intel_tv.c 44.5 KB
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/*
 * Copyright © 2006-2008 Intel Corporation
 *   Jesse Barnes <jesse.barnes@intel.com>
 *
 * Permission is hereby granted, free of charge, to any person obtaining a
 * copy of this software and associated documentation files (the "Software"),
 * to deal in the Software without restriction, including without limitation
 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
 * and/or sell copies of the Software, and to permit persons to whom the
 * Software is furnished to do so, subject to the following conditions:
 *
 * The above copyright notice and this permission notice (including the next
 * paragraph) shall be included in all copies or substantial portions of the
 * Software.
 *
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
 * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
 * DEALINGS IN THE SOFTWARE.
 *
 * Authors:
 *    Eric Anholt <eric@anholt.net>
 *
 */

/** @file
 * Integrated TV-out support for the 915GM and 945GM.
 */

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#include <drm/drm_atomic_helper.h>
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#include <drm/drm_crtc.h>
#include <drm/drm_edid.h>
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#include "intel_drv.h"
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#include <drm/i915_drm.h>
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#include "i915_drv.h"

enum tv_margin {
	TV_MARGIN_LEFT, TV_MARGIN_TOP,
	TV_MARGIN_RIGHT, TV_MARGIN_BOTTOM
};

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struct intel_tv {
	struct intel_encoder base;

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	int type;
};

struct video_levels {
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	u16 blank, black;
	u8 burst;
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};

struct color_conversion {
	u16 ry, gy, by, ay;
	u16 ru, gu, bu, au;
	u16 rv, gv, bv, av;
};

static const u32 filter_table[] = {
	0xB1403000, 0x2E203500, 0x35002E20, 0x3000B140,
	0x35A0B160, 0x2DC02E80, 0xB1403480, 0xB1603000,
	0x2EA03640, 0x34002D80, 0x3000B120, 0x36E0B160,
	0x2D202EF0, 0xB1203380, 0xB1603000, 0x2F303780,
	0x33002CC0, 0x3000B100, 0x3820B160, 0x2C802F50,
	0xB10032A0, 0xB1603000, 0x2F9038C0, 0x32202C20,
	0x3000B0E0, 0x3980B160, 0x2BC02FC0, 0xB0E031C0,
	0xB1603000, 0x2FF03A20, 0x31602B60, 0xB020B0C0,
	0x3AE0B160, 0x2B001810, 0xB0C03120, 0xB140B020,
	0x18283BA0, 0x30C02A80, 0xB020B0A0, 0x3C60B140,
	0x2A201838, 0xB0A03080, 0xB120B020, 0x18383D20,
	0x304029C0, 0xB040B080, 0x3DE0B100, 0x29601848,
	0xB0803000, 0xB100B040, 0x18483EC0, 0xB0402900,
	0xB040B060, 0x3F80B0C0, 0x28801858, 0xB060B080,
	0xB0A0B060, 0x18602820, 0xB0A02820, 0x0000B060,
	0xB1403000, 0x2E203500, 0x35002E20, 0x3000B140,
	0x35A0B160, 0x2DC02E80, 0xB1403480, 0xB1603000,
	0x2EA03640, 0x34002D80, 0x3000B120, 0x36E0B160,
	0x2D202EF0, 0xB1203380, 0xB1603000, 0x2F303780,
	0x33002CC0, 0x3000B100, 0x3820B160, 0x2C802F50,
	0xB10032A0, 0xB1603000, 0x2F9038C0, 0x32202C20,
	0x3000B0E0, 0x3980B160, 0x2BC02FC0, 0xB0E031C0,
	0xB1603000, 0x2FF03A20, 0x31602B60, 0xB020B0C0,
	0x3AE0B160, 0x2B001810, 0xB0C03120, 0xB140B020,
	0x18283BA0, 0x30C02A80, 0xB020B0A0, 0x3C60B140,
	0x2A201838, 0xB0A03080, 0xB120B020, 0x18383D20,
	0x304029C0, 0xB040B080, 0x3DE0B100, 0x29601848,
	0xB0803000, 0xB100B040, 0x18483EC0, 0xB0402900,
	0xB040B060, 0x3F80B0C0, 0x28801858, 0xB060B080,
	0xB0A0B060, 0x18602820, 0xB0A02820, 0x0000B060,
	0x36403000, 0x2D002CC0, 0x30003640, 0x2D0036C0,
	0x35C02CC0, 0x37403000, 0x2C802D40, 0x30003540,
	0x2D8037C0, 0x34C02C40, 0x38403000, 0x2BC02E00,
	0x30003440, 0x2E2038C0, 0x34002B80, 0x39803000,
	0x2B402E40, 0x30003380, 0x2E603A00, 0x33402B00,
	0x3A803040, 0x2A802EA0, 0x30403300, 0x2EC03B40,
	0x32802A40, 0x3C003040, 0x2A002EC0, 0x30803240,
	0x2EC03C80, 0x320029C0, 0x3D403080, 0x29402F00,
	0x308031C0, 0x2F203DC0, 0x31802900, 0x3E8030C0,
	0x28802F40, 0x30C03140, 0x2F203F40, 0x31402840,
	0x28003100, 0x28002F00, 0x00003100, 0x36403000,
	0x2D002CC0, 0x30003640, 0x2D0036C0,
	0x35C02CC0, 0x37403000, 0x2C802D40, 0x30003540,
	0x2D8037C0, 0x34C02C40, 0x38403000, 0x2BC02E00,
	0x30003440, 0x2E2038C0, 0x34002B80, 0x39803000,
	0x2B402E40, 0x30003380, 0x2E603A00, 0x33402B00,
	0x3A803040, 0x2A802EA0, 0x30403300, 0x2EC03B40,
	0x32802A40, 0x3C003040, 0x2A002EC0, 0x30803240,
	0x2EC03C80, 0x320029C0, 0x3D403080, 0x29402F00,
	0x308031C0, 0x2F203DC0, 0x31802900, 0x3E8030C0,
	0x28802F40, 0x30C03140, 0x2F203F40, 0x31402840,
	0x28003100, 0x28002F00, 0x00003100,
};

/*
 * Color conversion values have 3 separate fixed point formats:
 *
 * 10 bit fields (ay, au)
 *   1.9 fixed point (b.bbbbbbbbb)
 * 11 bit fields (ry, by, ru, gu, gv)
 *   exp.mantissa (ee.mmmmmmmmm)
 *   ee = 00 = 10^-1 (0.mmmmmmmmm)
 *   ee = 01 = 10^-2 (0.0mmmmmmmmm)
 *   ee = 10 = 10^-3 (0.00mmmmmmmmm)
 *   ee = 11 = 10^-4 (0.000mmmmmmmmm)
 * 12 bit fields (gy, rv, bu)
 *   exp.mantissa (eee.mmmmmmmmm)
 *   eee = 000 = 10^-1 (0.mmmmmmmmm)
 *   eee = 001 = 10^-2 (0.0mmmmmmmmm)
 *   eee = 010 = 10^-3 (0.00mmmmmmmmm)
 *   eee = 011 = 10^-4 (0.000mmmmmmmmm)
 *   eee = 100 = reserved
 *   eee = 101 = reserved
 *   eee = 110 = reserved
 *   eee = 111 = 10^0 (m.mmmmmmmm) (only usable for 1.0 representation)
 *
 * Saturation and contrast are 8 bits, with their own representation:
 * 8 bit field (saturation, contrast)
 *   exp.mantissa (ee.mmmmmm)
 *   ee = 00 = 10^-1 (0.mmmmmm)
 *   ee = 01 = 10^0 (m.mmmmm)
 *   ee = 10 = 10^1 (mm.mmmm)
 *   ee = 11 = 10^2 (mmm.mmm)
 *
 * Simple conversion function:
 *
 * static u32
 * float_to_csc_11(float f)
 * {
 *     u32 exp;
 *     u32 mant;
 *     u32 ret;
 *
 *     if (f < 0)
 *         f = -f;
 *
 *     if (f >= 1) {
 *         exp = 0x7;
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 *	   mant = 1 << 8;
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 *     } else {
 *         for (exp = 0; exp < 3 && f < 0.5; exp++)
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 *	   f *= 2.0;
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 *         mant = (f * (1 << 9) + 0.5);
 *         if (mant >= (1 << 9))
 *             mant = (1 << 9) - 1;
 *     }
 *     ret = (exp << 9) | mant;
 *     return ret;
 * }
 */

/*
 * Behold, magic numbers!  If we plant them they might grow a big
 * s-video cable to the sky... or something.
 *
 * Pre-converted to appropriate hex value.
 */

/*
 * PAL & NTSC values for composite & s-video connections
 */
static const struct color_conversion ntsc_m_csc_composite = {
	.ry = 0x0332, .gy = 0x012d, .by = 0x07d3, .ay = 0x0104,
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	.ru = 0x0733, .gu = 0x052d, .bu = 0x05c7, .au = 0x0200,
	.rv = 0x0340, .gv = 0x030c, .bv = 0x06d0, .av = 0x0200,
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};

static const struct video_levels ntsc_m_levels_composite = {
	.blank = 225, .black = 267, .burst = 113,
};

static const struct color_conversion ntsc_m_csc_svideo = {
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	.ry = 0x0332, .gy = 0x012d, .by = 0x07d3, .ay = 0x0133,
	.ru = 0x076a, .gu = 0x0564, .bu = 0x030d, .au = 0x0200,
	.rv = 0x037a, .gv = 0x033d, .bv = 0x06f6, .av = 0x0200,
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};

static const struct video_levels ntsc_m_levels_svideo = {
	.blank = 266, .black = 316, .burst = 133,
};

static const struct color_conversion ntsc_j_csc_composite = {
	.ry = 0x0332, .gy = 0x012d, .by = 0x07d3, .ay = 0x0119,
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	.ru = 0x074c, .gu = 0x0546, .bu = 0x05ec, .au = 0x0200,
	.rv = 0x035a, .gv = 0x0322, .bv = 0x06e1, .av = 0x0200,
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};

static const struct video_levels ntsc_j_levels_composite = {
	.blank = 225, .black = 225, .burst = 113,
};

static const struct color_conversion ntsc_j_csc_svideo = {
	.ry = 0x0332, .gy = 0x012d, .by = 0x07d3, .ay = 0x014c,
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	.ru = 0x0788, .gu = 0x0581, .bu = 0x0322, .au = 0x0200,
	.rv = 0x0399, .gv = 0x0356, .bv = 0x070a, .av = 0x0200,
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};

static const struct video_levels ntsc_j_levels_svideo = {
	.blank = 266, .black = 266, .burst = 133,
};

static const struct color_conversion pal_csc_composite = {
	.ry = 0x0332, .gy = 0x012d, .by = 0x07d3, .ay = 0x0113,
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	.ru = 0x0745, .gu = 0x053f, .bu = 0x05e1, .au = 0x0200,
	.rv = 0x0353, .gv = 0x031c, .bv = 0x06dc, .av = 0x0200,
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};

static const struct video_levels pal_levels_composite = {
	.blank = 237, .black = 237, .burst = 118,
};

static const struct color_conversion pal_csc_svideo = {
	.ry = 0x0332, .gy = 0x012d, .by = 0x07d3, .ay = 0x0145,
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	.ru = 0x0780, .gu = 0x0579, .bu = 0x031c, .au = 0x0200,
	.rv = 0x0390, .gv = 0x034f, .bv = 0x0705, .av = 0x0200,
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};

static const struct video_levels pal_levels_svideo = {
	.blank = 280, .black = 280, .burst = 139,
};

static const struct color_conversion pal_m_csc_composite = {
	.ry = 0x0332, .gy = 0x012d, .by = 0x07d3, .ay = 0x0104,
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	.ru = 0x0733, .gu = 0x052d, .bu = 0x05c7, .au = 0x0200,
	.rv = 0x0340, .gv = 0x030c, .bv = 0x06d0, .av = 0x0200,
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};

static const struct video_levels pal_m_levels_composite = {
	.blank = 225, .black = 267, .burst = 113,
};

static const struct color_conversion pal_m_csc_svideo = {
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	.ry = 0x0332, .gy = 0x012d, .by = 0x07d3, .ay = 0x0133,
	.ru = 0x076a, .gu = 0x0564, .bu = 0x030d, .au = 0x0200,
	.rv = 0x037a, .gv = 0x033d, .bv = 0x06f6, .av = 0x0200,
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};

static const struct video_levels pal_m_levels_svideo = {
	.blank = 266, .black = 316, .burst = 133,
};

static const struct color_conversion pal_n_csc_composite = {
	.ry = 0x0332, .gy = 0x012d, .by = 0x07d3, .ay = 0x0104,
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	.ru = 0x0733, .gu = 0x052d, .bu = 0x05c7, .au = 0x0200,
	.rv = 0x0340, .gv = 0x030c, .bv = 0x06d0, .av = 0x0200,
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};

static const struct video_levels pal_n_levels_composite = {
	.blank = 225, .black = 267, .burst = 118,
};

static const struct color_conversion pal_n_csc_svideo = {
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	.ry = 0x0332, .gy = 0x012d, .by = 0x07d3, .ay = 0x0133,
	.ru = 0x076a, .gu = 0x0564, .bu = 0x030d, .au = 0x0200,
	.rv = 0x037a, .gv = 0x033d, .bv = 0x06f6, .av = 0x0200,
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};

static const struct video_levels pal_n_levels_svideo = {
	.blank = 266, .black = 316, .burst = 139,
};

/*
 * Component connections
 */
static const struct color_conversion sdtv_csc_yprpb = {
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	.ry = 0x0332, .gy = 0x012d, .by = 0x07d3, .ay = 0x0145,
	.ru = 0x0559, .gu = 0x0353, .bu = 0x0100, .au = 0x0200,
	.rv = 0x0100, .gv = 0x03ad, .bv = 0x074d, .av = 0x0200,
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};

static const struct color_conversion hdtv_csc_yprpb = {
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	.ry = 0x05b3, .gy = 0x016e, .by = 0x0728, .ay = 0x0145,
	.ru = 0x07d5, .gu = 0x038b, .bu = 0x0100, .au = 0x0200,
	.rv = 0x0100, .gv = 0x03d1, .bv = 0x06bc, .av = 0x0200,
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};

static const struct video_levels component_levels = {
	.blank = 279, .black = 279, .burst = 0,
};


struct tv_mode {
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	const char *name;
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	u32 clock;
	u16 refresh; /* in millihertz (for precision) */
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	u32 oversample;
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	u8 hsync_end;
	u16 hblank_start, hblank_end, htotal;
	bool progressive : 1, trilevel_sync : 1, component_only : 1;
	u8 vsync_start_f1, vsync_start_f2, vsync_len;
	bool veq_ena : 1;
	u8 veq_start_f1, veq_start_f2, veq_len;
	u8 vi_end_f1, vi_end_f2;
	u16 nbr_end;
	bool burst_ena : 1;
	u8 hburst_start, hburst_len;
	u8 vburst_start_f1;
	u16 vburst_end_f1;
	u8 vburst_start_f2;
	u16 vburst_end_f2;
	u8 vburst_start_f3;
	u16 vburst_end_f3;
	u8 vburst_start_f4;
	u16 vburst_end_f4;
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	/*
	 * subcarrier programming
	 */
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	u16 dda2_size, dda3_size;
	u8 dda1_inc;
	u16 dda2_inc, dda3_inc;
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	u32 sc_reset;
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	bool pal_burst : 1;
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	/*
	 * blank/black levels
	 */
	const struct video_levels *composite_levels, *svideo_levels;
	const struct color_conversion *composite_color, *svideo_color;
	const u32 *filter_table;
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	u16 max_srcw;
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};


/*
 * Sub carrier DDA
 *
 *  I think this works as follows:
 *
 *  subcarrier freq = pixel_clock * (dda1_inc + dda2_inc / dda2_size) / 4096
 *
 * Presumably, when dda3 is added in, it gets to adjust the dda2_inc value
 *
 * So,
 *  dda1_ideal = subcarrier/pixel * 4096
 *  dda1_inc = floor (dda1_ideal)
 *  dda2 = dda1_ideal - dda1_inc
 *
 *  then pick a ratio for dda2 that gives the closest approximation. If
 *  you can't get close enough, you can play with dda3 as well. This
 *  seems likely to happen when dda2 is small as the jumps would be larger
 *
 * To invert this,
 *
 *  pixel_clock = subcarrier * 4096 / (dda1_inc + dda2_inc / dda2_size)
 *
 * The constants below were all computed using a 107.520MHz clock
 */

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/*
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 * Register programming values for TV modes.
 *
 * These values account for -1s required.
 */
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static const struct tv_mode tv_modes[] = {
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	{
		.name		= "NTSC-M",
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		.clock		= 108000,
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		.refresh	= 59940,
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		.oversample	= TV_OVERSAMPLE_8X,
		.component_only = 0,
		/* 525 Lines, 60 Fields, 15.734KHz line, Sub-Carrier 3.580MHz */

		.hsync_end	= 64,		    .hblank_end		= 124,
		.hblank_start	= 836,		    .htotal		= 857,

		.progressive	= false,	    .trilevel_sync = false,

		.vsync_start_f1	= 6,		    .vsync_start_f2	= 7,
		.vsync_len	= 6,

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		.veq_ena	= true,		    .veq_start_f1	= 0,
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		.veq_start_f2	= 1,		    .veq_len		= 18,

		.vi_end_f1	= 20,		    .vi_end_f2		= 21,
		.nbr_end	= 240,

		.burst_ena	= true,
		.hburst_start	= 72,		    .hburst_len		= 34,
		.vburst_start_f1 = 9,		    .vburst_end_f1	= 240,
		.vburst_start_f2 = 10,		    .vburst_end_f2	= 240,
		.vburst_start_f3 = 9,		    .vburst_end_f3	= 240,
		.vburst_start_f4 = 10,		    .vburst_end_f4	= 240,

		/* desired 3.5800000 actual 3.5800000 clock 107.52 */
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		.dda1_inc	=    135,
		.dda2_inc	=  20800,	    .dda2_size		=  27456,
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		.dda3_inc	=      0,	    .dda3_size		=      0,
		.sc_reset	= TV_SC_RESET_EVERY_4,
		.pal_burst	= false,

		.composite_levels = &ntsc_m_levels_composite,
		.composite_color = &ntsc_m_csc_composite,
		.svideo_levels  = &ntsc_m_levels_svideo,
		.svideo_color = &ntsc_m_csc_svideo,

		.filter_table = filter_table,
	},
	{
		.name		= "NTSC-443",
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		.clock		= 108000,
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		.refresh	= 59940,
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		.oversample	= TV_OVERSAMPLE_8X,
		.component_only = 0,
		/* 525 Lines, 60 Fields, 15.734KHz line, Sub-Carrier 4.43MHz */
		.hsync_end	= 64,		    .hblank_end		= 124,
		.hblank_start	= 836,		    .htotal		= 857,

		.progressive	= false,	    .trilevel_sync = false,

		.vsync_start_f1 = 6,		    .vsync_start_f2	= 7,
		.vsync_len	= 6,

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		.veq_ena	= true,		    .veq_start_f1	= 0,
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		.veq_start_f2	= 1,		    .veq_len		= 18,

		.vi_end_f1	= 20,		    .vi_end_f2		= 21,
		.nbr_end	= 240,

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		.burst_ena	= true,
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		.hburst_start	= 72,		    .hburst_len		= 34,
		.vburst_start_f1 = 9,		    .vburst_end_f1	= 240,
		.vburst_start_f2 = 10,		    .vburst_end_f2	= 240,
		.vburst_start_f3 = 9,		    .vburst_end_f3	= 240,
		.vburst_start_f4 = 10,		    .vburst_end_f4	= 240,

		/* desired 4.4336180 actual 4.4336180 clock 107.52 */
		.dda1_inc       =    168,
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		.dda2_inc       =   4093,       .dda2_size      =  27456,
		.dda3_inc       =    310,       .dda3_size      =    525,
		.sc_reset   = TV_SC_RESET_NEVER,
		.pal_burst  = false,
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		.composite_levels = &ntsc_m_levels_composite,
		.composite_color = &ntsc_m_csc_composite,
		.svideo_levels  = &ntsc_m_levels_svideo,
		.svideo_color = &ntsc_m_csc_svideo,

		.filter_table = filter_table,
	},
	{
		.name		= "NTSC-J",
464
		.clock		= 108000,
465
		.refresh	= 59940,
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		.oversample	= TV_OVERSAMPLE_8X,
		.component_only = 0,

		/* 525 Lines, 60 Fields, 15.734KHz line, Sub-Carrier 3.580MHz */
		.hsync_end	= 64,		    .hblank_end		= 124,
		.hblank_start = 836,	    .htotal		= 857,

		.progressive	= false,    .trilevel_sync = false,

		.vsync_start_f1	= 6,	    .vsync_start_f2	= 7,
		.vsync_len	= 6,

478
		.veq_ena      = true,	    .veq_start_f1	= 0,
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		.veq_start_f2 = 1,	    .veq_len		= 18,

		.vi_end_f1	= 20,		    .vi_end_f2		= 21,
		.nbr_end	= 240,

		.burst_ena	= true,
		.hburst_start	= 72,		    .hburst_len		= 34,
		.vburst_start_f1 = 9,		    .vburst_end_f1	= 240,
		.vburst_start_f2 = 10,		    .vburst_end_f2	= 240,
		.vburst_start_f3 = 9,		    .vburst_end_f3	= 240,
		.vburst_start_f4 = 10,		    .vburst_end_f4	= 240,

		/* desired 3.5800000 actual 3.5800000 clock 107.52 */
492 493
		.dda1_inc	=    135,
		.dda2_inc	=  20800,	    .dda2_size		=  27456,
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		.dda3_inc	=      0,	    .dda3_size		=      0,
		.sc_reset	= TV_SC_RESET_EVERY_4,
		.pal_burst	= false,

		.composite_levels = &ntsc_j_levels_composite,
		.composite_color = &ntsc_j_csc_composite,
		.svideo_levels  = &ntsc_j_levels_svideo,
		.svideo_color = &ntsc_j_csc_svideo,

		.filter_table = filter_table,
	},
	{
		.name		= "PAL-M",
507
		.clock		= 108000,
508
		.refresh	= 59940,
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		.oversample	= TV_OVERSAMPLE_8X,
		.component_only = 0,

		/* 525 Lines, 60 Fields, 15.734KHz line, Sub-Carrier 3.580MHz */
		.hsync_end	= 64,		  .hblank_end		= 124,
		.hblank_start = 836,	  .htotal		= 857,

		.progressive	= false,	    .trilevel_sync = false,

		.vsync_start_f1	= 6,		    .vsync_start_f2	= 7,
		.vsync_len	= 6,

521
		.veq_ena	= true,		    .veq_start_f1	= 0,
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		.veq_start_f2	= 1,		    .veq_len		= 18,

		.vi_end_f1	= 20,		    .vi_end_f2		= 21,
		.nbr_end	= 240,

		.burst_ena	= true,
		.hburst_start	= 72,		    .hburst_len		= 34,
		.vburst_start_f1 = 9,		    .vburst_end_f1	= 240,
		.vburst_start_f2 = 10,		    .vburst_end_f2	= 240,
		.vburst_start_f3 = 9,		    .vburst_end_f3	= 240,
		.vburst_start_f4 = 10,		    .vburst_end_f4	= 240,

		/* desired 3.5800000 actual 3.5800000 clock 107.52 */
535 536
		.dda1_inc	=    135,
		.dda2_inc	=  16704,	    .dda2_size		=  27456,
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		.dda3_inc	=      0,	    .dda3_size		=      0,
538 539
		.sc_reset	= TV_SC_RESET_EVERY_8,
		.pal_burst  = true,
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		.composite_levels = &pal_m_levels_composite,
		.composite_color = &pal_m_csc_composite,
		.svideo_levels  = &pal_m_levels_svideo,
		.svideo_color = &pal_m_csc_svideo,

		.filter_table = filter_table,
	},
	{
		/* 625 Lines, 50 Fields, 15.625KHz line, Sub-Carrier 4.434MHz */
		.name	    = "PAL-N",
551
		.clock		= 108000,
552
		.refresh	= 50000,
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		.oversample	= TV_OVERSAMPLE_8X,
		.component_only = 0,

		.hsync_end	= 64,		    .hblank_end		= 128,
		.hblank_start = 844,	    .htotal		= 863,

		.progressive  = false,    .trilevel_sync = false,


		.vsync_start_f1	= 6,	   .vsync_start_f2	= 7,
		.vsync_len	= 6,

565
		.veq_ena	= true,		    .veq_start_f1	= 0,
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		.veq_start_f2	= 1,		    .veq_len		= 18,

		.vi_end_f1	= 24,		    .vi_end_f2		= 25,
		.nbr_end	= 286,

		.burst_ena	= true,
572
		.hburst_start = 73,	    .hburst_len		= 34,
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		.vburst_start_f1 = 8,	    .vburst_end_f1	= 285,
		.vburst_start_f2 = 8,	    .vburst_end_f2	= 286,
		.vburst_start_f3 = 9,	    .vburst_end_f3	= 286,
		.vburst_start_f4 = 9,	    .vburst_end_f4	= 285,


		/* desired 4.4336180 actual 4.4336180 clock 107.52 */
580 581 582
		.dda1_inc       =    135,
		.dda2_inc       =  23578,       .dda2_size      =  27648,
		.dda3_inc       =    134,       .dda3_size      =    625,
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		.sc_reset   = TV_SC_RESET_EVERY_8,
		.pal_burst  = true,

		.composite_levels = &pal_n_levels_composite,
		.composite_color = &pal_n_csc_composite,
		.svideo_levels  = &pal_n_levels_svideo,
		.svideo_color = &pal_n_csc_svideo,

		.filter_table = filter_table,
	},
	{
		/* 625 Lines, 50 Fields, 15.625KHz line, Sub-Carrier 4.434MHz */
		.name	    = "PAL",
596
		.clock		= 108000,
597
		.refresh	= 50000,
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		.oversample	= TV_OVERSAMPLE_8X,
		.component_only = 0,

601
		.hsync_end	= 64,		    .hblank_end		= 142,
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		.hblank_start	= 844,	    .htotal		= 863,

		.progressive	= false,    .trilevel_sync = false,

		.vsync_start_f1	= 5,	    .vsync_start_f2	= 6,
		.vsync_len	= 5,

609
		.veq_ena	= true,	    .veq_start_f1	= 0,
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		.veq_start_f2	= 1,	    .veq_len		= 15,

		.vi_end_f1	= 24,		    .vi_end_f2		= 25,
		.nbr_end	= 286,

		.burst_ena	= true,
		.hburst_start	= 73,		    .hburst_len		= 32,
		.vburst_start_f1 = 8,		    .vburst_end_f1	= 285,
		.vburst_start_f2 = 8,		    .vburst_end_f2	= 286,
		.vburst_start_f3 = 9,		    .vburst_end_f3	= 286,
		.vburst_start_f4 = 9,		    .vburst_end_f4	= 285,

		/* desired 4.4336180 actual 4.4336180 clock 107.52 */
		.dda1_inc       =    168,
624 625
		.dda2_inc       =   4122,       .dda2_size      =  27648,
		.dda3_inc       =     67,       .dda3_size      =    625,
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		.sc_reset   = TV_SC_RESET_EVERY_8,
		.pal_burst  = true,

		.composite_levels = &pal_levels_composite,
		.composite_color = &pal_csc_composite,
		.svideo_levels  = &pal_levels_svideo,
		.svideo_color = &pal_csc_svideo,

		.filter_table = filter_table,
	},
636 637 638 639 640 641 642 643 644 645 646 647 648 649 650 651 652 653 654 655 656 657 658 659 660 661 662 663 664 665 666 667 668 669 670 671 672 673 674 675 676 677 678 679 680 681 682 683
	{
		.name       = "480p",
		.clock		= 107520,
		.refresh	= 59940,
		.oversample     = TV_OVERSAMPLE_4X,
		.component_only = 1,

		.hsync_end      = 64,               .hblank_end         = 122,
		.hblank_start   = 842,              .htotal             = 857,

		.progressive    = true,		    .trilevel_sync = false,

		.vsync_start_f1 = 12,               .vsync_start_f2     = 12,
		.vsync_len      = 12,

		.veq_ena        = false,

		.vi_end_f1      = 44,               .vi_end_f2          = 44,
		.nbr_end        = 479,

		.burst_ena      = false,

		.filter_table = filter_table,
	},
	{
		.name       = "576p",
		.clock		= 107520,
		.refresh	= 50000,
		.oversample     = TV_OVERSAMPLE_4X,
		.component_only = 1,

		.hsync_end      = 64,               .hblank_end         = 139,
		.hblank_start   = 859,              .htotal             = 863,

		.progressive    = true,		    .trilevel_sync = false,

		.vsync_start_f1 = 10,               .vsync_start_f2     = 10,
		.vsync_len      = 10,

		.veq_ena        = false,

		.vi_end_f1      = 48,               .vi_end_f2          = 48,
		.nbr_end        = 575,

		.burst_ena      = false,

		.filter_table = filter_table,
	},
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	{
		.name       = "720p@60Hz",
		.clock		= 148800,
		.refresh	= 60000,
		.oversample     = TV_OVERSAMPLE_2X,
		.component_only = 1,

		.hsync_end      = 80,               .hblank_end         = 300,
		.hblank_start   = 1580,             .htotal             = 1649,

694
		.progressive	= true,		    .trilevel_sync = true,
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		.vsync_start_f1 = 10,               .vsync_start_f2     = 10,
		.vsync_len      = 10,

		.veq_ena        = false,

		.vi_end_f1      = 29,               .vi_end_f2          = 29,
		.nbr_end        = 719,

		.burst_ena      = false,

		.filter_table = filter_table,
	},
	{
		.name       = "720p@50Hz",
		.clock		= 148800,
		.refresh	= 50000,
		.oversample     = TV_OVERSAMPLE_2X,
		.component_only = 1,

		.hsync_end      = 80,               .hblank_end         = 300,
		.hblank_start   = 1580,             .htotal             = 1979,

718
		.progressive	= true,		    .trilevel_sync = true,
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		.vsync_start_f1 = 10,               .vsync_start_f2     = 10,
		.vsync_len      = 10,

		.veq_ena        = false,

		.vi_end_f1      = 29,               .vi_end_f2          = 29,
		.nbr_end        = 719,

		.burst_ena      = false,

		.filter_table = filter_table,
		.max_srcw = 800
	},
	{
		.name       = "1080i@50Hz",
		.clock		= 148800,
736
		.refresh	= 50000,
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		.oversample     = TV_OVERSAMPLE_2X,
		.component_only = 1,

		.hsync_end      = 88,               .hblank_end         = 235,
		.hblank_start   = 2155,             .htotal             = 2639,

743
		.progressive	= false,	  .trilevel_sync = true,
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		.vsync_start_f1 = 4,              .vsync_start_f2     = 5,
		.vsync_len      = 10,

748
		.veq_ena	= true,	    .veq_start_f1	= 4,
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		.veq_start_f2   = 4,	    .veq_len		= 10,


		.vi_end_f1      = 21,           .vi_end_f2          = 22,
		.nbr_end        = 539,

		.burst_ena      = false,

		.filter_table = filter_table,
	},
	{
		.name       = "1080i@60Hz",
		.clock		= 148800,
762
		.refresh	= 60000,
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		.oversample     = TV_OVERSAMPLE_2X,
		.component_only = 1,

		.hsync_end      = 88,               .hblank_end         = 235,
		.hblank_start   = 2155,             .htotal             = 2199,

769
		.progressive	= false,	    .trilevel_sync = true,
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		.vsync_start_f1 = 4,               .vsync_start_f2     = 5,
		.vsync_len      = 10,

774
		.veq_ena	= true,		    .veq_start_f1	= 4,
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		.veq_start_f2	= 4,		    .veq_len		= 10,


		.vi_end_f1      = 21,               .vi_end_f2          = 22,
		.nbr_end        = 539,

		.burst_ena      = false,

		.filter_table = filter_table,
	},
};

787
static struct intel_tv *enc_to_tv(struct intel_encoder *encoder)
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{
789
	return container_of(encoder, struct intel_tv, base);
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}

792 793
static struct intel_tv *intel_attached_tv(struct drm_connector *connector)
{
794
	return enc_to_tv(intel_attached_encoder(connector));
795 796
}

797 798 799
static bool
intel_tv_get_hw_state(struct intel_encoder *encoder, enum pipe *pipe)
{
800
	struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
801 802
	u32 tmp = I915_READ(TV_CTL);

803
	*pipe = (tmp & TV_ENC_PIPE_SEL_MASK) >> TV_ENC_PIPE_SEL_SHIFT;
804

805
	return tmp & TV_ENC_ENABLE;
806 807
}

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static void
809
intel_enable_tv(struct intel_encoder *encoder,
810 811
		const struct intel_crtc_state *pipe_config,
		const struct drm_connector_state *conn_state)
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{
813
	struct drm_device *dev = encoder->base.dev;
814
	struct drm_i915_private *dev_priv = to_i915(dev);
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816
	/* Prevents vblank waits from timing out in intel_tv_detect_type() */
817
	intel_wait_for_vblank(dev_priv,
818
			      to_intel_crtc(pipe_config->base.crtc)->pipe);
819

820 821 822 823
	I915_WRITE(TV_CTL, I915_READ(TV_CTL) | TV_ENC_ENABLE);
}

static void
824
intel_disable_tv(struct intel_encoder *encoder,
825 826
		 const struct intel_crtc_state *old_crtc_state,
		 const struct drm_connector_state *old_conn_state)
827 828
{
	struct drm_device *dev = encoder->base.dev;
829
	struct drm_i915_private *dev_priv = to_i915(dev);
830 831

	I915_WRITE(TV_CTL, I915_READ(TV_CTL) & ~TV_ENC_ENABLE);
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}

834
static const struct tv_mode *intel_tv_mode_find(const struct drm_connector_state *conn_state)
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{
836
	int format = conn_state->tv.mode;
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838
	return &tv_modes[format];
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}

static enum drm_mode_status
842 843
intel_tv_mode_valid(struct drm_connector *connector,
		    struct drm_display_mode *mode)
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{
845
	const struct tv_mode *tv_mode = intel_tv_mode_find(connector->state);
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	int max_dotclk = to_i915(connector->dev)->max_dotclk_freq;

848 849 850
	if (mode->flags & DRM_MODE_FLAG_DBLSCAN)
		return MODE_NO_DBLESCAN;

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	if (mode->clock > max_dotclk)
		return MODE_CLOCK_HIGH;
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	/* Ensure TV refresh is close to desired refresh */
855 856
	if (tv_mode && abs(tv_mode->refresh - drm_mode_vrefresh(mode) * 1000)
				< 1000)
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		return MODE_OK;
858

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	return MODE_CLOCK_RANGE;
}


863 864
static void
intel_tv_get_config(struct intel_encoder *encoder,
865
		    struct intel_crtc_state *pipe_config)
866
{
867 868
	pipe_config->output_types |= BIT(INTEL_OUTPUT_TVOUT);

869
	pipe_config->base.adjusted_mode.crtc_clock = pipe_config->port_clock;
870 871
}

872
static int
873
intel_tv_compute_config(struct intel_encoder *encoder,
874 875
			struct intel_crtc_state *pipe_config,
			struct drm_connector_state *conn_state)
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{
877
	const struct tv_mode *tv_mode = intel_tv_mode_find(conn_state);
878 879
	struct drm_display_mode *adjusted_mode =
		&pipe_config->base.adjusted_mode;
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	if (!tv_mode)
882
		return -EINVAL;
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884
	if (adjusted_mode->flags & DRM_MODE_FLAG_DBLSCAN)
885
		return -EINVAL;
886

887
	pipe_config->output_format = INTEL_OUTPUT_FORMAT_RGB;
888
	adjusted_mode->crtc_clock = tv_mode->clock;
889 890 891
	DRM_DEBUG_KMS("forcing bpc to 8 for TV\n");
	pipe_config->pipe_bpp = 8*3;

892
	/* TV has it's own notion of sync and other mode flags, so clear them. */
893
	adjusted_mode->flags = 0;
894 895 896 897 898 899

	/*
	 * FIXME: We don't check whether the input mode is actually what we want
	 * or whether userspace is doing something stupid.
	 */

900
	return 0;
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}

903 904 905 906 907 908 909 910 911 912 913 914 915 916 917 918 919 920 921 922 923 924 925 926 927 928 929 930 931 932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957 958 959 960 961
static void
set_tv_mode_timings(struct drm_i915_private *dev_priv,
		    const struct tv_mode *tv_mode,
		    bool burst_ena)
{
	u32 hctl1, hctl2, hctl3;
	u32 vctl1, vctl2, vctl3, vctl4, vctl5, vctl6, vctl7;

	hctl1 = (tv_mode->hsync_end << TV_HSYNC_END_SHIFT) |
		(tv_mode->htotal << TV_HTOTAL_SHIFT);

	hctl2 = (tv_mode->hburst_start << 16) |
		(tv_mode->hburst_len << TV_HBURST_LEN_SHIFT);

	if (burst_ena)
		hctl2 |= TV_BURST_ENA;

	hctl3 = (tv_mode->hblank_start << TV_HBLANK_START_SHIFT) |
		(tv_mode->hblank_end << TV_HBLANK_END_SHIFT);

	vctl1 = (tv_mode->nbr_end << TV_NBR_END_SHIFT) |
		(tv_mode->vi_end_f1 << TV_VI_END_F1_SHIFT) |
		(tv_mode->vi_end_f2 << TV_VI_END_F2_SHIFT);

	vctl2 = (tv_mode->vsync_len << TV_VSYNC_LEN_SHIFT) |
		(tv_mode->vsync_start_f1 << TV_VSYNC_START_F1_SHIFT) |
		(tv_mode->vsync_start_f2 << TV_VSYNC_START_F2_SHIFT);

	vctl3 = (tv_mode->veq_len << TV_VEQ_LEN_SHIFT) |
		(tv_mode->veq_start_f1 << TV_VEQ_START_F1_SHIFT) |
		(tv_mode->veq_start_f2 << TV_VEQ_START_F2_SHIFT);

	if (tv_mode->veq_ena)
		vctl3 |= TV_EQUAL_ENA;

	vctl4 = (tv_mode->vburst_start_f1 << TV_VBURST_START_F1_SHIFT) |
		(tv_mode->vburst_end_f1 << TV_VBURST_END_F1_SHIFT);

	vctl5 = (tv_mode->vburst_start_f2 << TV_VBURST_START_F2_SHIFT) |
		(tv_mode->vburst_end_f2 << TV_VBURST_END_F2_SHIFT);

	vctl6 = (tv_mode->vburst_start_f3 << TV_VBURST_START_F3_SHIFT) |
		(tv_mode->vburst_end_f3 << TV_VBURST_END_F3_SHIFT);

	vctl7 = (tv_mode->vburst_start_f4 << TV_VBURST_START_F4_SHIFT) |
		(tv_mode->vburst_end_f4 << TV_VBURST_END_F4_SHIFT);

	I915_WRITE(TV_H_CTL_1, hctl1);
	I915_WRITE(TV_H_CTL_2, hctl2);
	I915_WRITE(TV_H_CTL_3, hctl3);
	I915_WRITE(TV_V_CTL_1, vctl1);
	I915_WRITE(TV_V_CTL_2, vctl2);
	I915_WRITE(TV_V_CTL_3, vctl3);
	I915_WRITE(TV_V_CTL_4, vctl4);
	I915_WRITE(TV_V_CTL_5, vctl5);
	I915_WRITE(TV_V_CTL_6, vctl6);
	I915_WRITE(TV_V_CTL_7, vctl7);
}

962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981
static void set_color_conversion(struct drm_i915_private *dev_priv,
				 const struct color_conversion *color_conversion)
{
	if (!color_conversion)
		return;

	I915_WRITE(TV_CSC_Y, (color_conversion->ry << 16) |
		   color_conversion->gy);
	I915_WRITE(TV_CSC_Y2, (color_conversion->by << 16) |
		   color_conversion->ay);
	I915_WRITE(TV_CSC_U, (color_conversion->ru << 16) |
		   color_conversion->gu);
	I915_WRITE(TV_CSC_U2, (color_conversion->bu << 16) |
		   color_conversion->au);
	I915_WRITE(TV_CSC_V, (color_conversion->rv << 16) |
		   color_conversion->gv);
	I915_WRITE(TV_CSC_V2, (color_conversion->bv << 16) |
		   color_conversion->av);
}

982
static void intel_tv_pre_enable(struct intel_encoder *encoder,
983 984
				const struct intel_crtc_state *pipe_config,
				const struct drm_connector_state *conn_state)
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985
{
986
	struct drm_i915_private *dev_priv = to_i915(encoder->base.dev);
987
	struct intel_crtc *intel_crtc = to_intel_crtc(pipe_config->base.crtc);
988
	struct intel_tv *intel_tv = enc_to_tv(encoder);
989
	const struct tv_mode *tv_mode = intel_tv_mode_find(conn_state);
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990 991 992 993 994 995
	u32 tv_ctl;
	u32 scctl1, scctl2, scctl3;
	int i, j;
	const struct video_levels *video_levels;
	const struct color_conversion *color_conversion;
	bool burst_ena;
996 997
	int xpos = 0x0, ypos = 0x0;
	unsigned int xsize, ysize;
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998 999 1000 1001

	if (!tv_mode)
		return;	/* can't happen (mode_prepare prevents this) */

1002 1003
	tv_ctl = I915_READ(TV_CTL);
	tv_ctl &= TV_CTL_SAVE;
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1004

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1005
	switch (intel_tv->type) {
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1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030
	default:
	case DRM_MODE_CONNECTOR_Unknown:
	case DRM_MODE_CONNECTOR_Composite:
		tv_ctl |= TV_ENC_OUTPUT_COMPOSITE;
		video_levels = tv_mode->composite_levels;
		color_conversion = tv_mode->composite_color;
		burst_ena = tv_mode->burst_ena;
		break;
	case DRM_MODE_CONNECTOR_Component:
		tv_ctl |= TV_ENC_OUTPUT_COMPONENT;
		video_levels = &component_levels;
		if (tv_mode->burst_ena)
			color_conversion = &sdtv_csc_yprpb;
		else
			color_conversion = &hdtv_csc_yprpb;
		burst_ena = false;
		break;
	case DRM_MODE_CONNECTOR_SVIDEO:
		tv_ctl |= TV_ENC_OUTPUT_SVIDEO;
		video_levels = tv_mode->svideo_levels;
		color_conversion = tv_mode->svideo_color;
		burst_ena = tv_mode->burst_ena;
		break;
	}

1031
	tv_ctl |= TV_ENC_PIPE_SEL(intel_crtc->pipe);
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1032 1033 1034 1035 1036 1037 1038 1039
	tv_ctl |= tv_mode->oversample;

	if (tv_mode->progressive)
		tv_ctl |= TV_PROGRESSIVE;
	if (tv_mode->trilevel_sync)
		tv_ctl |= TV_TRILEVEL_SYNC;
	if (tv_mode->pal_burst)
		tv_ctl |= TV_PAL_BURST;
1040

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1041
	scctl1 = 0;
1042
	if (tv_mode->dda1_inc)
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1043 1044 1045 1046 1047 1048
		scctl1 |= TV_SC_DDA1_EN;
	if (tv_mode->dda2_inc)
		scctl1 |= TV_SC_DDA2_EN;
	if (tv_mode->dda3_inc)
		scctl1 |= TV_SC_DDA3_EN;
	scctl1 |= tv_mode->sc_reset;
1049 1050
	if (video_levels)
		scctl1 |= video_levels->burst << TV_BURST_LEVEL_SHIFT;
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1051 1052 1053 1054 1055 1056 1057 1058 1059
	scctl1 |= tv_mode->dda1_inc << TV_SCDDA1_INC_SHIFT;

	scctl2 = tv_mode->dda2_size << TV_SCDDA2_SIZE_SHIFT |
		tv_mode->dda2_inc << TV_SCDDA2_INC_SHIFT;

	scctl3 = tv_mode->dda3_size << TV_SCDDA3_SIZE_SHIFT |
		tv_mode->dda3_inc << TV_SCDDA3_INC_SHIFT;

	/* Enable two fixes for the chips that need them. */
1060
	if (IS_I915GM(dev_priv))
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1061 1062
		tv_ctl |= TV_ENC_C0_FIX | TV_ENC_SDP_FIX;

1063 1064
	set_tv_mode_timings(dev_priv, tv_mode, burst_ena);

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1065 1066 1067 1068
	I915_WRITE(TV_SC_CTL_1, scctl1);
	I915_WRITE(TV_SC_CTL_2, scctl2);
	I915_WRITE(TV_SC_CTL_3, scctl3);

1069
	set_color_conversion(dev_priv, color_conversion);
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1070

1071
	if (INTEL_GEN(dev_priv) >= 4)
1072 1073 1074 1075
		I915_WRITE(TV_CLR_KNOBS, 0x00404000);
	else
		I915_WRITE(TV_CLR_KNOBS, 0x00606000);

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	if (video_levels)
		I915_WRITE(TV_CLR_LEVEL,
			   ((video_levels->black << TV_BLACK_LEVEL_SHIFT) |
			    (video_levels->blank << TV_BLANK_LEVEL_SHIFT)));
1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090

	assert_pipe_disabled(dev_priv, intel_crtc->pipe);

	/* Filter ctl must be set before TV_WIN_SIZE */
	I915_WRITE(TV_FILTER_CTL_1, TV_AUTO_SCALE);
	xsize = tv_mode->hblank_start - tv_mode->hblank_end;
	if (tv_mode->progressive)
		ysize = tv_mode->nbr_end + 1;
	else
		ysize = 2*tv_mode->nbr_end + 1;

1091 1092 1093 1094 1095 1096
	xpos += conn_state->tv.margins.left;
	ypos += conn_state->tv.margins.top;
	xsize -= (conn_state->tv.margins.left +
		  conn_state->tv.margins.right);
	ysize -= (conn_state->tv.margins.top +
		  conn_state->tv.margins.bottom);
1097 1098
	I915_WRITE(TV_WIN_POS, (xpos<<16)|ypos);
	I915_WRITE(TV_WIN_SIZE, (xsize<<16)|ysize);
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	j = 0;
	for (i = 0; i < 60; i++)
1102
		I915_WRITE(TV_H_LUMA(i), tv_mode->filter_table[j++]);
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1103
	for (i = 0; i < 60; i++)
1104
		I915_WRITE(TV_H_CHROMA(i), tv_mode->filter_table[j++]);
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1105
	for (i = 0; i < 43; i++)
1106
		I915_WRITE(TV_V_LUMA(i), tv_mode->filter_table[j++]);
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1107
	for (i = 0; i < 43; i++)
1108
		I915_WRITE(TV_V_CHROMA(i), tv_mode->filter_table[j++]);
1109
	I915_WRITE(TV_DAC, I915_READ(TV_DAC) & TV_DAC_SAVE);
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1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130
	I915_WRITE(TV_CTL, tv_ctl);
}

static const struct drm_display_mode reported_modes[] = {
	{
		.name = "NTSC 480i",
		.clock = 107520,
		.hdisplay = 1280,
		.hsync_start = 1368,
		.hsync_end = 1496,
		.htotal = 1712,

		.vdisplay = 1024,
		.vsync_start = 1027,
		.vsync_end = 1034,
		.vtotal = 1104,
		.type = DRM_MODE_TYPE_DRIVER,
	},
};

static int
1131
intel_tv_detect_type(struct intel_tv *intel_tv,
1132
		      struct drm_connector *connector)
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1133
{
1134
	struct drm_crtc *crtc = connector->state->crtc;
1135
	struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
1136
	struct drm_device *dev = connector->dev;
1137
	struct drm_i915_private *dev_priv = to_i915(dev);
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1138 1139
	u32 tv_ctl, save_tv_ctl;
	u32 tv_dac, save_tv_dac;
1140
	int type;
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1141 1142

	/* Disable TV interrupts around load detect or we'll recurse */
1143
	if (connector->polled & DRM_CONNECTOR_POLL_HPD) {
1144
		spin_lock_irq(&dev_priv->irq_lock);
1145
		i915_disable_pipestat(dev_priv, 0,
1146 1147
				      PIPE_HOTPLUG_INTERRUPT_STATUS |
				      PIPE_HOTPLUG_TV_INTERRUPT_STATUS);
1148
		spin_unlock_irq(&dev_priv->irq_lock);
1149
	}
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1151 1152 1153 1154
	save_tv_dac = tv_dac = I915_READ(TV_DAC);
	save_tv_ctl = tv_ctl = I915_READ(TV_CTL);

	/* Poll for TV detection */
1155
	tv_ctl &= ~(TV_ENC_ENABLE | TV_ENC_PIPE_SEL_MASK | TV_TEST_MODE_MASK);
1156
	tv_ctl |= TV_TEST_MODE_MONITOR_DETECT;
1157
	tv_ctl |= TV_ENC_PIPE_SEL(intel_crtc->pipe);
1158 1159

	tv_dac &= ~(TVDAC_SENSE_MASK | DAC_A_MASK | DAC_B_MASK | DAC_C_MASK);
1160 1161 1162 1163 1164 1165 1166 1167
	tv_dac |= (TVDAC_STATE_CHG_EN |
		   TVDAC_A_SENSE_CTL |
		   TVDAC_B_SENSE_CTL |
		   TVDAC_C_SENSE_CTL |
		   DAC_CTL_OVERRIDE |
		   DAC_A_0_7_V |
		   DAC_B_0_7_V |
		   DAC_C_0_7_V);
1168

1169 1170 1171 1172 1173

	/*
	 * The TV sense state should be cleared to zero on cantiga platform. Otherwise
	 * the TV is misdetected. This is hardware requirement.
	 */
1174
	if (IS_GM45(dev_priv))
1175 1176 1177
		tv_dac &= ~(TVDAC_STATE_CHG_EN | TVDAC_A_SENSE_CTL |
			    TVDAC_B_SENSE_CTL | TVDAC_C_SENSE_CTL);

1178 1179
	I915_WRITE(TV_CTL, tv_ctl);
	I915_WRITE(TV_DAC, tv_dac);
1180 1181
	POSTING_READ(TV_DAC);

1182
	intel_wait_for_vblank(dev_priv, intel_crtc->pipe);
1183

1184
	type = -1;
1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204
	tv_dac = I915_READ(TV_DAC);
	DRM_DEBUG_KMS("TV detected: %x, %x\n", tv_ctl, tv_dac);
	/*
	 *  A B C
	 *  0 1 1 Composite
	 *  1 0 X svideo
	 *  0 0 0 Component
	 */
	if ((tv_dac & TVDAC_SENSE_MASK) == (TVDAC_B_SENSE | TVDAC_C_SENSE)) {
		DRM_DEBUG_KMS("Detected Composite TV connection\n");
		type = DRM_MODE_CONNECTOR_Composite;
	} else if ((tv_dac & (TVDAC_A_SENSE|TVDAC_B_SENSE)) == TVDAC_A_SENSE) {
		DRM_DEBUG_KMS("Detected S-Video TV connection\n");
		type = DRM_MODE_CONNECTOR_SVIDEO;
	} else if ((tv_dac & TVDAC_SENSE_MASK) == 0) {
		DRM_DEBUG_KMS("Detected Component TV connection\n");
		type = DRM_MODE_CONNECTOR_Component;
	} else {
		DRM_DEBUG_KMS("Unrecognised TV connection\n");
		type = -1;
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	}

1207 1208
	I915_WRITE(TV_DAC, save_tv_dac & ~TVDAC_STATE_CHG_EN);
	I915_WRITE(TV_CTL, save_tv_ctl);
1209 1210 1211
	POSTING_READ(TV_CTL);

	/* For unknown reasons the hw barfs if we don't do this vblank wait. */
1212
	intel_wait_for_vblank(dev_priv, intel_crtc->pipe);
1213

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	/* Restore interrupt config */
1215
	if (connector->polled & DRM_CONNECTOR_POLL_HPD) {
1216
		spin_lock_irq(&dev_priv->irq_lock);
1217
		i915_enable_pipestat(dev_priv, 0,
1218 1219
				     PIPE_HOTPLUG_INTERRUPT_STATUS |
				     PIPE_HOTPLUG_TV_INTERRUPT_STATUS);
1220
		spin_unlock_irq(&dev_priv->irq_lock);
1221
	}
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1222 1223 1224 1225

	return type;
}

1226 1227 1228 1229 1230 1231
/*
 * Here we set accurate tv format according to connector type
 * i.e Component TV should not be assigned by NTSC or PAL
 */
static void intel_tv_find_better_format(struct drm_connector *connector)
{
1232
	struct intel_tv *intel_tv = intel_attached_tv(connector);
1233
	const struct tv_mode *tv_mode = intel_tv_mode_find(connector->state);
1234 1235
	int i;

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1236
	if ((intel_tv->type == DRM_MODE_CONNECTOR_Component) ==
1237 1238 1239 1240
		tv_mode->component_only)
		return;


1241
	for (i = 0; i < ARRAY_SIZE(tv_modes); i++) {
1242 1243
		tv_mode = tv_modes + i;

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1244
		if ((intel_tv->type == DRM_MODE_CONNECTOR_Component) ==
1245 1246 1247 1248
			tv_mode->component_only)
			break;
	}

1249
	connector->state->tv.mode = i;
1250 1251
}

1252 1253 1254 1255
static int
intel_tv_detect(struct drm_connector *connector,
		struct drm_modeset_acquire_ctx *ctx,
		bool force)
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1256 1257
{
	struct drm_display_mode mode;
1258
	struct intel_tv *intel_tv = intel_attached_tv(connector);
1259
	enum drm_connector_status status;
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1260
	int type;
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1261

1262
	DRM_DEBUG_KMS("[CONNECTOR:%d:%s] force=%d\n",
1263
		      connector->base.id, connector->name,
1264 1265
		      force);

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1266 1267
	mode = reported_modes[0];

1268
	if (force) {
1269
		struct intel_load_detect_pipe tmp;
1270
		int ret;
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1271

1272 1273 1274
		ret = intel_get_load_detect_pipe(connector, &mode, &tmp, ctx);
		if (ret < 0)
			return ret;
1275

1276
		if (ret > 0) {
1277
			type = intel_tv_detect_type(intel_tv, connector);
1278
			intel_release_load_detect_pipe(connector, &tmp, ctx);
1279 1280 1281
			status = type < 0 ?
				connector_status_disconnected :
				connector_status_connected;
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1282
		} else
1283
			status = connector_status_unknown;
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1284

1285 1286 1287 1288
		if (status == connector_status_connected) {
			intel_tv->type = type;
			intel_tv_find_better_format(connector);
		}
1289

1290 1291 1292
		return status;
	} else
		return connector->status;
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1293 1294
}

1295 1296
static const struct input_res {
	const char *name;
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1297
	int w, h;
1298
} input_res_table[] = {
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1299 1300 1301 1302 1303 1304 1305 1306 1307
	{"640x480", 640, 480},
	{"800x600", 800, 600},
	{"1024x768", 1024, 768},
	{"1280x1024", 1280, 1024},
	{"848x480", 848, 480},
	{"1280x720", 1280, 720},
	{"1920x1080", 1920, 1080},
};

1308 1309 1310 1311
/*
 * Chose preferred mode  according to line number of TV format
 */
static void
1312
intel_tv_choose_preferred_modes(const struct tv_mode *tv_mode,
1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325
			       struct drm_display_mode *mode_ptr)
{
	if (tv_mode->nbr_end < 480 && mode_ptr->vdisplay == 480)
		mode_ptr->type |= DRM_MODE_TYPE_PREFERRED;
	else if (tv_mode->nbr_end > 480) {
		if (tv_mode->progressive == true && tv_mode->nbr_end < 720) {
			if (mode_ptr->vdisplay == 720)
				mode_ptr->type |= DRM_MODE_TYPE_PREFERRED;
		} else if (mode_ptr->vdisplay == 1080)
				mode_ptr->type |= DRM_MODE_TYPE_PREFERRED;
	}
}

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1326 1327 1328 1329
static int
intel_tv_get_modes(struct drm_connector *connector)
{
	struct drm_display_mode *mode_ptr;
1330
	const struct tv_mode *tv_mode = intel_tv_mode_find(connector->state);
1331 1332
	int j, count = 0;
	u64 tmp;
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1333

K
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1334
	for (j = 0; j < ARRAY_SIZE(input_res_table);
J
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1335
	     j++) {
1336
		const struct input_res *input = &input_res_table[j];
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1337 1338 1339 1340 1341 1342 1343 1344 1345 1346
		unsigned int hactive_s = input->w;
		unsigned int vactive_s = input->h;

		if (tv_mode->max_srcw && input->w > tv_mode->max_srcw)
			continue;

		if (input->w > 1024 && (!tv_mode->progressive
					&& !tv_mode->component_only))
			continue;

1347 1348 1349
		mode_ptr = drm_mode_create(connector->dev);
		if (!mode_ptr)
			continue;
1350
		strlcpy(mode_ptr->name, input->name, DRM_DISPLAY_MODE_LEN);
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1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365

		mode_ptr->hdisplay = hactive_s;
		mode_ptr->hsync_start = hactive_s + 1;
		mode_ptr->hsync_end = hactive_s + 64;
		if (mode_ptr->hsync_end <= mode_ptr->hsync_start)
			mode_ptr->hsync_end = mode_ptr->hsync_start + 1;
		mode_ptr->htotal = hactive_s + 96;

		mode_ptr->vdisplay = vactive_s;
		mode_ptr->vsync_start = vactive_s + 1;
		mode_ptr->vsync_end = vactive_s + 32;
		if (mode_ptr->vsync_end <= mode_ptr->vsync_start)
			mode_ptr->vsync_end = mode_ptr->vsync_start  + 1;
		mode_ptr->vtotal = vactive_s + 33;

1366
		tmp = mul_u32_u32(tv_mode->refresh, mode_ptr->vtotal);
1367 1368 1369
		tmp *= mode_ptr->htotal;
		tmp = div_u64(tmp, 1000000);
		mode_ptr->clock = (int) tmp;
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		mode_ptr->type = DRM_MODE_TYPE_DRIVER;
1372
		intel_tv_choose_preferred_modes(tv_mode, mode_ptr);
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1373
		drm_mode_probed_add(connector, mode_ptr);
1374
		count++;
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1375 1376
	}

1377
	return count;
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1378 1379 1380
}

static const struct drm_connector_funcs intel_tv_connector_funcs = {
1381
	.late_register = intel_connector_register,
1382
	.early_unregister = intel_connector_unregister,
1383
	.destroy = intel_connector_destroy,
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1384
	.fill_modes = drm_helper_probe_single_connector_modes,
1385
	.atomic_destroy_state = drm_atomic_helper_connector_destroy_state,
1386
	.atomic_duplicate_state = drm_atomic_helper_connector_duplicate_state,
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1387 1388
};

1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413
static int intel_tv_atomic_check(struct drm_connector *connector,
				 struct drm_connector_state *new_state)
{
	struct drm_crtc_state *new_crtc_state;
	struct drm_connector_state *old_state;

	if (!new_state->crtc)
		return 0;

	old_state = drm_atomic_get_old_connector_state(new_state->state, connector);
	new_crtc_state = drm_atomic_get_new_crtc_state(new_state->state, new_state->crtc);

	if (old_state->tv.mode != new_state->tv.mode ||
	    old_state->tv.margins.left != new_state->tv.margins.left ||
	    old_state->tv.margins.right != new_state->tv.margins.right ||
	    old_state->tv.margins.top != new_state->tv.margins.top ||
	    old_state->tv.margins.bottom != new_state->tv.margins.bottom) {
		/* Force a modeset. */

		new_crtc_state->connectors_changed = true;
	}

	return 0;
}

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static const struct drm_connector_helper_funcs intel_tv_connector_helper_funcs = {
1415
	.detect_ctx = intel_tv_detect,
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1416 1417
	.mode_valid = intel_tv_mode_valid,
	.get_modes = intel_tv_get_modes,
1418
	.atomic_check = intel_tv_atomic_check,
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1419 1420 1421
};

static const struct drm_encoder_funcs intel_tv_enc_funcs = {
C
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1422
	.destroy = intel_encoder_destroy,
J
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1423 1424 1425
};

void
1426
intel_tv_init(struct drm_i915_private *dev_priv)
J
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1427
{
1428
	struct drm_device *dev = &dev_priv->drm;
J
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1429
	struct drm_connector *connector;
C
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1430
	struct intel_tv *intel_tv;
1431
	struct intel_encoder *intel_encoder;
1432
	struct intel_connector *intel_connector;
J
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1433
	u32 tv_dac_on, tv_dac_off, save_tv_dac;
V
Ville Syrjälä 已提交
1434
	const char *tv_format_names[ARRAY_SIZE(tv_modes)];
J
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1435
	int i, initial_mode = 0;
1436
	struct drm_connector_state *state;
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	if ((I915_READ(TV_CTL) & TV_FUSE_STATE_MASK) == TV_FUSE_STATE_DISABLED)
		return;

1441
	if (!intel_bios_is_tv_present(dev_priv)) {
1442 1443 1444
		DRM_DEBUG_KMS("Integrated TV is not present.\n");
		return;
	}
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	/*
	 * Sanity check the TV output by checking to see if the
	 * DAC register holds a value
	 */
	save_tv_dac = I915_READ(TV_DAC);

	I915_WRITE(TV_DAC, save_tv_dac | TVDAC_STATE_CHG_EN);
	tv_dac_on = I915_READ(TV_DAC);

	I915_WRITE(TV_DAC, save_tv_dac & ~TVDAC_STATE_CHG_EN);
	tv_dac_off = I915_READ(TV_DAC);

	I915_WRITE(TV_DAC, save_tv_dac);

	/*
	 * If the register does not hold the state change enable
	 * bit, (either as a 0 or a 1), assume it doesn't really
	 * exist
	 */
	if ((tv_dac_on & TVDAC_STATE_CHG_EN) == 0 ||
	    (tv_dac_off & TVDAC_STATE_CHG_EN) != 0)
		return;

1469
	intel_tv = kzalloc(sizeof(*intel_tv), GFP_KERNEL);
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	if (!intel_tv) {
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		return;
	}
1473

1474
	intel_connector = intel_connector_alloc();
1475
	if (!intel_connector) {
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		kfree(intel_tv);
1477 1478 1479
		return;
	}

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	intel_encoder = &intel_tv->base;
1481
	connector = &intel_connector->base;
1482
	state = connector->state;
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1484 1485
	/*
	 * The documentation, for the older chipsets at least, recommend
1486 1487 1488 1489 1490 1491 1492 1493
	 * using a polling method rather than hotplug detection for TVs.
	 * This is because in order to perform the hotplug detection, the PLLs
	 * for the TV must be kept alive increasing power drain and starving
	 * bandwidth from other encoders. Notably for instance, it causes
	 * pipe underruns on Crestline when this encoder is supposedly idle.
	 *
	 * More recent chipsets favour HDMI rather than integrated S-Video.
	 */
1494
	intel_connector->polled = DRM_CONNECTOR_POLL_CONNECT;
1495

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	drm_connector_init(dev, connector, &intel_tv_connector_funcs,
			   DRM_MODE_CONNECTOR_SVIDEO);

1499
	drm_encoder_init(dev, &intel_encoder->base, &intel_tv_enc_funcs,
1500
			 DRM_MODE_ENCODER_TVDAC, "TV");
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1502
	intel_encoder->compute_config = intel_tv_compute_config;
1503
	intel_encoder->get_config = intel_tv_get_config;
1504
	intel_encoder->pre_enable = intel_tv_pre_enable;
1505 1506
	intel_encoder->enable = intel_enable_tv;
	intel_encoder->disable = intel_disable_tv;
1507 1508
	intel_encoder->get_hw_state = intel_tv_get_hw_state;
	intel_connector->get_hw_state = intel_connector_get_hw_state;
1509

1510
	intel_connector_attach_encoder(intel_connector, intel_encoder);
1511

1512
	intel_encoder->type = INTEL_OUTPUT_TVOUT;
1513
	intel_encoder->power_domain = POWER_DOMAIN_PORT_OTHER;
1514
	intel_encoder->port = PORT_NONE;
1515
	intel_encoder->crtc_mask = (1 << 0) | (1 << 1);
1516
	intel_encoder->cloneable = 0;
1517
	intel_encoder->base.possible_crtcs = ((1 << 0) | (1 << 1));
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	intel_tv->type = DRM_MODE_CONNECTOR_Unknown;
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	/* BIOS margin values */
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	state->tv.margins.left = 54;
	state->tv.margins.top = 36;
	state->tv.margins.right = 46;
	state->tv.margins.bottom = 37;
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1526
	state->tv.mode = initial_mode;
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	drm_connector_helper_add(connector, &intel_tv_connector_helper_funcs);
	connector->interlace_allowed = false;
	connector->doublescan_allowed = false;

	/* Create TV properties then attach current values */
1533
	for (i = 0; i < ARRAY_SIZE(tv_modes); i++)
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		tv_format_names[i] = tv_modes[i].name;
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	drm_mode_create_tv_properties(dev,
				      ARRAY_SIZE(tv_modes),
				      tv_format_names);
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1539
	drm_object_attach_property(&connector->base, dev->mode_config.tv_mode_property,
1540
				   state->tv.mode);
1541
	drm_object_attach_property(&connector->base,
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				   dev->mode_config.tv_left_margin_property,
1543
				   state->tv.margins.left);
1544
	drm_object_attach_property(&connector->base,
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				   dev->mode_config.tv_top_margin_property,
1546
				   state->tv.margins.top);
1547
	drm_object_attach_property(&connector->base,
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				   dev->mode_config.tv_right_margin_property,
1549
				   state->tv.margins.right);
1550
	drm_object_attach_property(&connector->base,
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				   dev->mode_config.tv_bottom_margin_property,
1552
				   state->tv.margins.bottom);
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}