Add p_use_model_front to Basis::looking_at()
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6facde3c29
commit
02fd535454
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@ -224,7 +224,7 @@ struct _NO_DISCARD_ Basis {
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operator Quaternion() const { return get_quaternion(); }
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static Basis looking_at(const Vector3 &p_target, const Vector3 &p_up = Vector3(0, 1, 0));
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static Basis looking_at(const Vector3 &p_target, const Vector3 &p_up = Vector3(0, 1, 0), bool p_use_model_front = false);
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Basis(const Quaternion &p_quaternion) { set_quaternion(p_quaternion); }
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Basis(const Quaternion &p_quaternion, const Vector3 &p_scale) { set_quaternion_scale(p_quaternion, p_scale); }
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@ -1037,12 +1037,15 @@ void Basis::rotate_sh(real_t *p_values) {
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p_values[8] = d4 * s_scale_dst4;
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}
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Basis Basis::looking_at(const Vector3 &p_target, const Vector3 &p_up) {
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Basis Basis::looking_at(const Vector3 &p_target, const Vector3 &p_up, bool p_use_model_front) {
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#ifdef MATH_CHECKS
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ERR_FAIL_COND_V_MSG(p_target.is_zero_approx(), Basis(), "The target vector can't be zero.");
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ERR_FAIL_COND_V_MSG(p_up.is_zero_approx(), Basis(), "The up vector can't be zero.");
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#endif
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Vector3 v_z = -p_target.normalized();
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Vector3 v_z = p_target.normalized();
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if (!p_use_model_front) {
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v_z = -v_z;
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}
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Vector3 v_x = p_up.cross(v_z);
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#ifdef MATH_CHECKS
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ERR_FAIL_COND_V_MSG(v_x.is_zero_approx(), Basis(), "The target vector and up vector can't be parallel to each other.");
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