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📄 nodelist.c

📁 linux 内核源代码
💻 C
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/* * JFFS2 -- Journalling Flash File System, Version 2. * * Copyright © 2001-2007 Red Hat, Inc. * * Created by David Woodhouse <dwmw2@infradead.org> * * For licensing information, see the file 'LICENCE' in this directory. * */#include <linux/kernel.h>#include <linux/sched.h>#include <linux/fs.h>#include <linux/mtd/mtd.h>#include <linux/rbtree.h>#include <linux/crc32.h>#include <linux/slab.h>#include <linux/pagemap.h>#include "nodelist.h"static void jffs2_obsolete_node_frag(struct jffs2_sb_info *c,				     struct jffs2_node_frag *this);void jffs2_add_fd_to_list(struct jffs2_sb_info *c, struct jffs2_full_dirent *new, struct jffs2_full_dirent **list){	struct jffs2_full_dirent **prev = list;	dbg_dentlist("add dirent \"%s\", ino #%u\n", new->name, new->ino);	while ((*prev) && (*prev)->nhash <= new->nhash) {		if ((*prev)->nhash == new->nhash && !strcmp((*prev)->name, new->name)) {			/* Duplicate. Free one */			if (new->version < (*prev)->version) {				dbg_dentlist("Eep! Marking new dirent node is obsolete, old is \"%s\", ino #%u\n",					(*prev)->name, (*prev)->ino);				jffs2_mark_node_obsolete(c, new->raw);				jffs2_free_full_dirent(new);			} else {				dbg_dentlist("marking old dirent \"%s\", ino #%u bsolete\n",					(*prev)->name, (*prev)->ino);				new->next = (*prev)->next;				jffs2_mark_node_obsolete(c, ((*prev)->raw));				jffs2_free_full_dirent(*prev);				*prev = new;			}			return;		}		prev = &((*prev)->next);	}	new->next = *prev;	*prev = new;}uint32_t jffs2_truncate_fragtree(struct jffs2_sb_info *c, struct rb_root *list, uint32_t size){	struct jffs2_node_frag *frag = jffs2_lookup_node_frag(list, size);	dbg_fragtree("truncating fragtree to 0x%08x bytes\n", size);	/* We know frag->ofs <= size. That's what lookup does for us */	if (frag && frag->ofs != size) {		if (frag->ofs+frag->size > size) {			frag->size = size - frag->ofs;		}		frag = frag_next(frag);	}	while (frag && frag->ofs >= size) {		struct jffs2_node_frag *next = frag_next(frag);		frag_erase(frag, list);		jffs2_obsolete_node_frag(c, frag);		frag = next;	}	if (size == 0)		return 0;	frag = frag_last(list);	/* Sanity check for truncation to longer than we started with... */	if (!frag)		return 0;	if (frag->ofs + frag->size < size)		return frag->ofs + frag->size;	/* If the last fragment starts at the RAM page boundary, it is	 * REF_PRISTINE irrespective of its size. */	if (frag->node && (frag->ofs & (PAGE_CACHE_SIZE - 1)) == 0) {		dbg_fragtree2("marking the last fragment 0x%08x-0x%08x REF_PRISTINE.\n",			frag->ofs, frag->ofs + frag->size);		frag->node->raw->flash_offset = ref_offset(frag->node->raw) | REF_PRISTINE;	}	return size;}static void jffs2_obsolete_node_frag(struct jffs2_sb_info *c,				     struct jffs2_node_frag *this){	if (this->node) {		this->node->frags--;		if (!this->node->frags) {			/* The node has no valid frags left. It's totally obsoleted */			dbg_fragtree2("marking old node @0x%08x (0x%04x-0x%04x) obsolete\n",				ref_offset(this->node->raw), this->node->ofs, this->node->ofs+this->node->size);			jffs2_mark_node_obsolete(c, this->node->raw);			jffs2_free_full_dnode(this->node);		} else {			dbg_fragtree2("marking old node @0x%08x (0x%04x-0x%04x) REF_NORMAL. frags is %d\n",				ref_offset(this->node->raw), this->node->ofs, this->node->ofs+this->node->size, this->node->frags);			mark_ref_normal(this->node->raw);		}	}	jffs2_free_node_frag(this);}static void jffs2_fragtree_insert(struct jffs2_node_frag *newfrag, struct jffs2_node_frag *base){	struct rb_node *parent = &base->rb;	struct rb_node **link = &parent;	dbg_fragtree2("insert frag (0x%04x-0x%04x)\n", newfrag->ofs, newfrag->ofs + newfrag->size);	while (*link) {		parent = *link;		base = rb_entry(parent, struct jffs2_node_frag, rb);		if (newfrag->ofs > base->ofs)			link = &base->rb.rb_right;		else if (newfrag->ofs < base->ofs)			link = &base->rb.rb_left;		else {			JFFS2_ERROR("duplicate frag at %08x (%p,%p)\n", newfrag->ofs, newfrag, base);			BUG();		}	}	rb_link_node(&newfrag->rb, &base->rb, link);}/* * Allocate and initializes a new fragment. */static struct jffs2_node_frag * new_fragment(struct jffs2_full_dnode *fn, uint32_t ofs, uint32_t size){	struct jffs2_node_frag *newfrag;	newfrag = jffs2_alloc_node_frag();	if (likely(newfrag)) {		newfrag->ofs = ofs;		newfrag->size = size;		newfrag->node = fn;	} else {		JFFS2_ERROR("cannot allocate a jffs2_node_frag object\n");	}	return newfrag;}/* * Called when there is no overlapping fragment exist. Inserts a hole before the new * fragment and inserts the new fragment to the fragtree. */static int no_overlapping_node(struct jffs2_sb_info *c, struct rb_root *root,		 	       struct jffs2_node_frag *newfrag,			       struct jffs2_node_frag *this, uint32_t lastend){	if (lastend < newfrag->node->ofs) {		/* put a hole in before the new fragment */		struct jffs2_node_frag *holefrag;		holefrag= new_fragment(NULL, lastend, newfrag->node->ofs - lastend);		if (unlikely(!holefrag)) {			jffs2_free_node_frag(newfrag);			return -ENOMEM;		}		if (this) {			/* By definition, the 'this' node has no right-hand child,			   because there are no frags with offset greater than it.			   So that's where we want to put the hole */			dbg_fragtree2("add hole frag %#04x-%#04x on the right of the new frag.\n",				holefrag->ofs, holefrag->ofs + holefrag->size);			rb_link_node(&holefrag->rb, &this->rb, &this->rb.rb_right);		} else {			dbg_fragtree2("Add hole frag %#04x-%#04x to the root of the tree.\n",				holefrag->ofs, holefrag->ofs + holefrag->size);			rb_link_node(&holefrag->rb, NULL, &root->rb_node);		}		rb_insert_color(&holefrag->rb, root);		this = holefrag;	}	if (this) {		/* By definition, the 'this' node has no right-hand child,		   because there are no frags with offset greater than it.		   So that's where we want to put new fragment */		dbg_fragtree2("add the new node at the right\n");		rb_link_node(&newfrag->rb, &this->rb, &this->rb.rb_right);	} else {		dbg_fragtree2("insert the new node at the root of the tree\n");		rb_link_node(&newfrag->rb, NULL, &root->rb_node);	}	rb_insert_color(&newfrag->rb, root);	return 0;}/* Doesn't set inode->i_size */static int jffs2_add_frag_to_fragtree(struct jffs2_sb_info *c, struct rb_root *root, struct jffs2_node_frag *newfrag){	struct jffs2_node_frag *this;	uint32_t lastend;	/* Skip all the nodes which are completed before this one starts */	this = jffs2_lookup_node_frag(root, newfrag->node->ofs);	if (this) {		dbg_fragtree2("lookup gave frag 0x%04x-0x%04x; phys 0x%08x (*%p)\n",			  this->ofs, this->ofs+this->size, this->node?(ref_offset(this->node->raw)):0xffffffff, this);		lastend = this->ofs + this->size;	} else {		dbg_fragtree2("lookup gave no frag\n");		lastend = 0;	}	/* See if we ran off the end of the fragtree */	if (lastend <= newfrag->ofs) {		/* We did */		/* Check if 'this' node was on the same page as the new node.		   If so, both 'this' and the new node get marked REF_NORMAL so		   the GC can take a look.		*/		if (lastend && (lastend-1) >> PAGE_CACHE_SHIFT == newfrag->ofs >> PAGE_CACHE_SHIFT) {			if (this->node)				mark_ref_normal(this->node->raw);			mark_ref_normal(newfrag->node->raw);		}		return no_overlapping_node(c, root, newfrag, this, lastend);	}	if (this->node)		dbg_fragtree2("dealing with frag %u-%u, phys %#08x(%d).\n",		this->ofs, this->ofs + this->size,		ref_offset(this->node->raw), ref_flags(this->node->raw));	else		dbg_fragtree2("dealing with hole frag %u-%u.\n",		this->ofs, this->ofs + this->size);	/* OK. 'this' is pointing at the first frag that newfrag->ofs at least partially obsoletes,	 * - i.e. newfrag->ofs < this->ofs+this->size && newfrag->ofs >= this->ofs	 */	if (newfrag->ofs > this->ofs) {		/* This node isn't completely obsoleted. The start of it remains valid */		/* Mark the new node and the partially covered node REF_NORMAL -- let		   the GC take a look at them */		mark_ref_normal(newfrag->node->raw);		if (this->node)			mark_ref_normal(this->node->raw);		if (this->ofs + this->size > newfrag->ofs + newfrag->size) {			/* The new node splits 'this' frag into two */			struct jffs2_node_frag *newfrag2;			if (this->node)				dbg_fragtree2("split old frag 0x%04x-0x%04x, phys 0x%08x\n",					this->ofs, this->ofs+this->size, ref_offset(this->node->raw));			else				dbg_fragtree2("split old hole frag 0x%04x-0x%04x\n",					this->ofs, this->ofs+this->size);			/* New second frag pointing to this's node */			newfrag2 = new_fragment(this->node, newfrag->ofs + newfrag->size,						this->ofs + this->size - newfrag->ofs - newfrag->size);			if (unlikely(!newfrag2))				return -ENOMEM;			if (this->node)				this->node->frags++;			/* Adjust size of original 'this' */			this->size = newfrag->ofs - this->ofs;			/* Now, we know there's no node with offset			   greater than this->ofs but smaller than			   newfrag2->ofs or newfrag->ofs, for obvious			   reasons. So we can do a tree insert from			   'this' to insert newfrag, and a tree insert			   from newfrag to insert newfrag2. */			jffs2_fragtree_insert(newfrag, this);			rb_insert_color(&newfrag->rb, root);			jffs2_fragtree_insert(newfrag2, newfrag);			rb_insert_color(&newfrag2->rb, root);			return 0;		}		/* New node just reduces 'this' frag in size, doesn't split it */		this->size = newfrag->ofs - this->ofs;		/* Again, we know it lives down here in the tree */		jffs2_fragtree_insert(newfrag, this);		rb_insert_color(&newfrag->rb, root);	} else {		/* New frag starts at the same point as 'this' used to. Replace		   it in the tree without doing a delete and insertion */		dbg_fragtree2("inserting newfrag (*%p),%d-%d in before 'this' (*%p),%d-%d\n",			  newfrag, newfrag->ofs, newfrag->ofs+newfrag->size, this, this->ofs, this->ofs+this->size);		rb_replace_node(&this->rb, &newfrag->rb, root);		if (newfrag->ofs + newfrag->size >= this->ofs+this->size) {			dbg_fragtree2("obsoleting node frag %p (%x-%x)\n", this, this->ofs, this->ofs+this->size);			jffs2_obsolete_node_frag(c, this);		} else {			this->ofs += newfrag->size;			this->size -= newfrag->size;			jffs2_fragtree_insert(this, newfrag);			rb_insert_color(&this->rb, root);			return 0;		}	}	/* OK, now we have newfrag added in the correct place in the tree, but	   frag_next(newfrag) may be a fragment which is overlapped by it	*/	while ((this = frag_next(newfrag)) && newfrag->ofs + newfrag->size >= this->ofs + this->size) {		/* 'this' frag is obsoleted completely. */		dbg_fragtree2("obsoleting node frag %p (%x-%x) and removing from tree\n",			this, this->ofs, this->ofs+this->size);		rb_erase(&this->rb, root);		jffs2_obsolete_node_frag(c, this);	}	/* Now we're pointing at the first frag which isn't totally obsoleted by	   the new frag */	if (!this || newfrag->ofs + newfrag->size == this->ofs)		return 0;	/* Still some overlap but we don't need to move it in the tree */	this->size = (this->ofs + this->size) - (newfrag->ofs + newfrag->size);	this->ofs = newfrag->ofs + newfrag->size;	/* And mark them REF_NORMAL so the GC takes a look at them */	if (this->node)		mark_ref_normal(this->node->raw);	mark_ref_normal(newfrag->node->raw);	return 0;}/* * Given an inode, probably with existing tree of fragments, add the new node * to the fragment tree. */int jffs2_add_full_dnode_to_inode(struct jffs2_sb_info *c, struct jffs2_inode_info *f, struct jffs2_full_dnode *fn){	int ret;	struct jffs2_node_frag *newfrag;	if (unlikely(!fn->size))		return 0;	newfrag = new_fragment(fn, fn->ofs, fn->size);	if (unlikely(!newfrag))		return -ENOMEM;	newfrag->node->frags = 1;	dbg_fragtree("adding node %#04x-%#04x @0x%08x on flash, newfrag *%p\n",		  fn->ofs, fn->ofs+fn->size, ref_offset(fn->raw), newfrag);	ret = jffs2_add_frag_to_fragtree(c, &f->fragtree, newfrag);	if (unlikely(ret))		return ret;	/* If we now share a page with other nodes, mark either previous	   or next node REF_NORMAL, as appropriate.  */	if (newfrag->ofs & (PAGE_CACHE_SIZE-1)) {		struct jffs2_node_frag *prev = frag_prev(newfrag);		mark_ref_normal(fn->raw);		/* If we don't start at zero there's _always_ a previous */

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