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237bb02a8c
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7bc94d3a96
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7bc94d3a96 | ||
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f96d6066ee |
11
meson.build
11
meson.build
@@ -10,8 +10,15 @@ project(
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],
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)
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gtk = dependency('gtk4', required: true)
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epoxy = dependency('epoxy')
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c_args = meson.get_compiler('c').get_supported_arguments([
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'-Wno-unused-variable',
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'-Wno-unused-parameter',
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'-Wno-pedantic'
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])
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add_project_arguments(c_args, language: 'c')
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gtk = dependency('gtk4', required: true, include_type: 'system')
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epoxy = dependency('epoxy', include_type: 'system')
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src = files(
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'src/main.c',
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@@ -124,7 +124,7 @@ begin_click_dispatch:
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// selecting a tool resets the selection, so this condition
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// should not happen
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g_warning("Invalid selected primitive; polyline expected");
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state->selectedShape = NULL;
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vektor_appstate_deselect_shape(state);
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goto begin_click_dispatch; // retry
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}
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@@ -153,7 +153,7 @@ begin_click_dispatch:
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} else if (state->selectedShape->primitive.kind != VEKTOR_POLYGON) {
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g_warning("Invalid selected primitive; polygon expected");
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state->selectedShape = NULL;
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vektor_appstate_deselect_shape(state);
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goto begin_click_dispatch; // retry
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}
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@@ -215,17 +215,19 @@ begin_click_dispatch:
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for (size_t i = 0; i < state->shapeBuffer->count; i++) {
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VektorBBox bbox = vektor_primitive_get_bbox(
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state->shapeBuffer->shapes[i].primitive);
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// expand the bbox a little so its not painful to
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// try to grab handles located on the border of said bbox
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bbox = vektor_bbox_expand(bbox, 0.02);
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if (vektor_bbox_isinside(bbox, pos)) {
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state->selectedShape = &(state->shapeBuffer->shapes[i]);
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return;
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}
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}
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// was clicked outside any shapes - reset selection
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state->selectedShape = NULL;
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vektor_appstate_deselect_shape(state);
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}
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if (state->selectedShape != NULL)
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g_print("%zu\n", state->selectedShape->handleCount);
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}
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void vektor_appstate_canvas_drag_begin(GtkGestureDrag* gesture, gdouble x,
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@@ -233,26 +235,65 @@ void vektor_appstate_canvas_drag_begin(GtkGestureDrag* gesture, gdouble x,
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GtkWidget* widget =
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gtk_event_controller_get_widget(GTK_EVENT_CONTROLLER(gesture));
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VektorAppState* state = (VektorAppState*)user_data;
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int widget_w = gtk_widget_get_width(widget);
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int widget_h = gtk_widget_get_height(widget);
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V2 normalized_coords =
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V2 position =
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(V2){(2 * (x / widget_w)) - 1, 1 - (2 * (y / widget_h))};
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if(state->selectedShape != NULL) {
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VektorShape* selectedShape = state->selectedShape;
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// get selected shape's handles and check
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// if we click any of them
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for(size_t i = 0; i < selectedShape->handleCount; i++) {
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VektorBBox bbox = vektor_shape_get_handle_bbox(selectedShape->handles[i]);
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if(vektor_bbox_isinside(bbox, position)) {
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// clicked inside handle
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state->heldHandleIndex = i;
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break;
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}
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}
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}
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}
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void vektor_appstate_canvas_drag_update(GtkGestureDrag* gesture, gdouble x,
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gdouble y, gpointer user_data) {
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// ---- setup normalized coordinates (boilerplate) ----
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gdouble start_x, start_y;
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gtk_gesture_drag_get_start_point(gesture, &start_x, &start_y);
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GtkWidget* widget =
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gtk_event_controller_get_widget(GTK_EVENT_CONTROLLER(gesture));
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VektorAppState* state = (VektorAppState*)user_data;
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int widget_w = gtk_widget_get_width(widget);
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int widget_h = gtk_widget_get_height(widget);
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V2 norm = (V2){(2 * ((x + start_x) / widget_w)) - 1,
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V2 position = (V2){(2 * ((x + start_x) / widget_w)) - 1,
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1 - (2 * ((y + start_y) / widget_h))};
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// drag handle if selected
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if(state->selectedShape != NULL && state->heldHandleIndex != -1) {
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state->selectedShape->handles[state->heldHandleIndex] = position;
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vektor_shape_handles_updated(state->selectedShape);
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}
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}
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void vektor_appstate_canvas_drag_end(GtkGestureDrag* gesture, gdouble x,
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gdouble y, gpointer user_data) {
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VektorAppState* state = (VektorAppState*)user_data;
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// if we were dragging a handle
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if(state->selectedShape != NULL && state->heldHandleIndex != -1) {
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state->heldHandleIndex = -1; // ...then remove handle drag flag
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}
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}
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void vektor_appstate_new(VektorWidgetState* wstate, VektorAppState* stateOut) {
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@@ -292,6 +333,7 @@ void vektor_appstate_new(VektorWidgetState* wstate, VektorAppState* stateOut) {
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stateOut->widgetState = wstate;
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stateOut->currentColor = vektor_color_solid(0, 0, 0);
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stateOut->selectedShape = NULL;
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stateOut->heldHandleIndex = -1;
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VektorCanvasRenderInfo* renderInfo = malloc(sizeof(VektorCanvasRenderInfo));
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renderInfo->zoom = 1;
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@@ -351,7 +393,14 @@ void vektor_appstate_new(VektorWidgetState* wstate, VektorAppState* stateOut) {
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G_CALLBACK(vektor_appstate_canvas_drag_update), stateOut);
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g_signal_connect(G_OBJECT(canvasDragGesture), "drag-begin",
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G_CALLBACK(vektor_appstate_canvas_drag_begin), stateOut);
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g_signal_connect(G_OBJECT(canvasDragGesture), "drag-end",
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G_CALLBACK(vektor_appstate_canvas_drag_end), stateOut);
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gtk_widget_add_controller(GTK_WIDGET(wstate->workspaceCanvas),
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GTK_EVENT_CONTROLLER(canvasDragGesture));
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}
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void vektor_appstate_deselect_shape(VektorAppState* state) {
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state->heldHandleIndex = -1;
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state->selectedShape = NULL;
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}
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@@ -21,6 +21,7 @@ typedef struct VektorAppState {
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VektorAppTool selectedTool;
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VektorShape* selectedShape;
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int heldHandleIndex;
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VektorColor currentColor;
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@@ -33,5 +34,6 @@ typedef struct VektorAppState {
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void vektor_appstate_new(VektorWidgetState* wstate, VektorAppState* stateOut);
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void vektor_appstate_canvas_click(VektorAppState* state, double x, double y);
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void vektor_appstate_deselect_shape(VektorAppState* state);
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#endif
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@@ -207,8 +207,6 @@ void vektor_rectangle_create_handles(VektorRectangle* rectangle, V2** handleArr,
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V2 halfdist = vec2_scale(vec2_sub(rectangle->end, rectangle->start), 0.5f);
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V2 center = vec2_add(rectangle->start, halfdist);
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g_print("boobs: %f %f\n", rectangle->start.x, rectangle->start.y);
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g_print("pussy: %f %f\n", rectangle->end.x, rectangle->end.y);
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(*handleArr)[0] = center;
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(*handleArr)[1] = vec2_add(center, vec2_mul(halfdist, (V2){-1.0f, 1.0f}));
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@@ -238,6 +236,23 @@ void vektor_shape_create_handles(VektorShape* shape) {
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}
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}
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// ------ AUXILIARY HANDLE METHODS ------
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void vektor_shape_add_handle(VektorShape* shape, V2 handle) {
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// could be optimised with capacity property
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// but this function is only called when adding new
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// points to polyline and polygon, so it should
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// not be that much of an overhead
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shape->handles =
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realloc(shape->handles, sizeof(V2) * shape->handleCount + 1);
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shape->handles[shape->handleCount++] = handle;
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}
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VektorBBox vektor_shape_get_handle_bbox(V2 handle) {
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return vektor_bbox_fromcenter(handle, 0.02);
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}
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// ------ PRIMITIVE HANDLES UPDATING ------
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void vektor_polyline_handles_updated(VektorPolyline* polyline, V2** handles,
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@@ -335,16 +350,6 @@ void vektor_shape_handles_updated(VektorShape* shape) {
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}
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}
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void vektor_shape_add_handle(VektorShape* shape, V2 handle) {
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// could be optimised with capacity property
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// but this function is only called when adding new
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// points to polyline and polygon, so it should
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// not be that much of an overhead
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shape->handles =
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realloc(shape->handles, sizeof(V2) * shape->handleCount + 1);
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shape->handles[shape->handleCount++] = handle;
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}
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// ------ BBOX METHODS ------
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bool vektor_bbox_isinside(VektorBBox bbox, V2 point) {
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@@ -108,7 +108,10 @@ void vektor_circle_create_handles(VektorCircle* circle, V2** handleArr,
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void vektor_rectangle_create_handles(VektorRectangle* rectangle, V2** handleArr,
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size_t* count);
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void vektor_shape_create_handles(VektorShape* shape);
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void vektor_shape_add_handle(VektorShape* shape, V2 handle);
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VektorBBox vektor_shape_get_handle_bbox(V2 handle);
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/* reconstructs the shape based on handles alone */
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void vektor_polyline_handles_updated(VektorPolyline* polyline, V2** handles,
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@@ -151,7 +151,7 @@ static gboolean render(GtkGLArea* a, GdkGLContext* ctx,
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// create handle quads if a shape is selected
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for (size_t i = 0; i < selectedShape->handleCount; i++) {
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V2 handle = selectedShape->handles[i];
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VektorBBox handleBbox = vektor_bbox_fromcenter(handle, 0.01f);
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VektorBBox handleBbox = vektor_shape_get_handle_bbox(handle);
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vektor_vb_add_quad(&vb, handleBbox.min, handleBbox.max,
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vektor_color_new(255, 255, 255, 255));
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}
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