mirror of
https://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git
synced 2026-09-18 22:59:29 +02:00
There is no atomic mechanism to offline and remove an entire
multi-block DAX kmem device. This is presently done in two steps:
1. offline all
2. remove all
This creates a race condition where another entity operates directly on
the memory blocks and can cause hot-unplug to fail / unbind to deadlock.
Add a new 'state' sysfs attribute that enables an atomic whole-device
hotplug operation across its entire memory region.
daxX.Y/state mirrors the per-block memoryX/state ABI:
- [offline, online, online_kernel, online_movable]
- "unplugged" - is added specifically for dax0.0/state
The valid writable states include:
- "unplugged": memory blocks are not present
- "online": memory is online, zone chosen by the kernel
- "online_kernel": memory is online in ZONE_NORMAL
- "online_movable": memory is online in ZONE_MOVABLE
Valid transitions:
- unplugged -> online[_kernel|_movable]
- online[_kernel|_movable] -> unplugged
- offline -> unplugged
A device can only be onlined from "unplugged", so it must be returned
there before being onlined into a different state.
For backwards compatibility the memory blocks are always created at probe
- existing tools expect them to be present after kmem binds.
"offline" is therefore a reportable state but is not writable: it only
arises from the legacy auto_online_blocks=offline policy. Onlining such a
device through this attribute requires unplugging it first in an effort to
get drivers creating DAX devices to set a default.
Unplug is atomic across the whole device: dax_kmem_do_hotremove() collects
every added range and offlines/removes them in one operation. Either the
operation succeeds or is entirely rolled back.
Unbind Note:
An offline dax device memory is removed on unbind as before.
If online at unbind, the resources are leaked (as before), but now
we prevent deadlock if a memory region is impossible to hotremove.
Link: https://lore.kernel.org/20260712154505.3564379-10-gourry@gourry.net
Signed-off-by: Gregory Price <gourry@gourry.net>
Suggested-by: Hannes Reinecke <hare@suse.de>
Suggested-by: David Hildenbrand <david@kernel.org>
Reviewed-by: Dan Williams <djbw@kernel.org>
Cc: Alison Schofield <alison.schofield@intel.com>
Cc: Danilo Krummrich <dakr@kernel.org>
Cc: Dave Jiang <dave.jiang@intel.com>
Cc: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
Cc: Liam R. Howlett <liam@infradead.org>
Cc: Lorenzo Stoakes <ljs@kernel.org>
Cc: Michal Hocko <mhocko@suse.com>
Cc: Mike Rapoport <rppt@kernel.org>
Cc: Oscar Salvador <osalvador@suse.de>
Cc: Pankaj Gupta <pankaj.gupta@amd.com>
Cc: "Rafael J. Wysocki" <rafael@kernel.org>
Cc: Shuah Khan <shuah@kernel.org>
Cc: Suren Baghdasaryan <surenb@google.com>
Cc: Vishal Verma <vishal.l.verma@intel.com>
Cc: Vlastimil Babka <vbabka@kernel.org>
Signed-off-by: Andrew Morton <akpm@linux-foundation.org>
614 lines
16 KiB
C
614 lines
16 KiB
C
// SPDX-License-Identifier: GPL-2.0
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/* Copyright(c) 2016-2019 Intel Corporation. All rights reserved. */
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#include <linux/memremap.h>
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#include <linux/pagemap.h>
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#include <linux/memory.h>
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#include <linux/module.h>
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#include <linux/device.h>
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#include <linux/slab.h>
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#include <linux/dax.h>
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#include <linux/fs.h>
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#include <linux/mm.h>
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#include <linux/mman.h>
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#include <linux/memory-tiers.h>
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#include <linux/memory_hotplug.h>
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#include <linux/string_helpers.h>
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#include "dax-private.h"
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#include "bus.h"
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/*
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* Default abstract distance assigned to the NUMA node onlined
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* by DAX/kmem if the low level platform driver didn't initialize
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* one for this NUMA node.
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*/
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#define MEMTIER_DEFAULT_DAX_ADISTANCE (MEMTIER_ADISTANCE_DRAM * 5)
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/* Memory resource name used for add_memory_driver_managed(). */
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static const char *kmem_name;
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/* Set if any memory will remain added when the driver will be unloaded. */
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static bool any_hotremove_failed;
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static int dax_kmem_range(struct dev_dax *dev_dax, int i, struct range *r)
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{
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struct dev_dax_range *dax_range = &dev_dax->ranges[i];
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struct range *range = &dax_range->range;
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*r = memory_block_aligned_range(range);
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if (r->start >= r->end) {
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r->start = range->start;
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r->end = range->end;
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return -ENOSPC;
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}
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return 0;
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}
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struct dax_kmem_data {
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const char *res_name;
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int mgid;
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int state;
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struct mutex lock; /* protects hotplug state transitions */
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struct resource *res[];
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};
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static DEFINE_MUTEX(kmem_memory_type_lock);
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static LIST_HEAD(kmem_memory_types);
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static struct memory_dev_type *kmem_find_alloc_memory_type(int adist)
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{
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guard(mutex)(&kmem_memory_type_lock);
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return mt_find_alloc_memory_type(adist, &kmem_memory_types);
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}
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static void kmem_put_memory_types(void)
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{
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guard(mutex)(&kmem_memory_type_lock);
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mt_put_memory_types(&kmem_memory_types);
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}
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/* True for the online states a kmem dax device can hold. */
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static bool dax_kmem_state_is_online(int state)
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{
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return state == MMOP_ONLINE ||
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state == MMOP_ONLINE_KERNEL ||
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state == MMOP_ONLINE_MOVABLE;
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}
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/**
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* dax_kmem_do_hotplug - hotplug memory for dax kmem device
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* @dev_dax: the dev_dax instance
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* @data: the dax_kmem_data structure with resource tracking
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* @online_type: the online policy to use for the memory blocks
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*
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* Hotplugs all ranges in the dev_dax region as system memory with the
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* provided online policy (offline, online, online_movable, online_kernel).
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*
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* Returns the number of successfully mapped ranges, or negative error.
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*/
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static int dax_kmem_do_hotplug(struct dev_dax *dev_dax,
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struct dax_kmem_data *data,
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int online_type)
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{
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struct device *dev = &dev_dax->dev;
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int i, rc, added = 0;
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mhp_t mhp_flags;
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if (dax_kmem_state_is_online(data->state))
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return -EINVAL;
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if (online_type < MMOP_OFFLINE || online_type > MMOP_ONLINE_MOVABLE)
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return -EINVAL;
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for (i = 0; i < dev_dax->nr_range; i++) {
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struct range range;
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rc = dax_kmem_range(dev_dax, i, &range);
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if (rc)
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continue;
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/*
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* init_resources() is best-effort: if a reservation conflict
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* occurs it keeps the range but leaves res[i]=NULL. For hotplug
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* on probe systems, this means kmem will partially online.
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*
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* We have to keep this behavior not to break those systems.
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* For those systems - atomicity only applies to valid ranges.
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*/
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if (!data->res[i])
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continue;
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mhp_flags = MHP_NID_IS_MGID;
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if (dev_dax->memmap_on_memory)
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mhp_flags |= MHP_MEMMAP_ON_MEMORY;
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/*
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* Ensure that future kexec'd kernels will not treat
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* this as RAM automatically.
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*/
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rc = __add_memory_driver_managed(data->mgid, range.start,
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range_len(&range), kmem_name, mhp_flags,
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online_type);
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if (rc) {
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dev_warn(dev, "mapping%d: %#llx-%#llx memory add failed\n",
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i, range.start, range.end);
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/*
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* Release the reservation for the range that failed to
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* add so a later hotremove does not try to remove memory
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* that was never added.
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*/
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if (data->res[i]) {
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remove_resource(data->res[i]);
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kfree(data->res[i]);
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data->res[i] = NULL;
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}
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if (added)
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continue;
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return rc;
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}
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added++;
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}
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return added;
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}
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/**
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* dax_kmem_init_resources - create memory regions for dax kmem
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* @dev_dax: the dev_dax instance
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* @data: the dax_kmem_data structure with resource tracking
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*
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* Initializes all the resources for the DAX
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*
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* Returns the number of successfully mapped ranges, or negative error.
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*/
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static int dax_kmem_init_resources(struct dev_dax *dev_dax,
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struct dax_kmem_data *data)
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{
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struct device *dev = &dev_dax->dev;
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int i, rc, mapped = 0;
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for (i = 0; i < dev_dax->nr_range; i++) {
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struct resource *res;
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struct range range;
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rc = dax_kmem_range(dev_dax, i, &range);
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if (rc)
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continue;
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/* Skip ranges already added */
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if (data->res[i])
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continue;
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/* Region is permanently reserved if hotremove fails. */
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res = request_mem_region(range.start, range_len(&range),
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data->res_name);
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if (!res) {
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dev_warn(dev, "mapping%d: %#llx-%#llx could not reserve region\n",
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i, range.start, range.end);
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/*
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* Once some memory has been onlined we can't
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* assume that it can be un-onlined safely.
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*/
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if (mapped)
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continue;
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return -EBUSY;
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}
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data->res[i] = res;
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/*
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* Set flags appropriate for System RAM. Leave ..._BUSY clear
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* so that add_memory() can add a child resource. Do not
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* inherit flags from the parent since it may set new flags
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* unknown to us that will break add_memory() later.
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*/
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res->flags = IORESOURCE_SYSTEM_RAM;
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mapped++;
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}
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return mapped;
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}
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#ifdef CONFIG_MEMORY_HOTREMOVE
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/**
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* dax_kmem_do_hotremove - hot-remove memory for dax kmem device
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* @dev_dax: the dev_dax instance
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* @data: the dax_kmem_data structure with resource tracking
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*
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* Offlines and removes every currently-added range in the dev_dax region
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* atomically: either all ranges are offlined and removed, or none are and
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* the device is returned to its prior state.
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*
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* Returns 0 on success, or a negative errno on failure.
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*/
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static int dax_kmem_do_hotremove(struct dev_dax *dev_dax,
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struct dax_kmem_data *data)
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{
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struct device *dev = &dev_dax->dev;
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struct range *ranges;
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int i, nr_ranges = 0, rc;
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ranges = kmalloc_objs(*ranges, dev_dax->nr_range);
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if (!ranges)
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return -ENOMEM;
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/* Collect the ranges that were actually added during probe. */
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for (i = 0; i < dev_dax->nr_range; i++) {
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struct range range;
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if (!data->res[i])
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continue;
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if (dax_kmem_range(dev_dax, i, &range))
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continue;
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ranges[nr_ranges++] = range;
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}
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/* Nothing added means nothing to remove. */
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if (!nr_ranges) {
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kfree(ranges);
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return 0;
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}
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rc = offline_and_remove_memory_ranges(ranges, nr_ranges);
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kfree(ranges);
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if (rc) {
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/* Recoverable: the ranges rolled back, nothing is leaked yet. */
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dev_err(dev, "hotremove failed, device left online: %d\n", rc);
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return rc;
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}
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/* All ranges removed; release the reserved resources. */
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for (i = 0; i < dev_dax->nr_range; i++) {
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if (!data->res[i])
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continue;
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remove_resource(data->res[i]);
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kfree(data->res[i]);
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data->res[i] = NULL;
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}
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return 0;
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}
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#else
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static int dax_kmem_do_hotremove(struct dev_dax *dev_dax,
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struct dax_kmem_data *data)
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{
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return -EBUSY;
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}
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#endif /* CONFIG_MEMORY_HOTREMOVE */
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/**
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* dax_kmem_cleanup_resources - remove the dax memory resources
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* @dev_dax: the dev_dax instance
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* @data: the dax_kmem_data structure with resource tracking
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*
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* Removes all resources in the dev_dax region.
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*/
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static void dax_kmem_cleanup_resources(struct dev_dax *dev_dax,
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struct dax_kmem_data *data)
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{
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int i;
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/*
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* If the device unbind occurs before memory is hotremoved, we can never
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* remove the memory (requires reboot). Attempting an offline operation
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* here may cause deadlock and a failure to finish the unbind.
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*
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* Note: This leaks the resources.
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*/
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if (WARN(((data->state != DAX_KMEM_UNPLUGGED) &&
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(data->state != MMOP_OFFLINE)),
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"Hotplug memory regions stuck online until reboot"))
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return;
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for (i = 0; i < dev_dax->nr_range; i++) {
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if (!data->res[i])
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continue;
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remove_resource(data->res[i]);
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kfree(data->res[i]);
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data->res[i] = NULL;
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}
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}
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static int dax_kmem_parse_state(const char *buf)
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{
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int online_type;
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/* "unplugged" is kmem-specific - the rest map to MMOP_ */
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if (sysfs_streq(buf, "unplugged"))
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return DAX_KMEM_UNPLUGGED;
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online_type = mhp_online_type_from_str(buf);
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/* Disallow "offline": it's not useful and creates race conditions */
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if (online_type == MMOP_OFFLINE)
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return -EINVAL;
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return online_type;
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}
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static ssize_t state_show(struct device *dev,
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struct device_attribute *attr, char *buf)
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{
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struct dax_kmem_data *data = dev_get_drvdata(dev);
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const char *state_str;
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if (data->state == DAX_KMEM_UNPLUGGED)
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state_str = "unplugged";
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else
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state_str = mhp_online_type_to_str(data->state);
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return sysfs_emit(buf, "%s\n", state_str ?: "unknown");
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}
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static ssize_t state_store(struct device *dev, struct device_attribute *attr,
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const char *buf, size_t len)
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{
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struct dev_dax *dev_dax = to_dev_dax(dev);
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struct dax_kmem_data *data = dev_get_drvdata(dev);
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int online_type;
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int rc;
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online_type = dax_kmem_parse_state(buf);
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if (online_type < DAX_KMEM_UNPLUGGED)
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return online_type;
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guard(mutex)(&data->lock);
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/* Already in requested state */
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if (data->state == online_type)
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return len;
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if (online_type == DAX_KMEM_UNPLUGGED) {
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rc = dax_kmem_do_hotremove(dev_dax, data);
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if (rc)
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return rc;
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data->state = DAX_KMEM_UNPLUGGED;
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return len;
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}
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/* Onlining is only allowed from the unplugged state. */
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if (data->state != DAX_KMEM_UNPLUGGED)
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return -EBUSY;
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/* Re-acquire resources if previously unplugged, otherwise no-op */
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rc = dax_kmem_init_resources(dev_dax, data);
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if (rc < 0)
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return rc;
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rc = dax_kmem_do_hotplug(dev_dax, data, online_type);
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if (rc < 0) {
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/* Total failure, drop the reservations we took. */
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dax_kmem_cleanup_resources(dev_dax, data);
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return rc;
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}
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data->state = online_type;
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return len;
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}
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static int dev_dax_kmem_probe(struct dev_dax *dev_dax)
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{
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struct device *dev = &dev_dax->dev;
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unsigned long total_len = 0, orig_len = 0;
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struct dax_kmem_data *data;
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struct memory_dev_type *mtype;
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int i, rc;
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int numa_node;
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int adist = MEMTIER_DEFAULT_DAX_ADISTANCE;
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int online_type = mhp_get_default_online_type();
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/*
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* Ensure good NUMA information for the persistent memory.
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* Without this check, there is a risk that slow memory
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* could be mixed in a node with faster memory, causing
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* unavoidable performance issues.
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*/
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numa_node = dev_dax->target_node;
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if (numa_node < 0) {
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dev_warn(dev, "rejecting DAX region with invalid node: %d\n",
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numa_node);
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return -EINVAL;
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}
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mt_calc_adistance(numa_node, &adist);
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mtype = kmem_find_alloc_memory_type(adist);
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if (IS_ERR(mtype))
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return PTR_ERR(mtype);
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for (i = 0; i < dev_dax->nr_range; i++) {
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struct range range;
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orig_len += range_len(&dev_dax->ranges[i].range);
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rc = dax_kmem_range(dev_dax, i, &range);
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if (rc) {
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dev_info(dev, "mapping%d: %#llx-%#llx too small after alignment\n",
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i, range.start, range.end);
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continue;
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}
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total_len += range_len(&range);
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}
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if (!total_len) {
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dev_warn(dev, "rejecting DAX region without any memory after alignment\n");
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return -EINVAL;
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} else if (total_len != orig_len) {
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char buf[16];
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string_get_size(orig_len - total_len, 1, STRING_UNITS_2,
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buf, sizeof(buf));
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dev_warn(dev, "DAX region truncated by %s due to alignment\n", buf);
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}
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init_node_memory_type(numa_node, mtype);
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rc = -ENOMEM;
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data = kzalloc_flex(*data, res, dev_dax->nr_range);
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if (!data)
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goto err_dax_kmem_data;
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data->res_name = kstrdup(dev_name(dev), GFP_KERNEL);
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if (!data->res_name)
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goto err_res_name;
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rc = memory_group_register_static(numa_node, PFN_UP(total_len));
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if (rc < 0)
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goto err_reg_mgid;
|
|
data->mgid = rc;
|
|
data->state = DAX_KMEM_UNPLUGGED;
|
|
mutex_init(&data->lock);
|
|
|
|
dev_set_drvdata(dev, data);
|
|
|
|
rc = dax_kmem_init_resources(dev_dax, data);
|
|
if (rc < 0)
|
|
goto err_resources;
|
|
|
|
rc = dax_kmem_do_hotplug(dev_dax, data, online_type);
|
|
if (rc < 0)
|
|
goto err_hotplug;
|
|
data->state = online_type;
|
|
|
|
return 0;
|
|
|
|
err_hotplug:
|
|
dax_kmem_cleanup_resources(dev_dax, data);
|
|
err_resources:
|
|
dev_set_drvdata(dev, NULL);
|
|
memory_group_unregister(data->mgid);
|
|
err_reg_mgid:
|
|
kfree(data->res_name);
|
|
err_res_name:
|
|
kfree(data);
|
|
err_dax_kmem_data:
|
|
clear_node_memory_type(numa_node, mtype);
|
|
return rc;
|
|
}
|
|
|
|
#ifdef CONFIG_MEMORY_HOTREMOVE
|
|
/*
|
|
* Remove the device's added ranges with remove_memory().
|
|
* Unlike the sysfs unplug path it never offlines and fails if the blocks are
|
|
* online (-EBUSY), so it is safe from unbind. Failures leak until reboot.
|
|
*
|
|
* Returns 0 only if every added range was removed.
|
|
*/
|
|
static int dax_kmem_remove_ranges(struct dev_dax *dev_dax,
|
|
struct dax_kmem_data *data)
|
|
{
|
|
struct device *dev = &dev_dax->dev;
|
|
int i, rc = 0;
|
|
|
|
for (i = 0; i < dev_dax->nr_range; i++) {
|
|
struct range range;
|
|
|
|
if (!data->res[i] || dax_kmem_range(dev_dax, i, &range))
|
|
continue;
|
|
if (remove_memory(range.start, range_len(&range))) {
|
|
dev_warn(dev, "mapping%d: %#llx-%#llx stuck online until reboot\n",
|
|
i, range.start, range.end);
|
|
rc = -EBUSY;
|
|
continue;
|
|
}
|
|
remove_resource(data->res[i]);
|
|
kfree(data->res[i]);
|
|
data->res[i] = NULL;
|
|
}
|
|
return rc;
|
|
}
|
|
|
|
static void dev_dax_kmem_remove(struct dev_dax *dev_dax)
|
|
{
|
|
int node = dev_dax->target_node;
|
|
struct device *dev = &dev_dax->dev;
|
|
struct dax_kmem_data *data = dev_get_drvdata(dev);
|
|
|
|
/*
|
|
* Remove every range that is still added. dax_kmem_remove_ranges()
|
|
* uses remove_memory(), which never offlines: an online block fails
|
|
* with -EBUSY rather than deadlocking an uninterruptible unbind.
|
|
*
|
|
* data->state only tracks daxX.Y/state writes, so it can be stale if
|
|
* blocks were toggled via memoryX/state. Do not trust it here and
|
|
* attempt simply remove_memory() - which reports the true state of
|
|
* each range anyway. Anything left online is leaked until reboot.
|
|
*/
|
|
if (dax_kmem_remove_ranges(dev_dax, data)) {
|
|
dev_err(dev, "Hotplug regions stuck online until reboot\n");
|
|
any_hotremove_failed = true;
|
|
return;
|
|
}
|
|
|
|
memory_group_unregister(data->mgid);
|
|
kfree(data->res_name);
|
|
kfree(data);
|
|
dev_set_drvdata(dev, NULL);
|
|
/*
|
|
* Clear the memtype association on successful unplug.
|
|
* If not, we have memory blocks left which can be
|
|
* offlined/onlined later. We need to keep memory_dev_type
|
|
* for that. This implies this reference will be around
|
|
* till next reboot.
|
|
*/
|
|
clear_node_memory_type(node, NULL);
|
|
}
|
|
#else
|
|
static void dev_dax_kmem_remove(struct dev_dax *dev_dax)
|
|
{
|
|
/*
|
|
* Without hotremove purposely leak the request_mem_region() for the
|
|
* device-dax range and return '0' to ->remove() attempts. The removal
|
|
* of the device from the driver always succeeds, but the region is
|
|
* permanently pinned as reserved by the unreleased
|
|
* request_mem_region().
|
|
*/
|
|
any_hotremove_failed = true;
|
|
}
|
|
#endif /* CONFIG_MEMORY_HOTREMOVE */
|
|
|
|
static DEVICE_ATTR_RW(state);
|
|
|
|
static struct attribute *dev_dax_kmem_attrs[] = {
|
|
&dev_attr_state.attr,
|
|
NULL,
|
|
};
|
|
ATTRIBUTE_GROUPS(dev_dax_kmem);
|
|
|
|
static struct dax_device_driver device_dax_kmem_driver = {
|
|
.probe = dev_dax_kmem_probe,
|
|
.remove = dev_dax_kmem_remove,
|
|
.type = DAXDRV_KMEM_TYPE,
|
|
.drv = {
|
|
.dev_groups = dev_dax_kmem_groups,
|
|
},
|
|
};
|
|
|
|
static int __init dax_kmem_init(void)
|
|
{
|
|
int rc;
|
|
|
|
/* Resource name is permanently allocated if any hotremove fails. */
|
|
kmem_name = kstrdup_const("System RAM (kmem)", GFP_KERNEL);
|
|
if (!kmem_name)
|
|
return -ENOMEM;
|
|
|
|
rc = dax_driver_register(&device_dax_kmem_driver);
|
|
if (rc)
|
|
goto error_dax_driver;
|
|
|
|
return rc;
|
|
|
|
error_dax_driver:
|
|
kmem_put_memory_types();
|
|
kfree_const(kmem_name);
|
|
return rc;
|
|
}
|
|
|
|
static void __exit dax_kmem_exit(void)
|
|
{
|
|
dax_driver_unregister(&device_dax_kmem_driver);
|
|
if (!any_hotremove_failed)
|
|
kfree_const(kmem_name);
|
|
kmem_put_memory_types();
|
|
}
|
|
|
|
MODULE_AUTHOR("Intel Corporation");
|
|
MODULE_DESCRIPTION("KMEM DAX: map dax-devices as System-RAM");
|
|
MODULE_LICENSE("GPL v2");
|
|
module_init(dax_kmem_init);
|
|
module_exit(dax_kmem_exit);
|
|
MODULE_ALIAS_DAX_DEVICE(0);
|