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path: root/src/core.rs
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pub fn add(registers: &mut [u32; 32], rd: usize, rs1: usize, rs2: usize) {
    registers[rd] = registers[rs1].wrapping_add(registers[rs2]);
}

pub fn sub(registers: &mut [u32; 32], rd: usize, rs1: usize, rs2: usize) {
    registers[rd] = registers[rs1].wrapping_sub(registers[rs2]);
}

pub fn xor(registers: &mut [u32; 32], rd: usize, rs1: usize, rs2: usize) {
    registers[rd] = registers[rs1] ^ registers[rs2];
}

pub fn or(registers: &mut [u32; 32], rd: usize, rs1: usize, rs2: usize) {
    registers[rd] = registers[rs1] | registers[rs2];
}

pub fn and(registers: &mut [u32; 32], rd: usize, rs1: usize, rs2: usize) {
    registers[rd] = registers[rs1] & registers[rs2];
}

pub fn sll(registers: &mut [u32; 32], rd: usize, rs1: usize, rs2: usize) {
    registers[rd] = registers[rs1] << (registers[rs2] & 0b11111);
}

pub fn srl(registers: &mut [u32; 32], rd: usize, rs1: usize, rs2: usize) {
    registers[rd] = registers[rs1] >> (registers[rs2] & 0b11111);
}

pub fn sra(registers: &mut [u32; 32], rd: usize, rs1: usize, rs2: usize) {
    registers[rd] = ((registers[rs1] as i32) >> (registers[rs2] & 0b11111)) as u32;
}

pub fn slt(registers: &mut [u32; 32], rd: usize, rs1: usize, rs2: usize) {
    let rs1_signed = registers[rs1] as i32;
    let rs2_signed = registers[rs2] as i32;

    registers[rd] = if rs1_signed < rs2_signed { 1 } else { 0 };
}

pub fn sltu(registers: &mut [u32; 32], rd: usize, rs1: usize, rs2: usize) {
    registers[rd] = if registers[rs1] < registers[rs2] {
        1
    } else {
        0
    };
}

pub fn mul(registers: &mut [u32; 32], rd: usize, rs1: usize, rs2: usize) {
    registers[rd] = registers[rs1].wrapping_mul(registers[rs2]);
}

pub fn mulh(registers: &mut [u32; 32], rd: usize, rs1: usize, rs2: usize) {
    registers[rd] =
        (((registers[rs1] as i32 as i64) * (registers[rs2] as i32 as i64)) >> 32) as u32;
}

pub fn mulhsu(registers: &mut [u32; 32], rd: usize, rs1: usize, rs2: usize) {
    let rs1_signed = (registers[rs1] as i32) as i64;
    let rs2_unsigned = registers[rs2] as i64;

    registers[rd] = ((rs1_signed * rs2_unsigned) >> 32) as u32;
}

pub fn mulhu(registers: &mut [u32; 32], rd: usize, rs1: usize, rs2: usize) {
    registers[rd] = ((registers[rs1] as u64 * registers[rs2] as u64) >> 32) as u32;
}

pub fn div(registers: &mut [u32; 32], rd: usize, rs1: usize, rs2: usize) {
    let a = registers[rs1] as i32;
    let b = registers[rs2] as i32;

    registers[rd] = if b == 0 {
        u32::MAX
    } else if a == i32::MIN && b == -1 {
        a as u32
    } else {
        (a / b) as u32
    };
}

pub fn divu(registers: &mut [u32; 32], rd: usize, rs1: usize, rs2: usize) {
    registers[rd] = if registers[rs2] == 0 {
        u32::MAX
    } else {
        registers[rs1] / registers[rs2]
    };
}

pub fn rem(registers: &mut [u32; 32], rd: usize, rs1: usize, rs2: usize) {
    let a = registers[rs1] as i32;
    let b = registers[rs2] as i32;

    registers[rd] = if b == 0 {
        a as u32
    } else if a == i32::MIN && b == -1 {
        0
    } else {
        (a % b) as u32
    };
}

pub fn remu(registers: &mut [u32; 32], rd: usize, rs1: usize, rs2: usize) {
    registers[rd] = if registers[rs2] == 0 {
        registers[rs1]
    } else {
        registers[rs1] % registers[rs2]
    };
}

pub fn addi(registers: &mut [u32; 32], rd: usize, rs1: usize, imm: u32) {
    registers[rd] = registers[rs1].wrapping_add(imm);
}

pub fn xori(registers: &mut [u32; 32], rd: usize, rs1: usize, imm: u32) {
    registers[rd] = registers[rs1] ^ imm;
}

pub fn ori(registers: &mut [u32; 32], rd: usize, rs1: usize, imm: u32) {
    registers[rd] = registers[rs1] | imm;
}

pub fn andi(registers: &mut [u32; 32], rd: usize, rs1: usize, imm: u32) {
    registers[rd] = registers[rs1] & imm;
}

pub fn slli(registers: &mut [u32; 32], rd: usize, rs1: usize, imm: u32) {
    registers[rd] = registers[rs1] << (imm & 0b11111);
}
pub fn srli(registers: &mut [u32; 32], rd: usize, rs1: usize, imm: u32) {
    registers[rd] = registers[rs1] >> (imm & 0b11111);
}
pub fn srai(registers: &mut [u32; 32], rd: usize, rs1: usize, imm: u32) {
    registers[rd] = ((registers[rs1] as i32) >> (imm & 0b11111)) as u32;
}

pub fn slti(registers: &mut [u32; 32], rd: usize, rs1: usize, imm: u32) {
    registers[rd] = if (registers[rs1] as i32) < (imm as i32) {
        1
    } else {
        0
    };
}

pub fn sltiu(registers: &mut [u32; 32], rd: usize, rs1: usize, imm: u32) {
    registers[rd] = if registers[rs1] < imm { 1 } else { 0 };
}
pub fn lb(registers: &mut [u32; 32], memory: &[u8], rd: usize, rs1: usize, imm: u32) {
    let byte = memory[(registers[rs1] + imm) as usize];
    registers[rd] = (byte as i8) as u32;
}

pub fn lh(registers: &mut [u32; 32], memory: &[u8], rd: usize, rs1: usize, imm: u32) {
    let low = memory[(registers[rs1] + imm) as usize];
    let high = memory[(registers[rs1] + imm + 1) as usize];

    registers[rd] = (((high as u16) << 8 | low as u16) as i16) as u32;
}

pub fn lw(registers: &mut [u32; 32], memory: &[u8], rd: usize, rs1: usize, imm: u32) {
    let addr = (registers[rs1] + imm) as usize;
    let slice = memory.get(addr..addr + 4).unwrap();
    let number = u32::from_le_bytes(slice.try_into().unwrap());

    registers[rd] = number;
}

pub fn lbu(registers: &mut [u32; 32], memory: &[u8], rd: usize, rs1: usize, imm: u32) {
    registers[rd] = memory[(registers[rs1] + imm) as usize] as u32;
}

pub fn lhu(registers: &mut [u32; 32], memory: &[u8], rd: usize, rs1: usize, imm: u32) {
    let low = memory[(registers[rs1] + imm) as usize];
    let high = memory[(registers[rs1] + imm + 1) as usize];

    registers[rd] = ((high as u16) << 8 | low as u16) as u32;
}
pub fn sb(registers: &[u32; 32], memory: &mut [u8], rs1: usize, rs2: usize, imm: u32) {
    memory[(registers[rs1] + imm) as usize] = registers[rs2] as u8;
}

pub fn sh(registers: &[u32; 32], memory: &mut [u8], rs1: usize, rs2: usize, imm: u32) {
    let halfword = registers[rs2] & 0xFFFF;
    let index = (registers[rs1] + imm) as usize;

    memory[index] = (halfword & 0xFF) as u8;
    memory[index + 1] = (halfword >> 8) as u8;
}

pub fn sw(registers: &[u32; 32], memory: &mut [u8], rs1: usize, rs2: usize, imm: u32) {
    let index = (registers[rs1] + imm) as usize;

    memory[index..index + 4].copy_from_slice(&registers[rs2].to_le_bytes());
}

pub fn beq(registers: &[u32; 32], pc: &mut u32, rs1: usize, rs2: usize, imm: u32) {
    if registers[rs1] == registers[rs2] {
        *pc += imm;
    }
}

pub fn bne(registers: &[u32; 32], pc: &mut u32, rs1: usize, rs2: usize, imm: u32) {
    if registers[rs1] != registers[rs2] {
        *pc += imm;
    }
}

pub fn blt(registers: &[u32; 32], pc: &mut u32, rs1: usize, rs2: usize, imm: u32) {
    if (registers[rs1] as i32) < (registers[rs2] as i32) {
        *pc += imm;
    }
}

pub fn bge(registers: &[u32; 32], pc: &mut u32, rs1: usize, rs2: usize, imm: u32) {
    if (registers[rs1] as i32) >= (registers[rs2] as i32) {
        *pc += imm;
    }
}

pub fn bltu(registers: &[u32; 32], pc: &mut u32, rs1: usize, rs2: usize, imm: u32) {
    if registers[rs1] < registers[rs2] {
        *pc += imm;
    }
}

pub fn bgeu(registers: &[u32; 32], pc: &mut u32, rs1: usize, rs2: usize, imm: u32) {
    if registers[rs1] >= registers[rs2] {
        *pc += imm;
    }
}
pub fn jal(registers: &mut [u32; 32], pc: &mut u32, rd: usize, imm: u32) {
    registers[rd] = *pc + 4;
    *pc += imm;
}

pub fn jalr(registers: &mut [u32; 32], pc: &mut u32, rd: usize, rs1: usize, imm: u32) {
    registers[rd] = *pc + 4;
    *pc = registers[rs1] + imm;
}
pub fn lui(registers: &mut [u32; 32], rd: usize, imm: u32) {
    registers[rd] = imm << 12;
}

pub fn auipc(registers: &mut [u32; 32], pc: u32, rd: usize, imm: u32) {
    registers[rd] = pc + (imm << 12);
}