desug.ml 11 KB

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  1. open Printf
  2. open Types
  3. open Util
  4. (* Create new constant variables for all assigned array values so that they are
  5. * only evaluated once *)
  6. let rec consts_to_vars node =
  7. let rec create_vars new_vars values = function
  8. | [] -> (new_vars, values)
  9. | hd :: tl ->
  10. let (new_vars, value) = match hd with
  11. | ArrayConst (values, ann) ->
  12. let (new_vars, values) = create_vars new_vars [] values in
  13. (new_vars, ArrayConst (values, ann))
  14. | value ->
  15. let index = fresh_const "const" in
  16. (new_vars @ [(index, value)], Var (index, None, annof value))
  17. in
  18. create_vars new_vars (values @ [value]) tl
  19. in
  20. match node with
  21. (* Add vardecs for values in arrayconst *)
  22. | VarDec (ArrayDims _ as ctype, name, Some (ArrayConst (values, vann)), ann) ->
  23. let (new_vars, values) = create_vars [] [] values in
  24. let value = ArrayConst (values, vann) in
  25. let create_vardec (name, value) =
  26. VarDec (basetypeof node, name, Some value, annof value)
  27. in
  28. let new_vardecs = List.map create_vardec new_vars in
  29. Block (new_vardecs @ [VarDec (ctype, name, Some value, ann)])
  30. (* Add vardec for scalar value *)
  31. | VarDec (ArrayDims _ as ctype, name, Some value, ann) as node ->
  32. let scalar_name = fresh_const "scalar" in
  33. Block [
  34. VarDec (basetypeof node, scalar_name, Some value, ann);
  35. VarDec (ctype, name, Some (Var (scalar_name, None, annof value)), ann);
  36. ]
  37. | node -> transform_children consts_to_vars node
  38. let make_dims basename values make_dec =
  39. let make_dimname i _ = basename ^ "$" ^ string_of_int (i + 1) in
  40. let names = mapi make_dimname values in
  41. let decs = List.map2 make_dec values names in
  42. let make_dim value name = Dim (name, annof value) in
  43. let dims = List.map2 make_dim values names in
  44. (decs, dims)
  45. (* Generate new variables for array dimensions, to avoid re-evalutation when
  46. * array dimensions are used (e.g., after array dimension reduction). *)
  47. let rec array_dims node =
  48. match node with
  49. | VarDec (ArrayDims (ctype, values), name, init, ann) ->
  50. let make_dec value name = VarDec (Int, name, Some value, []) in
  51. let (decs, dims) = make_dims (name ^ "$dim$") values make_dec in
  52. Block (decs @ [VarDec (ArrayDims (ctype, dims), name, init, ann)])
  53. | GlobalDef (export, ArrayDims (ctype, values), name, None, ann) ->
  54. let make_dec value name = GlobalDef (export, Int, name, Some value, []) in
  55. let (decs, dims) = make_dims name values make_dec in
  56. Block (decs @ [GlobalDef (export, ArrayDims (ctype, dims), name, None, ann)])
  57. (*
  58. | GlobalDec (ArrayDims (ctype, values), name, ann) ->
  59. (*
  60. let rec make_decs = function
  61. | [] -> []
  62. | Dim (name, ann) :: tl -> GlobalDec (Int, name, ann) :: (make_decs tl)
  63. | _ -> raise InvalidNode
  64. in
  65. let decs = make_decs values in
  66. Block (decs @ [GlobalDec (ArrayDims (ctype, dims), name, ann)])
  67. *)
  68. let make_dec value name = GlobalDec (Int, name, []) in
  69. let (decs, dims) = make_dims name values make_dec in
  70. Block (decs @ [GlobalDec (ArrayDims (ctype, dims), name, ann)])
  71. *)
  72. | node -> transform_children array_dims node
  73. (* Split variable initialisation into declaration and assignment *)
  74. let rec split_inits = function
  75. (* Wrap array initialisation in ArrayInit to pass dimensions *)
  76. | VarDec (ArrayDims (_, dims) as ctype, name, Some value, ann) ->
  77. Block [
  78. VarDec (ctype, name, None, ann);
  79. Assign (name, None, ArrayInit (value, dims), ann);
  80. ]
  81. | VarDec (ctype, name, Some init, ann) ->
  82. Block [
  83. VarDec (ctype, name, None, ann);
  84. Assign (name, None, init, ann);
  85. ]
  86. | GlobalDef (export, ctype, name, Some init, ann) ->
  87. Block [
  88. GlobalDef (export, ctype, name, None, ann);
  89. Assign (name, None, init, ann);
  90. ]
  91. | node -> transform_children split_inits node
  92. (* Add <allocate> statements after array declarations *)
  93. let rec add_allocs node =
  94. let create_dimvar = function
  95. | Dim (name, _) -> Var (name, None, [])
  96. | _ -> raise InvalidNode
  97. in
  98. match node with
  99. | VarDec (ArrayDims (_, dims), _, _, ann) ->
  100. Block [node; Allocate (node, List.map create_dimvar dims, ann)]
  101. | GlobalDef (_, ArrayDims (_, dims), _, _, ann) ->
  102. Block [node; Allocate (node, List.map create_dimvar dims, ann)]
  103. | node -> transform_children add_allocs node
  104. let extract_inits lst =
  105. let rec trav inits = function
  106. | [] ->
  107. (List.rev inits, [])
  108. | (Assign _ as hd) :: tl
  109. | (Allocate _ as hd) :: tl ->
  110. trav (hd :: inits) tl
  111. | hd :: tl ->
  112. let (inits, tl) = trav inits tl in
  113. (inits, (hd :: tl))
  114. in trav [] lst
  115. let rec move_inits = function
  116. (* Move global initialisations to __init function *)
  117. | Program (decls, ann) ->
  118. let decls = List.map move_inits decls in
  119. begin match extract_inits decls with
  120. | ([], _) -> Program (decls, ann)
  121. | (inits, decls) ->
  122. let body = Block (VarDecs [] :: LocalFuns [] :: inits) in
  123. let init_func = FunDef (true, Void, "__init", [], body, []) in
  124. Program (init_func :: decls, ann)
  125. end
  126. (* Split local variable initialisations in declaration and assignment *)
  127. | FunDef (export, ret_type, name, params, Block body, ann) ->
  128. let rec place_inits inits = function
  129. | VarDecs lst :: tl ->
  130. let (inits, decs) = extract_inits lst in
  131. VarDecs decs :: (place_inits inits tl)
  132. | LocalFuns _ as hd :: tl ->
  133. hd :: inits @ tl
  134. | _ -> raise InvalidNode
  135. in
  136. let body = Block (place_inits [] body) in
  137. FunDef (export, ret_type, name, params, body, ann)
  138. | node -> transform_children move_inits node
  139. let for_to_while node =
  140. let rec replace_var var replacement node =
  141. let trav = (replace_var var replacement) in
  142. match node with
  143. | Var (name, None, ann) when name = var ->
  144. Var (replacement, None, ann)
  145. | For (counter, start, stop, step, body, ann) when counter = var ->
  146. For (replacement, trav start, trav stop, trav step, trav body, ann)
  147. | node ->
  148. transform_children trav node
  149. in
  150. let rec traverse new_vars = function
  151. | FunDef (export, ret_type, name, params, body, ann) ->
  152. let rec place_decs decs = function
  153. | Block (VarDecs lst :: tl) -> Block (VarDecs (decs @ lst) :: tl)
  154. | _ -> raise InvalidNode
  155. in
  156. let new_vars = ref [] in
  157. let body = traverse new_vars body in
  158. let create_vardec name = VarDec (Int, name, None, []) in
  159. let new_vardecs = List.map create_vardec !new_vars in
  160. let body = place_decs new_vardecs body in
  161. FunDef (export, ret_type, name, params, body, ann)
  162. (* Transform for-loops to while-loops *)
  163. | For (counter, start, stop, step, body, ann) ->
  164. let _i = fresh_var counter in
  165. let _stop = fresh_const "stop" in
  166. let _step = fresh_const "step" in
  167. new_vars := !new_vars @ [_i; _stop; _step];
  168. let vi = Var (_i, None, []) in
  169. let vstop = Var (_stop, None, annof stop) in
  170. let vstep = Var (_step, None, annof step) in
  171. let cond = Cond (
  172. Binop (Gt, vstep, Const (IntVal 0, []), []),
  173. Binop (Lt, vi, vstop, []),
  174. Binop (Gt, vi, vstop, []),
  175. []
  176. ) in
  177. Block [
  178. Assign (_i, None, start, annof start);
  179. Assign (_stop, None, stop, annof stop);
  180. Assign (_step, None, step, annof step);
  181. traverse new_vars (While (cond, (Block (
  182. block_body (replace_var counter _i body) @
  183. [Assign (_i, None, Binop (Add, vi, vstep, []), [])]
  184. )), ann));
  185. ]
  186. (* DISABLED, while-loops are explicitly supported by the assembly phase
  187. (* Transform while-loops to do-while loops in if-statements *)
  188. | While (cond, body, ann) ->
  189. let cond = traverse new_vars cond in
  190. let body = traverse new_vars body in
  191. Block [If (cond, Block [DoWhile (cond, body, ann)], ann)]
  192. *)
  193. | node -> transform_children (traverse new_vars) node
  194. in
  195. traverse (ref []) node
  196. let rec sublist n = function
  197. | [] when n > 0 -> raise (Invalid_argument "n")
  198. | [] -> []
  199. | lst when n = 0 -> lst
  200. | _ :: tl -> sublist (n - 1) tl
  201. let rec array_init = function
  202. (* Transform array constant initialisation into separate assign statements
  203. * for all entries in the constant array *)
  204. | Assign (name, None, ArrayInit (ArrayConst _ as value, dims), ann) ->
  205. let ndims = List.length dims in
  206. let rec make_assigns depth i indices = function
  207. | [] -> []
  208. | hd :: tl ->
  209. let assigns = traverse depth (i :: indices) hd in
  210. make_assigns depth (i + 1) indices tl @ assigns
  211. and traverse depth indices = function
  212. | ArrayConst (values, _) ->
  213. make_assigns (depth + 1) 0 indices values
  214. | value when depth = ndims ->
  215. let indices = List.map (fun i -> Const (IntVal i, [])) indices in
  216. [Assign (name, Some (List.rev indices), value, ann)]
  217. | value when depth < ndims ->
  218. (* Use the for-loops constructed for scalar assignment *)
  219. let value = ArrayInit (value, dims) in
  220. let indices = List.map (fun i -> Const (IntVal i, [])) indices in
  221. [array_init (Assign (name, Some (List.rev indices), value, ann))]
  222. | node ->
  223. let msg = sprintf
  224. "dimension mismatch: expected %d nesting levels, got %d"
  225. ndims depth
  226. in
  227. raise (NodeError (node, msg))
  228. in
  229. Block (List.rev (traverse 0 [] value))
  230. (* Replace no indices with empty indices to have a list below *)
  231. | Assign (name, None, (ArrayInit _ as value), ann) ->
  232. array_init (Assign (name, Some [], value, ann))
  233. | Assign (name, Some indices, ArrayInit (value, dims), ann) ->
  234. let rec add_loop indices = function
  235. | [] ->
  236. array_init (Assign (name, Some indices, value, ann))
  237. | dim :: rest ->
  238. let counter = fresh_var "i" in
  239. let start = Const (IntVal 0, []) in
  240. let step = Const (IntVal 1, []) in
  241. let body = Block [add_loop (indices @ [Var (counter, None, [])]) rest] in
  242. let stop = match dim with
  243. | Dim (name, ann) -> Var (name, None, ann)
  244. | _ -> dim
  245. in
  246. For (counter, start, stop, step, body, [])
  247. in
  248. let dims_left = sublist (List.length indices) dims in
  249. add_loop indices dims_left
  250. | node -> transform_children array_init node
  251. let phase = function
  252. | Ast node ->
  253. (* Generate variable declarations for expressions that must be evaluated
  254. * once and used multiple times *)
  255. let node = consts_to_vars (array_dims node) in
  256. (* Split variable initialisations into declarations and assignments, and
  257. * move the assignments to the function body *)
  258. let node = move_inits (add_allocs (split_inits node)) in
  259. (* Transform ArrayConst assignment to assignments in for-loops, and
  260. * transform all for-loops to while-loops afterwards *)
  261. Ast (for_to_while (array_init (node)))
  262. | _ -> raise (InvalidInput "desugar")