mirror of
https://github.com/AsahiLinux/u-boot
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f1df936445
This patch adds the DDR3 setup and training code taken from the Marvell U-Boot repository. This code used to be included as a binary (bin_hdr) into the Armada A38x boot image. Not linked with the main U-Boot. With this code addition and the serdes/PHY setup code, the Armada A38x support in mainline U-Boot is finally self-contained. So the complete image for booting can be built from mainline U-Boot. Without any additional external inclusion. Note: This code has undergone many hours (days!) of coding-style cleanup and refactoring. It still is not checkpatch clean though, I'm afraid. As the factoring of the code has so many levels of indentation that many lines are longer than 80 chars. Signed-off-by: Stefan Roese <sr@denx.de>
236 lines
9.6 KiB
C
236 lines
9.6 KiB
C
/*
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* Copyright (C) Marvell International Ltd. and its affiliates
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*
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* SPDX-License-Identifier: GPL-2.0
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*/
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#ifndef _XOR_REGS_h
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#define _XOR_REGS_h
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/*
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* For controllers that have two XOR units, then chans 2 & 3 will be
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* mapped to channels 0 & 1 of unit 1
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*/
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#define XOR_UNIT(chan) ((chan) >> 1)
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#define XOR_CHAN(chan) ((chan) & 1)
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#define MV_XOR_REGS_OFFSET(unit) (0x60900)
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#define MV_XOR_REGS_BASE(unit) (MV_XOR_REGS_OFFSET(unit))
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/* XOR Engine Control Register Map */
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#define XOR_CHANNEL_ARBITER_REG(unit) (MV_XOR_REGS_BASE(unit))
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#define XOR_CONFIG_REG(unit, chan) (MV_XOR_REGS_BASE(unit) + \
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(0x10 + ((chan) * 4)))
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#define XOR_ACTIVATION_REG(unit, chan) (MV_XOR_REGS_BASE(unit) + \
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(0x20 + ((chan) * 4)))
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/* XOR Engine Interrupt Register Map */
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#define XOR_CAUSE_REG(unit) (MV_XOR_REGS_BASE(unit)+(0x30))
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#define XOR_MASK_REG(unit) (MV_XOR_REGS_BASE(unit)+(0x40))
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#define XOR_ERROR_CAUSE_REG(unit) (MV_XOR_REGS_BASE(unit)+(0x50))
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#define XOR_ERROR_ADDR_REG(unit) (MV_XOR_REGS_BASE(unit)+(0x60))
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/* XOR Engine Descriptor Register Map */
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#define XOR_NEXT_DESC_PTR_REG(unit, chan) (MV_XOR_REGS_BASE(unit) + \
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(0x200 + ((chan) * 4)))
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#define XOR_CURR_DESC_PTR_REG(unit, chan) (MV_XOR_REGS_BASE(unit) + \
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(0x210 + ((chan) * 4)))
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#define XOR_BYTE_COUNT_REG(unit, chan) (MV_XOR_REGS_BASE(unit) + \
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(0x220 + ((chan) * 4)))
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/* XOR Engine ECC/Mem_init Register Map */
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#define XOR_DST_PTR_REG(unit, chan) (MV_XOR_REGS_BASE(unit) + \
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(0x2b0 + ((chan) * 4)))
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#define XOR_BLOCK_SIZE_REG(unit, chan) (MV_XOR_REGS_BASE(unit) + \
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(0x2c0 + ((chan) * 4)))
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#define XOR_TIMER_MODE_CTRL_REG(unit) (MV_XOR_REGS_BASE(unit) + (0x2d0))
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#define XOR_TIMER_MODE_INIT_VAL_REG(unit) (MV_XOR_REGS_BASE(unit) + (0x2d4))
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#define XOR_TIMER_MODE_CURR_VAL_REG(unit) (MV_XOR_REGS_BASE(unit) + (0x2d8))
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#define XOR_INIT_VAL_LOW_REG(unit) (MV_XOR_REGS_BASE(unit) + (0x2e0))
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#define XOR_INIT_VAL_HIGH_REG(unit) (MV_XOR_REGS_BASE(unit) + (0x2e4))
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/* XOR Engine Debug Register Map */
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#define XOR_DEBUG_REG(unit) (MV_XOR_REGS_BASE(unit) + (0x70))
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/* XOR register fileds */
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/* XOR Engine Channel Arbiter Register */
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#define XECAR_SLICE_OFFS(slice_num) (slice_num)
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#define XECAR_SLICE_MASK(slice_num) (1 << (XECAR_SLICE_OFFS(slice_num)))
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/* XOR Engine [0..1] Configuration Registers */
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#define XEXCR_OPERATION_MODE_OFFS (0)
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#define XEXCR_OPERATION_MODE_MASK (7 << XEXCR_OPERATION_MODE_OFFS)
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#define XEXCR_OPERATION_MODE_XOR (0 << XEXCR_OPERATION_MODE_OFFS)
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#define XEXCR_OPERATION_MODE_CRC (1 << XEXCR_OPERATION_MODE_OFFS)
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#define XEXCR_OPERATION_MODE_DMA (2 << XEXCR_OPERATION_MODE_OFFS)
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#define XEXCR_OPERATION_MODE_ECC (3 << XEXCR_OPERATION_MODE_OFFS)
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#define XEXCR_OPERATION_MODE_MEM_INIT (4 << XEXCR_OPERATION_MODE_OFFS)
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#define XEXCR_SRC_BURST_LIMIT_OFFS (4)
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#define XEXCR_SRC_BURST_LIMIT_MASK (7 << XEXCR_SRC_BURST_LIMIT_OFFS)
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#define XEXCR_DST_BURST_LIMIT_OFFS (8)
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#define XEXCR_DST_BURST_LIMIT_MASK (7 << XEXCR_DST_BURST_LIMIT_OFFS)
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#define XEXCR_DRD_RES_SWP_OFFS (12)
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#define XEXCR_DRD_RES_SWP_MASK (1 << XEXCR_DRD_RES_SWP_OFFS)
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#define XEXCR_DWR_REQ_SWP_OFFS (13)
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#define XEXCR_DWR_REQ_SWP_MASK (1 << XEXCR_DWR_REQ_SWP_OFFS)
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#define XEXCR_DES_SWP_OFFS (14)
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#define XEXCR_DES_SWP_MASK (1 << XEXCR_DES_SWP_OFFS)
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#define XEXCR_REG_ACC_PROTECT_OFFS (15)
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#define XEXCR_REG_ACC_PROTECT_MASK (1 << XEXCR_REG_ACC_PROTECT_OFFS)
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/* XOR Engine [0..1] Activation Registers */
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#define XEXACTR_XESTART_OFFS (0)
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#define XEXACTR_XESTART_MASK (1 << XEXACTR_XESTART_OFFS)
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#define XEXACTR_XESTOP_OFFS (1)
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#define XEXACTR_XESTOP_MASK (1 << XEXACTR_XESTOP_OFFS)
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#define XEXACTR_XEPAUSE_OFFS (2)
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#define XEXACTR_XEPAUSE_MASK (1 << XEXACTR_XEPAUSE_OFFS)
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#define XEXACTR_XERESTART_OFFS (3)
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#define XEXACTR_XERESTART_MASK (1 << XEXACTR_XERESTART_OFFS)
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#define XEXACTR_XESTATUS_OFFS (4)
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#define XEXACTR_XESTATUS_MASK (3 << XEXACTR_XESTATUS_OFFS)
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#define XEXACTR_XESTATUS_IDLE (0 << XEXACTR_XESTATUS_OFFS)
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#define XEXACTR_XESTATUS_ACTIVE (1 << XEXACTR_XESTATUS_OFFS)
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#define XEXACTR_XESTATUS_PAUSED (2 << XEXACTR_XESTATUS_OFFS)
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/* XOR Engine Interrupt Cause Register (XEICR) */
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#define XEICR_CHAN_OFFS 16
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#define XEICR_CAUSE_OFFS(chan) (chan * XEICR_CHAN_OFFS)
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#define XEICR_CAUSE_MASK(chan, cause) (1 << (cause + XEICR_CAUSE_OFFS(chan)))
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#define XEICR_COMP_MASK_ALL 0x000f000f
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#define XEICR_COMP_MASK(chan) (0x000f << XEICR_CAUSE_OFFS(chan))
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#define XEICR_ERR_MASK 0x03800380
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/* XOR Engine Error Cause Register (XEECR) */
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#define XEECR_ERR_TYPE_OFFS 0
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#define XEECR_ERR_TYPE_MASK (0x1f << XEECR_ERR_TYPE_OFFS)
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/* XOR Engine Error Address Register (XEEAR) */
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#define XEEAR_ERR_ADDR_OFFS (0)
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#define XEEAR_ERR_ADDR_MASK (0xffffffff << XEEAR_ERR_ADDR_OFFS)
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/* XOR Engine [0..1] Next Descriptor Pointer Register */
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#define XEXNDPR_NEXT_DESC_PTR_OFFS (0)
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#define XEXNDPR_NEXT_DESC_PTR_MASK (0xffffffff << \
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XEXNDPR_NEXT_DESC_PTR_OFFS)
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/* XOR Engine [0..1] Current Descriptor Pointer Register */
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#define XEXCDPR_CURRENT_DESC_PTR_OFFS (0)
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#define XEXCDPR_CURRENT_DESC_PTR_MASK (0xffffffff << \
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XEXCDPR_CURRENT_DESC_PTR_OFFS)
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/* XOR Engine [0..1] Byte Count Register */
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#define XEXBCR_BYTE_CNT_OFFS (0)
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#define XEXBCR_BYTE_CNT_MASK (0xffffffff << XEXBCR_BYTE_CNT_OFFS)
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/* XOR Engine [0..1] Destination Pointer Register */
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#define XEXDPR_DST_PTR_OFFS (0)
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#define XEXDPR_DST_PTR_MASK (0xffffffff << XEXDPR_DST_PTR_OFFS)
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#define XEXDPR_DST_PTR_XOR_MASK (0x3f)
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#define XEXDPR_DST_PTR_DMA_MASK (0x1f)
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#define XEXDPR_DST_PTR_CRC_MASK (0x1f)
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/* XOR Engine[0..1] Block Size Registers */
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#define XEXBSR_BLOCK_SIZE_OFFS (0)
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#define XEXBSR_BLOCK_SIZE_MASK (0xffffffff << XEXBSR_BLOCK_SIZE_OFFS)
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#define XEXBSR_BLOCK_SIZE_MIN_VALUE (128)
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#define XEXBSR_BLOCK_SIZE_MAX_VALUE (0xffffffff)
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/* XOR Engine Timer Mode Control Register (XETMCR) */
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#define XETMCR_TIMER_EN_OFFS (0)
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#define XETMCR_TIMER_EN_MASK (1 << XETMCR_TIMER_EN_OFFS)
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#define XETMCR_TIMER_EN_ENABLE (1 << XETMCR_TIMER_EN_OFFS)
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#define XETMCR_TIMER_EN_DISABLE (0 << XETMCR_TIMER_EN_OFFS)
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#define XETMCR_SECTION_SIZE_CTRL_OFFS (8)
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#define XETMCR_SECTION_SIZE_CTRL_MASK (0x1f << XETMCR_SECTION_SIZE_CTRL_OFFS)
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#define XETMCR_SECTION_SIZE_MIN_VALUE (7)
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#define XETMCR_SECTION_SIZE_MAX_VALUE (31)
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/* XOR Engine Timer Mode Initial Value Register (XETMIVR) */
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#define XETMIVR_TIMER_INIT_VAL_OFFS (0)
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#define XETMIVR_TIMER_INIT_VAL_MASK (0xffffffff << \
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XETMIVR_TIMER_INIT_VAL_OFFS)
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/* XOR Engine Timer Mode Current Value Register (XETMCVR) */
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#define XETMCVR_TIMER_CRNT_VAL_OFFS (0)
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#define XETMCVR_TIMER_CRNT_VAL_MASK (0xffffffff << \
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XETMCVR_TIMER_CRNT_VAL_OFFS)
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/* XOR Engine Initial Value Register Low (XEIVRL) */
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#define XEIVRL_INIT_VAL_L_OFFS (0)
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#define XEIVRL_INIT_VAL_L_MASK (0xffffffff << XEIVRL_INIT_VAL_L_OFFS)
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/* XOR Engine Initial Value Register High (XEIVRH) */
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#define XEIVRH_INIT_VAL_H_OFFS (0)
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#define XEIVRH_INIT_VAL_H_MASK (0xffffffff << XEIVRH_INIT_VAL_H_OFFS)
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/* XOR Engine Debug Register (XEDBR) */
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#define XEDBR_PARITY_ERR_INSR_OFFS (0)
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#define XEDBR_PARITY_ERR_INSR_MASK (1 << XEDBR_PARITY_ERR_INSR_OFFS)
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#define XEDBR_XBAR_ERR_INSR_OFFS (1)
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#define XEDBR_XBAR_ERR_INSR_MASK (1 << XEDBR_XBAR_ERR_INSR_OFFS)
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/* XOR Engine address decode registers. */
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/* Maximum address decode windows */
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#define XOR_MAX_ADDR_DEC_WIN 8
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/* Maximum address arbiter windows */
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#define XOR_MAX_REMAP_WIN 4
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/* XOR Engine Address Decoding Register Map */
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#define XOR_WINDOW_CTRL_REG(unit, chan) (MV_XOR_REGS_BASE(unit) + \
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(0x240 + ((chan) * 4)))
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#define XOR_BASE_ADDR_REG(unit, win_num) (MV_XOR_REGS_BASE(unit) + \
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(0x250 + ((win_num) * 4)))
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#define XOR_SIZE_MASK_REG(unit, win_num) (MV_XOR_REGS_BASE(unit) + \
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(0x270 + ((win_num) * 4)))
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#define XOR_HIGH_ADDR_REMAP_REG(unit, win_num) (MV_XOR_REGS_BASE(unit) + \
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(0x290 + ((win_num) * 4)))
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#define XOR_ADDR_OVRD_REG(unit, win_num) (MV_XOR_REGS_BASE(unit) + \
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(0x2a0 + ((win_num) * 4)))
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/* XOR Engine [0..1] Window Control Registers */
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#define XEXWCR_WIN_EN_OFFS(win_num) (win_num)
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#define XEXWCR_WIN_EN_MASK(win_num) (1 << (XEXWCR_WIN_EN_OFFS(win_num)))
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#define XEXWCR_WIN_EN_ENABLE(win_num) (1 << (XEXWCR_WIN_EN_OFFS(win_num)))
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#define XEXWCR_WIN_EN_DISABLE(win_num) (0 << (XEXWCR_WIN_EN_OFFS(win_num)))
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#define XEXWCR_WIN_ACC_OFFS(win_num) ((2 * win_num) + 16)
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#define XEXWCR_WIN_ACC_MASK(win_num) (3 << (XEXWCR_WIN_ACC_OFFS(win_num)))
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#define XEXWCR_WIN_ACC_NO_ACC(win_num) (0 << (XEXWCR_WIN_ACC_OFFS(win_num)))
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#define XEXWCR_WIN_ACC_RO(win_num) (1 << (XEXWCR_WIN_ACC_OFFS(win_num)))
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#define XEXWCR_WIN_ACC_RW(win_num) (3 << (XEXWCR_WIN_ACC_OFFS(win_num)))
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/* XOR Engine Base Address Registers (XEBARx) */
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#define XEBARX_TARGET_OFFS (0)
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#define XEBARX_TARGET_MASK (0xf << XEBARX_TARGET_OFFS)
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#define XEBARX_ATTR_OFFS (8)
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#define XEBARX_ATTR_MASK (0xff << XEBARX_ATTR_OFFS)
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#define XEBARX_BASE_OFFS (16)
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#define XEBARX_BASE_MASK (0xffff << XEBARX_BASE_OFFS)
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/* XOR Engine Size Mask Registers (XESMRx) */
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#define XESMRX_SIZE_MASK_OFFS (16)
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#define XESMRX_SIZE_MASK_MASK (0xffff << XESMRX_SIZE_MASK_OFFS)
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#define XOR_WIN_SIZE_ALIGN _64K
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/* XOR Engine High Address Remap Register (XEHARRx1) */
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#define XEHARRX_REMAP_OFFS (0)
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#define XEHARRX_REMAP_MASK (0xffffffff << XEHARRX_REMAP_OFFS)
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#define XOR_OVERRIDE_CTRL_REG(chan) (MV_XOR_REGS_BASE(XOR_UNIT(chan)) + \
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(0x2a0 + ((XOR_CHAN(chan)) * 4)))
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/* XOR Engine [0..1] Address Override Control Register */
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#define XEXAOCR_OVR_EN_OFFS(target) (3 * target)
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#define XEXAOCR_OVR_EN_MASK(target) (1 << (XEXAOCR_OVR_EN_OFFS(target)))
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#define XEXAOCR_OVR_PTR_OFFS(target) ((3 * target) + 1)
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#define XEXAOCR_OVR_PTR_MASK(target) (3 << (XEXAOCR_OVR_PTR_OFFS(target)))
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#define XEXAOCR_OVR_BAR(win_num, target) (win_num << \
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(XEXAOCR_OVR_PTR_OFFS(target)))
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/* Maximum address override windows */
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#define XOR_MAX_OVERRIDE_WIN 4
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#endif /* _XOR_REGS_h */
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