mirror of
https://github.com/open-goal/jak-project
synced 2026-07-02 20:47:07 -04:00
cd68cb671e
Major change to how `deftype` shows up in our code: - the decompiler will no longer emit the `offset-assert`, `method-count-assert`, `size-assert` and `flag-assert` parameters. There are extremely few cases where having this in the decompiled code is helpful, as the types there come from `all-types` which already has those parameters. This also doesn't break type consistency because: - the asserts aren't compared. - the first step of the test uses `all-types`, which has the asserts, which will throw an error if they're bad. - the decompiler won't emit the `heap-base` parameter unless necessary now. - the decompiler will try its hardest to turn a fixed-offset field into an `overlay-at` field. It falls back to the old offset if all else fails. - `overlay-at` now supports field "dereferencing" to specify the offset that's within a field that's a structure, e.g.: ```lisp (deftype foobar (structure) ((vec vector :inline) (flags int32 :overlay-at (-> vec w)) ) ) ``` in this structure, the offset of `flags` will be 12 because that is the final offset of `vec`'s `w` field within this structure. - **removed ID from all method declarations.** IDs are only ever automatically assigned now. Fixes #3068. - added an `:overlay` parameter to method declarations, in order to declare a new method that goes on top of a previously-defined method. Syntax is `:overlay <method-name>`. Please do not ever use this. - added `state-methods` list parameter. This lets you quickly specify a list of states to be put in the method table. Same syntax as the `states` list parameter. The decompiler will try to put as many states in this as it can without messing with the method ID order. Also changes `defmethod` to make the first type definition (before the arguments) optional. The type can now be inferred from the first argument. Fixes #3093. --------- Co-authored-by: Hat Kid <6624576+Hat-Kid@users.noreply.github.com>
434 lines
14 KiB
Common Lisp
Vendored
Generated
434 lines
14 KiB
Common Lisp
Vendored
Generated
;;-*-Lisp-*-
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(in-package goal)
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;; definition of type joint-anim
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(deftype joint-anim (basic)
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((name string)
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(number int16)
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(length int16)
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)
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)
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;; definition for method 3 of type joint-anim
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(defmethod inspect ((this joint-anim))
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(format #t "[~8x] ~A~%" this (-> this type))
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(format #t "~Tname: ~A~%" (-> this name))
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(format #t "~Tnumber: ~D~%" (-> this number))
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(format #t "~Tlength: ~D~%" (-> this length))
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this
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)
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;; definition of type joint-anim-matrix
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(deftype joint-anim-matrix (joint-anim)
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((data matrix :inline :dynamic :offset 16)
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)
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)
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;; definition of type joint-anim-transformq
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(deftype joint-anim-transformq (joint-anim)
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((data transformq :inline :dynamic :offset 16)
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)
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)
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;; definition of type joint-anim-drawable
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(deftype joint-anim-drawable (joint-anim)
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((data drawable :dynamic)
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)
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)
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;; definition for method 3 of type joint-anim-drawable
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(defmethod inspect ((this joint-anim-drawable))
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(format #t "[~8x] ~A~%" this (-> this type))
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(format #t "~Tname: ~A~%" (-> this name))
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(format #t "~Tnumber: ~D~%" (-> this number))
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(format #t "~Tlength: ~D~%" (-> this length))
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(format #t "~Tdata[0] @ #x~X~%" (-> this data))
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this
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)
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;; definition of type joint-anim-compressed
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(deftype joint-anim-compressed (joint-anim)
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((data uint32 :dynamic)
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)
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)
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;; definition for method 3 of type joint-anim-compressed
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(defmethod inspect ((this joint-anim-compressed))
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(format #t "[~8x] ~A~%" this (-> this type))
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(format #t "~Tname: ~A~%" (-> this name))
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(format #t "~Tnumber: ~D~%" (-> this number))
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(format #t "~Tlength: ~D~%" (-> this length))
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this
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)
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;; definition of type joint-anim-frame
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(deftype joint-anim-frame (structure)
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((matrices matrix 2 :inline)
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(data matrix :inline :dynamic)
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)
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(:methods
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(new (symbol type int) _type_)
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)
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)
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;; definition for method 3 of type joint-anim-frame
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(defmethod inspect ((this joint-anim-frame))
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(format #t "[~8x] ~A~%" this 'joint-anim-frame)
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(format #t "~Tmatrices[2] @ #x~X~%" (-> this matrices))
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(format #t "~Tdata[0] @ #x~X~%" (-> this data))
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this
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)
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;; definition for method 0 of type joint-anim-frame
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;; INFO: Return type mismatch structure vs joint-anim-frame.
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(defmethod new joint-anim-frame ((allocation symbol) (type-to-make type) (arg0 int))
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(let ((v1-1 (max 0 (+ arg0 -2))))
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(the-as
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joint-anim-frame
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(new-dynamic-structure allocation type-to-make (the-as int (+ (-> type-to-make size) (* 48 v1-1))))
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)
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)
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)
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;; definition of type joint-anim-compressed-hdr
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(deftype joint-anim-compressed-hdr (structure)
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((control-bits uint32 14)
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(num-joints uint32)
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(matrix-bits uint32)
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)
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)
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;; definition for method 3 of type joint-anim-compressed-hdr
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(defmethod inspect ((this joint-anim-compressed-hdr))
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(format #t "[~8x] ~A~%" this 'joint-anim-compressed-hdr)
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(format #t "~Tcontrol-bits[14] @ #x~X~%" (-> this control-bits))
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(format #t "~Tnum-joints: ~D~%" (-> this num-joints))
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(format #t "~Tmatrix-bits: ~D~%" (-> this matrix-bits))
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this
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)
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;; definition of type joint-anim-compressed-fixed
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(deftype joint-anim-compressed-fixed (structure)
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((hdr joint-anim-compressed-hdr :inline)
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(offset-64 uint32)
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(offset-32 uint32)
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(offset-16 uint32)
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(reserved uint32)
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(data vector 133 :inline)
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)
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)
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;; definition for method 3 of type joint-anim-compressed-fixed
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(defmethod inspect ((this joint-anim-compressed-fixed))
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(format #t "[~8x] ~A~%" this 'joint-anim-compressed-fixed)
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(format #t "~Thdr: #<joint-anim-compressed-hdr @ #x~X>~%" (-> this hdr))
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(format #t "~Toffset-64: ~D~%" (-> this offset-64))
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(format #t "~Toffset-32: ~D~%" (-> this offset-32))
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(format #t "~Toffset-16: ~D~%" (-> this offset-16))
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(format #t "~Treserved: ~D~%" (-> this reserved))
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(format #t "~Tdata[133] @ #x~X~%" (-> this data))
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this
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)
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;; definition of type joint-anim-compressed-frame
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(deftype joint-anim-compressed-frame (structure)
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((offset-64 uint32)
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(offset-32 uint32)
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(offset-16 uint32)
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(reserved uint32)
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(data vector 133 :inline)
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)
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)
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;; definition for method 3 of type joint-anim-compressed-frame
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(defmethod inspect ((this joint-anim-compressed-frame))
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(format #t "[~8x] ~A~%" this 'joint-anim-compressed-frame)
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(format #t "~Toffset-64: ~D~%" (-> this offset-64))
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(format #t "~Toffset-32: ~D~%" (-> this offset-32))
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(format #t "~Toffset-16: ~D~%" (-> this offset-16))
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(format #t "~Treserved: ~D~%" (-> this reserved))
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(format #t "~Tdata[133] @ #x~X~%" (-> this data))
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this
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)
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;; definition of type joint-anim-compressed-control
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(deftype joint-anim-compressed-control (structure)
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((num-frames uint32)
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(fixed-qwc uint32)
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(frame-qwc uint32)
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(fixed joint-anim-compressed-fixed)
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(data joint-anim-compressed-frame 1)
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)
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)
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;; definition for method 3 of type joint-anim-compressed-control
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(defmethod inspect ((this joint-anim-compressed-control))
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(format #t "[~8x] ~A~%" this 'joint-anim-compressed-control)
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(format #t "~Tnum-frames: ~D~%" (-> this num-frames))
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(format #t "~Tfixed-qwc: ~D~%" (-> this fixed-qwc))
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(format #t "~Tframe-qwc: ~D~%" (-> this frame-qwc))
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(format #t "~Tfixed: #<joint-anim-compressed-fixed @ #x~X>~%" (-> this fixed))
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(format #t "~Tdata[1] @ #x~X~%" (-> this data))
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this
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)
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;; definition of type art
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(deftype art (basic)
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((name string :offset 8)
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(length int32)
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(extra res-lump)
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)
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(:methods
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(login (_type_) _type_)
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(lookup-art (_type_ string type) joint)
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(lookup-idx-of-art (_type_ string type) int)
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(needs-link? (_type_) symbol)
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)
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)
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;; definition for method 3 of type art
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(defmethod inspect ((this art))
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(format #t "[~8x] ~A~%" this (-> this type))
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(format #t "~Tname: ~A~%" (-> this name))
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(format #t "~Tlength: ~D~%" (-> this length))
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(format #t "~Textra: ~A~%" (-> this extra))
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this
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)
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;; definition of type art-element
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(deftype art-element (art)
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((pad uint8 12)
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)
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)
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;; definition for method 3 of type art-element
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(defmethod inspect ((this art-element))
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(format #t "[~8x] ~A~%" this (-> this type))
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(format #t "~Tname: ~A~%" (-> this name))
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(format #t "~Tlength: ~D~%" (-> this length))
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(format #t "~Textra: ~A~%" (-> this extra))
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this
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)
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;; definition of type art-mesh-anim
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(deftype art-mesh-anim (art-element)
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((data basic :dynamic)
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)
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)
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;; definition of type art-joint-anim
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(deftype art-joint-anim (art-element)
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((eye-anim-data merc-eye-anim-block :offset 4)
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(speed float :overlay-at (-> pad 0))
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(artist-base float :overlay-at (-> pad 4))
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(artist-step float :overlay-at (-> pad 8))
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(master-art-group-name string :offset 32)
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(master-art-group-index int32 :offset 36)
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(blerc-data (pointer uint8) :offset 40)
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(frames joint-anim-compressed-control :offset 44)
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(data joint-anim-compressed :dynamic)
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)
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)
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;; definition of type art-group
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(deftype art-group (art)
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((info file-info :offset 4)
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(data art-element :dynamic :offset 32)
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)
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(:methods
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(relocate (_type_ kheap (pointer uint8)) none :replace)
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(link-art! (_type_) art-group)
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(unlink-art! (_type_) int)
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)
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)
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;; definition of type art-mesh-geo
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(deftype art-mesh-geo (art-element)
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((data basic :dynamic)
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)
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)
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;; definition of type art-joint-geo
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(deftype art-joint-geo (art-element)
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((data joint :dynamic)
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)
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)
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;; definition of type skeleton-group
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(deftype skeleton-group (basic)
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((art-group-name string)
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(jgeo int32)
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(janim int32)
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(bounds vector :inline)
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(radius meters :overlay-at (-> bounds w))
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(mgeo int16 4)
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(max-lod int32)
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(lod-dist float 4)
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(longest-edge meters)
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(texture-level int8)
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(version int8)
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(shadow int8)
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(sort int8)
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(_pad uint8 4)
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)
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)
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;; definition for method 3 of type skeleton-group
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(defmethod inspect ((this skeleton-group))
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(format #t "[~8x] ~A~%" this (-> this type))
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(format #t "~Tart-group-name: ~A~%" (-> this art-group-name))
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(format #t "~Tjgeo: ~D~%" (-> this jgeo))
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(format #t "~Tjanim: ~D~%" (-> this janim))
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(format #t "~Tbounds: ~`vector`P~%" (-> this bounds))
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(format #t "~Tradius: (meters ~m)~%" (-> this bounds w))
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(format #t "~Tmgeo[4] @ #x~X~%" (-> this mgeo))
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(format #t "~Tmax-lod: ~D~%" (-> this max-lod))
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(format #t "~Tlod-dist[4] @ #x~X~%" (-> this lod-dist))
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(format #t "~Tlongest-edge: (meters ~m)~%" (-> this longest-edge))
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(format #t "~Ttexture-level: ~D~%" (-> this texture-level))
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(format #t "~Tversion: ~D~%" (-> this version))
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(format #t "~Tshadow: ~D~%" (-> this shadow))
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(format #t "~Tsort: ~D~%" (-> this sort))
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this
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)
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;; definition of type lod-group
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(deftype lod-group (structure)
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((geo merc-ctrl)
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(dist meters)
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)
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:pack-me
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)
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;; definition for method 3 of type lod-group
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(defmethod inspect ((this lod-group))
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(format #t "[~8x] ~A~%" this 'lod-group)
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(format #t "~Tgeo: ~A~%" (-> this geo))
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(format #t "~Tdist: (meters ~m)~%" (-> this dist))
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this
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)
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;; definition of type lod-set
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(deftype lod-set (structure)
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((lod lod-group 4 :inline)
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(max-lod int8)
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)
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:pack-me
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(:methods
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(setup-lods! (_type_ skeleton-group art-group entity) _type_)
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)
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)
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;; definition for method 3 of type lod-set
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(defmethod inspect ((this lod-set))
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(format #t "[~8x] ~A~%" this 'lod-set)
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(format #t "~Tlod[4] @ #x~X~%" (-> this lod))
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(format #t "~Tmax-lod: ~D~%" (-> this max-lod))
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this
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)
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;; definition of type draw-control
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(deftype draw-control (basic)
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((status draw-status)
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(matrix-type uint8)
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(data-format uint8)
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(global-effect draw-effect)
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(art-group art-group)
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(jgeo art-joint-geo)
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(mgeo merc-ctrl)
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(dma-add-func (function process-drawable draw-control symbol object none))
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(skeleton skeleton)
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(lod-set lod-set :inline)
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(lod lod-group 4 :inline :overlay-at (-> lod-set lod 0))
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(max-lod int8 :overlay-at (-> lod-set max-lod))
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(force-lod int8)
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(cur-lod int8)
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(desired-lod int8)
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(ripple ripple-control)
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(longest-edge meters)
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(longest-edge? uint32 :overlay-at longest-edge)
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(light-index uint8)
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(dummy uint8 2)
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(death-draw-overlap uint8)
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(death-timer uint8)
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(death-timer-org uint8)
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(death-vertex-skip uint16)
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(death-effect uint32)
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(sink-group dma-foreground-sink-group)
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(process process)
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(shadow shadow-geo)
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(shadow-ctrl shadow-control)
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(origin vector :inline)
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(bounds vector :inline)
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(radius meters :overlay-at (-> bounds w))
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(color-mult rgbaf :inline)
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(color-emissive rgbaf :inline)
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(secondary-interp float)
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(current-secondary-interp float)
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(shadow-mask uint8)
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(level-index uint8)
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(origin-joint-index uint8)
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(shadow-joint-index uint8)
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)
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(:methods
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(new (symbol type process art-joint-geo) _type_)
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(get-skeleton-origin (_type_) vector)
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(lod-set! (_type_ int) none)
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(lods-assign! (_type_ lod-set) none)
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)
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)
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;; definition for method 3 of type draw-control
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(defmethod inspect ((this draw-control))
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(format #t "[~8x] ~A~%" this (-> this type))
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(format #t "~Tstatus: ~D~%" (-> this status))
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(format #t "~Tmatrix-type: ~D~%" (-> this matrix-type))
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(format #t "~Tdata-format: ~D~%" (-> this data-format))
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(format #t "~Tglobal-effect: ~D~%" (-> this global-effect))
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(format #t "~Tart-group: ~A~%" (-> this art-group))
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(format #t "~Tjgeo: ~A~%" (-> this jgeo))
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(format #t "~Tmgeo: ~A~%" (-> this mgeo))
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(format #t "~Tdma-add-func: ~A~%" (-> this dma-add-func))
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(format #t "~Tskeleton: ~A~%" (-> this skeleton))
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(format #t "~Tlod-set: #<lod-set @ #x~X>~%" (-> this lod-set))
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(format #t "~Tlod[4] @ #x~X~%" (-> this lod-set))
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(format #t "~Tmax-lod: ~D~%" (-> this lod-set max-lod))
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(format #t "~Tforce-lod: ~D~%" (-> this force-lod))
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(format #t "~Tcur-lod: ~D~%" (-> this cur-lod))
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(format #t "~Tdesired-lod: ~D~%" (-> this desired-lod))
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(format #t "~Tripple: ~A~%" (-> this ripple))
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(format #t "~Tlongest-edge: (meters ~m)~%" (-> this longest-edge))
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(format #t "~Tlongest-edge?: ~D~%" (-> this longest-edge))
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(format #t "~Tlight-index: ~D~%" (-> this light-index))
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(format #t "~Tdummy[2] @ #x~X~%" (-> this dummy))
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(format #t "~Tdeath-draw-overlap: ~D~%" (-> this death-draw-overlap))
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(format #t "~Tdeath-timer: ~D~%" (-> this death-timer))
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(format #t "~Tdeath-timer-org: ~D~%" (-> this death-timer-org))
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(format #t "~Tdeath-vertex-skip: ~D~%" (-> this death-vertex-skip))
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(format #t "~Tdeath-effect: ~D~%" (-> this death-effect))
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(format #t "~Tsink-group: ~A~%" (-> this sink-group))
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(format #t "~Tprocess: ~A~%" (-> this process))
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(format #t "~Tshadow: ~A~%" (-> this shadow))
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(format #t "~Tshadow-ctrl: ~A~%" (-> this shadow-ctrl))
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(format #t "~Torigin: ~`vector`P~%" (-> this origin))
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(format #t "~Tbounds: ~`vector`P~%" (-> this bounds))
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(format #t "~Tradius: (meters ~m)~%" (-> this bounds w))
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(format #t "~Tcolor-mult: #<rgbaf @ #x~X>~%" (-> this color-mult))
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(format #t "~Tcolor-emissive: #<rgbaf @ #x~X>~%" (-> this color-emissive))
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(format #t "~Tsecondary-interp: ~f~%" (-> this secondary-interp))
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(format #t "~Tcurrent-secondary-interp: ~f~%" (-> this current-secondary-interp))
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(format #t "~Tshadow-mask: ~D~%" (-> this shadow-mask))
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(format #t "~Tlevel-index: ~D~%" (-> this level-index))
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(format #t "~Torigin-joint-index: ~D~%" (-> this origin-joint-index))
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(format #t "~Tshadow-joint-index: ~D~%" (-> this shadow-joint-index))
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this
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)
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;; definition for method 9 of type draw-control
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(defmethod get-skeleton-origin ((this draw-control))
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(-> this skeleton bones 0 transform vector 3)
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)
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;; failed to figure out what this is:
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0
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