Ruby  2.0.0p594(2014-10-27revision48167)
ext/zlib/zlib.c
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00001 /*
00002  * zlib.c - An interface for zlib.
00003  *
00004  *   Copyright (C) UENO Katsuhiro 2000-2003
00005  *
00006  * $Id: zlib.c 47500 2014-09-10 03:24:33Z usa $
00007  */
00008 
00009 #include <ruby.h>
00010 #include <zlib.h>
00011 #include <time.h>
00012 #include <ruby/io.h>
00013 #include <ruby/thread.h>
00014 
00015 #ifdef HAVE_VALGRIND_MEMCHECK_H
00016 # include <valgrind/memcheck.h>
00017 # ifndef VALGRIND_MAKE_MEM_DEFINED
00018 #  define VALGRIND_MAKE_MEM_DEFINED(p, n) VALGRIND_MAKE_READABLE((p), (n))
00019 # endif
00020 # ifndef VALGRIND_MAKE_MEM_UNDEFINED
00021 #  define VALGRIND_MAKE_MEM_UNDEFINED(p, n) VALGRIND_MAKE_WRITABLE((p), (n))
00022 # endif
00023 #else
00024 # define VALGRIND_MAKE_MEM_DEFINED(p, n) 0
00025 # define VALGRIND_MAKE_MEM_UNDEFINED(p, n) 0
00026 #endif
00027 
00028 #define RUBY_ZLIB_VERSION  "0.6.0"
00029 
00030 
00031 #define OBJ_IS_FREED(val)  (RBASIC(val)->flags == 0)
00032 
00033 #ifndef GZIP_SUPPORT
00034 #define GZIP_SUPPORT  1
00035 #endif
00036 
00037 /* from zutil.h */
00038 #ifndef DEF_MEM_LEVEL
00039 #if MAX_MEM_LEVEL >= 8
00040 #define DEF_MEM_LEVEL  8
00041 #else
00042 #define DEF_MEM_LEVEL  MAX_MEM_LEVEL
00043 #endif
00044 #endif
00045 
00046 #if SIZEOF_LONG > SIZEOF_INT
00047 static inline uInt
00048 max_uint(long n)
00049 {
00050     if (n > UINT_MAX) n = UINT_MAX;
00051     return (uInt)n;
00052 }
00053 #define MAX_UINT(n) max_uint(n)
00054 #else
00055 #define MAX_UINT(n) (uInt)(n)
00056 #endif
00057 
00058 #define sizeof(x) ((int)sizeof(x))
00059 
00060 static ID id_dictionaries;
00061 
00062 /*--------- Prototypes --------*/
00063 
00064 static NORETURN(void raise_zlib_error(int, const char*));
00065 static VALUE rb_zlib_version(VALUE);
00066 static VALUE do_checksum(int, VALUE*, uLong (*)(uLong, const Bytef*, uInt));
00067 static VALUE rb_zlib_adler32(int, VALUE*, VALUE);
00068 static VALUE rb_zlib_crc32(int, VALUE*, VALUE);
00069 static VALUE rb_zlib_crc_table(VALUE);
00070 static voidpf zlib_mem_alloc(voidpf, uInt, uInt);
00071 static void zlib_mem_free(voidpf, voidpf);
00072 static void finalizer_warn(const char*);
00073 
00074 struct zstream;
00075 struct zstream_funcs;
00076 struct zstream_run_args;
00077 static void zstream_init(struct zstream*, const struct zstream_funcs*);
00078 static void zstream_expand_buffer(struct zstream*);
00079 static void zstream_expand_buffer_into(struct zstream*, unsigned long);
00080 static void zstream_append_buffer(struct zstream*, const Bytef*, long);
00081 static VALUE zstream_detach_buffer(struct zstream*);
00082 static VALUE zstream_shift_buffer(struct zstream*, long);
00083 static void zstream_buffer_ungets(struct zstream*, const Bytef*, unsigned long);
00084 static void zstream_buffer_ungetbyte(struct zstream*, int);
00085 static void zstream_append_input(struct zstream*, const Bytef*, long);
00086 static void zstream_discard_input(struct zstream*, long);
00087 static void zstream_reset_input(struct zstream*);
00088 static void zstream_passthrough_input(struct zstream*);
00089 static VALUE zstream_detach_input(struct zstream*);
00090 static void zstream_reset(struct zstream*);
00091 static VALUE zstream_end(struct zstream*);
00092 static void zstream_run(struct zstream*, Bytef*, long, int);
00093 static VALUE zstream_sync(struct zstream*, Bytef*, long);
00094 static void zstream_mark(struct zstream*);
00095 static void zstream_free(struct zstream*);
00096 static VALUE zstream_new(VALUE, const struct zstream_funcs*);
00097 static struct zstream *get_zstream(VALUE);
00098 static void zstream_finalize(struct zstream*);
00099 
00100 static VALUE rb_zstream_end(VALUE);
00101 static VALUE rb_zstream_reset(VALUE);
00102 static VALUE rb_zstream_finish(VALUE);
00103 static VALUE rb_zstream_flush_next_in(VALUE);
00104 static VALUE rb_zstream_flush_next_out(VALUE);
00105 static VALUE rb_zstream_avail_out(VALUE);
00106 static VALUE rb_zstream_set_avail_out(VALUE, VALUE);
00107 static VALUE rb_zstream_avail_in(VALUE);
00108 static VALUE rb_zstream_total_in(VALUE);
00109 static VALUE rb_zstream_total_out(VALUE);
00110 static VALUE rb_zstream_data_type(VALUE);
00111 static VALUE rb_zstream_adler(VALUE);
00112 static VALUE rb_zstream_finished_p(VALUE);
00113 static VALUE rb_zstream_closed_p(VALUE);
00114 
00115 static VALUE rb_deflate_s_allocate(VALUE);
00116 static VALUE rb_deflate_initialize(int, VALUE*, VALUE);
00117 static VALUE rb_deflate_init_copy(VALUE, VALUE);
00118 static VALUE deflate_run(VALUE);
00119 static VALUE rb_deflate_s_deflate(int, VALUE*, VALUE);
00120 static void do_deflate(struct zstream*, VALUE, int);
00121 static VALUE rb_deflate_deflate(int, VALUE*, VALUE);
00122 static VALUE rb_deflate_addstr(VALUE, VALUE);
00123 static VALUE rb_deflate_flush(int, VALUE*, VALUE);
00124 static VALUE rb_deflate_params(VALUE, VALUE, VALUE);
00125 static VALUE rb_deflate_set_dictionary(VALUE, VALUE);
00126 
00127 static VALUE inflate_run(VALUE);
00128 static VALUE rb_inflate_s_allocate(VALUE);
00129 static VALUE rb_inflate_initialize(int, VALUE*, VALUE);
00130 static VALUE rb_inflate_s_inflate(VALUE, VALUE);
00131 static void do_inflate(struct zstream*, VALUE);
00132 static VALUE rb_inflate_inflate(VALUE, VALUE);
00133 static VALUE rb_inflate_addstr(VALUE, VALUE);
00134 static VALUE rb_inflate_sync(VALUE, VALUE);
00135 static VALUE rb_inflate_sync_point_p(VALUE);
00136 static VALUE rb_inflate_set_dictionary(VALUE, VALUE);
00137 
00138 #if GZIP_SUPPORT
00139 struct gzfile;
00140 static void gzfile_mark(struct gzfile*);
00141 static void gzfile_free(struct gzfile*);
00142 static VALUE gzfile_new(VALUE, const struct zstream_funcs*, void (*) _((struct gzfile*)));
00143 static void gzfile_reset(struct gzfile*);
00144 static void gzfile_close(struct gzfile*, int);
00145 static void gzfile_write_raw(struct gzfile*);
00146 static VALUE gzfile_read_raw_partial(VALUE);
00147 static VALUE gzfile_read_raw_rescue(VALUE);
00148 static VALUE gzfile_read_raw(struct gzfile*);
00149 static int gzfile_read_raw_ensure(struct gzfile*, long);
00150 static char *gzfile_read_raw_until_zero(struct gzfile*, long);
00151 static unsigned int gzfile_get16(const unsigned char*);
00152 static unsigned long gzfile_get32(const unsigned char*);
00153 static void gzfile_set32(unsigned long n, unsigned char*);
00154 static void gzfile_make_header(struct gzfile*);
00155 static void gzfile_make_footer(struct gzfile*);
00156 static void gzfile_read_header(struct gzfile*);
00157 static void gzfile_check_footer(struct gzfile*);
00158 static void gzfile_write(struct gzfile*, Bytef*, long);
00159 static long gzfile_read_more(struct gzfile*);
00160 static void gzfile_calc_crc(struct gzfile*, VALUE);
00161 static VALUE gzfile_read(struct gzfile*, long);
00162 static VALUE gzfile_read_all(struct gzfile*);
00163 static void gzfile_ungets(struct gzfile*, const Bytef*, long);
00164 static void gzfile_ungetbyte(struct gzfile*, int);
00165 static VALUE gzfile_writer_end_run(VALUE);
00166 static void gzfile_writer_end(struct gzfile*);
00167 static VALUE gzfile_reader_end_run(VALUE);
00168 static void gzfile_reader_end(struct gzfile*);
00169 static void gzfile_reader_rewind(struct gzfile*);
00170 static VALUE gzfile_reader_get_unused(struct gzfile*);
00171 static struct gzfile *get_gzfile(VALUE);
00172 static VALUE gzfile_ensure_close(VALUE);
00173 static VALUE rb_gzfile_s_wrap(int, VALUE*, VALUE);
00174 static VALUE gzfile_s_open(int, VALUE*, VALUE, const char*);
00175 NORETURN(static void gzfile_raise(struct gzfile *, VALUE, const char *));
00176 static VALUE gzfile_error_inspect(VALUE);
00177 
00178 static VALUE rb_gzfile_to_io(VALUE);
00179 static VALUE rb_gzfile_crc(VALUE);
00180 static VALUE rb_gzfile_mtime(VALUE);
00181 static VALUE rb_gzfile_level(VALUE);
00182 static VALUE rb_gzfile_os_code(VALUE);
00183 static VALUE rb_gzfile_orig_name(VALUE);
00184 static VALUE rb_gzfile_comment(VALUE);
00185 static VALUE rb_gzfile_lineno(VALUE);
00186 static VALUE rb_gzfile_set_lineno(VALUE, VALUE);
00187 static VALUE rb_gzfile_set_mtime(VALUE, VALUE);
00188 static VALUE rb_gzfile_set_orig_name(VALUE, VALUE);
00189 static VALUE rb_gzfile_set_comment(VALUE, VALUE);
00190 static VALUE rb_gzfile_close(VALUE);
00191 static VALUE rb_gzfile_finish(VALUE);
00192 static VALUE rb_gzfile_closed_p(VALUE);
00193 static VALUE rb_gzfile_eof_p(VALUE);
00194 static VALUE rb_gzfile_sync(VALUE);
00195 static VALUE rb_gzfile_set_sync(VALUE, VALUE);
00196 static VALUE rb_gzfile_total_in(VALUE);
00197 static VALUE rb_gzfile_total_out(VALUE);
00198 static VALUE rb_gzfile_path(VALUE);
00199 
00200 static VALUE rb_gzwriter_s_allocate(VALUE);
00201 static VALUE rb_gzwriter_s_open(int, VALUE*, VALUE);
00202 static VALUE rb_gzwriter_initialize(int, VALUE*, VALUE);
00203 static VALUE rb_gzwriter_flush(int, VALUE*, VALUE);
00204 static VALUE rb_gzwriter_write(VALUE, VALUE);
00205 static VALUE rb_gzwriter_putc(VALUE, VALUE);
00206 
00207 static VALUE rb_gzreader_s_allocate(VALUE);
00208 static VALUE rb_gzreader_s_open(int, VALUE*, VALUE);
00209 static VALUE rb_gzreader_initialize(int, VALUE*, VALUE);
00210 static VALUE rb_gzreader_rewind(VALUE);
00211 static VALUE rb_gzreader_unused(VALUE);
00212 static VALUE rb_gzreader_read(int, VALUE*, VALUE);
00213 static VALUE rb_gzreader_getc(VALUE);
00214 static VALUE rb_gzreader_readchar(VALUE);
00215 static VALUE rb_gzreader_each_byte(VALUE);
00216 static VALUE rb_gzreader_ungetc(VALUE, VALUE);
00217 static VALUE rb_gzreader_ungetbyte(VALUE, VALUE);
00218 static void gzreader_skip_linebreaks(struct gzfile*);
00219 static VALUE gzreader_gets(int, VALUE*, VALUE);
00220 static VALUE rb_gzreader_gets(int, VALUE*, VALUE);
00221 static VALUE rb_gzreader_readline(int, VALUE*, VALUE);
00222 static VALUE rb_gzreader_each(int, VALUE*, VALUE);
00223 static VALUE rb_gzreader_readlines(int, VALUE*, VALUE);
00224 #endif /* GZIP_SUPPORT */
00225 
00226 /*
00227  * Document-module: Zlib
00228  *
00229  * This module provides access to the {zlib library}[http://zlib.net]. Zlib is
00230  * designed to be a portable, free, general-purpose, legally unencumbered --
00231  * that is, not covered by any patents -- lossless data-compression library
00232  * for use on virtually any computer hardware and operating system.
00233  *
00234  * The zlib compression library provides in-memory compression and
00235  * decompression functions, including integrity checks of the uncompressed
00236  * data.
00237  *
00238  * The zlib compressed data format is described in RFC 1950, which is a
00239  * wrapper around a deflate stream which is described in RFC 1951.
00240  *
00241  * The library also supports reading and writing files in gzip (.gz) format
00242  * with an interface similar to that of IO. The gzip format is described in
00243  * RFC 1952 which is also a wrapper around a deflate stream.
00244  *
00245  * The zlib format was designed to be compact and fast for use in memory and on
00246  * communications channels. The gzip format was designed for single-file
00247  * compression on file systems, has a larger header than zlib to maintain
00248  * directory information, and uses a different, slower check method than zlib.
00249  *
00250  * See your system's zlib.h for further information about zlib
00251  *
00252  * == Sample usage
00253  *
00254  * Using the wrapper to compress strings with default parameters is quite
00255  * simple:
00256  *
00257  *   require "zlib"
00258  *
00259  *   data_to_compress = File.read("don_quixote.txt")
00260  *
00261  *   puts "Input size: #{data_to_compress.size}"
00262  *   #=> Input size: 2347740
00263  *
00264  *   data_compressed = Zlib::Deflate.deflate(data_to_compress)
00265  *
00266  *   puts "Compressed size: #{data_compressed.size}"
00267  *   #=> Compressed size: 887238
00268  *
00269  *   uncompressed_data = Zlib::Inflate.inflate(data_compressed)
00270  *
00271  *   puts "Uncompressed data is: #{uncompressed_data}"
00272  *   #=> Uncompressed data is: The Project Gutenberg EBook of Don Quixote...
00273  *
00274  * == Class tree
00275  *
00276  * - Zlib::Deflate
00277  * - Zlib::Inflate
00278  * - Zlib::ZStream
00279  * - Zlib::Error
00280  *   - Zlib::StreamEnd
00281  *   - Zlib::NeedDict
00282  *   - Zlib::DataError
00283  *   - Zlib::StreamError
00284  *   - Zlib::MemError
00285  *   - Zlib::BufError
00286  *   - Zlib::VersionError
00287  *
00288  * (if you have GZIP_SUPPORT)
00289  * - Zlib::GzipReader
00290  * - Zlib::GzipWriter
00291  * - Zlib::GzipFile
00292  * - Zlib::GzipFile::Error
00293  *   - Zlib::GzipFile::LengthError
00294  *   - Zlib::GzipFile::CRCError
00295  *   - Zlib::GzipFile::NoFooter
00296  *
00297  */
00298 void Init_zlib(void);
00299 
00300 /*--------- Exceptions --------*/
00301 
00302 static VALUE cZError, cStreamEnd, cNeedDict;
00303 static VALUE cStreamError, cDataError, cMemError, cBufError, cVersionError;
00304 
00305 static void
00306 raise_zlib_error(int err, const char *msg)
00307 {
00308     VALUE exc;
00309 
00310     if (!msg) {
00311         msg = zError(err);
00312     }
00313 
00314     switch(err) {
00315       case Z_STREAM_END:
00316         exc = rb_exc_new2(cStreamEnd, msg);
00317         break;
00318       case Z_NEED_DICT:
00319         exc = rb_exc_new2(cNeedDict, msg);
00320         break;
00321       case Z_STREAM_ERROR:
00322         exc = rb_exc_new2(cStreamError, msg);
00323         break;
00324       case Z_DATA_ERROR:
00325         exc = rb_exc_new2(cDataError, msg);
00326         break;
00327       case Z_BUF_ERROR:
00328         exc = rb_exc_new2(cBufError, msg);
00329         break;
00330       case Z_VERSION_ERROR:
00331         exc = rb_exc_new2(cVersionError, msg);
00332         break;
00333       case Z_MEM_ERROR:
00334         exc = rb_exc_new2(cMemError, msg);
00335         break;
00336       case Z_ERRNO:
00337         rb_sys_fail(msg);
00338         /* no return */
00339       default:
00340         exc = rb_exc_new3(cZError,
00341                              rb_sprintf("unknown zlib error %d: %s", err, msg));
00342     }
00343 
00344     rb_exc_raise(exc);
00345 }
00346 
00347 
00348 /*--- Warning (in finalizer) ---*/
00349 
00350 static void
00351 finalizer_warn(const char *msg)
00352 {
00353     fprintf(stderr, "zlib(finalizer): %s\n", msg);
00354 }
00355 
00356 
00357 /*-------- module Zlib --------*/
00358 
00359 /*
00360  * Document-method: Zlib.zlib_version
00361  *
00362  * Returns the string which represents the version of zlib library.
00363  */
00364 static VALUE
00365 rb_zlib_version(VALUE klass)
00366 {
00367     VALUE str;
00368 
00369     str = rb_str_new2(zlibVersion());
00370     OBJ_TAINT(str);  /* for safe */
00371     return str;
00372 }
00373 
00374 #if SIZEOF_LONG > SIZEOF_INT
00375 static uLong
00376 checksum_long(uLong (*func)(uLong, const Bytef*, uInt), uLong sum, const Bytef *ptr, long len)
00377 {
00378     if (len > UINT_MAX) {
00379         do {
00380             sum = func(sum, ptr, UINT_MAX);
00381             ptr += UINT_MAX;
00382             len -= UINT_MAX;
00383         } while (len >= UINT_MAX);
00384     }
00385     if (len > 0) sum = func(sum, ptr, (uInt)len);
00386     return sum;
00387 }
00388 #else
00389 #define checksum_long(func, sum, ptr, len) (func)((sum), (ptr), (len))
00390 #endif
00391 
00392 static VALUE
00393 do_checksum(argc, argv, func)
00394     int argc;
00395     VALUE *argv;
00396     uLong (*func)(uLong, const Bytef*, uInt);
00397 {
00398     VALUE str, vsum;
00399     unsigned long sum;
00400 
00401     rb_scan_args(argc, argv, "02", &str, &vsum);
00402 
00403     if (!NIL_P(vsum)) {
00404         sum = NUM2ULONG(vsum);
00405     }
00406     else if (NIL_P(str)) {
00407         sum = 0;
00408     }
00409     else {
00410         sum = func(0, Z_NULL, 0);
00411     }
00412 
00413     if (NIL_P(str)) {
00414         sum = func(sum, Z_NULL, 0);
00415     }
00416     else {
00417         StringValue(str);
00418         sum = checksum_long(func, sum, (Bytef*)RSTRING_PTR(str), RSTRING_LEN(str));
00419     }
00420     return rb_uint2inum(sum);
00421 }
00422 
00423 /*
00424  * Document-method: Zlib.adler32
00425  *
00426  * call-seq: Zlib.adler32(string, adler)
00427  *
00428  * Calculates Adler-32 checksum for +string+, and returns updated value of
00429  * +adler+. If +string+ is omitted, it returns the Adler-32 initial value. If
00430  * +adler+ is omitted, it assumes that the initial value is given to +adler+.
00431  *
00432  * FIXME: expression.
00433  */
00434 static VALUE
00435 rb_zlib_adler32(int argc, VALUE *argv, VALUE klass)
00436 {
00437     return do_checksum(argc, argv, adler32);
00438 }
00439 
00440 #ifdef HAVE_ADLER32_COMBINE
00441 /*
00442  * Document-method: Zlib.adler32_combine
00443  *
00444  * call-seq: Zlib.adler32_combine(adler1, adler2, len2)
00445  *
00446  * Combine two Adler-32 check values in to one.  +alder1+ is the first Adler-32
00447  * value, +adler2+ is the second Adler-32 value.  +len2+ is the length of the
00448  * string used to generate +adler2+.
00449  *
00450  */
00451 static VALUE
00452 rb_zlib_adler32_combine(VALUE klass, VALUE adler1, VALUE adler2, VALUE len2)
00453 {
00454   return ULONG2NUM(
00455         adler32_combine(NUM2ULONG(adler1), NUM2ULONG(adler2), NUM2LONG(len2)));
00456 }
00457 #else
00458 #define rb_zlib_adler32_combine rb_f_notimplement
00459 #endif
00460 
00461 /*
00462  * Document-method: Zlib.crc32
00463  *
00464  * call-seq: Zlib.crc32(string, adler)
00465  *
00466  * Calculates CRC checksum for +string+, and returns updated value of +crc+. If
00467  * +string+ is omitted, it returns the CRC initial value. If +crc+ is omitted, it
00468  * assumes that the initial value is given to +crc+.
00469  *
00470  * FIXME: expression.
00471  */
00472 static VALUE
00473 rb_zlib_crc32(int argc, VALUE *argv, VALUE klass)
00474 {
00475     return do_checksum(argc, argv, crc32);
00476 }
00477 
00478 #ifdef HAVE_CRC32_COMBINE
00479 /*
00480  * Document-method: Zlib.crc32_combine
00481  *
00482  * call-seq: Zlib.crc32_combine(crc1, crc2, len2)
00483  *
00484  * Combine two CRC-32 check values in to one.  +crc1+ is the first CRC-32
00485  * value, +crc2+ is the second CRC-32 value.  +len2+ is the length of the
00486  * string used to generate +crc2+.
00487  *
00488  */
00489 static VALUE
00490 rb_zlib_crc32_combine(VALUE klass, VALUE crc1, VALUE crc2, VALUE len2)
00491 {
00492   return ULONG2NUM(
00493         crc32_combine(NUM2ULONG(crc1), NUM2ULONG(crc2), NUM2LONG(len2)));
00494 }
00495 #else
00496 #define rb_zlib_crc32_combine rb_f_notimplement
00497 #endif
00498 
00499 /*
00500  * Document-method: Zlib.crc_table
00501  *
00502  * Returns the table for calculating CRC checksum as an array.
00503  */
00504 static VALUE
00505 rb_zlib_crc_table(VALUE obj)
00506 {
00507 #if !defined(HAVE_TYPE_Z_CRC_T)
00508     /* z_crc_t is defined since zlib-1.2.7. */
00509     typedef unsigned long z_crc_t;
00510 #endif
00511     const z_crc_t *crctbl;
00512     VALUE dst;
00513     int i;
00514 
00515     crctbl = get_crc_table();
00516     dst = rb_ary_new2(256);
00517 
00518     for (i = 0; i < 256; i++) {
00519         rb_ary_push(dst, rb_uint2inum(crctbl[i]));
00520     }
00521     return dst;
00522 }
00523 
00524 
00525 
00526 /*-------- zstream - internal APIs --------*/
00527 
00528 struct zstream {
00529     unsigned long flags;
00530     VALUE buf;
00531     long buf_filled;
00532     VALUE input;
00533     z_stream stream;
00534     const struct zstream_funcs {
00535         int (*reset)(z_streamp);
00536         int (*end)(z_streamp);
00537         int (*run)(z_streamp, int);
00538     } *func;
00539 };
00540 
00541 #define ZSTREAM_FLAG_READY      0x1
00542 #define ZSTREAM_FLAG_IN_STREAM  0x2
00543 #define ZSTREAM_FLAG_FINISHED   0x4
00544 #define ZSTREAM_FLAG_CLOSING    0x8
00545 #define ZSTREAM_FLAG_GZFILE     0x10 /* disallows yield from expand_buffer for
00546                                         gzip*/
00547 #define ZSTREAM_FLAG_UNUSED     0x20
00548 
00549 #define ZSTREAM_READY(z)       ((z)->flags |= ZSTREAM_FLAG_READY)
00550 #define ZSTREAM_IS_READY(z)    ((z)->flags & ZSTREAM_FLAG_READY)
00551 #define ZSTREAM_IS_FINISHED(z) ((z)->flags & ZSTREAM_FLAG_FINISHED)
00552 #define ZSTREAM_IS_CLOSING(z)  ((z)->flags & ZSTREAM_FLAG_CLOSING)
00553 #define ZSTREAM_IS_GZFILE(z)   ((z)->flags & ZSTREAM_FLAG_GZFILE)
00554 
00555 #define ZSTREAM_EXPAND_BUFFER_OK          0
00556 
00557 /* I think that more better value should be found,
00558    but I gave up finding it. B) */
00559 #define ZSTREAM_INITIAL_BUFSIZE       1024
00560 /* Allow a quick return when the thread is interrupted */
00561 #define ZSTREAM_AVAIL_OUT_STEP_MAX   16384
00562 #define ZSTREAM_AVAIL_OUT_STEP_MIN    2048
00563 
00564 static const struct zstream_funcs deflate_funcs = {
00565     deflateReset, deflateEnd, deflate,
00566 };
00567 
00568 static const struct zstream_funcs inflate_funcs = {
00569     inflateReset, inflateEnd, inflate,
00570 };
00571 
00572 struct zstream_run_args {
00573     struct zstream * z;
00574     int flush;         /* stream flush value for inflate() or deflate() */
00575     int interrupt;     /* stop processing the stream and return to ruby */
00576     int jump_state;    /* for buffer expansion block break or exception */
00577     int stream_output; /* for streaming zlib processing */
00578 };
00579 
00580 static voidpf
00581 zlib_mem_alloc(voidpf opaque, uInt items, uInt size)
00582 {
00583     voidpf p = xmalloc(items * size);
00584     /* zlib FAQ: Valgrind (or some similar memory access checker) says that
00585        deflate is performing a conditional jump that depends on an
00586        uninitialized value.  Isn't that a bug?
00587        http://www.zlib.net/zlib_faq.html#faq36 */
00588     (void)VALGRIND_MAKE_MEM_DEFINED(p, items * size);
00589     return p;
00590 }
00591 
00592 static void
00593 zlib_mem_free(voidpf opaque, voidpf address)
00594 {
00595     xfree(address);
00596 }
00597 
00598 static void
00599 zstream_init(struct zstream *z, const struct zstream_funcs *func)
00600 {
00601     z->flags = 0;
00602     z->buf = Qnil;
00603     z->buf_filled = 0;
00604     z->input = Qnil;
00605     z->stream.zalloc = zlib_mem_alloc;
00606     z->stream.zfree = zlib_mem_free;
00607     z->stream.opaque = Z_NULL;
00608     z->stream.msg = Z_NULL;
00609     z->stream.next_in = Z_NULL;
00610     z->stream.avail_in = 0;
00611     z->stream.next_out = Z_NULL;
00612     z->stream.avail_out = 0;
00613     z->func = func;
00614 }
00615 
00616 #define zstream_init_deflate(z)   zstream_init((z), &deflate_funcs)
00617 #define zstream_init_inflate(z)   zstream_init((z), &inflate_funcs)
00618 
00619 static void
00620 zstream_expand_buffer(struct zstream *z)
00621 {
00622     if (NIL_P(z->buf)) {
00623         zstream_expand_buffer_into(z, ZSTREAM_INITIAL_BUFSIZE);
00624         return;
00625     }
00626 
00627     if (!ZSTREAM_IS_GZFILE(z) && rb_block_given_p()) {
00628         if (z->buf_filled >= ZSTREAM_AVAIL_OUT_STEP_MAX) {
00629             int state = 0;
00630             VALUE self = (VALUE)z->stream.opaque;
00631 
00632             rb_str_resize(z->buf, z->buf_filled);
00633             RBASIC(z->buf)->klass = rb_cString;
00634             OBJ_INFECT(z->buf, self);
00635 
00636             rb_protect(rb_yield, z->buf, &state);
00637 
00638             z->buf = Qnil;
00639             zstream_expand_buffer_into(z, ZSTREAM_AVAIL_OUT_STEP_MAX);
00640 
00641             if (state)
00642                 rb_jump_tag(state);
00643 
00644             return;
00645         }
00646         else {
00647             zstream_expand_buffer_into(z,
00648                     ZSTREAM_AVAIL_OUT_STEP_MAX - z->buf_filled);
00649         }
00650     }
00651     else {
00652         if (RSTRING_LEN(z->buf) - z->buf_filled >= ZSTREAM_AVAIL_OUT_STEP_MAX) {
00653             z->stream.avail_out = ZSTREAM_AVAIL_OUT_STEP_MAX;
00654         }
00655         else {
00656             long inc = z->buf_filled / 2;
00657             if (inc < ZSTREAM_AVAIL_OUT_STEP_MIN) {
00658                 inc = ZSTREAM_AVAIL_OUT_STEP_MIN;
00659             }
00660             rb_str_resize(z->buf, z->buf_filled + inc);
00661             z->stream.avail_out = (inc < ZSTREAM_AVAIL_OUT_STEP_MAX) ?
00662                 (int)inc : ZSTREAM_AVAIL_OUT_STEP_MAX;
00663         }
00664         z->stream.next_out = (Bytef*)RSTRING_PTR(z->buf) + z->buf_filled;
00665     }
00666 }
00667 
00668 static void
00669 zstream_expand_buffer_into(struct zstream *z, unsigned long size)
00670 {
00671     if (NIL_P(z->buf)) {
00672         /* I uses rb_str_new here not rb_str_buf_new because
00673            rb_str_buf_new makes a zero-length string. */
00674         z->buf = rb_str_new(0, size);
00675         z->buf_filled = 0;
00676         z->stream.next_out = (Bytef*)RSTRING_PTR(z->buf);
00677         z->stream.avail_out = MAX_UINT(size);
00678         RBASIC(z->buf)->klass = 0;
00679     }
00680     else if (z->stream.avail_out != size) {
00681         rb_str_resize(z->buf, z->buf_filled + size);
00682         z->stream.next_out = (Bytef*)RSTRING_PTR(z->buf) + z->buf_filled;
00683         z->stream.avail_out = MAX_UINT(size);
00684     }
00685 }
00686 
00687 static void *
00688 zstream_expand_buffer_protect(void *ptr)
00689 {
00690     struct zstream *z = (struct zstream *)ptr;
00691     int state = 0;
00692 
00693     rb_protect((VALUE (*)(VALUE))zstream_expand_buffer, (VALUE)z, &state);
00694 
00695     return (void *)(VALUE)state;
00696 }
00697 
00698 static int
00699 zstream_expand_buffer_without_gvl(struct zstream *z)
00700 {
00701     char * new_str;
00702     long inc, len;
00703 
00704     if (RSTRING_LEN(z->buf) - z->buf_filled >= ZSTREAM_AVAIL_OUT_STEP_MAX) {
00705         z->stream.avail_out = ZSTREAM_AVAIL_OUT_STEP_MAX;
00706     }
00707     else {
00708         inc = z->buf_filled / 2;
00709         if (inc < ZSTREAM_AVAIL_OUT_STEP_MIN) {
00710             inc = ZSTREAM_AVAIL_OUT_STEP_MIN;
00711         }
00712 
00713         len = z->buf_filled + inc;
00714 
00715         new_str = ruby_xrealloc(RSTRING(z->buf)->as.heap.ptr, len + 1);
00716 
00717         /* from rb_str_resize */
00718         RSTRING(z->buf)->as.heap.ptr = new_str;
00719         RSTRING(z->buf)->as.heap.ptr[len] = '\0'; /* sentinel */
00720         RSTRING(z->buf)->as.heap.len =
00721             RSTRING(z->buf)->as.heap.aux.capa = len;
00722 
00723         z->stream.avail_out = (inc < ZSTREAM_AVAIL_OUT_STEP_MAX) ?
00724             (int)inc : ZSTREAM_AVAIL_OUT_STEP_MAX;
00725     }
00726     z->stream.next_out = (Bytef*)RSTRING_PTR(z->buf) + z->buf_filled;
00727 
00728     return ZSTREAM_EXPAND_BUFFER_OK;
00729 }
00730 
00731 static void
00732 zstream_append_buffer(struct zstream *z, const Bytef *src, long len)
00733 {
00734     if (NIL_P(z->buf)) {
00735         z->buf = rb_str_buf_new(len);
00736         rb_str_buf_cat(z->buf, (const char*)src, len);
00737         z->buf_filled = len;
00738         z->stream.next_out = (Bytef*)RSTRING_PTR(z->buf);
00739         z->stream.avail_out = 0;
00740         RBASIC(z->buf)->klass = 0;
00741         return;
00742     }
00743 
00744     if (RSTRING_LEN(z->buf) < z->buf_filled + len) {
00745         rb_str_resize(z->buf, z->buf_filled + len);
00746         z->stream.avail_out = 0;
00747     }
00748     else {
00749         if (z->stream.avail_out >= (uInt)len) {
00750             z->stream.avail_out -= (uInt)len;
00751         }
00752         else {
00753             z->stream.avail_out = 0;
00754         }
00755     }
00756     memcpy(RSTRING_PTR(z->buf) + z->buf_filled, src, len);
00757     z->buf_filled += len;
00758     z->stream.next_out = (Bytef*)RSTRING_PTR(z->buf) + z->buf_filled;
00759 }
00760 
00761 #define zstream_append_buffer2(z,v) \
00762     zstream_append_buffer((z),(Bytef*)RSTRING_PTR(v),RSTRING_LEN(v))
00763 
00764 static VALUE
00765 zstream_detach_buffer(struct zstream *z)
00766 {
00767     VALUE dst, self = (VALUE)z->stream.opaque;
00768 
00769     if (!ZSTREAM_IS_FINISHED(z) && !ZSTREAM_IS_GZFILE(z) &&
00770             rb_block_given_p()) {
00771         /* prevent tiny yields mid-stream, save for next
00772          * zstream_expand_buffer() or stream end */
00773         return Qnil;
00774     }
00775 
00776     if (NIL_P(z->buf)) {
00777         dst = rb_str_new(0, 0);
00778     }
00779     else {
00780         dst = z->buf;
00781         rb_str_resize(dst, z->buf_filled);
00782         RBASIC(dst)->klass = rb_cString;
00783     }
00784 
00785     OBJ_INFECT(dst, self);
00786 
00787     z->buf = Qnil;
00788     z->buf_filled = 0;
00789     z->stream.next_out = 0;
00790     z->stream.avail_out = 0;
00791 
00792     if (!ZSTREAM_IS_GZFILE(z) && rb_block_given_p()) {
00793         rb_yield(dst);
00794         dst = Qnil;
00795     }
00796 
00797     return dst;
00798 }
00799 
00800 static VALUE
00801 zstream_shift_buffer(struct zstream *z, long len)
00802 {
00803     VALUE dst;
00804     long buflen;
00805 
00806     if (z->buf_filled <= len) {
00807         return zstream_detach_buffer(z);
00808     }
00809 
00810     dst = rb_str_subseq(z->buf, 0, len);
00811     RBASIC(dst)->klass = rb_cString;
00812     z->buf_filled -= len;
00813     memmove(RSTRING_PTR(z->buf), RSTRING_PTR(z->buf) + len,
00814             z->buf_filled);
00815     z->stream.next_out = (Bytef*)RSTRING_PTR(z->buf) + z->buf_filled;
00816     buflen = RSTRING_LEN(z->buf) - z->buf_filled;
00817     if (buflen > ZSTREAM_AVAIL_OUT_STEP_MAX) {
00818         buflen = ZSTREAM_AVAIL_OUT_STEP_MAX;
00819     }
00820     z->stream.avail_out = (uInt)buflen;
00821 
00822     return dst;
00823 }
00824 
00825 static void
00826 zstream_buffer_ungets(struct zstream *z, const Bytef *b, unsigned long len)
00827 {
00828     if (NIL_P(z->buf) || RSTRING_LEN(z->buf) - z->buf_filled == 0) {
00829         zstream_expand_buffer_into(z, len);
00830     }
00831 
00832     memmove(RSTRING_PTR(z->buf) + len, RSTRING_PTR(z->buf), z->buf_filled);
00833     memmove(RSTRING_PTR(z->buf), b, len);
00834     z->buf_filled+=len;
00835     if (z->stream.avail_out > 0) {
00836         if (len > z->stream.avail_out) len = z->stream.avail_out;
00837         z->stream.next_out+=len;
00838         z->stream.avail_out-=(uInt)len;
00839     }
00840 }
00841 
00842 static void
00843 zstream_buffer_ungetbyte(struct zstream *z, int c)
00844 {
00845     if (NIL_P(z->buf) || RSTRING_LEN(z->buf) - z->buf_filled == 0) {
00846         zstream_expand_buffer(z);
00847     }
00848 
00849     memmove(RSTRING_PTR(z->buf) + 1, RSTRING_PTR(z->buf), z->buf_filled);
00850     RSTRING_PTR(z->buf)[0] = (char)c;
00851     z->buf_filled++;
00852     if (z->stream.avail_out > 0) {
00853         z->stream.next_out++;
00854         z->stream.avail_out--;
00855     }
00856 }
00857 
00858 static void
00859 zstream_append_input(struct zstream *z, const Bytef *src, long len)
00860 {
00861     if (len <= 0) return;
00862 
00863     if (NIL_P(z->input)) {
00864         z->input = rb_str_buf_new(len);
00865         rb_str_buf_cat(z->input, (const char*)src, len);
00866         RBASIC(z->input)->klass = 0;
00867     }
00868     else {
00869         rb_str_buf_cat(z->input, (const char*)src, len);
00870     }
00871 }
00872 
00873 #define zstream_append_input2(z,v)\
00874     RB_GC_GUARD(v),\
00875     zstream_append_input((z), (Bytef*)RSTRING_PTR(v), RSTRING_LEN(v))
00876 
00877 static void
00878 zstream_discard_input(struct zstream *z, long len)
00879 {
00880     if (NIL_P(z->input) || RSTRING_LEN(z->input) <= len) {
00881         z->input = Qnil;
00882     }
00883     else {
00884         memmove(RSTRING_PTR(z->input), RSTRING_PTR(z->input) + len,
00885                 RSTRING_LEN(z->input) - len);
00886         rb_str_resize(z->input, RSTRING_LEN(z->input) - len);
00887     }
00888 }
00889 
00890 static void
00891 zstream_reset_input(struct zstream *z)
00892 {
00893     z->input = Qnil;
00894 }
00895 
00896 static void
00897 zstream_passthrough_input(struct zstream *z)
00898 {
00899     if (!NIL_P(z->input)) {
00900         zstream_append_buffer2(z, z->input);
00901         z->input = Qnil;
00902     }
00903 }
00904 
00905 static VALUE
00906 zstream_detach_input(struct zstream *z)
00907 {
00908     VALUE dst;
00909 
00910     if (NIL_P(z->input)) {
00911         dst = rb_str_new(0, 0);
00912     }
00913     else {
00914         dst = z->input;
00915         RBASIC(dst)->klass = rb_cString;
00916     }
00917     z->input = Qnil;
00918     RBASIC(dst)->klass = rb_cString;
00919     return dst;
00920 }
00921 
00922 static void
00923 zstream_reset(struct zstream *z)
00924 {
00925     int err;
00926 
00927     err = z->func->reset(&z->stream);
00928     if (err != Z_OK) {
00929         raise_zlib_error(err, z->stream.msg);
00930     }
00931     z->flags = ZSTREAM_FLAG_READY;
00932     z->buf = Qnil;
00933     z->buf_filled = 0;
00934     z->stream.next_out = 0;
00935     z->stream.avail_out = 0;
00936     zstream_reset_input(z);
00937 }
00938 
00939 static VALUE
00940 zstream_end(struct zstream *z)
00941 {
00942     int err;
00943 
00944     if (!ZSTREAM_IS_READY(z)) {
00945         rb_warning("attempt to close uninitialized zstream; ignored.");
00946         return Qnil;
00947     }
00948     if (z->flags & ZSTREAM_FLAG_IN_STREAM) {
00949         rb_warning("attempt to close unfinished zstream; reset forced.");
00950         zstream_reset(z);
00951     }
00952 
00953     zstream_reset_input(z);
00954     err = z->func->end(&z->stream);
00955     if (err != Z_OK) {
00956         raise_zlib_error(err, z->stream.msg);
00957     }
00958     z->flags = 0;
00959     return Qnil;
00960 }
00961 
00962 static void *
00963 zstream_run_func(void *ptr)
00964 {
00965     struct zstream_run_args *args = (struct zstream_run_args *)ptr;
00966     int err, state, flush = args->flush;
00967     struct zstream *z = args->z;
00968     uInt n;
00969 
00970     err = Z_OK;
00971     while (!args->interrupt) {
00972         n = z->stream.avail_out;
00973         err = z->func->run(&z->stream, flush);
00974         z->buf_filled += n - z->stream.avail_out;
00975 
00976         if (err == Z_STREAM_END) {
00977             z->flags &= ~ZSTREAM_FLAG_IN_STREAM;
00978             z->flags |= ZSTREAM_FLAG_FINISHED;
00979             break;
00980         }
00981 
00982         if (err != Z_OK && err != Z_BUF_ERROR)
00983             break;
00984 
00985         if (z->stream.avail_out > 0) {
00986             z->flags |= ZSTREAM_FLAG_IN_STREAM;
00987             break;
00988         }
00989 
00990         if (z->stream.avail_in == 0 && z->func == &inflate_funcs) {
00991             /* break here because inflate() return Z_BUF_ERROR when avail_in == 0. */
00992             /* but deflate() could be called with avail_in == 0 (there's hidden buffer
00993                in zstream->state) */
00994             z->flags |= ZSTREAM_FLAG_IN_STREAM;
00995             break;
00996         }
00997 
00998         if (args->stream_output) {
00999             state = (int)(VALUE)rb_thread_call_with_gvl(zstream_expand_buffer_protect,
01000                                                         (void *)z);
01001         } else {
01002             state = zstream_expand_buffer_without_gvl(z);
01003         }
01004 
01005         if (state) {
01006             err = Z_OK; /* buffer expanded but stream processing was stopped */
01007             args->jump_state = state;
01008             break;
01009         }
01010     }
01011 
01012     return (void *)(VALUE)err;
01013 }
01014 
01015 /*
01016  * There is no safe way to interrupt z->run->func().
01017  */
01018 static void
01019 zstream_unblock_func(void *ptr)
01020 {
01021     struct zstream_run_args *args = (struct zstream_run_args *)ptr;
01022 
01023     args->interrupt = 1;
01024 }
01025 
01026 static void
01027 zstream_run(struct zstream *z, Bytef *src, long len, int flush)
01028 {
01029     struct zstream_run_args args;
01030     int err;
01031     volatile VALUE guard = Qnil;
01032 
01033     args.z = z;
01034     args.flush = flush;
01035     args.interrupt = 0;
01036     args.jump_state = 0;
01037     args.stream_output = !ZSTREAM_IS_GZFILE(z) && rb_block_given_p();
01038 
01039     if (NIL_P(z->input) && len == 0) {
01040         z->stream.next_in = (Bytef*)"";
01041         z->stream.avail_in = 0;
01042     }
01043     else {
01044         zstream_append_input(z, src, len);
01045         z->stream.next_in = (Bytef*)RSTRING_PTR(z->input);
01046         z->stream.avail_in = MAX_UINT(RSTRING_LEN(z->input));
01047         /* keep reference to `z->input' so as not to be garbage collected
01048            after zstream_reset_input() and prevent `z->stream.next_in'
01049            from dangling. */
01050         guard = z->input;
01051     }
01052 
01053     if (z->stream.avail_out == 0) {
01054         zstream_expand_buffer(z);
01055     }
01056 
01057 loop:
01058     err = (int)(VALUE)rb_thread_call_without_gvl(zstream_run_func, (void *)&args,
01059                                                  zstream_unblock_func, (void *)&args);
01060 
01061     if (flush != Z_FINISH && err == Z_BUF_ERROR
01062             && z->stream.avail_out > 0) {
01063         z->flags |= ZSTREAM_FLAG_IN_STREAM;
01064     }
01065 
01066     zstream_reset_input(z);
01067 
01068     if (err != Z_OK && err != Z_STREAM_END) {
01069         if (z->stream.avail_in > 0) {
01070             zstream_append_input(z, z->stream.next_in, z->stream.avail_in);
01071         }
01072         if (err == Z_NEED_DICT) {
01073             VALUE self = (VALUE)z->stream.opaque;
01074             if (self) {
01075                 VALUE dicts = rb_ivar_get(self, id_dictionaries);
01076                 VALUE dict = rb_hash_aref(dicts, rb_uint2inum(z->stream.adler));
01077                 if (!NIL_P(dict)) {
01078                     rb_inflate_set_dictionary(self, dict);
01079                     goto loop;
01080                 }
01081             }
01082         }
01083         raise_zlib_error(err, z->stream.msg);
01084     }
01085 
01086     if (z->stream.avail_in > 0) {
01087         zstream_append_input(z, z->stream.next_in, z->stream.avail_in);
01088         RB_GC_GUARD(guard) = Qnil; /* prevent tail call to make guard effective */
01089     }
01090 
01091     if (args.jump_state)
01092         rb_jump_tag(args.jump_state);
01093 }
01094 
01095 static VALUE
01096 zstream_sync(struct zstream *z, Bytef *src, long len)
01097 {
01098     /* VALUE rest; */
01099     int err;
01100 
01101     if (!NIL_P(z->input)) {
01102         z->stream.next_in = (Bytef*)RSTRING_PTR(z->input);
01103         z->stream.avail_in = MAX_UINT(RSTRING_LEN(z->input));
01104         err = inflateSync(&z->stream);
01105         if (err == Z_OK) {
01106             zstream_discard_input(z,
01107                                   RSTRING_LEN(z->input) - z->stream.avail_in);
01108             zstream_append_input(z, src, len);
01109             return Qtrue;
01110         }
01111         zstream_reset_input(z);
01112         if (err != Z_DATA_ERROR) {
01113             /* rest = rb_str_new((char*)z->stream.next_in, z->stream.avail_in); */
01114             raise_zlib_error(err, z->stream.msg);
01115         }
01116     }
01117 
01118     if (len <= 0) return Qfalse;
01119 
01120     z->stream.next_in = src;
01121     z->stream.avail_in = MAX_UINT(len);
01122     err = inflateSync(&z->stream);
01123     if (err == Z_OK) {
01124         zstream_append_input(z, z->stream.next_in, z->stream.avail_in);
01125         return Qtrue;
01126     }
01127     if (err != Z_DATA_ERROR) {
01128         /* rest = rb_str_new((char*)z->stream.next_in, z->stream.avail_in); */
01129         raise_zlib_error(err, z->stream.msg);
01130     }
01131     return Qfalse;
01132 }
01133 
01134 static void
01135 zstream_mark(struct zstream *z)
01136 {
01137     rb_gc_mark(z->buf);
01138     rb_gc_mark(z->input);
01139 }
01140 
01141 static void
01142 zstream_finalize(struct zstream *z)
01143 {
01144     int err = z->func->end(&z->stream);
01145     if (err == Z_STREAM_ERROR)
01146         finalizer_warn("the stream state was inconsistent.");
01147     if (err == Z_DATA_ERROR)
01148         finalizer_warn("the stream was freed prematurely.");
01149 }
01150 
01151 static void
01152 zstream_free(struct zstream *z)
01153 {
01154     if (ZSTREAM_IS_READY(z)) {
01155         zstream_finalize(z);
01156     }
01157     xfree(z);
01158 }
01159 
01160 static VALUE
01161 zstream_new(VALUE klass, const struct zstream_funcs *funcs)
01162 {
01163     VALUE obj;
01164     struct zstream *z;
01165 
01166     obj = Data_Make_Struct(klass, struct zstream,
01167                            zstream_mark, zstream_free, z);
01168     zstream_init(z, funcs);
01169     z->stream.opaque = (voidpf)obj;
01170     return obj;
01171 }
01172 
01173 #define zstream_deflate_new(klass)  zstream_new((klass), &deflate_funcs)
01174 #define zstream_inflate_new(klass)  zstream_new((klass), &inflate_funcs)
01175 
01176 static struct zstream *
01177 get_zstream(VALUE obj)
01178 {
01179     struct zstream *z;
01180 
01181     Data_Get_Struct(obj, struct zstream, z);
01182     if (!ZSTREAM_IS_READY(z)) {
01183         rb_raise(cZError, "stream is not ready");
01184     }
01185     return z;
01186 }
01187 
01188 
01189 /* ------------------------------------------------------------------------- */
01190 
01191 /*
01192  * Document-class: Zlib::ZStream
01193  *
01194  * Zlib::ZStream is the abstract class for the stream which handles the
01195  * compressed data. The operations are defined in the subclasses:
01196  * Zlib::Deflate for compression, and Zlib::Inflate for decompression.
01197  *
01198  * An instance of Zlib::ZStream has one stream (struct zstream in the source)
01199  * and two variable-length buffers which associated to the input (next_in) of
01200  * the stream and the output (next_out) of the stream. In this document,
01201  * "input buffer" means the buffer for input, and "output buffer" means the
01202  * buffer for output.
01203  *
01204  * Data input into an instance of Zlib::ZStream are temporally stored into
01205  * the end of input buffer, and then data in input buffer are processed from
01206  * the beginning of the buffer until no more output from the stream is
01207  * produced (i.e. until avail_out > 0 after processing).  During processing,
01208  * output buffer is allocated and expanded automatically to hold all output
01209  * data.
01210  *
01211  * Some particular instance methods consume the data in output buffer and
01212  * return them as a String.
01213  *
01214  * Here is an ascii art for describing above:
01215  *
01216  *    +================ an instance of Zlib::ZStream ================+
01217  *    ||                                                            ||
01218  *    ||     +--------+          +-------+          +--------+      ||
01219  *    ||  +--| output |<---------|zstream|<---------| input  |<--+  ||
01220  *    ||  |  | buffer |  next_out+-------+next_in   | buffer |   |  ||
01221  *    ||  |  +--------+                             +--------+   |  ||
01222  *    ||  |                                                      |  ||
01223  *    +===|======================================================|===+
01224  *        |                                                      |
01225  *        v                                                      |
01226  *    "output data"                                         "input data"
01227  *
01228  * If an error occurs during processing input buffer, an exception which is a
01229  * subclass of Zlib::Error is raised.  At that time, both input and output
01230  * buffer keep their conditions at the time when the error occurs.
01231  *
01232  * == Method Catalogue
01233  *
01234  * Many of the methods in this class are fairly low-level and unlikely to be
01235  * of interest to users.  In fact, users are unlikely to use this class
01236  * directly; rather they will be interested in Zlib::Inflate and
01237  * Zlib::Deflate.
01238  *
01239  * The higher level methods are listed below.
01240  *
01241  * - #total_in
01242  * - #total_out
01243  * - #data_type
01244  * - #adler
01245  * - #reset
01246  * - #finish
01247  * - #finished?
01248  * - #close
01249  * - #closed?
01250  */
01251 
01252 /*
01253  * Closes the stream. All operations on the closed stream will raise an
01254  * exception.
01255  */
01256 static VALUE
01257 rb_zstream_end(VALUE obj)
01258 {
01259     zstream_end(get_zstream(obj));
01260     return Qnil;
01261 }
01262 
01263 /*
01264  * Resets and initializes the stream. All data in both input and output buffer
01265  * are discarded.
01266  */
01267 static VALUE
01268 rb_zstream_reset(VALUE obj)
01269 {
01270     zstream_reset(get_zstream(obj));
01271     return Qnil;
01272 }
01273 
01274 /*
01275  * call-seq:
01276  *   finish                 -> String
01277  *   finish { |chunk| ... } -> nil
01278  *
01279  * Finishes the stream and flushes output buffer.  If a block is given each
01280  * chunk is yielded to the block until the input buffer has been flushed to
01281  * the output buffer.
01282  */
01283 static VALUE
01284 rb_zstream_finish(VALUE obj)
01285 {
01286     struct zstream *z = get_zstream(obj);
01287 
01288     zstream_run(z, (Bytef*)"", 0, Z_FINISH);
01289 
01290     return zstream_detach_buffer(z);
01291 }
01292 
01293 /*
01294  * call-seq:
01295  *   flush_next_out                 -> String
01296  *   flush_next_out { |chunk| ... } -> nil
01297  *
01298  * Flushes output buffer and returns all data in that buffer.  If a block is
01299  * given each chunk is yielded to the block until the current output buffer
01300  * has been flushed.
01301  */
01302 static VALUE
01303 rb_zstream_flush_next_in(VALUE obj)
01304 {
01305     struct zstream *z;
01306     VALUE dst;
01307 
01308     Data_Get_Struct(obj, struct zstream, z);
01309     dst = zstream_detach_input(z);
01310     OBJ_INFECT(dst, obj);
01311     return dst;
01312 }
01313 
01314 /*
01315  * Flushes output buffer and returns all data in that buffer.
01316  */
01317 static VALUE
01318 rb_zstream_flush_next_out(VALUE obj)
01319 {
01320     struct zstream *z;
01321 
01322     Data_Get_Struct(obj, struct zstream, z);
01323 
01324     return zstream_detach_buffer(z);
01325 }
01326 
01327 /*
01328  * Returns number of bytes of free spaces in output buffer.  Because the free
01329  * space is allocated automatically, this method returns 0 normally.
01330  */
01331 static VALUE
01332 rb_zstream_avail_out(VALUE obj)
01333 {
01334     struct zstream *z;
01335     Data_Get_Struct(obj, struct zstream, z);
01336     return rb_uint2inum(z->stream.avail_out);
01337 }
01338 
01339 /*
01340  * Allocates +size+ bytes of free space in the output buffer. If there are more
01341  * than +size+ bytes already in the buffer, the buffer is truncated. Because
01342  * free space is allocated automatically, you usually don't need to use this
01343  * method.
01344  */
01345 static VALUE
01346 rb_zstream_set_avail_out(VALUE obj, VALUE size)
01347 {
01348     struct zstream *z = get_zstream(obj);
01349 
01350     Check_Type(size, T_FIXNUM);
01351     zstream_expand_buffer_into(z, FIX2INT(size));
01352     return size;
01353 }
01354 
01355 /*
01356  * Returns bytes of data in the input buffer. Normally, returns 0.
01357  */
01358 static VALUE
01359 rb_zstream_avail_in(VALUE obj)
01360 {
01361     struct zstream *z;
01362     Data_Get_Struct(obj, struct zstream, z);
01363     return INT2FIX(NIL_P(z->input) ? 0 : (int)(RSTRING_LEN(z->input)));
01364 }
01365 
01366 /*
01367  * Returns the total bytes of the input data to the stream.  FIXME
01368  */
01369 static VALUE
01370 rb_zstream_total_in(VALUE obj)
01371 {
01372     return rb_uint2inum(get_zstream(obj)->stream.total_in);
01373 }
01374 
01375 /*
01376  * Returns the total bytes of the output data from the stream.  FIXME
01377  */
01378 static VALUE
01379 rb_zstream_total_out(VALUE obj)
01380 {
01381     return rb_uint2inum(get_zstream(obj)->stream.total_out);
01382 }
01383 
01384 /*
01385  * Guesses the type of the data which have been inputed into the stream. The
01386  * returned value is either <tt>BINARY</tt>, <tt>ASCII</tt>, or
01387  * <tt>UNKNOWN</tt>.
01388  */
01389 static VALUE
01390 rb_zstream_data_type(VALUE obj)
01391 {
01392     return INT2FIX(get_zstream(obj)->stream.data_type);
01393 }
01394 
01395 /*
01396  * Returns the adler-32 checksum.
01397  */
01398 static VALUE
01399 rb_zstream_adler(VALUE obj)
01400 {
01401         return rb_uint2inum(get_zstream(obj)->stream.adler);
01402 }
01403 
01404 /*
01405  * Returns true if the stream is finished.
01406  */
01407 static VALUE
01408 rb_zstream_finished_p(VALUE obj)
01409 {
01410     return ZSTREAM_IS_FINISHED(get_zstream(obj)) ? Qtrue : Qfalse;
01411 }
01412 
01413 /*
01414  * Returns true if the stream is closed.
01415  */
01416 static VALUE
01417 rb_zstream_closed_p(VALUE obj)
01418 {
01419     struct zstream *z;
01420     Data_Get_Struct(obj, struct zstream, z);
01421     return ZSTREAM_IS_READY(z) ? Qfalse : Qtrue;
01422 }
01423 
01424 
01425 /* ------------------------------------------------------------------------- */
01426 
01427 /*
01428  * Document-class: Zlib::Deflate
01429  *
01430  * Zlib::Deflate is the class for compressing data.  See Zlib::ZStream for more
01431  * information.
01432  */
01433 
01434 #define FIXNUMARG(val, ifnil) \
01435     (NIL_P((val)) ? (ifnil) \
01436     : ((void)Check_Type((val), T_FIXNUM), FIX2INT((val))))
01437 
01438 #define ARG_LEVEL(val)     FIXNUMARG((val), Z_DEFAULT_COMPRESSION)
01439 #define ARG_WBITS(val)     FIXNUMARG((val), MAX_WBITS)
01440 #define ARG_MEMLEVEL(val)  FIXNUMARG((val), DEF_MEM_LEVEL)
01441 #define ARG_STRATEGY(val)  FIXNUMARG((val), Z_DEFAULT_STRATEGY)
01442 #define ARG_FLUSH(val)     FIXNUMARG((val), Z_NO_FLUSH)
01443 
01444 
01445 static VALUE
01446 rb_deflate_s_allocate(VALUE klass)
01447 {
01448     return zstream_deflate_new(klass);
01449 }
01450 
01451 /*
01452  * Document-method: Zlib::Deflate.new
01453  *
01454  * call-seq:
01455  *   Zlib::Deflate.new(level=DEFAULT_COMPRESSION, window_bits=MAX_WBITS, mem_level=DEF_MEM_LEVEL, strategy=DEFAULT_STRATEGY)
01456  *
01457  * Creates a new deflate stream for compression. If a given argument is nil,
01458  * the default value of that argument is used.
01459  *
01460  * The +level+ sets the compression level for the deflate stream between 0 (no
01461  * compression) and 9 (best compression. The following constants have been
01462  * defined to make code more readable:
01463  *
01464  * * Zlib::NO_COMPRESSION = 0
01465  * * Zlib::BEST_SPEED = 1
01466  * * Zlib::DEFAULT_COMPRESSION = 6
01467  * * Zlib::BEST_COMPRESSION = 9
01468  *
01469  * The +window_bits+ sets the size of the history buffer and should be between
01470  * 8 and 15.  Larger values of this parameter result in better compression at
01471  * the expense of memory usage.
01472  *
01473  * The +mem_level+ specifies how much memory should be allocated for the
01474  * internal compression state.  1 uses minimum memory but is slow and reduces
01475  * compression ratio while 9 uses maximum memory for optimal speed.  The
01476  * default value is 8. Two constants are defined:
01477  *
01478  * * Zlib::DEF_MEM_LEVEL
01479  * * Zlib::MAX_MEM_LEVEL
01480  *
01481  * The +strategy+ sets the deflate compression strategy.  The following
01482  * strategies are available:
01483  *
01484  * Zlib::DEFAULT_STRATEGY:: For normal data
01485  * Zlib::FILTERED:: For data produced by a filter or predictor
01486  * Zlib::FIXED:: Prevents dynamic Huffman codes
01487  * Zlib::HUFFMAN_ONLY:: Prevents string matching
01488  * Zlib::RLE:: Designed for better compression of PNG image data
01489  *
01490  * See the constants for further description.
01491  *
01492  * == Examples
01493  *
01494  * === Basic
01495  *
01496  *   open "compressed.file", "w+" do |io|
01497  *     io << Zlib::Deflate.new.deflate(File.read("big.file"))
01498  *   end
01499  *
01500  * === Custom compression
01501  *
01502  *   open "compressed.file", "w+" do |compressed_io|
01503  *     deflate = Zlib::Deflate.new(Zlib::BEST_COMPRESSION,
01504  *                                 Zlib::MAX_WBITS,
01505  *                                 Zlib::MAX_MEM_LEVEL,
01506  *                                 Zlib::HUFFMAN_ONLY)
01507  *
01508  *     begin
01509  *       open "big.file" do |big_io|
01510  *         until big_io.eof? do
01511  *           compressed_io << zd.deflate(big_io.read(16384))
01512  *         end
01513  *       end
01514  *     ensure
01515  *       deflate.close
01516  *     end
01517  *   end
01518  *
01519  * While this example will work, for best optimization review the flags for
01520  * your specific time, memory usage and output space requirements.
01521  */
01522 static VALUE
01523 rb_deflate_initialize(int argc, VALUE *argv, VALUE obj)
01524 {
01525     struct zstream *z;
01526     VALUE level, wbits, memlevel, strategy;
01527     int err;
01528 
01529     rb_scan_args(argc, argv, "04", &level, &wbits, &memlevel, &strategy);
01530     Data_Get_Struct(obj, struct zstream, z);
01531 
01532     err = deflateInit2(&z->stream, ARG_LEVEL(level), Z_DEFLATED,
01533                        ARG_WBITS(wbits), ARG_MEMLEVEL(memlevel),
01534                        ARG_STRATEGY(strategy));
01535     if (err != Z_OK) {
01536         raise_zlib_error(err, z->stream.msg);
01537     }
01538     ZSTREAM_READY(z);
01539 
01540     return obj;
01541 }
01542 
01543 /*
01544  * Document-method: Zlib::Deflate#initialize_copy
01545  *
01546  * Duplicates the deflate stream.
01547  */
01548 static VALUE
01549 rb_deflate_init_copy(VALUE self, VALUE orig)
01550 {
01551     struct zstream *z1, *z2;
01552     int err;
01553 
01554     Data_Get_Struct(self, struct zstream, z1);
01555     z2 = get_zstream(orig);
01556 
01557     if (z1 == z2) return self;
01558     err = deflateCopy(&z1->stream, &z2->stream);
01559     if (err != Z_OK) {
01560         raise_zlib_error(err, 0);
01561     }
01562     z1->input = NIL_P(z2->input) ? Qnil : rb_str_dup(z2->input);
01563     z1->buf   = NIL_P(z2->buf)   ? Qnil : rb_str_dup(z2->buf);
01564     z1->buf_filled = z2->buf_filled;
01565     z1->flags = z2->flags;
01566 
01567     return self;
01568 }
01569 
01570 static VALUE
01571 deflate_run(VALUE args)
01572 {
01573     struct zstream *z = (struct zstream*)((VALUE*)args)[0];
01574     VALUE src = ((VALUE*)args)[1];
01575 
01576     zstream_run(z, (Bytef*)RSTRING_PTR(src), RSTRING_LEN(src), Z_FINISH);
01577     return zstream_detach_buffer(z);
01578 }
01579 
01580 /*
01581  * Document-method: Zlib::Deflate.deflate
01582  *
01583  * call-seq:
01584  *   Zlib.deflate(string[, level])
01585  *   Zlib::Deflate.deflate(string[, level])
01586  *
01587  * Compresses the given +string+. Valid values of level are
01588  * Zlib::NO_COMPRESSION, Zlib::BEST_SPEED, Zlib::BEST_COMPRESSION,
01589  * Zlib::DEFAULT_COMPRESSION, or an integer from 0 to 9 (the default is 6).
01590  *
01591  * This method is almost equivalent to the following code:
01592  *
01593  *   def deflate(string, level)
01594  *     z = Zlib::Deflate.new(level)
01595  *     dst = z.deflate(string, Zlib::FINISH)
01596  *     z.close
01597  *     dst
01598  *   end
01599  *
01600  * See also Zlib.inflate
01601  *
01602  */
01603 static VALUE
01604 rb_deflate_s_deflate(int argc, VALUE *argv, VALUE klass)
01605 {
01606     struct zstream z;
01607     VALUE src, level, dst, args[2];
01608     int err, lev;
01609 
01610     rb_scan_args(argc, argv, "11", &src, &level);
01611 
01612     lev = ARG_LEVEL(level);
01613     StringValue(src);
01614     zstream_init_deflate(&z);
01615     err = deflateInit(&z.stream, lev);
01616     if (err != Z_OK) {
01617         raise_zlib_error(err, z.stream.msg);
01618     }
01619     ZSTREAM_READY(&z);
01620 
01621     args[0] = (VALUE)&z;
01622     args[1] = src;
01623     dst = rb_ensure(deflate_run, (VALUE)args, zstream_end, (VALUE)&z);
01624 
01625     OBJ_INFECT(dst, src);
01626     return dst;
01627 }
01628 
01629 static void
01630 do_deflate(struct zstream *z, VALUE src, int flush)
01631 {
01632     if (NIL_P(src)) {
01633         zstream_run(z, (Bytef*)"", 0, Z_FINISH);
01634         return;
01635     }
01636     StringValue(src);
01637     if (flush != Z_NO_FLUSH || RSTRING_LEN(src) > 0) { /* prevent BUF_ERROR */
01638         zstream_run(z, (Bytef*)RSTRING_PTR(src), RSTRING_LEN(src), flush);
01639     }
01640 }
01641 
01642 /*
01643  * Document-method: Zlib::Deflate#deflate
01644  *
01645  * call-seq:
01646  *   z.deflate(string, flush = Zlib::NO_FLUSH)                 -> String
01647  *   z.deflate(string, flush = Zlib::NO_FLUSH) { |chunk| ... } -> nil
01648  *
01649  * Inputs +string+ into the deflate stream and returns the output from the
01650  * stream.  On calling this method, both the input and the output buffers of
01651  * the stream are flushed.  If +string+ is nil, this method finishes the
01652  * stream, just like Zlib::ZStream#finish.
01653  *
01654  * If a block is given consecutive deflated chunks from the +string+ are
01655  * yielded to the block and +nil+ is returned.
01656  *
01657  * The +flush+ parameter specifies the flush mode.  The following constants
01658  * may be used:
01659  *
01660  * Zlib::NO_FLUSH:: The default
01661  * Zlib::SYNC_FLUSH:: Flushes the output to a byte boundary
01662  * Zlib::FULL_FLUSH:: SYNC_FLUSH + resets the compression state
01663  * Zlib::FINISH:: Pending input is processed, pending output is flushed.
01664  *
01665  * See the constants for further description.
01666  *
01667  */
01668 static VALUE
01669 rb_deflate_deflate(int argc, VALUE *argv, VALUE obj)
01670 {
01671     struct zstream *z = get_zstream(obj);
01672     VALUE src, flush;
01673 
01674     rb_scan_args(argc, argv, "11", &src, &flush);
01675     OBJ_INFECT(obj, src);
01676     do_deflate(z, src, ARG_FLUSH(flush));
01677 
01678     return zstream_detach_buffer(z);
01679 }
01680 
01681 /*
01682  * Document-method: Zlib::Deflate#<<
01683  *
01684  * call-seq: << string
01685  *
01686  * Inputs +string+ into the deflate stream just like Zlib::Deflate#deflate, but
01687  * returns the Zlib::Deflate object itself.  The output from the stream is
01688  * preserved in output buffer.
01689  */
01690 static VALUE
01691 rb_deflate_addstr(VALUE obj, VALUE src)
01692 {
01693     OBJ_INFECT(obj, src);
01694     do_deflate(get_zstream(obj), src, Z_NO_FLUSH);
01695     return obj;
01696 }
01697 
01698 /*
01699  * Document-method: Zlib::Deflate#flush
01700  *
01701  * call-seq:
01702  *   flush(flush = Zlib::SYNC_FLUSH)                 -> String
01703  *   flush(flush = Zlib::SYNC_FLUSH) { |chunk| ... } -> nil
01704  *
01705  * This method is equivalent to <tt>deflate('', flush)</tt>. This method is
01706  * just provided to improve the readability of your Ruby program.  If a block
01707  * is given chunks of deflate output are yielded to the block until the buffer
01708  * is flushed.
01709  *
01710  * See Zlib::Deflate#deflate for detail on the +flush+ constants NO_FLUSH,
01711  * SYNC_FLUSH, FULL_FLUSH and FINISH.
01712  */
01713 static VALUE
01714 rb_deflate_flush(int argc, VALUE *argv, VALUE obj)
01715 {
01716     struct zstream *z = get_zstream(obj);
01717     VALUE v_flush;
01718     int flush;
01719 
01720     rb_scan_args(argc, argv, "01", &v_flush);
01721     flush = FIXNUMARG(v_flush, Z_SYNC_FLUSH);
01722     if (flush != Z_NO_FLUSH) {  /* prevent Z_BUF_ERROR */
01723         zstream_run(z, (Bytef*)"", 0, flush);
01724     }
01725 
01726     return zstream_detach_buffer(z);
01727 }
01728 
01729 /*
01730  * Document-method: Zlib::Deflate.params
01731  *
01732  * call-seq: params(level, strategy)
01733  *
01734  * Changes the parameters of the deflate stream to allow changes between
01735  * different types of data that require different types of compression.  Any
01736  * unprocessed data is flushed before changing the params.
01737  *
01738  * See Zlib::Deflate.new for a description of +level+ and +strategy+.
01739  *
01740  */
01741 static VALUE
01742 rb_deflate_params(VALUE obj, VALUE v_level, VALUE v_strategy)
01743 {
01744     struct zstream *z = get_zstream(obj);
01745     int level, strategy;
01746     int err;
01747     uInt n;
01748 
01749     level = ARG_LEVEL(v_level);
01750     strategy = ARG_STRATEGY(v_strategy);
01751 
01752     n = z->stream.avail_out;
01753     err = deflateParams(&z->stream, level, strategy);
01754     z->buf_filled += n - z->stream.avail_out;
01755     while (err == Z_BUF_ERROR) {
01756         rb_warning("deflateParams() returned Z_BUF_ERROR");
01757         zstream_expand_buffer(z);
01758         n = z->stream.avail_out;
01759         err = deflateParams(&z->stream, level, strategy);
01760         z->buf_filled += n - z->stream.avail_out;
01761     }
01762     if (err != Z_OK) {
01763         raise_zlib_error(err, z->stream.msg);
01764     }
01765 
01766     return Qnil;
01767 }
01768 
01769 /*
01770  * Document-method: Zlib::Deflate.set_dictionary
01771  *
01772  * call-seq: set_dictionary(string)
01773  *
01774  * Sets the preset dictionary and returns +string+. This method is available
01775  * just only after Zlib::Deflate.new or Zlib::ZStream#reset method was called.
01776  * See zlib.h for details.
01777  *
01778  * Can raise errors of Z_STREAM_ERROR if a parameter is invalid (such as
01779  * NULL dictionary) or the stream state is inconsistent, Z_DATA_ERROR if
01780  * the given dictionary doesn't match the expected one (incorrect adler32 value)
01781  *
01782  */
01783 static VALUE
01784 rb_deflate_set_dictionary(VALUE obj, VALUE dic)
01785 {
01786     struct zstream *z = get_zstream(obj);
01787     VALUE src = dic;
01788     int err;
01789 
01790     OBJ_INFECT(obj, dic);
01791     StringValue(src);
01792     err = deflateSetDictionary(&z->stream,
01793                                (Bytef*)RSTRING_PTR(src), RSTRING_LENINT(src));
01794     if (err != Z_OK) {
01795         raise_zlib_error(err, z->stream.msg);
01796     }
01797 
01798     return dic;
01799 }
01800 
01801 
01802 /* ------------------------------------------------------------------------- */
01803 
01804 /*
01805  * Document-class: Zlib::Inflate
01806  *
01807  * Zlib:Inflate is the class for decompressing compressed data.  Unlike
01808  * Zlib::Deflate, an instance of this class is not able to duplicate (clone,
01809  * dup) itself.
01810  */
01811 
01812 static VALUE
01813 rb_inflate_s_allocate(VALUE klass)
01814 {
01815     VALUE inflate = zstream_inflate_new(klass);
01816     rb_ivar_set(inflate, id_dictionaries, rb_hash_new());
01817     return inflate;
01818 }
01819 
01820 /*
01821  * Document-method: Zlib::Inflate.new
01822  *
01823  * call-seq:
01824  *   Zlib::Inflate.new(window_bits = Zlib::MAX_WBITS)
01825  *
01826  * Creates a new inflate stream for decompression.  +window_bits+ sets the
01827  * size of the history buffer and can have the following values:
01828  *
01829  * 0::
01830  *   Have inflate use the window size from the zlib header of the compressed
01831  *   stream.
01832  *
01833  * (8..15)
01834  *   Overrides the window size of the inflate header in the compressed stream.
01835  *   The window size must be greater than or equal to the window size of the
01836  *   compressed stream.
01837  *
01838  * Greater than 15::
01839  *   Add 32 to window_bits to enable zlib and gzip decoding with automatic
01840  *   header detection, or add 16 to decode only the gzip format (a
01841  *   Zlib::DataError will be raised for a non-gzip stream).
01842  *
01843  * (-8..-15)::
01844  *   Enables raw deflate mode which will not generate a check value, and will
01845  *   not look for any check values for comparison at the end of the stream.
01846  *
01847  *   This is for use with other formats that use the deflate compressed data
01848  *   format such as zip which provide their own check values.
01849  *
01850  * == Example
01851  *
01852  *   open "compressed.file" do |compressed_io|
01853  *     inflate = Zlib::Inflate.new(Zlib::MAX_WBITS + 32)
01854  *
01855  *     begin
01856  *       open "uncompressed.file", "w+" do |uncompressed_io|
01857  *         uncompressed_io << zi.inflate(compressed_io.read)
01858  *       }
01859  *     ensure
01860  *       zi.close
01861  *     end
01862  *   end
01863  *
01864  */
01865 static VALUE
01866 rb_inflate_initialize(int argc, VALUE *argv, VALUE obj)
01867 {
01868     struct zstream *z;
01869     VALUE wbits;
01870     int err;
01871 
01872     rb_scan_args(argc, argv, "01", &wbits);
01873     Data_Get_Struct(obj, struct zstream, z);
01874 
01875     err = inflateInit2(&z->stream, ARG_WBITS(wbits));
01876     if (err != Z_OK) {
01877         raise_zlib_error(err, z->stream.msg);
01878     }
01879     ZSTREAM_READY(z);
01880 
01881     return obj;
01882 }
01883 
01884 static VALUE
01885 inflate_run(VALUE args)
01886 {
01887     struct zstream *z = (struct zstream*)((VALUE*)args)[0];
01888     VALUE src = ((VALUE*)args)[1];
01889 
01890     zstream_run(z, (Bytef*)RSTRING_PTR(src), RSTRING_LEN(src), Z_SYNC_FLUSH);
01891     zstream_run(z, (Bytef*)"", 0, Z_FINISH);  /* for checking errors */
01892     return zstream_detach_buffer(z);
01893 }
01894 
01895 /*
01896  * Document-method: Zlib::inflate
01897  *
01898  * call-seq:
01899  *   Zlib.inflate(string)
01900  *   Zlib::Inflate.inflate(string)
01901  *
01902  * Decompresses +string+. Raises a Zlib::NeedDict exception if a preset
01903  * dictionary is needed for decompression.
01904  *
01905  * This method is almost equivalent to the following code:
01906  *
01907  *   def inflate(string)
01908  *     zstream = Zlib::Inflate.new
01909  *     buf = zstream.inflate(string)
01910  *     zstream.finish
01911  *     zstream.close
01912  *     buf
01913  *   end
01914  *
01915  * See also Zlib.deflate
01916  *
01917  */
01918 static VALUE
01919 rb_inflate_s_inflate(VALUE obj, VALUE src)
01920 {
01921     struct zstream z;
01922     VALUE dst, args[2];
01923     int err;
01924 
01925     StringValue(src);
01926     zstream_init_inflate(&z);
01927     err = inflateInit(&z.stream);
01928     if (err != Z_OK) {
01929         raise_zlib_error(err, z.stream.msg);
01930     }
01931     ZSTREAM_READY(&z);
01932 
01933     args[0] = (VALUE)&z;
01934     args[1] = src;
01935     dst = rb_ensure(inflate_run, (VALUE)args, zstream_end, (VALUE)&z);
01936 
01937     OBJ_INFECT(dst, src);
01938     return dst;
01939 }
01940 
01941 static void
01942 do_inflate(struct zstream *z, VALUE src)
01943 {
01944     if (NIL_P(src)) {
01945         zstream_run(z, (Bytef*)"", 0, Z_FINISH);
01946         return;
01947     }
01948     StringValue(src);
01949     if (RSTRING_LEN(src) > 0 || z->stream.avail_in > 0) { /* prevent Z_BUF_ERROR */
01950         zstream_run(z, (Bytef*)RSTRING_PTR(src), RSTRING_LEN(src), Z_SYNC_FLUSH);
01951     }
01952 }
01953 
01954 /* Document-method: Zlib::Inflate#add_dictionary
01955  *
01956  * call-seq: add_dictionary(string)
01957  *
01958  * Provide the inflate stream with a dictionary that may be required in the
01959  * future.  Multiple dictionaries may be provided.  The inflate stream will
01960  * automatically choose the correct user-provided dictionary based on the
01961  * stream's required dictionary.
01962  */
01963 static VALUE
01964 rb_inflate_add_dictionary(VALUE obj, VALUE dictionary) {
01965     VALUE dictionaries = rb_ivar_get(obj, id_dictionaries);
01966     VALUE checksum = do_checksum(1, &dictionary, adler32);
01967 
01968     rb_hash_aset(dictionaries, checksum, dictionary);
01969 
01970     return obj;
01971 }
01972 
01973 /*
01974  * Document-method: Zlib::Inflate#inflate
01975  *
01976  * call-seq:
01977  *   inflate(deflate_string)                 -> String
01978  *   inflate(deflate_string) { |chunk| ... } -> nil
01979  *
01980  * Inputs +deflate_string+ into the inflate stream and returns the output from
01981  * the stream.  Calling this method, both the input and the output buffer of
01982  * the stream are flushed.  If string is +nil+, this method finishes the
01983  * stream, just like Zlib::ZStream#finish.
01984  *
01985  * If a block is given consecutive inflated chunks from the +deflate_string+
01986  * are yielded to the block and +nil+ is returned.
01987  *
01988  * Raises a Zlib::NeedDict exception if a preset dictionary is needed to
01989  * decompress.  Set the dictionary by Zlib::Inflate#set_dictionary and then
01990  * call this method again with an empty string to flush the stream:
01991  *
01992  *   inflater = Zlib::Inflate.new
01993  *
01994  *   begin
01995  *     out = inflater.inflate compressed
01996  *   rescue Zlib::NeedDict
01997  *     # ensure the dictionary matches the stream's required dictionary
01998  *     raise unless inflater.adler == Zlib.adler32(dictionary)
01999  *
02000  *     inflater.set_dictionary dictionary
02001  *     inflater.inflate ''
02002  *   end
02003  *
02004  *   # ...
02005  *
02006  *   inflater.close
02007  *
02008  * See also Zlib::Inflate.new
02009  */
02010 static VALUE
02011 rb_inflate_inflate(VALUE obj, VALUE src)
02012 {
02013     struct zstream *z = get_zstream(obj);
02014     VALUE dst;
02015 
02016     OBJ_INFECT(obj, src);
02017 
02018     if (ZSTREAM_IS_FINISHED(z)) {
02019         if (NIL_P(src)) {
02020             dst = zstream_detach_buffer(z);
02021         }
02022         else {
02023             StringValue(src);
02024             zstream_append_buffer2(z, src);
02025             dst = rb_str_new(0, 0);
02026             OBJ_INFECT(dst, obj);
02027         }
02028     }
02029     else {
02030         do_inflate(z, src);
02031         dst = zstream_detach_buffer(z);
02032         if (ZSTREAM_IS_FINISHED(z)) {
02033             zstream_passthrough_input(z);
02034         }
02035     }
02036 
02037     return dst;
02038 }
02039 
02040 /*
02041  * call-seq: << string
02042  *
02043  * Inputs +string+ into the inflate stream just like Zlib::Inflate#inflate, but
02044  * returns the Zlib::Inflate object itself.  The output from the stream is
02045  * preserved in output buffer.
02046  */
02047 static VALUE
02048 rb_inflate_addstr(VALUE obj, VALUE src)
02049 {
02050     struct zstream *z = get_zstream(obj);
02051 
02052     OBJ_INFECT(obj, src);
02053 
02054     if (ZSTREAM_IS_FINISHED(z)) {
02055         if (!NIL_P(src)) {
02056             StringValue(src);
02057             zstream_append_buffer2(z, src);
02058         }
02059     }
02060     else {
02061         do_inflate(z, src);
02062         if (ZSTREAM_IS_FINISHED(z)) {
02063             zstream_passthrough_input(z);
02064         }
02065     }
02066 
02067     return obj;
02068 }
02069 
02070 /*
02071  * call-seq: sync(string)
02072  *
02073  * Inputs +string+ into the end of input buffer and skips data until a full
02074  * flush point can be found.  If the point is found in the buffer, this method
02075  * flushes the buffer and returns false.  Otherwise it returns +true+ and the
02076  * following data of full flush point is preserved in the buffer.
02077  */
02078 static VALUE
02079 rb_inflate_sync(VALUE obj, VALUE src)
02080 {
02081     struct zstream *z = get_zstream(obj);
02082 
02083     OBJ_INFECT(obj, src);
02084     StringValue(src);
02085     return zstream_sync(z, (Bytef*)RSTRING_PTR(src), RSTRING_LEN(src));
02086 }
02087 
02088 /*
02089  * Quoted verbatim from original documentation:
02090  *
02091  *   What is this?
02092  *
02093  * <tt>:)</tt>
02094  */
02095 static VALUE
02096 rb_inflate_sync_point_p(VALUE obj)
02097 {
02098     struct zstream *z = get_zstream(obj);
02099     int err;
02100 
02101     err = inflateSyncPoint(&z->stream);
02102     if (err == 1) {
02103         return Qtrue;
02104     }
02105     if (err != Z_OK) {
02106         raise_zlib_error(err, z->stream.msg);
02107     }
02108     return Qfalse;
02109 }
02110 
02111 /*
02112  * Document-method: Zlib::Inflate#set_dictionary
02113  *
02114  * Sets the preset dictionary and returns +string+.  This method is available just
02115  * only after a Zlib::NeedDict exception was raised.  See zlib.h for details.
02116  *
02117  */
02118 static VALUE
02119 rb_inflate_set_dictionary(VALUE obj, VALUE dic)
02120 {
02121     struct zstream *z = get_zstream(obj);
02122     VALUE src = dic;
02123     int err;
02124 
02125     OBJ_INFECT(obj, dic);
02126     StringValue(src);
02127     err = inflateSetDictionary(&z->stream,
02128                                (Bytef*)RSTRING_PTR(src), RSTRING_LENINT(src));
02129     if (err != Z_OK) {
02130         raise_zlib_error(err, z->stream.msg);
02131     }
02132 
02133     return dic;
02134 }
02135 
02136 
02137 
02138 #if GZIP_SUPPORT
02139 
02140 /* NOTE: Features for gzip files of Ruby/zlib are written from scratch
02141  *       and using undocumented feature of zlib, negative wbits.
02142  *       I don't think gzFile APIs of zlib are good for Ruby.
02143  */
02144 
02145 /*------- .gz file header --------*/
02146 
02147 #define GZ_MAGIC1             0x1f
02148 #define GZ_MAGIC2             0x8b
02149 #define GZ_METHOD_DEFLATE     8
02150 #define GZ_FLAG_MULTIPART     0x2
02151 #define GZ_FLAG_EXTRA         0x4
02152 #define GZ_FLAG_ORIG_NAME     0x8
02153 #define GZ_FLAG_COMMENT       0x10
02154 #define GZ_FLAG_ENCRYPT       0x20
02155 #define GZ_FLAG_UNKNOWN_MASK  0xc0
02156 
02157 #define GZ_EXTRAFLAG_FAST     0x4
02158 #define GZ_EXTRAFLAG_SLOW     0x2
02159 
02160 /* from zutil.h */
02161 #define OS_MSDOS    0x00
02162 #define OS_AMIGA    0x01
02163 #define OS_VMS      0x02
02164 #define OS_UNIX     0x03
02165 #define OS_ATARI    0x05
02166 #define OS_OS2      0x06
02167 #define OS_MACOS    0x07
02168 #define OS_TOPS20   0x0a
02169 #define OS_WIN32    0x0b
02170 
02171 #define OS_VMCMS    0x04
02172 #define OS_ZSYSTEM  0x08
02173 #define OS_CPM      0x09
02174 #define OS_QDOS     0x0c
02175 #define OS_RISCOS   0x0d
02176 #define OS_UNKNOWN  0xff
02177 
02178 #ifndef OS_CODE
02179 #define OS_CODE  OS_UNIX
02180 #endif
02181 
02182 static ID id_write, id_read, id_readpartial, id_flush, id_seek, id_close, id_path, id_input;
02183 static VALUE cGzError, cNoFooter, cCRCError, cLengthError;
02184 
02185 
02186 
02187 /*-------- gzfile internal APIs --------*/
02188 
02189 struct gzfile {
02190     struct zstream z;
02191     VALUE io;
02192     int level;
02193     time_t mtime;       /* for header */
02194     int os_code;        /* for header */
02195     VALUE orig_name;    /* for header; must be a String */
02196     VALUE comment;      /* for header; must be a String */
02197     unsigned long crc;
02198     int lineno;
02199     long ungetc;
02200     void (*end)(struct gzfile *);
02201     rb_encoding *enc;
02202     rb_encoding *enc2;
02203     rb_econv_t *ec;
02204     int ecflags;
02205     VALUE ecopts;
02206     char *cbuf;
02207     VALUE path;
02208 };
02209 #define GZFILE_CBUF_CAPA 10
02210 
02211 #define GZFILE_FLAG_SYNC             ZSTREAM_FLAG_UNUSED
02212 #define GZFILE_FLAG_HEADER_FINISHED  (ZSTREAM_FLAG_UNUSED << 1)
02213 #define GZFILE_FLAG_FOOTER_FINISHED  (ZSTREAM_FLAG_UNUSED << 2)
02214 
02215 #define GZFILE_IS_FINISHED(gz) \
02216     (ZSTREAM_IS_FINISHED(&(gz)->z) && (gz)->z.buf_filled == 0)
02217 
02218 #define GZFILE_READ_SIZE  2048
02219 
02220 
02221 static void
02222 gzfile_mark(struct gzfile *gz)
02223 {
02224     rb_gc_mark(gz->io);
02225     rb_gc_mark(gz->orig_name);
02226     rb_gc_mark(gz->comment);
02227     zstream_mark(&gz->z);
02228     rb_gc_mark(gz->ecopts);
02229     rb_gc_mark(gz->path);
02230 }
02231 
02232 static void
02233 gzfile_free(struct gzfile *gz)
02234 {
02235     struct zstream *z = &gz->z;
02236 
02237     if (ZSTREAM_IS_READY(z)) {
02238         if (z->func == &deflate_funcs) {
02239             finalizer_warn("Zlib::GzipWriter object must be closed explicitly.");
02240         }
02241         zstream_finalize(z);
02242     }
02243     if (gz->cbuf) {
02244         xfree(gz->cbuf);
02245     }
02246     xfree(gz);
02247 }
02248 
02249 static VALUE
02250 gzfile_new(klass, funcs, endfunc)
02251     VALUE klass;
02252     const struct zstream_funcs *funcs;
02253     void (*endfunc)(struct gzfile *);
02254 {
02255     VALUE obj;
02256     struct gzfile *gz;
02257 
02258     obj = Data_Make_Struct(klass, struct gzfile, gzfile_mark, gzfile_free, gz);
02259     zstream_init(&gz->z, funcs);
02260     gz->z.flags |= ZSTREAM_FLAG_GZFILE;
02261     gz->io = Qnil;
02262     gz->level = 0;
02263     gz->mtime = 0;
02264     gz->os_code = OS_CODE;
02265     gz->orig_name = Qnil;
02266     gz->comment = Qnil;
02267     gz->crc = crc32(0, Z_NULL, 0);
02268     gz->lineno = 0;
02269     gz->ungetc = 0;
02270     gz->end = endfunc;
02271     gz->enc = rb_default_external_encoding();
02272     gz->enc2 = 0;
02273     gz->ec = NULL;
02274     gz->ecflags = 0;
02275     gz->ecopts = Qnil;
02276     gz->cbuf = 0;
02277     gz->path = Qnil;
02278 
02279     return obj;
02280 }
02281 
02282 #define gzfile_writer_new(gz) gzfile_new((gz),&deflate_funcs,gzfile_writer_end)
02283 #define gzfile_reader_new(gz) gzfile_new((gz),&inflate_funcs,gzfile_reader_end)
02284 
02285 static void
02286 gzfile_reset(struct gzfile *gz)
02287 {
02288     zstream_reset(&gz->z);
02289     gz->z.flags |= ZSTREAM_FLAG_GZFILE;
02290     gz->crc = crc32(0, Z_NULL, 0);
02291     gz->lineno = 0;
02292     gz->ungetc = 0;
02293     if (gz->ec) {
02294         rb_econv_close(gz->ec);
02295         gz->ec = rb_econv_open_opts(gz->enc2->name, gz->enc->name,
02296                                     gz->ecflags, gz->ecopts);
02297     }
02298 }
02299 
02300 static void
02301 gzfile_close(struct gzfile *gz, int closeflag)
02302 {
02303     VALUE io = gz->io;
02304 
02305     gz->end(gz);
02306     gz->io = Qnil;
02307     gz->orig_name = Qnil;
02308     gz->comment = Qnil;
02309     if (closeflag && rb_respond_to(io, id_close)) {
02310         rb_funcall(io, id_close, 0);
02311     }
02312 }
02313 
02314 static void
02315 gzfile_write_raw(struct gzfile *gz)
02316 {
02317     VALUE str;
02318 
02319     if (gz->z.buf_filled > 0) {
02320         str = zstream_detach_buffer(&gz->z);
02321         OBJ_TAINT(str);  /* for safe */
02322         rb_funcall(gz->io, id_write, 1, str);
02323         if ((gz->z.flags & GZFILE_FLAG_SYNC)
02324             && rb_respond_to(gz->io, id_flush))
02325             rb_funcall(gz->io, id_flush, 0);
02326     }
02327 }
02328 
02329 static VALUE
02330 gzfile_read_raw_partial(VALUE arg)
02331 {
02332     struct gzfile *gz = (struct gzfile*)arg;
02333     VALUE str;
02334 
02335     str = rb_funcall(gz->io, id_readpartial, 1, INT2FIX(GZFILE_READ_SIZE));
02336     Check_Type(str, T_STRING);
02337     return str;
02338 }
02339 
02340 static VALUE
02341 gzfile_read_raw_rescue(VALUE arg)
02342 {
02343     struct gzfile *gz = (struct gzfile*)arg;
02344     VALUE str = Qnil;
02345     if (rb_obj_is_kind_of(rb_errinfo(), rb_eNoMethodError)) {
02346         str = rb_funcall(gz->io, id_read, 1, INT2FIX(GZFILE_READ_SIZE));
02347         if (!NIL_P(str)) {
02348             Check_Type(str, T_STRING);
02349         }
02350     }
02351     return str; /* return nil when EOFError */
02352 }
02353 
02354 static VALUE
02355 gzfile_read_raw(struct gzfile *gz)
02356 {
02357     return rb_rescue2(gzfile_read_raw_partial, (VALUE)gz,
02358                       gzfile_read_raw_rescue, (VALUE)gz,
02359                       rb_eEOFError, rb_eNoMethodError, (VALUE)0);
02360 }
02361 
02362 static int
02363 gzfile_read_raw_ensure(struct gzfile *gz, long size)
02364 {
02365     VALUE str;
02366 
02367     while (NIL_P(gz->z.input) || RSTRING_LEN(gz->z.input) < size) {
02368         str = gzfile_read_raw(gz);
02369         if (NIL_P(str)) return 0;
02370         zstream_append_input2(&gz->z, str);
02371     }
02372     return 1;
02373 }
02374 
02375 static char *
02376 gzfile_read_raw_until_zero(struct gzfile *gz, long offset)
02377 {
02378     VALUE str;
02379     char *p;
02380 
02381     for (;;) {
02382         p = memchr(RSTRING_PTR(gz->z.input) + offset, '\0',
02383                    RSTRING_LEN(gz->z.input) - offset);
02384         if (p) break;
02385         str = gzfile_read_raw(gz);
02386         if (NIL_P(str)) {
02387             rb_raise(cGzError, "unexpected end of file");
02388         }
02389         offset = RSTRING_LEN(gz->z.input);
02390         zstream_append_input2(&gz->z, str);
02391     }
02392     return p;
02393 }
02394 
02395 static unsigned int
02396 gzfile_get16(const unsigned char *src)
02397 {
02398     unsigned int n;
02399     n  = *(src++) & 0xff;
02400     n |= (*(src++) & 0xff) << 8;
02401     return n;
02402 }
02403 
02404 static unsigned long
02405 gzfile_get32(const unsigned char *src)
02406 {
02407     unsigned long n;
02408     n  = *(src++) & 0xff;
02409     n |= (*(src++) & 0xff) << 8;
02410     n |= (*(src++) & 0xff) << 16;
02411     n |= (*(src++) & 0xffU) << 24;
02412     return n;
02413 }
02414 
02415 static void
02416 gzfile_set32(unsigned long n, unsigned char *dst)
02417 {
02418     *(dst++) = n & 0xff;
02419     *(dst++) = (n >> 8) & 0xff;
02420     *(dst++) = (n >> 16) & 0xff;
02421     *dst     = (n >> 24) & 0xff;
02422 }
02423 
02424 static void
02425 gzfile_raise(struct gzfile *gz, VALUE klass, const char *message)
02426 {
02427     VALUE exc = rb_exc_new2(klass, message);
02428     if (!NIL_P(gz->z.input)) {
02429         rb_ivar_set(exc, id_input, rb_str_resurrect(gz->z.input));
02430     }
02431     rb_exc_raise(exc);
02432 }
02433 
02434 /*
02435  * Document-method: Zlib::GzipFile::Error#inspect
02436  *
02437  * Constructs a String of the GzipFile Error
02438  */
02439 static VALUE
02440 gzfile_error_inspect(VALUE error)
02441 {
02442     VALUE str = rb_call_super(0, 0);
02443     VALUE input = rb_attr_get(error, id_input);
02444 
02445     if (!NIL_P(input)) {
02446         rb_str_resize(str, RSTRING_LEN(str)-1);
02447         rb_str_cat2(str, ", input=");
02448         rb_str_append(str, rb_str_inspect(input));
02449         rb_str_cat2(str, ">");
02450     }
02451     return str;
02452 }
02453 
02454 static void
02455 gzfile_make_header(struct gzfile *gz)
02456 {
02457     Bytef buf[10];  /* the size of gzip header */
02458     unsigned char flags = 0, extraflags = 0;
02459 
02460     if (!NIL_P(gz->orig_name)) {
02461         flags |= GZ_FLAG_ORIG_NAME;
02462     }
02463     if (!NIL_P(gz->comment)) {
02464         flags |= GZ_FLAG_COMMENT;
02465     }
02466     if (gz->mtime == 0) {
02467         gz->mtime = time(0);
02468     }
02469 
02470     if (gz->level == Z_BEST_SPEED) {
02471         extraflags |= GZ_EXTRAFLAG_FAST;
02472     }
02473     else if (gz->level == Z_BEST_COMPRESSION) {
02474         extraflags |= GZ_EXTRAFLAG_SLOW;
02475     }
02476 
02477     buf[0] = GZ_MAGIC1;
02478     buf[1] = GZ_MAGIC2;
02479     buf[2] = GZ_METHOD_DEFLATE;
02480     buf[3] = flags;
02481     gzfile_set32((unsigned long)gz->mtime, &buf[4]);
02482     buf[8] = extraflags;
02483     buf[9] = gz->os_code;
02484     zstream_append_buffer(&gz->z, buf, sizeof(buf));
02485 
02486     if (!NIL_P(gz->orig_name)) {
02487         zstream_append_buffer2(&gz->z, gz->orig_name);
02488         zstream_append_buffer(&gz->z, (Bytef*)"\0", 1);
02489     }
02490     if (!NIL_P(gz->comment)) {
02491         zstream_append_buffer2(&gz->z, gz->comment);
02492         zstream_append_buffer(&gz->z, (Bytef*)"\0", 1);
02493     }
02494 
02495     gz->z.flags |= GZFILE_FLAG_HEADER_FINISHED;
02496 }
02497 
02498 static void
02499 gzfile_make_footer(struct gzfile *gz)
02500 {
02501     Bytef buf[8];  /* 8 is the size of gzip footer */
02502 
02503     gzfile_set32(gz->crc, buf);
02504     gzfile_set32(gz->z.stream.total_in, &buf[4]);
02505     zstream_append_buffer(&gz->z, buf, sizeof(buf));
02506     gz->z.flags |= GZFILE_FLAG_FOOTER_FINISHED;
02507 }
02508 
02509 static void
02510 gzfile_read_header(struct gzfile *gz)
02511 {
02512     const unsigned char *head;
02513     long len;
02514     char flags, *p;
02515 
02516     if (!gzfile_read_raw_ensure(gz, 10)) {  /* 10 is the size of gzip header */
02517         gzfile_raise(gz, cGzError, "not in gzip format");
02518     }
02519 
02520     head = (unsigned char*)RSTRING_PTR(gz->z.input);
02521 
02522     if (head[0] != GZ_MAGIC1 || head[1] != GZ_MAGIC2) {
02523         gzfile_raise(gz, cGzError, "not in gzip format");
02524     }
02525     if (head[2] != GZ_METHOD_DEFLATE) {
02526         rb_raise(cGzError, "unsupported compression method %d", head[2]);
02527     }
02528 
02529     flags = head[3];
02530     if (flags & GZ_FLAG_MULTIPART) {
02531         rb_raise(cGzError, "multi-part gzip file is not supported");
02532     }
02533     else if (flags & GZ_FLAG_ENCRYPT) {
02534         rb_raise(cGzError, "encrypted gzip file is not supported");
02535     }
02536     else if (flags & GZ_FLAG_UNKNOWN_MASK) {
02537         rb_raise(cGzError, "unknown flags 0x%02x", flags);
02538     }
02539 
02540     if (head[8] & GZ_EXTRAFLAG_FAST) {
02541         gz->level = Z_BEST_SPEED;
02542     }
02543     else if (head[8] & GZ_EXTRAFLAG_SLOW) {
02544         gz->level = Z_BEST_COMPRESSION;
02545     }
02546     else {
02547         gz->level = Z_DEFAULT_COMPRESSION;
02548     }
02549 
02550     gz->mtime = gzfile_get32(&head[4]);
02551     gz->os_code = head[9];
02552     zstream_discard_input(&gz->z, 10);
02553 
02554     if (flags & GZ_FLAG_EXTRA) {
02555         if (!gzfile_read_raw_ensure(gz, 2)) {
02556             rb_raise(cGzError, "unexpected end of file");
02557         }
02558         len = gzfile_get16((Bytef*)RSTRING_PTR(gz->z.input));
02559         if (!gzfile_read_raw_ensure(gz, 2 + len)) {
02560             rb_raise(cGzError, "unexpected end of file");
02561         }
02562         zstream_discard_input(&gz->z, 2 + len);
02563     }
02564     if (flags & GZ_FLAG_ORIG_NAME) {
02565         if (!gzfile_read_raw_ensure(gz, 1)) {
02566             rb_raise(cGzError, "unexpected end of file");
02567         }
02568         p = gzfile_read_raw_until_zero(gz, 0);
02569         len = p - RSTRING_PTR(gz->z.input);
02570         gz->orig_name = rb_str_new(RSTRING_PTR(gz->z.input), len);
02571         OBJ_TAINT(gz->orig_name);  /* for safe */
02572         zstream_discard_input(&gz->z, len + 1);
02573     }
02574     if (flags & GZ_FLAG_COMMENT) {
02575         if (!gzfile_read_raw_ensure(gz, 1)) {
02576             rb_raise(cGzError, "unexpected end of file");
02577         }
02578         p = gzfile_read_raw_until_zero(gz, 0);
02579         len = p - RSTRING_PTR(gz->z.input);
02580         gz->comment = rb_str_new(RSTRING_PTR(gz->z.input), len);
02581         OBJ_TAINT(gz->comment);  /* for safe */
02582         zstream_discard_input(&gz->z, len + 1);
02583     }
02584 
02585     if (gz->z.input != Qnil && RSTRING_LEN(gz->z.input) > 0) {
02586         zstream_run(&gz->z, 0, 0, Z_SYNC_FLUSH);
02587     }
02588 }
02589 
02590 static void
02591 gzfile_check_footer(struct gzfile *gz)
02592 {
02593     unsigned long crc, length;
02594 
02595     gz->z.flags |= GZFILE_FLAG_FOOTER_FINISHED;
02596 
02597     if (!gzfile_read_raw_ensure(gz, 8)) { /* 8 is the size of gzip footer */
02598         gzfile_raise(gz, cNoFooter, "footer is not found");
02599     }
02600 
02601     crc = gzfile_get32((Bytef*)RSTRING_PTR(gz->z.input));
02602     length = gzfile_get32((Bytef*)RSTRING_PTR(gz->z.input) + 4);
02603 
02604     gz->z.stream.total_in += 8;  /* to rewind correctly */
02605     zstream_discard_input(&gz->z, 8);
02606 
02607     if (gz->crc != crc) {
02608         rb_raise(cCRCError, "invalid compressed data -- crc error");
02609     }
02610     if ((uint32_t)gz->z.stream.total_out != length) {
02611         rb_raise(cLengthError, "invalid compressed data -- length error");
02612     }
02613 }
02614 
02615 static void
02616 gzfile_write(struct gzfile *gz, Bytef *str, long len)
02617 {
02618     if (!(gz->z.flags & GZFILE_FLAG_HEADER_FINISHED)) {
02619         gzfile_make_header(gz);
02620     }
02621 
02622     if (len > 0 || (gz->z.flags & GZFILE_FLAG_SYNC)) {
02623         gz->crc = checksum_long(crc32, gz->crc, str, len);
02624         zstream_run(&gz->z, str, len, (gz->z.flags & GZFILE_FLAG_SYNC)
02625                     ? Z_SYNC_FLUSH : Z_NO_FLUSH);
02626     }
02627     gzfile_write_raw(gz);
02628 }
02629 
02630 static long
02631 gzfile_read_more(struct gzfile *gz)
02632 {
02633     volatile VALUE str;
02634 
02635     while (!ZSTREAM_IS_FINISHED(&gz->z)) {
02636         str = gzfile_read_raw(gz);
02637         if (NIL_P(str)) {
02638             if (!ZSTREAM_IS_FINISHED(&gz->z)) {
02639                 rb_raise(cGzError, "unexpected end of file");
02640             }
02641             break;
02642         }
02643         if (RSTRING_LEN(str) > 0) { /* prevent Z_BUF_ERROR */
02644             zstream_run(&gz->z, (Bytef*)RSTRING_PTR(str), RSTRING_LEN(str),
02645                         Z_SYNC_FLUSH);
02646         }
02647         if (gz->z.buf_filled > 0) break;
02648     }
02649     return gz->z.buf_filled;
02650 }
02651 
02652 static void
02653 gzfile_calc_crc(struct gzfile *gz, VALUE str)
02654 {
02655     if (RSTRING_LEN(str) <= gz->ungetc) {
02656         gz->ungetc -= RSTRING_LEN(str);
02657     }
02658     else {
02659         gz->crc = checksum_long(crc32, gz->crc, (Bytef*)RSTRING_PTR(str) + gz->ungetc,
02660                         RSTRING_LEN(str) - gz->ungetc);
02661         gz->ungetc = 0;
02662     }
02663 }
02664 
02665 static VALUE
02666 gzfile_newstr(struct gzfile *gz, VALUE str)
02667 {
02668     if (!gz->enc2) {
02669         rb_enc_associate(str, gz->enc);
02670         OBJ_TAINT(str);  /* for safe */
02671         return str;
02672     }
02673     if (gz->ec && rb_enc_dummy_p(gz->enc2)) {
02674         str = rb_econv_str_convert(gz->ec, str, ECONV_PARTIAL_INPUT);
02675         rb_enc_associate(str, gz->enc);
02676         OBJ_TAINT(str);
02677         return str;
02678     }
02679     return rb_str_conv_enc_opts(str, gz->enc2, gz->enc,
02680                                 gz->ecflags, gz->ecopts);
02681 }
02682 
02683 static long
02684 gzfile_fill(struct gzfile *gz, long len)
02685 {
02686     if (len < 0)
02687         rb_raise(rb_eArgError, "negative length %ld given", len);
02688     if (len == 0)
02689         return 0;
02690     while (!ZSTREAM_IS_FINISHED(&gz->z) && gz->z.buf_filled < len) {
02691         gzfile_read_more(gz);
02692     }
02693     if (GZFILE_IS_FINISHED(gz)) {
02694         if (!(gz->z.flags & GZFILE_FLAG_FOOTER_FINISHED)) {
02695             gzfile_check_footer(gz);
02696         }
02697         return -1;
02698     }
02699     return len < gz->z.buf_filled ? len : gz->z.buf_filled;
02700 }
02701 
02702 static VALUE
02703 gzfile_read(struct gzfile *gz, long len)
02704 {
02705     VALUE dst;
02706 
02707     len = gzfile_fill(gz, len);
02708     if (len == 0) return rb_str_new(0, 0);
02709     if (len < 0) return Qnil;
02710     dst = zstream_shift_buffer(&gz->z, len);
02711     if (!NIL_P(dst)) gzfile_calc_crc(gz, dst);
02712     return dst;
02713 }
02714 
02715 static VALUE
02716 gzfile_readpartial(struct gzfile *gz, long len, VALUE outbuf)
02717 {
02718     VALUE dst;
02719 
02720     if (len < 0)
02721         rb_raise(rb_eArgError, "negative length %ld given", len);
02722 
02723     if (!NIL_P(outbuf))
02724         OBJ_TAINT(outbuf);
02725 
02726     if (len == 0) {
02727         if (NIL_P(outbuf))
02728             return rb_str_new(0, 0);
02729         else {
02730             rb_str_resize(outbuf, 0);
02731             return outbuf;
02732         }
02733     }
02734     while (!ZSTREAM_IS_FINISHED(&gz->z) && gz->z.buf_filled == 0) {
02735         gzfile_read_more(gz);
02736     }
02737     if (GZFILE_IS_FINISHED(gz)) {
02738         if (!(gz->z.flags & GZFILE_FLAG_FOOTER_FINISHED)) {
02739             gzfile_check_footer(gz);
02740         }
02741         if (!NIL_P(outbuf))
02742             rb_str_resize(outbuf, 0);
02743         rb_raise(rb_eEOFError, "end of file reached");
02744     }
02745 
02746     dst = zstream_shift_buffer(&gz->z, len);
02747     gzfile_calc_crc(gz, dst);
02748 
02749     if (!NIL_P(outbuf)) {
02750         rb_str_resize(outbuf, RSTRING_LEN(dst));
02751         memcpy(RSTRING_PTR(outbuf), RSTRING_PTR(dst), RSTRING_LEN(dst));
02752         dst = outbuf;
02753     }
02754     OBJ_TAINT(dst);  /* for safe */
02755     return dst;
02756 }
02757 
02758 static VALUE
02759 gzfile_read_all(struct gzfile *gz)
02760 {
02761     VALUE dst;
02762 
02763     while (!ZSTREAM_IS_FINISHED(&gz->z)) {
02764         gzfile_read_more(gz);
02765     }
02766     if (GZFILE_IS_FINISHED(gz)) {
02767         if (!(gz->z.flags & GZFILE_FLAG_FOOTER_FINISHED)) {
02768             gzfile_check_footer(gz);
02769         }
02770         return rb_str_new(0, 0);
02771     }
02772 
02773     dst = zstream_detach_buffer(&gz->z);
02774     if (NIL_P(dst)) return dst;
02775     gzfile_calc_crc(gz, dst);
02776     OBJ_TAINT(dst);
02777     return gzfile_newstr(gz, dst);
02778 }
02779 
02780 static VALUE
02781 gzfile_getc(struct gzfile *gz)
02782 {
02783     VALUE buf, dst = 0;
02784     int len;
02785 
02786     len = rb_enc_mbmaxlen(gz->enc);
02787     while (!ZSTREAM_IS_FINISHED(&gz->z) && gz->z.buf_filled < len) {
02788         gzfile_read_more(gz);
02789     }
02790     if (GZFILE_IS_FINISHED(gz)) {
02791         if (!(gz->z.flags & GZFILE_FLAG_FOOTER_FINISHED)) {
02792             gzfile_check_footer(gz);
02793         }
02794         return Qnil;
02795     }
02796 
02797     if (gz->ec && rb_enc_dummy_p(gz->enc2)) {
02798         const unsigned char *ss, *sp, *se;
02799         unsigned char *ds, *dp, *de;
02800 
02801         if (!gz->cbuf) {
02802             gz->cbuf = ALLOC_N(char, GZFILE_CBUF_CAPA);
02803         }
02804         ss = sp = (const unsigned char*)RSTRING_PTR(gz->z.buf);
02805         se = sp + gz->z.buf_filled;
02806         ds = dp = (unsigned char *)gz->cbuf;
02807         de = (unsigned char *)ds + GZFILE_CBUF_CAPA;
02808         (void)rb_econv_convert(gz->ec, &sp, se, &dp, de, ECONV_PARTIAL_INPUT|ECONV_AFTER_OUTPUT);
02809         rb_econv_check_error(gz->ec);
02810         dst = zstream_shift_buffer(&gz->z, sp - ss);
02811         gzfile_calc_crc(gz, dst);
02812         dst = rb_str_new(gz->cbuf, dp - ds);
02813         rb_enc_associate(dst, gz->enc);
02814         OBJ_TAINT(dst);
02815         return dst;
02816     }
02817     else {
02818         buf = gz->z.buf;
02819         len = rb_enc_mbclen(RSTRING_PTR(buf), RSTRING_END(buf), gz->enc);
02820         dst = gzfile_read(gz, len);
02821         if (NIL_P(dst)) return dst;
02822         return gzfile_newstr(gz, dst);
02823     }
02824 }
02825 
02826 static void
02827 gzfile_ungets(struct gzfile *gz, const Bytef *b, long len)
02828 {
02829     zstream_buffer_ungets(&gz->z, b, len);
02830     gz->ungetc+=len;
02831 }
02832 
02833 static void
02834 gzfile_ungetbyte(struct gzfile *gz, int c)
02835 {
02836     zstream_buffer_ungetbyte(&gz->z, c);
02837     gz->ungetc++;
02838 }
02839 
02840 static VALUE
02841 gzfile_writer_end_run(VALUE arg)
02842 {
02843     struct gzfile *gz = (struct gzfile *)arg;
02844 
02845     if (!(gz->z.flags & GZFILE_FLAG_HEADER_FINISHED)) {
02846         gzfile_make_header(gz);
02847     }
02848 
02849     zstream_run(&gz->z, (Bytef*)"", 0, Z_FINISH);
02850     gzfile_make_footer(gz);
02851     gzfile_write_raw(gz);
02852 
02853     return Qnil;
02854 }
02855 
02856 static void
02857 gzfile_writer_end(struct gzfile *gz)
02858 {
02859     if (ZSTREAM_IS_CLOSING(&gz->z)) return;
02860     gz->z.flags |= ZSTREAM_FLAG_CLOSING;
02861 
02862     rb_ensure(gzfile_writer_end_run, (VALUE)gz, zstream_end, (VALUE)&gz->z);
02863 }
02864 
02865 static VALUE
02866 gzfile_reader_end_run(VALUE arg)
02867 {
02868     struct gzfile *gz = (struct gzfile *)arg;
02869 
02870     if (GZFILE_IS_FINISHED(gz)
02871         && !(gz->z.flags & GZFILE_FLAG_FOOTER_FINISHED)) {
02872         gzfile_check_footer(gz);
02873     }
02874 
02875     return Qnil;
02876 }
02877 
02878 static void
02879 gzfile_reader_end(struct gzfile *gz)
02880 {
02881     if (ZSTREAM_IS_CLOSING(&gz->z)) return;
02882     gz->z.flags |= ZSTREAM_FLAG_CLOSING;
02883 
02884     rb_ensure(gzfile_reader_end_run, (VALUE)gz, zstream_end, (VALUE)&gz->z);
02885 }
02886 
02887 static void
02888 gzfile_reader_rewind(struct gzfile *gz)
02889 {
02890     long n;
02891 
02892     n = gz->z.stream.total_in;
02893     if (!NIL_P(gz->z.input)) {
02894         n += RSTRING_LEN(gz->z.input);
02895     }
02896 
02897     rb_funcall(gz->io, id_seek, 2, rb_int2inum(-n), INT2FIX(1));
02898     gzfile_reset(gz);
02899 }
02900 
02901 static VALUE
02902 gzfile_reader_get_unused(struct gzfile *gz)
02903 {
02904     VALUE str;
02905 
02906     if (!ZSTREAM_IS_READY(&gz->z)) return Qnil;
02907     if (!GZFILE_IS_FINISHED(gz)) return Qnil;
02908     if (!(gz->z.flags & GZFILE_FLAG_FOOTER_FINISHED)) {
02909         gzfile_check_footer(gz);
02910     }
02911     if (NIL_P(gz->z.input)) return Qnil;
02912 
02913     str = rb_str_resurrect(gz->z.input);
02914     OBJ_TAINT(str);  /* for safe */
02915     return str;
02916 }
02917 
02918 static struct gzfile *
02919 get_gzfile(VALUE obj)
02920 {
02921     struct gzfile *gz;
02922 
02923     Data_Get_Struct(obj, struct gzfile, gz);
02924     if (!ZSTREAM_IS_READY(&gz->z)) {
02925         rb_raise(cGzError, "closed gzip stream");
02926     }
02927     return gz;
02928 }
02929 
02930 
02931 /* ------------------------------------------------------------------------- */
02932 
02933 /*
02934  * Document-class: Zlib::GzipFile
02935  *
02936  * Zlib::GzipFile is an abstract class for handling a gzip formatted
02937  * compressed file. The operations are defined in the subclasses,
02938  * Zlib::GzipReader for reading, and Zlib::GzipWriter for writing.
02939  *
02940  * GzipReader should be used by associating an IO, or IO-like, object.
02941  *
02942  * == Method Catalogue
02943  *
02944  * - ::wrap
02945  * - ::open (Zlib::GzipReader::open and Zlib::GzipWriter::open)
02946  * - #close
02947  * - #closed?
02948  * - #comment
02949  * - comment= (Zlib::GzipWriter#comment=)
02950  * - #crc
02951  * - eof? (Zlib::GzipReader#eof?)
02952  * - #finish
02953  * - #level
02954  * - lineno (Zlib::GzipReader#lineno)
02955  * - lineno= (Zlib::GzipReader#lineno=)
02956  * - #mtime
02957  * - mtime= (Zlib::GzipWriter#mtime=)
02958  * - #orig_name
02959  * - orig_name (Zlib::GzipWriter#orig_name=)
02960  * - #os_code
02961  * - path (when the underlying IO supports #path)
02962  * - #sync
02963  * - #sync=
02964  * - #to_io
02965  *
02966  * (due to internal structure, documentation may appear under Zlib::GzipReader
02967  * or Zlib::GzipWriter)
02968  */
02969 
02970 
02971 typedef struct {
02972     int argc;
02973     VALUE *argv;
02974     VALUE klass;
02975 } new_wrap_arg_t;
02976 
02977 static VALUE
02978 new_wrap(VALUE tmp)
02979 {
02980     new_wrap_arg_t *arg = (new_wrap_arg_t *)tmp;
02981     return rb_class_new_instance(arg->argc, arg->argv, arg->klass);
02982 }
02983 
02984 static VALUE
02985 gzfile_ensure_close(VALUE obj)
02986 {
02987     struct gzfile *gz;
02988 
02989     Data_Get_Struct(obj, struct gzfile, gz);
02990     if (ZSTREAM_IS_READY(&gz->z)) {
02991         gzfile_close(gz, 1);
02992     }
02993     return Qnil;
02994 }
02995 
02996 static VALUE
02997 gzfile_wrap(int argc, VALUE *argv, VALUE klass, int close_io_on_error)
02998 {
02999     VALUE obj;
03000 
03001     if (close_io_on_error) {
03002         int state = 0;
03003         new_wrap_arg_t arg;
03004         arg.argc = argc;
03005         arg.argv = argv;
03006         arg.klass = klass;
03007         obj = rb_protect(new_wrap, (VALUE)&arg, &state);
03008         if (state) {
03009             rb_io_close(argv[0]);
03010             rb_jump_tag(state);
03011         }
03012     }
03013     else {
03014         obj = rb_class_new_instance(argc, argv, klass);
03015     }
03016 
03017     if (rb_block_given_p()) {
03018         return rb_ensure(rb_yield, obj, gzfile_ensure_close, obj);
03019     }
03020     else {
03021         return obj;
03022     }
03023 }
03024 
03025 /*
03026  * Document-method: Zlib::GzipFile.wrap
03027  *
03028  * call-seq:
03029  *   Zlib::GzipReader.wrap(io, ...) { |gz| ... }
03030  *   Zlib::GzipWriter.wrap(io, ...) { |gz| ... }
03031  *
03032  * Creates a GzipReader or GzipWriter associated with +io+, passing in any
03033  * necessary extra options, and executes the block with the newly created
03034  * object just like File.open.
03035  *
03036  * The GzipFile object will be closed automatically after executing the block.
03037  * If you want to keep the associated IO object open, you may call
03038  * Zlib::GzipFile#finish method in the block.
03039  */
03040 static VALUE
03041 rb_gzfile_s_wrap(int argc, VALUE *argv, VALUE klass)
03042 {
03043     return gzfile_wrap(argc, argv, klass, 0);
03044 }
03045 
03046 /*
03047  * Document-method: Zlib::GzipFile.open
03048  *
03049  * See Zlib::GzipReader#open and Zlib::GzipWriter#open.
03050  */
03051 static VALUE
03052 gzfile_s_open(int argc, VALUE *argv, VALUE klass, const char *mode)
03053 {
03054     VALUE io, filename;
03055 
03056     if (argc < 1) {
03057         rb_raise(rb_eArgError, "wrong number of arguments (0 for 1)");
03058     }
03059     filename = argv[0];
03060     io = rb_file_open_str(filename, mode);
03061     argv[0] = io;
03062     return gzfile_wrap(argc, argv, klass, 1);
03063 }
03064 
03065 /*
03066  * Document-method: Zlib::GzipFile#to_io
03067  *
03068  * Same as IO.
03069  */
03070 static VALUE
03071 rb_gzfile_to_io(VALUE obj)
03072 {
03073     return get_gzfile(obj)->io;
03074 }
03075 
03076 /*
03077  * Document-method: Zlib::GzipFile#crc
03078  *
03079  * Returns CRC value of the uncompressed data.
03080  */
03081 static VALUE
03082 rb_gzfile_crc(VALUE obj)
03083 {
03084     return rb_uint2inum(get_gzfile(obj)->crc);
03085 }
03086 
03087 /*
03088  * Document-method: Zlib::GzipFile#mtime
03089  *
03090  * Returns last modification time recorded in the gzip file header.
03091  */
03092 static VALUE
03093 rb_gzfile_mtime(VALUE obj)
03094 {
03095     return rb_time_new(get_gzfile(obj)->mtime, (time_t)0);
03096 }
03097 
03098 /*
03099  * Document-method: Zlib::GzipFile#level
03100  *
03101  * Returns compression level.
03102  */
03103 static VALUE
03104 rb_gzfile_level(VALUE obj)
03105 {
03106     return INT2FIX(get_gzfile(obj)->level);
03107 }
03108 
03109 /*
03110  * Document-method: Zlib::GzipFile#os_code
03111  *
03112  * Returns OS code number recorded in the gzip file header.
03113  */
03114 static VALUE
03115 rb_gzfile_os_code(VALUE obj)
03116 {
03117     return INT2FIX(get_gzfile(obj)->os_code);
03118 }
03119 
03120 /*
03121  * Document-method: Zlib::GzipFile#orig_name
03122  *
03123  * Returns original filename recorded in the gzip file header, or +nil+ if
03124  * original filename is not present.
03125  */
03126 static VALUE
03127 rb_gzfile_orig_name(VALUE obj)
03128 {
03129     VALUE str = get_gzfile(obj)->orig_name;
03130     if (!NIL_P(str)) {
03131         str = rb_str_dup(str);
03132     }
03133     OBJ_TAINT(str);  /* for safe */
03134     return str;
03135 }
03136 
03137 /*
03138  * Document-method: Zlib::GzipFile#comment
03139  *
03140  * Returns comments recorded in the gzip file header, or nil if the comments
03141  * is not present.
03142  */
03143 static VALUE
03144 rb_gzfile_comment(VALUE obj)
03145 {
03146     VALUE str = get_gzfile(obj)->comment;
03147     if (!NIL_P(str)) {
03148         str = rb_str_dup(str);
03149     }
03150     OBJ_TAINT(str);  /* for safe */
03151     return str;
03152 }
03153 
03154 /*
03155  * Document-method: Zlib::GzipFile#lineno
03156  *
03157  * The line number of the last row read from this file.
03158  */
03159 static VALUE
03160 rb_gzfile_lineno(VALUE obj)
03161 {
03162     return INT2NUM(get_gzfile(obj)->lineno);
03163 }
03164 
03165 /*
03166  * Document-method: Zlib::GzipReader#lineno=
03167  *
03168  * Specify line number of the last row read from this file.
03169  */
03170 static VALUE
03171 rb_gzfile_set_lineno(VALUE obj, VALUE lineno)
03172 {
03173     struct gzfile *gz = get_gzfile(obj);
03174     gz->lineno = NUM2INT(lineno);
03175     return lineno;
03176 }
03177 
03178 /*
03179  * Document-method: Zlib::GzipWriter#mtime=
03180  *
03181  * Specify the modification time (+mtime+) in the gzip header.
03182  * Using a Fixnum or Integer
03183  */
03184 static VALUE
03185 rb_gzfile_set_mtime(VALUE obj, VALUE mtime)
03186 {
03187     struct gzfile *gz = get_gzfile(obj);
03188     VALUE val;
03189 
03190     if (gz->z.flags & GZFILE_FLAG_HEADER_FINISHED) {
03191         rb_raise(cGzError, "header is already written");
03192     }
03193 
03194     if (FIXNUM_P(mtime)) {
03195         gz->mtime = FIX2INT(mtime);
03196     }
03197     else {
03198         val = rb_Integer(mtime);
03199         gz->mtime = FIXNUM_P(val) ? FIX2UINT(val) : rb_big2ulong(val);
03200     }
03201     return mtime;
03202 }
03203 
03204 /*
03205  * Document-method: Zlib::GzipFile#orig_name=
03206  *
03207  * Specify the original name (+str+) in the gzip header.
03208  */
03209 static VALUE
03210 rb_gzfile_set_orig_name(VALUE obj, VALUE str)
03211 {
03212     struct gzfile *gz = get_gzfile(obj);
03213     VALUE s;
03214     char *p;
03215 
03216     if (gz->z.flags & GZFILE_FLAG_HEADER_FINISHED) {
03217         rb_raise(cGzError, "header is already written");
03218     }
03219     s = rb_str_dup(rb_str_to_str(str));
03220     p = memchr(RSTRING_PTR(s), '\0', RSTRING_LEN(s));
03221     if (p) {
03222         rb_str_resize(s, p - RSTRING_PTR(s));
03223     }
03224     gz->orig_name = s;
03225     return str;
03226 }
03227 
03228 /*
03229  * Document-method: Zlib::GzipFile#comment=
03230  *
03231  * Specify the comment (+str+) in the gzip header.
03232  */
03233 static VALUE
03234 rb_gzfile_set_comment(VALUE obj, VALUE str)
03235 {
03236     struct gzfile *gz = get_gzfile(obj);
03237     VALUE s;
03238     char *p;
03239 
03240     if (gz->z.flags & GZFILE_FLAG_HEADER_FINISHED) {
03241         rb_raise(cGzError, "header is already written");
03242     }
03243     s = rb_str_dup(rb_str_to_str(str));
03244     p = memchr(RSTRING_PTR(s), '\0', RSTRING_LEN(s));
03245     if (p) {
03246         rb_str_resize(s, p - RSTRING_PTR(s));
03247     }
03248     gz->comment = s;
03249     return str;
03250 }
03251 
03252 /*
03253  * Document-method: Zlib::GzipFile#close
03254  *
03255  * Closes the GzipFile object. This method calls close method of the
03256  * associated IO object. Returns the associated IO object.
03257  */
03258 static VALUE
03259 rb_gzfile_close(VALUE obj)
03260 {
03261     struct gzfile *gz = get_gzfile(obj);
03262     VALUE io;
03263 
03264     io = gz->io;
03265     gzfile_close(gz, 1);
03266     return io;
03267 }
03268 
03269 /*
03270  * Document-method: Zlib::GzipFile#finish
03271  *
03272  * Closes the GzipFile object. Unlike Zlib::GzipFile#close, this method never
03273  * calls the close method of the associated IO object. Returns the associated IO
03274  * object.
03275  */
03276 static VALUE
03277 rb_gzfile_finish(VALUE obj)
03278 {
03279     struct gzfile *gz = get_gzfile(obj);
03280     VALUE io;
03281 
03282     io = gz->io;
03283     gzfile_close(gz, 0);
03284     return io;
03285 }
03286 
03287 /*
03288  * Document-method: Zlib::GzipFile#closed?
03289  *
03290  * Same as IO#closed?
03291  *
03292  */
03293 static VALUE
03294 rb_gzfile_closed_p(VALUE obj)
03295 {
03296     struct gzfile *gz;
03297     Data_Get_Struct(obj, struct gzfile, gz);
03298     return NIL_P(gz->io) ? Qtrue : Qfalse;
03299 }
03300 
03301 /*
03302  * Document-method: Zlib::GzipFile#eof?
03303  *
03304  * Returns +true+ or +false+ whether the stream has reached the end.
03305  */
03306 static VALUE
03307 rb_gzfile_eof_p(VALUE obj)
03308 {
03309     struct gzfile *gz = get_gzfile(obj);
03310     return GZFILE_IS_FINISHED(gz) ? Qtrue : Qfalse;
03311 }
03312 
03313 /*
03314  * Document-method: Zlib::GzipFile#sync
03315  *
03316  * Same as IO#sync
03317  *
03318  */
03319 static VALUE
03320 rb_gzfile_sync(VALUE obj)
03321 {
03322     return (get_gzfile(obj)->z.flags & GZFILE_FLAG_SYNC) ? Qtrue : Qfalse;
03323 }
03324 
03325 /*
03326  * Document-method: Zlib::GzipFile#sync=
03327  *
03328  * call-seq: sync = flag
03329  *
03330  * Same as IO.  If flag is +true+, the associated IO object must respond to the
03331  * +flush+ method.  While +sync+ mode is +true+, the compression ratio
03332  * decreases sharply.
03333  */
03334 static VALUE
03335 rb_gzfile_set_sync(VALUE obj, VALUE mode)
03336 {
03337     struct gzfile *gz = get_gzfile(obj);
03338 
03339     if (RTEST(mode)) {
03340         gz->z.flags |= GZFILE_FLAG_SYNC;
03341     }
03342     else {
03343         gz->z.flags &= ~GZFILE_FLAG_SYNC;
03344     }
03345     return mode;
03346 }
03347 
03348 /*
03349  * Document-method: Zlib::GzipFile#total_in
03350  *
03351  * Total number of input bytes read so far.
03352  */
03353 static VALUE
03354 rb_gzfile_total_in(VALUE obj)
03355 {
03356     return rb_uint2inum(get_gzfile(obj)->z.stream.total_in);
03357 }
03358 
03359 /*
03360  * Document-method: Zlib::GzipFile#total_out
03361  *
03362  * Total number of output bytes output so far.
03363  */
03364 static VALUE
03365 rb_gzfile_total_out(VALUE obj)
03366 {
03367     struct gzfile *gz = get_gzfile(obj);
03368     return rb_uint2inum(gz->z.stream.total_out - gz->z.buf_filled);
03369 }
03370 
03371 /*
03372  * Document-method: Zlib::GzipFile#path
03373  *
03374  * call-seq: path
03375  *
03376  * Returns the path string of the associated IO-like object.  This
03377  * method is only defined when the IO-like object responds to #path().
03378  */
03379 static VALUE
03380 rb_gzfile_path(VALUE obj)
03381 {
03382     struct gzfile *gz;
03383     Data_Get_Struct(obj, struct gzfile, gz);
03384     return gz->path;
03385 }
03386 
03387 static void
03388 rb_gzfile_ecopts(struct gzfile *gz, VALUE opts)
03389 {
03390     if (!NIL_P(opts)) {
03391         rb_io_extract_encoding_option(opts, &gz->enc, &gz->enc2, NULL);
03392     }
03393     if (gz->enc2) {
03394         gz->ecflags = rb_econv_prepare_opts(opts, &opts);
03395         gz->ec = rb_econv_open_opts(gz->enc2->name, gz->enc->name,
03396                                     gz->ecflags, opts);
03397         gz->ecopts = opts;
03398     }
03399 }
03400 
03401 /* ------------------------------------------------------------------------- */
03402 
03403 /*
03404  * Document-class: Zlib::GzipWriter
03405  *
03406  * Zlib::GzipWriter is a class for writing gzipped files.  GzipWriter should
03407  * be used with an instance of IO, or IO-like, object.
03408  *
03409  * Following two example generate the same result.
03410  *
03411  *   Zlib::GzipWriter.open('hoge.gz') do |gz|
03412  *     gz.write 'jugemu jugemu gokou no surikire...'
03413  *   end
03414  *
03415  *   File.open('hoge.gz', 'w') do |f|
03416  *     gz = Zlib::GzipWriter.new(f)
03417  *     gz.write 'jugemu jugemu gokou no surikire...'
03418  *     gz.close
03419  *   end
03420  *
03421  * To make like gzip(1) does, run following:
03422  *
03423  *   orig = 'hoge.txt'
03424  *   Zlib::GzipWriter.open('hoge.gz') do |gz|
03425  *     gz.mtime = File.mtime(orig)
03426  *     gz.orig_name = orig
03427  *     gz.write IO.binread(orig)
03428  *   end
03429  *
03430  * NOTE: Due to the limitation of Ruby's finalizer, you must explicitly close
03431  * GzipWriter objects by Zlib::GzipWriter#close etc.  Otherwise, GzipWriter
03432  * will be not able to write the gzip footer and will generate a broken gzip
03433  * file.
03434  */
03435 
03436 static VALUE
03437 rb_gzwriter_s_allocate(VALUE klass)
03438 {
03439     return gzfile_writer_new(klass);
03440 }
03441 
03442 /*
03443  * call-seq: Zlib::GzipWriter.open(filename, level=nil, strategy=nil) { |gz| ... }
03444  *
03445  * Opens a file specified by +filename+ for writing gzip compressed data, and
03446  * returns a GzipWriter object associated with that file.  Further details of
03447  * this method are found in Zlib::GzipWriter.new and Zlib::GzipFile.wrap.
03448  */
03449 static VALUE
03450 rb_gzwriter_s_open(int argc, VALUE *argv, VALUE klass)
03451 {
03452     return gzfile_s_open(argc, argv, klass, "wb");
03453 }
03454 
03455 /*
03456  * call-seq:
03457  *   Zlib::GzipWriter.new(io, level = nil, strategy = nil, options = {})
03458  *
03459  * Creates a GzipWriter object associated with +io+. +level+ and +strategy+
03460  * should be the same as the arguments of Zlib::Deflate.new.  The GzipWriter
03461  * object writes gzipped data to +io+.  +io+ must respond to the
03462  * +write+ method that behaves the same as IO#write.
03463  *
03464  * The +options+ hash may be used to set the encoding of the data.
03465  * +:external_encoding+, +:internal_encoding+ and +:encoding+ may be set as in
03466  * IO::new.
03467  */
03468 static VALUE
03469 rb_gzwriter_initialize(int argc, VALUE *argv, VALUE obj)
03470 {
03471     struct gzfile *gz;
03472     VALUE io, level, strategy, opt = Qnil;
03473     int err;
03474 
03475     if (argc > 1) {
03476         opt = rb_check_convert_type(argv[argc-1], T_HASH, "Hash", "to_hash");
03477         if (!NIL_P(opt)) argc--;
03478     }
03479 
03480     rb_scan_args(argc, argv, "12", &io, &level, &strategy);
03481     Data_Get_Struct(obj, struct gzfile, gz);
03482 
03483     /* this is undocumented feature of zlib */
03484     gz->level = ARG_LEVEL(level);
03485     err = deflateInit2(&gz->z.stream, gz->level, Z_DEFLATED,
03486                        -MAX_WBITS, DEF_MEM_LEVEL, ARG_STRATEGY(strategy));
03487     if (err != Z_OK) {
03488         raise_zlib_error(err, gz->z.stream.msg);
03489     }
03490     gz->io = io;
03491     ZSTREAM_READY(&gz->z);
03492     rb_gzfile_ecopts(gz, opt);
03493 
03494     if (rb_respond_to(io, id_path)) {
03495         gz->path = rb_funcall(gz->io, id_path, 0);
03496         rb_define_singleton_method(obj, "path", rb_gzfile_path, 0);
03497     }
03498 
03499     return obj;
03500 }
03501 
03502 /*
03503  * call-seq: flush(flush=nil)
03504  *
03505  * Flushes all the internal buffers of the GzipWriter object.  The meaning of
03506  * +flush+ is same as in Zlib::Deflate#deflate.  <tt>Zlib::SYNC_FLUSH</tt> is used if
03507  * +flush+ is omitted.  It is no use giving flush <tt>Zlib::NO_FLUSH</tt>.
03508  */
03509 static VALUE
03510 rb_gzwriter_flush(int argc, VALUE *argv, VALUE obj)
03511 {
03512     struct gzfile *gz = get_gzfile(obj);
03513     VALUE v_flush;
03514     int flush;
03515 
03516     rb_scan_args(argc, argv, "01", &v_flush);
03517 
03518     flush = FIXNUMARG(v_flush, Z_SYNC_FLUSH);
03519     if (flush != Z_NO_FLUSH) {  /* prevent Z_BUF_ERROR */
03520         zstream_run(&gz->z, (Bytef*)"", 0, flush);
03521     }
03522 
03523     gzfile_write_raw(gz);
03524     if (rb_respond_to(gz->io, id_flush)) {
03525         rb_funcall(gz->io, id_flush, 0);
03526     }
03527     return obj;
03528 }
03529 
03530 /*
03531  * Same as IO.
03532  */
03533 static VALUE
03534 rb_gzwriter_write(VALUE obj, VALUE str)
03535 {
03536     struct gzfile *gz = get_gzfile(obj);
03537 
03538     if (!RB_TYPE_P(str, T_STRING))
03539         str = rb_obj_as_string(str);
03540     if (gz->enc2 && gz->enc2 != rb_ascii8bit_encoding()) {
03541         str = rb_str_conv_enc(str, rb_enc_get(str), gz->enc2);
03542     }
03543     gzfile_write(gz, (Bytef*)RSTRING_PTR(str), RSTRING_LEN(str));
03544     return INT2FIX(RSTRING_LEN(str));
03545 }
03546 
03547 /*
03548  * Same as IO.
03549  */
03550 static VALUE
03551 rb_gzwriter_putc(VALUE obj, VALUE ch)
03552 {
03553     struct gzfile *gz = get_gzfile(obj);
03554     char c = NUM2CHR(ch);
03555 
03556     gzfile_write(gz, (Bytef*)&c, 1);
03557     return ch;
03558 }
03559 
03560 
03561 
03562 /*
03563  * Document-method: <<
03564  * Same as IO.
03565  */
03566 #define rb_gzwriter_addstr  rb_io_addstr
03567 /*
03568  * Document-method: printf
03569  * Same as IO.
03570  */
03571 #define rb_gzwriter_printf  rb_io_printf
03572 /*
03573  * Document-method: print
03574  * Same as IO.
03575  */
03576 #define rb_gzwriter_print  rb_io_print
03577 /*
03578  * Document-method: puts
03579  * Same as IO.
03580  */
03581 #define rb_gzwriter_puts  rb_io_puts
03582 
03583 
03584 /* ------------------------------------------------------------------------- */
03585 
03586 /*
03587  * Document-class: Zlib::GzipReader
03588  *
03589  * Zlib::GzipReader is the class for reading a gzipped file.  GzipReader should
03590  * be used an IO, or -IO-like, object.
03591  *
03592  *   Zlib::GzipReader.open('hoge.gz') {|gz|
03593  *     print gz.read
03594  *   }
03595  *
03596  *   File.open('hoge.gz') do |f|
03597  *     gz = Zlib::GzipReader.new(f)
03598  *     print gz.read
03599  *     gz.close
03600  *   end
03601  *
03602  * == Method Catalogue
03603  *
03604  * The following methods in Zlib::GzipReader are just like their counterparts
03605  * in IO, but they raise Zlib::Error or Zlib::GzipFile::Error exception if an
03606  * error was found in the gzip file.
03607  * - #each
03608  * - #each_line
03609  * - #each_byte
03610  * - #gets
03611  * - #getc
03612  * - #lineno
03613  * - #lineno=
03614  * - #read
03615  * - #readchar
03616  * - #readline
03617  * - #readlines
03618  * - #ungetc
03619  *
03620  * Be careful of the footer of the gzip file. A gzip file has the checksum of
03621  * pre-compressed data in its footer. GzipReader checks all uncompressed data
03622  * against that checksum at the following cases, and if it fails, raises
03623  * <tt>Zlib::GzipFile::NoFooter</tt>, <tt>Zlib::GzipFile::CRCError</tt>, or
03624  * <tt>Zlib::GzipFile::LengthError</tt> exception.
03625  *
03626  * - When an reading request is received beyond the end of file (the end of
03627  *   compressed data). That is, when Zlib::GzipReader#read,
03628  *   Zlib::GzipReader#gets, or some other methods for reading returns nil.
03629  * - When Zlib::GzipFile#close method is called after the object reaches the
03630  *   end of file.
03631  * - When Zlib::GzipReader#unused method is called after the object reaches
03632  *   the end of file.
03633  *
03634  * The rest of the methods are adequately described in their own
03635  * documentation.
03636  */
03637 
03638 static VALUE
03639 rb_gzreader_s_allocate(VALUE klass)
03640 {
03641     return gzfile_reader_new(klass);
03642 }
03643 
03644 /*
03645  * Document-method: Zlib::GzipReader.open
03646  *
03647  * call-seq: Zlib::GzipReader.open(filename) {|gz| ... }
03648  *
03649  * Opens a file specified by +filename+ as a gzipped file, and returns a
03650  * GzipReader object associated with that file.  Further details of this method
03651  * are in Zlib::GzipReader.new and ZLib::GzipFile.wrap.
03652  */
03653 static VALUE
03654 rb_gzreader_s_open(int argc, VALUE *argv, VALUE klass)
03655 {
03656     return gzfile_s_open(argc, argv, klass, "rb");
03657 }
03658 
03659 /*
03660  * Document-method: Zlib::GzipReader.new
03661  *
03662  * call-seq:
03663  *   Zlib::GzipReader.new(io, options = {})
03664  *
03665  * Creates a GzipReader object associated with +io+. The GzipReader object reads
03666  * gzipped data from +io+, and parses/decompresses it.  The +io+ must
03667  * have a +read+ method that behaves same as the IO#read.
03668  *
03669  * The +options+ hash may be used to set the encoding of the data.
03670  * +:external_encoding+, +:internal_encoding+ and +:encoding+ may be set as in
03671  * IO::new.
03672  *
03673  * If the gzip file header is incorrect, raises an Zlib::GzipFile::Error
03674  * exception.
03675  */
03676 static VALUE
03677 rb_gzreader_initialize(int argc, VALUE *argv, VALUE obj)
03678 {
03679     VALUE io, opt = Qnil;
03680     struct gzfile *gz;
03681     int err;
03682 
03683     Data_Get_Struct(obj, struct gzfile, gz);
03684     rb_scan_args(argc, argv, "1:", &io, &opt);
03685 
03686     /* this is undocumented feature of zlib */
03687     err = inflateInit2(&gz->z.stream, -MAX_WBITS);
03688     if (err != Z_OK) {
03689         raise_zlib_error(err, gz->z.stream.msg);
03690     }
03691     gz->io = io;
03692     ZSTREAM_READY(&gz->z);
03693     gzfile_read_header(gz);
03694     rb_gzfile_ecopts(gz, opt);
03695 
03696     if (rb_respond_to(io, id_path)) {
03697         gz->path = rb_funcall(gz->io, id_path, 0);
03698         rb_define_singleton_method(obj, "path", rb_gzfile_path, 0);
03699     }
03700 
03701     return obj;
03702 }
03703 
03704 /*
03705  * Document-method: Zlib::GzipReader#rewind
03706  *
03707  * Resets the position of the file pointer to the point created the GzipReader
03708  * object.  The associated IO object needs to respond to the +seek+ method.
03709  */
03710 static VALUE
03711 rb_gzreader_rewind(VALUE obj)
03712 {
03713     struct gzfile *gz = get_gzfile(obj);
03714     gzfile_reader_rewind(gz);
03715     return INT2FIX(0);
03716 }
03717 
03718 /*
03719  * Document-method: Zlib::GzipReader#unused
03720  *
03721  * Returns the rest of the data which had read for parsing gzip format, or
03722  * +nil+ if the whole gzip file is not parsed yet.
03723  */
03724 static VALUE
03725 rb_gzreader_unused(VALUE obj)
03726 {
03727     struct gzfile *gz;
03728     Data_Get_Struct(obj, struct gzfile, gz);
03729     return gzfile_reader_get_unused(gz);
03730 }
03731 
03732 /*
03733  * Document-method: Zlib::GzipReader#read
03734  *
03735  * See Zlib::GzipReader documentation for a description.
03736  */
03737 static VALUE
03738 rb_gzreader_read(int argc, VALUE *argv, VALUE obj)
03739 {
03740     struct gzfile *gz = get_gzfile(obj);
03741     VALUE vlen;
03742     long len;
03743 
03744     rb_scan_args(argc, argv, "01", &vlen);
03745     if (NIL_P(vlen)) {
03746         return gzfile_read_all(gz);
03747     }
03748 
03749     len = NUM2INT(vlen);
03750     if (len < 0) {
03751         rb_raise(rb_eArgError, "negative length %ld given", len);
03752     }
03753     return gzfile_read(gz, len);
03754 }
03755 
03756 /*
03757  * Document-method: Zlib::GzipReader#readpartial
03758  *
03759  *  call-seq:
03760  *     gzipreader.readpartial(maxlen [, outbuf]) => string, outbuf
03761  *
03762  *  Reads at most <i>maxlen</i> bytes from the gziped stream but
03763  *  it blocks only if <em>gzipreader</em> has no data immediately available.
03764  *  If the optional <i>outbuf</i> argument is present,
03765  *  it must reference a String, which will receive the data.
03766  *  It raises <code>EOFError</code> on end of file.
03767  */
03768 static VALUE
03769 rb_gzreader_readpartial(int argc, VALUE *argv, VALUE obj)
03770 {
03771     struct gzfile *gz = get_gzfile(obj);
03772     VALUE vlen, outbuf;
03773     long len;
03774 
03775     rb_scan_args(argc, argv, "11", &vlen, &outbuf);
03776 
03777     len = NUM2INT(vlen);
03778     if (len < 0) {
03779         rb_raise(rb_eArgError, "negative length %ld given", len);
03780     }
03781     if (!NIL_P(outbuf))
03782         Check_Type(outbuf, T_STRING);
03783     return gzfile_readpartial(gz, len, outbuf);
03784 }
03785 
03786 /*
03787  * Document-method: Zlib::GzipReader#getc
03788  *
03789  * See Zlib::GzipReader documentation for a description.
03790  */
03791 static VALUE
03792 rb_gzreader_getc(VALUE obj)
03793 {
03794     struct gzfile *gz = get_gzfile(obj);
03795 
03796     return gzfile_getc(gz);
03797 }
03798 
03799 /*
03800  * Document-method: Zlib::GzipReader#readchar
03801  *
03802  * See Zlib::GzipReader documentation for a description.
03803  */
03804 static VALUE
03805 rb_gzreader_readchar(VALUE obj)
03806 {
03807     VALUE dst;
03808     dst = rb_gzreader_getc(obj);
03809     if (NIL_P(dst)) {
03810         rb_raise(rb_eEOFError, "end of file reached");
03811     }
03812     return dst;
03813 }
03814 
03815 /*
03816  * Document-method: Zlib::GzipReader#getbyte
03817  *
03818  * See Zlib::GzipReader documentation for a description.
03819  */
03820 static VALUE
03821 rb_gzreader_getbyte(VALUE obj)
03822 {
03823     struct gzfile *gz = get_gzfile(obj);
03824     VALUE dst;
03825 
03826     dst = gzfile_read(gz, 1);
03827     if (!NIL_P(dst)) {
03828         dst = INT2FIX((unsigned int)(RSTRING_PTR(dst)[0]) & 0xff);
03829     }
03830     return dst;
03831 }
03832 
03833 /*
03834  * Document-method: Zlib::GzipReader#readbyte
03835  *
03836  * See Zlib::GzipReader documentation for a description.
03837  */
03838 static VALUE
03839 rb_gzreader_readbyte(VALUE obj)
03840 {
03841     VALUE dst;
03842     dst = rb_gzreader_getbyte(obj);
03843     if (NIL_P(dst)) {
03844         rb_raise(rb_eEOFError, "end of file reached");
03845     }
03846     return dst;
03847 }
03848 
03849 /*
03850  * Document-method: Zlib::GzipReader#each_char
03851  *
03852  * See Zlib::GzipReader documentation for a description.
03853  */
03854 static VALUE
03855 rb_gzreader_each_char(VALUE obj)
03856 {
03857     VALUE c;
03858 
03859     RETURN_ENUMERATOR(obj, 0, 0);
03860 
03861     while (!NIL_P(c = rb_gzreader_getc(obj))) {
03862         rb_yield(c);
03863     }
03864     return Qnil;
03865 }
03866 
03867 /*
03868  * Document-method: Zlib::GzipReader#each_byte
03869  *
03870  * See Zlib::GzipReader documentation for a description.
03871  */
03872 static VALUE
03873 rb_gzreader_each_byte(VALUE obj)
03874 {
03875     VALUE c;
03876 
03877     RETURN_ENUMERATOR(obj, 0, 0);
03878 
03879     while (!NIL_P(c = rb_gzreader_getbyte(obj))) {
03880         rb_yield(c);
03881     }
03882     return Qnil;
03883 }
03884 
03885 /*
03886  * Document-method: Zlib::GzipReader#bytes
03887  *
03888  *  This is a deprecated alias for <code>each_byte</code>.
03889  */
03890 static VALUE
03891 rb_gzreader_bytes(VALUE obj)
03892 {
03893     rb_warn("Zlib::GzipReader#bytes is deprecated; use #each_byte instead");
03894     if (!rb_block_given_p())
03895         return rb_enumeratorize(obj, ID2SYM(rb_intern("each_byte")), 0, 0);
03896     return rb_gzreader_each_byte(obj);
03897 }
03898 
03899 /*
03900  * Document-method: Zlib::GzipReader#ungetc
03901  *
03902  * See Zlib::GzipReader documentation for a description.
03903  */
03904 static VALUE
03905 rb_gzreader_ungetc(VALUE obj, VALUE s)
03906 {
03907     struct gzfile *gz;
03908 
03909     if (FIXNUM_P(s))
03910         return rb_gzreader_ungetbyte(obj, s);
03911     gz = get_gzfile(obj);
03912     StringValue(s);
03913     if (gz->enc2 && gz->enc2 != rb_ascii8bit_encoding()) {
03914         s = rb_str_conv_enc(s, rb_enc_get(s), gz->enc2);
03915     }
03916     gzfile_ungets(gz, (const Bytef*)RSTRING_PTR(s), RSTRING_LEN(s));
03917     return Qnil;
03918 }
03919 
03920 /*
03921  * Document-method: Zlib::GzipReader#ungetbyte
03922  *
03923  * See Zlib::GzipReader documentation for a description.
03924  */
03925 static VALUE
03926 rb_gzreader_ungetbyte(VALUE obj, VALUE ch)
03927 {
03928     struct gzfile *gz = get_gzfile(obj);
03929     gzfile_ungetbyte(gz, NUM2CHR(ch));
03930     return Qnil;
03931 }
03932 
03933 static void
03934 gzreader_skip_linebreaks(struct gzfile *gz)
03935 {
03936     VALUE str;
03937     char *p;
03938     int n;
03939 
03940     while (gz->z.buf_filled == 0) {
03941         if (GZFILE_IS_FINISHED(gz)) return;
03942         gzfile_read_more(gz);
03943     }
03944     n = 0;
03945     p = RSTRING_PTR(gz->z.buf);
03946 
03947     while (n++, *(p++) == '\n') {
03948         if (n >= gz->z.buf_filled) {
03949             str = zstream_detach_buffer(&gz->z);
03950             gzfile_calc_crc(gz, str);
03951             while (gz->z.buf_filled == 0) {
03952                 if (GZFILE_IS_FINISHED(gz)) return;
03953                 gzfile_read_more(gz);
03954             }
03955             n = 0;
03956             p = RSTRING_PTR(gz->z.buf);
03957         }
03958     }
03959 
03960     str = zstream_shift_buffer(&gz->z, n - 1);
03961     gzfile_calc_crc(gz, str);
03962 }
03963 
03964 static void
03965 rscheck(const char *rsptr, long rslen, VALUE rs)
03966 {
03967     if (RSTRING_PTR(rs) != rsptr && RSTRING_LEN(rs) != rslen)
03968         rb_raise(rb_eRuntimeError, "rs modified");
03969 }
03970 
03971 static long
03972 gzreader_charboundary(struct gzfile *gz, long n)
03973 {
03974     char *s = RSTRING_PTR(gz->z.buf);
03975     char *e = s + gz->z.buf_filled;
03976     char *p = rb_enc_left_char_head(s, s + n, e, gz->enc);
03977     long l = p - s;
03978     if (l < n) {
03979         n = rb_enc_precise_mbclen(p, e, gz->enc);
03980         if (MBCLEN_NEEDMORE_P(n)) {
03981             if ((l = gzfile_fill(gz, l + MBCLEN_NEEDMORE_LEN(n))) > 0) {
03982                 return l;
03983             }
03984         }
03985         else if (MBCLEN_CHARFOUND_P(n)) {
03986             return l + MBCLEN_CHARFOUND_LEN(n);
03987         }
03988     }
03989     return n;
03990 }
03991 
03992 static VALUE
03993 gzreader_gets(int argc, VALUE *argv, VALUE obj)
03994 {
03995     struct gzfile *gz = get_gzfile(obj);
03996     volatile VALUE rs;
03997     VALUE dst;
03998     const char *rsptr;
03999     char *p, *res;
04000     long rslen, n, limit = -1;
04001     int rspara;
04002     rb_encoding *enc = gz->enc;
04003     int maxlen = rb_enc_mbmaxlen(enc);
04004 
04005     if (argc == 0) {
04006         rs = rb_rs;
04007     }
04008     else {
04009         VALUE lim, tmp;
04010 
04011         rb_scan_args(argc, argv, "11", &rs, &lim);
04012         if (!NIL_P(lim)) {
04013             if (!NIL_P(rs)) StringValue(rs);
04014         }
04015         else if (!NIL_P(rs)) {
04016             tmp = rb_check_string_type(rs);
04017             if (NIL_P(tmp)) {
04018                 lim = rs;
04019                 rs = rb_rs;
04020             }
04021             else {
04022                 rs = tmp;
04023             }
04024         }
04025         if (!NIL_P(lim)) {
04026             limit = NUM2LONG(lim);
04027             if (limit == 0) return rb_str_new(0,0);
04028         }
04029     }
04030 
04031     if (NIL_P(rs)) {
04032         if (limit < 0) {
04033             dst = gzfile_read_all(gz);
04034             if (RSTRING_LEN(dst) == 0) return Qnil;
04035         }
04036         else if ((n = gzfile_fill(gz, limit)) <= 0) {
04037             return Qnil;
04038         }
04039         else {
04040             if (maxlen > 1 && n >= limit && !GZFILE_IS_FINISHED(gz)) {
04041                 n = gzreader_charboundary(gz, n);
04042             }
04043             else {
04044                 n = limit;
04045             }
04046             dst = zstream_shift_buffer(&gz->z, n);
04047             if (NIL_P(dst)) return dst;
04048             gzfile_calc_crc(gz, dst);
04049             dst = gzfile_newstr(gz, dst);
04050         }
04051         gz->lineno++;
04052         return dst;
04053     }
04054 
04055     if (RSTRING_LEN(rs) == 0) {
04056         rsptr = "\n\n";
04057         rslen = 2;
04058         rspara = 1;
04059     } else {
04060         rsptr = RSTRING_PTR(rs);
04061         rslen = RSTRING_LEN(rs);
04062         rspara = 0;
04063     }
04064 
04065     if (rspara) {
04066         gzreader_skip_linebreaks(gz);
04067     }
04068 
04069     while (gz->z.buf_filled < rslen) {
04070         if (ZSTREAM_IS_FINISHED(&gz->z)) {
04071             if (gz->z.buf_filled > 0) gz->lineno++;
04072             return gzfile_read(gz, rslen);
04073         }
04074         gzfile_read_more(gz);
04075     }
04076 
04077     p = RSTRING_PTR(gz->z.buf);
04078     n = rslen;
04079     for (;;) {
04080         long filled;
04081         if (n > gz->z.buf_filled) {
04082             if (ZSTREAM_IS_FINISHED(&gz->z)) break;
04083             gzfile_read_more(gz);
04084             p = RSTRING_PTR(gz->z.buf) + n - rslen;
04085         }
04086         if (!rspara) rscheck(rsptr, rslen, rs);
04087         filled = gz->z.buf_filled;
04088         if (limit > 0 && filled >= limit) {
04089             filled = limit;
04090         }
04091         res = memchr(p, rsptr[0], (filled - n + 1));
04092         if (!res) {
04093             n = filled;
04094             if (limit > 0 && filled >= limit) break;
04095             n++;
04096         } else {
04097             n += (long)(res - p);
04098             p = res;
04099             if (rslen == 1 || memcmp(p, rsptr, rslen) == 0) break;
04100             p++, n++;
04101         }
04102     }
04103     if (maxlen > 1 && n == limit && (gz->z.buf_filled > n || !ZSTREAM_IS_FINISHED(&gz->z))) {
04104         n = gzreader_charboundary(gz, n);
04105     }
04106 
04107     gz->lineno++;
04108     dst = gzfile_read(gz, n);
04109     if (NIL_P(dst)) return dst;
04110     if (rspara) {
04111         gzreader_skip_linebreaks(gz);
04112     }
04113 
04114     return gzfile_newstr(gz, dst);
04115 }
04116 
04117 /*
04118  * Document-method: Zlib::GzipReader#gets
04119  *
04120  * See Zlib::GzipReader documentation for a description.
04121  */
04122 static VALUE
04123 rb_gzreader_gets(int argc, VALUE *argv, VALUE obj)
04124 {
04125     VALUE dst;
04126     dst = gzreader_gets(argc, argv, obj);
04127     if (!NIL_P(dst)) {
04128         rb_lastline_set(dst);
04129     }
04130     return dst;
04131 }
04132 
04133 /*
04134  * Document-method: Zlib::GzipReader#readline
04135  *
04136  * See Zlib::GzipReader documentation for a description.
04137  */
04138 static VALUE
04139 rb_gzreader_readline(int argc, VALUE *argv, VALUE obj)
04140 {
04141     VALUE dst;
04142     dst = rb_gzreader_gets(argc, argv, obj);
04143     if (NIL_P(dst)) {
04144         rb_raise(rb_eEOFError, "end of file reached");
04145     }
04146     return dst;
04147 }
04148 
04149 /*
04150  * Document-method: Zlib::GzipReader#each
04151  *
04152  * See Zlib::GzipReader documentation for a description.
04153  */
04154 static VALUE
04155 rb_gzreader_each(int argc, VALUE *argv, VALUE obj)
04156 {
04157     VALUE str;
04158 
04159     RETURN_ENUMERATOR(obj, 0, 0);
04160 
04161     while (!NIL_P(str = gzreader_gets(argc, argv, obj))) {
04162         rb_yield(str);
04163     }
04164     return obj;
04165 }
04166 
04167 /*
04168  * Document-method: Zlib::GzipReader#lines
04169  *
04170  *  This is a deprecated alias for <code>each_line</code>.
04171  */
04172 static VALUE
04173 rb_gzreader_lines(int argc, VALUE *argv, VALUE obj)
04174 {
04175     rb_warn("Zlib::GzipReader#lines is deprecated; use #each_line instead");
04176     if (!rb_block_given_p())
04177         return rb_enumeratorize(obj, ID2SYM(rb_intern("each_line")), argc, argv);
04178     return rb_gzreader_each(argc, argv, obj);
04179 }
04180 
04181 /*
04182  * Document-method: Zlib::GzipReader#readlines
04183  *
04184  * See Zlib::GzipReader documentation for a description.
04185  */
04186 static VALUE
04187 rb_gzreader_readlines(int argc, VALUE *argv, VALUE obj)
04188 {
04189     VALUE str, dst;
04190     dst = rb_ary_new();
04191     while (!NIL_P(str = gzreader_gets(argc, argv, obj))) {
04192         rb_ary_push(dst, str);
04193     }
04194     return dst;
04195 }
04196 
04197 #endif /* GZIP_SUPPORT */
04198 
04199 void
04200 Init_zlib()
04201 {
04202     VALUE mZlib, cZStream, cDeflate, cInflate;
04203 #if GZIP_SUPPORT
04204     VALUE cGzipFile, cGzipWriter, cGzipReader;
04205 #endif
04206 
04207     mZlib = rb_define_module("Zlib");
04208 
04209     id_dictionaries = rb_intern("@dictionaries");
04210 
04211     cZError = rb_define_class_under(mZlib, "Error", rb_eStandardError);
04212     cStreamEnd    = rb_define_class_under(mZlib, "StreamEnd", cZError);
04213     cNeedDict     = rb_define_class_under(mZlib, "NeedDict", cZError);
04214     cDataError    = rb_define_class_under(mZlib, "DataError", cZError);
04215     cStreamError  = rb_define_class_under(mZlib, "StreamError", cZError);
04216     cMemError     = rb_define_class_under(mZlib, "MemError", cZError);
04217     cBufError     = rb_define_class_under(mZlib, "BufError", cZError);
04218     cVersionError = rb_define_class_under(mZlib, "VersionError", cZError);
04219 
04220     rb_define_module_function(mZlib, "zlib_version", rb_zlib_version, 0);
04221     rb_define_module_function(mZlib, "adler32", rb_zlib_adler32, -1);
04222     rb_define_module_function(mZlib, "adler32_combine", rb_zlib_adler32_combine, 3);
04223     rb_define_module_function(mZlib, "crc32", rb_zlib_crc32, -1);
04224     rb_define_module_function(mZlib, "crc32_combine", rb_zlib_crc32_combine, 3);
04225     rb_define_module_function(mZlib, "crc_table", rb_zlib_crc_table, 0);
04226 
04227     /* The Ruby/zlib version string. */
04228     rb_define_const(mZlib, "VERSION", rb_str_new2(RUBY_ZLIB_VERSION));
04229     /*  The string which represents the version of zlib.h */
04230     rb_define_const(mZlib, "ZLIB_VERSION", rb_str_new2(ZLIB_VERSION));
04231 
04232     cZStream = rb_define_class_under(mZlib, "ZStream", rb_cObject);
04233     rb_undef_alloc_func(cZStream);
04234     rb_define_method(cZStream, "avail_out", rb_zstream_avail_out, 0);
04235     rb_define_method(cZStream, "avail_out=", rb_zstream_set_avail_out, 1);
04236     rb_define_method(cZStream, "avail_in", rb_zstream_avail_in, 0);
04237     rb_define_method(cZStream, "total_in", rb_zstream_total_in, 0);
04238     rb_define_method(cZStream, "total_out", rb_zstream_total_out, 0);
04239     rb_define_method(cZStream, "data_type", rb_zstream_data_type, 0);
04240     rb_define_method(cZStream, "adler", rb_zstream_adler, 0);
04241     rb_define_method(cZStream, "finished?", rb_zstream_finished_p, 0);
04242     rb_define_method(cZStream, "stream_end?", rb_zstream_finished_p, 0);
04243     rb_define_method(cZStream, "closed?", rb_zstream_closed_p, 0);
04244     rb_define_method(cZStream, "ended?", rb_zstream_closed_p, 0);
04245     rb_define_method(cZStream, "close", rb_zstream_end, 0);
04246     rb_define_method(cZStream, "end", rb_zstream_end, 0);
04247     rb_define_method(cZStream, "reset", rb_zstream_reset, 0);
04248     rb_define_method(cZStream, "finish", rb_zstream_finish, 0);
04249     rb_define_method(cZStream, "flush_next_in", rb_zstream_flush_next_in, 0);
04250     rb_define_method(cZStream, "flush_next_out", rb_zstream_flush_next_out, 0);
04251 
04252     /* Represents binary data as guessed by deflate.
04253      *
04254      * See Zlib::Deflate#data_type. */
04255     rb_define_const(mZlib, "BINARY", INT2FIX(Z_BINARY));
04256 
04257     /* Represents text data as guessed by deflate.
04258      *
04259      * NOTE: The underlying constant Z_ASCII was deprecated in favor of Z_TEXT
04260      * in zlib 1.2.2.  New applications should not use this constant.
04261      *
04262      * See Zlib::Deflate#data_type. */
04263     rb_define_const(mZlib, "ASCII", INT2FIX(Z_ASCII));
04264 
04265 #ifdef Z_TEXT
04266     /* Represents text data as guessed by deflate.
04267      *
04268      * See Zlib::Deflate#data_type. */
04269     rb_define_const(mZlib, "TEXT", INT2FIX(Z_TEXT));
04270 #endif
04271 
04272     /* Represents an unknown data type as guessed by deflate.
04273      *
04274      * See Zlib::Deflate#data_type. */
04275     rb_define_const(mZlib, "UNKNOWN", INT2FIX(Z_UNKNOWN));
04276 
04277     cDeflate = rb_define_class_under(mZlib, "Deflate", cZStream);
04278     rb_define_singleton_method(cDeflate, "deflate", rb_deflate_s_deflate, -1);
04279     rb_define_singleton_method(mZlib, "deflate", rb_deflate_s_deflate, -1);
04280     rb_define_alloc_func(cDeflate, rb_deflate_s_allocate);
04281     rb_define_method(cDeflate, "initialize", rb_deflate_initialize, -1);
04282     rb_define_method(cDeflate, "initialize_copy", rb_deflate_init_copy, 1);
04283     rb_define_method(cDeflate, "deflate", rb_deflate_deflate, -1);
04284     rb_define_method(cDeflate, "<<", rb_deflate_addstr, 1);
04285     rb_define_method(cDeflate, "flush", rb_deflate_flush, -1);
04286     rb_define_method(cDeflate, "params", rb_deflate_params, 2);
04287     rb_define_method(cDeflate, "set_dictionary", rb_deflate_set_dictionary, 1);
04288 
04289     cInflate = rb_define_class_under(mZlib, "Inflate", cZStream);
04290     rb_define_singleton_method(cInflate, "inflate", rb_inflate_s_inflate, 1);
04291     rb_define_singleton_method(mZlib, "inflate", rb_inflate_s_inflate, 1);
04292     rb_define_alloc_func(cInflate, rb_inflate_s_allocate);
04293     rb_define_method(cInflate, "initialize", rb_inflate_initialize, -1);
04294     rb_define_method(cInflate, "add_dictionary", rb_inflate_add_dictionary, 1);
04295     rb_define_method(cInflate, "inflate", rb_inflate_inflate, 1);
04296     rb_define_method(cInflate, "<<", rb_inflate_addstr, 1);
04297     rb_define_method(cInflate, "sync", rb_inflate_sync, 1);
04298     rb_define_method(cInflate, "sync_point?", rb_inflate_sync_point_p, 0);
04299     rb_define_method(cInflate, "set_dictionary", rb_inflate_set_dictionary, 1);
04300 
04301     /* No compression, passes through data untouched.  Use this for appending
04302      * pre-compressed data to a deflate stream.
04303      */
04304     rb_define_const(mZlib, "NO_COMPRESSION", INT2FIX(Z_NO_COMPRESSION));
04305     /* Fastest compression level, but with with lowest space savings. */
04306     rb_define_const(mZlib, "BEST_SPEED", INT2FIX(Z_BEST_SPEED));
04307     /* Slowest compression level, but with the best space savings. */
04308     rb_define_const(mZlib, "BEST_COMPRESSION", INT2FIX(Z_BEST_COMPRESSION));
04309     /* Default compression level which is a good trade-off between space and
04310      * time
04311      */
04312     rb_define_const(mZlib, "DEFAULT_COMPRESSION",
04313                     INT2FIX(Z_DEFAULT_COMPRESSION));
04314 
04315     /* Deflate strategy for data produced by a filter (or predictor). The
04316      * effect of FILTERED is to force more Huffman codes and less string
04317      * matching; it is somewhat intermediate between DEFAULT_STRATEGY and
04318      * HUFFMAN_ONLY. Filtered data consists mostly of small values with a
04319      * somewhat random distribution.
04320      */
04321     rb_define_const(mZlib, "FILTERED", INT2FIX(Z_FILTERED));
04322 
04323     /* Deflate strategy which uses Huffman codes only (no string matching). */
04324     rb_define_const(mZlib, "HUFFMAN_ONLY", INT2FIX(Z_HUFFMAN_ONLY));
04325 
04326 #ifdef Z_RLE
04327     /* Deflate compression strategy designed to be almost as fast as
04328      * HUFFMAN_ONLY, but give better compression for PNG image data.
04329      */
04330     rb_define_const(mZlib, "RLE", INT2FIX(Z_RLE));
04331 #endif
04332 
04333 #ifdef Z_FIXED
04334     /* Deflate strategy which prevents the use of dynamic Huffman codes,
04335      * allowing for a simpler decoder for specialized applications.
04336      */
04337     rb_define_const(mZlib, "FIXED", INT2FIX(Z_FIXED));
04338 #endif
04339 
04340     /* Default deflate strategy which is used for normal data. */
04341     rb_define_const(mZlib, "DEFAULT_STRATEGY", INT2FIX(Z_DEFAULT_STRATEGY));
04342 
04343     /* The maximum size of the zlib history buffer.  Note that zlib allows
04344      * larger values to enable different inflate modes.  See Zlib::Inflate.new
04345      * for details.
04346      */
04347     rb_define_const(mZlib, "MAX_WBITS", INT2FIX(MAX_WBITS));
04348 
04349     /* The default memory level for allocating zlib deflate compression state.
04350      */
04351     rb_define_const(mZlib, "DEF_MEM_LEVEL", INT2FIX(DEF_MEM_LEVEL));
04352 
04353     /* The maximum memory level for allocating zlib deflate compression state.
04354      */
04355     rb_define_const(mZlib, "MAX_MEM_LEVEL", INT2FIX(MAX_MEM_LEVEL));
04356 
04357     /* NO_FLUSH is the default flush method and allows deflate to decide how
04358      * much data to accumulate before producing output in order to maximize
04359      * compression.
04360      */
04361     rb_define_const(mZlib, "NO_FLUSH", INT2FIX(Z_NO_FLUSH));
04362 
04363     /* The SYNC_FLUSH method flushes all pending output to the output buffer
04364      * and the output is aligned on a byte boundary. Flushing may degrade
04365      * compression so it should be used only when necessary, such as at a
04366      * request or response boundary for a network stream.
04367      */
04368     rb_define_const(mZlib, "SYNC_FLUSH", INT2FIX(Z_SYNC_FLUSH));
04369 
04370     /* Flushes all output as with SYNC_FLUSH, and the compression state is
04371      * reset so that decompression can restart from this point if previous
04372      * compressed data has been damaged or if random access is desired. Like
04373      * SYNC_FLUSH, using FULL_FLUSH too often can seriously degrade
04374      * compression.
04375      */
04376     rb_define_const(mZlib, "FULL_FLUSH", INT2FIX(Z_FULL_FLUSH));
04377 
04378     /* Processes all pending input and flushes pending output. */
04379     rb_define_const(mZlib, "FINISH", INT2FIX(Z_FINISH));
04380 
04381 #if GZIP_SUPPORT
04382     id_write = rb_intern("write");
04383     id_read = rb_intern("read");
04384     id_readpartial = rb_intern("readpartial");
04385     id_flush = rb_intern("flush");
04386     id_seek = rb_intern("seek");
04387     id_close = rb_intern("close");
04388     id_path = rb_intern("path");
04389     id_input = rb_intern("@input");
04390 
04391     cGzipFile = rb_define_class_under(mZlib, "GzipFile", rb_cObject);
04392     cGzError = rb_define_class_under(cGzipFile, "Error", cZError);
04393 
04394     /* input gzipped string */
04395     rb_define_attr(cGzError, "input", 1, 0);
04396     rb_define_method(cGzError, "inspect", gzfile_error_inspect, 0);
04397 
04398     cNoFooter = rb_define_class_under(cGzipFile, "NoFooter", cGzError);
04399     cCRCError = rb_define_class_under(cGzipFile, "CRCError", cGzError);
04400     cLengthError = rb_define_class_under(cGzipFile,"LengthError",cGzError);
04401 
04402     cGzipWriter = rb_define_class_under(mZlib, "GzipWriter", cGzipFile);
04403     cGzipReader = rb_define_class_under(mZlib, "GzipReader", cGzipFile);
04404     rb_include_module(cGzipReader, rb_mEnumerable);
04405 
04406     rb_define_singleton_method(cGzipFile, "wrap", rb_gzfile_s_wrap, -1);
04407     rb_undef_alloc_func(cGzipFile);
04408     rb_define_method(cGzipFile, "to_io", rb_gzfile_to_io, 0);
04409     rb_define_method(cGzipFile, "crc", rb_gzfile_crc, 0);
04410     rb_define_method(cGzipFile, "mtime", rb_gzfile_mtime, 0);
04411     rb_define_method(cGzipFile, "level", rb_gzfile_level, 0);
04412     rb_define_method(cGzipFile, "os_code", rb_gzfile_os_code, 0);
04413     rb_define_method(cGzipFile, "orig_name", rb_gzfile_orig_name, 0);
04414     rb_define_method(cGzipFile, "comment", rb_gzfile_comment, 0);
04415     rb_define_method(cGzipReader, "lineno", rb_gzfile_lineno, 0);
04416     rb_define_method(cGzipReader, "lineno=", rb_gzfile_set_lineno, 1);
04417     rb_define_method(cGzipWriter, "mtime=", rb_gzfile_set_mtime, 1);
04418     rb_define_method(cGzipWriter, "orig_name=", rb_gzfile_set_orig_name,1);
04419     rb_define_method(cGzipWriter, "comment=", rb_gzfile_set_comment, 1);
04420     rb_define_method(cGzipFile, "close", rb_gzfile_close, 0);
04421     rb_define_method(cGzipFile, "finish", rb_gzfile_finish, 0);
04422     rb_define_method(cGzipFile, "closed?", rb_gzfile_closed_p, 0);
04423     rb_define_method(cGzipReader, "eof", rb_gzfile_eof_p, 0);
04424     rb_define_method(cGzipReader, "eof?", rb_gzfile_eof_p, 0);
04425     rb_define_method(cGzipFile, "sync", rb_gzfile_sync, 0);
04426     rb_define_method(cGzipFile, "sync=", rb_gzfile_set_sync, 1);
04427     rb_define_method(cGzipReader, "pos", rb_gzfile_total_out, 0);
04428     rb_define_method(cGzipWriter, "pos", rb_gzfile_total_in, 0);
04429     rb_define_method(cGzipReader, "tell", rb_gzfile_total_out, 0);
04430     rb_define_method(cGzipWriter, "tell", rb_gzfile_total_in, 0);
04431 
04432     rb_define_singleton_method(cGzipWriter, "open", rb_gzwriter_s_open,-1);
04433     rb_define_alloc_func(cGzipWriter, rb_gzwriter_s_allocate);
04434     rb_define_method(cGzipWriter, "initialize", rb_gzwriter_initialize,-1);
04435     rb_define_method(cGzipWriter, "flush", rb_gzwriter_flush, -1);
04436     rb_define_method(cGzipWriter, "write", rb_gzwriter_write, 1);
04437     rb_define_method(cGzipWriter, "putc", rb_gzwriter_putc, 1);
04438     rb_define_method(cGzipWriter, "<<", rb_gzwriter_addstr, 1);
04439     rb_define_method(cGzipWriter, "printf", rb_gzwriter_printf, -1);
04440     rb_define_method(cGzipWriter, "print", rb_gzwriter_print, -1);
04441     rb_define_method(cGzipWriter, "puts", rb_gzwriter_puts, -1);
04442 
04443     rb_define_singleton_method(cGzipReader, "open", rb_gzreader_s_open,-1);
04444     rb_define_alloc_func(cGzipReader, rb_gzreader_s_allocate);
04445     rb_define_method(cGzipReader, "initialize", rb_gzreader_initialize, -1);
04446     rb_define_method(cGzipReader, "rewind", rb_gzreader_rewind, 0);
04447     rb_define_method(cGzipReader, "unused", rb_gzreader_unused, 0);
04448     rb_define_method(cGzipReader, "read", rb_gzreader_read, -1);
04449     rb_define_method(cGzipReader, "readpartial", rb_gzreader_readpartial, -1);
04450     rb_define_method(cGzipReader, "getc", rb_gzreader_getc, 0);
04451     rb_define_method(cGzipReader, "getbyte", rb_gzreader_getbyte, 0);
04452     rb_define_method(cGzipReader, "readchar", rb_gzreader_readchar, 0);
04453     rb_define_method(cGzipReader, "readbyte", rb_gzreader_readbyte, 0);
04454     rb_define_method(cGzipReader, "each_byte", rb_gzreader_each_byte, 0);
04455     rb_define_method(cGzipReader, "each_char", rb_gzreader_each_char, 0);
04456     rb_define_method(cGzipReader, "bytes", rb_gzreader_bytes, 0);
04457     rb_define_method(cGzipReader, "ungetc", rb_gzreader_ungetc, 1);
04458     rb_define_method(cGzipReader, "ungetbyte", rb_gzreader_ungetbyte, 1);
04459     rb_define_method(cGzipReader, "gets", rb_gzreader_gets, -1);
04460     rb_define_method(cGzipReader, "readline", rb_gzreader_readline, -1);
04461     rb_define_method(cGzipReader, "each", rb_gzreader_each, -1);
04462     rb_define_method(cGzipReader, "each_line", rb_gzreader_each, -1);
04463     rb_define_method(cGzipReader, "lines", rb_gzreader_lines, -1);
04464     rb_define_method(cGzipReader, "readlines", rb_gzreader_readlines, -1);
04465 
04466     /* The OS code of current host */
04467     rb_define_const(mZlib, "OS_CODE", INT2FIX(OS_CODE));
04468     /* OS code for MSDOS hosts */
04469     rb_define_const(mZlib, "OS_MSDOS", INT2FIX(OS_MSDOS));
04470     /* OS code for Amiga hosts */
04471     rb_define_const(mZlib, "OS_AMIGA", INT2FIX(OS_AMIGA));
04472     /* OS code for VMS hosts */
04473     rb_define_const(mZlib, "OS_VMS", INT2FIX(OS_VMS));
04474     /* OS code for UNIX hosts */
04475     rb_define_const(mZlib, "OS_UNIX", INT2FIX(OS_UNIX));
04476     /* OS code for Atari hosts */
04477     rb_define_const(mZlib, "OS_ATARI", INT2FIX(OS_ATARI));
04478     /* OS code for OS2 hosts */
04479     rb_define_const(mZlib, "OS_OS2", INT2FIX(OS_OS2));
04480     /* OS code for Mac OS hosts */
04481     rb_define_const(mZlib, "OS_MACOS", INT2FIX(OS_MACOS));
04482     /* OS code for TOPS-20 hosts */
04483     rb_define_const(mZlib, "OS_TOPS20", INT2FIX(OS_TOPS20));
04484     /* OS code for Win32 hosts */
04485     rb_define_const(mZlib, "OS_WIN32", INT2FIX(OS_WIN32));
04486     /* OS code for VM OS hosts */
04487     rb_define_const(mZlib, "OS_VMCMS", INT2FIX(OS_VMCMS));
04488     /* OS code for Z-System hosts */
04489     rb_define_const(mZlib, "OS_ZSYSTEM", INT2FIX(OS_ZSYSTEM));
04490     /* OS code for CP/M hosts */
04491     rb_define_const(mZlib, "OS_CPM", INT2FIX(OS_CPM));
04492     /* OS code for QDOS hosts */
04493     rb_define_const(mZlib, "OS_QDOS", INT2FIX(OS_QDOS));
04494     /* OS code for RISC OS hosts */
04495     rb_define_const(mZlib, "OS_RISCOS", INT2FIX(OS_RISCOS));
04496     /* OS code for unknown hosts */
04497     rb_define_const(mZlib, "OS_UNKNOWN", INT2FIX(OS_UNKNOWN));
04498 
04499 #endif /* GZIP_SUPPORT */
04500 }
04501 
04502 /* Document error classes. */
04503 
04504 /*
04505  * Document-class: Zlib::Error
04506  *
04507  * The superclass for all exceptions raised by Ruby/zlib.
04508  *
04509  * The following exceptions are defined as subclasses of Zlib::Error. These
04510  * exceptions are raised when zlib library functions return with an error
04511  * status.
04512  *
04513  * - Zlib::StreamEnd
04514  * - Zlib::NeedDict
04515  * - Zlib::DataError
04516  * - Zlib::StreamError
04517  * - Zlib::MemError
04518  * - Zlib::BufError
04519  * - Zlib::VersionError
04520  *
04521  */
04522 
04523 /*
04524  * Document-class: Zlib::StreamEnd
04525  *
04526  * Subclass of Zlib::Error
04527  *
04528  * When zlib returns a Z_STREAM_END
04529  * is return if the end of the compressed data has been reached
04530  * and all uncompressed out put has been produced.
04531  *
04532  */
04533 
04534 /*
04535  * Document-class: Zlib::NeedDict
04536  *
04537  * Subclass of Zlib::Error
04538  *
04539  * When zlib returns a Z_NEED_DICT
04540  * if a preset dictionary is needed at this point.
04541  *
04542  * Used by Zlib::Inflate.inflate and <tt>Zlib.inflate</tt>
04543  */
04544 
04545 /*
04546  * Document-class: Zlib::VersionError
04547  *
04548  * Subclass of Zlib::Error
04549  *
04550  * When zlib returns a Z_VERSION_ERROR,
04551  * usually if the zlib library version is incompatible with the
04552  * version assumed by the caller.
04553  *
04554  */
04555 
04556 /*
04557  * Document-class: Zlib::MemError
04558  *
04559  * Subclass of Zlib::Error
04560  *
04561  * When zlib returns a Z_MEM_ERROR,
04562  * usually if there was not enough memory.
04563  *
04564  */
04565 
04566 /*
04567  * Document-class: Zlib::StreamError
04568  *
04569  * Subclass of Zlib::Error
04570  *
04571  * When zlib returns a Z_STREAM_ERROR,
04572  * usually if the stream state was inconsistent.
04573  *
04574  */
04575 
04576 /*
04577  * Document-class: Zlib::BufError
04578  *
04579  * Subclass of Zlib::Error when zlib returns a Z_BUF_ERROR.
04580  *
04581  * Usually if no progress is possible.
04582  *
04583  */
04584 
04585 /*
04586  * Document-class: Zlib::DataError
04587  *
04588  * Subclass of Zlib::Error when zlib returns a Z_DATA_ERROR.
04589  *
04590  * Usually if a stream was prematurely freed.
04591  *
04592  */
04593 
04594 /*
04595  * Document-class: Zlib::GzipFile::Error
04596  *
04597  * Base class of errors that occur when processing GZIP files.
04598  */
04599 
04600 /*
04601  * Document-class: Zlib::GzipFile::NoFooter
04602  *
04603  * Raised when gzip file footer is not found.
04604  */
04605 
04606 /*
04607  * Document-class: Zlib::GzipFile::CRCError
04608  *
04609  * Raised when the CRC checksum recorded in gzip file footer is not equivalent
04610  * to the CRC checksum of the actual uncompressed data.
04611  */
04612 
04613 /*
04614  * Document-class: Zlib::GzipFile::LengthError
04615  *
04616  * Raised when the data length recorded in the gzip file footer is not equivalent
04617  * to the length of the actual uncompressed data.
04618  */
04619 
04620 
04621