Datasets:
File size: 2,434 Bytes
c62beea | 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 | use vstd::prelude::*;
fn main() {}
verus!{
fn f1_cube_element(nums: &Vec<i32>) -> (cubed: Vec<i32>)
requires
forall|k: int|
0 <= k < nums.len() ==> (i32::MIN <= #[trigger] nums[k] * #[trigger] nums[k]
<= i32::MAX),
forall|k: int|
0 <= k < nums.len() ==> (i32::MIN <= #[trigger] nums[k] * #[trigger] nums[k]
* #[trigger] nums[k] <= i32::MAX),
{
let mut cubed_array: Vec<i32> = Vec::new();
let mut i = 0;
while i < nums.len()
{
cubed_array.push(nums[i] * nums[i] * nums[i]);
i += 1;
}
cubed_array
}
proof fn f2_lemma_vec_push<T>(vec: Seq<T>, i: T, l: usize)
requires
l == vec.len(),
ensures
forall|k: int| 0 <= k < vec.len() ==> #[trigger] vec[k] == vec.push(i)[k],
vec.push(i).index(l as int) == i,
{
}
fn f2_contains(str: &Vec<i32>, key: i32) -> (result: bool)
{
let mut i = 0;
while i < str.len()
{
if (str[i] == key) {
return true;
}
i += 1;
}
false
}
fn f2_remove_elements(arr1: &Vec<i32>, arr2: &Vec<i32>) -> (result: Vec<i32>)
{
let mut output_str = Vec::new();
let mut index: usize = 0;
while index < arr1.len()
{
if (!f2_contains(arr2, arr1[index])) {
output_str.push(arr1[index]);
}
index += 1;
}
output_str
}
spec fn step1(__hp0: Seq<i32>, outp: Seq<i32>) -> bool {
(forall|i: int|
0 <= i < __hp0.len() ==> outp[i] == #[trigger] __hp0[i] * #[trigger] __hp0[i]
* #[trigger] __hp0[i])
}
spec fn step2(inp: Seq<i32>, p2_key: i32, outp: bool) -> bool {
(outp <==> (exists|i: int| 0 <= i < inp.len() && (inp[i] == p2_key)))
}
fn chain_driver(nums: &Vec<i32>, p2_key: i32) -> (r_final: bool)
requires
forall|k: int|
0 <= k < nums.len() ==> (i32::MIN <= #[trigger] nums[k] * #[trigger] nums[k]
<= i32::MAX),
forall|k: int|
0 <= k < nums.len() ==> (i32::MIN <= #[trigger] nums[k] * #[trigger] nums[k]
* #[trigger] nums[k] <= i32::MAX),
ensures
exists|v1: Seq<i32>| #[trigger] step1(nums@, v1) && step2(v1, p2_key, r_final),
{
let x1 = f1_cube_element(nums);
let x2 = f2_contains(&x1, p2_key);
proof {
assert(step1(nums@, x1@));
assert(step2(x1@, p2_key, x2));
}
x2
}
} // verus!
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