1ac27a0ecSDave Kleikamp /* 2617ba13bSMingming Cao * linux/fs/ext4/inode.c 3ac27a0ecSDave Kleikamp * 4ac27a0ecSDave Kleikamp * Copyright (C) 1992, 1993, 1994, 1995 5ac27a0ecSDave Kleikamp * Remy Card (card@masi.ibp.fr) 6ac27a0ecSDave Kleikamp * Laboratoire MASI - Institut Blaise Pascal 7ac27a0ecSDave Kleikamp * Universite Pierre et Marie Curie (Paris VI) 8ac27a0ecSDave Kleikamp * 9ac27a0ecSDave Kleikamp * from 10ac27a0ecSDave Kleikamp * 11ac27a0ecSDave Kleikamp * linux/fs/minix/inode.c 12ac27a0ecSDave Kleikamp * 13ac27a0ecSDave Kleikamp * Copyright (C) 1991, 1992 Linus Torvalds 14ac27a0ecSDave Kleikamp * 15ac27a0ecSDave Kleikamp * 64-bit file support on 64-bit platforms by Jakub Jelinek 16ac27a0ecSDave Kleikamp * (jj@sunsite.ms.mff.cuni.cz) 17ac27a0ecSDave Kleikamp * 18617ba13bSMingming Cao * Assorted race fixes, rewrite of ext4_get_block() by Al Viro, 2000 19ac27a0ecSDave Kleikamp */ 20ac27a0ecSDave Kleikamp 21ac27a0ecSDave Kleikamp #include <linux/fs.h> 22ac27a0ecSDave Kleikamp #include <linux/time.h> 23ac27a0ecSDave Kleikamp #include <linux/highuid.h> 24ac27a0ecSDave Kleikamp #include <linux/pagemap.h> 25c94c2acfSMatthew Wilcox #include <linux/dax.h> 26ac27a0ecSDave Kleikamp #include <linux/quotaops.h> 27ac27a0ecSDave Kleikamp #include <linux/string.h> 28ac27a0ecSDave Kleikamp #include <linux/buffer_head.h> 29ac27a0ecSDave Kleikamp #include <linux/writeback.h> 3064769240SAlex Tomas #include <linux/pagevec.h> 31ac27a0ecSDave Kleikamp #include <linux/mpage.h> 32e83c1397SDuane Griffin #include <linux/namei.h> 33ac27a0ecSDave Kleikamp #include <linux/uio.h> 34ac27a0ecSDave Kleikamp #include <linux/bio.h> 354c0425ffSMingming Cao #include <linux/workqueue.h> 36744692dcSJiaying Zhang #include <linux/kernel.h> 376db26ffcSAndrew Morton #include <linux/printk.h> 385a0e3ad6STejun Heo #include <linux/slab.h> 3900a1a053STheodore Ts'o #include <linux/bitops.h> 40364443cbSJan Kara #include <linux/iomap.h> 419bffad1eSTheodore Ts'o 423dcf5451SChristoph Hellwig #include "ext4_jbd2.h" 43ac27a0ecSDave Kleikamp #include "xattr.h" 44ac27a0ecSDave Kleikamp #include "acl.h" 459f125d64STheodore Ts'o #include "truncate.h" 46ac27a0ecSDave Kleikamp 479bffad1eSTheodore Ts'o #include <trace/events/ext4.h> 489bffad1eSTheodore Ts'o 49a1d6cc56SAneesh Kumar K.V #define MPAGE_DA_EXTENT_TAIL 0x01 50a1d6cc56SAneesh Kumar K.V 51814525f4SDarrick J. Wong static __u32 ext4_inode_csum(struct inode *inode, struct ext4_inode *raw, 52814525f4SDarrick J. Wong struct ext4_inode_info *ei) 53814525f4SDarrick J. Wong { 54814525f4SDarrick J. Wong struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb); 55814525f4SDarrick J. Wong __u32 csum; 56b47820edSDaeho Jeong __u16 dummy_csum = 0; 57b47820edSDaeho Jeong int offset = offsetof(struct ext4_inode, i_checksum_lo); 58b47820edSDaeho Jeong unsigned int csum_size = sizeof(dummy_csum); 59814525f4SDarrick J. Wong 60b47820edSDaeho Jeong csum = ext4_chksum(sbi, ei->i_csum_seed, (__u8 *)raw, offset); 61b47820edSDaeho Jeong csum = ext4_chksum(sbi, csum, (__u8 *)&dummy_csum, csum_size); 62b47820edSDaeho Jeong offset += csum_size; 63b47820edSDaeho Jeong csum = ext4_chksum(sbi, csum, (__u8 *)raw + offset, 64b47820edSDaeho Jeong EXT4_GOOD_OLD_INODE_SIZE - offset); 65b47820edSDaeho Jeong 66b47820edSDaeho Jeong if (EXT4_INODE_SIZE(inode->i_sb) > EXT4_GOOD_OLD_INODE_SIZE) { 67b47820edSDaeho Jeong offset = offsetof(struct ext4_inode, i_checksum_hi); 68b47820edSDaeho Jeong csum = ext4_chksum(sbi, csum, (__u8 *)raw + 69b47820edSDaeho Jeong EXT4_GOOD_OLD_INODE_SIZE, 70b47820edSDaeho Jeong offset - EXT4_GOOD_OLD_INODE_SIZE); 71b47820edSDaeho Jeong if (EXT4_FITS_IN_INODE(raw, ei, i_checksum_hi)) { 72b47820edSDaeho Jeong csum = ext4_chksum(sbi, csum, (__u8 *)&dummy_csum, 73b47820edSDaeho Jeong csum_size); 74b47820edSDaeho Jeong offset += csum_size; 75b47820edSDaeho Jeong csum = ext4_chksum(sbi, csum, (__u8 *)raw + offset, 76b47820edSDaeho Jeong EXT4_INODE_SIZE(inode->i_sb) - 77b47820edSDaeho Jeong offset); 78814525f4SDarrick J. Wong } 79b47820edSDaeho Jeong } 80814525f4SDarrick J. Wong 81814525f4SDarrick J. Wong return csum; 82814525f4SDarrick J. Wong } 83814525f4SDarrick J. Wong 84814525f4SDarrick J. Wong static int ext4_inode_csum_verify(struct inode *inode, struct ext4_inode *raw, 85814525f4SDarrick J. Wong struct ext4_inode_info *ei) 86814525f4SDarrick J. Wong { 87814525f4SDarrick J. Wong __u32 provided, calculated; 88814525f4SDarrick J. Wong 89814525f4SDarrick J. Wong if (EXT4_SB(inode->i_sb)->s_es->s_creator_os != 90814525f4SDarrick J. Wong cpu_to_le32(EXT4_OS_LINUX) || 919aa5d32bSDmitry Monakhov !ext4_has_metadata_csum(inode->i_sb)) 92814525f4SDarrick J. Wong return 1; 93814525f4SDarrick J. Wong 94814525f4SDarrick J. Wong provided = le16_to_cpu(raw->i_checksum_lo); 95814525f4SDarrick J. Wong calculated = ext4_inode_csum(inode, raw, ei); 96814525f4SDarrick J. Wong if (EXT4_INODE_SIZE(inode->i_sb) > EXT4_GOOD_OLD_INODE_SIZE && 97814525f4SDarrick J. Wong EXT4_FITS_IN_INODE(raw, ei, i_checksum_hi)) 98814525f4SDarrick J. Wong provided |= ((__u32)le16_to_cpu(raw->i_checksum_hi)) << 16; 99814525f4SDarrick J. Wong else 100814525f4SDarrick J. Wong calculated &= 0xFFFF; 101814525f4SDarrick J. Wong 102814525f4SDarrick J. Wong return provided == calculated; 103814525f4SDarrick J. Wong } 104814525f4SDarrick J. Wong 105814525f4SDarrick J. Wong static void ext4_inode_csum_set(struct inode *inode, struct ext4_inode *raw, 106814525f4SDarrick J. Wong struct ext4_inode_info *ei) 107814525f4SDarrick J. Wong { 108814525f4SDarrick J. Wong __u32 csum; 109814525f4SDarrick J. Wong 110814525f4SDarrick J. Wong if (EXT4_SB(inode->i_sb)->s_es->s_creator_os != 111814525f4SDarrick J. Wong cpu_to_le32(EXT4_OS_LINUX) || 1129aa5d32bSDmitry Monakhov !ext4_has_metadata_csum(inode->i_sb)) 113814525f4SDarrick J. Wong return; 114814525f4SDarrick J. Wong 115814525f4SDarrick J. Wong csum = ext4_inode_csum(inode, raw, ei); 116814525f4SDarrick J. Wong raw->i_checksum_lo = cpu_to_le16(csum & 0xFFFF); 117814525f4SDarrick J. Wong if (EXT4_INODE_SIZE(inode->i_sb) > EXT4_GOOD_OLD_INODE_SIZE && 118814525f4SDarrick J. Wong EXT4_FITS_IN_INODE(raw, ei, i_checksum_hi)) 119814525f4SDarrick J. Wong raw->i_checksum_hi = cpu_to_le16(csum >> 16); 120814525f4SDarrick J. Wong } 121814525f4SDarrick J. Wong 122678aaf48SJan Kara static inline int ext4_begin_ordered_truncate(struct inode *inode, 123678aaf48SJan Kara loff_t new_size) 124678aaf48SJan Kara { 1257ff9c073STheodore Ts'o trace_ext4_begin_ordered_truncate(inode, new_size); 1268aefcd55STheodore Ts'o /* 1278aefcd55STheodore Ts'o * If jinode is zero, then we never opened the file for 1288aefcd55STheodore Ts'o * writing, so there's no need to call 1298aefcd55STheodore Ts'o * jbd2_journal_begin_ordered_truncate() since there's no 1308aefcd55STheodore Ts'o * outstanding writes we need to flush. 1318aefcd55STheodore Ts'o */ 1328aefcd55STheodore Ts'o if (!EXT4_I(inode)->jinode) 1338aefcd55STheodore Ts'o return 0; 1348aefcd55STheodore Ts'o return jbd2_journal_begin_ordered_truncate(EXT4_JOURNAL(inode), 1358aefcd55STheodore Ts'o EXT4_I(inode)->jinode, 136678aaf48SJan Kara new_size); 137678aaf48SJan Kara } 138678aaf48SJan Kara 139d47992f8SLukas Czerner static void ext4_invalidatepage(struct page *page, unsigned int offset, 140d47992f8SLukas Czerner unsigned int length); 141cb20d518STheodore Ts'o static int __ext4_journalled_writepage(struct page *page, unsigned int len); 142cb20d518STheodore Ts'o static int ext4_bh_delay_or_unwritten(handle_t *handle, struct buffer_head *bh); 143fffb2739SJan Kara static int ext4_meta_trans_blocks(struct inode *inode, int lblocks, 144fffb2739SJan Kara int pextents); 14564769240SAlex Tomas 146ac27a0ecSDave Kleikamp /* 147ac27a0ecSDave Kleikamp * Test whether an inode is a fast symlink. 148ac27a0ecSDave Kleikamp */ 149f348c252STheodore Ts'o int ext4_inode_is_fast_symlink(struct inode *inode) 150ac27a0ecSDave Kleikamp { 151617ba13bSMingming Cao int ea_blocks = EXT4_I(inode)->i_file_acl ? 15265eddb56SYongqiang Yang EXT4_CLUSTER_SIZE(inode->i_sb) >> 9 : 0; 153ac27a0ecSDave Kleikamp 154bd9db175SZheng Liu if (ext4_has_inline_data(inode)) 155bd9db175SZheng Liu return 0; 156bd9db175SZheng Liu 157ac27a0ecSDave Kleikamp return (S_ISLNK(inode->i_mode) && inode->i_blocks - ea_blocks == 0); 158ac27a0ecSDave Kleikamp } 159ac27a0ecSDave Kleikamp 160ac27a0ecSDave Kleikamp /* 161ac27a0ecSDave Kleikamp * Restart the transaction associated with *handle. This does a commit, 162ac27a0ecSDave Kleikamp * so before we call here everything must be consistently dirtied against 163ac27a0ecSDave Kleikamp * this transaction. 164ac27a0ecSDave Kleikamp */ 165487caeefSJan Kara int ext4_truncate_restart_trans(handle_t *handle, struct inode *inode, 166487caeefSJan Kara int nblocks) 167ac27a0ecSDave Kleikamp { 168487caeefSJan Kara int ret; 169487caeefSJan Kara 170487caeefSJan Kara /* 171e35fd660STheodore Ts'o * Drop i_data_sem to avoid deadlock with ext4_map_blocks. At this 172487caeefSJan Kara * moment, get_block can be called only for blocks inside i_size since 173487caeefSJan Kara * page cache has been already dropped and writes are blocked by 174487caeefSJan Kara * i_mutex. So we can safely drop the i_data_sem here. 175487caeefSJan Kara */ 1760390131bSFrank Mayhar BUG_ON(EXT4_JOURNAL(inode) == NULL); 177ac27a0ecSDave Kleikamp jbd_debug(2, "restarting handle %p\n", handle); 178487caeefSJan Kara up_write(&EXT4_I(inode)->i_data_sem); 1798e8eaabeSAmir Goldstein ret = ext4_journal_restart(handle, nblocks); 180487caeefSJan Kara down_write(&EXT4_I(inode)->i_data_sem); 181fa5d1113SAneesh Kumar K.V ext4_discard_preallocations(inode); 182487caeefSJan Kara 183487caeefSJan Kara return ret; 184ac27a0ecSDave Kleikamp } 185ac27a0ecSDave Kleikamp 186ac27a0ecSDave Kleikamp /* 187ac27a0ecSDave Kleikamp * Called at the last iput() if i_nlink is zero. 188ac27a0ecSDave Kleikamp */ 1890930fcc1SAl Viro void ext4_evict_inode(struct inode *inode) 190ac27a0ecSDave Kleikamp { 191ac27a0ecSDave Kleikamp handle_t *handle; 192bc965ab3STheodore Ts'o int err; 193ac27a0ecSDave Kleikamp 1947ff9c073STheodore Ts'o trace_ext4_evict_inode(inode); 1952581fdc8SJiaying Zhang 1960930fcc1SAl Viro if (inode->i_nlink) { 1972d859db3SJan Kara /* 1982d859db3SJan Kara * When journalling data dirty buffers are tracked only in the 1992d859db3SJan Kara * journal. So although mm thinks everything is clean and 2002d859db3SJan Kara * ready for reaping the inode might still have some pages to 2012d859db3SJan Kara * write in the running transaction or waiting to be 2022d859db3SJan Kara * checkpointed. Thus calling jbd2_journal_invalidatepage() 2032d859db3SJan Kara * (via truncate_inode_pages()) to discard these buffers can 2042d859db3SJan Kara * cause data loss. Also even if we did not discard these 2052d859db3SJan Kara * buffers, we would have no way to find them after the inode 2062d859db3SJan Kara * is reaped and thus user could see stale data if he tries to 2072d859db3SJan Kara * read them before the transaction is checkpointed. So be 2082d859db3SJan Kara * careful and force everything to disk here... We use 2092d859db3SJan Kara * ei->i_datasync_tid to store the newest transaction 2102d859db3SJan Kara * containing inode's data. 2112d859db3SJan Kara * 2122d859db3SJan Kara * Note that directories do not have this problem because they 2132d859db3SJan Kara * don't use page cache. 2142d859db3SJan Kara */ 2156a7fd522SVegard Nossum if (inode->i_ino != EXT4_JOURNAL_INO && 2166a7fd522SVegard Nossum ext4_should_journal_data(inode) && 2176a7fd522SVegard Nossum (S_ISLNK(inode->i_mode) || S_ISREG(inode->i_mode))) { 2182d859db3SJan Kara journal_t *journal = EXT4_SB(inode->i_sb)->s_journal; 2192d859db3SJan Kara tid_t commit_tid = EXT4_I(inode)->i_datasync_tid; 2202d859db3SJan Kara 221d76a3a77STheodore Ts'o jbd2_complete_transaction(journal, commit_tid); 2222d859db3SJan Kara filemap_write_and_wait(&inode->i_data); 2232d859db3SJan Kara } 22491b0abe3SJohannes Weiner truncate_inode_pages_final(&inode->i_data); 2255dc23bddSJan Kara 2260930fcc1SAl Viro goto no_delete; 2270930fcc1SAl Viro } 2280930fcc1SAl Viro 229e2bfb088STheodore Ts'o if (is_bad_inode(inode)) 230e2bfb088STheodore Ts'o goto no_delete; 231871a2931SChristoph Hellwig dquot_initialize(inode); 232907f4554SChristoph Hellwig 233678aaf48SJan Kara if (ext4_should_order_data(inode)) 234678aaf48SJan Kara ext4_begin_ordered_truncate(inode, 0); 23591b0abe3SJohannes Weiner truncate_inode_pages_final(&inode->i_data); 236ac27a0ecSDave Kleikamp 2378e8ad8a5SJan Kara /* 2388e8ad8a5SJan Kara * Protect us against freezing - iput() caller didn't have to have any 2398e8ad8a5SJan Kara * protection against it 2408e8ad8a5SJan Kara */ 2418e8ad8a5SJan Kara sb_start_intwrite(inode->i_sb); 2429924a92aSTheodore Ts'o handle = ext4_journal_start(inode, EXT4_HT_TRUNCATE, 2439924a92aSTheodore Ts'o ext4_blocks_for_truncate(inode)+3); 244ac27a0ecSDave Kleikamp if (IS_ERR(handle)) { 245bc965ab3STheodore Ts'o ext4_std_error(inode->i_sb, PTR_ERR(handle)); 246ac27a0ecSDave Kleikamp /* 247ac27a0ecSDave Kleikamp * If we're going to skip the normal cleanup, we still need to 248ac27a0ecSDave Kleikamp * make sure that the in-core orphan linked list is properly 249ac27a0ecSDave Kleikamp * cleaned up. 250ac27a0ecSDave Kleikamp */ 251617ba13bSMingming Cao ext4_orphan_del(NULL, inode); 2528e8ad8a5SJan Kara sb_end_intwrite(inode->i_sb); 253ac27a0ecSDave Kleikamp goto no_delete; 254ac27a0ecSDave Kleikamp } 255ac27a0ecSDave Kleikamp 256ac27a0ecSDave Kleikamp if (IS_SYNC(inode)) 2570390131bSFrank Mayhar ext4_handle_sync(handle); 258ac27a0ecSDave Kleikamp inode->i_size = 0; 259bc965ab3STheodore Ts'o err = ext4_mark_inode_dirty(handle, inode); 260bc965ab3STheodore Ts'o if (err) { 26112062dddSEric Sandeen ext4_warning(inode->i_sb, 262bc965ab3STheodore Ts'o "couldn't mark inode dirty (err %d)", err); 263bc965ab3STheodore Ts'o goto stop_handle; 264bc965ab3STheodore Ts'o } 2652c98eb5eSTheodore Ts'o if (inode->i_blocks) { 2662c98eb5eSTheodore Ts'o err = ext4_truncate(inode); 2672c98eb5eSTheodore Ts'o if (err) { 2682c98eb5eSTheodore Ts'o ext4_error(inode->i_sb, 2692c98eb5eSTheodore Ts'o "couldn't truncate inode %lu (err %d)", 2702c98eb5eSTheodore Ts'o inode->i_ino, err); 2712c98eb5eSTheodore Ts'o goto stop_handle; 2722c98eb5eSTheodore Ts'o } 2732c98eb5eSTheodore Ts'o } 274bc965ab3STheodore Ts'o 275bc965ab3STheodore Ts'o /* 276bc965ab3STheodore Ts'o * ext4_ext_truncate() doesn't reserve any slop when it 277bc965ab3STheodore Ts'o * restarts journal transactions; therefore there may not be 278bc965ab3STheodore Ts'o * enough credits left in the handle to remove the inode from 279bc965ab3STheodore Ts'o * the orphan list and set the dtime field. 280bc965ab3STheodore Ts'o */ 2810390131bSFrank Mayhar if (!ext4_handle_has_enough_credits(handle, 3)) { 282bc965ab3STheodore Ts'o err = ext4_journal_extend(handle, 3); 283bc965ab3STheodore Ts'o if (err > 0) 284bc965ab3STheodore Ts'o err = ext4_journal_restart(handle, 3); 285bc965ab3STheodore Ts'o if (err != 0) { 28612062dddSEric Sandeen ext4_warning(inode->i_sb, 287bc965ab3STheodore Ts'o "couldn't extend journal (err %d)", err); 288bc965ab3STheodore Ts'o stop_handle: 289bc965ab3STheodore Ts'o ext4_journal_stop(handle); 29045388219STheodore Ts'o ext4_orphan_del(NULL, inode); 2918e8ad8a5SJan Kara sb_end_intwrite(inode->i_sb); 292bc965ab3STheodore Ts'o goto no_delete; 293bc965ab3STheodore Ts'o } 294bc965ab3STheodore Ts'o } 295bc965ab3STheodore Ts'o 296ac27a0ecSDave Kleikamp /* 297617ba13bSMingming Cao * Kill off the orphan record which ext4_truncate created. 298ac27a0ecSDave Kleikamp * AKPM: I think this can be inside the above `if'. 299617ba13bSMingming Cao * Note that ext4_orphan_del() has to be able to cope with the 300ac27a0ecSDave Kleikamp * deletion of a non-existent orphan - this is because we don't 301617ba13bSMingming Cao * know if ext4_truncate() actually created an orphan record. 302ac27a0ecSDave Kleikamp * (Well, we could do this if we need to, but heck - it works) 303ac27a0ecSDave Kleikamp */ 304617ba13bSMingming Cao ext4_orphan_del(handle, inode); 305617ba13bSMingming Cao EXT4_I(inode)->i_dtime = get_seconds(); 306ac27a0ecSDave Kleikamp 307ac27a0ecSDave Kleikamp /* 308ac27a0ecSDave Kleikamp * One subtle ordering requirement: if anything has gone wrong 309ac27a0ecSDave Kleikamp * (transaction abort, IO errors, whatever), then we can still 310ac27a0ecSDave Kleikamp * do these next steps (the fs will already have been marked as 311ac27a0ecSDave Kleikamp * having errors), but we can't free the inode if the mark_dirty 312ac27a0ecSDave Kleikamp * fails. 313ac27a0ecSDave Kleikamp */ 314617ba13bSMingming Cao if (ext4_mark_inode_dirty(handle, inode)) 315ac27a0ecSDave Kleikamp /* If that failed, just do the required in-core inode clear. */ 3160930fcc1SAl Viro ext4_clear_inode(inode); 317ac27a0ecSDave Kleikamp else 318617ba13bSMingming Cao ext4_free_inode(handle, inode); 319617ba13bSMingming Cao ext4_journal_stop(handle); 3208e8ad8a5SJan Kara sb_end_intwrite(inode->i_sb); 321ac27a0ecSDave Kleikamp return; 322ac27a0ecSDave Kleikamp no_delete: 3230930fcc1SAl Viro ext4_clear_inode(inode); /* We must guarantee clearing of inode... */ 324ac27a0ecSDave Kleikamp } 325ac27a0ecSDave Kleikamp 326a9e7f447SDmitry Monakhov #ifdef CONFIG_QUOTA 327a9e7f447SDmitry Monakhov qsize_t *ext4_get_reserved_space(struct inode *inode) 32860e58e0fSMingming Cao { 329a9e7f447SDmitry Monakhov return &EXT4_I(inode)->i_reserved_quota; 33060e58e0fSMingming Cao } 331a9e7f447SDmitry Monakhov #endif 3329d0be502STheodore Ts'o 33312219aeaSAneesh Kumar K.V /* 3340637c6f4STheodore Ts'o * Called with i_data_sem down, which is important since we can call 3350637c6f4STheodore Ts'o * ext4_discard_preallocations() from here. 3360637c6f4STheodore Ts'o */ 3375f634d06SAneesh Kumar K.V void ext4_da_update_reserve_space(struct inode *inode, 3385f634d06SAneesh Kumar K.V int used, int quota_claim) 33912219aeaSAneesh Kumar K.V { 34012219aeaSAneesh Kumar K.V struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb); 3410637c6f4STheodore Ts'o struct ext4_inode_info *ei = EXT4_I(inode); 34212219aeaSAneesh Kumar K.V 3430637c6f4STheodore Ts'o spin_lock(&ei->i_block_reservation_lock); 344d8990240SAditya Kali trace_ext4_da_update_reserve_space(inode, used, quota_claim); 3450637c6f4STheodore Ts'o if (unlikely(used > ei->i_reserved_data_blocks)) { 3468de5c325STheodore Ts'o ext4_warning(inode->i_sb, "%s: ino %lu, used %d " 3471084f252STheodore Ts'o "with only %d reserved data blocks", 3480637c6f4STheodore Ts'o __func__, inode->i_ino, used, 3490637c6f4STheodore Ts'o ei->i_reserved_data_blocks); 3500637c6f4STheodore Ts'o WARN_ON(1); 3510637c6f4STheodore Ts'o used = ei->i_reserved_data_blocks; 3526bc6e63fSAneesh Kumar K.V } 35312219aeaSAneesh Kumar K.V 3540637c6f4STheodore Ts'o /* Update per-inode reservations */ 3550637c6f4STheodore Ts'o ei->i_reserved_data_blocks -= used; 35671d4f7d0STheodore Ts'o percpu_counter_sub(&sbi->s_dirtyclusters_counter, used); 3570637c6f4STheodore Ts'o 35812219aeaSAneesh Kumar K.V spin_unlock(&EXT4_I(inode)->i_block_reservation_lock); 35960e58e0fSMingming Cao 36072b8ab9dSEric Sandeen /* Update quota subsystem for data blocks */ 36172b8ab9dSEric Sandeen if (quota_claim) 3627b415bf6SAditya Kali dquot_claim_block(inode, EXT4_C2B(sbi, used)); 36372b8ab9dSEric Sandeen else { 3645f634d06SAneesh Kumar K.V /* 3655f634d06SAneesh Kumar K.V * We did fallocate with an offset that is already delayed 3665f634d06SAneesh Kumar K.V * allocated. So on delayed allocated writeback we should 36772b8ab9dSEric Sandeen * not re-claim the quota for fallocated blocks. 3685f634d06SAneesh Kumar K.V */ 3697b415bf6SAditya Kali dquot_release_reservation_block(inode, EXT4_C2B(sbi, used)); 3705f634d06SAneesh Kumar K.V } 371d6014301SAneesh Kumar K.V 372d6014301SAneesh Kumar K.V /* 373d6014301SAneesh Kumar K.V * If we have done all the pending block allocations and if 374d6014301SAneesh Kumar K.V * there aren't any writers on the inode, we can discard the 375d6014301SAneesh Kumar K.V * inode's preallocations. 376d6014301SAneesh Kumar K.V */ 3770637c6f4STheodore Ts'o if ((ei->i_reserved_data_blocks == 0) && 3780637c6f4STheodore Ts'o (atomic_read(&inode->i_writecount) == 0)) 379d6014301SAneesh Kumar K.V ext4_discard_preallocations(inode); 38012219aeaSAneesh Kumar K.V } 38112219aeaSAneesh Kumar K.V 382e29136f8STheodore Ts'o static int __check_block_validity(struct inode *inode, const char *func, 383c398eda0STheodore Ts'o unsigned int line, 38424676da4STheodore Ts'o struct ext4_map_blocks *map) 3856fd058f7STheodore Ts'o { 38624676da4STheodore Ts'o if (!ext4_data_block_valid(EXT4_SB(inode->i_sb), map->m_pblk, 38724676da4STheodore Ts'o map->m_len)) { 388c398eda0STheodore Ts'o ext4_error_inode(inode, func, line, map->m_pblk, 389c398eda0STheodore Ts'o "lblock %lu mapped to illegal pblock " 39024676da4STheodore Ts'o "(length %d)", (unsigned long) map->m_lblk, 391c398eda0STheodore Ts'o map->m_len); 3926a797d27SDarrick J. Wong return -EFSCORRUPTED; 3936fd058f7STheodore Ts'o } 3946fd058f7STheodore Ts'o return 0; 3956fd058f7STheodore Ts'o } 3966fd058f7STheodore Ts'o 39753085facSJan Kara int ext4_issue_zeroout(struct inode *inode, ext4_lblk_t lblk, ext4_fsblk_t pblk, 39853085facSJan Kara ext4_lblk_t len) 39953085facSJan Kara { 40053085facSJan Kara int ret; 40153085facSJan Kara 40253085facSJan Kara if (ext4_encrypted_inode(inode)) 403a7550b30SJaegeuk Kim return fscrypt_zeroout_range(inode, lblk, pblk, len); 40453085facSJan Kara 40553085facSJan Kara ret = sb_issue_zeroout(inode->i_sb, pblk, len, GFP_NOFS); 40653085facSJan Kara if (ret > 0) 40753085facSJan Kara ret = 0; 40853085facSJan Kara 40953085facSJan Kara return ret; 41053085facSJan Kara } 41153085facSJan Kara 412e29136f8STheodore Ts'o #define check_block_validity(inode, map) \ 413c398eda0STheodore Ts'o __check_block_validity((inode), __func__, __LINE__, (map)) 414e29136f8STheodore Ts'o 415921f266bSDmitry Monakhov #ifdef ES_AGGRESSIVE_TEST 416921f266bSDmitry Monakhov static void ext4_map_blocks_es_recheck(handle_t *handle, 417921f266bSDmitry Monakhov struct inode *inode, 418921f266bSDmitry Monakhov struct ext4_map_blocks *es_map, 419921f266bSDmitry Monakhov struct ext4_map_blocks *map, 420921f266bSDmitry Monakhov int flags) 421921f266bSDmitry Monakhov { 422921f266bSDmitry Monakhov int retval; 423921f266bSDmitry Monakhov 424921f266bSDmitry Monakhov map->m_flags = 0; 425921f266bSDmitry Monakhov /* 426921f266bSDmitry Monakhov * There is a race window that the result is not the same. 427921f266bSDmitry Monakhov * e.g. xfstests #223 when dioread_nolock enables. The reason 428921f266bSDmitry Monakhov * is that we lookup a block mapping in extent status tree with 429921f266bSDmitry Monakhov * out taking i_data_sem. So at the time the unwritten extent 430921f266bSDmitry Monakhov * could be converted. 431921f266bSDmitry Monakhov */ 432c8b459f4SLukas Czerner down_read(&EXT4_I(inode)->i_data_sem); 433921f266bSDmitry Monakhov if (ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS)) { 434921f266bSDmitry Monakhov retval = ext4_ext_map_blocks(handle, inode, map, flags & 435921f266bSDmitry Monakhov EXT4_GET_BLOCKS_KEEP_SIZE); 436921f266bSDmitry Monakhov } else { 437921f266bSDmitry Monakhov retval = ext4_ind_map_blocks(handle, inode, map, flags & 438921f266bSDmitry Monakhov EXT4_GET_BLOCKS_KEEP_SIZE); 439921f266bSDmitry Monakhov } 440921f266bSDmitry Monakhov up_read((&EXT4_I(inode)->i_data_sem)); 441921f266bSDmitry Monakhov 442921f266bSDmitry Monakhov /* 443921f266bSDmitry Monakhov * We don't check m_len because extent will be collpased in status 444921f266bSDmitry Monakhov * tree. So the m_len might not equal. 445921f266bSDmitry Monakhov */ 446921f266bSDmitry Monakhov if (es_map->m_lblk != map->m_lblk || 447921f266bSDmitry Monakhov es_map->m_flags != map->m_flags || 448921f266bSDmitry Monakhov es_map->m_pblk != map->m_pblk) { 449bdafe42aSTheodore Ts'o printk("ES cache assertion failed for inode: %lu " 450921f266bSDmitry Monakhov "es_cached ex [%d/%d/%llu/%x] != " 451921f266bSDmitry Monakhov "found ex [%d/%d/%llu/%x] retval %d flags %x\n", 452921f266bSDmitry Monakhov inode->i_ino, es_map->m_lblk, es_map->m_len, 453921f266bSDmitry Monakhov es_map->m_pblk, es_map->m_flags, map->m_lblk, 454921f266bSDmitry Monakhov map->m_len, map->m_pblk, map->m_flags, 455921f266bSDmitry Monakhov retval, flags); 456921f266bSDmitry Monakhov } 457921f266bSDmitry Monakhov } 458921f266bSDmitry Monakhov #endif /* ES_AGGRESSIVE_TEST */ 459921f266bSDmitry Monakhov 46055138e0bSTheodore Ts'o /* 461e35fd660STheodore Ts'o * The ext4_map_blocks() function tries to look up the requested blocks, 4622b2d6d01STheodore Ts'o * and returns if the blocks are already mapped. 463f5ab0d1fSMingming Cao * 464f5ab0d1fSMingming Cao * Otherwise it takes the write lock of the i_data_sem and allocate blocks 465f5ab0d1fSMingming Cao * and store the allocated blocks in the result buffer head and mark it 466f5ab0d1fSMingming Cao * mapped. 467f5ab0d1fSMingming Cao * 468e35fd660STheodore Ts'o * If file type is extents based, it will call ext4_ext_map_blocks(), 469e35fd660STheodore Ts'o * Otherwise, call with ext4_ind_map_blocks() to handle indirect mapping 470f5ab0d1fSMingming Cao * based files 471f5ab0d1fSMingming Cao * 472facab4d9SJan Kara * On success, it returns the number of blocks being mapped or allocated. if 473facab4d9SJan Kara * create==0 and the blocks are pre-allocated and unwritten, the resulting @map 474facab4d9SJan Kara * is marked as unwritten. If the create == 1, it will mark @map as mapped. 475f5ab0d1fSMingming Cao * 476f5ab0d1fSMingming Cao * It returns 0 if plain look up failed (blocks have not been allocated), in 477facab4d9SJan Kara * that case, @map is returned as unmapped but we still do fill map->m_len to 478facab4d9SJan Kara * indicate the length of a hole starting at map->m_lblk. 479f5ab0d1fSMingming Cao * 480f5ab0d1fSMingming Cao * It returns the error in case of allocation failure. 481f5ab0d1fSMingming Cao */ 482e35fd660STheodore Ts'o int ext4_map_blocks(handle_t *handle, struct inode *inode, 483e35fd660STheodore Ts'o struct ext4_map_blocks *map, int flags) 4840e855ac8SAneesh Kumar K.V { 485d100eef2SZheng Liu struct extent_status es; 4860e855ac8SAneesh Kumar K.V int retval; 487b8a86845SLukas Czerner int ret = 0; 488921f266bSDmitry Monakhov #ifdef ES_AGGRESSIVE_TEST 489921f266bSDmitry Monakhov struct ext4_map_blocks orig_map; 490921f266bSDmitry Monakhov 491921f266bSDmitry Monakhov memcpy(&orig_map, map, sizeof(*map)); 492921f266bSDmitry Monakhov #endif 493f5ab0d1fSMingming Cao 494e35fd660STheodore Ts'o map->m_flags = 0; 495e35fd660STheodore Ts'o ext_debug("ext4_map_blocks(): inode %lu, flag %d, max_blocks %u," 496e35fd660STheodore Ts'o "logical block %lu\n", inode->i_ino, flags, map->m_len, 497e35fd660STheodore Ts'o (unsigned long) map->m_lblk); 498d100eef2SZheng Liu 499e861b5e9STheodore Ts'o /* 500e861b5e9STheodore Ts'o * ext4_map_blocks returns an int, and m_len is an unsigned int 501e861b5e9STheodore Ts'o */ 502e861b5e9STheodore Ts'o if (unlikely(map->m_len > INT_MAX)) 503e861b5e9STheodore Ts'o map->m_len = INT_MAX; 504e861b5e9STheodore Ts'o 5054adb6ab3SKazuya Mio /* We can handle the block number less than EXT_MAX_BLOCKS */ 5064adb6ab3SKazuya Mio if (unlikely(map->m_lblk >= EXT_MAX_BLOCKS)) 5076a797d27SDarrick J. Wong return -EFSCORRUPTED; 5084adb6ab3SKazuya Mio 509d100eef2SZheng Liu /* Lookup extent status tree firstly */ 510d100eef2SZheng Liu if (ext4_es_lookup_extent(inode, map->m_lblk, &es)) { 511d100eef2SZheng Liu if (ext4_es_is_written(&es) || ext4_es_is_unwritten(&es)) { 512d100eef2SZheng Liu map->m_pblk = ext4_es_pblock(&es) + 513d100eef2SZheng Liu map->m_lblk - es.es_lblk; 514d100eef2SZheng Liu map->m_flags |= ext4_es_is_written(&es) ? 515d100eef2SZheng Liu EXT4_MAP_MAPPED : EXT4_MAP_UNWRITTEN; 516d100eef2SZheng Liu retval = es.es_len - (map->m_lblk - es.es_lblk); 517d100eef2SZheng Liu if (retval > map->m_len) 518d100eef2SZheng Liu retval = map->m_len; 519d100eef2SZheng Liu map->m_len = retval; 520d100eef2SZheng Liu } else if (ext4_es_is_delayed(&es) || ext4_es_is_hole(&es)) { 521facab4d9SJan Kara map->m_pblk = 0; 522facab4d9SJan Kara retval = es.es_len - (map->m_lblk - es.es_lblk); 523facab4d9SJan Kara if (retval > map->m_len) 524facab4d9SJan Kara retval = map->m_len; 525facab4d9SJan Kara map->m_len = retval; 526d100eef2SZheng Liu retval = 0; 527d100eef2SZheng Liu } else { 528d100eef2SZheng Liu BUG_ON(1); 529d100eef2SZheng Liu } 530921f266bSDmitry Monakhov #ifdef ES_AGGRESSIVE_TEST 531921f266bSDmitry Monakhov ext4_map_blocks_es_recheck(handle, inode, map, 532921f266bSDmitry Monakhov &orig_map, flags); 533921f266bSDmitry Monakhov #endif 534d100eef2SZheng Liu goto found; 535d100eef2SZheng Liu } 536d100eef2SZheng Liu 5374df3d265SAneesh Kumar K.V /* 538b920c755STheodore Ts'o * Try to see if we can get the block without requesting a new 539b920c755STheodore Ts'o * file system block. 5404df3d265SAneesh Kumar K.V */ 541c8b459f4SLukas Czerner down_read(&EXT4_I(inode)->i_data_sem); 54212e9b892SDmitry Monakhov if (ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS)) { 543a4e5d88bSDmitry Monakhov retval = ext4_ext_map_blocks(handle, inode, map, flags & 544a4e5d88bSDmitry Monakhov EXT4_GET_BLOCKS_KEEP_SIZE); 5454df3d265SAneesh Kumar K.V } else { 546a4e5d88bSDmitry Monakhov retval = ext4_ind_map_blocks(handle, inode, map, flags & 547a4e5d88bSDmitry Monakhov EXT4_GET_BLOCKS_KEEP_SIZE); 5480e855ac8SAneesh Kumar K.V } 549f7fec032SZheng Liu if (retval > 0) { 5503be78c73STheodore Ts'o unsigned int status; 551f7fec032SZheng Liu 55244fb851dSZheng Liu if (unlikely(retval != map->m_len)) { 55344fb851dSZheng Liu ext4_warning(inode->i_sb, 55444fb851dSZheng Liu "ES len assertion failed for inode " 55544fb851dSZheng Liu "%lu: retval %d != map->m_len %d", 55644fb851dSZheng Liu inode->i_ino, retval, map->m_len); 55744fb851dSZheng Liu WARN_ON(1); 558921f266bSDmitry Monakhov } 559921f266bSDmitry Monakhov 560f7fec032SZheng Liu status = map->m_flags & EXT4_MAP_UNWRITTEN ? 561f7fec032SZheng Liu EXTENT_STATUS_UNWRITTEN : EXTENT_STATUS_WRITTEN; 562f7fec032SZheng Liu if (!(flags & EXT4_GET_BLOCKS_DELALLOC_RESERVE) && 563d2dc317dSLukas Czerner !(status & EXTENT_STATUS_WRITTEN) && 564f7fec032SZheng Liu ext4_find_delalloc_range(inode, map->m_lblk, 565f7fec032SZheng Liu map->m_lblk + map->m_len - 1)) 566f7fec032SZheng Liu status |= EXTENT_STATUS_DELAYED; 567f7fec032SZheng Liu ret = ext4_es_insert_extent(inode, map->m_lblk, 568f7fec032SZheng Liu map->m_len, map->m_pblk, status); 569f7fec032SZheng Liu if (ret < 0) 570f7fec032SZheng Liu retval = ret; 571f7fec032SZheng Liu } 5724df3d265SAneesh Kumar K.V up_read((&EXT4_I(inode)->i_data_sem)); 573f5ab0d1fSMingming Cao 574d100eef2SZheng Liu found: 575e35fd660STheodore Ts'o if (retval > 0 && map->m_flags & EXT4_MAP_MAPPED) { 576b8a86845SLukas Czerner ret = check_block_validity(inode, map); 5776fd058f7STheodore Ts'o if (ret != 0) 5786fd058f7STheodore Ts'o return ret; 5796fd058f7STheodore Ts'o } 5806fd058f7STheodore Ts'o 581f5ab0d1fSMingming Cao /* If it is only a block(s) look up */ 582c2177057STheodore Ts'o if ((flags & EXT4_GET_BLOCKS_CREATE) == 0) 5834df3d265SAneesh Kumar K.V return retval; 5844df3d265SAneesh Kumar K.V 5854df3d265SAneesh Kumar K.V /* 586f5ab0d1fSMingming Cao * Returns if the blocks have already allocated 587f5ab0d1fSMingming Cao * 588f5ab0d1fSMingming Cao * Note that if blocks have been preallocated 589df3ab170STao Ma * ext4_ext_get_block() returns the create = 0 590f5ab0d1fSMingming Cao * with buffer head unmapped. 591f5ab0d1fSMingming Cao */ 592e35fd660STheodore Ts'o if (retval > 0 && map->m_flags & EXT4_MAP_MAPPED) 593b8a86845SLukas Czerner /* 594b8a86845SLukas Czerner * If we need to convert extent to unwritten 595b8a86845SLukas Czerner * we continue and do the actual work in 596b8a86845SLukas Czerner * ext4_ext_map_blocks() 597b8a86845SLukas Czerner */ 598b8a86845SLukas Czerner if (!(flags & EXT4_GET_BLOCKS_CONVERT_UNWRITTEN)) 599f5ab0d1fSMingming Cao return retval; 600f5ab0d1fSMingming Cao 601f5ab0d1fSMingming Cao /* 602a25a4e1aSZheng Liu * Here we clear m_flags because after allocating an new extent, 603a25a4e1aSZheng Liu * it will be set again. 6042a8964d6SAneesh Kumar K.V */ 605a25a4e1aSZheng Liu map->m_flags &= ~EXT4_MAP_FLAGS; 6062a8964d6SAneesh Kumar K.V 6072a8964d6SAneesh Kumar K.V /* 608556615dcSLukas Czerner * New blocks allocate and/or writing to unwritten extent 609f5ab0d1fSMingming Cao * will possibly result in updating i_data, so we take 610d91bd2c1SSeunghun Lee * the write lock of i_data_sem, and call get_block() 611f5ab0d1fSMingming Cao * with create == 1 flag. 6124df3d265SAneesh Kumar K.V */ 613c8b459f4SLukas Czerner down_write(&EXT4_I(inode)->i_data_sem); 614d2a17637SMingming Cao 615d2a17637SMingming Cao /* 6164df3d265SAneesh Kumar K.V * We need to check for EXT4 here because migrate 6174df3d265SAneesh Kumar K.V * could have changed the inode type in between 6184df3d265SAneesh Kumar K.V */ 61912e9b892SDmitry Monakhov if (ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS)) { 620e35fd660STheodore Ts'o retval = ext4_ext_map_blocks(handle, inode, map, flags); 6210e855ac8SAneesh Kumar K.V } else { 622e35fd660STheodore Ts'o retval = ext4_ind_map_blocks(handle, inode, map, flags); 623267e4db9SAneesh Kumar K.V 624e35fd660STheodore Ts'o if (retval > 0 && map->m_flags & EXT4_MAP_NEW) { 625267e4db9SAneesh Kumar K.V /* 626267e4db9SAneesh Kumar K.V * We allocated new blocks which will result in 627267e4db9SAneesh Kumar K.V * i_data's format changing. Force the migrate 628267e4db9SAneesh Kumar K.V * to fail by clearing migrate flags 629267e4db9SAneesh Kumar K.V */ 63019f5fb7aSTheodore Ts'o ext4_clear_inode_state(inode, EXT4_STATE_EXT_MIGRATE); 631267e4db9SAneesh Kumar K.V } 6322ac3b6e0STheodore Ts'o 633d2a17637SMingming Cao /* 6342ac3b6e0STheodore Ts'o * Update reserved blocks/metadata blocks after successful 6355f634d06SAneesh Kumar K.V * block allocation which had been deferred till now. We don't 6365f634d06SAneesh Kumar K.V * support fallocate for non extent files. So we can update 6375f634d06SAneesh Kumar K.V * reserve space here. 638d2a17637SMingming Cao */ 6395f634d06SAneesh Kumar K.V if ((retval > 0) && 6401296cc85SAneesh Kumar K.V (flags & EXT4_GET_BLOCKS_DELALLOC_RESERVE)) 6415f634d06SAneesh Kumar K.V ext4_da_update_reserve_space(inode, retval, 1); 6425f634d06SAneesh Kumar K.V } 643d2a17637SMingming Cao 644f7fec032SZheng Liu if (retval > 0) { 6453be78c73STheodore Ts'o unsigned int status; 646f7fec032SZheng Liu 64744fb851dSZheng Liu if (unlikely(retval != map->m_len)) { 64844fb851dSZheng Liu ext4_warning(inode->i_sb, 64944fb851dSZheng Liu "ES len assertion failed for inode " 65044fb851dSZheng Liu "%lu: retval %d != map->m_len %d", 65144fb851dSZheng Liu inode->i_ino, retval, map->m_len); 65244fb851dSZheng Liu WARN_ON(1); 653921f266bSDmitry Monakhov } 654921f266bSDmitry Monakhov 655adb23551SZheng Liu /* 656c86d8db3SJan Kara * We have to zeroout blocks before inserting them into extent 657c86d8db3SJan Kara * status tree. Otherwise someone could look them up there and 6589b623df6SJan Kara * use them before they are really zeroed. We also have to 6599b623df6SJan Kara * unmap metadata before zeroing as otherwise writeback can 6609b623df6SJan Kara * overwrite zeros with stale data from block device. 661c86d8db3SJan Kara */ 662c86d8db3SJan Kara if (flags & EXT4_GET_BLOCKS_ZERO && 663c86d8db3SJan Kara map->m_flags & EXT4_MAP_MAPPED && 664c86d8db3SJan Kara map->m_flags & EXT4_MAP_NEW) { 6659b623df6SJan Kara ext4_lblk_t i; 6669b623df6SJan Kara 6679b623df6SJan Kara for (i = 0; i < map->m_len; i++) { 6689b623df6SJan Kara unmap_underlying_metadata(inode->i_sb->s_bdev, 6699b623df6SJan Kara map->m_pblk + i); 6709b623df6SJan Kara } 671c86d8db3SJan Kara ret = ext4_issue_zeroout(inode, map->m_lblk, 672c86d8db3SJan Kara map->m_pblk, map->m_len); 673c86d8db3SJan Kara if (ret) { 674c86d8db3SJan Kara retval = ret; 675c86d8db3SJan Kara goto out_sem; 676c86d8db3SJan Kara } 677c86d8db3SJan Kara } 678c86d8db3SJan Kara 679c86d8db3SJan Kara /* 680adb23551SZheng Liu * If the extent has been zeroed out, we don't need to update 681adb23551SZheng Liu * extent status tree. 682adb23551SZheng Liu */ 683adb23551SZheng Liu if ((flags & EXT4_GET_BLOCKS_PRE_IO) && 684adb23551SZheng Liu ext4_es_lookup_extent(inode, map->m_lblk, &es)) { 685adb23551SZheng Liu if (ext4_es_is_written(&es)) 686c86d8db3SJan Kara goto out_sem; 687adb23551SZheng Liu } 688f7fec032SZheng Liu status = map->m_flags & EXT4_MAP_UNWRITTEN ? 689f7fec032SZheng Liu EXTENT_STATUS_UNWRITTEN : EXTENT_STATUS_WRITTEN; 690f7fec032SZheng Liu if (!(flags & EXT4_GET_BLOCKS_DELALLOC_RESERVE) && 691d2dc317dSLukas Czerner !(status & EXTENT_STATUS_WRITTEN) && 692f7fec032SZheng Liu ext4_find_delalloc_range(inode, map->m_lblk, 693f7fec032SZheng Liu map->m_lblk + map->m_len - 1)) 694f7fec032SZheng Liu status |= EXTENT_STATUS_DELAYED; 695f7fec032SZheng Liu ret = ext4_es_insert_extent(inode, map->m_lblk, map->m_len, 696f7fec032SZheng Liu map->m_pblk, status); 697c86d8db3SJan Kara if (ret < 0) { 69851865fdaSZheng Liu retval = ret; 699c86d8db3SJan Kara goto out_sem; 700c86d8db3SJan Kara } 70151865fdaSZheng Liu } 7025356f261SAditya Kali 703c86d8db3SJan Kara out_sem: 7040e855ac8SAneesh Kumar K.V up_write((&EXT4_I(inode)->i_data_sem)); 705e35fd660STheodore Ts'o if (retval > 0 && map->m_flags & EXT4_MAP_MAPPED) { 706b8a86845SLukas Czerner ret = check_block_validity(inode, map); 7076fd058f7STheodore Ts'o if (ret != 0) 7086fd058f7STheodore Ts'o return ret; 70906bd3c36SJan Kara 71006bd3c36SJan Kara /* 71106bd3c36SJan Kara * Inodes with freshly allocated blocks where contents will be 71206bd3c36SJan Kara * visible after transaction commit must be on transaction's 71306bd3c36SJan Kara * ordered data list. 71406bd3c36SJan Kara */ 71506bd3c36SJan Kara if (map->m_flags & EXT4_MAP_NEW && 71606bd3c36SJan Kara !(map->m_flags & EXT4_MAP_UNWRITTEN) && 71706bd3c36SJan Kara !(flags & EXT4_GET_BLOCKS_ZERO) && 71806bd3c36SJan Kara !IS_NOQUOTA(inode) && 71906bd3c36SJan Kara ext4_should_order_data(inode)) { 720ee0876bcSJan Kara if (flags & EXT4_GET_BLOCKS_IO_SUBMIT) 721ee0876bcSJan Kara ret = ext4_jbd2_inode_add_wait(handle, inode); 722ee0876bcSJan Kara else 723ee0876bcSJan Kara ret = ext4_jbd2_inode_add_write(handle, inode); 72406bd3c36SJan Kara if (ret) 72506bd3c36SJan Kara return ret; 72606bd3c36SJan Kara } 7276fd058f7STheodore Ts'o } 7280e855ac8SAneesh Kumar K.V return retval; 7290e855ac8SAneesh Kumar K.V } 7300e855ac8SAneesh Kumar K.V 731ed8ad838SJan Kara /* 732ed8ad838SJan Kara * Update EXT4_MAP_FLAGS in bh->b_state. For buffer heads attached to pages 733ed8ad838SJan Kara * we have to be careful as someone else may be manipulating b_state as well. 734ed8ad838SJan Kara */ 735ed8ad838SJan Kara static void ext4_update_bh_state(struct buffer_head *bh, unsigned long flags) 736ed8ad838SJan Kara { 737ed8ad838SJan Kara unsigned long old_state; 738ed8ad838SJan Kara unsigned long new_state; 739ed8ad838SJan Kara 740ed8ad838SJan Kara flags &= EXT4_MAP_FLAGS; 741ed8ad838SJan Kara 742ed8ad838SJan Kara /* Dummy buffer_head? Set non-atomically. */ 743ed8ad838SJan Kara if (!bh->b_page) { 744ed8ad838SJan Kara bh->b_state = (bh->b_state & ~EXT4_MAP_FLAGS) | flags; 745ed8ad838SJan Kara return; 746ed8ad838SJan Kara } 747ed8ad838SJan Kara /* 748ed8ad838SJan Kara * Someone else may be modifying b_state. Be careful! This is ugly but 749ed8ad838SJan Kara * once we get rid of using bh as a container for mapping information 750ed8ad838SJan Kara * to pass to / from get_block functions, this can go away. 751ed8ad838SJan Kara */ 752ed8ad838SJan Kara do { 753ed8ad838SJan Kara old_state = READ_ONCE(bh->b_state); 754ed8ad838SJan Kara new_state = (old_state & ~EXT4_MAP_FLAGS) | flags; 755ed8ad838SJan Kara } while (unlikely( 756ed8ad838SJan Kara cmpxchg(&bh->b_state, old_state, new_state) != old_state)); 757ed8ad838SJan Kara } 758ed8ad838SJan Kara 7592ed88685STheodore Ts'o static int _ext4_get_block(struct inode *inode, sector_t iblock, 7602ed88685STheodore Ts'o struct buffer_head *bh, int flags) 761ac27a0ecSDave Kleikamp { 7622ed88685STheodore Ts'o struct ext4_map_blocks map; 763efe70c29SJan Kara int ret = 0; 764ac27a0ecSDave Kleikamp 76546c7f254STao Ma if (ext4_has_inline_data(inode)) 76646c7f254STao Ma return -ERANGE; 76746c7f254STao Ma 7682ed88685STheodore Ts'o map.m_lblk = iblock; 7692ed88685STheodore Ts'o map.m_len = bh->b_size >> inode->i_blkbits; 7702ed88685STheodore Ts'o 771efe70c29SJan Kara ret = ext4_map_blocks(ext4_journal_current_handle(), inode, &map, 772efe70c29SJan Kara flags); 773ac27a0ecSDave Kleikamp if (ret > 0) { 7742ed88685STheodore Ts'o map_bh(bh, inode->i_sb, map.m_pblk); 775ed8ad838SJan Kara ext4_update_bh_state(bh, map.m_flags); 7762ed88685STheodore Ts'o bh->b_size = inode->i_sb->s_blocksize * map.m_len; 777ac27a0ecSDave Kleikamp ret = 0; 778547edce3SRoss Zwisler } else if (ret == 0) { 779547edce3SRoss Zwisler /* hole case, need to fill in bh->b_size */ 780547edce3SRoss Zwisler bh->b_size = inode->i_sb->s_blocksize * map.m_len; 781ac27a0ecSDave Kleikamp } 782ac27a0ecSDave Kleikamp return ret; 783ac27a0ecSDave Kleikamp } 784ac27a0ecSDave Kleikamp 7852ed88685STheodore Ts'o int ext4_get_block(struct inode *inode, sector_t iblock, 7862ed88685STheodore Ts'o struct buffer_head *bh, int create) 7872ed88685STheodore Ts'o { 7882ed88685STheodore Ts'o return _ext4_get_block(inode, iblock, bh, 7892ed88685STheodore Ts'o create ? EXT4_GET_BLOCKS_CREATE : 0); 7902ed88685STheodore Ts'o } 7912ed88685STheodore Ts'o 792ac27a0ecSDave Kleikamp /* 793705965bdSJan Kara * Get block function used when preparing for buffered write if we require 794705965bdSJan Kara * creating an unwritten extent if blocks haven't been allocated. The extent 795705965bdSJan Kara * will be converted to written after the IO is complete. 796705965bdSJan Kara */ 797705965bdSJan Kara int ext4_get_block_unwritten(struct inode *inode, sector_t iblock, 798705965bdSJan Kara struct buffer_head *bh_result, int create) 799705965bdSJan Kara { 800705965bdSJan Kara ext4_debug("ext4_get_block_unwritten: inode %lu, create flag %d\n", 801705965bdSJan Kara inode->i_ino, create); 802705965bdSJan Kara return _ext4_get_block(inode, iblock, bh_result, 803705965bdSJan Kara EXT4_GET_BLOCKS_IO_CREATE_EXT); 804705965bdSJan Kara } 805705965bdSJan Kara 806efe70c29SJan Kara /* Maximum number of blocks we map for direct IO at once. */ 807efe70c29SJan Kara #define DIO_MAX_BLOCKS 4096 808efe70c29SJan Kara 809e84dfbe2SJan Kara /* 810e84dfbe2SJan Kara * Get blocks function for the cases that need to start a transaction - 811e84dfbe2SJan Kara * generally difference cases of direct IO and DAX IO. It also handles retries 812e84dfbe2SJan Kara * in case of ENOSPC. 813e84dfbe2SJan Kara */ 814e84dfbe2SJan Kara static int ext4_get_block_trans(struct inode *inode, sector_t iblock, 815e84dfbe2SJan Kara struct buffer_head *bh_result, int flags) 816efe70c29SJan Kara { 817efe70c29SJan Kara int dio_credits; 818e84dfbe2SJan Kara handle_t *handle; 819e84dfbe2SJan Kara int retries = 0; 820e84dfbe2SJan Kara int ret; 821efe70c29SJan Kara 822efe70c29SJan Kara /* Trim mapping request to maximum we can map at once for DIO */ 823efe70c29SJan Kara if (bh_result->b_size >> inode->i_blkbits > DIO_MAX_BLOCKS) 824efe70c29SJan Kara bh_result->b_size = DIO_MAX_BLOCKS << inode->i_blkbits; 825efe70c29SJan Kara dio_credits = ext4_chunk_trans_blocks(inode, 826efe70c29SJan Kara bh_result->b_size >> inode->i_blkbits); 827e84dfbe2SJan Kara retry: 828e84dfbe2SJan Kara handle = ext4_journal_start(inode, EXT4_HT_MAP_BLOCKS, dio_credits); 829e84dfbe2SJan Kara if (IS_ERR(handle)) 830e84dfbe2SJan Kara return PTR_ERR(handle); 831e84dfbe2SJan Kara 832e84dfbe2SJan Kara ret = _ext4_get_block(inode, iblock, bh_result, flags); 833e84dfbe2SJan Kara ext4_journal_stop(handle); 834e84dfbe2SJan Kara 835e84dfbe2SJan Kara if (ret == -ENOSPC && ext4_should_retry_alloc(inode->i_sb, &retries)) 836e84dfbe2SJan Kara goto retry; 837e84dfbe2SJan Kara return ret; 838efe70c29SJan Kara } 839efe70c29SJan Kara 840705965bdSJan Kara /* Get block function for DIO reads and writes to inodes without extents */ 841705965bdSJan Kara int ext4_dio_get_block(struct inode *inode, sector_t iblock, 842705965bdSJan Kara struct buffer_head *bh, int create) 843705965bdSJan Kara { 844efe70c29SJan Kara /* We don't expect handle for direct IO */ 845efe70c29SJan Kara WARN_ON_ONCE(ext4_journal_current_handle()); 846efe70c29SJan Kara 847e84dfbe2SJan Kara if (!create) 848e84dfbe2SJan Kara return _ext4_get_block(inode, iblock, bh, 0); 849e84dfbe2SJan Kara return ext4_get_block_trans(inode, iblock, bh, EXT4_GET_BLOCKS_CREATE); 850705965bdSJan Kara } 851705965bdSJan Kara 852705965bdSJan Kara /* 853109811c2SJan Kara * Get block function for AIO DIO writes when we create unwritten extent if 854705965bdSJan Kara * blocks are not allocated yet. The extent will be converted to written 855705965bdSJan Kara * after IO is complete. 856705965bdSJan Kara */ 857109811c2SJan Kara static int ext4_dio_get_block_unwritten_async(struct inode *inode, 858109811c2SJan Kara sector_t iblock, struct buffer_head *bh_result, int create) 859705965bdSJan Kara { 860efe70c29SJan Kara int ret; 861efe70c29SJan Kara 862efe70c29SJan Kara /* We don't expect handle for direct IO */ 863efe70c29SJan Kara WARN_ON_ONCE(ext4_journal_current_handle()); 864efe70c29SJan Kara 865e84dfbe2SJan Kara ret = ext4_get_block_trans(inode, iblock, bh_result, 866705965bdSJan Kara EXT4_GET_BLOCKS_IO_CREATE_EXT); 867efe70c29SJan Kara 868109811c2SJan Kara /* 869109811c2SJan Kara * When doing DIO using unwritten extents, we need io_end to convert 870109811c2SJan Kara * unwritten extents to written on IO completion. We allocate io_end 871109811c2SJan Kara * once we spot unwritten extent and store it in b_private. Generic 872109811c2SJan Kara * DIO code keeps b_private set and furthermore passes the value to 873109811c2SJan Kara * our completion callback in 'private' argument. 874109811c2SJan Kara */ 875109811c2SJan Kara if (!ret && buffer_unwritten(bh_result)) { 876109811c2SJan Kara if (!bh_result->b_private) { 877109811c2SJan Kara ext4_io_end_t *io_end; 878109811c2SJan Kara 879109811c2SJan Kara io_end = ext4_init_io_end(inode, GFP_KERNEL); 880109811c2SJan Kara if (!io_end) 881109811c2SJan Kara return -ENOMEM; 882109811c2SJan Kara bh_result->b_private = io_end; 883109811c2SJan Kara ext4_set_io_unwritten_flag(inode, io_end); 884efe70c29SJan Kara } 885109811c2SJan Kara set_buffer_defer_completion(bh_result); 886109811c2SJan Kara } 887109811c2SJan Kara 888109811c2SJan Kara return ret; 889109811c2SJan Kara } 890109811c2SJan Kara 891109811c2SJan Kara /* 892109811c2SJan Kara * Get block function for non-AIO DIO writes when we create unwritten extent if 893109811c2SJan Kara * blocks are not allocated yet. The extent will be converted to written 894109811c2SJan Kara * after IO is complete from ext4_ext_direct_IO() function. 895109811c2SJan Kara */ 896109811c2SJan Kara static int ext4_dio_get_block_unwritten_sync(struct inode *inode, 897109811c2SJan Kara sector_t iblock, struct buffer_head *bh_result, int create) 898109811c2SJan Kara { 899109811c2SJan Kara int ret; 900109811c2SJan Kara 901109811c2SJan Kara /* We don't expect handle for direct IO */ 902109811c2SJan Kara WARN_ON_ONCE(ext4_journal_current_handle()); 903109811c2SJan Kara 904e84dfbe2SJan Kara ret = ext4_get_block_trans(inode, iblock, bh_result, 905109811c2SJan Kara EXT4_GET_BLOCKS_IO_CREATE_EXT); 906109811c2SJan Kara 907109811c2SJan Kara /* 908109811c2SJan Kara * Mark inode as having pending DIO writes to unwritten extents. 909109811c2SJan Kara * ext4_ext_direct_IO() checks this flag and converts extents to 910109811c2SJan Kara * written. 911109811c2SJan Kara */ 912109811c2SJan Kara if (!ret && buffer_unwritten(bh_result)) 913109811c2SJan Kara ext4_set_inode_state(inode, EXT4_STATE_DIO_UNWRITTEN); 914efe70c29SJan Kara 915efe70c29SJan Kara return ret; 916705965bdSJan Kara } 917705965bdSJan Kara 918705965bdSJan Kara static int ext4_dio_get_block_overwrite(struct inode *inode, sector_t iblock, 919705965bdSJan Kara struct buffer_head *bh_result, int create) 920705965bdSJan Kara { 921705965bdSJan Kara int ret; 922705965bdSJan Kara 923705965bdSJan Kara ext4_debug("ext4_dio_get_block_overwrite: inode %lu, create flag %d\n", 924705965bdSJan Kara inode->i_ino, create); 925efe70c29SJan Kara /* We don't expect handle for direct IO */ 926efe70c29SJan Kara WARN_ON_ONCE(ext4_journal_current_handle()); 927efe70c29SJan Kara 928705965bdSJan Kara ret = _ext4_get_block(inode, iblock, bh_result, 0); 929705965bdSJan Kara /* 930705965bdSJan Kara * Blocks should have been preallocated! ext4_file_write_iter() checks 931705965bdSJan Kara * that. 932705965bdSJan Kara */ 933efe70c29SJan Kara WARN_ON_ONCE(!buffer_mapped(bh_result) || buffer_unwritten(bh_result)); 934705965bdSJan Kara 935705965bdSJan Kara return ret; 936705965bdSJan Kara } 937705965bdSJan Kara 938705965bdSJan Kara 939705965bdSJan Kara /* 940ac27a0ecSDave Kleikamp * `handle' can be NULL if create is zero 941ac27a0ecSDave Kleikamp */ 942617ba13bSMingming Cao struct buffer_head *ext4_getblk(handle_t *handle, struct inode *inode, 943c5e298aeSTheodore Ts'o ext4_lblk_t block, int map_flags) 944ac27a0ecSDave Kleikamp { 9452ed88685STheodore Ts'o struct ext4_map_blocks map; 9462ed88685STheodore Ts'o struct buffer_head *bh; 947c5e298aeSTheodore Ts'o int create = map_flags & EXT4_GET_BLOCKS_CREATE; 94810560082STheodore Ts'o int err; 949ac27a0ecSDave Kleikamp 950ac27a0ecSDave Kleikamp J_ASSERT(handle != NULL || create == 0); 951ac27a0ecSDave Kleikamp 9522ed88685STheodore Ts'o map.m_lblk = block; 9532ed88685STheodore Ts'o map.m_len = 1; 954c5e298aeSTheodore Ts'o err = ext4_map_blocks(handle, inode, &map, map_flags); 9552ed88685STheodore Ts'o 95610560082STheodore Ts'o if (err == 0) 95710560082STheodore Ts'o return create ? ERR_PTR(-ENOSPC) : NULL; 9582ed88685STheodore Ts'o if (err < 0) 95910560082STheodore Ts'o return ERR_PTR(err); 9602ed88685STheodore Ts'o 9612ed88685STheodore Ts'o bh = sb_getblk(inode->i_sb, map.m_pblk); 96210560082STheodore Ts'o if (unlikely(!bh)) 96310560082STheodore Ts'o return ERR_PTR(-ENOMEM); 9642ed88685STheodore Ts'o if (map.m_flags & EXT4_MAP_NEW) { 965ac27a0ecSDave Kleikamp J_ASSERT(create != 0); 966ac39849dSAneesh Kumar K.V J_ASSERT(handle != NULL); 967ac27a0ecSDave Kleikamp 968ac27a0ecSDave Kleikamp /* 969ac27a0ecSDave Kleikamp * Now that we do not always journal data, we should 970ac27a0ecSDave Kleikamp * keep in mind whether this should always journal the 971ac27a0ecSDave Kleikamp * new buffer as metadata. For now, regular file 972617ba13bSMingming Cao * writes use ext4_get_block instead, so it's not a 973ac27a0ecSDave Kleikamp * problem. 974ac27a0ecSDave Kleikamp */ 975ac27a0ecSDave Kleikamp lock_buffer(bh); 976ac27a0ecSDave Kleikamp BUFFER_TRACE(bh, "call get_create_access"); 97710560082STheodore Ts'o err = ext4_journal_get_create_access(handle, bh); 97810560082STheodore Ts'o if (unlikely(err)) { 97910560082STheodore Ts'o unlock_buffer(bh); 98010560082STheodore Ts'o goto errout; 98110560082STheodore Ts'o } 98210560082STheodore Ts'o if (!buffer_uptodate(bh)) { 983ac27a0ecSDave Kleikamp memset(bh->b_data, 0, inode->i_sb->s_blocksize); 984ac27a0ecSDave Kleikamp set_buffer_uptodate(bh); 985ac27a0ecSDave Kleikamp } 986ac27a0ecSDave Kleikamp unlock_buffer(bh); 9870390131bSFrank Mayhar BUFFER_TRACE(bh, "call ext4_handle_dirty_metadata"); 9880390131bSFrank Mayhar err = ext4_handle_dirty_metadata(handle, inode, bh); 98910560082STheodore Ts'o if (unlikely(err)) 99010560082STheodore Ts'o goto errout; 99110560082STheodore Ts'o } else 992ac27a0ecSDave Kleikamp BUFFER_TRACE(bh, "not a new buffer"); 993ac27a0ecSDave Kleikamp return bh; 99410560082STheodore Ts'o errout: 99510560082STheodore Ts'o brelse(bh); 99610560082STheodore Ts'o return ERR_PTR(err); 997ac27a0ecSDave Kleikamp } 998ac27a0ecSDave Kleikamp 999617ba13bSMingming Cao struct buffer_head *ext4_bread(handle_t *handle, struct inode *inode, 1000c5e298aeSTheodore Ts'o ext4_lblk_t block, int map_flags) 1001ac27a0ecSDave Kleikamp { 1002ac27a0ecSDave Kleikamp struct buffer_head *bh; 1003ac27a0ecSDave Kleikamp 1004c5e298aeSTheodore Ts'o bh = ext4_getblk(handle, inode, block, map_flags); 10051c215028STheodore Ts'o if (IS_ERR(bh)) 1006ac27a0ecSDave Kleikamp return bh; 10071c215028STheodore Ts'o if (!bh || buffer_uptodate(bh)) 1008ac27a0ecSDave Kleikamp return bh; 1009dfec8a14SMike Christie ll_rw_block(REQ_OP_READ, REQ_META | REQ_PRIO, 1, &bh); 1010ac27a0ecSDave Kleikamp wait_on_buffer(bh); 1011ac27a0ecSDave Kleikamp if (buffer_uptodate(bh)) 1012ac27a0ecSDave Kleikamp return bh; 1013ac27a0ecSDave Kleikamp put_bh(bh); 10141c215028STheodore Ts'o return ERR_PTR(-EIO); 1015ac27a0ecSDave Kleikamp } 1016ac27a0ecSDave Kleikamp 1017f19d5870STao Ma int ext4_walk_page_buffers(handle_t *handle, 1018ac27a0ecSDave Kleikamp struct buffer_head *head, 1019ac27a0ecSDave Kleikamp unsigned from, 1020ac27a0ecSDave Kleikamp unsigned to, 1021ac27a0ecSDave Kleikamp int *partial, 1022ac27a0ecSDave Kleikamp int (*fn)(handle_t *handle, 1023ac27a0ecSDave Kleikamp struct buffer_head *bh)) 1024ac27a0ecSDave Kleikamp { 1025ac27a0ecSDave Kleikamp struct buffer_head *bh; 1026ac27a0ecSDave Kleikamp unsigned block_start, block_end; 1027ac27a0ecSDave Kleikamp unsigned blocksize = head->b_size; 1028ac27a0ecSDave Kleikamp int err, ret = 0; 1029ac27a0ecSDave Kleikamp struct buffer_head *next; 1030ac27a0ecSDave Kleikamp 1031ac27a0ecSDave Kleikamp for (bh = head, block_start = 0; 1032ac27a0ecSDave Kleikamp ret == 0 && (bh != head || !block_start); 1033de9a55b8STheodore Ts'o block_start = block_end, bh = next) { 1034ac27a0ecSDave Kleikamp next = bh->b_this_page; 1035ac27a0ecSDave Kleikamp block_end = block_start + blocksize; 1036ac27a0ecSDave Kleikamp if (block_end <= from || block_start >= to) { 1037ac27a0ecSDave Kleikamp if (partial && !buffer_uptodate(bh)) 1038ac27a0ecSDave Kleikamp *partial = 1; 1039ac27a0ecSDave Kleikamp continue; 1040ac27a0ecSDave Kleikamp } 1041ac27a0ecSDave Kleikamp err = (*fn)(handle, bh); 1042ac27a0ecSDave Kleikamp if (!ret) 1043ac27a0ecSDave Kleikamp ret = err; 1044ac27a0ecSDave Kleikamp } 1045ac27a0ecSDave Kleikamp return ret; 1046ac27a0ecSDave Kleikamp } 1047ac27a0ecSDave Kleikamp 1048ac27a0ecSDave Kleikamp /* 1049ac27a0ecSDave Kleikamp * To preserve ordering, it is essential that the hole instantiation and 1050ac27a0ecSDave Kleikamp * the data write be encapsulated in a single transaction. We cannot 1051617ba13bSMingming Cao * close off a transaction and start a new one between the ext4_get_block() 1052dab291afSMingming Cao * and the commit_write(). So doing the jbd2_journal_start at the start of 1053ac27a0ecSDave Kleikamp * prepare_write() is the right place. 1054ac27a0ecSDave Kleikamp * 105536ade451SJan Kara * Also, this function can nest inside ext4_writepage(). In that case, we 105636ade451SJan Kara * *know* that ext4_writepage() has generated enough buffer credits to do the 105736ade451SJan Kara * whole page. So we won't block on the journal in that case, which is good, 105836ade451SJan Kara * because the caller may be PF_MEMALLOC. 1059ac27a0ecSDave Kleikamp * 1060617ba13bSMingming Cao * By accident, ext4 can be reentered when a transaction is open via 1061ac27a0ecSDave Kleikamp * quota file writes. If we were to commit the transaction while thus 1062ac27a0ecSDave Kleikamp * reentered, there can be a deadlock - we would be holding a quota 1063ac27a0ecSDave Kleikamp * lock, and the commit would never complete if another thread had a 1064ac27a0ecSDave Kleikamp * transaction open and was blocking on the quota lock - a ranking 1065ac27a0ecSDave Kleikamp * violation. 1066ac27a0ecSDave Kleikamp * 1067dab291afSMingming Cao * So what we do is to rely on the fact that jbd2_journal_stop/journal_start 1068ac27a0ecSDave Kleikamp * will _not_ run commit under these circumstances because handle->h_ref 1069ac27a0ecSDave Kleikamp * is elevated. We'll still have enough credits for the tiny quotafile 1070ac27a0ecSDave Kleikamp * write. 1071ac27a0ecSDave Kleikamp */ 1072f19d5870STao Ma int do_journal_get_write_access(handle_t *handle, 1073ac27a0ecSDave Kleikamp struct buffer_head *bh) 1074ac27a0ecSDave Kleikamp { 107556d35a4cSJan Kara int dirty = buffer_dirty(bh); 107656d35a4cSJan Kara int ret; 107756d35a4cSJan Kara 1078ac27a0ecSDave Kleikamp if (!buffer_mapped(bh) || buffer_freed(bh)) 1079ac27a0ecSDave Kleikamp return 0; 108056d35a4cSJan Kara /* 1081ebdec241SChristoph Hellwig * __block_write_begin() could have dirtied some buffers. Clean 108256d35a4cSJan Kara * the dirty bit as jbd2_journal_get_write_access() could complain 108356d35a4cSJan Kara * otherwise about fs integrity issues. Setting of the dirty bit 1084ebdec241SChristoph Hellwig * by __block_write_begin() isn't a real problem here as we clear 108556d35a4cSJan Kara * the bit before releasing a page lock and thus writeback cannot 108656d35a4cSJan Kara * ever write the buffer. 108756d35a4cSJan Kara */ 108856d35a4cSJan Kara if (dirty) 108956d35a4cSJan Kara clear_buffer_dirty(bh); 10905d601255Sliang xie BUFFER_TRACE(bh, "get write access"); 109156d35a4cSJan Kara ret = ext4_journal_get_write_access(handle, bh); 109256d35a4cSJan Kara if (!ret && dirty) 109356d35a4cSJan Kara ret = ext4_handle_dirty_metadata(handle, NULL, bh); 109456d35a4cSJan Kara return ret; 1095ac27a0ecSDave Kleikamp } 1096ac27a0ecSDave Kleikamp 10972058f83aSMichael Halcrow #ifdef CONFIG_EXT4_FS_ENCRYPTION 10982058f83aSMichael Halcrow static int ext4_block_write_begin(struct page *page, loff_t pos, unsigned len, 10992058f83aSMichael Halcrow get_block_t *get_block) 11002058f83aSMichael Halcrow { 110109cbfeafSKirill A. Shutemov unsigned from = pos & (PAGE_SIZE - 1); 11022058f83aSMichael Halcrow unsigned to = from + len; 11032058f83aSMichael Halcrow struct inode *inode = page->mapping->host; 11042058f83aSMichael Halcrow unsigned block_start, block_end; 11052058f83aSMichael Halcrow sector_t block; 11062058f83aSMichael Halcrow int err = 0; 11072058f83aSMichael Halcrow unsigned blocksize = inode->i_sb->s_blocksize; 11082058f83aSMichael Halcrow unsigned bbits; 11092058f83aSMichael Halcrow struct buffer_head *bh, *head, *wait[2], **wait_bh = wait; 11102058f83aSMichael Halcrow bool decrypt = false; 11112058f83aSMichael Halcrow 11122058f83aSMichael Halcrow BUG_ON(!PageLocked(page)); 111309cbfeafSKirill A. Shutemov BUG_ON(from > PAGE_SIZE); 111409cbfeafSKirill A. Shutemov BUG_ON(to > PAGE_SIZE); 11152058f83aSMichael Halcrow BUG_ON(from > to); 11162058f83aSMichael Halcrow 11172058f83aSMichael Halcrow if (!page_has_buffers(page)) 11182058f83aSMichael Halcrow create_empty_buffers(page, blocksize, 0); 11192058f83aSMichael Halcrow head = page_buffers(page); 11202058f83aSMichael Halcrow bbits = ilog2(blocksize); 112109cbfeafSKirill A. Shutemov block = (sector_t)page->index << (PAGE_SHIFT - bbits); 11222058f83aSMichael Halcrow 11232058f83aSMichael Halcrow for (bh = head, block_start = 0; bh != head || !block_start; 11242058f83aSMichael Halcrow block++, block_start = block_end, bh = bh->b_this_page) { 11252058f83aSMichael Halcrow block_end = block_start + blocksize; 11262058f83aSMichael Halcrow if (block_end <= from || block_start >= to) { 11272058f83aSMichael Halcrow if (PageUptodate(page)) { 11282058f83aSMichael Halcrow if (!buffer_uptodate(bh)) 11292058f83aSMichael Halcrow set_buffer_uptodate(bh); 11302058f83aSMichael Halcrow } 11312058f83aSMichael Halcrow continue; 11322058f83aSMichael Halcrow } 11332058f83aSMichael Halcrow if (buffer_new(bh)) 11342058f83aSMichael Halcrow clear_buffer_new(bh); 11352058f83aSMichael Halcrow if (!buffer_mapped(bh)) { 11362058f83aSMichael Halcrow WARN_ON(bh->b_size != blocksize); 11372058f83aSMichael Halcrow err = get_block(inode, block, bh, 1); 11382058f83aSMichael Halcrow if (err) 11392058f83aSMichael Halcrow break; 11402058f83aSMichael Halcrow if (buffer_new(bh)) { 11412058f83aSMichael Halcrow unmap_underlying_metadata(bh->b_bdev, 11422058f83aSMichael Halcrow bh->b_blocknr); 11432058f83aSMichael Halcrow if (PageUptodate(page)) { 11442058f83aSMichael Halcrow clear_buffer_new(bh); 11452058f83aSMichael Halcrow set_buffer_uptodate(bh); 11462058f83aSMichael Halcrow mark_buffer_dirty(bh); 11472058f83aSMichael Halcrow continue; 11482058f83aSMichael Halcrow } 11492058f83aSMichael Halcrow if (block_end > to || block_start < from) 11502058f83aSMichael Halcrow zero_user_segments(page, to, block_end, 11512058f83aSMichael Halcrow block_start, from); 11522058f83aSMichael Halcrow continue; 11532058f83aSMichael Halcrow } 11542058f83aSMichael Halcrow } 11552058f83aSMichael Halcrow if (PageUptodate(page)) { 11562058f83aSMichael Halcrow if (!buffer_uptodate(bh)) 11572058f83aSMichael Halcrow set_buffer_uptodate(bh); 11582058f83aSMichael Halcrow continue; 11592058f83aSMichael Halcrow } 11602058f83aSMichael Halcrow if (!buffer_uptodate(bh) && !buffer_delay(bh) && 11612058f83aSMichael Halcrow !buffer_unwritten(bh) && 11622058f83aSMichael Halcrow (block_start < from || block_end > to)) { 1163dfec8a14SMike Christie ll_rw_block(REQ_OP_READ, 0, 1, &bh); 11642058f83aSMichael Halcrow *wait_bh++ = bh; 11652058f83aSMichael Halcrow decrypt = ext4_encrypted_inode(inode) && 11662058f83aSMichael Halcrow S_ISREG(inode->i_mode); 11672058f83aSMichael Halcrow } 11682058f83aSMichael Halcrow } 11692058f83aSMichael Halcrow /* 11702058f83aSMichael Halcrow * If we issued read requests, let them complete. 11712058f83aSMichael Halcrow */ 11722058f83aSMichael Halcrow while (wait_bh > wait) { 11732058f83aSMichael Halcrow wait_on_buffer(*--wait_bh); 11742058f83aSMichael Halcrow if (!buffer_uptodate(*wait_bh)) 11752058f83aSMichael Halcrow err = -EIO; 11762058f83aSMichael Halcrow } 11772058f83aSMichael Halcrow if (unlikely(err)) 11782058f83aSMichael Halcrow page_zero_new_buffers(page, from, to); 11792058f83aSMichael Halcrow else if (decrypt) 11807821d4ddSDavid Gstir err = fscrypt_decrypt_page(page->mapping->host, page, 11819c4bb8a3SDavid Gstir PAGE_SIZE, 0, page->index); 11822058f83aSMichael Halcrow return err; 11832058f83aSMichael Halcrow } 11842058f83aSMichael Halcrow #endif 11852058f83aSMichael Halcrow 1186bfc1af65SNick Piggin static int ext4_write_begin(struct file *file, struct address_space *mapping, 1187bfc1af65SNick Piggin loff_t pos, unsigned len, unsigned flags, 1188bfc1af65SNick Piggin struct page **pagep, void **fsdata) 1189ac27a0ecSDave Kleikamp { 1190bfc1af65SNick Piggin struct inode *inode = mapping->host; 11911938a150SAneesh Kumar K.V int ret, needed_blocks; 1192ac27a0ecSDave Kleikamp handle_t *handle; 1193ac27a0ecSDave Kleikamp int retries = 0; 1194bfc1af65SNick Piggin struct page *page; 1195bfc1af65SNick Piggin pgoff_t index; 1196bfc1af65SNick Piggin unsigned from, to; 1197bfc1af65SNick Piggin 11989bffad1eSTheodore Ts'o trace_ext4_write_begin(inode, pos, len, flags); 11991938a150SAneesh Kumar K.V /* 12001938a150SAneesh Kumar K.V * Reserve one block more for addition to orphan list in case 12011938a150SAneesh Kumar K.V * we allocate blocks but write fails for some reason 12021938a150SAneesh Kumar K.V */ 12031938a150SAneesh Kumar K.V needed_blocks = ext4_writepage_trans_blocks(inode) + 1; 120409cbfeafSKirill A. Shutemov index = pos >> PAGE_SHIFT; 120509cbfeafSKirill A. Shutemov from = pos & (PAGE_SIZE - 1); 1206bfc1af65SNick Piggin to = from + len; 1207ac27a0ecSDave Kleikamp 1208f19d5870STao Ma if (ext4_test_inode_state(inode, EXT4_STATE_MAY_INLINE_DATA)) { 1209f19d5870STao Ma ret = ext4_try_to_write_inline_data(mapping, inode, pos, len, 1210f19d5870STao Ma flags, pagep); 1211f19d5870STao Ma if (ret < 0) 121247564bfbSTheodore Ts'o return ret; 121347564bfbSTheodore Ts'o if (ret == 1) 121447564bfbSTheodore Ts'o return 0; 1215f19d5870STao Ma } 1216f19d5870STao Ma 121747564bfbSTheodore Ts'o /* 121847564bfbSTheodore Ts'o * grab_cache_page_write_begin() can take a long time if the 121947564bfbSTheodore Ts'o * system is thrashing due to memory pressure, or if the page 122047564bfbSTheodore Ts'o * is being written back. So grab it first before we start 122147564bfbSTheodore Ts'o * the transaction handle. This also allows us to allocate 122247564bfbSTheodore Ts'o * the page (if needed) without using GFP_NOFS. 122347564bfbSTheodore Ts'o */ 122447564bfbSTheodore Ts'o retry_grab: 122554566b2cSNick Piggin page = grab_cache_page_write_begin(mapping, index, flags); 122647564bfbSTheodore Ts'o if (!page) 122747564bfbSTheodore Ts'o return -ENOMEM; 122847564bfbSTheodore Ts'o unlock_page(page); 122947564bfbSTheodore Ts'o 123047564bfbSTheodore Ts'o retry_journal: 12319924a92aSTheodore Ts'o handle = ext4_journal_start(inode, EXT4_HT_WRITE_PAGE, needed_blocks); 1232ac27a0ecSDave Kleikamp if (IS_ERR(handle)) { 123309cbfeafSKirill A. Shutemov put_page(page); 123447564bfbSTheodore Ts'o return PTR_ERR(handle); 1235cf108bcaSJan Kara } 1236f19d5870STao Ma 123747564bfbSTheodore Ts'o lock_page(page); 123847564bfbSTheodore Ts'o if (page->mapping != mapping) { 123947564bfbSTheodore Ts'o /* The page got truncated from under us */ 124047564bfbSTheodore Ts'o unlock_page(page); 124109cbfeafSKirill A. Shutemov put_page(page); 1242cf108bcaSJan Kara ext4_journal_stop(handle); 124347564bfbSTheodore Ts'o goto retry_grab; 1244cf108bcaSJan Kara } 12457afe5aa5SDmitry Monakhov /* In case writeback began while the page was unlocked */ 12467afe5aa5SDmitry Monakhov wait_for_stable_page(page); 1247cf108bcaSJan Kara 12482058f83aSMichael Halcrow #ifdef CONFIG_EXT4_FS_ENCRYPTION 12492058f83aSMichael Halcrow if (ext4_should_dioread_nolock(inode)) 12502058f83aSMichael Halcrow ret = ext4_block_write_begin(page, pos, len, 1251705965bdSJan Kara ext4_get_block_unwritten); 12522058f83aSMichael Halcrow else 12532058f83aSMichael Halcrow ret = ext4_block_write_begin(page, pos, len, 12542058f83aSMichael Halcrow ext4_get_block); 12552058f83aSMichael Halcrow #else 1256744692dcSJiaying Zhang if (ext4_should_dioread_nolock(inode)) 1257705965bdSJan Kara ret = __block_write_begin(page, pos, len, 1258705965bdSJan Kara ext4_get_block_unwritten); 1259744692dcSJiaying Zhang else 12606e1db88dSChristoph Hellwig ret = __block_write_begin(page, pos, len, ext4_get_block); 12612058f83aSMichael Halcrow #endif 1262bfc1af65SNick Piggin if (!ret && ext4_should_journal_data(inode)) { 1263f19d5870STao Ma ret = ext4_walk_page_buffers(handle, page_buffers(page), 1264f19d5870STao Ma from, to, NULL, 1265f19d5870STao Ma do_journal_get_write_access); 1266b46be050SAndrey Savochkin } 1267bfc1af65SNick Piggin 1268bfc1af65SNick Piggin if (ret) { 1269bfc1af65SNick Piggin unlock_page(page); 1270ae4d5372SAneesh Kumar K.V /* 12716e1db88dSChristoph Hellwig * __block_write_begin may have instantiated a few blocks 1272ae4d5372SAneesh Kumar K.V * outside i_size. Trim these off again. Don't need 1273ae4d5372SAneesh Kumar K.V * i_size_read because we hold i_mutex. 12741938a150SAneesh Kumar K.V * 12751938a150SAneesh Kumar K.V * Add inode to orphan list in case we crash before 12761938a150SAneesh Kumar K.V * truncate finishes 1277ae4d5372SAneesh Kumar K.V */ 1278ffacfa7aSJan Kara if (pos + len > inode->i_size && ext4_can_truncate(inode)) 12791938a150SAneesh Kumar K.V ext4_orphan_add(handle, inode); 12801938a150SAneesh Kumar K.V 12811938a150SAneesh Kumar K.V ext4_journal_stop(handle); 12821938a150SAneesh Kumar K.V if (pos + len > inode->i_size) { 1283b9a4207dSJan Kara ext4_truncate_failed_write(inode); 12841938a150SAneesh Kumar K.V /* 1285ffacfa7aSJan Kara * If truncate failed early the inode might 12861938a150SAneesh Kumar K.V * still be on the orphan list; we need to 12871938a150SAneesh Kumar K.V * make sure the inode is removed from the 12881938a150SAneesh Kumar K.V * orphan list in that case. 12891938a150SAneesh Kumar K.V */ 12901938a150SAneesh Kumar K.V if (inode->i_nlink) 12911938a150SAneesh Kumar K.V ext4_orphan_del(NULL, inode); 12921938a150SAneesh Kumar K.V } 1293bfc1af65SNick Piggin 129447564bfbSTheodore Ts'o if (ret == -ENOSPC && 129547564bfbSTheodore Ts'o ext4_should_retry_alloc(inode->i_sb, &retries)) 129647564bfbSTheodore Ts'o goto retry_journal; 129709cbfeafSKirill A. Shutemov put_page(page); 129847564bfbSTheodore Ts'o return ret; 129947564bfbSTheodore Ts'o } 130047564bfbSTheodore Ts'o *pagep = page; 1301ac27a0ecSDave Kleikamp return ret; 1302ac27a0ecSDave Kleikamp } 1303ac27a0ecSDave Kleikamp 1304bfc1af65SNick Piggin /* For write_end() in data=journal mode */ 1305bfc1af65SNick Piggin static int write_end_fn(handle_t *handle, struct buffer_head *bh) 1306ac27a0ecSDave Kleikamp { 130713fca323STheodore Ts'o int ret; 1308ac27a0ecSDave Kleikamp if (!buffer_mapped(bh) || buffer_freed(bh)) 1309ac27a0ecSDave Kleikamp return 0; 1310ac27a0ecSDave Kleikamp set_buffer_uptodate(bh); 131113fca323STheodore Ts'o ret = ext4_handle_dirty_metadata(handle, NULL, bh); 131213fca323STheodore Ts'o clear_buffer_meta(bh); 131313fca323STheodore Ts'o clear_buffer_prio(bh); 131413fca323STheodore Ts'o return ret; 1315ac27a0ecSDave Kleikamp } 1316ac27a0ecSDave Kleikamp 1317eed4333fSZheng Liu /* 1318eed4333fSZheng Liu * We need to pick up the new inode size which generic_commit_write gave us 1319eed4333fSZheng Liu * `file' can be NULL - eg, when called from page_symlink(). 1320eed4333fSZheng Liu * 1321eed4333fSZheng Liu * ext4 never places buffers on inode->i_mapping->private_list. metadata 1322eed4333fSZheng Liu * buffers are managed internally. 1323eed4333fSZheng Liu */ 1324eed4333fSZheng Liu static int ext4_write_end(struct file *file, 1325f8514083SAneesh Kumar K.V struct address_space *mapping, 1326f8514083SAneesh Kumar K.V loff_t pos, unsigned len, unsigned copied, 1327f8514083SAneesh Kumar K.V struct page *page, void *fsdata) 1328f8514083SAneesh Kumar K.V { 1329f8514083SAneesh Kumar K.V handle_t *handle = ext4_journal_current_handle(); 1330eed4333fSZheng Liu struct inode *inode = mapping->host; 13310572639fSXiaoguang Wang loff_t old_size = inode->i_size; 1332eed4333fSZheng Liu int ret = 0, ret2; 1333eed4333fSZheng Liu int i_size_changed = 0; 1334eed4333fSZheng Liu 1335eed4333fSZheng Liu trace_ext4_write_end(inode, pos, len, copied); 133642c832deSTheodore Ts'o if (ext4_has_inline_data(inode)) { 133742c832deSTheodore Ts'o ret = ext4_write_inline_data_end(inode, pos, len, 1338f19d5870STao Ma copied, page); 133942c832deSTheodore Ts'o if (ret < 0) 134042c832deSTheodore Ts'o goto errout; 134142c832deSTheodore Ts'o copied = ret; 134242c832deSTheodore Ts'o } else 1343f19d5870STao Ma copied = block_write_end(file, mapping, pos, 1344f19d5870STao Ma len, copied, page, fsdata); 1345f8514083SAneesh Kumar K.V /* 13464631dbf6SDmitry Monakhov * it's important to update i_size while still holding page lock: 1347f8514083SAneesh Kumar K.V * page writeout could otherwise come in and zero beyond i_size. 1348f8514083SAneesh Kumar K.V */ 13494631dbf6SDmitry Monakhov i_size_changed = ext4_update_inode_size(inode, pos + copied); 1350f8514083SAneesh Kumar K.V unlock_page(page); 135109cbfeafSKirill A. Shutemov put_page(page); 1352f8514083SAneesh Kumar K.V 13530572639fSXiaoguang Wang if (old_size < pos) 13540572639fSXiaoguang Wang pagecache_isize_extended(inode, old_size, pos); 1355f8514083SAneesh Kumar K.V /* 1356f8514083SAneesh Kumar K.V * Don't mark the inode dirty under page lock. First, it unnecessarily 1357f8514083SAneesh Kumar K.V * makes the holding time of page lock longer. Second, it forces lock 1358f8514083SAneesh Kumar K.V * ordering of page lock and transaction start for journaling 1359f8514083SAneesh Kumar K.V * filesystems. 1360f8514083SAneesh Kumar K.V */ 1361f8514083SAneesh Kumar K.V if (i_size_changed) 1362f8514083SAneesh Kumar K.V ext4_mark_inode_dirty(handle, inode); 1363f8514083SAneesh Kumar K.V 1364ffacfa7aSJan Kara if (pos + len > inode->i_size && ext4_can_truncate(inode)) 1365f8514083SAneesh Kumar K.V /* if we have allocated more blocks and copied 1366f8514083SAneesh Kumar K.V * less. We will have blocks allocated outside 1367f8514083SAneesh Kumar K.V * inode->i_size. So truncate them 1368f8514083SAneesh Kumar K.V */ 1369f8514083SAneesh Kumar K.V ext4_orphan_add(handle, inode); 137074d553aaSTheodore Ts'o errout: 1371617ba13bSMingming Cao ret2 = ext4_journal_stop(handle); 1372ac27a0ecSDave Kleikamp if (!ret) 1373ac27a0ecSDave Kleikamp ret = ret2; 1374bfc1af65SNick Piggin 1375f8514083SAneesh Kumar K.V if (pos + len > inode->i_size) { 1376b9a4207dSJan Kara ext4_truncate_failed_write(inode); 1377f8514083SAneesh Kumar K.V /* 1378ffacfa7aSJan Kara * If truncate failed early the inode might still be 1379f8514083SAneesh Kumar K.V * on the orphan list; we need to make sure the inode 1380f8514083SAneesh Kumar K.V * is removed from the orphan list in that case. 1381f8514083SAneesh Kumar K.V */ 1382f8514083SAneesh Kumar K.V if (inode->i_nlink) 1383f8514083SAneesh Kumar K.V ext4_orphan_del(NULL, inode); 1384f8514083SAneesh Kumar K.V } 1385f8514083SAneesh Kumar K.V 1386bfc1af65SNick Piggin return ret ? ret : copied; 1387ac27a0ecSDave Kleikamp } 1388ac27a0ecSDave Kleikamp 1389b90197b6STheodore Ts'o /* 1390b90197b6STheodore Ts'o * This is a private version of page_zero_new_buffers() which doesn't 1391b90197b6STheodore Ts'o * set the buffer to be dirty, since in data=journalled mode we need 1392b90197b6STheodore Ts'o * to call ext4_handle_dirty_metadata() instead. 1393b90197b6STheodore Ts'o */ 1394b90197b6STheodore Ts'o static void zero_new_buffers(struct page *page, unsigned from, unsigned to) 1395b90197b6STheodore Ts'o { 1396b90197b6STheodore Ts'o unsigned int block_start = 0, block_end; 1397b90197b6STheodore Ts'o struct buffer_head *head, *bh; 1398b90197b6STheodore Ts'o 1399b90197b6STheodore Ts'o bh = head = page_buffers(page); 1400b90197b6STheodore Ts'o do { 1401b90197b6STheodore Ts'o block_end = block_start + bh->b_size; 1402b90197b6STheodore Ts'o if (buffer_new(bh)) { 1403b90197b6STheodore Ts'o if (block_end > from && block_start < to) { 1404b90197b6STheodore Ts'o if (!PageUptodate(page)) { 1405b90197b6STheodore Ts'o unsigned start, size; 1406b90197b6STheodore Ts'o 1407b90197b6STheodore Ts'o start = max(from, block_start); 1408b90197b6STheodore Ts'o size = min(to, block_end) - start; 1409b90197b6STheodore Ts'o 1410b90197b6STheodore Ts'o zero_user(page, start, size); 1411b90197b6STheodore Ts'o set_buffer_uptodate(bh); 1412b90197b6STheodore Ts'o } 1413b90197b6STheodore Ts'o clear_buffer_new(bh); 1414b90197b6STheodore Ts'o } 1415b90197b6STheodore Ts'o } 1416b90197b6STheodore Ts'o block_start = block_end; 1417b90197b6STheodore Ts'o bh = bh->b_this_page; 1418b90197b6STheodore Ts'o } while (bh != head); 1419b90197b6STheodore Ts'o } 1420b90197b6STheodore Ts'o 1421bfc1af65SNick Piggin static int ext4_journalled_write_end(struct file *file, 1422bfc1af65SNick Piggin struct address_space *mapping, 1423bfc1af65SNick Piggin loff_t pos, unsigned len, unsigned copied, 1424bfc1af65SNick Piggin struct page *page, void *fsdata) 1425ac27a0ecSDave Kleikamp { 1426617ba13bSMingming Cao handle_t *handle = ext4_journal_current_handle(); 1427bfc1af65SNick Piggin struct inode *inode = mapping->host; 14280572639fSXiaoguang Wang loff_t old_size = inode->i_size; 1429ac27a0ecSDave Kleikamp int ret = 0, ret2; 1430ac27a0ecSDave Kleikamp int partial = 0; 1431bfc1af65SNick Piggin unsigned from, to; 14324631dbf6SDmitry Monakhov int size_changed = 0; 1433ac27a0ecSDave Kleikamp 14349bffad1eSTheodore Ts'o trace_ext4_journalled_write_end(inode, pos, len, copied); 143509cbfeafSKirill A. Shutemov from = pos & (PAGE_SIZE - 1); 1436bfc1af65SNick Piggin to = from + len; 1437bfc1af65SNick Piggin 1438441c8508SCurt Wohlgemuth BUG_ON(!ext4_handle_valid(handle)); 1439441c8508SCurt Wohlgemuth 14403fdcfb66STao Ma if (ext4_has_inline_data(inode)) 14413fdcfb66STao Ma copied = ext4_write_inline_data_end(inode, pos, len, 14423fdcfb66STao Ma copied, page); 14433fdcfb66STao Ma else { 1444bfc1af65SNick Piggin if (copied < len) { 1445bfc1af65SNick Piggin if (!PageUptodate(page)) 1446bfc1af65SNick Piggin copied = 0; 1447b90197b6STheodore Ts'o zero_new_buffers(page, from+copied, to); 1448bfc1af65SNick Piggin } 1449ac27a0ecSDave Kleikamp 1450f19d5870STao Ma ret = ext4_walk_page_buffers(handle, page_buffers(page), from, 1451bfc1af65SNick Piggin to, &partial, write_end_fn); 1452ac27a0ecSDave Kleikamp if (!partial) 1453ac27a0ecSDave Kleikamp SetPageUptodate(page); 14543fdcfb66STao Ma } 14554631dbf6SDmitry Monakhov size_changed = ext4_update_inode_size(inode, pos + copied); 145619f5fb7aSTheodore Ts'o ext4_set_inode_state(inode, EXT4_STATE_JDATA); 14572d859db3SJan Kara EXT4_I(inode)->i_datasync_tid = handle->h_transaction->t_tid; 14584631dbf6SDmitry Monakhov unlock_page(page); 145909cbfeafSKirill A. Shutemov put_page(page); 14604631dbf6SDmitry Monakhov 14610572639fSXiaoguang Wang if (old_size < pos) 14620572639fSXiaoguang Wang pagecache_isize_extended(inode, old_size, pos); 14630572639fSXiaoguang Wang 14644631dbf6SDmitry Monakhov if (size_changed) { 1465617ba13bSMingming Cao ret2 = ext4_mark_inode_dirty(handle, inode); 1466ac27a0ecSDave Kleikamp if (!ret) 1467ac27a0ecSDave Kleikamp ret = ret2; 1468ac27a0ecSDave Kleikamp } 1469bfc1af65SNick Piggin 1470ffacfa7aSJan Kara if (pos + len > inode->i_size && ext4_can_truncate(inode)) 1471f8514083SAneesh Kumar K.V /* if we have allocated more blocks and copied 1472f8514083SAneesh Kumar K.V * less. We will have blocks allocated outside 1473f8514083SAneesh Kumar K.V * inode->i_size. So truncate them 1474f8514083SAneesh Kumar K.V */ 1475f8514083SAneesh Kumar K.V ext4_orphan_add(handle, inode); 1476f8514083SAneesh Kumar K.V 1477617ba13bSMingming Cao ret2 = ext4_journal_stop(handle); 1478ac27a0ecSDave Kleikamp if (!ret) 1479ac27a0ecSDave Kleikamp ret = ret2; 1480f8514083SAneesh Kumar K.V if (pos + len > inode->i_size) { 1481b9a4207dSJan Kara ext4_truncate_failed_write(inode); 1482f8514083SAneesh Kumar K.V /* 1483ffacfa7aSJan Kara * If truncate failed early the inode might still be 1484f8514083SAneesh Kumar K.V * on the orphan list; we need to make sure the inode 1485f8514083SAneesh Kumar K.V * is removed from the orphan list in that case. 1486f8514083SAneesh Kumar K.V */ 1487f8514083SAneesh Kumar K.V if (inode->i_nlink) 1488f8514083SAneesh Kumar K.V ext4_orphan_del(NULL, inode); 1489f8514083SAneesh Kumar K.V } 1490bfc1af65SNick Piggin 1491bfc1af65SNick Piggin return ret ? ret : copied; 1492ac27a0ecSDave Kleikamp } 1493d2a17637SMingming Cao 14949d0be502STheodore Ts'o /* 1495c27e43a1SEric Whitney * Reserve space for a single cluster 14969d0be502STheodore Ts'o */ 1497c27e43a1SEric Whitney static int ext4_da_reserve_space(struct inode *inode) 1498d2a17637SMingming Cao { 1499d2a17637SMingming Cao struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb); 15000637c6f4STheodore Ts'o struct ext4_inode_info *ei = EXT4_I(inode); 15015dd4056dSChristoph Hellwig int ret; 1502d2a17637SMingming Cao 150360e58e0fSMingming Cao /* 150472b8ab9dSEric Sandeen * We will charge metadata quota at writeout time; this saves 150572b8ab9dSEric Sandeen * us from metadata over-estimation, though we may go over by 150672b8ab9dSEric Sandeen * a small amount in the end. Here we just reserve for data. 150760e58e0fSMingming Cao */ 15087b415bf6SAditya Kali ret = dquot_reserve_block(inode, EXT4_C2B(sbi, 1)); 15095dd4056dSChristoph Hellwig if (ret) 15105dd4056dSChristoph Hellwig return ret; 151103179fe9STheodore Ts'o 151203179fe9STheodore Ts'o spin_lock(&ei->i_block_reservation_lock); 151371d4f7d0STheodore Ts'o if (ext4_claim_free_clusters(sbi, 1, 0)) { 151403179fe9STheodore Ts'o spin_unlock(&ei->i_block_reservation_lock); 151503179fe9STheodore Ts'o dquot_release_reservation_block(inode, EXT4_C2B(sbi, 1)); 1516d2a17637SMingming Cao return -ENOSPC; 1517d2a17637SMingming Cao } 15189d0be502STheodore Ts'o ei->i_reserved_data_blocks++; 1519c27e43a1SEric Whitney trace_ext4_da_reserve_space(inode); 15200637c6f4STheodore Ts'o spin_unlock(&ei->i_block_reservation_lock); 152139bc680aSDmitry Monakhov 1522d2a17637SMingming Cao return 0; /* success */ 1523d2a17637SMingming Cao } 1524d2a17637SMingming Cao 152512219aeaSAneesh Kumar K.V static void ext4_da_release_space(struct inode *inode, int to_free) 1526d2a17637SMingming Cao { 1527d2a17637SMingming Cao struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb); 15280637c6f4STheodore Ts'o struct ext4_inode_info *ei = EXT4_I(inode); 1529d2a17637SMingming Cao 1530cd213226SMingming Cao if (!to_free) 1531cd213226SMingming Cao return; /* Nothing to release, exit */ 1532cd213226SMingming Cao 1533d2a17637SMingming Cao spin_lock(&EXT4_I(inode)->i_block_reservation_lock); 1534cd213226SMingming Cao 15355a58ec87SLi Zefan trace_ext4_da_release_space(inode, to_free); 15360637c6f4STheodore Ts'o if (unlikely(to_free > ei->i_reserved_data_blocks)) { 1537cd213226SMingming Cao /* 15380637c6f4STheodore Ts'o * if there aren't enough reserved blocks, then the 15390637c6f4STheodore Ts'o * counter is messed up somewhere. Since this 15400637c6f4STheodore Ts'o * function is called from invalidate page, it's 15410637c6f4STheodore Ts'o * harmless to return without any action. 1542cd213226SMingming Cao */ 15438de5c325STheodore Ts'o ext4_warning(inode->i_sb, "ext4_da_release_space: " 15440637c6f4STheodore Ts'o "ino %lu, to_free %d with only %d reserved " 15451084f252STheodore Ts'o "data blocks", inode->i_ino, to_free, 15460637c6f4STheodore Ts'o ei->i_reserved_data_blocks); 15470637c6f4STheodore Ts'o WARN_ON(1); 15480637c6f4STheodore Ts'o to_free = ei->i_reserved_data_blocks; 15490637c6f4STheodore Ts'o } 15500637c6f4STheodore Ts'o ei->i_reserved_data_blocks -= to_free; 15510637c6f4STheodore Ts'o 155272b8ab9dSEric Sandeen /* update fs dirty data blocks counter */ 155357042651STheodore Ts'o percpu_counter_sub(&sbi->s_dirtyclusters_counter, to_free); 1554d2a17637SMingming Cao 1555d2a17637SMingming Cao spin_unlock(&EXT4_I(inode)->i_block_reservation_lock); 155660e58e0fSMingming Cao 15577b415bf6SAditya Kali dquot_release_reservation_block(inode, EXT4_C2B(sbi, to_free)); 1558d2a17637SMingming Cao } 1559d2a17637SMingming Cao 1560d2a17637SMingming Cao static void ext4_da_page_release_reservation(struct page *page, 1561ca99fdd2SLukas Czerner unsigned int offset, 1562ca99fdd2SLukas Czerner unsigned int length) 1563d2a17637SMingming Cao { 15649705acd6SLukas Czerner int to_release = 0, contiguous_blks = 0; 1565d2a17637SMingming Cao struct buffer_head *head, *bh; 1566d2a17637SMingming Cao unsigned int curr_off = 0; 15677b415bf6SAditya Kali struct inode *inode = page->mapping->host; 15687b415bf6SAditya Kali struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb); 1569ca99fdd2SLukas Czerner unsigned int stop = offset + length; 15707b415bf6SAditya Kali int num_clusters; 157151865fdaSZheng Liu ext4_fsblk_t lblk; 1572d2a17637SMingming Cao 157309cbfeafSKirill A. Shutemov BUG_ON(stop > PAGE_SIZE || stop < length); 1574ca99fdd2SLukas Czerner 1575d2a17637SMingming Cao head = page_buffers(page); 1576d2a17637SMingming Cao bh = head; 1577d2a17637SMingming Cao do { 1578d2a17637SMingming Cao unsigned int next_off = curr_off + bh->b_size; 1579d2a17637SMingming Cao 1580ca99fdd2SLukas Czerner if (next_off > stop) 1581ca99fdd2SLukas Czerner break; 1582ca99fdd2SLukas Czerner 1583d2a17637SMingming Cao if ((offset <= curr_off) && (buffer_delay(bh))) { 1584d2a17637SMingming Cao to_release++; 15859705acd6SLukas Czerner contiguous_blks++; 1586d2a17637SMingming Cao clear_buffer_delay(bh); 15879705acd6SLukas Czerner } else if (contiguous_blks) { 15889705acd6SLukas Czerner lblk = page->index << 158909cbfeafSKirill A. Shutemov (PAGE_SHIFT - inode->i_blkbits); 15909705acd6SLukas Czerner lblk += (curr_off >> inode->i_blkbits) - 15919705acd6SLukas Czerner contiguous_blks; 15929705acd6SLukas Czerner ext4_es_remove_extent(inode, lblk, contiguous_blks); 15939705acd6SLukas Czerner contiguous_blks = 0; 1594d2a17637SMingming Cao } 1595d2a17637SMingming Cao curr_off = next_off; 1596d2a17637SMingming Cao } while ((bh = bh->b_this_page) != head); 15977b415bf6SAditya Kali 15989705acd6SLukas Czerner if (contiguous_blks) { 159909cbfeafSKirill A. Shutemov lblk = page->index << (PAGE_SHIFT - inode->i_blkbits); 16009705acd6SLukas Czerner lblk += (curr_off >> inode->i_blkbits) - contiguous_blks; 16019705acd6SLukas Czerner ext4_es_remove_extent(inode, lblk, contiguous_blks); 160251865fdaSZheng Liu } 160351865fdaSZheng Liu 16047b415bf6SAditya Kali /* If we have released all the blocks belonging to a cluster, then we 16057b415bf6SAditya Kali * need to release the reserved space for that cluster. */ 16067b415bf6SAditya Kali num_clusters = EXT4_NUM_B2C(sbi, to_release); 16077b415bf6SAditya Kali while (num_clusters > 0) { 160809cbfeafSKirill A. Shutemov lblk = (page->index << (PAGE_SHIFT - inode->i_blkbits)) + 16097b415bf6SAditya Kali ((num_clusters - 1) << sbi->s_cluster_bits); 16107b415bf6SAditya Kali if (sbi->s_cluster_ratio == 1 || 16117d1b1fbcSZheng Liu !ext4_find_delalloc_cluster(inode, lblk)) 16127b415bf6SAditya Kali ext4_da_release_space(inode, 1); 16137b415bf6SAditya Kali 16147b415bf6SAditya Kali num_clusters--; 16157b415bf6SAditya Kali } 1616d2a17637SMingming Cao } 1617ac27a0ecSDave Kleikamp 1618ac27a0ecSDave Kleikamp /* 161964769240SAlex Tomas * Delayed allocation stuff 162064769240SAlex Tomas */ 162164769240SAlex Tomas 16224e7ea81dSJan Kara struct mpage_da_data { 16234e7ea81dSJan Kara struct inode *inode; 16244e7ea81dSJan Kara struct writeback_control *wbc; 16256b523df4SJan Kara 16264e7ea81dSJan Kara pgoff_t first_page; /* The first page to write */ 16274e7ea81dSJan Kara pgoff_t next_page; /* Current page to examine */ 16284e7ea81dSJan Kara pgoff_t last_page; /* Last page to examine */ 162964769240SAlex Tomas /* 16304e7ea81dSJan Kara * Extent to map - this can be after first_page because that can be 16314e7ea81dSJan Kara * fully mapped. We somewhat abuse m_flags to store whether the extent 16324e7ea81dSJan Kara * is delalloc or unwritten. 163364769240SAlex Tomas */ 16344e7ea81dSJan Kara struct ext4_map_blocks map; 16354e7ea81dSJan Kara struct ext4_io_submit io_submit; /* IO submission data */ 16364e7ea81dSJan Kara }; 163764769240SAlex Tomas 16384e7ea81dSJan Kara static void mpage_release_unused_pages(struct mpage_da_data *mpd, 16394e7ea81dSJan Kara bool invalidate) 1640c4a0c46eSAneesh Kumar K.V { 1641c4a0c46eSAneesh Kumar K.V int nr_pages, i; 1642c4a0c46eSAneesh Kumar K.V pgoff_t index, end; 1643c4a0c46eSAneesh Kumar K.V struct pagevec pvec; 1644c4a0c46eSAneesh Kumar K.V struct inode *inode = mpd->inode; 1645c4a0c46eSAneesh Kumar K.V struct address_space *mapping = inode->i_mapping; 16464e7ea81dSJan Kara 16474e7ea81dSJan Kara /* This is necessary when next_page == 0. */ 16484e7ea81dSJan Kara if (mpd->first_page >= mpd->next_page) 16494e7ea81dSJan Kara return; 1650c4a0c46eSAneesh Kumar K.V 1651c7f5938aSCurt Wohlgemuth index = mpd->first_page; 1652c7f5938aSCurt Wohlgemuth end = mpd->next_page - 1; 16534e7ea81dSJan Kara if (invalidate) { 16544e7ea81dSJan Kara ext4_lblk_t start, last; 165509cbfeafSKirill A. Shutemov start = index << (PAGE_SHIFT - inode->i_blkbits); 165609cbfeafSKirill A. Shutemov last = end << (PAGE_SHIFT - inode->i_blkbits); 165751865fdaSZheng Liu ext4_es_remove_extent(inode, start, last - start + 1); 16584e7ea81dSJan Kara } 165951865fdaSZheng Liu 166066bea92cSEric Sandeen pagevec_init(&pvec, 0); 1661c4a0c46eSAneesh Kumar K.V while (index <= end) { 1662c4a0c46eSAneesh Kumar K.V nr_pages = pagevec_lookup(&pvec, mapping, index, PAGEVEC_SIZE); 1663c4a0c46eSAneesh Kumar K.V if (nr_pages == 0) 1664c4a0c46eSAneesh Kumar K.V break; 1665c4a0c46eSAneesh Kumar K.V for (i = 0; i < nr_pages; i++) { 1666c4a0c46eSAneesh Kumar K.V struct page *page = pvec.pages[i]; 16679b1d0998SJan Kara if (page->index > end) 1668c4a0c46eSAneesh Kumar K.V break; 1669c4a0c46eSAneesh Kumar K.V BUG_ON(!PageLocked(page)); 1670c4a0c46eSAneesh Kumar K.V BUG_ON(PageWriteback(page)); 16714e7ea81dSJan Kara if (invalidate) { 16724e800c03Swangguang if (page_mapped(page)) 16734e800c03Swangguang clear_page_dirty_for_io(page); 167409cbfeafSKirill A. Shutemov block_invalidatepage(page, 0, PAGE_SIZE); 1675c4a0c46eSAneesh Kumar K.V ClearPageUptodate(page); 16764e7ea81dSJan Kara } 1677c4a0c46eSAneesh Kumar K.V unlock_page(page); 1678c4a0c46eSAneesh Kumar K.V } 16799b1d0998SJan Kara index = pvec.pages[nr_pages - 1]->index + 1; 16809b1d0998SJan Kara pagevec_release(&pvec); 1681c4a0c46eSAneesh Kumar K.V } 1682c4a0c46eSAneesh Kumar K.V } 1683c4a0c46eSAneesh Kumar K.V 1684df22291fSAneesh Kumar K.V static void ext4_print_free_blocks(struct inode *inode) 1685df22291fSAneesh Kumar K.V { 1686df22291fSAneesh Kumar K.V struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb); 168792b97816STheodore Ts'o struct super_block *sb = inode->i_sb; 1688f78ee70dSLukas Czerner struct ext4_inode_info *ei = EXT4_I(inode); 168992b97816STheodore Ts'o 169092b97816STheodore Ts'o ext4_msg(sb, KERN_CRIT, "Total free blocks count %lld", 16915dee5437STheodore Ts'o EXT4_C2B(EXT4_SB(inode->i_sb), 1692f78ee70dSLukas Czerner ext4_count_free_clusters(sb))); 169392b97816STheodore Ts'o ext4_msg(sb, KERN_CRIT, "Free/Dirty block details"); 169492b97816STheodore Ts'o ext4_msg(sb, KERN_CRIT, "free_blocks=%lld", 1695f78ee70dSLukas Czerner (long long) EXT4_C2B(EXT4_SB(sb), 169657042651STheodore Ts'o percpu_counter_sum(&sbi->s_freeclusters_counter))); 169792b97816STheodore Ts'o ext4_msg(sb, KERN_CRIT, "dirty_blocks=%lld", 1698f78ee70dSLukas Czerner (long long) EXT4_C2B(EXT4_SB(sb), 16997b415bf6SAditya Kali percpu_counter_sum(&sbi->s_dirtyclusters_counter))); 170092b97816STheodore Ts'o ext4_msg(sb, KERN_CRIT, "Block reservation details"); 170192b97816STheodore Ts'o ext4_msg(sb, KERN_CRIT, "i_reserved_data_blocks=%u", 1702f78ee70dSLukas Czerner ei->i_reserved_data_blocks); 1703df22291fSAneesh Kumar K.V return; 1704df22291fSAneesh Kumar K.V } 1705df22291fSAneesh Kumar K.V 1706c364b22cSAneesh Kumar K.V static int ext4_bh_delay_or_unwritten(handle_t *handle, struct buffer_head *bh) 170729fa89d0SAneesh Kumar K.V { 1708c364b22cSAneesh Kumar K.V return (buffer_delay(bh) || buffer_unwritten(bh)) && buffer_dirty(bh); 170929fa89d0SAneesh Kumar K.V } 171029fa89d0SAneesh Kumar K.V 171164769240SAlex Tomas /* 17125356f261SAditya Kali * This function is grabs code from the very beginning of 17135356f261SAditya Kali * ext4_map_blocks, but assumes that the caller is from delayed write 17145356f261SAditya Kali * time. This function looks up the requested blocks and sets the 17155356f261SAditya Kali * buffer delay bit under the protection of i_data_sem. 17165356f261SAditya Kali */ 17175356f261SAditya Kali static int ext4_da_map_blocks(struct inode *inode, sector_t iblock, 17185356f261SAditya Kali struct ext4_map_blocks *map, 17195356f261SAditya Kali struct buffer_head *bh) 17205356f261SAditya Kali { 1721d100eef2SZheng Liu struct extent_status es; 17225356f261SAditya Kali int retval; 17235356f261SAditya Kali sector_t invalid_block = ~((sector_t) 0xffff); 1724921f266bSDmitry Monakhov #ifdef ES_AGGRESSIVE_TEST 1725921f266bSDmitry Monakhov struct ext4_map_blocks orig_map; 1726921f266bSDmitry Monakhov 1727921f266bSDmitry Monakhov memcpy(&orig_map, map, sizeof(*map)); 1728921f266bSDmitry Monakhov #endif 17295356f261SAditya Kali 17305356f261SAditya Kali if (invalid_block < ext4_blocks_count(EXT4_SB(inode->i_sb)->s_es)) 17315356f261SAditya Kali invalid_block = ~0; 17325356f261SAditya Kali 17335356f261SAditya Kali map->m_flags = 0; 17345356f261SAditya Kali ext_debug("ext4_da_map_blocks(): inode %lu, max_blocks %u," 17355356f261SAditya Kali "logical block %lu\n", inode->i_ino, map->m_len, 17365356f261SAditya Kali (unsigned long) map->m_lblk); 1737d100eef2SZheng Liu 1738d100eef2SZheng Liu /* Lookup extent status tree firstly */ 1739d100eef2SZheng Liu if (ext4_es_lookup_extent(inode, iblock, &es)) { 1740d100eef2SZheng Liu if (ext4_es_is_hole(&es)) { 1741d100eef2SZheng Liu retval = 0; 1742c8b459f4SLukas Czerner down_read(&EXT4_I(inode)->i_data_sem); 1743d100eef2SZheng Liu goto add_delayed; 1744d100eef2SZheng Liu } 1745d100eef2SZheng Liu 1746d100eef2SZheng Liu /* 1747d100eef2SZheng Liu * Delayed extent could be allocated by fallocate. 1748d100eef2SZheng Liu * So we need to check it. 1749d100eef2SZheng Liu */ 1750d100eef2SZheng Liu if (ext4_es_is_delayed(&es) && !ext4_es_is_unwritten(&es)) { 1751d100eef2SZheng Liu map_bh(bh, inode->i_sb, invalid_block); 1752d100eef2SZheng Liu set_buffer_new(bh); 1753d100eef2SZheng Liu set_buffer_delay(bh); 1754d100eef2SZheng Liu return 0; 1755d100eef2SZheng Liu } 1756d100eef2SZheng Liu 1757d100eef2SZheng Liu map->m_pblk = ext4_es_pblock(&es) + iblock - es.es_lblk; 1758d100eef2SZheng Liu retval = es.es_len - (iblock - es.es_lblk); 1759d100eef2SZheng Liu if (retval > map->m_len) 1760d100eef2SZheng Liu retval = map->m_len; 1761d100eef2SZheng Liu map->m_len = retval; 1762d100eef2SZheng Liu if (ext4_es_is_written(&es)) 1763d100eef2SZheng Liu map->m_flags |= EXT4_MAP_MAPPED; 1764d100eef2SZheng Liu else if (ext4_es_is_unwritten(&es)) 1765d100eef2SZheng Liu map->m_flags |= EXT4_MAP_UNWRITTEN; 1766d100eef2SZheng Liu else 1767d100eef2SZheng Liu BUG_ON(1); 1768d100eef2SZheng Liu 1769921f266bSDmitry Monakhov #ifdef ES_AGGRESSIVE_TEST 1770921f266bSDmitry Monakhov ext4_map_blocks_es_recheck(NULL, inode, map, &orig_map, 0); 1771921f266bSDmitry Monakhov #endif 1772d100eef2SZheng Liu return retval; 1773d100eef2SZheng Liu } 1774d100eef2SZheng Liu 17755356f261SAditya Kali /* 17765356f261SAditya Kali * Try to see if we can get the block without requesting a new 17775356f261SAditya Kali * file system block. 17785356f261SAditya Kali */ 1779c8b459f4SLukas Czerner down_read(&EXT4_I(inode)->i_data_sem); 1780cbd7584eSJan Kara if (ext4_has_inline_data(inode)) 17819c3569b5STao Ma retval = 0; 1782cbd7584eSJan Kara else if (ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS)) 17832f8e0a7cSZheng Liu retval = ext4_ext_map_blocks(NULL, inode, map, 0); 17845356f261SAditya Kali else 17852f8e0a7cSZheng Liu retval = ext4_ind_map_blocks(NULL, inode, map, 0); 17865356f261SAditya Kali 1787d100eef2SZheng Liu add_delayed: 17885356f261SAditya Kali if (retval == 0) { 1789f7fec032SZheng Liu int ret; 17905356f261SAditya Kali /* 17915356f261SAditya Kali * XXX: __block_prepare_write() unmaps passed block, 17925356f261SAditya Kali * is it OK? 17935356f261SAditya Kali */ 1794386ad67cSLukas Czerner /* 1795386ad67cSLukas Czerner * If the block was allocated from previously allocated cluster, 1796386ad67cSLukas Czerner * then we don't need to reserve it again. However we still need 1797386ad67cSLukas Czerner * to reserve metadata for every block we're going to write. 1798386ad67cSLukas Czerner */ 1799c27e43a1SEric Whitney if (EXT4_SB(inode->i_sb)->s_cluster_ratio == 1 || 1800cbd7584eSJan Kara !ext4_find_delalloc_cluster(inode, map->m_lblk)) { 1801c27e43a1SEric Whitney ret = ext4_da_reserve_space(inode); 1802f7fec032SZheng Liu if (ret) { 18035356f261SAditya Kali /* not enough space to reserve */ 1804f7fec032SZheng Liu retval = ret; 18055356f261SAditya Kali goto out_unlock; 18065356f261SAditya Kali } 1807f7fec032SZheng Liu } 18085356f261SAditya Kali 1809f7fec032SZheng Liu ret = ext4_es_insert_extent(inode, map->m_lblk, map->m_len, 1810fdc0212eSZheng Liu ~0, EXTENT_STATUS_DELAYED); 1811f7fec032SZheng Liu if (ret) { 1812f7fec032SZheng Liu retval = ret; 181351865fdaSZheng Liu goto out_unlock; 1814f7fec032SZheng Liu } 181551865fdaSZheng Liu 18165356f261SAditya Kali map_bh(bh, inode->i_sb, invalid_block); 18175356f261SAditya Kali set_buffer_new(bh); 18185356f261SAditya Kali set_buffer_delay(bh); 1819f7fec032SZheng Liu } else if (retval > 0) { 1820f7fec032SZheng Liu int ret; 18213be78c73STheodore Ts'o unsigned int status; 1822f7fec032SZheng Liu 182344fb851dSZheng Liu if (unlikely(retval != map->m_len)) { 182444fb851dSZheng Liu ext4_warning(inode->i_sb, 182544fb851dSZheng Liu "ES len assertion failed for inode " 182644fb851dSZheng Liu "%lu: retval %d != map->m_len %d", 182744fb851dSZheng Liu inode->i_ino, retval, map->m_len); 182844fb851dSZheng Liu WARN_ON(1); 1829921f266bSDmitry Monakhov } 1830921f266bSDmitry Monakhov 1831f7fec032SZheng Liu status = map->m_flags & EXT4_MAP_UNWRITTEN ? 1832f7fec032SZheng Liu EXTENT_STATUS_UNWRITTEN : EXTENT_STATUS_WRITTEN; 1833f7fec032SZheng Liu ret = ext4_es_insert_extent(inode, map->m_lblk, map->m_len, 1834f7fec032SZheng Liu map->m_pblk, status); 1835f7fec032SZheng Liu if (ret != 0) 1836f7fec032SZheng Liu retval = ret; 18375356f261SAditya Kali } 18385356f261SAditya Kali 18395356f261SAditya Kali out_unlock: 18405356f261SAditya Kali up_read((&EXT4_I(inode)->i_data_sem)); 18415356f261SAditya Kali 18425356f261SAditya Kali return retval; 18435356f261SAditya Kali } 18445356f261SAditya Kali 18455356f261SAditya Kali /* 1846d91bd2c1SSeunghun Lee * This is a special get_block_t callback which is used by 1847b920c755STheodore Ts'o * ext4_da_write_begin(). It will either return mapped block or 1848b920c755STheodore Ts'o * reserve space for a single block. 184929fa89d0SAneesh Kumar K.V * 185029fa89d0SAneesh Kumar K.V * For delayed buffer_head we have BH_Mapped, BH_New, BH_Delay set. 185129fa89d0SAneesh Kumar K.V * We also have b_blocknr = -1 and b_bdev initialized properly 185229fa89d0SAneesh Kumar K.V * 185329fa89d0SAneesh Kumar K.V * For unwritten buffer_head we have BH_Mapped, BH_New, BH_Unwritten set. 185429fa89d0SAneesh Kumar K.V * We also have b_blocknr = physicalblock mapping unwritten extent and b_bdev 185529fa89d0SAneesh Kumar K.V * initialized properly. 185664769240SAlex Tomas */ 18579c3569b5STao Ma int ext4_da_get_block_prep(struct inode *inode, sector_t iblock, 18582ed88685STheodore Ts'o struct buffer_head *bh, int create) 185964769240SAlex Tomas { 18602ed88685STheodore Ts'o struct ext4_map_blocks map; 186164769240SAlex Tomas int ret = 0; 186264769240SAlex Tomas 186364769240SAlex Tomas BUG_ON(create == 0); 18642ed88685STheodore Ts'o BUG_ON(bh->b_size != inode->i_sb->s_blocksize); 18652ed88685STheodore Ts'o 18662ed88685STheodore Ts'o map.m_lblk = iblock; 18672ed88685STheodore Ts'o map.m_len = 1; 186864769240SAlex Tomas 186964769240SAlex Tomas /* 187064769240SAlex Tomas * first, we need to know whether the block is allocated already 187164769240SAlex Tomas * preallocated blocks are unmapped but should treated 187264769240SAlex Tomas * the same as allocated blocks. 187364769240SAlex Tomas */ 18745356f261SAditya Kali ret = ext4_da_map_blocks(inode, iblock, &map, bh); 18755356f261SAditya Kali if (ret <= 0) 18762ed88685STheodore Ts'o return ret; 187764769240SAlex Tomas 18782ed88685STheodore Ts'o map_bh(bh, inode->i_sb, map.m_pblk); 1879ed8ad838SJan Kara ext4_update_bh_state(bh, map.m_flags); 18802ed88685STheodore Ts'o 18812ed88685STheodore Ts'o if (buffer_unwritten(bh)) { 18822ed88685STheodore Ts'o /* A delayed write to unwritten bh should be marked 18832ed88685STheodore Ts'o * new and mapped. Mapped ensures that we don't do 18842ed88685STheodore Ts'o * get_block multiple times when we write to the same 18852ed88685STheodore Ts'o * offset and new ensures that we do proper zero out 18862ed88685STheodore Ts'o * for partial write. 18872ed88685STheodore Ts'o */ 18882ed88685STheodore Ts'o set_buffer_new(bh); 1889c8205636STheodore Ts'o set_buffer_mapped(bh); 18902ed88685STheodore Ts'o } 18912ed88685STheodore Ts'o return 0; 189264769240SAlex Tomas } 189361628a3fSMingming Cao 189462e086beSAneesh Kumar K.V static int bget_one(handle_t *handle, struct buffer_head *bh) 189562e086beSAneesh Kumar K.V { 189662e086beSAneesh Kumar K.V get_bh(bh); 189762e086beSAneesh Kumar K.V return 0; 189862e086beSAneesh Kumar K.V } 189962e086beSAneesh Kumar K.V 190062e086beSAneesh Kumar K.V static int bput_one(handle_t *handle, struct buffer_head *bh) 190162e086beSAneesh Kumar K.V { 190262e086beSAneesh Kumar K.V put_bh(bh); 190362e086beSAneesh Kumar K.V return 0; 190462e086beSAneesh Kumar K.V } 190562e086beSAneesh Kumar K.V 190662e086beSAneesh Kumar K.V static int __ext4_journalled_writepage(struct page *page, 190762e086beSAneesh Kumar K.V unsigned int len) 190862e086beSAneesh Kumar K.V { 190962e086beSAneesh Kumar K.V struct address_space *mapping = page->mapping; 191062e086beSAneesh Kumar K.V struct inode *inode = mapping->host; 19113fdcfb66STao Ma struct buffer_head *page_bufs = NULL; 191262e086beSAneesh Kumar K.V handle_t *handle = NULL; 19133fdcfb66STao Ma int ret = 0, err = 0; 19143fdcfb66STao Ma int inline_data = ext4_has_inline_data(inode); 19153fdcfb66STao Ma struct buffer_head *inode_bh = NULL; 191662e086beSAneesh Kumar K.V 1917cb20d518STheodore Ts'o ClearPageChecked(page); 19183fdcfb66STao Ma 19193fdcfb66STao Ma if (inline_data) { 19203fdcfb66STao Ma BUG_ON(page->index != 0); 19213fdcfb66STao Ma BUG_ON(len > ext4_get_max_inline_size(inode)); 19223fdcfb66STao Ma inode_bh = ext4_journalled_write_inline_data(inode, len, page); 19233fdcfb66STao Ma if (inode_bh == NULL) 19243fdcfb66STao Ma goto out; 19253fdcfb66STao Ma } else { 192662e086beSAneesh Kumar K.V page_bufs = page_buffers(page); 19273fdcfb66STao Ma if (!page_bufs) { 19283fdcfb66STao Ma BUG(); 19293fdcfb66STao Ma goto out; 19303fdcfb66STao Ma } 19313fdcfb66STao Ma ext4_walk_page_buffers(handle, page_bufs, 0, len, 19323fdcfb66STao Ma NULL, bget_one); 19333fdcfb66STao Ma } 1934bdf96838STheodore Ts'o /* 1935bdf96838STheodore Ts'o * We need to release the page lock before we start the 1936bdf96838STheodore Ts'o * journal, so grab a reference so the page won't disappear 1937bdf96838STheodore Ts'o * out from under us. 1938bdf96838STheodore Ts'o */ 1939bdf96838STheodore Ts'o get_page(page); 194062e086beSAneesh Kumar K.V unlock_page(page); 194162e086beSAneesh Kumar K.V 19429924a92aSTheodore Ts'o handle = ext4_journal_start(inode, EXT4_HT_WRITE_PAGE, 19439924a92aSTheodore Ts'o ext4_writepage_trans_blocks(inode)); 194462e086beSAneesh Kumar K.V if (IS_ERR(handle)) { 194562e086beSAneesh Kumar K.V ret = PTR_ERR(handle); 1946bdf96838STheodore Ts'o put_page(page); 1947bdf96838STheodore Ts'o goto out_no_pagelock; 1948bdf96838STheodore Ts'o } 1949bdf96838STheodore Ts'o BUG_ON(!ext4_handle_valid(handle)); 1950bdf96838STheodore Ts'o 1951bdf96838STheodore Ts'o lock_page(page); 1952bdf96838STheodore Ts'o put_page(page); 1953bdf96838STheodore Ts'o if (page->mapping != mapping) { 1954bdf96838STheodore Ts'o /* The page got truncated from under us */ 1955bdf96838STheodore Ts'o ext4_journal_stop(handle); 1956bdf96838STheodore Ts'o ret = 0; 195762e086beSAneesh Kumar K.V goto out; 195862e086beSAneesh Kumar K.V } 195962e086beSAneesh Kumar K.V 19603fdcfb66STao Ma if (inline_data) { 19615d601255Sliang xie BUFFER_TRACE(inode_bh, "get write access"); 19623fdcfb66STao Ma ret = ext4_journal_get_write_access(handle, inode_bh); 19633fdcfb66STao Ma 19643fdcfb66STao Ma err = ext4_handle_dirty_metadata(handle, inode, inode_bh); 19653fdcfb66STao Ma 19663fdcfb66STao Ma } else { 1967f19d5870STao Ma ret = ext4_walk_page_buffers(handle, page_bufs, 0, len, NULL, 196862e086beSAneesh Kumar K.V do_journal_get_write_access); 196962e086beSAneesh Kumar K.V 1970f19d5870STao Ma err = ext4_walk_page_buffers(handle, page_bufs, 0, len, NULL, 197162e086beSAneesh Kumar K.V write_end_fn); 19723fdcfb66STao Ma } 197362e086beSAneesh Kumar K.V if (ret == 0) 197462e086beSAneesh Kumar K.V ret = err; 19752d859db3SJan Kara EXT4_I(inode)->i_datasync_tid = handle->h_transaction->t_tid; 197662e086beSAneesh Kumar K.V err = ext4_journal_stop(handle); 197762e086beSAneesh Kumar K.V if (!ret) 197862e086beSAneesh Kumar K.V ret = err; 197962e086beSAneesh Kumar K.V 19803fdcfb66STao Ma if (!ext4_has_inline_data(inode)) 19818c9367fdSTheodore Ts'o ext4_walk_page_buffers(NULL, page_bufs, 0, len, 19823fdcfb66STao Ma NULL, bput_one); 198319f5fb7aSTheodore Ts'o ext4_set_inode_state(inode, EXT4_STATE_JDATA); 198462e086beSAneesh Kumar K.V out: 1985bdf96838STheodore Ts'o unlock_page(page); 1986bdf96838STheodore Ts'o out_no_pagelock: 19873fdcfb66STao Ma brelse(inode_bh); 198862e086beSAneesh Kumar K.V return ret; 198962e086beSAneesh Kumar K.V } 199062e086beSAneesh Kumar K.V 199161628a3fSMingming Cao /* 199243ce1d23SAneesh Kumar K.V * Note that we don't need to start a transaction unless we're journaling data 199343ce1d23SAneesh Kumar K.V * because we should have holes filled from ext4_page_mkwrite(). We even don't 199443ce1d23SAneesh Kumar K.V * need to file the inode to the transaction's list in ordered mode because if 199543ce1d23SAneesh Kumar K.V * we are writing back data added by write(), the inode is already there and if 199643ce1d23SAneesh Kumar K.V * we are writing back data modified via mmap(), no one guarantees in which 199743ce1d23SAneesh Kumar K.V * transaction the data will hit the disk. In case we are journaling data, we 199843ce1d23SAneesh Kumar K.V * cannot start transaction directly because transaction start ranks above page 199943ce1d23SAneesh Kumar K.V * lock so we have to do some magic. 200043ce1d23SAneesh Kumar K.V * 2001b920c755STheodore Ts'o * This function can get called via... 200220970ba6STheodore Ts'o * - ext4_writepages after taking page lock (have journal handle) 2003b920c755STheodore Ts'o * - journal_submit_inode_data_buffers (no journal handle) 2004f6463b0dSArtem Bityutskiy * - shrink_page_list via the kswapd/direct reclaim (no journal handle) 2005b920c755STheodore Ts'o * - grab_page_cache when doing write_begin (have journal handle) 200643ce1d23SAneesh Kumar K.V * 200743ce1d23SAneesh Kumar K.V * We don't do any block allocation in this function. If we have page with 200843ce1d23SAneesh Kumar K.V * multiple blocks we need to write those buffer_heads that are mapped. This 200943ce1d23SAneesh Kumar K.V * is important for mmaped based write. So if we do with blocksize 1K 201043ce1d23SAneesh Kumar K.V * truncate(f, 1024); 201143ce1d23SAneesh Kumar K.V * a = mmap(f, 0, 4096); 201243ce1d23SAneesh Kumar K.V * a[0] = 'a'; 201343ce1d23SAneesh Kumar K.V * truncate(f, 4096); 201443ce1d23SAneesh Kumar K.V * we have in the page first buffer_head mapped via page_mkwrite call back 201590802ed9SPaul Bolle * but other buffer_heads would be unmapped but dirty (dirty done via the 201643ce1d23SAneesh Kumar K.V * do_wp_page). So writepage should write the first block. If we modify 201743ce1d23SAneesh Kumar K.V * the mmap area beyond 1024 we will again get a page_fault and the 201843ce1d23SAneesh Kumar K.V * page_mkwrite callback will do the block allocation and mark the 201943ce1d23SAneesh Kumar K.V * buffer_heads mapped. 202043ce1d23SAneesh Kumar K.V * 202143ce1d23SAneesh Kumar K.V * We redirty the page if we have any buffer_heads that is either delay or 202243ce1d23SAneesh Kumar K.V * unwritten in the page. 202343ce1d23SAneesh Kumar K.V * 202443ce1d23SAneesh Kumar K.V * We can get recursively called as show below. 202543ce1d23SAneesh Kumar K.V * 202643ce1d23SAneesh Kumar K.V * ext4_writepage() -> kmalloc() -> __alloc_pages() -> page_launder() -> 202743ce1d23SAneesh Kumar K.V * ext4_writepage() 202843ce1d23SAneesh Kumar K.V * 202943ce1d23SAneesh Kumar K.V * But since we don't do any block allocation we should not deadlock. 203043ce1d23SAneesh Kumar K.V * Page also have the dirty flag cleared so we don't get recurive page_lock. 203161628a3fSMingming Cao */ 203243ce1d23SAneesh Kumar K.V static int ext4_writepage(struct page *page, 203364769240SAlex Tomas struct writeback_control *wbc) 203464769240SAlex Tomas { 2035f8bec370SJan Kara int ret = 0; 203661628a3fSMingming Cao loff_t size; 2037498e5f24STheodore Ts'o unsigned int len; 2038744692dcSJiaying Zhang struct buffer_head *page_bufs = NULL; 203961628a3fSMingming Cao struct inode *inode = page->mapping->host; 204036ade451SJan Kara struct ext4_io_submit io_submit; 20411c8349a1SNamjae Jeon bool keep_towrite = false; 204264769240SAlex Tomas 2043a9c667f8SLukas Czerner trace_ext4_writepage(page); 204461628a3fSMingming Cao size = i_size_read(inode); 204509cbfeafSKirill A. Shutemov if (page->index == size >> PAGE_SHIFT) 204609cbfeafSKirill A. Shutemov len = size & ~PAGE_MASK; 204761628a3fSMingming Cao else 204809cbfeafSKirill A. Shutemov len = PAGE_SIZE; 204961628a3fSMingming Cao 2050f0e6c985SAneesh Kumar K.V page_bufs = page_buffers(page); 205164769240SAlex Tomas /* 2052fe386132SJan Kara * We cannot do block allocation or other extent handling in this 2053fe386132SJan Kara * function. If there are buffers needing that, we have to redirty 2054fe386132SJan Kara * the page. But we may reach here when we do a journal commit via 2055fe386132SJan Kara * journal_submit_inode_data_buffers() and in that case we must write 2056fe386132SJan Kara * allocated buffers to achieve data=ordered mode guarantees. 2057cccd147aSTheodore Ts'o * 2058cccd147aSTheodore Ts'o * Also, if there is only one buffer per page (the fs block 2059cccd147aSTheodore Ts'o * size == the page size), if one buffer needs block 2060cccd147aSTheodore Ts'o * allocation or needs to modify the extent tree to clear the 2061cccd147aSTheodore Ts'o * unwritten flag, we know that the page can't be written at 2062cccd147aSTheodore Ts'o * all, so we might as well refuse the write immediately. 2063cccd147aSTheodore Ts'o * Unfortunately if the block size != page size, we can't as 2064cccd147aSTheodore Ts'o * easily detect this case using ext4_walk_page_buffers(), but 2065cccd147aSTheodore Ts'o * for the extremely common case, this is an optimization that 2066cccd147aSTheodore Ts'o * skips a useless round trip through ext4_bio_write_page(). 206764769240SAlex Tomas */ 2068f19d5870STao Ma if (ext4_walk_page_buffers(NULL, page_bufs, 0, len, NULL, 2069c364b22cSAneesh Kumar K.V ext4_bh_delay_or_unwritten)) { 207061628a3fSMingming Cao redirty_page_for_writepage(wbc, page); 2071cccd147aSTheodore Ts'o if ((current->flags & PF_MEMALLOC) || 207209cbfeafSKirill A. Shutemov (inode->i_sb->s_blocksize == PAGE_SIZE)) { 2073fe386132SJan Kara /* 2074fe386132SJan Kara * For memory cleaning there's no point in writing only 2075fe386132SJan Kara * some buffers. So just bail out. Warn if we came here 2076fe386132SJan Kara * from direct reclaim. 2077fe386132SJan Kara */ 2078fe386132SJan Kara WARN_ON_ONCE((current->flags & (PF_MEMALLOC|PF_KSWAPD)) 2079fe386132SJan Kara == PF_MEMALLOC); 208061628a3fSMingming Cao unlock_page(page); 208161628a3fSMingming Cao return 0; 208261628a3fSMingming Cao } 20831c8349a1SNamjae Jeon keep_towrite = true; 2084f0e6c985SAneesh Kumar K.V } 208564769240SAlex Tomas 2086cb20d518STheodore Ts'o if (PageChecked(page) && ext4_should_journal_data(inode)) 208743ce1d23SAneesh Kumar K.V /* 208843ce1d23SAneesh Kumar K.V * It's mmapped pagecache. Add buffers and journal it. There 208943ce1d23SAneesh Kumar K.V * doesn't seem much point in redirtying the page here. 209043ce1d23SAneesh Kumar K.V */ 20913f0ca309SWu Fengguang return __ext4_journalled_writepage(page, len); 209243ce1d23SAneesh Kumar K.V 209397a851edSJan Kara ext4_io_submit_init(&io_submit, wbc); 209497a851edSJan Kara io_submit.io_end = ext4_init_io_end(inode, GFP_NOFS); 209597a851edSJan Kara if (!io_submit.io_end) { 209697a851edSJan Kara redirty_page_for_writepage(wbc, page); 209797a851edSJan Kara unlock_page(page); 209897a851edSJan Kara return -ENOMEM; 209997a851edSJan Kara } 21001c8349a1SNamjae Jeon ret = ext4_bio_write_page(&io_submit, page, len, wbc, keep_towrite); 210136ade451SJan Kara ext4_io_submit(&io_submit); 210297a851edSJan Kara /* Drop io_end reference we got from init */ 210397a851edSJan Kara ext4_put_io_end_defer(io_submit.io_end); 210464769240SAlex Tomas return ret; 210564769240SAlex Tomas } 210664769240SAlex Tomas 21075f1132b2SJan Kara static int mpage_submit_page(struct mpage_da_data *mpd, struct page *page) 21085f1132b2SJan Kara { 21095f1132b2SJan Kara int len; 21105f1132b2SJan Kara loff_t size = i_size_read(mpd->inode); 21115f1132b2SJan Kara int err; 21125f1132b2SJan Kara 21135f1132b2SJan Kara BUG_ON(page->index != mpd->first_page); 211409cbfeafSKirill A. Shutemov if (page->index == size >> PAGE_SHIFT) 211509cbfeafSKirill A. Shutemov len = size & ~PAGE_MASK; 21165f1132b2SJan Kara else 211709cbfeafSKirill A. Shutemov len = PAGE_SIZE; 21185f1132b2SJan Kara clear_page_dirty_for_io(page); 21191c8349a1SNamjae Jeon err = ext4_bio_write_page(&mpd->io_submit, page, len, mpd->wbc, false); 21205f1132b2SJan Kara if (!err) 21215f1132b2SJan Kara mpd->wbc->nr_to_write--; 21225f1132b2SJan Kara mpd->first_page++; 21235f1132b2SJan Kara 21245f1132b2SJan Kara return err; 21255f1132b2SJan Kara } 21265f1132b2SJan Kara 21274e7ea81dSJan Kara #define BH_FLAGS ((1 << BH_Unwritten) | (1 << BH_Delay)) 21284e7ea81dSJan Kara 212961628a3fSMingming Cao /* 2130fffb2739SJan Kara * mballoc gives us at most this number of blocks... 2131fffb2739SJan Kara * XXX: That seems to be only a limitation of ext4_mb_normalize_request(). 2132fffb2739SJan Kara * The rest of mballoc seems to handle chunks up to full group size. 213361628a3fSMingming Cao */ 2134fffb2739SJan Kara #define MAX_WRITEPAGES_EXTENT_LEN 2048 2135525f4ed8SMingming Cao 2136525f4ed8SMingming Cao /* 21374e7ea81dSJan Kara * mpage_add_bh_to_extent - try to add bh to extent of blocks to map 21384e7ea81dSJan Kara * 21394e7ea81dSJan Kara * @mpd - extent of blocks 21404e7ea81dSJan Kara * @lblk - logical number of the block in the file 214109930042SJan Kara * @bh - buffer head we want to add to the extent 21424e7ea81dSJan Kara * 214309930042SJan Kara * The function is used to collect contig. blocks in the same state. If the 214409930042SJan Kara * buffer doesn't require mapping for writeback and we haven't started the 214509930042SJan Kara * extent of buffers to map yet, the function returns 'true' immediately - the 214609930042SJan Kara * caller can write the buffer right away. Otherwise the function returns true 214709930042SJan Kara * if the block has been added to the extent, false if the block couldn't be 214809930042SJan Kara * added. 21494e7ea81dSJan Kara */ 215009930042SJan Kara static bool mpage_add_bh_to_extent(struct mpage_da_data *mpd, ext4_lblk_t lblk, 215109930042SJan Kara struct buffer_head *bh) 21524e7ea81dSJan Kara { 21534e7ea81dSJan Kara struct ext4_map_blocks *map = &mpd->map; 21544e7ea81dSJan Kara 215509930042SJan Kara /* Buffer that doesn't need mapping for writeback? */ 215609930042SJan Kara if (!buffer_dirty(bh) || !buffer_mapped(bh) || 215709930042SJan Kara (!buffer_delay(bh) && !buffer_unwritten(bh))) { 215809930042SJan Kara /* So far no extent to map => we write the buffer right away */ 215909930042SJan Kara if (map->m_len == 0) 216009930042SJan Kara return true; 216109930042SJan Kara return false; 216209930042SJan Kara } 21634e7ea81dSJan Kara 21644e7ea81dSJan Kara /* First block in the extent? */ 21654e7ea81dSJan Kara if (map->m_len == 0) { 21664e7ea81dSJan Kara map->m_lblk = lblk; 21674e7ea81dSJan Kara map->m_len = 1; 216809930042SJan Kara map->m_flags = bh->b_state & BH_FLAGS; 216909930042SJan Kara return true; 21704e7ea81dSJan Kara } 21714e7ea81dSJan Kara 217209930042SJan Kara /* Don't go larger than mballoc is willing to allocate */ 217309930042SJan Kara if (map->m_len >= MAX_WRITEPAGES_EXTENT_LEN) 217409930042SJan Kara return false; 217509930042SJan Kara 21764e7ea81dSJan Kara /* Can we merge the block to our big extent? */ 21774e7ea81dSJan Kara if (lblk == map->m_lblk + map->m_len && 217809930042SJan Kara (bh->b_state & BH_FLAGS) == map->m_flags) { 21794e7ea81dSJan Kara map->m_len++; 218009930042SJan Kara return true; 21814e7ea81dSJan Kara } 218209930042SJan Kara return false; 21834e7ea81dSJan Kara } 21844e7ea81dSJan Kara 21855f1132b2SJan Kara /* 21865f1132b2SJan Kara * mpage_process_page_bufs - submit page buffers for IO or add them to extent 21875f1132b2SJan Kara * 21885f1132b2SJan Kara * @mpd - extent of blocks for mapping 21895f1132b2SJan Kara * @head - the first buffer in the page 21905f1132b2SJan Kara * @bh - buffer we should start processing from 21915f1132b2SJan Kara * @lblk - logical number of the block in the file corresponding to @bh 21925f1132b2SJan Kara * 21935f1132b2SJan Kara * Walk through page buffers from @bh upto @head (exclusive) and either submit 21945f1132b2SJan Kara * the page for IO if all buffers in this page were mapped and there's no 21955f1132b2SJan Kara * accumulated extent of buffers to map or add buffers in the page to the 21965f1132b2SJan Kara * extent of buffers to map. The function returns 1 if the caller can continue 21975f1132b2SJan Kara * by processing the next page, 0 if it should stop adding buffers to the 21985f1132b2SJan Kara * extent to map because we cannot extend it anymore. It can also return value 21995f1132b2SJan Kara * < 0 in case of error during IO submission. 22005f1132b2SJan Kara */ 22015f1132b2SJan Kara static int mpage_process_page_bufs(struct mpage_da_data *mpd, 22024e7ea81dSJan Kara struct buffer_head *head, 22034e7ea81dSJan Kara struct buffer_head *bh, 22044e7ea81dSJan Kara ext4_lblk_t lblk) 22054e7ea81dSJan Kara { 22064e7ea81dSJan Kara struct inode *inode = mpd->inode; 22075f1132b2SJan Kara int err; 22084e7ea81dSJan Kara ext4_lblk_t blocks = (i_size_read(inode) + (1 << inode->i_blkbits) - 1) 22094e7ea81dSJan Kara >> inode->i_blkbits; 22104e7ea81dSJan Kara 22114e7ea81dSJan Kara do { 22124e7ea81dSJan Kara BUG_ON(buffer_locked(bh)); 22134e7ea81dSJan Kara 221409930042SJan Kara if (lblk >= blocks || !mpage_add_bh_to_extent(mpd, lblk, bh)) { 22154e7ea81dSJan Kara /* Found extent to map? */ 22164e7ea81dSJan Kara if (mpd->map.m_len) 22175f1132b2SJan Kara return 0; 221809930042SJan Kara /* Everything mapped so far and we hit EOF */ 22195f1132b2SJan Kara break; 22204e7ea81dSJan Kara } 22214e7ea81dSJan Kara } while (lblk++, (bh = bh->b_this_page) != head); 22225f1132b2SJan Kara /* So far everything mapped? Submit the page for IO. */ 22235f1132b2SJan Kara if (mpd->map.m_len == 0) { 22245f1132b2SJan Kara err = mpage_submit_page(mpd, head->b_page); 22255f1132b2SJan Kara if (err < 0) 22264e7ea81dSJan Kara return err; 22274e7ea81dSJan Kara } 22285f1132b2SJan Kara return lblk < blocks; 22295f1132b2SJan Kara } 22304e7ea81dSJan Kara 22314e7ea81dSJan Kara /* 22324e7ea81dSJan Kara * mpage_map_buffers - update buffers corresponding to changed extent and 22334e7ea81dSJan Kara * submit fully mapped pages for IO 22344e7ea81dSJan Kara * 22354e7ea81dSJan Kara * @mpd - description of extent to map, on return next extent to map 22364e7ea81dSJan Kara * 22374e7ea81dSJan Kara * Scan buffers corresponding to changed extent (we expect corresponding pages 22384e7ea81dSJan Kara * to be already locked) and update buffer state according to new extent state. 22394e7ea81dSJan Kara * We map delalloc buffers to their physical location, clear unwritten bits, 2240556615dcSLukas Czerner * and mark buffers as uninit when we perform writes to unwritten extents 22414e7ea81dSJan Kara * and do extent conversion after IO is finished. If the last page is not fully 22424e7ea81dSJan Kara * mapped, we update @map to the next extent in the last page that needs 22434e7ea81dSJan Kara * mapping. Otherwise we submit the page for IO. 22444e7ea81dSJan Kara */ 22454e7ea81dSJan Kara static int mpage_map_and_submit_buffers(struct mpage_da_data *mpd) 22464e7ea81dSJan Kara { 22474e7ea81dSJan Kara struct pagevec pvec; 22484e7ea81dSJan Kara int nr_pages, i; 22494e7ea81dSJan Kara struct inode *inode = mpd->inode; 22504e7ea81dSJan Kara struct buffer_head *head, *bh; 225109cbfeafSKirill A. Shutemov int bpp_bits = PAGE_SHIFT - inode->i_blkbits; 22524e7ea81dSJan Kara pgoff_t start, end; 22534e7ea81dSJan Kara ext4_lblk_t lblk; 22544e7ea81dSJan Kara sector_t pblock; 22554e7ea81dSJan Kara int err; 22564e7ea81dSJan Kara 22574e7ea81dSJan Kara start = mpd->map.m_lblk >> bpp_bits; 22584e7ea81dSJan Kara end = (mpd->map.m_lblk + mpd->map.m_len - 1) >> bpp_bits; 22594e7ea81dSJan Kara lblk = start << bpp_bits; 22604e7ea81dSJan Kara pblock = mpd->map.m_pblk; 22614e7ea81dSJan Kara 22624e7ea81dSJan Kara pagevec_init(&pvec, 0); 22634e7ea81dSJan Kara while (start <= end) { 22644e7ea81dSJan Kara nr_pages = pagevec_lookup(&pvec, inode->i_mapping, start, 22654e7ea81dSJan Kara PAGEVEC_SIZE); 22664e7ea81dSJan Kara if (nr_pages == 0) 22674e7ea81dSJan Kara break; 22684e7ea81dSJan Kara for (i = 0; i < nr_pages; i++) { 22694e7ea81dSJan Kara struct page *page = pvec.pages[i]; 22704e7ea81dSJan Kara 22714e7ea81dSJan Kara if (page->index > end) 22724e7ea81dSJan Kara break; 22734e7ea81dSJan Kara /* Up to 'end' pages must be contiguous */ 22744e7ea81dSJan Kara BUG_ON(page->index != start); 22754e7ea81dSJan Kara bh = head = page_buffers(page); 22764e7ea81dSJan Kara do { 22774e7ea81dSJan Kara if (lblk < mpd->map.m_lblk) 22784e7ea81dSJan Kara continue; 22794e7ea81dSJan Kara if (lblk >= mpd->map.m_lblk + mpd->map.m_len) { 22804e7ea81dSJan Kara /* 22814e7ea81dSJan Kara * Buffer after end of mapped extent. 22824e7ea81dSJan Kara * Find next buffer in the page to map. 22834e7ea81dSJan Kara */ 22844e7ea81dSJan Kara mpd->map.m_len = 0; 22854e7ea81dSJan Kara mpd->map.m_flags = 0; 22865f1132b2SJan Kara /* 22875f1132b2SJan Kara * FIXME: If dioread_nolock supports 22885f1132b2SJan Kara * blocksize < pagesize, we need to make 22895f1132b2SJan Kara * sure we add size mapped so far to 22905f1132b2SJan Kara * io_end->size as the following call 22915f1132b2SJan Kara * can submit the page for IO. 22925f1132b2SJan Kara */ 22935f1132b2SJan Kara err = mpage_process_page_bufs(mpd, head, 22945f1132b2SJan Kara bh, lblk); 22954e7ea81dSJan Kara pagevec_release(&pvec); 22965f1132b2SJan Kara if (err > 0) 22975f1132b2SJan Kara err = 0; 22985f1132b2SJan Kara return err; 22994e7ea81dSJan Kara } 23004e7ea81dSJan Kara if (buffer_delay(bh)) { 23014e7ea81dSJan Kara clear_buffer_delay(bh); 23024e7ea81dSJan Kara bh->b_blocknr = pblock++; 23034e7ea81dSJan Kara } 23044e7ea81dSJan Kara clear_buffer_unwritten(bh); 23055f1132b2SJan Kara } while (lblk++, (bh = bh->b_this_page) != head); 23064e7ea81dSJan Kara 23074e7ea81dSJan Kara /* 23084e7ea81dSJan Kara * FIXME: This is going to break if dioread_nolock 23094e7ea81dSJan Kara * supports blocksize < pagesize as we will try to 23104e7ea81dSJan Kara * convert potentially unmapped parts of inode. 23114e7ea81dSJan Kara */ 231209cbfeafSKirill A. Shutemov mpd->io_submit.io_end->size += PAGE_SIZE; 23134e7ea81dSJan Kara /* Page fully mapped - let IO run! */ 23144e7ea81dSJan Kara err = mpage_submit_page(mpd, page); 23154e7ea81dSJan Kara if (err < 0) { 23164e7ea81dSJan Kara pagevec_release(&pvec); 23174e7ea81dSJan Kara return err; 23184e7ea81dSJan Kara } 23194e7ea81dSJan Kara start++; 23204e7ea81dSJan Kara } 23214e7ea81dSJan Kara pagevec_release(&pvec); 23224e7ea81dSJan Kara } 23234e7ea81dSJan Kara /* Extent fully mapped and matches with page boundary. We are done. */ 23244e7ea81dSJan Kara mpd->map.m_len = 0; 23254e7ea81dSJan Kara mpd->map.m_flags = 0; 23264e7ea81dSJan Kara return 0; 23274e7ea81dSJan Kara } 23284e7ea81dSJan Kara 23294e7ea81dSJan Kara static int mpage_map_one_extent(handle_t *handle, struct mpage_da_data *mpd) 23304e7ea81dSJan Kara { 23314e7ea81dSJan Kara struct inode *inode = mpd->inode; 23324e7ea81dSJan Kara struct ext4_map_blocks *map = &mpd->map; 23334e7ea81dSJan Kara int get_blocks_flags; 2334090f32eeSLukas Czerner int err, dioread_nolock; 23354e7ea81dSJan Kara 23364e7ea81dSJan Kara trace_ext4_da_write_pages_extent(inode, map); 23374e7ea81dSJan Kara /* 23384e7ea81dSJan Kara * Call ext4_map_blocks() to allocate any delayed allocation blocks, or 2339556615dcSLukas Czerner * to convert an unwritten extent to be initialized (in the case 23404e7ea81dSJan Kara * where we have written into one or more preallocated blocks). It is 23414e7ea81dSJan Kara * possible that we're going to need more metadata blocks than 23424e7ea81dSJan Kara * previously reserved. However we must not fail because we're in 23434e7ea81dSJan Kara * writeback and there is nothing we can do about it so it might result 23444e7ea81dSJan Kara * in data loss. So use reserved blocks to allocate metadata if 23454e7ea81dSJan Kara * possible. 23464e7ea81dSJan Kara * 2347754cfed6STheodore Ts'o * We pass in the magic EXT4_GET_BLOCKS_DELALLOC_RESERVE if 2348754cfed6STheodore Ts'o * the blocks in question are delalloc blocks. This indicates 2349754cfed6STheodore Ts'o * that the blocks and quotas has already been checked when 2350754cfed6STheodore Ts'o * the data was copied into the page cache. 23514e7ea81dSJan Kara */ 23524e7ea81dSJan Kara get_blocks_flags = EXT4_GET_BLOCKS_CREATE | 2353ee0876bcSJan Kara EXT4_GET_BLOCKS_METADATA_NOFAIL | 2354ee0876bcSJan Kara EXT4_GET_BLOCKS_IO_SUBMIT; 2355090f32eeSLukas Czerner dioread_nolock = ext4_should_dioread_nolock(inode); 2356090f32eeSLukas Czerner if (dioread_nolock) 23574e7ea81dSJan Kara get_blocks_flags |= EXT4_GET_BLOCKS_IO_CREATE_EXT; 23584e7ea81dSJan Kara if (map->m_flags & (1 << BH_Delay)) 23594e7ea81dSJan Kara get_blocks_flags |= EXT4_GET_BLOCKS_DELALLOC_RESERVE; 23604e7ea81dSJan Kara 23614e7ea81dSJan Kara err = ext4_map_blocks(handle, inode, map, get_blocks_flags); 23624e7ea81dSJan Kara if (err < 0) 23634e7ea81dSJan Kara return err; 2364090f32eeSLukas Czerner if (dioread_nolock && (map->m_flags & EXT4_MAP_UNWRITTEN)) { 23656b523df4SJan Kara if (!mpd->io_submit.io_end->handle && 23666b523df4SJan Kara ext4_handle_valid(handle)) { 23676b523df4SJan Kara mpd->io_submit.io_end->handle = handle->h_rsv_handle; 23686b523df4SJan Kara handle->h_rsv_handle = NULL; 23696b523df4SJan Kara } 23703613d228SJan Kara ext4_set_io_unwritten_flag(inode, mpd->io_submit.io_end); 23716b523df4SJan Kara } 23724e7ea81dSJan Kara 23734e7ea81dSJan Kara BUG_ON(map->m_len == 0); 23744e7ea81dSJan Kara if (map->m_flags & EXT4_MAP_NEW) { 23754e7ea81dSJan Kara struct block_device *bdev = inode->i_sb->s_bdev; 23764e7ea81dSJan Kara int i; 23774e7ea81dSJan Kara 23784e7ea81dSJan Kara for (i = 0; i < map->m_len; i++) 23794e7ea81dSJan Kara unmap_underlying_metadata(bdev, map->m_pblk + i); 23804e7ea81dSJan Kara } 23814e7ea81dSJan Kara return 0; 23824e7ea81dSJan Kara } 23834e7ea81dSJan Kara 23844e7ea81dSJan Kara /* 23854e7ea81dSJan Kara * mpage_map_and_submit_extent - map extent starting at mpd->lblk of length 23864e7ea81dSJan Kara * mpd->len and submit pages underlying it for IO 23874e7ea81dSJan Kara * 23884e7ea81dSJan Kara * @handle - handle for journal operations 23894e7ea81dSJan Kara * @mpd - extent to map 23907534e854SJan Kara * @give_up_on_write - we set this to true iff there is a fatal error and there 23917534e854SJan Kara * is no hope of writing the data. The caller should discard 23927534e854SJan Kara * dirty pages to avoid infinite loops. 23934e7ea81dSJan Kara * 23944e7ea81dSJan Kara * The function maps extent starting at mpd->lblk of length mpd->len. If it is 23954e7ea81dSJan Kara * delayed, blocks are allocated, if it is unwritten, we may need to convert 23964e7ea81dSJan Kara * them to initialized or split the described range from larger unwritten 23974e7ea81dSJan Kara * extent. Note that we need not map all the described range since allocation 23984e7ea81dSJan Kara * can return less blocks or the range is covered by more unwritten extents. We 23994e7ea81dSJan Kara * cannot map more because we are limited by reserved transaction credits. On 24004e7ea81dSJan Kara * the other hand we always make sure that the last touched page is fully 24014e7ea81dSJan Kara * mapped so that it can be written out (and thus forward progress is 24024e7ea81dSJan Kara * guaranteed). After mapping we submit all mapped pages for IO. 24034e7ea81dSJan Kara */ 24044e7ea81dSJan Kara static int mpage_map_and_submit_extent(handle_t *handle, 2405cb530541STheodore Ts'o struct mpage_da_data *mpd, 2406cb530541STheodore Ts'o bool *give_up_on_write) 24074e7ea81dSJan Kara { 24084e7ea81dSJan Kara struct inode *inode = mpd->inode; 24094e7ea81dSJan Kara struct ext4_map_blocks *map = &mpd->map; 24104e7ea81dSJan Kara int err; 24114e7ea81dSJan Kara loff_t disksize; 24126603120eSDmitry Monakhov int progress = 0; 24134e7ea81dSJan Kara 24144e7ea81dSJan Kara mpd->io_submit.io_end->offset = 24154e7ea81dSJan Kara ((loff_t)map->m_lblk) << inode->i_blkbits; 241627d7c4edSJan Kara do { 24174e7ea81dSJan Kara err = mpage_map_one_extent(handle, mpd); 24184e7ea81dSJan Kara if (err < 0) { 24194e7ea81dSJan Kara struct super_block *sb = inode->i_sb; 24204e7ea81dSJan Kara 2421cb530541STheodore Ts'o if (EXT4_SB(sb)->s_mount_flags & EXT4_MF_FS_ABORTED) 2422cb530541STheodore Ts'o goto invalidate_dirty_pages; 24234e7ea81dSJan Kara /* 2424cb530541STheodore Ts'o * Let the uper layers retry transient errors. 2425cb530541STheodore Ts'o * In the case of ENOSPC, if ext4_count_free_blocks() 2426cb530541STheodore Ts'o * is non-zero, a commit should free up blocks. 24274e7ea81dSJan Kara */ 2428cb530541STheodore Ts'o if ((err == -ENOMEM) || 24296603120eSDmitry Monakhov (err == -ENOSPC && ext4_count_free_clusters(sb))) { 24306603120eSDmitry Monakhov if (progress) 24316603120eSDmitry Monakhov goto update_disksize; 2432cb530541STheodore Ts'o return err; 24336603120eSDmitry Monakhov } 24344e7ea81dSJan Kara ext4_msg(sb, KERN_CRIT, 24354e7ea81dSJan Kara "Delayed block allocation failed for " 24364e7ea81dSJan Kara "inode %lu at logical offset %llu with" 24374e7ea81dSJan Kara " max blocks %u with error %d", 24384e7ea81dSJan Kara inode->i_ino, 24394e7ea81dSJan Kara (unsigned long long)map->m_lblk, 2440cb530541STheodore Ts'o (unsigned)map->m_len, -err); 24414e7ea81dSJan Kara ext4_msg(sb, KERN_CRIT, 24424e7ea81dSJan Kara "This should not happen!! Data will " 24434e7ea81dSJan Kara "be lost\n"); 24444e7ea81dSJan Kara if (err == -ENOSPC) 24454e7ea81dSJan Kara ext4_print_free_blocks(inode); 2446cb530541STheodore Ts'o invalidate_dirty_pages: 2447cb530541STheodore Ts'o *give_up_on_write = true; 24484e7ea81dSJan Kara return err; 24494e7ea81dSJan Kara } 24506603120eSDmitry Monakhov progress = 1; 24514e7ea81dSJan Kara /* 24524e7ea81dSJan Kara * Update buffer state, submit mapped pages, and get us new 24534e7ea81dSJan Kara * extent to map 24544e7ea81dSJan Kara */ 24554e7ea81dSJan Kara err = mpage_map_and_submit_buffers(mpd); 24564e7ea81dSJan Kara if (err < 0) 24576603120eSDmitry Monakhov goto update_disksize; 245827d7c4edSJan Kara } while (map->m_len); 24594e7ea81dSJan Kara 24606603120eSDmitry Monakhov update_disksize: 2461622cad13STheodore Ts'o /* 2462622cad13STheodore Ts'o * Update on-disk size after IO is submitted. Races with 2463622cad13STheodore Ts'o * truncate are avoided by checking i_size under i_data_sem. 2464622cad13STheodore Ts'o */ 246509cbfeafSKirill A. Shutemov disksize = ((loff_t)mpd->first_page) << PAGE_SHIFT; 24664e7ea81dSJan Kara if (disksize > EXT4_I(inode)->i_disksize) { 24674e7ea81dSJan Kara int err2; 2468622cad13STheodore Ts'o loff_t i_size; 24694e7ea81dSJan Kara 2470622cad13STheodore Ts'o down_write(&EXT4_I(inode)->i_data_sem); 2471622cad13STheodore Ts'o i_size = i_size_read(inode); 2472622cad13STheodore Ts'o if (disksize > i_size) 2473622cad13STheodore Ts'o disksize = i_size; 2474622cad13STheodore Ts'o if (disksize > EXT4_I(inode)->i_disksize) 2475622cad13STheodore Ts'o EXT4_I(inode)->i_disksize = disksize; 24764e7ea81dSJan Kara err2 = ext4_mark_inode_dirty(handle, inode); 2477622cad13STheodore Ts'o up_write(&EXT4_I(inode)->i_data_sem); 24784e7ea81dSJan Kara if (err2) 24794e7ea81dSJan Kara ext4_error(inode->i_sb, 24804e7ea81dSJan Kara "Failed to mark inode %lu dirty", 24814e7ea81dSJan Kara inode->i_ino); 24824e7ea81dSJan Kara if (!err) 24834e7ea81dSJan Kara err = err2; 24844e7ea81dSJan Kara } 24854e7ea81dSJan Kara return err; 24864e7ea81dSJan Kara } 24874e7ea81dSJan Kara 24884e7ea81dSJan Kara /* 2489fffb2739SJan Kara * Calculate the total number of credits to reserve for one writepages 249020970ba6STheodore Ts'o * iteration. This is called from ext4_writepages(). We map an extent of 2491fffb2739SJan Kara * up to MAX_WRITEPAGES_EXTENT_LEN blocks and then we go on and finish mapping 2492fffb2739SJan Kara * the last partial page. So in total we can map MAX_WRITEPAGES_EXTENT_LEN + 2493fffb2739SJan Kara * bpp - 1 blocks in bpp different extents. 2494525f4ed8SMingming Cao */ 2495fffb2739SJan Kara static int ext4_da_writepages_trans_blocks(struct inode *inode) 2496fffb2739SJan Kara { 2497fffb2739SJan Kara int bpp = ext4_journal_blocks_per_page(inode); 2498525f4ed8SMingming Cao 2499fffb2739SJan Kara return ext4_meta_trans_blocks(inode, 2500fffb2739SJan Kara MAX_WRITEPAGES_EXTENT_LEN + bpp - 1, bpp); 2501525f4ed8SMingming Cao } 250261628a3fSMingming Cao 25038e48dcfbSTheodore Ts'o /* 25044e7ea81dSJan Kara * mpage_prepare_extent_to_map - find & lock contiguous range of dirty pages 25054e7ea81dSJan Kara * and underlying extent to map 25064e7ea81dSJan Kara * 25074e7ea81dSJan Kara * @mpd - where to look for pages 25084e7ea81dSJan Kara * 25094e7ea81dSJan Kara * Walk dirty pages in the mapping. If they are fully mapped, submit them for 25104e7ea81dSJan Kara * IO immediately. When we find a page which isn't mapped we start accumulating 25114e7ea81dSJan Kara * extent of buffers underlying these pages that needs mapping (formed by 25124e7ea81dSJan Kara * either delayed or unwritten buffers). We also lock the pages containing 25134e7ea81dSJan Kara * these buffers. The extent found is returned in @mpd structure (starting at 25144e7ea81dSJan Kara * mpd->lblk with length mpd->len blocks). 25154e7ea81dSJan Kara * 25164e7ea81dSJan Kara * Note that this function can attach bios to one io_end structure which are 25174e7ea81dSJan Kara * neither logically nor physically contiguous. Although it may seem as an 25184e7ea81dSJan Kara * unnecessary complication, it is actually inevitable in blocksize < pagesize 25194e7ea81dSJan Kara * case as we need to track IO to all buffers underlying a page in one io_end. 25208e48dcfbSTheodore Ts'o */ 25214e7ea81dSJan Kara static int mpage_prepare_extent_to_map(struct mpage_da_data *mpd) 25228e48dcfbSTheodore Ts'o { 25234e7ea81dSJan Kara struct address_space *mapping = mpd->inode->i_mapping; 25248e48dcfbSTheodore Ts'o struct pagevec pvec; 25254f01b02cSTheodore Ts'o unsigned int nr_pages; 2526aeac589aSMing Lei long left = mpd->wbc->nr_to_write; 25274e7ea81dSJan Kara pgoff_t index = mpd->first_page; 25284e7ea81dSJan Kara pgoff_t end = mpd->last_page; 25294e7ea81dSJan Kara int tag; 25304e7ea81dSJan Kara int i, err = 0; 25314e7ea81dSJan Kara int blkbits = mpd->inode->i_blkbits; 25324e7ea81dSJan Kara ext4_lblk_t lblk; 25334e7ea81dSJan Kara struct buffer_head *head; 25348e48dcfbSTheodore Ts'o 25354e7ea81dSJan Kara if (mpd->wbc->sync_mode == WB_SYNC_ALL || mpd->wbc->tagged_writepages) 25365b41d924SEric Sandeen tag = PAGECACHE_TAG_TOWRITE; 25375b41d924SEric Sandeen else 25385b41d924SEric Sandeen tag = PAGECACHE_TAG_DIRTY; 25395b41d924SEric Sandeen 25404e7ea81dSJan Kara pagevec_init(&pvec, 0); 25414e7ea81dSJan Kara mpd->map.m_len = 0; 25424e7ea81dSJan Kara mpd->next_page = index; 25434f01b02cSTheodore Ts'o while (index <= end) { 25445b41d924SEric Sandeen nr_pages = pagevec_lookup_tag(&pvec, mapping, &index, tag, 25458e48dcfbSTheodore Ts'o min(end - index, (pgoff_t)PAGEVEC_SIZE-1) + 1); 25468e48dcfbSTheodore Ts'o if (nr_pages == 0) 25474e7ea81dSJan Kara goto out; 25488e48dcfbSTheodore Ts'o 25498e48dcfbSTheodore Ts'o for (i = 0; i < nr_pages; i++) { 25508e48dcfbSTheodore Ts'o struct page *page = pvec.pages[i]; 25518e48dcfbSTheodore Ts'o 25528e48dcfbSTheodore Ts'o /* 25538e48dcfbSTheodore Ts'o * At this point, the page may be truncated or 25548e48dcfbSTheodore Ts'o * invalidated (changing page->mapping to NULL), or 25558e48dcfbSTheodore Ts'o * even swizzled back from swapper_space to tmpfs file 25568e48dcfbSTheodore Ts'o * mapping. However, page->index will not change 25578e48dcfbSTheodore Ts'o * because we have a reference on the page. 25588e48dcfbSTheodore Ts'o */ 25594f01b02cSTheodore Ts'o if (page->index > end) 25604f01b02cSTheodore Ts'o goto out; 25618e48dcfbSTheodore Ts'o 2562aeac589aSMing Lei /* 2563aeac589aSMing Lei * Accumulated enough dirty pages? This doesn't apply 2564aeac589aSMing Lei * to WB_SYNC_ALL mode. For integrity sync we have to 2565aeac589aSMing Lei * keep going because someone may be concurrently 2566aeac589aSMing Lei * dirtying pages, and we might have synced a lot of 2567aeac589aSMing Lei * newly appeared dirty pages, but have not synced all 2568aeac589aSMing Lei * of the old dirty pages. 2569aeac589aSMing Lei */ 2570aeac589aSMing Lei if (mpd->wbc->sync_mode == WB_SYNC_NONE && left <= 0) 2571aeac589aSMing Lei goto out; 2572aeac589aSMing Lei 25734e7ea81dSJan Kara /* If we can't merge this page, we are done. */ 25744e7ea81dSJan Kara if (mpd->map.m_len > 0 && mpd->next_page != page->index) 25754e7ea81dSJan Kara goto out; 257678aaced3STheodore Ts'o 25778e48dcfbSTheodore Ts'o lock_page(page); 25788e48dcfbSTheodore Ts'o /* 25794e7ea81dSJan Kara * If the page is no longer dirty, or its mapping no 25804e7ea81dSJan Kara * longer corresponds to inode we are writing (which 25814e7ea81dSJan Kara * means it has been truncated or invalidated), or the 25824e7ea81dSJan Kara * page is already under writeback and we are not doing 25834e7ea81dSJan Kara * a data integrity writeback, skip the page 25848e48dcfbSTheodore Ts'o */ 25854f01b02cSTheodore Ts'o if (!PageDirty(page) || 25864f01b02cSTheodore Ts'o (PageWriteback(page) && 25874e7ea81dSJan Kara (mpd->wbc->sync_mode == WB_SYNC_NONE)) || 25884f01b02cSTheodore Ts'o unlikely(page->mapping != mapping)) { 25898e48dcfbSTheodore Ts'o unlock_page(page); 25908e48dcfbSTheodore Ts'o continue; 25918e48dcfbSTheodore Ts'o } 25928e48dcfbSTheodore Ts'o 25938e48dcfbSTheodore Ts'o wait_on_page_writeback(page); 25948e48dcfbSTheodore Ts'o BUG_ON(PageWriteback(page)); 25958e48dcfbSTheodore Ts'o 25964e7ea81dSJan Kara if (mpd->map.m_len == 0) 25978eb9e5ceSTheodore Ts'o mpd->first_page = page->index; 25988eb9e5ceSTheodore Ts'o mpd->next_page = page->index + 1; 2599f8bec370SJan Kara /* Add all dirty buffers to mpd */ 26004e7ea81dSJan Kara lblk = ((ext4_lblk_t)page->index) << 260109cbfeafSKirill A. Shutemov (PAGE_SHIFT - blkbits); 26028eb9e5ceSTheodore Ts'o head = page_buffers(page); 26035f1132b2SJan Kara err = mpage_process_page_bufs(mpd, head, head, lblk); 26045f1132b2SJan Kara if (err <= 0) 26054e7ea81dSJan Kara goto out; 26065f1132b2SJan Kara err = 0; 2607aeac589aSMing Lei left--; 26088e48dcfbSTheodore Ts'o } 26098e48dcfbSTheodore Ts'o pagevec_release(&pvec); 26108e48dcfbSTheodore Ts'o cond_resched(); 26118e48dcfbSTheodore Ts'o } 26124f01b02cSTheodore Ts'o return 0; 26138eb9e5ceSTheodore Ts'o out: 26148eb9e5ceSTheodore Ts'o pagevec_release(&pvec); 26154e7ea81dSJan Kara return err; 26168e48dcfbSTheodore Ts'o } 26178e48dcfbSTheodore Ts'o 261820970ba6STheodore Ts'o static int __writepage(struct page *page, struct writeback_control *wbc, 261920970ba6STheodore Ts'o void *data) 262020970ba6STheodore Ts'o { 262120970ba6STheodore Ts'o struct address_space *mapping = data; 262220970ba6STheodore Ts'o int ret = ext4_writepage(page, wbc); 262320970ba6STheodore Ts'o mapping_set_error(mapping, ret); 262420970ba6STheodore Ts'o return ret; 262520970ba6STheodore Ts'o } 262620970ba6STheodore Ts'o 262720970ba6STheodore Ts'o static int ext4_writepages(struct address_space *mapping, 262864769240SAlex Tomas struct writeback_control *wbc) 262964769240SAlex Tomas { 26304e7ea81dSJan Kara pgoff_t writeback_index = 0; 26314e7ea81dSJan Kara long nr_to_write = wbc->nr_to_write; 263222208dedSAneesh Kumar K.V int range_whole = 0; 26334e7ea81dSJan Kara int cycled = 1; 263461628a3fSMingming Cao handle_t *handle = NULL; 2635df22291fSAneesh Kumar K.V struct mpage_da_data mpd; 26365e745b04SAneesh Kumar K.V struct inode *inode = mapping->host; 26376b523df4SJan Kara int needed_blocks, rsv_blocks = 0, ret = 0; 26385e745b04SAneesh Kumar K.V struct ext4_sb_info *sbi = EXT4_SB(mapping->host->i_sb); 26394e7ea81dSJan Kara bool done; 26401bce63d1SShaohua Li struct blk_plug plug; 2641cb530541STheodore Ts'o bool give_up_on_write = false; 264261628a3fSMingming Cao 2643c8585c6fSDaeho Jeong percpu_down_read(&sbi->s_journal_flag_rwsem); 264420970ba6STheodore Ts'o trace_ext4_writepages(inode, wbc); 2645ba80b101STheodore Ts'o 2646c8585c6fSDaeho Jeong if (dax_mapping(mapping)) { 2647c8585c6fSDaeho Jeong ret = dax_writeback_mapping_range(mapping, inode->i_sb->s_bdev, 26487f6d5b52SRoss Zwisler wbc); 2649c8585c6fSDaeho Jeong goto out_writepages; 2650c8585c6fSDaeho Jeong } 26517f6d5b52SRoss Zwisler 265261628a3fSMingming Cao /* 265361628a3fSMingming Cao * No pages to write? This is mainly a kludge to avoid starting 265461628a3fSMingming Cao * a transaction for special inodes like journal inode on last iput() 265561628a3fSMingming Cao * because that could violate lock ordering on umount 265661628a3fSMingming Cao */ 2657a1d6cc56SAneesh Kumar K.V if (!mapping->nrpages || !mapping_tagged(mapping, PAGECACHE_TAG_DIRTY)) 2658bbf023c7SMing Lei goto out_writepages; 26592a21e37eSTheodore Ts'o 266020970ba6STheodore Ts'o if (ext4_should_journal_data(inode)) { 266120970ba6STheodore Ts'o struct blk_plug plug; 266220970ba6STheodore Ts'o 266320970ba6STheodore Ts'o blk_start_plug(&plug); 266420970ba6STheodore Ts'o ret = write_cache_pages(mapping, wbc, __writepage, mapping); 266520970ba6STheodore Ts'o blk_finish_plug(&plug); 2666bbf023c7SMing Lei goto out_writepages; 266720970ba6STheodore Ts'o } 266820970ba6STheodore Ts'o 26692a21e37eSTheodore Ts'o /* 26702a21e37eSTheodore Ts'o * If the filesystem has aborted, it is read-only, so return 26712a21e37eSTheodore Ts'o * right away instead of dumping stack traces later on that 26722a21e37eSTheodore Ts'o * will obscure the real source of the problem. We test 26734ab2f15bSTheodore Ts'o * EXT4_MF_FS_ABORTED instead of sb->s_flag's MS_RDONLY because 26742a21e37eSTheodore Ts'o * the latter could be true if the filesystem is mounted 267520970ba6STheodore Ts'o * read-only, and in that case, ext4_writepages should 26762a21e37eSTheodore Ts'o * *never* be called, so if that ever happens, we would want 26772a21e37eSTheodore Ts'o * the stack trace. 26782a21e37eSTheodore Ts'o */ 2679bbf023c7SMing Lei if (unlikely(sbi->s_mount_flags & EXT4_MF_FS_ABORTED)) { 2680bbf023c7SMing Lei ret = -EROFS; 2681bbf023c7SMing Lei goto out_writepages; 2682bbf023c7SMing Lei } 26832a21e37eSTheodore Ts'o 26846b523df4SJan Kara if (ext4_should_dioread_nolock(inode)) { 26856b523df4SJan Kara /* 26866b523df4SJan Kara * We may need to convert up to one extent per block in 26876b523df4SJan Kara * the page and we may dirty the inode. 26886b523df4SJan Kara */ 268909cbfeafSKirill A. Shutemov rsv_blocks = 1 + (PAGE_SIZE >> inode->i_blkbits); 26906b523df4SJan Kara } 26916b523df4SJan Kara 26924e7ea81dSJan Kara /* 26934e7ea81dSJan Kara * If we have inline data and arrive here, it means that 26944e7ea81dSJan Kara * we will soon create the block for the 1st page, so 26954e7ea81dSJan Kara * we'd better clear the inline data here. 26964e7ea81dSJan Kara */ 26974e7ea81dSJan Kara if (ext4_has_inline_data(inode)) { 26984e7ea81dSJan Kara /* Just inode will be modified... */ 26994e7ea81dSJan Kara handle = ext4_journal_start(inode, EXT4_HT_INODE, 1); 27004e7ea81dSJan Kara if (IS_ERR(handle)) { 27014e7ea81dSJan Kara ret = PTR_ERR(handle); 27024e7ea81dSJan Kara goto out_writepages; 27034e7ea81dSJan Kara } 27044e7ea81dSJan Kara BUG_ON(ext4_test_inode_state(inode, 27054e7ea81dSJan Kara EXT4_STATE_MAY_INLINE_DATA)); 27064e7ea81dSJan Kara ext4_destroy_inline_data(handle, inode); 27074e7ea81dSJan Kara ext4_journal_stop(handle); 27084e7ea81dSJan Kara } 27094e7ea81dSJan Kara 271022208dedSAneesh Kumar K.V if (wbc->range_start == 0 && wbc->range_end == LLONG_MAX) 271122208dedSAneesh Kumar K.V range_whole = 1; 271261628a3fSMingming Cao 27132acf2c26SAneesh Kumar K.V if (wbc->range_cyclic) { 27144e7ea81dSJan Kara writeback_index = mapping->writeback_index; 27154e7ea81dSJan Kara if (writeback_index) 27162acf2c26SAneesh Kumar K.V cycled = 0; 27174e7ea81dSJan Kara mpd.first_page = writeback_index; 27184e7ea81dSJan Kara mpd.last_page = -1; 27195b41d924SEric Sandeen } else { 272009cbfeafSKirill A. Shutemov mpd.first_page = wbc->range_start >> PAGE_SHIFT; 272109cbfeafSKirill A. Shutemov mpd.last_page = wbc->range_end >> PAGE_SHIFT; 27225b41d924SEric Sandeen } 2723a1d6cc56SAneesh Kumar K.V 27244e7ea81dSJan Kara mpd.inode = inode; 27254e7ea81dSJan Kara mpd.wbc = wbc; 27264e7ea81dSJan Kara ext4_io_submit_init(&mpd.io_submit, wbc); 27272acf2c26SAneesh Kumar K.V retry: 27286e6938b6SWu Fengguang if (wbc->sync_mode == WB_SYNC_ALL || wbc->tagged_writepages) 27294e7ea81dSJan Kara tag_pages_for_writeback(mapping, mpd.first_page, mpd.last_page); 27304e7ea81dSJan Kara done = false; 27311bce63d1SShaohua Li blk_start_plug(&plug); 27324e7ea81dSJan Kara while (!done && mpd.first_page <= mpd.last_page) { 27334e7ea81dSJan Kara /* For each extent of pages we use new io_end */ 27344e7ea81dSJan Kara mpd.io_submit.io_end = ext4_init_io_end(inode, GFP_KERNEL); 27354e7ea81dSJan Kara if (!mpd.io_submit.io_end) { 27364e7ea81dSJan Kara ret = -ENOMEM; 27374e7ea81dSJan Kara break; 27384e7ea81dSJan Kara } 2739a1d6cc56SAneesh Kumar K.V 2740a1d6cc56SAneesh Kumar K.V /* 27414e7ea81dSJan Kara * We have two constraints: We find one extent to map and we 27424e7ea81dSJan Kara * must always write out whole page (makes a difference when 27434e7ea81dSJan Kara * blocksize < pagesize) so that we don't block on IO when we 27444e7ea81dSJan Kara * try to write out the rest of the page. Journalled mode is 27454e7ea81dSJan Kara * not supported by delalloc. 2746a1d6cc56SAneesh Kumar K.V */ 2747a1d6cc56SAneesh Kumar K.V BUG_ON(ext4_should_journal_data(inode)); 2748525f4ed8SMingming Cao needed_blocks = ext4_da_writepages_trans_blocks(inode); 2749a1d6cc56SAneesh Kumar K.V 275061628a3fSMingming Cao /* start a new transaction */ 27516b523df4SJan Kara handle = ext4_journal_start_with_reserve(inode, 27526b523df4SJan Kara EXT4_HT_WRITE_PAGE, needed_blocks, rsv_blocks); 275361628a3fSMingming Cao if (IS_ERR(handle)) { 275461628a3fSMingming Cao ret = PTR_ERR(handle); 27551693918eSTheodore Ts'o ext4_msg(inode->i_sb, KERN_CRIT, "%s: jbd2_start: " 2756fbe845ddSCurt Wohlgemuth "%ld pages, ino %lu; err %d", __func__, 2757a1d6cc56SAneesh Kumar K.V wbc->nr_to_write, inode->i_ino, ret); 27584e7ea81dSJan Kara /* Release allocated io_end */ 27594e7ea81dSJan Kara ext4_put_io_end(mpd.io_submit.io_end); 27604e7ea81dSJan Kara break; 276161628a3fSMingming Cao } 2762f63e6005STheodore Ts'o 27634e7ea81dSJan Kara trace_ext4_da_write_pages(inode, mpd.first_page, mpd.wbc); 27644e7ea81dSJan Kara ret = mpage_prepare_extent_to_map(&mpd); 27654e7ea81dSJan Kara if (!ret) { 27664e7ea81dSJan Kara if (mpd.map.m_len) 2767cb530541STheodore Ts'o ret = mpage_map_and_submit_extent(handle, &mpd, 2768cb530541STheodore Ts'o &give_up_on_write); 27694e7ea81dSJan Kara else { 2770f63e6005STheodore Ts'o /* 27714e7ea81dSJan Kara * We scanned the whole range (or exhausted 27724e7ea81dSJan Kara * nr_to_write), submitted what was mapped and 27734e7ea81dSJan Kara * didn't find anything needing mapping. We are 27744e7ea81dSJan Kara * done. 2775f63e6005STheodore Ts'o */ 27764e7ea81dSJan Kara done = true; 2777f63e6005STheodore Ts'o } 27784e7ea81dSJan Kara } 2779646caa9cSJan Kara /* 2780646caa9cSJan Kara * Caution: If the handle is synchronous, 2781646caa9cSJan Kara * ext4_journal_stop() can wait for transaction commit 2782646caa9cSJan Kara * to finish which may depend on writeback of pages to 2783646caa9cSJan Kara * complete or on page lock to be released. In that 2784646caa9cSJan Kara * case, we have to wait until after after we have 2785646caa9cSJan Kara * submitted all the IO, released page locks we hold, 2786646caa9cSJan Kara * and dropped io_end reference (for extent conversion 2787646caa9cSJan Kara * to be able to complete) before stopping the handle. 2788646caa9cSJan Kara */ 2789646caa9cSJan Kara if (!ext4_handle_valid(handle) || handle->h_sync == 0) { 279061628a3fSMingming Cao ext4_journal_stop(handle); 2791646caa9cSJan Kara handle = NULL; 2792646caa9cSJan Kara } 27934e7ea81dSJan Kara /* Submit prepared bio */ 27944e7ea81dSJan Kara ext4_io_submit(&mpd.io_submit); 27954e7ea81dSJan Kara /* Unlock pages we didn't use */ 2796cb530541STheodore Ts'o mpage_release_unused_pages(&mpd, give_up_on_write); 2797646caa9cSJan Kara /* 2798646caa9cSJan Kara * Drop our io_end reference we got from init. We have 2799646caa9cSJan Kara * to be careful and use deferred io_end finishing if 2800646caa9cSJan Kara * we are still holding the transaction as we can 2801646caa9cSJan Kara * release the last reference to io_end which may end 2802646caa9cSJan Kara * up doing unwritten extent conversion. 2803646caa9cSJan Kara */ 2804646caa9cSJan Kara if (handle) { 2805646caa9cSJan Kara ext4_put_io_end_defer(mpd.io_submit.io_end); 2806646caa9cSJan Kara ext4_journal_stop(handle); 2807646caa9cSJan Kara } else 28084e7ea81dSJan Kara ext4_put_io_end(mpd.io_submit.io_end); 2809df22291fSAneesh Kumar K.V 28104e7ea81dSJan Kara if (ret == -ENOSPC && sbi->s_journal) { 28114e7ea81dSJan Kara /* 28124e7ea81dSJan Kara * Commit the transaction which would 281322208dedSAneesh Kumar K.V * free blocks released in the transaction 281422208dedSAneesh Kumar K.V * and try again 281522208dedSAneesh Kumar K.V */ 2816df22291fSAneesh Kumar K.V jbd2_journal_force_commit_nested(sbi->s_journal); 281722208dedSAneesh Kumar K.V ret = 0; 28184e7ea81dSJan Kara continue; 28194e7ea81dSJan Kara } 28204e7ea81dSJan Kara /* Fatal error - ENOMEM, EIO... */ 28214e7ea81dSJan Kara if (ret) 282261628a3fSMingming Cao break; 282361628a3fSMingming Cao } 28241bce63d1SShaohua Li blk_finish_plug(&plug); 28259c12a831SJan Kara if (!ret && !cycled && wbc->nr_to_write > 0) { 28262acf2c26SAneesh Kumar K.V cycled = 1; 28274e7ea81dSJan Kara mpd.last_page = writeback_index - 1; 28284e7ea81dSJan Kara mpd.first_page = 0; 28292acf2c26SAneesh Kumar K.V goto retry; 28302acf2c26SAneesh Kumar K.V } 283161628a3fSMingming Cao 283222208dedSAneesh Kumar K.V /* Update index */ 283322208dedSAneesh Kumar K.V if (wbc->range_cyclic || (range_whole && wbc->nr_to_write > 0)) 283422208dedSAneesh Kumar K.V /* 28354e7ea81dSJan Kara * Set the writeback_index so that range_cyclic 283622208dedSAneesh Kumar K.V * mode will write it back later 283722208dedSAneesh Kumar K.V */ 28384e7ea81dSJan Kara mapping->writeback_index = mpd.first_page; 2839a1d6cc56SAneesh Kumar K.V 284061628a3fSMingming Cao out_writepages: 284120970ba6STheodore Ts'o trace_ext4_writepages_result(inode, wbc, ret, 28424e7ea81dSJan Kara nr_to_write - wbc->nr_to_write); 2843c8585c6fSDaeho Jeong percpu_up_read(&sbi->s_journal_flag_rwsem); 284461628a3fSMingming Cao return ret; 284564769240SAlex Tomas } 284664769240SAlex Tomas 284779f0be8dSAneesh Kumar K.V static int ext4_nonda_switch(struct super_block *sb) 284879f0be8dSAneesh Kumar K.V { 28495c1ff336SEric Whitney s64 free_clusters, dirty_clusters; 285079f0be8dSAneesh Kumar K.V struct ext4_sb_info *sbi = EXT4_SB(sb); 285179f0be8dSAneesh Kumar K.V 285279f0be8dSAneesh Kumar K.V /* 285379f0be8dSAneesh Kumar K.V * switch to non delalloc mode if we are running low 285479f0be8dSAneesh Kumar K.V * on free block. The free block accounting via percpu 2855179f7ebfSEric Dumazet * counters can get slightly wrong with percpu_counter_batch getting 285679f0be8dSAneesh Kumar K.V * accumulated on each CPU without updating global counters 285779f0be8dSAneesh Kumar K.V * Delalloc need an accurate free block accounting. So switch 285879f0be8dSAneesh Kumar K.V * to non delalloc when we are near to error range. 285979f0be8dSAneesh Kumar K.V */ 28605c1ff336SEric Whitney free_clusters = 28615c1ff336SEric Whitney percpu_counter_read_positive(&sbi->s_freeclusters_counter); 28625c1ff336SEric Whitney dirty_clusters = 28635c1ff336SEric Whitney percpu_counter_read_positive(&sbi->s_dirtyclusters_counter); 286400d4e736STheodore Ts'o /* 286500d4e736STheodore Ts'o * Start pushing delalloc when 1/2 of free blocks are dirty. 286600d4e736STheodore Ts'o */ 28675c1ff336SEric Whitney if (dirty_clusters && (free_clusters < 2 * dirty_clusters)) 286810ee27a0SMiao Xie try_to_writeback_inodes_sb(sb, WB_REASON_FS_FREE_SPACE); 286900d4e736STheodore Ts'o 28705c1ff336SEric Whitney if (2 * free_clusters < 3 * dirty_clusters || 28715c1ff336SEric Whitney free_clusters < (dirty_clusters + EXT4_FREECLUSTERS_WATERMARK)) { 287279f0be8dSAneesh Kumar K.V /* 2873c8afb446SEric Sandeen * free block count is less than 150% of dirty blocks 2874c8afb446SEric Sandeen * or free blocks is less than watermark 287579f0be8dSAneesh Kumar K.V */ 287679f0be8dSAneesh Kumar K.V return 1; 287779f0be8dSAneesh Kumar K.V } 287879f0be8dSAneesh Kumar K.V return 0; 287979f0be8dSAneesh Kumar K.V } 288079f0be8dSAneesh Kumar K.V 28810ff8947fSEric Sandeen /* We always reserve for an inode update; the superblock could be there too */ 28820ff8947fSEric Sandeen static int ext4_da_write_credits(struct inode *inode, loff_t pos, unsigned len) 28830ff8947fSEric Sandeen { 2884e2b911c5SDarrick J. Wong if (likely(ext4_has_feature_large_file(inode->i_sb))) 28850ff8947fSEric Sandeen return 1; 28860ff8947fSEric Sandeen 28870ff8947fSEric Sandeen if (pos + len <= 0x7fffffffULL) 28880ff8947fSEric Sandeen return 1; 28890ff8947fSEric Sandeen 28900ff8947fSEric Sandeen /* We might need to update the superblock to set LARGE_FILE */ 28910ff8947fSEric Sandeen return 2; 28920ff8947fSEric Sandeen } 28930ff8947fSEric Sandeen 289464769240SAlex Tomas static int ext4_da_write_begin(struct file *file, struct address_space *mapping, 289564769240SAlex Tomas loff_t pos, unsigned len, unsigned flags, 289664769240SAlex Tomas struct page **pagep, void **fsdata) 289764769240SAlex Tomas { 289872b8ab9dSEric Sandeen int ret, retries = 0; 289964769240SAlex Tomas struct page *page; 290064769240SAlex Tomas pgoff_t index; 290164769240SAlex Tomas struct inode *inode = mapping->host; 290264769240SAlex Tomas handle_t *handle; 290364769240SAlex Tomas 290409cbfeafSKirill A. Shutemov index = pos >> PAGE_SHIFT; 290579f0be8dSAneesh Kumar K.V 290679f0be8dSAneesh Kumar K.V if (ext4_nonda_switch(inode->i_sb)) { 290779f0be8dSAneesh Kumar K.V *fsdata = (void *)FALL_BACK_TO_NONDELALLOC; 290879f0be8dSAneesh Kumar K.V return ext4_write_begin(file, mapping, pos, 290979f0be8dSAneesh Kumar K.V len, flags, pagep, fsdata); 291079f0be8dSAneesh Kumar K.V } 291179f0be8dSAneesh Kumar K.V *fsdata = (void *)0; 29129bffad1eSTheodore Ts'o trace_ext4_da_write_begin(inode, pos, len, flags); 29139c3569b5STao Ma 29149c3569b5STao Ma if (ext4_test_inode_state(inode, EXT4_STATE_MAY_INLINE_DATA)) { 29159c3569b5STao Ma ret = ext4_da_write_inline_data_begin(mapping, inode, 29169c3569b5STao Ma pos, len, flags, 29179c3569b5STao Ma pagep, fsdata); 29189c3569b5STao Ma if (ret < 0) 291947564bfbSTheodore Ts'o return ret; 292047564bfbSTheodore Ts'o if (ret == 1) 292147564bfbSTheodore Ts'o return 0; 29229c3569b5STao Ma } 29239c3569b5STao Ma 292447564bfbSTheodore Ts'o /* 292547564bfbSTheodore Ts'o * grab_cache_page_write_begin() can take a long time if the 292647564bfbSTheodore Ts'o * system is thrashing due to memory pressure, or if the page 292747564bfbSTheodore Ts'o * is being written back. So grab it first before we start 292847564bfbSTheodore Ts'o * the transaction handle. This also allows us to allocate 292947564bfbSTheodore Ts'o * the page (if needed) without using GFP_NOFS. 293047564bfbSTheodore Ts'o */ 293147564bfbSTheodore Ts'o retry_grab: 293247564bfbSTheodore Ts'o page = grab_cache_page_write_begin(mapping, index, flags); 293347564bfbSTheodore Ts'o if (!page) 293447564bfbSTheodore Ts'o return -ENOMEM; 293547564bfbSTheodore Ts'o unlock_page(page); 293647564bfbSTheodore Ts'o 293764769240SAlex Tomas /* 293864769240SAlex Tomas * With delayed allocation, we don't log the i_disksize update 293964769240SAlex Tomas * if there is delayed block allocation. But we still need 294064769240SAlex Tomas * to journalling the i_disksize update if writes to the end 294164769240SAlex Tomas * of file which has an already mapped buffer. 294264769240SAlex Tomas */ 294347564bfbSTheodore Ts'o retry_journal: 29440ff8947fSEric Sandeen handle = ext4_journal_start(inode, EXT4_HT_WRITE_PAGE, 29450ff8947fSEric Sandeen ext4_da_write_credits(inode, pos, len)); 294664769240SAlex Tomas if (IS_ERR(handle)) { 294709cbfeafSKirill A. Shutemov put_page(page); 294847564bfbSTheodore Ts'o return PTR_ERR(handle); 294964769240SAlex Tomas } 295064769240SAlex Tomas 295147564bfbSTheodore Ts'o lock_page(page); 295247564bfbSTheodore Ts'o if (page->mapping != mapping) { 295347564bfbSTheodore Ts'o /* The page got truncated from under us */ 295447564bfbSTheodore Ts'o unlock_page(page); 295509cbfeafSKirill A. Shutemov put_page(page); 2956d5a0d4f7SEric Sandeen ext4_journal_stop(handle); 295747564bfbSTheodore Ts'o goto retry_grab; 2958d5a0d4f7SEric Sandeen } 295947564bfbSTheodore Ts'o /* In case writeback began while the page was unlocked */ 29607afe5aa5SDmitry Monakhov wait_for_stable_page(page); 296164769240SAlex Tomas 29622058f83aSMichael Halcrow #ifdef CONFIG_EXT4_FS_ENCRYPTION 29632058f83aSMichael Halcrow ret = ext4_block_write_begin(page, pos, len, 29642058f83aSMichael Halcrow ext4_da_get_block_prep); 29652058f83aSMichael Halcrow #else 29666e1db88dSChristoph Hellwig ret = __block_write_begin(page, pos, len, ext4_da_get_block_prep); 29672058f83aSMichael Halcrow #endif 296864769240SAlex Tomas if (ret < 0) { 296964769240SAlex Tomas unlock_page(page); 297064769240SAlex Tomas ext4_journal_stop(handle); 2971ae4d5372SAneesh Kumar K.V /* 2972ae4d5372SAneesh Kumar K.V * block_write_begin may have instantiated a few blocks 2973ae4d5372SAneesh Kumar K.V * outside i_size. Trim these off again. Don't need 2974ae4d5372SAneesh Kumar K.V * i_size_read because we hold i_mutex. 2975ae4d5372SAneesh Kumar K.V */ 2976ae4d5372SAneesh Kumar K.V if (pos + len > inode->i_size) 2977b9a4207dSJan Kara ext4_truncate_failed_write(inode); 297847564bfbSTheodore Ts'o 297947564bfbSTheodore Ts'o if (ret == -ENOSPC && 298047564bfbSTheodore Ts'o ext4_should_retry_alloc(inode->i_sb, &retries)) 298147564bfbSTheodore Ts'o goto retry_journal; 298247564bfbSTheodore Ts'o 298309cbfeafSKirill A. Shutemov put_page(page); 298447564bfbSTheodore Ts'o return ret; 298564769240SAlex Tomas } 298664769240SAlex Tomas 298747564bfbSTheodore Ts'o *pagep = page; 298864769240SAlex Tomas return ret; 298964769240SAlex Tomas } 299064769240SAlex Tomas 2991632eaeabSMingming Cao /* 2992632eaeabSMingming Cao * Check if we should update i_disksize 2993632eaeabSMingming Cao * when write to the end of file but not require block allocation 2994632eaeabSMingming Cao */ 2995632eaeabSMingming Cao static int ext4_da_should_update_i_disksize(struct page *page, 2996632eaeabSMingming Cao unsigned long offset) 2997632eaeabSMingming Cao { 2998632eaeabSMingming Cao struct buffer_head *bh; 2999632eaeabSMingming Cao struct inode *inode = page->mapping->host; 3000632eaeabSMingming Cao unsigned int idx; 3001632eaeabSMingming Cao int i; 3002632eaeabSMingming Cao 3003632eaeabSMingming Cao bh = page_buffers(page); 3004632eaeabSMingming Cao idx = offset >> inode->i_blkbits; 3005632eaeabSMingming Cao 3006632eaeabSMingming Cao for (i = 0; i < idx; i++) 3007632eaeabSMingming Cao bh = bh->b_this_page; 3008632eaeabSMingming Cao 300929fa89d0SAneesh Kumar K.V if (!buffer_mapped(bh) || (buffer_delay(bh)) || buffer_unwritten(bh)) 3010632eaeabSMingming Cao return 0; 3011632eaeabSMingming Cao return 1; 3012632eaeabSMingming Cao } 3013632eaeabSMingming Cao 301464769240SAlex Tomas static int ext4_da_write_end(struct file *file, 301564769240SAlex Tomas struct address_space *mapping, 301664769240SAlex Tomas loff_t pos, unsigned len, unsigned copied, 301764769240SAlex Tomas struct page *page, void *fsdata) 301864769240SAlex Tomas { 301964769240SAlex Tomas struct inode *inode = mapping->host; 302064769240SAlex Tomas int ret = 0, ret2; 302164769240SAlex Tomas handle_t *handle = ext4_journal_current_handle(); 302264769240SAlex Tomas loff_t new_i_size; 3023632eaeabSMingming Cao unsigned long start, end; 302479f0be8dSAneesh Kumar K.V int write_mode = (int)(unsigned long)fsdata; 302579f0be8dSAneesh Kumar K.V 302674d553aaSTheodore Ts'o if (write_mode == FALL_BACK_TO_NONDELALLOC) 302774d553aaSTheodore Ts'o return ext4_write_end(file, mapping, pos, 302879f0be8dSAneesh Kumar K.V len, copied, page, fsdata); 3029632eaeabSMingming Cao 30309bffad1eSTheodore Ts'o trace_ext4_da_write_end(inode, pos, len, copied); 303109cbfeafSKirill A. Shutemov start = pos & (PAGE_SIZE - 1); 3032632eaeabSMingming Cao end = start + copied - 1; 303364769240SAlex Tomas 303464769240SAlex Tomas /* 303564769240SAlex Tomas * generic_write_end() will run mark_inode_dirty() if i_size 303664769240SAlex Tomas * changes. So let's piggyback the i_disksize mark_inode_dirty 303764769240SAlex Tomas * into that. 303864769240SAlex Tomas */ 303964769240SAlex Tomas new_i_size = pos + copied; 3040ea51d132SAndrea Arcangeli if (copied && new_i_size > EXT4_I(inode)->i_disksize) { 30419c3569b5STao Ma if (ext4_has_inline_data(inode) || 30429c3569b5STao Ma ext4_da_should_update_i_disksize(page, end)) { 3043ee124d27SDmitry Monakhov ext4_update_i_disksize(inode, new_i_size); 3044cf17fea6SAneesh Kumar K.V /* We need to mark inode dirty even if 3045cf17fea6SAneesh Kumar K.V * new_i_size is less that inode->i_size 3046cf17fea6SAneesh Kumar K.V * bu greater than i_disksize.(hint delalloc) 3047cf17fea6SAneesh Kumar K.V */ 3048cf17fea6SAneesh Kumar K.V ext4_mark_inode_dirty(handle, inode); 3049632eaeabSMingming Cao } 3050632eaeabSMingming Cao } 30519c3569b5STao Ma 30529c3569b5STao Ma if (write_mode != CONVERT_INLINE_DATA && 30539c3569b5STao Ma ext4_test_inode_state(inode, EXT4_STATE_MAY_INLINE_DATA) && 30549c3569b5STao Ma ext4_has_inline_data(inode)) 30559c3569b5STao Ma ret2 = ext4_da_write_inline_data_end(inode, pos, len, copied, 30569c3569b5STao Ma page); 30579c3569b5STao Ma else 305864769240SAlex Tomas ret2 = generic_write_end(file, mapping, pos, len, copied, 305964769240SAlex Tomas page, fsdata); 30609c3569b5STao Ma 306164769240SAlex Tomas copied = ret2; 306264769240SAlex Tomas if (ret2 < 0) 306364769240SAlex Tomas ret = ret2; 306464769240SAlex Tomas ret2 = ext4_journal_stop(handle); 306564769240SAlex Tomas if (!ret) 306664769240SAlex Tomas ret = ret2; 306764769240SAlex Tomas 306864769240SAlex Tomas return ret ? ret : copied; 306964769240SAlex Tomas } 307064769240SAlex Tomas 3071d47992f8SLukas Czerner static void ext4_da_invalidatepage(struct page *page, unsigned int offset, 3072d47992f8SLukas Czerner unsigned int length) 307364769240SAlex Tomas { 307464769240SAlex Tomas /* 307564769240SAlex Tomas * Drop reserved blocks 307664769240SAlex Tomas */ 307764769240SAlex Tomas BUG_ON(!PageLocked(page)); 307864769240SAlex Tomas if (!page_has_buffers(page)) 307964769240SAlex Tomas goto out; 308064769240SAlex Tomas 3081ca99fdd2SLukas Czerner ext4_da_page_release_reservation(page, offset, length); 308264769240SAlex Tomas 308364769240SAlex Tomas out: 3084d47992f8SLukas Czerner ext4_invalidatepage(page, offset, length); 308564769240SAlex Tomas 308664769240SAlex Tomas return; 308764769240SAlex Tomas } 308864769240SAlex Tomas 3089ccd2506bSTheodore Ts'o /* 3090ccd2506bSTheodore Ts'o * Force all delayed allocation blocks to be allocated for a given inode. 3091ccd2506bSTheodore Ts'o */ 3092ccd2506bSTheodore Ts'o int ext4_alloc_da_blocks(struct inode *inode) 3093ccd2506bSTheodore Ts'o { 3094fb40ba0dSTheodore Ts'o trace_ext4_alloc_da_blocks(inode); 3095fb40ba0dSTheodore Ts'o 309671d4f7d0STheodore Ts'o if (!EXT4_I(inode)->i_reserved_data_blocks) 3097ccd2506bSTheodore Ts'o return 0; 3098ccd2506bSTheodore Ts'o 3099ccd2506bSTheodore Ts'o /* 3100ccd2506bSTheodore Ts'o * We do something simple for now. The filemap_flush() will 3101ccd2506bSTheodore Ts'o * also start triggering a write of the data blocks, which is 3102ccd2506bSTheodore Ts'o * not strictly speaking necessary (and for users of 3103ccd2506bSTheodore Ts'o * laptop_mode, not even desirable). However, to do otherwise 3104ccd2506bSTheodore Ts'o * would require replicating code paths in: 3105ccd2506bSTheodore Ts'o * 310620970ba6STheodore Ts'o * ext4_writepages() -> 3107ccd2506bSTheodore Ts'o * write_cache_pages() ---> (via passed in callback function) 3108ccd2506bSTheodore Ts'o * __mpage_da_writepage() --> 3109ccd2506bSTheodore Ts'o * mpage_add_bh_to_extent() 3110ccd2506bSTheodore Ts'o * mpage_da_map_blocks() 3111ccd2506bSTheodore Ts'o * 3112ccd2506bSTheodore Ts'o * The problem is that write_cache_pages(), located in 3113ccd2506bSTheodore Ts'o * mm/page-writeback.c, marks pages clean in preparation for 3114ccd2506bSTheodore Ts'o * doing I/O, which is not desirable if we're not planning on 3115ccd2506bSTheodore Ts'o * doing I/O at all. 3116ccd2506bSTheodore Ts'o * 3117ccd2506bSTheodore Ts'o * We could call write_cache_pages(), and then redirty all of 3118380cf090SWu Fengguang * the pages by calling redirty_page_for_writepage() but that 3119ccd2506bSTheodore Ts'o * would be ugly in the extreme. So instead we would need to 3120ccd2506bSTheodore Ts'o * replicate parts of the code in the above functions, 312125985edcSLucas De Marchi * simplifying them because we wouldn't actually intend to 3122ccd2506bSTheodore Ts'o * write out the pages, but rather only collect contiguous 3123ccd2506bSTheodore Ts'o * logical block extents, call the multi-block allocator, and 3124ccd2506bSTheodore Ts'o * then update the buffer heads with the block allocations. 3125ccd2506bSTheodore Ts'o * 3126ccd2506bSTheodore Ts'o * For now, though, we'll cheat by calling filemap_flush(), 3127ccd2506bSTheodore Ts'o * which will map the blocks, and start the I/O, but not 3128ccd2506bSTheodore Ts'o * actually wait for the I/O to complete. 3129ccd2506bSTheodore Ts'o */ 3130ccd2506bSTheodore Ts'o return filemap_flush(inode->i_mapping); 3131ccd2506bSTheodore Ts'o } 313264769240SAlex Tomas 313364769240SAlex Tomas /* 3134ac27a0ecSDave Kleikamp * bmap() is special. It gets used by applications such as lilo and by 3135ac27a0ecSDave Kleikamp * the swapper to find the on-disk block of a specific piece of data. 3136ac27a0ecSDave Kleikamp * 3137ac27a0ecSDave Kleikamp * Naturally, this is dangerous if the block concerned is still in the 3138617ba13bSMingming Cao * journal. If somebody makes a swapfile on an ext4 data-journaling 3139ac27a0ecSDave Kleikamp * filesystem and enables swap, then they may get a nasty shock when the 3140ac27a0ecSDave Kleikamp * data getting swapped to that swapfile suddenly gets overwritten by 3141ac27a0ecSDave Kleikamp * the original zero's written out previously to the journal and 3142ac27a0ecSDave Kleikamp * awaiting writeback in the kernel's buffer cache. 3143ac27a0ecSDave Kleikamp * 3144ac27a0ecSDave Kleikamp * So, if we see any bmap calls here on a modified, data-journaled file, 3145ac27a0ecSDave Kleikamp * take extra steps to flush any blocks which might be in the cache. 3146ac27a0ecSDave Kleikamp */ 3147617ba13bSMingming Cao static sector_t ext4_bmap(struct address_space *mapping, sector_t block) 3148ac27a0ecSDave Kleikamp { 3149ac27a0ecSDave Kleikamp struct inode *inode = mapping->host; 3150ac27a0ecSDave Kleikamp journal_t *journal; 3151ac27a0ecSDave Kleikamp int err; 3152ac27a0ecSDave Kleikamp 315346c7f254STao Ma /* 315446c7f254STao Ma * We can get here for an inline file via the FIBMAP ioctl 315546c7f254STao Ma */ 315646c7f254STao Ma if (ext4_has_inline_data(inode)) 315746c7f254STao Ma return 0; 315846c7f254STao Ma 315964769240SAlex Tomas if (mapping_tagged(mapping, PAGECACHE_TAG_DIRTY) && 316064769240SAlex Tomas test_opt(inode->i_sb, DELALLOC)) { 316164769240SAlex Tomas /* 316264769240SAlex Tomas * With delalloc we want to sync the file 316364769240SAlex Tomas * so that we can make sure we allocate 316464769240SAlex Tomas * blocks for file 316564769240SAlex Tomas */ 316664769240SAlex Tomas filemap_write_and_wait(mapping); 316764769240SAlex Tomas } 316864769240SAlex Tomas 316919f5fb7aSTheodore Ts'o if (EXT4_JOURNAL(inode) && 317019f5fb7aSTheodore Ts'o ext4_test_inode_state(inode, EXT4_STATE_JDATA)) { 3171ac27a0ecSDave Kleikamp /* 3172ac27a0ecSDave Kleikamp * This is a REALLY heavyweight approach, but the use of 3173ac27a0ecSDave Kleikamp * bmap on dirty files is expected to be extremely rare: 3174ac27a0ecSDave Kleikamp * only if we run lilo or swapon on a freshly made file 3175ac27a0ecSDave Kleikamp * do we expect this to happen. 3176ac27a0ecSDave Kleikamp * 3177ac27a0ecSDave Kleikamp * (bmap requires CAP_SYS_RAWIO so this does not 3178ac27a0ecSDave Kleikamp * represent an unprivileged user DOS attack --- we'd be 3179ac27a0ecSDave Kleikamp * in trouble if mortal users could trigger this path at 3180ac27a0ecSDave Kleikamp * will.) 3181ac27a0ecSDave Kleikamp * 3182617ba13bSMingming Cao * NB. EXT4_STATE_JDATA is not set on files other than 3183ac27a0ecSDave Kleikamp * regular files. If somebody wants to bmap a directory 3184ac27a0ecSDave Kleikamp * or symlink and gets confused because the buffer 3185ac27a0ecSDave Kleikamp * hasn't yet been flushed to disk, they deserve 3186ac27a0ecSDave Kleikamp * everything they get. 3187ac27a0ecSDave Kleikamp */ 3188ac27a0ecSDave Kleikamp 318919f5fb7aSTheodore Ts'o ext4_clear_inode_state(inode, EXT4_STATE_JDATA); 3190617ba13bSMingming Cao journal = EXT4_JOURNAL(inode); 3191dab291afSMingming Cao jbd2_journal_lock_updates(journal); 3192dab291afSMingming Cao err = jbd2_journal_flush(journal); 3193dab291afSMingming Cao jbd2_journal_unlock_updates(journal); 3194ac27a0ecSDave Kleikamp 3195ac27a0ecSDave Kleikamp if (err) 3196ac27a0ecSDave Kleikamp return 0; 3197ac27a0ecSDave Kleikamp } 3198ac27a0ecSDave Kleikamp 3199617ba13bSMingming Cao return generic_block_bmap(mapping, block, ext4_get_block); 3200ac27a0ecSDave Kleikamp } 3201ac27a0ecSDave Kleikamp 3202617ba13bSMingming Cao static int ext4_readpage(struct file *file, struct page *page) 3203ac27a0ecSDave Kleikamp { 320446c7f254STao Ma int ret = -EAGAIN; 320546c7f254STao Ma struct inode *inode = page->mapping->host; 320646c7f254STao Ma 32070562e0baSJiaying Zhang trace_ext4_readpage(page); 320846c7f254STao Ma 320946c7f254STao Ma if (ext4_has_inline_data(inode)) 321046c7f254STao Ma ret = ext4_readpage_inline(inode, page); 321146c7f254STao Ma 321246c7f254STao Ma if (ret == -EAGAIN) 3213f64e02feSTheodore Ts'o return ext4_mpage_readpages(page->mapping, NULL, page, 1); 321446c7f254STao Ma 321546c7f254STao Ma return ret; 3216ac27a0ecSDave Kleikamp } 3217ac27a0ecSDave Kleikamp 3218ac27a0ecSDave Kleikamp static int 3219617ba13bSMingming Cao ext4_readpages(struct file *file, struct address_space *mapping, 3220ac27a0ecSDave Kleikamp struct list_head *pages, unsigned nr_pages) 3221ac27a0ecSDave Kleikamp { 322246c7f254STao Ma struct inode *inode = mapping->host; 322346c7f254STao Ma 322446c7f254STao Ma /* If the file has inline data, no need to do readpages. */ 322546c7f254STao Ma if (ext4_has_inline_data(inode)) 322646c7f254STao Ma return 0; 322746c7f254STao Ma 3228f64e02feSTheodore Ts'o return ext4_mpage_readpages(mapping, pages, NULL, nr_pages); 3229ac27a0ecSDave Kleikamp } 3230ac27a0ecSDave Kleikamp 3231d47992f8SLukas Czerner static void ext4_invalidatepage(struct page *page, unsigned int offset, 3232d47992f8SLukas Czerner unsigned int length) 3233ac27a0ecSDave Kleikamp { 3234ca99fdd2SLukas Czerner trace_ext4_invalidatepage(page, offset, length); 32350562e0baSJiaying Zhang 32364520fb3cSJan Kara /* No journalling happens on data buffers when this function is used */ 32374520fb3cSJan Kara WARN_ON(page_has_buffers(page) && buffer_jbd(page_buffers(page))); 32384520fb3cSJan Kara 3239ca99fdd2SLukas Czerner block_invalidatepage(page, offset, length); 32404520fb3cSJan Kara } 32414520fb3cSJan Kara 324253e87268SJan Kara static int __ext4_journalled_invalidatepage(struct page *page, 3243ca99fdd2SLukas Czerner unsigned int offset, 3244ca99fdd2SLukas Czerner unsigned int length) 32454520fb3cSJan Kara { 32464520fb3cSJan Kara journal_t *journal = EXT4_JOURNAL(page->mapping->host); 32474520fb3cSJan Kara 3248ca99fdd2SLukas Czerner trace_ext4_journalled_invalidatepage(page, offset, length); 32494520fb3cSJan Kara 3250744692dcSJiaying Zhang /* 3251ac27a0ecSDave Kleikamp * If it's a full truncate we just forget about the pending dirtying 3252ac27a0ecSDave Kleikamp */ 325309cbfeafSKirill A. Shutemov if (offset == 0 && length == PAGE_SIZE) 3254ac27a0ecSDave Kleikamp ClearPageChecked(page); 3255ac27a0ecSDave Kleikamp 3256ca99fdd2SLukas Czerner return jbd2_journal_invalidatepage(journal, page, offset, length); 325753e87268SJan Kara } 325853e87268SJan Kara 325953e87268SJan Kara /* Wrapper for aops... */ 326053e87268SJan Kara static void ext4_journalled_invalidatepage(struct page *page, 3261d47992f8SLukas Czerner unsigned int offset, 3262d47992f8SLukas Czerner unsigned int length) 326353e87268SJan Kara { 3264ca99fdd2SLukas Czerner WARN_ON(__ext4_journalled_invalidatepage(page, offset, length) < 0); 3265ac27a0ecSDave Kleikamp } 3266ac27a0ecSDave Kleikamp 3267617ba13bSMingming Cao static int ext4_releasepage(struct page *page, gfp_t wait) 3268ac27a0ecSDave Kleikamp { 3269617ba13bSMingming Cao journal_t *journal = EXT4_JOURNAL(page->mapping->host); 3270ac27a0ecSDave Kleikamp 32710562e0baSJiaying Zhang trace_ext4_releasepage(page); 32720562e0baSJiaying Zhang 3273e1c36595SJan Kara /* Page has dirty journalled data -> cannot release */ 3274e1c36595SJan Kara if (PageChecked(page)) 3275ac27a0ecSDave Kleikamp return 0; 32760390131bSFrank Mayhar if (journal) 3277dab291afSMingming Cao return jbd2_journal_try_to_free_buffers(journal, page, wait); 32780390131bSFrank Mayhar else 32790390131bSFrank Mayhar return try_to_free_buffers(page); 3280ac27a0ecSDave Kleikamp } 3281ac27a0ecSDave Kleikamp 3282ba5843f5SJan Kara #ifdef CONFIG_FS_DAX 3283364443cbSJan Kara static int ext4_iomap_begin(struct inode *inode, loff_t offset, loff_t length, 3284364443cbSJan Kara unsigned flags, struct iomap *iomap) 3285364443cbSJan Kara { 3286364443cbSJan Kara unsigned int blkbits = inode->i_blkbits; 3287364443cbSJan Kara unsigned long first_block = offset >> blkbits; 3288364443cbSJan Kara unsigned long last_block = (offset + length - 1) >> blkbits; 3289364443cbSJan Kara struct ext4_map_blocks map; 3290364443cbSJan Kara int ret; 3291364443cbSJan Kara 3292364443cbSJan Kara if (WARN_ON_ONCE(ext4_has_inline_data(inode))) 3293364443cbSJan Kara return -ERANGE; 3294364443cbSJan Kara 3295364443cbSJan Kara map.m_lblk = first_block; 3296364443cbSJan Kara map.m_len = last_block - first_block + 1; 3297364443cbSJan Kara 3298776722e8SJan Kara if (!(flags & IOMAP_WRITE)) { 3299364443cbSJan Kara ret = ext4_map_blocks(NULL, inode, &map, 0); 3300776722e8SJan Kara } else { 3301776722e8SJan Kara int dio_credits; 3302776722e8SJan Kara handle_t *handle; 3303776722e8SJan Kara int retries = 0; 3304776722e8SJan Kara 3305776722e8SJan Kara /* Trim mapping request to maximum we can map at once for DIO */ 3306776722e8SJan Kara if (map.m_len > DIO_MAX_BLOCKS) 3307776722e8SJan Kara map.m_len = DIO_MAX_BLOCKS; 3308776722e8SJan Kara dio_credits = ext4_chunk_trans_blocks(inode, map.m_len); 3309776722e8SJan Kara retry: 3310776722e8SJan Kara /* 3311776722e8SJan Kara * Either we allocate blocks and then we don't get unwritten 3312776722e8SJan Kara * extent so we have reserved enough credits, or the blocks 3313776722e8SJan Kara * are already allocated and unwritten and in that case 3314776722e8SJan Kara * extent conversion fits in the credits as well. 3315776722e8SJan Kara */ 3316776722e8SJan Kara handle = ext4_journal_start(inode, EXT4_HT_MAP_BLOCKS, 3317776722e8SJan Kara dio_credits); 3318776722e8SJan Kara if (IS_ERR(handle)) 3319776722e8SJan Kara return PTR_ERR(handle); 3320776722e8SJan Kara 3321776722e8SJan Kara ret = ext4_map_blocks(handle, inode, &map, 3322776722e8SJan Kara EXT4_GET_BLOCKS_CREATE_ZERO); 3323776722e8SJan Kara if (ret < 0) { 3324776722e8SJan Kara ext4_journal_stop(handle); 3325776722e8SJan Kara if (ret == -ENOSPC && 3326776722e8SJan Kara ext4_should_retry_alloc(inode->i_sb, &retries)) 3327776722e8SJan Kara goto retry; 3328364443cbSJan Kara return ret; 3329776722e8SJan Kara } 3330776722e8SJan Kara 3331776722e8SJan Kara /* 3332e2ae766cSJan Kara * If we added blocks beyond i_size, we need to make sure they 3333776722e8SJan Kara * will get truncated if we crash before updating i_size in 3334e2ae766cSJan Kara * ext4_iomap_end(). For faults we don't need to do that (and 3335e2ae766cSJan Kara * even cannot because for orphan list operations inode_lock is 3336e2ae766cSJan Kara * required) - if we happen to instantiate block beyond i_size, 3337e2ae766cSJan Kara * it is because we race with truncate which has already added 3338e2ae766cSJan Kara * the inode to the orphan list. 3339776722e8SJan Kara */ 3340e2ae766cSJan Kara if (!(flags & IOMAP_FAULT) && first_block + map.m_len > 3341e2ae766cSJan Kara (i_size_read(inode) + (1 << blkbits) - 1) >> blkbits) { 3342776722e8SJan Kara int err; 3343776722e8SJan Kara 3344776722e8SJan Kara err = ext4_orphan_add(handle, inode); 3345776722e8SJan Kara if (err < 0) { 3346776722e8SJan Kara ext4_journal_stop(handle); 3347776722e8SJan Kara return err; 3348776722e8SJan Kara } 3349776722e8SJan Kara } 3350776722e8SJan Kara ext4_journal_stop(handle); 3351776722e8SJan Kara } 3352364443cbSJan Kara 3353364443cbSJan Kara iomap->flags = 0; 3354364443cbSJan Kara iomap->bdev = inode->i_sb->s_bdev; 3355364443cbSJan Kara iomap->offset = first_block << blkbits; 3356364443cbSJan Kara 3357364443cbSJan Kara if (ret == 0) { 3358364443cbSJan Kara iomap->type = IOMAP_HOLE; 3359364443cbSJan Kara iomap->blkno = IOMAP_NULL_BLOCK; 3360364443cbSJan Kara iomap->length = (u64)map.m_len << blkbits; 3361364443cbSJan Kara } else { 3362364443cbSJan Kara if (map.m_flags & EXT4_MAP_MAPPED) { 3363364443cbSJan Kara iomap->type = IOMAP_MAPPED; 3364364443cbSJan Kara } else if (map.m_flags & EXT4_MAP_UNWRITTEN) { 3365364443cbSJan Kara iomap->type = IOMAP_UNWRITTEN; 3366364443cbSJan Kara } else { 3367364443cbSJan Kara WARN_ON_ONCE(1); 3368364443cbSJan Kara return -EIO; 3369364443cbSJan Kara } 3370364443cbSJan Kara iomap->blkno = (sector_t)map.m_pblk << (blkbits - 9); 3371364443cbSJan Kara iomap->length = (u64)map.m_len << blkbits; 3372364443cbSJan Kara } 3373364443cbSJan Kara 3374364443cbSJan Kara if (map.m_flags & EXT4_MAP_NEW) 3375364443cbSJan Kara iomap->flags |= IOMAP_F_NEW; 3376364443cbSJan Kara return 0; 3377364443cbSJan Kara } 3378364443cbSJan Kara 3379776722e8SJan Kara static int ext4_iomap_end(struct inode *inode, loff_t offset, loff_t length, 3380776722e8SJan Kara ssize_t written, unsigned flags, struct iomap *iomap) 3381776722e8SJan Kara { 3382776722e8SJan Kara int ret = 0; 3383776722e8SJan Kara handle_t *handle; 3384776722e8SJan Kara int blkbits = inode->i_blkbits; 3385776722e8SJan Kara bool truncate = false; 3386776722e8SJan Kara 3387e2ae766cSJan Kara if (!(flags & IOMAP_WRITE) || (flags & IOMAP_FAULT)) 3388776722e8SJan Kara return 0; 3389776722e8SJan Kara 3390776722e8SJan Kara handle = ext4_journal_start(inode, EXT4_HT_INODE, 2); 3391776722e8SJan Kara if (IS_ERR(handle)) { 3392776722e8SJan Kara ret = PTR_ERR(handle); 3393776722e8SJan Kara goto orphan_del; 3394776722e8SJan Kara } 3395776722e8SJan Kara if (ext4_update_inode_size(inode, offset + written)) 3396776722e8SJan Kara ext4_mark_inode_dirty(handle, inode); 3397776722e8SJan Kara /* 3398776722e8SJan Kara * We may need to truncate allocated but not written blocks beyond EOF. 3399776722e8SJan Kara */ 3400776722e8SJan Kara if (iomap->offset + iomap->length > 3401776722e8SJan Kara ALIGN(inode->i_size, 1 << blkbits)) { 3402776722e8SJan Kara ext4_lblk_t written_blk, end_blk; 3403776722e8SJan Kara 3404776722e8SJan Kara written_blk = (offset + written) >> blkbits; 3405776722e8SJan Kara end_blk = (offset + length) >> blkbits; 3406776722e8SJan Kara if (written_blk < end_blk && ext4_can_truncate(inode)) 3407776722e8SJan Kara truncate = true; 3408776722e8SJan Kara } 3409776722e8SJan Kara /* 3410776722e8SJan Kara * Remove inode from orphan list if we were extending a inode and 3411776722e8SJan Kara * everything went fine. 3412776722e8SJan Kara */ 3413776722e8SJan Kara if (!truncate && inode->i_nlink && 3414776722e8SJan Kara !list_empty(&EXT4_I(inode)->i_orphan)) 3415776722e8SJan Kara ext4_orphan_del(handle, inode); 3416776722e8SJan Kara ext4_journal_stop(handle); 3417776722e8SJan Kara if (truncate) { 3418776722e8SJan Kara ext4_truncate_failed_write(inode); 3419776722e8SJan Kara orphan_del: 3420776722e8SJan Kara /* 3421776722e8SJan Kara * If truncate failed early the inode might still be on the 3422776722e8SJan Kara * orphan list; we need to make sure the inode is removed from 3423776722e8SJan Kara * the orphan list in that case. 3424776722e8SJan Kara */ 3425776722e8SJan Kara if (inode->i_nlink) 3426776722e8SJan Kara ext4_orphan_del(NULL, inode); 3427776722e8SJan Kara } 3428776722e8SJan Kara return ret; 3429776722e8SJan Kara } 3430776722e8SJan Kara 3431364443cbSJan Kara struct iomap_ops ext4_iomap_ops = { 3432364443cbSJan Kara .iomap_begin = ext4_iomap_begin, 3433776722e8SJan Kara .iomap_end = ext4_iomap_end, 3434364443cbSJan Kara }; 3435364443cbSJan Kara 3436ba5843f5SJan Kara #endif 3437ed923b57SMatthew Wilcox 3438187372a3SChristoph Hellwig static int ext4_end_io_dio(struct kiocb *iocb, loff_t offset, 34397b7a8665SChristoph Hellwig ssize_t size, void *private) 34404c0425ffSMingming Cao { 3441109811c2SJan Kara ext4_io_end_t *io_end = private; 34424c0425ffSMingming Cao 344397a851edSJan Kara /* if not async direct IO just return */ 34447b7a8665SChristoph Hellwig if (!io_end) 3445187372a3SChristoph Hellwig return 0; 34464b70df18SMingming 34478d5d02e6SMingming Cao ext_debug("ext4_end_io_dio(): io_end 0x%p " 3448ace36ad4SJoe Perches "for inode %lu, iocb 0x%p, offset %llu, size %zd\n", 3449109811c2SJan Kara io_end, io_end->inode->i_ino, iocb, offset, size); 34508d5d02e6SMingming Cao 345174c66bcbSJan Kara /* 345274c66bcbSJan Kara * Error during AIO DIO. We cannot convert unwritten extents as the 345374c66bcbSJan Kara * data was not written. Just clear the unwritten flag and drop io_end. 345474c66bcbSJan Kara */ 345574c66bcbSJan Kara if (size <= 0) { 345674c66bcbSJan Kara ext4_clear_io_unwritten_flag(io_end); 345774c66bcbSJan Kara size = 0; 345874c66bcbSJan Kara } 34594c0425ffSMingming Cao io_end->offset = offset; 34604c0425ffSMingming Cao io_end->size = size; 34617b7a8665SChristoph Hellwig ext4_put_io_end(io_end); 3462187372a3SChristoph Hellwig 3463187372a3SChristoph Hellwig return 0; 34644c0425ffSMingming Cao } 3465c7064ef1SJiaying Zhang 34664c0425ffSMingming Cao /* 3467914f82a3SJan Kara * Handling of direct IO writes. 3468914f82a3SJan Kara * 3469914f82a3SJan Kara * For ext4 extent files, ext4 will do direct-io write even to holes, 34704c0425ffSMingming Cao * preallocated extents, and those write extend the file, no need to 34714c0425ffSMingming Cao * fall back to buffered IO. 34724c0425ffSMingming Cao * 3473556615dcSLukas Czerner * For holes, we fallocate those blocks, mark them as unwritten 347469c499d1STheodore Ts'o * If those blocks were preallocated, we mark sure they are split, but 3475556615dcSLukas Czerner * still keep the range to write as unwritten. 34764c0425ffSMingming Cao * 347769c499d1STheodore Ts'o * The unwritten extents will be converted to written when DIO is completed. 34788d5d02e6SMingming Cao * For async direct IO, since the IO may still pending when return, we 347925985edcSLucas De Marchi * set up an end_io call back function, which will do the conversion 34808d5d02e6SMingming Cao * when async direct IO completed. 34814c0425ffSMingming Cao * 34824c0425ffSMingming Cao * If the O_DIRECT write will extend the file then add this inode to the 34834c0425ffSMingming Cao * orphan list. So recovery will truncate it back to the original size 34844c0425ffSMingming Cao * if the machine crashes during the write. 34854c0425ffSMingming Cao * 34864c0425ffSMingming Cao */ 34870e01df10SLinus Torvalds static ssize_t ext4_direct_IO_write(struct kiocb *iocb, struct iov_iter *iter) 34884c0425ffSMingming Cao { 34894c0425ffSMingming Cao struct file *file = iocb->ki_filp; 34904c0425ffSMingming Cao struct inode *inode = file->f_mapping->host; 3491914f82a3SJan Kara struct ext4_inode_info *ei = EXT4_I(inode); 34924c0425ffSMingming Cao ssize_t ret; 3493c8b8e32dSChristoph Hellwig loff_t offset = iocb->ki_pos; 3494a6cbcd4aSAl Viro size_t count = iov_iter_count(iter); 3495729f52c6SZheng Liu int overwrite = 0; 34968b0f165fSAnatol Pomozov get_block_t *get_block_func = NULL; 34978b0f165fSAnatol Pomozov int dio_flags = 0; 349869c499d1STheodore Ts'o loff_t final_size = offset + count; 3499914f82a3SJan Kara int orphan = 0; 3500914f82a3SJan Kara handle_t *handle; 350169c499d1STheodore Ts'o 3502914f82a3SJan Kara if (final_size > inode->i_size) { 3503914f82a3SJan Kara /* Credits for sb + inode write */ 3504914f82a3SJan Kara handle = ext4_journal_start(inode, EXT4_HT_INODE, 2); 3505914f82a3SJan Kara if (IS_ERR(handle)) { 3506914f82a3SJan Kara ret = PTR_ERR(handle); 3507914f82a3SJan Kara goto out; 3508914f82a3SJan Kara } 3509914f82a3SJan Kara ret = ext4_orphan_add(handle, inode); 3510914f82a3SJan Kara if (ret) { 3511914f82a3SJan Kara ext4_journal_stop(handle); 3512914f82a3SJan Kara goto out; 3513914f82a3SJan Kara } 3514914f82a3SJan Kara orphan = 1; 3515914f82a3SJan Kara ei->i_disksize = inode->i_size; 3516914f82a3SJan Kara ext4_journal_stop(handle); 3517914f82a3SJan Kara } 3518729f52c6SZheng Liu 35194bd809dbSZheng Liu BUG_ON(iocb->private == NULL); 35204bd809dbSZheng Liu 3521e8340395SJan Kara /* 3522e8340395SJan Kara * Make all waiters for direct IO properly wait also for extent 3523e8340395SJan Kara * conversion. This also disallows race between truncate() and 3524e8340395SJan Kara * overwrite DIO as i_dio_count needs to be incremented under i_mutex. 3525e8340395SJan Kara */ 3526fe0f07d0SJens Axboe inode_dio_begin(inode); 3527e8340395SJan Kara 35284bd809dbSZheng Liu /* If we do a overwrite dio, i_mutex locking can be released */ 35294bd809dbSZheng Liu overwrite = *((int *)iocb->private); 35304bd809dbSZheng Liu 35312dcba478SJan Kara if (overwrite) 35325955102cSAl Viro inode_unlock(inode); 35334bd809dbSZheng Liu 35344c0425ffSMingming Cao /* 3535914f82a3SJan Kara * For extent mapped files we could direct write to holes and fallocate. 35368d5d02e6SMingming Cao * 3537109811c2SJan Kara * Allocated blocks to fill the hole are marked as unwritten to prevent 3538109811c2SJan Kara * parallel buffered read to expose the stale data before DIO complete 3539109811c2SJan Kara * the data IO. 35408d5d02e6SMingming Cao * 3541109811c2SJan Kara * As to previously fallocated extents, ext4 get_block will just simply 3542109811c2SJan Kara * mark the buffer mapped but still keep the extents unwritten. 35434c0425ffSMingming Cao * 3544109811c2SJan Kara * For non AIO case, we will convert those unwritten extents to written 3545109811c2SJan Kara * after return back from blockdev_direct_IO. That way we save us from 3546109811c2SJan Kara * allocating io_end structure and also the overhead of offloading 3547109811c2SJan Kara * the extent convertion to a workqueue. 35484c0425ffSMingming Cao * 354969c499d1STheodore Ts'o * For async DIO, the conversion needs to be deferred when the 355069c499d1STheodore Ts'o * IO is completed. The ext4 end_io callback function will be 355169c499d1STheodore Ts'o * called to take care of the conversion work. Here for async 355269c499d1STheodore Ts'o * case, we allocate an io_end structure to hook to the iocb. 35534c0425ffSMingming Cao */ 35548d5d02e6SMingming Cao iocb->private = NULL; 3555109811c2SJan Kara if (overwrite) 3556705965bdSJan Kara get_block_func = ext4_dio_get_block_overwrite; 3557*0bd2d5ecSJan Kara else if (!ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS) || 3558914f82a3SJan Kara round_down(offset, 1 << inode->i_blkbits) >= inode->i_size) { 3559914f82a3SJan Kara get_block_func = ext4_dio_get_block; 3560914f82a3SJan Kara dio_flags = DIO_LOCKING | DIO_SKIP_HOLES; 3561914f82a3SJan Kara } else if (is_sync_kiocb(iocb)) { 3562109811c2SJan Kara get_block_func = ext4_dio_get_block_unwritten_sync; 3563109811c2SJan Kara dio_flags = DIO_LOCKING; 356474dae427SJan Kara } else { 3565109811c2SJan Kara get_block_func = ext4_dio_get_block_unwritten_async; 35668b0f165fSAnatol Pomozov dio_flags = DIO_LOCKING; 35678b0f165fSAnatol Pomozov } 35682058f83aSMichael Halcrow #ifdef CONFIG_EXT4_FS_ENCRYPTION 35692058f83aSMichael Halcrow BUG_ON(ext4_encrypted_inode(inode) && S_ISREG(inode->i_mode)); 35702058f83aSMichael Halcrow #endif 3571*0bd2d5ecSJan Kara ret = __blockdev_direct_IO(iocb, inode, inode->i_sb->s_bdev, iter, 3572*0bd2d5ecSJan Kara get_block_func, ext4_end_io_dio, NULL, 3573*0bd2d5ecSJan Kara dio_flags); 35748b0f165fSAnatol Pomozov 357597a851edSJan Kara if (ret > 0 && !overwrite && ext4_test_inode_state(inode, 35765f524950SMingming EXT4_STATE_DIO_UNWRITTEN)) { 3577109f5565SMingming int err; 35788d5d02e6SMingming Cao /* 35798d5d02e6SMingming Cao * for non AIO case, since the IO is already 358025985edcSLucas De Marchi * completed, we could do the conversion right here 35818d5d02e6SMingming Cao */ 35826b523df4SJan Kara err = ext4_convert_unwritten_extents(NULL, inode, 35838d5d02e6SMingming Cao offset, ret); 3584109f5565SMingming if (err < 0) 3585109f5565SMingming ret = err; 358619f5fb7aSTheodore Ts'o ext4_clear_inode_state(inode, EXT4_STATE_DIO_UNWRITTEN); 3587109f5565SMingming } 35884bd809dbSZheng Liu 3589fe0f07d0SJens Axboe inode_dio_end(inode); 35904bd809dbSZheng Liu /* take i_mutex locking again if we do a ovewrite dio */ 35912dcba478SJan Kara if (overwrite) 35925955102cSAl Viro inode_lock(inode); 35934bd809dbSZheng Liu 3594914f82a3SJan Kara if (ret < 0 && final_size > inode->i_size) 3595914f82a3SJan Kara ext4_truncate_failed_write(inode); 3596914f82a3SJan Kara 3597914f82a3SJan Kara /* Handle extending of i_size after direct IO write */ 3598914f82a3SJan Kara if (orphan) { 3599914f82a3SJan Kara int err; 3600914f82a3SJan Kara 3601914f82a3SJan Kara /* Credits for sb + inode write */ 3602914f82a3SJan Kara handle = ext4_journal_start(inode, EXT4_HT_INODE, 2); 3603914f82a3SJan Kara if (IS_ERR(handle)) { 3604914f82a3SJan Kara /* This is really bad luck. We've written the data 3605914f82a3SJan Kara * but cannot extend i_size. Bail out and pretend 3606914f82a3SJan Kara * the write failed... */ 3607914f82a3SJan Kara ret = PTR_ERR(handle); 3608914f82a3SJan Kara if (inode->i_nlink) 3609914f82a3SJan Kara ext4_orphan_del(NULL, inode); 3610914f82a3SJan Kara 3611914f82a3SJan Kara goto out; 3612914f82a3SJan Kara } 3613914f82a3SJan Kara if (inode->i_nlink) 3614914f82a3SJan Kara ext4_orphan_del(handle, inode); 3615914f82a3SJan Kara if (ret > 0) { 3616914f82a3SJan Kara loff_t end = offset + ret; 3617914f82a3SJan Kara if (end > inode->i_size) { 3618914f82a3SJan Kara ei->i_disksize = end; 3619914f82a3SJan Kara i_size_write(inode, end); 3620914f82a3SJan Kara /* 3621914f82a3SJan Kara * We're going to return a positive `ret' 3622914f82a3SJan Kara * here due to non-zero-length I/O, so there's 3623914f82a3SJan Kara * no way of reporting error returns from 3624914f82a3SJan Kara * ext4_mark_inode_dirty() to userspace. So 3625914f82a3SJan Kara * ignore it. 3626914f82a3SJan Kara */ 3627914f82a3SJan Kara ext4_mark_inode_dirty(handle, inode); 3628914f82a3SJan Kara } 3629914f82a3SJan Kara } 3630914f82a3SJan Kara err = ext4_journal_stop(handle); 3631914f82a3SJan Kara if (ret == 0) 3632914f82a3SJan Kara ret = err; 3633914f82a3SJan Kara } 3634914f82a3SJan Kara out: 3635914f82a3SJan Kara return ret; 3636914f82a3SJan Kara } 3637914f82a3SJan Kara 36380e01df10SLinus Torvalds static ssize_t ext4_direct_IO_read(struct kiocb *iocb, struct iov_iter *iter) 3639914f82a3SJan Kara { 364016c54688SJan Kara struct address_space *mapping = iocb->ki_filp->f_mapping; 364116c54688SJan Kara struct inode *inode = mapping->host; 3642*0bd2d5ecSJan Kara size_t count = iov_iter_count(iter); 3643914f82a3SJan Kara ssize_t ret; 3644914f82a3SJan Kara 3645914f82a3SJan Kara /* 364616c54688SJan Kara * Shared inode_lock is enough for us - it protects against concurrent 364716c54688SJan Kara * writes & truncates and since we take care of writing back page cache, 364816c54688SJan Kara * we are protected against page writeback as well. 3649914f82a3SJan Kara */ 365016c54688SJan Kara inode_lock_shared(inode); 365116c54688SJan Kara ret = filemap_write_and_wait_range(mapping, iocb->ki_pos, 365216c54688SJan Kara iocb->ki_pos + count); 365316c54688SJan Kara if (ret) 365416c54688SJan Kara goto out_unlock; 3655914f82a3SJan Kara ret = __blockdev_direct_IO(iocb, inode, inode->i_sb->s_bdev, 3656*0bd2d5ecSJan Kara iter, ext4_dio_get_block, NULL, NULL, 0); 365716c54688SJan Kara out_unlock: 365816c54688SJan Kara inode_unlock_shared(inode); 36594c0425ffSMingming Cao return ret; 36604c0425ffSMingming Cao } 36618d5d02e6SMingming Cao 3662c8b8e32dSChristoph Hellwig static ssize_t ext4_direct_IO(struct kiocb *iocb, struct iov_iter *iter) 36634c0425ffSMingming Cao { 36644c0425ffSMingming Cao struct file *file = iocb->ki_filp; 36654c0425ffSMingming Cao struct inode *inode = file->f_mapping->host; 3666a6cbcd4aSAl Viro size_t count = iov_iter_count(iter); 3667c8b8e32dSChristoph Hellwig loff_t offset = iocb->ki_pos; 36680562e0baSJiaying Zhang ssize_t ret; 36694c0425ffSMingming Cao 36702058f83aSMichael Halcrow #ifdef CONFIG_EXT4_FS_ENCRYPTION 36712058f83aSMichael Halcrow if (ext4_encrypted_inode(inode) && S_ISREG(inode->i_mode)) 36722058f83aSMichael Halcrow return 0; 36732058f83aSMichael Halcrow #endif 36742058f83aSMichael Halcrow 367584ebd795STheodore Ts'o /* 367684ebd795STheodore Ts'o * If we are doing data journalling we don't support O_DIRECT 367784ebd795STheodore Ts'o */ 367884ebd795STheodore Ts'o if (ext4_should_journal_data(inode)) 367984ebd795STheodore Ts'o return 0; 368084ebd795STheodore Ts'o 368146c7f254STao Ma /* Let buffer I/O handle the inline data case. */ 368246c7f254STao Ma if (ext4_has_inline_data(inode)) 368346c7f254STao Ma return 0; 368446c7f254STao Ma 3685*0bd2d5ecSJan Kara /* DAX uses iomap path now */ 3686*0bd2d5ecSJan Kara if (WARN_ON_ONCE(IS_DAX(inode))) 3687*0bd2d5ecSJan Kara return 0; 3688*0bd2d5ecSJan Kara 36896f673763SOmar Sandoval trace_ext4_direct_IO_enter(inode, offset, count, iov_iter_rw(iter)); 3690914f82a3SJan Kara if (iov_iter_rw(iter) == READ) 36910e01df10SLinus Torvalds ret = ext4_direct_IO_read(iocb, iter); 36920562e0baSJiaying Zhang else 36930e01df10SLinus Torvalds ret = ext4_direct_IO_write(iocb, iter); 36946f673763SOmar Sandoval trace_ext4_direct_IO_exit(inode, offset, count, iov_iter_rw(iter), ret); 36950562e0baSJiaying Zhang return ret; 36964c0425ffSMingming Cao } 36974c0425ffSMingming Cao 3698ac27a0ecSDave Kleikamp /* 3699617ba13bSMingming Cao * Pages can be marked dirty completely asynchronously from ext4's journalling 3700ac27a0ecSDave Kleikamp * activity. By filemap_sync_pte(), try_to_unmap_one(), etc. We cannot do 3701ac27a0ecSDave Kleikamp * much here because ->set_page_dirty is called under VFS locks. The page is 3702ac27a0ecSDave Kleikamp * not necessarily locked. 3703ac27a0ecSDave Kleikamp * 3704ac27a0ecSDave Kleikamp * We cannot just dirty the page and leave attached buffers clean, because the 3705ac27a0ecSDave Kleikamp * buffers' dirty state is "definitive". We cannot just set the buffers dirty 3706ac27a0ecSDave Kleikamp * or jbddirty because all the journalling code will explode. 3707ac27a0ecSDave Kleikamp * 3708ac27a0ecSDave Kleikamp * So what we do is to mark the page "pending dirty" and next time writepage 3709ac27a0ecSDave Kleikamp * is called, propagate that into the buffers appropriately. 3710ac27a0ecSDave Kleikamp */ 3711617ba13bSMingming Cao static int ext4_journalled_set_page_dirty(struct page *page) 3712ac27a0ecSDave Kleikamp { 3713ac27a0ecSDave Kleikamp SetPageChecked(page); 3714ac27a0ecSDave Kleikamp return __set_page_dirty_nobuffers(page); 3715ac27a0ecSDave Kleikamp } 3716ac27a0ecSDave Kleikamp 371774d553aaSTheodore Ts'o static const struct address_space_operations ext4_aops = { 3718617ba13bSMingming Cao .readpage = ext4_readpage, 3719617ba13bSMingming Cao .readpages = ext4_readpages, 372043ce1d23SAneesh Kumar K.V .writepage = ext4_writepage, 372120970ba6STheodore Ts'o .writepages = ext4_writepages, 3722bfc1af65SNick Piggin .write_begin = ext4_write_begin, 372374d553aaSTheodore Ts'o .write_end = ext4_write_end, 3724617ba13bSMingming Cao .bmap = ext4_bmap, 3725617ba13bSMingming Cao .invalidatepage = ext4_invalidatepage, 3726617ba13bSMingming Cao .releasepage = ext4_releasepage, 3727617ba13bSMingming Cao .direct_IO = ext4_direct_IO, 3728ac27a0ecSDave Kleikamp .migratepage = buffer_migrate_page, 37298ab22b9aSHisashi Hifumi .is_partially_uptodate = block_is_partially_uptodate, 3730aa261f54SAndi Kleen .error_remove_page = generic_error_remove_page, 3731ac27a0ecSDave Kleikamp }; 3732ac27a0ecSDave Kleikamp 3733617ba13bSMingming Cao static const struct address_space_operations ext4_journalled_aops = { 3734617ba13bSMingming Cao .readpage = ext4_readpage, 3735617ba13bSMingming Cao .readpages = ext4_readpages, 373643ce1d23SAneesh Kumar K.V .writepage = ext4_writepage, 373720970ba6STheodore Ts'o .writepages = ext4_writepages, 3738bfc1af65SNick Piggin .write_begin = ext4_write_begin, 3739bfc1af65SNick Piggin .write_end = ext4_journalled_write_end, 3740617ba13bSMingming Cao .set_page_dirty = ext4_journalled_set_page_dirty, 3741617ba13bSMingming Cao .bmap = ext4_bmap, 37424520fb3cSJan Kara .invalidatepage = ext4_journalled_invalidatepage, 3743617ba13bSMingming Cao .releasepage = ext4_releasepage, 374484ebd795STheodore Ts'o .direct_IO = ext4_direct_IO, 37458ab22b9aSHisashi Hifumi .is_partially_uptodate = block_is_partially_uptodate, 3746aa261f54SAndi Kleen .error_remove_page = generic_error_remove_page, 3747ac27a0ecSDave Kleikamp }; 3748ac27a0ecSDave Kleikamp 374964769240SAlex Tomas static const struct address_space_operations ext4_da_aops = { 375064769240SAlex Tomas .readpage = ext4_readpage, 375164769240SAlex Tomas .readpages = ext4_readpages, 375243ce1d23SAneesh Kumar K.V .writepage = ext4_writepage, 375320970ba6STheodore Ts'o .writepages = ext4_writepages, 375464769240SAlex Tomas .write_begin = ext4_da_write_begin, 375564769240SAlex Tomas .write_end = ext4_da_write_end, 375664769240SAlex Tomas .bmap = ext4_bmap, 375764769240SAlex Tomas .invalidatepage = ext4_da_invalidatepage, 375864769240SAlex Tomas .releasepage = ext4_releasepage, 375964769240SAlex Tomas .direct_IO = ext4_direct_IO, 376064769240SAlex Tomas .migratepage = buffer_migrate_page, 37618ab22b9aSHisashi Hifumi .is_partially_uptodate = block_is_partially_uptodate, 3762aa261f54SAndi Kleen .error_remove_page = generic_error_remove_page, 376364769240SAlex Tomas }; 376464769240SAlex Tomas 3765617ba13bSMingming Cao void ext4_set_aops(struct inode *inode) 3766ac27a0ecSDave Kleikamp { 37673d2b1582SLukas Czerner switch (ext4_inode_journal_mode(inode)) { 37683d2b1582SLukas Czerner case EXT4_INODE_ORDERED_DATA_MODE: 37693d2b1582SLukas Czerner case EXT4_INODE_WRITEBACK_DATA_MODE: 37703d2b1582SLukas Czerner break; 37713d2b1582SLukas Czerner case EXT4_INODE_JOURNAL_DATA_MODE: 3772617ba13bSMingming Cao inode->i_mapping->a_ops = &ext4_journalled_aops; 377374d553aaSTheodore Ts'o return; 37743d2b1582SLukas Czerner default: 37753d2b1582SLukas Czerner BUG(); 37763d2b1582SLukas Czerner } 377774d553aaSTheodore Ts'o if (test_opt(inode->i_sb, DELALLOC)) 377874d553aaSTheodore Ts'o inode->i_mapping->a_ops = &ext4_da_aops; 377974d553aaSTheodore Ts'o else 378074d553aaSTheodore Ts'o inode->i_mapping->a_ops = &ext4_aops; 3781ac27a0ecSDave Kleikamp } 3782ac27a0ecSDave Kleikamp 3783923ae0ffSRoss Zwisler static int __ext4_block_zero_page_range(handle_t *handle, 3784d863dc36SLukas Czerner struct address_space *mapping, loff_t from, loff_t length) 3785d863dc36SLukas Czerner { 378609cbfeafSKirill A. Shutemov ext4_fsblk_t index = from >> PAGE_SHIFT; 378709cbfeafSKirill A. Shutemov unsigned offset = from & (PAGE_SIZE-1); 3788923ae0ffSRoss Zwisler unsigned blocksize, pos; 3789d863dc36SLukas Czerner ext4_lblk_t iblock; 3790d863dc36SLukas Czerner struct inode *inode = mapping->host; 3791d863dc36SLukas Czerner struct buffer_head *bh; 3792d863dc36SLukas Czerner struct page *page; 3793d863dc36SLukas Czerner int err = 0; 3794d863dc36SLukas Czerner 379509cbfeafSKirill A. Shutemov page = find_or_create_page(mapping, from >> PAGE_SHIFT, 3796c62d2555SMichal Hocko mapping_gfp_constraint(mapping, ~__GFP_FS)); 3797d863dc36SLukas Czerner if (!page) 3798d863dc36SLukas Czerner return -ENOMEM; 3799d863dc36SLukas Czerner 3800d863dc36SLukas Czerner blocksize = inode->i_sb->s_blocksize; 3801d863dc36SLukas Czerner 380209cbfeafSKirill A. Shutemov iblock = index << (PAGE_SHIFT - inode->i_sb->s_blocksize_bits); 3803d863dc36SLukas Czerner 3804d863dc36SLukas Czerner if (!page_has_buffers(page)) 3805d863dc36SLukas Czerner create_empty_buffers(page, blocksize, 0); 3806d863dc36SLukas Czerner 3807d863dc36SLukas Czerner /* Find the buffer that contains "offset" */ 3808d863dc36SLukas Czerner bh = page_buffers(page); 3809d863dc36SLukas Czerner pos = blocksize; 3810d863dc36SLukas Czerner while (offset >= pos) { 3811d863dc36SLukas Czerner bh = bh->b_this_page; 3812d863dc36SLukas Czerner iblock++; 3813d863dc36SLukas Czerner pos += blocksize; 3814d863dc36SLukas Czerner } 3815d863dc36SLukas Czerner if (buffer_freed(bh)) { 3816d863dc36SLukas Czerner BUFFER_TRACE(bh, "freed: skip"); 3817d863dc36SLukas Czerner goto unlock; 3818d863dc36SLukas Czerner } 3819d863dc36SLukas Czerner if (!buffer_mapped(bh)) { 3820d863dc36SLukas Czerner BUFFER_TRACE(bh, "unmapped"); 3821d863dc36SLukas Czerner ext4_get_block(inode, iblock, bh, 0); 3822d863dc36SLukas Czerner /* unmapped? It's a hole - nothing to do */ 3823d863dc36SLukas Czerner if (!buffer_mapped(bh)) { 3824d863dc36SLukas Czerner BUFFER_TRACE(bh, "still unmapped"); 3825d863dc36SLukas Czerner goto unlock; 3826d863dc36SLukas Czerner } 3827d863dc36SLukas Czerner } 3828d863dc36SLukas Czerner 3829d863dc36SLukas Czerner /* Ok, it's mapped. Make sure it's up-to-date */ 3830d863dc36SLukas Czerner if (PageUptodate(page)) 3831d863dc36SLukas Czerner set_buffer_uptodate(bh); 3832d863dc36SLukas Czerner 3833d863dc36SLukas Czerner if (!buffer_uptodate(bh)) { 3834d863dc36SLukas Czerner err = -EIO; 3835dfec8a14SMike Christie ll_rw_block(REQ_OP_READ, 0, 1, &bh); 3836d863dc36SLukas Czerner wait_on_buffer(bh); 3837d863dc36SLukas Czerner /* Uhhuh. Read error. Complain and punt. */ 3838d863dc36SLukas Czerner if (!buffer_uptodate(bh)) 3839d863dc36SLukas Czerner goto unlock; 3840c9c7429cSMichael Halcrow if (S_ISREG(inode->i_mode) && 3841c9c7429cSMichael Halcrow ext4_encrypted_inode(inode)) { 3842c9c7429cSMichael Halcrow /* We expect the key to be set. */ 3843a7550b30SJaegeuk Kim BUG_ON(!fscrypt_has_encryption_key(inode)); 384409cbfeafSKirill A. Shutemov BUG_ON(blocksize != PAGE_SIZE); 38457821d4ddSDavid Gstir BUG_ON(!PageLocked(page)); 3846b50f7b26SDavid Gstir WARN_ON_ONCE(fscrypt_decrypt_page(page->mapping->host, 38479c4bb8a3SDavid Gstir page, PAGE_SIZE, 0, page->index)); 3848c9c7429cSMichael Halcrow } 3849d863dc36SLukas Czerner } 3850d863dc36SLukas Czerner if (ext4_should_journal_data(inode)) { 3851d863dc36SLukas Czerner BUFFER_TRACE(bh, "get write access"); 3852d863dc36SLukas Czerner err = ext4_journal_get_write_access(handle, bh); 3853d863dc36SLukas Czerner if (err) 3854d863dc36SLukas Czerner goto unlock; 3855d863dc36SLukas Czerner } 3856d863dc36SLukas Czerner zero_user(page, offset, length); 3857d863dc36SLukas Czerner BUFFER_TRACE(bh, "zeroed end of block"); 3858d863dc36SLukas Czerner 3859d863dc36SLukas Czerner if (ext4_should_journal_data(inode)) { 3860d863dc36SLukas Czerner err = ext4_handle_dirty_metadata(handle, inode, bh); 38610713ed0cSLukas Czerner } else { 3862353eefd3Sjon ernst err = 0; 3863d863dc36SLukas Czerner mark_buffer_dirty(bh); 38643957ef53SJan Kara if (ext4_should_order_data(inode)) 3865ee0876bcSJan Kara err = ext4_jbd2_inode_add_write(handle, inode); 38660713ed0cSLukas Czerner } 3867d863dc36SLukas Czerner 3868d863dc36SLukas Czerner unlock: 3869d863dc36SLukas Czerner unlock_page(page); 387009cbfeafSKirill A. Shutemov put_page(page); 3871d863dc36SLukas Czerner return err; 3872d863dc36SLukas Czerner } 3873d863dc36SLukas Czerner 387494350ab5SMatthew Wilcox /* 3875923ae0ffSRoss Zwisler * ext4_block_zero_page_range() zeros out a mapping of length 'length' 3876923ae0ffSRoss Zwisler * starting from file offset 'from'. The range to be zero'd must 3877923ae0ffSRoss Zwisler * be contained with in one block. If the specified range exceeds 3878923ae0ffSRoss Zwisler * the end of the block it will be shortened to end of the block 3879923ae0ffSRoss Zwisler * that cooresponds to 'from' 3880923ae0ffSRoss Zwisler */ 3881923ae0ffSRoss Zwisler static int ext4_block_zero_page_range(handle_t *handle, 3882923ae0ffSRoss Zwisler struct address_space *mapping, loff_t from, loff_t length) 3883923ae0ffSRoss Zwisler { 3884923ae0ffSRoss Zwisler struct inode *inode = mapping->host; 388509cbfeafSKirill A. Shutemov unsigned offset = from & (PAGE_SIZE-1); 3886923ae0ffSRoss Zwisler unsigned blocksize = inode->i_sb->s_blocksize; 3887923ae0ffSRoss Zwisler unsigned max = blocksize - (offset & (blocksize - 1)); 3888923ae0ffSRoss Zwisler 3889923ae0ffSRoss Zwisler /* 3890923ae0ffSRoss Zwisler * correct length if it does not fall between 3891923ae0ffSRoss Zwisler * 'from' and the end of the block 3892923ae0ffSRoss Zwisler */ 3893923ae0ffSRoss Zwisler if (length > max || length < 0) 3894923ae0ffSRoss Zwisler length = max; 3895923ae0ffSRoss Zwisler 389647e69351SJan Kara if (IS_DAX(inode)) { 389747e69351SJan Kara return iomap_zero_range(inode, from, length, NULL, 389847e69351SJan Kara &ext4_iomap_ops); 389947e69351SJan Kara } 3900923ae0ffSRoss Zwisler return __ext4_block_zero_page_range(handle, mapping, from, length); 3901923ae0ffSRoss Zwisler } 3902923ae0ffSRoss Zwisler 3903923ae0ffSRoss Zwisler /* 390494350ab5SMatthew Wilcox * ext4_block_truncate_page() zeroes out a mapping from file offset `from' 390594350ab5SMatthew Wilcox * up to the end of the block which corresponds to `from'. 390694350ab5SMatthew Wilcox * This required during truncate. We need to physically zero the tail end 390794350ab5SMatthew Wilcox * of that block so it doesn't yield old data if the file is later grown. 390894350ab5SMatthew Wilcox */ 3909c197855eSStephen Hemminger static int ext4_block_truncate_page(handle_t *handle, 391094350ab5SMatthew Wilcox struct address_space *mapping, loff_t from) 391194350ab5SMatthew Wilcox { 391209cbfeafSKirill A. Shutemov unsigned offset = from & (PAGE_SIZE-1); 391394350ab5SMatthew Wilcox unsigned length; 391494350ab5SMatthew Wilcox unsigned blocksize; 391594350ab5SMatthew Wilcox struct inode *inode = mapping->host; 391694350ab5SMatthew Wilcox 391794350ab5SMatthew Wilcox blocksize = inode->i_sb->s_blocksize; 391894350ab5SMatthew Wilcox length = blocksize - (offset & (blocksize - 1)); 391994350ab5SMatthew Wilcox 392094350ab5SMatthew Wilcox return ext4_block_zero_page_range(handle, mapping, from, length); 392194350ab5SMatthew Wilcox } 392294350ab5SMatthew Wilcox 3923a87dd18cSLukas Czerner int ext4_zero_partial_blocks(handle_t *handle, struct inode *inode, 3924a87dd18cSLukas Czerner loff_t lstart, loff_t length) 3925a87dd18cSLukas Czerner { 3926a87dd18cSLukas Czerner struct super_block *sb = inode->i_sb; 3927a87dd18cSLukas Czerner struct address_space *mapping = inode->i_mapping; 3928e1be3a92SLukas Czerner unsigned partial_start, partial_end; 3929a87dd18cSLukas Czerner ext4_fsblk_t start, end; 3930a87dd18cSLukas Czerner loff_t byte_end = (lstart + length - 1); 3931a87dd18cSLukas Czerner int err = 0; 3932a87dd18cSLukas Czerner 3933e1be3a92SLukas Czerner partial_start = lstart & (sb->s_blocksize - 1); 3934e1be3a92SLukas Czerner partial_end = byte_end & (sb->s_blocksize - 1); 3935e1be3a92SLukas Czerner 3936a87dd18cSLukas Czerner start = lstart >> sb->s_blocksize_bits; 3937a87dd18cSLukas Czerner end = byte_end >> sb->s_blocksize_bits; 3938a87dd18cSLukas Czerner 3939a87dd18cSLukas Czerner /* Handle partial zero within the single block */ 3940e1be3a92SLukas Czerner if (start == end && 3941e1be3a92SLukas Czerner (partial_start || (partial_end != sb->s_blocksize - 1))) { 3942a87dd18cSLukas Czerner err = ext4_block_zero_page_range(handle, mapping, 3943a87dd18cSLukas Czerner lstart, length); 3944a87dd18cSLukas Czerner return err; 3945a87dd18cSLukas Czerner } 3946a87dd18cSLukas Czerner /* Handle partial zero out on the start of the range */ 3947e1be3a92SLukas Czerner if (partial_start) { 3948a87dd18cSLukas Czerner err = ext4_block_zero_page_range(handle, mapping, 3949a87dd18cSLukas Czerner lstart, sb->s_blocksize); 3950a87dd18cSLukas Czerner if (err) 3951a87dd18cSLukas Czerner return err; 3952a87dd18cSLukas Czerner } 3953a87dd18cSLukas Czerner /* Handle partial zero out on the end of the range */ 3954e1be3a92SLukas Czerner if (partial_end != sb->s_blocksize - 1) 3955a87dd18cSLukas Czerner err = ext4_block_zero_page_range(handle, mapping, 3956e1be3a92SLukas Czerner byte_end - partial_end, 3957e1be3a92SLukas Czerner partial_end + 1); 3958a87dd18cSLukas Czerner return err; 3959a87dd18cSLukas Czerner } 3960a87dd18cSLukas Czerner 396191ef4cafSDuane Griffin int ext4_can_truncate(struct inode *inode) 396291ef4cafSDuane Griffin { 396391ef4cafSDuane Griffin if (S_ISREG(inode->i_mode)) 396491ef4cafSDuane Griffin return 1; 396591ef4cafSDuane Griffin if (S_ISDIR(inode->i_mode)) 396691ef4cafSDuane Griffin return 1; 396791ef4cafSDuane Griffin if (S_ISLNK(inode->i_mode)) 396891ef4cafSDuane Griffin return !ext4_inode_is_fast_symlink(inode); 396991ef4cafSDuane Griffin return 0; 397091ef4cafSDuane Griffin } 397191ef4cafSDuane Griffin 3972ac27a0ecSDave Kleikamp /* 397301127848SJan Kara * We have to make sure i_disksize gets properly updated before we truncate 397401127848SJan Kara * page cache due to hole punching or zero range. Otherwise i_disksize update 397501127848SJan Kara * can get lost as it may have been postponed to submission of writeback but 397601127848SJan Kara * that will never happen after we truncate page cache. 397701127848SJan Kara */ 397801127848SJan Kara int ext4_update_disksize_before_punch(struct inode *inode, loff_t offset, 397901127848SJan Kara loff_t len) 398001127848SJan Kara { 398101127848SJan Kara handle_t *handle; 398201127848SJan Kara loff_t size = i_size_read(inode); 398301127848SJan Kara 39845955102cSAl Viro WARN_ON(!inode_is_locked(inode)); 398501127848SJan Kara if (offset > size || offset + len < size) 398601127848SJan Kara return 0; 398701127848SJan Kara 398801127848SJan Kara if (EXT4_I(inode)->i_disksize >= size) 398901127848SJan Kara return 0; 399001127848SJan Kara 399101127848SJan Kara handle = ext4_journal_start(inode, EXT4_HT_MISC, 1); 399201127848SJan Kara if (IS_ERR(handle)) 399301127848SJan Kara return PTR_ERR(handle); 399401127848SJan Kara ext4_update_i_disksize(inode, size); 399501127848SJan Kara ext4_mark_inode_dirty(handle, inode); 399601127848SJan Kara ext4_journal_stop(handle); 399701127848SJan Kara 399801127848SJan Kara return 0; 399901127848SJan Kara } 400001127848SJan Kara 400101127848SJan Kara /* 4002cca32b7eSRoss Zwisler * ext4_punch_hole: punches a hole in a file by releasing the blocks 4003a4bb6b64SAllison Henderson * associated with the given offset and length 4004a4bb6b64SAllison Henderson * 4005a4bb6b64SAllison Henderson * @inode: File inode 4006a4bb6b64SAllison Henderson * @offset: The offset where the hole will begin 4007a4bb6b64SAllison Henderson * @len: The length of the hole 4008a4bb6b64SAllison Henderson * 40094907cb7bSAnatol Pomozov * Returns: 0 on success or negative on failure 4010a4bb6b64SAllison Henderson */ 4011a4bb6b64SAllison Henderson 4012aeb2817aSAshish Sangwan int ext4_punch_hole(struct inode *inode, loff_t offset, loff_t length) 4013a4bb6b64SAllison Henderson { 401426a4c0c6STheodore Ts'o struct super_block *sb = inode->i_sb; 401526a4c0c6STheodore Ts'o ext4_lblk_t first_block, stop_block; 401626a4c0c6STheodore Ts'o struct address_space *mapping = inode->i_mapping; 4017a87dd18cSLukas Czerner loff_t first_block_offset, last_block_offset; 401826a4c0c6STheodore Ts'o handle_t *handle; 401926a4c0c6STheodore Ts'o unsigned int credits; 402026a4c0c6STheodore Ts'o int ret = 0; 402126a4c0c6STheodore Ts'o 4022a4bb6b64SAllison Henderson if (!S_ISREG(inode->i_mode)) 402373355192SAllison Henderson return -EOPNOTSUPP; 4024a4bb6b64SAllison Henderson 4025b8a86845SLukas Czerner trace_ext4_punch_hole(inode, offset, length, 0); 4026aaddea81SZheng Liu 402726a4c0c6STheodore Ts'o /* 402826a4c0c6STheodore Ts'o * Write out all dirty pages to avoid race conditions 402926a4c0c6STheodore Ts'o * Then release them. 403026a4c0c6STheodore Ts'o */ 4031cca32b7eSRoss Zwisler if (mapping_tagged(mapping, PAGECACHE_TAG_DIRTY)) { 403226a4c0c6STheodore Ts'o ret = filemap_write_and_wait_range(mapping, offset, 403326a4c0c6STheodore Ts'o offset + length - 1); 403426a4c0c6STheodore Ts'o if (ret) 403526a4c0c6STheodore Ts'o return ret; 403626a4c0c6STheodore Ts'o } 403726a4c0c6STheodore Ts'o 40385955102cSAl Viro inode_lock(inode); 40399ef06cecSLukas Czerner 404026a4c0c6STheodore Ts'o /* No need to punch hole beyond i_size */ 404126a4c0c6STheodore Ts'o if (offset >= inode->i_size) 404226a4c0c6STheodore Ts'o goto out_mutex; 404326a4c0c6STheodore Ts'o 404426a4c0c6STheodore Ts'o /* 404526a4c0c6STheodore Ts'o * If the hole extends beyond i_size, set the hole 404626a4c0c6STheodore Ts'o * to end after the page that contains i_size 404726a4c0c6STheodore Ts'o */ 404826a4c0c6STheodore Ts'o if (offset + length > inode->i_size) { 404926a4c0c6STheodore Ts'o length = inode->i_size + 405009cbfeafSKirill A. Shutemov PAGE_SIZE - (inode->i_size & (PAGE_SIZE - 1)) - 405126a4c0c6STheodore Ts'o offset; 405226a4c0c6STheodore Ts'o } 405326a4c0c6STheodore Ts'o 4054a361293fSJan Kara if (offset & (sb->s_blocksize - 1) || 4055a361293fSJan Kara (offset + length) & (sb->s_blocksize - 1)) { 4056a361293fSJan Kara /* 4057a361293fSJan Kara * Attach jinode to inode for jbd2 if we do any zeroing of 4058a361293fSJan Kara * partial block 4059a361293fSJan Kara */ 4060a361293fSJan Kara ret = ext4_inode_attach_jinode(inode); 4061a361293fSJan Kara if (ret < 0) 4062a361293fSJan Kara goto out_mutex; 4063a361293fSJan Kara 4064a361293fSJan Kara } 4065a361293fSJan Kara 4066ea3d7209SJan Kara /* Wait all existing dio workers, newcomers will block on i_mutex */ 4067ea3d7209SJan Kara ext4_inode_block_unlocked_dio(inode); 4068ea3d7209SJan Kara inode_dio_wait(inode); 4069ea3d7209SJan Kara 4070ea3d7209SJan Kara /* 4071ea3d7209SJan Kara * Prevent page faults from reinstantiating pages we have released from 4072ea3d7209SJan Kara * page cache. 4073ea3d7209SJan Kara */ 4074ea3d7209SJan Kara down_write(&EXT4_I(inode)->i_mmap_sem); 4075a87dd18cSLukas Czerner first_block_offset = round_up(offset, sb->s_blocksize); 4076a87dd18cSLukas Czerner last_block_offset = round_down((offset + length), sb->s_blocksize) - 1; 407726a4c0c6STheodore Ts'o 4078a87dd18cSLukas Czerner /* Now release the pages and zero block aligned part of pages*/ 407901127848SJan Kara if (last_block_offset > first_block_offset) { 408001127848SJan Kara ret = ext4_update_disksize_before_punch(inode, offset, length); 408101127848SJan Kara if (ret) 408201127848SJan Kara goto out_dio; 4083a87dd18cSLukas Czerner truncate_pagecache_range(inode, first_block_offset, 4084a87dd18cSLukas Czerner last_block_offset); 408501127848SJan Kara } 408626a4c0c6STheodore Ts'o 408726a4c0c6STheodore Ts'o if (ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS)) 408826a4c0c6STheodore Ts'o credits = ext4_writepage_trans_blocks(inode); 408926a4c0c6STheodore Ts'o else 409026a4c0c6STheodore Ts'o credits = ext4_blocks_for_truncate(inode); 409126a4c0c6STheodore Ts'o handle = ext4_journal_start(inode, EXT4_HT_TRUNCATE, credits); 409226a4c0c6STheodore Ts'o if (IS_ERR(handle)) { 409326a4c0c6STheodore Ts'o ret = PTR_ERR(handle); 409426a4c0c6STheodore Ts'o ext4_std_error(sb, ret); 409526a4c0c6STheodore Ts'o goto out_dio; 409626a4c0c6STheodore Ts'o } 409726a4c0c6STheodore Ts'o 4098a87dd18cSLukas Czerner ret = ext4_zero_partial_blocks(handle, inode, offset, 4099a87dd18cSLukas Czerner length); 410026a4c0c6STheodore Ts'o if (ret) 410126a4c0c6STheodore Ts'o goto out_stop; 410226a4c0c6STheodore Ts'o 410326a4c0c6STheodore Ts'o first_block = (offset + sb->s_blocksize - 1) >> 410426a4c0c6STheodore Ts'o EXT4_BLOCK_SIZE_BITS(sb); 410526a4c0c6STheodore Ts'o stop_block = (offset + length) >> EXT4_BLOCK_SIZE_BITS(sb); 410626a4c0c6STheodore Ts'o 410726a4c0c6STheodore Ts'o /* If there are no blocks to remove, return now */ 410826a4c0c6STheodore Ts'o if (first_block >= stop_block) 410926a4c0c6STheodore Ts'o goto out_stop; 411026a4c0c6STheodore Ts'o 411126a4c0c6STheodore Ts'o down_write(&EXT4_I(inode)->i_data_sem); 411226a4c0c6STheodore Ts'o ext4_discard_preallocations(inode); 411326a4c0c6STheodore Ts'o 411426a4c0c6STheodore Ts'o ret = ext4_es_remove_extent(inode, first_block, 411526a4c0c6STheodore Ts'o stop_block - first_block); 411626a4c0c6STheodore Ts'o if (ret) { 411726a4c0c6STheodore Ts'o up_write(&EXT4_I(inode)->i_data_sem); 411826a4c0c6STheodore Ts'o goto out_stop; 411926a4c0c6STheodore Ts'o } 412026a4c0c6STheodore Ts'o 412126a4c0c6STheodore Ts'o if (ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS)) 412226a4c0c6STheodore Ts'o ret = ext4_ext_remove_space(inode, first_block, 412326a4c0c6STheodore Ts'o stop_block - 1); 412426a4c0c6STheodore Ts'o else 41254f579ae7SLukas Czerner ret = ext4_ind_remove_space(handle, inode, first_block, 412626a4c0c6STheodore Ts'o stop_block); 412726a4c0c6STheodore Ts'o 4128819c4920STheodore Ts'o up_write(&EXT4_I(inode)->i_data_sem); 412926a4c0c6STheodore Ts'o if (IS_SYNC(inode)) 413026a4c0c6STheodore Ts'o ext4_handle_sync(handle); 4131e251f9bcSMaxim Patlasov 4132eeca7ea1SDeepa Dinamani inode->i_mtime = inode->i_ctime = current_time(inode); 413326a4c0c6STheodore Ts'o ext4_mark_inode_dirty(handle, inode); 413426a4c0c6STheodore Ts'o out_stop: 413526a4c0c6STheodore Ts'o ext4_journal_stop(handle); 413626a4c0c6STheodore Ts'o out_dio: 4137ea3d7209SJan Kara up_write(&EXT4_I(inode)->i_mmap_sem); 413826a4c0c6STheodore Ts'o ext4_inode_resume_unlocked_dio(inode); 413926a4c0c6STheodore Ts'o out_mutex: 41405955102cSAl Viro inode_unlock(inode); 414126a4c0c6STheodore Ts'o return ret; 4142a4bb6b64SAllison Henderson } 4143a4bb6b64SAllison Henderson 4144a361293fSJan Kara int ext4_inode_attach_jinode(struct inode *inode) 4145a361293fSJan Kara { 4146a361293fSJan Kara struct ext4_inode_info *ei = EXT4_I(inode); 4147a361293fSJan Kara struct jbd2_inode *jinode; 4148a361293fSJan Kara 4149a361293fSJan Kara if (ei->jinode || !EXT4_SB(inode->i_sb)->s_journal) 4150a361293fSJan Kara return 0; 4151a361293fSJan Kara 4152a361293fSJan Kara jinode = jbd2_alloc_inode(GFP_KERNEL); 4153a361293fSJan Kara spin_lock(&inode->i_lock); 4154a361293fSJan Kara if (!ei->jinode) { 4155a361293fSJan Kara if (!jinode) { 4156a361293fSJan Kara spin_unlock(&inode->i_lock); 4157a361293fSJan Kara return -ENOMEM; 4158a361293fSJan Kara } 4159a361293fSJan Kara ei->jinode = jinode; 4160a361293fSJan Kara jbd2_journal_init_jbd_inode(ei->jinode, inode); 4161a361293fSJan Kara jinode = NULL; 4162a361293fSJan Kara } 4163a361293fSJan Kara spin_unlock(&inode->i_lock); 4164a361293fSJan Kara if (unlikely(jinode != NULL)) 4165a361293fSJan Kara jbd2_free_inode(jinode); 4166a361293fSJan Kara return 0; 4167a361293fSJan Kara } 4168a361293fSJan Kara 4169a4bb6b64SAllison Henderson /* 4170617ba13bSMingming Cao * ext4_truncate() 4171ac27a0ecSDave Kleikamp * 4172617ba13bSMingming Cao * We block out ext4_get_block() block instantiations across the entire 4173617ba13bSMingming Cao * transaction, and VFS/VM ensures that ext4_truncate() cannot run 4174ac27a0ecSDave Kleikamp * simultaneously on behalf of the same inode. 4175ac27a0ecSDave Kleikamp * 417642b2aa86SJustin P. Mattock * As we work through the truncate and commit bits of it to the journal there 4177ac27a0ecSDave Kleikamp * is one core, guiding principle: the file's tree must always be consistent on 4178ac27a0ecSDave Kleikamp * disk. We must be able to restart the truncate after a crash. 4179ac27a0ecSDave Kleikamp * 4180ac27a0ecSDave Kleikamp * The file's tree may be transiently inconsistent in memory (although it 4181ac27a0ecSDave Kleikamp * probably isn't), but whenever we close off and commit a journal transaction, 4182ac27a0ecSDave Kleikamp * the contents of (the filesystem + the journal) must be consistent and 4183ac27a0ecSDave Kleikamp * restartable. It's pretty simple, really: bottom up, right to left (although 4184ac27a0ecSDave Kleikamp * left-to-right works OK too). 4185ac27a0ecSDave Kleikamp * 4186ac27a0ecSDave Kleikamp * Note that at recovery time, journal replay occurs *before* the restart of 4187ac27a0ecSDave Kleikamp * truncate against the orphan inode list. 4188ac27a0ecSDave Kleikamp * 4189ac27a0ecSDave Kleikamp * The committed inode has the new, desired i_size (which is the same as 4190617ba13bSMingming Cao * i_disksize in this case). After a crash, ext4_orphan_cleanup() will see 4191ac27a0ecSDave Kleikamp * that this inode's truncate did not complete and it will again call 4192617ba13bSMingming Cao * ext4_truncate() to have another go. So there will be instantiated blocks 4193617ba13bSMingming Cao * to the right of the truncation point in a crashed ext4 filesystem. But 4194ac27a0ecSDave Kleikamp * that's fine - as long as they are linked from the inode, the post-crash 4195617ba13bSMingming Cao * ext4_truncate() run will find them and release them. 4196ac27a0ecSDave Kleikamp */ 41972c98eb5eSTheodore Ts'o int ext4_truncate(struct inode *inode) 4198ac27a0ecSDave Kleikamp { 4199819c4920STheodore Ts'o struct ext4_inode_info *ei = EXT4_I(inode); 4200819c4920STheodore Ts'o unsigned int credits; 42012c98eb5eSTheodore Ts'o int err = 0; 4202819c4920STheodore Ts'o handle_t *handle; 4203819c4920STheodore Ts'o struct address_space *mapping = inode->i_mapping; 4204819c4920STheodore Ts'o 420519b5ef61STheodore Ts'o /* 420619b5ef61STheodore Ts'o * There is a possibility that we're either freeing the inode 4207e04027e8SMatthew Wilcox * or it's a completely new inode. In those cases we might not 420819b5ef61STheodore Ts'o * have i_mutex locked because it's not necessary. 420919b5ef61STheodore Ts'o */ 421019b5ef61STheodore Ts'o if (!(inode->i_state & (I_NEW|I_FREEING))) 42115955102cSAl Viro WARN_ON(!inode_is_locked(inode)); 42120562e0baSJiaying Zhang trace_ext4_truncate_enter(inode); 42130562e0baSJiaying Zhang 421491ef4cafSDuane Griffin if (!ext4_can_truncate(inode)) 42152c98eb5eSTheodore Ts'o return 0; 4216ac27a0ecSDave Kleikamp 421712e9b892SDmitry Monakhov ext4_clear_inode_flag(inode, EXT4_INODE_EOFBLOCKS); 4218c8d46e41SJiaying Zhang 42195534fb5bSTheodore Ts'o if (inode->i_size == 0 && !test_opt(inode->i_sb, NO_AUTO_DA_ALLOC)) 422019f5fb7aSTheodore Ts'o ext4_set_inode_state(inode, EXT4_STATE_DA_ALLOC_CLOSE); 42217d8f9f7dSTheodore Ts'o 4222aef1c851STao Ma if (ext4_has_inline_data(inode)) { 4223aef1c851STao Ma int has_inline = 1; 4224aef1c851STao Ma 4225aef1c851STao Ma ext4_inline_data_truncate(inode, &has_inline); 4226aef1c851STao Ma if (has_inline) 42272c98eb5eSTheodore Ts'o return 0; 4228aef1c851STao Ma } 4229aef1c851STao Ma 4230a361293fSJan Kara /* If we zero-out tail of the page, we have to create jinode for jbd2 */ 4231a361293fSJan Kara if (inode->i_size & (inode->i_sb->s_blocksize - 1)) { 4232a361293fSJan Kara if (ext4_inode_attach_jinode(inode) < 0) 42332c98eb5eSTheodore Ts'o return 0; 4234a361293fSJan Kara } 4235a361293fSJan Kara 4236ff9893dcSAmir Goldstein if (ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS)) 4237819c4920STheodore Ts'o credits = ext4_writepage_trans_blocks(inode); 4238ff9893dcSAmir Goldstein else 4239819c4920STheodore Ts'o credits = ext4_blocks_for_truncate(inode); 4240819c4920STheodore Ts'o 4241819c4920STheodore Ts'o handle = ext4_journal_start(inode, EXT4_HT_TRUNCATE, credits); 42422c98eb5eSTheodore Ts'o if (IS_ERR(handle)) 42432c98eb5eSTheodore Ts'o return PTR_ERR(handle); 4244819c4920STheodore Ts'o 4245eb3544c6SLukas Czerner if (inode->i_size & (inode->i_sb->s_blocksize - 1)) 4246eb3544c6SLukas Czerner ext4_block_truncate_page(handle, mapping, inode->i_size); 4247819c4920STheodore Ts'o 4248819c4920STheodore Ts'o /* 4249819c4920STheodore Ts'o * We add the inode to the orphan list, so that if this 4250819c4920STheodore Ts'o * truncate spans multiple transactions, and we crash, we will 4251819c4920STheodore Ts'o * resume the truncate when the filesystem recovers. It also 4252819c4920STheodore Ts'o * marks the inode dirty, to catch the new size. 4253819c4920STheodore Ts'o * 4254819c4920STheodore Ts'o * Implication: the file must always be in a sane, consistent 4255819c4920STheodore Ts'o * truncatable state while each transaction commits. 4256819c4920STheodore Ts'o */ 42572c98eb5eSTheodore Ts'o err = ext4_orphan_add(handle, inode); 42582c98eb5eSTheodore Ts'o if (err) 4259819c4920STheodore Ts'o goto out_stop; 4260819c4920STheodore Ts'o 4261819c4920STheodore Ts'o down_write(&EXT4_I(inode)->i_data_sem); 4262819c4920STheodore Ts'o 4263819c4920STheodore Ts'o ext4_discard_preallocations(inode); 4264819c4920STheodore Ts'o 4265819c4920STheodore Ts'o if (ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS)) 4266d0abb36dSTheodore Ts'o err = ext4_ext_truncate(handle, inode); 4267819c4920STheodore Ts'o else 4268819c4920STheodore Ts'o ext4_ind_truncate(handle, inode); 4269819c4920STheodore Ts'o 4270819c4920STheodore Ts'o up_write(&ei->i_data_sem); 4271d0abb36dSTheodore Ts'o if (err) 4272d0abb36dSTheodore Ts'o goto out_stop; 4273819c4920STheodore Ts'o 4274819c4920STheodore Ts'o if (IS_SYNC(inode)) 4275819c4920STheodore Ts'o ext4_handle_sync(handle); 4276819c4920STheodore Ts'o 4277819c4920STheodore Ts'o out_stop: 4278819c4920STheodore Ts'o /* 4279819c4920STheodore Ts'o * If this was a simple ftruncate() and the file will remain alive, 4280819c4920STheodore Ts'o * then we need to clear up the orphan record which we created above. 4281819c4920STheodore Ts'o * However, if this was a real unlink then we were called by 428258d86a50SWang Shilong * ext4_evict_inode(), and we allow that function to clean up the 4283819c4920STheodore Ts'o * orphan info for us. 4284819c4920STheodore Ts'o */ 4285819c4920STheodore Ts'o if (inode->i_nlink) 4286819c4920STheodore Ts'o ext4_orphan_del(handle, inode); 4287819c4920STheodore Ts'o 4288eeca7ea1SDeepa Dinamani inode->i_mtime = inode->i_ctime = current_time(inode); 4289819c4920STheodore Ts'o ext4_mark_inode_dirty(handle, inode); 4290819c4920STheodore Ts'o ext4_journal_stop(handle); 4291a86c6181SAlex Tomas 42920562e0baSJiaying Zhang trace_ext4_truncate_exit(inode); 42932c98eb5eSTheodore Ts'o return err; 4294ac27a0ecSDave Kleikamp } 4295ac27a0ecSDave Kleikamp 4296ac27a0ecSDave Kleikamp /* 4297617ba13bSMingming Cao * ext4_get_inode_loc returns with an extra refcount against the inode's 4298ac27a0ecSDave Kleikamp * underlying buffer_head on success. If 'in_mem' is true, we have all 4299ac27a0ecSDave Kleikamp * data in memory that is needed to recreate the on-disk version of this 4300ac27a0ecSDave Kleikamp * inode. 4301ac27a0ecSDave Kleikamp */ 4302617ba13bSMingming Cao static int __ext4_get_inode_loc(struct inode *inode, 4303617ba13bSMingming Cao struct ext4_iloc *iloc, int in_mem) 4304ac27a0ecSDave Kleikamp { 4305240799cdSTheodore Ts'o struct ext4_group_desc *gdp; 4306ac27a0ecSDave Kleikamp struct buffer_head *bh; 4307240799cdSTheodore Ts'o struct super_block *sb = inode->i_sb; 4308240799cdSTheodore Ts'o ext4_fsblk_t block; 4309240799cdSTheodore Ts'o int inodes_per_block, inode_offset; 4310ac27a0ecSDave Kleikamp 43113a06d778SAneesh Kumar K.V iloc->bh = NULL; 4312240799cdSTheodore Ts'o if (!ext4_valid_inum(sb, inode->i_ino)) 43136a797d27SDarrick J. Wong return -EFSCORRUPTED; 4314ac27a0ecSDave Kleikamp 4315240799cdSTheodore Ts'o iloc->block_group = (inode->i_ino - 1) / EXT4_INODES_PER_GROUP(sb); 4316240799cdSTheodore Ts'o gdp = ext4_get_group_desc(sb, iloc->block_group, NULL); 4317240799cdSTheodore Ts'o if (!gdp) 4318240799cdSTheodore Ts'o return -EIO; 4319240799cdSTheodore Ts'o 4320240799cdSTheodore Ts'o /* 4321240799cdSTheodore Ts'o * Figure out the offset within the block group inode table 4322240799cdSTheodore Ts'o */ 432300d09882STao Ma inodes_per_block = EXT4_SB(sb)->s_inodes_per_block; 4324240799cdSTheodore Ts'o inode_offset = ((inode->i_ino - 1) % 4325240799cdSTheodore Ts'o EXT4_INODES_PER_GROUP(sb)); 4326240799cdSTheodore Ts'o block = ext4_inode_table(sb, gdp) + (inode_offset / inodes_per_block); 4327240799cdSTheodore Ts'o iloc->offset = (inode_offset % inodes_per_block) * EXT4_INODE_SIZE(sb); 4328240799cdSTheodore Ts'o 4329240799cdSTheodore Ts'o bh = sb_getblk(sb, block); 4330aebf0243SWang Shilong if (unlikely(!bh)) 4331860d21e2STheodore Ts'o return -ENOMEM; 4332ac27a0ecSDave Kleikamp if (!buffer_uptodate(bh)) { 4333ac27a0ecSDave Kleikamp lock_buffer(bh); 43349c83a923SHidehiro Kawai 43359c83a923SHidehiro Kawai /* 43369c83a923SHidehiro Kawai * If the buffer has the write error flag, we have failed 43379c83a923SHidehiro Kawai * to write out another inode in the same block. In this 43389c83a923SHidehiro Kawai * case, we don't have to read the block because we may 43399c83a923SHidehiro Kawai * read the old inode data successfully. 43409c83a923SHidehiro Kawai */ 43419c83a923SHidehiro Kawai if (buffer_write_io_error(bh) && !buffer_uptodate(bh)) 43429c83a923SHidehiro Kawai set_buffer_uptodate(bh); 43439c83a923SHidehiro Kawai 4344ac27a0ecSDave Kleikamp if (buffer_uptodate(bh)) { 4345ac27a0ecSDave Kleikamp /* someone brought it uptodate while we waited */ 4346ac27a0ecSDave Kleikamp unlock_buffer(bh); 4347ac27a0ecSDave Kleikamp goto has_buffer; 4348ac27a0ecSDave Kleikamp } 4349ac27a0ecSDave Kleikamp 4350ac27a0ecSDave Kleikamp /* 4351ac27a0ecSDave Kleikamp * If we have all information of the inode in memory and this 4352ac27a0ecSDave Kleikamp * is the only valid inode in the block, we need not read the 4353ac27a0ecSDave Kleikamp * block. 4354ac27a0ecSDave Kleikamp */ 4355ac27a0ecSDave Kleikamp if (in_mem) { 4356ac27a0ecSDave Kleikamp struct buffer_head *bitmap_bh; 4357240799cdSTheodore Ts'o int i, start; 4358ac27a0ecSDave Kleikamp 4359240799cdSTheodore Ts'o start = inode_offset & ~(inodes_per_block - 1); 4360ac27a0ecSDave Kleikamp 4361ac27a0ecSDave Kleikamp /* Is the inode bitmap in cache? */ 4362240799cdSTheodore Ts'o bitmap_bh = sb_getblk(sb, ext4_inode_bitmap(sb, gdp)); 4363aebf0243SWang Shilong if (unlikely(!bitmap_bh)) 4364ac27a0ecSDave Kleikamp goto make_io; 4365ac27a0ecSDave Kleikamp 4366ac27a0ecSDave Kleikamp /* 4367ac27a0ecSDave Kleikamp * If the inode bitmap isn't in cache then the 4368ac27a0ecSDave Kleikamp * optimisation may end up performing two reads instead 4369ac27a0ecSDave Kleikamp * of one, so skip it. 4370ac27a0ecSDave Kleikamp */ 4371ac27a0ecSDave Kleikamp if (!buffer_uptodate(bitmap_bh)) { 4372ac27a0ecSDave Kleikamp brelse(bitmap_bh); 4373ac27a0ecSDave Kleikamp goto make_io; 4374ac27a0ecSDave Kleikamp } 4375240799cdSTheodore Ts'o for (i = start; i < start + inodes_per_block; i++) { 4376ac27a0ecSDave Kleikamp if (i == inode_offset) 4377ac27a0ecSDave Kleikamp continue; 4378617ba13bSMingming Cao if (ext4_test_bit(i, bitmap_bh->b_data)) 4379ac27a0ecSDave Kleikamp break; 4380ac27a0ecSDave Kleikamp } 4381ac27a0ecSDave Kleikamp brelse(bitmap_bh); 4382240799cdSTheodore Ts'o if (i == start + inodes_per_block) { 4383ac27a0ecSDave Kleikamp /* all other inodes are free, so skip I/O */ 4384ac27a0ecSDave Kleikamp memset(bh->b_data, 0, bh->b_size); 4385ac27a0ecSDave Kleikamp set_buffer_uptodate(bh); 4386ac27a0ecSDave Kleikamp unlock_buffer(bh); 4387ac27a0ecSDave Kleikamp goto has_buffer; 4388ac27a0ecSDave Kleikamp } 4389ac27a0ecSDave Kleikamp } 4390ac27a0ecSDave Kleikamp 4391ac27a0ecSDave Kleikamp make_io: 4392ac27a0ecSDave Kleikamp /* 4393240799cdSTheodore Ts'o * If we need to do any I/O, try to pre-readahead extra 4394240799cdSTheodore Ts'o * blocks from the inode table. 4395240799cdSTheodore Ts'o */ 4396240799cdSTheodore Ts'o if (EXT4_SB(sb)->s_inode_readahead_blks) { 4397240799cdSTheodore Ts'o ext4_fsblk_t b, end, table; 4398240799cdSTheodore Ts'o unsigned num; 43990d606e2cSTheodore Ts'o __u32 ra_blks = EXT4_SB(sb)->s_inode_readahead_blks; 4400240799cdSTheodore Ts'o 4401240799cdSTheodore Ts'o table = ext4_inode_table(sb, gdp); 4402b713a5ecSTheodore Ts'o /* s_inode_readahead_blks is always a power of 2 */ 44030d606e2cSTheodore Ts'o b = block & ~((ext4_fsblk_t) ra_blks - 1); 4404240799cdSTheodore Ts'o if (table > b) 4405240799cdSTheodore Ts'o b = table; 44060d606e2cSTheodore Ts'o end = b + ra_blks; 4407240799cdSTheodore Ts'o num = EXT4_INODES_PER_GROUP(sb); 4408feb0ab32SDarrick J. Wong if (ext4_has_group_desc_csum(sb)) 4409560671a0SAneesh Kumar K.V num -= ext4_itable_unused_count(sb, gdp); 4410240799cdSTheodore Ts'o table += num / inodes_per_block; 4411240799cdSTheodore Ts'o if (end > table) 4412240799cdSTheodore Ts'o end = table; 4413240799cdSTheodore Ts'o while (b <= end) 4414240799cdSTheodore Ts'o sb_breadahead(sb, b++); 4415240799cdSTheodore Ts'o } 4416240799cdSTheodore Ts'o 4417240799cdSTheodore Ts'o /* 4418ac27a0ecSDave Kleikamp * There are other valid inodes in the buffer, this inode 4419ac27a0ecSDave Kleikamp * has in-inode xattrs, or we don't have this inode in memory. 4420ac27a0ecSDave Kleikamp * Read the block from disk. 4421ac27a0ecSDave Kleikamp */ 44220562e0baSJiaying Zhang trace_ext4_load_inode(inode); 4423ac27a0ecSDave Kleikamp get_bh(bh); 4424ac27a0ecSDave Kleikamp bh->b_end_io = end_buffer_read_sync; 44252a222ca9SMike Christie submit_bh(REQ_OP_READ, REQ_META | REQ_PRIO, bh); 4426ac27a0ecSDave Kleikamp wait_on_buffer(bh); 4427ac27a0ecSDave Kleikamp if (!buffer_uptodate(bh)) { 4428c398eda0STheodore Ts'o EXT4_ERROR_INODE_BLOCK(inode, block, 4429c398eda0STheodore Ts'o "unable to read itable block"); 4430ac27a0ecSDave Kleikamp brelse(bh); 4431ac27a0ecSDave Kleikamp return -EIO; 4432ac27a0ecSDave Kleikamp } 4433ac27a0ecSDave Kleikamp } 4434ac27a0ecSDave Kleikamp has_buffer: 4435ac27a0ecSDave Kleikamp iloc->bh = bh; 4436ac27a0ecSDave Kleikamp return 0; 4437ac27a0ecSDave Kleikamp } 4438ac27a0ecSDave Kleikamp 4439617ba13bSMingming Cao int ext4_get_inode_loc(struct inode *inode, struct ext4_iloc *iloc) 4440ac27a0ecSDave Kleikamp { 4441ac27a0ecSDave Kleikamp /* We have all inode data except xattrs in memory here. */ 4442617ba13bSMingming Cao return __ext4_get_inode_loc(inode, iloc, 444319f5fb7aSTheodore Ts'o !ext4_test_inode_state(inode, EXT4_STATE_XATTR)); 4444ac27a0ecSDave Kleikamp } 4445ac27a0ecSDave Kleikamp 4446617ba13bSMingming Cao void ext4_set_inode_flags(struct inode *inode) 4447ac27a0ecSDave Kleikamp { 4448617ba13bSMingming Cao unsigned int flags = EXT4_I(inode)->i_flags; 444900a1a053STheodore Ts'o unsigned int new_fl = 0; 4450ac27a0ecSDave Kleikamp 4451617ba13bSMingming Cao if (flags & EXT4_SYNC_FL) 445200a1a053STheodore Ts'o new_fl |= S_SYNC; 4453617ba13bSMingming Cao if (flags & EXT4_APPEND_FL) 445400a1a053STheodore Ts'o new_fl |= S_APPEND; 4455617ba13bSMingming Cao if (flags & EXT4_IMMUTABLE_FL) 445600a1a053STheodore Ts'o new_fl |= S_IMMUTABLE; 4457617ba13bSMingming Cao if (flags & EXT4_NOATIME_FL) 445800a1a053STheodore Ts'o new_fl |= S_NOATIME; 4459617ba13bSMingming Cao if (flags & EXT4_DIRSYNC_FL) 446000a1a053STheodore Ts'o new_fl |= S_DIRSYNC; 4461a3caa24bSJan Kara if (test_opt(inode->i_sb, DAX) && S_ISREG(inode->i_mode) && 4462a3caa24bSJan Kara !ext4_should_journal_data(inode) && !ext4_has_inline_data(inode) && 4463a3caa24bSJan Kara !ext4_encrypted_inode(inode)) 4464923ae0ffSRoss Zwisler new_fl |= S_DAX; 44655f16f322STheodore Ts'o inode_set_flags(inode, new_fl, 4466923ae0ffSRoss Zwisler S_SYNC|S_APPEND|S_IMMUTABLE|S_NOATIME|S_DIRSYNC|S_DAX); 4467ac27a0ecSDave Kleikamp } 4468ac27a0ecSDave Kleikamp 4469ff9ddf7eSJan Kara /* Propagate flags from i_flags to EXT4_I(inode)->i_flags */ 4470ff9ddf7eSJan Kara void ext4_get_inode_flags(struct ext4_inode_info *ei) 4471ff9ddf7eSJan Kara { 447284a8dce2SDmitry Monakhov unsigned int vfs_fl; 447384a8dce2SDmitry Monakhov unsigned long old_fl, new_fl; 4474ff9ddf7eSJan Kara 447584a8dce2SDmitry Monakhov do { 447684a8dce2SDmitry Monakhov vfs_fl = ei->vfs_inode.i_flags; 447784a8dce2SDmitry Monakhov old_fl = ei->i_flags; 447884a8dce2SDmitry Monakhov new_fl = old_fl & ~(EXT4_SYNC_FL|EXT4_APPEND_FL| 447984a8dce2SDmitry Monakhov EXT4_IMMUTABLE_FL|EXT4_NOATIME_FL| 448084a8dce2SDmitry Monakhov EXT4_DIRSYNC_FL); 448184a8dce2SDmitry Monakhov if (vfs_fl & S_SYNC) 448284a8dce2SDmitry Monakhov new_fl |= EXT4_SYNC_FL; 448384a8dce2SDmitry Monakhov if (vfs_fl & S_APPEND) 448484a8dce2SDmitry Monakhov new_fl |= EXT4_APPEND_FL; 448584a8dce2SDmitry Monakhov if (vfs_fl & S_IMMUTABLE) 448684a8dce2SDmitry Monakhov new_fl |= EXT4_IMMUTABLE_FL; 448784a8dce2SDmitry Monakhov if (vfs_fl & S_NOATIME) 448884a8dce2SDmitry Monakhov new_fl |= EXT4_NOATIME_FL; 448984a8dce2SDmitry Monakhov if (vfs_fl & S_DIRSYNC) 449084a8dce2SDmitry Monakhov new_fl |= EXT4_DIRSYNC_FL; 449184a8dce2SDmitry Monakhov } while (cmpxchg(&ei->i_flags, old_fl, new_fl) != old_fl); 4492ff9ddf7eSJan Kara } 4493de9a55b8STheodore Ts'o 44940fc1b451SAneesh Kumar K.V static blkcnt_t ext4_inode_blocks(struct ext4_inode *raw_inode, 44950fc1b451SAneesh Kumar K.V struct ext4_inode_info *ei) 44960fc1b451SAneesh Kumar K.V { 44970fc1b451SAneesh Kumar K.V blkcnt_t i_blocks ; 44988180a562SAneesh Kumar K.V struct inode *inode = &(ei->vfs_inode); 44998180a562SAneesh Kumar K.V struct super_block *sb = inode->i_sb; 45000fc1b451SAneesh Kumar K.V 4501e2b911c5SDarrick J. Wong if (ext4_has_feature_huge_file(sb)) { 45020fc1b451SAneesh Kumar K.V /* we are using combined 48 bit field */ 45030fc1b451SAneesh Kumar K.V i_blocks = ((u64)le16_to_cpu(raw_inode->i_blocks_high)) << 32 | 45040fc1b451SAneesh Kumar K.V le32_to_cpu(raw_inode->i_blocks_lo); 450507a03824STheodore Ts'o if (ext4_test_inode_flag(inode, EXT4_INODE_HUGE_FILE)) { 45068180a562SAneesh Kumar K.V /* i_blocks represent file system block size */ 45078180a562SAneesh Kumar K.V return i_blocks << (inode->i_blkbits - 9); 45088180a562SAneesh Kumar K.V } else { 45090fc1b451SAneesh Kumar K.V return i_blocks; 45108180a562SAneesh Kumar K.V } 45110fc1b451SAneesh Kumar K.V } else { 45120fc1b451SAneesh Kumar K.V return le32_to_cpu(raw_inode->i_blocks_lo); 45130fc1b451SAneesh Kumar K.V } 45140fc1b451SAneesh Kumar K.V } 4515ff9ddf7eSJan Kara 4516152a7b0aSTao Ma static inline void ext4_iget_extra_inode(struct inode *inode, 4517152a7b0aSTao Ma struct ext4_inode *raw_inode, 4518152a7b0aSTao Ma struct ext4_inode_info *ei) 4519152a7b0aSTao Ma { 4520152a7b0aSTao Ma __le32 *magic = (void *)raw_inode + 4521152a7b0aSTao Ma EXT4_GOOD_OLD_INODE_SIZE + ei->i_extra_isize; 452267cf5b09STao Ma if (*magic == cpu_to_le32(EXT4_XATTR_MAGIC)) { 4523152a7b0aSTao Ma ext4_set_inode_state(inode, EXT4_STATE_XATTR); 452467cf5b09STao Ma ext4_find_inline_data_nolock(inode); 4525f19d5870STao Ma } else 4526f19d5870STao Ma EXT4_I(inode)->i_inline_off = 0; 4527152a7b0aSTao Ma } 4528152a7b0aSTao Ma 4529040cb378SLi Xi int ext4_get_projid(struct inode *inode, kprojid_t *projid) 4530040cb378SLi Xi { 45310b7b7779SKaho Ng if (!ext4_has_feature_project(inode->i_sb)) 4532040cb378SLi Xi return -EOPNOTSUPP; 4533040cb378SLi Xi *projid = EXT4_I(inode)->i_projid; 4534040cb378SLi Xi return 0; 4535040cb378SLi Xi } 4536040cb378SLi Xi 45371d1fe1eeSDavid Howells struct inode *ext4_iget(struct super_block *sb, unsigned long ino) 4538ac27a0ecSDave Kleikamp { 4539617ba13bSMingming Cao struct ext4_iloc iloc; 4540617ba13bSMingming Cao struct ext4_inode *raw_inode; 45411d1fe1eeSDavid Howells struct ext4_inode_info *ei; 45421d1fe1eeSDavid Howells struct inode *inode; 4543b436b9beSJan Kara journal_t *journal = EXT4_SB(sb)->s_journal; 45441d1fe1eeSDavid Howells long ret; 4545ac27a0ecSDave Kleikamp int block; 454608cefc7aSEric W. Biederman uid_t i_uid; 454708cefc7aSEric W. Biederman gid_t i_gid; 4548040cb378SLi Xi projid_t i_projid; 4549ac27a0ecSDave Kleikamp 45501d1fe1eeSDavid Howells inode = iget_locked(sb, ino); 45511d1fe1eeSDavid Howells if (!inode) 45521d1fe1eeSDavid Howells return ERR_PTR(-ENOMEM); 45531d1fe1eeSDavid Howells if (!(inode->i_state & I_NEW)) 45541d1fe1eeSDavid Howells return inode; 45551d1fe1eeSDavid Howells 45561d1fe1eeSDavid Howells ei = EXT4_I(inode); 45577dc57615SPeter Huewe iloc.bh = NULL; 4558ac27a0ecSDave Kleikamp 45591d1fe1eeSDavid Howells ret = __ext4_get_inode_loc(inode, &iloc, 0); 45601d1fe1eeSDavid Howells if (ret < 0) 4561ac27a0ecSDave Kleikamp goto bad_inode; 4562617ba13bSMingming Cao raw_inode = ext4_raw_inode(&iloc); 4563814525f4SDarrick J. Wong 4564814525f4SDarrick J. Wong if (EXT4_INODE_SIZE(inode->i_sb) > EXT4_GOOD_OLD_INODE_SIZE) { 4565814525f4SDarrick J. Wong ei->i_extra_isize = le16_to_cpu(raw_inode->i_extra_isize); 4566814525f4SDarrick J. Wong if (EXT4_GOOD_OLD_INODE_SIZE + ei->i_extra_isize > 4567814525f4SDarrick J. Wong EXT4_INODE_SIZE(inode->i_sb)) { 4568814525f4SDarrick J. Wong EXT4_ERROR_INODE(inode, "bad extra_isize (%u != %u)", 4569814525f4SDarrick J. Wong EXT4_GOOD_OLD_INODE_SIZE + ei->i_extra_isize, 4570814525f4SDarrick J. Wong EXT4_INODE_SIZE(inode->i_sb)); 45716a797d27SDarrick J. Wong ret = -EFSCORRUPTED; 4572814525f4SDarrick J. Wong goto bad_inode; 4573814525f4SDarrick J. Wong } 4574814525f4SDarrick J. Wong } else 4575814525f4SDarrick J. Wong ei->i_extra_isize = 0; 4576814525f4SDarrick J. Wong 4577814525f4SDarrick J. Wong /* Precompute checksum seed for inode metadata */ 45789aa5d32bSDmitry Monakhov if (ext4_has_metadata_csum(sb)) { 4579814525f4SDarrick J. Wong struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb); 4580814525f4SDarrick J. Wong __u32 csum; 4581814525f4SDarrick J. Wong __le32 inum = cpu_to_le32(inode->i_ino); 4582814525f4SDarrick J. Wong __le32 gen = raw_inode->i_generation; 4583814525f4SDarrick J. Wong csum = ext4_chksum(sbi, sbi->s_csum_seed, (__u8 *)&inum, 4584814525f4SDarrick J. Wong sizeof(inum)); 4585814525f4SDarrick J. Wong ei->i_csum_seed = ext4_chksum(sbi, csum, (__u8 *)&gen, 4586814525f4SDarrick J. Wong sizeof(gen)); 4587814525f4SDarrick J. Wong } 4588814525f4SDarrick J. Wong 4589814525f4SDarrick J. Wong if (!ext4_inode_csum_verify(inode, raw_inode, ei)) { 4590814525f4SDarrick J. Wong EXT4_ERROR_INODE(inode, "checksum invalid"); 45916a797d27SDarrick J. Wong ret = -EFSBADCRC; 4592814525f4SDarrick J. Wong goto bad_inode; 4593814525f4SDarrick J. Wong } 4594814525f4SDarrick J. Wong 4595ac27a0ecSDave Kleikamp inode->i_mode = le16_to_cpu(raw_inode->i_mode); 459608cefc7aSEric W. Biederman i_uid = (uid_t)le16_to_cpu(raw_inode->i_uid_low); 459708cefc7aSEric W. Biederman i_gid = (gid_t)le16_to_cpu(raw_inode->i_gid_low); 45980b7b7779SKaho Ng if (ext4_has_feature_project(sb) && 4599040cb378SLi Xi EXT4_INODE_SIZE(sb) > EXT4_GOOD_OLD_INODE_SIZE && 4600040cb378SLi Xi EXT4_FITS_IN_INODE(raw_inode, ei, i_projid)) 4601040cb378SLi Xi i_projid = (projid_t)le32_to_cpu(raw_inode->i_projid); 4602040cb378SLi Xi else 4603040cb378SLi Xi i_projid = EXT4_DEF_PROJID; 4604040cb378SLi Xi 4605ac27a0ecSDave Kleikamp if (!(test_opt(inode->i_sb, NO_UID32))) { 460608cefc7aSEric W. Biederman i_uid |= le16_to_cpu(raw_inode->i_uid_high) << 16; 460708cefc7aSEric W. Biederman i_gid |= le16_to_cpu(raw_inode->i_gid_high) << 16; 4608ac27a0ecSDave Kleikamp } 460908cefc7aSEric W. Biederman i_uid_write(inode, i_uid); 461008cefc7aSEric W. Biederman i_gid_write(inode, i_gid); 4611040cb378SLi Xi ei->i_projid = make_kprojid(&init_user_ns, i_projid); 4612bfe86848SMiklos Szeredi set_nlink(inode, le16_to_cpu(raw_inode->i_links_count)); 4613ac27a0ecSDave Kleikamp 4614353eb83cSTheodore Ts'o ext4_clear_state_flags(ei); /* Only relevant on 32-bit archs */ 461567cf5b09STao Ma ei->i_inline_off = 0; 4616ac27a0ecSDave Kleikamp ei->i_dir_start_lookup = 0; 4617ac27a0ecSDave Kleikamp ei->i_dtime = le32_to_cpu(raw_inode->i_dtime); 4618ac27a0ecSDave Kleikamp /* We now have enough fields to check if the inode was active or not. 4619ac27a0ecSDave Kleikamp * This is needed because nfsd might try to access dead inodes 4620ac27a0ecSDave Kleikamp * the test is that same one that e2fsck uses 4621ac27a0ecSDave Kleikamp * NeilBrown 1999oct15 4622ac27a0ecSDave Kleikamp */ 4623ac27a0ecSDave Kleikamp if (inode->i_nlink == 0) { 4624393d1d1dSDr. Tilmann Bubeck if ((inode->i_mode == 0 || 4625393d1d1dSDr. Tilmann Bubeck !(EXT4_SB(inode->i_sb)->s_mount_state & EXT4_ORPHAN_FS)) && 4626393d1d1dSDr. Tilmann Bubeck ino != EXT4_BOOT_LOADER_INO) { 4627ac27a0ecSDave Kleikamp /* this inode is deleted */ 46281d1fe1eeSDavid Howells ret = -ESTALE; 4629ac27a0ecSDave Kleikamp goto bad_inode; 4630ac27a0ecSDave Kleikamp } 4631ac27a0ecSDave Kleikamp /* The only unlinked inodes we let through here have 4632ac27a0ecSDave Kleikamp * valid i_mode and are being read by the orphan 4633ac27a0ecSDave Kleikamp * recovery code: that's fine, we're about to complete 4634393d1d1dSDr. Tilmann Bubeck * the process of deleting those. 4635393d1d1dSDr. Tilmann Bubeck * OR it is the EXT4_BOOT_LOADER_INO which is 4636393d1d1dSDr. Tilmann Bubeck * not initialized on a new filesystem. */ 4637ac27a0ecSDave Kleikamp } 4638ac27a0ecSDave Kleikamp ei->i_flags = le32_to_cpu(raw_inode->i_flags); 46390fc1b451SAneesh Kumar K.V inode->i_blocks = ext4_inode_blocks(raw_inode, ei); 46407973c0c1SAneesh Kumar K.V ei->i_file_acl = le32_to_cpu(raw_inode->i_file_acl_lo); 4641e2b911c5SDarrick J. Wong if (ext4_has_feature_64bit(sb)) 4642a1ddeb7eSBadari Pulavarty ei->i_file_acl |= 4643a1ddeb7eSBadari Pulavarty ((__u64)le16_to_cpu(raw_inode->i_file_acl_high)) << 32; 4644a48380f7SAneesh Kumar K.V inode->i_size = ext4_isize(raw_inode); 4645ac27a0ecSDave Kleikamp ei->i_disksize = inode->i_size; 4646a9e7f447SDmitry Monakhov #ifdef CONFIG_QUOTA 4647a9e7f447SDmitry Monakhov ei->i_reserved_quota = 0; 4648a9e7f447SDmitry Monakhov #endif 4649ac27a0ecSDave Kleikamp inode->i_generation = le32_to_cpu(raw_inode->i_generation); 4650ac27a0ecSDave Kleikamp ei->i_block_group = iloc.block_group; 4651a4912123STheodore Ts'o ei->i_last_alloc_group = ~0; 4652ac27a0ecSDave Kleikamp /* 4653ac27a0ecSDave Kleikamp * NOTE! The in-memory inode i_data array is in little-endian order 4654ac27a0ecSDave Kleikamp * even on big-endian machines: we do NOT byteswap the block numbers! 4655ac27a0ecSDave Kleikamp */ 4656617ba13bSMingming Cao for (block = 0; block < EXT4_N_BLOCKS; block++) 4657ac27a0ecSDave Kleikamp ei->i_data[block] = raw_inode->i_block[block]; 4658ac27a0ecSDave Kleikamp INIT_LIST_HEAD(&ei->i_orphan); 4659ac27a0ecSDave Kleikamp 4660b436b9beSJan Kara /* 4661b436b9beSJan Kara * Set transaction id's of transactions that have to be committed 4662b436b9beSJan Kara * to finish f[data]sync. We set them to currently running transaction 4663b436b9beSJan Kara * as we cannot be sure that the inode or some of its metadata isn't 4664b436b9beSJan Kara * part of the transaction - the inode could have been reclaimed and 4665b436b9beSJan Kara * now it is reread from disk. 4666b436b9beSJan Kara */ 4667b436b9beSJan Kara if (journal) { 4668b436b9beSJan Kara transaction_t *transaction; 4669b436b9beSJan Kara tid_t tid; 4670b436b9beSJan Kara 4671a931da6aSTheodore Ts'o read_lock(&journal->j_state_lock); 4672b436b9beSJan Kara if (journal->j_running_transaction) 4673b436b9beSJan Kara transaction = journal->j_running_transaction; 4674b436b9beSJan Kara else 4675b436b9beSJan Kara transaction = journal->j_committing_transaction; 4676b436b9beSJan Kara if (transaction) 4677b436b9beSJan Kara tid = transaction->t_tid; 4678b436b9beSJan Kara else 4679b436b9beSJan Kara tid = journal->j_commit_sequence; 4680a931da6aSTheodore Ts'o read_unlock(&journal->j_state_lock); 4681b436b9beSJan Kara ei->i_sync_tid = tid; 4682b436b9beSJan Kara ei->i_datasync_tid = tid; 4683b436b9beSJan Kara } 4684b436b9beSJan Kara 46850040d987SEric Sandeen if (EXT4_INODE_SIZE(inode->i_sb) > EXT4_GOOD_OLD_INODE_SIZE) { 4686ac27a0ecSDave Kleikamp if (ei->i_extra_isize == 0) { 4687ac27a0ecSDave Kleikamp /* The extra space is currently unused. Use it. */ 4688617ba13bSMingming Cao ei->i_extra_isize = sizeof(struct ext4_inode) - 4689617ba13bSMingming Cao EXT4_GOOD_OLD_INODE_SIZE; 4690ac27a0ecSDave Kleikamp } else { 4691152a7b0aSTao Ma ext4_iget_extra_inode(inode, raw_inode, ei); 4692ac27a0ecSDave Kleikamp } 4693814525f4SDarrick J. Wong } 4694ac27a0ecSDave Kleikamp 4695ef7f3835SKalpak Shah EXT4_INODE_GET_XTIME(i_ctime, inode, raw_inode); 4696ef7f3835SKalpak Shah EXT4_INODE_GET_XTIME(i_mtime, inode, raw_inode); 4697ef7f3835SKalpak Shah EXT4_INODE_GET_XTIME(i_atime, inode, raw_inode); 4698ef7f3835SKalpak Shah EXT4_EINODE_GET_XTIME(i_crtime, ei, raw_inode); 4699ef7f3835SKalpak Shah 4700ed3654ebSTheodore Ts'o if (likely(!test_opt2(inode->i_sb, HURD_COMPAT))) { 470125ec56b5SJean Noel Cordenner inode->i_version = le32_to_cpu(raw_inode->i_disk_version); 470225ec56b5SJean Noel Cordenner if (EXT4_INODE_SIZE(inode->i_sb) > EXT4_GOOD_OLD_INODE_SIZE) { 470325ec56b5SJean Noel Cordenner if (EXT4_FITS_IN_INODE(raw_inode, ei, i_version_hi)) 470425ec56b5SJean Noel Cordenner inode->i_version |= 470525ec56b5SJean Noel Cordenner (__u64)(le32_to_cpu(raw_inode->i_version_hi)) << 32; 470625ec56b5SJean Noel Cordenner } 4707c4f65706STheodore Ts'o } 470825ec56b5SJean Noel Cordenner 4709c4b5a614STheodore Ts'o ret = 0; 4710485c26ecSTheodore Ts'o if (ei->i_file_acl && 47111032988cSTheodore Ts'o !ext4_data_block_valid(EXT4_SB(sb), ei->i_file_acl, 1)) { 471224676da4STheodore Ts'o EXT4_ERROR_INODE(inode, "bad extended attribute block %llu", 471324676da4STheodore Ts'o ei->i_file_acl); 47146a797d27SDarrick J. Wong ret = -EFSCORRUPTED; 4715485c26ecSTheodore Ts'o goto bad_inode; 4716f19d5870STao Ma } else if (!ext4_has_inline_data(inode)) { 4717f19d5870STao Ma if (ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS)) { 4718f19d5870STao Ma if ((S_ISREG(inode->i_mode) || S_ISDIR(inode->i_mode) || 4719c4b5a614STheodore Ts'o (S_ISLNK(inode->i_mode) && 4720f19d5870STao Ma !ext4_inode_is_fast_symlink(inode)))) 47217a262f7cSAneesh Kumar K.V /* Validate extent which is part of inode */ 47227a262f7cSAneesh Kumar K.V ret = ext4_ext_check_inode(inode); 4723fe2c8191SThiemo Nagel } else if (S_ISREG(inode->i_mode) || S_ISDIR(inode->i_mode) || 4724fe2c8191SThiemo Nagel (S_ISLNK(inode->i_mode) && 4725fe2c8191SThiemo Nagel !ext4_inode_is_fast_symlink(inode))) { 4726fe2c8191SThiemo Nagel /* Validate block references which are part of inode */ 47271f7d1e77STheodore Ts'o ret = ext4_ind_check_inode(inode); 4728fe2c8191SThiemo Nagel } 4729f19d5870STao Ma } 4730567f3e9aSTheodore Ts'o if (ret) 47317a262f7cSAneesh Kumar K.V goto bad_inode; 47327a262f7cSAneesh Kumar K.V 4733ac27a0ecSDave Kleikamp if (S_ISREG(inode->i_mode)) { 4734617ba13bSMingming Cao inode->i_op = &ext4_file_inode_operations; 4735617ba13bSMingming Cao inode->i_fop = &ext4_file_operations; 4736617ba13bSMingming Cao ext4_set_aops(inode); 4737ac27a0ecSDave Kleikamp } else if (S_ISDIR(inode->i_mode)) { 4738617ba13bSMingming Cao inode->i_op = &ext4_dir_inode_operations; 4739617ba13bSMingming Cao inode->i_fop = &ext4_dir_operations; 4740ac27a0ecSDave Kleikamp } else if (S_ISLNK(inode->i_mode)) { 4741a7a67e8aSAl Viro if (ext4_encrypted_inode(inode)) { 4742a7a67e8aSAl Viro inode->i_op = &ext4_encrypted_symlink_inode_operations; 4743a7a67e8aSAl Viro ext4_set_aops(inode); 4744a7a67e8aSAl Viro } else if (ext4_inode_is_fast_symlink(inode)) { 474575e7566bSAl Viro inode->i_link = (char *)ei->i_data; 4746617ba13bSMingming Cao inode->i_op = &ext4_fast_symlink_inode_operations; 4747e83c1397SDuane Griffin nd_terminate_link(ei->i_data, inode->i_size, 4748e83c1397SDuane Griffin sizeof(ei->i_data) - 1); 4749e83c1397SDuane Griffin } else { 4750617ba13bSMingming Cao inode->i_op = &ext4_symlink_inode_operations; 4751617ba13bSMingming Cao ext4_set_aops(inode); 4752ac27a0ecSDave Kleikamp } 475321fc61c7SAl Viro inode_nohighmem(inode); 4754563bdd61STheodore Ts'o } else if (S_ISCHR(inode->i_mode) || S_ISBLK(inode->i_mode) || 4755563bdd61STheodore Ts'o S_ISFIFO(inode->i_mode) || S_ISSOCK(inode->i_mode)) { 4756617ba13bSMingming Cao inode->i_op = &ext4_special_inode_operations; 4757ac27a0ecSDave Kleikamp if (raw_inode->i_block[0]) 4758ac27a0ecSDave Kleikamp init_special_inode(inode, inode->i_mode, 4759ac27a0ecSDave Kleikamp old_decode_dev(le32_to_cpu(raw_inode->i_block[0]))); 4760ac27a0ecSDave Kleikamp else 4761ac27a0ecSDave Kleikamp init_special_inode(inode, inode->i_mode, 4762ac27a0ecSDave Kleikamp new_decode_dev(le32_to_cpu(raw_inode->i_block[1]))); 4763393d1d1dSDr. Tilmann Bubeck } else if (ino == EXT4_BOOT_LOADER_INO) { 4764393d1d1dSDr. Tilmann Bubeck make_bad_inode(inode); 4765563bdd61STheodore Ts'o } else { 47666a797d27SDarrick J. Wong ret = -EFSCORRUPTED; 476724676da4STheodore Ts'o EXT4_ERROR_INODE(inode, "bogus i_mode (%o)", inode->i_mode); 4768563bdd61STheodore Ts'o goto bad_inode; 4769ac27a0ecSDave Kleikamp } 4770ac27a0ecSDave Kleikamp brelse(iloc.bh); 4771617ba13bSMingming Cao ext4_set_inode_flags(inode); 47721d1fe1eeSDavid Howells unlock_new_inode(inode); 47731d1fe1eeSDavid Howells return inode; 4774ac27a0ecSDave Kleikamp 4775ac27a0ecSDave Kleikamp bad_inode: 4776567f3e9aSTheodore Ts'o brelse(iloc.bh); 47771d1fe1eeSDavid Howells iget_failed(inode); 47781d1fe1eeSDavid Howells return ERR_PTR(ret); 4779ac27a0ecSDave Kleikamp } 4780ac27a0ecSDave Kleikamp 4781f4bb2981STheodore Ts'o struct inode *ext4_iget_normal(struct super_block *sb, unsigned long ino) 4782f4bb2981STheodore Ts'o { 4783f4bb2981STheodore Ts'o if (ino < EXT4_FIRST_INO(sb) && ino != EXT4_ROOT_INO) 47846a797d27SDarrick J. Wong return ERR_PTR(-EFSCORRUPTED); 4785f4bb2981STheodore Ts'o return ext4_iget(sb, ino); 4786f4bb2981STheodore Ts'o } 4787f4bb2981STheodore Ts'o 47880fc1b451SAneesh Kumar K.V static int ext4_inode_blocks_set(handle_t *handle, 47890fc1b451SAneesh Kumar K.V struct ext4_inode *raw_inode, 47900fc1b451SAneesh Kumar K.V struct ext4_inode_info *ei) 47910fc1b451SAneesh Kumar K.V { 47920fc1b451SAneesh Kumar K.V struct inode *inode = &(ei->vfs_inode); 47930fc1b451SAneesh Kumar K.V u64 i_blocks = inode->i_blocks; 47940fc1b451SAneesh Kumar K.V struct super_block *sb = inode->i_sb; 47950fc1b451SAneesh Kumar K.V 47960fc1b451SAneesh Kumar K.V if (i_blocks <= ~0U) { 47970fc1b451SAneesh Kumar K.V /* 47984907cb7bSAnatol Pomozov * i_blocks can be represented in a 32 bit variable 47990fc1b451SAneesh Kumar K.V * as multiple of 512 bytes 48000fc1b451SAneesh Kumar K.V */ 48018180a562SAneesh Kumar K.V raw_inode->i_blocks_lo = cpu_to_le32(i_blocks); 48020fc1b451SAneesh Kumar K.V raw_inode->i_blocks_high = 0; 480384a8dce2SDmitry Monakhov ext4_clear_inode_flag(inode, EXT4_INODE_HUGE_FILE); 4804f287a1a5STheodore Ts'o return 0; 4805f287a1a5STheodore Ts'o } 4806e2b911c5SDarrick J. Wong if (!ext4_has_feature_huge_file(sb)) 4807f287a1a5STheodore Ts'o return -EFBIG; 4808f287a1a5STheodore Ts'o 4809f287a1a5STheodore Ts'o if (i_blocks <= 0xffffffffffffULL) { 48100fc1b451SAneesh Kumar K.V /* 48110fc1b451SAneesh Kumar K.V * i_blocks can be represented in a 48 bit variable 48120fc1b451SAneesh Kumar K.V * as multiple of 512 bytes 48130fc1b451SAneesh Kumar K.V */ 48148180a562SAneesh Kumar K.V raw_inode->i_blocks_lo = cpu_to_le32(i_blocks); 48150fc1b451SAneesh Kumar K.V raw_inode->i_blocks_high = cpu_to_le16(i_blocks >> 32); 481684a8dce2SDmitry Monakhov ext4_clear_inode_flag(inode, EXT4_INODE_HUGE_FILE); 48170fc1b451SAneesh Kumar K.V } else { 481884a8dce2SDmitry Monakhov ext4_set_inode_flag(inode, EXT4_INODE_HUGE_FILE); 48198180a562SAneesh Kumar K.V /* i_block is stored in file system block size */ 48208180a562SAneesh Kumar K.V i_blocks = i_blocks >> (inode->i_blkbits - 9); 48218180a562SAneesh Kumar K.V raw_inode->i_blocks_lo = cpu_to_le32(i_blocks); 48228180a562SAneesh Kumar K.V raw_inode->i_blocks_high = cpu_to_le16(i_blocks >> 32); 48230fc1b451SAneesh Kumar K.V } 4824f287a1a5STheodore Ts'o return 0; 48250fc1b451SAneesh Kumar K.V } 48260fc1b451SAneesh Kumar K.V 4827a26f4992STheodore Ts'o struct other_inode { 4828a26f4992STheodore Ts'o unsigned long orig_ino; 4829a26f4992STheodore Ts'o struct ext4_inode *raw_inode; 4830a26f4992STheodore Ts'o }; 4831a26f4992STheodore Ts'o 4832a26f4992STheodore Ts'o static int other_inode_match(struct inode * inode, unsigned long ino, 4833a26f4992STheodore Ts'o void *data) 4834a26f4992STheodore Ts'o { 4835a26f4992STheodore Ts'o struct other_inode *oi = (struct other_inode *) data; 4836a26f4992STheodore Ts'o 4837a26f4992STheodore Ts'o if ((inode->i_ino != ino) || 4838a26f4992STheodore Ts'o (inode->i_state & (I_FREEING | I_WILL_FREE | I_NEW | 4839a26f4992STheodore Ts'o I_DIRTY_SYNC | I_DIRTY_DATASYNC)) || 4840a26f4992STheodore Ts'o ((inode->i_state & I_DIRTY_TIME) == 0)) 4841a26f4992STheodore Ts'o return 0; 4842a26f4992STheodore Ts'o spin_lock(&inode->i_lock); 4843a26f4992STheodore Ts'o if (((inode->i_state & (I_FREEING | I_WILL_FREE | I_NEW | 4844a26f4992STheodore Ts'o I_DIRTY_SYNC | I_DIRTY_DATASYNC)) == 0) && 4845a26f4992STheodore Ts'o (inode->i_state & I_DIRTY_TIME)) { 4846a26f4992STheodore Ts'o struct ext4_inode_info *ei = EXT4_I(inode); 4847a26f4992STheodore Ts'o 4848a26f4992STheodore Ts'o inode->i_state &= ~(I_DIRTY_TIME | I_DIRTY_TIME_EXPIRED); 4849a26f4992STheodore Ts'o spin_unlock(&inode->i_lock); 4850a26f4992STheodore Ts'o 4851a26f4992STheodore Ts'o spin_lock(&ei->i_raw_lock); 4852a26f4992STheodore Ts'o EXT4_INODE_SET_XTIME(i_ctime, inode, oi->raw_inode); 4853a26f4992STheodore Ts'o EXT4_INODE_SET_XTIME(i_mtime, inode, oi->raw_inode); 4854a26f4992STheodore Ts'o EXT4_INODE_SET_XTIME(i_atime, inode, oi->raw_inode); 4855a26f4992STheodore Ts'o ext4_inode_csum_set(inode, oi->raw_inode, ei); 4856a26f4992STheodore Ts'o spin_unlock(&ei->i_raw_lock); 4857a26f4992STheodore Ts'o trace_ext4_other_inode_update_time(inode, oi->orig_ino); 4858a26f4992STheodore Ts'o return -1; 4859a26f4992STheodore Ts'o } 4860a26f4992STheodore Ts'o spin_unlock(&inode->i_lock); 4861a26f4992STheodore Ts'o return -1; 4862a26f4992STheodore Ts'o } 4863a26f4992STheodore Ts'o 4864a26f4992STheodore Ts'o /* 4865a26f4992STheodore Ts'o * Opportunistically update the other time fields for other inodes in 4866a26f4992STheodore Ts'o * the same inode table block. 4867a26f4992STheodore Ts'o */ 4868a26f4992STheodore Ts'o static void ext4_update_other_inodes_time(struct super_block *sb, 4869a26f4992STheodore Ts'o unsigned long orig_ino, char *buf) 4870a26f4992STheodore Ts'o { 4871a26f4992STheodore Ts'o struct other_inode oi; 4872a26f4992STheodore Ts'o unsigned long ino; 4873a26f4992STheodore Ts'o int i, inodes_per_block = EXT4_SB(sb)->s_inodes_per_block; 4874a26f4992STheodore Ts'o int inode_size = EXT4_INODE_SIZE(sb); 4875a26f4992STheodore Ts'o 4876a26f4992STheodore Ts'o oi.orig_ino = orig_ino; 48770f0ff9a9STheodore Ts'o /* 48780f0ff9a9STheodore Ts'o * Calculate the first inode in the inode table block. Inode 48790f0ff9a9STheodore Ts'o * numbers are one-based. That is, the first inode in a block 48800f0ff9a9STheodore Ts'o * (assuming 4k blocks and 256 byte inodes) is (n*16 + 1). 48810f0ff9a9STheodore Ts'o */ 48820f0ff9a9STheodore Ts'o ino = ((orig_ino - 1) & ~(inodes_per_block - 1)) + 1; 4883a26f4992STheodore Ts'o for (i = 0; i < inodes_per_block; i++, ino++, buf += inode_size) { 4884a26f4992STheodore Ts'o if (ino == orig_ino) 4885a26f4992STheodore Ts'o continue; 4886a26f4992STheodore Ts'o oi.raw_inode = (struct ext4_inode *) buf; 4887a26f4992STheodore Ts'o (void) find_inode_nowait(sb, ino, other_inode_match, &oi); 4888a26f4992STheodore Ts'o } 4889a26f4992STheodore Ts'o } 4890a26f4992STheodore Ts'o 4891ac27a0ecSDave Kleikamp /* 4892ac27a0ecSDave Kleikamp * Post the struct inode info into an on-disk inode location in the 4893ac27a0ecSDave Kleikamp * buffer-cache. This gobbles the caller's reference to the 4894ac27a0ecSDave Kleikamp * buffer_head in the inode location struct. 4895ac27a0ecSDave Kleikamp * 4896ac27a0ecSDave Kleikamp * The caller must have write access to iloc->bh. 4897ac27a0ecSDave Kleikamp */ 4898617ba13bSMingming Cao static int ext4_do_update_inode(handle_t *handle, 4899ac27a0ecSDave Kleikamp struct inode *inode, 4900830156c7SFrank Mayhar struct ext4_iloc *iloc) 4901ac27a0ecSDave Kleikamp { 4902617ba13bSMingming Cao struct ext4_inode *raw_inode = ext4_raw_inode(iloc); 4903617ba13bSMingming Cao struct ext4_inode_info *ei = EXT4_I(inode); 4904ac27a0ecSDave Kleikamp struct buffer_head *bh = iloc->bh; 4905202ee5dfSTheodore Ts'o struct super_block *sb = inode->i_sb; 4906ac27a0ecSDave Kleikamp int err = 0, rc, block; 4907202ee5dfSTheodore Ts'o int need_datasync = 0, set_large_file = 0; 490808cefc7aSEric W. Biederman uid_t i_uid; 490908cefc7aSEric W. Biederman gid_t i_gid; 4910040cb378SLi Xi projid_t i_projid; 4911ac27a0ecSDave Kleikamp 4912202ee5dfSTheodore Ts'o spin_lock(&ei->i_raw_lock); 4913202ee5dfSTheodore Ts'o 4914202ee5dfSTheodore Ts'o /* For fields not tracked in the in-memory inode, 4915ac27a0ecSDave Kleikamp * initialise them to zero for new inodes. */ 491619f5fb7aSTheodore Ts'o if (ext4_test_inode_state(inode, EXT4_STATE_NEW)) 4917617ba13bSMingming Cao memset(raw_inode, 0, EXT4_SB(inode->i_sb)->s_inode_size); 4918ac27a0ecSDave Kleikamp 4919ff9ddf7eSJan Kara ext4_get_inode_flags(ei); 4920ac27a0ecSDave Kleikamp raw_inode->i_mode = cpu_to_le16(inode->i_mode); 492108cefc7aSEric W. Biederman i_uid = i_uid_read(inode); 492208cefc7aSEric W. Biederman i_gid = i_gid_read(inode); 4923040cb378SLi Xi i_projid = from_kprojid(&init_user_ns, ei->i_projid); 4924ac27a0ecSDave Kleikamp if (!(test_opt(inode->i_sb, NO_UID32))) { 492508cefc7aSEric W. Biederman raw_inode->i_uid_low = cpu_to_le16(low_16_bits(i_uid)); 492608cefc7aSEric W. Biederman raw_inode->i_gid_low = cpu_to_le16(low_16_bits(i_gid)); 4927ac27a0ecSDave Kleikamp /* 4928ac27a0ecSDave Kleikamp * Fix up interoperability with old kernels. Otherwise, old inodes get 4929ac27a0ecSDave Kleikamp * re-used with the upper 16 bits of the uid/gid intact 4930ac27a0ecSDave Kleikamp */ 493193e3b4e6SDaeho Jeong if (ei->i_dtime && list_empty(&ei->i_orphan)) { 493293e3b4e6SDaeho Jeong raw_inode->i_uid_high = 0; 493393e3b4e6SDaeho Jeong raw_inode->i_gid_high = 0; 493493e3b4e6SDaeho Jeong } else { 4935ac27a0ecSDave Kleikamp raw_inode->i_uid_high = 493608cefc7aSEric W. Biederman cpu_to_le16(high_16_bits(i_uid)); 4937ac27a0ecSDave Kleikamp raw_inode->i_gid_high = 493808cefc7aSEric W. Biederman cpu_to_le16(high_16_bits(i_gid)); 4939ac27a0ecSDave Kleikamp } 4940ac27a0ecSDave Kleikamp } else { 494108cefc7aSEric W. Biederman raw_inode->i_uid_low = cpu_to_le16(fs_high2lowuid(i_uid)); 494208cefc7aSEric W. Biederman raw_inode->i_gid_low = cpu_to_le16(fs_high2lowgid(i_gid)); 4943ac27a0ecSDave Kleikamp raw_inode->i_uid_high = 0; 4944ac27a0ecSDave Kleikamp raw_inode->i_gid_high = 0; 4945ac27a0ecSDave Kleikamp } 4946ac27a0ecSDave Kleikamp raw_inode->i_links_count = cpu_to_le16(inode->i_nlink); 4947ef7f3835SKalpak Shah 4948ef7f3835SKalpak Shah EXT4_INODE_SET_XTIME(i_ctime, inode, raw_inode); 4949ef7f3835SKalpak Shah EXT4_INODE_SET_XTIME(i_mtime, inode, raw_inode); 4950ef7f3835SKalpak Shah EXT4_INODE_SET_XTIME(i_atime, inode, raw_inode); 4951ef7f3835SKalpak Shah EXT4_EINODE_SET_XTIME(i_crtime, ei, raw_inode); 4952ef7f3835SKalpak Shah 4953bce92d56SLi Xi err = ext4_inode_blocks_set(handle, raw_inode, ei); 4954bce92d56SLi Xi if (err) { 4955202ee5dfSTheodore Ts'o spin_unlock(&ei->i_raw_lock); 49560fc1b451SAneesh Kumar K.V goto out_brelse; 4957202ee5dfSTheodore Ts'o } 4958ac27a0ecSDave Kleikamp raw_inode->i_dtime = cpu_to_le32(ei->i_dtime); 4959353eb83cSTheodore Ts'o raw_inode->i_flags = cpu_to_le32(ei->i_flags & 0xFFFFFFFF); 4960ed3654ebSTheodore Ts'o if (likely(!test_opt2(inode->i_sb, HURD_COMPAT))) 4961a1ddeb7eSBadari Pulavarty raw_inode->i_file_acl_high = 4962a1ddeb7eSBadari Pulavarty cpu_to_le16(ei->i_file_acl >> 32); 49637973c0c1SAneesh Kumar K.V raw_inode->i_file_acl_lo = cpu_to_le32(ei->i_file_acl); 4964b71fc079SJan Kara if (ei->i_disksize != ext4_isize(raw_inode)) { 4965a48380f7SAneesh Kumar K.V ext4_isize_set(raw_inode, ei->i_disksize); 4966b71fc079SJan Kara need_datasync = 1; 4967b71fc079SJan Kara } 4968ac27a0ecSDave Kleikamp if (ei->i_disksize > 0x7fffffffULL) { 4969e2b911c5SDarrick J. Wong if (!ext4_has_feature_large_file(sb) || 4970617ba13bSMingming Cao EXT4_SB(sb)->s_es->s_rev_level == 4971202ee5dfSTheodore Ts'o cpu_to_le32(EXT4_GOOD_OLD_REV)) 4972202ee5dfSTheodore Ts'o set_large_file = 1; 4973ac27a0ecSDave Kleikamp } 4974ac27a0ecSDave Kleikamp raw_inode->i_generation = cpu_to_le32(inode->i_generation); 4975ac27a0ecSDave Kleikamp if (S_ISCHR(inode->i_mode) || S_ISBLK(inode->i_mode)) { 4976ac27a0ecSDave Kleikamp if (old_valid_dev(inode->i_rdev)) { 4977ac27a0ecSDave Kleikamp raw_inode->i_block[0] = 4978ac27a0ecSDave Kleikamp cpu_to_le32(old_encode_dev(inode->i_rdev)); 4979ac27a0ecSDave Kleikamp raw_inode->i_block[1] = 0; 4980ac27a0ecSDave Kleikamp } else { 4981ac27a0ecSDave Kleikamp raw_inode->i_block[0] = 0; 4982ac27a0ecSDave Kleikamp raw_inode->i_block[1] = 4983ac27a0ecSDave Kleikamp cpu_to_le32(new_encode_dev(inode->i_rdev)); 4984ac27a0ecSDave Kleikamp raw_inode->i_block[2] = 0; 4985ac27a0ecSDave Kleikamp } 4986f19d5870STao Ma } else if (!ext4_has_inline_data(inode)) { 4987de9a55b8STheodore Ts'o for (block = 0; block < EXT4_N_BLOCKS; block++) 4988ac27a0ecSDave Kleikamp raw_inode->i_block[block] = ei->i_data[block]; 4989f19d5870STao Ma } 4990ac27a0ecSDave Kleikamp 4991ed3654ebSTheodore Ts'o if (likely(!test_opt2(inode->i_sb, HURD_COMPAT))) { 499225ec56b5SJean Noel Cordenner raw_inode->i_disk_version = cpu_to_le32(inode->i_version); 499325ec56b5SJean Noel Cordenner if (ei->i_extra_isize) { 499425ec56b5SJean Noel Cordenner if (EXT4_FITS_IN_INODE(raw_inode, ei, i_version_hi)) 499525ec56b5SJean Noel Cordenner raw_inode->i_version_hi = 499625ec56b5SJean Noel Cordenner cpu_to_le32(inode->i_version >> 32); 4997c4f65706STheodore Ts'o raw_inode->i_extra_isize = 4998c4f65706STheodore Ts'o cpu_to_le16(ei->i_extra_isize); 4999c4f65706STheodore Ts'o } 500025ec56b5SJean Noel Cordenner } 5001040cb378SLi Xi 50020b7b7779SKaho Ng BUG_ON(!ext4_has_feature_project(inode->i_sb) && 5003040cb378SLi Xi i_projid != EXT4_DEF_PROJID); 5004040cb378SLi Xi 5005040cb378SLi Xi if (EXT4_INODE_SIZE(inode->i_sb) > EXT4_GOOD_OLD_INODE_SIZE && 5006040cb378SLi Xi EXT4_FITS_IN_INODE(raw_inode, ei, i_projid)) 5007040cb378SLi Xi raw_inode->i_projid = cpu_to_le32(i_projid); 5008040cb378SLi Xi 5009814525f4SDarrick J. Wong ext4_inode_csum_set(inode, raw_inode, ei); 5010202ee5dfSTheodore Ts'o spin_unlock(&ei->i_raw_lock); 5011a26f4992STheodore Ts'o if (inode->i_sb->s_flags & MS_LAZYTIME) 5012a26f4992STheodore Ts'o ext4_update_other_inodes_time(inode->i_sb, inode->i_ino, 5013a26f4992STheodore Ts'o bh->b_data); 5014202ee5dfSTheodore Ts'o 50150390131bSFrank Mayhar BUFFER_TRACE(bh, "call ext4_handle_dirty_metadata"); 501673b50c1cSCurt Wohlgemuth rc = ext4_handle_dirty_metadata(handle, NULL, bh); 5017ac27a0ecSDave Kleikamp if (!err) 5018ac27a0ecSDave Kleikamp err = rc; 501919f5fb7aSTheodore Ts'o ext4_clear_inode_state(inode, EXT4_STATE_NEW); 5020202ee5dfSTheodore Ts'o if (set_large_file) { 50215d601255Sliang xie BUFFER_TRACE(EXT4_SB(sb)->s_sbh, "get write access"); 5022202ee5dfSTheodore Ts'o err = ext4_journal_get_write_access(handle, EXT4_SB(sb)->s_sbh); 5023202ee5dfSTheodore Ts'o if (err) 5024202ee5dfSTheodore Ts'o goto out_brelse; 5025202ee5dfSTheodore Ts'o ext4_update_dynamic_rev(sb); 5026e2b911c5SDarrick J. Wong ext4_set_feature_large_file(sb); 5027202ee5dfSTheodore Ts'o ext4_handle_sync(handle); 5028202ee5dfSTheodore Ts'o err = ext4_handle_dirty_super(handle, sb); 5029202ee5dfSTheodore Ts'o } 5030b71fc079SJan Kara ext4_update_inode_fsync_trans(handle, inode, need_datasync); 5031ac27a0ecSDave Kleikamp out_brelse: 5032ac27a0ecSDave Kleikamp brelse(bh); 5033617ba13bSMingming Cao ext4_std_error(inode->i_sb, err); 5034ac27a0ecSDave Kleikamp return err; 5035ac27a0ecSDave Kleikamp } 5036ac27a0ecSDave Kleikamp 5037ac27a0ecSDave Kleikamp /* 5038617ba13bSMingming Cao * ext4_write_inode() 5039ac27a0ecSDave Kleikamp * 5040ac27a0ecSDave Kleikamp * We are called from a few places: 5041ac27a0ecSDave Kleikamp * 504287f7e416STheodore Ts'o * - Within generic_file_aio_write() -> generic_write_sync() for O_SYNC files. 5043ac27a0ecSDave Kleikamp * Here, there will be no transaction running. We wait for any running 50444907cb7bSAnatol Pomozov * transaction to commit. 5045ac27a0ecSDave Kleikamp * 504687f7e416STheodore Ts'o * - Within flush work (sys_sync(), kupdate and such). 504787f7e416STheodore Ts'o * We wait on commit, if told to. 5048ac27a0ecSDave Kleikamp * 504987f7e416STheodore Ts'o * - Within iput_final() -> write_inode_now() 505087f7e416STheodore Ts'o * We wait on commit, if told to. 5051ac27a0ecSDave Kleikamp * 5052ac27a0ecSDave Kleikamp * In all cases it is actually safe for us to return without doing anything, 5053ac27a0ecSDave Kleikamp * because the inode has been copied into a raw inode buffer in 505487f7e416STheodore Ts'o * ext4_mark_inode_dirty(). This is a correctness thing for WB_SYNC_ALL 505587f7e416STheodore Ts'o * writeback. 5056ac27a0ecSDave Kleikamp * 5057ac27a0ecSDave Kleikamp * Note that we are absolutely dependent upon all inode dirtiers doing the 5058ac27a0ecSDave Kleikamp * right thing: they *must* call mark_inode_dirty() after dirtying info in 5059ac27a0ecSDave Kleikamp * which we are interested. 5060ac27a0ecSDave Kleikamp * 5061ac27a0ecSDave Kleikamp * It would be a bug for them to not do this. The code: 5062ac27a0ecSDave Kleikamp * 5063ac27a0ecSDave Kleikamp * mark_inode_dirty(inode) 5064ac27a0ecSDave Kleikamp * stuff(); 5065ac27a0ecSDave Kleikamp * inode->i_size = expr; 5066ac27a0ecSDave Kleikamp * 506787f7e416STheodore Ts'o * is in error because write_inode() could occur while `stuff()' is running, 506887f7e416STheodore Ts'o * and the new i_size will be lost. Plus the inode will no longer be on the 506987f7e416STheodore Ts'o * superblock's dirty inode list. 5070ac27a0ecSDave Kleikamp */ 5071a9185b41SChristoph Hellwig int ext4_write_inode(struct inode *inode, struct writeback_control *wbc) 5072ac27a0ecSDave Kleikamp { 507391ac6f43SFrank Mayhar int err; 507491ac6f43SFrank Mayhar 507587f7e416STheodore Ts'o if (WARN_ON_ONCE(current->flags & PF_MEMALLOC)) 5076ac27a0ecSDave Kleikamp return 0; 5077ac27a0ecSDave Kleikamp 507891ac6f43SFrank Mayhar if (EXT4_SB(inode->i_sb)->s_journal) { 5079617ba13bSMingming Cao if (ext4_journal_current_handle()) { 5080b38bd33aSMingming Cao jbd_debug(1, "called recursively, non-PF_MEMALLOC!\n"); 5081ac27a0ecSDave Kleikamp dump_stack(); 5082ac27a0ecSDave Kleikamp return -EIO; 5083ac27a0ecSDave Kleikamp } 5084ac27a0ecSDave Kleikamp 508510542c22SJan Kara /* 508610542c22SJan Kara * No need to force transaction in WB_SYNC_NONE mode. Also 508710542c22SJan Kara * ext4_sync_fs() will force the commit after everything is 508810542c22SJan Kara * written. 508910542c22SJan Kara */ 509010542c22SJan Kara if (wbc->sync_mode != WB_SYNC_ALL || wbc->for_sync) 5091ac27a0ecSDave Kleikamp return 0; 5092ac27a0ecSDave Kleikamp 509391ac6f43SFrank Mayhar err = ext4_force_commit(inode->i_sb); 509491ac6f43SFrank Mayhar } else { 509591ac6f43SFrank Mayhar struct ext4_iloc iloc; 509691ac6f43SFrank Mayhar 50978b472d73SCurt Wohlgemuth err = __ext4_get_inode_loc(inode, &iloc, 0); 509891ac6f43SFrank Mayhar if (err) 509991ac6f43SFrank Mayhar return err; 510010542c22SJan Kara /* 510110542c22SJan Kara * sync(2) will flush the whole buffer cache. No need to do 510210542c22SJan Kara * it here separately for each inode. 510310542c22SJan Kara */ 510410542c22SJan Kara if (wbc->sync_mode == WB_SYNC_ALL && !wbc->for_sync) 5105830156c7SFrank Mayhar sync_dirty_buffer(iloc.bh); 5106830156c7SFrank Mayhar if (buffer_req(iloc.bh) && !buffer_uptodate(iloc.bh)) { 5107c398eda0STheodore Ts'o EXT4_ERROR_INODE_BLOCK(inode, iloc.bh->b_blocknr, 5108c398eda0STheodore Ts'o "IO error syncing inode"); 5109830156c7SFrank Mayhar err = -EIO; 5110830156c7SFrank Mayhar } 5111fd2dd9fbSCurt Wohlgemuth brelse(iloc.bh); 511291ac6f43SFrank Mayhar } 511391ac6f43SFrank Mayhar return err; 5114ac27a0ecSDave Kleikamp } 5115ac27a0ecSDave Kleikamp 5116ac27a0ecSDave Kleikamp /* 511753e87268SJan Kara * In data=journal mode ext4_journalled_invalidatepage() may fail to invalidate 511853e87268SJan Kara * buffers that are attached to a page stradding i_size and are undergoing 511953e87268SJan Kara * commit. In that case we have to wait for commit to finish and try again. 512053e87268SJan Kara */ 512153e87268SJan Kara static void ext4_wait_for_tail_page_commit(struct inode *inode) 512253e87268SJan Kara { 512353e87268SJan Kara struct page *page; 512453e87268SJan Kara unsigned offset; 512553e87268SJan Kara journal_t *journal = EXT4_SB(inode->i_sb)->s_journal; 512653e87268SJan Kara tid_t commit_tid = 0; 512753e87268SJan Kara int ret; 512853e87268SJan Kara 512909cbfeafSKirill A. Shutemov offset = inode->i_size & (PAGE_SIZE - 1); 513053e87268SJan Kara /* 513153e87268SJan Kara * All buffers in the last page remain valid? Then there's nothing to 5132ea1754a0SKirill A. Shutemov * do. We do the check mainly to optimize the common PAGE_SIZE == 513353e87268SJan Kara * blocksize case 513453e87268SJan Kara */ 513509cbfeafSKirill A. Shutemov if (offset > PAGE_SIZE - (1 << inode->i_blkbits)) 513653e87268SJan Kara return; 513753e87268SJan Kara while (1) { 513853e87268SJan Kara page = find_lock_page(inode->i_mapping, 513909cbfeafSKirill A. Shutemov inode->i_size >> PAGE_SHIFT); 514053e87268SJan Kara if (!page) 514153e87268SJan Kara return; 5142ca99fdd2SLukas Czerner ret = __ext4_journalled_invalidatepage(page, offset, 514309cbfeafSKirill A. Shutemov PAGE_SIZE - offset); 514453e87268SJan Kara unlock_page(page); 514509cbfeafSKirill A. Shutemov put_page(page); 514653e87268SJan Kara if (ret != -EBUSY) 514753e87268SJan Kara return; 514853e87268SJan Kara commit_tid = 0; 514953e87268SJan Kara read_lock(&journal->j_state_lock); 515053e87268SJan Kara if (journal->j_committing_transaction) 515153e87268SJan Kara commit_tid = journal->j_committing_transaction->t_tid; 515253e87268SJan Kara read_unlock(&journal->j_state_lock); 515353e87268SJan Kara if (commit_tid) 515453e87268SJan Kara jbd2_log_wait_commit(journal, commit_tid); 515553e87268SJan Kara } 515653e87268SJan Kara } 515753e87268SJan Kara 515853e87268SJan Kara /* 5159617ba13bSMingming Cao * ext4_setattr() 5160ac27a0ecSDave Kleikamp * 5161ac27a0ecSDave Kleikamp * Called from notify_change. 5162ac27a0ecSDave Kleikamp * 5163ac27a0ecSDave Kleikamp * We want to trap VFS attempts to truncate the file as soon as 5164ac27a0ecSDave Kleikamp * possible. In particular, we want to make sure that when the VFS 5165ac27a0ecSDave Kleikamp * shrinks i_size, we put the inode on the orphan list and modify 5166ac27a0ecSDave Kleikamp * i_disksize immediately, so that during the subsequent flushing of 5167ac27a0ecSDave Kleikamp * dirty pages and freeing of disk blocks, we can guarantee that any 5168ac27a0ecSDave Kleikamp * commit will leave the blocks being flushed in an unused state on 5169ac27a0ecSDave Kleikamp * disk. (On recovery, the inode will get truncated and the blocks will 5170ac27a0ecSDave Kleikamp * be freed, so we have a strong guarantee that no future commit will 5171ac27a0ecSDave Kleikamp * leave these blocks visible to the user.) 5172ac27a0ecSDave Kleikamp * 5173678aaf48SJan Kara * Another thing we have to assure is that if we are in ordered mode 5174678aaf48SJan Kara * and inode is still attached to the committing transaction, we must 5175678aaf48SJan Kara * we start writeout of all the dirty pages which are being truncated. 5176678aaf48SJan Kara * This way we are sure that all the data written in the previous 5177678aaf48SJan Kara * transaction are already on disk (truncate waits for pages under 5178678aaf48SJan Kara * writeback). 5179678aaf48SJan Kara * 5180678aaf48SJan Kara * Called with inode->i_mutex down. 5181ac27a0ecSDave Kleikamp */ 5182617ba13bSMingming Cao int ext4_setattr(struct dentry *dentry, struct iattr *attr) 5183ac27a0ecSDave Kleikamp { 51842b0143b5SDavid Howells struct inode *inode = d_inode(dentry); 5185ac27a0ecSDave Kleikamp int error, rc = 0; 51863d287de3SDmitry Monakhov int orphan = 0; 5187ac27a0ecSDave Kleikamp const unsigned int ia_valid = attr->ia_valid; 5188ac27a0ecSDave Kleikamp 518931051c85SJan Kara error = setattr_prepare(dentry, attr); 5190ac27a0ecSDave Kleikamp if (error) 5191ac27a0ecSDave Kleikamp return error; 5192ac27a0ecSDave Kleikamp 5193a7cdadeeSJan Kara if (is_quota_modification(inode, attr)) { 5194a7cdadeeSJan Kara error = dquot_initialize(inode); 5195a7cdadeeSJan Kara if (error) 5196a7cdadeeSJan Kara return error; 5197a7cdadeeSJan Kara } 519808cefc7aSEric W. Biederman if ((ia_valid & ATTR_UID && !uid_eq(attr->ia_uid, inode->i_uid)) || 519908cefc7aSEric W. Biederman (ia_valid & ATTR_GID && !gid_eq(attr->ia_gid, inode->i_gid))) { 5200ac27a0ecSDave Kleikamp handle_t *handle; 5201ac27a0ecSDave Kleikamp 5202ac27a0ecSDave Kleikamp /* (user+group)*(old+new) structure, inode write (sb, 5203ac27a0ecSDave Kleikamp * inode block, ? - but truncate inode update has it) */ 52049924a92aSTheodore Ts'o handle = ext4_journal_start(inode, EXT4_HT_QUOTA, 52059924a92aSTheodore Ts'o (EXT4_MAXQUOTAS_INIT_BLOCKS(inode->i_sb) + 5206194074acSDmitry Monakhov EXT4_MAXQUOTAS_DEL_BLOCKS(inode->i_sb)) + 3); 5207ac27a0ecSDave Kleikamp if (IS_ERR(handle)) { 5208ac27a0ecSDave Kleikamp error = PTR_ERR(handle); 5209ac27a0ecSDave Kleikamp goto err_out; 5210ac27a0ecSDave Kleikamp } 5211b43fa828SChristoph Hellwig error = dquot_transfer(inode, attr); 5212ac27a0ecSDave Kleikamp if (error) { 5213617ba13bSMingming Cao ext4_journal_stop(handle); 5214ac27a0ecSDave Kleikamp return error; 5215ac27a0ecSDave Kleikamp } 5216ac27a0ecSDave Kleikamp /* Update corresponding info in inode so that everything is in 5217ac27a0ecSDave Kleikamp * one transaction */ 5218ac27a0ecSDave Kleikamp if (attr->ia_valid & ATTR_UID) 5219ac27a0ecSDave Kleikamp inode->i_uid = attr->ia_uid; 5220ac27a0ecSDave Kleikamp if (attr->ia_valid & ATTR_GID) 5221ac27a0ecSDave Kleikamp inode->i_gid = attr->ia_gid; 5222617ba13bSMingming Cao error = ext4_mark_inode_dirty(handle, inode); 5223617ba13bSMingming Cao ext4_journal_stop(handle); 5224ac27a0ecSDave Kleikamp } 5225ac27a0ecSDave Kleikamp 52263da40c7bSJosef Bacik if (attr->ia_valid & ATTR_SIZE) { 52275208386cSJan Kara handle_t *handle; 52283da40c7bSJosef Bacik loff_t oldsize = inode->i_size; 52293da40c7bSJosef Bacik int shrink = (attr->ia_size <= inode->i_size); 5230562c72aaSChristoph Hellwig 523112e9b892SDmitry Monakhov if (!(ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS))) { 5232e2b46574SEric Sandeen struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb); 5233e2b46574SEric Sandeen 52340c095c7fSTheodore Ts'o if (attr->ia_size > sbi->s_bitmap_maxbytes) 52350c095c7fSTheodore Ts'o return -EFBIG; 5236e2b46574SEric Sandeen } 52373da40c7bSJosef Bacik if (!S_ISREG(inode->i_mode)) 52383da40c7bSJosef Bacik return -EINVAL; 5239dff6efc3SChristoph Hellwig 5240dff6efc3SChristoph Hellwig if (IS_I_VERSION(inode) && attr->ia_size != inode->i_size) 5241dff6efc3SChristoph Hellwig inode_inc_iversion(inode); 5242dff6efc3SChristoph Hellwig 52433da40c7bSJosef Bacik if (ext4_should_order_data(inode) && 5244072bd7eaSTheodore Ts'o (attr->ia_size < inode->i_size)) { 52455208386cSJan Kara error = ext4_begin_ordered_truncate(inode, 52465208386cSJan Kara attr->ia_size); 52475208386cSJan Kara if (error) 52485208386cSJan Kara goto err_out; 52495208386cSJan Kara } 52503da40c7bSJosef Bacik if (attr->ia_size != inode->i_size) { 52519924a92aSTheodore Ts'o handle = ext4_journal_start(inode, EXT4_HT_INODE, 3); 5252ac27a0ecSDave Kleikamp if (IS_ERR(handle)) { 5253ac27a0ecSDave Kleikamp error = PTR_ERR(handle); 5254ac27a0ecSDave Kleikamp goto err_out; 5255ac27a0ecSDave Kleikamp } 52563da40c7bSJosef Bacik if (ext4_handle_valid(handle) && shrink) { 5257617ba13bSMingming Cao error = ext4_orphan_add(handle, inode); 52583d287de3SDmitry Monakhov orphan = 1; 52593d287de3SDmitry Monakhov } 5260911af577SEryu Guan /* 5261911af577SEryu Guan * Update c/mtime on truncate up, ext4_truncate() will 5262911af577SEryu Guan * update c/mtime in shrink case below 5263911af577SEryu Guan */ 5264911af577SEryu Guan if (!shrink) { 5265eeca7ea1SDeepa Dinamani inode->i_mtime = current_time(inode); 5266911af577SEryu Guan inode->i_ctime = inode->i_mtime; 5267911af577SEryu Guan } 526890e775b7SJan Kara down_write(&EXT4_I(inode)->i_data_sem); 5269617ba13bSMingming Cao EXT4_I(inode)->i_disksize = attr->ia_size; 5270617ba13bSMingming Cao rc = ext4_mark_inode_dirty(handle, inode); 5271ac27a0ecSDave Kleikamp if (!error) 5272ac27a0ecSDave Kleikamp error = rc; 527390e775b7SJan Kara /* 527490e775b7SJan Kara * We have to update i_size under i_data_sem together 527590e775b7SJan Kara * with i_disksize to avoid races with writeback code 527690e775b7SJan Kara * running ext4_wb_update_i_disksize(). 527790e775b7SJan Kara */ 527890e775b7SJan Kara if (!error) 527990e775b7SJan Kara i_size_write(inode, attr->ia_size); 528090e775b7SJan Kara up_write(&EXT4_I(inode)->i_data_sem); 5281617ba13bSMingming Cao ext4_journal_stop(handle); 5282678aaf48SJan Kara if (error) { 52833da40c7bSJosef Bacik if (orphan) 5284678aaf48SJan Kara ext4_orphan_del(NULL, inode); 5285678aaf48SJan Kara goto err_out; 5286678aaf48SJan Kara } 5287d6320cbfSJan Kara } 52883da40c7bSJosef Bacik if (!shrink) 52893da40c7bSJosef Bacik pagecache_isize_extended(inode, oldsize, inode->i_size); 529090e775b7SJan Kara 529153e87268SJan Kara /* 529253e87268SJan Kara * Blocks are going to be removed from the inode. Wait 529353e87268SJan Kara * for dio in flight. Temporarily disable 529453e87268SJan Kara * dioread_nolock to prevent livelock. 529553e87268SJan Kara */ 52961b65007eSDmitry Monakhov if (orphan) { 529753e87268SJan Kara if (!ext4_should_journal_data(inode)) { 52981b65007eSDmitry Monakhov ext4_inode_block_unlocked_dio(inode); 52991c9114f9SDmitry Monakhov inode_dio_wait(inode); 53001b65007eSDmitry Monakhov ext4_inode_resume_unlocked_dio(inode); 530153e87268SJan Kara } else 530253e87268SJan Kara ext4_wait_for_tail_page_commit(inode); 53031b65007eSDmitry Monakhov } 5304ea3d7209SJan Kara down_write(&EXT4_I(inode)->i_mmap_sem); 530553e87268SJan Kara /* 530653e87268SJan Kara * Truncate pagecache after we've waited for commit 530753e87268SJan Kara * in data=journal mode to make pages freeable. 530853e87268SJan Kara */ 53097caef267SKirill A. Shutemov truncate_pagecache(inode, inode->i_size); 53102c98eb5eSTheodore Ts'o if (shrink) { 53112c98eb5eSTheodore Ts'o rc = ext4_truncate(inode); 53122c98eb5eSTheodore Ts'o if (rc) 53132c98eb5eSTheodore Ts'o error = rc; 53142c98eb5eSTheodore Ts'o } 5315ea3d7209SJan Kara up_write(&EXT4_I(inode)->i_mmap_sem); 53163da40c7bSJosef Bacik } 5317ac27a0ecSDave Kleikamp 53182c98eb5eSTheodore Ts'o if (!error) { 53191025774cSChristoph Hellwig setattr_copy(inode, attr); 53201025774cSChristoph Hellwig mark_inode_dirty(inode); 53211025774cSChristoph Hellwig } 53221025774cSChristoph Hellwig 53231025774cSChristoph Hellwig /* 53241025774cSChristoph Hellwig * If the call to ext4_truncate failed to get a transaction handle at 53251025774cSChristoph Hellwig * all, we need to clean up the in-core orphan list manually. 53261025774cSChristoph Hellwig */ 53273d287de3SDmitry Monakhov if (orphan && inode->i_nlink) 5328617ba13bSMingming Cao ext4_orphan_del(NULL, inode); 5329ac27a0ecSDave Kleikamp 53302c98eb5eSTheodore Ts'o if (!error && (ia_valid & ATTR_MODE)) 533164e178a7SChristoph Hellwig rc = posix_acl_chmod(inode, inode->i_mode); 5332ac27a0ecSDave Kleikamp 5333ac27a0ecSDave Kleikamp err_out: 5334617ba13bSMingming Cao ext4_std_error(inode->i_sb, error); 5335ac27a0ecSDave Kleikamp if (!error) 5336ac27a0ecSDave Kleikamp error = rc; 5337ac27a0ecSDave Kleikamp return error; 5338ac27a0ecSDave Kleikamp } 5339ac27a0ecSDave Kleikamp 53403e3398a0SMingming Cao int ext4_getattr(struct vfsmount *mnt, struct dentry *dentry, 53413e3398a0SMingming Cao struct kstat *stat) 53423e3398a0SMingming Cao { 53433e3398a0SMingming Cao struct inode *inode; 53448af8eeccSJan Kara unsigned long long delalloc_blocks; 53453e3398a0SMingming Cao 53462b0143b5SDavid Howells inode = d_inode(dentry); 53473e3398a0SMingming Cao generic_fillattr(inode, stat); 53483e3398a0SMingming Cao 53493e3398a0SMingming Cao /* 53509206c561SAndreas Dilger * If there is inline data in the inode, the inode will normally not 53519206c561SAndreas Dilger * have data blocks allocated (it may have an external xattr block). 53529206c561SAndreas Dilger * Report at least one sector for such files, so tools like tar, rsync, 53539206c561SAndreas Dilger * others doen't incorrectly think the file is completely sparse. 53549206c561SAndreas Dilger */ 53559206c561SAndreas Dilger if (unlikely(ext4_has_inline_data(inode))) 53569206c561SAndreas Dilger stat->blocks += (stat->size + 511) >> 9; 53579206c561SAndreas Dilger 53589206c561SAndreas Dilger /* 53593e3398a0SMingming Cao * We can't update i_blocks if the block allocation is delayed 53603e3398a0SMingming Cao * otherwise in the case of system crash before the real block 53613e3398a0SMingming Cao * allocation is done, we will have i_blocks inconsistent with 53623e3398a0SMingming Cao * on-disk file blocks. 53633e3398a0SMingming Cao * We always keep i_blocks updated together with real 53643e3398a0SMingming Cao * allocation. But to not confuse with user, stat 53653e3398a0SMingming Cao * will return the blocks that include the delayed allocation 53663e3398a0SMingming Cao * blocks for this file. 53673e3398a0SMingming Cao */ 536896607551STao Ma delalloc_blocks = EXT4_C2B(EXT4_SB(inode->i_sb), 536996607551STao Ma EXT4_I(inode)->i_reserved_data_blocks); 53708af8eeccSJan Kara stat->blocks += delalloc_blocks << (inode->i_sb->s_blocksize_bits - 9); 53713e3398a0SMingming Cao return 0; 53723e3398a0SMingming Cao } 5373ac27a0ecSDave Kleikamp 5374fffb2739SJan Kara static int ext4_index_trans_blocks(struct inode *inode, int lblocks, 5375fffb2739SJan Kara int pextents) 5376a02908f1SMingming Cao { 537712e9b892SDmitry Monakhov if (!(ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS))) 5378fffb2739SJan Kara return ext4_ind_trans_blocks(inode, lblocks); 5379fffb2739SJan Kara return ext4_ext_index_trans_blocks(inode, pextents); 5380a02908f1SMingming Cao } 5381ac51d837STheodore Ts'o 5382a02908f1SMingming Cao /* 5383a02908f1SMingming Cao * Account for index blocks, block groups bitmaps and block group 5384a02908f1SMingming Cao * descriptor blocks if modify datablocks and index blocks 5385a02908f1SMingming Cao * worse case, the indexs blocks spread over different block groups 5386a02908f1SMingming Cao * 5387a02908f1SMingming Cao * If datablocks are discontiguous, they are possible to spread over 53884907cb7bSAnatol Pomozov * different block groups too. If they are contiguous, with flexbg, 5389a02908f1SMingming Cao * they could still across block group boundary. 5390a02908f1SMingming Cao * 5391a02908f1SMingming Cao * Also account for superblock, inode, quota and xattr blocks 5392a02908f1SMingming Cao */ 5393fffb2739SJan Kara static int ext4_meta_trans_blocks(struct inode *inode, int lblocks, 5394fffb2739SJan Kara int pextents) 5395a02908f1SMingming Cao { 53968df9675fSTheodore Ts'o ext4_group_t groups, ngroups = ext4_get_groups_count(inode->i_sb); 53978df9675fSTheodore Ts'o int gdpblocks; 5398a02908f1SMingming Cao int idxblocks; 5399a02908f1SMingming Cao int ret = 0; 5400a02908f1SMingming Cao 5401a02908f1SMingming Cao /* 5402fffb2739SJan Kara * How many index blocks need to touch to map @lblocks logical blocks 5403fffb2739SJan Kara * to @pextents physical extents? 5404a02908f1SMingming Cao */ 5405fffb2739SJan Kara idxblocks = ext4_index_trans_blocks(inode, lblocks, pextents); 5406a02908f1SMingming Cao 5407a02908f1SMingming Cao ret = idxblocks; 5408a02908f1SMingming Cao 5409a02908f1SMingming Cao /* 5410a02908f1SMingming Cao * Now let's see how many group bitmaps and group descriptors need 5411a02908f1SMingming Cao * to account 5412a02908f1SMingming Cao */ 5413fffb2739SJan Kara groups = idxblocks + pextents; 5414a02908f1SMingming Cao gdpblocks = groups; 54158df9675fSTheodore Ts'o if (groups > ngroups) 54168df9675fSTheodore Ts'o groups = ngroups; 5417a02908f1SMingming Cao if (groups > EXT4_SB(inode->i_sb)->s_gdb_count) 5418a02908f1SMingming Cao gdpblocks = EXT4_SB(inode->i_sb)->s_gdb_count; 5419a02908f1SMingming Cao 5420a02908f1SMingming Cao /* bitmaps and block group descriptor blocks */ 5421a02908f1SMingming Cao ret += groups + gdpblocks; 5422a02908f1SMingming Cao 5423a02908f1SMingming Cao /* Blocks for super block, inode, quota and xattr blocks */ 5424a02908f1SMingming Cao ret += EXT4_META_TRANS_BLOCKS(inode->i_sb); 5425ac27a0ecSDave Kleikamp 5426ac27a0ecSDave Kleikamp return ret; 5427ac27a0ecSDave Kleikamp } 5428ac27a0ecSDave Kleikamp 5429ac27a0ecSDave Kleikamp /* 543025985edcSLucas De Marchi * Calculate the total number of credits to reserve to fit 5431f3bd1f3fSMingming Cao * the modification of a single pages into a single transaction, 5432f3bd1f3fSMingming Cao * which may include multiple chunks of block allocations. 5433a02908f1SMingming Cao * 5434525f4ed8SMingming Cao * This could be called via ext4_write_begin() 5435a02908f1SMingming Cao * 5436525f4ed8SMingming Cao * We need to consider the worse case, when 5437a02908f1SMingming Cao * one new block per extent. 5438a02908f1SMingming Cao */ 5439a02908f1SMingming Cao int ext4_writepage_trans_blocks(struct inode *inode) 5440a02908f1SMingming Cao { 5441a02908f1SMingming Cao int bpp = ext4_journal_blocks_per_page(inode); 5442a02908f1SMingming Cao int ret; 5443a02908f1SMingming Cao 5444fffb2739SJan Kara ret = ext4_meta_trans_blocks(inode, bpp, bpp); 5445a02908f1SMingming Cao 5446a02908f1SMingming Cao /* Account for data blocks for journalled mode */ 5447a02908f1SMingming Cao if (ext4_should_journal_data(inode)) 5448a02908f1SMingming Cao ret += bpp; 5449a02908f1SMingming Cao return ret; 5450a02908f1SMingming Cao } 5451f3bd1f3fSMingming Cao 5452f3bd1f3fSMingming Cao /* 5453f3bd1f3fSMingming Cao * Calculate the journal credits for a chunk of data modification. 5454f3bd1f3fSMingming Cao * 5455f3bd1f3fSMingming Cao * This is called from DIO, fallocate or whoever calling 545679e83036SEric Sandeen * ext4_map_blocks() to map/allocate a chunk of contiguous disk blocks. 5457f3bd1f3fSMingming Cao * 5458f3bd1f3fSMingming Cao * journal buffers for data blocks are not included here, as DIO 5459f3bd1f3fSMingming Cao * and fallocate do no need to journal data buffers. 5460f3bd1f3fSMingming Cao */ 5461f3bd1f3fSMingming Cao int ext4_chunk_trans_blocks(struct inode *inode, int nrblocks) 5462f3bd1f3fSMingming Cao { 5463f3bd1f3fSMingming Cao return ext4_meta_trans_blocks(inode, nrblocks, 1); 5464f3bd1f3fSMingming Cao } 5465f3bd1f3fSMingming Cao 5466a02908f1SMingming Cao /* 5467617ba13bSMingming Cao * The caller must have previously called ext4_reserve_inode_write(). 5468ac27a0ecSDave Kleikamp * Give this, we know that the caller already has write access to iloc->bh. 5469ac27a0ecSDave Kleikamp */ 5470617ba13bSMingming Cao int ext4_mark_iloc_dirty(handle_t *handle, 5471617ba13bSMingming Cao struct inode *inode, struct ext4_iloc *iloc) 5472ac27a0ecSDave Kleikamp { 5473ac27a0ecSDave Kleikamp int err = 0; 5474ac27a0ecSDave Kleikamp 5475c64db50eSTheodore Ts'o if (IS_I_VERSION(inode)) 547625ec56b5SJean Noel Cordenner inode_inc_iversion(inode); 547725ec56b5SJean Noel Cordenner 5478ac27a0ecSDave Kleikamp /* the do_update_inode consumes one bh->b_count */ 5479ac27a0ecSDave Kleikamp get_bh(iloc->bh); 5480ac27a0ecSDave Kleikamp 5481dab291afSMingming Cao /* ext4_do_update_inode() does jbd2_journal_dirty_metadata */ 5482830156c7SFrank Mayhar err = ext4_do_update_inode(handle, inode, iloc); 5483ac27a0ecSDave Kleikamp put_bh(iloc->bh); 5484ac27a0ecSDave Kleikamp return err; 5485ac27a0ecSDave Kleikamp } 5486ac27a0ecSDave Kleikamp 5487ac27a0ecSDave Kleikamp /* 5488ac27a0ecSDave Kleikamp * On success, We end up with an outstanding reference count against 5489ac27a0ecSDave Kleikamp * iloc->bh. This _must_ be cleaned up later. 5490ac27a0ecSDave Kleikamp */ 5491ac27a0ecSDave Kleikamp 5492ac27a0ecSDave Kleikamp int 5493617ba13bSMingming Cao ext4_reserve_inode_write(handle_t *handle, struct inode *inode, 5494617ba13bSMingming Cao struct ext4_iloc *iloc) 5495ac27a0ecSDave Kleikamp { 54960390131bSFrank Mayhar int err; 54970390131bSFrank Mayhar 5498617ba13bSMingming Cao err = ext4_get_inode_loc(inode, iloc); 5499ac27a0ecSDave Kleikamp if (!err) { 5500ac27a0ecSDave Kleikamp BUFFER_TRACE(iloc->bh, "get_write_access"); 5501617ba13bSMingming Cao err = ext4_journal_get_write_access(handle, iloc->bh); 5502ac27a0ecSDave Kleikamp if (err) { 5503ac27a0ecSDave Kleikamp brelse(iloc->bh); 5504ac27a0ecSDave Kleikamp iloc->bh = NULL; 5505ac27a0ecSDave Kleikamp } 5506ac27a0ecSDave Kleikamp } 5507617ba13bSMingming Cao ext4_std_error(inode->i_sb, err); 5508ac27a0ecSDave Kleikamp return err; 5509ac27a0ecSDave Kleikamp } 5510ac27a0ecSDave Kleikamp 5511ac27a0ecSDave Kleikamp /* 55126dd4ee7cSKalpak Shah * Expand an inode by new_extra_isize bytes. 55136dd4ee7cSKalpak Shah * Returns 0 on success or negative error number on failure. 55146dd4ee7cSKalpak Shah */ 55151d03ec98SAneesh Kumar K.V static int ext4_expand_extra_isize(struct inode *inode, 55161d03ec98SAneesh Kumar K.V unsigned int new_extra_isize, 55171d03ec98SAneesh Kumar K.V struct ext4_iloc iloc, 55181d03ec98SAneesh Kumar K.V handle_t *handle) 55196dd4ee7cSKalpak Shah { 55206dd4ee7cSKalpak Shah struct ext4_inode *raw_inode; 55216dd4ee7cSKalpak Shah struct ext4_xattr_ibody_header *header; 55226dd4ee7cSKalpak Shah 55236dd4ee7cSKalpak Shah if (EXT4_I(inode)->i_extra_isize >= new_extra_isize) 55246dd4ee7cSKalpak Shah return 0; 55256dd4ee7cSKalpak Shah 55266dd4ee7cSKalpak Shah raw_inode = ext4_raw_inode(&iloc); 55276dd4ee7cSKalpak Shah 55286dd4ee7cSKalpak Shah header = IHDR(inode, raw_inode); 55296dd4ee7cSKalpak Shah 55306dd4ee7cSKalpak Shah /* No extended attributes present */ 553119f5fb7aSTheodore Ts'o if (!ext4_test_inode_state(inode, EXT4_STATE_XATTR) || 55326dd4ee7cSKalpak Shah header->h_magic != cpu_to_le32(EXT4_XATTR_MAGIC)) { 55336dd4ee7cSKalpak Shah memset((void *)raw_inode + EXT4_GOOD_OLD_INODE_SIZE, 0, 55346dd4ee7cSKalpak Shah new_extra_isize); 55356dd4ee7cSKalpak Shah EXT4_I(inode)->i_extra_isize = new_extra_isize; 55366dd4ee7cSKalpak Shah return 0; 55376dd4ee7cSKalpak Shah } 55386dd4ee7cSKalpak Shah 55396dd4ee7cSKalpak Shah /* try to expand with EAs present */ 55406dd4ee7cSKalpak Shah return ext4_expand_extra_isize_ea(inode, new_extra_isize, 55416dd4ee7cSKalpak Shah raw_inode, handle); 55426dd4ee7cSKalpak Shah } 55436dd4ee7cSKalpak Shah 55446dd4ee7cSKalpak Shah /* 5545ac27a0ecSDave Kleikamp * What we do here is to mark the in-core inode as clean with respect to inode 5546ac27a0ecSDave Kleikamp * dirtiness (it may still be data-dirty). 5547ac27a0ecSDave Kleikamp * This means that the in-core inode may be reaped by prune_icache 5548ac27a0ecSDave Kleikamp * without having to perform any I/O. This is a very good thing, 5549ac27a0ecSDave Kleikamp * because *any* task may call prune_icache - even ones which 5550ac27a0ecSDave Kleikamp * have a transaction open against a different journal. 5551ac27a0ecSDave Kleikamp * 5552ac27a0ecSDave Kleikamp * Is this cheating? Not really. Sure, we haven't written the 5553ac27a0ecSDave Kleikamp * inode out, but prune_icache isn't a user-visible syncing function. 5554ac27a0ecSDave Kleikamp * Whenever the user wants stuff synced (sys_sync, sys_msync, sys_fsync) 5555ac27a0ecSDave Kleikamp * we start and wait on commits. 5556ac27a0ecSDave Kleikamp */ 5557617ba13bSMingming Cao int ext4_mark_inode_dirty(handle_t *handle, struct inode *inode) 5558ac27a0ecSDave Kleikamp { 5559617ba13bSMingming Cao struct ext4_iloc iloc; 55606dd4ee7cSKalpak Shah struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb); 55616dd4ee7cSKalpak Shah static unsigned int mnt_count; 55626dd4ee7cSKalpak Shah int err, ret; 5563ac27a0ecSDave Kleikamp 5564ac27a0ecSDave Kleikamp might_sleep(); 55657ff9c073STheodore Ts'o trace_ext4_mark_inode_dirty(inode, _RET_IP_); 5566617ba13bSMingming Cao err = ext4_reserve_inode_write(handle, inode, &iloc); 55675e1021f2SEryu Guan if (err) 55685e1021f2SEryu Guan return err; 556988e03877SEric Whitney if (EXT4_I(inode)->i_extra_isize < sbi->s_want_extra_isize && 557019f5fb7aSTheodore Ts'o !ext4_test_inode_state(inode, EXT4_STATE_NO_EXPAND)) { 55716dd4ee7cSKalpak Shah /* 557288e03877SEric Whitney * In nojournal mode, we can immediately attempt to expand 557388e03877SEric Whitney * the inode. When journaled, we first need to obtain extra 557488e03877SEric Whitney * buffer credits since we may write into the EA block 55756dd4ee7cSKalpak Shah * with this same handle. If journal_extend fails, then it will 55766dd4ee7cSKalpak Shah * only result in a minor loss of functionality for that inode. 55776dd4ee7cSKalpak Shah * If this is felt to be critical, then e2fsck should be run to 55786dd4ee7cSKalpak Shah * force a large enough s_min_extra_isize. 55796dd4ee7cSKalpak Shah */ 558088e03877SEric Whitney if (!ext4_handle_valid(handle) || 558188e03877SEric Whitney jbd2_journal_extend(handle, 558288e03877SEric Whitney EXT4_DATA_TRANS_BLOCKS(inode->i_sb)) == 0) { 55836dd4ee7cSKalpak Shah ret = ext4_expand_extra_isize(inode, 55846dd4ee7cSKalpak Shah sbi->s_want_extra_isize, 55856dd4ee7cSKalpak Shah iloc, handle); 55866dd4ee7cSKalpak Shah if (ret) { 5587c1bddad9SAneesh Kumar K.V if (mnt_count != 5588c1bddad9SAneesh Kumar K.V le16_to_cpu(sbi->s_es->s_mnt_count)) { 558912062dddSEric Sandeen ext4_warning(inode->i_sb, 55906dd4ee7cSKalpak Shah "Unable to expand inode %lu. Delete" 55916dd4ee7cSKalpak Shah " some EAs or run e2fsck.", 55926dd4ee7cSKalpak Shah inode->i_ino); 5593c1bddad9SAneesh Kumar K.V mnt_count = 5594c1bddad9SAneesh Kumar K.V le16_to_cpu(sbi->s_es->s_mnt_count); 55956dd4ee7cSKalpak Shah } 55966dd4ee7cSKalpak Shah } 55976dd4ee7cSKalpak Shah } 55986dd4ee7cSKalpak Shah } 55995e1021f2SEryu Guan return ext4_mark_iloc_dirty(handle, inode, &iloc); 5600ac27a0ecSDave Kleikamp } 5601ac27a0ecSDave Kleikamp 5602ac27a0ecSDave Kleikamp /* 5603617ba13bSMingming Cao * ext4_dirty_inode() is called from __mark_inode_dirty() 5604ac27a0ecSDave Kleikamp * 5605ac27a0ecSDave Kleikamp * We're really interested in the case where a file is being extended. 5606ac27a0ecSDave Kleikamp * i_size has been changed by generic_commit_write() and we thus need 5607ac27a0ecSDave Kleikamp * to include the updated inode in the current transaction. 5608ac27a0ecSDave Kleikamp * 56095dd4056dSChristoph Hellwig * Also, dquot_alloc_block() will always dirty the inode when blocks 5610ac27a0ecSDave Kleikamp * are allocated to the file. 5611ac27a0ecSDave Kleikamp * 5612ac27a0ecSDave Kleikamp * If the inode is marked synchronous, we don't honour that here - doing 5613ac27a0ecSDave Kleikamp * so would cause a commit on atime updates, which we don't bother doing. 5614ac27a0ecSDave Kleikamp * We handle synchronous inodes at the highest possible level. 56150ae45f63STheodore Ts'o * 56160ae45f63STheodore Ts'o * If only the I_DIRTY_TIME flag is set, we can skip everything. If 56170ae45f63STheodore Ts'o * I_DIRTY_TIME and I_DIRTY_SYNC is set, the only inode fields we need 56180ae45f63STheodore Ts'o * to copy into the on-disk inode structure are the timestamp files. 5619ac27a0ecSDave Kleikamp */ 5620aa385729SChristoph Hellwig void ext4_dirty_inode(struct inode *inode, int flags) 5621ac27a0ecSDave Kleikamp { 5622ac27a0ecSDave Kleikamp handle_t *handle; 5623ac27a0ecSDave Kleikamp 56240ae45f63STheodore Ts'o if (flags == I_DIRTY_TIME) 56250ae45f63STheodore Ts'o return; 56269924a92aSTheodore Ts'o handle = ext4_journal_start(inode, EXT4_HT_INODE, 2); 5627ac27a0ecSDave Kleikamp if (IS_ERR(handle)) 5628ac27a0ecSDave Kleikamp goto out; 5629f3dc272fSCurt Wohlgemuth 5630617ba13bSMingming Cao ext4_mark_inode_dirty(handle, inode); 5631f3dc272fSCurt Wohlgemuth 5632617ba13bSMingming Cao ext4_journal_stop(handle); 5633ac27a0ecSDave Kleikamp out: 5634ac27a0ecSDave Kleikamp return; 5635ac27a0ecSDave Kleikamp } 5636ac27a0ecSDave Kleikamp 5637ac27a0ecSDave Kleikamp #if 0 5638ac27a0ecSDave Kleikamp /* 5639ac27a0ecSDave Kleikamp * Bind an inode's backing buffer_head into this transaction, to prevent 5640ac27a0ecSDave Kleikamp * it from being flushed to disk early. Unlike 5641617ba13bSMingming Cao * ext4_reserve_inode_write, this leaves behind no bh reference and 5642ac27a0ecSDave Kleikamp * returns no iloc structure, so the caller needs to repeat the iloc 5643ac27a0ecSDave Kleikamp * lookup to mark the inode dirty later. 5644ac27a0ecSDave Kleikamp */ 5645617ba13bSMingming Cao static int ext4_pin_inode(handle_t *handle, struct inode *inode) 5646ac27a0ecSDave Kleikamp { 5647617ba13bSMingming Cao struct ext4_iloc iloc; 5648ac27a0ecSDave Kleikamp 5649ac27a0ecSDave Kleikamp int err = 0; 5650ac27a0ecSDave Kleikamp if (handle) { 5651617ba13bSMingming Cao err = ext4_get_inode_loc(inode, &iloc); 5652ac27a0ecSDave Kleikamp if (!err) { 5653ac27a0ecSDave Kleikamp BUFFER_TRACE(iloc.bh, "get_write_access"); 5654dab291afSMingming Cao err = jbd2_journal_get_write_access(handle, iloc.bh); 5655ac27a0ecSDave Kleikamp if (!err) 56560390131bSFrank Mayhar err = ext4_handle_dirty_metadata(handle, 565773b50c1cSCurt Wohlgemuth NULL, 5658ac27a0ecSDave Kleikamp iloc.bh); 5659ac27a0ecSDave Kleikamp brelse(iloc.bh); 5660ac27a0ecSDave Kleikamp } 5661ac27a0ecSDave Kleikamp } 5662617ba13bSMingming Cao ext4_std_error(inode->i_sb, err); 5663ac27a0ecSDave Kleikamp return err; 5664ac27a0ecSDave Kleikamp } 5665ac27a0ecSDave Kleikamp #endif 5666ac27a0ecSDave Kleikamp 5667617ba13bSMingming Cao int ext4_change_inode_journal_flag(struct inode *inode, int val) 5668ac27a0ecSDave Kleikamp { 5669ac27a0ecSDave Kleikamp journal_t *journal; 5670ac27a0ecSDave Kleikamp handle_t *handle; 5671ac27a0ecSDave Kleikamp int err; 5672c8585c6fSDaeho Jeong struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb); 5673ac27a0ecSDave Kleikamp 5674ac27a0ecSDave Kleikamp /* 5675ac27a0ecSDave Kleikamp * We have to be very careful here: changing a data block's 5676ac27a0ecSDave Kleikamp * journaling status dynamically is dangerous. If we write a 5677ac27a0ecSDave Kleikamp * data block to the journal, change the status and then delete 5678ac27a0ecSDave Kleikamp * that block, we risk forgetting to revoke the old log record 5679ac27a0ecSDave Kleikamp * from the journal and so a subsequent replay can corrupt data. 5680ac27a0ecSDave Kleikamp * So, first we make sure that the journal is empty and that 5681ac27a0ecSDave Kleikamp * nobody is changing anything. 5682ac27a0ecSDave Kleikamp */ 5683ac27a0ecSDave Kleikamp 5684617ba13bSMingming Cao journal = EXT4_JOURNAL(inode); 56850390131bSFrank Mayhar if (!journal) 56860390131bSFrank Mayhar return 0; 5687d699594dSDave Hansen if (is_journal_aborted(journal)) 5688ac27a0ecSDave Kleikamp return -EROFS; 5689ac27a0ecSDave Kleikamp 569017335dccSDmitry Monakhov /* Wait for all existing dio workers */ 569117335dccSDmitry Monakhov ext4_inode_block_unlocked_dio(inode); 569217335dccSDmitry Monakhov inode_dio_wait(inode); 569317335dccSDmitry Monakhov 56944c546592SDaeho Jeong /* 56954c546592SDaeho Jeong * Before flushing the journal and switching inode's aops, we have 56964c546592SDaeho Jeong * to flush all dirty data the inode has. There can be outstanding 56974c546592SDaeho Jeong * delayed allocations, there can be unwritten extents created by 56984c546592SDaeho Jeong * fallocate or buffered writes in dioread_nolock mode covered by 56994c546592SDaeho Jeong * dirty data which can be converted only after flushing the dirty 57004c546592SDaeho Jeong * data (and journalled aops don't know how to handle these cases). 57014c546592SDaeho Jeong */ 57024c546592SDaeho Jeong if (val) { 57034c546592SDaeho Jeong down_write(&EXT4_I(inode)->i_mmap_sem); 57044c546592SDaeho Jeong err = filemap_write_and_wait(inode->i_mapping); 57054c546592SDaeho Jeong if (err < 0) { 57064c546592SDaeho Jeong up_write(&EXT4_I(inode)->i_mmap_sem); 57074c546592SDaeho Jeong ext4_inode_resume_unlocked_dio(inode); 57084c546592SDaeho Jeong return err; 57094c546592SDaeho Jeong } 57104c546592SDaeho Jeong } 57114c546592SDaeho Jeong 5712c8585c6fSDaeho Jeong percpu_down_write(&sbi->s_journal_flag_rwsem); 5713dab291afSMingming Cao jbd2_journal_lock_updates(journal); 5714ac27a0ecSDave Kleikamp 5715ac27a0ecSDave Kleikamp /* 5716ac27a0ecSDave Kleikamp * OK, there are no updates running now, and all cached data is 5717ac27a0ecSDave Kleikamp * synced to disk. We are now in a completely consistent state 5718ac27a0ecSDave Kleikamp * which doesn't have anything in the journal, and we know that 5719ac27a0ecSDave Kleikamp * no filesystem updates are running, so it is safe to modify 5720ac27a0ecSDave Kleikamp * the inode's in-core data-journaling state flag now. 5721ac27a0ecSDave Kleikamp */ 5722ac27a0ecSDave Kleikamp 5723ac27a0ecSDave Kleikamp if (val) 572412e9b892SDmitry Monakhov ext4_set_inode_flag(inode, EXT4_INODE_JOURNAL_DATA); 57255872ddaaSYongqiang Yang else { 57264f879ca6SJan Kara err = jbd2_journal_flush(journal); 57274f879ca6SJan Kara if (err < 0) { 57284f879ca6SJan Kara jbd2_journal_unlock_updates(journal); 5729c8585c6fSDaeho Jeong percpu_up_write(&sbi->s_journal_flag_rwsem); 57304f879ca6SJan Kara ext4_inode_resume_unlocked_dio(inode); 57314f879ca6SJan Kara return err; 57324f879ca6SJan Kara } 573312e9b892SDmitry Monakhov ext4_clear_inode_flag(inode, EXT4_INODE_JOURNAL_DATA); 57345872ddaaSYongqiang Yang } 5735617ba13bSMingming Cao ext4_set_aops(inode); 5736a3caa24bSJan Kara /* 5737a3caa24bSJan Kara * Update inode->i_flags after EXT4_INODE_JOURNAL_DATA was updated. 5738a3caa24bSJan Kara * E.g. S_DAX may get cleared / set. 5739a3caa24bSJan Kara */ 5740a3caa24bSJan Kara ext4_set_inode_flags(inode); 5741ac27a0ecSDave Kleikamp 5742dab291afSMingming Cao jbd2_journal_unlock_updates(journal); 5743c8585c6fSDaeho Jeong percpu_up_write(&sbi->s_journal_flag_rwsem); 5744c8585c6fSDaeho Jeong 57454c546592SDaeho Jeong if (val) 57464c546592SDaeho Jeong up_write(&EXT4_I(inode)->i_mmap_sem); 574717335dccSDmitry Monakhov ext4_inode_resume_unlocked_dio(inode); 5748ac27a0ecSDave Kleikamp 5749ac27a0ecSDave Kleikamp /* Finally we can mark the inode as dirty. */ 5750ac27a0ecSDave Kleikamp 57519924a92aSTheodore Ts'o handle = ext4_journal_start(inode, EXT4_HT_INODE, 1); 5752ac27a0ecSDave Kleikamp if (IS_ERR(handle)) 5753ac27a0ecSDave Kleikamp return PTR_ERR(handle); 5754ac27a0ecSDave Kleikamp 5755617ba13bSMingming Cao err = ext4_mark_inode_dirty(handle, inode); 57560390131bSFrank Mayhar ext4_handle_sync(handle); 5757617ba13bSMingming Cao ext4_journal_stop(handle); 5758617ba13bSMingming Cao ext4_std_error(inode->i_sb, err); 5759ac27a0ecSDave Kleikamp 5760ac27a0ecSDave Kleikamp return err; 5761ac27a0ecSDave Kleikamp } 57622e9ee850SAneesh Kumar K.V 57632e9ee850SAneesh Kumar K.V static int ext4_bh_unmapped(handle_t *handle, struct buffer_head *bh) 57642e9ee850SAneesh Kumar K.V { 57652e9ee850SAneesh Kumar K.V return !buffer_mapped(bh); 57662e9ee850SAneesh Kumar K.V } 57672e9ee850SAneesh Kumar K.V 5768c2ec175cSNick Piggin int ext4_page_mkwrite(struct vm_area_struct *vma, struct vm_fault *vmf) 57692e9ee850SAneesh Kumar K.V { 5770c2ec175cSNick Piggin struct page *page = vmf->page; 57712e9ee850SAneesh Kumar K.V loff_t size; 57722e9ee850SAneesh Kumar K.V unsigned long len; 57739ea7df53SJan Kara int ret; 57742e9ee850SAneesh Kumar K.V struct file *file = vma->vm_file; 5775496ad9aaSAl Viro struct inode *inode = file_inode(file); 57762e9ee850SAneesh Kumar K.V struct address_space *mapping = inode->i_mapping; 57779ea7df53SJan Kara handle_t *handle; 57789ea7df53SJan Kara get_block_t *get_block; 57799ea7df53SJan Kara int retries = 0; 57802e9ee850SAneesh Kumar K.V 57818e8ad8a5SJan Kara sb_start_pagefault(inode->i_sb); 5782041bbb6dSTheodore Ts'o file_update_time(vma->vm_file); 5783ea3d7209SJan Kara 5784ea3d7209SJan Kara down_read(&EXT4_I(inode)->i_mmap_sem); 57859ea7df53SJan Kara /* Delalloc case is easy... */ 57869ea7df53SJan Kara if (test_opt(inode->i_sb, DELALLOC) && 57879ea7df53SJan Kara !ext4_should_journal_data(inode) && 57889ea7df53SJan Kara !ext4_nonda_switch(inode->i_sb)) { 57899ea7df53SJan Kara do { 57905c500029SRoss Zwisler ret = block_page_mkwrite(vma, vmf, 57919ea7df53SJan Kara ext4_da_get_block_prep); 57929ea7df53SJan Kara } while (ret == -ENOSPC && 57939ea7df53SJan Kara ext4_should_retry_alloc(inode->i_sb, &retries)); 57949ea7df53SJan Kara goto out_ret; 57952e9ee850SAneesh Kumar K.V } 57960e499890SDarrick J. Wong 57970e499890SDarrick J. Wong lock_page(page); 57989ea7df53SJan Kara size = i_size_read(inode); 57999ea7df53SJan Kara /* Page got truncated from under us? */ 58009ea7df53SJan Kara if (page->mapping != mapping || page_offset(page) > size) { 58019ea7df53SJan Kara unlock_page(page); 58029ea7df53SJan Kara ret = VM_FAULT_NOPAGE; 58039ea7df53SJan Kara goto out; 58040e499890SDarrick J. Wong } 58052e9ee850SAneesh Kumar K.V 580609cbfeafSKirill A. Shutemov if (page->index == size >> PAGE_SHIFT) 580709cbfeafSKirill A. Shutemov len = size & ~PAGE_MASK; 58082e9ee850SAneesh Kumar K.V else 580909cbfeafSKirill A. Shutemov len = PAGE_SIZE; 5810a827eaffSAneesh Kumar K.V /* 58119ea7df53SJan Kara * Return if we have all the buffers mapped. This avoids the need to do 58129ea7df53SJan Kara * journal_start/journal_stop which can block and take a long time 5813a827eaffSAneesh Kumar K.V */ 58142e9ee850SAneesh Kumar K.V if (page_has_buffers(page)) { 5815f19d5870STao Ma if (!ext4_walk_page_buffers(NULL, page_buffers(page), 5816f19d5870STao Ma 0, len, NULL, 5817a827eaffSAneesh Kumar K.V ext4_bh_unmapped)) { 58189ea7df53SJan Kara /* Wait so that we don't change page under IO */ 58191d1d1a76SDarrick J. Wong wait_for_stable_page(page); 58209ea7df53SJan Kara ret = VM_FAULT_LOCKED; 58219ea7df53SJan Kara goto out; 58222e9ee850SAneesh Kumar K.V } 5823a827eaffSAneesh Kumar K.V } 5824a827eaffSAneesh Kumar K.V unlock_page(page); 58259ea7df53SJan Kara /* OK, we need to fill the hole... */ 58269ea7df53SJan Kara if (ext4_should_dioread_nolock(inode)) 5827705965bdSJan Kara get_block = ext4_get_block_unwritten; 58289ea7df53SJan Kara else 58299ea7df53SJan Kara get_block = ext4_get_block; 58309ea7df53SJan Kara retry_alloc: 58319924a92aSTheodore Ts'o handle = ext4_journal_start(inode, EXT4_HT_WRITE_PAGE, 58329924a92aSTheodore Ts'o ext4_writepage_trans_blocks(inode)); 58339ea7df53SJan Kara if (IS_ERR(handle)) { 5834c2ec175cSNick Piggin ret = VM_FAULT_SIGBUS; 58359ea7df53SJan Kara goto out; 58369ea7df53SJan Kara } 58375c500029SRoss Zwisler ret = block_page_mkwrite(vma, vmf, get_block); 58389ea7df53SJan Kara if (!ret && ext4_should_journal_data(inode)) { 5839f19d5870STao Ma if (ext4_walk_page_buffers(handle, page_buffers(page), 0, 584009cbfeafSKirill A. Shutemov PAGE_SIZE, NULL, do_journal_get_write_access)) { 58419ea7df53SJan Kara unlock_page(page); 58429ea7df53SJan Kara ret = VM_FAULT_SIGBUS; 5843fcbb5515SYongqiang Yang ext4_journal_stop(handle); 58449ea7df53SJan Kara goto out; 58459ea7df53SJan Kara } 58469ea7df53SJan Kara ext4_set_inode_state(inode, EXT4_STATE_JDATA); 58479ea7df53SJan Kara } 58489ea7df53SJan Kara ext4_journal_stop(handle); 58499ea7df53SJan Kara if (ret == -ENOSPC && ext4_should_retry_alloc(inode->i_sb, &retries)) 58509ea7df53SJan Kara goto retry_alloc; 58519ea7df53SJan Kara out_ret: 58529ea7df53SJan Kara ret = block_page_mkwrite_return(ret); 58539ea7df53SJan Kara out: 5854ea3d7209SJan Kara up_read(&EXT4_I(inode)->i_mmap_sem); 58558e8ad8a5SJan Kara sb_end_pagefault(inode->i_sb); 58562e9ee850SAneesh Kumar K.V return ret; 58572e9ee850SAneesh Kumar K.V } 5858ea3d7209SJan Kara 5859ea3d7209SJan Kara int ext4_filemap_fault(struct vm_area_struct *vma, struct vm_fault *vmf) 5860ea3d7209SJan Kara { 5861ea3d7209SJan Kara struct inode *inode = file_inode(vma->vm_file); 5862ea3d7209SJan Kara int err; 5863ea3d7209SJan Kara 5864ea3d7209SJan Kara down_read(&EXT4_I(inode)->i_mmap_sem); 5865ea3d7209SJan Kara err = filemap_fault(vma, vmf); 5866ea3d7209SJan Kara up_read(&EXT4_I(inode)->i_mmap_sem); 5867ea3d7209SJan Kara 5868ea3d7209SJan Kara return err; 5869ea3d7209SJan Kara } 58702d90c160SJan Kara 58712d90c160SJan Kara /* 58722d90c160SJan Kara * Find the first extent at or after @lblk in an inode that is not a hole. 58732d90c160SJan Kara * Search for @map_len blocks at most. The extent is returned in @result. 58742d90c160SJan Kara * 58752d90c160SJan Kara * The function returns 1 if we found an extent. The function returns 0 in 58762d90c160SJan Kara * case there is no extent at or after @lblk and in that case also sets 58772d90c160SJan Kara * @result->es_len to 0. In case of error, the error code is returned. 58782d90c160SJan Kara */ 58792d90c160SJan Kara int ext4_get_next_extent(struct inode *inode, ext4_lblk_t lblk, 58802d90c160SJan Kara unsigned int map_len, struct extent_status *result) 58812d90c160SJan Kara { 58822d90c160SJan Kara struct ext4_map_blocks map; 58832d90c160SJan Kara struct extent_status es = {}; 58842d90c160SJan Kara int ret; 58852d90c160SJan Kara 58862d90c160SJan Kara map.m_lblk = lblk; 58872d90c160SJan Kara map.m_len = map_len; 58882d90c160SJan Kara 58892d90c160SJan Kara /* 58902d90c160SJan Kara * For non-extent based files this loop may iterate several times since 58912d90c160SJan Kara * we do not determine full hole size. 58922d90c160SJan Kara */ 58932d90c160SJan Kara while (map.m_len > 0) { 58942d90c160SJan Kara ret = ext4_map_blocks(NULL, inode, &map, 0); 58952d90c160SJan Kara if (ret < 0) 58962d90c160SJan Kara return ret; 58972d90c160SJan Kara /* There's extent covering m_lblk? Just return it. */ 58982d90c160SJan Kara if (ret > 0) { 58992d90c160SJan Kara int status; 59002d90c160SJan Kara 59012d90c160SJan Kara ext4_es_store_pblock(result, map.m_pblk); 59022d90c160SJan Kara result->es_lblk = map.m_lblk; 59032d90c160SJan Kara result->es_len = map.m_len; 59042d90c160SJan Kara if (map.m_flags & EXT4_MAP_UNWRITTEN) 59052d90c160SJan Kara status = EXTENT_STATUS_UNWRITTEN; 59062d90c160SJan Kara else 59072d90c160SJan Kara status = EXTENT_STATUS_WRITTEN; 59082d90c160SJan Kara ext4_es_store_status(result, status); 59092d90c160SJan Kara return 1; 59102d90c160SJan Kara } 59112d90c160SJan Kara ext4_es_find_delayed_extent_range(inode, map.m_lblk, 59122d90c160SJan Kara map.m_lblk + map.m_len - 1, 59132d90c160SJan Kara &es); 59142d90c160SJan Kara /* Is delalloc data before next block in extent tree? */ 59152d90c160SJan Kara if (es.es_len && es.es_lblk < map.m_lblk + map.m_len) { 59162d90c160SJan Kara ext4_lblk_t offset = 0; 59172d90c160SJan Kara 59182d90c160SJan Kara if (es.es_lblk < lblk) 59192d90c160SJan Kara offset = lblk - es.es_lblk; 59202d90c160SJan Kara result->es_lblk = es.es_lblk + offset; 59212d90c160SJan Kara ext4_es_store_pblock(result, 59222d90c160SJan Kara ext4_es_pblock(&es) + offset); 59232d90c160SJan Kara result->es_len = es.es_len - offset; 59242d90c160SJan Kara ext4_es_store_status(result, ext4_es_status(&es)); 59252d90c160SJan Kara 59262d90c160SJan Kara return 1; 59272d90c160SJan Kara } 59282d90c160SJan Kara /* There's a hole at m_lblk, advance us after it */ 59292d90c160SJan Kara map.m_lblk += map.m_len; 59302d90c160SJan Kara map_len -= map.m_len; 59312d90c160SJan Kara map.m_len = map_len; 59322d90c160SJan Kara cond_resched(); 59332d90c160SJan Kara } 59342d90c160SJan Kara result->es_len = 0; 59352d90c160SJan Kara return 0; 59362d90c160SJan Kara } 5937