mirror of
https://github.com/Ttanasart-pt/Pixel-Composer.git
synced 2024-11-15 23:13:53 +01:00
206 lines
5.6 KiB
Plaintext
206 lines
5.6 KiB
Plaintext
function Node_Path_Wave(_x, _y, _group = noone) : Node(_x, _y, _group) constructor {
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name = "Wave Path";
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setDimension(96, 48);;
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newInput(0, nodeValue_PathNode("Path", self, noone))
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.setVisible(true, true);
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newInput(1, nodeValue_Range("Frequency", self, [ 4, 4 ], { linked : true }));
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newInput(2, nodeValue_Range("Amplitude", self, [ 4, 4 ], { linked : true }));
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newInput(3, nodeValue_Range("Shift", self, [ 0, 0 ], { linked : true }));
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newInput(4, nodeValue_Bool("Smooth", self, false));
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newInput(5, nodeValue_Float("Seed", self, seed_random(6)))
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.setDisplay(VALUE_DISPLAY._default, { side_button : button(function() { randomize(); inputs[5].setValue(seed_random(6)); }).setIcon(THEME.icon_random, 0, COLORS._main_icon) });
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newInput(6, nodeValue_Bool("Wiggle", self, false));
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newInput(7, nodeValue_Range("Wiggle Amplitude", self, [ -2, 2 ]));
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newInput(8, nodeValue_Float("Wiggle Frequency", self, 8));
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newInput(9, nodeValue("Amplitude over length", self, JUNCTION_CONNECT.input, VALUE_TYPE.curve, CURVE_DEF_11));
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outputs[0] = nodeValue_Output("Path", self, VALUE_TYPE.pathnode, self);
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input_display_list = [ 5,
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["Path", true], 0,
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["Wave", false], 1, 2, 9, 3, 4,
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["Wiggle", true, 6], 7, 8,
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];
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path = 0;
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fre = 0;
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amp = 0;
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shf = 0;
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smt = 0;
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seed = 0;
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wig = 0
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wigs = 0
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wigf = 0
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wig_map = noone;
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amp_curve = noone;
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p0 = new __vec2();
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p = new __vec2();
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p1 = new __vec2();
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cached_pos = ds_map_create();
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static drawOverlay = function(hover, active, _x, _y, _s, _mx, _my, _snx, _sny) { #region
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var _path = getInputData(0);
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if(_path && struct_has(_path, "drawOverlay")) _path.drawOverlay(hover, active, _x, _y, _s, _mx, _my, _snx, _sny);
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draw_set_color(COLORS._main_icon);
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var _amo = getLineCount();
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for( var i = 0; i < _amo; i++ ) {
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var _len = getLength(i);
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var _stp = 1 / clamp(_len * _s, 1, 64);
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var ox, oy, nx, ny;
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var _p = new __vec2();
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for( var j = 0; j < 1; j += _stp ) {
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_p = getPointRatio(j, i, _p);
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nx = _x + _p.x * _s;
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ny = _y + _p.y * _s;
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if(j > 0) draw_line_width(ox, oy, nx, ny, 3);
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ox = nx;
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oy = ny;
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}
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}
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} #endregion
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static getLineCount = function() { #region
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return struct_has(path, "getLineCount")? path.getLineCount() : 1;
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} #endregion
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static getSegmentCount = function(ind = 0) { #region
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return struct_has(path, "getSegmentCount")? path.getSegmentCount(ind) : 0;
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} #endregion
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static getLength = function(ind = 0) { #region
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var _fre = fre ; _fre = max(_fre[0], _fre[1]);
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var _amo = amp ; _amo = max(_amo[0], _amo[1]);
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_fre = max(1, abs(_fre));
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var _len = struct_has(path, "getLength")? path.getLength(ind) : 0;
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_len *= _fre * sqrt(abs(_amo) + 1 / _fre);
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return _len;
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} #endregion
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static getAccuLength = function(ind = 0) { #region
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var _fre = fre ; _fre = max(_fre[0], _fre[1]);
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var _amo = amp ; _amo = max(_amo[0], _amo[1]);
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_fre = max(1, abs(_fre));
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var _len = struct_has(path, "getAccuLength")? path.getAccuLength(ind) : [];
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var _mul = _fre * sqrt(abs(_amo) + 1 / _fre);
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for( var i = 0, n = array_length(_len); i < n; i++ )
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_len[i] *= _mul;
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return _len;
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} #endregion
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static getPointRatio = function(_rat, ind = 0, out = undefined) { #region
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if(out == undefined) out = new __vec2(); else { out.x = 0; out.y = 0; }
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var _cKey = $"{_rat},{ind}";
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if(ds_map_exists(cached_pos, _cKey)) {
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var _p = cached_pos[? _cKey];
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out.x = _p.x;
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out.y = _p.y;
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return out;
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}
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var _path = path;
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var _fre = fre ;
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var _amp = amp ;
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var _shf = shf ;
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var _smt = smt ;
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var _seed = seed + ind;
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var _wig = wig ;
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var _wigs = wigs;
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var _wigf = wigf;
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_amp = random_range_seed(_amp[0], _amp[1], _seed + ind);
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_shf = random_range_seed(_shf[0], _shf[1], _seed + 1 + ind);
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_fre = random_range_seed(_fre[0], _fre[1], _seed + 2 + ind);
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_fre = max(0.01, abs(_fre));
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var _t = _shf + _rat * _fre;
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if(_wig) {
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var _w = wiggle(_wigs[0], _wigs[1], _wigf, _t, _seed);
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_amp += _w;
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}
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if(is_array(_path)) {
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_path = array_safe_get_fast(_path, ind);
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ind = 0;
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}
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if(!is_struct(_path) || !struct_has(_path, "getPointRatio"))
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return out;
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p0 = _path.getPointRatio(clamp(_rat - 0.001, 0, 0.999999), ind, p0);
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p = _path.getPointRatio(_rat, ind, p);
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p1 = _path.getPointRatio(clamp(_rat + 0.001, 0, 0.999999), ind, p1);
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var dir = point_direction(p0.x, p0.y, p1.x, p1.y) + 90;
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var prg;
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if(_smt) prg = cos(_t * pi * 2);
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else prg = (abs(frac(_t) * 2 - 1) - 0.5) * 2;
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if(amp_curve) prg *= amp_curve.get(_rat);
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out.x = p.x + lengthdir_x(_amp * prg, dir);
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out.y = p.y + lengthdir_y(_amp * prg, dir);
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cached_pos[? _cKey] = out.clone();
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return out;
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} #endregion
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static getPointDistance = function(_dist, ind = 0, out = undefined) { return getPointRatio(_dist / getLength(), ind, out); }
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static getBoundary = function(ind = 0) { #region
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return struct_has(path, "getBoundary")? path.getBoundary(ind) : new BoundingBox( 0, 0, 1, 1 );
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} #endregion
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static update = function() { #region
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ds_map_clear(cached_pos);
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path = getInputData(0);
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fre = getInputData(1);
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amp = getInputData(2);
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shf = getInputData(3);
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smt = getInputData(4);
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seed = getInputData(5);
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wig = getInputData(6);
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wigs = getInputData(7);
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wigf = getInputData(8);
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var _ampc = getInputData(9);
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amp_curve = new curveMap(_ampc, 128);
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outputs[0].setValue(self);
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} #endregion
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static onDrawNode = function(xx, yy, _mx, _my, _s, _hover, _focus) { #region
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var bbox = drawGetBbox(xx, yy, _s);
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draw_sprite_fit(s_node_path_wave, 0, bbox.xc, bbox.yc, bbox.w, bbox.h);
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} #endregion
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} |