Merge branch 'master' into wasm
This commit is contained in:
commit
a6983358a6
7 changed files with 91 additions and 63 deletions
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@ -11,7 +11,7 @@ matrix:
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env: TARGET=x86_64-apple-darwin
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cache: cargo
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- os: linux
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rust: 1.34.0
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rust: 1.36.0
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env: TARGET=x86_64-unknown-linux-gnu
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cache: cargo
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- os: linux
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@ -26,7 +26,7 @@ cargo build --release
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cp target/release/oxipng /usr/local/bin
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```
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The current minimum supported Rust version is **1.34.0**. Oxipng may compile on earlier versions of Rust,
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The current minimum supported Rust version is **1.36.0**. Oxipng may compile on earlier versions of Rust,
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but there is no guarantee.
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Oxipng follows Semantic Versioning.
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@ -1,12 +1,12 @@
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pub fn filter_line(filter: u8, bpp: usize, data: &[u8], last_line: &[u8]) -> Vec<u8> {
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let mut filtered = Vec::with_capacity(data.len());
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pub fn filter_line(filter: u8, bpp: usize, data: &[u8], last_line: &[u8], buf: &mut Vec<u8>) {
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buf.reserve(data.len());
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match filter {
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0 => {
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filtered.extend_from_slice(data);
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buf.extend_from_slice(data);
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}
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1 => {
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filtered.extend_from_slice(&data[0..bpp]);
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filtered.extend(
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buf.extend_from_slice(&data[0..bpp]);
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buf.extend(
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data.iter()
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.skip(bpp)
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.zip(data.iter())
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@ -15,9 +15,9 @@ pub fn filter_line(filter: u8, bpp: usize, data: &[u8], last_line: &[u8]) -> Vec
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}
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2 => {
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if last_line.is_empty() {
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filtered.extend_from_slice(data);
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buf.extend_from_slice(data);
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} else {
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filtered.extend(
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buf.extend(
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data.iter()
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.zip(last_line.iter())
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.map(|(cur, last)| cur.wrapping_sub(*last)),
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@ -27,12 +27,12 @@ pub fn filter_line(filter: u8, bpp: usize, data: &[u8], last_line: &[u8]) -> Vec
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3 => {
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for (i, byte) in data.iter().enumerate() {
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if last_line.is_empty() {
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filtered.push(match i.checked_sub(bpp) {
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buf.push(match i.checked_sub(bpp) {
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Some(x) => byte.wrapping_sub(data[x] >> 1),
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None => *byte,
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});
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} else {
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filtered.push(match i.checked_sub(bpp) {
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buf.push(match i.checked_sub(bpp) {
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Some(x) => byte.wrapping_sub(
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((u16::from(data[x]) + u16::from(last_line[i])) >> 1) as u8,
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),
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@ -44,12 +44,12 @@ pub fn filter_line(filter: u8, bpp: usize, data: &[u8], last_line: &[u8]) -> Vec
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4 => {
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for (i, byte) in data.iter().enumerate() {
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if last_line.is_empty() {
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filtered.push(match i.checked_sub(bpp) {
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buf.push(match i.checked_sub(bpp) {
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Some(x) => byte.wrapping_sub(data[x]),
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None => *byte,
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});
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} else {
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filtered.push(match i.checked_sub(bpp) {
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buf.push(match i.checked_sub(bpp) {
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Some(x) => {
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byte.wrapping_sub(paeth_predictor(data[x], last_line[i], last_line[x]))
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}
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@ -60,33 +60,33 @@ pub fn filter_line(filter: u8, bpp: usize, data: &[u8], last_line: &[u8]) -> Vec
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}
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_ => unreachable!(),
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}
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filtered
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}
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pub fn unfilter_line(filter: u8, bpp: usize, data: &[u8], last_line: &[u8]) -> Vec<u8> {
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let mut unfiltered = Vec::with_capacity(data.len());
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pub fn unfilter_line(filter: u8, bpp: usize, data: &[u8], last_line: &[u8], buf: &mut Vec<u8>) {
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assert_eq!(buf.len(), 0);
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buf.reserve(data.len());
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match filter {
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0 => {
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unfiltered.extend_from_slice(data);
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buf.extend_from_slice(data);
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}
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1 => {
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for (i, byte) in data.iter().enumerate() {
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match i.checked_sub(bpp) {
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Some(x) => {
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let b = unfiltered[x];
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unfiltered.push(byte.wrapping_add(b));
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let b = buf[x];
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buf.push(byte.wrapping_add(b));
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}
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None => {
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unfiltered.push(*byte);
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buf.push(*byte);
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}
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};
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}
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}
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2 => {
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if last_line.is_empty() {
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unfiltered.extend_from_slice(data);
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buf.extend_from_slice(data);
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} else {
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unfiltered.extend(
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buf.extend(
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data.iter()
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.zip(last_line.iter())
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.map(|(cur, last)| cur.wrapping_add(*last)),
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@ -98,23 +98,23 @@ pub fn unfilter_line(filter: u8, bpp: usize, data: &[u8], last_line: &[u8]) -> V
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if last_line.is_empty() {
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match i.checked_sub(bpp) {
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Some(x) => {
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let b = unfiltered[x];
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unfiltered.push(byte.wrapping_add(b >> 1));
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let b = buf[x];
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buf.push(byte.wrapping_add(b >> 1));
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}
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None => {
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unfiltered.push(*byte);
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buf.push(*byte);
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}
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};
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} else {
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match i.checked_sub(bpp) {
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Some(x) => {
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let b = unfiltered[x];
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unfiltered.push(byte.wrapping_add(
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let b = buf[x];
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buf.push(byte.wrapping_add(
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((u16::from(b) + u16::from(last_line[i])) >> 1) as u8,
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));
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}
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None => {
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unfiltered.push(byte.wrapping_add(last_line[i] >> 1));
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buf.push(byte.wrapping_add(last_line[i] >> 1));
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}
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};
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};
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@ -125,25 +125,25 @@ pub fn unfilter_line(filter: u8, bpp: usize, data: &[u8], last_line: &[u8]) -> V
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if last_line.is_empty() {
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match i.checked_sub(bpp) {
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Some(x) => {
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let b = unfiltered[x];
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unfiltered.push(byte.wrapping_add(b));
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let b = buf[x];
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buf.push(byte.wrapping_add(b));
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}
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None => {
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unfiltered.push(*byte);
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buf.push(*byte);
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}
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};
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} else {
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match i.checked_sub(bpp) {
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Some(x) => {
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let b = unfiltered[x];
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unfiltered.push(byte.wrapping_add(paeth_predictor(
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let b = buf[x];
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buf.push(byte.wrapping_add(paeth_predictor(
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b,
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last_line[i],
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last_line[x],
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)));
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}
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None => {
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unfiltered.push(byte.wrapping_add(last_line[i]));
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buf.push(byte.wrapping_add(last_line[i]));
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}
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};
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};
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@ -151,7 +151,6 @@ pub fn unfilter_line(filter: u8, bpp: usize, data: &[u8], last_line: &[u8]) -> V
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}
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_ => unreachable!(),
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}
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unfiltered
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}
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fn paeth_predictor(a: u8, b: u8, c: u8) -> u8 {
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@ -250,11 +250,6 @@ impl Options {
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}
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fn apply_preset_4(mut self) -> Self {
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self.alphas.insert(AlphaOptim::White);
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self.alphas.insert(AlphaOptim::Up);
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self.alphas.insert(AlphaOptim::Down);
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self.alphas.insert(AlphaOptim::Left);
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self.alphas.insert(AlphaOptim::Right);
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self.apply_preset_3()
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}
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@ -285,9 +280,9 @@ impl Default for Options {
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for i in 0..4 {
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strategies.insert(i);
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}
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// We always need NoOp to be present
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let mut alphas = HashSet::new();
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alphas.insert(colors::AlphaOptim::NoOp);
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alphas.insert(colors::AlphaOptim::Black);
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alphas.insert(AlphaOptim::NoOp);
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Options {
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backup: false,
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@ -363,6 +363,7 @@ fn parse_opts_into_struct(
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};
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if matches.is_present("alpha") {
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opts.alphas.insert(AlphaOptim::Black);
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opts.alphas.insert(AlphaOptim::White);
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opts.alphas.insert(AlphaOptim::Up);
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opts.alphas.insert(AlphaOptim::Down);
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@ -282,17 +282,19 @@ impl PngImage {
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let bpp = ((self.ihdr.bit_depth.as_u8() * self.channels_per_pixel() + 7) / 8) as usize;
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let mut last_line: Vec<u8> = Vec::new();
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let mut last_pass = 1;
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let mut unfiltered_buf = Vec::new();
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for line in self.scan_lines() {
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if let Some(pass) = line.pass {
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if pass != last_pass {
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last_line = Vec::new();
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last_line.clear();
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last_pass = pass;
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}
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}
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let unfiltered_line = unfilter_line(line.filter, bpp, &line.data, &last_line);
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unfilter_line(line.filter, bpp, &line.data, &last_line, &mut unfiltered_buf);
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unfiltered.push(0);
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unfiltered.extend_from_slice(&unfiltered_line);
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last_line = unfiltered_line;
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unfiltered.extend_from_slice(&unfiltered_buf);
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std::mem::swap(&mut last_line, &mut unfiltered_buf);
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unfiltered_buf.clear();
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}
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unfiltered
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}
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@ -309,7 +311,9 @@ impl PngImage {
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let bpp = ((self.ihdr.bit_depth.as_u8() * self.channels_per_pixel() + 7) / 8) as usize;
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let mut last_line: &[u8] = &[];
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let mut last_pass: Option<u8> = None;
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let mut f_buf = Vec::new();
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for line in self.scan_lines() {
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f_buf.clear();
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match filter {
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0 | 1 | 2 | 3 | 4 => {
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let filter = if last_pass == line.pass || filter <= 1 {
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@ -318,28 +322,34 @@ impl PngImage {
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0
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};
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filtered.push(filter);
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filtered.extend_from_slice(&filter_line(filter, bpp, &line.data, last_line));
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filter_line(filter, bpp, &line.data, last_line, &mut f_buf);
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filtered.extend_from_slice(&f_buf);
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}
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5 => {
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// Heuristically guess best filter per line
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// Uses MSAD algorithm mentioned in libpng reference docs
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// http://www.libpng.org/pub/png/book/chapter09.html
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let mut trials: Vec<(u8, Vec<u8>)> = Vec::with_capacity(5);
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let mut best_filter = 0;
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let mut best_line = Vec::new();
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let mut best_size = std::u64::MAX;
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// Avoid vertical filtering on first line of each interlacing pass
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for filter in if last_pass == line.pass { 0..5 } else { 0..2 } {
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trials.push((filter, filter_line(filter, bpp, &line.data, last_line)));
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filter_line(filter, bpp, &line.data, last_line, &mut f_buf);
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let size = f_buf.iter().fold(0u64, |acc, &x| {
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let signed = x as i8;
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acc + i16::from(signed).abs() as u64
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});
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if size < best_size {
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best_size = size;
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best_filter = filter;
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std::mem::swap(&mut best_line, &mut f_buf);
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}
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f_buf.clear() //discard buffer, and start again
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}
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let (best_filter, best_line) = trials
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.iter()
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.min_by_key(|(_, line)| {
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line.iter().fold(0u64, |acc, &x| {
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let signed = x as i8;
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acc + i16::from(signed).abs() as u64
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})
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})
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.unwrap();
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filtered.push(*best_filter);
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filtered.extend_from_slice(best_line);
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filtered.push(best_filter);
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filtered.extend_from_slice(&best_line);
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}
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_ => unreachable!(),
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}
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@ -61,9 +61,24 @@ pub fn reduced_palette(png: &PngImage) -> Option<PngImage> {
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}
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}
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let mut used_enumerated : Vec<(usize, &bool)>= used.iter().enumerate().collect();
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used_enumerated.sort_by(|a, b| {
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//Sort by ascending alpha and descending luma.
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let color_val = |i| {
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let color = palette.get(i).copied()
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.unwrap_or_else(|| RGBA8::new(0, 0, 0, 255));
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((color.a as i32) << 18)
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// These are coefficients for standard sRGB to luma conversion
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- (color.r as i32) * 299
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- (color.g as i32) * 587
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- (color.b as i32) * 114
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};
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color_val(a.0).cmp(&color_val(b.0))
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});
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let mut next_index = 0u16;
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let mut seen = HashMap::with_capacity(palette.len());
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for (i, (used, palette_map)) in used.iter().cloned().zip(palette_map.iter_mut()).enumerate()
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for (i, used) in used_enumerated.iter().cloned()
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{
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if !used {
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continue;
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@ -75,12 +90,12 @@ pub fn reduced_palette(png: &PngImage) -> Option<PngImage> {
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.unwrap_or_else(|| RGBA8::new(0, 0, 0, 255));
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match seen.entry(color) {
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Vacant(new) => {
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*palette_map = Some(next_index as u8);
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palette_map[i] = Some(next_index as u8);
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new.insert(next_index as u8);
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next_index += 1;
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}
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Occupied(remap_to) => {
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*palette_map = Some(*remap_to.get());
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palette_map[i] = Some(*remap_to.get())
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}
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}
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}
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@ -211,6 +226,14 @@ pub fn reduce_color_type(png: &PngImage) -> Option<PngImage> {
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}
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}
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//Make sure that palette gets sorted. Ideally, this should be done within reduced_color_to_palette.
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if should_reduce_bit_depth && reduced.ihdr.color_type == ColorType::Indexed {
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if let Some(r) = reduced_palette(&reduced) {
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reduced = Cow::Owned(r);
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should_reduce_bit_depth = true;
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}
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}
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|
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if should_reduce_bit_depth {
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// Some conversions will allow us to perform bit depth reduction that
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// wasn't possible before
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|
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|
|||
Loading…
Reference in a new issue