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cks
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ir
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rf
adda1.rsadda2.rsadda_reg_ctrl_hw.rscip.rsdfe_ctrl_0.rsdfe_ctrl_1.rsdfe_ctrl_10.rsdfe_ctrl_11.rsdfe_ctrl_12.rsdfe_ctrl_13.rsdfe_ctrl_14.rsdfe_ctrl_15.rsdfe_ctrl_16.rsdfe_ctrl_17.rsdfe_ctrl_18.rsdfe_ctrl_2.rsdfe_ctrl_3.rsdfe_ctrl_4.rsdfe_ctrl_5.rsdfe_ctrl_6.rsdfe_ctrl_7.rsdfe_ctrl_8.rsdfe_ctrl_9.rsfbdv.rslna.rslna_ctrl_hw_mux.rslo.rslo_cal_ctrl_hw1.rslo_cal_ctrl_hw10.rslo_cal_ctrl_hw11.rslo_cal_ctrl_hw2.rslo_cal_ctrl_hw3.rslo_cal_ctrl_hw4.rslo_cal_ctrl_hw5.rslo_cal_ctrl_hw6.rslo_cal_ctrl_hw7.rslo_cal_ctrl_hw8.rslo_cal_ctrl_hw9.rslo_reg_ctrl_hw1.rslo_sdm_ctrl_hw1.rslo_sdm_ctrl_hw2.rslo_sdm_ctrl_hw3.rslo_sdm_ctrl_hw4.rslo_sdm_ctrl_hw5.rslo_sdm_ctrl_hw6.rslo_sdm_ctrl_hw7.rslo_sdm_ctrl_hw8.rslodist.rspa1.rspa2.rspa_reg_ctrl_hw1.rspa_reg_ctrl_hw2.rspa_reg_wifi_ctrl_hw.rspfdcp.rspmip_mv2aon.rsppu_ctrl_hw.rspucr1.rspucr1_hw.rspucr2.rspucr2_hw.rspud_ctrl_hw.rsrbb1.rsrbb2.rsrbb3.rsrbb4.rsrbb_bw_ctrl_hw.rsrbb_gain_index1.rsrbb_gain_index2.rsrbb_gain_index3.rsrbb_gain_index4.rsrbb_gain_index5.rsrf_base_ctrl1.rsrf_base_ctrl2.rsrf_data_temp_0.rsrf_data_temp_1.rsrf_data_temp_2.rsrf_data_temp_3.rsrf_fsm_ctrl0.rsrf_fsm_ctrl1.rsrf_fsm_ctrl2.rsrf_fsm_ctrl_hw.rsrf_fsm_ctrl_sw.rsrf_ical_ctrl0.rsrf_ical_ctrl1.rsrf_ical_ctrl2.rsrf_pkdet_ctrl0.rsrf_resv_reg_0.rsrf_resv_reg_1.rsrf_resv_reg_2.rsrf_rev.rsrf_sram_ctrl0.rsrf_sram_ctrl1.rsrf_sram_ctrl2.rsrf_sram_ctrl3.rsrf_sram_ctrl4.rsrf_sram_ctrl5.rsrf_sram_ctrl6.rsrfcal_ctrlen.rsrfcal_stateen.rsrfcal_status.rsrfcal_status2.rsrfctrl_hw_en.rsrfif_dfe_ctrl0.rsrfif_dig_ctrl.rsrfif_test_read.rsrmxgm.rsrosdac_ctrl_hw1.rsrosdac_ctrl_hw2.rsrrf_gain_index1.rsrrf_gain_index2.rsrxiq_ctrl_hw1.rsrxiq_ctrl_hw2.rsrxiq_ctrl_hw3.rsrxiq_ctrl_hw4.rssaradc_resv.rssdm1.rssdm2.rssdm3.rssingen_ctrl0.rssingen_ctrl1.rssingen_ctrl2.rssingen_ctrl3.rssingen_ctrl4.rstbb.rstbb_gain_index1.rstbb_gain_index2.rstbb_gain_index3.rstbb_gain_index4.rstemp_comp.rsten_ac.rsten_dc.rsten_dig.rstmx.rstosdac_ctrl_hw1.rstosdac_ctrl_hw2.rstosdac_ctrl_hw3.rstosdac_ctrl_hw4.rstrx_gain1.rstrx_gain_hw.rstx_iq_gain_hw0.rstx_iq_gain_hw1.rstx_iq_gain_hw2.rstx_iq_gain_hw3.rstx_iq_gain_hw4.rstx_iq_gain_hw5.rstx_iq_gain_hw6.rstx_iq_gain_hw7.rsvco1.rsvco2.rsvco3.rsvco4.rs
sec_dbg
sec_eng
se_aes_0_ctrl.rsse_aes_0_ctrl_prot.rsse_aes_0_endian.rsse_aes_0_iv_0.rsse_aes_0_iv_1.rsse_aes_0_iv_2.rsse_aes_0_iv_3.rsse_aes_0_key_0.rsse_aes_0_key_1.rsse_aes_0_key_2.rsse_aes_0_key_3.rsse_aes_0_key_4.rsse_aes_0_key_5.rsse_aes_0_key_6.rsse_aes_0_key_7.rsse_aes_0_key_sel_0.rsse_aes_0_key_sel_1.rsse_aes_0_link.rsse_aes_0_mda.rsse_aes_0_msa.rsse_aes_0_sboot.rsse_aes_0_status.rsse_cdet_0_ctrl_0.rsse_cdet_0_ctrl_1.rsse_cdet_0_ctrl_prot.rsse_ctrl_prot_rd.rsse_ctrl_reserved_0.rsse_ctrl_reserved_1.rsse_ctrl_reserved_2.rsse_gmac_0_ctrl_0.rsse_gmac_0_ctrl_prot.rsse_gmac_0_lca.rsse_gmac_0_status.rsse_pka_0_ctrl_0.rsse_pka_0_ctrl_1.rsse_pka_0_ctrl_prot.rsse_pka_0_rw.rsse_pka_0_rw_burst.rsse_pka_0_seed.rsse_sha_0_ctrl.rsse_sha_0_ctrl_prot.rsse_sha_0_endian.rsse_sha_0_hash_h_0.rsse_sha_0_hash_h_1.rsse_sha_0_hash_h_2.rsse_sha_0_hash_h_3.rsse_sha_0_hash_h_4.rsse_sha_0_hash_h_5.rsse_sha_0_hash_h_6.rsse_sha_0_hash_h_7.rsse_sha_0_hash_l_0.rsse_sha_0_hash_l_1.rsse_sha_0_hash_l_2.rsse_sha_0_hash_l_3.rsse_sha_0_hash_l_4.rsse_sha_0_hash_l_5.rsse_sha_0_hash_l_6.rsse_sha_0_hash_l_7.rsse_sha_0_link.rsse_sha_0_msa.rsse_sha_0_status.rsse_trng_0_ctrl_0.rsse_trng_0_ctrl_1.rsse_trng_0_ctrl_2.rsse_trng_0_ctrl_3.rsse_trng_0_ctrl_prot.rsse_trng_0_dout_0.rsse_trng_0_dout_1.rsse_trng_0_dout_2.rsse_trng_0_dout_3.rsse_trng_0_dout_4.rsse_trng_0_dout_5.rsse_trng_0_dout_6.rsse_trng_0_dout_7.rsse_trng_0_status.rsse_trng_0_test.rsse_trng_0_test_out_0.rsse_trng_0_test_out_1.rsse_trng_0_test_out_2.rsse_trng_0_test_out_3.rs
sf_ctrl
spi
timer
tzc_nsec
tzc_sec
uart
bl602_rust_guide
embedded_hal
embedded_time
nb
num
num_complex
num_integer
num_iter
num_rational
num_traits
panic_halt
r0
riscv
riscv_rt
vcell
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use core::ops::{Add, Mul, Sub};
#[cfg(has_i128)]
use core::{i128, u128};
use core::{i16, i32, i64, i8, isize};
use core::{u16, u32, u64, u8, usize};

macro_rules! overflowing_impl {
    ($trait_name:ident, $method:ident, $t:ty) => {
        impl $trait_name for $t {
            #[inline]
            fn $method(&self, v: &Self) -> (Self, bool) {
                <$t>::$method(*self, *v)
            }
        }
    };
}

/// Performs addition with a flag for overflow.
pub trait OverflowingAdd: Sized + Add<Self, Output = Self> {
    /// Returns a tuple of the sum along with a boolean indicating whether an arithmetic overflow would occur.
    /// If an overflow would have occurred then the wrapped value is returned.
    fn overflowing_add(&self, v: &Self) -> (Self, bool);
}

overflowing_impl!(OverflowingAdd, overflowing_add, u8);
overflowing_impl!(OverflowingAdd, overflowing_add, u16);
overflowing_impl!(OverflowingAdd, overflowing_add, u32);
overflowing_impl!(OverflowingAdd, overflowing_add, u64);
overflowing_impl!(OverflowingAdd, overflowing_add, usize);
#[cfg(has_i128)]
overflowing_impl!(OverflowingAdd, overflowing_add, u128);

overflowing_impl!(OverflowingAdd, overflowing_add, i8);
overflowing_impl!(OverflowingAdd, overflowing_add, i16);
overflowing_impl!(OverflowingAdd, overflowing_add, i32);
overflowing_impl!(OverflowingAdd, overflowing_add, i64);
overflowing_impl!(OverflowingAdd, overflowing_add, isize);
#[cfg(has_i128)]
overflowing_impl!(OverflowingAdd, overflowing_add, i128);

/// Performs substraction with a flag for overflow.
pub trait OverflowingSub: Sized + Sub<Self, Output = Self> {
    /// Returns a tuple of the difference along with a boolean indicating whether an arithmetic overflow would occur.
    /// If an overflow would have occurred then the wrapped value is returned.
    fn overflowing_sub(&self, v: &Self) -> (Self, bool);
}

overflowing_impl!(OverflowingSub, overflowing_sub, u8);
overflowing_impl!(OverflowingSub, overflowing_sub, u16);
overflowing_impl!(OverflowingSub, overflowing_sub, u32);
overflowing_impl!(OverflowingSub, overflowing_sub, u64);
overflowing_impl!(OverflowingSub, overflowing_sub, usize);
#[cfg(has_i128)]
overflowing_impl!(OverflowingSub, overflowing_sub, u128);

overflowing_impl!(OverflowingSub, overflowing_sub, i8);
overflowing_impl!(OverflowingSub, overflowing_sub, i16);
overflowing_impl!(OverflowingSub, overflowing_sub, i32);
overflowing_impl!(OverflowingSub, overflowing_sub, i64);
overflowing_impl!(OverflowingSub, overflowing_sub, isize);
#[cfg(has_i128)]
overflowing_impl!(OverflowingSub, overflowing_sub, i128);

/// Performs multiplication with a flag for overflow.
pub trait OverflowingMul: Sized + Mul<Self, Output = Self> {
    /// Returns a tuple of the product along with a boolean indicating whether an arithmetic overflow would occur.
    /// If an overflow would have occurred then the wrapped value is returned.
    fn overflowing_mul(&self, v: &Self) -> (Self, bool);
}

overflowing_impl!(OverflowingMul, overflowing_mul, u8);
overflowing_impl!(OverflowingMul, overflowing_mul, u16);
overflowing_impl!(OverflowingMul, overflowing_mul, u32);
overflowing_impl!(OverflowingMul, overflowing_mul, u64);
overflowing_impl!(OverflowingMul, overflowing_mul, usize);
#[cfg(has_i128)]
overflowing_impl!(OverflowingMul, overflowing_mul, u128);

overflowing_impl!(OverflowingMul, overflowing_mul, i8);
overflowing_impl!(OverflowingMul, overflowing_mul, i16);
overflowing_impl!(OverflowingMul, overflowing_mul, i32);
overflowing_impl!(OverflowingMul, overflowing_mul, i64);
overflowing_impl!(OverflowingMul, overflowing_mul, isize);
#[cfg(has_i128)]
overflowing_impl!(OverflowingMul, overflowing_mul, i128);

#[test]
fn test_overflowing_traits() {
    fn overflowing_add<T: OverflowingAdd>(a: T, b: T) -> (T, bool) {
        a.overflowing_add(&b)
    }
    fn overflowing_sub<T: OverflowingSub>(a: T, b: T) -> (T, bool) {
        a.overflowing_sub(&b)
    }
    fn overflowing_mul<T: OverflowingMul>(a: T, b: T) -> (T, bool) {
        a.overflowing_mul(&b)
    }
    assert_eq!(overflowing_add(5i16, 2), (7, false));
    assert_eq!(overflowing_add(i16::MAX, 1), (i16::MIN, true));
    assert_eq!(overflowing_sub(5i16, 2), (3, false));
    assert_eq!(overflowing_sub(i16::MIN, 1), (i16::MAX, true));
    assert_eq!(overflowing_mul(5i16, 2), (10, false));
    assert_eq!(overflowing_mul(1_000_000_000i32, 10), (1410065408, true));
}