mirror of
https://github.com/overte-org/overte.git
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Merge branch 'batch-overlay' of https://github.com/huffman/hifi into yellow
This commit is contained in:
commit
0653be445a
6 changed files with 496 additions and 305 deletions
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@ -43,72 +43,88 @@ void BillboardOverlay::render(RenderArgs* args) {
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return;
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}
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glEnable(GL_ALPHA_TEST);
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glAlphaFunc(GL_GREATER, 0.5f);
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glm::quat rotation;
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if (_isFacingAvatar) {
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// rotate about vertical to face the camera
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rotation = Application::getInstance()->getCamera()->getRotation();
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rotation *= glm::angleAxis(glm::pi<float>(), glm::vec3(0.0f, 1.0f, 0.0f));
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rotation *= getRotation();
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} else {
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rotation = getRotation();
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}
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glEnable(GL_TEXTURE_2D);
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glDisable(GL_LIGHTING);
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float imageWidth = _texture->getWidth();
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float imageHeight = _texture->getHeight();
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glBindTexture(GL_TEXTURE_2D, _texture->getID());
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QRect fromImage;
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if (_fromImage.isNull()) {
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fromImage.setX(0);
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fromImage.setY(0);
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fromImage.setWidth(imageWidth);
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fromImage.setHeight(imageHeight);
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} else {
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float scaleX = imageWidth / _texture->getOriginalWidth();
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float scaleY = imageHeight / _texture->getOriginalHeight();
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glPushMatrix(); {
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glTranslatef(_position.x, _position.y, _position.z);
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glm::quat rotation;
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if (_isFacingAvatar) {
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// rotate about vertical to face the camera
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rotation = Application::getInstance()->getCamera()->getRotation();
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rotation *= glm::angleAxis(glm::pi<float>(), glm::vec3(0.0f, 1.0f, 0.0f));
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rotation *= getRotation();
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} else {
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rotation = getRotation();
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}
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glm::vec3 axis = glm::axis(rotation);
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glRotatef(glm::degrees(glm::angle(rotation)), axis.x, axis.y, axis.z);
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glScalef(_scale, _scale, _scale);
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fromImage.setX(scaleX * _fromImage.x());
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fromImage.setY(scaleY * _fromImage.y());
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fromImage.setWidth(scaleX * _fromImage.width());
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fromImage.setHeight(scaleY * _fromImage.height());
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}
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const float MAX_COLOR = 255.0f;
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xColor color = getColor();
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float alpha = getAlpha();
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float maxSize = glm::max(fromImage.width(), fromImage.height());
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float x = fromImage.width() / (2.0f * maxSize);
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float y = -fromImage.height() / (2.0f * maxSize);
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float imageWidth = _texture->getWidth();
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float imageHeight = _texture->getHeight();
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glm::vec2 topLeft(-x, -y);
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glm::vec2 bottomRight(x, y);
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glm::vec2 texCoordTopLeft(fromImage.x() / imageWidth, fromImage.y() / imageHeight);
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glm::vec2 texCoordBottomRight((fromImage.x() + fromImage.width()) / imageWidth,
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(fromImage.y() + fromImage.height()) / imageHeight);
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QRect fromImage;
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if (_fromImage.isNull()) {
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fromImage.setX(0);
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fromImage.setY(0);
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fromImage.setWidth(imageWidth);
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fromImage.setHeight(imageHeight);
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} else {
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float scaleX = imageWidth / _texture->getOriginalWidth();
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float scaleY = imageHeight / _texture->getOriginalHeight();
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const float MAX_COLOR = 255.0f;
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xColor color = getColor();
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float alpha = getAlpha();
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fromImage.setX(scaleX * _fromImage.x());
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fromImage.setY(scaleY * _fromImage.y());
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fromImage.setWidth(scaleX * _fromImage.width());
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fromImage.setHeight(scaleY * _fromImage.height());
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}
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auto batch = args->_batch;
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float maxSize = glm::max(fromImage.width(), fromImage.height());
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float x = fromImage.width() / (2.0f * maxSize);
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float y = -fromImage.height() / (2.0f * maxSize);
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if (batch) {
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Transform transform;
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transform.setTranslation(_position);
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transform.setRotation(rotation);
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transform.setScale(_scale);
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glm::vec2 topLeft(-x, -y);
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glm::vec2 bottomRight(x, y);
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glm::vec2 texCoordTopLeft(fromImage.x() / imageWidth, fromImage.y() / imageHeight);
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glm::vec2 texCoordBottomRight((fromImage.x() + fromImage.width()) / imageWidth,
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(fromImage.y() + fromImage.height()) / imageHeight);
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DependencyManager::get<GeometryCache>()->renderQuad(topLeft, bottomRight, texCoordTopLeft, texCoordBottomRight,
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batch->setModelTransform(transform);
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batch->setUniformTexture(0, _texture->getGPUTexture());
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DependencyManager::get<GeometryCache>()->renderQuad(*batch, topLeft, bottomRight, texCoordTopLeft, texCoordBottomRight,
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glm::vec4(color.red / MAX_COLOR, color.green / MAX_COLOR, color.blue / MAX_COLOR, alpha));
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} else {
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glEnable(GL_ALPHA_TEST);
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glAlphaFunc(GL_GREATER, 0.5f);
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} glPopMatrix();
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glEnable(GL_TEXTURE_2D);
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glDisable(GL_LIGHTING);
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glDisable(GL_TEXTURE_2D);
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glEnable(GL_LIGHTING);
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glDisable(GL_ALPHA_TEST);
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glBindTexture(GL_TEXTURE_2D, _texture->getID());
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glBindTexture(GL_TEXTURE_2D, 0);
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glPushMatrix(); {
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glTranslatef(_position.x, _position.y, _position.z);
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glm::vec3 axis = glm::axis(rotation);
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glRotatef(glm::degrees(glm::angle(rotation)), axis.x, axis.y, axis.z);
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glScalef(_scale, _scale, _scale);
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DependencyManager::get<GeometryCache>()->renderQuad(topLeft, bottomRight, texCoordTopLeft, texCoordBottomRight,
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glm::vec4(color.red / MAX_COLOR, color.green / MAX_COLOR, color.blue / MAX_COLOR, alpha));
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} glPopMatrix();
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glDisable(GL_TEXTURE_2D);
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glEnable(GL_LIGHTING);
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glDisable(GL_ALPHA_TEST);
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glBindTexture(GL_TEXTURE_2D, 0);
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}
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}
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void BillboardOverlay::setProperties(const QScriptValue &properties) {
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@ -35,13 +35,6 @@ void Cube3DOverlay::render(RenderArgs* args) {
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return; // do nothing if we're not visible
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}
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float glowLevel = getGlowLevel();
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Glower* glower = NULL;
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if (glowLevel > 0.0f) {
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glower = new Glower(glowLevel);
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}
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float alpha = getAlpha();
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xColor color = getColor();
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const float MAX_COLOR = 255.0f;
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@ -49,91 +42,162 @@ void Cube3DOverlay::render(RenderArgs* args) {
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//glDisable(GL_LIGHTING);
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// TODO: handle registration point??
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// TODO: handle registration point??
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glm::vec3 position = getPosition();
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glm::vec3 center = getCenter();
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glm::vec3 dimensions = getDimensions();
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glm::quat rotation = getRotation();
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glPushMatrix();
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glTranslatef(position.x, position.y, position.z);
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glm::vec3 axis = glm::axis(rotation);
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glRotatef(glm::degrees(glm::angle(rotation)), axis.x, axis.y, axis.z);
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glPushMatrix();
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glm::vec3 positionToCenter = center - position;
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glTranslatef(positionToCenter.x, positionToCenter.y, positionToCenter.z);
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if (_isSolid) {
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if (_borderSize > 0) {
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// Draw a cube at a larger size behind the main cube, creating
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// a border effect.
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// Disable writing to the depth mask so that the "border" cube will not
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// occlude the main cube. This means the border could be covered by
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// overlays that are further back and drawn later, but this is good
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// enough for the use-case.
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glDepthMask(GL_FALSE);
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glPushMatrix();
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glScalef(dimensions.x * _borderSize, dimensions.y * _borderSize, dimensions.z * _borderSize);
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if (_drawOnHUD) {
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DependencyManager::get<GeometryCache>()->renderSolidCube(1.0f, glm::vec4(1.0f, 1.0f, 1.0f, alpha));
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} else {
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DependencyManager::get<GeometryCache>()->renderSolidCube(1.0f, glm::vec4(1.0f, 1.0f, 1.0f, alpha));
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}
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auto batch = args->_batch;
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glPopMatrix();
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glDepthMask(GL_TRUE);
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}
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if (batch) {
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Transform transform;
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transform.setTranslation(position);
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transform.setRotation(rotation);
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if (_isSolid) {
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// if (_borderSize > 0) {
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// // Draw a cube at a larger size behind the main cube, creating
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// // a border effect.
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// // Disable writing to the depth mask so that the "border" cube will not
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// // occlude the main cube. This means the border could be covered by
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// // overlays that are further back and drawn later, but this is good
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// // enough for the use-case.
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// transform.setScale(dimensions * _borderSize);
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// batch->setModelTransform(transform);
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// DependencyManager::get<GeometryCache>()->renderSolidCube(*batch, 1.0f, glm::vec4(1.0f, 1.0f, 1.0f, alpha));
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// }
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transform.setScale(dimensions);
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batch->setModelTransform(transform);
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DependencyManager::get<DeferredLightingEffect>()->renderSolidCube(*batch, 1.0f, cubeColor);
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} else {
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if (getIsDashedLine()) {
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transform.setScale(1.0f);
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batch->setModelTransform(transform);
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glm::vec3 halfDimensions = dimensions / 2.0f;
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glm::vec3 bottomLeftNear(-halfDimensions.x, -halfDimensions.y, -halfDimensions.z);
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glm::vec3 bottomRightNear(halfDimensions.x, -halfDimensions.y, -halfDimensions.z);
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glm::vec3 topLeftNear(-halfDimensions.x, halfDimensions.y, -halfDimensions.z);
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glm::vec3 topRightNear(halfDimensions.x, halfDimensions.y, -halfDimensions.z);
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glm::vec3 bottomLeftFar(-halfDimensions.x, -halfDimensions.y, halfDimensions.z);
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glm::vec3 bottomRightFar(halfDimensions.x, -halfDimensions.y, halfDimensions.z);
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glm::vec3 topLeftFar(-halfDimensions.x, halfDimensions.y, halfDimensions.z);
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glm::vec3 topRightFar(halfDimensions.x, halfDimensions.y, halfDimensions.z);
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auto geometryCache = DependencyManager::get<GeometryCache>();
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geometryCache->renderDashedLine(*batch, bottomLeftNear, bottomRightNear, cubeColor);
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geometryCache->renderDashedLine(*batch, bottomRightNear, bottomRightFar, cubeColor);
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geometryCache->renderDashedLine(*batch, bottomRightFar, bottomLeftFar, cubeColor);
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geometryCache->renderDashedLine(*batch, bottomLeftFar, bottomLeftNear, cubeColor);
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geometryCache->renderDashedLine(*batch, topLeftNear, topRightNear, cubeColor);
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geometryCache->renderDashedLine(*batch, topRightNear, topRightFar, cubeColor);
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geometryCache->renderDashedLine(*batch, topRightFar, topLeftFar, cubeColor);
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geometryCache->renderDashedLine(*batch, topLeftFar, topLeftNear, cubeColor);
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geometryCache->renderDashedLine(*batch, bottomLeftNear, topLeftNear, cubeColor);
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geometryCache->renderDashedLine(*batch, bottomRightNear, topRightNear, cubeColor);
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geometryCache->renderDashedLine(*batch, bottomLeftFar, topLeftFar, cubeColor);
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geometryCache->renderDashedLine(*batch, bottomRightFar, topRightFar, cubeColor);
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glPushMatrix();
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glScalef(dimensions.x, dimensions.y, dimensions.z);
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if (_drawOnHUD) {
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DependencyManager::get<GeometryCache>()->renderSolidCube(1.0f, cubeColor);
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} else {
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DependencyManager::get<GeometryCache>()->renderSolidCube(1.0f, cubeColor);
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}
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glPopMatrix();
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} else {
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glLineWidth(_lineWidth);
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if (getIsDashedLine()) {
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glm::vec3 halfDimensions = dimensions / 2.0f;
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glm::vec3 bottomLeftNear(-halfDimensions.x, -halfDimensions.y, -halfDimensions.z);
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glm::vec3 bottomRightNear(halfDimensions.x, -halfDimensions.y, -halfDimensions.z);
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glm::vec3 topLeftNear(-halfDimensions.x, halfDimensions.y, -halfDimensions.z);
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glm::vec3 topRightNear(halfDimensions.x, halfDimensions.y, -halfDimensions.z);
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glm::vec3 bottomLeftFar(-halfDimensions.x, -halfDimensions.y, halfDimensions.z);
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glm::vec3 bottomRightFar(halfDimensions.x, -halfDimensions.y, halfDimensions.z);
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glm::vec3 topLeftFar(-halfDimensions.x, halfDimensions.y, halfDimensions.z);
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glm::vec3 topRightFar(halfDimensions.x, halfDimensions.y, halfDimensions.z);
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auto geometryCache = DependencyManager::get<GeometryCache>();
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geometryCache->renderDashedLine(bottomLeftNear, bottomRightNear, cubeColor);
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geometryCache->renderDashedLine(bottomRightNear, bottomRightFar, cubeColor);
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geometryCache->renderDashedLine(bottomRightFar, bottomLeftFar, cubeColor);
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geometryCache->renderDashedLine(bottomLeftFar, bottomLeftNear, cubeColor);
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geometryCache->renderDashedLine(topLeftNear, topRightNear, cubeColor);
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geometryCache->renderDashedLine(topRightNear, topRightFar, cubeColor);
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geometryCache->renderDashedLine(topRightFar, topLeftFar, cubeColor);
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geometryCache->renderDashedLine(topLeftFar, topLeftNear, cubeColor);
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geometryCache->renderDashedLine(bottomLeftNear, topLeftNear, cubeColor);
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geometryCache->renderDashedLine(bottomRightNear, topRightNear, cubeColor);
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geometryCache->renderDashedLine(bottomLeftFar, topLeftFar, cubeColor);
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geometryCache->renderDashedLine(bottomRightFar, topRightFar, cubeColor);
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} else {
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glScalef(dimensions.x, dimensions.y, dimensions.z);
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DependencyManager::get<GeometryCache>()->renderWireCube(1.0f, cubeColor);
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}
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transform.setScale(dimensions);
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batch->setModelTransform(transform);
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DependencyManager::get<DeferredLightingEffect>()->renderWireCube(*batch, 1.0f, cubeColor);
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}
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glPopMatrix();
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glPopMatrix();
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}
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} else {
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float glowLevel = getGlowLevel();
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Glower* glower = NULL;
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if (glowLevel > 0.0f) {
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glower = new Glower(glowLevel);
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}
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if (glower) {
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delete glower;
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glPushMatrix();
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glTranslatef(position.x, position.y, position.z);
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glm::vec3 axis = glm::axis(rotation);
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glRotatef(glm::degrees(glm::angle(rotation)), axis.x, axis.y, axis.z);
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glPushMatrix();
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glm::vec3 positionToCenter = center - position;
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glTranslatef(positionToCenter.x, positionToCenter.y, positionToCenter.z);
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if (_isSolid) {
|
||||
if (_borderSize > 0) {
|
||||
// Draw a cube at a larger size behind the main cube, creating
|
||||
// a border effect.
|
||||
// Disable writing to the depth mask so that the "border" cube will not
|
||||
// occlude the main cube. This means the border could be covered by
|
||||
// overlays that are further back and drawn later, but this is good
|
||||
// enough for the use-case.
|
||||
glDepthMask(GL_FALSE);
|
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glPushMatrix();
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glScalef(dimensions.x * _borderSize, dimensions.y * _borderSize, dimensions.z * _borderSize);
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|
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if (_drawOnHUD) {
|
||||
DependencyManager::get<GeometryCache>()->renderSolidCube(1.0f, glm::vec4(1.0f, 1.0f, 1.0f, alpha));
|
||||
} else {
|
||||
DependencyManager::get<GeometryCache>()->renderSolidCube(1.0f, glm::vec4(1.0f, 1.0f, 1.0f, alpha));
|
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}
|
||||
|
||||
glPopMatrix();
|
||||
glDepthMask(GL_TRUE);
|
||||
}
|
||||
|
||||
glPushMatrix();
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||||
glScalef(dimensions.x, dimensions.y, dimensions.z);
|
||||
if (_drawOnHUD) {
|
||||
DependencyManager::get<GeometryCache>()->renderSolidCube(1.0f, cubeColor);
|
||||
} else {
|
||||
DependencyManager::get<GeometryCache>()->renderSolidCube(1.0f, cubeColor);
|
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}
|
||||
glPopMatrix();
|
||||
} else {
|
||||
glLineWidth(_lineWidth);
|
||||
|
||||
if (getIsDashedLine()) {
|
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glm::vec3 halfDimensions = dimensions / 2.0f;
|
||||
glm::vec3 bottomLeftNear(-halfDimensions.x, -halfDimensions.y, -halfDimensions.z);
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||||
glm::vec3 bottomRightNear(halfDimensions.x, -halfDimensions.y, -halfDimensions.z);
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||||
glm::vec3 topLeftNear(-halfDimensions.x, halfDimensions.y, -halfDimensions.z);
|
||||
glm::vec3 topRightNear(halfDimensions.x, halfDimensions.y, -halfDimensions.z);
|
||||
|
||||
glm::vec3 bottomLeftFar(-halfDimensions.x, -halfDimensions.y, halfDimensions.z);
|
||||
glm::vec3 bottomRightFar(halfDimensions.x, -halfDimensions.y, halfDimensions.z);
|
||||
glm::vec3 topLeftFar(-halfDimensions.x, halfDimensions.y, halfDimensions.z);
|
||||
glm::vec3 topRightFar(halfDimensions.x, halfDimensions.y, halfDimensions.z);
|
||||
|
||||
auto geometryCache = DependencyManager::get<GeometryCache>();
|
||||
|
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geometryCache->renderDashedLine(bottomLeftNear, bottomRightNear, cubeColor);
|
||||
geometryCache->renderDashedLine(bottomRightNear, bottomRightFar, cubeColor);
|
||||
geometryCache->renderDashedLine(bottomRightFar, bottomLeftFar, cubeColor);
|
||||
geometryCache->renderDashedLine(bottomLeftFar, bottomLeftNear, cubeColor);
|
||||
|
||||
geometryCache->renderDashedLine(topLeftNear, topRightNear, cubeColor);
|
||||
geometryCache->renderDashedLine(topRightNear, topRightFar, cubeColor);
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geometryCache->renderDashedLine(topRightFar, topLeftFar, cubeColor);
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geometryCache->renderDashedLine(topLeftFar, topLeftNear, cubeColor);
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geometryCache->renderDashedLine(bottomLeftNear, topLeftNear, cubeColor);
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geometryCache->renderDashedLine(bottomRightNear, topRightNear, cubeColor);
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geometryCache->renderDashedLine(bottomLeftFar, topLeftFar, cubeColor);
|
||||
geometryCache->renderDashedLine(bottomRightFar, topRightFar, cubeColor);
|
||||
|
||||
} else {
|
||||
glScalef(dimensions.x, dimensions.y, dimensions.z);
|
||||
DependencyManager::get<GeometryCache>()->renderWireCube(1.0f, cubeColor);
|
||||
}
|
||||
}
|
||||
glPopMatrix();
|
||||
glPopMatrix();
|
||||
|
||||
if (glower) {
|
||||
delete glower;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
|
|
|
@ -36,87 +36,128 @@ void Grid3DOverlay::render(RenderArgs* args) {
|
|||
return; // do nothing if we're not visible
|
||||
}
|
||||
|
||||
if (!_gridProgram.isLinked()) {
|
||||
if (!_gridProgram.addShaderFromSourceFile(QGLShader::Vertex, PathUtils::resourcesPath() + "shaders/grid.vert")) {
|
||||
qDebug() << "Failed to compile: " + _gridProgram.log();
|
||||
return;
|
||||
}
|
||||
if (!_gridProgram.addShaderFromSourceFile(QGLShader::Fragment, PathUtils::resourcesPath() + "shaders/grid.frag")) {
|
||||
qDebug() << "Failed to compile: " + _gridProgram.log();
|
||||
return;
|
||||
}
|
||||
if (!_gridProgram.link()) {
|
||||
qDebug() << "Failed to link: " + _gridProgram.log();
|
||||
return;
|
||||
}
|
||||
}
|
||||
|
||||
// Render code largely taken from MetavoxelEditor::render()
|
||||
glDisable(GL_LIGHTING);
|
||||
|
||||
glDepthMask(GL_FALSE);
|
||||
|
||||
glPushMatrix();
|
||||
|
||||
glm::quat rotation = getRotation();
|
||||
|
||||
glm::vec3 axis = glm::axis(rotation);
|
||||
|
||||
glRotatef(glm::degrees(glm::angle(rotation)), axis.x, axis.y, axis.z);
|
||||
|
||||
glLineWidth(1.5f);
|
||||
|
||||
// center the grid around the camera position on the plane
|
||||
glm::vec3 rotated = glm::inverse(rotation) * Application::getInstance()->getCamera()->getPosition();
|
||||
float spacing = _minorGridWidth;
|
||||
|
||||
float alpha = getAlpha();
|
||||
xColor color = getColor();
|
||||
glm::vec3 position = getPosition();
|
||||
|
||||
const int MINOR_GRID_DIVISIONS = 200;
|
||||
const int MAJOR_GRID_DIVISIONS = 100;
|
||||
const float MAX_COLOR = 255.0f;
|
||||
|
||||
// center the grid around the camera position on the plane
|
||||
glm::vec3 rotated = glm::inverse(_rotation) * Application::getInstance()->getCamera()->getPosition();
|
||||
|
||||
float spacing = _minorGridWidth;
|
||||
|
||||
float alpha = getAlpha();
|
||||
xColor color = getColor();
|
||||
glm::vec4 gridColor(color.red / MAX_COLOR, color.green / MAX_COLOR, color.blue / MAX_COLOR, alpha);
|
||||
|
||||
_gridProgram.bind();
|
||||
auto batch = args->_batch;
|
||||
|
||||
// Minor grid
|
||||
glPushMatrix();
|
||||
{
|
||||
glTranslatef(_minorGridWidth * (floorf(rotated.x / spacing) - MINOR_GRID_DIVISIONS / 2),
|
||||
spacing * (floorf(rotated.y / spacing) - MINOR_GRID_DIVISIONS / 2), position.z);
|
||||
if (batch) {
|
||||
Transform transform;
|
||||
transform.setRotation(_rotation);
|
||||
|
||||
float scale = MINOR_GRID_DIVISIONS * spacing;
|
||||
glScalef(scale, scale, scale);
|
||||
|
||||
DependencyManager::get<GeometryCache>()->renderGrid(MINOR_GRID_DIVISIONS, MINOR_GRID_DIVISIONS, gridColor);
|
||||
// Minor grid
|
||||
{
|
||||
batch->_glLineWidth(1.0f);
|
||||
auto position = glm::vec3(_minorGridWidth * (floorf(rotated.x / spacing) - MINOR_GRID_DIVISIONS / 2),
|
||||
spacing * (floorf(rotated.y / spacing) - MINOR_GRID_DIVISIONS / 2),
|
||||
_position.z);
|
||||
float scale = MINOR_GRID_DIVISIONS * spacing;
|
||||
|
||||
transform.setTranslation(position);
|
||||
transform.setScale(scale);
|
||||
|
||||
batch->setModelTransform(transform);
|
||||
|
||||
DependencyManager::get<GeometryCache>()->renderGrid(*batch, MINOR_GRID_DIVISIONS, MINOR_GRID_DIVISIONS, gridColor);
|
||||
}
|
||||
|
||||
// Major grid
|
||||
{
|
||||
batch->_glLineWidth(4.0f);
|
||||
spacing *= _majorGridEvery;
|
||||
auto position = glm::vec3(spacing * (floorf(rotated.x / spacing) - MAJOR_GRID_DIVISIONS / 2),
|
||||
spacing * (floorf(rotated.y / spacing) - MAJOR_GRID_DIVISIONS / 2),
|
||||
_position.z);
|
||||
float scale = MAJOR_GRID_DIVISIONS * spacing;
|
||||
|
||||
transform.setTranslation(position);
|
||||
transform.setScale(scale);
|
||||
|
||||
batch->setModelTransform(transform);
|
||||
|
||||
DependencyManager::get<GeometryCache>()->renderGrid(*batch, MAJOR_GRID_DIVISIONS, MAJOR_GRID_DIVISIONS, gridColor);
|
||||
}
|
||||
} else {
|
||||
if (!_gridProgram.isLinked()) {
|
||||
if (!_gridProgram.addShaderFromSourceFile(QGLShader::Vertex, PathUtils::resourcesPath() + "shaders/grid.vert")) {
|
||||
qDebug() << "Failed to compile: " + _gridProgram.log();
|
||||
return;
|
||||
}
|
||||
if (!_gridProgram.addShaderFromSourceFile(QGLShader::Fragment, PathUtils::resourcesPath() + "shaders/grid.frag")) {
|
||||
qDebug() << "Failed to compile: " + _gridProgram.log();
|
||||
return;
|
||||
}
|
||||
if (!_gridProgram.link()) {
|
||||
qDebug() << "Failed to link: " + _gridProgram.log();
|
||||
return;
|
||||
}
|
||||
}
|
||||
|
||||
// Render code largely taken from MetavoxelEditor::render()
|
||||
glDisable(GL_LIGHTING);
|
||||
|
||||
glDepthMask(GL_FALSE);
|
||||
|
||||
glPushMatrix();
|
||||
|
||||
glm::quat rotation = getRotation();
|
||||
|
||||
glm::vec3 axis = glm::axis(rotation);
|
||||
|
||||
glRotatef(glm::degrees(glm::angle(rotation)), axis.x, axis.y, axis.z);
|
||||
|
||||
glLineWidth(1.5f);
|
||||
|
||||
glm::vec3 position = getPosition();
|
||||
|
||||
_gridProgram.bind();
|
||||
|
||||
// Minor grid
|
||||
glPushMatrix();
|
||||
{
|
||||
glTranslatef(_minorGridWidth * (floorf(rotated.x / spacing) - MINOR_GRID_DIVISIONS / 2),
|
||||
spacing * (floorf(rotated.y / spacing) - MINOR_GRID_DIVISIONS / 2), position.z);
|
||||
|
||||
float scale = MINOR_GRID_DIVISIONS * spacing;
|
||||
glScalef(scale, scale, scale);
|
||||
|
||||
DependencyManager::get<GeometryCache>()->renderGrid(MINOR_GRID_DIVISIONS, MINOR_GRID_DIVISIONS, gridColor);
|
||||
}
|
||||
glPopMatrix();
|
||||
|
||||
// Major grid
|
||||
glPushMatrix();
|
||||
{
|
||||
glLineWidth(4.0f);
|
||||
spacing *= _majorGridEvery;
|
||||
glTranslatef(spacing * (floorf(rotated.x / spacing) - MAJOR_GRID_DIVISIONS / 2),
|
||||
spacing * (floorf(rotated.y / spacing) - MAJOR_GRID_DIVISIONS / 2), position.z);
|
||||
|
||||
float scale = MAJOR_GRID_DIVISIONS * spacing;
|
||||
glScalef(scale, scale, scale);
|
||||
|
||||
DependencyManager::get<GeometryCache>()->renderGrid(MAJOR_GRID_DIVISIONS, MAJOR_GRID_DIVISIONS, gridColor);
|
||||
}
|
||||
glPopMatrix();
|
||||
|
||||
_gridProgram.release();
|
||||
|
||||
glPopMatrix();
|
||||
|
||||
glEnable(GL_LIGHTING);
|
||||
glDepthMask(GL_TRUE);
|
||||
}
|
||||
glPopMatrix();
|
||||
|
||||
// Major grid
|
||||
glPushMatrix();
|
||||
{
|
||||
glLineWidth(4.0f);
|
||||
spacing *= _majorGridEvery;
|
||||
glTranslatef(spacing * (floorf(rotated.x / spacing) - MAJOR_GRID_DIVISIONS / 2),
|
||||
spacing * (floorf(rotated.y / spacing) - MAJOR_GRID_DIVISIONS / 2), position.z);
|
||||
|
||||
float scale = MAJOR_GRID_DIVISIONS * spacing;
|
||||
glScalef(scale, scale, scale);
|
||||
|
||||
DependencyManager::get<GeometryCache>()->renderGrid(MAJOR_GRID_DIVISIONS, MAJOR_GRID_DIVISIONS, gridColor);
|
||||
}
|
||||
glPopMatrix();
|
||||
|
||||
_gridProgram.release();
|
||||
|
||||
glPopMatrix();
|
||||
|
||||
glEnable(GL_LIGHTING);
|
||||
glDepthMask(GL_TRUE);
|
||||
}
|
||||
|
||||
void Grid3DOverlay::setProperties(const QScriptValue& properties) {
|
||||
|
|
|
@ -37,41 +37,57 @@ void Line3DOverlay::render(RenderArgs* args) {
|
|||
return; // do nothing if we're not visible
|
||||
}
|
||||
|
||||
float glowLevel = getGlowLevel();
|
||||
Glower* glower = NULL;
|
||||
if (glowLevel > 0.0f) {
|
||||
glower = new Glower(glowLevel);
|
||||
}
|
||||
|
||||
glPushMatrix();
|
||||
|
||||
glDisable(GL_LIGHTING);
|
||||
glLineWidth(_lineWidth);
|
||||
|
||||
float alpha = getAlpha();
|
||||
xColor color = getColor();
|
||||
const float MAX_COLOR = 255.0f;
|
||||
glm::vec4 colorv4(color.red / MAX_COLOR, color.green / MAX_COLOR, color.blue / MAX_COLOR, alpha);
|
||||
|
||||
glm::vec3 position = getPosition();
|
||||
glm::quat rotation = getRotation();
|
||||
auto batch = args->_batch;
|
||||
|
||||
glTranslatef(position.x, position.y, position.z);
|
||||
glm::vec3 axis = glm::axis(rotation);
|
||||
glRotatef(glm::degrees(glm::angle(rotation)), axis.x, axis.y, axis.z);
|
||||
if (batch) {
|
||||
Transform transform;
|
||||
transform.setTranslation(_position);
|
||||
transform.setRotation(_rotation);
|
||||
batch->setModelTransform(transform);
|
||||
|
||||
if (getIsDashedLine()) {
|
||||
// TODO: add support for color to renderDashedLine()
|
||||
DependencyManager::get<GeometryCache>()->renderDashedLine(_position, _end, colorv4, _geometryCacheID);
|
||||
if (getIsDashedLine()) {
|
||||
// TODO: add support for color to renderDashedLine()
|
||||
DependencyManager::get<GeometryCache>()->renderDashedLine(*batch, _position, _end, colorv4, _geometryCacheID);
|
||||
} else {
|
||||
DependencyManager::get<GeometryCache>()->renderLine(*batch, _start, _end, colorv4, _geometryCacheID);
|
||||
}
|
||||
} else {
|
||||
DependencyManager::get<GeometryCache>()->renderLine(_start, _end, colorv4, _geometryCacheID);
|
||||
}
|
||||
glEnable(GL_LIGHTING);
|
||||
float glowLevel = getGlowLevel();
|
||||
Glower* glower = NULL;
|
||||
if (glowLevel > 0.0f) {
|
||||
glower = new Glower(glowLevel);
|
||||
}
|
||||
|
||||
glPopMatrix();
|
||||
glPushMatrix();
|
||||
|
||||
if (glower) {
|
||||
delete glower;
|
||||
glDisable(GL_LIGHTING);
|
||||
glLineWidth(_lineWidth);
|
||||
|
||||
glm::vec3 position = getPosition();
|
||||
glm::quat rotation = getRotation();
|
||||
|
||||
glTranslatef(position.x, position.y, position.z);
|
||||
glm::vec3 axis = glm::axis(rotation);
|
||||
glRotatef(glm::degrees(glm::angle(rotation)), axis.x, axis.y, axis.z);
|
||||
|
||||
if (getIsDashedLine()) {
|
||||
// TODO: add support for color to renderDashedLine()
|
||||
DependencyManager::get<GeometryCache>()->renderDashedLine(_position, _end, colorv4, _geometryCacheID);
|
||||
} else {
|
||||
DependencyManager::get<GeometryCache>()->renderLine(_start, _end, colorv4, _geometryCacheID);
|
||||
}
|
||||
glEnable(GL_LIGHTING);
|
||||
|
||||
glPopMatrix();
|
||||
|
||||
if (glower) {
|
||||
delete glower;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
|
|
|
@ -41,74 +41,116 @@ void Rectangle3DOverlay::render(RenderArgs* args) {
|
|||
const float MAX_COLOR = 255.0f;
|
||||
glm::vec4 rectangleColor(color.red / MAX_COLOR, color.green / MAX_COLOR, color.blue / MAX_COLOR, alpha);
|
||||
|
||||
glDisable(GL_LIGHTING);
|
||||
|
||||
glm::vec3 position = getPosition();
|
||||
glm::vec3 center = getCenter();
|
||||
glm::vec2 dimensions = getDimensions();
|
||||
glm::vec2 halfDimensions = dimensions * 0.5f;
|
||||
glm::quat rotation = getRotation();
|
||||
|
||||
float glowLevel = getGlowLevel();
|
||||
Glower* glower = NULL;
|
||||
if (glowLevel > 0.0f) {
|
||||
glower = new Glower(glowLevel);
|
||||
}
|
||||
auto batch = args->_batch;
|
||||
|
||||
glPushMatrix();
|
||||
glTranslatef(position.x, position.y, position.z);
|
||||
glm::vec3 axis = glm::axis(rotation);
|
||||
glRotatef(glm::degrees(glm::angle(rotation)), axis.x, axis.y, axis.z);
|
||||
glPushMatrix();
|
||||
glm::vec3 positionToCenter = center - position;
|
||||
glTranslatef(positionToCenter.x, positionToCenter.y, positionToCenter.z);
|
||||
//glScalef(dimensions.x, dimensions.y, 1.0f);
|
||||
if (batch) {
|
||||
Transform transform;
|
||||
transform.setTranslation(position);
|
||||
transform.setRotation(rotation);
|
||||
|
||||
glLineWidth(_lineWidth);
|
||||
batch->setModelTransform(transform);
|
||||
|
||||
if (getIsSolid()) {
|
||||
glm::vec3 topLeft(-halfDimensions.x, -halfDimensions.y, 0.0f);
|
||||
glm::vec3 bottomRight(halfDimensions.x, halfDimensions.y, 0.0f);
|
||||
DependencyManager::get<GeometryCache>()->renderQuad(*batch, topLeft, bottomRight, rectangleColor);
|
||||
} else {
|
||||
auto geometryCache = DependencyManager::get<GeometryCache>();
|
||||
if (getIsDashedLine()) {
|
||||
glm::vec3 point1(-halfDimensions.x, -halfDimensions.y, 0.0f);
|
||||
glm::vec3 point2(halfDimensions.x, -halfDimensions.y, 0.0f);
|
||||
glm::vec3 point3(halfDimensions.x, halfDimensions.y, 0.0f);
|
||||
glm::vec3 point4(-halfDimensions.x, halfDimensions.y, 0.0f);
|
||||
|
||||
// for our overlay, is solid means we draw a solid "filled" rectangle otherwise we just draw a border line...
|
||||
if (getIsSolid()) {
|
||||
glm::vec3 topLeft(-halfDimensions.x, -halfDimensions.y, 0.0f);
|
||||
glm::vec3 bottomRight(halfDimensions.x, halfDimensions.y, 0.0f);
|
||||
DependencyManager::get<GeometryCache>()->renderQuad(topLeft, bottomRight, rectangleColor);
|
||||
geometryCache->renderDashedLine(*batch, point1, point2, rectangleColor);
|
||||
geometryCache->renderDashedLine(*batch, point2, point3, rectangleColor);
|
||||
geometryCache->renderDashedLine(*batch, point3, point4, rectangleColor);
|
||||
geometryCache->renderDashedLine(*batch, point4, point1, rectangleColor);
|
||||
} else {
|
||||
if (getIsDashedLine()) {
|
||||
if (halfDimensions != _previousHalfDimensions) {
|
||||
QVector<glm::vec3> border;
|
||||
border << glm::vec3(-halfDimensions.x, -halfDimensions.y, 0.0f);
|
||||
border << glm::vec3(halfDimensions.x, -halfDimensions.y, 0.0f);
|
||||
border << glm::vec3(halfDimensions.x, halfDimensions.y, 0.0f);
|
||||
border << glm::vec3(-halfDimensions.x, halfDimensions.y, 0.0f);
|
||||
border << glm::vec3(-halfDimensions.x, -halfDimensions.y, 0.0f);
|
||||
geometryCache->updateVertices(_geometryCacheID, border, rectangleColor);
|
||||
|
||||
glm::vec3 point1(-halfDimensions.x, -halfDimensions.y, 0.0f);
|
||||
glm::vec3 point2(halfDimensions.x, -halfDimensions.y, 0.0f);
|
||||
glm::vec3 point3(halfDimensions.x, halfDimensions.y, 0.0f);
|
||||
glm::vec3 point4(-halfDimensions.x, halfDimensions.y, 0.0f);
|
||||
|
||||
geometryCache->renderDashedLine(point1, point2, rectangleColor);
|
||||
geometryCache->renderDashedLine(point2, point3, rectangleColor);
|
||||
geometryCache->renderDashedLine(point3, point4, rectangleColor);
|
||||
geometryCache->renderDashedLine(point4, point1, rectangleColor);
|
||||
|
||||
} else {
|
||||
|
||||
if (halfDimensions != _previousHalfDimensions) {
|
||||
QVector<glm::vec3> border;
|
||||
border << glm::vec3(-halfDimensions.x, -halfDimensions.y, 0.0f);
|
||||
border << glm::vec3(halfDimensions.x, -halfDimensions.y, 0.0f);
|
||||
border << glm::vec3(halfDimensions.x, halfDimensions.y, 0.0f);
|
||||
border << glm::vec3(-halfDimensions.x, halfDimensions.y, 0.0f);
|
||||
border << glm::vec3(-halfDimensions.x, -halfDimensions.y, 0.0f);
|
||||
geometryCache->updateVertices(_geometryCacheID, border, rectangleColor);
|
||||
|
||||
_previousHalfDimensions = halfDimensions;
|
||||
|
||||
}
|
||||
geometryCache->renderVertices(gpu::LINE_STRIP, _geometryCacheID);
|
||||
_previousHalfDimensions = halfDimensions;
|
||||
}
|
||||
geometryCache->renderVertices(*batch, gpu::LINE_STRIP, _geometryCacheID);
|
||||
}
|
||||
|
||||
}
|
||||
} else {
|
||||
glDisable(GL_LIGHTING);
|
||||
|
||||
float glowLevel = getGlowLevel();
|
||||
Glower* glower = NULL;
|
||||
if (glowLevel > 0.0f) {
|
||||
glower = new Glower(glowLevel);
|
||||
}
|
||||
|
||||
glPushMatrix();
|
||||
glTranslatef(position.x, position.y, position.z);
|
||||
glm::vec3 axis = glm::axis(rotation);
|
||||
glRotatef(glm::degrees(glm::angle(rotation)), axis.x, axis.y, axis.z);
|
||||
glPushMatrix();
|
||||
glm::vec3 positionToCenter = center - position;
|
||||
glTranslatef(positionToCenter.x, positionToCenter.y, positionToCenter.z);
|
||||
//glScalef(dimensions.x, dimensions.y, 1.0f);
|
||||
|
||||
glLineWidth(_lineWidth);
|
||||
|
||||
auto geometryCache = DependencyManager::get<GeometryCache>();
|
||||
|
||||
// for our overlay, is solid means we draw a solid "filled" rectangle otherwise we just draw a border line...
|
||||
if (getIsSolid()) {
|
||||
glm::vec3 topLeft(-halfDimensions.x, -halfDimensions.y, 0.0f);
|
||||
glm::vec3 bottomRight(halfDimensions.x, halfDimensions.y, 0.0f);
|
||||
DependencyManager::get<GeometryCache>()->renderQuad(topLeft, bottomRight, rectangleColor);
|
||||
} else {
|
||||
if (getIsDashedLine()) {
|
||||
|
||||
glm::vec3 point1(-halfDimensions.x, -halfDimensions.y, 0.0f);
|
||||
glm::vec3 point2(halfDimensions.x, -halfDimensions.y, 0.0f);
|
||||
glm::vec3 point3(halfDimensions.x, halfDimensions.y, 0.0f);
|
||||
glm::vec3 point4(-halfDimensions.x, halfDimensions.y, 0.0f);
|
||||
|
||||
geometryCache->renderDashedLine(point1, point2, rectangleColor);
|
||||
geometryCache->renderDashedLine(point2, point3, rectangleColor);
|
||||
geometryCache->renderDashedLine(point3, point4, rectangleColor);
|
||||
geometryCache->renderDashedLine(point4, point1, rectangleColor);
|
||||
|
||||
} else {
|
||||
|
||||
if (halfDimensions != _previousHalfDimensions) {
|
||||
QVector<glm::vec3> border;
|
||||
border << glm::vec3(-halfDimensions.x, -halfDimensions.y, 0.0f);
|
||||
border << glm::vec3(halfDimensions.x, -halfDimensions.y, 0.0f);
|
||||
border << glm::vec3(halfDimensions.x, halfDimensions.y, 0.0f);
|
||||
border << glm::vec3(-halfDimensions.x, halfDimensions.y, 0.0f);
|
||||
border << glm::vec3(-halfDimensions.x, -halfDimensions.y, 0.0f);
|
||||
geometryCache->updateVertices(_geometryCacheID, border, rectangleColor);
|
||||
|
||||
_previousHalfDimensions = halfDimensions;
|
||||
|
||||
}
|
||||
geometryCache->renderVertices(gpu::LINE_STRIP, _geometryCacheID);
|
||||
}
|
||||
}
|
||||
|
||||
glPopMatrix();
|
||||
glPopMatrix();
|
||||
glPopMatrix();
|
||||
|
||||
if (glower) {
|
||||
delete glower;
|
||||
|
||||
if (glower) {
|
||||
delete glower;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
|
|
|
@ -39,33 +39,45 @@ void Sphere3DOverlay::render(RenderArgs* args) {
|
|||
const float MAX_COLOR = 255.0f;
|
||||
glm::vec4 sphereColor(color.red / MAX_COLOR, color.green / MAX_COLOR, color.blue / MAX_COLOR, alpha);
|
||||
|
||||
glDisable(GL_LIGHTING);
|
||||
|
||||
glm::vec3 position = getPosition();
|
||||
glm::vec3 center = getCenter();
|
||||
glm::vec3 dimensions = getDimensions();
|
||||
glm::quat rotation = getRotation();
|
||||
auto batch = args->_batch;
|
||||
|
||||
float glowLevel = getGlowLevel();
|
||||
Glower* glower = NULL;
|
||||
if (glowLevel > 0.0f) {
|
||||
glower = new Glower(glowLevel);
|
||||
}
|
||||
if (batch) {
|
||||
Transform transform;
|
||||
transform.setTranslation(_position);
|
||||
transform.setRotation(_rotation);
|
||||
transform.setScale(_dimensions);
|
||||
|
||||
batch->setModelTransform(transform);
|
||||
DependencyManager::get<GeometryCache>()->renderSphere(*batch, 1.0f, SLICES, SLICES, sphereColor, _isSolid);
|
||||
} else {
|
||||
glDisable(GL_LIGHTING);
|
||||
|
||||
glm::vec3 position = getPosition();
|
||||
glm::vec3 center = getCenter();
|
||||
glm::vec3 dimensions = getDimensions();
|
||||
glm::quat rotation = getRotation();
|
||||
|
||||
float glowLevel = getGlowLevel();
|
||||
Glower* glower = NULL;
|
||||
if (glowLevel > 0.0f) {
|
||||
glower = new Glower(glowLevel);
|
||||
}
|
||||
|
||||
glPushMatrix();
|
||||
glTranslatef(position.x, position.y, position.z);
|
||||
glm::vec3 axis = glm::axis(rotation);
|
||||
glRotatef(glm::degrees(glm::angle(rotation)), axis.x, axis.y, axis.z);
|
||||
glPushMatrix();
|
||||
glm::vec3 positionToCenter = center - position;
|
||||
glTranslatef(positionToCenter.x, positionToCenter.y, positionToCenter.z);
|
||||
glScalef(dimensions.x, dimensions.y, dimensions.z);
|
||||
DependencyManager::get<GeometryCache>()->renderSphere(1.0f, SLICES, SLICES, sphereColor, _isSolid);
|
||||
glTranslatef(position.x, position.y, position.z);
|
||||
glm::vec3 axis = glm::axis(rotation);
|
||||
glRotatef(glm::degrees(glm::angle(rotation)), axis.x, axis.y, axis.z);
|
||||
glPushMatrix();
|
||||
glm::vec3 positionToCenter = center - position;
|
||||
glTranslatef(positionToCenter.x, positionToCenter.y, positionToCenter.z);
|
||||
glScalef(dimensions.x, dimensions.y, dimensions.z);
|
||||
DependencyManager::get<GeometryCache>()->renderSphere(1.0f, SLICES, SLICES, sphereColor, _isSolid);
|
||||
glPopMatrix();
|
||||
glPopMatrix();
|
||||
glPopMatrix();
|
||||
|
||||
if (glower) {
|
||||
delete glower;
|
||||
|
||||
if (glower) {
|
||||
delete glower;
|
||||
}
|
||||
}
|
||||
|
||||
}
|
||||
|
|
Loading…
Reference in a new issue