1 | # Changes: |
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2 | ## 0. Introduce a new type of cast: Upcast or Enum Cast. |
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3 | The naming of the cast is not determined. |
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4 | ## 1. Updates on CastExpr::CastKind |
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5 | ``` |
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6 | enum CastKind { |
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7 | Default, // C |
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8 | Coerce, // reinterpret cast |
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9 | Return, // overload selection |
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10 | Up // <------ NEW; Cast to a super type |
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11 | }; |
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12 | ``` |
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13 | Scope: All enumerations, including C enumeration, and CFA enumeration (typed and opague). |
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14 | Example Usage: |
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15 | ``` |
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16 | enum A { a }; |
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17 | enum B { b }; |
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18 | enum AB { inline A, inline B, ab }; |
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19 | |
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20 | // Explicit (user called) up cast |
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21 | (AB) A.a; |
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22 | // Implicit (generated) up cast |
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23 | void foo(AB); |
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24 | foo(A.a); |
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25 | ``` |
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26 | |
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27 | Aside: Expressions "(AB) a" or "foo(a)" don't introduce a upcast. Because enum AB is an enum type with elements AB.a, AB.b, and AB.ab. The expression "(AB) a" results in AB.a since it has a lower cost than "(AB) A.a". (no conversion/cast cost) |
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28 | ## 2. Why needs a new cast type |
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29 | The up cast is a special kind of a cast that requires "offset operations". |
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30 | ``` |
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31 | (AB) b.b; // is equivalent to |
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32 | (AB) ((unsigned int)b.b + OFFSET) // (AB)(0 + 1) |
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33 | ``` |
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34 | OFFSET is an constanct value: The OFFSET from B to AB is 1. It is the number of enumerators declared before the declaration "inline B". The statement "inline B" is after "inline A", where "inline A" introduces one enumerator. |
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35 | |
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36 | Similarilty: |
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37 | ``` |
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38 | enum E { |
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39 | e; |
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40 | }; |
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41 | enum ABCDE { |
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42 | inline AB, |
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43 | C, D, |
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44 | inline E |
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45 | }; |
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46 | ``` |
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47 | The OFFSET from type E to type ABCDE is "# of element from AB" + 1 (C) + 1 (D), 4. |
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48 | But we don't want to introduce the OFFSET_OPERATION + 4 on every cast from type E to type ABCDE. Sometime, the compiler introduce a generated cast (AB) E.e to maniputate expression type. It actually happens when after we have an upcast, we need to cast the expression (E.e + 4) to type ABCED, without "upcast it agains". It is a widening cast with no upcast effect. |
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49 | |
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50 | ## 3. Implication |
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51 | A new pass "Upcast Pass" where happens before the resolver to identify Upcast. A cast (T) y for variable y with type Y is an upcast only if there is a "Upcast Path" from type T to type Y. |
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52 | For example, |
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53 | ``` |
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54 | enum T { |
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55 | ..., inline A, ... |
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56 | }; |
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57 | enum A { |
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58 | ..., inline B, ... |
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59 | }; |
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60 | enum B { |
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61 | ..., inline Y, ... |
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62 | }; |
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63 | enum Y { ... }; |
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64 | ``` |
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65 | There is a upcast Path from Y to T: Y -(upcast)-> B -(upcast)-> A -(upcast)-> T. The pass runs an algorithm to determine if there is such path exist from Y to T. |
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66 | Aisde: The cast is "bottom-up": (T)((A)((B) y)), casting from the smaller type to the bigger type. But the algorithm is search "top-down", from T to Y. Because inline information is stored in the super type. T knows it inlines A, A knows it inline B, but not vise versa. |
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67 | The CastKind will replaced by "CastKind::Up" |
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68 | |
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69 | The unifier in the resolver identify a function calls "foo(A.a)" performs an upcast, by running the algorithmn from AB to A, and introduce the implicit upcast in the Application Expression "foo((AB) A.B)". |
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70 | |
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71 | For all Upcast, the resolver replace them with 1. a offset operation (a functiion call ?+?(expr, OFFSET)), 2 and a Coerce cast from the lower type to the supper type. (There are some cast between enum type to integral type in between to satisfy the function ?+?(). We can ignore them for now.) |
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72 | |
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73 | Upcast should only exisit in the AST between the "Upcast Pass" and the "Resolver". They are essentially labels saying: this node needs an offset operation. |
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74 | |
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75 | "Upcast Pass" is a subpass of resolver. It does not need to be a standalone pass. It can be a special step when the compiler visits a CastExpr nocde. |
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76 | |
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77 | |
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