Update camera projection matrix handling
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@@ -97,9 +97,7 @@ namespace OpenVulkano::Scene
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void UpdateViewProjectionMatrix()
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{
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//TODO this should be done based on the clipspace used by the rendering api
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// In vulkan the screen space is defined as y=0=top and y=1=bottom and thus the coordinate have to be flipped
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m_viewProjection = m_projection * Math::Matrix4f(1, 0, 0, 0, 0, -1, 0, 0, 0, 0, 1, 0, 0, 0, 0, 1) * m_view;
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m_viewProjection = m_projection * m_view;
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}
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void UpdateWorldMatrix(const Math::Matrix4f& parentWorldMat) override
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@@ -115,6 +113,14 @@ namespace OpenVulkano::Scene
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SetMatrix(Math::Utils::inverse(view));
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}
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void SetProjectionMatrix(const Math::Matrix4f& projection)
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{
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//TODO this should be done based on the clipspace used by the rendering api
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// In vulkan the screen space is defined as y=0=top and y=1=bottom and thus the coordinate have to be flipped
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m_projection = projection * Math::Matrix4f(1, 0, 0, 0, 0, -1, 0, 0, 0, 0, 1, 0, 0, 0, 0, 1);
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UpdateViewProjectionMatrix();
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}
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[[nodiscard]] const Math::Matrix4f& GetViewProjectionMatrix() const
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{
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return m_viewProjection;
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@@ -251,8 +257,7 @@ namespace OpenVulkano::Scene
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void UpdateProjectionMatrix() override
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{
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m_projection = Math::Utils::perspectiveRH_ZO(m_fov, m_aspect, m_nearPlane, m_farPlane);
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UpdateViewProjectionMatrix();
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SetProjectionMatrix(Math::Utils::perspectiveRH_ZO(m_fov, m_aspect, m_nearPlane, m_farPlane));
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}
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[[nodiscard]] bool IsPerspective() const override { return true; }
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@@ -265,11 +270,9 @@ namespace OpenVulkano::Scene
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{
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const float scale = 0.5f * m_contentScaleFactor * m_zoom;
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const float widthHalf = m_width * scale, heightHalf = m_height * scale;
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m_projection = Math::Utils::orthoRH_ZO(-widthHalf, widthHalf, -heightHalf, heightHalf, m_nearPlane, m_farPlane);
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UpdateViewProjectionMatrix();
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SetProjectionMatrix(Math::Utils::orthoRH_ZO(-widthHalf, widthHalf, -heightHalf, heightHalf, m_nearPlane, m_farPlane));
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}
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[[nodiscard]] bool IsOrtho() const override { return true; }
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};
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}
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@@ -22,21 +22,21 @@ namespace OpenVulkano::Scene
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}
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void MorphableCamera::UpdateProjectionMatrix()
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{
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PerspectiveCamera::UpdateProjectionMatrix();
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if (m_morphState == 0) PerspectiveCamera::UpdateProjectionMatrix();
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if (m_morphState != 0)
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{
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const float scale = 0.5f * m_contentScaleFactor * m_zoom;
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const float widthHalf = m_width * scale, heightHalf = m_height * scale;
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m_orthoMatrix = Math::Utils::orthoRH_ZO(-widthHalf, widthHalf, -heightHalf, heightHalf, m_nearPlane, m_farPlane);
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Math::Matrix4f orthoMatrix = Math::Utils::orthoRH_ZO(-widthHalf, widthHalf, -heightHalf, heightHalf, m_nearPlane, m_farPlane);
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if (m_morphState == 1)
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{
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m_projection = m_orthoMatrix;
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SetProjectionMatrix(orthoMatrix);
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}
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else
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{
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m_projection = BlendMatrices(m_projection, m_orthoMatrix, m_morphState);
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Math::Matrix4f projection = Math::Utils::perspectiveRH_ZO(m_fov, m_aspect, m_nearPlane, m_farPlane);
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SetProjectionMatrix(BlendMatrices(projection, orthoMatrix, m_morphState));
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}
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UpdateViewProjectionMatrix();
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}
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}
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}
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}
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@@ -13,7 +13,6 @@ namespace OpenVulkano::Scene
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class MorphableCamera : public PerspectiveCamera
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{
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float m_morphState;
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Math::Matrix4f m_orthoMatrix;
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public:
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MorphableCamera(float fovDegrees, float nearPlane = 0.1f, float farPlane = 1000.0f, float width = 16, float height = 9)
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@@ -33,4 +32,4 @@ namespace OpenVulkano::Scene
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[[nodiscard]] bool IsPerspective() const override { return m_morphState == 0; }
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[[nodiscard]] bool IsOrtho() const override { return m_morphState == 1; }
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};
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}
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}
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