intel_uncore.c 42.9 KB
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/*
 * Copyright © 2013 Intel Corporation
 *
 * 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.
 */

#include "i915_drv.h"
#include "intel_drv.h"
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#include "i915_vgpu.h"
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#include <linux/pm_runtime.h>

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#define FORCEWAKE_ACK_TIMEOUT_MS 50
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#define __raw_posting_read(dev_priv__, reg__) (void)__raw_i915_read32((dev_priv__), (reg__))
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static const char * const forcewake_domain_names[] = {
	"render",
	"blitter",
	"media",
};

const char *
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intel_uncore_forcewake_domain_to_str(const enum forcewake_domain_id id)
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{
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	BUILD_BUG_ON(ARRAY_SIZE(forcewake_domain_names) != FW_DOMAIN_ID_COUNT);
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	if (id >= 0 && id < FW_DOMAIN_ID_COUNT)
		return forcewake_domain_names[id];

	WARN_ON(id);

	return "unknown";
}

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static void
assert_device_not_suspended(struct drm_i915_private *dev_priv)
{
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	WARN_ONCE(HAS_RUNTIME_PM(dev_priv->dev) && dev_priv->pm.suspended,
		  "Device suspended\n");
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}
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static inline void
fw_domain_reset(const struct intel_uncore_forcewake_domain *d)
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{
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	WARN_ON(!i915_mmio_reg_valid(d->reg_set));
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	__raw_i915_write32(d->i915, d->reg_set, d->val_reset);
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}

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static inline void
fw_domain_arm_timer(struct intel_uncore_forcewake_domain *d)
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{
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	mod_timer_pinned(&d->timer, jiffies + 1);
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}

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static inline void
fw_domain_wait_ack_clear(const struct intel_uncore_forcewake_domain *d)
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{
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	if (wait_for_atomic((__raw_i915_read32(d->i915, d->reg_ack) &
			     FORCEWAKE_KERNEL) == 0,
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			    FORCEWAKE_ACK_TIMEOUT_MS))
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		DRM_ERROR("%s: timed out waiting for forcewake ack to clear.\n",
			  intel_uncore_forcewake_domain_to_str(d->id));
}
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static inline void
fw_domain_get(const struct intel_uncore_forcewake_domain *d)
{
	__raw_i915_write32(d->i915, d->reg_set, d->val_set);
}
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static inline void
fw_domain_wait_ack(const struct intel_uncore_forcewake_domain *d)
{
	if (wait_for_atomic((__raw_i915_read32(d->i915, d->reg_ack) &
			     FORCEWAKE_KERNEL),
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			    FORCEWAKE_ACK_TIMEOUT_MS))
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		DRM_ERROR("%s: timed out waiting for forcewake ack request.\n",
			  intel_uncore_forcewake_domain_to_str(d->id));
}
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static inline void
fw_domain_put(const struct intel_uncore_forcewake_domain *d)
{
	__raw_i915_write32(d->i915, d->reg_set, d->val_clear);
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}

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static inline void
fw_domain_posting_read(const struct intel_uncore_forcewake_domain *d)
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{
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	/* something from same cacheline, but not from the set register */
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	if (i915_mmio_reg_valid(d->reg_post))
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		__raw_posting_read(d->i915, d->reg_post);
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}

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static void
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fw_domains_get(struct drm_i915_private *dev_priv, enum forcewake_domains fw_domains)
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{
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	struct intel_uncore_forcewake_domain *d;
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	enum forcewake_domain_id id;
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	for_each_fw_domain_mask(d, fw_domains, dev_priv, id) {
		fw_domain_wait_ack_clear(d);
		fw_domain_get(d);
		fw_domain_wait_ack(d);
	}
}
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static void
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fw_domains_put(struct drm_i915_private *dev_priv, enum forcewake_domains fw_domains)
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{
	struct intel_uncore_forcewake_domain *d;
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	enum forcewake_domain_id id;
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	for_each_fw_domain_mask(d, fw_domains, dev_priv, id) {
		fw_domain_put(d);
		fw_domain_posting_read(d);
	}
}
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static void
fw_domains_posting_read(struct drm_i915_private *dev_priv)
{
	struct intel_uncore_forcewake_domain *d;
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	enum forcewake_domain_id id;
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	/* No need to do for all, just do for first found */
	for_each_fw_domain(d, dev_priv, id) {
		fw_domain_posting_read(d);
		break;
	}
}

static void
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fw_domains_reset(struct drm_i915_private *dev_priv, enum forcewake_domains fw_domains)
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{
	struct intel_uncore_forcewake_domain *d;
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	enum forcewake_domain_id id;
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	if (dev_priv->uncore.fw_domains == 0)
		return;
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	for_each_fw_domain_mask(d, fw_domains, dev_priv, id)
		fw_domain_reset(d);

	fw_domains_posting_read(dev_priv);
}

static void __gen6_gt_wait_for_thread_c0(struct drm_i915_private *dev_priv)
{
	/* w/a for a sporadic read returning 0 by waiting for the GT
	 * thread to wake up.
	 */
	if (wait_for_atomic_us((__raw_i915_read32(dev_priv, GEN6_GT_THREAD_STATUS_REG) &
				GEN6_GT_THREAD_STATUS_CORE_MASK) == 0, 500))
		DRM_ERROR("GT thread status wait timed out\n");
}

static void fw_domains_get_with_thread_status(struct drm_i915_private *dev_priv,
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					      enum forcewake_domains fw_domains)
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{
	fw_domains_get(dev_priv, fw_domains);
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	/* WaRsForcewakeWaitTC0:snb,ivb,hsw,bdw,vlv */
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	__gen6_gt_wait_for_thread_c0(dev_priv);
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}

static void gen6_gt_check_fifodbg(struct drm_i915_private *dev_priv)
{
	u32 gtfifodbg;
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	gtfifodbg = __raw_i915_read32(dev_priv, GTFIFODBG);
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	if (WARN(gtfifodbg, "GT wake FIFO error 0x%x\n", gtfifodbg))
		__raw_i915_write32(dev_priv, GTFIFODBG, gtfifodbg);
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}

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static void fw_domains_put_with_fifo(struct drm_i915_private *dev_priv,
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				     enum forcewake_domains fw_domains)
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{
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	fw_domains_put(dev_priv, fw_domains);
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	gen6_gt_check_fifodbg(dev_priv);
}

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static inline u32 fifo_free_entries(struct drm_i915_private *dev_priv)
{
	u32 count = __raw_i915_read32(dev_priv, GTFIFOCTL);

	return count & GT_FIFO_FREE_ENTRIES_MASK;
}

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static int __gen6_gt_wait_for_fifo(struct drm_i915_private *dev_priv)
{
	int ret = 0;

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	/* On VLV, FIFO will be shared by both SW and HW.
	 * So, we need to read the FREE_ENTRIES everytime */
	if (IS_VALLEYVIEW(dev_priv->dev))
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		dev_priv->uncore.fifo_count = fifo_free_entries(dev_priv);
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	if (dev_priv->uncore.fifo_count < GT_FIFO_NUM_RESERVED_ENTRIES) {
		int loop = 500;
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		u32 fifo = fifo_free_entries(dev_priv);

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		while (fifo <= GT_FIFO_NUM_RESERVED_ENTRIES && loop--) {
			udelay(10);
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			fifo = fifo_free_entries(dev_priv);
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		}
		if (WARN_ON(loop < 0 && fifo <= GT_FIFO_NUM_RESERVED_ENTRIES))
			++ret;
		dev_priv->uncore.fifo_count = fifo;
	}
	dev_priv->uncore.fifo_count--;

	return ret;
}

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static void intel_uncore_fw_release_timer(unsigned long arg)
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{
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	struct intel_uncore_forcewake_domain *domain = (void *)arg;
	unsigned long irqflags;
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	assert_device_not_suspended(domain->i915);
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	spin_lock_irqsave(&domain->i915->uncore.lock, irqflags);
	if (WARN_ON(domain->wake_count == 0))
		domain->wake_count++;

	if (--domain->wake_count == 0)
		domain->i915->uncore.funcs.force_wake_put(domain->i915,
							  1 << domain->id);

	spin_unlock_irqrestore(&domain->i915->uncore.lock, irqflags);
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}

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void intel_uncore_forcewake_reset(struct drm_device *dev, bool restore)
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{
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	struct drm_i915_private *dev_priv = dev->dev_private;
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	unsigned long irqflags;
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	struct intel_uncore_forcewake_domain *domain;
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	int retry_count = 100;
	enum forcewake_domain_id id;
	enum forcewake_domains fw = 0, active_domains;
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	/* Hold uncore.lock across reset to prevent any register access
	 * with forcewake not set correctly. Wait until all pending
	 * timers are run before holding.
	 */
	while (1) {
		active_domains = 0;
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		for_each_fw_domain(domain, dev_priv, id) {
			if (del_timer_sync(&domain->timer) == 0)
				continue;
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			intel_uncore_fw_release_timer((unsigned long)domain);
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		}
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		spin_lock_irqsave(&dev_priv->uncore.lock, irqflags);
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		for_each_fw_domain(domain, dev_priv, id) {
			if (timer_pending(&domain->timer))
				active_domains |= (1 << id);
		}
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		if (active_domains == 0)
			break;
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		if (--retry_count == 0) {
			DRM_ERROR("Timed out waiting for forcewake timers to finish\n");
			break;
		}
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		spin_unlock_irqrestore(&dev_priv->uncore.lock, irqflags);
		cond_resched();
	}
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	WARN_ON(active_domains);

	for_each_fw_domain(domain, dev_priv, id)
		if (domain->wake_count)
			fw |= 1 << id;

	if (fw)
		dev_priv->uncore.funcs.force_wake_put(dev_priv, fw);
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	fw_domains_reset(dev_priv, FORCEWAKE_ALL);
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	if (restore) { /* If reset with a user forcewake, try to restore */
		if (fw)
			dev_priv->uncore.funcs.force_wake_get(dev_priv, fw);

		if (IS_GEN6(dev) || IS_GEN7(dev))
			dev_priv->uncore.fifo_count =
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				fifo_free_entries(dev_priv);
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	}

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	if (!restore)
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		assert_forcewakes_inactive(dev_priv);
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	spin_unlock_irqrestore(&dev_priv->uncore.lock, irqflags);
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}

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static void intel_uncore_ellc_detect(struct drm_device *dev)
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{
	struct drm_i915_private *dev_priv = dev->dev_private;

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	if ((IS_HASWELL(dev) || IS_BROADWELL(dev) ||
	     INTEL_INFO(dev)->gen >= 9) &&
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	    (__raw_i915_read32(dev_priv, HSW_EDRAM_PRESENT) & EDRAM_ENABLED)) {
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		/* The docs do not explain exactly how the calculation can be
		 * made. It is somewhat guessable, but for now, it's always
		 * 128MB.
		 * NB: We can't write IDICR yet because we do not have gt funcs
		 * set up */
		dev_priv->ellc_size = 128;
		DRM_INFO("Found %zuMB of eLLC\n", dev_priv->ellc_size);
	}
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}

static void __intel_uncore_early_sanitize(struct drm_device *dev,
					  bool restore_forcewake)
{
	struct drm_i915_private *dev_priv = dev->dev_private;

	if (HAS_FPGA_DBG_UNCLAIMED(dev))
		__raw_i915_write32(dev_priv, FPGA_DBG, FPGA_DBG_RM_NOCLAIM);
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	/* clear out old GT FIFO errors */
	if (IS_GEN6(dev) || IS_GEN7(dev))
		__raw_i915_write32(dev_priv, GTFIFODBG,
				   __raw_i915_read32(dev_priv, GTFIFODBG));

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	/* WaDisableShadowRegForCpd:chv */
	if (IS_CHERRYVIEW(dev)) {
		__raw_i915_write32(dev_priv, GTFIFOCTL,
				   __raw_i915_read32(dev_priv, GTFIFOCTL) |
				   GT_FIFO_CTL_BLOCK_ALL_POLICY_STALL |
				   GT_FIFO_CTL_RC6_POLICY_STALL);
	}

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	intel_uncore_forcewake_reset(dev, restore_forcewake);
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}

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void intel_uncore_early_sanitize(struct drm_device *dev, bool restore_forcewake)
{
	__intel_uncore_early_sanitize(dev, restore_forcewake);
	i915_check_and_clear_faults(dev);
}

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void intel_uncore_sanitize(struct drm_device *dev)
{
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	/* BIOS often leaves RC6 enabled, but disable it for hw init */
	intel_disable_gt_powersave(dev);
}

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static void __intel_uncore_forcewake_get(struct drm_i915_private *dev_priv,
					 enum forcewake_domains fw_domains)
{
	struct intel_uncore_forcewake_domain *domain;
	enum forcewake_domain_id id;

	if (!dev_priv->uncore.funcs.force_wake_get)
		return;

	fw_domains &= dev_priv->uncore.fw_domains;

	for_each_fw_domain_mask(domain, fw_domains, dev_priv, id) {
		if (domain->wake_count++)
			fw_domains &= ~(1 << id);
	}

	if (fw_domains)
		dev_priv->uncore.funcs.force_wake_get(dev_priv, fw_domains);
}

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/**
 * intel_uncore_forcewake_get - grab forcewake domain references
 * @dev_priv: i915 device instance
 * @fw_domains: forcewake domains to get reference on
 *
 * This function can be used get GT's forcewake domain references.
 * Normal register access will handle the forcewake domains automatically.
 * However if some sequence requires the GT to not power down a particular
 * forcewake domains this function should be called at the beginning of the
 * sequence. And subsequently the reference should be dropped by symmetric
 * call to intel_unforce_forcewake_put(). Usually caller wants all the domains
 * to be kept awake so the @fw_domains would be then FORCEWAKE_ALL.
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 */
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void intel_uncore_forcewake_get(struct drm_i915_private *dev_priv,
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				enum forcewake_domains fw_domains)
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{
	unsigned long irqflags;

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	if (!dev_priv->uncore.funcs.force_wake_get)
		return;

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	WARN_ON(dev_priv->pm.suspended);
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	spin_lock_irqsave(&dev_priv->uncore.lock, irqflags);
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	__intel_uncore_forcewake_get(dev_priv, fw_domains);
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	spin_unlock_irqrestore(&dev_priv->uncore.lock, irqflags);
}

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/**
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 * intel_uncore_forcewake_get__locked - grab forcewake domain references
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 * @dev_priv: i915 device instance
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 * @fw_domains: forcewake domains to get reference on
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 *
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 * See intel_uncore_forcewake_get(). This variant places the onus
 * on the caller to explicitly handle the dev_priv->uncore.lock spinlock.
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 */
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void intel_uncore_forcewake_get__locked(struct drm_i915_private *dev_priv,
					enum forcewake_domains fw_domains)
{
	assert_spin_locked(&dev_priv->uncore.lock);

	if (!dev_priv->uncore.funcs.force_wake_get)
		return;

	__intel_uncore_forcewake_get(dev_priv, fw_domains);
}

static void __intel_uncore_forcewake_put(struct drm_i915_private *dev_priv,
					 enum forcewake_domains fw_domains)
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{
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	struct intel_uncore_forcewake_domain *domain;
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	enum forcewake_domain_id id;
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	if (!dev_priv->uncore.funcs.force_wake_put)
		return;

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	fw_domains &= dev_priv->uncore.fw_domains;

	for_each_fw_domain_mask(domain, fw_domains, dev_priv, id) {
		if (WARN_ON(domain->wake_count == 0))
			continue;

		if (--domain->wake_count)
			continue;

		domain->wake_count++;
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		fw_domain_arm_timer(domain);
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	}
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}
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/**
 * intel_uncore_forcewake_put - release a forcewake domain reference
 * @dev_priv: i915 device instance
 * @fw_domains: forcewake domains to put references
 *
 * This function drops the device-level forcewakes for specified
 * domains obtained by intel_uncore_forcewake_get().
 */
void intel_uncore_forcewake_put(struct drm_i915_private *dev_priv,
				enum forcewake_domains fw_domains)
{
	unsigned long irqflags;

	if (!dev_priv->uncore.funcs.force_wake_put)
		return;

	spin_lock_irqsave(&dev_priv->uncore.lock, irqflags);
	__intel_uncore_forcewake_put(dev_priv, fw_domains);
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	spin_unlock_irqrestore(&dev_priv->uncore.lock, irqflags);
}

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/**
 * intel_uncore_forcewake_put__locked - grab forcewake domain references
 * @dev_priv: i915 device instance
 * @fw_domains: forcewake domains to get reference on
 *
 * See intel_uncore_forcewake_put(). This variant places the onus
 * on the caller to explicitly handle the dev_priv->uncore.lock spinlock.
 */
void intel_uncore_forcewake_put__locked(struct drm_i915_private *dev_priv,
					enum forcewake_domains fw_domains)
{
	assert_spin_locked(&dev_priv->uncore.lock);

	if (!dev_priv->uncore.funcs.force_wake_put)
		return;

	__intel_uncore_forcewake_put(dev_priv, fw_domains);
}

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void assert_forcewakes_inactive(struct drm_i915_private *dev_priv)
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{
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	struct intel_uncore_forcewake_domain *domain;
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	enum forcewake_domain_id id;
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	if (!dev_priv->uncore.funcs.force_wake_get)
		return;

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	for_each_fw_domain(domain, dev_priv, id)
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		WARN_ON(domain->wake_count);
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}

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/* We give fast paths for the really cool registers */
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#define NEEDS_FORCE_WAKE(reg) ((reg) < 0x40000)
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#define REG_RANGE(reg, start, end) ((reg) >= (start) && (reg) < (end))
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#define FORCEWAKE_VLV_RENDER_RANGE_OFFSET(reg) \
	(REG_RANGE((reg), 0x2000, 0x4000) || \
	 REG_RANGE((reg), 0x5000, 0x8000) || \
	 REG_RANGE((reg), 0xB000, 0x12000) || \
	 REG_RANGE((reg), 0x2E000, 0x30000))

#define FORCEWAKE_VLV_MEDIA_RANGE_OFFSET(reg) \
	(REG_RANGE((reg), 0x12000, 0x14000) || \
	 REG_RANGE((reg), 0x22000, 0x24000) || \
	 REG_RANGE((reg), 0x30000, 0x40000))

#define FORCEWAKE_CHV_RENDER_RANGE_OFFSET(reg) \
	(REG_RANGE((reg), 0x2000, 0x4000) || \
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	 REG_RANGE((reg), 0x5200, 0x8000) || \
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	 REG_RANGE((reg), 0x8300, 0x8500) || \
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	 REG_RANGE((reg), 0xB000, 0xB480) || \
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	 REG_RANGE((reg), 0xE000, 0xE800))

#define FORCEWAKE_CHV_MEDIA_RANGE_OFFSET(reg) \
	(REG_RANGE((reg), 0x8800, 0x8900) || \
	 REG_RANGE((reg), 0xD000, 0xD800) || \
	 REG_RANGE((reg), 0x12000, 0x14000) || \
	 REG_RANGE((reg), 0x1A000, 0x1C000) || \
	 REG_RANGE((reg), 0x1E800, 0x1EA00) || \
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	 REG_RANGE((reg), 0x30000, 0x38000))
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#define FORCEWAKE_CHV_COMMON_RANGE_OFFSET(reg) \
	(REG_RANGE((reg), 0x4000, 0x5000) || \
	 REG_RANGE((reg), 0x8000, 0x8300) || \
	 REG_RANGE((reg), 0x8500, 0x8600) || \
	 REG_RANGE((reg), 0x9000, 0xB000) || \
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	 REG_RANGE((reg), 0xF000, 0x10000))
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#define FORCEWAKE_GEN9_UNCORE_RANGE_OFFSET(reg) \
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	REG_RANGE((reg), 0xB00,  0x2000)
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#define FORCEWAKE_GEN9_RENDER_RANGE_OFFSET(reg) \
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	(REG_RANGE((reg), 0x2000, 0x2700) || \
	 REG_RANGE((reg), 0x3000, 0x4000) || \
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	 REG_RANGE((reg), 0x5200, 0x8000) || \
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	 REG_RANGE((reg), 0x8140, 0x8160) || \
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	 REG_RANGE((reg), 0x8300, 0x8500) || \
	 REG_RANGE((reg), 0x8C00, 0x8D00) || \
	 REG_RANGE((reg), 0xB000, 0xB480) || \
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	 REG_RANGE((reg), 0xE000, 0xE900) || \
	 REG_RANGE((reg), 0x24400, 0x24800))
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#define FORCEWAKE_GEN9_MEDIA_RANGE_OFFSET(reg) \
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	(REG_RANGE((reg), 0x8130, 0x8140) || \
	 REG_RANGE((reg), 0x8800, 0x8A00) || \
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	 REG_RANGE((reg), 0xD000, 0xD800) || \
	 REG_RANGE((reg), 0x12000, 0x14000) || \
	 REG_RANGE((reg), 0x1A000, 0x1EA00) || \
	 REG_RANGE((reg), 0x30000, 0x40000))

#define FORCEWAKE_GEN9_COMMON_RANGE_OFFSET(reg) \
	REG_RANGE((reg), 0x9400, 0x9800)

#define FORCEWAKE_GEN9_BLITTER_RANGE_OFFSET(reg) \
579
	((reg) < 0x40000 && \
580 581 582 583 584
	 !FORCEWAKE_GEN9_UNCORE_RANGE_OFFSET(reg) && \
	 !FORCEWAKE_GEN9_RENDER_RANGE_OFFSET(reg) && \
	 !FORCEWAKE_GEN9_MEDIA_RANGE_OFFSET(reg) && \
	 !FORCEWAKE_GEN9_COMMON_RANGE_OFFSET(reg))

585 586 587 588 589 590
static void
ilk_dummy_write(struct drm_i915_private *dev_priv)
{
	/* WaIssueDummyWriteToWakeupFromRC6:ilk Issue a dummy write to wake up
	 * the chip from rc6 before touching it for real. MI_MODE is masked,
	 * hence harmless to write 0 into. */
591
	__raw_i915_write32(dev_priv, MI_MODE, 0);
592 593 594
}

static void
595 596
hsw_unclaimed_reg_debug(struct drm_i915_private *dev_priv,
			i915_reg_t reg, bool read, bool before)
597
{
598 599 600 601 602 603
	const char *op = read ? "reading" : "writing to";
	const char *when = before ? "before" : "after";

	if (!i915.mmio_debug)
		return;

604
	if (__raw_i915_read32(dev_priv, FPGA_DBG) & FPGA_DBG_RM_NOCLAIM) {
605
		WARN(1, "Unclaimed register detected %s %s register 0x%x\n",
606
		     when, op, i915_mmio_reg_offset(reg));
607
		__raw_i915_write32(dev_priv, FPGA_DBG, FPGA_DBG_RM_NOCLAIM);
608
		i915.mmio_debug--; /* Only report the first N failures */
609 610 611 612
	}
}

static void
613
hsw_unclaimed_reg_detect(struct drm_i915_private *dev_priv)
614
{
615 616 617
	static bool mmio_debug_once = true;

	if (i915.mmio_debug || !mmio_debug_once)
618 619
		return;

620
	if (__raw_i915_read32(dev_priv, FPGA_DBG) & FPGA_DBG_RM_NOCLAIM) {
621 622 623
		DRM_DEBUG("Unclaimed register detected, "
			  "enabling oneshot unclaimed register reporting. "
			  "Please use i915.mmio_debug=N for more information.\n");
624
		__raw_i915_write32(dev_priv, FPGA_DBG, FPGA_DBG_RM_NOCLAIM);
625
		i915.mmio_debug = mmio_debug_once--;
626 627 628
	}
}

629
#define GEN2_READ_HEADER(x) \
B
Ben Widawsky 已提交
630
	u##x val = 0; \
631
	assert_device_not_suspended(dev_priv);
B
Ben Widawsky 已提交
632

633
#define GEN2_READ_FOOTER \
B
Ben Widawsky 已提交
634 635 636
	trace_i915_reg_rw(false, reg, val, sizeof(val), trace); \
	return val

637
#define __gen2_read(x) \
638
static u##x \
639
gen2_read##x(struct drm_i915_private *dev_priv, i915_reg_t reg, bool trace) { \
640
	GEN2_READ_HEADER(x); \
641
	val = __raw_i915_read##x(dev_priv, reg); \
642
	GEN2_READ_FOOTER; \
643 644 645 646
}

#define __gen5_read(x) \
static u##x \
647
gen5_read##x(struct drm_i915_private *dev_priv, i915_reg_t reg, bool trace) { \
648
	GEN2_READ_HEADER(x); \
649 650
	ilk_dummy_write(dev_priv); \
	val = __raw_i915_read##x(dev_priv, reg); \
651
	GEN2_READ_FOOTER; \
652 653
}

654 655 656 657 658 659 660 661 662 663 664 665 666 667 668 669
__gen5_read(8)
__gen5_read(16)
__gen5_read(32)
__gen5_read(64)
__gen2_read(8)
__gen2_read(16)
__gen2_read(32)
__gen2_read(64)

#undef __gen5_read
#undef __gen2_read

#undef GEN2_READ_FOOTER
#undef GEN2_READ_HEADER

#define GEN6_READ_HEADER(x) \
670
	u32 offset = i915_mmio_reg_offset(reg); \
671 672 673 674 675 676 677 678 679 680
	unsigned long irqflags; \
	u##x val = 0; \
	assert_device_not_suspended(dev_priv); \
	spin_lock_irqsave(&dev_priv->uncore.lock, irqflags)

#define GEN6_READ_FOOTER \
	spin_unlock_irqrestore(&dev_priv->uncore.lock, irqflags); \
	trace_i915_reg_rw(false, reg, val, sizeof(val), trace); \
	return val

681
static inline void __force_wake_get(struct drm_i915_private *dev_priv,
682
				    enum forcewake_domains fw_domains)
683 684
{
	struct intel_uncore_forcewake_domain *domain;
685
	enum forcewake_domain_id id;
686 687 688 689 690

	if (WARN_ON(!fw_domains))
		return;

	/* Ideally GCC would be constant-fold and eliminate this loop */
691
	for_each_fw_domain_mask(domain, fw_domains, dev_priv, id) {
692
		if (domain->wake_count) {
693
			fw_domains &= ~(1 << id);
694 695 696 697
			continue;
		}

		domain->wake_count++;
698
		fw_domain_arm_timer(domain);
699 700 701 702 703 704
	}

	if (fw_domains)
		dev_priv->uncore.funcs.force_wake_get(dev_priv, fw_domains);
}

705 706
#define __gen6_read(x) \
static u##x \
707
gen6_read##x(struct drm_i915_private *dev_priv, i915_reg_t reg, bool trace) { \
708
	GEN6_READ_HEADER(x); \
709
	hsw_unclaimed_reg_debug(dev_priv, reg, true, true); \
710
	if (NEEDS_FORCE_WAKE(offset)) \
711
		__force_wake_get(dev_priv, FORCEWAKE_RENDER); \
712
	val = __raw_i915_read##x(dev_priv, reg); \
713
	hsw_unclaimed_reg_debug(dev_priv, reg, true, false); \
714
	GEN6_READ_FOOTER; \
715 716
}

717 718
#define __vlv_read(x) \
static u##x \
719
vlv_read##x(struct drm_i915_private *dev_priv, i915_reg_t reg, bool trace) { \
720
	enum forcewake_domains fw_engine = 0; \
721
	GEN6_READ_HEADER(x); \
722
	if (!NEEDS_FORCE_WAKE(offset)) \
723
		fw_engine = 0; \
724
	else if (FORCEWAKE_VLV_RENDER_RANGE_OFFSET(offset)) \
725
		fw_engine = FORCEWAKE_RENDER; \
726
	else if (FORCEWAKE_VLV_MEDIA_RANGE_OFFSET(offset)) \
727 728 729
		fw_engine = FORCEWAKE_MEDIA; \
	if (fw_engine) \
		__force_wake_get(dev_priv, fw_engine); \
730
	val = __raw_i915_read##x(dev_priv, reg); \
731
	GEN6_READ_FOOTER; \
732 733
}

734 735
#define __chv_read(x) \
static u##x \
736
chv_read##x(struct drm_i915_private *dev_priv, i915_reg_t reg, bool trace) { \
737
	enum forcewake_domains fw_engine = 0; \
738
	GEN6_READ_HEADER(x); \
739
	if (!NEEDS_FORCE_WAKE(offset)) \
740
		fw_engine = 0; \
741
	else if (FORCEWAKE_CHV_RENDER_RANGE_OFFSET(offset)) \
742
		fw_engine = FORCEWAKE_RENDER; \
743
	else if (FORCEWAKE_CHV_MEDIA_RANGE_OFFSET(offset)) \
744
		fw_engine = FORCEWAKE_MEDIA; \
745
	else if (FORCEWAKE_CHV_COMMON_RANGE_OFFSET(offset)) \
746 747 748
		fw_engine = FORCEWAKE_RENDER | FORCEWAKE_MEDIA; \
	if (fw_engine) \
		__force_wake_get(dev_priv, fw_engine); \
749
	val = __raw_i915_read##x(dev_priv, reg); \
750
	GEN6_READ_FOOTER; \
751
}
752

753
#define SKL_NEEDS_FORCE_WAKE(reg) \
754
	((reg) < 0x40000 && !FORCEWAKE_GEN9_UNCORE_RANGE_OFFSET(reg))
755 756 757

#define __gen9_read(x) \
static u##x \
758
gen9_read##x(struct drm_i915_private *dev_priv, i915_reg_t reg, bool trace) { \
759
	enum forcewake_domains fw_engine; \
760
	GEN6_READ_HEADER(x); \
761
	hsw_unclaimed_reg_debug(dev_priv, reg, true, true); \
762
	if (!SKL_NEEDS_FORCE_WAKE(offset)) \
763
		fw_engine = 0; \
764
	else if (FORCEWAKE_GEN9_RENDER_RANGE_OFFSET(offset)) \
765
		fw_engine = FORCEWAKE_RENDER; \
766
	else if (FORCEWAKE_GEN9_MEDIA_RANGE_OFFSET(offset)) \
767
		fw_engine = FORCEWAKE_MEDIA; \
768
	else if (FORCEWAKE_GEN9_COMMON_RANGE_OFFSET(offset)) \
769 770 771 772 773 774
		fw_engine = FORCEWAKE_RENDER | FORCEWAKE_MEDIA; \
	else \
		fw_engine = FORCEWAKE_BLITTER; \
	if (fw_engine) \
		__force_wake_get(dev_priv, fw_engine); \
	val = __raw_i915_read##x(dev_priv, reg); \
775
	hsw_unclaimed_reg_debug(dev_priv, reg, true, false); \
776
	GEN6_READ_FOOTER; \
777 778 779 780 781 782
}

__gen9_read(8)
__gen9_read(16)
__gen9_read(32)
__gen9_read(64)
783 784 785 786
__chv_read(8)
__chv_read(16)
__chv_read(32)
__chv_read(64)
787 788 789 790
__vlv_read(8)
__vlv_read(16)
__vlv_read(32)
__vlv_read(64)
791 792 793 794 795
__gen6_read(8)
__gen6_read(16)
__gen6_read(32)
__gen6_read(64)

796
#undef __gen9_read
797
#undef __chv_read
798
#undef __vlv_read
799
#undef __gen6_read
800 801
#undef GEN6_READ_FOOTER
#undef GEN6_READ_HEADER
B
Ben Widawsky 已提交
802

803 804 805 806 807 808 809 810 811 812 813 814 815
#define VGPU_READ_HEADER(x) \
	unsigned long irqflags; \
	u##x val = 0; \
	assert_device_not_suspended(dev_priv); \
	spin_lock_irqsave(&dev_priv->uncore.lock, irqflags)

#define VGPU_READ_FOOTER \
	spin_unlock_irqrestore(&dev_priv->uncore.lock, irqflags); \
	trace_i915_reg_rw(false, reg, val, sizeof(val), trace); \
	return val

#define __vgpu_read(x) \
static u##x \
816
vgpu_read##x(struct drm_i915_private *dev_priv, i915_reg_t reg, bool trace) { \
817 818 819 820 821 822 823 824 825 826 827 828 829 830
	VGPU_READ_HEADER(x); \
	val = __raw_i915_read##x(dev_priv, reg); \
	VGPU_READ_FOOTER; \
}

__vgpu_read(8)
__vgpu_read(16)
__vgpu_read(32)
__vgpu_read(64)

#undef __vgpu_read
#undef VGPU_READ_FOOTER
#undef VGPU_READ_HEADER

831
#define GEN2_WRITE_HEADER \
B
Ben Widawsky 已提交
832
	trace_i915_reg_rw(true, reg, val, sizeof(val), trace); \
833
	assert_device_not_suspended(dev_priv); \
834

835
#define GEN2_WRITE_FOOTER
V
Ville Syrjälä 已提交
836

837
#define __gen2_write(x) \
838
static void \
839
gen2_write##x(struct drm_i915_private *dev_priv, i915_reg_t reg, u##x val, bool trace) { \
840
	GEN2_WRITE_HEADER; \
841
	__raw_i915_write##x(dev_priv, reg, val); \
842
	GEN2_WRITE_FOOTER; \
843 844 845 846
}

#define __gen5_write(x) \
static void \
847
gen5_write##x(struct drm_i915_private *dev_priv, i915_reg_t reg, u##x val, bool trace) { \
848
	GEN2_WRITE_HEADER; \
849 850
	ilk_dummy_write(dev_priv); \
	__raw_i915_write##x(dev_priv, reg, val); \
851
	GEN2_WRITE_FOOTER; \
852 853
}

854 855 856 857 858 859 860 861 862 863 864 865 866 867 868 869
__gen5_write(8)
__gen5_write(16)
__gen5_write(32)
__gen5_write(64)
__gen2_write(8)
__gen2_write(16)
__gen2_write(32)
__gen2_write(64)

#undef __gen5_write
#undef __gen2_write

#undef GEN2_WRITE_FOOTER
#undef GEN2_WRITE_HEADER

#define GEN6_WRITE_HEADER \
870
	u32 offset = i915_mmio_reg_offset(reg); \
871 872 873 874 875 876 877 878
	unsigned long irqflags; \
	trace_i915_reg_rw(true, reg, val, sizeof(val), trace); \
	assert_device_not_suspended(dev_priv); \
	spin_lock_irqsave(&dev_priv->uncore.lock, irqflags)

#define GEN6_WRITE_FOOTER \
	spin_unlock_irqrestore(&dev_priv->uncore.lock, irqflags)

879 880
#define __gen6_write(x) \
static void \
881
gen6_write##x(struct drm_i915_private *dev_priv, i915_reg_t reg, u##x val, bool trace) { \
882
	u32 __fifo_ret = 0; \
883
	GEN6_WRITE_HEADER; \
884
	if (NEEDS_FORCE_WAKE(offset)) { \
885 886 887 888 889 890
		__fifo_ret = __gen6_gt_wait_for_fifo(dev_priv); \
	} \
	__raw_i915_write##x(dev_priv, reg, val); \
	if (unlikely(__fifo_ret)) { \
		gen6_gt_check_fifodbg(dev_priv); \
	} \
891
	GEN6_WRITE_FOOTER; \
892 893 894 895
}

#define __hsw_write(x) \
static void \
896
hsw_write##x(struct drm_i915_private *dev_priv, i915_reg_t reg, u##x val, bool trace) { \
897
	u32 __fifo_ret = 0; \
898
	GEN6_WRITE_HEADER; \
899
	if (NEEDS_FORCE_WAKE(offset)) { \
900 901
		__fifo_ret = __gen6_gt_wait_for_fifo(dev_priv); \
	} \
902
	hsw_unclaimed_reg_debug(dev_priv, reg, false, true); \
903
	__raw_i915_write##x(dev_priv, reg, val); \
904 905 906
	if (unlikely(__fifo_ret)) { \
		gen6_gt_check_fifodbg(dev_priv); \
	} \
907 908
	hsw_unclaimed_reg_debug(dev_priv, reg, false, false); \
	hsw_unclaimed_reg_detect(dev_priv); \
909
	GEN6_WRITE_FOOTER; \
910
}
911

912
static const i915_reg_t gen8_shadowed_regs[] = {
913 914 915 916 917 918 919 920 921 922
	FORCEWAKE_MT,
	GEN6_RPNSWREQ,
	GEN6_RC_VIDEO_FREQ,
	RING_TAIL(RENDER_RING_BASE),
	RING_TAIL(GEN6_BSD_RING_BASE),
	RING_TAIL(VEBOX_RING_BASE),
	RING_TAIL(BLT_RING_BASE),
	/* TODO: Other registers are not yet used */
};

923 924
static bool is_gen8_shadowed(struct drm_i915_private *dev_priv,
			     i915_reg_t reg)
925 926 927
{
	int i;
	for (i = 0; i < ARRAY_SIZE(gen8_shadowed_regs); i++)
928
		if (i915_mmio_reg_equal(reg, gen8_shadowed_regs[i]))
929 930 931 932 933 934 935
			return true;

	return false;
}

#define __gen8_write(x) \
static void \
936
gen8_write##x(struct drm_i915_private *dev_priv, i915_reg_t reg, u##x val, bool trace) { \
937
	GEN6_WRITE_HEADER; \
938
	hsw_unclaimed_reg_debug(dev_priv, reg, false, true); \
939
	if (NEEDS_FORCE_WAKE(offset) && !is_gen8_shadowed(dev_priv, reg)) \
940 941
		__force_wake_get(dev_priv, FORCEWAKE_RENDER); \
	__raw_i915_write##x(dev_priv, reg, val); \
942 943
	hsw_unclaimed_reg_debug(dev_priv, reg, false, false); \
	hsw_unclaimed_reg_detect(dev_priv); \
944
	GEN6_WRITE_FOOTER; \
945 946
}

947 948
#define __chv_write(x) \
static void \
949
chv_write##x(struct drm_i915_private *dev_priv, i915_reg_t reg, u##x val, bool trace) { \
950
	enum forcewake_domains fw_engine = 0; \
951
	GEN6_WRITE_HEADER; \
952
	if (!NEEDS_FORCE_WAKE(offset) || \
953
	    is_gen8_shadowed(dev_priv, reg)) \
954
		fw_engine = 0; \
955
	else if (FORCEWAKE_CHV_RENDER_RANGE_OFFSET(offset)) \
956
		fw_engine = FORCEWAKE_RENDER; \
957
	else if (FORCEWAKE_CHV_MEDIA_RANGE_OFFSET(offset)) \
958
		fw_engine = FORCEWAKE_MEDIA; \
959
	else if (FORCEWAKE_CHV_COMMON_RANGE_OFFSET(offset)) \
960 961 962
		fw_engine = FORCEWAKE_RENDER | FORCEWAKE_MEDIA; \
	if (fw_engine) \
		__force_wake_get(dev_priv, fw_engine); \
963
	__raw_i915_write##x(dev_priv, reg, val); \
964
	GEN6_WRITE_FOOTER; \
965 966
}

967
static const i915_reg_t gen9_shadowed_regs[] = {
Z
Zhe Wang 已提交
968 969 970 971 972 973 974 975 976 977 978 979
	RING_TAIL(RENDER_RING_BASE),
	RING_TAIL(GEN6_BSD_RING_BASE),
	RING_TAIL(VEBOX_RING_BASE),
	RING_TAIL(BLT_RING_BASE),
	FORCEWAKE_BLITTER_GEN9,
	FORCEWAKE_RENDER_GEN9,
	FORCEWAKE_MEDIA_GEN9,
	GEN6_RPNSWREQ,
	GEN6_RC_VIDEO_FREQ,
	/* TODO: Other registers are not yet used */
};

980 981
static bool is_gen9_shadowed(struct drm_i915_private *dev_priv,
			     i915_reg_t reg)
Z
Zhe Wang 已提交
982 983 984
{
	int i;
	for (i = 0; i < ARRAY_SIZE(gen9_shadowed_regs); i++)
985
		if (i915_mmio_reg_equal(reg, gen9_shadowed_regs[i]))
Z
Zhe Wang 已提交
986 987 988 989 990
			return true;

	return false;
}

991 992
#define __gen9_write(x) \
static void \
993
gen9_write##x(struct drm_i915_private *dev_priv, i915_reg_t reg, u##x val, \
994
		bool trace) { \
995
	enum forcewake_domains fw_engine; \
996
	GEN6_WRITE_HEADER; \
997
	hsw_unclaimed_reg_debug(dev_priv, reg, false, true); \
998
	if (!SKL_NEEDS_FORCE_WAKE(offset) || \
999 1000
	    is_gen9_shadowed(dev_priv, reg)) \
		fw_engine = 0; \
1001
	else if (FORCEWAKE_GEN9_RENDER_RANGE_OFFSET(offset)) \
1002
		fw_engine = FORCEWAKE_RENDER; \
1003
	else if (FORCEWAKE_GEN9_MEDIA_RANGE_OFFSET(offset)) \
1004
		fw_engine = FORCEWAKE_MEDIA; \
1005
	else if (FORCEWAKE_GEN9_COMMON_RANGE_OFFSET(offset)) \
1006 1007 1008 1009 1010 1011
		fw_engine = FORCEWAKE_RENDER | FORCEWAKE_MEDIA; \
	else \
		fw_engine = FORCEWAKE_BLITTER; \
	if (fw_engine) \
		__force_wake_get(dev_priv, fw_engine); \
	__raw_i915_write##x(dev_priv, reg, val); \
1012 1013
	hsw_unclaimed_reg_debug(dev_priv, reg, false, false); \
	hsw_unclaimed_reg_detect(dev_priv); \
1014
	GEN6_WRITE_FOOTER; \
1015 1016 1017 1018 1019 1020
}

__gen9_write(8)
__gen9_write(16)
__gen9_write(32)
__gen9_write(64)
1021 1022 1023 1024
__chv_write(8)
__chv_write(16)
__chv_write(32)
__chv_write(64)
1025 1026 1027 1028
__gen8_write(8)
__gen8_write(16)
__gen8_write(32)
__gen8_write(64)
1029 1030 1031 1032 1033 1034 1035 1036 1037
__hsw_write(8)
__hsw_write(16)
__hsw_write(32)
__hsw_write(64)
__gen6_write(8)
__gen6_write(16)
__gen6_write(32)
__gen6_write(64)

1038
#undef __gen9_write
1039
#undef __chv_write
1040
#undef __gen8_write
1041 1042
#undef __hsw_write
#undef __gen6_write
1043 1044
#undef GEN6_WRITE_FOOTER
#undef GEN6_WRITE_HEADER
1045

1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056
#define VGPU_WRITE_HEADER \
	unsigned long irqflags; \
	trace_i915_reg_rw(true, reg, val, sizeof(val), trace); \
	assert_device_not_suspended(dev_priv); \
	spin_lock_irqsave(&dev_priv->uncore.lock, irqflags)

#define VGPU_WRITE_FOOTER \
	spin_unlock_irqrestore(&dev_priv->uncore.lock, irqflags)

#define __vgpu_write(x) \
static void vgpu_write##x(struct drm_i915_private *dev_priv, \
1057
			  i915_reg_t reg, u##x val, bool trace) { \
1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071
	VGPU_WRITE_HEADER; \
	__raw_i915_write##x(dev_priv, reg, val); \
	VGPU_WRITE_FOOTER; \
}

__vgpu_write(8)
__vgpu_write(16)
__vgpu_write(32)
__vgpu_write(64)

#undef __vgpu_write
#undef VGPU_WRITE_FOOTER
#undef VGPU_WRITE_HEADER

1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087
#define ASSIGN_WRITE_MMIO_VFUNCS(x) \
do { \
	dev_priv->uncore.funcs.mmio_writeb = x##_write8; \
	dev_priv->uncore.funcs.mmio_writew = x##_write16; \
	dev_priv->uncore.funcs.mmio_writel = x##_write32; \
	dev_priv->uncore.funcs.mmio_writeq = x##_write64; \
} while (0)

#define ASSIGN_READ_MMIO_VFUNCS(x) \
do { \
	dev_priv->uncore.funcs.mmio_readb = x##_read8; \
	dev_priv->uncore.funcs.mmio_readw = x##_read16; \
	dev_priv->uncore.funcs.mmio_readl = x##_read32; \
	dev_priv->uncore.funcs.mmio_readq = x##_read64; \
} while (0)

1088 1089

static void fw_domain_init(struct drm_i915_private *dev_priv,
1090
			   enum forcewake_domain_id domain_id,
1091 1092
			   i915_reg_t reg_set,
			   i915_reg_t reg_ack)
1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111
{
	struct intel_uncore_forcewake_domain *d;

	if (WARN_ON(domain_id >= FW_DOMAIN_ID_COUNT))
		return;

	d = &dev_priv->uncore.fw_domain[domain_id];

	WARN_ON(d->wake_count);

	d->wake_count = 0;
	d->reg_set = reg_set;
	d->reg_ack = reg_ack;

	if (IS_GEN6(dev_priv)) {
		d->val_reset = 0;
		d->val_set = FORCEWAKE_KERNEL;
		d->val_clear = 0;
	} else {
1112
		/* WaRsClearFWBitsAtReset:bdw,skl */
1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125
		d->val_reset = _MASKED_BIT_DISABLE(0xffff);
		d->val_set = _MASKED_BIT_ENABLE(FORCEWAKE_KERNEL);
		d->val_clear = _MASKED_BIT_DISABLE(FORCEWAKE_KERNEL);
	}

	if (IS_VALLEYVIEW(dev_priv))
		d->reg_post = FORCEWAKE_ACK_VLV;
	else if (IS_GEN6(dev_priv) || IS_GEN7(dev_priv) || IS_GEN8(dev_priv))
		d->reg_post = ECOBUS;

	d->i915 = dev_priv;
	d->id = domain_id;

1126
	setup_timer(&d->timer, intel_uncore_fw_release_timer, (unsigned long)d);
1127 1128

	dev_priv->uncore.fw_domains |= (1 << domain_id);
1129 1130

	fw_domain_reset(d);
1131 1132
}

1133
static void intel_uncore_fw_domains_init(struct drm_device *dev)
1134 1135 1136
{
	struct drm_i915_private *dev_priv = dev->dev_private;

1137 1138 1139
	if (INTEL_INFO(dev_priv->dev)->gen <= 5)
		return;

Z
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1140
	if (IS_GEN9(dev)) {
1141 1142 1143 1144 1145 1146 1147 1148 1149 1150
		dev_priv->uncore.funcs.force_wake_get = fw_domains_get;
		dev_priv->uncore.funcs.force_wake_put = fw_domains_put;
		fw_domain_init(dev_priv, FW_DOMAIN_ID_RENDER,
			       FORCEWAKE_RENDER_GEN9,
			       FORCEWAKE_ACK_RENDER_GEN9);
		fw_domain_init(dev_priv, FW_DOMAIN_ID_BLITTER,
			       FORCEWAKE_BLITTER_GEN9,
			       FORCEWAKE_ACK_BLITTER_GEN9);
		fw_domain_init(dev_priv, FW_DOMAIN_ID_MEDIA,
			       FORCEWAKE_MEDIA_GEN9, FORCEWAKE_ACK_MEDIA_GEN9);
Z
Zhe Wang 已提交
1151
	} else if (IS_VALLEYVIEW(dev)) {
1152
		dev_priv->uncore.funcs.force_wake_get = fw_domains_get;
1153 1154 1155 1156 1157
		if (!IS_CHERRYVIEW(dev))
			dev_priv->uncore.funcs.force_wake_put =
				fw_domains_put_with_fifo;
		else
			dev_priv->uncore.funcs.force_wake_put = fw_domains_put;
1158 1159 1160 1161
		fw_domain_init(dev_priv, FW_DOMAIN_ID_RENDER,
			       FORCEWAKE_VLV, FORCEWAKE_ACK_VLV);
		fw_domain_init(dev_priv, FW_DOMAIN_ID_MEDIA,
			       FORCEWAKE_MEDIA_VLV, FORCEWAKE_ACK_MEDIA_VLV);
1162
	} else if (IS_HASWELL(dev) || IS_BROADWELL(dev)) {
1163 1164 1165 1166 1167
		dev_priv->uncore.funcs.force_wake_get =
			fw_domains_get_with_thread_status;
		dev_priv->uncore.funcs.force_wake_put = fw_domains_put;
		fw_domain_init(dev_priv, FW_DOMAIN_ID_RENDER,
			       FORCEWAKE_MT, FORCEWAKE_ACK_HSW);
1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179
	} else if (IS_IVYBRIDGE(dev)) {
		u32 ecobus;

		/* IVB configs may use multi-threaded forcewake */

		/* A small trick here - if the bios hasn't configured
		 * MT forcewake, and if the device is in RC6, then
		 * force_wake_mt_get will not wake the device and the
		 * ECOBUS read will return zero. Which will be
		 * (correctly) interpreted by the test below as MT
		 * forcewake being disabled.
		 */
1180 1181 1182 1183 1184
		dev_priv->uncore.funcs.force_wake_get =
			fw_domains_get_with_thread_status;
		dev_priv->uncore.funcs.force_wake_put =
			fw_domains_put_with_fifo;

1185 1186
		/* We need to init first for ECOBUS access and then
		 * determine later if we want to reinit, in case of MT access is
1187 1188 1189
		 * not working. In this stage we don't know which flavour this
		 * ivb is, so it is better to reset also the gen6 fw registers
		 * before the ecobus check.
1190
		 */
1191 1192 1193 1194

		__raw_i915_write32(dev_priv, FORCEWAKE, 0);
		__raw_posting_read(dev_priv, ECOBUS);

1195 1196
		fw_domain_init(dev_priv, FW_DOMAIN_ID_RENDER,
			       FORCEWAKE_MT, FORCEWAKE_MT_ACK);
1197

1198
		mutex_lock(&dev->struct_mutex);
1199
		fw_domains_get_with_thread_status(dev_priv, FORCEWAKE_ALL);
1200
		ecobus = __raw_i915_read32(dev_priv, ECOBUS);
1201
		fw_domains_put_with_fifo(dev_priv, FORCEWAKE_ALL);
1202 1203
		mutex_unlock(&dev->struct_mutex);

1204
		if (!(ecobus & FORCEWAKE_MT_ENABLE)) {
1205 1206
			DRM_INFO("No MT forcewake available on Ivybridge, this can result in issues\n");
			DRM_INFO("when using vblank-synced partial screen updates.\n");
1207 1208
			fw_domain_init(dev_priv, FW_DOMAIN_ID_RENDER,
				       FORCEWAKE, FORCEWAKE_ACK);
1209 1210 1211
		}
	} else if (IS_GEN6(dev)) {
		dev_priv->uncore.funcs.force_wake_get =
1212
			fw_domains_get_with_thread_status;
1213
		dev_priv->uncore.funcs.force_wake_put =
1214 1215 1216
			fw_domains_put_with_fifo;
		fw_domain_init(dev_priv, FW_DOMAIN_ID_RENDER,
			       FORCEWAKE, FORCEWAKE_ACK);
1217
	}
1218 1219 1220

	/* All future platforms are expected to require complex power gating */
	WARN_ON(dev_priv->uncore.fw_domains == 0);
1221 1222 1223 1224 1225 1226
}

void intel_uncore_init(struct drm_device *dev)
{
	struct drm_i915_private *dev_priv = dev->dev_private;

1227 1228
	i915_check_vgpu(dev);

1229 1230 1231
	intel_uncore_ellc_detect(dev);
	intel_uncore_fw_domains_init(dev);
	__intel_uncore_early_sanitize(dev, false);
1232

1233
	switch (INTEL_INFO(dev)->gen) {
1234
	default:
1235 1236 1237 1238 1239
	case 9:
		ASSIGN_WRITE_MMIO_VFUNCS(gen9);
		ASSIGN_READ_MMIO_VFUNCS(gen9);
		break;
	case 8:
1240
		if (IS_CHERRYVIEW(dev)) {
1241 1242
			ASSIGN_WRITE_MMIO_VFUNCS(chv);
			ASSIGN_READ_MMIO_VFUNCS(chv);
1243 1244

		} else {
1245 1246
			ASSIGN_WRITE_MMIO_VFUNCS(gen8);
			ASSIGN_READ_MMIO_VFUNCS(gen6);
1247
		}
1248
		break;
1249 1250
	case 7:
	case 6:
1251
		if (IS_HASWELL(dev)) {
1252
			ASSIGN_WRITE_MMIO_VFUNCS(hsw);
1253
		} else {
1254
			ASSIGN_WRITE_MMIO_VFUNCS(gen6);
1255
		}
1256 1257

		if (IS_VALLEYVIEW(dev)) {
1258
			ASSIGN_READ_MMIO_VFUNCS(vlv);
1259
		} else {
1260
			ASSIGN_READ_MMIO_VFUNCS(gen6);
1261
		}
1262 1263
		break;
	case 5:
1264 1265
		ASSIGN_WRITE_MMIO_VFUNCS(gen5);
		ASSIGN_READ_MMIO_VFUNCS(gen5);
1266 1267 1268 1269
		break;
	case 4:
	case 3:
	case 2:
1270 1271
		ASSIGN_WRITE_MMIO_VFUNCS(gen2);
		ASSIGN_READ_MMIO_VFUNCS(gen2);
1272 1273
		break;
	}
1274

1275 1276 1277 1278 1279
	if (intel_vgpu_active(dev)) {
		ASSIGN_WRITE_MMIO_VFUNCS(vgpu);
		ASSIGN_READ_MMIO_VFUNCS(vgpu);
	}

1280
	i915_check_and_clear_faults(dev);
1281
}
1282 1283
#undef ASSIGN_WRITE_MMIO_VFUNCS
#undef ASSIGN_READ_MMIO_VFUNCS
1284 1285 1286 1287 1288

void intel_uncore_fini(struct drm_device *dev)
{
	/* Paranoia: make sure we have disabled everything before we exit. */
	intel_uncore_sanitize(dev);
1289
	intel_uncore_forcewake_reset(dev, false);
1290 1291
}

1292 1293
#define GEN_RANGE(l, h) GENMASK(h, l)

1294
static const struct register_whitelist {
1295
	i915_reg_t offset_ldw, offset_udw;
1296
	uint32_t size;
1297 1298
	/* supported gens, 0x10 for 4, 0x30 for 4 and 5, etc. */
	uint32_t gen_bitmask;
1299
} whitelist[] = {
1300 1301 1302
	{ .offset_ldw = RING_TIMESTAMP(RENDER_RING_BASE),
	  .offset_udw = RING_TIMESTAMP_UDW(RENDER_RING_BASE),
	  .size = 8, .gen_bitmask = GEN_RANGE(4, 9) },
1303 1304 1305 1306 1307 1308 1309 1310
};

int i915_reg_read_ioctl(struct drm_device *dev,
			void *data, struct drm_file *file)
{
	struct drm_i915_private *dev_priv = dev->dev_private;
	struct drm_i915_reg_read *reg = data;
	struct register_whitelist const *entry = whitelist;
1311
	unsigned size;
1312
	i915_reg_t offset_ldw, offset_udw;
1313
	int i, ret = 0;
1314 1315

	for (i = 0; i < ARRAY_SIZE(whitelist); i++, entry++) {
1316
		if (i915_mmio_reg_offset(entry->offset_ldw) == (reg->offset & -entry->size) &&
1317 1318 1319 1320 1321 1322 1323
		    (1 << INTEL_INFO(dev)->gen & entry->gen_bitmask))
			break;
	}

	if (i == ARRAY_SIZE(whitelist))
		return -EINVAL;

1324 1325 1326 1327
	/* We use the low bits to encode extra flags as the register should
	 * be naturally aligned (and those that are not so aligned merely
	 * limit the available flags for that register).
	 */
1328 1329
	offset_ldw = entry->offset_ldw;
	offset_udw = entry->offset_udw;
1330
	size = entry->size;
1331
	size |= reg->offset ^ i915_mmio_reg_offset(offset_ldw);
1332

1333 1334
	intel_runtime_pm_get(dev_priv);

1335 1336
	switch (size) {
	case 8 | 1:
1337
		reg->val = I915_READ64_2x32(offset_ldw, offset_udw);
1338
		break;
1339
	case 8:
1340
		reg->val = I915_READ64(offset_ldw);
1341 1342
		break;
	case 4:
1343
		reg->val = I915_READ(offset_ldw);
1344 1345
		break;
	case 2:
1346
		reg->val = I915_READ16(offset_ldw);
1347 1348
		break;
	case 1:
1349
		reg->val = I915_READ8(offset_ldw);
1350 1351
		break;
	default:
1352 1353
		ret = -EINVAL;
		goto out;
1354 1355
	}

1356 1357 1358
out:
	intel_runtime_pm_put(dev_priv);
	return ret;
1359 1360
}

1361 1362 1363 1364 1365 1366
int i915_get_reset_stats_ioctl(struct drm_device *dev,
			       void *data, struct drm_file *file)
{
	struct drm_i915_private *dev_priv = dev->dev_private;
	struct drm_i915_reset_stats *args = data;
	struct i915_ctx_hang_stats *hs;
1367
	struct intel_context *ctx;
1368 1369
	int ret;

1370 1371 1372
	if (args->flags || args->pad)
		return -EINVAL;

1373
	if (args->ctx_id == DEFAULT_CONTEXT_HANDLE && !capable(CAP_SYS_ADMIN))
1374 1375 1376 1377 1378 1379
		return -EPERM;

	ret = mutex_lock_interruptible(&dev->struct_mutex);
	if (ret)
		return ret;

1380 1381
	ctx = i915_gem_context_get(file->driver_priv, args->ctx_id);
	if (IS_ERR(ctx)) {
1382
		mutex_unlock(&dev->struct_mutex);
1383
		return PTR_ERR(ctx);
1384
	}
1385
	hs = &ctx->hang_stats;
1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399

	if (capable(CAP_SYS_ADMIN))
		args->reset_count = i915_reset_count(&dev_priv->gpu_error);
	else
		args->reset_count = 0;

	args->batch_active = hs->batch_active;
	args->batch_pending = hs->batch_pending;

	mutex_unlock(&dev->struct_mutex);

	return 0;
}

1400
static int i915_reset_complete(struct drm_device *dev)
1401 1402
{
	u8 gdrst;
1403
	pci_read_config_byte(dev->pdev, I915_GDRST, &gdrst);
V
Ville Syrjälä 已提交
1404
	return (gdrst & GRDOM_RESET_STATUS) == 0;
1405 1406
}

1407
static int i915_do_reset(struct drm_device *dev)
1408
{
V
Ville Syrjälä 已提交
1409
	/* assert reset for at least 20 usec */
1410
	pci_write_config_byte(dev->pdev, I915_GDRST, GRDOM_RESET_ENABLE);
V
Ville Syrjälä 已提交
1411
	udelay(20);
1412
	pci_write_config_byte(dev->pdev, I915_GDRST, 0);
1413

1414
	return wait_for(i915_reset_complete(dev), 500);
V
Ville Syrjälä 已提交
1415 1416 1417 1418 1419
}

static int g4x_reset_complete(struct drm_device *dev)
{
	u8 gdrst;
1420
	pci_read_config_byte(dev->pdev, I915_GDRST, &gdrst);
V
Ville Syrjälä 已提交
1421
	return (gdrst & GRDOM_RESET_ENABLE) == 0;
1422 1423
}

1424 1425 1426 1427 1428 1429
static int g33_do_reset(struct drm_device *dev)
{
	pci_write_config_byte(dev->pdev, I915_GDRST, GRDOM_RESET_ENABLE);
	return wait_for(g4x_reset_complete(dev), 500);
}

1430 1431 1432 1433 1434
static int g4x_do_reset(struct drm_device *dev)
{
	struct drm_i915_private *dev_priv = dev->dev_private;
	int ret;

1435
	pci_write_config_byte(dev->pdev, I915_GDRST,
1436
			      GRDOM_RENDER | GRDOM_RESET_ENABLE);
V
Ville Syrjälä 已提交
1437
	ret =  wait_for(g4x_reset_complete(dev), 500);
1438 1439 1440 1441 1442 1443 1444
	if (ret)
		return ret;

	/* WaVcpClkGateDisableForMediaReset:ctg,elk */
	I915_WRITE(VDECCLK_GATE_D, I915_READ(VDECCLK_GATE_D) | VCP_UNIT_CLOCK_GATE_DISABLE);
	POSTING_READ(VDECCLK_GATE_D);

1445
	pci_write_config_byte(dev->pdev, I915_GDRST,
1446
			      GRDOM_MEDIA | GRDOM_RESET_ENABLE);
V
Ville Syrjälä 已提交
1447
	ret =  wait_for(g4x_reset_complete(dev), 500);
1448 1449 1450 1451 1452 1453 1454
	if (ret)
		return ret;

	/* WaVcpClkGateDisableForMediaReset:ctg,elk */
	I915_WRITE(VDECCLK_GATE_D, I915_READ(VDECCLK_GATE_D) & ~VCP_UNIT_CLOCK_GATE_DISABLE);
	POSTING_READ(VDECCLK_GATE_D);

1455
	pci_write_config_byte(dev->pdev, I915_GDRST, 0);
1456 1457 1458 1459

	return 0;
}

1460 1461 1462 1463 1464
static int ironlake_do_reset(struct drm_device *dev)
{
	struct drm_i915_private *dev_priv = dev->dev_private;
	int ret;

1465
	I915_WRITE(ILK_GDSR,
1466
		   ILK_GRDOM_RENDER | ILK_GRDOM_RESET_ENABLE);
1467
	ret = wait_for((I915_READ(ILK_GDSR) &
1468
			ILK_GRDOM_RESET_ENABLE) == 0, 500);
1469 1470 1471
	if (ret)
		return ret;

1472
	I915_WRITE(ILK_GDSR,
1473
		   ILK_GRDOM_MEDIA | ILK_GRDOM_RESET_ENABLE);
1474
	ret = wait_for((I915_READ(ILK_GDSR) &
1475 1476 1477 1478
			ILK_GRDOM_RESET_ENABLE) == 0, 500);
	if (ret)
		return ret;

1479
	I915_WRITE(ILK_GDSR, 0);
1480 1481

	return 0;
1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494
}

static int gen6_do_reset(struct drm_device *dev)
{
	struct drm_i915_private *dev_priv = dev->dev_private;
	int	ret;

	/* Reset the chip */

	/* GEN6_GDRST is not in the gt power well, no need to check
	 * for fifo space for the write or forcewake the chip for
	 * the read
	 */
1495
	__raw_i915_write32(dev_priv, GEN6_GDRST, GEN6_GRDOM_FULL);
1496 1497

	/* Spin waiting for the device to ack the reset request */
1498
	ret = wait_for((__raw_i915_read32(dev_priv, GEN6_GDRST) & GEN6_GRDOM_FULL) == 0, 500);
1499

1500
	intel_uncore_forcewake_reset(dev, true);
1501

1502 1503 1504
	return ret;
}

1505
static int wait_for_register(struct drm_i915_private *dev_priv,
1506
			     i915_reg_t reg,
1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543
			     const u32 mask,
			     const u32 value,
			     const unsigned long timeout_ms)
{
	return wait_for((I915_READ(reg) & mask) == value, timeout_ms);
}

static int gen8_do_reset(struct drm_device *dev)
{
	struct drm_i915_private *dev_priv = dev->dev_private;
	struct intel_engine_cs *engine;
	int i;

	for_each_ring(engine, dev_priv, i) {
		I915_WRITE(RING_RESET_CTL(engine->mmio_base),
			   _MASKED_BIT_ENABLE(RESET_CTL_REQUEST_RESET));

		if (wait_for_register(dev_priv,
				      RING_RESET_CTL(engine->mmio_base),
				      RESET_CTL_READY_TO_RESET,
				      RESET_CTL_READY_TO_RESET,
				      700)) {
			DRM_ERROR("%s: reset request timeout\n", engine->name);
			goto not_ready;
		}
	}

	return gen6_do_reset(dev);

not_ready:
	for_each_ring(engine, dev_priv, i)
		I915_WRITE(RING_RESET_CTL(engine->mmio_base),
			   _MASKED_BIT_DISABLE(RESET_CTL_REQUEST_RESET));

	return -EIO;
}

1544
static int (*intel_get_gpu_reset(struct drm_device *dev))(struct drm_device *)
1545
{
1546 1547 1548
	if (!i915.reset)
		return NULL;

1549 1550 1551
	if (INTEL_INFO(dev)->gen >= 8)
		return gen8_do_reset;
	else if (INTEL_INFO(dev)->gen >= 6)
1552
		return gen6_do_reset;
1553
	else if (IS_GEN5(dev))
1554
		return ironlake_do_reset;
1555
	else if (IS_G4X(dev))
1556
		return g4x_do_reset;
1557
	else if (IS_G33(dev))
1558
		return g33_do_reset;
1559
	else if (INTEL_INFO(dev)->gen >= 3)
1560
		return i915_do_reset;
1561
	else
1562 1563 1564 1565 1566 1567 1568 1569 1570
		return NULL;
}

int intel_gpu_reset(struct drm_device *dev)
{
	int (*reset)(struct drm_device *);

	reset = intel_get_gpu_reset(dev);
	if (reset == NULL)
1571
		return -ENODEV;
1572 1573 1574 1575 1576 1577 1578

	return reset(dev);
}

bool intel_has_gpu_reset(struct drm_device *dev)
{
	return intel_get_gpu_reset(dev) != NULL;
1579 1580 1581 1582 1583 1584 1585
}

void intel_uncore_check_errors(struct drm_device *dev)
{
	struct drm_i915_private *dev_priv = dev->dev_private;

	if (HAS_FPGA_DBG_UNCLAIMED(dev) &&
1586
	    (__raw_i915_read32(dev_priv, FPGA_DBG) & FPGA_DBG_RM_NOCLAIM)) {
1587
		DRM_ERROR("Unclaimed register before interrupt\n");
1588
		__raw_i915_write32(dev_priv, FPGA_DBG, FPGA_DBG_RM_NOCLAIM);
1589 1590
	}
}