amdgpu_ras.c 54.6 KB
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/*
 * Copyright 2018 Advanced Micro Devices, 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.
 *
 *
 */
#include <linux/debugfs.h>
#include <linux/list.h>
#include <linux/module.h>
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#include <linux/uaccess.h>
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#include <linux/reboot.h>
#include <linux/syscalls.h>
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#include "amdgpu.h"
#include "amdgpu_ras.h"
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#include "amdgpu_atomfirmware.h"
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#include "amdgpu_xgmi.h"
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#include "ivsrcid/nbio/irqsrcs_nbif_7_4.h"
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static const char *RAS_FS_NAME = "ras";

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const char *ras_error_string[] = {
	"none",
	"parity",
	"single_correctable",
	"multi_uncorrectable",
	"poison",
};

const char *ras_block_string[] = {
	"umc",
	"sdma",
	"gfx",
	"mmhub",
	"athub",
	"pcie_bif",
	"hdp",
	"xgmi_wafl",
	"df",
	"smn",
	"sem",
	"mp0",
	"mp1",
	"fuse",
};

#define ras_err_str(i) (ras_error_string[ffs(i)])
#define ras_block_str(i) (ras_block_string[i])

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#define RAS_DEFAULT_FLAGS (AMDGPU_RAS_FLAG_INIT_BY_VBIOS)

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/* inject address is 52 bits */
#define	RAS_UMC_INJECT_ADDR_LIMIT	(0x1ULL << 52)

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/* typical ECC bad page rate(1 bad page per 100MB VRAM) */
#define RAS_BAD_PAGE_RATE		(100 * 1024 * 1024ULL)

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enum amdgpu_ras_retire_page_reservation {
	AMDGPU_RAS_RETIRE_PAGE_RESERVED,
	AMDGPU_RAS_RETIRE_PAGE_PENDING,
	AMDGPU_RAS_RETIRE_PAGE_FAULT,
};
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atomic_t amdgpu_ras_in_intr = ATOMIC_INIT(0);

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static bool amdgpu_ras_check_bad_page_unlock(struct amdgpu_ras *con,
				uint64_t addr);
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static bool amdgpu_ras_check_bad_page(struct amdgpu_device *adev,
				uint64_t addr);

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void amdgpu_ras_set_error_query_ready(struct amdgpu_device *adev, bool ready)
{
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	if (adev && amdgpu_ras_get_context(adev))
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		amdgpu_ras_get_context(adev)->error_query_ready = ready;
}

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static bool amdgpu_ras_get_error_query_ready(struct amdgpu_device *adev)
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{
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	if (adev && amdgpu_ras_get_context(adev))
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		return amdgpu_ras_get_context(adev)->error_query_ready;

	return false;
}

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static ssize_t amdgpu_ras_debugfs_read(struct file *f, char __user *buf,
					size_t size, loff_t *pos)
{
	struct ras_manager *obj = (struct ras_manager *)file_inode(f)->i_private;
	struct ras_query_if info = {
		.head = obj->head,
	};
	ssize_t s;
	char val[128];

	if (amdgpu_ras_error_query(obj->adev, &info))
		return -EINVAL;

	s = snprintf(val, sizeof(val), "%s: %lu\n%s: %lu\n",
			"ue", info.ue_count,
			"ce", info.ce_count);
	if (*pos >= s)
		return 0;

	s -= *pos;
	s = min_t(u64, s, size);


	if (copy_to_user(buf, &val[*pos], s))
		return -EINVAL;

	*pos += s;

	return s;
}

static const struct file_operations amdgpu_ras_debugfs_ops = {
	.owner = THIS_MODULE,
	.read = amdgpu_ras_debugfs_read,
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	.write = NULL,
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	.llseek = default_llseek
};

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static int amdgpu_ras_find_block_id_by_name(const char *name, int *block_id)
{
	int i;

	for (i = 0; i < ARRAY_SIZE(ras_block_string); i++) {
		*block_id = i;
		if (strcmp(name, ras_block_str(i)) == 0)
			return 0;
	}
	return -EINVAL;
}

static int amdgpu_ras_debugfs_ctrl_parse_data(struct file *f,
		const char __user *buf, size_t size,
		loff_t *pos, struct ras_debug_if *data)
{
	ssize_t s = min_t(u64, 64, size);
	char str[65];
	char block_name[33];
	char err[9] = "ue";
	int op = -1;
	int block_id;
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	uint32_t sub_block;
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	u64 address, value;

	if (*pos)
		return -EINVAL;
	*pos = size;

	memset(str, 0, sizeof(str));
	memset(data, 0, sizeof(*data));

	if (copy_from_user(str, buf, s))
		return -EINVAL;

	if (sscanf(str, "disable %32s", block_name) == 1)
		op = 0;
	else if (sscanf(str, "enable %32s %8s", block_name, err) == 2)
		op = 1;
	else if (sscanf(str, "inject %32s %8s", block_name, err) == 2)
		op = 2;
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	else if (str[0] && str[1] && str[2] && str[3])
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		/* ascii string, but commands are not matched. */
		return -EINVAL;

	if (op != -1) {
		if (amdgpu_ras_find_block_id_by_name(block_name, &block_id))
			return -EINVAL;

		data->head.block = block_id;
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		/* only ue and ce errors are supported */
		if (!memcmp("ue", err, 2))
			data->head.type = AMDGPU_RAS_ERROR__MULTI_UNCORRECTABLE;
		else if (!memcmp("ce", err, 2))
			data->head.type = AMDGPU_RAS_ERROR__SINGLE_CORRECTABLE;
		else
			return -EINVAL;

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		data->op = op;

		if (op == 2) {
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			if (sscanf(str, "%*s %*s %*s %u %llu %llu",
						&sub_block, &address, &value) != 3)
				if (sscanf(str, "%*s %*s %*s 0x%x 0x%llx 0x%llx",
							&sub_block, &address, &value) != 3)
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					return -EINVAL;
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			data->head.sub_block_index = sub_block;
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			data->inject.address = address;
			data->inject.value = value;
		}
	} else {
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		if (size < sizeof(*data))
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			return -EINVAL;

		if (copy_from_user(data, buf, sizeof(*data)))
			return -EINVAL;
	}

	return 0;
}
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/**
 * DOC: AMDGPU RAS debugfs control interface
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 *
 * It accepts struct ras_debug_if who has two members.
 *
 * First member: ras_debug_if::head or ras_debug_if::inject.
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 *
 * head is used to indicate which IP block will be under control.
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 *
 * head has four members, they are block, type, sub_block_index, name.
 * block: which IP will be under control.
 * type: what kind of error will be enabled/disabled/injected.
 * sub_block_index: some IPs have subcomponets. say, GFX, sDMA.
 * name: the name of IP.
 *
 * inject has two more members than head, they are address, value.
 * As their names indicate, inject operation will write the
 * value to the address.
 *
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 * The second member: struct ras_debug_if::op.
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 * It has three kinds of operations.
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 *
 * - 0: disable RAS on the block. Take ::head as its data.
 * - 1: enable RAS on the block. Take ::head as its data.
 * - 2: inject errors on the block. Take ::inject as its data.
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 *
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 * How to use the interface?
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 *
 * Programs
 *
 * Copy the struct ras_debug_if in your codes and initialize it.
 * Write the struct to the control node.
 *
 * Shells
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 *
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 * .. code-block:: bash
 *
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 *	echo op block [error [sub_block address value]] > .../ras/ras_ctrl
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 *
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 * Parameters:
 *
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 * op: disable, enable, inject
 *	disable: only block is needed
 *	enable: block and error are needed
 *	inject: error, address, value are needed
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 * block: umc, sdma, gfx, .........
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 *	see ras_block_string[] for details
 * error: ue, ce
 *	ue: multi_uncorrectable
 *	ce: single_correctable
 * sub_block:
 *	sub block index, pass 0 if there is no sub block
 *
 * here are some examples for bash commands:
 *
 * .. code-block:: bash
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 *
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 *	echo inject umc ue 0x0 0x0 0x0 > /sys/kernel/debug/dri/0/ras/ras_ctrl
 *	echo inject umc ce 0 0 0 > /sys/kernel/debug/dri/0/ras/ras_ctrl
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 *	echo disable umc > /sys/kernel/debug/dri/0/ras/ras_ctrl
 *
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 * How to check the result?
 *
 * For disable/enable, please check ras features at
 * /sys/class/drm/card[0/1/2...]/device/ras/features
 *
 * For inject, please check corresponding err count at
 * /sys/class/drm/card[0/1/2...]/device/ras/[gfx/sdma/...]_err_count
 *
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 * .. note::
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 *	Operations are only allowed on blocks which are supported.
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 *	Please check ras mask at /sys/module/amdgpu/parameters/ras_mask
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 *	to see which blocks support RAS on a particular asic.
 *
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 */
static ssize_t amdgpu_ras_debugfs_ctrl_write(struct file *f, const char __user *buf,
		size_t size, loff_t *pos)
{
	struct amdgpu_device *adev = (struct amdgpu_device *)file_inode(f)->i_private;
	struct ras_debug_if data;
	int ret = 0;

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	if (!amdgpu_ras_get_error_query_ready(adev)) {
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		dev_warn(adev->dev, "RAS WARN: error injection "
				"currently inaccessible\n");
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		return size;
	}

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	ret = amdgpu_ras_debugfs_ctrl_parse_data(f, buf, size, pos, &data);
	if (ret)
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		return -EINVAL;

	if (!amdgpu_ras_is_supported(adev, data.head.block))
		return -EINVAL;

	switch (data.op) {
	case 0:
		ret = amdgpu_ras_feature_enable(adev, &data.head, 0);
		break;
	case 1:
		ret = amdgpu_ras_feature_enable(adev, &data.head, 1);
		break;
	case 2:
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		if ((data.inject.address >= adev->gmc.mc_vram_size) ||
		    (data.inject.address >= RAS_UMC_INJECT_ADDR_LIMIT)) {
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			dev_warn(adev->dev, "RAS WARN: input address "
					"0x%llx is invalid.",
					data.inject.address);
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			ret = -EINVAL;
			break;
		}

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		/* umc ce/ue error injection for a bad page is not allowed */
		if ((data.head.block == AMDGPU_RAS_BLOCK__UMC) &&
		    amdgpu_ras_check_bad_page(adev, data.inject.address)) {
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			dev_warn(adev->dev, "RAS WARN: 0x%llx has been marked "
					"as bad before error injection!\n",
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					data.inject.address);
			break;
		}

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		/* data.inject.address is offset instead of absolute gpu address */
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		ret = amdgpu_ras_error_inject(adev, &data.inject);
		break;
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	default:
		ret = -EINVAL;
		break;
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	}
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	if (ret)
		return -EINVAL;

	return size;
}

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/**
 * DOC: AMDGPU RAS debugfs EEPROM table reset interface
 *
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 * Some boards contain an EEPROM which is used to persistently store a list of
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 * bad pages which experiences ECC errors in vram.  This interface provides
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 * a way to reset the EEPROM, e.g., after testing error injection.
 *
 * Usage:
 *
 * .. code-block:: bash
 *
 *	echo 1 > ../ras/ras_eeprom_reset
 *
 * will reset EEPROM table to 0 entries.
 *
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 */
static ssize_t amdgpu_ras_debugfs_eeprom_write(struct file *f, const char __user *buf,
		size_t size, loff_t *pos)
{
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	struct amdgpu_device *adev =
		(struct amdgpu_device *)file_inode(f)->i_private;
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	int ret;

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	ret = amdgpu_ras_eeprom_reset_table(
			&(amdgpu_ras_get_context(adev)->eeprom_control));
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	if (ret == 1) {
		amdgpu_ras_get_context(adev)->flags = RAS_DEFAULT_FLAGS;
		return size;
	} else {
		return -EIO;
	}
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}

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static const struct file_operations amdgpu_ras_debugfs_ctrl_ops = {
	.owner = THIS_MODULE,
	.read = NULL,
	.write = amdgpu_ras_debugfs_ctrl_write,
	.llseek = default_llseek
};

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static const struct file_operations amdgpu_ras_debugfs_eeprom_ops = {
	.owner = THIS_MODULE,
	.read = NULL,
	.write = amdgpu_ras_debugfs_eeprom_write,
	.llseek = default_llseek
};

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/**
 * DOC: AMDGPU RAS sysfs Error Count Interface
 *
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 * It allows the user to read the error count for each IP block on the gpu through
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 * /sys/class/drm/card[0/1/2...]/device/ras/[gfx/sdma/...]_err_count
 *
 * It outputs the multiple lines which report the uncorrected (ue) and corrected
 * (ce) error counts.
 *
 * The format of one line is below,
 *
 * [ce|ue]: count
 *
 * Example:
 *
 * .. code-block:: bash
 *
 *	ue: 0
 *	ce: 1
 *
 */
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static ssize_t amdgpu_ras_sysfs_read(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	struct ras_manager *obj = container_of(attr, struct ras_manager, sysfs_attr);
	struct ras_query_if info = {
		.head = obj->head,
	};

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	if (!amdgpu_ras_get_error_query_ready(obj->adev))
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		return snprintf(buf, PAGE_SIZE,
				"Query currently inaccessible\n");

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	if (amdgpu_ras_error_query(obj->adev, &info))
		return -EINVAL;

	return snprintf(buf, PAGE_SIZE, "%s: %lu\n%s: %lu\n",
			"ue", info.ue_count,
			"ce", info.ce_count);
}

/* obj begin */

#define get_obj(obj) do { (obj)->use++; } while (0)
#define alive_obj(obj) ((obj)->use)

static inline void put_obj(struct ras_manager *obj)
{
	if (obj && --obj->use == 0)
		list_del(&obj->node);
	if (obj && obj->use < 0) {
		 DRM_ERROR("RAS ERROR: Unbalance obj(%s) use\n", obj->head.name);
	}
}

/* make one obj and return it. */
static struct ras_manager *amdgpu_ras_create_obj(struct amdgpu_device *adev,
		struct ras_common_if *head)
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
	struct ras_manager *obj;

	if (!con)
		return NULL;

	if (head->block >= AMDGPU_RAS_BLOCK_COUNT)
		return NULL;

	obj = &con->objs[head->block];
	/* already exist. return obj? */
	if (alive_obj(obj))
		return NULL;

	obj->head = *head;
	obj->adev = adev;
	list_add(&obj->node, &con->head);
	get_obj(obj);

	return obj;
}

/* return an obj equal to head, or the first when head is NULL */
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struct ras_manager *amdgpu_ras_find_obj(struct amdgpu_device *adev,
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		struct ras_common_if *head)
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
	struct ras_manager *obj;
	int i;

	if (!con)
		return NULL;

	if (head) {
		if (head->block >= AMDGPU_RAS_BLOCK_COUNT)
			return NULL;

		obj = &con->objs[head->block];

		if (alive_obj(obj)) {
			WARN_ON(head->block != obj->head.block);
			return obj;
		}
	} else {
		for (i = 0; i < AMDGPU_RAS_BLOCK_COUNT; i++) {
			obj = &con->objs[i];
			if (alive_obj(obj)) {
				WARN_ON(i != obj->head.block);
				return obj;
			}
		}
	}

	return NULL;
}
/* obj end */

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static void amdgpu_ras_parse_status_code(struct amdgpu_device *adev,
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				  const char* 		invoke_type,
				  const char* 		block_name,
				  enum ta_ras_status 	ret)
{
	switch (ret) {
	case TA_RAS_STATUS__SUCCESS:
		return;
	case TA_RAS_STATUS__ERROR_RAS_NOT_AVAILABLE:
		dev_warn(adev->dev,
			"RAS WARN: %s %s currently unavailable\n",
			invoke_type,
			block_name);
		break;
	default:
		dev_err(adev->dev,
			"RAS ERROR: %s %s error failed ret 0x%X\n",
			invoke_type,
			block_name,
			ret);
	}
}

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/* feature ctl begin */
static int amdgpu_ras_is_feature_allowed(struct amdgpu_device *adev,
		struct ras_common_if *head)
{
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	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);

	return con->hw_supported & BIT(head->block);
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}

static int amdgpu_ras_is_feature_enabled(struct amdgpu_device *adev,
		struct ras_common_if *head)
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);

	return con->features & BIT(head->block);
}

/*
 * if obj is not created, then create one.
 * set feature enable flag.
 */
static int __amdgpu_ras_feature_enable(struct amdgpu_device *adev,
		struct ras_common_if *head, int enable)
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
	struct ras_manager *obj = amdgpu_ras_find_obj(adev, head);

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	/* If hardware does not support ras, then do not create obj.
	 * But if hardware support ras, we can create the obj.
	 * Ras framework checks con->hw_supported to see if it need do
	 * corresponding initialization.
	 * IP checks con->support to see if it need disable ras.
	 */
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	if (!amdgpu_ras_is_feature_allowed(adev, head))
		return 0;
	if (!(!!enable ^ !!amdgpu_ras_is_feature_enabled(adev, head)))
		return 0;

	if (enable) {
		if (!obj) {
			obj = amdgpu_ras_create_obj(adev, head);
			if (!obj)
				return -EINVAL;
		} else {
			/* In case we create obj somewhere else */
			get_obj(obj);
		}
		con->features |= BIT(head->block);
	} else {
		if (obj && amdgpu_ras_is_feature_enabled(adev, head)) {
			con->features &= ~BIT(head->block);
			put_obj(obj);
		}
	}

	return 0;
}

/* wrapper of psp_ras_enable_features */
int amdgpu_ras_feature_enable(struct amdgpu_device *adev,
		struct ras_common_if *head, bool enable)
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
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	union ta_ras_cmd_input *info;
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	int ret;

	if (!con)
		return -EINVAL;

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        info = kzalloc(sizeof(union ta_ras_cmd_input), GFP_KERNEL);
	if (!info)
		return -ENOMEM;

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	if (!enable) {
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		info->disable_features = (struct ta_ras_disable_features_input) {
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			.block_id =  amdgpu_ras_block_to_ta(head->block),
			.error_type = amdgpu_ras_error_to_ta(head->type),
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		};
	} else {
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		info->enable_features = (struct ta_ras_enable_features_input) {
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			.block_id =  amdgpu_ras_block_to_ta(head->block),
			.error_type = amdgpu_ras_error_to_ta(head->type),
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		};
	}

	/* Do not enable if it is not allowed. */
	WARN_ON(enable && !amdgpu_ras_is_feature_allowed(adev, head));
	/* Are we alerady in that state we are going to set? */
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	if (!(!!enable ^ !!amdgpu_ras_is_feature_enabled(adev, head))) {
		ret = 0;
		goto out;
	}
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	if (!amdgpu_ras_intr_triggered()) {
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		ret = psp_ras_enable_features(&adev->psp, info, enable);
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		if (ret) {
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			amdgpu_ras_parse_status_code(adev,
						     enable ? "enable":"disable",
						     ras_block_str(head->block),
						    (enum ta_ras_status)ret);
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			if (ret == TA_RAS_STATUS__RESET_NEEDED)
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				ret = -EAGAIN;
			else
				ret = -EINVAL;

			goto out;
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		}
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	}

	/* setup the obj */
	__amdgpu_ras_feature_enable(adev, head, enable);
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	ret = 0;
out:
	kfree(info);
	return ret;
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}

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/* Only used in device probe stage and called only once. */
int amdgpu_ras_feature_enable_on_boot(struct amdgpu_device *adev,
		struct ras_common_if *head, bool enable)
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
	int ret;

	if (!con)
		return -EINVAL;

	if (con->flags & AMDGPU_RAS_FLAG_INIT_BY_VBIOS) {
671 672 673 674 675 676 677 678 679 680 681 682 683 684 685
		if (enable) {
			/* There is no harm to issue a ras TA cmd regardless of
			 * the currecnt ras state.
			 * If current state == target state, it will do nothing
			 * But sometimes it requests driver to reset and repost
			 * with error code -EAGAIN.
			 */
			ret = amdgpu_ras_feature_enable(adev, head, 1);
			/* With old ras TA, we might fail to enable ras.
			 * Log it and just setup the object.
			 * TODO need remove this WA in the future.
			 */
			if (ret == -EINVAL) {
				ret = __amdgpu_ras_feature_enable(adev, head, 1);
				if (!ret)
686 687
					dev_info(adev->dev,
						"RAS INFO: %s setup object\n",
688 689 690 691 692 693 694
						ras_block_str(head->block));
			}
		} else {
			/* setup the object then issue a ras TA disable cmd.*/
			ret = __amdgpu_ras_feature_enable(adev, head, 1);
			if (ret)
				return ret;
695 696

			ret = amdgpu_ras_feature_enable(adev, head, 0);
697
		}
698 699 700 701 702 703
	} else
		ret = amdgpu_ras_feature_enable(adev, head, enable);

	return ret;
}

704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720
static int amdgpu_ras_disable_all_features(struct amdgpu_device *adev,
		bool bypass)
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
	struct ras_manager *obj, *tmp;

	list_for_each_entry_safe(obj, tmp, &con->head, node) {
		/* bypass psp.
		 * aka just release the obj and corresponding flags
		 */
		if (bypass) {
			if (__amdgpu_ras_feature_enable(adev, &obj->head, 0))
				break;
		} else {
			if (amdgpu_ras_feature_enable(adev, &obj->head, 0))
				break;
		}
721
	}
722 723 724 725 726 727 728 729 730 731

	return con->features;
}

static int amdgpu_ras_enable_all_features(struct amdgpu_device *adev,
		bool bypass)
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
	int ras_block_count = AMDGPU_RAS_BLOCK_COUNT;
	int i;
732 733
	const enum amdgpu_ras_error_type default_ras_type =
		AMDGPU_RAS_ERROR__NONE;
734 735 736 737

	for (i = 0; i < ras_block_count; i++) {
		struct ras_common_if head = {
			.block = i,
738
			.type = default_ras_type,
739 740 741 742 743 744 745 746 747 748 749 750 751 752
			.sub_block_index = 0,
		};
		strcpy(head.name, ras_block_str(i));
		if (bypass) {
			/*
			 * bypass psp. vbios enable ras for us.
			 * so just create the obj
			 */
			if (__amdgpu_ras_feature_enable(adev, &head, 1))
				break;
		} else {
			if (amdgpu_ras_feature_enable(adev, &head, 1))
				break;
		}
753
	}
754 755 756 757 758 759 760 761 762 763

	return con->features;
}
/* feature ctl end */

/* query/inject/cure begin */
int amdgpu_ras_error_query(struct amdgpu_device *adev,
		struct ras_query_if *info)
{
	struct ras_manager *obj = amdgpu_ras_find_obj(adev, &info->head);
764
	struct ras_err_data err_data = {0, 0, 0, NULL};
765
	int i;
766 767 768 769

	if (!obj)
		return -EINVAL;

770 771
	switch (info->head.block) {
	case AMDGPU_RAS_BLOCK__UMC:
772 773
		if (adev->umc.funcs->query_ras_error_count)
			adev->umc.funcs->query_ras_error_count(adev, &err_data);
774 775 776 777 778
		/* umc query_ras_error_address is also responsible for clearing
		 * error status
		 */
		if (adev->umc.funcs->query_ras_error_address)
			adev->umc.funcs->query_ras_error_address(adev, &err_data);
779
		break;
780 781 782 783 784 785 786
	case AMDGPU_RAS_BLOCK__SDMA:
		if (adev->sdma.funcs->query_ras_error_count) {
			for (i = 0; i < adev->sdma.num_instances; i++)
				adev->sdma.funcs->query_ras_error_count(adev, i,
									&err_data);
		}
		break;
787 788 789 790
	case AMDGPU_RAS_BLOCK__GFX:
		if (adev->gfx.funcs->query_ras_error_count)
			adev->gfx.funcs->query_ras_error_count(adev, &err_data);
		break;
791
	case AMDGPU_RAS_BLOCK__MMHUB:
792 793
		if (adev->mmhub.funcs->query_ras_error_count)
			adev->mmhub.funcs->query_ras_error_count(adev, &err_data);
794
		break;
795 796 797 798
	case AMDGPU_RAS_BLOCK__PCIE_BIF:
		if (adev->nbio.funcs->query_ras_error_count)
			adev->nbio.funcs->query_ras_error_count(adev, &err_data);
		break;
799 800 801
	case AMDGPU_RAS_BLOCK__XGMI_WAFL:
		amdgpu_xgmi_query_ras_error_count(adev, &err_data);
		break;
802 803 804
	default:
		break;
	}
805 806 807 808

	obj->err_data.ue_count += err_data.ue_count;
	obj->err_data.ce_count += err_data.ce_count;

809 810 811
	info->ue_count = obj->err_data.ue_count;
	info->ce_count = obj->err_data.ce_count;

812
	if (err_data.ce_count) {
813 814 815 816 817
		dev_info(adev->dev, "%ld correctable hardware errors "
					"detected in %s block, no user "
					"action is needed.\n",
					obj->err_data.ce_count,
					ras_block_str(info->head.block));
818 819
	}
	if (err_data.ue_count) {
820 821 822 823
		dev_info(adev->dev, "%ld uncorrectable hardware errors "
					"detected in %s block\n",
					obj->err_data.ue_count,
					ras_block_str(info->head.block));
824
	}
825

826 827 828
	return 0;
}

829
/* Trigger XGMI/WAFL error */
830
static int amdgpu_ras_error_inject_xgmi(struct amdgpu_device *adev,
831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846 847 848 849 850 851 852 853 854
				 struct ta_ras_trigger_error_input *block_info)
{
	int ret;

	if (amdgpu_dpm_set_df_cstate(adev, DF_CSTATE_DISALLOW))
		dev_warn(adev->dev, "Failed to disallow df cstate");

	if (amdgpu_dpm_allow_xgmi_power_down(adev, false))
		dev_warn(adev->dev, "Failed to disallow XGMI power down");

	ret = psp_ras_trigger_error(&adev->psp, block_info);

	if (amdgpu_ras_intr_triggered())
		return ret;

	if (amdgpu_dpm_allow_xgmi_power_down(adev, true))
		dev_warn(adev->dev, "Failed to allow XGMI power down");

	if (amdgpu_dpm_set_df_cstate(adev, DF_CSTATE_DISALLOW))
		dev_warn(adev->dev, "Failed to allow df cstate");

	return ret;
}

855 856 857 858 859 860
/* wrapper of psp_ras_trigger_error */
int amdgpu_ras_error_inject(struct amdgpu_device *adev,
		struct ras_inject_if *info)
{
	struct ras_manager *obj = amdgpu_ras_find_obj(adev, &info->head);
	struct ta_ras_trigger_error_input block_info = {
861 862
		.block_id =  amdgpu_ras_block_to_ta(info->head.block),
		.inject_error_type = amdgpu_ras_error_to_ta(info->head.type),
863 864 865 866 867 868 869 870 871
		.sub_block_index = info->head.sub_block_index,
		.address = info->address,
		.value = info->value,
	};
	int ret = 0;

	if (!obj)
		return -EINVAL;

872 873
	/* Calculate XGMI relative offset */
	if (adev->gmc.xgmi.num_physical_nodes > 1) {
874 875 876
		block_info.address =
			amdgpu_xgmi_get_relative_phy_addr(adev,
							  block_info.address);
877 878
	}

879 880 881 882 883 884 885 886
	switch (info->head.block) {
	case AMDGPU_RAS_BLOCK__GFX:
		if (adev->gfx.funcs->ras_error_inject)
			ret = adev->gfx.funcs->ras_error_inject(adev, info);
		else
			ret = -EINVAL;
		break;
	case AMDGPU_RAS_BLOCK__UMC:
887
	case AMDGPU_RAS_BLOCK__MMHUB:
888
	case AMDGPU_RAS_BLOCK__PCIE_BIF:
889 890
		ret = psp_ras_trigger_error(&adev->psp, &block_info);
		break;
891 892 893
	case AMDGPU_RAS_BLOCK__XGMI_WAFL:
		ret = amdgpu_ras_error_inject_xgmi(adev, &block_info);
		break;
894
	default:
895
		dev_info(adev->dev, "%s error injection is not supported yet\n",
896
			 ras_block_str(info->head.block));
897
		ret = -EINVAL;
898 899
	}

900 901 902 903
	amdgpu_ras_parse_status_code(adev,
				     "inject",
				     ras_block_str(info->head.block),
				     (enum ta_ras_status)ret);
904 905 906 907 908 909 910 911 912 913 914 915

	return ret;
}

int amdgpu_ras_error_cure(struct amdgpu_device *adev,
		struct ras_cure_if *info)
{
	/* psp fw has no cure interface for now. */
	return 0;
}

/* get the total error counts on all IPs */
916
unsigned long amdgpu_ras_query_error_count(struct amdgpu_device *adev,
917 918 919 920 921 922 923
		bool is_ce)
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
	struct ras_manager *obj;
	struct ras_err_data data = {0, 0};

	if (!con)
924
		return 0;
925 926 927 928 929 930 931

	list_for_each_entry(obj, &con->head, node) {
		struct ras_query_if info = {
			.head = obj->head,
		};

		if (amdgpu_ras_error_query(adev, &info))
932
			return 0;
933 934 935 936 937 938 939 940 941 942 943 944

		data.ce_count += info.ce_count;
		data.ue_count += info.ue_count;
	}

	return is_ce ? data.ce_count : data.ue_count;
}
/* query/inject/cure end */


/* sysfs begin */

945 946 947 948 949 950
static int amdgpu_ras_badpages_read(struct amdgpu_device *adev,
		struct ras_badpage **bps, unsigned int *count);

static char *amdgpu_ras_badpage_flags_str(unsigned int flags)
{
	switch (flags) {
951
	case AMDGPU_RAS_RETIRE_PAGE_RESERVED:
952
		return "R";
953
	case AMDGPU_RAS_RETIRE_PAGE_PENDING:
954
		return "P";
955
	case AMDGPU_RAS_RETIRE_PAGE_FAULT:
956 957
	default:
		return "F";
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	}
959 960
}

961 962
/**
 * DOC: AMDGPU RAS sysfs gpu_vram_bad_pages Interface
963 964 965 966 967 968 969 970 971 972 973
 *
 * It allows user to read the bad pages of vram on the gpu through
 * /sys/class/drm/card[0/1/2...]/device/ras/gpu_vram_bad_pages
 *
 * It outputs multiple lines, and each line stands for one gpu page.
 *
 * The format of one line is below,
 * gpu pfn : gpu page size : flags
 *
 * gpu pfn and gpu page size are printed in hex format.
 * flags can be one of below character,
974
 *
975
 * R: reserved, this gpu page is reserved and not able to use.
976
 *
977
 * P: pending for reserve, this gpu page is marked as bad, will be reserved
978 979
 * in next window of page_reserve.
 *
980 981
 * F: unable to reserve. this gpu page can't be reserved due to some reasons.
 *
982 983 984 985 986 987 988
 * Examples:
 *
 * .. code-block:: bash
 *
 *	0x00000001 : 0x00001000 : R
 *	0x00000002 : 0x00001000 : P
 *
989 990 991 992 993 994 995 996 997 998 999
 */

static ssize_t amdgpu_ras_sysfs_badpages_read(struct file *f,
		struct kobject *kobj, struct bin_attribute *attr,
		char *buf, loff_t ppos, size_t count)
{
	struct amdgpu_ras *con =
		container_of(attr, struct amdgpu_ras, badpages_attr);
	struct amdgpu_device *adev = con->adev;
	const unsigned int element_size =
		sizeof("0xabcdabcd : 0x12345678 : R\n") - 1;
1000 1001
	unsigned int start = div64_ul(ppos + element_size - 1, element_size);
	unsigned int end = div64_ul(ppos + count - 1, element_size);
1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022
	ssize_t s = 0;
	struct ras_badpage *bps = NULL;
	unsigned int bps_count = 0;

	memset(buf, 0, count);

	if (amdgpu_ras_badpages_read(adev, &bps, &bps_count))
		return 0;

	for (; start < end && start < bps_count; start++)
		s += scnprintf(&buf[s], element_size + 1,
				"0x%08x : 0x%08x : %1s\n",
				bps[start].bp,
				bps[start].size,
				amdgpu_ras_badpage_flags_str(bps[start].flags));

	kfree(bps);

	return s;
}

1023 1024 1025 1026 1027 1028
static ssize_t amdgpu_ras_sysfs_features_read(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	struct amdgpu_ras *con =
		container_of(attr, struct amdgpu_ras, features_attr);

1029
	return scnprintf(buf, PAGE_SIZE, "feature mask: 0x%x\n", con->features);
1030 1031
}

1032 1033 1034 1035 1036 1037 1038 1039 1040
static void amdgpu_ras_sysfs_remove_bad_page_node(struct amdgpu_device *adev)
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);

	sysfs_remove_file_from_group(&adev->dev->kobj,
				&con->badpages_attr.attr,
				RAS_FS_NAME);
}

1041 1042 1043 1044 1045 1046 1047 1048
static int amdgpu_ras_sysfs_remove_feature_node(struct amdgpu_device *adev)
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
	struct attribute *attrs[] = {
		&con->features_attr.attr,
		NULL
	};
	struct attribute_group group = {
1049
		.name = RAS_FS_NAME,
1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078
		.attrs = attrs,
	};

	sysfs_remove_group(&adev->dev->kobj, &group);

	return 0;
}

int amdgpu_ras_sysfs_create(struct amdgpu_device *adev,
		struct ras_fs_if *head)
{
	struct ras_manager *obj = amdgpu_ras_find_obj(adev, &head->head);

	if (!obj || obj->attr_inuse)
		return -EINVAL;

	get_obj(obj);

	memcpy(obj->fs_data.sysfs_name,
			head->sysfs_name,
			sizeof(obj->fs_data.sysfs_name));

	obj->sysfs_attr = (struct device_attribute){
		.attr = {
			.name = obj->fs_data.sysfs_name,
			.mode = S_IRUGO,
		},
			.show = amdgpu_ras_sysfs_read,
	};
1079
	sysfs_attr_init(&obj->sysfs_attr.attr);
1080 1081 1082

	if (sysfs_add_file_to_group(&adev->dev->kobj,
				&obj->sysfs_attr.attr,
1083
				RAS_FS_NAME)) {
1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102
		put_obj(obj);
		return -EINVAL;
	}

	obj->attr_inuse = 1;

	return 0;
}

int amdgpu_ras_sysfs_remove(struct amdgpu_device *adev,
		struct ras_common_if *head)
{
	struct ras_manager *obj = amdgpu_ras_find_obj(adev, head);

	if (!obj || !obj->attr_inuse)
		return -EINVAL;

	sysfs_remove_file_from_group(&adev->dev->kobj,
				&obj->sysfs_attr.attr,
1103
				RAS_FS_NAME);
1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118
	obj->attr_inuse = 0;
	put_obj(obj);

	return 0;
}

static int amdgpu_ras_sysfs_remove_all(struct amdgpu_device *adev)
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
	struct ras_manager *obj, *tmp;

	list_for_each_entry_safe(obj, tmp, &con->head, node) {
		amdgpu_ras_sysfs_remove(adev, &obj->head);
	}

1119 1120 1121
	if (amdgpu_bad_page_threshold != 0)
		amdgpu_ras_sysfs_remove_bad_page_node(adev);

1122 1123 1124 1125 1126 1127
	amdgpu_ras_sysfs_remove_feature_node(adev);

	return 0;
}
/* sysfs end */

1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145
/**
 * DOC: AMDGPU RAS Reboot Behavior for Unrecoverable Errors
 *
 * Normally when there is an uncorrectable error, the driver will reset
 * the GPU to recover.  However, in the event of an unrecoverable error,
 * the driver provides an interface to reboot the system automatically
 * in that event.
 *
 * The following file in debugfs provides that interface:
 * /sys/kernel/debug/dri/[0/1/2...]/ras/auto_reboot
 *
 * Usage:
 *
 * .. code-block:: bash
 *
 *	echo true > .../ras/auto_reboot
 *
 */
1146
/* debugfs begin */
1147
static void amdgpu_ras_debugfs_create_ctrl_node(struct amdgpu_device *adev)
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xinhui pan 已提交
1148 1149
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
1150
	struct drm_minor *minor = adev_to_drm(adev)->primary;
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1151

1152
	con->dir = debugfs_create_dir(RAS_FS_NAME, minor->debugfs_root);
1153 1154 1155 1156
	debugfs_create_file("ras_ctrl", S_IWUGO | S_IRUGO, con->dir,
				adev, &amdgpu_ras_debugfs_ctrl_ops);
	debugfs_create_file("ras_eeprom_reset", S_IWUGO | S_IRUGO, con->dir,
				adev, &amdgpu_ras_debugfs_eeprom_ops);
1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167

	/*
	 * After one uncorrectable error happens, usually GPU recovery will
	 * be scheduled. But due to the known problem in GPU recovery failing
	 * to bring GPU back, below interface provides one direct way to
	 * user to reboot system automatically in such case within
	 * ERREVENT_ATHUB_INTERRUPT generated. Normal GPU recovery routine
	 * will never be called.
	 */
	debugfs_create_bool("auto_reboot", S_IWUGO | S_IRUGO, con->dir,
				&con->reboot);
1168 1169 1170 1171 1172 1173 1174

	/*
	 * User could set this not to clean up hardware's error count register
	 * of RAS IPs during ras recovery.
	 */
	debugfs_create_bool("disable_ras_err_cnt_harvest", 0644,
			con->dir, &con->disable_ras_err_cnt_harvest);
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1175 1176
}

1177
void amdgpu_ras_debugfs_create(struct amdgpu_device *adev,
1178 1179 1180 1181 1182 1183
		struct ras_fs_if *head)
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
	struct ras_manager *obj = amdgpu_ras_find_obj(adev, &head->head);

	if (!obj || obj->ent)
1184
		return;
1185 1186 1187 1188 1189 1190 1191

	get_obj(obj);

	memcpy(obj->fs_data.debugfs_name,
			head->debugfs_name,
			sizeof(obj->fs_data.debugfs_name));

1192 1193 1194
	obj->ent = debugfs_create_file(obj->fs_data.debugfs_name,
				       S_IWUGO | S_IRUGO, con->dir, obj,
				       &amdgpu_ras_debugfs_ops);
1195 1196
}

1197 1198
void amdgpu_ras_debugfs_create_all(struct amdgpu_device *adev)
{
1199
#if defined(CONFIG_DEBUG_FS)
1200
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
1201
	struct ras_manager *obj;
1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212
	struct ras_fs_if fs_info;

	/*
	 * it won't be called in resume path, no need to check
	 * suspend and gpu reset status
	 */
	if (!con)
		return;

	amdgpu_ras_debugfs_create_ctrl_node(adev);

1213
	list_for_each_entry(obj, &con->head, node) {
1214 1215 1216 1217 1218 1219 1220 1221
		if (amdgpu_ras_is_supported(adev, obj->head.block) &&
			(obj->attr_inuse == 1)) {
			sprintf(fs_info.debugfs_name, "%s_err_inject",
					ras_block_str(obj->head.block));
			fs_info.head = obj->head;
			amdgpu_ras_debugfs_create(adev, &fs_info);
		}
	}
1222
#endif
1223 1224
}

1225
void amdgpu_ras_debugfs_remove(struct amdgpu_device *adev,
1226 1227 1228 1229 1230
		struct ras_common_if *head)
{
	struct ras_manager *obj = amdgpu_ras_find_obj(adev, head);

	if (!obj || !obj->ent)
1231
		return;
1232 1233 1234 1235 1236

	obj->ent = NULL;
	put_obj(obj);
}

1237
static void amdgpu_ras_debugfs_remove_all(struct amdgpu_device *adev)
1238
{
1239
#if defined(CONFIG_DEBUG_FS)
1240 1241 1242 1243 1244 1245 1246 1247
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
	struct ras_manager *obj, *tmp;

	list_for_each_entry_safe(obj, tmp, &con->head, node) {
		amdgpu_ras_debugfs_remove(adev, &obj->head);
	}

	con->dir = NULL;
1248
#endif
1249 1250 1251 1252
}
/* debugfs end */

/* ras fs */
1253 1254 1255 1256
static BIN_ATTR(gpu_vram_bad_pages, S_IRUGO,
		amdgpu_ras_sysfs_badpages_read, NULL, 0);
static DEVICE_ATTR(features, S_IRUGO,
		amdgpu_ras_sysfs_features_read, NULL);
1257 1258
static int amdgpu_ras_fs_init(struct amdgpu_device *adev)
{
1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
	struct attribute_group group = {
		.name = RAS_FS_NAME,
	};
	struct attribute *attrs[] = {
		&con->features_attr.attr,
		NULL
	};
	struct bin_attribute *bin_attrs[] = {
		NULL,
		NULL,
	};
1271
	int r;
1272

1273 1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286
	/* add features entry */
	con->features_attr = dev_attr_features;
	group.attrs = attrs;
	sysfs_attr_init(attrs[0]);

	if (amdgpu_bad_page_threshold != 0) {
		/* add bad_page_features entry */
		bin_attr_gpu_vram_bad_pages.private = NULL;
		con->badpages_attr = bin_attr_gpu_vram_bad_pages;
		bin_attrs[0] = &con->badpages_attr;
		group.bin_attrs = bin_attrs;
		sysfs_bin_attr_init(bin_attrs[0]);
	}

1287 1288 1289
	r = sysfs_create_group(&adev->dev->kobj, &group);
	if (r)
		dev_err(adev->dev, "Failed to create RAS sysfs group!");
1290

1291 1292 1293 1294 1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305 1306 1307
	return 0;
}

static int amdgpu_ras_fs_fini(struct amdgpu_device *adev)
{
	amdgpu_ras_debugfs_remove_all(adev);
	amdgpu_ras_sysfs_remove_all(adev);
	return 0;
}
/* ras fs end */

/* ih begin */
static void amdgpu_ras_interrupt_handler(struct ras_manager *obj)
{
	struct ras_ih_data *data = &obj->ih_data;
	struct amdgpu_iv_entry entry;
	int ret;
1308
	struct ras_err_data err_data = {0, 0, 0, NULL};
1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322

	while (data->rptr != data->wptr) {
		rmb();
		memcpy(&entry, &data->ring[data->rptr],
				data->element_size);

		wmb();
		data->rptr = (data->aligned_element_size +
				data->rptr) % data->ring_size;

		/* Let IP handle its data, maybe we need get the output
		 * from the callback to udpate the error type/count, etc
		 */
		if (data->cb) {
1323
			ret = data->cb(obj->adev, &err_data, &entry);
1324 1325 1326 1327 1328
			/* ue will trigger an interrupt, and in that case
			 * we need do a reset to recovery the whole system.
			 * But leave IP do that recovery, here we just dispatch
			 * the error.
			 */
1329
			if (ret == AMDGPU_RAS_SUCCESS) {
1330 1331 1332
				/* these counts could be left as 0 if
				 * some blocks do not count error number
				 */
1333
				obj->err_data.ue_count += err_data.ue_count;
1334
				obj->err_data.ce_count += err_data.ce_count;
1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446 1447 1448 1449 1450 1451 1452 1453
			}
		}
	}
}

static void amdgpu_ras_interrupt_process_handler(struct work_struct *work)
{
	struct ras_ih_data *data =
		container_of(work, struct ras_ih_data, ih_work);
	struct ras_manager *obj =
		container_of(data, struct ras_manager, ih_data);

	amdgpu_ras_interrupt_handler(obj);
}

int amdgpu_ras_interrupt_dispatch(struct amdgpu_device *adev,
		struct ras_dispatch_if *info)
{
	struct ras_manager *obj = amdgpu_ras_find_obj(adev, &info->head);
	struct ras_ih_data *data = &obj->ih_data;

	if (!obj)
		return -EINVAL;

	if (data->inuse == 0)
		return 0;

	/* Might be overflow... */
	memcpy(&data->ring[data->wptr], info->entry,
			data->element_size);

	wmb();
	data->wptr = (data->aligned_element_size +
			data->wptr) % data->ring_size;

	schedule_work(&data->ih_work);

	return 0;
}

int amdgpu_ras_interrupt_remove_handler(struct amdgpu_device *adev,
		struct ras_ih_if *info)
{
	struct ras_manager *obj = amdgpu_ras_find_obj(adev, &info->head);
	struct ras_ih_data *data;

	if (!obj)
		return -EINVAL;

	data = &obj->ih_data;
	if (data->inuse == 0)
		return 0;

	cancel_work_sync(&data->ih_work);

	kfree(data->ring);
	memset(data, 0, sizeof(*data));
	put_obj(obj);

	return 0;
}

int amdgpu_ras_interrupt_add_handler(struct amdgpu_device *adev,
		struct ras_ih_if *info)
{
	struct ras_manager *obj = amdgpu_ras_find_obj(adev, &info->head);
	struct ras_ih_data *data;

	if (!obj) {
		/* in case we registe the IH before enable ras feature */
		obj = amdgpu_ras_create_obj(adev, &info->head);
		if (!obj)
			return -EINVAL;
	} else
		get_obj(obj);

	data = &obj->ih_data;
	/* add the callback.etc */
	*data = (struct ras_ih_data) {
		.inuse = 0,
		.cb = info->cb,
		.element_size = sizeof(struct amdgpu_iv_entry),
		.rptr = 0,
		.wptr = 0,
	};

	INIT_WORK(&data->ih_work, amdgpu_ras_interrupt_process_handler);

	data->aligned_element_size = ALIGN(data->element_size, 8);
	/* the ring can store 64 iv entries. */
	data->ring_size = 64 * data->aligned_element_size;
	data->ring = kmalloc(data->ring_size, GFP_KERNEL);
	if (!data->ring) {
		put_obj(obj);
		return -ENOMEM;
	}

	/* IH is ready */
	data->inuse = 1;

	return 0;
}

static int amdgpu_ras_interrupt_remove_all(struct amdgpu_device *adev)
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
	struct ras_manager *obj, *tmp;

	list_for_each_entry_safe(obj, tmp, &con->head, node) {
		struct ras_ih_if info = {
			.head = obj->head,
		};
		amdgpu_ras_interrupt_remove_handler(adev, &info);
	}

	return 0;
}
/* ih end */

1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480
/* traversal all IPs except NBIO to query error counter */
static void amdgpu_ras_log_on_err_counter(struct amdgpu_device *adev)
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
	struct ras_manager *obj;

	if (!con)
		return;

	list_for_each_entry(obj, &con->head, node) {
		struct ras_query_if info = {
			.head = obj->head,
		};

		/*
		 * PCIE_BIF IP has one different isr by ras controller
		 * interrupt, the specific ras counter query will be
		 * done in that isr. So skip such block from common
		 * sync flood interrupt isr calling.
		 */
		if (info.head.block == AMDGPU_RAS_BLOCK__PCIE_BIF)
			continue;

		amdgpu_ras_error_query(adev, &info);
	}
}

1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519
/* Parse RdRspStatus and WrRspStatus */
void amdgpu_ras_error_status_query(struct amdgpu_device *adev,
		struct ras_query_if *info)
{
	/*
	 * Only two block need to query read/write
	 * RspStatus at current state
	 */
	switch (info->head.block) {
	case AMDGPU_RAS_BLOCK__GFX:
		if (adev->gfx.funcs->query_ras_error_status)
			adev->gfx.funcs->query_ras_error_status(adev);
		break;
	case AMDGPU_RAS_BLOCK__MMHUB:
		if (adev->mmhub.funcs->query_ras_error_status)
			adev->mmhub.funcs->query_ras_error_status(adev);
		break;
	default:
		break;
	}
}

static void amdgpu_ras_query_err_status(struct amdgpu_device *adev)
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
	struct ras_manager *obj;

	if (!con)
		return;

	list_for_each_entry(obj, &con->head, node) {
		struct ras_query_if info = {
			.head = obj->head,
		};

		amdgpu_ras_error_status_query(adev, &info);
	}
}

1520
/* recovery begin */
1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539

/* return 0 on success.
 * caller need free bps.
 */
static int amdgpu_ras_badpages_read(struct amdgpu_device *adev,
		struct ras_badpage **bps, unsigned int *count)
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
	struct ras_err_handler_data *data;
	int i = 0;
	int ret = 0;

	if (!con || !con->eh_data || !bps || !count)
		return -EINVAL;

	mutex_lock(&con->recovery_lock);
	data = con->eh_data;
	if (!data || data->count == 0) {
		*bps = NULL;
1540
		ret = -EINVAL;
1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551
		goto out;
	}

	*bps = kmalloc(sizeof(struct ras_badpage) * data->count, GFP_KERNEL);
	if (!*bps) {
		ret = -ENOMEM;
		goto out;
	}

	for (; i < data->count; i++) {
		(*bps)[i] = (struct ras_badpage){
1552
			.bp = data->bps[i].retired_page,
1553
			.size = AMDGPU_GPU_PAGE_SIZE,
1554
			.flags = AMDGPU_RAS_RETIRE_PAGE_RESERVED,
1555
		};
1556 1557 1558 1559
		ret = amdgpu_vram_mgr_query_page_status(
				ttm_manager_type(&adev->mman.bdev, TTM_PL_VRAM),
				data->bps[i].retired_page);
		if (ret == -EBUSY)
1560
			(*bps)[i].flags = AMDGPU_RAS_RETIRE_PAGE_PENDING;
1561
		else if (ret == -ENOENT)
1562
			(*bps)[i].flags = AMDGPU_RAS_RETIRE_PAGE_FAULT;
1563 1564 1565 1566 1567 1568 1569 1570
	}

	*count = data->count;
out:
	mutex_unlock(&con->recovery_lock);
	return ret;
}

1571 1572 1573 1574
static void amdgpu_ras_do_recovery(struct work_struct *work)
{
	struct amdgpu_ras *ras =
		container_of(work, struct amdgpu_ras, recovery_work);
1575 1576 1577 1578
	struct amdgpu_device *remote_adev = NULL;
	struct amdgpu_device *adev = ras->adev;
	struct list_head device_list, *device_list_handle =  NULL;

1579
	if (!ras->disable_ras_err_cnt_harvest) {
1580 1581
		struct amdgpu_hive_info *hive = amdgpu_get_xgmi_hive(adev);

1582 1583 1584 1585 1586 1587 1588 1589
		/* Build list of devices to query RAS related errors */
		if  (hive && adev->gmc.xgmi.num_physical_nodes > 1) {
			device_list_handle = &hive->device_list;
		} else {
			INIT_LIST_HEAD(&device_list);
			list_add_tail(&adev->gmc.xgmi.head, &device_list);
			device_list_handle = &device_list;
		}
1590

1591
		list_for_each_entry(remote_adev,
1592 1593
				device_list_handle, gmc.xgmi.head) {
			amdgpu_ras_query_err_status(remote_adev);
1594
			amdgpu_ras_log_on_err_counter(remote_adev);
1595
		}
1596 1597

		amdgpu_put_xgmi_hive(hive);
1598
	}
1599

1600
	if (amdgpu_device_should_recover_gpu(ras->adev))
1601
		amdgpu_device_gpu_recover(ras->adev, NULL);
1602 1603 1604 1605 1606 1607 1608 1609 1610
	atomic_set(&ras->in_recovery, 0);
}

/* alloc/realloc bps array */
static int amdgpu_ras_realloc_eh_data_space(struct amdgpu_device *adev,
		struct ras_err_handler_data *data, int pages)
{
	unsigned int old_space = data->count + data->space_left;
	unsigned int new_space = old_space + pages;
1611 1612 1613
	unsigned int align_space = ALIGN(new_space, 512);
	void *bps = kmalloc(align_space * sizeof(*data->bps), GFP_KERNEL);

1614
	if (!bps) {
1615
		kfree(bps);
1616
		return -ENOMEM;
1617
	}
1618 1619

	if (data->bps) {
1620
		memcpy(bps, data->bps,
1621 1622 1623 1624
				data->count * sizeof(*data->bps));
		kfree(data->bps);
	}

1625
	data->bps = bps;
1626 1627 1628 1629 1630 1631
	data->space_left += align_space - old_space;
	return 0;
}

/* it deal with vram only. */
int amdgpu_ras_add_bad_pages(struct amdgpu_device *adev,
1632
		struct eeprom_table_record *bps, int pages)
1633 1634
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
X
xinhui pan 已提交
1635
	struct ras_err_handler_data *data;
1636
	int ret = 0;
1637
	uint32_t i;
1638

X
xinhui pan 已提交
1639
	if (!con || !con->eh_data || !bps || pages <= 0)
1640 1641 1642
		return 0;

	mutex_lock(&con->recovery_lock);
X
xinhui pan 已提交
1643
	data = con->eh_data;
1644 1645 1646
	if (!data)
		goto out;

1647 1648 1649 1650 1651 1652 1653
	for (i = 0; i < pages; i++) {
		if (amdgpu_ras_check_bad_page_unlock(con,
			bps[i].retired_page << AMDGPU_GPU_PAGE_SHIFT))
			continue;

		if (!data->space_left &&
			amdgpu_ras_realloc_eh_data_space(adev, data, 256)) {
1654 1655 1656 1657
			ret = -ENOMEM;
			goto out;
		}

1658 1659 1660 1661
		amdgpu_vram_mgr_reserve_range(
			ttm_manager_type(&adev->mman.bdev, TTM_PL_VRAM),
			bps[i].retired_page << AMDGPU_GPU_PAGE_SHIFT,
			AMDGPU_GPU_PAGE_SIZE);
1662

1663 1664 1665 1666
		memcpy(&data->bps[data->count], &bps[i], sizeof(*data->bps));
		data->count++;
		data->space_left--;
	}
1667 1668 1669 1670 1671 1672
out:
	mutex_unlock(&con->recovery_lock);

	return ret;
}

T
Tao Zhou 已提交
1673 1674 1675 1676
/*
 * write error record array to eeprom, the function should be
 * protected by recovery_lock
 */
1677
int amdgpu_ras_save_bad_pages(struct amdgpu_device *adev)
T
Tao Zhou 已提交
1678 1679 1680
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
	struct ras_err_handler_data *data;
1681
	struct amdgpu_ras_eeprom_control *control;
T
Tao Zhou 已提交
1682 1683 1684 1685 1686
	int save_count;

	if (!con || !con->eh_data)
		return 0;

1687
	control = &con->eeprom_control;
T
Tao Zhou 已提交
1688 1689 1690
	data = con->eh_data;
	save_count = data->count - control->num_recs;
	/* only new entries are saved */
1691
	if (save_count > 0) {
1692
		if (amdgpu_ras_eeprom_process_recods(control,
T
Tao Zhou 已提交
1693 1694 1695
							&data->bps[control->num_recs],
							true,
							save_count)) {
1696
			dev_err(adev->dev, "Failed to save EEPROM table data!");
T
Tao Zhou 已提交
1697 1698 1699
			return -EIO;
		}

1700 1701 1702
		dev_info(adev->dev, "Saved %d pages to EEPROM table.\n", save_count);
	}

T
Tao Zhou 已提交
1703 1704 1705 1706 1707 1708 1709 1710 1711 1712 1713 1714 1715 1716 1717
	return 0;
}

/*
 * read error record array in eeprom and reserve enough space for
 * storing new bad pages
 */
static int amdgpu_ras_load_bad_pages(struct amdgpu_device *adev)
{
	struct amdgpu_ras_eeprom_control *control =
					&adev->psp.ras.ras->eeprom_control;
	struct eeprom_table_record *bps = NULL;
	int ret = 0;

	/* no bad page record, skip eeprom access */
1718
	if (!control->num_recs || (amdgpu_bad_page_threshold == 0))
T
Tao Zhou 已提交
1719 1720 1721 1722 1723 1724 1725 1726
		return ret;

	bps = kcalloc(control->num_recs, sizeof(*bps), GFP_KERNEL);
	if (!bps)
		return -ENOMEM;

	if (amdgpu_ras_eeprom_process_recods(control, bps, false,
		control->num_recs)) {
1727
		dev_err(adev->dev, "Failed to load EEPROM table records!");
T
Tao Zhou 已提交
1728 1729 1730 1731 1732 1733 1734 1735 1736 1737 1738
		ret = -EIO;
		goto out;
	}

	ret = amdgpu_ras_add_bad_pages(adev, bps, control->num_recs);

out:
	kfree(bps);
	return ret;
}

1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752
static bool amdgpu_ras_check_bad_page_unlock(struct amdgpu_ras *con,
				uint64_t addr)
{
	struct ras_err_handler_data *data = con->eh_data;
	int i;

	addr >>= AMDGPU_GPU_PAGE_SHIFT;
	for (i = 0; i < data->count; i++)
		if (addr == data->bps[i].retired_page)
			return true;

	return false;
}

1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765 1766 1767
/*
 * check if an address belongs to bad page
 *
 * Note: this check is only for umc block
 */
static bool amdgpu_ras_check_bad_page(struct amdgpu_device *adev,
				uint64_t addr)
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
	bool ret = false;

	if (!con || !con->eh_data)
		return ret;

	mutex_lock(&con->recovery_lock);
1768
	ret = amdgpu_ras_check_bad_page_unlock(con, addr);
1769 1770 1771 1772
	mutex_unlock(&con->recovery_lock);
	return ret;
}

1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813
static void amdgpu_ras_validate_threshold(struct amdgpu_device *adev,
					uint32_t max_length)
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
	int tmp_threshold = amdgpu_bad_page_threshold;
	u64 val;

	/*
	 * Justification of value bad_page_cnt_threshold in ras structure
	 *
	 * Generally, -1 <= amdgpu_bad_page_threshold <= max record length
	 * in eeprom, and introduce two scenarios accordingly.
	 *
	 * Bad page retirement enablement:
	 *    - If amdgpu_bad_page_threshold = -1,
	 *      bad_page_cnt_threshold = typical value by formula.
	 *
	 *    - When the value from user is 0 < amdgpu_bad_page_threshold <
	 *      max record length in eeprom, use it directly.
	 *
	 * Bad page retirement disablement:
	 *    - If amdgpu_bad_page_threshold = 0, bad page retirement
	 *      functionality is disabled, and bad_page_cnt_threshold will
	 *      take no effect.
	 */

	if (tmp_threshold < -1)
		tmp_threshold = -1;
	else if (tmp_threshold > max_length)
		tmp_threshold = max_length;

	if (tmp_threshold == -1) {
		val = adev->gmc.mc_vram_size;
		do_div(val, RAS_BAD_PAGE_RATE);
		con->bad_page_cnt_threshold = min(lower_32_bits(val),
						max_length);
	} else {
		con->bad_page_cnt_threshold = tmp_threshold;
	}
}

1814
int amdgpu_ras_recovery_init(struct amdgpu_device *adev)
1815 1816
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
1817
	struct ras_err_handler_data **data;
1818
	uint32_t max_eeprom_records_len = 0;
1819
	bool exc_err_limit = false;
T
Tao Zhou 已提交
1820
	int ret;
1821

1822 1823 1824 1825 1826
	if (con)
		data = &con->eh_data;
	else
		return 0;

1827 1828 1829 1830 1831
	*data = kmalloc(sizeof(**data), GFP_KERNEL | __GFP_ZERO);
	if (!*data) {
		ret = -ENOMEM;
		goto out;
	}
1832 1833 1834 1835 1836 1837

	mutex_init(&con->recovery_lock);
	INIT_WORK(&con->recovery_work, amdgpu_ras_do_recovery);
	atomic_set(&con->in_recovery, 0);
	con->adev = adev;

1838 1839 1840
	max_eeprom_records_len = amdgpu_ras_eeprom_get_record_max_length();
	amdgpu_ras_validate_threshold(adev, max_eeprom_records_len);

1841 1842 1843 1844 1845 1846
	ret = amdgpu_ras_eeprom_init(&con->eeprom_control, &exc_err_limit);
	/*
	 * This calling fails when exc_err_limit is true or
	 * ret != 0.
	 */
	if (exc_err_limit || ret)
1847
		goto free;
T
Tao Zhou 已提交
1848

1849
	if (con->eeprom_control.num_recs) {
T
Tao Zhou 已提交
1850 1851
		ret = amdgpu_ras_load_bad_pages(adev);
		if (ret)
1852
			goto free;
T
Tao Zhou 已提交
1853
	}
1854 1855

	return 0;
1856 1857 1858 1859

free:
	kfree((*data)->bps);
	kfree(*data);
1860
	con->eh_data = NULL;
1861
out:
1862
	dev_warn(adev->dev, "Failed to initialize ras recovery!\n");
1863

1864 1865 1866 1867 1868 1869 1870 1871 1872
	/*
	 * Except error threshold exceeding case, other failure cases in this
	 * function would not fail amdgpu driver init.
	 */
	if (!exc_err_limit)
		ret = 0;
	else
		ret = -EINVAL;

1873
	return ret;
1874 1875 1876 1877 1878 1879 1880
}

static int amdgpu_ras_recovery_fini(struct amdgpu_device *adev)
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
	struct ras_err_handler_data *data = con->eh_data;

1881 1882 1883 1884
	/* recovery_init failed to init it, fini is useless */
	if (!data)
		return 0;

1885 1886 1887 1888 1889 1890 1891 1892 1893 1894 1895 1896
	cancel_work_sync(&con->recovery_work);

	mutex_lock(&con->recovery_lock);
	con->eh_data = NULL;
	kfree(data->bps);
	kfree(data);
	mutex_unlock(&con->recovery_lock);

	return 0;
}
/* recovery end */

X
xinhui pan 已提交
1897 1898 1899 1900 1901 1902 1903 1904 1905 1906 1907 1908 1909
/* return 0 if ras will reset gpu and repost.*/
int amdgpu_ras_request_reset_on_boot(struct amdgpu_device *adev,
		unsigned int block)
{
	struct amdgpu_ras *ras = amdgpu_ras_get_context(adev);

	if (!ras)
		return -EINVAL;

	ras->flags |= AMDGPU_RAS_FLAG_INIT_NEED_RESET;
	return 0;
}

1910 1911 1912 1913
static int amdgpu_ras_check_asic_type(struct amdgpu_device *adev)
{
	if (adev->asic_type != CHIP_VEGA10 &&
		adev->asic_type != CHIP_VEGA20 &&
1914 1915
		adev->asic_type != CHIP_ARCTURUS &&
		adev->asic_type != CHIP_SIENNA_CICHLID)
1916 1917 1918 1919 1920
		return 1;
	else
		return 0;
}

1921 1922 1923 1924 1925 1926 1927 1928 1929 1930 1931
/*
 * check hardware's ras ability which will be saved in hw_supported.
 * if hardware does not support ras, we can skip some ras initializtion and
 * forbid some ras operations from IP.
 * if software itself, say boot parameter, limit the ras ability. We still
 * need allow IP do some limited operations, like disable. In such case,
 * we have to initialize ras as normal. but need check if operation is
 * allowed or not in each function.
 */
static void amdgpu_ras_check_supported(struct amdgpu_device *adev,
		uint32_t *hw_supported, uint32_t *supported)
1932
{
1933 1934
	*hw_supported = 0;
	*supported = 0;
1935

1936
	if (amdgpu_sriov_vf(adev) || !adev->is_atom_fw ||
1937
		amdgpu_ras_check_asic_type(adev))
1938
		return;
1939

1940
	if (amdgpu_atomfirmware_mem_ecc_supported(adev)) {
1941
		dev_info(adev->dev, "HBM ECC is active.\n");
1942 1943 1944
		*hw_supported |= (1 << AMDGPU_RAS_BLOCK__UMC |
				1 << AMDGPU_RAS_BLOCK__DF);
	} else
1945
		dev_info(adev->dev, "HBM ECC is not presented.\n");
1946 1947

	if (amdgpu_atomfirmware_sram_ecc_supported(adev)) {
1948
		dev_info(adev->dev, "SRAM ECC is active.\n");
1949 1950 1951
		*hw_supported |= ~(1 << AMDGPU_RAS_BLOCK__UMC |
				1 << AMDGPU_RAS_BLOCK__DF);
	} else
1952
		dev_info(adev->dev, "SRAM ECC is not presented.\n");
1953 1954 1955

	/* hw_supported needs to be aligned with RAS block mask. */
	*hw_supported &= AMDGPU_RAS_BLOCK_MASK;
1956

1957
	*supported = amdgpu_ras_enable == 0 ?
1958
			0 : *hw_supported & amdgpu_ras_mask;
1959
	adev->ras_features = *supported;
1960 1961 1962 1963 1964
}

int amdgpu_ras_init(struct amdgpu_device *adev)
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
1965
	int r;
1966

1967
	if (con)
1968 1969 1970 1971 1972 1973 1974 1975 1976 1977 1978 1979
		return 0;

	con = kmalloc(sizeof(struct amdgpu_ras) +
			sizeof(struct ras_manager) * AMDGPU_RAS_BLOCK_COUNT,
			GFP_KERNEL|__GFP_ZERO);
	if (!con)
		return -ENOMEM;

	con->objs = (struct ras_manager *)(con + 1);

	amdgpu_ras_set_context(adev, con);

1980 1981
	amdgpu_ras_check_supported(adev, &con->hw_supported,
			&con->supported);
1982
	if (!con->hw_supported || (adev->asic_type == CHIP_VEGA10)) {
1983
		r = 0;
1984
		goto release_con;
1985 1986
	}

1987 1988
	con->features = 0;
	INIT_LIST_HEAD(&con->head);
1989 1990
	/* Might need get this flag from vbios. */
	con->flags = RAS_DEFAULT_FLAGS;
1991

1992 1993 1994
	if (adev->nbio.funcs->init_ras_controller_interrupt) {
		r = adev->nbio.funcs->init_ras_controller_interrupt(adev);
		if (r)
1995
			goto release_con;
1996 1997 1998 1999 2000
	}

	if (adev->nbio.funcs->init_ras_err_event_athub_interrupt) {
		r = adev->nbio.funcs->init_ras_err_event_athub_interrupt(adev);
		if (r)
2001
			goto release_con;
2002 2003
	}

2004 2005
	if (amdgpu_ras_fs_init(adev)) {
		r = -EINVAL;
2006
		goto release_con;
2007
	}
2008

2009
	dev_info(adev->dev, "RAS INFO: ras initialized successfully, "
2010 2011
			"hardware ability[%x] ras_mask[%x]\n",
			con->hw_supported, con->supported);
2012
	return 0;
2013
release_con:
2014 2015 2016
	amdgpu_ras_set_context(adev, NULL);
	kfree(con);

2017
	return r;
2018 2019
}

2020 2021 2022 2023 2024 2025 2026 2027 2028 2029 2030 2031 2032 2033 2034 2035 2036 2037 2038 2039 2040
/* helper function to handle common stuff in ip late init phase */
int amdgpu_ras_late_init(struct amdgpu_device *adev,
			 struct ras_common_if *ras_block,
			 struct ras_fs_if *fs_info,
			 struct ras_ih_if *ih_info)
{
	int r;

	/* disable RAS feature per IP block if it is not supported */
	if (!amdgpu_ras_is_supported(adev, ras_block->block)) {
		amdgpu_ras_feature_enable_on_boot(adev, ras_block, 0);
		return 0;
	}

	r = amdgpu_ras_feature_enable_on_boot(adev, ras_block, 1);
	if (r) {
		if (r == -EAGAIN) {
			/* request gpu reset. will run again */
			amdgpu_ras_request_reset_on_boot(adev,
					ras_block->block);
			return 0;
2041
		} else if (adev->in_suspend || amdgpu_in_reset(adev)) {
2042 2043 2044 2045 2046 2047 2048 2049
			/* in resume phase, if fail to enable ras,
			 * clean up all ras fs nodes, and disable ras */
			goto cleanup;
		} else
			return r;
	}

	/* in resume phase, no need to create ras fs node */
2050
	if (adev->in_suspend || amdgpu_in_reset(adev))
2051 2052 2053 2054 2055 2056 2057 2058 2059 2060 2061 2062 2063 2064 2065 2066 2067 2068 2069 2070 2071 2072 2073 2074 2075 2076 2077 2078 2079 2080 2081 2082 2083 2084 2085 2086 2087
		return 0;

	if (ih_info->cb) {
		r = amdgpu_ras_interrupt_add_handler(adev, ih_info);
		if (r)
			goto interrupt;
	}

	r = amdgpu_ras_sysfs_create(adev, fs_info);
	if (r)
		goto sysfs;

	return 0;
cleanup:
	amdgpu_ras_sysfs_remove(adev, ras_block);
sysfs:
	if (ih_info->cb)
		amdgpu_ras_interrupt_remove_handler(adev, ih_info);
interrupt:
	amdgpu_ras_feature_enable(adev, ras_block, 0);
	return r;
}

/* helper function to remove ras fs node and interrupt handler */
void amdgpu_ras_late_fini(struct amdgpu_device *adev,
			  struct ras_common_if *ras_block,
			  struct ras_ih_if *ih_info)
{
	if (!ras_block || !ih_info)
		return;

	amdgpu_ras_sysfs_remove(adev, ras_block);
	if (ih_info->cb)
                amdgpu_ras_interrupt_remove_handler(adev, ih_info);
	amdgpu_ras_feature_enable(adev, ras_block, 0);
}

X
xinhui pan 已提交
2088
/* do some init work after IP late init as dependence.
2089
 * and it runs in resume/gpu reset/booting up cases.
X
xinhui pan 已提交
2090
 */
2091
void amdgpu_ras_resume(struct amdgpu_device *adev)
2092 2093 2094 2095 2096 2097 2098 2099
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
	struct ras_manager *obj, *tmp;

	if (!con)
		return;

	if (con->flags & AMDGPU_RAS_FLAG_INIT_BY_VBIOS) {
2100 2101 2102 2103 2104 2105 2106 2107 2108 2109 2110
		/* Set up all other IPs which are not implemented. There is a
		 * tricky thing that IP's actual ras error type should be
		 * MULTI_UNCORRECTABLE, but as driver does not handle it, so
		 * ERROR_NONE make sense anyway.
		 */
		amdgpu_ras_enable_all_features(adev, 1);

		/* We enable ras on all hw_supported block, but as boot
		 * parameter might disable some of them and one or more IP has
		 * not implemented yet. So we disable them on behalf.
		 */
2111 2112 2113 2114 2115 2116
		list_for_each_entry_safe(obj, tmp, &con->head, node) {
			if (!amdgpu_ras_is_supported(adev, obj->head.block)) {
				amdgpu_ras_feature_enable(adev, &obj->head, 0);
				/* there should be no any reference. */
				WARN_ON(alive_obj(obj));
			}
2117
		}
2118
	}
X
xinhui pan 已提交
2119 2120 2121 2122 2123 2124 2125 2126 2127 2128 2129

	if (con->flags & AMDGPU_RAS_FLAG_INIT_NEED_RESET) {
		con->flags &= ~AMDGPU_RAS_FLAG_INIT_NEED_RESET;
		/* setup ras obj state as disabled.
		 * for init_by_vbios case.
		 * if we want to enable ras, just enable it in a normal way.
		 * If we want do disable it, need setup ras obj as enabled,
		 * then issue another TA disable cmd.
		 * See feature_enable_on_boot
		 */
		amdgpu_ras_disable_all_features(adev, 1);
2130
		amdgpu_ras_reset_gpu(adev);
X
xinhui pan 已提交
2131
	}
2132 2133
}

2134 2135 2136 2137 2138 2139 2140 2141 2142 2143 2144 2145 2146
void amdgpu_ras_suspend(struct amdgpu_device *adev)
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);

	if (!con)
		return;

	amdgpu_ras_disable_all_features(adev, 0);
	/* Make sure all ras objects are disabled. */
	if (con->features)
		amdgpu_ras_disable_all_features(adev, 1);
}

2147 2148 2149 2150 2151 2152 2153 2154 2155 2156 2157 2158 2159 2160 2161 2162 2163 2164 2165 2166 2167 2168 2169 2170 2171 2172 2173 2174 2175 2176 2177 2178 2179 2180
/* do some fini work before IP fini as dependence */
int amdgpu_ras_pre_fini(struct amdgpu_device *adev)
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);

	if (!con)
		return 0;

	/* Need disable ras on all IPs here before ip [hw/sw]fini */
	amdgpu_ras_disable_all_features(adev, 0);
	amdgpu_ras_recovery_fini(adev);
	return 0;
}

int amdgpu_ras_fini(struct amdgpu_device *adev)
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);

	if (!con)
		return 0;

	amdgpu_ras_fs_fini(adev);
	amdgpu_ras_interrupt_remove_all(adev);

	WARN(con->features, "Feature mask is not cleared");

	if (con->features)
		amdgpu_ras_disable_all_features(adev, 1);

	amdgpu_ras_set_context(adev, NULL);
	kfree(con);

	return 0;
}
2181 2182 2183

void amdgpu_ras_global_ras_isr(struct amdgpu_device *adev)
{
2184 2185 2186 2187 2188 2189
	uint32_t hw_supported, supported;

	amdgpu_ras_check_supported(adev, &hw_supported, &supported);
	if (!hw_supported)
		return;

2190
	if (atomic_cmpxchg(&amdgpu_ras_in_intr, 0, 1) == 0) {
2191 2192
		dev_info(adev->dev, "uncorrectable hardware error"
			"(ERREVENT_ATHUB_INTERRUPT) detected!\n");
2193

2194
		amdgpu_ras_reset_gpu(adev);
2195 2196
	}
}
2197 2198 2199 2200 2201 2202 2203 2204 2205 2206 2207

bool amdgpu_ras_need_emergency_restart(struct amdgpu_device *adev)
{
	if (adev->asic_type == CHIP_VEGA20 &&
	    adev->pm.fw_version <= 0x283400) {
		return !(amdgpu_asic_reset_method(adev) == AMD_RESET_METHOD_BACO) &&
				amdgpu_ras_intr_triggered();
	}

	return false;
}
2208 2209 2210 2211 2212 2213 2214 2215 2216 2217 2218 2219 2220 2221 2222 2223

bool amdgpu_ras_check_err_threshold(struct amdgpu_device *adev)
{
	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
	bool exc_err_limit = false;

	if (con && (amdgpu_bad_page_threshold != 0))
		amdgpu_ras_eeprom_check_err_threshold(&con->eeprom_control,
						&exc_err_limit);

	/*
	 * We are only interested in variable exc_err_limit,
	 * as it says if GPU is in bad state or not.
	 */
	return exc_err_limit;
}