core.c 92.4 KB
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/*
 * Copyright(c) 2013-2015 Intel Corporation. All rights reserved.
 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of version 2 of the GNU General Public License as
 * published by the Free Software Foundation.
 *
 * This program is distributed in the hope that it will be useful, but
 * WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
 * General Public License for more details.
 */
#include <linux/list_sort.h>
#include <linux/libnvdimm.h>
#include <linux/module.h>
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#include <linux/mutex.h>
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#include <linux/ndctl.h>
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#include <linux/sysfs.h>
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#include <linux/delay.h>
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#include <linux/list.h>
#include <linux/acpi.h>
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#include <linux/sort.h>
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#include <linux/io.h>
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#include <linux/nd.h>
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#include <asm/cacheflush.h>
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#include <acpi/nfit.h>
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#include "nfit.h"

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/*
 * For readq() and writeq() on 32-bit builds, the hi-lo, lo-hi order is
 * irrelevant.
 */
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#include <linux/io-64-nonatomic-hi-lo.h>
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static bool force_enable_dimms;
module_param(force_enable_dimms, bool, S_IRUGO|S_IWUSR);
MODULE_PARM_DESC(force_enable_dimms, "Ignore _STA (ACPI DIMM device) status");

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static bool disable_vendor_specific;
module_param(disable_vendor_specific, bool, S_IRUGO);
MODULE_PARM_DESC(disable_vendor_specific,
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		"Limit commands to the publicly specified set");
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static unsigned long override_dsm_mask;
module_param(override_dsm_mask, ulong, S_IRUGO);
MODULE_PARM_DESC(override_dsm_mask, "Bitmask of allowed NVDIMM DSM functions");

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static int default_dsm_family = -1;
module_param(default_dsm_family, int, S_IRUGO);
MODULE_PARM_DESC(default_dsm_family,
		"Try this DSM type first when identifying NVDIMM family");

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static bool no_init_ars;
module_param(no_init_ars, bool, 0644);
MODULE_PARM_DESC(no_init_ars, "Skip ARS run at nfit init time");

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LIST_HEAD(acpi_descs);
DEFINE_MUTEX(acpi_desc_lock);

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static struct workqueue_struct *nfit_wq;

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struct nfit_table_prev {
	struct list_head spas;
	struct list_head memdevs;
	struct list_head dcrs;
	struct list_head bdws;
	struct list_head idts;
	struct list_head flushes;
};

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static guid_t nfit_uuid[NFIT_UUID_MAX];
72

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const guid_t *to_nfit_uuid(enum nfit_uuids id)
74
{
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	return &nfit_uuid[id];
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}
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EXPORT_SYMBOL(to_nfit_uuid);
78

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static struct acpi_nfit_desc *to_acpi_nfit_desc(
		struct nvdimm_bus_descriptor *nd_desc)
{
	return container_of(nd_desc, struct acpi_nfit_desc, nd_desc);
}

static struct acpi_device *to_acpi_dev(struct acpi_nfit_desc *acpi_desc)
{
	struct nvdimm_bus_descriptor *nd_desc = &acpi_desc->nd_desc;

	/*
	 * If provider == 'ACPI.NFIT' we can assume 'dev' is a struct
	 * acpi_device.
	 */
	if (!nd_desc->provider_name
			|| strcmp(nd_desc->provider_name, "ACPI.NFIT") != 0)
		return NULL;

	return to_acpi_device(acpi_desc->dev);
}

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static int xlat_bus_status(void *buf, unsigned int cmd, u32 status)
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{
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	struct nd_cmd_clear_error *clear_err;
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	struct nd_cmd_ars_status *ars_status;
	u16 flags;

	switch (cmd) {
	case ND_CMD_ARS_CAP:
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		if ((status & 0xffff) == NFIT_ARS_CAP_NONE)
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			return -ENOTTY;

		/* Command failed */
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		if (status & 0xffff)
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			return -EIO;

		/* No supported scan types for this range */
		flags = ND_ARS_PERSISTENT | ND_ARS_VOLATILE;
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		if ((status >> 16 & flags) == 0)
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			return -ENOTTY;
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		return 0;
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	case ND_CMD_ARS_START:
		/* ARS is in progress */
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		if ((status & 0xffff) == NFIT_ARS_START_BUSY)
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			return -EBUSY;

		/* Command failed */
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		if (status & 0xffff)
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			return -EIO;
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		return 0;
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	case ND_CMD_ARS_STATUS:
		ars_status = buf;
		/* Command failed */
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		if (status & 0xffff)
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			return -EIO;
		/* Check extended status (Upper two bytes) */
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		if (status == NFIT_ARS_STATUS_DONE)
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			return 0;

		/* ARS is in progress */
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		if (status == NFIT_ARS_STATUS_BUSY)
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			return -EBUSY;

		/* No ARS performed for the current boot */
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		if (status == NFIT_ARS_STATUS_NONE)
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			return -EAGAIN;

		/*
		 * ARS interrupted, either we overflowed or some other
		 * agent wants the scan to stop.  If we didn't overflow
		 * then just continue with the returned results.
		 */
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		if (status == NFIT_ARS_STATUS_INTR) {
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			if (ars_status->out_length >= 40 && (ars_status->flags
						& NFIT_ARS_F_OVERFLOW))
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				return -ENOSPC;
			return 0;
		}

		/* Unknown status */
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		if (status >> 16)
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			return -EIO;
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		return 0;
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	case ND_CMD_CLEAR_ERROR:
		clear_err = buf;
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		if (status & 0xffff)
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			return -EIO;
		if (!clear_err->cleared)
			return -EIO;
		if (clear_err->length > clear_err->cleared)
			return clear_err->cleared;
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		return 0;
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	default:
		break;
	}

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	/* all other non-zero status results in an error */
	if (status)
		return -EIO;
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	return 0;
}

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#define ACPI_LABELS_LOCKED 3

static int xlat_nvdimm_status(struct nvdimm *nvdimm, void *buf, unsigned int cmd,
		u32 status)
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{
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	struct nfit_mem *nfit_mem = nvdimm_provider_data(nvdimm);

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	switch (cmd) {
	case ND_CMD_GET_CONFIG_SIZE:
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		/*
		 * In the _LSI, _LSR, _LSW case the locked status is
		 * communicated via the read/write commands
		 */
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		if (nfit_mem->has_lsr)
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			break;

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		if (status >> 16 & ND_CONFIG_LOCKED)
			return -EACCES;
		break;
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	case ND_CMD_GET_CONFIG_DATA:
		if (nfit_mem->has_lsr && status == ACPI_LABELS_LOCKED)
			return -EACCES;
		break;
	case ND_CMD_SET_CONFIG_DATA:
		if (nfit_mem->has_lsw && status == ACPI_LABELS_LOCKED)
			return -EACCES;
		break;
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	default:
		break;
	}

	/* all other non-zero status results in an error */
	if (status)
		return -EIO;
	return 0;
}

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static int xlat_status(struct nvdimm *nvdimm, void *buf, unsigned int cmd,
		u32 status)
{
	if (!nvdimm)
		return xlat_bus_status(buf, cmd, status);
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	return xlat_nvdimm_status(nvdimm, buf, cmd, status);
}

/* convert _LS{I,R} packages to the buffer object acpi_nfit_ctl expects */
static union acpi_object *pkg_to_buf(union acpi_object *pkg)
{
	int i;
	void *dst;
	size_t size = 0;
	union acpi_object *buf = NULL;

	if (pkg->type != ACPI_TYPE_PACKAGE) {
		WARN_ONCE(1, "BIOS bug, unexpected element type: %d\n",
				pkg->type);
		goto err;
	}

	for (i = 0; i < pkg->package.count; i++) {
		union acpi_object *obj = &pkg->package.elements[i];

		if (obj->type == ACPI_TYPE_INTEGER)
			size += 4;
		else if (obj->type == ACPI_TYPE_BUFFER)
			size += obj->buffer.length;
		else {
			WARN_ONCE(1, "BIOS bug, unexpected element type: %d\n",
					obj->type);
			goto err;
		}
	}

	buf = ACPI_ALLOCATE(sizeof(*buf) + size);
	if (!buf)
		goto err;

	dst = buf + 1;
	buf->type = ACPI_TYPE_BUFFER;
	buf->buffer.length = size;
	buf->buffer.pointer = dst;
	for (i = 0; i < pkg->package.count; i++) {
		union acpi_object *obj = &pkg->package.elements[i];

		if (obj->type == ACPI_TYPE_INTEGER) {
			memcpy(dst, &obj->integer.value, 4);
			dst += 4;
		} else if (obj->type == ACPI_TYPE_BUFFER) {
			memcpy(dst, obj->buffer.pointer, obj->buffer.length);
			dst += obj->buffer.length;
		}
	}
err:
	ACPI_FREE(pkg);
	return buf;
}

static union acpi_object *int_to_buf(union acpi_object *integer)
{
	union acpi_object *buf = ACPI_ALLOCATE(sizeof(*buf) + 4);
	void *dst = NULL;

	if (!buf)
		goto err;

	if (integer->type != ACPI_TYPE_INTEGER) {
		WARN_ONCE(1, "BIOS bug, unexpected element type: %d\n",
				integer->type);
		goto err;
	}

	dst = buf + 1;
	buf->type = ACPI_TYPE_BUFFER;
	buf->buffer.length = 4;
	buf->buffer.pointer = dst;
	memcpy(dst, &integer->integer.value, 4);
err:
	ACPI_FREE(integer);
	return buf;
}

static union acpi_object *acpi_label_write(acpi_handle handle, u32 offset,
		u32 len, void *data)
{
	acpi_status rc;
	struct acpi_buffer buf = { ACPI_ALLOCATE_BUFFER, NULL };
	struct acpi_object_list input = {
		.count = 3,
		.pointer = (union acpi_object []) {
			[0] = {
				.integer.type = ACPI_TYPE_INTEGER,
				.integer.value = offset,
			},
			[1] = {
				.integer.type = ACPI_TYPE_INTEGER,
				.integer.value = len,
			},
			[2] = {
				.buffer.type = ACPI_TYPE_BUFFER,
				.buffer.pointer = data,
				.buffer.length = len,
			},
		},
	};

	rc = acpi_evaluate_object(handle, "_LSW", &input, &buf);
	if (ACPI_FAILURE(rc))
		return NULL;
	return int_to_buf(buf.pointer);
}

static union acpi_object *acpi_label_read(acpi_handle handle, u32 offset,
		u32 len)
{
	acpi_status rc;
	struct acpi_buffer buf = { ACPI_ALLOCATE_BUFFER, NULL };
	struct acpi_object_list input = {
		.count = 2,
		.pointer = (union acpi_object []) {
			[0] = {
				.integer.type = ACPI_TYPE_INTEGER,
				.integer.value = offset,
			},
			[1] = {
				.integer.type = ACPI_TYPE_INTEGER,
				.integer.value = len,
			},
		},
	};

	rc = acpi_evaluate_object(handle, "_LSR", &input, &buf);
	if (ACPI_FAILURE(rc))
		return NULL;
	return pkg_to_buf(buf.pointer);
}

static union acpi_object *acpi_label_info(acpi_handle handle)
{
	acpi_status rc;
	struct acpi_buffer buf = { ACPI_ALLOCATE_BUFFER, NULL };

	rc = acpi_evaluate_object(handle, "_LSI", NULL, &buf);
	if (ACPI_FAILURE(rc))
		return NULL;
	return pkg_to_buf(buf.pointer);
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}

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static u8 nfit_dsm_revid(unsigned family, unsigned func)
{
	static const u8 revid_table[NVDIMM_FAMILY_MAX+1][32] = {
		[NVDIMM_FAMILY_INTEL] = {
			[NVDIMM_INTEL_GET_MODES] = 2,
			[NVDIMM_INTEL_GET_FWINFO] = 2,
			[NVDIMM_INTEL_START_FWUPDATE] = 2,
			[NVDIMM_INTEL_SEND_FWUPDATE] = 2,
			[NVDIMM_INTEL_FINISH_FWUPDATE] = 2,
			[NVDIMM_INTEL_QUERY_FWUPDATE] = 2,
			[NVDIMM_INTEL_SET_THRESHOLD] = 2,
			[NVDIMM_INTEL_INJECT_ERROR] = 2,
		},
	};
	u8 id;

	if (family > NVDIMM_FAMILY_MAX)
		return 0;
	if (func > 31)
		return 0;
	id = revid_table[family][func];
	if (id == 0)
		return 1; /* default */
	return id;
}

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int acpi_nfit_ctl(struct nvdimm_bus_descriptor *nd_desc, struct nvdimm *nvdimm,
		unsigned int cmd, void *buf, unsigned int buf_len, int *cmd_rc)
396
{
397
	struct acpi_nfit_desc *acpi_desc = to_acpi_nfit_desc(nd_desc);
398
	struct nfit_mem *nfit_mem = nvdimm_provider_data(nvdimm);
399
	union acpi_object in_obj, in_buf, *out_obj;
400
	const struct nd_cmd_desc *desc = NULL;
401
	struct device *dev = acpi_desc->dev;
402
	struct nd_cmd_pkg *call_pkg = NULL;
403
	const char *cmd_name, *dimm_name;
404
	unsigned long cmd_mask, dsm_mask;
405
	u32 offset, fw_status = 0;
406
	acpi_handle handle;
407
	unsigned int func;
408
	const guid_t *guid;
409 410
	int rc, i;

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	func = cmd;
	if (cmd == ND_CMD_CALL) {
		call_pkg = buf;
		func = call_pkg->nd_command;
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		for (i = 0; i < ARRAY_SIZE(call_pkg->nd_reserved2); i++)
			if (call_pkg->nd_reserved2[i])
				return -EINVAL;
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	}

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	if (nvdimm) {
		struct acpi_device *adev = nfit_mem->adev;

		if (!adev)
			return -ENOTTY;
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		if (call_pkg && nfit_mem->family != call_pkg->nd_family)
			return -ENOTTY;

429
		dimm_name = nvdimm_name(nvdimm);
430
		cmd_name = nvdimm_cmd_name(cmd);
431
		cmd_mask = nvdimm_cmd_mask(nvdimm);
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		dsm_mask = nfit_mem->dsm_mask;
		desc = nd_cmd_dimm_desc(cmd);
434
		guid = to_nfit_uuid(nfit_mem->family);
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		handle = adev->handle;
	} else {
		struct acpi_device *adev = to_acpi_dev(acpi_desc);

		cmd_name = nvdimm_bus_cmd_name(cmd);
440
		cmd_mask = nd_desc->cmd_mask;
441
		dsm_mask = cmd_mask;
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		if (cmd == ND_CMD_CALL)
			dsm_mask = nd_desc->bus_dsm_mask;
444
		desc = nd_cmd_bus_desc(cmd);
445
		guid = to_nfit_uuid(NFIT_DEV_BUS);
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		handle = adev->handle;
		dimm_name = "bus";
	}

	if (!desc || (cmd && (desc->out_num + desc->in_num == 0)))
		return -ENOTTY;

453
	if (!test_bit(cmd, &cmd_mask) || !test_bit(func, &dsm_mask))
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		return -ENOTTY;

	in_obj.type = ACPI_TYPE_PACKAGE;
	in_obj.package.count = 1;
	in_obj.package.elements = &in_buf;
	in_buf.type = ACPI_TYPE_BUFFER;
	in_buf.buffer.pointer = buf;
	in_buf.buffer.length = 0;

	/* libnvdimm has already validated the input envelope */
	for (i = 0; i < desc->in_num; i++)
		in_buf.buffer.length += nd_cmd_in_size(nvdimm, cmd, desc,
				i, buf);

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	if (call_pkg) {
		/* skip over package wrapper */
		in_buf.buffer.pointer = (void *) &call_pkg->nd_payload;
		in_buf.buffer.length = call_pkg->nd_size_in;
	}

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	dev_dbg(dev, "%s cmd: %d: func: %d input length: %d\n",
		dimm_name, cmd, func, in_buf.buffer.length);
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	print_hex_dump_debug("nvdimm in  ", DUMP_PREFIX_OFFSET, 4, 4,
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			in_buf.buffer.pointer,
			min_t(u32, 256, in_buf.buffer.length), true);
479

480
	/* call the BIOS, prefer the named methods over _DSM if available */
481
	if (nvdimm && cmd == ND_CMD_GET_CONFIG_SIZE && nfit_mem->has_lsr)
482
		out_obj = acpi_label_info(handle);
483
	else if (nvdimm && cmd == ND_CMD_GET_CONFIG_DATA && nfit_mem->has_lsr) {
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		struct nd_cmd_get_config_data_hdr *p = buf;

		out_obj = acpi_label_read(handle, p->in_offset, p->in_length);
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	} else if (nvdimm && cmd == ND_CMD_SET_CONFIG_DATA
			&& nfit_mem->has_lsw) {
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		struct nd_cmd_set_config_hdr *p = buf;

		out_obj = acpi_label_write(handle, p->in_offset, p->in_length,
				p->in_buf);
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	} else {
		u8 revid;

496
		if (nvdimm)
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			revid = nfit_dsm_revid(nfit_mem->family, func);
		else
			revid = 1;
		out_obj = acpi_evaluate_dsm(handle, guid, revid, func, &in_obj);
	}
502

503
	if (!out_obj) {
504
		dev_dbg(dev, "%s _DSM failed cmd: %s\n", dimm_name, cmd_name);
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		return -EINVAL;
	}

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	if (call_pkg) {
		call_pkg->nd_fw_size = out_obj->buffer.length;
		memcpy(call_pkg->nd_payload + call_pkg->nd_size_in,
			out_obj->buffer.pointer,
			min(call_pkg->nd_fw_size, call_pkg->nd_size_out));

		ACPI_FREE(out_obj);
		/*
		 * Need to support FW function w/o known size in advance.
		 * Caller can determine required size based upon nd_fw_size.
		 * If we return an error (like elsewhere) then caller wouldn't
		 * be able to rely upon data returned to make calculation.
		 */
		return 0;
	}

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	if (out_obj->package.type != ACPI_TYPE_BUFFER) {
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		dev_dbg(dev, "%s unexpected output object type cmd: %s type: %d\n",
				dimm_name, cmd_name, out_obj->type);
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		rc = -EINVAL;
		goto out;
	}

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	dev_dbg(dev, "%s cmd: %s output length: %d\n", dimm_name,
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			cmd_name, out_obj->buffer.length);
	print_hex_dump_debug(cmd_name, DUMP_PREFIX_OFFSET, 4, 4,
			out_obj->buffer.pointer,
			min_t(u32, 128, out_obj->buffer.length), true);
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	for (i = 0, offset = 0; i < desc->out_num; i++) {
		u32 out_size = nd_cmd_out_size(nvdimm, cmd, desc, i, buf,
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				(u32 *) out_obj->buffer.pointer,
				out_obj->buffer.length - offset);
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		if (offset + out_size > out_obj->buffer.length) {
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			dev_dbg(dev, "%s output object underflow cmd: %s field: %d\n",
					dimm_name, cmd_name, i);
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			break;
		}

		if (in_buf.buffer.length + offset + out_size > buf_len) {
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			dev_dbg(dev, "%s output overrun cmd: %s field: %d\n",
					dimm_name, cmd_name, i);
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			rc = -ENXIO;
			goto out;
		}
		memcpy(buf + in_buf.buffer.length + offset,
				out_obj->buffer.pointer + offset, out_size);
		offset += out_size;
	}
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	/*
	 * Set fw_status for all the commands with a known format to be
	 * later interpreted by xlat_status().
	 */
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	if (i >= 1 && ((!nvdimm && cmd >= ND_CMD_ARS_CAP
					&& cmd <= ND_CMD_CLEAR_ERROR)
				|| (nvdimm && cmd >= ND_CMD_SMART
					&& cmd <= ND_CMD_VENDOR)))
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		fw_status = *(u32 *) out_obj->buffer.pointer;

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	if (offset + in_buf.buffer.length < buf_len) {
		if (i >= 1) {
			/*
			 * status valid, return the number of bytes left
			 * unfilled in the output buffer
			 */
			rc = buf_len - offset - in_buf.buffer.length;
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			if (cmd_rc)
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				*cmd_rc = xlat_status(nvdimm, buf, cmd,
						fw_status);
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		} else {
			dev_err(dev, "%s:%s underrun cmd: %s buf_len: %d out_len: %d\n",
					__func__, dimm_name, cmd_name, buf_len,
					offset);
			rc = -ENXIO;
		}
585
	} else {
586
		rc = 0;
587
		if (cmd_rc)
588
			*cmd_rc = xlat_status(nvdimm, buf, cmd, fw_status);
589
	}
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 out:
	ACPI_FREE(out_obj);

	return rc;
595
}
596
EXPORT_SYMBOL_GPL(acpi_nfit_ctl);
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static const char *spa_type_name(u16 type)
{
	static const char *to_name[] = {
		[NFIT_SPA_VOLATILE] = "volatile",
		[NFIT_SPA_PM] = "pmem",
		[NFIT_SPA_DCR] = "dimm-control-region",
		[NFIT_SPA_BDW] = "block-data-window",
		[NFIT_SPA_VDISK] = "volatile-disk",
		[NFIT_SPA_VCD] = "volatile-cd",
		[NFIT_SPA_PDISK] = "persistent-disk",
		[NFIT_SPA_PCD] = "persistent-cd",

	};

	if (type > NFIT_SPA_PCD)
		return "unknown";

	return to_name[type];
}

618
int nfit_spa_type(struct acpi_nfit_system_address *spa)
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{
	int i;

	for (i = 0; i < NFIT_UUID_MAX; i++)
623
		if (guid_equal(to_nfit_uuid(i), (guid_t *)&spa->range_guid))
624 625 626 627 628
			return i;
	return -1;
}

static bool add_spa(struct acpi_nfit_desc *acpi_desc,
V
Vishal Verma 已提交
629
		struct nfit_table_prev *prev,
630 631 632
		struct acpi_nfit_system_address *spa)
{
	struct device *dev = acpi_desc->dev;
V
Vishal Verma 已提交
633 634
	struct nfit_spa *nfit_spa;

635 636 637
	if (spa->header.length != sizeof(*spa))
		return false;

V
Vishal Verma 已提交
638
	list_for_each_entry(nfit_spa, &prev->spas, list) {
639
		if (memcmp(nfit_spa->spa, spa, sizeof(*spa)) == 0) {
V
Vishal Verma 已提交
640 641 642 643
			list_move_tail(&nfit_spa->list, &acpi_desc->spas);
			return true;
		}
	}
644

645 646
	nfit_spa = devm_kzalloc(dev, sizeof(*nfit_spa) + sizeof(*spa),
			GFP_KERNEL);
647 648 649
	if (!nfit_spa)
		return false;
	INIT_LIST_HEAD(&nfit_spa->list);
650
	memcpy(nfit_spa->spa, spa, sizeof(*spa));
651
	list_add_tail(&nfit_spa->list, &acpi_desc->spas);
652
	dev_dbg(dev, "spa index: %d type: %s\n",
653 654 655 656 657 658
			spa->range_index,
			spa_type_name(nfit_spa_type(spa)));
	return true;
}

static bool add_memdev(struct acpi_nfit_desc *acpi_desc,
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659
		struct nfit_table_prev *prev,
660 661 662
		struct acpi_nfit_memory_map *memdev)
{
	struct device *dev = acpi_desc->dev;
V
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	struct nfit_memdev *nfit_memdev;
664

665 666 667
	if (memdev->header.length != sizeof(*memdev))
		return false;

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	list_for_each_entry(nfit_memdev, &prev->memdevs, list)
669
		if (memcmp(nfit_memdev->memdev, memdev, sizeof(*memdev)) == 0) {
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670 671 672 673
			list_move_tail(&nfit_memdev->list, &acpi_desc->memdevs);
			return true;
		}

674 675
	nfit_memdev = devm_kzalloc(dev, sizeof(*nfit_memdev) + sizeof(*memdev),
			GFP_KERNEL);
676 677 678
	if (!nfit_memdev)
		return false;
	INIT_LIST_HEAD(&nfit_memdev->list);
679
	memcpy(nfit_memdev->memdev, memdev, sizeof(*memdev));
680
	list_add_tail(&nfit_memdev->list, &acpi_desc->memdevs);
681 682
	dev_dbg(dev, "memdev handle: %#x spa: %d dcr: %d flags: %#x\n",
			memdev->device_handle, memdev->range_index,
683
			memdev->region_index, memdev->flags);
684 685 686
	return true;
}

687 688 689 690 691 692 693 694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710 711 712
int nfit_get_smbios_id(u32 device_handle, u16 *flags)
{
	struct acpi_nfit_memory_map *memdev;
	struct acpi_nfit_desc *acpi_desc;
	struct nfit_mem *nfit_mem;

	mutex_lock(&acpi_desc_lock);
	list_for_each_entry(acpi_desc, &acpi_descs, list) {
		mutex_lock(&acpi_desc->init_mutex);
		list_for_each_entry(nfit_mem, &acpi_desc->dimms, list) {
			memdev = __to_nfit_memdev(nfit_mem);
			if (memdev->device_handle == device_handle) {
				mutex_unlock(&acpi_desc->init_mutex);
				mutex_unlock(&acpi_desc_lock);
				*flags = memdev->flags;
				return memdev->physical_id;
			}
		}
		mutex_unlock(&acpi_desc->init_mutex);
	}
	mutex_unlock(&acpi_desc_lock);

	return -ENODEV;
}
EXPORT_SYMBOL_GPL(nfit_get_smbios_id);

713 714 715 716 717 718 719 720 721 722 723 724 725 726
/*
 * An implementation may provide a truncated control region if no block windows
 * are defined.
 */
static size_t sizeof_dcr(struct acpi_nfit_control_region *dcr)
{
	if (dcr->header.length < offsetof(struct acpi_nfit_control_region,
				window_size))
		return 0;
	if (dcr->windows)
		return sizeof(*dcr);
	return offsetof(struct acpi_nfit_control_region, window_size);
}

727
static bool add_dcr(struct acpi_nfit_desc *acpi_desc,
V
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728
		struct nfit_table_prev *prev,
729 730 731
		struct acpi_nfit_control_region *dcr)
{
	struct device *dev = acpi_desc->dev;
V
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732 733
	struct nfit_dcr *nfit_dcr;

734 735 736
	if (!sizeof_dcr(dcr))
		return false;

V
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737
	list_for_each_entry(nfit_dcr, &prev->dcrs, list)
738
		if (memcmp(nfit_dcr->dcr, dcr, sizeof_dcr(dcr)) == 0) {
V
Vishal Verma 已提交
739 740 741
			list_move_tail(&nfit_dcr->list, &acpi_desc->dcrs);
			return true;
		}
742

743 744
	nfit_dcr = devm_kzalloc(dev, sizeof(*nfit_dcr) + sizeof(*dcr),
			GFP_KERNEL);
745 746 747
	if (!nfit_dcr)
		return false;
	INIT_LIST_HEAD(&nfit_dcr->list);
748
	memcpy(nfit_dcr->dcr, dcr, sizeof_dcr(dcr));
749
	list_add_tail(&nfit_dcr->list, &acpi_desc->dcrs);
750
	dev_dbg(dev, "dcr index: %d windows: %d\n",
751 752 753 754 755
			dcr->region_index, dcr->windows);
	return true;
}

static bool add_bdw(struct acpi_nfit_desc *acpi_desc,
V
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756
		struct nfit_table_prev *prev,
757 758 759
		struct acpi_nfit_data_region *bdw)
{
	struct device *dev = acpi_desc->dev;
V
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760 761
	struct nfit_bdw *nfit_bdw;

762 763
	if (bdw->header.length != sizeof(*bdw))
		return false;
V
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764
	list_for_each_entry(nfit_bdw, &prev->bdws, list)
765
		if (memcmp(nfit_bdw->bdw, bdw, sizeof(*bdw)) == 0) {
V
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766 767 768
			list_move_tail(&nfit_bdw->list, &acpi_desc->bdws);
			return true;
		}
769

770 771
	nfit_bdw = devm_kzalloc(dev, sizeof(*nfit_bdw) + sizeof(*bdw),
			GFP_KERNEL);
772 773 774
	if (!nfit_bdw)
		return false;
	INIT_LIST_HEAD(&nfit_bdw->list);
775
	memcpy(nfit_bdw->bdw, bdw, sizeof(*bdw));
776
	list_add_tail(&nfit_bdw->list, &acpi_desc->bdws);
777
	dev_dbg(dev, "bdw dcr: %d windows: %d\n",
778 779 780 781
			bdw->region_index, bdw->windows);
	return true;
}

782 783 784 785 786 787 788
static size_t sizeof_idt(struct acpi_nfit_interleave *idt)
{
	if (idt->header.length < sizeof(*idt))
		return 0;
	return sizeof(*idt) + sizeof(u32) * (idt->line_count - 1);
}

789
static bool add_idt(struct acpi_nfit_desc *acpi_desc,
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790
		struct nfit_table_prev *prev,
791 792 793
		struct acpi_nfit_interleave *idt)
{
	struct device *dev = acpi_desc->dev;
V
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794 795
	struct nfit_idt *nfit_idt;

796 797 798 799 800 801 802 803
	if (!sizeof_idt(idt))
		return false;

	list_for_each_entry(nfit_idt, &prev->idts, list) {
		if (sizeof_idt(nfit_idt->idt) != sizeof_idt(idt))
			continue;

		if (memcmp(nfit_idt->idt, idt, sizeof_idt(idt)) == 0) {
V
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804 805 806
			list_move_tail(&nfit_idt->list, &acpi_desc->idts);
			return true;
		}
807
	}
808

809 810
	nfit_idt = devm_kzalloc(dev, sizeof(*nfit_idt) + sizeof_idt(idt),
			GFP_KERNEL);
811 812 813
	if (!nfit_idt)
		return false;
	INIT_LIST_HEAD(&nfit_idt->list);
814
	memcpy(nfit_idt->idt, idt, sizeof_idt(idt));
815
	list_add_tail(&nfit_idt->list, &acpi_desc->idts);
816
	dev_dbg(dev, "idt index: %d num_lines: %d\n",
817 818 819 820
			idt->interleave_index, idt->line_count);
	return true;
}

821 822 823 824 825 826 827
static size_t sizeof_flush(struct acpi_nfit_flush_address *flush)
{
	if (flush->header.length < sizeof(*flush))
		return 0;
	return sizeof(*flush) + sizeof(u64) * (flush->hint_count - 1);
}

828
static bool add_flush(struct acpi_nfit_desc *acpi_desc,
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829
		struct nfit_table_prev *prev,
830 831 832
		struct acpi_nfit_flush_address *flush)
{
	struct device *dev = acpi_desc->dev;
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	struct nfit_flush *nfit_flush;
834

835 836 837 838 839 840 841 842 843
	if (!sizeof_flush(flush))
		return false;

	list_for_each_entry(nfit_flush, &prev->flushes, list) {
		if (sizeof_flush(nfit_flush->flush) != sizeof_flush(flush))
			continue;

		if (memcmp(nfit_flush->flush, flush,
					sizeof_flush(flush)) == 0) {
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			list_move_tail(&nfit_flush->list, &acpi_desc->flushes);
			return true;
		}
847
	}
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Vishal Verma 已提交
848

849 850
	nfit_flush = devm_kzalloc(dev, sizeof(*nfit_flush)
			+ sizeof_flush(flush), GFP_KERNEL);
851 852 853
	if (!nfit_flush)
		return false;
	INIT_LIST_HEAD(&nfit_flush->list);
854
	memcpy(nfit_flush->flush, flush, sizeof_flush(flush));
855
	list_add_tail(&nfit_flush->list, &acpi_desc->flushes);
856
	dev_dbg(dev, "nfit_flush handle: %d hint_count: %d\n",
857 858 859 860
			flush->device_handle, flush->hint_count);
	return true;
}

861 862 863 864 865 866 867 868
static bool add_platform_cap(struct acpi_nfit_desc *acpi_desc,
		struct acpi_nfit_capabilities *pcap)
{
	struct device *dev = acpi_desc->dev;
	u32 mask;

	mask = (1 << (pcap->highest_capability + 1)) - 1;
	acpi_desc->platform_cap = pcap->capabilities & mask;
869
	dev_dbg(dev, "cap: %#x\n", acpi_desc->platform_cap);
870 871 872
	return true;
}

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static void *add_table(struct acpi_nfit_desc *acpi_desc,
		struct nfit_table_prev *prev, void *table, const void *end)
875 876 877 878 879 880 881 882 883
{
	struct device *dev = acpi_desc->dev;
	struct acpi_nfit_header *hdr;
	void *err = ERR_PTR(-ENOMEM);

	if (table >= end)
		return NULL;

	hdr = table;
884 885 886 887 888 889
	if (!hdr->length) {
		dev_warn(dev, "found a zero length table '%d' parsing nfit\n",
			hdr->type);
		return NULL;
	}

890 891
	switch (hdr->type) {
	case ACPI_NFIT_TYPE_SYSTEM_ADDRESS:
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		if (!add_spa(acpi_desc, prev, table))
893 894 895
			return err;
		break;
	case ACPI_NFIT_TYPE_MEMORY_MAP:
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896
		if (!add_memdev(acpi_desc, prev, table))
897 898 899
			return err;
		break;
	case ACPI_NFIT_TYPE_CONTROL_REGION:
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Vishal Verma 已提交
900
		if (!add_dcr(acpi_desc, prev, table))
901 902 903
			return err;
		break;
	case ACPI_NFIT_TYPE_DATA_REGION:
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Vishal Verma 已提交
904
		if (!add_bdw(acpi_desc, prev, table))
905 906 907
			return err;
		break;
	case ACPI_NFIT_TYPE_INTERLEAVE:
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Vishal Verma 已提交
908
		if (!add_idt(acpi_desc, prev, table))
909
			return err;
910 911
		break;
	case ACPI_NFIT_TYPE_FLUSH_ADDRESS:
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Vishal Verma 已提交
912
		if (!add_flush(acpi_desc, prev, table))
913
			return err;
914 915
		break;
	case ACPI_NFIT_TYPE_SMBIOS:
916
		dev_dbg(dev, "smbios\n");
917
		break;
918 919 920 921
	case ACPI_NFIT_TYPE_CAPABILITIES:
		if (!add_platform_cap(acpi_desc, table))
			return err;
		break;
922 923 924 925 926 927 928 929 930 931 932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962
	default:
		dev_err(dev, "unknown table '%d' parsing nfit\n", hdr->type);
		break;
	}

	return table + hdr->length;
}

static void nfit_mem_find_spa_bdw(struct acpi_nfit_desc *acpi_desc,
		struct nfit_mem *nfit_mem)
{
	u32 device_handle = __to_nfit_memdev(nfit_mem)->device_handle;
	u16 dcr = nfit_mem->dcr->region_index;
	struct nfit_spa *nfit_spa;

	list_for_each_entry(nfit_spa, &acpi_desc->spas, list) {
		u16 range_index = nfit_spa->spa->range_index;
		int type = nfit_spa_type(nfit_spa->spa);
		struct nfit_memdev *nfit_memdev;

		if (type != NFIT_SPA_BDW)
			continue;

		list_for_each_entry(nfit_memdev, &acpi_desc->memdevs, list) {
			if (nfit_memdev->memdev->range_index != range_index)
				continue;
			if (nfit_memdev->memdev->device_handle != device_handle)
				continue;
			if (nfit_memdev->memdev->region_index != dcr)
				continue;

			nfit_mem->spa_bdw = nfit_spa->spa;
			return;
		}
	}

	dev_dbg(acpi_desc->dev, "SPA-BDW not found for SPA-DCR %d\n",
			nfit_mem->spa_dcr->range_index);
	nfit_mem->bdw = NULL;
}

963
static void nfit_mem_init_bdw(struct acpi_nfit_desc *acpi_desc,
964 965 966
		struct nfit_mem *nfit_mem, struct acpi_nfit_system_address *spa)
{
	u16 dcr = __to_nfit_memdev(nfit_mem)->region_index;
967
	struct nfit_memdev *nfit_memdev;
968
	struct nfit_bdw *nfit_bdw;
969 970
	struct nfit_idt *nfit_idt;
	u16 idt_idx, range_index;
971 972 973 974 975 976 977 978 979

	list_for_each_entry(nfit_bdw, &acpi_desc->bdws, list) {
		if (nfit_bdw->bdw->region_index != dcr)
			continue;
		nfit_mem->bdw = nfit_bdw->bdw;
		break;
	}

	if (!nfit_mem->bdw)
980
		return;
981 982

	nfit_mem_find_spa_bdw(acpi_desc, nfit_mem);
983 984

	if (!nfit_mem->spa_bdw)
985
		return;
986 987 988 989 990 991 992 993 994 995 996 997 998 999 1000 1001

	range_index = nfit_mem->spa_bdw->range_index;
	list_for_each_entry(nfit_memdev, &acpi_desc->memdevs, list) {
		if (nfit_memdev->memdev->range_index != range_index ||
				nfit_memdev->memdev->region_index != dcr)
			continue;
		nfit_mem->memdev_bdw = nfit_memdev->memdev;
		idt_idx = nfit_memdev->memdev->interleave_index;
		list_for_each_entry(nfit_idt, &acpi_desc->idts, list) {
			if (nfit_idt->idt->interleave_index != idt_idx)
				continue;
			nfit_mem->idt_bdw = nfit_idt->idt;
			break;
		}
		break;
	}
1002 1003
}

1004
static int __nfit_mem_init(struct acpi_nfit_desc *acpi_desc,
1005 1006 1007 1008
		struct acpi_nfit_system_address *spa)
{
	struct nfit_mem *nfit_mem, *found;
	struct nfit_memdev *nfit_memdev;
1009
	int type = spa ? nfit_spa_type(spa) : 0;
1010 1011 1012 1013 1014 1015

	switch (type) {
	case NFIT_SPA_DCR:
	case NFIT_SPA_PM:
		break;
	default:
1016 1017
		if (spa)
			return 0;
1018 1019
	}

1020 1021 1022 1023 1024 1025 1026
	/*
	 * This loop runs in two modes, when a dimm is mapped the loop
	 * adds memdev associations to an existing dimm, or creates a
	 * dimm. In the unmapped dimm case this loop sweeps for memdev
	 * instances with an invalid / zero range_index and adds those
	 * dimms without spa associations.
	 */
1027
	list_for_each_entry(nfit_memdev, &acpi_desc->memdevs, list) {
1028
		struct nfit_flush *nfit_flush;
1029 1030 1031
		struct nfit_dcr *nfit_dcr;
		u32 device_handle;
		u16 dcr;
1032

1033 1034 1035
		if (spa && nfit_memdev->memdev->range_index != spa->range_index)
			continue;
		if (!spa && nfit_memdev->memdev->range_index)
1036 1037 1038
			continue;
		found = NULL;
		dcr = nfit_memdev->memdev->region_index;
1039
		device_handle = nfit_memdev->memdev->device_handle;
1040
		list_for_each_entry(nfit_mem, &acpi_desc->dimms, list)
1041 1042
			if (__to_nfit_memdev(nfit_mem)->device_handle
					== device_handle) {
1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054
				found = nfit_mem;
				break;
			}

		if (found)
			nfit_mem = found;
		else {
			nfit_mem = devm_kzalloc(acpi_desc->dev,
					sizeof(*nfit_mem), GFP_KERNEL);
			if (!nfit_mem)
				return -ENOMEM;
			INIT_LIST_HEAD(&nfit_mem->list);
1055
			nfit_mem->acpi_desc = acpi_desc;
1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076
			list_add(&nfit_mem->list, &acpi_desc->dimms);
		}

		list_for_each_entry(nfit_dcr, &acpi_desc->dcrs, list) {
			if (nfit_dcr->dcr->region_index != dcr)
				continue;
			/*
			 * Record the control region for the dimm.  For
			 * the ACPI 6.1 case, where there are separate
			 * control regions for the pmem vs blk
			 * interfaces, be sure to record the extended
			 * blk details.
			 */
			if (!nfit_mem->dcr)
				nfit_mem->dcr = nfit_dcr->dcr;
			else if (nfit_mem->dcr->windows == 0
					&& nfit_dcr->dcr->windows)
				nfit_mem->dcr = nfit_dcr->dcr;
			break;
		}

1077
		list_for_each_entry(nfit_flush, &acpi_desc->flushes, list) {
1078 1079 1080
			struct acpi_nfit_flush_address *flush;
			u16 i;

1081 1082 1083
			if (nfit_flush->flush->device_handle != device_handle)
				continue;
			nfit_mem->nfit_flush = nfit_flush;
1084
			flush = nfit_flush->flush;
1085 1086 1087 1088
			nfit_mem->flush_wpq = devm_kcalloc(acpi_desc->dev,
					flush->hint_count,
					sizeof(struct resource),
					GFP_KERNEL);
1089 1090 1091 1092 1093 1094 1095 1096
			if (!nfit_mem->flush_wpq)
				return -ENOMEM;
			for (i = 0; i < flush->hint_count; i++) {
				struct resource *res = &nfit_mem->flush_wpq[i];

				res->start = flush->hint_address[i];
				res->end = res->start + 8 - 1;
			}
1097 1098 1099
			break;
		}

1100 1101 1102 1103
		if (dcr && !nfit_mem->dcr) {
			dev_err(acpi_desc->dev, "SPA %d missing DCR %d\n",
					spa->range_index, dcr);
			return -ENODEV;
1104 1105 1106
		}

		if (type == NFIT_SPA_DCR) {
1107 1108 1109
			struct nfit_idt *nfit_idt;
			u16 idt_idx;

1110 1111 1112
			/* multiple dimms may share a SPA when interleaved */
			nfit_mem->spa_dcr = spa;
			nfit_mem->memdev_dcr = nfit_memdev->memdev;
1113 1114 1115 1116 1117 1118 1119
			idt_idx = nfit_memdev->memdev->interleave_index;
			list_for_each_entry(nfit_idt, &acpi_desc->idts, list) {
				if (nfit_idt->idt->interleave_index != idt_idx)
					continue;
				nfit_mem->idt_dcr = nfit_idt->idt;
				break;
			}
1120
			nfit_mem_init_bdw(acpi_desc, nfit_mem, spa);
1121
		} else if (type == NFIT_SPA_PM) {
1122 1123 1124 1125 1126 1127
			/*
			 * A single dimm may belong to multiple SPA-PM
			 * ranges, record at least one in addition to
			 * any SPA-DCR range.
			 */
			nfit_mem->memdev_pmem = nfit_memdev->memdev;
1128 1129
		} else
			nfit_mem->memdev_dcr = nfit_memdev->memdev;
1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152
	}

	return 0;
}

static int nfit_mem_cmp(void *priv, struct list_head *_a, struct list_head *_b)
{
	struct nfit_mem *a = container_of(_a, typeof(*a), list);
	struct nfit_mem *b = container_of(_b, typeof(*b), list);
	u32 handleA, handleB;

	handleA = __to_nfit_memdev(a)->device_handle;
	handleB = __to_nfit_memdev(b)->device_handle;
	if (handleA < handleB)
		return -1;
	else if (handleA > handleB)
		return 1;
	return 0;
}

static int nfit_mem_init(struct acpi_nfit_desc *acpi_desc)
{
	struct nfit_spa *nfit_spa;
1153 1154
	int rc;

1155 1156 1157 1158 1159 1160 1161 1162 1163 1164

	/*
	 * For each SPA-DCR or SPA-PMEM address range find its
	 * corresponding MEMDEV(s).  From each MEMDEV find the
	 * corresponding DCR.  Then, if we're operating on a SPA-DCR,
	 * try to find a SPA-BDW and a corresponding BDW that references
	 * the DCR.  Throw it all into an nfit_mem object.  Note, that
	 * BDWs are optional.
	 */
	list_for_each_entry(nfit_spa, &acpi_desc->spas, list) {
1165
		rc = __nfit_mem_init(acpi_desc, nfit_spa->spa);
1166 1167 1168 1169
		if (rc)
			return rc;
	}

1170 1171 1172 1173 1174 1175 1176 1177 1178
	/*
	 * If a DIMM has failed to be mapped into SPA there will be no
	 * SPA entries above. Find and register all the unmapped DIMMs
	 * for reporting and recovery purposes.
	 */
	rc = __nfit_mem_init(acpi_desc, NULL);
	if (rc)
		return rc;

1179 1180 1181 1182 1183
	list_sort(NULL, &acpi_desc->dimms, nfit_mem_cmp);

	return 0;
}

1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194
static ssize_t bus_dsm_mask_show(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	struct nvdimm_bus *nvdimm_bus = to_nvdimm_bus(dev);
	struct nvdimm_bus_descriptor *nd_desc = to_nd_desc(nvdimm_bus);

	return sprintf(buf, "%#lx\n", nd_desc->bus_dsm_mask);
}
static struct device_attribute dev_attr_bus_dsm_mask =
		__ATTR(dsm_mask, 0444, bus_dsm_mask_show, NULL);

1195 1196 1197 1198 1199 1200 1201
static ssize_t revision_show(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	struct nvdimm_bus *nvdimm_bus = to_nvdimm_bus(dev);
	struct nvdimm_bus_descriptor *nd_desc = to_nd_desc(nvdimm_bus);
	struct acpi_nfit_desc *acpi_desc = to_acpi_desc(nd_desc);

1202
	return sprintf(buf, "%d\n", acpi_desc->acpi_header.revision);
1203 1204 1205
}
static DEVICE_ATTR_RO(revision);

1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257
static ssize_t hw_error_scrub_show(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	struct nvdimm_bus *nvdimm_bus = to_nvdimm_bus(dev);
	struct nvdimm_bus_descriptor *nd_desc = to_nd_desc(nvdimm_bus);
	struct acpi_nfit_desc *acpi_desc = to_acpi_desc(nd_desc);

	return sprintf(buf, "%d\n", acpi_desc->scrub_mode);
}

/*
 * The 'hw_error_scrub' attribute can have the following values written to it:
 * '0': Switch to the default mode where an exception will only insert
 *      the address of the memory error into the poison and badblocks lists.
 * '1': Enable a full scrub to happen if an exception for a memory error is
 *      received.
 */
static ssize_t hw_error_scrub_store(struct device *dev,
		struct device_attribute *attr, const char *buf, size_t size)
{
	struct nvdimm_bus_descriptor *nd_desc;
	ssize_t rc;
	long val;

	rc = kstrtol(buf, 0, &val);
	if (rc)
		return rc;

	device_lock(dev);
	nd_desc = dev_get_drvdata(dev);
	if (nd_desc) {
		struct acpi_nfit_desc *acpi_desc = to_acpi_desc(nd_desc);

		switch (val) {
		case HW_ERROR_SCRUB_ON:
			acpi_desc->scrub_mode = HW_ERROR_SCRUB_ON;
			break;
		case HW_ERROR_SCRUB_OFF:
			acpi_desc->scrub_mode = HW_ERROR_SCRUB_OFF;
			break;
		default:
			rc = -EINVAL;
			break;
		}
	}
	device_unlock(dev);
	if (rc)
		return rc;
	return size;
}
static DEVICE_ATTR_RW(hw_error_scrub);

1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273
/*
 * This shows the number of full Address Range Scrubs that have been
 * completed since driver load time. Userspace can wait on this using
 * select/poll etc. A '+' at the end indicates an ARS is in progress
 */
static ssize_t scrub_show(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	struct nvdimm_bus_descriptor *nd_desc;
	ssize_t rc = -ENXIO;

	device_lock(dev);
	nd_desc = dev_get_drvdata(dev);
	if (nd_desc) {
		struct acpi_nfit_desc *acpi_desc = to_acpi_desc(nd_desc);

1274
		mutex_lock(&acpi_desc->init_mutex);
1275
		rc = sprintf(buf, "%d%s", acpi_desc->scrub_count,
1276
				work_busy(&acpi_desc->dwork.work)
1277 1278
				&& !acpi_desc->cancel ? "+\n" : "\n");
		mutex_unlock(&acpi_desc->init_mutex);
1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292 1293 1294 1295 1296 1297 1298 1299 1300 1301
	}
	device_unlock(dev);
	return rc;
}

static ssize_t scrub_store(struct device *dev,
		struct device_attribute *attr, const char *buf, size_t size)
{
	struct nvdimm_bus_descriptor *nd_desc;
	ssize_t rc;
	long val;

	rc = kstrtol(buf, 0, &val);
	if (rc)
		return rc;
	if (val != 1)
		return -EINVAL;

	device_lock(dev);
	nd_desc = dev_get_drvdata(dev);
	if (nd_desc) {
		struct acpi_nfit_desc *acpi_desc = to_acpi_desc(nd_desc);

1302
		rc = acpi_nfit_ars_rescan(acpi_desc, 0);
1303 1304 1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329
	}
	device_unlock(dev);
	if (rc)
		return rc;
	return size;
}
static DEVICE_ATTR_RW(scrub);

static bool ars_supported(struct nvdimm_bus *nvdimm_bus)
{
	struct nvdimm_bus_descriptor *nd_desc = to_nd_desc(nvdimm_bus);
	const unsigned long mask = 1 << ND_CMD_ARS_CAP | 1 << ND_CMD_ARS_START
		| 1 << ND_CMD_ARS_STATUS;

	return (nd_desc->cmd_mask & mask) == mask;
}

static umode_t nfit_visible(struct kobject *kobj, struct attribute *a, int n)
{
	struct device *dev = container_of(kobj, struct device, kobj);
	struct nvdimm_bus *nvdimm_bus = to_nvdimm_bus(dev);

	if (a == &dev_attr_scrub.attr && !ars_supported(nvdimm_bus))
		return 0;
	return a->mode;
}

1330 1331
static struct attribute *acpi_nfit_attributes[] = {
	&dev_attr_revision.attr,
1332
	&dev_attr_scrub.attr,
1333
	&dev_attr_hw_error_scrub.attr,
1334
	&dev_attr_bus_dsm_mask.attr,
1335 1336 1337
	NULL,
};

1338
static const struct attribute_group acpi_nfit_attribute_group = {
1339 1340
	.name = "nfit",
	.attrs = acpi_nfit_attributes,
1341
	.is_visible = nfit_visible,
1342 1343
};

1344
static const struct attribute_group *acpi_nfit_attribute_groups[] = {
1345 1346 1347 1348 1349
	&nvdimm_bus_attribute_group,
	&acpi_nfit_attribute_group,
	NULL,
};

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
static struct acpi_nfit_memory_map *to_nfit_memdev(struct device *dev)
{
	struct nvdimm *nvdimm = to_nvdimm(dev);
	struct nfit_mem *nfit_mem = nvdimm_provider_data(nvdimm);

	return __to_nfit_memdev(nfit_mem);
}

static struct acpi_nfit_control_region *to_nfit_dcr(struct device *dev)
{
	struct nvdimm *nvdimm = to_nvdimm(dev);
	struct nfit_mem *nfit_mem = nvdimm_provider_data(nvdimm);

	return nfit_mem->dcr;
}

static ssize_t handle_show(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	struct acpi_nfit_memory_map *memdev = to_nfit_memdev(dev);

	return sprintf(buf, "%#x\n", memdev->device_handle);
}
static DEVICE_ATTR_RO(handle);

static ssize_t phys_id_show(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	struct acpi_nfit_memory_map *memdev = to_nfit_memdev(dev);

	return sprintf(buf, "%#x\n", memdev->physical_id);
}
static DEVICE_ATTR_RO(phys_id);

static ssize_t vendor_show(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	struct acpi_nfit_control_region *dcr = to_nfit_dcr(dev);

1389
	return sprintf(buf, "0x%04x\n", be16_to_cpu(dcr->vendor_id));
1390 1391 1392 1393 1394 1395 1396 1397
}
static DEVICE_ATTR_RO(vendor);

static ssize_t rev_id_show(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	struct acpi_nfit_control_region *dcr = to_nfit_dcr(dev);

1398
	return sprintf(buf, "0x%04x\n", be16_to_cpu(dcr->revision_id));
1399 1400 1401 1402 1403 1404 1405 1406
}
static DEVICE_ATTR_RO(rev_id);

static ssize_t device_show(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	struct acpi_nfit_control_region *dcr = to_nfit_dcr(dev);

1407
	return sprintf(buf, "0x%04x\n", be16_to_cpu(dcr->device_id));
1408 1409 1410
}
static DEVICE_ATTR_RO(device);

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
static ssize_t subsystem_vendor_show(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	struct acpi_nfit_control_region *dcr = to_nfit_dcr(dev);

	return sprintf(buf, "0x%04x\n", be16_to_cpu(dcr->subsystem_vendor_id));
}
static DEVICE_ATTR_RO(subsystem_vendor);

static ssize_t subsystem_rev_id_show(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	struct acpi_nfit_control_region *dcr = to_nfit_dcr(dev);

	return sprintf(buf, "0x%04x\n",
			be16_to_cpu(dcr->subsystem_revision_id));
}
static DEVICE_ATTR_RO(subsystem_rev_id);

static ssize_t subsystem_device_show(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	struct acpi_nfit_control_region *dcr = to_nfit_dcr(dev);

	return sprintf(buf, "0x%04x\n", be16_to_cpu(dcr->subsystem_device_id));
}
static DEVICE_ATTR_RO(subsystem_device);

1439 1440 1441 1442 1443 1444 1445 1446 1447 1448 1449 1450
static int num_nvdimm_formats(struct nvdimm *nvdimm)
{
	struct nfit_mem *nfit_mem = nvdimm_provider_data(nvdimm);
	int formats = 0;

	if (nfit_mem->memdev_pmem)
		formats++;
	if (nfit_mem->memdev_bdw)
		formats++;
	return formats;
}

1451 1452 1453 1454 1455
static ssize_t format_show(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	struct acpi_nfit_control_region *dcr = to_nfit_dcr(dev);

1456
	return sprintf(buf, "0x%04x\n", le16_to_cpu(dcr->code));
1457 1458 1459
}
static DEVICE_ATTR_RO(format);

1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488
static ssize_t format1_show(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	u32 handle;
	ssize_t rc = -ENXIO;
	struct nfit_mem *nfit_mem;
	struct nfit_memdev *nfit_memdev;
	struct acpi_nfit_desc *acpi_desc;
	struct nvdimm *nvdimm = to_nvdimm(dev);
	struct acpi_nfit_control_region *dcr = to_nfit_dcr(dev);

	nfit_mem = nvdimm_provider_data(nvdimm);
	acpi_desc = nfit_mem->acpi_desc;
	handle = to_nfit_memdev(dev)->device_handle;

	/* assumes DIMMs have at most 2 published interface codes */
	mutex_lock(&acpi_desc->init_mutex);
	list_for_each_entry(nfit_memdev, &acpi_desc->memdevs, list) {
		struct acpi_nfit_memory_map *memdev = nfit_memdev->memdev;
		struct nfit_dcr *nfit_dcr;

		if (memdev->device_handle != handle)
			continue;

		list_for_each_entry(nfit_dcr, &acpi_desc->dcrs, list) {
			if (nfit_dcr->dcr->region_index != memdev->region_index)
				continue;
			if (nfit_dcr->dcr->code == dcr->code)
				continue;
1489 1490
			rc = sprintf(buf, "0x%04x\n",
					le16_to_cpu(nfit_dcr->dcr->code));
1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507 1508 1509
			break;
		}
		if (rc != ENXIO)
			break;
	}
	mutex_unlock(&acpi_desc->init_mutex);
	return rc;
}
static DEVICE_ATTR_RO(format1);

static ssize_t formats_show(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	struct nvdimm *nvdimm = to_nvdimm(dev);

	return sprintf(buf, "%d\n", num_nvdimm_formats(nvdimm));
}
static DEVICE_ATTR_RO(formats);

1510 1511 1512 1513 1514
static ssize_t serial_show(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	struct acpi_nfit_control_region *dcr = to_nfit_dcr(dev);

1515
	return sprintf(buf, "0x%08x\n", be32_to_cpu(dcr->serial_number));
1516 1517 1518
}
static DEVICE_ATTR_RO(serial);

1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542
static ssize_t family_show(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	struct nvdimm *nvdimm = to_nvdimm(dev);
	struct nfit_mem *nfit_mem = nvdimm_provider_data(nvdimm);

	if (nfit_mem->family < 0)
		return -ENXIO;
	return sprintf(buf, "%d\n", nfit_mem->family);
}
static DEVICE_ATTR_RO(family);

static ssize_t dsm_mask_show(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	struct nvdimm *nvdimm = to_nvdimm(dev);
	struct nfit_mem *nfit_mem = nvdimm_provider_data(nvdimm);

	if (nfit_mem->family < 0)
		return -ENXIO;
	return sprintf(buf, "%#lx\n", nfit_mem->dsm_mask);
}
static DEVICE_ATTR_RO(dsm_mask);

1543 1544 1545 1546 1547
static ssize_t flags_show(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	u16 flags = to_nfit_memdev(dev)->flags;

1548
	return sprintf(buf, "%s%s%s%s%s%s%s\n",
1549 1550 1551
		flags & ACPI_NFIT_MEM_SAVE_FAILED ? "save_fail " : "",
		flags & ACPI_NFIT_MEM_RESTORE_FAILED ? "restore_fail " : "",
		flags & ACPI_NFIT_MEM_FLUSH_FAILED ? "flush_fail " : "",
1552
		flags & ACPI_NFIT_MEM_NOT_ARMED ? "not_armed " : "",
1553 1554 1555
		flags & ACPI_NFIT_MEM_HEALTH_OBSERVED ? "smart_event " : "",
		flags & ACPI_NFIT_MEM_MAP_FAILED ? "map_fail " : "",
		flags & ACPI_NFIT_MEM_HEALTH_ENABLED ? "smart_notify " : "");
1556 1557 1558
}
static DEVICE_ATTR_RO(flags);

1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576
static ssize_t id_show(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	struct acpi_nfit_control_region *dcr = to_nfit_dcr(dev);

	if (dcr->valid_fields & ACPI_NFIT_CONTROL_MFG_INFO_VALID)
		return sprintf(buf, "%04x-%02x-%04x-%08x\n",
				be16_to_cpu(dcr->vendor_id),
				dcr->manufacturing_location,
				be16_to_cpu(dcr->manufacturing_date),
				be32_to_cpu(dcr->serial_number));
	else
		return sprintf(buf, "%04x-%08x\n",
				be16_to_cpu(dcr->vendor_id),
				be32_to_cpu(dcr->serial_number));
}
static DEVICE_ATTR_RO(id);

1577 1578 1579 1580 1581
static struct attribute *acpi_nfit_dimm_attributes[] = {
	&dev_attr_handle.attr,
	&dev_attr_phys_id.attr,
	&dev_attr_vendor.attr,
	&dev_attr_device.attr,
1582 1583 1584 1585
	&dev_attr_rev_id.attr,
	&dev_attr_subsystem_vendor.attr,
	&dev_attr_subsystem_device.attr,
	&dev_attr_subsystem_rev_id.attr,
1586
	&dev_attr_format.attr,
1587 1588
	&dev_attr_formats.attr,
	&dev_attr_format1.attr,
1589
	&dev_attr_serial.attr,
1590
	&dev_attr_flags.attr,
1591
	&dev_attr_id.attr,
1592 1593
	&dev_attr_family.attr,
	&dev_attr_dsm_mask.attr,
1594 1595 1596 1597 1598 1599 1600
	NULL,
};

static umode_t acpi_nfit_dimm_attr_visible(struct kobject *kobj,
		struct attribute *a, int n)
{
	struct device *dev = container_of(kobj, struct device, kobj);
1601
	struct nvdimm *nvdimm = to_nvdimm(dev);
1602

1603 1604 1605 1606 1607 1608 1609
	if (!to_nfit_dcr(dev)) {
		/* Without a dcr only the memdev attributes can be surfaced */
		if (a == &dev_attr_handle.attr || a == &dev_attr_phys_id.attr
				|| a == &dev_attr_flags.attr
				|| a == &dev_attr_family.attr
				|| a == &dev_attr_dsm_mask.attr)
			return a->mode;
1610
		return 0;
1611 1612
	}

1613
	if (a == &dev_attr_format1.attr && num_nvdimm_formats(nvdimm) <= 1)
1614
		return 0;
1615
	return a->mode;
1616 1617
}

1618
static const struct attribute_group acpi_nfit_dimm_attribute_group = {
1619 1620 1621 1622 1623 1624
	.name = "nfit",
	.attrs = acpi_nfit_dimm_attributes,
	.is_visible = acpi_nfit_dimm_attr_visible,
};

static const struct attribute_group *acpi_nfit_dimm_attribute_groups[] = {
1625
	&nvdimm_attribute_group,
1626
	&nd_device_attribute_group,
1627 1628 1629 1630 1631 1632 1633 1634 1635 1636 1637 1638 1639 1640 1641 1642
	&acpi_nfit_dimm_attribute_group,
	NULL,
};

static struct nvdimm *acpi_nfit_dimm_by_handle(struct acpi_nfit_desc *acpi_desc,
		u32 device_handle)
{
	struct nfit_mem *nfit_mem;

	list_for_each_entry(nfit_mem, &acpi_desc->dimms, list)
		if (__to_nfit_memdev(nfit_mem)->device_handle == device_handle)
			return nfit_mem->nvdimm;

	return NULL;
}

1643
void __acpi_nvdimm_notify(struct device *dev, u32 event)
1644 1645 1646 1647
{
	struct nfit_mem *nfit_mem;
	struct acpi_nfit_desc *acpi_desc;

1648
	dev_dbg(dev->parent, "%s: event: %d\n", dev_name(dev),
1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668
			event);

	if (event != NFIT_NOTIFY_DIMM_HEALTH) {
		dev_dbg(dev->parent, "%s: unknown event: %d\n", dev_name(dev),
				event);
		return;
	}

	acpi_desc = dev_get_drvdata(dev->parent);
	if (!acpi_desc)
		return;

	/*
	 * If we successfully retrieved acpi_desc, then we know nfit_mem data
	 * is still valid.
	 */
	nfit_mem = dev_get_drvdata(dev);
	if (nfit_mem && nfit_mem->flags_attr)
		sysfs_notify_dirent(nfit_mem->flags_attr);
}
1669
EXPORT_SYMBOL_GPL(__acpi_nvdimm_notify);
1670 1671 1672 1673 1674 1675 1676 1677 1678 1679 1680

static void acpi_nvdimm_notify(acpi_handle handle, u32 event, void *data)
{
	struct acpi_device *adev = data;
	struct device *dev = &adev->dev;

	device_lock(dev->parent);
	__acpi_nvdimm_notify(dev, event);
	device_unlock(dev->parent);
}

1681 1682 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692
static bool acpi_nvdimm_has_method(struct acpi_device *adev, char *method)
{
	acpi_handle handle;
	acpi_status status;

	status = acpi_get_handle(adev->handle, method, &handle);

	if (ACPI_SUCCESS(status))
		return true;
	return false;
}

1693 1694 1695 1696 1697
static int acpi_nfit_add_dimm(struct acpi_nfit_desc *acpi_desc,
		struct nfit_mem *nfit_mem, u32 device_handle)
{
	struct acpi_device *adev, *adev_dimm;
	struct device *dev = acpi_desc->dev;
1698
	unsigned long dsm_mask;
1699
	const guid_t *guid;
1700
	int i;
1701
	int family = -1;
1702

1703 1704
	/* nfit test assumes 1:1 relationship between commands and dsms */
	nfit_mem->dsm_mask = acpi_desc->dimm_cmd_force_en;
1705
	nfit_mem->family = NVDIMM_FAMILY_INTEL;
1706 1707 1708 1709 1710 1711 1712 1713 1714
	adev = to_acpi_dev(acpi_desc);
	if (!adev)
		return 0;

	adev_dimm = acpi_find_child_device(adev, device_handle, false);
	nfit_mem->adev = adev_dimm;
	if (!adev_dimm) {
		dev_err(dev, "no ACPI.NFIT device with _ADR %#x, disabling...\n",
				device_handle);
1715
		return force_enable_dimms ? 0 : -ENODEV;
1716 1717
	}

1718 1719 1720 1721 1722 1723
	if (ACPI_FAILURE(acpi_install_notify_handler(adev_dimm->handle,
		ACPI_DEVICE_NOTIFY, acpi_nvdimm_notify, adev_dimm))) {
		dev_err(dev, "%s: notification registration failed\n",
				dev_name(&adev_dimm->dev));
		return -ENXIO;
	}
1724 1725 1726 1727 1728
	/*
	 * Record nfit_mem for the notification path to track back to
	 * the nfit sysfs attributes for this dimm device object.
	 */
	dev_set_drvdata(&adev_dimm->dev, nfit_mem);
1729

1730
	/*
1731
	 * Until standardization materializes we need to consider 4
D
Dan Williams 已提交
1732
	 * different command sets.  Note, that checking for function0 (bit0)
1733
	 * tells us if any commands are reachable through this GUID.
1734
	 */
1735
	for (i = 0; i <= NVDIMM_FAMILY_MAX; i++)
D
Dan Williams 已提交
1736
		if (acpi_check_dsm(adev_dimm->handle, to_nfit_uuid(i), 1, 1))
1737 1738
			if (family < 0 || i == default_dsm_family)
				family = i;
1739 1740

	/* limit the supported commands to those that are publicly documented */
1741
	nfit_mem->family = family;
1742 1743 1744
	if (override_dsm_mask && !disable_vendor_specific)
		dsm_mask = override_dsm_mask;
	else if (nfit_mem->family == NVDIMM_FAMILY_INTEL) {
1745
		dsm_mask = NVDIMM_INTEL_CMDMASK;
1746 1747
		if (disable_vendor_specific)
			dsm_mask &= ~(1 << ND_CMD_VENDOR);
1748
	} else if (nfit_mem->family == NVDIMM_FAMILY_HPE1) {
1749
		dsm_mask = 0x1c3c76;
1750
	} else if (nfit_mem->family == NVDIMM_FAMILY_HPE2) {
1751
		dsm_mask = 0x1fe;
1752 1753
		if (disable_vendor_specific)
			dsm_mask &= ~(1 << 8);
1754 1755
	} else if (nfit_mem->family == NVDIMM_FAMILY_MSFT) {
		dsm_mask = 0xffffffff;
1756
	} else {
D
Dan Williams 已提交
1757
		dev_dbg(dev, "unknown dimm command family\n");
1758
		nfit_mem->family = -1;
D
Dan Williams 已提交
1759 1760
		/* DSMs are optional, continue loading the driver... */
		return 0;
1761 1762
	}

1763
	guid = to_nfit_uuid(nfit_mem->family);
1764
	for_each_set_bit(i, &dsm_mask, BITS_PER_LONG)
1765 1766 1767
		if (acpi_check_dsm(adev_dimm->handle, guid,
					nfit_dsm_revid(nfit_mem->family, i),
					1ULL << i))
1768 1769
			set_bit(i, &nfit_mem->dsm_mask);

1770 1771
	if (acpi_nvdimm_has_method(adev_dimm, "_LSI")
			&& acpi_nvdimm_has_method(adev_dimm, "_LSR")) {
1772
		dev_dbg(dev, "%s: has _LSR\n", dev_name(&adev_dimm->dev));
1773
		nfit_mem->has_lsr = true;
1774 1775
	}

1776
	if (nfit_mem->has_lsr && acpi_nvdimm_has_method(adev_dimm, "_LSW")) {
1777
		dev_dbg(dev, "%s: has _LSW\n", dev_name(&adev_dimm->dev));
1778
		nfit_mem->has_lsw = true;
1779 1780
	}

1781
	return 0;
1782 1783
}

1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794
static void shutdown_dimm_notify(void *data)
{
	struct acpi_nfit_desc *acpi_desc = data;
	struct nfit_mem *nfit_mem;

	mutex_lock(&acpi_desc->init_mutex);
	/*
	 * Clear out the nfit_mem->flags_attr and shut down dimm event
	 * notifications.
	 */
	list_for_each_entry(nfit_mem, &acpi_desc->dimms, list) {
1795 1796
		struct acpi_device *adev_dimm = nfit_mem->adev;

1797 1798 1799 1800
		if (nfit_mem->flags_attr) {
			sysfs_put(nfit_mem->flags_attr);
			nfit_mem->flags_attr = NULL;
		}
1801
		if (adev_dimm) {
1802 1803
			acpi_remove_notify_handler(adev_dimm->handle,
					ACPI_DEVICE_NOTIFY, acpi_nvdimm_notify);
1804 1805
			dev_set_drvdata(&adev_dimm->dev, NULL);
		}
1806 1807 1808 1809
	}
	mutex_unlock(&acpi_desc->init_mutex);
}

1810 1811 1812
static int acpi_nfit_register_dimms(struct acpi_nfit_desc *acpi_desc)
{
	struct nfit_mem *nfit_mem;
1813 1814
	int dimm_count = 0, rc;
	struct nvdimm *nvdimm;
1815 1816

	list_for_each_entry(nfit_mem, &acpi_desc->dimms, list) {
1817
		struct acpi_nfit_flush_address *flush;
1818
		unsigned long flags = 0, cmd_mask;
1819
		struct nfit_memdev *nfit_memdev;
1820
		u32 device_handle;
1821
		u16 mem_flags;
1822 1823 1824 1825

		device_handle = __to_nfit_memdev(nfit_mem)->device_handle;
		nvdimm = acpi_nfit_dimm_by_handle(acpi_desc, device_handle);
		if (nvdimm) {
V
Vishal Verma 已提交
1826
			dimm_count++;
1827 1828 1829 1830
			continue;
		}

		if (nfit_mem->bdw && nfit_mem->memdev_pmem)
1831
			set_bit(NDD_ALIASING, &flags);
1832

1833 1834 1835 1836 1837 1838 1839 1840 1841 1842 1843
		/* collate flags across all memdevs for this dimm */
		list_for_each_entry(nfit_memdev, &acpi_desc->memdevs, list) {
			struct acpi_nfit_memory_map *dimm_memdev;

			dimm_memdev = __to_nfit_memdev(nfit_mem);
			if (dimm_memdev->device_handle
					!= nfit_memdev->memdev->device_handle)
				continue;
			dimm_memdev->flags |= nfit_memdev->memdev->flags;
		}

1844
		mem_flags = __to_nfit_memdev(nfit_mem)->flags;
1845
		if (mem_flags & ACPI_NFIT_MEM_NOT_ARMED)
1846
			set_bit(NDD_UNARMED, &flags);
1847

1848 1849 1850 1851
		rc = acpi_nfit_add_dimm(acpi_desc, nfit_mem, device_handle);
		if (rc)
			continue;

1852
		/*
1853 1854 1855
		 * TODO: provide translation for non-NVDIMM_FAMILY_INTEL
		 * devices (i.e. from nd_cmd to acpi_dsm) to standardize the
		 * userspace interface.
1856
		 */
1857
		cmd_mask = 1UL << ND_CMD_CALL;
1858 1859 1860 1861 1862 1863 1864 1865
		if (nfit_mem->family == NVDIMM_FAMILY_INTEL) {
			/*
			 * These commands have a 1:1 correspondence
			 * between DSM payload and libnvdimm ioctl
			 * payload format.
			 */
			cmd_mask |= nfit_mem->dsm_mask & NVDIMM_STANDARD_CMDMASK;
		}
1866

1867
		if (nfit_mem->has_lsr) {
1868 1869
			set_bit(ND_CMD_GET_CONFIG_SIZE, &cmd_mask);
			set_bit(ND_CMD_GET_CONFIG_DATA, &cmd_mask);
1870
		}
1871 1872 1873
		if (nfit_mem->has_lsw)
			set_bit(ND_CMD_SET_CONFIG_DATA, &cmd_mask);

1874 1875
		flush = nfit_mem->nfit_flush ? nfit_mem->nfit_flush->flush
			: NULL;
1876
		nvdimm = nvdimm_create(acpi_desc->nvdimm_bus, nfit_mem,
1877
				acpi_nfit_dimm_attribute_groups,
1878 1879
				flags, cmd_mask, flush ? flush->hint_count : 0,
				nfit_mem->flush_wpq);
1880 1881 1882 1883
		if (!nvdimm)
			return -ENOMEM;

		nfit_mem->nvdimm = nvdimm;
1884
		dimm_count++;
1885 1886 1887 1888

		if ((mem_flags & ACPI_NFIT_MEM_FAILED_MASK) == 0)
			continue;

1889
		dev_info(acpi_desc->dev, "%s flags:%s%s%s%s%s\n",
1890
				nvdimm_name(nvdimm),
1891 1892 1893
		  mem_flags & ACPI_NFIT_MEM_SAVE_FAILED ? " save_fail" : "",
		  mem_flags & ACPI_NFIT_MEM_RESTORE_FAILED ? " restore_fail":"",
		  mem_flags & ACPI_NFIT_MEM_FLUSH_FAILED ? " flush_fail" : "",
1894 1895
		  mem_flags & ACPI_NFIT_MEM_NOT_ARMED ? " not_armed" : "",
		  mem_flags & ACPI_NFIT_MEM_MAP_FAILED ? " map_fail" : "");
1896

1897 1898
	}

1899 1900 1901 1902 1903 1904 1905 1906 1907 1908 1909 1910
	rc = nvdimm_bus_check_dimm_count(acpi_desc->nvdimm_bus, dimm_count);
	if (rc)
		return rc;

	/*
	 * Now that dimms are successfully registered, and async registration
	 * is flushed, attempt to enable event notification.
	 */
	list_for_each_entry(nfit_mem, &acpi_desc->dimms, list) {
		struct kernfs_node *nfit_kernfs;

		nvdimm = nfit_mem->nvdimm;
1911 1912 1913
		if (!nvdimm)
			continue;

1914 1915 1916 1917 1918 1919 1920 1921 1922 1923 1924 1925
		nfit_kernfs = sysfs_get_dirent(nvdimm_kobj(nvdimm)->sd, "nfit");
		if (nfit_kernfs)
			nfit_mem->flags_attr = sysfs_get_dirent(nfit_kernfs,
					"flags");
		sysfs_put(nfit_kernfs);
		if (!nfit_mem->flags_attr)
			dev_warn(acpi_desc->dev, "%s: notifications disabled\n",
					nvdimm_name(nvdimm));
	}

	return devm_add_action_or_reset(acpi_desc->dev, shutdown_dimm_notify,
			acpi_desc);
1926 1927
}

1928 1929 1930 1931 1932 1933 1934 1935 1936 1937 1938
/*
 * These constants are private because there are no kernel consumers of
 * these commands.
 */
enum nfit_aux_cmds {
        NFIT_CMD_TRANSLATE_SPA = 5,
        NFIT_CMD_ARS_INJECT_SET = 7,
        NFIT_CMD_ARS_INJECT_CLEAR = 8,
        NFIT_CMD_ARS_INJECT_GET = 9,
};

1939 1940 1941
static void acpi_nfit_init_dsms(struct acpi_nfit_desc *acpi_desc)
{
	struct nvdimm_bus_descriptor *nd_desc = &acpi_desc->nd_desc;
1942
	const guid_t *guid = to_nfit_uuid(NFIT_DEV_BUS);
1943
	struct acpi_device *adev;
1944
	unsigned long dsm_mask;
1945 1946
	int i;

1947
	nd_desc->cmd_mask = acpi_desc->bus_cmd_force_en;
1948
	nd_desc->bus_dsm_mask = acpi_desc->bus_nfit_cmd_force_en;
1949 1950 1951 1952
	adev = to_acpi_dev(acpi_desc);
	if (!adev)
		return;

1953
	for (i = ND_CMD_ARS_CAP; i <= ND_CMD_CLEAR_ERROR; i++)
1954
		if (acpi_check_dsm(adev->handle, guid, 1, 1ULL << i))
1955
			set_bit(i, &nd_desc->cmd_mask);
1956
	set_bit(ND_CMD_CALL, &nd_desc->cmd_mask);
1957 1958 1959 1960 1961 1962 1963 1964 1965 1966 1967 1968 1969

	dsm_mask =
		(1 << ND_CMD_ARS_CAP) |
		(1 << ND_CMD_ARS_START) |
		(1 << ND_CMD_ARS_STATUS) |
		(1 << ND_CMD_CLEAR_ERROR) |
		(1 << NFIT_CMD_TRANSLATE_SPA) |
		(1 << NFIT_CMD_ARS_INJECT_SET) |
		(1 << NFIT_CMD_ARS_INJECT_CLEAR) |
		(1 << NFIT_CMD_ARS_INJECT_GET);
	for_each_set_bit(i, &dsm_mask, BITS_PER_LONG)
		if (acpi_check_dsm(adev->handle, guid, 1, 1ULL << i))
			set_bit(i, &nd_desc->bus_dsm_mask);
1970 1971
}

1972 1973 1974 1975 1976 1977 1978 1979 1980 1981 1982 1983 1984 1985 1986
static ssize_t range_index_show(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	struct nd_region *nd_region = to_nd_region(dev);
	struct nfit_spa *nfit_spa = nd_region_provider_data(nd_region);

	return sprintf(buf, "%d\n", nfit_spa->spa->range_index);
}
static DEVICE_ATTR_RO(range_index);

static struct attribute *acpi_nfit_region_attributes[] = {
	&dev_attr_range_index.attr,
	NULL,
};

1987
static const struct attribute_group acpi_nfit_region_attribute_group = {
1988 1989 1990 1991 1992 1993 1994
	.name = "nfit",
	.attrs = acpi_nfit_region_attributes,
};

static const struct attribute_group *acpi_nfit_region_attribute_groups[] = {
	&nd_region_attribute_group,
	&nd_mapping_attribute_group,
1995
	&nd_device_attribute_group,
1996
	&nd_numa_attribute_group,
1997 1998 1999 2000
	&acpi_nfit_region_attribute_group,
	NULL,
};

2001 2002 2003 2004 2005 2006 2007 2008 2009
/* enough info to uniquely specify an interleave set */
struct nfit_set_info {
	struct nfit_set_info_map {
		u64 region_offset;
		u32 serial_number;
		u32 pad;
	} mapping[0];
};

2010 2011 2012 2013 2014 2015 2016 2017 2018 2019 2020
struct nfit_set_info2 {
	struct nfit_set_info_map2 {
		u64 region_offset;
		u32 serial_number;
		u16 vendor_id;
		u16 manufacturing_date;
		u8  manufacturing_location;
		u8  reserved[31];
	} mapping[0];
};

2021 2022 2023 2024 2025 2026
static size_t sizeof_nfit_set_info(int num_mappings)
{
	return sizeof(struct nfit_set_info)
		+ num_mappings * sizeof(struct nfit_set_info_map);
}

2027 2028 2029 2030 2031 2032
static size_t sizeof_nfit_set_info2(int num_mappings)
{
	return sizeof(struct nfit_set_info2)
		+ num_mappings * sizeof(struct nfit_set_info_map2);
}

2033
static int cmp_map_compat(const void *m0, const void *m1)
2034 2035 2036 2037 2038 2039 2040 2041
{
	const struct nfit_set_info_map *map0 = m0;
	const struct nfit_set_info_map *map1 = m1;

	return memcmp(&map0->region_offset, &map1->region_offset,
			sizeof(u64));
}

2042 2043 2044 2045 2046
static int cmp_map(const void *m0, const void *m1)
{
	const struct nfit_set_info_map *map0 = m0;
	const struct nfit_set_info_map *map1 = m1;

2047 2048 2049 2050 2051
	if (map0->region_offset < map1->region_offset)
		return -1;
	else if (map0->region_offset > map1->region_offset)
		return 1;
	return 0;
2052 2053
}

2054 2055 2056 2057 2058 2059 2060 2061 2062 2063 2064 2065
static int cmp_map2(const void *m0, const void *m1)
{
	const struct nfit_set_info_map2 *map0 = m0;
	const struct nfit_set_info_map2 *map1 = m1;

	if (map0->region_offset < map1->region_offset)
		return -1;
	else if (map0->region_offset > map1->region_offset)
		return 1;
	return 0;
}

2066 2067 2068 2069 2070 2071 2072 2073 2074 2075 2076 2077 2078 2079 2080 2081 2082 2083 2084 2085
/* Retrieve the nth entry referencing this spa */
static struct acpi_nfit_memory_map *memdev_from_spa(
		struct acpi_nfit_desc *acpi_desc, u16 range_index, int n)
{
	struct nfit_memdev *nfit_memdev;

	list_for_each_entry(nfit_memdev, &acpi_desc->memdevs, list)
		if (nfit_memdev->memdev->range_index == range_index)
			if (n-- == 0)
				return nfit_memdev->memdev;
	return NULL;
}

static int acpi_nfit_init_interleave_set(struct acpi_nfit_desc *acpi_desc,
		struct nd_region_desc *ndr_desc,
		struct acpi_nfit_system_address *spa)
{
	struct device *dev = acpi_desc->dev;
	struct nd_interleave_set *nd_set;
	u16 nr = ndr_desc->num_mappings;
2086
	struct nfit_set_info2 *info2;
2087
	struct nfit_set_info *info;
2088
	int i;
2089

2090 2091 2092 2093 2094 2095
	nd_set = devm_kzalloc(dev, sizeof(*nd_set), GFP_KERNEL);
	if (!nd_set)
		return -ENOMEM;
	ndr_desc->nd_set = nd_set;
	guid_copy(&nd_set->type_guid, (guid_t *) spa->range_guid);

2096 2097 2098
	info = devm_kzalloc(dev, sizeof_nfit_set_info(nr), GFP_KERNEL);
	if (!info)
		return -ENOMEM;
2099 2100 2101 2102 2103

	info2 = devm_kzalloc(dev, sizeof_nfit_set_info2(nr), GFP_KERNEL);
	if (!info2)
		return -ENOMEM;

2104
	for (i = 0; i < nr; i++) {
2105
		struct nd_mapping_desc *mapping = &ndr_desc->mapping[i];
2106
		struct nfit_set_info_map *map = &info->mapping[i];
2107
		struct nfit_set_info_map2 *map2 = &info2->mapping[i];
2108
		struct nvdimm *nvdimm = mapping->nvdimm;
2109 2110 2111
		struct nfit_mem *nfit_mem = nvdimm_provider_data(nvdimm);
		struct acpi_nfit_memory_map *memdev = memdev_from_spa(acpi_desc,
				spa->range_index, i);
2112
		struct acpi_nfit_control_region *dcr = nfit_mem->dcr;
2113 2114 2115 2116 2117 2118 2119

		if (!memdev || !nfit_mem->dcr) {
			dev_err(dev, "%s: failed to find DCR\n", __func__);
			return -ENODEV;
		}

		map->region_offset = memdev->region_offset;
2120
		map->serial_number = dcr->serial_number;
2121 2122

		map2->region_offset = memdev->region_offset;
2123 2124 2125 2126
		map2->serial_number = dcr->serial_number;
		map2->vendor_id = dcr->vendor_id;
		map2->manufacturing_date = dcr->manufacturing_date;
		map2->manufacturing_location = dcr->manufacturing_location;
2127 2128
	}

2129
	/* v1.1 namespaces */
2130 2131
	sort(&info->mapping[0], nr, sizeof(struct nfit_set_info_map),
			cmp_map, NULL);
2132 2133 2134 2135 2136 2137
	nd_set->cookie1 = nd_fletcher64(info, sizeof_nfit_set_info(nr), 0);

	/* v1.2 namespaces */
	sort(&info2->mapping[0], nr, sizeof(struct nfit_set_info_map2),
			cmp_map2, NULL);
	nd_set->cookie2 = nd_fletcher64(info2, sizeof_nfit_set_info2(nr), 0);
2138

2139
	/* support v1.1 namespaces created with the wrong sort order */
2140 2141 2142 2143
	sort(&info->mapping[0], nr, sizeof(struct nfit_set_info_map),
			cmp_map_compat, NULL);
	nd_set->altcookie = nd_fletcher64(info, sizeof_nfit_set_info(nr), 0);

2144 2145 2146 2147 2148 2149 2150 2151 2152
	/* record the result of the sort for the mapping position */
	for (i = 0; i < nr; i++) {
		struct nfit_set_info_map2 *map2 = &info2->mapping[i];
		int j;

		for (j = 0; j < nr; j++) {
			struct nd_mapping_desc *mapping = &ndr_desc->mapping[j];
			struct nvdimm *nvdimm = mapping->nvdimm;
			struct nfit_mem *nfit_mem = nvdimm_provider_data(nvdimm);
2153
			struct acpi_nfit_control_region *dcr = nfit_mem->dcr;
2154

2155 2156 2157
			if (map2->serial_number == dcr->serial_number &&
			    map2->vendor_id == dcr->vendor_id &&
			    map2->manufacturing_date == dcr->manufacturing_date &&
2158
			    map2->manufacturing_location
2159
				    == dcr->manufacturing_location) {
2160 2161 2162 2163 2164 2165
				mapping->position = i;
				break;
			}
		}
	}

2166 2167
	ndr_desc->nd_set = nd_set;
	devm_kfree(dev, info);
2168
	devm_kfree(dev, info2);
2169 2170 2171 2172

	return 0;
}

2173 2174 2175 2176 2177 2178 2179 2180 2181 2182 2183 2184 2185 2186 2187
static u64 to_interleave_offset(u64 offset, struct nfit_blk_mmio *mmio)
{
	struct acpi_nfit_interleave *idt = mmio->idt;
	u32 sub_line_offset, line_index, line_offset;
	u64 line_no, table_skip_count, table_offset;

	line_no = div_u64_rem(offset, mmio->line_size, &sub_line_offset);
	table_skip_count = div_u64_rem(line_no, mmio->num_lines, &line_index);
	line_offset = idt->line_offset[line_index]
		* mmio->line_size;
	table_offset = table_skip_count * mmio->table_size;

	return mmio->base_offset + line_offset + table_offset + sub_line_offset;
}

2188
static u32 read_blk_stat(struct nfit_blk *nfit_blk, unsigned int bw)
2189 2190 2191
{
	struct nfit_blk_mmio *mmio = &nfit_blk->mmio[DCR];
	u64 offset = nfit_blk->stat_offset + mmio->size * bw;
2192
	const u32 STATUS_MASK = 0x80000037;
2193 2194 2195 2196

	if (mmio->num_lines)
		offset = to_interleave_offset(offset, mmio);

2197
	return readl(mmio->addr.base + offset) & STATUS_MASK;
2198 2199 2200 2201 2202 2203 2204 2205 2206 2207 2208 2209 2210 2211 2212 2213 2214 2215 2216 2217 2218 2219 2220 2221
}

static void write_blk_ctl(struct nfit_blk *nfit_blk, unsigned int bw,
		resource_size_t dpa, unsigned int len, unsigned int write)
{
	u64 cmd, offset;
	struct nfit_blk_mmio *mmio = &nfit_blk->mmio[DCR];

	enum {
		BCW_OFFSET_MASK = (1ULL << 48)-1,
		BCW_LEN_SHIFT = 48,
		BCW_LEN_MASK = (1ULL << 8) - 1,
		BCW_CMD_SHIFT = 56,
	};

	cmd = (dpa >> L1_CACHE_SHIFT) & BCW_OFFSET_MASK;
	len = len >> L1_CACHE_SHIFT;
	cmd |= ((u64) len & BCW_LEN_MASK) << BCW_LEN_SHIFT;
	cmd |= ((u64) write) << BCW_CMD_SHIFT;

	offset = nfit_blk->cmd_offset + mmio->size * bw;
	if (mmio->num_lines)
		offset = to_interleave_offset(offset, mmio);

2222
	writeq(cmd, mmio->addr.base + offset);
2223
	nvdimm_flush(nfit_blk->nd_region);
2224

2225
	if (nfit_blk->dimm_flags & NFIT_BLK_DCR_LATCH)
2226
		readq(mmio->addr.base + offset);
2227 2228 2229 2230 2231 2232 2233 2234 2235 2236 2237 2238 2239 2240 2241 2242 2243 2244 2245 2246 2247 2248 2249 2250 2251 2252 2253 2254 2255 2256 2257
}

static int acpi_nfit_blk_single_io(struct nfit_blk *nfit_blk,
		resource_size_t dpa, void *iobuf, size_t len, int rw,
		unsigned int lane)
{
	struct nfit_blk_mmio *mmio = &nfit_blk->mmio[BDW];
	unsigned int copied = 0;
	u64 base_offset;
	int rc;

	base_offset = nfit_blk->bdw_offset + dpa % L1_CACHE_BYTES
		+ lane * mmio->size;
	write_blk_ctl(nfit_blk, lane, dpa, len, rw);
	while (len) {
		unsigned int c;
		u64 offset;

		if (mmio->num_lines) {
			u32 line_offset;

			offset = to_interleave_offset(base_offset + copied,
					mmio);
			div_u64_rem(offset, mmio->line_size, &line_offset);
			c = min_t(size_t, len, mmio->line_size - line_offset);
		} else {
			offset = base_offset + nfit_blk->bdw_offset;
			c = len;
		}

		if (rw)
2258
			memcpy_flushcache(mmio->addr.aperture + offset, iobuf + copied, c);
2259
		else {
2260
			if (nfit_blk->dimm_flags & NFIT_BLK_READ_FLUSH)
2261
				arch_invalidate_pmem((void __force *)
2262 2263
					mmio->addr.aperture + offset, c);

2264
			memcpy(iobuf + copied, mmio->addr.aperture + offset, c);
2265
		}
2266 2267 2268 2269

		copied += c;
		len -= c;
	}
2270 2271

	if (rw)
2272
		nvdimm_flush(nfit_blk->nd_region);
2273

2274 2275 2276 2277 2278 2279 2280 2281 2282 2283 2284 2285 2286 2287 2288 2289 2290 2291 2292 2293 2294 2295 2296 2297 2298 2299 2300 2301 2302 2303 2304 2305 2306 2307 2308 2309 2310 2311 2312 2313 2314 2315 2316 2317 2318
	rc = read_blk_stat(nfit_blk, lane) ? -EIO : 0;
	return rc;
}

static int acpi_nfit_blk_region_do_io(struct nd_blk_region *ndbr,
		resource_size_t dpa, void *iobuf, u64 len, int rw)
{
	struct nfit_blk *nfit_blk = nd_blk_region_provider_data(ndbr);
	struct nfit_blk_mmio *mmio = &nfit_blk->mmio[BDW];
	struct nd_region *nd_region = nfit_blk->nd_region;
	unsigned int lane, copied = 0;
	int rc = 0;

	lane = nd_region_acquire_lane(nd_region);
	while (len) {
		u64 c = min(len, mmio->size);

		rc = acpi_nfit_blk_single_io(nfit_blk, dpa + copied,
				iobuf + copied, c, rw, lane);
		if (rc)
			break;

		copied += c;
		len -= c;
	}
	nd_region_release_lane(nd_region, lane);

	return rc;
}

static int nfit_blk_init_interleave(struct nfit_blk_mmio *mmio,
		struct acpi_nfit_interleave *idt, u16 interleave_ways)
{
	if (idt) {
		mmio->num_lines = idt->line_count;
		mmio->line_size = idt->line_size;
		if (interleave_ways == 0)
			return -ENXIO;
		mmio->table_size = mmio->num_lines * interleave_ways
			* mmio->line_size;
	}

	return 0;
}

2319 2320 2321 2322 2323 2324 2325 2326
static int acpi_nfit_blk_get_flags(struct nvdimm_bus_descriptor *nd_desc,
		struct nvdimm *nvdimm, struct nfit_blk *nfit_blk)
{
	struct nd_cmd_dimm_flags flags;
	int rc;

	memset(&flags, 0, sizeof(flags));
	rc = nd_desc->ndctl(nd_desc, nvdimm, ND_CMD_DIMM_FLAGS, &flags,
2327
			sizeof(flags), NULL);
2328 2329 2330 2331 2332

	if (rc >= 0 && flags.status == 0)
		nfit_blk->dimm_flags = flags.flags;
	else if (rc == -ENOTTY) {
		/* fall back to a conservative default */
2333
		nfit_blk->dimm_flags = NFIT_BLK_DCR_LATCH | NFIT_BLK_READ_FLUSH;
2334 2335 2336 2337 2338 2339 2340
		rc = 0;
	} else
		rc = -ENXIO;

	return rc;
}

2341 2342 2343 2344 2345 2346 2347 2348 2349 2350 2351 2352 2353 2354
static int acpi_nfit_blk_region_enable(struct nvdimm_bus *nvdimm_bus,
		struct device *dev)
{
	struct nvdimm_bus_descriptor *nd_desc = to_nd_desc(nvdimm_bus);
	struct nd_blk_region *ndbr = to_nd_blk_region(dev);
	struct nfit_blk_mmio *mmio;
	struct nfit_blk *nfit_blk;
	struct nfit_mem *nfit_mem;
	struct nvdimm *nvdimm;
	int rc;

	nvdimm = nd_blk_region_to_dimm(ndbr);
	nfit_mem = nvdimm_provider_data(nvdimm);
	if (!nfit_mem || !nfit_mem->dcr || !nfit_mem->bdw) {
2355
		dev_dbg(dev, "missing%s%s%s\n",
2356
				nfit_mem ? "" : " nfit_mem",
2357 2358
				(nfit_mem && nfit_mem->dcr) ? "" : " dcr",
				(nfit_mem && nfit_mem->bdw) ? "" : " bdw");
2359 2360 2361 2362 2363 2364 2365 2366 2367 2368 2369 2370
		return -ENXIO;
	}

	nfit_blk = devm_kzalloc(dev, sizeof(*nfit_blk), GFP_KERNEL);
	if (!nfit_blk)
		return -ENOMEM;
	nd_blk_region_set_provider_data(ndbr, nfit_blk);
	nfit_blk->nd_region = to_nd_region(dev);

	/* map block aperture memory */
	nfit_blk->bdw_offset = nfit_mem->bdw->offset;
	mmio = &nfit_blk->mmio[BDW];
2371
	mmio->addr.base = devm_nvdimm_memremap(dev, nfit_mem->spa_bdw->address,
2372
                        nfit_mem->spa_bdw->length, nd_blk_memremap_flags(ndbr));
2373
	if (!mmio->addr.base) {
2374
		dev_dbg(dev, "%s failed to map bdw\n",
2375 2376 2377 2378 2379 2380 2381 2382 2383 2384
				nvdimm_name(nvdimm));
		return -ENOMEM;
	}
	mmio->size = nfit_mem->bdw->size;
	mmio->base_offset = nfit_mem->memdev_bdw->region_offset;
	mmio->idt = nfit_mem->idt_bdw;
	mmio->spa = nfit_mem->spa_bdw;
	rc = nfit_blk_init_interleave(mmio, nfit_mem->idt_bdw,
			nfit_mem->memdev_bdw->interleave_ways);
	if (rc) {
2385 2386
		dev_dbg(dev, "%s failed to init bdw interleave\n",
				nvdimm_name(nvdimm));
2387 2388 2389 2390 2391 2392 2393
		return rc;
	}

	/* map block control memory */
	nfit_blk->cmd_offset = nfit_mem->dcr->command_offset;
	nfit_blk->stat_offset = nfit_mem->dcr->status_offset;
	mmio = &nfit_blk->mmio[DCR];
2394 2395
	mmio->addr.base = devm_nvdimm_ioremap(dev, nfit_mem->spa_dcr->address,
			nfit_mem->spa_dcr->length);
2396
	if (!mmio->addr.base) {
2397
		dev_dbg(dev, "%s failed to map dcr\n",
2398 2399 2400 2401 2402 2403 2404 2405 2406 2407
				nvdimm_name(nvdimm));
		return -ENOMEM;
	}
	mmio->size = nfit_mem->dcr->window_size;
	mmio->base_offset = nfit_mem->memdev_dcr->region_offset;
	mmio->idt = nfit_mem->idt_dcr;
	mmio->spa = nfit_mem->spa_dcr;
	rc = nfit_blk_init_interleave(mmio, nfit_mem->idt_dcr,
			nfit_mem->memdev_dcr->interleave_ways);
	if (rc) {
2408 2409
		dev_dbg(dev, "%s failed to init dcr interleave\n",
				nvdimm_name(nvdimm));
2410 2411 2412
		return rc;
	}

2413 2414
	rc = acpi_nfit_blk_get_flags(nd_desc, nvdimm, nfit_blk);
	if (rc < 0) {
2415 2416
		dev_dbg(dev, "%s failed get DIMM flags\n",
				nvdimm_name(nvdimm));
2417 2418 2419
		return rc;
	}

2420
	if (nvdimm_has_flush(nfit_blk->nd_region) < 0)
2421 2422
		dev_warn(dev, "unable to guarantee persistence of writes\n");

2423 2424 2425 2426 2427 2428 2429 2430 2431 2432 2433 2434 2435 2436 2437 2438
	if (mmio->line_size == 0)
		return 0;

	if ((u32) nfit_blk->cmd_offset % mmio->line_size
			+ 8 > mmio->line_size) {
		dev_dbg(dev, "cmd_offset crosses interleave boundary\n");
		return -ENXIO;
	} else if ((u32) nfit_blk->stat_offset % mmio->line_size
			+ 8 > mmio->line_size) {
		dev_dbg(dev, "stat_offset crosses interleave boundary\n");
		return -ENXIO;
	}

	return 0;
}

2439
static int ars_get_cap(struct acpi_nfit_desc *acpi_desc,
2440
		struct nd_cmd_ars_cap *cmd, struct nfit_spa *nfit_spa)
2441
{
2442
	struct nvdimm_bus_descriptor *nd_desc = &acpi_desc->nd_desc;
2443
	struct acpi_nfit_system_address *spa = nfit_spa->spa;
2444 2445
	int cmd_rc, rc;

2446 2447
	cmd->address = spa->address;
	cmd->length = spa->length;
2448 2449 2450 2451
	rc = nd_desc->ndctl(nd_desc, NULL, ND_CMD_ARS_CAP, cmd,
			sizeof(*cmd), &cmd_rc);
	if (rc < 0)
		return rc;
2452
	return cmd_rc;
2453 2454
}

2455
static int ars_start(struct acpi_nfit_desc *acpi_desc, struct nfit_spa *nfit_spa)
2456 2457
{
	int rc;
2458 2459 2460 2461
	int cmd_rc;
	struct nd_cmd_ars_start ars_start;
	struct acpi_nfit_system_address *spa = nfit_spa->spa;
	struct nvdimm_bus_descriptor *nd_desc = &acpi_desc->nd_desc;
2462

2463 2464 2465
	memset(&ars_start, 0, sizeof(ars_start));
	ars_start.address = spa->address;
	ars_start.length = spa->length;
2466 2467
	if (test_bit(ARS_SHORT, &nfit_spa->ars_state))
		ars_start.flags = ND_ARS_RETURN_PREV_DATA;
2468 2469 2470 2471 2472 2473
	if (nfit_spa_type(spa) == NFIT_SPA_PM)
		ars_start.type = ND_ARS_PERSISTENT;
	else if (nfit_spa_type(spa) == NFIT_SPA_VOLATILE)
		ars_start.type = ND_ARS_VOLATILE;
	else
		return -ENOTTY;
2474

2475 2476
	rc = nd_desc->ndctl(nd_desc, NULL, ND_CMD_ARS_START, &ars_start,
			sizeof(ars_start), &cmd_rc);
2477

2478 2479 2480
	if (rc < 0)
		return rc;
	return cmd_rc;
2481 2482
}

2483
static int ars_continue(struct acpi_nfit_desc *acpi_desc)
2484
{
2485
	int rc, cmd_rc;
2486 2487 2488 2489 2490 2491 2492 2493
	struct nd_cmd_ars_start ars_start;
	struct nvdimm_bus_descriptor *nd_desc = &acpi_desc->nd_desc;
	struct nd_cmd_ars_status *ars_status = acpi_desc->ars_status;

	memset(&ars_start, 0, sizeof(ars_start));
	ars_start.address = ars_status->restart_address;
	ars_start.length = ars_status->restart_length;
	ars_start.type = ars_status->type;
2494
	ars_start.flags = acpi_desc->ars_start_flags;
2495 2496 2497 2498 2499 2500
	rc = nd_desc->ndctl(nd_desc, NULL, ND_CMD_ARS_START, &ars_start,
			sizeof(ars_start), &cmd_rc);
	if (rc < 0)
		return rc;
	return cmd_rc;
}
2501

2502 2503 2504 2505 2506
static int ars_get_status(struct acpi_nfit_desc *acpi_desc)
{
	struct nvdimm_bus_descriptor *nd_desc = &acpi_desc->nd_desc;
	struct nd_cmd_ars_status *ars_status = acpi_desc->ars_status;
	int rc, cmd_rc;
2507

2508
	rc = nd_desc->ndctl(nd_desc, NULL, ND_CMD_ARS_STATUS, ars_status,
2509
			acpi_desc->max_ars, &cmd_rc);
2510 2511 2512
	if (rc < 0)
		return rc;
	return cmd_rc;
2513 2514
}

2515 2516 2517 2518 2519 2520 2521 2522 2523 2524 2525 2526 2527 2528 2529 2530 2531 2532 2533 2534 2535 2536 2537 2538 2539 2540 2541 2542 2543 2544 2545 2546 2547 2548 2549 2550 2551 2552 2553 2554 2555 2556 2557 2558 2559 2560
static void ars_complete(struct acpi_nfit_desc *acpi_desc,
		struct nfit_spa *nfit_spa)
{
	struct nd_cmd_ars_status *ars_status = acpi_desc->ars_status;
	struct acpi_nfit_system_address *spa = nfit_spa->spa;
	struct nd_region *nd_region = nfit_spa->nd_region;
	struct device *dev;

	if ((ars_status->address >= spa->address && ars_status->address
				< spa->address + spa->length)
			|| (ars_status->address < spa->address)) {
		/*
		 * Assume that if a scrub starts at an offset from the
		 * start of nfit_spa that we are in the continuation
		 * case.
		 *
		 * Otherwise, if the scrub covers the spa range, mark
		 * any pending request complete.
		 */
		if (ars_status->address + ars_status->length
				>= spa->address + spa->length)
				/* complete */;
		else
			return;
	} else
		return;

	if (test_bit(ARS_DONE, &nfit_spa->ars_state))
		return;

	if (!test_and_clear_bit(ARS_REQ, &nfit_spa->ars_state))
		return;

	if (nd_region) {
		dev = nd_region_dev(nd_region);
		nvdimm_region_notify(nd_region, NVDIMM_REVALIDATE_POISON);
	} else
		dev = acpi_desc->dev;

	dev_dbg(dev, "ARS: range %d %s complete\n", spa->range_index,
			test_bit(ARS_SHORT, &nfit_spa->ars_state)
			? "short" : "long");
	clear_bit(ARS_SHORT, &nfit_spa->ars_state);
	set_bit(ARS_DONE, &nfit_spa->ars_state);
}

2561
static int ars_status_process_records(struct acpi_nfit_desc *acpi_desc)
2562
{
2563
	struct nvdimm_bus *nvdimm_bus = acpi_desc->nvdimm_bus;
2564
	struct nd_cmd_ars_status *ars_status = acpi_desc->ars_status;
2565 2566 2567
	int rc;
	u32 i;

2568 2569 2570 2571 2572 2573
	/*
	 * First record starts at 44 byte offset from the start of the
	 * payload.
	 */
	if (ars_status->out_length < 44)
		return 0;
2574
	for (i = 0; i < ars_status->num_records; i++) {
2575 2576 2577 2578
		/* only process full records */
		if (ars_status->out_length
				< 44 + sizeof(struct nd_ars_record) * (i + 1))
			break;
2579
		rc = nvdimm_bus_add_badrange(nvdimm_bus,
2580 2581 2582 2583 2584
				ars_status->records[i].err_address,
				ars_status->records[i].length);
		if (rc)
			return rc;
	}
2585 2586
	if (i < ars_status->num_records)
		dev_warn(acpi_desc->dev, "detected truncated ars results\n");
2587 2588 2589 2590

	return 0;
}

2591 2592 2593 2594 2595 2596 2597 2598 2599 2600 2601 2602 2603 2604 2605 2606 2607 2608 2609 2610 2611 2612 2613 2614 2615 2616 2617 2618 2619 2620 2621 2622 2623
static void acpi_nfit_remove_resource(void *data)
{
	struct resource *res = data;

	remove_resource(res);
}

static int acpi_nfit_insert_resource(struct acpi_nfit_desc *acpi_desc,
		struct nd_region_desc *ndr_desc)
{
	struct resource *res, *nd_res = ndr_desc->res;
	int is_pmem, ret;

	/* No operation if the region is already registered as PMEM */
	is_pmem = region_intersects(nd_res->start, resource_size(nd_res),
				IORESOURCE_MEM, IORES_DESC_PERSISTENT_MEMORY);
	if (is_pmem == REGION_INTERSECTS)
		return 0;

	res = devm_kzalloc(acpi_desc->dev, sizeof(*res), GFP_KERNEL);
	if (!res)
		return -ENOMEM;

	res->name = "Persistent Memory";
	res->start = nd_res->start;
	res->end = nd_res->end;
	res->flags = IORESOURCE_MEM;
	res->desc = IORES_DESC_PERSISTENT_MEMORY;

	ret = insert_resource(&iomem_resource, res);
	if (ret)
		return ret;

2624 2625 2626 2627
	ret = devm_add_action_or_reset(acpi_desc->dev,
					acpi_nfit_remove_resource,
					res);
	if (ret)
2628 2629 2630 2631 2632
		return ret;

	return 0;
}

2633
static int acpi_nfit_init_mapping(struct acpi_nfit_desc *acpi_desc,
2634
		struct nd_mapping_desc *mapping, struct nd_region_desc *ndr_desc,
2635
		struct acpi_nfit_memory_map *memdev,
2636
		struct nfit_spa *nfit_spa)
2637 2638 2639
{
	struct nvdimm *nvdimm = acpi_nfit_dimm_by_handle(acpi_desc,
			memdev->device_handle);
2640
	struct acpi_nfit_system_address *spa = nfit_spa->spa;
2641
	struct nd_blk_region_desc *ndbr_desc;
2642
	struct nfit_mem *nfit_mem;
2643
	int rc;
2644 2645 2646 2647 2648 2649 2650

	if (!nvdimm) {
		dev_err(acpi_desc->dev, "spa%d dimm: %#x not found\n",
				spa->range_index, memdev->device_handle);
		return -ENODEV;
	}

2651
	mapping->nvdimm = nvdimm;
2652 2653 2654
	switch (nfit_spa_type(spa)) {
	case NFIT_SPA_PM:
	case NFIT_SPA_VOLATILE:
2655 2656
		mapping->start = memdev->address;
		mapping->size = memdev->region_size;
2657 2658 2659 2660 2661 2662
		break;
	case NFIT_SPA_DCR:
		nfit_mem = nvdimm_provider_data(nvdimm);
		if (!nfit_mem || !nfit_mem->bdw) {
			dev_dbg(acpi_desc->dev, "spa%d %s missing bdw\n",
					spa->range_index, nvdimm_name(nvdimm));
2663
			break;
2664 2665
		}

2666 2667 2668
		mapping->size = nfit_mem->bdw->capacity;
		mapping->start = nfit_mem->bdw->start_address;
		ndr_desc->num_lanes = nfit_mem->bdw->windows;
2669
		ndr_desc->mapping = mapping;
2670
		ndr_desc->num_mappings = 1;
2671 2672
		ndbr_desc = to_blk_region_desc(ndr_desc);
		ndbr_desc->enable = acpi_nfit_blk_region_enable;
2673
		ndbr_desc->do_io = acpi_desc->blk_do_io;
2674 2675 2676
		rc = acpi_nfit_init_interleave_set(acpi_desc, ndr_desc, spa);
		if (rc)
			return rc;
2677 2678 2679
		nfit_spa->nd_region = nvdimm_blk_region_create(acpi_desc->nvdimm_bus,
				ndr_desc);
		if (!nfit_spa->nd_region)
2680 2681 2682 2683 2684 2685 2686
			return -ENOMEM;
		break;
	}

	return 0;
}

2687 2688 2689 2690 2691 2692 2693 2694
static bool nfit_spa_is_virtual(struct acpi_nfit_system_address *spa)
{
	return (nfit_spa_type(spa) == NFIT_SPA_VDISK ||
		nfit_spa_type(spa) == NFIT_SPA_VCD   ||
		nfit_spa_type(spa) == NFIT_SPA_PDISK ||
		nfit_spa_type(spa) == NFIT_SPA_PCD);
}

2695 2696 2697 2698 2699 2700 2701
static bool nfit_spa_is_volatile(struct acpi_nfit_system_address *spa)
{
	return (nfit_spa_type(spa) == NFIT_SPA_VDISK ||
		nfit_spa_type(spa) == NFIT_SPA_VCD   ||
		nfit_spa_type(spa) == NFIT_SPA_VOLATILE);
}

2702 2703 2704
static int acpi_nfit_register_region(struct acpi_nfit_desc *acpi_desc,
		struct nfit_spa *nfit_spa)
{
2705
	static struct nd_mapping_desc mappings[ND_MAX_MAPPINGS];
2706
	struct acpi_nfit_system_address *spa = nfit_spa->spa;
2707 2708
	struct nd_blk_region_desc ndbr_desc;
	struct nd_region_desc *ndr_desc;
2709 2710 2711
	struct nfit_memdev *nfit_memdev;
	struct nvdimm_bus *nvdimm_bus;
	struct resource res;
2712
	int count = 0, rc;
2713

2714
	if (nfit_spa->nd_region)
V
Vishal Verma 已提交
2715 2716
		return 0;

2717
	if (spa->range_index == 0 && !nfit_spa_is_virtual(spa)) {
2718
		dev_dbg(acpi_desc->dev, "detected invalid spa index\n");
2719 2720 2721 2722
		return 0;
	}

	memset(&res, 0, sizeof(res));
2723
	memset(&mappings, 0, sizeof(mappings));
2724
	memset(&ndbr_desc, 0, sizeof(ndbr_desc));
2725 2726
	res.start = spa->address;
	res.end = res.start + spa->length - 1;
2727 2728 2729 2730
	ndr_desc = &ndbr_desc.ndr_desc;
	ndr_desc->res = &res;
	ndr_desc->provider_data = nfit_spa;
	ndr_desc->attr_groups = acpi_nfit_region_attribute_groups;
2731 2732 2733 2734 2735 2736
	if (spa->flags & ACPI_NFIT_PROXIMITY_VALID)
		ndr_desc->numa_node = acpi_map_pxm_to_online_node(
						spa->proximity_domain);
	else
		ndr_desc->numa_node = NUMA_NO_NODE;

2737 2738 2739 2740 2741 2742
	/*
	 * Persistence domain bits are hierarchical, if
	 * ACPI_NFIT_CAPABILITY_CACHE_FLUSH is set then
	 * ACPI_NFIT_CAPABILITY_MEM_FLUSH is implied.
	 */
	if (acpi_desc->platform_cap & ACPI_NFIT_CAPABILITY_CACHE_FLUSH)
2743
		set_bit(ND_REGION_PERSIST_CACHE, &ndr_desc->flags);
2744
	else if (acpi_desc->platform_cap & ACPI_NFIT_CAPABILITY_MEM_FLUSH)
2745 2746
		set_bit(ND_REGION_PERSIST_MEMCTRL, &ndr_desc->flags);

2747 2748
	list_for_each_entry(nfit_memdev, &acpi_desc->memdevs, list) {
		struct acpi_nfit_memory_map *memdev = nfit_memdev->memdev;
2749
		struct nd_mapping_desc *mapping;
2750 2751 2752 2753 2754 2755 2756 2757

		if (memdev->range_index != spa->range_index)
			continue;
		if (count >= ND_MAX_MAPPINGS) {
			dev_err(acpi_desc->dev, "spa%d exceeds max mappings %d\n",
					spa->range_index, ND_MAX_MAPPINGS);
			return -ENXIO;
		}
2758 2759
		mapping = &mappings[count++];
		rc = acpi_nfit_init_mapping(acpi_desc, mapping, ndr_desc,
2760
				memdev, nfit_spa);
2761
		if (rc)
2762
			goto out;
2763 2764
	}

2765
	ndr_desc->mapping = mappings;
2766 2767
	ndr_desc->num_mappings = count;
	rc = acpi_nfit_init_interleave_set(acpi_desc, ndr_desc, spa);
2768
	if (rc)
2769
		goto out;
2770

2771 2772
	nvdimm_bus = acpi_desc->nvdimm_bus;
	if (nfit_spa_type(spa) == NFIT_SPA_PM) {
2773
		rc = acpi_nfit_insert_resource(acpi_desc, ndr_desc);
2774
		if (rc) {
2775 2776 2777
			dev_warn(acpi_desc->dev,
				"failed to insert pmem resource to iomem: %d\n",
				rc);
2778
			goto out;
2779
		}
2780

2781 2782 2783 2784
		nfit_spa->nd_region = nvdimm_pmem_region_create(nvdimm_bus,
				ndr_desc);
		if (!nfit_spa->nd_region)
			rc = -ENOMEM;
2785
	} else if (nfit_spa_is_volatile(spa)) {
2786 2787 2788 2789
		nfit_spa->nd_region = nvdimm_volatile_region_create(nvdimm_bus,
				ndr_desc);
		if (!nfit_spa->nd_region)
			rc = -ENOMEM;
2790 2791 2792 2793 2794
	} else if (nfit_spa_is_virtual(spa)) {
		nfit_spa->nd_region = nvdimm_pmem_region_create(nvdimm_bus,
				ndr_desc);
		if (!nfit_spa->nd_region)
			rc = -ENOMEM;
2795
	}
V
Vishal Verma 已提交
2796

2797 2798 2799 2800 2801 2802 2803
 out:
	if (rc)
		dev_err(acpi_desc->dev, "failed to register spa range %d\n",
				nfit_spa->spa->range_index);
	return rc;
}

2804
static int ars_status_alloc(struct acpi_nfit_desc *acpi_desc)
2805 2806 2807 2808
{
	struct device *dev = acpi_desc->dev;
	struct nd_cmd_ars_status *ars_status;

2809 2810
	if (acpi_desc->ars_status) {
		memset(acpi_desc->ars_status, 0, acpi_desc->max_ars);
2811 2812 2813
		return 0;
	}

2814
	ars_status = devm_kzalloc(dev, acpi_desc->max_ars, GFP_KERNEL);
2815 2816 2817
	if (!ars_status)
		return -ENOMEM;
	acpi_desc->ars_status = ars_status;
2818 2819 2820
	return 0;
}

2821
static int acpi_nfit_query_poison(struct acpi_nfit_desc *acpi_desc)
2822 2823 2824
{
	int rc;

2825
	if (ars_status_alloc(acpi_desc))
2826 2827 2828
		return -ENOMEM;

	rc = ars_get_status(acpi_desc);
2829

2830 2831 2832
	if (rc < 0 && rc != -ENOSPC)
		return rc;

2833
	if (ars_status_process_records(acpi_desc))
2834 2835 2836 2837 2838
		return -ENOMEM;

	return 0;
}

2839 2840
static int ars_register(struct acpi_nfit_desc *acpi_desc, struct nfit_spa *nfit_spa,
		int *query_rc)
2841
{
2842
	int rc = *query_rc;
2843

2844 2845
	if (no_init_ars)
		return acpi_nfit_register_region(acpi_desc, nfit_spa);
2846

2847 2848
	set_bit(ARS_REQ, &nfit_spa->ars_state);
	set_bit(ARS_SHORT, &nfit_spa->ars_state);
2849

2850 2851 2852 2853
	switch (rc) {
	case 0:
	case -EAGAIN:
		rc = ars_start(acpi_desc, nfit_spa);
2854
		if (rc == -EBUSY) {
2855
			*query_rc = rc;
2856
			break;
2857 2858
		} else if (rc == 0) {
			rc = acpi_nfit_query_poison(acpi_desc);
2859
		} else {
2860 2861
			set_bit(ARS_FAILED, &nfit_spa->ars_state);
			break;
2862
		}
2863 2864 2865 2866
		if (rc == -EAGAIN)
			clear_bit(ARS_SHORT, &nfit_spa->ars_state);
		else if (rc == 0)
			ars_complete(acpi_desc, nfit_spa);
2867
		break;
2868 2869
	case -EBUSY:
	case -ENOSPC:
2870
		break;
2871 2872 2873 2874 2875 2876 2877 2878 2879
	default:
		set_bit(ARS_FAILED, &nfit_spa->ars_state);
		break;
	}

	if (test_and_clear_bit(ARS_DONE, &nfit_spa->ars_state))
		set_bit(ARS_REQ, &nfit_spa->ars_state);

	return acpi_nfit_register_region(acpi_desc, nfit_spa);
2880 2881
}

2882
static void ars_complete_all(struct acpi_nfit_desc *acpi_desc)
2883 2884
{
	struct nfit_spa *nfit_spa;
2885

2886
	list_for_each_entry(nfit_spa, &acpi_desc->spas, list) {
2887
		if (test_bit(ARS_FAILED, &nfit_spa->ars_state))
2888
			continue;
2889 2890 2891
		ars_complete(acpi_desc, nfit_spa);
	}
}
2892

2893 2894 2895 2896 2897 2898
static unsigned int __acpi_nfit_scrub(struct acpi_nfit_desc *acpi_desc,
		int query_rc)
{
	unsigned int tmo = acpi_desc->scrub_tmo;
	struct device *dev = acpi_desc->dev;
	struct nfit_spa *nfit_spa;
2899

2900 2901
	if (acpi_desc->cancel)
		return 0;
2902

2903 2904 2905 2906 2907 2908 2909 2910 2911 2912 2913
	if (query_rc == -EBUSY) {
		dev_dbg(dev, "ARS: ARS busy\n");
		return min(30U * 60U, tmo * 2);
	}
	if (query_rc == -ENOSPC) {
		dev_dbg(dev, "ARS: ARS continue\n");
		ars_continue(acpi_desc);
		return 1;
	}
	if (query_rc && query_rc != -EAGAIN) {
		unsigned long long addr, end;
2914

2915 2916 2917 2918
		addr = acpi_desc->ars_status->address;
		end = addr + acpi_desc->ars_status->length;
		dev_dbg(dev, "ARS: %llx-%llx failed (%d)\n", addr, end,
				query_rc);
2919
	}
2920

2921
	ars_complete_all(acpi_desc);
2922
	list_for_each_entry(nfit_spa, &acpi_desc->spas, list) {
2923 2924 2925 2926 2927 2928 2929 2930 2931 2932 2933 2934 2935 2936
		if (test_bit(ARS_FAILED, &nfit_spa->ars_state))
			continue;
		if (test_bit(ARS_REQ, &nfit_spa->ars_state)) {
			int rc = ars_start(acpi_desc, nfit_spa);

			clear_bit(ARS_DONE, &nfit_spa->ars_state);
			dev = nd_region_dev(nfit_spa->nd_region);
			dev_dbg(dev, "ARS: range %d ARS start (%d)\n",
					nfit_spa->spa->range_index, rc);
			if (rc == 0 || rc == -EBUSY)
				return 1;
			dev_err(dev, "ARS: range %d ARS failed (%d)\n",
					nfit_spa->spa->range_index, rc);
			set_bit(ARS_FAILED, &nfit_spa->ars_state);
2937
		}
2938
	}
2939 2940
	return 0;
}
2941

2942 2943 2944 2945 2946 2947 2948 2949 2950 2951 2952 2953 2954 2955 2956 2957 2958 2959 2960
static void acpi_nfit_scrub(struct work_struct *work)
{
	struct acpi_nfit_desc *acpi_desc;
	unsigned int tmo;
	int query_rc;

	acpi_desc = container_of(work, typeof(*acpi_desc), dwork.work);
	mutex_lock(&acpi_desc->init_mutex);
	query_rc = acpi_nfit_query_poison(acpi_desc);
	tmo = __acpi_nfit_scrub(acpi_desc, query_rc);
	if (tmo) {
		queue_delayed_work(nfit_wq, &acpi_desc->dwork, tmo * HZ);
		acpi_desc->scrub_tmo = tmo;
	} else {
		acpi_desc->scrub_count++;
		if (acpi_desc->scrub_count_state)
			sysfs_notify_dirent(acpi_desc->scrub_count_state);
	}
	memset(acpi_desc->ars_status, 0, acpi_desc->max_ars);
2961 2962 2963
	mutex_unlock(&acpi_desc->init_mutex);
}

2964 2965 2966 2967 2968 2969 2970 2971 2972 2973 2974 2975 2976 2977 2978 2979 2980 2981 2982 2983 2984 2985
static void acpi_nfit_init_ars(struct acpi_nfit_desc *acpi_desc,
		struct nfit_spa *nfit_spa)
{
	int type = nfit_spa_type(nfit_spa->spa);
	struct nd_cmd_ars_cap ars_cap;
	int rc;

	memset(&ars_cap, 0, sizeof(ars_cap));
	rc = ars_get_cap(acpi_desc, &ars_cap, nfit_spa);
	if (rc < 0)
		return;
	/* check that the supported scrub types match the spa type */
	if (type == NFIT_SPA_VOLATILE && ((ars_cap.status >> 16)
				& ND_ARS_VOLATILE) == 0)
		return;
	if (type == NFIT_SPA_PM && ((ars_cap.status >> 16)
				& ND_ARS_PERSISTENT) == 0)
		return;

	nfit_spa->max_ars = ars_cap.max_ars_out;
	nfit_spa->clear_err_unit = ars_cap.clear_err_unit;
	acpi_desc->max_ars = max(nfit_spa->max_ars, acpi_desc->max_ars);
2986 2987
	clear_bit(ARS_FAILED, &nfit_spa->ars_state);
	set_bit(ARS_REQ, &nfit_spa->ars_state);
2988 2989
}

2990 2991 2992
static int acpi_nfit_register_regions(struct acpi_nfit_desc *acpi_desc)
{
	struct nfit_spa *nfit_spa;
2993
	int rc, query_rc;
2994

2995
	list_for_each_entry(nfit_spa, &acpi_desc->spas, list) {
2996 2997 2998 2999
		set_bit(ARS_FAILED, &nfit_spa->ars_state);
		switch (nfit_spa_type(nfit_spa->spa)) {
		case NFIT_SPA_VOLATILE:
		case NFIT_SPA_PM:
3000
			acpi_nfit_init_ars(acpi_desc, nfit_spa);
3001
			break;
3002
		}
3003
	}
3004

3005 3006 3007 3008 3009 3010 3011
	/*
	 * Reap any results that might be pending before starting new
	 * short requests.
	 */
	query_rc = acpi_nfit_query_poison(acpi_desc);
	if (query_rc == 0)
		ars_complete_all(acpi_desc);
3012 3013

	list_for_each_entry(nfit_spa, &acpi_desc->spas, list)
3014 3015 3016 3017 3018 3019 3020 3021 3022 3023 3024 3025 3026 3027 3028 3029 3030
		switch (nfit_spa_type(nfit_spa->spa)) {
		case NFIT_SPA_VOLATILE:
		case NFIT_SPA_PM:
			/* register regions and kick off initial ARS run */
			rc = ars_register(acpi_desc, nfit_spa, &query_rc);
			if (rc)
				return rc;
			break;
		case NFIT_SPA_BDW:
			/* nothing to register */
			break;
		case NFIT_SPA_DCR:
		case NFIT_SPA_VDISK:
		case NFIT_SPA_VCD:
		case NFIT_SPA_PDISK:
		case NFIT_SPA_PCD:
			/* register known regions that don't support ARS */
3031 3032 3033
			rc = acpi_nfit_register_region(acpi_desc, nfit_spa);
			if (rc)
				return rc;
3034 3035 3036 3037
			break;
		default:
			/* don't register unknown regions */
			break;
3038 3039
		}

3040
	queue_delayed_work(nfit_wq, &acpi_desc->dwork, 0);
3041 3042 3043
	return 0;
}

V
Vishal Verma 已提交
3044 3045 3046 3047 3048 3049 3050 3051 3052 3053 3054 3055 3056 3057 3058 3059 3060
static int acpi_nfit_check_deletions(struct acpi_nfit_desc *acpi_desc,
		struct nfit_table_prev *prev)
{
	struct device *dev = acpi_desc->dev;

	if (!list_empty(&prev->spas) ||
			!list_empty(&prev->memdevs) ||
			!list_empty(&prev->dcrs) ||
			!list_empty(&prev->bdws) ||
			!list_empty(&prev->idts) ||
			!list_empty(&prev->flushes)) {
		dev_err(dev, "new nfit deletes entries (unsupported)\n");
		return -ENXIO;
	}
	return 0;
}

3061 3062 3063 3064 3065 3066 3067 3068 3069 3070 3071 3072 3073 3074 3075 3076 3077 3078 3079 3080 3081 3082 3083 3084 3085
static int acpi_nfit_desc_init_scrub_attr(struct acpi_nfit_desc *acpi_desc)
{
	struct device *dev = acpi_desc->dev;
	struct kernfs_node *nfit;
	struct device *bus_dev;

	if (!ars_supported(acpi_desc->nvdimm_bus))
		return 0;

	bus_dev = to_nvdimm_bus_dev(acpi_desc->nvdimm_bus);
	nfit = sysfs_get_dirent(bus_dev->kobj.sd, "nfit");
	if (!nfit) {
		dev_err(dev, "sysfs_get_dirent 'nfit' failed\n");
		return -ENODEV;
	}
	acpi_desc->scrub_count_state = sysfs_get_dirent(nfit, "scrub");
	sysfs_put(nfit);
	if (!acpi_desc->scrub_count_state) {
		dev_err(dev, "sysfs_get_dirent 'scrub' failed\n");
		return -ENODEV;
	}

	return 0;
}

3086
static void acpi_nfit_unregister(void *data)
3087 3088 3089 3090 3091 3092
{
	struct acpi_nfit_desc *acpi_desc = data;

	nvdimm_bus_unregister(acpi_desc->nvdimm_bus);
}

3093
int acpi_nfit_init(struct acpi_nfit_desc *acpi_desc, void *data, acpi_size sz)
3094 3095
{
	struct device *dev = acpi_desc->dev;
V
Vishal Verma 已提交
3096
	struct nfit_table_prev prev;
3097
	const void *end;
3098
	int rc;
3099

3100
	if (!acpi_desc->nvdimm_bus) {
3101 3102
		acpi_nfit_init_dsms(acpi_desc);

3103 3104 3105 3106
		acpi_desc->nvdimm_bus = nvdimm_bus_register(dev,
				&acpi_desc->nd_desc);
		if (!acpi_desc->nvdimm_bus)
			return -ENOMEM;
3107

3108
		rc = devm_add_action_or_reset(dev, acpi_nfit_unregister,
3109 3110 3111
				acpi_desc);
		if (rc)
			return rc;
3112 3113 3114 3115

		rc = acpi_nfit_desc_init_scrub_attr(acpi_desc);
		if (rc)
			return rc;
3116 3117 3118 3119 3120

		/* register this acpi_desc for mce notifications */
		mutex_lock(&acpi_desc_lock);
		list_add_tail(&acpi_desc->list, &acpi_descs);
		mutex_unlock(&acpi_desc_lock);
3121 3122
	}

V
Vishal Verma 已提交
3123 3124 3125 3126 3127 3128 3129 3130 3131 3132 3133 3134 3135 3136 3137 3138 3139 3140 3141 3142 3143
	mutex_lock(&acpi_desc->init_mutex);

	INIT_LIST_HEAD(&prev.spas);
	INIT_LIST_HEAD(&prev.memdevs);
	INIT_LIST_HEAD(&prev.dcrs);
	INIT_LIST_HEAD(&prev.bdws);
	INIT_LIST_HEAD(&prev.idts);
	INIT_LIST_HEAD(&prev.flushes);

	list_cut_position(&prev.spas, &acpi_desc->spas,
				acpi_desc->spas.prev);
	list_cut_position(&prev.memdevs, &acpi_desc->memdevs,
				acpi_desc->memdevs.prev);
	list_cut_position(&prev.dcrs, &acpi_desc->dcrs,
				acpi_desc->dcrs.prev);
	list_cut_position(&prev.bdws, &acpi_desc->bdws,
				acpi_desc->bdws.prev);
	list_cut_position(&prev.idts, &acpi_desc->idts,
				acpi_desc->idts.prev);
	list_cut_position(&prev.flushes, &acpi_desc->flushes,
				acpi_desc->flushes.prev);
3144 3145 3146

	end = data + sz;
	while (!IS_ERR_OR_NULL(data))
V
Vishal Verma 已提交
3147
		data = add_table(acpi_desc, &prev, data, end);
3148 3149

	if (IS_ERR(data)) {
3150
		dev_dbg(dev, "nfit table parsing error: %ld\n",	PTR_ERR(data));
V
Vishal Verma 已提交
3151 3152
		rc = PTR_ERR(data);
		goto out_unlock;
3153 3154
	}

V
Vishal Verma 已提交
3155 3156 3157 3158
	rc = acpi_nfit_check_deletions(acpi_desc, &prev);
	if (rc)
		goto out_unlock;

3159 3160
	rc = nfit_mem_init(acpi_desc);
	if (rc)
V
Vishal Verma 已提交
3161
		goto out_unlock;
3162

3163 3164
	rc = acpi_nfit_register_dimms(acpi_desc);
	if (rc)
V
Vishal Verma 已提交
3165 3166 3167
		goto out_unlock;

	rc = acpi_nfit_register_regions(acpi_desc);
3168

V
Vishal Verma 已提交
3169 3170 3171
 out_unlock:
	mutex_unlock(&acpi_desc->init_mutex);
	return rc;
3172
}
3173
EXPORT_SYMBOL_GPL(acpi_nfit_init);
3174

3175 3176 3177 3178 3179
static int acpi_nfit_flush_probe(struct nvdimm_bus_descriptor *nd_desc)
{
	struct acpi_nfit_desc *acpi_desc = to_acpi_nfit_desc(nd_desc);
	struct device *dev = acpi_desc->dev;

3180
	/* Bounce the device lock to flush acpi_nfit_add / acpi_nfit_notify */
3181 3182 3183
	device_lock(dev);
	device_unlock(dev);

3184
	/* Bounce the init_mutex to complete initial registration */
3185
	mutex_lock(&acpi_desc->init_mutex);
3186
	mutex_unlock(&acpi_desc->init_mutex);
3187

3188
	return 0;
3189 3190
}

3191 3192 3193 3194 3195 3196 3197 3198 3199 3200 3201 3202 3203 3204 3205 3206
static int acpi_nfit_clear_to_send(struct nvdimm_bus_descriptor *nd_desc,
		struct nvdimm *nvdimm, unsigned int cmd)
{
	struct acpi_nfit_desc *acpi_desc = to_acpi_nfit_desc(nd_desc);

	if (nvdimm)
		return 0;
	if (cmd != ND_CMD_ARS_START)
		return 0;

	/*
	 * The kernel and userspace may race to initiate a scrub, but
	 * the scrub thread is prepared to lose that initial race.  It
	 * just needs guarantees that any ars it initiates are not
	 * interrupted by any intervening start reqeusts from userspace.
	 */
3207
	if (work_busy(&acpi_desc->dwork.work))
3208 3209 3210 3211 3212
		return -EBUSY;

	return 0;
}

3213
int acpi_nfit_ars_rescan(struct acpi_nfit_desc *acpi_desc, unsigned long flags)
3214 3215
{
	struct device *dev = acpi_desc->dev;
3216
	int scheduled = 0, busy = 0;
3217 3218
	struct nfit_spa *nfit_spa;

3219 3220 3221
	mutex_lock(&acpi_desc->init_mutex);
	if (acpi_desc->cancel) {
		mutex_unlock(&acpi_desc->init_mutex);
3222
		return 0;
3223
	}
3224 3225

	list_for_each_entry(nfit_spa, &acpi_desc->spas, list) {
3226
		int type = nfit_spa_type(nfit_spa->spa);
3227

3228 3229 3230
		if (type != NFIT_SPA_PM && type != NFIT_SPA_VOLATILE)
			continue;
		if (test_bit(ARS_FAILED, &nfit_spa->ars_state))
3231 3232
			continue;

3233 3234 3235 3236 3237 3238 3239 3240 3241 3242 3243
		if (test_and_set_bit(ARS_REQ, &nfit_spa->ars_state))
			busy++;
		else {
			if (test_bit(ARS_SHORT, &flags))
				set_bit(ARS_SHORT, &nfit_spa->ars_state);
			scheduled++;
		}
	}
	if (scheduled) {
		queue_delayed_work(nfit_wq, &acpi_desc->dwork, 0);
		dev_dbg(dev, "ars_scan triggered\n");
3244 3245 3246
	}
	mutex_unlock(&acpi_desc->init_mutex);

3247 3248 3249 3250 3251
	if (scheduled)
		return 0;
	if (busy)
		return -EBUSY;
	return -ENOTTY;
3252 3253
}

3254
void acpi_nfit_desc_init(struct acpi_nfit_desc *acpi_desc, struct device *dev)
3255 3256 3257 3258 3259
{
	struct nvdimm_bus_descriptor *nd_desc;

	dev_set_drvdata(dev, acpi_desc);
	acpi_desc->dev = dev;
3260
	acpi_desc->blk_do_io = acpi_nfit_blk_region_do_io;
3261 3262
	nd_desc = &acpi_desc->nd_desc;
	nd_desc->provider_name = "ACPI.NFIT";
3263
	nd_desc->module = THIS_MODULE;
3264
	nd_desc->ndctl = acpi_nfit_ctl;
3265
	nd_desc->flush_probe = acpi_nfit_flush_probe;
3266
	nd_desc->clear_to_send = acpi_nfit_clear_to_send;
3267
	nd_desc->attr_groups = acpi_nfit_attribute_groups;
3268

V
Vishal Verma 已提交
3269 3270 3271 3272 3273 3274 3275
	INIT_LIST_HEAD(&acpi_desc->spas);
	INIT_LIST_HEAD(&acpi_desc->dcrs);
	INIT_LIST_HEAD(&acpi_desc->bdws);
	INIT_LIST_HEAD(&acpi_desc->idts);
	INIT_LIST_HEAD(&acpi_desc->flushes);
	INIT_LIST_HEAD(&acpi_desc->memdevs);
	INIT_LIST_HEAD(&acpi_desc->dimms);
3276
	INIT_LIST_HEAD(&acpi_desc->list);
V
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	mutex_init(&acpi_desc->init_mutex);
3278 3279
	acpi_desc->scrub_tmo = 1;
	INIT_DELAYED_WORK(&acpi_desc->dwork, acpi_nfit_scrub);
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}
3281
EXPORT_SYMBOL_GPL(acpi_nfit_desc_init);
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3283 3284 3285 3286 3287
static void acpi_nfit_put_table(void *table)
{
	acpi_put_table(table);
}

3288 3289 3290 3291 3292 3293 3294 3295 3296 3297 3298 3299 3300 3301 3302
void acpi_nfit_shutdown(void *data)
{
	struct acpi_nfit_desc *acpi_desc = data;
	struct device *bus_dev = to_nvdimm_bus_dev(acpi_desc->nvdimm_bus);

	/*
	 * Destruct under acpi_desc_lock so that nfit_handle_mce does not
	 * race teardown
	 */
	mutex_lock(&acpi_desc_lock);
	list_del(&acpi_desc->list);
	mutex_unlock(&acpi_desc_lock);

	mutex_lock(&acpi_desc->init_mutex);
	acpi_desc->cancel = 1;
3303
	cancel_delayed_work_sync(&acpi_desc->dwork);
3304 3305 3306 3307 3308 3309 3310 3311 3312 3313 3314 3315 3316 3317
	mutex_unlock(&acpi_desc->init_mutex);

	/*
	 * Bounce the nvdimm bus lock to make sure any in-flight
	 * acpi_nfit_ars_rescan() submissions have had a chance to
	 * either submit or see ->cancel set.
	 */
	device_lock(bus_dev);
	device_unlock(bus_dev);

	flush_workqueue(nfit_wq);
}
EXPORT_SYMBOL_GPL(acpi_nfit_shutdown);

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static int acpi_nfit_add(struct acpi_device *adev)
{
	struct acpi_buffer buf = { ACPI_ALLOCATE_BUFFER, NULL };
	struct acpi_nfit_desc *acpi_desc;
	struct device *dev = &adev->dev;
	struct acpi_table_header *tbl;
	acpi_status status = AE_OK;
	acpi_size sz;
3326
	int rc = 0;
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3328
	status = acpi_get_table(ACPI_SIG_NFIT, 0, &tbl);
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	if (ACPI_FAILURE(status)) {
		/* This is ok, we could have an nvdimm hotplugged later */
		dev_dbg(dev, "failed to find NFIT at startup\n");
		return 0;
	}
3334 3335 3336 3337

	rc = devm_add_action_or_reset(dev, acpi_nfit_put_table, tbl);
	if (rc)
		return rc;
3338
	sz = tbl->length;
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3340 3341 3342 3343
	acpi_desc = devm_kzalloc(dev, sizeof(*acpi_desc), GFP_KERNEL);
	if (!acpi_desc)
		return -ENOMEM;
	acpi_nfit_desc_init(acpi_desc, &adev->dev);
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3345
	/* Save the acpi header for exporting the revision via sysfs */
3346
	acpi_desc->acpi_header = *tbl;
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	/* Evaluate _FIT and override with that if present */
	status = acpi_evaluate_object(adev->handle, "_FIT", NULL, &buf);
	if (ACPI_SUCCESS(status) && buf.length > 0) {
3351 3352 3353 3354 3355 3356
		union acpi_object *obj = buf.pointer;

		if (obj->type == ACPI_TYPE_BUFFER)
			rc = acpi_nfit_init(acpi_desc, obj->buffer.pointer,
					obj->buffer.length);
		else
3357 3358
			dev_dbg(dev, "invalid type %d, ignoring _FIT\n",
				(int) obj->type);
3359 3360
		kfree(buf.pointer);
	} else
3361 3362 3363 3364
		/* skip over the lead-in header table */
		rc = acpi_nfit_init(acpi_desc, (void *) tbl
				+ sizeof(struct acpi_table_nfit),
				sz - sizeof(struct acpi_table_nfit));
3365 3366 3367 3368

	if (rc)
		return rc;
	return devm_add_action_or_reset(dev, acpi_nfit_shutdown, acpi_desc);
3369 3370 3371 3372
}

static int acpi_nfit_remove(struct acpi_device *adev)
{
3373
	/* see acpi_nfit_unregister */
3374 3375 3376
	return 0;
}

3377
static void acpi_nfit_update_notify(struct device *dev, acpi_handle handle)
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{
3379
	struct acpi_nfit_desc *acpi_desc = dev_get_drvdata(dev);
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	struct acpi_buffer buf = { ACPI_ALLOCATE_BUFFER, NULL };
3381
	union acpi_object *obj;
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	acpi_status status;
	int ret;

	if (!dev->driver) {
		/* dev->driver may be null if we're being removed */
3387
		dev_dbg(dev, "no driver found for dev\n");
3388
		return;
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3389 3390 3391
	}

	if (!acpi_desc) {
3392 3393
		acpi_desc = devm_kzalloc(dev, sizeof(*acpi_desc), GFP_KERNEL);
		if (!acpi_desc)
3394 3395
			return;
		acpi_nfit_desc_init(acpi_desc, dev);
3396 3397 3398 3399 3400 3401
	} else {
		/*
		 * Finish previous registration before considering new
		 * regions.
		 */
		flush_workqueue(nfit_wq);
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	}

	/* Evaluate _FIT */
3405
	status = acpi_evaluate_object(handle, "_FIT", NULL, &buf);
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	if (ACPI_FAILURE(status)) {
		dev_err(dev, "failed to evaluate _FIT\n");
3408
		return;
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3409 3410
	}

3411 3412
	obj = buf.pointer;
	if (obj->type == ACPI_TYPE_BUFFER) {
3413 3414
		ret = acpi_nfit_init(acpi_desc, obj->buffer.pointer,
				obj->buffer.length);
3415
		if (ret)
3416
			dev_err(dev, "failed to merge updated NFIT\n");
3417
	} else
3418
		dev_err(dev, "Invalid _FIT\n");
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	kfree(buf.pointer);
3420
}
3421 3422 3423 3424

static void acpi_nfit_uc_error_notify(struct device *dev, acpi_handle handle)
{
	struct acpi_nfit_desc *acpi_desc = dev_get_drvdata(dev);
3425 3426
	unsigned long flags = (acpi_desc->scrub_mode == HW_ERROR_SCRUB_ON) ?
			0 : 1 << ARS_SHORT;
3427

3428
	acpi_nfit_ars_rescan(acpi_desc, flags);
3429 3430 3431 3432
}

void __acpi_nfit_notify(struct device *dev, acpi_handle handle, u32 event)
{
3433
	dev_dbg(dev, "event: 0x%x\n", event);
3434 3435 3436 3437 3438 3439 3440 3441 3442 3443

	switch (event) {
	case NFIT_NOTIFY_UPDATE:
		return acpi_nfit_update_notify(dev, handle);
	case NFIT_NOTIFY_UC_MEMORY_ERROR:
		return acpi_nfit_uc_error_notify(dev, handle);
	default:
		return;
	}
}
3444
EXPORT_SYMBOL_GPL(__acpi_nfit_notify);
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3446 3447 3448 3449 3450
static void acpi_nfit_notify(struct acpi_device *adev, u32 event)
{
	device_lock(&adev->dev);
	__acpi_nfit_notify(&adev->dev, adev->handle, event);
	device_unlock(&adev->dev);
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3451 3452
}

3453 3454 3455 3456 3457 3458 3459 3460 3461 3462 3463 3464
static const struct acpi_device_id acpi_nfit_ids[] = {
	{ "ACPI0012", 0 },
	{ "", 0 },
};
MODULE_DEVICE_TABLE(acpi, acpi_nfit_ids);

static struct acpi_driver acpi_nfit_driver = {
	.name = KBUILD_MODNAME,
	.ids = acpi_nfit_ids,
	.ops = {
		.add = acpi_nfit_add,
		.remove = acpi_nfit_remove,
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		.notify = acpi_nfit_notify,
3466 3467 3468 3469 3470
	},
};

static __init int nfit_init(void)
{
3471 3472
	int ret;

3473 3474 3475 3476 3477 3478 3479
	BUILD_BUG_ON(sizeof(struct acpi_table_nfit) != 40);
	BUILD_BUG_ON(sizeof(struct acpi_nfit_system_address) != 56);
	BUILD_BUG_ON(sizeof(struct acpi_nfit_memory_map) != 48);
	BUILD_BUG_ON(sizeof(struct acpi_nfit_interleave) != 20);
	BUILD_BUG_ON(sizeof(struct acpi_nfit_smbios) != 9);
	BUILD_BUG_ON(sizeof(struct acpi_nfit_control_region) != 80);
	BUILD_BUG_ON(sizeof(struct acpi_nfit_data_region) != 40);
3480
	BUILD_BUG_ON(sizeof(struct acpi_nfit_capabilities) != 16);
3481

3482 3483 3484 3485 3486 3487 3488 3489 3490 3491 3492 3493 3494
	guid_parse(UUID_VOLATILE_MEMORY, &nfit_uuid[NFIT_SPA_VOLATILE]);
	guid_parse(UUID_PERSISTENT_MEMORY, &nfit_uuid[NFIT_SPA_PM]);
	guid_parse(UUID_CONTROL_REGION, &nfit_uuid[NFIT_SPA_DCR]);
	guid_parse(UUID_DATA_REGION, &nfit_uuid[NFIT_SPA_BDW]);
	guid_parse(UUID_VOLATILE_VIRTUAL_DISK, &nfit_uuid[NFIT_SPA_VDISK]);
	guid_parse(UUID_VOLATILE_VIRTUAL_CD, &nfit_uuid[NFIT_SPA_VCD]);
	guid_parse(UUID_PERSISTENT_VIRTUAL_DISK, &nfit_uuid[NFIT_SPA_PDISK]);
	guid_parse(UUID_PERSISTENT_VIRTUAL_CD, &nfit_uuid[NFIT_SPA_PCD]);
	guid_parse(UUID_NFIT_BUS, &nfit_uuid[NFIT_DEV_BUS]);
	guid_parse(UUID_NFIT_DIMM, &nfit_uuid[NFIT_DEV_DIMM]);
	guid_parse(UUID_NFIT_DIMM_N_HPE1, &nfit_uuid[NFIT_DEV_DIMM_N_HPE1]);
	guid_parse(UUID_NFIT_DIMM_N_HPE2, &nfit_uuid[NFIT_DEV_DIMM_N_HPE2]);
	guid_parse(UUID_NFIT_DIMM_N_MSFT, &nfit_uuid[NFIT_DEV_DIMM_N_MSFT]);
3495

3496 3497 3498 3499
	nfit_wq = create_singlethread_workqueue("nfit");
	if (!nfit_wq)
		return -ENOMEM;

3500
	nfit_mce_register();
3501 3502 3503 3504 3505 3506 3507
	ret = acpi_bus_register_driver(&acpi_nfit_driver);
	if (ret) {
		nfit_mce_unregister();
		destroy_workqueue(nfit_wq);
	}

	return ret;
3508

3509 3510 3511 3512
}

static __exit void nfit_exit(void)
{
3513
	nfit_mce_unregister();
3514
	acpi_bus_unregister_driver(&acpi_nfit_driver);
3515
	destroy_workqueue(nfit_wq);
3516
	WARN_ON(!list_empty(&acpi_descs));
3517 3518 3519 3520 3521 3522
}

module_init(nfit_init);
module_exit(nfit_exit);
MODULE_LICENSE("GPL v2");
MODULE_AUTHOR("Intel Corporation");