1048 lines
37 KiB
C
1048 lines
37 KiB
C
/* PIKA - Photo and Image Kooker Application
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* a rebranding of The GNU Image Manipulation Program (created with heckimp)
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* A derived work which may be trivial. However, any changes may be (C)2023 by Aldercone Studio
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*
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* Original copyright, applying to most contents (license remains unchanged):
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* Copyright (C) 2009 Martin Nordholts
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <https://www.gnu.org/licenses/>.
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*/
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#include "config.h"
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#include <string.h>
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#ifdef HAVE_UNISTD_H
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#include <unistd.h>
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#endif
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#ifdef G_OS_WIN32
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#define STRICT
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#define WIN32_LEAN_AND_MEAN
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#include <windows.h>
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#include <io.h>
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#endif
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#include <gegl.h>
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#include <gtk/gtk.h>
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#include "libpikabase/pikabase.h"
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#include "widgets/widgets-types.h"
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#include "widgets/pikauimanager.h"
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#include "core/pika.h"
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#include "core/pikachannel.h"
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#include "core/pikachannel-select.h"
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#include "core/pikadrawable.h"
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#include "core/pikagrid.h"
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#include "core/pikagrouplayer.h"
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#include "core/pikaguide.h"
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#include "core/pikaimage.h"
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#include "core/pikaimage-grid.h"
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#include "core/pikaimage-guides.h"
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#include "core/pikaimage-sample-points.h"
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#include "core/pikalayer.h"
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#include "core/pikalayer-new.h"
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#include "core/pikasamplepoint.h"
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#include "core/pikaselection.h"
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#include "vectors/pikaanchor.h"
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#include "vectors/pikabezierstroke.h"
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#include "vectors/pikavectors.h"
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#include "plug-in/pikapluginmanager-file.h"
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#include "file/file-open.h"
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#include "file/file-save.h"
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#include "tests.h"
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#include "pika-app-test-utils.h"
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/* we continue to use LEGACY layers for testing, so we can use the
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* same test image for all tests, including loading
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* files/pika-2-6-file.xcf which can't have any non-LEGACY modes
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*/
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#define PIKA_MAINIMAGE_WIDTH 100
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#define PIKA_MAINIMAGE_HEIGHT 90
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#define PIKA_MAINIMAGE_TYPE PIKA_RGB
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#define PIKA_MAINIMAGE_PRECISION PIKA_PRECISION_U8_NON_LINEAR
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#define PIKA_MAINIMAGE_LAYER1_NAME "layer1"
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#define PIKA_MAINIMAGE_LAYER1_WIDTH 50
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#define PIKA_MAINIMAGE_LAYER1_HEIGHT 51
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#define PIKA_MAINIMAGE_LAYER1_FORMAT babl_format ("R'G'B'A u8")
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#define PIKA_MAINIMAGE_LAYER1_OPACITY PIKA_OPACITY_OPAQUE
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#define PIKA_MAINIMAGE_LAYER1_MODE PIKA_LAYER_MODE_NORMAL_LEGACY
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#define PIKA_MAINIMAGE_LAYER2_NAME "layer2"
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#define PIKA_MAINIMAGE_LAYER2_WIDTH 25
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#define PIKA_MAINIMAGE_LAYER2_HEIGHT 251
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#define PIKA_MAINIMAGE_LAYER2_FORMAT babl_format ("R'G'B' u8")
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#define PIKA_MAINIMAGE_LAYER2_OPACITY PIKA_OPACITY_TRANSPARENT
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#define PIKA_MAINIMAGE_LAYER2_MODE PIKA_LAYER_MODE_MULTIPLY_LEGACY
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#define PIKA_MAINIMAGE_GROUP1_NAME "group1"
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#define PIKA_MAINIMAGE_LAYER3_NAME "layer3"
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#define PIKA_MAINIMAGE_LAYER4_NAME "layer4"
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#define PIKA_MAINIMAGE_GROUP2_NAME "group2"
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#define PIKA_MAINIMAGE_LAYER5_NAME "layer5"
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#define PIKA_MAINIMAGE_VGUIDE1_POS 42
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#define PIKA_MAINIMAGE_VGUIDE2_POS 82
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#define PIKA_MAINIMAGE_HGUIDE1_POS 3
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#define PIKA_MAINIMAGE_HGUIDE2_POS 4
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#define PIKA_MAINIMAGE_SAMPLEPOINT1_X 10
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#define PIKA_MAINIMAGE_SAMPLEPOINT1_Y 12
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#define PIKA_MAINIMAGE_SAMPLEPOINT2_X 41
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#define PIKA_MAINIMAGE_SAMPLEPOINT2_Y 49
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#define PIKA_MAINIMAGE_RESOLUTIONX 400
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#define PIKA_MAINIMAGE_RESOLUTIONY 410
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#define PIKA_MAINIMAGE_PARASITE_NAME "test-parasite"
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#define PIKA_MAINIMAGE_PARASITE_DATA "foo"
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#define PIKA_MAINIMAGE_PARASITE_SIZE 4 /* 'f' 'o' 'o' '\0' */
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#define PIKA_MAINIMAGE_COMMENT "Created with code from "\
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"app/tests/test-xcf.c in the PIKA "\
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"source tree, i.e. it was not created "\
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"manually and may thus look weird if "\
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"opened and inspected in PIKA."
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#define PIKA_MAINIMAGE_UNIT PIKA_UNIT_PICA
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#define PIKA_MAINIMAGE_GRIDXSPACING 25.0
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#define PIKA_MAINIMAGE_GRIDYSPACING 27.0
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#define PIKA_MAINIMAGE_CHANNEL1_NAME "channel1"
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#define PIKA_MAINIMAGE_CHANNEL1_WIDTH PIKA_MAINIMAGE_WIDTH
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#define PIKA_MAINIMAGE_CHANNEL1_HEIGHT PIKA_MAINIMAGE_HEIGHT
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#define PIKA_MAINIMAGE_CHANNEL1_COLOR { 1.0, 0.0, 1.0, 1.0 }
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#define PIKA_MAINIMAGE_SELECTION_X 5
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#define PIKA_MAINIMAGE_SELECTION_Y 6
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#define PIKA_MAINIMAGE_SELECTION_W 7
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#define PIKA_MAINIMAGE_SELECTION_H 8
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#define PIKA_MAINIMAGE_VECTORS1_NAME "vectors1"
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#define PIKA_MAINIMAGE_VECTORS1_COORDS { { 11.0, 12.0, /* pad zeroes */ },\
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{ 21.0, 22.0, /* pad zeroes */ },\
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{ 31.0, 32.0, /* pad zeroes */ }, }
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#define PIKA_MAINIMAGE_VECTORS2_NAME "vectors2"
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#define PIKA_MAINIMAGE_VECTORS2_COORDS { { 911.0, 912.0, /* pad zeroes */ },\
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{ 921.0, 922.0, /* pad zeroes */ },\
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{ 931.0, 932.0, /* pad zeroes */ }, }
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#define ADD_TEST(function) \
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g_test_add_data_func ("/pika-xcf/" #function, pika, function);
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PikaImage * pika_test_load_image (Pika *pika,
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GFile *file);
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static void pika_write_and_read_file (Pika *pika,
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gboolean with_unusual_stuff,
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gboolean compat_paths,
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gboolean use_pika_2_8_features);
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static PikaImage * pika_create_mainimage (Pika *pika,
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gboolean with_unusual_stuff,
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gboolean compat_paths,
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gboolean use_pika_2_8_features);
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static void pika_assert_mainimage (PikaImage *image,
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gboolean with_unusual_stuff,
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gboolean compat_paths,
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gboolean use_pika_2_8_features);
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/**
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* write_and_read_pika_2_6_format:
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* @data:
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*
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* Do a write and read test on a file that could as well be
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* constructed with PIKA 2.6.
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**/
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static void
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write_and_read_pika_2_6_format (gconstpointer data)
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{
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Pika *pika = PIKA (data);
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pika_write_and_read_file (pika,
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FALSE /*with_unusual_stuff*/,
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FALSE /*compat_paths*/,
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FALSE /*use_pika_2_8_features*/);
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}
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/**
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* write_and_read_pika_2_6_format_unusual:
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* @data:
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*
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* Do a write and read test on a file that could as well be
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* constructed with PIKA 2.6, and make it unusual, like compatible
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* vectors and with a floating selection.
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**/
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static void
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write_and_read_pika_2_6_format_unusual (gconstpointer data)
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{
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Pika *pika = PIKA (data);
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pika_write_and_read_file (pika,
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TRUE /*with_unusual_stuff*/,
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TRUE /*compat_paths*/,
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FALSE /*use_pika_2_8_features*/);
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}
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/**
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* load_pika_2_6_file:
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* @data:
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*
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* Loads a file created with PIKA 2.6 and makes sure it loaded as
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* expected.
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**/
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static void
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load_pika_2_6_file (gconstpointer data)
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{
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Pika *pika = PIKA (data);
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PikaImage *image;
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gchar *filename;
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GFile *file;
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filename = g_build_filename (g_getenv ("PIKA_TESTING_ABS_TOP_SRCDIR"),
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"app/tests/files/pika-2-6-file.xcf",
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NULL);
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file = g_file_new_for_path (filename);
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g_free (filename);
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image = pika_test_load_image (pika, file);
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/* The image file was constructed by running
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* pika_write_and_read_file (FALSE, FALSE) in PIKA 2.6 by
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* copy-pasting the code to PIKA 2.6 and adapting it to changes in
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* the core API, so we can use pika_assert_mainimage() to make sure
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* the file was loaded successfully.
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*/
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pika_assert_mainimage (image,
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FALSE /*with_unusual_stuff*/,
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FALSE /*compat_paths*/,
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FALSE /*use_pika_2_8_features*/);
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}
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/**
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* write_and_read_pika_2_8_format:
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* @data:
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*
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* Writes an XCF file that uses PIKA 2.8 features such as layer
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* groups, then reads the file and make sure no relevant information
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* was lost.
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**/
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static void
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write_and_read_pika_2_8_format (gconstpointer data)
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{
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Pika *pika = PIKA (data);
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pika_write_and_read_file (pika,
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FALSE /*with_unusual_stuff*/,
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FALSE /*compat_paths*/,
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TRUE /*use_pika_2_8_features*/);
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}
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PikaImage *
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pika_test_load_image (Pika *pika,
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GFile *file)
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{
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PikaPlugInProcedure *proc;
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PikaImage *image;
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PikaPDBStatusType unused;
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proc = pika_plug_in_manager_file_procedure_find (pika->plug_in_manager,
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PIKA_FILE_PROCEDURE_GROUP_OPEN,
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file,
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NULL /*error*/);
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image = file_open_image (pika,
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pika_get_user_context (pika),
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NULL /*progress*/,
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file,
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FALSE /*as_new*/,
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proc,
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PIKA_RUN_NONINTERACTIVE,
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&unused /*status*/,
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NULL /*mime_type*/,
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NULL /*error*/);
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return image;
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}
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/**
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* pika_write_and_read_file:
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*
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* Constructs the main test image and asserts its state, writes it to
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* a file, reads the image from the file, and asserts the state of the
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* loaded file. The function takes various parameters so the same
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* function can be used for different formats.
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**/
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static void
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pika_write_and_read_file (Pika *pika,
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gboolean with_unusual_stuff,
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gboolean compat_paths,
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gboolean use_pika_2_8_features)
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{
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PikaImage *image;
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PikaImage *loaded_image;
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PikaPlugInProcedure *proc;
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gchar *filename = NULL;
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gint file_handle;
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GFile *file;
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/* Create the image */
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image = pika_create_mainimage (pika,
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with_unusual_stuff,
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compat_paths,
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use_pika_2_8_features);
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/* Assert valid state */
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pika_assert_mainimage (image,
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with_unusual_stuff,
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compat_paths,
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use_pika_2_8_features);
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/* Write to file */
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file_handle = g_file_open_tmp ("pika-test-XXXXXX.xcf", &filename, NULL);
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g_assert (file_handle != -1);
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close (file_handle);
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file = g_file_new_for_path (filename);
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g_free (filename);
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proc = pika_plug_in_manager_file_procedure_find (image->pika->plug_in_manager,
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PIKA_FILE_PROCEDURE_GROUP_SAVE,
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file,
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NULL /*error*/);
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file_save (pika,
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image,
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NULL /*progress*/,
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file,
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proc,
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PIKA_RUN_NONINTERACTIVE,
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FALSE /*change_saved_state*/,
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FALSE /*export_backward*/,
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FALSE /*export_forward*/,
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NULL /*error*/);
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/* Load from file */
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loaded_image = pika_test_load_image (image->pika, file);
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/* Assert on the loaded file. If success, it means that there is no
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* significant information loss when we wrote the image to a file
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* and loaded it again
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*/
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pika_assert_mainimage (loaded_image,
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with_unusual_stuff,
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compat_paths,
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use_pika_2_8_features);
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g_file_delete (file, NULL, NULL);
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g_object_unref (file);
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}
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/**
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* pika_create_mainimage:
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*
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* Creates the main test image, i.e. the image that we use for most of
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* our XCF testing purposes.
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*
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* Returns: The #PikaImage
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**/
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static PikaImage *
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pika_create_mainimage (Pika *pika,
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gboolean with_unusual_stuff,
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gboolean compat_paths,
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gboolean use_pika_2_8_features)
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{
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PikaImage *image = NULL;
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PikaLayer *layer = NULL;
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PikaParasite *parasite = NULL;
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PikaGrid *grid = NULL;
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PikaChannel *channel = NULL;
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PikaRGB channel_color = PIKA_MAINIMAGE_CHANNEL1_COLOR;
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PikaChannel *selection = NULL;
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PikaVectors *vectors = NULL;
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PikaCoords vectors1_coords[] = PIKA_MAINIMAGE_VECTORS1_COORDS;
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PikaCoords vectors2_coords[] = PIKA_MAINIMAGE_VECTORS2_COORDS;
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PikaStroke *stroke = NULL;
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PikaLayerMask *layer_mask = NULL;
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/* Image size and type */
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image = pika_image_new (pika,
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PIKA_MAINIMAGE_WIDTH,
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PIKA_MAINIMAGE_HEIGHT,
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PIKA_MAINIMAGE_TYPE,
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PIKA_MAINIMAGE_PRECISION);
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/* Layers */
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layer = pika_layer_new (image,
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PIKA_MAINIMAGE_LAYER1_WIDTH,
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PIKA_MAINIMAGE_LAYER1_HEIGHT,
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PIKA_MAINIMAGE_LAYER1_FORMAT,
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PIKA_MAINIMAGE_LAYER1_NAME,
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PIKA_MAINIMAGE_LAYER1_OPACITY,
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PIKA_MAINIMAGE_LAYER1_MODE);
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pika_image_add_layer (image,
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layer,
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NULL,
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0,
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FALSE/*push_undo*/);
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layer = pika_layer_new (image,
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PIKA_MAINIMAGE_LAYER2_WIDTH,
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PIKA_MAINIMAGE_LAYER2_HEIGHT,
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PIKA_MAINIMAGE_LAYER2_FORMAT,
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PIKA_MAINIMAGE_LAYER2_NAME,
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PIKA_MAINIMAGE_LAYER2_OPACITY,
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PIKA_MAINIMAGE_LAYER2_MODE);
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pika_image_add_layer (image,
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layer,
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NULL,
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0,
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FALSE /*push_undo*/);
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/* Layer mask */
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layer_mask = pika_layer_create_mask (layer,
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PIKA_ADD_MASK_BLACK,
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NULL /*channel*/);
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pika_layer_add_mask (layer,
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layer_mask,
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FALSE /*push_undo*/,
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NULL /*error*/);
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/* Image compression type
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*
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* We don't do any explicit test, only implicit when we read tile
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* data in other tests
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*/
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/* Guides, note we add them in reversed order */
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pika_image_add_hguide (image,
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PIKA_MAINIMAGE_HGUIDE2_POS,
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FALSE /*push_undo*/);
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pika_image_add_hguide (image,
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PIKA_MAINIMAGE_HGUIDE1_POS,
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FALSE /*push_undo*/);
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pika_image_add_vguide (image,
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PIKA_MAINIMAGE_VGUIDE2_POS,
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FALSE /*push_undo*/);
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pika_image_add_vguide (image,
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PIKA_MAINIMAGE_VGUIDE1_POS,
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FALSE /*push_undo*/);
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/* Sample points */
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pika_image_add_sample_point_at_pos (image,
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PIKA_MAINIMAGE_SAMPLEPOINT1_X,
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PIKA_MAINIMAGE_SAMPLEPOINT1_Y,
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FALSE /*push_undo*/);
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pika_image_add_sample_point_at_pos (image,
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PIKA_MAINIMAGE_SAMPLEPOINT2_X,
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PIKA_MAINIMAGE_SAMPLEPOINT2_Y,
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FALSE /*push_undo*/);
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/* Tattoo
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* We don't bother testing this, not yet at least
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*/
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/* Resolution */
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pika_image_set_resolution (image,
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PIKA_MAINIMAGE_RESOLUTIONX,
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PIKA_MAINIMAGE_RESOLUTIONY);
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/* Parasites */
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parasite = pika_parasite_new (PIKA_MAINIMAGE_PARASITE_NAME,
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PIKA_PARASITE_PERSISTENT,
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PIKA_MAINIMAGE_PARASITE_SIZE,
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PIKA_MAINIMAGE_PARASITE_DATA);
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pika_image_parasite_attach (image,
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parasite, FALSE);
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pika_parasite_free (parasite);
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parasite = pika_parasite_new ("pika-comment",
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PIKA_PARASITE_PERSISTENT,
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strlen (PIKA_MAINIMAGE_COMMENT) + 1,
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PIKA_MAINIMAGE_COMMENT);
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pika_image_parasite_attach (image, parasite, FALSE);
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|
pika_parasite_free (parasite);
|
|
|
|
|
|
/* Unit */
|
|
pika_image_set_unit (image,
|
|
PIKA_MAINIMAGE_UNIT);
|
|
|
|
/* Grid */
|
|
grid = g_object_new (PIKA_TYPE_GRID,
|
|
"xspacing", PIKA_MAINIMAGE_GRIDXSPACING,
|
|
"yspacing", PIKA_MAINIMAGE_GRIDYSPACING,
|
|
NULL);
|
|
pika_image_set_grid (image,
|
|
grid,
|
|
FALSE /*push_undo*/);
|
|
g_object_unref (grid);
|
|
|
|
/* Channel */
|
|
channel = pika_channel_new (image,
|
|
PIKA_MAINIMAGE_CHANNEL1_WIDTH,
|
|
PIKA_MAINIMAGE_CHANNEL1_HEIGHT,
|
|
PIKA_MAINIMAGE_CHANNEL1_NAME,
|
|
&channel_color);
|
|
pika_image_add_channel (image,
|
|
channel,
|
|
NULL,
|
|
-1,
|
|
FALSE /*push_undo*/);
|
|
|
|
/* Selection */
|
|
selection = pika_image_get_mask (image);
|
|
pika_channel_select_rectangle (selection,
|
|
PIKA_MAINIMAGE_SELECTION_X,
|
|
PIKA_MAINIMAGE_SELECTION_Y,
|
|
PIKA_MAINIMAGE_SELECTION_W,
|
|
PIKA_MAINIMAGE_SELECTION_H,
|
|
PIKA_CHANNEL_OP_REPLACE,
|
|
FALSE /*feather*/,
|
|
0.0 /*feather_radius_x*/,
|
|
0.0 /*feather_radius_y*/,
|
|
FALSE /*push_undo*/);
|
|
|
|
/* Vectors 1 */
|
|
vectors = pika_vectors_new (image,
|
|
PIKA_MAINIMAGE_VECTORS1_NAME);
|
|
/* The XCF file can save vectors in two kind of ways, one old way
|
|
* and a new way. Parameterize the way so we can test both variants,
|
|
* i.e. pika_vectors_compat_is_compatible() must return both TRUE
|
|
* and FALSE.
|
|
*/
|
|
if (! compat_paths)
|
|
{
|
|
pika_item_set_visible (PIKA_ITEM (vectors),
|
|
TRUE,
|
|
FALSE /*push_undo*/);
|
|
}
|
|
/* TODO: Add test for non-closed stroke. The order of the anchor
|
|
* points changes for open strokes, so it's boring to test
|
|
*/
|
|
stroke = pika_bezier_stroke_new_from_coords (vectors1_coords,
|
|
G_N_ELEMENTS (vectors1_coords),
|
|
TRUE /*closed*/);
|
|
pika_vectors_stroke_add (vectors, stroke);
|
|
pika_image_add_vectors (image,
|
|
vectors,
|
|
NULL /*parent*/,
|
|
-1 /*position*/,
|
|
FALSE /*push_undo*/);
|
|
|
|
/* Vectors 2 */
|
|
vectors = pika_vectors_new (image,
|
|
PIKA_MAINIMAGE_VECTORS2_NAME);
|
|
|
|
stroke = pika_bezier_stroke_new_from_coords (vectors2_coords,
|
|
G_N_ELEMENTS (vectors2_coords),
|
|
TRUE /*closed*/);
|
|
pika_vectors_stroke_add (vectors, stroke);
|
|
pika_image_add_vectors (image,
|
|
vectors,
|
|
NULL /*parent*/,
|
|
-1 /*position*/,
|
|
FALSE /*push_undo*/);
|
|
|
|
/* Some of these things are pretty unusual, parameterize the
|
|
* inclusion of this in the written file so we can do our test both
|
|
* with and without
|
|
*/
|
|
if (with_unusual_stuff)
|
|
{
|
|
GList *drawables;
|
|
|
|
drawables = pika_image_get_selected_drawables (image);
|
|
|
|
/* Floating selection */
|
|
pika_selection_float (PIKA_SELECTION (pika_image_get_mask (image)),
|
|
drawables,
|
|
pika_get_user_context (pika),
|
|
TRUE /*cut_image*/,
|
|
0 /*off_x*/,
|
|
0 /*off_y*/,
|
|
NULL /*error*/);
|
|
g_list_free (drawables);
|
|
}
|
|
|
|
/* Adds stuff like layer groups */
|
|
if (use_pika_2_8_features)
|
|
{
|
|
PikaLayer *parent;
|
|
|
|
/* Add a layer group and some layers:
|
|
*
|
|
* group1
|
|
* layer3
|
|
* layer4
|
|
* group2
|
|
* layer5
|
|
*/
|
|
|
|
/* group1 */
|
|
layer = pika_group_layer_new (image);
|
|
pika_object_set_name (PIKA_OBJECT (layer), PIKA_MAINIMAGE_GROUP1_NAME);
|
|
pika_image_add_layer (image,
|
|
layer,
|
|
NULL /*parent*/,
|
|
-1 /*position*/,
|
|
FALSE /*push_undo*/);
|
|
parent = layer;
|
|
|
|
/* layer3 */
|
|
layer = pika_layer_new (image,
|
|
PIKA_MAINIMAGE_LAYER1_WIDTH,
|
|
PIKA_MAINIMAGE_LAYER1_HEIGHT,
|
|
PIKA_MAINIMAGE_LAYER1_FORMAT,
|
|
PIKA_MAINIMAGE_LAYER3_NAME,
|
|
PIKA_MAINIMAGE_LAYER1_OPACITY,
|
|
PIKA_MAINIMAGE_LAYER1_MODE);
|
|
pika_image_add_layer (image,
|
|
layer,
|
|
parent,
|
|
-1 /*position*/,
|
|
FALSE /*push_undo*/);
|
|
|
|
/* layer4 */
|
|
layer = pika_layer_new (image,
|
|
PIKA_MAINIMAGE_LAYER1_WIDTH,
|
|
PIKA_MAINIMAGE_LAYER1_HEIGHT,
|
|
PIKA_MAINIMAGE_LAYER1_FORMAT,
|
|
PIKA_MAINIMAGE_LAYER4_NAME,
|
|
PIKA_MAINIMAGE_LAYER1_OPACITY,
|
|
PIKA_MAINIMAGE_LAYER1_MODE);
|
|
pika_image_add_layer (image,
|
|
layer,
|
|
parent,
|
|
-1 /*position*/,
|
|
FALSE /*push_undo*/);
|
|
|
|
/* group2 */
|
|
layer = pika_group_layer_new (image);
|
|
pika_object_set_name (PIKA_OBJECT (layer), PIKA_MAINIMAGE_GROUP2_NAME);
|
|
pika_image_add_layer (image,
|
|
layer,
|
|
parent,
|
|
-1 /*position*/,
|
|
FALSE /*push_undo*/);
|
|
parent = layer;
|
|
|
|
/* layer5 */
|
|
layer = pika_layer_new (image,
|
|
PIKA_MAINIMAGE_LAYER1_WIDTH,
|
|
PIKA_MAINIMAGE_LAYER1_HEIGHT,
|
|
PIKA_MAINIMAGE_LAYER1_FORMAT,
|
|
PIKA_MAINIMAGE_LAYER5_NAME,
|
|
PIKA_MAINIMAGE_LAYER1_OPACITY,
|
|
PIKA_MAINIMAGE_LAYER1_MODE);
|
|
pika_image_add_layer (image,
|
|
layer,
|
|
parent,
|
|
-1 /*position*/,
|
|
FALSE /*push_undo*/);
|
|
}
|
|
|
|
/* Todo, should be tested somehow:
|
|
*
|
|
* - Color maps
|
|
* - Custom user units
|
|
* - Text layers
|
|
* - Layer parasites
|
|
* - Channel parasites
|
|
* - Different tile compression methods
|
|
*/
|
|
|
|
return image;
|
|
}
|
|
|
|
static void
|
|
pika_assert_vectors (PikaImage *image,
|
|
const gchar *name,
|
|
PikaCoords coords[],
|
|
gsize coords_size,
|
|
gboolean visible)
|
|
{
|
|
PikaVectors *vectors = NULL;
|
|
PikaStroke *stroke = NULL;
|
|
GArray *control_points = NULL;
|
|
gboolean closed = FALSE;
|
|
gint i = 0;
|
|
|
|
vectors = pika_image_get_vectors_by_name (image, name);
|
|
stroke = pika_vectors_stroke_get_next (vectors, NULL);
|
|
g_assert (stroke != NULL);
|
|
control_points = pika_stroke_control_points_get (stroke,
|
|
&closed);
|
|
g_assert (closed);
|
|
g_assert_cmpint (control_points->len,
|
|
==,
|
|
coords_size);
|
|
for (i = 0; i < control_points->len; i++)
|
|
{
|
|
g_assert_cmpint (coords[i].x,
|
|
==,
|
|
g_array_index (control_points,
|
|
PikaAnchor,
|
|
i).position.x);
|
|
g_assert_cmpint (coords[i].y,
|
|
==,
|
|
g_array_index (control_points,
|
|
PikaAnchor,
|
|
i).position.y);
|
|
}
|
|
|
|
g_assert (pika_item_get_visible (PIKA_ITEM (vectors)) ? TRUE : FALSE ==
|
|
visible ? TRUE : FALSE);
|
|
}
|
|
|
|
/**
|
|
* pika_assert_mainimage:
|
|
* @image:
|
|
*
|
|
* Verifies that the passed #PikaImage contains all the information
|
|
* that was put in it by pika_create_mainimage().
|
|
**/
|
|
static void
|
|
pika_assert_mainimage (PikaImage *image,
|
|
gboolean with_unusual_stuff,
|
|
gboolean compat_paths,
|
|
gboolean use_pika_2_8_features)
|
|
{
|
|
const PikaParasite *parasite = NULL;
|
|
gchar *parasite_data = NULL;
|
|
guint32 parasite_size = -1;
|
|
PikaLayer *layer = NULL;
|
|
GList *iter = NULL;
|
|
PikaGuide *guide = NULL;
|
|
PikaSamplePoint *sample_point = NULL;
|
|
gint sample_point_x = 0;
|
|
gint sample_point_y = 0;
|
|
gdouble xres = 0.0;
|
|
gdouble yres = 0.0;
|
|
PikaGrid *grid = NULL;
|
|
gdouble xspacing = 0.0;
|
|
gdouble yspacing = 0.0;
|
|
PikaChannel *channel = NULL;
|
|
PikaRGB expected_channel_color = PIKA_MAINIMAGE_CHANNEL1_COLOR;
|
|
PikaRGB actual_channel_color = { 0, };
|
|
PikaChannel *selection = NULL;
|
|
gint x = -1;
|
|
gint y = -1;
|
|
gint w = -1;
|
|
gint h = -1;
|
|
PikaCoords vectors1_coords[] = PIKA_MAINIMAGE_VECTORS1_COORDS;
|
|
PikaCoords vectors2_coords[] = PIKA_MAINIMAGE_VECTORS2_COORDS;
|
|
|
|
/* Image size and type */
|
|
g_assert_cmpint (pika_image_get_width (image),
|
|
==,
|
|
PIKA_MAINIMAGE_WIDTH);
|
|
g_assert_cmpint (pika_image_get_height (image),
|
|
==,
|
|
PIKA_MAINIMAGE_HEIGHT);
|
|
g_assert_cmpint (pika_image_get_base_type (image),
|
|
==,
|
|
PIKA_MAINIMAGE_TYPE);
|
|
|
|
/* Layers */
|
|
layer = pika_image_get_layer_by_name (image,
|
|
PIKA_MAINIMAGE_LAYER1_NAME);
|
|
g_assert_cmpint (pika_item_get_width (PIKA_ITEM (layer)),
|
|
==,
|
|
PIKA_MAINIMAGE_LAYER1_WIDTH);
|
|
g_assert_cmpint (pika_item_get_height (PIKA_ITEM (layer)),
|
|
==,
|
|
PIKA_MAINIMAGE_LAYER1_HEIGHT);
|
|
g_assert_cmpstr (babl_get_name (pika_drawable_get_format (PIKA_DRAWABLE (layer))),
|
|
==,
|
|
babl_get_name (PIKA_MAINIMAGE_LAYER1_FORMAT));
|
|
g_assert_cmpstr (pika_object_get_name (PIKA_DRAWABLE (layer)),
|
|
==,
|
|
PIKA_MAINIMAGE_LAYER1_NAME);
|
|
g_assert_cmpfloat (pika_layer_get_opacity (layer),
|
|
==,
|
|
PIKA_MAINIMAGE_LAYER1_OPACITY);
|
|
g_assert_cmpint (pika_layer_get_mode (layer),
|
|
==,
|
|
PIKA_MAINIMAGE_LAYER1_MODE);
|
|
layer = pika_image_get_layer_by_name (image,
|
|
PIKA_MAINIMAGE_LAYER2_NAME);
|
|
g_assert_cmpint (pika_item_get_width (PIKA_ITEM (layer)),
|
|
==,
|
|
PIKA_MAINIMAGE_LAYER2_WIDTH);
|
|
g_assert_cmpint (pika_item_get_height (PIKA_ITEM (layer)),
|
|
==,
|
|
PIKA_MAINIMAGE_LAYER2_HEIGHT);
|
|
g_assert_cmpstr (babl_get_name (pika_drawable_get_format (PIKA_DRAWABLE (layer))),
|
|
==,
|
|
babl_get_name (PIKA_MAINIMAGE_LAYER2_FORMAT));
|
|
g_assert_cmpstr (pika_object_get_name (PIKA_DRAWABLE (layer)),
|
|
==,
|
|
PIKA_MAINIMAGE_LAYER2_NAME);
|
|
g_assert_cmpfloat (pika_layer_get_opacity (layer),
|
|
==,
|
|
PIKA_MAINIMAGE_LAYER2_OPACITY);
|
|
g_assert_cmpint (pika_layer_get_mode (layer),
|
|
==,
|
|
PIKA_MAINIMAGE_LAYER2_MODE);
|
|
|
|
/* Guides, note that we rely on internal ordering */
|
|
iter = pika_image_get_guides (image);
|
|
g_assert (iter != NULL);
|
|
guide = iter->data;
|
|
g_assert_cmpint (pika_guide_get_position (guide),
|
|
==,
|
|
PIKA_MAINIMAGE_VGUIDE1_POS);
|
|
iter = g_list_next (iter);
|
|
g_assert (iter != NULL);
|
|
guide = iter->data;
|
|
g_assert_cmpint (pika_guide_get_position (guide),
|
|
==,
|
|
PIKA_MAINIMAGE_VGUIDE2_POS);
|
|
iter = g_list_next (iter);
|
|
g_assert (iter != NULL);
|
|
guide = iter->data;
|
|
g_assert_cmpint (pika_guide_get_position (guide),
|
|
==,
|
|
PIKA_MAINIMAGE_HGUIDE1_POS);
|
|
iter = g_list_next (iter);
|
|
g_assert (iter != NULL);
|
|
guide = iter->data;
|
|
g_assert_cmpint (pika_guide_get_position (guide),
|
|
==,
|
|
PIKA_MAINIMAGE_HGUIDE2_POS);
|
|
iter = g_list_next (iter);
|
|
g_assert (iter == NULL);
|
|
|
|
/* Sample points, we rely on the same ordering as when we added
|
|
* them, although this ordering is not a necessity
|
|
*/
|
|
iter = pika_image_get_sample_points (image);
|
|
g_assert (iter != NULL);
|
|
sample_point = iter->data;
|
|
pika_sample_point_get_position (sample_point,
|
|
&sample_point_x, &sample_point_y);
|
|
g_assert_cmpint (sample_point_x,
|
|
==,
|
|
PIKA_MAINIMAGE_SAMPLEPOINT1_X);
|
|
g_assert_cmpint (sample_point_y,
|
|
==,
|
|
PIKA_MAINIMAGE_SAMPLEPOINT1_Y);
|
|
iter = g_list_next (iter);
|
|
g_assert (iter != NULL);
|
|
sample_point = iter->data;
|
|
pika_sample_point_get_position (sample_point,
|
|
&sample_point_x, &sample_point_y);
|
|
g_assert_cmpint (sample_point_x,
|
|
==,
|
|
PIKA_MAINIMAGE_SAMPLEPOINT2_X);
|
|
g_assert_cmpint (sample_point_y,
|
|
==,
|
|
PIKA_MAINIMAGE_SAMPLEPOINT2_Y);
|
|
iter = g_list_next (iter);
|
|
g_assert (iter == NULL);
|
|
|
|
/* Resolution */
|
|
pika_image_get_resolution (image, &xres, &yres);
|
|
g_assert_cmpint (xres,
|
|
==,
|
|
PIKA_MAINIMAGE_RESOLUTIONX);
|
|
g_assert_cmpint (yres,
|
|
==,
|
|
PIKA_MAINIMAGE_RESOLUTIONY);
|
|
|
|
/* Parasites */
|
|
parasite = pika_image_parasite_find (image,
|
|
PIKA_MAINIMAGE_PARASITE_NAME);
|
|
parasite_data = (gchar *) pika_parasite_get_data (parasite, ¶site_size);
|
|
parasite_data = g_strndup (parasite_data, parasite_size);
|
|
g_assert_cmpint (parasite_size,
|
|
==,
|
|
PIKA_MAINIMAGE_PARASITE_SIZE);
|
|
g_assert_cmpstr (parasite_data,
|
|
==,
|
|
PIKA_MAINIMAGE_PARASITE_DATA);
|
|
g_free (parasite_data);
|
|
|
|
parasite = pika_image_parasite_find (image,
|
|
"pika-comment");
|
|
parasite_data = (gchar *) pika_parasite_get_data (parasite, ¶site_size);
|
|
parasite_data = g_strndup (parasite_data, parasite_size);
|
|
g_assert_cmpint (parasite_size,
|
|
==,
|
|
strlen (PIKA_MAINIMAGE_COMMENT) + 1);
|
|
g_assert_cmpstr (parasite_data,
|
|
==,
|
|
PIKA_MAINIMAGE_COMMENT);
|
|
g_free (parasite_data);
|
|
|
|
/* Unit */
|
|
g_assert_cmpint (pika_image_get_unit (image),
|
|
==,
|
|
PIKA_MAINIMAGE_UNIT);
|
|
|
|
/* Grid */
|
|
grid = pika_image_get_grid (image);
|
|
g_object_get (grid,
|
|
"xspacing", &xspacing,
|
|
"yspacing", &yspacing,
|
|
NULL);
|
|
g_assert_cmpint (xspacing,
|
|
==,
|
|
PIKA_MAINIMAGE_GRIDXSPACING);
|
|
g_assert_cmpint (yspacing,
|
|
==,
|
|
PIKA_MAINIMAGE_GRIDYSPACING);
|
|
|
|
|
|
/* Channel */
|
|
channel = pika_image_get_channel_by_name (image,
|
|
PIKA_MAINIMAGE_CHANNEL1_NAME);
|
|
pika_channel_get_color (channel, &actual_channel_color);
|
|
g_assert_cmpint (pika_item_get_width (PIKA_ITEM (channel)),
|
|
==,
|
|
PIKA_MAINIMAGE_CHANNEL1_WIDTH);
|
|
g_assert_cmpint (pika_item_get_height (PIKA_ITEM (channel)),
|
|
==,
|
|
PIKA_MAINIMAGE_CHANNEL1_HEIGHT);
|
|
g_assert (memcmp (&expected_channel_color,
|
|
&actual_channel_color,
|
|
sizeof (PikaRGB)) == 0);
|
|
|
|
/* Selection, if the image contains unusual stuff it contains a
|
|
* floating select, and when floating a selection, the selection
|
|
* mask is cleared, so don't test for the presence of the selection
|
|
* mask in that case
|
|
*/
|
|
if (! with_unusual_stuff)
|
|
{
|
|
selection = pika_image_get_mask (image);
|
|
pika_item_bounds (PIKA_ITEM (selection), &x, &y, &w, &h);
|
|
g_assert_cmpint (x,
|
|
==,
|
|
PIKA_MAINIMAGE_SELECTION_X);
|
|
g_assert_cmpint (y,
|
|
==,
|
|
PIKA_MAINIMAGE_SELECTION_Y);
|
|
g_assert_cmpint (w,
|
|
==,
|
|
PIKA_MAINIMAGE_SELECTION_W);
|
|
g_assert_cmpint (h,
|
|
==,
|
|
PIKA_MAINIMAGE_SELECTION_H);
|
|
}
|
|
|
|
/* Vectors 1 */
|
|
pika_assert_vectors (image,
|
|
PIKA_MAINIMAGE_VECTORS1_NAME,
|
|
vectors1_coords,
|
|
G_N_ELEMENTS (vectors1_coords),
|
|
! compat_paths /*visible*/);
|
|
|
|
/* Vectors 2 (always visible FALSE) */
|
|
pika_assert_vectors (image,
|
|
PIKA_MAINIMAGE_VECTORS2_NAME,
|
|
vectors2_coords,
|
|
G_N_ELEMENTS (vectors2_coords),
|
|
FALSE /*visible*/);
|
|
|
|
if (with_unusual_stuff)
|
|
g_assert (pika_image_get_floating_selection (image) != NULL);
|
|
else /* if (! with_unusual_stuff) */
|
|
g_assert (pika_image_get_floating_selection (image) == NULL);
|
|
|
|
if (use_pika_2_8_features)
|
|
{
|
|
/* Only verify the parent relationships, the layer attributes
|
|
* are tested above
|
|
*/
|
|
PikaItem *group1 = PIKA_ITEM (pika_image_get_layer_by_name (image, PIKA_MAINIMAGE_GROUP1_NAME));
|
|
PikaItem *layer3 = PIKA_ITEM (pika_image_get_layer_by_name (image, PIKA_MAINIMAGE_LAYER3_NAME));
|
|
PikaItem *layer4 = PIKA_ITEM (pika_image_get_layer_by_name (image, PIKA_MAINIMAGE_LAYER4_NAME));
|
|
PikaItem *group2 = PIKA_ITEM (pika_image_get_layer_by_name (image, PIKA_MAINIMAGE_GROUP2_NAME));
|
|
PikaItem *layer5 = PIKA_ITEM (pika_image_get_layer_by_name (image, PIKA_MAINIMAGE_LAYER5_NAME));
|
|
|
|
g_assert (pika_item_get_parent (group1) == NULL);
|
|
g_assert (pika_item_get_parent (layer3) == group1);
|
|
g_assert (pika_item_get_parent (layer4) == group1);
|
|
g_assert (pika_item_get_parent (group2) == group1);
|
|
g_assert (pika_item_get_parent (layer5) == group2);
|
|
}
|
|
}
|
|
|
|
|
|
/**
|
|
* main:
|
|
* @argc:
|
|
* @argv:
|
|
*
|
|
* These tests intend to
|
|
*
|
|
* - Make sure that we are backwards compatible with files created by
|
|
* older version of PIKA, i.e. that we can load files from earlier
|
|
* version of PIKA
|
|
*
|
|
* - Make sure that the information put into a #PikaImage is not lost
|
|
* when the #PikaImage is written to a file and then read again
|
|
**/
|
|
int
|
|
main (int argc,
|
|
char **argv)
|
|
{
|
|
Pika *pika;
|
|
int result;
|
|
|
|
g_test_init (&argc, &argv, NULL);
|
|
|
|
pika_test_utils_set_pika3_directory ("PIKA_TESTING_ABS_TOP_SRCDIR",
|
|
"app/tests/pikadir");
|
|
|
|
/* We share the same application instance across all tests. We need
|
|
* the GUI variant for the file procs
|
|
*/
|
|
pika = pika_init_for_testing ();
|
|
|
|
/* Add tests */
|
|
ADD_TEST (write_and_read_pika_2_6_format);
|
|
ADD_TEST (write_and_read_pika_2_6_format_unusual);
|
|
ADD_TEST (load_pika_2_6_file);
|
|
ADD_TEST (write_and_read_pika_2_8_format);
|
|
|
|
/* Don't write files to the source dir */
|
|
pika_test_utils_set_pika3_directory ("PIKA_TESTING_ABS_TOP_BUILDDIR",
|
|
"app/tests/pikadir-output");
|
|
|
|
/* Run the tests */
|
|
result = g_test_run ();
|
|
|
|
/* Exit so we don't break script-fu plug-in wire */
|
|
pika_exit (pika, TRUE);
|
|
|
|
return result;
|
|
}
|