From a0c58326c43a7a8026b3d4c158017bf126180e90 Mon Sep 17 00:00:00 2001 From: Son Ho Date: Fri, 22 Dec 2023 23:23:30 +0100 Subject: Regenerate the test files and add the fstar-split tests --- tests/fstar-split/traits/Makefile | 49 ++ tests/fstar-split/traits/Primitives.fst | 884 ++++++++++++++++++++++++++++++++ tests/fstar-split/traits/Traits.fst | 476 +++++++++++++++++ 3 files changed, 1409 insertions(+) create mode 100644 tests/fstar-split/traits/Makefile create mode 100644 tests/fstar-split/traits/Primitives.fst create mode 100644 tests/fstar-split/traits/Traits.fst (limited to 'tests/fstar-split/traits') diff --git a/tests/fstar-split/traits/Makefile b/tests/fstar-split/traits/Makefile new file mode 100644 index 00000000..fa7d1f36 --- /dev/null +++ b/tests/fstar-split/traits/Makefile @@ -0,0 +1,49 @@ +# This file was automatically generated - modify ../Makefile.template instead +INCLUDE_DIRS = . + +FSTAR_INCLUDES = $(addprefix --include ,$(INCLUDE_DIRS)) + +FSTAR_HINTS ?= --use_hints --use_hint_hashes --record_hints + +FSTAR_OPTIONS = $(FSTAR_HINTS) \ + --cache_checked_modules $(FSTAR_INCLUDES) --cmi \ + --warn_error '+241@247+285-274' \ + +FSTAR_EXE ?= fstar.exe +FSTAR_NO_FLAGS = $(FSTAR_EXE) --already_cached 'Prims FStar LowStar Steel' --odir obj --cache_dir obj + +FSTAR = $(FSTAR_NO_FLAGS) $(FSTAR_OPTIONS) + +# The F* roots are used to compute the dependency graph, and generate the .depend file +FSTAR_ROOTS ?= $(wildcard *.fst *.fsti) + +# Build all the files +all: $(addprefix obj/,$(addsuffix .checked,$(FSTAR_ROOTS))) + +# This is the right way to ensure the .depend file always gets re-built. +ifeq (,$(filter %-in,$(MAKECMDGOALS))) +ifndef NODEPEND +ifndef MAKE_RESTARTS +.depend: .FORCE + $(FSTAR_NO_FLAGS) --dep full $(notdir $(FSTAR_ROOTS)) > $@ + +.PHONY: .FORCE +.FORCE: +endif +endif + +include .depend +endif + +# For the interactive mode +%.fst-in %.fsti-in: + @echo $(FSTAR_OPTIONS) + +# Generete the .checked files in batch mode +%.checked: + $(FSTAR) $(FSTAR_OPTIONS) $< && \ + touch -c $@ + +.PHONY: clean +clean: + rm -f obj/* diff --git a/tests/fstar-split/traits/Primitives.fst b/tests/fstar-split/traits/Primitives.fst new file mode 100644 index 00000000..a3ffbde4 --- /dev/null +++ b/tests/fstar-split/traits/Primitives.fst @@ -0,0 +1,884 @@ +/// This file lists primitive and assumed functions and types +module Primitives +open FStar.Mul +open FStar.List.Tot + +#set-options "--z3rlimit 15 --fuel 0 --ifuel 1" + +(*** Utilities *) +val list_update (#a : Type0) (ls : list a) (i : nat{i < length ls}) (x : a) : + ls':list a{ + length ls' = length ls /\ + index ls' i == x + } +#push-options "--fuel 1" +let rec list_update #a ls i x = + match ls with + | x' :: ls -> if i = 0 then x :: ls else x' :: list_update ls (i-1) x +#pop-options + +(*** Result *) +type error : Type0 = +| Failure +| OutOfFuel + +type result (a : Type0) : Type0 = +| Return : v:a -> result a +| Fail : e:error -> result a + +// Monadic return operator +unfold let return (#a : Type0) (x : a) : result a = Return x + +// Monadic bind operator. +// Allows to use the notation: +// ``` +// let* x = y in +// ... +// ``` +unfold let (let*) (#a #b : Type0) (m: result a) + (f: (x:a) -> Pure (result b) (requires (m == Return x)) (ensures fun _ -> True)) : + result b = + match m with + | Return x -> f x + | Fail e -> Fail e + +// Monadic assert(...) +let massert (b:bool) : result unit = if b then Return () else Fail Failure + +// Normalize and unwrap a successful result (used for globals). +let eval_global (#a : Type0) (x : result a{Return? (normalize_term x)}) : a = Return?.v x + +(*** Misc *) +type char = FStar.Char.char +type string = string + +let is_zero (n: nat) : bool = n = 0 +let decrease (n: nat{n > 0}) : nat = n - 1 + +let core_mem_replace (a : Type0) (x : a) (y : a) : a = x +let core_mem_replace_back (a : Type0) (x : a) (y : a) : a = y + +// We don't really use raw pointers for now +type mut_raw_ptr (t : Type0) = { v : t } +type const_raw_ptr (t : Type0) = { v : t } + +(*** Scalars *) +/// Rem.: most of the following code was partially generated + +assume val size_numbits : pos + +// TODO: we could use FStar.Int.int_t and FStar.UInt.int_t + +let isize_min : int = -9223372036854775808 // TODO: should be opaque +let isize_max : int = 9223372036854775807 // TODO: should be opaque +let i8_min : int = -128 +let i8_max : int = 127 +let i16_min : int = -32768 +let i16_max : int = 32767 +let i32_min : int = -2147483648 +let i32_max : int = 2147483647 +let i64_min : int = -9223372036854775808 +let i64_max : int = 9223372036854775807 +let i128_min : int = -170141183460469231731687303715884105728 +let i128_max : int = 170141183460469231731687303715884105727 +let usize_min : int = 0 +let usize_max : int = 4294967295 // TODO: should be opaque +let u8_min : int = 0 +let u8_max : int = 255 +let u16_min : int = 0 +let u16_max : int = 65535 +let u32_min : int = 0 +let u32_max : int = 4294967295 +let u64_min : int = 0 +let u64_max : int = 18446744073709551615 +let u128_min : int = 0 +let u128_max : int = 340282366920938463463374607431768211455 + +type scalar_ty = +| Isize +| I8 +| I16 +| I32 +| I64 +| I128 +| Usize +| U8 +| U16 +| U32 +| U64 +| U128 + +let is_unsigned = function + | Isize | I8 | I16 | I32 | I64 | I128 -> false + | Usize | U8 | U16 | U32 | U64 | U128 -> true + +let scalar_min (ty : scalar_ty) : int = + match ty with + | Isize -> isize_min + | I8 -> i8_min + | I16 -> i16_min + | I32 -> i32_min + | I64 -> i64_min + | I128 -> i128_min + | Usize -> usize_min + | U8 -> u8_min + | U16 -> u16_min + | U32 -> u32_min + | U64 -> u64_min + | U128 -> u128_min + +let scalar_max (ty : scalar_ty) : int = + match ty with + | Isize -> isize_max + | I8 -> i8_max + | I16 -> i16_max + | I32 -> i32_max + | I64 -> i64_max + | I128 -> i128_max + | Usize -> usize_max + | U8 -> u8_max + | U16 -> u16_max + | U32 -> u32_max + | U64 -> u64_max + | U128 -> u128_max + +type scalar (ty : scalar_ty) : eqtype = x:int{scalar_min ty <= x && x <= scalar_max ty} + +let mk_scalar (ty : scalar_ty) (x : int) : result (scalar ty) = + if scalar_min ty <= x && scalar_max ty >= x then Return x else Fail Failure + +let scalar_neg (#ty : scalar_ty) (x : scalar ty) : result (scalar ty) = mk_scalar ty (-x) + +let scalar_div (#ty : scalar_ty) (x : scalar ty) (y : scalar ty) : result (scalar ty) = + if y <> 0 then mk_scalar ty (x / y) else Fail Failure + +/// The remainder operation +let int_rem (x : int) (y : int{y <> 0}) : int = + if x >= 0 then (x % y) else -(x % y) + +(* Checking consistency with Rust *) +let _ = assert_norm(int_rem 1 2 = 1) +let _ = assert_norm(int_rem (-1) 2 = -1) +let _ = assert_norm(int_rem 1 (-2) = 1) +let _ = assert_norm(int_rem (-1) (-2) = -1) + +let scalar_rem (#ty : scalar_ty) (x : scalar ty) (y : scalar ty) : result (scalar ty) = + if y <> 0 then mk_scalar ty (int_rem x y) else Fail Failure + +let scalar_add (#ty : scalar_ty) (x : scalar ty) (y : scalar ty) : result (scalar ty) = + mk_scalar ty (x + y) + +let scalar_sub (#ty : scalar_ty) (x : scalar ty) (y : scalar ty) : result (scalar ty) = + mk_scalar ty (x - y) + +let scalar_mul (#ty : scalar_ty) (x : scalar ty) (y : scalar ty) : result (scalar ty) = + mk_scalar ty (x * y) + +let scalar_xor (#ty : scalar_ty) + (x : scalar ty) (y : scalar ty) : scalar ty = + match ty with + | U8 -> FStar.UInt.logxor #8 x y + | U16 -> FStar.UInt.logxor #16 x y + | U32 -> FStar.UInt.logxor #32 x y + | U64 -> FStar.UInt.logxor #64 x y + | U128 -> FStar.UInt.logxor #128 x y + | Usize -> admit() // TODO + | I8 -> + // Encoding issues... + normalize_spec (FStar.Int.int_t 8); + normalize_spec (scalar I8); + FStar.Int.logxor #8 x y + | I16 -> + // Encoding issues... + normalize_spec (FStar.Int.int_t 16); + normalize_spec (scalar I16); + FStar.Int.logxor #16 x y + | I32 -> FStar.Int.logxor #32 x y + | I64 -> FStar.Int.logxor #64 x y + | I128 -> + // Encoding issues... + normalize_spec (FStar.Int.int_t 128); + normalize_spec (scalar I128); + FStar.Int.logxor #128 x y + | Isize -> admit() // TODO + +let scalar_or (#ty : scalar_ty) + (x : scalar ty) (y : scalar ty) : scalar ty = + match ty with + | U8 -> FStar.UInt.logor #8 x y + | U16 -> FStar.UInt.logor #16 x y + | U32 -> FStar.UInt.logor #32 x y + | U64 -> FStar.UInt.logor #64 x y + | U128 -> FStar.UInt.logor #128 x y + | Usize -> admit() // TODO + | I8 -> + // Encoding issues... + normalize_spec (FStar.Int.int_t 8); + normalize_spec (scalar I8); + FStar.Int.logor #8 x y + | I16 -> + // Encoding issues... + normalize_spec (FStar.Int.int_t 16); + normalize_spec (scalar I16); + FStar.Int.logor #16 x y + | I32 -> FStar.Int.logor #32 x y + | I64 -> FStar.Int.logor #64 x y + | I128 -> + // Encoding issues... + normalize_spec (FStar.Int.int_t 128); + normalize_spec (scalar I128); + FStar.Int.logor #128 x y + | Isize -> admit() // TODO + +let scalar_and (#ty : scalar_ty) + (x : scalar ty) (y : scalar ty) : scalar ty = + match ty with + | U8 -> FStar.UInt.logand #8 x y + | U16 -> FStar.UInt.logand #16 x y + | U32 -> FStar.UInt.logand #32 x y + | U64 -> FStar.UInt.logand #64 x y + | U128 -> FStar.UInt.logand #128 x y + | Usize -> admit() // TODO + | I8 -> + // Encoding issues... + normalize_spec (FStar.Int.int_t 8); + normalize_spec (scalar I8); + FStar.Int.logand #8 x y + | I16 -> + // Encoding issues... + normalize_spec (FStar.Int.int_t 16); + normalize_spec (scalar I16); + FStar.Int.logand #16 x y + | I32 -> FStar.Int.logand #32 x y + | I64 -> FStar.Int.logand #64 x y + | I128 -> + // Encoding issues... + normalize_spec (FStar.Int.int_t 128); + normalize_spec (scalar I128); + FStar.Int.logand #128 x y + | Isize -> admit() // TODO + +// Shift left +let scalar_shl (#ty0 #ty1 : scalar_ty) + (x : scalar ty0) (y : scalar ty1) : result (scalar ty0) = + admit() + +// Shift right +let scalar_shr (#ty0 #ty1 : scalar_ty) + (x : scalar ty0) (y : scalar ty1) : result (scalar ty0) = + admit() + +(** Cast an integer from a [src_ty] to a [tgt_ty] *) +// TODO: check the semantics of casts in Rust +let scalar_cast (src_ty : scalar_ty) (tgt_ty : scalar_ty) (x : scalar src_ty) : result (scalar tgt_ty) = + mk_scalar tgt_ty x + +// This can't fail, but for now we make all casts faillible (easier for the translation) +let scalar_cast_bool (tgt_ty : scalar_ty) (x : bool) : result (scalar tgt_ty) = + mk_scalar tgt_ty (if x then 1 else 0) + +/// The scalar types +type isize : eqtype = scalar Isize +type i8 : eqtype = scalar I8 +type i16 : eqtype = scalar I16 +type i32 : eqtype = scalar I32 +type i64 : eqtype = scalar I64 +type i128 : eqtype = scalar I128 +type usize : eqtype = scalar Usize +type u8 : eqtype = scalar U8 +type u16 : eqtype = scalar U16 +type u32 : eqtype = scalar U32 +type u64 : eqtype = scalar U64 +type u128 : eqtype = scalar U128 + + +let core_isize_min : isize = isize_min +let core_isize_max : isize = isize_max +let core_i8_min : i8 = i8_min +let core_i8_max : i8 = i8_max +let core_i16_min : i16 = i16_min +let core_i16_max : i16 = i16_max +let core_i32_min : i32 = i32_min +let core_i32_max : i32 = i32_max +let core_i64_min : i64 = i64_min +let core_i64_max : i64 = i64_max +let core_i128_min : i128 = i128_min +let core_i128_max : i128 = i128_max + +let core_usize_min : usize = usize_min +let core_usize_max : usize = usize_max +let core_u8_min : u8 = u8_min +let core_u8_max : u8 = u8_max +let core_u16_min : u16 = u16_min +let core_u16_max : u16 = u16_max +let core_u32_min : u32 = u32_min +let core_u32_max : u32 = u32_max +let core_u64_min : u64 = u64_min +let core_u64_max : u64 = u64_max +let core_u128_min : u128 = u128_min +let core_u128_max : u128 = u128_max + +/// Negation +let isize_neg = scalar_neg #Isize +let i8_neg = scalar_neg #I8 +let i16_neg = scalar_neg #I16 +let i32_neg = scalar_neg #I32 +let i64_neg = scalar_neg #I64 +let i128_neg = scalar_neg #I128 + +/// Division +let isize_div = scalar_div #Isize +let i8_div = scalar_div #I8 +let i16_div = scalar_div #I16 +let i32_div = scalar_div #I32 +let i64_div = scalar_div #I64 +let i128_div = scalar_div #I128 +let usize_div = scalar_div #Usize +let u8_div = scalar_div #U8 +let u16_div = scalar_div #U16 +let u32_div = scalar_div #U32 +let u64_div = scalar_div #U64 +let u128_div = scalar_div #U128 + +/// Remainder +let isize_rem = scalar_rem #Isize +let i8_rem = scalar_rem #I8 +let i16_rem = scalar_rem #I16 +let i32_rem = scalar_rem #I32 +let i64_rem = scalar_rem #I64 +let i128_rem = scalar_rem #I128 +let usize_rem = scalar_rem #Usize +let u8_rem = scalar_rem #U8 +let u16_rem = scalar_rem #U16 +let u32_rem = scalar_rem #U32 +let u64_rem = scalar_rem #U64 +let u128_rem = scalar_rem #U128 + +/// Addition +let isize_add = scalar_add #Isize +let i8_add = scalar_add #I8 +let i16_add = scalar_add #I16 +let i32_add = scalar_add #I32 +let i64_add = scalar_add #I64 +let i128_add = scalar_add #I128 +let usize_add = scalar_add #Usize +let u8_add = scalar_add #U8 +let u16_add = scalar_add #U16 +let u32_add = scalar_add #U32 +let u64_add = scalar_add #U64 +let u128_add = scalar_add #U128 + +/// Subtraction +let isize_sub = scalar_sub #Isize +let i8_sub = scalar_sub #I8 +let i16_sub = scalar_sub #I16 +let i32_sub = scalar_sub #I32 +let i64_sub = scalar_sub #I64 +let i128_sub = scalar_sub #I128 +let usize_sub = scalar_sub #Usize +let u8_sub = scalar_sub #U8 +let u16_sub = scalar_sub #U16 +let u32_sub = scalar_sub #U32 +let u64_sub = scalar_sub #U64 +let u128_sub = scalar_sub #U128 + +/// Multiplication +let isize_mul = scalar_mul #Isize +let i8_mul = scalar_mul #I8 +let i16_mul = scalar_mul #I16 +let i32_mul = scalar_mul #I32 +let i64_mul = scalar_mul #I64 +let i128_mul = scalar_mul #I128 +let usize_mul = scalar_mul #Usize +let u8_mul = scalar_mul #U8 +let u16_mul = scalar_mul #U16 +let u32_mul = scalar_mul #U32 +let u64_mul = scalar_mul #U64 +let u128_mul = scalar_mul #U128 + +/// Xor +let u8_xor = scalar_xor #U8 +let u16_xor = scalar_xor #U16 +let u32_xor = scalar_xor #U32 +let u64_xor = scalar_xor #U64 +let u128_xor = scalar_xor #U128 +let usize_xor = scalar_xor #Usize +let i8_xor = scalar_xor #I8 +let i16_xor = scalar_xor #I16 +let i32_xor = scalar_xor #I32 +let i64_xor = scalar_xor #I64 +let i128_xor = scalar_xor #I128 +let isize_xor = scalar_xor #Isize + +/// Or +let u8_or = scalar_or #U8 +let u16_or = scalar_or #U16 +let u32_or = scalar_or #U32 +let u64_or = scalar_or #U64 +let u128_or = scalar_or #U128 +let usize_or = scalar_or #Usize +let i8_or = scalar_or #I8 +let i16_or = scalar_or #I16 +let i32_or = scalar_or #I32 +let i64_or = scalar_or #I64 +let i128_or = scalar_or #I128 +let isize_or = scalar_or #Isize + +/// And +let u8_and = scalar_and #U8 +let u16_and = scalar_and #U16 +let u32_and = scalar_and #U32 +let u64_and = scalar_and #U64 +let u128_and = scalar_and #U128 +let usize_and = scalar_and #Usize +let i8_and = scalar_and #I8 +let i16_and = scalar_and #I16 +let i32_and = scalar_and #I32 +let i64_and = scalar_and #I64 +let i128_and = scalar_and #I128 +let isize_and = scalar_and #Isize + +/// Shift left +let u8_shl #ty = scalar_shl #U8 #ty +let u16_shl #ty = scalar_shl #U16 #ty +let u32_shl #ty = scalar_shl #U32 #ty +let u64_shl #ty = scalar_shl #U64 #ty +let u128_shl #ty = scalar_shl #U128 #ty +let usize_shl #ty = scalar_shl #Usize #ty +let i8_shl #ty = scalar_shl #I8 #ty +let i16_shl #ty = scalar_shl #I16 #ty +let i32_shl #ty = scalar_shl #I32 #ty +let i64_shl #ty = scalar_shl #I64 #ty +let i128_shl #ty = scalar_shl #I128 #ty +let isize_shl #ty = scalar_shl #Isize #ty + +/// Shift right +let u8_shr #ty = scalar_shr #U8 #ty +let u16_shr #ty = scalar_shr #U16 #ty +let u32_shr #ty = scalar_shr #U32 #ty +let u64_shr #ty = scalar_shr #U64 #ty +let u128_shr #ty = scalar_shr #U128 #ty +let usize_shr #ty = scalar_shr #Usize #ty +let i8_shr #ty = scalar_shr #I8 #ty +let i16_shr #ty = scalar_shr #I16 #ty +let i32_shr #ty = scalar_shr #I32 #ty +let i64_shr #ty = scalar_shr #I64 #ty +let i128_shr #ty = scalar_shr #I128 #ty +let isize_shr #ty = scalar_shr #Isize #ty + +(*** core::ops *) + +// Trait declaration: [core::ops::index::Index] +noeq type core_ops_index_Index (self idx : Type0) = { + output : Type0; + index : self → idx → result output +} + +// Trait declaration: [core::ops::index::IndexMut] +noeq type core_ops_index_IndexMut (self idx : Type0) = { + indexInst : core_ops_index_Index self idx; + index_mut : self → idx → result indexInst.output; + index_mut_back : self → idx → indexInst.output → result self; +} + +// Trait declaration [core::ops::deref::Deref] +noeq type core_ops_deref_Deref (self : Type0) = { + target : Type0; + deref : self → result target; +} + +// Trait declaration [core::ops::deref::DerefMut] +noeq type core_ops_deref_DerefMut (self : Type0) = { + derefInst : core_ops_deref_Deref self; + deref_mut : self → result derefInst.target; + deref_mut_back : self → derefInst.target → result self; +} + +type core_ops_range_Range (a : Type0) = { + start : a; + end_ : a; +} + +(*** [alloc] *) + +let alloc_boxed_Box_deref (t : Type0) (x : t) : result t = Return x +let alloc_boxed_Box_deref_mut (t : Type0) (x : t) : result t = Return x +let alloc_boxed_Box_deref_mut_back (t : Type) (_ : t) (x : t) : result t = Return x + +// Trait instance +let alloc_boxed_Box_coreopsDerefInst (self : Type0) : core_ops_deref_Deref self = { + target = self; + deref = alloc_boxed_Box_deref self; +} + +// Trait instance +let alloc_boxed_Box_coreopsDerefMutInst (self : Type0) : core_ops_deref_DerefMut self = { + derefInst = alloc_boxed_Box_coreopsDerefInst self; + deref_mut = alloc_boxed_Box_deref_mut self; + deref_mut_back = alloc_boxed_Box_deref_mut_back self; +} + +(*** Array *) +type array (a : Type0) (n : usize) = s:list a{length s = n} + +// We tried putting the normalize_term condition as a refinement on the list +// but it didn't work. It works with the requires clause. +let mk_array (a : Type0) (n : usize) + (l : list a) : + Pure (array a n) + (requires (normalize_term(FStar.List.Tot.length l) = n)) + (ensures (fun _ -> True)) = + normalize_term_spec (FStar.List.Tot.length l); + l + +let array_index_usize (a : Type0) (n : usize) (x : array a n) (i : usize) : result a = + if i < length x then Return (index x i) + else Fail Failure + +let array_update_usize (a : Type0) (n : usize) (x : array a n) (i : usize) (nx : a) : result (array a n) = + if i < length x then Return (list_update x i nx) + else Fail Failure + +(*** Slice *) +type slice (a : Type0) = s:list a{length s <= usize_max} + +let slice_len (a : Type0) (s : slice a) : usize = length s + +let slice_index_usize (a : Type0) (x : slice a) (i : usize) : result a = + if i < length x then Return (index x i) + else Fail Failure + +let slice_update_usize (a : Type0) (x : slice a) (i : usize) (nx : a) : result (slice a) = + if i < length x then Return (list_update x i nx) + else Fail Failure + +(*** Subslices *) + +let array_to_slice (a : Type0) (n : usize) (x : array a n) : result (slice a) = Return x +let array_from_slice (a : Type0) (n : usize) (x : array a n) (s : slice a) : result (array a n) = + if length s = n then Return s + else Fail Failure + +// TODO: finish the definitions below (there lacks [List.drop] and [List.take] in the standard library *) +let array_subslice (a : Type0) (n : usize) (x : array a n) (r : core_ops_range_Range usize) : result (slice a) = + admit() + +let array_update_subslice (a : Type0) (n : usize) (x : array a n) (r : core_ops_range_Range usize) (ns : slice a) : result (array a n) = + admit() + +let array_repeat (a : Type0) (n : usize) (x : a) : array a n = + admit() + +let slice_subslice (a : Type0) (x : slice a) (r : core_ops_range_Range usize) : result (slice a) = + admit() + +let slice_update_subslice (a : Type0) (x : slice a) (r : core_ops_range_Range usize) (ns : slice a) : result (slice a) = + admit() + +(*** Vector *) +type alloc_vec_Vec (a : Type0) = v:list a{length v <= usize_max} + +let alloc_vec_Vec_new (a : Type0) : alloc_vec_Vec a = assert_norm(length #a [] == 0); [] +let alloc_vec_Vec_len (a : Type0) (v : alloc_vec_Vec a) : usize = length v + +// Helper +let alloc_vec_Vec_index_usize (#a : Type0) (v : alloc_vec_Vec a) (i : usize) : result a = + if i < length v then Return (index v i) else Fail Failure +// Helper +let alloc_vec_Vec_update_usize (#a : Type0) (v : alloc_vec_Vec a) (i : usize) (x : a) : result (alloc_vec_Vec a) = + if i < length v then Return (list_update v i x) else Fail Failure + +// The **forward** function shouldn't be used +let alloc_vec_Vec_push_fwd (a : Type0) (v : alloc_vec_Vec a) (x : a) : unit = () +let alloc_vec_Vec_push (a : Type0) (v : alloc_vec_Vec a) (x : a) : + Pure (result (alloc_vec_Vec a)) + (requires True) + (ensures (fun res -> + match res with + | Fail e -> e == Failure + | Return v' -> length v' = length v + 1)) = + if length v < usize_max then begin + (**) assert_norm(length [x] == 1); + (**) append_length v [x]; + (**) assert(length (append v [x]) = length v + 1); + Return (append v [x]) + end + else Fail Failure + +// The **forward** function shouldn't be used +let alloc_vec_Vec_insert_fwd (a : Type0) (v : alloc_vec_Vec a) (i : usize) (x : a) : result unit = + if i < length v then Return () else Fail Failure +let alloc_vec_Vec_insert (a : Type0) (v : alloc_vec_Vec a) (i : usize) (x : a) : result (alloc_vec_Vec a) = + if i < length v then Return (list_update v i x) else Fail Failure + +// Trait declaration: [core::slice::index::private_slice_index::Sealed] +type core_slice_index_private_slice_index_Sealed (self : Type0) = unit + +// Trait declaration: [core::slice::index::SliceIndex] +noeq type core_slice_index_SliceIndex (self t : Type0) = { + sealedInst : core_slice_index_private_slice_index_Sealed self; + output : Type0; + get : self → t → result (option output); + get_mut : self → t → result (option output); + get_mut_back : self → t → option output → result t; + get_unchecked : self → const_raw_ptr t → result (const_raw_ptr output); + get_unchecked_mut : self → mut_raw_ptr t → result (mut_raw_ptr output); + index : self → t → result output; + index_mut : self → t → result output; + index_mut_back : self → t → output → result t; +} + +// [core::slice::index::[T]::index]: forward function +let core_slice_index_Slice_index + (t idx : Type0) (inst : core_slice_index_SliceIndex idx (slice t)) + (s : slice t) (i : idx) : result inst.output = + let* x = inst.get i s in + match x with + | None -> Fail Failure + | Some x -> Return x + +// [core::slice::index::Range:::get]: forward function +let core_slice_index_RangeUsize_get (t : Type0) (i : core_ops_range_Range usize) (s : slice t) : + result (option (slice t)) = + admit () // TODO + +// [core::slice::index::Range::get_mut]: forward function +let core_slice_index_RangeUsize_get_mut + (t : Type0) : core_ops_range_Range usize → slice t → result (option (slice t)) = + admit () // TODO + +// [core::slice::index::Range::get_mut]: backward function 0 +let core_slice_index_RangeUsize_get_mut_back + (t : Type0) : + core_ops_range_Range usize → slice t → option (slice t) → result (slice t) = + admit () // TODO + +// [core::slice::index::Range::get_unchecked]: forward function +let core_slice_index_RangeUsize_get_unchecked + (t : Type0) : + core_ops_range_Range usize → const_raw_ptr (slice t) → result (const_raw_ptr (slice t)) = + // Don't know what the model should be - for now we always fail to make + // sure code which uses it fails + fun _ _ -> Fail Failure + +// [core::slice::index::Range::get_unchecked_mut]: forward function +let core_slice_index_RangeUsize_get_unchecked_mut + (t : Type0) : + core_ops_range_Range usize → mut_raw_ptr (slice t) → result (mut_raw_ptr (slice t)) = + // Don't know what the model should be - for now we always fail to make + // sure code which uses it fails + fun _ _ -> Fail Failure + +// [core::slice::index::Range::index]: forward function +let core_slice_index_RangeUsize_index + (t : Type0) : core_ops_range_Range usize → slice t → result (slice t) = + admit () // TODO + +// [core::slice::index::Range::index_mut]: forward function +let core_slice_index_RangeUsize_index_mut + (t : Type0) : core_ops_range_Range usize → slice t → result (slice t) = + admit () // TODO + +// [core::slice::index::Range::index_mut]: backward function 0 +let core_slice_index_RangeUsize_index_mut_back + (t : Type0) : core_ops_range_Range usize → slice t → slice t → result (slice t) = + admit () // TODO + +// [core::slice::index::[T]::index_mut]: forward function +let core_slice_index_Slice_index_mut + (t idx : Type0) (inst : core_slice_index_SliceIndex idx (slice t)) : + slice t → idx → result inst.output = + admit () // + +// [core::slice::index::[T]::index_mut]: backward function 0 +let core_slice_index_Slice_index_mut_back + (t idx : Type0) (inst : core_slice_index_SliceIndex idx (slice t)) : + slice t → idx → inst.output → result (slice t) = + admit () // TODO + +// [core::array::[T; N]::index]: forward function +let core_array_Array_index + (t idx : Type0) (n : usize) (inst : core_ops_index_Index (slice t) idx) + (a : array t n) (i : idx) : result inst.output = + admit () // TODO + +// [core::array::[T; N]::index_mut]: forward function +let core_array_Array_index_mut + (t idx : Type0) (n : usize) (inst : core_ops_index_IndexMut (slice t) idx) + (a : array t n) (i : idx) : result inst.indexInst.output = + admit () // TODO + +// [core::array::[T; N]::index_mut]: backward function 0 +let core_array_Array_index_mut_back + (t idx : Type0) (n : usize) (inst : core_ops_index_IndexMut (slice t) idx) + (a : array t n) (i : idx) (x : inst.indexInst.output) : result (array t n) = + admit () // TODO + +// Trait implementation: [core::slice::index::private_slice_index::Range] +let core_slice_index_private_slice_index_SealedRangeUsizeInst + : core_slice_index_private_slice_index_Sealed (core_ops_range_Range usize) = () + +// Trait implementation: [core::slice::index::Range] +let core_slice_index_SliceIndexRangeUsizeSliceTInst (t : Type0) : + core_slice_index_SliceIndex (core_ops_range_Range usize) (slice t) = { + sealedInst = core_slice_index_private_slice_index_SealedRangeUsizeInst; + output = slice t; + get = core_slice_index_RangeUsize_get t; + get_mut = core_slice_index_RangeUsize_get_mut t; + get_mut_back = core_slice_index_RangeUsize_get_mut_back t; + get_unchecked = core_slice_index_RangeUsize_get_unchecked t; + get_unchecked_mut = core_slice_index_RangeUsize_get_unchecked_mut t; + index = core_slice_index_RangeUsize_index t; + index_mut = core_slice_index_RangeUsize_index_mut t; + index_mut_back = core_slice_index_RangeUsize_index_mut_back t; +} + +// Trait implementation: [core::slice::index::[T]] +let core_ops_index_IndexSliceTIInst (t idx : Type0) + (inst : core_slice_index_SliceIndex idx (slice t)) : + core_ops_index_Index (slice t) idx = { + output = inst.output; + index = core_slice_index_Slice_index t idx inst; +} + +// Trait implementation: [core::slice::index::[T]] +let core_ops_index_IndexMutSliceTIInst (t idx : Type0) + (inst : core_slice_index_SliceIndex idx (slice t)) : + core_ops_index_IndexMut (slice t) idx = { + indexInst = core_ops_index_IndexSliceTIInst t idx inst; + index_mut = core_slice_index_Slice_index_mut t idx inst; + index_mut_back = core_slice_index_Slice_index_mut_back t idx inst; +} + +// Trait implementation: [core::array::[T; N]] +let core_ops_index_IndexArrayInst (t idx : Type0) (n : usize) + (inst : core_ops_index_Index (slice t) idx) : + core_ops_index_Index (array t n) idx = { + output = inst.output; + index = core_array_Array_index t idx n inst; +} + +// Trait implementation: [core::array::[T; N]] +let core_ops_index_IndexMutArrayIInst (t idx : Type0) (n : usize) + (inst : core_ops_index_IndexMut (slice t) idx) : + core_ops_index_IndexMut (array t n) idx = { + indexInst = core_ops_index_IndexArrayInst t idx n inst.indexInst; + index_mut = core_array_Array_index_mut t idx n inst; + index_mut_back = core_array_Array_index_mut_back t idx n inst; +} + +// [core::slice::index::usize::get]: forward function +let core_slice_index_usize_get + (t : Type0) : usize → slice t → result (option t) = + admit () // TODO + +// [core::slice::index::usize::get_mut]: forward function +let core_slice_index_usize_get_mut + (t : Type0) : usize → slice t → result (option t) = + admit () // TODO + +// [core::slice::index::usize::get_mut]: backward function 0 +let core_slice_index_usize_get_mut_back + (t : Type0) : usize → slice t → option t → result (slice t) = + admit () // TODO + +// [core::slice::index::usize::get_unchecked]: forward function +let core_slice_index_usize_get_unchecked + (t : Type0) : usize → const_raw_ptr (slice t) → result (const_raw_ptr t) = + admit () // TODO + +// [core::slice::index::usize::get_unchecked_mut]: forward function +let core_slice_index_usize_get_unchecked_mut + (t : Type0) : usize → mut_raw_ptr (slice t) → result (mut_raw_ptr t) = + admit () // TODO + +// [core::slice::index::usize::index]: forward function +let core_slice_index_usize_index (t : Type0) : usize → slice t → result t = + admit () // TODO + +// [core::slice::index::usize::index_mut]: forward function +let core_slice_index_usize_index_mut (t : Type0) : usize → slice t → result t = + admit () // TODO + +// [core::slice::index::usize::index_mut]: backward function 0 +let core_slice_index_usize_index_mut_back + (t : Type0) : usize → slice t → t → result (slice t) = + admit () // TODO + +// Trait implementation: [core::slice::index::private_slice_index::usize] +let core_slice_index_private_slice_index_SealedUsizeInst + : core_slice_index_private_slice_index_Sealed usize = () + +// Trait implementation: [core::slice::index::usize] +let core_slice_index_SliceIndexUsizeSliceTInst (t : Type0) : + core_slice_index_SliceIndex usize (slice t) = { + sealedInst = core_slice_index_private_slice_index_SealedUsizeInst; + output = t; + get = core_slice_index_usize_get t; + get_mut = core_slice_index_usize_get_mut t; + get_mut_back = core_slice_index_usize_get_mut_back t; + get_unchecked = core_slice_index_usize_get_unchecked t; + get_unchecked_mut = core_slice_index_usize_get_unchecked_mut t; + index = core_slice_index_usize_index t; + index_mut = core_slice_index_usize_index_mut t; + index_mut_back = core_slice_index_usize_index_mut_back t; +} + +// [alloc::vec::Vec::index]: forward function +let alloc_vec_Vec_index (t idx : Type0) (inst : core_slice_index_SliceIndex idx (slice t)) + (self : alloc_vec_Vec t) (i : idx) : result inst.output = + admit () // TODO + +// [alloc::vec::Vec::index_mut]: forward function +let alloc_vec_Vec_index_mut (t idx : Type0) (inst : core_slice_index_SliceIndex idx (slice t)) + (self : alloc_vec_Vec t) (i : idx) : result inst.output = + admit () // TODO + +// [alloc::vec::Vec::index_mut]: backward function 0 +let alloc_vec_Vec_index_mut_back + (t idx : Type0) (inst : core_slice_index_SliceIndex idx (slice t)) + (self : alloc_vec_Vec t) (i : idx) (x : inst.output) : result (alloc_vec_Vec t) = + admit () // TODO + +// Trait implementation: [alloc::vec::Vec] +let alloc_vec_Vec_coreopsindexIndexInst (t idx : Type0) + (inst : core_slice_index_SliceIndex idx (slice t)) : + core_ops_index_Index (alloc_vec_Vec t) idx = { + output = inst.output; + index = alloc_vec_Vec_index t idx inst; +} + +// Trait implementation: [alloc::vec::Vec] +let alloc_vec_Vec_coreopsindexIndexMutInst (t idx : Type0) + (inst : core_slice_index_SliceIndex idx (slice t)) : + core_ops_index_IndexMut (alloc_vec_Vec t) idx = { + indexInst = alloc_vec_Vec_coreopsindexIndexInst t idx inst; + index_mut = alloc_vec_Vec_index_mut t idx inst; + index_mut_back = alloc_vec_Vec_index_mut_back t idx inst; +} + +(*** Theorems *) + +let alloc_vec_Vec_index_eq (#a : Type0) (v : alloc_vec_Vec a) (i : usize) : + Lemma ( + alloc_vec_Vec_index a usize (core_slice_index_SliceIndexUsizeSliceTInst a) v i == + alloc_vec_Vec_index_usize v i) + [SMTPat (alloc_vec_Vec_index a usize (core_slice_index_SliceIndexUsizeSliceTInst a) v i)] + = + admit() + +let alloc_vec_Vec_index_mut_eq (#a : Type0) (v : alloc_vec_Vec a) (i : usize) : + Lemma ( + alloc_vec_Vec_index_mut a usize (core_slice_index_SliceIndexUsizeSliceTInst a) v i == + alloc_vec_Vec_index_usize v i) + [SMTPat (alloc_vec_Vec_index_mut a usize (core_slice_index_SliceIndexUsizeSliceTInst a) v i)] + = + admit() + +let alloc_vec_Vec_index_mut_back_eq (#a : Type0) (v : alloc_vec_Vec a) (i : usize) (x : a) : + Lemma ( + alloc_vec_Vec_index_mut_back a usize (core_slice_index_SliceIndexUsizeSliceTInst a) v i x == + alloc_vec_Vec_update_usize v i x) + [SMTPat (alloc_vec_Vec_index_mut_back a usize (core_slice_index_SliceIndexUsizeSliceTInst a) v i x)] + = + admit() diff --git a/tests/fstar-split/traits/Traits.fst b/tests/fstar-split/traits/Traits.fst new file mode 100644 index 00000000..29a001b2 --- /dev/null +++ b/tests/fstar-split/traits/Traits.fst @@ -0,0 +1,476 @@ +(** THIS FILE WAS AUTOMATICALLY GENERATED BY AENEAS *) +(** [traits] *) +module Traits +open Primitives + +#set-options "--z3rlimit 50 --fuel 1 --ifuel 1" + +(** Trait declaration: [traits::BoolTrait] + Source: 'src/traits.rs', lines 1:0-1:19 *) +noeq type boolTrait_t (self : Type0) = { get_bool : self -> result bool; } + +(** [traits::{bool}::get_bool]: forward function + Source: 'src/traits.rs', lines 12:4-12:30 *) +let bool_get_bool (self : bool) : result bool = + Return self + +(** Trait implementation: [traits::{bool}] + Source: 'src/traits.rs', lines 11:0-11:23 *) +let traits_BoolTraitBoolInst : boolTrait_t bool = { get_bool = bool_get_bool; } + +(** [traits::BoolTrait::ret_true]: forward function + Source: 'src/traits.rs', lines 6:4-6:30 *) +let boolTrait_ret_true + (#self : Type0) (self_clause : boolTrait_t self) (self1 : self) : + result bool + = + Return true + +(** [traits::test_bool_trait_bool]: forward function + Source: 'src/traits.rs', lines 17:0-17:44 *) +let test_bool_trait_bool (x : bool) : result bool = + let* b = bool_get_bool x in + if b then boolTrait_ret_true traits_BoolTraitBoolInst x else Return false + +(** [traits::{core::option::Option#1}::get_bool]: forward function + Source: 'src/traits.rs', lines 23:4-23:30 *) +let option_get_bool (t : Type0) (self : option t) : result bool = + begin match self with | None -> Return false | Some _ -> Return true end + +(** Trait implementation: [traits::{core::option::Option#1}] + Source: 'src/traits.rs', lines 22:0-22:31 *) +let traits_BoolTraitcoreoptionOptionTInst (t : Type0) : boolTrait_t (option t) + = { + get_bool = option_get_bool t; +} + +(** [traits::test_bool_trait_option]: forward function + Source: 'src/traits.rs', lines 31:0-31:54 *) +let test_bool_trait_option (t : Type0) (x : option t) : result bool = + let* b = option_get_bool t x in + if b + then boolTrait_ret_true (traits_BoolTraitcoreoptionOptionTInst t) x + else Return false + +(** [traits::test_bool_trait]: forward function + Source: 'src/traits.rs', lines 35:0-35:50 *) +let test_bool_trait + (t : Type0) (boolTraitTInst : boolTrait_t t) (x : t) : result bool = + boolTraitTInst.get_bool x + +(** Trait declaration: [traits::ToU64] + Source: 'src/traits.rs', lines 39:0-39:15 *) +noeq type toU64_t (self : Type0) = { to_u64 : self -> result u64; } + +(** [traits::{u64#2}::to_u64]: forward function + Source: 'src/traits.rs', lines 44:4-44:26 *) +let u64_to_u64 (self : u64) : result u64 = + Return self + +(** Trait implementation: [traits::{u64#2}] + Source: 'src/traits.rs', lines 43:0-43:18 *) +let traits_ToU64U64Inst : toU64_t u64 = { to_u64 = u64_to_u64; } + +(** [traits::{(A, A)#3}::to_u64]: forward function + Source: 'src/traits.rs', lines 50:4-50:26 *) +let pair_to_u64 + (a : Type0) (toU64AInst : toU64_t a) (self : (a & a)) : result u64 = + let (x, x1) = self in + let* i = toU64AInst.to_u64 x in + let* i1 = toU64AInst.to_u64 x1 in + u64_add i i1 + +(** Trait implementation: [traits::{(A, A)#3}] + Source: 'src/traits.rs', lines 49:0-49:31 *) +let traits_ToU64TupleAAInst (a : Type0) (toU64AInst : toU64_t a) : toU64_t (a & + a) = { + to_u64 = pair_to_u64 a toU64AInst; +} + +(** [traits::f]: forward function + Source: 'src/traits.rs', lines 55:0-55:36 *) +let f (t : Type0) (toU64TInst : toU64_t t) (x : (t & t)) : result u64 = + pair_to_u64 t toU64TInst x + +(** [traits::g]: forward function + Source: 'src/traits.rs', lines 59:0-61:18 *) +let g + (t : Type0) (toU64TupleTTInst : toU64_t (t & t)) (x : (t & t)) : result u64 = + toU64TupleTTInst.to_u64 x + +(** [traits::h0]: forward function + Source: 'src/traits.rs', lines 66:0-66:24 *) +let h0 (x : u64) : result u64 = + u64_to_u64 x + +(** [traits::Wrapper] + Source: 'src/traits.rs', lines 70:0-70:21 *) +type wrapper_t (t : Type0) = { x : t; } + +(** [traits::{traits::Wrapper#4}::to_u64]: forward function + Source: 'src/traits.rs', lines 75:4-75:26 *) +let wrapper_to_u64 + (t : Type0) (toU64TInst : toU64_t t) (self : wrapper_t t) : result u64 = + toU64TInst.to_u64 self.x + +(** Trait implementation: [traits::{traits::Wrapper#4}] + Source: 'src/traits.rs', lines 74:0-74:35 *) +let traits_ToU64traitsWrapperTInst (t : Type0) (toU64TInst : toU64_t t) : + toU64_t (wrapper_t t) = { + to_u64 = wrapper_to_u64 t toU64TInst; +} + +(** [traits::h1]: forward function + Source: 'src/traits.rs', lines 80:0-80:33 *) +let h1 (x : wrapper_t u64) : result u64 = + wrapper_to_u64 u64 traits_ToU64U64Inst x + +(** [traits::h2]: forward function + Source: 'src/traits.rs', lines 84:0-84:41 *) +let h2 (t : Type0) (toU64TInst : toU64_t t) (x : wrapper_t t) : result u64 = + wrapper_to_u64 t toU64TInst x + +(** Trait declaration: [traits::ToType] + Source: 'src/traits.rs', lines 88:0-88:19 *) +noeq type toType_t (self t : Type0) = { to_type : self -> result t; } + +(** [traits::{u64#5}::to_type]: forward function + Source: 'src/traits.rs', lines 93:4-93:28 *) +let u64_to_type (self : u64) : result bool = + Return (self > 0) + +(** Trait implementation: [traits::{u64#5}] + Source: 'src/traits.rs', lines 92:0-92:25 *) +let traits_ToTypeU64BoolInst : toType_t u64 bool = { to_type = u64_to_type; } + +(** Trait declaration: [traits::OfType] + Source: 'src/traits.rs', lines 98:0-98:16 *) +noeq type ofType_t (self : Type0) = { + of_type : (t : Type0) -> (toTypeTSelfInst : toType_t t self) -> t -> result + self; +} + +(** [traits::h3]: forward function + Source: 'src/traits.rs', lines 104:0-104:50 *) +let h3 + (t1 t2 : Type0) (ofTypeT1Inst : ofType_t t1) (toTypeT2T1Inst : toType_t t2 + t1) (y : t2) : + result t1 + = + ofTypeT1Inst.of_type t2 toTypeT2T1Inst y + +(** Trait declaration: [traits::OfTypeBis] + Source: 'src/traits.rs', lines 109:0-109:36 *) +noeq type ofTypeBis_t (self t : Type0) = { + toTypeTSelfInst : toType_t t self; + of_type : t -> result self; +} + +(** [traits::h4]: forward function + Source: 'src/traits.rs', lines 118:0-118:57 *) +let h4 + (t1 t2 : Type0) (ofTypeBisT1T2Inst : ofTypeBis_t t1 t2) (toTypeT2T1Inst : + toType_t t2 t1) (y : t2) : + result t1 + = + ofTypeBisT1T2Inst.of_type y + +(** [traits::TestType] + Source: 'src/traits.rs', lines 122:0-122:22 *) +type testType_t (t : Type0) = t + +(** [traits::{traits::TestType#6}::test::TestType1] + Source: 'src/traits.rs', lines 127:8-127:24 *) +type testType_test_TestType1_t = u64 + +(** Trait declaration: [traits::{traits::TestType#6}::test::TestTrait] + Source: 'src/traits.rs', lines 128:8-128:23 *) +noeq type testType_test_TestTrait_t (self : Type0) = { + test : self -> result bool; +} + +(** [traits::{traits::TestType#6}::test::{traits::{traits::TestType#6}::test::TestType1}::test]: forward function + Source: 'src/traits.rs', lines 139:12-139:34 *) +let testType_test_TestType1_test + (self : testType_test_TestType1_t) : result bool = + Return (self > 1) + +(** Trait implementation: [traits::{traits::TestType#6}::test::{traits::{traits::TestType#6}::test::TestType1}] + Source: 'src/traits.rs', lines 138:8-138:36 *) +let traits_TestType_test_TestTraittraitstraitsTestTypeTtestTestType1Inst : + testType_test_TestTrait_t testType_test_TestType1_t = { + test = testType_test_TestType1_test; +} + +(** [traits::{traits::TestType#6}::test]: forward function + Source: 'src/traits.rs', lines 126:4-126:36 *) +let testType_test + (t : Type0) (toU64TInst : toU64_t t) (self : testType_t t) (x : t) : + result bool + = + let* x1 = toU64TInst.to_u64 x in + if x1 > 0 then testType_test_TestType1_test 0 else Return false + +(** [traits::BoolWrapper] + Source: 'src/traits.rs', lines 150:0-150:22 *) +type boolWrapper_t = bool + +(** [traits::{traits::BoolWrapper#7}::to_type]: forward function + Source: 'src/traits.rs', lines 156:4-156:25 *) +let boolWrapper_to_type + (t : Type0) (toTypeBoolTInst : toType_t bool t) (self : boolWrapper_t) : + result t + = + toTypeBoolTInst.to_type self + +(** Trait implementation: [traits::{traits::BoolWrapper#7}] + Source: 'src/traits.rs', lines 152:0-152:33 *) +let traits_ToTypetraitsBoolWrapperTInst (t : Type0) (toTypeBoolTInst : toType_t + bool t) : toType_t boolWrapper_t t = { + to_type = boolWrapper_to_type t toTypeBoolTInst; +} + +(** [traits::WithConstTy::LEN2] + Source: 'src/traits.rs', lines 164:4-164:21 *) +let with_const_ty_len2_body : result usize = Return 32 +let with_const_ty_len2_c : usize = eval_global with_const_ty_len2_body + +(** Trait declaration: [traits::WithConstTy] + Source: 'src/traits.rs', lines 161:0-161:39 *) +noeq type withConstTy_t (self : Type0) (len : usize) = { + cLEN1 : usize; + cLEN2 : usize; + tV : Type0; + tW : Type0; + tW_clause_0 : toU64_t tW; + f : tW -> array u8 len -> result tW; +} + +(** [traits::{bool#8}::LEN1] + Source: 'src/traits.rs', lines 175:4-175:21 *) +let bool_len1_body : result usize = Return 12 +let bool_len1_c : usize = eval_global bool_len1_body + +(** [traits::{bool#8}::f]: merged forward/backward function + (there is a single backward function, and the forward function returns ()) + Source: 'src/traits.rs', lines 180:4-180:39 *) +let bool_f (i : u64) (a : array u8 32) : result u64 = + Return i + +(** Trait implementation: [traits::{bool#8}] + Source: 'src/traits.rs', lines 174:0-174:29 *) +let traits_WithConstTyBool32Inst : withConstTy_t bool 32 = { + cLEN1 = bool_len1_c; + cLEN2 = with_const_ty_len2_c; + tV = u8; + tW = u64; + tW_clause_0 = traits_ToU64U64Inst; + f = bool_f; +} + +(** [traits::use_with_const_ty1]: forward function + Source: 'src/traits.rs', lines 183:0-183:75 *) +let use_with_const_ty1 + (h : Type0) (len : usize) (withConstTyHLENInst : withConstTy_t h len) : + result usize + = + let i = withConstTyHLENInst.cLEN1 in Return i + +(** [traits::use_with_const_ty2]: forward function + Source: 'src/traits.rs', lines 187:0-187:73 *) +let use_with_const_ty2 + (h : Type0) (len : usize) (withConstTyHLENInst : withConstTy_t h len) + (w : withConstTyHLENInst.tW) : + result unit + = + Return () + +(** [traits::use_with_const_ty3]: forward function + Source: 'src/traits.rs', lines 189:0-189:80 *) +let use_with_const_ty3 + (h : Type0) (len : usize) (withConstTyHLENInst : withConstTy_t h len) + (x : withConstTyHLENInst.tW) : + result u64 + = + withConstTyHLENInst.tW_clause_0.to_u64 x + +(** [traits::test_where1]: forward function + Source: 'src/traits.rs', lines 193:0-193:40 *) +let test_where1 (t : Type0) (_x : t) : result unit = + Return () + +(** [traits::test_where2]: forward function + Source: 'src/traits.rs', lines 194:0-194:57 *) +let test_where2 + (t : Type0) (withConstTyT32Inst : withConstTy_t t 32) (_x : u32) : + result unit + = + Return () + +(** Trait declaration: [traits::ParentTrait0] + Source: 'src/traits.rs', lines 200:0-200:22 *) +noeq type parentTrait0_t (self : Type0) = { + tW : Type0; + get_name : self -> result string; + get_w : self -> result tW; +} + +(** Trait declaration: [traits::ParentTrait1] + Source: 'src/traits.rs', lines 205:0-205:22 *) +type parentTrait1_t (self : Type0) = unit + +(** Trait declaration: [traits::ChildTrait] + Source: 'src/traits.rs', lines 206:0-206:49 *) +noeq type childTrait_t (self : Type0) = { + parentTrait0SelfInst : parentTrait0_t self; + parentTrait1SelfInst : parentTrait1_t self; +} + +(** [traits::test_parent_trait0]: forward function + Source: 'src/traits.rs', lines 208:0-208:57 *) +let test_parent_trait0 + (t : Type0) (parentTrait0TInst : parentTrait0_t t) (x : t) : + result parentTrait0TInst.tW + = + parentTrait0TInst.get_w x + +(** [traits::test_child_trait1]: forward function + Source: 'src/traits.rs', lines 213:0-213:56 *) +let test_child_trait1 + (t : Type0) (childTraitTInst : childTrait_t t) (x : t) : result string = + childTraitTInst.parentTrait0SelfInst.get_name x + +(** [traits::test_child_trait2]: forward function + Source: 'src/traits.rs', lines 217:0-217:54 *) +let test_child_trait2 + (t : Type0) (childTraitTInst : childTrait_t t) (x : t) : + result childTraitTInst.parentTrait0SelfInst.tW + = + childTraitTInst.parentTrait0SelfInst.get_w x + +(** [traits::order1]: forward function + Source: 'src/traits.rs', lines 223:0-223:59 *) +let order1 + (t u : Type0) (parentTrait0TInst : parentTrait0_t t) (parentTrait0UInst : + parentTrait0_t u) : + result unit + = + Return () + +(** Trait declaration: [traits::ChildTrait1] + Source: 'src/traits.rs', lines 226:0-226:35 *) +noeq type childTrait1_t (self : Type0) = { + parentTrait1SelfInst : parentTrait1_t self; +} + +(** Trait implementation: [traits::{usize#9}] + Source: 'src/traits.rs', lines 228:0-228:27 *) +let traits_ParentTrait1UsizeInst : parentTrait1_t usize = () + +(** Trait implementation: [traits::{usize#10}] + Source: 'src/traits.rs', lines 229:0-229:26 *) +let traits_ChildTrait1UsizeInst : childTrait1_t usize = { + parentTrait1SelfInst = traits_ParentTrait1UsizeInst; +} + +(** Trait declaration: [traits::Iterator] + Source: 'src/traits.rs', lines 233:0-233:18 *) +noeq type iterator_t (self : Type0) = { tItem : Type0; } + +(** Trait declaration: [traits::IntoIterator] + Source: 'src/traits.rs', lines 237:0-237:22 *) +noeq type intoIterator_t (self : Type0) = { + tItem : Type0; + tIntoIter : Type0; + tIntoIter_clause_0 : iterator_t tIntoIter; + into_iter : self -> result tIntoIter; +} + +(** Trait declaration: [traits::FromResidual] + Source: 'src/traits.rs', lines 254:0-254:21 *) +type fromResidual_t (self t : Type0) = unit + +(** Trait declaration: [traits::Try] + Source: 'src/traits.rs', lines 250:0-250:48 *) +noeq type try_t (self : Type0) = { + tResidual : Type0; + fromResidualSelftraitsTrySelfResidualInst : fromResidual_t self tResidual; +} + +(** Trait declaration: [traits::WithTarget] + Source: 'src/traits.rs', lines 256:0-256:20 *) +noeq type withTarget_t (self : Type0) = { tTarget : Type0; } + +(** Trait declaration: [traits::ParentTrait2] + Source: 'src/traits.rs', lines 260:0-260:22 *) +noeq type parentTrait2_t (self : Type0) = { + tU : Type0; + tU_clause_0 : withTarget_t tU; +} + +(** Trait declaration: [traits::ChildTrait2] + Source: 'src/traits.rs', lines 264:0-264:35 *) +noeq type childTrait2_t (self : Type0) = { + parentTrait2SelfInst : parentTrait2_t self; + convert : parentTrait2SelfInst.tU -> result + parentTrait2SelfInst.tU_clause_0.tTarget; +} + +(** Trait implementation: [traits::{u32#11}] + Source: 'src/traits.rs', lines 268:0-268:23 *) +let traits_WithTargetU32Inst : withTarget_t u32 = { tTarget = u32; } + +(** Trait implementation: [traits::{u32#12}] + Source: 'src/traits.rs', lines 272:0-272:25 *) +let traits_ParentTrait2U32Inst : parentTrait2_t u32 = { + tU = u32; + tU_clause_0 = traits_WithTargetU32Inst; +} + +(** [traits::{u32#13}::convert]: forward function + Source: 'src/traits.rs', lines 277:4-277:29 *) +let u32_convert (x : u32) : result u32 = + Return x + +(** Trait implementation: [traits::{u32#13}] + Source: 'src/traits.rs', lines 276:0-276:24 *) +let traits_ChildTrait2U32Inst : childTrait2_t u32 = { + parentTrait2SelfInst = traits_ParentTrait2U32Inst; + convert = u32_convert; +} + +(** Trait declaration: [traits::CFnOnce] + Source: 'src/traits.rs', lines 290:0-290:23 *) +noeq type cFnOnce_t (self args : Type0) = { + tOutput : Type0; + call_once : self -> args -> result tOutput; +} + +(** Trait declaration: [traits::CFnMut] + Source: 'src/traits.rs', lines 296:0-296:37 *) +noeq type cFnMut_t (self args : Type0) = { + cFnOnceSelfArgsInst : cFnOnce_t self args; + call_mut : self -> args -> result cFnOnceSelfArgsInst.tOutput; + call_mut_back : self -> args -> result self; +} + +(** Trait declaration: [traits::CFn] + Source: 'src/traits.rs', lines 300:0-300:33 *) +noeq type cFn_t (self args : Type0) = { + cFnMutSelfArgsInst : cFnMut_t self args; + call : self -> args -> result cFnMutSelfArgsInst.cFnOnceSelfArgsInst.tOutput; +} + +(** Trait declaration: [traits::GetTrait] + Source: 'src/traits.rs', lines 304:0-304:18 *) +noeq type getTrait_t (self : Type0) = { tW : Type0; get_w : self -> result tW; +} + +(** [traits::test_get_trait]: forward function + Source: 'src/traits.rs', lines 309:0-309:49 *) +let test_get_trait + (t : Type0) (getTraitTInst : getTrait_t t) (x : t) : + result getTraitTInst.tW + = + getTraitTInst.get_w x + -- cgit v1.3.1 From a4decc7654bc6f3301c0174124d21fdbc2dbc708 Mon Sep 17 00:00:00 2001 From: Son Ho Date: Sat, 23 Dec 2023 00:59:55 +0100 Subject: Regenerate the files --- tests/coq/array/Array.v | 18 ++++------ tests/coq/betree/BetreeMain_Funs.v | 40 ++++++---------------- tests/coq/hashmap/Hashmap_Funs.v | 8 ++--- tests/coq/hashmap_on_disk/HashmapMain_Funs.v | 10 +++--- tests/coq/misc/External_Funs.v | 4 +-- tests/coq/misc/NoNestedBorrows.v | 37 ++++++++------------ tests/coq/misc/Paper.v | 11 +++--- tests/coq/misc/PoloniusList.v | 8 ++--- tests/coq/traits/Traits.v | 2 +- tests/fstar-split/betree/BetreeMain.Funs.fst | 17 ++++----- tests/fstar-split/hashmap/Hashmap.Funs.fst | 6 ++-- .../hashmap_on_disk/HashmapMain.Funs.fst | 8 ++--- tests/fstar-split/misc/External.Funs.fst | 4 +-- tests/fstar-split/misc/NoNestedBorrows.fst | 26 ++++++-------- tests/fstar-split/misc/Paper.fst | 11 +++--- tests/fstar-split/traits/Traits.fst | 2 +- tests/fstar/array/Array.Funs.fst | 18 ++++------ tests/fstar/betree/BetreeMain.Funs.fst | 33 ++++++------------ .../fstar/betree_back_stateful/BetreeMain.Funs.fst | 33 ++++++------------ tests/fstar/hashmap/Hashmap.Funs.fst | 9 +++-- tests/fstar/hashmap_on_disk/HashmapMain.Funs.fst | 10 +++--- tests/fstar/misc/External.Funs.fst | 4 +-- tests/fstar/misc/NoNestedBorrows.fst | 37 ++++++++------------ tests/fstar/misc/Paper.fst | 11 +++--- tests/fstar/misc/PoloniusList.fst | 6 ++-- tests/fstar/traits/Traits.fst | 2 +- tests/lean/Array.lean | 18 ++++------ tests/lean/BetreeMain/Funs.lean | 36 ++++++------------- tests/lean/External/Funs.lean | 3 +- tests/lean/Hashmap/Funs.lean | 9 ++--- tests/lean/HashmapMain/Funs.lean | 11 +++--- tests/lean/NoNestedBorrows.lean | 36 ++++++++----------- tests/lean/Paper.lean | 11 +++--- tests/lean/PoloniusList.lean | 8 ++--- tests/lean/Traits.lean | 3 +- 35 files changed, 183 insertions(+), 327 deletions(-) (limited to 'tests/fstar-split/traits') diff --git a/tests/coq/array/Array.v b/tests/coq/array/Array.v index faa0e92c..3a30413a 100644 --- a/tests/coq/array/Array.v +++ b/tests/coq/array/Array.v @@ -32,8 +32,7 @@ Definition array_to_mut_slice_ := p <- array_to_slice_mut T 32%usize s; let (s1, to_slice_mut_back) := p in - let back := fun (ret : slice T) => to_slice_mut_back ret in - Return (s1, back) + Return (s1, to_slice_mut_back) . (** [array::array_len]: @@ -81,8 +80,7 @@ Definition index_mut_array := p <- array_index_mut_usize T 32%usize s i; let (t, index_mut_back) := p in - let back := fun (ret : T) => index_mut_back ret in - Return (t, back) + Return (t, index_mut_back) . (** [array::index_slice]: @@ -99,8 +97,7 @@ Definition index_mut_slice := p <- slice_index_mut_usize T s i; let (t, index_mut_back) := p in - let back := fun (ret : T) => index_mut_back ret in - Return (t, back) + Return (t, index_mut_back) . (** [array::slice_subslice_shared_]: @@ -123,8 +120,7 @@ Definition slice_subslice_mut_ (core_slice_index_SliceIndexRangeUsizeSliceTInst u32) x {| core_ops_range_Range_start := y; core_ops_range_Range_end_ := z |}; let (s, index_mut_back) := p in - let back := fun (ret : slice u32) => index_mut_back ret in - Return (s, back) + Return (s, index_mut_back) . (** [array::array_to_slice_shared_]: @@ -142,8 +138,7 @@ Definition array_to_slice_mut_ := p <- array_to_slice_mut u32 32%usize x; let (s, to_slice_mut_back) := p in - let back := fun (ret : slice u32) => to_slice_mut_back ret in - Return (s, back) + Return (s, to_slice_mut_back) . (** [array::array_subslice_shared_]: @@ -168,8 +163,7 @@ Definition array_subslice_mut_ (core_slice_index_SliceIndexRangeUsizeSliceTInst u32)) x {| core_ops_range_Range_start := y; core_ops_range_Range_end_ := z |}; let (s, index_mut_back) := p in - let back := fun (ret : slice u32) => index_mut_back ret in - Return (s, back) + Return (s, index_mut_back) . (** [array::index_slice_0]: diff --git a/tests/coq/betree/BetreeMain_Funs.v b/tests/coq/betree/BetreeMain_Funs.v index 516bc7b7..cefab0f4 100644 --- a/tests/coq/betree/BetreeMain_Funs.v +++ b/tests/coq/betree/BetreeMain_Funs.v @@ -123,8 +123,7 @@ Fixpoint betree_List_split_at i <- u64_sub n1 1%u64; p <- betree_List_split_at T n2 tl i; let (ls0, ls1) := p in - let l := ls0 in - Return (Betree_List_Cons hd l, ls1) + Return (Betree_List_Cons hd ls0, ls1) | Betree_List_Nil => Fail_ Failure end end @@ -135,8 +134,7 @@ Fixpoint betree_List_split_at Definition betree_List_push_front (T : Type) (self : betree_List_t T) (x : T) : result (betree_List_t T) := let (tl, _) := core_mem_replace (betree_List_t T) self Betree_List_Nil in - let l := tl in - Return (Betree_List_Cons x l) + Return (Betree_List_Cons x tl) . (** [betree_main::betree::{betree_main::betree::List#1}::pop_front]: @@ -186,8 +184,7 @@ Fixpoint betree_ListTupleU64T_partition_at_pivot else ( p <- betree_ListTupleU64T_partition_at_pivot T n1 tl pivot; let (ls0, ls1) := p in - let l := ls0 in - Return (Betree_List_Cons (i, t) l, ls1)) + Return (Betree_List_Cons (i, t) ls0, ls1)) | Betree_List_Nil => Return (Betree_List_Nil, Betree_List_Nil) end end @@ -242,10 +239,7 @@ Fixpoint betree_Node_lookup_first_message_for_key | Betree_List_Cons x next_msgs => let (i, m) := x in if i s>= key - then - let back_'a := - fun (ret : betree_List_t (u64 * betree_Message_t)) => Return ret in - Return (Betree_List_Cons (i, m) next_msgs, back_'a) + then Return (Betree_List_Cons (i, m) next_msgs, Return) else ( p <- betree_Node_lookup_first_message_for_key n1 key next_msgs; let (l, lookup_first_message_for_key_back) := p in @@ -254,10 +248,7 @@ Fixpoint betree_Node_lookup_first_message_for_key next_msgs1 <- lookup_first_message_for_key_back ret; Return (Betree_List_Cons (i, m) next_msgs1) in Return (l, back_'a)) - | Betree_List_Nil => - let back_'a := - fun (ret : betree_List_t (u64 * betree_Message_t)) => Return ret in - Return (Betree_List_Nil, back_'a) + | Betree_List_Nil => Return (Betree_List_Nil, Return) end end . @@ -456,14 +447,8 @@ Fixpoint betree_Node_lookup_first_message_after_key next_msgs1 <- lookup_first_message_after_key_back ret; Return (Betree_List_Cons (k, m) next_msgs1) in Return (l, back_'a)) - else - let back_'a := - fun (ret : betree_List_t (u64 * betree_Message_t)) => Return ret in - Return (Betree_List_Cons (k, m) next_msgs, back_'a) - | Betree_List_Nil => - let back_'a := - fun (ret : betree_List_t (u64 * betree_Message_t)) => Return ret in - Return (Betree_List_Nil, back_'a) + else Return (Betree_List_Cons (k, m) next_msgs, Return) + | Betree_List_Nil => Return (Betree_List_Nil, Return) end end . @@ -562,9 +547,7 @@ Fixpoint betree_Node_lookup_mut_in_bindings | Betree_List_Cons hd tl => let (i, i1) := hd in if i s>= key - then - let back_'a := fun (ret : betree_List_t (u64 * u64)) => Return ret in - Return (Betree_List_Cons (i, i1) tl, back_'a) + then Return (Betree_List_Cons (i, i1) tl, Return) else ( p <- betree_Node_lookup_mut_in_bindings n1 key tl; let (l, lookup_mut_in_bindings_back) := p in @@ -573,9 +556,7 @@ Fixpoint betree_Node_lookup_mut_in_bindings tl1 <- lookup_mut_in_bindings_back ret; Return (Betree_List_Cons (i, i1) tl1) in Return (l, back_'a)) - | Betree_List_Nil => - let back_'a := fun (ret : betree_List_t (u64 * u64)) => Return ret in - Return (Betree_List_Nil, back_'a) + | Betree_List_Nil => Return (Betree_List_Nil, Return) end end . @@ -751,10 +732,9 @@ Definition betree_Node_apply (new_msg : betree_Message_t) (st : state) : result (state * (betree_Node_t * betree_NodeIdCounter_t)) := - let l := Betree_List_Nil in p <- betree_Node_apply_messages n self params node_id_cnt (Betree_List_Cons - (key, new_msg) l) st; + (key, new_msg) Betree_List_Nil) st; let (st1, p1) := p in let (self1, node_id_cnt1) := p1 in Return (st1, (self1, node_id_cnt1)) diff --git a/tests/coq/hashmap/Hashmap_Funs.v b/tests/coq/hashmap/Hashmap_Funs.v index 5cd9fe70..0478edbe 100644 --- a/tests/coq/hashmap/Hashmap_Funs.v +++ b/tests/coq/hashmap/Hashmap_Funs.v @@ -49,8 +49,7 @@ Definition hashMap_new_with_capacity (max_load_divisor : usize) : result (HashMap_t T) := - let v := alloc_vec_Vec_new (List_t T) in - slots <- hashMap_allocate_slots T n v capacity; + slots <- hashMap_allocate_slots T n (alloc_vec_Vec_new (List_t T)) capacity; i <- usize_mul capacity max_load_dividend; i1 <- usize_div i max_load_divisor; Return @@ -128,7 +127,7 @@ Fixpoint hashMap_insert_in_list_loop p <- hashMap_insert_in_list_loop T n1 key value tl; let (b, back) := p in Return (b, List_Cons ckey cvalue back)) - | List_Nil => let l := List_Nil in Return (true, List_Cons key value l) + | List_Nil => Return (true, List_Cons key value List_Nil) end end . @@ -401,8 +400,7 @@ Definition hashMap_get_mut_in_list := p <- hashMap_get_mut_in_list_loop T n ls key; let (t, back_'a) := p in - let back_'a1 := fun (ret : T) => back_'a ret in - Return (t, back_'a1) + Return (t, back_'a) . (** [hashmap::{hashmap::HashMap}::get_mut]: diff --git a/tests/coq/hashmap_on_disk/HashmapMain_Funs.v b/tests/coq/hashmap_on_disk/HashmapMain_Funs.v index b74fa61a..6a7eeb2d 100644 --- a/tests/coq/hashmap_on_disk/HashmapMain_Funs.v +++ b/tests/coq/hashmap_on_disk/HashmapMain_Funs.v @@ -53,8 +53,9 @@ Definition hashmap_HashMap_new_with_capacity (max_load_divisor : usize) : result (hashmap_HashMap_t T) := - let v := alloc_vec_Vec_new (hashmap_List_t T) in - slots <- hashmap_HashMap_allocate_slots T n v capacity; + slots <- + hashmap_HashMap_allocate_slots T n (alloc_vec_Vec_new (hashmap_List_t T)) + capacity; i <- usize_mul capacity max_load_dividend; i1 <- usize_div i max_load_divisor; Return @@ -138,7 +139,7 @@ Fixpoint hashmap_HashMap_insert_in_list_loop let (b, back) := p in Return (b, Hashmap_List_Cons ckey cvalue back)) | Hashmap_List_Nil => - let l := Hashmap_List_Nil in Return (true, Hashmap_List_Cons key value l) + Return (true, Hashmap_List_Cons key value Hashmap_List_Nil) end end . @@ -424,8 +425,7 @@ Definition hashmap_HashMap_get_mut_in_list := p <- hashmap_HashMap_get_mut_in_list_loop T n ls key; let (t, back_'a) := p in - let back_'a1 := fun (ret : T) => back_'a ret in - Return (t, back_'a1) + Return (t, back_'a) . (** [hashmap_main::hashmap::{hashmap_main::hashmap::HashMap}::get_mut]: diff --git a/tests/coq/misc/External_Funs.v b/tests/coq/misc/External_Funs.v index 049f5d39..91ea88c9 100644 --- a/tests/coq/misc/External_Funs.v +++ b/tests/coq/misc/External_Funs.v @@ -31,9 +31,7 @@ Definition test_new_non_zero_u32 (** [external::test_vec]: Source: 'src/external.rs', lines 17:0-17:17 *) Definition test_vec : result unit := - let v := alloc_vec_Vec_new u32 in - _ <- alloc_vec_Vec_push u32 v 0%u32; - Return tt + _ <- alloc_vec_Vec_push u32 (alloc_vec_Vec_new u32) 0%u32; Return tt . (** Unit test for [external::test_vec] *) diff --git a/tests/coq/misc/NoNestedBorrows.v b/tests/coq/misc/NoNestedBorrows.v index 081c65c3..8857d4b6 100644 --- a/tests/coq/misc/NoNestedBorrows.v +++ b/tests/coq/misc/NoNestedBorrows.v @@ -244,11 +244,10 @@ Check (test_list1 )%return. (** [no_nested_borrows::test_box1]: Source: 'src/no_nested_borrows.rs', lines 208:0-208:18 *) Definition test_box1 : result unit := - let b := 0%i32 in - p <- alloc_boxed_Box_deref_mut i32 b; + p <- alloc_boxed_Box_deref_mut i32 0%i32; let (_, deref_mut_back) := p in - b1 <- deref_mut_back 1%i32; - x <- alloc_boxed_Box_deref i32 b1; + b <- deref_mut_back 1%i32; + x <- alloc_boxed_Box_deref i32 b; if negb (x s= 1%i32) then Fail_ Failure else Return tt . @@ -290,8 +289,7 @@ Definition is_cons (T : Type) (l : List_t T) : result bool := (** [no_nested_borrows::test_is_cons]: Source: 'src/no_nested_borrows.rs', lines 253:0-253:21 *) Definition test_is_cons : result unit := - let l := List_Nil in - b <- is_cons i32 (List_Cons 0%i32 l); + b <- is_cons i32 (List_Cons 0%i32 List_Nil); if negb b then Fail_ Failure else Return tt . @@ -310,8 +308,7 @@ Definition split_list (T : Type) (l : List_t T) : result (T * (List_t T)) := (** [no_nested_borrows::test_split_list]: Source: 'src/no_nested_borrows.rs', lines 267:0-267:24 *) Definition test_split_list : result unit := - let l := List_Nil in - p <- split_list i32 (List_Cons 0%i32 l); + p <- split_list i32 (List_Cons 0%i32 List_Nil); let (hd, _) := p in if negb (hd s= 0%i32) then Fail_ Failure else Return tt . @@ -436,26 +433,25 @@ Definition list_rev (T : Type) (l : List_t T) : result (List_t T) := (** [no_nested_borrows::test_list_functions]: Source: 'src/no_nested_borrows.rs', lines 398:0-398:28 *) Definition test_list_functions : result unit := - let l := List_Nil in - let l1 := List_Cons 2%i32 l in - let l2 := List_Cons 1%i32 l1 in - i <- list_length i32 (List_Cons 0%i32 l2); + let l := List_Cons 2%i32 List_Nil in + let l1 := List_Cons 1%i32 l in + i <- list_length i32 (List_Cons 0%i32 l1); if negb (i s= 3%u32) then Fail_ Failure else ( - i1 <- list_nth_shared i32 (List_Cons 0%i32 l2) 0%u32; + i1 <- list_nth_shared i32 (List_Cons 0%i32 l1) 0%u32; if negb (i1 s= 0%i32) then Fail_ Failure else ( - i2 <- list_nth_shared i32 (List_Cons 0%i32 l2) 1%u32; + i2 <- list_nth_shared i32 (List_Cons 0%i32 l1) 1%u32; if negb (i2 s= 1%i32) then Fail_ Failure else ( - i3 <- list_nth_shared i32 (List_Cons 0%i32 l2) 2%u32; + i3 <- list_nth_shared i32 (List_Cons 0%i32 l1) 2%u32; if negb (i3 s= 2%i32) then Fail_ Failure else ( - p <- list_nth_mut i32 (List_Cons 0%i32 l2) 1%u32; + p <- list_nth_mut i32 (List_Cons 0%i32 l1) 1%u32; let (_, list_nth_mut_back) := p in ls <- list_nth_mut_back 3%i32; i4 <- list_nth_shared i32 ls 0%u32; @@ -502,9 +498,7 @@ Definition id_mut_pair3 (T1 T2 : Type) (x : T1) (y : T2) : result ((T1 * T2) * (T1 -> result T1) * (T2 -> result T2)) := - let back_'a := fun (ret : T1) => Return ret in - let back_'b := fun (ret : T2) => Return ret in - Return ((x, y), back_'a, back_'b) + Return ((x, y), Return, Return) . (** [no_nested_borrows::id_mut_pair4]: @@ -513,10 +507,7 @@ Definition id_mut_pair4 (T1 T2 : Type) (p : (T1 * T2)) : result ((T1 * T2) * (T1 -> result T1) * (T2 -> result T2)) := - let (t, t1) := p in - let back_'a := fun (ret : T1) => Return ret in - let back_'b := fun (ret : T2) => Return ret in - Return ((t, t1), back_'a, back_'b) + let (t, t1) := p in Return ((t, t1), Return, Return) . (** [no_nested_borrows::StructWithTuple] diff --git a/tests/coq/misc/Paper.v b/tests/coq/misc/Paper.v index e46df0ce..769cf34c 100644 --- a/tests/coq/misc/Paper.v +++ b/tests/coq/misc/Paper.v @@ -96,14 +96,13 @@ Fixpoint sum (l : List_t i32) : result i32 := (** [paper::test_nth]: Source: 'src/paper.rs', lines 68:0-68:17 *) Definition test_nth : result unit := - let l := List_Nil in - let l1 := List_Cons 3%i32 l in - let l2 := List_Cons 2%i32 l1 in - p <- list_nth_mut i32 (List_Cons 1%i32 l2) 2%u32; + let l := List_Cons 3%i32 List_Nil in + let l1 := List_Cons 2%i32 l in + p <- list_nth_mut i32 (List_Cons 1%i32 l1) 2%u32; let (x, list_nth_mut_back) := p in x1 <- i32_add x 1%i32; - l3 <- list_nth_mut_back x1; - i <- sum l3; + l2 <- list_nth_mut_back x1; + i <- sum l2; if negb (i s= 7%i32) then Fail_ Failure else Return tt . diff --git a/tests/coq/misc/PoloniusList.v b/tests/coq/misc/PoloniusList.v index 7e967855..8f403a8e 100644 --- a/tests/coq/misc/PoloniusList.v +++ b/tests/coq/misc/PoloniusList.v @@ -27,9 +27,7 @@ Fixpoint get_list_at_x match ls with | List_Cons hd tl => if hd s= x - then - let back_'a := fun (ret : List_t u32) => Return ret in - Return (List_Cons hd tl, back_'a) + then Return (List_Cons hd tl, Return) else ( p <- get_list_at_x tl x; let (l, get_list_at_x_back) := p in @@ -37,9 +35,7 @@ Fixpoint get_list_at_x fun (ret : List_t u32) => tl1 <- get_list_at_x_back ret; Return (List_Cons hd tl1) in Return (l, back_'a)) - | List_Nil => - let back_'a := fun (ret : List_t u32) => Return ret in - Return (List_Nil, back_'a) + | List_Nil => Return (List_Nil, Return) end . diff --git a/tests/coq/traits/Traits.v b/tests/coq/traits/Traits.v index 7055e25d..7abf2021 100644 --- a/tests/coq/traits/Traits.v +++ b/tests/coq/traits/Traits.v @@ -334,7 +334,7 @@ Definition use_with_const_ty1 (H : Type) (LEN : usize) (withConstTyHLENInst : WithConstTy_t H LEN) : result usize := - let i := withConstTyHLENInst.(WithConstTy_tWithConstTy_t_LEN1) in Return i + Return withConstTyHLENInst.(WithConstTy_tWithConstTy_t_LEN1) . (** [traits::use_with_const_ty2]: diff --git a/tests/fstar-split/betree/BetreeMain.Funs.fst b/tests/fstar-split/betree/BetreeMain.Funs.fst index 6890488a..33133236 100644 --- a/tests/fstar-split/betree/BetreeMain.Funs.fst +++ b/tests/fstar-split/betree/BetreeMain.Funs.fst @@ -113,8 +113,7 @@ let rec betree_List_split_at let* i = u64_sub n 1 in let* p = betree_List_split_at t tl i in let (ls0, ls1) = p in - let l = ls0 in - Return (Betree_List_Cons hd l, ls1) + Return (Betree_List_Cons hd ls0, ls1) | Betree_List_Nil -> Fail Failure end @@ -124,8 +123,7 @@ let rec betree_List_split_at let betree_List_push_front (t : Type0) (self : betree_List_t t) (x : t) : result (betree_List_t t) = let tl = core_mem_replace (betree_List_t t) self Betree_List_Nil in - let l = tl in - Return (Betree_List_Cons x l) + Return (Betree_List_Cons x tl) (** [betree_main::betree::{betree_main::betree::List#1}::pop_front]: forward function Source: 'src/betree.rs', lines 306:4-306:32 *) @@ -178,8 +176,7 @@ let rec betree_ListTupleU64T_partition_at_pivot else let* p = betree_ListTupleU64T_partition_at_pivot t tl pivot in let (ls0, ls1) = p in - let l = ls0 in - Return (Betree_List_Cons (i, x) l, ls1) + Return (Betree_List_Cons (i, x) ls0, ls1) | Betree_List_Nil -> Return (Betree_List_Nil, Betree_List_Nil) end @@ -871,13 +868,12 @@ let betree_Node_apply (new_msg : betree_Message_t) (st : state) : result (state & unit) = - let l = Betree_List_Nil in let* (st1, _) = betree_Node_apply_messages self params node_id_cnt (Betree_List_Cons (key, - new_msg) l) st in + new_msg) Betree_List_Nil) st in let* _ = betree_Node_apply_messages_back self params node_id_cnt (Betree_List_Cons - (key, new_msg) l) st in + (key, new_msg) Betree_List_Nil) st in Return (st1, ()) (** [betree_main::betree::{betree_main::betree::Node#5}::apply]: backward function 0 @@ -888,9 +884,8 @@ let betree_Node_apply_back (new_msg : betree_Message_t) (st : state) : result (betree_Node_t & betree_NodeIdCounter_t) = - let l = Betree_List_Nil in betree_Node_apply_messages_back self params node_id_cnt (Betree_List_Cons - (key, new_msg) l) st + (key, new_msg) Betree_List_Nil) st (** [betree_main::betree::{betree_main::betree::BeTree#6}::new]: forward function Source: 'src/betree.rs', lines 849:4-849:60 *) diff --git a/tests/fstar-split/hashmap/Hashmap.Funs.fst b/tests/fstar-split/hashmap/Hashmap.Funs.fst index 79327183..290d49ee 100644 --- a/tests/fstar-split/hashmap/Hashmap.Funs.fst +++ b/tests/fstar-split/hashmap/Hashmap.Funs.fst @@ -41,8 +41,8 @@ let hashMap_new_with_capacity (max_load_divisor : usize) : result (hashMap_t t) = - let v = alloc_vec_Vec_new (list_t t) in - let* slots = hashMap_allocate_slots t v capacity in + let* slots = hashMap_allocate_slots t (alloc_vec_Vec_new (list_t t)) capacity + in let* i = usize_mul capacity max_load_dividend in let* i1 = usize_div i max_load_divisor in Return @@ -124,7 +124,7 @@ let rec hashMap_insert_in_list_loop_back else let* tl1 = hashMap_insert_in_list_loop_back t key value tl in Return (List_Cons ckey cvalue tl1) - | List_Nil -> let l = List_Nil in Return (List_Cons key value l) + | List_Nil -> Return (List_Cons key value List_Nil) end (** [hashmap::{hashmap::HashMap}::insert_in_list]: backward function 0 diff --git a/tests/fstar-split/hashmap_on_disk/HashmapMain.Funs.fst b/tests/fstar-split/hashmap_on_disk/HashmapMain.Funs.fst index b2800e1e..2e2d54b8 100644 --- a/tests/fstar-split/hashmap_on_disk/HashmapMain.Funs.fst +++ b/tests/fstar-split/hashmap_on_disk/HashmapMain.Funs.fst @@ -43,8 +43,9 @@ let hashmap_HashMap_new_with_capacity (max_load_divisor : usize) : result (hashmap_HashMap_t t) = - let v = alloc_vec_Vec_new (hashmap_List_t t) in - let* slots = hashmap_HashMap_allocate_slots t v capacity in + let* slots = + hashmap_HashMap_allocate_slots t (alloc_vec_Vec_new (hashmap_List_t t)) + capacity in let* i = usize_mul capacity max_load_dividend in let* i1 = usize_div i max_load_divisor in Return @@ -128,8 +129,7 @@ let rec hashmap_HashMap_insert_in_list_loop_back else let* tl1 = hashmap_HashMap_insert_in_list_loop_back t key value tl in Return (Hashmap_List_Cons ckey cvalue tl1) - | Hashmap_List_Nil -> - let l = Hashmap_List_Nil in Return (Hashmap_List_Cons key value l) + | Hashmap_List_Nil -> Return (Hashmap_List_Cons key value Hashmap_List_Nil) end (** [hashmap_main::hashmap::{hashmap_main::hashmap::HashMap}::insert_in_list]: backward function 0 diff --git a/tests/fstar-split/misc/External.Funs.fst b/tests/fstar-split/misc/External.Funs.fst index 3b84697e..65382549 100644 --- a/tests/fstar-split/misc/External.Funs.fst +++ b/tests/fstar-split/misc/External.Funs.fst @@ -36,9 +36,7 @@ let test_new_non_zero_u32 (** [external::test_vec]: forward function Source: 'src/external.rs', lines 17:0-17:17 *) let test_vec : result unit = - let v = alloc_vec_Vec_new u32 in - let* _ = alloc_vec_Vec_push u32 v 0 in - Return () + let* _ = alloc_vec_Vec_push u32 (alloc_vec_Vec_new u32) 0 in Return () (** Unit test for [external::test_vec] *) let _ = assert_norm (test_vec = Return ()) diff --git a/tests/fstar-split/misc/NoNestedBorrows.fst b/tests/fstar-split/misc/NoNestedBorrows.fst index 41bb7a06..53e1d300 100644 --- a/tests/fstar-split/misc/NoNestedBorrows.fst +++ b/tests/fstar-split/misc/NoNestedBorrows.fst @@ -220,9 +220,8 @@ let _ = assert_norm (test_list1 = Return ()) (** [no_nested_borrows::test_box1]: forward function Source: 'src/no_nested_borrows.rs', lines 208:0-208:18 *) let test_box1 : result unit = - let b = 0 in - let* b1 = alloc_boxed_Box_deref_mut_back i32 b 1 in - let* x = alloc_boxed_Box_deref i32 b1 in + let* b = alloc_boxed_Box_deref_mut_back i32 0 1 in + let* x = alloc_boxed_Box_deref i32 b in if not (x = 1) then Fail Failure else Return () (** Unit test for [no_nested_borrows::test_box1] *) @@ -262,8 +261,7 @@ let is_cons (t : Type0) (l : list_t t) : result bool = (** [no_nested_borrows::test_is_cons]: forward function Source: 'src/no_nested_borrows.rs', lines 253:0-253:21 *) let test_is_cons : result unit = - let l = List_Nil in - let* b = is_cons i32 (List_Cons 0 l) in + let* b = is_cons i32 (List_Cons 0 List_Nil) in if not b then Fail Failure else Return () (** Unit test for [no_nested_borrows::test_is_cons] *) @@ -280,8 +278,7 @@ let split_list (t : Type0) (l : list_t t) : result (t & (list_t t)) = (** [no_nested_borrows::test_split_list]: forward function Source: 'src/no_nested_borrows.rs', lines 267:0-267:24 *) let test_split_list : result unit = - let l = List_Nil in - let* p = split_list i32 (List_Cons 0 l) in + let* p = split_list i32 (List_Cons 0 List_Nil) in let (hd, _) = p in if not (hd = 0) then Fail Failure else Return () @@ -393,26 +390,25 @@ let list_rev (t : Type0) (l : list_t t) : result (list_t t) = (** [no_nested_borrows::test_list_functions]: forward function Source: 'src/no_nested_borrows.rs', lines 398:0-398:28 *) let test_list_functions : result unit = - let l = List_Nil in - let l1 = List_Cons 2 l in - let l2 = List_Cons 1 l1 in - let* i = list_length i32 (List_Cons 0 l2) in + let l = List_Cons 2 List_Nil in + let l1 = List_Cons 1 l in + let* i = list_length i32 (List_Cons 0 l1) in if not (i = 3) then Fail Failure else - let* i1 = list_nth_shared i32 (List_Cons 0 l2) 0 in + let* i1 = list_nth_shared i32 (List_Cons 0 l1) 0 in if not (i1 = 0) then Fail Failure else - let* i2 = list_nth_shared i32 (List_Cons 0 l2) 1 in + let* i2 = list_nth_shared i32 (List_Cons 0 l1) 1 in if not (i2 = 1) then Fail Failure else - let* i3 = list_nth_shared i32 (List_Cons 0 l2) 2 in + let* i3 = list_nth_shared i32 (List_Cons 0 l1) 2 in if not (i3 = 2) then Fail Failure else - let* ls = list_nth_mut_back i32 (List_Cons 0 l2) 1 3 in + let* ls = list_nth_mut_back i32 (List_Cons 0 l1) 1 3 in let* i4 = list_nth_shared i32 ls 0 in if not (i4 = 0) then Fail Failure diff --git a/tests/fstar-split/misc/Paper.fst b/tests/fstar-split/misc/Paper.fst index 2dc804de..0c44d78b 100644 --- a/tests/fstar-split/misc/Paper.fst +++ b/tests/fstar-split/misc/Paper.fst @@ -87,13 +87,12 @@ let rec sum (l : list_t i32) : result i32 = (** [paper::test_nth]: forward function Source: 'src/paper.rs', lines 68:0-68:17 *) let test_nth : result unit = - let l = List_Nil in - let l1 = List_Cons 3 l in - let l2 = List_Cons 2 l1 in - let* x = list_nth_mut i32 (List_Cons 1 l2) 2 in + let l = List_Cons 3 List_Nil in + let l1 = List_Cons 2 l in + let* x = list_nth_mut i32 (List_Cons 1 l1) 2 in let* x1 = i32_add x 1 in - let* l3 = list_nth_mut_back i32 (List_Cons 1 l2) 2 x1 in - let* i = sum l3 in + let* l2 = list_nth_mut_back i32 (List_Cons 1 l1) 2 x1 in + let* i = sum l2 in if not (i = 7) then Fail Failure else Return () (** Unit test for [paper::test_nth] *) diff --git a/tests/fstar-split/traits/Traits.fst b/tests/fstar-split/traits/Traits.fst index 29a001b2..d3847590 100644 --- a/tests/fstar-split/traits/Traits.fst +++ b/tests/fstar-split/traits/Traits.fst @@ -274,7 +274,7 @@ let use_with_const_ty1 (h : Type0) (len : usize) (withConstTyHLENInst : withConstTy_t h len) : result usize = - let i = withConstTyHLENInst.cLEN1 in Return i + Return withConstTyHLENInst.cLEN1 (** [traits::use_with_const_ty2]: forward function Source: 'src/traits.rs', lines 187:0-187:73 *) diff --git a/tests/fstar/array/Array.Funs.fst b/tests/fstar/array/Array.Funs.fst index da4164bc..4193ba7d 100644 --- a/tests/fstar/array/Array.Funs.fst +++ b/tests/fstar/array/Array.Funs.fst @@ -24,8 +24,7 @@ let array_to_mut_slice_ result ((slice t) & (slice t -> result (array t 32))) = let* (s1, to_slice_mut_back) = array_to_slice_mut t 32 s in - let back = fun ret -> to_slice_mut_back ret in - Return (s1, back) + Return (s1, to_slice_mut_back) (** [array::array_len]: Source: 'src/array.rs', lines 25:0-25:40 *) @@ -64,8 +63,7 @@ let index_mut_array result (t & (t -> result (array t 32))) = let* (x, index_mut_back) = array_index_mut_usize t 32 s i in - let back = fun ret -> index_mut_back ret in - Return (x, back) + Return (x, index_mut_back) (** [array::index_slice]: Source: 'src/array.rs', lines 56:0-56:46 *) @@ -79,8 +77,7 @@ let index_mut_slice result (t & (t -> result (slice t))) = let* (x, index_mut_back) = slice_index_mut_usize t s i in - let back = fun ret -> index_mut_back ret in - Return (x, back) + Return (x, index_mut_back) (** [array::slice_subslice_shared_]: Source: 'src/array.rs', lines 64:0-64:70 *) @@ -100,8 +97,7 @@ let slice_subslice_mut_ core_slice_index_Slice_index_mut u32 (core_ops_range_Range usize) (core_slice_index_SliceIndexRangeUsizeSliceTInst u32) x { start = y; end_ = z } in - let back = fun ret -> index_mut_back ret in - Return (s, back) + Return (s, index_mut_back) (** [array::array_to_slice_shared_]: Source: 'src/array.rs', lines 72:0-72:54 *) @@ -115,8 +111,7 @@ let array_to_slice_mut_ result ((slice u32) & (slice u32 -> result (array u32 32))) = let* (s, to_slice_mut_back) = array_to_slice_mut u32 32 x in - let back = fun ret -> to_slice_mut_back ret in - Return (s, back) + Return (s, to_slice_mut_back) (** [array::array_subslice_shared_]: Source: 'src/array.rs', lines 80:0-80:74 *) @@ -138,8 +133,7 @@ let array_subslice_mut_ (core_ops_index_IndexMutSliceTIInst u32 (core_ops_range_Range usize) (core_slice_index_SliceIndexRangeUsizeSliceTInst u32)) x { start = y; end_ = z } in - let back = fun ret -> index_mut_back ret in - Return (s, back) + Return (s, index_mut_back) (** [array::index_slice_0]: Source: 'src/array.rs', lines 88:0-88:38 *) diff --git a/tests/fstar/betree/BetreeMain.Funs.fst b/tests/fstar/betree/BetreeMain.Funs.fst index a3065f3d..196f120c 100644 --- a/tests/fstar/betree/BetreeMain.Funs.fst +++ b/tests/fstar/betree/BetreeMain.Funs.fst @@ -103,8 +103,7 @@ let rec betree_List_split_at let* i = u64_sub n 1 in let* p = betree_List_split_at t tl i in let (ls0, ls1) = p in - let l = ls0 in - Return (Betree_List_Cons hd l, ls1) + Return (Betree_List_Cons hd ls0, ls1) | Betree_List_Nil -> Fail Failure end @@ -113,8 +112,7 @@ let rec betree_List_split_at let betree_List_push_front (t : Type0) (self : betree_List_t t) (x : t) : result (betree_List_t t) = let (tl, _) = core_mem_replace (betree_List_t t) self Betree_List_Nil in - let l = tl in - Return (Betree_List_Cons x l) + Return (Betree_List_Cons x tl) (** [betree_main::betree::{betree_main::betree::List#1}::pop_front]: Source: 'src/betree.rs', lines 306:4-306:32 *) @@ -158,8 +156,7 @@ let rec betree_ListTupleU64T_partition_at_pivot else let* p = betree_ListTupleU64T_partition_at_pivot t tl pivot in let (ls0, ls1) = p in - let l = ls0 in - Return (Betree_List_Cons (i, x) l, ls1) + Return (Betree_List_Cons (i, x) ls0, ls1) | Betree_List_Nil -> Return (Betree_List_Nil, Betree_List_Nil) end @@ -195,9 +192,7 @@ let rec betree_Node_lookup_first_message_for_key | Betree_List_Cons x next_msgs -> let (i, m) = x in if i >= key - then - let back_'a = fun ret -> Return ret in - Return (Betree_List_Cons (i, m) next_msgs, back_'a) + then Return (Betree_List_Cons (i, m) next_msgs, Return) else let* (l, lookup_first_message_for_key_back) = betree_Node_lookup_first_message_for_key key next_msgs in @@ -206,8 +201,7 @@ let rec betree_Node_lookup_first_message_for_key let* next_msgs1 = lookup_first_message_for_key_back ret in Return (Betree_List_Cons (i, m) next_msgs1) in Return (l, back_'a) - | Betree_List_Nil -> - let back_'a = fun ret -> Return ret in Return (Betree_List_Nil, back_'a) + | Betree_List_Nil -> Return (Betree_List_Nil, Return) end (** [betree_main::betree::{betree_main::betree::Node#5}::lookup_in_bindings]: @@ -362,11 +356,8 @@ let rec betree_Node_lookup_first_message_after_key let* next_msgs1 = lookup_first_message_after_key_back ret in Return (Betree_List_Cons (k, m) next_msgs1) in Return (l, back_'a) - else - let back_'a = fun ret -> Return ret in - Return (Betree_List_Cons (k, m) next_msgs, back_'a) - | Betree_List_Nil -> - let back_'a = fun ret -> Return ret in Return (Betree_List_Nil, back_'a) + else Return (Betree_List_Cons (k, m) next_msgs, Return) + | Betree_List_Nil -> Return (Betree_List_Nil, Return) end (** [betree_main::betree::{betree_main::betree::Node#5}::apply_to_internal]: @@ -455,9 +446,7 @@ let rec betree_Node_lookup_mut_in_bindings | Betree_List_Cons hd tl -> let (i, i1) = hd in if i >= key - then - let back_'a = fun ret -> Return ret in - Return (Betree_List_Cons (i, i1) tl, back_'a) + then Return (Betree_List_Cons (i, i1) tl, Return) else let* (l, lookup_mut_in_bindings_back) = betree_Node_lookup_mut_in_bindings key tl in @@ -466,8 +455,7 @@ let rec betree_Node_lookup_mut_in_bindings let* tl1 = lookup_mut_in_bindings_back ret in Return (Betree_List_Cons (i, i1) tl1) in Return (l, back_'a) - | Betree_List_Nil -> - let back_'a = fun ret -> Return ret in Return (Betree_List_Nil, back_'a) + | Betree_List_Nil -> Return (Betree_List_Nil, Return) end (** [betree_main::betree::{betree_main::betree::Node#5}::apply_to_leaf]: @@ -608,10 +596,9 @@ let betree_Node_apply (new_msg : betree_Message_t) (st : state) : result (state & (betree_Node_t & betree_NodeIdCounter_t)) = - let l = Betree_List_Nil in let* (st1, p) = betree_Node_apply_messages self params node_id_cnt (Betree_List_Cons (key, - new_msg) l) st in + new_msg) Betree_List_Nil) st in let (self1, node_id_cnt1) = p in Return (st1, (self1, node_id_cnt1)) diff --git a/tests/fstar/betree_back_stateful/BetreeMain.Funs.fst b/tests/fstar/betree_back_stateful/BetreeMain.Funs.fst index a3065f3d..196f120c 100644 --- a/tests/fstar/betree_back_stateful/BetreeMain.Funs.fst +++ b/tests/fstar/betree_back_stateful/BetreeMain.Funs.fst @@ -103,8 +103,7 @@ let rec betree_List_split_at let* i = u64_sub n 1 in let* p = betree_List_split_at t tl i in let (ls0, ls1) = p in - let l = ls0 in - Return (Betree_List_Cons hd l, ls1) + Return (Betree_List_Cons hd ls0, ls1) | Betree_List_Nil -> Fail Failure end @@ -113,8 +112,7 @@ let rec betree_List_split_at let betree_List_push_front (t : Type0) (self : betree_List_t t) (x : t) : result (betree_List_t t) = let (tl, _) = core_mem_replace (betree_List_t t) self Betree_List_Nil in - let l = tl in - Return (Betree_List_Cons x l) + Return (Betree_List_Cons x tl) (** [betree_main::betree::{betree_main::betree::List#1}::pop_front]: Source: 'src/betree.rs', lines 306:4-306:32 *) @@ -158,8 +156,7 @@ let rec betree_ListTupleU64T_partition_at_pivot else let* p = betree_ListTupleU64T_partition_at_pivot t tl pivot in let (ls0, ls1) = p in - let l = ls0 in - Return (Betree_List_Cons (i, x) l, ls1) + Return (Betree_List_Cons (i, x) ls0, ls1) | Betree_List_Nil -> Return (Betree_List_Nil, Betree_List_Nil) end @@ -195,9 +192,7 @@ let rec betree_Node_lookup_first_message_for_key | Betree_List_Cons x next_msgs -> let (i, m) = x in if i >= key - then - let back_'a = fun ret -> Return ret in - Return (Betree_List_Cons (i, m) next_msgs, back_'a) + then Return (Betree_List_Cons (i, m) next_msgs, Return) else let* (l, lookup_first_message_for_key_back) = betree_Node_lookup_first_message_for_key key next_msgs in @@ -206,8 +201,7 @@ let rec betree_Node_lookup_first_message_for_key let* next_msgs1 = lookup_first_message_for_key_back ret in Return (Betree_List_Cons (i, m) next_msgs1) in Return (l, back_'a) - | Betree_List_Nil -> - let back_'a = fun ret -> Return ret in Return (Betree_List_Nil, back_'a) + | Betree_List_Nil -> Return (Betree_List_Nil, Return) end (** [betree_main::betree::{betree_main::betree::Node#5}::lookup_in_bindings]: @@ -362,11 +356,8 @@ let rec betree_Node_lookup_first_message_after_key let* next_msgs1 = lookup_first_message_after_key_back ret in Return (Betree_List_Cons (k, m) next_msgs1) in Return (l, back_'a) - else - let back_'a = fun ret -> Return ret in - Return (Betree_List_Cons (k, m) next_msgs, back_'a) - | Betree_List_Nil -> - let back_'a = fun ret -> Return ret in Return (Betree_List_Nil, back_'a) + else Return (Betree_List_Cons (k, m) next_msgs, Return) + | Betree_List_Nil -> Return (Betree_List_Nil, Return) end (** [betree_main::betree::{betree_main::betree::Node#5}::apply_to_internal]: @@ -455,9 +446,7 @@ let rec betree_Node_lookup_mut_in_bindings | Betree_List_Cons hd tl -> let (i, i1) = hd in if i >= key - then - let back_'a = fun ret -> Return ret in - Return (Betree_List_Cons (i, i1) tl, back_'a) + then Return (Betree_List_Cons (i, i1) tl, Return) else let* (l, lookup_mut_in_bindings_back) = betree_Node_lookup_mut_in_bindings key tl in @@ -466,8 +455,7 @@ let rec betree_Node_lookup_mut_in_bindings let* tl1 = lookup_mut_in_bindings_back ret in Return (Betree_List_Cons (i, i1) tl1) in Return (l, back_'a) - | Betree_List_Nil -> - let back_'a = fun ret -> Return ret in Return (Betree_List_Nil, back_'a) + | Betree_List_Nil -> Return (Betree_List_Nil, Return) end (** [betree_main::betree::{betree_main::betree::Node#5}::apply_to_leaf]: @@ -608,10 +596,9 @@ let betree_Node_apply (new_msg : betree_Message_t) (st : state) : result (state & (betree_Node_t & betree_NodeIdCounter_t)) = - let l = Betree_List_Nil in let* (st1, p) = betree_Node_apply_messages self params node_id_cnt (Betree_List_Cons (key, - new_msg) l) st in + new_msg) Betree_List_Nil) st in let (self1, node_id_cnt1) = p in Return (st1, (self1, node_id_cnt1)) diff --git a/tests/fstar/hashmap/Hashmap.Funs.fst b/tests/fstar/hashmap/Hashmap.Funs.fst index 9fc5d8a0..447f9b49 100644 --- a/tests/fstar/hashmap/Hashmap.Funs.fst +++ b/tests/fstar/hashmap/Hashmap.Funs.fst @@ -41,8 +41,8 @@ let hashMap_new_with_capacity (max_load_divisor : usize) : result (hashMap_t t) = - let v = alloc_vec_Vec_new (list_t t) in - let* slots = hashMap_allocate_slots t v capacity in + let* slots = hashMap_allocate_slots t (alloc_vec_Vec_new (list_t t)) capacity + in let* i = usize_mul capacity max_load_dividend in let* i1 = usize_div i max_load_divisor in Return @@ -101,7 +101,7 @@ let rec hashMap_insert_in_list_loop else let* (b, back) = hashMap_insert_in_list_loop t key value tl in Return (b, List_Cons ckey cvalue back) - | List_Nil -> let l = List_Nil in Return (true, List_Cons key value l) + | List_Nil -> Return (true, List_Cons key value List_Nil) end (** [hashmap::{hashmap::HashMap}::insert_in_list]: @@ -309,8 +309,7 @@ let hashMap_get_mut_in_list result (t & (t -> result (list_t t))) = let* (x, back_'a) = hashMap_get_mut_in_list_loop t ls key in - let back_'a1 = fun ret -> back_'a ret in - Return (x, back_'a1) + Return (x, back_'a) (** [hashmap::{hashmap::HashMap}::get_mut]: Source: 'src/hashmap.rs', lines 257:4-257:67 *) diff --git a/tests/fstar/hashmap_on_disk/HashmapMain.Funs.fst b/tests/fstar/hashmap_on_disk/HashmapMain.Funs.fst index 3a042678..b16dcada 100644 --- a/tests/fstar/hashmap_on_disk/HashmapMain.Funs.fst +++ b/tests/fstar/hashmap_on_disk/HashmapMain.Funs.fst @@ -42,8 +42,9 @@ let hashmap_HashMap_new_with_capacity (max_load_divisor : usize) : result (hashmap_HashMap_t t) = - let v = alloc_vec_Vec_new (hashmap_List_t t) in - let* slots = hashmap_HashMap_allocate_slots t v capacity in + let* slots = + hashmap_HashMap_allocate_slots t (alloc_vec_Vec_new (hashmap_List_t t)) + capacity in let* i = usize_mul capacity max_load_dividend in let* i1 = usize_div i max_load_divisor in Return @@ -106,7 +107,7 @@ let rec hashmap_HashMap_insert_in_list_loop let* (b, back) = hashmap_HashMap_insert_in_list_loop t key value tl in Return (b, Hashmap_List_Cons ckey cvalue back) | Hashmap_List_Nil -> - let l = Hashmap_List_Nil in Return (true, Hashmap_List_Cons key value l) + Return (true, Hashmap_List_Cons key value Hashmap_List_Nil) end (** [hashmap_main::hashmap::{hashmap_main::hashmap::HashMap}::insert_in_list]: @@ -324,8 +325,7 @@ let hashmap_HashMap_get_mut_in_list result (t & (t -> result (hashmap_List_t t))) = let* (x, back_'a) = hashmap_HashMap_get_mut_in_list_loop t ls key in - let back_'a1 = fun ret -> back_'a ret in - Return (x, back_'a1) + Return (x, back_'a) (** [hashmap_main::hashmap::{hashmap_main::hashmap::HashMap}::get_mut]: Source: 'src/hashmap.rs', lines 257:4-257:67 *) diff --git a/tests/fstar/misc/External.Funs.fst b/tests/fstar/misc/External.Funs.fst index bb1b9a64..6672b523 100644 --- a/tests/fstar/misc/External.Funs.fst +++ b/tests/fstar/misc/External.Funs.fst @@ -22,9 +22,7 @@ let test_new_non_zero_u32 (** [external::test_vec]: Source: 'src/external.rs', lines 17:0-17:17 *) let test_vec : result unit = - let v = alloc_vec_Vec_new u32 in - let* _ = alloc_vec_Vec_push u32 v 0 in - Return () + let* _ = alloc_vec_Vec_push u32 (alloc_vec_Vec_new u32) 0 in Return () (** Unit test for [external::test_vec] *) let _ = assert_norm (test_vec = Return ()) diff --git a/tests/fstar/misc/NoNestedBorrows.fst b/tests/fstar/misc/NoNestedBorrows.fst index 0fd0c1dc..ffcc32f3 100644 --- a/tests/fstar/misc/NoNestedBorrows.fst +++ b/tests/fstar/misc/NoNestedBorrows.fst @@ -220,10 +220,9 @@ let _ = assert_norm (test_list1 = Return ()) (** [no_nested_borrows::test_box1]: Source: 'src/no_nested_borrows.rs', lines 208:0-208:18 *) let test_box1 : result unit = - let b = 0 in - let* (_, deref_mut_back) = alloc_boxed_Box_deref_mut i32 b in - let* b1 = deref_mut_back 1 in - let* x = alloc_boxed_Box_deref i32 b1 in + let* (_, deref_mut_back) = alloc_boxed_Box_deref_mut i32 0 in + let* b = deref_mut_back 1 in + let* x = alloc_boxed_Box_deref i32 b in if not (x = 1) then Fail Failure else Return () (** Unit test for [no_nested_borrows::test_box1] *) @@ -263,8 +262,7 @@ let is_cons (t : Type0) (l : list_t t) : result bool = (** [no_nested_borrows::test_is_cons]: Source: 'src/no_nested_borrows.rs', lines 253:0-253:21 *) let test_is_cons : result unit = - let l = List_Nil in - let* b = is_cons i32 (List_Cons 0 l) in + let* b = is_cons i32 (List_Cons 0 List_Nil) in if not b then Fail Failure else Return () (** Unit test for [no_nested_borrows::test_is_cons] *) @@ -281,8 +279,7 @@ let split_list (t : Type0) (l : list_t t) : result (t & (list_t t)) = (** [no_nested_borrows::test_split_list]: Source: 'src/no_nested_borrows.rs', lines 267:0-267:24 *) let test_split_list : result unit = - let l = List_Nil in - let* p = split_list i32 (List_Cons 0 l) in + let* p = split_list i32 (List_Cons 0 List_Nil) in let (hd, _) = p in if not (hd = 0) then Fail Failure else Return () @@ -388,26 +385,25 @@ let list_rev (t : Type0) (l : list_t t) : result (list_t t) = (** [no_nested_borrows::test_list_functions]: Source: 'src/no_nested_borrows.rs', lines 398:0-398:28 *) let test_list_functions : result unit = - let l = List_Nil in - let l1 = List_Cons 2 l in - let l2 = List_Cons 1 l1 in - let* i = list_length i32 (List_Cons 0 l2) in + let l = List_Cons 2 List_Nil in + let l1 = List_Cons 1 l in + let* i = list_length i32 (List_Cons 0 l1) in if not (i = 3) then Fail Failure else - let* i1 = list_nth_shared i32 (List_Cons 0 l2) 0 in + let* i1 = list_nth_shared i32 (List_Cons 0 l1) 0 in if not (i1 = 0) then Fail Failure else - let* i2 = list_nth_shared i32 (List_Cons 0 l2) 1 in + let* i2 = list_nth_shared i32 (List_Cons 0 l1) 1 in if not (i2 = 1) then Fail Failure else - let* i3 = list_nth_shared i32 (List_Cons 0 l2) 2 in + let* i3 = list_nth_shared i32 (List_Cons 0 l1) 2 in if not (i3 = 2) then Fail Failure else - let* (_, list_nth_mut_back) = list_nth_mut i32 (List_Cons 0 l2) 1 in + let* (_, list_nth_mut_back) = list_nth_mut i32 (List_Cons 0 l1) 1 in let* ls = list_nth_mut_back 3 in let* i4 = list_nth_shared i32 ls 0 in if not (i4 = 0) @@ -448,9 +444,7 @@ let id_mut_pair3 (t1 t2 : Type0) (x : t1) (y : t2) : result ((t1 & t2) & (t1 -> result t1) & (t2 -> result t2)) = - let back_'a = fun ret -> Return ret in - let back_'b = fun ret -> Return ret in - Return ((x, y), back_'a, back_'b) + Return ((x, y), Return, Return) (** [no_nested_borrows::id_mut_pair4]: Source: 'src/no_nested_borrows.rs', lines 426:0-426:92 *) @@ -458,10 +452,7 @@ let id_mut_pair4 (t1 t2 : Type0) (p : (t1 & t2)) : result ((t1 & t2) & (t1 -> result t1) & (t2 -> result t2)) = - let (x, x1) = p in - let back_'a = fun ret -> Return ret in - let back_'b = fun ret -> Return ret in - Return ((x, x1), back_'a, back_'b) + let (x, x1) = p in Return ((x, x1), Return, Return) (** [no_nested_borrows::StructWithTuple] Source: 'src/no_nested_borrows.rs', lines 433:0-433:34 *) diff --git a/tests/fstar/misc/Paper.fst b/tests/fstar/misc/Paper.fst index c6082929..cf4dc454 100644 --- a/tests/fstar/misc/Paper.fst +++ b/tests/fstar/misc/Paper.fst @@ -80,13 +80,12 @@ let rec sum (l : list_t i32) : result i32 = (** [paper::test_nth]: Source: 'src/paper.rs', lines 68:0-68:17 *) let test_nth : result unit = - let l = List_Nil in - let l1 = List_Cons 3 l in - let l2 = List_Cons 2 l1 in - let* (x, list_nth_mut_back) = list_nth_mut i32 (List_Cons 1 l2) 2 in + let l = List_Cons 3 List_Nil in + let l1 = List_Cons 2 l in + let* (x, list_nth_mut_back) = list_nth_mut i32 (List_Cons 1 l1) 2 in let* x1 = i32_add x 1 in - let* l3 = list_nth_mut_back x1 in - let* i = sum l3 in + let* l2 = list_nth_mut_back x1 in + let* i = sum l2 in if not (i = 7) then Fail Failure else Return () (** Unit test for [paper::test_nth] *) diff --git a/tests/fstar/misc/PoloniusList.fst b/tests/fstar/misc/PoloniusList.fst index cbe7d6b8..b477802b 100644 --- a/tests/fstar/misc/PoloniusList.fst +++ b/tests/fstar/misc/PoloniusList.fst @@ -20,15 +20,13 @@ let rec get_list_at_x begin match ls with | List_Cons hd tl -> if hd = x - then - let back_'a = fun ret -> Return ret in Return (List_Cons hd tl, back_'a) + then Return (List_Cons hd tl, Return) else let* (l, get_list_at_x_back) = get_list_at_x tl x in let back_'a = fun ret -> let* tl1 = get_list_at_x_back ret in Return (List_Cons hd tl1) in Return (l, back_'a) - | List_Nil -> - let back_'a = fun ret -> Return ret in Return (List_Nil, back_'a) + | List_Nil -> Return (List_Nil, Return) end diff --git a/tests/fstar/traits/Traits.fst b/tests/fstar/traits/Traits.fst index 3543bd73..cb9c1654 100644 --- a/tests/fstar/traits/Traits.fst +++ b/tests/fstar/traits/Traits.fst @@ -273,7 +273,7 @@ let use_with_const_ty1 (h : Type0) (len : usize) (withConstTyHLENInst : withConstTy_t h len) : result usize = - let i = withConstTyHLENInst.cLEN1 in Return i + Return withConstTyHLENInst.cLEN1 (** [traits::use_with_const_ty2]: Source: 'src/traits.rs', lines 187:0-187:73 *) diff --git a/tests/lean/Array.lean b/tests/lean/Array.lean index 20f3425e..7785a208 100644 --- a/tests/lean/Array.lean +++ b/tests/lean/Array.lean @@ -30,8 +30,7 @@ def array_to_mut_slice_ := do let (s1, to_slice_mut_back) ← Array.to_slice_mut T 32#usize s - let back := fun ret => to_slice_mut_back ret - Result.ret (s1, back) + Result.ret (s1, to_slice_mut_back) /- [array::array_len]: Source: 'src/array.rs', lines 25:0-25:40 -/ @@ -79,8 +78,7 @@ def index_mut_array := do let (t, index_mut_back) ← Array.index_mut_usize T 32#usize s i - let back := fun ret => index_mut_back ret - Result.ret (t, back) + Result.ret (t, index_mut_back) /- [array::index_slice]: Source: 'src/array.rs', lines 56:0-56:46 -/ @@ -95,8 +93,7 @@ def index_mut_slice := do let (t, index_mut_back) ← Slice.index_mut_usize T s i - let back := fun ret => index_mut_back ret - Result.ret (t, back) + Result.ret (t, index_mut_back) /- [array::slice_subslice_shared_]: Source: 'src/array.rs', lines 64:0-64:70 -/ @@ -117,8 +114,7 @@ def slice_subslice_mut_ core.slice.index.Slice.index_mut U32 (core.ops.range.Range Usize) (core.slice.index.SliceIndexRangeUsizeSliceTInst U32) x { start := y, end_ := z } - let back := fun ret => index_mut_back ret - Result.ret (s, back) + Result.ret (s, index_mut_back) /- [array::array_to_slice_shared_]: Source: 'src/array.rs', lines 72:0-72:54 -/ @@ -133,8 +129,7 @@ def array_to_slice_mut_ := do let (s, to_slice_mut_back) ← Array.to_slice_mut U32 32#usize x - let back := fun ret => to_slice_mut_back ret - Result.ret (s, back) + Result.ret (s, to_slice_mut_back) /- [array::array_subslice_shared_]: Source: 'src/array.rs', lines 80:0-80:74 -/ @@ -157,8 +152,7 @@ def array_subslice_mut_ (core.ops.index.IndexMutSliceTIInst U32 (core.ops.range.Range Usize) (core.slice.index.SliceIndexRangeUsizeSliceTInst U32)) x { start := y, end_ := z } - let back := fun ret => index_mut_back ret - Result.ret (s, back) + Result.ret (s, index_mut_back) /- [array::index_slice_0]: Source: 'src/array.rs', lines 88:0-88:38 -/ diff --git a/tests/lean/BetreeMain/Funs.lean b/tests/lean/BetreeMain/Funs.lean index 4e64d217..96daa197 100644 --- a/tests/lean/BetreeMain/Funs.lean +++ b/tests/lean/BetreeMain/Funs.lean @@ -107,8 +107,7 @@ divergent def betree.List.split_at let i ← n - 1#u64 let p ← betree.List.split_at T tl i let (ls0, ls1) := p - let l := ls0 - Result.ret (betree.List.Cons hd l, ls1) + Result.ret (betree.List.Cons hd ls0, ls1) | betree.List.Nil => Result.fail .panic /- [betree_main::betree::{betree_main::betree::List#1}::push_front]: @@ -116,8 +115,7 @@ divergent def betree.List.split_at def betree.List.push_front (T : Type) (self : betree.List T) (x : T) : Result (betree.List T) := let (tl, _) := core.mem.replace (betree.List T) self betree.List.Nil - let l := tl - Result.ret (betree.List.Cons x l) + Result.ret (betree.List.Cons x tl) /- [betree_main::betree::{betree_main::betree::List#1}::pop_front]: Source: 'src/betree.rs', lines 306:4-306:32 -/ @@ -159,8 +157,7 @@ divergent def betree.ListTupleU64T.partition_at_pivot do let p ← betree.ListTupleU64T.partition_at_pivot T tl pivot let (ls0, ls1) := p - let l := ls0 - Result.ret (betree.List.Cons (i, t) l, ls1) + Result.ret (betree.List.Cons (i, t) ls0, ls1) | betree.List.Nil => Result.ret (betree.List.Nil, betree.List.Nil) /- [betree_main::betree::{betree_main::betree::Leaf#3}::split]: @@ -194,9 +191,7 @@ divergent def betree.Node.lookup_first_message_for_key | betree.List.Cons x next_msgs => let (i, m) := x if i >= key - then - let back_'a := fun ret => Result.ret ret - Result.ret (betree.List.Cons (i, m) next_msgs, back_'a) + then Result.ret (betree.List.Cons (i, m) next_msgs, Result.ret) else do let (l, lookup_first_message_for_key_back) ← @@ -207,9 +202,7 @@ divergent def betree.Node.lookup_first_message_for_key let next_msgs1 ← lookup_first_message_for_key_back ret Result.ret (betree.List.Cons (i, m) next_msgs1) Result.ret (l, back_'a) - | betree.List.Nil => - let back_'a := fun ret => Result.ret ret - Result.ret (betree.List.Nil, back_'a) + | betree.List.Nil => Result.ret (betree.List.Nil, Result.ret) /- [betree_main::betree::{betree_main::betree::Node#5}::lookup_in_bindings]: Source: 'src/betree.rs', lines 636:4-636:80 -/ @@ -381,12 +374,8 @@ divergent def betree.Node.lookup_first_message_after_key let next_msgs1 ← lookup_first_message_after_key_back ret Result.ret (betree.List.Cons (k, m) next_msgs1) Result.ret (l, back_'a) - else - let back_'a := fun ret => Result.ret ret - Result.ret (betree.List.Cons (k, m) next_msgs, back_'a) - | betree.List.Nil => - let back_'a := fun ret => Result.ret ret - Result.ret (betree.List.Nil, back_'a) + else Result.ret (betree.List.Cons (k, m) next_msgs, Result.ret) + | betree.List.Nil => Result.ret (betree.List.Nil, Result.ret) /- [betree_main::betree::{betree_main::betree::Node#5}::apply_to_internal]: Source: 'src/betree.rs', lines 521:4-521:89 -/ @@ -478,9 +467,7 @@ divergent def betree.Node.lookup_mut_in_bindings | betree.List.Cons hd tl => let (i, i1) := hd if i >= key - then - let back_'a := fun ret => Result.ret ret - Result.ret (betree.List.Cons (i, i1) tl, back_'a) + then Result.ret (betree.List.Cons (i, i1) tl, Result.ret) else do let (l, lookup_mut_in_bindings_back) ← @@ -491,9 +478,7 @@ divergent def betree.Node.lookup_mut_in_bindings let tl1 ← lookup_mut_in_bindings_back ret Result.ret (betree.List.Cons (i, i1) tl1) Result.ret (l, back_'a) - | betree.List.Nil => - let back_'a := fun ret => Result.ret ret - Result.ret (betree.List.Nil, back_'a) + | betree.List.Nil => Result.ret (betree.List.Nil, Result.ret) /- [betree_main::betree::{betree_main::betree::Node#5}::apply_to_leaf]: Source: 'src/betree.rs', lines 460:4-460:87 -/ @@ -650,10 +635,9 @@ def betree.Node.apply Result (State × (betree.Node × betree.NodeIdCounter)) := do - let l := betree.List.Nil let (st1, p) ← betree.Node.apply_messages self params node_id_cnt (betree.List.Cons (key, - new_msg) l) st + new_msg) betree.List.Nil) st let (self1, node_id_cnt1) := p Result.ret (st1, (self1, node_id_cnt1)) diff --git a/tests/lean/External/Funs.lean b/tests/lean/External/Funs.lean index 88ced82d..db15aacc 100644 --- a/tests/lean/External/Funs.lean +++ b/tests/lean/External/Funs.lean @@ -25,8 +25,7 @@ def test_new_non_zero_u32 Source: 'src/external.rs', lines 17:0-17:17 -/ def test_vec : Result Unit := do - let v := alloc.vec.Vec.new U32 - let _ ← alloc.vec.Vec.push U32 v 0#u32 + let _ ← alloc.vec.Vec.push U32 (alloc.vec.Vec.new U32) 0#u32 Result.ret () /- Unit test for [external::test_vec] -/ diff --git a/tests/lean/Hashmap/Funs.lean b/tests/lean/Hashmap/Funs.lean index 32ed2b33..3978bfc7 100644 --- a/tests/lean/Hashmap/Funs.lean +++ b/tests/lean/Hashmap/Funs.lean @@ -41,8 +41,7 @@ def HashMap.new_with_capacity Result (HashMap T) := do - let v := alloc.vec.Vec.new (List T) - let slots ← HashMap.allocate_slots T v capacity + let slots ← HashMap.allocate_slots T (alloc.vec.Vec.new (List T)) capacity let i ← capacity * max_load_dividend let i1 ← i / max_load_divisor Result.ret @@ -102,8 +101,7 @@ divergent def HashMap.insert_in_list_loop do let (b, back) ← HashMap.insert_in_list_loop T key value tl Result.ret (b, List.Cons ckey cvalue back) - | List.Nil => let l := List.Nil - Result.ret (true, List.Cons key value l) + | List.Nil => Result.ret (true, List.Cons key value List.Nil) /- [hashmap::{hashmap::HashMap}::insert_in_list]: Source: 'src/hashmap.rs', lines 97:4-97:71 -/ @@ -315,8 +313,7 @@ def HashMap.get_mut_in_list := do let (t, back_'a) ← HashMap.get_mut_in_list_loop T ls key - let back_'a1 := fun ret => back_'a ret - Result.ret (t, back_'a1) + Result.ret (t, back_'a) /- [hashmap::{hashmap::HashMap}::get_mut]: Source: 'src/hashmap.rs', lines 257:4-257:67 -/ diff --git a/tests/lean/HashmapMain/Funs.lean b/tests/lean/HashmapMain/Funs.lean index 9bfb5070..ebed2570 100644 --- a/tests/lean/HashmapMain/Funs.lean +++ b/tests/lean/HashmapMain/Funs.lean @@ -42,8 +42,9 @@ def hashmap.HashMap.new_with_capacity Result (hashmap.HashMap T) := do - let v := alloc.vec.Vec.new (hashmap.List T) - let slots ← hashmap.HashMap.allocate_slots T v capacity + let slots ← + hashmap.HashMap.allocate_slots T (alloc.vec.Vec.new (hashmap.List T)) + capacity let i ← capacity * max_load_dividend let i1 ← i / max_load_divisor Result.ret @@ -105,8 +106,7 @@ divergent def hashmap.HashMap.insert_in_list_loop let (b, back) ← hashmap.HashMap.insert_in_list_loop T key value tl Result.ret (b, hashmap.List.Cons ckey cvalue back) | hashmap.List.Nil => - let l := hashmap.List.Nil - Result.ret (true, hashmap.List.Cons key value l) + Result.ret (true, hashmap.List.Cons key value hashmap.List.Nil) /- [hashmap_main::hashmap::{hashmap_main::hashmap::HashMap}::insert_in_list]: Source: 'src/hashmap.rs', lines 97:4-97:71 -/ @@ -328,8 +328,7 @@ def hashmap.HashMap.get_mut_in_list := do let (t, back_'a) ← hashmap.HashMap.get_mut_in_list_loop T ls key - let back_'a1 := fun ret => back_'a ret - Result.ret (t, back_'a1) + Result.ret (t, back_'a) /- [hashmap_main::hashmap::{hashmap_main::hashmap::HashMap}::get_mut]: Source: 'src/hashmap.rs', lines 257:4-257:67 -/ diff --git a/tests/lean/NoNestedBorrows.lean b/tests/lean/NoNestedBorrows.lean index cb0aac10..0dd29429 100644 --- a/tests/lean/NoNestedBorrows.lean +++ b/tests/lean/NoNestedBorrows.lean @@ -244,10 +244,9 @@ def test_list1 : Result Unit := Source: 'src/no_nested_borrows.rs', lines 208:0-208:18 -/ def test_box1 : Result Unit := do - let b := 0#i32 - let (_, deref_mut_back) ← alloc.boxed.Box.deref_mut I32 b - let b1 ← deref_mut_back 1#i32 - let x ← alloc.boxed.Box.deref I32 b1 + let (_, deref_mut_back) ← alloc.boxed.Box.deref_mut I32 0#i32 + let b ← deref_mut_back 1#i32 + let x ← alloc.boxed.Box.deref I32 b if not (x = 1#i32) then Result.fail .panic else Result.ret () @@ -297,8 +296,7 @@ def is_cons (T : Type) (l : List T) : Result Bool := Source: 'src/no_nested_borrows.rs', lines 253:0-253:21 -/ def test_is_cons : Result Unit := do - let l := List.Nil - let b ← is_cons I32 (List.Cons 0#i32 l) + let b ← is_cons I32 (List.Cons 0#i32 List.Nil) if not b then Result.fail .panic else Result.ret () @@ -317,8 +315,7 @@ def split_list (T : Type) (l : List T) : Result (T × (List T)) := Source: 'src/no_nested_borrows.rs', lines 267:0-267:24 -/ def test_split_list : Result Unit := do - let l := List.Nil - let p ← split_list I32 (List.Cons 0#i32 l) + let p ← split_list I32 (List.Cons 0#i32 List.Nil) let (hd, _) := p if not (hd = 0#i32) then Result.fail .panic @@ -441,31 +438,30 @@ def list_rev (T : Type) (l : List T) : Result (List T) := Source: 'src/no_nested_borrows.rs', lines 398:0-398:28 -/ def test_list_functions : Result Unit := do - let l := List.Nil - let l1 := List.Cons 2#i32 l - let l2 := List.Cons 1#i32 l1 - let i ← list_length I32 (List.Cons 0#i32 l2) + let l := List.Cons 2#i32 List.Nil + let l1 := List.Cons 1#i32 l + let i ← list_length I32 (List.Cons 0#i32 l1) if not (i = 3#u32) then Result.fail .panic else do - let i1 ← list_nth_shared I32 (List.Cons 0#i32 l2) 0#u32 + let i1 ← list_nth_shared I32 (List.Cons 0#i32 l1) 0#u32 if not (i1 = 0#i32) then Result.fail .panic else do - let i2 ← list_nth_shared I32 (List.Cons 0#i32 l2) 1#u32 + let i2 ← list_nth_shared I32 (List.Cons 0#i32 l1) 1#u32 if not (i2 = 1#i32) then Result.fail .panic else do - let i3 ← list_nth_shared I32 (List.Cons 0#i32 l2) 2#u32 + let i3 ← list_nth_shared I32 (List.Cons 0#i32 l1) 2#u32 if not (i3 = 2#i32) then Result.fail .panic else do let (_, list_nth_mut_back) ← - list_nth_mut I32 (List.Cons 0#i32 l2) 1#u32 + list_nth_mut I32 (List.Cons 0#i32 l1) 1#u32 let ls ← list_nth_mut_back 3#i32 let i4 ← list_nth_shared I32 ls 0#u32 if not (i4 = 0#i32) @@ -512,9 +508,7 @@ def id_mut_pair3 (T1 T2 : Type) (x : T1) (y : T2) : Result ((T1 × T2) × (T1 → Result T1) × (T2 → Result T2)) := - let back_'a := fun ret => Result.ret ret - let back_'b := fun ret => Result.ret ret - Result.ret ((x, y), back_'a, back_'b) + Result.ret ((x, y), Result.ret, Result.ret) /- [no_nested_borrows::id_mut_pair4]: Source: 'src/no_nested_borrows.rs', lines 426:0-426:92 -/ @@ -523,9 +517,7 @@ def id_mut_pair4 Result ((T1 × T2) × (T1 → Result T1) × (T2 → Result T2)) := let (t, t1) := p - let back_'a := fun ret => Result.ret ret - let back_'b := fun ret => Result.ret ret - Result.ret ((t, t1), back_'a, back_'b) + Result.ret ((t, t1), Result.ret, Result.ret) /- [no_nested_borrows::StructWithTuple] Source: 'src/no_nested_borrows.rs', lines 433:0-433:34 -/ diff --git a/tests/lean/Paper.lean b/tests/lean/Paper.lean index 015fec84..a35c8db0 100644 --- a/tests/lean/Paper.lean +++ b/tests/lean/Paper.lean @@ -95,13 +95,12 @@ divergent def sum (l : List I32) : Result I32 := Source: 'src/paper.rs', lines 68:0-68:17 -/ def test_nth : Result Unit := do - let l := List.Nil - let l1 := List.Cons 3#i32 l - let l2 := List.Cons 2#i32 l1 - let (x, list_nth_mut_back) ← list_nth_mut I32 (List.Cons 1#i32 l2) 2#u32 + let l := List.Cons 3#i32 List.Nil + let l1 := List.Cons 2#i32 l + let (x, list_nth_mut_back) ← list_nth_mut I32 (List.Cons 1#i32 l1) 2#u32 let x1 ← x + 1#i32 - let l3 ← list_nth_mut_back x1 - let i ← sum l3 + let l2 ← list_nth_mut_back x1 + let i ← sum l2 if not (i = 7#i32) then Result.fail .panic else Result.ret () diff --git a/tests/lean/PoloniusList.lean b/tests/lean/PoloniusList.lean index a485adbe..59c557a0 100644 --- a/tests/lean/PoloniusList.lean +++ b/tests/lean/PoloniusList.lean @@ -20,9 +20,7 @@ divergent def get_list_at_x match ls with | List.Cons hd tl => if hd = x - then - let back_'a := fun ret => Result.ret ret - Result.ret (List.Cons hd tl, back_'a) + then Result.ret (List.Cons hd tl, Result.ret) else do let (l, get_list_at_x_back) ← get_list_at_x tl x @@ -32,8 +30,6 @@ divergent def get_list_at_x let tl1 ← get_list_at_x_back ret Result.ret (List.Cons hd tl1) Result.ret (l, back_'a) - | List.Nil => - let back_'a := fun ret => Result.ret ret - Result.ret (List.Nil, back_'a) + | List.Nil => Result.ret (List.Nil, Result.ret) end polonius_list diff --git a/tests/lean/Traits.lean b/tests/lean/Traits.lean index 63d07d85..35f9e5bf 100644 --- a/tests/lean/Traits.lean +++ b/tests/lean/Traits.lean @@ -288,8 +288,7 @@ def use_with_const_ty1 (H : Type) (LEN : Usize) (WithConstTyHLENInst : WithConstTy H LEN) : Result Usize := - let i := WithConstTyHLENInst.LEN1 - Result.ret i + Result.ret WithConstTyHLENInst.LEN1 /- [traits::use_with_const_ty2]: Source: 'src/traits.rs', lines 187:0-187:73 -/ -- cgit v1.3.1