281 lines
5.6 KiB
C++
281 lines
5.6 KiB
C++
/*
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* Copyright 2013 Dario Manesku. All rights reserved.
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* License: http://www.opensource.org/licenses/BSD-2-Clause
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*/
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#include <bx/timer.h>
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#include <bx/fpumath.h>
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#include "camera.h"
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#include "entry/cmd.h"
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#include "entry/input.h"
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int cmdMove(CmdContext* /*_context*/, void* /*_userData*/, int _argc, char const* const* _argv)
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{
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if (_argc > 1)
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{
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if (0 == strcmp(_argv[1], "forward") )
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{
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cameraSetKeyState(CAMERA_KEY_UP, true);
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return 0;
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}
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else if (0 == strcmp(_argv[1], "left") )
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{
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cameraSetKeyState(CAMERA_KEY_LEFT, true);
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return 0;
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}
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else if (0 == strcmp(_argv[1], "right") )
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{
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cameraSetKeyState(CAMERA_KEY_RIGHT, true);
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return 0;
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}
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else if (0 == strcmp(_argv[1], "backward") )
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{
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cameraSetKeyState(CAMERA_KEY_DOWN, true);
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return 0;
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}
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}
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return 1;
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}
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static void cmd(const void* _userData)
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{
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cmdExec( (const char*)_userData);
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}
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static const InputBinding s_camBindings[] =
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{
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{ entry::Key::KeyW, entry::Modifier::None, 0, cmd, "move forward" },
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{ entry::Key::KeyA, entry::Modifier::None, 0, cmd, "move left" },
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{ entry::Key::KeyS, entry::Modifier::None, 0, cmd, "move backward" },
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{ entry::Key::KeyD, entry::Modifier::None, 0, cmd, "move right" },
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INPUT_BINDING_END
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};
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struct Camera
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{
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struct MouseCoords
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{
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int32_t m_mx;
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int32_t m_my;
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};
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Camera()
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{
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reset();
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update(0.0f, 0, 0, false);
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cmdAdd("move", cmdMove);
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inputAddBindings("camBindings", s_camBindings);
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}
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~Camera()
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{
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inputRemoveBindings("camBindings");
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}
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void reset()
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{
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m_mouseNow.m_mx = 0;
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m_mouseNow.m_my = 0;
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m_mouseLast.m_mx = 0;
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m_mouseLast.m_my = 0;
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m_eye[0] = 0.0f;
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m_eye[1] = 0.0f;
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m_eye[2] = -35.0f;
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m_at[0] = 0.0f;
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m_at[1] = 0.0f;
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m_at[2] = -1.0f;
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m_up[0] = 0.0f;
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m_up[1] = 1.0f;
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m_up[2] = 0.0f;
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m_horizontalAngle = 0.01f;
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m_verticalAngle = 0.0f;
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m_mouseSpeed = 0.0020f;
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m_moveSpeed = 30.0f;
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m_keys = 0;
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m_mouseDown = false;
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}
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void setKeyState(uint8_t _key, bool _down)
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{
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m_keys &= ~_key;
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m_keys |= _down ? _key : 0;
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}
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void update(float _deltaTime, uint32_t _mx, uint32_t _my, bool _move)
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{
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if (!m_mouseDown)
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{
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m_mouseLast.m_mx = _mx;
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m_mouseLast.m_my = _my;
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}
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m_mouseDown = _move;
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if (_move)
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{
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m_mouseNow.m_mx = _mx;
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m_mouseNow.m_my = _my;
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}
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if (m_mouseDown)
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{
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int32_t deltaX = m_mouseNow.m_mx - m_mouseLast.m_mx;
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int32_t deltaY = m_mouseNow.m_my - m_mouseLast.m_my;
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m_horizontalAngle += m_mouseSpeed * float(deltaX);
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m_verticalAngle -= m_mouseSpeed * float(deltaY);
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m_mouseLast.m_mx = m_mouseNow.m_mx;
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m_mouseLast.m_my = m_mouseNow.m_my;
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}
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float direction[3] =
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{
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cosf(m_verticalAngle) * sinf(m_horizontalAngle),
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sinf(m_verticalAngle),
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cosf(m_verticalAngle) * cosf(m_horizontalAngle),
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};
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float right[3] =
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{
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sinf(m_horizontalAngle - bx::piHalf),
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0,
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cosf(m_horizontalAngle - bx::piHalf),
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};
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if (m_keys & CAMERA_KEY_UP)
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{
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// m_eye += direction * _deltaTime * m_moveSpeed
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float tmpRhs[3];
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float tmpPos[3];
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memcpy(tmpPos, m_eye, sizeof(float)*3);
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bx::vec3Mul(tmpRhs, direction, _deltaTime * m_moveSpeed);
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bx::vec3Add(m_eye, tmpPos, tmpRhs);
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setKeyState(CAMERA_KEY_UP, false);
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}
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if (m_keys & CAMERA_KEY_DOWN)
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{
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// m_eye -= direction * _deltaTime * m_moveSpeed
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float tmpRhs[3];
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float tmpPos[3];
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memcpy(tmpPos, m_eye, sizeof(float)*3);
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bx::vec3Mul(tmpRhs, direction, _deltaTime * m_moveSpeed);
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bx::vec3Sub(m_eye, tmpPos, tmpRhs);
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setKeyState(CAMERA_KEY_DOWN, false);
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}
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if (m_keys & CAMERA_KEY_LEFT)
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{
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// m_eye += right * _deltaTime * m_moveSpeed
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float tmpRhs[3];
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float tmpPos[3];
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memcpy(tmpPos, m_eye, sizeof(float)*3);
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bx::vec3Mul(tmpRhs, right, _deltaTime * m_moveSpeed);
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bx::vec3Add(m_eye, tmpPos, tmpRhs);
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setKeyState(CAMERA_KEY_LEFT, false);
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}
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if (m_keys & CAMERA_KEY_RIGHT)
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{
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// m_eye -= right * _deltaTime * m_moveSpeed
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float tmpRhs[3];
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float tmpPos[3];
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memcpy(tmpPos, m_eye, sizeof(float)*3);
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bx::vec3Mul(tmpRhs, right, _deltaTime * m_moveSpeed);
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bx::vec3Sub(m_eye, tmpPos, tmpRhs);
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setKeyState(CAMERA_KEY_RIGHT, false);
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}
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bx::vec3Add(m_at, m_eye, direction);
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bx::vec3Cross(m_up, right, direction);
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}
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void getViewMtx(float* _viewMtx)
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{
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bx::mtxLookAt(_viewMtx, m_eye, m_at, m_up);
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}
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void setPosition(float* _pos)
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{
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memcpy(m_eye, _pos, sizeof(float)*3);
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}
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void setVerticalAngle(float _verticalAngle)
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{
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m_verticalAngle = _verticalAngle;
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}
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void setHorizontalAngle(float _horizontalAngle)
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{
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m_horizontalAngle = _horizontalAngle;
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}
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MouseCoords m_mouseNow, m_mouseLast;
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float m_eye[3];
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float m_at[3];
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float m_up[3];
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float m_horizontalAngle;
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float m_verticalAngle;
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float m_mouseSpeed;
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float m_moveSpeed;
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uint8_t m_keys;
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bool m_mouseDown;
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};
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static Camera* s_camera = NULL;
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void cameraCreate()
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{
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s_camera = new Camera;
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}
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void cameraDestroy()
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{
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delete s_camera;
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s_camera = NULL;
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}
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void cameraSetPosition(float* _pos)
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{
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s_camera->setPosition(_pos);
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}
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void cameraSetHorizontalAngle(float _horizontalAngle)
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{
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s_camera->setHorizontalAngle(_horizontalAngle);
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}
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void cameraSetVerticalAngle(float _verticalAngle)
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{
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s_camera->setVerticalAngle(_verticalAngle);
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}
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void cameraSetKeyState(uint8_t _key, bool _down)
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{
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s_camera->setKeyState(_key, _down);
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}
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void cameraGetViewMtx(float* _viewMtx)
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{
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s_camera->getViewMtx(_viewMtx);
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}
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void cameraGetPosition(float* _pos)
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{
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memcpy(_pos, s_camera->m_eye, 3*sizeof(float));
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}
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void cameraGetAt(float* _at)
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{
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memcpy(_at, s_camera->m_at, 3*sizeof(float));
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}
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void cameraUpdate(float _deltaTime, uint32_t _mx, uint32_t _my, bool _move)
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{
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s_camera->update(_deltaTime, _mx, _my, _move);
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}
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