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use std::ops::Range;
pub trait MemoryDevice {
fn read(&self, address: u32) -> Result<u8, ()>;
fn write(&mut self, address: u32, value: u8) -> Result<(), ()>;
}
pub struct CpuMemory {
pub devices: Vec<(Range<u32>, Box<dyn MemoryDevice>)>,
}
impl CpuMemory {
fn get_device(&self, address: u32) -> Option<&Box<dyn MemoryDevice>> {
self.devices
.iter()
.find(|(range, _)| range.contains(&address))
.map(|(_, device)| device)
}
fn get_device_mut(&mut self, address: u32) -> Option<&mut Box<dyn MemoryDevice>> {
self.devices
.iter_mut()
.find(|(range, _)| range.contains(&address))
.map(|(_, device)| device)
}
pub fn register_device(&mut self, range: Range<u32>, device: Box<dyn MemoryDevice>) {
self.devices.push((range, device));
}
pub fn read(&self, address: u32) -> Result<u8, ()> {
if let Some(device) = self.get_device(address) {
device.read(address)
} else {
Err(())
}
}
pub fn write(&mut self, address: u32, value: u8) -> Result<(), ()> {
if let Some(device) = self.get_device_mut(address) {
device.write(address, value)
} else {
Err(())
}
}
pub fn read_halfword(&self, address: u32) -> Result<u16, ()> {
let low = self.read(address)?;
let high = self.read(address + 1)?;
Ok((high as u16) << 8 | low as u16)
}
pub fn write_halfword(&mut self, address: u32, value: u16) -> Result<(), ()> {
self.write(address + 1, (value >> 8) as u8)?;
self.write(address, (value & 0xFF) as u8)?;
Ok(())
}
pub fn read_word(&self, address: u32) -> Result<u32, ()> {
let low = self.read_halfword(address)?;
let high = self.read_halfword(address + 2)?;
Ok((high as u32) << 16 | low as u32)
}
pub fn write_word(&mut self, address: u32, value: u32) -> Result<(), ()> {
self.write_halfword(address + 2, (value >> 16) as u16)?;
self.write_halfword(address, (value & 0xFFFF) as u16)
}
pub fn read_instruction(&self, address: u32) -> Result<u32, ()> {
if let Some(device) = self.get_device(address) {
Ok(u32::from_le_bytes([
device.read(address)?,
device.read(address + 1)?,
device.read(address + 2)?,
device.read(address + 3)?,
]))
} else {
Err(())
}
}
}
pub struct LogicalMemory {
pub base: u32,
pub size: u32,
pub dram: Box<[u8]>,
}
impl MemoryDevice for LogicalMemory {
fn read(&self, address: u32) -> Result<u8, ()> {
if address - self.base > self.size {
Err(())
} else {
Ok(self.dram[(address - self.base) as usize])
}
}
fn write(&mut self, address: u32, value: u8) -> Result<(), ()> {
if address - self.base > self.size {
Err(())
} else {
self.dram[(address - self.base) as usize] = value;
Ok(())
}
}
}
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