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Author SHA1 Message Date
Mohammed Sadiq
a3adeefb79 textbuffer: Return GObject properties on get_can_redo/undo
It's possible that the textbuffer has been subclassed and
have overridden 'can-redo' or 'can-undo' properties.

gtk_text_buffer_get_can_redo()/undo() should return those
overridden properties in those cases so that the users of the
API (eg: The 'Redo' or 'Undo' button in the text-view context
menu) behaves properly.
2023-08-06 12:06:17 +05:30
390 changed files with 31399 additions and 70474 deletions

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@@ -30,16 +30,8 @@ variables:
workflow:
rules:
# run merge request pipelines
- if: $CI_PIPELINE_SOURCE == "merge_request_event"
# do not run branch pipelines if corresponding merge requests exist...
# (this avoids duplicate pipelines)
- if: $CI_COMMIT_BRANCH && $CI_OPEN_MERGE_REQUESTS
when: never
# ...but otherwise run branch pipelines
- if: $CI_COMMIT_BRANCH
# run tag pipelines
- if: $CI_COMMIT_TAG
- if: $CI_COMMIT_BRANCH
default:
retry:
@@ -205,30 +197,21 @@ msys2-mingw64:
paths:
- "${CI_PROJECT_DIR}/_build/gtkdll.tar.gz"
macos-x86_64:
macos:
# Sadly, this fails regularly, and its failure is never enlightening
allow_failure: true
rules:
# Do not run in forks as the runner is not available there.
- if: $CI_PROJECT_NAMESPACE == "GNOME"
stage: build
tags:
- macosintel
- macos
needs: []
variables:
MESON_FORCE_BACKTRACKE: 1
TMPDIR: /Users/Shared/work/tmp
SDKROOT: /opt/sdks/MacOSX10.13.4.sdk
CCACHE_DIR: /Users/Shared/work/ccache
PIP_CACHE_DIR: /Users/Shared/build/cache
PIPENV_CACHE_DIR: $PIP_CACHE_DIR
PYTHONPYCACHEPREFIX: $PIP_CACHE_DIR
before_script:
- bash .gitlab-ci/show-info-osx.sh
- python3 -m venv .venv
- ln -s /opt/cmake/CMake.app/Contents/bin/cmake .venv/bin
- ln -s /opt/ccache/ccache .venv/bin
- source .venv/bin/activate
- pip3 install meson==1.2.0
- pip3 install ninja==1.11.1
- pip3 install --user meson~=1.0
- pip3 install --user ninja
- export PATH=/Users/gitlabrunner/Library/Python/3.7/bin:$PATH
- export MESON_FORCE_BACKTRACE=1
script:
- meson setup ${COMMON_MESON_FLAGS}
-Dx11-backend=false

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@@ -23,7 +23,6 @@ case "${backend}" in
--suite=gtk \
--no-suite=failing \
--no-suite=flaky \
--no-suite=headless \
--no-suite=gsk-compare-broadway
# Store the exit code for the CI run, but always
@@ -46,7 +45,6 @@ case "${backend}" in
--suite=gtk \
--no-suite=failing \
--no-suite=flaky \
--no-suite=headless \
--no-suite=${backend}_failing \
--no-suite=gsk-compare-broadway
exit_code=$?
@@ -69,7 +67,6 @@ case "${backend}" in
--suite=gtk \
--no-suite=failing \
--no-suite=flaky \
--no-suite=headless \
--no-suite=gsk-compare-opengl
kill ${server}

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@@ -6,7 +6,7 @@ call "C:\Program Files (x86)\Microsoft Visual Studio\2017\BuildTools\VC\Auxiliar
:: FIXME: make warnings fatal
pip3 install --upgrade --user meson~=0.64 || goto :error
meson setup -Dbackend_max_links=1 -Ddebug=false -Dmedia-gstreamer=disabled _build || goto :error
meson -Ddebug=false -Dmedia-gstreamer=disabled _build || goto :error
ninja -C _build || goto :error
goto :EOF

View File

@@ -35,7 +35,8 @@ The issue tracker is meant to be used for actionable issues only.
You should not open a new issue for security related questions.
When in doubt, follow [security](https://security.gnome.org/).
When in doubt, send an email to the [security](mailto:security@gnome.org)
mailing list.
### Bug reports
@@ -243,11 +244,13 @@ people committing to GTK to follow a few rules:
code, you should always ask. If your change is minor and you've been
working on GTK for a while it probably isn't necessary to ask. But when
in doubt, ask. Even if your change is correct, somebody may know a
better way to do things.
The `gtk` [room on matrix](https://matrix.to/#/#gtk:gnome.org) is also a
good place to find GTK developers to discuss changes, but if you live
outside of the EU/US time zones, the [gtk tag on the GNOME Discourse instance](https://discourse.gnome.org/tag/gtk)
is the most certain and preferred method.
better way to do things. If you are making changes to GTK, you should
be subscribed to the [gtk-devel](https://mail.gnome.org/mailman/listinfo/gtk-devel-list)
mailing list; this is a good place to ask about intended changes.
The `#gtk` IRC channel on irc.gnome.org is also a good place to find GTK
developers to discuss changes, but if you live outside of the EU/US time
zones, an email to the gtk-devel mailing list is the most certain and
preferred method.
0. Ask _first_.

135
NEWS
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@@ -1,139 +1,6 @@
Overview of Changes in 4.13.1, xx-xx-xxxx
Overview of Changes in 4.13.0, xx-xx-xxxx
=========================================
* GtkTooltip:
- Don't cross native boundaries when looking for tooltips
* GtkCenterLayout, GtkEntry, GtkSearchEntry:
- Fix some issues with baseline handling
* GtkFileChooser:
- Make "Visit file" scroll to the file
* GtkSwitch:
- Respect text direction
* Paths:
- GskPathMeasure performance has been improved
- Add custom contours for circles, rounded rectangles and rectangles
- Simplify GskPathPoint handling
- gsk_path_point_get_closest_point now returns the distance as well
* Input:
- Handle (some) single-key compose sequences
* GSK:
- Make the repeated gradients match between GL and cairo
- Make rounded rect shrinking match between Vulkan, GL and cairo
- Fix parsing of text nodes with color glyphs
- Restrict an optimization to the cases where it is crrect
- Fix rendering of shadows with opacity
- The Vulkan renderer now requires Vulkan 1.2
* macOS:
- Clamp damage regions to the surface size
* Tools:
- gtk4-path-tool gained restrict and reverse commands
- gtk4-path-tool show and render can show control points
* Demos:
- Add a demo for hit testing with paths
* Build:
- Fix build problems with C++ compilers
* Translation updates
Brazilian Portuguese
British English
Catalan
Czech
Danish
Galician
Georgian
Italian
Korean
Lithuanian
Polish
Punjabi
Slovenian
Overview of Changes in 4.13.0, 25-08-2023
=========================================
* GskPath, GskPathBuilder, GskPathMeasure:
Data types and APIs for path rendering. These APIs are still
considered experimental, and may change until 4.14. Please try
them out and give us feedback. Documentation can be found
here: https://docs.gtk.org/gsk4/paths.html
* GtkGridView:
- Fix a crash when scrolling
* GtkColumnView:
- Fix a refcounting issue in the new scroll_to api
* GtkTreeView
- Fix style classes for sort arrows
* GtkEntry:
- Improve tracking of user changes (for undo)
* GtkNotebook:
- Fix a critical when switching pages
* GtkColor/FontDialogButton:
- Make these widgets activatable
* GtkMenuButton:
- Fix problems with focus handling
- Fix problems with DND
- Make flags a settable property
* GtkShortcutsWindow:
- Add API to build shortcuts windows programmatically
* Printing
- Fix the cpdb backend build
* MacOS:
- Make file filters work again
* GSK:
- Fix issues with color matrix nodes
* Wayland:
- Fix a crash with compositors other than gnome-shell
* Deprecations:
- Remaining GtkTreeModel-related types
* Demos:
- Add a few path demos to gtk4-demo
* Tools:
- gtk4-path-tool provides a commandline interface for paths
* Translation updates:
Basque
Catalan
Finnish
Galician
Georgian
German
Greek
Indonesian
Kazakh
Persian
Polish
Romanian
Spanish
Swedish
Turkish
Ukrainian
Overview of Changes in 4.12.0, 05-08-2023
=========================================

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@@ -223,7 +223,7 @@ delete_messages (gpointer data)
static void
pop_message (GtkWidget *status)
{
GList *messages = (GList *) g_object_steal_data (G_OBJECT (status), "messages");
GList *messages = (GList *) g_object_get_data (G_OBJECT (status), "messages");
if (messages)
{
@@ -241,7 +241,7 @@ static void
push_message (GtkWidget *status,
const char *message)
{
GList *messages = (GList *) g_object_steal_data (G_OBJECT (status), "messages");
GList *messages = (GList *) g_object_get_data (G_OBJECT (status), "messages");
gtk_label_set_label (GTK_LABEL (status), message);
messages = g_list_prepend (messages, g_strdup (message));

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@@ -127,7 +127,6 @@
<file>fishbowl.ui</file>
<file>gtkfishbowl.c</file>
<file>gtkfishbowl.h</file>
<file>tiger.node</file>
</gresource>
<gresource prefix="/frames">
<file>frames.ui</file>
@@ -295,7 +294,6 @@
<file>gears.c</file>
<file>gestures.c</file>
<file>glarea.c</file>
<file>glyphs.c</file>
<file>gltransition.c</file>
<file>headerbar.c</file>
<file>hypertext.c</file>
@@ -337,12 +335,6 @@
<file>paintable_symbolic.c</file>
<file>panes.c</file>
<file>password_entry.c</file>
<file>path_fill.c</file>
<file>path_maze.c</file>
<file>path_spinner.c</file>
<file>path_sweep.c</file>
<file>path_walk.c</file>
<file>path_text.c</file>
<file>peg_solitaire.c</file>
<file>pickers.c</file>
<file>printing.c</file>
@@ -428,17 +420,6 @@
<gresource prefix="/fontrendering">
<file>fontrendering.ui</file>
</gresource>
<gresource prefix="/path_sweep">
<file>path_sweep.ui</file>
<file compressed="true">path_world.txt</file>
</gresource>
<gresource prefix="/path_walk">
<file>path_walk.ui</file>
<file compressed="true">path_world.txt</file>
</gresource>
<gresource prefix="/path_text">
<file>path_text.ui</file>
</gresource>
<gresource prefix="/org/gtk/Demo4">
<file>icons/16x16/actions/application-exit.png</file>
<file>icons/16x16/actions/document-new.png</file>

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@@ -11,9 +11,6 @@
#include "gtkgears.h"
#include "gskshaderpaintable.h"
#include "nodewidget.h"
#include "graphwidget.h"
const char *const css =
".blurred-button {"
" box-shadow: 0px 0px 5px 10px rgba(0, 0, 0, 0.5);"
@@ -74,7 +71,14 @@ create_blurred_button (void)
static GtkWidget *
create_font_button (void)
{
return gtk_font_dialog_button_new (gtk_font_dialog_new ());
GtkFontDialog *dialog;
GtkWidget *button;
dialog = gtk_font_dialog_new ();
button = gtk_font_dialog_button_new (dialog);
g_object_unref (dialog);
return button;
}
static GtkWidget *
@@ -204,18 +208,6 @@ create_menu_button (void)
return w;
}
static GtkWidget *
create_tiger (void)
{
return node_widget_new ("/fishbowl/tiger.node");
}
static GtkWidget *
create_graph (void)
{
return graph_widget_new ();
}
static const struct {
const char *name;
GtkWidget * (*create_func) (void);
@@ -233,8 +225,6 @@ static const struct {
{ "Switch", create_switch },
{ "Menubutton", create_menu_button },
{ "Shader", create_cogs },
{ "Tiger", create_tiger },
{ "Graph", create_graph },
};
static int selected_widget_type = -1;

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@@ -1,153 +0,0 @@
#include "graphwidget.h"
struct _GraphWidget
{
GtkWidget parent_instance;
GskPath *path;
GskStroke *stroke;
GdkRGBA color;
guint tick_cb;
guint64 start_time;
double period;
double amplitude;
};
struct _GraphWidgetClass
{
GtkWidgetClass parent_class;
};
G_DEFINE_TYPE (GraphWidget, graph_widget, GTK_TYPE_WIDGET)
static void
update_path (GraphWidget *self,
float amplitude)
{
graphene_point_t p[20];
GskPathBuilder *builder;
g_clear_pointer (&self->path, gsk_path_unref);
for (int i = 0; i < 20; i++)
{
p[i].x = 10 * i;
p[i].y = 50;
if (i % 4 == 1 || i % 4 == 2)
{
if (i % 8 < 4)
p[i].y += amplitude;
else
p[i].y -= amplitude;
}
}
builder = gsk_path_builder_new ();
gsk_path_builder_move_to (builder, p[0].x, p[0].y);
for (int i = 0; i < 20; i += 4)
gsk_path_builder_cubic_to (builder,
p[i+1].x, p[i+1].y,
p[i+2].x, p[i+2].y,
p[i+3].x, p[i+3].y);
self->path = gsk_path_builder_free_to_path (builder);
}
static gboolean
tick_cb (GtkWidget *widget,
GdkFrameClock *frame_clock,
gpointer user_data)
{
GraphWidget *self = GRAPH_WIDGET (widget);
guint64 now;
double angle;
now = gdk_frame_clock_get_frame_time (frame_clock);
if (self->start_time == 0)
self->start_time = now;
angle = 360 * (now - self->start_time) / (double)(self->period * G_TIME_SPAN_MINUTE);
update_path (self, sin (angle) * self->amplitude);
gtk_widget_queue_draw (widget);
return G_SOURCE_CONTINUE;
}
static void
graph_widget_init (GraphWidget *self)
{
self->color.red = g_random_double_range (0, 1);
self->color.green = g_random_double_range (0, 1);
self->color.blue = g_random_double_range (0, 1);
self->color.alpha = 1;
self->period = g_random_double_range (0.5, 1);
self->amplitude = g_random_double_range (10, 25);
self->stroke = gsk_stroke_new (2);
update_path (self, 0);
self->start_time = 0;
self->tick_cb = gtk_widget_add_tick_callback (GTK_WIDGET (self), tick_cb, NULL, NULL);
}
static void
graph_widget_dispose (GObject *object)
{
GraphWidget *self = GRAPH_WIDGET (object);
g_clear_pointer (&self->path, gsk_path_unref);
gsk_stroke_free (self->stroke);
G_OBJECT_CLASS (graph_widget_parent_class)->dispose (object);
}
static void
graph_widget_snapshot (GtkWidget *widget,
GtkSnapshot *snapshot)
{
GraphWidget *self = GRAPH_WIDGET (widget);
gtk_snapshot_append_stroke (snapshot, self->path, self->stroke, &self->color);
}
static void
graph_widget_measure (GtkWidget *widget,
GtkOrientation orientation,
int for_size,
int *minimum,
int *natural,
int *minimum_baseline,
int *natural_baseline)
{
if (orientation == GTK_ORIENTATION_HORIZONTAL)
*minimum = *natural = 200;
else
*minimum = *natural = 100;
}
static void
graph_widget_class_init (GraphWidgetClass *class)
{
GObjectClass *object_class = G_OBJECT_CLASS (class);
GtkWidgetClass *widget_class = GTK_WIDGET_CLASS (class);
object_class->dispose = graph_widget_dispose;
widget_class->snapshot = graph_widget_snapshot;
widget_class->measure = graph_widget_measure;
}
GtkWidget *
graph_widget_new (void)
{
return g_object_new (GRAPH_TYPE_WIDGET, NULL);
}

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@@ -1,8 +0,0 @@
#pragma once
#include <gtk/gtk.h>
#define GRAPH_TYPE_WIDGET (graph_widget_get_type ())
G_DECLARE_FINAL_TYPE (GraphWidget, graph_widget, GRAPH, WIDGET, GtkWidget)
GtkWidget * graph_widget_new (void);

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@@ -840,24 +840,24 @@ gtk_gears_unrealize (GtkWidget *widget)
GtkGearsPrivate *priv = gtk_gears_get_instance_private ((GtkGears *) widget);
gtk_gl_area_make_current (glarea);
if (gtk_gl_area_get_error (glarea) == NULL)
{
/* Release the resources associated with OpenGL */
if (priv->gear_vbo[0] != 0)
glDeleteBuffers (1, &(priv->gear_vbo[0]));
if (gtk_gl_area_get_error (glarea) != NULL)
return;
if (priv->gear_vbo[1] != 0)
glDeleteBuffers (1, &(priv->gear_vbo[1]));
/* Release the resources associated with OpenGL */
if (priv->gear_vbo[0] != 0)
glDeleteBuffers (1, &(priv->gear_vbo[0]));
if (priv->gear_vbo[2] != 0)
glDeleteBuffers (1, &(priv->gear_vbo[2]));
if (priv->gear_vbo[1] != 0)
glDeleteBuffers (1, &(priv->gear_vbo[1]));
if (priv->vao != 0)
glDeleteVertexArrays (1, &priv->vao);
if (priv->gear_vbo[2] != 0)
glDeleteBuffers (1, &(priv->gear_vbo[2]));
if (priv->program != 0)
glDeleteProgram (priv->program);
}
if (priv->vao != 0)
glDeleteVertexArrays (1, &priv->vao);
if (priv->program != 0)
glDeleteProgram (priv->program);
priv->ModelViewProjectionMatrix_location = 0;
priv->NormalMatrix_location = 0;

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@@ -34,7 +34,6 @@ demos = files([
'gestures.c',
'glarea.c',
'gltransition.c',
'glyphs.c',
'headerbar.c',
'hypertext.c',
'iconscroll.c',
@@ -73,12 +72,6 @@ demos = files([
'paintable_symbolic.c',
'panes.c',
'password_entry.c',
'path_fill.c',
'path_maze.c',
'path_spinner.c',
'path_sweep.c',
'path_walk.c',
'path_text.c',
'peg_solitaire.c',
'pickers.c',
'printing.c',
@@ -143,8 +136,6 @@ extra_demo_sources = files([
'unicode-names.c',
'suggestionentry.c',
'language-names.c',
'nodewidget.c',
'graphwidget.c',
])
if os_unix

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@@ -1,76 +0,0 @@
#include "nodewidget.h"
struct _NodeWidget
{
GtkWidget parent_instance;
GskRenderNode *node;
};
struct _NodeWidgetClass
{
GtkWidgetClass parent_class;
};
G_DEFINE_TYPE (NodeWidget, node_widget, GTK_TYPE_WIDGET)
static void
node_widget_init (NodeWidget *self)
{
}
static void
node_widget_dispose (GObject *object)
{
NodeWidget *self = NODE_WIDGET (object);
gsk_render_node_unref (self->node);
G_OBJECT_CLASS (node_widget_parent_class)->dispose (object);
}
static void
node_widget_snapshot (GtkWidget *widget,
GtkSnapshot *snapshot)
{
NodeWidget *self = NODE_WIDGET (widget);
gtk_snapshot_append_node (snapshot, self->node);
}
static void
node_widget_class_init (NodeWidgetClass *class)
{
GObjectClass *object_class = G_OBJECT_CLASS (class);
GtkWidgetClass *widget_class = GTK_WIDGET_CLASS (class);
object_class->dispose = node_widget_dispose;
widget_class->snapshot = node_widget_snapshot;
}
GtkWidget *
node_widget_new (const char *resource)
{
NodeWidget *self;
GBytes *bytes;
GskRenderNode *node;
graphene_rect_t bounds;
float scale;
GskTransform *transform;
self = g_object_new (NODE_TYPE_WIDGET, NULL);
bytes = g_resources_lookup_data (resource, 0, NULL);
node = gsk_render_node_deserialize (bytes, NULL, NULL);
g_bytes_unref (bytes);
gsk_render_node_get_bounds (node, &bounds);
scale = MIN (100.0/bounds.size.width, 100.0/bounds.size.height);
transform = gsk_transform_scale (NULL, scale, scale);
self->node = gsk_transform_node_new (node, transform);
gsk_transform_unref (transform);
gsk_render_node_unref (node);
return GTK_WIDGET (self);
}

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@@ -1,8 +0,0 @@
#pragma once
#include <gtk/gtk.h>
#define NODE_TYPE_WIDGET (node_widget_get_type ())
G_DECLARE_FINAL_TYPE (NodeWidget, node_widget, NODE, WIDGET, GtkWidget)
GtkWidget * node_widget_new (const char *file);

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@@ -1,198 +0,0 @@
/* Path/Fill and Stroke
*
* This demo shows how to use GskPath to draw shapes that are (a bit)
* more complex than a rounded rectangle.
*/
#include <glib/gi18n.h>
#include <gtk/gtk.h>
#include "paintable.h"
#define GTK_TYPE_LOGO_PAINTABLE (gtk_logo_paintable_get_type ())
G_DECLARE_FINAL_TYPE (GtkLogoPaintable, gtk_logo_paintable, GTK, LOGO_PAINTABLE, GObject)
struct _GtkLogoPaintable
{
GObject parent_instance;
int width;
int height;
GskPath *path[3];
GdkRGBA color[3];
GskPath *stroke_path;
GskStroke *stroke1;
GskStroke *stroke2;
GdkRGBA stroke_color;
};
struct _GtkLogoPaintableClass
{
GObjectClass parent_class;
};
static int
gtk_logo_paintable_get_intrinsic_width (GdkPaintable *paintable)
{
GtkLogoPaintable *self = GTK_LOGO_PAINTABLE (paintable);
return self->width;
}
static int
gtk_logo_paintable_get_intrinsic_height (GdkPaintable *paintable)
{
GtkLogoPaintable *self = GTK_LOGO_PAINTABLE (paintable);
return self->height;
}
static void
gtk_logo_paintable_snapshot (GdkPaintable *paintable,
GdkSnapshot *snapshot,
double width,
double height)
{
GtkLogoPaintable *self = GTK_LOGO_PAINTABLE (paintable);
for (unsigned int i = 0; i < 3; i++)
{
gtk_snapshot_push_fill (snapshot, self->path[i], GSK_FILL_RULE_WINDING);
gtk_snapshot_append_color (snapshot,
&self->color[i],
&GRAPHENE_RECT_INIT (0, 0, width, height));
gtk_snapshot_pop (snapshot);
}
for (unsigned int i = 0; i < 3; i++)
{
gtk_snapshot_push_stroke (snapshot, self->stroke_path, self->stroke1);
gtk_snapshot_append_color (snapshot,
&self->stroke_color,
&GRAPHENE_RECT_INIT (0, 0, width, height));
gtk_snapshot_pop (snapshot);
}
gtk_snapshot_push_stroke (snapshot, self->stroke_path, self->stroke2);
gtk_snapshot_append_color (snapshot,
&self->stroke_color,
&GRAPHENE_RECT_INIT (0, 0, width, height));
gtk_snapshot_pop (snapshot);
}
static GdkPaintableFlags
gtk_logo_paintable_get_flags (GdkPaintable *paintable)
{
return GDK_PAINTABLE_STATIC_CONTENTS | GDK_PAINTABLE_STATIC_SIZE;
}
static void
gtk_logo_paintable_paintable_init (GdkPaintableInterface *iface)
{
iface->get_intrinsic_width = gtk_logo_paintable_get_intrinsic_width;
iface->get_intrinsic_height = gtk_logo_paintable_get_intrinsic_height;
iface->snapshot = gtk_logo_paintable_snapshot;
iface->get_flags = gtk_logo_paintable_get_flags;
}
/* When defining the GType, we need to implement the GdkPaintable interface */
G_DEFINE_TYPE_WITH_CODE (GtkLogoPaintable, gtk_logo_paintable, G_TYPE_OBJECT,
G_IMPLEMENT_INTERFACE (GDK_TYPE_PAINTABLE,
gtk_logo_paintable_paintable_init))
static void
gtk_logo_paintable_dispose (GObject *object)
{
GtkLogoPaintable *self = GTK_LOGO_PAINTABLE (object);
for (unsigned int i = 0; i < 3; i++)
gsk_path_unref (self->path[i]);
gsk_path_unref (self->stroke_path);
gsk_stroke_free (self->stroke1);
gsk_stroke_free (self->stroke2);
G_OBJECT_CLASS (gtk_logo_paintable_parent_class)->dispose (object);
}
static void
gtk_logo_paintable_class_init (GtkLogoPaintableClass *klass)
{
GObjectClass *object_class = G_OBJECT_CLASS (klass);
object_class->dispose = gtk_logo_paintable_dispose;
}
static void
gtk_logo_paintable_init (GtkLogoPaintable *self)
{
}
static GdkPaintable *
gtk_logo_paintable_new (void)
{
GtkLogoPaintable *self;
graphene_rect_t bounds, bounds2;
self = g_object_new (GTK_TYPE_LOGO_PAINTABLE, NULL);
/* Paths and colors extracted from gtk-logo.svg */
self->path[0] = gsk_path_parse ("m3.12,66.17 -2.06,-51.46 32.93,24.7 v55.58 l-30.87,-28.82 z");
self->path[1] = gsk_path_parse ("m34,95 49.4,-20.58 4.12,-51.46 -53.52,16.47 v55.58 z");
self->path[2] = gsk_path_parse ("m1.06,14.71 32.93,24.7 53.52,-16.47 -36.75,-21.88 -49.7,13.65 z");
gdk_rgba_parse (&self->color[0], "#e40000");
gdk_rgba_parse (&self->color[1], "#7fe719");
gdk_rgba_parse (&self->color[2], "#729fcf");
self->stroke_path = gsk_path_parse ("m50.6,51.3 -47.3,14 z l33,23 z v-50");
self->stroke1 = gsk_stroke_new (2.12);
self->stroke2 = gsk_stroke_new (1.25);
gdk_rgba_parse (&self->stroke_color, "#ffffff");
gsk_path_get_stroke_bounds (self->path[0], self->stroke1, &bounds);
gsk_path_get_stroke_bounds (self->path[1], self->stroke1, &bounds2);
graphene_rect_union (&bounds, &bounds2, &bounds);
gsk_path_get_stroke_bounds (self->path[2], self->stroke1, &bounds2);
graphene_rect_union (&bounds, &bounds2, &bounds);
gsk_path_get_stroke_bounds (self->stroke_path, self->stroke2, &bounds2);
graphene_rect_union (&bounds, &bounds2, &bounds);
self->width = bounds.origin.x + bounds.size.width;
self->height = bounds.origin.y + bounds.size.height;
return GDK_PAINTABLE (self);
}
GtkWidget *
do_path_fill (GtkWidget *do_widget)
{
static GtkWidget *window = NULL;
if (!window)
{
GtkWidget *picture;
GdkPaintable *paintable;
window = gtk_window_new ();
gtk_window_set_resizable (GTK_WINDOW (window), TRUE);
gtk_window_set_title (GTK_WINDOW (window), "Fill and Stroke");
g_object_add_weak_pointer (G_OBJECT (window), (gpointer *)&window);
paintable = gtk_logo_paintable_new ();
picture = gtk_picture_new_for_paintable (paintable);
gtk_picture_set_content_fit (GTK_PICTURE (picture), GTK_CONTENT_FIT_CONTAIN);
gtk_picture_set_can_shrink (GTK_PICTURE (picture), FALSE);
g_object_unref (paintable);
gtk_window_set_child (GTK_WINDOW (window), picture);
}
if (!gtk_widget_get_visible (window))
gtk_window_present (GTK_WINDOW (window));
else
gtk_window_destroy (GTK_WINDOW (window));
return window;
}

View File

@@ -1,369 +0,0 @@
/* Path/Maze
*
* This demo shows how to use a GskPath to create a maze and use
* gsk_path_get_closest_point() to check the mouse stays
* on the path.
*
* It also shows off the performance of GskPath (or not) as this
* is a rather complex path.
*/
#include "config.h"
#include <glib/gi18n.h>
#include <gtk/gtk.h>
#include "paintable.h"
#define MAZE_GRID_SIZE 20
#define MAZE_STROKE_SIZE_ACTIVE (MAZE_GRID_SIZE - 4)
#define MAZE_STROKE_SIZE_INACTIVE (MAZE_GRID_SIZE - 12)
#define MAZE_WIDTH 31
#define MAZE_HEIGHT 21
#define GTK_TYPE_MAZE (gtk_maze_get_type ())
G_DECLARE_FINAL_TYPE (GtkMaze, gtk_maze, GTK, MAZE, GtkWidget)
struct _GtkMaze
{
GtkWidget parent_instance;
int width;
int height;
GskPath *path;
GskPathMeasure *measure;
GdkPaintable *background;
gboolean active;
};
struct _GtkMazeClass
{
GtkWidgetClass parent_class;
};
G_DEFINE_TYPE (GtkMaze, gtk_maze, GTK_TYPE_WIDGET)
static void
gtk_maze_measure (GtkWidget *widget,
GtkOrientation orientation,
int for_size,
int *minimum,
int *natural,
int *minimum_baseline,
int *natural_baseline)
{
GtkMaze *self = GTK_MAZE (widget);
if (orientation == GTK_ORIENTATION_HORIZONTAL)
*minimum = *natural = self->width;
else
*minimum = *natural = self->height;
}
static void
gtk_maze_snapshot (GtkWidget *widget,
GdkSnapshot *snapshot)
{
GtkMaze *self = GTK_MAZE (widget);
double width = gtk_widget_get_width (widget);
double height = gtk_widget_get_height (widget);
GskStroke *stroke;
stroke = gsk_stroke_new (MAZE_STROKE_SIZE_INACTIVE);
if (self->active)
gsk_stroke_set_line_width (stroke, MAZE_STROKE_SIZE_ACTIVE);
gsk_stroke_set_line_join (stroke, GSK_LINE_JOIN_ROUND);
gsk_stroke_set_line_cap (stroke, GSK_LINE_CAP_ROUND);
gtk_snapshot_push_stroke (snapshot, self->path, stroke);
gsk_stroke_free (stroke);
if (self->background)
{
gdk_paintable_snapshot (self->background, snapshot, width, height);
}
else
{
gtk_snapshot_append_linear_gradient (snapshot,
&GRAPHENE_RECT_INIT (0, 0, width, height),
&GRAPHENE_POINT_INIT (0, 0),
&GRAPHENE_POINT_INIT (width, height),
(GskColorStop[8]) {
{ 0.0, { 1.0, 0.0, 0.0, 1.0 } },
{ 0.2, { 1.0, 0.0, 0.0, 1.0 } },
{ 0.3, { 1.0, 1.0, 0.0, 1.0 } },
{ 0.4, { 0.0, 1.0, 0.0, 1.0 } },
{ 0.6, { 0.0, 1.0, 1.0, 1.0 } },
{ 0.7, { 0.0, 0.0, 1.0, 1.0 } },
{ 0.8, { 1.0, 0.0, 1.0, 1.0 } },
{ 1.0, { 1.0, 0.0, 1.0, 1.0 } }
},
8);
}
gtk_snapshot_pop (snapshot);
}
static void
gtk_maze_dispose (GObject *object)
{
GtkMaze *self = GTK_MAZE (object);
g_clear_pointer (&self->path, gsk_path_unref);
g_clear_pointer (&self->measure, gsk_path_measure_unref);
if (self->background)
{
g_signal_handlers_disconnect_matched (self->background, G_SIGNAL_MATCH_DATA, 0, 0, NULL, NULL, self);
g_clear_object (&self->background);
}
G_OBJECT_CLASS (gtk_maze_parent_class)->dispose (object);
}
static void
gtk_maze_class_init (GtkMazeClass *klass)
{
GtkWidgetClass *widget_class = GTK_WIDGET_CLASS (klass);
GObjectClass *object_class = G_OBJECT_CLASS (klass);
object_class->dispose = gtk_maze_dispose;
widget_class->measure = gtk_maze_measure;
widget_class->snapshot = gtk_maze_snapshot;
}
static void
celebrate (gboolean win)
{
char *path;
GtkMediaStream *stream;
if (win)
path = g_build_filename (GTK_DATADIR, "sounds", "freedesktop", "stereo", "complete.oga", NULL);
else
path = g_build_filename (GTK_DATADIR, "sounds", "freedesktop", "stereo", "suspend-error.oga", NULL);
stream = gtk_media_file_new_for_filename (path);
gtk_media_stream_set_volume (stream, 1.0);
gtk_media_stream_play (stream);
g_signal_connect (stream, "notify::ended", G_CALLBACK (g_object_unref), NULL);
g_free (path);
}
static void
pointer_motion (GtkEventControllerMotion *controller,
double x,
double y,
GtkMaze *self)
{
GskPathPoint point;
float distance;
if (!self->active)
return;
if (gsk_path_get_closest_point (self->path,
&GRAPHENE_POINT_INIT (x, y),
INFINITY,
&point,
&distance))
{
if (distance < MAZE_STROKE_SIZE_ACTIVE / 2.f)
return;
}
celebrate (FALSE);
self->active = FALSE;
gtk_widget_queue_draw (GTK_WIDGET (self));
}
static void
pointer_leave (GtkEventControllerMotion *controller,
GtkMaze *self)
{
if (!self->active)
{
self->active = TRUE;
gtk_widget_queue_draw (GTK_WIDGET (self));
}
}
static void
gtk_maze_init (GtkMaze *self)
{
GtkEventController *controller;
controller = GTK_EVENT_CONTROLLER (gtk_event_controller_motion_new ());
g_signal_connect (controller, "motion", G_CALLBACK (pointer_motion), self);
g_signal_connect (controller, "leave", G_CALLBACK (pointer_leave), self);
gtk_widget_add_controller (GTK_WIDGET (self), controller);
self->active = TRUE;
}
static void
gtk_maze_set_path (GtkMaze *self,
GskPath *path)
{
g_clear_pointer (&self->path, gsk_path_unref);
g_clear_pointer (&self->measure, gsk_path_measure_unref);
self->path = gsk_path_ref (path);
self->measure = gsk_path_measure_new (path);
gtk_widget_queue_draw (GTK_WIDGET (self));
}
GtkWidget *
gtk_maze_new (GskPath *path,
GdkPaintable *background,
int width,
int height)
{
GtkMaze *self;
self = g_object_new (GTK_TYPE_MAZE, NULL);
gtk_maze_set_path (self, path);
gsk_path_unref (path);
self->background = background;
if (self->background)
{
g_signal_connect_swapped (self->background, "invalidate-contents", G_CALLBACK (gtk_widget_queue_draw), self);
g_signal_connect_swapped (self->background, "invalidate-size", G_CALLBACK (gtk_widget_queue_resize), self);
}
self->width = width;
self->height = height;
return GTK_WIDGET (self);
}
static void
add_point_to_maze (GtkBitset *maze,
GskPathBuilder *builder,
guint x,
guint y)
{
gboolean set[4] = { FALSE, FALSE, FALSE, FALSE };
guint dir;
gtk_bitset_add (maze, y * MAZE_WIDTH + x);
while (TRUE)
{
set[0] = set[0] || x == 0 || gtk_bitset_contains (maze, y * MAZE_WIDTH + x - 1);
set[1] = set[1] || y == 0 || gtk_bitset_contains (maze, (y - 1) * MAZE_WIDTH + x);
set[2] = set[2] || x + 1 == MAZE_WIDTH || gtk_bitset_contains (maze, y * MAZE_WIDTH + x + 1);
set[3] = set[3] || y + 1 == MAZE_HEIGHT || gtk_bitset_contains (maze, (y + 1) * MAZE_WIDTH + x);
if (set[0] && set[1] && set[2] && set[3])
return;
do
{
dir = g_random_int_range (0, 4);
}
while (set[dir]);
switch (dir)
{
case 0:
gsk_path_builder_move_to (builder, (x + 0.5) * MAZE_GRID_SIZE, (y + 0.5) * MAZE_GRID_SIZE);
gsk_path_builder_line_to (builder, (x - 0.5) * MAZE_GRID_SIZE, (y + 0.5) * MAZE_GRID_SIZE);
add_point_to_maze (maze, builder, x - 1, y);
break;
case 1:
gsk_path_builder_move_to (builder, (x + 0.5) * MAZE_GRID_SIZE, (y + 0.5) * MAZE_GRID_SIZE);
gsk_path_builder_line_to (builder, (x + 0.5) * MAZE_GRID_SIZE, (y - 0.5) * MAZE_GRID_SIZE);
add_point_to_maze (maze, builder, x, y - 1);
break;
case 2:
gsk_path_builder_move_to (builder, (x + 0.5) * MAZE_GRID_SIZE, (y + 0.5) * MAZE_GRID_SIZE);
gsk_path_builder_line_to (builder, (x + 1.5) * MAZE_GRID_SIZE, (y + 0.5) * MAZE_GRID_SIZE);
add_point_to_maze (maze, builder, x + 1, y);
break;
case 3:
gsk_path_builder_move_to (builder, (x + 0.5) * MAZE_GRID_SIZE, (y + 0.5) * MAZE_GRID_SIZE);
gsk_path_builder_line_to (builder, (x + 0.5) * MAZE_GRID_SIZE, (y + 1.5) * MAZE_GRID_SIZE);
add_point_to_maze (maze, builder, x, y + 1);
break;
default:
g_assert_not_reached ();
break;
}
}
}
static GskPath *
create_path_for_maze (GtkWidget *widget)
{
GskPathBuilder *builder;
GtkBitset *maze;
builder = gsk_path_builder_new ();
maze = gtk_bitset_new_empty ();
/* make sure the outer lines are unreachable:
* Set the full range, then remove the center again. */
gtk_bitset_add_range (maze, 0, MAZE_WIDTH * MAZE_HEIGHT);
gtk_bitset_remove_rectangle (maze, MAZE_WIDTH + 1, MAZE_WIDTH - 2, MAZE_HEIGHT - 2, MAZE_WIDTH);
/* Fill the maze */
add_point_to_maze (maze, builder, MAZE_WIDTH / 2, MAZE_HEIGHT / 2);
/* Add start and stop lines */
gsk_path_builder_move_to (builder, 1.5 * MAZE_GRID_SIZE, -0.5 * MAZE_GRID_SIZE);
gsk_path_builder_line_to (builder, 1.5 * MAZE_GRID_SIZE, 1.5 * MAZE_GRID_SIZE);
gsk_path_builder_move_to (builder, (MAZE_WIDTH - 1.5) * MAZE_GRID_SIZE, (MAZE_HEIGHT - 1.5) * MAZE_GRID_SIZE);
gsk_path_builder_line_to (builder, (MAZE_WIDTH - 1.5) * MAZE_GRID_SIZE, (MAZE_HEIGHT + 0.5) * MAZE_GRID_SIZE);
gtk_bitset_unref (maze);
return gsk_path_builder_free_to_path (builder);
}
GtkWidget *
do_path_maze (GtkWidget *do_widget)
{
static GtkWidget *window = NULL;
if (!window)
{
GtkWidget *maze;
GtkMediaStream *stream;
GskPath *path;
window = gtk_window_new ();
gtk_window_set_resizable (GTK_WINDOW (window), TRUE);
gtk_window_set_title (GTK_WINDOW (window), "Follow the maze with the mouse");
g_object_add_weak_pointer (G_OBJECT (window), (gpointer *)&window);
#if 0
stream = gtk_media_file_new_for_resource ("/images/gtk-logo.webm");
#else
stream = gtk_nuclear_media_stream_new ();
#endif
gtk_media_stream_play (stream);
gtk_media_stream_set_loop (stream, TRUE);
path = create_path_for_maze (window);
maze = gtk_maze_new (path,
GDK_PAINTABLE (stream),
MAZE_WIDTH * MAZE_GRID_SIZE,
MAZE_HEIGHT * MAZE_GRID_SIZE);
gtk_window_set_child (GTK_WINDOW (window), maze);
}
if (!gtk_widget_get_visible (window))
gtk_window_present (GTK_WINDOW (window));
else
gtk_window_destroy (GTK_WINDOW (window));
return window;
}

View File

@@ -1,323 +0,0 @@
/* Path/Spinner
*
* This demo shows how to use GskPath to draw a simple animation
* that could be used as a spinner.
*/
#include <glib/gi18n.h>
#include <gtk/gtk.h>
#include "paintable.h"
#undef SHOW_CONTROLS
#define GTK_TYPE_SPINNER_PAINTABLE (gtk_spinner_paintable_get_type ())
G_DECLARE_FINAL_TYPE (GtkSpinnerPaintable, gtk_spinner_paintable, GTK, SPINNER_PAINTABLE, GObject)
struct _GtkSpinnerPaintable
{
GObject parent_instance;
gint64 start_time;
int width;
double angle;
double completion;
GskPath *circle;
GskPath *path;
GskStroke *stroke;
GdkRGBA color;
GdkRGBA circle_color;
#ifdef SHOW_CONTROLS
GskPath *controls;
GdkRGBA control_color;
#endif
};
struct _GtkSpinnerPaintableClass
{
GObjectClass parent_class;
};
static int
gtk_spinner_paintable_get_intrinsic_width (GdkPaintable *paintable)
{
GtkSpinnerPaintable *self = GTK_SPINNER_PAINTABLE (paintable);
return self->width;
}
static int
gtk_spinner_paintable_get_intrinsic_height (GdkPaintable *paintable)
{
GtkSpinnerPaintable *self = GTK_SPINNER_PAINTABLE (paintable);
return self->width;
}
static void
gtk_spinner_paintable_snapshot (GdkPaintable *paintable,
GdkSnapshot *snapshot,
double width,
double height)
{
GtkSpinnerPaintable *self = GTK_SPINNER_PAINTABLE (paintable);
gtk_snapshot_append_stroke (snapshot, self->circle, self->stroke, &self->circle_color);
gtk_snapshot_append_stroke (snapshot, self->path, self->stroke, &self->color);
#ifdef SHOW_CONTROLS
GskStroke *stroke = gsk_stroke_new (1);
gtk_snapshot_append_stroke (snapshot, self->controls, stroke, &self->control_color);
gsk_stroke_free (stroke);
#endif
}
static GdkPaintableFlags
gtk_spinner_paintable_get_flags (GdkPaintable *paintable)
{
return GDK_PAINTABLE_STATIC_SIZE;
}
static void
gtk_spinner_paintable_paintable_init (GdkPaintableInterface *iface)
{
iface->get_intrinsic_width = gtk_spinner_paintable_get_intrinsic_width;
iface->get_intrinsic_height = gtk_spinner_paintable_get_intrinsic_height;
iface->snapshot = gtk_spinner_paintable_snapshot;
iface->get_flags = gtk_spinner_paintable_get_flags;
}
/* When defining the GType, we need to implement the GdkPaintable interface */
G_DEFINE_TYPE_WITH_CODE (GtkSpinnerPaintable, gtk_spinner_paintable, G_TYPE_OBJECT,
G_IMPLEMENT_INTERFACE (GDK_TYPE_PAINTABLE,
gtk_spinner_paintable_paintable_init))
static void
gtk_spinner_paintable_dispose (GObject *object)
{
GtkSpinnerPaintable *self = GTK_SPINNER_PAINTABLE (object);
gsk_path_unref (self->circle);
gsk_path_unref (self->path);
#ifdef SHOW_CONTROLS
gsk_path_unref (self->controls);
#endif
gsk_stroke_free (self->stroke);
G_OBJECT_CLASS (gtk_spinner_paintable_parent_class)->dispose (object);
}
static void
gtk_spinner_paintable_class_init (GtkSpinnerPaintableClass *klass)
{
GObjectClass *object_class = G_OBJECT_CLASS (klass);
object_class->dispose = gtk_spinner_paintable_dispose;
}
static void
gtk_spinner_paintable_init (GtkSpinnerPaintable *self)
{
}
static GdkPaintable *
gtk_spinner_paintable_new (void)
{
GtkSpinnerPaintable *self;
GskPathBuilder *builder;
self = g_object_new (GTK_TYPE_SPINNER_PAINTABLE, NULL);
builder = gsk_path_builder_new ();
gsk_path_builder_add_circle (builder, &GRAPHENE_POINT_INIT (50, 50), 40);
self->circle = gsk_path_builder_free_to_path (builder);
self->width = 100;
self->angle = 0;
self->completion = 1;
gdk_rgba_parse (&self->color, "green");
gdk_rgba_parse (&self->circle_color, "lightgray");
#ifdef SHOW_CONTROLS
gdk_rgba_parse (&self->control_color, "black");
#endif
self->stroke = gsk_stroke_new (5);
return GDK_PAINTABLE (self);
}
#ifdef SHOW_CONTROLS
static gboolean
add_controls (GskPathOperation op,
const graphene_point_t *pts,
gsize n_pts,
float weight,
gpointer data)
{
GskPathBuilder *builder = data;
switch (op)
{
case GSK_PATH_MOVE:
gsk_path_builder_move_to (builder, pts[0].x, pts[0].y);
break;
case GSK_PATH_CLOSE:
case GSK_PATH_LINE:
gsk_path_builder_line_to (builder, pts[1].x, pts[1].y);
break;
case GSK_PATH_QUAD:
case GSK_PATH_CONIC:
gsk_path_builder_line_to (builder, pts[1].x, pts[1].y);
gsk_path_builder_line_to (builder, pts[2].x, pts[2].y);
break;
case GSK_PATH_CUBIC:
gsk_path_builder_line_to (builder, pts[1].x, pts[1].y);
gsk_path_builder_line_to (builder, pts[2].x, pts[2].y);
gsk_path_builder_line_to (builder, pts[3].x, pts[3].y);
break;
default:
g_assert_not_reached ();
}
return TRUE;
}
#endif
static void
update_path (GtkSpinnerPaintable *self)
{
GskPathBuilder *builder;
GskPathPoint start, end;
graphene_point_t p0, p1;
float start_angle, end_angle;
start_angle = self->angle;
end_angle = fmod (self->angle + 360 * self->completion / 100, 360);
p0 = GRAPHENE_POINT_INIT (50 + 40 * cos (M_PI * start_angle / 180),
50 + 40 * sin (M_PI * start_angle / 180));
p1 = GRAPHENE_POINT_INIT (50 + 40 * cos (M_PI * end_angle / 180),
50 + 40 * sin (M_PI * end_angle / 180));
g_clear_pointer (&self->path, gsk_path_unref);
gsk_path_get_closest_point (self->circle, &p0, INFINITY, &start, NULL);
gsk_path_get_closest_point (self->circle, &p1, INFINITY, &end, NULL);
builder = gsk_path_builder_new ();
gsk_path_builder_add_segment (builder, self->circle, &start, &end);
self->path = gsk_path_builder_free_to_path (builder);
#ifdef SHOW_CONTROLS
g_clear_pointer (&self->controls, gsk_path_unref);
builder = gsk_path_builder_new ();
gsk_path_foreach (self->path, -1, add_controls, builder);
self->controls = gsk_path_builder_free_to_path (builder);
#endif
gdk_paintable_invalidate_contents (GDK_PAINTABLE (self));
}
static void
gtk_spinner_paintable_set_completion (GtkSpinnerPaintable *self,
float completion)
{
self->completion = CLAMP (completion, 0, 100);
update_path (self);
}
static float
gtk_spinner_paintable_get_completion (GtkSpinnerPaintable *self)
{
return self->completion;
}
static void
gtk_spinner_paintable_set_frame_time (GtkSpinnerPaintable *self,
gint64 time)
{
double delta;
if (self->start_time == 0)
self->start_time = time;
delta = (time - self->start_time) / (double) G_TIME_SPAN_SECOND;
self->angle = fmod (60 * delta, 360);
update_path (self);
}
static gboolean
tick_cb (GtkWidget *widget,
GdkFrameClock *clock,
gpointer data)
{
GtkSpinnerPaintable *self = data;
gtk_spinner_paintable_set_frame_time (self, gdk_frame_clock_get_frame_time (clock));
return G_SOURCE_CONTINUE;
}
static gboolean
progress_timeout (gpointer data)
{
GtkSpinnerPaintable *self = data;
static float progress_delta = 0.5;
float progress;
progress = gtk_spinner_paintable_get_completion (self);
if (progress >= 100 || progress <= 0)
progress_delta = -progress_delta;
gtk_spinner_paintable_set_completion (self, progress + progress_delta);
return G_SOURCE_CONTINUE;
}
static void
unset_timeout (gpointer data)
{
g_source_remove (GPOINTER_TO_UINT (data));
}
GtkWidget *
do_path_spinner (GtkWidget *do_widget)
{
static GtkWidget *window = NULL;
if (!window)
{
GtkWidget *picture;
GdkPaintable *paintable;
guint timeout_id;
window = gtk_window_new ();
gtk_window_set_resizable (GTK_WINDOW (window), TRUE);
gtk_window_set_title (GTK_WINDOW (window), "Spinner");
g_object_add_weak_pointer (G_OBJECT (window), (gpointer *)&window);
paintable = gtk_spinner_paintable_new ();
picture = gtk_picture_new_for_paintable (paintable);
gtk_picture_set_content_fit (GTK_PICTURE (picture), GTK_CONTENT_FIT_CONTAIN);
gtk_picture_set_can_shrink (GTK_PICTURE (picture), FALSE);
g_object_unref (paintable);
gtk_widget_add_tick_callback (picture, tick_cb, paintable, NULL);
timeout_id = g_timeout_add (100, progress_timeout, paintable);
g_object_set_data_full (G_OBJECT (picture), "timeout", GUINT_TO_POINTER (timeout_id), unset_timeout);
gtk_window_set_child (GTK_WINDOW (window), picture);
}
if (!gtk_widget_get_visible (window))
gtk_window_present (GTK_WINDOW (window));
else
gtk_window_destroy (GTK_WINDOW (window));
return window;
}

View File

@@ -1,319 +0,0 @@
/* Path/Sweep
*
* This demo shows how path intersections can be used.
*
* The world map that is used here is a path with 211 lines and 1569 cubic
* Bėzier segments in 121 contours.
*/
#include <glib/gi18n.h>
#include <gtk/gtk.h>
#define GTK_TYPE_PATH_SWEEP (gtk_path_sweep_get_type ())
G_DECLARE_FINAL_TYPE (GtkPathSweep, gtk_path_sweep, GTK, PATH_SWEEP, GtkWidget)
#define POINT_SIZE 8
enum {
PROP_0,
PROP_PATH,
N_PROPS
};
struct _GtkPathSweep
{
GtkWidget parent_instance;
GskPath *path;
graphene_rect_t bounds;
float y_pos;
gboolean in;
};
struct _GtkPathSweepClass
{
GtkWidgetClass parent_class;
};
static GParamSpec *properties[N_PROPS] = { NULL, };
G_DEFINE_TYPE (GtkPathSweep, gtk_path_sweep, GTK_TYPE_WIDGET)
static gboolean
intersection_cb (GskPath *path1,
const GskPathPoint *point1,
GskPath *path2,
const GskPathPoint *point2,
GskPathIntersection kind,
gpointer data)
{
GskPathBuilder *builder = data;
graphene_point_t p;
gsk_path_point_get_position (point1, path1, &p);
gsk_path_builder_add_circle (builder, &p, 4);
return TRUE;
}
static GskPath *
get_intersection_path (GskPath *path1,
GskPath *path2)
{
GskPathBuilder *builder = gsk_path_builder_new ();
gsk_path_foreach_intersection (path1, path2, intersection_cb, builder);
return gsk_path_builder_to_path (builder);
}
static void
gtk_path_sweep_snapshot (GtkWidget *widget,
GtkSnapshot *snapshot)
{
GtkPathSweep *self = GTK_PATH_SWEEP (widget);
GskStroke *stroke;
if (self->path == NULL)
return;
gtk_snapshot_save (snapshot);
stroke = gsk_stroke_new (2.0);
gtk_snapshot_append_stroke (snapshot, self->path, stroke, &(GdkRGBA) { 0, 0, 0, 1 });
if (self->in)
{
graphene_rect_t bounds;
GskPathBuilder *builder;
GskPath *line, *isecs;
gsk_path_get_stroke_bounds (self->path, stroke, &bounds);
builder = gsk_path_builder_new ();
gsk_path_builder_move_to (builder, bounds.origin.x, bounds.origin.y + self->y_pos);
gsk_path_builder_line_to (builder, bounds.origin.x + bounds.size.width, bounds.origin.y + self->y_pos);
line = gsk_path_builder_free_to_path (builder);
gtk_snapshot_append_stroke (snapshot, line, stroke, &(GdkRGBA) { 0, 0, 0, 1 });
isecs = get_intersection_path (self->path, line);
gtk_snapshot_append_fill (snapshot, isecs, GSK_FILL_RULE_WINDING, &(GdkRGBA) { 1, 0, 0, 1 });
gtk_snapshot_append_stroke (snapshot, isecs, stroke, &(GdkRGBA) { 0, 0, 0, 1 });
gsk_path_unref (isecs);
gsk_path_unref (line);
}
gsk_stroke_free (stroke);
gtk_snapshot_restore (snapshot);
}
static void
gtk_path_sweep_measure (GtkWidget *widget,
GtkOrientation orientation,
int for_size,
int *minimum,
int *natural,
int *minimum_baseline,
int *natural_baseline)
{
GtkPathSweep *self = GTK_PATH_SWEEP (widget);
if (orientation == GTK_ORIENTATION_HORIZONTAL)
*minimum = *natural = (int) ceilf (self->bounds.size.width);
else
*minimum = *natural = (int) ceilf (self->bounds.size.height);
}
static void
gtk_path_sweep_set_path (GtkPathSweep *self,
GskPath *path)
{
if (self->path == path)
return;
g_clear_pointer (&self->path, gsk_path_unref);
graphene_rect_init (&self->bounds, 0, 0, 0, 0);
if (path)
{
GskStroke *stroke;
self->path = gsk_path_ref (path);
stroke = gsk_stroke_new (2.0);
gsk_path_get_stroke_bounds (path, stroke, &self->bounds);
gsk_stroke_free (stroke);
}
gtk_widget_queue_resize (GTK_WIDGET (self));
g_object_notify_by_pspec (G_OBJECT (self), properties[PROP_PATH]);
}
static void
gtk_path_sweep_set_property (GObject *object,
guint prop_id,
const GValue *value,
GParamSpec *pspec)
{
GtkPathSweep *self = GTK_PATH_SWEEP (object);
switch (prop_id)
{
case PROP_PATH:
gtk_path_sweep_set_path (self, g_value_get_boxed (value));
break;
default:
G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
break;
}
}
static void
gtk_path_sweep_get_property (GObject *object,
guint prop_id,
GValue *value,
GParamSpec *pspec)
{
GtkPathSweep *self = GTK_PATH_SWEEP (object);
switch (prop_id)
{
case PROP_PATH:
g_value_set_boxed (value, self->path);
break;
default:
G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
break;
}
}
static void
gtk_path_sweep_dispose (GObject *object)
{
GtkPathSweep *self = GTK_PATH_SWEEP (object);
g_clear_pointer (&self->path, gsk_path_unref);
G_OBJECT_CLASS (gtk_path_sweep_parent_class)->dispose (object);
}
static void
gtk_path_sweep_class_init (GtkPathSweepClass *klass)
{
GtkWidgetClass *widget_class = GTK_WIDGET_CLASS (klass);
GObjectClass *object_class = G_OBJECT_CLASS (klass);
object_class->dispose = gtk_path_sweep_dispose;
object_class->set_property = gtk_path_sweep_set_property;
object_class->get_property = gtk_path_sweep_get_property;
widget_class->snapshot = gtk_path_sweep_snapshot;
widget_class->measure = gtk_path_sweep_measure;
properties[PROP_PATH] =
g_param_spec_boxed ("path", NULL, NULL,
GSK_TYPE_PATH,
G_PARAM_READWRITE | G_PARAM_EXPLICIT_NOTIFY | G_PARAM_STATIC_STRINGS);
g_object_class_install_properties (object_class, N_PROPS, properties);
}
static void
motion_cb (GtkEventControllerMotion *controller,
double x,
double y,
gpointer data)
{
GtkPathSweep *self = data;
self->y_pos = y;
gtk_widget_queue_draw (GTK_WIDGET (self));
}
static void
enter_cb (GtkEventControllerMotion *controller,
double x,
double y,
gpointer data)
{
GtkPathSweep *self = data;
self->in = TRUE;
self->y_pos = y;
gtk_widget_queue_draw (GTK_WIDGET (self));
}
static void
leave_cb (GtkEventControllerMotion *controller,
gpointer data)
{
GtkPathSweep *self = data;
self->in = FALSE;
gtk_widget_queue_draw (GTK_WIDGET (self));
}
static void
gtk_path_sweep_init (GtkPathSweep *self)
{
GtkEventController *controller;
/* Data taken from
* https://commons.wikimedia.org/wiki/Maps_of_the_world#/media/File:Simplified_blank_world_map_without_Antartica_(no_borders).svg
*/
GBytes *data = g_resources_lookup_data ("/path_sweep/path_world.txt", 0, NULL);
GskPath *path = gsk_path_parse (g_bytes_get_data (data, NULL));
g_bytes_unref (data);
gtk_path_sweep_set_path (self, path);
gsk_path_unref (path);
controller = gtk_event_controller_motion_new ();
g_signal_connect (controller, "motion", G_CALLBACK (motion_cb), self);
g_signal_connect (controller, "enter", G_CALLBACK (enter_cb), self);
g_signal_connect (controller, "leave", G_CALLBACK (leave_cb), self);
gtk_widget_add_controller (GTK_WIDGET (self), controller);
}
GtkWidget *
gtk_path_sweep_new (void)
{
GtkPathSweep *self;
self = g_object_new (GTK_TYPE_PATH_SWEEP, NULL);
return GTK_WIDGET (self);
}
GtkWidget *
do_path_sweep (GtkWidget *do_widget)
{
static GtkWidget *window = NULL;
if (!window)
{
GtkBuilder *builder;
g_type_ensure (GTK_TYPE_PATH_SWEEP);
builder = gtk_builder_new_from_resource ("/path_sweep/path_sweep.ui");
window = GTK_WIDGET (gtk_builder_get_object (builder, "window"));
gtk_window_set_display (GTK_WINDOW (window),
gtk_widget_get_display (do_widget));
g_object_add_weak_pointer (G_OBJECT (window), (gpointer *) &window);
g_object_unref (builder);
}
if (!gtk_widget_get_visible (window))
gtk_window_present (GTK_WINDOW (window));
else
gtk_window_destroy (GTK_WINDOW (window));
return window;
}

View File

@@ -1,17 +0,0 @@
<?xml version="1.0" encoding="UTF-8"?>
<interface>
<object class="GtkWindow" id="window">
<property name="title" translatable="yes">World Map</property>
<property name="child">
<object class="GtkBox">
<property name="orientation">vertical</property>
<child>
<object class="GtkPathSweep" id="view">
<property name="hexpand">true</property>
<property name="vexpand">true</property>
</object>
</child>
</object>
</property>
</object>
</interface>

View File

@@ -1,584 +0,0 @@
/* Path/Text
*
* This demo shows how to use GskPath to transform a path along another path.
*
* It also demonstrates that paths can be filled with more interesting
* content than just plain colors.
*/
#include <glib/gi18n.h>
#include <gtk/gtk.h>
#define GTK_TYPE_PATH_WIDGET (gtk_path_widget_get_type ())
G_DECLARE_FINAL_TYPE (GtkPathWidget, gtk_path_widget, GTK, PATH_WIDGET, GtkWidget)
#define POINT_SIZE 8
enum {
PROP_0,
PROP_TEXT,
PROP_EDITABLE,
N_PROPS
};
struct _GtkPathWidget
{
GtkWidget parent_instance;
char *text;
gboolean editable;
graphene_point_t points[4];
guint active_point;
GskPath *line_path;
GskPath *text_path;
GdkPaintable *background;
};
struct _GtkPathWidgetClass
{
GtkWidgetClass parent_class;
};
static GParamSpec *properties[N_PROPS] = { NULL, };
G_DEFINE_TYPE (GtkPathWidget, gtk_path_widget, GTK_TYPE_WIDGET)
static GskPath *
create_path_from_text (GtkWidget *widget,
const char *text,
graphene_point_t *out_offset)
{
PangoLayout *layout;
PangoFontDescription *desc;
GskPathBuilder *builder;
GskPath *result;
layout = gtk_widget_create_pango_layout (widget, text);
desc = pango_font_description_from_string ("sans bold 36");
pango_layout_set_font_description (layout, desc);
pango_font_description_free (desc);
builder = gsk_path_builder_new ();
gsk_path_builder_add_layout (builder, layout);
result = gsk_path_builder_free_to_path (builder);
if (out_offset)
graphene_point_init (out_offset, 0, - pango_layout_get_baseline (layout) / (double) PANGO_SCALE);
g_object_unref (layout);
return result;
}
typedef struct
{
GskPathMeasure *measure;
GskPathBuilder *builder;
graphene_point_t offset;
double scale;
} GtkPathTransform;
static void
gtk_path_transform_point (GskPathMeasure *measure,
const graphene_point_t *pt,
const graphene_point_t *offset,
float scale,
graphene_point_t *res)
{
graphene_vec2_t tangent;
GskPathPoint point;
if (gsk_path_measure_get_point (measure, (pt->x + offset->x) * scale, &point))
{
GskPath *path = gsk_path_measure_get_path (measure);
gsk_path_point_get_position (&point, path, res);
gsk_path_point_get_tangent (&point, path, GSK_PATH_TO_END, &tangent);
res->x -= (pt->y + offset->y) * scale * graphene_vec2_get_y (&tangent);
res->y += (pt->y + offset->y) * scale * graphene_vec2_get_x (&tangent);
}
}
static gboolean
gtk_path_transform_op (GskPathOperation op,
const graphene_point_t *pts,
gsize n_pts,
float weight,
gpointer data)
{
GtkPathTransform *transform = data;
switch (op)
{
case GSK_PATH_MOVE:
{
graphene_point_t res;
gtk_path_transform_point (transform->measure, &pts[0], &transform->offset, transform->scale, &res);
gsk_path_builder_move_to (transform->builder, res.x, res.y);
}
break;
case GSK_PATH_LINE:
{
graphene_point_t res;
gtk_path_transform_point (transform->measure, &pts[1], &transform->offset, transform->scale, &res);
gsk_path_builder_line_to (transform->builder, res.x, res.y);
}
break;
case GSK_PATH_QUAD:
{
graphene_point_t res[2];
gtk_path_transform_point (transform->measure, &pts[1], &transform->offset, transform->scale, &res[0]);
gtk_path_transform_point (transform->measure, &pts[2], &transform->offset, transform->scale, &res[1]);
gsk_path_builder_quad_to (transform->builder, res[0].x, res[0].y, res[1].x, res[1].y);
}
break;
case GSK_PATH_CUBIC:
{
graphene_point_t res[3];
gtk_path_transform_point (transform->measure, &pts[1], &transform->offset, transform->scale, &res[0]);
gtk_path_transform_point (transform->measure, &pts[2], &transform->offset, transform->scale, &res[1]);
gtk_path_transform_point (transform->measure, &pts[3], &transform->offset, transform->scale, &res[2]);
gsk_path_builder_cubic_to (transform->builder, res[0].x, res[0].y, res[1].x, res[1].y, res[2].x, res[2].y);
}
break;
case GSK_PATH_CONIC:
{
graphene_point_t res[2];
gtk_path_transform_point (transform->measure, &pts[1], &transform->offset, transform->scale, &res[0]);
gtk_path_transform_point (transform->measure, &pts[3], &transform->offset, transform->scale, &res[1]);
gsk_path_builder_conic_to (transform->builder, res[0].x, res[0].y, res[1].x, res[1].y, weight);
}
break;
case GSK_PATH_CLOSE:
gsk_path_builder_close (transform->builder);
break;
default:
g_assert_not_reached();
return FALSE;
}
return TRUE;
}
static GskPath *
gtk_path_transform (GskPath *line_path,
GskPath *path,
const graphene_point_t *offset)
{
GskPathMeasure *measure = gsk_path_measure_new (line_path);
GtkPathTransform transform = { measure, gsk_path_builder_new (), *offset };
graphene_rect_t bounds;
gsk_path_get_bounds (path, &bounds);
if (bounds.origin.x + bounds.size.width > 0)
transform.scale = gsk_path_measure_get_length (measure) / (bounds.origin.x + bounds.size.width);
else
transform.scale = 1.0f;
gsk_path_foreach (path, -1, gtk_path_transform_op, &transform);
gsk_path_measure_unref (measure);
return gsk_path_builder_free_to_path (transform.builder);
}
static void
gtk_path_widget_clear_text_path (GtkPathWidget *self)
{
g_clear_pointer (&self->text_path, gsk_path_unref);
}
static void
gtk_path_widget_clear_paths (GtkPathWidget *self)
{
gtk_path_widget_clear_text_path (self);
g_clear_pointer (&self->line_path, gsk_path_unref);
}
static void
gtk_path_widget_create_text_path (GtkPathWidget *self)
{
GskPath *path;
graphene_point_t offset;
gtk_path_widget_clear_text_path (self);
path = create_path_from_text (GTK_WIDGET (self), self->text, &offset);
self->text_path = gtk_path_transform (self->line_path, path, &offset);
gsk_path_unref (path);
}
static void
gtk_path_widget_create_paths (GtkPathWidget *self)
{
double width = gtk_widget_get_width (GTK_WIDGET (self));
double height = gtk_widget_get_height (GTK_WIDGET (self));
GskPathBuilder *builder;
gtk_path_widget_clear_paths (self);
if (width <= 0 || height <= 0)
return;
builder = gsk_path_builder_new ();
gsk_path_builder_move_to (builder,
self->points[0].x * width, self->points[0].y * height);
gsk_path_builder_cubic_to (builder,
self->points[1].x * width, self->points[1].y * height,
self->points[2].x * width, self->points[2].y * height,
self->points[3].x * width, self->points[3].y * height);
self->line_path = gsk_path_builder_free_to_path (builder);
gtk_path_widget_create_text_path (self);
}
static void
gtk_path_widget_allocate (GtkWidget *widget,
int width,
int height,
int baseline)
{
GtkPathWidget *self = GTK_PATH_WIDGET (widget);
GTK_WIDGET_CLASS (gtk_path_widget_parent_class)->size_allocate (widget, width, height, baseline);
gtk_path_widget_create_paths (self);
}
static void
gtk_path_widget_snapshot (GtkWidget *widget,
GtkSnapshot *snapshot)
{
GtkPathWidget *self = GTK_PATH_WIDGET (widget);
double width = gtk_widget_get_width (widget);
double height = gtk_widget_get_height (widget);
GskPath *path;
GskStroke *stroke;
gsize i;
/* frosted glass the background */
gtk_snapshot_push_blur (snapshot, 100);
gdk_paintable_snapshot (self->background, snapshot, width, height);
gtk_snapshot_append_color (snapshot, &(GdkRGBA) { 1, 1, 1, 0.6 }, &GRAPHENE_RECT_INIT (0, 0, width, height));
gtk_snapshot_pop (snapshot);
/* draw the text */
if (self->text_path)
{
gtk_snapshot_push_fill (snapshot, self->text_path, GSK_FILL_RULE_WINDING);
gdk_paintable_snapshot (self->background, snapshot, width, height);
/* ... with an emboss effect */
stroke = gsk_stroke_new (2.0);
gtk_snapshot_translate (snapshot, &GRAPHENE_POINT_INIT(1, 1));
gtk_snapshot_push_stroke (snapshot, self->text_path, stroke);
gtk_snapshot_append_color (snapshot, &(GdkRGBA) { 0, 0, 0, 0.2 }, &GRAPHENE_RECT_INIT (0, 0, width, height));
gsk_stroke_free (stroke);
gtk_snapshot_pop (snapshot);
gtk_snapshot_pop (snapshot);
}
if (self->editable && self->line_path)
{
GskPathBuilder *builder;
/* draw the control line */
stroke = gsk_stroke_new (1.0);
gtk_snapshot_push_stroke (snapshot, self->line_path, stroke);
gsk_stroke_free (stroke);
gtk_snapshot_append_color (snapshot, &(GdkRGBA) { 0, 0, 0, 1 }, &GRAPHENE_RECT_INIT (0, 0, width, height));
gtk_snapshot_pop (snapshot);
/* draw the points */
builder = gsk_path_builder_new ();
for (i = 0; i < 4; i++)
{
gsk_path_builder_add_circle (builder, &GRAPHENE_POINT_INIT (self->points[i].x * width, self->points[i].y * height), POINT_SIZE);
}
path = gsk_path_builder_free_to_path (builder);
gtk_snapshot_push_fill (snapshot, path, GSK_FILL_RULE_WINDING);
gtk_snapshot_append_color (snapshot, &(GdkRGBA) { 1, 1, 1, 1 }, &GRAPHENE_RECT_INIT (0, 0, width, height));
gtk_snapshot_pop (snapshot);
stroke = gsk_stroke_new (1.0);
gtk_snapshot_push_stroke (snapshot, path, stroke);
gsk_stroke_free (stroke);
gtk_snapshot_append_color (snapshot, &(GdkRGBA) { 0, 0, 0, 1 }, &GRAPHENE_RECT_INIT (0, 0, width, height));
gtk_snapshot_pop (snapshot);
gsk_path_unref (path);
}
}
static void
gtk_path_widget_set_text (GtkPathWidget *self,
const char *text)
{
if (g_strcmp0 (self->text, text) == 0)
return;
g_free (self->text);
self->text = g_strdup (text);
gtk_path_widget_create_paths (self);
gtk_widget_queue_draw (GTK_WIDGET (self));
g_object_notify_by_pspec (G_OBJECT (self), properties[PROP_TEXT]);
}
static void
gtk_path_widget_set_editable (GtkPathWidget *self,
gboolean editable)
{
if (self->editable == editable)
return;
self->editable = editable;
gtk_widget_queue_draw (GTK_WIDGET (self));
g_object_notify_by_pspec (G_OBJECT (self), properties[PROP_EDITABLE]);
}
static void
gtk_path_widget_set_property (GObject *object,
guint prop_id,
const GValue *value,
GParamSpec *pspec)
{
GtkPathWidget *self = GTK_PATH_WIDGET (object);
switch (prop_id)
{
case PROP_TEXT:
gtk_path_widget_set_text (self, g_value_get_string (value));
break;
case PROP_EDITABLE:
gtk_path_widget_set_editable (self, g_value_get_boolean (value));
break;
default:
G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
break;
}
}
static void
gtk_path_widget_get_property (GObject *object,
guint prop_id,
GValue *value,
GParamSpec *pspec)
{
GtkPathWidget *self = GTK_PATH_WIDGET (object);
switch (prop_id)
{
case PROP_TEXT:
g_value_set_string (value, self->text);
break;
case PROP_EDITABLE:
g_value_set_boolean (value, self->editable);
break;
default:
G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
break;
}
}
static void
gtk_path_widget_dispose (GObject *object)
{
GtkPathWidget *self = GTK_PATH_WIDGET (object);
gtk_path_widget_clear_paths (self);
G_OBJECT_CLASS (gtk_path_widget_parent_class)->dispose (object);
}
static void
gtk_path_widget_class_init (GtkPathWidgetClass *klass)
{
GtkWidgetClass *widget_class = GTK_WIDGET_CLASS (klass);
GObjectClass *object_class = G_OBJECT_CLASS (klass);
object_class->dispose = gtk_path_widget_dispose;
object_class->set_property = gtk_path_widget_set_property;
object_class->get_property = gtk_path_widget_get_property;
widget_class->size_allocate = gtk_path_widget_allocate;
widget_class->snapshot = gtk_path_widget_snapshot;
properties[PROP_TEXT] =
g_param_spec_string ("text",
"text",
"Text transformed along a path",
NULL,
G_PARAM_READWRITE | G_PARAM_EXPLICIT_NOTIFY | G_PARAM_STATIC_STRINGS);
properties[PROP_EDITABLE] =
g_param_spec_boolean ("editable",
"editable",
"If the path can be edited by the user",
FALSE,
G_PARAM_READWRITE | G_PARAM_EXPLICIT_NOTIFY | G_PARAM_STATIC_STRINGS);
g_object_class_install_properties (object_class, N_PROPS, properties);
}
static void
drag_begin (GtkGestureDrag *gesture,
double x,
double y,
GtkPathWidget *self)
{
graphene_point_t mouse = GRAPHENE_POINT_INIT (x, y);
double width = gtk_widget_get_width (GTK_WIDGET (self));
double height = gtk_widget_get_height (GTK_WIDGET (self));
gsize i;
for (i = 0; i < 4; i++)
{
if (graphene_point_distance (&GRAPHENE_POINT_INIT (self->points[i].x * width, self->points[i].y * height), &mouse, NULL, NULL) <= POINT_SIZE)
{
self->active_point = i;
break;
}
}
if (i == 4)
{
gtk_gesture_set_state (GTK_GESTURE (gesture), GTK_EVENT_SEQUENCE_DENIED);
return;
}
gtk_widget_queue_draw (GTK_WIDGET (self));
}
static void
drag_update (GtkGestureDrag *drag,
double offset_x,
double offset_y,
GtkPathWidget *self)
{
double width = gtk_widget_get_width (GTK_WIDGET (self));
double height = gtk_widget_get_height (GTK_WIDGET (self));
double start_x, start_y;
gtk_gesture_drag_get_start_point (drag, &start_x, &start_y);
self->points[self->active_point] = GRAPHENE_POINT_INIT ((start_x + offset_x) / width,
(start_y + offset_y) / height);
self->points[self->active_point].x = CLAMP (self->points[self->active_point].x, 0, 1);
self->points[self->active_point].y = CLAMP (self->points[self->active_point].y, 0, 1);
gtk_path_widget_create_paths (self);
gtk_widget_queue_draw (GTK_WIDGET (self));
}
static void
pointer_motion (GtkEventControllerMotion *controller,
double x,
double y,
GtkPathWidget *self)
{
GskPathPoint point;
if (gsk_path_get_closest_point (self->line_path,
&GRAPHENE_POINT_INIT (x, y),
INFINITY,
&point,
NULL))
{
gtk_widget_queue_draw (GTK_WIDGET (self));
}
}
static void
pointer_leave (GtkEventControllerMotion *controller,
GtkPathWidget *self)
{
gtk_widget_queue_draw (GTK_WIDGET (self));
}
static void
gtk_path_widget_init (GtkPathWidget *self)
{
GtkEventController *controller;
controller = GTK_EVENT_CONTROLLER (gtk_gesture_drag_new ());
g_signal_connect (controller, "drag-begin", G_CALLBACK (drag_begin), self);
g_signal_connect (controller, "drag-update", G_CALLBACK (drag_update), self);
g_signal_connect (controller, "drag-end", G_CALLBACK (drag_update), self);
gtk_widget_add_controller (GTK_WIDGET (self), controller);
controller = GTK_EVENT_CONTROLLER (gtk_event_controller_motion_new ());
g_signal_connect (controller, "enter", G_CALLBACK (pointer_motion), self);
g_signal_connect (controller, "motion", G_CALLBACK (pointer_motion), self);
g_signal_connect (controller, "leave", G_CALLBACK (pointer_leave), self);
gtk_widget_add_controller (GTK_WIDGET (self), controller);
self->points[0] = GRAPHENE_POINT_INIT (0.1, 0.9);
self->points[1] = GRAPHENE_POINT_INIT (0.3, 0.1);
self->points[2] = GRAPHENE_POINT_INIT (0.7, 0.1);
self->points[3] = GRAPHENE_POINT_INIT (0.9, 0.9);
self->background = GDK_PAINTABLE (gdk_texture_new_from_resource ("/sliding_puzzle/portland-rose.jpg"));
gtk_path_widget_set_text (self, "It's almost working");
}
GtkWidget *
gtk_path_widget_new (void)
{
GtkPathWidget *self;
self = g_object_new (GTK_TYPE_PATH_WIDGET, NULL);
return GTK_WIDGET (self);
}
GtkWidget *
do_path_text (GtkWidget *do_widget)
{
static GtkWidget *window = NULL;
if (!window)
{
GtkBuilder *builder;
g_type_ensure (GTK_TYPE_PATH_WIDGET);
builder = gtk_builder_new_from_resource ("/path_text/path_text.ui");
window = GTK_WIDGET (gtk_builder_get_object (builder, "window"));
gtk_window_set_display (GTK_WINDOW (window),
gtk_widget_get_display (do_widget));
g_object_add_weak_pointer (G_OBJECT (window), (gpointer *) &window);
g_object_unref (builder);
}
if (!gtk_widget_get_visible (window))
gtk_window_present (GTK_WINDOW (window));
else
gtk_window_destroy (GTK_WINDOW (window));
return window;
}

View File

@@ -1,38 +0,0 @@
<?xml version="1.0" encoding="UTF-8"?>
<interface>
<object class="GtkWindow" id="window">
<property name="title" translatable="yes">Text along a Path</property>
<child type="titlebar">
<object class="GtkHeaderBar">
<child type="end">
<object class="GtkToggleButton" id="edit-toggle">
<property name="icon-name">document-edit-symbolic</property>
</object>
</child>
</object>
</child>
<child>
<object class="GtkBox">
<property name="orientation">vertical</property>
<child>
<object class="GtkRevealer">
<property name="reveal-child" bind-source="edit-toggle" bind-property="active" bind-flags="sync-create"></property>
<child>
<object class="GtkEntry" id="text">
<property name="text">Through the looking glass</property>
</object>
</child>
</object>
</child>
<child>
<object class="GtkPathWidget" id="view">
<property name="editable" bind-source="edit-toggle" bind-property="active" bind-flags="sync-create"></property>
<property name="text" bind-source="text" bind-property="text" bind-flags="sync-create"></property>
<property name="hexpand">true</property>
<property name="vexpand">true</property>
</object>
</child>
</object>
</child>
</object>
</interface>

View File

@@ -1,373 +0,0 @@
/* Path/Walk
*
* This demo draws a world map and shows how to animate objects along a GskPath.
*
* The world map that is used here is a path with 211 lines and 1569 cubic
* Bėzier segments in 121 contours.
*/
#include <glib/gi18n.h>
#include <gtk/gtk.h>
#define GTK_TYPE_PATH_WALK (gtk_path_walk_get_type ())
G_DECLARE_FINAL_TYPE (GtkPathWalk, gtk_path_walk, GTK, PATH_WALK, GtkWidget)
#define POINT_SIZE 8
enum {
PROP_0,
PROP_N_POINTS,
PROP_PATH,
N_PROPS
};
struct _GtkPathWalk
{
GtkWidget parent_instance;
GskPath *path;
GskPathMeasure *measure;
graphene_rect_t bounds;
GskPath *arrow_path;
guint n_points;
};
struct _GtkPathWalkClass
{
GtkWidgetClass parent_class;
};
static GParamSpec *properties[N_PROPS] = { NULL, };
G_DEFINE_TYPE (GtkPathWalk, gtk_path_walk, GTK_TYPE_WIDGET)
static void
rgba_init_from_hsla (GdkRGBA *rgba,
float hue,
float saturation,
float lightness,
float alpha)
{
float m1, m2;
if (lightness <= 0.5)
m2 = lightness * (1 + saturation);
else
m2 = lightness + saturation - lightness * saturation;
m1 = 2 * lightness - m2;
rgba->alpha = alpha;
if (saturation == 0)
{
rgba->red = lightness;
rgba->green = lightness;
rgba->blue = lightness;
}
else
{
hue = hue + 120;
while (hue > 360)
hue -= 360;
while (hue < 0)
hue += 360;
if (hue < 60)
rgba->red = m1 + (m2 - m1) * hue / 60;
else if (hue < 180)
rgba->red = m2;
else if (hue < 240)
rgba->red = m1 + (m2 - m1) * (240 - hue) / 60;
else
rgba->red = m1;
hue -= 120;
if (hue < 0)
hue += 360;
if (hue < 60)
rgba->green = m1 + (m2 - m1) * hue / 60;
else if (hue < 180)
rgba->green = m2;
else if (hue < 240)
rgba->green = m1 + (m2 - m1) * (240 - hue) / 60;
else
rgba->green = m1;
hue -= 120;
if (hue < 0)
hue += 360;
if (hue < 60)
rgba->blue = m1 + (m2 - m1) * hue / 60;
else if (hue < 180)
rgba->blue = m2;
else if (hue < 240)
rgba->blue = m1 + (m2 - m1) * (240 - hue) / 60;
else
rgba->blue = m1;
}
}
static void
gtk_path_walk_snapshot (GtkWidget *widget,
GtkSnapshot *snapshot)
{
GtkPathWalk *self = GTK_PATH_WALK (widget);
double width = gtk_widget_get_width (widget);
double height = gtk_widget_get_height (widget);
float length, progress;
GskStroke *stroke;
guint i;
if (self->path == NULL)
return;
gtk_snapshot_save (snapshot);
stroke = gsk_stroke_new (2.0);
gtk_snapshot_push_stroke (snapshot, self->path, stroke);
gtk_snapshot_append_color (snapshot, &(GdkRGBA) { 0, 0, 0, 1 }, &GRAPHENE_RECT_INIT (0, 0, width, height));
gtk_snapshot_pop (snapshot);
gsk_stroke_free (stroke);
length = gsk_path_measure_get_length (self->measure);
progress = 25.f * gdk_frame_clock_get_frame_time (gtk_widget_get_frame_clock (widget)) / G_USEC_PER_SEC;
stroke = gsk_stroke_new (1.0);
for (i = 0; i < self->n_points; i++)
{
GskPathPoint point;
graphene_point_t position;
float angle;
GdkRGBA color;
float distance;
distance = i * length / self->n_points;
distance = fmod (distance + progress, length);
gsk_path_measure_get_point (self->measure, distance, &point);
gsk_path_point_get_position (&point, self->path, &position);
angle = gsk_path_point_get_rotation (&point, self->path, GSK_PATH_FROM_START);
rgba_init_from_hsla (&color, 360.f * i / self->n_points, 1, 0.5, 1);
gtk_snapshot_save (snapshot);
gtk_snapshot_translate (snapshot, &position);
gtk_snapshot_rotate (snapshot, angle);
gtk_snapshot_append_fill (snapshot, self->arrow_path, GSK_FILL_RULE_EVEN_ODD, &color);
gtk_snapshot_append_stroke (snapshot, self->arrow_path, stroke, &(GdkRGBA) { 0, 0, 0, 1 });
gtk_snapshot_restore (snapshot);
}
gsk_stroke_free (stroke);
gtk_snapshot_restore (snapshot);
}
static void
gtk_path_walk_measure (GtkWidget *widget,
GtkOrientation orientation,
int for_size,
int *minimum,
int *natural,
int *minimum_baseline,
int *natural_baseline)
{
GtkPathWalk *self = GTK_PATH_WALK (widget);
if (orientation == GTK_ORIENTATION_HORIZONTAL)
*minimum = *natural = (int) ceilf (self->bounds.size.width);
else
*minimum = *natural = (int) ceilf (self->bounds.size.height);
}
static void
gtk_path_walk_set_n_points (GtkPathWalk *self,
gsize n_points)
{
if (self->n_points == n_points)
return;
self->n_points = n_points;
gtk_widget_queue_draw (GTK_WIDGET (self));
g_object_notify_by_pspec (G_OBJECT (self), properties[PROP_N_POINTS]);
}
static void
gtk_path_walk_set_path (GtkPathWalk *self,
GskPath *path)
{
if (self->path == path)
return;
g_clear_pointer (&self->path, gsk_path_unref);
graphene_rect_init (&self->bounds, 0, 0, 0, 0);
if (path)
{
GskStroke *stroke;
self->path = gsk_path_ref (path);
stroke = gsk_stroke_new (2.0);
gsk_path_get_stroke_bounds (path, stroke, &self->bounds);
gsk_stroke_free (stroke);
self->measure = gsk_path_measure_new (self->path);
}
gtk_widget_queue_resize (GTK_WIDGET (self));
g_object_notify_by_pspec (G_OBJECT (self), properties[PROP_PATH]);
}
static void
gtk_path_walk_set_property (GObject *object,
guint prop_id,
const GValue *value,
GParamSpec *pspec)
{
GtkPathWalk *self = GTK_PATH_WALK (object);
switch (prop_id)
{
case PROP_N_POINTS:
gtk_path_walk_set_n_points (self, g_value_get_uint (value));
break;
case PROP_PATH:
gtk_path_walk_set_path (self, g_value_get_boxed (value));
break;
default:
G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
break;
}
}
static void
gtk_path_walk_get_property (GObject *object,
guint prop_id,
GValue *value,
GParamSpec *pspec)
{
GtkPathWalk *self = GTK_PATH_WALK (object);
switch (prop_id)
{
case PROP_N_POINTS:
g_value_set_uint (value, self->n_points);
break;
case PROP_PATH:
g_value_set_boxed (value, self->path);
break;
default:
G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
break;
}
}
static void
gtk_path_walk_dispose (GObject *object)
{
GtkPathWalk *self = GTK_PATH_WALK (object);
g_clear_pointer (&self->path, gsk_path_unref);
g_clear_pointer (&self->measure, gsk_path_measure_unref);
g_clear_pointer (&self->arrow_path, gsk_path_unref);
G_OBJECT_CLASS (gtk_path_walk_parent_class)->dispose (object);
}
static void
gtk_path_walk_class_init (GtkPathWalkClass *klass)
{
GtkWidgetClass *widget_class = GTK_WIDGET_CLASS (klass);
GObjectClass *object_class = G_OBJECT_CLASS (klass);
object_class->dispose = gtk_path_walk_dispose;
object_class->set_property = gtk_path_walk_set_property;
object_class->get_property = gtk_path_walk_get_property;
widget_class->snapshot = gtk_path_walk_snapshot;
widget_class->measure = gtk_path_walk_measure;
properties[PROP_N_POINTS] =
g_param_spec_uint ("n-points",
NULL, NULL,
1, G_MAXUINT,
500,
G_PARAM_READWRITE | G_PARAM_EXPLICIT_NOTIFY | G_PARAM_STATIC_STRINGS);
properties[PROP_PATH] =
g_param_spec_boxed ("path",
NULL, NULL,
GSK_TYPE_PATH,
G_PARAM_READWRITE | G_PARAM_EXPLICIT_NOTIFY | G_PARAM_STATIC_STRINGS);
g_object_class_install_properties (object_class, N_PROPS, properties);
}
static gboolean
tick_tick_tick (GtkWidget *self,
GdkFrameClock *frame_clock,
gpointer unused)
{
gtk_widget_queue_draw (GTK_WIDGET (self));
return G_SOURCE_CONTINUE;
}
static void
gtk_path_walk_init (GtkPathWalk *self)
{
/* Data taken from
* https://commons.wikimedia.org/wiki/Maps_of_the_world#/media/File:Simplified_blank_world_map_without_Antartica_(no_borders).svg
*/
GBytes *data = g_resources_lookup_data ("/path_walk/path_world.txt", 0, NULL);
GskPath *path = gsk_path_parse (g_bytes_get_data (data, NULL));
g_bytes_unref (data);
gtk_path_walk_set_path (self, path);
gsk_path_unref (path);
self->arrow_path = gsk_path_parse ("M 5 0 L 0 -5. 0 -2, -5 -2, -5 2, 0 2, 0 5 Z");
self->n_points = 500;
gtk_widget_add_tick_callback (GTK_WIDGET (self), tick_tick_tick, NULL, NULL);
}
GtkWidget *
gtk_path_walk_new (void)
{
GtkPathWalk *self;
self = g_object_new (GTK_TYPE_PATH_WALK, NULL);
return GTK_WIDGET (self);
}
GtkWidget *
do_path_walk (GtkWidget *do_widget)
{
static GtkWidget *window = NULL;
if (!window)
{
GtkBuilder *builder;
g_type_ensure (GTK_TYPE_PATH_WALK);
builder = gtk_builder_new_from_resource ("/path_walk/path_walk.ui");
window = GTK_WIDGET (gtk_builder_get_object (builder, "window"));
gtk_window_set_display (GTK_WINDOW (window),
gtk_widget_get_display (do_widget));
g_object_add_weak_pointer (G_OBJECT (window), (gpointer *) &window);
g_object_unref (builder);
}
if (!gtk_widget_get_visible (window))
gtk_window_present (GTK_WINDOW (window));
else
gtk_window_destroy (GTK_WINDOW (window));
return window;
}

View File

@@ -1,35 +0,0 @@
<?xml version="1.0" encoding="UTF-8"?>
<interface>
<object class="GtkWindow" id="window">
<property name="title" translatable="yes">World Map</property>
<property name="titlebar">
<object class="GtkHeaderBar">
<child type="end">
<object class="GtkSpinButton">
<property name="adjustment">
<object class="GtkAdjustment" id="adjustment">
<property name="lower">0</property>
<property name="upper">5000</property>
<property name="value">500</property>
<property name="step-increment">1</property>
<property name="page-increment">10</property>
</object>
</property>
</object>
</child>
</object>
</property>
<property name="child">
<object class="GtkBox">
<property name="orientation">vertical</property>
<child>
<object class="GtkPathWalk" id="view">
<property name="n-points" bind-source="adjustment" bind-property="value"/>
<property name="hexpand">true</property>
<property name="vexpand">true</property>
</object>
</child>
</object>
</property>
</object>
</interface>

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@@ -147,19 +147,6 @@ Creates a node like `gsk_cross_fade_node_new()` with the given properties.
Creates a node like `gsk_debug_node_new()` with the given properties.
### fill
| property | syntax | default | printed |
| --------- | --------------- | ---------------------- | ----------- |
| child | `<node>` | *see below* | always |
| path | `<string>` | "" | always |
| fill-rule | `<fill-rule>` | winding | always |
Creates a node like `gsk_fill_node_new()` with the given properties.
The default child node is the default color node, but created with the
bounds of the path.
### glshader
| property | syntax | default | printed |
@@ -302,24 +289,6 @@ Creates a node like `gsk_rounded_clip_node_new()` with the given properties.
Creates a node like `gsk_shadow_node_new()` with the given properties.
### stroke
| property | syntax | default | printed |
| ----------- | ------------------ | ----------------- | ----------- |
| child | `<node>` | *see below* | always |
| path | `<string>` | "" | always |
| line-width | `<number>` | 0 | non-default |
| line-cap | `<line-cap>` | butt | always |
| line-join | `<line-join>` | miter | always |
| miter-limit | `<number>` | 4 | non-default |
| dash | `<number>{+}|none` | none | non-default |
| dash-offset | `<number>` | 0 | non-default |
Creates a node like `gsk_stroke_node_new()` with the given properties.
The default child node is the default color node, but created with the
stroke bounds of the path.
### text
| property | syntax | default | printed |

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@@ -32,34 +32,7 @@ show_class_hierarchy = true
base_url = "https://gitlab.gnome.org/GNOME/gtk/-/blob/main/"
[extra]
content_files = [
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]
content_images = [
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"images/arc-light.png",
"images/caps-dark.png",
"images/caps-light.png",
"images/conic-light.png",
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"images/cubic-dark.png",
"images/cubic-light.png",
"images/curvature-dark.png",
"images/curvature-light.png",
"images/directions-dark.png",
"images/directions-light.png",
"images/fill-even-odd.png",
"images/fill-winding.png",
"images/join-dark.png",
"images/join-light.png",
"images/line-dark.png",
"images/line-light.png",
"images/path-dark.png",
"images/path-light.png",
"images/quad-dark.png",
"images/quad-light.png",
"images/stroke-miter.png",
"images/stroke-round.png",
]
urlmap_file = "urlmap.js"

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