ext/sdbm/init.c

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00001 /************************************************
00002 
00003   sdbminit.c -
00004 
00005   $Author: nobu $
00006   created at: Fri May  7 08:34:24 JST 1999
00007 
00008   Copyright (C) 1995-2001 Yukihiro Matsumoto
00009 
00010 ************************************************/
00011 
00012 #include "ruby.h"
00013 
00014 #include "sdbm.h"
00015 #include <fcntl.h>
00016 #include <errno.h>
00017 
00018 /*
00019  * Document-class: SDBM
00020  *
00021  * SDBM provides a simple file-based key-value store, which can only store
00022  * String keys and values.
00023  *
00024  * Note that Ruby comes with the source code for SDBM, while the DBM and GDBM
00025  * standard libraries rely on external libraries and headers.
00026  *
00027  * === Examples
00028  *
00029  * Insert values:
00030  *
00031  *   require 'sdbm'
00032  *
00033  *   SDBM.open 'my_database' do |db|
00034  *     db['apple'] = 'fruit'
00035  *     db['pear'] = 'fruit'
00036  *     db['carrot'] = 'vegetable'
00037  *     db['tomato'] = 'vegetable'
00038  *   end
00039  *
00040  * Bulk update:
00041  *
00042  *   require 'sdbm'
00043  *
00044  *   SDBM.open 'my_database' do |db|
00045  *     db.update('peach' => 'fruit', 'tomato' => 'fruit')
00046  *   end
00047  *
00048  * Retrieve values:
00049  *
00050  *   require 'sdbm'
00051  *
00052  *   SDBM.open 'my_database' do |db|
00053  *     db.each do |key, value|
00054  *       puts "Key: #{key}, Value: #{value}"
00055  *     end
00056  *   end
00057  *
00058  * Outputs:
00059  *
00060  *   Key: apple, Value: fruit
00061  *   Key: pear, Value: fruit
00062  *   Key: carrot, Value: vegetable
00063  *   Key: peach, Value: fruit
00064  *   Key: tomato, Value: fruit
00065  */
00066 
00067 static VALUE rb_cDBM, rb_eDBMError;
00068 
00069 struct dbmdata {
00070     int  di_size;
00071     DBM *di_dbm;
00072 };
00073 
00074 static void
00075 closed_sdbm()
00076 {
00077     rb_raise(rb_eDBMError, "closed SDBM file");
00078 }
00079 
00080 #define GetDBM(obj, dbmp) {\
00081     Data_Get_Struct((obj), struct dbmdata, (dbmp));\
00082     if ((dbmp) == 0) closed_sdbm();\
00083     if ((dbmp)->di_dbm == 0) closed_sdbm();\
00084 }
00085 
00086 #define GetDBM2(obj, data, dbm) {\
00087     GetDBM((obj), (data));\
00088     (dbm) = dbmp->di_dbm;\
00089 }
00090 
00091 static void
00092 free_sdbm(struct dbmdata *dbmp)
00093 {
00094 
00095     if (dbmp->di_dbm) sdbm_close(dbmp->di_dbm);
00096     ruby_xfree(dbmp);
00097 }
00098 
00099 /*
00100  * call-seq:
00101  *   sdbm.close -> nil
00102  *
00103  * Closes the database file.
00104  *
00105  * Raises SDBMError if the database is already closed.
00106  */
00107 static VALUE
00108 fsdbm_close(VALUE obj)
00109 {
00110     struct dbmdata *dbmp;
00111 
00112     GetDBM(obj, dbmp);
00113     sdbm_close(dbmp->di_dbm);
00114     dbmp->di_dbm = 0;
00115 
00116     return Qnil;
00117 }
00118 
00119 /*
00120  * call-seq:
00121  *   sdbm.closed? -> true or false
00122  *
00123  * Returns +true+ if the database is closed.
00124  */
00125 static VALUE
00126 fsdbm_closed(VALUE obj)
00127 {
00128     struct dbmdata *dbmp;
00129 
00130     Data_Get_Struct(obj, struct dbmdata, dbmp);
00131     if (dbmp == 0)
00132         return Qtrue;
00133     if (dbmp->di_dbm == 0)
00134         return Qtrue;
00135 
00136     return Qfalse;
00137 }
00138 
00139 static VALUE
00140 fsdbm_alloc(VALUE klass)
00141 {
00142     return Data_Wrap_Struct(klass, 0, free_sdbm, 0);
00143 }
00144 /*
00145  * call-seq:
00146  *   SDBM.new(filename, mode = 0666)
00147  *
00148  * Creates a new database handle by opening the given +filename+. SDBM actually
00149  * uses two physical files, with extensions '.dir' and '.pag'. These extensions
00150  * will automatically be appended to the +filename+.
00151  *
00152  * If the file does not exist, a new file will be created using the given
00153  * +mode+, unless +mode+ is explicitly set to nil. In the latter case, no
00154  * database will be created.
00155  *
00156  * If the file exists, it will be opened in read/write mode. If this fails, it
00157  * will be opened in read-only mode.
00158  */
00159 static VALUE
00160 fsdbm_initialize(int argc, VALUE *argv, VALUE obj)
00161 {
00162     volatile VALUE file;
00163     VALUE vmode;
00164     DBM *dbm;
00165     struct dbmdata *dbmp;
00166     int mode;
00167 
00168     if (rb_scan_args(argc, argv, "11", &file, &vmode) == 1) {
00169         mode = 0666;            /* default value */
00170     }
00171     else if (NIL_P(vmode)) {
00172         mode = -1;              /* return nil if DB not exist */
00173     }
00174     else {
00175         mode = NUM2INT(vmode);
00176     }
00177     FilePathValue(file);
00178 
00179     dbm = 0;
00180     if (mode >= 0)
00181         dbm = sdbm_open(RSTRING_PTR(file), O_RDWR|O_CREAT, mode);
00182     if (!dbm)
00183         dbm = sdbm_open(RSTRING_PTR(file), O_RDWR, 0);
00184     if (!dbm)
00185         dbm = sdbm_open(RSTRING_PTR(file), O_RDONLY, 0);
00186 
00187     if (!dbm) {
00188         if (mode == -1) return Qnil;
00189         rb_sys_fail_str(file);
00190     }
00191 
00192     dbmp = ALLOC(struct dbmdata);
00193     DATA_PTR(obj) = dbmp;
00194     dbmp->di_dbm = dbm;
00195     dbmp->di_size = -1;
00196 
00197     return obj;
00198 }
00199 
00200 /*
00201  * call-seq:
00202  *   SDBM.open(filename, mode = 0666)
00203  *   SDBM.open(filename, mode = 0666) { |sdbm| ... }
00204  *
00205  * If called without a block, this is the same as SDBM.new.
00206  *
00207  * If a block is given, the new database will be passed to the block and
00208  * will be safely closed after the block has executed.
00209  *
00210  * Example:
00211  *
00212  *     require 'sdbm'
00213  *
00214  *     SDBM.open('my_database') do |db|
00215  *       db['hello'] = 'world'
00216  *     end
00217  */
00218 static VALUE
00219 fsdbm_s_open(int argc, VALUE *argv, VALUE klass)
00220 {
00221     VALUE obj = Data_Wrap_Struct(klass, 0, free_sdbm, 0);
00222 
00223     if (NIL_P(fsdbm_initialize(argc, argv, obj))) {
00224         return Qnil;
00225     }
00226 
00227     if (rb_block_given_p()) {
00228         return rb_ensure(rb_yield, obj, fsdbm_close, obj);
00229     }
00230 
00231     return obj;
00232 }
00233 
00234 static VALUE
00235 fsdbm_fetch(VALUE obj, VALUE keystr, VALUE ifnone)
00236 {
00237     datum key, value;
00238     struct dbmdata *dbmp;
00239     DBM *dbm;
00240 
00241     ExportStringValue(keystr);
00242     key.dptr = RSTRING_PTR(keystr);
00243     key.dsize = RSTRING_LENINT(keystr);
00244 
00245     GetDBM2(obj, dbmp, dbm);
00246     value = sdbm_fetch(dbm, key);
00247     if (value.dptr == 0) {
00248         if (ifnone == Qnil && rb_block_given_p())
00249             return rb_yield(rb_external_str_new(key.dptr, key.dsize));
00250         return ifnone;
00251     }
00252     return rb_external_str_new(value.dptr, value.dsize);
00253 }
00254 
00255 /*
00256  * call-seq:
00257  *   sdbm[key] -> value or nil
00258  *
00259  * Returns the +value+ in the database associated with the given +key+ string.
00260  *
00261  * If no value is found, returns +nil+.
00262  */
00263 static VALUE
00264 fsdbm_aref(VALUE obj, VALUE keystr)
00265 {
00266     return fsdbm_fetch(obj, keystr, Qnil);
00267 }
00268 
00269 /*
00270  * call-seq:
00271  *   sdbm.fetch(key) -> value or nil
00272  *   sdbm.fetch(key) { |key| ... }
00273  *
00274  * Returns the +value+ in the database associated with the given +key+ string.
00275  *
00276  * If a block is provided, the block will be called when there is no
00277  * +value+ associated with the given +key+. The +key+ will be passed in as an
00278  * argument to the block.
00279  *
00280  * If no block is provided and no value is associated with the given +key+,
00281  * then an IndexError will be raised.
00282  */
00283 static VALUE
00284 fsdbm_fetch_m(int argc, VALUE *argv, VALUE obj)
00285 {
00286     VALUE keystr, valstr, ifnone;
00287 
00288     rb_scan_args(argc, argv, "11", &keystr, &ifnone);
00289     valstr = fsdbm_fetch(obj, keystr, ifnone);
00290     if (argc == 1 && !rb_block_given_p() && NIL_P(valstr))
00291         rb_raise(rb_eIndexError, "key not found");
00292 
00293     return valstr;
00294 }
00295 
00296 /*
00297  * call-seq:
00298  *   sdbm.key(value) -> key
00299  *
00300  * Returns the +key+ associated with the given +value+. If more than one
00301  * +key+ corresponds to the given +value+, then the first key to be found
00302  * will be returned. If no keys are found, +nil+ will be returned.
00303  */
00304 static VALUE
00305 fsdbm_key(VALUE obj, VALUE valstr)
00306 {
00307     datum key, val;
00308     struct dbmdata *dbmp;
00309     DBM *dbm;
00310 
00311     ExportStringValue(valstr);
00312     val.dptr = RSTRING_PTR(valstr);
00313     val.dsize = RSTRING_LENINT(valstr);
00314 
00315     GetDBM2(obj, dbmp, dbm);
00316     for (key = sdbm_firstkey(dbm); key.dptr; key = sdbm_nextkey(dbm)) {
00317         val = sdbm_fetch(dbm, key);
00318         if (val.dsize == RSTRING_LEN(valstr) &&
00319             memcmp(val.dptr, RSTRING_PTR(valstr), val.dsize) == 0)
00320             return rb_external_str_new(key.dptr, key.dsize);
00321     }
00322     return Qnil;
00323 }
00324 
00325 /*
00326  * :nodoc:
00327  */
00328 static VALUE
00329 fsdbm_index(VALUE hash, VALUE value)
00330 {
00331     rb_warn("SDBM#index is deprecated; use SDBM#key");
00332     return fsdbm_key(hash, value);
00333 }
00334 
00335 /* call-seq:
00336  *   sdbm.select { |key, value| ... } -> Array
00337  *
00338  * Returns a new Array of key-value pairs for which the block returns +true+.
00339  *
00340  * Example:
00341  *
00342  *    require 'sdbm'
00343  *
00344  *    SDBM.open 'my_database' do |db|
00345  *      db['apple'] = 'fruit'
00346  *      db['pear'] = 'fruit'
00347  *      db['spinach'] = 'vegetable'
00348  *
00349  *      veggies = db.select do |key, value|
00350  *        value == 'vegetable'
00351  *      end #=> [["apple", "fruit"], ["pear", "fruit"]]
00352  *    end
00353  */
00354 static VALUE
00355 fsdbm_select(VALUE obj)
00356 {
00357     VALUE new = rb_ary_new();
00358     datum key, val;
00359     DBM *dbm;
00360     struct dbmdata *dbmp;
00361 
00362     GetDBM2(obj, dbmp, dbm);
00363     for (key = sdbm_firstkey(dbm); key.dptr; key = sdbm_nextkey(dbm)) {
00364         VALUE assoc, v;
00365         val = sdbm_fetch(dbm, key);
00366         assoc = rb_assoc_new(rb_external_str_new(key.dptr, key.dsize),
00367                              rb_external_str_new(val.dptr, val.dsize));
00368         v = rb_yield(assoc);
00369         if (RTEST(v)) {
00370             rb_ary_push(new, assoc);
00371         }
00372         GetDBM2(obj, dbmp, dbm);
00373     }
00374 
00375     return new;
00376 }
00377 
00378 /* call-seq:
00379  *   sdbm.values_at(key, ...) -> Array
00380  *
00381  * Returns an Array of values corresponding to the given keys.
00382  */
00383 static VALUE
00384 fsdbm_values_at(int argc, VALUE *argv, VALUE obj)
00385 {
00386     VALUE new = rb_ary_new2(argc);
00387     int i;
00388 
00389     for (i=0; i<argc; i++) {
00390         rb_ary_push(new, fsdbm_fetch(obj, argv[i], Qnil));
00391     }
00392 
00393     return new;
00394 }
00395 
00396 static void
00397 fdbm_modify(VALUE obj)
00398 {
00399     if (OBJ_FROZEN(obj)) rb_error_frozen("SDBM");
00400 }
00401 
00402 /*
00403  * call-seq:
00404  *   sdbm.delete(key) -> value or nil
00405  *   sdbm.delete(key) { |key, value| ... }
00406  *
00407  * Deletes the key-value pair corresponding to the given +key+. If the
00408  * +key+ exists, the deleted value will be returned, otherwise +nil+.
00409  *
00410  * If a block is provided, the deleted +key+ and +value+ will be passed to
00411  * the block as arguments. If the +key+ does not exist in the database, the
00412  * value will be +nil+.
00413  */
00414 static VALUE
00415 fsdbm_delete(VALUE obj, VALUE keystr)
00416 {
00417     datum key, value;
00418     struct dbmdata *dbmp;
00419     DBM *dbm;
00420     VALUE valstr;
00421 
00422     fdbm_modify(obj);
00423     ExportStringValue(keystr);
00424     key.dptr = RSTRING_PTR(keystr);
00425     key.dsize = RSTRING_LENINT(keystr);
00426 
00427     GetDBM2(obj, dbmp, dbm);
00428     dbmp->di_size = -1;
00429 
00430     value = sdbm_fetch(dbm, key);
00431     if (value.dptr == 0) {
00432         if (rb_block_given_p()) return rb_yield(keystr);
00433         return Qnil;
00434     }
00435 
00436     /* need to save value before sdbm_delete() */
00437     valstr = rb_external_str_new(value.dptr, value.dsize);
00438 
00439     if (sdbm_delete(dbm, key)) {
00440         dbmp->di_size = -1;
00441         rb_raise(rb_eDBMError, "dbm_delete failed");
00442     }
00443     else if (dbmp->di_size >= 0) {
00444         dbmp->di_size--;
00445     }
00446     return valstr;
00447 }
00448 
00449 /*
00450  * call-seq:
00451  *   sdbm.shift -> Array or nil
00452  *
00453  * Removes a key-value pair from the database and returns them as an
00454  * Array. If the database is empty, returns +nil+.
00455  */
00456 static VALUE
00457 fsdbm_shift(VALUE obj)
00458 {
00459     datum key, val;
00460     struct dbmdata *dbmp;
00461     DBM *dbm;
00462     VALUE keystr, valstr;
00463 
00464     fdbm_modify(obj);
00465     GetDBM2(obj, dbmp, dbm);
00466     key = sdbm_firstkey(dbm);
00467     if (!key.dptr) return Qnil;
00468     val = sdbm_fetch(dbm, key);
00469     keystr = rb_external_str_new(key.dptr, key.dsize);
00470     valstr = rb_external_str_new(val.dptr, val.dsize);
00471     sdbm_delete(dbm, key);
00472     if (dbmp->di_size >= 0) {
00473         dbmp->di_size--;
00474     }
00475 
00476     return rb_assoc_new(keystr, valstr);
00477 }
00478 
00479 /*
00480  * call-seq:
00481  *   sdbm.delete_if { |key, value| ... } -> self
00482  *   sdbm.reject!   { |key, value| ... } -> self
00483  *
00484  * Iterates over the key-value pairs in the database, deleting those for
00485  * which the block returns +true+.
00486  */
00487 static VALUE
00488 fsdbm_delete_if(VALUE obj)
00489 {
00490     datum key, val;
00491     struct dbmdata *dbmp;
00492     DBM *dbm;
00493     VALUE keystr, valstr;
00494     VALUE ret, ary = rb_ary_new();
00495     int i, status = 0, n;
00496 
00497     fdbm_modify(obj);
00498     GetDBM2(obj, dbmp, dbm);
00499     n = dbmp->di_size;
00500     dbmp->di_size = -1;
00501     for (key = sdbm_firstkey(dbm); key.dptr; key = sdbm_nextkey(dbm)) {
00502         val = sdbm_fetch(dbm, key);
00503         keystr = rb_external_str_new(key.dptr, key.dsize);
00504         valstr = rb_external_str_new(val.dptr, val.dsize);
00505         ret = rb_protect(rb_yield, rb_assoc_new(rb_str_dup(keystr), valstr), &status);
00506         if (status != 0) break;
00507         if (RTEST(ret)) rb_ary_push(ary, keystr);
00508         GetDBM2(obj, dbmp, dbm);
00509     }
00510 
00511     for (i = 0; i < RARRAY_LEN(ary); i++) {
00512         keystr = RARRAY_PTR(ary)[i];
00513         ExportStringValue(keystr);
00514         key.dptr = RSTRING_PTR(keystr);
00515         key.dsize = RSTRING_LENINT(keystr);
00516         if (sdbm_delete(dbm, key)) {
00517             rb_raise(rb_eDBMError, "sdbm_delete failed");
00518         }
00519     }
00520     if (status) rb_jump_tag(status);
00521     if (n > 0) dbmp->di_size = n - RARRAY_LENINT(ary);
00522 
00523     return obj;
00524 }
00525 
00526 /*
00527  * call-seq:
00528  *   sdbm.clear -> self
00529  *
00530  * Deletes all data from the database.
00531  */
00532 static VALUE
00533 fsdbm_clear(VALUE obj)
00534 {
00535     datum key;
00536     struct dbmdata *dbmp;
00537     DBM *dbm;
00538 
00539     fdbm_modify(obj);
00540     GetDBM2(obj, dbmp, dbm);
00541     dbmp->di_size = -1;
00542     while (key = sdbm_firstkey(dbm), key.dptr) {
00543         if (sdbm_delete(dbm, key)) {
00544             rb_raise(rb_eDBMError, "sdbm_delete failed");
00545         }
00546     }
00547     dbmp->di_size = 0;
00548 
00549     return obj;
00550 }
00551 
00552 /*
00553  * call-seq:
00554  *   sdbm.invert -> Hash
00555  *
00556  * Returns a Hash in which the key-value pairs have been inverted.
00557  *
00558  * Example:
00559  *
00560  *   require 'sdbm'
00561  *
00562  *   SDBM.open 'my_database' do |db|
00563  *     db.update('apple' => 'fruit', 'spinach' => 'vegetable')
00564  *
00565  *     db.invert  #=> {"fruit" => "apple", "vegetable" => "spinach"}
00566  *   end
00567  */
00568 static VALUE
00569 fsdbm_invert(VALUE obj)
00570 {
00571     datum key, val;
00572     struct dbmdata *dbmp;
00573     DBM *dbm;
00574     VALUE keystr, valstr;
00575     VALUE hash = rb_hash_new();
00576 
00577     GetDBM2(obj, dbmp, dbm);
00578     for (key = sdbm_firstkey(dbm); key.dptr; key = sdbm_nextkey(dbm)) {
00579         val = sdbm_fetch(dbm, key);
00580         keystr = rb_external_str_new(key.dptr, key.dsize);
00581         valstr = rb_external_str_new(val.dptr, val.dsize);
00582         rb_hash_aset(hash, valstr, keystr);
00583     }
00584     return hash;
00585 }
00586 
00587 /*
00588  * call-seq:
00589  *   sdbm[key] = value      -> value
00590  *   sdbm.store(key, value) -> value
00591  *
00592  * Stores a new +value+ in the database with the given +key+ as an index.
00593  *
00594  * If the +key+ already exists, this will update the +value+ associated with
00595  * the +key+.
00596  *
00597  * Returns the given +value+.
00598  */
00599 static VALUE
00600 fsdbm_store(VALUE obj, VALUE keystr, VALUE valstr)
00601 {
00602     datum key, val;
00603     struct dbmdata *dbmp;
00604     DBM *dbm;
00605 
00606     if (valstr == Qnil) {
00607         fsdbm_delete(obj, keystr);
00608         return Qnil;
00609     }
00610 
00611     fdbm_modify(obj);
00612     ExportStringValue(keystr);
00613     ExportStringValue(valstr);
00614 
00615     key.dptr = RSTRING_PTR(keystr);
00616     key.dsize = RSTRING_LENINT(keystr);
00617 
00618     val.dptr = RSTRING_PTR(valstr);
00619     val.dsize = RSTRING_LENINT(valstr);
00620 
00621     GetDBM2(obj, dbmp, dbm);
00622     dbmp->di_size = -1;
00623     if (sdbm_store(dbm, key, val, DBM_REPLACE)) {
00624 #ifdef HAVE_DBM_CLAERERR
00625         sdbm_clearerr(dbm);
00626 #endif
00627         if (errno == EPERM) rb_sys_fail(0);
00628         rb_raise(rb_eDBMError, "sdbm_store failed");
00629     }
00630 
00631     return valstr;
00632 }
00633 
00634 static VALUE
00635 update_i(RB_BLOCK_CALL_FUNC_ARGLIST(pair, dbm))
00636 {
00637     Check_Type(pair, T_ARRAY);
00638     if (RARRAY_LEN(pair) < 2) {
00639         rb_raise(rb_eArgError, "pair must be [key, value]");
00640     }
00641     fsdbm_store(dbm, RARRAY_PTR(pair)[0], RARRAY_PTR(pair)[1]);
00642     return Qnil;
00643 }
00644 
00645 /*
00646  * call-seq:
00647  *   sdbm.update(pairs) -> self
00648  *
00649  * Insert or update key-value pairs.
00650  *
00651  * This method will work with any object which implements an each_pair
00652  * method, such as a Hash.
00653  */
00654 static VALUE
00655 fsdbm_update(VALUE obj, VALUE other)
00656 {
00657     rb_block_call(other, rb_intern("each_pair"), 0, 0, update_i, obj);
00658     return obj;
00659 }
00660 
00661 /*
00662  * call-seq:
00663  *   sdbm.replace(pairs) -> self
00664  *
00665  * Empties the database, then inserts the given key-value pairs.
00666  *
00667  * This method will work with any object which implements an each_pair
00668  * method, such as a Hash.
00669  */
00670 static VALUE
00671 fsdbm_replace(VALUE obj, VALUE other)
00672 {
00673     fsdbm_clear(obj);
00674     rb_block_call(other, rb_intern("each_pair"), 0, 0, update_i, obj);
00675     return obj;
00676 }
00677 
00678 /*
00679  * call-seq:
00680  *   sdbm.length -> integer
00681  *   sdbm.size -> integer
00682  *
00683  * Returns the number of keys in the database.
00684  */
00685 static VALUE
00686 fsdbm_length(VALUE obj)
00687 {
00688     datum key;
00689     struct dbmdata *dbmp;
00690     DBM *dbm;
00691     int i = 0;
00692 
00693     GetDBM2(obj, dbmp, dbm);
00694     if (dbmp->di_size > 0) return INT2FIX(dbmp->di_size);
00695 
00696     for (key = sdbm_firstkey(dbm); key.dptr; key = sdbm_nextkey(dbm)) {
00697         i++;
00698     }
00699     dbmp->di_size = i;
00700 
00701     return INT2FIX(i);
00702 }
00703 
00704 /*
00705  * call-seq:
00706  *   sdbm.empty? -> true or false
00707  *
00708  * Returns +true+ if the database is empty.
00709  */
00710 static VALUE
00711 fsdbm_empty_p(VALUE obj)
00712 {
00713     datum key;
00714     struct dbmdata *dbmp;
00715     DBM *dbm;
00716 
00717     GetDBM(obj, dbmp);
00718     if (dbmp->di_size < 0) {
00719         dbm = dbmp->di_dbm;
00720 
00721         for (key = sdbm_firstkey(dbm); key.dptr; key = sdbm_nextkey(dbm)) {
00722             return Qfalse;
00723         }
00724     }
00725     else {
00726         if (dbmp->di_size)
00727             return Qfalse;
00728     }
00729     return Qtrue;
00730 }
00731 
00732 /*
00733  * call-seq:
00734  *   sdbm.each_value
00735  *   sdbm.each_value { |value| ... }
00736  *
00737  * Iterates over each +value+ in the database.
00738  *
00739  * If no block is given, returns an Enumerator.
00740  */
00741 static VALUE
00742 fsdbm_each_value(VALUE obj)
00743 {
00744     datum key, val;
00745     struct dbmdata *dbmp;
00746     DBM *dbm;
00747 
00748     RETURN_ENUMERATOR(obj, 0, 0);
00749 
00750     GetDBM2(obj, dbmp, dbm);
00751     for (key = sdbm_firstkey(dbm); key.dptr; key = sdbm_nextkey(dbm)) {
00752         val = sdbm_fetch(dbm, key);
00753         rb_yield(rb_external_str_new(val.dptr, val.dsize));
00754         GetDBM2(obj, dbmp, dbm);
00755     }
00756     return obj;
00757 }
00758 
00759 /*
00760  * call-seq:
00761  *   sdbm.each_key
00762  *   sdbm.each_key { |key| ... }
00763  *
00764  * Iterates over each +key+ in the database.
00765  *
00766  * If no block is given, returns an Enumerator.
00767  */
00768 static VALUE
00769 fsdbm_each_key(VALUE obj)
00770 {
00771     datum key;
00772     struct dbmdata *dbmp;
00773     DBM *dbm;
00774 
00775     RETURN_ENUMERATOR(obj, 0, 0);
00776 
00777     GetDBM2(obj, dbmp, dbm);
00778     for (key = sdbm_firstkey(dbm); key.dptr; key = sdbm_nextkey(dbm)) {
00779         rb_yield(rb_external_str_new(key.dptr, key.dsize));
00780         GetDBM2(obj, dbmp, dbm);
00781     }
00782     return obj;
00783 }
00784 
00785 /*
00786  * call-seq:
00787  *   sdbm.each
00788  *   sdbm.each { |key, value| ... }
00789  *   sdbm.each_pair
00790  *   sdbm.each_pair { |key, value| ... }
00791  *
00792  * Iterates over each key-value pair in the database.
00793  *
00794  * If no block is given, returns an Enumerator.
00795  */
00796 static VALUE
00797 fsdbm_each_pair(VALUE obj)
00798 {
00799     datum key, val;
00800     DBM *dbm;
00801     struct dbmdata *dbmp;
00802     VALUE keystr, valstr;
00803 
00804     RETURN_ENUMERATOR(obj, 0, 0);
00805 
00806     GetDBM2(obj, dbmp, dbm);
00807     for (key = sdbm_firstkey(dbm); key.dptr; key = sdbm_nextkey(dbm)) {
00808         val = sdbm_fetch(dbm, key);
00809         keystr = rb_external_str_new(key.dptr, key.dsize);
00810         valstr = rb_external_str_new(val.dptr, val.dsize);
00811         rb_yield(rb_assoc_new(keystr, valstr));
00812         GetDBM2(obj, dbmp, dbm);
00813     }
00814 
00815     return obj;
00816 }
00817 
00818 /*
00819  * call-seq:
00820  *   sdbm.keys -> Array
00821  *
00822  * Returns a new Array containing the keys in the database.
00823  */
00824 static VALUE
00825 fsdbm_keys(VALUE obj)
00826 {
00827     datum key;
00828     struct dbmdata *dbmp;
00829     DBM *dbm;
00830     VALUE ary;
00831 
00832     GetDBM2(obj, dbmp, dbm);
00833     ary = rb_ary_new();
00834     for (key = sdbm_firstkey(dbm); key.dptr; key = sdbm_nextkey(dbm)) {
00835         rb_ary_push(ary, rb_external_str_new(key.dptr, key.dsize));
00836     }
00837 
00838     return ary;
00839 }
00840 
00841 /*
00842  * call-seq:
00843  *   sdbm.values -> Array
00844  *
00845  * Returns a new Array containing the values in the database.
00846  */
00847 static VALUE
00848 fsdbm_values(VALUE obj)
00849 {
00850     datum key, val;
00851     struct dbmdata *dbmp;
00852     DBM *dbm;
00853     VALUE ary;
00854 
00855     GetDBM2(obj, dbmp, dbm);
00856     ary = rb_ary_new();
00857     for (key = sdbm_firstkey(dbm); key.dptr; key = sdbm_nextkey(dbm)) {
00858         val = sdbm_fetch(dbm, key);
00859         rb_ary_push(ary, rb_external_str_new(val.dptr, val.dsize));
00860     }
00861 
00862     return ary;
00863 }
00864 
00865 /*
00866  * call-seq:
00867  *   sdbm.include?(key) -> true or false
00868  *   sdbm.key?(key) -> true or false
00869  *   sdbm.member?(key) -> true or false
00870  *   sdbm.has_key?(key) -> true or false
00871  *
00872  * Returns +true+ if the database contains the given +key+.
00873  */
00874 static VALUE
00875 fsdbm_has_key(VALUE obj, VALUE keystr)
00876 {
00877     datum key, val;
00878     struct dbmdata *dbmp;
00879     DBM *dbm;
00880 
00881     ExportStringValue(keystr);
00882     key.dptr = RSTRING_PTR(keystr);
00883     key.dsize = RSTRING_LENINT(keystr);
00884 
00885     GetDBM2(obj, dbmp, dbm);
00886     val = sdbm_fetch(dbm, key);
00887     if (val.dptr) return Qtrue;
00888     return Qfalse;
00889 }
00890 
00891 /*
00892  * call-seq:
00893  *   sdbm.value?(key) -> true or false
00894  *   sdbm.has_value?(key) -> true or false
00895  *
00896  * Returns +true+ if the database contains the given +value+.
00897  */
00898 static VALUE
00899 fsdbm_has_value(VALUE obj, VALUE valstr)
00900 {
00901     datum key, val;
00902     struct dbmdata *dbmp;
00903     DBM *dbm;
00904 
00905     ExportStringValue(valstr);
00906     val.dptr = RSTRING_PTR(valstr);
00907     val.dsize = RSTRING_LENINT(valstr);
00908 
00909     GetDBM2(obj, dbmp, dbm);
00910     for (key = sdbm_firstkey(dbm); key.dptr; key = sdbm_nextkey(dbm)) {
00911         val = sdbm_fetch(dbm, key);
00912         if (val.dsize == RSTRING_LENINT(valstr) &&
00913             memcmp(val.dptr, RSTRING_PTR(valstr), val.dsize) == 0)
00914             return Qtrue;
00915     }
00916     return Qfalse;
00917 }
00918 
00919 /*
00920  * call-seq:
00921  *   sdbm.to_a -> Array
00922  *
00923  * Returns a new Array containing each key-value pair in the database.
00924  *
00925  * Example:
00926  *
00927  *   require 'sdbm'
00928  *
00929  *   SDBM.open 'my_database' do |db|
00930  *     db.update('apple' => 'fruit', 'spinach' => 'vegetable')
00931  *
00932  *     db.to_a  #=> [["apple", "fruit"], ["spinach", "vegetable"]]
00933  *   end
00934  */
00935 static VALUE
00936 fsdbm_to_a(VALUE obj)
00937 {
00938     datum key, val;
00939     struct dbmdata *dbmp;
00940     DBM *dbm;
00941     VALUE ary;
00942 
00943     GetDBM2(obj, dbmp, dbm);
00944     ary = rb_ary_new();
00945     for (key = sdbm_firstkey(dbm); key.dptr; key = sdbm_nextkey(dbm)) {
00946         val = sdbm_fetch(dbm, key);
00947         rb_ary_push(ary, rb_assoc_new(rb_external_str_new(key.dptr, key.dsize),
00948                                       rb_external_str_new(val.dptr, val.dsize)));
00949     }
00950 
00951     return ary;
00952 }
00953 
00954 /*
00955  * call-seq:
00956  *   sdbm.to_hash -> Hash
00957  *
00958  * Returns a new Hash containing each key-value pair in the database.
00959  */
00960 static VALUE
00961 fsdbm_to_hash(VALUE obj)
00962 {
00963     datum key, val;
00964     struct dbmdata *dbmp;
00965     DBM *dbm;
00966     VALUE hash;
00967 
00968     GetDBM2(obj, dbmp, dbm);
00969     hash = rb_hash_new();
00970     for (key = sdbm_firstkey(dbm); key.dptr; key = sdbm_nextkey(dbm)) {
00971         val = sdbm_fetch(dbm, key);
00972         rb_hash_aset(hash, rb_external_str_new(key.dptr, key.dsize),
00973                            rb_external_str_new(val.dptr, val.dsize));
00974     }
00975 
00976     return hash;
00977 }
00978 
00979 /*
00980  * call-seq:
00981  *   sdbm.reject { |key, value| ... } -> Hash
00982  *
00983  * Creates a new Hash using the key-value pairs from the database, then
00984  * calls Hash#reject with the given block, which returns a Hash with
00985  * only the key-value pairs for which the block returns +false+.
00986  */
00987 static VALUE
00988 fsdbm_reject(VALUE obj)
00989 {
00990     return rb_hash_delete_if(fsdbm_to_hash(obj));
00991 }
00992 
00993 void
00994 Init_sdbm()
00995 {
00996     rb_cDBM = rb_define_class("SDBM", rb_cObject);
00997     rb_eDBMError = rb_define_class("SDBMError", rb_eStandardError);
00998     /* Document-class: SDBMError
00999      * Exception class used to return errors from the sdbm library.
01000      */
01001     rb_include_module(rb_cDBM, rb_mEnumerable);
01002 
01003     rb_define_alloc_func(rb_cDBM, fsdbm_alloc);
01004     rb_define_singleton_method(rb_cDBM, "open", fsdbm_s_open, -1);
01005 
01006     rb_define_method(rb_cDBM, "initialize", fsdbm_initialize, -1);
01007     rb_define_method(rb_cDBM, "close", fsdbm_close, 0);
01008     rb_define_method(rb_cDBM, "closed?", fsdbm_closed, 0);
01009     rb_define_method(rb_cDBM, "[]", fsdbm_aref, 1);
01010     rb_define_method(rb_cDBM, "fetch", fsdbm_fetch_m, -1);
01011     rb_define_method(rb_cDBM, "[]=", fsdbm_store, 2);
01012     rb_define_method(rb_cDBM, "store", fsdbm_store, 2);
01013     rb_define_method(rb_cDBM, "index",  fsdbm_index, 1);
01014     rb_define_method(rb_cDBM, "key",  fsdbm_key, 1);
01015     rb_define_method(rb_cDBM, "select",  fsdbm_select, 0);
01016     rb_define_method(rb_cDBM, "values_at",  fsdbm_values_at, -1);
01017     rb_define_method(rb_cDBM, "length", fsdbm_length, 0);
01018     rb_define_method(rb_cDBM, "size", fsdbm_length, 0);
01019     rb_define_method(rb_cDBM, "empty?", fsdbm_empty_p, 0);
01020     rb_define_method(rb_cDBM, "each", fsdbm_each_pair, 0);
01021     rb_define_method(rb_cDBM, "each_value", fsdbm_each_value, 0);
01022     rb_define_method(rb_cDBM, "each_key", fsdbm_each_key, 0);
01023     rb_define_method(rb_cDBM, "each_pair", fsdbm_each_pair, 0);
01024     rb_define_method(rb_cDBM, "keys", fsdbm_keys, 0);
01025     rb_define_method(rb_cDBM, "values", fsdbm_values, 0);
01026     rb_define_method(rb_cDBM, "shift", fsdbm_shift, 0);
01027     rb_define_method(rb_cDBM, "delete", fsdbm_delete, 1);
01028     rb_define_method(rb_cDBM, "delete_if", fsdbm_delete_if, 0);
01029     rb_define_method(rb_cDBM, "reject!", fsdbm_delete_if, 0);
01030     rb_define_method(rb_cDBM, "reject", fsdbm_reject, 0);
01031     rb_define_method(rb_cDBM, "clear", fsdbm_clear, 0);
01032     rb_define_method(rb_cDBM,"invert", fsdbm_invert, 0);
01033     rb_define_method(rb_cDBM,"update", fsdbm_update, 1);
01034     rb_define_method(rb_cDBM,"replace", fsdbm_replace, 1);
01035 
01036     rb_define_method(rb_cDBM, "has_key?", fsdbm_has_key, 1);
01037     rb_define_method(rb_cDBM, "include?", fsdbm_has_key, 1);
01038     rb_define_method(rb_cDBM, "key?", fsdbm_has_key, 1);
01039     rb_define_method(rb_cDBM, "member?", fsdbm_has_key, 1);
01040     rb_define_method(rb_cDBM, "has_value?", fsdbm_has_value, 1);
01041     rb_define_method(rb_cDBM, "value?", fsdbm_has_value, 1);
01042 
01043     rb_define_method(rb_cDBM, "to_a", fsdbm_to_a, 0);
01044     rb_define_method(rb_cDBM, "to_hash", fsdbm_to_hash, 0);
01045 }
01046 

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