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59d8bf5ddf
This patch corrects the SPDX License Identifier style in header files related to I2C controlled media codec drivers. For C header files Documentation/process/license-rules.rst mandates C-like comments (opposed to C source files where C++ style should be used) Changes made by using a script provided by Joe Perches here: https://lkml.org/lkml/2019/2/7/46 and some manual changes. Suggested-by: Joe Perches <joe@perches.com> Signed-off-by: Nishad Kamdar <nishadkamdar@gmail.com> Signed-off-by: Hans Verkuil <hverkuil-cisco@xs4all.nl> Signed-off-by: Mauro Carvalho Chehab <mchehab@kernel.org>
561 lines
22 KiB
C
561 lines
22 KiB
C
/* SPDX-License-Identifier: GPL-2.0+ */
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/*
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* saa711x - Philips SAA711x video decoder register specifications
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*
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* Copyright (c) 2006 Mauro Carvalho Chehab <mchehab@kernel.org>
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*/
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#define R_00_CHIP_VERSION 0x00
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/* Video Decoder */
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/* Video Decoder - Frontend part */
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#define R_01_INC_DELAY 0x01
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#define R_02_INPUT_CNTL_1 0x02
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#define R_03_INPUT_CNTL_2 0x03
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#define R_04_INPUT_CNTL_3 0x04
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#define R_05_INPUT_CNTL_4 0x05
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/* Video Decoder - Decoder part */
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#define R_06_H_SYNC_START 0x06
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#define R_07_H_SYNC_STOP 0x07
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#define R_08_SYNC_CNTL 0x08
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#define R_09_LUMA_CNTL 0x09
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#define R_0A_LUMA_BRIGHT_CNTL 0x0a
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#define R_0B_LUMA_CONTRAST_CNTL 0x0b
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#define R_0C_CHROMA_SAT_CNTL 0x0c
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#define R_0D_CHROMA_HUE_CNTL 0x0d
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#define R_0E_CHROMA_CNTL_1 0x0e
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#define R_0F_CHROMA_GAIN_CNTL 0x0f
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#define R_10_CHROMA_CNTL_2 0x10
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#define R_11_MODE_DELAY_CNTL 0x11
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#define R_12_RT_SIGNAL_CNTL 0x12
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#define R_13_RT_X_PORT_OUT_CNTL 0x13
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#define R_14_ANAL_ADC_COMPAT_CNTL 0x14
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#define R_15_VGATE_START_FID_CHG 0x15
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#define R_16_VGATE_STOP 0x16
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#define R_17_MISC_VGATE_CONF_AND_MSB 0x17
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#define R_18_RAW_DATA_GAIN_CNTL 0x18
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#define R_19_RAW_DATA_OFF_CNTL 0x19
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#define R_1A_COLOR_KILL_LVL_CNTL 0x1a
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#define R_1B_MISC_TVVCRDET 0x1b
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#define R_1C_ENHAN_COMB_CTRL1 0x1c
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#define R_1D_ENHAN_COMB_CTRL2 0x1d
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#define R_1E_STATUS_BYTE_1_VD_DEC 0x1e
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#define R_1F_STATUS_BYTE_2_VD_DEC 0x1f
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/* Component processing and interrupt masking part */
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#define R_23_INPUT_CNTL_5 0x23
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#define R_24_INPUT_CNTL_6 0x24
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#define R_25_INPUT_CNTL_7 0x25
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#define R_29_COMP_DELAY 0x29
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#define R_2A_COMP_BRIGHT_CNTL 0x2a
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#define R_2B_COMP_CONTRAST_CNTL 0x2b
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#define R_2C_COMP_SAT_CNTL 0x2c
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#define R_2D_INTERRUPT_MASK_1 0x2d
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#define R_2E_INTERRUPT_MASK_2 0x2e
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#define R_2F_INTERRUPT_MASK_3 0x2f
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/* Audio clock generator part */
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#define R_30_AUD_MAST_CLK_CYCLES_PER_FIELD 0x30
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#define R_34_AUD_MAST_CLK_NOMINAL_INC 0x34
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#define R_38_CLK_RATIO_AMXCLK_TO_ASCLK 0x38
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#define R_39_CLK_RATIO_ASCLK_TO_ALRCLK 0x39
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#define R_3A_AUD_CLK_GEN_BASIC_SETUP 0x3a
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/* General purpose VBI data slicer part */
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#define R_40_SLICER_CNTL_1 0x40
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#define R_41_LCR_BASE 0x41
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#define R_58_PROGRAM_FRAMING_CODE 0x58
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#define R_59_H_OFF_FOR_SLICER 0x59
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#define R_5A_V_OFF_FOR_SLICER 0x5a
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#define R_5B_FLD_OFF_AND_MSB_FOR_H_AND_V_OFF 0x5b
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#define R_5D_DID 0x5d
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#define R_5E_SDID 0x5e
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#define R_60_SLICER_STATUS_BYTE_0 0x60
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#define R_61_SLICER_STATUS_BYTE_1 0x61
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#define R_62_SLICER_STATUS_BYTE_2 0x62
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/* X port, I port and the scaler part */
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/* Task independent global settings */
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#define R_80_GLOBAL_CNTL_1 0x80
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#define R_81_V_SYNC_FLD_ID_SRC_SEL_AND_RETIMED_V_F 0x81
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#define R_83_X_PORT_I_O_ENA_AND_OUT_CLK 0x83
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#define R_84_I_PORT_SIGNAL_DEF 0x84
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#define R_85_I_PORT_SIGNAL_POLAR 0x85
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#define R_86_I_PORT_FIFO_FLAG_CNTL_AND_ARBIT 0x86
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#define R_87_I_PORT_I_O_ENA_OUT_CLK_AND_GATED 0x87
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#define R_88_POWER_SAVE_ADC_PORT_CNTL 0x88
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#define R_8F_STATUS_INFO_SCALER 0x8f
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/* Task A definition */
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/* Basic settings and acquisition window definition */
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#define R_90_A_TASK_HANDLING_CNTL 0x90
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#define R_91_A_X_PORT_FORMATS_AND_CONF 0x91
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#define R_92_A_X_PORT_INPUT_REFERENCE_SIGNAL 0x92
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#define R_93_A_I_PORT_OUTPUT_FORMATS_AND_CONF 0x93
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#define R_94_A_HORIZ_INPUT_WINDOW_START 0x94
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#define R_95_A_HORIZ_INPUT_WINDOW_START_MSB 0x95
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#define R_96_A_HORIZ_INPUT_WINDOW_LENGTH 0x96
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#define R_97_A_HORIZ_INPUT_WINDOW_LENGTH_MSB 0x97
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#define R_98_A_VERT_INPUT_WINDOW_START 0x98
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#define R_99_A_VERT_INPUT_WINDOW_START_MSB 0x99
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#define R_9A_A_VERT_INPUT_WINDOW_LENGTH 0x9a
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#define R_9B_A_VERT_INPUT_WINDOW_LENGTH_MSB 0x9b
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#define R_9C_A_HORIZ_OUTPUT_WINDOW_LENGTH 0x9c
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#define R_9D_A_HORIZ_OUTPUT_WINDOW_LENGTH_MSB 0x9d
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#define R_9E_A_VERT_OUTPUT_WINDOW_LENGTH 0x9e
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#define R_9F_A_VERT_OUTPUT_WINDOW_LENGTH_MSB 0x9f
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/* FIR filtering and prescaling */
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#define R_A0_A_HORIZ_PRESCALING 0xa0
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#define R_A1_A_ACCUMULATION_LENGTH 0xa1
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#define R_A2_A_PRESCALER_DC_GAIN_AND_FIR_PREFILTER 0xa2
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#define R_A4_A_LUMA_BRIGHTNESS_CNTL 0xa4
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#define R_A5_A_LUMA_CONTRAST_CNTL 0xa5
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#define R_A6_A_CHROMA_SATURATION_CNTL 0xa6
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/* Horizontal phase scaling */
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#define R_A8_A_HORIZ_LUMA_SCALING_INC 0xa8
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#define R_A9_A_HORIZ_LUMA_SCALING_INC_MSB 0xa9
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#define R_AA_A_HORIZ_LUMA_PHASE_OFF 0xaa
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#define R_AC_A_HORIZ_CHROMA_SCALING_INC 0xac
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#define R_AD_A_HORIZ_CHROMA_SCALING_INC_MSB 0xad
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#define R_AE_A_HORIZ_CHROMA_PHASE_OFF 0xae
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#define R_AF_A_HORIZ_CHROMA_PHASE_OFF_MSB 0xaf
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/* Vertical scaling */
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#define R_B0_A_VERT_LUMA_SCALING_INC 0xb0
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#define R_B1_A_VERT_LUMA_SCALING_INC_MSB 0xb1
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#define R_B2_A_VERT_CHROMA_SCALING_INC 0xb2
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#define R_B3_A_VERT_CHROMA_SCALING_INC_MSB 0xb3
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#define R_B4_A_VERT_SCALING_MODE_CNTL 0xb4
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#define R_B8_A_VERT_CHROMA_PHASE_OFF_00 0xb8
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#define R_B9_A_VERT_CHROMA_PHASE_OFF_01 0xb9
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#define R_BA_A_VERT_CHROMA_PHASE_OFF_10 0xba
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#define R_BB_A_VERT_CHROMA_PHASE_OFF_11 0xbb
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#define R_BC_A_VERT_LUMA_PHASE_OFF_00 0xbc
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#define R_BD_A_VERT_LUMA_PHASE_OFF_01 0xbd
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#define R_BE_A_VERT_LUMA_PHASE_OFF_10 0xbe
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#define R_BF_A_VERT_LUMA_PHASE_OFF_11 0xbf
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/* Task B definition */
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/* Basic settings and acquisition window definition */
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#define R_C0_B_TASK_HANDLING_CNTL 0xc0
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#define R_C1_B_X_PORT_FORMATS_AND_CONF 0xc1
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#define R_C2_B_INPUT_REFERENCE_SIGNAL_DEFINITION 0xc2
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#define R_C3_B_I_PORT_FORMATS_AND_CONF 0xc3
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#define R_C4_B_HORIZ_INPUT_WINDOW_START 0xc4
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#define R_C5_B_HORIZ_INPUT_WINDOW_START_MSB 0xc5
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#define R_C6_B_HORIZ_INPUT_WINDOW_LENGTH 0xc6
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#define R_C7_B_HORIZ_INPUT_WINDOW_LENGTH_MSB 0xc7
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#define R_C8_B_VERT_INPUT_WINDOW_START 0xc8
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#define R_C9_B_VERT_INPUT_WINDOW_START_MSB 0xc9
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#define R_CA_B_VERT_INPUT_WINDOW_LENGTH 0xca
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#define R_CB_B_VERT_INPUT_WINDOW_LENGTH_MSB 0xcb
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#define R_CC_B_HORIZ_OUTPUT_WINDOW_LENGTH 0xcc
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#define R_CD_B_HORIZ_OUTPUT_WINDOW_LENGTH_MSB 0xcd
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#define R_CE_B_VERT_OUTPUT_WINDOW_LENGTH 0xce
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#define R_CF_B_VERT_OUTPUT_WINDOW_LENGTH_MSB 0xcf
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/* FIR filtering and prescaling */
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#define R_D0_B_HORIZ_PRESCALING 0xd0
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#define R_D1_B_ACCUMULATION_LENGTH 0xd1
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#define R_D2_B_PRESCALER_DC_GAIN_AND_FIR_PREFILTER 0xd2
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#define R_D4_B_LUMA_BRIGHTNESS_CNTL 0xd4
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#define R_D5_B_LUMA_CONTRAST_CNTL 0xd5
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#define R_D6_B_CHROMA_SATURATION_CNTL 0xd6
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/* Horizontal phase scaling */
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#define R_D8_B_HORIZ_LUMA_SCALING_INC 0xd8
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#define R_D9_B_HORIZ_LUMA_SCALING_INC_MSB 0xd9
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#define R_DA_B_HORIZ_LUMA_PHASE_OFF 0xda
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#define R_DC_B_HORIZ_CHROMA_SCALING 0xdc
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#define R_DD_B_HORIZ_CHROMA_SCALING_MSB 0xdd
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#define R_DE_B_HORIZ_PHASE_OFFSET_CRHOMA 0xde
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/* Vertical scaling */
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#define R_E0_B_VERT_LUMA_SCALING_INC 0xe0
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#define R_E1_B_VERT_LUMA_SCALING_INC_MSB 0xe1
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#define R_E2_B_VERT_CHROMA_SCALING_INC 0xe2
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#define R_E3_B_VERT_CHROMA_SCALING_INC_MSB 0xe3
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#define R_E4_B_VERT_SCALING_MODE_CNTL 0xe4
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#define R_E8_B_VERT_CHROMA_PHASE_OFF_00 0xe8
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#define R_E9_B_VERT_CHROMA_PHASE_OFF_01 0xe9
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#define R_EA_B_VERT_CHROMA_PHASE_OFF_10 0xea
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#define R_EB_B_VERT_CHROMA_PHASE_OFF_11 0xeb
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#define R_EC_B_VERT_LUMA_PHASE_OFF_00 0xec
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#define R_ED_B_VERT_LUMA_PHASE_OFF_01 0xed
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#define R_EE_B_VERT_LUMA_PHASE_OFF_10 0xee
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#define R_EF_B_VERT_LUMA_PHASE_OFF_11 0xef
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/* second PLL (PLL2) and Pulsegenerator Programming */
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#define R_F0_LFCO_PER_LINE 0xf0
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#define R_F1_P_I_PARAM_SELECT 0xf1
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#define R_F2_NOMINAL_PLL2_DTO 0xf2
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#define R_F3_PLL_INCREMENT 0xf3
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#define R_F4_PLL2_STATUS 0xf4
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#define R_F5_PULSGEN_LINE_LENGTH 0xf5
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#define R_F6_PULSE_A_POS_LSB_AND_PULSEGEN_CONFIG 0xf6
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#define R_F7_PULSE_A_POS_MSB 0xf7
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#define R_F8_PULSE_B_POS 0xf8
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#define R_F9_PULSE_B_POS_MSB 0xf9
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#define R_FA_PULSE_C_POS 0xfa
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#define R_FB_PULSE_C_POS_MSB 0xfb
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#define R_FF_S_PLL_MAX_PHASE_ERR_THRESH_NUM_LINES 0xff
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/* SAA7113 bit-masks */
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#define SAA7113_R_08_HTC_OFFSET 3
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#define SAA7113_R_08_HTC_MASK (0x3 << SAA7113_R_08_HTC_OFFSET)
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#define SAA7113_R_08_FSEL 0x40
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#define SAA7113_R_08_AUFD 0x80
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#define SAA7113_R_10_VRLN_OFFSET 3
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#define SAA7113_R_10_VRLN_MASK (0x1 << SAA7113_R_10_VRLN_OFFSET)
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#define SAA7113_R_10_OFTS_OFFSET 6
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#define SAA7113_R_10_OFTS_MASK (0x3 << SAA7113_R_10_OFTS_OFFSET)
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#define SAA7113_R_12_RTS0_OFFSET 0
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#define SAA7113_R_12_RTS0_MASK (0xf << SAA7113_R_12_RTS0_OFFSET)
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#define SAA7113_R_12_RTS1_OFFSET 4
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#define SAA7113_R_12_RTS1_MASK (0xf << SAA7113_R_12_RTS1_OFFSET)
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#define SAA7113_R_13_ADLSB_OFFSET 7
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#define SAA7113_R_13_ADLSB_MASK (0x1 << SAA7113_R_13_ADLSB_OFFSET)
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#if 0
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/* Those structs will be used in the future for debug purposes */
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struct saa711x_reg_descr {
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u8 reg;
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int count;
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char *name;
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};
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struct saa711x_reg_descr saa711x_regs[] = {
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/* REG COUNT NAME */
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{R_00_CHIP_VERSION,1,
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"Chip version"},
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/* Video Decoder: R_01_INC_DELAY to R_1F_STATUS_BYTE_2_VD_DEC */
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/* Video Decoder - Frontend part: R_01_INC_DELAY to R_05_INPUT_CNTL_4 */
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{R_01_INC_DELAY,1,
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"Increment delay"},
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{R_02_INPUT_CNTL_1,1,
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"Analog input control 1"},
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{R_03_INPUT_CNTL_2,1,
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"Analog input control 2"},
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{R_04_INPUT_CNTL_3,1,
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"Analog input control 3"},
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{R_05_INPUT_CNTL_4,1,
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"Analog input control 4"},
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/* Video Decoder - Decoder part: R_06_H_SYNC_START to R_1F_STATUS_BYTE_2_VD_DEC */
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{R_06_H_SYNC_START,1,
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"Horizontal sync start"},
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{R_07_H_SYNC_STOP,1,
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"Horizontal sync stop"},
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{R_08_SYNC_CNTL,1,
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"Sync control"},
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{R_09_LUMA_CNTL,1,
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"Luminance control"},
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{R_0A_LUMA_BRIGHT_CNTL,1,
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"Luminance brightness control"},
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{R_0B_LUMA_CONTRAST_CNTL,1,
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"Luminance contrast control"},
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{R_0C_CHROMA_SAT_CNTL,1,
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"Chrominance saturation control"},
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{R_0D_CHROMA_HUE_CNTL,1,
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"Chrominance hue control"},
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{R_0E_CHROMA_CNTL_1,1,
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"Chrominance control 1"},
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{R_0F_CHROMA_GAIN_CNTL,1,
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"Chrominance gain control"},
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{R_10_CHROMA_CNTL_2,1,
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"Chrominance control 2"},
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{R_11_MODE_DELAY_CNTL,1,
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"Mode/delay control"},
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{R_12_RT_SIGNAL_CNTL,1,
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"RT signal control"},
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{R_13_RT_X_PORT_OUT_CNTL,1,
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"RT/X port output control"},
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{R_14_ANAL_ADC_COMPAT_CNTL,1,
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"Analog/ADC/compatibility control"},
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{R_15_VGATE_START_FID_CHG, 1,
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"VGATE start FID change"},
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{R_16_VGATE_STOP,1,
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"VGATE stop"},
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{R_17_MISC_VGATE_CONF_AND_MSB, 1,
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"Miscellaneous VGATE configuration and MSBs"},
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{R_18_RAW_DATA_GAIN_CNTL,1,
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"Raw data gain control",},
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{R_19_RAW_DATA_OFF_CNTL,1,
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"Raw data offset control",},
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{R_1A_COLOR_KILL_LVL_CNTL,1,
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"Color Killer Level Control"},
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{ R_1B_MISC_TVVCRDET, 1,
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"MISC /TVVCRDET"},
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{ R_1C_ENHAN_COMB_CTRL1, 1,
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"Enhanced comb ctrl1"},
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{ R_1D_ENHAN_COMB_CTRL2, 1,
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"Enhanced comb ctrl1"},
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{R_1E_STATUS_BYTE_1_VD_DEC,1,
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"Status byte 1 video decoder"},
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{R_1F_STATUS_BYTE_2_VD_DEC,1,
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"Status byte 2 video decoder"},
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/* Component processing and interrupt masking part: 0x20h to R_2F_INTERRUPT_MASK_3 */
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/* 0x20 to 0x22 - Reserved */
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{R_23_INPUT_CNTL_5,1,
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"Analog input control 5"},
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{R_24_INPUT_CNTL_6,1,
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"Analog input control 6"},
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{R_25_INPUT_CNTL_7,1,
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"Analog input control 7"},
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/* 0x26 to 0x28 - Reserved */
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{R_29_COMP_DELAY,1,
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"Component delay"},
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{R_2A_COMP_BRIGHT_CNTL,1,
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"Component brightness control"},
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{R_2B_COMP_CONTRAST_CNTL,1,
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"Component contrast control"},
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{R_2C_COMP_SAT_CNTL,1,
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"Component saturation control"},
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{R_2D_INTERRUPT_MASK_1,1,
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"Interrupt mask 1"},
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{R_2E_INTERRUPT_MASK_2,1,
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"Interrupt mask 2"},
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{R_2F_INTERRUPT_MASK_3,1,
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"Interrupt mask 3"},
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/* Audio clock generator part: R_30_AUD_MAST_CLK_CYCLES_PER_FIELD to 0x3f */
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{R_30_AUD_MAST_CLK_CYCLES_PER_FIELD,3,
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"Audio master clock cycles per field"},
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/* 0x33 - Reserved */
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{R_34_AUD_MAST_CLK_NOMINAL_INC,3,
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"Audio master clock nominal increment"},
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/* 0x37 - Reserved */
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{R_38_CLK_RATIO_AMXCLK_TO_ASCLK,1,
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"Clock ratio AMXCLK to ASCLK"},
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{R_39_CLK_RATIO_ASCLK_TO_ALRCLK,1,
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"Clock ratio ASCLK to ALRCLK"},
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{R_3A_AUD_CLK_GEN_BASIC_SETUP,1,
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"Audio clock generator basic setup"},
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/* 0x3b-0x3f - Reserved */
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/* General purpose VBI data slicer part: R_40_SLICER_CNTL_1 to 0x7f */
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{R_40_SLICER_CNTL_1,1,
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"Slicer control 1"},
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{R_41_LCR,23,
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"R_41_LCR"},
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{R_58_PROGRAM_FRAMING_CODE,1,
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"Programmable framing code"},
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{R_59_H_OFF_FOR_SLICER,1,
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"Horizontal offset for slicer"},
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{R_5A_V_OFF_FOR_SLICER,1,
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"Vertical offset for slicer"},
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{R_5B_FLD_OFF_AND_MSB_FOR_H_AND_V_OFF,1,
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"Field offset and MSBs for horizontal and vertical offset"},
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{R_5D_DID,1,
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"Header and data identification (R_5D_DID)"},
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{R_5E_SDID,1,
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"Sliced data identification (R_5E_SDID) code"},
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{R_60_SLICER_STATUS_BYTE_0,1,
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"Slicer status byte 0"},
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{R_61_SLICER_STATUS_BYTE_1,1,
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"Slicer status byte 1"},
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{R_62_SLICER_STATUS_BYTE_2,1,
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"Slicer status byte 2"},
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/* 0x63-0x7f - Reserved */
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/* X port, I port and the scaler part: R_80_GLOBAL_CNTL_1 to R_EF_B_VERT_LUMA_PHASE_OFF_11 */
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/* Task independent global settings: R_80_GLOBAL_CNTL_1 to R_8F_STATUS_INFO_SCALER */
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{R_80_GLOBAL_CNTL_1,1,
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"Global control 1"},
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{R_81_V_SYNC_FLD_ID_SRC_SEL_AND_RETIMED_V_F,1,
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"Vertical sync and Field ID source selection, retimed V and F signals"},
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/* 0x82 - Reserved */
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{R_83_X_PORT_I_O_ENA_AND_OUT_CLK,1,
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"X port I/O enable and output clock"},
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{R_84_I_PORT_SIGNAL_DEF,1,
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"I port signal definitions"},
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{R_85_I_PORT_SIGNAL_POLAR,1,
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"I port signal polarities"},
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{R_86_I_PORT_FIFO_FLAG_CNTL_AND_ARBIT,1,
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"I port FIFO flag control and arbitration"},
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{R_87_I_PORT_I_O_ENA_OUT_CLK_AND_GATED, 1,
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"I port I/O enable output clock and gated"},
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{R_88_POWER_SAVE_ADC_PORT_CNTL,1,
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"Power save/ADC port control"},
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/* 089-0x8e - Reserved */
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{R_8F_STATUS_INFO_SCALER,1,
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"Status information scaler part"},
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/* Task A definition: R_90_A_TASK_HANDLING_CNTL to R_BF_A_VERT_LUMA_PHASE_OFF_11 */
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/* Task A: Basic settings and acquisition window definition */
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{R_90_A_TASK_HANDLING_CNTL,1,
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"Task A: Task handling control"},
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{R_91_A_X_PORT_FORMATS_AND_CONF,1,
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"Task A: X port formats and configuration"},
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{R_92_A_X_PORT_INPUT_REFERENCE_SIGNAL,1,
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"Task A: X port input reference signal definition"},
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{R_93_A_I_PORT_OUTPUT_FORMATS_AND_CONF,1,
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"Task A: I port output formats and configuration"},
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{R_94_A_HORIZ_INPUT_WINDOW_START,2,
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"Task A: Horizontal input window start"},
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{R_96_A_HORIZ_INPUT_WINDOW_LENGTH,2,
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"Task A: Horizontal input window length"},
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{R_98_A_VERT_INPUT_WINDOW_START,2,
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"Task A: Vertical input window start"},
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{R_9A_A_VERT_INPUT_WINDOW_LENGTH,2,
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"Task A: Vertical input window length"},
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{R_9C_A_HORIZ_OUTPUT_WINDOW_LENGTH,2,
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"Task A: Horizontal output window length"},
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{R_9E_A_VERT_OUTPUT_WINDOW_LENGTH,2,
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"Task A: Vertical output window length"},
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/* Task A: FIR filtering and prescaling */
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{R_A0_A_HORIZ_PRESCALING,1,
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"Task A: Horizontal prescaling"},
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{R_A1_A_ACCUMULATION_LENGTH,1,
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"Task A: Accumulation length"},
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{R_A2_A_PRESCALER_DC_GAIN_AND_FIR_PREFILTER,1,
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"Task A: Prescaler DC gain and FIR prefilter"},
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/* 0xa3 - Reserved */
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{R_A4_A_LUMA_BRIGHTNESS_CNTL,1,
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"Task A: Luminance brightness control"},
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{R_A5_A_LUMA_CONTRAST_CNTL,1,
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"Task A: Luminance contrast control"},
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{R_A6_A_CHROMA_SATURATION_CNTL,1,
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"Task A: Chrominance saturation control"},
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/* 0xa7 - Reserved */
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/* Task A: Horizontal phase scaling */
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{R_A8_A_HORIZ_LUMA_SCALING_INC,2,
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"Task A: Horizontal luminance scaling increment"},
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{R_AA_A_HORIZ_LUMA_PHASE_OFF,1,
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"Task A: Horizontal luminance phase offset"},
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/* 0xab - Reserved */
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{R_AC_A_HORIZ_CHROMA_SCALING_INC,2,
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"Task A: Horizontal chrominance scaling increment"},
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{R_AE_A_HORIZ_CHROMA_PHASE_OFF,1,
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"Task A: Horizontal chrominance phase offset"},
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/* 0xaf - Reserved */
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/* Task A: Vertical scaling */
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{R_B0_A_VERT_LUMA_SCALING_INC,2,
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"Task A: Vertical luminance scaling increment"},
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{R_B2_A_VERT_CHROMA_SCALING_INC,2,
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"Task A: Vertical chrominance scaling increment"},
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{R_B4_A_VERT_SCALING_MODE_CNTL,1,
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"Task A: Vertical scaling mode control"},
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/* 0xb5-0xb7 - Reserved */
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{R_B8_A_VERT_CHROMA_PHASE_OFF_00,1,
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"Task A: Vertical chrominance phase offset '00'"},
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{R_B9_A_VERT_CHROMA_PHASE_OFF_01,1,
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"Task A: Vertical chrominance phase offset '01'"},
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{R_BA_A_VERT_CHROMA_PHASE_OFF_10,1,
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"Task A: Vertical chrominance phase offset '10'"},
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{R_BB_A_VERT_CHROMA_PHASE_OFF_11,1,
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"Task A: Vertical chrominance phase offset '11'"},
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{R_BC_A_VERT_LUMA_PHASE_OFF_00,1,
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"Task A: Vertical luminance phase offset '00'"},
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{R_BD_A_VERT_LUMA_PHASE_OFF_01,1,
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"Task A: Vertical luminance phase offset '01'"},
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{R_BE_A_VERT_LUMA_PHASE_OFF_10,1,
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"Task A: Vertical luminance phase offset '10'"},
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{R_BF_A_VERT_LUMA_PHASE_OFF_11,1,
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"Task A: Vertical luminance phase offset '11'"},
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/* Task B definition: R_C0_B_TASK_HANDLING_CNTL to R_EF_B_VERT_LUMA_PHASE_OFF_11 */
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/* Task B: Basic settings and acquisition window definition */
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{R_C0_B_TASK_HANDLING_CNTL,1,
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"Task B: Task handling control"},
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{R_C1_B_X_PORT_FORMATS_AND_CONF,1,
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"Task B: X port formats and configuration"},
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{R_C2_B_INPUT_REFERENCE_SIGNAL_DEFINITION,1,
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"Task B: Input reference signal definition"},
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{R_C3_B_I_PORT_FORMATS_AND_CONF,1,
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"Task B: I port formats and configuration"},
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{R_C4_B_HORIZ_INPUT_WINDOW_START,2,
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"Task B: Horizontal input window start"},
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{R_C6_B_HORIZ_INPUT_WINDOW_LENGTH,2,
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"Task B: Horizontal input window length"},
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{R_C8_B_VERT_INPUT_WINDOW_START,2,
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"Task B: Vertical input window start"},
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{R_CA_B_VERT_INPUT_WINDOW_LENGTH,2,
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"Task B: Vertical input window length"},
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{R_CC_B_HORIZ_OUTPUT_WINDOW_LENGTH,2,
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"Task B: Horizontal output window length"},
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{R_CE_B_VERT_OUTPUT_WINDOW_LENGTH,2,
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"Task B: Vertical output window length"},
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/* Task B: FIR filtering and prescaling */
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{R_D0_B_HORIZ_PRESCALING,1,
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"Task B: Horizontal prescaling"},
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{R_D1_B_ACCUMULATION_LENGTH,1,
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"Task B: Accumulation length"},
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{R_D2_B_PRESCALER_DC_GAIN_AND_FIR_PREFILTER,1,
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"Task B: Prescaler DC gain and FIR prefilter"},
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/* 0xd3 - Reserved */
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{R_D4_B_LUMA_BRIGHTNESS_CNTL,1,
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"Task B: Luminance brightness control"},
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{R_D5_B_LUMA_CONTRAST_CNTL,1,
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"Task B: Luminance contrast control"},
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{R_D6_B_CHROMA_SATURATION_CNTL,1,
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"Task B: Chrominance saturation control"},
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/* 0xd7 - Reserved */
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/* Task B: Horizontal phase scaling */
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{R_D8_B_HORIZ_LUMA_SCALING_INC,2,
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"Task B: Horizontal luminance scaling increment"},
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{R_DA_B_HORIZ_LUMA_PHASE_OFF,1,
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"Task B: Horizontal luminance phase offset"},
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/* 0xdb - Reserved */
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{R_DC_B_HORIZ_CHROMA_SCALING,2,
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"Task B: Horizontal chrominance scaling"},
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{R_DE_B_HORIZ_PHASE_OFFSET_CRHOMA,1,
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"Task B: Horizontal Phase Offset Chroma"},
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/* 0xdf - Reserved */
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/* Task B: Vertical scaling */
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{R_E0_B_VERT_LUMA_SCALING_INC,2,
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"Task B: Vertical luminance scaling increment"},
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{R_E2_B_VERT_CHROMA_SCALING_INC,2,
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"Task B: Vertical chrominance scaling increment"},
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{R_E4_B_VERT_SCALING_MODE_CNTL,1,
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"Task B: Vertical scaling mode control"},
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/* 0xe5-0xe7 - Reserved */
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{R_E8_B_VERT_CHROMA_PHASE_OFF_00,1,
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"Task B: Vertical chrominance phase offset '00'"},
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{R_E9_B_VERT_CHROMA_PHASE_OFF_01,1,
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"Task B: Vertical chrominance phase offset '01'"},
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{R_EA_B_VERT_CHROMA_PHASE_OFF_10,1,
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"Task B: Vertical chrominance phase offset '10'"},
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{R_EB_B_VERT_CHROMA_PHASE_OFF_11,1,
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"Task B: Vertical chrominance phase offset '11'"},
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{R_EC_B_VERT_LUMA_PHASE_OFF_00,1,
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"Task B: Vertical luminance phase offset '00'"},
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{R_ED_B_VERT_LUMA_PHASE_OFF_01,1,
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"Task B: Vertical luminance phase offset '01'"},
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{R_EE_B_VERT_LUMA_PHASE_OFF_10,1,
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"Task B: Vertical luminance phase offset '10'"},
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{R_EF_B_VERT_LUMA_PHASE_OFF_11,1,
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"Task B: Vertical luminance phase offset '11'"},
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/* second PLL (PLL2) and Pulsegenerator Programming */
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{ R_F0_LFCO_PER_LINE, 1,
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"LFCO's per line"},
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{ R_F1_P_I_PARAM_SELECT,1,
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"P-/I- Param. Select., PLL Mode, PLL H-Src., LFCO's per line"},
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{ R_F2_NOMINAL_PLL2_DTO,1,
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"Nominal PLL2 DTO"},
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{R_F3_PLL_INCREMENT,1,
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"PLL2 Increment"},
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{R_F4_PLL2_STATUS,1,
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"PLL2 Status"},
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{R_F5_PULSGEN_LINE_LENGTH,1,
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"Pulsgen. line length"},
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{R_F6_PULSE_A_POS_LSB_AND_PULSEGEN_CONFIG,1,
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"Pulse A Position, Pulsgen Resync., Pulsgen. H-Src., Pulsgen. line length"},
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{R_F7_PULSE_A_POS_MSB,1,
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"Pulse A Position"},
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{R_F8_PULSE_B_POS,2,
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"Pulse B Position"},
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{R_FA_PULSE_C_POS,2,
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"Pulse C Position"},
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/* 0xfc to 0xfe - Reserved */
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{R_FF_S_PLL_MAX_PHASE_ERR_THRESH_NUM_LINES,1,
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"S_PLL max. phase, error threshold, PLL2 no. of lines, threshold"},
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};
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#endif
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