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sprite.lisp
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sprite.lisp
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(in-package #:org.shirakumo.fraf.trial)
(defclass sprite-frame ()
((xy :initarg :xy :initform (error "XY required") :accessor xy)
(uv :initarg :uv :initform (error "UV required") :accessor uv)
(duration :initarg :duration :initform 0.1 :accessor duration)))
(defclass sprite-animation ()
((name :initarg :name :initform (error "NAME required") :reader name)
(start :initarg :start :initform (error "START required") :accessor start)
(end :initarg :end :initform (error "END required") :accessor end)
(next-animation :initarg :next-animation :initform NIL :accessor next-animation)
(loop-to :initarg :loop-to :initform NIL :accessor loop-to)))
(defmethod initialize-instance :after ((animation sprite-animation) &key)
(unless (next-animation animation)
(setf (next-animation animation) (name animation)))
(unless (loop-to animation)
(setf (loop-to animation) (start animation))))
(defmethod print-object ((animation sprite-animation) stream)
(print-unreadable-object (animation stream :type T)
(format stream "~s" (name animation))))
(define-shader-entity sprite-entity (vertex-entity textured-entity)
((frame-idx :initarg :frame-idx :initform 0 :accessor frame-idx)
(frames :initarg :frames :initform #() :accessor frames)
(vertex-array :initform NIL)))
(defun make-sprite-frame-mesh (frames)
(with-mesh-construction (v finalize (location uv))
(loop for frame across frames
for xy = (xy frame)
for uv = (uv frame)
do (v (- (vx xy) (vz xy)) (- (vy xy) (vw xy)) 0 (vx uv) (vy uv))
(v (+ (vx xy) (vz xy)) (- (vy xy) (vw xy)) 0 (vz uv) (vy uv))
(v (- (vx xy) (vz xy)) (+ (vy xy) (vw xy)) 0 (vx uv) (vw uv))
(v (+ (vx xy) (vz xy)) (+ (vy xy) (vw xy)) 0 (vz uv) (vw uv)))
(finalize-data)))
(defmethod frame ((entity sprite-entity))
(aref (frames entity) (frame-idx entity)))
(defmethod (setf frame) ((idx integer) (entity sprite-entity))
(setf (frame-idx entity) idx))
(defmethod (setf frame) ((frame sprite-frame) (entity sprite-entity))
(setf (frame-idx entity) (or (position frame (frames entity))
(error "The frame~% ~a~%is not part of the sprite-entity." frame))))
(defmethod render ((entity sprite-entity) (program shader-program))
(declare (optimize speed))
(setf (uniform program "model_matrix") (model-matrix))
(setf (uniform program "view_matrix") (view-matrix))
(setf (uniform program "projection_matrix") (projection-matrix))
(render-array (vertex-array entity) :vertex-start (* 4 (the (unsigned-byte 32) (frame-idx entity)))
:vertex-count 4
:vertex-form :triangle-strip))
(define-shader-entity animated-sprite (listener sprite-entity)
((clock :initform 0f0 :accessor clock)
(animations :initform #() :accessor animations)
(animation :initform NIL :accessor animation)
(playback-speed :initarg :playback-speed :initform 1.0 :accessor playback-speed)
(playback-direction :initarg :playback-direction :initform +1 :accessor playback-direction)
(sprite-data :initarg :sprite-data :initform NIL :accessor sprite-data)))
(defmethod initialize-instance :after ((sprite animated-sprite) &key)
(let ((sprite-data (sprite-data sprite)))
(when sprite-data
(setf (sprite-data sprite) sprite-data))))
(defmethod (setf sprite-data) :after ((data sprite-data) (sprite animated-sprite))
(setf (texture sprite) (resource data 'texture))
(setf (vertex-array sprite) (resource data 'vertex-array))
(when (loaded-p data)
(setf (frames sprite) (frames data))
(setf (animations sprite) (animations data))
(unless (animation sprite)
(setf (animation sprite) 0))))
(defmethod stage :before ((sprite animated-sprite) (area staging-area))
(register-load-observer area sprite (sprite-data sprite)))
(defmethod observe-load-state ((sprite animated-sprite) (data sprite-data) (state (eql :loaded)) (area staging-area))
(setf (frames sprite) (frames data))
(setf (animations sprite) (animations data))
(unless (animation sprite)
(setf (animation sprite) 0)))
(defmethod reset-animation ((sprite animated-sprite))
(setf (clock sprite) 0.0f0)
(ecase (playback-direction sprite)
(+1 (setf (frame sprite) (start (animation sprite))))
(-1 (setf (frame sprite) (1- (end (animation sprite)))))))
(defmethod find-animation (name (sprite animated-sprite) &optional (errorp T))
(or (find name (animations sprite) :key #'name)
(when errorp (error "No animation named ~s found." name))))
(defmethod (setf animation) ((animation sprite-animation) (sprite animated-sprite))
(unless (eql animation (animation sprite))
(call-next-method)
(reset-animation sprite)
animation))
(defmethod (setf animation) ((index integer) (sprite animated-sprite))
(setf (animation sprite) (aref (animations sprite) index)))
(defmethod (setf animation) ((name symbol) (sprite animated-sprite))
(let ((animation (animation sprite)))
(unless (and animation (eql name (name animation)))
(let ((animation (find name (animations sprite) :key #'name)))
(if animation
(setf (animation sprite) animation)
#-trial-release
(with-simple-restart (continue "Ignore the animation")
(error "No animation named ~s found." name)))))))
(defmethod (setf animations) :after (animations (sprite animated-sprite))
(setf (animation sprite) 0))
(defmethod play (animation (sprite animated-sprite))
(when (setf (animation sprite) animation)
(setf (playback-speed sprite) 1.0)
(setf (playback-direction sprite) +1)))
(defmethod switch-animation ((sprite animated-sprite) animation)
(setf (playback-speed sprite) 1.0)
(setf (playback-direction sprite) +1)
(setf (clock sprite) 0.0f0)
(setf (animation sprite) animation))
(defmethod handle ((ev tick) (sprite animated-sprite))
(declare (optimize speed))
(let* ((idx (frame-idx sprite))
(frame (svref (frames sprite) idx))
(animation (animation sprite))
(clock (clock sprite))
(duration (duration frame))
(end (end animation)))
(declare (type (unsigned-byte 32) idx end))
(declare (type single-float clock duration))
(incf clock (* (the single-float (playback-speed sprite))
(the single-float (dt ev))))
(when (<= duration clock)
(decf clock duration)
(incf idx (the (member +1 -1) (playback-direction sprite))))
(setf (clock sprite) clock)
(cond ((<= end idx)
(let ((next (next-animation animation)))
(cond ((eq next (name animation))
(setf (frame-idx sprite) (loop-to animation)))
(T
(switch-animation sprite next)))))
((< idx (the (unsigned-byte 32) (start animation)))
(let ((next (next-animation animation)))
(cond ((eq next (name animation))
(setf (frame-idx sprite) (1- end)))
(T
(switch-animation sprite next)))))
(T
(setf (frame-idx sprite) idx)))))