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cc4c26d4ae
Based on mesa commit daa2ccff7a0201941db3901780d179e2634057d5 Small bit of .c churn in the phy code to adapt to split up of phy related registers. Signed-off-by: Rob Clark <robdclark@chromium.org>
229 lines
9.2 KiB
C
229 lines
9.2 KiB
C
#ifndef DSI_PHY_10NM_XML
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#define DSI_PHY_10NM_XML
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/* Autogenerated file, DO NOT EDIT manually!
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This file was generated by the rules-ng-ng headergen tool in this git repository:
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http://github.com/freedreno/envytools/
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git clone https://github.com/freedreno/envytools.git
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The rules-ng-ng source files this header was generated from are:
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- /home/robclark/src/mesa/mesa/src/freedreno/registers/msm.xml ( 981 bytes, from 2021-06-05 21:37:42)
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- /home/robclark/src/mesa/mesa/src/freedreno/registers/freedreno_copyright.xml ( 1572 bytes, from 2021-02-18 16:45:44)
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- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp4.xml ( 20912 bytes, from 2021-02-18 16:45:44)
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- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp_common.xml ( 2849 bytes, from 2021-02-18 16:45:44)
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- /home/robclark/src/mesa/mesa/src/freedreno/registers/mdp/mdp5.xml ( 37461 bytes, from 2021-02-18 16:45:44)
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- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi.xml ( 15291 bytes, from 2021-06-15 22:36:13)
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- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_v2.xml ( 3236 bytes, from 2021-06-05 21:37:42)
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- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm_8960.xml ( 4935 bytes, from 2021-05-21 19:18:08)
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- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_28nm.xml ( 7004 bytes, from 2021-05-21 19:18:08)
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- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_20nm.xml ( 3712 bytes, from 2021-05-21 19:18:08)
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- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_14nm.xml ( 5381 bytes, from 2021-05-21 19:18:08)
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- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_10nm.xml ( 4499 bytes, from 2021-05-21 19:18:08)
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- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_7nm.xml ( 10953 bytes, from 2021-05-21 19:18:08)
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- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/dsi_phy_5nm.xml ( 10900 bytes, from 2021-05-21 19:18:08)
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- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/sfpb.xml ( 602 bytes, from 2021-02-18 16:45:44)
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- /home/robclark/src/mesa/mesa/src/freedreno/registers/dsi/mmss_cc.xml ( 1686 bytes, from 2021-02-18 16:45:44)
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- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/qfprom.xml ( 600 bytes, from 2021-02-18 16:45:44)
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- /home/robclark/src/mesa/mesa/src/freedreno/registers/hdmi/hdmi.xml ( 41874 bytes, from 2021-02-18 16:45:44)
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- /home/robclark/src/mesa/mesa/src/freedreno/registers/edp/edp.xml ( 10416 bytes, from 2021-02-18 16:45:44)
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Copyright (C) 2013-2021 by the following authors:
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- Rob Clark <robdclark@gmail.com> (robclark)
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- Ilia Mirkin <imirkin@alum.mit.edu> (imirkin)
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Permission is hereby granted, free of charge, to any person obtaining
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a copy of this software and associated documentation files (the
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"Software"), to deal in the Software without restriction, including
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without limitation the rights to use, copy, modify, merge, publish,
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distribute, sublicense, and/or sell copies of the Software, and to
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permit persons to whom the Software is furnished to do so, subject to
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the following conditions:
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The above copyright notice and this permission notice (including the
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next paragraph) shall be included in all copies or substantial
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portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
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EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
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IN NO EVENT SHALL THE COPYRIGHT OWNER(S) AND/OR ITS SUPPLIERS BE
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LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION
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OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
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WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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*/
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#define REG_DSI_10nm_PHY_CMN_REVISION_ID0 0x00000000
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#define REG_DSI_10nm_PHY_CMN_REVISION_ID1 0x00000004
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#define REG_DSI_10nm_PHY_CMN_REVISION_ID2 0x00000008
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#define REG_DSI_10nm_PHY_CMN_REVISION_ID3 0x0000000c
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#define REG_DSI_10nm_PHY_CMN_CLK_CFG0 0x00000010
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#define REG_DSI_10nm_PHY_CMN_CLK_CFG1 0x00000014
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#define REG_DSI_10nm_PHY_CMN_GLBL_CTRL 0x00000018
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#define REG_DSI_10nm_PHY_CMN_RBUF_CTRL 0x0000001c
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#define REG_DSI_10nm_PHY_CMN_VREG_CTRL 0x00000020
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#define REG_DSI_10nm_PHY_CMN_CTRL_0 0x00000024
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#define REG_DSI_10nm_PHY_CMN_CTRL_1 0x00000028
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#define REG_DSI_10nm_PHY_CMN_CTRL_2 0x0000002c
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#define REG_DSI_10nm_PHY_CMN_LANE_CFG0 0x00000030
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#define REG_DSI_10nm_PHY_CMN_LANE_CFG1 0x00000034
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#define REG_DSI_10nm_PHY_CMN_PLL_CNTRL 0x00000038
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#define REG_DSI_10nm_PHY_CMN_LANE_CTRL0 0x00000098
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#define REG_DSI_10nm_PHY_CMN_LANE_CTRL1 0x0000009c
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#define REG_DSI_10nm_PHY_CMN_LANE_CTRL2 0x000000a0
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#define REG_DSI_10nm_PHY_CMN_LANE_CTRL3 0x000000a4
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#define REG_DSI_10nm_PHY_CMN_LANE_CTRL4 0x000000a8
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#define REG_DSI_10nm_PHY_CMN_TIMING_CTRL_0 0x000000ac
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#define REG_DSI_10nm_PHY_CMN_TIMING_CTRL_1 0x000000b0
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#define REG_DSI_10nm_PHY_CMN_TIMING_CTRL_2 0x000000b4
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#define REG_DSI_10nm_PHY_CMN_TIMING_CTRL_3 0x000000b8
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#define REG_DSI_10nm_PHY_CMN_TIMING_CTRL_4 0x000000bc
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#define REG_DSI_10nm_PHY_CMN_TIMING_CTRL_5 0x000000c0
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#define REG_DSI_10nm_PHY_CMN_TIMING_CTRL_6 0x000000c4
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#define REG_DSI_10nm_PHY_CMN_TIMING_CTRL_7 0x000000c8
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#define REG_DSI_10nm_PHY_CMN_TIMING_CTRL_8 0x000000cc
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#define REG_DSI_10nm_PHY_CMN_TIMING_CTRL_9 0x000000d0
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#define REG_DSI_10nm_PHY_CMN_TIMING_CTRL_10 0x000000d4
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#define REG_DSI_10nm_PHY_CMN_TIMING_CTRL_11 0x000000d8
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#define REG_DSI_10nm_PHY_CMN_PHY_STATUS 0x000000ec
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#define REG_DSI_10nm_PHY_CMN_LANE_STATUS0 0x000000f4
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#define REG_DSI_10nm_PHY_CMN_LANE_STATUS1 0x000000f8
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static inline uint32_t REG_DSI_10nm_PHY_LN(uint32_t i0) { return 0x00000000 + 0x80*i0; }
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static inline uint32_t REG_DSI_10nm_PHY_LN_CFG0(uint32_t i0) { return 0x00000000 + 0x80*i0; }
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static inline uint32_t REG_DSI_10nm_PHY_LN_CFG1(uint32_t i0) { return 0x00000004 + 0x80*i0; }
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static inline uint32_t REG_DSI_10nm_PHY_LN_CFG2(uint32_t i0) { return 0x00000008 + 0x80*i0; }
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static inline uint32_t REG_DSI_10nm_PHY_LN_CFG3(uint32_t i0) { return 0x0000000c + 0x80*i0; }
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static inline uint32_t REG_DSI_10nm_PHY_LN_TEST_DATAPATH(uint32_t i0) { return 0x00000010 + 0x80*i0; }
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static inline uint32_t REG_DSI_10nm_PHY_LN_PIN_SWAP(uint32_t i0) { return 0x00000014 + 0x80*i0; }
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static inline uint32_t REG_DSI_10nm_PHY_LN_HSTX_STR_CTRL(uint32_t i0) { return 0x00000018 + 0x80*i0; }
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static inline uint32_t REG_DSI_10nm_PHY_LN_OFFSET_TOP_CTRL(uint32_t i0) { return 0x0000001c + 0x80*i0; }
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static inline uint32_t REG_DSI_10nm_PHY_LN_OFFSET_BOT_CTRL(uint32_t i0) { return 0x00000020 + 0x80*i0; }
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static inline uint32_t REG_DSI_10nm_PHY_LN_LPTX_STR_CTRL(uint32_t i0) { return 0x00000024 + 0x80*i0; }
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static inline uint32_t REG_DSI_10nm_PHY_LN_LPRX_CTRL(uint32_t i0) { return 0x00000028 + 0x80*i0; }
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static inline uint32_t REG_DSI_10nm_PHY_LN_TX_DCTRL(uint32_t i0) { return 0x0000002c + 0x80*i0; }
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#define REG_DSI_10nm_PHY_PLL_ANALOG_CONTROLS_ONE 0x00000000
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#define REG_DSI_10nm_PHY_PLL_ANALOG_CONTROLS_TWO 0x00000004
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#define REG_DSI_10nm_PHY_PLL_ANALOG_CONTROLS_THREE 0x00000010
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#define REG_DSI_10nm_PHY_PLL_DSM_DIVIDER 0x0000001c
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#define REG_DSI_10nm_PHY_PLL_FEEDBACK_DIVIDER 0x00000020
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#define REG_DSI_10nm_PHY_PLL_SYSTEM_MUXES 0x00000024
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#define REG_DSI_10nm_PHY_PLL_CMODE 0x0000002c
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#define REG_DSI_10nm_PHY_PLL_CALIBRATION_SETTINGS 0x00000030
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#define REG_DSI_10nm_PHY_PLL_BAND_SEL_CAL_SETTINGS_THREE 0x00000054
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#define REG_DSI_10nm_PHY_PLL_FREQ_DETECT_SETTINGS_ONE 0x00000064
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#define REG_DSI_10nm_PHY_PLL_PFILT 0x0000007c
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#define REG_DSI_10nm_PHY_PLL_IFILT 0x00000080
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#define REG_DSI_10nm_PHY_PLL_OUTDIV 0x00000094
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#define REG_DSI_10nm_PHY_PLL_CORE_OVERRIDE 0x000000a4
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#define REG_DSI_10nm_PHY_PLL_CORE_INPUT_OVERRIDE 0x000000a8
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#define REG_DSI_10nm_PHY_PLL_PLL_DIGITAL_TIMERS_TWO 0x000000b4
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#define REG_DSI_10nm_PHY_PLL_DECIMAL_DIV_START_1 0x000000cc
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#define REG_DSI_10nm_PHY_PLL_FRAC_DIV_START_LOW_1 0x000000d0
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#define REG_DSI_10nm_PHY_PLL_FRAC_DIV_START_MID_1 0x000000d4
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#define REG_DSI_10nm_PHY_PLL_FRAC_DIV_START_HIGH_1 0x000000d8
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#define REG_DSI_10nm_PHY_PLL_SSC_STEPSIZE_LOW_1 0x0000010c
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#define REG_DSI_10nm_PHY_PLL_SSC_STEPSIZE_HIGH_1 0x00000110
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#define REG_DSI_10nm_PHY_PLL_SSC_DIV_PER_LOW_1 0x00000114
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#define REG_DSI_10nm_PHY_PLL_SSC_DIV_PER_HIGH_1 0x00000118
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#define REG_DSI_10nm_PHY_PLL_SSC_DIV_ADJPER_LOW_1 0x0000011c
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#define REG_DSI_10nm_PHY_PLL_SSC_DIV_ADJPER_HIGH_1 0x00000120
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#define REG_DSI_10nm_PHY_PLL_SSC_CONTROL 0x0000013c
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#define REG_DSI_10nm_PHY_PLL_PLL_OUTDIV_RATE 0x00000140
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#define REG_DSI_10nm_PHY_PLL_PLL_LOCKDET_RATE_1 0x00000144
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#define REG_DSI_10nm_PHY_PLL_PLL_PROP_GAIN_RATE_1 0x0000014c
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#define REG_DSI_10nm_PHY_PLL_PLL_BAND_SET_RATE_1 0x00000154
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#define REG_DSI_10nm_PHY_PLL_PLL_INT_GAIN_IFILT_BAND_1 0x0000015c
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#define REG_DSI_10nm_PHY_PLL_PLL_FL_INT_GAIN_PFILT_BAND_1 0x00000164
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#define REG_DSI_10nm_PHY_PLL_PLL_LOCK_OVERRIDE 0x00000180
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#define REG_DSI_10nm_PHY_PLL_PLL_LOCK_DELAY 0x00000184
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#define REG_DSI_10nm_PHY_PLL_CLOCK_INVERTERS 0x0000018c
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#define REG_DSI_10nm_PHY_PLL_COMMON_STATUS_ONE 0x000001a0
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#endif /* DSI_PHY_10NM_XML */
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