:   PCI device structure
5480 * @state:  PCI power state to suspend routine
5481 *
5482 * Return Value - 0 always
5483 */
5484static int pmcraid_suspend(struct pci_dev *pdev, pm_message_t state)
5485{
 
5486	struct pmcraid_instance *pinstance = pci_get_drvdata(pdev);
5487
5488	pmcraid_shutdown(pdev);
5489	pmcraid_disable_interrupts(pinstance, ~0);
5490	pmcraid_kill_tasklets(pinstance);
5491	pci_set_drvdata(pinstance->pdev, pinstance);
5492	pmcraid_unregister_interrupt_handler(pinstance);
5493	pci_save_state(pdev);
5494	pci_disable_device(pdev);
5495	pci_set_power_state(pdev, pci_choose_state(pdev, state));
5496
5497	return 0;
5498}
5499
5500/**
5501 * pmcraid_resume - driver resume entry point PCI power management
5502 * @pdev: PCI device structure
5503 *
5504 * Return Value - 0 in case of success. Error code in case of any failure
5505 */
5506static int pmcraid_resume(struct pci_dev *pdev)
5507{
 
5508	struct pmcraid_instance *pinstance = pci_get_drvdata(pdev);
5509	struct Scsi_Host *host = pinstance->host;
5510	int rc;
5511
5512	pci_set_power_state(pdev, PCI_D0);
5513	pci_enable_wake(pdev, PCI_D0, 0);
5514	pci_restore_state(pdev);
5515
5516	rc = pci_enable_device(pdev);
5517
5518	if (rc) {
5519		dev_err(&pdev->dev, "resume: Enable device failed\n");
5520		return rc;
5521	}
5522
5523	pci_set_master(pdev);
5524
5525	if ((sizeof(dma_addr_t) == 4) ||
5526	     pci_set_dma_mask(pdev, DMA_BIT_MASK(64)))
5527		rc = pci_set_dma_mask(pdev, DMA_BIT_MASK(32));
5528
5529	if (rc == 0)
5530		rc = pci_set_consistent_dma_mask(pdev, DMA_BIT_MASK(32));
5531
5532	if (rc != 0) {
5533		dev_err(&pdev->dev, "resume: Failed to set PCI DMA mask\n");
5534		goto disable_device;
5535	}
5536
5537	pmcraid_disable_interrupts(pinstance, ~0);
5538	atomic_set(&pinstance->outstanding_cmds, 0);
5539	rc = pmcraid_register_interrupt_handler(pinstance);
5540
5541	if (rc) {
5542		dev_err(&pdev->dev,
5543			"resume: couldn't register interrupt handlers\n");
5544		rc = -ENODEV;
5545		goto release_host;
5546	}
5547
5548	pmcraid_init_tasklets(pinstance);
5549	pmcraid_enable_interrupts(pinstance, PMCRAID_PCI_INTERRUPTS);
5550
5551	/* Start with hard reset sequence which brings up IOA to operational
5552	 * state as well as completes the reset sequence.
5553	 */
5554	pinstance->ioa_hard_reset = 1;
5555
5556	/* Start IOA firmware initialization and bring card to Operational
5557	 * state.
5558	 */
5559	if (pmcraid_reset_bringup(pinstance)) {
5560		dev_err(&pdev->dev, "couldn't initialize IOA\n");
5561		rc = -ENODEV;
5562		goto release_tasklets;
5563	}
5564
5565	return 0;
5566
5567release_tasklets:
5568	pmcraid_disable_interrupts(pinstance, ~0);
5569	pmcraid_kill_tasklets(pinstance);
5570	pmcraid_unregister_interrupt_handler(pinstance);
5571
5572release_host:
5573	scsi_host_put(host);
5574
5575disable_device:
5576	pci_disable_device(pdev);
5577
5578	return rc;
5579}
5580
5581#else
5582
5583#define pmcraid_suspend NULL
5584#define pmcraid_resume  NULL
5585
5586#endif /* CONFIG_PM */
5587
5588/**
5589 * pmcraid_complete_ioa_reset - Called by either timer or tasklet during
5590 *				completion of the ioa reset
5591 * @cmd: pointer to reset command block
5592 */
5593static void pmcraid_complete_ioa_reset(struct pmcraid_cmd *cmd)
5594{
5595	struct pmcraid_instance *pinstance = cmd->drv_inst;
5596	unsigned long flags;
5597
5598	spin_lock_irqsave(pinstance->host->host_lock, flags);
5599	pmcraid_ioa_reset(cmd);
5600	spin_unlock_irqrestore(pinstance->host->host_lock, flags);
5601	scsi_unblock_requests(pinstance->host);
5602	schedule_work(&pinstance->worker_q);
5603}
5604
5605/**
5606 * pmcraid_set_supported_devs - sends SET SUPPORTED DEVICES to IOAFP
5607 *
5608 * @cmd: pointer to pmcraid_cmd structure
5609 *
5610 * Return Value
5611 *  0 for success or non-zero for failure cases
5612 */
5613static void pmcraid_set_supported_devs(struct pmcraid_cmd *cmd)
5614{
5615	struct pmcraid_ioarcb *ioarcb = &cmd->ioa_cb->ioarcb;
5616	void (*cmd_done) (struct pmcraid_cmd *) = pmcraid_complete_ioa_reset;
5617
5618	pmcraid_reinit_cmdblk(cmd);
5619
5620	ioarcb->resource_handle = cpu_to_le32(PMCRAID_IOA_RES_HANDLE);
5621	ioarcb->request_type = REQ_TYPE_IOACMD;
5622	ioarcb->cdb[0] = PMCRAID_SET_SUPPORTED_DEVICES;
5623	ioarcb->cdb[1] = ALL_DEVICES_SUPPORTED;
5624
5625	/* If this was called as part of resource table reinitialization due to
5626	 * lost CCN, it is enough to return the command block back to free pool
5627	 * as part of set_supported_devs completion function.
5628	 */
5629	if (cmd->drv_inst->reinit_cfg_table) {
5630		cmd->drv_inst->reinit_cfg_table = 0;
5631		cmd->release = 1;
5632		cmd_done = pmcraid_reinit_cfgtable_done;
5633	}
5634
5635	/* we will be done with the reset sequence after set supported devices,
5636	 * setup the done function to return the command block back to free
5637	 * pool
5638	 */
5639	pmcraid_send_cmd(cmd,
5640			 cmd_done,
5641			 PMCRAID_SET_SUP_DEV_TIMEOUT,
5642			 pmcraid_timeout_handler);
5643	return;
5644}
5645
5646/**
5647 * pmcraid_set_timestamp - set the timestamp to IOAFP
5648 *
5649 * @cmd: pointer to pmcraid_cmd structure
5650 *
5651 * Return Value
5652 *  0 for success or non-zero for failure cases
5653 */
5654static void pmcraid_set_timestamp(struct pmcraid_cmd *cmd)
5655{
5656	struct pmcraid_instance *pinstance = cmd->drv_inst;
5657	struct pmcraid_ioarcb *ioarcb = &cmd->ioa_cb->ioarcb;
5658	__be32 time_stamp_len = cpu_to_be32(PMCRAID_TIMESTAMP_LEN);
5659	struct pmcraid_ioadl_desc *ioadl = ioarcb->add_data.u.ioadl;
5660
5661	struct timeval tv;
5662	__le64 timestamp;
5663
5664	do_gettimeofday(&tv);
5665	timestamp = tv.tv_sec * 1000;
5666
5667	pinstance->timestamp_data->timestamp[0] = (__u8)(timestamp);
5668	pinstance->timestamp_data->timestamp[1] = (__u8)((timestamp) >> 8);
5669	pinstance->timestamp_data->timestamp[2] = (__u8)((timestamp) >> 16);
5670	pinstance->timestamp_data->timestamp[3] = (__u8)((timestamp) >> 24);
5671	pinstance->timestamp_data->timestamp[4] = (__u8)((timestamp) >> 32);
5672	pinstance->timestamp_data->timestamp[5] = (__u8)((timestamp)  >> 40);
5673
5674	pmcraid_reinit_cmdblk(cmd);
5675	ioarcb->request_type = REQ_TYPE_SCSI;
5676	ioarcb->resource_handle = cpu_to_le32(PMCRAID_IOA_RES_HANDLE);
5677	ioarcb->cdb[0] = PMCRAID_SCSI_SET_TIMESTAMP;
5678	ioarcb->cdb[1] = PMCRAID_SCSI_SERVICE_ACTION;
5679	memcpy(&(ioarcb->cdb[6]), &time_stamp_len, sizeof(time_stamp_len));
5680
5681	ioarcb->ioadl_bus_addr = cpu_to_le64((cmd->ioa_cb_bus_addr) +
5682					offsetof(struct pmcraid_ioarcb,
5683						add_data.u.ioadl[0]));
5684	ioarcb->ioadl_length = cpu_to_le32(sizeof(struct pmcraid_ioadl_desc));
5685	ioarcb->ioarcb_bus_addr &= ~(0x1FULL);
5686
5687	ioarcb->request_flags0 |= NO_LINK_DESCS;
5688	ioarcb->request_flags0 |= TRANSFER_DIR_WRITE;
5689	ioarcb->data_transfer_length =
5690		cpu_to_le32(sizeof(struct pmcraid_timestamp_data));
5691	ioadl = &(ioarcb->add_data.u.ioadl[0]);
5692	ioadl->flags = IOADL_FLAGS_LAST_DESC;
5693	ioadl->address = cpu_to_le64(pinstance->timestamp_data_baddr);
5694	ioadl->data_len = cpu_to_le32(sizeof(struct pmcraid_timestamp_data));
5695
5696	if (!pinstance->timestamp_error) {
5697		pinstance->timestamp_error = 0;
5698		pmcraid_send_cmd(cmd, pmcraid_set_supported_devs,
5699			 PMCRAID_INTERNAL_TIMEOUT, pmcraid_timeout_handler);
5700	} else {
5701		pmcraid_send_cmd(cmd, pmcraid_return_cmd,
5702			 PMCRAID_INTERNAL_TIMEOUT, pmcraid_timeout_handler);
5703		return;
5704	}
5705}
5706
5707
5708/**
5709 * pmcraid_init_res_table - Initialize the resource table
5710 * @cmd:  pointer to pmcraid command struct
5711 *
5712 * This function looks through the existing resource table, comparing
5713 * it with the config table. This function will take care of old/new
5714 * devices and schedule adding/removing them from the mid-layer
5715 * as appropriate.
5716 *
5717 * Return value
5718 *	 None
5719 */
5720static void pmcraid_init_res_table(struct pmcraid_cmd *cmd)
5721{
5722	struct pmcraid_instance *pinstance = cmd->drv_inst;
5723	struct pmcraid_resource_entry *res, *temp;
5724	struct pmcraid_config_table_entry *cfgte;
5725	unsigned long lock_flags;
5726	int found, rc, i;
5727	u16 fw_version;
5728	LIST_HEAD(old_res);
5729
5730	if (pinstance->cfg_table->flags & MICROCODE_UPDATE_REQUIRED)
5731		pmcraid_err("IOA requires microcode download\n");
5732
5733	fw_version = be16_to_cpu(pinstance->inq_data->fw_version);
5734
5735	/* resource list is protected by pinstance->resource_lock.
5736	 * init_res_table can be called from probe (user-thread) or runtime
5737	 * reset (timer/tasklet)
5738	 */
5739	spin_lock_irqsave(&pinstance->resource_lock, lock_flags);
5740
5741	list_for_each_entry_safe(res, temp, &pinstance->used_res_q, queue)
5742		list_move_tail(&res->queue, &old_res);
5743
5744	for (i = 0; i < pinstance->cfg_table->num_entries; i++) {
5745		if (be16_to_cpu(pinstance->inq_data->fw_version) <=
5746						PMCRAID_FW_VERSION_1)
5747			cfgte = &pinstance->cfg_table->entries[i];
5748		else
5749			cfgte = (struct pmcraid_config_table_entry *)
5750					&pinstance->cfg_table->entries_ext[i];
5751
5752		if (!pmcraid_expose_resource(fw_version, cfgte))
5753			continue;
5754
5755		found = 0;
5756
5757		/* If this entry was already detected and initialized */
5758		list_for_each_entry_safe(res, temp, &old_res, queue) {
5759
5760			rc = memcmp(&res->cfg_entry.resource_address,
5761				    &cfgte->resource_address,
5762				    sizeof(cfgte->resource_address));
5763			if (!rc) {
5764				list_move_tail(&res->queue,
5765						&pinstance->used_res_q);
5766				found = 1;
5767				break;
5768			}
5769		}
5770
5771		/* If this is new entry, initialize it and add it the queue */
5772		if (!found) {
5773
5774			if (list_empty(&pinstance->free_res_q)) {
5775				pmcraid_err("Too many devices attached\n");
5776				break;
5777			}
5778
5779			found = 1;
5780			res = list_entry(pinstance->free_res_q.next,
5781					 struct pmcraid_resource_entry, queue);
5782
5783			res->scsi_dev = NULL;
5784			res->change_detected = RES_CHANGE_ADD;
5785			res->reset_progress = 0;
5786			list_move_tail(&res->queue, &pinstance->used_res_q);
5787		}
5788
5789		/* copy new configuration table entry details into driver
5790		 * maintained resource entry
5791		 */
5792		if (found) {
5793			memcpy(&res->cfg_entry, cfgte,
5794					pinstance->config_table_entry_size);
5795			pmcraid_info("New res type:%x, vset:%x, addr:%x:\n",
5796				 res->cfg_entry.resource_type,
5797				 (fw_version <= PMCRAID_FW_VERSION_1 ?
5798					res->cfg_entry.unique_flags1 :
5799						res->cfg_entry.array_id & 0xFF),
5800				 le32_to_cpu(res->cfg_entry.resource_address));
5801		}
5802	}
5803
5804	/* Detect any deleted entries, mark them for deletion from mid-layer */
5805	list_for_each_entry_safe(res, temp, &old_res, queue) {
5806
5807		if (res->scsi_dev) {
5808			res->change_detected = RES_CHANGE_DEL;
5809			res->cfg_entry.resource_handle =
5810				PMCRAID_INVALID_RES_HANDLE;
5811			list_move_tail(&res->queue, &pinstance->used_res_q);
5812		} else {
5813			list_move_tail(&res->queue, &pinstance->free_res_q);
5814		}
5815	}
5816
5817	/* release the resource list lock */
5818	spin_unlock_irqrestore(&pinstance->resource_lock, lock_flags);
5819	pmcraid_set_timestamp(cmd);
5820}
5821
5822/**
5823 * pmcraid_querycfg - Send a Query IOA Config to the adapter.
5824 * @cmd: pointer pmcraid_cmd struct
5825 *
5826 * This function sends a Query IOA Configuration command to the adapter to
5827 * retrieve the IOA configuration table.
5828 *
5829 * Return value:
5830 *	none
5831 */
5832static void pmcraid_querycfg(struct pmcraid_cmd *cmd)
5833{
5834	struct pmcraid_ioarcb *ioarcb = &cmd->ioa_cb->ioarcb;
5835	struct pmcraid_ioadl_desc *ioadl = ioarcb->add_data.u.ioadl;
5836	struct pmcraid_instance *pinstance = cmd->drv_inst;
5837	int cfg_table_size = cpu_to_be32(sizeof(struct pmcraid_config_table));
5838
5839	if (be16_to_cpu(pinstance->inq_data->fw_version) <=
5840					PMCRAID_FW_VERSION_1)
5841		pinstance->config_table_entry_size =
5842			sizeof(struct pmcraid_config_table_entry);
5843	else
5844		pinstance->config_table_entry_size =
5845			sizeof(struct pmcraid_config_table_entry_ext);
5846
5847	ioarcb->request_type = REQ_TYPE_IOACMD;
5848	ioarcb->resource_handle = cpu_to_le32(PMCRAID_IOA_RES_HANDLE);
5849
5850	ioarcb->cdb[0] = PMCRAID_QUERY_IOA_CONFIG;
5851
5852	/* firmware requires 4-byte length field, specified in B.E format */
5853	memcpy(&(ioarcb->cdb[10]), &cfg_table_size, sizeof(cfg_table_size));
5854
5855	/* Since entire config table can be described by single IOADL, it can
5856	 * be part of IOARCB itself
5857	 */
5858	ioarcb->ioadl_bus_addr = cpu_to_le64((cmd->ioa_cb_bus_addr) +
5859					offsetof(struct pmcraid_ioarcb,
5860						add_data.u.ioadl[0]));
5861	ioarcb->ioadl_length = cpu_to_le32(sizeof(struct pmcraid_ioadl_desc));
5862	ioarcb->ioarcb_bus_addr &= ~(0x1FULL);
5863
5864	ioarcb->request_flags0 |= NO_LINK_DESCS;
5865	ioarcb->data_transfer_length =
5866		cpu_to_le32(sizeof(struct pmcraid_config_table));
5867
5868	ioadl = &(ioarcb->add_data.u.ioadl[0]);
5869	ioadl->flags = IOADL_FLAGS_LAST_DESC;
5870	ioadl->address = cpu_to_le64(pinstance->cfg_table_bus_addr);
5871	ioadl->data_len = cpu_to_le32(sizeof(struct pmcraid_config_table));
5872
5873	pmcraid_send_cmd(cmd, pmcraid_init_res_table,
5874			 PMCRAID_INTERNAL_TIMEOUT, pmcraid_timeout_handler);
5875}
5876
5877
5878/**
5879 * pmcraid_probe - PCI probe entry pointer for PMC MaxRAID controller driver
5880 * @pdev: pointer to pci device structure
5881 * @dev_id: pointer to device ids structure
5882 *
5883 * Return Value
5884 *	returns 0 if the device is claimed and successfully configured.
5885 *	returns non-zero error code in case of any failure
5886 */
5887static int __devinit pmcraid_probe(
5888	struct pci_dev *pdev,
5889	const struct pci_device_id *dev_id
5890)
5891{
5892	struct pmcraid_instance *pinstance;
5893	struct Scsi_Host *host;
5894	void __iomem *mapped_pci_addr;
5895	int rc = PCIBIOS_SUCCESSFUL;
5896
5897	if (atomic_read(&pmcraid_adapter_count) >= PMCRAID_MAX_ADAPTERS) {
5898		pmcraid_err
5899			("maximum number(%d) of supported adapters reached\n",
5900			 atomic_read(&pmcraid_adapter_count));
5901		return -ENOMEM;
5902	}
5903
5904	atomic_inc(&pmcraid_adapter_count);
5905	rc = pci_enable_device(pdev);
5906
5907	if (rc) {
5908		dev_err(&pdev->dev, "Cannot enable adapter\n");
5909		atomic_dec(&pmcraid_adapter_count);
5910		return rc;
5911	}
5912
5913	dev_info(&pdev->dev,
5914		"Found new IOA(%x:%x), Total IOA count: %d\n",
5915		 pdev->vendor, pdev->device,
5916		 atomic_read(&pmcraid_adapter_count));
5917
5918	rc = pci_request_regions(pdev, PMCRAID_DRIVER_NAME);
5919
5920	if (rc < 0) {
5921		dev_err(&pdev->dev,
5922			"Couldn't register memory range of registers\n");
5923		goto out_disable_device;
5924	}
5925
5926	mapped_pci_addr = pci_iomap(pdev, 0, 0);
5927
5928	if (!mapped_pci_addr) {
5929		dev_err(&pdev->dev, "Couldn't map PCI registers memory\n");
5930		rc = -ENOMEM;
5931		goto out_release_regions;
5932	}
5933
5934	pci_set_master(pdev);
5935
5936	/* Firmware requires the system bus address of IOARCB to be within
5937	 * 32-bit addressable range though it has 64-bit IOARRIN register.
5938	 * However, firmware supports 64-bit streaming DMA buffers, whereas
5939	 * coherent buffers are to be 32-bit. Since pci_alloc_consistent always
5940	 * returns memory within 4GB (if not, change this logic), coherent
5941	 * buffers are within firmware acceptable address ranges.
5942	 */
5943	if ((sizeof(dma_addr_t) == 4) ||
5944	    pci_set_dma_mask(pdev, DMA_BIT_MASK(64)))
5945		rc = pci_set_dma_mask(pdev, DMA_BIT_MASK(32));
5946
5947	/* firmware expects 32-bit DMA addresses for IOARRIN register; set 32
5948	 * bit mask for pci_alloc_consistent to return addresses within 4GB
5949	 */
5950	if (rc == 0)
5951		rc = pci_set_consistent_dma_mask(pdev, DMA_BIT_MASK(32));
5952
5953	if (rc != 0) {
5954		dev_err(&pdev->dev, "Failed to set PCI DMA mask\n");
5955		goto cleanup_nomem;
5956	}
5957
5958	host = scsi_host_alloc(&pmcraid_host_template,
5959				sizeof(struct pmcraid_instance));
5960
5961	if (!host) {
5962		dev_err(&pdev->dev, "scsi_host_alloc failed!\n");
5963		rc = -ENOMEM;
5964		goto cleanup_nomem;
5965	}
5966
5967	host->max_id = PMCRAID_MAX_NUM_TARGETS_PER_BUS;
5968	host->max_lun = PMCRAID_MAX_NUM_LUNS_PER_TARGET;
5969	host->unique_id = host->host_no;
5970	host->max_channel = PMCRAID_MAX_BUS_TO_SCAN;
5971	host->max_cmd_len = PMCRAID_MAX_CDB_LEN;
5972
5973	/* zero out entire instance structure */
5974	pinstance = (struct pmcraid_instance *)host->hostdata;
5975	memset(pinstance, 0, sizeof(*pinstance));
5976
5977	pinstance->chip_cfg =
5978		(struct pmcraid_chip_details *)(dev_id->driver_data);
5979
5980	rc = pmcraid_init_instance(pdev, host, mapped_pci_addr);
5981
5982	if (rc < 0) {
5983		dev_err(&pdev->dev, "failed to initialize adapter instance\n");
5984		goto out_scsi_host_put;
5985	}
5986
5987	pci_set_drvdata(pdev, pinstance);
5988
5989	/* Save PCI config-space for use following the reset */
5990	rc = pci_save_state(pinstance->pdev);
5991
5992	if (rc != 0) {
5993		dev_err(&pdev->dev, "Failed to save PCI config space\n");
5994		goto out_scsi_host_put;
5995	}
5996
5997	pmcraid_disable_interrupts(pinstance, ~0);
5998
5999	rc = pmcraid_register_interrupt_handler(pinstance);
6000
6001	if (rc) {
6002		dev_err(&pdev->dev, "couldn't register interrupt handler\n");
6003		goto out_scsi_host_put;
6004	}
6005
6006	pmcraid_init_tasklets(pinstance);
6007
6008	/* allocate verious buffers used by LLD.*/
6009	rc = pmcraid_init_buffers(pinstance);
6010
6011	if (rc) {
6012		pmcraid_err("couldn't allocate memory blocks\n");
6013		goto out_unregister_isr;
6014	}
6015
6016	/* check the reset type required */
6017	pmcraid_reset_type(pinstance);
6018
6019	pmcraid_enable_interrupts(pinstance, PMCRAID_PCI_INTERRUPTS);
6020
6021	/* Start IOA firmware initialization and bring card to Operational
6022	 * state.
6023	 */
6024	pmcraid_info("starting IOA initialization sequence\n");
6025	if (pmcraid_reset_bringup(pinstance)) {
6026		dev_err(&pdev->dev, "couldn't initialize IOA\n");
6027		rc = 1;
6028		goto out_release_bufs;
6029	}
6030
6031	/* Add adapter instance into mid-layer list */
6032	rc = scsi_add_host(pinstance->host, &pdev->dev);
6033	if (rc != 0) {
6034		pmcraid_err("couldn't add host into mid-layer: %d\n", rc);
6035		goto out_release_bufs;
6036	}
6037
6038	scsi_scan_host(pinstance->host);
6039
6040	rc = pmcraid_setup_chrdev(pinstance);
6041
6042	if (rc != 0) {
6043		pmcraid_err("couldn't create mgmt interface, error: %x\n",
6044			     rc);
6045		goto out_remove_host;
6046	}
6047
6048	/* Schedule worker thread to handle CCN and take care of adding and
6049	 * removing devices to OS
6050	 */
6051	atomic_set(&pinstance->expose_resources, 1);
6052	schedule_work(&pinstance->worker_q);
6053	return rc;
6054
6055out_remove_host:
6056	scsi_remove_host(host);
6057
6058out_release_bufs:
6059	pmcraid_release_buffers(pinstance);
6060
6061out_unregister_isr:
6062	pmcraid_kill_tasklets(pinstance);
6063	pmcraid_unregister_interrupt_handler(pinstance);
6064
6065out_scsi_host_put:
6066	scsi_host_put(host);
6067
6068cleanup_nomem:
6069	iounmap(mapped_pci_addr);
6070
6071out_release_regions:
6072	pci_release_regions(pdev);
6073
6074out_disable_device:
6075	atomic_dec(&pmcraid_adapter_count);
6076	pci_set_drvdata(pdev, NULL);
6077	pci_disable_device(pdev);
6078	return -ENODEV;
6079}
6080
 
 
6081/*
6082 * PCI driver structure of pcmraid driver
6083 */
6084static struct pci_driver pmcraid_driver = {
6085	.name = PMCRAID_DRIVER_NAME,
6086	.id_table = pmcraid_pci_table,
6087	.probe = pmcraid_probe,
6088	.remove = pmcraid_remove,
6089	.suspend = pmcraid_suspend,
6090	.resume = pmcraid_resume,
6091	.shutdown = pmcraid_shutdown
6092};
6093
6094/**
6095 * pmcraid_init - module load entry point
6096 */
6097static int __init pmcraid_init(void)
6098{
6099	dev_t dev;
6100	int error;
6101
6102	pmcraid_info("%s Device Driver version: %s\n",
6103			 PMCRAID_DRIVER_NAME, PMCRAID_DRIVER_VERSION);
6104
6105	error = alloc_chrdev_region(&dev, 0,
6106				    PMCRAID_MAX_ADAPTERS,
6107				    PMCRAID_DEVFILE);
6108
6109	if (error) {
6110		pmcraid_err("failed to get a major number for adapters\n");
6111		goto out_init;
6112	}
6113
6114	pmcraid_major = MAJOR(dev);
6115	pmcraid_class = class_create(THIS_MODULE, PMCRAID_DEVFILE);
6116
6117	if (IS_ERR(pmcraid_class)) {
6118		error = PTR_ERR(pmcraid_class);
6119		pmcraid_err("failed to register with with sysfs, error = %x\n",
 
6120			    error);
6121		goto out_unreg_chrdev;
6122	}
6123
6124	error = pmcraid_netlink_init();
6125
6126	if (error)
 
6127		goto out_unreg_chrdev;
 
6128
6129	error = pci_register_driver(&pmcraid_driver);
6130
6131	if (error == 0)
6132		goto out_init;
6133
6134	pmcraid_err("failed to register pmcraid driver, error = %x\n",
6135		     error);
6136	class_destroy(pmcraid_class);
6137	pmcraid_netlink_release();
6138
6139out_unreg_chrdev:
6140	unregister_chrdev_region(MKDEV(pmcraid_major, 0), PMCRAID_MAX_ADAPTERS);
6141
6142out_init:
6143	return error;
6144}
6145
6146/**
6147 * pmcraid_exit - module unload entry point
6148 */
6149static void __exit pmcraid_exit(void)
6150{
6151	pmcraid_netlink_release();
6152	unregister_chrdev_region(MKDEV(pmcraid_major, 0),
6153				 PMCRAID_MAX_ADAPTERS);
6154	pci_unregister_driver(&pmcraid_driver);
6155	class_destroy(pmcraid_class);
6156}
6157
6158module_init(pmcraid_init);
6159module_exit(pmcraid_exit);
v6.13.7
   1// SPDX-License-Identifier: GPL-2.0-or-later
   2/*
   3 * pmcraid.c -- driver for PMC Sierra MaxRAID controller adapters
   4 *
   5 * Written By: Anil Ravindranath<anil_ravindranath@pmc-sierra.com>
   6 *             PMC-Sierra Inc
   7 *
   8 * Copyright (C) 2008, 2009 PMC Sierra Inc
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
   9 */
  10#include <linux/fs.h>
  11#include <linux/init.h>
  12#include <linux/types.h>
  13#include <linux/errno.h>
  14#include <linux/kernel.h>
  15#include <linux/ioport.h>
  16#include <linux/delay.h>
  17#include <linux/pci.h>
  18#include <linux/wait.h>
  19#include <linux/spinlock.h>
  20#include <linux/sched.h>
  21#include <linux/interrupt.h>
  22#include <linux/blkdev.h>
  23#include <linux/firmware.h>
  24#include <linux/module.h>
  25#include <linux/moduleparam.h>
  26#include <linux/hdreg.h>
 
  27#include <linux/io.h>
  28#include <linux/slab.h>
  29#include <asm/irq.h>
  30#include <asm/processor.h>
  31#include <linux/libata.h>
  32#include <linux/mutex.h>
  33#include <linux/ktime.h>
  34#include <scsi/scsi.h>
  35#include <scsi/scsi_host.h>
  36#include <scsi/scsi_device.h>
  37#include <scsi/scsi_tcq.h>
  38#include <scsi/scsi_eh.h>
  39#include <scsi/scsi_cmnd.h>
  40#include <scsi/scsicam.h>
  41
  42#include "pmcraid.h"
  43
  44/*
  45 *   Module configuration parameters
  46 */
  47static unsigned int pmcraid_debug_log;
  48static unsigned int pmcraid_disable_aen;
  49static unsigned int pmcraid_log_level = IOASC_LOG_LEVEL_MUST;
  50static unsigned int pmcraid_enable_msix;
  51
  52/*
  53 * Data structures to support multiple adapters by the LLD.
  54 * pmcraid_adapter_count - count of configured adapters
  55 */
  56static atomic_t pmcraid_adapter_count = ATOMIC_INIT(0);
  57
  58/*
  59 * Supporting user-level control interface through IOCTL commands.
  60 * pmcraid_major - major number to use
  61 * pmcraid_minor - minor number(s) to use
  62 */
  63static unsigned int pmcraid_major;
  64static const struct class pmcraid_class = {
  65	.name = PMCRAID_DEVFILE,
  66};
  67static DECLARE_BITMAP(pmcraid_minor, PMCRAID_MAX_ADAPTERS);
  68
  69/*
  70 * Module parameters
  71 */
  72MODULE_AUTHOR("Anil Ravindranath<anil_ravindranath@pmc-sierra.com>");
  73MODULE_DESCRIPTION("PMC Sierra MaxRAID Controller Driver");
  74MODULE_LICENSE("GPL");
  75MODULE_VERSION(PMCRAID_DRIVER_VERSION);
  76
  77module_param_named(log_level, pmcraid_log_level, uint, (S_IRUGO | S_IWUSR));
  78MODULE_PARM_DESC(log_level,
  79		 "Enables firmware error code logging, default :1 high-severity"
  80		 " errors, 2: all errors including high-severity errors,"
  81		 " 0: disables logging");
  82
  83module_param_named(debug, pmcraid_debug_log, uint, (S_IRUGO | S_IWUSR));
  84MODULE_PARM_DESC(debug,
  85		 "Enable driver verbose message logging. Set 1 to enable."
  86		 "(default: 0)");
  87
  88module_param_named(disable_aen, pmcraid_disable_aen, uint, (S_IRUGO | S_IWUSR));
  89MODULE_PARM_DESC(disable_aen,
  90		 "Disable driver aen notifications to apps. Set 1 to disable."
  91		 "(default: 0)");
  92
  93/* chip specific constants for PMC MaxRAID controllers (same for
  94 * 0x5220 and 0x8010
  95 */
  96static struct pmcraid_chip_details pmcraid_chip_cfg[] = {
  97	{
  98	 .ioastatus = 0x0,
  99	 .ioarrin = 0x00040,
 100	 .mailbox = 0x7FC30,
 101	 .global_intr_mask = 0x00034,
 102	 .ioa_host_intr = 0x0009C,
 103	 .ioa_host_intr_clr = 0x000A0,
 104	 .ioa_host_msix_intr = 0x7FC40,
 105	 .ioa_host_mask = 0x7FC28,
 106	 .ioa_host_mask_clr = 0x7FC28,
 107	 .host_ioa_intr = 0x00020,
 108	 .host_ioa_intr_clr = 0x00020,
 109	 .transop_timeout = 300
 110	 }
 111};
 112
 113/*
 114 * PCI device ids supported by pmcraid driver
 115 */
 116static struct pci_device_id pmcraid_pci_table[] = {
 117	{ PCI_DEVICE(PCI_VENDOR_ID_PMC, PCI_DEVICE_ID_PMC_MAXRAID),
 118	  0, 0, (kernel_ulong_t)&pmcraid_chip_cfg[0]
 119	},
 120	{}
 121};
 122
 123MODULE_DEVICE_TABLE(pci, pmcraid_pci_table);
 124
 125
 126
 127/**
 128 * pmcraid_slave_alloc - Prepare for commands to a device
 129 * @scsi_dev: scsi device struct
 130 *
 131 * This function is called by mid-layer prior to sending any command to the new
 132 * device. Stores resource entry details of the device in scsi_device struct.
 133 * Queuecommand uses the resource handle and other details to fill up IOARCB
 134 * while sending commands to the device.
 135 *
 136 * Return value:
 137 *	  0 on success / -ENXIO if device does not exist
 138 */
 139static int pmcraid_slave_alloc(struct scsi_device *scsi_dev)
 140{
 141	struct pmcraid_resource_entry *temp, *res = NULL;
 142	struct pmcraid_instance *pinstance;
 143	u8 target, bus, lun;
 144	unsigned long lock_flags;
 145	int rc = -ENXIO;
 146	u16 fw_version;
 147
 148	pinstance = shost_priv(scsi_dev->host);
 149
 150	fw_version = be16_to_cpu(pinstance->inq_data->fw_version);
 151
 152	/* Driver exposes VSET and GSCSI resources only; all other device types
 153	 * are not exposed. Resource list is synchronized using resource lock
 154	 * so any traversal or modifications to the list should be done inside
 155	 * this lock
 156	 */
 157	spin_lock_irqsave(&pinstance->resource_lock, lock_flags);
 158	list_for_each_entry(temp, &pinstance->used_res_q, queue) {
 159
 160		/* do not expose VSETs with order-ids > MAX_VSET_TARGETS */
 161		if (RES_IS_VSET(temp->cfg_entry)) {
 162			if (fw_version <= PMCRAID_FW_VERSION_1)
 163				target = temp->cfg_entry.unique_flags1;
 164			else
 165				target = le16_to_cpu(temp->cfg_entry.array_id) & 0xFF;
 166
 167			if (target > PMCRAID_MAX_VSET_TARGETS)
 168				continue;
 169			bus = PMCRAID_VSET_BUS_ID;
 170			lun = 0;
 171		} else if (RES_IS_GSCSI(temp->cfg_entry)) {
 172			target = RES_TARGET(temp->cfg_entry.resource_address);
 173			bus = PMCRAID_PHYS_BUS_ID;
 174			lun = RES_LUN(temp->cfg_entry.resource_address);
 175		} else {
 176			continue;
 177		}
 178
 179		if (bus == scsi_dev->channel &&
 180		    target == scsi_dev->id &&
 181		    lun == scsi_dev->lun) {
 182			res = temp;
 183			break;
 184		}
 185	}
 186
 187	if (res) {
 188		res->scsi_dev = scsi_dev;
 189		scsi_dev->hostdata = res;
 190		res->change_detected = 0;
 191		atomic_set(&res->read_failures, 0);
 192		atomic_set(&res->write_failures, 0);
 193		rc = 0;
 194	}
 195	spin_unlock_irqrestore(&pinstance->resource_lock, lock_flags);
 196	return rc;
 197}
 198
 199/**
 200 * pmcraid_device_configure - Configures a SCSI device
 201 * @scsi_dev: scsi device struct
 202 * @lim: queue limits
 203 *
 204 * This function is executed by SCSI mid layer just after a device is first
 205 * scanned (i.e. it has responded to an INQUIRY). For VSET resources, the
 206 * timeout value (default 30s) will be over-written to a higher value (60s)
 207 * and max_sectors value will be over-written to 512. It also sets queue depth
 208 * to host->cmd_per_lun value
 209 *
 210 * Return value:
 211 *	  0 on success
 212 */
 213static int pmcraid_device_configure(struct scsi_device *scsi_dev,
 214		struct queue_limits *lim)
 215{
 216	struct pmcraid_resource_entry *res = scsi_dev->hostdata;
 217
 218	if (!res)
 219		return 0;
 220
 221	/* LLD exposes VSETs and Enclosure devices only */
 222	if (RES_IS_GSCSI(res->cfg_entry) &&
 223	    scsi_dev->type != TYPE_ENCLOSURE)
 224		return -ENXIO;
 225
 226	pmcraid_info("configuring %x:%x:%x:%x\n",
 227		     scsi_dev->host->unique_id,
 228		     scsi_dev->channel,
 229		     scsi_dev->id,
 230		     (u8)scsi_dev->lun);
 231
 232	if (RES_IS_GSCSI(res->cfg_entry)) {
 233		scsi_dev->allow_restart = 1;
 234	} else if (RES_IS_VSET(res->cfg_entry)) {
 235		scsi_dev->allow_restart = 1;
 236		blk_queue_rq_timeout(scsi_dev->request_queue,
 237				     PMCRAID_VSET_IO_TIMEOUT);
 238		lim->max_hw_sectors = PMCRAID_VSET_MAX_SECTORS;
 
 239	}
 240
 241	/*
 242	 * We never want to report TCQ support for these types of devices.
 243	 */
 244	if (!RES_IS_GSCSI(res->cfg_entry) && !RES_IS_VSET(res->cfg_entry))
 245		scsi_dev->tagged_supported = 0;
 
 
 
 
 246
 247	return 0;
 248}
 249
 250/**
 251 * pmcraid_slave_destroy - Unconfigure a SCSI device before removing it
 252 *
 253 * @scsi_dev: scsi device struct
 254 *
 255 * This is called by mid-layer before removing a device. Pointer assignments
 256 * done in pmcraid_slave_alloc will be reset to NULL here.
 257 *
 258 * Return value
 259 *   none
 260 */
 261static void pmcraid_slave_destroy(struct scsi_device *scsi_dev)
 262{
 263	struct pmcraid_resource_entry *res;
 264
 265	res = (struct pmcraid_resource_entry *)scsi_dev->hostdata;
 266
 267	if (res)
 268		res->scsi_dev = NULL;
 269
 270	scsi_dev->hostdata = NULL;
 271}
 272
 273/**
 274 * pmcraid_change_queue_depth - Change the device's queue depth
 275 * @scsi_dev: scsi device struct
 276 * @depth: depth to set
 
 277 *
 278 * Return value
 279 *	actual depth set
 280 */
 281static int pmcraid_change_queue_depth(struct scsi_device *scsi_dev, int depth)
 
 282{
 
 
 
 283	if (depth > PMCRAID_MAX_CMD_PER_LUN)
 284		depth = PMCRAID_MAX_CMD_PER_LUN;
 285	return scsi_change_queue_depth(scsi_dev, depth);
 
 
 
 286}
 287
 288/**
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 289 * pmcraid_init_cmdblk - initializes a command block
 290 *
 291 * @cmd: pointer to struct pmcraid_cmd to be initialized
 292 * @index: if >=0 first time initialization; otherwise reinitialization
 293 *
 294 * Return Value
 295 *	 None
 296 */
 297static void pmcraid_init_cmdblk(struct pmcraid_cmd *cmd, int index)
 298{
 299	struct pmcraid_ioarcb *ioarcb = &(cmd->ioa_cb->ioarcb);
 300	dma_addr_t dma_addr = cmd->ioa_cb_bus_addr;
 301
 302	if (index >= 0) {
 303		/* first time initialization (called from  probe) */
 304		u32 ioasa_offset =
 305			offsetof(struct pmcraid_control_block, ioasa);
 306
 307		cmd->index = index;
 308		ioarcb->response_handle = cpu_to_le32(index << 2);
 309		ioarcb->ioarcb_bus_addr = cpu_to_le64(dma_addr);
 310		ioarcb->ioasa_bus_addr = cpu_to_le64(dma_addr + ioasa_offset);
 311		ioarcb->ioasa_len = cpu_to_le16(sizeof(struct pmcraid_ioasa));
 312	} else {
 313		/* re-initialization of various lengths, called once command is
 314		 * processed by IOA
 315		 */
 316		memset(&cmd->ioa_cb->ioarcb.cdb, 0, PMCRAID_MAX_CDB_LEN);
 317		ioarcb->hrrq_id = 0;
 318		ioarcb->request_flags0 = 0;
 319		ioarcb->request_flags1 = 0;
 320		ioarcb->cmd_timeout = 0;
 321		ioarcb->ioarcb_bus_addr &= cpu_to_le64(~0x1FULL);
 322		ioarcb->ioadl_bus_addr = 0;
 323		ioarcb->ioadl_length = 0;
 324		ioarcb->data_transfer_length = 0;
 325		ioarcb->add_cmd_param_length = 0;
 326		ioarcb->add_cmd_param_offset = 0;
 327		cmd->ioa_cb->ioasa.ioasc = 0;
 328		cmd->ioa_cb->ioasa.residual_data_length = 0;
 329		cmd->time_left = 0;
 330	}
 331
 332	cmd->cmd_done = NULL;
 333	cmd->scsi_cmd = NULL;
 334	cmd->release = 0;
 335	cmd->completion_req = 0;
 336	cmd->sense_buffer = NULL;
 337	cmd->sense_buffer_dma = 0;
 338	cmd->dma_handle = 0;
 339	timer_setup(&cmd->timer, NULL, 0);
 340}
 341
 342/**
 343 * pmcraid_reinit_cmdblk - reinitialize a command block
 344 *
 345 * @cmd: pointer to struct pmcraid_cmd to be reinitialized
 346 *
 347 * Return Value
 348 *	 None
 349 */
 350static void pmcraid_reinit_cmdblk(struct pmcraid_cmd *cmd)
 351{
 352	pmcraid_init_cmdblk(cmd, -1);
 353}
 354
 355/**
 356 * pmcraid_get_free_cmd - get a free cmd block from command block pool
 357 * @pinstance: adapter instance structure
 358 *
 359 * Return Value:
 360 *	returns pointer to cmd block or NULL if no blocks are available
 361 */
 362static struct pmcraid_cmd *pmcraid_get_free_cmd(
 363	struct pmcraid_instance *pinstance
 364)
 365{
 366	struct pmcraid_cmd *cmd = NULL;
 367	unsigned long lock_flags;
 368
 369	/* free cmd block list is protected by free_pool_lock */
 370	spin_lock_irqsave(&pinstance->free_pool_lock, lock_flags);
 371
 372	if (!list_empty(&pinstance->free_cmd_pool)) {
 373		cmd = list_entry(pinstance->free_cmd_pool.next,
 374				 struct pmcraid_cmd, free_list);
 375		list_del(&cmd->free_list);
 376	}
 377	spin_unlock_irqrestore(&pinstance->free_pool_lock, lock_flags);
 378
 379	/* Initialize the command block before giving it the caller */
 380	if (cmd != NULL)
 381		pmcraid_reinit_cmdblk(cmd);
 382	return cmd;
 383}
 384
 385/**
 386 * pmcraid_return_cmd - return a completed command block back into free pool
 387 * @cmd: pointer to the command block
 388 *
 389 * Return Value:
 390 *	nothing
 391 */
 392static void pmcraid_return_cmd(struct pmcraid_cmd *cmd)
 393{
 394	struct pmcraid_instance *pinstance = cmd->drv_inst;
 395	unsigned long lock_flags;
 396
 397	spin_lock_irqsave(&pinstance->free_pool_lock, lock_flags);
 398	list_add_tail(&cmd->free_list, &pinstance->free_cmd_pool);
 399	spin_unlock_irqrestore(&pinstance->free_pool_lock, lock_flags);
 400}
 401
 402/**
 403 * pmcraid_read_interrupts -  reads IOA interrupts
 404 *
 405 * @pinstance: pointer to adapter instance structure
 406 *
 407 * Return value
 408 *	 interrupts read from IOA
 409 */
 410static u32 pmcraid_read_interrupts(struct pmcraid_instance *pinstance)
 411{
 412	return (pinstance->interrupt_mode) ?
 413		ioread32(pinstance->int_regs.ioa_host_msix_interrupt_reg) :
 414		ioread32(pinstance->int_regs.ioa_host_interrupt_reg);
 415}
 416
 417/**
 418 * pmcraid_disable_interrupts - Masks and clears all specified interrupts
 419 *
 420 * @pinstance: pointer to per adapter instance structure
 421 * @intrs: interrupts to disable
 422 *
 423 * Return Value
 424 *	 None
 425 */
 426static void pmcraid_disable_interrupts(
 427	struct pmcraid_instance *pinstance,
 428	u32 intrs
 429)
 430{
 431	u32 gmask = ioread32(pinstance->int_regs.global_interrupt_mask_reg);
 432	u32 nmask = gmask | GLOBAL_INTERRUPT_MASK;
 433
 434	iowrite32(intrs, pinstance->int_regs.ioa_host_interrupt_clr_reg);
 435	iowrite32(nmask, pinstance->int_regs.global_interrupt_mask_reg);
 436	ioread32(pinstance->int_regs.global_interrupt_mask_reg);
 437
 438	if (!pinstance->interrupt_mode) {
 439		iowrite32(intrs,
 440			pinstance->int_regs.ioa_host_interrupt_mask_reg);
 441		ioread32(pinstance->int_regs.ioa_host_interrupt_mask_reg);
 442	}
 443}
 444
 445/**
 446 * pmcraid_enable_interrupts - Enables specified interrupts
 447 *
 448 * @pinstance: pointer to per adapter instance structure
 449 * @intrs: interrupts to enable
 450 *
 451 * Return Value
 452 *	 None
 453 */
 454static void pmcraid_enable_interrupts(
 455	struct pmcraid_instance *pinstance,
 456	u32 intrs)
 
 457{
 458	u32 gmask = ioread32(pinstance->int_regs.global_interrupt_mask_reg);
 459	u32 nmask = gmask & (~GLOBAL_INTERRUPT_MASK);
 460
 461	iowrite32(nmask, pinstance->int_regs.global_interrupt_mask_reg);
 462
 463	if (!pinstance->interrupt_mode) {
 464		iowrite32(~intrs,
 465			 pinstance->int_regs.ioa_host_interrupt_mask_reg);
 466		ioread32(pinstance->int_regs.ioa_host_interrupt_mask_reg);
 467	}
 468
 469	pmcraid_info("enabled interrupts global mask = %x intr_mask = %x\n",
 470		ioread32(pinstance->int_regs.global_interrupt_mask_reg),
 471		ioread32(pinstance->int_regs.ioa_host_interrupt_mask_reg));
 472}
 473
 474/**
 475 * pmcraid_clr_trans_op - clear trans to op interrupt
 476 *
 477 * @pinstance: pointer to per adapter instance structure
 478 *
 479 * Return Value
 480 *	 None
 481 */
 482static void pmcraid_clr_trans_op(
 483	struct pmcraid_instance *pinstance
 484)
 485{
 486	unsigned long lock_flags;
 487
 488	if (!pinstance->interrupt_mode) {
 489		iowrite32(INTRS_TRANSITION_TO_OPERATIONAL,
 490			pinstance->int_regs.ioa_host_interrupt_mask_reg);
 491		ioread32(pinstance->int_regs.ioa_host_interrupt_mask_reg);
 492		iowrite32(INTRS_TRANSITION_TO_OPERATIONAL,
 493			pinstance->int_regs.ioa_host_interrupt_clr_reg);
 494		ioread32(pinstance->int_regs.ioa_host_interrupt_clr_reg);
 495	}
 496
 497	if (pinstance->reset_cmd != NULL) {
 498		del_timer(&pinstance->reset_cmd->timer);
 499		spin_lock_irqsave(
 500			pinstance->host->host_lock, lock_flags);
 501		pinstance->reset_cmd->cmd_done(pinstance->reset_cmd);
 502		spin_unlock_irqrestore(
 503			pinstance->host->host_lock, lock_flags);
 504	}
 505}
 506
 507/**
 508 * pmcraid_reset_type - Determine the required reset type
 509 * @pinstance: pointer to adapter instance structure
 510 *
 511 * IOA requires hard reset if any of the following conditions is true.
 512 * 1. If HRRQ valid interrupt is not masked
 513 * 2. IOA reset alert doorbell is set
 514 * 3. If there are any error interrupts
 515 */
 516static void pmcraid_reset_type(struct pmcraid_instance *pinstance)
 517{
 518	u32 mask;
 519	u32 intrs;
 520	u32 alerts;
 521
 522	mask = ioread32(pinstance->int_regs.ioa_host_interrupt_mask_reg);
 523	intrs = ioread32(pinstance->int_regs.ioa_host_interrupt_reg);
 524	alerts = ioread32(pinstance->int_regs.host_ioa_interrupt_reg);
 525
 526	if ((mask & INTRS_HRRQ_VALID) == 0 ||
 527	    (alerts & DOORBELL_IOA_RESET_ALERT) ||
 528	    (intrs & PMCRAID_ERROR_INTERRUPTS)) {
 529		pmcraid_info("IOA requires hard reset\n");
 530		pinstance->ioa_hard_reset = 1;
 531	}
 532
 533	/* If unit check is active, trigger the dump */
 534	if (intrs & INTRS_IOA_UNIT_CHECK)
 535		pinstance->ioa_unit_check = 1;
 536}
 537
 538static void pmcraid_ioa_reset(struct pmcraid_cmd *);
 539/**
 540 * pmcraid_bist_done - completion function for PCI BIST
 541 * @t: pointer to reset command
 542 * Return Value
 543 *	none
 544 */
 545static void pmcraid_bist_done(struct timer_list *t)
 
 
 
 546{
 547	struct pmcraid_cmd *cmd = from_timer(cmd, t, timer);
 548	struct pmcraid_instance *pinstance = cmd->drv_inst;
 549	unsigned long lock_flags;
 550	int rc;
 551	u16 pci_reg;
 552
 553	rc = pci_read_config_word(pinstance->pdev, PCI_COMMAND, &pci_reg);
 554
 555	/* If PCI config space can't be accessed wait for another two secs */
 556	if ((rc != PCIBIOS_SUCCESSFUL || (!(pci_reg & PCI_COMMAND_MEMORY))) &&
 557	    cmd->time_left > 0) {
 558		pmcraid_info("BIST not complete, waiting another 2 secs\n");
 559		cmd->timer.expires = jiffies + cmd->time_left;
 560		cmd->time_left = 0;
 
 
 
 561		add_timer(&cmd->timer);
 562	} else {
 563		cmd->time_left = 0;
 564		pmcraid_info("BIST is complete, proceeding with reset\n");
 565		spin_lock_irqsave(pinstance->host->host_lock, lock_flags);
 566		pmcraid_ioa_reset(cmd);
 567		spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
 568	}
 569}
 570
 571/**
 572 * pmcraid_start_bist - starts BIST
 573 * @cmd: pointer to reset cmd
 574 * Return Value
 575 *   none
 576 */
 577static void pmcraid_start_bist(struct pmcraid_cmd *cmd)
 578{
 579	struct pmcraid_instance *pinstance = cmd->drv_inst;
 580	u32 doorbells, intrs;
 581
 582	/* proceed with bist and wait for 2 seconds */
 583	iowrite32(DOORBELL_IOA_START_BIST,
 584		pinstance->int_regs.host_ioa_interrupt_reg);
 585	doorbells = ioread32(pinstance->int_regs.host_ioa_interrupt_reg);
 586	intrs = ioread32(pinstance->int_regs.ioa_host_interrupt_reg);
 587	pmcraid_info("doorbells after start bist: %x intrs: %x\n",
 588		      doorbells, intrs);
 589
 590	cmd->time_left = msecs_to_jiffies(PMCRAID_BIST_TIMEOUT);
 
 591	cmd->timer.expires = jiffies + msecs_to_jiffies(PMCRAID_BIST_TIMEOUT);
 592	cmd->timer.function = pmcraid_bist_done;
 593	add_timer(&cmd->timer);
 594}
 595
 596/**
 597 * pmcraid_reset_alert_done - completion routine for reset_alert
 598 * @t: pointer to command block used in reset sequence
 599 * Return value
 600 *  None
 601 */
 602static void pmcraid_reset_alert_done(struct timer_list *t)
 603{
 604	struct pmcraid_cmd *cmd = from_timer(cmd, t, timer);
 605	struct pmcraid_instance *pinstance = cmd->drv_inst;
 606	u32 status = ioread32(pinstance->ioa_status);
 607	unsigned long lock_flags;
 608
 609	/* if the critical operation in progress bit is set or the wait times
 610	 * out, invoke reset engine to proceed with hard reset. If there is
 611	 * some more time to wait, restart the timer
 612	 */
 613	if (((status & INTRS_CRITICAL_OP_IN_PROGRESS) == 0) ||
 614	    cmd->time_left <= 0) {
 615		pmcraid_info("critical op is reset proceeding with reset\n");
 616		spin_lock_irqsave(pinstance->host->host_lock, lock_flags);
 617		pmcraid_ioa_reset(cmd);
 618		spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
 619	} else {
 620		pmcraid_info("critical op is not yet reset waiting again\n");
 621		/* restart timer if some more time is available to wait */
 622		cmd->time_left -= PMCRAID_CHECK_FOR_RESET_TIMEOUT;
 
 623		cmd->timer.expires = jiffies + PMCRAID_CHECK_FOR_RESET_TIMEOUT;
 624		cmd->timer.function = pmcraid_reset_alert_done;
 
 625		add_timer(&cmd->timer);
 626	}
 627}
 628
 629static void pmcraid_notify_ioastate(struct pmcraid_instance *, u32);
 630/**
 631 * pmcraid_reset_alert - alerts IOA for a possible reset
 632 * @cmd: command block to be used for reset sequence.
 633 *
 634 * Return Value
 635 *	returns 0 if pci config-space is accessible and RESET_DOORBELL is
 636 *	successfully written to IOA. Returns non-zero in case pci_config_space
 637 *	is not accessible
 638 */
 
 639static void pmcraid_reset_alert(struct pmcraid_cmd *cmd)
 640{
 641	struct pmcraid_instance *pinstance = cmd->drv_inst;
 642	u32 doorbells;
 643	int rc;
 644	u16 pci_reg;
 645
 646	/* If we are able to access IOA PCI config space, alert IOA that we are
 647	 * going to reset it soon. This enables IOA to preserv persistent error
 648	 * data if any. In case memory space is not accessible, proceed with
 649	 * BIST or slot_reset
 650	 */
 651	rc = pci_read_config_word(pinstance->pdev, PCI_COMMAND, &pci_reg);
 652	if ((rc == PCIBIOS_SUCCESSFUL) && (pci_reg & PCI_COMMAND_MEMORY)) {
 653
 654		/* wait for IOA permission i.e until CRITICAL_OPERATION bit is
 655		 * reset IOA doesn't generate any interrupts when CRITICAL
 656		 * OPERATION bit is reset. A timer is started to wait for this
 657		 * bit to be reset.
 658		 */
 659		cmd->time_left = PMCRAID_RESET_TIMEOUT;
 
 660		cmd->timer.expires = jiffies + PMCRAID_CHECK_FOR_RESET_TIMEOUT;
 661		cmd->timer.function = pmcraid_reset_alert_done;
 
 662		add_timer(&cmd->timer);
 663
 664		iowrite32(DOORBELL_IOA_RESET_ALERT,
 665			pinstance->int_regs.host_ioa_interrupt_reg);
 666		doorbells =
 667			ioread32(pinstance->int_regs.host_ioa_interrupt_reg);
 668		pmcraid_info("doorbells after reset alert: %x\n", doorbells);
 669	} else {
 670		pmcraid_info("PCI config is not accessible starting BIST\n");
 671		pinstance->ioa_state = IOA_STATE_IN_HARD_RESET;
 672		pmcraid_start_bist(cmd);
 673	}
 674}
 675
 676/**
 677 * pmcraid_timeout_handler -  Timeout handler for internally generated ops
 678 *
 679 * @t: pointer to command structure, that got timedout
 680 *
 681 * This function blocks host requests and initiates an adapter reset.
 682 *
 683 * Return value:
 684 *   None
 685 */
 686static void pmcraid_timeout_handler(struct timer_list *t)
 687{
 688	struct pmcraid_cmd *cmd = from_timer(cmd, t, timer);
 689	struct pmcraid_instance *pinstance = cmd->drv_inst;
 690	unsigned long lock_flags;
 691
 692	dev_info(&pinstance->pdev->dev,
 693		"Adapter being reset due to cmd(CDB[0] = %x) timeout\n",
 694		cmd->ioa_cb->ioarcb.cdb[0]);
 695
 696	/* Command timeouts result in hard reset sequence. The command that got
 697	 * timed out may be the one used as part of reset sequence. In this
 698	 * case restart reset sequence using the same command block even if
 699	 * reset is in progress. Otherwise fail this command and get a free
 700	 * command block to restart the reset sequence.
 701	 */
 702	spin_lock_irqsave(pinstance->host->host_lock, lock_flags);
 703	if (!pinstance->ioa_reset_in_progress) {
 704		pinstance->ioa_reset_attempts = 0;
 705		cmd = pmcraid_get_free_cmd(pinstance);
 706
 707		/* If we are out of command blocks, just return here itself.
 708		 * Some other command's timeout handler can do the reset job
 709		 */
 710		if (cmd == NULL) {
 711			spin_unlock_irqrestore(pinstance->host->host_lock,
 712					       lock_flags);
 713			pmcraid_err("no free cmnd block for timeout handler\n");
 714			return;
 715		}
 716
 717		pinstance->reset_cmd = cmd;
 718		pinstance->ioa_reset_in_progress = 1;
 719	} else {
 720		pmcraid_info("reset is already in progress\n");
 721
 722		if (pinstance->reset_cmd != cmd) {
 723			/* This command should have been given to IOA, this
 724			 * command will be completed by fail_outstanding_cmds
 725			 * anyway
 726			 */
 727			pmcraid_err("cmd is pending but reset in progress\n");
 728		}
 729
 730		/* If this command was being used as part of the reset
 731		 * sequence, set cmd_done pointer to pmcraid_ioa_reset. This
 732		 * causes fail_outstanding_commands not to return the command
 733		 * block back to free pool
 734		 */
 735		if (cmd == pinstance->reset_cmd)
 736			cmd->cmd_done = pmcraid_ioa_reset;
 737	}
 738
 739	/* Notify apps of important IOA bringup/bringdown sequences */
 740	if (pinstance->scn.ioa_state != PMC_DEVICE_EVENT_RESET_START &&
 741	    pinstance->scn.ioa_state != PMC_DEVICE_EVENT_SHUTDOWN_START)
 742		pmcraid_notify_ioastate(pinstance,
 743					PMC_DEVICE_EVENT_RESET_START);
 744
 745	pinstance->ioa_state = IOA_STATE_IN_RESET_ALERT;
 746	scsi_block_requests(pinstance->host);
 747	pmcraid_reset_alert(cmd);
 748	spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
 749}
 750
 751/**
 752 * pmcraid_internal_done - completion routine for internally generated cmds
 753 *
 754 * @cmd: command that got response from IOA
 755 *
 756 * Return Value:
 757 *	 none
 758 */
 759static void pmcraid_internal_done(struct pmcraid_cmd *cmd)
 760{
 761	pmcraid_info("response internal cmd CDB[0] = %x ioasc = %x\n",
 762		     cmd->ioa_cb->ioarcb.cdb[0],
 763		     le32_to_cpu(cmd->ioa_cb->ioasa.ioasc));
 764
 765	/* Some of the internal commands are sent with callers blocking for the
 766	 * response. Same will be indicated as part of cmd->completion_req
 767	 * field. Response path needs to wake up any waiters waiting for cmd
 768	 * completion if this flag is set.
 769	 */
 770	if (cmd->completion_req) {
 771		cmd->completion_req = 0;
 772		complete(&cmd->wait_for_completion);
 773	}
 774
 775	/* most of the internal commands are completed by caller itself, so
 776	 * no need to return the command block back to free pool until we are
 777	 * required to do so (e.g once done with initialization).
 778	 */
 779	if (cmd->release) {
 780		cmd->release = 0;
 781		pmcraid_return_cmd(cmd);
 782	}
 783}
 784
 785/**
 786 * pmcraid_reinit_cfgtable_done - done function for cfg table reinitialization
 787 *
 788 * @cmd: command that got response from IOA
 789 *
 790 * This routine is called after driver re-reads configuration table due to a
 791 * lost CCN. It returns the command block back to free pool and schedules
 792 * worker thread to add/delete devices into the system.
 793 *
 794 * Return Value:
 795 *	 none
 796 */
 797static void pmcraid_reinit_cfgtable_done(struct pmcraid_cmd *cmd)
 798{
 799	pmcraid_info("response internal cmd CDB[0] = %x ioasc = %x\n",
 800		     cmd->ioa_cb->ioarcb.cdb[0],
 801		     le32_to_cpu(cmd->ioa_cb->ioasa.ioasc));
 802
 803	if (cmd->release) {
 804		cmd->release = 0;
 805		pmcraid_return_cmd(cmd);
 806	}
 807	pmcraid_info("scheduling worker for config table reinitialization\n");
 808	schedule_work(&cmd->drv_inst->worker_q);
 809}
 810
 811/**
 812 * pmcraid_erp_done - Process completion of SCSI error response from device
 813 * @cmd: pmcraid_command
 814 *
 815 * This function copies the sense buffer into the scsi_cmd struct and completes
 816 * scsi_cmd by calling scsi_done function.
 817 *
 818 * Return value:
 819 *  none
 820 */
 821static void pmcraid_erp_done(struct pmcraid_cmd *cmd)
 822{
 823	struct scsi_cmnd *scsi_cmd = cmd->scsi_cmd;
 824	struct pmcraid_instance *pinstance = cmd->drv_inst;
 825	u32 ioasc = le32_to_cpu(cmd->ioa_cb->ioasa.ioasc);
 826
 827	if (PMCRAID_IOASC_SENSE_KEY(ioasc) > 0) {
 828		scsi_cmd->result |= (DID_ERROR << 16);
 829		scmd_printk(KERN_INFO, scsi_cmd,
 830			    "command CDB[0] = %x failed with IOASC: 0x%08X\n",
 831			    cmd->ioa_cb->ioarcb.cdb[0], ioasc);
 832	}
 833
 834	if (cmd->sense_buffer) {
 835		dma_unmap_single(&pinstance->pdev->dev, cmd->sense_buffer_dma,
 836				 SCSI_SENSE_BUFFERSIZE, DMA_FROM_DEVICE);
 
 
 
 
 
 
 
 837		cmd->sense_buffer = NULL;
 838		cmd->sense_buffer_dma = 0;
 839	}
 840
 841	scsi_dma_unmap(scsi_cmd);
 842	pmcraid_return_cmd(cmd);
 843	scsi_done(scsi_cmd);
 844}
 845
 846/**
 847 * _pmcraid_fire_command - sends an IOA command to adapter
 848 *
 849 * This function adds the given block into pending command list
 850 * and returns without waiting
 851 *
 852 * @cmd : command to be sent to the device
 853 *
 854 * Return Value
 855 *	None
 856 */
 857static void _pmcraid_fire_command(struct pmcraid_cmd *cmd)
 858{
 859	struct pmcraid_instance *pinstance = cmd->drv_inst;
 860	unsigned long lock_flags;
 861
 862	/* Add this command block to pending cmd pool. We do this prior to
 863	 * writting IOARCB to ioarrin because IOA might complete the command
 864	 * by the time we are about to add it to the list. Response handler
 865	 * (isr/tasklet) looks for cmd block in the pending pending list.
 866	 */
 867	spin_lock_irqsave(&pinstance->pending_pool_lock, lock_flags);
 868	list_add_tail(&cmd->free_list, &pinstance->pending_cmd_pool);
 869	spin_unlock_irqrestore(&pinstance->pending_pool_lock, lock_flags);
 870	atomic_inc(&pinstance->outstanding_cmds);
 871
 872	/* driver writes lower 32-bit value of IOARCB address only */
 873	mb();
 874	iowrite32(le64_to_cpu(cmd->ioa_cb->ioarcb.ioarcb_bus_addr), pinstance->ioarrin);
 
 875}
 876
 877/**
 878 * pmcraid_send_cmd - fires a command to IOA
 879 *
 880 * This function also sets up timeout function, and command completion
 881 * function
 882 *
 883 * @cmd: pointer to the command block to be fired to IOA
 884 * @cmd_done: command completion function, called once IOA responds
 885 * @timeout: timeout to wait for this command completion
 886 * @timeout_func: timeout handler
 887 *
 888 * Return value
 889 *   none
 890 */
 891static void pmcraid_send_cmd(
 892	struct pmcraid_cmd *cmd,
 893	void (*cmd_done) (struct pmcraid_cmd *),
 894	unsigned long timeout,
 895	void (*timeout_func) (struct timer_list *)
 896)
 897{
 898	/* initialize done function */
 899	cmd->cmd_done = cmd_done;
 900
 901	if (timeout_func) {
 902		/* setup timeout handler */
 
 903		cmd->timer.expires = jiffies + timeout;
 904		cmd->timer.function = timeout_func;
 905		add_timer(&cmd->timer);
 906	}
 907
 908	/* fire the command to IOA */
 909	_pmcraid_fire_command(cmd);
 910}
 911
 912/**
 913 * pmcraid_ioa_shutdown_done - completion function for IOA shutdown command
 914 * @cmd: pointer to the command block used for sending IOA shutdown command
 915 *
 916 * Return value
 917 *  None
 918 */
 919static void pmcraid_ioa_shutdown_done(struct pmcraid_cmd *cmd)
 920{
 921	struct pmcraid_instance *pinstance = cmd->drv_inst;
 922	unsigned long lock_flags;
 923
 924	spin_lock_irqsave(pinstance->host->host_lock, lock_flags);
 925	pmcraid_ioa_reset(cmd);
 926	spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
 927}
 928
 929/**
 930 * pmcraid_ioa_shutdown - sends SHUTDOWN command to ioa
 931 *
 932 * @cmd: pointer to the command block used as part of reset sequence
 933 *
 934 * Return Value
 935 *  None
 936 */
 937static void pmcraid_ioa_shutdown(struct pmcraid_cmd *cmd)
 938{
 939	pmcraid_info("response for Cancel CCN CDB[0] = %x ioasc = %x\n",
 940		     cmd->ioa_cb->ioarcb.cdb[0],
 941		     le32_to_cpu(cmd->ioa_cb->ioasa.ioasc));
 942
 943	/* Note that commands sent during reset require next command to be sent
 944	 * to IOA. Hence reinit the done function as well as timeout function
 945	 */
 946	pmcraid_reinit_cmdblk(cmd);
 947	cmd->ioa_cb->ioarcb.request_type = REQ_TYPE_IOACMD;
 948	cmd->ioa_cb->ioarcb.resource_handle =
 949		cpu_to_le32(PMCRAID_IOA_RES_HANDLE);
 950	cmd->ioa_cb->ioarcb.cdb[0] = PMCRAID_IOA_SHUTDOWN;
 951	cmd->ioa_cb->ioarcb.cdb[1] = PMCRAID_SHUTDOWN_NORMAL;
 952
 953	/* fire shutdown command to hardware. */
 954	pmcraid_info("firing normal shutdown command (%d) to IOA\n",
 955		     le32_to_cpu(cmd->ioa_cb->ioarcb.response_handle));
 956
 957	pmcraid_notify_ioastate(cmd->drv_inst, PMC_DEVICE_EVENT_SHUTDOWN_START);
 958
 959	pmcraid_send_cmd(cmd, pmcraid_ioa_shutdown_done,
 960			 PMCRAID_SHUTDOWN_TIMEOUT,
 961			 pmcraid_timeout_handler);
 962}
 963
 964static void pmcraid_querycfg(struct pmcraid_cmd *);
 965/**
 966 * pmcraid_get_fwversion_done - completion function for get_fwversion
 967 *
 968 * @cmd: pointer to command block used to send INQUIRY command
 969 *
 970 * Return Value
 971 *	none
 972 */
 
 
 973static void pmcraid_get_fwversion_done(struct pmcraid_cmd *cmd)
 974{
 975	struct pmcraid_instance *pinstance = cmd->drv_inst;
 976	u32 ioasc = le32_to_cpu(cmd->ioa_cb->ioasa.ioasc);
 977	unsigned long lock_flags;
 978
 979	/* configuration table entry size depends on firmware version. If fw
 980	 * version is not known, it is not possible to interpret IOA config
 981	 * table
 982	 */
 983	if (ioasc) {
 984		pmcraid_err("IOA Inquiry failed with %x\n", ioasc);
 985		spin_lock_irqsave(pinstance->host->host_lock, lock_flags);
 986		pinstance->ioa_state = IOA_STATE_IN_RESET_ALERT;
 987		pmcraid_reset_alert(cmd);
 988		spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
 989	} else  {
 990		pmcraid_querycfg(cmd);
 991	}
 992}
 993
 994/**
 995 * pmcraid_get_fwversion - reads firmware version information
 996 *
 997 * @cmd: pointer to command block used to send INQUIRY command
 998 *
 999 * Return Value
1000 *	none
1001 */
1002static void pmcraid_get_fwversion(struct pmcraid_cmd *cmd)
1003{
1004	struct pmcraid_ioarcb *ioarcb = &cmd->ioa_cb->ioarcb;
1005	struct pmcraid_ioadl_desc *ioadl;
1006	struct pmcraid_instance *pinstance = cmd->drv_inst;
1007	u16 data_size = sizeof(struct pmcraid_inquiry_data);
1008
1009	pmcraid_reinit_cmdblk(cmd);
1010	ioarcb->request_type = REQ_TYPE_SCSI;
1011	ioarcb->resource_handle = cpu_to_le32(PMCRAID_IOA_RES_HANDLE);
1012	ioarcb->cdb[0] = INQUIRY;
1013	ioarcb->cdb[1] = 1;
1014	ioarcb->cdb[2] = 0xD0;
1015	ioarcb->cdb[3] = (data_size >> 8) & 0xFF;
1016	ioarcb->cdb[4] = data_size & 0xFF;
1017
1018	/* Since entire inquiry data it can be part of IOARCB itself
1019	 */
1020	ioarcb->ioadl_bus_addr = cpu_to_le64((cmd->ioa_cb_bus_addr) +
1021					offsetof(struct pmcraid_ioarcb,
1022						add_data.u.ioadl[0]));
1023	ioarcb->ioadl_length = cpu_to_le32(sizeof(struct pmcraid_ioadl_desc));
1024	ioarcb->ioarcb_bus_addr &= cpu_to_le64(~(0x1FULL));
1025
1026	ioarcb->request_flags0 |= NO_LINK_DESCS;
1027	ioarcb->data_transfer_length = cpu_to_le32(data_size);
1028	ioadl = &(ioarcb->add_data.u.ioadl[0]);
1029	ioadl->flags = IOADL_FLAGS_LAST_DESC;
1030	ioadl->address = cpu_to_le64(pinstance->inq_data_baddr);
1031	ioadl->data_len = cpu_to_le32(data_size);
1032
1033	pmcraid_send_cmd(cmd, pmcraid_get_fwversion_done,
1034			 PMCRAID_INTERNAL_TIMEOUT, pmcraid_timeout_handler);
1035}
1036
1037/**
1038 * pmcraid_identify_hrrq - registers host rrq buffers with IOA
1039 * @cmd: pointer to command block to be used for identify hrrq
1040 *
1041 * Return Value
1042 *	 none
1043 */
1044static void pmcraid_identify_hrrq(struct pmcraid_cmd *cmd)
1045{
1046	struct pmcraid_instance *pinstance = cmd->drv_inst;
1047	struct pmcraid_ioarcb *ioarcb = &cmd->ioa_cb->ioarcb;
1048	int index = cmd->hrrq_index;
1049	__be64 hrrq_addr = cpu_to_be64(pinstance->hrrq_start_bus_addr[index]);
1050	__be32 hrrq_size = cpu_to_be32(sizeof(u32) * PMCRAID_MAX_CMD);
1051	void (*done_function)(struct pmcraid_cmd *);
1052
1053	pmcraid_reinit_cmdblk(cmd);
1054	cmd->hrrq_index = index + 1;
1055
1056	if (cmd->hrrq_index < pinstance->num_hrrq) {
1057		done_function = pmcraid_identify_hrrq;
1058	} else {
1059		cmd->hrrq_index = 0;
1060		done_function = pmcraid_get_fwversion;
1061	}
1062
1063	/* Initialize ioarcb */
1064	ioarcb->request_type = REQ_TYPE_IOACMD;
1065	ioarcb->resource_handle = cpu_to_le32(PMCRAID_IOA_RES_HANDLE);
1066
1067	/* initialize the hrrq number where IOA will respond to this command */
1068	ioarcb->hrrq_id = index;
1069	ioarcb->cdb[0] = PMCRAID_IDENTIFY_HRRQ;
1070	ioarcb->cdb[1] = index;
1071
1072	/* IOA expects 64-bit pci address to be written in B.E format
1073	 * (i.e cdb[2]=MSByte..cdb[9]=LSB.
1074	 */
1075	pmcraid_info("HRRQ_IDENTIFY with hrrq:ioarcb:index => %llx:%llx:%x\n",
1076		     hrrq_addr, ioarcb->ioarcb_bus_addr, index);
1077
1078	memcpy(&(ioarcb->cdb[2]), &hrrq_addr, sizeof(hrrq_addr));
1079	memcpy(&(ioarcb->cdb[10]), &hrrq_size, sizeof(hrrq_size));
1080
1081	/* Subsequent commands require HRRQ identification to be successful.
1082	 * Note that this gets called even during reset from SCSI mid-layer
1083	 * or tasklet
1084	 */
1085	pmcraid_send_cmd(cmd, done_function,
1086			 PMCRAID_INTERNAL_TIMEOUT,
1087			 pmcraid_timeout_handler);
1088}
1089
1090static void pmcraid_process_ccn(struct pmcraid_cmd *cmd);
1091static void pmcraid_process_ldn(struct pmcraid_cmd *cmd);
1092
1093/**
1094 * pmcraid_send_hcam_cmd - send an initialized command block(HCAM) to IOA
1095 *
1096 * @cmd: initialized command block pointer
1097 *
1098 * Return Value
1099 *   none
1100 */
1101static void pmcraid_send_hcam_cmd(struct pmcraid_cmd *cmd)
1102{
1103	if (cmd->ioa_cb->ioarcb.cdb[1] == PMCRAID_HCAM_CODE_CONFIG_CHANGE)
1104		atomic_set(&(cmd->drv_inst->ccn.ignore), 0);
1105	else
1106		atomic_set(&(cmd->drv_inst->ldn.ignore), 0);
1107
1108	pmcraid_send_cmd(cmd, cmd->cmd_done, 0, NULL);
1109}
1110
1111/**
1112 * pmcraid_init_hcam - send an initialized command block(HCAM) to IOA
1113 *
1114 * @pinstance: pointer to adapter instance structure
1115 * @type: HCAM type
1116 *
1117 * Return Value
1118 *   pointer to initialized pmcraid_cmd structure or NULL
1119 */
1120static struct pmcraid_cmd *pmcraid_init_hcam
1121(
1122	struct pmcraid_instance *pinstance,
1123	u8 type
1124)
1125{
1126	struct pmcraid_cmd *cmd;
1127	struct pmcraid_ioarcb *ioarcb;
1128	struct pmcraid_ioadl_desc *ioadl;
1129	struct pmcraid_hostrcb *hcam;
1130	void (*cmd_done) (struct pmcraid_cmd *);
1131	dma_addr_t dma;
1132	int rcb_size;
1133
1134	cmd = pmcraid_get_free_cmd(pinstance);
1135
1136	if (!cmd) {
1137		pmcraid_err("no free command blocks for hcam\n");
1138		return cmd;
1139	}
1140
1141	if (type == PMCRAID_HCAM_CODE_CONFIG_CHANGE) {
1142		rcb_size = sizeof(struct pmcraid_hcam_ccn_ext);
1143		cmd_done = pmcraid_process_ccn;
1144		dma = pinstance->ccn.baddr + PMCRAID_AEN_HDR_SIZE;
1145		hcam = &pinstance->ccn;
1146	} else {
1147		rcb_size = sizeof(struct pmcraid_hcam_ldn);
1148		cmd_done = pmcraid_process_ldn;
1149		dma = pinstance->ldn.baddr + PMCRAID_AEN_HDR_SIZE;
1150		hcam = &pinstance->ldn;
1151	}
1152
1153	/* initialize command pointer used for HCAM registration */
1154	hcam->cmd = cmd;
1155
1156	ioarcb = &cmd->ioa_cb->ioarcb;
1157	ioarcb->ioadl_bus_addr = cpu_to_le64((cmd->ioa_cb_bus_addr) +
1158					offsetof(struct pmcraid_ioarcb,
1159						add_data.u.ioadl[0]));
1160	ioarcb->ioadl_length = cpu_to_le32(sizeof(struct pmcraid_ioadl_desc));
1161	ioadl = ioarcb->add_data.u.ioadl;
1162
1163	/* Initialize ioarcb */
1164	ioarcb->request_type = REQ_TYPE_HCAM;
1165	ioarcb->resource_handle = cpu_to_le32(PMCRAID_IOA_RES_HANDLE);
1166	ioarcb->cdb[0] = PMCRAID_HOST_CONTROLLED_ASYNC;
1167	ioarcb->cdb[1] = type;
1168	ioarcb->cdb[7] = (rcb_size >> 8) & 0xFF;
1169	ioarcb->cdb[8] = (rcb_size) & 0xFF;
1170
1171	ioarcb->data_transfer_length = cpu_to_le32(rcb_size);
1172
1173	ioadl[0].flags |= IOADL_FLAGS_READ_LAST;
1174	ioadl[0].data_len = cpu_to_le32(rcb_size);
1175	ioadl[0].address = cpu_to_le64(dma);
1176
1177	cmd->cmd_done = cmd_done;
1178	return cmd;
1179}
1180
1181/**
1182 * pmcraid_send_hcam - Send an HCAM to IOA
1183 * @pinstance: ioa config struct
1184 * @type: HCAM type
1185 *
1186 * This function will send a Host Controlled Async command to IOA.
1187 *
1188 * Return value:
1189 *	none
1190 */
1191static void pmcraid_send_hcam(struct pmcraid_instance *pinstance, u8 type)
1192{
1193	struct pmcraid_cmd *cmd = pmcraid_init_hcam(pinstance, type);
1194	pmcraid_send_hcam_cmd(cmd);
1195}
1196
1197
1198/**
1199 * pmcraid_prepare_cancel_cmd - prepares a command block to abort another
1200 *
1201 * @cmd: pointer to cmd that is used as cancelling command
1202 * @cmd_to_cancel: pointer to the command that needs to be cancelled
1203 */
1204static void pmcraid_prepare_cancel_cmd(
1205	struct pmcraid_cmd *cmd,
1206	struct pmcraid_cmd *cmd_to_cancel
1207)
1208{
1209	struct pmcraid_ioarcb *ioarcb = &cmd->ioa_cb->ioarcb;
1210	__be64 ioarcb_addr;
1211
1212	/* IOARCB address of the command to be cancelled is given in
1213	 * cdb[2]..cdb[9] is Big-Endian format. Note that length bits in
1214	 * IOARCB address are not masked.
1215	 */
1216	ioarcb_addr = cpu_to_be64(le64_to_cpu(cmd_to_cancel->ioa_cb->ioarcb.ioarcb_bus_addr));
1217
1218	/* Get the resource handle to where the command to be aborted has been
1219	 * sent.
1220	 */
1221	ioarcb->resource_handle = cmd_to_cancel->ioa_cb->ioarcb.resource_handle;
1222	ioarcb->request_type = REQ_TYPE_IOACMD;
1223	memset(ioarcb->cdb, 0, PMCRAID_MAX_CDB_LEN);
1224	ioarcb->cdb[0] = PMCRAID_ABORT_CMD;
1225
 
 
 
 
 
1226	memcpy(&(ioarcb->cdb[2]), &ioarcb_addr, sizeof(ioarcb_addr));
1227}
1228
1229/**
1230 * pmcraid_cancel_hcam - sends ABORT task to abort a given HCAM
1231 *
1232 * @cmd: command to be used as cancelling command
1233 * @type: HCAM type
1234 * @cmd_done: op done function for the cancelling command
1235 */
1236static void pmcraid_cancel_hcam(
1237	struct pmcraid_cmd *cmd,
1238	u8 type,
1239	void (*cmd_done) (struct pmcraid_cmd *)
1240)
1241{
1242	struct pmcraid_instance *pinstance;
1243	struct pmcraid_hostrcb  *hcam;
1244
1245	pinstance = cmd->drv_inst;
1246	hcam =  (type == PMCRAID_HCAM_CODE_LOG_DATA) ?
1247		&pinstance->ldn : &pinstance->ccn;
1248
1249	/* prepare for cancelling previous hcam command. If the HCAM is
1250	 * currently not pending with IOA, we would have hcam->cmd as non-null
1251	 */
1252	if (hcam->cmd == NULL)
1253		return;
1254
1255	pmcraid_prepare_cancel_cmd(cmd, hcam->cmd);
1256
1257	/* writing to IOARRIN must be protected by host_lock, as mid-layer
1258	 * schedule queuecommand while we are doing this
1259	 */
1260	pmcraid_send_cmd(cmd, cmd_done,
1261			 PMCRAID_INTERNAL_TIMEOUT,
1262			 pmcraid_timeout_handler);
1263}
1264
1265/**
1266 * pmcraid_cancel_ccn - cancel CCN HCAM already registered with IOA
1267 *
1268 * @cmd: command block to be used for cancelling the HCAM
1269 */
1270static void pmcraid_cancel_ccn(struct pmcraid_cmd *cmd)
1271{
1272	pmcraid_info("response for Cancel LDN CDB[0] = %x ioasc = %x\n",
1273		     cmd->ioa_cb->ioarcb.cdb[0],
1274		     le32_to_cpu(cmd->ioa_cb->ioasa.ioasc));
1275
1276	pmcraid_reinit_cmdblk(cmd);
1277
1278	pmcraid_cancel_hcam(cmd,
1279			    PMCRAID_HCAM_CODE_CONFIG_CHANGE,
1280			    pmcraid_ioa_shutdown);
1281}
1282
1283/**
1284 * pmcraid_cancel_ldn - cancel LDN HCAM already registered with IOA
1285 *
1286 * @cmd: command block to be used for cancelling the HCAM
1287 */
1288static void pmcraid_cancel_ldn(struct pmcraid_cmd *cmd)
1289{
1290	pmcraid_cancel_hcam(cmd,
1291			    PMCRAID_HCAM_CODE_LOG_DATA,
1292			    pmcraid_cancel_ccn);
1293}
1294
1295/**
1296 * pmcraid_expose_resource - check if the resource can be exposed to OS
1297 *
1298 * @fw_version: firmware version code
1299 * @cfgte: pointer to configuration table entry of the resource
1300 *
1301 * Return value:
1302 *	true if resource can be added to midlayer, false(0) otherwise
1303 */
1304static int pmcraid_expose_resource(u16 fw_version,
1305				   struct pmcraid_config_table_entry *cfgte)
1306{
1307	int retval = 0;
1308
1309	if (cfgte->resource_type == RES_TYPE_VSET) {
1310		if (fw_version <= PMCRAID_FW_VERSION_1)
1311			retval = ((cfgte->unique_flags1 & 0x80) == 0);
1312		else
1313			retval = ((cfgte->unique_flags0 & 0x80) == 0 &&
1314				  (cfgte->unique_flags1 & 0x80) == 0);
1315
1316	} else if (cfgte->resource_type == RES_TYPE_GSCSI)
1317		retval = (RES_BUS(cfgte->resource_address) !=
1318				PMCRAID_VIRTUAL_ENCL_BUS_ID);
1319	return retval;
1320}
1321
1322/* attributes supported by pmcraid_event_family */
1323enum {
1324	PMCRAID_AEN_ATTR_UNSPEC,
1325	PMCRAID_AEN_ATTR_EVENT,
1326	__PMCRAID_AEN_ATTR_MAX,
1327};
1328#define PMCRAID_AEN_ATTR_MAX (__PMCRAID_AEN_ATTR_MAX - 1)
1329
1330/* commands supported by pmcraid_event_family */
1331enum {
1332	PMCRAID_AEN_CMD_UNSPEC,
1333	PMCRAID_AEN_CMD_EVENT,
1334	__PMCRAID_AEN_CMD_MAX,
1335};
1336#define PMCRAID_AEN_CMD_MAX (__PMCRAID_AEN_CMD_MAX - 1)
1337
1338static struct genl_multicast_group pmcraid_mcgrps[] = {
1339	{ .name = "events", /* not really used - see ID discussion below */ },
1340};
1341
1342static struct genl_family pmcraid_event_family __ro_after_init = {
1343	.module = THIS_MODULE,
1344	.name = "pmcraid",
1345	.version = 1,
1346	.maxattr = PMCRAID_AEN_ATTR_MAX,
1347	.mcgrps = pmcraid_mcgrps,
1348	.n_mcgrps = ARRAY_SIZE(pmcraid_mcgrps),
1349};
1350
1351/**
1352 * pmcraid_netlink_init - registers pmcraid_event_family
1353 *
1354 * Return value:
1355 *	0 if the pmcraid_event_family is successfully registered
1356 *	with netlink generic, non-zero otherwise
1357 */
1358static int __init pmcraid_netlink_init(void)
1359{
1360	int result;
1361
1362	result = genl_register_family(&pmcraid_event_family);
1363
1364	if (result)
1365		return result;
1366
1367	pmcraid_info("registered NETLINK GENERIC group: %d\n",
1368		     pmcraid_event_family.id);
1369
1370	return result;
1371}
1372
1373/**
1374 * pmcraid_netlink_release - unregisters pmcraid_event_family
1375 *
1376 * Return value:
1377 *	none
1378 */
1379static void pmcraid_netlink_release(void)
1380{
1381	genl_unregister_family(&pmcraid_event_family);
1382}
1383
1384/*
1385 * pmcraid_notify_aen - sends event msg to user space application
1386 * @pinstance: pointer to adapter instance structure
 
1387 *
1388 * Return value:
1389 *	0 if success, error value in case of any failure.
1390 */
1391static int pmcraid_notify_aen(
1392	struct pmcraid_instance *pinstance,
1393	struct pmcraid_aen_msg  *aen_msg,
1394	u32    data_size)
 
1395{
1396	struct sk_buff *skb;
1397	void *msg_header;
1398	u32  total_size, nla_genl_hdr_total_size;
1399	int result;
1400
1401	aen_msg->hostno = (pinstance->host->unique_id << 16 |
1402			   MINOR(pinstance->cdev.dev));
1403	aen_msg->length = data_size;
1404
1405	data_size += sizeof(*aen_msg);
1406
1407	total_size = nla_total_size(data_size);
1408	/* Add GENL_HDR to total_size */
1409	nla_genl_hdr_total_size =
1410		(total_size + (GENL_HDRLEN +
1411		((struct genl_family *)&pmcraid_event_family)->hdrsize)
1412		 + NLMSG_HDRLEN);
1413	skb = genlmsg_new(nla_genl_hdr_total_size, GFP_ATOMIC);
1414
1415
1416	if (!skb) {
1417		pmcraid_err("Failed to allocate aen data SKB of size: %x\n",
1418			     total_size);
1419		return -ENOMEM;
1420	}
1421
1422	/* add the genetlink message header */
1423	msg_header = genlmsg_put(skb, 0, 0,
1424				 &pmcraid_event_family, 0,
1425				 PMCRAID_AEN_CMD_EVENT);
1426	if (!msg_header) {
1427		pmcraid_err("failed to copy command details\n");
1428		nlmsg_free(skb);
1429		return -ENOMEM;
1430	}
1431
1432	result = nla_put(skb, PMCRAID_AEN_ATTR_EVENT, data_size, aen_msg);
1433
1434	if (result) {
1435		pmcraid_err("failed to copy AEN attribute data\n");
1436		nlmsg_free(skb);
1437		return -EINVAL;
1438	}
1439
1440	/* send genetlink multicast message to notify applications */
1441	genlmsg_end(skb, msg_header);
1442
1443	result = genlmsg_multicast(&pmcraid_event_family, skb,
1444				   0, 0, GFP_ATOMIC);
 
 
 
 
 
 
1445
1446	/* If there are no listeners, genlmsg_multicast may return non-zero
1447	 * value.
1448	 */
1449	if (result)
1450		pmcraid_info("error (%x) sending aen event message\n", result);
1451	return result;
1452}
1453
1454/**
1455 * pmcraid_notify_ccn - notifies about CCN event msg to user space
1456 * @pinstance: pointer adapter instance structure
1457 *
1458 * Return value:
1459 *	0 if success, error value in case of any failure
1460 */
1461static int pmcraid_notify_ccn(struct pmcraid_instance *pinstance)
1462{
1463	return pmcraid_notify_aen(pinstance,
1464				pinstance->ccn.msg,
1465				le32_to_cpu(pinstance->ccn.hcam->data_len) +
1466				sizeof(struct pmcraid_hcam_hdr));
1467}
1468
1469/**
1470 * pmcraid_notify_ldn - notifies about CCN event msg to user space
1471 * @pinstance: pointer adapter instance structure
1472 *
1473 * Return value:
1474 *	0 if success, error value in case of any failure
1475 */
1476static int pmcraid_notify_ldn(struct pmcraid_instance *pinstance)
1477{
1478	return pmcraid_notify_aen(pinstance,
1479				pinstance->ldn.msg,
1480				le32_to_cpu(pinstance->ldn.hcam->data_len) +
1481				sizeof(struct pmcraid_hcam_hdr));
1482}
1483
1484/**
1485 * pmcraid_notify_ioastate - sends IOA state event msg to user space
1486 * @pinstance: pointer adapter instance structure
1487 * @evt: controller state event to be sent
1488 *
1489 * Return value:
1490 *	0 if success, error value in case of any failure
1491 */
1492static void pmcraid_notify_ioastate(struct pmcraid_instance *pinstance, u32 evt)
1493{
1494	pinstance->scn.ioa_state = evt;
1495	pmcraid_notify_aen(pinstance,
1496			  &pinstance->scn.msg,
1497			  sizeof(u32));
1498}
1499
1500/**
1501 * pmcraid_handle_config_change - Handle a config change from the adapter
1502 * @pinstance: pointer to per adapter instance structure
1503 *
1504 * Return value:
1505 *  none
1506 */
1507
1508static void pmcraid_handle_config_change(struct pmcraid_instance *pinstance)
1509{
1510	struct pmcraid_config_table_entry *cfg_entry;
1511	struct pmcraid_hcam_ccn *ccn_hcam;
1512	struct pmcraid_cmd *cmd;
1513	struct pmcraid_cmd *cfgcmd;
1514	struct pmcraid_resource_entry *res = NULL;
1515	unsigned long lock_flags;
1516	unsigned long host_lock_flags;
1517	u32 new_entry = 1;
1518	u32 hidden_entry = 0;
1519	u16 fw_version;
1520	int rc;
1521
1522	ccn_hcam = (struct pmcraid_hcam_ccn *)pinstance->ccn.hcam;
1523	cfg_entry = &ccn_hcam->cfg_entry;
1524	fw_version = be16_to_cpu(pinstance->inq_data->fw_version);
1525
1526	pmcraid_info("CCN(%x): %x timestamp: %llx type: %x lost: %x flags: %x \
1527		 res: %x:%x:%x:%x\n",
1528		 le32_to_cpu(pinstance->ccn.hcam->ilid),
1529		 pinstance->ccn.hcam->op_code,
1530		(le32_to_cpu(pinstance->ccn.hcam->timestamp1) |
1531		((le32_to_cpu(pinstance->ccn.hcam->timestamp2) & 0xffffffffLL) << 32)),
1532		 pinstance->ccn.hcam->notification_type,
1533		 pinstance->ccn.hcam->notification_lost,
1534		 pinstance->ccn.hcam->flags,
1535		 pinstance->host->unique_id,
1536		 RES_IS_VSET(*cfg_entry) ? PMCRAID_VSET_BUS_ID :
1537		 (RES_IS_GSCSI(*cfg_entry) ? PMCRAID_PHYS_BUS_ID :
1538			RES_BUS(cfg_entry->resource_address)),
1539		 RES_IS_VSET(*cfg_entry) ?
1540			(fw_version <= PMCRAID_FW_VERSION_1 ?
1541				cfg_entry->unique_flags1 :
1542				le16_to_cpu(cfg_entry->array_id) & 0xFF) :
1543			RES_TARGET(cfg_entry->resource_address),
1544		 RES_LUN(cfg_entry->resource_address));
1545
1546
1547	/* If this HCAM indicates a lost notification, read the config table */
1548	if (pinstance->ccn.hcam->notification_lost) {
1549		cfgcmd = pmcraid_get_free_cmd(pinstance);
1550		if (cfgcmd) {
1551			pmcraid_info("lost CCN, reading config table\b");
1552			pinstance->reinit_cfg_table = 1;
1553			pmcraid_querycfg(cfgcmd);
1554		} else {
1555			pmcraid_err("lost CCN, no free cmd for querycfg\n");
1556		}
1557		goto out_notify_apps;
1558	}
1559
1560	/* If this resource is not going to be added to mid-layer, just notify
1561	 * applications and return. If this notification is about hiding a VSET
1562	 * resource, check if it was exposed already.
1563	 */
1564	if (pinstance->ccn.hcam->notification_type ==
1565	    NOTIFICATION_TYPE_ENTRY_CHANGED &&
1566	    cfg_entry->resource_type == RES_TYPE_VSET) {
1567		hidden_entry = (cfg_entry->unique_flags1 & 0x80) != 0;
 
 
 
 
 
1568	} else if (!pmcraid_expose_resource(fw_version, cfg_entry)) {
1569		goto out_notify_apps;
1570	}
1571
1572	spin_lock_irqsave(&pinstance->resource_lock, lock_flags);
1573	list_for_each_entry(res, &pinstance->used_res_q, queue) {
1574		rc = memcmp(&res->cfg_entry.resource_address,
1575			    &cfg_entry->resource_address,
1576			    sizeof(cfg_entry->resource_address));
1577		if (!rc) {
1578			new_entry = 0;
1579			break;
1580		}
1581	}
1582
1583	if (new_entry) {
1584
1585		if (hidden_entry) {
1586			spin_unlock_irqrestore(&pinstance->resource_lock,
1587						lock_flags);
1588			goto out_notify_apps;
1589		}
1590
1591		/* If there are more number of resources than what driver can
1592		 * manage, do not notify the applications about the CCN. Just
1593		 * ignore this notifications and re-register the same HCAM
1594		 */
1595		if (list_empty(&pinstance->free_res_q)) {
1596			spin_unlock_irqrestore(&pinstance->resource_lock,
1597						lock_flags);
1598			pmcraid_err("too many resources attached\n");
1599			spin_lock_irqsave(pinstance->host->host_lock,
1600					  host_lock_flags);
1601			pmcraid_send_hcam(pinstance,
1602					  PMCRAID_HCAM_CODE_CONFIG_CHANGE);
1603			spin_unlock_irqrestore(pinstance->host->host_lock,
1604					       host_lock_flags);
1605			return;
1606		}
1607
1608		res = list_entry(pinstance->free_res_q.next,
1609				 struct pmcraid_resource_entry, queue);
1610
1611		list_del(&res->queue);
1612		res->scsi_dev = NULL;
1613		res->reset_progress = 0;
1614		list_add_tail(&res->queue, &pinstance->used_res_q);
1615	}
1616
1617	memcpy(&res->cfg_entry, cfg_entry, pinstance->config_table_entry_size);
1618
1619	if (pinstance->ccn.hcam->notification_type ==
1620	    NOTIFICATION_TYPE_ENTRY_DELETED || hidden_entry) {
1621		if (res->scsi_dev) {
1622			if (fw_version <= PMCRAID_FW_VERSION_1)
1623				res->cfg_entry.unique_flags1 &= 0x7F;
1624			else
1625				res->cfg_entry.array_id &= cpu_to_le16(0xFF);
1626			res->change_detected = RES_CHANGE_DEL;
1627			res->cfg_entry.resource_handle =
1628				PMCRAID_INVALID_RES_HANDLE;
1629			schedule_work(&pinstance->worker_q);
1630		} else {
1631			/* This may be one of the non-exposed resources */
1632			list_move_tail(&res->queue, &pinstance->free_res_q);
1633		}
1634	} else if (!res->scsi_dev) {
1635		res->change_detected = RES_CHANGE_ADD;
1636		schedule_work(&pinstance->worker_q);
1637	}
1638	spin_unlock_irqrestore(&pinstance->resource_lock, lock_flags);
1639
1640out_notify_apps:
1641
1642	/* Notify configuration changes to registered applications.*/
1643	if (!pmcraid_disable_aen)
1644		pmcraid_notify_ccn(pinstance);
1645
1646	cmd = pmcraid_init_hcam(pinstance, PMCRAID_HCAM_CODE_CONFIG_CHANGE);
1647	if (cmd)
1648		pmcraid_send_hcam_cmd(cmd);
1649}
1650
1651/**
1652 * pmcraid_get_error_info - return error string for an ioasc
1653 * @ioasc: ioasc code
1654 * Return Value
1655 *	 none
1656 */
1657static struct pmcraid_ioasc_error *pmcraid_get_error_info(u32 ioasc)
1658{
1659	int i;
1660	for (i = 0; i < ARRAY_SIZE(pmcraid_ioasc_error_table); i++) {
1661		if (pmcraid_ioasc_error_table[i].ioasc_code == ioasc)
1662			return &pmcraid_ioasc_error_table[i];
1663	}
1664	return NULL;
1665}
1666
1667/**
1668 * pmcraid_ioasc_logger - log IOASC information based user-settings
1669 * @ioasc: ioasc code
1670 * @cmd: pointer to command that resulted in 'ioasc'
1671 */
1672static void pmcraid_ioasc_logger(u32 ioasc, struct pmcraid_cmd *cmd)
1673{
1674	struct pmcraid_ioasc_error *error_info = pmcraid_get_error_info(ioasc);
1675
1676	if (error_info == NULL ||
1677		cmd->drv_inst->current_log_level < error_info->log_level)
1678		return;
1679
1680	/* log the error string */
1681	pmcraid_err("cmd [%x] for resource %x failed with %x(%s)\n",
1682		cmd->ioa_cb->ioarcb.cdb[0],
1683		le32_to_cpu(cmd->ioa_cb->ioarcb.resource_handle),
1684		ioasc, error_info->error_string);
1685}
1686
1687/**
1688 * pmcraid_handle_error_log - Handle a config change (error log) from the IOA
1689 *
1690 * @pinstance: pointer to per adapter instance structure
1691 *
1692 * Return value:
1693 *  none
1694 */
1695static void pmcraid_handle_error_log(struct pmcraid_instance *pinstance)
1696{
1697	struct pmcraid_hcam_ldn *hcam_ldn;
1698	u32 ioasc;
1699
1700	hcam_ldn = (struct pmcraid_hcam_ldn *)pinstance->ldn.hcam;
1701
1702	pmcraid_info
1703		("LDN(%x): %x type: %x lost: %x flags: %x overlay id: %x\n",
1704		 pinstance->ldn.hcam->ilid,
1705		 pinstance->ldn.hcam->op_code,
1706		 pinstance->ldn.hcam->notification_type,
1707		 pinstance->ldn.hcam->notification_lost,
1708		 pinstance->ldn.hcam->flags,
1709		 pinstance->ldn.hcam->overlay_id);
1710
1711	/* log only the errors, no need to log informational log entries */
1712	if (pinstance->ldn.hcam->notification_type !=
1713	    NOTIFICATION_TYPE_ERROR_LOG)
1714		return;
1715
1716	if (pinstance->ldn.hcam->notification_lost ==
1717	    HOSTRCB_NOTIFICATIONS_LOST)
1718		dev_info(&pinstance->pdev->dev, "Error notifications lost\n");
1719
1720	ioasc = le32_to_cpu(hcam_ldn->error_log.fd_ioasc);
1721
1722	if (ioasc == PMCRAID_IOASC_UA_BUS_WAS_RESET ||
1723		ioasc == PMCRAID_IOASC_UA_BUS_WAS_RESET_BY_OTHER) {
1724		dev_info(&pinstance->pdev->dev,
1725			"UnitAttention due to IOA Bus Reset\n");
1726		scsi_report_bus_reset(
1727			pinstance->host,
1728			RES_BUS(hcam_ldn->error_log.fd_ra));
1729	}
1730
1731	return;
1732}
1733
1734/**
1735 * pmcraid_process_ccn - Op done function for a CCN.
1736 * @cmd: pointer to command struct
1737 *
1738 * This function is the op done function for a configuration
1739 * change notification
1740 *
1741 * Return value:
1742 * none
1743 */
1744static void pmcraid_process_ccn(struct pmcraid_cmd *cmd)
1745{
1746	struct pmcraid_instance *pinstance = cmd->drv_inst;
1747	u32 ioasc = le32_to_cpu(cmd->ioa_cb->ioasa.ioasc);
1748	unsigned long lock_flags;
1749
1750	pinstance->ccn.cmd = NULL;
1751	pmcraid_return_cmd(cmd);
1752
1753	/* If driver initiated IOA reset happened while this hcam was pending
1754	 * with IOA, or IOA bringdown sequence is in progress, no need to
1755	 * re-register the hcam
1756	 */
1757	if (ioasc == PMCRAID_IOASC_IOA_WAS_RESET ||
1758	    atomic_read(&pinstance->ccn.ignore) == 1) {
1759		return;
1760	} else if (ioasc) {
1761		dev_info(&pinstance->pdev->dev,
1762			"Host RCB (CCN) failed with IOASC: 0x%08X\n", ioasc);
1763		spin_lock_irqsave(pinstance->host->host_lock, lock_flags);
1764		pmcraid_send_hcam(pinstance, PMCRAID_HCAM_CODE_CONFIG_CHANGE);
1765		spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
1766	} else {
1767		pmcraid_handle_config_change(pinstance);
1768	}
1769}
1770
1771static void pmcraid_initiate_reset(struct pmcraid_instance *);
1772static void pmcraid_set_timestamp(struct pmcraid_cmd *cmd);
1773/**
1774 * pmcraid_process_ldn - op done function for an LDN
1775 * @cmd: pointer to command block
1776 *
1777 * Return value
1778 *   none
1779 */
 
 
 
1780static void pmcraid_process_ldn(struct pmcraid_cmd *cmd)
1781{
1782	struct pmcraid_instance *pinstance = cmd->drv_inst;
1783	struct pmcraid_hcam_ldn *ldn_hcam =
1784			(struct pmcraid_hcam_ldn *)pinstance->ldn.hcam;
1785	u32 ioasc = le32_to_cpu(cmd->ioa_cb->ioasa.ioasc);
1786	u32 fd_ioasc = le32_to_cpu(ldn_hcam->error_log.fd_ioasc);
1787	unsigned long lock_flags;
1788
1789	/* return the command block back to freepool */
1790	pinstance->ldn.cmd = NULL;
1791	pmcraid_return_cmd(cmd);
1792
1793	/* If driver initiated IOA reset happened while this hcam was pending
1794	 * with IOA, no need to re-register the hcam as reset engine will do it
1795	 * once reset sequence is complete
1796	 */
1797	if (ioasc == PMCRAID_IOASC_IOA_WAS_RESET ||
1798	    atomic_read(&pinstance->ccn.ignore) == 1) {
1799		return;
1800	} else if (!ioasc) {
1801		pmcraid_handle_error_log(pinstance);
1802		if (fd_ioasc == PMCRAID_IOASC_NR_IOA_RESET_REQUIRED) {
1803			spin_lock_irqsave(pinstance->host->host_lock,
1804					  lock_flags);
1805			pmcraid_initiate_reset(pinstance);
1806			spin_unlock_irqrestore(pinstance->host->host_lock,
1807					       lock_flags);
1808			return;
1809		}
1810		if (fd_ioasc == PMCRAID_IOASC_TIME_STAMP_OUT_OF_SYNC) {
1811			pinstance->timestamp_error = 1;
1812			pmcraid_set_timestamp(cmd);
1813		}
1814	} else {
1815		dev_info(&pinstance->pdev->dev,
1816			"Host RCB(LDN) failed with IOASC: 0x%08X\n", ioasc);
1817	}
1818	/* send netlink message for HCAM notification if enabled */
1819	if (!pmcraid_disable_aen)
1820		pmcraid_notify_ldn(pinstance);
1821
1822	cmd = pmcraid_init_hcam(pinstance, PMCRAID_HCAM_CODE_LOG_DATA);
1823	if (cmd)
1824		pmcraid_send_hcam_cmd(cmd);
1825}
1826
1827/**
1828 * pmcraid_register_hcams - register HCAMs for CCN and LDN
1829 *
1830 * @pinstance: pointer per adapter instance structure
1831 *
1832 * Return Value
1833 *   none
1834 */
1835static void pmcraid_register_hcams(struct pmcraid_instance *pinstance)
1836{
1837	pmcraid_send_hcam(pinstance, PMCRAID_HCAM_CODE_CONFIG_CHANGE);
1838	pmcraid_send_hcam(pinstance, PMCRAID_HCAM_CODE_LOG_DATA);
1839}
1840
1841/**
1842 * pmcraid_unregister_hcams - cancel HCAMs registered already
1843 * @cmd: pointer to command used as part of reset sequence
1844 */
1845static void pmcraid_unregister_hcams(struct pmcraid_cmd *cmd)
1846{
1847	struct pmcraid_instance *pinstance = cmd->drv_inst;
1848
1849	/* During IOA bringdown, HCAM gets fired and tasklet proceeds with
1850	 * handling hcam response though it is not necessary. In order to
1851	 * prevent this, set 'ignore', so that bring-down sequence doesn't
1852	 * re-send any more hcams
1853	 */
1854	atomic_set(&pinstance->ccn.ignore, 1);
1855	atomic_set(&pinstance->ldn.ignore, 1);
1856
1857	/* If adapter reset was forced as part of runtime reset sequence,
1858	 * start the reset sequence. Reset will be triggered even in case
1859	 * IOA unit_check.
1860	 */
1861	if ((pinstance->force_ioa_reset && !pinstance->ioa_bringdown) ||
1862	     pinstance->ioa_unit_check) {
1863		pinstance->force_ioa_reset = 0;
1864		pinstance->ioa_unit_check = 0;
1865		pinstance->ioa_state = IOA_STATE_IN_RESET_ALERT;
1866		pmcraid_reset_alert(cmd);
1867		return;
1868	}
1869
1870	/* Driver tries to cancel HCAMs by sending ABORT TASK for each HCAM
1871	 * one after the other. So CCN cancellation will be triggered by
1872	 * pmcraid_cancel_ldn itself.
1873	 */
1874	pmcraid_cancel_ldn(cmd);
1875}
1876
1877static void pmcraid_reinit_buffers(struct pmcraid_instance *);
1878
1879/**
1880 * pmcraid_reset_enable_ioa - re-enable IOA after a hard reset
1881 * @pinstance: pointer to adapter instance structure
1882 * Return Value
1883 *  1 if TRANSITION_TO_OPERATIONAL is active, otherwise 0
1884 */
 
 
1885static int pmcraid_reset_enable_ioa(struct pmcraid_instance *pinstance)
1886{
1887	u32 intrs;
1888
1889	pmcraid_reinit_buffers(pinstance);
1890	intrs = pmcraid_read_interrupts(pinstance);
1891
1892	pmcraid_enable_interrupts(pinstance, PMCRAID_PCI_INTERRUPTS);
1893
1894	if (intrs & INTRS_TRANSITION_TO_OPERATIONAL) {
1895		if (!pinstance->interrupt_mode) {
1896			iowrite32(INTRS_TRANSITION_TO_OPERATIONAL,
1897				pinstance->int_regs.
1898				ioa_host_interrupt_mask_reg);
1899			iowrite32(INTRS_TRANSITION_TO_OPERATIONAL,
1900				pinstance->int_regs.ioa_host_interrupt_clr_reg);
1901		}
1902		return 1;
1903	} else {
1904		return 0;
1905	}
1906}
1907
1908/**
1909 * pmcraid_soft_reset - performs a soft reset and makes IOA become ready
1910 * @cmd : pointer to reset command block
1911 *
1912 * Return Value
1913 *	none
1914 */
1915static void pmcraid_soft_reset(struct pmcraid_cmd *cmd)
1916{
1917	struct pmcraid_instance *pinstance = cmd->drv_inst;
1918	u32 int_reg;
1919	u32 doorbell;
1920
1921	/* There will be an interrupt when Transition to Operational bit is
1922	 * set so tasklet would execute next reset task. The timeout handler
1923	 * would re-initiate a reset
1924	 */
1925	cmd->cmd_done = pmcraid_ioa_reset;
 
1926	cmd->timer.expires = jiffies +
1927			     msecs_to_jiffies(PMCRAID_TRANSOP_TIMEOUT);
1928	cmd->timer.function = pmcraid_timeout_handler;
1929
1930	if (!timer_pending(&cmd->timer))
1931		add_timer(&cmd->timer);
1932
1933	/* Enable destructive diagnostics on IOA if it is not yet in
1934	 * operational state
1935	 */
1936	doorbell = DOORBELL_RUNTIME_RESET |
1937		   DOORBELL_ENABLE_DESTRUCTIVE_DIAGS;
1938
1939	/* Since we do RESET_ALERT and Start BIST we have to again write
1940	 * MSIX Doorbell to indicate the interrupt mode
1941	 */
1942	if (pinstance->interrupt_mode) {
1943		iowrite32(DOORBELL_INTR_MODE_MSIX,
1944			  pinstance->int_regs.host_ioa_interrupt_reg);
1945		ioread32(pinstance->int_regs.host_ioa_interrupt_reg);
1946	}
1947
1948	iowrite32(doorbell, pinstance->int_regs.host_ioa_interrupt_reg);
1949	ioread32(pinstance->int_regs.host_ioa_interrupt_reg);
1950	int_reg = ioread32(pinstance->int_regs.ioa_host_interrupt_reg);
1951
1952	pmcraid_info("Waiting for IOA to become operational %x:%x\n",
1953		     ioread32(pinstance->int_regs.host_ioa_interrupt_reg),
1954		     int_reg);
1955}
1956
1957/**
1958 * pmcraid_get_dump - retrieves IOA dump in case of Unit Check interrupt
1959 *
1960 * @pinstance: pointer to adapter instance structure
1961 *
1962 * Return Value
1963 *	none
1964 */
1965static void pmcraid_get_dump(struct pmcraid_instance *pinstance)
1966{
1967	pmcraid_info("%s is not yet implemented\n", __func__);
1968}
1969
1970/**
1971 * pmcraid_fail_outstanding_cmds - Fails all outstanding ops.
1972 * @pinstance: pointer to adapter instance structure
1973 *
1974 * This function fails all outstanding ops. If they are submitted to IOA
1975 * already, it sends cancel all messages if IOA is still accepting IOARCBs,
1976 * otherwise just completes the commands and returns the cmd blocks to free
1977 * pool.
1978 *
1979 * Return value:
1980 *	 none
1981 */
1982static void pmcraid_fail_outstanding_cmds(struct pmcraid_instance *pinstance)
1983{
1984	struct pmcraid_cmd *cmd, *temp;
1985	unsigned long lock_flags;
1986
1987	/* pending command list is protected by pending_pool_lock. Its
1988	 * traversal must be done as within this lock
1989	 */
1990	spin_lock_irqsave(&pinstance->pending_pool_lock, lock_flags);
1991	list_for_each_entry_safe(cmd, temp, &pinstance->pending_cmd_pool,
1992				 free_list) {
1993		list_del(&cmd->free_list);
1994		spin_unlock_irqrestore(&pinstance->pending_pool_lock,
1995					lock_flags);
1996		cmd->ioa_cb->ioasa.ioasc =
1997			cpu_to_le32(PMCRAID_IOASC_IOA_WAS_RESET);
1998		cmd->ioa_cb->ioasa.ilid =
1999			cpu_to_le32(PMCRAID_DRIVER_ILID);
2000
2001		/* In case the command timer is still running */
2002		del_timer(&cmd->timer);
2003
2004		/* If this is an IO command, complete it by invoking scsi_done
2005		 * function. If this is one of the internal commands other
2006		 * than pmcraid_ioa_reset and HCAM commands invoke cmd_done to
2007		 * complete it
2008		 */
2009		if (cmd->scsi_cmd) {
2010
2011			struct scsi_cmnd *scsi_cmd = cmd->scsi_cmd;
2012			__le32 resp = cmd->ioa_cb->ioarcb.response_handle;
2013
2014			scsi_cmd->result |= DID_ERROR << 16;
2015
2016			scsi_dma_unmap(scsi_cmd);
2017			pmcraid_return_cmd(cmd);
2018
2019			pmcraid_info("failing(%d) CDB[0] = %x result: %x\n",
2020				     le32_to_cpu(resp) >> 2,
2021				     cmd->ioa_cb->ioarcb.cdb[0],
2022				     scsi_cmd->result);
2023			scsi_done(scsi_cmd);
2024		} else if (cmd->cmd_done == pmcraid_internal_done ||
2025			   cmd->cmd_done == pmcraid_erp_done) {
2026			cmd->cmd_done(cmd);
2027		} else if (cmd->cmd_done != pmcraid_ioa_reset &&
2028			   cmd->cmd_done != pmcraid_ioa_shutdown_done) {
2029			pmcraid_return_cmd(cmd);
2030		}
2031
2032		atomic_dec(&pinstance->outstanding_cmds);
2033		spin_lock_irqsave(&pinstance->pending_pool_lock, lock_flags);
2034	}
2035
2036	spin_unlock_irqrestore(&pinstance->pending_pool_lock, lock_flags);
2037}
2038
2039/**
2040 * pmcraid_ioa_reset - Implementation of IOA reset logic
2041 *
2042 * @cmd: pointer to the cmd block to be used for entire reset process
2043 *
2044 * This function executes most of the steps required for IOA reset. This gets
2045 * called by user threads (modprobe/insmod/rmmod) timer, tasklet and midlayer's
2046 * 'eh_' thread. Access to variables used for controlling the reset sequence is
2047 * synchronized using host lock. Various functions called during reset process
2048 * would make use of a single command block, pointer to which is also stored in
2049 * adapter instance structure.
2050 *
2051 * Return Value
2052 *	 None
2053 */
2054static void pmcraid_ioa_reset(struct pmcraid_cmd *cmd)
2055{
2056	struct pmcraid_instance *pinstance = cmd->drv_inst;
2057	u8 reset_complete = 0;
2058
2059	pinstance->ioa_reset_in_progress = 1;
2060
2061	if (pinstance->reset_cmd != cmd) {
2062		pmcraid_err("reset is called with different command block\n");
2063		pinstance->reset_cmd = cmd;
2064	}
2065
2066	pmcraid_info("reset_engine: state = %d, command = %p\n",
2067		      pinstance->ioa_state, cmd);
2068
2069	switch (pinstance->ioa_state) {
2070
2071	case IOA_STATE_DEAD:
2072		/* If IOA is offline, whatever may be the reset reason, just
2073		 * return. callers might be waiting on the reset wait_q, wake
2074		 * up them
2075		 */
2076		pmcraid_err("IOA is offline no reset is possible\n");
2077		reset_complete = 1;
2078		break;
2079
2080	case IOA_STATE_IN_BRINGDOWN:
2081		/* we enter here, once ioa shutdown command is processed by IOA
2082		 * Alert IOA for a possible reset. If reset alert fails, IOA
2083		 * goes through hard-reset
2084		 */
2085		pmcraid_disable_interrupts(pinstance, ~0);
2086		pinstance->ioa_state = IOA_STATE_IN_RESET_ALERT;
2087		pmcraid_reset_alert(cmd);
2088		break;
2089
2090	case IOA_STATE_UNKNOWN:
2091		/* We may be called during probe or resume. Some pre-processing
2092		 * is required for prior to reset
2093		 */
2094		scsi_block_requests(pinstance->host);
2095
2096		/* If asked to reset while IOA was processing responses or
2097		 * there are any error responses then IOA may require
2098		 * hard-reset.
2099		 */
2100		if (pinstance->ioa_hard_reset == 0) {
2101			if (ioread32(pinstance->ioa_status) &
2102			    INTRS_TRANSITION_TO_OPERATIONAL) {
2103				pmcraid_info("sticky bit set, bring-up\n");
2104				pinstance->ioa_state = IOA_STATE_IN_BRINGUP;
2105				pmcraid_reinit_cmdblk(cmd);
2106				pmcraid_identify_hrrq(cmd);
2107			} else {
2108				pinstance->ioa_state = IOA_STATE_IN_SOFT_RESET;
2109				pmcraid_soft_reset(cmd);
2110			}
2111		} else {
2112			/* Alert IOA of a possible reset and wait for critical
2113			 * operation in progress bit to reset
2114			 */
2115			pinstance->ioa_state = IOA_STATE_IN_RESET_ALERT;
2116			pmcraid_reset_alert(cmd);
2117		}
2118		break;
2119
2120	case IOA_STATE_IN_RESET_ALERT:
2121		/* If critical operation in progress bit is reset or wait gets
2122		 * timed out, reset proceeds with starting BIST on the IOA.
2123		 * pmcraid_ioa_hard_reset keeps a count of reset attempts. If
2124		 * they are 3 or more, reset engine marks IOA dead and returns
2125		 */
2126		pinstance->ioa_state = IOA_STATE_IN_HARD_RESET;
2127		pmcraid_start_bist(cmd);
2128		break;
2129
2130	case IOA_STATE_IN_HARD_RESET:
2131		pinstance->ioa_reset_attempts++;
2132
2133		/* retry reset if we haven't reached maximum allowed limit */
2134		if (pinstance->ioa_reset_attempts > PMCRAID_RESET_ATTEMPTS) {
2135			pinstance->ioa_reset_attempts = 0;
2136			pmcraid_err("IOA didn't respond marking it as dead\n");
2137			pinstance->ioa_state = IOA_STATE_DEAD;
2138
2139			if (pinstance->ioa_bringdown)
2140				pmcraid_notify_ioastate(pinstance,
2141					PMC_DEVICE_EVENT_SHUTDOWN_FAILED);
2142			else
2143				pmcraid_notify_ioastate(pinstance,
2144						PMC_DEVICE_EVENT_RESET_FAILED);
2145			reset_complete = 1;
2146			break;
2147		}
2148
2149		/* Once either bist or pci reset is done, restore PCI config
2150		 * space. If this fails, proceed with hard reset again
2151		 */
2152		pci_restore_state(pinstance->pdev);
2153
2154		/* fail all pending commands */
2155		pmcraid_fail_outstanding_cmds(pinstance);
2156
2157		/* check if unit check is active, if so extract dump */
2158		if (pinstance->ioa_unit_check) {
2159			pmcraid_info("unit check is active\n");
2160			pinstance->ioa_unit_check = 0;
2161			pmcraid_get_dump(pinstance);
2162			pinstance->ioa_reset_attempts--;
2163			pinstance->ioa_state = IOA_STATE_IN_RESET_ALERT;
2164			pmcraid_reset_alert(cmd);
2165			break;
2166		}
2167
2168		/* if the reset reason is to bring-down the ioa, we might be
2169		 * done with the reset restore pci_config_space and complete
2170		 * the reset
2171		 */
2172		if (pinstance->ioa_bringdown) {
2173			pmcraid_info("bringing down the adapter\n");
2174			pinstance->ioa_shutdown_type = SHUTDOWN_NONE;
2175			pinstance->ioa_bringdown = 0;
2176			pinstance->ioa_state = IOA_STATE_UNKNOWN;
2177			pmcraid_notify_ioastate(pinstance,
2178					PMC_DEVICE_EVENT_SHUTDOWN_SUCCESS);
2179			reset_complete = 1;
2180		} else {
2181			/* bring-up IOA, so proceed with soft reset
2182			 * Reinitialize hrrq_buffers and their indices also
2183			 * enable interrupts after a pci_restore_state
2184			 */
2185			if (pmcraid_reset_enable_ioa(pinstance)) {
2186				pinstance->ioa_state = IOA_STATE_IN_BRINGUP;
2187				pmcraid_info("bringing up the adapter\n");
2188				pmcraid_reinit_cmdblk(cmd);
2189				pmcraid_identify_hrrq(cmd);
2190			} else {
2191				pinstance->ioa_state = IOA_STATE_IN_SOFT_RESET;
2192				pmcraid_soft_reset(cmd);
2193			}
2194		}
2195		break;
2196
2197	case IOA_STATE_IN_SOFT_RESET:
2198		/* TRANSITION TO OPERATIONAL is on so start initialization
2199		 * sequence
2200		 */
2201		pmcraid_info("In softreset proceeding with bring-up\n");
2202		pinstance->ioa_state = IOA_STATE_IN_BRINGUP;
2203
2204		/* Initialization commands start with HRRQ identification. From
2205		 * now on tasklet completes most of the commands as IOA is up
2206		 * and intrs are enabled
2207		 */
2208		pmcraid_identify_hrrq(cmd);
2209		break;
2210
2211	case IOA_STATE_IN_BRINGUP:
2212		/* we are done with bringing up of IOA, change the ioa_state to
2213		 * operational and wake up any waiters
2214		 */
2215		pinstance->ioa_state = IOA_STATE_OPERATIONAL;
2216		reset_complete = 1;
2217		break;
2218
2219	case IOA_STATE_OPERATIONAL:
2220	default:
2221		/* When IOA is operational and a reset is requested, check for
2222		 * the reset reason. If reset is to bring down IOA, unregister
2223		 * HCAMs and initiate shutdown; if adapter reset is forced then
2224		 * restart reset sequence again
2225		 */
2226		if (pinstance->ioa_shutdown_type == SHUTDOWN_NONE &&
2227		    pinstance->force_ioa_reset == 0) {
2228			pmcraid_notify_ioastate(pinstance,
2229						PMC_DEVICE_EVENT_RESET_SUCCESS);
2230			reset_complete = 1;
2231		} else {
2232			if (pinstance->ioa_shutdown_type != SHUTDOWN_NONE)
2233				pinstance->ioa_state = IOA_STATE_IN_BRINGDOWN;
2234			pmcraid_reinit_cmdblk(cmd);
2235			pmcraid_unregister_hcams(cmd);
2236		}
2237		break;
2238	}
2239
2240	/* reset will be completed if ioa_state is either DEAD or UNKNOWN or
2241	 * OPERATIONAL. Reset all control variables used during reset, wake up
2242	 * any waiting threads and let the SCSI mid-layer send commands. Note
2243	 * that host_lock must be held before invoking scsi_report_bus_reset.
2244	 */
2245	if (reset_complete) {
2246		pinstance->ioa_reset_in_progress = 0;
2247		pinstance->ioa_reset_attempts = 0;
2248		pinstance->reset_cmd = NULL;
2249		pinstance->ioa_shutdown_type = SHUTDOWN_NONE;
2250		pinstance->ioa_bringdown = 0;
2251		pmcraid_return_cmd(cmd);
2252
2253		/* If target state is to bring up the adapter, proceed with
2254		 * hcam registration and resource exposure to mid-layer.
2255		 */
2256		if (pinstance->ioa_state == IOA_STATE_OPERATIONAL)
2257			pmcraid_register_hcams(pinstance);
2258
2259		wake_up_all(&pinstance->reset_wait_q);
2260	}
2261
2262	return;
2263}
2264
2265/**
2266 * pmcraid_initiate_reset - initiates reset sequence. This is called from
2267 * ISR/tasklet during error interrupts including IOA unit check. If reset
2268 * is already in progress, it just returns, otherwise initiates IOA reset
2269 * to bring IOA up to operational state.
2270 *
2271 * @pinstance: pointer to adapter instance structure
2272 *
2273 * Return value
2274 *	 none
2275 */
2276static void pmcraid_initiate_reset(struct pmcraid_instance *pinstance)
2277{
2278	struct pmcraid_cmd *cmd;
2279
2280	/* If the reset is already in progress, just return, otherwise start
2281	 * reset sequence and return
2282	 */
2283	if (!pinstance->ioa_reset_in_progress) {
2284		scsi_block_requests(pinstance->host);
2285		cmd = pmcraid_get_free_cmd(pinstance);
2286
2287		if (cmd == NULL) {
2288			pmcraid_err("no cmnd blocks for initiate_reset\n");
2289			return;
2290		}
2291
2292		pinstance->ioa_shutdown_type = SHUTDOWN_NONE;
2293		pinstance->reset_cmd = cmd;
2294		pinstance->force_ioa_reset = 1;
2295		pmcraid_notify_ioastate(pinstance,
2296					PMC_DEVICE_EVENT_RESET_START);
2297		pmcraid_ioa_reset(cmd);
2298	}
2299}
2300
2301/**
2302 * pmcraid_reset_reload - utility routine for doing IOA reset either to bringup
2303 *			  or bringdown IOA
2304 * @pinstance: pointer adapter instance structure
2305 * @shutdown_type: shutdown type to be used NONE, NORMAL or ABRREV
2306 * @target_state: expected target state after reset
2307 *
2308 * Note: This command initiates reset and waits for its completion. Hence this
2309 * should not be called from isr/timer/tasklet functions (timeout handlers,
2310 * error response handlers and interrupt handlers).
2311 *
2312 * Return Value
2313 *	 1 in case ioa_state is not target_state, 0 otherwise.
2314 */
2315static int pmcraid_reset_reload(
2316	struct pmcraid_instance *pinstance,
2317	u8 shutdown_type,
2318	u8 target_state
2319)
2320{
2321	struct pmcraid_cmd *reset_cmd = NULL;
2322	unsigned long lock_flags;
2323	int reset = 1;
2324
2325	spin_lock_irqsave(pinstance->host->host_lock, lock_flags);
2326
2327	if (pinstance->ioa_reset_in_progress) {
2328		pmcraid_info("reset_reload: reset is already in progress\n");
2329
2330		spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
2331
2332		wait_event(pinstance->reset_wait_q,
2333			   !pinstance->ioa_reset_in_progress);
2334
2335		spin_lock_irqsave(pinstance->host->host_lock, lock_flags);
2336
2337		if (pinstance->ioa_state == IOA_STATE_DEAD) {
 
 
2338			pmcraid_info("reset_reload: IOA is dead\n");
2339			goto out_unlock;
 
 
2340		}
 
 
 
 
 
 
2341
2342		if (pinstance->ioa_state == target_state) {
2343			reset = 0;
2344			goto out_unlock;
 
 
2345		}
2346	}
2347
2348	pmcraid_info("reset_reload: proceeding with reset\n");
2349	scsi_block_requests(pinstance->host);
2350	reset_cmd = pmcraid_get_free_cmd(pinstance);
2351	if (reset_cmd == NULL) {
2352		pmcraid_err("no free cmnd for reset_reload\n");
2353		goto out_unlock;
2354	}
2355
2356	if (shutdown_type == SHUTDOWN_NORMAL)
2357		pinstance->ioa_bringdown = 1;
2358
2359	pinstance->ioa_shutdown_type = shutdown_type;
2360	pinstance->reset_cmd = reset_cmd;
2361	pinstance->force_ioa_reset = reset;
2362	pmcraid_info("reset_reload: initiating reset\n");
2363	pmcraid_ioa_reset(reset_cmd);
2364	spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
2365	pmcraid_info("reset_reload: waiting for reset to complete\n");
2366	wait_event(pinstance->reset_wait_q,
2367		   !pinstance->ioa_reset_in_progress);
2368
2369	pmcraid_info("reset_reload: reset is complete !!\n");
2370	scsi_unblock_requests(pinstance->host);
2371	return pinstance->ioa_state != target_state;
 
 
2372
2373out_unlock:
2374	spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
2375	return reset;
2376}
2377
2378/**
2379 * pmcraid_reset_bringdown - wrapper over pmcraid_reset_reload to bringdown IOA
2380 *
2381 * @pinstance: pointer to adapter instance structure
2382 *
2383 * Return Value
2384 *	 whatever is returned from pmcraid_reset_reload
2385 */
2386static int pmcraid_reset_bringdown(struct pmcraid_instance *pinstance)
2387{
2388	return pmcraid_reset_reload(pinstance,
2389				    SHUTDOWN_NORMAL,
2390				    IOA_STATE_UNKNOWN);
2391}
2392
2393/**
2394 * pmcraid_reset_bringup - wrapper over pmcraid_reset_reload to bring up IOA
2395 *
2396 * @pinstance: pointer to adapter instance structure
2397 *
2398 * Return Value
2399 *	 whatever is returned from pmcraid_reset_reload
2400 */
2401static int pmcraid_reset_bringup(struct pmcraid_instance *pinstance)
2402{
2403	pmcraid_notify_ioastate(pinstance, PMC_DEVICE_EVENT_RESET_START);
2404
2405	return pmcraid_reset_reload(pinstance,
2406				    SHUTDOWN_NONE,
2407				    IOA_STATE_OPERATIONAL);
2408}
2409
2410/**
2411 * pmcraid_request_sense - Send request sense to a device
2412 * @cmd: pmcraid command struct
2413 *
2414 * This function sends a request sense to a device as a result of a check
2415 * condition. This method re-uses the same command block that failed earlier.
2416 */
2417static void pmcraid_request_sense(struct pmcraid_cmd *cmd)
2418{
2419	struct pmcraid_ioarcb *ioarcb = &cmd->ioa_cb->ioarcb;
2420	struct pmcraid_ioadl_desc *ioadl = ioarcb->add_data.u.ioadl;
2421	struct device *dev = &cmd->drv_inst->pdev->dev;
2422
2423	cmd->sense_buffer = cmd->scsi_cmd->sense_buffer;
2424	cmd->sense_buffer_dma = dma_map_single(dev, cmd->sense_buffer,
2425			SCSI_SENSE_BUFFERSIZE, DMA_FROM_DEVICE);
2426	if (dma_mapping_error(dev, cmd->sense_buffer_dma)) {
 
 
2427		pmcraid_err
2428			("couldn't allocate sense buffer for request sense\n");
2429		pmcraid_erp_done(cmd);
2430		return;
2431	}
2432
2433	/* re-use the command block */
2434	memset(&cmd->ioa_cb->ioasa, 0, sizeof(struct pmcraid_ioasa));
2435	memset(ioarcb->cdb, 0, PMCRAID_MAX_CDB_LEN);
2436	ioarcb->request_flags0 = (SYNC_COMPLETE |
2437				  NO_LINK_DESCS |
2438				  INHIBIT_UL_CHECK);
2439	ioarcb->request_type = REQ_TYPE_SCSI;
2440	ioarcb->cdb[0] = REQUEST_SENSE;
2441	ioarcb->cdb[4] = SCSI_SENSE_BUFFERSIZE;
2442
2443	ioarcb->ioadl_bus_addr = cpu_to_le64((cmd->ioa_cb_bus_addr) +
2444					offsetof(struct pmcraid_ioarcb,
2445						add_data.u.ioadl[0]));
2446	ioarcb->ioadl_length = cpu_to_le32(sizeof(struct pmcraid_ioadl_desc));
2447
2448	ioarcb->data_transfer_length = cpu_to_le32(SCSI_SENSE_BUFFERSIZE);
2449
2450	ioadl->address = cpu_to_le64(cmd->sense_buffer_dma);
2451	ioadl->data_len = cpu_to_le32(SCSI_SENSE_BUFFERSIZE);
2452	ioadl->flags = IOADL_FLAGS_LAST_DESC;
2453
2454	/* request sense might be called as part of error response processing
2455	 * which runs in tasklets context. It is possible that mid-layer might
2456	 * schedule queuecommand during this time, hence, writting to IOARRIN
2457	 * must be protect by host_lock
2458	 */
2459	pmcraid_send_cmd(cmd, pmcraid_erp_done,
2460			 PMCRAID_REQUEST_SENSE_TIMEOUT,
2461			 pmcraid_timeout_handler);
2462}
2463
2464/**
2465 * pmcraid_cancel_all - cancel all outstanding IOARCBs as part of error recovery
2466 * @cmd: command that failed
2467 * @need_sense: true if request_sense is required after cancel all
2468 *
2469 * This function sends a cancel all to a device to clear the queue.
2470 */
2471static void pmcraid_cancel_all(struct pmcraid_cmd *cmd, bool need_sense)
2472{
2473	struct scsi_cmnd *scsi_cmd = cmd->scsi_cmd;
2474	struct pmcraid_ioarcb *ioarcb = &cmd->ioa_cb->ioarcb;
2475	struct pmcraid_resource_entry *res = scsi_cmd->device->hostdata;
 
 
2476
2477	memset(ioarcb->cdb, 0, PMCRAID_MAX_CDB_LEN);
2478	ioarcb->request_flags0 = SYNC_OVERRIDE;
2479	ioarcb->request_type = REQ_TYPE_IOACMD;
2480	ioarcb->cdb[0] = PMCRAID_CANCEL_ALL_REQUESTS;
2481
2482	if (RES_IS_GSCSI(res->cfg_entry))
2483		ioarcb->cdb[1] = PMCRAID_SYNC_COMPLETE_AFTER_CANCEL;
2484
2485	ioarcb->ioadl_bus_addr = 0;
2486	ioarcb->ioadl_length = 0;
2487	ioarcb->data_transfer_length = 0;
2488	ioarcb->ioarcb_bus_addr &= cpu_to_le64((~0x1FULL));
2489
2490	/* writing to IOARRIN must be protected by host_lock, as mid-layer
2491	 * schedule queuecommand while we are doing this
2492	 */
2493	pmcraid_send_cmd(cmd, need_sense ?
2494			 pmcraid_erp_done : pmcraid_request_sense,
2495			 PMCRAID_REQUEST_SENSE_TIMEOUT,
2496			 pmcraid_timeout_handler);
2497}
2498
2499/**
2500 * pmcraid_frame_auto_sense: frame fixed format sense information
2501 *
2502 * @cmd: pointer to failing command block
2503 *
2504 * Return value
2505 *  none
2506 */
2507static void pmcraid_frame_auto_sense(struct pmcraid_cmd *cmd)
2508{
2509	u8 *sense_buf = cmd->scsi_cmd->sense_buffer;
2510	struct pmcraid_resource_entry *res = cmd->scsi_cmd->device->hostdata;
2511	struct pmcraid_ioasa *ioasa = &cmd->ioa_cb->ioasa;
2512	u32 ioasc = le32_to_cpu(ioasa->ioasc);
2513	u32 failing_lba = 0;
2514
2515	memset(sense_buf, 0, SCSI_SENSE_BUFFERSIZE);
2516	cmd->scsi_cmd->result = SAM_STAT_CHECK_CONDITION;
2517
2518	if (RES_IS_VSET(res->cfg_entry) &&
2519	    ioasc == PMCRAID_IOASC_ME_READ_ERROR_NO_REALLOC &&
2520	    ioasa->u.vset.failing_lba_hi != 0) {
2521
2522		sense_buf[0] = 0x72;
2523		sense_buf[1] = PMCRAID_IOASC_SENSE_KEY(ioasc);
2524		sense_buf[2] = PMCRAID_IOASC_SENSE_CODE(ioasc);
2525		sense_buf[3] = PMCRAID_IOASC_SENSE_QUAL(ioasc);
2526
2527		sense_buf[7] = 12;
2528		sense_buf[8] = 0;
2529		sense_buf[9] = 0x0A;
2530		sense_buf[10] = 0x80;
2531
2532		failing_lba = le32_to_cpu(ioasa->u.vset.failing_lba_hi);
2533
2534		sense_buf[12] = (failing_lba & 0xff000000) >> 24;
2535		sense_buf[13] = (failing_lba & 0x00ff0000) >> 16;
2536		sense_buf[14] = (failing_lba & 0x0000ff00) >> 8;
2537		sense_buf[15] = failing_lba & 0x000000ff;
2538
2539		failing_lba = le32_to_cpu(ioasa->u.vset.failing_lba_lo);
2540
2541		sense_buf[16] = (failing_lba & 0xff000000) >> 24;
2542		sense_buf[17] = (failing_lba & 0x00ff0000) >> 16;
2543		sense_buf[18] = (failing_lba & 0x0000ff00) >> 8;
2544		sense_buf[19] = failing_lba & 0x000000ff;
2545	} else {
2546		sense_buf[0] = 0x70;
2547		sense_buf[2] = PMCRAID_IOASC_SENSE_KEY(ioasc);
2548		sense_buf[12] = PMCRAID_IOASC_SENSE_CODE(ioasc);
2549		sense_buf[13] = PMCRAID_IOASC_SENSE_QUAL(ioasc);
2550
2551		if (ioasc == PMCRAID_IOASC_ME_READ_ERROR_NO_REALLOC) {
2552			if (RES_IS_VSET(res->cfg_entry))
2553				failing_lba =
2554					le32_to_cpu(ioasa->u.
2555						 vset.failing_lba_lo);
2556			sense_buf[0] |= 0x80;
2557			sense_buf[3] = (failing_lba >> 24) & 0xff;
2558			sense_buf[4] = (failing_lba >> 16) & 0xff;
2559			sense_buf[5] = (failing_lba >> 8) & 0xff;
2560			sense_buf[6] = failing_lba & 0xff;
2561		}
2562
2563		sense_buf[7] = 6; /* additional length */
2564	}
2565}
2566
2567/**
2568 * pmcraid_error_handler - Error response handlers for a SCSI op
2569 * @cmd: pointer to pmcraid_cmd that has failed
2570 *
2571 * This function determines whether or not to initiate ERP on the affected
2572 * device. This is called from a tasklet, which doesn't hold any locks.
2573 *
2574 * Return value:
2575 *	 0 it caller can complete the request, otherwise 1 where in error
2576 *	 handler itself completes the request and returns the command block
2577 *	 back to free-pool
2578 */
2579static int pmcraid_error_handler(struct pmcraid_cmd *cmd)
2580{
2581	struct scsi_cmnd *scsi_cmd = cmd->scsi_cmd;
2582	struct pmcraid_resource_entry *res = scsi_cmd->device->hostdata;
2583	struct pmcraid_instance *pinstance = cmd->drv_inst;
2584	struct pmcraid_ioasa *ioasa = &cmd->ioa_cb->ioasa;
2585	u32 ioasc = le32_to_cpu(ioasa->ioasc);
2586	u32 masked_ioasc = ioasc & PMCRAID_IOASC_SENSE_MASK;
2587	bool sense_copied = false;
2588
2589	if (!res) {
2590		pmcraid_info("resource pointer is NULL\n");
2591		return 0;
2592	}
2593
2594	/* If this was a SCSI read/write command keep count of errors */
2595	if (SCSI_CMD_TYPE(scsi_cmd->cmnd[0]) == SCSI_READ_CMD)
2596		atomic_inc(&res->read_failures);
2597	else if (SCSI_CMD_TYPE(scsi_cmd->cmnd[0]) == SCSI_WRITE_CMD)
2598		atomic_inc(&res->write_failures);
2599
2600	if (!RES_IS_GSCSI(res->cfg_entry) &&
2601		masked_ioasc != PMCRAID_IOASC_HW_DEVICE_BUS_STATUS_ERROR) {
2602		pmcraid_frame_auto_sense(cmd);
2603	}
2604
2605	/* Log IOASC/IOASA information based on user settings */
2606	pmcraid_ioasc_logger(ioasc, cmd);
2607
2608	switch (masked_ioasc) {
2609
2610	case PMCRAID_IOASC_AC_TERMINATED_BY_HOST:
2611		scsi_cmd->result |= (DID_ABORT << 16);
2612		break;
2613
2614	case PMCRAID_IOASC_IR_INVALID_RESOURCE_HANDLE:
2615	case PMCRAID_IOASC_HW_CANNOT_COMMUNICATE:
2616		scsi_cmd->result |= (DID_NO_CONNECT << 16);
2617		break;
2618
2619	case PMCRAID_IOASC_NR_SYNC_REQUIRED:
2620		res->sync_reqd = 1;
2621		scsi_cmd->result |= (DID_IMM_RETRY << 16);
2622		break;
2623
2624	case PMCRAID_IOASC_ME_READ_ERROR_NO_REALLOC:
2625		scsi_cmd->result |= (DID_PASSTHROUGH << 16);
2626		break;
2627
2628	case PMCRAID_IOASC_UA_BUS_WAS_RESET:
2629	case PMCRAID_IOASC_UA_BUS_WAS_RESET_BY_OTHER:
2630		if (!res->reset_progress)
2631			scsi_report_bus_reset(pinstance->host,
2632					      scsi_cmd->device->channel);
2633		scsi_cmd->result |= (DID_ERROR << 16);
2634		break;
2635
2636	case PMCRAID_IOASC_HW_DEVICE_BUS_STATUS_ERROR:
2637		scsi_cmd->result |= PMCRAID_IOASC_SENSE_STATUS(ioasc);
2638		res->sync_reqd = 1;
2639
2640		/* if check_condition is not active return with error otherwise
2641		 * get/frame the sense buffer
2642		 */
2643		if (PMCRAID_IOASC_SENSE_STATUS(ioasc) !=
2644		    SAM_STAT_CHECK_CONDITION &&
2645		    PMCRAID_IOASC_SENSE_STATUS(ioasc) != SAM_STAT_ACA_ACTIVE)
2646			return 0;
2647
2648		/* If we have auto sense data as part of IOASA pass it to
2649		 * mid-layer
2650		 */
2651		if (ioasa->auto_sense_length != 0) {
2652			short sense_len = le16_to_cpu(ioasa->auto_sense_length);
2653			int data_size = min_t(u16, sense_len,
2654					      SCSI_SENSE_BUFFERSIZE);
2655
2656			memcpy(scsi_cmd->sense_buffer,
2657			       ioasa->sense_data,
2658			       data_size);
2659			sense_copied = true;
2660		}
2661
2662		if (RES_IS_GSCSI(res->cfg_entry))
2663			pmcraid_cancel_all(cmd, sense_copied);
2664		else if (sense_copied)
2665			pmcraid_erp_done(cmd);
2666		else
2667			pmcraid_request_sense(cmd);
2668
2669		return 1;
2670
2671	case PMCRAID_IOASC_NR_INIT_CMD_REQUIRED:
2672		break;
2673
2674	default:
2675		if (PMCRAID_IOASC_SENSE_KEY(ioasc) > RECOVERED_ERROR)
2676			scsi_cmd->result |= (DID_ERROR << 16);
2677		break;
2678	}
2679	return 0;
2680}
2681
2682/**
2683 * pmcraid_reset_device - device reset handler functions
2684 *
2685 * @scsi_dev: scsi device struct
2686 * @timeout: command timeout
2687 * @modifier: reset modifier indicating the reset sequence to be performed
2688 *
2689 * This function issues a device reset to the affected device.
2690 * A LUN reset will be sent to the device first. If that does
2691 * not work, a target reset will be sent.
2692 *
2693 * Return value:
2694 *	SUCCESS / FAILED
2695 */
2696static int pmcraid_reset_device(
2697	struct scsi_device *scsi_dev,
2698	unsigned long timeout,
2699	u8 modifier)
 
2700{
2701	struct pmcraid_cmd *cmd;
2702	struct pmcraid_instance *pinstance;
2703	struct pmcraid_resource_entry *res;
2704	struct pmcraid_ioarcb *ioarcb;
2705	unsigned long lock_flags;
2706	u32 ioasc;
2707
2708	pinstance =
2709		(struct pmcraid_instance *)scsi_dev->host->hostdata;
2710	res = scsi_dev->hostdata;
2711
2712	if (!res) {
2713		sdev_printk(KERN_ERR, scsi_dev,
2714			    "reset_device: NULL resource pointer\n");
2715		return FAILED;
2716	}
2717
2718	/* If adapter is currently going through reset/reload, return failed.
2719	 * This will force the mid-layer to call _eh_bus/host reset, which
2720	 * will then go to sleep and wait for the reset to complete
2721	 */
2722	spin_lock_irqsave(pinstance->host->host_lock, lock_flags);
2723	if (pinstance->ioa_reset_in_progress ||
2724	    pinstance->ioa_state == IOA_STATE_DEAD) {
2725		spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
2726		return FAILED;
2727	}
2728
2729	res->reset_progress = 1;
2730	pmcraid_info("Resetting %s resource with addr %x\n",
2731		     ((modifier & RESET_DEVICE_LUN) ? "LUN" :
2732		     ((modifier & RESET_DEVICE_TARGET) ? "TARGET" : "BUS")),
2733		     le32_to_cpu(res->cfg_entry.resource_address));
2734
2735	/* get a free cmd block */
2736	cmd = pmcraid_get_free_cmd(pinstance);
2737
2738	if (cmd == NULL) {
2739		spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
2740		pmcraid_err("%s: no cmd blocks are available\n", __func__);
2741		return FAILED;
2742	}
2743
2744	ioarcb = &cmd->ioa_cb->ioarcb;
2745	ioarcb->resource_handle = res->cfg_entry.resource_handle;
2746	ioarcb->request_type = REQ_TYPE_IOACMD;
2747	ioarcb->cdb[0] = PMCRAID_RESET_DEVICE;
2748
2749	/* Initialize reset modifier bits */
2750	if (modifier)
2751		modifier = ENABLE_RESET_MODIFIER | modifier;
2752
2753	ioarcb->cdb[1] = modifier;
2754
2755	init_completion(&cmd->wait_for_completion);
2756	cmd->completion_req = 1;
2757
2758	pmcraid_info("cmd(CDB[0] = %x) for %x with index = %d\n",
2759		     cmd->ioa_cb->ioarcb.cdb[0],
2760		     le32_to_cpu(cmd->ioa_cb->ioarcb.resource_handle),
2761		     le32_to_cpu(cmd->ioa_cb->ioarcb.response_handle) >> 2);
2762
2763	pmcraid_send_cmd(cmd,
2764			 pmcraid_internal_done,
2765			 timeout,
2766			 pmcraid_timeout_handler);
2767
2768	spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
2769
2770	/* RESET_DEVICE command completes after all pending IOARCBs are
2771	 * completed. Once this command is completed, pmcraind_internal_done
2772	 * will wake up the 'completion' queue.
2773	 */
2774	wait_for_completion(&cmd->wait_for_completion);
2775
2776	/* complete the command here itself and return the command block
2777	 * to free list
2778	 */
2779	pmcraid_return_cmd(cmd);
2780	res->reset_progress = 0;
2781	ioasc = le32_to_cpu(cmd->ioa_cb->ioasa.ioasc);
2782
2783	/* set the return value based on the returned ioasc */
2784	return PMCRAID_IOASC_SENSE_KEY(ioasc) ? FAILED : SUCCESS;
2785}
2786
2787/**
2788 * _pmcraid_io_done - helper for pmcraid_io_done function
2789 *
2790 * @cmd: pointer to pmcraid command struct
2791 * @reslen: residual data length to be set in the ioasa
2792 * @ioasc: ioasc either returned by IOA or set by driver itself.
2793 *
2794 * This function is invoked by pmcraid_io_done to complete mid-layer
2795 * scsi ops.
2796 *
2797 * Return value:
2798 *	  0 if caller is required to return it to free_pool. Returns 1 if
2799 *	  caller need not worry about freeing command block as error handler
2800 *	  will take care of that.
2801 */
2802
2803static int _pmcraid_io_done(struct pmcraid_cmd *cmd, int reslen, int ioasc)
2804{
2805	struct scsi_cmnd *scsi_cmd = cmd->scsi_cmd;
2806	int rc = 0;
2807
2808	scsi_set_resid(scsi_cmd, reslen);
2809
2810	pmcraid_info("response(%d) CDB[0] = %x ioasc:result: %x:%x\n",
2811		le32_to_cpu(cmd->ioa_cb->ioarcb.response_handle) >> 2,
2812		cmd->ioa_cb->ioarcb.cdb[0],
2813		ioasc, scsi_cmd->result);
2814
2815	if (PMCRAID_IOASC_SENSE_KEY(ioasc) != 0)
2816		rc = pmcraid_error_handler(cmd);
2817
2818	if (rc == 0) {
2819		scsi_dma_unmap(scsi_cmd);
2820		scsi_done(scsi_cmd);
2821	}
2822
2823	return rc;
2824}
2825
2826/**
2827 * pmcraid_io_done - SCSI completion function
2828 *
2829 * @cmd: pointer to pmcraid command struct
2830 *
2831 * This function is invoked by tasklet/mid-layer error handler to completing
2832 * the SCSI ops sent from mid-layer.
2833 *
2834 * Return value
2835 *	  none
2836 */
2837
2838static void pmcraid_io_done(struct pmcraid_cmd *cmd)
2839{
2840	u32 ioasc = le32_to_cpu(cmd->ioa_cb->ioasa.ioasc);
2841	u32 reslen = le32_to_cpu(cmd->ioa_cb->ioasa.residual_data_length);
2842
2843	if (_pmcraid_io_done(cmd, reslen, ioasc) == 0)
2844		pmcraid_return_cmd(cmd);
2845}
2846
2847/**
2848 * pmcraid_abort_cmd - Aborts a single IOARCB already submitted to IOA
2849 *
2850 * @cmd: command block of the command to be aborted
2851 *
2852 * Return Value:
2853 *	 returns pointer to command structure used as cancelling cmd
2854 */
2855static struct pmcraid_cmd *pmcraid_abort_cmd(struct pmcraid_cmd *cmd)
2856{
2857	struct pmcraid_cmd *cancel_cmd;
2858	struct pmcraid_instance *pinstance;
 
2859
2860	pinstance = (struct pmcraid_instance *)cmd->drv_inst;
 
2861
2862	cancel_cmd = pmcraid_get_free_cmd(pinstance);
2863
2864	if (cancel_cmd == NULL) {
2865		pmcraid_err("%s: no cmd blocks are available\n", __func__);
2866		return NULL;
2867	}
2868
2869	pmcraid_prepare_cancel_cmd(cancel_cmd, cmd);
2870
2871	pmcraid_info("aborting command CDB[0]= %x with index = %d\n",
2872		cmd->ioa_cb->ioarcb.cdb[0],
2873		le32_to_cpu(cmd->ioa_cb->ioarcb.response_handle) >> 2);
2874
2875	init_completion(&cancel_cmd->wait_for_completion);
2876	cancel_cmd->completion_req = 1;
2877
2878	pmcraid_info("command (%d) CDB[0] = %x for %x\n",
2879		le32_to_cpu(cancel_cmd->ioa_cb->ioarcb.response_handle) >> 2,
2880		cancel_cmd->ioa_cb->ioarcb.cdb[0],
2881		le32_to_cpu(cancel_cmd->ioa_cb->ioarcb.resource_handle));
2882
2883	pmcraid_send_cmd(cancel_cmd,
2884			 pmcraid_internal_done,
2885			 PMCRAID_INTERNAL_TIMEOUT,
2886			 pmcraid_timeout_handler);
2887	return cancel_cmd;
2888}
2889
2890/**
2891 * pmcraid_abort_complete - Waits for ABORT TASK completion
2892 *
2893 * @cancel_cmd: command block use as cancelling command
2894 *
2895 * Return Value:
2896 *	 returns SUCCESS if ABORT TASK has good completion
2897 *	 otherwise FAILED
2898 */
2899static int pmcraid_abort_complete(struct pmcraid_cmd *cancel_cmd)
2900{
2901	struct pmcraid_resource_entry *res;
2902	u32 ioasc;
2903
2904	wait_for_completion(&cancel_cmd->wait_for_completion);
2905	res = cancel_cmd->res;
2906	cancel_cmd->res = NULL;
2907	ioasc = le32_to_cpu(cancel_cmd->ioa_cb->ioasa.ioasc);
2908
2909	/* If the abort task is not timed out we will get a Good completion
2910	 * as sense_key, otherwise we may get one the following responses
2911	 * due to subsequent bus reset or device reset. In case IOASC is
2912	 * NR_SYNC_REQUIRED, set sync_reqd flag for the corresponding resource
2913	 */
2914	if (ioasc == PMCRAID_IOASC_UA_BUS_WAS_RESET ||
2915	    ioasc == PMCRAID_IOASC_NR_SYNC_REQUIRED) {
2916		if (ioasc == PMCRAID_IOASC_NR_SYNC_REQUIRED)
2917			res->sync_reqd = 1;
2918		ioasc = 0;
2919	}
2920
2921	/* complete the command here itself */
2922	pmcraid_return_cmd(cancel_cmd);
2923	return PMCRAID_IOASC_SENSE_KEY(ioasc) ? FAILED : SUCCESS;
2924}
2925
2926/**
2927 * pmcraid_eh_abort_handler - entry point for aborting a single task on errors
2928 *
2929 * @scsi_cmd:   scsi command struct given by mid-layer. When this is called
2930 *		mid-layer ensures that no other commands are queued. This
2931 *		never gets called under interrupt, but a separate eh thread.
2932 *
2933 * Return value:
2934 *	 SUCCESS / FAILED
2935 */
2936static int pmcraid_eh_abort_handler(struct scsi_cmnd *scsi_cmd)
2937{
2938	struct pmcraid_instance *pinstance;
2939	struct pmcraid_cmd *cmd;
2940	struct pmcraid_resource_entry *res;
2941	unsigned long host_lock_flags;
2942	unsigned long pending_lock_flags;
2943	struct pmcraid_cmd *cancel_cmd = NULL;
2944	int cmd_found = 0;
2945	int rc = FAILED;
2946
2947	pinstance =
2948		(struct pmcraid_instance *)scsi_cmd->device->host->hostdata;
2949
2950	scmd_printk(KERN_INFO, scsi_cmd,
2951		    "I/O command timed out, aborting it.\n");
2952
2953	res = scsi_cmd->device->hostdata;
2954
2955	if (res == NULL)
2956		return rc;
2957
2958	/* If we are currently going through reset/reload, return failed.
2959	 * This will force the mid-layer to eventually call
2960	 * pmcraid_eh_host_reset which will then go to sleep and wait for the
2961	 * reset to complete
2962	 */
2963	spin_lock_irqsave(pinstance->host->host_lock, host_lock_flags);
2964
2965	if (pinstance->ioa_reset_in_progress ||
2966	    pinstance->ioa_state == IOA_STATE_DEAD) {
2967		spin_unlock_irqrestore(pinstance->host->host_lock,
2968				       host_lock_flags);
2969		return rc;
2970	}
2971
2972	/* loop over pending cmd list to find cmd corresponding to this
2973	 * scsi_cmd. Note that this command might not have been completed
2974	 * already. locking: all pending commands are protected with
2975	 * pending_pool_lock.
2976	 */
2977	spin_lock_irqsave(&pinstance->pending_pool_lock, pending_lock_flags);
2978	list_for_each_entry(cmd, &pinstance->pending_cmd_pool, free_list) {
2979
2980		if (cmd->scsi_cmd == scsi_cmd) {
2981			cmd_found = 1;
2982			break;
2983		}
2984	}
2985
2986	spin_unlock_irqrestore(&pinstance->pending_pool_lock,
2987				pending_lock_flags);
2988
2989	/* If the command to be aborted was given to IOA and still pending with
2990	 * it, send ABORT_TASK to abort this and wait for its completion
2991	 */
2992	if (cmd_found)
2993		cancel_cmd = pmcraid_abort_cmd(cmd);
2994
2995	spin_unlock_irqrestore(pinstance->host->host_lock,
2996			       host_lock_flags);
2997
2998	if (cancel_cmd) {
2999		cancel_cmd->res = cmd->scsi_cmd->device->hostdata;
3000		rc = pmcraid_abort_complete(cancel_cmd);
3001	}
3002
3003	return cmd_found ? rc : SUCCESS;
3004}
3005
3006/**
3007 * pmcraid_eh_device_reset_handler - bus/target/device reset handler callbacks
3008 *
3009 * @scmd: pointer to scsi_cmd that was sent to the resource to be reset.
3010 *
3011 * All these routines invokve pmcraid_reset_device with appropriate parameters.
3012 * Since these are called from mid-layer EH thread, no other IO will be queued
3013 * to the resource being reset. However, control path (IOCTL) may be active so
3014 * it is necessary to synchronize IOARRIN writes which pmcraid_reset_device
3015 * takes care by locking/unlocking host_lock.
3016 *
3017 * Return value
3018 *	SUCCESS or FAILED
3019 */
3020static int pmcraid_eh_device_reset_handler(struct scsi_cmnd *scmd)
3021{
3022	scmd_printk(KERN_INFO, scmd,
3023		    "resetting device due to an I/O command timeout.\n");
3024	return pmcraid_reset_device(scmd->device,
3025				    PMCRAID_INTERNAL_TIMEOUT,
3026				    RESET_DEVICE_LUN);
3027}
3028
3029static int pmcraid_eh_bus_reset_handler(struct scsi_cmnd *scmd)
3030{
3031	struct Scsi_Host *host = scmd->device->host;
3032	struct pmcraid_instance *pinstance =
3033		(struct pmcraid_instance *)host->hostdata;
3034	struct pmcraid_resource_entry *res = NULL;
3035	struct pmcraid_resource_entry *temp;
3036	struct scsi_device *sdev = NULL;
3037	unsigned long lock_flags;
3038
3039	/*
3040	 * The reset device code insists on us passing down
3041	 * a device, so grab the first device on the bus.
3042	 */
3043	spin_lock_irqsave(&pinstance->resource_lock, lock_flags);
3044	list_for_each_entry(temp, &pinstance->used_res_q, queue) {
3045		if (scmd->device->channel == PMCRAID_VSET_BUS_ID &&
3046		    RES_IS_VSET(temp->cfg_entry)) {
3047			res = temp;
3048			break;
3049		} else if (scmd->device->channel == PMCRAID_PHYS_BUS_ID &&
3050			   RES_IS_GSCSI(temp->cfg_entry)) {
3051			res = temp;
3052			break;
3053		}
3054	}
3055	if (res)
3056		sdev = res->scsi_dev;
3057	spin_unlock_irqrestore(&pinstance->resource_lock, lock_flags);
3058	if (!sdev)
3059		return FAILED;
3060
3061	sdev_printk(KERN_INFO, sdev,
3062		    "Doing bus reset due to an I/O command timeout.\n");
3063	return pmcraid_reset_device(sdev,
3064				    PMCRAID_RESET_BUS_TIMEOUT,
3065				    RESET_DEVICE_BUS);
3066}
3067
3068static int pmcraid_eh_target_reset_handler(struct scsi_cmnd *scmd)
3069{
3070	struct Scsi_Host *shost = scmd->device->host;
3071	struct scsi_device *scsi_dev = NULL, *tmp;
3072	int ret;
3073
3074	shost_for_each_device(tmp, shost) {
3075		if ((tmp->channel == scmd->device->channel) &&
3076		    (tmp->id == scmd->device->id)) {
3077			scsi_dev = tmp;
3078			break;
3079		}
3080	}
3081	if (!scsi_dev)
3082		return FAILED;
3083	sdev_printk(KERN_INFO, scsi_dev,
3084		    "Doing target reset due to an I/O command timeout.\n");
3085	ret = pmcraid_reset_device(scsi_dev,
3086				   PMCRAID_INTERNAL_TIMEOUT,
3087				   RESET_DEVICE_TARGET);
3088	scsi_device_put(scsi_dev);
3089	return ret;
3090}
3091
3092/**
3093 * pmcraid_eh_host_reset_handler - adapter reset handler callback
3094 *
3095 * @scmd: pointer to scsi_cmd that was sent to a resource of adapter
3096 *
3097 * Initiates adapter reset to bring it up to operational state
3098 *
3099 * Return value
3100 *	SUCCESS or FAILED
3101 */
3102static int pmcraid_eh_host_reset_handler(struct scsi_cmnd *scmd)
3103{
3104	unsigned long interval = 10000; /* 10 seconds interval */
3105	int waits = jiffies_to_msecs(PMCRAID_RESET_HOST_TIMEOUT) / interval;
3106	struct pmcraid_instance *pinstance =
3107		(struct pmcraid_instance *)(scmd->device->host->hostdata);
3108
3109
3110	/* wait for an additional 150 seconds just in case firmware could come
3111	 * up and if it could complete all the pending commands excluding the
3112	 * two HCAM (CCN and LDN).
3113	 */
3114	while (waits--) {
3115		if (atomic_read(&pinstance->outstanding_cmds) <=
3116		    PMCRAID_MAX_HCAM_CMD)
3117			return SUCCESS;
3118		msleep(interval);
3119	}
3120
3121	dev_err(&pinstance->pdev->dev,
3122		"Adapter being reset due to an I/O command timeout.\n");
3123	return pmcraid_reset_bringup(pinstance) == 0 ? SUCCESS : FAILED;
3124}
3125
3126/**
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
3127 * pmcraid_init_ioadls - initializes IOADL related fields in IOARCB
3128 * @cmd: pmcraid command struct
3129 * @sgcount: count of scatter-gather elements
3130 *
3131 * Return value
3132 *   returns pointer pmcraid_ioadl_desc, initialized to point to internal
3133 *   or external IOADLs
3134 */
3135static struct pmcraid_ioadl_desc *
3136pmcraid_init_ioadls(struct pmcraid_cmd *cmd, int sgcount)
3137{
3138	struct pmcraid_ioadl_desc *ioadl;
3139	struct pmcraid_ioarcb *ioarcb = &cmd->ioa_cb->ioarcb;
3140	int ioadl_count = 0;
3141
3142	if (ioarcb->add_cmd_param_length)
3143		ioadl_count = DIV_ROUND_UP(le16_to_cpu(ioarcb->add_cmd_param_length), 16);
3144	ioarcb->ioadl_length = cpu_to_le32(sizeof(struct pmcraid_ioadl_desc) * sgcount);
 
3145
3146	if ((sgcount + ioadl_count) > (ARRAY_SIZE(ioarcb->add_data.u.ioadl))) {
3147		/* external ioadls start at offset 0x80 from control_block
3148		 * structure, re-using 24 out of 27 ioadls part of IOARCB.
3149		 * It is necessary to indicate to firmware that driver is
3150		 * using ioadls to be treated as external to IOARCB.
3151		 */
3152		ioarcb->ioarcb_bus_addr &= cpu_to_le64(~(0x1FULL));
3153		ioarcb->ioadl_bus_addr =
3154			cpu_to_le64((cmd->ioa_cb_bus_addr) +
3155				offsetof(struct pmcraid_ioarcb,
3156					add_data.u.ioadl[3]));
3157		ioadl = &ioarcb->add_data.u.ioadl[3];
3158	} else {
3159		ioarcb->ioadl_bus_addr =
3160			cpu_to_le64((cmd->ioa_cb_bus_addr) +
3161				offsetof(struct pmcraid_ioarcb,
3162					add_data.u.ioadl[ioadl_count]));
3163
3164		ioadl = &ioarcb->add_data.u.ioadl[ioadl_count];
3165		ioarcb->ioarcb_bus_addr |=
3166			cpu_to_le64(DIV_ROUND_CLOSEST(sgcount + ioadl_count, 8));
3167	}
3168
3169	return ioadl;
3170}
3171
3172/**
3173 * pmcraid_build_ioadl - Build a scatter/gather list and map the buffer
3174 * @pinstance: pointer to adapter instance structure
3175 * @cmd: pmcraid command struct
3176 *
3177 * This function is invoked by queuecommand entry point while sending a command
3178 * to firmware. This builds ioadl descriptors and sets up ioarcb fields.
3179 *
3180 * Return value:
3181 *	0 on success or -1 on failure
3182 */
3183static int pmcraid_build_ioadl(
3184	struct pmcraid_instance *pinstance,
3185	struct pmcraid_cmd *cmd
3186)
3187{
3188	int i, nseg;
3189	struct scatterlist *sglist;
3190
3191	struct scsi_cmnd *scsi_cmd = cmd->scsi_cmd;
3192	struct pmcraid_ioarcb *ioarcb = &(cmd->ioa_cb->ioarcb);
3193	struct pmcraid_ioadl_desc *ioadl;
3194
3195	u32 length = scsi_bufflen(scsi_cmd);
3196
3197	if (!length)
3198		return 0;
3199
3200	nseg = scsi_dma_map(scsi_cmd);
3201
3202	if (nseg < 0) {
3203		scmd_printk(KERN_ERR, scsi_cmd, "scsi_map_dma failed!\n");
3204		return -1;
3205	} else if (nseg > PMCRAID_MAX_IOADLS) {
3206		scsi_dma_unmap(scsi_cmd);
3207		scmd_printk(KERN_ERR, scsi_cmd,
3208			"sg count is (%d) more than allowed!\n", nseg);
3209		return -1;
3210	}
3211
3212	/* Initialize IOARCB data transfer length fields */
3213	if (scsi_cmd->sc_data_direction == DMA_TO_DEVICE)
3214		ioarcb->request_flags0 |= TRANSFER_DIR_WRITE;
3215
3216	ioarcb->request_flags0 |= NO_LINK_DESCS;
3217	ioarcb->data_transfer_length = cpu_to_le32(length);
3218	ioadl = pmcraid_init_ioadls(cmd, nseg);
3219
3220	/* Initialize IOADL descriptor addresses */
3221	scsi_for_each_sg(scsi_cmd, sglist, nseg, i) {
3222		ioadl[i].data_len = cpu_to_le32(sg_dma_len(sglist));
3223		ioadl[i].address = cpu_to_le64(sg_dma_address(sglist));
3224		ioadl[i].flags = 0;
3225	}
3226	/* setup last descriptor */
3227	ioadl[i - 1].flags = IOADL_FLAGS_LAST_DESC;
3228
3229	return 0;
3230}
3231
3232/**
3233 * pmcraid_queuecommand_lck - Queue a mid-layer request
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
3234 * @scsi_cmd: scsi command struct
 
3235 *
3236 * This function queues a request generated by the mid-layer. Midlayer calls
3237 * this routine within host->lock. Some of the functions called by queuecommand
3238 * would use cmd block queue locks (free_pool_lock and pending_pool_lock)
3239 *
3240 * Return value:
3241 *	  0 on success
3242 *	  SCSI_MLQUEUE_DEVICE_BUSY if device is busy
3243 *	  SCSI_MLQUEUE_HOST_BUSY if host is busy
3244 */
3245static int pmcraid_queuecommand_lck(struct scsi_cmnd *scsi_cmd)
 
 
 
3246{
3247	struct pmcraid_instance *pinstance;
3248	struct pmcraid_resource_entry *res;
3249	struct pmcraid_ioarcb *ioarcb;
3250	struct pmcraid_cmd *cmd;
3251	u32 fw_version;
3252	int rc = 0;
3253
3254	pinstance =
3255		(struct pmcraid_instance *)scsi_cmd->device->host->hostdata;
3256	fw_version = be16_to_cpu(pinstance->inq_data->fw_version);
 
3257	res = scsi_cmd->device->hostdata;
3258	scsi_cmd->result = (DID_OK << 16);
3259
3260	/* if adapter is marked as dead, set result to DID_NO_CONNECT complete
3261	 * the command
3262	 */
3263	if (pinstance->ioa_state == IOA_STATE_DEAD) {
3264		pmcraid_info("IOA is dead, but queuecommand is scheduled\n");
3265		scsi_cmd->result = (DID_NO_CONNECT << 16);
3266		scsi_done(scsi_cmd);
3267		return 0;
3268	}
3269
3270	/* If IOA reset is in progress, can't queue the commands */
3271	if (pinstance->ioa_reset_in_progress)
3272		return SCSI_MLQUEUE_HOST_BUSY;
3273
3274	/* Firmware doesn't support SYNCHRONIZE_CACHE command (0x35), complete
3275	 * the command here itself with success return
3276	 */
3277	if (scsi_cmd->cmnd[0] == SYNCHRONIZE_CACHE) {
3278		pmcraid_info("SYNC_CACHE(0x35), completing in driver itself\n");
3279		scsi_done(scsi_cmd);
3280		return 0;
3281	}
3282
3283	/* initialize the command and IOARCB to be sent to IOA */
3284	cmd = pmcraid_get_free_cmd(pinstance);
3285
3286	if (cmd == NULL) {
3287		pmcraid_err("free command block is not available\n");
3288		return SCSI_MLQUEUE_HOST_BUSY;
3289	}
3290
3291	cmd->scsi_cmd = scsi_cmd;
3292	ioarcb = &(cmd->ioa_cb->ioarcb);
3293	memcpy(ioarcb->cdb, scsi_cmd->cmnd, scsi_cmd->cmd_len);
3294	ioarcb->resource_handle = res->cfg_entry.resource_handle;
3295	ioarcb->request_type = REQ_TYPE_SCSI;
3296
3297	/* set hrrq number where the IOA should respond to. Note that all cmds
3298	 * generated internally uses hrrq_id 0, exception to this is the cmd
3299	 * block of scsi_cmd which is re-used (e.g. cancel/abort), which uses
3300	 * hrrq_id assigned here in queuecommand
3301	 */
3302	ioarcb->hrrq_id = atomic_add_return(1, &(pinstance->last_message_id)) %
3303			  pinstance->num_hrrq;
3304	cmd->cmd_done = pmcraid_io_done;
3305
3306	if (RES_IS_GSCSI(res->cfg_entry) || RES_IS_VSET(res->cfg_entry)) {
3307		if (scsi_cmd->underflow == 0)
3308			ioarcb->request_flags0 |= INHIBIT_UL_CHECK;
3309
3310		if (res->sync_reqd) {
3311			ioarcb->request_flags0 |= SYNC_COMPLETE;
3312			res->sync_reqd = 0;
3313		}
3314
3315		ioarcb->request_flags0 |= NO_LINK_DESCS;
3316
3317		if (scsi_cmd->flags & SCMD_TAGGED)
3318			ioarcb->request_flags1 |= TASK_TAG_SIMPLE;
3319
3320		if (RES_IS_GSCSI(res->cfg_entry))
3321			ioarcb->request_flags1 |= DELAY_AFTER_RESET;
3322	}
3323
3324	rc = pmcraid_build_ioadl(pinstance, cmd);
3325
3326	pmcraid_info("command (%d) CDB[0] = %x for %x:%x:%x:%x\n",
3327		     le32_to_cpu(ioarcb->response_handle) >> 2,
3328		     scsi_cmd->cmnd[0], pinstance->host->unique_id,
3329		     RES_IS_VSET(res->cfg_entry) ? PMCRAID_VSET_BUS_ID :
3330			PMCRAID_PHYS_BUS_ID,
3331		     RES_IS_VSET(res->cfg_entry) ?
3332			(fw_version <= PMCRAID_FW_VERSION_1 ?
3333				res->cfg_entry.unique_flags1 :
3334				le16_to_cpu(res->cfg_entry.array_id) & 0xFF) :
3335			RES_TARGET(res->cfg_entry.resource_address),
3336		     RES_LUN(res->cfg_entry.resource_address));
3337
3338	if (likely(rc == 0)) {
3339		_pmcraid_fire_command(cmd);
3340	} else {
3341		pmcraid_err("queuecommand could not build ioadl\n");
3342		pmcraid_return_cmd(cmd);
3343		rc = SCSI_MLQUEUE_HOST_BUSY;
3344	}
3345
3346	return rc;
3347}
3348
3349static DEF_SCSI_QCMD(pmcraid_queuecommand)
3350
3351/*
3352 * pmcraid_open -char node "open" entry, allowed only users with admin access
3353 */
3354static int pmcraid_chr_open(struct inode *inode, struct file *filep)
3355{
3356	struct pmcraid_instance *pinstance;
3357
3358	if (!capable(CAP_SYS_ADMIN))
3359		return -EACCES;
3360
3361	/* Populate adapter instance * pointer for use by ioctl */
3362	pinstance = container_of(inode->i_cdev, struct pmcraid_instance, cdev);
3363	filep->private_data = pinstance;
3364
3365	return 0;
3366}
3367
3368/*
 
 
 
 
 
 
 
 
 
 
 
 
 
3369 * pmcraid_fasync - Async notifier registration from applications
3370 *
3371 * This function adds the calling process to a driver global queue. When an
3372 * event occurs, SIGIO will be sent to all processes in this queue.
3373 */
3374static int pmcraid_chr_fasync(int fd, struct file *filep, int mode)
3375{
3376	struct pmcraid_instance *pinstance;
3377	int rc;
3378
3379	pinstance = filep->private_data;
3380	mutex_lock(&pinstance->aen_queue_lock);
3381	rc = fasync_helper(fd, filep, mode, &pinstance->aen_queue);
3382	mutex_unlock(&pinstance->aen_queue_lock);
3383
3384	return rc;
3385}
3386
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
3387/**
3388 * pmcraid_ioctl_driver - ioctl handler for commands handled by driver itself
3389 *
3390 * @pinstance: pointer to adapter instance structure
3391 * @cmd: ioctl command passed in
3392 * @buflen: length of user_buffer
3393 * @user_buffer: user buffer pointer
3394 *
3395 * Return Value
3396 *   0 in case of success, otherwise appropriate error code
3397 */
3398static long pmcraid_ioctl_driver(
3399	struct pmcraid_instance *pinstance,
3400	unsigned int cmd,
3401	unsigned int buflen,
3402	void __user *user_buffer
3403)
3404{
3405	int rc = -ENOSYS;
3406
 
 
 
 
 
3407	switch (cmd) {
3408	case PMCRAID_IOCTL_RESET_ADAPTER:
3409		pmcraid_reset_bringup(pinstance);
3410		rc = 0;
3411		break;
3412
3413	default:
3414		break;
3415	}
3416
3417	return rc;
3418}
3419
3420/**
3421 * pmcraid_check_ioctl_buffer - check for proper access to user buffer
3422 *
3423 * @cmd: ioctl command
3424 * @arg: user buffer
3425 * @hdr: pointer to kernel memory for pmcraid_ioctl_header
3426 *
3427 * Return Value
3428 *	negetive error code if there are access issues, otherwise zero.
3429 *	Upon success, returns ioctl header copied out of user buffer.
3430 */
3431
3432static int pmcraid_check_ioctl_buffer(
3433	int cmd,
3434	void __user *arg,
3435	struct pmcraid_ioctl_header *hdr
3436)
3437{
3438	int rc;
 
3439
3440	if (copy_from_user(hdr, arg, sizeof(struct pmcraid_ioctl_header))) {
3441		pmcraid_err("couldn't copy ioctl header from user buffer\n");
3442		return -EFAULT;
3443	}
3444
3445	/* check for valid driver signature */
3446	rc = memcmp(hdr->signature,
3447		    PMCRAID_IOCTL_SIGNATURE,
3448		    sizeof(hdr->signature));
3449	if (rc) {
3450		pmcraid_err("signature verification failed\n");
3451		return -EINVAL;
3452	}
3453
 
 
 
 
 
 
 
 
 
 
 
 
 
3454	return 0;
3455}
3456
3457/*
3458 *  pmcraid_ioctl - char node ioctl entry point
3459 */
3460static long pmcraid_chr_ioctl(
3461	struct file *filep,
3462	unsigned int cmd,
3463	unsigned long arg
3464)
3465{
3466	struct pmcraid_instance *pinstance = NULL;
3467	struct pmcraid_ioctl_header *hdr = NULL;
3468	void __user *argp = (void __user *)arg;
3469	int retval = -ENOTTY;
3470
3471	hdr = kmalloc(sizeof(struct pmcraid_ioctl_header), GFP_KERNEL);
3472
3473	if (!hdr) {
3474		pmcraid_err("failed to allocate memory for ioctl header\n");
3475		return -ENOMEM;
3476	}
3477
3478	retval = pmcraid_check_ioctl_buffer(cmd, argp, hdr);
3479
3480	if (retval) {
3481		pmcraid_info("chr_ioctl: header check failed\n");
3482		kfree(hdr);
3483		return retval;
3484	}
3485
3486	pinstance = filep->private_data;
3487
3488	if (!pinstance) {
3489		pmcraid_info("adapter instance is not found\n");
3490		kfree(hdr);
3491		return -ENOTTY;
3492	}
3493
3494	switch (_IOC_TYPE(cmd)) {
3495
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
3496	case PMCRAID_DRIVER_IOCTL:
3497		arg += sizeof(struct pmcraid_ioctl_header);
3498		retval = pmcraid_ioctl_driver(pinstance, cmd,
3499					      hdr->buffer_length, argp);
 
 
3500		break;
3501
3502	default:
3503		retval = -ENOTTY;
3504		break;
3505	}
3506
3507	kfree(hdr);
3508
3509	return retval;
3510}
3511
3512/*
3513 * File operations structure for management interface
3514 */
3515static const struct file_operations pmcraid_fops = {
3516	.owner = THIS_MODULE,
3517	.open = pmcraid_chr_open,
 
3518	.fasync = pmcraid_chr_fasync,
3519	.unlocked_ioctl = pmcraid_chr_ioctl,
3520	.compat_ioctl = compat_ptr_ioctl,
 
 
3521	.llseek = noop_llseek,
3522};
3523
3524
3525
3526
3527/**
3528 * pmcraid_show_log_level - Display adapter's error logging level
3529 * @dev: class device struct
3530 * @attr: unused
3531 * @buf: buffer
3532 *
3533 * Return value:
3534 *  number of bytes printed to buffer
3535 */
3536static ssize_t pmcraid_show_log_level(
3537	struct device *dev,
3538	struct device_attribute *attr,
3539	char *buf)
3540{
3541	struct Scsi_Host *shost = class_to_shost(dev);
3542	struct pmcraid_instance *pinstance =
3543		(struct pmcraid_instance *)shost->hostdata;
3544	return snprintf(buf, PAGE_SIZE, "%d\n", pinstance->current_log_level);
3545}
3546
3547/**
3548 * pmcraid_store_log_level - Change the adapter's error logging level
3549 * @dev: class device struct
3550 * @attr: unused
3551 * @buf: buffer
3552 * @count: not used
3553 *
3554 * Return value:
3555 *  number of bytes printed to buffer
3556 */
3557static ssize_t pmcraid_store_log_level(
3558	struct device *dev,
3559	struct device_attribute *attr,
3560	const char *buf,
3561	size_t count
3562)
3563{
3564	struct Scsi_Host *shost;
3565	struct pmcraid_instance *pinstance;
3566	u8 val;
3567
3568	if (kstrtou8(buf, 10, &val))
3569		return -EINVAL;
3570	/* log-level should be from 0 to 2 */
3571	if (val > 2)
3572		return -EINVAL;
3573
3574	shost = class_to_shost(dev);
3575	pinstance = (struct pmcraid_instance *)shost->hostdata;
3576	pinstance->current_log_level = val;
3577
3578	return strlen(buf);
3579}
3580
3581static struct device_attribute pmcraid_log_level_attr = {
3582	.attr = {
3583		 .name = "log_level",
3584		 .mode = S_IRUGO | S_IWUSR,
3585		 },
3586	.show = pmcraid_show_log_level,
3587	.store = pmcraid_store_log_level,
3588};
3589
3590/**
3591 * pmcraid_show_drv_version - Display driver version
3592 * @dev: class device struct
3593 * @attr: unused
3594 * @buf: buffer
3595 *
3596 * Return value:
3597 *  number of bytes printed to buffer
3598 */
3599static ssize_t pmcraid_show_drv_version(
3600	struct device *dev,
3601	struct device_attribute *attr,
3602	char *buf
3603)
3604{
3605	return snprintf(buf, PAGE_SIZE, "version: %s\n",
3606			PMCRAID_DRIVER_VERSION);
3607}
3608
3609static struct device_attribute pmcraid_driver_version_attr = {
3610	.attr = {
3611		 .name = "drv_version",
3612		 .mode = S_IRUGO,
3613		 },
3614	.show = pmcraid_show_drv_version,
3615};
3616
3617/**
3618 * pmcraid_show_adapter_id - Display driver assigned adapter id
3619 * @dev: class device struct
3620 * @attr: unused
3621 * @buf: buffer
3622 *
3623 * Return value:
3624 *  number of bytes printed to buffer
3625 */
3626static ssize_t pmcraid_show_adapter_id(
3627	struct device *dev,
3628	struct device_attribute *attr,
3629	char *buf
3630)
3631{
3632	struct Scsi_Host *shost = class_to_shost(dev);
3633	struct pmcraid_instance *pinstance =
3634		(struct pmcraid_instance *)shost->hostdata;
3635	u32 adapter_id = pci_dev_id(pinstance->pdev);
 
3636	u32 aen_group = pmcraid_event_family.id;
3637
3638	return snprintf(buf, PAGE_SIZE,
3639			"adapter id: %d\nminor: %d\naen group: %d\n",
3640			adapter_id, MINOR(pinstance->cdev.dev), aen_group);
3641}
3642
3643static struct device_attribute pmcraid_adapter_id_attr = {
3644	.attr = {
3645		 .name = "adapter_id",
3646		 .mode = S_IRUGO,
3647		 },
3648	.show = pmcraid_show_adapter_id,
3649};
3650
3651static struct attribute *pmcraid_host_attrs[] = {
3652	&pmcraid_log_level_attr.attr,
3653	&pmcraid_driver_version_attr.attr,
3654	&pmcraid_adapter_id_attr.attr,
3655	NULL,
3656};
3657
3658ATTRIBUTE_GROUPS(pmcraid_host);
3659
3660/* host template structure for pmcraid driver */
3661static const struct scsi_host_template pmcraid_host_template = {
3662	.module = THIS_MODULE,
3663	.name = PMCRAID_DRIVER_NAME,
3664	.queuecommand = pmcraid_queuecommand,
3665	.eh_abort_handler = pmcraid_eh_abort_handler,
3666	.eh_bus_reset_handler = pmcraid_eh_bus_reset_handler,
3667	.eh_target_reset_handler = pmcraid_eh_target_reset_handler,
3668	.eh_device_reset_handler = pmcraid_eh_device_reset_handler,
3669	.eh_host_reset_handler = pmcraid_eh_host_reset_handler,
3670
3671	.slave_alloc = pmcraid_slave_alloc,
3672	.device_configure = pmcraid_device_configure,
3673	.slave_destroy = pmcraid_slave_destroy,
3674	.change_queue_depth = pmcraid_change_queue_depth,
 
3675	.can_queue = PMCRAID_MAX_IO_CMD,
3676	.this_id = -1,
3677	.sg_tablesize = PMCRAID_MAX_IOADLS,
3678	.max_sectors = PMCRAID_IOA_MAX_SECTORS,
3679	.no_write_same = 1,
3680	.cmd_per_lun = PMCRAID_MAX_CMD_PER_LUN,
3681	.shost_groups = pmcraid_host_groups,
3682	.proc_name = PMCRAID_DRIVER_NAME,
 
3683};
3684
3685/*
3686 * pmcraid_isr_msix - implements MSI-X interrupt handling routine
3687 * @irq: interrupt vector number
3688 * @dev_id: pointer hrrq_vector
3689 *
3690 * Return Value
3691 *	 IRQ_HANDLED if interrupt is handled or IRQ_NONE if ignored
3692 */
3693
3694static irqreturn_t pmcraid_isr_msix(int irq, void *dev_id)
3695{
3696	struct pmcraid_isr_param *hrrq_vector;
3697	struct pmcraid_instance *pinstance;
3698	unsigned long lock_flags;
3699	u32 intrs_val;
3700	int hrrq_id;
3701
3702	hrrq_vector = (struct pmcraid_isr_param *)dev_id;
3703	hrrq_id = hrrq_vector->hrrq_id;
3704	pinstance = hrrq_vector->drv_inst;
3705
3706	if (!hrrq_id) {
3707		/* Read the interrupt */
3708		intrs_val = pmcraid_read_interrupts(pinstance);
3709		if (intrs_val &&
3710			((ioread32(pinstance->int_regs.host_ioa_interrupt_reg)
3711			& DOORBELL_INTR_MSIX_CLR) == 0)) {
3712			/* Any error interrupts including unit_check,
3713			 * initiate IOA reset.In case of unit check indicate
3714			 * to reset_sequence that IOA unit checked and prepare
3715			 * for a dump during reset sequence
3716			 */
3717			if (intrs_val & PMCRAID_ERROR_INTERRUPTS) {
3718				if (intrs_val & INTRS_IOA_UNIT_CHECK)
3719					pinstance->ioa_unit_check = 1;
3720
3721				pmcraid_err("ISR: error interrupts: %x \
3722					initiating reset\n", intrs_val);
3723				spin_lock_irqsave(pinstance->host->host_lock,
3724					lock_flags);
3725				pmcraid_initiate_reset(pinstance);
3726				spin_unlock_irqrestore(
3727					pinstance->host->host_lock,
3728					lock_flags);
3729			}
3730			/* If interrupt was as part of the ioa initialization,
3731			 * clear it. Delete the timer and wakeup the
3732			 * reset engine to proceed with reset sequence
3733			 */
3734			if (intrs_val & INTRS_TRANSITION_TO_OPERATIONAL)
3735				pmcraid_clr_trans_op(pinstance);
3736
3737			/* Clear the interrupt register by writing
3738			 * to host to ioa doorbell. Once done
3739			 * FW will clear the interrupt.
3740			 */
3741			iowrite32(DOORBELL_INTR_MSIX_CLR,
3742				pinstance->int_regs.host_ioa_interrupt_reg);
3743			ioread32(pinstance->int_regs.host_ioa_interrupt_reg);
3744
3745
3746		}
3747	}
3748
3749	tasklet_schedule(&(pinstance->isr_tasklet[hrrq_id]));
3750
3751	return IRQ_HANDLED;
3752}
3753
3754/**
3755 * pmcraid_isr  - implements legacy interrupt handling routine
3756 *
3757 * @irq: interrupt vector number
3758 * @dev_id: pointer hrrq_vector
3759 *
3760 * Return Value
3761 *	 IRQ_HANDLED if interrupt is handled or IRQ_NONE if ignored
3762 */
3763static irqreturn_t pmcraid_isr(int irq, void *dev_id)
3764{
3765	struct pmcraid_isr_param *hrrq_vector;
3766	struct pmcraid_instance *pinstance;
3767	u32 intrs;
3768	unsigned long lock_flags;
3769	int hrrq_id = 0;
3770
3771	/* In case of legacy interrupt mode where interrupts are shared across
3772	 * isrs, it may be possible that the current interrupt is not from IOA
3773	 */
3774	if (!dev_id) {
3775		printk(KERN_INFO "%s(): NULL host pointer\n", __func__);
3776		return IRQ_NONE;
3777	}
3778	hrrq_vector = (struct pmcraid_isr_param *)dev_id;
3779	pinstance = hrrq_vector->drv_inst;
3780
3781	intrs = pmcraid_read_interrupts(pinstance);
3782
3783	if (unlikely((intrs & PMCRAID_PCI_INTERRUPTS) == 0))
3784		return IRQ_NONE;
3785
3786	/* Any error interrupts including unit_check, initiate IOA reset.
3787	 * In case of unit check indicate to reset_sequence that IOA unit
3788	 * checked and prepare for a dump during reset sequence
3789	 */
3790	if (intrs & PMCRAID_ERROR_INTERRUPTS) {
3791
3792		if (intrs & INTRS_IOA_UNIT_CHECK)
3793			pinstance->ioa_unit_check = 1;
3794
3795		iowrite32(intrs,
3796			  pinstance->int_regs.ioa_host_interrupt_clr_reg);
3797		pmcraid_err("ISR: error interrupts: %x initiating reset\n",
3798			    intrs);
3799		intrs = ioread32(
3800				pinstance->int_regs.ioa_host_interrupt_clr_reg);
3801		spin_lock_irqsave(pinstance->host->host_lock, lock_flags);
3802		pmcraid_initiate_reset(pinstance);
3803		spin_unlock_irqrestore(pinstance->host->host_lock, lock_flags);
3804	} else {
3805		/* If interrupt was as part of the ioa initialization,
3806		 * clear. Delete the timer and wakeup the
3807		 * reset engine to proceed with reset sequence
3808		 */
3809		if (intrs & INTRS_TRANSITION_TO_OPERATIONAL) {
3810			pmcraid_clr_trans_op(pinstance);
3811		} else {
3812			iowrite32(intrs,
3813				pinstance->int_regs.ioa_host_interrupt_clr_reg);
3814			ioread32(
3815				pinstance->int_regs.ioa_host_interrupt_clr_reg);
3816
3817			tasklet_schedule(
3818					&(pinstance->isr_tasklet[hrrq_id]));
3819		}
3820	}
3821
3822	return IRQ_HANDLED;
3823}
3824
3825
3826/**
3827 * pmcraid_worker_function -  worker thread function
3828 *
3829 * @workp: pointer to struct work queue
3830 *
3831 * Return Value
3832 *	 None
3833 */
3834
3835static void pmcraid_worker_function(struct work_struct *workp)
3836{
3837	struct pmcraid_instance *pinstance;
3838	struct pmcraid_resource_entry *res;
3839	struct pmcraid_resource_entry *temp;
3840	struct scsi_device *sdev;
3841	unsigned long lock_flags;
3842	unsigned long host_lock_flags;
3843	u16 fw_version;
3844	u8 bus, target, lun;
3845
3846	pinstance = container_of(workp, struct pmcraid_instance, worker_q);
3847	/* add resources only after host is added into system */
3848	if (!atomic_read(&pinstance->expose_resources))
3849		return;
3850
3851	fw_version = be16_to_cpu(pinstance->inq_data->fw_version);
3852
3853	spin_lock_irqsave(&pinstance->resource_lock, lock_flags);
3854	list_for_each_entry_safe(res, temp, &pinstance->used_res_q, queue) {
3855
3856		if (res->change_detected == RES_CHANGE_DEL && res->scsi_dev) {
3857			sdev = res->scsi_dev;
3858
3859			/* host_lock must be held before calling
3860			 * scsi_device_get
3861			 */
3862			spin_lock_irqsave(pinstance->host->host_lock,
3863					  host_lock_flags);
3864			if (!scsi_device_get(sdev)) {
3865				spin_unlock_irqrestore(
3866						pinstance->host->host_lock,
3867						host_lock_flags);
3868				pmcraid_info("deleting %x from midlayer\n",
3869					     res->cfg_entry.resource_address);
3870				list_move_tail(&res->queue,
3871						&pinstance->free_res_q);
3872				spin_unlock_irqrestore(
3873					&pinstance->resource_lock,
3874					lock_flags);
3875				scsi_remove_device(sdev);
3876				scsi_device_put(sdev);
3877				spin_lock_irqsave(&pinstance->resource_lock,
3878						   lock_flags);
3879				res->change_detected = 0;
3880			} else {
3881				spin_unlock_irqrestore(
3882						pinstance->host->host_lock,
3883						host_lock_flags);
3884			}
3885		}
3886	}
3887
3888	list_for_each_entry(res, &pinstance->used_res_q, queue) {
3889
3890		if (res->change_detected == RES_CHANGE_ADD) {
3891
3892			if (!pmcraid_expose_resource(fw_version,
3893						     &res->cfg_entry))
3894				continue;
3895
3896			if (RES_IS_VSET(res->cfg_entry)) {
3897				bus = PMCRAID_VSET_BUS_ID;
3898				if (fw_version <= PMCRAID_FW_VERSION_1)
3899					target = res->cfg_entry.unique_flags1;
3900				else
3901					target = le16_to_cpu(res->cfg_entry.array_id) & 0xFF;
3902				lun = PMCRAID_VSET_LUN_ID;
3903			} else {
3904				bus = PMCRAID_PHYS_BUS_ID;
3905				target =
3906				     RES_TARGET(
3907					res->cfg_entry.resource_address);
3908				lun = RES_LUN(res->cfg_entry.resource_address);
3909			}
3910
3911			res->change_detected = 0;
3912			spin_unlock_irqrestore(&pinstance->resource_lock,
3913						lock_flags);
3914			scsi_add_device(pinstance->host, bus, target, lun);
3915			spin_lock_irqsave(&pinstance->resource_lock,
3916					   lock_flags);
3917		}
3918	}
3919
3920	spin_unlock_irqrestore(&pinstance->resource_lock, lock_flags);
3921}
3922
3923/**
3924 * pmcraid_tasklet_function - Tasklet function
3925 *
3926 * @instance: pointer to msix param structure
3927 *
3928 * Return Value
3929 *	None
3930 */
3931static void pmcraid_tasklet_function(unsigned long instance)
3932{
3933	struct pmcraid_isr_param *hrrq_vector;
3934	struct pmcraid_instance *pinstance;
3935	unsigned long hrrq_lock_flags;
3936	unsigned long pending_lock_flags;
3937	unsigned long host_lock_flags;
3938	spinlock_t *lockp; /* hrrq buffer lock */
3939	int id;
3940	u32 resp;
3941
3942	hrrq_vector = (struct pmcraid_isr_param *)instance;
3943	pinstance = hrrq_vector->drv_inst;
3944	id = hrrq_vector->hrrq_id;
3945	lockp = &(pinstance->hrrq_lock[id]);
3946
3947	/* loop through each of the commands responded by IOA. Each HRRQ buf is
3948	 * protected by its own lock. Traversals must be done within this lock
3949	 * as there may be multiple tasklets running on multiple CPUs. Note
3950	 * that the lock is held just for picking up the response handle and
3951	 * manipulating hrrq_curr/toggle_bit values.
3952	 */
3953	spin_lock_irqsave(lockp, hrrq_lock_flags);
3954
3955	resp = le32_to_cpu(*(pinstance->hrrq_curr[id]));
3956
3957	while ((resp & HRRQ_TOGGLE_BIT) ==
3958		pinstance->host_toggle_bit[id]) {
3959
3960		int cmd_index = resp >> 2;
3961		struct pmcraid_cmd *cmd = NULL;
3962
3963		if (pinstance->hrrq_curr[id] < pinstance->hrrq_end[id]) {
3964			pinstance->hrrq_curr[id]++;
3965		} else {
3966			pinstance->hrrq_curr[id] = pinstance->hrrq_start[id];
3967			pinstance->host_toggle_bit[id] ^= 1u;
3968		}
3969
3970		if (cmd_index >= PMCRAID_MAX_CMD) {
3971			/* In case of invalid response handle, log message */
3972			pmcraid_err("Invalid response handle %d\n", cmd_index);
3973			resp = le32_to_cpu(*(pinstance->hrrq_curr[id]));
3974			continue;
3975		}
3976
3977		cmd = pinstance->cmd_list[cmd_index];
3978		spin_unlock_irqrestore(lockp, hrrq_lock_flags);
3979
3980		spin_lock_irqsave(&pinstance->pending_pool_lock,
3981				   pending_lock_flags);
3982		list_del(&cmd->free_list);
3983		spin_unlock_irqrestore(&pinstance->pending_pool_lock,
3984					pending_lock_flags);
3985		del_timer(&cmd->timer);
3986		atomic_dec(&pinstance->outstanding_cmds);
3987
3988		if (cmd->cmd_done == pmcraid_ioa_reset) {
3989			spin_lock_irqsave(pinstance->host->host_lock,
3990					  host_lock_flags);
3991			cmd->cmd_done(cmd);
3992			spin_unlock_irqrestore(pinstance->host->host_lock,
3993					       host_lock_flags);
3994		} else if (cmd->cmd_done != NULL) {
3995			cmd->cmd_done(cmd);
3996		}
3997		/* loop over until we are done with all responses */
3998		spin_lock_irqsave(lockp, hrrq_lock_flags);
3999		resp = le32_to_cpu(*(pinstance->hrrq_curr[id]));
4000	}
4001
4002	spin_unlock_irqrestore(lockp, hrrq_lock_flags);
4003}
4004
4005/**
4006 * pmcraid_unregister_interrupt_handler - de-register interrupts handlers
4007 * @pinstance: pointer to adapter instance structure
4008 *
4009 * This routine un-registers registered interrupt handler and
4010 * also frees irqs/vectors.
4011 *
4012 * Return Value
4013 *	None
4014 */
4015static
4016void pmcraid_unregister_interrupt_handler(struct pmcraid_instance *pinstance)
4017{
4018	struct pci_dev *pdev = pinstance->pdev;
4019	int i;
4020
4021	for (i = 0; i < pinstance->num_hrrq; i++)
4022		free_irq(pci_irq_vector(pdev, i), &pinstance->hrrq_vector[i]);
 
4023
4024	pinstance->interrupt_mode = 0;
4025	pci_free_irq_vectors(pdev);
 
 
4026}
4027
4028/**
4029 * pmcraid_register_interrupt_handler - registers interrupt handler
4030 * @pinstance: pointer to per-adapter instance structure
4031 *
4032 * Return Value
4033 *	0 on success, non-zero error code otherwise.
4034 */
4035static int
4036pmcraid_register_interrupt_handler(struct pmcraid_instance *pinstance)
4037{
 
4038	struct pci_dev *pdev = pinstance->pdev;
4039	unsigned int irq_flag = PCI_IRQ_INTX, flag;
4040	int num_hrrq, rc, i;
4041	irq_handler_t isr;
4042
4043	if (pmcraid_enable_msix)
4044		irq_flag |= PCI_IRQ_MSIX;
4045
4046	num_hrrq = pci_alloc_irq_vectors(pdev, 1, PMCRAID_NUM_MSIX_VECTORS,
4047			irq_flag);
4048	if (num_hrrq < 0)
4049		return num_hrrq;
4050
4051	if (pdev->msix_enabled) {
4052		flag = 0;
4053		isr = pmcraid_isr_msix;
4054	} else {
4055		flag = IRQF_SHARED;
4056		isr = pmcraid_isr;
4057	}
4058
4059	for (i = 0; i < num_hrrq; i++) {
4060		struct pmcraid_isr_param *vec = &pinstance->hrrq_vector[i];
 
 
 
 
 
 
 
 
 
4061
4062		vec->hrrq_id = i;
4063		vec->drv_inst = pinstance;
4064		rc = request_irq(pci_irq_vector(pdev, i), isr, flag,
4065				PMCRAID_DRIVER_NAME, vec);
4066		if (rc)
4067			goto out_unwind;
4068	}
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
4069
4070	pinstance->num_hrrq = num_hrrq;
4071	if (pdev->msix_enabled) {
4072		pinstance->interrupt_mode = 1;
4073		iowrite32(DOORBELL_INTR_MODE_MSIX,
4074			  pinstance->int_regs.host_ioa_interrupt_reg);
4075		ioread32(pinstance->int_regs.host_ioa_interrupt_reg);
 
4076	}
4077
4078	return 0;
4079
4080out_unwind:
4081	while (--i >= 0)
4082		free_irq(pci_irq_vector(pdev, i), &pinstance->hrrq_vector[i]);
4083	pci_free_irq_vectors(pdev);
 
 
 
 
 
 
 
4084	return rc;
4085}
4086
4087/**
4088 * pmcraid_release_cmd_blocks - release buufers allocated for command blocks
4089 * @pinstance: per adapter instance structure pointer
4090 * @max_index: number of buffer blocks to release
4091 *
4092 * Return Value
4093 *  None
4094 */
4095static void
4096pmcraid_release_cmd_blocks(struct pmcraid_instance *pinstance, int max_index)
4097{
4098	int i;
4099	for (i = 0; i < max_index; i++) {
4100		kmem_cache_free(pinstance->cmd_cachep, pinstance->cmd_list[i]);
4101		pinstance->cmd_list[i] = NULL;
4102	}
4103	kmem_cache_destroy(pinstance->cmd_cachep);
4104	pinstance->cmd_cachep = NULL;
4105}
4106
4107/**
4108 * pmcraid_release_control_blocks - releases buffers alloced for control blocks
4109 * @pinstance: pointer to per adapter instance structure
4110 * @max_index: number of buffers (from 0 onwards) to release
4111 *
4112 * This function assumes that the command blocks for which control blocks are
4113 * linked are not released.
4114 *
4115 * Return Value
4116 *	 None
4117 */
4118static void
4119pmcraid_release_control_blocks(
4120	struct pmcraid_instance *pinstance,
4121	int max_index
4122)
4123{
4124	int i;
4125
4126	if (pinstance->control_pool == NULL)
4127		return;
4128
4129	for (i = 0; i < max_index; i++) {
4130		dma_pool_free(pinstance->control_pool,
4131			      pinstance->cmd_list[i]->ioa_cb,
4132			      pinstance->cmd_list[i]->ioa_cb_bus_addr);
4133		pinstance->cmd_list[i]->ioa_cb = NULL;
4134		pinstance->cmd_list[i]->ioa_cb_bus_addr = 0;
4135	}
4136	dma_pool_destroy(pinstance->control_pool);
4137	pinstance->control_pool = NULL;
4138}
4139
4140/**
4141 * pmcraid_allocate_cmd_blocks - allocate memory for cmd block structures
4142 * @pinstance: pointer to per adapter instance structure
4143 *
4144 * Allocates memory for command blocks using kernel slab allocator.
4145 *
4146 * Return Value
4147 *	0 in case of success; -ENOMEM in case of failure
4148 */
4149static int pmcraid_allocate_cmd_blocks(struct pmcraid_instance *pinstance)
 
4150{
4151	int i;
4152
4153	sprintf(pinstance->cmd_pool_name, "pmcraid_cmd_pool_%d",
4154		pinstance->host->unique_id);
4155
4156
4157	pinstance->cmd_cachep = kmem_cache_create(
4158					pinstance->cmd_pool_name,
4159					sizeof(struct pmcraid_cmd), 0,
4160					SLAB_HWCACHE_ALIGN, NULL);
4161	if (!pinstance->cmd_cachep)
4162		return -ENOMEM;
4163
4164	for (i = 0; i < PMCRAID_MAX_CMD; i++) {
4165		pinstance->cmd_list[i] =
4166			kmem_cache_alloc(pinstance->cmd_cachep, GFP_KERNEL);
4167		if (!pinstance->cmd_list[i]) {
4168			pmcraid_release_cmd_blocks(pinstance, i);
4169			return -ENOMEM;
4170		}
4171	}
4172	return 0;
4173}
4174
4175/**
4176 * pmcraid_allocate_control_blocks - allocates memory control blocks
4177 * @pinstance : pointer to per adapter instance structure
4178 *
4179 * This function allocates PCI memory for DMAable buffers like IOARCB, IOADLs
4180 * and IOASAs. This is called after command blocks are already allocated.
4181 *
4182 * Return Value
4183 *  0 in case it can allocate all control blocks, otherwise -ENOMEM
4184 */
4185static int pmcraid_allocate_control_blocks(struct pmcraid_instance *pinstance)
 
4186{
4187	int i;
4188
4189	sprintf(pinstance->ctl_pool_name, "pmcraid_control_pool_%d",
4190		pinstance->host->unique_id);
4191
4192	pinstance->control_pool =
4193		dma_pool_create(pinstance->ctl_pool_name,
4194				&pinstance->pdev->dev,
4195				sizeof(struct pmcraid_control_block),
4196				PMCRAID_IOARCB_ALIGNMENT, 0);
4197
4198	if (!pinstance->control_pool)
4199		return -ENOMEM;
4200
4201	for (i = 0; i < PMCRAID_MAX_CMD; i++) {
4202		pinstance->cmd_list[i]->ioa_cb =
4203			dma_pool_zalloc(
4204				pinstance->control_pool,
4205				GFP_KERNEL,
4206				&(pinstance->cmd_list[i]->ioa_cb_bus_addr));
4207
4208		if (!pinstance->cmd_list[i]->ioa_cb) {
4209			pmcraid_release_control_blocks(pinstance, i);
4210			return -ENOMEM;
4211		}
 
 
4212	}
4213	return 0;
4214}
4215
4216/**
4217 * pmcraid_release_host_rrqs - release memory allocated for hrrq buffer(s)
4218 * @pinstance: pointer to per adapter instance structure
4219 * @maxindex: size of hrrq buffer pointer array
4220 *
4221 * Return Value
4222 *	None
4223 */
4224static void
4225pmcraid_release_host_rrqs(struct pmcraid_instance *pinstance, int maxindex)
4226{
4227	int i;
 
4228
4229	for (i = 0; i < maxindex; i++) {
4230		dma_free_coherent(&pinstance->pdev->dev,
4231				    HRRQ_ENTRY_SIZE * PMCRAID_MAX_CMD,
4232				    pinstance->hrrq_start[i],
4233				    pinstance->hrrq_start_bus_addr[i]);
4234
4235		/* reset pointers and toggle bit to zeros */
4236		pinstance->hrrq_start[i] = NULL;
4237		pinstance->hrrq_start_bus_addr[i] = 0;
4238		pinstance->host_toggle_bit[i] = 0;
4239	}
4240}
4241
4242/**
4243 * pmcraid_allocate_host_rrqs - Allocate and initialize host RRQ buffers
4244 * @pinstance: pointer to per adapter instance structure
4245 *
4246 * Return value
4247 *	0 hrrq buffers are allocated, -ENOMEM otherwise.
4248 */
4249static int pmcraid_allocate_host_rrqs(struct pmcraid_instance *pinstance)
 
4250{
4251	int i, buffer_size;
4252
4253	buffer_size = HRRQ_ENTRY_SIZE * PMCRAID_MAX_CMD;
4254
4255	for (i = 0; i < pinstance->num_hrrq; i++) {
4256		pinstance->hrrq_start[i] =
4257			dma_alloc_coherent(&pinstance->pdev->dev, buffer_size,
4258					   &pinstance->hrrq_start_bus_addr[i],
4259					   GFP_KERNEL);
4260		if (!pinstance->hrrq_start[i]) {
 
 
4261			pmcraid_err("pci_alloc failed for hrrq vector : %d\n",
4262				    i);
4263			pmcraid_release_host_rrqs(pinstance, i);
4264			return -ENOMEM;
4265		}
4266
 
4267		pinstance->hrrq_curr[i] = pinstance->hrrq_start[i];
4268		pinstance->hrrq_end[i] =
4269			pinstance->hrrq_start[i] + PMCRAID_MAX_CMD - 1;
4270		pinstance->host_toggle_bit[i] = 1;
4271		spin_lock_init(&pinstance->hrrq_lock[i]);
4272	}
4273	return 0;
4274}
4275
4276/**
4277 * pmcraid_release_hcams - release HCAM buffers
4278 *
4279 * @pinstance: pointer to per adapter instance structure
4280 *
4281 * Return value
4282 *  none
4283 */
4284static void pmcraid_release_hcams(struct pmcraid_instance *pinstance)
4285{
4286	if (pinstance->ccn.msg != NULL) {
4287		dma_free_coherent(&pinstance->pdev->dev,
4288				    PMCRAID_AEN_HDR_SIZE +
4289				    sizeof(struct pmcraid_hcam_ccn_ext),
4290				    pinstance->ccn.msg,
4291				    pinstance->ccn.baddr);
4292
4293		pinstance->ccn.msg = NULL;
4294		pinstance->ccn.hcam = NULL;
4295		pinstance->ccn.baddr = 0;
4296	}
4297
4298	if (pinstance->ldn.msg != NULL) {
4299		dma_free_coherent(&pinstance->pdev->dev,
4300				    PMCRAID_AEN_HDR_SIZE +
4301				    sizeof(struct pmcraid_hcam_ldn),
4302				    pinstance->ldn.msg,
4303				    pinstance->ldn.baddr);
4304
4305		pinstance->ldn.msg = NULL;
4306		pinstance->ldn.hcam = NULL;
4307		pinstance->ldn.baddr = 0;
4308	}
4309}
4310
4311/**
4312 * pmcraid_allocate_hcams - allocates HCAM buffers
4313 * @pinstance : pointer to per adapter instance structure
4314 *
4315 * Return Value:
4316 *   0 in case of successful allocation, non-zero otherwise
4317 */
4318static int pmcraid_allocate_hcams(struct pmcraid_instance *pinstance)
4319{
4320	pinstance->ccn.msg = dma_alloc_coherent(&pinstance->pdev->dev,
 
4321					PMCRAID_AEN_HDR_SIZE +
4322					sizeof(struct pmcraid_hcam_ccn_ext),
4323					&pinstance->ccn.baddr, GFP_KERNEL);
4324
4325	pinstance->ldn.msg = dma_alloc_coherent(&pinstance->pdev->dev,
 
4326					PMCRAID_AEN_HDR_SIZE +
4327					sizeof(struct pmcraid_hcam_ldn),
4328					&pinstance->ldn.baddr, GFP_KERNEL);
4329
4330	if (pinstance->ldn.msg == NULL || pinstance->ccn.msg == NULL) {
4331		pmcraid_release_hcams(pinstance);
4332	} else {
4333		pinstance->ccn.hcam =
4334			(void *)pinstance->ccn.msg + PMCRAID_AEN_HDR_SIZE;
4335		pinstance->ldn.hcam =
4336			(void *)pinstance->ldn.msg + PMCRAID_AEN_HDR_SIZE;
4337
4338		atomic_set(&pinstance->ccn.ignore, 0);
4339		atomic_set(&pinstance->ldn.ignore, 0);
4340	}
4341
4342	return (pinstance->ldn.msg == NULL) ? -ENOMEM : 0;
4343}
4344
4345/**
4346 * pmcraid_release_config_buffers - release config.table buffers
4347 * @pinstance: pointer to per adapter instance structure
4348 *
4349 * Return Value
4350 *	 none
4351 */
4352static void pmcraid_release_config_buffers(struct pmcraid_instance *pinstance)
4353{
4354	if (pinstance->cfg_table != NULL &&
4355	    pinstance->cfg_table_bus_addr != 0) {
4356		dma_free_coherent(&pinstance->pdev->dev,
4357				    sizeof(struct pmcraid_config_table),
4358				    pinstance->cfg_table,
4359				    pinstance->cfg_table_bus_addr);
4360		pinstance->cfg_table = NULL;
4361		pinstance->cfg_table_bus_addr = 0;
4362	}
4363
4364	if (pinstance->res_entries != NULL) {
4365		int i;
4366
4367		for (i = 0; i < PMCRAID_MAX_RESOURCES; i++)
4368			list_del(&pinstance->res_entries[i].queue);
4369		kfree(pinstance->res_entries);
4370		pinstance->res_entries = NULL;
4371	}
4372
4373	pmcraid_release_hcams(pinstance);
4374}
4375
4376/**
4377 * pmcraid_allocate_config_buffers - allocates DMAable memory for config table
4378 * @pinstance : pointer to per adapter instance structure
4379 *
4380 * Return Value
4381 *	0 for successful allocation, -ENOMEM for any failure
4382 */
4383static int pmcraid_allocate_config_buffers(struct pmcraid_instance *pinstance)
 
4384{
4385	int i;
4386
4387	pinstance->res_entries =
4388			kcalloc(PMCRAID_MAX_RESOURCES,
4389				sizeof(struct pmcraid_resource_entry),
4390				GFP_KERNEL);
4391
4392	if (NULL == pinstance->res_entries) {
4393		pmcraid_err("failed to allocate memory for resource table\n");
4394		return -ENOMEM;
4395	}
4396
4397	for (i = 0; i < PMCRAID_MAX_RESOURCES; i++)
4398		list_add_tail(&pinstance->res_entries[i].queue,
4399			      &pinstance->free_res_q);
4400
4401	pinstance->cfg_table = dma_alloc_coherent(&pinstance->pdev->dev,
 
4402				     sizeof(struct pmcraid_config_table),
4403				     &pinstance->cfg_table_bus_addr,
4404				     GFP_KERNEL);
4405
4406	if (NULL == pinstance->cfg_table) {
4407		pmcraid_err("couldn't alloc DMA memory for config table\n");
4408		pmcraid_release_config_buffers(pinstance);
4409		return -ENOMEM;
4410	}
4411
4412	if (pmcraid_allocate_hcams(pinstance)) {
4413		pmcraid_err("could not alloc DMA memory for HCAMS\n");
4414		pmcraid_release_config_buffers(pinstance);
4415		return -ENOMEM;
4416	}
4417
4418	return 0;
4419}
4420
4421/**
4422 * pmcraid_init_tasklets - registers tasklets for response handling
4423 *
4424 * @pinstance: pointer adapter instance structure
4425 *
4426 * Return value
4427 *	none
4428 */
4429static void pmcraid_init_tasklets(struct pmcraid_instance *pinstance)
4430{
4431	int i;
4432	for (i = 0; i < pinstance->num_hrrq; i++)
4433		tasklet_init(&pinstance->isr_tasklet[i],
4434			     pmcraid_tasklet_function,
4435			     (unsigned long)&pinstance->hrrq_vector[i]);
4436}
4437
4438/**
4439 * pmcraid_kill_tasklets - destroys tasklets registered for response handling
4440 *
4441 * @pinstance: pointer to adapter instance structure
4442 *
4443 * Return value
4444 *	none
4445 */
4446static void pmcraid_kill_tasklets(struct pmcraid_instance *pinstance)
4447{
4448	int i;
4449	for (i = 0; i < pinstance->num_hrrq; i++)
4450		tasklet_kill(&pinstance->isr_tasklet[i]);
4451}
4452
4453/**
4454 * pmcraid_release_buffers - release per-adapter buffers allocated
4455 *
4456 * @pinstance: pointer to adapter soft state
4457 *
4458 * Return Value
4459 *	none
4460 */
4461static void pmcraid_release_buffers(struct pmcraid_instance *pinstance)
4462{
4463	pmcraid_release_config_buffers(pinstance);
4464	pmcraid_release_control_blocks(pinstance, PMCRAID_MAX_CMD);
4465	pmcraid_release_cmd_blocks(pinstance, PMCRAID_MAX_CMD);
4466	pmcraid_release_host_rrqs(pinstance, pinstance->num_hrrq);
4467
4468	if (pinstance->inq_data != NULL) {
4469		dma_free_coherent(&pinstance->pdev->dev,
4470				    sizeof(struct pmcraid_inquiry_data),
4471				    pinstance->inq_data,
4472				    pinstance->inq_data_baddr);
4473
4474		pinstance->inq_data = NULL;
4475		pinstance->inq_data_baddr = 0;
4476	}
4477
4478	if (pinstance->timestamp_data != NULL) {
4479		dma_free_coherent(&pinstance->pdev->dev,
4480				    sizeof(struct pmcraid_timestamp_data),
4481				    pinstance->timestamp_data,
4482				    pinstance->timestamp_data_baddr);
4483
4484		pinstance->timestamp_data = NULL;
4485		pinstance->timestamp_data_baddr = 0;
4486	}
4487}
4488
4489/**
4490 * pmcraid_init_buffers - allocates memory and initializes various structures
4491 * @pinstance: pointer to per adapter instance structure
4492 *
4493 * This routine pre-allocates memory based on the type of block as below:
4494 * cmdblocks(PMCRAID_MAX_CMD): kernel memory using kernel's slab_allocator,
4495 * IOARCBs(PMCRAID_MAX_CMD)  : DMAable memory, using pci pool allocator
4496 * config-table entries      : DMAable memory using dma_alloc_coherent
4497 * HostRRQs                  : DMAable memory, using dma_alloc_coherent
4498 *
4499 * Return Value
4500 *	 0 in case all of the blocks are allocated, -ENOMEM otherwise.
4501 */
4502static int pmcraid_init_buffers(struct pmcraid_instance *pinstance)
4503{
4504	int i;
4505
4506	if (pmcraid_allocate_host_rrqs(pinstance)) {
4507		pmcraid_err("couldn't allocate memory for %d host rrqs\n",
4508			     pinstance->num_hrrq);
4509		return -ENOMEM;
4510	}
4511
4512	if (pmcraid_allocate_config_buffers(pinstance)) {
4513		pmcraid_err("couldn't allocate memory for config buffers\n");
4514		pmcraid_release_host_rrqs(pinstance, pinstance->num_hrrq);
4515		return -ENOMEM;
4516	}
4517
4518	if (pmcraid_allocate_cmd_blocks(pinstance)) {
4519		pmcraid_err("couldn't allocate memory for cmd blocks\n");
4520		pmcraid_release_config_buffers(pinstance);
4521		pmcraid_release_host_rrqs(pinstance, pinstance->num_hrrq);
4522		return -ENOMEM;
4523	}
4524
4525	if (pmcraid_allocate_control_blocks(pinstance)) {
4526		pmcraid_err("couldn't allocate memory control blocks\n");
4527		pmcraid_release_config_buffers(pinstance);
4528		pmcraid_release_cmd_blocks(pinstance, PMCRAID_MAX_CMD);
4529		pmcraid_release_host_rrqs(pinstance, pinstance->num_hrrq);
4530		return -ENOMEM;
4531	}
4532
4533	/* allocate DMAable memory for page D0 INQUIRY buffer */
4534	pinstance->inq_data = dma_alloc_coherent(&pinstance->pdev->dev,
 
4535					sizeof(struct pmcraid_inquiry_data),
4536					&pinstance->inq_data_baddr, GFP_KERNEL);
 
4537	if (pinstance->inq_data == NULL) {
4538		pmcraid_err("couldn't allocate DMA memory for INQUIRY\n");
4539		pmcraid_release_buffers(pinstance);
4540		return -ENOMEM;
4541	}
4542
4543	/* allocate DMAable memory for set timestamp data buffer */
4544	pinstance->timestamp_data = dma_alloc_coherent(&pinstance->pdev->dev,
 
4545					sizeof(struct pmcraid_timestamp_data),
4546					&pinstance->timestamp_data_baddr,
4547					GFP_KERNEL);
4548	if (pinstance->timestamp_data == NULL) {
4549		pmcraid_err("couldn't allocate DMA memory for \
4550				set time_stamp \n");
4551		pmcraid_release_buffers(pinstance);
4552		return -ENOMEM;
4553	}
4554
4555
4556	/* Initialize all the command blocks and add them to free pool. No
4557	 * need to lock (free_pool_lock) as this is done in initialization
4558	 * itself
4559	 */
4560	for (i = 0; i < PMCRAID_MAX_CMD; i++) {
4561		struct pmcraid_cmd *cmdp = pinstance->cmd_list[i];
4562		pmcraid_init_cmdblk(cmdp, i);
4563		cmdp->drv_inst = pinstance;
4564		list_add_tail(&cmdp->free_list, &pinstance->free_cmd_pool);
4565	}
4566
4567	return 0;
4568}
4569
4570/**
4571 * pmcraid_reinit_buffers - resets various buffer pointers
4572 * @pinstance: pointer to adapter instance
4573 * Return value
4574 *	none
4575 */
4576static void pmcraid_reinit_buffers(struct pmcraid_instance *pinstance)
4577{
4578	int i;
4579	int buffer_size = HRRQ_ENTRY_SIZE * PMCRAID_MAX_CMD;
4580
4581	for (i = 0; i < pinstance->num_hrrq; i++) {
4582		memset(pinstance->hrrq_start[i], 0, buffer_size);
4583		pinstance->hrrq_curr[i] = pinstance->hrrq_start[i];
4584		pinstance->hrrq_end[i] =
4585			pinstance->hrrq_start[i] + PMCRAID_MAX_CMD - 1;
4586		pinstance->host_toggle_bit[i] = 1;
4587	}
4588}
4589
4590/**
4591 * pmcraid_init_instance - initialize per instance data structure
4592 * @pdev: pointer to pci device structure
4593 * @host: pointer to Scsi_Host structure
4594 * @mapped_pci_addr: memory mapped IOA configuration registers
4595 *
4596 * Return Value
4597 *	 0 on success, non-zero in case of any failure
4598 */
4599static int pmcraid_init_instance(struct pci_dev *pdev, struct Scsi_Host *host,
4600				 void __iomem *mapped_pci_addr)
 
 
 
4601{
4602	struct pmcraid_instance *pinstance =
4603		(struct pmcraid_instance *)host->hostdata;
4604
4605	pinstance->host = host;
4606	pinstance->pdev = pdev;
4607
4608	/* Initialize register addresses */
4609	pinstance->mapped_dma_addr = mapped_pci_addr;
4610
4611	/* Initialize chip-specific details */
4612	{
4613		struct pmcraid_chip_details *chip_cfg = pinstance->chip_cfg;
4614		struct pmcraid_interrupts *pint_regs = &pinstance->int_regs;
4615
4616		pinstance->ioarrin = mapped_pci_addr + chip_cfg->ioarrin;
4617
4618		pint_regs->ioa_host_interrupt_reg =
4619			mapped_pci_addr + chip_cfg->ioa_host_intr;
4620		pint_regs->ioa_host_interrupt_clr_reg =
4621			mapped_pci_addr + chip_cfg->ioa_host_intr_clr;
4622		pint_regs->ioa_host_msix_interrupt_reg =
4623			mapped_pci_addr + chip_cfg->ioa_host_msix_intr;
4624		pint_regs->host_ioa_interrupt_reg =
4625			mapped_pci_addr + chip_cfg->host_ioa_intr;
4626		pint_regs->host_ioa_interrupt_clr_reg =
4627			mapped_pci_addr + chip_cfg->host_ioa_intr_clr;
4628
4629		/* Current version of firmware exposes interrupt mask set
4630		 * and mask clr registers through memory mapped bar0.
4631		 */
4632		pinstance->mailbox = mapped_pci_addr + chip_cfg->mailbox;
4633		pinstance->ioa_status = mapped_pci_addr + chip_cfg->ioastatus;
4634		pint_regs->ioa_host_interrupt_mask_reg =
4635			mapped_pci_addr + chip_cfg->ioa_host_mask;
4636		pint_regs->ioa_host_interrupt_mask_clr_reg =
4637			mapped_pci_addr + chip_cfg->ioa_host_mask_clr;
4638		pint_regs->global_interrupt_mask_reg =
4639			mapped_pci_addr + chip_cfg->global_intr_mask;
4640	}
4641
4642	pinstance->ioa_reset_attempts = 0;
4643	init_waitqueue_head(&pinstance->reset_wait_q);
4644
4645	atomic_set(&pinstance->outstanding_cmds, 0);
4646	atomic_set(&pinstance->last_message_id, 0);
4647	atomic_set(&pinstance->expose_resources, 0);
4648
4649	INIT_LIST_HEAD(&pinstance->free_res_q);
4650	INIT_LIST_HEAD(&pinstance->used_res_q);
4651	INIT_LIST_HEAD(&pinstance->free_cmd_pool);
4652	INIT_LIST_HEAD(&pinstance->pending_cmd_pool);
4653
4654	spin_lock_init(&pinstance->free_pool_lock);
4655	spin_lock_init(&pinstance->pending_pool_lock);
4656	spin_lock_init(&pinstance->resource_lock);
4657	mutex_init(&pinstance->aen_queue_lock);
4658
4659	/* Work-queue (Shared) for deferred processing error handling */
4660	INIT_WORK(&pinstance->worker_q, pmcraid_worker_function);
4661
4662	/* Initialize the default log_level */
4663	pinstance->current_log_level = pmcraid_log_level;
4664
4665	/* Setup variables required for reset engine */
4666	pinstance->ioa_state = IOA_STATE_UNKNOWN;
4667	pinstance->reset_cmd = NULL;
4668	return 0;
4669}
4670
4671/**
4672 * pmcraid_shutdown - shutdown adapter controller.
4673 * @pdev: pci device struct
4674 *
4675 * Issues an adapter shutdown to the card waits for its completion
4676 *
4677 * Return value
4678 *	  none
4679 */
4680static void pmcraid_shutdown(struct pci_dev *pdev)
4681{
4682	struct pmcraid_instance *pinstance = pci_get_drvdata(pdev);
4683	pmcraid_reset_bringdown(pinstance);
4684}
4685
4686
4687/*
4688 * pmcraid_get_minor - returns unused minor number from minor number bitmap
4689 */
4690static unsigned short pmcraid_get_minor(void)
4691{
4692	int minor;
4693
4694	minor = find_first_zero_bit(pmcraid_minor, PMCRAID_MAX_ADAPTERS);
4695	__set_bit(minor, pmcraid_minor);
4696	return minor;
4697}
4698
4699/*
4700 * pmcraid_release_minor - releases given minor back to minor number bitmap
4701 */
4702static void pmcraid_release_minor(unsigned short minor)
4703{
4704	__clear_bit(minor, pmcraid_minor);
4705}
4706
4707/**
4708 * pmcraid_setup_chrdev - allocates a minor number and registers a char device
4709 *
4710 * @pinstance: pointer to adapter instance for which to register device
4711 *
4712 * Return value
4713 *	0 in case of success, otherwise non-zero
4714 */
4715static int pmcraid_setup_chrdev(struct pmcraid_instance *pinstance)
4716{
4717	int minor;
4718	int error;
4719
4720	minor = pmcraid_get_minor();
4721	cdev_init(&pinstance->cdev, &pmcraid_fops);
4722	pinstance->cdev.owner = THIS_MODULE;
4723
4724	error = cdev_add(&pinstance->cdev, MKDEV(pmcraid_major, minor), 1);
4725
4726	if (error)
4727		pmcraid_release_minor(minor);
4728	else
4729		device_create(&pmcraid_class, NULL, MKDEV(pmcraid_major, minor),
4730			      NULL, "%s%u", PMCRAID_DEVFILE, minor);
4731	return error;
4732}
4733
4734/**
4735 * pmcraid_release_chrdev - unregisters per-adapter management interface
4736 *
4737 * @pinstance: pointer to adapter instance structure
4738 *
4739 * Return value
4740 *  none
4741 */
4742static void pmcraid_release_chrdev(struct pmcraid_instance *pinstance)
4743{
4744	pmcraid_release_minor(MINOR(pinstance->cdev.dev));
4745	device_destroy(&pmcraid_class,
4746		       MKDEV(pmcraid_major, MINOR(pinstance->cdev.dev)));
4747	cdev_del(&pinstance->cdev);
4748}
4749
4750/**
4751 * pmcraid_remove - IOA hot plug remove entry point
4752 * @pdev: pci device struct
4753 *
4754 * Return value
4755 *	  none
4756 */
4757static void pmcraid_remove(struct pci_dev *pdev)
4758{
4759	struct pmcraid_instance *pinstance = pci_get_drvdata(pdev);
4760
4761	/* remove the management interface (/dev file) for this device */
4762	pmcraid_release_chrdev(pinstance);
4763
4764	/* remove host template from scsi midlayer */
4765	scsi_remove_host(pinstance->host);
4766
4767	/* block requests from mid-layer */
4768	scsi_block_requests(pinstance->host);
4769
4770	/* initiate shutdown adapter */
4771	pmcraid_shutdown(pdev);
4772
4773	pmcraid_disable_interrupts(pinstance, ~0);
4774	flush_work(&pinstance->worker_q);
4775
4776	pmcraid_kill_tasklets(pinstance);
4777	pmcraid_unregister_interrupt_handler(pinstance);
4778	pmcraid_release_buffers(pinstance);
4779	iounmap(pinstance->mapped_dma_addr);
4780	pci_release_regions(pdev);
4781	scsi_host_put(pinstance->host);
4782	pci_disable_device(pdev);
4783
4784	return;
4785}
4786
 
4787/**
4788 * pmcraid_suspend - driver suspend entry point for power management
4789 * @dev:   Device structure
 
4790 *
4791 * Return Value - 0 always
4792 */
4793static int __maybe_unused pmcraid_suspend(struct device *dev)
4794{
4795	struct pci_dev *pdev = to_pci_dev(dev);
4796	struct pmcraid_instance *pinstance = pci_get_drvdata(pdev);
4797
4798	pmcraid_shutdown(pdev);
4799	pmcraid_disable_interrupts(pinstance, ~0);
4800	pmcraid_kill_tasklets(pinstance);
 
4801	pmcraid_unregister_interrupt_handler(pinstance);
 
 
 
4802
4803	return 0;
4804}
4805
4806/**
4807 * pmcraid_resume - driver resume entry point PCI power management
4808 * @dev: Device structure
4809 *
4810 * Return Value - 0 in case of success. Error code in case of any failure
4811 */
4812static int __maybe_unused pmcraid_resume(struct device *dev)
4813{
4814	struct pci_dev *pdev = to_pci_dev(dev);
4815	struct pmcraid_instance *pinstance = pci_get_drvdata(pdev);
4816	struct Scsi_Host *host = pinstance->host;
4817	int rc = 0;
 
 
 
 
 
 
 
 
 
 
 
 
 
4818
4819	if (sizeof(dma_addr_t) == 4 ||
4820	    dma_set_mask(&pdev->dev, DMA_BIT_MASK(64)))
4821		rc = dma_set_mask(&pdev->dev, DMA_BIT_MASK(32));
4822
4823	if (rc == 0)
4824		rc = dma_set_coherent_mask(&pdev->dev, DMA_BIT_MASK(32));
4825
4826	if (rc != 0) {
4827		dev_err(&pdev->dev, "resume: Failed to set PCI DMA mask\n");
4828		goto disable_device;
4829	}
4830
4831	pmcraid_disable_interrupts(pinstance, ~0);
4832	atomic_set(&pinstance->outstanding_cmds, 0);
4833	rc = pmcraid_register_interrupt_handler(pinstance);
4834
4835	if (rc) {
4836		dev_err(&pdev->dev,
4837			"resume: couldn't register interrupt handlers\n");
4838		rc = -ENODEV;
4839		goto release_host;
4840	}
4841
4842	pmcraid_init_tasklets(pinstance);
4843	pmcraid_enable_interrupts(pinstance, PMCRAID_PCI_INTERRUPTS);
4844
4845	/* Start with hard reset sequence which brings up IOA to operational
4846	 * state as well as completes the reset sequence.
4847	 */
4848	pinstance->ioa_hard_reset = 1;
4849
4850	/* Start IOA firmware initialization and bring card to Operational
4851	 * state.
4852	 */
4853	if (pmcraid_reset_bringup(pinstance)) {
4854		dev_err(&pdev->dev, "couldn't initialize IOA\n");
4855		rc = -ENODEV;
4856		goto release_tasklets;
4857	}
4858
4859	return 0;
4860
4861release_tasklets:
4862	pmcraid_disable_interrupts(pinstance, ~0);
4863	pmcraid_kill_tasklets(pinstance);
4864	pmcraid_unregister_interrupt_handler(pinstance);
4865
4866release_host:
4867	scsi_host_put(host);
4868
4869disable_device:
 
4870
4871	return rc;
4872}
4873
 
 
 
 
 
 
 
4874/**
4875 * pmcraid_complete_ioa_reset - Called by either timer or tasklet during
4876 *				completion of the ioa reset
4877 * @cmd: pointer to reset command block
4878 */
4879static void pmcraid_complete_ioa_reset(struct pmcraid_cmd *cmd)
4880{
4881	struct pmcraid_instance *pinstance = cmd->drv_inst;
4882	unsigned long flags;
4883
4884	spin_lock_irqsave(pinstance->host->host_lock, flags);
4885	pmcraid_ioa_reset(cmd);
4886	spin_unlock_irqrestore(pinstance->host->host_lock, flags);
4887	scsi_unblock_requests(pinstance->host);
4888	schedule_work(&pinstance->worker_q);
4889}
4890
4891/**
4892 * pmcraid_set_supported_devs - sends SET SUPPORTED DEVICES to IOAFP
4893 *
4894 * @cmd: pointer to pmcraid_cmd structure
4895 *
4896 * Return Value
4897 *  0 for success or non-zero for failure cases
4898 */
4899static void pmcraid_set_supported_devs(struct pmcraid_cmd *cmd)
4900{
4901	struct pmcraid_ioarcb *ioarcb = &cmd->ioa_cb->ioarcb;
4902	void (*cmd_done) (struct pmcraid_cmd *) = pmcraid_complete_ioa_reset;
4903
4904	pmcraid_reinit_cmdblk(cmd);
4905
4906	ioarcb->resource_handle = cpu_to_le32(PMCRAID_IOA_RES_HANDLE);
4907	ioarcb->request_type = REQ_TYPE_IOACMD;
4908	ioarcb->cdb[0] = PMCRAID_SET_SUPPORTED_DEVICES;
4909	ioarcb->cdb[1] = ALL_DEVICES_SUPPORTED;
4910
4911	/* If this was called as part of resource table reinitialization due to
4912	 * lost CCN, it is enough to return the command block back to free pool
4913	 * as part of set_supported_devs completion function.
4914	 */
4915	if (cmd->drv_inst->reinit_cfg_table) {
4916		cmd->drv_inst->reinit_cfg_table = 0;
4917		cmd->release = 1;
4918		cmd_done = pmcraid_reinit_cfgtable_done;
4919	}
4920
4921	/* we will be done with the reset sequence after set supported devices,
4922	 * setup the done function to return the command block back to free
4923	 * pool
4924	 */
4925	pmcraid_send_cmd(cmd,
4926			 cmd_done,
4927			 PMCRAID_SET_SUP_DEV_TIMEOUT,
4928			 pmcraid_timeout_handler);
4929	return;
4930}
4931
4932/**
4933 * pmcraid_set_timestamp - set the timestamp to IOAFP
4934 *
4935 * @cmd: pointer to pmcraid_cmd structure
4936 *
4937 * Return Value
4938 *  0 for success or non-zero for failure cases
4939 */
4940static void pmcraid_set_timestamp(struct pmcraid_cmd *cmd)
4941{
4942	struct pmcraid_instance *pinstance = cmd->drv_inst;
4943	struct pmcraid_ioarcb *ioarcb = &cmd->ioa_cb->ioarcb;
4944	__be32 time_stamp_len = cpu_to_be32(PMCRAID_TIMESTAMP_LEN);
4945	struct pmcraid_ioadl_desc *ioadl;
4946	u64 timestamp;
 
 
4947
4948	timestamp = ktime_get_real_seconds() * 1000;
 
4949
4950	pinstance->timestamp_data->timestamp[0] = (__u8)(timestamp);
4951	pinstance->timestamp_data->timestamp[1] = (__u8)((timestamp) >> 8);
4952	pinstance->timestamp_data->timestamp[2] = (__u8)((timestamp) >> 16);
4953	pinstance->timestamp_data->timestamp[3] = (__u8)((timestamp) >> 24);
4954	pinstance->timestamp_data->timestamp[4] = (__u8)((timestamp) >> 32);
4955	pinstance->timestamp_data->timestamp[5] = (__u8)((timestamp)  >> 40);
4956
4957	pmcraid_reinit_cmdblk(cmd);
4958	ioarcb->request_type = REQ_TYPE_SCSI;
4959	ioarcb->resource_handle = cpu_to_le32(PMCRAID_IOA_RES_HANDLE);
4960	ioarcb->cdb[0] = PMCRAID_SCSI_SET_TIMESTAMP;
4961	ioarcb->cdb[1] = PMCRAID_SCSI_SERVICE_ACTION;
4962	memcpy(&(ioarcb->cdb[6]), &time_stamp_len, sizeof(time_stamp_len));
4963
4964	ioarcb->ioadl_bus_addr = cpu_to_le64((cmd->ioa_cb_bus_addr) +
4965					offsetof(struct pmcraid_ioarcb,
4966						add_data.u.ioadl[0]));
4967	ioarcb->ioadl_length = cpu_to_le32(sizeof(struct pmcraid_ioadl_desc));
4968	ioarcb->ioarcb_bus_addr &= cpu_to_le64(~(0x1FULL));
4969
4970	ioarcb->request_flags0 |= NO_LINK_DESCS;
4971	ioarcb->request_flags0 |= TRANSFER_DIR_WRITE;
4972	ioarcb->data_transfer_length =
4973		cpu_to_le32(sizeof(struct pmcraid_timestamp_data));
4974	ioadl = &(ioarcb->add_data.u.ioadl[0]);
4975	ioadl->flags = IOADL_FLAGS_LAST_DESC;
4976	ioadl->address = cpu_to_le64(pinstance->timestamp_data_baddr);
4977	ioadl->data_len = cpu_to_le32(sizeof(struct pmcraid_timestamp_data));
4978
4979	if (!pinstance->timestamp_error) {
4980		pinstance->timestamp_error = 0;
4981		pmcraid_send_cmd(cmd, pmcraid_set_supported_devs,
4982			 PMCRAID_INTERNAL_TIMEOUT, pmcraid_timeout_handler);
4983	} else {
4984		pmcraid_send_cmd(cmd, pmcraid_return_cmd,
4985			 PMCRAID_INTERNAL_TIMEOUT, pmcraid_timeout_handler);
4986		return;
4987	}
4988}
4989
4990
4991/**
4992 * pmcraid_init_res_table - Initialize the resource table
4993 * @cmd:  pointer to pmcraid command struct
4994 *
4995 * This function looks through the existing resource table, comparing
4996 * it with the config table. This function will take care of old/new
4997 * devices and schedule adding/removing them from the mid-layer
4998 * as appropriate.
4999 *
5000 * Return value
5001 *	 None
5002 */
5003static void pmcraid_init_res_table(struct pmcraid_cmd *cmd)
5004{
5005	struct pmcraid_instance *pinstance = cmd->drv_inst;
5006	struct pmcraid_resource_entry *res, *temp;
5007	struct pmcraid_config_table_entry *cfgte;
5008	unsigned long lock_flags;
5009	int found, rc, i;
5010	u16 fw_version;
5011	LIST_HEAD(old_res);
5012
5013	if (pinstance->cfg_table->flags & MICROCODE_UPDATE_REQUIRED)
5014		pmcraid_err("IOA requires microcode download\n");
5015
5016	fw_version = be16_to_cpu(pinstance->inq_data->fw_version);
5017
5018	/* resource list is protected by pinstance->resource_lock.
5019	 * init_res_table can be called from probe (user-thread) or runtime
5020	 * reset (timer/tasklet)
5021	 */
5022	spin_lock_irqsave(&pinstance->resource_lock, lock_flags);
5023
5024	list_for_each_entry_safe(res, temp, &pinstance->used_res_q, queue)
5025		list_move_tail(&res->queue, &old_res);
5026
5027	for (i = 0; i < le16_to_cpu(pinstance->cfg_table->num_entries); i++) {
5028		if (be16_to_cpu(pinstance->inq_data->fw_version) <=
5029						PMCRAID_FW_VERSION_1)
5030			cfgte = &pinstance->cfg_table->entries[i];
5031		else
5032			cfgte = (struct pmcraid_config_table_entry *)
5033					&pinstance->cfg_table->entries_ext[i];
5034
5035		if (!pmcraid_expose_resource(fw_version, cfgte))
5036			continue;
5037
5038		found = 0;
5039
5040		/* If this entry was already detected and initialized */
5041		list_for_each_entry_safe(res, temp, &old_res, queue) {
5042
5043			rc = memcmp(&res->cfg_entry.resource_address,
5044				    &cfgte->resource_address,
5045				    sizeof(cfgte->resource_address));
5046			if (!rc) {
5047				list_move_tail(&res->queue,
5048						&pinstance->used_res_q);
5049				found = 1;
5050				break;
5051			}
5052		}
5053
5054		/* If this is new entry, initialize it and add it the queue */
5055		if (!found) {
5056
5057			if (list_empty(&pinstance->free_res_q)) {
5058				pmcraid_err("Too many devices attached\n");
5059				break;
5060			}
5061
5062			found = 1;
5063			res = list_entry(pinstance->free_res_q.next,
5064					 struct pmcraid_resource_entry, queue);
5065
5066			res->scsi_dev = NULL;
5067			res->change_detected = RES_CHANGE_ADD;
5068			res->reset_progress = 0;
5069			list_move_tail(&res->queue, &pinstance->used_res_q);
5070		}
5071
5072		/* copy new configuration table entry details into driver
5073		 * maintained resource entry
5074		 */
5075		if (found) {
5076			memcpy(&res->cfg_entry, cfgte,
5077					pinstance->config_table_entry_size);
5078			pmcraid_info("New res type:%x, vset:%x, addr:%x:\n",
5079				 res->cfg_entry.resource_type,
5080				 (fw_version <= PMCRAID_FW_VERSION_1 ?
5081					res->cfg_entry.unique_flags1 :
5082					le16_to_cpu(res->cfg_entry.array_id) & 0xFF),
5083				 le32_to_cpu(res->cfg_entry.resource_address));
5084		}
5085	}
5086
5087	/* Detect any deleted entries, mark them for deletion from mid-layer */
5088	list_for_each_entry_safe(res, temp, &old_res, queue) {
5089
5090		if (res->scsi_dev) {
5091			res->change_detected = RES_CHANGE_DEL;
5092			res->cfg_entry.resource_handle =
5093				PMCRAID_INVALID_RES_HANDLE;
5094			list_move_tail(&res->queue, &pinstance->used_res_q);
5095		} else {
5096			list_move_tail(&res->queue, &pinstance->free_res_q);
5097		}
5098	}
5099
5100	/* release the resource list lock */
5101	spin_unlock_irqrestore(&pinstance->resource_lock, lock_flags);
5102	pmcraid_set_timestamp(cmd);
5103}
5104
5105/**
5106 * pmcraid_querycfg - Send a Query IOA Config to the adapter.
5107 * @cmd: pointer pmcraid_cmd struct
5108 *
5109 * This function sends a Query IOA Configuration command to the adapter to
5110 * retrieve the IOA configuration table.
5111 *
5112 * Return value:
5113 *	none
5114 */
5115static void pmcraid_querycfg(struct pmcraid_cmd *cmd)
5116{
5117	struct pmcraid_ioarcb *ioarcb = &cmd->ioa_cb->ioarcb;
5118	struct pmcraid_ioadl_desc *ioadl;
5119	struct pmcraid_instance *pinstance = cmd->drv_inst;
5120	__be32 cfg_table_size = cpu_to_be32(sizeof(struct pmcraid_config_table));
5121
5122	if (be16_to_cpu(pinstance->inq_data->fw_version) <=
5123					PMCRAID_FW_VERSION_1)
5124		pinstance->config_table_entry_size =
5125			sizeof(struct pmcraid_config_table_entry);
5126	else
5127		pinstance->config_table_entry_size =
5128			sizeof(struct pmcraid_config_table_entry_ext);
5129
5130	ioarcb->request_type = REQ_TYPE_IOACMD;
5131	ioarcb->resource_handle = cpu_to_le32(PMCRAID_IOA_RES_HANDLE);
5132
5133	ioarcb->cdb[0] = PMCRAID_QUERY_IOA_CONFIG;
5134
5135	/* firmware requires 4-byte length field, specified in B.E format */
5136	memcpy(&(ioarcb->cdb[10]), &cfg_table_size, sizeof(cfg_table_size));
5137
5138	/* Since entire config table can be described by single IOADL, it can
5139	 * be part of IOARCB itself
5140	 */
5141	ioarcb->ioadl_bus_addr = cpu_to_le64((cmd->ioa_cb_bus_addr) +
5142					offsetof(struct pmcraid_ioarcb,
5143						add_data.u.ioadl[0]));
5144	ioarcb->ioadl_length = cpu_to_le32(sizeof(struct pmcraid_ioadl_desc));
5145	ioarcb->ioarcb_bus_addr &= cpu_to_le64(~0x1FULL);
5146
5147	ioarcb->request_flags0 |= NO_LINK_DESCS;
5148	ioarcb->data_transfer_length =
5149		cpu_to_le32(sizeof(struct pmcraid_config_table));
5150
5151	ioadl = &(ioarcb->add_data.u.ioadl[0]);
5152	ioadl->flags = IOADL_FLAGS_LAST_DESC;
5153	ioadl->address = cpu_to_le64(pinstance->cfg_table_bus_addr);
5154	ioadl->data_len = cpu_to_le32(sizeof(struct pmcraid_config_table));
5155
5156	pmcraid_send_cmd(cmd, pmcraid_init_res_table,
5157			 PMCRAID_INTERNAL_TIMEOUT, pmcraid_timeout_handler);
5158}
5159
5160
5161/**
5162 * pmcraid_probe - PCI probe entry pointer for PMC MaxRAID controller driver
5163 * @pdev: pointer to pci device structure
5164 * @dev_id: pointer to device ids structure
5165 *
5166 * Return Value
5167 *	returns 0 if the device is claimed and successfully configured.
5168 *	returns non-zero error code in case of any failure
5169 */
5170static int pmcraid_probe(struct pci_dev *pdev,
5171			 const struct pci_device_id *dev_id)
 
 
5172{
5173	struct pmcraid_instance *pinstance;
5174	struct Scsi_Host *host;
5175	void __iomem *mapped_pci_addr;
5176	int rc = PCIBIOS_SUCCESSFUL;
5177
5178	if (atomic_read(&pmcraid_adapter_count) >= PMCRAID_MAX_ADAPTERS) {
5179		pmcraid_err
5180			("maximum number(%d) of supported adapters reached\n",
5181			 atomic_read(&pmcraid_adapter_count));
5182		return -ENOMEM;
5183	}
5184
5185	atomic_inc(&pmcraid_adapter_count);
5186	rc = pci_enable_device(pdev);
5187
5188	if (rc) {
5189		dev_err(&pdev->dev, "Cannot enable adapter\n");
5190		atomic_dec(&pmcraid_adapter_count);
5191		return rc;
5192	}
5193
5194	dev_info(&pdev->dev,
5195		"Found new IOA(%x:%x), Total IOA count: %d\n",
5196		 pdev->vendor, pdev->device,
5197		 atomic_read(&pmcraid_adapter_count));
5198
5199	rc = pci_request_regions(pdev, PMCRAID_DRIVER_NAME);
5200
5201	if (rc < 0) {
5202		dev_err(&pdev->dev,
5203			"Couldn't register memory range of registers\n");
5204		goto out_disable_device;
5205	}
5206
5207	mapped_pci_addr = pci_iomap(pdev, 0, 0);
5208
5209	if (!mapped_pci_addr) {
5210		dev_err(&pdev->dev, "Couldn't map PCI registers memory\n");
5211		rc = -ENOMEM;
5212		goto out_release_regions;
5213	}
5214
5215	pci_set_master(pdev);
5216
5217	/* Firmware requires the system bus address of IOARCB to be within
5218	 * 32-bit addressable range though it has 64-bit IOARRIN register.
5219	 * However, firmware supports 64-bit streaming DMA buffers, whereas
5220	 * coherent buffers are to be 32-bit. Since dma_alloc_coherent always
5221	 * returns memory within 4GB (if not, change this logic), coherent
5222	 * buffers are within firmware acceptable address ranges.
5223	 */
5224	if (sizeof(dma_addr_t) == 4 ||
5225	    dma_set_mask(&pdev->dev, DMA_BIT_MASK(64)))
5226		rc = dma_set_mask(&pdev->dev, DMA_BIT_MASK(32));
5227
5228	/* firmware expects 32-bit DMA addresses for IOARRIN register; set 32
5229	 * bit mask for dma_alloc_coherent to return addresses within 4GB
5230	 */
5231	if (rc == 0)
5232		rc = dma_set_coherent_mask(&pdev->dev, DMA_BIT_MASK(32));
5233
5234	if (rc != 0) {
5235		dev_err(&pdev->dev, "Failed to set PCI DMA mask\n");
5236		goto cleanup_nomem;
5237	}
5238
5239	host = scsi_host_alloc(&pmcraid_host_template,
5240				sizeof(struct pmcraid_instance));
5241
5242	if (!host) {
5243		dev_err(&pdev->dev, "scsi_host_alloc failed!\n");
5244		rc = -ENOMEM;
5245		goto cleanup_nomem;
5246	}
5247
5248	host->max_id = PMCRAID_MAX_NUM_TARGETS_PER_BUS;
5249	host->max_lun = PMCRAID_MAX_NUM_LUNS_PER_TARGET;
5250	host->unique_id = host->host_no;
5251	host->max_channel = PMCRAID_MAX_BUS_TO_SCAN;
5252	host->max_cmd_len = PMCRAID_MAX_CDB_LEN;
5253
5254	/* zero out entire instance structure */
5255	pinstance = (struct pmcraid_instance *)host->hostdata;
5256	memset(pinstance, 0, sizeof(*pinstance));
5257
5258	pinstance->chip_cfg =
5259		(struct pmcraid_chip_details *)(dev_id->driver_data);
5260
5261	rc = pmcraid_init_instance(pdev, host, mapped_pci_addr);
5262
5263	if (rc < 0) {
5264		dev_err(&pdev->dev, "failed to initialize adapter instance\n");
5265		goto out_scsi_host_put;
5266	}
5267
5268	pci_set_drvdata(pdev, pinstance);
5269
5270	/* Save PCI config-space for use following the reset */
5271	rc = pci_save_state(pinstance->pdev);
5272
5273	if (rc != 0) {
5274		dev_err(&pdev->dev, "Failed to save PCI config space\n");
5275		goto out_scsi_host_put;
5276	}
5277
5278	pmcraid_disable_interrupts(pinstance, ~0);
5279
5280	rc = pmcraid_register_interrupt_handler(pinstance);
5281
5282	if (rc) {
5283		dev_err(&pdev->dev, "couldn't register interrupt handler\n");
5284		goto out_scsi_host_put;
5285	}
5286
5287	pmcraid_init_tasklets(pinstance);
5288
5289	/* allocate verious buffers used by LLD.*/
5290	rc = pmcraid_init_buffers(pinstance);
5291
5292	if (rc) {
5293		pmcraid_err("couldn't allocate memory blocks\n");
5294		goto out_unregister_isr;
5295	}
5296
5297	/* check the reset type required */
5298	pmcraid_reset_type(pinstance);
5299
5300	pmcraid_enable_interrupts(pinstance, PMCRAID_PCI_INTERRUPTS);
5301
5302	/* Start IOA firmware initialization and bring card to Operational
5303	 * state.
5304	 */
5305	pmcraid_info("starting IOA initialization sequence\n");
5306	if (pmcraid_reset_bringup(pinstance)) {
5307		dev_err(&pdev->dev, "couldn't initialize IOA\n");
5308		rc = 1;
5309		goto out_release_bufs;
5310	}
5311
5312	/* Add adapter instance into mid-layer list */
5313	rc = scsi_add_host(pinstance->host, &pdev->dev);
5314	if (rc != 0) {
5315		pmcraid_err("couldn't add host into mid-layer: %d\n", rc);
5316		goto out_release_bufs;
5317	}
5318
5319	scsi_scan_host(pinstance->host);
5320
5321	rc = pmcraid_setup_chrdev(pinstance);
5322
5323	if (rc != 0) {
5324		pmcraid_err("couldn't create mgmt interface, error: %x\n",
5325			     rc);
5326		goto out_remove_host;
5327	}
5328
5329	/* Schedule worker thread to handle CCN and take care of adding and
5330	 * removing devices to OS
5331	 */
5332	atomic_set(&pinstance->expose_resources, 1);
5333	schedule_work(&pinstance->worker_q);
5334	return rc;
5335
5336out_remove_host:
5337	scsi_remove_host(host);
5338
5339out_release_bufs:
5340	pmcraid_release_buffers(pinstance);
5341
5342out_unregister_isr:
5343	pmcraid_kill_tasklets(pinstance);
5344	pmcraid_unregister_interrupt_handler(pinstance);
5345
5346out_scsi_host_put:
5347	scsi_host_put(host);
5348
5349cleanup_nomem:
5350	iounmap(mapped_pci_addr);
5351
5352out_release_regions:
5353	pci_release_regions(pdev);
5354
5355out_disable_device:
5356	atomic_dec(&pmcraid_adapter_count);
 
5357	pci_disable_device(pdev);
5358	return -ENODEV;
5359}
5360
5361static SIMPLE_DEV_PM_OPS(pmcraid_pm_ops, pmcraid_suspend, pmcraid_resume);
5362
5363/*
5364 * PCI driver structure of pmcraid driver
5365 */
5366static struct pci_driver pmcraid_driver = {
5367	.name = PMCRAID_DRIVER_NAME,
5368	.id_table = pmcraid_pci_table,
5369	.probe = pmcraid_probe,
5370	.remove = pmcraid_remove,
5371	.driver.pm = &pmcraid_pm_ops,
 
5372	.shutdown = pmcraid_shutdown
5373};
5374
5375/**
5376 * pmcraid_init - module load entry point
5377 */
5378static int __init pmcraid_init(void)
5379{
5380	dev_t dev;
5381	int error;
5382
5383	pmcraid_info("%s Device Driver version: %s\n",
5384			 PMCRAID_DRIVER_NAME, PMCRAID_DRIVER_VERSION);
5385
5386	error = alloc_chrdev_region(&dev, 0,
5387				    PMCRAID_MAX_ADAPTERS,
5388				    PMCRAID_DEVFILE);
5389
5390	if (error) {
5391		pmcraid_err("failed to get a major number for adapters\n");
5392		goto out_init;
5393	}
5394
5395	pmcraid_major = MAJOR(dev);
 
5396
5397	error = class_register(&pmcraid_class);
5398
5399	if (error) {
5400		pmcraid_err("failed to register with sysfs, error = %x\n",
5401			    error);
5402		goto out_unreg_chrdev;
5403	}
5404
5405	error = pmcraid_netlink_init();
5406
5407	if (error) {
5408		class_unregister(&pmcraid_class);
5409		goto out_unreg_chrdev;
5410	}
5411
5412	error = pci_register_driver(&pmcraid_driver);
5413
5414	if (error == 0)
5415		goto out_init;
5416
5417	pmcraid_err("failed to register pmcraid driver, error = %x\n",
5418		     error);
5419	class_unregister(&pmcraid_class);
5420	pmcraid_netlink_release();
5421
5422out_unreg_chrdev:
5423	unregister_chrdev_region(MKDEV(pmcraid_major, 0), PMCRAID_MAX_ADAPTERS);
5424
5425out_init:
5426	return error;
5427}
5428
5429/**
5430 * pmcraid_exit - module unload entry point
5431 */
5432static void __exit pmcraid_exit(void)
5433{
5434	pmcraid_netlink_release();
5435	unregister_chrdev_region(MKDEV(pmcraid_major, 0),
5436				 PMCRAID_MAX_ADAPTERS);
5437	pci_unregister_driver(&pmcraid_driver);
5438	class_unregister(&pmcraid_class);
5439}
5440
5441module_init(pmcraid_init);
5442module_exit(pmcraid_exit);