bfa_ioc.c 49.2 KB
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/*
 * Linux network driver for Brocade Converged Network Adapter.
 *
 * This program is free software; you can redistribute it and/or modify it
 * under the terms of the GNU General Public License (GPL) Version 2 as
 * published by the Free Software Foundation
 *
 * This program is distributed in the hope that it will be useful, but
 * WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
 * General Public License for more details.
 */
/*
 * Copyright (c) 2005-2010 Brocade Communications Systems, Inc.
 * All rights reserved
 * www.brocade.com
 */

#include "bfa_ioc.h"
#include "cna.h"
#include "bfi.h"
#include "bfi_ctreg.h"
#include "bfa_defs.h"

/**
 * IOC local definitions
 */

/**
 * Asic specific macros : see bfa_hw_cb.c and bfa_hw_ct.c for details.
 */

#define bfa_ioc_firmware_lock(__ioc)			\
			((__ioc)->ioc_hwif->ioc_firmware_lock(__ioc))
#define bfa_ioc_firmware_unlock(__ioc)			\
			((__ioc)->ioc_hwif->ioc_firmware_unlock(__ioc))
#define bfa_ioc_reg_init(__ioc) ((__ioc)->ioc_hwif->ioc_reg_init(__ioc))
#define bfa_ioc_map_port(__ioc) ((__ioc)->ioc_hwif->ioc_map_port(__ioc))
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#define bfa_ioc_notify_fail(__ioc)			\
			((__ioc)->ioc_hwif->ioc_notify_fail(__ioc))
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#define bfa_ioc_sync_start(__ioc)               \
			((__ioc)->ioc_hwif->ioc_sync_start(__ioc))
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#define bfa_ioc_sync_join(__ioc)			\
			((__ioc)->ioc_hwif->ioc_sync_join(__ioc))
#define bfa_ioc_sync_leave(__ioc)			\
			((__ioc)->ioc_hwif->ioc_sync_leave(__ioc))
#define bfa_ioc_sync_ack(__ioc)				\
			((__ioc)->ioc_hwif->ioc_sync_ack(__ioc))
#define bfa_ioc_sync_complete(__ioc)			\
			((__ioc)->ioc_hwif->ioc_sync_complete(__ioc))
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#define bfa_ioc_mbox_cmd_pending(__ioc)		\
			(!list_empty(&((__ioc)->mbox_mod.cmd_q)) || \
			readl((__ioc)->ioc_regs.hfn_mbox_cmd))

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static bool bfa_nw_auto_recover = true;
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/*
 * forward declarations
 */
static void bfa_ioc_hw_sem_get(struct bfa_ioc *ioc);
static void bfa_ioc_hw_sem_get_cancel(struct bfa_ioc *ioc);
static void bfa_ioc_hwinit(struct bfa_ioc *ioc, bool force);
static void bfa_ioc_send_enable(struct bfa_ioc *ioc);
static void bfa_ioc_send_disable(struct bfa_ioc *ioc);
static void bfa_ioc_send_getattr(struct bfa_ioc *ioc);
static void bfa_ioc_hb_monitor(struct bfa_ioc *ioc);
static void bfa_ioc_hb_stop(struct bfa_ioc *ioc);
static void bfa_ioc_reset(struct bfa_ioc *ioc, bool force);
static void bfa_ioc_mbox_poll(struct bfa_ioc *ioc);
static void bfa_ioc_mbox_hbfail(struct bfa_ioc *ioc);
static void bfa_ioc_recover(struct bfa_ioc *ioc);
static void bfa_ioc_check_attr_wwns(struct bfa_ioc *ioc);
static void bfa_ioc_disable_comp(struct bfa_ioc *ioc);
static void bfa_ioc_lpu_stop(struct bfa_ioc *ioc);
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static void bfa_ioc_fail_notify(struct bfa_ioc *ioc);
static void bfa_ioc_pf_enabled(struct bfa_ioc *ioc);
static void bfa_ioc_pf_disabled(struct bfa_ioc *ioc);
static void bfa_ioc_pf_initfailed(struct bfa_ioc *ioc);
static void bfa_ioc_pf_failed(struct bfa_ioc *ioc);
static void bfa_ioc_pf_fwmismatch(struct bfa_ioc *ioc);
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static void bfa_ioc_boot(struct bfa_ioc *ioc, u32 boot_type,
			 u32 boot_param);
static u32 bfa_ioc_smem_pgnum(struct bfa_ioc *ioc, u32 fmaddr);
static void bfa_ioc_get_adapter_serial_num(struct bfa_ioc *ioc,
						char *serial_num);
static void bfa_ioc_get_adapter_fw_ver(struct bfa_ioc *ioc,
						char *fw_ver);
static void bfa_ioc_get_pci_chip_rev(struct bfa_ioc *ioc,
						char *chip_rev);
static void bfa_ioc_get_adapter_optrom_ver(struct bfa_ioc *ioc,
						char *optrom_ver);
static void bfa_ioc_get_adapter_manufacturer(struct bfa_ioc *ioc,
						char *manufacturer);
static void bfa_ioc_get_adapter_model(struct bfa_ioc *ioc, char *model);
static u64 bfa_ioc_get_pwwn(struct bfa_ioc *ioc);
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/**
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 * IOC state machine definitions/declarations
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 */
enum ioc_event {
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	IOC_E_RESET		= 1,	/*!< IOC reset request		*/
	IOC_E_ENABLE		= 2,	/*!< IOC enable request		*/
	IOC_E_DISABLE		= 3,	/*!< IOC disable request	*/
	IOC_E_DETACH		= 4,	/*!< driver detach cleanup	*/
	IOC_E_ENABLED		= 5,	/*!< f/w enabled		*/
	IOC_E_FWRSP_GETATTR	= 6,	/*!< IOC get attribute response	*/
	IOC_E_DISABLED		= 7,	/*!< f/w disabled		*/
	IOC_E_INITFAILED	= 8,	/*!< failure notice by iocpf sm	*/
	IOC_E_PFAILED		= 9,	/*!< failure notice by iocpf sm	*/
	IOC_E_HBFAIL		= 10,	/*!< heartbeat failure		*/
	IOC_E_HWERROR		= 11,	/*!< hardware error interrupt	*/
	IOC_E_TIMEOUT		= 12,	/*!< timeout			*/
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};

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bfa_fsm_state_decl(bfa_ioc, uninit, struct bfa_ioc, enum ioc_event);
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bfa_fsm_state_decl(bfa_ioc, reset, struct bfa_ioc, enum ioc_event);
bfa_fsm_state_decl(bfa_ioc, enabling, struct bfa_ioc, enum ioc_event);
bfa_fsm_state_decl(bfa_ioc, getattr, struct bfa_ioc, enum ioc_event);
bfa_fsm_state_decl(bfa_ioc, op, struct bfa_ioc, enum ioc_event);
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bfa_fsm_state_decl(bfa_ioc, fail_retry, struct bfa_ioc, enum ioc_event);
bfa_fsm_state_decl(bfa_ioc, fail, struct bfa_ioc, enum ioc_event);
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bfa_fsm_state_decl(bfa_ioc, disabling, struct bfa_ioc, enum ioc_event);
bfa_fsm_state_decl(bfa_ioc, disabled, struct bfa_ioc, enum ioc_event);

static struct bfa_sm_table ioc_sm_table[] = {
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	{BFA_SM(bfa_ioc_sm_uninit), BFA_IOC_UNINIT},
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	{BFA_SM(bfa_ioc_sm_reset), BFA_IOC_RESET},
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	{BFA_SM(bfa_ioc_sm_enabling), BFA_IOC_ENABLING},
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	{BFA_SM(bfa_ioc_sm_getattr), BFA_IOC_GETATTR},
	{BFA_SM(bfa_ioc_sm_op), BFA_IOC_OPERATIONAL},
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	{BFA_SM(bfa_ioc_sm_fail_retry), BFA_IOC_INITFAIL},
	{BFA_SM(bfa_ioc_sm_fail), BFA_IOC_FAIL},
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	{BFA_SM(bfa_ioc_sm_disabling), BFA_IOC_DISABLING},
	{BFA_SM(bfa_ioc_sm_disabled), BFA_IOC_DISABLED},
};

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/**
 * IOCPF state machine definitions/declarations
 */

/*
 * Forward declareations for iocpf state machine
 */
static void bfa_iocpf_enable(struct bfa_ioc *ioc);
static void bfa_iocpf_disable(struct bfa_ioc *ioc);
static void bfa_iocpf_fail(struct bfa_ioc *ioc);
static void bfa_iocpf_initfail(struct bfa_ioc *ioc);
static void bfa_iocpf_getattrfail(struct bfa_ioc *ioc);
static void bfa_iocpf_stop(struct bfa_ioc *ioc);

/**
 * IOCPF state machine events
 */
enum iocpf_event {
	IOCPF_E_ENABLE		= 1,	/*!< IOCPF enable request	*/
	IOCPF_E_DISABLE		= 2,	/*!< IOCPF disable request	*/
	IOCPF_E_STOP		= 3,	/*!< stop on driver detach	*/
	IOCPF_E_FWREADY	 	= 4,	/*!< f/w initialization done	*/
	IOCPF_E_FWRSP_ENABLE	= 5,	/*!< enable f/w response	*/
	IOCPF_E_FWRSP_DISABLE	= 6,	/*!< disable f/w response	*/
	IOCPF_E_FAIL		= 7,	/*!< failure notice by ioc sm	*/
	IOCPF_E_INITFAIL	= 8,	/*!< init fail notice by ioc sm	*/
	IOCPF_E_GETATTRFAIL	= 9,	/*!< init fail notice by ioc sm	*/
	IOCPF_E_SEMLOCKED	= 10,   /*!< h/w semaphore is locked	*/
	IOCPF_E_TIMEOUT		= 11,   /*!< f/w response timeout	*/
};

/**
 * IOCPF states
 */
enum bfa_iocpf_state {
	BFA_IOCPF_RESET		= 1,	/*!< IOC is in reset state */
	BFA_IOCPF_SEMWAIT	= 2,	/*!< Waiting for IOC h/w semaphore */
	BFA_IOCPF_HWINIT	= 3,	/*!< IOC h/w is being initialized */
	BFA_IOCPF_READY		= 4,	/*!< IOCPF is initialized */
	BFA_IOCPF_INITFAIL	= 5,	/*!< IOCPF failed */
	BFA_IOCPF_FAIL		= 6,	/*!< IOCPF failed */
	BFA_IOCPF_DISABLING	= 7,	/*!< IOCPF is being disabled */
	BFA_IOCPF_DISABLED	= 8,	/*!< IOCPF is disabled */
	BFA_IOCPF_FWMISMATCH	= 9,	/*!< IOC f/w different from drivers */
};

bfa_fsm_state_decl(bfa_iocpf, reset, struct bfa_iocpf, enum iocpf_event);
bfa_fsm_state_decl(bfa_iocpf, fwcheck, struct bfa_iocpf, enum iocpf_event);
bfa_fsm_state_decl(bfa_iocpf, mismatch, struct bfa_iocpf, enum iocpf_event);
bfa_fsm_state_decl(bfa_iocpf, semwait, struct bfa_iocpf, enum iocpf_event);
bfa_fsm_state_decl(bfa_iocpf, hwinit, struct bfa_iocpf, enum iocpf_event);
bfa_fsm_state_decl(bfa_iocpf, enabling, struct bfa_iocpf, enum iocpf_event);
bfa_fsm_state_decl(bfa_iocpf, ready, struct bfa_iocpf, enum iocpf_event);
bfa_fsm_state_decl(bfa_iocpf, initfail_sync, struct bfa_iocpf,
						enum iocpf_event);
bfa_fsm_state_decl(bfa_iocpf, initfail, struct bfa_iocpf, enum iocpf_event);
bfa_fsm_state_decl(bfa_iocpf, fail_sync, struct bfa_iocpf, enum iocpf_event);
bfa_fsm_state_decl(bfa_iocpf, fail, struct bfa_iocpf, enum iocpf_event);
bfa_fsm_state_decl(bfa_iocpf, disabling, struct bfa_iocpf, enum iocpf_event);
bfa_fsm_state_decl(bfa_iocpf, disabling_sync, struct bfa_iocpf,
						enum iocpf_event);
bfa_fsm_state_decl(bfa_iocpf, disabled, struct bfa_iocpf, enum iocpf_event);

static struct bfa_sm_table iocpf_sm_table[] = {
	{BFA_SM(bfa_iocpf_sm_reset), BFA_IOCPF_RESET},
	{BFA_SM(bfa_iocpf_sm_fwcheck), BFA_IOCPF_FWMISMATCH},
	{BFA_SM(bfa_iocpf_sm_mismatch), BFA_IOCPF_FWMISMATCH},
	{BFA_SM(bfa_iocpf_sm_semwait), BFA_IOCPF_SEMWAIT},
	{BFA_SM(bfa_iocpf_sm_hwinit), BFA_IOCPF_HWINIT},
	{BFA_SM(bfa_iocpf_sm_enabling), BFA_IOCPF_HWINIT},
	{BFA_SM(bfa_iocpf_sm_ready), BFA_IOCPF_READY},
	{BFA_SM(bfa_iocpf_sm_initfail_sync), BFA_IOCPF_INITFAIL},
	{BFA_SM(bfa_iocpf_sm_initfail), BFA_IOCPF_INITFAIL},
	{BFA_SM(bfa_iocpf_sm_fail_sync), BFA_IOCPF_FAIL},
	{BFA_SM(bfa_iocpf_sm_fail), BFA_IOCPF_FAIL},
	{BFA_SM(bfa_iocpf_sm_disabling), BFA_IOCPF_DISABLING},
	{BFA_SM(bfa_iocpf_sm_disabling_sync), BFA_IOCPF_DISABLING},
	{BFA_SM(bfa_iocpf_sm_disabled), BFA_IOCPF_DISABLED},
};

/**
 * IOC State Machine
 */

/**
 * Beginning state. IOC uninit state.
 */
static void
bfa_ioc_sm_uninit_entry(struct bfa_ioc *ioc)
{
}

/**
 * IOC is in uninit state.
 */
static void
bfa_ioc_sm_uninit(struct bfa_ioc *ioc, enum ioc_event event)
{
	switch (event) {
	case IOC_E_RESET:
		bfa_fsm_set_state(ioc, bfa_ioc_sm_reset);
		break;

	default:
		bfa_sm_fault(ioc, event);
	}
}

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/**
 * Reset entry actions -- initialize state machine
 */
static void
bfa_ioc_sm_reset_entry(struct bfa_ioc *ioc)
{
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	bfa_fsm_set_state(&ioc->iocpf, bfa_iocpf_sm_reset);
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}

/**
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 * IOC is in reset state.
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 */
static void
bfa_ioc_sm_reset(struct bfa_ioc *ioc, enum ioc_event event)
{
	switch (event) {
	case IOC_E_ENABLE:
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		bfa_fsm_set_state(ioc, bfa_ioc_sm_enabling);
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		break;

	case IOC_E_DISABLE:
		bfa_ioc_disable_comp(ioc);
		break;

	case IOC_E_DETACH:
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		bfa_fsm_set_state(ioc, bfa_ioc_sm_uninit);
		break;

	default:
		bfa_sm_fault(ioc, event);
	}
}

static void
bfa_ioc_sm_enabling_entry(struct bfa_ioc *ioc)
{
	bfa_iocpf_enable(ioc);
}

/**
 * Host IOC function is being enabled, awaiting response from firmware.
 * Semaphore is acquired.
 */
static void
bfa_ioc_sm_enabling(struct bfa_ioc *ioc, enum ioc_event event)
{
	switch (event) {
	case IOC_E_ENABLED:
		bfa_fsm_set_state(ioc, bfa_ioc_sm_getattr);
		break;

	case IOC_E_PFAILED:
		/* !!! fall through !!! */
	case IOC_E_HWERROR:
		ioc->cbfn->enable_cbfn(ioc->bfa, BFA_STATUS_IOC_FAILURE);
		bfa_fsm_set_state(ioc, bfa_ioc_sm_fail_retry);
		if (event != IOC_E_PFAILED)
			bfa_iocpf_initfail(ioc);
		break;

	case IOC_E_DISABLE:
		bfa_fsm_set_state(ioc, bfa_ioc_sm_disabling);
		break;

	case IOC_E_DETACH:
		bfa_fsm_set_state(ioc, bfa_ioc_sm_uninit);
		bfa_iocpf_stop(ioc);
		break;

	case IOC_E_ENABLE:
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		break;

	default:
		bfa_sm_fault(ioc, event);
	}
}

/**
 * Semaphore should be acquired for version check.
 */
static void
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bfa_ioc_sm_getattr_entry(struct bfa_ioc *ioc)
{
	mod_timer(&ioc->ioc_timer, jiffies +
		msecs_to_jiffies(BFA_IOC_TOV));
	bfa_ioc_send_getattr(ioc);
}

/**
 * IOC configuration in progress. Timer is active.
 */
static void
bfa_ioc_sm_getattr(struct bfa_ioc *ioc, enum ioc_event event)
{
	switch (event) {
	case IOC_E_FWRSP_GETATTR:
		del_timer(&ioc->ioc_timer);
		bfa_ioc_check_attr_wwns(ioc);
		bfa_fsm_set_state(ioc, bfa_ioc_sm_op);
		break;

	case IOC_E_PFAILED:
	case IOC_E_HWERROR:
		del_timer(&ioc->ioc_timer);
		/* fall through */
	case IOC_E_TIMEOUT:
		ioc->cbfn->enable_cbfn(ioc->bfa, BFA_STATUS_IOC_FAILURE);
		bfa_fsm_set_state(ioc, bfa_ioc_sm_fail_retry);
		if (event != IOC_E_PFAILED)
			bfa_iocpf_getattrfail(ioc);
		break;

	case IOC_E_DISABLE:
		del_timer(&ioc->ioc_timer);
		bfa_fsm_set_state(ioc, bfa_ioc_sm_disabling);
		break;

	case IOC_E_ENABLE:
		break;

	default:
		bfa_sm_fault(ioc, event);
	}
}

static void
bfa_ioc_sm_op_entry(struct bfa_ioc *ioc)
{
	ioc->cbfn->enable_cbfn(ioc->bfa, BFA_STATUS_OK);
	bfa_ioc_hb_monitor(ioc);
}

static void
bfa_ioc_sm_op(struct bfa_ioc *ioc, enum ioc_event event)
{
	switch (event) {
	case IOC_E_ENABLE:
		break;

	case IOC_E_DISABLE:
		bfa_ioc_hb_stop(ioc);
		bfa_fsm_set_state(ioc, bfa_ioc_sm_disabling);
		break;

	case IOC_E_PFAILED:
	case IOC_E_HWERROR:
		bfa_ioc_hb_stop(ioc);
		/* !!! fall through !!! */
	case IOC_E_HBFAIL:
		bfa_ioc_fail_notify(ioc);
		if (ioc->iocpf.auto_recover)
			bfa_fsm_set_state(ioc, bfa_ioc_sm_fail_retry);
		else
			bfa_fsm_set_state(ioc, bfa_ioc_sm_fail);

		if (event != IOC_E_PFAILED)
			bfa_iocpf_fail(ioc);
		break;

	default:
		bfa_sm_fault(ioc, event);
	}
}

static void
bfa_ioc_sm_disabling_entry(struct bfa_ioc *ioc)
{
	bfa_iocpf_disable(ioc);
}

/**
 * IOC is being desabled
 */
static void
bfa_ioc_sm_disabling(struct bfa_ioc *ioc, enum ioc_event event)
{
	switch (event) {
	case IOC_E_DISABLED:
		bfa_fsm_set_state(ioc, bfa_ioc_sm_disabled);
		break;

	case IOC_E_HWERROR:
		/*
		 * No state change.  Will move to disabled state
		 * after iocpf sm completes failure processing and
		 * moves to disabled state.
		 */
		bfa_iocpf_fail(ioc);
		break;

	default:
		bfa_sm_fault(ioc, event);
	}
}

/**
 * IOC desable completion entry.
 */
static void
bfa_ioc_sm_disabled_entry(struct bfa_ioc *ioc)
{
	bfa_ioc_disable_comp(ioc);
}

static void
bfa_ioc_sm_disabled(struct bfa_ioc *ioc, enum ioc_event event)
{
	switch (event) {
	case IOC_E_ENABLE:
		bfa_fsm_set_state(ioc, bfa_ioc_sm_enabling);
		break;

	case IOC_E_DISABLE:
		ioc->cbfn->disable_cbfn(ioc->bfa);
		break;

	case IOC_E_DETACH:
		bfa_fsm_set_state(ioc, bfa_ioc_sm_uninit);
		bfa_iocpf_stop(ioc);
		break;

	default:
		bfa_sm_fault(ioc, event);
	}
}

static void
bfa_ioc_sm_fail_retry_entry(struct bfa_ioc *ioc)
{
}

/**
 * Hardware initialization retry.
 */
static void
bfa_ioc_sm_fail_retry(struct bfa_ioc *ioc, enum ioc_event event)
{
	switch (event) {
	case IOC_E_ENABLED:
		bfa_fsm_set_state(ioc, bfa_ioc_sm_getattr);
		break;

	case IOC_E_PFAILED:
	case IOC_E_HWERROR:
		/**
		 * Initialization retry failed.
		 */
		ioc->cbfn->enable_cbfn(ioc->bfa, BFA_STATUS_IOC_FAILURE);
		if (event != IOC_E_PFAILED)
			bfa_iocpf_initfail(ioc);
		break;

	case IOC_E_INITFAILED:
		bfa_fsm_set_state(ioc, bfa_ioc_sm_fail);
		break;

	case IOC_E_ENABLE:
		break;

	case IOC_E_DISABLE:
		bfa_fsm_set_state(ioc, bfa_ioc_sm_disabling);
		break;

	case IOC_E_DETACH:
		bfa_fsm_set_state(ioc, bfa_ioc_sm_uninit);
		bfa_iocpf_stop(ioc);
		break;

	default:
		bfa_sm_fault(ioc, event);
	}
}

static void
bfa_ioc_sm_fail_entry(struct bfa_ioc *ioc)
521
{
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}

/**
 * IOC failure.
 */
static void
bfa_ioc_sm_fail(struct bfa_ioc *ioc, enum ioc_event event)
{
	switch (event) {
	case IOC_E_ENABLE:
		ioc->cbfn->enable_cbfn(ioc->bfa, BFA_STATUS_IOC_FAILURE);
		break;

	case IOC_E_DISABLE:
		bfa_fsm_set_state(ioc, bfa_ioc_sm_disabling);
		break;

	case IOC_E_DETACH:
		bfa_fsm_set_state(ioc, bfa_ioc_sm_uninit);
		bfa_iocpf_stop(ioc);
		break;

	case IOC_E_HWERROR:
		/* HB failure notification, ignore. */
		break;

	default:
		bfa_sm_fault(ioc, event);
	}
}

/**
 * IOCPF State Machine
 */

/**
 * Reset entry actions -- initialize state machine
 */
static void
bfa_iocpf_sm_reset_entry(struct bfa_iocpf *iocpf)
{
	iocpf->retry_count = 0;
	iocpf->auto_recover = bfa_nw_auto_recover;
}

/**
 * Beginning state. IOC is in reset state.
 */
static void
bfa_iocpf_sm_reset(struct bfa_iocpf *iocpf, enum iocpf_event event)
{
	switch (event) {
	case IOCPF_E_ENABLE:
		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_fwcheck);
		break;

	case IOCPF_E_STOP:
		break;

	default:
		bfa_sm_fault(iocpf->ioc, event);
	}
}

/**
 * Semaphore should be acquired for version check.
 */
static void
bfa_iocpf_sm_fwcheck_entry(struct bfa_iocpf *iocpf)
{
	bfa_ioc_hw_sem_get(iocpf->ioc);
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}

/**
 * Awaiting h/w semaphore to continue with version check.
 */
static void
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bfa_iocpf_sm_fwcheck(struct bfa_iocpf *iocpf, enum iocpf_event event)
600
{
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	struct bfa_ioc *ioc = iocpf->ioc;

603
	switch (event) {
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	case IOCPF_E_SEMLOCKED:
605
		if (bfa_ioc_firmware_lock(ioc)) {
606
			if (bfa_ioc_sync_start(ioc)) {
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				iocpf->retry_count = 0;
				bfa_ioc_sync_join(ioc);
				bfa_fsm_set_state(iocpf, bfa_iocpf_sm_hwinit);
			} else {
				bfa_ioc_firmware_unlock(ioc);
				bfa_nw_ioc_hw_sem_release(ioc);
				mod_timer(&ioc->sem_timer, jiffies +
					msecs_to_jiffies(BFA_IOC_HWSEM_TOV));
			}
616
		} else {
617
			bfa_nw_ioc_hw_sem_release(ioc);
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			bfa_fsm_set_state(iocpf, bfa_iocpf_sm_mismatch);
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		}
		break;

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	case IOCPF_E_DISABLE:
623
		bfa_ioc_hw_sem_get_cancel(ioc);
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		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_reset);
		bfa_ioc_pf_disabled(ioc);
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		break;

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	case IOCPF_E_STOP:
		bfa_ioc_hw_sem_get_cancel(ioc);
		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_reset);
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		break;

	default:
		bfa_sm_fault(ioc, event);
	}
}

/**
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 * Notify enable completion callback
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 */
static void
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bfa_iocpf_sm_mismatch_entry(struct bfa_iocpf *iocpf)
643
{
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	/* Call only the first time sm enters fwmismatch state. */
	if (iocpf->retry_count == 0)
		bfa_ioc_pf_fwmismatch(iocpf->ioc);

	iocpf->retry_count++;
	mod_timer(&(iocpf->ioc)->iocpf_timer, jiffies +
		msecs_to_jiffies(BFA_IOC_TOV));
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}

/**
 * Awaiting firmware version match.
 */
static void
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bfa_iocpf_sm_mismatch(struct bfa_iocpf *iocpf, enum iocpf_event event)
658
{
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	struct bfa_ioc *ioc = iocpf->ioc;

661
	switch (event) {
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	case IOCPF_E_TIMEOUT:
		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_fwcheck);
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		break;

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	case IOCPF_E_DISABLE:
		del_timer(&ioc->iocpf_timer);
		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_reset);
		bfa_ioc_pf_disabled(ioc);
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		break;

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	case IOCPF_E_STOP:
		del_timer(&ioc->iocpf_timer);
		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_reset);
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		break;

	default:
		bfa_sm_fault(ioc, event);
	}
}

/**
 * Request for semaphore.
 */
static void
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bfa_iocpf_sm_semwait_entry(struct bfa_iocpf *iocpf)
687
{
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	bfa_ioc_hw_sem_get(iocpf->ioc);
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}

/**
 * Awaiting semaphore for h/w initialzation.
 */
static void
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bfa_iocpf_sm_semwait(struct bfa_iocpf *iocpf, enum iocpf_event event)
696
{
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	struct bfa_ioc *ioc = iocpf->ioc;

699
	switch (event) {
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	case IOCPF_E_SEMLOCKED:
		if (bfa_ioc_sync_complete(ioc)) {
			bfa_ioc_sync_join(ioc);
			bfa_fsm_set_state(iocpf, bfa_iocpf_sm_hwinit);
		} else {
			bfa_nw_ioc_hw_sem_release(ioc);
			mod_timer(&ioc->sem_timer, jiffies +
				msecs_to_jiffies(BFA_IOC_HWSEM_TOV));
		}
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		break;

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	case IOCPF_E_DISABLE:
712
		bfa_ioc_hw_sem_get_cancel(ioc);
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		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_disabling_sync);
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		break;

	default:
		bfa_sm_fault(ioc, event);
	}
}

static void
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bfa_iocpf_sm_hwinit_entry(struct bfa_iocpf *iocpf)
723
{
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	mod_timer(&(iocpf->ioc)->iocpf_timer, jiffies +
		msecs_to_jiffies(BFA_IOC_TOV));
	bfa_ioc_reset(iocpf->ioc, 0);
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}

/**
 * Hardware is being initialized. Interrupts are enabled.
 * Holding hardware semaphore lock.
 */
static void
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bfa_iocpf_sm_hwinit(struct bfa_iocpf *iocpf, enum iocpf_event event)
735
{
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	struct bfa_ioc *ioc = iocpf->ioc;

738
	switch (event) {
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	case IOCPF_E_FWREADY:
		del_timer(&ioc->iocpf_timer);
		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_enabling);
742 743
		break;

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	case IOCPF_E_INITFAIL:
		del_timer(&ioc->iocpf_timer);
		/*
		 * !!! fall through !!!
		 */
749

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	case IOCPF_E_TIMEOUT:
751
		bfa_nw_ioc_hw_sem_release(ioc);
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		if (event == IOCPF_E_TIMEOUT)
			bfa_ioc_pf_failed(ioc);
		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_initfail_sync);
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		break;

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	case IOCPF_E_DISABLE:
		del_timer(&ioc->iocpf_timer);
		bfa_ioc_sync_leave(ioc);
760
		bfa_nw_ioc_hw_sem_release(ioc);
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		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_disabled);
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		break;

	default:
		bfa_sm_fault(ioc, event);
	}
}

static void
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bfa_iocpf_sm_enabling_entry(struct bfa_iocpf *iocpf)
771
{
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	mod_timer(&(iocpf->ioc)->iocpf_timer, jiffies +
		msecs_to_jiffies(BFA_IOC_TOV));
	bfa_ioc_send_enable(iocpf->ioc);
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}

/**
 * Host IOC function is being enabled, awaiting response from firmware.
 * Semaphore is acquired.
 */
static void
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bfa_iocpf_sm_enabling(struct bfa_iocpf *iocpf, enum iocpf_event event)
783
{
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	struct bfa_ioc *ioc = iocpf->ioc;

786
	switch (event) {
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	case IOCPF_E_FWRSP_ENABLE:
		del_timer(&ioc->iocpf_timer);
789
		bfa_nw_ioc_hw_sem_release(ioc);
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		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_ready);
791 792
		break;

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	case IOCPF_E_INITFAIL:
		del_timer(&ioc->iocpf_timer);
		/*
		 * !!! fall through !!!
		 */
	case IOCPF_E_TIMEOUT:
799
		bfa_nw_ioc_hw_sem_release(ioc);
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		if (event == IOCPF_E_TIMEOUT)
			bfa_ioc_pf_failed(ioc);
		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_initfail_sync);
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		break;

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	case IOCPF_E_DISABLE:
		del_timer(&ioc->iocpf_timer);
807
		bfa_nw_ioc_hw_sem_release(ioc);
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		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_disabling);
809 810
		break;

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	case IOCPF_E_FWREADY:
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		bfa_ioc_send_enable(ioc);
		break;

	default:
		bfa_sm_fault(ioc, event);
	}
}

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static bool
bfa_nw_ioc_is_operational(struct bfa_ioc *ioc)
{
	return bfa_fsm_cmp_state(ioc, bfa_ioc_sm_op);
}

826
static void
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bfa_iocpf_sm_ready_entry(struct bfa_iocpf *iocpf)
828
{
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	bfa_ioc_pf_enabled(iocpf->ioc);
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}

static void
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bfa_iocpf_sm_ready(struct bfa_iocpf *iocpf, enum iocpf_event event)
834
{
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	struct bfa_ioc *ioc = iocpf->ioc;

837
	switch (event) {
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	case IOCPF_E_DISABLE:
		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_disabling);
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		break;

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	case IOCPF_E_GETATTRFAIL:
		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_initfail_sync);
		break;
845

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	case IOCPF_E_FAIL:
		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_fail_sync);
848 849
		break;

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	case IOCPF_E_FWREADY:
		bfa_ioc_pf_failed(ioc);
		if (bfa_nw_ioc_is_operational(ioc))
			bfa_fsm_set_state(iocpf, bfa_iocpf_sm_fail_sync);
		else
			bfa_fsm_set_state(iocpf, bfa_iocpf_sm_initfail_sync);
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		break;

	default:
		bfa_sm_fault(ioc, event);
	}
}

static void
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bfa_iocpf_sm_disabling_entry(struct bfa_iocpf *iocpf)
865
{
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	mod_timer(&(iocpf->ioc)->iocpf_timer, jiffies +
		msecs_to_jiffies(BFA_IOC_TOV));
	bfa_ioc_send_disable(iocpf->ioc);
869 870
}

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/**
 * IOC is being disabled
 */
874
static void
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bfa_iocpf_sm_disabling(struct bfa_iocpf *iocpf, enum iocpf_event event)
876
{
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	struct bfa_ioc *ioc = iocpf->ioc;
878

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	switch (event) {
	case IOCPF_E_FWRSP_DISABLE:
	case IOCPF_E_FWREADY:
		del_timer(&ioc->iocpf_timer);
		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_disabling_sync);
884 885
		break;

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	case IOCPF_E_FAIL:
		del_timer(&ioc->iocpf_timer);
		/*
		 * !!! fall through !!!
890 891
		 */

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	case IOCPF_E_TIMEOUT:
		writel(BFI_IOC_FAIL, ioc->ioc_regs.ioc_fwstate);
		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_disabling_sync);
		break;

	case IOCPF_E_FWRSP_ENABLE:
898 899 900 901 902 903 904 905
		break;

	default:
		bfa_sm_fault(ioc, event);
	}
}

static void
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bfa_iocpf_sm_disabling_sync_entry(struct bfa_iocpf *iocpf)
907
{
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	bfa_ioc_hw_sem_get(iocpf->ioc);
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}

/**
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 * IOC hb ack request is being removed.
913 914
 */
static void
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bfa_iocpf_sm_disabling_sync(struct bfa_iocpf *iocpf, enum iocpf_event event)
916
{
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	struct bfa_ioc *ioc = iocpf->ioc;

919
	switch (event) {
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	case IOCPF_E_SEMLOCKED:
		bfa_ioc_sync_leave(ioc);
		bfa_nw_ioc_hw_sem_release(ioc);
		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_disabled);
924 925
		break;

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	case IOCPF_E_FAIL:
927 928 929 930 931 932 933 934 935 936 937
		break;

	default:
		bfa_sm_fault(ioc, event);
	}
}

/**
 * IOC disable completion entry.
 */
static void
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bfa_iocpf_sm_disabled_entry(struct bfa_iocpf *iocpf)
939
{
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	bfa_ioc_pf_disabled(iocpf->ioc);
941 942 943
}

static void
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bfa_iocpf_sm_disabled(struct bfa_iocpf *iocpf, enum iocpf_event event)
945
{
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	struct bfa_ioc *ioc = iocpf->ioc;
947

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	switch (event) {
	case IOCPF_E_ENABLE:
		iocpf->retry_count = 0;
		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_semwait);
952 953
		break;

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	case IOCPF_E_STOP:
955
		bfa_ioc_firmware_unlock(ioc);
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		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_reset);
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		break;

	default:
		bfa_sm_fault(ioc, event);
	}
}

static void
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bfa_iocpf_sm_initfail_sync_entry(struct bfa_iocpf *iocpf)
966
{
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	bfa_ioc_hw_sem_get(iocpf->ioc);
968 969 970 971 972 973
}

/**
 * Hardware initialization failed.
 */
static void
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bfa_iocpf_sm_initfail_sync(struct bfa_iocpf *iocpf, enum iocpf_event event)
975
{
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	struct bfa_ioc *ioc = iocpf->ioc;

978
	switch (event) {
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	case IOCPF_E_SEMLOCKED:
		bfa_ioc_notify_fail(ioc);
		bfa_ioc_sync_ack(ioc);
		iocpf->retry_count++;
		if (iocpf->retry_count >= BFA_IOC_HWINIT_MAX) {
			bfa_ioc_sync_leave(ioc);
			bfa_nw_ioc_hw_sem_release(ioc);
			bfa_fsm_set_state(iocpf, bfa_iocpf_sm_initfail);
		} else {
			if (bfa_ioc_sync_complete(ioc))
				bfa_fsm_set_state(iocpf, bfa_iocpf_sm_hwinit);
			else {
				bfa_nw_ioc_hw_sem_release(ioc);
				bfa_fsm_set_state(iocpf, bfa_iocpf_sm_semwait);
			}
		}
995 996
		break;

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	case IOCPF_E_DISABLE:
		bfa_ioc_hw_sem_get_cancel(ioc);
		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_disabling_sync);
		break;

	case IOCPF_E_STOP:
		bfa_ioc_hw_sem_get_cancel(ioc);
1004
		bfa_ioc_firmware_unlock(ioc);
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		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_reset);
1006 1007
		break;

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	case IOCPF_E_FAIL:
1009 1010 1011 1012 1013 1014 1015 1016
		break;

	default:
		bfa_sm_fault(ioc, event);
	}
}

static void
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bfa_iocpf_sm_initfail_entry(struct bfa_iocpf *iocpf)
1018
{
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	bfa_ioc_pf_initfailed(iocpf->ioc);
}
1021

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/**
 * Hardware initialization failed.
 */
static void
bfa_iocpf_sm_initfail(struct bfa_iocpf *iocpf, enum iocpf_event event)
{
	struct bfa_ioc *ioc = iocpf->ioc;
1029

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	switch (event) {
	case IOCPF_E_DISABLE:
		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_disabled);
		break;
1034

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	case IOCPF_E_STOP:
		bfa_ioc_firmware_unlock(ioc);
		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_reset);
		break;

	default:
		bfa_sm_fault(ioc, event);
1042
	}
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}
1044

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static void
bfa_iocpf_sm_fail_sync_entry(struct bfa_iocpf *iocpf)
{
1048
	/**
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	 * Mark IOC as failed in hardware and stop firmware.
1050
	 */
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	bfa_ioc_lpu_stop(iocpf->ioc);
1052 1053

	/**
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	 * Flush any queued up mailbox requests.
1055
	 */
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	bfa_ioc_mbox_hbfail(iocpf->ioc);
	bfa_ioc_hw_sem_get(iocpf->ioc);
1058 1059 1060
}

/**
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 * IOC is in failed state.
1062 1063
 */
static void
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bfa_iocpf_sm_fail_sync(struct bfa_iocpf *iocpf, enum iocpf_event event)
1065
{
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	struct bfa_ioc *ioc = iocpf->ioc;
1067

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	switch (event) {
	case IOCPF_E_SEMLOCKED:
		iocpf->retry_count = 0;
		bfa_ioc_sync_ack(ioc);
		bfa_ioc_notify_fail(ioc);
		if (!iocpf->auto_recover) {
			bfa_ioc_sync_leave(ioc);
			bfa_nw_ioc_hw_sem_release(ioc);
			bfa_fsm_set_state(iocpf, bfa_iocpf_sm_fail);
		} else {
			if (bfa_ioc_sync_complete(ioc))
				bfa_fsm_set_state(iocpf, bfa_iocpf_sm_hwinit);
			else {
				bfa_nw_ioc_hw_sem_release(ioc);
				bfa_fsm_set_state(iocpf, bfa_iocpf_sm_semwait);
			}
		}
1085 1086
		break;

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	case IOCPF_E_DISABLE:
		bfa_ioc_hw_sem_get_cancel(ioc);
		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_disabling_sync);
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		break;

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	case IOCPF_E_FAIL:
1093 1094
		break;

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	default:
		bfa_sm_fault(ioc, event);
	}
}
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static void
bfa_iocpf_sm_fail_entry(struct bfa_iocpf *iocpf)
{
}

/**
 * @brief
 * IOC is in failed state.
 */
static void
bfa_iocpf_sm_fail(struct bfa_iocpf *iocpf, enum iocpf_event event)
{
	switch (event) {
	case IOCPF_E_DISABLE:
		bfa_fsm_set_state(iocpf, bfa_iocpf_sm_disabled);
1115
		break;
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1117
	default:
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		bfa_sm_fault(iocpf->ioc, event);
1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143
	}
}

/**
 * BFA IOC private functions
 */

static void
bfa_ioc_disable_comp(struct bfa_ioc *ioc)
{
	struct list_head			*qe;
	struct bfa_ioc_hbfail_notify *notify;

	ioc->cbfn->disable_cbfn(ioc->bfa);

	/**
	 * Notify common modules registered for notification.
	 */
	list_for_each(qe, &ioc->hb_notify_q) {
		notify = (struct bfa_ioc_hbfail_notify *) qe;
		notify->cbfn(notify->cbarg);
	}
}

bool
1144
bfa_nw_ioc_sem_get(void __iomem *sem_reg)
1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165
{
	u32 r32;
	int cnt = 0;
#define BFA_SEM_SPINCNT	3000

	r32 = readl(sem_reg);

	while (r32 && (cnt < BFA_SEM_SPINCNT)) {
		cnt++;
		udelay(2);
		r32 = readl(sem_reg);
	}

	if (r32 == 0)
		return true;

	BUG_ON(!(cnt < BFA_SEM_SPINCNT));
	return false;
}

void
1166
bfa_nw_ioc_sem_release(void __iomem *sem_reg)
1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181
{
	writel(1, sem_reg);
}

static void
bfa_ioc_hw_sem_get(struct bfa_ioc *ioc)
{
	u32	r32;

	/**
	 * First read to the semaphore register will return 0, subsequent reads
	 * will return 1. Semaphore is released by writing 1 to the register
	 */
	r32 = readl(ioc->ioc_regs.ioc_sem_reg);
	if (r32 == 0) {
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		bfa_fsm_send_event(&ioc->iocpf, IOCPF_E_SEMLOCKED);
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		return;
	}

	mod_timer(&ioc->sem_timer, jiffies +
		msecs_to_jiffies(BFA_IOC_HWSEM_TOV));
}

void
1191
bfa_nw_ioc_hw_sem_release(struct bfa_ioc *ioc)
1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273
{
	writel(1, ioc->ioc_regs.ioc_sem_reg);
}

static void
bfa_ioc_hw_sem_get_cancel(struct bfa_ioc *ioc)
{
	del_timer(&ioc->sem_timer);
}

/**
 * @brief
 * Initialize LPU local memory (aka secondary memory / SRAM)
 */
static void
bfa_ioc_lmem_init(struct bfa_ioc *ioc)
{
	u32	pss_ctl;
	int		i;
#define PSS_LMEM_INIT_TIME  10000

	pss_ctl = readl(ioc->ioc_regs.pss_ctl_reg);
	pss_ctl &= ~__PSS_LMEM_RESET;
	pss_ctl |= __PSS_LMEM_INIT_EN;

	/*
	 * i2c workaround 12.5khz clock
	 */
	pss_ctl |= __PSS_I2C_CLK_DIV(3UL);
	writel(pss_ctl, ioc->ioc_regs.pss_ctl_reg);

	/**
	 * wait for memory initialization to be complete
	 */
	i = 0;
	do {
		pss_ctl = readl(ioc->ioc_regs.pss_ctl_reg);
		i++;
	} while (!(pss_ctl & __PSS_LMEM_INIT_DONE) && (i < PSS_LMEM_INIT_TIME));

	/**
	 * If memory initialization is not successful, IOC timeout will catch
	 * such failures.
	 */
	BUG_ON(!(pss_ctl & __PSS_LMEM_INIT_DONE));

	pss_ctl &= ~(__PSS_LMEM_INIT_DONE | __PSS_LMEM_INIT_EN);
	writel(pss_ctl, ioc->ioc_regs.pss_ctl_reg);
}

static void
bfa_ioc_lpu_start(struct bfa_ioc *ioc)
{
	u32	pss_ctl;

	/**
	 * Take processor out of reset.
	 */
	pss_ctl = readl(ioc->ioc_regs.pss_ctl_reg);
	pss_ctl &= ~__PSS_LPU0_RESET;

	writel(pss_ctl, ioc->ioc_regs.pss_ctl_reg);
}

static void
bfa_ioc_lpu_stop(struct bfa_ioc *ioc)
{
	u32	pss_ctl;

	/**
	 * Put processors in reset.
	 */
	pss_ctl = readl(ioc->ioc_regs.pss_ctl_reg);
	pss_ctl |= (__PSS_LPU0_RESET | __PSS_LPU1_RESET);

	writel(pss_ctl, ioc->ioc_regs.pss_ctl_reg);
}

/**
 * Get driver and firmware versions.
 */
void
1274
bfa_nw_ioc_fwver_get(struct bfa_ioc *ioc, struct bfi_ioc_image_hdr *fwhdr)
1275
{
1276
	u32	pgnum;
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	u32	loff = 0;
	int		i;
	u32	*fwsig = (u32 *) fwhdr;

	pgnum = bfa_ioc_smem_pgnum(ioc, loff);
	writel(pgnum, ioc->ioc_regs.host_page_num_fn);

	for (i = 0; i < (sizeof(struct bfi_ioc_image_hdr) / sizeof(u32));
	     i++) {
		fwsig[i] =
			swab32(readl((loff) + (ioc->ioc_regs.smem_page_start)));
		loff += sizeof(u32);
	}
}

/**
 * Returns TRUE if same.
 */
bool
1296
bfa_nw_ioc_fwver_cmp(struct bfa_ioc *ioc, struct bfi_ioc_image_hdr *fwhdr)
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{
	struct bfi_ioc_image_hdr *drv_fwhdr;
	int i;

	drv_fwhdr = (struct bfi_ioc_image_hdr *)
		bfa_cb_image_get_chunk(BFA_IOC_FWIMG_TYPE(ioc), 0);

	for (i = 0; i < BFI_IOC_MD5SUM_SZ; i++) {
		if (fwhdr->md5sum[i] != drv_fwhdr->md5sum[i])
			return false;
	}

	return true;
}

/**
 * Return true if current running version is valid. Firmware signature and
 * execution context (driver/bios) must match.
 */
static bool
1317
bfa_ioc_fwver_valid(struct bfa_ioc *ioc, u32 boot_env)
1318 1319 1320
{
	struct bfi_ioc_image_hdr fwhdr, *drv_fwhdr;

1321
	bfa_nw_ioc_fwver_get(ioc, &fwhdr);
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	drv_fwhdr = (struct bfi_ioc_image_hdr *)
		bfa_cb_image_get_chunk(BFA_IOC_FWIMG_TYPE(ioc), 0);

	if (fwhdr.signature != drv_fwhdr->signature)
		return false;

1328
	if (swab32(fwhdr.param) != boot_env)
1329 1330
		return false;

1331
	return bfa_nw_ioc_fwver_cmp(ioc, &fwhdr);
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}

/**
 * Conditionally flush any pending message from firmware at start.
 */
static void
bfa_ioc_msgflush(struct bfa_ioc *ioc)
{
	u32	r32;

	r32 = readl(ioc->ioc_regs.lpu_mbox_cmd);
	if (r32)
		writel(1, ioc->ioc_regs.lpu_mbox_cmd);
}

/**
 * @img ioc_init_logic.jpg
 */
static void
bfa_ioc_hwinit(struct bfa_ioc *ioc, bool force)
{
	enum bfi_ioc_state ioc_fwstate;
	bool fwvalid;
1355
	u32 boot_env;
1356 1357 1358

	ioc_fwstate = readl(ioc->ioc_regs.ioc_fwstate);

1359 1360
	boot_env = BFI_BOOT_LOADER_OS;

1361 1362 1363 1364 1365 1366 1367
	if (force)
		ioc_fwstate = BFI_IOC_UNINIT;

	/**
	 * check if firmware is valid
	 */
	fwvalid = (ioc_fwstate == BFI_IOC_UNINIT) ?
1368
		false : bfa_ioc_fwver_valid(ioc, boot_env);
1369 1370

	if (!fwvalid) {
1371
		bfa_ioc_boot(ioc, BFI_BOOT_TYPE_NORMAL, boot_env);
1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387
		return;
	}

	/**
	 * If hardware initialization is in progress (initialized by other IOC),
	 * just wait for an initialization completion interrupt.
	 */
	if (ioc_fwstate == BFI_IOC_INITING) {
		ioc->cbfn->reset_cbfn(ioc->bfa);
		return;
	}

	/**
	 * If IOC function is disabled and firmware version is same,
	 * just re-enable IOC.
	 */
1388
	if (ioc_fwstate == BFI_IOC_DISABLED || ioc_fwstate == BFI_IOC_OP) {
1389 1390 1391 1392 1393 1394
		/**
		 * When using MSI-X any pending firmware ready event should
		 * be flushed. Otherwise MSI-X interrupts are not delivered.
		 */
		bfa_ioc_msgflush(ioc);
		ioc->cbfn->reset_cbfn(ioc->bfa);
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		bfa_fsm_send_event(&ioc->iocpf, IOCPF_E_FWREADY);
1396 1397 1398 1399 1400 1401
		return;
	}

	/**
	 * Initialize the h/w for any other states.
	 */
1402
	bfa_ioc_boot(ioc, BFI_BOOT_TYPE_NORMAL, boot_env);
1403 1404 1405
}

void
1406
bfa_nw_ioc_timeout(void *ioc_arg)
1407 1408 1409 1410 1411 1412
{
	struct bfa_ioc *ioc = (struct bfa_ioc *) ioc_arg;

	bfa_fsm_send_event(ioc, IOC_E_TIMEOUT);
}

1413
static void
1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446 1447 1448 1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473
bfa_ioc_mbox_send(struct bfa_ioc *ioc, void *ioc_msg, int len)
{
	u32 *msgp = (u32 *) ioc_msg;
	u32 i;

	BUG_ON(!(len <= BFI_IOC_MSGLEN_MAX));

	/*
	 * first write msg to mailbox registers
	 */
	for (i = 0; i < len / sizeof(u32); i++)
		writel(cpu_to_le32(msgp[i]),
			      ioc->ioc_regs.hfn_mbox + i * sizeof(u32));

	for (; i < BFI_IOC_MSGLEN_MAX / sizeof(u32); i++)
		writel(0, ioc->ioc_regs.hfn_mbox + i * sizeof(u32));

	/*
	 * write 1 to mailbox CMD to trigger LPU event
	 */
	writel(1, ioc->ioc_regs.hfn_mbox_cmd);
	(void) readl(ioc->ioc_regs.hfn_mbox_cmd);
}

static void
bfa_ioc_send_enable(struct bfa_ioc *ioc)
{
	struct bfi_ioc_ctrl_req enable_req;
	struct timeval tv;

	bfi_h2i_set(enable_req.mh, BFI_MC_IOC, BFI_IOC_H2I_ENABLE_REQ,
		    bfa_ioc_portid(ioc));
	enable_req.ioc_class = ioc->ioc_mc;
	do_gettimeofday(&tv);
	enable_req.tv_sec = ntohl(tv.tv_sec);
	bfa_ioc_mbox_send(ioc, &enable_req, sizeof(struct bfi_ioc_ctrl_req));
}

static void
bfa_ioc_send_disable(struct bfa_ioc *ioc)
{
	struct bfi_ioc_ctrl_req disable_req;

	bfi_h2i_set(disable_req.mh, BFI_MC_IOC, BFI_IOC_H2I_DISABLE_REQ,
		    bfa_ioc_portid(ioc));
	bfa_ioc_mbox_send(ioc, &disable_req, sizeof(struct bfi_ioc_ctrl_req));
}

static void
bfa_ioc_send_getattr(struct bfa_ioc *ioc)
{
	struct bfi_ioc_getattr_req attr_req;

	bfi_h2i_set(attr_req.mh, BFI_MC_IOC, BFI_IOC_H2I_GETATTR_REQ,
		    bfa_ioc_portid(ioc));
	bfa_dma_be_addr_set(attr_req.attr_addr, ioc->attr_dma.pa);
	bfa_ioc_mbox_send(ioc, &attr_req, sizeof(attr_req));
}

void
1474
bfa_nw_ioc_hb_check(void *cbarg)
1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511
{
	struct bfa_ioc *ioc = cbarg;
	u32	hb_count;

	hb_count = readl(ioc->ioc_regs.heartbeat);
	if (ioc->hb_count == hb_count) {
		bfa_ioc_recover(ioc);
		return;
	} else {
		ioc->hb_count = hb_count;
	}

	bfa_ioc_mbox_poll(ioc);
	mod_timer(&ioc->hb_timer, jiffies +
		msecs_to_jiffies(BFA_IOC_HB_TOV));
}

static void
bfa_ioc_hb_monitor(struct bfa_ioc *ioc)
{
	ioc->hb_count = readl(ioc->ioc_regs.heartbeat);
	mod_timer(&ioc->hb_timer, jiffies +
		msecs_to_jiffies(BFA_IOC_HB_TOV));
}

static void
bfa_ioc_hb_stop(struct bfa_ioc *ioc)
{
	del_timer(&ioc->hb_timer);
}

/**
 * @brief
 *	Initiate a full firmware download.
 */
static void
bfa_ioc_download_fw(struct bfa_ioc *ioc, u32 boot_type,
1512
		    u32 boot_env)
1513 1514
{
	u32 *fwimg;
1515
	u32 pgnum;
1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562
	u32 loff = 0;
	u32 chunkno = 0;
	u32 i;

	/**
	 * Initialize LMEM first before code download
	 */
	bfa_ioc_lmem_init(ioc);

	fwimg = bfa_cb_image_get_chunk(BFA_IOC_FWIMG_TYPE(ioc), chunkno);

	pgnum = bfa_ioc_smem_pgnum(ioc, loff);

	writel(pgnum, ioc->ioc_regs.host_page_num_fn);

	for (i = 0; i < bfa_cb_image_get_size(BFA_IOC_FWIMG_TYPE(ioc)); i++) {
		if (BFA_IOC_FLASH_CHUNK_NO(i) != chunkno) {
			chunkno = BFA_IOC_FLASH_CHUNK_NO(i);
			fwimg = bfa_cb_image_get_chunk(BFA_IOC_FWIMG_TYPE(ioc),
					BFA_IOC_FLASH_CHUNK_ADDR(chunkno));
		}

		/**
		 * write smem
		 */
		writel((swab32(fwimg[BFA_IOC_FLASH_OFFSET_IN_CHUNK(i)])),
			      ((ioc->ioc_regs.smem_page_start) + (loff)));

		loff += sizeof(u32);

		/**
		 * handle page offset wrap around
		 */
		loff = PSS_SMEM_PGOFF(loff);
		if (loff == 0) {
			pgnum++;
			writel(pgnum,
				      ioc->ioc_regs.host_page_num_fn);
		}
	}

	writel(bfa_ioc_smem_pgnum(ioc, 0),
		      ioc->ioc_regs.host_page_num_fn);

	/*
	 * Set boot type and boot param at the end.
	*/
1563
	writel(boot_type, ((ioc->ioc_regs.smem_page_start)
1564
			+ (BFI_BOOT_TYPE_OFF)));
1565 1566
	writel(boot_env, ((ioc->ioc_regs.smem_page_start)
			+ (BFI_BOOT_LOADER_OFF)));
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}

static void
bfa_ioc_reset(struct bfa_ioc *ioc, bool force)
{
	bfa_ioc_hwinit(ioc, force);
}

/**
 * @brief
 * Update BFA configuration from firmware configuration.
 */
static void
bfa_ioc_getattr_reply(struct bfa_ioc *ioc)
{
	struct bfi_ioc_attr *attr = ioc->attr;

	attr->adapter_prop  = ntohl(attr->adapter_prop);
	attr->card_type     = ntohl(attr->card_type);
	attr->maxfrsize	    = ntohs(attr->maxfrsize);

	bfa_fsm_send_event(ioc, IOC_E_FWRSP_GETATTR);
}

/**
 * Attach time initialization of mbox logic.
 */
static void
bfa_ioc_mbox_attach(struct bfa_ioc *ioc)
{
	struct bfa_ioc_mbox_mod *mod = &ioc->mbox_mod;
	int	mc;

	INIT_LIST_HEAD(&mod->cmd_q);
	for (mc = 0; mc < BFI_MC_MAX; mc++) {
		mod->mbhdlr[mc].cbfn = NULL;
		mod->mbhdlr[mc].cbarg = ioc->bfa;
	}
}

/**
 * Mbox poll timer -- restarts any pending mailbox requests.
 */
static void
bfa_ioc_mbox_poll(struct bfa_ioc *ioc)
{
	struct bfa_ioc_mbox_mod *mod = &ioc->mbox_mod;
	struct bfa_mbox_cmd *cmd;
	u32			stat;

	/**
	 * If no command pending, do nothing
	 */
	if (list_empty(&mod->cmd_q))
		return;

	/**
	 * If previous command is not yet fetched by firmware, do nothing
	 */
	stat = readl(ioc->ioc_regs.hfn_mbox_cmd);
	if (stat)
		return;

	/**
	 * Enqueue command to firmware.
	 */
	bfa_q_deq(&mod->cmd_q, &cmd);
	bfa_ioc_mbox_send(ioc, cmd->msg, sizeof(cmd->msg));
}

/**
 * Cleanup any pending requests.
 */
static void
bfa_ioc_mbox_hbfail(struct bfa_ioc *ioc)
{
	struct bfa_ioc_mbox_mod *mod = &ioc->mbox_mod;
	struct bfa_mbox_cmd *cmd;

	while (!list_empty(&mod->cmd_q))
		bfa_q_deq(&mod->cmd_q, &cmd);
}

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static void
bfa_ioc_fail_notify(struct bfa_ioc *ioc)
{
	struct list_head		*qe;
	struct bfa_ioc_hbfail_notify	*notify;

	/**
	 * Notify driver and common modules registered for notification.
	 */
	ioc->cbfn->hbfail_cbfn(ioc->bfa);
	list_for_each(qe, &ioc->hb_notify_q) {
		notify = (struct bfa_ioc_hbfail_notify *) qe;
		notify->cbfn(notify->cbarg);
	}
}

static void
bfa_ioc_pf_enabled(struct bfa_ioc *ioc)
{
	bfa_fsm_send_event(ioc, IOC_E_ENABLED);
}

static void
bfa_ioc_pf_disabled(struct bfa_ioc *ioc)
{
	bfa_fsm_send_event(ioc, IOC_E_DISABLED);
}

static void
bfa_ioc_pf_initfailed(struct bfa_ioc *ioc)
{
	bfa_fsm_send_event(ioc, IOC_E_INITFAILED);
}

static void
bfa_ioc_pf_failed(struct bfa_ioc *ioc)
{
	bfa_fsm_send_event(ioc, IOC_E_PFAILED);
}

static void
bfa_ioc_pf_fwmismatch(struct bfa_ioc *ioc)
{
	/**
	 * Provide enable completion callback and AEN notification.
	 */
	ioc->cbfn->enable_cbfn(ioc->bfa, BFA_STATUS_IOC_FAILURE);
}

1699 1700 1701
/**
 * IOC public
 */
1702
static enum bfa_status
1703 1704 1705 1706 1707
bfa_ioc_pll_init(struct bfa_ioc *ioc)
{
	/*
	 *  Hold semaphore so that nobody can access the chip during init.
	 */
1708
	bfa_nw_ioc_sem_get(ioc->ioc_regs.ioc_init_sem_reg);
1709 1710 1711 1712 1713 1714 1715

	bfa_ioc_pll_init_asic(ioc);

	ioc->pllinit = true;
	/*
	 *  release semaphore.
	 */
1716
	bfa_nw_ioc_sem_release(ioc->ioc_regs.ioc_init_sem_reg);
1717 1718 1719 1720 1721 1722 1723 1724

	return BFA_STATUS_OK;
}

/**
 * Interface used by diag module to do firmware boot with memory test
 * as the entry vector.
 */
1725
static void
1726
bfa_ioc_boot(struct bfa_ioc *ioc, u32 boot_type, u32 boot_env)
1727 1728 1729 1730 1731 1732 1733 1734 1735 1736 1737 1738
{
	void __iomem *rb;

	bfa_ioc_stats(ioc, ioc_boots);

	if (bfa_ioc_pll_init(ioc) != BFA_STATUS_OK)
		return;

	/**
	 * Initialize IOC state of all functions on a chip reset.
	 */
	rb = ioc->pcidev.pci_bar_kva;
1739
	if (boot_type == BFI_BOOT_TYPE_MEMTEST) {
1740 1741 1742 1743 1744 1745 1746 1747
		writel(BFI_IOC_MEMTEST, (rb + BFA_IOC0_STATE_REG));
		writel(BFI_IOC_MEMTEST, (rb + BFA_IOC1_STATE_REG));
	} else {
		writel(BFI_IOC_INITING, (rb + BFA_IOC0_STATE_REG));
		writel(BFI_IOC_INITING, (rb + BFA_IOC1_STATE_REG));
	}

	bfa_ioc_msgflush(ioc);
1748
	bfa_ioc_download_fw(ioc, boot_type, boot_env);
1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760

	/**
	 * Enable interrupts just before starting LPU
	 */
	ioc->cbfn->reset_cbfn(ioc->bfa);
	bfa_ioc_lpu_start(ioc);
}

/**
 * Enable/disable IOC failure auto recovery.
 */
void
1761
bfa_nw_ioc_auto_recover(bool auto_recover)
1762
{
1763
	bfa_nw_auto_recover = auto_recover;
1764 1765
}

1766
static void
1767 1768 1769 1770 1771 1772 1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789
bfa_ioc_msgget(struct bfa_ioc *ioc, void *mbmsg)
{
	u32	*msgp = mbmsg;
	u32	r32;
	int		i;

	/**
	 * read the MBOX msg
	 */
	for (i = 0; i < (sizeof(union bfi_ioc_i2h_msg_u) / sizeof(u32));
	     i++) {
		r32 = readl(ioc->ioc_regs.lpu_mbox +
				   i * sizeof(u32));
		msgp[i] = htonl(r32);
	}

	/**
	 * turn off mailbox interrupt by clearing mailbox status
	 */
	writel(1, ioc->ioc_regs.lpu_mbox_cmd);
	readl(ioc->ioc_regs.lpu_mbox_cmd);
}

1790
static void
1791 1792 1793
bfa_ioc_isr(struct bfa_ioc *ioc, struct bfi_mbmsg *m)
{
	union bfi_ioc_i2h_msg_u	*msg;
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	struct bfa_iocpf *iocpf = &ioc->iocpf;
1795 1796 1797 1798 1799 1800 1801 1802 1803 1804

	msg = (union bfi_ioc_i2h_msg_u *) m;

	bfa_ioc_stats(ioc, ioc_isrs);

	switch (msg->mh.msg_id) {
	case BFI_IOC_I2H_HBEAT:
		break;

	case BFI_IOC_I2H_READY_EVENT:
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		bfa_fsm_send_event(iocpf, IOCPF_E_FWREADY);
1806 1807 1808
		break;

	case BFI_IOC_I2H_ENABLE_REPLY:
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		bfa_fsm_send_event(iocpf, IOCPF_E_FWRSP_ENABLE);
1810 1811 1812
		break;

	case BFI_IOC_I2H_DISABLE_REPLY:
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1813
		bfa_fsm_send_event(iocpf, IOCPF_E_FWRSP_DISABLE);
1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825 1826 1827 1828 1829 1830 1831
		break;

	case BFI_IOC_I2H_GETATTR_REPLY:
		bfa_ioc_getattr_reply(ioc);
		break;

	default:
		BUG_ON(1);
	}
}

/**
 * IOC attach time initialization and setup.
 *
 * @param[in]	ioc	memory for IOC
 * @param[in]	bfa	driver instance structure
 */
void
1832
bfa_nw_ioc_attach(struct bfa_ioc *ioc, void *bfa, struct bfa_ioc_cbfn *cbfn)
1833 1834 1835 1836 1837 1838
{
	ioc->bfa	= bfa;
	ioc->cbfn	= cbfn;
	ioc->fcmode	= false;
	ioc->pllinit	= false;
	ioc->dbg_fwsave_once = true;
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	ioc->iocpf.ioc  = ioc;
1840 1841 1842 1843

	bfa_ioc_mbox_attach(ioc);
	INIT_LIST_HEAD(&ioc->hb_notify_q);

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1844 1845
	bfa_fsm_set_state(ioc, bfa_ioc_sm_uninit);
	bfa_fsm_send_event(ioc, IOC_E_RESET);
1846 1847 1848 1849 1850 1851
}

/**
 * Driver detach time IOC cleanup.
 */
void
1852
bfa_nw_ioc_detach(struct bfa_ioc *ioc)
1853 1854 1855 1856 1857 1858 1859 1860 1861 1862
{
	bfa_fsm_send_event(ioc, IOC_E_DETACH);
}

/**
 * Setup IOC PCI properties.
 *
 * @param[in]	pcidev	PCI device information for this IOC
 */
void
1863
bfa_nw_ioc_pci_init(struct bfa_ioc *ioc, struct bfa_pcidev *pcidev,
1864 1865 1866 1867 1868 1869 1870
		 enum bfi_mclass mc)
{
	ioc->ioc_mc	= mc;
	ioc->pcidev	= *pcidev;
	ioc->ctdev	= bfa_asic_id_ct(ioc->pcidev.device_id);
	ioc->cna	= ioc->ctdev && !ioc->fcmode;

1871
	bfa_nw_ioc_set_ct_hwif(ioc);
1872 1873 1874 1875 1876 1877 1878 1879 1880 1881 1882 1883

	bfa_ioc_map_port(ioc);
	bfa_ioc_reg_init(ioc);
}

/**
 * Initialize IOC dma memory
 *
 * @param[in]	dm_kva	kernel virtual address of IOC dma memory
 * @param[in]	dm_pa	physical address of IOC dma memory
 */
void
1884
bfa_nw_ioc_mem_claim(struct bfa_ioc *ioc,  u8 *dm_kva, u64 dm_pa)
1885 1886 1887 1888 1889 1890 1891 1892 1893 1894 1895 1896 1897
{
	/**
	 * dma memory for firmware attribute
	 */
	ioc->attr_dma.kva = dm_kva;
	ioc->attr_dma.pa = dm_pa;
	ioc->attr = (struct bfi_ioc_attr *) dm_kva;
}

/**
 * Return size of dma memory required.
 */
u32
1898
bfa_nw_ioc_meminfo(void)
1899 1900 1901 1902 1903
{
	return roundup(sizeof(struct bfi_ioc_attr), BFA_DMA_ALIGN_SZ);
}

void
1904
bfa_nw_ioc_enable(struct bfa_ioc *ioc)
1905 1906 1907 1908 1909 1910 1911 1912
{
	bfa_ioc_stats(ioc, ioc_enables);
	ioc->dbg_fwsave_once = true;

	bfa_fsm_send_event(ioc, IOC_E_ENABLE);
}

void
1913
bfa_nw_ioc_disable(struct bfa_ioc *ioc)
1914 1915 1916 1917 1918
{
	bfa_ioc_stats(ioc, ioc_disables);
	bfa_fsm_send_event(ioc, IOC_E_DISABLE);
}

1919
static u32
1920 1921 1922 1923 1924 1925 1926 1927 1928
bfa_ioc_smem_pgnum(struct bfa_ioc *ioc, u32 fmaddr)
{
	return PSS_SMEM_PGNUM(ioc->ioc_regs.smem_pg0, fmaddr);
}

/**
 * Register mailbox message handler function, to be called by common modules
 */
void
1929
bfa_nw_ioc_mbox_regisr(struct bfa_ioc *ioc, enum bfi_mclass mc,
1930 1931 1932 1933 1934 1935 1936 1937 1938 1939 1940 1941 1942 1943 1944 1945
		    bfa_ioc_mbox_mcfunc_t cbfn, void *cbarg)
{
	struct bfa_ioc_mbox_mod *mod = &ioc->mbox_mod;

	mod->mbhdlr[mc].cbfn	= cbfn;
	mod->mbhdlr[mc].cbarg = cbarg;
}

/**
 * Queue a mailbox command request to firmware. Waits if mailbox is busy.
 * Responsibility of caller to serialize
 *
 * @param[in]	ioc	IOC instance
 * @param[i]	cmd	Mailbox command
 */
void
1946
bfa_nw_ioc_mbox_queue(struct bfa_ioc *ioc, struct bfa_mbox_cmd *cmd)
1947 1948 1949 1950 1951 1952 1953 1954 1955 1956 1957 1958 1959 1960 1961 1962 1963 1964 1965 1966 1967 1968 1969 1970 1971 1972 1973 1974 1975 1976 1977
{
	struct bfa_ioc_mbox_mod *mod = &ioc->mbox_mod;
	u32			stat;

	/**
	 * If a previous command is pending, queue new command
	 */
	if (!list_empty(&mod->cmd_q)) {
		list_add_tail(&cmd->qe, &mod->cmd_q);
		return;
	}

	/**
	 * If mailbox is busy, queue command for poll timer
	 */
	stat = readl(ioc->ioc_regs.hfn_mbox_cmd);
	if (stat) {
		list_add_tail(&cmd->qe, &mod->cmd_q);
		return;
	}

	/**
	 * mailbox is free -- queue command to firmware
	 */
	bfa_ioc_mbox_send(ioc, cmd->msg, sizeof(cmd->msg));
}

/**
 * Handle mailbox interrupts
 */
void
1978
bfa_nw_ioc_mbox_isr(struct bfa_ioc *ioc)
1979 1980 1981 1982 1983 1984 1985 1986 1987 1988 1989 1990 1991 1992 1993 1994
{
	struct bfa_ioc_mbox_mod *mod = &ioc->mbox_mod;
	struct bfi_mbmsg m;
	int				mc;

	bfa_ioc_msgget(ioc, &m);

	/**
	 * Treat IOC message class as special.
	 */
	mc = m.mh.msg_class;
	if (mc == BFI_MC_IOC) {
		bfa_ioc_isr(ioc, &m);
		return;
	}

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	if ((mc >= BFI_MC_MAX) || (mod->mbhdlr[mc].cbfn == NULL))
1996 1997 1998 1999 2000 2001
		return;

	mod->mbhdlr[mc].cbfn(mod->mbhdlr[mc].cbarg, &m);
}

void
2002
bfa_nw_ioc_error_isr(struct bfa_ioc *ioc)
2003 2004 2005 2006 2007 2008 2009 2010 2011
{
	bfa_fsm_send_event(ioc, IOC_E_HWERROR);
}

/**
 * Add to IOC heartbeat failure notification queue. To be used by common
 * modules such as cee, port, diag.
 */
void
2012
bfa_nw_ioc_hbfail_register(struct bfa_ioc *ioc,
2013 2014 2015 2016 2017 2018
			struct bfa_ioc_hbfail_notify *notify)
{
	list_add_tail(&notify->qe, &ioc->hb_notify_q);
}

#define BFA_MFG_NAME "Brocade"
2019
static void
2020 2021 2022 2023 2024 2025 2026 2027 2028 2029 2030 2031 2032 2033 2034 2035 2036 2037 2038 2039 2040 2041 2042 2043 2044 2045 2046 2047 2048 2049
bfa_ioc_get_adapter_attr(struct bfa_ioc *ioc,
			 struct bfa_adapter_attr *ad_attr)
{
	struct bfi_ioc_attr *ioc_attr;

	ioc_attr = ioc->attr;

	bfa_ioc_get_adapter_serial_num(ioc, ad_attr->serial_num);
	bfa_ioc_get_adapter_fw_ver(ioc, ad_attr->fw_ver);
	bfa_ioc_get_adapter_optrom_ver(ioc, ad_attr->optrom_ver);
	bfa_ioc_get_adapter_manufacturer(ioc, ad_attr->manufacturer);
	memcpy(&ad_attr->vpd, &ioc_attr->vpd,
		      sizeof(struct bfa_mfg_vpd));

	ad_attr->nports = bfa_ioc_get_nports(ioc);
	ad_attr->max_speed = bfa_ioc_speed_sup(ioc);

	bfa_ioc_get_adapter_model(ioc, ad_attr->model);
	/* For now, model descr uses same model string */
	bfa_ioc_get_adapter_model(ioc, ad_attr->model_descr);

	ad_attr->card_type = ioc_attr->card_type;
	ad_attr->is_mezz = bfa_mfg_is_mezz(ioc_attr->card_type);

	if (BFI_ADAPTER_IS_SPECIAL(ioc_attr->adapter_prop))
		ad_attr->prototype = 1;
	else
		ad_attr->prototype = 0;

	ad_attr->pwwn = bfa_ioc_get_pwwn(ioc);
2050
	ad_attr->mac  = bfa_nw_ioc_get_mac(ioc);
2051 2052 2053 2054 2055 2056 2057 2058 2059 2060 2061 2062

	ad_attr->pcie_gen = ioc_attr->pcie_gen;
	ad_attr->pcie_lanes = ioc_attr->pcie_lanes;
	ad_attr->pcie_lanes_orig = ioc_attr->pcie_lanes_orig;
	ad_attr->asic_rev = ioc_attr->asic_rev;

	bfa_ioc_get_pci_chip_rev(ioc, ad_attr->hw_ver);

	ad_attr->cna_capable = ioc->cna;
	ad_attr->trunk_capable = (ad_attr->nports > 1) && !ioc->cna;
}

2063
static enum bfa_ioc_type
2064 2065 2066 2067 2068 2069 2070 2071 2072 2073 2074 2075 2076 2077
bfa_ioc_get_type(struct bfa_ioc *ioc)
{
	if (!ioc->ctdev || ioc->fcmode)
		return BFA_IOC_TYPE_FC;
	else if (ioc->ioc_mc == BFI_MC_IOCFC)
		return BFA_IOC_TYPE_FCoE;
	else if (ioc->ioc_mc == BFI_MC_LL)
		return BFA_IOC_TYPE_LL;
	else {
		BUG_ON(!(ioc->ioc_mc == BFI_MC_LL));
		return BFA_IOC_TYPE_LL;
	}
}

2078
static void
2079 2080 2081 2082 2083 2084 2085 2086
bfa_ioc_get_adapter_serial_num(struct bfa_ioc *ioc, char *serial_num)
{
	memset(serial_num, 0, BFA_ADAPTER_SERIAL_NUM_LEN);
	memcpy(serial_num,
			(void *)ioc->attr->brcd_serialnum,
			BFA_ADAPTER_SERIAL_NUM_LEN);
}

2087
static void
2088 2089 2090 2091 2092 2093
bfa_ioc_get_adapter_fw_ver(struct bfa_ioc *ioc, char *fw_ver)
{
	memset(fw_ver, 0, BFA_VERSION_LEN);
	memcpy(fw_ver, ioc->attr->fw_version, BFA_VERSION_LEN);
}

2094
static void
2095 2096 2097 2098 2099 2100 2101 2102 2103 2104 2105 2106 2107 2108
bfa_ioc_get_pci_chip_rev(struct bfa_ioc *ioc, char *chip_rev)
{
	BUG_ON(!(chip_rev));

	memset(chip_rev, 0, BFA_IOC_CHIP_REV_LEN);

	chip_rev[0] = 'R';
	chip_rev[1] = 'e';
	chip_rev[2] = 'v';
	chip_rev[3] = '-';
	chip_rev[4] = ioc->attr->asic_rev;
	chip_rev[5] = '\0';
}

2109
static void
2110 2111 2112 2113 2114 2115 2116
bfa_ioc_get_adapter_optrom_ver(struct bfa_ioc *ioc, char *optrom_ver)
{
	memset(optrom_ver, 0, BFA_VERSION_LEN);
	memcpy(optrom_ver, ioc->attr->optrom_version,
		      BFA_VERSION_LEN);
}

2117
static void
2118 2119 2120 2121 2122 2123
bfa_ioc_get_adapter_manufacturer(struct bfa_ioc *ioc, char *manufacturer)
{
	memset(manufacturer, 0, BFA_ADAPTER_MFG_NAME_LEN);
	memcpy(manufacturer, BFA_MFG_NAME, BFA_ADAPTER_MFG_NAME_LEN);
}

2124
static void
2125 2126 2127 2128 2129 2130 2131 2132 2133 2134 2135 2136 2137 2138 2139 2140
bfa_ioc_get_adapter_model(struct bfa_ioc *ioc, char *model)
{
	struct bfi_ioc_attr *ioc_attr;

	BUG_ON(!(model));
	memset(model, 0, BFA_ADAPTER_MODEL_NAME_LEN);

	ioc_attr = ioc->attr;

	/**
	 * model name
	 */
	snprintf(model, BFA_ADAPTER_MODEL_NAME_LEN, "%s-%u",
		BFA_MFG_NAME, ioc_attr->card_type);
}

2141
static enum bfa_ioc_state
2142 2143
bfa_ioc_get_state(struct bfa_ioc *ioc)
{
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	enum bfa_iocpf_state iocpf_st;
	enum bfa_ioc_state ioc_st = bfa_sm_to_state(ioc_sm_table, ioc->fsm);

	if (ioc_st == BFA_IOC_ENABLING ||
		ioc_st == BFA_IOC_FAIL || ioc_st == BFA_IOC_INITFAIL) {

		iocpf_st = bfa_sm_to_state(iocpf_sm_table, ioc->iocpf.fsm);

		switch (iocpf_st) {
		case BFA_IOCPF_SEMWAIT:
			ioc_st = BFA_IOC_SEMWAIT;
			break;

		case BFA_IOCPF_HWINIT:
			ioc_st = BFA_IOC_HWINIT;
			break;

		case BFA_IOCPF_FWMISMATCH:
			ioc_st = BFA_IOC_FWMISMATCH;
			break;

		case BFA_IOCPF_FAIL:
			ioc_st = BFA_IOC_FAIL;
			break;

		case BFA_IOCPF_INITFAIL:
			ioc_st = BFA_IOC_INITFAIL;
			break;

		default:
			break;
		}
	}
	return ioc_st;
2178 2179 2180
}

void
2181
bfa_nw_ioc_get_attr(struct bfa_ioc *ioc, struct bfa_ioc_attr *ioc_attr)
2182 2183 2184 2185 2186 2187 2188 2189 2190 2191 2192 2193 2194 2195 2196 2197 2198 2199
{
	memset((void *)ioc_attr, 0, sizeof(struct bfa_ioc_attr));

	ioc_attr->state = bfa_ioc_get_state(ioc);
	ioc_attr->port_id = ioc->port_id;

	ioc_attr->ioc_type = bfa_ioc_get_type(ioc);

	bfa_ioc_get_adapter_attr(ioc, &ioc_attr->adapter_attr);

	ioc_attr->pci_attr.device_id = ioc->pcidev.device_id;
	ioc_attr->pci_attr.pcifn = ioc->pcidev.pci_func;
	bfa_ioc_get_pci_chip_rev(ioc, ioc_attr->pci_attr.chip_rev);
}

/**
 * WWN public
 */
2200
static u64
2201 2202 2203 2204 2205 2206
bfa_ioc_get_pwwn(struct bfa_ioc *ioc)
{
	return ioc->attr->pwwn;
}

mac_t
2207
bfa_nw_ioc_get_mac(struct bfa_ioc *ioc)
2208
{
2209
	return ioc->attr->mac;
2210 2211 2212 2213 2214 2215 2216 2217
}

/**
 * Firmware failure detected. Start recovery actions.
 */
static void
bfa_ioc_recover(struct bfa_ioc *ioc)
{
2218 2219 2220
	pr_crit("Heart Beat of IOC has failed\n");
	bfa_ioc_stats(ioc, ioc_hbfails);
	bfa_fsm_send_event(ioc, IOC_E_HBFAIL);
2221 2222 2223 2224 2225 2226 2227
}

static void
bfa_ioc_check_attr_wwns(struct bfa_ioc *ioc)
{
	if (bfa_ioc_get_type(ioc) == BFA_IOC_TYPE_LL)
		return;
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}

/**
 * @dg hal_iocpf_pvt BFA IOC PF private functions
 * @{
 */

static void
bfa_iocpf_enable(struct bfa_ioc *ioc)
{
	bfa_fsm_send_event(&ioc->iocpf, IOCPF_E_ENABLE);
}

static void
bfa_iocpf_disable(struct bfa_ioc *ioc)
{
	bfa_fsm_send_event(&ioc->iocpf, IOCPF_E_DISABLE);
}

static void
bfa_iocpf_fail(struct bfa_ioc *ioc)
{
	bfa_fsm_send_event(&ioc->iocpf, IOCPF_E_FAIL);
}

static void
bfa_iocpf_initfail(struct bfa_ioc *ioc)
{
	bfa_fsm_send_event(&ioc->iocpf, IOCPF_E_INITFAIL);
}

static void
bfa_iocpf_getattrfail(struct bfa_ioc *ioc)
{
	bfa_fsm_send_event(&ioc->iocpf, IOCPF_E_GETATTRFAIL);
}

static void
bfa_iocpf_stop(struct bfa_ioc *ioc)
{
	bfa_fsm_send_event(&ioc->iocpf, IOCPF_E_STOP);
}

void
bfa_nw_iocpf_timeout(void *ioc_arg)
{
	struct bfa_ioc  *ioc = (struct bfa_ioc *) ioc_arg;

	bfa_fsm_send_event(&ioc->iocpf, IOCPF_E_TIMEOUT);
}
2278

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void
bfa_nw_iocpf_sem_timeout(void *ioc_arg)
{
	struct bfa_ioc  *ioc = (struct bfa_ioc *) ioc_arg;

	bfa_ioc_hw_sem_get(ioc);
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}