335 lines
9.3 KiB
C
335 lines
9.3 KiB
C
// SPDX-License-Identifier: GPL-2.0-only
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/*
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* Copyright (C) 2018-2020 Oplus. All rights reserved.
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*/
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#include <linux/gfp.h>
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#include <linux/jhash.h>
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#include <linux/kernel.h>
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#include <linux/mm.h>
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#include <linux/percpu.h>
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#include <linux/printk.h>
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#include <linux/slab.h>
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#include <linux/stacktrace.h>
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#include <linux/memleak_stackdepot.h>
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#include <linux/string.h>
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#include <linux/types.h>
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#include <linux/vmalloc.h>
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#define DEPOT_STACK_BITS (sizeof(ml_depot_stack_handle_t) * 8)
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#define STACK_ALLOC_NULL_PROTECTION_BITS 1
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#define STACK_ALLOC_ORDER 0 /* 'Slab' size order for stack depot, 1 pages */
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#define STACK_ALLOC_SIZE (1LL << (PAGE_SHIFT + STACK_ALLOC_ORDER))
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#define STACK_ALLOC_ALIGN 4
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#define STACK_ALLOC_OFFSET_BITS (STACK_ALLOC_ORDER + PAGE_SHIFT - \
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STACK_ALLOC_ALIGN) //9
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#define STACK_ALLOC_INDEX_BITS (DEPOT_STACK_BITS - \
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STACK_ALLOC_NULL_PROTECTION_BITS - STACK_ALLOC_OFFSET_BITS) //22
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#define STACK_ALLOC_SLABS_CAP 10240
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#define STACK_ALLOC_MAX_SLABS \
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(((1LL << (STACK_ALLOC_INDEX_BITS)) < STACK_ALLOC_SLABS_CAP) ? \
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(1LL << (STACK_ALLOC_INDEX_BITS)) : STACK_ALLOC_SLABS_CAP)
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/* The compact structure to store the reference to stacks. */
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union ml_handle_parts {
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ml_depot_stack_handle_t handle;
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struct {
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u32 slabindex : STACK_ALLOC_INDEX_BITS;
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u32 offset : STACK_ALLOC_OFFSET_BITS;
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u32 valid : STACK_ALLOC_NULL_PROTECTION_BITS;
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};
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};
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struct ml_stack_record {
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struct ml_stack_record *next; /* Link in the hashtable */
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u32 hash; /* Hash in the hastable */
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u32 size; /* Number of frames in the stack */
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union ml_handle_parts handle;
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unsigned long entries[1]; /* Variable-sized array of entries. */
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};
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static void **ml_stack_slabs = NULL;
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static int ml_depot_index;
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static int ml_next_slab_inited;
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static size_t ml_depot_offset;
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static DEFINE_SPINLOCK(ml_depot_lock);
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static DEFINE_MUTEX(ml_depot_init_mutex);
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static atomic_t ml_stack_depot_inited = ATOMIC_INIT(0);
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static bool ml_init_stack_slab(void **prealloc)
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{
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if (!*prealloc)
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return false;
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/*
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* This smp_load_acquire() pairs with smp_store_release() to
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* |ml_next_slab_inited| below and in ml_depot_alloc_stack().
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*/
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if (smp_load_acquire(&ml_next_slab_inited))
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return true;
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if (ml_stack_slabs[ml_depot_index] == NULL) {
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ml_stack_slabs[ml_depot_index] = *prealloc;
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} else {
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ml_stack_slabs[ml_depot_index + 1] = *prealloc;
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/*
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* This smp_store_release pairs with smp_load_acquire() from
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* |ml_next_slab_inited| above and in ml_depot_save_stack().
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*/
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smp_store_release(&ml_next_slab_inited, 1);
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}
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*prealloc = NULL;
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return true;
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}
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/* Allocation of a new stack in raw storage */
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static struct ml_stack_record *ml_depot_alloc_stack(unsigned long *entries, int size,
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u32 hash, void **prealloc, gfp_t alloc_flags)
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{
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int required_size = offsetof(struct ml_stack_record, entries) +
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sizeof(unsigned long) * size;
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struct ml_stack_record *stack;
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required_size = ALIGN(required_size, 1 << STACK_ALLOC_ALIGN);
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if (unlikely(ml_depot_offset + required_size > STACK_ALLOC_SIZE)) {
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if (unlikely(ml_depot_index + 1 >= STACK_ALLOC_MAX_SLABS)) {
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WARN_ONCE(1, "Stack depot reached limit capacity");
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return NULL;
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}
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ml_depot_index++;
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ml_depot_offset = 0;
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/*
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* smp_store_release() here pairs with smp_load_acquire() from
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* |ml_next_slab_inited| in ml_depot_save_stack() and
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* ml_init_stack_slab().
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*/
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if (ml_depot_index + 1 < STACK_ALLOC_MAX_SLABS)
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smp_store_release(&ml_next_slab_inited, 0);
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}
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ml_init_stack_slab(prealloc);
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if (ml_stack_slabs[ml_depot_index] == NULL)
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return NULL;
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stack = ml_stack_slabs[ml_depot_index] + ml_depot_offset;
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stack->hash = hash;
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stack->size = size;
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stack->handle.slabindex = ml_depot_index;
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stack->handle.offset = ml_depot_offset >> STACK_ALLOC_ALIGN;
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stack->handle.valid = 1;
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memcpy(stack->entries, entries, size * sizeof(unsigned long));
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ml_depot_offset += required_size;
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return stack;
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}
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#define STACK_HASH_SIZE (1L << 19)
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#define STACK_HASH_MASK (STACK_HASH_SIZE - 1)
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#define STACK_HASH_SEED 0x9747b28c
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static struct ml_stack_record **ml_stack_table = NULL;
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/* Calculate hash for a stack */
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static inline u32 ml_hash_stack(unsigned long *entries, unsigned int size)
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{
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return jhash2((u32 *)entries,
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size * sizeof(unsigned long) / sizeof(u32),
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STACK_HASH_SEED);
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}
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/* Use our own, non-instrumented version of memcmp().
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*
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* We actually don't care about the order, just the equality.
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*/
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static inline
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int ml_stackdepot_memcmp(const unsigned long *u1, const unsigned long *u2,
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unsigned int n)
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{
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for ( ; n-- ; u1++, u2++) {
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if (*u1 != *u2)
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return 1;
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}
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return 0;
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}
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/* Find a stack that is equal to the one stored in entries in the hash */
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static inline struct ml_stack_record *ml_find_stack(struct ml_stack_record *bucket,
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unsigned long *entries, int size,
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u32 hash)
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{
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struct ml_stack_record *found;
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for (found = bucket; found; found = found->next) {
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if (found->hash == hash &&
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found->size == size &&
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!ml_stackdepot_memcmp(entries, found->entries, size))
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return found;
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}
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return NULL;
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}
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void ml_depot_fetch_stack(ml_depot_stack_handle_t handle, struct stack_trace *trace)
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{
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union ml_handle_parts parts = { .handle = handle };
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void *slab;
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size_t offset;
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struct ml_stack_record *stack;
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if (atomic_read(&ml_stack_depot_inited) == 0) {
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pr_err("ml_stack_depot_inited is not inited\n");
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return;
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}
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slab = ml_stack_slabs[parts.slabindex];
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offset = parts.offset << STACK_ALLOC_ALIGN;
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stack = slab + offset;
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trace->nr_entries = trace->max_entries = stack->size;
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trace->entries = stack->entries;
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trace->skip = 0;
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}
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EXPORT_SYMBOL_GPL(ml_depot_fetch_stack);
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/**
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* ml_depot_save_stack - save stack in a stack depot.
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* @trace - the stacktrace to save.
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* @alloc_flags - flags for allocating additional memory if required.
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*
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* Returns the handle of the stack struct stored in depot.
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*/
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ml_depot_stack_handle_t ml_depot_save_stack(struct stack_trace *trace,
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gfp_t alloc_flags)
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{
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u32 hash;
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ml_depot_stack_handle_t retval = 0;
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struct ml_stack_record *found = NULL, **bucket;
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unsigned long flags;
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struct page *page = NULL;
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void *prealloc = NULL;
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if (atomic_read(&ml_stack_depot_inited) == 0) {
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pr_err("ml_stack_depot_inited is not inited\n");
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goto fast_exit;
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}
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if (unlikely(trace->nr_entries == 0))
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goto fast_exit;
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hash = ml_hash_stack(trace->entries, trace->nr_entries);
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bucket = &ml_stack_table[hash & STACK_HASH_MASK];
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/*
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* Fast path: look the stack trace up without locking.
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* The smp_load_acquire() here pairs with smp_store_release() to
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* |bucket| below.
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*/
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found = ml_find_stack(smp_load_acquire(bucket), trace->entries,
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trace->nr_entries, hash);
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if (found)
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goto exit;
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/*
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* Check if the current or the next stack slab need to be initialized.
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* If so, allocate the memory - we won't be able to do that under the
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* lock.
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*
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* The smp_load_acquire() here pairs with smp_store_release() to
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* |ml_next_slab_inited| in ml_depot_alloc_stack() and ml_init_stack_slab().
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*/
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if (unlikely(!smp_load_acquire(&ml_next_slab_inited))) {
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/*
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* Zero out zone modifiers, as we don't have specific zone
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* requirements. Keep the flags related to allocation in atomic
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* contexts and I/O.
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*/
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alloc_flags &= ~GFP_ZONEMASK;
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alloc_flags &= (GFP_ATOMIC | GFP_KERNEL);
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alloc_flags |= __GFP_NOWARN;
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page = alloc_pages(alloc_flags, STACK_ALLOC_ORDER);
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if (page)
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prealloc = page_address(page);
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}
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spin_lock_irqsave(&ml_depot_lock, flags);
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found = ml_find_stack(*bucket, trace->entries, trace->nr_entries, hash);
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if (!found) {
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struct ml_stack_record *new =
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ml_depot_alloc_stack(trace->entries, trace->nr_entries,
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hash, &prealloc, alloc_flags);
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if (new) {
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new->next = *bucket;
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/*
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* This smp_store_release() pairs with
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* smp_load_acquire() from |bucket| above.
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*/
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smp_store_release(bucket, new);
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found = new;
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}
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} else if (prealloc) {
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/*
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* We didn't need to store this stack trace, but let's keep
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* the preallocated memory for the future.
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*/
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WARN_ON(!ml_init_stack_slab(&prealloc));
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}
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spin_unlock_irqrestore(&ml_depot_lock, flags);
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if (prealloc) {
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/* Nobody used this memory, ok to free it. */
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free_pages((unsigned long)prealloc, STACK_ALLOC_ORDER);
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}
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exit:
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if (found)
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retval = found->handle.handle;
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fast_exit:
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return retval;
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}
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EXPORT_SYMBOL_GPL(ml_depot_save_stack);
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int ml_depot_init(void)
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{
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int inited;
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unsigned int size;
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mutex_lock(&ml_depot_init_mutex);
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inited = atomic_read(&ml_stack_depot_inited);
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if (inited != 0) {
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mutex_unlock(&ml_depot_init_mutex);
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pr_err("ml_stack_depot_inited is inited, val %d\n", inited);
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return 0;
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}
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size = sizeof(void *) * STACK_ALLOC_MAX_SLABS;
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ml_stack_slabs = (void **)vmalloc(size);
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if (!ml_stack_slabs) {
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mutex_unlock(&ml_depot_init_mutex);
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pr_err("vmalloc ml_stack_slabs %d failed.\n", size);
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return -1;
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}
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memset(ml_stack_slabs, 0, size);
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size = sizeof(struct ml_stack_record *) * STACK_HASH_SIZE;
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ml_stack_table = (struct ml_stack_record **)vmalloc(size);
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if (!ml_stack_table) {
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mutex_unlock(&ml_depot_init_mutex);
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pr_err("vmalloc ml_stack_table %d failed.\n", size);
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vfree(ml_stack_slabs);
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ml_stack_slabs = NULL;
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return -1;
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}
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memset(ml_stack_table, 0, size);
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atomic_set(&ml_stack_depot_inited, 1);
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mutex_unlock(&ml_depot_init_mutex);
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printk("ml_stack_depot_inited is inited.\n");
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return 0;
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}
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EXPORT_SYMBOL_GPL(ml_depot_init);
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int ml_get_depot_index(void)
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{
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return ml_depot_index;
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}
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EXPORT_SYMBOL_GPL(ml_get_depot_index);
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