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//! 0x10 Integral arithmetic (+, -, /, *, rnd(), <=>)
//! * `0x1001` [sum_integers]:`target` `[start:end]`
//! * `0x1002` [product_integers]:`target` `[start:end]`
//! * `0x1003` [difference_integers]:`target` `[start:end]`
//! * `0x1004` [quotient_integers]:`target` `[start:end]`
//! * TODO ... RANDOM
//! * TODO ... COMPARE
use std::collections::HashMap;
use osiris_process::operation::error::OperationResult;
use osiris_process::operation::{Operation, OperationSet};
use osiris_process::operation::scheme::{ArgumentType, InstructionScheme, OperationId};
use osiris_process::processor::Cpu;
use crate::range_applications::unsigned;
pub const SET_MASK: u16 = 0x1000;
pub const SUM_UNSIGNED: OperationId = OperationId::new(SET_MASK | 0x01);
pub const PRODUCT_UNSIGNED: OperationId = OperationId::new(SET_MASK | 0x02);
pub const DIFFERENCE_UNSIGNED: OperationId = OperationId::new(SET_MASK | 0x03);
pub const QUOTIENT_UNSIGNED: OperationId = OperationId::new(SET_MASK | 0x04);
/// # 0x1001 SUM INTEGERS
///
/// ## Target
/// - The register to store the result into
///
/// ## Arguments
/// - Range : the range to sum
///
/// ## Operation
/// - `REG[$target] = sum(REG[$start..=$end])`
///
/// ## Errors
/// - [OperationError::InvalidArgumentType] if the provided argument is not an [ArgumentType::Range]
pub fn sum_integers(cpu: &mut Cpu, scheme: InstructionScheme) -> OperationResult<()> {
cpu.bank_apply(scheme.target, scheme.argument.get_range()?, unsigned::sum);
Ok(())
}
/// # 0x1002 PRODUCT INTEGERS
///
/// ## Target
/// - The register to store the result into
///
/// ## Arguments
/// - Range : the range to product
///
/// ## Operation
/// - `REG[$target] = product(REG[$start..=$end])`
///
/// ## Errors
/// - [OperationError::InvalidArgumentType] if the provided argument is not an [ArgumentType::Range]
pub fn product_integers(cpu: &mut Cpu, scheme: InstructionScheme) -> OperationResult<()> {
cpu.bank_apply(scheme.target, scheme.argument.get_range()?, unsigned::product);
Ok(())
}
/// # 0x1003 DIFFERENCE INTEGERS
///
/// ## Target
/// - The register to store the result into
///
/// ## Arguments
/// - Range : the range to sum
///
/// ## Operation
/// - `REG[$target] = difference(REG[$start..=$end])`
///
/// ## Errors
/// - [OperationError::InvalidArgumentType] if the provided argument is not an [ArgumentType::Range]
pub fn difference_integers(cpu: &mut Cpu, scheme: InstructionScheme) -> OperationResult<()> {
cpu.bank_apply(scheme.target, scheme.argument.get_range()?, unsigned::difference);
Ok(())
}
/// # 0x1004 QUOTIENT INTEGERS
///
/// ## Target
/// - The register to store the result into
///
/// ## Arguments
/// - Range : the range to product
///
/// ## Operation
/// - `REG[$target] = quotient(REG[$start..=$end])`
///
/// ## Errors
/// - [OperationError::InvalidArgumentType] if the provided argument is not an [ArgumentType::Range]
pub fn quotient_integers(cpu: &mut Cpu, scheme: InstructionScheme) -> OperationResult<()> {
cpu.bank_apply(scheme.target, scheme.argument.get_range()?, unsigned::quotient);
Ok(())
}
/// Returns integral arithmetic operations.
///
/// ## Operations
///
/// * `0x1001` [sum_integers]:`target` `[start:end]`
/// * `0x1002` [product_integers]:`target` `[start:end]`
/// * `0x1003` [difference_integers]:`target` `[start:end]`
/// * `0x1004` [quotient_integers]:`target` `[start:end]`
pub fn operation_set() -> OperationSet {
let mut set: OperationSet = HashMap::new();
set.insert(
SUM_UNSIGNED,
Operation::new(SUM_UNSIGNED, "sum-unsigned".to_string(), true, ArgumentType::Range, sum_integers),
);
set.insert(
PRODUCT_UNSIGNED,
Operation::new(PRODUCT_UNSIGNED, "product-unsigned".to_string(), true, ArgumentType::Range, product_integers),
);
set.insert(
DIFFERENCE_UNSIGNED,
Operation::new(DIFFERENCE_UNSIGNED, "difference-unsigned".to_string(), true, ArgumentType::Range, difference_integers),
);
set.insert(
QUOTIENT_UNSIGNED,
Operation::new(QUOTIENT_UNSIGNED, "quotient-unsigned".to_string(), true, ArgumentType::Range, quotient_integers),
);
set
}