radeon_display.c 50.7 KB
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/*
 * Copyright 2007-8 Advanced Micro Devices, Inc.
 * Copyright 2008 Red Hat Inc.
 *
 * 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 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 COPYRIGHT HOLDER(S) OR AUTHOR(S) 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: Dave Airlie
 *          Alex Deucher
 */
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#include <drm/drmP.h>
#include <drm/radeon_drm.h>
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#include "radeon.h"

#include "atom.h"
#include <asm/div64.h>

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#include <drm/drm_crtc_helper.h>
#include <drm/drm_edid.h>
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static void avivo_crtc_load_lut(struct drm_crtc *crtc)
{
	struct radeon_crtc *radeon_crtc = to_radeon_crtc(crtc);
	struct drm_device *dev = crtc->dev;
	struct radeon_device *rdev = dev->dev_private;
	int i;

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	DRM_DEBUG_KMS("%d\n", radeon_crtc->crtc_id);
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	WREG32(AVIVO_DC_LUTA_CONTROL + radeon_crtc->crtc_offset, 0);

	WREG32(AVIVO_DC_LUTA_BLACK_OFFSET_BLUE + radeon_crtc->crtc_offset, 0);
	WREG32(AVIVO_DC_LUTA_BLACK_OFFSET_GREEN + radeon_crtc->crtc_offset, 0);
	WREG32(AVIVO_DC_LUTA_BLACK_OFFSET_RED + radeon_crtc->crtc_offset, 0);

	WREG32(AVIVO_DC_LUTA_WHITE_OFFSET_BLUE + radeon_crtc->crtc_offset, 0xffff);
	WREG32(AVIVO_DC_LUTA_WHITE_OFFSET_GREEN + radeon_crtc->crtc_offset, 0xffff);
	WREG32(AVIVO_DC_LUTA_WHITE_OFFSET_RED + radeon_crtc->crtc_offset, 0xffff);

	WREG32(AVIVO_DC_LUT_RW_SELECT, radeon_crtc->crtc_id);
	WREG32(AVIVO_DC_LUT_RW_MODE, 0);
	WREG32(AVIVO_DC_LUT_WRITE_EN_MASK, 0x0000003f);

	WREG8(AVIVO_DC_LUT_RW_INDEX, 0);
	for (i = 0; i < 256; i++) {
		WREG32(AVIVO_DC_LUT_30_COLOR,
			     (radeon_crtc->lut_r[i] << 20) |
			     (radeon_crtc->lut_g[i] << 10) |
			     (radeon_crtc->lut_b[i] << 0));
	}

	WREG32(AVIVO_D1GRPH_LUT_SEL + radeon_crtc->crtc_offset, radeon_crtc->crtc_id);
}

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static void dce4_crtc_load_lut(struct drm_crtc *crtc)
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{
	struct radeon_crtc *radeon_crtc = to_radeon_crtc(crtc);
	struct drm_device *dev = crtc->dev;
	struct radeon_device *rdev = dev->dev_private;
	int i;

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	DRM_DEBUG_KMS("%d\n", radeon_crtc->crtc_id);
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	WREG32(EVERGREEN_DC_LUT_CONTROL + radeon_crtc->crtc_offset, 0);

	WREG32(EVERGREEN_DC_LUT_BLACK_OFFSET_BLUE + radeon_crtc->crtc_offset, 0);
	WREG32(EVERGREEN_DC_LUT_BLACK_OFFSET_GREEN + radeon_crtc->crtc_offset, 0);
	WREG32(EVERGREEN_DC_LUT_BLACK_OFFSET_RED + radeon_crtc->crtc_offset, 0);

	WREG32(EVERGREEN_DC_LUT_WHITE_OFFSET_BLUE + radeon_crtc->crtc_offset, 0xffff);
	WREG32(EVERGREEN_DC_LUT_WHITE_OFFSET_GREEN + radeon_crtc->crtc_offset, 0xffff);
	WREG32(EVERGREEN_DC_LUT_WHITE_OFFSET_RED + radeon_crtc->crtc_offset, 0xffff);

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	WREG32(EVERGREEN_DC_LUT_RW_MODE + radeon_crtc->crtc_offset, 0);
	WREG32(EVERGREEN_DC_LUT_WRITE_EN_MASK + radeon_crtc->crtc_offset, 0x00000007);
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	WREG32(EVERGREEN_DC_LUT_RW_INDEX + radeon_crtc->crtc_offset, 0);
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	for (i = 0; i < 256; i++) {
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		WREG32(EVERGREEN_DC_LUT_30_COLOR + radeon_crtc->crtc_offset,
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		       (radeon_crtc->lut_r[i] << 20) |
		       (radeon_crtc->lut_g[i] << 10) |
		       (radeon_crtc->lut_b[i] << 0));
	}
}

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static void dce5_crtc_load_lut(struct drm_crtc *crtc)
{
	struct radeon_crtc *radeon_crtc = to_radeon_crtc(crtc);
	struct drm_device *dev = crtc->dev;
	struct radeon_device *rdev = dev->dev_private;
	int i;

	DRM_DEBUG_KMS("%d\n", radeon_crtc->crtc_id);

	WREG32(NI_INPUT_CSC_CONTROL + radeon_crtc->crtc_offset,
	       (NI_INPUT_CSC_GRPH_MODE(NI_INPUT_CSC_BYPASS) |
		NI_INPUT_CSC_OVL_MODE(NI_INPUT_CSC_BYPASS)));
	WREG32(NI_PRESCALE_GRPH_CONTROL + radeon_crtc->crtc_offset,
	       NI_GRPH_PRESCALE_BYPASS);
	WREG32(NI_PRESCALE_OVL_CONTROL + radeon_crtc->crtc_offset,
	       NI_OVL_PRESCALE_BYPASS);
	WREG32(NI_INPUT_GAMMA_CONTROL + radeon_crtc->crtc_offset,
	       (NI_GRPH_INPUT_GAMMA_MODE(NI_INPUT_GAMMA_USE_LUT) |
		NI_OVL_INPUT_GAMMA_MODE(NI_INPUT_GAMMA_USE_LUT)));

	WREG32(EVERGREEN_DC_LUT_CONTROL + radeon_crtc->crtc_offset, 0);

	WREG32(EVERGREEN_DC_LUT_BLACK_OFFSET_BLUE + radeon_crtc->crtc_offset, 0);
	WREG32(EVERGREEN_DC_LUT_BLACK_OFFSET_GREEN + radeon_crtc->crtc_offset, 0);
	WREG32(EVERGREEN_DC_LUT_BLACK_OFFSET_RED + radeon_crtc->crtc_offset, 0);

	WREG32(EVERGREEN_DC_LUT_WHITE_OFFSET_BLUE + radeon_crtc->crtc_offset, 0xffff);
	WREG32(EVERGREEN_DC_LUT_WHITE_OFFSET_GREEN + radeon_crtc->crtc_offset, 0xffff);
	WREG32(EVERGREEN_DC_LUT_WHITE_OFFSET_RED + radeon_crtc->crtc_offset, 0xffff);

	WREG32(EVERGREEN_DC_LUT_RW_MODE + radeon_crtc->crtc_offset, 0);
	WREG32(EVERGREEN_DC_LUT_WRITE_EN_MASK + radeon_crtc->crtc_offset, 0x00000007);

	WREG32(EVERGREEN_DC_LUT_RW_INDEX + radeon_crtc->crtc_offset, 0);
	for (i = 0; i < 256; i++) {
		WREG32(EVERGREEN_DC_LUT_30_COLOR + radeon_crtc->crtc_offset,
		       (radeon_crtc->lut_r[i] << 20) |
		       (radeon_crtc->lut_g[i] << 10) |
		       (radeon_crtc->lut_b[i] << 0));
	}

	WREG32(NI_DEGAMMA_CONTROL + radeon_crtc->crtc_offset,
	       (NI_GRPH_DEGAMMA_MODE(NI_DEGAMMA_BYPASS) |
		NI_OVL_DEGAMMA_MODE(NI_DEGAMMA_BYPASS) |
		NI_ICON_DEGAMMA_MODE(NI_DEGAMMA_BYPASS) |
		NI_CURSOR_DEGAMMA_MODE(NI_DEGAMMA_BYPASS)));
	WREG32(NI_GAMUT_REMAP_CONTROL + radeon_crtc->crtc_offset,
	       (NI_GRPH_GAMUT_REMAP_MODE(NI_GAMUT_REMAP_BYPASS) |
		NI_OVL_GAMUT_REMAP_MODE(NI_GAMUT_REMAP_BYPASS)));
	WREG32(NI_REGAMMA_CONTROL + radeon_crtc->crtc_offset,
	       (NI_GRPH_REGAMMA_MODE(NI_REGAMMA_BYPASS) |
		NI_OVL_REGAMMA_MODE(NI_REGAMMA_BYPASS)));
	WREG32(NI_OUTPUT_CSC_CONTROL + radeon_crtc->crtc_offset,
	       (NI_OUTPUT_CSC_GRPH_MODE(NI_OUTPUT_CSC_BYPASS) |
		NI_OUTPUT_CSC_OVL_MODE(NI_OUTPUT_CSC_BYPASS)));
	/* XXX match this to the depth of the crtc fmt block, move to modeset? */
	WREG32(0x6940 + radeon_crtc->crtc_offset, 0);
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	if (ASIC_IS_DCE8(rdev)) {
		/* XXX this only needs to be programmed once per crtc at startup,
		 * not sure where the best place for it is
		 */
		WREG32(CIK_ALPHA_CONTROL + radeon_crtc->crtc_offset,
		       CIK_CURSOR_ALPHA_BLND_ENA);
	}
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}

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static void legacy_crtc_load_lut(struct drm_crtc *crtc)
{
	struct radeon_crtc *radeon_crtc = to_radeon_crtc(crtc);
	struct drm_device *dev = crtc->dev;
	struct radeon_device *rdev = dev->dev_private;
	int i;
	uint32_t dac2_cntl;

	dac2_cntl = RREG32(RADEON_DAC_CNTL2);
	if (radeon_crtc->crtc_id == 0)
		dac2_cntl &= (uint32_t)~RADEON_DAC2_PALETTE_ACC_CTL;
	else
		dac2_cntl |= RADEON_DAC2_PALETTE_ACC_CTL;
	WREG32(RADEON_DAC_CNTL2, dac2_cntl);

	WREG8(RADEON_PALETTE_INDEX, 0);
	for (i = 0; i < 256; i++) {
		WREG32(RADEON_PALETTE_30_DATA,
			     (radeon_crtc->lut_r[i] << 20) |
			     (radeon_crtc->lut_g[i] << 10) |
			     (radeon_crtc->lut_b[i] << 0));
	}
}

void radeon_crtc_load_lut(struct drm_crtc *crtc)
{
	struct drm_device *dev = crtc->dev;
	struct radeon_device *rdev = dev->dev_private;

	if (!crtc->enabled)
		return;

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	if (ASIC_IS_DCE5(rdev))
		dce5_crtc_load_lut(crtc);
	else if (ASIC_IS_DCE4(rdev))
		dce4_crtc_load_lut(crtc);
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	else if (ASIC_IS_AVIVO(rdev))
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		avivo_crtc_load_lut(crtc);
	else
		legacy_crtc_load_lut(crtc);
}

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/** Sets the color ramps on behalf of fbcon */
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void radeon_crtc_fb_gamma_set(struct drm_crtc *crtc, u16 red, u16 green,
			      u16 blue, int regno)
{
	struct radeon_crtc *radeon_crtc = to_radeon_crtc(crtc);

	radeon_crtc->lut_r[regno] = red >> 6;
	radeon_crtc->lut_g[regno] = green >> 6;
	radeon_crtc->lut_b[regno] = blue >> 6;
}

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/** Gets the color ramps on behalf of fbcon */
void radeon_crtc_fb_gamma_get(struct drm_crtc *crtc, u16 *red, u16 *green,
			      u16 *blue, int regno)
{
	struct radeon_crtc *radeon_crtc = to_radeon_crtc(crtc);

	*red = radeon_crtc->lut_r[regno] << 6;
	*green = radeon_crtc->lut_g[regno] << 6;
	*blue = radeon_crtc->lut_b[regno] << 6;
}

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static void radeon_crtc_gamma_set(struct drm_crtc *crtc, u16 *red, u16 *green,
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				  u16 *blue, uint32_t start, uint32_t size)
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{
	struct radeon_crtc *radeon_crtc = to_radeon_crtc(crtc);
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	int end = (start + size > 256) ? 256 : start + size, i;
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	/* userspace palettes are always correct as is */
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	for (i = start; i < end; i++) {
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		radeon_crtc->lut_r[i] = red[i] >> 6;
		radeon_crtc->lut_g[i] = green[i] >> 6;
		radeon_crtc->lut_b[i] = blue[i] >> 6;
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	}
	radeon_crtc_load_lut(crtc);
}

static void radeon_crtc_destroy(struct drm_crtc *crtc)
{
	struct radeon_crtc *radeon_crtc = to_radeon_crtc(crtc);

	drm_crtc_cleanup(crtc);
	kfree(radeon_crtc);
}

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/*
 * Handle unpin events outside the interrupt handler proper.
 */
static void radeon_unpin_work_func(struct work_struct *__work)
{
	struct radeon_unpin_work *work =
		container_of(__work, struct radeon_unpin_work, work);
	int r;

	/* unpin of the old buffer */
	r = radeon_bo_reserve(work->old_rbo, false);
	if (likely(r == 0)) {
		r = radeon_bo_unpin(work->old_rbo);
		if (unlikely(r != 0)) {
			DRM_ERROR("failed to unpin buffer after flip\n");
		}
		radeon_bo_unreserve(work->old_rbo);
	} else
		DRM_ERROR("failed to reserve buffer after flip\n");
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	drm_gem_object_unreference_unlocked(&work->old_rbo->gem_base);
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	kfree(work);
}

void radeon_crtc_handle_flip(struct radeon_device *rdev, int crtc_id)
{
	struct radeon_crtc *radeon_crtc = rdev->mode_info.crtcs[crtc_id];
	struct radeon_unpin_work *work;
	unsigned long flags;
	u32 update_pending;
	int vpos, hpos;

	spin_lock_irqsave(&rdev->ddev->event_lock, flags);
	work = radeon_crtc->unpin_work;
	if (work == NULL ||
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	    (work->fence && !radeon_fence_signaled(work->fence))) {
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		spin_unlock_irqrestore(&rdev->ddev->event_lock, flags);
		return;
	}
	/* New pageflip, or just completion of a previous one? */
	if (!radeon_crtc->deferred_flip_completion) {
		/* do the flip (mmio) */
		update_pending = radeon_page_flip(rdev, crtc_id, work->new_crtc_base);
	} else {
		/* This is just a completion of a flip queued in crtc
		 * at last invocation. Make sure we go directly to
		 * completion routine.
		 */
		update_pending = 0;
		radeon_crtc->deferred_flip_completion = 0;
	}

	/* Has the pageflip already completed in crtc, or is it certain
	 * to complete in this vblank?
	 */
	if (update_pending &&
	    (DRM_SCANOUTPOS_VALID & radeon_get_crtc_scanoutpos(rdev->ddev, crtc_id,
							       &vpos, &hpos)) &&
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	    ((vpos >= (99 * rdev->mode_info.crtcs[crtc_id]->base.hwmode.crtc_vdisplay)/100) ||
	     (vpos < 0 && !ASIC_IS_AVIVO(rdev)))) {
		/* crtc didn't flip in this target vblank interval,
		 * but flip is pending in crtc. Based on the current
		 * scanout position we know that the current frame is
		 * (nearly) complete and the flip will (likely)
		 * complete before the start of the next frame.
		 */
		update_pending = 0;
	}
	if (update_pending) {
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		/* crtc didn't flip in this target vblank interval,
		 * but flip is pending in crtc. It will complete it
		 * in next vblank interval, so complete the flip at
		 * next vblank irq.
		 */
		radeon_crtc->deferred_flip_completion = 1;
		spin_unlock_irqrestore(&rdev->ddev->event_lock, flags);
		return;
	}

	/* Pageflip (will be) certainly completed in this vblank. Clean up. */
	radeon_crtc->unpin_work = NULL;

	/* wakeup userspace */
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	if (work->event)
		drm_send_vblank_event(rdev->ddev, crtc_id, work->event);

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	spin_unlock_irqrestore(&rdev->ddev->event_lock, flags);

	drm_vblank_put(rdev->ddev, radeon_crtc->crtc_id);
	radeon_fence_unref(&work->fence);
	radeon_post_page_flip(work->rdev, work->crtc_id);
	schedule_work(&work->work);
}

static int radeon_crtc_page_flip(struct drm_crtc *crtc,
				 struct drm_framebuffer *fb,
				 struct drm_pending_vblank_event *event)
{
	struct drm_device *dev = crtc->dev;
	struct radeon_device *rdev = dev->dev_private;
	struct radeon_crtc *radeon_crtc = to_radeon_crtc(crtc);
	struct radeon_framebuffer *old_radeon_fb;
	struct radeon_framebuffer *new_radeon_fb;
	struct drm_gem_object *obj;
	struct radeon_bo *rbo;
	struct radeon_unpin_work *work;
	unsigned long flags;
	u32 tiling_flags, pitch_pixels;
	u64 base;
	int r;

	work = kzalloc(sizeof *work, GFP_KERNEL);
	if (work == NULL)
		return -ENOMEM;

	work->event = event;
	work->rdev = rdev;
	work->crtc_id = radeon_crtc->crtc_id;
	old_radeon_fb = to_radeon_framebuffer(crtc->fb);
	new_radeon_fb = to_radeon_framebuffer(fb);
	/* schedule unpin of the old buffer */
	obj = old_radeon_fb->obj;
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	/* take a reference to the old object */
	drm_gem_object_reference(obj);
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	rbo = gem_to_radeon_bo(obj);
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	work->old_rbo = rbo;
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	obj = new_radeon_fb->obj;
	rbo = gem_to_radeon_bo(obj);
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	spin_lock(&rbo->tbo.bdev->fence_lock);
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	if (rbo->tbo.sync_obj)
		work->fence = radeon_fence_ref(rbo->tbo.sync_obj);
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	spin_unlock(&rbo->tbo.bdev->fence_lock);

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	INIT_WORK(&work->work, radeon_unpin_work_func);

	/* We borrow the event spin lock for protecting unpin_work */
	spin_lock_irqsave(&dev->event_lock, flags);
	if (radeon_crtc->unpin_work) {
		DRM_DEBUG_DRIVER("flip queue: crtc already busy\n");
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		r = -EBUSY;
		goto unlock_free;
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	}
	radeon_crtc->unpin_work = work;
	radeon_crtc->deferred_flip_completion = 0;
	spin_unlock_irqrestore(&dev->event_lock, flags);

	/* pin the new buffer */
	DRM_DEBUG_DRIVER("flip-ioctl() cur_fbo = %p, cur_bbo = %p\n",
			 work->old_rbo, rbo);

	r = radeon_bo_reserve(rbo, false);
	if (unlikely(r != 0)) {
		DRM_ERROR("failed to reserve new rbo buffer before flip\n");
		goto pflip_cleanup;
	}
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	/* Only 27 bit offset for legacy CRTC */
	r = radeon_bo_pin_restricted(rbo, RADEON_GEM_DOMAIN_VRAM,
				     ASIC_IS_AVIVO(rdev) ? 0 : 1 << 27, &base);
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	if (unlikely(r != 0)) {
		radeon_bo_unreserve(rbo);
		r = -EINVAL;
		DRM_ERROR("failed to pin new rbo buffer before flip\n");
		goto pflip_cleanup;
	}
	radeon_bo_get_tiling_flags(rbo, &tiling_flags, NULL);
	radeon_bo_unreserve(rbo);

	if (!ASIC_IS_AVIVO(rdev)) {
		/* crtc offset is from display base addr not FB location */
		base -= radeon_crtc->legacy_display_base_addr;
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		pitch_pixels = fb->pitches[0] / (fb->bits_per_pixel / 8);
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		if (tiling_flags & RADEON_TILING_MACRO) {
			if (ASIC_IS_R300(rdev)) {
				base &= ~0x7ff;
			} else {
				int byteshift = fb->bits_per_pixel >> 4;
				int tile_addr = (((crtc->y >> 3) * pitch_pixels +  crtc->x) >> (8 - byteshift)) << 11;
				base += tile_addr + ((crtc->x << byteshift) % 256) + ((crtc->y % 8) << 8);
			}
		} else {
			int offset = crtc->y * pitch_pixels + crtc->x;
			switch (fb->bits_per_pixel) {
			case 8:
			default:
				offset *= 1;
				break;
			case 15:
			case 16:
				offset *= 2;
				break;
			case 24:
				offset *= 3;
				break;
			case 32:
				offset *= 4;
				break;
			}
			base += offset;
		}
		base &= ~7;
	}

	spin_lock_irqsave(&dev->event_lock, flags);
	work->new_crtc_base = base;
	spin_unlock_irqrestore(&dev->event_lock, flags);

	/* update crtc fb */
	crtc->fb = fb;

	r = drm_vblank_get(dev, radeon_crtc->crtc_id);
	if (r) {
		DRM_ERROR("failed to get vblank before flip\n");
		goto pflip_cleanup1;
	}

	/* set the proper interrupt */
	radeon_pre_page_flip(rdev, radeon_crtc->crtc_id);

	return 0;

pflip_cleanup1:
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	if (unlikely(radeon_bo_reserve(rbo, false) != 0)) {
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		DRM_ERROR("failed to reserve new rbo in error path\n");
		goto pflip_cleanup;
	}
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	if (unlikely(radeon_bo_unpin(rbo) != 0)) {
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		DRM_ERROR("failed to unpin new rbo in error path\n");
	}
	radeon_bo_unreserve(rbo);

pflip_cleanup:
	spin_lock_irqsave(&dev->event_lock, flags);
	radeon_crtc->unpin_work = NULL;
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unlock_free:
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	spin_unlock_irqrestore(&dev->event_lock, flags);
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	drm_gem_object_unreference_unlocked(old_radeon_fb->obj);
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	radeon_fence_unref(&work->fence);
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	kfree(work);

	return r;
}

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static const struct drm_crtc_funcs radeon_crtc_funcs = {
	.cursor_set = radeon_crtc_cursor_set,
	.cursor_move = radeon_crtc_cursor_move,
	.gamma_set = radeon_crtc_gamma_set,
	.set_config = drm_crtc_helper_set_config,
	.destroy = radeon_crtc_destroy,
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	.page_flip = radeon_crtc_page_flip,
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};

static void radeon_crtc_init(struct drm_device *dev, int index)
{
	struct radeon_device *rdev = dev->dev_private;
	struct radeon_crtc *radeon_crtc;
	int i;

	radeon_crtc = kzalloc(sizeof(struct radeon_crtc) + (RADEONFB_CONN_LIMIT * sizeof(struct drm_connector *)), GFP_KERNEL);
	if (radeon_crtc == NULL)
		return;

	drm_crtc_init(dev, &radeon_crtc->base, &radeon_crtc_funcs);

	drm_mode_crtc_set_gamma_size(&radeon_crtc->base, 256);
	radeon_crtc->crtc_id = index;
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	rdev->mode_info.crtcs[index] = radeon_crtc;
520

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	if (rdev->family >= CHIP_BONAIRE) {
		radeon_crtc->max_cursor_width = CIK_CURSOR_WIDTH;
		radeon_crtc->max_cursor_height = CIK_CURSOR_HEIGHT;
	} else {
		radeon_crtc->max_cursor_width = CURSOR_WIDTH;
		radeon_crtc->max_cursor_height = CURSOR_HEIGHT;
	}

529
#if 0
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	radeon_crtc->mode_set.crtc = &radeon_crtc->base;
	radeon_crtc->mode_set.connectors = (struct drm_connector **)(radeon_crtc + 1);
	radeon_crtc->mode_set.num_connectors = 0;
533
#endif
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	for (i = 0; i < 256; i++) {
		radeon_crtc->lut_r[i] = i << 2;
		radeon_crtc->lut_g[i] = i << 2;
		radeon_crtc->lut_b[i] = i << 2;
	}

	if (rdev->is_atom_bios && (ASIC_IS_AVIVO(rdev) || radeon_r4xx_atom))
		radeon_atombios_init_crtc(dev, radeon_crtc);
	else
		radeon_legacy_init_crtc(dev, radeon_crtc);
}

547
static const char *encoder_names[38] = {
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	"NONE",
	"INTERNAL_LVDS",
	"INTERNAL_TMDS1",
	"INTERNAL_TMDS2",
	"INTERNAL_DAC1",
	"INTERNAL_DAC2",
	"INTERNAL_SDVOA",
	"INTERNAL_SDVOB",
	"SI170B",
	"CH7303",
	"CH7301",
	"INTERNAL_DVO1",
	"EXTERNAL_SDVOA",
	"EXTERNAL_SDVOB",
	"TITFP513",
	"INTERNAL_LVTM1",
	"VT1623",
	"HDMI_SI1930",
	"HDMI_INTERNAL",
	"INTERNAL_KLDSCP_TMDS1",
	"INTERNAL_KLDSCP_DVO1",
	"INTERNAL_KLDSCP_DAC1",
	"INTERNAL_KLDSCP_DAC2",
	"SI178",
	"MVPU_FPGA",
	"INTERNAL_DDI",
	"VT1625",
	"HDMI_SI1932",
	"DP_AN9801",
	"DP_DP501",
	"INTERNAL_UNIPHY",
	"INTERNAL_KLDSCP_LVTMA",
	"INTERNAL_UNIPHY1",
	"INTERNAL_UNIPHY2",
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	"NUTMEG",
	"TRAVIS",
584 585
	"INTERNAL_VCE",
	"INTERNAL_UNIPHY3",
586 587
};

588
static const char *hpd_names[6] = {
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	"HPD1",
	"HPD2",
	"HPD3",
	"HPD4",
	"HPD5",
	"HPD6",
};

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static void radeon_print_display_setup(struct drm_device *dev)
{
	struct drm_connector *connector;
	struct radeon_connector *radeon_connector;
	struct drm_encoder *encoder;
	struct radeon_encoder *radeon_encoder;
	uint32_t devices;
	int i = 0;

	DRM_INFO("Radeon Display Connectors\n");
	list_for_each_entry(connector, &dev->mode_config.connector_list, head) {
		radeon_connector = to_radeon_connector(connector);
		DRM_INFO("Connector %d:\n", i);
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		DRM_INFO("  %s\n", drm_get_connector_name(connector));
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		if (radeon_connector->hpd.hpd != RADEON_HPD_NONE)
			DRM_INFO("  %s\n", hpd_names[radeon_connector->hpd.hpd]);
613
		if (radeon_connector->ddc_bus) {
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			DRM_INFO("  DDC: 0x%x 0x%x 0x%x 0x%x 0x%x 0x%x 0x%x 0x%x\n",
				 radeon_connector->ddc_bus->rec.mask_clk_reg,
				 radeon_connector->ddc_bus->rec.mask_data_reg,
				 radeon_connector->ddc_bus->rec.a_clk_reg,
				 radeon_connector->ddc_bus->rec.a_data_reg,
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				 radeon_connector->ddc_bus->rec.en_clk_reg,
				 radeon_connector->ddc_bus->rec.en_data_reg,
				 radeon_connector->ddc_bus->rec.y_clk_reg,
				 radeon_connector->ddc_bus->rec.y_data_reg);
623
			if (radeon_connector->router.ddc_valid)
624
				DRM_INFO("  DDC Router 0x%x/0x%x\n",
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					 radeon_connector->router.ddc_mux_control_pin,
					 radeon_connector->router.ddc_mux_state);
			if (radeon_connector->router.cd_valid)
				DRM_INFO("  Clock/Data Router 0x%x/0x%x\n",
					 radeon_connector->router.cd_mux_control_pin,
					 radeon_connector->router.cd_mux_state);
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		} else {
			if (connector->connector_type == DRM_MODE_CONNECTOR_VGA ||
			    connector->connector_type == DRM_MODE_CONNECTOR_DVII ||
			    connector->connector_type == DRM_MODE_CONNECTOR_DVID ||
			    connector->connector_type == DRM_MODE_CONNECTOR_DVIA ||
			    connector->connector_type == DRM_MODE_CONNECTOR_HDMIA ||
			    connector->connector_type == DRM_MODE_CONNECTOR_HDMIB)
				DRM_INFO("  DDC: no ddc bus - possible BIOS bug - please report to xorg-driver-ati@lists.x.org\n");
		}
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		DRM_INFO("  Encoders:\n");
		list_for_each_entry(encoder, &dev->mode_config.encoder_list, head) {
			radeon_encoder = to_radeon_encoder(encoder);
			devices = radeon_encoder->devices & radeon_connector->devices;
			if (devices) {
				if (devices & ATOM_DEVICE_CRT1_SUPPORT)
					DRM_INFO("    CRT1: %s\n", encoder_names[radeon_encoder->encoder_id]);
				if (devices & ATOM_DEVICE_CRT2_SUPPORT)
					DRM_INFO("    CRT2: %s\n", encoder_names[radeon_encoder->encoder_id]);
				if (devices & ATOM_DEVICE_LCD1_SUPPORT)
					DRM_INFO("    LCD1: %s\n", encoder_names[radeon_encoder->encoder_id]);
				if (devices & ATOM_DEVICE_DFP1_SUPPORT)
					DRM_INFO("    DFP1: %s\n", encoder_names[radeon_encoder->encoder_id]);
				if (devices & ATOM_DEVICE_DFP2_SUPPORT)
					DRM_INFO("    DFP2: %s\n", encoder_names[radeon_encoder->encoder_id]);
				if (devices & ATOM_DEVICE_DFP3_SUPPORT)
					DRM_INFO("    DFP3: %s\n", encoder_names[radeon_encoder->encoder_id]);
				if (devices & ATOM_DEVICE_DFP4_SUPPORT)
					DRM_INFO("    DFP4: %s\n", encoder_names[radeon_encoder->encoder_id]);
				if (devices & ATOM_DEVICE_DFP5_SUPPORT)
					DRM_INFO("    DFP5: %s\n", encoder_names[radeon_encoder->encoder_id]);
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				if (devices & ATOM_DEVICE_DFP6_SUPPORT)
					DRM_INFO("    DFP6: %s\n", encoder_names[radeon_encoder->encoder_id]);
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				if (devices & ATOM_DEVICE_TV1_SUPPORT)
					DRM_INFO("    TV1: %s\n", encoder_names[radeon_encoder->encoder_id]);
				if (devices & ATOM_DEVICE_CV_SUPPORT)
					DRM_INFO("    CV: %s\n", encoder_names[radeon_encoder->encoder_id]);
			}
		}
		i++;
	}
}

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static bool radeon_setup_enc_conn(struct drm_device *dev)
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{
	struct radeon_device *rdev = dev->dev_private;
	bool ret = false;

	if (rdev->bios) {
		if (rdev->is_atom_bios) {
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			ret = radeon_get_atom_connector_info_from_supported_devices_table(dev);
			if (ret == false)
682
				ret = radeon_get_atom_connector_info_from_object_table(dev);
683
		} else {
684
			ret = radeon_get_legacy_connector_info_from_bios(dev);
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			if (ret == false)
				ret = radeon_get_legacy_connector_info_from_table(dev);
		}
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	} else {
		if (!ASIC_IS_AVIVO(rdev))
			ret = radeon_get_legacy_connector_info_from_table(dev);
	}
	if (ret) {
693
		radeon_setup_encoder_clones(dev);
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		radeon_print_display_setup(dev);
	}

	return ret;
}

int radeon_ddc_get_modes(struct radeon_connector *radeon_connector)
{
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	struct drm_device *dev = radeon_connector->base.dev;
	struct radeon_device *rdev = dev->dev_private;
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	int ret = 0;

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	/* on hw with routers, select right port */
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	if (radeon_connector->router.ddc_valid)
		radeon_router_select_ddc_port(radeon_connector);
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	if (radeon_connector_encoder_get_dp_bridge_encoder_id(&radeon_connector->base) !=
	    ENCODER_OBJECT_ID_NONE) {
		struct radeon_connector_atom_dig *dig = radeon_connector->con_priv;

		if (dig->dp_i2c_bus)
			radeon_connector->edid = drm_get_edid(&radeon_connector->base,
							      &dig->dp_i2c_bus->adapter);
	} else if ((radeon_connector->base.connector_type == DRM_MODE_CONNECTOR_DisplayPort) ||
		   (radeon_connector->base.connector_type == DRM_MODE_CONNECTOR_eDP)) {
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		struct radeon_connector_atom_dig *dig = radeon_connector->con_priv;
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		if ((dig->dp_sink_type == CONNECTOR_OBJECT_ID_DISPLAYPORT ||
		     dig->dp_sink_type == CONNECTOR_OBJECT_ID_eDP) && dig->dp_i2c_bus)
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			radeon_connector->edid = drm_get_edid(&radeon_connector->base,
							      &dig->dp_i2c_bus->adapter);
		else if (radeon_connector->ddc_bus && !radeon_connector->edid)
			radeon_connector->edid = drm_get_edid(&radeon_connector->base,
							      &radeon_connector->ddc_bus->adapter);
	} else {
		if (radeon_connector->ddc_bus && !radeon_connector->edid)
			radeon_connector->edid = drm_get_edid(&radeon_connector->base,
							      &radeon_connector->ddc_bus->adapter);
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	}
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	if (!radeon_connector->edid) {
		if (rdev->is_atom_bios) {
			/* some laptops provide a hardcoded edid in rom for LCDs */
			if (((radeon_connector->base.connector_type == DRM_MODE_CONNECTOR_LVDS) ||
			     (radeon_connector->base.connector_type == DRM_MODE_CONNECTOR_eDP)))
				radeon_connector->edid = radeon_bios_get_hardcoded_edid(rdev);
		} else
			/* some servers provide a hardcoded edid in rom for KVMs */
			radeon_connector->edid = radeon_bios_get_hardcoded_edid(rdev);
	}
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	if (radeon_connector->edid) {
		drm_mode_connector_update_edid_property(&radeon_connector->base, radeon_connector->edid);
		ret = drm_add_edid_modes(&radeon_connector->base, radeon_connector->edid);
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		return ret;
	}
	drm_mode_connector_update_edid_property(&radeon_connector->base, NULL);
750
	return 0;
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}

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/* avivo */
static void avivo_get_fb_div(struct radeon_pll *pll,
			     u32 target_clock,
			     u32 post_div,
			     u32 ref_div,
			     u32 *fb_div,
			     u32 *frac_fb_div)
{
	u32 tmp = post_div * ref_div;

	tmp *= target_clock;
	*fb_div = tmp / pll->reference_freq;
	*frac_fb_div = tmp % pll->reference_freq;
766 767 768 769 770

        if (*fb_div > pll->max_feedback_div)
		*fb_div = pll->max_feedback_div;
        else if (*fb_div < pll->min_feedback_div)
                *fb_div = pll->min_feedback_div;
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}

static u32 avivo_get_post_div(struct radeon_pll *pll,
			      u32 target_clock)
{
	u32 vco, post_div, tmp;

	if (pll->flags & RADEON_PLL_USE_POST_DIV)
		return pll->post_div;

	if (pll->flags & RADEON_PLL_PREFER_MINM_OVER_MAXP) {
		if (pll->flags & RADEON_PLL_IS_LCD)
			vco = pll->lcd_pll_out_min;
		else
			vco = pll->pll_out_min;
	} else {
		if (pll->flags & RADEON_PLL_IS_LCD)
			vco = pll->lcd_pll_out_max;
		else
			vco = pll->pll_out_max;
	}

	post_div = vco / target_clock;
	tmp = vco % target_clock;

	if (pll->flags & RADEON_PLL_PREFER_MINM_OVER_MAXP) {
		if (tmp)
			post_div++;
	} else {
		if (!tmp)
			post_div--;
	}

804 805 806 807 808
	if (post_div > pll->max_post_div)
		post_div = pll->max_post_div;
	else if (post_div < pll->min_post_div)
		post_div = pll->min_post_div;

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	return post_div;
}

#define MAX_TOLERANCE 10

void radeon_compute_pll_avivo(struct radeon_pll *pll,
			      u32 freq,
			      u32 *dot_clock_p,
			      u32 *fb_div_p,
			      u32 *frac_fb_div_p,
			      u32 *ref_div_p,
			      u32 *post_div_p)
{
	u32 target_clock = freq / 10;
	u32 post_div = avivo_get_post_div(pll, target_clock);
	u32 ref_div = pll->min_ref_div;
	u32 fb_div = 0, frac_fb_div = 0, tmp;

	if (pll->flags & RADEON_PLL_USE_REF_DIV)
		ref_div = pll->reference_div;

	if (pll->flags & RADEON_PLL_USE_FRAC_FB_DIV) {
		avivo_get_fb_div(pll, target_clock, post_div, ref_div, &fb_div, &frac_fb_div);
		frac_fb_div = (100 * frac_fb_div) / pll->reference_freq;
		if (frac_fb_div >= 5) {
			frac_fb_div -= 5;
			frac_fb_div = frac_fb_div / 10;
			frac_fb_div++;
		}
		if (frac_fb_div >= 10) {
			fb_div++;
			frac_fb_div = 0;
		}
	} else {
		while (ref_div <= pll->max_ref_div) {
			avivo_get_fb_div(pll, target_clock, post_div, ref_div,
					 &fb_div, &frac_fb_div);
			if (frac_fb_div >= (pll->reference_freq / 2))
				fb_div++;
			frac_fb_div = 0;
			tmp = (pll->reference_freq * fb_div) / (post_div * ref_div);
			tmp = (tmp * 10000) / target_clock;

			if (tmp > (10000 + MAX_TOLERANCE))
				ref_div++;
			else if (tmp >= (10000 - MAX_TOLERANCE))
				break;
			else
				ref_div++;
		}
	}

	*dot_clock_p = ((pll->reference_freq * fb_div * 10) + (pll->reference_freq * frac_fb_div)) /
		(ref_div * post_div * 10);
	*fb_div_p = fb_div;
	*frac_fb_div_p = frac_fb_div;
	*ref_div_p = ref_div;
	*post_div_p = post_div;
	DRM_DEBUG_KMS("%d, pll dividers - fb: %d.%d ref: %d, post %d\n",
		      *dot_clock_p, fb_div, frac_fb_div, ref_div, post_div);
}

/* pre-avivo */
872 873 874 875 876 877 878 879 880 881
static inline uint32_t radeon_div(uint64_t n, uint32_t d)
{
	uint64_t mod;

	n += d / 2;

	mod = do_div(n, d);
	return n;
}

882 883 884 885 886 887 888
void radeon_compute_pll_legacy(struct radeon_pll *pll,
			       uint64_t freq,
			       uint32_t *dot_clock_p,
			       uint32_t *fb_div_p,
			       uint32_t *frac_fb_div_p,
			       uint32_t *ref_div_p,
			       uint32_t *post_div_p)
889 890 891
{
	uint32_t min_ref_div = pll->min_ref_div;
	uint32_t max_ref_div = pll->max_ref_div;
892 893
	uint32_t min_post_div = pll->min_post_div;
	uint32_t max_post_div = pll->max_post_div;
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	uint32_t min_fractional_feed_div = 0;
	uint32_t max_fractional_feed_div = 0;
	uint32_t best_vco = pll->best_vco;
	uint32_t best_post_div = 1;
	uint32_t best_ref_div = 1;
	uint32_t best_feedback_div = 1;
	uint32_t best_frac_feedback_div = 0;
	uint32_t best_freq = -1;
	uint32_t best_error = 0xffffffff;
	uint32_t best_vco_diff = 1;
	uint32_t post_div;
905
	u32 pll_out_min, pll_out_max;
906

907
	DRM_DEBUG_KMS("PLL freq %llu %u %u\n", freq, pll->min_ref_div, pll->max_ref_div);
908 909
	freq = freq * 1000;

910 911 912 913 914 915 916 917
	if (pll->flags & RADEON_PLL_IS_LCD) {
		pll_out_min = pll->lcd_pll_out_min;
		pll_out_max = pll->lcd_pll_out_max;
	} else {
		pll_out_min = pll->pll_out_min;
		pll_out_max = pll->pll_out_max;
	}

918 919 920
	if (pll_out_min > 64800)
		pll_out_min = 64800;

921
	if (pll->flags & RADEON_PLL_USE_REF_DIV)
922 923 924 925 926 927 928 929 930 931 932 933 934 935
		min_ref_div = max_ref_div = pll->reference_div;
	else {
		while (min_ref_div < max_ref_div-1) {
			uint32_t mid = (min_ref_div + max_ref_div) / 2;
			uint32_t pll_in = pll->reference_freq / mid;
			if (pll_in < pll->pll_in_min)
				max_ref_div = mid;
			else if (pll_in > pll->pll_in_max)
				min_ref_div = mid;
			else
				break;
		}
	}

936 937 938 939
	if (pll->flags & RADEON_PLL_USE_POST_DIV)
		min_post_div = max_post_div = pll->post_div;

	if (pll->flags & RADEON_PLL_USE_FRAC_FB_DIV) {
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		min_fractional_feed_div = pll->min_frac_feedback_div;
		max_fractional_feed_div = pll->max_frac_feedback_div;
	}

944
	for (post_div = max_post_div; post_div >= min_post_div; --post_div) {
945 946
		uint32_t ref_div;

947
		if ((pll->flags & RADEON_PLL_NO_ODD_POST_DIV) && (post_div & 1))
948 949 950
			continue;

		/* legacy radeons only have a few post_divs */
951
		if (pll->flags & RADEON_PLL_LEGACY) {
952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982 983
			if ((post_div == 5) ||
			    (post_div == 7) ||
			    (post_div == 9) ||
			    (post_div == 10) ||
			    (post_div == 11) ||
			    (post_div == 13) ||
			    (post_div == 14) ||
			    (post_div == 15))
				continue;
		}

		for (ref_div = min_ref_div; ref_div <= max_ref_div; ++ref_div) {
			uint32_t feedback_div, current_freq = 0, error, vco_diff;
			uint32_t pll_in = pll->reference_freq / ref_div;
			uint32_t min_feed_div = pll->min_feedback_div;
			uint32_t max_feed_div = pll->max_feedback_div + 1;

			if (pll_in < pll->pll_in_min || pll_in > pll->pll_in_max)
				continue;

			while (min_feed_div < max_feed_div) {
				uint32_t vco;
				uint32_t min_frac_feed_div = min_fractional_feed_div;
				uint32_t max_frac_feed_div = max_fractional_feed_div + 1;
				uint32_t frac_feedback_div;
				uint64_t tmp;

				feedback_div = (min_feed_div + max_feed_div) / 2;

				tmp = (uint64_t)pll->reference_freq * feedback_div;
				vco = radeon_div(tmp, ref_div);

984
				if (vco < pll_out_min) {
985 986
					min_feed_div = feedback_div + 1;
					continue;
987
				} else if (vco > pll_out_max) {
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					max_feed_div = feedback_div;
					continue;
				}

				while (min_frac_feed_div < max_frac_feed_div) {
					frac_feedback_div = (min_frac_feed_div + max_frac_feed_div) / 2;
					tmp = (uint64_t)pll->reference_freq * 10000 * feedback_div;
					tmp += (uint64_t)pll->reference_freq * 1000 * frac_feedback_div;
					current_freq = radeon_div(tmp, ref_div * post_div);

998
					if (pll->flags & RADEON_PLL_PREFER_CLOSEST_LOWER) {
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						if (freq < current_freq)
							error = 0xffffffff;
						else
							error = freq - current_freq;
1003 1004
					} else
						error = abs(current_freq - freq);
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					vco_diff = abs(vco - best_vco);

					if ((best_vco == 0 && error < best_error) ||
					    (best_vco != 0 &&
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					     ((best_error > 100 && error < best_error - 100) ||
1010
					      (abs(error - best_error) < 100 && vco_diff < best_vco_diff)))) {
1011 1012 1013 1014 1015 1016 1017
						best_post_div = post_div;
						best_ref_div = ref_div;
						best_feedback_div = feedback_div;
						best_frac_feedback_div = frac_feedback_div;
						best_freq = current_freq;
						best_error = error;
						best_vco_diff = vco_diff;
1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040
					} else if (current_freq == freq) {
						if (best_freq == -1) {
							best_post_div = post_div;
							best_ref_div = ref_div;
							best_feedback_div = feedback_div;
							best_frac_feedback_div = frac_feedback_div;
							best_freq = current_freq;
							best_error = error;
							best_vco_diff = vco_diff;
						} else if (((pll->flags & RADEON_PLL_PREFER_LOW_REF_DIV) && (ref_div < best_ref_div)) ||
							   ((pll->flags & RADEON_PLL_PREFER_HIGH_REF_DIV) && (ref_div > best_ref_div)) ||
							   ((pll->flags & RADEON_PLL_PREFER_LOW_FB_DIV) && (feedback_div < best_feedback_div)) ||
							   ((pll->flags & RADEON_PLL_PREFER_HIGH_FB_DIV) && (feedback_div > best_feedback_div)) ||
							   ((pll->flags & RADEON_PLL_PREFER_LOW_POST_DIV) && (post_div < best_post_div)) ||
							   ((pll->flags & RADEON_PLL_PREFER_HIGH_POST_DIV) && (post_div > best_post_div))) {
							best_post_div = post_div;
							best_ref_div = ref_div;
							best_feedback_div = feedback_div;
							best_frac_feedback_div = frac_feedback_div;
							best_freq = current_freq;
							best_error = error;
							best_vco_diff = vco_diff;
						}
1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059
					}
					if (current_freq < freq)
						min_frac_feed_div = frac_feedback_div + 1;
					else
						max_frac_feed_div = frac_feedback_div;
				}
				if (current_freq < freq)
					min_feed_div = feedback_div + 1;
				else
					max_feed_div = feedback_div;
			}
		}
	}

	*dot_clock_p = best_freq / 10000;
	*fb_div_p = best_feedback_div;
	*frac_fb_div_p = best_frac_feedback_div;
	*ref_div_p = best_ref_div;
	*post_div_p = best_post_div;
1060 1061 1062
	DRM_DEBUG_KMS("%lld %d, pll dividers - fb: %d.%d ref: %d, post %d\n",
		      (long long)freq,
		      best_freq / 1000, best_feedback_div, best_frac_feedback_div,
1063 1064
		      best_ref_div, best_post_div);

1065 1066 1067 1068 1069 1070
}

static void radeon_user_framebuffer_destroy(struct drm_framebuffer *fb)
{
	struct radeon_framebuffer *radeon_fb = to_radeon_framebuffer(fb);

1071
	if (radeon_fb->obj) {
1072
		drm_gem_object_unreference_unlocked(radeon_fb->obj);
1073
	}
1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091
	drm_framebuffer_cleanup(fb);
	kfree(radeon_fb);
}

static int radeon_user_framebuffer_create_handle(struct drm_framebuffer *fb,
						  struct drm_file *file_priv,
						  unsigned int *handle)
{
	struct radeon_framebuffer *radeon_fb = to_radeon_framebuffer(fb);

	return drm_gem_handle_create(file_priv, radeon_fb->obj, handle);
}

static const struct drm_framebuffer_funcs radeon_fb_funcs = {
	.destroy = radeon_user_framebuffer_destroy,
	.create_handle = radeon_user_framebuffer_create_handle,
};

1092
int
1093 1094
radeon_framebuffer_init(struct drm_device *dev,
			struct radeon_framebuffer *rfb,
1095
			struct drm_mode_fb_cmd2 *mode_cmd,
1096
			struct drm_gem_object *obj)
1097
{
1098
	int ret;
1099
	rfb->obj = obj;
1100
	drm_helper_mode_fill_fb_struct(&rfb->base, mode_cmd);
1101 1102 1103 1104 1105 1106
	ret = drm_framebuffer_init(dev, &rfb->base, &radeon_fb_funcs);
	if (ret) {
		rfb->obj = NULL;
		return ret;
	}
	return 0;
1107 1108 1109 1110 1111
}

static struct drm_framebuffer *
radeon_user_framebuffer_create(struct drm_device *dev,
			       struct drm_file *file_priv,
1112
			       struct drm_mode_fb_cmd2 *mode_cmd)
1113 1114
{
	struct drm_gem_object *obj;
1115
	struct radeon_framebuffer *radeon_fb;
1116
	int ret;
1117

1118
	obj = drm_gem_object_lookup(dev, file_priv, mode_cmd->handles[0]);
1119 1120
	if (obj ==  NULL) {
		dev_err(&dev->pdev->dev, "No GEM object associated to handle 0x%08X, "
1121
			"can't create framebuffer\n", mode_cmd->handles[0]);
1122
		return ERR_PTR(-ENOENT);
1123
	}
1124 1125

	radeon_fb = kzalloc(sizeof(*radeon_fb), GFP_KERNEL);
1126 1127
	if (radeon_fb == NULL) {
		drm_gem_object_unreference_unlocked(obj);
1128
		return ERR_PTR(-ENOMEM);
1129
	}
1130

1131 1132 1133 1134
	ret = radeon_framebuffer_init(dev, radeon_fb, mode_cmd, obj);
	if (ret) {
		kfree(radeon_fb);
		drm_gem_object_unreference_unlocked(obj);
1135
		return ERR_PTR(ret);
1136
	}
1137 1138

	return &radeon_fb->base;
1139 1140
}

1141 1142 1143 1144 1145 1146
static void radeon_output_poll_changed(struct drm_device *dev)
{
	struct radeon_device *rdev = dev->dev_private;
	radeon_fb_output_poll_changed(rdev);
}

1147 1148
static const struct drm_mode_config_funcs radeon_mode_funcs = {
	.fb_create = radeon_user_framebuffer_create,
1149
	.output_poll_changed = radeon_output_poll_changed
1150 1151
};

1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167
static struct drm_prop_enum_list radeon_tmds_pll_enum_list[] =
{	{ 0, "driver" },
	{ 1, "bios" },
};

static struct drm_prop_enum_list radeon_tv_std_enum_list[] =
{	{ TV_STD_NTSC, "ntsc" },
	{ TV_STD_PAL, "pal" },
	{ TV_STD_PAL_M, "pal-m" },
	{ TV_STD_PAL_60, "pal-60" },
	{ TV_STD_NTSC_J, "ntsc-j" },
	{ TV_STD_SCART_PAL, "scart-pal" },
	{ TV_STD_PAL_CN, "pal-cn" },
	{ TV_STD_SECAM, "secam" },
};

1168 1169 1170 1171 1172 1173
static struct drm_prop_enum_list radeon_underscan_enum_list[] =
{	{ UNDERSCAN_OFF, "off" },
	{ UNDERSCAN_ON, "on" },
	{ UNDERSCAN_AUTO, "auto" },
};

1174
static int radeon_modeset_create_props(struct radeon_device *rdev)
1175
{
1176
	int sz;
1177 1178 1179

	if (rdev->is_atom_bios) {
		rdev->mode_info.coherent_mode_property =
1180
			drm_property_create_range(rdev->ddev, 0 , "coherent", 0, 1);
1181 1182 1183 1184 1185 1186 1187
		if (!rdev->mode_info.coherent_mode_property)
			return -ENOMEM;
	}

	if (!ASIC_IS_AVIVO(rdev)) {
		sz = ARRAY_SIZE(radeon_tmds_pll_enum_list);
		rdev->mode_info.tmds_pll_property =
1188 1189 1190
			drm_property_create_enum(rdev->ddev, 0,
					    "tmds_pll",
					    radeon_tmds_pll_enum_list, sz);
1191 1192 1193
	}

	rdev->mode_info.load_detect_property =
1194
		drm_property_create_range(rdev->ddev, 0, "load detection", 0, 1);
1195 1196 1197 1198 1199 1200 1201
	if (!rdev->mode_info.load_detect_property)
		return -ENOMEM;

	drm_mode_create_scaling_mode_property(rdev->ddev);

	sz = ARRAY_SIZE(radeon_tv_std_enum_list);
	rdev->mode_info.tv_std_property =
1202 1203 1204
		drm_property_create_enum(rdev->ddev, 0,
				    "tv standard",
				    radeon_tv_std_enum_list, sz);
1205

1206 1207
	sz = ARRAY_SIZE(radeon_underscan_enum_list);
	rdev->mode_info.underscan_property =
1208 1209 1210
		drm_property_create_enum(rdev->ddev, 0,
				    "underscan",
				    radeon_underscan_enum_list, sz);
1211

1212
	rdev->mode_info.underscan_hborder_property =
1213 1214
		drm_property_create_range(rdev->ddev, 0,
					"underscan hborder", 0, 128);
1215 1216 1217 1218
	if (!rdev->mode_info.underscan_hborder_property)
		return -ENOMEM;

	rdev->mode_info.underscan_vborder_property =
1219 1220
		drm_property_create_range(rdev->ddev, 0,
					"underscan vborder", 0, 128);
1221 1222 1223
	if (!rdev->mode_info.underscan_vborder_property)
		return -ENOMEM;

1224 1225 1226
	return 0;
}

1227 1228 1229 1230 1231 1232 1233
void radeon_update_display_priority(struct radeon_device *rdev)
{
	/* adjustment options for the display watermarks */
	if ((radeon_disp_priority == 0) || (radeon_disp_priority > 2)) {
		/* set display priority to high for r3xx, rv515 chips
		 * this avoids flickering due to underflow to the
		 * display controllers during heavy acceleration.
1234 1235
		 * Don't force high on rs4xx igp chips as it seems to
		 * affect the sound card.  See kernel bug 15982.
1236
		 */
1237 1238
		if ((ASIC_IS_R300(rdev) || (rdev->family == CHIP_RV515)) &&
		    !(rdev->flags & RADEON_IS_IGP))
1239 1240 1241 1242 1243 1244 1245 1246
			rdev->disp_priority = 2;
		else
			rdev->disp_priority = 0;
	} else
		rdev->disp_priority = radeon_disp_priority;

}

1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259
/*
 * Allocate hdmi structs and determine register offsets
 */
static void radeon_afmt_init(struct radeon_device *rdev)
{
	int i;

	for (i = 0; i < RADEON_MAX_AFMT_BLOCKS; i++)
		rdev->mode_info.afmt[i] = NULL;

	if (ASIC_IS_DCE6(rdev)) {
		/* todo */
	} else if (ASIC_IS_DCE4(rdev)) {
1260 1261 1262 1263 1264 1265 1266 1267 1268 1269
		static uint32_t eg_offsets[] = {
			EVERGREEN_CRTC0_REGISTER_OFFSET,
			EVERGREEN_CRTC1_REGISTER_OFFSET,
			EVERGREEN_CRTC2_REGISTER_OFFSET,
			EVERGREEN_CRTC3_REGISTER_OFFSET,
			EVERGREEN_CRTC4_REGISTER_OFFSET,
			EVERGREEN_CRTC5_REGISTER_OFFSET,
		};
		int num_afmt;

1270 1271
		/* DCE4/5 has 6 audio blocks tied to DIG encoders */
		/* DCE4.1 has 2 audio blocks tied to DIG encoders */
1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284
		if (ASIC_IS_DCE5(rdev))
			num_afmt = 6;
		else if (ASIC_IS_DCE41(rdev))
			num_afmt = 2;
		else /* DCE4 */
			num_afmt = 6;

		BUG_ON(num_afmt > ARRAY_SIZE(eg_offsets));
		for (i = 0; i < num_afmt; i++) {
			rdev->mode_info.afmt[i] = kzalloc(sizeof(struct radeon_afmt), GFP_KERNEL);
			if (rdev->mode_info.afmt[i]) {
				rdev->mode_info.afmt[i]->offset = eg_offsets[i];
				rdev->mode_info.afmt[i]->id = i;
1285 1286 1287 1288 1289 1290 1291 1292 1293 1294 1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326
			}
		}
	} else if (ASIC_IS_DCE3(rdev)) {
		/* DCE3.x has 2 audio blocks tied to DIG encoders */
		rdev->mode_info.afmt[0] = kzalloc(sizeof(struct radeon_afmt), GFP_KERNEL);
		if (rdev->mode_info.afmt[0]) {
			rdev->mode_info.afmt[0]->offset = DCE3_HDMI_OFFSET0;
			rdev->mode_info.afmt[0]->id = 0;
		}
		rdev->mode_info.afmt[1] = kzalloc(sizeof(struct radeon_afmt), GFP_KERNEL);
		if (rdev->mode_info.afmt[1]) {
			rdev->mode_info.afmt[1]->offset = DCE3_HDMI_OFFSET1;
			rdev->mode_info.afmt[1]->id = 1;
		}
	} else if (ASIC_IS_DCE2(rdev)) {
		/* DCE2 has at least 1 routable audio block */
		rdev->mode_info.afmt[0] = kzalloc(sizeof(struct radeon_afmt), GFP_KERNEL);
		if (rdev->mode_info.afmt[0]) {
			rdev->mode_info.afmt[0]->offset = DCE2_HDMI_OFFSET0;
			rdev->mode_info.afmt[0]->id = 0;
		}
		/* r6xx has 2 routable audio blocks */
		if (rdev->family >= CHIP_R600) {
			rdev->mode_info.afmt[1] = kzalloc(sizeof(struct radeon_afmt), GFP_KERNEL);
			if (rdev->mode_info.afmt[1]) {
				rdev->mode_info.afmt[1]->offset = DCE2_HDMI_OFFSET1;
				rdev->mode_info.afmt[1]->id = 1;
			}
		}
	}
}

static void radeon_afmt_fini(struct radeon_device *rdev)
{
	int i;

	for (i = 0; i < RADEON_MAX_AFMT_BLOCKS; i++) {
		kfree(rdev->mode_info.afmt[i]);
		rdev->mode_info.afmt[i] = NULL;
	}
}

1327 1328
int radeon_modeset_init(struct radeon_device *rdev)
{
1329
	int i;
1330 1331 1332 1333 1334
	int ret;

	drm_mode_config_init(rdev->ddev);
	rdev->mode_info.mode_config_initialized = true;

1335
	rdev->ddev->mode_config.funcs = &radeon_mode_funcs;
1336

1337 1338 1339 1340
	if (ASIC_IS_DCE5(rdev)) {
		rdev->ddev->mode_config.max_width = 16384;
		rdev->ddev->mode_config.max_height = 16384;
	} else if (ASIC_IS_AVIVO(rdev)) {
1341 1342 1343 1344 1345 1346 1347
		rdev->ddev->mode_config.max_width = 8192;
		rdev->ddev->mode_config.max_height = 8192;
	} else {
		rdev->ddev->mode_config.max_width = 4096;
		rdev->ddev->mode_config.max_height = 4096;
	}

1348 1349 1350
	rdev->ddev->mode_config.preferred_depth = 24;
	rdev->ddev->mode_config.prefer_shadow = 1;

1351 1352
	rdev->ddev->mode_config.fb_base = rdev->mc.aper_base;

1353 1354 1355 1356
	ret = radeon_modeset_create_props(rdev);
	if (ret) {
		return ret;
	}
1357

1358 1359 1360
	/* init i2c buses */
	radeon_i2c_init(rdev);

1361 1362 1363 1364 1365 1366
	/* check combios for a valid hardcoded EDID - Sun servers */
	if (!rdev->is_atom_bios) {
		/* check for hardcoded EDID in BIOS */
		radeon_combios_check_hardcoded_edid(rdev);
	}

1367
	/* allocate crtcs */
1368
	for (i = 0; i < rdev->num_crtc; i++) {
1369 1370 1371 1372 1373 1374 1375 1376
		radeon_crtc_init(rdev->ddev, i);
	}

	/* okay we should have all the bios connectors */
	ret = radeon_setup_enc_conn(rdev->ddev);
	if (!ret) {
		return ret;
	}
1377

1378 1379
	/* init dig PHYs, disp eng pll */
	if (rdev->is_atom_bios) {
1380
		radeon_atom_encoder_init(rdev);
1381
		radeon_atom_disp_eng_pll_init(rdev);
1382
	}
1383

A
Alex Deucher 已提交
1384 1385
	/* initialize hpd */
	radeon_hpd_init(rdev);
1386

1387 1388 1389
	/* setup afmt */
	radeon_afmt_init(rdev);

1390 1391 1392
	/* Initialize power management */
	radeon_pm_init(rdev);

1393
	radeon_fbdev_init(rdev);
1394 1395
	drm_kms_helper_poll_init(rdev->ddev);

1396 1397 1398 1399 1400
	return 0;
}

void radeon_modeset_fini(struct radeon_device *rdev)
{
1401
	radeon_fbdev_fini(rdev);
1402
	kfree(rdev->mode_info.bios_hardcoded_edid);
1403
	radeon_pm_fini(rdev);
1404

1405
	if (rdev->mode_info.mode_config_initialized) {
1406
		radeon_afmt_fini(rdev);
1407
		drm_kms_helper_poll_fini(rdev->ddev);
A
Alex Deucher 已提交
1408
		radeon_hpd_fini(rdev);
1409 1410 1411
		drm_mode_config_cleanup(rdev->ddev);
		rdev->mode_info.mode_config_initialized = false;
	}
1412 1413
	/* free i2c buses */
	radeon_i2c_fini(rdev);
1414 1415
}

1416
static bool is_hdtv_mode(const struct drm_display_mode *mode)
1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427
{
	/* try and guess if this is a tv or a monitor */
	if ((mode->vdisplay == 480 && mode->hdisplay == 720) || /* 480p */
	    (mode->vdisplay == 576) || /* 576p */
	    (mode->vdisplay == 720) || /* 720p */
	    (mode->vdisplay == 1080)) /* 1080p */
		return true;
	else
		return false;
}

1428
bool radeon_crtc_scaling_mode_fixup(struct drm_crtc *crtc,
1429
				const struct drm_display_mode *mode,
1430
				struct drm_display_mode *adjusted_mode)
1431
{
1432
	struct drm_device *dev = crtc->dev;
1433
	struct radeon_device *rdev = dev->dev_private;
1434 1435 1436
	struct drm_encoder *encoder;
	struct radeon_crtc *radeon_crtc = to_radeon_crtc(crtc);
	struct radeon_encoder *radeon_encoder;
1437 1438
	struct drm_connector *connector;
	struct radeon_connector *radeon_connector;
1439
	bool first = true;
1440 1441
	u32 src_v = 1, dst_v = 1;
	u32 src_h = 1, dst_h = 1;
1442

1443 1444 1445
	radeon_crtc->h_border = 0;
	radeon_crtc->v_border = 0;

1446 1447 1448
	list_for_each_entry(encoder, &dev->mode_config.encoder_list, head) {
		if (encoder->crtc != crtc)
			continue;
1449
		radeon_encoder = to_radeon_encoder(encoder);
1450 1451 1452
		connector = radeon_get_connector_for_encoder(encoder);
		radeon_connector = to_radeon_connector(connector);

1453
		if (first) {
1454 1455 1456 1457 1458 1459 1460 1461 1462
			/* set scaling */
			if (radeon_encoder->rmx_type == RMX_OFF)
				radeon_crtc->rmx_type = RMX_OFF;
			else if (mode->hdisplay < radeon_encoder->native_mode.hdisplay ||
				 mode->vdisplay < radeon_encoder->native_mode.vdisplay)
				radeon_crtc->rmx_type = radeon_encoder->rmx_type;
			else
				radeon_crtc->rmx_type = RMX_OFF;
			/* copy native mode */
1463
			memcpy(&radeon_crtc->native_mode,
1464
			       &radeon_encoder->native_mode,
1465
				sizeof(struct drm_display_mode));
1466 1467 1468 1469
			src_v = crtc->mode.vdisplay;
			dst_v = radeon_crtc->native_mode.vdisplay;
			src_h = crtc->mode.hdisplay;
			dst_h = radeon_crtc->native_mode.hdisplay;
1470 1471 1472

			/* fix up for overscan on hdmi */
			if (ASIC_IS_AVIVO(rdev) &&
1473
			    (!(mode->flags & DRM_MODE_FLAG_INTERLACE)) &&
1474 1475
			    ((radeon_encoder->underscan_type == UNDERSCAN_ON) ||
			     ((radeon_encoder->underscan_type == UNDERSCAN_AUTO) &&
1476 1477
			      drm_detect_hdmi_monitor(radeon_connector->edid) &&
			      is_hdtv_mode(mode)))) {
1478 1479 1480 1481 1482 1483 1484 1485
				if (radeon_encoder->underscan_hborder != 0)
					radeon_crtc->h_border = radeon_encoder->underscan_hborder;
				else
					radeon_crtc->h_border = (mode->hdisplay >> 5) + 16;
				if (radeon_encoder->underscan_vborder != 0)
					radeon_crtc->v_border = radeon_encoder->underscan_vborder;
				else
					radeon_crtc->v_border = (mode->vdisplay >> 5) + 16;
1486 1487 1488 1489 1490 1491
				radeon_crtc->rmx_type = RMX_FULL;
				src_v = crtc->mode.vdisplay;
				dst_v = crtc->mode.vdisplay - (radeon_crtc->v_border * 2);
				src_h = crtc->mode.hdisplay;
				dst_h = crtc->mode.hdisplay - (radeon_crtc->h_border * 2);
			}
1492 1493 1494 1495 1496
			first = false;
		} else {
			if (radeon_crtc->rmx_type != radeon_encoder->rmx_type) {
				/* WARNING: Right now this can't happen but
				 * in the future we need to check that scaling
1497
				 * are consistent across different encoder
1498 1499 1500
				 * (ie all encoder can work with the same
				 *  scaling).
				 */
1501
				DRM_ERROR("Scaling not consistent across encoder.\n");
1502 1503
				return false;
			}
1504 1505
		}
	}
1506 1507
	if (radeon_crtc->rmx_type != RMX_OFF) {
		fixed20_12 a, b;
1508 1509
		a.full = dfixed_const(src_v);
		b.full = dfixed_const(dst_v);
1510
		radeon_crtc->vsc.full = dfixed_div(a, b);
1511 1512
		a.full = dfixed_const(src_h);
		b.full = dfixed_const(dst_h);
1513
		radeon_crtc->hsc.full = dfixed_div(a, b);
1514
	} else {
1515 1516
		radeon_crtc->vsc.full = dfixed_const(1);
		radeon_crtc->hsc.full = dfixed_const(1);
1517
	}
1518
	return true;
1519
}
1520 1521 1522 1523

/*
 * Retrieve current video scanout position of crtc on a given gpu.
 *
1524
 * \param dev Device to query.
1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535
 * \param crtc Crtc to query.
 * \param *vpos Location where vertical scanout position should be stored.
 * \param *hpos Location where horizontal scanout position should go.
 *
 * Returns vpos as a positive number while in active scanout area.
 * Returns vpos as a negative number inside vblank, counting the number
 * of scanlines to go until end of vblank, e.g., -1 means "one scanline
 * until start of active scanout / end of vblank."
 *
 * \return Flags, or'ed together as follows:
 *
L
Lucas De Marchi 已提交
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 * DRM_SCANOUTPOS_VALID = Query successful.
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 * DRM_SCANOUTPOS_INVBL = Inside vblank.
 * DRM_SCANOUTPOS_ACCURATE = Returned position is accurate. A lack of
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 * this flag means that returned position may be offset by a constant but
 * unknown small number of scanlines wrt. real scanout position.
 *
 */
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int radeon_get_crtc_scanoutpos(struct drm_device *dev, int crtc, int *vpos, int *hpos)
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{
	u32 stat_crtc = 0, vbl = 0, position = 0;
	int vbl_start, vbl_end, vtotal, ret = 0;
	bool in_vbl = true;

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	struct radeon_device *rdev = dev->dev_private;

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	if (ASIC_IS_DCE4(rdev)) {
		if (crtc == 0) {
			vbl = RREG32(EVERGREEN_CRTC_V_BLANK_START_END +
				     EVERGREEN_CRTC0_REGISTER_OFFSET);
			position = RREG32(EVERGREEN_CRTC_STATUS_POSITION +
					  EVERGREEN_CRTC0_REGISTER_OFFSET);
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			ret |= DRM_SCANOUTPOS_VALID;
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		}
		if (crtc == 1) {
			vbl = RREG32(EVERGREEN_CRTC_V_BLANK_START_END +
				     EVERGREEN_CRTC1_REGISTER_OFFSET);
			position = RREG32(EVERGREEN_CRTC_STATUS_POSITION +
					  EVERGREEN_CRTC1_REGISTER_OFFSET);
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			ret |= DRM_SCANOUTPOS_VALID;
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		}
		if (crtc == 2) {
			vbl = RREG32(EVERGREEN_CRTC_V_BLANK_START_END +
				     EVERGREEN_CRTC2_REGISTER_OFFSET);
			position = RREG32(EVERGREEN_CRTC_STATUS_POSITION +
					  EVERGREEN_CRTC2_REGISTER_OFFSET);
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			ret |= DRM_SCANOUTPOS_VALID;
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		}
		if (crtc == 3) {
			vbl = RREG32(EVERGREEN_CRTC_V_BLANK_START_END +
				     EVERGREEN_CRTC3_REGISTER_OFFSET);
			position = RREG32(EVERGREEN_CRTC_STATUS_POSITION +
					  EVERGREEN_CRTC3_REGISTER_OFFSET);
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			ret |= DRM_SCANOUTPOS_VALID;
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		}
		if (crtc == 4) {
			vbl = RREG32(EVERGREEN_CRTC_V_BLANK_START_END +
				     EVERGREEN_CRTC4_REGISTER_OFFSET);
			position = RREG32(EVERGREEN_CRTC_STATUS_POSITION +
					  EVERGREEN_CRTC4_REGISTER_OFFSET);
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			ret |= DRM_SCANOUTPOS_VALID;
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		}
		if (crtc == 5) {
			vbl = RREG32(EVERGREEN_CRTC_V_BLANK_START_END +
				     EVERGREEN_CRTC5_REGISTER_OFFSET);
			position = RREG32(EVERGREEN_CRTC_STATUS_POSITION +
					  EVERGREEN_CRTC5_REGISTER_OFFSET);
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			ret |= DRM_SCANOUTPOS_VALID;
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		}
	} else if (ASIC_IS_AVIVO(rdev)) {
		if (crtc == 0) {
			vbl = RREG32(AVIVO_D1CRTC_V_BLANK_START_END);
			position = RREG32(AVIVO_D1CRTC_STATUS_POSITION);
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			ret |= DRM_SCANOUTPOS_VALID;
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		}
		if (crtc == 1) {
			vbl = RREG32(AVIVO_D2CRTC_V_BLANK_START_END);
			position = RREG32(AVIVO_D2CRTC_STATUS_POSITION);
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			ret |= DRM_SCANOUTPOS_VALID;
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		}
	} else {
		/* Pre-AVIVO: Different encoding of scanout pos and vblank interval. */
		if (crtc == 0) {
			/* Assume vbl_end == 0, get vbl_start from
			 * upper 16 bits.
			 */
			vbl = (RREG32(RADEON_CRTC_V_TOTAL_DISP) &
				RADEON_CRTC_V_DISP) >> RADEON_CRTC_V_DISP_SHIFT;
			/* Only retrieve vpos from upper 16 bits, set hpos == 0. */
			position = (RREG32(RADEON_CRTC_VLINE_CRNT_VLINE) >> 16) & RADEON_CRTC_V_TOTAL;
			stat_crtc = RREG32(RADEON_CRTC_STATUS);
			if (!(stat_crtc & 1))
				in_vbl = false;

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			ret |= DRM_SCANOUTPOS_VALID;
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		}
		if (crtc == 1) {
			vbl = (RREG32(RADEON_CRTC2_V_TOTAL_DISP) &
				RADEON_CRTC_V_DISP) >> RADEON_CRTC_V_DISP_SHIFT;
			position = (RREG32(RADEON_CRTC2_VLINE_CRNT_VLINE) >> 16) & RADEON_CRTC_V_TOTAL;
			stat_crtc = RREG32(RADEON_CRTC2_STATUS);
			if (!(stat_crtc & 1))
				in_vbl = false;

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			ret |= DRM_SCANOUTPOS_VALID;
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		}
	}

	/* Decode into vertical and horizontal scanout position. */
	*vpos = position & 0x1fff;
	*hpos = (position >> 16) & 0x1fff;

	/* Valid vblank area boundaries from gpu retrieved? */
	if (vbl > 0) {
		/* Yes: Decode. */
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		ret |= DRM_SCANOUTPOS_ACCURATE;
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		vbl_start = vbl & 0x1fff;
		vbl_end = (vbl >> 16) & 0x1fff;
	}
	else {
		/* No: Fake something reasonable which gives at least ok results. */
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		vbl_start = rdev->mode_info.crtcs[crtc]->base.hwmode.crtc_vdisplay;
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		vbl_end = 0;
	}

	/* Test scanout position against vblank region. */
	if ((*vpos < vbl_start) && (*vpos >= vbl_end))
		in_vbl = false;

	/* Check if inside vblank area and apply corrective offsets:
	 * vpos will then be >=0 in video scanout area, but negative
	 * within vblank area, counting down the number of lines until
	 * start of scanout.
	 */

	/* Inside "upper part" of vblank area? Apply corrective offset if so: */
	if (in_vbl && (*vpos >= vbl_start)) {
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		vtotal = rdev->mode_info.crtcs[crtc]->base.hwmode.crtc_vtotal;
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		*vpos = *vpos - vtotal;
	}

	/* Correct for shifted end of vbl at vbl_end. */
	*vpos = *vpos - vbl_end;

	/* In vblank? */
	if (in_vbl)
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		ret |= DRM_SCANOUTPOS_INVBL;
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	return ret;
}