2018-02-08 03:51:32 -06:00
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/**
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* @file
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* @brief Source file for Wave effect class
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* @author Jonathan Thomas <jonathan@openshot.org>
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*
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2019-06-09 08:31:04 -04:00
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* @ref License
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*/
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/* LICENSE
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2018-02-08 03:51:32 -06:00
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*
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2019-06-11 06:48:32 -04:00
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* Copyright (c) 2008-2019 OpenShot Studios, LLC
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2018-02-08 03:51:32 -06:00
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* <http://www.openshotstudios.com/>. This file is part of
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* OpenShot Library (libopenshot), an open-source project dedicated to
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* delivering high quality video editing and animation solutions to the
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* world. For more information visit <http://www.openshot.org/>.
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*
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* OpenShot Library (libopenshot) is free software: you can redistribute it
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* and/or modify it under the terms of the GNU Lesser General Public License
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* as published by the Free Software Foundation, either version 3 of the
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* License, or (at your option) any later version.
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*
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* OpenShot Library (libopenshot) is distributed in the hope that it will be
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* useful, but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public License
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* along with OpenShot Library. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "../../include/effects/Wave.h"
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using namespace openshot;
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/// Blank constructor, useful when using Json to load the effect properties
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Wave::Wave() : wavelength(0.06), amplitude(0.3), multiplier(0.2), shift_x(0.0), speed_y(0.2) {
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// Init effect properties
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init_effect_details();
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}
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// Default constructor
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Wave::Wave(Keyframe wavelength, Keyframe amplitude, Keyframe multiplier, Keyframe shift_x, Keyframe speed_y)
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: wavelength(wavelength), amplitude(amplitude), multiplier(multiplier), shift_x(shift_x), speed_y(speed_y)
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{
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// Init effect properties
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init_effect_details();
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}
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// Init effect settings
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void Wave::init_effect_details()
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{
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/// Initialize the values of the EffectInfo struct.
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InitEffectInfo();
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/// Set the effect info
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info.class_name = "Wave";
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info.name = "Wave";
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info.description = "Distort the frame's image into a wave pattern.";
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info.has_audio = false;
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info.has_video = true;
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}
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// This method is required for all derived classes of EffectBase, and returns a
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// modified openshot::Frame object
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std::shared_ptr<Frame> Wave::GetFrame(std::shared_ptr<Frame> frame, int64_t frame_number)
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{
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// Get the frame's image
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std::shared_ptr<QImage> frame_image = frame->GetImage();
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// Get pixels for frame image
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unsigned char *pixels = (unsigned char *) frame_image->bits();
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// Make temp copy of pixels before we start changing them
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unsigned char *temp_image = new unsigned char[frame_image->width() * frame_image->height() * 4]();
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memcpy(temp_image, pixels, sizeof(char) * frame_image->width() * frame_image->height() * 4);
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// Get current keyframe values
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double time = frame_number;//abs(((frame_number + 255) % 510) - 255);
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double wavelength_value = wavelength.GetValue(frame_number);
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double amplitude_value = amplitude.GetValue(frame_number);
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double multiplier_value = multiplier.GetValue(frame_number);
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double shift_x_value = shift_x.GetValue(frame_number);
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double speed_y_value = speed_y.GetValue(frame_number);
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// Loop through pixels
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for (int pixel = 0, byte_index=0; pixel < frame_image->width() * frame_image->height(); pixel++, byte_index+=4)
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{
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// Calculate X and Y pixel coordinates
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int Y = pixel / frame_image->width();
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// Calculate wave pixel offsets
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float noiseVal = (100 + Y * 0.001) * multiplier_value; // Time and time multiplier (to make the wave move)
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float noiseAmp = noiseVal * amplitude_value; // Apply amplitude / height of the wave
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float waveformVal = sin((Y * wavelength_value) + (time * speed_y_value)); // Waveform algorithm on y-axis
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float waveVal = (waveformVal + shift_x_value) * noiseAmp; // Shifts pixels on the x-axis
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int source_X = round(pixel + waveVal) * 4;
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if (source_X < 0)
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source_X = 0;
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if (source_X > frame_image->width() * frame_image->height() * 4 * sizeof(char))
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source_X = (frame_image->width() * frame_image->height() * 4 * sizeof(char)) - (sizeof(char) * 4);
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// Calculate source array location, and target array location, and copy the 4 color values
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memcpy(&pixels[byte_index], &temp_image[source_X], sizeof(char) * 4);
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}
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// Delete arrays
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delete[] temp_image;
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// return the modified frame
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return frame;
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}
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// Generate JSON string of this object
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string Wave::Json() {
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// Return formatted string
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return JsonValue().toStyledString();
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}
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// Generate Json::JsonValue for this object
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Json::Value Wave::JsonValue() {
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// Create root json object
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Json::Value root = EffectBase::JsonValue(); // get parent properties
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root["type"] = info.class_name;
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root["wavelength"] = wavelength.JsonValue();
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root["amplitude"] = amplitude.JsonValue();
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root["multiplier"] = multiplier.JsonValue();
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root["shift_x"] = shift_x.JsonValue();
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root["speed_y"] = speed_y.JsonValue();
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// return JsonValue
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return root;
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}
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// Load JSON string into this object
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void Wave::SetJson(string value) {
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// Parse JSON string into JSON objects
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Json::Value root;
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2019-06-19 21:20:04 -04:00
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Json::CharReaderBuilder rbuilder;
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Json::CharReader* reader(rbuilder.newCharReader());
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string errors;
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2019-07-11 05:00:47 -04:00
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bool success = reader->parse( value.c_str(),
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value.c_str() + value.size(), &root, &errors );
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delete reader;
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2018-02-08 03:51:32 -06:00
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if (!success)
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// Raise exception
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throw InvalidJSON("JSON could not be parsed (or is invalid)", "");
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try
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{
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// Set all values that match
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SetJsonValue(root);
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}
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2019-07-03 06:29:32 -04:00
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catch (const std::exception& e)
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2018-02-08 03:51:32 -06:00
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{
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// Error parsing JSON (or missing keys)
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throw InvalidJSON("JSON is invalid (missing keys or invalid data types)", "");
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}
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}
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// Load Json::JsonValue into this object
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void Wave::SetJsonValue(Json::Value root) {
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// Set parent data
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EffectBase::SetJsonValue(root);
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// Set data from Json (if key is found)
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if (!root["wavelength"].isNull())
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wavelength.SetJsonValue(root["wavelength"]);
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if (!root["amplitude"].isNull())
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amplitude.SetJsonValue(root["amplitude"]);
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if (!root["multiplier"].isNull())
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multiplier.SetJsonValue(root["multiplier"]);
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if (!root["shift_x"].isNull())
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shift_x.SetJsonValue(root["shift_x"]);
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if (!root["speed_y"].isNull())
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speed_y.SetJsonValue(root["speed_y"]);
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}
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// Get all properties for a specific frame
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string Wave::PropertiesJSON(int64_t requested_frame) {
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// Generate JSON properties list
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Json::Value root;
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root["id"] = add_property_json("ID", 0.0, "string", Id(), NULL, -1, -1, true, requested_frame);
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root["position"] = add_property_json("Position", Position(), "float", "", NULL, 0, 1000 * 60 * 30, false, requested_frame);
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root["layer"] = add_property_json("Track", Layer(), "int", "", NULL, 0, 20, false, requested_frame);
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root["start"] = add_property_json("Start", Start(), "float", "", NULL, 0, 1000 * 60 * 30, false, requested_frame);
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root["end"] = add_property_json("End", End(), "float", "", NULL, 0, 1000 * 60 * 30, false, requested_frame);
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root["duration"] = add_property_json("Duration", Duration(), "float", "", NULL, 0, 1000 * 60 * 30, true, requested_frame);
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// Keyframes
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root["wavelength"] = add_property_json("Wave length", wavelength.GetValue(requested_frame), "float", "", &wavelength, 0.0, 3.0, false, requested_frame);
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root["amplitude"] = add_property_json("Amplitude", amplitude.GetValue(requested_frame), "float", "", &litude, 0.0, 5.0, false, requested_frame);
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root["multiplier"] = add_property_json("Multiplier", multiplier.GetValue(requested_frame), "float", "", &multiplier, 0.0, 10.0, false, requested_frame);
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root["shift_x"] = add_property_json("X Shift", shift_x.GetValue(requested_frame), "float", "", &shift_x, 0.0, 1000.0, false, requested_frame);
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root["speed_y"] = add_property_json("Vertical speed", speed_y.GetValue(requested_frame), "float", "", &speed_y, 0.0, 300.0, false, requested_frame);
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// Return formatted string
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return root.toStyledString();
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}
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