Files
git/odb/streaming.c
Patrick Steinhardt d80523bbf9 odb: stop including "odb/source.h"
The "odb.h" header currently includes the "odb/source.h" file. This is
somewhat roundabout though: most callers shouldn't have to care about
the `struct odb_source`, but should rather use the ODB-level functions.
Furthermore, it means that a couple of definitions have to live on the
source level even though they should be part of the generic interface.

Reverse the relation between "odb/source.h" and "odb.h" and move the
enums and typedefs that relate to the generic interfaces back into
"odb.h". Add the necessary includes to all files that rely on the
transitive include.

Suggested-by: Justin Tobler <jltobler@gmail.com>
Signed-off-by: Patrick Steinhardt <ps@pks.im>
Signed-off-by: Junio C Hamano <gitster@pobox.com>
2026-03-10 10:13:47 -07:00

290 lines
6.9 KiB
C

/*
* Copyright (c) 2011, Google Inc.
*/
#include "git-compat-util.h"
#include "convert.h"
#include "environment.h"
#include "repository.h"
#include "odb.h"
#include "odb/source.h"
#include "odb/streaming.h"
#include "replace-object.h"
#define FILTER_BUFFER (1024*16)
/*****************************************************************
*
* Filtered stream
*
*****************************************************************/
struct odb_filtered_read_stream {
struct odb_read_stream base;
struct odb_read_stream *upstream;
struct stream_filter *filter;
char ibuf[FILTER_BUFFER];
char obuf[FILTER_BUFFER];
int i_end, i_ptr;
int o_end, o_ptr;
int input_finished;
};
static int close_istream_filtered(struct odb_read_stream *_fs)
{
struct odb_filtered_read_stream *fs = (struct odb_filtered_read_stream *)_fs;
free_stream_filter(fs->filter);
return odb_read_stream_close(fs->upstream);
}
static ssize_t read_istream_filtered(struct odb_read_stream *_fs, char *buf,
size_t sz)
{
struct odb_filtered_read_stream *fs = (struct odb_filtered_read_stream *)_fs;
size_t filled = 0;
while (sz) {
/* do we already have filtered output? */
if (fs->o_ptr < fs->o_end) {
size_t to_move = fs->o_end - fs->o_ptr;
if (sz < to_move)
to_move = sz;
memcpy(buf + filled, fs->obuf + fs->o_ptr, to_move);
fs->o_ptr += to_move;
sz -= to_move;
filled += to_move;
continue;
}
fs->o_end = fs->o_ptr = 0;
/* do we have anything to feed the filter with? */
if (fs->i_ptr < fs->i_end) {
size_t to_feed = fs->i_end - fs->i_ptr;
size_t to_receive = FILTER_BUFFER;
if (stream_filter(fs->filter,
fs->ibuf + fs->i_ptr, &to_feed,
fs->obuf, &to_receive))
return -1;
fs->i_ptr = fs->i_end - to_feed;
fs->o_end = FILTER_BUFFER - to_receive;
continue;
}
/* tell the filter to drain upon no more input */
if (fs->input_finished) {
size_t to_receive = FILTER_BUFFER;
if (stream_filter(fs->filter,
NULL, NULL,
fs->obuf, &to_receive))
return -1;
fs->o_end = FILTER_BUFFER - to_receive;
if (!fs->o_end)
break;
continue;
}
fs->i_end = fs->i_ptr = 0;
/* refill the input from the upstream */
if (!fs->input_finished) {
fs->i_end = odb_read_stream_read(fs->upstream, fs->ibuf, FILTER_BUFFER);
if (fs->i_end < 0)
return -1;
if (fs->i_end)
continue;
}
fs->input_finished = 1;
}
return filled;
}
static struct odb_read_stream *attach_stream_filter(struct odb_read_stream *st,
struct stream_filter *filter)
{
struct odb_filtered_read_stream *fs;
CALLOC_ARRAY(fs, 1);
fs->base.close = close_istream_filtered;
fs->base.read = read_istream_filtered;
fs->upstream = st;
fs->filter = filter;
fs->base.size = -1; /* unknown */
fs->base.type = st->type;
return &fs->base;
}
/*****************************************************************
*
* In-core stream
*
*****************************************************************/
struct odb_incore_read_stream {
struct odb_read_stream base;
char *buf; /* from odb_read_object_info_extended() */
unsigned long read_ptr;
};
static int close_istream_incore(struct odb_read_stream *_st)
{
struct odb_incore_read_stream *st = (struct odb_incore_read_stream *)_st;
free(st->buf);
return 0;
}
static ssize_t read_istream_incore(struct odb_read_stream *_st, char *buf, size_t sz)
{
struct odb_incore_read_stream *st = (struct odb_incore_read_stream *)_st;
size_t read_size = sz;
size_t remainder = st->base.size - st->read_ptr;
if (remainder <= read_size)
read_size = remainder;
if (read_size) {
memcpy(buf, st->buf + st->read_ptr, read_size);
st->read_ptr += read_size;
}
return read_size;
}
static int open_istream_incore(struct odb_read_stream **out,
struct object_database *odb,
const struct object_id *oid)
{
struct object_info oi = OBJECT_INFO_INIT;
struct odb_incore_read_stream stream = {
.base.close = close_istream_incore,
.base.read = read_istream_incore,
};
struct odb_incore_read_stream *st;
int ret;
oi.typep = &stream.base.type;
oi.sizep = &stream.base.size;
oi.contentp = (void **)&stream.buf;
ret = odb_read_object_info_extended(odb, oid, &oi,
OBJECT_INFO_DIE_IF_CORRUPT);
if (ret)
return ret;
CALLOC_ARRAY(st, 1);
*st = stream;
*out = &st->base;
return 0;
}
/*****************************************************************************
* static helpers variables and functions for users of streaming interface
*****************************************************************************/
static int istream_source(struct odb_read_stream **out,
struct object_database *odb,
const struct object_id *oid)
{
struct odb_source *source;
odb_prepare_alternates(odb);
for (source = odb->sources; source; source = source->next)
if (!odb_source_read_object_stream(out, source, oid))
return 0;
return open_istream_incore(out, odb, oid);
}
/****************************************************************
* Users of streaming interface
****************************************************************/
int odb_read_stream_close(struct odb_read_stream *st)
{
int r = st->close(st);
free(st);
return r;
}
ssize_t odb_read_stream_read(struct odb_read_stream *st, void *buf, size_t sz)
{
return st->read(st, buf, sz);
}
struct odb_read_stream *odb_read_stream_open(struct object_database *odb,
const struct object_id *oid,
struct stream_filter *filter)
{
struct odb_read_stream *st;
const struct object_id *real = lookup_replace_object(odb->repo, oid);
int ret = istream_source(&st, odb, real);
if (ret)
return NULL;
if (filter) {
/* Add "&& !is_null_stream_filter(filter)" for performance */
struct odb_read_stream *nst = attach_stream_filter(st, filter);
if (!nst) {
odb_read_stream_close(st);
return NULL;
}
st = nst;
}
return st;
}
int odb_stream_blob_to_fd(struct object_database *odb,
int fd,
const struct object_id *oid,
struct stream_filter *filter,
int can_seek)
{
struct odb_read_stream *st;
ssize_t kept = 0;
int result = -1;
st = odb_read_stream_open(odb, oid, filter);
if (!st) {
if (filter)
free_stream_filter(filter);
return result;
}
if (st->type != OBJ_BLOB)
goto close_and_exit;
for (;;) {
char buf[1024 * 16];
ssize_t wrote, holeto;
ssize_t readlen = odb_read_stream_read(st, buf, sizeof(buf));
if (readlen < 0)
goto close_and_exit;
if (!readlen)
break;
if (can_seek && sizeof(buf) == readlen) {
for (holeto = 0; holeto < readlen; holeto++)
if (buf[holeto])
break;
if (readlen == holeto) {
kept += holeto;
continue;
}
}
if (kept && lseek(fd, kept, SEEK_CUR) == (off_t) -1)
goto close_and_exit;
else
kept = 0;
wrote = write_in_full(fd, buf, readlen);
if (wrote < 0)
goto close_and_exit;
}
if (kept && (lseek(fd, kept - 1, SEEK_CUR) == (off_t) -1 ||
xwrite(fd, "", 1) != 1))
goto close_and_exit;
result = 0;
close_and_exit:
odb_read_stream_close(st);
return result;
}