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3aac990fac
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vm-rewrite
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+2
-1
@@ -8,4 +8,5 @@ dist-newstyle
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*.tix
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.direnv
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result
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play/
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play/
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trace.html
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@@ -0,0 +1,100 @@
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* rationale?
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previously, the VM's stack was used for storing local variables across blocks; a Scheme procedure was split into several low-level routines (one for the procedure itself and one for each continuation), and the stack was used as a communication channel for these separate routines. in contrast, registers were local to each routine. this aligns with Wasm's model of functions pretty well, with Wasm /locals/ acting as the VM's /registers/, and a global mutable stack serving as fallback.
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this worked quite well until it became time to implement ~call/cc~.
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we are considering making the following alterations to the VM:
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- explicitly segment the stack into frames.
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- passing procedures and return addresses on the stack.
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- new instructions:
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+ ~(tail-call /n/)~
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+ ~(call /n/)~
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+ ~(load /r/ /n/)~
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+ ~(return /n/)~
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* scratchpad
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#+begin_src scheme
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(letrec ((fac (λ (n)
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(if (zero? n)
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1
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(* n (fac (- n 1)))))))
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(fac 3))
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#+end_src
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#+begin_src scheme
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(λ (ktail0)
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(letrec ((fac
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(λ (n ktail1)
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(zero?
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n
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(κ (x0)
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(if x0
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(continue ktail1 1)
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(- n 1
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(κ (x1)
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(fac x1
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(κ (x2)
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(* n x2 ktail1)))))))))))
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(fac 3)))
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#+end_src
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#+begin_example
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n ktail1
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| |
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| | x0
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| | |
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| | ^
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| |
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| | x1
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| | |
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| | ^
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| |
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| | x2
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| | |
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^ ^ ^
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#+end_example
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#+begin_src scheme
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(define $fac-c0
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(pop! %x0 0) ; [ x0 $fac-c0 n $fac ktail1 ]
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(if %x0 ; [ $fac-c0 n $fac ktail1 ]
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;; every variable but `ktail1' is dead so we pop them all.
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;; this probably means that `if' should take two continuations
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;; rather than two blocks.
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(then (push! 1) ; [ $fac-c0 n $fac ktail1 ]
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(return 1)) ; [ 1 $fac-c0 n $fac ktail1 ]
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(else (load %n 1) ; [ $fac-c0 n $fac ktail1 ]
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(prim %x1 (- %n 1)) ; [ $fac-c0 n $fac ktail1 ]
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(push! $fac-c1) ; [ $fac-c0 n $fac ktail1 ]
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(push! $fac) ; [ $fac-c1 $fac-c0 n $fac ktail1 ]
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(push! %x1) ; [ $fac $fac-c1 $fac-c0 n $fac ktail1 ]
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(call 1) ; [ x1 $fac $fac-c1 $fac-c0 n $fac ktail1 ]
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)))
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(define $fac-c1
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(pop! %x2) ; [ x2 $fac-c1 $fac-c0 n $fac ktail1 ]
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(load %n 3) ; [ $fac-c1 $fac-c0 n $fac ktail1 ]
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(prim %x3 (* %n %x2))
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(push! %x3) ; [ $fac-c1 $fac-c0 n $fac ktail1 ]
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(return 1) ; [ x3 $fac-c1 $fac-c0 n $fac ktail1 ]
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)
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(define $fac
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(load %ktail1 2) ; [ n $fac ktail1 ]
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(load %n 0) ; [ n $fac ktail1 ]
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(push! $fac-c0) ; [ n $fac ktail1 ]
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(push! $zero?) ; [ $fac-c0 n $fac ktail1 ]
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(push! %n) ; [ $zero? $fac-c0 n $fac ktail1 ]
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(call 1) ; [ n $zero? $fac-c0 n $fac ktail1 ]
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)
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(define $start
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(push! $fac) ; [ $start ktail0 ]
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(push! 3) ; [ $fac $start ktail0 ]
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(tail-call 1) ; [ 3 $fac $start ktail0 ]
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;; ↑ `tail-call' knows how to dispose of the caller's stack frame.
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)
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#+end_src
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@@ -0,0 +1 @@
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(begin 123 456) ; => 456
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@@ -0,0 +1,2 @@
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ret > ExitSuccess
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out > #t
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@@ -0,0 +1,12 @@
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(letrec ((iter (λ (n f)
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(if (zero? n)
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#f
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(begin (f n)
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(iter (- n 1) f))))))
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(call/cc
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(λ (k)
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(iter 10 (λ (n)
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;; i don't feel like implementing (= n 5) right now lmfao
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(if (zero? (- n 5))
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(k #t)
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#f))))))
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@@ -0,0 +1,2 @@
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ret > ExitSuccess
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out > #t
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@@ -0,0 +1,4 @@
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(call/cc
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(λ (k)
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(begin (k #t)
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#f)))
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@@ -0,0 +1,2 @@
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ret > ExitSuccess
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out > #t
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@@ -0,0 +1,5 @@
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;; confer ../callcc-early-exit-4
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(letrec ((app (λ (f x)
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(begin (f x)
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#f))))
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(call/cc (λ (k) (app k #t))))
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@@ -0,0 +1,2 @@
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ret > ExitSuccess
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out > #t
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@@ -0,0 +1,5 @@
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;; confer ../callcc-early-exit-3
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(letrec ((app (λ (f x)
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(begin (f x)
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#f))))
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(call/cc (λ (k) (app (λ (x) (k x)) #t))))
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@@ -0,0 +1,2 @@
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ret > ExitSuccess
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out > #t
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@@ -0,0 +1,4 @@
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(call/cc
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(λ (k)
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(begin ((λ () (k #t)))
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#f)))
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@@ -0,0 +1,2 @@
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ret > ExitSuccess
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out > 12
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@@ -0,0 +1,4 @@
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(* 2 (call/cc
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(λ (k)
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(begin (k 6)
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3))))
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@@ -0,0 +1,2 @@
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ret > ExitSuccess
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out > 456
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@@ -0,0 +1,2 @@
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ret > ExitSuccess
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out > 155
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@@ -0,0 +1,10 @@
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(letrec ((factorial (λ (n)
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(if (zero? n)
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1
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(* n (factorial (- n 1)))))))
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(letrec ((sum-of-factorials
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(λ (n)
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(if (zero? n)
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0
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(+ (factorial n) (sum-of-factorials (- n 1)))))))
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(+ 2 (sum-of-factorials 5))))
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@@ -0,0 +1,2 @@
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ret > ExitSuccess
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out > (6 . 7)
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@@ -0,0 +1 @@
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(cons 6 7)
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+18
-11
@@ -14,9 +14,9 @@ build-type: Simple
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-- extra-source-files:
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flag doctest
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description: enable the doctest suite
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default: True
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manual: True
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description: enable the doctest suite
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default: True
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manual: True
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common ghcstuffs-dev
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ghc-options:
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@@ -60,10 +60,10 @@ library
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Gyehoek.CPS.Close
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Gyehoek.CPS.Convert
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Gyehoek.CPS.Eval
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Gyehoek.CPS.Lower
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Gyehoek.CPS.Stackify
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Gyehoek.CPS.Syntax
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Gyehoek.Driver
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Gyehoek.Language
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Gyehoek.GenSym
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Gyehoek.Jalmot
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Gyehoek.Lift1
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@@ -77,6 +77,7 @@ library
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Gyehoek.Sexp.QQ
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Gyehoek.Sexp.Read
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Gyehoek.Sexp.Syntax
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Gyehoek.Stack.Lower
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Gyehoek.Stack.Syntax
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Gyehoek.Stack.VM
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Gyehoek.Wasm
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@@ -116,6 +117,8 @@ library
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, typed-process
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, unordered-containers
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, vector
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, lucid
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, prettyprinter-lucid
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hs-source-dirs: src
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default-language: GHC2024
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@@ -162,13 +165,17 @@ test-suite test
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-- https://github.com/martijnbastiaan/doctest-parallel/pull/66
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test-suite doctest
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import: ghcstuffs, ghcstuffs-dev
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type: exitcode-stdio-1.0
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hs-source-dirs: test
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build-depends: base
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import: ghcstuffs, ghcstuffs-dev
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type: exitcode-stdio-1.0
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hs-source-dirs: test
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build-depends:
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, base
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, gyehoek
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default-extensions: CPP
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main-is: doctest.hs
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main-is: doctest.hs
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if flag(doctest)
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build-depends: doctest-parallel >=0.1
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build-depends: doctest-parallel >=0.1
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else
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cpp-options: "-DGYEHOEK_NO_DOCTEST"
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cpp-options: -DGYEHOEK_NO_DOCTEST
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+12
-15
@@ -4,6 +4,7 @@ module Gyehoek.CPS.Close
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) where
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import Gyehoek.CPS.Syntax
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import Data.List (nub)
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import Gyehoek.GenSym
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import Gyehoek.Prelude
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@@ -11,31 +12,27 @@ import Gyehoek.Prelude
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close :: GenSym :> es => Exp -> Eff es Exp
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close = transformM \case
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ExpLetRec [(f, AbsLambda lam@(MkLambda bs kb m))] e -> do
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f_code <- gensym' @Name $ f ^. _Wrapped'. to (<> "-code")
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f_code <- gensym' @Name $ f ^. _Wrapped' . to (<> "-code")
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-- it would probably be most sane to generate a symbol for `env`,
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-- but we're reusing the lambda binding so we don't have to
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-- explicitly substitute recursive calls.
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let frees = freeWithBound' [f] lam
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let frees = nub $ free' lam
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let m' = ifoldr
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(\n x q -> [cps|(prim (env-ref #{f} #{n})
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(κ (#{x}) #{q}))|])
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(\n x q ->
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let p = if x == f then PrimEnv @Val else PrimEnvRef n
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in [cps|
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(prim #{p}
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(κ (#{x}) #{q}))
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|])
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m frees
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pure [cps|
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(letrec ((#{f_code} (λ (#{f} ##{bs} #{kb})
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(letrec ((#{f_code} (λ (##{bs} #{kb})
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#{m'})))
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(prim (make-closure ($ #{f_code}) ##{frees})
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(prim (make-closure #{f_code} ##{frees})
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(κ (#{f}) #{e})))
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|]
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|
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ExpApply f xs ktail -> do
|
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code <- gensym' @Name "code"
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pure [cps|
|
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(prim (env-code #{f})
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(κ (#{code})
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(#{code} #{f} ##{xs} #{ktail})))
|
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|]
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|
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e -> pure e
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|
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closeProgram :: GenSym :> es => Program -> Eff es Program
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closeProgram = traverseOf #body close
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closeProgram = traverseOf (#body . #body) close
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|
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+47
-28
@@ -12,6 +12,7 @@ import Data.List.NonEmpty (NonEmpty((:|)))
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import Control.Monad.Cont qualified as Cont
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import qualified Data.List.NonEmpty as NE
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import Gyehoek.Prelude
|
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import Debug.Pretty.Simple
|
||||
|
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|
||||
-- 뻘짓이어라
|
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@@ -23,58 +24,73 @@ telescope f = Cont.runCont . traverse (Cont.cont . f)
|
||||
|
||||
|
||||
|
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one :: a -> List a
|
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one a = [a]
|
||||
|
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oneOrUndefined :: List Val -> Val
|
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oneOrUndefined = \case
|
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[x] -> x
|
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_ -> ValImm ImmUndefined
|
||||
|
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convert1 :: (GenSym :> es) => Scm.Exp -> (Val -> Eff es Exp) -> Eff es Exp
|
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convert1 e k = convert e (k . oneOrUndefined)
|
||||
|
||||
-- | Transform an expression with a meta-continuation.
|
||||
convert
|
||||
:: forall es. (GenSym :> es)
|
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=> Scm.Exp -> (Val -> Eff es Exp) -> Eff es Exp
|
||||
=> Scm.Exp -> (List Val -> Eff es Exp) -> Eff es Exp
|
||||
|
||||
convert (Scm.ExpVar x) k = k $ ValVar x
|
||||
convert (Scm.ExpLit l) k = k . ValImm $ case l of
|
||||
convert (Scm.ExpVar x) k = k [ValVar x]
|
||||
convert (Scm.ExpLit l) k = k . one . ValImm $ case l of
|
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LitInt n -> ImmInt n
|
||||
LitBool b -> ImmBool b
|
||||
_ -> _
|
||||
|
||||
-- special case: call/cc is desugared during cps-conversion...
|
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convert (Scm.ExpPrim (PrimCallCC withcc)) k = do
|
||||
convert withcc \withcc' -> do
|
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cc <- gensym' @Name "cc"
|
||||
r <- gensym' "r"
|
||||
m <- k $ ValVar r
|
||||
ccish <- gensym' @Name "cc-ish"
|
||||
x <- gensym' @Name "x"
|
||||
pure [cps|
|
||||
(letrec ((#{cc} (κ (#{r}) #{m})))
|
||||
(letrec ((#{ccish} (λ (#{x} _) (continue #{cc} #{x}))))
|
||||
(#{withcc'} #{ccish} #{cc})))
|
||||
|]
|
||||
-- convert (Scm.ExpPrim (PrimCallCC withcc)) k = do
|
||||
-- convert1 withcc \withcc' -> do
|
||||
-- cc_l <- gensym' @Name "cc"
|
||||
-- r1_l <- gensym' @Name "r"
|
||||
-- r2_l <- gensym' @Name "r"
|
||||
-- ccish_l <- gensym' @Name "ccish"
|
||||
-- reified_cc_l <- gensym' @Name "reified-cc"
|
||||
-- m <- k [ValVar r1_l]
|
||||
-- pure [cps|
|
||||
-- (letrec ((#{cc_l} (κ (#{r1_l})
|
||||
-- #{m})))
|
||||
-- (prim (capture/cc)
|
||||
-- (κ (#{reified_cc_l})
|
||||
-- (#{withcc'} #{reified_cc_l} #{cc_l}))))
|
||||
-- |]
|
||||
|
||||
-- ...while all other prims are left as-is for later stages to
|
||||
-- handle..
|
||||
convert (Scm.ExpPrim p) k =
|
||||
telescope (convert @es) p \p' -> do
|
||||
telescope (convert1 @es) p \p' -> do
|
||||
r <- gensym' "r"
|
||||
ExpPrim p' . MkKappa [r] <$> k (ValVar r)
|
||||
ExpPrim p' . MkKappa [r] <$> k [ValVar r]
|
||||
|
||||
convert (Scm.ExpLambda xs e) k = do
|
||||
f <- gensym' "lambda-body"
|
||||
lam <- convertLambda xs e
|
||||
ke <- k $ ValVar f
|
||||
ke <- k [ValVar f]
|
||||
pure [cps|
|
||||
(letrec ((#{f} #{lam}))
|
||||
#{ke})
|
||||
|]
|
||||
|
||||
convert (Scm.ExpApply f xs) k =
|
||||
telescope (convert @es) (f:|xs) \(f':|xs') -> do
|
||||
telescope (convert1 @es) (f:|xs) \(f':|xs') -> do
|
||||
r <- gensym' "r"
|
||||
x <- gensym' "x"
|
||||
m <- k (ValVar x)
|
||||
pure $ ExpLetRec [(r, AbsKappa' [x] m)] $ ExpApply f' xs' r
|
||||
m <- k [ValVar x]
|
||||
pure $ ExpLetRec [(r, AbsKappa' [x] m)] $
|
||||
ExpApply f' xs' r
|
||||
|
||||
convert (Scm.ExpBegin xs) k = _
|
||||
convert (Scm.ExpBegin xs) k = telescope (convert @es) xs (k . NE.last)
|
||||
|
||||
convert (Scm.ExpIf c t f) k =
|
||||
convert c \c' ->
|
||||
convert1 c \c' ->
|
||||
ExpIf c' <$> convert t k <*> convert f k
|
||||
|
||||
-- let-bindings are desugared into continuation calls whose parameters
|
||||
@@ -82,7 +98,7 @@ convert (Scm.ExpIf c t f) k =
|
||||
-- sides.
|
||||
convert (Scm.ExpLet bs e) k =
|
||||
let rhss = bs ^.. each . _2
|
||||
in telescope (convert @es) rhss \rhss' -> do
|
||||
in telescope (convert1 @es) rhss \rhss' -> do
|
||||
e' <- convert e k
|
||||
kbody <- gensym' @Name "let-body"
|
||||
let bs' = bs ^.. each . _1
|
||||
@@ -105,12 +121,15 @@ convertLambda
|
||||
=> List Name -> Scm.Exp -> Eff es Lambda
|
||||
convertLambda bs m = do
|
||||
ktail <- gensym' "lambda-tail"
|
||||
m' <- convert m $ pure . ExpContinue ktail . (:[])
|
||||
m' <- convert1 m $ pure . ExpContinue (ValVar ktail) . (:[])
|
||||
pure [cps|(λ (##{bs} #{ktail}) #{m'})|]
|
||||
|
||||
convertProgram :: forall es. (GenSym :> es) => Scm.Program -> Eff es Program
|
||||
convertProgram p =
|
||||
MkProgram <$> telescope (convert @es) (p ^.. each . _Left) (pure . Halt)
|
||||
convertProgram p = do
|
||||
ktail <- gensym' "start-ktail"
|
||||
m <- telescope (convert1 @es) (p ^.. each . _Left)
|
||||
(pure . ExpContinue (ValVar ktail))
|
||||
pure . MkProgram $ MkLambda [] ktail m
|
||||
|
||||
convertExp :: forall es. (GenSym :> es) => Scm.Exp -> Eff es Exp
|
||||
convertExp e = convert e (pure . Halt1)
|
||||
convertExp e = convert e (pure . Halt)
|
||||
|
||||
+30
-10
@@ -2,6 +2,7 @@
|
||||
module Gyehoek.CPS.Eval
|
||||
( evalProgram
|
||||
, module Gyehoek.CPS.Syntax
|
||||
, evalExp
|
||||
) where
|
||||
|
||||
import Gyehoek.CPS.Syntax
|
||||
@@ -10,6 +11,7 @@ import Data.Maybe (fromMaybe)
|
||||
import Text.Show.Functions ()
|
||||
import qualified Data.HashMap.Strict as H
|
||||
import Gyehoek.Prelude
|
||||
import Debug.Pretty.Simple
|
||||
|
||||
|
||||
data Env = MkEnv
|
||||
@@ -23,26 +25,40 @@ eval :: Env -> Exp -> List Obj
|
||||
eval g (Halt xs) = evalVal g <$> xs
|
||||
|
||||
eval g (ExpContinue k xs) =
|
||||
case g ^. #labels . at k of
|
||||
case g ^. #labels . at k' of
|
||||
Just (h, AbsKappa' bs m) -> eval h' m
|
||||
where h' = h & #vars <>~ envOfBinds bs (evalVal g <$> xs)
|
||||
where
|
||||
h' = h & #vars <>~ envOfBinds bs (evalVal g <$> xs)
|
||||
_ -> error [i|not a kappa: #{k}|]
|
||||
where
|
||||
k' = case evalVal g k of
|
||||
ObjImm (ImmLabel x) -> x
|
||||
x -> error [i|expected label, got #{x}|]
|
||||
|
||||
eval g (ExpApply ((^?! #ValVar) -> f) xs ktail) =
|
||||
case g ^?! #labels . at f of
|
||||
eval g (ExpApply f xs ktail) =
|
||||
case g ^?! #labels . at f' of
|
||||
Just (h,AbsLambda' bs kb m) -> eval h' m
|
||||
where h' = h & #vars <>~ envOfBinds bs (evalVal g <$> xs)
|
||||
& #labels . at kb .~ (g ^. #labels . at ktail)
|
||||
Nothing -> error [i|undefined label: #{f}|]
|
||||
where
|
||||
f' = case evalVal g f of
|
||||
ObjImm (ImmLabel x) -> x
|
||||
x -> error [i|expected label, got #{x}|]
|
||||
|
||||
eval g (ExpLetRec [(b, ab)] e) = eval g' e
|
||||
where g' = g & #labels . at b ?~ (g,ab)
|
||||
where g' = g & #labels . at b ?~ ab
|
||||
|
||||
eval g (ExpPrim p (MkKappa bs e)) = case evalVal g <$> p of
|
||||
PrimAdd x y -> arithBinop (+) x y
|
||||
PrimMul x y -> arithBinop (*) x y
|
||||
PrimSub x y -> arithBinop (-) x y
|
||||
PrimDiv x y -> arithBinop div x y
|
||||
PrimMakeClosure x env -> ret [ObjHob (HobClosure lbl env) ]
|
||||
where
|
||||
lbl = case x of
|
||||
ObjImm (ImmLabel l) -> l
|
||||
_ -> error [i|expected label, got #{x}|]
|
||||
_ -> error [i|unhandled prim: #{p}|]
|
||||
where
|
||||
ret rs = eval
|
||||
@@ -69,11 +85,15 @@ emptyEnv = MkEnv
|
||||
-- special case of `eval` responsible for `halt` only covers terms
|
||||
-- of the form `(continue $halt xs …)`; other terms such as
|
||||
-- `($some-fn xs $halt)` just see an undefined label `$halt`.
|
||||
, labels = H.singleton "halt"
|
||||
( emptyEnv
|
||||
, AbsKappa' ["h0"] $ Halt [ValVar "h0"]
|
||||
)
|
||||
, labels = H.singleton "halt" $
|
||||
AbsKappa' ["h0"] $ Halt [ValVar "h0"]
|
||||
}
|
||||
|
||||
evalExp :: Exp -> List Obj
|
||||
evalExp = eval emptyEnv
|
||||
|
||||
evalProgram :: Program -> List Obj
|
||||
evalProgram (MkProgram e) = eval emptyEnv e
|
||||
evalProgram (MkProgram lam) = eval emptyEnv [cps|
|
||||
(letrec ((start #{lam}))
|
||||
(start halt))
|
||||
|]
|
||||
|
||||
@@ -1,325 +0,0 @@
|
||||
{-# LANGUAGE QuasiQuotes #-}
|
||||
{-# LANGUAGE OverloadedRecordDot #-}
|
||||
{-# LANGUAGE OverloadedLabels #-}
|
||||
{-# LANGUAGE TypeFamilies #-}
|
||||
{-# LANGUAGE MultilineStrings #-}
|
||||
{-# LANGUAGE OverloadedLists #-}
|
||||
{-# LANGUAGE ApplicativeDo #-}
|
||||
{-# LANGUAGE RecursiveDo #-}
|
||||
{- HLINT ignore "Use camelCase" -}
|
||||
module Gyehoek.CPS.Lower
|
||||
(lower, lowerProgram) where
|
||||
|
||||
import Gyehoek.CPS.Syntax
|
||||
import Data.Vector.Strict (Vector)
|
||||
import Control.Lens hiding (op)
|
||||
import Numeric.Natural
|
||||
import qualified Data.Vector.Strict as V
|
||||
import Gyehoek.Wasm qualified as Wasm
|
||||
import Gyehoek.Wasm hiding (Expr)
|
||||
import Control.Monad.Fix
|
||||
import Data.Text qualified as T
|
||||
import Data.Foldable (fold)
|
||||
import Gyehoek.Jalmot
|
||||
import Gyehoek.Sexp qualified as S
|
||||
import Gyehoek.Prelude
|
||||
|
||||
|
||||
data Env = MkEnv
|
||||
{ vars :: Vector Name
|
||||
, kvars :: Vector Name
|
||||
}
|
||||
deriving (Show, Generic)
|
||||
|
||||
type instance Index Env = Natural
|
||||
type instance IxValue Env = Name
|
||||
|
||||
instance Ixed Env where
|
||||
ix i = #vars . ix (fromIntegral i)
|
||||
|
||||
|
||||
|
||||
tonat :: Integral a => a -> Natural
|
||||
tonat = fromIntegral
|
||||
|
||||
-- | @makeSmallFixnum@ emits an expression injecting the i32 on top
|
||||
-- of the stack into the SCM unitype.
|
||||
makeSmallFixnum :: Wasm.Expr
|
||||
makeSmallFixnum = [expr|
|
||||
(@gyehoek "construct small fixnum")
|
||||
(i32.const 1)
|
||||
i32.shl
|
||||
ref.i31
|
||||
|]
|
||||
|
||||
getArgRegister :: Natural -> S.Datum
|
||||
getArgRegister n = S.Symbol [i|$arg#{n}|]
|
||||
|
||||
-- | Given an expression @e@ leaving a @ref eq@ atop the stack,
|
||||
-- @pushArg rt n e@ sets the nth slot of the arg-passing array to the
|
||||
-- result of @e@.
|
||||
pushArg :: Natural -> Wasm.Expr -> Wasm.Expr
|
||||
pushArg n e = [expr|
|
||||
(@gyehoek begin pushArg)
|
||||
##{e}
|
||||
(global.set #{reg})
|
||||
(@gyehoek end pushArg)
|
||||
|]
|
||||
where reg = getArgRegister n
|
||||
|
||||
-- | Pop the nth arg from the arg-passing array onto the stack.
|
||||
popArg :: Natural -> Wasm.Expr
|
||||
popArg n = [expr|
|
||||
(@gyehoek begin popArg)
|
||||
(global.get #{reg})
|
||||
ref.as_non_null
|
||||
(@gyehoek end popArg)
|
||||
|]
|
||||
where reg = getArgRegister n
|
||||
|
||||
|
||||
|
||||
lowerVal :: (HasCallStack, GenMod :> es) => Env -> Val -> Eff es Wasm.Expr
|
||||
|
||||
lowerVal g (ValImm imm) =
|
||||
pure $ case imm of
|
||||
ImmInt n -> [expr|
|
||||
(i32.const #{n})
|
||||
##{makeSmallFixnum}
|
||||
|]
|
||||
ImmBool b -> [expr|
|
||||
(i32.const #{b'})
|
||||
ref.i31
|
||||
|]
|
||||
where b' :: Int = if b then 0b11 else 0b01
|
||||
_ -> _
|
||||
|
||||
lowerVal g (ValVar x) = do
|
||||
pure [expr|(global.get #{l})|]
|
||||
where
|
||||
l = getArgRegister . fromIntegral . succ $ V.elemIndex x g.vars ^?! _Just
|
||||
|
||||
lower' :: (GenMod :> es) => Env -> Exp -> Eff es Wasm.Expr
|
||||
|
||||
lower' g (Halt [v]) = do
|
||||
arg <- pushArg 0 <$> lowerVal g v
|
||||
pure [expr|
|
||||
##{arg}
|
||||
(return_call $halt (i32.const 1))
|
||||
|]
|
||||
|
||||
lower' g e@(ExpPrim p k) =
|
||||
case p of
|
||||
PrimAdd x y -> lowerBinOp "i32.add" g x y k
|
||||
PrimMul x y -> lowerBinOp "i32.mul" g x y k
|
||||
|
||||
lower' g (ExpIf c t f) = do
|
||||
c' <- lowerVal g c
|
||||
t' <- lower' g t
|
||||
f' <- lower' g f
|
||||
pure [expr|
|
||||
##{c'}
|
||||
(call $gh-truthy?)
|
||||
(if (then ##{t'})
|
||||
(else ##{f'}))
|
||||
|]
|
||||
|
||||
lower' g (ExpLetRec [(r,AbsKappa kap)] e) = do
|
||||
idx <- lowerKappa g kap
|
||||
let g' = g & #kvars <>~ [r]
|
||||
e' <- lower' g' e
|
||||
pure [expr|
|
||||
(@gyehoek "push cont" :idx #{idx})
|
||||
(array.set $cont-stack-type
|
||||
(global.get $cont-stack)
|
||||
(global.get $cont-stack-top)
|
||||
(ref.func #{idx}))
|
||||
(global.set $cont-stack-top
|
||||
(i32.add (global.get $cont-stack-top)
|
||||
(i32.const 1)))
|
||||
##{e'}
|
||||
|]
|
||||
|
||||
lower' g (ExpLetRec [(r,AbsLambda lam)] e) = do
|
||||
idx <- lowerLambda g lam
|
||||
let g' = g & #vars <>~ [r]
|
||||
let n = succ $ length g.vars
|
||||
e' <- lower' g' e
|
||||
let reg = getArgRegister . fromIntegral $ n
|
||||
pure [expr|
|
||||
(i32.const 0)
|
||||
(ref.func #{idx})
|
||||
(struct.new $closure)
|
||||
(global.set #{reg})
|
||||
##{e'}
|
||||
|]
|
||||
|
||||
lower' g e@(ExpApply f xs ktail) = do
|
||||
let nargs = length xs
|
||||
f' <- lowerVal g f
|
||||
let l = succ $ V.elemIndex ktail g.kvars ^?! _Just
|
||||
args <- fold <$>
|
||||
itraverse (\i -> fmap (pushArg $ tonat i) . lowerVal g) xs
|
||||
pure [expr|
|
||||
(@gyehoek "load args")
|
||||
##{args}
|
||||
(i32.const 1)
|
||||
##{f'}
|
||||
(ref.cast (ref $closure))
|
||||
(struct.get $closure $code)
|
||||
(return_call_ref $cont-type)
|
||||
(@gyehoek todo
|
||||
(f' ##{f'})
|
||||
(ktail #{l}))
|
||||
|]
|
||||
|
||||
lower' g e@(ExpContinue k xs) = do
|
||||
let nargs = length xs
|
||||
args <- fold <$>
|
||||
itraverse (\i -> fmap (pushArg $ tonat i) . lowerVal g) xs
|
||||
pure [expr|
|
||||
(@gyehoek "push args")
|
||||
##{args}
|
||||
(@gyehoek "nargs")
|
||||
(i32.const #{nargs})
|
||||
(@gyehoek "pop cont stack")
|
||||
(global.get $cont-stack-top)
|
||||
(i32.const #{l})
|
||||
i32.sub
|
||||
(global.set $cont-stack-top)
|
||||
(global.get $cont-stack)
|
||||
(global.get $cont-stack-top)
|
||||
(array.get $cont-stack-type)
|
||||
ref.as_non_null
|
||||
(return_call_ref $cont-type)
|
||||
|]
|
||||
where
|
||||
l = succ $ V.elemIndex k g.kvars ^?! _Just
|
||||
|
||||
lower' g e = error . S.encodeOrShow' S.datumIso $ e
|
||||
|
||||
lowerKappa :: GenMod :> es => Env -> Kappa -> Eff es Idx
|
||||
lowerKappa g e@(MkKappa xs m) = do
|
||||
let g' = g & #vars <>~ V.fromList xs
|
||||
m' <- lower' g' m
|
||||
idx <- Wasm.defineFunction [wat|
|
||||
(func (param i32)
|
||||
(local (ref eq) (ref eq) (ref eq) (ref eq) (ref eq))
|
||||
##{m'})
|
||||
|]
|
||||
Wasm.emit [wats|(elem declare funcref (ref.func #{idx}))|]
|
||||
pure idx
|
||||
|
||||
lowerLambda :: GenMod :> es => Env -> Lambda -> Eff es Idx
|
||||
lowerLambda g e@(MkLambda xs ktail m) = do
|
||||
let g' = g & #vars .~ V.fromList xs
|
||||
& #kvars <>~ [ktail]
|
||||
m' <- lower' g' m
|
||||
idx <- Wasm.defineFunction [wat|
|
||||
(func (param i32)
|
||||
(local (ref eq) (ref eq) (ref eq) (ref eq) (ref eq))
|
||||
##{m'})
|
||||
|]
|
||||
Wasm.emit [wats|(elem declare funcref (ref.func #{idx}))|]
|
||||
pure idx
|
||||
|
||||
lowerBinOp
|
||||
:: (GenMod :> es)
|
||||
=> Text -> Env -> Val -> Val -> Kappa -> Eff es Wasm.Expr
|
||||
lowerBinOp op g x y (MkKappa [r] e) = do
|
||||
let op' = S.Symbol op
|
||||
let g' = g & #vars <>~ [r]
|
||||
let n = succ $ length (g ^. #vars)
|
||||
let reg = getArgRegister . fromIntegral $ n
|
||||
x' <- lowerVal g x
|
||||
y' <- lowerVal g y
|
||||
e' <- lower' g' e
|
||||
pure [expr|
|
||||
##{x'}
|
||||
(i31.get_s (ref.cast (ref i31)))
|
||||
(i32.const 1)
|
||||
i32.shr_u
|
||||
##{y'}
|
||||
(i31.get_s (ref.cast (ref i31)))
|
||||
(i32.const 1)
|
||||
i32.shr_u
|
||||
#{op'}
|
||||
##{makeSmallFixnum}
|
||||
(global.set #{reg})
|
||||
##{e'}
|
||||
|]
|
||||
|
||||
|
||||
|
||||
emitRuntime :: GenMod :> es => Eff es ()
|
||||
emitRuntime = mfix \runtime -> do
|
||||
Wasm.defineFunctions [wats|
|
||||
(import "gyehoek" "write" (func $gh-write (param (ref eq))))
|
||||
(import "gyehoek" "truthy?" (func $gh-truthy? (param (ref eq))
|
||||
(result i32)))
|
||||
|]
|
||||
-- cont stack
|
||||
Wasm.defineTypes [wats|
|
||||
(type $heap-object (sub (struct (field $hash (mut i32)))))
|
||||
(type $cont-type (func (param i32)))
|
||||
(type $cont-stack-type (array (mut (ref null $cont-type))))
|
||||
(type $closure (sub $heap-object
|
||||
(struct (field $hash (mut i32))
|
||||
(field $code (ref $cont-type)))))
|
||||
|]
|
||||
Wasm.defineGlobals [wats|
|
||||
(global $cont-stack-top (mut i32) (i32.const 0))
|
||||
(global $cont-stack (ref $cont-stack-type)
|
||||
(array.new_default $cont-stack-type (i32.const 128)))
|
||||
|]
|
||||
-- arg registers
|
||||
Wasm.defineGlobals [wats|
|
||||
(global $arg0 (mut (ref null eq)) (ref.null eq))
|
||||
(global $arg1 (mut (ref null eq)) (ref.null eq))
|
||||
(global $arg2 (mut (ref null eq)) (ref.null eq))
|
||||
(global $arg3 (mut (ref null eq)) (ref.null eq))
|
||||
(global $arg4 (mut (ref null eq)) (ref.null eq))
|
||||
(global $arg5 (mut (ref null eq)) (ref.null eq))
|
||||
(global $arg6 (mut (ref null eq)) (ref.null eq))
|
||||
(global $arg7 (mut (ref null eq)) (ref.null eq))
|
||||
(global $arg8 (mut (ref null eq)) (ref.null eq))
|
||||
(global $arg9 (mut (ref null eq)) (ref.null eq))
|
||||
(global $arg10 (mut (ref null eq)) (ref.null eq))
|
||||
(global $arg11 (mut (ref null eq)) (ref.null eq))
|
||||
(global $arg12 (mut (ref null eq)) (ref.null eq))
|
||||
(global $arg13 (mut (ref null eq)) (ref.null eq))
|
||||
(global $arg14 (mut (ref null eq)) (ref.null eq))
|
||||
(global $arg15 (mut (ref null eq)) (ref.null eq))
|
||||
|]
|
||||
-- other things 😼
|
||||
Wasm.defineGlobal [wat|
|
||||
(global $result (mut (ref null eq))
|
||||
(ref.null eq))
|
||||
|]
|
||||
-- procedures
|
||||
let arg = popArg 0
|
||||
Wasm.defineFunction [wat|
|
||||
(func $halt (param i32)
|
||||
##{arg}
|
||||
(global.set $result))
|
||||
|]
|
||||
pure ()
|
||||
|
||||
lower :: Exp -> Eff es Text
|
||||
lower e = fmap Wasm.renderModule . Wasm.execGenMod $ do
|
||||
runtime <- emitRuntime
|
||||
let g = MkEnv mempty mempty
|
||||
e' <- lower' g e
|
||||
Wasm.defineFunction [wat|
|
||||
(func $scm-entry (param i32)
|
||||
(local (ref eq) (ref eq) (ref eq) (ref eq) (ref eq))
|
||||
##{e'})
|
||||
|]
|
||||
Wasm.defineFunction [wat|
|
||||
(func (export "main")
|
||||
(call $scm-entry (i32.const 0))
|
||||
(call $gh-write (ref.as_non_null (global.get $result))))
|
||||
|]
|
||||
|
||||
lowerProgram :: Program -> Eff es Text
|
||||
lowerProgram (MkProgram e) = lower e
|
||||
+124
-83
@@ -1,7 +1,6 @@
|
||||
{-# LANGUAGE OverloadedLists #-}
|
||||
module Gyehoek.CPS.Stackify
|
||||
( stackifyExp
|
||||
, stackifyProgram
|
||||
( stackifyProgram
|
||||
, module Gyehoek.CPS.Syntax
|
||||
) where
|
||||
|
||||
@@ -13,8 +12,11 @@ import Gyehoek.GenSym
|
||||
import Effectful.Writer.Static.Shared
|
||||
import Data.Foldable
|
||||
import qualified Data.HashMap.Strict as H
|
||||
import Data.List (elemIndex)
|
||||
import Data.List (elemIndex, nub)
|
||||
import Data.Text qualified as T
|
||||
import Gyehoek.Prelude
|
||||
import Debug.Pretty.Simple
|
||||
import qualified Gyehoek.Sexp as S
|
||||
|
||||
|
||||
type Stackify = Writer Stk.Program
|
||||
@@ -23,9 +25,10 @@ runStackify :: Eff (Stackify : es) a -> Eff es (a, Stk.Program)
|
||||
runStackify = runWriter
|
||||
|
||||
live :: Free a => Env -> a -> List Name
|
||||
live g e = free' e & filter \x ->
|
||||
x `H.member` g.bound
|
||||
&& not (x `elem` g.contStack)
|
||||
-- TODO: free' should return an OSet lol
|
||||
live g e = nub (free' e) & filter \x ->
|
||||
x `elem` g.bound
|
||||
-- && not (x `elem` g.contStack)
|
||||
|
||||
data BlockBuilder
|
||||
= Code (List Stk.Instr) BlockBuilder
|
||||
@@ -44,22 +47,14 @@ stackify
|
||||
:: (GenSym :> es, Stackify :> es)
|
||||
=> Env -> Exp -> Eff es BlockBuilder
|
||||
|
||||
stackify g (ExpLetRec [(f, kap@(AbsKappa' xs m))] e) = do
|
||||
let vs = (f, Stk.ValLabel f) : (bindReg <$> xs)
|
||||
let ls = live g kap
|
||||
m' <- stackify (g & #bound .~ H.fromList (vs ++ (bindReg <$> ls))) m
|
||||
emitRoutine $
|
||||
Stk.MkRoutine f xs . buildBlock $
|
||||
Code [Stk.Pop x | x <- ls] m'
|
||||
let g' = g & #bound . at f ?~ Stk.ValLabel f
|
||||
& #liveness . at f ?~ ls
|
||||
stackify g' e
|
||||
stackify g (ExpLetRec [(f, AbsKappa kap)] e) = do
|
||||
kap' <- stackifyKappa g kap
|
||||
emitRoutine . Stk.MkRoutine (MkLabel f) . buildBlock $ kap'
|
||||
stackify g e
|
||||
|
||||
stackify g (ExpLetRec [(f, AbsLambda' xs k m)] e) = do
|
||||
let vs = (k:xs) <&> \x -> (x, Stk.ValReg x)
|
||||
m' <- stackify (g & #bound .~ H.fromList vs
|
||||
& #contStack %~ (k:)) m
|
||||
emitRoutine $ Stk.MkRoutine f xs (buildBlock m')
|
||||
stackify g (ExpLetRec [(f, AbsLambda lam)] e) = do
|
||||
lam' <- stackifyLambda g (MkLabel f) lam
|
||||
emitRoutine lam'
|
||||
stackify g e
|
||||
|
||||
stackify g (ExpIf c t f) = do
|
||||
@@ -68,92 +63,138 @@ stackify g (ExpIf c t f) = do
|
||||
f' <- buildBlock <$> stackify g f
|
||||
pure . Tail $ Stk.If c' t' f'
|
||||
|
||||
stackify g (ExpApply f xs ktail) = pure $
|
||||
Code [ Stk.PushCont k ] $
|
||||
Code [ Stk.Push (Stk.ValReg l) | l <- ls ] $
|
||||
Tail (Stk.TailCall (stackifyVal g f) (stackifyVal g <$> xs))
|
||||
where
|
||||
k = var g ktail
|
||||
ls = fold $ (k ^? #ValImm . #ImmLabel)
|
||||
>>= \klbl -> g ^. #liveness . at klbl
|
||||
|
||||
stackify g (ExpContinue k xs) =
|
||||
-- return continuations require popping the stack. how do we know
|
||||
-- when a continuation is a return continuation? is this a correct
|
||||
-- test?
|
||||
case elemIndex k g.contStack of
|
||||
Nothing -> pure . Tail $ Stk.TailCall (Stk.ValLabel k) xs'
|
||||
Just j -> do
|
||||
ktail <- gensym' @Name $ k ^. _Wrapped'
|
||||
pure $
|
||||
Code (replicate j $ Stk.PopCont "_") $
|
||||
Code [Stk.PopCont ktail] $
|
||||
Tail (Stk.TailCall (Stk.ValReg ktail) xs')
|
||||
where xs' = stackifyVal g <$> xs
|
||||
|
||||
stackify g (ExpPrim p (MkKappa [x] e)) = do
|
||||
e' <- stackify (g & #bound . at x ?~ Stk.ValReg x) e
|
||||
stackify g (ExpApply f xs ktail) = do
|
||||
pure $
|
||||
Code [ Stk.Prim x (stackifyVal g <$> p) ] $
|
||||
e'
|
||||
Code [ Stk.Push $ stackifyVal g (ValVar ktail)
|
||||
, Stk.Push $ stackifyVal g f
|
||||
] $
|
||||
Code (pushArgs g xs) $
|
||||
Tail (Stk.Call (length xs))
|
||||
|
||||
stackify g e@(ExpContinue k xs)
|
||||
| isn't (#_ValVar . only g.tail) k = pure $
|
||||
Code [ Stk.Push (stackifyVal g k) ] $
|
||||
Code (pushArgs g xs) $
|
||||
Tail $ Stk.TailCall (length xs)
|
||||
| otherwise = pure $
|
||||
Code (pushArgs g xs) $
|
||||
Tail (Stk.Return (length xs))
|
||||
|
||||
stackify g (ExpPrim (PrimCallCC withcc) cc) = do
|
||||
cc' <- stackifyKappa g cc
|
||||
cc_l <- gensym' @Label "cc"
|
||||
emitRoutine . Stk.MkRoutine cc_l . buildBlock $ cc'
|
||||
pure $
|
||||
Code [ Stk.Push $ stackifyVal g withcc
|
||||
, Stk.Push $ stackifyVal g (ValLabel cc_l)
|
||||
] $
|
||||
Tail Stk.CallCC
|
||||
|
||||
stackify g (ExpPrim p kap) = do
|
||||
kap' <- stackifyKappa g kap
|
||||
pure $ Code [ Stk.Prim (stackifyVal g <$> p) ] kap'
|
||||
|
||||
stackify _ e = error [i|unimplemented exp: #{e}|]
|
||||
|
||||
loadArgs :: List Name -> List Stk.Instr
|
||||
loadArgs = imapOf itraversed \n x -> Stk.Load (MkReg x) n
|
||||
|
||||
pushArgs :: Env -> List Val -> List Stk.Instr
|
||||
pushArgs g args = [ Stk.Push $ stackifyVal g x | x <- reverse args ]
|
||||
|
||||
-- affine
|
||||
_ValName :: Traversal' Val Name
|
||||
_ValName = failing #_ValVar (#_ValImm . #_ImmLabel . #_MkLabel)
|
||||
|
||||
stackifyKappa
|
||||
:: (Stackify :> es, GenSym :> es)
|
||||
=> Env -> Kappa
|
||||
-> Eff es BlockBuilder
|
||||
stackifyKappa g (MkKappa xs m) = do
|
||||
let g' = g & #bound <>:~ xs
|
||||
Code (loadArgs g'.bound)
|
||||
<$> stackify g' m
|
||||
|
||||
stackifyLambda
|
||||
:: (Stackify :> es, GenSym :> es)
|
||||
=> Env -> Label -> Lambda
|
||||
-> Eff es Stk.Routine
|
||||
stackifyLambda g name (MkLambda xs k m) = do
|
||||
m' <- stackify (g & #bound .~ xs & #tail .~ k) m
|
||||
pure $
|
||||
Stk.MkRoutine name . buildBlock $
|
||||
Code (loadArgs xs) $
|
||||
Code [Stk.Load (MkReg k) (length xs + 1)] m'
|
||||
|
||||
stackifyVal :: Env -> Val -> Stk.Val
|
||||
stackifyVal g = \case
|
||||
ValImm imm -> Stk.ValImm imm
|
||||
ValVar v -> var g v
|
||||
ValVar v -> case regOf g v of
|
||||
Just r -> Stk.ValReg r
|
||||
Nothing -> Stk.ValLabel (MkLabel v)
|
||||
v -> error [i|unimplemented val: #{v}|]
|
||||
|
||||
var :: Env -> Name -> Stk.Val
|
||||
var g v = case g ^. #bound . at v of
|
||||
Just x -> x
|
||||
Nothing -> Stk.ValLabel v
|
||||
|
||||
bindReg :: Name -> (Name, Stk.Val)
|
||||
bindReg x = (x, Stk.ValReg x)
|
||||
regOf :: Env -> Name -> Maybe Reg
|
||||
regOf g x
|
||||
| x `elem` g.bound || x == g.tail = Just . MkReg $ x
|
||||
| otherwise = Nothing
|
||||
|
||||
|
||||
|
||||
data Env = MkEnv
|
||||
{ bound :: HashMap Name Stk.Val
|
||||
-- | `bound` tracks the stack lifetime of bound variables.
|
||||
{ bound :: List Name
|
||||
-- | for each locally-bound continuation @k@, @liveness@ has an
|
||||
-- entry @(k,ls)@ where @ls@ is the sequence of registers @k@
|
||||
-- expects to find saved on the stack.
|
||||
, liveness :: HashMap Name (List Name)
|
||||
, contStack :: List Name
|
||||
, liveness :: HashMap Label (List Name)
|
||||
, tail :: Name
|
||||
}
|
||||
deriving (Show, Generic)
|
||||
|
||||
emptyEnv :: Env
|
||||
emptyEnv = MkEnv mempty mempty ["halt"]
|
||||
emptyEnv = MkEnv
|
||||
{ bound = mempty
|
||||
, liveness = mempty
|
||||
, tail = "halt"
|
||||
}
|
||||
|
||||
|
||||
|
||||
stackifyExp :: GenSym :> es => Name -> Exp -> Eff es Stk.Program
|
||||
stackifyExp lbl e = do
|
||||
(code,p) <- runStackify $ stackify emptyEnv e
|
||||
pure $ p <> [ Stk.MkRoutine lbl [] (buildBlock code) ]
|
||||
|
||||
stackifyProgram :: GenSym :> es => Program -> Eff es Stk.Program
|
||||
stackifyProgram (MkProgram e) = stackifyExp "main" e
|
||||
stackifyProgram (MkProgram lam) = do
|
||||
let g = emptyEnv
|
||||
(_,p) <- runStackify $ emitRoutine =<< stackifyLambda g "start" lam
|
||||
pure p
|
||||
|
||||
|
||||
letfn :: Program
|
||||
letfn = [cps|
|
||||
(λ (start-ktail0)
|
||||
(letrec ((lambda-body1
|
||||
(λ (x lambda-tail2)
|
||||
(prim (* x x) (κ (r3) (continue lambda-tail2 r3))))))
|
||||
(letrec ((let-body6
|
||||
(κ (square)
|
||||
(letrec ((r4 (κ (x5) (continue start-ktail0 x5))))
|
||||
(square 4 r4)))))
|
||||
(continue let-body6 lambda-body1))))
|
||||
|]
|
||||
|
||||
fac :: Program
|
||||
fac = [cps|
|
||||
(letrec ((fac (λ (n ktail)
|
||||
(prim (zero? n)
|
||||
(κ (x0)
|
||||
(if x0
|
||||
(continue ktail 1)
|
||||
(prim (- n 1)
|
||||
(κ (x1)
|
||||
(letrec ((fac-k0
|
||||
(κ (x2)
|
||||
(prim (* n x2)
|
||||
(κ (x3)
|
||||
(continue ktail x3))))))
|
||||
(fac x1 fac-k0))))))))))
|
||||
(fac 6 halt))
|
||||
blah :: Program
|
||||
blah = [cps|
|
||||
(λ (ktail0)
|
||||
(letrec ((fac (λ (n ktail)
|
||||
(prim (zero? n)
|
||||
(κ (x0)
|
||||
(if x0
|
||||
(continue ktail 1)
|
||||
(prim (- n 1)
|
||||
(κ (x1)
|
||||
(letrec ((fac-k0
|
||||
(κ (x2)
|
||||
(prim (* n x2)
|
||||
(κ (x3)
|
||||
(continue ktail x3))))))
|
||||
(fac x1 fac-k0))))))))))
|
||||
(fac 6 halt)))
|
||||
|]
|
||||
|
||||
+70
-55
@@ -18,6 +18,8 @@ module Gyehoek.CPS.Syntax
|
||||
, Imm(..)
|
||||
, Obj(..)
|
||||
, Hob(..)
|
||||
, Label(..)
|
||||
, Reg(..)
|
||||
, pattern Halt
|
||||
, pattern Halt1
|
||||
, _MkKappa
|
||||
@@ -36,7 +38,7 @@ module Gyehoek.CPS.Syntax
|
||||
, Abs(..)
|
||||
, Free(..)
|
||||
, pattern ValLabel
|
||||
, labelName -- don't like that this is part of the api
|
||||
, pattern ObjLabel
|
||||
)
|
||||
where
|
||||
|
||||
@@ -52,6 +54,8 @@ import Gyehoek.Prelude hiding (op)
|
||||
import Gyehoek.Sexp (Datum)
|
||||
import Gyehoek.Sexp (G, (:-)(..))
|
||||
import qualified Data.InvertibleGrammar.Base as IG
|
||||
import Gyehoek.GenSym (Gen)
|
||||
import Data.String (IsString)
|
||||
|
||||
-- Data types
|
||||
|
||||
@@ -60,13 +64,24 @@ data Val
|
||||
| ValVar Name
|
||||
deriving (Show, Generic, Data, Eq)
|
||||
|
||||
pattern ValLabel :: Name -> Val
|
||||
pattern ValLabel :: Label -> Val
|
||||
pattern ValLabel x = ValImm (ImmLabel x)
|
||||
|
||||
newtype Label = MkLabel { inner :: Name }
|
||||
deriving stock (Generic, Data)
|
||||
deriving newtype (Show, Eq, Gen, IsString, Hashable)
|
||||
deriving anyclass (NFData, Wrapped)
|
||||
|
||||
newtype Reg = MkReg { inner :: Name }
|
||||
deriving stock (Generic, Data)
|
||||
deriving newtype (Show, Eq, Gen, IsString, Hashable)
|
||||
deriving anyclass (NFData, Wrapped)
|
||||
|
||||
data Imm
|
||||
= ImmInt Int
|
||||
| ImmBool Bool
|
||||
| ImmLabel Name
|
||||
| ImmLabel Label
|
||||
| ImmUndefined
|
||||
deriving stock (Show, Generic, Data, Eq)
|
||||
deriving anyclass (NFData)
|
||||
|
||||
@@ -76,9 +91,14 @@ data Obj
|
||||
deriving stock (Show, Generic, Data, Eq)
|
||||
deriving anyclass (NFData)
|
||||
|
||||
pattern ObjLabel l = ObjImm (ImmLabel l)
|
||||
|
||||
-- | a heap object.
|
||||
data Hob
|
||||
= HobClosure { label :: Name, env :: List Obj }
|
||||
= HobClosure { label :: Label, env :: List Obj }
|
||||
-- should a continuation have a label, or an Obj?
|
||||
| HobContinuation { cont :: Obj, stack :: NonEmpty (List Obj) }
|
||||
| HobPair Obj Obj
|
||||
deriving stock (Show, Generic, Data, Eq)
|
||||
deriving anyclass (NFData)
|
||||
|
||||
@@ -102,7 +122,7 @@ pattern AbsLambda' xs e ktail = AbsLambda (MkLambda xs e ktail)
|
||||
data Exp
|
||||
= ExpPrim (Prim Val) Kappa
|
||||
| ExpLetRec { binders :: List (Name, Abs), body :: Exp }
|
||||
| ExpContinue Name (List Val)
|
||||
| ExpContinue Val (List Val)
|
||||
| ExpIf Val Exp Exp
|
||||
| ExpApply
|
||||
{ op :: Val
|
||||
@@ -112,16 +132,16 @@ data Exp
|
||||
deriving (Show, Generic, Data, Eq)
|
||||
|
||||
pattern Halt :: List Val -> Exp
|
||||
pattern Halt xs = ExpContinue "halt" xs
|
||||
pattern Halt xs = ExpContinue (ValLabel "halt") xs
|
||||
|
||||
pattern Halt1 :: Val -> Exp
|
||||
pattern Halt1 x = ExpContinue "halt" [x]
|
||||
pattern Halt1 x = ExpContinue (ValLabel "halt") [x]
|
||||
|
||||
data Def = DefConstant Name Exp
|
||||
deriving (Show, Generic, Data)
|
||||
|
||||
data Program = MkProgram
|
||||
{ body :: Exp
|
||||
{ body :: Lambda
|
||||
}
|
||||
deriving (Show, Generic, Data)
|
||||
|
||||
@@ -167,51 +187,64 @@ instance S.DatumIso Imm where
|
||||
datumIso = S.match
|
||||
$ S.With (. S.int)
|
||||
$ S.With (. S.datumIso)
|
||||
$ S.With (. labelName)
|
||||
$ S.With (. S.datumIso)
|
||||
$ S.With (. S.unreadable (const "#<undefined>"))
|
||||
$ S.End
|
||||
|
||||
labelName :: S.DatumGrammar Name
|
||||
labelName = S.coproduct
|
||||
[ S.decorate S.SynConstant >>> S.datumIso @Name >>> S.prismIso
|
||||
(S.expected "label")
|
||||
(prefixed @Name "$")
|
||||
, S.list $ S.el (S.sym "$") >>> S.el (S.datumIso @Name)
|
||||
]
|
||||
instance S.DatumIso Label where
|
||||
datumIso = S.with \g -> S.coproduct
|
||||
[ S.decorate S.SynConstant >>> S.datumIso @Name >>> S.prismIso
|
||||
(S.expected "label")
|
||||
(prefixed @Name "$")
|
||||
, S.list $ S.el (S.sym "$") >>> S.el (S.datumIso @Name)
|
||||
]
|
||||
>>> g
|
||||
|
||||
instance S.DatumIso Reg where
|
||||
datumIso = S.with \g ->
|
||||
S.decorate S.SynVariable >>> S.datumIso @Name >>> S.prismIso
|
||||
(S.expected "register")
|
||||
(prefixed @Name "%")
|
||||
>>> g
|
||||
|
||||
instance S.DatumIso Hob where
|
||||
datumIso = S.match
|
||||
$ S.With (. closure)
|
||||
$ S.With (. cont)
|
||||
$ S.With (. conspair)
|
||||
$ S.End
|
||||
where
|
||||
conspair = S.dottedList (S.el S.datumIso) S.datumIso
|
||||
-- closures can be printed, but not parsed.
|
||||
closure :: G (Datum :- t) (List Obj :- Name :- t)
|
||||
closure :: G (Datum :- t) (List Obj :- Label :- t)
|
||||
closure = IG.Flip $ IG.PartialIso
|
||||
(\(env:-code:-t) -> [S.sx|(<closure> #{code} ##{env})|] :- t)
|
||||
(\(env:-code:-t) -> S.Unreadable [i|\#<procedure $#{code}>|] :- t)
|
||||
(const . Left $ mempty)
|
||||
cont :: G (Datum :- t) (NonEmpty (List Obj) :- _ :- t)
|
||||
cont = IG.Flip $ IG.PartialIso
|
||||
(\(_ :- l :- t) ->
|
||||
let x = S.encodeOrShow' @Text S.datumIso l
|
||||
in S.Unreadable [i|\#<continuation #{x}>|] :- t)
|
||||
(const . Left $ mempty)
|
||||
|
||||
instance S.DatumIso Lambda where
|
||||
datumIso = S.match
|
||||
$ S.With (. lambda)
|
||||
$ S.End
|
||||
datumIso = S.with (lam >>>)
|
||||
where
|
||||
lambda = S.list $
|
||||
S.el S.lambdaKeyword
|
||||
>>> S.el binders
|
||||
>>> S.el S.datumIso
|
||||
lam :: forall t. G (Datum :- t) (Exp :- Name :- List Name :- t)
|
||||
lam = S.lambdaLike
|
||||
S.lambdaKeyword
|
||||
binders
|
||||
(S.el $ S.datumIso @Exp)
|
||||
binders :: forall t. G (Datum :- t) (Name :- List Name :- t)
|
||||
binders = S.list $
|
||||
S.rest (S.datumIso @Name)
|
||||
>>> S.onTail (S.flipped $ IG.PartialIso
|
||||
(\(ktail:-args:-t) -> (args ++ [ktail]) :- t)
|
||||
(\(args:-t) -> case args ^? _Snoc of
|
||||
Just (args',ktail) -> Right $ ktail :- args' :- t
|
||||
Nothing -> Left $ S.expected "cont param")
|
||||
)
|
||||
binders =
|
||||
S.list (S.rest $ S.datumIso @Name)
|
||||
>>> S.flipped S.snoced
|
||||
>>> S.swap
|
||||
|
||||
instance S.DatumIso Kappa where
|
||||
datumIso = S.with \g ->
|
||||
S.lambdaLike S.kappaKeyword
|
||||
(S.list $ S.rest (S.datumIso @Name))
|
||||
(S.datumIso @(List Name))
|
||||
(S.el $ S.datumIso @Exp)
|
||||
>>> g
|
||||
|
||||
@@ -260,13 +293,13 @@ instance S.DatumIso Exp where
|
||||
>>> S.el S.datumIso
|
||||
|
||||
instance S.DatumIso Program where
|
||||
datumIso = S.with \prog -> S.datumIso @Exp >>> prog
|
||||
datumIso = S.with \prog -> S.datumIso @Lambda >>> prog
|
||||
|
||||
|
||||
-- quasiquoters
|
||||
|
||||
class Data a => CPS a where
|
||||
toCPS :: Datum -> a
|
||||
toCPS :: HasCallStack => Datum -> a
|
||||
|
||||
instance CPS Exp where toCPS = S.fromDatumUnsafe S.datumIso
|
||||
instance CPS Val where toCPS = S.fromDatumUnsafe S.datumIso
|
||||
@@ -315,7 +348,7 @@ instance Free Exp where
|
||||
foldMapOf (each . _2) (freeWithBound' bound') bs
|
||||
<> freeWithBound' bound' m
|
||||
where bound' = bound & insertFrom (bs ^.. each . _1)
|
||||
ExpContinue k xs -> filter (`notElem` bound) (k : xs ^.. each . #ValVar)
|
||||
ExpContinue k xs -> filter (`notElem` bound) ((k:xs) ^.. each . #ValVar)
|
||||
ExpIf c t f ->
|
||||
(c ^.. #ValVar . filtered (`notElem` bound))
|
||||
<> freeWithBound' bound t <> freeWithBound' bound f
|
||||
@@ -330,21 +363,3 @@ instance Free Kappa where
|
||||
instance Free Lambda where
|
||||
freeWithBound' bound (MkLambda xs k m) =
|
||||
freeWithBound' (bound & insertFrom (k:xs)) m
|
||||
|
||||
|
||||
|
||||
class Vars a where
|
||||
-- | Traverse the immediate variables of an expression.
|
||||
vars :: Traversal' a Name
|
||||
|
||||
instance Vars Val where
|
||||
vars k (ValVar x) = ValVar <$> k x
|
||||
vars _ x = pure x
|
||||
|
||||
instance Vars a => Vars (Prim a) where
|
||||
vars k p = traverseOf (each . vars) k p
|
||||
|
||||
instance Vars Exp where
|
||||
vars k (ExpPrim p kap) = ExpPrim <$> vars k p <*> pure kap
|
||||
vars k (ExpContinue kname xs) = ExpContinue <$> k kname <*> pure xs
|
||||
vars _ e = pure e
|
||||
|
||||
+13
-11
@@ -1,7 +1,7 @@
|
||||
module Gyehoek.Driver
|
||||
(main, lower_e2e, convert_e2e, parse_e2e, readScm, eval_e2e)
|
||||
where
|
||||
|
||||
|
||||
import Gyehoek.Options
|
||||
import Prelude hiding (readFile)
|
||||
import Options.Applicative
|
||||
@@ -17,7 +17,7 @@ import qualified Data.Text.Encoding as T
|
||||
import System.IO (Handle)
|
||||
import System.IO qualified as IO
|
||||
import Gyehoek.CPS.Convert
|
||||
import Gyehoek.CPS.Lower
|
||||
import Gyehoek.Stack.Lower
|
||||
import Gyehoek.CPS.Eval qualified as CPS
|
||||
import Control.Monad
|
||||
import Text.Pretty.Simple (pShowNoColor)
|
||||
@@ -26,7 +26,7 @@ import System.Environment.Blank (getEnvDefault)
|
||||
import qualified Data.Text.IO as TIO
|
||||
import qualified Data.ByteString.Lazy as BS
|
||||
import Gyehoek.CPS.Stackify (stackifyProgram)
|
||||
import Gyehoek.Stack.VM (eval, writeObj, Obj)
|
||||
import Gyehoek.Stack.VM (eval, writeObj, Obj, traceEval)
|
||||
import qualified Data.Text as T
|
||||
import Gyehoek.Stack.Syntax qualified as Stk
|
||||
import Gyehoek.CPS.Close (closeProgram)
|
||||
@@ -35,14 +35,14 @@ import Control.Arrow ((>>>))
|
||||
import Gyehoek.Prelude
|
||||
import Gyehoek.Jalmot
|
||||
import qualified Gyehoek.Sexp as S
|
||||
|
||||
|
||||
|
||||
main :: IO ()
|
||||
main = do
|
||||
opts <- execParser $ info (helper <*> parser) fullDesc
|
||||
runJalmotIO . runFileSystem . runGenSym . driver $ opts
|
||||
|
||||
|
||||
|
||||
|
||||
-- hPutStr :: FileSystem :> es => Handle -> Text -> Eff es ()
|
||||
-- hPutStr h = FB.hPutStr h . T.encodeUtf8
|
||||
@@ -126,7 +126,7 @@ driver opts = do
|
||||
dumpOrRun opts.dumpStackified (rt_is #Stackify)
|
||||
(stackifyProgram closedCps)
|
||||
(hPutStrLn FS.stdout <=< S.encodeDataWith S.dataIso)
|
||||
(eval >>> fmap writeObj
|
||||
(eval >=> fmap writeObj
|
||||
>>> T.unwords
|
||||
>>> hPutStrLn FS.stdout)
|
||||
when (rt_is #CPS) do
|
||||
@@ -135,10 +135,12 @@ driver opts = do
|
||||
& fmap writeObj
|
||||
& T.unwords
|
||||
& hPutStrLn FS.stdout
|
||||
dumpOrRun opts.inspectWasm (rt_is #Wasm)
|
||||
(lowerProgram cps)
|
||||
inspectWasm
|
||||
(\wat -> withFile opts.output FS.WriteMode \h -> hPutStrLn h wat)
|
||||
-- dumpOrRun opts.inspectWasm (rt_is #Wasm)
|
||||
-- (lowerProgram cps)
|
||||
-- inspectWasm
|
||||
-- (\wat -> withFile opts.output FS.WriteMode \h -> hPutStrLn h wat)
|
||||
when opts.traceStackified do
|
||||
stackifyProgram closedCps >>= traceEval
|
||||
|
||||
parse_e2e :: FilePath -> IO Scm.Program
|
||||
parse_e2e = runJalmotIO . runFileSystem . readScm
|
||||
@@ -155,4 +157,4 @@ lower_e2e =
|
||||
eval_e2e :: FilePath -> IO (List Obj)
|
||||
eval_e2e fp = runJalmotIO . runFileSystem . runGenSym $ do
|
||||
stk <- stackifyProgram <=< closeProgram <=< convertProgram <=< readScm $ fp
|
||||
pure . eval $ stk
|
||||
eval stk
|
||||
|
||||
@@ -8,6 +8,7 @@ module Gyehoek.Jalmot
|
||||
, runJalmotIO
|
||||
, runJalmotIOE
|
||||
, runJalmotUnsafe
|
||||
, runJalmotCS
|
||||
)
|
||||
where
|
||||
|
||||
@@ -29,6 +30,7 @@ deriving instance Data p => Data (Grammar.ErrorMessage p)
|
||||
data AJalmot
|
||||
= ReaderError (ParseErrorBundle Text Void)
|
||||
| GrammarError (Grammar.ErrorMessage Ann)
|
||||
| VMError Text
|
||||
deriving (Show, Generic, Data)
|
||||
|
||||
data AJalmotCS = MkAJalmotCS !CallStack !AJalmot
|
||||
@@ -39,6 +41,9 @@ type Jalmot = Error AJalmot
|
||||
runJalmot :: Eff (Jalmot : es) a -> Eff es (Either (CallStack, AJalmot) a)
|
||||
runJalmot = runError
|
||||
|
||||
runJalmotCS :: Eff (Jalmot : es) a -> Eff es (Either AJalmotCS a)
|
||||
runJalmotCS = (mapped . _Left %~ uncurry MkAJalmotCS) . runError
|
||||
|
||||
runJalmotIOE :: IOE :> es => Eff (Jalmot : es) a -> Eff es a
|
||||
runJalmotIOE eff =
|
||||
runJalmot eff >>= \case
|
||||
@@ -60,6 +65,7 @@ instance Exception AJalmot where
|
||||
pretty err
|
||||
& layoutPretty defaultLayoutOptions
|
||||
& renderString
|
||||
VMError err -> [i|#{err}|]
|
||||
|
||||
instance Exception AJalmotCS where
|
||||
backtraceDesired = const False
|
||||
|
||||
@@ -0,0 +1,4 @@
|
||||
module Gyehoek.Language
|
||||
(
|
||||
) where
|
||||
|
||||
@@ -29,6 +29,7 @@ data Options = MkOptions
|
||||
, dumpCPS :: Bool
|
||||
, dumpParsed :: Bool
|
||||
, dumpStackified :: Bool
|
||||
, traceStackified :: Bool
|
||||
, runtime :: Maybe Runtime
|
||||
, inspectWasm :: Bool
|
||||
, output :: FilePath
|
||||
@@ -60,6 +61,7 @@ parser = do
|
||||
dumpCPS <- switch (long "dump-cps")
|
||||
dumpStackified <- switch (long "dump-stackified")
|
||||
dumpParsed <- switch (long "dump-parsed")
|
||||
traceStackified <- switch (long "trace-stackified")
|
||||
inspectWasm <- switch $ long "inspect-wasm" <> short 'p'
|
||||
runtime <- option runtimeReader . fold $
|
||||
[ long "runtime"
|
||||
|
||||
@@ -19,6 +19,7 @@ module Gyehoek.Prelude
|
||||
, (>>>)
|
||||
, (>=>)
|
||||
, (<=<)
|
||||
, wrappedIso
|
||||
) where
|
||||
|
||||
import Control.Lens hiding (List, (:<))
|
||||
@@ -40,4 +41,5 @@ import Data.List.NonEmpty (NonEmpty((:|)))
|
||||
import Numeric.Natural (Natural)
|
||||
import Control.Category ((>>>))
|
||||
import Control.Monad
|
||||
import Data.Generics.Wrapped (Wrapped(..))
|
||||
|
||||
|
||||
@@ -51,7 +51,7 @@ import qualified Effectful.FileSystem.IO.ByteString as FB
|
||||
import qualified Data.Set.Ordered as O
|
||||
import Gyehoek.Sexp.Grammar qualified as Sexp
|
||||
import Gyehoek.Sexp.Grammar qualified as S
|
||||
import Gyehoek.Sexp.Grammar (DatumIso, DataIso)
|
||||
import Gyehoek.Sexp.Grammar (DatumIso, G, DataIso, (:-)((:-)))
|
||||
import Gyehoek.Prelude
|
||||
|
||||
|
||||
@@ -81,9 +81,13 @@ data Prim e
|
||||
| PrimZeroP e
|
||||
| PrimNewline
|
||||
| PrimMakeClosure { code :: e, env :: List e }
|
||||
| PrimEnvRef e Int
|
||||
| PrimEnvCode e
|
||||
| PrimEnv
|
||||
| PrimEnvRef Int
|
||||
| PrimCallCC e
|
||||
| PrimCaptureCC
|
||||
| PrimInvokeCC e (List e)
|
||||
| PrimValues (List e)
|
||||
| PrimCallWithValues e e
|
||||
deriving stock (Show, Generic, Functor, Foldable, Traversable, Data, Eq)
|
||||
deriving anyclass (NFData)
|
||||
|
||||
@@ -106,7 +110,7 @@ data Exp
|
||||
= ExpLet (List (Name, Exp)) Exp
|
||||
| ExpLetRec (List (Name, Exp)) Exp
|
||||
| ExpPrim (Prim Exp)
|
||||
| ExpBegin (List Exp)
|
||||
| ExpBegin (NonEmpty Exp)
|
||||
| ExpIf Exp Exp Exp
|
||||
| ExpLit Lit
|
||||
| ExpLambda (List Name) Exp
|
||||
@@ -162,21 +166,25 @@ primDatumIso namefn a = S.match
|
||||
$ S.With (. ht1 "integer?")
|
||||
$ S.With (. ht1 "write")
|
||||
$ S.With (. ht1 "zero?")
|
||||
$ S.With (. nullop "newline")
|
||||
$ S.With (. ht0 "newline")
|
||||
$ S.With (. ht1' "make-closure")
|
||||
$ S.With (. S.headTagged2 (namefn "env-ref") a S.int)
|
||||
$ S.With (. ht1 "env-code")
|
||||
$ S.With (. ht0 "env")
|
||||
$ S.With (. S.headTagged1 (namefn "env-ref") S.int)
|
||||
$ S.With (. ht1 "call/cc")
|
||||
$ S.With (. ht0 "capture/cc")
|
||||
$ S.With (. ht1' "invoke/cc")
|
||||
$ S.With (. ht0' "values")
|
||||
$ S.With (. ht2 "call-with-values")
|
||||
$ S.End
|
||||
where
|
||||
idn = S.el . S.sym . namefn
|
||||
nullop s = S.list $ idn s
|
||||
ht0 s = S.list $ idn s
|
||||
ht1 s = S.headTagged1 (namefn s) a
|
||||
ht2 s = S.headTagged2 (namefn s) a a
|
||||
ht1' s = S.headTagged1' (namefn s) a a
|
||||
ht0' s = S.headTagged0' (namefn s) a
|
||||
|
||||
instance DatumIso a => DatumIso (Prim a) where
|
||||
-- datumIso = primDatumIso ("prim:"<>) datumIso
|
||||
datumIso = primDatumIso id S.datumIso
|
||||
|
||||
instance DatumIso Lit where
|
||||
@@ -203,7 +211,7 @@ instance DatumIso Exp where
|
||||
$ S.With (. S.letLike "let" S.datumIso S.datumIso S.datumIso)
|
||||
$ S.With (. S.letLike "letrec" S.datumIso S.datumIso S.datumIso)
|
||||
$ S.With (. S.datumIso)
|
||||
$ S.With (. S.beginLike "begin" S.datumIso)
|
||||
$ S.With (. begin)
|
||||
$ S.With (. S.ifLike "if" S.datumIso S.datumIso S.datumIso)
|
||||
$ S.With (. S.datumIso)
|
||||
$ S.With (. lam)
|
||||
@@ -212,12 +220,18 @@ instance DatumIso Exp where
|
||||
$ S.End
|
||||
where
|
||||
lam = S.lambdaLike S.lambdaKeyword S.datumIso (S.el S.datumIso)
|
||||
begin :: forall t. G (S.Datum :- t) (NonEmpty Exp :- t)
|
||||
begin = S.beginLike "begin" $
|
||||
S.el (S.datumIso @Exp) >>> S.rest (S.datumIso @Exp)
|
||||
>>> S.onTail (S.Iso
|
||||
(\(xs:-x:-t) -> (x:|xs):-t)
|
||||
(\((x:|xs):-t) -> xs:-x:-t))
|
||||
|
||||
instance DatumIso CommandOrDef where
|
||||
datumIso = S.match
|
||||
$ S.With (\_Command -> _Command . S.datumIso)
|
||||
$ S.With (\_Definition -> _Definition . S.datumIso)
|
||||
$ S.With (\_Begin -> _Begin . S.beginLike "begin" S.datumIso)
|
||||
$ S.With (\_Begin -> _Begin . S.beginLike "begin" (S.rest S.datumIso))
|
||||
$ S.End
|
||||
|
||||
instance DataIso Program where
|
||||
|
||||
@@ -59,19 +59,21 @@ toData g =
|
||||
>>> runGrammar noAnn
|
||||
>>> either (throwError . GrammarError) pure
|
||||
|
||||
fromDatum :: Jalmot :> es => DatumGrammar a -> Datum -> Eff es a
|
||||
fromDatum :: (HasCallStack, Jalmot :> es) => DatumGrammar a -> Datum -> Eff es a
|
||||
fromDatum g =
|
||||
forward (sealed g)
|
||||
>>> runGrammar noAnn
|
||||
>>> either (throwError . GrammarError) pure
|
||||
|
||||
fromDatumUnsafe :: DatumGrammar a -> Datum -> a
|
||||
fromDatumUnsafe :: HasCallStack => DatumGrammar a -> Datum -> a
|
||||
fromDatumUnsafe g = runJalmotUnsafe . fromDatum g
|
||||
|
||||
fromDataUnsafe :: DataGrammar a -> List Datum -> a
|
||||
fromDataUnsafe :: HasCallStack => DataGrammar a -> List Datum -> a
|
||||
fromDataUnsafe g = runJalmotUnsafe . fromData g
|
||||
|
||||
fromData :: Jalmot :> es => DataGrammar a -> List Datum -> Eff es a
|
||||
fromData
|
||||
:: (HasCallStack, Jalmot :> es)
|
||||
=> DataGrammar a -> List Datum -> Eff es a
|
||||
fromData g =
|
||||
forward (sealed g)
|
||||
>>> runGrammar noAnn
|
||||
@@ -150,14 +152,3 @@ instance DatumIso a => DataIso (V.Vector a) where
|
||||
|
||||
instance (DatumIso a, DatumIso b) => DatumIso (a, b) where
|
||||
datumIso = with \tup2 -> list (el datumIso >>> el datumIso) >>> tup2
|
||||
|
||||
data Example = MkExample (List Int) Text
|
||||
deriving (Generic, Show)
|
||||
|
||||
instance DataIso Example where
|
||||
dataIso = with \g ->
|
||||
flipped snoced
|
||||
>>> onHead (traversed $ sealed int)
|
||||
>>> onTail (onHead $ sealed symbol)
|
||||
>>> swap
|
||||
>>> g
|
||||
|
||||
@@ -31,6 +31,7 @@ module Gyehoek.Sexp.Grammar.Base
|
||||
, number
|
||||
, integer
|
||||
, int
|
||||
, unreadable
|
||||
-- * TODO: sort lol
|
||||
, prismIso
|
||||
, isoIso, decorate
|
||||
@@ -40,7 +41,7 @@ module Gyehoek.Sexp.Grammar.Base
|
||||
, lambdaLike
|
||||
, lambdaKeyword
|
||||
, kappaKeyword
|
||||
, beginLike
|
||||
, beginLike, headTagged2', dottedList
|
||||
) where
|
||||
|
||||
import Data.InvertibleGrammar
|
||||
@@ -55,6 +56,7 @@ import Data.Scientific (Scientific)
|
||||
import qualified Data.Scientific as Sci
|
||||
import qualified Data.Text as T
|
||||
import Control.Monad.RWS (modify)
|
||||
import qualified Data.List.NonEmpty as NE
|
||||
|
||||
|
||||
-- $setup
|
||||
@@ -104,6 +106,39 @@ list
|
||||
-> G (Datum :- t) t'
|
||||
list = listWithIndentation Ordinary
|
||||
|
||||
-- |
|
||||
-- >>> let grammar = with \g -> dottedList (el int) int >>> g
|
||||
-- >>> decodeTest @(Int,Int) grammar "(1 . 2)"
|
||||
-- ( 1
|
||||
-- , 2
|
||||
-- )
|
||||
-- >>> let grammar = with \g -> dottedList (el int >>> el int) int >>> g
|
||||
-- >>> decodeTest @(Int,Int,Int) grammar "(1 2 . 3)"
|
||||
-- ( 1
|
||||
-- , 2
|
||||
-- , 3
|
||||
-- )
|
||||
dottedList
|
||||
:: forall t t' t''. G (ListContext :- t) (ListContext :- t')
|
||||
-> G (Datum :- t') t''
|
||||
-> G (Datum :- t) t''
|
||||
dottedList g final = begin >>> Dive (onTail (g >>> end) >>> final)
|
||||
where
|
||||
begin = locate >>> Flip (PartialIso
|
||||
(\(x:-MkListContext xs:-t) -> case NE.nonEmpty xs of
|
||||
Just xs' -> DotList xs' x :- t
|
||||
Nothing -> error "fuck")
|
||||
(\case
|
||||
DotList xs x :- t -> Right $ x :- MkListContext (NE.toList xs) :- t
|
||||
_ -> Left $ expected "dotted list"))
|
||||
end :: Grammar Ann (ListContext :- t') t'
|
||||
end = Flip $ PartialIso
|
||||
(\t -> MkListContext [] :- t)
|
||||
(\(MkListContext lst :- t) ->
|
||||
case lst of
|
||||
[] -> Right t
|
||||
d:_ -> Left $ unexpectedDatum d)
|
||||
|
||||
listWithIndentation
|
||||
:: Indentation
|
||||
-> G (ListContext :- t) (ListContext :- t')
|
||||
@@ -325,6 +360,13 @@ headTagged2
|
||||
-> G (Datum :- t) (b :- a :- t)
|
||||
headTagged2 s g1 g2 = list $ el (symProcedure s) >>> el g1 >>> el g2
|
||||
|
||||
headTagged2'
|
||||
:: Text
|
||||
-> DatumGrammar a -> DatumGrammar b -> DatumGrammar c
|
||||
-> G (Datum :- t) (List c :- b :- a :- t)
|
||||
headTagged2' s g1 g2 gt =
|
||||
list $ el (symProcedure s) >>> el g1 >>> el g2 >>> rest gt
|
||||
|
||||
ifLike
|
||||
-- | keyword
|
||||
:: Text
|
||||
@@ -358,9 +400,9 @@ letLike kw name rhs e = listWithIndentation (NSpecial 1) $
|
||||
|
||||
lambdaLike
|
||||
:: (forall t. G (Datum :- t) t)
|
||||
-> DatumGrammar a
|
||||
-> G (ListContext :- a :- t) (ListContext :- t')
|
||||
-> G (Datum :- t) t'
|
||||
-> G (Datum :- t1) (a :- t2)
|
||||
-> G (ListContext :- a :- t2) (ListContext :- t3)
|
||||
-> G (Datum :- t1) t3
|
||||
lambdaLike kw formals body = listWithIndentation (NSpecial 1) $
|
||||
el (decorate SynBuiltin >>> kw)
|
||||
>>> el formals
|
||||
@@ -374,11 +416,19 @@ kappaKeyword = coproduct [ sym "κ", sym "kappa" ]
|
||||
|
||||
beginLike
|
||||
:: Text
|
||||
-> DatumGrammar a
|
||||
-> G (Datum :- t) (List a :- t)
|
||||
-> G (ListContext :- t) (ListContext :- t')
|
||||
-> G (Datum :- t) t'
|
||||
beginLike kw g =
|
||||
listWithIndentation (NSpecial 0) $
|
||||
el (symBuiltin kw) >>> rest g
|
||||
el (symBuiltin kw) >>> g
|
||||
|
||||
-- | define a printed syntax for an object which cannot be read.
|
||||
unreadable
|
||||
:: (t -> Text)
|
||||
-> G (Datum :- t) t
|
||||
unreadable f = Flip $ PartialIso
|
||||
(\t -> Unreadable (f t) :- t)
|
||||
(const $ Left mempty)
|
||||
|
||||
isoIso :: Iso' s a -> Grammar p (s :- t) (a :- t)
|
||||
isoIso l = iso (view l) (review l)
|
||||
|
||||
@@ -4,21 +4,26 @@ module Gyehoek.Sexp.Print
|
||||
, printDatum'
|
||||
, printData
|
||||
, printData'
|
||||
, htmlDatum
|
||||
, htmlData
|
||||
) where
|
||||
|
||||
import Gyehoek.Sexp.Syntax
|
||||
import Data.Text.Prettyprint.Doc
|
||||
import Prettyprinter
|
||||
import Data.Functor.Foldable
|
||||
import qualified Control.Comonad.Trans.Cofree as F
|
||||
import Prettyprinter.Util
|
||||
import Gyehoek.Prelude hiding (Simple, (:<))
|
||||
import Data.Foldable (traverse_)
|
||||
import Data.Foldable (traverse_, toList)
|
||||
import qualified Prettyprinter.Render.Terminal as ANSI
|
||||
import System.IO (stdout)
|
||||
import Prettyprinter.Render.Terminal (Color(..), color, italicized, AnsiStyle, bold, colorDull)
|
||||
import Prettyprinter.Render.Text (renderStrict)
|
||||
import qualified Data.Scientific as Sci
|
||||
import Data.List (intersperse)
|
||||
import Lucid
|
||||
import Prettyprinter.Render.Util.SimpleDocTree (treeForm)
|
||||
import Prettyprinter.Lucid (renderHtml)
|
||||
|
||||
|
||||
printDatum' :: Datum -> Text
|
||||
@@ -31,6 +36,31 @@ printDatum' =
|
||||
{ layoutPageWidth = AvailablePerLine 80 1.0
|
||||
}
|
||||
|
||||
htmlDatum :: Datum -> Html ()
|
||||
htmlDatum =
|
||||
prettyDatum 0
|
||||
>>> layoutPretty opts
|
||||
>>> treeForm
|
||||
>>> fmap highlightHtml
|
||||
>>> renderHtml
|
||||
where
|
||||
opts = LayoutOptions
|
||||
{ layoutPageWidth = AvailablePerLine 80 1.0
|
||||
}
|
||||
|
||||
htmlData :: Foldable f => f Datum -> Html ()
|
||||
htmlData =
|
||||
foldr f mempty
|
||||
>>> layoutPretty opts
|
||||
>>> treeForm
|
||||
>>> fmap highlightHtml
|
||||
>>> renderHtml
|
||||
where
|
||||
f x y = prettyDatum 0 x <> hardline <> hardline <> y
|
||||
opts = LayoutOptions
|
||||
{ layoutPageWidth = AvailablePerLine 80 1.0
|
||||
}
|
||||
|
||||
printDatum :: Datum -> Text
|
||||
printDatum = printDatumW 80
|
||||
|
||||
@@ -44,7 +74,7 @@ printDatumW :: Int -> Datum -> Text
|
||||
printDatumW w =
|
||||
prettyDatum 0
|
||||
>>> layoutSmart opts
|
||||
>>> reAnnotateS highlight
|
||||
>>> reAnnotateS highlightAnsi
|
||||
>>> ANSI.renderStrict
|
||||
where
|
||||
opts = LayoutOptions
|
||||
@@ -54,6 +84,13 @@ printDatumW w =
|
||||
prettyDatum :: Int -> Datum -> Doc Syn
|
||||
prettyDatum depth datum = case datum of
|
||||
Simple simp -> annotate (datum ^. syntax) $ prettySimple depth simp
|
||||
DotList xs x ->
|
||||
pparen depth . group . align $
|
||||
vsep [ vsep (prettyDatum (depth+1) <$> toList xs)
|
||||
, "."
|
||||
, prettyDatum (depth+1) x
|
||||
]
|
||||
|
||||
List' indent xs ->
|
||||
case indent of
|
||||
NSpecial n | keyword:args <- xs ->
|
||||
@@ -87,13 +124,14 @@ prettySimple depth = \case
|
||||
& annotate SynConstant
|
||||
SimpleString s -> annotate SynString $ viaShow s
|
||||
SimpleSymbol s -> pretty s
|
||||
SimpleUnreadable s -> pretty s
|
||||
|
||||
putDoc :: Doc Syn -> IO ()
|
||||
putDoc = ANSI.renderIO stdout
|
||||
. reAnnotateS highlight . layoutSmart defaultLayoutOptions . (<>"\n")
|
||||
. reAnnotateS highlightAnsi . layoutSmart defaultLayoutOptions . (<>"\n")
|
||||
|
||||
highlight :: Syn -> AnsiStyle
|
||||
highlight = \case
|
||||
highlightAnsi :: Syn -> AnsiStyle
|
||||
highlightAnsi = \case
|
||||
(SynBuiltin; SynMacro) -> color Magenta <> italicized <> bold
|
||||
SynProcedure -> color Blue
|
||||
SynConstant -> color Yellow
|
||||
@@ -101,3 +139,16 @@ highlight = \case
|
||||
_ -> mempty
|
||||
where
|
||||
rainbow = cycle [Red,Yellow,Green,Blue,Magenta,Cyan]
|
||||
|
||||
highlightHtml :: Syn -> Html () -> Html ()
|
||||
highlightHtml syn = span_ [class_ synClass]
|
||||
where
|
||||
synClass = case syn of
|
||||
SynBuiltin -> "syn-builtin"
|
||||
SynMacro -> "syn-macro"
|
||||
SynConstant -> "syn-constant"
|
||||
SynString -> "syn-string"
|
||||
SynProcedure -> "syn-procedure"
|
||||
SynVariable -> "syn-variable"
|
||||
SynNone -> "syn-none"
|
||||
SynParen n -> [i|syn-paren-#{mod n 5}|]
|
||||
|
||||
@@ -29,6 +29,7 @@ module Gyehoek.Sexp.Syntax
|
||||
, indentation
|
||||
, adorn
|
||||
, indentWith
|
||||
, pattern Unreadable
|
||||
, pattern Bytevector
|
||||
, pattern Symbol
|
||||
, pattern String
|
||||
@@ -79,6 +80,7 @@ data Simple
|
||||
| SimpleString Text
|
||||
| SimpleSymbol Text
|
||||
| SimpleBytevector ByteString
|
||||
| SimpleUnreadable Text
|
||||
deriving stock (Show, Eq, Data, Generic, Lift)
|
||||
deriving anyclass (NFData)
|
||||
|
||||
@@ -230,6 +232,7 @@ pattern Character a = Simple (SimpleCharacter a)
|
||||
pattern String a = Simple (SimpleString a)
|
||||
pattern Symbol a = Simple (SimpleSymbol a)
|
||||
pattern Bytevector a = Simple (SimpleBytevector a)
|
||||
pattern Unreadable a = Simple (SimpleUnreadable a)
|
||||
|
||||
|
||||
--- Lift1 instances
|
||||
|
||||
@@ -0,0 +1,29 @@
|
||||
module Gyehoek.Stack.Lower
|
||||
( lowerProgram
|
||||
) where
|
||||
|
||||
import Gyehoek.Stack.Syntax
|
||||
import Gyehoek.Wasm qualified as Wasm
|
||||
import Gyehoek.Prelude
|
||||
import Gyehoek.Wasm (wat, watM)
|
||||
|
||||
|
||||
lowerRoutine :: Routine -> Wasm.Function
|
||||
lowerRoutine rt = _
|
||||
|
||||
lowerBlock :: Block -> Wasm.Expr
|
||||
lowerBlock = _
|
||||
|
||||
lowerInstr :: Instr -> Wasm.Expr
|
||||
lowerInstr = \case
|
||||
-- PopCont ktail -> [wat|
|
||||
|
||||
-- |]
|
||||
|
||||
lowerProgram :: Program -> Eff es Wasm.Module
|
||||
lowerProgram p = pure [watM|
|
||||
(module
|
||||
##{rs})
|
||||
|]
|
||||
where
|
||||
rs = p ^.. #routines . each . to lowerRoutine
|
||||
+29
-24
@@ -14,8 +14,11 @@ module Gyehoek.Stack.Syntax
|
||||
, Imm(..)
|
||||
, Hob(..)
|
||||
, Prim(..)
|
||||
, Name
|
||||
, Name(..)
|
||||
, Reg(..)
|
||||
, Label(..)
|
||||
, pattern ValLabel
|
||||
, pattern ObjLabel
|
||||
, stkP
|
||||
) where
|
||||
|
||||
@@ -24,13 +27,13 @@ import qualified Gyehoek.Sexp as S
|
||||
import Gyehoek.Scheme.Syntax (Name(..), Lit(..), Prim(..))
|
||||
import GHC.Exts (IsList(..))
|
||||
import Data.List (intersperse)
|
||||
import Gyehoek.CPS.Syntax (Imm(..), Obj(..), Hob(..), labelName)
|
||||
import Gyehoek.CPS.Syntax (Imm(..), Obj(..), Hob(..), pattern ObjLabel, Reg, Label)
|
||||
import Gyehoek.Prelude
|
||||
import Gyehoek.Sexp ((:-)((:-)))
|
||||
|
||||
|
||||
newtype Program = MkProgram
|
||||
{ routines :: HashMap Name Routine
|
||||
{ routines :: HashMap Label Routine
|
||||
}
|
||||
deriving stock (Show, Generic, Data)
|
||||
deriving newtype (Semigroup, Monoid)
|
||||
@@ -44,8 +47,7 @@ instance IsList Program where
|
||||
toList = toListOf $ #routines . each
|
||||
|
||||
data Routine = MkRoutine
|
||||
{ label :: Name
|
||||
, params :: List Name
|
||||
{ label :: Label
|
||||
, start :: Block
|
||||
}
|
||||
deriving stock (Show, Generic, Data)
|
||||
@@ -59,27 +61,32 @@ data Block = MkBlock
|
||||
deriving anyclass (NFData)
|
||||
|
||||
data Tail
|
||||
= TailCall Val (List Val)
|
||||
-- | call the procedure at stack index `n` supplied with `n`
|
||||
-- arguments on top of the stack, then return by calling the
|
||||
-- continuation at stack index `n+1`.
|
||||
= TailCall Int
|
||||
| Call Int
|
||||
| If Val Block Block
|
||||
| Return Int
|
||||
| CallCC
|
||||
deriving stock (Show, Generic, Data)
|
||||
deriving anyclass (NFData)
|
||||
|
||||
data Instr
|
||||
= Pop Name
|
||||
= Pop Reg
|
||||
| Push Val
|
||||
| PopCont Name
|
||||
| PushCont Val
|
||||
| Prim Name (Prim Val)
|
||||
| Load Reg Int
|
||||
| Prim (Prim Val)
|
||||
deriving stock (Show, Generic, Data)
|
||||
deriving anyclass (NFData)
|
||||
|
||||
data Val
|
||||
= ValReg Name
|
||||
= ValReg Reg
|
||||
| ValImm Imm
|
||||
deriving stock (Show, Generic, Data, Eq)
|
||||
deriving anyclass (NFData)
|
||||
|
||||
pattern ValLabel :: Name -> Val
|
||||
pattern ValLabel :: Label -> Val
|
||||
pattern ValLabel x = ValImm (ImmLabel x)
|
||||
|
||||
|
||||
@@ -89,11 +96,10 @@ pure []
|
||||
|
||||
instance S.DatumIso Instr where
|
||||
datumIso = S.match
|
||||
$ S.With (S.headTagged1 "pop!" regName >>>)
|
||||
$ S.With (S.headTagged1 "pop!" S.datumIso >>>)
|
||||
$ S.With (S.headTagged1 "push!" S.datumIso >>>)
|
||||
$ S.With (S.headTagged1 "pop-cont!" regName >>>)
|
||||
$ S.With (S.headTagged1 "push-cont!" S.datumIso >>>)
|
||||
$ S.With (S.headTagged2 "prim" regName S.datumIso >>>)
|
||||
$ S.With (S.headTagged2 "load" S.datumIso S.datumIso >>>)
|
||||
$ S.With (S.headTagged1 "prim" S.datumIso >>>)
|
||||
$ S.End
|
||||
where
|
||||
|
||||
@@ -107,10 +113,14 @@ instance S.DataIso Block where
|
||||
|
||||
instance S.DatumIso Tail where
|
||||
datumIso = S.match
|
||||
$ S.With (S.headTagged1' "tail-call" S.datumIso S.datumIso >>>)
|
||||
$ S.With (S.headTagged1 "tail-call" S.datumIso >>>)
|
||||
$ S.With (S.headTagged1 "call" S.datumIso >>>)
|
||||
$ S.With (if_ >>>)
|
||||
$ S.With (S.headTagged1 "return" S.datumIso >>>)
|
||||
$ S.With (S.headTagged0 "call/cc" >>>)
|
||||
$ S.End
|
||||
where
|
||||
-- if_ = S.ifLike "if" (S.datumIso @Val) S.datumIso S.datumIso
|
||||
if_ = S.ifLike "if" (S.datumIso @Val) (branch "then") (branch "else")
|
||||
branch :: Text -> S.DatumGrammar Block
|
||||
branch s =
|
||||
@@ -120,7 +130,7 @@ instance S.DatumIso Tail where
|
||||
|
||||
instance S.DatumIso Val where
|
||||
datumIso = S.match
|
||||
$ S.With (regName >>>)
|
||||
$ S.With (S.datumIso >>>)
|
||||
$ S.With (S.datumIso >>>)
|
||||
$ S.End
|
||||
|
||||
@@ -128,16 +138,11 @@ instance S.DatumIso Routine where
|
||||
datumIso = S.with \rout ->
|
||||
S.listWithIndentation (S.NSpecial 1)
|
||||
( S.el (S.decorate S.SynBuiltin >>> S.sym "define")
|
||||
>>> S.el (S.list $ S.el labelName >>> S.rest regName)
|
||||
>>> S.el (S.datumIso @Label)
|
||||
>>> S.restData (S.dataIso @Block)
|
||||
)
|
||||
>>> rout
|
||||
|
||||
regName :: S.DatumGrammar Name
|
||||
regName = S.decorate S.SynVariable >>> S.datumIso @Name >>> S.prismIso
|
||||
(S.expected "register")
|
||||
(prefixed @Name "%")
|
||||
|
||||
instance S.DataIso Program where
|
||||
dataIso = S.dataIso @(List Routine) >>> S.iso fromList toList
|
||||
|
||||
|
||||
+445
-80
@@ -1,4 +1,6 @@
|
||||
{-# LANGUAGE ViewPatterns #-}
|
||||
{-# LANGUAGE ViewPatterns, MultilineStrings #-}
|
||||
{-# LANGUAGE TypeFamilies #-}
|
||||
{-# LANGUAGE DeriveAnyClass #-}
|
||||
module Gyehoek.Stack.VM
|
||||
( VM(..)
|
||||
, Env(..)
|
||||
@@ -6,122 +8,327 @@ module Gyehoek.Stack.VM
|
||||
, trace
|
||||
, module Gyehoek.Stack.Syntax
|
||||
, writeObj
|
||||
, traceEval
|
||||
) where
|
||||
|
||||
import Gyehoek.Stack.Syntax
|
||||
import Control.Lens
|
||||
import qualified Data.HashMap.Strict as H
|
||||
import Data.List (unfoldr)
|
||||
import Data.List (unfoldr, intersperse, compareLength)
|
||||
import Gyehoek.Prelude
|
||||
import qualified Data.List.NonEmpty as NE
|
||||
import Lucid
|
||||
import Data.Foldable (traverse_)
|
||||
import qualified Gyehoek.Sexp as S
|
||||
import Gyehoek.Jalmot
|
||||
import Text.Pretty.Simple (pStringNoColor, pShowNoColor)
|
||||
import Effectful.State.Static.Local (runState, evalState, get)
|
||||
import Data.Traversable
|
||||
import Control.Applicative (Alternative(..))
|
||||
import Gyehoek.Sexp.Print (htmlData)
|
||||
import Control.DeepSeq (deepseq, ($!!))
|
||||
import Gyehoek.Sexp.Print (htmlData, htmlDatum)
|
||||
import Control.DeepSeq (deepseq, ($!!))
|
||||
import Data.String (fromString)
|
||||
import Data.Monoid (First)
|
||||
import GHC.Stack (popCallStack)
|
||||
import Data.Maybe (fromMaybe)
|
||||
|
||||
|
||||
-- | non-essential information maintained only to aide in debugging.
|
||||
data DebugVM = MkDebugVM
|
||||
{ activeRoutine :: Label
|
||||
}
|
||||
deriving (Show, Generic)
|
||||
|
||||
newtype Frame = MkFrame { locals :: List Obj }
|
||||
deriving stock (Show, Generic)
|
||||
|
||||
-- affine
|
||||
returnAddress :: Traversal' Frame Obj
|
||||
returnAddress = #locals . _last
|
||||
|
||||
-- affine
|
||||
activeProcedure :: Traversal' Frame Obj
|
||||
activeProcedure = #locals . _init . _last
|
||||
|
||||
newtype Stack = MkStack { frames :: NonEmpty Frame }
|
||||
deriving stock (Show, Generic)
|
||||
|
||||
data VM = MkVM
|
||||
{ stack :: List Obj
|
||||
, kstack :: List Name
|
||||
{ stack :: Stack
|
||||
, code :: List Instr
|
||||
, tail :: Tail
|
||||
, registers :: HashMap Name Obj
|
||||
, registers :: HashMap Reg Obj
|
||||
, stdout :: Text
|
||||
, result :: Maybe (List Obj)
|
||||
, debug :: DebugVM
|
||||
}
|
||||
deriving (Show, Generic)
|
||||
|
||||
type instance Index Frame = Int
|
||||
type instance IxValue Frame = Obj
|
||||
|
||||
instance Ixed Frame where
|
||||
ix j = wrappedIso . ix j
|
||||
|
||||
instance Cons Frame Frame Obj Obj where
|
||||
_Cons = prism'
|
||||
(\(x,MkFrame xs) -> MkFrame (x:xs))
|
||||
\case
|
||||
MkFrame (x:xs) -> Just (x, MkFrame xs)
|
||||
MkFrame [] -> Nothing
|
||||
|
||||
instance Each Frame Frame Obj Obj where each = wrappedIso . each
|
||||
|
||||
instance Each Stack Stack Frame Frame where each = wrappedIso . each
|
||||
|
||||
pushes :: Foldable f => f Obj -> Frame -> Frame
|
||||
pushes = flip $ foldr cons
|
||||
|
||||
_NonEmpty :: Iso (NonEmpty a) (NonEmpty b) (a, List a) (b, List b)
|
||||
_NonEmpty = iso
|
||||
(\(x:|xs) -> (x,xs))
|
||||
(\(x,xs) -> x:|xs)
|
||||
|
||||
pushFrame :: Frame -> Stack -> Stack
|
||||
pushFrame f (MkStack xs) = MkStack $ NE.cons f xs
|
||||
|
||||
activeFrame :: Lens' VM Frame
|
||||
activeFrame = #stack . #frames . _NonEmpty . _1
|
||||
|
||||
data Env = MkEnv
|
||||
{ labels :: HashMap Name Routine
|
||||
{ labels :: HashMap Label Routine
|
||||
}
|
||||
deriving (Show, Generic)
|
||||
|
||||
step :: Env -> VM -> VM
|
||||
step :: Jalmot :> es => Env -> VM -> Eff es VM
|
||||
step g vm = case vm ^. #code of
|
||||
c:cs -> stepI g (vm & #code .~ cs) c
|
||||
[] -> stepT g vm vm.tail
|
||||
|
||||
stepI :: Env -> VM -> Instr -> VM
|
||||
vmerror :: (HasCallStack, Jalmot :> es) => Text -> Eff es a
|
||||
vmerror = throwError . VMError
|
||||
|
||||
stepI e vm (Push v) = vm & #stack %~ (evalVal e vm v :)
|
||||
stepI :: Jalmot :> es => Env -> VM -> Instr -> Eff es VM
|
||||
|
||||
stepI e vm (PushCont k) = vm & #kstack %~ (evalToLabel e vm k :)
|
||||
stepI e vm (Load r j) = do
|
||||
x <- expectOf [i|object at index #{j}|] (activeFrame . ix j) vm
|
||||
pure $ vm & #registers . at r ?~ x
|
||||
|
||||
stepI e vm (Prim r p) = case evalVal e vm <$> p of
|
||||
stepI e vm (Push v) = traverseOf activeFrame push vm
|
||||
where push xs = cons <$> evalVal e vm v <*> pure xs
|
||||
|
||||
stepI g vm (Prim p) = stepP g vm p
|
||||
|
||||
stepI e vm (Pop r) = case vm ^? activeFrame . _Cons of
|
||||
Nothing -> vmerror "empty stack"
|
||||
Just (x,xs) -> pure $ vm & #registers . at r ?~ x
|
||||
& activeFrame .~ xs
|
||||
|
||||
stepI e vm ins = vmerror [i|unimplemented instruction: #{ins}|]
|
||||
|
||||
stepT :: Jalmot :> es => Env -> VM -> Tail -> Eff es VM
|
||||
|
||||
stepT g vm tc@(Call nargs) = do
|
||||
(args,f,ret,frm) <- parseCall nargs (vm ^. activeFrame)
|
||||
& expectOf [i|bad call: #{show tc}|] _Just
|
||||
rt <- getRoutine g f
|
||||
let newFrame = MkFrame $ args ++ [f,ret]
|
||||
pure $ vm
|
||||
& jumpToRoutine rt
|
||||
& activeFrame .~ frm
|
||||
-- it is not essential we clear the registers, but it'll
|
||||
-- make bugs more obvious.
|
||||
& #registers .~ mempty
|
||||
& #stack %~ \stk ->
|
||||
case f of
|
||||
ObjHob (HobContinuation {stack}) ->
|
||||
coerce $ stack & _NonEmpty . _1 <>:~ (args ++ [f])
|
||||
_ -> pushFrame newFrame stk
|
||||
|
||||
stepT g vm tc@(Return nret) = do
|
||||
(xs,_) <- splitAtExact nret (vm ^. activeFrame . #locals)
|
||||
& expectOf [i|bad return: #{show tc}|] _Just
|
||||
expectOf [i|no return addr|] (activeFrame . returnAddress) vm >>= \case
|
||||
ObjLabel "halt" -> pure $ vm & #result ?~ xs
|
||||
ra -> do
|
||||
rt <- getRoutine g ra
|
||||
vm & traverseOf #stack (fmap snd . popFrame)
|
||||
& mapped . activeFrame %~ pushes xs
|
||||
& mapped %~ jumpToRoutine rt
|
||||
-- it is not essential we clear the registers, but it'll make
|
||||
-- bugs more obvious.
|
||||
& mapped . #registers .~ mempty
|
||||
|
||||
stepT g vm tc@(TailCall nargs) = do
|
||||
(args,f,ra) <- parseTailCall nargs (vm ^. activeFrame)
|
||||
& expectOf [i|bad call: #{show tc}|] _Just
|
||||
case f of
|
||||
ObjLabel "halt" -> pure $ vm & #result ?~ args
|
||||
_ -> do
|
||||
rt <- getRoutine g f
|
||||
let newFrame = MkFrame $ args ++ [f, ra]
|
||||
pure $ vm
|
||||
& jumpToRoutine rt
|
||||
-- replace the active frame; don't push a new one.
|
||||
& activeFrame .~ newFrame
|
||||
-- it is not essential we clear the registers, but it'll make
|
||||
-- bugs more obvious.
|
||||
& #registers .~ mempty
|
||||
|
||||
stepT g vm (If c t f) = do
|
||||
branch <- evalVal g vm c <&> \case
|
||||
ObjImm (ImmBool False) -> f
|
||||
_ -> t
|
||||
pure $ jumpToBlock branch vm
|
||||
|
||||
stepT g vm CallCC = do
|
||||
(cc,withcc,frm) <- parseCallCC (vm ^. activeFrame)
|
||||
& expectOf "bad call/cc" _Just
|
||||
let stk = vm.stack & #frames . _NonEmpty . _1 .~ frm
|
||||
let reified_cc = ObjHob $ HobContinuation cc (coerce stk)
|
||||
let newFrame = MkFrame [reified_cc, withcc, cc]
|
||||
rt <- getRoutine g withcc
|
||||
pure $ vm
|
||||
& jumpToRoutine rt
|
||||
-- replace the active frame; don't push a new one.
|
||||
& activeFrame .~ newFrame
|
||||
-- it is not essential we clear the registers, but it'll make
|
||||
-- bugs more obvious.
|
||||
& #registers .~ mempty
|
||||
|
||||
stepP :: Jalmot :> es => Env -> VM -> Prim Val -> Eff es VM
|
||||
stepP g vm p = traverse (evalVal g vm) p >>= \case
|
||||
PrimZeroP x -> case x of
|
||||
ObjImm (ImmInt n) -> ret . ObjImm . ImmBool $ n == 0
|
||||
_ -> error [i|bad arg to zero?: #{x}|]
|
||||
ObjImm (ImmInt n) -> ret1 . ObjImm . ImmBool $ n == 0
|
||||
_ -> vmerror [i|bad arg to zero?: #{x}|]
|
||||
PrimAdd x y -> arith_binop (+) x y
|
||||
PrimMul x y -> arith_binop (*) x y
|
||||
PrimSub x y -> arith_binop (-) x y
|
||||
PrimDiv x y -> arith_binop div x y
|
||||
PrimMakeClosure f env ->
|
||||
case f of
|
||||
ObjImm (ImmLabel l) -> ret . ObjHob $ HobClosure l env
|
||||
_ -> error [i|expected label, got #{f}|]
|
||||
PrimEnvCode env ->
|
||||
case env of
|
||||
ObjHob (HobClosure l _) -> ret . ObjImm . ImmLabel $ l
|
||||
_ -> error [i|expected closure, got #{env}|]
|
||||
PrimEnvRef env n ->
|
||||
case env of
|
||||
ObjHob (HobClosure _ xs) -> ret $ xs ^?! ix n
|
||||
_ -> error [i|expected closure, got #{env}|]
|
||||
x -> error [i|unimplemented prim: #{p}|]
|
||||
ObjImm (ImmLabel l) -> ret1 . ObjHob $ HobClosure l env
|
||||
_ -> vmerror [i|expected label, got #{f}|]
|
||||
PrimEnv -> do
|
||||
x <- vm & expectOf "expected closure" (activeFrame . activeProcedure)
|
||||
ret1 x
|
||||
PrimEnvRef n -> do
|
||||
(label,env) <- vm & expectOf "expected closure"
|
||||
(activeFrame . activeProcedure . #_ObjHob . #_HobClosure)
|
||||
x <- env & expectOf "expected upval" (ix n)
|
||||
ret1 x
|
||||
PrimCons x y -> ret1 $ ObjHob $ HobPair x y
|
||||
PrimCar x -> case x of
|
||||
ObjHob (HobPair car _) -> ret1 car
|
||||
_ -> vmerror [i|expected pair, got ${x}|]
|
||||
PrimCdr x -> case x of
|
||||
ObjHob (HobPair _ cdr) -> ret1 cdr
|
||||
_ -> vmerror [i|expected pair, got ${x}|]
|
||||
-- PrimCaptureCC -> do
|
||||
-- label <- vm & expectOf [i|bad stack, no return addr|]
|
||||
-- (activeFrame . returnAddress . #_ObjImm . #_ImmLabel)
|
||||
-- ret1 . ObjHob $ HobContinuation { label }
|
||||
x -> vmerror [i|unimplemented prim: #{p}|]
|
||||
where
|
||||
ret v = vm & #registers . at r ?~ v
|
||||
ret vs = pure $ vm & activeFrame . #locals <>:~ vs
|
||||
ret1 v = ret [v]
|
||||
arith_binop op (ObjImm (ImmInt x)) (ObjImm (ImmInt y)) =
|
||||
ret $ ObjImm (ImmInt (op x y))
|
||||
arith_binop _ x y = error [i|bad arith: #{x}, #{y}|]
|
||||
ret1 $ ObjImm (ImmInt (op x y))
|
||||
arith_binop _ x y = vmerror [i|bad arith: #{x}, #{y}|]
|
||||
|
||||
stepI e vm (Pop r) = case vm ^. #stack of
|
||||
[] -> error "empty stack"
|
||||
(x:xs) -> vm & #registers . at r ?~ x
|
||||
& #stack .~ xs
|
||||
|
||||
|
||||
stepI e vm ins@(PopCont r) = case vm ^. #kstack of
|
||||
[] -> error [i|empty cont stack: #{ins}|]
|
||||
(x:xs) -> vm & #registers . at r ?~ ObjImm (ImmLabel x)
|
||||
& #kstack .~ xs
|
||||
popFrame :: (HasCallStack, Jalmot :> es) => Stack -> Eff es (Frame, Stack)
|
||||
popFrame stk = case stk ^. #frames . to NE.uncons of
|
||||
(_, Nothing) -> vmerror "no frame to pop"
|
||||
(f, Just fs) -> pure (f, stk & #frames .~ fs)
|
||||
|
||||
stepI e vm ins = error [i|unimplemented instruction: #{ins}|]
|
||||
jumpToBlock :: Block -> VM -> VM
|
||||
jumpToBlock b vm = vm
|
||||
& #code .~ b.code
|
||||
& #tail .~ b.tail
|
||||
|
||||
stepT :: Env -> VM -> Tail -> VM
|
||||
jumpToRoutine :: Routine -> VM -> VM
|
||||
jumpToRoutine rt vm = vm
|
||||
& jumpToBlock rt.start
|
||||
& #debug . #activeRoutine .~ rt.label
|
||||
|
||||
stepT g vm (TailCall f xs) =
|
||||
case evalToLabel g vm f of
|
||||
"halt" -> vm & #result ?~ fmap (evalVal g vm) xs
|
||||
l -> vm & #code .~ rt.start.code
|
||||
& #tail .~ rt.start.tail
|
||||
& #registers .~
|
||||
fmap (evalVal g vm) (H.fromList $ rt.params `zip` xs)
|
||||
where
|
||||
rt = case g ^. #labels . at l of
|
||||
Nothing -> error [i|undefined label: #{l}|]
|
||||
Just x -> x
|
||||
getLabel :: Obj -> Maybe Label
|
||||
getLabel = \case
|
||||
ObjHob (HobClosure {label}) -> Just label
|
||||
ObjHob (HobContinuation {cont}) -> getLabel cont
|
||||
ObjImm (ImmLabel label) -> Just label
|
||||
x -> Nothing
|
||||
|
||||
stepT g vm (If c t f) = vm & #code .~ branch.code & #tail .~ branch.tail
|
||||
where
|
||||
branch = case evalVal g vm c of
|
||||
ObjImm (ImmBool False) -> f
|
||||
_ -> t
|
||||
getRoutine :: (HasCallStack, Jalmot :> es) => Env -> Obj -> Eff es Routine
|
||||
getRoutine g f = do
|
||||
l <- getLabel f & expectOf [i|no label for #{f}|] _Just
|
||||
case g ^. #labels . at l of
|
||||
Just rt -> pure rt
|
||||
Nothing -> vmerror [i|undefined label #{l}|]
|
||||
|
||||
expectOf
|
||||
:: (HasCallStack, Jalmot :> es)
|
||||
=> Text -> Getting (First a) s a -> s -> Eff es a
|
||||
expectOf msg l = maybe (vmerror msg) pure . preview l
|
||||
|
||||
evalToLabel :: Jalmot :> es => Env -> VM -> Val -> Eff es Label
|
||||
evalToLabel e vm v =
|
||||
case evalVal e vm v of
|
||||
ObjImm (ImmLabel x) -> x
|
||||
x -> error [i|not a label: #{x}|]
|
||||
evalVal e vm v >>= \case
|
||||
ObjImm (ImmLabel x) -> pure x
|
||||
x -> vmerror [i|not a label: #{x}|]
|
||||
|
||||
evalVal :: Env -> VM -> Val -> Obj
|
||||
evalVal :: Jalmot :> es => Env -> VM -> Val -> Eff es Obj
|
||||
evalVal e vm = \case
|
||||
ValImm imm -> ObjImm imm
|
||||
ValImm imm -> pure $ ObjImm imm
|
||||
ValReg r -> case vm ^. #registers . at r of
|
||||
Just x -> x
|
||||
Nothing -> error [i|undefined register: #{r}|]
|
||||
Just x -> pure x
|
||||
Nothing -> vmerror [i|undefined register: #{r}|]
|
||||
|
||||
splitAtExact :: Int -> List a -> Maybe (List a, List a)
|
||||
splitAtExact n xs = case compareLength xs n of
|
||||
(EQ;GT) -> Just $ splitAt n xs
|
||||
LT -> Nothing
|
||||
|
||||
takeExact :: Int -> List a -> Maybe (List a)
|
||||
takeExact n xs = case compareLength xs n of
|
||||
(EQ;GT) -> Just $ take n xs
|
||||
LT -> Nothing
|
||||
|
||||
parseCallCC :: Frame -> Maybe (Obj, Obj, Frame)
|
||||
parseCallCC frm = do
|
||||
([cc,withcc],ys) <- splitAtExact 2 (frm ^. #locals)
|
||||
pure (cc,withcc,MkFrame ys)
|
||||
|
||||
parseCall :: Int -> Frame -> Maybe (List Obj, Obj, Obj, Frame)
|
||||
parseCall nargs frm = do
|
||||
(xs,ys) <- splitAtExact (nargs+2) (frm ^. #locals)
|
||||
let (xs',[f,ret]) = splitAt nargs xs
|
||||
pure (xs',f,ret,MkFrame ys)
|
||||
|
||||
parseTailCall :: Int -> Frame -> Maybe (List Obj, Obj, Obj)
|
||||
parseTailCall nargs frm = do
|
||||
(xs,_) <- splitAtExact (nargs+1) (frm ^. #locals)
|
||||
let (xs',f) = xs ^?! _Snoc
|
||||
pure (xs',f,frm ^?! returnAddress)
|
||||
|
||||
initialVM :: VM
|
||||
initialVM = MkVM
|
||||
{ stack = []
|
||||
, kstack = ["halt"]
|
||||
{ stack = MkStack . NE.singleton . MkFrame $
|
||||
[ ObjLabel "start"
|
||||
, ObjLabel "<nowhere at all>"
|
||||
, ObjLabel "halt"
|
||||
]
|
||||
, tail = TailCall 0
|
||||
, code = []
|
||||
, tail = TailCall (ValLabel "main") []
|
||||
, registers = mempty
|
||||
, stdout = ""
|
||||
, result = Nothing
|
||||
, debug = MkDebugVM
|
||||
{ activeRoutine = "<nowhere>"
|
||||
}
|
||||
}
|
||||
|
||||
initialEnv :: Program -> Env
|
||||
@@ -134,23 +341,181 @@ loop f a = case f a of
|
||||
Right a' -> loop f a'
|
||||
Left b -> b
|
||||
|
||||
eval :: Program -> List Obj
|
||||
eval p = initialVM & loop \vm -> case vm ^. #result of
|
||||
Nothing -> Right $ step (initialEnv p) vm
|
||||
Just rs -> Left rs
|
||||
loopM :: Monad m => (a -> m (Either b a)) -> a -> m b
|
||||
loopM f a = f a >>= \case
|
||||
Right a' -> loopM f a'
|
||||
Left b -> pure b
|
||||
|
||||
trace :: Program -> List VM
|
||||
trace p = initialVM & unfoldr \vm ->
|
||||
case vm.result of
|
||||
Just _ -> Nothing
|
||||
Nothing -> Just (vm, step e vm)
|
||||
where e = initialEnv p
|
||||
eval :: Jalmot :> es => Program -> Eff es (List Obj)
|
||||
eval p = initialVM & loopM \vm -> case vm ^. #result of
|
||||
Nothing -> Right <$> step (initialEnv p) vm
|
||||
Just rs -> pure . Left $ rs
|
||||
|
||||
data Trace
|
||||
= Step { vm :: VM, next :: Trace }
|
||||
| StepToSuccess { vm :: VM, result :: List Obj }
|
||||
| StepToFailure { vm :: VM, err :: AJalmotCS }
|
||||
deriving (Show)
|
||||
|
||||
trace :: Program -> Trace
|
||||
trace p = go (initialEnv p) initialVM
|
||||
where
|
||||
go g vm =
|
||||
case vm.result of
|
||||
Just rs -> StepToSuccess vm rs
|
||||
Nothing ->
|
||||
case runPureEff . runJalmotCS $ step g vm of
|
||||
Left err -> StepToFailure vm err
|
||||
Right vm' -> Step vm (go g vm')
|
||||
|
||||
writeObj :: Obj -> Text
|
||||
writeObj (ObjImm im) = case im of
|
||||
ImmInt n -> [i|#{n}|]
|
||||
ImmBool True -> "#t"
|
||||
ImmBool False -> "#f"
|
||||
ImmLabel l -> "#<procedure>"
|
||||
writeObj (ObjHob h) = case h of
|
||||
HobClosure code env -> "#<procedure>"
|
||||
writeObj = runJalmotUnsafe . S.encodeWith' S.datumIso
|
||||
|
||||
traceEval :: IOE :> es => Program -> Eff es ()
|
||||
traceEval p = do
|
||||
let t = trace p
|
||||
liftIO . renderToFile "trace.html" . ppDoc p $ t
|
||||
|
||||
ppDoc :: Program -> Trace -> Html ()
|
||||
ppDoc p t =
|
||||
html_ do
|
||||
head_ do
|
||||
title_ "stackify trace"
|
||||
style_ """
|
||||
pre {
|
||||
max-width: 95vw;
|
||||
overflow: scroll;
|
||||
}
|
||||
table {
|
||||
max-width: 95vw;
|
||||
}
|
||||
tbody > tr:nth-of-type(even) {
|
||||
background-color: rgb(237 238 242);
|
||||
}
|
||||
.loc {
|
||||
font-size: 0.8rem;
|
||||
}
|
||||
.syn-builtin, .syn-macro {
|
||||
color: purple;
|
||||
font-style: italic;
|
||||
font-weight: bold;
|
||||
}
|
||||
.syn-constant {
|
||||
color: olive;
|
||||
}
|
||||
.syn-procedure {
|
||||
color: teal;
|
||||
}
|
||||
td pre {
|
||||
display: inline
|
||||
}
|
||||
.syn-paren-0 { color: maroon; }
|
||||
.syn-paren-1 { color: olive; }
|
||||
.syn-paren-2 { color: green; }
|
||||
.syn-paren-3 { color: navy; }
|
||||
.syn-paren-4 { color: purple; }
|
||||
.stack-frame
|
||||
{ display: inline-flex
|
||||
; flex-direction: row
|
||||
; column-gap: 0.5em
|
||||
}
|
||||
"""
|
||||
body_ do
|
||||
details_ do
|
||||
summary_ "stack code"
|
||||
pre_ $ code_ do
|
||||
htmlData . runJalmotUnsafe . S.toData S.dataIso $ p
|
||||
ppTrace t
|
||||
|
||||
ppTrace :: Trace -> Html ()
|
||||
ppTrace trace =
|
||||
table_ do
|
||||
thead_ $ tr_ do
|
||||
traverse_ (th_ [scope_ "col"])
|
||||
["routine","next instruction","stack frame"]
|
||||
tbody_ do
|
||||
go trace
|
||||
where
|
||||
go :: Trace -> Html ()
|
||||
go = \case
|
||||
Step vm next -> ppVM vm >> go next
|
||||
StepToSuccess vm rs -> do
|
||||
tr_ [class_ "trace-result"] do
|
||||
td_ do
|
||||
details_ do
|
||||
summary_ "result"
|
||||
pre_ do
|
||||
code_ . toHtml . pShowNoColor $ vm
|
||||
td_ [colspan_ "2"] do
|
||||
sequence_ . intersperse " | " $ code_ . ppDatum <$> rs
|
||||
StepToFailure vm err -> do
|
||||
ppVM vm
|
||||
tr_ [class_ "trace-failure"] do
|
||||
td_ [colspan_ "3"] do
|
||||
details_ do
|
||||
summary_ "error"
|
||||
pre_ do
|
||||
samp_ do
|
||||
fromString $ displayException err
|
||||
|
||||
ppVM :: VM -> Html ()
|
||||
ppVM vm = do
|
||||
tr_ do
|
||||
td_ do
|
||||
details_ do
|
||||
summary_ do
|
||||
var_ [class_ "loc"] do
|
||||
vm ^. #debug . #activeRoutine . to ppDatum
|
||||
pre_ do
|
||||
code_ . toHtml . pShowNoColor $ vm
|
||||
td_ do
|
||||
code_ curi
|
||||
td_ do
|
||||
ppStack vm.stack
|
||||
where
|
||||
curi = vm ^?! failing (#code . _head . to ppDatum) (#tail . to ppDatum)
|
||||
|
||||
ppStack :: Stack -> Html ()
|
||||
ppStack stk = do
|
||||
span_ [class_ "stack"] do
|
||||
stk ^.. each
|
||||
& fmap ppFrame
|
||||
& intersperse " | "
|
||||
& sequence_
|
||||
|
||||
ppFrame :: Frame -> Html ()
|
||||
ppFrame frm = do
|
||||
span_ [class_ "stack-frame"] do
|
||||
sequence_ $ frm ^.. #locals . each . to ppDatum
|
||||
|
||||
ppData :: S.DataIso a => a -> Html ()
|
||||
ppData = htmlData . runJalmotUnsafe . S.toData S.dataIso
|
||||
|
||||
ppDatum :: S.DatumIso a => a -> Html ()
|
||||
ppDatum = htmlDatum . runJalmotUnsafe . S.toDatum S.datumIso
|
||||
|
||||
fac (n :: Int) = [stkP|
|
||||
(define $start
|
||||
(push! $fac)
|
||||
(push! #{n})
|
||||
(tail-call 1))
|
||||
|
||||
(define $fac
|
||||
(load %n 0)
|
||||
(prim %x0 (zero? %n))
|
||||
(if %x0
|
||||
(then (push! 1)
|
||||
(return 1))
|
||||
(else (prim %x1 (- %n 1))
|
||||
(push! $fac-c0)
|
||||
(push! $fac)
|
||||
(push! %x1)
|
||||
(call 1))))
|
||||
|
||||
(define $fac-c0
|
||||
(pop! %x2)
|
||||
(pop! %n)
|
||||
(prim %x3 (* %n %x2))
|
||||
(push! %x3)
|
||||
(return 1))
|
||||
|]
|
||||
|
||||
+18
-159
@@ -6,182 +6,41 @@ module Gyehoek.Wasm
|
||||
(
|
||||
-- * syntax
|
||||
Module
|
||||
, Idx
|
||||
, Program
|
||||
, Function
|
||||
, Expr
|
||||
-- ** quasiquoters
|
||||
, expr
|
||||
, S.sx
|
||||
, S.sxs
|
||||
-- * GenMod effect
|
||||
, GenMod
|
||||
, runGenMod
|
||||
, execGenMod
|
||||
, defineFunction
|
||||
, defineType
|
||||
, defineGlobal
|
||||
, emit
|
||||
, renderModule
|
||||
, watM
|
||||
, wat
|
||||
, wats
|
||||
, defineFunctions
|
||||
, defineTypes
|
||||
, defineGlobals
|
||||
)
|
||||
where
|
||||
|
||||
import Data.List (List)
|
||||
import GHC.Generics (Generic)
|
||||
import Data.Text (Text)
|
||||
import Effectful
|
||||
import Numeric.Natural (Natural)
|
||||
import Effectful.Dispatch.Dynamic
|
||||
import Effectful.State.Dynamic
|
||||
import Control.Lens
|
||||
import Data.Vector.Strict (Vector)
|
||||
import qualified Data.Vector.Strict as V
|
||||
import GHC.IsList (IsList(..))
|
||||
import Language.Haskell.TH.Quote (QuasiQuoter)
|
||||
import Data.Data (Data)
|
||||
import Gyehoek.Sexp qualified as S
|
||||
import Gyehoek.Sexp (Datum, sx, (>>>))
|
||||
import Data.Foldable (traverse_)
|
||||
import Data.Coerce (coerce)
|
||||
import Gyehoek.Sexp (Datum, (>>>))
|
||||
import Data.Data (Data)
|
||||
|
||||
|
||||
newtype Module = MkModule { inner :: Vector Datum }
|
||||
deriving (Show, Generic)
|
||||
type Program = Module
|
||||
type Function = Datum
|
||||
type Expr = List Datum
|
||||
|
||||
newtype Module = MkModule { inner :: List Datum }
|
||||
deriving (Show, Generic, Data)
|
||||
deriving newtype (Semigroup, Monoid)
|
||||
|
||||
newtype Expr = MkExpr { inner :: Vector Instr }
|
||||
deriving (Show, Generic, Data, Eq)
|
||||
deriving newtype (Semigroup, Monoid)
|
||||
|
||||
instance IsList Expr where
|
||||
type Item Expr = Instr
|
||||
fromList = MkExpr . V.fromList
|
||||
toList = V.toList . view #inner
|
||||
|
||||
newtype Instr = MkInstr { inner :: Datum }
|
||||
deriving (Show, Generic, Data, Eq)
|
||||
|
||||
newtype Idx = MkIdx { inner :: Natural }
|
||||
deriving (Generic, Data)
|
||||
deriving newtype (Show)
|
||||
|
||||
|
||||
-- GenMod
|
||||
|
||||
-- | 'GenModState' is a 'Module' paired with the numbers of functions,
|
||||
-- types, globals, etc. defined in the module.
|
||||
data GenModState = MkGenModState
|
||||
{ mod :: Module
|
||||
, funcs :: Natural
|
||||
, types :: Natural
|
||||
, globals :: Natural
|
||||
}
|
||||
deriving (Show, Generic)
|
||||
|
||||
instance Semigroup GenModState where
|
||||
m1 <> m2 = MkGenModState
|
||||
{ mod = m1.mod <> m2.mod
|
||||
, funcs = m1.funcs + m2.funcs
|
||||
, types = m1.types + m2.types
|
||||
, globals = m1.globals + m2.globals
|
||||
}
|
||||
|
||||
instance Monoid GenModState where
|
||||
mempty = MkGenModState
|
||||
{ mod = mempty
|
||||
, funcs = 0
|
||||
, types = 0
|
||||
, globals = 0
|
||||
}
|
||||
|
||||
data GenMod :: Effect where
|
||||
DefineFunction :: Datum -> GenMod m Idx
|
||||
DefineType :: Datum -> GenMod m Idx
|
||||
DefineGlobal :: Datum -> GenMod m Idx
|
||||
Emit :: Datum -> GenMod m ()
|
||||
|
||||
type instance DispatchOf GenMod = Dynamic
|
||||
|
||||
defineFunction :: GenMod :> es => Datum -> Eff es Idx
|
||||
defineFunction = send . DefineFunction
|
||||
|
||||
defineFunctions :: GenMod :> es => List Datum -> Eff es (List Idx)
|
||||
defineFunctions = traverse (send . DefineFunction)
|
||||
|
||||
defineType :: GenMod :> es => Datum -> Eff es Idx
|
||||
defineType = send . DefineType
|
||||
|
||||
defineTypes :: GenMod :> es => List Datum -> Eff es (List Idx)
|
||||
defineTypes = traverse (send . DefineType)
|
||||
|
||||
defineGlobal :: GenMod :> es => Datum -> Eff es Idx
|
||||
defineGlobal = send . DefineGlobal
|
||||
|
||||
defineGlobals :: GenMod :> es => List Datum -> Eff es (List Idx)
|
||||
defineGlobals = traverse (send . DefineGlobal)
|
||||
|
||||
emit :: GenMod :> es => List Datum -> Eff es ()
|
||||
emit = traverse_ (send . Emit)
|
||||
|
||||
appendAndIncrement
|
||||
:: State GenModState :> es
|
||||
=> LensLike' ((,) Natural) GenModState Natural
|
||||
-> Datum
|
||||
-> Eff es Idx
|
||||
appendAndIncrement l s =
|
||||
state \st -> st
|
||||
& #mod . #inner <>~ V.singleton s
|
||||
& l <<%~ succ
|
||||
& _1 %~ MkIdx
|
||||
|
||||
runGenMod :: Eff (GenMod : es) a -> Eff es (a, Module)
|
||||
runGenMod =
|
||||
let run = (mapped . _2 %~ view #mod) . runStateLocal (mempty @GenModState)
|
||||
in reinterpret run \cases
|
||||
_ (DefineFunction s) -> appendAndIncrement #funcs s
|
||||
_ (DefineType s) -> appendAndIncrement #types s
|
||||
_ (DefineGlobal s) -> appendAndIncrement #globals s
|
||||
_ (Emit s) -> #mod . #inner <>= V.singleton s
|
||||
|
||||
execGenMod :: Eff (GenMod : es) a -> Eff es Module
|
||||
execGenMod = fmap snd . runGenMod
|
||||
|
||||
renderModule :: Module -> Text
|
||||
renderModule (MkModule ss) = S.encodeWith' S.datumIso [sx|
|
||||
(module ##{ss})
|
||||
|]
|
||||
|
||||
|
||||
-- DatumIso instances
|
||||
|
||||
instance S.DatumIso Idx where
|
||||
datumIso = S.with \idx ->
|
||||
S.integer >>> S.partialOsi f g
|
||||
>>> idx
|
||||
where
|
||||
f n | n < 0 = Left $ S.unexpected "negative"
|
||||
<> S.expected "natural"
|
||||
| otherwise = Right $ fromIntegral n
|
||||
g = fromIntegral
|
||||
|
||||
instance S.DatumIso Instr where
|
||||
datumIso = S.with S.id
|
||||
|
||||
instance S.DataIso Expr where
|
||||
dataIso = S.dataIso @(Vector Instr) >>> S.iso coerce coerce
|
||||
instance S.DatumIso Module where
|
||||
datumIso = S.with \g ->
|
||||
S.list (S.el (S.sym "module") >>> S.rest S.datumIso)
|
||||
>>> g
|
||||
|
||||
|
||||
-- quasiquoters
|
||||
|
||||
expr :: QuasiQuoter
|
||||
expr = S.makeSxs
|
||||
[|| MkExpr . V.fromList . fmap (S.fromDatumUnsafe $ S.datumIso @Instr) ||]
|
||||
|
||||
wat :: QuasiQuoter
|
||||
wat = S.makeSx [|| id ||]
|
||||
wat = S.makeSxs [|| S.fromDataUnsafe (S.dataIso @(List Datum)) ||]
|
||||
|
||||
wats :: QuasiQuoter
|
||||
wats = S.makeSxs [|| id ||]
|
||||
watM :: QuasiQuoter
|
||||
watM = S.makeSx [|| S.fromDatumUnsafe (S.datumIso @Module) ||]
|
||||
|
||||
@@ -5,9 +5,12 @@ import Test.Tasty.HUnit
|
||||
import Gyehoek.CPS.Syntax (cps, Obj(..), Hob(..), Imm(..))
|
||||
import Gyehoek.CPS.Eval qualified as Sut
|
||||
import Data.List (List)
|
||||
import Test.Tasty.ExpectedFailure (ignoreTestBecause)
|
||||
|
||||
|
||||
test_cpsInterpreter = testGroup "cps interpreter" $
|
||||
test_cpsInterpreter =
|
||||
ignoreTestBecause "i forgorrrr" $
|
||||
testGroup "cps interpreter" $
|
||||
[ primitives
|
||||
, testCase "halt with constant" do
|
||||
evalsTo [ObjImm (ImmInt 123)] [cps|
|
||||
@@ -34,8 +37,8 @@ test_cpsInterpreter = testGroup "cps interpreter" $
|
||||
|]
|
||||
]
|
||||
|
||||
evalsTo :: HasCallStack => List Obj -> Sut.Program -> Assertion
|
||||
evalsTo rs p = Sut.evalProgram p @?= rs
|
||||
evalsTo :: HasCallStack => List Obj -> Sut.Exp -> Assertion
|
||||
evalsTo rs e = Sut.evalExp e @?= rs
|
||||
|
||||
primitives = testGroup "primitives"
|
||||
[ testGroup "arith"
|
||||
|
||||
@@ -4,10 +4,12 @@ import Test.Tasty (TestTree, testGroup)
|
||||
import Test.Tasty.HUnit
|
||||
import qualified Gyehoek.CPS.Stackify as Sut
|
||||
import Gyehoek.Stack.VM as Stk
|
||||
import Data.List (List)
|
||||
import Gyehoek.CPS.Syntax (cps)
|
||||
import Gyehoek.CPS.Syntax qualified as CPS
|
||||
import Gyehoek.GenSym (runGenSym)
|
||||
import Effectful
|
||||
import Gyehoek.Prelude
|
||||
import Gyehoek.Jalmot
|
||||
|
||||
|
||||
test_stackify =
|
||||
@@ -18,40 +20,44 @@ test_stackify =
|
||||
, procedure
|
||||
]
|
||||
|
||||
evalsTo :: List Obj -> Sut.Exp -> Assertion
|
||||
evalsTo rs e =
|
||||
Stk.eval e' @?= rs
|
||||
where e' = runPureEff . runGenSym $ Sut.stackifyExp "main" e
|
||||
evalsTo :: HasCallStack => List Obj -> Sut.Program -> Assertion
|
||||
evalsTo rs e = runJalmotUnsafe (Stk.eval e') @?= rs
|
||||
where
|
||||
e' = e & Sut.stackifyProgram & runGenSym & runPureEff
|
||||
|
||||
trivialReturn = testGroup "trivial return"
|
||||
[ testCase "return int" do
|
||||
evalsTo [ObjImm (ImmInt 4)]
|
||||
[cps|(continue halt 4)|]
|
||||
[cps|(λ (ktail) (continue ktail 4))|]
|
||||
, testCase "return bool" do
|
||||
evalsTo [ObjImm (ImmBool True)]
|
||||
[cps|(continue halt #t)|]
|
||||
[cps|(λ (ktail) (continue ktail #t))|]
|
||||
evalsTo [ObjImm (ImmBool False)]
|
||||
[cps|(continue halt #f)|]
|
||||
[cps|(λ (ktail) (continue ktail #f))|]
|
||||
]
|
||||
|
||||
tailCall = testGroup "tail call"
|
||||
[ testCase "square" do
|
||||
evalsTo [ObjImm (ImmInt 16)]
|
||||
[cps|(letrec ((square (λ (x ktail)
|
||||
(prim (* x x)
|
||||
(κ (x0) (continue ktail x0))))))
|
||||
(square 4 halt))|]
|
||||
evalsTo [ObjImm (ImmInt 16)] [cps|
|
||||
(λ (ktail0)
|
||||
(letrec ((square (λ (x ktail)
|
||||
(prim (* x x)
|
||||
(κ (x0) (continue ktail x0))))))
|
||||
(square 4 halt)))
|
||||
|]
|
||||
]
|
||||
|
||||
prim = testGroup "prim"
|
||||
[ testCase "multiply" do
|
||||
evalsTo [ObjImm (ImmInt 20)]
|
||||
[cps|(prim (* 4 5)
|
||||
(κ (x) (continue halt x)))|]
|
||||
[cps|(λ (ktail0)
|
||||
(prim (* 4 5)
|
||||
(κ (x) (continue ktail0 x))))|]
|
||||
, testCase "add" do
|
||||
evalsTo [ObjImm (ImmInt 9)]
|
||||
[cps|(prim (+ 4 5)
|
||||
(κ (x) (continue halt x)))|]
|
||||
[cps|(λ (ktail0)
|
||||
(prim (+ 4 5)
|
||||
(κ (x) (continue ktail0 x))))|]
|
||||
-- , testGroup "call/cc"
|
||||
-- [ testCase "trivial" do
|
||||
-- evalsTo [ObjImm (ImmInt 123)]
|
||||
@@ -62,14 +68,17 @@ prim = testGroup "prim"
|
||||
|
||||
condition = testCase "if" do
|
||||
evalsTo [ObjImm (ImmInt 123)]
|
||||
[cps|(if #t (continue halt 123) (continue halt 456))|]
|
||||
[cps|(λ (ktail0)
|
||||
(if #t (continue ktail0 123) (continue ktail0 456)))|]
|
||||
evalsTo [ObjImm (ImmInt 456)]
|
||||
[cps|(if #f (continue halt 123) (continue halt 456))|]
|
||||
[cps|(λ (ktail0)
|
||||
(if #f (continue ktail0 123) (continue ktail0 456)))|]
|
||||
|
||||
procedure = testGroup "procedure"
|
||||
[ testCase "factorial" do
|
||||
evalsTo [ObjImm (ImmInt 720)]
|
||||
[cps|(letrec ((fac (λ (n ktail)
|
||||
[cps|(λ (ktail0)
|
||||
(letrec ((fac (λ (n ktail)
|
||||
(prim (zero? n)
|
||||
(κ (x0)
|
||||
(if x0
|
||||
@@ -82,5 +91,5 @@ procedure = testGroup "procedure"
|
||||
(κ (x3)
|
||||
(continue ktail x3))))))
|
||||
(fac x1 fac-k0))))))))))
|
||||
(fac 6 halt))|]
|
||||
(fac 6 halt)))|]
|
||||
]
|
||||
|
||||
@@ -28,15 +28,20 @@ free = testGroup "free"
|
||||
qq :: TestTree
|
||||
qq = testGroup "parser"
|
||||
[ testCase "lambda" do
|
||||
assertEqual "" (Sut.MkLambda ["x","y"] "ktail"
|
||||
(Sut.ExpContinue "ktail" [Sut.ValVar "x"]))
|
||||
assertEqual ""
|
||||
(Sut.MkLambda ["x","y"] "ktail"
|
||||
(Sut.ExpContinue (Sut.ValVar "ktail") [Sut.ValVar "x"]))
|
||||
[cps|(λ (x y ktail) (continue ktail x))|]
|
||||
assertEqual "" (Sut.MkLambda [] "ktail"
|
||||
(Sut.ExpContinue "ktail" [Sut.ValVar "x"]))
|
||||
assertEqual ""
|
||||
(Sut.MkLambda [] "ktail"
|
||||
(Sut.ExpContinue (Sut.ValVar "ktail") [Sut.ValVar "x"]))
|
||||
[cps|(λ (ktail) (continue ktail x))|]
|
||||
, testCase "kappa" do
|
||||
assertEqual "" (Sut.MkKappa ["x","y"]
|
||||
(Sut.ExpContinue "k123" [Sut.ValVar "x", Sut.ValVar "y"]))
|
||||
assertEqual ""
|
||||
(Sut.MkKappa ["x","y"]
|
||||
(Sut.ExpContinue
|
||||
(Sut.ValVar "k123")
|
||||
[Sut.ValVar "x", Sut.ValVar "y"]))
|
||||
[cps|(κ (x y) (continue k123 x y))|]
|
||||
, testCase "application" do
|
||||
assertEqual "" (Sut.ExpApply (Sut.ValVar "f")
|
||||
|
||||
@@ -29,11 +29,8 @@ brokenWasmTests =
|
||||
|
||||
brokenStackifyTests :: List String
|
||||
brokenStackifyTests =
|
||||
[]
|
||||
-- [ "adder"
|
||||
-- , "let-fn"
|
||||
-- , "callcc-nested1" -- requires closure-conversion
|
||||
-- ]
|
||||
[
|
||||
]
|
||||
|
||||
test_root :: IO TestTree
|
||||
test_root = do
|
||||
|
||||
@@ -6,70 +6,106 @@ import Test.Tasty.HUnit
|
||||
import Gyehoek.Stack.Syntax
|
||||
import Gyehoek.Stack.VM qualified as Sut
|
||||
import Data.List (List)
|
||||
import Gyehoek.Jalmot
|
||||
import Gyehoek.Prelude (i)
|
||||
|
||||
|
||||
evalsTo :: List Obj -> Program -> Assertion
|
||||
evalsTo rs p = Sut.eval p @?= rs
|
||||
evalsTo rs p = runJalmotUnsafe (Sut.eval p) @?= rs
|
||||
|
||||
test_root = testGroup "stack machine"
|
||||
[ testCase "lit int" do
|
||||
[ testCase "immediate halt" do
|
||||
evalsTo [] [stkP|
|
||||
(define $start
|
||||
(return 0))
|
||||
|]
|
||||
, testCase "lit int" do
|
||||
evalsTo [ObjImm (ImmInt 3)] [stkP|
|
||||
(define ($main)
|
||||
(pop-cont! %ktail)
|
||||
(tail-call %ktail 3))
|
||||
(define $start
|
||||
(push! 3)
|
||||
(return 1))
|
||||
|]
|
||||
, testCase "non-tail identity function" do
|
||||
evalsTo [ObjImm (ImmInt 123)] [stkP|
|
||||
(define $id
|
||||
(return 1))
|
||||
(define $c
|
||||
(return 1))
|
||||
(define $start
|
||||
(push! $c)
|
||||
(push! $id)
|
||||
(push! 123)
|
||||
(call 1))
|
||||
|]
|
||||
, testCase "tail identity function" do
|
||||
evalsTo [ObjImm (ImmInt 123)] [stkP|
|
||||
(define $id
|
||||
(return 1))
|
||||
(define $start
|
||||
(push! $id)
|
||||
(push! 123)
|
||||
(tail-call 1))
|
||||
|]
|
||||
, testCase "return constant" do
|
||||
evalsTo [ObjImm (ImmInt 123)] [stkP|
|
||||
(define ($main)
|
||||
(tail-call $silly))
|
||||
(define ($silly)
|
||||
(pop-cont! %ktail)
|
||||
(tail-call %ktail 123))
|
||||
(define $start
|
||||
(push! $silly)
|
||||
(tail-call 1))
|
||||
(define $silly
|
||||
(push! 123)
|
||||
(return 1))
|
||||
|]
|
||||
, testCase "identity function" do
|
||||
evalsTo [ObjImm (ImmInt 45)] [stkP|
|
||||
(define ($main)
|
||||
(tail-call $id 45))
|
||||
(define ($id %x)
|
||||
(pop-cont! %ktail)
|
||||
(tail-call %ktail %x))
|
||||
, testCase "return multiple" do
|
||||
evalsTo [ObjImm (ImmInt n) | n <- [1,2,3]] [stkP|
|
||||
(define $start
|
||||
(push! 3)
|
||||
(push! 2)
|
||||
(push! 1)
|
||||
(return 3))
|
||||
|]
|
||||
, testCase "return none" do
|
||||
evalsTo [] [stkP|
|
||||
(define $start
|
||||
(return 0))
|
||||
|]
|
||||
-- , testCase "square" do
|
||||
-- evalsTo [ObjImm (ImmInt 16)] [stkP|
|
||||
-- (define ($main))
|
||||
-- |]
|
||||
, testCase "square" do
|
||||
evalsTo [ObjImm (ImmInt 16)] [stkP|
|
||||
(define ($main)
|
||||
(tail-call $square 4))
|
||||
(define ($square %x)
|
||||
(prim %x2 (* %x %x))
|
||||
(pop-cont! %ktail)
|
||||
(tail-call %ktail %x2))
|
||||
(define $start
|
||||
(push! $square)
|
||||
(push! 4)
|
||||
(tail-call 1))
|
||||
(define $square
|
||||
(pop! %x)
|
||||
(prim (* %x %x))
|
||||
(return 1))
|
||||
|]
|
||||
, testCase "factorial" do
|
||||
let hsfac (n :: Int) = foldr (*) (1) [1..n]
|
||||
let fac (n :: Int) = [stkP|
|
||||
(define ($fac %n)
|
||||
(prim %x0 (zero? %n))
|
||||
(if %x0
|
||||
(then (pop-cont! %ktail)
|
||||
(tail-call %ktail 1))
|
||||
(else (push! %n)
|
||||
(prim %x1 (- %n 1))
|
||||
(push-cont! $fac-k0)
|
||||
(tail-call $fac %x1))))
|
||||
(define ($fac-k0 %x2)
|
||||
(pop! %n)
|
||||
(prim %x3 (* %x2 %n))
|
||||
(pop-cont! %ktail)
|
||||
(tail-call %ktail %x3))
|
||||
(define ($main)
|
||||
(tail-call $fac #{n}))
|
||||
|]
|
||||
evalsTo [ObjImm (ImmInt 1)] $ fac 0
|
||||
evalsTo [ObjImm (ImmInt 1)] $ fac 1
|
||||
evalsTo [ObjImm (ImmInt 720)] $ fac 6
|
||||
, testGroup "factorial"
|
||||
let
|
||||
hsfac (n :: Int) = foldr @List (*) 1 [1..n]
|
||||
fac (n :: Int) = [stkP|
|
||||
(define $start
|
||||
(push! $fac)
|
||||
(push! #{n})
|
||||
(tail-call 1))
|
||||
(define $fac
|
||||
(load %n 0)
|
||||
(prim (zero? %n))
|
||||
(pop! %x0)
|
||||
(if %x0
|
||||
(then (push! 1)
|
||||
(return 1))
|
||||
(else (push! $fac-c0)
|
||||
(push! $fac)
|
||||
(prim (- %n 1))
|
||||
(call 1))))
|
||||
(define $fac-c0
|
||||
(pop! %x2)
|
||||
(pop! %n)
|
||||
(prim (* %n %x2))
|
||||
(return 1))
|
||||
|]
|
||||
mkcase n = testCase [i|#{n}|] do
|
||||
evalsTo [ObjImm . ImmInt $ hsfac n] $ fac n
|
||||
-- 20 is the greatest `n` for which n! ≤ maxBount @Int
|
||||
evalsTo [ObjImm (ImmInt 2432902008176640000)] $ fac 20
|
||||
in [ mkcase n | n <- [0,1,6,20] ]
|
||||
]
|
||||
|
||||
Reference in New Issue
Block a user