519 lines
13 KiB
C++
519 lines
13 KiB
C++
#include "curve_editor_plugin.h"
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#include "canvas_item_editor_plugin.h"
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#include "os/keyboard.h"
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#include "spatial_editor_plugin.h"
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void CurveTextureEdit::_gui_input(const InputEvent &p_event) {
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if (p_event.type == InputEvent::KEY && p_event.key.pressed && p_event.key.scancode == KEY_DELETE && grabbed != -1) {
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points.remove(grabbed);
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grabbed = -1;
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update();
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emit_signal("curve_changed");
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accept_event();
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}
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if (p_event.type == InputEvent::MOUSE_BUTTON && p_event.mouse_button.button_index == 1 && p_event.mouse_button.pressed) {
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update();
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Ref<Font> font = get_font("font", "Label");
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int font_h = font->get_height();
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Vector2 size = get_size();
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size.y -= font_h;
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Point2 p = Vector2(p_event.mouse_button.x, p_event.mouse_button.y) / size;
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p.y = CLAMP(1.0 - p.y, 0, 1) * (max - min) + min;
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grabbed = -1;
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grabbing = true;
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for (int i = 0; i < points.size(); i++) {
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Vector2 ps = p * get_size();
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Vector2 pt = Vector2(points[i].offset, points[i].height) * get_size();
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if (ps.distance_to(pt) < 4) {
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grabbed = i;
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}
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}
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//grab or select
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if (grabbed != -1) {
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return;
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}
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//insert
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Point np;
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np.offset = p.x;
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np.height = p.y;
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points.push_back(np);
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points.sort();
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for (int i = 0; i < points.size(); i++) {
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if (points[i].offset == p.x && points[i].height == p.y) {
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grabbed = i;
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break;
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}
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}
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emit_signal("curve_changed");
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}
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if (p_event.type == InputEvent::MOUSE_BUTTON && p_event.mouse_button.button_index == 1 && !p_event.mouse_button.pressed) {
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if (grabbing) {
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grabbing = false;
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emit_signal("curve_changed");
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}
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update();
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}
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if (p_event.type == InputEvent::MOUSE_MOTION && grabbing && grabbed != -1) {
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Ref<Font> font = get_font("font", "Label");
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int font_h = font->get_height();
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Vector2 size = get_size();
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size.y -= font_h;
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Point2 p = Vector2(p_event.mouse_motion.x, p_event.mouse_motion.y) / size;
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p.y = CLAMP(1.0 - p.y, 0, 1) * (max - min) + min;
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p.x = CLAMP(p.x, 0.0, 1.0);
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bool valid = true;
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for (int i = 0; i < points.size(); i++) {
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if (points[i].offset == p.x && points[i].height == p.y && i != grabbed) {
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valid = false;
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}
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}
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if (!valid)
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return;
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points[grabbed].offset = p.x;
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points[grabbed].height = p.y;
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points.sort();
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for (int i = 0; i < points.size(); i++) {
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if (points[i].offset == p.x && points[i].height == p.y) {
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grabbed = i;
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break;
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}
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}
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emit_signal("curve_changed");
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update();
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}
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}
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void CurveTextureEdit::_plot_curve(const Vector2 &p_a, const Vector2 &p_b, const Vector2 &p_c, const Vector2 &p_d) {
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Ref<Font> font = get_font("font", "Label");
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int font_h = font->get_height();
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float geometry[4][4];
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float tmp1[4][4];
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float tmp2[4][4];
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float deltas[4][4];
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double x, dx, dx2, dx3;
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double y, dy, dy2, dy3;
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double d, d2, d3;
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int lastx, lasty;
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int newx, newy;
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int ntimes;
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int i, j;
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int xmax = get_size().x;
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int ymax = get_size().y - font_h;
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int vsplits = 4;
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int zero_ofs = (1.0 - (0.0 - min) / (max - min)) * ymax;
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draw_line(Vector2(0, zero_ofs), Vector2(xmax, zero_ofs), Color(0.8, 0.8, 0.8, 0.15), 2.0);
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for (int i = 0; i <= vsplits; i++) {
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float fofs = float(i) / vsplits;
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int yofs = fofs * ymax;
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draw_line(Vector2(xmax, yofs), Vector2(xmax - 4, yofs), Color(0.8, 0.8, 0.8, 0.8), 2.0);
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String text = rtos((1.0 - fofs) * (max - min) + min);
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int ppos = text.find(".");
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if (ppos != -1) {
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if (text.length() > ppos + 2)
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text = text.substr(0, ppos + 2);
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}
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int size = font->get_string_size(text).x;
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int xofs = xmax - size - 4;
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yofs -= font_h / 2;
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if (yofs < 2) {
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yofs = 2;
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} else if (yofs + font_h > ymax - 2) {
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yofs = ymax - font_h - 2;
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}
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draw_string(font, Vector2(xofs, yofs + font->get_ascent()), text, Color(0.8, 0.8, 0.8, 1));
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}
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/* construct the geometry matrix from the segment */
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for (i = 0; i < 4; i++) {
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geometry[i][2] = 0;
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geometry[i][3] = 0;
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}
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geometry[0][0] = (p_a[0] * xmax);
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geometry[1][0] = (p_b[0] * xmax);
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geometry[2][0] = (p_c[0] * xmax);
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geometry[3][0] = (p_d[0] * xmax);
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geometry[0][1] = ((p_a[1] - min) / (max - min) * ymax);
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geometry[1][1] = ((p_b[1] - min) / (max - min) * ymax);
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geometry[2][1] = ((p_c[1] - min) / (max - min) * ymax);
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geometry[3][1] = ((p_d[1] - min) / (max - min) * ymax);
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/* subdivide the curve ntimes (1000) times */
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ntimes = 4 * xmax;
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/* ntimes can be adjusted to give a finer or coarser curve */
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d = 1.0 / ntimes;
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d2 = d * d;
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d3 = d * d * d;
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/* construct a temporary matrix for determining the forward differencing deltas */
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tmp2[0][0] = 0;
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tmp2[0][1] = 0;
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tmp2[0][2] = 0;
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tmp2[0][3] = 1;
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tmp2[1][0] = d3;
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tmp2[1][1] = d2;
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tmp2[1][2] = d;
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tmp2[1][3] = 0;
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tmp2[2][0] = 6 * d3;
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tmp2[2][1] = 2 * d2;
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tmp2[2][2] = 0;
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tmp2[2][3] = 0;
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tmp2[3][0] = 6 * d3;
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tmp2[3][1] = 0;
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tmp2[3][2] = 0;
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tmp2[3][3] = 0;
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/* compose the basis and geometry matrices */
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static const float CR_basis[4][4] = {
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{ -0.5, 1.5, -1.5, 0.5 },
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{ 1.0, -2.5, 2.0, -0.5 },
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{ -0.5, 0.0, 0.5, 0.0 },
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{ 0.0, 1.0, 0.0, 0.0 },
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};
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for (i = 0; i < 4; i++) {
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for (j = 0; j < 4; j++) {
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tmp1[i][j] = (CR_basis[i][0] * geometry[0][j] +
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CR_basis[i][1] * geometry[1][j] +
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CR_basis[i][2] * geometry[2][j] +
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CR_basis[i][3] * geometry[3][j]);
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}
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}
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/* compose the above results to get the deltas matrix */
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for (i = 0; i < 4; i++) {
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for (j = 0; j < 4; j++) {
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deltas[i][j] = (tmp2[i][0] * tmp1[0][j] +
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tmp2[i][1] * tmp1[1][j] +
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tmp2[i][2] * tmp1[2][j] +
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tmp2[i][3] * tmp1[3][j]);
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}
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}
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/* extract the x deltas */
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x = deltas[0][0];
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dx = deltas[1][0];
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dx2 = deltas[2][0];
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dx3 = deltas[3][0];
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/* extract the y deltas */
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y = deltas[0][1];
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dy = deltas[1][1];
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dy2 = deltas[2][1];
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dy3 = deltas[3][1];
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lastx = CLAMP(x, 0, xmax);
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lasty = CLAMP(y, 0, ymax);
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/* if (fix255)
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{
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cd->curve[cd->outline][lastx] = lasty;
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}
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else
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{
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cd->curve_ptr[cd->outline][lastx] = lasty;
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if(gb_debug) printf("bender_plot_curve xmax:%d ymax:%d\n", (int)xmax, (int)ymax);
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}
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*/
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/* loop over the curve */
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for (i = 0; i < ntimes; i++) {
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/* increment the x values */
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x += dx;
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dx += dx2;
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dx2 += dx3;
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/* increment the y values */
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y += dy;
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dy += dy2;
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dy2 += dy3;
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newx = CLAMP((Math::round(x)), 0, xmax);
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newy = CLAMP((Math::round(y)), 0, ymax);
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/* if this point is different than the last one...then draw it */
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if ((lastx != newx) || (lasty != newy)) {
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#if 0
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if(fix255)
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{
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/* use fixed array size (for the curve graph) */
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cd->curve[cd->outline][newx] = newy;
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}
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else
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{
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/* use dynamic allocated curve_ptr (for the real curve) */
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cd->curve_ptr[cd->outline][newx] = newy;
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if(gb_debug) printf("outline: %d cX: %d cY: %d\n", (int)cd->outline, (int)newx, (int)newy);
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}
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#endif
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draw_line(Vector2(lastx, ymax - lasty), Vector2(newx, ymax - newy), Color(0.8, 0.8, 0.8, 0.8), 2.0);
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}
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lastx = newx;
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lasty = newy;
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}
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int splits = 8;
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draw_line(Vector2(0, ymax - 1), Vector2(xmax, ymax - 1), Color(0.8, 0.8, 0.8, 0.3), 2.0);
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for (int i = 0; i <= splits; i++) {
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float fofs = float(i) / splits;
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draw_line(Vector2(fofs * xmax, ymax), Vector2(fofs * xmax, ymax - 2), Color(0.8, 0.8, 0.8, 0.8), 2.0);
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String text = rtos(fofs);
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int size = font->get_string_size(text).x;
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int ofs = fofs * xmax - size * 0.5;
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if (ofs < 2) {
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ofs = 2;
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} else if (ofs + size > xmax - 2) {
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ofs = xmax - size - 2;
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}
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draw_string(font, Vector2(ofs, ymax + font->get_ascent()), text, Color(0.8, 0.8, 0.8, 1));
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}
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}
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void CurveTextureEdit::_notification(int p_what) {
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if (p_what == NOTIFICATION_DRAW) {
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Ref<Font> font = get_font("font", "Label");
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int font_h = font->get_height();
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draw_style_box(get_stylebox("bg", "Tree"), Rect2(Point2(), get_size()));
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int w = get_size().x;
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int h = get_size().y;
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Vector2 prev = Vector2(0, 0);
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Vector2 prev2 = Vector2(0, 0);
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for (int i = -1; i < points.size(); i++) {
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Vector2 next;
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Vector2 next2;
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if (i + 1 >= points.size()) {
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next = Vector2(1, 0);
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} else {
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next = Vector2(points[i + 1].offset, points[i + 1].height);
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}
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if (i + 2 >= points.size()) {
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next2 = Vector2(1, 0);
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} else {
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next2 = Vector2(points[i + 2].offset, points[i + 2].height);
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}
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/*if (i==-1 && prev.offset==next.offset) {
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prev=next;
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continue;
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}*/
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_plot_curve(prev2, prev, next, next2);
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prev2 = prev;
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prev = next;
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}
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Vector2 size = get_size();
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size.y -= font_h;
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for (int i = 0; i < points.size(); i++) {
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Color col = i == grabbed ? Color(1, 0.0, 0.0, 0.9) : Color(1, 1, 1, 0.8);
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float h = (points[i].height - min) / (max - min);
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draw_rect(Rect2(Vector2(points[i].offset, 1.0 - h) * size - Vector2(2, 2), Vector2(5, 5)), col);
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}
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/* if (grabbed!=-1) {
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draw_rect(Rect2(total_w+3,0,h,h),points[grabbed].color);
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}
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*/
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if (has_focus()) {
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draw_line(Vector2(-1, -1), Vector2(w + 1, -1), Color(1, 1, 1, 0.6));
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draw_line(Vector2(w + 1, -1), Vector2(w + 1, h + 1), Color(1, 1, 1, 0.6));
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draw_line(Vector2(w + 1, h + 1), Vector2(-1, h + 1), Color(1, 1, 1, 0.6));
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draw_line(Vector2(-1, -1), Vector2(-1, h + 1), Color(1, 1, 1, 0.6));
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}
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}
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}
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Size2 CurveTextureEdit::get_minimum_size() const {
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return Vector2(64, 64);
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}
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void CurveTextureEdit::set_range(float p_min, float p_max) {
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max = p_max;
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min = p_min;
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update();
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}
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void CurveTextureEdit::set_points(const Vector<Vector2> &p_points) {
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points.clear();
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for (int i = 0; i < p_points.size(); i++) {
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Point p;
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p.offset = p_points[i].x;
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p.height = p_points[i].y;
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points.push_back(p);
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}
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points.sort();
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update();
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}
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Vector<Vector2> CurveTextureEdit::get_points() const {
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Vector<Vector2> ret;
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for (int i = 0; i < points.size(); i++)
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ret.push_back(Vector2(points[i].offset, points[i].height));
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return ret;
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}
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void CurveTextureEdit::_bind_methods() {
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ClassDB::bind_method(D_METHOD("_gui_input"), &CurveTextureEdit::_gui_input);
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ADD_SIGNAL(MethodInfo("curve_changed"));
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}
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CurveTextureEdit::CurveTextureEdit() {
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grabbed = -1;
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grabbing = false;
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max = 1;
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min = 0;
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set_focus_mode(FOCUS_ALL);
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}
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void CurveTextureEditorPlugin::_curve_settings_changed() {
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if (!curve_texture_ref.is_valid())
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return;
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curve_editor->set_points(Variant(curve_texture_ref->get_points()));
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curve_editor->set_range(curve_texture_ref->get_min(), curve_texture_ref->get_max());
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}
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CurveTextureEditorPlugin::CurveTextureEditorPlugin(EditorNode *p_node) {
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editor = p_node;
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curve_editor = memnew(CurveTextureEdit);
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curve_button = editor->add_bottom_panel_item("CurveTexture", curve_editor);
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curve_button->hide();
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curve_editor->set_custom_minimum_size(Size2(100, 128 * EDSCALE));
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curve_editor->hide();
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curve_editor->connect("curve_changed", this, "curve_changed");
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}
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void CurveTextureEditorPlugin::edit(Object *p_object) {
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if (curve_texture_ref.is_valid()) {
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curve_texture_ref->disconnect("changed", this, "_curve_settings_changed");
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}
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CurveTexture *curve_texture = p_object->cast_to<CurveTexture>();
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if (!curve_texture)
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return;
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curve_texture_ref = Ref<CurveTexture>(curve_texture);
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curve_editor->set_points(Variant(curve_texture_ref->get_points()));
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curve_editor->set_range(curve_texture_ref->get_min(), curve_texture_ref->get_max());
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if (!curve_texture_ref->is_connected("changed", this, "_curve_settings_changed")) {
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curve_texture_ref->connect("changed", this, "_curve_settings_changed");
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}
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}
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bool CurveTextureEditorPlugin::handles(Object *p_object) const {
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return p_object->is_class("CurveTexture");
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}
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void CurveTextureEditorPlugin::make_visible(bool p_visible) {
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if (p_visible) {
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curve_button->show();
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editor->make_bottom_panel_item_visible(curve_editor);
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} else {
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curve_button->hide();
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if (curve_editor->is_visible_in_tree())
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editor->hide_bottom_panel();
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}
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}
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void CurveTextureEditorPlugin::_curve_changed() {
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if (curve_texture_ref.is_valid()) {
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UndoRedo *ur = EditorNode::get_singleton()->get_undo_redo();
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Vector<Vector2> points = curve_editor->get_points();
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PoolVector<Vector2> ppoints = Variant(points);
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ur->create_action(TTR("Modify Curve"), UndoRedo::MERGE_ENDS);
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ur->add_do_method(this, "undo_redo_curve_texture", ppoints);
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ur->add_undo_method(this, "undo_redo_curve_texture", curve_texture_ref->get_points());
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ur->commit_action();
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}
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}
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void CurveTextureEditorPlugin::_undo_redo_curve_texture(const PoolVector<Vector2> &points) {
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curve_texture_ref->set_points(points);
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curve_editor->set_points(Variant(curve_texture_ref->get_points()));
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curve_editor->update();
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}
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CurveTextureEditorPlugin::~CurveTextureEditorPlugin() {
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}
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void CurveTextureEditorPlugin::_bind_methods() {
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ClassDB::bind_method(D_METHOD("curve_changed"), &CurveTextureEditorPlugin::_curve_changed);
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ClassDB::bind_method(D_METHOD("_curve_settings_changed"), &CurveTextureEditorPlugin::_curve_settings_changed);
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ClassDB::bind_method(D_METHOD("undo_redo_curve_texture", "points"), &CurveTextureEditorPlugin::_undo_redo_curve_texture);
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}
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