pub fn quantize_unorm(mut v: f32, n: i32) -> i32 {
let scale = ((1 << n) - 1) as f32;
v = if v >= 0.0 { v } else { 0.0 };
v = if v <= 1.0 { v } else { 1.0 };
(v * scale + 0.5) as i32
}
pub fn quantize_snorm(mut v: f32, n: i32) -> i32 {
let scale = ((1 << (n - 1)) - 1) as f32;
let round = if v >= 0.0 { 0.5 } else { -0.5 };
v = if v >= -1.0 { v } else { -1.0 };
v = if v <= 1.0 { v } else { 1.0 };
(v * scale + round) as i32
}
pub fn quantize_half(v: f32) -> u16 {
let ui: u32 = unsafe { std::mem::transmute(v) };
let s = (ui >> 16) & 0x8000;
let em = ui & 0x7fffffff;
let mut h = (em.wrapping_sub(112 << 23).wrapping_add(1 << 12)) >> 13;
h = if em < (113 << 23) { 0 } else { h };
h = if em >= (143 << 23) { 0x7c00 } else { h };
h = if em > (255 << 23) { 0x7e00 } else { h };
(s | h) as u16
}
pub fn quantize_float(v: f32, n: i32) -> f32 {
let mut ui: u32 = unsafe { std::mem::transmute(v) };
let mask: u32 = (1 << (23 - n)) - 1;
let round = (1 << (23 - n)) >> 1;
let e = ui & 0x7f800000;
let rui = (ui + round) & (!mask);
ui = if e == 0x7f800000 { ui } else { rui };
ui = if e == 0 { 0 } else { ui };
unsafe { std::mem::transmute(ui) }
}