use vstd::prelude::*; fn main() {} verus!{ fn f1_bit_wise_xor(arr1: &Vec, arr2: &Vec) -> (result: Vec) requires arr1.len() == arr2.len(), { let mut output_arr = Vec::with_capacity(arr1.len()); let mut index = 0; while index < arr1.len() { output_arr.push((arr1[index] ^ arr2[index])); index += 1; } output_arr } fn f2_insert_before_each(arr: &Vec, elem: i32) -> (result: Vec) { let mut result: Vec = Vec::new(); let mut index = 0; while index < arr.len() { result.push(elem); result.push(arr[index]); index += 1; } result } pub open spec fn count_frequency_rcr(seq: Seq, key: i32) -> int decreases seq.len(), { if seq.len() == 0 { 0 } else { count_frequency_rcr(seq.drop_last(), key) + if (seq.last() == key) { 1 as int } else { 0 as int } } } fn f3_count_frequency(arr: &Vec, key: i32) -> (frequency: usize) { let mut index = 0; let mut counter = 0; while index < arr.len() { if (arr[index] == key) { counter += 1; } index += 1; } counter } fn f3_remove_duplicates(arr: &Vec) -> (unique_arr: Vec) { let mut unique_arr: Vec = Vec::new(); let input_len = arr.len(); let mut index = 0; while index < arr.len() { if f3_count_frequency(&arr, arr[index]) == 1 { unique_arr.push(arr[index]); } index += 1; } unique_arr } spec fn step1(__hp0: Seq, __hp1: Seq, outp: Seq) -> bool { (outp.len() == __hp0.len()) && (forall|i: int| 0 <= i < outp.len() ==> outp[i] == #[trigger] __hp0[i] ^ #[trigger] __hp1[i]) } spec fn step2(inp: Seq, p2_elem: i32, outp: Seq) -> bool { (outp.len() == (2 * inp.len())) && (forall|k: int| 0 <= k < inp.len() ==> #[trigger] outp[2 * k] == p2_elem) && (forall|k: int| 0 <= k < inp.len() ==> #[trigger] outp[2 * k + 1] == inp[k]) } spec fn step3(inp: Seq, p3_key: i32, outp: usize) -> bool { (count_frequency_rcr(inp, p3_key) == outp) } fn chain_driver(arr1: &Vec, arr2: &Vec, p2_elem: i32, p3_key: i32) -> (r_final: usize) requires arr1.len() == arr2.len(), ensures exists|v1: Seq, v2: Seq| #[trigger] step1(arr1@, arr2@, v1) && #[trigger] step2(v1, p2_elem, v2) && step3(v2, p3_key, r_final), { let x1 = f1_bit_wise_xor(arr1, arr2); let x2 = f2_insert_before_each(&x1, p2_elem); let x3 = f3_count_frequency(&x2, p3_key); proof { assert(step1(arr1@, arr2@, x1@)); assert(step2(x1@, p2_elem, x2@)); assert(step3(x2@, p3_key, x3)); } x3 } } // verus!