compile_add/
compile_add.rs1use std::fs::File;
9use std::io::Write;
10
11use synth_backend::{
12 ArmEncoder, ElfBuilder, ElfSectionType, Section, SectionFlags, Symbol, SymbolBinding,
13 SymbolType,
14};
15use synth_synthesis::{InstructionSelector, RuleDatabase, WasmOp};
16
17fn main() -> Result<(), Box<dyn std::error::Error>> {
18 println!("=== Synth Minimal Demo: WASM -> ARM ELF ===\n");
19
20 let wasm_ops = vec![
26 WasmOp::LocalGet(0), WasmOp::LocalGet(1), WasmOp::I32Add, ];
30
31 println!("Step 1: WASM Operations");
32 println!(" Input: add(a, b) = a + b");
33 println!(" WASM ops: {:?}\n", wasm_ops);
34
35 let db = RuleDatabase::with_standard_rules();
37 let mut selector = InstructionSelector::new(db.rules().to_vec());
38 let arm_instrs = selector.select(&wasm_ops)?;
39
40 println!("Step 2: ARM Instruction Selection");
41 println!(" Generated {} ARM instructions:", arm_instrs.len());
42 for (i, instr) in arm_instrs.iter().enumerate() {
43 println!(" {}: {:?}", i, instr.op);
44 }
45 println!();
46
47 let encoder = ArmEncoder::new_arm32();
49 let mut code = Vec::new();
50
51 for instr in &arm_instrs {
52 let encoded = encoder.encode(&instr.op)?;
53 code.extend_from_slice(&encoded);
54 }
55
56 println!("Step 3: ARM Binary Encoding");
57 println!(" Generated {} bytes of machine code", code.len());
58 print!(" Hex: ");
59 for byte in &code {
60 print!("{:02x} ", byte);
61 }
62 println!("\n");
63
64 let mut elf_builder = ElfBuilder::new_arm32().with_entry(0x8000);
66
67 let text_section = Section::new(".text", ElfSectionType::ProgBits)
69 .with_flags(SectionFlags::ALLOC | SectionFlags::EXEC)
70 .with_addr(0x8000)
71 .with_align(4)
72 .with_data(code.clone());
73
74 elf_builder.add_section(text_section);
75
76 let add_sym = Symbol::new("add")
78 .with_value(0x8000)
79 .with_size(code.len() as u32)
80 .with_binding(SymbolBinding::Global)
81 .with_type(SymbolType::Func)
82 .with_section(4);
83
84 elf_builder.add_symbol(add_sym);
85
86 let elf_data = elf_builder.build()?;
88
89 println!("Step 4: ELF Generation");
90 println!(" ELF size: {} bytes", elf_data.len());
91 println!(" Entry point: 0x8000");
92
93 assert_eq!(
95 &elf_data[0..4],
96 &[0x7f, b'E', b'L', b'F'],
97 "Invalid ELF magic"
98 );
99 println!(" ELF magic: valid");
100
101 let output_path = "add.elf";
103 let mut file = File::create(output_path)?;
104 file.write_all(&elf_data)?;
105
106 println!("\nStep 5: Output");
107 println!(" Written to: {}", output_path);
108 println!("\n=== Compilation successful! ===");
109 println!("\nTo inspect: arm-none-eabi-objdump -d {}", output_path);
110
111 Ok(())
112}