data.c 39.3 KB
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/*
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 * fs/f2fs/data.c
 *
 * Copyright (c) 2012 Samsung Electronics Co., Ltd.
 *             http://www.samsung.com/
 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License version 2 as
 * published by the Free Software Foundation.
 */
#include <linux/fs.h>
#include <linux/f2fs_fs.h>
#include <linux/buffer_head.h>
#include <linux/mpage.h>
#include <linux/writeback.h>
#include <linux/backing-dev.h>
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#include <linux/pagevec.h>
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#include <linux/blkdev.h>
#include <linux/bio.h>
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#include <linux/prefetch.h>
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#include <linux/uio.h>
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#include <linux/cleancache.h>
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#include "f2fs.h"
#include "node.h"
#include "segment.h"
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#include "trace.h"
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#include <trace/events/f2fs.h>
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static void f2fs_read_end_io(struct bio *bio)
31
{
32 33
	struct bio_vec *bvec;
	int i;
34

35
	if (f2fs_bio_encrypted(bio)) {
36
		if (bio->bi_error) {
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			f2fs_release_crypto_ctx(bio->bi_private);
		} else {
			f2fs_end_io_crypto_work(bio->bi_private, bio);
			return;
		}
	}

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	bio_for_each_segment_all(bvec, bio, i) {
		struct page *page = bvec->bv_page;
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47
		if (!bio->bi_error) {
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			SetPageUptodate(page);
		} else {
			ClearPageUptodate(page);
			SetPageError(page);
		}
		unlock_page(page);
	}
	bio_put(bio);
}

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static void f2fs_write_end_io(struct bio *bio)
59
{
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	struct f2fs_sb_info *sbi = bio->bi_private;
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	struct bio_vec *bvec;
	int i;
63

64
	bio_for_each_segment_all(bvec, bio, i) {
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		struct page *page = bvec->bv_page;

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		f2fs_restore_and_release_control_page(&page);

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		if (unlikely(bio->bi_error)) {
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			set_bit(AS_EIO, &page->mapping->flags);
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			f2fs_stop_checkpoint(sbi);
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		}
		end_page_writeback(page);
		dec_page_count(sbi, F2FS_WRITEBACK);
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	}
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	if (!get_pages(sbi, F2FS_WRITEBACK) && wq_has_sleeper(&sbi->cp_wait))
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		wake_up(&sbi->cp_wait);

	bio_put(bio);
}

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/*
 * Low-level block read/write IO operations.
 */
static struct bio *__bio_alloc(struct f2fs_sb_info *sbi, block_t blk_addr,
				int npages, bool is_read)
{
	struct bio *bio;

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	bio = f2fs_bio_alloc(npages);
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	bio->bi_bdev = sbi->sb->s_bdev;
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	bio->bi_iter.bi_sector = SECTOR_FROM_BLOCK(blk_addr);
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	bio->bi_end_io = is_read ? f2fs_read_end_io : f2fs_write_end_io;
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	bio->bi_private = is_read ? NULL : sbi;
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	return bio;
}

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static void __submit_merged_bio(struct f2fs_bio_info *io)
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{
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	struct f2fs_io_info *fio = &io->fio;
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	if (!io->bio)
		return;

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	if (is_read_io(fio->rw))
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		trace_f2fs_submit_read_bio(io->sbi->sb, fio, io->bio);
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	else
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		trace_f2fs_submit_write_bio(io->sbi->sb, fio, io->bio);
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	submit_bio(fio->rw, io->bio);
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	io->bio = NULL;
}

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bool is_merged_page(struct f2fs_sb_info *sbi, struct page *page,
							enum page_type type)
{
	enum page_type btype = PAGE_TYPE_OF_BIO(type);
	struct f2fs_bio_info *io = &sbi->write_io[btype];
	struct bio_vec *bvec;
	struct page *target;
	int i;

	down_read(&io->io_rwsem);
	if (!io->bio) {
		up_read(&io->io_rwsem);
		return false;
	}

	bio_for_each_segment_all(bvec, io->bio, i) {

		if (bvec->bv_page->mapping) {
			target = bvec->bv_page;
		} else {
			struct f2fs_crypto_ctx *ctx;

			/* encrypted page */
			ctx = (struct f2fs_crypto_ctx *)page_private(
								bvec->bv_page);
			target = ctx->w.control_page;
		}

		if (page == target) {
			up_read(&io->io_rwsem);
			return true;
		}
	}

	up_read(&io->io_rwsem);
	return false;
}

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void f2fs_submit_merged_bio(struct f2fs_sb_info *sbi,
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				enum page_type type, int rw)
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{
	enum page_type btype = PAGE_TYPE_OF_BIO(type);
	struct f2fs_bio_info *io;

	io = is_read_io(rw) ? &sbi->read_io : &sbi->write_io[btype];

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	down_write(&io->io_rwsem);
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	/* change META to META_FLUSH in the checkpoint procedure */
	if (type >= META_FLUSH) {
		io->fio.type = META_FLUSH;
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		if (test_opt(sbi, NOBARRIER))
			io->fio.rw = WRITE_FLUSH | REQ_META | REQ_PRIO;
		else
			io->fio.rw = WRITE_FLUSH_FUA | REQ_META | REQ_PRIO;
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	}
	__submit_merged_bio(io);
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	up_write(&io->io_rwsem);
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}

/*
 * Fill the locked page with data located in the block address.
 * Return unlocked page.
 */
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int f2fs_submit_page_bio(struct f2fs_io_info *fio)
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{
	struct bio *bio;
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	struct page *page = fio->encrypted_page ? fio->encrypted_page : fio->page;
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	trace_f2fs_submit_page_bio(page, fio);
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	f2fs_trace_ios(fio, 0);
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	/* Allocate a new bio */
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	bio = __bio_alloc(fio->sbi, fio->blk_addr, 1, is_read_io(fio->rw));
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	if (bio_add_page(bio, page, PAGE_CACHE_SIZE, 0) < PAGE_CACHE_SIZE) {
		bio_put(bio);
		return -EFAULT;
	}

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	submit_bio(fio->rw, bio);
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	return 0;
}

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void f2fs_submit_page_mbio(struct f2fs_io_info *fio)
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{
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	struct f2fs_sb_info *sbi = fio->sbi;
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	enum page_type btype = PAGE_TYPE_OF_BIO(fio->type);
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	struct f2fs_bio_info *io;
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	bool is_read = is_read_io(fio->rw);
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	struct page *bio_page;
208

209
	io = is_read ? &sbi->read_io : &sbi->write_io[btype];
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	verify_block_addr(sbi, fio->blk_addr);
212

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	down_write(&io->io_rwsem);
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	if (!is_read)
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		inc_page_count(sbi, F2FS_WRITEBACK);

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	if (io->bio && (io->last_block_in_bio != fio->blk_addr - 1 ||
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						io->fio.rw != fio->rw))
		__submit_merged_bio(io);
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alloc_new:
	if (io->bio == NULL) {
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		int bio_blocks = MAX_BIO_BLOCKS(sbi);
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		io->bio = __bio_alloc(sbi, fio->blk_addr, bio_blocks, is_read);
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		io->fio = *fio;
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	}

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	bio_page = fio->encrypted_page ? fio->encrypted_page : fio->page;

	if (bio_add_page(io->bio, bio_page, PAGE_CACHE_SIZE, 0) <
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							PAGE_CACHE_SIZE) {
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		__submit_merged_bio(io);
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		goto alloc_new;
	}

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	io->last_block_in_bio = fio->blk_addr;
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	f2fs_trace_ios(fio, 0);
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	up_write(&io->io_rwsem);
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	trace_f2fs_submit_page_mbio(fio->page, fio);
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}

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/*
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 * Lock ordering for the change of data block address:
 * ->data_page
 *  ->node_page
 *    update block addresses in the node page
 */
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void set_data_blkaddr(struct dnode_of_data *dn)
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{
	struct f2fs_node *rn;
	__le32 *addr_array;
	struct page *node_page = dn->node_page;
	unsigned int ofs_in_node = dn->ofs_in_node;

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	f2fs_wait_on_page_writeback(node_page, NODE, true);
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	rn = F2FS_NODE(node_page);
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	/* Get physical address of data block */
	addr_array = blkaddr_in_node(rn);
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	addr_array[ofs_in_node] = cpu_to_le32(dn->data_blkaddr);
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	if (set_page_dirty(node_page))
		dn->node_changed = true;
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}

int reserve_new_block(struct dnode_of_data *dn)
{
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	struct f2fs_sb_info *sbi = F2FS_I_SB(dn->inode);
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	if (unlikely(is_inode_flag_set(F2FS_I(dn->inode), FI_NO_ALLOC)))
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		return -EPERM;
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	if (unlikely(!inc_valid_block_count(sbi, dn->inode, 1)))
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		return -ENOSPC;

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	trace_f2fs_reserve_new_block(dn->inode, dn->nid, dn->ofs_in_node);

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	dn->data_blkaddr = NEW_ADDR;
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	set_data_blkaddr(dn);
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	mark_inode_dirty(dn->inode);
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	sync_inode_page(dn);
	return 0;
}

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int f2fs_reserve_block(struct dnode_of_data *dn, pgoff_t index)
{
	bool need_put = dn->inode_page ? false : true;
	int err;

	err = get_dnode_of_data(dn, index, ALLOC_NODE);
	if (err)
		return err;
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	if (dn->data_blkaddr == NULL_ADDR)
		err = reserve_new_block(dn);
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	if (err || need_put)
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		f2fs_put_dnode(dn);
	return err;
}

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int f2fs_get_block(struct dnode_of_data *dn, pgoff_t index)
303
{
304
	struct extent_info ei;
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	struct inode *inode = dn->inode;
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	if (f2fs_lookup_extent_cache(inode, index, &ei)) {
		dn->data_blkaddr = ei.blk + index - ei.fofs;
		return 0;
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	}
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312
	return f2fs_reserve_block(dn, index);
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}

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struct page *get_read_data_page(struct inode *inode, pgoff_t index,
						int rw, bool for_write)
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{
	struct address_space *mapping = inode->i_mapping;
	struct dnode_of_data dn;
	struct page *page;
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	struct extent_info ei;
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	int err;
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	struct f2fs_io_info fio = {
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		.sbi = F2FS_I_SB(inode),
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		.type = DATA,
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		.rw = rw,
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		.encrypted_page = NULL,
328
	};
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	if (f2fs_encrypted_inode(inode) && S_ISREG(inode->i_mode))
		return read_mapping_page(mapping, index, NULL);

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	page = f2fs_grab_cache_page(mapping, index, for_write);
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	if (!page)
		return ERR_PTR(-ENOMEM);

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	if (f2fs_lookup_extent_cache(inode, index, &ei)) {
		dn.data_blkaddr = ei.blk + index - ei.fofs;
		goto got_it;
	}

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	set_new_dnode(&dn, inode, NULL, NULL, 0);
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	err = get_dnode_of_data(&dn, index, LOOKUP_NODE);
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	if (err)
		goto put_err;
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	f2fs_put_dnode(&dn);

348
	if (unlikely(dn.data_blkaddr == NULL_ADDR)) {
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		err = -ENOENT;
		goto put_err;
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	}
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got_it:
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	if (PageUptodate(page)) {
		unlock_page(page);
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		return page;
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	}
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	/*
	 * A new dentry page is allocated but not able to be written, since its
	 * new inode page couldn't be allocated due to -ENOSPC.
	 * In such the case, its blkaddr can be remained as NEW_ADDR.
	 * see, f2fs_add_link -> get_new_data_page -> init_inode_metadata.
	 */
	if (dn.data_blkaddr == NEW_ADDR) {
		zero_user_segment(page, 0, PAGE_CACHE_SIZE);
		SetPageUptodate(page);
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		unlock_page(page);
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		return page;
	}
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371
	fio.blk_addr = dn.data_blkaddr;
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	fio.page = page;
	err = f2fs_submit_page_bio(&fio);
374
	if (err)
375
		goto put_err;
376
	return page;
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put_err:
	f2fs_put_page(page, 1);
	return ERR_PTR(err);
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}

struct page *find_data_page(struct inode *inode, pgoff_t index)
{
	struct address_space *mapping = inode->i_mapping;
	struct page *page;

	page = find_get_page(mapping, index);
	if (page && PageUptodate(page))
		return page;
	f2fs_put_page(page, 0);

393
	page = get_read_data_page(inode, index, READ_SYNC, false);
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	if (IS_ERR(page))
		return page;

	if (PageUptodate(page))
		return page;

	wait_on_page_locked(page);
	if (unlikely(!PageUptodate(page))) {
		f2fs_put_page(page, 0);
		return ERR_PTR(-EIO);
	}
	return page;
}

/*
 * If it tries to access a hole, return an error.
 * Because, the callers, functions in dir.c and GC, should be able to know
 * whether this page exists or not.
 */
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struct page *get_lock_data_page(struct inode *inode, pgoff_t index,
							bool for_write)
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{
	struct address_space *mapping = inode->i_mapping;
	struct page *page;
repeat:
419
	page = get_read_data_page(inode, index, READ_SYNC, for_write);
420 421
	if (IS_ERR(page))
		return page;
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423
	/* wait for read completion */
424
	lock_page(page);
425
	if (unlikely(!PageUptodate(page))) {
426 427
		f2fs_put_page(page, 1);
		return ERR_PTR(-EIO);
428
	}
429
	if (unlikely(page->mapping != mapping)) {
430 431
		f2fs_put_page(page, 1);
		goto repeat;
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	}
	return page;
}

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/*
437 438
 * Caller ensures that this data page is never allocated.
 * A new zero-filled data page is allocated in the page cache.
439
 *
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 * Also, caller should grab and release a rwsem by calling f2fs_lock_op() and
 * f2fs_unlock_op().
442 443
 * Note that, ipage is set only by make_empty_dir, and if any error occur,
 * ipage should be released by this function.
444
 */
445
struct page *get_new_data_page(struct inode *inode,
446
		struct page *ipage, pgoff_t index, bool new_i_size)
447 448 449 450 451
{
	struct address_space *mapping = inode->i_mapping;
	struct page *page;
	struct dnode_of_data dn;
	int err;
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453
	page = f2fs_grab_cache_page(mapping, index, true);
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	if (!page) {
		/*
		 * before exiting, we should make sure ipage will be released
		 * if any error occur.
		 */
		f2fs_put_page(ipage, 1);
460
		return ERR_PTR(-ENOMEM);
461
	}
462

463
	set_new_dnode(&dn, inode, ipage, NULL, 0);
464
	err = f2fs_reserve_block(&dn, index);
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	if (err) {
		f2fs_put_page(page, 1);
467
		return ERR_PTR(err);
468
	}
469 470
	if (!ipage)
		f2fs_put_dnode(&dn);
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	if (PageUptodate(page))
473
		goto got_it;
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	if (dn.data_blkaddr == NEW_ADDR) {
		zero_user_segment(page, 0, PAGE_CACHE_SIZE);
477
		SetPageUptodate(page);
478
	} else {
479
		f2fs_put_page(page, 1);
480

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		/* if ipage exists, blkaddr should be NEW_ADDR */
		f2fs_bug_on(F2FS_I_SB(inode), ipage);
		page = get_lock_data_page(inode, index, true);
484
		if (IS_ERR(page))
485
			return page;
486
	}
487
got_it:
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	if (new_i_size && i_size_read(inode) <
				((loff_t)(index + 1) << PAGE_CACHE_SHIFT)) {
		i_size_write(inode, ((loff_t)(index + 1) << PAGE_CACHE_SHIFT));
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		/* Only the directory inode sets new_i_size */
		set_inode_flag(F2FS_I(inode), FI_UPDATE_DIR);
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	}
	return page;
}

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static int __allocate_data_block(struct dnode_of_data *dn)
{
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	struct f2fs_sb_info *sbi = F2FS_I_SB(dn->inode);
500
	struct f2fs_inode_info *fi = F2FS_I(dn->inode);
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	struct f2fs_summary sum;
	struct node_info ni;
503
	int seg = CURSEG_WARM_DATA;
504
	pgoff_t fofs;
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	if (unlikely(is_inode_flag_set(F2FS_I(dn->inode), FI_NO_ALLOC)))
		return -EPERM;
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	dn->data_blkaddr = datablock_addr(dn->node_page, dn->ofs_in_node);
	if (dn->data_blkaddr == NEW_ADDR)
		goto alloc;

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	if (unlikely(!inc_valid_block_count(sbi, dn->inode, 1)))
		return -ENOSPC;

516
alloc:
517 518 519
	get_node_info(sbi, dn->nid, &ni);
	set_summary(&sum, dn->nid, dn->ofs_in_node, ni.version);

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	if (dn->ofs_in_node == 0 && dn->inode_page == dn->node_page)
		seg = CURSEG_DIRECT_IO;

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	allocate_data_block(sbi, NULL, dn->data_blkaddr, &dn->data_blkaddr,
								&sum, seg);
525
	set_data_blkaddr(dn);
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	/* update i_size */
	fofs = start_bidx_of_node(ofs_of_node(dn->node_page), fi) +
							dn->ofs_in_node;
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	if (i_size_read(dn->inode) < ((loff_t)(fofs + 1) << PAGE_CACHE_SHIFT))
		i_size_write(dn->inode,
				((loff_t)(fofs + 1) << PAGE_CACHE_SHIFT));
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	return 0;
}

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static int __allocate_data_blocks(struct inode *inode, loff_t offset,
537 538
							size_t count)
{
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	struct f2fs_map_blocks map;
540

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	map.m_lblk = F2FS_BYTES_TO_BLK(offset);
	map.m_len = F2FS_BYTES_TO_BLK(count);
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	return f2fs_map_blocks(inode, &map, 1, F2FS_GET_BLOCK_DIO);
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}

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/*
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 * f2fs_map_blocks() now supported readahead/bmap/rw direct_IO with
 * f2fs_map_blocks structure.
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 * If original data blocks are allocated, then give them to blockdev.
 * Otherwise,
 *     a. preallocate requested block addresses
 *     b. do not use extent cache for better performance
 *     c. give the block addresses to blockdev
555
 */
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int f2fs_map_blocks(struct inode *inode, struct f2fs_map_blocks *map,
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						int create, int flag)
558
{
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	unsigned int maxblocks = map->m_len;
560
	struct dnode_of_data dn;
561
	struct f2fs_sb_info *sbi = F2FS_I_SB(inode);
562 563 564
	int mode = create ? ALLOC_NODE : LOOKUP_NODE_RA;
	pgoff_t pgofs, end_offset;
	int err = 0, ofs = 1;
565
	struct extent_info ei;
566
	bool allocated = false;
567
	block_t blkaddr;
568

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	map->m_len = 0;
	map->m_flags = 0;

	/* it only supports block size == page size */
	pgofs =	(pgoff_t)map->m_lblk;
574

575
	if (f2fs_lookup_extent_cache(inode, pgofs, &ei)) {
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		map->m_pblk = ei.blk + pgofs - ei.fofs;
		map->m_len = min((pgoff_t)maxblocks, ei.fofs + ei.len - pgofs);
		map->m_flags = F2FS_MAP_MAPPED;
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		goto out;
580
	}
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582
next_dnode:
583
	if (create)
584
		f2fs_lock_op(sbi);
585 586 587

	/* When reading holes, we need its node page */
	set_new_dnode(&dn, inode, NULL, NULL, 0);
588
	err = get_dnode_of_data(&dn, pgofs, mode);
589
	if (err) {
590 591 592
		if (err == -ENOENT)
			err = 0;
		goto unlock_out;
593
	}
C
Chao Yu 已提交
594

C
Chao Yu 已提交
595 596 597 598 599 600
	end_offset = ADDRS_PER_PAGE(dn.node_page, F2FS_I(inode));

next_block:
	blkaddr = datablock_addr(dn.node_page, dn.ofs_in_node);

	if (blkaddr == NEW_ADDR || blkaddr == NULL_ADDR) {
C
Chao Yu 已提交
601
		if (create) {
602 603
			if (unlikely(f2fs_cp_error(sbi))) {
				err = -EIO;
C
Chao Yu 已提交
604
				goto sync_out;
605
			}
C
Chao Yu 已提交
606 607
			err = __allocate_data_block(&dn);
			if (err)
C
Chao Yu 已提交
608
				goto sync_out;
C
Chao Yu 已提交
609 610
			allocated = true;
			map->m_flags = F2FS_MAP_NEW;
C
Chao Yu 已提交
611
			blkaddr = dn.data_blkaddr;
C
Chao Yu 已提交
612 613
		} else {
			if (flag != F2FS_GET_BLOCK_FIEMAP ||
C
Chao Yu 已提交
614
						blkaddr != NEW_ADDR) {
C
Chao Yu 已提交
615 616
				if (flag == F2FS_GET_BLOCK_BMAP)
					err = -ENOENT;
C
Chao Yu 已提交
617
				goto sync_out;
C
Chao Yu 已提交
618
			}
C
Chao Yu 已提交
619 620
		}
	}
621

C
Chao Yu 已提交
622 623 624 625 626 627 628 629 630 631 632 633 634 635 636 637
	if (map->m_len == 0) {
		/* preallocated unwritten block should be mapped for fiemap. */
		if (blkaddr == NEW_ADDR)
			map->m_flags |= F2FS_MAP_UNWRITTEN;
		map->m_flags |= F2FS_MAP_MAPPED;

		map->m_pblk = blkaddr;
		map->m_len = 1;
	} else if ((map->m_pblk != NEW_ADDR &&
			blkaddr == (map->m_pblk + ofs)) ||
			(map->m_pblk == NEW_ADDR && blkaddr == NEW_ADDR)) {
		ofs++;
		map->m_len++;
	} else {
		goto sync_out;
	}
638 639 640 641

	dn.ofs_in_node++;
	pgofs++;

C
Chao Yu 已提交
642 643 644
	if (map->m_len < maxblocks) {
		if (dn.ofs_in_node < end_offset)
			goto next_block;
645

646 647 648 649
		if (allocated)
			sync_inode_page(&dn);
		f2fs_put_dnode(&dn);

650 651
		if (create) {
			f2fs_unlock_op(sbi);
652
			f2fs_balance_fs(sbi, allocated);
653
		}
654
		allocated = false;
C
Chao Yu 已提交
655
		goto next_dnode;
656
	}
657

658 659 660
sync_out:
	if (allocated)
		sync_inode_page(&dn);
661
	f2fs_put_dnode(&dn);
662
unlock_out:
663
	if (create) {
664
		f2fs_unlock_op(sbi);
665
		f2fs_balance_fs(sbi, allocated);
666
	}
667
out:
J
Jaegeuk Kim 已提交
668
	trace_f2fs_map_blocks(inode, map, err);
669
	return err;
670 671
}

J
Jaegeuk Kim 已提交
672
static int __get_data_block(struct inode *inode, sector_t iblock,
C
Chao Yu 已提交
673
			struct buffer_head *bh, int create, int flag)
J
Jaegeuk Kim 已提交
674 675 676 677 678 679 680
{
	struct f2fs_map_blocks map;
	int ret;

	map.m_lblk = iblock;
	map.m_len = bh->b_size >> inode->i_blkbits;

C
Chao Yu 已提交
681
	ret = f2fs_map_blocks(inode, &map, create, flag);
J
Jaegeuk Kim 已提交
682 683 684 685 686 687 688 689
	if (!ret) {
		map_bh(bh, inode->i_sb, map.m_pblk);
		bh->b_state = (bh->b_state & ~F2FS_MAP_FLAGS) | map.m_flags;
		bh->b_size = map.m_len << inode->i_blkbits;
	}
	return ret;
}

690
static int get_data_block(struct inode *inode, sector_t iblock,
C
Chao Yu 已提交
691 692 693 694 695 696
			struct buffer_head *bh_result, int create, int flag)
{
	return __get_data_block(inode, iblock, bh_result, create, flag);
}

static int get_data_block_dio(struct inode *inode, sector_t iblock,
697 698
			struct buffer_head *bh_result, int create)
{
C
Chao Yu 已提交
699 700
	return __get_data_block(inode, iblock, bh_result, create,
						F2FS_GET_BLOCK_DIO);
701 702
}

C
Chao Yu 已提交
703
static int get_data_block_bmap(struct inode *inode, sector_t iblock,
704 705
			struct buffer_head *bh_result, int create)
{
706
	/* Block number less than F2FS MAX BLOCKS */
C
Chao Yu 已提交
707
	if (unlikely(iblock >= F2FS_I_SB(inode)->max_file_blocks))
708 709
		return -EFBIG;

C
Chao Yu 已提交
710 711
	return __get_data_block(inode, iblock, bh_result, create,
						F2FS_GET_BLOCK_BMAP);
712 713
}

714 715 716 717 718 719 720 721 722 723
static inline sector_t logical_to_blk(struct inode *inode, loff_t offset)
{
	return (offset >> inode->i_blkbits);
}

static inline loff_t blk_to_logical(struct inode *inode, sector_t blk)
{
	return (blk << inode->i_blkbits);
}

J
Jaegeuk Kim 已提交
724 725 726
int f2fs_fiemap(struct inode *inode, struct fiemap_extent_info *fieinfo,
		u64 start, u64 len)
{
727 728
	struct buffer_head map_bh;
	sector_t start_blk, last_blk;
729
	loff_t isize;
730 731 732 733 734 735 736 737
	u64 logical = 0, phys = 0, size = 0;
	u32 flags = 0;
	int ret = 0;

	ret = fiemap_check_flags(fieinfo, FIEMAP_FLAG_SYNC);
	if (ret)
		return ret;

J
Jaegeuk Kim 已提交
738 739 740 741 742 743
	if (f2fs_has_inline_data(inode)) {
		ret = f2fs_inline_data_fiemap(inode, fieinfo, start, len);
		if (ret != -EAGAIN)
			return ret;
	}

A
Al Viro 已提交
744
	inode_lock(inode);
745 746

	isize = i_size_read(inode);
747 748
	if (start >= isize)
		goto out;
749

750 751
	if (start + len > isize)
		len = isize - start;
752 753 754 755 756 757

	if (logical_to_blk(inode, len) == 0)
		len = blk_to_logical(inode, 1);

	start_blk = logical_to_blk(inode, start);
	last_blk = logical_to_blk(inode, start + len - 1);
758

759 760 761 762
next:
	memset(&map_bh, 0, sizeof(struct buffer_head));
	map_bh.b_size = len;

C
Chao Yu 已提交
763 764
	ret = get_data_block(inode, start_blk, &map_bh, 0,
					F2FS_GET_BLOCK_FIEMAP);
765 766 767 768 769
	if (ret)
		goto out;

	/* HOLE */
	if (!buffer_mapped(&map_bh)) {
770 771 772 773 774 775 776 777 778
		/* Go through holes util pass the EOF */
		if (blk_to_logical(inode, start_blk++) < isize)
			goto prep_next;
		/* Found a hole beyond isize means no more extents.
		 * Note that the premise is that filesystems don't
		 * punch holes beyond isize and keep size unchanged.
		 */
		flags |= FIEMAP_EXTENT_LAST;
	}
779

780 781 782 783
	if (size) {
		if (f2fs_encrypted_inode(inode))
			flags |= FIEMAP_EXTENT_DATA_ENCRYPTED;

784 785
		ret = fiemap_fill_next_extent(fieinfo, logical,
				phys, size, flags);
786
	}
787

788 789
	if (start_blk > last_blk || ret)
		goto out;
790

791 792 793 794 795 796
	logical = blk_to_logical(inode, start_blk);
	phys = blk_to_logical(inode, map_bh.b_blocknr);
	size = map_bh.b_size;
	flags = 0;
	if (buffer_unwritten(&map_bh))
		flags = FIEMAP_EXTENT_UNWRITTEN;
797

798
	start_blk += logical_to_blk(inode, size);
799

800
prep_next:
801 802 803 804 805 806 807 808 809
	cond_resched();
	if (fatal_signal_pending(current))
		ret = -EINTR;
	else
		goto next;
out:
	if (ret == 1)
		ret = 0;

A
Al Viro 已提交
810
	inode_unlock(inode);
811
	return ret;
J
Jaegeuk Kim 已提交
812 813
}

J
Jaegeuk Kim 已提交
814 815 816 817 818 819 820 821 822 823 824 825 826 827 828 829 830 831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846 847 848 849 850 851 852 853 854 855 856 857 858 859 860 861 862 863 864 865 866 867 868 869 870 871 872 873 874 875
/*
 * This function was originally taken from fs/mpage.c, and customized for f2fs.
 * Major change was from block_size == page_size in f2fs by default.
 */
static int f2fs_mpage_readpages(struct address_space *mapping,
			struct list_head *pages, struct page *page,
			unsigned nr_pages)
{
	struct bio *bio = NULL;
	unsigned page_idx;
	sector_t last_block_in_bio = 0;
	struct inode *inode = mapping->host;
	const unsigned blkbits = inode->i_blkbits;
	const unsigned blocksize = 1 << blkbits;
	sector_t block_in_file;
	sector_t last_block;
	sector_t last_block_in_file;
	sector_t block_nr;
	struct block_device *bdev = inode->i_sb->s_bdev;
	struct f2fs_map_blocks map;

	map.m_pblk = 0;
	map.m_lblk = 0;
	map.m_len = 0;
	map.m_flags = 0;

	for (page_idx = 0; nr_pages; page_idx++, nr_pages--) {

		prefetchw(&page->flags);
		if (pages) {
			page = list_entry(pages->prev, struct page, lru);
			list_del(&page->lru);
			if (add_to_page_cache_lru(page, mapping,
						  page->index, GFP_KERNEL))
				goto next_page;
		}

		block_in_file = (sector_t)page->index;
		last_block = block_in_file + nr_pages;
		last_block_in_file = (i_size_read(inode) + blocksize - 1) >>
								blkbits;
		if (last_block > last_block_in_file)
			last_block = last_block_in_file;

		/*
		 * Map blocks using the previous result first.
		 */
		if ((map.m_flags & F2FS_MAP_MAPPED) &&
				block_in_file > map.m_lblk &&
				block_in_file < (map.m_lblk + map.m_len))
			goto got_it;

		/*
		 * Then do more f2fs_map_blocks() calls until we are
		 * done with this page.
		 */
		map.m_flags = 0;

		if (block_in_file < last_block) {
			map.m_lblk = block_in_file;
			map.m_len = last_block - block_in_file;

876 877
			if (f2fs_map_blocks(inode, &map, 0,
							F2FS_GET_BLOCK_READ))
J
Jaegeuk Kim 已提交
878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905
				goto set_error_page;
		}
got_it:
		if ((map.m_flags & F2FS_MAP_MAPPED)) {
			block_nr = map.m_pblk + block_in_file - map.m_lblk;
			SetPageMappedToDisk(page);

			if (!PageUptodate(page) && !cleancache_get_page(page)) {
				SetPageUptodate(page);
				goto confused;
			}
		} else {
			zero_user_segment(page, 0, PAGE_CACHE_SIZE);
			SetPageUptodate(page);
			unlock_page(page);
			goto next_page;
		}

		/*
		 * This page will go to BIO.  Do we need to send this
		 * BIO off first?
		 */
		if (bio && (last_block_in_bio != block_nr - 1)) {
submit_and_realloc:
			submit_bio(READ, bio);
			bio = NULL;
		}
		if (bio == NULL) {
906 907 908 909 910 911 912 913 914 915
			struct f2fs_crypto_ctx *ctx = NULL;

			if (f2fs_encrypted_inode(inode) &&
					S_ISREG(inode->i_mode)) {

				ctx = f2fs_get_crypto_ctx(inode);
				if (IS_ERR(ctx))
					goto set_error_page;

				/* wait the page to be moved by cleaning */
916 917
				f2fs_wait_on_encrypted_page_writeback(
						F2FS_I_SB(inode), block_nr);
918 919
			}

J
Jaegeuk Kim 已提交
920
			bio = bio_alloc(GFP_KERNEL,
921
				min_t(int, nr_pages, BIO_MAX_PAGES));
922 923 924
			if (!bio) {
				if (ctx)
					f2fs_release_crypto_ctx(ctx);
J
Jaegeuk Kim 已提交
925
				goto set_error_page;
926
			}
J
Jaegeuk Kim 已提交
927 928
			bio->bi_bdev = bdev;
			bio->bi_iter.bi_sector = SECTOR_FROM_BLOCK(block_nr);
929
			bio->bi_end_io = f2fs_read_end_io;
930
			bio->bi_private = ctx;
J
Jaegeuk Kim 已提交
931 932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957 958
		}

		if (bio_add_page(bio, page, blocksize, 0) < blocksize)
			goto submit_and_realloc;

		last_block_in_bio = block_nr;
		goto next_page;
set_error_page:
		SetPageError(page);
		zero_user_segment(page, 0, PAGE_CACHE_SIZE);
		unlock_page(page);
		goto next_page;
confused:
		if (bio) {
			submit_bio(READ, bio);
			bio = NULL;
		}
		unlock_page(page);
next_page:
		if (pages)
			page_cache_release(page);
	}
	BUG_ON(pages && !list_empty(pages));
	if (bio)
		submit_bio(READ, bio);
	return 0;
}

959 960
static int f2fs_read_data_page(struct file *file, struct page *page)
{
H
Huajun Li 已提交
961
	struct inode *inode = page->mapping->host;
962
	int ret = -EAGAIN;
H
Huajun Li 已提交
963

964 965
	trace_f2fs_readpage(page, DATA);

A
arter97 已提交
966
	/* If the file has inline data, try to read it directly */
H
Huajun Li 已提交
967 968
	if (f2fs_has_inline_data(inode))
		ret = f2fs_read_inline_data(inode, page);
969
	if (ret == -EAGAIN)
J
Jaegeuk Kim 已提交
970
		ret = f2fs_mpage_readpages(page->mapping, NULL, page, 1);
H
Huajun Li 已提交
971
	return ret;
972 973 974 975 976 977
}

static int f2fs_read_data_pages(struct file *file,
			struct address_space *mapping,
			struct list_head *pages, unsigned nr_pages)
{
H
Huajun Li 已提交
978
	struct inode *inode = file->f_mapping->host;
979 980 981
	struct page *page = list_entry(pages->prev, struct page, lru);

	trace_f2fs_readpages(inode, page, nr_pages);
H
Huajun Li 已提交
982 983 984 985 986

	/* If the file has inline data, skip readpages */
	if (f2fs_has_inline_data(inode))
		return 0;

J
Jaegeuk Kim 已提交
987
	return f2fs_mpage_readpages(mapping, pages, NULL, nr_pages);
988 989
}

990
int do_write_data_page(struct f2fs_io_info *fio)
991
{
992
	struct page *page = fio->page;
993 994 995 996 997
	struct inode *inode = page->mapping->host;
	struct dnode_of_data dn;
	int err = 0;

	set_new_dnode(&dn, inode, NULL, NULL, 0);
998
	err = get_dnode_of_data(&dn, page->index, LOOKUP_NODE);
999 1000 1001
	if (err)
		return err;

1002
	fio->blk_addr = dn.data_blkaddr;
1003 1004

	/* This page is already truncated */
1005 1006
	if (fio->blk_addr == NULL_ADDR) {
		ClearPageUptodate(page);
1007
		goto out_writepage;
1008
	}
1009

1010
	if (f2fs_encrypted_inode(inode) && S_ISREG(inode->i_mode)) {
1011 1012 1013 1014 1015

		/* wait for GCed encrypted page writeback */
		f2fs_wait_on_encrypted_page_writeback(F2FS_I_SB(inode),
							fio->blk_addr);

1016 1017 1018 1019 1020 1021 1022
		fio->encrypted_page = f2fs_encrypt(inode, fio->page);
		if (IS_ERR(fio->encrypted_page)) {
			err = PTR_ERR(fio->encrypted_page);
			goto out_writepage;
		}
	}

1023 1024 1025 1026 1027 1028
	set_page_writeback(page);

	/*
	 * If current allocation needs SSR,
	 * it had better in-place writes for updated data.
	 */
1029
	if (unlikely(fio->blk_addr != NEW_ADDR &&
1030
			!is_cold_data(page) &&
1031
			!IS_ATOMIC_WRITTEN_PAGE(page) &&
1032
			need_inplace_update(inode))) {
1033
		rewrite_data_page(fio);
1034
		set_inode_flag(F2FS_I(inode), FI_UPDATE_WRITE);
1035
		trace_f2fs_do_write_data_page(page, IPU);
1036
	} else {
1037
		write_data_page(&dn, fio);
1038
		set_data_blkaddr(&dn);
1039
		f2fs_update_extent_cache(&dn);
1040
		trace_f2fs_do_write_data_page(page, OPU);
1041
		set_inode_flag(F2FS_I(inode), FI_APPEND_WRITE);
1042 1043
		if (page->index == 0)
			set_inode_flag(F2FS_I(inode), FI_FIRST_BLOCK_WRITTEN);
1044 1045 1046 1047 1048 1049 1050 1051 1052 1053
	}
out_writepage:
	f2fs_put_dnode(&dn);
	return err;
}

static int f2fs_write_data_page(struct page *page,
					struct writeback_control *wbc)
{
	struct inode *inode = page->mapping->host;
1054
	struct f2fs_sb_info *sbi = F2FS_I_SB(inode);
1055 1056 1057
	loff_t i_size = i_size_read(inode);
	const pgoff_t end_index = ((unsigned long long) i_size)
							>> PAGE_CACHE_SHIFT;
H
Huajun Li 已提交
1058
	unsigned offset = 0;
1059
	bool need_balance_fs = false;
1060
	int err = 0;
J
Jaegeuk Kim 已提交
1061
	struct f2fs_io_info fio = {
1062
		.sbi = sbi,
J
Jaegeuk Kim 已提交
1063
		.type = DATA,
C
Chris Fries 已提交
1064
		.rw = (wbc->sync_mode == WB_SYNC_ALL) ? WRITE_SYNC : WRITE,
1065
		.page = page,
1066
		.encrypted_page = NULL,
J
Jaegeuk Kim 已提交
1067
	};
1068

1069 1070
	trace_f2fs_writepage(page, DATA);

1071
	if (page->index < end_index)
1072
		goto write;
1073 1074 1075 1076 1077 1078

	/*
	 * If the offset is out-of-range of file size,
	 * this page does not have to be written to disk.
	 */
	offset = i_size & (PAGE_CACHE_SIZE - 1);
1079
	if ((page->index >= end_index + 1) || !offset)
1080
		goto out;
1081 1082

	zero_user_segment(page, offset, PAGE_CACHE_SIZE);
1083
write:
1084
	if (unlikely(is_sbi_flag_set(sbi, SBI_POR_DOING)))
1085
		goto redirty_out;
1086 1087 1088 1089 1090
	if (f2fs_is_drop_cache(inode))
		goto out;
	if (f2fs_is_volatile_file(inode) && !wbc->for_reclaim &&
			available_free_memory(sbi, BASE_CHECK))
		goto redirty_out;
1091

1092
	/* Dentry blocks are controlled by checkpoint */
1093
	if (S_ISDIR(inode->i_mode)) {
1094 1095
		if (unlikely(f2fs_cp_error(sbi)))
			goto redirty_out;
1096
		err = do_write_data_page(&fio);
1097 1098
		goto done;
	}
H
Huajun Li 已提交
1099

1100 1101 1102
	/* we should bypass data pages to proceed the kworkder jobs */
	if (unlikely(f2fs_cp_error(sbi))) {
		SetPageError(page);
1103
		goto out;
1104 1105
	}

1106
	if (!wbc->for_reclaim)
1107
		need_balance_fs = true;
1108
	else if (has_not_enough_free_secs(sbi, 0))
1109
		goto redirty_out;
1110

1111
	err = -EAGAIN;
1112
	f2fs_lock_op(sbi);
1113 1114 1115
	if (f2fs_has_inline_data(inode))
		err = f2fs_write_inline_data(inode, page);
	if (err == -EAGAIN)
1116
		err = do_write_data_page(&fio);
1117 1118 1119 1120
	f2fs_unlock_op(sbi);
done:
	if (err && err != -ENOENT)
		goto redirty_out;
1121 1122

	clear_cold_data(page);
1123
out:
1124
	inode_dec_dirty_pages(inode);
1125 1126
	if (err)
		ClearPageUptodate(page);
1127
	unlock_page(page);
J
Jaegeuk Kim 已提交
1128
	f2fs_balance_fs(sbi, need_balance_fs);
1129
	if (wbc->for_reclaim || unlikely(f2fs_cp_error(sbi))) {
1130
		f2fs_submit_merged_bio(sbi, DATA, WRITE);
1131
		remove_dirty_inode(inode);
1132
	}
1133 1134 1135
	return 0;

redirty_out:
1136
	redirty_page_for_writepage(wbc, page);
1137
	return AOP_WRITEPAGE_ACTIVATE;
1138 1139
}

1140 1141 1142 1143 1144 1145 1146 1147 1148
static int __f2fs_writepage(struct page *page, struct writeback_control *wbc,
			void *data)
{
	struct address_space *mapping = data;
	int ret = mapping->a_ops->writepage(page, wbc);
	mapping_set_error(mapping, ret);
	return ret;
}

C
Chao Yu 已提交
1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226
/*
 * This function was copied from write_cche_pages from mm/page-writeback.c.
 * The major change is making write step of cold data page separately from
 * warm/hot data page.
 */
static int f2fs_write_cache_pages(struct address_space *mapping,
			struct writeback_control *wbc, writepage_t writepage,
			void *data)
{
	int ret = 0;
	int done = 0;
	struct pagevec pvec;
	int nr_pages;
	pgoff_t uninitialized_var(writeback_index);
	pgoff_t index;
	pgoff_t end;		/* Inclusive */
	pgoff_t done_index;
	int cycled;
	int range_whole = 0;
	int tag;
	int step = 0;

	pagevec_init(&pvec, 0);
next:
	if (wbc->range_cyclic) {
		writeback_index = mapping->writeback_index; /* prev offset */
		index = writeback_index;
		if (index == 0)
			cycled = 1;
		else
			cycled = 0;
		end = -1;
	} else {
		index = wbc->range_start >> PAGE_CACHE_SHIFT;
		end = wbc->range_end >> PAGE_CACHE_SHIFT;
		if (wbc->range_start == 0 && wbc->range_end == LLONG_MAX)
			range_whole = 1;
		cycled = 1; /* ignore range_cyclic tests */
	}
	if (wbc->sync_mode == WB_SYNC_ALL || wbc->tagged_writepages)
		tag = PAGECACHE_TAG_TOWRITE;
	else
		tag = PAGECACHE_TAG_DIRTY;
retry:
	if (wbc->sync_mode == WB_SYNC_ALL || wbc->tagged_writepages)
		tag_pages_for_writeback(mapping, index, end);
	done_index = index;
	while (!done && (index <= end)) {
		int i;

		nr_pages = pagevec_lookup_tag(&pvec, mapping, &index, tag,
			      min(end - index, (pgoff_t)PAGEVEC_SIZE - 1) + 1);
		if (nr_pages == 0)
			break;

		for (i = 0; i < nr_pages; i++) {
			struct page *page = pvec.pages[i];

			if (page->index > end) {
				done = 1;
				break;
			}

			done_index = page->index;

			lock_page(page);

			if (unlikely(page->mapping != mapping)) {
continue_unlock:
				unlock_page(page);
				continue;
			}

			if (!PageDirty(page)) {
				/* someone wrote it for us */
				goto continue_unlock;
			}

1227
			if (step == is_cold_data(page))
C
Chao Yu 已提交
1228 1229 1230 1231
				goto continue_unlock;

			if (PageWriteback(page)) {
				if (wbc->sync_mode != WB_SYNC_NONE)
1232 1233
					f2fs_wait_on_page_writeback(page,
								DATA, true);
C
Chao Yu 已提交
1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280
				else
					goto continue_unlock;
			}

			BUG_ON(PageWriteback(page));
			if (!clear_page_dirty_for_io(page))
				goto continue_unlock;

			ret = (*writepage)(page, wbc, data);
			if (unlikely(ret)) {
				if (ret == AOP_WRITEPAGE_ACTIVATE) {
					unlock_page(page);
					ret = 0;
				} else {
					done_index = page->index + 1;
					done = 1;
					break;
				}
			}

			if (--wbc->nr_to_write <= 0 &&
			    wbc->sync_mode == WB_SYNC_NONE) {
				done = 1;
				break;
			}
		}
		pagevec_release(&pvec);
		cond_resched();
	}

	if (step < 1) {
		step++;
		goto next;
	}

	if (!cycled && !done) {
		cycled = 1;
		index = 0;
		end = writeback_index - 1;
		goto retry;
	}
	if (wbc->range_cyclic || (range_whole && wbc->nr_to_write > 0))
		mapping->writeback_index = done_index;

	return ret;
}

1281
static int f2fs_write_data_pages(struct address_space *mapping,
1282 1283 1284
			    struct writeback_control *wbc)
{
	struct inode *inode = mapping->host;
1285
	struct f2fs_sb_info *sbi = F2FS_I_SB(inode);
1286
	bool locked = false;
1287
	int ret;
1288
	long diff;
1289

1290 1291
	trace_f2fs_writepages(mapping->host, wbc, DATA);

P
P J P 已提交
1292 1293 1294 1295
	/* deal with chardevs and other special file */
	if (!mapping->a_ops->writepage)
		return 0;

1296 1297 1298 1299
	/* skip writing if there is no dirty page in this inode */
	if (!get_dirty_pages(inode) && wbc->sync_mode == WB_SYNC_NONE)
		return 0;

1300 1301 1302 1303 1304
	if (S_ISDIR(inode->i_mode) && wbc->sync_mode == WB_SYNC_NONE &&
			get_dirty_pages(inode) < nr_pages_to_skip(sbi, DATA) &&
			available_free_memory(sbi, DIRTY_DENTS))
		goto skip_write;

C
Chao Yu 已提交
1305 1306 1307 1308
	/* skip writing during file defragment */
	if (is_inode_flag_set(F2FS_I(inode), FI_DO_DEFRAG))
		goto skip_write;

1309 1310 1311 1312
	/* during POR, we don't need to trigger writepage at all. */
	if (unlikely(is_sbi_flag_set(sbi, SBI_POR_DOING)))
		goto skip_write;

1313
	diff = nr_pages_to_write(sbi, DATA, wbc);
1314

1315
	if (!S_ISDIR(inode->i_mode) && wbc->sync_mode == WB_SYNC_ALL) {
1316 1317 1318
		mutex_lock(&sbi->writepages);
		locked = true;
	}
C
Chao Yu 已提交
1319
	ret = f2fs_write_cache_pages(mapping, wbc, __f2fs_writepage, mapping);
C
Chao Yu 已提交
1320
	f2fs_submit_merged_bio(sbi, DATA, WRITE);
1321 1322
	if (locked)
		mutex_unlock(&sbi->writepages);
J
Jaegeuk Kim 已提交
1323

1324
	remove_dirty_inode(inode);
1325

1326
	wbc->nr_to_write = max((long)0, wbc->nr_to_write - diff);
1327
	return ret;
1328 1329

skip_write:
1330
	wbc->pages_skipped += get_dirty_pages(inode);
1331
	return 0;
1332 1333
}

1334 1335 1336
static void f2fs_write_failed(struct address_space *mapping, loff_t to)
{
	struct inode *inode = mapping->host;
J
Jaegeuk Kim 已提交
1337
	loff_t i_size = i_size_read(inode);
1338

J
Jaegeuk Kim 已提交
1339 1340 1341
	if (to > i_size) {
		truncate_pagecache(inode, i_size);
		truncate_blocks(inode, i_size, true);
1342 1343 1344
	}
}

1345 1346 1347 1348 1349 1350 1351 1352
static int prepare_write_begin(struct f2fs_sb_info *sbi,
			struct page *page, loff_t pos, unsigned len,
			block_t *blk_addr, bool *node_changed)
{
	struct inode *inode = page->mapping->host;
	pgoff_t index = page->index;
	struct dnode_of_data dn;
	struct page *ipage;
1353 1354
	bool locked = false;
	struct extent_info ei;
1355 1356
	int err = 0;

1357 1358 1359 1360 1361 1362
	if (f2fs_has_inline_data(inode) ||
			(pos & PAGE_CACHE_MASK) >= i_size_read(inode)) {
		f2fs_lock_op(sbi);
		locked = true;
	}
restart:
1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375
	/* check inline_data */
	ipage = get_node_page(sbi, inode->i_ino);
	if (IS_ERR(ipage)) {
		err = PTR_ERR(ipage);
		goto unlock_out;
	}

	set_new_dnode(&dn, inode, ipage, ipage, 0);

	if (f2fs_has_inline_data(inode)) {
		if (pos + len <= MAX_INLINE_DATA) {
			read_inline_data(page, ipage);
			set_inode_flag(F2FS_I(inode), FI_DATA_EXIST);
1376
			set_inline_node(ipage);
1377 1378 1379
		} else {
			err = f2fs_convert_inline_page(&dn, page);
			if (err)
1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391
				goto out;
			if (dn.data_blkaddr == NULL_ADDR)
				err = f2fs_get_block(&dn, index);
		}
	} else if (locked) {
		err = f2fs_get_block(&dn, index);
	} else {
		if (f2fs_lookup_extent_cache(inode, index, &ei)) {
			dn.data_blkaddr = ei.blk + index - ei.fofs;
		} else {
			/* hole case */
			err = get_dnode_of_data(&dn, index, LOOKUP_NODE);
1392
			if (err || (!err && dn.data_blkaddr == NULL_ADDR)) {
1393 1394 1395 1396 1397
				f2fs_put_dnode(&dn);
				f2fs_lock_op(sbi);
				locked = true;
				goto restart;
			}
1398 1399
		}
	}
1400

1401 1402 1403
	/* convert_inline_page can make node_changed */
	*blk_addr = dn.data_blkaddr;
	*node_changed = dn.node_changed;
1404
out:
1405 1406
	f2fs_put_dnode(&dn);
unlock_out:
1407 1408
	if (locked)
		f2fs_unlock_op(sbi);
1409 1410 1411
	return err;
}

1412 1413 1414 1415 1416
static int f2fs_write_begin(struct file *file, struct address_space *mapping,
		loff_t pos, unsigned len, unsigned flags,
		struct page **pagep, void **fsdata)
{
	struct inode *inode = mapping->host;
1417
	struct f2fs_sb_info *sbi = F2FS_I_SB(inode);
1418
	struct page *page = NULL;
1419
	pgoff_t index = ((unsigned long long) pos) >> PAGE_CACHE_SHIFT;
1420 1421
	bool need_balance = false;
	block_t blkaddr = NULL_ADDR;
1422 1423
	int err = 0;

1424 1425
	trace_f2fs_write_begin(inode, pos, len, flags);

1426 1427 1428 1429 1430 1431 1432 1433 1434 1435
	/*
	 * We should check this at this moment to avoid deadlock on inode page
	 * and #0 page. The locking rule for inline_data conversion should be:
	 * lock_page(page #0) -> lock_page(inode_page)
	 */
	if (index != 0) {
		err = f2fs_convert_inline_inode(inode);
		if (err)
			goto fail;
	}
1436
repeat:
1437
	page = grab_cache_page_write_begin(mapping, index, flags);
1438 1439 1440 1441
	if (!page) {
		err = -ENOMEM;
		goto fail;
	}
1442

1443 1444
	*pagep = page;

1445 1446
	err = prepare_write_begin(sbi, page, pos, len,
					&blkaddr, &need_balance);
1447
	if (err)
1448
		goto fail;
1449

1450
	if (need_balance && has_not_enough_free_secs(sbi, 0)) {
1451
		unlock_page(page);
J
Jaegeuk Kim 已提交
1452
		f2fs_balance_fs(sbi, true);
1453 1454 1455 1456 1457 1458 1459 1460
		lock_page(page);
		if (page->mapping != mapping) {
			/* The page got truncated from under us */
			f2fs_put_page(page, 1);
			goto repeat;
		}
	}

1461
	f2fs_wait_on_page_writeback(page, DATA, false);
1462

1463 1464
	/* wait for GCed encrypted page writeback */
	if (f2fs_encrypted_inode(inode) && S_ISREG(inode->i_mode))
1465
		f2fs_wait_on_encrypted_page_writeback(sbi, blkaddr);
1466

C
Chao Yu 已提交
1467 1468 1469 1470
	if (len == PAGE_CACHE_SIZE)
		goto out_update;
	if (PageUptodate(page))
		goto out_clear;
1471 1472 1473 1474 1475 1476 1477

	if ((pos & PAGE_CACHE_MASK) >= i_size_read(inode)) {
		unsigned start = pos & (PAGE_CACHE_SIZE - 1);
		unsigned end = start + len;

		/* Reading beyond i_size is simple: memset to zero */
		zero_user_segments(page, 0, start, end, PAGE_CACHE_SIZE);
C
Chao Yu 已提交
1478
		goto out_update;
1479 1480
	}

1481
	if (blkaddr == NEW_ADDR) {
1482 1483
		zero_user_segment(page, 0, PAGE_CACHE_SIZE);
	} else {
1484
		struct f2fs_io_info fio = {
1485
			.sbi = sbi,
1486 1487
			.type = DATA,
			.rw = READ_SYNC,
1488
			.blk_addr = blkaddr,
1489
			.page = page,
1490
			.encrypted_page = NULL,
1491
		};
1492
		err = f2fs_submit_page_bio(&fio);
1493 1494
		if (err)
			goto fail;
1495

1496
		lock_page(page);
1497
		if (unlikely(!PageUptodate(page))) {
1498 1499
			err = -EIO;
			goto fail;
1500
		}
1501
		if (unlikely(page->mapping != mapping)) {
1502 1503
			f2fs_put_page(page, 1);
			goto repeat;
1504
		}
1505 1506 1507 1508

		/* avoid symlink page */
		if (f2fs_encrypted_inode(inode) && S_ISREG(inode->i_mode)) {
			err = f2fs_decrypt_one(inode, page);
1509
			if (err)
1510 1511
				goto fail;
		}
1512
	}
C
Chao Yu 已提交
1513
out_update:
1514
	SetPageUptodate(page);
C
Chao Yu 已提交
1515
out_clear:
1516 1517
	clear_cold_data(page);
	return 0;
1518

1519
fail:
1520
	f2fs_put_page(page, 1);
1521 1522
	f2fs_write_failed(mapping, pos + len);
	return err;
1523 1524
}

1525 1526 1527 1528 1529 1530 1531
static int f2fs_write_end(struct file *file,
			struct address_space *mapping,
			loff_t pos, unsigned len, unsigned copied,
			struct page *page, void *fsdata)
{
	struct inode *inode = page->mapping->host;

1532 1533
	trace_f2fs_write_end(inode, pos, len, copied);

1534
	set_page_dirty(page);
1535 1536 1537 1538 1539 1540

	if (pos + copied > i_size_read(inode)) {
		i_size_write(inode, pos + copied);
		mark_inode_dirty(inode);
	}

1541
	f2fs_put_page(page, 1);
1542
	f2fs_update_time(F2FS_I_SB(inode), REQ_TIME);
1543 1544 1545
	return copied;
}

1546 1547
static int check_direct_IO(struct inode *inode, struct iov_iter *iter,
			   loff_t offset)
1548 1549 1550 1551 1552 1553
{
	unsigned blocksize_mask = inode->i_sb->s_blocksize - 1;

	if (offset & blocksize_mask)
		return -EINVAL;

A
Al Viro 已提交
1554 1555 1556
	if (iov_iter_alignment(iter) & blocksize_mask)
		return -EINVAL;

1557 1558 1559
	return 0;
}

1560 1561
static ssize_t f2fs_direct_IO(struct kiocb *iocb, struct iov_iter *iter,
			      loff_t offset)
1562 1563
{
	struct file *file = iocb->ki_filp;
1564 1565 1566 1567
	struct address_space *mapping = file->f_mapping;
	struct inode *inode = mapping->host;
	size_t count = iov_iter_count(iter);
	int err;
1568

1569
	/* we don't need to use inline_data strictly */
1570 1571 1572
	err = f2fs_convert_inline_inode(inode);
	if (err)
		return err;
H
Huajun Li 已提交
1573

1574 1575 1576
	if (f2fs_encrypted_inode(inode) && S_ISREG(inode->i_mode))
		return 0;

1577 1578 1579
	err = check_direct_IO(inode, iter, offset);
	if (err)
		return err;
1580

1581
	trace_f2fs_direct_IO_enter(inode, offset, count, iov_iter_rw(iter));
1582

1583
	if (iov_iter_rw(iter) == WRITE) {
C
Chao Yu 已提交
1584 1585
		err = __allocate_data_blocks(inode, offset, count);
		if (err)
1586 1587
			goto out;
	}
1588

C
Chao Yu 已提交
1589
	err = blockdev_direct_IO(iocb, inode, iter, offset, get_data_block_dio);
1590
out:
1591
	if (err < 0 && iov_iter_rw(iter) == WRITE)
1592
		f2fs_write_failed(mapping, offset + count);
1593

1594
	trace_f2fs_direct_IO_exit(inode, offset, count, iov_iter_rw(iter), err);
1595

1596
	return err;
1597 1598
}

1599 1600
void f2fs_invalidate_page(struct page *page, unsigned int offset,
							unsigned int length)
1601 1602
{
	struct inode *inode = page->mapping->host;
1603
	struct f2fs_sb_info *sbi = F2FS_I_SB(inode);
1604

1605 1606
	if (inode->i_ino >= F2FS_ROOT_INO(sbi) &&
		(offset % PAGE_CACHE_SIZE || length != PAGE_CACHE_SIZE))
1607 1608
		return;

1609 1610 1611 1612 1613 1614 1615 1616
	if (PageDirty(page)) {
		if (inode->i_ino == F2FS_META_INO(sbi))
			dec_page_count(sbi, F2FS_DIRTY_META);
		else if (inode->i_ino == F2FS_NODE_INO(sbi))
			dec_page_count(sbi, F2FS_DIRTY_NODES);
		else
			inode_dec_dirty_pages(inode);
	}
C
Chao Yu 已提交
1617 1618 1619 1620 1621

	/* This is atomic written page, keep Private */
	if (IS_ATOMIC_WRITTEN_PAGE(page))
		return;

1622 1623 1624
	ClearPagePrivate(page);
}

1625
int f2fs_release_page(struct page *page, gfp_t wait)
1626
{
1627 1628 1629 1630
	/* If this is dirty page, keep PagePrivate */
	if (PageDirty(page))
		return 0;

C
Chao Yu 已提交
1631 1632 1633 1634
	/* This is atomic written page, keep Private */
	if (IS_ATOMIC_WRITTEN_PAGE(page))
		return 0;

1635
	ClearPagePrivate(page);
1636
	return 1;
1637 1638 1639 1640 1641 1642 1643
}

static int f2fs_set_data_page_dirty(struct page *page)
{
	struct address_space *mapping = page->mapping;
	struct inode *inode = mapping->host;

1644 1645
	trace_f2fs_set_page_dirty(page, DATA);

1646
	SetPageUptodate(page);
1647

1648
	if (f2fs_is_atomic_file(inode)) {
C
Chao Yu 已提交
1649 1650 1651 1652 1653 1654 1655 1656 1657
		if (!IS_ATOMIC_WRITTEN_PAGE(page)) {
			register_inmem_page(inode, page);
			return 1;
		}
		/*
		 * Previously, this page has been registered, we just
		 * return here.
		 */
		return 0;
1658 1659
	}

1660 1661
	if (!PageDirty(page)) {
		__set_page_dirty_nobuffers(page);
1662
		update_dirty_page(inode, page);
1663 1664 1665 1666 1667
		return 1;
	}
	return 0;
}

J
Jaegeuk Kim 已提交
1668 1669
static sector_t f2fs_bmap(struct address_space *mapping, sector_t block)
{
1670 1671
	struct inode *inode = mapping->host;

J
Jaegeuk Kim 已提交
1672 1673 1674 1675 1676 1677 1678
	if (f2fs_has_inline_data(inode))
		return 0;

	/* make sure allocating whole blocks */
	if (mapping_tagged(mapping, PAGECACHE_TAG_DIRTY))
		filemap_write_and_wait(mapping);

C
Chao Yu 已提交
1679
	return generic_block_bmap(mapping, block, get_data_block_bmap);
1680 1681
}

1682 1683 1684 1685 1686 1687
const struct address_space_operations f2fs_dblock_aops = {
	.readpage	= f2fs_read_data_page,
	.readpages	= f2fs_read_data_pages,
	.writepage	= f2fs_write_data_page,
	.writepages	= f2fs_write_data_pages,
	.write_begin	= f2fs_write_begin,
1688
	.write_end	= f2fs_write_end,
1689
	.set_page_dirty	= f2fs_set_data_page_dirty,
1690 1691
	.invalidatepage	= f2fs_invalidate_page,
	.releasepage	= f2fs_release_page,
1692
	.direct_IO	= f2fs_direct_IO,
J
Jaegeuk Kim 已提交
1693
	.bmap		= f2fs_bmap,
1694
};