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-rw-r--r--libraries/pack200/src/unpack200.cpp188
1 files changed, 94 insertions, 94 deletions
diff --git a/libraries/pack200/src/unpack200.cpp b/libraries/pack200/src/unpack200.cpp
index 22b7f3b0..e8826f28 100644
--- a/libraries/pack200/src/unpack200.cpp
+++ b/libraries/pack200/src/unpack200.cpp
@@ -45,118 +45,118 @@
// Callback for fetching data, Unix style.
static int64_t read_input_via_stdio(unpacker *u, void *buf, int64_t minlen, int64_t maxlen)
{
- assert(u->infileptr != nullptr);
- assert(minlen <= maxlen); // don't talk nonsense
- int64_t numread = 0;
- char *bufptr = (char *)buf;
- while (numread < minlen)
- {
- // read available input, up to buf.length or maxlen
- int readlen = (1 << 16);
- if (readlen > (maxlen - numread))
- readlen = (int)(maxlen - numread);
- int nr = 0;
+ assert(u->infileptr != nullptr);
+ assert(minlen <= maxlen); // don't talk nonsense
+ int64_t numread = 0;
+ char *bufptr = (char *)buf;
+ while (numread < minlen)
+ {
+ // read available input, up to buf.length or maxlen
+ int readlen = (1 << 16);
+ if (readlen > (maxlen - numread))
+ readlen = (int)(maxlen - numread);
+ int nr = 0;
- nr = (int)fread(bufptr, 1, readlen, u->infileptr);
- if (nr <= 0)
- {
- if (errno != EINTR)
- break;
- nr = 0;
- }
- numread += nr;
- bufptr += nr;
- assert(numread <= maxlen);
- }
- return numread;
+ nr = (int)fread(bufptr, 1, readlen, u->infileptr);
+ if (nr <= 0)
+ {
+ if (errno != EINTR)
+ break;
+ nr = 0;
+ }
+ numread += nr;
+ bufptr += nr;
+ assert(numread <= maxlen);
+ }
+ return numread;
}
enum
{
- EOF_MAGIC = 0,
- BAD_MAGIC = -1
+ EOF_MAGIC = 0,
+ BAD_MAGIC = -1
};
static int read_magic(unpacker *u, char peek[], int peeklen)
{
- assert(peeklen == 4); // magic numbers are always 4 bytes
- int64_t nr = (u->read_input_fn)(u, peek, peeklen, peeklen);
- if (nr != peeklen)
- {
- return (nr == 0) ? EOF_MAGIC : BAD_MAGIC;
- }
- int magic = 0;
- for (int i = 0; i < peeklen; i++)
- {
- magic <<= 8;
- magic += peek[i] & 0xFF;
- }
- return magic;
+ assert(peeklen == 4); // magic numbers are always 4 bytes
+ int64_t nr = (u->read_input_fn)(u, peek, peeklen, peeklen);
+ if (nr != peeklen)
+ {
+ return (nr == 0) ? EOF_MAGIC : BAD_MAGIC;
+ }
+ int magic = 0;
+ for (int i = 0; i < peeklen; i++)
+ {
+ magic <<= 8;
+ magic += peek[i] & 0xFF;
+ }
+ return magic;
}
void unpack_200(FILE *input, FILE *output)
{
- unpacker u;
- u.init(read_input_via_stdio);
+ unpacker u;
+ u.init(read_input_via_stdio);
- // initialize jar output
- // the output takes ownership of the file handle
- jar jarout;
- jarout.init(&u);
- jarout.jarfp = output;
+ // initialize jar output
+ // the output takes ownership of the file handle
+ jar jarout;
+ jarout.init(&u);
+ jarout.jarfp = output;
- // the input doesn't
- u.infileptr = input;
+ // the input doesn't
+ u.infileptr = input;
- // read the magic!
- char peek[4];
- int magic;
- magic = read_magic(&u, peek, (int)sizeof(peek));
+ // read the magic!
+ char peek[4];
+ int magic;
+ magic = read_magic(&u, peek, (int)sizeof(peek));
- // if it is a gzip encoded file, we need an extra gzip input filter
- if ((magic & GZIP_MAGIC_MASK) == GZIP_MAGIC)
- {
- gunzip *gzin = NEW(gunzip, 1);
- gzin->init(&u);
- // FIXME: why the side effects? WHY?
- u.gzin->start(magic);
- u.start();
- }
- else
- {
- // otherwise, feed the bytes to the unpacker directly
- u.start(peek, sizeof(peek));
- }
+ // if it is a gzip encoded file, we need an extra gzip input filter
+ if ((magic & GZIP_MAGIC_MASK) == GZIP_MAGIC)
+ {
+ gunzip *gzin = NEW(gunzip, 1);
+ gzin->init(&u);
+ // FIXME: why the side effects? WHY?
+ u.gzin->start(magic);
+ u.start();
+ }
+ else
+ {
+ // otherwise, feed the bytes to the unpacker directly
+ u.start(peek, sizeof(peek));
+ }
- // Note: The checks to u.aborting() are necessary to gracefully
- // terminate processing when the first segment throws an error.
- for (;;)
- {
- // Each trip through this loop unpacks one segment
- // and then resets the unpacker.
- for (unpacker::file *filep; (filep = u.get_next_file()) != nullptr;)
- {
- u.write_file_to_jar(filep);
- }
+ // Note: The checks to u.aborting() are necessary to gracefully
+ // terminate processing when the first segment throws an error.
+ for (;;)
+ {
+ // Each trip through this loop unpacks one segment
+ // and then resets the unpacker.
+ for (unpacker::file *filep; (filep = u.get_next_file()) != nullptr;)
+ {
+ u.write_file_to_jar(filep);
+ }
- // Peek ahead for more data.
- magic = read_magic(&u, peek, (int)sizeof(peek));
- if (magic != (int)JAVA_PACKAGE_MAGIC)
- {
- // we do not feel strongly about this kind of thing...
- /*
- if (magic != EOF_MAGIC)
- unpack_abort("garbage after end of pack archive");
- */
- break; // all done
- }
+ // Peek ahead for more data.
+ magic = read_magic(&u, peek, (int)sizeof(peek));
+ if (magic != (int)JAVA_PACKAGE_MAGIC)
+ {
+ // we do not feel strongly about this kind of thing...
+ /*
+ if (magic != EOF_MAGIC)
+ unpack_abort("garbage after end of pack archive");
+ */
+ break; // all done
+ }
- // Release all storage from parsing the old segment.
- u.reset();
- // Restart, beginning with the peek-ahead.
- u.start(peek, sizeof(peek));
- }
- u.finish();
- u.free(); // tidy up malloc blocks
- fclose(input);
+ // Release all storage from parsing the old segment.
+ u.reset();
+ // Restart, beginning with the peek-ahead.
+ u.start(peek, sizeof(peek));
+ }
+ u.finish();
+ u.free(); // tidy up malloc blocks
+ fclose(input);
}