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mm/hmm: fix memremap.h, move dev_page_fault_t callback to hmm
The kbuild robot reported the following on a development branch that used
memremap.h in a new path:
In file included from arch/m68k/include/asm/pgtable_mm.h:148:0,
from arch/m68k/include/asm/pgtable.h:5,
from include/linux/memremap.h:7,
from drivers//dax/bus.c:3:
arch/m68k/include/asm/motorola_pgtable.h: In function 'pgd_offset':
>> arch/m68k/include/asm/motorola_pgtable.h:199:11: error: dereferencing pointer to incomplete type 'const struct mm_struct'
return mm->pgd + pgd_index(address);
^~
The ->page_fault() callback is specific to HMM. Move it to 'struct
hmm_devmem' where the unusual asm/pgtable.h dependency can be contained in
include/linux/hmm.h. Longer term refactoring this dependency out of HMM
is recommended, but in the meantime memremap.h remains generic.
Link: http://lkml.kernel.org/r/154534090899.3120190.6652620807617715272.stgit@dwillia2-desk3.amr.corp.intel.com
Fixes: 5042db43cc
("mm/ZONE_DEVICE: new type of ZONE_DEVICE memory...")
Signed-off-by: Dan Williams <dan.j.williams@intel.com>
Reviewed-by: "Jérôme Glisse" <jglisse@redhat.com>
Cc: Logan Gunthorpe <logang@deltatee.com>
Signed-off-by: Andrew Morton <akpm@linux-foundation.org>
Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org>
This commit is contained in:
parent
c86aa7bbfd
commit
063a7d1d36
@ -69,6 +69,7 @@
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#define LINUX_HMM_H
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#include <linux/kconfig.h>
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#include <asm/pgtable.h>
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#if IS_ENABLED(CONFIG_HMM)
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@ -486,6 +487,7 @@ struct hmm_devmem_ops {
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* @device: device to bind resource to
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* @ops: memory operations callback
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* @ref: per CPU refcount
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* @page_fault: callback when CPU fault on an unaddressable device page
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*
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* This an helper structure for device drivers that do not wish to implement
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* the gory details related to hotplugging new memoy and allocating struct
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@ -493,7 +495,28 @@ struct hmm_devmem_ops {
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*
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* Device drivers can directly use ZONE_DEVICE memory on their own if they
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* wish to do so.
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*
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* The page_fault() callback must migrate page back, from device memory to
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* system memory, so that the CPU can access it. This might fail for various
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* reasons (device issues, device have been unplugged, ...). When such error
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* conditions happen, the page_fault() callback must return VM_FAULT_SIGBUS and
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* set the CPU page table entry to "poisoned".
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*
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* Note that because memory cgroup charges are transferred to the device memory,
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* this should never fail due to memory restrictions. However, allocation
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* of a regular system page might still fail because we are out of memory. If
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* that happens, the page_fault() callback must return VM_FAULT_OOM.
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*
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* The page_fault() callback can also try to migrate back multiple pages in one
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* chunk, as an optimization. It must, however, prioritize the faulting address
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* over all the others.
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*/
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typedef int (*dev_page_fault_t)(struct vm_area_struct *vma,
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unsigned long addr,
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const struct page *page,
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unsigned int flags,
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pmd_t *pmdp);
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struct hmm_devmem {
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struct completion completion;
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unsigned long pfn_first;
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@ -503,6 +526,7 @@ struct hmm_devmem {
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struct dev_pagemap pagemap;
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const struct hmm_devmem_ops *ops;
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struct percpu_ref ref;
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dev_page_fault_t page_fault;
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};
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/*
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@ -4,8 +4,6 @@
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#include <linux/ioport.h>
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#include <linux/percpu-refcount.h>
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#include <asm/pgtable.h>
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struct resource;
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struct device;
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@ -66,47 +64,18 @@ enum memory_type {
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};
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/*
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* For MEMORY_DEVICE_PRIVATE we use ZONE_DEVICE and extend it with two
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* callbacks:
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* page_fault()
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* page_free()
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*
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* Additional notes about MEMORY_DEVICE_PRIVATE may be found in
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* include/linux/hmm.h and Documentation/vm/hmm.rst. There is also a brief
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* explanation in include/linux/memory_hotplug.h.
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*
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* The page_fault() callback must migrate page back, from device memory to
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* system memory, so that the CPU can access it. This might fail for various
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* reasons (device issues, device have been unplugged, ...). When such error
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* conditions happen, the page_fault() callback must return VM_FAULT_SIGBUS and
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* set the CPU page table entry to "poisoned".
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*
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* Note that because memory cgroup charges are transferred to the device memory,
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* this should never fail due to memory restrictions. However, allocation
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* of a regular system page might still fail because we are out of memory. If
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* that happens, the page_fault() callback must return VM_FAULT_OOM.
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*
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* The page_fault() callback can also try to migrate back multiple pages in one
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* chunk, as an optimization. It must, however, prioritize the faulting address
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* over all the others.
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*
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*
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* The page_free() callback is called once the page refcount reaches 1
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* (ZONE_DEVICE pages never reach 0 refcount unless there is a refcount bug.
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* This allows the device driver to implement its own memory management.)
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*
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* For MEMORY_DEVICE_PUBLIC only the page_free() callback matter.
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*/
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typedef int (*dev_page_fault_t)(struct vm_area_struct *vma,
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unsigned long addr,
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const struct page *page,
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unsigned int flags,
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pmd_t *pmdp);
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typedef void (*dev_page_free_t)(struct page *page, void *data);
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/**
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* struct dev_pagemap - metadata for ZONE_DEVICE mappings
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* @page_fault: callback when CPU fault on an unaddressable device page
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* @page_free: free page callback when page refcount reaches 1
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* @altmap: pre-allocated/reserved memory for vmemmap allocations
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* @res: physical address range covered by @ref
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@ -117,7 +86,6 @@ typedef void (*dev_page_free_t)(struct page *page, void *data);
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* @type: memory type: see MEMORY_* in memory_hotplug.h
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*/
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struct dev_pagemap {
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dev_page_fault_t page_fault;
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dev_page_free_t page_free;
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struct vmem_altmap altmap;
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bool altmap_valid;
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@ -11,6 +11,7 @@
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#include <linux/types.h>
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#include <linux/wait_bit.h>
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#include <linux/xarray.h>
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#include <linux/hmm.h>
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static DEFINE_XARRAY(pgmap_array);
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#define SECTION_MASK ~((1UL << PA_SECTION_SHIFT) - 1)
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@ -24,6 +25,9 @@ vm_fault_t device_private_entry_fault(struct vm_area_struct *vma,
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pmd_t *pmdp)
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{
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struct page *page = device_private_entry_to_page(entry);
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struct hmm_devmem *devmem;
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devmem = container_of(page->pgmap, typeof(*devmem), pagemap);
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/*
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* The page_fault() callback must migrate page back to system memory
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@ -39,7 +43,7 @@ vm_fault_t device_private_entry_fault(struct vm_area_struct *vma,
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* There is a more in-depth description of what that callback can and
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* cannot do, in include/linux/memremap.h
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*/
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return page->pgmap->page_fault(vma, addr, page, flags, pmdp);
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return devmem->page_fault(vma, addr, page, flags, pmdp);
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}
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EXPORT_SYMBOL(device_private_entry_fault);
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#endif /* CONFIG_DEVICE_PRIVATE */
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4
mm/hmm.c
4
mm/hmm.c
@ -1087,10 +1087,10 @@ struct hmm_devmem *hmm_devmem_add(const struct hmm_devmem_ops *ops,
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devmem->pfn_first = devmem->resource->start >> PAGE_SHIFT;
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devmem->pfn_last = devmem->pfn_first +
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(resource_size(devmem->resource) >> PAGE_SHIFT);
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devmem->page_fault = hmm_devmem_fault;
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devmem->pagemap.type = MEMORY_DEVICE_PRIVATE;
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devmem->pagemap.res = *devmem->resource;
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devmem->pagemap.page_fault = hmm_devmem_fault;
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devmem->pagemap.page_free = hmm_devmem_free;
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devmem->pagemap.altmap_valid = false;
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devmem->pagemap.ref = &devmem->ref;
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@ -1141,10 +1141,10 @@ struct hmm_devmem *hmm_devmem_add_resource(const struct hmm_devmem_ops *ops,
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devmem->pfn_first = devmem->resource->start >> PAGE_SHIFT;
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devmem->pfn_last = devmem->pfn_first +
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(resource_size(devmem->resource) >> PAGE_SHIFT);
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devmem->page_fault = hmm_devmem_fault;
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devmem->pagemap.type = MEMORY_DEVICE_PUBLIC;
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devmem->pagemap.res = *devmem->resource;
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devmem->pagemap.page_fault = hmm_devmem_fault;
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devmem->pagemap.page_free = hmm_devmem_free;
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devmem->pagemap.altmap_valid = false;
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devmem->pagemap.ref = &devmem->ref;
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