## lustrec / src / optimize_prog.ml @ ef34b4ae

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1 | a2d97a3e | ploc | (********************************************************************) |
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2 | (* *) |
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3 | (* The LustreC compiler toolset / The LustreC Development Team *) |
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4 | (* Copyright 2012 - -- ONERA - CNRS - INPT *) |
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5 | (* *) |
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6 | (* LustreC is free software, distributed WITHOUT ANY WARRANTY *) |
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7 | (* under the terms of the GNU Lesser General Public License *) |
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8 | (* version 2.1. *) |
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9 | (* *) |
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10 | (********************************************************************) |
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11 | |||

12 | cf78a589 | ploc | open Corelang |

13 | 01c7d5e1 | ploc | open LustreSpec |

14 | cf78a589 | ploc | |

15 | (* Consts unfoooolding *) |
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16 | let is_const i consts = |
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17 | List.exists (fun c -> c.const_id = i) consts |
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18 | |||

19 | let get_const i consts = |
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20 | let c = List.find (fun c -> c.const_id = i) consts in |
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21 | c.const_value |
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22 | |||

23 | let rec expr_unfold_consts consts e = |
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24 | 429ab729 | ploc | { e with expr_desc = expr_desc_unfold_consts consts e.expr_desc e.expr_type } |

25 | cf78a589 | ploc | |

26 | 429ab729 | ploc | and expr_desc_unfold_consts consts e e_type = |

27 | cf78a589 | ploc | let unfold = expr_unfold_consts consts in |

28 | match e with |
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29 | | Expr_const _ -> e |
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30 | 429ab729 | ploc | | Expr_ident i -> if is_const i consts && not (Types.is_array_type e_type) then Expr_const (get_const i consts) else e |

31 | cf78a589 | ploc | | Expr_array el -> Expr_array (List.map unfold el) |

32 | | Expr_access (e1, d) -> Expr_access (unfold e1, d) |
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33 | | Expr_power (e1, d) -> Expr_power (unfold e1, d) |
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34 | | Expr_tuple el -> Expr_tuple (List.map unfold el) |
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35 | | Expr_ite (c, t, e) -> Expr_ite (unfold c, unfold t, unfold e) |
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36 | | Expr_arrow (e1, e2)-> Expr_arrow (unfold e1, unfold e2) |
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37 | | Expr_fby (e1, e2) -> Expr_fby (unfold e1, unfold e2) |
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38 | (* | Expr_concat (e1, e2) -> Expr_concat (unfold e1, unfold e2) *) |
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39 | (* | Expr_tail e' -> Expr_tail (unfold e') *) |
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40 | | Expr_pre e' -> Expr_pre (unfold e') |
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41 | | Expr_when (e', i, l)-> Expr_when (unfold e', i, l) |
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42 | | Expr_merge (i, hl) -> Expr_merge (i, List.map (fun (t, h) -> (t, unfold h)) hl) |
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43 | 01c7d5e1 | ploc | | Expr_appl (i, e', i') -> Expr_appl (i, unfold e', i') |

44 | cf78a589 | ploc | |

45 | let eq_unfold_consts consts eq = |
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46 | { eq with eq_rhs = expr_unfold_consts consts eq.eq_rhs } |
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47 | |||

48 | let node_unfold_consts consts node = |
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49 | { node with node_eqs = List.map (eq_unfold_consts consts) node.node_eqs } |
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50 | |||

51 | let prog_unfold_consts prog = |
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52 | ef34b4ae | xthirioux | let consts = List.map const_of_top (get_consts prog) in |

53 | cf78a589 | ploc | List.map ( |

54 | fun decl -> match decl.top_decl_desc with |
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55 | | Node nd -> {decl with top_decl_desc = Node (node_unfold_consts consts nd)} |
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56 | | _ -> decl |
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57 | ) prog |
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58 | |||

59 | add75bcb | xthirioux | let apply_stack expr stack = |

60 | List.fold_left (fun expr (v, t) -> mkexpr expr.expr_loc (Expr_when (expr, v, t))) expr stack |
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61 | |||

62 | let expr_distribute_when expr = |
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63 | let rec distrib stack expr = |
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64 | match expr.expr_desc with |
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65 | | Expr_const _ |
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66 | | Expr_ident _ |
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67 | | Expr_arrow _ |
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68 | | Expr_fby _ |
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69 | | Expr_pre _ |
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70 | -> apply_stack expr stack |
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71 | | Expr_appl (id, _, _) when not (Stateless.check_node (node_from_name id)) |
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72 | -> apply_stack expr stack |
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73 | | Expr_ite (c, t, e) |
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74 | -> let cid = ident_of_expr c in |
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75 | mkexpr expr.expr_loc |
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76 | (Expr_merge (cid, |
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77 | [(tag_true , distrib ((cid,tag_true )::stack) t); |
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78 | (tag_false, distrib ((cid,tag_false)::stack) e)])) |
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79 | | Expr_array el -> { expr with expr_desc = (Expr_array (List.map (distrib stack) el)) } |
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80 | | Expr_access (e1, d) -> { expr with expr_desc = Expr_access (distrib stack e1, d) } |
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81 | | Expr_power (e1, d) -> { expr with expr_desc = Expr_power (distrib stack e1, d) } |
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82 | | Expr_tuple el -> { expr with expr_desc = Expr_tuple (List.map (distrib stack) el) } |
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83 | | Expr_when (e', i, l)-> distrib ((i, l)::stack) e' |
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84 | | Expr_merge (i, hl) -> { expr with expr_desc = Expr_merge (i, List.map (fun (t, h) -> (t, distrib stack h)) hl) } |
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85 | | Expr_appl (id, e', i') -> { expr with expr_desc = Expr_appl (id, distrib stack e', i')} |
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86 | in distrib [] expr |
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87 | |||

88 | let eq_distribute_when eq = |
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89 | { eq with eq_rhs = expr_distribute_when eq.eq_rhs } |
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90 | |||

91 | let node_distribute_when node = |
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92 | { node with node_eqs = List.map eq_distribute_when node.node_eqs } |
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93 | |||

94 | let prog_distribute_when prog = |
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95 | List.map ( |
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96 | fun decl -> match decl.top_decl_desc with |
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97 | | Node nd -> {decl with top_decl_desc = Node (node_distribute_when nd)} |
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98 | | _ -> decl |
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99 | ) prog |
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100 | cf78a589 | ploc | (* Local Variables: *) |

101 | (* compile-command:"make -C .." *) |
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102 | (* End: *) |