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Based on 1 normalized pattern(s): this program is free software you can redistribute it and or modify it under the terms of the gnu general public license as published by the free software foundation either version 2 or at your option any later version this program is distributed in the hope that it will be useful but without any warranties or representations without even the implied warranty of merchantability or fitness for a particular purpose see the gnu general public license for more details you should have received a copy of the gnu general public license along with this program if not write to the free software foundation inc 59 temple place suite 330 boston ma 02111 1307 usa extracted by the scancode license scanner the SPDX license identifier GPL-2.0-or-later has been chosen to replace the boilerplate/reference in 43 file(s). Signed-off-by: Thomas Gleixner <tglx@linutronix.de> Reviewed-by: Allison Randal <allison@lohutok.net> Reviewed-by: Kate Stewart <kstewart@linuxfoundation.org> Cc: linux-spdx@vger.kernel.org Link: https://lkml.kernel.org/r/20190520170858.826676366@linutronix.de Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
231 lines
6.8 KiB
C
231 lines
6.8 KiB
C
// SPDX-License-Identifier: GPL-2.0-or-later
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/*
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* Copyright 1998-2008 VIA Technologies, Inc. All Rights Reserved.
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* Copyright 2001-2008 S3 Graphics, Inc. All Rights Reserved.
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*/
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#include <linux/via-core.h>
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#include <linux/via_i2c.h>
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#include "global.h"
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static const struct IODATA common_init_data[] = {
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/* Index, Mask, Value */
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/* Set panel power sequence timing */
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{0x10, 0xC0, 0x00},
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/* T1: VDD on - Data on. Each increment is 1 ms. (50ms = 031h) */
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{0x0B, 0xFF, 0x40},
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/* T2: Data on - Backlight on. Each increment is 2 ms. (210ms = 068h) */
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{0x0C, 0xFF, 0x31},
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/* T3: Backlight off -Data off. Each increment is 2 ms. (210ms = 068h)*/
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{0x0D, 0xFF, 0x31},
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/* T4: Data off - VDD off. Each increment is 1 ms. (50ms = 031h) */
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{0x0E, 0xFF, 0x68},
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/* T5: VDD off - VDD on. Each increment is 100 ms. (500ms = 04h) */
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{0x0F, 0xFF, 0x68},
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/* LVDS output power up */
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{0x09, 0xA0, 0xA0},
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/* turn on back light */
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{0x10, 0x33, 0x13}
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};
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/* Index, Mask, Value */
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static const struct IODATA dual_channel_enable_data = {0x08, 0xF0, 0xE0};
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static const struct IODATA single_channel_enable_data = {0x08, 0xF0, 0x00};
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static const struct IODATA dithering_enable_data = {0x0A, 0x70, 0x50};
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static const struct IODATA dithering_disable_data = {0x0A, 0x70, 0x00};
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static const struct IODATA vdd_on_data = {0x10, 0x20, 0x20};
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static const struct IODATA vdd_off_data = {0x10, 0x20, 0x00};
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u8 viafb_gpio_i2c_read_lvds(struct lvds_setting_information
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*plvds_setting_info, struct lvds_chip_information *plvds_chip_info,
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u8 index)
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{
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u8 data;
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viafb_i2c_readbyte(plvds_chip_info->i2c_port,
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plvds_chip_info->lvds_chip_slave_addr, index, &data);
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return data;
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}
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void viafb_gpio_i2c_write_mask_lvds(struct lvds_setting_information
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*plvds_setting_info, struct lvds_chip_information
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*plvds_chip_info, struct IODATA io_data)
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{
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int index, data;
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index = io_data.Index;
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data = viafb_gpio_i2c_read_lvds(plvds_setting_info, plvds_chip_info,
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index);
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data = (data & (~io_data.Mask)) | io_data.Data;
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viafb_i2c_writebyte(plvds_chip_info->i2c_port,
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plvds_chip_info->lvds_chip_slave_addr, index, data);
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}
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void viafb_init_lvds_vt1636(struct lvds_setting_information
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*plvds_setting_info, struct lvds_chip_information *plvds_chip_info)
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{
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int reg_num, i;
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/* Common settings: */
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reg_num = ARRAY_SIZE(common_init_data);
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for (i = 0; i < reg_num; i++)
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viafb_gpio_i2c_write_mask_lvds(plvds_setting_info,
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plvds_chip_info, common_init_data[i]);
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/* Input Data Mode Select */
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if (plvds_setting_info->device_lcd_dualedge)
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viafb_gpio_i2c_write_mask_lvds(plvds_setting_info,
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plvds_chip_info, dual_channel_enable_data);
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else
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viafb_gpio_i2c_write_mask_lvds(plvds_setting_info,
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plvds_chip_info, single_channel_enable_data);
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if (plvds_setting_info->LCDDithering)
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viafb_gpio_i2c_write_mask_lvds(plvds_setting_info,
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plvds_chip_info, dithering_enable_data);
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else
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viafb_gpio_i2c_write_mask_lvds(plvds_setting_info,
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plvds_chip_info, dithering_disable_data);
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}
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void viafb_enable_lvds_vt1636(struct lvds_setting_information
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*plvds_setting_info,
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struct lvds_chip_information *plvds_chip_info)
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{
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viafb_gpio_i2c_write_mask_lvds(plvds_setting_info, plvds_chip_info,
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vdd_on_data);
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}
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void viafb_disable_lvds_vt1636(struct lvds_setting_information
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*plvds_setting_info,
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struct lvds_chip_information *plvds_chip_info)
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{
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viafb_gpio_i2c_write_mask_lvds(plvds_setting_info, plvds_chip_info,
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vdd_off_data);
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}
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bool viafb_lvds_identify_vt1636(u8 i2c_adapter)
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{
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u8 Buffer[2];
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DEBUG_MSG(KERN_INFO "viafb_lvds_identify_vt1636.\n");
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/* Sense VT1636 LVDS Transmiter */
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viaparinfo->chip_info->lvds_chip_info.lvds_chip_slave_addr =
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VT1636_LVDS_I2C_ADDR;
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/* Check vendor ID first: */
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if (viafb_i2c_readbyte(i2c_adapter, VT1636_LVDS_I2C_ADDR,
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0x00, &Buffer[0]))
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return false;
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viafb_i2c_readbyte(i2c_adapter, VT1636_LVDS_I2C_ADDR, 0x01, &Buffer[1]);
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if (!((Buffer[0] == 0x06) && (Buffer[1] == 0x11)))
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return false;
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/* Check Chip ID: */
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viafb_i2c_readbyte(i2c_adapter, VT1636_LVDS_I2C_ADDR, 0x02, &Buffer[0]);
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viafb_i2c_readbyte(i2c_adapter, VT1636_LVDS_I2C_ADDR, 0x03, &Buffer[1]);
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if ((Buffer[0] == 0x45) && (Buffer[1] == 0x33)) {
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viaparinfo->chip_info->lvds_chip_info.lvds_chip_name =
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VT1636_LVDS;
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return true;
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}
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return false;
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}
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static int get_clk_range_index(u32 Clk)
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{
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if (Clk < DPA_CLK_30M)
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return DPA_CLK_RANGE_30M;
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else if (Clk < DPA_CLK_50M)
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return DPA_CLK_RANGE_30_50M;
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else if (Clk < DPA_CLK_70M)
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return DPA_CLK_RANGE_50_70M;
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else if (Clk < DPA_CLK_100M)
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return DPA_CLK_RANGE_70_100M;
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else if (Clk < DPA_CLK_150M)
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return DPA_CLK_RANGE_100_150M;
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else
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return DPA_CLK_RANGE_150M;
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}
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static void set_dpa_vt1636(struct lvds_setting_information
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*plvds_setting_info, struct lvds_chip_information *plvds_chip_info,
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struct VT1636_DPA_SETTING *p_vt1636_dpa_setting)
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{
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struct IODATA io_data;
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io_data.Index = 0x09;
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io_data.Mask = 0x1F;
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io_data.Data = p_vt1636_dpa_setting->CLK_SEL_ST1;
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viafb_gpio_i2c_write_mask_lvds(plvds_setting_info,
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plvds_chip_info, io_data);
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io_data.Index = 0x08;
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io_data.Mask = 0x0F;
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io_data.Data = p_vt1636_dpa_setting->CLK_SEL_ST2;
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viafb_gpio_i2c_write_mask_lvds(plvds_setting_info, plvds_chip_info,
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io_data);
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}
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void viafb_vt1636_patch_skew_on_vt3324(
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struct lvds_setting_information *plvds_setting_info,
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struct lvds_chip_information *plvds_chip_info)
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{
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struct VT1636_DPA_SETTING dpa = {0x00, 0x00}, dpa_16x12 = {0x0B, 0x03},
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*pdpa;
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int index;
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DEBUG_MSG(KERN_INFO "viafb_vt1636_patch_skew_on_vt3324.\n");
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/* Graphics DPA settings: */
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index = get_clk_range_index(plvds_setting_info->vclk);
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viafb_set_dpa_gfx(plvds_chip_info->output_interface,
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&GFX_DPA_SETTING_TBL_VT3324[index]);
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/* LVDS Transmitter DPA settings: */
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if (plvds_setting_info->lcd_panel_hres == 1600 &&
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plvds_setting_info->lcd_panel_vres == 1200)
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pdpa = &dpa_16x12;
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else
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pdpa = &dpa;
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set_dpa_vt1636(plvds_setting_info, plvds_chip_info, pdpa);
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}
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void viafb_vt1636_patch_skew_on_vt3327(
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struct lvds_setting_information *plvds_setting_info,
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struct lvds_chip_information *plvds_chip_info)
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{
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struct VT1636_DPA_SETTING dpa = {0x00, 0x00};
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int index;
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DEBUG_MSG(KERN_INFO "viafb_vt1636_patch_skew_on_vt3327.\n");
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/* Graphics DPA settings: */
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index = get_clk_range_index(plvds_setting_info->vclk);
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viafb_set_dpa_gfx(plvds_chip_info->output_interface,
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&GFX_DPA_SETTING_TBL_VT3327[index]);
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/* LVDS Transmitter DPA settings: */
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set_dpa_vt1636(plvds_setting_info, plvds_chip_info, &dpa);
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}
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void viafb_vt1636_patch_skew_on_vt3364(
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struct lvds_setting_information *plvds_setting_info,
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struct lvds_chip_information *plvds_chip_info)
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{
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int index;
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DEBUG_MSG(KERN_INFO "viafb_vt1636_patch_skew_on_vt3364.\n");
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/* Graphics DPA settings: */
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index = get_clk_range_index(plvds_setting_info->vclk);
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viafb_set_dpa_gfx(plvds_chip_info->output_interface,
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&GFX_DPA_SETTING_TBL_VT3364[index]);
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}
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