use anyhow::Result;
fn eval_add() -> Result<()> {
let kernel = ug::samples::ssa::simple_add(2);
println!("{kernel:?}");
let mut a = ug::interpreter::Buffer::I32(vec![0i32, 0]);
let mut b = ug::interpreter::Buffer::I32(vec![3i32, 4]);
let mut c = ug::interpreter::Buffer::I32(vec![1i32, 2]);
ug::interpreter::eval_ssa::<1>(&kernel, vec![&mut a, &mut b, &mut c], &[], 0)?;
println!("a: {a:?}\nb: {b:?}\nc: {c:?}");
Ok(())
}
fn eval_dotprod() -> Result<()> {
let kernel = ug::samples::ssa::simple_dotprod(2);
println!("{kernel:?}");
let mut a = ug::interpreter::Buffer::F32(vec![0f32]);
let mut b = ug::interpreter::Buffer::F32(vec![3f32, 4.5]);
let mut c = ug::interpreter::Buffer::F32(vec![1f32, 2.]);
ug::interpreter::eval_ssa::<1>(&kernel, vec![&mut a, &mut b, &mut c], &[], 0)?;
println!("a: {a:?}\nb: {b:?}\nc: {c:?}");
Ok(())
}
fn lower_add() -> Result<()> {
let kernel = ug::samples::simple_add(2);
let ssa_kernel = kernel.lower()?;
println!("{ssa_kernel:?}");
let mut c = ug::interpreter::Buffer::F32(vec![0f32, 0.]);
let mut b = ug::interpreter::Buffer::F32(vec![3f32, 4.]);
let mut a = ug::interpreter::Buffer::F32(vec![1f32, 2.]);
ug::interpreter::eval_ssa::<1>(&ssa_kernel, vec![&mut a, &mut b, &mut c], &[], 0)?;
println!("a: {a:?}\nb: {b:?}\nc: {c:?}");
Ok(())
}
fn softmax() -> Result<()> {
let kernel = ug::samples::op::softmax(2, 4)?;
println!("{kernel:?}");
let ssa_kernel = kernel.lower()?;
println!("{ssa_kernel:?}");
let mut a = ug::interpreter::Buffer::F32(vec![0., 1., 2., 3., 2., 1., 2., 1.]);
let mut b = ug::interpreter::Buffer::F32(vec![0f32; 8]);
ug::interpreter::eval_ssa::<1>(&ssa_kernel, vec![&mut a, &mut b], &[], 0)?;
println!("a: {a:?}\nb: {b:?}");
Ok(())
}
fn main() -> Result<()> {
eval_add()?;
eval_dotprod()?;
lower_add()?;
softmax()?;
Ok(())
}