Added magic
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@ -15,25 +15,36 @@ extern crate alloc;
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mod macros;
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mod macros;
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use {alloc::vec::Vec, hashbrown::HashSet};
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use {
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alloc::{vec, vec::Vec},
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hashbrown::HashSet,
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};
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/// Assembler
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/// Assembler
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///
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///
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/// - Opcode-generic, instruction-type-specific methods are named `i_param_<type>`
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/// - Opcode-generic, instruction-type-specific methods are named `i_param_<type>`
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/// - You likely won't need to use them, but they are here, just in case :)
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/// - You likely won't need to use them, but they are here, just in case :)
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/// - Instruction-specific methods are named `i_<instruction>`
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/// - Instruction-specific methods are named `i_<instruction>`
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#[derive(Default)]
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pub struct Assembler {
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pub struct Assembler {
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pub buf: Vec<u8>,
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pub buf: Vec<u8>,
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pub sub: HashSet<usize>,
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pub sub: HashSet<usize>,
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}
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}
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impl Default for Assembler {
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fn default() -> Self {
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Self {
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buf: vec![0; 3],
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sub: Default::default(),
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}
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}
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}
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hbbytecode::invoke_with_def!(macros::text::gen_text);
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hbbytecode::invoke_with_def!(macros::text::gen_text);
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impl Assembler {
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impl Assembler {
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hbbytecode::invoke_with_def!(macros::asm::impl_asm);
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hbbytecode::invoke_with_def!(macros::asm::impl_asm);
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/// Append 12 zeroes (UN) at the end
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/// Append 12 zeroes (UN) at the end and add magic to the begining
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///
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///
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/// # HoleyBytes lore
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/// # HoleyBytes lore
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///
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///
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@ -61,6 +72,7 @@ impl Assembler {
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/// Why 12 bytes? That's the size of largest instruction parameter part.
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/// Why 12 bytes? That's the size of largest instruction parameter part.
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pub fn finalise(&mut self) {
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pub fn finalise(&mut self) {
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self.buf.extend([0; 12]);
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self.buf.extend([0; 12]);
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self.buf[0..3].copy_from_slice(&[0xAB, 0x1E, 0x0B]);
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}
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}
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}
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}
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@ -23,6 +23,8 @@ macro_rules! gen_valider {
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RegisterArrayOverflow,
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RegisterArrayOverflow,
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/// Program is not validly terminated
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/// Program is not validly terminated
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InvalidEnd,
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InvalidEnd,
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/// Program misses magic
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MissingMagic
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}
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}
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/// Error
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/// Error
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@ -37,6 +39,14 @@ macro_rules! gen_valider {
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/// Perform bytecode validation. If it passes, the program should be
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/// Perform bytecode validation. If it passes, the program should be
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/// sound to execute.
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/// sound to execute.
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pub fn validate(mut program: &[u8]) -> Result<(), Error> {
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pub fn validate(mut program: &[u8]) -> Result<(), Error> {
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// Validate magic
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if program.get(0..3) != Some(&[0xAB, 0x1E, 0x0B]) {
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return Err(Error {
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kind: ErrorKind::MissingMagic,
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index: 0,
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});
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}
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// Program has to end with 12 zeroes, if there is less than
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// Program has to end with 12 zeroes, if there is less than
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// 12 bytes, program is invalid.
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// 12 bytes, program is invalid.
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if program.len() < 12 {
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if program.len() < 12 {
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@ -57,6 +67,7 @@ macro_rules! gen_valider {
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}
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}
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let start = program;
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let start = program;
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program = &program[3..];
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loop {
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loop {
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use crate::opcode::*;
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use crate::opcode::*;
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program = match program {
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program = match program {
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@ -73,7 +73,7 @@ impl<'a, PfHandler: HandlePageFault, const TIMER_QUOTIENT: usize>
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pfhandler: traph,
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pfhandler: traph,
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pc: 0,
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pc: 0,
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program_len: program.len() - 12,
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program_len: program.len() - 12,
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program,
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program: &program[3..],
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timer: 0,
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timer: 0,
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copier: None,
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copier: None,
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}
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}
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1
spec.md
1
spec.md
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@ -1,6 +1,7 @@
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# HoleyBytes ISA Specification
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# HoleyBytes ISA Specification
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# Bytecode format
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# Bytecode format
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- Holey Bytes program should start with following magic: `0xAB1E0B`
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- All numbers are encoded little-endian
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- All numbers are encoded little-endian
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- There is 256 registers, they are represented by a byte
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- There is 256 registers, they are represented by a byte
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- Immediate values are 64 bit
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- Immediate values are 64 bit
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