annotate tests/automated/hash-table-tests.el @ 665:fdefd0186b75

[xemacs-hg @ 2001-09-20 06:28:42 by ben] The great integral types renaming. The purpose of this is to rationalize the names used for various integral types, so that they match their intended uses and follow consist conventions, and eliminate types that were not semantically different from each other. The conventions are: -- All integral types that measure quantities of anything are signed. Some people disagree vociferously with this, but their arguments are mostly theoretical, and are vastly outweighed by the practical headaches of mixing signed and unsigned values, and more importantly by the far increased likelihood of inadvertent bugs: Because of the broken "viral" nature of unsigned quantities in C (operations involving mixed signed/unsigned are done unsigned, when exactly the opposite is nearly always wanted), even a single error in declaring a quantity unsigned that should be signed, or even the even more subtle error of comparing signed and unsigned values and forgetting the necessary cast, can be catastrophic, as comparisons will yield wrong results. -Wsign-compare is turned on specifically to catch this, but this tends to result in a great number of warnings when mixing signed and unsigned, and the casts are annoying. More has been written on this elsewhere. -- All such quantity types just mentioned boil down to EMACS_INT, which is 32 bits on 32-bit machines and 64 bits on 64-bit machines. This is guaranteed to be the same size as Lisp objects of type `int', and (as far as I can tell) of size_t (unsigned!) and ssize_t. The only type below that is not an EMACS_INT is Hashcode, which is an unsigned value of the same size as EMACS_INT. -- Type names should be relatively short (no more than 10 characters or so), with the first letter capitalized and no underscores if they can at all be avoided. -- "count" == a zero-based measurement of some quantity. Includes sizes, offsets, and indexes. -- "bpos" == a one-based measurement of a position in a buffer. "Charbpos" and "Bytebpos" count text in the buffer, rather than bytes in memory; thus Bytebpos does not directly correspond to the memory representation. Use "Membpos" for this. -- "Char" refers to internal-format characters, not to the C type "char", which is really a byte. -- For the actual name changes, see the script below. I ran the following script to do the conversion. (NOTE: This script is idempotent. You can safely run it multiple times and it will not screw up previous results -- in fact, it will do nothing if nothing has changed. Thus, it can be run repeatedly as necessary to handle patches coming in from old workspaces, or old branches.) There are two tags, just before and just after the change: `pre-integral-type-rename' and `post-integral-type-rename'. When merging code from the main trunk into a branch, the best thing to do is first merge up to `pre-integral-type-rename', then apply the script and associated changes, then merge from `post-integral-type-change' to the present. (Alternatively, just do the merging in one operation; but you may then have a lot of conflicts needing to be resolved by hand.) Script `fixtypes.sh' follows: ----------------------------------- cut ------------------------------------ files="*.[ch] s/*.h m/*.h config.h.in ../configure.in Makefile.in.in ../lib-src/*.[ch] ../lwlib/*.[ch]" gr Memory_Count Bytecount $files gr Lstream_Data_Count Bytecount $files gr Element_Count Elemcount $files gr Hash_Code Hashcode $files gr extcount bytecount $files gr bufpos charbpos $files gr bytind bytebpos $files gr memind membpos $files gr bufbyte intbyte $files gr Extcount Bytecount $files gr Bufpos Charbpos $files gr Bytind Bytebpos $files gr Memind Membpos $files gr Bufbyte Intbyte $files gr EXTCOUNT BYTECOUNT $files gr BUFPOS CHARBPOS $files gr BYTIND BYTEBPOS $files gr MEMIND MEMBPOS $files gr BUFBYTE INTBYTE $files gr MEMORY_COUNT BYTECOUNT $files gr LSTREAM_DATA_COUNT BYTECOUNT $files gr ELEMENT_COUNT ELEMCOUNT $files gr HASH_CODE HASHCODE $files ----------------------------------- cut ------------------------------------ `fixtypes.sh' is a Bourne-shell script; it uses 'gr': ----------------------------------- cut ------------------------------------ #!/bin/sh # Usage is like this: # gr FROM TO FILES ... # globally replace FROM with TO in FILES. FROM and TO are regular expressions. # backup files are stored in the `backup' directory. from="$1" to="$2" shift 2 echo ${1+"$@"} | xargs global-replace "s/$from/$to/g" ----------------------------------- cut ------------------------------------ `gr' in turn uses a Perl script to do its real work, `global-replace', which follows: ----------------------------------- cut ------------------------------------ : #-*- Perl -*- ### global-modify --- modify the contents of a file by a Perl expression ## Copyright (C) 1999 Martin Buchholz. ## Copyright (C) 2001 Ben Wing. ## Authors: Martin Buchholz <martin@xemacs.org>, Ben Wing <ben@xemacs.org> ## Maintainer: Ben Wing <ben@xemacs.org> ## Current Version: 1.0, May 5, 2001 # This program is free software; you can redistribute it and/or modify # it under the terms of the GNU General Public License as published by # the Free Software Foundation; either version 2, or (at your option) # any later version. # # This program is distributed in the hope that it will be useful, but # WITHOUT ANY WARRANTY; without even the implied warranty of # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU # General Public License for more details. # # You should have received a copy of the GNU General Public License # along with XEmacs; see the file COPYING. If not, write to the Free # Software Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA # 02111-1307, USA. eval 'exec perl -w -S $0 ${1+"$@"}' if 0; use strict; use FileHandle; use Carp; use Getopt::Long; use File::Basename; (my $myName = $0) =~ s@.*/@@; my $usage=" Usage: $myName [--help] [--backup-dir=DIR] [--line-mode] [--hunk-mode] PERLEXPR FILE ... Globally modify a file, either line by line or in one big hunk. Typical usage is like this: [with GNU print, GNU xargs: guaranteed to handle spaces, quotes, etc. in file names] find . -name '*.[ch]' -print0 | xargs -0 $0 's/\bCONST\b/const/g'\n [with non-GNU print, xargs] find . -name '*.[ch]' -print | xargs $0 's/\bCONST\b/const/g'\n The file is read in, either line by line (with --line-mode specified) or in one big hunk (with --hunk-mode specified; it's the default), and the Perl expression is then evalled with \$_ set to the line or hunk of text, including the terminating newline if there is one. It should destructively modify the value there, storing the changed result in \$_. Files in which any modifications are made are backed up to the directory specified using --backup-dir, or to `backup' by default. To disable this, use --backup-dir= with no argument. Hunk mode is the default because it is MUCH MUCH faster than line-by-line. Use line-by-line only when it matters, e.g. you want to do a replacement only once per line (the default without the `g' argument). Conversely, when using hunk mode, *ALWAYS* use `g'; otherwise, you will only make one replacement in the entire file! "; my %options = (); $Getopt::Long::ignorecase = 0; &GetOptions ( \%options, 'help', 'backup-dir=s', 'line-mode', 'hunk-mode', ); die $usage if $options{"help"} or @ARGV <= 1; my $code = shift; die $usage if grep (-d || ! -w, @ARGV); sub SafeOpen { open ((my $fh = new FileHandle), $_[0]); confess "Can't open $_[0]: $!" if ! defined $fh; return $fh; } sub SafeClose { close $_[0] or confess "Can't close $_[0]: $!"; } sub FileContents { my $fh = SafeOpen ("< $_[0]"); my $olddollarslash = $/; local $/ = undef; my $contents = <$fh>; $/ = $olddollarslash; return $contents; } sub WriteStringToFile { my $fh = SafeOpen ("> $_[0]"); binmode $fh; print $fh $_[1] or confess "$_[0]: $!\n"; SafeClose $fh; } foreach my $file (@ARGV) { my $changed_p = 0; my $new_contents = ""; if ($options{"line-mode"}) { my $fh = SafeOpen $file; while (<$fh>) { my $save_line = $_; eval $code; $changed_p = 1 if $save_line ne $_; $new_contents .= $_; } } else { my $orig_contents = $_ = FileContents $file; eval $code; if ($_ ne $orig_contents) { $changed_p = 1; $new_contents = $_; } } if ($changed_p) { my $backdir = $options{"backup-dir"}; $backdir = "backup" if !defined ($backdir); if ($backdir) { my ($name, $path, $suffix) = fileparse ($file, ""); my $backfulldir = $path . $backdir; my $backfile = "$backfulldir/$name"; mkdir $backfulldir, 0755 unless -d $backfulldir; print "modifying $file (original saved in $backfile)\n"; rename $file, $backfile; } WriteStringToFile ($file, $new_contents); } } ----------------------------------- cut ------------------------------------ In addition to those programs, I needed to fix up a few other things, particularly relating to the duplicate definitions of types, now that some types merged with others. Specifically: 1. in lisp.h, removed duplicate declarations of Bytecount. The changed code should now look like this: (In each code snippet below, the first and last lines are the same as the original, as are all lines outside of those lines. That allows you to locate the section to be replaced, and replace the stuff in that section, verifying that there isn't anything new added that would need to be kept.) --------------------------------- snip ------------------------------------- /* Counts of bytes or chars */ typedef EMACS_INT Bytecount; typedef EMACS_INT Charcount; /* Counts of elements */ typedef EMACS_INT Elemcount; /* Hash codes */ typedef unsigned long Hashcode; /* ------------------------ dynamic arrays ------------------- */ --------------------------------- snip ------------------------------------- 2. in lstream.h, removed duplicate declaration of Bytecount. Rewrote the comment about this type. The changed code should now look like this: --------------------------------- snip ------------------------------------- #endif /* The have been some arguments over the what the type should be that specifies a count of bytes in a data block to be written out or read in, using Lstream_read(), Lstream_write(), and related functions. Originally it was long, which worked fine; Martin "corrected" these to size_t and ssize_t on the grounds that this is theoretically cleaner and is in keeping with the C standards. Unfortunately, this practice is horribly error-prone due to design flaws in the way that mixed signed/unsigned arithmetic happens. In fact, by doing this change, Martin introduced a subtle but fatal error that caused the operation of sending large mail messages to the SMTP server under Windows to fail. By putting all values back to be signed, avoiding any signed/unsigned mixing, the bug immediately went away. The type then in use was Lstream_Data_Count, so that it be reverted cleanly if a vote came to that. Now it is Bytecount. Some earlier comments about why the type must be signed: This MUST BE SIGNED, since it also is used in functions that return the number of bytes actually read to or written from in an operation, and these functions can return -1 to signal error. Note that the standard Unix read() and write() functions define the count going in as a size_t, which is UNSIGNED, and the count going out as an ssize_t, which is SIGNED. This is a horrible design flaw. Not only is it highly likely to lead to logic errors when a -1 gets interpreted as a large positive number, but operations are bound to fail in all sorts of horrible ways when a number in the upper-half of the size_t range is passed in -- this number is unrepresentable as an ssize_t, so code that checks to see how many bytes are actually written (which is mandatory if you are dealing with certain types of devices) will get completely screwed up. --ben */ typedef enum lstream_buffering --------------------------------- snip ------------------------------------- 3. in dumper.c, there are four places, all inside of switch() statements, where XD_BYTECOUNT appears twice as a case tag. In each case, the two case blocks contain identical code, and you should *REMOVE THE SECOND* and leave the first.
author ben
date Thu, 20 Sep 2001 06:31:11 +0000
parents 576fb035e263
children db7c7e251153
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1 ;; Copyright (C) 1998 Free Software Foundation, Inc.
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2
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3 ;; Author: Martin Buchholz <martin@xemacs.org>
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4 ;; Maintainer: Martin Buchholz <martin@xemacs.org>
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5 ;; Created: 1998
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6 ;; Keywords: tests, database
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7
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8 ;; This file is part of XEmacs.
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9
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10 ;; XEmacs is free software; you can redistribute it and/or modify it
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11 ;; under the terms of the GNU General Public License as published by
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12 ;; the Free Software Foundation; either version 2, or (at your option)
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13 ;; any later version.
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14
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15 ;; XEmacs is distributed in the hope that it will be useful, but
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16 ;; WITHOUT ANY WARRANTY; without even the implied warranty of
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17 ;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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18 ;; General Public License for more details.
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19
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20 ;; You should have received a copy of the GNU General Public License
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21 ;; along with XEmacs; see the file COPYING. If not, write to the Free
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22 ;; Software Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA
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23 ;; 02111-1307, USA.
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24
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25 ;;; Synched up with: Not in FSF.
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26
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27 ;;; Commentary:
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28
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29 ;;; Test hash tables implementation
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30 ;;; See test-harness.el
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31
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32 (condition-case err
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33 (require 'test-harness)
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34 (file-error
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35 (when (and (boundp 'load-file-name) (stringp load-file-name))
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36 (push (file-name-directory load-file-name) load-path)
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37 (require 'test-harness))))
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38
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39 ;; Test all combinations of make-hash-table keywords
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40 (dolist (test '(eq eql equal))
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41 (dolist (size '(0 1 100))
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42 (dolist (rehash-size '(1.1 9.9))
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43 (dolist (rehash-threshold '(0.2 .9))
442
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44 (dolist (weakness '(nil key value key-or-value key-and-value))
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45 (dolist (data '(() (1 2) (1 2 3 4)))
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46 (let ((ht (make-hash-table
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47 :test test
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48 :size size
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49 :rehash-size rehash-size
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50 :rehash-threshold rehash-threshold
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51 :weakness weakness)))
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52 (Assert (equal ht (car (let ((print-readably t))
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53 (read-from-string (prin1-to-string ht))))))
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54 (Assert (eq test (hash-table-test ht)))
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55 (Assert (<= size (hash-table-size ht)))
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56 (Assert (eql rehash-size (hash-table-rehash-size ht)))
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57 (Assert (eql rehash-threshold (hash-table-rehash-threshold ht)))
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58 (Assert (eq weakness (hash-table-weakness ht))))))))))
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59
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60 (loop for (fun weakness) in '((make-hashtable nil)
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61 (make-weak-hashtable key-and-value)
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62 (make-key-weak-hashtable key)
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63 (make-value-weak-hashtable value))
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64 do (Assert (eq weakness (hash-table-weakness (funcall fun 10)))))
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65
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66 (loop for (type weakness) in '((non-weak nil)
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67 (weak key-and-value)
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68 (key-weak key)
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69 (value-weak value))
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70 do (Assert (equal (make-hash-table :type type)
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71 (make-hash-table :weakness weakness))))
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72
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73 (Assert (not (equal (make-hash-table :weakness nil)
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74 (make-hash-table :weakness t))))
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75
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76 (let ((ht (make-hash-table :size 20 :rehash-threshold .75 :test 'eq))
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77 (size 80))
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78 (Assert (hashtablep ht))
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79 (Assert (hash-table-p ht))
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80 (Assert (eq 'eq (hash-table-test ht)))
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81 (Assert (eq 'non-weak (hash-table-type ht)))
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82 (Assert (eq 'non-weak (hashtable-type ht)))
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83 (Assert (eq 'nil (hash-table-weakness ht)))
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84 (dotimes (j size)
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85 (puthash j (- j) ht)
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86 (Assert (eq (gethash j ht) (- j)))
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87 (Assert (= (hash-table-count ht) (1+ j)))
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88 (Assert (= (hashtable-fullness ht) (hash-table-count ht)))
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89 (puthash j j ht)
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90 (Assert (eq (gethash j ht 'foo) j))
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91 (Assert (= (hash-table-count ht) (1+ j)))
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92 (setf (gethash j ht) (- j))
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93 (Assert (eq (gethash j ht) (- j)))
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94 (Assert (= (hash-table-count ht) (1+ j))))
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95
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96 (clrhash ht)
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97 (Assert (= 0 (hash-table-count ht)))
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98
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99 (dotimes (j size)
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100 (puthash j (- j) ht)
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101 (Assert (eq (gethash j ht) (- j)))
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102 (Assert (= (hash-table-count ht) (1+ j))))
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103
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104 (let ((k-sum 0) (v-sum 0))
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105 (maphash #'(lambda (k v) (incf k-sum k) (incf v-sum v)) ht)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
106 (print k-sum)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
107 (print v-sum)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
108 (Assert (= k-sum (/ (* size (- size 1)) 2)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
109 (Assert (= v-sum (- k-sum))))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
110
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
111 (let ((count size))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
112 (dotimes (j size)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
113 (remhash j ht)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
114 (Assert (eq (gethash j ht) nil))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
115 (Assert (eq (gethash j ht 'foo) 'foo))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
116 (Assert (= (hash-table-count ht) (decf count))))))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
117
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
118 (let ((ht (make-hash-table :size 30 :rehash-threshold .25 :test 'equal))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
119 (size 70))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
120 (Assert (hashtablep ht))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
121 (Assert (hash-table-p ht))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
122 (Assert (>= (hash-table-size ht) (/ 30 .25)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
123 (Assert (eql .25 (hash-table-rehash-threshold ht)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
124 (Assert (eq 'equal (hash-table-test ht)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
125 (Assert (eq (hash-table-test ht) (hashtable-test-function ht)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
126 (Assert (eq 'non-weak (hash-table-type ht)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
127 (dotimes (j size)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
128 (puthash (int-to-string j) (- j) ht)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
129 (Assert (eq (gethash (int-to-string j) ht) (- j)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
130 (Assert (= (hash-table-count ht) (1+ j)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
131 (puthash (int-to-string j) j ht)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
132 (Assert (eq (gethash (int-to-string j) ht 'foo) j))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
133 (Assert (= (hash-table-count ht) (1+ j))))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
134
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
135 (clrhash ht)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
136 (Assert (= 0 (hash-table-count ht)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
137 (Assert (equal ht (copy-hash-table ht)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
138
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
139 (dotimes (j size)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
140 (setf (gethash (int-to-string j) ht) (- j))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
141 (Assert (eq (gethash (int-to-string j) ht) (- j)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
142 (Assert (= (hash-table-count ht) (1+ j))))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
143
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
144 (let ((count size))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
145 (dotimes (j size)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
146 (remhash (int-to-string j) ht)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
147 (Assert (eq (gethash (int-to-string j) ht) nil))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
148 (Assert (eq (gethash (int-to-string j) ht 'foo) 'foo))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
149 (Assert (= (hash-table-count ht) (decf count))))))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
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diff changeset
150
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
151 (let ((iterations 5) (one 1.0) (two 2.0))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
152 (flet ((check-copy
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
153 (ht)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
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diff changeset
154 (let ((copy-of-ht (copy-hash-table ht)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
155 (Assert (equal ht copy-of-ht))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
156 (Assert (not (eq ht copy-of-ht)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
157 (Assert (eq (hash-table-count ht) (hash-table-count copy-of-ht)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
158 (Assert (eq (hash-table-type ht) (hash-table-type copy-of-ht)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
159 (Assert (eq (hash-table-size ht) (hash-table-size copy-of-ht)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
160 (Assert (eql (hash-table-rehash-size ht) (hash-table-rehash-size copy-of-ht)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
161 (Assert (eql (hash-table-rehash-threshold ht) (hash-table-rehash-threshold copy-of-ht))))))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
162
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
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diff changeset
163 (let ((ht (make-hash-table :size 100 :rehash-threshold .6 :test 'eq)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
164 (dotimes (j iterations)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
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diff changeset
165 (puthash (+ one 0.0) t ht)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
166 (puthash (+ two 0.0) t ht)
444
576fb035e263 Import from CVS: tag r21-2-37
cvs
parents: 442
diff changeset
167 (puthash (cons 1 2) t ht)
576fb035e263 Import from CVS: tag r21-2-37
cvs
parents: 442
diff changeset
168 (puthash (cons 3 4) t ht))
428
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
169 (Assert (eq (hashtable-test-function ht) 'eq))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
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diff changeset
170 (Assert (eq (hash-table-test ht) 'eq))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
171 (Assert (= (* iterations 4) (hash-table-count ht)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
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diff changeset
172 (Assert (eq nil (gethash 1.0 ht)))
444
576fb035e263 Import from CVS: tag r21-2-37
cvs
parents: 442
diff changeset
173 (Assert (eq nil (gethash '(1 . 2) ht)))
428
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
174 (check-copy ht)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
175 )
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
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diff changeset
176
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
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diff changeset
177 (let ((ht (make-hash-table :size 100 :rehash-threshold .6 :test 'eql)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
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diff changeset
178 (dotimes (j iterations)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
179 (puthash (+ one 0.0) t ht)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
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diff changeset
180 (puthash (+ two 0.0) t ht)
444
576fb035e263 Import from CVS: tag r21-2-37
cvs
parents: 442
diff changeset
181 (puthash (cons 1 2) t ht)
576fb035e263 Import from CVS: tag r21-2-37
cvs
parents: 442
diff changeset
182 (puthash (cons 3 4) t ht))
428
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
183 (Assert (eq (hashtable-test-function ht) 'eql))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
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diff changeset
184 (Assert (eq (hash-table-test ht) 'eql))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
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diff changeset
185 (Assert (= (+ 2 (* 2 iterations)) (hash-table-count ht)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
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diff changeset
186 (Assert (eq t (gethash 1.0 ht)))
444
576fb035e263 Import from CVS: tag r21-2-37
cvs
parents: 442
diff changeset
187 (Assert (eq nil (gethash '(1 . 2) ht)))
428
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
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diff changeset
188 (check-copy ht)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
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diff changeset
189 )
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
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diff changeset
190
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
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diff changeset
191 (let ((ht (make-hash-table :size 100 :rehash-threshold .6 :test 'equal)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
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diff changeset
192 (dotimes (j iterations)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
193 (puthash (+ one 0.0) t ht)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
194 (puthash (+ two 0.0) t ht)
444
576fb035e263 Import from CVS: tag r21-2-37
cvs
parents: 442
diff changeset
195 (puthash (cons 1 2) t ht)
576fb035e263 Import from CVS: tag r21-2-37
cvs
parents: 442
diff changeset
196 (puthash (cons 3 4) t ht))
428
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
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diff changeset
197 (Assert (eq (hashtable-test-function ht) 'equal))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
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diff changeset
198 (Assert (eq (hash-table-test ht) 'equal))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
199 (Assert (= 4 (hash-table-count ht)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
200 (Assert (eq t (gethash 1.0 ht)))
444
576fb035e263 Import from CVS: tag r21-2-37
cvs
parents: 442
diff changeset
201 (Assert (eq t (gethash '(1 . 2) ht)))
428
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
202 (check-copy ht)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
203 )
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
204
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
205 ))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
206
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
207 ;; Test that weak hash-tables are properly handled
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
208 (loop for (weakness expected-count expected-k-sum expected-v-sum) in
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
209 '((nil 6 38 25)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
210 (t 3 6 9)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
211 (key 4 38 9)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
212 (value 4 6 25))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
213 do
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
214 (let* ((ht (make-hash-table :weakness weakness))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
215 (my-obj (cons ht ht)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
216 (garbage-collect)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
217 (puthash my-obj 1 ht)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
218 (puthash 2 my-obj ht)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
219 (puthash 4 8 ht)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
220 (puthash (cons ht ht) 16 ht)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
221 (puthash 32 (cons ht ht) ht)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
222 (puthash (cons ht ht) (cons ht ht) ht)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
223 (let ((k-sum 0) (v-sum 0))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
224 (maphash #'(lambda (k v)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
225 (when (integerp k) (incf k-sum k))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
226 (when (integerp v) (incf v-sum v)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
227 ht)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
228 (Assert (eq 38 k-sum))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
229 (Assert (eq 25 v-sum)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
230 (Assert (eq 6 (hash-table-count ht)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
231 (garbage-collect)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
232 (Assert (eq expected-count (hash-table-count ht)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
233 (let ((k-sum 0) (v-sum 0))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
234 (maphash #'(lambda (k v)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
235 (when (integerp k) (incf k-sum k))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
236 (when (integerp v) (incf v-sum v)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
237 ht)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
238 (Assert (eq expected-k-sum k-sum))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
239 (Assert (eq expected-v-sum v-sum)))))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
240
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
241 ;;; Test the ability to puthash and remhash the current elt of a maphash
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
242 (let ((ht (make-hash-table :test 'eql)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
243 (dotimes (j 100) (setf (gethash j ht) (- j)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
244 (maphash #'(lambda (k v)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
245 (if (oddp k) (remhash k ht) (puthash k (- v) ht)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
246 ht)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
247 (let ((k-sum 0) (v-sum 0))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
248 (maphash #'(lambda (k v) (incf k-sum k) (incf v-sum v)) ht)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
249 (Assert (= (* 50 49) k-sum))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
250 (Assert (= v-sum k-sum))))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
251
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
252 ;;; Test reading and printing of hash-table objects
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
253 (let ((h1 #s(hashtable weakness t rehash-size 3.0 rehash-threshold .2 test eq data (1 2 3 4)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
254 (h2 #s(hash-table weakness t rehash-size 3.0 rehash-threshold .2 test eq data (1 2 3 4)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
255 (h3 (make-hash-table :weakness t :rehash-size 3.0 :rehash-threshold .2 :test 'eq)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
256 (Assert (equal h1 h2))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
257 (Assert (not (equal h1 h3)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
258 (puthash 1 2 h3)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
259 (puthash 3 4 h3)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
260 (Assert (equal h1 h3)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
261
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
262 ;;; Testing equality of hash tables
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
263 (Assert (equal (make-hash-table :test 'eql :size 300 :rehash-threshold .9 :rehash-size 3.0)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
264 (make-hash-table :test 'eql)))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
265 (Assert (not (equal (make-hash-table :test 'eq)
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
266 (make-hash-table :test 'equal))))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
diff changeset
267 (let ((h1 (make-hash-table))
3ecd8885ac67 Import from CVS: tag r21-2-22
cvs
parents:
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268 (h2 (make-hash-table)))
3ecd8885ac67 Import from CVS: tag r21-2-22
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269 (Assert (equal h1 h2))
3ecd8885ac67 Import from CVS: tag r21-2-22
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270 (Assert (not (eq h1 h2)))
3ecd8885ac67 Import from CVS: tag r21-2-22
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271 (puthash 1 2 h1)
3ecd8885ac67 Import from CVS: tag r21-2-22
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272 (Assert (not (equal h1 h2)))
3ecd8885ac67 Import from CVS: tag r21-2-22
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273 (puthash 1 2 h2)
3ecd8885ac67 Import from CVS: tag r21-2-22
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274 (Assert (equal h1 h2))
3ecd8885ac67 Import from CVS: tag r21-2-22
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275 (puthash 1 3 h2)
3ecd8885ac67 Import from CVS: tag r21-2-22
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276 (Assert (not (equal h1 h2)))
3ecd8885ac67 Import from CVS: tag r21-2-22
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277 (clrhash h1)
3ecd8885ac67 Import from CVS: tag r21-2-22
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278 (Assert (not (equal h1 h2)))
3ecd8885ac67 Import from CVS: tag r21-2-22
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279 (clrhash h2)
3ecd8885ac67 Import from CVS: tag r21-2-22
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280 (Assert (equal h1 h2))
3ecd8885ac67 Import from CVS: tag r21-2-22
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281 )
3ecd8885ac67 Import from CVS: tag r21-2-22
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282
3ecd8885ac67 Import from CVS: tag r21-2-22
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283 ;;; Test sxhash
3ecd8885ac67 Import from CVS: tag r21-2-22
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284 (Assert (= (sxhash "foo") (sxhash "foo")))
3ecd8885ac67 Import from CVS: tag r21-2-22
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285 (Assert (= (sxhash '(1 2 3)) (sxhash '(1 2 3))))