intel_bios.c 66.1 KB
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/*
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 * Copyright © 2006 Intel Corporation
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 *
 * 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>
 *
 */
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#include <drm/drm_dp_helper.h>
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#include <drm/i915_drm.h>
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#include "display/intel_display.h"
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#include "display/intel_gmbus.h"

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#include "i915_drv.h"
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#define _INTEL_BIOS_PRIVATE
#include "intel_vbt_defs.h"
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/**
 * DOC: Video BIOS Table (VBT)
 *
 * The Video BIOS Table, or VBT, provides platform and board specific
 * configuration information to the driver that is not discoverable or available
 * through other means. The configuration is mostly related to display
 * hardware. The VBT is available via the ACPI OpRegion or, on older systems, in
 * the PCI ROM.
 *
 * The VBT consists of a VBT Header (defined as &struct vbt_header), a BDB
 * Header (&struct bdb_header), and a number of BIOS Data Blocks (BDB) that
 * contain the actual configuration information. The VBT Header, and thus the
 * VBT, begins with "$VBT" signature. The VBT Header contains the offset of the
 * BDB Header. The data blocks are concatenated after the BDB Header. The data
 * blocks have a 1-byte Block ID, 2-byte Block Size, and Block Size bytes of
 * data. (Block 53, the MIPI Sequence Block is an exception.)
 *
 * The driver parses the VBT during load. The relevant information is stored in
 * driver private data for ease of use, and the actual VBT is not read after
 * that.
 */

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/* Wrapper for VBT child device config */
struct display_device_data {
	struct child_device_config child;
	struct list_head node;
};

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#define	SLAVE_ADDR1	0x70
#define	SLAVE_ADDR2	0x72
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/* Get BDB block size given a pointer to Block ID. */
static u32 _get_blocksize(const u8 *block_base)
{
	/* The MIPI Sequence Block v3+ has a separate size field. */
	if (*block_base == BDB_MIPI_SEQUENCE && *(block_base + 3) >= 3)
		return *((const u32 *)(block_base + 4));
	else
		return *((const u16 *)(block_base + 1));
}

/* Get BDB block size give a pointer to data after Block ID and Block Size. */
static u32 get_blocksize(const void *block_data)
{
	return _get_blocksize(block_data - 3);
}

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static const void *
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find_section(const void *_bdb, enum bdb_block_id section_id)
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{
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	const struct bdb_header *bdb = _bdb;
	const u8 *base = _bdb;
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	int index = 0;
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	u32 total, current_size;
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	enum bdb_block_id current_id;
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	/* skip to first section */
	index += bdb->header_size;
	total = bdb->bdb_size;

	/* walk the sections looking for section_id */
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	while (index + 3 < total) {
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		current_id = *(base + index);
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		current_size = _get_blocksize(base + index);
		index += 3;
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		if (index + current_size > total)
			return NULL;

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		if (current_id == section_id)
			return base + index;
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		index += current_size;
	}

	return NULL;
}

static void
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fill_detail_timing_data(struct drm_display_mode *panel_fixed_mode,
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			const struct lvds_dvo_timing *dvo_timing)
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{
	panel_fixed_mode->hdisplay = (dvo_timing->hactive_hi << 8) |
		dvo_timing->hactive_lo;
	panel_fixed_mode->hsync_start = panel_fixed_mode->hdisplay +
		((dvo_timing->hsync_off_hi << 8) | dvo_timing->hsync_off_lo);
	panel_fixed_mode->hsync_end = panel_fixed_mode->hsync_start +
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		((dvo_timing->hsync_pulse_width_hi << 8) |
			dvo_timing->hsync_pulse_width_lo);
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	panel_fixed_mode->htotal = panel_fixed_mode->hdisplay +
		((dvo_timing->hblank_hi << 8) | dvo_timing->hblank_lo);

	panel_fixed_mode->vdisplay = (dvo_timing->vactive_hi << 8) |
		dvo_timing->vactive_lo;
	panel_fixed_mode->vsync_start = panel_fixed_mode->vdisplay +
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		((dvo_timing->vsync_off_hi << 4) | dvo_timing->vsync_off_lo);
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	panel_fixed_mode->vsync_end = panel_fixed_mode->vsync_start +
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		((dvo_timing->vsync_pulse_width_hi << 4) |
			dvo_timing->vsync_pulse_width_lo);
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	panel_fixed_mode->vtotal = panel_fixed_mode->vdisplay +
		((dvo_timing->vblank_hi << 8) | dvo_timing->vblank_lo);
	panel_fixed_mode->clock = dvo_timing->clock * 10;
	panel_fixed_mode->type = DRM_MODE_TYPE_PREFERRED;

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	if (dvo_timing->hsync_positive)
		panel_fixed_mode->flags |= DRM_MODE_FLAG_PHSYNC;
	else
		panel_fixed_mode->flags |= DRM_MODE_FLAG_NHSYNC;

	if (dvo_timing->vsync_positive)
		panel_fixed_mode->flags |= DRM_MODE_FLAG_PVSYNC;
	else
		panel_fixed_mode->flags |= DRM_MODE_FLAG_NVSYNC;

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	panel_fixed_mode->width_mm = (dvo_timing->himage_hi << 8) |
		dvo_timing->himage_lo;
	panel_fixed_mode->height_mm = (dvo_timing->vimage_hi << 8) |
		dvo_timing->vimage_lo;

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	/* Some VBTs have bogus h/vtotal values */
	if (panel_fixed_mode->hsync_end > panel_fixed_mode->htotal)
		panel_fixed_mode->htotal = panel_fixed_mode->hsync_end + 1;
	if (panel_fixed_mode->vsync_end > panel_fixed_mode->vtotal)
		panel_fixed_mode->vtotal = panel_fixed_mode->vsync_end + 1;

	drm_mode_set_name(panel_fixed_mode);
}

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static const struct lvds_dvo_timing *
get_lvds_dvo_timing(const struct bdb_lvds_lfp_data *lvds_lfp_data,
		    const struct bdb_lvds_lfp_data_ptrs *lvds_lfp_data_ptrs,
		    int index)
{
	/*
	 * the size of fp_timing varies on the different platform.
	 * So calculate the DVO timing relative offset in LVDS data
	 * entry to get the DVO timing entry
	 */

	int lfp_data_size =
		lvds_lfp_data_ptrs->ptr[1].dvo_timing_offset -
		lvds_lfp_data_ptrs->ptr[0].dvo_timing_offset;
	int dvo_timing_offset =
		lvds_lfp_data_ptrs->ptr[0].dvo_timing_offset -
		lvds_lfp_data_ptrs->ptr[0].fp_timing_offset;
	char *entry = (char *)lvds_lfp_data->data + lfp_data_size * index;

	return (struct lvds_dvo_timing *)(entry + dvo_timing_offset);
}

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/* get lvds_fp_timing entry
 * this function may return NULL if the corresponding entry is invalid
 */
static const struct lvds_fp_timing *
get_lvds_fp_timing(const struct bdb_header *bdb,
		   const struct bdb_lvds_lfp_data *data,
		   const struct bdb_lvds_lfp_data_ptrs *ptrs,
		   int index)
{
	size_t data_ofs = (const u8 *)data - (const u8 *)bdb;
	u16 data_size = ((const u16 *)data)[-1]; /* stored in header */
	size_t ofs;

	if (index >= ARRAY_SIZE(ptrs->ptr))
		return NULL;
	ofs = ptrs->ptr[index].fp_timing_offset;
	if (ofs < data_ofs ||
	    ofs + sizeof(struct lvds_fp_timing) > data_ofs + data_size)
		return NULL;
	return (const struct lvds_fp_timing *)((const u8 *)bdb + ofs);
}

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/* Parse general panel options */
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static void
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parse_panel_options(struct drm_i915_private *dev_priv,
		    const struct bdb_header *bdb)
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{
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	const struct bdb_lvds_options *lvds_options;
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	int panel_type;
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	int drrs_mode;
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	int ret;
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	lvds_options = find_section(bdb, BDB_LVDS_OPTIONS);
	if (!lvds_options)
		return;

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	dev_priv->vbt.lvds_dither = lvds_options->pixel_dither;
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	ret = intel_opregion_get_panel_type(dev_priv);
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	if (ret >= 0) {
		WARN_ON(ret > 0xf);
		panel_type = ret;
		DRM_DEBUG_KMS("Panel type: %d (OpRegion)\n", panel_type);
	} else {
		if (lvds_options->panel_type > 0xf) {
			DRM_DEBUG_KMS("Invalid VBT panel type 0x%x\n",
				      lvds_options->panel_type);
			return;
		}
		panel_type = lvds_options->panel_type;
		DRM_DEBUG_KMS("Panel type: %d (VBT)\n", panel_type);
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	}
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	dev_priv->vbt.panel_type = panel_type;
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	drrs_mode = (lvds_options->dps_panel_type_bits
				>> (panel_type * 2)) & MODE_MASK;
	/*
	 * VBT has static DRRS = 0 and seamless DRRS = 2.
	 * The below piece of code is required to adjust vbt.drrs_type
	 * to match the enum drrs_support_type.
	 */
	switch (drrs_mode) {
	case 0:
		dev_priv->vbt.drrs_type = STATIC_DRRS_SUPPORT;
		DRM_DEBUG_KMS("DRRS supported mode is static\n");
		break;
	case 2:
		dev_priv->vbt.drrs_type = SEAMLESS_DRRS_SUPPORT;
		DRM_DEBUG_KMS("DRRS supported mode is seamless\n");
		break;
	default:
		dev_priv->vbt.drrs_type = DRRS_NOT_SUPPORTED;
		DRM_DEBUG_KMS("DRRS not supported (VBT input)\n");
		break;
	}
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}

/* Try to find integrated panel timing data */
static void
parse_lfp_panel_dtd(struct drm_i915_private *dev_priv,
		    const struct bdb_header *bdb)
{
	const struct bdb_lvds_lfp_data *lvds_lfp_data;
	const struct bdb_lvds_lfp_data_ptrs *lvds_lfp_data_ptrs;
	const struct lvds_dvo_timing *panel_dvo_timing;
	const struct lvds_fp_timing *fp_timing;
	struct drm_display_mode *panel_fixed_mode;
	int panel_type = dev_priv->vbt.panel_type;
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	lvds_lfp_data = find_section(bdb, BDB_LVDS_LFP_DATA);
	if (!lvds_lfp_data)
		return;

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	lvds_lfp_data_ptrs = find_section(bdb, BDB_LVDS_LFP_DATA_PTRS);
	if (!lvds_lfp_data_ptrs)
		return;

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	panel_dvo_timing = get_lvds_dvo_timing(lvds_lfp_data,
					       lvds_lfp_data_ptrs,
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					       panel_type);
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	panel_fixed_mode = kzalloc(sizeof(*panel_fixed_mode), GFP_KERNEL);
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	if (!panel_fixed_mode)
		return;
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	fill_detail_timing_data(panel_fixed_mode, panel_dvo_timing);
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	dev_priv->vbt.lfp_lvds_vbt_mode = panel_fixed_mode;
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	DRM_DEBUG_KMS("Found panel mode in BIOS VBT legacy lfp table:\n");
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	drm_mode_debug_printmodeline(panel_fixed_mode);
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	fp_timing = get_lvds_fp_timing(bdb, lvds_lfp_data,
				       lvds_lfp_data_ptrs,
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				       panel_type);
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	if (fp_timing) {
		/* check the resolution, just to be sure */
		if (fp_timing->x_res == panel_fixed_mode->hdisplay &&
		    fp_timing->y_res == panel_fixed_mode->vdisplay) {
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			dev_priv->vbt.bios_lvds_val = fp_timing->lvds_reg_val;
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			DRM_DEBUG_KMS("VBT initial LVDS value %x\n",
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				      dev_priv->vbt.bios_lvds_val);
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		}
	}
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}

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static void
parse_generic_dtd(struct drm_i915_private *dev_priv,
		  const struct bdb_header *bdb)
{
	const struct bdb_generic_dtd *generic_dtd;
	const struct generic_dtd_entry *dtd;
	struct drm_display_mode *panel_fixed_mode;
	int num_dtd;

	generic_dtd = find_section(bdb, BDB_GENERIC_DTD);
	if (!generic_dtd)
		return;

	if (generic_dtd->gdtd_size < sizeof(struct generic_dtd_entry)) {
		DRM_ERROR("GDTD size %u is too small.\n",
			  generic_dtd->gdtd_size);
		return;
	} else if (generic_dtd->gdtd_size !=
		   sizeof(struct generic_dtd_entry)) {
		DRM_ERROR("Unexpected GDTD size %u\n", generic_dtd->gdtd_size);
		/* DTD has unknown fields, but keep going */
	}

	num_dtd = (get_blocksize(generic_dtd) -
		   sizeof(struct bdb_generic_dtd)) / generic_dtd->gdtd_size;
	if (dev_priv->vbt.panel_type > num_dtd) {
		DRM_ERROR("Panel type %d not found in table of %d DTD's\n",
			  dev_priv->vbt.panel_type, num_dtd);
		return;
	}

	dtd = &generic_dtd->dtd[dev_priv->vbt.panel_type];

	panel_fixed_mode = kzalloc(sizeof(*panel_fixed_mode), GFP_KERNEL);
	if (!panel_fixed_mode)
		return;

	panel_fixed_mode->hdisplay = dtd->hactive;
	panel_fixed_mode->hsync_start =
		panel_fixed_mode->hdisplay + dtd->hfront_porch;
	panel_fixed_mode->hsync_end =
		panel_fixed_mode->hsync_start + dtd->hsync;
	panel_fixed_mode->htotal = panel_fixed_mode->hsync_end;

	panel_fixed_mode->vdisplay = dtd->vactive;
	panel_fixed_mode->vsync_start =
		panel_fixed_mode->vdisplay + dtd->vfront_porch;
	panel_fixed_mode->vsync_end =
		panel_fixed_mode->vsync_start + dtd->vsync;
	panel_fixed_mode->vtotal = panel_fixed_mode->vsync_end;

	panel_fixed_mode->clock = dtd->pixel_clock;
	panel_fixed_mode->width_mm = dtd->width_mm;
	panel_fixed_mode->height_mm = dtd->height_mm;

	panel_fixed_mode->type = DRM_MODE_TYPE_PREFERRED;
	drm_mode_set_name(panel_fixed_mode);

	if (dtd->hsync_positive_polarity)
		panel_fixed_mode->flags |= DRM_MODE_FLAG_PHSYNC;
	else
		panel_fixed_mode->flags |= DRM_MODE_FLAG_NHSYNC;

	if (dtd->vsync_positive_polarity)
		panel_fixed_mode->flags |= DRM_MODE_FLAG_PVSYNC;
	else
		panel_fixed_mode->flags |= DRM_MODE_FLAG_NVSYNC;

	DRM_DEBUG_KMS("Found panel mode in BIOS VBT generic dtd table:\n");
	drm_mode_debug_printmodeline(panel_fixed_mode);

	dev_priv->vbt.lfp_lvds_vbt_mode = panel_fixed_mode;
}

static void
parse_panel_dtd(struct drm_i915_private *dev_priv,
		const struct bdb_header *bdb)
{
	/*
	 * Older VBTs provided provided DTD information for internal displays
	 * through the "LFP panel DTD" block (42).  As of VBT revision 229,
	 * that block is now deprecated and DTD information should be provided
	 * via a newer "generic DTD" block (58).  Just to be safe, we'll
	 * try the new generic DTD block first on VBT >= 229, but still fall
	 * back to trying the old LFP block if that fails.
	 */
	if (bdb->version >= 229)
		parse_generic_dtd(dev_priv, bdb);
	if (!dev_priv->vbt.lfp_lvds_vbt_mode)
		parse_lfp_panel_dtd(dev_priv, bdb);
}

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static void
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parse_lfp_backlight(struct drm_i915_private *dev_priv,
		    const struct bdb_header *bdb)
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{
	const struct bdb_lfp_backlight_data *backlight_data;
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	const struct lfp_backlight_data_entry *entry;
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	int panel_type = dev_priv->vbt.panel_type;
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	backlight_data = find_section(bdb, BDB_LVDS_BACKLIGHT);
	if (!backlight_data)
		return;

	if (backlight_data->entry_size != sizeof(backlight_data->data[0])) {
		DRM_DEBUG_KMS("Unsupported backlight data entry size %u\n",
			      backlight_data->entry_size);
		return;
	}

	entry = &backlight_data->data[panel_type];

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	dev_priv->vbt.backlight.present = entry->type == BDB_BACKLIGHT_TYPE_PWM;
	if (!dev_priv->vbt.backlight.present) {
		DRM_DEBUG_KMS("PWM backlight not present in VBT (type %u)\n",
			      entry->type);
		return;
	}

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	dev_priv->vbt.backlight.type = INTEL_BACKLIGHT_DISPLAY_DDI;
	if (bdb->version >= 191 &&
	    get_blocksize(backlight_data) >= sizeof(*backlight_data)) {
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		const struct lfp_backlight_control_method *method;
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		method = &backlight_data->backlight_control[panel_type];
		dev_priv->vbt.backlight.type = method->type;
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		dev_priv->vbt.backlight.controller = method->controller;
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	}

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	dev_priv->vbt.backlight.pwm_freq_hz = entry->pwm_freq_hz;
	dev_priv->vbt.backlight.active_low_pwm = entry->active_low_pwm;
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	dev_priv->vbt.backlight.min_brightness = entry->min_brightness;
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	DRM_DEBUG_KMS("VBT backlight PWM modulation frequency %u Hz, "
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		      "active %s, min brightness %u, level %u, controller %u\n",
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		      dev_priv->vbt.backlight.pwm_freq_hz,
		      dev_priv->vbt.backlight.active_low_pwm ? "low" : "high",
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		      dev_priv->vbt.backlight.min_brightness,
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		      backlight_data->level[panel_type],
		      dev_priv->vbt.backlight.controller);
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}

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/* Try to find sdvo panel data */
static void
parse_sdvo_panel_data(struct drm_i915_private *dev_priv,
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		      const struct bdb_header *bdb)
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{
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	const struct bdb_sdvo_panel_dtds *dtds;
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	struct drm_display_mode *panel_fixed_mode;
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	int index;
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	index = i915_modparams.vbt_sdvo_panel_type;
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	if (index == -2) {
		DRM_DEBUG_KMS("Ignore SDVO panel mode from BIOS VBT tables.\n");
		return;
	}

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	if (index == -1) {
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		const struct bdb_sdvo_lvds_options *sdvo_lvds_options;
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		sdvo_lvds_options = find_section(bdb, BDB_SDVO_LVDS_OPTIONS);
		if (!sdvo_lvds_options)
			return;

		index = sdvo_lvds_options->panel_type;
	}
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	dtds = find_section(bdb, BDB_SDVO_PANEL_DTDS);
	if (!dtds)
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		return;

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	panel_fixed_mode = kzalloc(sizeof(*panel_fixed_mode), GFP_KERNEL);
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	if (!panel_fixed_mode)
		return;

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	fill_detail_timing_data(panel_fixed_mode, &dtds->dtds[index]);
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	dev_priv->vbt.sdvo_lvds_vbt_mode = panel_fixed_mode;
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	DRM_DEBUG_KMS("Found SDVO panel mode in BIOS VBT tables:\n");
	drm_mode_debug_printmodeline(panel_fixed_mode);
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}

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static int intel_bios_ssc_frequency(struct drm_i915_private *dev_priv,
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				    bool alternate)
{
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	switch (INTEL_GEN(dev_priv)) {
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	case 2:
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		return alternate ? 66667 : 48000;
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	case 3:
	case 4:
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		return alternate ? 100000 : 96000;
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	default:
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		return alternate ? 100000 : 120000;
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	}
}

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static void
parse_general_features(struct drm_i915_private *dev_priv,
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		       const struct bdb_header *bdb)
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{
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	const struct bdb_general_features *general;
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	general = find_section(bdb, BDB_GENERAL_FEATURES);
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	if (!general)
		return;

	dev_priv->vbt.int_tv_support = general->int_tv_support;
	/* int_crt_support can't be trusted on earlier platforms */
	if (bdb->version >= 155 &&
	    (HAS_DDI(dev_priv) || IS_VALLEYVIEW(dev_priv)))
		dev_priv->vbt.int_crt_support = general->int_crt_support;
	dev_priv->vbt.lvds_use_ssc = general->enable_ssc;
	dev_priv->vbt.lvds_ssc_freq =
		intel_bios_ssc_frequency(dev_priv, general->ssc_freq);
	dev_priv->vbt.display_clock_mode = general->display_clock_mode;
	dev_priv->vbt.fdi_rx_polarity_inverted = general->fdi_rx_polarity_inverted;
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	if (bdb->version >= 181) {
		dev_priv->vbt.orientation = general->rotate_180 ?
			DRM_MODE_PANEL_ORIENTATION_BOTTOM_UP :
			DRM_MODE_PANEL_ORIENTATION_NORMAL;
	} else {
		dev_priv->vbt.orientation = DRM_MODE_PANEL_ORIENTATION_UNKNOWN;
	}
539 540 541 542 543 544 545
	DRM_DEBUG_KMS("BDB_GENERAL_FEATURES int_tv_support %d int_crt_support %d lvds_use_ssc %d lvds_ssc_freq %d display_clock_mode %d fdi_rx_polarity_inverted %d\n",
		      dev_priv->vbt.int_tv_support,
		      dev_priv->vbt.int_crt_support,
		      dev_priv->vbt.lvds_use_ssc,
		      dev_priv->vbt.lvds_ssc_freq,
		      dev_priv->vbt.display_clock_mode,
		      dev_priv->vbt.fdi_rx_polarity_inverted);
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546 547
}

548
static const struct child_device_config *
549
child_device_ptr(const struct bdb_general_definitions *defs, int i)
550
{
551
	return (const void *) &defs->devices[i * defs->child_dev_size];
552 553
}

554
static void
555
parse_sdvo_device_mapping(struct drm_i915_private *dev_priv, u8 bdb_version)
556
{
557
	struct sdvo_device_mapping *mapping;
558
	const struct display_device_data *devdata;
559
	const struct child_device_config *child;
560
	int count = 0;
561 562

	/*
563 564
	 * Only parse SDVO mappings on gens that could have SDVO. This isn't
	 * accurate and doesn't have to be, as long as it's not too strict.
565
	 */
566
	if (!IS_GEN_RANGE(dev_priv, 3, 7)) {
567
		DRM_DEBUG_KMS("Skipping SDVO device mapping\n");
568 569
		return;
	}
570

571 572
	list_for_each_entry(devdata, &dev_priv->vbt.display_devices, node) {
		child = &devdata->child;
573

574 575
		if (child->slave_addr != SLAVE_ADDR1 &&
		    child->slave_addr != SLAVE_ADDR2) {
576 577 578 579 580 581
			/*
			 * If the slave address is neither 0x70 nor 0x72,
			 * it is not a SDVO device. Skip it.
			 */
			continue;
		}
582 583
		if (child->dvo_port != DEVICE_PORT_DVOB &&
		    child->dvo_port != DEVICE_PORT_DVOC) {
584
			/* skip the incorrect SDVO port */
585
			DRM_DEBUG_KMS("Incorrect SDVO port. Skip it\n");
586 587
			continue;
		}
588
		DRM_DEBUG_KMS("the SDVO device with slave addr %2x is found on"
589 590 591 592
			      " %s port\n",
			      child->slave_addr,
			      (child->dvo_port == DEVICE_PORT_DVOB) ?
			      "SDVOB" : "SDVOC");
593 594 595 596 597 598 599 600
		mapping = &dev_priv->vbt.sdvo_mappings[child->dvo_port - 1];
		if (!mapping->initialized) {
			mapping->dvo_port = child->dvo_port;
			mapping->slave_addr = child->slave_addr;
			mapping->dvo_wiring = child->dvo_wiring;
			mapping->ddc_pin = child->ddc_pin;
			mapping->i2c_pin = child->i2c_pin;
			mapping->initialized = 1;
601
			DRM_DEBUG_KMS("SDVO device: dvo=%x, addr=%x, wiring=%d, ddc_pin=%d, i2c_pin=%d\n",
602 603 604 605 606
				      mapping->dvo_port,
				      mapping->slave_addr,
				      mapping->dvo_wiring,
				      mapping->ddc_pin,
				      mapping->i2c_pin);
607
		} else {
608
			DRM_DEBUG_KMS("Maybe one SDVO port is shared by "
609 610
					 "two SDVO device.\n");
		}
611
		if (child->slave2_addr) {
612 613
			/* Maybe this is a SDVO device with multiple inputs */
			/* And the mapping info is not added */
614 615
			DRM_DEBUG_KMS("there exists the slave2_addr. Maybe this"
				" is a SDVO device with multiple inputs.\n");
616 617 618 619 620 621
		}
		count++;
	}

	if (!count) {
		/* No SDVO device info is found */
622
		DRM_DEBUG_KMS("No SDVO device info is found in VBT\n");
623 624
	}
}
625 626 627

static void
parse_driver_features(struct drm_i915_private *dev_priv,
628
		      const struct bdb_header *bdb)
629
{
630
	const struct bdb_driver_features *driver;
631 632

	driver = find_section(bdb, BDB_DRIVER_FEATURES);
633 634 635
	if (!driver)
		return;

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
	if (INTEL_GEN(dev_priv) >= 5) {
		/*
		 * Note that we consider BDB_DRIVER_FEATURE_INT_SDVO_LVDS
		 * to mean "eDP". The VBT spec doesn't agree with that
		 * interpretation, but real world VBTs seem to.
		 */
		if (driver->lvds_config != BDB_DRIVER_FEATURE_INT_LVDS)
			dev_priv->vbt.int_lvds_support = 0;
	} else {
		/*
		 * FIXME it's not clear which BDB version has the LVDS config
		 * bits defined. Revision history in the VBT spec says:
		 * "0.92 | Add two definitions for VBT value of LVDS Active
		 *  Config (00b and 11b values defined) | 06/13/2005"
		 * but does not the specify the BDB version.
		 *
		 * So far version 134 (on i945gm) is the oldest VBT observed
		 * in the wild with the bits correctly populated. Version
		 * 108 (on i85x) does not have the bits correctly populated.
		 */
		if (bdb->version >= 134 &&
		    driver->lvds_config != BDB_DRIVER_FEATURE_INT_LVDS &&
		    driver->lvds_config != BDB_DRIVER_FEATURE_INT_SDVO_LVDS)
			dev_priv->vbt.int_lvds_support = 0;
	}
661

662 663 664 665 666 667 668 669 670 671 672 673 674 675 676 677 678 679 680 681 682 683 684 685 686 687 688 689 690 691 692
	if (bdb->version < 228) {
		DRM_DEBUG_KMS("DRRS State Enabled:%d\n", driver->drrs_enabled);
		/*
		 * If DRRS is not supported, drrs_type has to be set to 0.
		 * This is because, VBT is configured in such a way that
		 * static DRRS is 0 and DRRS not supported is represented by
		 * driver->drrs_enabled=false
		 */
		if (!driver->drrs_enabled)
			dev_priv->vbt.drrs_type = DRRS_NOT_SUPPORTED;

		dev_priv->vbt.psr.enable = driver->psr_enabled;
	}
}

static void
parse_power_conservation_features(struct drm_i915_private *dev_priv,
				  const struct bdb_header *bdb)
{
	const struct bdb_lfp_power *power;
	u8 panel_type = dev_priv->vbt.panel_type;

	if (bdb->version < 228)
		return;

	power = find_section(bdb, BDB_LVDS_POWER);
	if (!power)
		return;

	dev_priv->vbt.psr.enable = power->psr & BIT(panel_type);

693 694 695 696
	/*
	 * If DRRS is not supported, drrs_type has to be set to 0.
	 * This is because, VBT is configured in such a way that
	 * static DRRS is 0 and DRRS not supported is represented by
697
	 * power->drrs & BIT(panel_type)=false
698
	 */
699
	if (!(power->drrs & BIT(panel_type)))
700
		dev_priv->vbt.drrs_type = DRRS_NOT_SUPPORTED;
701 702
}

703
static void
704
parse_edp(struct drm_i915_private *dev_priv, const struct bdb_header *bdb)
705
{
706 707
	const struct bdb_edp *edp;
	const struct edp_power_seq *edp_pps;
708
	const struct edp_fast_link_params *edp_link_params;
709
	int panel_type = dev_priv->vbt.panel_type;
710 711

	edp = find_section(bdb, BDB_EDP);
712
	if (!edp)
713 714 715 716
		return;

	switch ((edp->color_depth >> (panel_type * 2)) & 3) {
	case EDP_18BPP:
717
		dev_priv->vbt.edp.bpp = 18;
718 719
		break;
	case EDP_24BPP:
720
		dev_priv->vbt.edp.bpp = 24;
721 722
		break;
	case EDP_30BPP:
723
		dev_priv->vbt.edp.bpp = 30;
724 725
		break;
	}
726

727 728
	/* Get the eDP sequencing and link info */
	edp_pps = &edp->power_seqs[panel_type];
729
	edp_link_params = &edp->fast_link_params[panel_type];
730

731
	dev_priv->vbt.edp.pps = *edp_pps;
732

733 734
	switch (edp_link_params->rate) {
	case EDP_RATE_1_62:
735
		dev_priv->vbt.edp.rate = DP_LINK_BW_1_62;
736 737
		break;
	case EDP_RATE_2_7:
738
		dev_priv->vbt.edp.rate = DP_LINK_BW_2_7;
739 740 741 742 743 744 745
		break;
	default:
		DRM_DEBUG_KMS("VBT has unknown eDP link rate value %u\n",
			      edp_link_params->rate);
		break;
	}

746
	switch (edp_link_params->lanes) {
747
	case EDP_LANE_1:
748
		dev_priv->vbt.edp.lanes = 1;
749
		break;
750
	case EDP_LANE_2:
751
		dev_priv->vbt.edp.lanes = 2;
752
		break;
753
	case EDP_LANE_4:
754
		dev_priv->vbt.edp.lanes = 4;
755
		break;
756 757 758 759
	default:
		DRM_DEBUG_KMS("VBT has unknown eDP lane count value %u\n",
			      edp_link_params->lanes);
		break;
760
	}
761

762
	switch (edp_link_params->preemphasis) {
763
	case EDP_PREEMPHASIS_NONE:
764
		dev_priv->vbt.edp.preemphasis = DP_TRAIN_PRE_EMPH_LEVEL_0;
765
		break;
766
	case EDP_PREEMPHASIS_3_5dB:
767
		dev_priv->vbt.edp.preemphasis = DP_TRAIN_PRE_EMPH_LEVEL_1;
768
		break;
769
	case EDP_PREEMPHASIS_6dB:
770
		dev_priv->vbt.edp.preemphasis = DP_TRAIN_PRE_EMPH_LEVEL_2;
771
		break;
772
	case EDP_PREEMPHASIS_9_5dB:
773
		dev_priv->vbt.edp.preemphasis = DP_TRAIN_PRE_EMPH_LEVEL_3;
774
		break;
775 776 777 778
	default:
		DRM_DEBUG_KMS("VBT has unknown eDP pre-emphasis value %u\n",
			      edp_link_params->preemphasis);
		break;
779
	}
780

781
	switch (edp_link_params->vswing) {
782
	case EDP_VSWING_0_4V:
783
		dev_priv->vbt.edp.vswing = DP_TRAIN_VOLTAGE_SWING_LEVEL_0;
784
		break;
785
	case EDP_VSWING_0_6V:
786
		dev_priv->vbt.edp.vswing = DP_TRAIN_VOLTAGE_SWING_LEVEL_1;
787
		break;
788
	case EDP_VSWING_0_8V:
789
		dev_priv->vbt.edp.vswing = DP_TRAIN_VOLTAGE_SWING_LEVEL_2;
790
		break;
791
	case EDP_VSWING_1_2V:
792
		dev_priv->vbt.edp.vswing = DP_TRAIN_VOLTAGE_SWING_LEVEL_3;
793
		break;
794 795 796 797
	default:
		DRM_DEBUG_KMS("VBT has unknown eDP voltage swing value %u\n",
			      edp_link_params->vswing);
		break;
798
	}
799 800

	if (bdb->version >= 173) {
801
		u8 vswing;
802

803
		/* Don't read from VBT if module parameter has valid value*/
804 805 806
		if (i915_modparams.edp_vswing) {
			dev_priv->vbt.edp.low_vswing =
				i915_modparams.edp_vswing == 1;
807 808
		} else {
			vswing = (edp->edp_vswing_preemph >> (panel_type * 4)) & 0xF;
809
			dev_priv->vbt.edp.low_vswing = vswing == 0;
810
		}
811
	}
812 813
}

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Rodrigo Vivi 已提交
814
static void
815
parse_psr(struct drm_i915_private *dev_priv, const struct bdb_header *bdb)
R
Rodrigo Vivi 已提交
816
{
817 818
	const struct bdb_psr *psr;
	const struct psr_table *psr_table;
819
	int panel_type = dev_priv->vbt.panel_type;
R
Rodrigo Vivi 已提交
820 821 822 823 824 825 826 827 828 829 830 831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846 847 848 849 850 851 852 853 854

	psr = find_section(bdb, BDB_PSR);
	if (!psr) {
		DRM_DEBUG_KMS("No PSR BDB found.\n");
		return;
	}

	psr_table = &psr->psr_table[panel_type];

	dev_priv->vbt.psr.full_link = psr_table->full_link;
	dev_priv->vbt.psr.require_aux_wakeup = psr_table->require_aux_to_wakeup;

	/* Allowed VBT values goes from 0 to 15 */
	dev_priv->vbt.psr.idle_frames = psr_table->idle_frames < 0 ? 0 :
		psr_table->idle_frames > 15 ? 15 : psr_table->idle_frames;

	switch (psr_table->lines_to_wait) {
	case 0:
		dev_priv->vbt.psr.lines_to_wait = PSR_0_LINES_TO_WAIT;
		break;
	case 1:
		dev_priv->vbt.psr.lines_to_wait = PSR_1_LINE_TO_WAIT;
		break;
	case 2:
		dev_priv->vbt.psr.lines_to_wait = PSR_4_LINES_TO_WAIT;
		break;
	case 3:
		dev_priv->vbt.psr.lines_to_wait = PSR_8_LINES_TO_WAIT;
		break;
	default:
		DRM_DEBUG_KMS("VBT has unknown PSR lines to wait %u\n",
			      psr_table->lines_to_wait);
		break;
	}

855 856 857 858
	/*
	 * New psr options 0=500us, 1=100us, 2=2500us, 3=0us
	 * Old decimal value is wake up time in multiples of 100 us.
	 */
859 860 861
	if (bdb->version >= 205 &&
	    (IS_GEN9_BC(dev_priv) || IS_GEMINILAKE(dev_priv) ||
	     INTEL_GEN(dev_priv) >= 10)) {
862 863 864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886 887 888
		switch (psr_table->tp1_wakeup_time) {
		case 0:
			dev_priv->vbt.psr.tp1_wakeup_time_us = 500;
			break;
		case 1:
			dev_priv->vbt.psr.tp1_wakeup_time_us = 100;
			break;
		case 3:
			dev_priv->vbt.psr.tp1_wakeup_time_us = 0;
			break;
		default:
			DRM_DEBUG_KMS("VBT tp1 wakeup time value %d is outside range[0-3], defaulting to max value 2500us\n",
					psr_table->tp1_wakeup_time);
			/* fallthrough */
		case 2:
			dev_priv->vbt.psr.tp1_wakeup_time_us = 2500;
			break;
		}

		switch (psr_table->tp2_tp3_wakeup_time) {
		case 0:
			dev_priv->vbt.psr.tp2_tp3_wakeup_time_us = 500;
			break;
		case 1:
			dev_priv->vbt.psr.tp2_tp3_wakeup_time_us = 100;
			break;
		case 3:
889
			dev_priv->vbt.psr.tp2_tp3_wakeup_time_us = 0;
890 891 892 893 894 895 896 897 898 899 900 901 902
			break;
		default:
			DRM_DEBUG_KMS("VBT tp2_tp3 wakeup time value %d is outside range[0-3], defaulting to max value 2500us\n",
					psr_table->tp2_tp3_wakeup_time);
			/* fallthrough */
		case 2:
			dev_priv->vbt.psr.tp2_tp3_wakeup_time_us = 2500;
		break;
		}
	} else {
		dev_priv->vbt.psr.tp1_wakeup_time_us = psr_table->tp1_wakeup_time * 100;
		dev_priv->vbt.psr.tp2_tp3_wakeup_time_us = psr_table->tp2_tp3_wakeup_time * 100;
	}
903 904

	if (bdb->version >= 226) {
905
		u32 wakeup_time = psr->psr2_tp2_tp3_wakeup_time;
906 907 908 909 910 911 912 913 914 915 916 917 918 919 920 921 922 923 924 925 926 927

		wakeup_time = (wakeup_time >> (2 * panel_type)) & 0x3;
		switch (wakeup_time) {
		case 0:
			wakeup_time = 500;
			break;
		case 1:
			wakeup_time = 100;
			break;
		case 3:
			wakeup_time = 50;
			break;
		default:
		case 2:
			wakeup_time = 2500;
			break;
		}
		dev_priv->vbt.psr.psr2_tp2_tp3_wakeup_time_us = wakeup_time;
	} else {
		/* Reusing PSR1 wakeup time for PSR2 in older VBTs */
		dev_priv->vbt.psr.psr2_tp2_tp3_wakeup_time_us = dev_priv->vbt.psr.tp2_tp3_wakeup_time_us;
	}
R
Rodrigo Vivi 已提交
928 929
}

930 931 932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969 970 971
static void parse_dsi_backlight_ports(struct drm_i915_private *dev_priv,
				      u16 version, enum port port)
{
	if (!dev_priv->vbt.dsi.config->dual_link || version < 197) {
		dev_priv->vbt.dsi.bl_ports = BIT(port);
		if (dev_priv->vbt.dsi.config->cabc_supported)
			dev_priv->vbt.dsi.cabc_ports = BIT(port);

		return;
	}

	switch (dev_priv->vbt.dsi.config->dl_dcs_backlight_ports) {
	case DL_DCS_PORT_A:
		dev_priv->vbt.dsi.bl_ports = BIT(PORT_A);
		break;
	case DL_DCS_PORT_C:
		dev_priv->vbt.dsi.bl_ports = BIT(PORT_C);
		break;
	default:
	case DL_DCS_PORT_A_AND_C:
		dev_priv->vbt.dsi.bl_ports = BIT(PORT_A) | BIT(PORT_C);
		break;
	}

	if (!dev_priv->vbt.dsi.config->cabc_supported)
		return;

	switch (dev_priv->vbt.dsi.config->dl_dcs_cabc_ports) {
	case DL_DCS_PORT_A:
		dev_priv->vbt.dsi.cabc_ports = BIT(PORT_A);
		break;
	case DL_DCS_PORT_C:
		dev_priv->vbt.dsi.cabc_ports = BIT(PORT_C);
		break;
	default:
	case DL_DCS_PORT_A_AND_C:
		dev_priv->vbt.dsi.cabc_ports =
					BIT(PORT_A) | BIT(PORT_C);
		break;
	}
}

972
static void
973 974
parse_mipi_config(struct drm_i915_private *dev_priv,
		  const struct bdb_header *bdb)
975
{
976 977 978
	const struct bdb_mipi_config *start;
	const struct mipi_config *config;
	const struct mipi_pps_data *pps;
979
	int panel_type = dev_priv->vbt.panel_type;
980
	enum port port;
981

982
	/* parse MIPI blocks only if LFP type is MIPI */
983
	if (!intel_bios_is_dsi_present(dev_priv, &port))
984 985
		return;

986 987 988 989 990 991 992
	/* Initialize this to undefined indicating no generic MIPI support */
	dev_priv->vbt.dsi.panel_id = MIPI_DSI_UNDEFINED_PANEL_ID;

	/* Block #40 is already parsed and panel_fixed_mode is
	 * stored in dev_priv->lfp_lvds_vbt_mode
	 * resuse this when needed
	 */
993

994 995 996 997 998 999
	/* Parse #52 for panel index used from panel_type already
	 * parsed
	 */
	start = find_section(bdb, BDB_MIPI_CONFIG);
	if (!start) {
		DRM_DEBUG_KMS("No MIPI config BDB found");
1000 1001 1002
		return;
	}

1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023
	DRM_DEBUG_DRIVER("Found MIPI Config block, panel index = %d\n",
								panel_type);

	/*
	 * get hold of the correct configuration block and pps data as per
	 * the panel_type as index
	 */
	config = &start->config[panel_type];
	pps = &start->pps[panel_type];

	/* store as of now full data. Trim when we realise all is not needed */
	dev_priv->vbt.dsi.config = kmemdup(config, sizeof(struct mipi_config), GFP_KERNEL);
	if (!dev_priv->vbt.dsi.config)
		return;

	dev_priv->vbt.dsi.pps = kmemdup(pps, sizeof(struct mipi_pps_data), GFP_KERNEL);
	if (!dev_priv->vbt.dsi.pps) {
		kfree(dev_priv->vbt.dsi.config);
		return;
	}

1024
	parse_dsi_backlight_ports(dev_priv, bdb->version, port);
1025

1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049
	/* FIXME is the 90 vs. 270 correct? */
	switch (config->rotation) {
	case ENABLE_ROTATION_0:
		/*
		 * Most (all?) VBTs claim 0 degrees despite having
		 * an upside down panel, thus we do not trust this.
		 */
		dev_priv->vbt.dsi.orientation =
			DRM_MODE_PANEL_ORIENTATION_UNKNOWN;
		break;
	case ENABLE_ROTATION_90:
		dev_priv->vbt.dsi.orientation =
			DRM_MODE_PANEL_ORIENTATION_RIGHT_UP;
		break;
	case ENABLE_ROTATION_180:
		dev_priv->vbt.dsi.orientation =
			DRM_MODE_PANEL_ORIENTATION_BOTTOM_UP;
		break;
	case ENABLE_ROTATION_270:
		dev_priv->vbt.dsi.orientation =
			DRM_MODE_PANEL_ORIENTATION_LEFT_UP;
		break;
	}

1050
	/* We have mandatory mipi config blocks. Initialize as generic panel */
1051
	dev_priv->vbt.dsi.panel_id = MIPI_DSI_GENERIC_PANEL_ID;
1052 1053
}

1054 1055 1056
/* Find the sequence block and size for the given panel. */
static const u8 *
find_panel_sequence_block(const struct bdb_mipi_sequence *sequence,
1057
			  u16 panel_id, u32 *seq_size)
1058 1059 1060 1061
{
	u32 total = get_blocksize(sequence);
	const u8 *data = &sequence->data[0];
	u8 current_id;
1062 1063
	u32 current_size;
	int header_size = sequence->version >= 3 ? 5 : 3;
1064 1065 1066
	int index = 0;
	int i;

1067 1068 1069 1070 1071 1072 1073 1074 1075 1076
	/* skip new block size */
	if (sequence->version >= 3)
		data += 4;

	for (i = 0; i < MAX_MIPI_CONFIGURATIONS && index < total; i++) {
		if (index + header_size > total) {
			DRM_ERROR("Invalid sequence block (header)\n");
			return NULL;
		}

1077
		current_id = *(data + index);
1078 1079 1080 1081
		if (sequence->version >= 3)
			current_size = *((const u32 *)(data + index + 1));
		else
			current_size = *((const u16 *)(data + index + 1));
1082

1083
		index += header_size;
1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102

		if (index + current_size > total) {
			DRM_ERROR("Invalid sequence block\n");
			return NULL;
		}

		if (current_id == panel_id) {
			*seq_size = current_size;
			return data + index;
		}

		index += current_size;
	}

	DRM_ERROR("Sequence block detected but no valid configuration\n");

	return NULL;
}

1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126
static int goto_next_sequence(const u8 *data, int index, int total)
{
	u16 len;

	/* Skip Sequence Byte. */
	for (index = index + 1; index < total; index += len) {
		u8 operation_byte = *(data + index);
		index++;

		switch (operation_byte) {
		case MIPI_SEQ_ELEM_END:
			return index;
		case MIPI_SEQ_ELEM_SEND_PKT:
			if (index + 4 > total)
				return 0;

			len = *((const u16 *)(data + index + 2)) + 4;
			break;
		case MIPI_SEQ_ELEM_DELAY:
			len = 4;
			break;
		case MIPI_SEQ_ELEM_GPIO:
			len = 2;
			break;
1127 1128 1129 1130 1131
		case MIPI_SEQ_ELEM_I2C:
			if (index + 7 > total)
				return 0;
			len = *(data + index + 6) + 7;
			break;
1132 1133 1134 1135 1136 1137 1138 1139 1140
		default:
			DRM_ERROR("Unknown operation byte\n");
			return 0;
		}
	}

	return 0;
}

1141 1142 1143 1144
static int goto_next_sequence_v3(const u8 *data, int index, int total)
{
	int seq_end;
	u16 len;
1145
	u32 size_of_sequence;
1146 1147 1148 1149 1150 1151 1152 1153 1154 1155

	/*
	 * Could skip sequence based on Size of Sequence alone, but also do some
	 * checking on the structure.
	 */
	if (total < 5) {
		DRM_ERROR("Too small sequence size\n");
		return 0;
	}

1156 1157 1158 1159 1160 1161 1162 1163
	/* Skip Sequence Byte. */
	index++;

	/*
	 * Size of Sequence. Excludes the Sequence Byte and the size itself,
	 * includes MIPI_SEQ_ELEM_END byte, excludes the final MIPI_SEQ_END
	 * byte.
	 */
1164
	size_of_sequence = *((const u32 *)(data + index));
1165 1166 1167
	index += 4;

	seq_end = index + size_of_sequence;
1168 1169 1170 1171 1172
	if (seq_end > total) {
		DRM_ERROR("Invalid sequence size\n");
		return 0;
	}

1173
	for (; index < total; index += len) {
1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209
		u8 operation_byte = *(data + index);
		index++;

		if (operation_byte == MIPI_SEQ_ELEM_END) {
			if (index != seq_end) {
				DRM_ERROR("Invalid element structure\n");
				return 0;
			}
			return index;
		}

		len = *(data + index);
		index++;

		/*
		 * FIXME: Would be nice to check elements like for v1/v2 in
		 * goto_next_sequence() above.
		 */
		switch (operation_byte) {
		case MIPI_SEQ_ELEM_SEND_PKT:
		case MIPI_SEQ_ELEM_DELAY:
		case MIPI_SEQ_ELEM_GPIO:
		case MIPI_SEQ_ELEM_I2C:
		case MIPI_SEQ_ELEM_SPI:
		case MIPI_SEQ_ELEM_PMIC:
			break;
		default:
			DRM_ERROR("Unknown operation byte %u\n",
				  operation_byte);
			break;
		}
	}

	return 0;
}

1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289
/*
 * Get len of pre-fixed deassert fragment from a v1 init OTP sequence,
 * skip all delay + gpio operands and stop at the first DSI packet op.
 */
static int get_init_otp_deassert_fragment_len(struct drm_i915_private *dev_priv)
{
	const u8 *data = dev_priv->vbt.dsi.sequence[MIPI_SEQ_INIT_OTP];
	int index, len;

	if (WARN_ON(!data || dev_priv->vbt.dsi.seq_version != 1))
		return 0;

	/* index = 1 to skip sequence byte */
	for (index = 1; data[index] != MIPI_SEQ_ELEM_END; index += len) {
		switch (data[index]) {
		case MIPI_SEQ_ELEM_SEND_PKT:
			return index == 1 ? 0 : index;
		case MIPI_SEQ_ELEM_DELAY:
			len = 5; /* 1 byte for operand + uint32 */
			break;
		case MIPI_SEQ_ELEM_GPIO:
			len = 3; /* 1 byte for op, 1 for gpio_nr, 1 for value */
			break;
		default:
			return 0;
		}
	}

	return 0;
}

/*
 * Some v1 VBT MIPI sequences do the deassert in the init OTP sequence.
 * The deassert must be done before calling intel_dsi_device_ready, so for
 * these devices we split the init OTP sequence into a deassert sequence and
 * the actual init OTP part.
 */
static void fixup_mipi_sequences(struct drm_i915_private *dev_priv)
{
	u8 *init_otp;
	int len;

	/* Limit this to VLV for now. */
	if (!IS_VALLEYVIEW(dev_priv))
		return;

	/* Limit this to v1 vid-mode sequences */
	if (dev_priv->vbt.dsi.config->is_cmd_mode ||
	    dev_priv->vbt.dsi.seq_version != 1)
		return;

	/* Only do this if there are otp and assert seqs and no deassert seq */
	if (!dev_priv->vbt.dsi.sequence[MIPI_SEQ_INIT_OTP] ||
	    !dev_priv->vbt.dsi.sequence[MIPI_SEQ_ASSERT_RESET] ||
	    dev_priv->vbt.dsi.sequence[MIPI_SEQ_DEASSERT_RESET])
		return;

	/* The deassert-sequence ends at the first DSI packet */
	len = get_init_otp_deassert_fragment_len(dev_priv);
	if (!len)
		return;

	DRM_DEBUG_KMS("Using init OTP fragment to deassert reset\n");

	/* Copy the fragment, update seq byte and terminate it */
	init_otp = (u8 *)dev_priv->vbt.dsi.sequence[MIPI_SEQ_INIT_OTP];
	dev_priv->vbt.dsi.deassert_seq = kmemdup(init_otp, len + 1, GFP_KERNEL);
	if (!dev_priv->vbt.dsi.deassert_seq)
		return;
	dev_priv->vbt.dsi.deassert_seq[0] = MIPI_SEQ_DEASSERT_RESET;
	dev_priv->vbt.dsi.deassert_seq[len] = MIPI_SEQ_ELEM_END;
	/* Use the copy for deassert */
	dev_priv->vbt.dsi.sequence[MIPI_SEQ_DEASSERT_RESET] =
		dev_priv->vbt.dsi.deassert_seq;
	/* Replace the last byte of the fragment with init OTP seq byte */
	init_otp[len - 1] = MIPI_SEQ_INIT_OTP;
	/* And make MIPI_MIPI_SEQ_INIT_OTP point to it */
	dev_priv->vbt.dsi.sequence[MIPI_SEQ_INIT_OTP] = init_otp + len - 1;
}

1290 1291 1292 1293
static void
parse_mipi_sequence(struct drm_i915_private *dev_priv,
		    const struct bdb_header *bdb)
{
1294
	int panel_type = dev_priv->vbt.panel_type;
1295 1296
	const struct bdb_mipi_sequence *sequence;
	const u8 *seq_data;
1297
	u32 seq_size;
1298
	u8 *data;
1299
	int index = 0;
1300 1301 1302 1303

	/* Only our generic panel driver uses the sequence block. */
	if (dev_priv->vbt.dsi.panel_id != MIPI_DSI_GENERIC_PANEL_ID)
		return;
1304 1305 1306 1307 1308 1309 1310

	sequence = find_section(bdb, BDB_MIPI_SEQUENCE);
	if (!sequence) {
		DRM_DEBUG_KMS("No MIPI Sequence found, parsing complete\n");
		return;
	}

1311
	/* Fail gracefully for forward incompatible sequence block. */
1312 1313 1314
	if (sequence->version >= 4) {
		DRM_ERROR("Unable to parse MIPI Sequence Block v%u\n",
			  sequence->version);
1315 1316 1317
		return;
	}

1318
	DRM_DEBUG_DRIVER("Found MIPI sequence block v%u\n", sequence->version);
1319

1320 1321
	seq_data = find_panel_sequence_block(sequence, panel_type, &seq_size);
	if (!seq_data)
1322 1323
		return;

1324 1325
	data = kmemdup(seq_data, seq_size, GFP_KERNEL);
	if (!data)
1326 1327
		return;

1328 1329 1330 1331 1332
	/* Parse the sequences, store pointers to each sequence. */
	for (;;) {
		u8 seq_id = *(data + index);
		if (seq_id == MIPI_SEQ_END)
			break;
1333

1334 1335
		if (seq_id >= MIPI_SEQ_MAX) {
			DRM_ERROR("Unknown sequence %u\n", seq_id);
1336 1337 1338
			goto err;
		}

1339 1340 1341 1342
		/* Log about presence of sequences we won't run. */
		if (seq_id == MIPI_SEQ_TEAR_ON || seq_id == MIPI_SEQ_TEAR_OFF)
			DRM_DEBUG_KMS("Unsupported sequence %u\n", seq_id);

1343
		dev_priv->vbt.dsi.sequence[seq_id] = data + index;
1344

1345 1346 1347 1348
		if (sequence->version >= 3)
			index = goto_next_sequence_v3(data, index, seq_size);
		else
			index = goto_next_sequence(data, index, seq_size);
1349 1350
		if (!index) {
			DRM_ERROR("Invalid sequence %u\n", seq_id);
1351 1352 1353 1354
			goto err;
		}
	}

1355 1356 1357 1358
	dev_priv->vbt.dsi.data = data;
	dev_priv->vbt.dsi.size = seq_size;
	dev_priv->vbt.dsi.seq_version = sequence->version;

1359 1360
	fixup_mipi_sequences(dev_priv);

1361
	DRM_DEBUG_DRIVER("MIPI related VBT parsing complete\n");
1362 1363
	return;

1364 1365
err:
	kfree(data);
1366
	memset(dev_priv->vbt.dsi.sequence, 0, sizeof(dev_priv->vbt.dsi.sequence));
1367 1368
}

1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379
static u8 translate_iboost(u8 val)
{
	static const u8 mapping[] = { 1, 3, 7 }; /* See VBT spec */

	if (val >= ARRAY_SIZE(mapping)) {
		DRM_DEBUG_KMS("Unsupported I_boost value found in VBT (%d), display may not work properly\n", val);
		return 0;
	}
	return mapping[val];
}

1380 1381 1382 1383 1384
static enum port get_port_by_ddc_pin(struct drm_i915_private *i915, u8 ddc_pin)
{
	const struct ddi_vbt_port_info *info;
	enum port port;

1385
	for_each_port(port) {
1386 1387 1388 1389 1390 1391 1392 1393 1394
		info = &i915->vbt.ddi_port_info[port];

		if (info->child && ddc_pin == info->alternate_ddc_pin)
			return port;
	}

	return PORT_NONE;
}

1395 1396 1397
static void sanitize_ddc_pin(struct drm_i915_private *dev_priv,
			     enum port port)
{
1398
	struct ddi_vbt_port_info *info = &dev_priv->vbt.ddi_port_info[port];
1399 1400 1401 1402 1403
	enum port p;

	if (!info->alternate_ddc_pin)
		return;

1404 1405
	p = get_port_by_ddc_pin(dev_priv, info->alternate_ddc_pin);
	if (p != PORT_NONE) {
1406 1407
		DRM_DEBUG_KMS("port %c trying to use the same DDC pin (0x%x) as port %c, "
			      "disabling port %c DVI/HDMI support\n",
1408
			      port_name(port), info->alternate_ddc_pin,
1409
			      port_name(p), port_name(p));
1410 1411 1412 1413 1414 1415 1416

		/*
		 * If we have multiple ports supposedly sharing the
		 * pin, then dvi/hdmi couldn't exist on the shared
		 * port. Otherwise they share the same ddc bin and
		 * system couldn't communicate with them separately.
		 *
1417 1418 1419 1420 1421
		 * Give inverse child device order the priority,
		 * last one wins. Yes, there are real machines
		 * (eg. Asrock B250M-HDV) where VBT has both
		 * port A and port E with the same AUX ch and
		 * we must pick port E :(
1422
		 */
1423 1424
		info = &dev_priv->vbt.ddi_port_info[p];

1425 1426 1427
		info->supports_dvi = false;
		info->supports_hdmi = false;
		info->alternate_ddc_pin = 0;
1428 1429 1430
	}
}

1431 1432 1433 1434 1435
static enum port get_port_by_aux_ch(struct drm_i915_private *i915, u8 aux_ch)
{
	const struct ddi_vbt_port_info *info;
	enum port port;

1436
	for_each_port(port) {
1437 1438 1439 1440 1441 1442 1443 1444 1445
		info = &i915->vbt.ddi_port_info[port];

		if (info->child && aux_ch == info->alternate_aux_channel)
			return port;
	}

	return PORT_NONE;
}

1446 1447 1448
static void sanitize_aux_ch(struct drm_i915_private *dev_priv,
			    enum port port)
{
1449
	struct ddi_vbt_port_info *info = &dev_priv->vbt.ddi_port_info[port];
1450 1451 1452 1453 1454
	enum port p;

	if (!info->alternate_aux_channel)
		return;

1455 1456
	p = get_port_by_aux_ch(dev_priv, info->alternate_aux_channel);
	if (p != PORT_NONE) {
1457 1458
		DRM_DEBUG_KMS("port %c trying to use the same AUX CH (0x%x) as port %c, "
			      "disabling port %c DP support\n",
1459
			      port_name(port), info->alternate_aux_channel,
1460
			      port_name(p), port_name(p));
1461 1462 1463 1464 1465 1466 1467

		/*
		 * If we have multiple ports supposedlt sharing the
		 * aux channel, then DP couldn't exist on the shared
		 * port. Otherwise they share the same aux channel
		 * and system couldn't communicate with them separately.
		 *
1468 1469 1470 1471 1472
		 * Give inverse child device order the priority,
		 * last one wins. Yes, there are real machines
		 * (eg. Asrock B250M-HDV) where VBT has both
		 * port A and port E with the same AUX ch and
		 * we must pick port E :(
1473
		 */
1474 1475
		info = &dev_priv->vbt.ddi_port_info[p];

1476 1477
		info->supports_dp = false;
		info->alternate_aux_channel = 0;
1478 1479 1480
	}
}

1481
static const u8 cnp_ddc_pin_map[] = {
1482
	[0] = 0, /* N/A */
1483 1484 1485 1486 1487 1488
	[DDC_BUS_DDI_B] = GMBUS_PIN_1_BXT,
	[DDC_BUS_DDI_C] = GMBUS_PIN_2_BXT,
	[DDC_BUS_DDI_D] = GMBUS_PIN_4_CNP, /* sic */
	[DDC_BUS_DDI_F] = GMBUS_PIN_3_BXT, /* sic */
};

1489
static const u8 icp_ddc_pin_map[] = {
1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500
	[ICL_DDC_BUS_DDI_A] = GMBUS_PIN_1_BXT,
	[ICL_DDC_BUS_DDI_B] = GMBUS_PIN_2_BXT,
	[TGL_DDC_BUS_DDI_C] = GMBUS_PIN_3_BXT,
	[ICL_DDC_BUS_PORT_1] = GMBUS_PIN_9_TC1_ICP,
	[ICL_DDC_BUS_PORT_2] = GMBUS_PIN_10_TC2_ICP,
	[ICL_DDC_BUS_PORT_3] = GMBUS_PIN_11_TC3_ICP,
	[ICL_DDC_BUS_PORT_4] = GMBUS_PIN_12_TC4_ICP,
	[TGL_DDC_BUS_PORT_5] = GMBUS_PIN_13_TC5_TGP,
	[TGL_DDC_BUS_PORT_6] = GMBUS_PIN_14_TC6_TGP,
};

1501 1502
static u8 map_ddc_pin(struct drm_i915_private *dev_priv, u8 vbt_pin)
{
1503 1504 1505
	const u8 *ddc_pin_map;
	int n_entries;

1506
	if (INTEL_PCH_TYPE(dev_priv) >= PCH_ICP) {
1507 1508 1509 1510 1511 1512 1513 1514
		ddc_pin_map = icp_ddc_pin_map;
		n_entries = ARRAY_SIZE(icp_ddc_pin_map);
	} else if (HAS_PCH_CNP(dev_priv)) {
		ddc_pin_map = cnp_ddc_pin_map;
		n_entries = ARRAY_SIZE(cnp_ddc_pin_map);
	} else {
		/* Assuming direct map */
		return vbt_pin;
1515
	}
1516

1517 1518 1519 1520 1521 1522
	if (vbt_pin < n_entries && ddc_pin_map[vbt_pin] != 0)
		return ddc_pin_map[vbt_pin];

	DRM_DEBUG_KMS("Ignoring alternate pin: VBT claims DDC pin %d, which is not valid for this platform\n",
		      vbt_pin);
	return 0;
1523 1524
}

1525
static enum port dvo_port_to_port(u8 dvo_port)
1526
{
1527 1528
	/*
	 * Each DDI port can have more than one value on the "DVO Port" field,
1529 1530
	 * so look for all the possible values for each port.
	 */
1531 1532 1533 1534 1535 1536 1537
	static const int dvo_ports[][3] = {
		[PORT_A] = { DVO_PORT_HDMIA, DVO_PORT_DPA, -1},
		[PORT_B] = { DVO_PORT_HDMIB, DVO_PORT_DPB, -1},
		[PORT_C] = { DVO_PORT_HDMIC, DVO_PORT_DPC, -1},
		[PORT_D] = { DVO_PORT_HDMID, DVO_PORT_DPD, -1},
		[PORT_E] = { DVO_PORT_CRT, DVO_PORT_HDMIE, DVO_PORT_DPE},
		[PORT_F] = { DVO_PORT_HDMIF, DVO_PORT_DPF, -1},
1538
		[PORT_G] = { DVO_PORT_HDMIG, DVO_PORT_DPG, -1},
1539
	};
1540 1541
	enum port port;
	int i;
1542

1543 1544 1545
	for (port = PORT_A; port < ARRAY_SIZE(dvo_ports); port++) {
		for (i = 0; i < ARRAY_SIZE(dvo_ports[port]); i++) {
			if (dvo_ports[port][i] == -1)
1546 1547
				break;

1548 1549
			if (dvo_port == dvo_ports[port][i])
				return port;
1550 1551
		}
	}
1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569

	return PORT_NONE;
}

static void parse_ddi_port(struct drm_i915_private *dev_priv,
			   const struct child_device_config *child,
			   u8 bdb_version)
{
	struct ddi_vbt_port_info *info;
	bool is_dvi, is_hdmi, is_dp, is_edp, is_crt;
	enum port port;

	port = dvo_port_to_port(child->dvo_port);
	if (port == PORT_NONE)
		return;

	info = &dev_priv->vbt.ddi_port_info[port];

1570
	if (info->child) {
1571 1572
		DRM_DEBUG_KMS("More than one child device for port %c in VBT, using the first.\n",
			      port_name(port));
1573
		return;
1574 1575
	}

1576 1577 1578 1579 1580
	is_dvi = child->device_type & DEVICE_TYPE_TMDS_DVI_SIGNALING;
	is_dp = child->device_type & DEVICE_TYPE_DISPLAYPORT_OUTPUT;
	is_crt = child->device_type & DEVICE_TYPE_ANALOG_OUTPUT;
	is_hdmi = is_dvi && (child->device_type & DEVICE_TYPE_NOT_HDMI_OUTPUT) == 0;
	is_edp = is_dp && (child->device_type & DEVICE_TYPE_INTERNAL_CONNECTOR);
1581

1582
	if (port == PORT_A && is_dvi && INTEL_GEN(dev_priv) < 12) {
1583 1584 1585 1586 1587 1588
		DRM_DEBUG_KMS("VBT claims port A supports DVI%s, ignoring\n",
			      is_hdmi ? "/HDMI" : "");
		is_dvi = false;
		is_hdmi = false;
	}

1589 1590 1591
	info->supports_dvi = is_dvi;
	info->supports_hdmi = is_hdmi;
	info->supports_dp = is_dp;
1592
	info->supports_edp = is_edp;
1593

1594 1595 1596 1597 1598 1599
	if (bdb_version >= 195)
		info->supports_typec_usb = child->dp_usb_type_c;

	if (bdb_version >= 209)
		info->supports_tbt = child->tbt;

1600 1601 1602
	DRM_DEBUG_KMS("Port %c VBT info: CRT:%d DVI:%d HDMI:%d DP:%d eDP:%d LSPCON:%d USB-Type-C:%d TBT:%d\n",
		      port_name(port), is_crt, is_dvi, is_hdmi, is_dp, is_edp,
		      HAS_LSPCON(dev_priv) && child->lspcon,
1603
		      info->supports_typec_usb, info->supports_tbt);
1604 1605 1606 1607 1608 1609 1610 1611 1612 1613

	if (is_edp && is_dvi)
		DRM_DEBUG_KMS("Internal DP port %c is TMDS compatible\n",
			      port_name(port));
	if (is_crt && port != PORT_E)
		DRM_DEBUG_KMS("Port %c is analog\n", port_name(port));
	if (is_crt && (is_dvi || is_dp))
		DRM_DEBUG_KMS("Analog port %c is also DP or TMDS compatible\n",
			      port_name(port));
	if (is_dvi && (port == PORT_A || port == PORT_E))
M
Masanari Iida 已提交
1614
		DRM_DEBUG_KMS("Port %c is TMDS compatible\n", port_name(port));
1615 1616 1617 1618 1619
	if (!is_dvi && !is_dp && !is_crt)
		DRM_DEBUG_KMS("Port %c is not DP/TMDS/CRT compatible\n",
			      port_name(port));
	if (is_edp && (port == PORT_B || port == PORT_C || port == PORT_E))
		DRM_DEBUG_KMS("Port %c is internal DP\n", port_name(port));
1620 1621

	if (is_dvi) {
1622 1623
		u8 ddc_pin;

1624 1625 1626 1627 1628 1629 1630 1631 1632
		ddc_pin = map_ddc_pin(dev_priv, child->ddc_pin);
		if (intel_gmbus_is_valid_pin(dev_priv, ddc_pin)) {
			info->alternate_ddc_pin = ddc_pin;
			sanitize_ddc_pin(dev_priv, port);
		} else {
			DRM_DEBUG_KMS("Port %c has invalid DDC pin %d, "
				      "sticking to defaults\n",
				      port_name(port), ddc_pin);
		}
1633 1634 1635
	}

	if (is_dp) {
1636
		info->alternate_aux_channel = child->aux_channel;
1637 1638

		sanitize_aux_ch(dev_priv, port);
1639 1640
	}

1641
	if (bdb_version >= 158) {
1642
		/* The VBT HDMI level shift values match the table we have. */
1643
		u8 hdmi_level_shift = child->hdmi_level_shifter_value;
1644 1645 1646 1647
		DRM_DEBUG_KMS("VBT HDMI level shift for port %c: %d\n",
			      port_name(port),
			      hdmi_level_shift);
		info->hdmi_level_shift = hdmi_level_shift;
1648
		info->hdmi_level_shift_set = true;
1649
	}
1650

1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671 1672 1673 1674
	if (bdb_version >= 204) {
		int max_tmds_clock;

		switch (child->hdmi_max_data_rate) {
		default:
			MISSING_CASE(child->hdmi_max_data_rate);
			/* fall through */
		case HDMI_MAX_DATA_RATE_PLATFORM:
			max_tmds_clock = 0;
			break;
		case HDMI_MAX_DATA_RATE_297:
			max_tmds_clock = 297000;
			break;
		case HDMI_MAX_DATA_RATE_165:
			max_tmds_clock = 165000;
			break;
		}

		if (max_tmds_clock)
			DRM_DEBUG_KMS("VBT HDMI max TMDS clock for port %c: %d kHz\n",
				      port_name(port), max_tmds_clock);
		info->max_tmds_clock = max_tmds_clock;
	}

1675
	/* Parse the I_boost config for SKL and above */
1676
	if (bdb_version >= 196 && child->iboost) {
1677
		info->dp_boost_level = translate_iboost(child->dp_iboost_level);
1678 1679
		DRM_DEBUG_KMS("VBT (e)DP boost level for port %c: %d\n",
			      port_name(port), info->dp_boost_level);
1680
		info->hdmi_boost_level = translate_iboost(child->hdmi_iboost_level);
1681 1682 1683
		DRM_DEBUG_KMS("VBT HDMI boost level for port %c: %d\n",
			      port_name(port), info->hdmi_boost_level);
	}
1684 1685 1686 1687 1688 1689 1690 1691 1692 1693 1694 1695 1696 1697 1698 1699 1700 1701 1702 1703 1704

	/* DP max link rate for CNL+ */
	if (bdb_version >= 216) {
		switch (child->dp_max_link_rate) {
		default:
		case VBT_DP_MAX_LINK_RATE_HBR3:
			info->dp_max_link_rate = 810000;
			break;
		case VBT_DP_MAX_LINK_RATE_HBR2:
			info->dp_max_link_rate = 540000;
			break;
		case VBT_DP_MAX_LINK_RATE_HBR:
			info->dp_max_link_rate = 270000;
			break;
		case VBT_DP_MAX_LINK_RATE_LBR:
			info->dp_max_link_rate = 162000;
			break;
		}
		DRM_DEBUG_KMS("VBT DP max link rate for port %c: %d\n",
			      port_name(port), info->dp_max_link_rate);
	}
1705 1706

	info->child = child;
1707 1708
}

1709
static void parse_ddi_ports(struct drm_i915_private *dev_priv, u8 bdb_version)
1710
{
1711
	const struct display_device_data *devdata;
1712

1713
	if (!HAS_DDI(dev_priv) && !IS_CHERRYVIEW(dev_priv))
1714 1715
		return;

1716
	if (bdb_version < 155)
1717 1718
		return;

1719 1720
	list_for_each_entry(devdata, &dev_priv->vbt.display_devices, node)
		parse_ddi_port(dev_priv, &devdata->child, bdb_version);
1721 1722
}

Z
Zhao Yakui 已提交
1723
static void
1724 1725
parse_general_definitions(struct drm_i915_private *dev_priv,
			  const struct bdb_header *bdb)
Z
Zhao Yakui 已提交
1726
{
1727
	const struct bdb_general_definitions *defs;
1728
	struct display_device_data *devdata;
1729
	const struct child_device_config *child;
1730
	int i, child_device_num;
1731 1732
	u8 expected_size;
	u16 block_size;
1733
	int bus_pin;
Z
Zhao Yakui 已提交
1734

1735 1736
	defs = find_section(bdb, BDB_GENERAL_DEFINITIONS);
	if (!defs) {
1737
		DRM_DEBUG_KMS("No general definition block is found, no devices defined.\n");
Z
Zhao Yakui 已提交
1738 1739
		return;
	}
1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752

	block_size = get_blocksize(defs);
	if (block_size < sizeof(*defs)) {
		DRM_DEBUG_KMS("General definitions block too small (%u)\n",
			      block_size);
		return;
	}

	bus_pin = defs->crt_ddc_gmbus_pin;
	DRM_DEBUG_KMS("crt_ddc_bus_pin: %d\n", bus_pin);
	if (intel_gmbus_is_valid_pin(dev_priv, bus_pin))
		dev_priv->vbt.crt_ddc_pin = bus_pin;

1753 1754
	if (bdb->version < 106) {
		expected_size = 22;
1755
	} else if (bdb->version < 111) {
1756 1757
		expected_size = 27;
	} else if (bdb->version < 195) {
1758
		expected_size = LEGACY_CHILD_DEVICE_CONFIG_SIZE;
1759 1760
	} else if (bdb->version == 195) {
		expected_size = 37;
1761
	} else if (bdb->version <= 215) {
1762
		expected_size = 38;
1763
	} else if (bdb->version <= 229) {
1764
		expected_size = 39;
1765
	} else {
1766 1767
		expected_size = sizeof(*child);
		BUILD_BUG_ON(sizeof(*child) < 39);
1768 1769 1770 1771 1772
		DRM_DEBUG_DRIVER("Expected child device config size for VBT version %u not known; assuming %u\n",
				 bdb->version, expected_size);
	}

	/* Flag an error for unexpected size, but continue anyway. */
1773
	if (defs->child_dev_size != expected_size)
1774
		DRM_ERROR("Unexpected child device config size %u (expected %u for VBT version %u)\n",
1775
			  defs->child_dev_size, expected_size, bdb->version);
1776

1777
	/* The legacy sized child device config is the minimum we need. */
1778
	if (defs->child_dev_size < LEGACY_CHILD_DEVICE_CONFIG_SIZE) {
1779
		DRM_DEBUG_KMS("Child device config size %u is too small.\n",
1780
			      defs->child_dev_size);
1781 1782 1783
		return;
	}

Z
Zhao Yakui 已提交
1784
	/* get the number of child device */
1785
	child_device_num = (block_size - sizeof(*defs)) / defs->child_dev_size;
Z
Zhao Yakui 已提交
1786 1787

	for (i = 0; i < child_device_num; i++) {
1788
		child = child_device_ptr(defs, i);
1789
		if (!child->device_type)
Z
Zhao Yakui 已提交
1790
			continue;
1791

1792 1793 1794
		DRM_DEBUG_KMS("Found VBT child device with type 0x%x\n",
			      child->device_type);

1795 1796 1797 1798
		devdata = kzalloc(sizeof(*devdata), GFP_KERNEL);
		if (!devdata)
			break;

1799 1800
		/*
		 * Copy as much as we know (sizeof) and is available
1801 1802
		 * (child_dev_size) of the child device config. Accessing the
		 * data must depend on VBT version.
1803
		 */
1804
		memcpy(&devdata->child, child,
1805
		       min_t(size_t, defs->child_dev_size, sizeof(*child)));
1806 1807

		list_add_tail(&devdata->node, &dev_priv->vbt.display_devices);
Z
Zhao Yakui 已提交
1808
	}
1809 1810 1811

	if (list_empty(&dev_priv->vbt.display_devices))
		DRM_DEBUG_KMS("no child dev is parsed from VBT\n");
Z
Zhao Yakui 已提交
1812
}
1813

1814
/* Common defaults which may be overridden by VBT. */
1815 1816 1817
static void
init_vbt_defaults(struct drm_i915_private *dev_priv)
{
1818
	dev_priv->vbt.crt_ddc_pin = GMBUS_PIN_VGADDC;
1819

1820 1821 1822
	/* Default to having backlight */
	dev_priv->vbt.backlight.present = true;

1823
	/* LFP panel data */
1824
	dev_priv->vbt.lvds_dither = 1;
1825 1826

	/* SDVO panel data */
1827
	dev_priv->vbt.sdvo_lvds_vbt_mode = NULL;
1828 1829

	/* general features */
1830 1831
	dev_priv->vbt.int_tv_support = 1;
	dev_priv->vbt.int_crt_support = 1;
1832

1833 1834 1835
	/* driver features */
	dev_priv->vbt.int_lvds_support = 1;

1836
	/* Default to using SSC */
1837
	dev_priv->vbt.lvds_use_ssc = 1;
1838 1839 1840 1841
	/*
	 * Core/SandyBridge/IvyBridge use alternative (120MHz) reference
	 * clock for LVDS.
	 */
1842 1843
	dev_priv->vbt.lvds_ssc_freq = intel_bios_ssc_frequency(dev_priv,
			!HAS_PCH_SPLIT(dev_priv));
1844
	DRM_DEBUG_KMS("Set default to SSC at %d kHz\n", dev_priv->vbt.lvds_ssc_freq);
1845 1846 1847 1848 1849 1850 1851 1852
}

/* Defaults to initialize only if there is no VBT. */
static void
init_vbt_missing_defaults(struct drm_i915_private *dev_priv)
{
	enum port port;

1853
	for_each_port(port) {
1854 1855
		struct ddi_vbt_port_info *info =
			&dev_priv->vbt.ddi_port_info[port];
1856
		enum phy phy = intel_port_to_phy(dev_priv, port);
1857

1858 1859 1860 1861
		/*
		 * VBT has the TypeC mode (native,TBT/USB) and we don't want
		 * to detect it.
		 */
1862
		if (intel_phy_is_tc(dev_priv, phy))
1863 1864
			continue;

1865 1866 1867
		info->supports_dvi = (port != PORT_A && port != PORT_E);
		info->supports_hdmi = info->supports_dvi;
		info->supports_dp = (port != PORT_E);
1868
		info->supports_edp = (port == PORT_A);
1869
	}
1870 1871
}

1872 1873 1874 1875 1876 1877 1878
static const struct bdb_header *get_bdb_header(const struct vbt_header *vbt)
{
	const void *_vbt = vbt;

	return _vbt + vbt->bdb_offset;
}

J
Jani Nikula 已提交
1879 1880 1881 1882 1883 1884 1885 1886
/**
 * intel_bios_is_valid_vbt - does the given buffer contain a valid VBT
 * @buf:	pointer to a buffer to validate
 * @size:	size of the buffer
 *
 * Returns true on valid VBT.
 */
bool intel_bios_is_valid_vbt(const void *buf, size_t size)
1887
{
J
Jani Nikula 已提交
1888
	const struct vbt_header *vbt = buf;
1889
	const struct bdb_header *bdb;
1890

1891
	if (!vbt)
J
Jani Nikula 已提交
1892
		return false;
1893

J
Jani Nikula 已提交
1894
	if (sizeof(struct vbt_header) > size) {
1895
		DRM_DEBUG_DRIVER("VBT header incomplete\n");
J
Jani Nikula 已提交
1896
		return false;
1897 1898 1899 1900
	}

	if (memcmp(vbt->signature, "$VBT", 4)) {
		DRM_DEBUG_DRIVER("VBT invalid signature\n");
J
Jani Nikula 已提交
1901
		return false;
1902 1903
	}

1904 1905 1906 1907 1908 1909 1910
	if (vbt->vbt_size > size) {
		DRM_DEBUG_DRIVER("VBT incomplete (vbt_size overflows)\n");
		return false;
	}

	size = vbt->vbt_size;

C
Chris Wilson 已提交
1911 1912 1913 1914
	if (range_overflows_t(size_t,
			      vbt->bdb_offset,
			      sizeof(struct bdb_header),
			      size)) {
1915
		DRM_DEBUG_DRIVER("BDB header incomplete\n");
J
Jani Nikula 已提交
1916
		return false;
1917 1918
	}

1919
	bdb = get_bdb_header(vbt);
C
Chris Wilson 已提交
1920
	if (range_overflows_t(size_t, vbt->bdb_offset, bdb->bdb_size, size)) {
1921
		DRM_DEBUG_DRIVER("BDB incomplete\n");
J
Jani Nikula 已提交
1922
		return false;
1923 1924
	}

1925
	return vbt;
1926 1927
}

1928
static struct vbt_header *oprom_get_vbt(struct drm_i915_private *dev_priv)
1929
{
1930 1931
	struct pci_dev *pdev = dev_priv->drm.pdev;
	void __iomem *p = NULL, *oprom;
1932 1933
	struct vbt_header *vbt;
	u16 vbt_size;
1934 1935 1936 1937 1938
	size_t i, size;

	oprom = pci_map_rom(pdev, &size);
	if (!oprom)
		return NULL;
1939 1940 1941

	/* Scour memory looking for the VBT signature. */
	for (i = 0; i + 4 < size; i++) {
1942
		if (ioread32(oprom + i) != *((const u32 *)"$VBT"))
J
Jani Nikula 已提交
1943 1944
			continue;

1945 1946
		p = oprom + i;
		size -= i;
J
Jani Nikula 已提交
1947
		break;
1948 1949
	}

1950
	if (!p)
1951
		goto err_unmap_oprom;
1952 1953 1954

	if (sizeof(struct vbt_header) > size) {
		DRM_DEBUG_DRIVER("VBT header incomplete\n");
1955
		goto err_unmap_oprom;
1956 1957 1958 1959 1960
	}

	vbt_size = ioread16(p + offsetof(struct vbt_header, vbt_size));
	if (vbt_size > size) {
		DRM_DEBUG_DRIVER("VBT incomplete (vbt_size overflows)\n");
1961
		goto err_unmap_oprom;
1962 1963 1964 1965 1966
	}

	/* The rest will be validated by intel_bios_is_valid_vbt() */
	vbt = kmalloc(vbt_size, GFP_KERNEL);
	if (!vbt)
1967
		goto err_unmap_oprom;
1968 1969 1970 1971 1972 1973

	memcpy_fromio(vbt, p, vbt_size);

	if (!intel_bios_is_valid_vbt(vbt, vbt_size))
		goto err_free_vbt;

1974 1975
	pci_unmap_rom(pdev, oprom);

1976 1977 1978 1979
	return vbt;

err_free_vbt:
	kfree(vbt);
1980 1981
err_unmap_oprom:
	pci_unmap_rom(pdev, oprom);
1982

J
Jani Nikula 已提交
1983
	return NULL;
1984 1985
}

J
Jesse Barnes 已提交
1986
/**
1987
 * intel_bios_init - find VBT and initialize settings from the BIOS
1988
 * @dev_priv: i915 device instance
J
Jesse Barnes 已提交
1989
 *
1990 1991 1992
 * Parse and initialize settings from the Video BIOS Tables (VBT). If the VBT
 * was not found in ACPI OpRegion, try to find it in PCI ROM first. Also
 * initialize some defaults if the VBT is not present at all.
J
Jesse Barnes 已提交
1993
 */
1994
void intel_bios_init(struct drm_i915_private *dev_priv)
J
Jesse Barnes 已提交
1995
{
J
Jani Nikula 已提交
1996
	const struct vbt_header *vbt = dev_priv->opregion.vbt;
1997
	struct vbt_header *oprom_vbt = NULL;
1998
	const struct bdb_header *bdb;
1999

2000 2001
	INIT_LIST_HEAD(&dev_priv->vbt.display_devices);

2002
	if (!HAS_DISPLAY(dev_priv) || !INTEL_DISPLAY_ENABLED(dev_priv)) {
2003 2004 2005
		DRM_DEBUG_KMS("Skipping VBT init due to disabled display.\n");
		return;
	}
2006

2007
	init_vbt_defaults(dev_priv);
2008

2009
	/* If the OpRegion does not have VBT, look in PCI ROM. */
J
Jani Nikula 已提交
2010
	if (!vbt) {
2011 2012
		oprom_vbt = oprom_get_vbt(dev_priv);
		if (!oprom_vbt)
2013
			goto out;
2014

2015
		vbt = oprom_vbt;
2016 2017

		DRM_DEBUG_KMS("Found valid VBT in PCI ROM\n");
2018
	}
J
Jesse Barnes 已提交
2019

2020 2021
	bdb = get_bdb_header(vbt);

2022 2023
	DRM_DEBUG_KMS("VBT signature \"%.*s\", BDB version %d\n",
		      (int)sizeof(vbt->signature), vbt->signature, bdb->version);
2024

J
Jesse Barnes 已提交
2025 2026
	/* Grab useful general definitions */
	parse_general_features(dev_priv, bdb);
2027
	parse_general_definitions(dev_priv, bdb);
2028
	parse_panel_options(dev_priv, bdb);
2029
	parse_panel_dtd(dev_priv, bdb);
2030
	parse_lfp_backlight(dev_priv, bdb);
2031
	parse_sdvo_panel_data(dev_priv, bdb);
2032
	parse_driver_features(dev_priv, bdb);
2033
	parse_power_conservation_features(dev_priv, bdb);
2034
	parse_edp(dev_priv, bdb);
R
Rodrigo Vivi 已提交
2035
	parse_psr(dev_priv, bdb);
2036 2037
	parse_mipi_config(dev_priv, bdb);
	parse_mipi_sequence(dev_priv, bdb);
2038 2039

	/* Further processing on pre-parsed data */
2040 2041
	parse_sdvo_device_mapping(dev_priv, bdb->version);
	parse_ddi_ports(dev_priv, bdb->version);
2042

2043
out:
2044
	if (!vbt) {
2045
		DRM_INFO("Failed to find VBIOS tables (VBT)\n");
2046 2047
		init_vbt_missing_defaults(dev_priv);
	}
2048

2049
	kfree(oprom_vbt);
J
Jesse Barnes 已提交
2050
}
2051

2052
/**
2053
 * intel_bios_driver_remove - Free any resources allocated by intel_bios_init()
2054 2055
 * @dev_priv: i915 device instance
 */
2056
void intel_bios_driver_remove(struct drm_i915_private *dev_priv)
2057
{
2058 2059 2060 2061 2062 2063 2064
	struct display_device_data *devdata, *n;

	list_for_each_entry_safe(devdata, n, &dev_priv->vbt.display_devices, node) {
		list_del(&devdata->node);
		kfree(devdata);
	}

2065 2066 2067 2068
	kfree(dev_priv->vbt.sdvo_lvds_vbt_mode);
	dev_priv->vbt.sdvo_lvds_vbt_mode = NULL;
	kfree(dev_priv->vbt.lfp_lvds_vbt_mode);
	dev_priv->vbt.lfp_lvds_vbt_mode = NULL;
2069 2070 2071 2072 2073 2074
	kfree(dev_priv->vbt.dsi.data);
	dev_priv->vbt.dsi.data = NULL;
	kfree(dev_priv->vbt.dsi.pps);
	dev_priv->vbt.dsi.pps = NULL;
	kfree(dev_priv->vbt.dsi.config);
	dev_priv->vbt.dsi.config = NULL;
2075 2076
	kfree(dev_priv->vbt.dsi.deassert_seq);
	dev_priv->vbt.dsi.deassert_seq = NULL;
2077 2078
}

2079 2080 2081 2082 2083 2084 2085 2086 2087
/**
 * intel_bios_is_tv_present - is integrated TV present in VBT
 * @dev_priv:	i915 device instance
 *
 * Return true if TV is present. If no child devices were parsed from VBT,
 * assume TV is present.
 */
bool intel_bios_is_tv_present(struct drm_i915_private *dev_priv)
{
2088
	const struct display_device_data *devdata;
2089
	const struct child_device_config *child;
2090 2091 2092 2093

	if (!dev_priv->vbt.int_tv_support)
		return false;

2094
	if (list_empty(&dev_priv->vbt.display_devices))
2095 2096
		return true;

2097 2098 2099
	list_for_each_entry(devdata, &dev_priv->vbt.display_devices, node) {
		child = &devdata->child;

2100 2101 2102
		/*
		 * If the device type is not TV, continue.
		 */
2103
		switch (child->device_type) {
2104 2105 2106 2107 2108 2109 2110 2111 2112 2113
		case DEVICE_TYPE_INT_TV:
		case DEVICE_TYPE_TV:
		case DEVICE_TYPE_TV_SVIDEO_COMPOSITE:
			break;
		default:
			continue;
		}
		/* Only when the addin_offset is non-zero, it is regarded
		 * as present.
		 */
2114
		if (child->addin_offset)
2115 2116 2117 2118 2119
			return true;
	}

	return false;
}
2120 2121 2122 2123 2124 2125 2126 2127 2128 2129 2130

/**
 * intel_bios_is_lvds_present - is LVDS present in VBT
 * @dev_priv:	i915 device instance
 * @i2c_pin:	i2c pin for LVDS if present
 *
 * Return true if LVDS is present. If no child devices were parsed from VBT,
 * assume LVDS is present.
 */
bool intel_bios_is_lvds_present(struct drm_i915_private *dev_priv, u8 *i2c_pin)
{
2131
	const struct display_device_data *devdata;
2132
	const struct child_device_config *child;
2133

2134
	if (list_empty(&dev_priv->vbt.display_devices))
2135 2136
		return true;

2137 2138
	list_for_each_entry(devdata, &dev_priv->vbt.display_devices, node) {
		child = &devdata->child;
2139 2140 2141 2142 2143 2144 2145 2146 2147 2148 2149 2150 2151 2152 2153 2154 2155 2156 2157 2158 2159 2160 2161 2162 2163 2164 2165 2166 2167 2168 2169

		/* 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.
		 */
		if (child->device_type != DEVICE_TYPE_INT_LFP &&
		    child->device_type != DEVICE_TYPE_LFP)
			continue;

		if (intel_gmbus_is_valid_pin(dev_priv, child->i2c_pin))
			*i2c_pin = child->i2c_pin;

		/* 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.
		 */
		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;
	}

	return false;
}
2170

2171 2172 2173 2174 2175 2176 2177 2178 2179
/**
 * intel_bios_is_port_present - is the specified digital port present
 * @dev_priv:	i915 device instance
 * @port:	port to check
 *
 * Return true if the device in %port is present.
 */
bool intel_bios_is_port_present(struct drm_i915_private *dev_priv, enum port port)
{
2180
	const struct display_device_data *devdata;
2181
	const struct child_device_config *child;
2182 2183 2184 2185 2186 2187 2188
	static const struct {
		u16 dp, hdmi;
	} port_mapping[] = {
		[PORT_B] = { DVO_PORT_DPB, DVO_PORT_HDMIB, },
		[PORT_C] = { DVO_PORT_DPC, DVO_PORT_HDMIC, },
		[PORT_D] = { DVO_PORT_DPD, DVO_PORT_HDMID, },
		[PORT_E] = { DVO_PORT_DPE, DVO_PORT_HDMIE, },
2189
		[PORT_F] = { DVO_PORT_DPF, DVO_PORT_HDMIF, },
2190 2191
	};

2192 2193 2194 2195 2196 2197 2198 2199 2200
	if (HAS_DDI(dev_priv)) {
		const struct ddi_vbt_port_info *port_info =
			&dev_priv->vbt.ddi_port_info[port];

		return port_info->supports_dp ||
		       port_info->supports_dvi ||
		       port_info->supports_hdmi;
	}

2201 2202 2203 2204
	/* FIXME maybe deal with port A as well? */
	if (WARN_ON(port == PORT_A) || port >= ARRAY_SIZE(port_mapping))
		return false;

2205 2206
	list_for_each_entry(devdata, &dev_priv->vbt.display_devices, node) {
		child = &devdata->child;
2207 2208 2209 2210 2211

		if ((child->dvo_port == port_mapping[port].dp ||
		     child->dvo_port == port_mapping[port].hdmi) &&
		    (child->device_type & (DEVICE_TYPE_TMDS_DVI_SIGNALING |
					   DEVICE_TYPE_DISPLAYPORT_OUTPUT)))
2212 2213 2214 2215 2216 2217
			return true;
	}

	return false;
}

2218 2219 2220 2221 2222 2223 2224 2225 2226
/**
 * intel_bios_is_port_edp - is the device in given port eDP
 * @dev_priv:	i915 device instance
 * @port:	port to check
 *
 * Return true if the device in %port is eDP.
 */
bool intel_bios_is_port_edp(struct drm_i915_private *dev_priv, enum port port)
{
2227
	const struct display_device_data *devdata;
2228
	const struct child_device_config *child;
2229 2230 2231 2232 2233
	static const short port_mapping[] = {
		[PORT_B] = DVO_PORT_DPB,
		[PORT_C] = DVO_PORT_DPC,
		[PORT_D] = DVO_PORT_DPD,
		[PORT_E] = DVO_PORT_DPE,
2234
		[PORT_F] = DVO_PORT_DPF,
2235 2236
	};

2237 2238 2239
	if (HAS_DDI(dev_priv))
		return dev_priv->vbt.ddi_port_info[port].supports_edp;

2240 2241
	list_for_each_entry(devdata, &dev_priv->vbt.display_devices, node) {
		child = &devdata->child;
2242

2243 2244
		if (child->dvo_port == port_mapping[port] &&
		    (child->device_type & DEVICE_TYPE_eDP_BITS) ==
2245 2246 2247 2248 2249 2250
		    (DEVICE_TYPE_eDP & DEVICE_TYPE_eDP_BITS))
			return true;
	}

	return false;
}
2251

2252
static bool child_dev_is_dp_dual_mode(const struct child_device_config *child,
2253
				      enum port port)
2254 2255 2256 2257 2258 2259 2260 2261 2262 2263 2264 2265
{
	static const struct {
		u16 dp, hdmi;
	} port_mapping[] = {
		/*
		 * Buggy VBTs may declare DP ports as having
		 * HDMI type dvo_port :( So let's check both.
		 */
		[PORT_B] = { DVO_PORT_DPB, DVO_PORT_HDMIB, },
		[PORT_C] = { DVO_PORT_DPC, DVO_PORT_HDMIC, },
		[PORT_D] = { DVO_PORT_DPD, DVO_PORT_HDMID, },
		[PORT_E] = { DVO_PORT_DPE, DVO_PORT_HDMIE, },
2266
		[PORT_F] = { DVO_PORT_DPF, DVO_PORT_HDMIF, },
2267 2268 2269 2270 2271
	};

	if (port == PORT_A || port >= ARRAY_SIZE(port_mapping))
		return false;

2272
	if ((child->device_type & DEVICE_TYPE_DP_DUAL_MODE_BITS) !=
2273
	    (DEVICE_TYPE_DP_DUAL_MODE & DEVICE_TYPE_DP_DUAL_MODE_BITS))
2274 2275
		return false;

2276
	if (child->dvo_port == port_mapping[port].dp)
2277 2278 2279
		return true;

	/* Only accept a HDMI dvo_port as DP++ if it has an AUX channel */
2280 2281
	if (child->dvo_port == port_mapping[port].hdmi &&
	    child->aux_channel != 0)
2282 2283 2284 2285 2286 2287 2288 2289
		return true;

	return false;
}

bool intel_bios_is_port_dp_dual_mode(struct drm_i915_private *dev_priv,
				     enum port port)
{
2290
	const struct display_device_data *devdata;
2291

2292 2293
	list_for_each_entry(devdata, &dev_priv->vbt.display_devices, node) {
		if (child_dev_is_dp_dual_mode(&devdata->child, port))
2294 2295 2296 2297 2298 2299
			return true;
	}

	return false;
}

2300 2301 2302 2303 2304 2305 2306 2307 2308 2309
/**
 * intel_bios_is_dsi_present - is DSI present in VBT
 * @dev_priv:	i915 device instance
 * @port:	port for DSI if present
 *
 * Return true if DSI is present, and return the port in %port.
 */
bool intel_bios_is_dsi_present(struct drm_i915_private *dev_priv,
			       enum port *port)
{
2310
	const struct display_device_data *devdata;
2311
	const struct child_device_config *child;
2312 2313
	u8 dvo_port;

2314 2315
	list_for_each_entry(devdata, &dev_priv->vbt.display_devices, node) {
		child = &devdata->child;
2316

2317
		if (!(child->device_type & DEVICE_TYPE_MIPI_OUTPUT))
2318 2319
			continue;

2320
		dvo_port = child->dvo_port;
2321

2322
		if (dvo_port == DVO_PORT_MIPIA ||
2323 2324
		    (dvo_port == DVO_PORT_MIPIB && INTEL_GEN(dev_priv) >= 11) ||
		    (dvo_port == DVO_PORT_MIPIC && INTEL_GEN(dev_priv) < 11)) {
2325 2326
			if (port)
				*port = dvo_port - DVO_PORT_MIPIA;
2327
			return true;
2328 2329 2330
		} else if (dvo_port == DVO_PORT_MIPIB ||
			   dvo_port == DVO_PORT_MIPIC ||
			   dvo_port == DVO_PORT_MIPID) {
2331 2332 2333 2334 2335 2336 2337
			DRM_DEBUG_KMS("VBT has unsupported DSI port %c\n",
				      port_name(dvo_port - DVO_PORT_MIPIA));
		}
	}

	return false;
}
2338 2339 2340

/**
 * intel_bios_is_port_hpd_inverted - is HPD inverted for %port
2341
 * @i915:	i915 device instance
2342 2343 2344 2345 2346
 * @port:	port to check
 *
 * Return true if HPD should be inverted for %port.
 */
bool
2347
intel_bios_is_port_hpd_inverted(const struct drm_i915_private *i915,
2348 2349
				enum port port)
{
2350 2351
	const struct child_device_config *child =
		i915->vbt.ddi_port_info[port].child;
2352

2353
	if (WARN_ON_ONCE(!IS_GEN9_LP(i915)))
2354 2355
		return false;

2356
	return child && child->hpd_invert;
2357
}
2358 2359 2360

/**
 * intel_bios_is_lspcon_present - if LSPCON is attached on %port
2361
 * @i915:	i915 device instance
2362 2363 2364 2365 2366
 * @port:	port to check
 *
 * Return true if LSPCON is present on this port
 */
bool
2367 2368
intel_bios_is_lspcon_present(const struct drm_i915_private *i915,
			     enum port port)
2369
{
2370 2371
	const struct child_device_config *child =
		i915->vbt.ddi_port_info[port].child;
2372

2373
	return HAS_LSPCON(i915) && child && child->lspcon;
2374
}
2375

2376 2377
enum aux_ch intel_bios_port_aux_ch(struct drm_i915_private *dev_priv,
				   enum port port)
2378 2379 2380 2381 2382 2383 2384 2385 2386 2387 2388 2389 2390 2391 2392 2393 2394 2395 2396 2397 2398 2399 2400 2401 2402 2403 2404 2405 2406 2407 2408 2409
{
	const struct ddi_vbt_port_info *info =
		&dev_priv->vbt.ddi_port_info[port];
	enum aux_ch aux_ch;

	if (!info->alternate_aux_channel) {
		aux_ch = (enum aux_ch)port;

		DRM_DEBUG_KMS("using AUX %c for port %c (platform default)\n",
			      aux_ch_name(aux_ch), port_name(port));
		return aux_ch;
	}

	switch (info->alternate_aux_channel) {
	case DP_AUX_A:
		aux_ch = AUX_CH_A;
		break;
	case DP_AUX_B:
		aux_ch = AUX_CH_B;
		break;
	case DP_AUX_C:
		aux_ch = AUX_CH_C;
		break;
	case DP_AUX_D:
		aux_ch = AUX_CH_D;
		break;
	case DP_AUX_E:
		aux_ch = AUX_CH_E;
		break;
	case DP_AUX_F:
		aux_ch = AUX_CH_F;
		break;
2410 2411 2412
	case DP_AUX_G:
		aux_ch = AUX_CH_G;
		break;
2413 2414 2415 2416 2417 2418 2419 2420 2421 2422 2423
	default:
		MISSING_CASE(info->alternate_aux_channel);
		aux_ch = AUX_CH_A;
		break;
	}

	DRM_DEBUG_KMS("using AUX %c for port %c (VBT)\n",
		      aux_ch_name(aux_ch), port_name(port));

	return aux_ch;
}