fast-import.c 46.0 KB
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/*
Format of STDIN stream:

  stream ::= cmd*;

  cmd ::= new_blob
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        | new_commit
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        | new_tag
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        | reset_branch
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        ;

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  new_blob ::= 'blob' lf
	mark?
    file_content;
  file_content ::= data;
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  new_commit ::= 'commit' sp ref_str lf
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    mark?
    ('author' sp name '<' email '>' ts tz lf)?
    'committer' sp name '<' email '>' ts tz lf
    commit_msg
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    ('from' sp (ref_str | hexsha1 | sha1exp_str | idnum) lf)?
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    ('merge' sp (ref_str | hexsha1 | sha1exp_str | idnum) lf)*
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    file_change*
    lf;
  commit_msg ::= data;
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  file_change ::= 'M' sp mode sp (hexsha1 | idnum) sp path_str lf
                | 'D' sp path_str lf
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                ;
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  mode ::= '644' | '755';

  new_tag ::= 'tag' sp tag_str lf
    'from' sp (ref_str | hexsha1 | sha1exp_str | idnum) lf
	'tagger' sp name '<' email '>' ts tz lf
    tag_msg;
  tag_msg ::= data;

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  reset_branch ::= 'reset' sp ref_str lf
    ('from' sp (ref_str | hexsha1 | sha1exp_str | idnum) lf)?
    lf;
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  checkpoint ::= 'checkpoint' lf
    lf;

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     # note: the first idnum in a stream should be 1 and subsequent
     # idnums should not have gaps between values as this will cause
     # the stream parser to reserve space for the gapped values.  An
	 # idnum can be updated in the future to a new object by issuing
     # a new mark directive with the old idnum.
	 #
  mark ::= 'mark' sp idnum lf;

     # note: declen indicates the length of binary_data in bytes.
     # declen does not include the lf preceeding or trailing the
     # binary data.
     #
  data ::= 'data' sp declen lf
    binary_data
	lf;

     # note: quoted strings are C-style quoting supporting \c for
     # common escapes of 'c' (e..g \n, \t, \\, \") or \nnn where nnn
	 # is the signed byte value in octal.  Note that the only
     # characters which must actually be escaped to protect the
     # stream formatting is: \, " and LF.  Otherwise these values
	 # are UTF8.
     #
  ref_str     ::= ref     | '"' quoted(ref)     '"' ;
  sha1exp_str ::= sha1exp | '"' quoted(sha1exp) '"' ;
  tag_str     ::= tag     | '"' quoted(tag)     '"' ;
  path_str    ::= path    | '"' quoted(path)    '"' ;

  declen ::= # unsigned 32 bit value, ascii base10 notation;
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  binary_data ::= # file content, not interpreted;
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  sp ::= # ASCII space character;
  lf ::= # ASCII newline (LF) character;
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     # note: a colon (':') must precede the numerical value assigned to
	 # an idnum.  This is to distinguish it from a ref or tag name as
     # GIT does not permit ':' in ref or tag strings.
	 #
  idnum   ::= ':' declen;
  path    ::= # GIT style file path, e.g. "a/b/c";
  ref     ::= # GIT ref name, e.g. "refs/heads/MOZ_GECKO_EXPERIMENT";
  tag     ::= # GIT tag name, e.g. "FIREFOX_1_5";
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  sha1exp ::= # Any valid GIT SHA1 expression;
  hexsha1 ::= # SHA1 in hexadecimal format;
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     # note: name and email are UTF8 strings, however name must not
	 # contain '<' or lf and email must not contain any of the
     # following: '<', '>', lf.
	 #
  name  ::= # valid GIT author/committer name;
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  email ::= # valid GIT author/committer email;
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  ts    ::= # time since the epoch in seconds, ascii base10 notation;
  tz    ::= # GIT style timezone;
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*/

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#include "builtin.h"
#include "cache.h"
#include "object.h"
#include "blob.h"
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#include "tree.h"
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#include "delta.h"
#include "pack.h"
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#include "refs.h"
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#include "csum-file.h"
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#include "strbuf.h"
#include "quote.h"
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struct object_entry
{
	struct object_entry *next;
	unsigned long offset;
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	unsigned type : TYPE_BITS;
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	unsigned pack_id : 16;
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	unsigned char sha1[20];
};

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struct object_entry_pool
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{
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	struct object_entry_pool *next_pool;
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	struct object_entry *next_free;
	struct object_entry *end;
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	struct object_entry entries[FLEX_ARRAY]; /* more */
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};

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struct mark_set
{
	int shift;
	union {
		struct object_entry *marked[1024];
		struct mark_set *sets[1024];
	} data;
};

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struct last_object
{
	void *data;
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	unsigned long len;
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	unsigned long offset;
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	unsigned int depth;
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	unsigned no_free:1;
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};

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struct mem_pool
{
	struct mem_pool *next_pool;
	char *next_free;
	char *end;
	char space[FLEX_ARRAY]; /* more */
};

struct atom_str
{
	struct atom_str *next_atom;
	int str_len;
	char str_dat[FLEX_ARRAY]; /* more */
};

struct tree_content;
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struct tree_entry
{
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	struct tree_content *tree;
	struct atom_str* name;
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	struct tree_entry_ms
	{
		unsigned int mode;
		unsigned char sha1[20];
	} versions[2];
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};

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struct tree_content
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{
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	unsigned int entry_capacity; /* must match avail_tree_content */
	unsigned int entry_count;
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	unsigned int delta_depth;
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	struct tree_entry *entries[FLEX_ARRAY]; /* more */
};

struct avail_tree_content
{
	unsigned int entry_capacity; /* must match tree_content */
	struct avail_tree_content *next_avail;
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};

struct branch
{
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	struct branch *table_next_branch;
	struct branch *active_next_branch;
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	const char *name;
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	unsigned long last_commit;
	struct tree_entry branch_tree;
	unsigned char sha1[20];
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};

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struct tag
{
	struct tag *next_tag;
	const char *name;
	unsigned char sha1[20];
};

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struct dbuf
{
	void *buffer;
	size_t capacity;
};

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struct hash_list
{
	struct hash_list *next;
	unsigned char sha1[20];
};
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/* Configured limits on output */
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static unsigned long max_depth = 10;
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static unsigned long max_packsize = -1;
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static uintmax_t max_objects = -1;

/* Stats and misc. counters */
static uintmax_t alloc_count;
static uintmax_t object_count;
static uintmax_t marks_set_count;
static uintmax_t object_count_by_type[1 << TYPE_BITS];
static uintmax_t duplicate_count_by_type[1 << TYPE_BITS];
static uintmax_t delta_count_by_type[1 << TYPE_BITS];
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static unsigned long branch_count;
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static unsigned long branch_load_count;
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/* Memory pools */
static size_t mem_pool_alloc = 2*1024*1024 - sizeof(struct mem_pool);
static size_t total_allocd;
static struct mem_pool *mem_pool;

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/* Atom management */
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static unsigned int atom_table_sz = 4451;
static unsigned int atom_cnt;
static struct atom_str **atom_table;

/* The .pack file being generated */
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static unsigned int pack_id;
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static struct packed_git *pack_data;
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static struct packed_git **all_packs;
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static int pack_fd;
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static unsigned long pack_size;
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/* Table of objects we've written. */
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static unsigned int object_entry_alloc = 5000;
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static struct object_entry_pool *blocks;
static struct object_entry *object_table[1 << 16];
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static struct mark_set *marks;
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static const char* mark_file;
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/* Our last blob */
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static struct last_object last_blob;

/* Tree management */
static unsigned int tree_entry_alloc = 1000;
static void *avail_tree_entry;
static unsigned int avail_tree_table_sz = 100;
static struct avail_tree_content **avail_tree_table;
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static struct dbuf old_tree;
static struct dbuf new_tree;
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/* Branch data */
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static unsigned long max_active_branches = 5;
static unsigned long cur_active_branches;
static unsigned long branch_table_sz = 1039;
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static struct branch **branch_table;
static struct branch *active_branches;

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/* Tag data */
static struct tag *first_tag;
static struct tag *last_tag;

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/* Input stream parsing */
static struct strbuf command_buf;
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static uintmax_t next_mark;
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static struct dbuf new_data;
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static FILE* branch_log;
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static void alloc_objects(unsigned int cnt)
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{
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	struct object_entry_pool *b;
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	b = xmalloc(sizeof(struct object_entry_pool)
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		+ cnt * sizeof(struct object_entry));
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	b->next_pool = blocks;
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	b->next_free = b->entries;
	b->end = b->entries + cnt;
	blocks = b;
	alloc_count += cnt;
}
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static struct object_entry* new_object(unsigned char *sha1)
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{
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	struct object_entry *e;
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	if (blocks->next_free == blocks->end)
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		alloc_objects(object_entry_alloc);
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	e = blocks->next_free++;
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	hashcpy(e->sha1, sha1);
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	return e;
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}

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static struct object_entry* find_object(unsigned char *sha1)
{
	unsigned int h = sha1[0] << 8 | sha1[1];
	struct object_entry *e;
	for (e = object_table[h]; e; e = e->next)
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		if (!hashcmp(sha1, e->sha1))
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			return e;
	return NULL;
}

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static struct object_entry* insert_object(unsigned char *sha1)
{
	unsigned int h = sha1[0] << 8 | sha1[1];
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	struct object_entry *e = object_table[h];
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	struct object_entry *p = NULL;
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	while (e) {
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		if (!hashcmp(sha1, e->sha1))
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			return e;
		p = e;
		e = e->next;
	}

	e = new_object(sha1);
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	e->next = NULL;
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	e->offset = 0;
	if (p)
		p->next = e;
	else
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		object_table[h] = e;
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	return e;
}
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static unsigned int hc_str(const char *s, size_t len)
{
	unsigned int r = 0;
	while (len-- > 0)
		r = r * 31 + *s++;
	return r;
}

static void* pool_alloc(size_t len)
{
	struct mem_pool *p;
	void *r;

	for (p = mem_pool; p; p = p->next_pool)
		if ((p->end - p->next_free >= len))
			break;

	if (!p) {
		if (len >= (mem_pool_alloc/2)) {
			total_allocd += len;
			return xmalloc(len);
		}
		total_allocd += sizeof(struct mem_pool) + mem_pool_alloc;
		p = xmalloc(sizeof(struct mem_pool) + mem_pool_alloc);
		p->next_pool = mem_pool;
		p->next_free = p->space;
		p->end = p->next_free + mem_pool_alloc;
		mem_pool = p;
	}

	r = p->next_free;
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	/* round out to a pointer alignment */
	if (len & (sizeof(void*) - 1))
		len += sizeof(void*) - (len & (sizeof(void*) - 1));
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	p->next_free += len;
	return r;
}

static void* pool_calloc(size_t count, size_t size)
{
	size_t len = count * size;
	void *r = pool_alloc(len);
	memset(r, 0, len);
	return r;
}

static char* pool_strdup(const char *s)
{
	char *r = pool_alloc(strlen(s) + 1);
	strcpy(r, s);
	return r;
}

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static void size_dbuf(struct dbuf *b, size_t maxlen)
{
	if (b->buffer) {
		if (b->capacity >= maxlen)
			return;
		free(b->buffer);
	}
	b->capacity = ((maxlen / 1024) + 1) * 1024;
	b->buffer = xmalloc(b->capacity);
}

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static void insert_mark(uintmax_t idnum, struct object_entry *oe)
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{
	struct mark_set *s = marks;
	while ((idnum >> s->shift) >= 1024) {
		s = pool_calloc(1, sizeof(struct mark_set));
		s->shift = marks->shift + 10;
		s->data.sets[0] = marks;
		marks = s;
	}
	while (s->shift) {
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		uintmax_t i = idnum >> s->shift;
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		idnum -= i << s->shift;
		if (!s->data.sets[i]) {
			s->data.sets[i] = pool_calloc(1, sizeof(struct mark_set));
			s->data.sets[i]->shift = s->shift - 10;
		}
		s = s->data.sets[i];
	}
	if (!s->data.marked[idnum])
		marks_set_count++;
	s->data.marked[idnum] = oe;
}

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static struct object_entry* find_mark(uintmax_t idnum)
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{
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	uintmax_t orig_idnum = idnum;
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	struct mark_set *s = marks;
	struct object_entry *oe = NULL;
	if ((idnum >> s->shift) < 1024) {
		while (s && s->shift) {
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			uintmax_t i = idnum >> s->shift;
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			idnum -= i << s->shift;
			s = s->data.sets[i];
		}
		if (s)
			oe = s->data.marked[idnum];
	}
	if (!oe)
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		die("mark :%ju not declared", orig_idnum);
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	return oe;
}

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static struct atom_str* to_atom(const char *s, size_t len)
{
	unsigned int hc = hc_str(s, len) % atom_table_sz;
	struct atom_str *c;

	for (c = atom_table[hc]; c; c = c->next_atom)
		if (c->str_len == len && !strncmp(s, c->str_dat, len))
			return c;

	c = pool_alloc(sizeof(struct atom_str) + len + 1);
	c->str_len = len;
	strncpy(c->str_dat, s, len);
	c->str_dat[len] = 0;
	c->next_atom = atom_table[hc];
	atom_table[hc] = c;
	atom_cnt++;
	return c;
}

static struct branch* lookup_branch(const char *name)
{
	unsigned int hc = hc_str(name, strlen(name)) % branch_table_sz;
	struct branch *b;

	for (b = branch_table[hc]; b; b = b->table_next_branch)
		if (!strcmp(name, b->name))
			return b;
	return NULL;
}

static struct branch* new_branch(const char *name)
{
	unsigned int hc = hc_str(name, strlen(name)) % branch_table_sz;
	struct branch* b = lookup_branch(name);

	if (b)
		die("Invalid attempt to create duplicate branch: %s", name);
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	if (check_ref_format(name))
		die("Branch name doesn't conform to GIT standards: %s", name);
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	b = pool_calloc(1, sizeof(struct branch));
	b->name = pool_strdup(name);
	b->table_next_branch = branch_table[hc];
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	b->branch_tree.versions[0].mode = S_IFDIR;
	b->branch_tree.versions[1].mode = S_IFDIR;
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	branch_table[hc] = b;
	branch_count++;
	return b;
}

static unsigned int hc_entries(unsigned int cnt)
{
	cnt = cnt & 7 ? (cnt / 8) + 1 : cnt / 8;
	return cnt < avail_tree_table_sz ? cnt : avail_tree_table_sz - 1;
}

static struct tree_content* new_tree_content(unsigned int cnt)
{
	struct avail_tree_content *f, *l = NULL;
	struct tree_content *t;
	unsigned int hc = hc_entries(cnt);

	for (f = avail_tree_table[hc]; f; l = f, f = f->next_avail)
		if (f->entry_capacity >= cnt)
			break;

	if (f) {
		if (l)
			l->next_avail = f->next_avail;
		else
			avail_tree_table[hc] = f->next_avail;
	} else {
		cnt = cnt & 7 ? ((cnt / 8) + 1) * 8 : cnt;
		f = pool_alloc(sizeof(*t) + sizeof(t->entries[0]) * cnt);
		f->entry_capacity = cnt;
	}

	t = (struct tree_content*)f;
	t->entry_count = 0;
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	t->delta_depth = 0;
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	return t;
}

static void release_tree_entry(struct tree_entry *e);
static void release_tree_content(struct tree_content *t)
{
	struct avail_tree_content *f = (struct avail_tree_content*)t;
	unsigned int hc = hc_entries(f->entry_capacity);
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	f->next_avail = avail_tree_table[hc];
	avail_tree_table[hc] = f;
}

static void release_tree_content_recursive(struct tree_content *t)
{
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	unsigned int i;
	for (i = 0; i < t->entry_count; i++)
		release_tree_entry(t->entries[i]);
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	release_tree_content(t);
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}

static struct tree_content* grow_tree_content(
	struct tree_content *t,
	int amt)
{
	struct tree_content *r = new_tree_content(t->entry_count + amt);
	r->entry_count = t->entry_count;
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	r->delta_depth = t->delta_depth;
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	memcpy(r->entries,t->entries,t->entry_count*sizeof(t->entries[0]));
	release_tree_content(t);
	return r;
}

static struct tree_entry* new_tree_entry()
{
	struct tree_entry *e;

	if (!avail_tree_entry) {
		unsigned int n = tree_entry_alloc;
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		total_allocd += n * sizeof(struct tree_entry);
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		avail_tree_entry = e = xmalloc(n * sizeof(struct tree_entry));
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		while (n-- > 1) {
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			*((void**)e) = e + 1;
			e++;
		}
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		*((void**)e) = NULL;
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	}

	e = avail_tree_entry;
	avail_tree_entry = *((void**)e);
	return e;
}

static void release_tree_entry(struct tree_entry *e)
{
	if (e->tree)
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		release_tree_content_recursive(e->tree);
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	*((void**)e) = avail_tree_entry;
	avail_tree_entry = e;
}

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static void start_packfile()
{
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	static char tmpfile[PATH_MAX];
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	struct packed_git *p;
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	struct pack_header hdr;

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	snprintf(tmpfile, sizeof(tmpfile),
		"%s/pack_XXXXXX", get_object_directory());
	pack_fd = mkstemp(tmpfile);
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	if (pack_fd < 0)
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		die("Can't create %s: %s", tmpfile, strerror(errno));
	p = xcalloc(1, sizeof(*p) + strlen(tmpfile) + 2);
	strcpy(p->pack_name, tmpfile);
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	p->pack_fd = pack_fd;
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	hdr.hdr_signature = htonl(PACK_SIGNATURE);
	hdr.hdr_version = htonl(2);
	hdr.hdr_entries = 0;
	write_or_die(pack_fd, &hdr, sizeof(hdr));
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	pack_data = p;
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	pack_size = sizeof(hdr);
	object_count = 0;
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	all_packs = xrealloc(all_packs, sizeof(*all_packs) * (pack_id + 1));
	all_packs[pack_id] = p;
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}

static void fixup_header_footer()
{
	SHA_CTX c;
	char hdr[8];
	unsigned long cnt;
	char *buf;

	if (lseek(pack_fd, 0, SEEK_SET) != 0)
		die("Failed seeking to start: %s", strerror(errno));

	SHA1_Init(&c);
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	if (read_in_full(pack_fd, hdr, 8) != 8)
		die("Unable to reread header of %s", pack_data->pack_name);
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	SHA1_Update(&c, hdr, 8);

	cnt = htonl(object_count);
	SHA1_Update(&c, &cnt, 4);
	write_or_die(pack_fd, &cnt, 4);

	buf = xmalloc(128 * 1024);
	for (;;) {
		size_t n = xread(pack_fd, buf, 128 * 1024);
		if (n <= 0)
			break;
		SHA1_Update(&c, buf, n);
	}
	free(buf);

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	SHA1_Final(pack_data->sha1, &c);
	write_or_die(pack_fd, pack_data->sha1, sizeof(pack_data->sha1));
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	close(pack_fd);
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}

static int oecmp (const void *a_, const void *b_)
{
	struct object_entry *a = *((struct object_entry**)a_);
	struct object_entry *b = *((struct object_entry**)b_);
	return hashcmp(a->sha1, b->sha1);
}

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static char* create_index()
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{
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	static char tmpfile[PATH_MAX];
	SHA_CTX ctx;
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	struct sha1file *f;
	struct object_entry **idx, **c, **last, *e;
	struct object_entry_pool *o;
	unsigned int array[256];
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	int i, idx_fd;
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	/* Build the sorted table of object IDs. */
	idx = xmalloc(object_count * sizeof(struct object_entry*));
	c = idx;
	for (o = blocks; o; o = o->next_pool)
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		for (e = o->next_free; e-- != o->entries;)
			if (pack_id == e->pack_id)
				*c++ = e;
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	last = idx + object_count;
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	if (c != last)
		die("internal consistency error creating the index");
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	qsort(idx, object_count, sizeof(struct object_entry*), oecmp);

	/* Generate the fan-out array. */
	c = idx;
	for (i = 0; i < 256; i++) {
		struct object_entry **next = c;;
		while (next < last) {
			if ((*next)->sha1[0] != i)
				break;
			next++;
		}
		array[i] = htonl(next - idx);
		c = next;
	}

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	snprintf(tmpfile, sizeof(tmpfile),
		"%s/index_XXXXXX", get_object_directory());
	idx_fd = mkstemp(tmpfile);
	if (idx_fd < 0)
		die("Can't create %s: %s", tmpfile, strerror(errno));
	f = sha1fd(idx_fd, tmpfile);
699
	sha1write(f, array, 256 * sizeof(int));
700
	SHA1_Init(&ctx);
701 702 703 704
	for (c = idx; c != last; c++) {
		unsigned int offset = htonl((*c)->offset);
		sha1write(f, &offset, 4);
		sha1write(f, (*c)->sha1, sizeof((*c)->sha1));
705
		SHA1_Update(&ctx, (*c)->sha1, 20);
706
	}
707
	sha1write(f, pack_data->sha1, sizeof(pack_data->sha1));
708
	sha1close(f, NULL, 1);
709
	free(idx);
710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754
	SHA1_Final(pack_data->sha1, &ctx);
	return tmpfile;
}

static char* keep_pack(char *curr_index_name)
{
	static char name[PATH_MAX];
	static char *keep_msg = "fast-import";
	int keep_fd;

	chmod(pack_data->pack_name, 0444);
	chmod(curr_index_name, 0444);

	snprintf(name, sizeof(name), "%s/pack/pack-%s.keep",
		 get_object_directory(), sha1_to_hex(pack_data->sha1));
	keep_fd = open(name, O_RDWR|O_CREAT|O_EXCL, 0600);
	if (keep_fd < 0)
		die("cannot create keep file");
	write(keep_fd, keep_msg, strlen(keep_msg));
	close(keep_fd);

	snprintf(name, sizeof(name), "%s/pack/pack-%s.pack",
		 get_object_directory(), sha1_to_hex(pack_data->sha1));
	if (move_temp_to_file(pack_data->pack_name, name))
		die("cannot store pack file");
	printf("%s\n", name);

	snprintf(name, sizeof(name), "%s/pack/pack-%s.idx",
		 get_object_directory(), sha1_to_hex(pack_data->sha1));
	if (move_temp_to_file(curr_index_name, name))
		die("cannot store index file");
	return name;
}

static void unkeep_all_packs()
{
	static char name[PATH_MAX];
	int k;

	for (k = 0; k < pack_id; k++) {
		struct packed_git *p = all_packs[k];
		snprintf(name, sizeof(name), "%s/pack/pack-%s.keep",
			 get_object_directory(), sha1_to_hex(p->sha1));
		unlink(name);
	}
755 756 757 758
}

static void end_packfile()
{
759 760
	struct packed_git *old_p = pack_data, *new_p;

761
	if (object_count) {
762 763
		char *idx_name;

764
		fixup_header_footer();
765
		idx_name = keep_pack(create_index());
766 767 768 769 770 771 772 773 774

		/* Register the packfile with core git's machinary. */
		new_p = add_packed_git(idx_name, strlen(idx_name), 1);
		if (!new_p)
			die("core git rejected index %s", idx_name);
		new_p->windows = old_p->windows;
		all_packs[pack_id++] = new_p;
		install_packed_git(new_p);
	}
775
	else
776
		unlink(old_p->pack_name);
777 778 779 780 781 782 783 784
	free(old_p);

	/* We can't carry a delta across packfiles. */
	free(last_blob.data);
	last_blob.data = NULL;
	last_blob.len = 0;
	last_blob.offset = 0;
	last_blob.depth = 0;
785 786
}

787 788 789 790 791 792
static void checkpoint()
{
	end_packfile();
	start_packfile();
}

793
static size_t encode_header(
794
	enum object_type type,
795
	size_t size,
796
	unsigned char *hdr)
797 798 799 800
{
	int n = 1;
	unsigned char c;

801
	if (type < OBJ_COMMIT || type > OBJ_REF_DELTA)
802 803 804 805 806 807 808 809 810 811 812 813 814 815
		die("bad type %d", type);

	c = (type << 4) | (size & 15);
	size >>= 4;
	while (size) {
		*hdr++ = c | 0x80;
		c = size & 0x7f;
		size >>= 7;
		n++;
	}
	*hdr = c;
	return n;
}

816 817 818
static int store_object(
	enum object_type type,
	void *dat,
819
	size_t datlen,
820
	struct last_object *last,
821
	unsigned char *sha1out,
822
	uintmax_t mark)
823 824
{
	void *out, *delta;
825 826 827
	struct object_entry *e;
	unsigned char hdr[96];
	unsigned char sha1[20];
828
	unsigned long hdrlen, deltalen;
829 830 831 832 833 834 835 836
	SHA_CTX c;
	z_stream s;

	hdrlen = sprintf((char*)hdr,"%s %lu",type_names[type],datlen) + 1;
	SHA1_Init(&c);
	SHA1_Update(&c, hdr, hdrlen);
	SHA1_Update(&c, dat, datlen);
	SHA1_Final(sha1, &c);
837
	if (sha1out)
838
		hashcpy(sha1out, sha1);
839 840

	e = insert_object(sha1);
841 842
	if (mark)
		insert_mark(mark, e);
843
	if (e->offset) {
844
		duplicate_count_by_type[type]++;
845
		return 1;
846
	}
847

848
	if (last && last->data && last->depth < max_depth) {
849
		delta = diff_delta(last->data, last->len,
850 851
			dat, datlen,
			&deltalen, 0);
852 853 854 855 856 857
		if (delta && deltalen >= datlen) {
			free(delta);
			delta = NULL;
		}
	} else
		delta = NULL;
858 859 860

	memset(&s, 0, sizeof(s));
	deflateInit(&s, zlib_compression_level);
861 862 863 864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886 887
	if (delta) {
		s.next_in = delta;
		s.avail_in = deltalen;
	} else {
		s.next_in = dat;
		s.avail_in = datlen;
	}
	s.avail_out = deflateBound(&s, s.avail_in);
	s.next_out = out = xmalloc(s.avail_out);
	while (deflate(&s, Z_FINISH) == Z_OK)
		/* nothing */;
	deflateEnd(&s);

	/* Determine if we should auto-checkpoint. */
	if ((object_count + 1) > max_objects
		|| (object_count + 1) < object_count
		|| (pack_size + 60 + s.total_out) > max_packsize
		|| (pack_size + 60 + s.total_out) < pack_size) {

		/* This new object needs to *not* have the current pack_id. */
		e->pack_id = pack_id + 1;
		checkpoint();

		/* We cannot carry a delta into the new pack. */
		if (delta) {
			free(delta);
			delta = NULL;
888 889 890 891 892 893 894 895 896 897

			memset(&s, 0, sizeof(s));
			deflateInit(&s, zlib_compression_level);
			s.next_in = dat;
			s.avail_in = datlen;
			s.avail_out = deflateBound(&s, s.avail_in);
			s.next_out = out = xrealloc(out, s.avail_out);
			while (deflate(&s, Z_FINISH) == Z_OK)
				/* nothing */;
			deflateEnd(&s);
898 899 900 901 902 903 904 905
		}
	}

	e->type = type;
	e->pack_id = pack_id;
	e->offset = pack_size;
	object_count++;
	object_count_by_type[type]++;
906 907

	if (delta) {
908 909 910
		unsigned long ofs = e->offset - last->offset;
		unsigned pos = sizeof(hdr) - 1;

911
		delta_count_by_type[type]++;
912
		last->depth++;
913 914

		hdrlen = encode_header(OBJ_OFS_DELTA, deltalen, hdr);
915
		write_or_die(pack_fd, hdr, hdrlen);
916 917 918 919 920 921 922
		pack_size += hdrlen;

		hdr[pos] = ofs & 127;
		while (ofs >>= 7)
			hdr[--pos] = 128 | (--ofs & 127);
		write_or_die(pack_fd, hdr + pos, sizeof(hdr) - pos);
		pack_size += sizeof(hdr) - pos;
923
	} else {
924 925
		if (last)
			last->depth = 0;
926
		hdrlen = encode_header(type, datlen, hdr);
927
		write_or_die(pack_fd, hdr, hdrlen);
928
		pack_size += hdrlen;
929 930
	}

931
	write_or_die(pack_fd, out, s.total_out);
932
	pack_size += s.total_out;
933 934 935 936

	free(out);
	if (delta)
		free(delta);
937
	if (last) {
938
		if (last->data && !last->no_free)
939 940
			free(last->data);
		last->data = dat;
941
		last->offset = e->offset;
942 943 944 945 946
		last->len = datlen;
	}
	return 0;
}

947 948 949
static void *gfi_unpack_entry(
	struct object_entry *oe,
	unsigned long *sizep)
950
{
951 952 953 954 955
	static char type[20];
	struct packed_git *p = all_packs[oe->pack_id];
	if (p == pack_data)
		p->pack_size = pack_size + 20;
	return unpack_entry(p, oe->offset, type, sizep);
956 957
}

958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973
static const char *get_mode(const char *str, unsigned int *modep)
{
	unsigned char c;
	unsigned int mode = 0;

	while ((c = *str++) != ' ') {
		if (c < '0' || c > '7')
			return NULL;
		mode = (mode << 3) + (c - '0');
	}
	*modep = mode;
	return str;
}

static void load_tree(struct tree_entry *root)
{
974
	unsigned char* sha1 = root->versions[1].sha1;
975 976 977 978 979 980 981
	struct object_entry *myoe;
	struct tree_content *t;
	unsigned long size;
	char *buf;
	const char *c;

	root->tree = t = new_tree_content(8);
982
	if (is_null_sha1(sha1))
983 984
		return;

985
	myoe = find_object(sha1);
986
	if (myoe) {
987
		if (myoe->type != OBJ_TREE)
988
			die("Not a tree: %s", sha1_to_hex(sha1));
989
		t->delta_depth = 0;
990
		buf = gfi_unpack_entry(myoe, &size);
991
	} else {
992
		char type[20];
993
		buf = read_sha1_file(sha1, type, &size);
994
		if (!buf || strcmp(type, tree_type))
995
			die("Can't load tree %s", sha1_to_hex(sha1));
996 997 998 999 1000 1001 1002 1003 1004 1005 1006
	}

	c = buf;
	while (c != (buf + size)) {
		struct tree_entry *e = new_tree_entry();

		if (t->entry_count == t->entry_capacity)
			root->tree = t = grow_tree_content(t, 8);
		t->entries[t->entry_count++] = e;

		e->tree = NULL;
1007
		c = get_mode(c, &e->versions[1].mode);
1008
		if (!c)
1009 1010
			die("Corrupt mode in %s", sha1_to_hex(sha1));
		e->versions[0].mode = e->versions[1].mode;
1011 1012
		e->name = to_atom(c, strlen(c));
		c += e->name->str_len + 1;
1013 1014
		hashcpy(e->versions[0].sha1, (unsigned char*)c);
		hashcpy(e->versions[1].sha1, (unsigned char*)c);
1015 1016 1017 1018 1019
		c += 20;
	}
	free(buf);
}

1020
static int tecmp0 (const void *_a, const void *_b)
1021 1022 1023 1024
{
	struct tree_entry *a = *((struct tree_entry**)_a);
	struct tree_entry *b = *((struct tree_entry**)_b);
	return base_name_compare(
1025 1026
		a->name->str_dat, a->name->str_len, a->versions[0].mode,
		b->name->str_dat, b->name->str_len, b->versions[0].mode);
1027 1028
}

1029
static int tecmp1 (const void *_a, const void *_b)
1030
{
1031 1032 1033 1034 1035 1036 1037
	struct tree_entry *a = *((struct tree_entry**)_a);
	struct tree_entry *b = *((struct tree_entry**)_b);
	return base_name_compare(
		a->name->str_dat, a->name->str_len, a->versions[1].mode,
		b->name->str_dat, b->name->str_len, b->versions[1].mode);
}

1038 1039 1040 1041
static void mktree(struct tree_content *t,
	int v,
	unsigned long *szp,
	struct dbuf *b)
1042 1043
{
	size_t maxlen = 0;
1044
	unsigned int i;
1045
	char *c;
1046

1047 1048 1049 1050
	if (!v)
		qsort(t->entries,t->entry_count,sizeof(t->entries[0]),tecmp0);
	else
		qsort(t->entries,t->entry_count,sizeof(t->entries[0]),tecmp1);
1051 1052

	for (i = 0; i < t->entry_count; i++) {
1053 1054
		if (t->entries[i]->versions[v].mode)
			maxlen += t->entries[i]->name->str_len + 34;
1055 1056
	}

1057
	size_dbuf(b, maxlen);
1058
	c = b->buffer;
1059 1060
	for (i = 0; i < t->entry_count; i++) {
		struct tree_entry *e = t->entries[i];
1061 1062 1063
		if (!e->versions[v].mode)
			continue;
		c += sprintf(c, "%o", e->versions[v].mode);
1064 1065 1066
		*c++ = ' ';
		strcpy(c, e->name->str_dat);
		c += e->name->str_len + 1;
1067
		hashcpy((unsigned char*)c, e->versions[v].sha1);
1068 1069
		c += 20;
	}
1070
	*szp = c - (char*)b->buffer;
1071 1072 1073 1074 1075 1076
}

static void store_tree(struct tree_entry *root)
{
	struct tree_content *t = root->tree;
	unsigned int i, j, del;
1077
	unsigned long new_len;
1078
	struct last_object lo;
1079
	struct object_entry *le;
1080 1081 1082 1083 1084 1085 1086 1087 1088

	if (!is_null_sha1(root->versions[1].sha1))
		return;

	for (i = 0; i < t->entry_count; i++) {
		if (t->entries[i]->tree)
			store_tree(t->entries[i]);
	}

1089
	le = find_object(root->versions[0].sha1);
1090 1091 1092
	if (!S_ISDIR(root->versions[0].mode)
		|| !le
		|| le->pack_id != pack_id) {
1093 1094 1095
		lo.data = NULL;
		lo.depth = 0;
	} else {
1096 1097
		mktree(t, 0, &lo.len, &old_tree);
		lo.data = old_tree.buffer;
1098
		lo.offset = le->offset;
1099
		lo.depth = t->delta_depth;
1100
		lo.no_free = 1;
1101 1102
	}

1103
	mktree(t, 1, &new_len, &new_tree);
1104
	store_object(OBJ_TREE, new_tree.buffer, new_len,
1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119
		&lo, root->versions[1].sha1, 0);

	t->delta_depth = lo.depth;
	for (i = 0, j = 0, del = 0; i < t->entry_count; i++) {
		struct tree_entry *e = t->entries[i];
		if (e->versions[1].mode) {
			e->versions[0].mode = e->versions[1].mode;
			hashcpy(e->versions[0].sha1, e->versions[1].sha1);
			t->entries[j++] = e;
		} else {
			release_tree_entry(e);
			del++;
		}
	}
	t->entry_count -= del;
1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142
}

static int tree_content_set(
	struct tree_entry *root,
	const char *p,
	const unsigned char *sha1,
	const unsigned int mode)
{
	struct tree_content *t = root->tree;
	const char *slash1;
	unsigned int i, n;
	struct tree_entry *e;

	slash1 = strchr(p, '/');
	if (slash1)
		n = slash1 - p;
	else
		n = strlen(p);

	for (i = 0; i < t->entry_count; i++) {
		e = t->entries[i];
		if (e->name->str_len == n && !strncmp(p, e->name->str_dat, n)) {
			if (!slash1) {
1143 1144
				if (e->versions[1].mode == mode
						&& !hashcmp(e->versions[1].sha1, sha1))
1145
					return 0;
1146 1147
				e->versions[1].mode = mode;
				hashcpy(e->versions[1].sha1, sha1);
1148
				if (e->tree) {
1149
					release_tree_content_recursive(e->tree);
1150 1151
					e->tree = NULL;
				}
1152
				hashclr(root->versions[1].sha1);
1153 1154
				return 1;
			}
1155
			if (!S_ISDIR(e->versions[1].mode)) {
1156
				e->tree = new_tree_content(8);
1157
				e->versions[1].mode = S_IFDIR;
1158 1159 1160 1161
			}
			if (!e->tree)
				load_tree(e);
			if (tree_content_set(e, slash1 + 1, sha1, mode)) {
1162
				hashclr(root->versions[1].sha1);
1163 1164 1165 1166 1167 1168 1169 1170 1171 1172
				return 1;
			}
			return 0;
		}
	}

	if (t->entry_count == t->entry_capacity)
		root->tree = t = grow_tree_content(t, 8);
	e = new_tree_entry();
	e->name = to_atom(p, n);
1173 1174
	e->versions[0].mode = 0;
	hashclr(e->versions[0].sha1);
1175 1176 1177
	t->entries[t->entry_count++] = e;
	if (slash1) {
		e->tree = new_tree_content(8);
1178
		e->versions[1].mode = S_IFDIR;
1179 1180 1181
		tree_content_set(e, slash1 + 1, sha1, mode);
	} else {
		e->tree = NULL;
1182 1183
		e->versions[1].mode = mode;
		hashcpy(e->versions[1].sha1, sha1);
1184
	}
1185
	hashclr(root->versions[1].sha1);
1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204
	return 1;
}

static int tree_content_remove(struct tree_entry *root, const char *p)
{
	struct tree_content *t = root->tree;
	const char *slash1;
	unsigned int i, n;
	struct tree_entry *e;

	slash1 = strchr(p, '/');
	if (slash1)
		n = slash1 - p;
	else
		n = strlen(p);

	for (i = 0; i < t->entry_count; i++) {
		e = t->entries[i];
		if (e->name->str_len == n && !strncmp(p, e->name->str_dat, n)) {
1205
			if (!slash1 || !S_ISDIR(e->versions[1].mode))
1206 1207 1208 1209
				goto del_entry;
			if (!e->tree)
				load_tree(e);
			if (tree_content_remove(e, slash1 + 1)) {
1210 1211 1212 1213 1214 1215 1216
				for (n = 0; n < e->tree->entry_count; n++) {
					if (e->tree->entries[n]->versions[1].mode) {
						hashclr(root->versions[1].sha1);
						return 1;
					}
				}
				goto del_entry;
1217 1218 1219 1220 1221 1222 1223
			}
			return 0;
		}
	}
	return 0;

del_entry:
1224 1225 1226 1227 1228 1229 1230
	if (e->tree) {
		release_tree_content_recursive(e->tree);
		e->tree = NULL;
	}
	e->versions[1].mode = 0;
	hashclr(e->versions[1].sha1);
	hashclr(root->versions[1].sha1);
1231
	return 1;
1232 1233
}

1234 1235 1236 1237 1238 1239 1240 1241 1242
static void dump_branches()
{
	static const char *msg = "fast-import";
	unsigned int i;
	struct branch *b;
	struct ref_lock *lock;

	for (i = 0; i < branch_table_sz; i++) {
		for (b = branch_table[i]; b; b = b->table_next_branch) {
1243
			lock = lock_any_ref_for_update(b->name, NULL);
1244 1245 1246 1247 1248 1249
			if (!lock || write_ref_sha1(lock, b->sha1, msg) < 0)
				die("Can't write %s", b->name);
		}
	}
}

1250 1251 1252 1253 1254 1255 1256 1257 1258
static void dump_tags()
{
	static const char *msg = "fast-import";
	struct tag *t;
	struct ref_lock *lock;
	char path[PATH_MAX];

	for (t = first_tag; t; t = t->next_tag) {
		sprintf(path, "refs/tags/%s", t->name);
1259
		lock = lock_any_ref_for_update(path, NULL);
1260 1261 1262 1263 1264
		if (!lock || write_ref_sha1(lock, t->sha1, msg) < 0)
			die("Can't write %s", path);
	}
}

1265
static void dump_marks_helper(FILE *f,
1266
	uintmax_t base,
1267 1268
	struct mark_set *m)
{
1269
	uintmax_t k;
1270 1271 1272 1273 1274 1275 1276 1277 1278
	if (m->shift) {
		for (k = 0; k < 1024; k++) {
			if (m->data.sets[k])
				dump_marks_helper(f, (base + k) << m->shift,
					m->data.sets[k]);
		}
	} else {
		for (k = 0; k < 1024; k++) {
			if (m->data.marked[k])
1279
				fprintf(f, ":%ju %s\n", base + k,
1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292 1293 1294
					sha1_to_hex(m->data.marked[k]->sha1));
		}
	}
}

static void dump_marks()
{
	if (mark_file)
	{
		FILE *f = fopen(mark_file, "w");
		dump_marks_helper(f, 0, marks);
		fclose(f);
	}
}

1295 1296 1297 1298 1299 1300 1301 1302
static void read_next_command()
{
	read_line(&command_buf, stdin, '\n');
}

static void cmd_mark()
{
	if (!strncmp("mark :", command_buf.buf, 6)) {
1303
		next_mark = strtoumax(command_buf.buf + 6, NULL, 10);
1304 1305 1306
		read_next_command();
	}
	else
1307
		next_mark = 0;
1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334 1335
}

static void* cmd_data (size_t *size)
{
	size_t n = 0;
	void *buffer;
	size_t length;

	if (strncmp("data ", command_buf.buf, 5))
		die("Expected 'data n' command, found: %s", command_buf.buf);

	length = strtoul(command_buf.buf + 5, NULL, 10);
	buffer = xmalloc(length);

	while (n < length) {
		size_t s = fread((char*)buffer + n, 1, length - n, stdin);
		if (!s && feof(stdin))
			die("EOF in data (%lu bytes remaining)", length - n);
		n += s;
	}

	if (fgetc(stdin) != '\n')
		die("An lf did not trail the binary data as expected.");

	*size = length;
	return buffer;
}

1336
static void cmd_new_blob()
1337
{
1338 1339
	size_t l;
	void *d;
1340 1341 1342

	read_next_command();
	cmd_mark();
1343
	d = cmd_data(&l);
1344

1345 1346
	if (store_object(OBJ_BLOB, d, l, &last_blob, NULL, next_mark))
		free(d);
1347 1348
}

1349
static void unload_one_branch()
1350
{
1351 1352
	while (cur_active_branches
		&& cur_active_branches >= max_active_branches) {
1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372
		unsigned long min_commit = ULONG_MAX;
		struct branch *e, *l = NULL, *p = NULL;

		for (e = active_branches; e; e = e->active_next_branch) {
			if (e->last_commit < min_commit) {
				p = l;
				min_commit = e->last_commit;
			}
			l = e;
		}

		if (p) {
			e = p->active_next_branch;
			p->active_next_branch = e->active_next_branch;
		} else {
			e = active_branches;
			active_branches = e->active_next_branch;
		}
		e->active_next_branch = NULL;
		if (e->branch_tree.tree) {
1373
			release_tree_content_recursive(e->branch_tree.tree);
1374 1375 1376
			e->branch_tree.tree = NULL;
		}
		cur_active_branches--;
1377 1378 1379
	}
}

1380
static void load_branch(struct branch *b)
1381
{
1382 1383 1384 1385
	load_tree(&b->branch_tree);
	b->active_next_branch = active_branches;
	active_branches = b;
	cur_active_branches++;
1386
	branch_load_count++;
1387 1388
}

1389
static void file_change_m(struct branch *b)
1390
{
1391 1392 1393
	const char *p = command_buf.buf + 2;
	char *p_uq;
	const char *endp;
1394
	struct object_entry *oe;
1395
	unsigned char sha1[20];
1396
	unsigned int mode;
1397
	char type[20];
1398

1399 1400 1401 1402 1403 1404
	p = get_mode(p, &mode);
	if (!p)
		die("Corrupt mode: %s", command_buf.buf);
	switch (mode) {
	case S_IFREG | 0644:
	case S_IFREG | 0755:
1405
	case S_IFLNK:
1406 1407 1408 1409 1410 1411 1412 1413
	case 0644:
	case 0755:
		/* ok */
		break;
	default:
		die("Corrupt mode: %s", command_buf.buf);
	}

1414 1415
	if (*p == ':') {
		char *x;
1416
		oe = find_mark(strtoumax(p + 1, &x, 10));
1417
		hashcpy(sha1, oe->sha1);
1418 1419 1420 1421 1422 1423 1424
		p = x;
	} else {
		if (get_sha1_hex(p, sha1))
			die("Invalid SHA1: %s", command_buf.buf);
		oe = find_object(sha1);
		p += 40;
	}
1425 1426 1427 1428 1429 1430 1431 1432 1433
	if (*p++ != ' ')
		die("Missing space after SHA1: %s", command_buf.buf);

	p_uq = unquote_c_style(p, &endp);
	if (p_uq) {
		if (*endp)
			die("Garbage after path in: %s", command_buf.buf);
		p = p_uq;
	}
1434

1435 1436
	if (oe) {
		if (oe->type != OBJ_BLOB)
1437 1438
			die("Not a blob (actually a %s): %s",
				command_buf.buf, type_names[oe->type]);
1439 1440
	} else {
		if (sha1_object_info(sha1, type, NULL))
1441
			die("Blob not found: %s", command_buf.buf);
1442
		if (strcmp(blob_type, type))
1443 1444
			die("Not a blob (actually a %s): %s",
				command_buf.buf, type);
1445
	}
1446

1447 1448 1449 1450
	tree_content_set(&b->branch_tree, p, sha1, S_IFREG | mode);

	if (p_uq)
		free(p_uq);
1451
}
1452

1453 1454
static void file_change_d(struct branch *b)
{
1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467
	const char *p = command_buf.buf + 2;
	char *p_uq;
	const char *endp;

	p_uq = unquote_c_style(p, &endp);
	if (p_uq) {
		if (*endp)
			die("Garbage after path in: %s", command_buf.buf);
		p = p_uq;
	}
	tree_content_remove(&b->branch_tree, p);
	if (p_uq)
		free(p_uq);
1468 1469
}

1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493
static void cmd_from(struct branch *b)
{
	const char *from, *endp;
	char *str_uq;
	struct branch *s;

	if (strncmp("from ", command_buf.buf, 5))
		return;

	if (b->last_commit)
		die("Can't reinitailize branch %s", b->name);

	from = strchr(command_buf.buf, ' ') + 1;
	str_uq = unquote_c_style(from, &endp);
	if (str_uq) {
		if (*endp)
			die("Garbage after string in: %s", command_buf.buf);
		from = str_uq;
	}

	s = lookup_branch(from);
	if (b == s)
		die("Can't create a branch from itself: %s", b->name);
	else if (s) {
1494
		unsigned char *t = s->branch_tree.versions[1].sha1;
1495
		hashcpy(b->sha1, s->sha1);
1496 1497
		hashcpy(b->branch_tree.versions[0].sha1, t);
		hashcpy(b->branch_tree.versions[1].sha1, t);
1498
	} else if (*from == ':') {
1499
		uintmax_t idnum = strtoumax(from + 1, NULL, 10);
1500 1501 1502 1503
		struct object_entry *oe = find_mark(idnum);
		unsigned long size;
		char *buf;
		if (oe->type != OBJ_COMMIT)
1504
			die("Mark :%ju not a commit", idnum);
1505
		hashcpy(b->sha1, oe->sha1);
1506
		buf = gfi_unpack_entry(oe, &size);
1507 1508 1509
		if (!buf || size < 46)
			die("Not a valid commit: %s", from);
		if (memcmp("tree ", buf, 5)
1510
			|| get_sha1_hex(buf + 5, b->branch_tree.versions[1].sha1))
1511 1512
			die("The commit %s is corrupt", sha1_to_hex(b->sha1));
		free(buf);
1513 1514
		hashcpy(b->branch_tree.versions[0].sha1,
			b->branch_tree.versions[1].sha1);
1515
	} else if (!get_sha1(from, b->sha1)) {
1516 1517 1518 1519
		if (is_null_sha1(b->sha1)) {
			hashclr(b->branch_tree.versions[0].sha1);
			hashclr(b->branch_tree.versions[1].sha1);
		} else {
1520 1521 1522 1523 1524 1525 1526 1527
			unsigned long size;
			char *buf;

			buf = read_object_with_reference(b->sha1,
				type_names[OBJ_COMMIT], &size, b->sha1);
			if (!buf || size < 46)
				die("Not a valid commit: %s", from);
			if (memcmp("tree ", buf, 5)
1528
				|| get_sha1_hex(buf + 5, b->branch_tree.versions[1].sha1))
1529 1530
				die("The commit %s is corrupt", sha1_to_hex(b->sha1));
			free(buf);
1531 1532
			hashcpy(b->branch_tree.versions[0].sha1,
				b->branch_tree.versions[1].sha1);
1533 1534 1535 1536 1537 1538 1539
		}
	} else
		die("Invalid ref name or SHA1 expression: %s", from);

	read_next_command();
}

1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561
static struct hash_list* cmd_merge(unsigned int *count)
{
	struct hash_list *list = NULL, *n, *e;
	const char *from, *endp;
	char *str_uq;
	struct branch *s;

	*count = 0;
	while (!strncmp("merge ", command_buf.buf, 6)) {
		from = strchr(command_buf.buf, ' ') + 1;
		str_uq = unquote_c_style(from, &endp);
		if (str_uq) {
			if (*endp)
				die("Garbage after string in: %s", command_buf.buf);
			from = str_uq;
		}

		n = xmalloc(sizeof(*n));
		s = lookup_branch(from);
		if (s)
			hashcpy(n->sha1, s->sha1);
		else if (*from == ':') {
1562
			uintmax_t idnum = strtoumax(from + 1, NULL, 10);
1563 1564
			struct object_entry *oe = find_mark(idnum);
			if (oe->type != OBJ_COMMIT)
1565
				die("Mark :%ju not a commit", idnum);
1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581
			hashcpy(n->sha1, oe->sha1);
		} else if (get_sha1(from, n->sha1))
			die("Invalid ref name or SHA1 expression: %s", from);

		n->next = NULL;
		if (list)
			e->next = n;
		else
			list = n;
		e = n;
		*count++;
		read_next_command();
	}
	return list;
}

1582
static void cmd_new_commit()
1583
{
1584 1585 1586 1587 1588 1589 1590 1591
	struct branch *b;
	void *msg;
	size_t msglen;
	char *str_uq;
	const char *endp;
	char *sp;
	char *author = NULL;
	char *committer = NULL;
1592 1593
	struct hash_list *merge_list = NULL;
	unsigned int merge_count;
1594 1595 1596 1597 1598 1599 1600 1601 1602 1603

	/* Obtain the branch name from the rest of our command */
	sp = strchr(command_buf.buf, ' ') + 1;
	str_uq = unquote_c_style(sp, &endp);
	if (str_uq) {
		if (*endp)
			die("Garbage after ref in: %s", command_buf.buf);
		sp = str_uq;
	}
	b = lookup_branch(sp);
1604
	if (!b)
1605
		b = new_branch(sp);
1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621
	if (str_uq)
		free(str_uq);

	read_next_command();
	cmd_mark();
	if (!strncmp("author ", command_buf.buf, 7)) {
		author = strdup(command_buf.buf);
		read_next_command();
	}
	if (!strncmp("committer ", command_buf.buf, 10)) {
		committer = strdup(command_buf.buf);
		read_next_command();
	}
	if (!committer)
		die("Expected committer but didn't get one");
	msg = cmd_data(&msglen);
1622 1623
	read_next_command();
	cmd_from(b);
1624
	merge_list = cmd_merge(&merge_count);
1625 1626

	/* ensure the branch is active/loaded */
1627
	if (!b->branch_tree.tree || !max_active_branches) {
1628 1629 1630
		unload_one_branch();
		load_branch(b);
	}
1631

1632 1633
	/* file_change* */
	for (;;) {
1634
		if (1 == command_buf.len)
1635
			break;
1636
		else if (!strncmp("M ", command_buf.buf, 2))
1637
			file_change_m(b);
1638
		else if (!strncmp("D ", command_buf.buf, 2))
1639 1640
			file_change_d(b);
		else
1641
			die("Unsupported file_change: %s", command_buf.buf);
1642
		read_next_command();
1643 1644
	}

1645
	/* build the tree and the commit */
1646
	store_tree(&b->branch_tree);
1647 1648
	hashcpy(b->branch_tree.versions[0].sha1,
		b->branch_tree.versions[1].sha1);
1649
	size_dbuf(&new_data, 97 + msglen
1650
		+ merge_count * 49
1651 1652 1653
		+ (author
			? strlen(author) + strlen(committer)
			: 2 * strlen(committer)));
1654
	sp = new_data.buffer;
1655 1656
	sp += sprintf(sp, "tree %s\n",
		sha1_to_hex(b->branch_tree.versions[1].sha1));
1657
	if (!is_null_sha1(b->sha1))
1658
		sp += sprintf(sp, "parent %s\n", sha1_to_hex(b->sha1));
1659 1660 1661 1662 1663 1664
	while (merge_list) {
		struct hash_list *next = merge_list->next;
		sp += sprintf(sp, "parent %s\n", sha1_to_hex(merge_list->sha1));
		free(merge_list);
		merge_list = next;
	}
1665 1666 1667 1668 1669 1670 1671 1672 1673 1674 1675 1676
	if (author)
		sp += sprintf(sp, "%s\n", author);
	else
		sp += sprintf(sp, "author %s\n", committer + 10);
	sp += sprintf(sp, "%s\n\n", committer);
	memcpy(sp, msg, msglen);
	sp += msglen;
	if (author)
		free(author);
	free(committer);
	free(msg);

1677 1678 1679
	store_object(OBJ_COMMIT,
		new_data.buffer, sp - (char*)new_data.buffer,
		NULL, b->sha1, next_mark);
1680
	b->last_commit = object_count_by_type[OBJ_COMMIT];
1681 1682 1683 1684 1685 1686 1687 1688 1689 1690

	if (branch_log) {
		int need_dq = quote_c_style(b->name, NULL, NULL, 0);
		fprintf(branch_log, "commit ");
		if (need_dq) {
			fputc('"', branch_log);
			quote_c_style(b->name, NULL, branch_log, 0);
			fputc('"', branch_log);
		} else
			fprintf(branch_log, "%s", b->name);
1691
		fprintf(branch_log," :%ju %s\n",next_mark,sha1_to_hex(b->sha1));
1692
	}
1693 1694
}

1695 1696 1697 1698 1699 1700 1701 1702 1703 1704 1705
static void cmd_new_tag()
{
	char *str_uq;
	const char *endp;
	char *sp;
	const char *from;
	char *tagger;
	struct branch *s;
	void *msg;
	size_t msglen;
	struct tag *t;
1706
	uintmax_t from_mark = 0;
1707 1708 1709 1710 1711 1712 1713 1714 1715 1716 1717 1718 1719 1720 1721 1722 1723 1724 1725 1726 1727 1728 1729 1730 1731 1732 1733 1734 1735 1736 1737 1738 1739 1740 1741 1742
	unsigned char sha1[20];

	/* Obtain the new tag name from the rest of our command */
	sp = strchr(command_buf.buf, ' ') + 1;
	str_uq = unquote_c_style(sp, &endp);
	if (str_uq) {
		if (*endp)
			die("Garbage after tag name in: %s", command_buf.buf);
		sp = str_uq;
	}
	t = pool_alloc(sizeof(struct tag));
	t->next_tag = NULL;
	t->name = pool_strdup(sp);
	if (last_tag)
		last_tag->next_tag = t;
	else
		first_tag = t;
	last_tag = t;
	if (str_uq)
		free(str_uq);
	read_next_command();

	/* from ... */
	if (strncmp("from ", command_buf.buf, 5))
		die("Expected from command, got %s", command_buf.buf);

	from = strchr(command_buf.buf, ' ') + 1;
	str_uq = unquote_c_style(from, &endp);
	if (str_uq) {
		if (*endp)
			die("Garbage after string in: %s", command_buf.buf);
		from = str_uq;
	}

	s = lookup_branch(from);
	if (s) {
1743
		hashcpy(sha1, s->sha1);
1744
	} else if (*from == ':') {
1745
		from_mark = strtoumax(from + 1, NULL, 10);
1746
		struct object_entry *oe = find_mark(from_mark);
1747
		if (oe->type != OBJ_COMMIT)
1748
			die("Mark :%ju not a commit", from_mark);
1749
		hashcpy(sha1, oe->sha1);
1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765 1766 1767 1768 1769 1770 1771 1772 1773 1774 1775
	} else if (!get_sha1(from, sha1)) {
		unsigned long size;
		char *buf;

		buf = read_object_with_reference(sha1,
			type_names[OBJ_COMMIT], &size, sha1);
		if (!buf || size < 46)
			die("Not a valid commit: %s", from);
		free(buf);
	} else
		die("Invalid ref name or SHA1 expression: %s", from);

	if (str_uq)
		free(str_uq);
	read_next_command();

	/* tagger ... */
	if (strncmp("tagger ", command_buf.buf, 7))
		die("Expected tagger command, got %s", command_buf.buf);
	tagger = strdup(command_buf.buf);

	/* tag payload/message */
	read_next_command();
	msg = cmd_data(&msglen);

	/* build the tag object */
1776 1777
	size_dbuf(&new_data, 67+strlen(t->name)+strlen(tagger)+msglen);
	sp = new_data.buffer;
1778 1779 1780 1781 1782 1783 1784 1785 1786
	sp += sprintf(sp, "object %s\n", sha1_to_hex(sha1));
	sp += sprintf(sp, "type %s\n", type_names[OBJ_COMMIT]);
	sp += sprintf(sp, "tag %s\n", t->name);
	sp += sprintf(sp, "%s\n\n", tagger);
	memcpy(sp, msg, msglen);
	sp += msglen;
	free(tagger);
	free(msg);

1787 1788
	store_object(OBJ_TAG, new_data.buffer, sp - (char*)new_data.buffer,
		NULL, t->sha1, 0);
1789 1790 1791 1792 1793 1794 1795 1796 1797 1798

	if (branch_log) {
		int need_dq = quote_c_style(t->name, NULL, NULL, 0);
		fprintf(branch_log, "tag ");
		if (need_dq) {
			fputc('"', branch_log);
			quote_c_style(t->name, NULL, branch_log, 0);
			fputc('"', branch_log);
		} else
			fprintf(branch_log, "%s", t->name);
1799
		fprintf(branch_log," :%ju %s\n",from_mark,sha1_to_hex(t->sha1));
1800
	}
1801 1802
}

1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825
static void cmd_reset_branch()
{
	struct branch *b;
	char *str_uq;
	const char *endp;
	char *sp;

	/* Obtain the branch name from the rest of our command */
	sp = strchr(command_buf.buf, ' ') + 1;
	str_uq = unquote_c_style(sp, &endp);
	if (str_uq) {
		if (*endp)
			die("Garbage after ref in: %s", command_buf.buf);
		sp = str_uq;
	}
	b = lookup_branch(sp);
	if (b) {
		b->last_commit = 0;
		if (b->branch_tree.tree) {
			release_tree_content_recursive(b->branch_tree.tree);
			b->branch_tree.tree = NULL;
		}
	}
1826 1827
	else
		b = new_branch(sp);
1828 1829
	if (str_uq)
		free(str_uq);
1830 1831
	read_next_command();
	cmd_from(b);
1832 1833
}

1834 1835
static void cmd_checkpoint()
{
1836 1837
	if (object_count)
		checkpoint();
1838 1839 1840
	read_next_command();
}

1841
static const char fast_import_usage[] =
1842
"git-fast-import [--objects=n] [--depth=n] [--active-branches=n] [--export-marks=marks.file] [--branch-log=log]";
1843

1844 1845
int main(int argc, const char **argv)
{
1846
	int i;
1847 1848
	uintmax_t est_obj_cnt = object_entry_alloc;
	uintmax_t duplicate_count;
1849

1850 1851 1852
	setup_ident();
	git_config(git_default_config);

1853 1854 1855 1856 1857 1858
	for (i = 1; i < argc; i++) {
		const char *a = argv[i];

		if (*a != '-' || !strcmp(a, "--"))
			break;
		else if (!strncmp(a, "--objects=", 10))
1859
			est_obj_cnt = strtoumax(a + 10, NULL, 0);
1860
		else if (!strncmp(a, "--max-objects-per-pack=", 23))
1861
			max_objects = strtoumax(a + 23, NULL, 0);
1862
		else if (!strncmp(a, "--max-pack-size=", 16))
1863
			max_packsize = strtoumax(a + 16, NULL, 0) * 1024 * 1024;
1864 1865 1866 1867
		else if (!strncmp(a, "--depth=", 8))
			max_depth = strtoul(a + 8, NULL, 0);
		else if (!strncmp(a, "--active-branches=", 18))
			max_active_branches = strtoul(a + 18, NULL, 0);
1868 1869
		else if (!strncmp(a, "--export-marks=", 15))
			mark_file = a + 15;
1870 1871 1872 1873 1874
		else if (!strncmp(a, "--branch-log=", 13)) {
			branch_log = fopen(a + 13, "w");
			if (!branch_log)
				die("Can't create %s: %s", a + 13, strerror(errno));
		}
1875 1876 1877
		else
			die("unknown option %s", a);
	}
1878
	if (i != argc)
1879 1880
		usage(fast_import_usage);

1881
	alloc_objects(est_obj_cnt);
1882
	strbuf_init(&command_buf);
1883 1884 1885 1886

	atom_table = xcalloc(atom_table_sz, sizeof(struct atom_str*));
	branch_table = xcalloc(branch_table_sz, sizeof(struct branch*));
	avail_tree_table = xcalloc(avail_tree_table_sz, sizeof(struct avail_tree_content*));
1887
	marks = pool_calloc(1, sizeof(struct mark_set));
1888

1889
	start_packfile();
1890
	for (;;) {
1891 1892
		read_next_command();
		if (command_buf.eof)
1893
			break;
1894 1895 1896 1897
		else if (!strcmp("blob", command_buf.buf))
			cmd_new_blob();
		else if (!strncmp("commit ", command_buf.buf, 7))
			cmd_new_commit();
1898 1899
		else if (!strncmp("tag ", command_buf.buf, 4))
			cmd_new_tag();
1900 1901
		else if (!strncmp("reset ", command_buf.buf, 6))
			cmd_reset_branch();
1902 1903
		else if (!strcmp("checkpoint", command_buf.buf))
			cmd_checkpoint();
1904 1905
		else
			die("Unsupported command: %s", command_buf.buf);
1906
	}
1907
	end_packfile();
1908

1909
	dump_branches();
1910
	dump_tags();
1911
	unkeep_all_packs();
1912
	dump_marks();
1913 1914
	if (branch_log)
		fclose(branch_log);
1915

1916
	duplicate_count = 0;
1917 1918 1919
	for (i = 0; i < ARRAY_SIZE(duplicate_count_by_type); i++)
		duplicate_count += duplicate_count_by_type[i];

1920
	fprintf(stderr, "%s statistics:\n", argv[0]);
1921
	fprintf(stderr, "---------------------------------------------------------------------\n");
1922 1923 1924 1925 1926 1927
	fprintf(stderr, "Alloc'd objects: %10ju (%10ju overflow  )\n", alloc_count, alloc_count - est_obj_cnt);
	fprintf(stderr, "Total objects:   %10ju (%10ju duplicates                  )\n", object_count, duplicate_count);
	fprintf(stderr, "      blobs  :   %10ju (%10ju duplicates %10ju deltas)\n", object_count_by_type[OBJ_BLOB], duplicate_count_by_type[OBJ_BLOB], delta_count_by_type[OBJ_BLOB]);
	fprintf(stderr, "      trees  :   %10ju (%10ju duplicates %10ju deltas)\n", object_count_by_type[OBJ_TREE], duplicate_count_by_type[OBJ_TREE], delta_count_by_type[OBJ_TREE]);
	fprintf(stderr, "      commits:   %10ju (%10ju duplicates %10ju deltas)\n", object_count_by_type[OBJ_COMMIT], duplicate_count_by_type[OBJ_COMMIT], delta_count_by_type[OBJ_COMMIT]);
	fprintf(stderr, "      tags   :   %10ju (%10ju duplicates %10ju deltas)\n", object_count_by_type[OBJ_TAG], duplicate_count_by_type[OBJ_TAG], delta_count_by_type[OBJ_TAG]);
1928
	fprintf(stderr, "Total branches:  %10lu (%10lu loads     )\n", branch_count, branch_load_count);
1929
	fprintf(stderr, "      marks:     %10ju (%10ju unique    )\n", (((uintmax_t)1) << marks->shift) * 1024, marks_set_count);
1930
	fprintf(stderr, "      atoms:     %10u\n", atom_cnt);
1931
	fprintf(stderr, "Memory total:    %10ju KiB\n", (total_allocd + alloc_count*sizeof(struct object_entry))/1024);
1932
	fprintf(stderr, "       pools:    %10lu KiB\n", total_allocd/1024);
1933
	fprintf(stderr, "     objects:    %10ju KiB\n", (alloc_count*sizeof(struct object_entry))/1024);
1934
	fprintf(stderr, "---------------------------------------------------------------------\n");
1935 1936
	pack_report();
	fprintf(stderr, "---------------------------------------------------------------------\n");
1937
	fprintf(stderr, "\n");
1938 1939 1940

	return 0;
}