agb/agb-image-converter/src/rust_generator.rs

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use crate::deduplicator::{DeduplicatedData, Transformation};
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use crate::palette16::Palette16OptimisationResults;
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use crate::{add_image_256_to_tile_data, add_image_to_tile_data, collapse_to_4bpp};
use crate::{image_loader::Image, ByteString};
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use proc_macro2::TokenStream;
use quote::{format_ident, quote};
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use std::collections::BTreeMap;
use std::iter;
pub(crate) fn generate_palette_code(
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results: &Palette16OptimisationResults,
crate_prefix: &str,
) -> TokenStream {
let crate_prefix = format_ident!("{}", crate_prefix);
let palettes = results.optimised_palettes.iter().map(|palette| {
let colours = palette
.clone()
.into_iter()
.map(|colour| colour.to_rgb15())
.chain(iter::repeat(0))
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.take(16);
quote! {
#crate_prefix::display::palette16::Palette16::new([
#(#colours),*
])
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}
});
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quote! {
pub const PALETTES: &[#crate_prefix::display::palette16::Palette16] = &[#(#palettes),*];
}
}
pub(crate) fn generate_code(
output_variable_name: &str,
results: &Palette16OptimisationResults,
image: &Image,
image_filename: &str,
crate_prefix: String,
assignment_offset: Option<usize>,
deduplicate: bool,
) -> TokenStream {
let crate_prefix = format_ident!("{}", crate_prefix);
let output_variable_name = format_ident!("{}", output_variable_name);
let (image, dedup_data) = if deduplicate {
let (new_image, dedup_data) =
crate::deduplicator::deduplicate_image(image, assignment_offset.is_some());
(new_image, dedup_data)
} else {
(
image.clone(),
(0..(image.width * image.height / 8 / 8))
.map(|i| DeduplicatedData {
new_index: i,
transformation: Transformation::none(),
})
.collect(),
)
};
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let remap_index = dedup_data
.iter()
.enumerate()
.map(|(i, data)| (data.new_index, i))
.collect::<BTreeMap<_, _>>(); // BTreeMap so that values below is in order
let remap_index = remap_index.values().cloned().collect::<Vec<_>>();
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let (tile_data, assignments) = if let Some(assignment_offset) = assignment_offset {
let mut tile_data = Vec::new();
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add_image_to_tile_data(
&mut tile_data,
&image,
results,
assignment_offset,
false,
&remap_index,
);
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let tile_data = collapse_to_4bpp(&tile_data);
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let num_tiles = image.width * image.height / 8usize.pow(2);
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let all_assignments = &results.assignments[assignment_offset..];
let assignments = (0..num_tiles)
.map(|tile_id| all_assignments[remap_index[tile_id]] as u8)
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.collect();
(tile_data, assignments)
} else {
let mut tile_data = Vec::new();
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add_image_256_to_tile_data(&mut tile_data, &image, results);
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(tile_data, vec![])
};
let tile_settings = dedup_data.iter().map(|data| {
let palette_assignment = assignments.get(data.new_index).unwrap_or(&0);
let vflipped = data.transformation.vflip;
let hflipped = data.transformation.hflip;
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let index = data.new_index as u16;
quote! {
#crate_prefix::display::tiled::TileSetting::new(#index, #hflipped, #vflipped, #palette_assignment)
}
});
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let data = ByteString(&tile_data);
quote! {
#[allow(non_upper_case_globals)]
pub const #output_variable_name: #crate_prefix::display::tile_data::TileData = {
const _: &[u8] = include_bytes!(#image_filename);
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const TILE_DATA: &[u8] = {
pub struct AlignedAs<Align, Bytes: ?Sized> {
pub _align: [Align; 0],
pub bytes: Bytes,
}
const ALIGNED: &AlignedAs<u16, [u8]> = &AlignedAs {
_align: [],
bytes: *#data,
};
&ALIGNED.bytes
};
const TILE_SETTINGS: &[#crate_prefix::display::tiled::TileSetting] = &[
#(#tile_settings),*
];
#crate_prefix::display::tile_data::TileData::new(TILE_DATA, TILE_SETTINGS)
};
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}
}