use super::*;
use crate::core::TrapCode;
const WASM_OP: WasmOp = WasmOp::binary(WasmType::I32, "div_s");
#[test]
#[cfg_attr(miri, ignore)]
fn same_reg() {
let expected = [
Instruction::i32_div_s(
Register::from_i16(1),
Register::from_i16(0),
Register::from_i16(0),
),
Instruction::return_reg(Register::from_i16(1)),
];
test_binary_same_reg(WASM_OP, expected)
}
#[test]
#[cfg_attr(miri, ignore)]
fn reg_reg() {
test_binary_reg_reg(WASM_OP, Instruction::i32_div_s)
}
#[test]
#[cfg_attr(miri, ignore)]
fn reg_imm16() {
test_binary_reg_imm16::<NonZeroI32>(WASM_OP, nonzero_i32(100), Instruction::i32_div_s_imm16)
}
#[test]
#[cfg_attr(miri, ignore)]
fn reg_imm16_rev() {
test_binary_reg_imm16_rev::<i32>(WASM_OP, 100, Instruction::i32_div_s_imm16_rev)
}
#[test]
#[cfg_attr(miri, ignore)]
fn reg_imm() {
test_binary_reg_imm32(WASM_OP, i32::MAX, Instruction::i32_div_s)
}
#[test]
#[cfg_attr(miri, ignore)]
fn reg_imm_rev() {
test_binary_reg_imm32_rev(WASM_OP, i32::MAX, Instruction::i32_div_s)
}
#[test]
#[cfg_attr(miri, ignore)]
fn reg_zero() {
let expected = [Instruction::Trap(TrapCode::IntegerDivisionByZero)];
test_binary_reg_imm_with(WASM_OP, 0_i32, expected).run()
}
#[test]
#[cfg_attr(miri, ignore)]
fn reg_one() {
let expected = [Instruction::return_reg(0)];
test_binary_reg_imm_with(WASM_OP, 1_i32, expected).run()
}
#[test]
#[cfg_attr(miri, ignore)]
fn consteval() {
let lhs = -4;
let rhs = 2;
test_binary_consteval(
WASM_OP,
lhs,
rhs,
[Instruction::ReturnImm32 {
value: AnyConst32::from(lhs / rhs),
}],
)
}
#[test]
#[cfg_attr(miri, ignore)]
fn consteval_div_by_zero() {
let lhs = -4;
let rhs = 0;
test_binary_consteval(
WASM_OP,
lhs,
rhs,
[Instruction::Trap(TrapCode::IntegerDivisionByZero)],
)
}
#[test]
#[cfg_attr(miri, ignore)]
fn consteval_overflow() {
let lhs = i32::MIN;
let rhs = -1;
test_binary_consteval(
WASM_OP,
lhs,
rhs,
[Instruction::Trap(TrapCode::IntegerOverflow)],
)
}