#include <utime.h>
#include <stdio.h>
#include <errno.h>
-#include <zlib.h>
#include <apti18n.h>
/*}}}*/
/** \brief RredMethod - ed-style incremential patch method {{{
char type;
};
#define IOV_COUNT 1024 /* Don't really want IOV_MAX since it can be arbitrarily large */
+static ssize_t retry_writev(int fd, const struct iovec *iov, int iovcnt) {
+ ssize_t Res;
+ errno = 0;
+ ssize_t i = 0;
+ do {
+ Res = writev(fd, iov + i, iovcnt);
+ if (Res < 0 && errno == EINTR)
+ continue;
+ if (Res < 0)
+ return _error->Errno("writev",_("Write error"));
+ iovcnt -= Res;
+ i += Res;
+ } while (Res > 0 && iovcnt > 0);
+ return i;
+}
#endif
/*}}}*/
RredMethod::State RredMethod::patchMMap(FileFd &Patch, FileFd &From, /*{{{*/
MMap ed_cmds(Patch, MMap::ReadOnly);
MMap in_file(From, MMap::ReadOnly);
- if (ed_cmds.Size() == 0 || in_file.Size() == 0)
+ unsigned long long const ed_size = ed_cmds.Size();
+ unsigned long long const in_size = in_file.Size();
+ if (ed_size == 0 || in_size == 0)
return MMAP_FAILED;
EdCommand* commands = 0;
const char* begin = (char*) ed_cmds.Data();
const char* end = begin;
- const char* ed_end = (char*) ed_cmds.Data() + ed_cmds.Size();
+ const char* ed_end = (char*) ed_cmds.Data() + ed_size;
const char* input = (char*) in_file.Data();
- const char* input_end = (char*) in_file.Data() + in_file.Size();
+ const char* input_end = (char*) in_file.Data() + in_size;
size_t i;
}
if(command_count == command_alloc) {
command_alloc = (command_alloc + 64) * 3 / 2;
- commands = (EdCommand*) realloc(commands, command_alloc * sizeof(EdCommand));
+ EdCommand* newCommands = (EdCommand*) realloc(commands, command_alloc * sizeof(EdCommand));
+ if (newCommands == NULL) {
+ free(commands);
+ return MMAP_FAILED;
+ }
+ commands = newCommands;
}
commands[command_count++] = cmd;
}
hash->Add((const unsigned char*) begin, input - begin);
if(++iov_size == IOV_COUNT) {
- writev(out_file.Fd(), iov, IOV_COUNT);
+ retry_writev(out_file.Fd(), iov, IOV_COUNT);
iov_size = 0;
}
}
iov[iov_size].iov_len);
if(++iov_size == IOV_COUNT) {
- writev(out_file.Fd(), iov, IOV_COUNT);
+ retry_writev(out_file.Fd(), iov, IOV_COUNT);
iov_size = 0;
}
}
}
if(iov_size) {
- writev(out_file.Fd(), iov, iov_size);
+ retry_writev(out_file.Fd(), iov, iov_size);
iov_size = 0;
}
for(i = 0; i < iov_size; i += IOV_COUNT) {
if(iov_size - i < IOV_COUNT)
- writev(out_file.Fd(), iov + i, iov_size - i);
+ retry_writev(out_file.Fd(), iov + i, iov_size - i);
else
- writev(out_file.Fd(), iov + i, IOV_COUNT);
+ retry_writev(out_file.Fd(), iov + i, IOV_COUNT);
}
delete [] iov;