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bb3848262d
* ActorMove -> ActorMovement * more move -> movement * ANIM_FLAG_ENABLE_MOVEMENT * format
433 lines
19 KiB
C
433 lines
19 KiB
C
#ifndef Z64_ANIMATION_H
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#define Z64_ANIMATION_H
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#include "ultra64.h"
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#include "z64dma.h"
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#include "z64math.h"
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#include "macros.h"
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struct PlayState;
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struct Actor;
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struct SkelAnime;
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/*
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* Skeletons and limbs
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*/
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#define LIMB_DONE 0xFF
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typedef struct StandardLimb {
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/* 0x00 */ Vec3s jointPos; // Root is position in model space, children are relative to parent
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/* 0x06 */ u8 child;
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/* 0x07 */ u8 sibling;
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/* 0x08 */ Gfx* dList;
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} StandardLimb; // size = 0xC
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typedef struct LodLimb {
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/* 0x00 */ Vec3s jointPos; // Root is position in model space, children are relative to parent
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/* 0x06 */ u8 child;
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/* 0x07 */ u8 sibling;
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/* 0x08 */ Gfx* dLists[2]; // Near and far
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} LodLimb; // size = 0x10
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// Model has limbs with only rigid meshes
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typedef struct SkeletonHeader {
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/* 0x00 */ void** segment;
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/* 0x04 */ u8 limbCount;
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} SkeletonHeader; // size = 0x8
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// Model has limbs with flexible meshes
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typedef struct FlexSkeletonHeader {
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/* 0x00 */ SkeletonHeader sh;
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/* 0x08 */ u8 dListCount;
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} FlexSkeletonHeader; // size = 0xC
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/*
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* Animations
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*/
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// Index into the frame data table.
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typedef struct JointIndex {
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/* 0x00 */ u16 x;
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/* 0x02 */ u16 y;
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/* 0x04 */ u16 z;
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} JointIndex; // size = 0x06
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typedef struct AnimationHeaderCommon {
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/* 0x00 */ s16 frameCount;
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} AnimationHeaderCommon;
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typedef struct LinkAnimationHeader {
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/* 0x00 */ AnimationHeaderCommon common;
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/* 0x04 */ void* segment;
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} LinkAnimationHeader; // size = 0x8
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typedef struct AnimationHeader {
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/* 0x00 */ AnimationHeaderCommon common;
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/* 0x04 */ s16* frameData; // "tbl"
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/* 0x08 */ JointIndex* jointIndices; // "ref_tbl"
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/* 0x0C */ u16 staticIndexMax;
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} AnimationHeader; // size = 0x10
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/*
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* SkelAnime
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*/
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typedef enum AnimationMode {
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/* 0 */ ANIMMODE_LOOP,
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/* 1 */ ANIMMODE_LOOP_INTERP,
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/* 2 */ ANIMMODE_ONCE,
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/* 3 */ ANIMMODE_ONCE_INTERP,
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/* 4 */ ANIMMODE_LOOP_PARTIAL,
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/* 5 */ ANIMMODE_LOOP_PARTIAL_INTERP
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} AnimationMode;
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typedef enum AnimationTapers {
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/* -1 */ ANIMTAPER_DECEL = -1,
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/* 0 */ ANIMTAPER_NONE,
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/* 1 */ ANIMTAPER_ACCEL
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} AnimationTapers;
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// This flag seems like it was intended to be paired with `ANIM_FLAG_UPDATE_Y` to control
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// XZ movement based on the current animation.
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// However, this flag is not checked by the Skelanime system. XZ movement will always occur
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// regardless of the current state of this flag, as long as the ActorMovement Anim Task is in use.
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// The name of this flag is speculative based on its usage in Player and in other actors.
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//
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// In practice, this flag only affects the scaling of Player's XZ position based on age.
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#define ANIM_FLAG_UPDATE_XZ (1 << 0)
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// Enables the movement of an actor in the Y-axis based on the current animation.
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// This only has an effect if the ActorMovement Anim Task is in use.
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//
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// This animation-driven movement does not replace "normal" movement from other sources
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// such as speed/velocity and collisions. The actor should stop updating other sources of movement
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// as required if they are preventing the animation from playing as intended.
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// An option is to implement and use `ANIM_FLAG_OVERRIDE_MOVEMENT`.
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#define ANIM_FLAG_UPDATE_Y (1 << 1)
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// When this flag is set, Player's root limb position adjustment as child is disabled.
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// Many of Player's animations are originally created for Adult Link. When playing those
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// animations as Child Link without any adjustment, he will appear to be floating in the air.
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// To fix this, Child Link's root position is scaled down by default to fit his smaller size.
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// However, if an animation is created specifically for Child Link, it is desirable to disable
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// this scaling of the root position by using this flag.
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// Note that this flag will be ignored if `ANIM_FLAG_UPDATE_XZ` or `ANIM_FLAG_UPDATE_Y` are also
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// set. The adjustment will be applied in this case regardless of this flag being enabled.
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#define ANIM_FLAG_DISABLE_CHILD_ROOT_ADJUSTMENT (1 << 2)
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// When this flag is set, ActorMovement tasks will be queued.
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//
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// Note that individual actors are responsible for implementing the functionality of this flag.
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// In practice, Player is the only actor who implements this flag.
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// It is possible to bypass the need for this flag by manually calling `AnimTaskQueue_AddActorMovement`
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// when it is needed.
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#define ANIM_FLAG_ENABLE_MOVEMENT (1 << 3)
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// When this flag is set, movement in all axes will not be applied for one frame. The flag
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// is unset automatically after one use, so movement can resume. The intent is for this flag to be used
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// when changing between two different animations.
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// In some contexts, disabling the first frame of movement is necessary for a seamless transition.
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//
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// Depending on specific implementations, an actor may choose to reset `prevTransl` to `baseTransl` when
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// starting a new animation. This is helpful when an animation's translation data starts at the "origin"
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// (in this case, the origin refers to `baseTransl`, in model space).
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// Some animations have translation data that does not begin at the "origin". This is common when a
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// longer sequence of animation is broken up into different parts as seperate animations.
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// In this case, when one animation starts its translation at the same position where a different animation
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// left off, resetting `prevTransl` is not desirable. This will cause the actor's position to noticeably change
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// when the translation data from the first frame of the new animation is applied.
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//
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// When this flag is used during a transition between two animations, the first frame of movement is not applied.
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// This allows the actor's world postiion to stay at the same location as where the previous animation ended.
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// Because translations are calculated as a difference from the current and previous frame, all subsequent
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// frames have their translation occur relative to this new starting point.
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//
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// Note that for Player, this flag is only relevant when transitioning from an animation that was also using
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// ActorMovement. This is because of how `prevTransl` gets reset in `Player_AnimReplaceApplyFlags`.
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#define ANIM_FLAG_ADJUST_STARTING_POS (1 << 4)
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// Disables "normal" movement from sources like speed/velocity and collisions, which allows the
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// animation to have full control over the actor's movement.
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//
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// Note that individual actors are responsible for implementing the functionality of this flag.
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// In practice, Player is the only actor who implements this flag.
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#define ANIM_FLAG_OVERRIDE_MOVEMENT (1 << 7)
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typedef struct SkelAnime {
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/* 0x00 */ u8 limbCount; // Number of limbs in the skeleton
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/* 0x01 */ u8 mode; // See `AnimationMode`
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/* 0x02 */ u8 dListCount; // Number of display lists in a flexible skeleton
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/* 0x03 */ s8 taper; // Tapering to use when morphing between animations. Only used by Door_Warp1.
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/* 0x04 */ void** skeleton; // An array of pointers to limbs. Can be StandardLimb, LodLimb, or SkinLimb.
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/* 0x08 */ void* animation; // Can be an AnimationHeader or LinkAnimationHeader.
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/* 0x0C */ f32 startFrame; // In mode ANIMMODE_LOOP_PARTIAL*, start of partial loop.
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/* 0x10 */ f32 endFrame; // In mode ANIMMODE_ONCE*, Update returns true when curFrame is equal to this. In mode ANIMMODE_LOOP_PARTIAL*, end of partial loop.
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/* 0x14 */ f32 animLength; // Total number of frames in the current animation.
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/* 0x18 */ f32 curFrame; // Current frame in the animation
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/* 0x1C */ f32 playSpeed; // Multiplied by R_UPDATE_RATE / 3 to get the animation's frame rate.
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/* 0x20 */ Vec3s* jointTable; // Current translation of model and rotations of all limbs
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/* 0x24 */ Vec3s* morphTable; // Table of values used to morph between animations
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/* 0x28 */ f32 morphWeight; // Weight of the current animation morph as a fraction in [0,1]
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/* 0x2C */ f32 morphRate; // Reciprocal of the number of frames in the morph
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/* 0x30 */ union {
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s32 (*normal)(struct SkelAnime*); // Can be Loop, Partial loop, Play once, Morph, or Tapered morph
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s32 (*link)(struct PlayState*, struct SkelAnime*); // Can be Loop, Play once, or Morph
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} update;
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/* 0x34 */ s8 initFlags; // Flags used when initializing Link's skeleton
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/* 0x35 */ u8 movementFlags; // Flags used for animations that move the actor in worldspace.
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/* 0x36 */ s16 prevRot; // Previous rotation in worldspace.
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/* 0x38 */ Vec3s prevTransl; // Previous modelspace translation.
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/* 0x3E */ Vec3s baseTransl; // Base modelspace translation.
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} SkelAnime; // size = 0x44
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// Init
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BAD_RETURN(s32) SkelAnime_Init(struct PlayState* play, SkelAnime* skelAnime, SkeletonHeader* skeletonHeaderSeg,
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AnimationHeader* animation, Vec3s* jointTable, Vec3s* morphTable, s32 limbCount);
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BAD_RETURN(s32) SkelAnime_InitFlex(struct PlayState* play, SkelAnime* skelAnime, FlexSkeletonHeader* skeletonHeaderSeg,
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AnimationHeader* animation, Vec3s* jointTable, Vec3s* morphTable, s32 limbCount);
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BAD_RETURN(s32) SkelAnime_InitSkin(struct PlayState* play, SkelAnime* skelAnime, SkeletonHeader* skeletonHeaderSeg,
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AnimationHeader* animation);
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void SkelAnime_InitLink(struct PlayState* play, SkelAnime* skelAnime, FlexSkeletonHeader* skeletonHeaderSeg,
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LinkAnimationHeader* animation, s32 flags, Vec3s* jointTable, Vec3s* morphTable,
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s32 limbBufCount);
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// Free
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void SkelAnime_Free(SkelAnime* skelAnime, struct PlayState* play);
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// Update
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s32 SkelAnime_Update(SkelAnime* skelAnime);
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// Draw
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typedef s32 (*OverrideLimbDraw)(struct PlayState* play, s32 limbIndex, Gfx** dList, Vec3f* pos, Vec3s* rot, void*,
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Gfx** gfx);
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typedef void (*PostLimbDraw)(struct PlayState* play, s32 limbIndex, Gfx** dList, Vec3s* rot, void*, Gfx** gfx);
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typedef s32 (*OverrideLimbDrawOpa)(struct PlayState* play, s32 limbIndex, Gfx** dList, Vec3f* pos, Vec3s* rot, void*);
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typedef void (*PostLimbDrawOpa)(struct PlayState* play, s32 limbIndex, Gfx** dList, Vec3s* rot, void*);
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Gfx* SkelAnime_Draw(struct PlayState* play, void** skeleton, Vec3s* jointTable, OverrideLimbDraw overrideLimbDraw,
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PostLimbDraw postLimbDraw, void* arg, Gfx* gfx);
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void SkelAnime_DrawOpa(struct PlayState* play, void** skeleton, Vec3s* jointTable, OverrideLimbDrawOpa overrideLimbDraw,
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PostLimbDrawOpa postLimbDraw, void* arg);
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Gfx* SkelAnime_DrawFlex(struct PlayState* play, void** skeleton, Vec3s* jointTable, s32 dListCount,
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OverrideLimbDraw overrideLimbDraw, PostLimbDraw postLimbDraw, void* arg, Gfx* gfx);
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void SkelAnime_DrawFlexOpa(struct PlayState* play, void** skeleton, Vec3s* jointTable, s32 dListCount,
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OverrideLimbDrawOpa overrideLimbDraw, PostLimbDrawOpa postLimbDraw, void* arg);
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void SkelAnime_DrawLod(struct PlayState* play, void** skeleton, Vec3s* jointTable, OverrideLimbDrawOpa overrideLimbDraw,
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PostLimbDrawOpa postLimbDraw, void* arg, s32 lod);
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void SkelAnime_DrawFlexLod(struct PlayState* play, void** skeleton, Vec3s* jointTable, s32 dListCount,
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OverrideLimbDrawOpa overrideLimbDraw, PostLimbDrawOpa postLimbDraw, void* arg, s32 lod);
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// Misc. operations
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void SkelAnime_CopyFrameTable(SkelAnime* skelAnime, Vec3s* dst, Vec3s* src);
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void SkelAnime_CopyFrameTableTrue(SkelAnime* skelAnime, Vec3s* dst, Vec3s* src, u8* copyFlag);
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void SkelAnime_CopyFrameTableFalse(SkelAnime* skelAnime, Vec3s* dst, Vec3s* src, u8* copyFlag);
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void SkelAnime_InterpFrameTable(s32 limbCount, Vec3s* dst, Vec3s* start, Vec3s* target, f32 weight);
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void SkelAnime_UpdateTranslation(SkelAnime* skelAnime, Vec3f* diff, s16 angle);
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/*
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* Play animations
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*/
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void Animation_Change(SkelAnime* skelAnime, AnimationHeader* animation, f32 playSpeed, f32 startFrame, f32 endFrame,
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u8 mode, f32 morphFrames);
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void Animation_ChangeImpl(SkelAnime* skelAnime, AnimationHeader* animation, f32 playSpeed, f32 startFrame, f32 endFrame,
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u8 mode, f32 morphFrames, s8 taper);
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void Animation_PlayOnce(SkelAnime* skelAnime, AnimationHeader* animation);
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void Animation_PlayOnceSetSpeed(SkelAnime* skelAnime, AnimationHeader* animation, f32 playSpeed);
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void Animation_MorphToPlayOnce(SkelAnime* skelAnime, AnimationHeader* animation, f32 morphFrames);
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void Animation_PlayLoop(SkelAnime* skelAnime, AnimationHeader* animation);
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void Animation_PlayLoopSetSpeed(SkelAnime* skelAnime, AnimationHeader* animation, f32 playSpeed);
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void Animation_MorphToLoop(SkelAnime* skelAnime, AnimationHeader* animation, f32 morphFrames);
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void Animation_EndLoop(SkelAnime* skelAnime);
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void Animation_Reverse(SkelAnime* skelAnime);
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void Animation_SetMorph(struct PlayState* play, SkelAnime* skelAnime, f32 morphFrames);
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typedef struct AnimationInfo {
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/* 0x00 */ AnimationHeader* animation;
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/* 0x04 */ f32 playSpeed;
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/* 0x08 */ f32 startFrame;
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/* 0x0C */ f32 frameCount;
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/* 0x10 */ u8 mode;
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/* 0x14 */ f32 morphFrames;
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} AnimationInfo; // size = 0x18
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void Animation_ChangeByInfo(SkelAnime* skelAnime, AnimationInfo* animationInfo, s32 index);
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typedef struct AnimationFrameCountInfo {
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/* 0x00 */ AnimationHeader* animation;
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/* 0x04 */ f32 frameCount;
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/* 0x08 */ u8 mode;
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/* 0x0C */ f32 morphFrames;
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} AnimationFrameCountInfo; // size = 0x10
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typedef struct AnimationSpeedInfo {
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/* 0x00 */ AnimationHeader* animation;
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/* 0x04 */ f32 playSpeed;
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/* 0x08 */ u8 mode;
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/* 0x0C */ f32 morphFrames;
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} AnimationSpeedInfo; // size = 0x10
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typedef struct AnimationMinimalInfo {
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/* 0x00 */ AnimationHeader* animation;
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/* 0x04 */ u8 mode;
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/* 0x08 */ f32 morphFrames;
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} AnimationMinimalInfo; // size = 0xC
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/*
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* Animation helpers
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*/
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s32 Animation_OnFrame(SkelAnime* skelAnime, f32 frame);
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s16 Animation_GetLength(void* animation);
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s16 Animation_GetLastFrame(void* animation);
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/*
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* Animation Task Queue
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*/
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typedef enum AnimTaskType {
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/* 0 */ ANIMTASK_LOAD_PLAYER_FRAME,
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/* 1 */ ANIMTASK_COPY,
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/* 2 */ ANIMTASK_INTERP,
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/* 3 */ ANIMTASK_COPY_USING_MAP,
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/* 4 */ ANIMTASK_COPY_USING_MAP_INVERTED,
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/* 5 */ ANIMTASK_ACTOR_MOVE
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} AnimTaskType;
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typedef struct AnimTaskLoadPlayerFrame {
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/* 0x00 */ DmaRequest req;
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/* 0x20 */ OSMesgQueue msgQueue;
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/* 0x38 */ OSMesg msg;
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} AnimTaskLoadPlayerFrame; // size = 0x3C
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typedef struct AnimTaskCopy {
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/* 0x00 */ u8 group;
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/* 0x01 */ u8 vecCount;
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/* 0x04 */ Vec3s* dest;
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/* 0x08 */ Vec3s* src;
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} AnimTaskCopy; // size = 0xC
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typedef struct AnimTaskInterp {
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/* 0x00 */ u8 group;
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/* 0x01 */ u8 vecCount;
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/* 0x04 */ Vec3s* base;
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/* 0x08 */ Vec3s* mod;
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/* 0x0C */ f32 weight;
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} AnimTaskInterp; // size = 0x10
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typedef struct AnimTaskCopyUsingMap {
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/* 0x00 */ u8 group;
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/* 0x01 */ u8 vecCount;
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/* 0x04 */ Vec3s* dest;
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/* 0x08 */ Vec3s* src;
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/* 0x0C */ u8* limbCopyMap;
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} AnimTaskCopyUsingMap; // size = 0x10
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typedef struct AnimTaskCopyUsingMapInverted {
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/* 0x00 */ u8 group;
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/* 0x01 */ u8 vecCount;
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/* 0x04 */ Vec3s* dest;
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/* 0x08 */ Vec3s* src;
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/* 0x0C */ u8* limbCopyMap;
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} AnimTaskCopyUsingMapInverted; // size = 0x10
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typedef struct AnimTaskActorMovement {
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/* 0x00 */ struct Actor* actor;
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/* 0x04 */ struct SkelAnime* skelAnime;
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/* 0x08 */ f32 diffScaleY;
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} AnimTaskActorMovement; // size = 0xC
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typedef union AnimTaskData {
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AnimTaskLoadPlayerFrame loadPlayerFrame;
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AnimTaskCopy copy;
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AnimTaskInterp interp;
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AnimTaskCopyUsingMap copyUsingMap;
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AnimTaskCopyUsingMapInverted copyUsingMapInverted;
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AnimTaskActorMovement actorMovement;
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} AnimTaskData; // size = 0x3C
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typedef struct AnimTask {
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/* 0x00 */ u8 type;
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/* 0x04 */ AnimTaskData data;
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} AnimTask; // size = 0x40
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#define ANIM_TASK_QUEUE_MAX 50
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typedef struct AnimTaskQueue {
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s16 count;
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AnimTask tasks[ANIM_TASK_QUEUE_MAX];
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} AnimTaskQueue; // size = 0xC84
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void AnimTaskQueue_AddLoadPlayerFrame(struct PlayState* play, LinkAnimationHeader* animation, s32 frame, s32 limbCount,
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Vec3s* frameTable);
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void AnimTaskQueue_AddCopy(struct PlayState* play, s32 vecCount, Vec3s* dest, Vec3s* src);
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void AnimTaskQueue_AddInterp(struct PlayState* play, s32 vecCount, Vec3s* base, Vec3s* mod, f32 weight);
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void AnimTaskQueue_AddCopyUsingMap(struct PlayState* play, s32 vecCount, Vec3s* dest, Vec3s* src, u8* limbCopyMap);
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void AnimTaskQueue_AddCopyUsingMapInverted(struct PlayState* play, s32 vecCount, Vec3s* dest, Vec3s* src, u8* limbCopyMap);
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void AnimTaskQueue_AddActorMovement(struct PlayState* play, struct Actor* actor, SkelAnime* skelAnime, f32 moveDiffScaleY);
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void AnimTaskQueue_SetNextGroup(struct PlayState* play);
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void AnimTaskQueue_DisableTransformTasksForGroup(struct PlayState* play);
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void AnimTaskQueue_Reset(AnimTaskQueue* animTaskQueue);
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void AnimTaskQueue_Update(struct PlayState* play, AnimTaskQueue* animTaskQueue);
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/*
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* Link animations
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*/
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// Update
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s32 LinkAnimation_Update(struct PlayState* play, SkelAnime* skelAnime);
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void LinkAnimation_SetUpdateFunction(SkelAnime* skelAnime);
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void LinkAnimation_AnimateFrame(struct PlayState* play, SkelAnime* skelAnime);
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// Play animations
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void LinkAnimation_Change(struct PlayState* play, SkelAnime* skelAnime, LinkAnimationHeader* animation, f32 playSpeed,
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f32 startFrame, f32 endFrame, u8 mode, f32 morphFrames);
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void LinkAnimation_PlayOnce(struct PlayState* play, SkelAnime* skelAnime, LinkAnimationHeader* animation);
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void LinkAnimation_PlayOnceSetSpeed(struct PlayState* play, SkelAnime* skelAnime, LinkAnimationHeader* animation,
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f32 playSpeed);
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void LinkAnimation_PlayLoop(struct PlayState* play, SkelAnime* skelAnime, LinkAnimationHeader* animation);
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void LinkAnimation_PlayLoopSetSpeed(struct PlayState* play, SkelAnime* skelAnime, LinkAnimationHeader* animation,
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f32 playSpeed);
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void LinkAnimation_EndLoop(SkelAnime* skelAnime);
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// Misc. operations
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void LinkAnimation_CopyJointToMorph(struct PlayState* play, SkelAnime* skelAnime);
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void LinkAnimation_CopyMorphToJoint(struct PlayState* play, SkelAnime* skelAnime);
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void LinkAnimation_LoadToMorph(struct PlayState* play, SkelAnime* skelAnime, LinkAnimationHeader* animation, f32 frame);
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void LinkAnimation_LoadToJoint(struct PlayState* play, SkelAnime* skelAnime, LinkAnimationHeader* animation, f32 frame);
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void LinkAnimation_InterpJointMorph(struct PlayState* play, SkelAnime* skelAnime, f32 weight);
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void LinkAnimation_BlendToJoint(struct PlayState* play, SkelAnime* skelAnime, LinkAnimationHeader* animation1,
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f32 frame1, LinkAnimationHeader* animation2, f32 frame2, f32 blendWeight,
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Vec3s* blendTable);
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void LinkAnimation_BlendToMorph(struct PlayState* play, SkelAnime* skelAnime, LinkAnimationHeader* animation1,
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f32 frame1, LinkAnimationHeader* animation2, f32 frame2, f32 blendWeight,
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Vec3s* blendTable);
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s32 LinkAnimation_OnFrame(SkelAnime* skelAnime, f32 frame);
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#endif
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