460 lines
13 KiB
C
460 lines
13 KiB
C
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#include "base.h"
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#include "chunk.h"
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#include "log.h"
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/******************
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* chunkfile *
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******************/
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static chunkfile *chunkfile_new(GString *name, int fd, gboolean is_temp) {
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chunkfile *cf = g_slice_new(chunkfile);
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cf->refcount = 1;
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if (name) {
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cf->name = g_string_new_len(GSTR_LEN(name));
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} else {
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cf->name = NULL;
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}
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cf->fd = fd;
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cf->is_temp = is_temp;
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return cf;
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}
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static void chunkfile_acquire(chunkfile *cf) {
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assert(cf->refcount > 0);
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cf->refcount++;
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}
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static void chunkfile_release(chunkfile *cf) {
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if (!cf) return;
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assert(cf->refcount > 0);
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if (!(--cf->refcount)) {
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if (-1 != cf->fd) close(cf->fd);
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cf->fd = -1;
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if (cf->is_temp) unlink(cf->name->str);
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cf->is_temp = FALSE;
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if (cf->name) g_string_free(cf->name, TRUE);
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cf->name = NULL;
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g_slice_free(chunkfile, cf);
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}
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}
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/* open the file cf->name if it is not already opened for reading
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* may return HANDLER_GO_ON, HANDLER_ERROR, HANDLER_WAIT_FOR_FD
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*/
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handler_t chunkfile_open(server *srv, connection *con, chunkfile *cf) {
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if (!cf) return HANDLER_ERROR;
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if (-1 != cf->fd) return HANDLER_GO_ON;
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if (!cf->name) {
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CON_ERROR(srv, con, "%s", "Missing filename for FILE_CHUNK");
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return HANDLER_ERROR;
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}
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if (-1 == (cf->fd = open(cf->name->str, O_RDONLY))) {
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if (EMFILE == errno) return HANDLER_WAIT_FOR_FD;
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CON_ERROR(srv, con, "Couldn't open file '%s': %s", GSTR_SAFE_STR(cf->name), g_strerror(errno));
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return HANDLER_ERROR;
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}
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#ifdef FD_CLOEXEC
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fcntl(cf->fd, F_SETFD, FD_CLOEXEC);
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#endif
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#ifdef HAVE_POSIX_FADVISE
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/* tell the kernel that we want to stream the file */
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if (-1 == posix_fadvise(cf->fd, 0, 0, POSIX_FADV_SEQUENTIAL)) {
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if (ENOSYS != errno) {
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CON_ERROR(srv, con, "posix_fadvise failed for '%s': %s (%i)", GSTR_SAFE_STR(cf->name), g_strerror(errno), cf->fd);
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}
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}
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#endif
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return HANDLER_GO_ON;
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}
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/******************
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* chunk iterator *
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******************/
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/* must be powers of 2 */
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#define MAX_MMAP_CHUNK (2*1024*1024)
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#define MMAP_CHUNK_ALIGN (4*1024)
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/* get the data from a chunk; easy in case of a MEM_CHUNK,
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* but needs to do io in case of FILE_CHUNK; it tries mmap and
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* falls back to read(...)
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* the data is _not_ marked as "done"
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* may return HANDLER_GO_ON, HANDLER_ERROR, HANDLER_WAIT_FOR_FD
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*/
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handler_t chunkiter_read(server *srv, connection *con, chunkiter iter, off_t start, off_t length, char **data_start, off_t *data_len) {
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chunk *c = chunkiter_chunk(iter);
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off_t we_want, we_have, our_start, our_offset;
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handler_t res = HANDLER_GO_ON;
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int mmap_errno = 0;
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if (!c) return HANDLER_ERROR;
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if (!data_start || !data_len) return HANDLER_ERROR;
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we_have = chunk_length(c) - start;
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if (length > we_have) length = we_have;
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if (length <= 0) return HANDLER_ERROR;
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switch (c->type) {
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case UNUSED_CHUNK: return HANDLER_ERROR;
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case MEM_CHUNK:
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*data_start = c->mem->str + c->offset + start;
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*data_len = length;
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break;
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case FILE_CHUNK:
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if (HANDLER_GO_ON != (res = chunkfile_open(srv, con, c->file.file))) return res;
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if (length > MAX_MMAP_CHUNK) length = MAX_MMAP_CHUNK;
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if ( !(c->file.mmap.data != MAP_FAILED || c->mem) /* no data present */
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|| !( /* or in the wrong range */
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(start + c->offset + c->file.start >= c->file.mmap.offset)
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&& (start + c->offset + c->file.start + length <= c->file.mmap.offset + (ssize_t) c->file.mmap.length)) ) {
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/* then find new range */
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our_start = start + c->offset + c->file.start; /* "start" maps to this offset in the file */
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our_offset = our_start % MMAP_CHUNK_ALIGN; /* offset for "start" in new mmap block */
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our_start -= our_offset; /* file offset for mmap */
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we_want = length + MAX_MMAP_CHUNK;
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if (we_want > we_have) we_want = we_have;
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we_want += our_offset;
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if (MAP_FAILED != c->file.mmap.data) {
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munmap(c->file.mmap.data, c->file.mmap.length);
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c->file.mmap.data = MAP_FAILED;
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}
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c->file.mmap.offset = our_start;
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c->file.mmap.length = we_want;
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if (!c->mem) { /* mmap did not fail till now */
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c->file.mmap.data = mmap(0, we_want, PROT_READ, MAP_SHARED, c->file.file->fd, our_start);
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mmap_errno = errno;
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}
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if (MAP_FAILED == c->file.mmap.data) {
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/* fallback to read(...) */
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if (!c->mem) {
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c->mem = g_string_sized_new(we_want);
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} else {
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g_string_set_size(c->mem, we_want);
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}
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if (-1 == lseek(c->file.file->fd, our_start, SEEK_SET)) {
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/* prefer the error of the first syscall */
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if (0 != mmap_errno) {
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CON_ERROR(srv, con, "mmap failed for '%s' (fd = %i): %s",
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GSTR_SAFE_STR(c->file.file->name), c->file.file->fd,
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g_strerror(mmap_errno));
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} else {
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CON_ERROR(srv, con, "lseek failed for '%s' (fd = %i): %s",
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GSTR_SAFE_STR(c->file.file->name), c->file.file->fd,
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g_strerror(errno));
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}
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g_string_free(c->mem, TRUE);
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c->mem = NULL;
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return HANDLER_ERROR;
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}
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read_chunk:
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if (-1 == (we_have = read(c->file.file->fd, c->mem->str, we_want))) {
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if (EINTR == errno) goto read_chunk;
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/* prefer the error of the first syscall */
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if (0 != mmap_errno) {
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CON_ERROR(srv, con, "mmap failed for '%s' (fd = %i): %s",
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GSTR_SAFE_STR(c->file.file->name), c->file.file->fd,
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g_strerror(mmap_errno));
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} else {
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CON_ERROR(srv, con, "read failed for '%s' (fd = %i): %s",
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GSTR_SAFE_STR(c->file.file->name), c->file.file->fd,
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g_strerror(errno));
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}
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g_string_free(c->mem, TRUE);
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c->mem = NULL;
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return HANDLER_ERROR;
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} else if (we_have != we_want) {
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/* may return less than requested bytes due to signals */
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/* CON_TRACE(srv, con, "read return unexpected number of bytes"); */
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we_want = we_have;
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if (length > we_have) length = we_have;
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c->file.mmap.length = we_want;
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g_string_set_size(c->mem, we_want);
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}
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} else {
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#ifdef HAVE_MADVISE
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/* don't advise files < 64Kb */
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if (c->file.mmap.length > (64*1024) &&
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0 != madvise(c->file.mmap.data, c->file.mmap.length, MADV_WILLNEED)) {
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CON_ERROR(srv, con, "madvise failed for '%s' (fd = %i): %s",
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GSTR_SAFE_STR(c->file.file->name), c->file.file->fd,
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g_strerror(errno));
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}
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#endif
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}
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}
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*data_start = (c->mem ? c->mem->str : c->file.mmap.data) + start + c->offset + c->file.start - c->file.mmap.offset;
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*data_len = length;
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break;
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}
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return HANDLER_GO_ON;
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}
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/******************
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* chunk *
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******************/
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static chunk* chunk_new() {
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chunk *c = g_slice_new0(chunk);
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c->file.mmap.data = MAP_FAILED;
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return c;
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}
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/*
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static void chunk_reset(chunk *c) {
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if (!c) return;
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c->type = UNUSED_CHUNK;
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c->offset = 0;
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if (c->mem) g_string_free(c->mem, TRUE);
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c->mem = NULL;
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if (c->file.file) chunkfile_release(c->file.file);
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c->file.file = NULL;
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c->file.start = 0;
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c->file.length = 0;
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if (MAP_FAILED != c->file.mmap.data) munmap(c->file.mmap.data, c->file.mmap.length);
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c->file.mmap.data = MAP_FAILED;
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c->file.mmap.length = 0;
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c->file.mmap.offset = 0;
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}
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*/
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static void chunk_free(chunk *c) {
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if (!c) return;
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c->type = UNUSED_CHUNK;
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if (c->mem) g_string_free(c->mem, TRUE);
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c->mem = NULL;
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if (c->file.file) chunkfile_release(c->file.file);
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c->file.file = NULL;
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if (c->file.mmap.data != MAP_FAILED) munmap(c->file.mmap.data, c->file.mmap.length);
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c->file.mmap.data = MAP_FAILED;
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g_slice_free(chunk, c);
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}
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/******************
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* chunkqueue *
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******************/
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chunkqueue* chunkqueue_new() {
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chunkqueue *cq = g_slice_new0(chunkqueue);
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cq->queue = g_queue_new();
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return cq;
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}
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static void __chunk_free(gpointer c, gpointer UNUSED_PARAM(userdata)) {
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chunk_free((chunk*) c);
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}
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void chunkqueue_reset(chunkqueue *cq) {
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if (!cq) return;
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cq->is_closed = FALSE;
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cq->bytes_in = cq->bytes_out = cq->length = 0;
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g_queue_foreach(cq->queue, __chunk_free, NULL);
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g_queue_clear(cq->queue);
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}
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void chunkqueue_free(chunkqueue *cq) {
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if (!cq) return;
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g_queue_foreach(cq->queue, __chunk_free, NULL);
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g_queue_free(cq->queue);
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cq->queue = NULL;
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g_slice_free(chunkqueue, cq);
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}
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/* pass ownership of str to chunkqueue, do not free/modify it afterwards
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* you may modify the data (not the length) if you are sure it isn't sent before.
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*/
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void chunkqueue_append_string(chunkqueue *cq, GString *str) {
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chunk *c;
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if (!str->len) return;
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c = chunk_new();
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c->type = MEM_CHUNK;
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c->mem = str;
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g_queue_push_tail(cq->queue, c);
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cq->length += str->len;
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cq->bytes_in += str->len;
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}
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/* memory gets copied */
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void chunkqueue_append_mem(chunkqueue *cq, void *mem, gssize len) {
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chunk *c;
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if (!len) return;
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c = chunk_new();
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c->type = MEM_CHUNK;
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c->mem = g_string_new_len(mem, len);
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g_queue_push_tail(cq->queue, c);
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cq->length += c->mem->len;
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cq->bytes_in += c->mem->len;
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}
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static void __chunkqueue_append_file(chunkqueue *cq, GString *filename, off_t start, off_t length, int fd, gboolean is_temp) {
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chunk *c = chunk_new();
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c->type = FILE_CHUNK;
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c->file.file = chunkfile_new(filename, fd, is_temp);
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c->file.start = start;
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c->file.length = length;
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g_queue_push_tail(cq->queue, c);
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cq->length += length;
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cq->bytes_in += length;
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}
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/* pass ownership of filename, do not free it */
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void chunkqueue_append_file(chunkqueue *cq, GString *filename, off_t start, off_t length) {
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if (length)
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__chunkqueue_append_file(cq, filename, start, length, -1, FALSE);
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}
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/* if you already opened the file, you can pass the fd here - do not close it */
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void chunkqueue_append_file_fd(chunkqueue *cq, GString *filename, off_t start, off_t length, int fd) {
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if (length)
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__chunkqueue_append_file(cq, filename, start, length, fd, FALSE);
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}
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/* temp files get deleted after usage */
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/* pass ownership of filename, do not free it */
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void chunkqueue_append_tempfile(chunkqueue *cq, GString *filename, off_t start, off_t length) {
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if (length)
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__chunkqueue_append_file(cq, filename, start, length, -1, TRUE);
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}
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/* if you already opened the file, you can pass the fd here - do not close it */
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void chunkqueue_append_tempfile_fd(chunkqueue *cq, GString *filename, off_t start, off_t length, int fd) {
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if (length)
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__chunkqueue_append_file(cq, filename, start, length, fd, TRUE);
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}
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/* steal up to length bytes from in and put them into out, return number of bytes stolen */
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goffset chunkqueue_steal_len(chunkqueue *out, chunkqueue *in, goffset length) {
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chunk *c, *cnew;
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GList* l;
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goffset bytes = 0;
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goffset we_have;
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while ( (NULL != (c = chunkqueue_first_chunk(in))) && length > 0 ) {
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we_have = chunk_length(c);
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if (!we_have) { /* remove empty chunks */
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chunk_free(c);
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g_queue_pop_head(in->queue);
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continue;
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}
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if (we_have <= length) { /* move complete chunk */
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l = g_queue_pop_head_link(in->queue);
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g_queue_push_tail_link(out->queue, l);
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bytes += we_have;
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length -= we_have;
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} else { /* copy first part of a chunk */
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cnew = chunk_new();
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switch (c->type) {
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case UNUSED_CHUNK: /* impossible, has length 0 */
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/* remove "empty" chunks */
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chunk_free(c);
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chunk_free(cnew);
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g_queue_pop_head(in->queue);
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continue;
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case MEM_CHUNK:
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cnew->type = MEM_CHUNK;
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cnew->mem = g_string_new_len(c->mem->str + c->offset, length);
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break;
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case FILE_CHUNK:
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cnew->type = FILE_CHUNK;
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chunkfile_acquire(c->file.file);
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cnew->file.file = c->file.file;
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cnew->file.start = c->file.start + c->offset;
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cnew->file.length = length;
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break;
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}
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c->offset += length;
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bytes += length;
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length = 0;
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g_queue_push_tail(out->queue, cnew);
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}
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}
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in->bytes_out += bytes;
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in->length -= bytes;
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out->bytes_in += bytes;
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out->length += bytes;
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return bytes;
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}
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/* steal all chunks from in and put them into out, return number of bytes stolen */
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goffset chunkqueue_steal_all(chunkqueue *out, chunkqueue *in) {
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/* if in->queue is empty, do nothing */
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if (!in->length) return 0;
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/* if out->queue is empty, just swap in->queue/out->queue */
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if (g_queue_is_empty(out->queue)) {
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GQueue *tmp = in->queue; in->queue = out->queue; out->queue = tmp;
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} else {
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/* link the two "lists", neither of them is empty */
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out->queue->tail->next = in->queue->head;
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in->queue->head->prev = out->queue->tail;
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/* update the queue tail and length */
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out->queue->tail = in->queue->tail;
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out->queue->length += in->queue->length;
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/* reset in->queue) */
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g_queue_init(in->queue);
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}
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/* count bytes in chunkqueues */
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goffset len = in->length;
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in->bytes_out += len;
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in->length = 0;
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out->bytes_in += len;
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out->length += len;
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return len;
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}
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/* steal the first chunk from in and append it to out, return number of bytes stolen */
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goffset chunkqueue_steal_chunk(chunkqueue *out, chunkqueue *in) {
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goffset length;
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GList *l = g_queue_pop_head_link(in->queue);
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if (!l) return 0;
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g_queue_push_tail_link(out->queue, l);
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length = chunk_length((chunk*) l->data);
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in->bytes_out += length;
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in->length -= length;
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out->bytes_in += length;
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out->length += length;
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return length;
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}
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/* skip up to length bytes in a chunkqueue, return number of bytes skipped */
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goffset chunkqueue_skip(chunkqueue *cq, goffset length) {
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chunk *c;
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goffset bytes = 0;
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goffset we_have;
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while ( (NULL != (c = chunkqueue_first_chunk(cq))) && (0 == (we_have = chunk_length(c)) || length > 0) ) {
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if (we_have <= length) {
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/* skip (delete) complete chunk */
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chunk_free(c);
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g_queue_pop_head(cq->queue);
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bytes += we_have;
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length -= we_have;
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} else { /* skip first part of a chunk */
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c->offset += length;
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bytes += length;
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length = 0;
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}
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}
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cq->bytes_out += bytes;
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cq->length -= bytes;
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return bytes;
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}
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goffset chunkqueue_skip_all(chunkqueue *cq) {
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goffset bytes = cq->length;
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g_queue_foreach(cq->queue, __chunk_free, NULL);
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g_queue_clear(cq->queue);
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cq->bytes_out += bytes;
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cq->length = 0;
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return bytes;
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}
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