c21b342b8e
MFC after: 1 week
662 lines
28 KiB
C
662 lines
28 KiB
C
/*-
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* Copyright (c) 2010 Alexander Motin <mav@FreeBSD.org>
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer,
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* without modification, immediately at the beginning of the file.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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*
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* THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
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* IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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* OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
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* IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
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* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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* NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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* THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*
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* $FreeBSD$
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*/
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#include "mvs_if.h"
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/* Chip registers */
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#define CHIP_PCIEIC 0x1900 /* PCIe Interrupt Cause */
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#define CHIP_PCIEIM 0x1910 /* PCIe Interrupt Mask */
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#define CHIP_PCIIC 0x1d58 /* PCI Interrupt Cause */
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#define CHIP_PCIIM 0x1d5c /* PCI Interrupt Mask */
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#define CHIP_MIC 0x1d60 /* Main Interrupt Cause */
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#define CHIP_MIM 0x1d64 /* Main Interrupt Mask */
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#define CHIP_SOC_MIC 0x20 /* SoC Main Interrupt Cause */
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#define CHIP_SOC_MIM 0x24 /* SoC Main Interrupt Mask */
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#define IC_ERR_IRQ (1 << 0) /* shift by (2 * port #) */
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#define IC_DONE_IRQ (1 << 1) /* shift by (2 * port #) */
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#define IC_HC0 0x000001ff /* bits 0-8 = HC0 */
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#define IC_HC_SHIFT 9 /* HC1 shift */
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#define IC_HC1 (IC_HC0 << IC_HC_SHIFT) /* 9-17 = HC1 */
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#define IC_ERR_HC0 0x00000055 /* HC0 ERR_IRQ */
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#define IC_DONE_HC0 0x000000aa /* HC0 DONE_IRQ */
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#define IC_ERR_HC1 (IC_ERR_HC0 << IC_HC_SHIFT) /* HC1 ERR_IRQ */
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#define IC_DONE_HC1 (IC_DONE_HC0 << IC_HC_SHIFT) /* HC1 DONE_IRQ */
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#define IC_HC0_COAL_DONE (1 << 8) /* HC0 IRQ coalescing */
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#define IC_HC1_COAL_DONE (1 << 17) /* HC1 IRQ coalescing */
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#define IC_PCI_ERR (1 << 18)
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#define IC_TRAN_COAL_LO_DONE (1 << 19) /* transaction coalescing */
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#define IC_TRAN_COAL_HI_DONE (1 << 20) /* transaction coalescing */
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#define IC_ALL_PORTS_COAL_DONE (1 << 21) /* GEN_II(E) IRQ coalescing */
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#define IC_GPIO_INT (1 << 22)
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#define IC_SELF_INT (1 << 23)
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#define IC_TWSI_INT (1 << 24)
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#define IC_MAIN_RSVD (0xfe000000) /* bits 31-25 */
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#define IC_MAIN_RSVD_5 (0xfff10000) /* bits 31-19 */
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#define IC_MAIN_RSVD_SOC (0xfffffec0) /* bits 31-9, 7-6 */
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#define CHIP_SOC_LED 0x2C /* SoC LED Configuration */
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/* Additional mask for SoC devices with less than 4 channels */
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#define CHIP_SOC_HC0_MASK(num) (0xff >> ((4 - (num)) * 2))
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/* Chip CCC registers */
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#define CHIP_ICC 0x18008
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#define CHIP_ICC_ALL_PORTS (1 << 4) /* all ports irq event */
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#define CHIP_ICT 0x180cc
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#define CHIP_ITT 0x180d0
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#define CHIP_TRAN_COAL_CAUSE_LO 0x18088
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#define CHIP_TRAN_COAL_CAUSE_HI 0x1808c
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/* Host Controller registers */
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#define HC_SIZE 0x10000
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#define HC_OFFSET 0x20000
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#define HC_BASE(hc) ((hc) * HC_SIZE + HC_OFFSET)
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#define HC_CFG 0x0 /* Configuration */
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#define HC_CFG_TIMEOUT_MASK (0xff << 0)
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#define HC_CFG_NODMABS (1 << 8)
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#define HC_CFG_NOEDMABS (1 << 9)
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#define HC_CFG_NOPRDBS (1 << 10)
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#define HC_CFG_TIMEOUTEN (1 << 16) /* Timer Enable */
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#define HC_CFG_COALDIS(p) (1 << ((p) + 24))/* Coalescing Disable*/
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#define HC_RQOP 0x4 /* Request Queue Out-Pointer */
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#define HC_RQIP 0x8 /* Response Queue In-Pointer */
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#define HC_ICT 0xc /* Interrupt Coalescing Threshold */
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#define HC_ICT_SAICOALT_MASK 0x000000ff
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#define HC_ITT 0x10 /* Interrupt Time Threshold */
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#define HC_ITT_SAITMTH_MASK 0x00ffffff
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#define HC_IC 0x14 /* Interrupt Cause */
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#define HC_IC_DONE(p) (1 << (p)) /* SaCrpb/DMA Done */
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#define HC_IC_COAL (1 << 4) /* Intr Coalescing */
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#define HC_IC_DEV(p) (1 << ((p) + 8)) /* Device Intr */
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/* Port registers */
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#define PORT_SIZE 0x2000
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#define PORT_OFFSET 0x2000
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#define PORT_BASE(hc) ((hc) * PORT_SIZE + PORT_OFFSET)
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#define EDMA_CFG 0x0 /* Configuration */
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#define EDMA_CFG_RESERVED (0x1f << 0) /* Queue len ? */
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#define EDMA_CFG_ESATANATVCMDQUE (1 << 5)
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#define EDMA_CFG_ERDBSZ (1 << 8)
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#define EDMA_CFG_EQUE (1 << 9)
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#define EDMA_CFG_ERDBSZEXT (1 << 11)
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#define EDMA_CFG_RESERVED2 (1 << 12)
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#define EDMA_CFG_EWRBUFFERLEN (1 << 13)
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#define EDMA_CFG_EDEVERR (1 << 14)
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#define EDMA_CFG_EEDMAFBS (1 << 16)
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#define EDMA_CFG_ECUTTHROUGHEN (1 << 17)
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#define EDMA_CFG_EEARLYCOMPLETIONEN (1 << 18)
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#define EDMA_CFG_EEDMAQUELEN (1 << 19)
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#define EDMA_CFG_EHOSTQUEUECACHEEN (1 << 22)
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#define EDMA_CFG_EMASKRXPM (1 << 23)
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#define EDMA_CFG_RESUMEDIS (1 << 24)
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#define EDMA_CFG_EDMAFBS (1 << 26)
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#define EDMA_T 0x4 /* Timer */
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#define EDMA_IEC 0x8 /* Interrupt Error Cause */
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#define EDMA_IEM 0xc /* Interrupt Error Mask */
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#define EDMA_IE_EDEVERR (1 << 2) /* EDMA Device Error */
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#define EDMA_IE_EDEVDIS (1 << 3) /* EDMA Dev Disconn */
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#define EDMA_IE_EDEVCON (1 << 4) /* EDMA Dev Conn */
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#define EDMA_IE_SERRINT (1 << 5)
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#define EDMA_IE_ESELFDIS (1 << 7) /* EDMA Self Disable */
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#define EDMA_IE_ETRANSINT (1 << 8) /* Transport Layer */
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#define EDMA_IE_EIORDYERR (1 << 12) /* EDMA IORdy Error */
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#define EDMA_IE_LINKXERR_SATACRC (1 << 0) /* SATA CRC error */
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#define EDMA_IE_LINKXERR_INTERNALFIFO (1 << 1) /* internal FIFO err */
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#define EDMA_IE_LINKXERR_LINKLAYERRESET (1 << 2)
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/* Link Layer is reset by the reception of SYNC primitive from device */
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#define EDMA_IE_LINKXERR_OTHERERRORS (1 << 3)
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/*
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* Link state errors, coding errors, or running disparity errors occur
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* during FIS reception.
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*/
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#define EDMA_IE_LINKTXERR_FISTXABORTED (1 << 4) /* FIS Tx is aborted */
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#define EDMA_IE_LINKCTLRXERR(x) ((x) << 13) /* Link Ctrl Recv Err */
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#define EDMA_IE_LINKDATARXERR(x) ((x) << 17) /* Link Data Recv Err */
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#define EDMA_IE_LINKCTLTXERR(x) ((x) << 21) /* Link Ctrl Tx Error */
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#define EDMA_IE_LINKDATATXERR(x) ((x) << 26) /* Link Data Tx Error */
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#define EDMA_IE_TRANSPROTERR (1U << 31) /* Transport Proto E */
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#define EDMA_IE_TRANSIENT (EDMA_IE_LINKCTLRXERR(0x0b) | \
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EDMA_IE_LINKCTLTXERR(0x1f))
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/* Non-fatal Errors */
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#define EDMA_REQQBAH 0x10 /* Request Queue Base Address High */
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#define EDMA_REQQIP 0x14 /* Request Queue In-Pointer */
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#define EDMA_REQQOP 0x18 /* Request Queue Out-Pointer */
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#define EDMA_REQQP_ERQQP_SHIFT 5
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#define EDMA_REQQP_ERQQP_MASK 0x000003e0
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#define EDMA_REQQP_ERQQBAP_MASK 0x00000c00
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#define EDMA_REQQP_ERQQBA_MASK 0xfffff000
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#define EDMA_RESQBAH 0x1c /* Response Queue Base Address High */
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#define EDMA_RESQIP 0x20 /* Response Queue In-Pointer */
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#define EDMA_RESQOP 0x24 /* Response Queue Out-Pointer */
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#define EDMA_RESQP_ERPQP_SHIFT 3
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#define EDMA_RESQP_ERPQP_MASK 0x000000f8
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#define EDMA_RESQP_ERPQBAP_MASK 0x00000300
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#define EDMA_RESQP_ERPQBA_MASK 0xfffffc00
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#define EDMA_CMD 0x28 /* Command */
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#define EDMA_CMD_EENEDMA (1 << 0) /* Enable EDMA */
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#define EDMA_CMD_EDSEDMA (1 << 1) /* Disable EDMA */
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#define EDMA_CMD_EATARST (1 << 2) /* ATA Device Reset */
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#define EDMA_CMD_EEDMAFRZ (1 << 4) /* EDMA Freeze */
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#define EDMA_TC 0x2c /* Test Control */
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#define EDMA_S 0x30 /* Status */
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#define EDMA_S_EDEVQUETAG(s) ((s) & 0x0000001f)
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#define EDMA_S_EDEVDIR_WRITE (0 << 5)
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#define EDMA_S_EDEVDIR_READ (1 << 5)
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#define EDMA_S_ECACHEEMPTY (1 << 6)
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#define EDMA_S_EDMAIDLE (1 << 7)
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#define EDMA_S_ESTATE(s) (((s) & 0x0000ff00) >> 8)
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#define EDMA_S_EIOID(s) (((s) & 0x003f0000) >> 16)
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#define EDMA_IORT 0x34 /* IORdy Timeout */
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#define EDMA_CDT 0x40 /* Command Delay Threshold */
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#define EDMA_HC 0x60 /* Halt Condition */
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#define EDMA_UNKN_RESD 0x6C /* Unknown register */
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#define EDMA_CQDCQOS(x) (0x90 + ((x) << 2)
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/* NCQ Done/TCQ Outstanding Status */
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/* ATA register defines */
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#define ATA_DATA 0x100 /* (RW) data */
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#define ATA_FEATURE 0x104 /* (W) feature */
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#define ATA_F_DMA 0x01 /* enable DMA */
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#define ATA_F_OVL 0x02 /* enable overlap */
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#define ATA_ERROR 0x104 /* (R) error */
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#define ATA_E_ILI 0x01 /* illegal length */
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#define ATA_E_NM 0x02 /* no media */
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#define ATA_E_ABORT 0x04 /* command aborted */
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#define ATA_E_MCR 0x08 /* media change request */
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#define ATA_E_IDNF 0x10 /* ID not found */
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#define ATA_E_MC 0x20 /* media changed */
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#define ATA_E_UNC 0x40 /* uncorrectable data */
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#define ATA_E_ICRC 0x80 /* UDMA crc error */
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#define ATA_E_ATAPI_SENSE_MASK 0xf0 /* ATAPI sense key mask */
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#define ATA_COUNT 0x108 /* (W) sector count */
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#define ATA_IREASON 0x108 /* (R) interrupt reason */
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#define ATA_I_CMD 0x01 /* cmd (1) | data (0) */
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#define ATA_I_IN 0x02 /* read (1) | write (0) */
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#define ATA_I_RELEASE 0x04 /* released bus (1) */
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#define ATA_I_TAGMASK 0xf8 /* tag mask */
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#define ATA_SECTOR 0x10c /* (RW) sector # */
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#define ATA_CYL_LSB 0x110 /* (RW) cylinder# LSB */
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#define ATA_CYL_MSB 0x114 /* (RW) cylinder# MSB */
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#define ATA_DRIVE 0x118 /* (W) Sector/Drive/Head */
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#define ATA_D_LBA 0x40 /* use LBA addressing */
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#define ATA_D_IBM 0xa0 /* 512 byte sectors, ECC */
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#define ATA_COMMAND 0x11c /* (W) command */
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#define ATA_STATUS 0x11c /* (R) status */
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#define ATA_S_ERROR 0x01 /* error */
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#define ATA_S_INDEX 0x02 /* index */
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#define ATA_S_CORR 0x04 /* data corrected */
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#define ATA_S_DRQ 0x08 /* data request */
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#define ATA_S_DSC 0x10 /* drive seek completed */
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#define ATA_S_SERVICE 0x10 /* drive needs service */
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#define ATA_S_DWF 0x20 /* drive write fault */
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#define ATA_S_DMA 0x20 /* DMA ready */
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#define ATA_S_READY 0x40 /* drive ready */
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#define ATA_S_BUSY 0x80 /* busy */
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#define ATA_CONTROL 0x120 /* (W) control */
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#define ATA_A_IDS 0x02 /* disable interrupts */
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#define ATA_A_RESET 0x04 /* RESET controller */
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#define ATA_A_4BIT 0x08 /* 4 head bits */
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#define ATA_A_HOB 0x80 /* High Order Byte enable */
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#define ATA_ALTSTAT 0x120 /* (R) alternate status */
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#define ATAPI_P_READ (ATA_S_DRQ | ATA_I_IN)
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#define ATAPI_P_WRITE (ATA_S_DRQ)
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#define ATAPI_P_CMDOUT (ATA_S_DRQ | ATA_I_CMD)
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#define ATAPI_P_DONEDRQ (ATA_S_DRQ | ATA_I_CMD | ATA_I_IN)
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#define ATAPI_P_DONE (ATA_I_CMD | ATA_I_IN)
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#define ATAPI_P_ABORT 0
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/* Basic DMA Registers */
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#define DMA_C 0x224 /* Basic DMA Command */
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#define DMA_C_START (1 << 0)
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#define DMA_C_READ (1 << 3)
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#define DMA_C_DREGIONVALID (1 << 8)
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#define DMA_C_DREGIONLAST (1 << 9)
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#define DMA_C_CONTFROMPREV (1 << 10)
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#define DMA_C_DRBC(n) (((n) & 0xffff) << 16)
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#define DMA_S 0x228 /* Basic DMA Status */
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#define DMA_S_ACT (1 << 0) /* Active */
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#define DMA_S_ERR (1 << 1) /* Error */
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#define DMA_S_PAUSED (1 << 2) /* Paused */
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#define DMA_S_LAST (1 << 3) /* Last */
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#define DMA_DTLBA 0x22c /* Descriptor Table Low Base Address */
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#define DMA_DTLBA_MASK 0xfffffff0
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#define DMA_DTHBA 0x230 /* Descriptor Table High Base Address */
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#define DMA_DRLA 0x234 /* Data Region Low Address */
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#define DMA_DRHA 0x238 /* Data Region High Address */
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/* Serial-ATA Registers */
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#define SATA_SS 0x300 /* SStatus */
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#define SATA_SS_DET_MASK 0x0000000f
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#define SATA_SS_DET_NO_DEVICE 0x00000000
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#define SATA_SS_DET_DEV_PRESENT 0x00000001
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#define SATA_SS_DET_PHY_ONLINE 0x00000003
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#define SATA_SS_DET_PHY_OFFLINE 0x00000004
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#define SATA_SS_SPD_MASK 0x000000f0
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#define SATA_SS_SPD_NO_SPEED 0x00000000
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#define SATA_SS_SPD_GEN1 0x00000010
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#define SATA_SS_SPD_GEN2 0x00000020
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#define SATA_SS_SPD_GEN3 0x00000030
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#define SATA_SS_IPM_MASK 0x00000f00
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#define SATA_SS_IPM_NO_DEVICE 0x00000000
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#define SATA_SS_IPM_ACTIVE 0x00000100
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#define SATA_SS_IPM_PARTIAL 0x00000200
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#define SATA_SS_IPM_SLUMBER 0x00000600
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#define SATA_SE 0x304 /* SError */
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#define SATA_SEIM 0x340 /* SError Interrupt Mask */
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#define SATA_SE_DATA_CORRECTED 0x00000001
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#define SATA_SE_COMM_CORRECTED 0x00000002
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#define SATA_SE_DATA_ERR 0x00000100
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#define SATA_SE_COMM_ERR 0x00000200
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#define SATA_SE_PROT_ERR 0x00000400
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#define SATA_SE_HOST_ERR 0x00000800
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#define SATA_SE_PHY_CHANGED 0x00010000
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#define SATA_SE_PHY_IERROR 0x00020000
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#define SATA_SE_COMM_WAKE 0x00040000
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#define SATA_SE_DECODE_ERR 0x00080000
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#define SATA_SE_PARITY_ERR 0x00100000
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#define SATA_SE_CRC_ERR 0x00200000
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#define SATA_SE_HANDSHAKE_ERR 0x00400000
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#define SATA_SE_LINKSEQ_ERR 0x00800000
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#define SATA_SE_TRANSPORT_ERR 0x01000000
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#define SATA_SE_UNKNOWN_FIS 0x02000000
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#define SATA_SC 0x308 /* SControl */
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#define SATA_SC_DET_MASK 0x0000000f
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#define SATA_SC_DET_IDLE 0x00000000
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#define SATA_SC_DET_RESET 0x00000001
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#define SATA_SC_DET_DISABLE 0x00000004
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#define SATA_SC_SPD_MASK 0x000000f0
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#define SATA_SC_SPD_NO_SPEED 0x00000000
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#define SATA_SC_SPD_SPEED_GEN1 0x00000010
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#define SATA_SC_SPD_SPEED_GEN2 0x00000020
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#define SATA_SC_SPD_SPEED_GEN3 0x00000030
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#define SATA_SC_IPM_MASK 0x00000f00
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#define SATA_SC_IPM_NONE 0x00000000
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#define SATA_SC_IPM_DIS_PARTIAL 0x00000100
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#define SATA_SC_IPM_DIS_SLUMBER 0x00000200
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#define SATA_SC_SPM_MASK 0x0000f000
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#define SATA_SC_SPM_NONE 0x00000000
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#define SATA_SC_SPM_PARTIAL 0x00001000
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#define SATA_SC_SPM_SLUMBER 0x00002000
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#define SATA_SC_SPM_ACTIVE 0x00004000
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#define SATA_LTM 0x30c /* LTMode */
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#define SATA_PHYM3 0x310 /* PHY Mode 3 */
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#define SATA_PHYM4 0x314 /* PHY Mode 4 */
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#define SATA_PHYM1 0x32c /* PHY Mode 1 */
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#define SATA_PHYM2 0x330 /* PHY Mode 2 */
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#define SATA_BISTC 0x334 /* BIST Control */
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#define SATA_BISTDW1 0x338 /* BIST DW1 */
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#define SATA_BISTDW2 0x33c /* BIST DW2 */
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#define SATA_SATAICFG 0x050 /* Serial-ATA Interface Configuration */
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#define SATA_SATAICFG_REFCLKCNF_20MHZ (0 << 0)
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#define SATA_SATAICFG_REFCLKCNF_25MHZ (1 << 0)
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#define SATA_SATAICFG_REFCLKCNF_30MHZ (2 << 0)
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#define SATA_SATAICFG_REFCLKCNF_40MHZ (3 << 0)
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#define SATA_SATAICFG_REFCLKCNF_MASK (3 << 0)
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#define SATA_SATAICFG_REFCLKDIV_1 (0 << 2)
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#define SATA_SATAICFG_REFCLKDIV_2 (1 << 2) /* Used 20 or 25MHz */
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#define SATA_SATAICFG_REFCLKDIV_4 (2 << 2) /* Used 40MHz */
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#define SATA_SATAICFG_REFCLKDIV_3 (3 << 2) /* Used 30MHz */
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#define SATA_SATAICFG_REFCLKDIV_MASK (3 << 2)
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#define SATA_SATAICFG_REFCLKFEEDDIV_50 (0 << 4) /* or 100, when Gen2En is 1 */
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#define SATA_SATAICFG_REFCLKFEEDDIV_60 (1 << 4) /* or 120. Used 25MHz */
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#define SATA_SATAICFG_REFCLKFEEDDIV_75 (2 << 4) /* or 150. Used 20MHz */
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#define SATA_SATAICFG_REFCLKFEEDDIV_90 (3 << 4) /* or 180 */
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#define SATA_SATAICFG_REFCLKFEEDDIV_MASK (3 << 4)
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#define SATA_SATAICFG_PHYSSCEN (1 << 6)
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#define SATA_SATAICFG_GEN2EN (1 << 7)
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#define SATA_SATAICFG_COMMEN (1 << 8)
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#define SATA_SATAICFG_PHYSHUTDOWN (1 << 9)
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#define SATA_SATAICFG_TARGETMODE (1 << 10) /* 1 = Initiator */
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#define SATA_SATAICFG_COMCHANNEL (1 << 11)
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#define SATA_SATAICFG_IGNOREBSY (1 << 24)
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#define SATA_SATAICFG_LINKRSTEN (1 << 25)
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#define SATA_SATAICFG_CMDRETXDS (1 << 26)
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#define SATA_SATAICTL 0x344 /* Serial-ATA Interface Control */
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#define SATA_SATAICTL_PMPTX_MASK 0x0000000f
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#define SATA_SATAICTL_PMPTX_SHIFT 0
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#define SATA_SATAICTL_VUM (1 << 8)
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#define SATA_SATAICTL_VUS (1 << 9)
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#define SATA_SATAICTL_EDMAACT (1 << 16)
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#define SATA_SATAICTL_CLEARSTAT (1 << 24)
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#define SATA_SATAICTL_SRST (1 << 25)
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#define SATA_SATAITC 0x348 /* Serial-ATA Interface Test Control */
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#define SATA_SATAIS 0x34c /* Serial-ATA Interface Status */
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#define SATA_VU 0x35c /* Vendor Unique */
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#define SATA_FISC 0x360 /* FIS Configuration */
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#define SATA_FISC_FISWAIT4RDYEN_B0 (1 << 0) /* Device to Host FIS */
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#define SATA_FISC_FISWAIT4RDYEN_B1 (1 << 1) /* SDB FIS rcv with <N>bit 0 */
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#define SATA_FISC_FISWAIT4RDYEN_B2 (1 << 2) /* DMA Activate FIS */
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#define SATA_FISC_FISWAIT4RDYEN_B3 (1 << 3) /* DMA Setup FIS */
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#define SATA_FISC_FISWAIT4RDYEN_B4 (1 << 4) /* Data FIS first DW */
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#define SATA_FISC_FISWAIT4RDYEN_B5 (1 << 5) /* Data FIS entire FIS */
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#define SATA_FISC_FISWAIT4HOSTRDYEN_B0 (1 << 8)
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/* Device to Host FIS with <ERR> or <DF> */
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#define SATA_FISC_FISWAIT4HOSTRDYEN_B1 (1 << 9) /* SDB FIS rcv with <N>bit */
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#define SATA_FISC_FISWAIT4HOSTRDYEN_B2 (1 << 10) /* SDB FIS rcv with <ERR> */
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#define SATA_FISC_FISWAIT4HOSTRDYEN_B3 (1 << 11) /* BIST Acivate FIS */
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#define SATA_FISC_FISWAIT4HOSTRDYEN_B4 (1 << 12) /* PIO Setup FIS */
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#define SATA_FISC_FISWAIT4HOSTRDYEN_B5 (1 << 13) /* Data FIS with Link error */
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#define SATA_FISC_FISWAIT4HOSTRDYEN_B6 (1 << 14) /* Unrecognized FIS type */
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#define SATA_FISC_FISWAIT4HOSTRDYEN_B7 (1 << 15) /* Any FIS */
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#define SATA_FISC_FISDMAACTIVATESYNCRESP (1 << 16)
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#define SATA_FISC_FISUNRECTYPECONT (1 << 17)
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#define SATA_FISIC 0x364 /* FIS Interrupt Cause */
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#define SATA_FISIM 0x368 /* FIS Interrupt Mask */
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#define SATA_FISDW0 0x370 /* FIS DW0 */
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#define SATA_FISDW1 0x374 /* FIS DW1 */
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#define SATA_FISDW2 0x378 /* FIS DW2 */
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#define SATA_FISDW3 0x37c /* FIS DW3 */
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#define SATA_FISDW4 0x380 /* FIS DW4 */
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#define SATA_FISDW5 0x384 /* FIS DW5 */
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#define SATA_FISDW6 0x388 /* FIS DW6 */
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#define SATA_PHYM9_GEN2 0x398
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#define SATA_PHYM9_GEN1 0x39c
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#define SATA_PHYCFG_OFS 0x3a0 /* 65nm SoCs only */
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#define MVS_MAX_PORTS 8
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#define MVS_MAX_SLOTS 32
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/* Pessimistic prognosis on number of required S/G entries */
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#define MVS_SG_ENTRIES (btoc(MAXPHYS) + 1)
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/* EDMA Command Request Block (CRQB) Data */
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struct mvs_crqb {
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uint32_t cprdbl; /* cPRD Desriptor Table Base Low Address */
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uint32_t cprdbh; /* cPRD Desriptor Table Base High Address */
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uint16_t ctrlflg; /* Control Flags */
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#define MVS_CRQB_READ 0x0001
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#define MVS_CRQB_TAG_MASK 0x003e
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#define MVS_CRQB_TAG_SHIFT 1
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#define MVS_CRQB_PMP_MASK 0xf000
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#define MVS_CRQB_PMP_SHIFT 12
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uint8_t cmd[22];
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} __packed;
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struct mvs_crqb_gen2e {
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uint32_t cprdbl; /* cPRD Desriptor Table Base Low Address */
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uint32_t cprdbh; /* cPRD Desriptor Table Base High Address */
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uint32_t ctrlflg; /* Control Flags */
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#define MVS_CRQB2E_READ 0x00000001
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#define MVS_CRQB2E_DTAG_MASK 0x0000003e
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#define MVS_CRQB2E_DTAG_SHIFT 1
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#define MVS_CRQB2E_PMP_MASK 0x0000f000
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#define MVS_CRQB2E_PMP_SHIFT 12
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#define MVS_CRQB2E_CPRD 0x00010000
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#define MVS_CRQB2E_HTAG_MASK 0x003e0000
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#define MVS_CRQB2E_HTAG_SHIFT 17
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uint32_t drbc; /* Data Region Byte Count */
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uint8_t cmd[16];
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} __packed;
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/* EDMA Phisical Region Descriptors (ePRD) Table Data Structure */
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struct mvs_eprd {
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uint32_t prdbal; /* Address bits[31:1] */
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uint32_t bytecount; /* Byte Count */
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#define MVS_EPRD_MASK 0x0000ffff /* max 64KB */
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#define MVS_EPRD_MAX (MVS_EPRD_MASK + 1)
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#define MVS_EPRD_EOF 0x80000000
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uint32_t prdbah; /* Address bits[63:32] */
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uint32_t resv;
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} __packed;
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/* Command request blocks. 32 commands. First 1Kbyte aligned. */
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#define MVS_CRQB_OFFSET 0
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#define MVS_CRQB_SIZE 32 /* sizeof(struct mvs_crqb) */
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#define MVS_CRQB_MASK 0x000003e0
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#define MVS_CRQB_SHIFT 5
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#define MVS_CRQB_TO_ADDR(slot) ((slot) << MVS_CRQB_SHIFT)
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#define MVS_ADDR_TO_CRQB(addr) (((addr) & MVS_CRQB_MASK) >> MVS_CRQB_SHIFT)
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/* ePRD blocks. Up to 32 commands, Each 16byte aligned. */
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#define MVS_EPRD_OFFSET (MVS_CRQB_OFFSET + MVS_CRQB_SIZE * MVS_MAX_SLOTS)
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#define MVS_EPRD_SIZE (MVS_SG_ENTRIES * 16) /* sizeof(struct mvs_eprd) */
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/* Request work area. */
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#define MVS_WORKRQ_SIZE (MVS_EPRD_OFFSET + MVS_EPRD_SIZE * MVS_MAX_SLOTS)
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/* EDMA Command Response Block (CRPB) Data */
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struct mvs_crpb {
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uint16_t id; /* CRPB ID */
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#define MVS_CRPB_TAG_MASK 0x001F
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#define MVS_CRPB_TAG_SHIFT 0
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uint16_t rspflg; /* CPRB Response Flags */
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#define MVS_CRPB_EDMASTS_MASK 0x007F
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#define MVS_CRPB_EDMASTS_SHIFT 0
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#define MVS_CRPB_ATASTS_MASK 0xFF00
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#define MVS_CRPB_ATASTS_SHIFT 8
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uint32_t ts; /* CPRB Time Stamp */
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} __packed;
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/* Command response blocks. 32 commands. First 256byte aligned. */
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#define MVS_CRPB_OFFSET 0
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#define MVS_CRPB_SIZE sizeof(struct mvs_crpb)
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#define MVS_CRPB_MASK 0x000000f8
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#define MVS_CRPB_SHIFT 3
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#define MVS_CRPB_TO_ADDR(slot) ((slot) << MVS_CRPB_SHIFT)
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#define MVS_ADDR_TO_CRPB(addr) (((addr) & MVS_CRPB_MASK) >> MVS_CRPB_SHIFT)
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/* Request work area. */
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#define MVS_WORKRP_SIZE (MVS_CRPB_OFFSET + MVS_CRPB_SIZE * MVS_MAX_SLOTS)
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/* misc defines */
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#define ATA_IRQ_RID 0
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#define ATA_INTR_FLAGS (INTR_MPSAFE|INTR_TYPE_BIO|INTR_ENTROPY)
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struct ata_dmaslot {
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bus_dmamap_t data_map; /* Data DMA map */
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bus_addr_t addr; /* Data address */
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uint16_t len; /* Data size */
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};
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/* structure holding DMA related information */
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struct mvs_dma {
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bus_dma_tag_t workrq_tag; /* Request workspace DMA tag */
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bus_dmamap_t workrq_map; /* Request workspace DMA map */
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uint8_t *workrq; /* Request workspace */
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bus_addr_t workrq_bus; /* Request bus address */
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bus_dma_tag_t workrp_tag; /* Reply workspace DMA tag */
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bus_dmamap_t workrp_map; /* Reply workspace DMA map */
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uint8_t *workrp; /* Reply workspace */
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bus_addr_t workrp_bus; /* Reply bus address */
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bus_dma_tag_t data_tag; /* Data DMA tag */
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};
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enum mvs_slot_states {
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MVS_SLOT_EMPTY,
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MVS_SLOT_LOADING,
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MVS_SLOT_RUNNING,
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MVS_SLOT_EXECUTING
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};
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struct mvs_slot {
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device_t dev; /* Device handle */
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int slot; /* Number of this slot */
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int tag; /* Used command tag */
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enum mvs_slot_states state; /* Slot state */
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union ccb *ccb; /* CCB occupying slot */
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struct ata_dmaslot dma; /* DMA data of this slot */
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struct callout timeout; /* Execution timeout */
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};
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struct mvs_device {
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int revision;
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int mode;
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u_int bytecount;
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u_int atapi;
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u_int tags;
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u_int caps;
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};
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enum mvs_edma_mode {
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MVS_EDMA_UNKNOWN,
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MVS_EDMA_OFF,
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MVS_EDMA_ON,
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MVS_EDMA_QUEUED,
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MVS_EDMA_NCQ,
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};
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/* structure describing an ATA channel */
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struct mvs_channel {
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device_t dev; /* Device handle */
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int unit; /* Physical channel */
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struct resource *r_mem; /* Memory of this channel */
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struct resource *r_irq; /* Interrupt of this channel */
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void *ih; /* Interrupt handle */
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struct mvs_dma dma; /* DMA data */
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struct cam_sim *sim;
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struct cam_path *path;
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int quirks;
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#define MVS_Q_GENI 1
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#define MVS_Q_GENII 2
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#define MVS_Q_GENIIE 4
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#define MVS_Q_SOC 8
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#define MVS_Q_CT 16
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#define MVS_Q_SOC65 32
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int pm_level; /* power management level */
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struct mvs_slot slot[MVS_MAX_SLOTS];
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union ccb *hold[MVS_MAX_SLOTS];
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int holdtag[MVS_MAX_SLOTS]; /* Tags used for held commands. */
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struct mtx mtx; /* state lock */
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int devices; /* What is present */
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int pm_present; /* PM presence reported */
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enum mvs_edma_mode curr_mode; /* Current EDMA mode */
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int fbs_enabled; /* FIS-based switching enabled */
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uint32_t oslots; /* Occupied slots */
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uint32_t otagspd[16]; /* Occupied device tags */
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uint32_t rslots; /* Running slots */
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uint32_t aslots; /* Slots with atomic commands */
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uint32_t eslots; /* Slots in error */
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uint32_t toslots; /* Slots in timeout */
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int numrslots; /* Number of running slots */
|
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int numrslotspd[16];/* Number of running slots per dev */
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|
int numpslots; /* Number of PIO slots */
|
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int numdslots; /* Number of DMA slots */
|
|
int numtslots; /* Number of NCQ slots */
|
|
int numtslotspd[16];/* Number of NCQ slots per dev */
|
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int numhslots; /* Number of held slots */
|
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int recoverycmd; /* Our READ LOG active */
|
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int fatalerr; /* Fatal error happend */
|
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int lastslot; /* Last used slot */
|
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int taggedtarget; /* Last tagged target */
|
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int resetting; /* Hard-reset in progress. */
|
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int resetpolldiv; /* Hard-reset poll divider. */
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int out_idx; /* Next written CRQB */
|
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int in_idx; /* Next read CRPB */
|
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u_int transfersize; /* PIO transfer size */
|
|
u_int donecount; /* PIO bytes sent/received */
|
|
u_int basic_dma; /* Basic DMA used for ATAPI */
|
|
u_int fake_busy; /* Fake busy bit after command submission */
|
|
union ccb *frozen; /* Frozen command */
|
|
struct callout pm_timer; /* Power management events */
|
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struct callout reset_timer; /* Hard-reset timeout */
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|
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struct mvs_device user[16]; /* User-specified settings */
|
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struct mvs_device curr[16]; /* Current settings */
|
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};
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/* structure describing a MVS controller */
|
|
struct mvs_controller {
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|
device_t dev;
|
|
int r_rid;
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struct resource *r_mem;
|
|
struct rman sc_iomem;
|
|
struct mvs_controller_irq {
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|
struct resource *r_irq;
|
|
void *handle;
|
|
int r_irq_rid;
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} irq;
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|
int quirks;
|
|
int channels;
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|
int ccc; /* CCC timeout */
|
|
int cccc; /* CCC commands */
|
|
struct mtx mtx; /* MIM access lock */
|
|
int gmim; /* Globally wanted MIM bits */
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int pmim; /* Port wanted MIM bits */
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int mim; /* Current MIM bits */
|
|
int msi; /* MSI enabled */
|
|
int msia; /* MSI active */
|
|
struct {
|
|
void (*function)(void *);
|
|
void *argument;
|
|
} interrupt[MVS_MAX_PORTS];
|
|
};
|
|
|
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enum mvs_err_type {
|
|
MVS_ERR_NONE, /* No error */
|
|
MVS_ERR_INVALID, /* Error detected by us before submitting. */
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|
MVS_ERR_INNOCENT, /* Innocent victim. */
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|
MVS_ERR_TFE, /* Task File Error. */
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MVS_ERR_SATA, /* SATA error. */
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MVS_ERR_TIMEOUT, /* Command execution timeout. */
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MVS_ERR_NCQ, /* NCQ command error. CCB should be put on hold
|
|
* until READ LOG executed to reveal error. */
|
|
};
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struct mvs_intr_arg {
|
|
void *arg;
|
|
u_int cause;
|
|
};
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|
|
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extern devclass_t mvs_devclass;
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|
|
/* macros to hide busspace uglyness */
|
|
#define ATA_INB(res, offset) \
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bus_read_1((res), (offset))
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#define ATA_INW(res, offset) \
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bus_read_2((res), (offset))
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#define ATA_INL(res, offset) \
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bus_read_4((res), (offset))
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#define ATA_INSW(res, offset, addr, count) \
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bus_read_multi_2((res), (offset), (addr), (count))
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#define ATA_INSW_STRM(res, offset, addr, count) \
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bus_read_multi_stream_2((res), (offset), (addr), (count))
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#define ATA_INSL(res, offset, addr, count) \
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bus_read_multi_4((res), (offset), (addr), (count))
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|
#define ATA_INSL_STRM(res, offset, addr, count) \
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bus_read_multi_stream_4((res), (offset), (addr), (count))
|
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#define ATA_OUTB(res, offset, value) \
|
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bus_write_1((res), (offset), (value))
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#define ATA_OUTW(res, offset, value) \
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bus_write_2((res), (offset), (value))
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#define ATA_OUTL(res, offset, value) \
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bus_write_4((res), (offset), (value));
|
|
#define ATA_OUTSW(res, offset, addr, count) \
|
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bus_write_multi_2((res), (offset), (addr), (count))
|
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#define ATA_OUTSW_STRM(res, offset, addr, count) \
|
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bus_write_multi_stream_2((res), (offset), (addr), (count))
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#define ATA_OUTSL(res, offset, addr, count) \
|
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bus_write_multi_4((res), (offset), (addr), (count))
|
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#define ATA_OUTSL_STRM(res, offset, addr, count) \
|
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bus_write_multi_stream_4((res), (offset), (addr), (count))
|