626 lines
18 KiB
C
626 lines
18 KiB
C
// SPDX-License-Identifier: GPL-2.0-only
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/*
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* Copyright (C) 2018-2019 HUAWEI, Inc.
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* https://www.huawei.com/
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*/
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#include <sys/param.h>
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#include <sys/_maxphys.h>
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#include <sys/eventhandler.h>
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#include <sys/kernel.h>
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#include <sys/libkern.h>
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#include <sys/malloc.h>
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#include <sys/systm.h>
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#include <sys/uio.h>
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#include "compress.h"
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enum z_erofs_cache_lookup {
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Z_EROFS_CACHE_BYPASS,
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Z_EROFS_CACHE_HIT,
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Z_EROFS_CACHE_OWNER,
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Z_EROFS_CACHE_ERROR,
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};
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#define EROFS_ZCACHE_MOUNT_HARD_BUDGET (256UL * 1024)
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#define EROFS_ZCACHE_GLOBAL_HARD_BUDGET (512UL * 1024)
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#define EROFS_ZCACHE_MIN_DECODE_WORK (128UL * 1024)
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static int z_erofs_cache_enabled = 1;
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static unsigned long z_erofs_cache_mount_budget =
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EROFS_ZCACHE_MOUNT_HARD_BUDGET;
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static unsigned long z_erofs_cache_global_budget =
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EROFS_ZCACHE_GLOBAL_HARD_BUDGET;
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static unsigned long z_erofs_cache_minimum_decode_work =
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EROFS_ZCACHE_MIN_DECODE_WORK;
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TUNABLE_INT("vfs.erofs.decoded_cache.enabled", &z_erofs_cache_enabled);
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TUNABLE_ULONG("vfs.erofs.decoded_cache.mount_budget",
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&z_erofs_cache_mount_budget);
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TUNABLE_ULONG("vfs.erofs.decoded_cache.global_budget",
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&z_erofs_cache_global_budget);
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TUNABLE_ULONG("vfs.erofs.decoded_cache.minimum_decode_work",
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&z_erofs_cache_minimum_decode_work);
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static struct mtx z_erofs_cache_list_lock;
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static struct mtx z_erofs_cache_budget_lock;
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static LIST_HEAD(, erofs_sb_info) z_erofs_cache_mounts =
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LIST_HEAD_INITIALIZER(z_erofs_cache_mounts);
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static size_t z_erofs_cache_global_charged;
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static eventhandler_tag z_erofs_cache_lowmem_tag;
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MTX_SYSINIT(erofs_zcache_list, &z_erofs_cache_list_lock,
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"erofs zcache list", MTX_DEF);
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MTX_SYSINIT(erofs_zcache_budget, &z_erofs_cache_budget_lock,
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"erofs zcache budget", MTX_DEF);
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static size_t
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z_erofs_extent_cache_global_limit(void)
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{
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return (MIN(z_erofs_cache_global_budget,
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EROFS_ZCACHE_GLOBAL_HARD_BUDGET));
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}
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static bool
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z_erofs_extent_cache_reserve(size_t bytes)
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{
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size_t limit;
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bool reserved;
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reserved = false;
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mtx_lock(&z_erofs_cache_budget_lock);
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limit = z_erofs_extent_cache_global_limit();
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if (bytes <= limit && z_erofs_cache_global_charged <= limit - bytes) {
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z_erofs_cache_global_charged += bytes;
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reserved = true;
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}
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mtx_unlock(&z_erofs_cache_budget_lock);
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return (reserved);
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}
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static void
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z_erofs_extent_cache_release(size_t bytes)
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{
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mtx_lock(&z_erofs_cache_budget_lock);
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KASSERT(bytes <= z_erofs_cache_global_charged,
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("erofs decoded cache budget underflow"));
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z_erofs_cache_global_charged -= bytes;
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mtx_unlock(&z_erofs_cache_budget_lock);
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}
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static void *
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z_erofs_extent_cache_drop_locked(struct erofs_zextent_cache *cache,
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bool evicted, bool reclaimed)
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{
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struct erofs_zextent_cache_metrics *metrics;
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void *data;
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data = cache->data;
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if (cache->charged_bytes != 0) {
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KASSERT(cache->map.m_algorithmformat < Z_EROFS_COMPRESSION_MAX,
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("erofs decoded cache charged unknown codec"));
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metrics = &cache->metrics[cache->map.m_algorithmformat];
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if (cache->state == EROFS_ZCACHE_READY) {
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KASSERT(metrics->resident_bytes == cache->charged_bytes,
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("erofs decoded cache codec accounting mismatch"));
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metrics->resident_bytes = 0;
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if (evicted)
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++metrics->evictions;
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if (reclaimed)
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++metrics->reclaims;
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}
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z_erofs_extent_cache_release(cache->charged_bytes);
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cache->charged_bytes = 0;
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}
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cache->data = NULL;
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return (data);
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}
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static bool
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z_erofs_extent_cache_match(const struct erofs_zextent_cache *cache,
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const struct erofs_inode *vi, const struct erofs_map_blocks *map,
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size_t decoded_size)
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{
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return (cache->state != EROFS_ZCACHE_EMPTY && cache->nid == vi->nid &&
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cache->decoded_size == decoded_size &&
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cache->map.m_pa == map->m_pa && cache->map.m_la == map->m_la &&
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cache->map.m_plen == map->m_plen &&
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cache->map.m_llen == map->m_llen &&
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cache->map.m_deviceid == map->m_deviceid &&
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cache->map.m_algorithmformat == map->m_algorithmformat &&
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cache->map.m_flags == map->m_flags);
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}
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static enum z_erofs_cache_lookup
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z_erofs_extent_cache_claim(struct erofs_sb_info *sbi,
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const struct erofs_inode *vi, const struct erofs_map_blocks *map,
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size_t decoded_size, erofs_off_t mapoff, size_t len, void *dst, int *errorp)
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{
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struct erofs_zextent_cache *cache;
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struct erofs_zextent_cache_metrics *metrics;
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void *old;
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enum z_erofs_cache_lookup result;
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KASSERT(len <= MAXPHYS, ("erofs extent cache copy exceeds MAXPHYS"));
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KASSERT(mapoff <= decoded_size && len <= decoded_size - mapoff,
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("erofs extent cache copy exceeds decoded extent"));
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*errorp = 0;
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if (!sbi->z_extent_cache_initialized)
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return (Z_EROFS_CACHE_BYPASS);
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cache = &sbi->z_extent_cache;
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KASSERT(map->m_algorithmformat < Z_EROFS_COMPRESSION_MAX,
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("erofs decoded cache claim has unknown codec"));
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old = NULL;
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mtx_lock(&sbi->z_extent_cache_lock);
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metrics = &cache->metrics[map->m_algorithmformat];
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if (cache->closing) {
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++metrics->bypasses;
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goto bypass;
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}
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if (z_erofs_extent_cache_match(cache, vi, map, decoded_size)) {
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switch (cache->state) {
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case EROFS_ZCACHE_READY:
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KASSERT(cache->data != NULL,
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("erofs ready extent cache has no data"));
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memcpy(dst, (char *)cache->data + (size_t)mapoff, len);
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++metrics->hits;
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mtx_unlock(&sbi->z_extent_cache_lock);
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return (Z_EROFS_CACHE_HIT);
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case EROFS_ZCACHE_INFLIGHT:
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++cache->waiters;
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do {
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cv_wait(&cache->cv, &sbi->z_extent_cache_lock);
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} while (cache->state == EROFS_ZCACHE_INFLIGHT);
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KASSERT(z_erofs_extent_cache_match(cache, vi, map,
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decoded_size), ("erofs inflight cache key changed"));
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if (cache->state == EROFS_ZCACHE_READY) {
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KASSERT(cache->data != NULL,
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("erofs ready extent cache has no data"));
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memcpy(dst, (char *)cache->data + (size_t)mapoff,
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len);
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++metrics->hits;
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result = Z_EROFS_CACHE_HIT;
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} else {
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KASSERT(cache->state == EROFS_ZCACHE_FAILED &&
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cache->error > 0,
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("erofs inflight cache has no typed result"));
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*errorp = cache->error;
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result = Z_EROFS_CACHE_ERROR;
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}
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--cache->waiters;
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if (cache->state == EROFS_ZCACHE_FAILED &&
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cache->waiters == 0) {
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cache->error = 0;
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cache->state = EROFS_ZCACHE_EMPTY;
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}
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if (cache->waiters == 0)
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cv_broadcast(&cache->cv);
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mtx_unlock(&sbi->z_extent_cache_lock);
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return (result);
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case EROFS_ZCACHE_FAILED:
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if (cache->waiters != 0)
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goto bypass;
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cache->error = 0;
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cache->state = EROFS_ZCACHE_EMPTY;
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break;
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case EROFS_ZCACHE_EMPTY:
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break;
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}
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}
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if (cache->state == EROFS_ZCACHE_INFLIGHT || cache->waiters != 0) {
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++metrics->bypasses;
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goto bypass;
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}
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if (cache->state == EROFS_ZCACHE_READY) {
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old = z_erofs_extent_cache_drop_locked(cache, true, false);
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cache->state = EROFS_ZCACHE_EMPTY;
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}
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if (!z_erofs_extent_cache_reserve(decoded_size)) {
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++metrics->bypasses;
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goto bypass;
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}
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cache->map = *map;
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cache->nid = vi->nid;
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cache->decoded_size = decoded_size;
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cache->charged_bytes = decoded_size;
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cache->error = 0;
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cache->state = EROFS_ZCACHE_INFLIGHT;
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++metrics->misses;
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mtx_unlock(&sbi->z_extent_cache_lock);
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free(old, M_EROFS);
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return (Z_EROFS_CACHE_OWNER);
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bypass:
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mtx_unlock(&sbi->z_extent_cache_lock);
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free(old, M_EROFS);
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return (Z_EROFS_CACHE_BYPASS);
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}
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static void
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z_erofs_extent_cache_complete(struct erofs_sb_info *sbi,
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const struct erofs_inode *vi, const struct erofs_map_blocks *map,
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size_t decoded_size, void *decoded, int error)
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{
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struct erofs_zextent_cache *cache;
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struct erofs_zextent_cache_metrics *metrics;
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KASSERT((error == 0) == (decoded != NULL),
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("erofs extent cache completion is untyped"));
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cache = &sbi->z_extent_cache;
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mtx_lock(&sbi->z_extent_cache_lock);
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KASSERT(cache->state == EROFS_ZCACHE_INFLIGHT &&
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z_erofs_extent_cache_match(cache, vi, map, decoded_size),
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("erofs extent cache owner lost its key"));
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metrics = &cache->metrics[map->m_algorithmformat];
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if (error == 0) {
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KASSERT(cache->charged_bytes == decoded_size &&
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metrics->resident_bytes == 0,
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("erofs decoded cache success accounting mismatch"));
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cache->data = decoded;
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metrics->resident_bytes = decoded_size;
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cache->error = 0;
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cache->state = EROFS_ZCACHE_READY;
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} else {
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KASSERT(error > 0, ("erofs extent cache published negative errno"));
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z_erofs_extent_cache_release(cache->charged_bytes);
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cache->charged_bytes = 0;
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cache->error = error;
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cache->state = EROFS_ZCACHE_FAILED;
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if (cache->waiters == 0) {
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cache->error = 0;
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cache->state = EROFS_ZCACHE_EMPTY;
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}
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}
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cv_broadcast(&cache->cv);
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mtx_unlock(&sbi->z_extent_cache_lock);
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}
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static void
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z_erofs_extent_cache_lowmem(void *arg, int howto)
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{
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struct erofs_zextent_cache *cache;
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struct erofs_sb_info *sbi;
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void *data;
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(void)arg;
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(void)howto;
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mtx_lock(&z_erofs_cache_list_lock);
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LIST_FOREACH(sbi, &z_erofs_cache_mounts, z_extent_cache_link) {
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data = NULL;
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if (!mtx_trylock(&sbi->z_extent_cache_lock))
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continue;
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cache = &sbi->z_extent_cache;
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if (cache->state == EROFS_ZCACHE_READY && cache->waiters == 0) {
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data = z_erofs_extent_cache_drop_locked(cache, true, true);
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cache->state = EROFS_ZCACHE_EMPTY;
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}
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mtx_unlock(&sbi->z_extent_cache_lock);
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free(data, M_EROFS);
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}
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mtx_unlock(&z_erofs_cache_list_lock);
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}
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static void
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z_erofs_extent_cache_global_init(void *arg)
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{
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(void)arg;
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z_erofs_cache_lowmem_tag = EVENTHANDLER_REGISTER(vm_lowmem,
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z_erofs_extent_cache_lowmem, NULL, LOWMEM_PRI_DEFAULT);
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}
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static void
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z_erofs_extent_cache_global_fini(void *arg)
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{
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(void)arg;
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if (z_erofs_cache_lowmem_tag != NULL)
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EVENTHANDLER_DEREGISTER(vm_lowmem, z_erofs_cache_lowmem_tag);
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KASSERT(LIST_EMPTY(&z_erofs_cache_mounts),
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("erofs decoded cache mounts remain at unload"));
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KASSERT(z_erofs_cache_global_charged == 0,
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("erofs decoded cache bytes remain at unload"));
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}
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SYSINIT(erofs_zcache_global, SI_SUB_VFS, SI_ORDER_ANY,
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z_erofs_extent_cache_global_init, NULL);
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SYSUNINIT(erofs_zcache_global, SI_SUB_VFS, SI_ORDER_ANY,
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z_erofs_extent_cache_global_fini, NULL);
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void
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z_erofs_extent_cache_init(struct erofs_sb_info *sbi)
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{
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bzero(&sbi->z_extent_cache, sizeof(sbi->z_extent_cache));
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sbi->z_extent_cache.budget_bytes = MIN(z_erofs_cache_mount_budget,
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EROFS_ZCACHE_MOUNT_HARD_BUDGET);
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sbi->z_extent_cache.minimum_decode_work =
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z_erofs_cache_minimum_decode_work;
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mtx_init(&sbi->z_extent_cache_lock, "erofs zextent", NULL, MTX_DEF);
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cv_init(&sbi->z_extent_cache.cv, "erofs zextent");
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sbi->z_extent_cache_initialized = true;
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mtx_lock(&z_erofs_cache_list_lock);
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LIST_INSERT_HEAD(&z_erofs_cache_mounts, sbi, z_extent_cache_link);
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mtx_unlock(&z_erofs_cache_list_lock);
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}
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void
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z_erofs_extent_cache_fini(struct erofs_sb_info *sbi)
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{
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struct erofs_zextent_cache *cache;
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void *data;
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if (!sbi->z_extent_cache_initialized)
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return;
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cache = &sbi->z_extent_cache;
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mtx_lock(&z_erofs_cache_list_lock);
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LIST_REMOVE(sbi, z_extent_cache_link);
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mtx_unlock(&z_erofs_cache_list_lock);
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mtx_lock(&sbi->z_extent_cache_lock);
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cache->closing = true;
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while (cache->state == EROFS_ZCACHE_INFLIGHT || cache->waiters != 0)
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cv_wait(&cache->cv, &sbi->z_extent_cache_lock);
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data = z_erofs_extent_cache_drop_locked(cache, false, false);
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cache->error = 0;
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cache->state = EROFS_ZCACHE_EMPTY;
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sbi->z_extent_cache_initialized = false;
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mtx_unlock(&sbi->z_extent_cache_lock);
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free(data, M_EROFS);
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cv_destroy(&cache->cv);
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mtx_destroy(&sbi->z_extent_cache_lock);
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}
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static bool
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z_erofs_extent_cache_eligible(const struct erofs_sb_info *sbi,
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const struct erofs_inode *vi, const struct erofs_map_blocks *map,
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size_t len)
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{
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const struct erofs_zextent_cache *cache;
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uint64_t decode_work;
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cache = &sbi->z_extent_cache;
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if (map->m_plen > UINT64_MAX - len)
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decode_work = UINT64_MAX;
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else
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decode_work = map->m_plen + len;
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return (z_erofs_cache_enabled != 0 && len <= MAXPHYS &&
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len <= cache->budget_bytes &&
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decode_work >= cache->minimum_decode_work &&
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(map->m_flags & (EROFS_MAP_META |
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EROFS_MAP_PARTIAL_MAPPED | EROFS_MAP_PARTIAL_REF |
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EROFS_MAP_FRAGMENT)) == 0 &&
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map->m_algorithmformat < Z_EROFS_COMPRESSION_MAX &&
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sbi->z_extent_cache_initialized && vi != sbi->packed_inode &&
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vi != sbi->metabox_en);
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}
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static void
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z_erofs_extent_cache_record_bypass(struct erofs_sb_info *sbi,
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const struct erofs_map_blocks *map)
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{
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struct erofs_zextent_cache *cache;
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if (!sbi->z_extent_cache_initialized ||
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map->m_algorithmformat >= Z_EROFS_COMPRESSION_MAX)
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return;
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cache = &sbi->z_extent_cache;
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mtx_lock(&sbi->z_extent_cache_lock);
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++cache->metrics[map->m_algorithmformat].bypasses;
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mtx_unlock(&sbi->z_extent_cache_lock);
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}
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static int
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z_erofs_decode_length(const struct erofs_map_blocks *map,
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erofs_off_t mapoff, size_t want, size_t *decoded_len, bool *partial)
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{
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size_t end;
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if (mapoff > map->m_llen || want > map->m_llen - mapoff)
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return (EINTEGRITY);
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#if SIZE_MAX < UINT64_MAX
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if (map->m_llen > SIZE_MAX || mapoff > SIZE_MAX)
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return (EOVERFLOW);
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#endif
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if ((size_t)mapoff > SIZE_MAX - want)
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return (EOVERFLOW);
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end = (size_t)mapoff + want;
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*partial = (map->m_flags & EROFS_MAP_PARTIAL_REF) != 0;
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if (!*partial && (!z_erofs_decompress_supports_subextent(map) ||
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end == map->m_llen)) {
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*decoded_len = (size_t)map->m_llen;
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return (0);
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}
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*decoded_len = end;
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*partial = true;
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return (0);
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}
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static int
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z_erofs_decode_extent(struct erofs_sb_info *sbi, struct erofs_inode *vi,
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struct erofs_map_blocks *map, size_t decoded_len, bool partial, void **bufp)
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{
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struct erofs_buf buf = EROFS_BUF_INITIALIZER;
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const void *input;
|
|
void *compressed, *decoded;
|
|
int error;
|
|
|
|
*bufp = NULL;
|
|
if ((map->m_flags & EROFS_MAP_FRAGMENT) != 0)
|
|
return (EINTEGRITY);
|
|
if ((map->m_flags & EROFS_MAP_MAPPED) == 0)
|
|
return (EINTEGRITY);
|
|
#if SIZE_MAX < UINT64_MAX
|
|
if (map->m_plen > SIZE_MAX || map->m_llen > SIZE_MAX)
|
|
return (EOVERFLOW);
|
|
#endif
|
|
if (decoded_len == 0 || decoded_len > map->m_llen)
|
|
return (EINTEGRITY);
|
|
if (!partial && decoded_len != map->m_llen)
|
|
return (EINTEGRITY);
|
|
|
|
if ((map->m_flags & EROFS_MAP_META) != 0) {
|
|
error = erofs_read_metadata(sbi, vi->nid, map->m_pa,
|
|
(size_t)map->m_plen, &buf);
|
|
} else {
|
|
error = erofs_read_physical(sbi, map->m_deviceid, map->m_pa,
|
|
(size_t)map->m_plen, &compressed);
|
|
}
|
|
if (error != 0)
|
|
return (error);
|
|
input = (map->m_flags & EROFS_MAP_META) != 0 ? buf.data : compressed;
|
|
|
|
decoded = malloc(decoded_len, M_EROFS, M_WAITOK | M_ZERO);
|
|
error = z_erofs_decompress(sbi, map, input, (size_t)map->m_plen,
|
|
decoded, decoded_len, partial);
|
|
if ((map->m_flags & EROFS_MAP_META) != 0)
|
|
erofs_put_metabuf(&buf);
|
|
else
|
|
erofs_brelse(compressed);
|
|
if (error != 0) {
|
|
free(decoded, M_EROFS);
|
|
return (error);
|
|
}
|
|
*bufp = decoded;
|
|
return (0);
|
|
}
|
|
|
|
static int
|
|
z_erofs_do_read(struct erofs_sb_info *sbi, struct erofs_inode *vi,
|
|
erofs_off_t loff, size_t len, char *out)
|
|
{
|
|
struct erofs_map_blocks map;
|
|
void *decoded, *fragment;
|
|
erofs_off_t mapoff;
|
|
size_t decoded_len, done, want;
|
|
bool cache_eligible, partial;
|
|
enum z_erofs_cache_lookup cache_lookup;
|
|
int error;
|
|
|
|
done = 0;
|
|
while (done < len) {
|
|
map = (struct erofs_map_blocks) { .m_la = loff + done };
|
|
error = erofs_map_blocks(sbi, vi, &map);
|
|
if (error != 0)
|
|
return (error);
|
|
if (map.m_llen == 0 || map.m_la > loff + done ||
|
|
loff + done - map.m_la >= map.m_llen)
|
|
return (EINTEGRITY);
|
|
mapoff = loff + done - map.m_la;
|
|
#if SIZE_MAX < UINT64_MAX
|
|
if (mapoff > SIZE_MAX)
|
|
return (EOVERFLOW);
|
|
if (map.m_llen - mapoff > SIZE_MAX)
|
|
return (EOVERFLOW);
|
|
#endif
|
|
want = MIN((size_t)(map.m_llen - mapoff), len - done);
|
|
if (want == 0)
|
|
return (EINTEGRITY);
|
|
|
|
if ((map.m_flags & EROFS_MAP_FRAGMENT) != 0) {
|
|
if (sbi->packed_inode == NULL ||
|
|
sbi->packed_inode->nid == vi->nid ||
|
|
vi->z_fragmentoff > UINT64_MAX - mapoff)
|
|
return (EINTEGRITY);
|
|
error = erofs_read_data(sbi, sbi->packed_inode,
|
|
vi->z_fragmentoff + mapoff, want, &fragment);
|
|
if (error != 0)
|
|
return (error);
|
|
memcpy(out + done, fragment, want);
|
|
erofs_brelse(fragment);
|
|
} else if ((map.m_flags & EROFS_MAP_MAPPED) == 0) {
|
|
bzero(out + done, want);
|
|
} else {
|
|
error = z_erofs_decode_length(&map, mapoff, want,
|
|
&decoded_len, &partial);
|
|
if (error != 0)
|
|
return (error);
|
|
cache_eligible = !partial &&
|
|
z_erofs_extent_cache_eligible(sbi, vi, &map, decoded_len);
|
|
cache_lookup = Z_EROFS_CACHE_BYPASS;
|
|
if (cache_eligible) {
|
|
cache_lookup = z_erofs_extent_cache_claim(sbi, vi, &map,
|
|
decoded_len, mapoff, want, out + done, &error);
|
|
if (cache_lookup == Z_EROFS_CACHE_HIT) {
|
|
done += want;
|
|
continue;
|
|
}
|
|
if (cache_lookup == Z_EROFS_CACHE_ERROR)
|
|
return (error);
|
|
} else
|
|
z_erofs_extent_cache_record_bypass(sbi, &map);
|
|
error = z_erofs_decode_extent(sbi, vi, &map, decoded_len,
|
|
partial, &decoded);
|
|
if (error != 0) {
|
|
if (cache_lookup == Z_EROFS_CACHE_OWNER)
|
|
z_erofs_extent_cache_complete(sbi, vi, &map,
|
|
decoded_len, NULL, error);
|
|
return (error);
|
|
}
|
|
memcpy(out + done, (char *)decoded + (size_t)mapoff, want);
|
|
if (cache_lookup == Z_EROFS_CACHE_OWNER)
|
|
z_erofs_extent_cache_complete(sbi, vi, &map, decoded_len,
|
|
decoded, 0);
|
|
else
|
|
free(decoded, M_EROFS);
|
|
}
|
|
done += want;
|
|
}
|
|
return (0);
|
|
}
|
|
|
|
int
|
|
z_erofs_read_data(struct erofs_sb_info *sbi, struct erofs_inode *vi,
|
|
erofs_off_t loff, size_t len, void **bufp)
|
|
{
|
|
char *out;
|
|
int error;
|
|
|
|
if (bufp == NULL)
|
|
return (EINVAL);
|
|
*bufp = NULL;
|
|
if (len == 0)
|
|
return (0);
|
|
if (loff > UINT64_MAX - len)
|
|
return (EOVERFLOW);
|
|
if (loff > vi->size || len > vi->size - loff)
|
|
return (EINTEGRITY);
|
|
|
|
out = malloc(len, M_EROFS, M_WAITOK);
|
|
error = z_erofs_do_read(sbi, vi, loff, len, out);
|
|
if (error != 0) {
|
|
free(out, M_EROFS);
|
|
return (error);
|
|
}
|
|
*bufp = out;
|
|
return (0);
|
|
}
|
|
|
|
int
|
|
z_erofs_read_uio(struct erofs_sb_info *sbi, struct erofs_inode *vi,
|
|
struct uio *uio)
|
|
{
|
|
char *buf;
|
|
size_t want;
|
|
int error;
|
|
|
|
if (uio->uio_offset < 0)
|
|
return (EINVAL);
|
|
while (uio->uio_resid > 0 && (uint64_t)uio->uio_offset < vi->size) {
|
|
want = MIN((size_t)uio->uio_resid,
|
|
(size_t)MIN((uint64_t)MAXPHYS,
|
|
vi->size - (uint64_t)uio->uio_offset));
|
|
buf = malloc(want, M_EROFS, M_WAITOK);
|
|
error = z_erofs_do_read(sbi, vi, (uint64_t)uio->uio_offset,
|
|
want, buf);
|
|
if (error == 0)
|
|
error = uiomove(buf, want, uio);
|
|
free(buf, M_EROFS);
|
|
if (error != 0)
|
|
return (error);
|
|
}
|
|
return (0);
|
|
}
|