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-- THIS FILE WAS AUTOMATICALLY GENERATED BY AENEAS
-- [external]: function definitions
import Base
import External.Types
import External.FunsExternal
open Primitives

namespace external

/- [external::swap]: forward function
   Source: 'src/external.rs', lines 6:0-6:46 -/
def swap (T : Type) (x : T) (y : T) (st : State) : Result (State × Unit) :=
  do
    let (st0, _)  core.mem.swap T x y st
    let (st1, _)  core.mem.swap_back0 T x y st st0
    let (st2, _)  core.mem.swap_back1 T x y st st1
    Result.ret (st2, ())

/- [external::swap]: backward function 0
   Source: 'src/external.rs', lines 6:0-6:46 -/
def swap_back
  (T : Type) (x : T) (y : T) (st : State) (st0 : State) :
  Result (State × (T × T))
  :=
  do
    let (st1, _)  core.mem.swap T x y st
    let (st2, x0)  core.mem.swap_back0 T x y st st1
    let (_, y0)  core.mem.swap_back1 T x y st st2
    Result.ret (st0, (x0, y0))

/- [external::test_new_non_zero_u32]: forward function
   Source: 'src/external.rs', lines 11:0-11:60 -/
def test_new_non_zero_u32
  (x : U32) (st : State) : Result (State × core.num.nonzero.NonZeroU32) :=
  do
    let (st0, o)  core.num.nonzero.NonZeroU32.new x st
    core.option.Option.unwrap core.num.nonzero.NonZeroU32 o st0

/- [external::test_vec]: forward function
   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
    Result.ret ()

/- Unit test for [external::test_vec] -/
#assert (test_vec == .ret ())

/- [external::custom_swap]: forward function
   Source: 'src/external.rs', lines 24:0-24:66 -/
def custom_swap
  (T : Type) (x : T) (y : T) (st : State) : Result (State × T) :=
  do
    let (st0, _)  core.mem.swap T x y st
    let (st1, x0)  core.mem.swap_back0 T x y st st0
    let (st2, _)  core.mem.swap_back1 T x y st st1
    Result.ret (st2, x0)

/- [external::custom_swap]: backward function 0
   Source: 'src/external.rs', lines 24:0-24:66 -/
def custom_swap_back
  (T : Type) (x : T) (y : T) (st : State) (ret0 : T) (st0 : State) :
  Result (State × (T × T))
  :=
  do
    let (st1, _)  core.mem.swap T x y st
    let (st2, _)  core.mem.swap_back0 T x y st st1
    let (_, y0)  core.mem.swap_back1 T x y st st2
    Result.ret (st0, (ret0, y0))

/- [external::test_custom_swap]: forward function
   Source: 'src/external.rs', lines 29:0-29:59 -/
def test_custom_swap
  (x : U32) (y : U32) (st : State) : Result (State × Unit) :=
  do
    let (st0, _)  custom_swap U32 x y st
    Result.ret (st0, ())

/- [external::test_custom_swap]: backward function 0
   Source: 'src/external.rs', lines 29:0-29:59 -/
def test_custom_swap_back
  (x : U32) (y : U32) (st : State) (st0 : State) :
  Result (State × (U32 × U32))
  :=
  custom_swap_back U32 x y st 1#u32 st0

/- [external::test_swap_non_zero]: forward function
   Source: 'src/external.rs', lines 35:0-35:44 -/
def test_swap_non_zero (x : U32) (st : State) : Result (State × U32) :=
  do
    let (st0, _)  swap U32 x 0#u32 st
    let (st1, (x0, _))  swap_back U32 x 0#u32 st st0
    if x0 = 0#u32
    then Result.fail Error.panic
    else Result.ret (st1, x0)

end external