intel_lvds.c 33.9 KB
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/*
 * Copyright © 2006-2007 Intel Corporation
 * Copyright (c) 2006 Dave Airlie <airlied@linux.ie>
 *
 * 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>
 *      Dave Airlie <airlied@linux.ie>
 *      Jesse Barnes <jesse.barnes@intel.com>
 */

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#include <acpi/button.h>
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#include <linux/dmi.h>
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#include <linux/i2c.h>
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#include <linux/slab.h>
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#include <drm/drmP.h>
#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"
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#include <linux/acpi.h>
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/* Private structure for the integrated LVDS support */
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struct intel_lvds_connector {
	struct intel_connector base;
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	struct notifier_block lid_notifier;
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};

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struct intel_lvds_encoder {
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	struct intel_encoder base;
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	u32 pfit_control;
	u32 pfit_pgm_ratios;
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	bool pfit_dirty;
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	struct intel_lvds_connector *attached_connector;
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};

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static struct intel_lvds_encoder *to_lvds_encoder(struct drm_encoder *encoder)
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{
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	return container_of(encoder, struct intel_lvds_encoder, base.base);
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}

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static struct intel_lvds_connector *to_lvds_connector(struct drm_connector *connector)
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{
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	return container_of(connector, struct intel_lvds_connector, base.base);
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}

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static bool intel_lvds_get_hw_state(struct intel_encoder *encoder,
				    enum pipe *pipe)
{
	struct drm_device *dev = encoder->base.dev;
	struct drm_i915_private *dev_priv = dev->dev_private;
	u32 lvds_reg, tmp;

	if (HAS_PCH_SPLIT(dev)) {
		lvds_reg = PCH_LVDS;
	} else {
		lvds_reg = LVDS;
	}

	tmp = I915_READ(lvds_reg);

	if (!(tmp & LVDS_PORT_EN))
		return false;

	if (HAS_PCH_CPT(dev))
		*pipe = PORT_TO_PIPE_CPT(tmp);
	else
		*pipe = PORT_TO_PIPE(tmp);

	return true;
}

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/**
 * Sets the power state for the panel.
 */
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static void intel_enable_lvds(struct intel_encoder *encoder)
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{
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	struct drm_device *dev = encoder->base.dev;
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	struct intel_lvds_encoder *lvds_encoder = to_lvds_encoder(&encoder->base);
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	struct intel_crtc *intel_crtc = to_intel_crtc(encoder->base.crtc);
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	struct drm_i915_private *dev_priv = dev->dev_private;
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	u32 ctl_reg, lvds_reg, stat_reg;
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	if (HAS_PCH_SPLIT(dev)) {
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		ctl_reg = PCH_PP_CONTROL;
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		lvds_reg = PCH_LVDS;
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		stat_reg = PCH_PP_STATUS;
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	} else {
		ctl_reg = PP_CONTROL;
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		lvds_reg = LVDS;
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		stat_reg = PP_STATUS;
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	}
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	I915_WRITE(lvds_reg, I915_READ(lvds_reg) | LVDS_PORT_EN);
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	if (lvds_encoder->pfit_dirty) {
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		/*
		 * Enable automatic panel scaling so that non-native modes
		 * fill the screen.  The panel fitter should only be
		 * adjusted whilst the pipe is disabled, according to
		 * register description and PRM.
		 */
		DRM_DEBUG_KMS("applying panel-fitter: %x, %x\n",
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			      lvds_encoder->pfit_control,
			      lvds_encoder->pfit_pgm_ratios);
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		I915_WRITE(PFIT_PGM_RATIOS, lvds_encoder->pfit_pgm_ratios);
		I915_WRITE(PFIT_CONTROL, lvds_encoder->pfit_control);
		lvds_encoder->pfit_dirty = false;
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	}

	I915_WRITE(ctl_reg, I915_READ(ctl_reg) | POWER_TARGET_ON);
	POSTING_READ(lvds_reg);
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	if (wait_for((I915_READ(stat_reg) & PP_ON) != 0, 1000))
		DRM_ERROR("timed out waiting for panel to power on\n");
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	intel_panel_enable_backlight(dev, intel_crtc->pipe);
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}

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static void intel_disable_lvds(struct intel_encoder *encoder)
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{
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	struct drm_device *dev = encoder->base.dev;
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	struct intel_lvds_encoder *lvds_encoder = to_lvds_encoder(&encoder->base);
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	struct drm_i915_private *dev_priv = dev->dev_private;
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	u32 ctl_reg, lvds_reg, stat_reg;
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	if (HAS_PCH_SPLIT(dev)) {
		ctl_reg = PCH_PP_CONTROL;
		lvds_reg = PCH_LVDS;
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		stat_reg = PCH_PP_STATUS;
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	} else {
		ctl_reg = PP_CONTROL;
		lvds_reg = LVDS;
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		stat_reg = PP_STATUS;
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	}

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	intel_panel_disable_backlight(dev);
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	I915_WRITE(ctl_reg, I915_READ(ctl_reg) & ~POWER_TARGET_ON);
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	if (wait_for((I915_READ(stat_reg) & PP_ON) == 0, 1000))
		DRM_ERROR("timed out waiting for panel to power off\n");
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	if (lvds_encoder->pfit_control) {
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		I915_WRITE(PFIT_CONTROL, 0);
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		lvds_encoder->pfit_dirty = true;
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	}
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	I915_WRITE(lvds_reg, I915_READ(lvds_reg) & ~LVDS_PORT_EN);
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	POSTING_READ(lvds_reg);
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}

static int intel_lvds_mode_valid(struct drm_connector *connector,
				 struct drm_display_mode *mode)
{
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	struct intel_connector *intel_connector = to_intel_connector(connector);
	struct drm_display_mode *fixed_mode = intel_connector->panel.fixed_mode;
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	if (mode->hdisplay > fixed_mode->hdisplay)
		return MODE_PANEL;
	if (mode->vdisplay > fixed_mode->vdisplay)
		return MODE_PANEL;
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	return MODE_OK;
}

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static void
centre_horizontally(struct drm_display_mode *mode,
		    int width)
{
	u32 border, sync_pos, blank_width, sync_width;

	/* keep the hsync and hblank widths constant */
	sync_width = mode->crtc_hsync_end - mode->crtc_hsync_start;
	blank_width = mode->crtc_hblank_end - mode->crtc_hblank_start;
	sync_pos = (blank_width - sync_width + 1) / 2;

	border = (mode->hdisplay - width + 1) / 2;
	border += border & 1; /* make the border even */

	mode->crtc_hdisplay = width;
	mode->crtc_hblank_start = width + border;
	mode->crtc_hblank_end = mode->crtc_hblank_start + blank_width;

	mode->crtc_hsync_start = mode->crtc_hblank_start + sync_pos;
	mode->crtc_hsync_end = mode->crtc_hsync_start + sync_width;
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	mode->private_flags |= INTEL_MODE_CRTC_TIMINGS_SET;
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}

static void
centre_vertically(struct drm_display_mode *mode,
		  int height)
{
	u32 border, sync_pos, blank_width, sync_width;

	/* keep the vsync and vblank widths constant */
	sync_width = mode->crtc_vsync_end - mode->crtc_vsync_start;
	blank_width = mode->crtc_vblank_end - mode->crtc_vblank_start;
	sync_pos = (blank_width - sync_width + 1) / 2;

	border = (mode->vdisplay - height + 1) / 2;

	mode->crtc_vdisplay = height;
	mode->crtc_vblank_start = height + border;
	mode->crtc_vblank_end = mode->crtc_vblank_start + blank_width;

	mode->crtc_vsync_start = mode->crtc_vblank_start + sync_pos;
	mode->crtc_vsync_end = mode->crtc_vsync_start + sync_width;
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	mode->private_flags |= INTEL_MODE_CRTC_TIMINGS_SET;
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}

static inline u32 panel_fitter_scaling(u32 source, u32 target)
{
	/*
	 * Floating point operation is not supported. So the FACTOR
	 * is defined, which can avoid the floating point computation
	 * when calculating the panel ratio.
	 */
#define ACCURACY 12
#define FACTOR (1 << ACCURACY)
	u32 ratio = source * FACTOR / target;
	return (FACTOR * ratio + FACTOR/2) / FACTOR;
}

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static bool intel_lvds_mode_fixup(struct drm_encoder *encoder,
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				  const struct drm_display_mode *mode,
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				  struct drm_display_mode *adjusted_mode)
{
	struct drm_device *dev = encoder->dev;
	struct drm_i915_private *dev_priv = dev->dev_private;
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	struct intel_lvds_encoder *lvds_encoder = to_lvds_encoder(encoder);
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	struct intel_connector *intel_connector =
		&lvds_encoder->attached_connector->base;
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	struct intel_crtc *intel_crtc = lvds_encoder->base.new_crtc;
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	u32 pfit_control = 0, pfit_pgm_ratios = 0, border = 0;
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	int pipe;
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	/* Should never happen!! */
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	if (INTEL_INFO(dev)->gen < 4 && intel_crtc->pipe == 0) {
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		DRM_ERROR("Can't support LVDS on pipe A\n");
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		return false;
	}

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	if (intel_encoder_check_is_cloned(&lvds_encoder->base))
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		return false;
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	/*
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	 * We have timings from the BIOS for the panel, put them in
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	 * to the adjusted mode.  The CRTC will be set up for this mode,
	 * with the panel scaling set up to source from the H/VDisplay
	 * of the original mode.
	 */
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	intel_fixed_panel_mode(intel_connector->panel.fixed_mode,
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			       adjusted_mode);
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	if (HAS_PCH_SPLIT(dev)) {
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		intel_pch_panel_fitting(dev,
					intel_connector->panel.fitting_mode,
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					mode, adjusted_mode);
		return true;
	}
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	/* Native modes don't need fitting */
	if (adjusted_mode->hdisplay == mode->hdisplay &&
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	    adjusted_mode->vdisplay == mode->vdisplay)
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		goto out;

	/* 965+ wants fuzzy fitting */
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	if (INTEL_INFO(dev)->gen >= 4)
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		pfit_control |= ((intel_crtc->pipe << PFIT_PIPE_SHIFT) |
				 PFIT_FILTER_FUZZY);

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	/*
	 * Enable automatic panel scaling for non-native modes so that they fill
	 * the screen.  Should be enabled before the pipe is enabled, according
	 * to register description and PRM.
	 * Change the value here to see the borders for debugging
	 */
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	for_each_pipe(pipe)
		I915_WRITE(BCLRPAT(pipe), 0);
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	drm_mode_set_crtcinfo(adjusted_mode, 0);

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	switch (intel_connector->panel.fitting_mode) {
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	case DRM_MODE_SCALE_CENTER:
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		/*
		 * For centered modes, we have to calculate border widths &
		 * heights and modify the values programmed into the CRTC.
		 */
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		centre_horizontally(adjusted_mode, mode->hdisplay);
		centre_vertically(adjusted_mode, mode->vdisplay);
		border = LVDS_BORDER_ENABLE;
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		break;
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	case DRM_MODE_SCALE_ASPECT:
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		/* Scale but preserve the aspect ratio */
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		if (INTEL_INFO(dev)->gen >= 4) {
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			u32 scaled_width = adjusted_mode->hdisplay * mode->vdisplay;
			u32 scaled_height = mode->hdisplay * adjusted_mode->vdisplay;

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			/* 965+ is easy, it does everything in hw */
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			if (scaled_width > scaled_height)
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				pfit_control |= PFIT_ENABLE | PFIT_SCALING_PILLAR;
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			else if (scaled_width < scaled_height)
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				pfit_control |= PFIT_ENABLE | PFIT_SCALING_LETTER;
			else if (adjusted_mode->hdisplay != mode->hdisplay)
				pfit_control |= PFIT_ENABLE | PFIT_SCALING_AUTO;
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		} else {
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			u32 scaled_width = adjusted_mode->hdisplay * mode->vdisplay;
			u32 scaled_height = mode->hdisplay * adjusted_mode->vdisplay;
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			/*
			 * For earlier chips we have to calculate the scaling
			 * ratio by hand and program it into the
			 * PFIT_PGM_RATIO register
			 */
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			if (scaled_width > scaled_height) { /* pillar */
				centre_horizontally(adjusted_mode, scaled_height / mode->vdisplay);

				border = LVDS_BORDER_ENABLE;
				if (mode->vdisplay != adjusted_mode->vdisplay) {
					u32 bits = panel_fitter_scaling(mode->vdisplay, adjusted_mode->vdisplay);
					pfit_pgm_ratios |= (bits << PFIT_HORIZ_SCALE_SHIFT |
							    bits << PFIT_VERT_SCALE_SHIFT);
					pfit_control |= (PFIT_ENABLE |
							 VERT_INTERP_BILINEAR |
							 HORIZ_INTERP_BILINEAR);
				}
			} else if (scaled_width < scaled_height) { /* letter */
				centre_vertically(adjusted_mode, scaled_width / mode->hdisplay);

				border = LVDS_BORDER_ENABLE;
				if (mode->hdisplay != adjusted_mode->hdisplay) {
					u32 bits = panel_fitter_scaling(mode->hdisplay, adjusted_mode->hdisplay);
					pfit_pgm_ratios |= (bits << PFIT_HORIZ_SCALE_SHIFT |
							    bits << PFIT_VERT_SCALE_SHIFT);
					pfit_control |= (PFIT_ENABLE |
							 VERT_INTERP_BILINEAR |
							 HORIZ_INTERP_BILINEAR);
				}
			} else
				/* Aspects match, Let hw scale both directions */
				pfit_control |= (PFIT_ENABLE |
						 VERT_AUTO_SCALE | HORIZ_AUTO_SCALE |
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						 VERT_INTERP_BILINEAR |
						 HORIZ_INTERP_BILINEAR);
		}
		break;

	case DRM_MODE_SCALE_FULLSCREEN:
		/*
		 * Full scaling, even if it changes the aspect ratio.
		 * Fortunately this is all done for us in hw.
		 */
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		if (mode->vdisplay != adjusted_mode->vdisplay ||
		    mode->hdisplay != adjusted_mode->hdisplay) {
			pfit_control |= PFIT_ENABLE;
			if (INTEL_INFO(dev)->gen >= 4)
				pfit_control |= PFIT_SCALING_AUTO;
			else
				pfit_control |= (VERT_AUTO_SCALE |
						 VERT_INTERP_BILINEAR |
						 HORIZ_AUTO_SCALE |
						 HORIZ_INTERP_BILINEAR);
		}
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		break;
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	default:
		break;
	}

out:
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	/* If not enabling scaling, be consistent and always use 0. */
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	if ((pfit_control & PFIT_ENABLE) == 0) {
		pfit_control = 0;
		pfit_pgm_ratios = 0;
	}
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	/* Make sure pre-965 set dither correctly */
	if (INTEL_INFO(dev)->gen < 4 && dev_priv->lvds_dither)
		pfit_control |= PANEL_8TO6_DITHER_ENABLE;

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	if (pfit_control != lvds_encoder->pfit_control ||
	    pfit_pgm_ratios != lvds_encoder->pfit_pgm_ratios) {
		lvds_encoder->pfit_control = pfit_control;
		lvds_encoder->pfit_pgm_ratios = pfit_pgm_ratios;
		lvds_encoder->pfit_dirty = true;
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	}
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	dev_priv->lvds_border_bits = border;

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	/*
	 * XXX: It would be nice to support lower refresh rates on the
	 * panels to reduce power consumption, and perhaps match the
	 * user's requested refresh rate.
	 */

	return true;
}

static void intel_lvds_mode_set(struct drm_encoder *encoder,
				struct drm_display_mode *mode,
				struct drm_display_mode *adjusted_mode)
{
	/*
	 * The LVDS pin pair will already have been turned on in the
	 * intel_crtc_mode_set since it has a large impact on the DPLL
	 * settings.
	 */
}

/**
 * Detect the LVDS connection.
 *
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 * Since LVDS doesn't have hotlug, we use the lid as a proxy.  Open means
 * connected and closed means disconnected.  We also send hotplug events as
 * needed, using lid status notification from the input layer.
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 */
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static enum drm_connector_status
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intel_lvds_detect(struct drm_connector *connector, bool force)
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{
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	struct drm_device *dev = connector->dev;
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	enum drm_connector_status status;
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	status = intel_panel_detect(dev);
	if (status != connector_status_unknown)
		return status;
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	return connector_status_connected;
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}

/**
 * Return the list of DDC modes if available, or the BIOS fixed mode otherwise.
 */
static int intel_lvds_get_modes(struct drm_connector *connector)
{
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	struct intel_lvds_connector *lvds_connector = to_lvds_connector(connector);
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	struct drm_device *dev = connector->dev;
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	struct drm_display_mode *mode;
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	/* use cached edid if we have one */
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	if (!IS_ERR_OR_NULL(lvds_connector->base.edid))
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		return drm_add_edid_modes(connector, lvds_connector->base.edid);
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	mode = drm_mode_duplicate(dev, lvds_connector->base.panel.fixed_mode);
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	if (mode == NULL)
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		return 0;
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	drm_mode_probed_add(connector, mode);
	return 1;
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}

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static int intel_no_modeset_on_lid_dmi_callback(const struct dmi_system_id *id)
{
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	DRM_INFO("Skipping forced modeset for %s\n", id->ident);
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	return 1;
}

/* The GPU hangs up on these systems if modeset is performed on LID open */
static const struct dmi_system_id intel_no_modeset_on_lid[] = {
	{
		.callback = intel_no_modeset_on_lid_dmi_callback,
		.ident = "Toshiba Tecra A11",
		.matches = {
			DMI_MATCH(DMI_SYS_VENDOR, "TOSHIBA"),
			DMI_MATCH(DMI_PRODUCT_NAME, "TECRA A11"),
		},
	},

	{ }	/* terminating entry */
};

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/*
 * Lid events. Note the use of 'modeset_on_lid':
 *  - we set it on lid close, and reset it on open
 *  - we use it as a "only once" bit (ie we ignore
 *    duplicate events where it was already properly
 *    set/reset)
 *  - the suspend/resume paths will also set it to
 *    zero, since they restore the mode ("lid open").
 */
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static int intel_lid_notify(struct notifier_block *nb, unsigned long val,
			    void *unused)
{
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	struct intel_lvds_connector *lvds_connector =
		container_of(nb, struct intel_lvds_connector, lid_notifier);
	struct drm_connector *connector = &lvds_connector->base.base;
	struct drm_device *dev = connector->dev;
	struct drm_i915_private *dev_priv = dev->dev_private;
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	if (dev->switch_power_state != DRM_SWITCH_POWER_ON)
		return NOTIFY_OK;

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	/*
	 * check and update the status of LVDS connector after receiving
	 * the LID nofication event.
	 */
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	connector->status = connector->funcs->detect(connector, false);
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	/* Don't force modeset on machines where it causes a GPU lockup */
	if (dmi_check_system(intel_no_modeset_on_lid))
		return NOTIFY_OK;
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	if (!acpi_lid_open()) {
		dev_priv->modeset_on_lid = 1;
		return NOTIFY_OK;
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	}
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	if (!dev_priv->modeset_on_lid)
		return NOTIFY_OK;

	dev_priv->modeset_on_lid = 0;

	mutex_lock(&dev->mode_config.mutex);
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	intel_modeset_setup_hw_state(dev, true);
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	mutex_unlock(&dev->mode_config.mutex);
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	return NOTIFY_OK;
}

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/**
 * intel_lvds_destroy - unregister and free LVDS structures
 * @connector: connector to free
 *
 * Unregister the DDC bus for this connector then free the driver private
 * structure.
 */
static void intel_lvds_destroy(struct drm_connector *connector)
{
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	struct intel_lvds_connector *lvds_connector =
		to_lvds_connector(connector);
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	if (lvds_connector->lid_notifier.notifier_call)
		acpi_lid_notifier_unregister(&lvds_connector->lid_notifier);
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	if (!IS_ERR_OR_NULL(lvds_connector->base.edid))
		kfree(lvds_connector->base.edid);

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	intel_panel_destroy_backlight(connector->dev);
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	intel_panel_fini(&lvds_connector->base.panel);
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	drm_sysfs_connector_remove(connector);
	drm_connector_cleanup(connector);
	kfree(connector);
}

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static int intel_lvds_set_property(struct drm_connector *connector,
				   struct drm_property *property,
				   uint64_t value)
{
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	struct intel_connector *intel_connector = to_intel_connector(connector);
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	struct drm_device *dev = connector->dev;

574
	if (property == dev->mode_config.scaling_mode_property) {
575
		struct drm_crtc *crtc;
576

577 578
		if (value == DRM_MODE_SCALE_NONE) {
			DRM_DEBUG_KMS("no scaling not supported\n");
579
			return -EINVAL;
580
		}
581

582
		if (intel_connector->panel.fitting_mode == value) {
583 584 585
			/* the LVDS scaling property is not changed */
			return 0;
		}
586
		intel_connector->panel.fitting_mode = value;
587 588

		crtc = intel_attached_encoder(connector)->base.crtc;
589 590 591 592 593
		if (crtc && crtc->enabled) {
			/*
			 * If the CRTC is enabled, the display will be changed
			 * according to the new panel fitting mode.
			 */
594 595
			intel_set_mode(crtc, &crtc->mode,
				       crtc->x, crtc->y, crtc->fb);
596 597 598
		}
	}

599 600 601
	return 0;
}

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static const struct drm_encoder_helper_funcs intel_lvds_helper_funcs = {
	.mode_fixup = intel_lvds_mode_fixup,
	.mode_set = intel_lvds_mode_set,
605
	.disable = intel_encoder_noop,
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};

static const struct drm_connector_helper_funcs intel_lvds_connector_helper_funcs = {
	.get_modes = intel_lvds_get_modes,
	.mode_valid = intel_lvds_mode_valid,
611
	.best_encoder = intel_best_encoder,
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};

static const struct drm_connector_funcs intel_lvds_connector_funcs = {
615
	.dpms = intel_connector_dpms,
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	.detect = intel_lvds_detect,
	.fill_modes = drm_helper_probe_single_connector_modes,
618
	.set_property = intel_lvds_set_property,
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	.destroy = intel_lvds_destroy,
};

static const struct drm_encoder_funcs intel_lvds_enc_funcs = {
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	.destroy = intel_encoder_destroy,
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};

626 627
static int __init intel_no_lvds_dmi_callback(const struct dmi_system_id *id)
{
628
	DRM_INFO("Skipping LVDS initialization for %s\n", id->ident);
629 630
	return 1;
}
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632
/* These systems claim to have LVDS, but really don't */
633
static const struct dmi_system_id intel_no_lvds[] = {
634 635 636 637
	{
		.callback = intel_no_lvds_dmi_callback,
		.ident = "Apple Mac Mini (Core series)",
		.matches = {
638
			DMI_MATCH(DMI_SYS_VENDOR, "Apple"),
639 640 641 642 643 644 645
			DMI_MATCH(DMI_PRODUCT_NAME, "Macmini1,1"),
		},
	},
	{
		.callback = intel_no_lvds_dmi_callback,
		.ident = "Apple Mac Mini (Core 2 series)",
		.matches = {
646
			DMI_MATCH(DMI_SYS_VENDOR, "Apple"),
647 648 649 650 651 652 653 654 655 656 657 658 659 660 661 662 663 664 665
			DMI_MATCH(DMI_PRODUCT_NAME, "Macmini2,1"),
		},
	},
	{
		.callback = intel_no_lvds_dmi_callback,
		.ident = "MSI IM-945GSE-A",
		.matches = {
			DMI_MATCH(DMI_SYS_VENDOR, "MSI"),
			DMI_MATCH(DMI_PRODUCT_NAME, "A9830IMS"),
		},
	},
	{
		.callback = intel_no_lvds_dmi_callback,
		.ident = "Dell Studio Hybrid",
		.matches = {
			DMI_MATCH(DMI_SYS_VENDOR, "Dell Inc."),
			DMI_MATCH(DMI_PRODUCT_NAME, "Studio Hybrid 140g"),
		},
	},
666 667
	{
		.callback = intel_no_lvds_dmi_callback,
668 669 670 671 672 673 674 675
		.ident = "Dell OptiPlex FX170",
		.matches = {
			DMI_MATCH(DMI_SYS_VENDOR, "Dell Inc."),
			DMI_MATCH(DMI_PRODUCT_NAME, "OptiPlex FX170"),
		},
	},
	{
		.callback = intel_no_lvds_dmi_callback,
676 677 678 679 680 681
		.ident = "AOpen Mini PC",
		.matches = {
			DMI_MATCH(DMI_SYS_VENDOR, "AOpen"),
			DMI_MATCH(DMI_PRODUCT_NAME, "i965GMx-IF"),
		},
	},
682 683 684 685 686 687 688 689
	{
		.callback = intel_no_lvds_dmi_callback,
		.ident = "AOpen Mini PC MP915",
		.matches = {
			DMI_MATCH(DMI_BOARD_VENDOR, "AOpen"),
			DMI_MATCH(DMI_BOARD_NAME, "i915GMx-F"),
		},
	},
690 691 692 693 694 695 696 697
	{
		.callback = intel_no_lvds_dmi_callback,
		.ident = "AOpen i915GMm-HFS",
		.matches = {
			DMI_MATCH(DMI_BOARD_VENDOR, "AOpen"),
			DMI_MATCH(DMI_BOARD_NAME, "i915GMm-HFS"),
		},
	},
698 699 700 701 702 703 704 705
	{
		.callback = intel_no_lvds_dmi_callback,
                .ident = "AOpen i45GMx-I",
                .matches = {
                        DMI_MATCH(DMI_BOARD_VENDOR, "AOpen"),
                        DMI_MATCH(DMI_BOARD_NAME, "i45GMx-I"),
                },
        },
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	{
		.callback = intel_no_lvds_dmi_callback,
		.ident = "Aopen i945GTt-VFA",
		.matches = {
			DMI_MATCH(DMI_PRODUCT_VERSION, "AO00001JW"),
		},
	},
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	{
		.callback = intel_no_lvds_dmi_callback,
		.ident = "Clientron U800",
		.matches = {
			DMI_MATCH(DMI_SYS_VENDOR, "Clientron"),
			DMI_MATCH(DMI_PRODUCT_NAME, "U800"),
		},
	},
721
	{
722 723 724 725 726 727 728 729
                .callback = intel_no_lvds_dmi_callback,
                .ident = "Clientron E830",
                .matches = {
                        DMI_MATCH(DMI_SYS_VENDOR, "Clientron"),
                        DMI_MATCH(DMI_PRODUCT_NAME, "E830"),
                },
        },
        {
730 731 732 733 734 735 736
		.callback = intel_no_lvds_dmi_callback,
		.ident = "Asus EeeBox PC EB1007",
		.matches = {
			DMI_MATCH(DMI_SYS_VENDOR, "ASUSTeK Computer INC."),
			DMI_MATCH(DMI_PRODUCT_NAME, "EB1007"),
		},
	},
737 738 739 740 741 742 743 744
	{
		.callback = intel_no_lvds_dmi_callback,
		.ident = "Asus AT5NM10T-I",
		.matches = {
			DMI_MATCH(DMI_BOARD_VENDOR, "ASUSTeK Computer INC."),
			DMI_MATCH(DMI_BOARD_NAME, "AT5NM10T-I"),
		},
	},
745 746 747 748 749 750 751 752
	{
		.callback = intel_no_lvds_dmi_callback,
		.ident = "Hewlett-Packard HP t5740e Thin Client",
		.matches = {
			DMI_MATCH(DMI_BOARD_VENDOR, "Hewlett-Packard"),
			DMI_MATCH(DMI_PRODUCT_NAME, "HP t5740e Thin Client"),
		},
	},
753 754 755 756 757
	{
		.callback = intel_no_lvds_dmi_callback,
		.ident = "Hewlett-Packard t5745",
		.matches = {
			DMI_MATCH(DMI_BOARD_VENDOR, "Hewlett-Packard"),
758
			DMI_MATCH(DMI_PRODUCT_NAME, "hp t5745"),
759 760 761 762 763 764 765
		},
	},
	{
		.callback = intel_no_lvds_dmi_callback,
		.ident = "Hewlett-Packard st5747",
		.matches = {
			DMI_MATCH(DMI_BOARD_VENDOR, "Hewlett-Packard"),
766
			DMI_MATCH(DMI_PRODUCT_NAME, "hp st5747"),
767 768
		},
	},
769 770 771 772 773 774 775 776
	{
		.callback = intel_no_lvds_dmi_callback,
		.ident = "MSI Wind Box DC500",
		.matches = {
			DMI_MATCH(DMI_BOARD_VENDOR, "MICRO-STAR INTERNATIONAL CO., LTD"),
			DMI_MATCH(DMI_BOARD_NAME, "MS-7469"),
		},
	},
777 778 779 780 781 782 783 784
	{
		.callback = intel_no_lvds_dmi_callback,
		.ident = "ZOTAC ZBOXSD-ID12/ID13",
		.matches = {
			DMI_MATCH(DMI_BOARD_VENDOR, "ZOTAC"),
			DMI_MATCH(DMI_BOARD_NAME, "ZBOXSD-ID12/ID13"),
		},
	},
785 786 787 788 789 790 791 792
	{
		.callback = intel_no_lvds_dmi_callback,
		.ident = "Gigabyte GA-D525TUD",
		.matches = {
			DMI_MATCH(DMI_BOARD_VENDOR, "Gigabyte Technology Co., Ltd."),
			DMI_MATCH(DMI_BOARD_NAME, "D525TUD"),
		},
	},
793 794 795 796 797 798 799 800
	{
		.callback = intel_no_lvds_dmi_callback,
		.ident = "Supermicro X7SPA-H",
		.matches = {
			DMI_MATCH(DMI_SYS_VENDOR, "Supermicro"),
			DMI_MATCH(DMI_PRODUCT_NAME, "X7SPA-H"),
		},
	},
801 802 803

	{ }	/* terminating entry */
};
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805 806 807 808 809 810 811 812
/**
 * intel_find_lvds_downclock - find the reduced downclock for LVDS in EDID
 * @dev: drm device
 * @connector: LVDS connector
 *
 * Find the reduced downclock for LVDS in EDID.
 */
static void intel_find_lvds_downclock(struct drm_device *dev,
813 814
				      struct drm_display_mode *fixed_mode,
				      struct drm_connector *connector)
815 816
{
	struct drm_i915_private *dev_priv = dev->dev_private;
817
	struct drm_display_mode *scan;
818 819
	int temp_downclock;

820
	temp_downclock = fixed_mode->clock;
821 822 823 824 825 826 827 828
	list_for_each_entry(scan, &connector->probed_modes, head) {
		/*
		 * If one mode has the same resolution with the fixed_panel
		 * mode while they have the different refresh rate, it means
		 * that the reduced downclock is found for the LVDS. In such
		 * case we can set the different FPx0/1 to dynamically select
		 * between low and high frequency.
		 */
829 830 831 832 833 834 835 836
		if (scan->hdisplay == fixed_mode->hdisplay &&
		    scan->hsync_start == fixed_mode->hsync_start &&
		    scan->hsync_end == fixed_mode->hsync_end &&
		    scan->htotal == fixed_mode->htotal &&
		    scan->vdisplay == fixed_mode->vdisplay &&
		    scan->vsync_start == fixed_mode->vsync_start &&
		    scan->vsync_end == fixed_mode->vsync_end &&
		    scan->vtotal == fixed_mode->vtotal) {
837 838 839 840 841 842 843 844 845
			if (scan->clock < temp_downclock) {
				/*
				 * The downclock is already found. But we
				 * expect to find the lower downclock.
				 */
				temp_downclock = scan->clock;
			}
		}
	}
846
	if (temp_downclock < fixed_mode->clock && i915_lvds_downclock) {
847 848 849 850
		/* We found the downclock for LVDS. */
		dev_priv->lvds_downclock_avail = 1;
		dev_priv->lvds_downclock = temp_downclock;
		DRM_DEBUG_KMS("LVDS downclock is found in EDID. "
851 852
			      "Normal clock %dKhz, downclock %dKhz\n",
			      fixed_mode->clock, temp_downclock);
853 854 855
	}
}

856 857 858 859 860 861 862
/*
 * Enumerate the child dev array parsed from VBT to check whether
 * the LVDS is present.
 * If it is present, return 1.
 * If it is not present, return false.
 * If no child dev is parsed from VBT, it assumes that the LVDS is present.
 */
863 864
static bool lvds_is_present_in_vbt(struct drm_device *dev,
				   u8 *i2c_pin)
865 866
{
	struct drm_i915_private *dev_priv = dev->dev_private;
867
	int i;
868 869

	if (!dev_priv->child_dev_num)
870
		return true;
871 872

	for (i = 0; i < dev_priv->child_dev_num; i++) {
873 874 875 876 877
		struct child_device_config *child = dev_priv->child_dev + i;

		/* If the device type is not LFP, continue.
		 * We have to check both the new identifiers as well as the
		 * old for compatibility with some BIOSes.
878
		 */
879 880
		if (child->device_type != DEVICE_TYPE_INT_LFP &&
		    child->device_type != DEVICE_TYPE_LFP)
881 882
			continue;

883 884
		if (intel_gmbus_is_port_valid(child->i2c_pin))
			*i2c_pin = child->i2c_pin;
885

886 887 888 889
		/* However, we cannot trust the BIOS writers to populate
		 * the VBT correctly.  Since LVDS requires additional
		 * information from AIM blocks, a non-zero addin offset is
		 * a good indicator that the LVDS is actually present.
890
		 */
891 892 893 894 895 896 897 898 899 900
		if (child->addin_offset)
			return true;

		/* But even then some BIOS writers perform some black magic
		 * and instantiate the device without reference to any
		 * additional data.  Trust that if the VBT was written into
		 * the OpRegion then they have validated the LVDS's existence.
		 */
		if (dev_priv->opregion.vbt)
			return true;
901
	}
902 903

	return false;
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
static int intel_dual_link_lvds_callback(const struct dmi_system_id *id)
{
	DRM_INFO("Forcing lvds to dual link mode on %s\n", id->ident);
	return 1;
}

static const struct dmi_system_id intel_dual_link_lvds[] = {
	{
		.callback = intel_dual_link_lvds_callback,
		.ident = "Apple MacBook Pro (Core i5/i7 Series)",
		.matches = {
			DMI_MATCH(DMI_SYS_VENDOR, "Apple Inc."),
			DMI_MATCH(DMI_PRODUCT_NAME, "MacBookPro8,2"),
		},
	},
	{ }	/* terminating entry */
};

bool intel_is_dual_link_lvds(struct drm_device *dev)
{
	unsigned int val;
	struct drm_i915_private *dev_priv = dev->dev_private;
	u32 lvds_reg;

	if (HAS_PCH_SPLIT(dev)) {
		lvds_reg = PCH_LVDS;
	} else {
		lvds_reg = LVDS;
	}

	/* use the module option value if specified */
	if (i915_lvds_channel_mode > 0)
		return i915_lvds_channel_mode == 2;

	if (dmi_check_system(intel_dual_link_lvds))
		return true;

	if (dev_priv->lvds_val)
		val = dev_priv->lvds_val;
	else {
		/* BIOS should set the proper LVDS register value at boot, but
		 * in reality, it doesn't set the value when the lid is closed;
		 * we need to check "the value to be set" in VBT when LVDS
		 * register is uninitialized.
		 */
		val = I915_READ(lvds_reg);
		if (!(val & ~(LVDS_PIPE_MASK | LVDS_DETECTED)))
			val = dev_priv->bios_lvds_val;
		dev_priv->lvds_val = val;
	}
	return (val & LVDS_CLKB_POWER_MASK) == LVDS_CLKB_POWER_UP;
}

959 960 961 962 963 964 965 966 967 968 969 970
static bool intel_lvds_supported(struct drm_device *dev)
{
	/* With the introduction of the PCH we gained a dedicated
	 * LVDS presence pin, use it. */
	if (HAS_PCH_SPLIT(dev))
		return true;

	/* Otherwise LVDS was only attached to mobile products,
	 * except for the inglorious 830gm */
	return IS_MOBILE(dev) && !IS_I830(dev);
}

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/**
 * intel_lvds_init - setup LVDS connectors on this device
 * @dev: drm device
 *
 * Create the connector, register the LVDS DDC bus, and try to figure out what
 * modes we can display on the LVDS panel (if present).
 */
978
bool intel_lvds_init(struct drm_device *dev)
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979 980
{
	struct drm_i915_private *dev_priv = dev->dev_private;
981
	struct intel_lvds_encoder *lvds_encoder;
982
	struct intel_encoder *intel_encoder;
983
	struct intel_lvds_connector *lvds_connector;
984
	struct intel_connector *intel_connector;
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985 986 987
	struct drm_connector *connector;
	struct drm_encoder *encoder;
	struct drm_display_mode *scan; /* *modes, *bios_mode; */
988
	struct drm_display_mode *fixed_mode = NULL;
989
	struct edid *edid;
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	struct drm_crtc *crtc;
	u32 lvds;
992 993
	int pipe;
	u8 pin;
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995 996 997
	if (!intel_lvds_supported(dev))
		return false;

998 999
	/* Skip init on machines we know falsely report LVDS */
	if (dmi_check_system(intel_no_lvds))
1000
		return false;
1001

1002 1003
	pin = GMBUS_PORT_PANEL;
	if (!lvds_is_present_in_vbt(dev, &pin)) {
1004
		DRM_DEBUG_KMS("LVDS is not present in VBT\n");
1005
		return false;
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1006
	}
1007

1008
	if (HAS_PCH_SPLIT(dev)) {
1009
		if ((I915_READ(PCH_LVDS) & LVDS_DETECTED) == 0)
1010
			return false;
1011
		if (dev_priv->edp.support) {
1012
			DRM_DEBUG_KMS("disable LVDS for eDP support\n");
1013
			return false;
1014
		}
1015 1016
	}

1017 1018
	lvds_encoder = kzalloc(sizeof(struct intel_lvds_encoder), GFP_KERNEL);
	if (!lvds_encoder)
1019
		return false;
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1021 1022
	lvds_connector = kzalloc(sizeof(struct intel_lvds_connector), GFP_KERNEL);
	if (!lvds_connector) {
1023
		kfree(lvds_encoder);
1024
		return false;
1025 1026
	}

1027 1028
	lvds_encoder->attached_connector = lvds_connector;

1029
	if (!HAS_PCH_SPLIT(dev)) {
1030
		lvds_encoder->pfit_control = I915_READ(PFIT_CONTROL);
1031 1032
	}

1033
	intel_encoder = &lvds_encoder->base;
1034
	encoder = &intel_encoder->base;
1035
	intel_connector = &lvds_connector->base;
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1036
	connector = &intel_connector->base;
1037
	drm_connector_init(dev, &intel_connector->base, &intel_lvds_connector_funcs,
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1038 1039
			   DRM_MODE_CONNECTOR_LVDS);

1040
	drm_encoder_init(dev, &intel_encoder->base, &intel_lvds_enc_funcs,
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1041 1042
			 DRM_MODE_ENCODER_LVDS);

1043 1044
	intel_encoder->enable = intel_enable_lvds;
	intel_encoder->disable = intel_disable_lvds;
1045 1046
	intel_encoder->get_hw_state = intel_lvds_get_hw_state;
	intel_connector->get_hw_state = intel_connector_get_hw_state;
1047

1048
	intel_connector_attach_encoder(intel_connector, intel_encoder);
1049
	intel_encoder->type = INTEL_OUTPUT_LVDS;
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1051
	intel_encoder->cloneable = false;
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1052 1053
	if (HAS_PCH_SPLIT(dev))
		intel_encoder->crtc_mask = (1 << 0) | (1 << 1) | (1 << 2);
1054 1055
	else if (IS_GEN4(dev))
		intel_encoder->crtc_mask = (1 << 0) | (1 << 1);
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1056 1057 1058
	else
		intel_encoder->crtc_mask = (1 << 1);

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1059 1060 1061 1062 1063 1064
	drm_encoder_helper_add(encoder, &intel_lvds_helper_funcs);
	drm_connector_helper_add(connector, &intel_lvds_connector_helper_funcs);
	connector->display_info.subpixel_order = SubPixelHorizontalRGB;
	connector->interlace_allowed = false;
	connector->doublescan_allowed = false;

1065 1066
	/* create the scaling mode property */
	drm_mode_create_scaling_mode_property(dev);
1067
	drm_object_attach_property(&connector->base,
1068
				      dev->mode_config.scaling_mode_property,
1069
				      DRM_MODE_SCALE_ASPECT);
1070
	intel_connector->panel.fitting_mode = DRM_MODE_SCALE_ASPECT;
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	/*
	 * LVDS discovery:
	 * 1) check for EDID on DDC
	 * 2) check for VBT data
	 * 3) check to see if LVDS is already on
	 *    if none of the above, no panel
	 * 4) make sure lid is open
	 *    if closed, act like it's not there for now
	 */

	/*
	 * Attempt to get the fixed panel mode from DDC.  Assume that the
	 * preferred mode is the right one.
	 */
1085 1086 1087
	edid = drm_get_edid(connector, intel_gmbus_get_adapter(dev_priv, pin));
	if (edid) {
		if (drm_add_edid_modes(connector, edid)) {
1088
			drm_mode_connector_update_edid_property(connector,
1089
								edid);
1090
		} else {
1091 1092
			kfree(edid);
			edid = ERR_PTR(-EINVAL);
1093
		}
1094 1095
	} else {
		edid = ERR_PTR(-ENOENT);
1096
	}
1097 1098 1099
	lvds_connector->base.edid = edid;

	if (IS_ERR_OR_NULL(edid)) {
1100 1101 1102 1103 1104 1105 1106 1107 1108
		/* Didn't get an EDID, so
		 * Set wide sync ranges so we get all modes
		 * handed to valid_mode for checking
		 */
		connector->display_info.min_vfreq = 0;
		connector->display_info.max_vfreq = 200;
		connector->display_info.min_hfreq = 0;
		connector->display_info.max_hfreq = 200;
	}
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	list_for_each_entry(scan, &connector->probed_modes, head) {
		if (scan->type & DRM_MODE_TYPE_PREFERRED) {
1112 1113 1114
			DRM_DEBUG_KMS("using preferred mode from EDID: ");
			drm_mode_debug_printmodeline(scan);

1115
			fixed_mode = drm_mode_duplicate(dev, scan);
1116 1117 1118 1119 1120
			if (fixed_mode) {
				intel_find_lvds_downclock(dev, fixed_mode,
							  connector);
				goto out;
			}
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1121 1122 1123 1124
		}
	}

	/* Failed to get EDID, what about VBT? */
1125
	if (dev_priv->lfp_lvds_vbt_mode) {
1126 1127 1128
		DRM_DEBUG_KMS("using mode from VBT: ");
		drm_mode_debug_printmodeline(dev_priv->lfp_lvds_vbt_mode);

1129 1130 1131
		fixed_mode = drm_mode_duplicate(dev, dev_priv->lfp_lvds_vbt_mode);
		if (fixed_mode) {
			fixed_mode->type |= DRM_MODE_TYPE_PREFERRED;
1132 1133
			goto out;
		}
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1134 1135 1136 1137 1138 1139 1140
	}

	/*
	 * If we didn't get EDID, try checking if the panel is already turned
	 * on.  If so, assume that whatever is currently programmed is the
	 * correct mode.
	 */
1141

1142
	/* Ironlake: FIXME if still fail, not try pipe mode now */
1143
	if (HAS_PCH_SPLIT(dev))
1144 1145
		goto failed;

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1146 1147
	lvds = I915_READ(LVDS);
	pipe = (lvds & LVDS_PIPEB_SELECT) ? 1 : 0;
1148
	crtc = intel_get_crtc_for_pipe(dev, pipe);
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1149 1150

	if (crtc && (lvds & LVDS_PORT_EN)) {
1151 1152
		fixed_mode = intel_crtc_mode_get(dev, crtc);
		if (fixed_mode) {
1153 1154
			DRM_DEBUG_KMS("using current (BIOS) mode: ");
			drm_mode_debug_printmodeline(fixed_mode);
1155
			fixed_mode->type |= DRM_MODE_TYPE_PREFERRED;
1156
			goto out;
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1157 1158 1159 1160
		}
	}

	/* If we still don't have a mode after all that, give up. */
1161
	if (!fixed_mode)
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1162 1163 1164
		goto failed;

out:
1165 1166 1167 1168
	/*
	 * Unlock registers and just
	 * leave them unlocked
	 */
1169
	if (HAS_PCH_SPLIT(dev)) {
1170 1171 1172 1173 1174
		I915_WRITE(PCH_PP_CONTROL,
			   I915_READ(PCH_PP_CONTROL) | PANEL_UNLOCK_REGS);
	} else {
		I915_WRITE(PP_CONTROL,
			   I915_READ(PP_CONTROL) | PANEL_UNLOCK_REGS);
1175
	}
1176 1177
	lvds_connector->lid_notifier.notifier_call = intel_lid_notify;
	if (acpi_lid_notifier_register(&lvds_connector->lid_notifier)) {
1178
		DRM_DEBUG_KMS("lid notifier registration failed\n");
1179
		lvds_connector->lid_notifier.notifier_call = NULL;
1180
	}
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1181
	drm_sysfs_connector_add(connector);
1182

1183
	intel_panel_init(&intel_connector->panel, fixed_mode);
1184
	intel_panel_setup_backlight(connector);
1185

1186
	return true;
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1187 1188

failed:
1189
	DRM_DEBUG_KMS("No LVDS modes found, disabling.\n");
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1190
	drm_connector_cleanup(connector);
1191
	drm_encoder_cleanup(encoder);
1192 1193
	if (fixed_mode)
		drm_mode_destroy(dev, fixed_mode);
1194
	kfree(lvds_encoder);
1195
	kfree(lvds_connector);
1196
	return false;
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1197
}