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https://github.com/AuxXxilium/linux_dsm_epyc7002.git
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74d23cc704
The timecounter code has almost nothing to do with the clocksource code. Let it live in its own file. This will help isolate the timecounter users from the clocksource users in the source tree. Signed-off-by: Richard Cochran <richardcochran@gmail.com> Acked-by: Jeff Kirsher <jeffrey.t.kirsher@intel.com> Signed-off-by: David S. Miller <davem@davemloft.net>
407 lines
13 KiB
C
407 lines
13 KiB
C
/*
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* Common defines for the alsa driver code base for HD Audio.
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License as published by the Free
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* Software Foundation; either version 2 of the License, or (at your option)
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* any later version.
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*
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* This program is distributed in the hope that it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
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* more details.
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*/
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#ifndef __SOUND_HDA_PRIV_H
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#define __SOUND_HDA_PRIV_H
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#include <linux/timecounter.h>
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#include <sound/core.h>
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#include <sound/pcm.h>
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/*
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* registers
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*/
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#define AZX_REG_GCAP 0x00
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#define AZX_GCAP_64OK (1 << 0) /* 64bit address support */
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#define AZX_GCAP_NSDO (3 << 1) /* # of serial data out signals */
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#define AZX_GCAP_BSS (31 << 3) /* # of bidirectional streams */
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#define AZX_GCAP_ISS (15 << 8) /* # of input streams */
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#define AZX_GCAP_OSS (15 << 12) /* # of output streams */
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#define AZX_REG_VMIN 0x02
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#define AZX_REG_VMAJ 0x03
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#define AZX_REG_OUTPAY 0x04
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#define AZX_REG_INPAY 0x06
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#define AZX_REG_GCTL 0x08
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#define AZX_GCTL_RESET (1 << 0) /* controller reset */
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#define AZX_GCTL_FCNTRL (1 << 1) /* flush control */
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#define AZX_GCTL_UNSOL (1 << 8) /* accept unsol. response enable */
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#define AZX_REG_WAKEEN 0x0c
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#define AZX_REG_STATESTS 0x0e
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#define AZX_REG_GSTS 0x10
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#define AZX_GSTS_FSTS (1 << 1) /* flush status */
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#define AZX_REG_INTCTL 0x20
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#define AZX_REG_INTSTS 0x24
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#define AZX_REG_WALLCLK 0x30 /* 24Mhz source */
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#define AZX_REG_OLD_SSYNC 0x34 /* SSYNC for old ICH */
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#define AZX_REG_SSYNC 0x38
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#define AZX_REG_CORBLBASE 0x40
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#define AZX_REG_CORBUBASE 0x44
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#define AZX_REG_CORBWP 0x48
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#define AZX_REG_CORBRP 0x4a
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#define AZX_CORBRP_RST (1 << 15) /* read pointer reset */
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#define AZX_REG_CORBCTL 0x4c
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#define AZX_CORBCTL_RUN (1 << 1) /* enable DMA */
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#define AZX_CORBCTL_CMEIE (1 << 0) /* enable memory error irq */
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#define AZX_REG_CORBSTS 0x4d
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#define AZX_CORBSTS_CMEI (1 << 0) /* memory error indication */
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#define AZX_REG_CORBSIZE 0x4e
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#define AZX_REG_RIRBLBASE 0x50
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#define AZX_REG_RIRBUBASE 0x54
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#define AZX_REG_RIRBWP 0x58
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#define AZX_RIRBWP_RST (1 << 15) /* write pointer reset */
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#define AZX_REG_RINTCNT 0x5a
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#define AZX_REG_RIRBCTL 0x5c
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#define AZX_RBCTL_IRQ_EN (1 << 0) /* enable IRQ */
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#define AZX_RBCTL_DMA_EN (1 << 1) /* enable DMA */
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#define AZX_RBCTL_OVERRUN_EN (1 << 2) /* enable overrun irq */
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#define AZX_REG_RIRBSTS 0x5d
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#define AZX_RBSTS_IRQ (1 << 0) /* response irq */
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#define AZX_RBSTS_OVERRUN (1 << 2) /* overrun irq */
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#define AZX_REG_RIRBSIZE 0x5e
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#define AZX_REG_IC 0x60
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#define AZX_REG_IR 0x64
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#define AZX_REG_IRS 0x68
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#define AZX_IRS_VALID (1<<1)
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#define AZX_IRS_BUSY (1<<0)
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#define AZX_REG_DPLBASE 0x70
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#define AZX_REG_DPUBASE 0x74
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#define AZX_DPLBASE_ENABLE 0x1 /* Enable position buffer */
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/* SD offset: SDI0=0x80, SDI1=0xa0, ... SDO3=0x160 */
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enum { SDI0, SDI1, SDI2, SDI3, SDO0, SDO1, SDO2, SDO3 };
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/* stream register offsets from stream base */
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#define AZX_REG_SD_CTL 0x00
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#define AZX_REG_SD_STS 0x03
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#define AZX_REG_SD_LPIB 0x04
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#define AZX_REG_SD_CBL 0x08
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#define AZX_REG_SD_LVI 0x0c
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#define AZX_REG_SD_FIFOW 0x0e
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#define AZX_REG_SD_FIFOSIZE 0x10
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#define AZX_REG_SD_FORMAT 0x12
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#define AZX_REG_SD_BDLPL 0x18
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#define AZX_REG_SD_BDLPU 0x1c
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/* PCI space */
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#define AZX_PCIREG_TCSEL 0x44
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/*
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* other constants
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*/
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/* max number of fragments - we may use more if allocating more pages for BDL */
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#define BDL_SIZE 4096
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#define AZX_MAX_BDL_ENTRIES (BDL_SIZE / 16)
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#define AZX_MAX_FRAG 32
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/* max buffer size - no h/w limit, you can increase as you like */
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#define AZX_MAX_BUF_SIZE (1024*1024*1024)
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/* RIRB int mask: overrun[2], response[0] */
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#define RIRB_INT_RESPONSE 0x01
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#define RIRB_INT_OVERRUN 0x04
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#define RIRB_INT_MASK 0x05
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/* STATESTS int mask: S3,SD2,SD1,SD0 */
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#define AZX_MAX_CODECS 8
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#define AZX_DEFAULT_CODECS 4
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#define STATESTS_INT_MASK ((1 << AZX_MAX_CODECS) - 1)
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/* SD_CTL bits */
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#define SD_CTL_STREAM_RESET 0x01 /* stream reset bit */
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#define SD_CTL_DMA_START 0x02 /* stream DMA start bit */
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#define SD_CTL_STRIPE (3 << 16) /* stripe control */
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#define SD_CTL_TRAFFIC_PRIO (1 << 18) /* traffic priority */
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#define SD_CTL_DIR (1 << 19) /* bi-directional stream */
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#define SD_CTL_STREAM_TAG_MASK (0xf << 20)
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#define SD_CTL_STREAM_TAG_SHIFT 20
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/* SD_CTL and SD_STS */
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#define SD_INT_DESC_ERR 0x10 /* descriptor error interrupt */
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#define SD_INT_FIFO_ERR 0x08 /* FIFO error interrupt */
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#define SD_INT_COMPLETE 0x04 /* completion interrupt */
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#define SD_INT_MASK (SD_INT_DESC_ERR|SD_INT_FIFO_ERR|\
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SD_INT_COMPLETE)
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/* SD_STS */
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#define SD_STS_FIFO_READY 0x20 /* FIFO ready */
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/* INTCTL and INTSTS */
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#define AZX_INT_ALL_STREAM 0xff /* all stream interrupts */
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#define AZX_INT_CTRL_EN 0x40000000 /* controller interrupt enable bit */
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#define AZX_INT_GLOBAL_EN 0x80000000 /* global interrupt enable bit */
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/* below are so far hardcoded - should read registers in future */
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#define AZX_MAX_CORB_ENTRIES 256
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#define AZX_MAX_RIRB_ENTRIES 256
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/* driver quirks (capabilities) */
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/* bits 0-7 are used for indicating driver type */
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#define AZX_DCAPS_NO_TCSEL (1 << 8) /* No Intel TCSEL bit */
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#define AZX_DCAPS_NO_MSI (1 << 9) /* No MSI support */
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#define AZX_DCAPS_SNOOP_MASK (3 << 10) /* snoop type mask */
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#define AZX_DCAPS_SNOOP_OFF (1 << 12) /* snoop default off */
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#define AZX_DCAPS_RIRB_DELAY (1 << 13) /* Long delay in read loop */
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#define AZX_DCAPS_RIRB_PRE_DELAY (1 << 14) /* Put a delay before read */
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#define AZX_DCAPS_CTX_WORKAROUND (1 << 15) /* X-Fi workaround */
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#define AZX_DCAPS_POSFIX_LPIB (1 << 16) /* Use LPIB as default */
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#define AZX_DCAPS_POSFIX_VIA (1 << 17) /* Use VIACOMBO as default */
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#define AZX_DCAPS_NO_64BIT (1 << 18) /* No 64bit address */
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#define AZX_DCAPS_SYNC_WRITE (1 << 19) /* sync each cmd write */
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#define AZX_DCAPS_OLD_SSYNC (1 << 20) /* Old SSYNC reg for ICH */
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#define AZX_DCAPS_NO_ALIGN_BUFSIZE (1 << 21) /* no buffer size alignment */
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/* 22 unused */
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#define AZX_DCAPS_4K_BDLE_BOUNDARY (1 << 23) /* BDLE in 4k boundary */
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#define AZX_DCAPS_REVERSE_ASSIGN (1 << 24) /* Assign devices in reverse order */
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#define AZX_DCAPS_COUNT_LPIB_DELAY (1 << 25) /* Take LPIB as delay */
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#define AZX_DCAPS_PM_RUNTIME (1 << 26) /* runtime PM support */
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#define AZX_DCAPS_I915_POWERWELL (1 << 27) /* HSW i915 powerwell support */
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#define AZX_DCAPS_CORBRP_SELF_CLEAR (1 << 28) /* CORBRP clears itself after reset */
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#define AZX_DCAPS_NO_MSI64 (1 << 29) /* Stick to 32-bit MSIs */
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#define AZX_DCAPS_SEPARATE_STREAM_TAG (1 << 30) /* capture and playback use separate stream tag */
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enum {
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AZX_SNOOP_TYPE_NONE ,
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AZX_SNOOP_TYPE_SCH,
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AZX_SNOOP_TYPE_ATI,
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AZX_SNOOP_TYPE_NVIDIA,
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};
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/* HD Audio class code */
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#define PCI_CLASS_MULTIMEDIA_HD_AUDIO 0x0403
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struct azx_dev {
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struct snd_dma_buffer bdl; /* BDL buffer */
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u32 *posbuf; /* position buffer pointer */
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unsigned int bufsize; /* size of the play buffer in bytes */
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unsigned int period_bytes; /* size of the period in bytes */
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unsigned int frags; /* number for period in the play buffer */
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unsigned int fifo_size; /* FIFO size */
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unsigned long start_wallclk; /* start + minimum wallclk */
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unsigned long period_wallclk; /* wallclk for period */
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void __iomem *sd_addr; /* stream descriptor pointer */
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u32 sd_int_sta_mask; /* stream int status mask */
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/* pcm support */
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struct snd_pcm_substream *substream; /* assigned substream,
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* set in PCM open
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*/
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unsigned int format_val; /* format value to be set in the
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* controller and the codec
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*/
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unsigned char stream_tag; /* assigned stream */
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unsigned char index; /* stream index */
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int assigned_key; /* last device# key assigned to */
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unsigned int opened:1;
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unsigned int running:1;
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unsigned int irq_pending:1;
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unsigned int prepared:1;
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unsigned int locked:1;
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/*
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* For VIA:
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* A flag to ensure DMA position is 0
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* when link position is not greater than FIFO size
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*/
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unsigned int insufficient:1;
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unsigned int wc_marked:1;
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unsigned int no_period_wakeup:1;
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struct timecounter azx_tc;
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struct cyclecounter azx_cc;
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int delay_negative_threshold;
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#ifdef CONFIG_SND_HDA_DSP_LOADER
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/* Allows dsp load to have sole access to the playback stream. */
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struct mutex dsp_mutex;
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#endif
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};
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/* CORB/RIRB */
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struct azx_rb {
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u32 *buf; /* CORB/RIRB buffer
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* Each CORB entry is 4byte, RIRB is 8byte
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*/
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dma_addr_t addr; /* physical address of CORB/RIRB buffer */
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/* for RIRB */
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unsigned short rp, wp; /* read/write pointers */
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int cmds[AZX_MAX_CODECS]; /* number of pending requests */
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u32 res[AZX_MAX_CODECS]; /* last read value */
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};
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struct azx;
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/* Functions to read/write to hda registers. */
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struct hda_controller_ops {
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/* Register Access */
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void (*reg_writel)(u32 value, u32 __iomem *addr);
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u32 (*reg_readl)(u32 __iomem *addr);
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void (*reg_writew)(u16 value, u16 __iomem *addr);
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u16 (*reg_readw)(u16 __iomem *addr);
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void (*reg_writeb)(u8 value, u8 __iomem *addr);
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u8 (*reg_readb)(u8 __iomem *addr);
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/* Disable msi if supported, PCI only */
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int (*disable_msi_reset_irq)(struct azx *);
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/* Allocation ops */
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int (*dma_alloc_pages)(struct azx *chip,
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int type,
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size_t size,
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struct snd_dma_buffer *buf);
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void (*dma_free_pages)(struct azx *chip, struct snd_dma_buffer *buf);
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int (*substream_alloc_pages)(struct azx *chip,
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struct snd_pcm_substream *substream,
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size_t size);
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int (*substream_free_pages)(struct azx *chip,
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struct snd_pcm_substream *substream);
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void (*pcm_mmap_prepare)(struct snd_pcm_substream *substream,
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struct vm_area_struct *area);
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/* Check if current position is acceptable */
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int (*position_check)(struct azx *chip, struct azx_dev *azx_dev);
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};
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struct azx_pcm {
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struct azx *chip;
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struct snd_pcm *pcm;
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struct hda_codec *codec;
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struct hda_pcm_stream *hinfo[2];
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struct list_head list;
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};
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typedef unsigned int (*azx_get_pos_callback_t)(struct azx *, struct azx_dev *);
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typedef int (*azx_get_delay_callback_t)(struct azx *, struct azx_dev *, unsigned int pos);
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struct azx {
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struct snd_card *card;
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struct pci_dev *pci;
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int dev_index;
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/* chip type specific */
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int driver_type;
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unsigned int driver_caps;
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int playback_streams;
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int playback_index_offset;
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int capture_streams;
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int capture_index_offset;
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int num_streams;
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const int *jackpoll_ms; /* per-card jack poll interval */
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/* Register interaction. */
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const struct hda_controller_ops *ops;
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/* position adjustment callbacks */
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azx_get_pos_callback_t get_position[2];
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azx_get_delay_callback_t get_delay[2];
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/* pci resources */
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unsigned long addr;
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void __iomem *remap_addr;
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int irq;
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/* locks */
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spinlock_t reg_lock;
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struct mutex open_mutex; /* Prevents concurrent open/close operations */
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/* streams (x num_streams) */
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struct azx_dev *azx_dev;
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/* PCM */
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struct list_head pcm_list; /* azx_pcm list */
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/* HD codec */
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unsigned short codec_mask;
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int codec_probe_mask; /* copied from probe_mask option */
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struct hda_bus *bus;
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unsigned int beep_mode;
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/* CORB/RIRB */
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struct azx_rb corb;
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struct azx_rb rirb;
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/* CORB/RIRB and position buffers */
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struct snd_dma_buffer rb;
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struct snd_dma_buffer posbuf;
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#ifdef CONFIG_SND_HDA_PATCH_LOADER
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const struct firmware *fw;
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#endif
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/* flags */
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const int *bdl_pos_adj;
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int poll_count;
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unsigned int running:1;
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unsigned int initialized:1;
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unsigned int single_cmd:1;
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unsigned int polling_mode:1;
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unsigned int msi:1;
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unsigned int probing:1; /* codec probing phase */
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unsigned int snoop:1;
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unsigned int align_buffer_size:1;
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unsigned int region_requested:1;
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unsigned int disabled:1; /* disabled by VGA-switcher */
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/* for debugging */
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unsigned int last_cmd[AZX_MAX_CODECS];
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/* reboot notifier (for mysterious hangup problem at power-down) */
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struct notifier_block reboot_notifier;
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#ifdef CONFIG_SND_HDA_DSP_LOADER
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struct azx_dev saved_azx_dev;
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#endif
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};
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#ifdef CONFIG_X86
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#define azx_snoop(chip) ((chip)->snoop)
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#else
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#define azx_snoop(chip) true
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#endif
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/*
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* macros for easy use
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*/
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#define azx_writel(chip, reg, value) \
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((chip)->ops->reg_writel(value, (chip)->remap_addr + AZX_REG_##reg))
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#define azx_readl(chip, reg) \
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((chip)->ops->reg_readl((chip)->remap_addr + AZX_REG_##reg))
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#define azx_writew(chip, reg, value) \
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((chip)->ops->reg_writew(value, (chip)->remap_addr + AZX_REG_##reg))
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#define azx_readw(chip, reg) \
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((chip)->ops->reg_readw((chip)->remap_addr + AZX_REG_##reg))
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#define azx_writeb(chip, reg, value) \
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((chip)->ops->reg_writeb(value, (chip)->remap_addr + AZX_REG_##reg))
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#define azx_readb(chip, reg) \
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((chip)->ops->reg_readb((chip)->remap_addr + AZX_REG_##reg))
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#define azx_sd_writel(chip, dev, reg, value) \
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((chip)->ops->reg_writel(value, (dev)->sd_addr + AZX_REG_##reg))
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#define azx_sd_readl(chip, dev, reg) \
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((chip)->ops->reg_readl((dev)->sd_addr + AZX_REG_##reg))
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#define azx_sd_writew(chip, dev, reg, value) \
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((chip)->ops->reg_writew(value, (dev)->sd_addr + AZX_REG_##reg))
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#define azx_sd_readw(chip, dev, reg) \
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((chip)->ops->reg_readw((dev)->sd_addr + AZX_REG_##reg))
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#define azx_sd_writeb(chip, dev, reg, value) \
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((chip)->ops->reg_writeb(value, (dev)->sd_addr + AZX_REG_##reg))
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#define azx_sd_readb(chip, dev, reg) \
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((chip)->ops->reg_readb((dev)->sd_addr + AZX_REG_##reg))
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#endif /* __SOUND_HDA_PRIV_H */
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