3 use Test::More tests => 83;
5 BEGIN { use_ok(Imager => qw(:all :handy)) }
7 -d "testout" or mkdir "testout";
9 init_log("testout/t022double.log", 1);
11 use Imager::Test qw(image_bounds_checks test_colorf_gpix test_colorf_glin mask_tests);
13 use Imager::Color::Float;
15 my $im_g = Imager::i_img_double_new(100, 101, 1);
17 ok(Imager::i_img_getchannels($im_g) == 1,
18 "1 channel image channel count mismatch");
19 ok(Imager::i_img_getmask($im_g) & 1, "1 channel image bad mask");
20 ok(Imager::i_img_virtual($im_g) == 0,
21 "1 channel image thinks it is virtual");
22 my $double_bits = length(pack("d", 1)) * 8;
23 print "# $double_bits double bits\n";
24 ok(Imager::i_img_bits($im_g) == $double_bits,
25 "1 channel image has bits != $double_bits");
26 ok(Imager::i_img_type($im_g) == 0, "1 channel image isn't direct");
28 my @ginfo = i_img_info($im_g);
29 ok($ginfo[0] == 100, "1 channel image width incorrect");
30 ok($ginfo[1] == 101, "1 channel image height incorrect");
34 my $im_rgb = Imager::i_img_double_new(100, 101, 3);
36 ok(Imager::i_img_getchannels($im_rgb) == 3,
37 "3 channel image channel count mismatch");
38 ok((Imager::i_img_getmask($im_rgb) & 7) == 7, "3 channel image bad mask");
39 ok(Imager::i_img_bits($im_rgb) == $double_bits,
40 "3 channel image has bits != $double_bits");
41 ok(Imager::i_img_type($im_rgb) == 0, "3 channel image isn't direct");
43 my $redf = NCF(1, 0, 0);
44 my $greenf = NCF(0, 1, 0);
45 my $bluef = NCF(0, 0, 1);
49 Imager::i_plinf($im_rgb, 0, $y, ($redf) x 100);
53 test_colorf_gpix($im_rgb, 0, 0, $redf);
54 test_colorf_gpix($im_rgb, 99, 0, $redf);
55 test_colorf_gpix($im_rgb, 0, 100, $redf);
56 test_colorf_gpix($im_rgb, 99, 100, $redf);
57 test_colorf_glin($im_rgb, 0, 0, [ ($redf) x 100 ], 'sanity glin @0');
58 test_colorf_glin($im_rgb, 0, 100, [ ($redf) x 100 ], 'sanity glin @100');
60 Imager::i_plinf($im_rgb, 20, 1, ($greenf) x 60);
61 test_colorf_glin($im_rgb, 0, 1,
62 [ ($redf) x 20, ($greenf) x 60, ($redf) x 20 ],
66 my $ooimg = Imager->new(xsize=>200, ysize=>201, bits=>'double');
67 ok($ooimg, "couldn't make double image");
68 is($ooimg->bits, 'double', "oo didn't give double image");
69 ok(!$ooimg->is_bilevel, 'not monochrome');
71 # check that the image is copied correctly
72 my $oocopy = $ooimg->copy;
73 is($oocopy->bits, 'double', "oo copy didn't give double image");
75 ok(!Imager->new(xsize=>0, ysize=>1, bits=>'double'),
76 "fail making 0 width image");
77 cmp_ok(Imager->errstr, '=~', qr/Image sizes must be positive/,
78 "and correct message");
79 ok(!Imager->new(xsize=>1, ysize=>0, bits=>'double'),
80 "fail making 0 height image");
81 cmp_ok(Imager->errstr, '=~', qr/Image sizes must be positive/,
82 "and correct message");
83 ok(!Imager->new(xsize=>-1, ysize=>1, bits=>'double'),
84 "fail making -ve width image");
85 cmp_ok(Imager->errstr, '=~', qr/Image sizes must be positive/,
86 "and correct message");
87 ok(!Imager->new(xsize=>1, ysize=>-1, bits=>'double'),
88 "fail making -ve height image");
89 cmp_ok(Imager->errstr, '=~', qr/Image sizes must be positive/,
90 "and correct message");
91 ok(!Imager->new(xsize=>1, ysize=>1, bits=>'double', channels=>0),
92 "fail making 0 channel image");
93 cmp_ok(Imager->errstr, '=~', qr/channels must be between 1 and 4/,
94 "and correct message");
95 ok(!Imager->new(xsize=>1, ysize=>1, bits=>'double', channels=>5),
96 "fail making 5 channel image");
97 cmp_ok(Imager->errstr, '=~', qr/channels must be between 1 and 4/,
98 "and correct message");
101 # https://rt.cpan.org/Ticket/Display.html?id=8213
102 # check for handling of memory allocation of very large images
103 # only test this on 32-bit machines - on a 64-bit machine it may
104 # result in trying to allocate 4Gb of memory, which is unfriendly at
105 # least and may result in running out of memory, causing a different
110 $Config{intsize} == 4
111 or skip "don't want to allocate 4Gb", 8;
112 my $uint_range = 256 ** $Config{intsize};
113 my $dbl_size = $Config{doublesize} || 8;
114 my $dim1 = int(sqrt($uint_range/$dbl_size))+1;
116 my $im_b = Imager->new(xsize=>$dim1, ysize=>$dim1, channels=>1, bits=>'double');
117 is($im_b, undef, "integer overflow check - 1 channel");
119 $im_b = Imager->new(xisze=>$dim1, ysize=>1, channels=>1, bits=>'double');
120 ok($im_b, "but same width ok");
121 $im_b = Imager->new(xisze=>1, ysize=>$dim1, channels=>1, bits=>'double');
122 ok($im_b, "but same height ok");
123 cmp_ok(Imager->errstr, '=~', qr/integer overflow/,
124 "check the error message");
126 # do a similar test with a 3 channel image, so we're sure we catch
127 # the same case where the third dimension causes the overflow
128 my $dim3 = int(sqrt($uint_range / 3 / $dbl_size))+1;
130 $im_b = Imager->new(xsize=>$dim3, ysize=>$dim3, channels=>3, bits=>'double');
131 is($im_b, undef, "integer overflow check - 3 channel");
133 $im_b = Imager->new(xsize=>$dim3, ysize=>1, channels=>3, bits=>'double');
134 ok($im_b, "but same width ok");
135 $im_b = Imager->new(xsize=>1, ysize=>$dim3, channels=>3, bits=>'double');
136 ok($im_b, "but same height ok");
138 cmp_ok(Imager->errstr, '=~', qr/integer overflow/,
139 "check the error message");
143 { # check the channel mask function
145 my $im = Imager->new(xsize => 10, ysize=>10, bits=>'double');
151 my $im = Imager->new(xsize => 10, ysize=>10, bits=>'double');
152 image_bounds_checks($im);