pm8001_hwi.c 161.5 KB
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/*
 * PMC-Sierra SPC 8001 SAS/SATA based host adapters driver
 *
 * Copyright (c) 2008-2009 USI Co., Ltd.
 * All rights reserved.
 *
 * Redistribution and use in source and binary forms, with or without
 * modification, are permitted provided that the following conditions
 * are met:
 * 1. Redistributions of source code must retain the above copyright
 *    notice, this list of conditions, and the following disclaimer,
 *    without modification.
 * 2. Redistributions in binary form must reproduce at minimum a disclaimer
 *    substantially similar to the "NO WARRANTY" disclaimer below
 *    ("Disclaimer") and any redistribution must be conditioned upon
 *    including a substantially similar Disclaimer requirement for further
 *    binary redistribution.
 * 3. Neither the names of the above-listed copyright holders nor the names
 *    of any contributors may be used to endorse or promote products derived
 *    from this software without specific prior written permission.
 *
 * Alternatively, this software may be distributed under the terms of the
 * GNU General Public License ("GPL") version 2 as published by the Free
 * Software Foundation.
 *
 * NO WARRANTY
 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR
 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
 * HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
 * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
 * POSSIBILITY OF SUCH DAMAGES.
 *
 */
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 #include <linux/slab.h>
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 #include "pm8001_sas.h"
 #include "pm8001_hwi.h"
 #include "pm8001_chips.h"
 #include "pm8001_ctl.h"

/**
 * read_main_config_table - read the configure table and save it.
 * @pm8001_ha: our hba card information
 */
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static void read_main_config_table(struct pm8001_hba_info *pm8001_ha)
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{
	void __iomem *address = pm8001_ha->main_cfg_tbl_addr;
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	pm8001_ha->main_cfg_tbl.pm8001_tbl.signature	=
				pm8001_mr32(address, 0x00);
	pm8001_ha->main_cfg_tbl.pm8001_tbl.interface_rev =
				pm8001_mr32(address, 0x04);
	pm8001_ha->main_cfg_tbl.pm8001_tbl.firmware_rev	=
				pm8001_mr32(address, 0x08);
	pm8001_ha->main_cfg_tbl.pm8001_tbl.max_out_io	=
				pm8001_mr32(address, 0x0C);
	pm8001_ha->main_cfg_tbl.pm8001_tbl.max_sgl	=
				pm8001_mr32(address, 0x10);
	pm8001_ha->main_cfg_tbl.pm8001_tbl.ctrl_cap_flag =
				pm8001_mr32(address, 0x14);
	pm8001_ha->main_cfg_tbl.pm8001_tbl.gst_offset	=
				pm8001_mr32(address, 0x18);
	pm8001_ha->main_cfg_tbl.pm8001_tbl.inbound_queue_offset =
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		pm8001_mr32(address, MAIN_IBQ_OFFSET);
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	pm8001_ha->main_cfg_tbl.pm8001_tbl.outbound_queue_offset =
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		pm8001_mr32(address, MAIN_OBQ_OFFSET);
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	pm8001_ha->main_cfg_tbl.pm8001_tbl.hda_mode_flag	=
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		pm8001_mr32(address, MAIN_HDA_FLAGS_OFFSET);

	/* read analog Setting offset from the configuration table */
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	pm8001_ha->main_cfg_tbl.pm8001_tbl.anolog_setup_table_offset =
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		pm8001_mr32(address, MAIN_ANALOG_SETUP_OFFSET);

	/* read Error Dump Offset and Length */
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	pm8001_ha->main_cfg_tbl.pm8001_tbl.fatal_err_dump_offset0 =
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		pm8001_mr32(address, MAIN_FATAL_ERROR_RDUMP0_OFFSET);
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	pm8001_ha->main_cfg_tbl.pm8001_tbl.fatal_err_dump_length0 =
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		pm8001_mr32(address, MAIN_FATAL_ERROR_RDUMP0_LENGTH);
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	pm8001_ha->main_cfg_tbl.pm8001_tbl.fatal_err_dump_offset1 =
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		pm8001_mr32(address, MAIN_FATAL_ERROR_RDUMP1_OFFSET);
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	pm8001_ha->main_cfg_tbl.pm8001_tbl.fatal_err_dump_length1 =
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		pm8001_mr32(address, MAIN_FATAL_ERROR_RDUMP1_LENGTH);
}

/**
 * read_general_status_table - read the general status table and save it.
 * @pm8001_ha: our hba card information
 */
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static void read_general_status_table(struct pm8001_hba_info *pm8001_ha)
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{
	void __iomem *address = pm8001_ha->general_stat_tbl_addr;
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	pm8001_ha->gs_tbl.pm8001_tbl.gst_len_mpistate	=
				pm8001_mr32(address, 0x00);
	pm8001_ha->gs_tbl.pm8001_tbl.iq_freeze_state0	=
				pm8001_mr32(address, 0x04);
	pm8001_ha->gs_tbl.pm8001_tbl.iq_freeze_state1	=
				pm8001_mr32(address, 0x08);
	pm8001_ha->gs_tbl.pm8001_tbl.msgu_tcnt		=
				pm8001_mr32(address, 0x0C);
	pm8001_ha->gs_tbl.pm8001_tbl.iop_tcnt		=
				pm8001_mr32(address, 0x10);
	pm8001_ha->gs_tbl.pm8001_tbl.rsvd		=
				pm8001_mr32(address, 0x14);
	pm8001_ha->gs_tbl.pm8001_tbl.phy_state[0]	=
				pm8001_mr32(address, 0x18);
	pm8001_ha->gs_tbl.pm8001_tbl.phy_state[1]	=
				pm8001_mr32(address, 0x1C);
	pm8001_ha->gs_tbl.pm8001_tbl.phy_state[2]	=
				pm8001_mr32(address, 0x20);
	pm8001_ha->gs_tbl.pm8001_tbl.phy_state[3]	=
				pm8001_mr32(address, 0x24);
	pm8001_ha->gs_tbl.pm8001_tbl.phy_state[4]	=
				pm8001_mr32(address, 0x28);
	pm8001_ha->gs_tbl.pm8001_tbl.phy_state[5]	=
				pm8001_mr32(address, 0x2C);
	pm8001_ha->gs_tbl.pm8001_tbl.phy_state[6]	=
				pm8001_mr32(address, 0x30);
	pm8001_ha->gs_tbl.pm8001_tbl.phy_state[7]	=
				pm8001_mr32(address, 0x34);
	pm8001_ha->gs_tbl.pm8001_tbl.gpio_input_val	=
				pm8001_mr32(address, 0x38);
	pm8001_ha->gs_tbl.pm8001_tbl.rsvd1[0]		=
				pm8001_mr32(address, 0x3C);
	pm8001_ha->gs_tbl.pm8001_tbl.rsvd1[1]		=
				pm8001_mr32(address, 0x40);
	pm8001_ha->gs_tbl.pm8001_tbl.recover_err_info[0]	=
				pm8001_mr32(address, 0x44);
	pm8001_ha->gs_tbl.pm8001_tbl.recover_err_info[1]	=
				pm8001_mr32(address, 0x48);
	pm8001_ha->gs_tbl.pm8001_tbl.recover_err_info[2]	=
				pm8001_mr32(address, 0x4C);
	pm8001_ha->gs_tbl.pm8001_tbl.recover_err_info[3]	=
				pm8001_mr32(address, 0x50);
	pm8001_ha->gs_tbl.pm8001_tbl.recover_err_info[4]	=
				pm8001_mr32(address, 0x54);
	pm8001_ha->gs_tbl.pm8001_tbl.recover_err_info[5]	=
				pm8001_mr32(address, 0x58);
	pm8001_ha->gs_tbl.pm8001_tbl.recover_err_info[6]	=
				pm8001_mr32(address, 0x5C);
	pm8001_ha->gs_tbl.pm8001_tbl.recover_err_info[7]	=
				pm8001_mr32(address, 0x60);
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}

/**
 * read_inbnd_queue_table - read the inbound queue table and save it.
 * @pm8001_ha: our hba card information
 */
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static void read_inbnd_queue_table(struct pm8001_hba_info *pm8001_ha)
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{
	int i;
	void __iomem *address = pm8001_ha->inbnd_q_tbl_addr;
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	for (i = 0; i < PM8001_MAX_INB_NUM; i++) {
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		u32 offset = i * 0x20;
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		pm8001_ha->inbnd_q_tbl[i].pi_pci_bar =
		      get_pci_bar_index(pm8001_mr32(address, (offset + 0x14)));
		pm8001_ha->inbnd_q_tbl[i].pi_offset =
			pm8001_mr32(address, (offset + 0x18));
	}
}

/**
 * read_outbnd_queue_table - read the outbound queue table and save it.
 * @pm8001_ha: our hba card information
 */
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static void read_outbnd_queue_table(struct pm8001_hba_info *pm8001_ha)
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{
	int i;
	void __iomem *address = pm8001_ha->outbnd_q_tbl_addr;
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	for (i = 0; i < PM8001_MAX_OUTB_NUM; i++) {
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		u32 offset = i * 0x24;
		pm8001_ha->outbnd_q_tbl[i].ci_pci_bar =
		      get_pci_bar_index(pm8001_mr32(address, (offset + 0x14)));
		pm8001_ha->outbnd_q_tbl[i].ci_offset =
			pm8001_mr32(address, (offset + 0x18));
	}
}

/**
 * init_default_table_values - init the default table.
 * @pm8001_ha: our hba card information
 */
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static void init_default_table_values(struct pm8001_hba_info *pm8001_ha)
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{
	int i;
	u32 offsetib, offsetob;
	void __iomem *addressib = pm8001_ha->inbnd_q_tbl_addr;
	void __iomem *addressob = pm8001_ha->outbnd_q_tbl_addr;
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	u32 ib_offset = pm8001_ha->ib_offset;
	u32 ob_offset = pm8001_ha->ob_offset;
	u32 ci_offset = pm8001_ha->ci_offset;
	u32 pi_offset = pm8001_ha->pi_offset;
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	pm8001_ha->main_cfg_tbl.pm8001_tbl.inbound_q_nppd_hppd		= 0;
	pm8001_ha->main_cfg_tbl.pm8001_tbl.outbound_hw_event_pid0_3	= 0;
	pm8001_ha->main_cfg_tbl.pm8001_tbl.outbound_hw_event_pid4_7	= 0;
	pm8001_ha->main_cfg_tbl.pm8001_tbl.outbound_ncq_event_pid0_3	= 0;
	pm8001_ha->main_cfg_tbl.pm8001_tbl.outbound_ncq_event_pid4_7	= 0;
	pm8001_ha->main_cfg_tbl.pm8001_tbl.outbound_tgt_ITNexus_event_pid0_3 =
									 0;
	pm8001_ha->main_cfg_tbl.pm8001_tbl.outbound_tgt_ITNexus_event_pid4_7 =
									 0;
	pm8001_ha->main_cfg_tbl.pm8001_tbl.outbound_tgt_ssp_event_pid0_3 = 0;
	pm8001_ha->main_cfg_tbl.pm8001_tbl.outbound_tgt_ssp_event_pid4_7 = 0;
	pm8001_ha->main_cfg_tbl.pm8001_tbl.outbound_tgt_smp_event_pid0_3 = 0;
	pm8001_ha->main_cfg_tbl.pm8001_tbl.outbound_tgt_smp_event_pid4_7 = 0;

	pm8001_ha->main_cfg_tbl.pm8001_tbl.upper_event_log_addr		=
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		pm8001_ha->memoryMap.region[AAP1].phys_addr_hi;
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	pm8001_ha->main_cfg_tbl.pm8001_tbl.lower_event_log_addr		=
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		pm8001_ha->memoryMap.region[AAP1].phys_addr_lo;
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	pm8001_ha->main_cfg_tbl.pm8001_tbl.event_log_size		=
		PM8001_EVENT_LOG_SIZE;
	pm8001_ha->main_cfg_tbl.pm8001_tbl.event_log_option		= 0x01;
	pm8001_ha->main_cfg_tbl.pm8001_tbl.upper_iop_event_log_addr	=
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		pm8001_ha->memoryMap.region[IOP].phys_addr_hi;
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	pm8001_ha->main_cfg_tbl.pm8001_tbl.lower_iop_event_log_addr	=
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		pm8001_ha->memoryMap.region[IOP].phys_addr_lo;
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	pm8001_ha->main_cfg_tbl.pm8001_tbl.iop_event_log_size		=
		PM8001_EVENT_LOG_SIZE;
	pm8001_ha->main_cfg_tbl.pm8001_tbl.iop_event_log_option		= 0x01;
	pm8001_ha->main_cfg_tbl.pm8001_tbl.fatal_err_interrupt		= 0x01;
	for (i = 0; i < PM8001_MAX_INB_NUM; i++) {
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		pm8001_ha->inbnd_q_tbl[i].element_pri_size_cnt	=
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			PM8001_MPI_QUEUE | (pm8001_ha->iomb_size << 16) | (0x00<<30);
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		pm8001_ha->inbnd_q_tbl[i].upper_base_addr	=
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			pm8001_ha->memoryMap.region[ib_offset + i].phys_addr_hi;
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		pm8001_ha->inbnd_q_tbl[i].lower_base_addr	=
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		pm8001_ha->memoryMap.region[ib_offset + i].phys_addr_lo;
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		pm8001_ha->inbnd_q_tbl[i].base_virt		=
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		  (u8 *)pm8001_ha->memoryMap.region[ib_offset + i].virt_ptr;
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		pm8001_ha->inbnd_q_tbl[i].total_length		=
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			pm8001_ha->memoryMap.region[ib_offset + i].total_len;
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		pm8001_ha->inbnd_q_tbl[i].ci_upper_base_addr	=
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			pm8001_ha->memoryMap.region[ci_offset + i].phys_addr_hi;
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		pm8001_ha->inbnd_q_tbl[i].ci_lower_base_addr	=
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			pm8001_ha->memoryMap.region[ci_offset + i].phys_addr_lo;
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		pm8001_ha->inbnd_q_tbl[i].ci_virt		=
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			pm8001_ha->memoryMap.region[ci_offset + i].virt_ptr;
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		offsetib = i * 0x20;
		pm8001_ha->inbnd_q_tbl[i].pi_pci_bar		=
			get_pci_bar_index(pm8001_mr32(addressib,
				(offsetib + 0x14)));
		pm8001_ha->inbnd_q_tbl[i].pi_offset		=
			pm8001_mr32(addressib, (offsetib + 0x18));
		pm8001_ha->inbnd_q_tbl[i].producer_idx		= 0;
		pm8001_ha->inbnd_q_tbl[i].consumer_index	= 0;
	}
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	for (i = 0; i < PM8001_MAX_OUTB_NUM; i++) {
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		pm8001_ha->outbnd_q_tbl[i].element_size_cnt	=
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			PM8001_MPI_QUEUE | (pm8001_ha->iomb_size << 16) | (0x01<<30);
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		pm8001_ha->outbnd_q_tbl[i].upper_base_addr	=
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			pm8001_ha->memoryMap.region[ob_offset + i].phys_addr_hi;
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		pm8001_ha->outbnd_q_tbl[i].lower_base_addr	=
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			pm8001_ha->memoryMap.region[ob_offset + i].phys_addr_lo;
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		pm8001_ha->outbnd_q_tbl[i].base_virt		=
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		  (u8 *)pm8001_ha->memoryMap.region[ob_offset + i].virt_ptr;
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		pm8001_ha->outbnd_q_tbl[i].total_length		=
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			pm8001_ha->memoryMap.region[ob_offset + i].total_len;
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		pm8001_ha->outbnd_q_tbl[i].pi_upper_base_addr	=
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			pm8001_ha->memoryMap.region[pi_offset + i].phys_addr_hi;
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		pm8001_ha->outbnd_q_tbl[i].pi_lower_base_addr	=
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			pm8001_ha->memoryMap.region[pi_offset + i].phys_addr_lo;
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		pm8001_ha->outbnd_q_tbl[i].interrup_vec_cnt_delay	=
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			0 | (10 << 16) | (i << 24);
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		pm8001_ha->outbnd_q_tbl[i].pi_virt		=
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			pm8001_ha->memoryMap.region[pi_offset + i].virt_ptr;
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		offsetob = i * 0x24;
		pm8001_ha->outbnd_q_tbl[i].ci_pci_bar		=
			get_pci_bar_index(pm8001_mr32(addressob,
			offsetob + 0x14));
		pm8001_ha->outbnd_q_tbl[i].ci_offset		=
			pm8001_mr32(addressob, (offsetob + 0x18));
		pm8001_ha->outbnd_q_tbl[i].consumer_idx		= 0;
		pm8001_ha->outbnd_q_tbl[i].producer_index	= 0;
	}
}

/**
 * update_main_config_table - update the main default table to the HBA.
 * @pm8001_ha: our hba card information
 */
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static void update_main_config_table(struct pm8001_hba_info *pm8001_ha)
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{
	void __iomem *address = pm8001_ha->main_cfg_tbl_addr;
	pm8001_mw32(address, 0x24,
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		pm8001_ha->main_cfg_tbl.pm8001_tbl.inbound_q_nppd_hppd);
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	pm8001_mw32(address, 0x28,
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		pm8001_ha->main_cfg_tbl.pm8001_tbl.outbound_hw_event_pid0_3);
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	pm8001_mw32(address, 0x2C,
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		pm8001_ha->main_cfg_tbl.pm8001_tbl.outbound_hw_event_pid4_7);
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	pm8001_mw32(address, 0x30,
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		pm8001_ha->main_cfg_tbl.pm8001_tbl.outbound_ncq_event_pid0_3);
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	pm8001_mw32(address, 0x34,
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		pm8001_ha->main_cfg_tbl.pm8001_tbl.outbound_ncq_event_pid4_7);
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	pm8001_mw32(address, 0x38,
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		pm8001_ha->main_cfg_tbl.pm8001_tbl.
					outbound_tgt_ITNexus_event_pid0_3);
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	pm8001_mw32(address, 0x3C,
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		pm8001_ha->main_cfg_tbl.pm8001_tbl.
					outbound_tgt_ITNexus_event_pid4_7);
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	pm8001_mw32(address, 0x40,
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		pm8001_ha->main_cfg_tbl.pm8001_tbl.
					outbound_tgt_ssp_event_pid0_3);
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	pm8001_mw32(address, 0x44,
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		pm8001_ha->main_cfg_tbl.pm8001_tbl.
					outbound_tgt_ssp_event_pid4_7);
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	pm8001_mw32(address, 0x48,
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		pm8001_ha->main_cfg_tbl.pm8001_tbl.
					outbound_tgt_smp_event_pid0_3);
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	pm8001_mw32(address, 0x4C,
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		pm8001_ha->main_cfg_tbl.pm8001_tbl.
					outbound_tgt_smp_event_pid4_7);
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	pm8001_mw32(address, 0x50,
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		pm8001_ha->main_cfg_tbl.pm8001_tbl.upper_event_log_addr);
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	pm8001_mw32(address, 0x54,
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		pm8001_ha->main_cfg_tbl.pm8001_tbl.lower_event_log_addr);
	pm8001_mw32(address, 0x58,
		pm8001_ha->main_cfg_tbl.pm8001_tbl.event_log_size);
	pm8001_mw32(address, 0x5C,
		pm8001_ha->main_cfg_tbl.pm8001_tbl.event_log_option);
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	pm8001_mw32(address, 0x60,
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		pm8001_ha->main_cfg_tbl.pm8001_tbl.upper_iop_event_log_addr);
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	pm8001_mw32(address, 0x64,
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		pm8001_ha->main_cfg_tbl.pm8001_tbl.lower_iop_event_log_addr);
	pm8001_mw32(address, 0x68,
		pm8001_ha->main_cfg_tbl.pm8001_tbl.iop_event_log_size);
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	pm8001_mw32(address, 0x6C,
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		pm8001_ha->main_cfg_tbl.pm8001_tbl.iop_event_log_option);
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	pm8001_mw32(address, 0x70,
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		pm8001_ha->main_cfg_tbl.pm8001_tbl.fatal_err_interrupt);
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}

/**
 * update_inbnd_queue_table - update the inbound queue table to the HBA.
 * @pm8001_ha: our hba card information
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 * @number: entry in the queue
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 */
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static void update_inbnd_queue_table(struct pm8001_hba_info *pm8001_ha,
				     int number)
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{
	void __iomem *address = pm8001_ha->inbnd_q_tbl_addr;
	u16 offset = number * 0x20;
	pm8001_mw32(address, offset + 0x00,
		pm8001_ha->inbnd_q_tbl[number].element_pri_size_cnt);
	pm8001_mw32(address, offset + 0x04,
		pm8001_ha->inbnd_q_tbl[number].upper_base_addr);
	pm8001_mw32(address, offset + 0x08,
		pm8001_ha->inbnd_q_tbl[number].lower_base_addr);
	pm8001_mw32(address, offset + 0x0C,
		pm8001_ha->inbnd_q_tbl[number].ci_upper_base_addr);
	pm8001_mw32(address, offset + 0x10,
		pm8001_ha->inbnd_q_tbl[number].ci_lower_base_addr);
}

/**
 * update_outbnd_queue_table - update the outbound queue table to the HBA.
 * @pm8001_ha: our hba card information
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 * @number: entry in the queue
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 */
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static void update_outbnd_queue_table(struct pm8001_hba_info *pm8001_ha,
				      int number)
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{
	void __iomem *address = pm8001_ha->outbnd_q_tbl_addr;
	u16 offset = number * 0x24;
	pm8001_mw32(address, offset + 0x00,
		pm8001_ha->outbnd_q_tbl[number].element_size_cnt);
	pm8001_mw32(address, offset + 0x04,
		pm8001_ha->outbnd_q_tbl[number].upper_base_addr);
	pm8001_mw32(address, offset + 0x08,
		pm8001_ha->outbnd_q_tbl[number].lower_base_addr);
	pm8001_mw32(address, offset + 0x0C,
		pm8001_ha->outbnd_q_tbl[number].pi_upper_base_addr);
	pm8001_mw32(address, offset + 0x10,
		pm8001_ha->outbnd_q_tbl[number].pi_lower_base_addr);
	pm8001_mw32(address, offset + 0x1C,
		pm8001_ha->outbnd_q_tbl[number].interrup_vec_cnt_delay);
}

/**
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 * pm8001_bar4_shift - function is called to shift BAR base address
 * @pm8001_ha : our hba card infomation
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 * @shiftValue : shifting value in memory bar.
 */
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int pm8001_bar4_shift(struct pm8001_hba_info *pm8001_ha, u32 shiftValue)
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{
	u32 regVal;
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	unsigned long start;
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	/* program the inbound AXI translation Lower Address */
	pm8001_cw32(pm8001_ha, 1, SPC_IBW_AXI_TRANSLATION_LOW, shiftValue);

	/* confirm the setting is written */
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	start = jiffies + HZ; /* 1 sec */
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	do {
		regVal = pm8001_cr32(pm8001_ha, 1, SPC_IBW_AXI_TRANSLATION_LOW);
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	} while ((regVal != shiftValue) && time_before(jiffies, start));
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	if (regVal != shiftValue) {
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		pm8001_dbg(pm8001_ha, INIT,
			   "TIMEOUT:SPC_IBW_AXI_TRANSLATION_LOW = 0x%x\n",
			   regVal);
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		return -1;
	}
	return 0;
}

/**
 * mpi_set_phys_g3_with_ssc
 * @pm8001_ha: our hba card information
 * @SSCbit: set SSCbit to 0 to disable all phys ssc; 1 to enable all phys ssc.
 */
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static void mpi_set_phys_g3_with_ssc(struct pm8001_hba_info *pm8001_ha,
				     u32 SSCbit)
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{
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	u32 offset, i;
420
	unsigned long flags;
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#define SAS2_SETTINGS_LOCAL_PHY_0_3_SHIFT_ADDR 0x00030000
#define SAS2_SETTINGS_LOCAL_PHY_4_7_SHIFT_ADDR 0x00040000
#define SAS2_SETTINGS_LOCAL_PHY_0_3_OFFSET 0x1074
#define SAS2_SETTINGS_LOCAL_PHY_4_7_OFFSET 0x1074
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#define PHY_G3_WITHOUT_SSC_BIT_SHIFT 12
#define PHY_G3_WITH_SSC_BIT_SHIFT 13
#define SNW3_PHY_CAPABILITIES_PARITY 31
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   /*
    * Using shifted destination address 0x3_0000:0x1074 + 0x4000*N (N=0:3)
    * Using shifted destination address 0x4_0000:0x1074 + 0x4000*(N-4) (N=4:7)
    */
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	spin_lock_irqsave(&pm8001_ha->lock, flags);
	if (-1 == pm8001_bar4_shift(pm8001_ha,
				SAS2_SETTINGS_LOCAL_PHY_0_3_SHIFT_ADDR)) {
		spin_unlock_irqrestore(&pm8001_ha->lock, flags);
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		return;
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	}
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	for (i = 0; i < 4; i++) {
		offset = SAS2_SETTINGS_LOCAL_PHY_0_3_OFFSET + 0x4000 * i;
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		pm8001_cw32(pm8001_ha, 2, offset, 0x80001501);
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	}
	/* shift membase 3 for SAS2_SETTINGS_LOCAL_PHY 4 - 7 */
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	if (-1 == pm8001_bar4_shift(pm8001_ha,
				SAS2_SETTINGS_LOCAL_PHY_4_7_SHIFT_ADDR)) {
		spin_unlock_irqrestore(&pm8001_ha->lock, flags);
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		return;
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	}
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	for (i = 4; i < 8; i++) {
		offset = SAS2_SETTINGS_LOCAL_PHY_4_7_OFFSET + 0x4000 * (i-4);
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		pm8001_cw32(pm8001_ha, 2, offset, 0x80001501);
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	}
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	/*************************************************************
	Change the SSC upspreading value to 0x0 so that upspreading is disabled.
	Device MABC SMOD0 Controls
	Address: (via MEMBASE-III):
	Using shifted destination address 0x0_0000: with Offset 0xD8

	31:28 R/W Reserved Do not change
	27:24 R/W SAS_SMOD_SPRDUP 0000
	23:20 R/W SAS_SMOD_SPRDDN 0000
	19:0  R/W  Reserved Do not change
	Upon power-up this register will read as 0x8990c016,
	and I would like you to change the SAS_SMOD_SPRDUP bits to 0b0000
	so that the written value will be 0x8090c016.
	This will ensure only down-spreading SSC is enabled on the SPC.
	*************************************************************/
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	pm8001_cr32(pm8001_ha, 2, 0xd8);
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	pm8001_cw32(pm8001_ha, 2, 0xd8, 0x8000C016);
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	/*set the shifted destination address to 0x0 to avoid error operation */
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	pm8001_bar4_shift(pm8001_ha, 0x0);
	spin_unlock_irqrestore(&pm8001_ha->lock, flags);
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	return;
}

/**
 * mpi_set_open_retry_interval_reg
 * @pm8001_ha: our hba card information
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 * @interval: interval time for each OPEN_REJECT (RETRY). The units are in 1us.
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 */
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static void mpi_set_open_retry_interval_reg(struct pm8001_hba_info *pm8001_ha,
					    u32 interval)
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{
	u32 offset;
	u32 value;
	u32 i;
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	unsigned long flags;
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#define OPEN_RETRY_INTERVAL_PHY_0_3_SHIFT_ADDR 0x00030000
#define OPEN_RETRY_INTERVAL_PHY_4_7_SHIFT_ADDR 0x00040000
#define OPEN_RETRY_INTERVAL_PHY_0_3_OFFSET 0x30B4
#define OPEN_RETRY_INTERVAL_PHY_4_7_OFFSET 0x30B4
#define OPEN_RETRY_INTERVAL_REG_MASK 0x0000FFFF

	value = interval & OPEN_RETRY_INTERVAL_REG_MASK;
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	spin_lock_irqsave(&pm8001_ha->lock, flags);
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	/* shift bar and set the OPEN_REJECT(RETRY) interval time of PHY 0 -3.*/
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	if (-1 == pm8001_bar4_shift(pm8001_ha,
			     OPEN_RETRY_INTERVAL_PHY_0_3_SHIFT_ADDR)) {
		spin_unlock_irqrestore(&pm8001_ha->lock, flags);
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		return;
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	}
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	for (i = 0; i < 4; i++) {
		offset = OPEN_RETRY_INTERVAL_PHY_0_3_OFFSET + 0x4000 * i;
		pm8001_cw32(pm8001_ha, 2, offset, value);
	}

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	if (-1 == pm8001_bar4_shift(pm8001_ha,
			     OPEN_RETRY_INTERVAL_PHY_4_7_SHIFT_ADDR)) {
		spin_unlock_irqrestore(&pm8001_ha->lock, flags);
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		return;
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	}
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	for (i = 4; i < 8; i++) {
		offset = OPEN_RETRY_INTERVAL_PHY_4_7_OFFSET + 0x4000 * (i-4);
		pm8001_cw32(pm8001_ha, 2, offset, value);
	}
	/*set the shifted destination address to 0x0 to avoid error operation */
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	pm8001_bar4_shift(pm8001_ha, 0x0);
	spin_unlock_irqrestore(&pm8001_ha->lock, flags);
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	return;
}

/**
 * mpi_init_check - check firmware initialization status.
 * @pm8001_ha: our hba card information
 */
static int mpi_init_check(struct pm8001_hba_info *pm8001_ha)
{
	u32 max_wait_count;
	u32 value;
	u32 gst_len_mpistate;
	/* Write bit0=1 to Inbound DoorBell Register to tell the SPC FW the
	table is updated */
	pm8001_cw32(pm8001_ha, 0, MSGU_IBDB_SET, SPC_MSGU_CFG_TABLE_UPDATE);
	/* wait until Inbound DoorBell Clear Register toggled */
	max_wait_count = 1 * 1000 * 1000;/* 1 sec */
	do {
		udelay(1);
		value = pm8001_cr32(pm8001_ha, 0, MSGU_IBDB_SET);
		value &= SPC_MSGU_CFG_TABLE_UPDATE;
	} while ((value != 0) && (--max_wait_count));

	if (!max_wait_count)
		return -1;
	/* check the MPI-State for initialization */
	gst_len_mpistate =
		pm8001_mr32(pm8001_ha->general_stat_tbl_addr,
		GST_GSTLEN_MPIS_OFFSET);
	if (GST_MPI_STATE_INIT != (gst_len_mpistate & GST_MPI_STATE_MASK))
		return -1;
	/* check MPI Initialization error */
	gst_len_mpistate = gst_len_mpistate >> 16;
	if (0x0000 != gst_len_mpistate)
		return -1;
	return 0;
}

/**
 * check_fw_ready - The LLDD check if the FW is ready, if not, return error.
 * @pm8001_ha: our hba card information
 */
static int check_fw_ready(struct pm8001_hba_info *pm8001_ha)
{
	u32 value, value1;
	u32 max_wait_count;
	/* check error state */
	value = pm8001_cr32(pm8001_ha, 0, MSGU_SCRATCH_PAD_1);
	value1 = pm8001_cr32(pm8001_ha, 0, MSGU_SCRATCH_PAD_2);
	/* check AAP error */
	if (SCRATCH_PAD1_ERR == (value & SCRATCH_PAD_STATE_MASK)) {
		/* error state */
		value = pm8001_cr32(pm8001_ha, 0, MSGU_SCRATCH_PAD_0);
		return -1;
	}

	/* check IOP error */
	if (SCRATCH_PAD2_ERR == (value1 & SCRATCH_PAD_STATE_MASK)) {
		/* error state */
		value1 = pm8001_cr32(pm8001_ha, 0, MSGU_SCRATCH_PAD_3);
		return -1;
	}

	/* bit 4-31 of scratch pad1 should be zeros if it is not
	in error state*/
	if (value & SCRATCH_PAD1_STATE_MASK) {
		/* error case */
		pm8001_cr32(pm8001_ha, 0, MSGU_SCRATCH_PAD_0);
		return -1;
	}

	/* bit 2, 4-31 of scratch pad2 should be zeros if it is not
	in error state */
	if (value1 & SCRATCH_PAD2_STATE_MASK) {
		/* error case */
		return -1;
	}

	max_wait_count = 1 * 1000 * 1000;/* 1 sec timeout */

	/* wait until scratch pad 1 and 2 registers in ready state  */
	do {
		udelay(1);
		value = pm8001_cr32(pm8001_ha, 0, MSGU_SCRATCH_PAD_1)
			& SCRATCH_PAD1_RDY;
		value1 = pm8001_cr32(pm8001_ha, 0, MSGU_SCRATCH_PAD_2)
			& SCRATCH_PAD2_RDY;
		if ((--max_wait_count) == 0)
			return -1;
	} while ((value != SCRATCH_PAD1_RDY) || (value1 != SCRATCH_PAD2_RDY));
	return 0;
}

static void init_pci_device_addresses(struct pm8001_hba_info *pm8001_ha)
{
	void __iomem *base_addr;
	u32	value;
	u32	offset;
	u32	pcibar;
	u32	pcilogic;

	value = pm8001_cr32(pm8001_ha, 0, 0x44);
	offset = value & 0x03FFFFFF;
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	pm8001_dbg(pm8001_ha, INIT, "Scratchpad 0 Offset: %x\n", offset);
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	pcilogic = (value & 0xFC000000) >> 26;
	pcibar = get_pci_bar_index(pcilogic);
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	pm8001_dbg(pm8001_ha, INIT, "Scratchpad 0 PCI BAR: %d\n", pcibar);
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	pm8001_ha->main_cfg_tbl_addr = base_addr =
		pm8001_ha->io_mem[pcibar].memvirtaddr + offset;
	pm8001_ha->general_stat_tbl_addr =
		base_addr + pm8001_cr32(pm8001_ha, pcibar, offset + 0x18);
	pm8001_ha->inbnd_q_tbl_addr =
		base_addr + pm8001_cr32(pm8001_ha, pcibar, offset + 0x1C);
	pm8001_ha->outbnd_q_tbl_addr =
		base_addr + pm8001_cr32(pm8001_ha, pcibar, offset + 0x20);
}

/**
 * pm8001_chip_init - the main init function that initialize whole PM8001 chip.
 * @pm8001_ha: our hba card information
 */
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static int pm8001_chip_init(struct pm8001_hba_info *pm8001_ha)
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{
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	u8 i = 0;
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	u16 deviceid;
	pci_read_config_word(pm8001_ha->pdev, PCI_DEVICE_ID, &deviceid);
	/* 8081 controllers need BAR shift to access MPI space
	* as this is shared with BIOS data */
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	if (deviceid == 0x8081 || deviceid == 0x0042) {
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		if (-1 == pm8001_bar4_shift(pm8001_ha, GSM_SM_BASE)) {
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			pm8001_dbg(pm8001_ha, FAIL,
				   "Shift Bar4 to 0x%x failed\n",
				   GSM_SM_BASE);
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			return -1;
		}
	}
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	/* check the firmware status */
	if (-1 == check_fw_ready(pm8001_ha)) {
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		pm8001_dbg(pm8001_ha, FAIL, "Firmware is not ready!\n");
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		return -EBUSY;
	}

	/* Initialize pci space address eg: mpi offset */
	init_pci_device_addresses(pm8001_ha);
	init_default_table_values(pm8001_ha);
	read_main_config_table(pm8001_ha);
	read_general_status_table(pm8001_ha);
	read_inbnd_queue_table(pm8001_ha);
	read_outbnd_queue_table(pm8001_ha);
	/* update main config table ,inbound table and outbound table */
	update_main_config_table(pm8001_ha);
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	for (i = 0; i < PM8001_MAX_INB_NUM; i++)
		update_inbnd_queue_table(pm8001_ha, i);
	for (i = 0; i < PM8001_MAX_OUTB_NUM; i++)
		update_outbnd_queue_table(pm8001_ha, i);
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	/* 8081 controller donot require these operations */
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	if (deviceid != 0x8081 && deviceid != 0x0042) {
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		mpi_set_phys_g3_with_ssc(pm8001_ha, 0);
		/* 7->130ms, 34->500ms, 119->1.5s */
		mpi_set_open_retry_interval_reg(pm8001_ha, 119);
	}
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	/* notify firmware update finished and check initialization status */
	if (0 == mpi_init_check(pm8001_ha)) {
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		pm8001_dbg(pm8001_ha, INIT, "MPI initialize successful!\n");
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	} else
		return -EBUSY;
	/*This register is a 16-bit timer with a resolution of 1us. This is the
	timer used for interrupt delay/coalescing in the PCIe Application Layer.
	Zero is not a valid value. A value of 1 in the register will cause the
	interrupts to be normal. A value greater than 1 will cause coalescing
	delays.*/
	pm8001_cw32(pm8001_ha, 1, 0x0033c0, 0x1);
	pm8001_cw32(pm8001_ha, 1, 0x0033c4, 0x0);
	return 0;
}

static int mpi_uninit_check(struct pm8001_hba_info *pm8001_ha)
{
	u32 max_wait_count;
	u32 value;
	u32 gst_len_mpistate;
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	u16 deviceid;
	pci_read_config_word(pm8001_ha->pdev, PCI_DEVICE_ID, &deviceid);
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	if (deviceid == 0x8081 || deviceid == 0x0042) {
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		if (-1 == pm8001_bar4_shift(pm8001_ha, GSM_SM_BASE)) {
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			pm8001_dbg(pm8001_ha, FAIL,
				   "Shift Bar4 to 0x%x failed\n",
				   GSM_SM_BASE);
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			return -1;
		}
	}
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	init_pci_device_addresses(pm8001_ha);
	/* Write bit1=1 to Inbound DoorBell Register to tell the SPC FW the
	table is stop */
	pm8001_cw32(pm8001_ha, 0, MSGU_IBDB_SET, SPC_MSGU_CFG_TABLE_RESET);

	/* wait until Inbound DoorBell Clear Register toggled */
	max_wait_count = 1 * 1000 * 1000;/* 1 sec */
	do {
		udelay(1);
		value = pm8001_cr32(pm8001_ha, 0, MSGU_IBDB_SET);
		value &= SPC_MSGU_CFG_TABLE_RESET;
	} while ((value != 0) && (--max_wait_count));

	if (!max_wait_count) {
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		pm8001_dbg(pm8001_ha, FAIL, "TIMEOUT:IBDB value/=0x%x\n",
			   value);
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		return -1;
	}

	/* check the MPI-State for termination in progress */
	/* wait until Inbound DoorBell Clear Register toggled */
	max_wait_count = 1 * 1000 * 1000;  /* 1 sec */
	do {
		udelay(1);
		gst_len_mpistate =
			pm8001_mr32(pm8001_ha->general_stat_tbl_addr,
			GST_GSTLEN_MPIS_OFFSET);
		if (GST_MPI_STATE_UNINIT ==
			(gst_len_mpistate & GST_MPI_STATE_MASK))
			break;
	} while (--max_wait_count);
	if (!max_wait_count) {
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		pm8001_dbg(pm8001_ha, FAIL, " TIME OUT MPI State = 0x%x\n",
			   gst_len_mpistate & GST_MPI_STATE_MASK);
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		return -1;
	}
	return 0;
}

/**
 * soft_reset_ready_check - Function to check FW is ready for soft reset.
 * @pm8001_ha: our hba card information
 */
static u32 soft_reset_ready_check(struct pm8001_hba_info *pm8001_ha)
{
	u32 regVal, regVal1, regVal2;
	if (mpi_uninit_check(pm8001_ha) != 0) {
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		pm8001_dbg(pm8001_ha, FAIL, "MPI state is not ready\n");
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		return -1;
	}
	/* read the scratch pad 2 register bit 2 */
	regVal = pm8001_cr32(pm8001_ha, 0, MSGU_SCRATCH_PAD_2)
		& SCRATCH_PAD2_FWRDY_RST;
	if (regVal == SCRATCH_PAD2_FWRDY_RST) {
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		pm8001_dbg(pm8001_ha, INIT, "Firmware is ready for reset.\n");
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	} else {
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		unsigned long flags;
		/* Trigger NMI twice via RB6 */
		spin_lock_irqsave(&pm8001_ha->lock, flags);
		if (-1 == pm8001_bar4_shift(pm8001_ha, RB6_ACCESS_REG)) {
			spin_unlock_irqrestore(&pm8001_ha->lock, flags);
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			pm8001_dbg(pm8001_ha, FAIL,
				   "Shift Bar4 to 0x%x failed\n",
				   RB6_ACCESS_REG);
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			return -1;
		}
		pm8001_cw32(pm8001_ha, 2, SPC_RB6_OFFSET,
			RB6_MAGIC_NUMBER_RST);
		pm8001_cw32(pm8001_ha, 2, SPC_RB6_OFFSET, RB6_MAGIC_NUMBER_RST);
		/* wait for 100 ms */
		mdelay(100);
		regVal = pm8001_cr32(pm8001_ha, 0, MSGU_SCRATCH_PAD_2) &
			SCRATCH_PAD2_FWRDY_RST;
		if (regVal != SCRATCH_PAD2_FWRDY_RST) {
			regVal1 = pm8001_cr32(pm8001_ha, 0, MSGU_SCRATCH_PAD_1);
			regVal2 = pm8001_cr32(pm8001_ha, 0, MSGU_SCRATCH_PAD_2);
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			pm8001_dbg(pm8001_ha, FAIL, "TIMEOUT:MSGU_SCRATCH_PAD1=0x%x, MSGU_SCRATCH_PAD2=0x%x\n",
				   regVal1, regVal2);
			pm8001_dbg(pm8001_ha, FAIL,
				   "SCRATCH_PAD0 value = 0x%x\n",
				   pm8001_cr32(pm8001_ha, 0, MSGU_SCRATCH_PAD_0));
			pm8001_dbg(pm8001_ha, FAIL,
				   "SCRATCH_PAD3 value = 0x%x\n",
				   pm8001_cr32(pm8001_ha, 0, MSGU_SCRATCH_PAD_3));
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			spin_unlock_irqrestore(&pm8001_ha->lock, flags);
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			return -1;
		}
801
		spin_unlock_irqrestore(&pm8001_ha->lock, flags);
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	}
	return 0;
}

/**
 * pm8001_chip_soft_rst - soft reset the PM8001 chip, so that the clear all
 * the FW register status to the originated status.
 * @pm8001_ha: our hba card information
 */
static int
812
pm8001_chip_soft_rst(struct pm8001_hba_info *pm8001_ha)
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{
	u32	regVal, toggleVal;
	u32	max_wait_count;
	u32	regVal1, regVal2, regVal3;
817
	u32	signature = 0x252acbcd; /* for host scratch pad0 */
818
	unsigned long flags;
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	/* step1: Check FW is ready for soft reset */
	if (soft_reset_ready_check(pm8001_ha) != 0) {
822
		pm8001_dbg(pm8001_ha, FAIL, "FW is not ready\n");
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		return -1;
	}

	/* step 2: clear NMI status register on AAP1 and IOP, write the same
	value to clear */
	/* map 0x60000 to BAR4(0x20), BAR2(win) */
829 830 831
	spin_lock_irqsave(&pm8001_ha->lock, flags);
	if (-1 == pm8001_bar4_shift(pm8001_ha, MBIC_AAP1_ADDR_BASE)) {
		spin_unlock_irqrestore(&pm8001_ha->lock, flags);
832 833
		pm8001_dbg(pm8001_ha, FAIL, "Shift Bar4 to 0x%x failed\n",
			   MBIC_AAP1_ADDR_BASE);
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		return -1;
	}
	regVal = pm8001_cr32(pm8001_ha, 2, MBIC_NMI_ENABLE_VPE0_IOP);
837 838
	pm8001_dbg(pm8001_ha, INIT, "MBIC - NMI Enable VPE0 (IOP)= 0x%x\n",
		   regVal);
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	pm8001_cw32(pm8001_ha, 2, MBIC_NMI_ENABLE_VPE0_IOP, 0x0);
	/* map 0x70000 to BAR4(0x20), BAR2(win) */
841 842
	if (-1 == pm8001_bar4_shift(pm8001_ha, MBIC_IOP_ADDR_BASE)) {
		spin_unlock_irqrestore(&pm8001_ha->lock, flags);
843 844
		pm8001_dbg(pm8001_ha, FAIL, "Shift Bar4 to 0x%x failed\n",
			   MBIC_IOP_ADDR_BASE);
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		return -1;
	}
	regVal = pm8001_cr32(pm8001_ha, 2, MBIC_NMI_ENABLE_VPE0_AAP1);
848 849
	pm8001_dbg(pm8001_ha, INIT, "MBIC - NMI Enable VPE0 (AAP1)= 0x%x\n",
		   regVal);
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	pm8001_cw32(pm8001_ha, 2, MBIC_NMI_ENABLE_VPE0_AAP1, 0x0);

	regVal = pm8001_cr32(pm8001_ha, 1, PCIE_EVENT_INTERRUPT_ENABLE);
853 854
	pm8001_dbg(pm8001_ha, INIT, "PCIE -Event Interrupt Enable = 0x%x\n",
		   regVal);
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	pm8001_cw32(pm8001_ha, 1, PCIE_EVENT_INTERRUPT_ENABLE, 0x0);

	regVal = pm8001_cr32(pm8001_ha, 1, PCIE_EVENT_INTERRUPT);
858 859
	pm8001_dbg(pm8001_ha, INIT, "PCIE - Event Interrupt  = 0x%x\n",
		   regVal);
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	pm8001_cw32(pm8001_ha, 1, PCIE_EVENT_INTERRUPT, regVal);

	regVal = pm8001_cr32(pm8001_ha, 1, PCIE_ERROR_INTERRUPT_ENABLE);
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	pm8001_dbg(pm8001_ha, INIT, "PCIE -Error Interrupt Enable = 0x%x\n",
		   regVal);
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	pm8001_cw32(pm8001_ha, 1, PCIE_ERROR_INTERRUPT_ENABLE, 0x0);

	regVal = pm8001_cr32(pm8001_ha, 1, PCIE_ERROR_INTERRUPT);
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	pm8001_dbg(pm8001_ha, INIT, "PCIE - Error Interrupt = 0x%x\n", regVal);
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	pm8001_cw32(pm8001_ha, 1, PCIE_ERROR_INTERRUPT, regVal);

	/* read the scratch pad 1 register bit 2 */
	regVal = pm8001_cr32(pm8001_ha, 0, MSGU_SCRATCH_PAD_1)
		& SCRATCH_PAD1_RST;
	toggleVal = regVal ^ SCRATCH_PAD1_RST;

	/* set signature in host scratch pad0 register to tell SPC that the
	host performs the soft reset */
	pm8001_cw32(pm8001_ha, 0, MSGU_HOST_SCRATCH_PAD_0, signature);

	/* read required registers for confirmming */
	/* map 0x0700000 to BAR4(0x20), BAR2(win) */
882 883
	if (-1 == pm8001_bar4_shift(pm8001_ha, GSM_ADDR_BASE)) {
		spin_unlock_irqrestore(&pm8001_ha->lock, flags);
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		pm8001_dbg(pm8001_ha, FAIL, "Shift Bar4 to 0x%x failed\n",
			   GSM_ADDR_BASE);
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		return -1;
	}
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	pm8001_dbg(pm8001_ha, INIT,
		   "GSM 0x0(0x00007b88)-GSM Configuration and Reset = 0x%x\n",
		   pm8001_cr32(pm8001_ha, 2, GSM_CONFIG_RESET));
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	/* step 3: host read GSM Configuration and Reset register */
	regVal = pm8001_cr32(pm8001_ha, 2, GSM_CONFIG_RESET);
	/* Put those bits to low */
	/* GSM XCBI offset = 0x70 0000
	0x00 Bit 13 COM_SLV_SW_RSTB 1
	0x00 Bit 12 QSSP_SW_RSTB 1
	0x00 Bit 11 RAAE_SW_RSTB 1
	0x00 Bit 9 RB_1_SW_RSTB 1
	0x00 Bit 8 SM_SW_RSTB 1
	*/
	regVal &= ~(0x00003b00);
	/* host write GSM Configuration and Reset register */
	pm8001_cw32(pm8001_ha, 2, GSM_CONFIG_RESET, regVal);
905 906 907
	pm8001_dbg(pm8001_ha, INIT,
		   "GSM 0x0 (0x00007b88 ==> 0x00004088) - GSM Configuration and Reset is set to = 0x%x\n",
		   pm8001_cr32(pm8001_ha, 2, GSM_CONFIG_RESET));
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	/* step 4: */
	/* disable GSM - Read Address Parity Check */
	regVal1 = pm8001_cr32(pm8001_ha, 2, GSM_READ_ADDR_PARITY_CHECK);
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	pm8001_dbg(pm8001_ha, INIT,
		   "GSM 0x700038 - Read Address Parity Check Enable = 0x%x\n",
		   regVal1);
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	pm8001_cw32(pm8001_ha, 2, GSM_READ_ADDR_PARITY_CHECK, 0x0);
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	pm8001_dbg(pm8001_ha, INIT,
		   "GSM 0x700038 - Read Address Parity Check Enable is set to = 0x%x\n",
		   pm8001_cr32(pm8001_ha, 2, GSM_READ_ADDR_PARITY_CHECK));
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	/* disable GSM - Write Address Parity Check */
	regVal2 = pm8001_cr32(pm8001_ha, 2, GSM_WRITE_ADDR_PARITY_CHECK);
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	pm8001_dbg(pm8001_ha, INIT,
		   "GSM 0x700040 - Write Address Parity Check Enable = 0x%x\n",
		   regVal2);
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	pm8001_cw32(pm8001_ha, 2, GSM_WRITE_ADDR_PARITY_CHECK, 0x0);
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	pm8001_dbg(pm8001_ha, INIT,
		   "GSM 0x700040 - Write Address Parity Check Enable is set to = 0x%x\n",
		   pm8001_cr32(pm8001_ha, 2, GSM_WRITE_ADDR_PARITY_CHECK));
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	/* disable GSM - Write Data Parity Check */
	regVal3 = pm8001_cr32(pm8001_ha, 2, GSM_WRITE_DATA_PARITY_CHECK);
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	pm8001_dbg(pm8001_ha, INIT, "GSM 0x300048 - Write Data Parity Check Enable = 0x%x\n",
		   regVal3);
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	pm8001_cw32(pm8001_ha, 2, GSM_WRITE_DATA_PARITY_CHECK, 0x0);
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	pm8001_dbg(pm8001_ha, INIT,
		   "GSM 0x300048 - Write Data Parity Check Enable is set to = 0x%x\n",
		   pm8001_cr32(pm8001_ha, 2, GSM_WRITE_DATA_PARITY_CHECK));
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	/* step 5: delay 10 usec */
	udelay(10);
	/* step 5-b: set GPIO-0 output control to tristate anyway */
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	if (-1 == pm8001_bar4_shift(pm8001_ha, GPIO_ADDR_BASE)) {
		spin_unlock_irqrestore(&pm8001_ha->lock, flags);
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		pm8001_dbg(pm8001_ha, INIT, "Shift Bar4 to 0x%x failed\n",
			   GPIO_ADDR_BASE);
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		return -1;
	}
	regVal = pm8001_cr32(pm8001_ha, 2, GPIO_GPIO_0_0UTPUT_CTL_OFFSET);
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	pm8001_dbg(pm8001_ha, INIT, "GPIO Output Control Register: = 0x%x\n",
		   regVal);
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	/* set GPIO-0 output control to tri-state */
	regVal &= 0xFFFFFFFC;
	pm8001_cw32(pm8001_ha, 2, GPIO_GPIO_0_0UTPUT_CTL_OFFSET, regVal);

	/* Step 6: Reset the IOP and AAP1 */
	/* map 0x00000 to BAR4(0x20), BAR2(win) */
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	if (-1 == pm8001_bar4_shift(pm8001_ha, SPC_TOP_LEVEL_ADDR_BASE)) {
		spin_unlock_irqrestore(&pm8001_ha->lock, flags);
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		pm8001_dbg(pm8001_ha, FAIL, "SPC Shift Bar4 to 0x%x failed\n",
			   SPC_TOP_LEVEL_ADDR_BASE);
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		return -1;
	}
	regVal = pm8001_cr32(pm8001_ha, 2, SPC_REG_RESET);
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	pm8001_dbg(pm8001_ha, INIT, "Top Register before resetting IOP/AAP1:= 0x%x\n",
		   regVal);
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	regVal &= ~(SPC_REG_RESET_PCS_IOP_SS | SPC_REG_RESET_PCS_AAP1_SS);
	pm8001_cw32(pm8001_ha, 2, SPC_REG_RESET, regVal);

	/* step 7: Reset the BDMA/OSSP */
	regVal = pm8001_cr32(pm8001_ha, 2, SPC_REG_RESET);
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	pm8001_dbg(pm8001_ha, INIT, "Top Register before resetting BDMA/OSSP: = 0x%x\n",
		   regVal);
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	regVal &= ~(SPC_REG_RESET_BDMA_CORE | SPC_REG_RESET_OSSP);
	pm8001_cw32(pm8001_ha, 2, SPC_REG_RESET, regVal);

	/* step 8: delay 10 usec */
	udelay(10);

	/* step 9: bring the BDMA and OSSP out of reset */
	regVal = pm8001_cr32(pm8001_ha, 2, SPC_REG_RESET);
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	pm8001_dbg(pm8001_ha, INIT,
		   "Top Register before bringing up BDMA/OSSP:= 0x%x\n",
		   regVal);
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	regVal |= (SPC_REG_RESET_BDMA_CORE | SPC_REG_RESET_OSSP);
	pm8001_cw32(pm8001_ha, 2, SPC_REG_RESET, regVal);

	/* step 10: delay 10 usec */
	udelay(10);

	/* step 11: reads and sets the GSM Configuration and Reset Register */
	/* map 0x0700000 to BAR4(0x20), BAR2(win) */
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	if (-1 == pm8001_bar4_shift(pm8001_ha, GSM_ADDR_BASE)) {
		spin_unlock_irqrestore(&pm8001_ha->lock, flags);
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		pm8001_dbg(pm8001_ha, FAIL, "SPC Shift Bar4 to 0x%x failed\n",
			   GSM_ADDR_BASE);
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		return -1;
	}
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	pm8001_dbg(pm8001_ha, INIT,
		   "GSM 0x0 (0x00007b88)-GSM Configuration and Reset = 0x%x\n",
		   pm8001_cr32(pm8001_ha, 2, GSM_CONFIG_RESET));
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	regVal = pm8001_cr32(pm8001_ha, 2, GSM_CONFIG_RESET);
	/* Put those bits to high */
	/* GSM XCBI offset = 0x70 0000
	0x00 Bit 13 COM_SLV_SW_RSTB 1
	0x00 Bit 12 QSSP_SW_RSTB 1
	0x00 Bit 11 RAAE_SW_RSTB 1
	0x00 Bit 9   RB_1_SW_RSTB 1
	0x00 Bit 8   SM_SW_RSTB 1
	*/
	regVal |= (GSM_CONFIG_RESET_VALUE);
	pm8001_cw32(pm8001_ha, 2, GSM_CONFIG_RESET, regVal);
1012 1013
	pm8001_dbg(pm8001_ha, INIT, "GSM (0x00004088 ==> 0x00007b88) - GSM Configuration and Reset is set to = 0x%x\n",
		   pm8001_cr32(pm8001_ha, 2, GSM_CONFIG_RESET));
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	/* step 12: Restore GSM - Read Address Parity Check */
	regVal = pm8001_cr32(pm8001_ha, 2, GSM_READ_ADDR_PARITY_CHECK);
	/* just for debugging */
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	pm8001_dbg(pm8001_ha, INIT,
		   "GSM 0x700038 - Read Address Parity Check Enable = 0x%x\n",
		   regVal);
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	pm8001_cw32(pm8001_ha, 2, GSM_READ_ADDR_PARITY_CHECK, regVal1);
1022 1023
	pm8001_dbg(pm8001_ha, INIT, "GSM 0x700038 - Read Address Parity Check Enable is set to = 0x%x\n",
		   pm8001_cr32(pm8001_ha, 2, GSM_READ_ADDR_PARITY_CHECK));
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	/* Restore GSM - Write Address Parity Check */
	regVal = pm8001_cr32(pm8001_ha, 2, GSM_WRITE_ADDR_PARITY_CHECK);
	pm8001_cw32(pm8001_ha, 2, GSM_WRITE_ADDR_PARITY_CHECK, regVal2);
1027 1028 1029
	pm8001_dbg(pm8001_ha, INIT,
		   "GSM 0x700040 - Write Address Parity Check Enable is set to = 0x%x\n",
		   pm8001_cr32(pm8001_ha, 2, GSM_WRITE_ADDR_PARITY_CHECK));
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	/* Restore GSM - Write Data Parity Check */
	regVal = pm8001_cr32(pm8001_ha, 2, GSM_WRITE_DATA_PARITY_CHECK);
	pm8001_cw32(pm8001_ha, 2, GSM_WRITE_DATA_PARITY_CHECK, regVal3);
1033
	pm8001_dbg(pm8001_ha, INIT,
1034
		   "GSM 0x700048 - Write Data Parity Check Enable is set to = 0x%x\n",
1035
		   pm8001_cr32(pm8001_ha, 2, GSM_WRITE_DATA_PARITY_CHECK));
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	/* step 13: bring the IOP and AAP1 out of reset */
	/* map 0x00000 to BAR4(0x20), BAR2(win) */
1039 1040
	if (-1 == pm8001_bar4_shift(pm8001_ha, SPC_TOP_LEVEL_ADDR_BASE)) {
		spin_unlock_irqrestore(&pm8001_ha->lock, flags);
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		pm8001_dbg(pm8001_ha, FAIL, "Shift Bar4 to 0x%x failed\n",
			   SPC_TOP_LEVEL_ADDR_BASE);
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		return -1;
	}
	regVal = pm8001_cr32(pm8001_ha, 2, SPC_REG_RESET);
	regVal |= (SPC_REG_RESET_PCS_IOP_SS | SPC_REG_RESET_PCS_AAP1_SS);
	pm8001_cw32(pm8001_ha, 2, SPC_REG_RESET, regVal);

	/* step 14: delay 10 usec - Normal Mode */
	udelay(10);
	/* check Soft Reset Normal mode or Soft Reset HDA mode */
	if (signature == SPC_SOFT_RESET_SIGNATURE) {
		/* step 15 (Normal Mode): wait until scratch pad1 register
		bit 2 toggled */
		max_wait_count = 2 * 1000 * 1000;/* 2 sec */
		do {
			udelay(1);
			regVal = pm8001_cr32(pm8001_ha, 0, MSGU_SCRATCH_PAD_1) &
				SCRATCH_PAD1_RST;
		} while ((regVal != toggleVal) && (--max_wait_count));

		if (!max_wait_count) {
			regVal = pm8001_cr32(pm8001_ha, 0,
				MSGU_SCRATCH_PAD_1);
1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078
			pm8001_dbg(pm8001_ha, FAIL, "TIMEOUT : ToggleVal 0x%x,MSGU_SCRATCH_PAD1 = 0x%x\n",
				   toggleVal, regVal);
			pm8001_dbg(pm8001_ha, FAIL,
				   "SCRATCH_PAD0 value = 0x%x\n",
				   pm8001_cr32(pm8001_ha, 0,
					       MSGU_SCRATCH_PAD_0));
			pm8001_dbg(pm8001_ha, FAIL,
				   "SCRATCH_PAD2 value = 0x%x\n",
				   pm8001_cr32(pm8001_ha, 0,
					       MSGU_SCRATCH_PAD_2));
			pm8001_dbg(pm8001_ha, FAIL,
				   "SCRATCH_PAD3 value = 0x%x\n",
				   pm8001_cr32(pm8001_ha, 0,
					       MSGU_SCRATCH_PAD_3));
1079
			spin_unlock_irqrestore(&pm8001_ha->lock, flags);
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			return -1;
		}

		/* step 16 (Normal) - Clear ODMR and ODCR */
		pm8001_cw32(pm8001_ha, 0, MSGU_ODCR, ODCR_CLEAR_ALL);
		pm8001_cw32(pm8001_ha, 0, MSGU_ODMR, ODMR_CLEAR_ALL);

		/* step 17 (Normal Mode): wait for the FW and IOP to get
		ready - 1 sec timeout */
		/* Wait for the SPC Configuration Table to be ready */
		if (check_fw_ready(pm8001_ha) == -1) {
			regVal = pm8001_cr32(pm8001_ha, 0, MSGU_SCRATCH_PAD_1);
			/* return error if MPI Configuration Table not ready */
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			pm8001_dbg(pm8001_ha, INIT,
				   "FW not ready SCRATCH_PAD1 = 0x%x\n",
				   regVal);
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			regVal = pm8001_cr32(pm8001_ha, 0, MSGU_SCRATCH_PAD_2);
			/* return error if MPI Configuration Table not ready */
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			pm8001_dbg(pm8001_ha, INIT,
				   "FW not ready SCRATCH_PAD2 = 0x%x\n",
				   regVal);
			pm8001_dbg(pm8001_ha, INIT,
				   "SCRATCH_PAD0 value = 0x%x\n",
				   pm8001_cr32(pm8001_ha, 0,
					       MSGU_SCRATCH_PAD_0));
			pm8001_dbg(pm8001_ha, INIT,
				   "SCRATCH_PAD3 value = 0x%x\n",
				   pm8001_cr32(pm8001_ha, 0,
					       MSGU_SCRATCH_PAD_3));
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			spin_unlock_irqrestore(&pm8001_ha->lock, flags);
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			return -1;
		}
	}
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	pm8001_bar4_shift(pm8001_ha, 0);
	spin_unlock_irqrestore(&pm8001_ha->lock, flags);
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1116
	pm8001_dbg(pm8001_ha, INIT, "SPC soft reset Complete\n");
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	return 0;
}

static void pm8001_hw_chip_rst(struct pm8001_hba_info *pm8001_ha)
{
	u32 i;
	u32 regVal;
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	pm8001_dbg(pm8001_ha, INIT, "chip reset start\n");
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	/* do SPC chip reset. */
	regVal = pm8001_cr32(pm8001_ha, 1, SPC_REG_RESET);
	regVal &= ~(SPC_REG_RESET_DEVICE);
	pm8001_cw32(pm8001_ha, 1, SPC_REG_RESET, regVal);

	/* delay 10 usec */
	udelay(10);

	/* bring chip reset out of reset */
	regVal = pm8001_cr32(pm8001_ha, 1, SPC_REG_RESET);
	regVal |= SPC_REG_RESET_DEVICE;
	pm8001_cw32(pm8001_ha, 1, SPC_REG_RESET, regVal);

	/* delay 10 usec */
	udelay(10);

	/* wait for 20 msec until the firmware gets reloaded */
	i = 20;
	do {
		mdelay(1);
	} while ((--i) != 0);

1148
	pm8001_dbg(pm8001_ha, INIT, "chip reset finished\n");
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}

/**
1152
 * pm8001_chip_iounmap - which maped when initialized.
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 * @pm8001_ha: our hba card information
 */
1155
void pm8001_chip_iounmap(struct pm8001_hba_info *pm8001_ha)
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{
	s8 bar, logical = 0;
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	for (bar = 0; bar < PCI_STD_NUM_BARS; bar++) {
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		/*
		** logical BARs for SPC:
		** bar 0 and 1 - logical BAR0
		** bar 2 and 3 - logical BAR1
		** bar4 - logical BAR2
		** bar5 - logical BAR3
		** Skip the appropriate assignments:
		*/
		if ((bar == 1) || (bar == 3))
			continue;
		if (pm8001_ha->io_mem[logical].memvirtaddr) {
			iounmap(pm8001_ha->io_mem[logical].memvirtaddr);
			logical++;
		}
	}
}

1176
#ifndef PM8001_USE_MSIX
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/**
 * pm8001_chip_interrupt_enable - enable PM8001 chip interrupt
 * @pm8001_ha: our hba card information
 */
static void
pm8001_chip_intx_interrupt_enable(struct pm8001_hba_info *pm8001_ha)
{
	pm8001_cw32(pm8001_ha, 0, MSGU_ODMR, ODMR_CLEAR_ALL);
	pm8001_cw32(pm8001_ha, 0, MSGU_ODCR, ODCR_CLEAR_ALL);
}

 /**
  * pm8001_chip_intx_interrupt_disable- disable PM8001 chip interrupt
  * @pm8001_ha: our hba card information
  */
static void
pm8001_chip_intx_interrupt_disable(struct pm8001_hba_info *pm8001_ha)
{
	pm8001_cw32(pm8001_ha, 0, MSGU_ODMR, ODMR_MASK_ALL);
}

1198 1199
#else

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/**
 * pm8001_chip_msix_interrupt_enable - enable PM8001 chip interrupt
 * @pm8001_ha: our hba card information
1203
 * @int_vec_idx: interrupt number to enable
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 */
static void
pm8001_chip_msix_interrupt_enable(struct pm8001_hba_info *pm8001_ha,
	u32 int_vec_idx)
{
	u32 msi_index;
	u32 value;
	msi_index = int_vec_idx * MSIX_TABLE_ELEMENT_SIZE;
	msi_index += MSIX_TABLE_BASE;
	pm8001_cw32(pm8001_ha, 0, msi_index, MSIX_INTERRUPT_ENABLE);
	value = (1 << int_vec_idx);
	pm8001_cw32(pm8001_ha, 0,  MSGU_ODCR, value);

}

/**
 * pm8001_chip_msix_interrupt_disable - disable PM8001 chip interrupt
 * @pm8001_ha: our hba card information
1222
 * @int_vec_idx: interrupt number to disable
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 */
static void
pm8001_chip_msix_interrupt_disable(struct pm8001_hba_info *pm8001_ha,
	u32 int_vec_idx)
{
	u32 msi_index;
	msi_index = int_vec_idx * MSIX_TABLE_ELEMENT_SIZE;
	msi_index += MSIX_TABLE_BASE;
	pm8001_cw32(pm8001_ha, 0,  msi_index, MSIX_INTERRUPT_DISABLE);
}
1233
#endif
1234

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/**
 * pm8001_chip_interrupt_enable - enable PM8001 chip interrupt
 * @pm8001_ha: our hba card information
1238
 * @vec: unused
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 */
static void
1241
pm8001_chip_interrupt_enable(struct pm8001_hba_info *pm8001_ha, u8 vec)
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{
#ifdef PM8001_USE_MSIX
	pm8001_chip_msix_interrupt_enable(pm8001_ha, 0);
1245
#else
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	pm8001_chip_intx_interrupt_enable(pm8001_ha);
1247
#endif
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}

/**
 * pm8001_chip_intx_interrupt_disable- disable PM8001 chip interrupt
 * @pm8001_ha: our hba card information
1253
 * @vec: unused
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 */
static void
1256
pm8001_chip_interrupt_disable(struct pm8001_hba_info *pm8001_ha, u8 vec)
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{
#ifdef PM8001_USE_MSIX
	pm8001_chip_msix_interrupt_disable(pm8001_ha, 0);
1260
#else
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	pm8001_chip_intx_interrupt_disable(pm8001_ha);
1262
#endif
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}

/**
1266 1267
 * pm8001_mpi_msg_free_get - get the free message buffer for transfer
 * inbound queue.
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 * @circularQ: the inbound queue  we want to transfer to HBA.
 * @messageSize: the message size of this transfer, normally it is 64 bytes
 * @messagePtr: the pointer to message.
 */
1272
int pm8001_mpi_msg_free_get(struct inbound_queue_table *circularQ,
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			    u16 messageSize, void **messagePtr)
{
	u32 offset, consumer_index;
	struct mpi_msg_hdr *msgHeader;
	u8 bcCount = 1; /* only support single buffer */

	/* Checks is the requested message size can be allocated in this queue*/
1280
	if (messageSize > IOMB_SIZE_SPCV) {
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		*messagePtr = NULL;
		return -1;
	}

	/* Stores the new consumer index */
	consumer_index = pm8001_read_32(circularQ->ci_virt);
	circularQ->consumer_index = cpu_to_le32(consumer_index);
1288
	if (((circularQ->producer_idx + bcCount) % PM8001_MPI_QUEUE) ==
1289
		le32_to_cpu(circularQ->consumer_index)) {
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		*messagePtr = NULL;
		return -1;
	}
	/* get memory IOMB buffer address */
1294
	offset = circularQ->producer_idx * messageSize;
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	/* increment to next bcCount element */
1296 1297
	circularQ->producer_idx = (circularQ->producer_idx + bcCount)
				% PM8001_MPI_QUEUE;
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	/* Adds that distance to the base of the region virtual address plus
	the message header size*/
	msgHeader = (struct mpi_msg_hdr *)(circularQ->base_virt	+ offset);
	*messagePtr = ((void *)msgHeader) + sizeof(struct mpi_msg_hdr);
	return 0;
}

/**
1306 1307
 * pm8001_mpi_build_cmd- build the message queue for transfer, update the PI to
 * FW to tell the fw to get this message from IOMB.
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 * @pm8001_ha: our hba card information
 * @circularQ: the inbound queue we want to transfer to HBA.
 * @opCode: the operation code represents commands which LLDD and fw recognized.
 * @payload: the command payload of each operation command.
1312 1313
 * @nb: size in bytes of the command payload
 * @responseQueue: queue to interrupt on w/ command response (if any)
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 */
1315
int pm8001_mpi_build_cmd(struct pm8001_hba_info *pm8001_ha,
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			 struct inbound_queue_table *circularQ,
1317 1318
			 u32 opCode, void *payload, size_t nb,
			 u32 responseQueue)
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{
	u32 Header = 0, hpriority = 0, bc = 1, category = 0x02;
	void *pMessage;
1322 1323 1324 1325 1326 1327 1328 1329 1330
	unsigned long flags;
	int q_index = circularQ - pm8001_ha->inbnd_q_tbl;
	int rv = -1;

	WARN_ON(q_index >= PM8001_MAX_INB_NUM);
	spin_lock_irqsave(&circularQ->iq_lock, flags);
	rv = pm8001_mpi_msg_free_get(circularQ, pm8001_ha->iomb_size,
			&pMessage);
	if (rv < 0) {
1331
		pm8001_dbg(pm8001_ha, IO, "No free mpi buffer\n");
1332 1333
		rv = -ENOMEM;
		goto done;
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	}
1335 1336 1337 1338 1339 1340 1341

	if (nb > (pm8001_ha->iomb_size - sizeof(struct mpi_msg_hdr)))
		nb = pm8001_ha->iomb_size - sizeof(struct mpi_msg_hdr);
	memcpy(pMessage, payload, nb);
	if (nb + sizeof(struct mpi_msg_hdr) < pm8001_ha->iomb_size)
		memset(pMessage + nb, 0, pm8001_ha->iomb_size -
				(nb + sizeof(struct mpi_msg_hdr)));
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	/*Build the header*/
	Header = ((1 << 31) | (hpriority << 30) | ((bc & 0x1f) << 24)
		| ((responseQueue & 0x3F) << 16)
		| ((category & 0xF) << 12) | (opCode & 0xFFF));

	pm8001_write_32((pMessage - 4), 0, cpu_to_le32(Header));
	/*Update the PI to the firmware*/
	pm8001_cw32(pm8001_ha, circularQ->pi_pci_bar,
		circularQ->pi_offset, circularQ->producer_idx);
1352 1353 1354 1355
	pm8001_dbg(pm8001_ha, DEVIO,
		   "INB Q %x OPCODE:%x , UPDATED PI=%d CI=%d\n",
		   responseQueue, opCode, circularQ->producer_idx,
		   circularQ->consumer_index);
1356 1357 1358
done:
	spin_unlock_irqrestore(&circularQ->iq_lock, flags);
	return rv;
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}

1361
u32 pm8001_mpi_msg_free_set(struct pm8001_hba_info *pm8001_ha, void *pMsg,
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			    struct outbound_queue_table *circularQ, u8 bc)
{
	u32 producer_index;
1365 1366 1367 1368 1369
	struct mpi_msg_hdr *msgHeader;
	struct mpi_msg_hdr *pOutBoundMsgHeader;

	msgHeader = (struct mpi_msg_hdr *)(pMsg - sizeof(struct mpi_msg_hdr));
	pOutBoundMsgHeader = (struct mpi_msg_hdr *)(circularQ->base_virt +
1370
				circularQ->consumer_idx * pm8001_ha->iomb_size);
1371
	if (pOutBoundMsgHeader != msgHeader) {
1372 1373 1374
		pm8001_dbg(pm8001_ha, FAIL,
			   "consumer_idx = %d msgHeader = %p\n",
			   circularQ->consumer_idx, msgHeader);
1375 1376 1377 1378

		/* Update the producer index from SPC */
		producer_index = pm8001_read_32(circularQ->pi_virt);
		circularQ->producer_index = cpu_to_le32(producer_index);
1379 1380 1381 1382
		pm8001_dbg(pm8001_ha, FAIL,
			   "consumer_idx = %d producer_index = %dmsgHeader = %p\n",
			   circularQ->consumer_idx,
			   circularQ->producer_index, msgHeader);
1383 1384
		return 0;
	}
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	/* free the circular queue buffer elements associated with the message*/
1386 1387
	circularQ->consumer_idx = (circularQ->consumer_idx + bc)
				% PM8001_MPI_QUEUE;
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	/* update the CI of outbound queue */
	pm8001_cw32(pm8001_ha, circularQ->ci_pci_bar, circularQ->ci_offset,
		circularQ->consumer_idx);
	/* Update the producer index from SPC*/
	producer_index = pm8001_read_32(circularQ->pi_virt);
	circularQ->producer_index = cpu_to_le32(producer_index);
1394 1395
	pm8001_dbg(pm8001_ha, IO, " CI=%d PI=%d\n",
		   circularQ->consumer_idx, circularQ->producer_index);
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	return 0;
}

/**
1400 1401
 * pm8001_mpi_msg_consume- get the MPI message from outbound queue
 * message table.
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 * @pm8001_ha: our hba card information
 * @circularQ: the outbound queue  table.
 * @messagePtr1: the message contents of this outbound message.
 * @pBC: the message size.
 */
1407
u32 pm8001_mpi_msg_consume(struct pm8001_hba_info *pm8001_ha,
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			   struct outbound_queue_table *circularQ,
			   void **messagePtr1, u8 *pBC)
{
	struct mpi_msg_hdr	*msgHeader;
	__le32	msgHeader_tmp;
	u32 header_tmp;
	do {
		/* If there are not-yet-delivered messages ... */
1416 1417
		if (le32_to_cpu(circularQ->producer_index)
			!= circularQ->consumer_idx) {
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			/*Get the pointer to the circular queue buffer element*/
			msgHeader = (struct mpi_msg_hdr *)
				(circularQ->base_virt +
1421
				circularQ->consumer_idx * pm8001_ha->iomb_size);
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			/* read header */
			header_tmp = pm8001_read_32(msgHeader);
			msgHeader_tmp = cpu_to_le32(header_tmp);
1425 1426 1427 1428
			pm8001_dbg(pm8001_ha, DEVIO,
				   "outbound opcode msgheader:%x ci=%d pi=%d\n",
				   msgHeader_tmp, circularQ->consumer_idx,
				   circularQ->producer_index);
1429
			if (0 != (le32_to_cpu(msgHeader_tmp) & 0x80000000)) {
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				if (OPC_OUB_SKIP_ENTRY !=
1431
					(le32_to_cpu(msgHeader_tmp) & 0xfff)) {
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					*messagePtr1 =
						((u8 *)msgHeader) +
						sizeof(struct mpi_msg_hdr);
1435 1436
					*pBC = (u8)((le32_to_cpu(msgHeader_tmp)
						>> 24) & 0x1f);
1437 1438 1439 1440 1441
					pm8001_dbg(pm8001_ha, IO,
						   ": CI=%d PI=%d msgHeader=%x\n",
						   circularQ->consumer_idx,
						   circularQ->producer_index,
						   msgHeader_tmp);
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					return MPI_IO_STATUS_SUCCESS;
				} else {
					circularQ->consumer_idx =
						(circularQ->consumer_idx +
1446
						((le32_to_cpu(msgHeader_tmp)
1447 1448
						 >> 24) & 0x1f))
							% PM8001_MPI_QUEUE;
1449 1450
					msgHeader_tmp = 0;
					pm8001_write_32(msgHeader, 0, 0);
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					/* update the CI of outbound queue */
					pm8001_cw32(pm8001_ha,
						circularQ->ci_pci_bar,
						circularQ->ci_offset,
						circularQ->consumer_idx);
				}
1457 1458 1459
			} else {
				circularQ->consumer_idx =
					(circularQ->consumer_idx +
1460
					((le32_to_cpu(msgHeader_tmp) >> 24) &
1461
					0x1f)) % PM8001_MPI_QUEUE;
1462 1463 1464 1465 1466 1467
				msgHeader_tmp = 0;
				pm8001_write_32(msgHeader, 0, 0);
				/* update the CI of outbound queue */
				pm8001_cw32(pm8001_ha, circularQ->ci_pci_bar,
					circularQ->ci_offset,
					circularQ->consumer_idx);
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				return MPI_IO_STATUS_FAIL;
1469 1470 1471 1472
			}
		} else {
			u32 producer_index;
			void *pi_virt = circularQ->pi_virt;
1473 1474 1475 1476 1477 1478
			/* spurious interrupt during setup if
			 * kexec-ing and driver doing a doorbell access
			 * with the pre-kexec oq interrupt setup
			 */
			if (!pi_virt)
				break;
1479 1480 1481
			/* Update the producer index from SPC */
			producer_index = pm8001_read_32(pi_virt);
			circularQ->producer_index = cpu_to_le32(producer_index);
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		}
1483 1484
	} while (le32_to_cpu(circularQ->producer_index) !=
		circularQ->consumer_idx);
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	/* while we don't have any more not-yet-delivered message */
	/* report empty */
	return MPI_IO_STATUS_BUSY;
}

1490
void pm8001_work_fn(struct work_struct *work)
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{
1492
	struct pm8001_work *pw = container_of(work, struct pm8001_work, work);
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	struct pm8001_device *pm8001_dev;
1494
	struct domain_device *dev;
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1496 1497 1498 1499 1500 1501 1502 1503 1504
	/*
	 * So far, all users of this stash an associated structure here.
	 * If we get here, and this pointer is null, then the action
	 * was cancelled. This nullification happens when the device
	 * goes away.
	 */
	pm8001_dev = pw->data; /* Most stash device structure */
	if ((pm8001_dev == NULL)
	 || ((pw->handler != IO_XFER_ERROR_BREAK)
1505
	  && (pm8001_dev->dev_type == SAS_PHY_UNUSED))) {
1506 1507 1508 1509
		kfree(pw);
		return;
	}

1510
	switch (pw->handler) {
1511 1512 1513 1514 1515 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
	case IO_XFER_ERROR_BREAK:
	{	/* This one stashes the sas_task instead */
		struct sas_task *t = (struct sas_task *)pm8001_dev;
		u32 tag;
		struct pm8001_ccb_info *ccb;
		struct pm8001_hba_info *pm8001_ha = pw->pm8001_ha;
		unsigned long flags, flags1;
		struct task_status_struct *ts;
		int i;

		if (pm8001_query_task(t) == TMF_RESP_FUNC_SUCC)
			break; /* Task still on lu */
		spin_lock_irqsave(&pm8001_ha->lock, flags);

		spin_lock_irqsave(&t->task_state_lock, flags1);
		if (unlikely((t->task_state_flags & SAS_TASK_STATE_DONE))) {
			spin_unlock_irqrestore(&t->task_state_lock, flags1);
			spin_unlock_irqrestore(&pm8001_ha->lock, flags);
			break; /* Task got completed by another */
		}
		spin_unlock_irqrestore(&t->task_state_lock, flags1);

		/* Search for a possible ccb that matches the task */
		for (i = 0; ccb = NULL, i < PM8001_MAX_CCB; i++) {
			ccb = &pm8001_ha->ccb_info[i];
			tag = ccb->ccb_tag;
			if ((tag != 0xFFFFFFFF) && (ccb->task == t))
				break;
		}
		if (!ccb) {
			spin_unlock_irqrestore(&pm8001_ha->lock, flags);
			break; /* Task got freed by another */
		}
		ts = &t->task_status;
		ts->resp = SAS_TASK_COMPLETE;
		/* Force the midlayer to retry */
		ts->stat = SAS_QUEUE_FULL;
		pm8001_dev = ccb->device;
		if (pm8001_dev)
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1550
			atomic_dec(&pm8001_dev->running_req);
1551 1552 1553 1554 1555 1556
		spin_lock_irqsave(&t->task_state_lock, flags1);
		t->task_state_flags &= ~SAS_TASK_STATE_PENDING;
		t->task_state_flags &= ~SAS_TASK_AT_INITIATOR;
		t->task_state_flags |= SAS_TASK_STATE_DONE;
		if (unlikely((t->task_state_flags & SAS_TASK_STATE_ABORTED))) {
			spin_unlock_irqrestore(&t->task_state_lock, flags1);
1557 1558
			pm8001_dbg(pm8001_ha, FAIL, "task 0x%p done with event 0x%x resp 0x%x stat 0x%x but aborted by upper layer!\n",
				   t, pw->handler, ts->resp, ts->stat);
1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577
			pm8001_ccb_task_free(pm8001_ha, t, ccb, tag);
			spin_unlock_irqrestore(&pm8001_ha->lock, flags);
		} else {
			spin_unlock_irqrestore(&t->task_state_lock, flags1);
			pm8001_ccb_task_free(pm8001_ha, t, ccb, tag);
			mb();/* in order to force CPU ordering */
			spin_unlock_irqrestore(&pm8001_ha->lock, flags);
			t->task_done(t);
		}
	}	break;
	case IO_XFER_OPEN_RETRY_TIMEOUT:
	{	/* This one stashes the sas_task instead */
		struct sas_task *t = (struct sas_task *)pm8001_dev;
		u32 tag;
		struct pm8001_ccb_info *ccb;
		struct pm8001_hba_info *pm8001_ha = pw->pm8001_ha;
		unsigned long flags, flags1;
		int i, ret = 0;

1578
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_OPEN_RETRY_TIMEOUT\n");
1579 1580 1581

		ret = pm8001_query_task(t);

1582 1583 1584 1585 1586 1587
		if (ret == TMF_RESP_FUNC_SUCC)
			pm8001_dbg(pm8001_ha, IO, "...Task on lu\n");
		else if (ret == TMF_RESP_FUNC_COMPLETE)
			pm8001_dbg(pm8001_ha, IO, "...Task NOT on lu\n");
		else
			pm8001_dbg(pm8001_ha, DEVIO, "...query task failed!!!\n");
1588 1589 1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600 1601 1602 1603 1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630 1631

		spin_lock_irqsave(&pm8001_ha->lock, flags);

		spin_lock_irqsave(&t->task_state_lock, flags1);

		if (unlikely((t->task_state_flags & SAS_TASK_STATE_DONE))) {
			spin_unlock_irqrestore(&t->task_state_lock, flags1);
			spin_unlock_irqrestore(&pm8001_ha->lock, flags);
			if (ret == TMF_RESP_FUNC_SUCC) /* task on lu */
				(void)pm8001_abort_task(t);
			break; /* Task got completed by another */
		}

		spin_unlock_irqrestore(&t->task_state_lock, flags1);

		/* Search for a possible ccb that matches the task */
		for (i = 0; ccb = NULL, i < PM8001_MAX_CCB; i++) {
			ccb = &pm8001_ha->ccb_info[i];
			tag = ccb->ccb_tag;
			if ((tag != 0xFFFFFFFF) && (ccb->task == t))
				break;
		}
		if (!ccb) {
			spin_unlock_irqrestore(&pm8001_ha->lock, flags);
			if (ret == TMF_RESP_FUNC_SUCC) /* task on lu */
				(void)pm8001_abort_task(t);
			break; /* Task got freed by another */
		}

		pm8001_dev = ccb->device;
		dev = pm8001_dev->sas_device;

		switch (ret) {
		case TMF_RESP_FUNC_SUCC: /* task on lu */
			ccb->open_retry = 1; /* Snub completion */
			spin_unlock_irqrestore(&pm8001_ha->lock, flags);
			ret = pm8001_abort_task(t);
			ccb->open_retry = 0;
			switch (ret) {
			case TMF_RESP_FUNC_SUCC:
			case TMF_RESP_FUNC_COMPLETE:
				break;
			default: /* device misbehavior */
				ret = TMF_RESP_FUNC_FAILED;
1632
				pm8001_dbg(pm8001_ha, IO, "...Reset phy\n");
1633 1634 1635 1636 1637 1638 1639 1640 1641 1642 1643 1644 1645
				pm8001_I_T_nexus_reset(dev);
				break;
			}
			break;

		case TMF_RESP_FUNC_COMPLETE: /* task not on lu */
			spin_unlock_irqrestore(&pm8001_ha->lock, flags);
			/* Do we need to abort the task locally? */
			break;

		default: /* device misbehavior */
			spin_unlock_irqrestore(&pm8001_ha->lock, flags);
			ret = TMF_RESP_FUNC_FAILED;
1646
			pm8001_dbg(pm8001_ha, IO, "...Reset phy\n");
1647 1648 1649 1650 1651 1652
			pm8001_I_T_nexus_reset(dev);
		}

		if (ret == TMF_RESP_FUNC_FAILED)
			t = NULL;
		pm8001_open_reject_retry(pm8001_ha, t, pm8001_dev);
1653
		pm8001_dbg(pm8001_ha, IO, "...Complete\n");
1654
	}	break;
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	case IO_OPEN_CNX_ERROR_IT_NEXUS_LOSS:
		dev = pm8001_dev->sas_device;
1657
		pm8001_I_T_nexus_event_handler(dev);
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		break;
	case IO_OPEN_CNX_ERROR_STP_RESOURCES_BUSY:
		dev = pm8001_dev->sas_device;
		pm8001_I_T_nexus_reset(dev);
		break;
	case IO_DS_IN_ERROR:
		dev = pm8001_dev->sas_device;
		pm8001_I_T_nexus_reset(dev);
		break;
	case IO_DS_NON_OPERATIONAL:
		dev = pm8001_dev->sas_device;
		pm8001_I_T_nexus_reset(dev);
		break;
	}
1672
	kfree(pw);
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}

1675
int pm8001_handle_event(struct pm8001_hba_info *pm8001_ha, void *data,
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			       int handler)
{
1678
	struct pm8001_work *pw;
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	int ret = 0;

1681 1682 1683 1684 1685 1686 1687
	pw = kmalloc(sizeof(struct pm8001_work), GFP_ATOMIC);
	if (pw) {
		pw->pm8001_ha = pm8001_ha;
		pw->data = data;
		pw->handler = handler;
		INIT_WORK(&pw->work, pm8001_work_fn);
		queue_work(pm8001_wq, &pw->work);
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	} else
		ret = -ENOMEM;

	return ret;
}

1694 1695 1696 1697 1698 1699 1700 1701 1702 1703 1704 1705 1706
static void pm8001_send_abort_all(struct pm8001_hba_info *pm8001_ha,
		struct pm8001_device *pm8001_ha_dev)
{
	int res;
	u32 ccb_tag;
	struct pm8001_ccb_info *ccb;
	struct sas_task *task = NULL;
	struct task_abort_req task_abort;
	struct inbound_queue_table *circularQ;
	u32 opc = OPC_INB_SATA_ABORT;
	int ret;

	if (!pm8001_ha_dev) {
1707
		pm8001_dbg(pm8001_ha, FAIL, "dev is null\n");
1708 1709 1710 1711 1712 1713
		return;
	}

	task = sas_alloc_slow_task(GFP_ATOMIC);

	if (!task) {
1714
		pm8001_dbg(pm8001_ha, FAIL, "cannot allocate task\n");
1715 1716 1717 1718 1719 1720 1721 1722 1723 1724 1725 1726 1727 1728 1729 1730 1731 1732 1733 1734 1735
		return;
	}

	task->task_done = pm8001_task_done;

	res = pm8001_tag_alloc(pm8001_ha, &ccb_tag);
	if (res)
		return;

	ccb = &pm8001_ha->ccb_info[ccb_tag];
	ccb->device = pm8001_ha_dev;
	ccb->ccb_tag = ccb_tag;
	ccb->task = task;

	circularQ = &pm8001_ha->inbnd_q_tbl[0];

	memset(&task_abort, 0, sizeof(task_abort));
	task_abort.abort_all = cpu_to_le32(1);
	task_abort.device_id = cpu_to_le32(pm8001_ha_dev->device_id);
	task_abort.tag = cpu_to_le32(ccb_tag);

1736 1737
	ret = pm8001_mpi_build_cmd(pm8001_ha, circularQ, opc, &task_abort,
			sizeof(task_abort), 0);
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	if (ret)
		pm8001_tag_free(pm8001_ha, ccb_tag);
1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752 1753 1754 1755 1756 1757 1758

}

static void pm8001_send_read_log(struct pm8001_hba_info *pm8001_ha,
		struct pm8001_device *pm8001_ha_dev)
{
	struct sata_start_req sata_cmd;
	int res;
	u32 ccb_tag;
	struct pm8001_ccb_info *ccb;
	struct sas_task *task = NULL;
	struct host_to_dev_fis fis;
	struct domain_device *dev;
	struct inbound_queue_table *circularQ;
	u32 opc = OPC_INB_SATA_HOST_OPSTART;

	task = sas_alloc_slow_task(GFP_ATOMIC);

	if (!task) {
1759
		pm8001_dbg(pm8001_ha, FAIL, "cannot allocate task !!!\n");
1760 1761 1762 1763 1764 1765
		return;
	}
	task->task_done = pm8001_task_done;

	res = pm8001_tag_alloc(pm8001_ha, &ccb_tag);
	if (res) {
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		sas_free_task(task);
1767
		pm8001_dbg(pm8001_ha, FAIL, "cannot allocate tag !!!\n");
1768 1769 1770 1771 1772 1773 1774 1775
		return;
	}

	/* allocate domain device by ourselves as libsas
	 * is not going to provide any
	*/
	dev = kzalloc(sizeof(struct domain_device), GFP_ATOMIC);
	if (!dev) {
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		sas_free_task(task);
		pm8001_tag_free(pm8001_ha, ccb_tag);
1778 1779
		pm8001_dbg(pm8001_ha, FAIL,
			   "Domain device cannot be allocated\n");
1780 1781
		return;
	}
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	task->dev = dev;
	task->dev->lldd_dev = pm8001_ha_dev;
1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807

	ccb = &pm8001_ha->ccb_info[ccb_tag];
	ccb->device = pm8001_ha_dev;
	ccb->ccb_tag = ccb_tag;
	ccb->task = task;
	pm8001_ha_dev->id |= NCQ_READ_LOG_FLAG;
	pm8001_ha_dev->id |= NCQ_2ND_RLE_FLAG;

	memset(&sata_cmd, 0, sizeof(sata_cmd));
	circularQ = &pm8001_ha->inbnd_q_tbl[0];

	/* construct read log FIS */
	memset(&fis, 0, sizeof(struct host_to_dev_fis));
	fis.fis_type = 0x27;
	fis.flags = 0x80;
	fis.command = ATA_CMD_READ_LOG_EXT;
	fis.lbal = 0x10;
	fis.sector_count = 0x1;

	sata_cmd.tag = cpu_to_le32(ccb_tag);
	sata_cmd.device_id = cpu_to_le32(pm8001_ha_dev->device_id);
	sata_cmd.ncqtag_atap_dir_m |= ((0x1 << 7) | (0x5 << 9));
	memcpy(&sata_cmd.sata_fis, &fis, sizeof(struct host_to_dev_fis));

1808 1809
	res = pm8001_mpi_build_cmd(pm8001_ha, circularQ, opc, &sata_cmd,
			sizeof(sata_cmd), 0);
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	if (res) {
		sas_free_task(task);
		pm8001_tag_free(pm8001_ha, ccb_tag);
		kfree(dev);
	}
1815 1816
}

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/**
 * mpi_ssp_completion- process the event that FW response to the SSP request.
 * @pm8001_ha: our hba card information
 * @piomb: the message contents of this outbound message.
 *
 * When FW has completed a ssp request for example a IO request, after it has
 * filled the SG data with the data, it will trigger this event represent
 * that he has finished the job,please check the coresponding buffer.
 * So we will tell the caller who maybe waiting the result to tell upper layer
 * that the task has been finished.
 */
1828
static void
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mpi_ssp_completion(struct pm8001_hba_info *pm8001_ha , void *piomb)
{
	struct sas_task *t;
	struct pm8001_ccb_info *ccb;
	unsigned long flags;
	u32 status;
	u32 param;
	u32 tag;
	struct ssp_completion_resp *psspPayload;
	struct task_status_struct *ts;
	struct ssp_response_iu *iu;
	struct pm8001_device *pm8001_dev;
	psspPayload = (struct ssp_completion_resp *)(piomb + 4);
	status = le32_to_cpu(psspPayload->status);
	tag = le32_to_cpu(psspPayload->tag);
	ccb = &pm8001_ha->ccb_info[tag];
1845 1846 1847 1848 1849
	if ((status == IO_ABORTED) && ccb->open_retry) {
		/* Being completed by another */
		ccb->open_retry = 0;
		return;
	}
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	pm8001_dev = ccb->device;
	param = le32_to_cpu(psspPayload->param);

	t = ccb->task;

1855
	if (status && status != IO_UNDERFLOW)
1856
		pm8001_dbg(pm8001_ha, FAIL, "sas IO status 0x%x\n", status);
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	if (unlikely(!t || !t->lldd_task || !t->dev))
1858
		return;
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	ts = &t->task_status;
1860 1861 1862
	/* Print sas address of IO failed device */
	if ((status != IO_SUCCESS) && (status != IO_OVERFLOW) &&
		(status != IO_UNDERFLOW))
1863 1864
		pm8001_dbg(pm8001_ha, FAIL, "SAS Address of IO Failure Drive:%016llx\n",
			   SAS_ADDR(t->dev->sas_addr));
1865

1866
	if (status)
1867 1868 1869
		pm8001_dbg(pm8001_ha, IOERR,
			   "status:0x%x, tag:0x%x, task:0x%p\n",
			   status, tag, t);
1870

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	switch (status) {
	case IO_SUCCESS:
1873 1874
		pm8001_dbg(pm8001_ha, IO, "IO_SUCCESS,param = %d\n",
			   param);
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		if (param == 0) {
			ts->resp = SAS_TASK_COMPLETE;
1877
			ts->stat = SAM_STAT_GOOD;
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		} else {
			ts->resp = SAS_TASK_COMPLETE;
			ts->stat = SAS_PROTO_RESPONSE;
			ts->residual = param;
			iu = &psspPayload->ssp_resp_iu;
			sas_ssp_task_response(pm8001_ha->dev, t, iu);
		}
		if (pm8001_dev)
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			atomic_dec(&pm8001_dev->running_req);
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		break;
	case IO_ABORTED:
1889
		pm8001_dbg(pm8001_ha, IO, "IO_ABORTED IOMB Tag\n");
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		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_ABORTED_TASK;
		break;
	case IO_UNDERFLOW:
		/* SSP Completion with error */
1895 1896
		pm8001_dbg(pm8001_ha, IO, "IO_UNDERFLOW,param = %d\n",
			   param);
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		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_DATA_UNDERRUN;
		ts->residual = param;
		if (pm8001_dev)
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			atomic_dec(&pm8001_dev->running_req);
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		break;
	case IO_NO_DEVICE:
1904
		pm8001_dbg(pm8001_ha, IO, "IO_NO_DEVICE\n");
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		ts->resp = SAS_TASK_UNDELIVERED;
		ts->stat = SAS_PHY_DOWN;
		break;
	case IO_XFER_ERROR_BREAK:
1909
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_BREAK\n");
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		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
1912 1913
		/* Force the midlayer to retry */
		ts->open_rej_reason = SAS_OREJ_RSVD_RETRY;
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		break;
	case IO_XFER_ERROR_PHY_NOT_READY:
1916
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_PHY_NOT_READY\n");
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		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_RSVD_RETRY;
		break;
	case IO_OPEN_CNX_ERROR_PROTOCOL_NOT_SUPPORTED:
1922 1923
		pm8001_dbg(pm8001_ha, IO,
			   "IO_OPEN_CNX_ERROR_PROTOCOL_NOT_SUPPORTED\n");
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		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_EPROTO;
		break;
	case IO_OPEN_CNX_ERROR_ZONE_VIOLATION:
1929 1930
		pm8001_dbg(pm8001_ha, IO,
			   "IO_OPEN_CNX_ERROR_ZONE_VIOLATION\n");
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		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_UNKNOWN;
		break;
	case IO_OPEN_CNX_ERROR_BREAK:
1936
		pm8001_dbg(pm8001_ha, IO, "IO_OPEN_CNX_ERROR_BREAK\n");
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		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
1939
		ts->open_rej_reason = SAS_OREJ_RSVD_RETRY;
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		break;
	case IO_OPEN_CNX_ERROR_IT_NEXUS_LOSS:
1942
		pm8001_dbg(pm8001_ha, IO, "IO_OPEN_CNX_ERROR_IT_NEXUS_LOSS\n");
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		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_UNKNOWN;
		if (!t->uldd_task)
			pm8001_handle_event(pm8001_ha,
				pm8001_dev,
				IO_OPEN_CNX_ERROR_IT_NEXUS_LOSS);
		break;
	case IO_OPEN_CNX_ERROR_BAD_DESTINATION:
1952 1953
		pm8001_dbg(pm8001_ha, IO,
			   "IO_OPEN_CNX_ERROR_BAD_DESTINATION\n");
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		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_BAD_DEST;
		break;
	case IO_OPEN_CNX_ERROR_CONNECTION_RATE_NOT_SUPPORTED:
1959
		pm8001_dbg(pm8001_ha, IO, "IO_OPEN_CNX_ERROR_CONNECTION_RATE_NOT_SUPPORTED\n");
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		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_CONN_RATE;
		break;
	case IO_OPEN_CNX_ERROR_WRONG_DESTINATION:
1965 1966
		pm8001_dbg(pm8001_ha, IO,
			   "IO_OPEN_CNX_ERROR_WRONG_DESTINATION\n");
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		ts->resp = SAS_TASK_UNDELIVERED;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_WRONG_DEST;
		break;
	case IO_XFER_ERROR_NAK_RECEIVED:
1972
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_NAK_RECEIVED\n");
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		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
1975
		ts->open_rej_reason = SAS_OREJ_RSVD_RETRY;
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		break;
	case IO_XFER_ERROR_ACK_NAK_TIMEOUT:
1978
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_ACK_NAK_TIMEOUT\n");
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		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_NAK_R_ERR;
		break;
	case IO_XFER_ERROR_DMA:
1983
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_DMA\n");
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		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		break;
	case IO_XFER_OPEN_RETRY_TIMEOUT:
1988
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_OPEN_RETRY_TIMEOUT\n");
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		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_RSVD_RETRY;
		break;
	case IO_XFER_ERROR_OFFSET_MISMATCH:
1994
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_OFFSET_MISMATCH\n");
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		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		break;
	case IO_PORT_IN_RESET:
1999
		pm8001_dbg(pm8001_ha, IO, "IO_PORT_IN_RESET\n");
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		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		break;
	case IO_DS_NON_OPERATIONAL:
2004
		pm8001_dbg(pm8001_ha, IO, "IO_DS_NON_OPERATIONAL\n");
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		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		if (!t->uldd_task)
			pm8001_handle_event(pm8001_ha,
				pm8001_dev,
				IO_DS_NON_OPERATIONAL);
		break;
	case IO_DS_IN_RECOVERY:
2013
		pm8001_dbg(pm8001_ha, IO, "IO_DS_IN_RECOVERY\n");
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		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		break;
	case IO_TM_TAG_NOT_FOUND:
2018
		pm8001_dbg(pm8001_ha, IO, "IO_TM_TAG_NOT_FOUND\n");
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		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		break;
	case IO_SSP_EXT_IU_ZERO_LEN_ERROR:
2023
		pm8001_dbg(pm8001_ha, IO, "IO_SSP_EXT_IU_ZERO_LEN_ERROR\n");
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2024 2025 2026 2027
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		break;
	case IO_OPEN_CNX_ERROR_HW_RESOURCE_BUSY:
2028 2029
		pm8001_dbg(pm8001_ha, IO,
			   "IO_OPEN_CNX_ERROR_HW_RESOURCE_BUSY\n");
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2030 2031 2032
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_RSVD_RETRY;
2033
		break;
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2034
	default:
2035
		pm8001_dbg(pm8001_ha, DEVIO, "Unknown status 0x%x\n", status);
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2036 2037 2038 2039 2040
		/* not allowed case. Therefore, return failed status */
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		break;
	}
2041 2042
	pm8001_dbg(pm8001_ha, IO, "scsi_status = %x\n",
		   psspPayload->ssp_resp_iu.status);
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	spin_lock_irqsave(&t->task_state_lock, flags);
	t->task_state_flags &= ~SAS_TASK_STATE_PENDING;
	t->task_state_flags &= ~SAS_TASK_AT_INITIATOR;
	t->task_state_flags |= SAS_TASK_STATE_DONE;
	if (unlikely((t->task_state_flags & SAS_TASK_STATE_ABORTED))) {
		spin_unlock_irqrestore(&t->task_state_lock, flags);
2049 2050
		pm8001_dbg(pm8001_ha, FAIL, "task 0x%p done with io_status 0x%x resp 0x%x stat 0x%x but aborted by upper layer!\n",
			   t, status, ts->resp, ts->stat);
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		pm8001_ccb_task_free(pm8001_ha, t, ccb, tag);
	} else {
		spin_unlock_irqrestore(&t->task_state_lock, flags);
		pm8001_ccb_task_free(pm8001_ha, t, ccb, tag);
		mb();/* in order to force CPU ordering */
		t->task_done(t);
	}
}

/*See the comments for mpi_ssp_completion */
2061
static void mpi_ssp_event(struct pm8001_hba_info *pm8001_ha , void *piomb)
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{
	struct sas_task *t;
	unsigned long flags;
	struct task_status_struct *ts;
	struct pm8001_ccb_info *ccb;
	struct pm8001_device *pm8001_dev;
	struct ssp_event_resp *psspPayload =
		(struct ssp_event_resp *)(piomb + 4);
	u32 event = le32_to_cpu(psspPayload->event);
	u32 tag = le32_to_cpu(psspPayload->tag);
	u32 port_id = le32_to_cpu(psspPayload->port_id);
	u32 dev_id = le32_to_cpu(psspPayload->device_id);

	ccb = &pm8001_ha->ccb_info[tag];
	t = ccb->task;
	pm8001_dev = ccb->device;
	if (event)
2079
		pm8001_dbg(pm8001_ha, FAIL, "sas IO status 0x%x\n", event);
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	if (unlikely(!t || !t->lldd_task || !t->dev))
2081
		return;
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2082
	ts = &t->task_status;
2083 2084
	pm8001_dbg(pm8001_ha, DEVIO, "port_id = %x,device_id = %x\n",
		   port_id, dev_id);
J
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2085 2086
	switch (event) {
	case IO_OVERFLOW:
2087
		pm8001_dbg(pm8001_ha, IO, "IO_UNDERFLOW\n");
J
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2088 2089 2090 2091
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_DATA_OVERRUN;
		ts->residual = 0;
		if (pm8001_dev)
V
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2092
			atomic_dec(&pm8001_dev->running_req);
J
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2093 2094
		break;
	case IO_XFER_ERROR_BREAK:
2095
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_BREAK\n");
2096 2097
		pm8001_handle_event(pm8001_ha, t, IO_XFER_ERROR_BREAK);
		return;
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2098
	case IO_XFER_ERROR_PHY_NOT_READY:
2099
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_PHY_NOT_READY\n");
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2100 2101 2102 2103 2104
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_RSVD_RETRY;
		break;
	case IO_OPEN_CNX_ERROR_PROTOCOL_NOT_SUPPORTED:
2105
		pm8001_dbg(pm8001_ha, IO, "IO_OPEN_CNX_ERROR_PROTOCOL_NOT_SUPPORTED\n");
J
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2106 2107 2108 2109 2110
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_EPROTO;
		break;
	case IO_OPEN_CNX_ERROR_ZONE_VIOLATION:
2111 2112
		pm8001_dbg(pm8001_ha, IO,
			   "IO_OPEN_CNX_ERROR_ZONE_VIOLATION\n");
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2113 2114 2115 2116 2117
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_UNKNOWN;
		break;
	case IO_OPEN_CNX_ERROR_BREAK:
2118
		pm8001_dbg(pm8001_ha, IO, "IO_OPEN_CNX_ERROR_BREAK\n");
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2119 2120
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
2121
		ts->open_rej_reason = SAS_OREJ_RSVD_RETRY;
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2122 2123
		break;
	case IO_OPEN_CNX_ERROR_IT_NEXUS_LOSS:
2124
		pm8001_dbg(pm8001_ha, IO, "IO_OPEN_CNX_ERROR_IT_NEXUS_LOSS\n");
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2125 2126 2127 2128 2129 2130 2131 2132 2133
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_UNKNOWN;
		if (!t->uldd_task)
			pm8001_handle_event(pm8001_ha,
				pm8001_dev,
				IO_OPEN_CNX_ERROR_IT_NEXUS_LOSS);
		break;
	case IO_OPEN_CNX_ERROR_BAD_DESTINATION:
2134 2135
		pm8001_dbg(pm8001_ha, IO,
			   "IO_OPEN_CNX_ERROR_BAD_DESTINATION\n");
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2136 2137 2138 2139 2140
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_BAD_DEST;
		break;
	case IO_OPEN_CNX_ERROR_CONNECTION_RATE_NOT_SUPPORTED:
2141
		pm8001_dbg(pm8001_ha, IO, "IO_OPEN_CNX_ERROR_CONNECTION_RATE_NOT_SUPPORTED\n");
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2142 2143 2144 2145 2146
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_CONN_RATE;
		break;
	case IO_OPEN_CNX_ERROR_WRONG_DESTINATION:
2147 2148
		pm8001_dbg(pm8001_ha, IO,
			   "IO_OPEN_CNX_ERROR_WRONG_DESTINATION\n");
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2149 2150 2151 2152 2153
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_WRONG_DEST;
		break;
	case IO_XFER_ERROR_NAK_RECEIVED:
2154
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_NAK_RECEIVED\n");
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2155 2156
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
2157
		ts->open_rej_reason = SAS_OREJ_RSVD_RETRY;
J
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2158 2159
		break;
	case IO_XFER_ERROR_ACK_NAK_TIMEOUT:
2160
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_ACK_NAK_TIMEOUT\n");
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2161 2162 2163 2164
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_NAK_R_ERR;
		break;
	case IO_XFER_OPEN_RETRY_TIMEOUT:
2165
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_OPEN_RETRY_TIMEOUT\n");
2166 2167
		pm8001_handle_event(pm8001_ha, t, IO_XFER_OPEN_RETRY_TIMEOUT);
		return;
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2168
	case IO_XFER_ERROR_UNEXPECTED_PHASE:
2169
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_UNEXPECTED_PHASE\n");
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2170 2171 2172 2173
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_DATA_OVERRUN;
		break;
	case IO_XFER_ERROR_XFER_RDY_OVERRUN:
2174
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_XFER_RDY_OVERRUN\n");
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2175 2176 2177 2178
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_DATA_OVERRUN;
		break;
	case IO_XFER_ERROR_XFER_RDY_NOT_EXPECTED:
2179 2180
		pm8001_dbg(pm8001_ha, IO,
			   "IO_XFER_ERROR_XFER_RDY_NOT_EXPECTED\n");
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2181 2182 2183 2184
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_DATA_OVERRUN;
		break;
	case IO_XFER_ERROR_CMD_ISSUE_ACK_NAK_TIMEOUT:
2185 2186
		pm8001_dbg(pm8001_ha, IO,
			   "IO_XFER_ERROR_CMD_ISSUE_ACK_NAK_TIMEOUT\n");
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2187 2188 2189 2190
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_DATA_OVERRUN;
		break;
	case IO_XFER_ERROR_OFFSET_MISMATCH:
2191
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_OFFSET_MISMATCH\n");
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2192 2193 2194 2195
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_DATA_OVERRUN;
		break;
	case IO_XFER_ERROR_XFER_ZERO_DATA_LEN:
2196 2197
		pm8001_dbg(pm8001_ha, IO,
			   "IO_XFER_ERROR_XFER_ZERO_DATA_LEN\n");
J
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2198 2199 2200 2201
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_DATA_OVERRUN;
		break;
	case IO_XFER_CMD_FRAME_ISSUED:
2202
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_CMD_FRAME_ISSUED\n");
2203
		return;
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2204
	default:
2205
		pm8001_dbg(pm8001_ha, DEVIO, "Unknown status 0x%x\n", event);
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2206 2207 2208 2209 2210 2211 2212 2213 2214 2215 2216
		/* not allowed case. Therefore, return failed status */
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_DATA_OVERRUN;
		break;
	}
	spin_lock_irqsave(&t->task_state_lock, flags);
	t->task_state_flags &= ~SAS_TASK_STATE_PENDING;
	t->task_state_flags &= ~SAS_TASK_AT_INITIATOR;
	t->task_state_flags |= SAS_TASK_STATE_DONE;
	if (unlikely((t->task_state_flags & SAS_TASK_STATE_ABORTED))) {
		spin_unlock_irqrestore(&t->task_state_lock, flags);
2217 2218
		pm8001_dbg(pm8001_ha, FAIL, "task 0x%p done with event 0x%x resp 0x%x stat 0x%x but aborted by upper layer!\n",
			   t, event, ts->resp, ts->stat);
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2219 2220 2221 2222 2223 2224 2225 2226 2227 2228
		pm8001_ccb_task_free(pm8001_ha, t, ccb, tag);
	} else {
		spin_unlock_irqrestore(&t->task_state_lock, flags);
		pm8001_ccb_task_free(pm8001_ha, t, ccb, tag);
		mb();/* in order to force CPU ordering */
		t->task_done(t);
	}
}

/*See the comments for mpi_ssp_completion */
2229
static void
J
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2230 2231 2232 2233 2234 2235 2236
mpi_sata_completion(struct pm8001_hba_info *pm8001_ha, void *piomb)
{
	struct sas_task *t;
	struct pm8001_ccb_info *ccb;
	u32 param;
	u32 status;
	u32 tag;
2237 2238 2239 2240 2241
	int i, j;
	u8 sata_addr_low[4];
	u32 temp_sata_addr_low;
	u8 sata_addr_hi[4];
	u32 temp_sata_addr_hi;
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2242 2243 2244 2245 2246
	struct sata_completion_resp *psataPayload;
	struct task_status_struct *ts;
	struct ata_task_resp *resp ;
	u32 *sata_resp;
	struct pm8001_device *pm8001_dev;
2247
	unsigned long flags;
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2248 2249 2250 2251 2252

	psataPayload = (struct sata_completion_resp *)(piomb + 4);
	status = le32_to_cpu(psataPayload->status);
	tag = le32_to_cpu(psataPayload->tag);

2253
	if (!tag) {
2254
		pm8001_dbg(pm8001_ha, FAIL, "tag null\n");
2255 2256
		return;
	}
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2257 2258
	ccb = &pm8001_ha->ccb_info[tag];
	param = le32_to_cpu(psataPayload->param);
2259 2260 2261 2262
	if (ccb) {
		t = ccb->task;
		pm8001_dev = ccb->device;
	} else {
2263
		pm8001_dbg(pm8001_ha, FAIL, "ccb null\n");
2264 2265 2266 2267 2268 2269 2270
		return;
	}

	if (t) {
		if (t->dev && (t->dev->lldd_dev))
			pm8001_dev = t->dev->lldd_dev;
	} else {
2271
		pm8001_dbg(pm8001_ha, FAIL, "task null\n");
2272 2273 2274 2275 2276
		return;
	}

	if ((pm8001_dev && !(pm8001_dev->id & NCQ_READ_LOG_FLAG))
		&& unlikely(!t || !t->lldd_task || !t->dev)) {
2277
		pm8001_dbg(pm8001_ha, FAIL, "task or dev null\n");
2278 2279 2280
		return;
	}

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2281
	ts = &t->task_status;
2282
	if (!ts) {
2283
		pm8001_dbg(pm8001_ha, FAIL, "ts null\n");
2284
		return;
2285
	}
2286 2287

	if (status)
2288 2289 2290
		pm8001_dbg(pm8001_ha, IOERR,
			   "status:0x%x, tag:0x%x, task::0x%p\n",
			   status, tag, t);
2291

2292 2293 2294 2295
	/* Print sas address of IO failed device */
	if ((status != IO_SUCCESS) && (status != IO_OVERFLOW) &&
		(status != IO_UNDERFLOW)) {
		if (!((t->dev->parent) &&
2296
			(dev_is_expander(t->dev->parent->dev_type)))) {
2297 2298 2299 2300 2301 2302 2303 2304 2305 2306 2307 2308 2309 2310 2311 2312 2313 2314 2315 2316 2317 2318 2319 2320 2321
			for (i = 0 , j = 4; j <= 7 && i <= 3; i++ , j++)
				sata_addr_low[i] = pm8001_ha->sas_addr[j];
			for (i = 0 , j = 0; j <= 3 && i <= 3; i++ , j++)
				sata_addr_hi[i] = pm8001_ha->sas_addr[j];
			memcpy(&temp_sata_addr_low, sata_addr_low,
				sizeof(sata_addr_low));
			memcpy(&temp_sata_addr_hi, sata_addr_hi,
				sizeof(sata_addr_hi));
			temp_sata_addr_hi = (((temp_sata_addr_hi >> 24) & 0xff)
						|((temp_sata_addr_hi << 8) &
						0xff0000) |
						((temp_sata_addr_hi >> 8)
						& 0xff00) |
						((temp_sata_addr_hi << 24) &
						0xff000000));
			temp_sata_addr_low = ((((temp_sata_addr_low >> 24)
						& 0xff) |
						((temp_sata_addr_low << 8)
						& 0xff0000) |
						((temp_sata_addr_low >> 8)
						& 0xff00) |
						((temp_sata_addr_low << 24)
						& 0xff000000)) +
						pm8001_dev->attached_phy +
						0x10);
2322 2323 2324 2325
			pm8001_dbg(pm8001_ha, FAIL,
				   "SAS Address of IO Failure Drive:%08x%08x\n",
				   temp_sata_addr_hi,
				   temp_sata_addr_low);
2326
		} else {
2327 2328 2329
			pm8001_dbg(pm8001_ha, FAIL,
				   "SAS Address of IO Failure Drive:%016llx\n",
				   SAS_ADDR(t->dev->sas_addr));
2330 2331
		}
	}
J
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2332 2333
	switch (status) {
	case IO_SUCCESS:
2334
		pm8001_dbg(pm8001_ha, IO, "IO_SUCCESS\n");
J
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2335 2336
		if (param == 0) {
			ts->resp = SAS_TASK_COMPLETE;
2337
			ts->stat = SAM_STAT_GOOD;
2338 2339 2340 2341 2342 2343 2344 2345 2346 2347 2348 2349 2350
			/* check if response is for SEND READ LOG */
			if (pm8001_dev &&
				(pm8001_dev->id & NCQ_READ_LOG_FLAG)) {
				/* set new bit for abort_all */
				pm8001_dev->id |= NCQ_ABORT_ALL_FLAG;
				/* clear bit for read log */
				pm8001_dev->id = pm8001_dev->id & 0x7FFFFFFF;
				pm8001_send_abort_all(pm8001_ha, pm8001_dev);
				/* Free the tag */
				pm8001_tag_free(pm8001_ha, tag);
				sas_free_task(t);
				return;
			}
J
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2351 2352 2353 2354 2355
		} else {
			u8 len;
			ts->resp = SAS_TASK_COMPLETE;
			ts->stat = SAS_PROTO_RESPONSE;
			ts->residual = param;
2356 2357 2358
			pm8001_dbg(pm8001_ha, IO,
				   "SAS_PROTO_RESPONSE len = %d\n",
				   param);
J
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2359 2360 2361
			sata_resp = &psataPayload->sata_resp[0];
			resp = (struct ata_task_resp *)ts->buf;
			if (t->ata_task.dma_xfer == 0 &&
2362
			    t->data_dir == DMA_FROM_DEVICE) {
J
jack wang 已提交
2363
				len = sizeof(struct pio_setup_fis);
2364 2365
				pm8001_dbg(pm8001_ha, IO,
					   "PIO read len = %d\n", len);
J
jack wang 已提交
2366 2367
			} else if (t->ata_task.use_ncq) {
				len = sizeof(struct set_dev_bits_fis);
2368 2369
				pm8001_dbg(pm8001_ha, IO, "FPDMA len = %d\n",
					   len);
J
jack wang 已提交
2370 2371
			} else {
				len = sizeof(struct dev_to_host_fis);
2372 2373
				pm8001_dbg(pm8001_ha, IO, "other len = %d\n",
					   len);
J
jack wang 已提交
2374 2375 2376 2377 2378 2379
			}
			if (SAS_STATUS_BUF_SIZE >= sizeof(*resp)) {
				resp->frame_len = len;
				memcpy(&resp->ending_fis[0], sata_resp, len);
				ts->buf_valid_size = sizeof(*resp);
			} else
2380 2381
				pm8001_dbg(pm8001_ha, IO,
					   "response too large\n");
J
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2382 2383
		}
		if (pm8001_dev)
V
Viswas G 已提交
2384
			atomic_dec(&pm8001_dev->running_req);
J
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2385 2386
		break;
	case IO_ABORTED:
2387
		pm8001_dbg(pm8001_ha, IO, "IO_ABORTED IOMB Tag\n");
J
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2388 2389 2390
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_ABORTED_TASK;
		if (pm8001_dev)
V
Viswas G 已提交
2391
			atomic_dec(&pm8001_dev->running_req);
J
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2392 2393 2394 2395
		break;
		/* following cases are to do cases */
	case IO_UNDERFLOW:
		/* SATA Completion with error */
2396
		pm8001_dbg(pm8001_ha, IO, "IO_UNDERFLOW param = %d\n", param);
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2397 2398 2399 2400
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_DATA_UNDERRUN;
		ts->residual =  param;
		if (pm8001_dev)
V
Viswas G 已提交
2401
			atomic_dec(&pm8001_dev->running_req);
J
jack wang 已提交
2402 2403
		break;
	case IO_NO_DEVICE:
2404
		pm8001_dbg(pm8001_ha, IO, "IO_NO_DEVICE\n");
J
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2405 2406
		ts->resp = SAS_TASK_UNDELIVERED;
		ts->stat = SAS_PHY_DOWN;
V
Viswas G 已提交
2407 2408
		if (pm8001_dev)
			atomic_dec(&pm8001_dev->running_req);
J
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2409 2410
		break;
	case IO_XFER_ERROR_BREAK:
2411
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_BREAK\n");
J
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2412 2413
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_INTERRUPTED;
V
Viswas G 已提交
2414 2415
		if (pm8001_dev)
			atomic_dec(&pm8001_dev->running_req);
J
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2416 2417
		break;
	case IO_XFER_ERROR_PHY_NOT_READY:
2418
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_PHY_NOT_READY\n");
J
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2419 2420 2421
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_RSVD_RETRY;
V
Viswas G 已提交
2422 2423
		if (pm8001_dev)
			atomic_dec(&pm8001_dev->running_req);
J
jack wang 已提交
2424 2425
		break;
	case IO_OPEN_CNX_ERROR_PROTOCOL_NOT_SUPPORTED:
2426
		pm8001_dbg(pm8001_ha, IO, "IO_OPEN_CNX_ERROR_PROTOCOL_NOT_SUPPORTED\n");
J
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2427 2428 2429
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_EPROTO;
V
Viswas G 已提交
2430 2431
		if (pm8001_dev)
			atomic_dec(&pm8001_dev->running_req);
J
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2432 2433
		break;
	case IO_OPEN_CNX_ERROR_ZONE_VIOLATION:
2434 2435
		pm8001_dbg(pm8001_ha, IO,
			   "IO_OPEN_CNX_ERROR_ZONE_VIOLATION\n");
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2436 2437 2438
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_UNKNOWN;
V
Viswas G 已提交
2439 2440
		if (pm8001_dev)
			atomic_dec(&pm8001_dev->running_req);
J
jack wang 已提交
2441 2442
		break;
	case IO_OPEN_CNX_ERROR_BREAK:
2443
		pm8001_dbg(pm8001_ha, IO, "IO_OPEN_CNX_ERROR_BREAK\n");
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2444 2445 2446
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_RSVD_CONT0;
V
Viswas G 已提交
2447 2448
		if (pm8001_dev)
			atomic_dec(&pm8001_dev->running_req);
J
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2449 2450
		break;
	case IO_OPEN_CNX_ERROR_IT_NEXUS_LOSS:
2451
		pm8001_dbg(pm8001_ha, IO, "IO_OPEN_CNX_ERROR_IT_NEXUS_LOSS\n");
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2452 2453 2454 2455 2456 2457 2458 2459
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_DEV_NO_RESPONSE;
		if (!t->uldd_task) {
			pm8001_handle_event(pm8001_ha,
				pm8001_dev,
				IO_OPEN_CNX_ERROR_IT_NEXUS_LOSS);
			ts->resp = SAS_TASK_UNDELIVERED;
			ts->stat = SAS_QUEUE_FULL;
S
Suresh Thiagarajan 已提交
2460
			pm8001_ccb_task_free_done(pm8001_ha, t, ccb, tag);
2461
			return;
J
jack wang 已提交
2462 2463 2464
		}
		break;
	case IO_OPEN_CNX_ERROR_BAD_DESTINATION:
2465 2466
		pm8001_dbg(pm8001_ha, IO,
			   "IO_OPEN_CNX_ERROR_BAD_DESTINATION\n");
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2467 2468 2469 2470 2471 2472 2473 2474 2475
		ts->resp = SAS_TASK_UNDELIVERED;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_BAD_DEST;
		if (!t->uldd_task) {
			pm8001_handle_event(pm8001_ha,
				pm8001_dev,
				IO_OPEN_CNX_ERROR_IT_NEXUS_LOSS);
			ts->resp = SAS_TASK_UNDELIVERED;
			ts->stat = SAS_QUEUE_FULL;
S
Suresh Thiagarajan 已提交
2476
			pm8001_ccb_task_free_done(pm8001_ha, t, ccb, tag);
2477
			return;
J
jack wang 已提交
2478 2479 2480
		}
		break;
	case IO_OPEN_CNX_ERROR_CONNECTION_RATE_NOT_SUPPORTED:
2481
		pm8001_dbg(pm8001_ha, IO, "IO_OPEN_CNX_ERROR_CONNECTION_RATE_NOT_SUPPORTED\n");
J
jack wang 已提交
2482 2483 2484
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_CONN_RATE;
V
Viswas G 已提交
2485 2486
		if (pm8001_dev)
			atomic_dec(&pm8001_dev->running_req);
J
jack wang 已提交
2487 2488
		break;
	case IO_OPEN_CNX_ERROR_STP_RESOURCES_BUSY:
2489
		pm8001_dbg(pm8001_ha, IO, "IO_OPEN_CNX_ERROR_STP_RESOURCES_BUSY\n");
J
jack wang 已提交
2490 2491 2492 2493 2494 2495 2496 2497
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_DEV_NO_RESPONSE;
		if (!t->uldd_task) {
			pm8001_handle_event(pm8001_ha,
				pm8001_dev,
				IO_OPEN_CNX_ERROR_STP_RESOURCES_BUSY);
			ts->resp = SAS_TASK_UNDELIVERED;
			ts->stat = SAS_QUEUE_FULL;
S
Suresh Thiagarajan 已提交
2498
			pm8001_ccb_task_free_done(pm8001_ha, t, ccb, tag);
2499
			return;
J
jack wang 已提交
2500 2501 2502
		}
		break;
	case IO_OPEN_CNX_ERROR_WRONG_DESTINATION:
2503 2504
		pm8001_dbg(pm8001_ha, IO,
			   "IO_OPEN_CNX_ERROR_WRONG_DESTINATION\n");
J
jack wang 已提交
2505 2506 2507
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_WRONG_DEST;
V
Viswas G 已提交
2508 2509
		if (pm8001_dev)
			atomic_dec(&pm8001_dev->running_req);
J
jack wang 已提交
2510 2511
		break;
	case IO_XFER_ERROR_NAK_RECEIVED:
2512
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_NAK_RECEIVED\n");
J
jack wang 已提交
2513 2514
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_NAK_R_ERR;
V
Viswas G 已提交
2515 2516
		if (pm8001_dev)
			atomic_dec(&pm8001_dev->running_req);
J
jack wang 已提交
2517 2518
		break;
	case IO_XFER_ERROR_ACK_NAK_TIMEOUT:
2519
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_ACK_NAK_TIMEOUT\n");
J
jack wang 已提交
2520 2521
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_NAK_R_ERR;
V
Viswas G 已提交
2522 2523
		if (pm8001_dev)
			atomic_dec(&pm8001_dev->running_req);
J
jack wang 已提交
2524 2525
		break;
	case IO_XFER_ERROR_DMA:
2526
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_DMA\n");
J
jack wang 已提交
2527 2528
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_ABORTED_TASK;
V
Viswas G 已提交
2529 2530
		if (pm8001_dev)
			atomic_dec(&pm8001_dev->running_req);
J
jack wang 已提交
2531 2532
		break;
	case IO_XFER_ERROR_SATA_LINK_TIMEOUT:
2533
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_SATA_LINK_TIMEOUT\n");
J
jack wang 已提交
2534 2535
		ts->resp = SAS_TASK_UNDELIVERED;
		ts->stat = SAS_DEV_NO_RESPONSE;
V
Viswas G 已提交
2536 2537
		if (pm8001_dev)
			atomic_dec(&pm8001_dev->running_req);
J
jack wang 已提交
2538 2539
		break;
	case IO_XFER_ERROR_REJECTED_NCQ_MODE:
2540
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_REJECTED_NCQ_MODE\n");
J
jack wang 已提交
2541 2542
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_DATA_UNDERRUN;
V
Viswas G 已提交
2543 2544
		if (pm8001_dev)
			atomic_dec(&pm8001_dev->running_req);
J
jack wang 已提交
2545 2546
		break;
	case IO_XFER_OPEN_RETRY_TIMEOUT:
2547
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_OPEN_RETRY_TIMEOUT\n");
J
jack wang 已提交
2548 2549
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_TO;
V
Viswas G 已提交
2550 2551
		if (pm8001_dev)
			atomic_dec(&pm8001_dev->running_req);
J
jack wang 已提交
2552 2553
		break;
	case IO_PORT_IN_RESET:
2554
		pm8001_dbg(pm8001_ha, IO, "IO_PORT_IN_RESET\n");
J
jack wang 已提交
2555 2556
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_DEV_NO_RESPONSE;
V
Viswas G 已提交
2557 2558
		if (pm8001_dev)
			atomic_dec(&pm8001_dev->running_req);
J
jack wang 已提交
2559 2560
		break;
	case IO_DS_NON_OPERATIONAL:
2561
		pm8001_dbg(pm8001_ha, IO, "IO_DS_NON_OPERATIONAL\n");
J
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2562 2563 2564 2565 2566 2567 2568
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_DEV_NO_RESPONSE;
		if (!t->uldd_task) {
			pm8001_handle_event(pm8001_ha, pm8001_dev,
				    IO_DS_NON_OPERATIONAL);
			ts->resp = SAS_TASK_UNDELIVERED;
			ts->stat = SAS_QUEUE_FULL;
S
Suresh Thiagarajan 已提交
2569
			pm8001_ccb_task_free_done(pm8001_ha, t, ccb, tag);
2570
			return;
J
jack wang 已提交
2571 2572 2573
		}
		break;
	case IO_DS_IN_RECOVERY:
2574
		pm8001_dbg(pm8001_ha, IO, "  IO_DS_IN_RECOVERY\n");
J
jack wang 已提交
2575 2576
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_DEV_NO_RESPONSE;
V
Viswas G 已提交
2577 2578
		if (pm8001_dev)
			atomic_dec(&pm8001_dev->running_req);
J
jack wang 已提交
2579 2580
		break;
	case IO_DS_IN_ERROR:
2581
		pm8001_dbg(pm8001_ha, IO, "IO_DS_IN_ERROR\n");
J
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2582 2583 2584 2585 2586 2587 2588
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_DEV_NO_RESPONSE;
		if (!t->uldd_task) {
			pm8001_handle_event(pm8001_ha, pm8001_dev,
				    IO_DS_IN_ERROR);
			ts->resp = SAS_TASK_UNDELIVERED;
			ts->stat = SAS_QUEUE_FULL;
S
Suresh Thiagarajan 已提交
2589
			pm8001_ccb_task_free_done(pm8001_ha, t, ccb, tag);
2590
			return;
J
jack wang 已提交
2591 2592 2593
		}
		break;
	case IO_OPEN_CNX_ERROR_HW_RESOURCE_BUSY:
2594 2595
		pm8001_dbg(pm8001_ha, IO,
			   "IO_OPEN_CNX_ERROR_HW_RESOURCE_BUSY\n");
J
jack wang 已提交
2596 2597 2598
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_RSVD_RETRY;
V
Viswas G 已提交
2599 2600
		if (pm8001_dev)
			atomic_dec(&pm8001_dev->running_req);
2601
		break;
J
jack wang 已提交
2602
	default:
2603
		pm8001_dbg(pm8001_ha, DEVIO, "Unknown status 0x%x\n", status);
J
jack wang 已提交
2604 2605 2606
		/* not allowed case. Therefore, return failed status */
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_DEV_NO_RESPONSE;
V
Viswas G 已提交
2607 2608
		if (pm8001_dev)
			atomic_dec(&pm8001_dev->running_req);
J
jack wang 已提交
2609 2610
		break;
	}
2611
	spin_lock_irqsave(&t->task_state_lock, flags);
J
jack wang 已提交
2612 2613 2614 2615
	t->task_state_flags &= ~SAS_TASK_STATE_PENDING;
	t->task_state_flags &= ~SAS_TASK_AT_INITIATOR;
	t->task_state_flags |= SAS_TASK_STATE_DONE;
	if (unlikely((t->task_state_flags & SAS_TASK_STATE_ABORTED))) {
2616
		spin_unlock_irqrestore(&t->task_state_lock, flags);
2617 2618 2619
		pm8001_dbg(pm8001_ha, FAIL,
			   "task 0x%p done with io_status 0x%x resp 0x%x stat 0x%x but aborted by upper layer!\n",
			   t, status, ts->resp, ts->stat);
J
jack wang 已提交
2620
		pm8001_ccb_task_free(pm8001_ha, t, ccb, tag);
S
Suresh Thiagarajan 已提交
2621
	} else {
2622
		spin_unlock_irqrestore(&t->task_state_lock, flags);
S
Suresh Thiagarajan 已提交
2623
		pm8001_ccb_task_free_done(pm8001_ha, t, ccb, tag);
J
jack wang 已提交
2624 2625 2626 2627
	}
}

/*See the comments for mpi_ssp_completion */
2628
static void mpi_sata_event(struct pm8001_hba_info *pm8001_ha , void *piomb)
J
jack wang 已提交
2629 2630 2631 2632 2633 2634 2635 2636 2637 2638 2639
{
	struct sas_task *t;
	struct task_status_struct *ts;
	struct pm8001_ccb_info *ccb;
	struct pm8001_device *pm8001_dev;
	struct sata_event_resp *psataPayload =
		(struct sata_event_resp *)(piomb + 4);
	u32 event = le32_to_cpu(psataPayload->event);
	u32 tag = le32_to_cpu(psataPayload->tag);
	u32 port_id = le32_to_cpu(psataPayload->port_id);
	u32 dev_id = le32_to_cpu(psataPayload->device_id);
2640
	unsigned long flags;
J
jack wang 已提交
2641

2642 2643 2644 2645 2646 2647
	ccb = &pm8001_ha->ccb_info[tag];

	if (ccb) {
		t = ccb->task;
		pm8001_dev = ccb->device;
	} else {
2648
		pm8001_dbg(pm8001_ha, FAIL, "No CCB !!!. returning\n");
2649 2650
	}
	if (event)
2651
		pm8001_dbg(pm8001_ha, FAIL, "SATA EVENT 0x%x\n", event);
2652 2653 2654 2655 2656 2657 2658 2659 2660 2661 2662

	/* Check if this is NCQ error */
	if (event == IO_XFER_ERROR_ABORTED_NCQ_MODE) {
		/* find device using device id */
		pm8001_dev = pm8001_find_dev(pm8001_ha, dev_id);
		/* send read log extension */
		if (pm8001_dev)
			pm8001_send_read_log(pm8001_ha, pm8001_dev);
		return;
	}

J
jack wang 已提交
2663 2664 2665 2666
	ccb = &pm8001_ha->ccb_info[tag];
	t = ccb->task;
	pm8001_dev = ccb->device;
	if (event)
2667
		pm8001_dbg(pm8001_ha, FAIL, "sata IO status 0x%x\n", event);
J
jack wang 已提交
2668
	if (unlikely(!t || !t->lldd_task || !t->dev))
2669
		return;
J
jack wang 已提交
2670
	ts = &t->task_status;
2671 2672 2673
	pm8001_dbg(pm8001_ha, DEVIO,
		   "port_id:0x%x, device_id:0x%x, tag:0x%x, event:0x%x\n",
		   port_id, dev_id, tag, event);
J
jack wang 已提交
2674 2675
	switch (event) {
	case IO_OVERFLOW:
2676
		pm8001_dbg(pm8001_ha, IO, "IO_UNDERFLOW\n");
J
jack wang 已提交
2677 2678 2679 2680
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_DATA_OVERRUN;
		ts->residual = 0;
		if (pm8001_dev)
V
Viswas G 已提交
2681
			atomic_dec(&pm8001_dev->running_req);
J
jack wang 已提交
2682 2683
		break;
	case IO_XFER_ERROR_BREAK:
2684
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_BREAK\n");
J
jack wang 已提交
2685 2686 2687 2688
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_INTERRUPTED;
		break;
	case IO_XFER_ERROR_PHY_NOT_READY:
2689
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_PHY_NOT_READY\n");
J
jack wang 已提交
2690 2691 2692 2693 2694
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_RSVD_RETRY;
		break;
	case IO_OPEN_CNX_ERROR_PROTOCOL_NOT_SUPPORTED:
2695
		pm8001_dbg(pm8001_ha, IO, "IO_OPEN_CNX_ERROR_PROTOCOL_NOT_SUPPORTED\n");
J
jack wang 已提交
2696 2697 2698 2699 2700
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_EPROTO;
		break;
	case IO_OPEN_CNX_ERROR_ZONE_VIOLATION:
2701 2702
		pm8001_dbg(pm8001_ha, IO,
			   "IO_OPEN_CNX_ERROR_ZONE_VIOLATION\n");
J
jack wang 已提交
2703 2704 2705 2706 2707
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_UNKNOWN;
		break;
	case IO_OPEN_CNX_ERROR_BREAK:
2708
		pm8001_dbg(pm8001_ha, IO, "IO_OPEN_CNX_ERROR_BREAK\n");
J
jack wang 已提交
2709 2710 2711 2712 2713
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_RSVD_CONT0;
		break;
	case IO_OPEN_CNX_ERROR_IT_NEXUS_LOSS:
2714
		pm8001_dbg(pm8001_ha, IO, "IO_OPEN_CNX_ERROR_IT_NEXUS_LOSS\n");
J
jack wang 已提交
2715 2716 2717 2718 2719 2720 2721 2722
		ts->resp = SAS_TASK_UNDELIVERED;
		ts->stat = SAS_DEV_NO_RESPONSE;
		if (!t->uldd_task) {
			pm8001_handle_event(pm8001_ha,
				pm8001_dev,
				IO_OPEN_CNX_ERROR_IT_NEXUS_LOSS);
			ts->resp = SAS_TASK_COMPLETE;
			ts->stat = SAS_QUEUE_FULL;
S
Suresh Thiagarajan 已提交
2723
			pm8001_ccb_task_free_done(pm8001_ha, t, ccb, tag);
2724
			return;
J
jack wang 已提交
2725 2726 2727
		}
		break;
	case IO_OPEN_CNX_ERROR_BAD_DESTINATION:
2728 2729
		pm8001_dbg(pm8001_ha, IO,
			   "IO_OPEN_CNX_ERROR_BAD_DESTINATION\n");
J
jack wang 已提交
2730 2731 2732 2733 2734
		ts->resp = SAS_TASK_UNDELIVERED;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_BAD_DEST;
		break;
	case IO_OPEN_CNX_ERROR_CONNECTION_RATE_NOT_SUPPORTED:
2735
		pm8001_dbg(pm8001_ha, IO, "IO_OPEN_CNX_ERROR_CONNECTION_RATE_NOT_SUPPORTED\n");
J
jack wang 已提交
2736 2737 2738 2739 2740
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_CONN_RATE;
		break;
	case IO_OPEN_CNX_ERROR_WRONG_DESTINATION:
2741 2742
		pm8001_dbg(pm8001_ha, IO,
			   "IO_OPEN_CNX_ERROR_WRONG_DESTINATION\n");
J
jack wang 已提交
2743 2744 2745 2746 2747
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_WRONG_DEST;
		break;
	case IO_XFER_ERROR_NAK_RECEIVED:
2748
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_NAK_RECEIVED\n");
J
jack wang 已提交
2749 2750 2751 2752
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_NAK_R_ERR;
		break;
	case IO_XFER_ERROR_PEER_ABORTED:
2753
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_PEER_ABORTED\n");
J
jack wang 已提交
2754 2755 2756 2757
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_NAK_R_ERR;
		break;
	case IO_XFER_ERROR_REJECTED_NCQ_MODE:
2758
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_REJECTED_NCQ_MODE\n");
J
jack wang 已提交
2759 2760 2761 2762
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_DATA_UNDERRUN;
		break;
	case IO_XFER_OPEN_RETRY_TIMEOUT:
2763
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_OPEN_RETRY_TIMEOUT\n");
J
jack wang 已提交
2764 2765 2766 2767
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_TO;
		break;
	case IO_XFER_ERROR_UNEXPECTED_PHASE:
2768
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_UNEXPECTED_PHASE\n");
J
jack wang 已提交
2769 2770 2771 2772
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_TO;
		break;
	case IO_XFER_ERROR_XFER_RDY_OVERRUN:
2773
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_XFER_RDY_OVERRUN\n");
J
jack wang 已提交
2774 2775 2776 2777
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_TO;
		break;
	case IO_XFER_ERROR_XFER_RDY_NOT_EXPECTED:
2778 2779
		pm8001_dbg(pm8001_ha, IO,
			   "IO_XFER_ERROR_XFER_RDY_NOT_EXPECTED\n");
J
jack wang 已提交
2780 2781 2782 2783
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_TO;
		break;
	case IO_XFER_ERROR_OFFSET_MISMATCH:
2784
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_OFFSET_MISMATCH\n");
J
jack wang 已提交
2785 2786 2787 2788
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_TO;
		break;
	case IO_XFER_ERROR_XFER_ZERO_DATA_LEN:
2789 2790
		pm8001_dbg(pm8001_ha, IO,
			   "IO_XFER_ERROR_XFER_ZERO_DATA_LEN\n");
J
jack wang 已提交
2791 2792 2793 2794
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_TO;
		break;
	case IO_XFER_CMD_FRAME_ISSUED:
2795
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_CMD_FRAME_ISSUED\n");
J
jack wang 已提交
2796 2797
		break;
	case IO_XFER_PIO_SETUP_ERROR:
2798
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_PIO_SETUP_ERROR\n");
J
jack wang 已提交
2799 2800 2801 2802
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_TO;
		break;
	default:
2803
		pm8001_dbg(pm8001_ha, DEVIO, "Unknown status 0x%x\n", event);
J
jack wang 已提交
2804 2805 2806 2807 2808
		/* not allowed case. Therefore, return failed status */
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_TO;
		break;
	}
2809
	spin_lock_irqsave(&t->task_state_lock, flags);
J
jack wang 已提交
2810 2811 2812 2813
	t->task_state_flags &= ~SAS_TASK_STATE_PENDING;
	t->task_state_flags &= ~SAS_TASK_AT_INITIATOR;
	t->task_state_flags |= SAS_TASK_STATE_DONE;
	if (unlikely((t->task_state_flags & SAS_TASK_STATE_ABORTED))) {
2814
		spin_unlock_irqrestore(&t->task_state_lock, flags);
2815 2816 2817
		pm8001_dbg(pm8001_ha, FAIL,
			   "task 0x%p done with io_status 0x%x resp 0x%x stat 0x%x but aborted by upper layer!\n",
			   t, event, ts->resp, ts->stat);
J
jack wang 已提交
2818
		pm8001_ccb_task_free(pm8001_ha, t, ccb, tag);
S
Suresh Thiagarajan 已提交
2819
	} else {
2820
		spin_unlock_irqrestore(&t->task_state_lock, flags);
S
Suresh Thiagarajan 已提交
2821
		pm8001_ccb_task_free_done(pm8001_ha, t, ccb, tag);
J
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2822 2823 2824 2825
	}
}

/*See the comments for mpi_ssp_completion */
2826
static void
J
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2827 2828 2829 2830 2831 2832 2833 2834 2835 2836 2837 2838 2839 2840 2841 2842 2843 2844 2845
mpi_smp_completion(struct pm8001_hba_info *pm8001_ha, void *piomb)
{
	struct sas_task *t;
	struct pm8001_ccb_info *ccb;
	unsigned long flags;
	u32 status;
	u32 tag;
	struct smp_completion_resp *psmpPayload;
	struct task_status_struct *ts;
	struct pm8001_device *pm8001_dev;

	psmpPayload = (struct smp_completion_resp *)(piomb + 4);
	status = le32_to_cpu(psmpPayload->status);
	tag = le32_to_cpu(psmpPayload->tag);

	ccb = &pm8001_ha->ccb_info[tag];
	t = ccb->task;
	ts = &t->task_status;
	pm8001_dev = ccb->device;
2846
	if (status) {
2847 2848 2849 2850
		pm8001_dbg(pm8001_ha, FAIL, "smp IO status 0x%x\n", status);
		pm8001_dbg(pm8001_ha, IOERR,
			   "status:0x%x, tag:0x%x, task:0x%p\n",
			   status, tag, t);
2851
	}
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2852
	if (unlikely(!t || !t->lldd_task || !t->dev))
2853
		return;
J
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2854 2855 2856

	switch (status) {
	case IO_SUCCESS:
2857
		pm8001_dbg(pm8001_ha, IO, "IO_SUCCESS\n");
J
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2858
		ts->resp = SAS_TASK_COMPLETE;
2859
		ts->stat = SAM_STAT_GOOD;
2860
		if (pm8001_dev)
V
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2861
			atomic_dec(&pm8001_dev->running_req);
J
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2862 2863
		break;
	case IO_ABORTED:
2864
		pm8001_dbg(pm8001_ha, IO, "IO_ABORTED IOMB\n");
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2865 2866 2867
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_ABORTED_TASK;
		if (pm8001_dev)
V
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2868
			atomic_dec(&pm8001_dev->running_req);
J
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2869 2870
		break;
	case IO_OVERFLOW:
2871
		pm8001_dbg(pm8001_ha, IO, "IO_UNDERFLOW\n");
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2872 2873 2874 2875
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_DATA_OVERRUN;
		ts->residual = 0;
		if (pm8001_dev)
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2876
			atomic_dec(&pm8001_dev->running_req);
J
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2877 2878
		break;
	case IO_NO_DEVICE:
2879
		pm8001_dbg(pm8001_ha, IO, "IO_NO_DEVICE\n");
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2880 2881 2882 2883
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_PHY_DOWN;
		break;
	case IO_ERROR_HW_TIMEOUT:
2884
		pm8001_dbg(pm8001_ha, IO, "IO_ERROR_HW_TIMEOUT\n");
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2885
		ts->resp = SAS_TASK_COMPLETE;
2886
		ts->stat = SAM_STAT_BUSY;
J
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2887 2888
		break;
	case IO_XFER_ERROR_BREAK:
2889
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_BREAK\n");
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2890
		ts->resp = SAS_TASK_COMPLETE;
2891
		ts->stat = SAM_STAT_BUSY;
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2892 2893
		break;
	case IO_XFER_ERROR_PHY_NOT_READY:
2894
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_PHY_NOT_READY\n");
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2895
		ts->resp = SAS_TASK_COMPLETE;
2896
		ts->stat = SAM_STAT_BUSY;
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2897 2898
		break;
	case IO_OPEN_CNX_ERROR_PROTOCOL_NOT_SUPPORTED:
2899 2900
		pm8001_dbg(pm8001_ha, IO,
			   "IO_OPEN_CNX_ERROR_PROTOCOL_NOT_SUPPORTED\n");
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2901 2902 2903 2904 2905
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_UNKNOWN;
		break;
	case IO_OPEN_CNX_ERROR_ZONE_VIOLATION:
2906 2907
		pm8001_dbg(pm8001_ha, IO,
			   "IO_OPEN_CNX_ERROR_ZONE_VIOLATION\n");
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2908 2909 2910 2911 2912
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_UNKNOWN;
		break;
	case IO_OPEN_CNX_ERROR_BREAK:
2913
		pm8001_dbg(pm8001_ha, IO, "IO_OPEN_CNX_ERROR_BREAK\n");
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2914 2915 2916 2917 2918
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_RSVD_CONT0;
		break;
	case IO_OPEN_CNX_ERROR_IT_NEXUS_LOSS:
2919
		pm8001_dbg(pm8001_ha, IO, "IO_OPEN_CNX_ERROR_IT_NEXUS_LOSS\n");
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2920 2921 2922 2923 2924 2925 2926 2927
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_UNKNOWN;
		pm8001_handle_event(pm8001_ha,
				pm8001_dev,
				IO_OPEN_CNX_ERROR_IT_NEXUS_LOSS);
		break;
	case IO_OPEN_CNX_ERROR_BAD_DESTINATION:
2928 2929
		pm8001_dbg(pm8001_ha, IO,
			   "IO_OPEN_CNX_ERROR_BAD_DESTINATION\n");
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2930 2931 2932 2933 2934
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_BAD_DEST;
		break;
	case IO_OPEN_CNX_ERROR_CONNECTION_RATE_NOT_SUPPORTED:
2935
		pm8001_dbg(pm8001_ha, IO, "IO_OPEN_CNX_ERROR_CONNECTION_RATE_NOT_SUPPORTED\n");
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2936 2937 2938 2939 2940
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_CONN_RATE;
		break;
	case IO_OPEN_CNX_ERROR_WRONG_DESTINATION:
2941 2942
		pm8001_dbg(pm8001_ha, IO,
			   "IO_OPEN_CNX_ERROR_WRONG_DESTINATION\n");
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2943 2944 2945 2946 2947
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_WRONG_DEST;
		break;
	case IO_XFER_ERROR_RX_FRAME:
2948
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_ERROR_RX_FRAME\n");
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2949 2950 2951 2952
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_DEV_NO_RESPONSE;
		break;
	case IO_XFER_OPEN_RETRY_TIMEOUT:
2953
		pm8001_dbg(pm8001_ha, IO, "IO_XFER_OPEN_RETRY_TIMEOUT\n");
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2954 2955 2956 2957 2958
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_RSVD_RETRY;
		break;
	case IO_ERROR_INTERNAL_SMP_RESOURCE:
2959
		pm8001_dbg(pm8001_ha, IO, "IO_ERROR_INTERNAL_SMP_RESOURCE\n");
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2960 2961 2962 2963
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_QUEUE_FULL;
		break;
	case IO_PORT_IN_RESET:
2964
		pm8001_dbg(pm8001_ha, IO, "IO_PORT_IN_RESET\n");
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2965 2966 2967 2968 2969
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_RSVD_RETRY;
		break;
	case IO_DS_NON_OPERATIONAL:
2970
		pm8001_dbg(pm8001_ha, IO, "IO_DS_NON_OPERATIONAL\n");
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2971 2972 2973 2974
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_DEV_NO_RESPONSE;
		break;
	case IO_DS_IN_RECOVERY:
2975
		pm8001_dbg(pm8001_ha, IO, "IO_DS_IN_RECOVERY\n");
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2976 2977 2978 2979 2980
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_RSVD_RETRY;
		break;
	case IO_OPEN_CNX_ERROR_HW_RESOURCE_BUSY:
2981 2982
		pm8001_dbg(pm8001_ha, IO,
			   "IO_OPEN_CNX_ERROR_HW_RESOURCE_BUSY\n");
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2983 2984 2985 2986 2987
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_OPEN_REJECT;
		ts->open_rej_reason = SAS_OREJ_RSVD_RETRY;
		break;
	default:
2988
		pm8001_dbg(pm8001_ha, DEVIO, "Unknown status 0x%x\n", status);
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2989 2990 2991 2992 2993 2994 2995 2996 2997 2998 2999
		ts->resp = SAS_TASK_COMPLETE;
		ts->stat = SAS_DEV_NO_RESPONSE;
		/* not allowed case. Therefore, return failed status */
		break;
	}
	spin_lock_irqsave(&t->task_state_lock, flags);
	t->task_state_flags &= ~SAS_TASK_STATE_PENDING;
	t->task_state_flags &= ~SAS_TASK_AT_INITIATOR;
	t->task_state_flags |= SAS_TASK_STATE_DONE;
	if (unlikely((t->task_state_flags & SAS_TASK_STATE_ABORTED))) {
		spin_unlock_irqrestore(&t->task_state_lock, flags);
3000 3001
		pm8001_dbg(pm8001_ha, FAIL, "task 0x%p done with io_status 0x%x resp 0x%x stat 0x%x but aborted by upper layer!\n",
			   t, status, ts->resp, ts->stat);
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3002 3003 3004 3005 3006 3007 3008 3009 3010
		pm8001_ccb_task_free(pm8001_ha, t, ccb, tag);
	} else {
		spin_unlock_irqrestore(&t->task_state_lock, flags);
		pm8001_ccb_task_free(pm8001_ha, t, ccb, tag);
		mb();/* in order to force CPU ordering */
		t->task_done(t);
	}
}

3011 3012
void pm8001_mpi_set_dev_state_resp(struct pm8001_hba_info *pm8001_ha,
		void *piomb)
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3013 3014 3015 3016 3017 3018 3019 3020
{
	struct set_dev_state_resp *pPayload =
		(struct set_dev_state_resp *)(piomb + 4);
	u32 tag = le32_to_cpu(pPayload->tag);
	struct pm8001_ccb_info *ccb = &pm8001_ha->ccb_info[tag];
	struct pm8001_device *pm8001_dev = ccb->device;
	u32 status = le32_to_cpu(pPayload->status);
	u32 device_id = le32_to_cpu(pPayload->device_id);
3021 3022
	u8 pds = le32_to_cpu(pPayload->pds_nds) & PDS_BITS;
	u8 nds = le32_to_cpu(pPayload->pds_nds) & NDS_BITS;
3023 3024
	pm8001_dbg(pm8001_ha, MSG, "Set device id = 0x%x state from 0x%x to 0x%x status = 0x%x!\n",
		   device_id, pds, nds, status);
J
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3025 3026 3027
	complete(pm8001_dev->setds_completion);
	ccb->task = NULL;
	ccb->ccb_tag = 0xFFFFFFFF;
3028
	pm8001_tag_free(pm8001_ha, tag);
J
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3029 3030
}

3031
void pm8001_mpi_set_nvmd_resp(struct pm8001_hba_info *pm8001_ha, void *piomb)
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3032 3033 3034 3035 3036 3037 3038
{
	struct get_nvm_data_resp *pPayload =
		(struct get_nvm_data_resp *)(piomb + 4);
	u32 tag = le32_to_cpu(pPayload->tag);
	struct pm8001_ccb_info *ccb = &pm8001_ha->ccb_info[tag];
	u32 dlen_status = le32_to_cpu(pPayload->dlen_status);
	complete(pm8001_ha->nvmd_completion);
3039
	pm8001_dbg(pm8001_ha, MSG, "Set nvm data complete!\n");
J
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3040
	if ((dlen_status & NVMD_STAT) != 0) {
3041 3042
		pm8001_dbg(pm8001_ha, FAIL, "Set nvm data error %x\n",
				dlen_status);
J
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3043 3044 3045
	}
	ccb->task = NULL;
	ccb->ccb_tag = 0xFFFFFFFF;
3046
	pm8001_tag_free(pm8001_ha, tag);
J
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3047 3048
}

3049 3050
void
pm8001_mpi_get_nvmd_resp(struct pm8001_hba_info *pm8001_ha, void *piomb)
J
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3051
{
3052
	struct fw_control_ex    *fw_control_context;
J
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3053 3054 3055 3056 3057 3058 3059 3060
	struct get_nvm_data_resp *pPayload =
		(struct get_nvm_data_resp *)(piomb + 4);
	u32 tag = le32_to_cpu(pPayload->tag);
	struct pm8001_ccb_info *ccb = &pm8001_ha->ccb_info[tag];
	u32 dlen_status = le32_to_cpu(pPayload->dlen_status);
	u32 ir_tds_bn_dps_das_nvm =
		le32_to_cpu(pPayload->ir_tda_bn_dps_das_nvm);
	void *virt_addr = pm8001_ha->memoryMap.region[NVMD].virt_ptr;
3061
	fw_control_context = ccb->fw_control_context;
J
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3062

3063
	pm8001_dbg(pm8001_ha, MSG, "Get nvm data complete!\n");
J
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3064
	if ((dlen_status & NVMD_STAT) != 0) {
3065 3066
		pm8001_dbg(pm8001_ha, FAIL, "Get nvm data error %x\n",
				dlen_status);
J
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3067
		complete(pm8001_ha->nvmd_completion);
3068 3069 3070 3071 3072 3073
		/* We should free tag during failure also, the tag is not being
		 * freed by requesting path anywhere.
		 */
		ccb->task = NULL;
		ccb->ccb_tag = 0xFFFFFFFF;
		pm8001_tag_free(pm8001_ha, tag);
J
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3074 3075 3076 3077
		return;
	}
	if (ir_tds_bn_dps_das_nvm & IPMode) {
		/* indirect mode - IR bit set */
3078
		pm8001_dbg(pm8001_ha, MSG, "Get NVMD success, IR=1\n");
J
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3079 3080 3081 3082 3083
		if ((ir_tds_bn_dps_das_nvm & NVMD_TYPE) == TWI_DEVICE) {
			if (ir_tds_bn_dps_das_nvm == 0x80a80200) {
				memcpy(pm8001_ha->sas_addr,
				      ((u8 *)virt_addr + 4),
				       SAS_ADDR_SIZE);
3084
				pm8001_dbg(pm8001_ha, MSG, "Get SAS address from VPD successfully!\n");
J
jack wang 已提交
3085 3086 3087 3088 3089 3090 3091 3092 3093 3094
			}
		} else if (((ir_tds_bn_dps_das_nvm & NVMD_TYPE) == C_SEEPROM)
			|| ((ir_tds_bn_dps_das_nvm & NVMD_TYPE) == VPD_FLASH) ||
			((ir_tds_bn_dps_das_nvm & NVMD_TYPE) == EXPAN_ROM)) {
				;
		} else if (((ir_tds_bn_dps_das_nvm & NVMD_TYPE) == AAP1_RDUMP)
			|| ((ir_tds_bn_dps_das_nvm & NVMD_TYPE) == IOP_RDUMP)) {
			;
		} else {
			/* Should not be happened*/
3095 3096 3097
			pm8001_dbg(pm8001_ha, MSG,
				   "(IR=1)Wrong Device type 0x%x\n",
				   ir_tds_bn_dps_das_nvm);
J
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3098 3099
		}
	} else /* direct mode */{
3100 3101 3102
		pm8001_dbg(pm8001_ha, MSG,
			   "Get NVMD success, IR=0, dataLen=%d\n",
			   (dlen_status & NVMD_LEN) >> 24);
J
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3103
	}
3104 3105 3106 3107 3108 3109
	/* Though fw_control_context is freed below, usrAddr still needs
	 * to be updated as this holds the response to the request function
	 */
	memcpy(fw_control_context->usrAddr,
		pm8001_ha->memoryMap.region[NVMD].virt_ptr,
		fw_control_context->len);
3110
	kfree(ccb->fw_control_context);
3111 3112 3113 3114 3115
	/* To avoid race condition, complete should be
	 * called after the message is copied to
	 * fw_control_context->usrAddr
	 */
	complete(pm8001_ha->nvmd_completion);
3116
	pm8001_dbg(pm8001_ha, MSG, "Set nvm data complete!\n");
J
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3117 3118
	ccb->task = NULL;
	ccb->ccb_tag = 0xFFFFFFFF;
3119
	pm8001_tag_free(pm8001_ha, tag);
J
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3120 3121
}

3122
int pm8001_mpi_local_phy_ctl(struct pm8001_hba_info *pm8001_ha, void *piomb)
J
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3123
{
3124
	u32 tag;
J
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3125 3126 3127 3128 3129
	struct local_phy_ctl_resp *pPayload =
		(struct local_phy_ctl_resp *)(piomb + 4);
	u32 status = le32_to_cpu(pPayload->status);
	u32 phy_id = le32_to_cpu(pPayload->phyop_phyid) & ID_BITS;
	u32 phy_op = le32_to_cpu(pPayload->phyop_phyid) & OP_BITS;
3130
	tag = le32_to_cpu(pPayload->tag);
J
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3131
	if (status != 0) {
3132 3133 3134
		pm8001_dbg(pm8001_ha, MSG,
			   "%x phy execute %x phy op failed!\n",
			   phy_id, phy_op);
3135
	} else {
3136 3137 3138
		pm8001_dbg(pm8001_ha, MSG,
			   "%x phy execute %x phy op success!\n",
			   phy_id, phy_op);
3139 3140 3141 3142 3143 3144
		pm8001_ha->phy[phy_id].reset_success = true;
	}
	if (pm8001_ha->phy[phy_id].enable_completion) {
		complete(pm8001_ha->phy[phy_id].enable_completion);
		pm8001_ha->phy[phy_id].enable_completion = NULL;
	}
3145
	pm8001_tag_free(pm8001_ha, tag);
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3146 3147 3148 3149 3150 3151 3152 3153 3154 3155 3156 3157 3158 3159
	return 0;
}

/**
 * pm8001_bytes_dmaed - one of the interface function communication with libsas
 * @pm8001_ha: our hba card information
 * @i: which phy that received the event.
 *
 * when HBA driver received the identify done event or initiate FIS received
 * event(for SATA), it will invoke this function to notify the sas layer that
 * the sas toplogy has formed, please discover the the whole sas domain,
 * while receive a broadcast(change) primitive just tell the sas
 * layer to discover the changed domain rather than the whole domain.
 */
3160
void pm8001_bytes_dmaed(struct pm8001_hba_info *pm8001_ha, int i)
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3161 3162 3163 3164 3165 3166 3167 3168 3169 3170 3171 3172 3173 3174 3175 3176 3177 3178 3179 3180 3181 3182 3183 3184
{
	struct pm8001_phy *phy = &pm8001_ha->phy[i];
	struct asd_sas_phy *sas_phy = &phy->sas_phy;
	if (!phy->phy_attached)
		return;

	if (sas_phy->phy) {
		struct sas_phy *sphy = sas_phy->phy;
		sphy->negotiated_linkrate = sas_phy->linkrate;
		sphy->minimum_linkrate = phy->minimum_linkrate;
		sphy->minimum_linkrate_hw = SAS_LINK_RATE_1_5_GBPS;
		sphy->maximum_linkrate = phy->maximum_linkrate;
		sphy->maximum_linkrate_hw = phy->maximum_linkrate;
	}

	if (phy->phy_type & PORT_TYPE_SAS) {
		struct sas_identify_frame *id;
		id = (struct sas_identify_frame *)phy->frame_rcvd;
		id->dev_type = phy->identify.device_type;
		id->initiator_bits = SAS_PROTOCOL_ALL;
		id->target_bits = phy->identify.target_port_protocols;
	} else if (phy->phy_type & PORT_TYPE_SATA) {
		/*Nothing*/
	}
3185
	pm8001_dbg(pm8001_ha, MSG, "phy %d byte dmaded.\n", i);
J
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3186 3187

	sas_phy->frame_rcvd_size = phy->frame_rcvd_size;
3188
	sas_notify_port_event(sas_phy, PORTE_BYTES_DMAED, GFP_ATOMIC);
J
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3189 3190 3191
}

/* Get the link rate speed  */
3192
void pm8001_get_lrate_mode(struct pm8001_phy *phy, u8 link_rate)
J
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3193 3194 3195 3196
{
	struct sas_phy *sas_phy = phy->sas_phy.phy;

	switch (link_rate) {
V
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3197 3198 3199 3200
	case PHY_SPEED_120:
		phy->sas_phy.linkrate = SAS_LINK_RATE_12_0_GBPS;
		phy->sas_phy.phy->negotiated_linkrate = SAS_LINK_RATE_12_0_GBPS;
		break;
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3201 3202 3203 3204 3205 3206 3207 3208 3209 3210 3211 3212 3213 3214 3215 3216 3217 3218 3219 3220 3221 3222 3223 3224 3225 3226 3227 3228 3229 3230 3231 3232
	case PHY_SPEED_60:
		phy->sas_phy.linkrate = SAS_LINK_RATE_6_0_GBPS;
		phy->sas_phy.phy->negotiated_linkrate = SAS_LINK_RATE_6_0_GBPS;
		break;
	case PHY_SPEED_30:
		phy->sas_phy.linkrate = SAS_LINK_RATE_3_0_GBPS;
		phy->sas_phy.phy->negotiated_linkrate = SAS_LINK_RATE_3_0_GBPS;
		break;
	case PHY_SPEED_15:
		phy->sas_phy.linkrate = SAS_LINK_RATE_1_5_GBPS;
		phy->sas_phy.phy->negotiated_linkrate = SAS_LINK_RATE_1_5_GBPS;
		break;
	}
	sas_phy->negotiated_linkrate = phy->sas_phy.linkrate;
	sas_phy->maximum_linkrate_hw = SAS_LINK_RATE_6_0_GBPS;
	sas_phy->minimum_linkrate_hw = SAS_LINK_RATE_1_5_GBPS;
	sas_phy->maximum_linkrate = SAS_LINK_RATE_6_0_GBPS;
	sas_phy->minimum_linkrate = SAS_LINK_RATE_1_5_GBPS;
}

/**
 * asd_get_attached_sas_addr -- extract/generate attached SAS address
 * @phy: pointer to asd_phy
 * @sas_addr: pointer to buffer where the SAS address is to be written
 *
 * This function extracts the SAS address from an IDENTIFY frame
 * received.  If OOB is SATA, then a SAS address is generated from the
 * HA tables.
 *
 * LOCKING: the frame_rcvd_lock needs to be held since this parses the frame
 * buffer.
 */
3233
void pm8001_get_attached_sas_addr(struct pm8001_phy *phy,
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	u8 *sas_addr)
{
	if (phy->sas_phy.frame_rcvd[0] == 0x34
		&& phy->sas_phy.oob_mode == SATA_OOB_MODE) {
		struct pm8001_hba_info *pm8001_ha = phy->sas_phy.ha->lldd_ha;
		/* FIS device-to-host */
		u64 addr = be64_to_cpu(*(__be64 *)pm8001_ha->sas_addr);
		addr += phy->sas_phy.id;
		*(__be64 *)sas_addr = cpu_to_be64(addr);
	} else {
		struct sas_identify_frame *idframe =
			(void *) phy->sas_phy.frame_rcvd;
		memcpy(sas_addr, idframe->sas_addr, SAS_ADDR_SIZE);
	}
}

/**
 * pm8001_hw_event_ack_req- For PM8001,some events need to acknowage to FW.
 * @pm8001_ha: our hba card information
 * @Qnum: the outbound queue message number.
 * @SEA: source of event to ack
 * @port_id: port id.
 * @phyId: phy id.
 * @param0: parameter 0.
 * @param1: parameter 1.
 */
static void pm8001_hw_event_ack_req(struct pm8001_hba_info *pm8001_ha,
	u32 Qnum, u32 SEA, u32 port_id, u32 phyId, u32 param0, u32 param1)
{
	struct hw_event_ack_req	 payload;
	u32 opc = OPC_INB_SAS_HW_EVENT_ACK;

	struct inbound_queue_table *circularQ;

	memset((u8 *)&payload, 0, sizeof(payload));
	circularQ = &pm8001_ha->inbnd_q_tbl[Qnum];
3270
	payload.tag = cpu_to_le32(1);
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	payload.sea_phyid_portid = cpu_to_le32(((SEA & 0xFFFF) << 8) |
		((phyId & 0x0F) << 4) | (port_id & 0x0F));
	payload.param0 = cpu_to_le32(param0);
	payload.param1 = cpu_to_le32(param1);
3275 3276
	pm8001_mpi_build_cmd(pm8001_ha, circularQ, opc, &payload,
			sizeof(payload), 0);
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}

static int pm8001_chip_phy_ctl_req(struct pm8001_hba_info *pm8001_ha,
	u32 phyId, u32 phy_op);

/**
 * hw_event_sas_phy_up -FW tells me a SAS phy up event.
 * @pm8001_ha: our hba card information
 * @piomb: IO message buffer
 */
static void
hw_event_sas_phy_up(struct pm8001_hba_info *pm8001_ha, void *piomb)
{
	struct hw_event_resp *pPayload =
		(struct hw_event_resp *)(piomb + 4);
	u32 lr_evt_status_phyid_portid =
		le32_to_cpu(pPayload->lr_evt_status_phyid_portid);
	u8 link_rate =
		(u8)((lr_evt_status_phyid_portid & 0xF0000000) >> 28);
3296
	u8 port_id = (u8)(lr_evt_status_phyid_portid & 0x0000000F);
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	u8 phy_id =
		(u8)((lr_evt_status_phyid_portid & 0x000000F0) >> 4);
3299 3300 3301
	u32 npip_portstate = le32_to_cpu(pPayload->npip_portstate);
	u8 portstate = (u8)(npip_portstate & 0x0000000F);
	struct pm8001_port *port = &pm8001_ha->port[port_id];
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	struct pm8001_phy *phy = &pm8001_ha->phy[phy_id];
	unsigned long flags;
	u8 deviceType = pPayload->sas_identify.dev_type;
3305
	port->port_state =  portstate;
3306
	phy->phy_state = PHY_STATE_LINK_UP_SPC;
3307 3308 3309
	pm8001_dbg(pm8001_ha, MSG,
		   "HW_EVENT_SAS_PHY_UP port id = %d, phy id = %d\n",
		   port_id, phy_id);
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	switch (deviceType) {
	case SAS_PHY_UNUSED:
3313
		pm8001_dbg(pm8001_ha, MSG, "device type no device.\n");
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		break;
	case SAS_END_DEVICE:
3316
		pm8001_dbg(pm8001_ha, MSG, "end device.\n");
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3317 3318
		pm8001_chip_phy_ctl_req(pm8001_ha, phy_id,
			PHY_NOTIFY_ENABLE_SPINUP);
3319
		port->port_attached = 1;
3320
		pm8001_get_lrate_mode(phy, link_rate);
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3321 3322
		break;
	case SAS_EDGE_EXPANDER_DEVICE:
3323
		pm8001_dbg(pm8001_ha, MSG, "expander device.\n");
3324
		port->port_attached = 1;
3325
		pm8001_get_lrate_mode(phy, link_rate);
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3326 3327
		break;
	case SAS_FANOUT_EXPANDER_DEVICE:
3328
		pm8001_dbg(pm8001_ha, MSG, "fanout expander device.\n");
3329
		port->port_attached = 1;
3330
		pm8001_get_lrate_mode(phy, link_rate);
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3331 3332
		break;
	default:
3333 3334
		pm8001_dbg(pm8001_ha, DEVIO, "unknown device type(%x)\n",
			   deviceType);
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		break;
	}
	phy->phy_type |= PORT_TYPE_SAS;
	phy->identify.device_type = deviceType;
	phy->phy_attached = 1;
3340
	if (phy->identify.device_type == SAS_END_DEVICE)
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		phy->identify.target_port_protocols = SAS_PROTOCOL_SSP;
3342
	else if (phy->identify.device_type != SAS_PHY_UNUSED)
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3343 3344
		phy->identify.target_port_protocols = SAS_PROTOCOL_SMP;
	phy->sas_phy.oob_mode = SAS_OOB_MODE;
3345
	sas_notify_phy_event(&phy->sas_phy, PHYE_OOB_DONE, GFP_ATOMIC);
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	spin_lock_irqsave(&phy->sas_phy.frame_rcvd_lock, flags);
	memcpy(phy->frame_rcvd, &pPayload->sas_identify,
		sizeof(struct sas_identify_frame)-4);
	phy->frame_rcvd_size = sizeof(struct sas_identify_frame) - 4;
	pm8001_get_attached_sas_addr(phy, phy->sas_phy.attached_sas_addr);
	spin_unlock_irqrestore(&phy->sas_phy.frame_rcvd_lock, flags);
	if (pm8001_ha->flags == PM8001F_RUN_TIME)
		mdelay(200);/*delay a moment to wait disk to spinup*/
	pm8001_bytes_dmaed(pm8001_ha, phy_id);
}

/**
 * hw_event_sata_phy_up -FW tells me a SATA phy up event.
 * @pm8001_ha: our hba card information
 * @piomb: IO message buffer
 */
static void
hw_event_sata_phy_up(struct pm8001_hba_info *pm8001_ha, void *piomb)
{
	struct hw_event_resp *pPayload =
		(struct hw_event_resp *)(piomb + 4);
	u32 lr_evt_status_phyid_portid =
		le32_to_cpu(pPayload->lr_evt_status_phyid_portid);
	u8 link_rate =
		(u8)((lr_evt_status_phyid_portid & 0xF0000000) >> 28);
3371
	u8 port_id = (u8)(lr_evt_status_phyid_portid & 0x0000000F);
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	u8 phy_id =
		(u8)((lr_evt_status_phyid_portid & 0x000000F0) >> 4);
3374 3375 3376
	u32 npip_portstate = le32_to_cpu(pPayload->npip_portstate);
	u8 portstate = (u8)(npip_portstate & 0x0000000F);
	struct pm8001_port *port = &pm8001_ha->port[port_id];
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	struct pm8001_phy *phy = &pm8001_ha->phy[phy_id];
	unsigned long flags;
3379 3380
	pm8001_dbg(pm8001_ha, DEVIO, "HW_EVENT_SATA_PHY_UP port id = %d, phy id = %d\n",
		   port_id, phy_id);
3381
	port->port_state =  portstate;
3382
	phy->phy_state = PHY_STATE_LINK_UP_SPC;
3383
	port->port_attached = 1;
3384
	pm8001_get_lrate_mode(phy, link_rate);
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	phy->phy_type |= PORT_TYPE_SATA;
	phy->phy_attached = 1;
	phy->sas_phy.oob_mode = SATA_OOB_MODE;
3388
	sas_notify_phy_event(&phy->sas_phy, PHYE_OOB_DONE, GFP_ATOMIC);
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3389 3390 3391 3392 3393
	spin_lock_irqsave(&phy->sas_phy.frame_rcvd_lock, flags);
	memcpy(phy->frame_rcvd, ((u8 *)&pPayload->sata_fis - 4),
		sizeof(struct dev_to_host_fis));
	phy->frame_rcvd_size = sizeof(struct dev_to_host_fis);
	phy->identify.target_port_protocols = SAS_PROTOCOL_SATA;
3394
	phy->identify.device_type = SAS_SATA_DEV;
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3395 3396 3397 3398 3399 3400 3401 3402 3403 3404 3405 3406 3407 3408 3409 3410 3411 3412 3413 3414 3415 3416
	pm8001_get_attached_sas_addr(phy, phy->sas_phy.attached_sas_addr);
	spin_unlock_irqrestore(&phy->sas_phy.frame_rcvd_lock, flags);
	pm8001_bytes_dmaed(pm8001_ha, phy_id);
}

/**
 * hw_event_phy_down -we should notify the libsas the phy is down.
 * @pm8001_ha: our hba card information
 * @piomb: IO message buffer
 */
static void
hw_event_phy_down(struct pm8001_hba_info *pm8001_ha, void *piomb)
{
	struct hw_event_resp *pPayload =
		(struct hw_event_resp *)(piomb + 4);
	u32 lr_evt_status_phyid_portid =
		le32_to_cpu(pPayload->lr_evt_status_phyid_portid);
	u8 port_id = (u8)(lr_evt_status_phyid_portid & 0x0000000F);
	u8 phy_id =
		(u8)((lr_evt_status_phyid_portid & 0x000000F0) >> 4);
	u32 npip_portstate = le32_to_cpu(pPayload->npip_portstate);
	u8 portstate = (u8)(npip_portstate & 0x0000000F);
3417 3418 3419 3420 3421 3422 3423
	struct pm8001_port *port = &pm8001_ha->port[port_id];
	struct pm8001_phy *phy = &pm8001_ha->phy[phy_id];
	port->port_state =  portstate;
	phy->phy_type = 0;
	phy->identify.device_type = 0;
	phy->phy_attached = 0;
	memset(&phy->dev_sas_addr, 0, SAS_ADDR_SIZE);
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	switch (portstate) {
	case PORT_VALID:
		break;
	case PORT_INVALID:
3428 3429 3430 3431
		pm8001_dbg(pm8001_ha, MSG, " PortInvalid portID %d\n",
			   port_id);
		pm8001_dbg(pm8001_ha, MSG,
			   " Last phy Down and port invalid\n");
3432
		port->port_attached = 0;
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3433 3434 3435 3436
		pm8001_hw_event_ack_req(pm8001_ha, 0, HW_EVENT_PHY_DOWN,
			port_id, phy_id, 0, 0);
		break;
	case PORT_IN_RESET:
3437 3438
		pm8001_dbg(pm8001_ha, MSG, " Port In Reset portID %d\n",
			   port_id);
J
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3439 3440
		break;
	case PORT_NOT_ESTABLISHED:
3441 3442
		pm8001_dbg(pm8001_ha, MSG,
			   " phy Down and PORT_NOT_ESTABLISHED\n");
3443
		port->port_attached = 0;
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3444 3445
		break;
	case PORT_LOSTCOMM:
3446 3447 3448
		pm8001_dbg(pm8001_ha, MSG, " phy Down and PORT_LOSTCOMM\n");
		pm8001_dbg(pm8001_ha, MSG,
			   " Last phy Down and port invalid\n");
3449
		port->port_attached = 0;
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3450 3451 3452 3453
		pm8001_hw_event_ack_req(pm8001_ha, 0, HW_EVENT_PHY_DOWN,
			port_id, phy_id, 0, 0);
		break;
	default:
3454
		port->port_attached = 0;
3455 3456
		pm8001_dbg(pm8001_ha, DEVIO, " phy Down and(default) = %x\n",
			   portstate);
J
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3457 3458 3459 3460 3461 3462
		break;

	}
}

/**
3463
 * pm8001_mpi_reg_resp -process register device ID response.
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3464 3465 3466 3467 3468 3469 3470 3471
 * @pm8001_ha: our hba card information
 * @piomb: IO message buffer
 *
 * when sas layer find a device it will notify LLDD, then the driver register
 * the domain device to FW, this event is the return device ID which the FW
 * has assigned, from now,inter-communication with FW is no longer using the
 * SAS address, use device ID which FW assigned.
 */
3472
int pm8001_mpi_reg_resp(struct pm8001_hba_info *pm8001_ha, void *piomb)
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3473 3474 3475 3476 3477 3478 3479 3480 3481 3482
{
	u32 status;
	u32 device_id;
	u32 htag;
	struct pm8001_ccb_info *ccb;
	struct pm8001_device *pm8001_dev;
	struct dev_reg_resp *registerRespPayload =
		(struct dev_reg_resp *)(piomb + 4);

	htag = le32_to_cpu(registerRespPayload->tag);
3483
	ccb = &pm8001_ha->ccb_info[htag];
J
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3484 3485 3486
	pm8001_dev = ccb->device;
	status = le32_to_cpu(registerRespPayload->status);
	device_id = le32_to_cpu(registerRespPayload->device_id);
3487 3488
	pm8001_dbg(pm8001_ha, MSG, " register device is status = %d\n",
		   status);
J
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3489 3490
	switch (status) {
	case DEVREG_SUCCESS:
3491
		pm8001_dbg(pm8001_ha, MSG, "DEVREG_SUCCESS\n");
J
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3492 3493 3494
		pm8001_dev->device_id = device_id;
		break;
	case DEVREG_FAILURE_OUT_OF_RESOURCE:
3495
		pm8001_dbg(pm8001_ha, MSG, "DEVREG_FAILURE_OUT_OF_RESOURCE\n");
J
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3496 3497
		break;
	case DEVREG_FAILURE_DEVICE_ALREADY_REGISTERED:
3498 3499
		pm8001_dbg(pm8001_ha, MSG,
			   "DEVREG_FAILURE_DEVICE_ALREADY_REGISTERED\n");
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3500 3501
		break;
	case DEVREG_FAILURE_INVALID_PHY_ID:
3502
		pm8001_dbg(pm8001_ha, MSG, "DEVREG_FAILURE_INVALID_PHY_ID\n");
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3503 3504
		break;
	case DEVREG_FAILURE_PHY_ID_ALREADY_REGISTERED:
3505 3506
		pm8001_dbg(pm8001_ha, MSG,
			   "DEVREG_FAILURE_PHY_ID_ALREADY_REGISTERED\n");
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3507 3508
		break;
	case DEVREG_FAILURE_PORT_ID_OUT_OF_RANGE:
3509 3510
		pm8001_dbg(pm8001_ha, MSG,
			   "DEVREG_FAILURE_PORT_ID_OUT_OF_RANGE\n");
J
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3511 3512
		break;
	case DEVREG_FAILURE_PORT_NOT_VALID_STATE:
3513 3514
		pm8001_dbg(pm8001_ha, MSG,
			   "DEVREG_FAILURE_PORT_NOT_VALID_STATE\n");
J
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3515 3516
		break;
	case DEVREG_FAILURE_DEVICE_TYPE_NOT_VALID:
3517 3518
		pm8001_dbg(pm8001_ha, MSG,
			   "DEVREG_FAILURE_DEVICE_TYPE_NOT_VALID\n");
J
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3519 3520
		break;
	default:
3521 3522
		pm8001_dbg(pm8001_ha, MSG,
			   "DEVREG_FAILURE_DEVICE_TYPE_NOT_SUPPORTED\n");
J
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3523 3524 3525 3526 3527
		break;
	}
	complete(pm8001_dev->dcompletion);
	ccb->task = NULL;
	ccb->ccb_tag = 0xFFFFFFFF;
3528
	pm8001_tag_free(pm8001_ha, htag);
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3529 3530 3531
	return 0;
}

3532
int pm8001_mpi_dereg_resp(struct pm8001_hba_info *pm8001_ha, void *piomb)
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3533 3534 3535 3536 3537 3538 3539 3540 3541
{
	u32 status;
	u32 device_id;
	struct dev_reg_resp *registerRespPayload =
		(struct dev_reg_resp *)(piomb + 4);

	status = le32_to_cpu(registerRespPayload->status);
	device_id = le32_to_cpu(registerRespPayload->device_id);
	if (status != 0)
3542 3543 3544
		pm8001_dbg(pm8001_ha, MSG,
			   " deregister device failed ,status = %x, device_id = %x\n",
			   status, device_id);
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3545 3546 3547
	return 0;
}

3548 3549 3550 3551 3552 3553 3554
/**
 * fw_flash_update_resp - Response from FW for flash update command.
 * @pm8001_ha: our hba card information
 * @piomb: IO message buffer
 */
int pm8001_mpi_fw_flash_update_resp(struct pm8001_hba_info *pm8001_ha,
		void *piomb)
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3555 3556 3557 3558
{
	u32 status;
	struct fw_flash_Update_resp *ppayload =
		(struct fw_flash_Update_resp *)(piomb + 4);
3559
	u32 tag = le32_to_cpu(ppayload->tag);
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3560 3561 3562 3563
	struct pm8001_ccb_info *ccb = &pm8001_ha->ccb_info[tag];
	status = le32_to_cpu(ppayload->status);
	switch (status) {
	case FLASH_UPDATE_COMPLETE_PENDING_REBOOT:
3564 3565
		pm8001_dbg(pm8001_ha, MSG,
			   ": FLASH_UPDATE_COMPLETE_PENDING_REBOOT\n");
J
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3566 3567
		break;
	case FLASH_UPDATE_IN_PROGRESS:
3568
		pm8001_dbg(pm8001_ha, MSG, ": FLASH_UPDATE_IN_PROGRESS\n");
J
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3569 3570
		break;
	case FLASH_UPDATE_HDR_ERR:
3571
		pm8001_dbg(pm8001_ha, MSG, ": FLASH_UPDATE_HDR_ERR\n");
J
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3572 3573
		break;
	case FLASH_UPDATE_OFFSET_ERR:
3574
		pm8001_dbg(pm8001_ha, MSG, ": FLASH_UPDATE_OFFSET_ERR\n");
J
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3575 3576
		break;
	case FLASH_UPDATE_CRC_ERR:
3577
		pm8001_dbg(pm8001_ha, MSG, ": FLASH_UPDATE_CRC_ERR\n");
J
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3578 3579
		break;
	case FLASH_UPDATE_LENGTH_ERR:
3580
		pm8001_dbg(pm8001_ha, MSG, ": FLASH_UPDATE_LENGTH_ERR\n");
J
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3581 3582
		break;
	case FLASH_UPDATE_HW_ERR:
3583
		pm8001_dbg(pm8001_ha, MSG, ": FLASH_UPDATE_HW_ERR\n");
J
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3584 3585
		break;
	case FLASH_UPDATE_DNLD_NOT_SUPPORTED:
3586 3587
		pm8001_dbg(pm8001_ha, MSG,
			   ": FLASH_UPDATE_DNLD_NOT_SUPPORTED\n");
J
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3588 3589
		break;
	case FLASH_UPDATE_DISABLED:
3590
		pm8001_dbg(pm8001_ha, MSG, ": FLASH_UPDATE_DISABLED\n");
J
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3591 3592
		break;
	default:
3593 3594
		pm8001_dbg(pm8001_ha, DEVIO, "No matched status = %d\n",
			   status);
J
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3595 3596
		break;
	}
3597
	kfree(ccb->fw_control_context);
J
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3598 3599
	ccb->task = NULL;
	ccb->ccb_tag = 0xFFFFFFFF;
3600
	pm8001_tag_free(pm8001_ha, tag);
3601
	complete(pm8001_ha->nvmd_completion);
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3602 3603 3604
	return 0;
}

3605
int pm8001_mpi_general_event(struct pm8001_hba_info *pm8001_ha , void *piomb)
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3606 3607 3608 3609 3610 3611
{
	u32 status;
	int i;
	struct general_event_resp *pPayload =
		(struct general_event_resp *)(piomb + 4);
	status = le32_to_cpu(pPayload->status);
3612
	pm8001_dbg(pm8001_ha, MSG, " status = 0x%x\n", status);
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3613
	for (i = 0; i < GENERAL_EVENT_PAYLOAD; i++)
3614 3615 3616
		pm8001_dbg(pm8001_ha, MSG, "inb_IOMB_payload[0x%x] 0x%x,\n",
			   i,
			   pPayload->inb_IOMB_payload[i]);
J
jack wang 已提交
3617 3618 3619
	return 0;
}

3620
int pm8001_mpi_task_abort_resp(struct pm8001_hba_info *pm8001_ha, void *piomb)
J
jack wang 已提交
3621 3622 3623 3624 3625 3626 3627
{
	struct sas_task *t;
	struct pm8001_ccb_info *ccb;
	unsigned long flags;
	u32 status ;
	u32 tag, scp;
	struct task_status_struct *ts;
3628
	struct pm8001_device *pm8001_dev;
J
jack wang 已提交
3629 3630 3631 3632 3633 3634

	struct task_abort_resp *pPayload =
		(struct task_abort_resp *)(piomb + 4);

	status = le32_to_cpu(pPayload->status);
	tag = le32_to_cpu(pPayload->tag);
3635
	if (!tag) {
3636
		pm8001_dbg(pm8001_ha, FAIL, " TAG NULL. RETURNING !!!\n");
3637 3638 3639
		return -1;
	}

J
jack wang 已提交
3640
	scp = le32_to_cpu(pPayload->scp);
3641 3642
	ccb = &pm8001_ha->ccb_info[tag];
	t = ccb->task;
3643 3644 3645
	pm8001_dev = ccb->device; /* retrieve device */

	if (!t)	{
3646
		pm8001_dbg(pm8001_ha, FAIL, " TASK NULL. RETURNING !!!\n");
3647
		return -1;
3648
	}
3649
	ts = &t->task_status;
J
jack wang 已提交
3650
	if (status != 0)
3651 3652
		pm8001_dbg(pm8001_ha, FAIL, "task abort failed status 0x%x ,tag = 0x%x, scp= 0x%x\n",
			   status, tag, scp);
J
jack wang 已提交
3653 3654
	switch (status) {
	case IO_SUCCESS:
3655
		pm8001_dbg(pm8001_ha, EH, "IO_SUCCESS\n");
J
jack wang 已提交
3656
		ts->resp = SAS_TASK_COMPLETE;
3657
		ts->stat = SAM_STAT_GOOD;
J
jack wang 已提交
3658 3659
		break;
	case IO_NOT_VALID:
3660
		pm8001_dbg(pm8001_ha, EH, "IO_NOT_VALID\n");
J
jack wang 已提交
3661 3662 3663 3664 3665 3666 3667 3668
		ts->resp = TMF_RESP_FUNC_FAILED;
		break;
	}
	spin_lock_irqsave(&t->task_state_lock, flags);
	t->task_state_flags &= ~SAS_TASK_STATE_PENDING;
	t->task_state_flags &= ~SAS_TASK_AT_INITIATOR;
	t->task_state_flags |= SAS_TASK_STATE_DONE;
	spin_unlock_irqrestore(&t->task_state_lock, flags);
3669
	pm8001_ccb_task_free(pm8001_ha, t, ccb, tag);
J
jack wang 已提交
3670
	mb();
3671

3672
	if (pm8001_dev->id & NCQ_ABORT_ALL_FLAG) {
3673 3674 3675 3676 3677 3678 3679
		pm8001_tag_free(pm8001_ha, tag);
		sas_free_task(t);
		/* clear the flag */
		pm8001_dev->id &= 0xBFFFFFFF;
	} else
		t->task_done(t);

J
jack wang 已提交
3680 3681 3682 3683 3684 3685 3686 3687 3688 3689 3690 3691 3692 3693 3694 3695 3696 3697 3698 3699 3700 3701 3702 3703 3704
	return 0;
}

/**
 * mpi_hw_event -The hw event has come.
 * @pm8001_ha: our hba card information
 * @piomb: IO message buffer
 */
static int mpi_hw_event(struct pm8001_hba_info *pm8001_ha, void* piomb)
{
	unsigned long flags;
	struct hw_event_resp *pPayload =
		(struct hw_event_resp *)(piomb + 4);
	u32 lr_evt_status_phyid_portid =
		le32_to_cpu(pPayload->lr_evt_status_phyid_portid);
	u8 port_id = (u8)(lr_evt_status_phyid_portid & 0x0000000F);
	u8 phy_id =
		(u8)((lr_evt_status_phyid_portid & 0x000000F0) >> 4);
	u16 eventType =
		(u16)((lr_evt_status_phyid_portid & 0x00FFFF00) >> 8);
	u8 status =
		(u8)((lr_evt_status_phyid_portid & 0x0F000000) >> 24);
	struct sas_ha_struct *sas_ha = pm8001_ha->sas;
	struct pm8001_phy *phy = &pm8001_ha->phy[phy_id];
	struct asd_sas_phy *sas_phy = sas_ha->sas_phy[phy_id];
3705 3706 3707
	pm8001_dbg(pm8001_ha, DEVIO,
		   "SPC HW event for portid:%d, phyid:%d, event:%x, status:%x\n",
		   port_id, phy_id, eventType, status);
J
jack wang 已提交
3708 3709
	switch (eventType) {
	case HW_EVENT_PHY_START_STATUS:
3710 3711
		pm8001_dbg(pm8001_ha, MSG, "HW_EVENT_PHY_START_STATUS status = %x\n",
			   status);
J
jack wang 已提交
3712 3713
		if (status == 0) {
			phy->phy_state = 1;
3714 3715
			if (pm8001_ha->flags == PM8001F_RUN_TIME &&
					phy->enable_completion != NULL)
J
jack wang 已提交
3716 3717 3718 3719
				complete(phy->enable_completion);
		}
		break;
	case HW_EVENT_SAS_PHY_UP:
3720
		pm8001_dbg(pm8001_ha, MSG, "HW_EVENT_PHY_START_STATUS\n");
J
jack wang 已提交
3721 3722 3723
		hw_event_sas_phy_up(pm8001_ha, piomb);
		break;
	case HW_EVENT_SATA_PHY_UP:
3724
		pm8001_dbg(pm8001_ha, MSG, "HW_EVENT_SATA_PHY_UP\n");
J
jack wang 已提交
3725 3726 3727
		hw_event_sata_phy_up(pm8001_ha, piomb);
		break;
	case HW_EVENT_PHY_STOP_STATUS:
3728 3729
		pm8001_dbg(pm8001_ha, MSG, "HW_EVENT_PHY_STOP_STATUS status = %x\n",
			   status);
J
jack wang 已提交
3730 3731 3732 3733
		if (status == 0)
			phy->phy_state = 0;
		break;
	case HW_EVENT_SATA_SPINUP_HOLD:
3734
		pm8001_dbg(pm8001_ha, MSG, "HW_EVENT_SATA_SPINUP_HOLD\n");
3735
		sas_notify_phy_event(&phy->sas_phy, PHYE_SPINUP_HOLD,
3736
			GFP_ATOMIC);
J
jack wang 已提交
3737 3738
		break;
	case HW_EVENT_PHY_DOWN:
3739
		pm8001_dbg(pm8001_ha, MSG, "HW_EVENT_PHY_DOWN\n");
3740
		sas_notify_phy_event(&phy->sas_phy, PHYE_LOSS_OF_SIGNAL,
3741
			GFP_ATOMIC);
J
jack wang 已提交
3742 3743 3744 3745 3746
		phy->phy_attached = 0;
		phy->phy_state = 0;
		hw_event_phy_down(pm8001_ha, piomb);
		break;
	case HW_EVENT_PORT_INVALID:
3747
		pm8001_dbg(pm8001_ha, MSG, "HW_EVENT_PORT_INVALID\n");
J
jack wang 已提交
3748 3749
		sas_phy_disconnected(sas_phy);
		phy->phy_attached = 0;
3750
		sas_notify_port_event(sas_phy, PORTE_LINK_RESET_ERR,
3751
			GFP_ATOMIC);
J
jack wang 已提交
3752 3753 3754 3755
		break;
	/* the broadcast change primitive received, tell the LIBSAS this event
	to revalidate the sas domain*/
	case HW_EVENT_BROADCAST_CHANGE:
3756
		pm8001_dbg(pm8001_ha, MSG, "HW_EVENT_BROADCAST_CHANGE\n");
J
jack wang 已提交
3757 3758 3759 3760 3761
		pm8001_hw_event_ack_req(pm8001_ha, 0, HW_EVENT_BROADCAST_CHANGE,
			port_id, phy_id, 1, 0);
		spin_lock_irqsave(&sas_phy->sas_prim_lock, flags);
		sas_phy->sas_prim = HW_EVENT_BROADCAST_CHANGE;
		spin_unlock_irqrestore(&sas_phy->sas_prim_lock, flags);
3762
		sas_notify_port_event(sas_phy, PORTE_BROADCAST_RCVD,
3763
			GFP_ATOMIC);
J
jack wang 已提交
3764 3765
		break;
	case HW_EVENT_PHY_ERROR:
3766
		pm8001_dbg(pm8001_ha, MSG, "HW_EVENT_PHY_ERROR\n");
J
jack wang 已提交
3767 3768
		sas_phy_disconnected(&phy->sas_phy);
		phy->phy_attached = 0;
3769
		sas_notify_phy_event(&phy->sas_phy, PHYE_OOB_ERROR, GFP_ATOMIC);
J
jack wang 已提交
3770 3771
		break;
	case HW_EVENT_BROADCAST_EXP:
3772
		pm8001_dbg(pm8001_ha, MSG, "HW_EVENT_BROADCAST_EXP\n");
J
jack wang 已提交
3773 3774 3775
		spin_lock_irqsave(&sas_phy->sas_prim_lock, flags);
		sas_phy->sas_prim = HW_EVENT_BROADCAST_EXP;
		spin_unlock_irqrestore(&sas_phy->sas_prim_lock, flags);
3776
		sas_notify_port_event(sas_phy, PORTE_BROADCAST_RCVD,
3777
			GFP_ATOMIC);
J
jack wang 已提交
3778 3779
		break;
	case HW_EVENT_LINK_ERR_INVALID_DWORD:
3780 3781
		pm8001_dbg(pm8001_ha, MSG,
			   "HW_EVENT_LINK_ERR_INVALID_DWORD\n");
J
jack wang 已提交
3782 3783 3784 3785
		pm8001_hw_event_ack_req(pm8001_ha, 0,
			HW_EVENT_LINK_ERR_INVALID_DWORD, port_id, phy_id, 0, 0);
		sas_phy_disconnected(sas_phy);
		phy->phy_attached = 0;
3786
		sas_notify_port_event(sas_phy, PORTE_LINK_RESET_ERR,
3787
			GFP_ATOMIC);
J
jack wang 已提交
3788 3789
		break;
	case HW_EVENT_LINK_ERR_DISPARITY_ERROR:
3790 3791
		pm8001_dbg(pm8001_ha, MSG,
			   "HW_EVENT_LINK_ERR_DISPARITY_ERROR\n");
J
jack wang 已提交
3792 3793 3794 3795 3796
		pm8001_hw_event_ack_req(pm8001_ha, 0,
			HW_EVENT_LINK_ERR_DISPARITY_ERROR,
			port_id, phy_id, 0, 0);
		sas_phy_disconnected(sas_phy);
		phy->phy_attached = 0;
3797
		sas_notify_port_event(sas_phy, PORTE_LINK_RESET_ERR,
3798
			GFP_ATOMIC);
J
jack wang 已提交
3799 3800
		break;
	case HW_EVENT_LINK_ERR_CODE_VIOLATION:
3801 3802
		pm8001_dbg(pm8001_ha, MSG,
			   "HW_EVENT_LINK_ERR_CODE_VIOLATION\n");
J
jack wang 已提交
3803 3804 3805 3806 3807
		pm8001_hw_event_ack_req(pm8001_ha, 0,
			HW_EVENT_LINK_ERR_CODE_VIOLATION,
			port_id, phy_id, 0, 0);
		sas_phy_disconnected(sas_phy);
		phy->phy_attached = 0;
3808
		sas_notify_port_event(sas_phy, PORTE_LINK_RESET_ERR,
3809
			GFP_ATOMIC);
J
jack wang 已提交
3810 3811
		break;
	case HW_EVENT_LINK_ERR_LOSS_OF_DWORD_SYNCH:
3812 3813
		pm8001_dbg(pm8001_ha, MSG,
			   "HW_EVENT_LINK_ERR_LOSS_OF_DWORD_SYNCH\n");
J
jack wang 已提交
3814 3815 3816 3817 3818
		pm8001_hw_event_ack_req(pm8001_ha, 0,
			HW_EVENT_LINK_ERR_LOSS_OF_DWORD_SYNCH,
			port_id, phy_id, 0, 0);
		sas_phy_disconnected(sas_phy);
		phy->phy_attached = 0;
3819
		sas_notify_port_event(sas_phy, PORTE_LINK_RESET_ERR,
3820
			GFP_ATOMIC);
J
jack wang 已提交
3821 3822
		break;
	case HW_EVENT_MALFUNCTION:
3823
		pm8001_dbg(pm8001_ha, MSG, "HW_EVENT_MALFUNCTION\n");
J
jack wang 已提交
3824 3825
		break;
	case HW_EVENT_BROADCAST_SES:
3826
		pm8001_dbg(pm8001_ha, MSG, "HW_EVENT_BROADCAST_SES\n");
J
jack wang 已提交
3827 3828 3829
		spin_lock_irqsave(&sas_phy->sas_prim_lock, flags);
		sas_phy->sas_prim = HW_EVENT_BROADCAST_SES;
		spin_unlock_irqrestore(&sas_phy->sas_prim_lock, flags);
3830
		sas_notify_port_event(sas_phy, PORTE_BROADCAST_RCVD,
3831
			GFP_ATOMIC);
J
jack wang 已提交
3832 3833
		break;
	case HW_EVENT_INBOUND_CRC_ERROR:
3834
		pm8001_dbg(pm8001_ha, MSG, "HW_EVENT_INBOUND_CRC_ERROR\n");
J
jack wang 已提交
3835 3836 3837 3838 3839
		pm8001_hw_event_ack_req(pm8001_ha, 0,
			HW_EVENT_INBOUND_CRC_ERROR,
			port_id, phy_id, 0, 0);
		break;
	case HW_EVENT_HARD_RESET_RECEIVED:
3840
		pm8001_dbg(pm8001_ha, MSG, "HW_EVENT_HARD_RESET_RECEIVED\n");
3841
		sas_notify_port_event(sas_phy, PORTE_HARD_RESET, GFP_ATOMIC);
J
jack wang 已提交
3842 3843
		break;
	case HW_EVENT_ID_FRAME_TIMEOUT:
3844
		pm8001_dbg(pm8001_ha, MSG, "HW_EVENT_ID_FRAME_TIMEOUT\n");
J
jack wang 已提交
3845 3846
		sas_phy_disconnected(sas_phy);
		phy->phy_attached = 0;
3847
		sas_notify_port_event(sas_phy, PORTE_LINK_RESET_ERR,
3848
			GFP_ATOMIC);
J
jack wang 已提交
3849 3850
		break;
	case HW_EVENT_LINK_ERR_PHY_RESET_FAILED:
3851 3852
		pm8001_dbg(pm8001_ha, MSG,
			   "HW_EVENT_LINK_ERR_PHY_RESET_FAILED\n");
J
jack wang 已提交
3853 3854 3855 3856 3857
		pm8001_hw_event_ack_req(pm8001_ha, 0,
			HW_EVENT_LINK_ERR_PHY_RESET_FAILED,
			port_id, phy_id, 0, 0);
		sas_phy_disconnected(sas_phy);
		phy->phy_attached = 0;
3858
		sas_notify_port_event(sas_phy, PORTE_LINK_RESET_ERR,
3859
			GFP_ATOMIC);
J
jack wang 已提交
3860 3861
		break;
	case HW_EVENT_PORT_RESET_TIMER_TMO:
3862
		pm8001_dbg(pm8001_ha, MSG, "HW_EVENT_PORT_RESET_TIMER_TMO\n");
J
jack wang 已提交
3863 3864
		sas_phy_disconnected(sas_phy);
		phy->phy_attached = 0;
3865
		sas_notify_port_event(sas_phy, PORTE_LINK_RESET_ERR,
3866
			GFP_ATOMIC);
J
jack wang 已提交
3867 3868
		break;
	case HW_EVENT_PORT_RECOVERY_TIMER_TMO:
3869 3870
		pm8001_dbg(pm8001_ha, MSG,
			   "HW_EVENT_PORT_RECOVERY_TIMER_TMO\n");
J
jack wang 已提交
3871 3872
		sas_phy_disconnected(sas_phy);
		phy->phy_attached = 0;
3873
		sas_notify_port_event(sas_phy, PORTE_LINK_RESET_ERR,
3874
			GFP_ATOMIC);
J
jack wang 已提交
3875 3876
		break;
	case HW_EVENT_PORT_RECOVER:
3877
		pm8001_dbg(pm8001_ha, MSG, "HW_EVENT_PORT_RECOVER\n");
J
jack wang 已提交
3878 3879
		break;
	case HW_EVENT_PORT_RESET_COMPLETE:
3880
		pm8001_dbg(pm8001_ha, MSG, "HW_EVENT_PORT_RESET_COMPLETE\n");
J
jack wang 已提交
3881 3882
		break;
	case EVENT_BROADCAST_ASYNCH_EVENT:
3883
		pm8001_dbg(pm8001_ha, MSG, "EVENT_BROADCAST_ASYNCH_EVENT\n");
J
jack wang 已提交
3884 3885
		break;
	default:
3886 3887
		pm8001_dbg(pm8001_ha, DEVIO, "Unknown event type = %x\n",
			   eventType);
J
jack wang 已提交
3888 3889 3890 3891 3892 3893 3894 3895 3896 3897 3898 3899
		break;
	}
	return 0;
}

/**
 * process_one_iomb - process one outbound Queue memory block
 * @pm8001_ha: our hba card information
 * @piomb: IO message buffer
 */
static void process_one_iomb(struct pm8001_hba_info *pm8001_ha, void *piomb)
{
3900 3901
	__le32 pHeader = *(__le32 *)piomb;
	u8 opc = (u8)((le32_to_cpu(pHeader)) & 0xFFF);
J
jack wang 已提交
3902

3903
	pm8001_dbg(pm8001_ha, MSG, "process_one_iomb:\n");
J
jack wang 已提交
3904 3905 3906

	switch (opc) {
	case OPC_OUB_ECHO:
3907
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_ECHO\n");
J
jack wang 已提交
3908 3909
		break;
	case OPC_OUB_HW_EVENT:
3910
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_HW_EVENT\n");
J
jack wang 已提交
3911 3912 3913
		mpi_hw_event(pm8001_ha, piomb);
		break;
	case OPC_OUB_SSP_COMP:
3914
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_SSP_COMP\n");
J
jack wang 已提交
3915 3916 3917
		mpi_ssp_completion(pm8001_ha, piomb);
		break;
	case OPC_OUB_SMP_COMP:
3918
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_SMP_COMP\n");
J
jack wang 已提交
3919 3920 3921
		mpi_smp_completion(pm8001_ha, piomb);
		break;
	case OPC_OUB_LOCAL_PHY_CNTRL:
3922
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_LOCAL_PHY_CNTRL\n");
3923
		pm8001_mpi_local_phy_ctl(pm8001_ha, piomb);
J
jack wang 已提交
3924 3925
		break;
	case OPC_OUB_DEV_REGIST:
3926
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_DEV_REGIST\n");
3927
		pm8001_mpi_reg_resp(pm8001_ha, piomb);
J
jack wang 已提交
3928 3929
		break;
	case OPC_OUB_DEREG_DEV:
3930
		pm8001_dbg(pm8001_ha, MSG, "unregister the device\n");
3931
		pm8001_mpi_dereg_resp(pm8001_ha, piomb);
J
jack wang 已提交
3932 3933
		break;
	case OPC_OUB_GET_DEV_HANDLE:
3934
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_GET_DEV_HANDLE\n");
J
jack wang 已提交
3935 3936
		break;
	case OPC_OUB_SATA_COMP:
3937
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_SATA_COMP\n");
J
jack wang 已提交
3938 3939 3940
		mpi_sata_completion(pm8001_ha, piomb);
		break;
	case OPC_OUB_SATA_EVENT:
3941
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_SATA_EVENT\n");
J
jack wang 已提交
3942 3943 3944
		mpi_sata_event(pm8001_ha, piomb);
		break;
	case OPC_OUB_SSP_EVENT:
3945
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_SSP_EVENT\n");
J
jack wang 已提交
3946 3947 3948
		mpi_ssp_event(pm8001_ha, piomb);
		break;
	case OPC_OUB_DEV_HANDLE_ARRIV:
3949
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_DEV_HANDLE_ARRIV\n");
J
jack wang 已提交
3950 3951 3952
		/*This is for target*/
		break;
	case OPC_OUB_SSP_RECV_EVENT:
3953
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_SSP_RECV_EVENT\n");
J
jack wang 已提交
3954 3955 3956
		/*This is for target*/
		break;
	case OPC_OUB_DEV_INFO:
3957
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_DEV_INFO\n");
J
jack wang 已提交
3958 3959
		break;
	case OPC_OUB_FW_FLASH_UPDATE:
3960
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_FW_FLASH_UPDATE\n");
3961
		pm8001_mpi_fw_flash_update_resp(pm8001_ha, piomb);
J
jack wang 已提交
3962 3963
		break;
	case OPC_OUB_GPIO_RESPONSE:
3964
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_GPIO_RESPONSE\n");
J
jack wang 已提交
3965 3966
		break;
	case OPC_OUB_GPIO_EVENT:
3967
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_GPIO_EVENT\n");
J
jack wang 已提交
3968 3969
		break;
	case OPC_OUB_GENERAL_EVENT:
3970
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_GENERAL_EVENT\n");
3971
		pm8001_mpi_general_event(pm8001_ha, piomb);
J
jack wang 已提交
3972 3973
		break;
	case OPC_OUB_SSP_ABORT_RSP:
3974
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_SSP_ABORT_RSP\n");
3975
		pm8001_mpi_task_abort_resp(pm8001_ha, piomb);
J
jack wang 已提交
3976 3977
		break;
	case OPC_OUB_SATA_ABORT_RSP:
3978
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_SATA_ABORT_RSP\n");
3979
		pm8001_mpi_task_abort_resp(pm8001_ha, piomb);
J
jack wang 已提交
3980 3981
		break;
	case OPC_OUB_SAS_DIAG_MODE_START_END:
3982 3983
		pm8001_dbg(pm8001_ha, MSG,
			   "OPC_OUB_SAS_DIAG_MODE_START_END\n");
J
jack wang 已提交
3984 3985
		break;
	case OPC_OUB_SAS_DIAG_EXECUTE:
3986
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_SAS_DIAG_EXECUTE\n");
J
jack wang 已提交
3987 3988
		break;
	case OPC_OUB_GET_TIME_STAMP:
3989
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_GET_TIME_STAMP\n");
J
jack wang 已提交
3990 3991
		break;
	case OPC_OUB_SAS_HW_EVENT_ACK:
3992
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_SAS_HW_EVENT_ACK\n");
J
jack wang 已提交
3993 3994
		break;
	case OPC_OUB_PORT_CONTROL:
3995
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_PORT_CONTROL\n");
J
jack wang 已提交
3996 3997
		break;
	case OPC_OUB_SMP_ABORT_RSP:
3998
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_SMP_ABORT_RSP\n");
3999
		pm8001_mpi_task_abort_resp(pm8001_ha, piomb);
J
jack wang 已提交
4000 4001
		break;
	case OPC_OUB_GET_NVMD_DATA:
4002
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_GET_NVMD_DATA\n");
4003
		pm8001_mpi_get_nvmd_resp(pm8001_ha, piomb);
J
jack wang 已提交
4004 4005
		break;
	case OPC_OUB_SET_NVMD_DATA:
4006
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_SET_NVMD_DATA\n");
4007
		pm8001_mpi_set_nvmd_resp(pm8001_ha, piomb);
J
jack wang 已提交
4008 4009
		break;
	case OPC_OUB_DEVICE_HANDLE_REMOVAL:
4010
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_DEVICE_HANDLE_REMOVAL\n");
J
jack wang 已提交
4011 4012
		break;
	case OPC_OUB_SET_DEVICE_STATE:
4013
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_SET_DEVICE_STATE\n");
4014
		pm8001_mpi_set_dev_state_resp(pm8001_ha, piomb);
J
jack wang 已提交
4015 4016
		break;
	case OPC_OUB_GET_DEVICE_STATE:
4017
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_GET_DEVICE_STATE\n");
J
jack wang 已提交
4018 4019
		break;
	case OPC_OUB_SET_DEV_INFO:
4020
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_SET_DEV_INFO\n");
J
jack wang 已提交
4021 4022
		break;
	case OPC_OUB_SAS_RE_INITIALIZE:
4023
		pm8001_dbg(pm8001_ha, MSG, "OPC_OUB_SAS_RE_INITIALIZE\n");
J
jack wang 已提交
4024 4025
		break;
	default:
4026 4027 4028
		pm8001_dbg(pm8001_ha, DEVIO,
			   "Unknown outbound Queue IOMB OPC = %x\n",
			   opc);
J
jack wang 已提交
4029 4030 4031 4032
		break;
	}
}

4033
static int process_oq(struct pm8001_hba_info *pm8001_ha, u8 vec)
J
jack wang 已提交
4034 4035 4036
{
	struct outbound_queue_table *circularQ;
	void *pMsg1 = NULL;
4037
	u8 bc;
4038
	u32 ret = MPI_IO_STATUS_FAIL;
4039
	unsigned long flags;
J
jack wang 已提交
4040

4041
	spin_lock_irqsave(&pm8001_ha->lock, flags);
4042
	circularQ = &pm8001_ha->outbnd_q_tbl[vec];
J
jack wang 已提交
4043
	do {
4044
		ret = pm8001_mpi_msg_consume(pm8001_ha, circularQ, &pMsg1, &bc);
J
jack wang 已提交
4045 4046
		if (MPI_IO_STATUS_SUCCESS == ret) {
			/* process the outbound message */
4047
			process_one_iomb(pm8001_ha, (void *)(pMsg1 - 4));
J
jack wang 已提交
4048
			/* free the message from the outbound circular buffer */
4049 4050
			pm8001_mpi_msg_free_set(pm8001_ha, pMsg1,
							circularQ, bc);
J
jack wang 已提交
4051 4052 4053
		}
		if (MPI_IO_STATUS_BUSY == ret) {
			/* Update the producer index from SPC */
4054 4055 4056
			circularQ->producer_index =
				cpu_to_le32(pm8001_read_32(circularQ->pi_virt));
			if (le32_to_cpu(circularQ->producer_index) ==
J
jack wang 已提交
4057 4058 4059 4060
				circularQ->consumer_idx)
				/* OQ is empty */
				break;
		}
4061
	} while (1);
4062
	spin_unlock_irqrestore(&pm8001_ha->lock, flags);
J
jack wang 已提交
4063 4064 4065
	return ret;
}

4066
/* DMA_... to our direction translation. */
J
jack wang 已提交
4067
static const u8 data_dir_flags[] = {
4068 4069 4070 4071
	[DMA_BIDIRECTIONAL]	= DATA_DIR_BYRECIPIENT,	/* UNSPECIFIED */
	[DMA_TO_DEVICE]		= DATA_DIR_OUT,		/* OUTBOUND */
	[DMA_FROM_DEVICE]	= DATA_DIR_IN,		/* INBOUND */
	[DMA_NONE]		= DATA_DIR_NONE,	/* NO TRANSFER */
J
jack wang 已提交
4072
};
4073
void
J
jack wang 已提交
4074 4075 4076 4077 4078 4079 4080 4081 4082 4083 4084 4085 4086 4087
pm8001_chip_make_sg(struct scatterlist *scatter, int nr, void *prd)
{
	int i;
	struct scatterlist *sg;
	struct pm8001_prd *buf_prd = prd;

	for_each_sg(scatter, sg, nr, i) {
		buf_prd->addr = cpu_to_le64(sg_dma_address(sg));
		buf_prd->im_len.len = cpu_to_le32(sg_dma_len(sg));
		buf_prd->im_len.e = 0;
		buf_prd++;
	}
}

4088
static void build_smp_cmd(u32 deviceID, __le32 hTag, struct smp_req *psmp_cmd)
J
jack wang 已提交
4089
{
4090
	psmp_cmd->tag = hTag;
J
jack wang 已提交
4091 4092 4093 4094 4095 4096 4097 4098 4099 4100 4101 4102 4103 4104 4105 4106 4107 4108 4109 4110 4111 4112 4113 4114 4115 4116 4117
	psmp_cmd->device_id = cpu_to_le32(deviceID);
	psmp_cmd->len_ip_ir = cpu_to_le32(1|(1 << 1));
}

/**
 * pm8001_chip_smp_req - send a SMP task to FW
 * @pm8001_ha: our hba card information.
 * @ccb: the ccb information this request used.
 */
static int pm8001_chip_smp_req(struct pm8001_hba_info *pm8001_ha,
	struct pm8001_ccb_info *ccb)
{
	int elem, rc;
	struct sas_task *task = ccb->task;
	struct domain_device *dev = task->dev;
	struct pm8001_device *pm8001_dev = dev->lldd_dev;
	struct scatterlist *sg_req, *sg_resp;
	u32 req_len, resp_len;
	struct smp_req smp_cmd;
	u32 opc;
	struct inbound_queue_table *circularQ;

	memset(&smp_cmd, 0, sizeof(smp_cmd));
	/*
	 * DMA-map SMP request, response buffers
	 */
	sg_req = &task->smp_task.smp_req;
4118
	elem = dma_map_sg(pm8001_ha->dev, sg_req, 1, DMA_TO_DEVICE);
J
jack wang 已提交
4119 4120 4121 4122 4123
	if (!elem)
		return -ENOMEM;
	req_len = sg_dma_len(sg_req);

	sg_resp = &task->smp_task.smp_resp;
4124
	elem = dma_map_sg(pm8001_ha->dev, sg_resp, 1, DMA_FROM_DEVICE);
J
jack wang 已提交
4125 4126 4127 4128 4129 4130 4131 4132 4133 4134 4135 4136 4137 4138 4139 4140 4141 4142 4143 4144 4145 4146 4147
	if (!elem) {
		rc = -ENOMEM;
		goto err_out;
	}
	resp_len = sg_dma_len(sg_resp);
	/* must be in dwords */
	if ((req_len & 0x3) || (resp_len & 0x3)) {
		rc = -EINVAL;
		goto err_out_2;
	}

	opc = OPC_INB_SMP_REQUEST;
	circularQ = &pm8001_ha->inbnd_q_tbl[0];
	smp_cmd.tag = cpu_to_le32(ccb->ccb_tag);
	smp_cmd.long_smp_req.long_req_addr =
		cpu_to_le64((u64)sg_dma_address(&task->smp_task.smp_req));
	smp_cmd.long_smp_req.long_req_size =
		cpu_to_le32((u32)sg_dma_len(&task->smp_task.smp_req)-4);
	smp_cmd.long_smp_req.long_resp_addr =
		cpu_to_le64((u64)sg_dma_address(&task->smp_task.smp_resp));
	smp_cmd.long_smp_req.long_resp_size =
		cpu_to_le32((u32)sg_dma_len(&task->smp_task.smp_resp)-4);
	build_smp_cmd(pm8001_dev->device_id, smp_cmd.tag, &smp_cmd);
T
Tomas Henzl 已提交
4148
	rc = pm8001_mpi_build_cmd(pm8001_ha, circularQ, opc,
4149
			&smp_cmd, sizeof(smp_cmd), 0);
T
Tomas Henzl 已提交
4150 4151 4152
	if (rc)
		goto err_out_2;

J
jack wang 已提交
4153 4154 4155 4156
	return 0;

err_out_2:
	dma_unmap_sg(pm8001_ha->dev, &ccb->task->smp_task.smp_resp, 1,
4157
			DMA_FROM_DEVICE);
J
jack wang 已提交
4158 4159
err_out:
	dma_unmap_sg(pm8001_ha->dev, &ccb->task->smp_task.smp_req, 1,
4160
			DMA_TO_DEVICE);
J
jack wang 已提交
4161 4162 4163 4164 4165 4166 4167 4168 4169 4170 4171 4172 4173 4174 4175 4176
	return rc;
}

/**
 * pm8001_chip_ssp_io_req - send a SSP task to FW
 * @pm8001_ha: our hba card information.
 * @ccb: the ccb information this request used.
 */
static int pm8001_chip_ssp_io_req(struct pm8001_hba_info *pm8001_ha,
	struct pm8001_ccb_info *ccb)
{
	struct sas_task *task = ccb->task;
	struct domain_device *dev = task->dev;
	struct pm8001_device *pm8001_dev = dev->lldd_dev;
	struct ssp_ini_io_start_req ssp_cmd;
	u32 tag = ccb->ccb_tag;
4177
	int ret;
4178
	u64 phys_addr;
J
jack wang 已提交
4179 4180 4181 4182
	struct inbound_queue_table *circularQ;
	u32 opc = OPC_INB_SSPINIIOSTART;
	memset(&ssp_cmd, 0, sizeof(ssp_cmd));
	memcpy(ssp_cmd.ssp_iu.lun, task->ssp_task.LUN, 8);
4183 4184
	ssp_cmd.dir_m_tlr =
		cpu_to_le32(data_dir_flags[task->data_dir] << 8 | 0x0);/*0 for
J
jack wang 已提交
4185 4186 4187 4188 4189 4190 4191 4192
	SAS 1.1 compatible TLR*/
	ssp_cmd.data_len = cpu_to_le32(task->total_xfer_len);
	ssp_cmd.device_id = cpu_to_le32(pm8001_dev->device_id);
	ssp_cmd.tag = cpu_to_le32(tag);
	if (task->ssp_task.enable_first_burst)
		ssp_cmd.ssp_iu.efb_prio_attr |= 0x80;
	ssp_cmd.ssp_iu.efb_prio_attr |= (task->ssp_task.task_prio << 3);
	ssp_cmd.ssp_iu.efb_prio_attr |= (task->ssp_task.task_attr & 7);
4193 4194
	memcpy(ssp_cmd.ssp_iu.cdb, task->ssp_task.cmd->cmnd,
	       task->ssp_task.cmd->cmd_len);
J
jack wang 已提交
4195 4196 4197 4198 4199
	circularQ = &pm8001_ha->inbnd_q_tbl[0];

	/* fill in PRD (scatter/gather) table, if any */
	if (task->num_scatter > 1) {
		pm8001_chip_make_sg(task->scatter, ccb->n_elem, ccb->buf_prd);
4200
		phys_addr = ccb->ccb_dma_handle;
4201 4202
		ssp_cmd.addr_low = cpu_to_le32(lower_32_bits(phys_addr));
		ssp_cmd.addr_high = cpu_to_le32(upper_32_bits(phys_addr));
J
jack wang 已提交
4203 4204
		ssp_cmd.esgl = cpu_to_le32(1<<31);
	} else if (task->num_scatter == 1) {
4205 4206 4207
		u64 dma_addr = sg_dma_address(task->scatter);
		ssp_cmd.addr_low = cpu_to_le32(lower_32_bits(dma_addr));
		ssp_cmd.addr_high = cpu_to_le32(upper_32_bits(dma_addr));
J
jack wang 已提交
4208 4209 4210 4211 4212 4213 4214 4215
		ssp_cmd.len = cpu_to_le32(task->total_xfer_len);
		ssp_cmd.esgl = 0;
	} else if (task->num_scatter == 0) {
		ssp_cmd.addr_low = 0;
		ssp_cmd.addr_high = 0;
		ssp_cmd.len = cpu_to_le32(task->total_xfer_len);
		ssp_cmd.esgl = 0;
	}
4216 4217
	ret = pm8001_mpi_build_cmd(pm8001_ha, circularQ, opc, &ssp_cmd,
			sizeof(ssp_cmd), 0);
4218
	return ret;
J
jack wang 已提交
4219 4220 4221 4222 4223 4224 4225 4226 4227
}

static int pm8001_chip_sata_req(struct pm8001_hba_info *pm8001_ha,
	struct pm8001_ccb_info *ccb)
{
	struct sas_task *task = ccb->task;
	struct domain_device *dev = task->dev;
	struct pm8001_device *pm8001_ha_dev = dev->lldd_dev;
	u32 tag = ccb->ccb_tag;
4228
	int ret;
J
jack wang 已提交
4229 4230
	struct sata_start_req sata_cmd;
	u32 hdr_tag, ncg_tag = 0;
4231
	u64 phys_addr;
J
jack wang 已提交
4232 4233 4234
	u32 ATAP = 0x0;
	u32 dir;
	struct inbound_queue_table *circularQ;
4235
	unsigned long flags;
J
jack wang 已提交
4236 4237 4238
	u32  opc = OPC_INB_SATA_HOST_OPSTART;
	memset(&sata_cmd, 0, sizeof(sata_cmd));
	circularQ = &pm8001_ha->inbnd_q_tbl[0];
4239
	if (task->data_dir == DMA_NONE) {
J
jack wang 已提交
4240
		ATAP = 0x04;  /* no data*/
4241
		pm8001_dbg(pm8001_ha, IO, "no data\n");
J
jack wang 已提交
4242 4243 4244
	} else if (likely(!task->ata_task.device_control_reg_update)) {
		if (task->ata_task.dma_xfer) {
			ATAP = 0x06; /* DMA */
4245
			pm8001_dbg(pm8001_ha, IO, "DMA\n");
J
jack wang 已提交
4246 4247
		} else {
			ATAP = 0x05; /* PIO*/
4248
			pm8001_dbg(pm8001_ha, IO, "PIO\n");
J
jack wang 已提交
4249 4250
		}
		if (task->ata_task.use_ncq &&
H
Hannes Reinecke 已提交
4251
			dev->sata_dev.class != ATA_DEV_ATAPI) {
J
jack wang 已提交
4252
			ATAP = 0x07; /* FPDMA */
4253
			pm8001_dbg(pm8001_ha, IO, "FPDMA\n");
J
jack wang 已提交
4254 4255
		}
	}
4256 4257
	if (task->ata_task.use_ncq && pm8001_get_ncq_tag(task, &hdr_tag)) {
		task->ata_task.fis.sector_count |= (u8) (hdr_tag << 3);
4258
		ncg_tag = hdr_tag;
4259
	}
J
jack wang 已提交
4260 4261 4262 4263 4264 4265 4266 4267 4268 4269 4270 4271 4272
	dir = data_dir_flags[task->data_dir] << 8;
	sata_cmd.tag = cpu_to_le32(tag);
	sata_cmd.device_id = cpu_to_le32(pm8001_ha_dev->device_id);
	sata_cmd.data_len = cpu_to_le32(task->total_xfer_len);
	sata_cmd.ncqtag_atap_dir_m =
		cpu_to_le32(((ncg_tag & 0xff)<<16)|((ATAP & 0x3f) << 10) | dir);
	sata_cmd.sata_fis = task->ata_task.fis;
	if (likely(!task->ata_task.device_control_reg_update))
		sata_cmd.sata_fis.flags |= 0x80;/* C=1: update ATA cmd reg */
	sata_cmd.sata_fis.flags &= 0xF0;/* PM_PORT field shall be 0 */
	/* fill in PRD (scatter/gather) table, if any */
	if (task->num_scatter > 1) {
		pm8001_chip_make_sg(task->scatter, ccb->n_elem, ccb->buf_prd);
4273
		phys_addr = ccb->ccb_dma_handle;
J
jack wang 已提交
4274 4275 4276 4277
		sata_cmd.addr_low = lower_32_bits(phys_addr);
		sata_cmd.addr_high = upper_32_bits(phys_addr);
		sata_cmd.esgl = cpu_to_le32(1 << 31);
	} else if (task->num_scatter == 1) {
4278
		u64 dma_addr = sg_dma_address(task->scatter);
J
jack wang 已提交
4279 4280 4281 4282 4283 4284 4285 4286 4287 4288
		sata_cmd.addr_low = lower_32_bits(dma_addr);
		sata_cmd.addr_high = upper_32_bits(dma_addr);
		sata_cmd.len = cpu_to_le32(task->total_xfer_len);
		sata_cmd.esgl = 0;
	} else if (task->num_scatter == 0) {
		sata_cmd.addr_low = 0;
		sata_cmd.addr_high = 0;
		sata_cmd.len = cpu_to_le32(task->total_xfer_len);
		sata_cmd.esgl = 0;
	}
4289 4290 4291

	/* Check for read log for failed drive and return */
	if (sata_cmd.sata_fis.command == 0x2f) {
4292
		if (((pm8001_ha_dev->id & NCQ_READ_LOG_FLAG) ||
4293 4294 4295 4296 4297 4298 4299 4300 4301 4302 4303 4304 4305 4306 4307 4308 4309
			(pm8001_ha_dev->id & NCQ_ABORT_ALL_FLAG) ||
			(pm8001_ha_dev->id & NCQ_2ND_RLE_FLAG))) {
			struct task_status_struct *ts;

			pm8001_ha_dev->id &= 0xDFFFFFFF;
			ts = &task->task_status;

			spin_lock_irqsave(&task->task_state_lock, flags);
			ts->resp = SAS_TASK_COMPLETE;
			ts->stat = SAM_STAT_GOOD;
			task->task_state_flags &= ~SAS_TASK_STATE_PENDING;
			task->task_state_flags &= ~SAS_TASK_AT_INITIATOR;
			task->task_state_flags |= SAS_TASK_STATE_DONE;
			if (unlikely((task->task_state_flags &
					SAS_TASK_STATE_ABORTED))) {
				spin_unlock_irqrestore(&task->task_state_lock,
							flags);
4310 4311 4312 4313
				pm8001_dbg(pm8001_ha, FAIL,
					   "task 0x%p resp 0x%x  stat 0x%x but aborted by upper layer\n",
					   task, ts->resp,
					   ts->stat);
4314
				pm8001_ccb_task_free(pm8001_ha, task, ccb, tag);
S
Suresh Thiagarajan 已提交
4315
			} else {
4316 4317
				spin_unlock_irqrestore(&task->task_state_lock,
							flags);
S
Suresh Thiagarajan 已提交
4318 4319
				pm8001_ccb_task_free_done(pm8001_ha, task,
								ccb, tag);
4320 4321 4322 4323 4324
				return 0;
			}
		}
	}

4325 4326
	ret = pm8001_mpi_build_cmd(pm8001_ha, circularQ, opc, &sata_cmd,
			sizeof(sata_cmd), 0);
4327
	return ret;
J
jack wang 已提交
4328 4329 4330 4331 4332 4333 4334 4335 4336 4337 4338 4339
}

/**
 * pm8001_chip_phy_start_req - start phy via PHY_START COMMAND
 * @pm8001_ha: our hba card information.
 * @phy_id: the phy id which we wanted to start up.
 */
static int
pm8001_chip_phy_start_req(struct pm8001_hba_info *pm8001_ha, u8 phy_id)
{
	struct phy_start_req payload;
	struct inbound_queue_table *circularQ;
4340
	int ret;
J
jack wang 已提交
4341 4342 4343 4344 4345 4346 4347 4348 4349 4350 4351 4352 4353 4354
	u32 tag = 0x01;
	u32 opcode = OPC_INB_PHYSTART;
	circularQ = &pm8001_ha->inbnd_q_tbl[0];
	memset(&payload, 0, sizeof(payload));
	payload.tag = cpu_to_le32(tag);
	/*
	 ** [0:7]   PHY Identifier
	 ** [8:11]  link rate 1.5G, 3G, 6G
	 ** [12:13] link mode 01b SAS mode; 10b SATA mode; 11b both
	 ** [14]    0b disable spin up hold; 1b enable spin up hold
	 */
	payload.ase_sh_lm_slr_phyid = cpu_to_le32(SPINHOLD_DISABLE |
		LINKMODE_AUTO |	LINKRATE_15 |
		LINKRATE_30 | LINKRATE_60 | phy_id);
4355
	payload.sas_identify.dev_type = SAS_END_DEVICE;
J
jack wang 已提交
4356 4357 4358 4359
	payload.sas_identify.initiator_bits = SAS_PROTOCOL_ALL;
	memcpy(payload.sas_identify.sas_addr,
		pm8001_ha->sas_addr, SAS_ADDR_SIZE);
	payload.sas_identify.phy_id = phy_id;
4360 4361
	ret = pm8001_mpi_build_cmd(pm8001_ha, circularQ, opcode, &payload,
			sizeof(payload), 0);
4362
	return ret;
J
jack wang 已提交
4363 4364 4365 4366 4367 4368 4369
}

/**
 * pm8001_chip_phy_stop_req - start phy via PHY_STOP COMMAND
 * @pm8001_ha: our hba card information.
 * @phy_id: the phy id which we wanted to start up.
 */
4370 4371
static int pm8001_chip_phy_stop_req(struct pm8001_hba_info *pm8001_ha,
				    u8 phy_id)
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{
	struct phy_stop_req payload;
	struct inbound_queue_table *circularQ;
4375
	int ret;
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4376 4377 4378 4379 4380 4381
	u32 tag = 0x01;
	u32 opcode = OPC_INB_PHYSTOP;
	circularQ = &pm8001_ha->inbnd_q_tbl[0];
	memset(&payload, 0, sizeof(payload));
	payload.tag = cpu_to_le32(tag);
	payload.phy_id = cpu_to_le32(phy_id);
4382 4383
	ret = pm8001_mpi_build_cmd(pm8001_ha, circularQ, opcode, &payload,
			sizeof(payload), 0);
4384
	return ret;
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4385 4386
}

4387
/*
4388
 * see comments on pm8001_mpi_reg_resp.
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 */
static int pm8001_chip_reg_dev_req(struct pm8001_hba_info *pm8001_ha,
	struct pm8001_device *pm8001_dev, u32 flag)
{
	struct reg_dev_req payload;
	u32	opc;
	u32 stp_sspsmp_sata = 0x4;
	struct inbound_queue_table *circularQ;
	u32 linkrate, phy_id;
4398
	int rc, tag = 0xdeadbeef;
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4399 4400 4401 4402 4403 4404 4405 4406 4407 4408 4409 4410 4411 4412 4413 4414 4415 4416 4417
	struct pm8001_ccb_info *ccb;
	u8 retryFlag = 0x1;
	u16 firstBurstSize = 0;
	u16 ITNT = 2000;
	struct domain_device *dev = pm8001_dev->sas_device;
	struct domain_device *parent_dev = dev->parent;
	circularQ = &pm8001_ha->inbnd_q_tbl[0];

	memset(&payload, 0, sizeof(payload));
	rc = pm8001_tag_alloc(pm8001_ha, &tag);
	if (rc)
		return rc;
	ccb = &pm8001_ha->ccb_info[tag];
	ccb->device = pm8001_dev;
	ccb->ccb_tag = tag;
	payload.tag = cpu_to_le32(tag);
	if (flag == 1)
		stp_sspsmp_sata = 0x02; /*direct attached sata */
	else {
4418
		if (pm8001_dev->dev_type == SAS_SATA_DEV)
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4419
			stp_sspsmp_sata = 0x00; /* stp*/
4420 4421 4422
		else if (pm8001_dev->dev_type == SAS_END_DEVICE ||
			pm8001_dev->dev_type == SAS_EDGE_EXPANDER_DEVICE ||
			pm8001_dev->dev_type == SAS_FANOUT_EXPANDER_DEVICE)
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4423 4424
			stp_sspsmp_sata = 0x01; /*ssp or smp*/
	}
4425
	if (parent_dev && dev_is_expander(parent_dev->dev_type))
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4426 4427 4428 4429 4430 4431 4432 4433 4434 4435 4436 4437 4438 4439
		phy_id = parent_dev->ex_dev.ex_phy->phy_id;
	else
		phy_id = pm8001_dev->attached_phy;
	opc = OPC_INB_REG_DEV;
	linkrate = (pm8001_dev->sas_device->linkrate < dev->port->linkrate) ?
			pm8001_dev->sas_device->linkrate : dev->port->linkrate;
	payload.phyid_portid =
		cpu_to_le32(((pm8001_dev->sas_device->port->id) & 0x0F) |
		((phy_id & 0x0F) << 4));
	payload.dtype_dlr_retry = cpu_to_le32((retryFlag & 0x01) |
		((linkrate & 0x0F) * 0x1000000) |
		((stp_sspsmp_sata & 0x03) * 0x10000000));
	payload.firstburstsize_ITNexustimeout =
		cpu_to_le32(ITNT | (firstBurstSize * 0x10000));
4440
	memcpy(payload.sas_addr, pm8001_dev->sas_device->sas_addr,
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4441
		SAS_ADDR_SIZE);
4442 4443
	rc = pm8001_mpi_build_cmd(pm8001_ha, circularQ, opc, &payload,
			sizeof(payload), 0);
4444
	return rc;
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4445 4446
}

4447
/*
4448
 * see comments on pm8001_mpi_reg_resp.
J
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4449
 */
4450
int pm8001_chip_dereg_dev_req(struct pm8001_hba_info *pm8001_ha,
J
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4451 4452 4453 4454
	u32 device_id)
{
	struct dereg_dev_req payload;
	u32 opc = OPC_INB_DEREG_DEV_HANDLE;
4455
	int ret;
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4456 4457 4458
	struct inbound_queue_table *circularQ;

	circularQ = &pm8001_ha->inbnd_q_tbl[0];
4459
	memset(&payload, 0, sizeof(payload));
4460
	payload.tag = cpu_to_le32(1);
J
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4461
	payload.device_id = cpu_to_le32(device_id);
4462 4463
	pm8001_dbg(pm8001_ha, MSG, "unregister device device_id = %d\n",
		   device_id);
4464 4465
	ret = pm8001_mpi_build_cmd(pm8001_ha, circularQ, opc, &payload,
			sizeof(payload), 0);
4466
	return ret;
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4467 4468 4469 4470 4471
}

/**
 * pm8001_chip_phy_ctl_req - support the local phy operation
 * @pm8001_ha: our hba card information.
4472 4473
 * @phyId: the phy id which we wanted to operate
 * @phy_op: the phy operation to request
J
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 */
static int pm8001_chip_phy_ctl_req(struct pm8001_hba_info *pm8001_ha,
	u32 phyId, u32 phy_op)
{
	struct local_phy_ctl_req payload;
	struct inbound_queue_table *circularQ;
4480
	int ret;
J
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4481
	u32 opc = OPC_INB_LOCAL_PHY_CONTROL;
J
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4482
	memset(&payload, 0, sizeof(payload));
J
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4483
	circularQ = &pm8001_ha->inbnd_q_tbl[0];
4484
	payload.tag = cpu_to_le32(1);
J
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4485 4486
	payload.phyop_phyid =
		cpu_to_le32(((phy_op & 0xff) << 8) | (phyId & 0x0F));
4487 4488
	ret = pm8001_mpi_build_cmd(pm8001_ha, circularQ, opc, &payload,
			sizeof(payload), 0);
4489
	return ret;
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4490 4491
}

4492
static u32 pm8001_chip_is_our_interrupt(struct pm8001_hba_info *pm8001_ha)
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4493 4494 4495
{
#ifdef PM8001_USE_MSIX
	return 1;
4496 4497 4498
#else
	u32 value;

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4499 4500 4501 4502
	value = pm8001_cr32(pm8001_ha, 0, MSGU_ODR);
	if (value)
		return 1;
	return 0;
4503
#endif
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4504 4505 4506 4507 4508
}

/**
 * pm8001_chip_isr - PM8001 isr handler.
 * @pm8001_ha: our hba card information.
4509
 * @vec: IRQ number
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 */
4511
static irqreturn_t
4512
pm8001_chip_isr(struct pm8001_hba_info *pm8001_ha, u8 vec)
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4513
{
4514
	pm8001_chip_interrupt_disable(pm8001_ha, vec);
4515 4516 4517
	pm8001_dbg(pm8001_ha, DEVIO,
		   "irq vec %d, ODMR:0x%x\n",
		   vec, pm8001_cr32(pm8001_ha, 0, 0x30));
4518 4519
	process_oq(pm8001_ha, vec);
	pm8001_chip_interrupt_enable(pm8001_ha, vec);
4520
	return IRQ_HANDLED;
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}

static int send_task_abort(struct pm8001_hba_info *pm8001_ha, u32 opc,
	u32 dev_id, u8 flag, u32 task_tag, u32 cmd_tag)
{
	struct task_abort_req task_abort;
	struct inbound_queue_table *circularQ;
4528
	int ret;
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4529 4530 4531 4532 4533 4534 4535 4536 4537 4538 4539 4540
	circularQ = &pm8001_ha->inbnd_q_tbl[0];
	memset(&task_abort, 0, sizeof(task_abort));
	if (ABORT_SINGLE == (flag & ABORT_MASK)) {
		task_abort.abort_all = 0;
		task_abort.device_id = cpu_to_le32(dev_id);
		task_abort.tag_to_abort = cpu_to_le32(task_tag);
		task_abort.tag = cpu_to_le32(cmd_tag);
	} else if (ABORT_ALL == (flag & ABORT_MASK)) {
		task_abort.abort_all = cpu_to_le32(1);
		task_abort.device_id = cpu_to_le32(dev_id);
		task_abort.tag = cpu_to_le32(cmd_tag);
	}
4541 4542
	ret = pm8001_mpi_build_cmd(pm8001_ha, circularQ, opc, &task_abort,
			sizeof(task_abort), 0);
4543
	return ret;
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}

4546
/*
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4547 4548
 * pm8001_chip_abort_task - SAS abort task when error or exception happened.
 */
4549
int pm8001_chip_abort_task(struct pm8001_hba_info *pm8001_ha,
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	struct pm8001_device *pm8001_dev, u8 flag, u32 task_tag, u32 cmd_tag)
{
	u32 opc, device_id;
	int rc = TMF_RESP_FUNC_FAILED;
4554 4555
	pm8001_dbg(pm8001_ha, EH, "cmd_tag = %x, abort task tag = 0x%x\n",
		   cmd_tag, task_tag);
4556
	if (pm8001_dev->dev_type == SAS_END_DEVICE)
J
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4557
		opc = OPC_INB_SSP_ABORT;
4558
	else if (pm8001_dev->dev_type == SAS_SATA_DEV)
J
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4559 4560 4561 4562 4563 4564 4565
		opc = OPC_INB_SATA_ABORT;
	else
		opc = OPC_INB_SMP_ABORT;/* SMP */
	device_id = pm8001_dev->device_id;
	rc = send_task_abort(pm8001_ha, opc, device_id, flag,
		task_tag, cmd_tag);
	if (rc != TMF_RESP_FUNC_COMPLETE)
4566
		pm8001_dbg(pm8001_ha, EH, "rc= %d\n", rc);
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4567 4568 4569 4570
	return rc;
}

/**
4571
 * pm8001_chip_ssp_tm_req - built the task management command.
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 * @pm8001_ha: our hba card information.
 * @ccb: the ccb information.
 * @tmf: task management function.
 */
4576
int pm8001_chip_ssp_tm_req(struct pm8001_hba_info *pm8001_ha,
J
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4577 4578 4579 4580 4581 4582 4583 4584
	struct pm8001_ccb_info *ccb, struct pm8001_tmf_task *tmf)
{
	struct sas_task *task = ccb->task;
	struct domain_device *dev = task->dev;
	struct pm8001_device *pm8001_dev = dev->lldd_dev;
	u32 opc = OPC_INB_SSPINITMSTART;
	struct inbound_queue_table *circularQ;
	struct ssp_ini_tm_start_req sspTMCmd;
4585
	int ret;
J
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4586 4587 4588 4589 4590 4591 4592

	memset(&sspTMCmd, 0, sizeof(sspTMCmd));
	sspTMCmd.device_id = cpu_to_le32(pm8001_dev->device_id);
	sspTMCmd.relate_tag = cpu_to_le32(tmf->tag_of_task_to_be_managed);
	sspTMCmd.tmf = cpu_to_le32(tmf->tmf);
	memcpy(sspTMCmd.lun, task->ssp_task.LUN, 8);
	sspTMCmd.tag = cpu_to_le32(ccb->ccb_tag);
4593 4594
	if (pm8001_ha->chip_id != chip_8001)
		sspTMCmd.ds_ads_m = 0x08;
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4595
	circularQ = &pm8001_ha->inbnd_q_tbl[0];
4596 4597
	ret = pm8001_mpi_build_cmd(pm8001_ha, circularQ, opc, &sspTMCmd,
			sizeof(sspTMCmd), 0);
4598
	return ret;
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4599 4600
}

4601
int pm8001_chip_get_nvmd_req(struct pm8001_hba_info *pm8001_ha,
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4602 4603 4604 4605
	void *payload)
{
	u32 opc = OPC_INB_GET_NVMD_DATA;
	u32 nvmd_type;
4606
	int rc;
J
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4607 4608 4609 4610 4611 4612 4613 4614 4615
	u32 tag;
	struct pm8001_ccb_info *ccb;
	struct inbound_queue_table *circularQ;
	struct get_nvm_data_req nvmd_req;
	struct fw_control_ex *fw_control_context;
	struct pm8001_ioctl_payload *ioctl_payload = payload;

	nvmd_type = ioctl_payload->minor_function;
	fw_control_context = kzalloc(sizeof(struct fw_control_ex), GFP_KERNEL);
4616 4617
	if (!fw_control_context)
		return -ENOMEM;
4618
	fw_control_context->usrAddr = (u8 *)ioctl_payload->func_specific;
4619
	fw_control_context->len = ioctl_payload->rd_length;
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4620 4621 4622
	circularQ = &pm8001_ha->inbnd_q_tbl[0];
	memset(&nvmd_req, 0, sizeof(nvmd_req));
	rc = pm8001_tag_alloc(pm8001_ha, &tag);
4623 4624
	if (rc) {
		kfree(fw_control_context);
J
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4625
		return rc;
4626
	}
J
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4627 4628 4629 4630 4631 4632 4633 4634 4635 4636 4637 4638 4639
	ccb = &pm8001_ha->ccb_info[tag];
	ccb->ccb_tag = tag;
	ccb->fw_control_context = fw_control_context;
	nvmd_req.tag = cpu_to_le32(tag);

	switch (nvmd_type) {
	case TWI_DEVICE: {
		u32 twi_addr, twi_page_size;
		twi_addr = 0xa8;
		twi_page_size = 2;

		nvmd_req.len_ir_vpdd = cpu_to_le32(IPMode | twi_addr << 16 |
			twi_page_size << 8 | TWI_DEVICE);
4640
		nvmd_req.resp_len = cpu_to_le32(ioctl_payload->rd_length);
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4641 4642 4643 4644 4645 4646 4647 4648
		nvmd_req.resp_addr_hi =
		    cpu_to_le32(pm8001_ha->memoryMap.region[NVMD].phys_addr_hi);
		nvmd_req.resp_addr_lo =
		    cpu_to_le32(pm8001_ha->memoryMap.region[NVMD].phys_addr_lo);
		break;
	}
	case C_SEEPROM: {
		nvmd_req.len_ir_vpdd = cpu_to_le32(IPMode | C_SEEPROM);
4649
		nvmd_req.resp_len = cpu_to_le32(ioctl_payload->rd_length);
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4650 4651 4652 4653 4654 4655 4656 4657
		nvmd_req.resp_addr_hi =
		    cpu_to_le32(pm8001_ha->memoryMap.region[NVMD].phys_addr_hi);
		nvmd_req.resp_addr_lo =
		    cpu_to_le32(pm8001_ha->memoryMap.region[NVMD].phys_addr_lo);
		break;
	}
	case VPD_FLASH: {
		nvmd_req.len_ir_vpdd = cpu_to_le32(IPMode | VPD_FLASH);
4658
		nvmd_req.resp_len = cpu_to_le32(ioctl_payload->rd_length);
J
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4659 4660 4661 4662 4663 4664 4665 4666
		nvmd_req.resp_addr_hi =
		    cpu_to_le32(pm8001_ha->memoryMap.region[NVMD].phys_addr_hi);
		nvmd_req.resp_addr_lo =
		    cpu_to_le32(pm8001_ha->memoryMap.region[NVMD].phys_addr_lo);
		break;
	}
	case EXPAN_ROM: {
		nvmd_req.len_ir_vpdd = cpu_to_le32(IPMode | EXPAN_ROM);
4667
		nvmd_req.resp_len = cpu_to_le32(ioctl_payload->rd_length);
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4668 4669 4670 4671 4672 4673
		nvmd_req.resp_addr_hi =
		    cpu_to_le32(pm8001_ha->memoryMap.region[NVMD].phys_addr_hi);
		nvmd_req.resp_addr_lo =
		    cpu_to_le32(pm8001_ha->memoryMap.region[NVMD].phys_addr_lo);
		break;
	}
4674 4675
	case IOP_RDUMP: {
		nvmd_req.len_ir_vpdd = cpu_to_le32(IPMode | IOP_RDUMP);
4676
		nvmd_req.resp_len = cpu_to_le32(ioctl_payload->rd_length);
4677 4678 4679 4680 4681 4682 4683
		nvmd_req.vpd_offset = cpu_to_le32(ioctl_payload->offset);
		nvmd_req.resp_addr_hi =
		cpu_to_le32(pm8001_ha->memoryMap.region[NVMD].phys_addr_hi);
		nvmd_req.resp_addr_lo =
		cpu_to_le32(pm8001_ha->memoryMap.region[NVMD].phys_addr_lo);
		break;
	}
J
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4684 4685 4686
	default:
		break;
	}
4687 4688
	rc = pm8001_mpi_build_cmd(pm8001_ha, circularQ, opc, &nvmd_req,
			sizeof(nvmd_req), 0);
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4689 4690 4691 4692
	if (rc) {
		kfree(fw_control_context);
		pm8001_tag_free(pm8001_ha, tag);
	}
4693
	return rc;
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4694 4695
}

4696
int pm8001_chip_set_nvmd_req(struct pm8001_hba_info *pm8001_ha,
J
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4697 4698 4699 4700
	void *payload)
{
	u32 opc = OPC_INB_SET_NVMD_DATA;
	u32 nvmd_type;
4701
	int rc;
J
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4702 4703 4704 4705 4706 4707 4708 4709 4710
	u32 tag;
	struct pm8001_ccb_info *ccb;
	struct inbound_queue_table *circularQ;
	struct set_nvm_data_req nvmd_req;
	struct fw_control_ex *fw_control_context;
	struct pm8001_ioctl_payload *ioctl_payload = payload;

	nvmd_type = ioctl_payload->minor_function;
	fw_control_context = kzalloc(sizeof(struct fw_control_ex), GFP_KERNEL);
4711 4712
	if (!fw_control_context)
		return -ENOMEM;
J
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4713 4714
	circularQ = &pm8001_ha->inbnd_q_tbl[0];
	memcpy(pm8001_ha->memoryMap.region[NVMD].virt_ptr,
4715
		&ioctl_payload->func_specific,
4716
		ioctl_payload->wr_length);
J
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4717 4718
	memset(&nvmd_req, 0, sizeof(nvmd_req));
	rc = pm8001_tag_alloc(pm8001_ha, &tag);
4719 4720
	if (rc) {
		kfree(fw_control_context);
T
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4721
		return -EBUSY;
4722
	}
J
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4723 4724 4725 4726 4727 4728 4729 4730 4731 4732 4733 4734
	ccb = &pm8001_ha->ccb_info[tag];
	ccb->fw_control_context = fw_control_context;
	ccb->ccb_tag = tag;
	nvmd_req.tag = cpu_to_le32(tag);
	switch (nvmd_type) {
	case TWI_DEVICE: {
		u32 twi_addr, twi_page_size;
		twi_addr = 0xa8;
		twi_page_size = 2;
		nvmd_req.reserved[0] = cpu_to_le32(0xFEDCBA98);
		nvmd_req.len_ir_vpdd = cpu_to_le32(IPMode | twi_addr << 16 |
			twi_page_size << 8 | TWI_DEVICE);
4735
		nvmd_req.resp_len = cpu_to_le32(ioctl_payload->wr_length);
J
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4736 4737 4738 4739 4740 4741 4742 4743
		nvmd_req.resp_addr_hi =
		    cpu_to_le32(pm8001_ha->memoryMap.region[NVMD].phys_addr_hi);
		nvmd_req.resp_addr_lo =
		    cpu_to_le32(pm8001_ha->memoryMap.region[NVMD].phys_addr_lo);
		break;
	}
	case C_SEEPROM:
		nvmd_req.len_ir_vpdd = cpu_to_le32(IPMode | C_SEEPROM);
4744
		nvmd_req.resp_len = cpu_to_le32(ioctl_payload->wr_length);
J
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4745 4746 4747 4748 4749 4750 4751 4752
		nvmd_req.reserved[0] = cpu_to_le32(0xFEDCBA98);
		nvmd_req.resp_addr_hi =
		    cpu_to_le32(pm8001_ha->memoryMap.region[NVMD].phys_addr_hi);
		nvmd_req.resp_addr_lo =
		    cpu_to_le32(pm8001_ha->memoryMap.region[NVMD].phys_addr_lo);
		break;
	case VPD_FLASH:
		nvmd_req.len_ir_vpdd = cpu_to_le32(IPMode | VPD_FLASH);
4753
		nvmd_req.resp_len = cpu_to_le32(ioctl_payload->wr_length);
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4754 4755 4756 4757 4758 4759 4760 4761
		nvmd_req.reserved[0] = cpu_to_le32(0xFEDCBA98);
		nvmd_req.resp_addr_hi =
		    cpu_to_le32(pm8001_ha->memoryMap.region[NVMD].phys_addr_hi);
		nvmd_req.resp_addr_lo =
		    cpu_to_le32(pm8001_ha->memoryMap.region[NVMD].phys_addr_lo);
		break;
	case EXPAN_ROM:
		nvmd_req.len_ir_vpdd = cpu_to_le32(IPMode | EXPAN_ROM);
4762
		nvmd_req.resp_len = cpu_to_le32(ioctl_payload->wr_length);
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4763 4764 4765 4766 4767 4768 4769 4770 4771
		nvmd_req.reserved[0] = cpu_to_le32(0xFEDCBA98);
		nvmd_req.resp_addr_hi =
		    cpu_to_le32(pm8001_ha->memoryMap.region[NVMD].phys_addr_hi);
		nvmd_req.resp_addr_lo =
		    cpu_to_le32(pm8001_ha->memoryMap.region[NVMD].phys_addr_lo);
		break;
	default:
		break;
	}
4772 4773
	rc = pm8001_mpi_build_cmd(pm8001_ha, circularQ, opc, &nvmd_req,
			sizeof(nvmd_req), 0);
4774 4775 4776 4777
	if (rc) {
		kfree(fw_control_context);
		pm8001_tag_free(pm8001_ha, tag);
	}
4778
	return rc;
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}

/**
 * pm8001_chip_fw_flash_update_build - support the firmware update operation
 * @pm8001_ha: our hba card information.
 * @fw_flash_updata_info: firmware flash update param
4785
 * @tag: Tag to apply to the payload
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 */
4787
int
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pm8001_chip_fw_flash_update_build(struct pm8001_hba_info *pm8001_ha,
	void *fw_flash_updata_info, u32 tag)
{
	struct fw_flash_Update_req payload;
	struct fw_flash_updata_info *info;
	struct inbound_queue_table *circularQ;
4794
	int ret;
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	u32 opc = OPC_INB_FW_FLASH_UPDATE;

4797
	memset(&payload, 0, sizeof(struct fw_flash_Update_req));
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	circularQ = &pm8001_ha->inbnd_q_tbl[0];
	info = fw_flash_updata_info;
	payload.tag = cpu_to_le32(tag);
	payload.cur_image_len = cpu_to_le32(info->cur_image_len);
	payload.cur_image_offset = cpu_to_le32(info->cur_image_offset);
	payload.total_image_len = cpu_to_le32(info->total_image_len);
	payload.len = info->sgl.im_len.len ;
4805 4806 4807 4808
	payload.sgl_addr_lo =
		cpu_to_le32(lower_32_bits(le64_to_cpu(info->sgl.addr)));
	payload.sgl_addr_hi =
		cpu_to_le32(upper_32_bits(le64_to_cpu(info->sgl.addr)));
4809 4810
	ret = pm8001_mpi_build_cmd(pm8001_ha, circularQ, opc, &payload,
			sizeof(payload), 0);
4811
	return ret;
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}

4814
int
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pm8001_chip_fw_flash_update_req(struct pm8001_hba_info *pm8001_ha,
	void *payload)
{
	struct fw_flash_updata_info flash_update_info;
	struct fw_control_info *fw_control;
	struct fw_control_ex *fw_control_context;
4821
	int rc;
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	u32 tag;
	struct pm8001_ccb_info *ccb;
4824 4825
	void *buffer = pm8001_ha->memoryMap.region[FW_FLASH].virt_ptr;
	dma_addr_t phys_addr = pm8001_ha->memoryMap.region[FW_FLASH].phys_addr;
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	struct pm8001_ioctl_payload *ioctl_payload = payload;

	fw_control_context = kzalloc(sizeof(struct fw_control_ex), GFP_KERNEL);
4829 4830
	if (!fw_control_context)
		return -ENOMEM;
4831
	fw_control = (struct fw_control_info *)&ioctl_payload->func_specific;
4832 4833 4834
	pm8001_dbg(pm8001_ha, DEVIO,
		   "dma fw_control context input length :%x\n",
		   fw_control->len);
4835
	memcpy(buffer, fw_control->buffer, fw_control->len);
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	flash_update_info.sgl.addr = cpu_to_le64(phys_addr);
	flash_update_info.sgl.im_len.len = cpu_to_le32(fw_control->len);
	flash_update_info.sgl.im_len.e = 0;
	flash_update_info.cur_image_offset = fw_control->offset;
	flash_update_info.cur_image_len = fw_control->len;
	flash_update_info.total_image_len = fw_control->size;
	fw_control_context->fw_control = fw_control;
	fw_control_context->virtAddr = buffer;
4844
	fw_control_context->phys_addr = phys_addr;
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	fw_control_context->len = fw_control->len;
	rc = pm8001_tag_alloc(pm8001_ha, &tag);
4847 4848
	if (rc) {
		kfree(fw_control_context);
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		return -EBUSY;
4850
	}
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	ccb = &pm8001_ha->ccb_info[tag];
	ccb->fw_control_context = fw_control_context;
	ccb->ccb_tag = tag;
4854 4855 4856
	rc = pm8001_chip_fw_flash_update_build(pm8001_ha, &flash_update_info,
		tag);
	return rc;
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}

4859 4860 4861 4862 4863 4864 4865 4866 4867 4868 4869 4870 4871 4872 4873 4874 4875
ssize_t
pm8001_get_gsm_dump(struct device *cdev, u32 length, char *buf)
{
	u32 value, rem, offset = 0, bar = 0;
	u32 index, work_offset, dw_length;
	u32 shift_value, gsm_base, gsm_dump_offset;
	char *direct_data;
	struct Scsi_Host *shost = class_to_shost(cdev);
	struct sas_ha_struct *sha = SHOST_TO_SAS_HA(shost);
	struct pm8001_hba_info *pm8001_ha = sha->lldd_ha;

	direct_data = buf;
	gsm_dump_offset = pm8001_ha->fatal_forensic_shift_offset;

	/* check max is 1 Mbytes */
	if ((length > 0x100000) || (gsm_dump_offset & 3) ||
		((gsm_dump_offset + length) > 0x1000000))
4876
			return -EINVAL;
4877 4878 4879 4880 4881 4882 4883 4884 4885 4886 4887 4888 4889 4890 4891 4892 4893 4894 4895 4896 4897 4898 4899 4900 4901 4902 4903

	if (pm8001_ha->chip_id == chip_8001)
		bar = 2;
	else
		bar = 1;

	work_offset = gsm_dump_offset & 0xFFFF0000;
	offset = gsm_dump_offset & 0x0000FFFF;
	gsm_dump_offset = work_offset;
	/* adjust length to dword boundary */
	rem = length & 3;
	dw_length = length >> 2;

	for (index = 0; index < dw_length; index++) {
		if ((work_offset + offset) & 0xFFFF0000) {
			if (pm8001_ha->chip_id == chip_8001)
				shift_value = ((gsm_dump_offset + offset) &
						SHIFT_REG_64K_MASK);
			else
				shift_value = (((gsm_dump_offset + offset) &
						SHIFT_REG_64K_MASK) >>
						SHIFT_REG_BIT_SHIFT);

			if (pm8001_ha->chip_id == chip_8001) {
				gsm_base = GSM_BASE;
				if (-1 == pm8001_bar4_shift(pm8001_ha,
						(gsm_base + shift_value)))
4904
					return -EIO;
4905 4906 4907 4908
			} else {
				gsm_base = 0;
				if (-1 == pm80xx_bar4_shift(pm8001_ha,
						(gsm_base + shift_value)))
4909
					return -EIO;
4910 4911 4912 4913 4914 4915 4916 4917 4918 4919 4920 4921 4922 4923 4924 4925 4926 4927
			}
			gsm_dump_offset = (gsm_dump_offset + offset) &
						0xFFFF0000;
			work_offset = 0;
			offset = offset & 0x0000FFFF;
		}
		value = pm8001_cr32(pm8001_ha, bar, (work_offset + offset) &
						0x0000FFFF);
		direct_data += sprintf(direct_data, "%08x ", value);
		offset += 4;
	}
	if (rem != 0) {
		value = pm8001_cr32(pm8001_ha, bar, (work_offset + offset) &
						0x0000FFFF);
		/* xfr for non_dw */
		direct_data += sprintf(direct_data, "%08x ", value);
	}
	/* Shift back to BAR4 original address */
4928
	if (-1 == pm8001_bar4_shift(pm8001_ha, 0))
4929
			return -EIO;
4930 4931 4932 4933 4934 4935 4936
	pm8001_ha->fatal_forensic_shift_offset += 1024;

	if (pm8001_ha->fatal_forensic_shift_offset >= 0x100000)
		pm8001_ha->fatal_forensic_shift_offset = 0;
	return direct_data - buf;
}

4937
int
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pm8001_chip_set_dev_state_req(struct pm8001_hba_info *pm8001_ha,
	struct pm8001_device *pm8001_dev, u32 state)
{
	struct set_dev_state_req payload;
	struct inbound_queue_table *circularQ;
	struct pm8001_ccb_info *ccb;
4944
	int rc;
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	u32 tag;
	u32 opc = OPC_INB_SET_DEVICE_STATE;
4947
	memset(&payload, 0, sizeof(payload));
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	rc = pm8001_tag_alloc(pm8001_ha, &tag);
	if (rc)
		return -1;
	ccb = &pm8001_ha->ccb_info[tag];
	ccb->ccb_tag = tag;
	ccb->device = pm8001_dev;
	circularQ = &pm8001_ha->inbnd_q_tbl[0];
	payload.tag = cpu_to_le32(tag);
	payload.device_id = cpu_to_le32(pm8001_dev->device_id);
	payload.nds = cpu_to_le32(state);
4958 4959
	rc = pm8001_mpi_build_cmd(pm8001_ha, circularQ, opc, &payload,
			sizeof(payload), 0);
4960 4961
	return rc;

4962 4963 4964 4965 4966 4967 4968 4969 4970 4971 4972 4973 4974 4975
}

static int
pm8001_chip_sas_re_initialization(struct pm8001_hba_info *pm8001_ha)
{
	struct sas_re_initialization_req payload;
	struct inbound_queue_table *circularQ;
	struct pm8001_ccb_info *ccb;
	int rc;
	u32 tag;
	u32 opc = OPC_INB_SAS_RE_INITIALIZE;
	memset(&payload, 0, sizeof(payload));
	rc = pm8001_tag_alloc(pm8001_ha, &tag);
	if (rc)
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		return -ENOMEM;
4977 4978 4979 4980 4981 4982 4983
	ccb = &pm8001_ha->ccb_info[tag];
	ccb->ccb_tag = tag;
	circularQ = &pm8001_ha->inbnd_q_tbl[0];
	payload.tag = cpu_to_le32(tag);
	payload.SSAHOLT = cpu_to_le32(0xd << 25);
	payload.sata_hol_tmo = cpu_to_le32(80);
	payload.open_reject_cmdretries_data_retries = cpu_to_le32(0xff00ff);
4984 4985
	rc = pm8001_mpi_build_cmd(pm8001_ha, circularQ, opc, &payload,
			sizeof(payload), 0);
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4986 4987
	if (rc)
		pm8001_tag_free(pm8001_ha, tag);
4988
	return rc;
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}

const struct pm8001_dispatch pm8001_8001_dispatch = {
	.name			= "pmc8001",
	.chip_init		= pm8001_chip_init,
	.chip_soft_rst		= pm8001_chip_soft_rst,
	.chip_rst		= pm8001_hw_chip_rst,
	.chip_iounmap		= pm8001_chip_iounmap,
	.isr			= pm8001_chip_isr,
4999
	.is_our_interrupt	= pm8001_chip_is_our_interrupt,
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	.isr_process_oq		= process_oq,
	.interrupt_enable 	= pm8001_chip_interrupt_enable,
	.interrupt_disable	= pm8001_chip_interrupt_disable,
	.make_prd		= pm8001_chip_make_sg,
	.smp_req		= pm8001_chip_smp_req,
	.ssp_io_req		= pm8001_chip_ssp_io_req,
	.sata_req		= pm8001_chip_sata_req,
	.phy_start_req		= pm8001_chip_phy_start_req,
	.phy_stop_req		= pm8001_chip_phy_stop_req,
	.reg_dev_req		= pm8001_chip_reg_dev_req,
	.dereg_dev_req		= pm8001_chip_dereg_dev_req,
	.phy_ctl_req		= pm8001_chip_phy_ctl_req,
	.task_abort		= pm8001_chip_abort_task,
	.ssp_tm_req		= pm8001_chip_ssp_tm_req,
	.get_nvmd_req		= pm8001_chip_get_nvmd_req,
	.set_nvmd_req		= pm8001_chip_set_nvmd_req,
	.fw_flash_update_req	= pm8001_chip_fw_flash_update_req,
	.set_dev_state_req	= pm8001_chip_set_dev_state_req,
5018
	.sas_re_init_req	= pm8001_chip_sas_re_initialization,
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	.fatal_errors		= pm80xx_fatal_errors,
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};