Created
January 20, 2020 20:38
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$\Gamma_1 \equiv y:\tau_1$ | |
$\Gamma_2 \equiv \Gamma_1, x:\tau_2$ | |
$\Gamma_3 \equiv x:\tau_3'$ | |
$$ | |
\cfrac | |
{ | |
\cfrac | |
{ | |
\cfrac | |
{ | |
\cfrac | |
{ | |
\cfrac | |
{ | |
\cfrac{} | |
{\Gamma_2\vdash y :: (\tau_4 \rightarrow \tau_3, \tau_5)}Var | |
} | |
{\Gamma_2\vdash\textbf{fst } y :: \tau_4 \rightarrow \tau_3}fst | |
\quad | |
\cfrac | |
{ | |
\cfrac{} | |
{\Gamma_2\vdash x :: \tau_6\rightarrow \tau_4}Var | |
\quad | |
\cfrac | |
{ | |
\cfrac{} | |
{\Gamma_2\vdash y :: (\tau_7, \tau_6)}Var | |
} | |
{\Gamma_2\vdash \textbf{snd }y :: \tau_6}snd | |
} | |
{\Gamma_2\vdash x(\textbf{snd }y) :: \tau_4}App | |
} | |
{\Gamma_2\vdash(\textbf{fst } y)(x(\textbf{snd }y)) :: \tau_3}App | |
} | |
{\Gamma_1\vdash\lambda x (\textbf{fst } y)(x(\textbf{snd }y)):: \tau_0}Abs | |
} | |
{\vdash\lambda y . \lambda x (\textbf{fst } y)(x(\textbf{snd }y))::\tau_1\rightarrow \tau_0} Abs | |
\quad | |
\cfrac | |
{ | |
\cfrac | |
{ | |
\cfrac{} | |
{\Gamma_3 \vdash x :: \tau_{4}'} Var | |
} | |
{\vdash\lambda x . x::\tau_2'}Abs | |
\quad | |
\cfrac | |
{ | |
\cfrac | |
{} | |
{\vdash 42 :: Int}Int | |
} | |
{\vdash\textbf{iszero } 42 :: Bool} iszero | |
} | |
{\vdash((\lambda x . x), \textbf{iszero } 42)::\tau_1} Tuple | |
} | |
{\vdash(\lambda y . \lambda x (\textbf{fst } y)(x(\textbf{snd }y))((\lambda x . x), \textbf{iszero } 42)::\tau_0}App | |
$$ | |
Constraints: | |
Left subtree: | |
- $\tau_0 \equiv \tau_2 \rightarrow \tau_3$ | |
- $\tau_1\equiv(\tau_4\rightarrow\tau_3, \tau_5)$ | |
- $\tau_2 \equiv\tau_6 \rightarrow \tau_4$ | |
- $\tau_1 \equiv (\tau_7, \tau_6)$ | |
Right subtree: | |
- $\tau_1 \equiv (\tau_2', Bool)$ | |
- $\tau_2' \equiv \tau_{3}' \rightarrow \tau_{4}'$ | |
- $\tau_3' \equiv \tau_{4}'$ | |
Variables: | |
- $\tau_2 \equiv \tau_3'$ | |
Apply constraints: $\tau_0 \equiv (Bool \rightarrow t) \rightarrow t$ |
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