mirror of
https://github.com/Serial-ATA/lofty-rs
synced 2024-12-14 06:32:33 +00:00
ogg_pager: Redo pagination for proper packet handling
This commit is contained in:
parent
bf0ac4b0d1
commit
75adb69ed1
2 changed files with 236 additions and 75 deletions
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@ -3,12 +3,14 @@
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mod crc;
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mod crc;
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mod error;
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mod error;
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mod header;
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mod header;
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mod paginate;
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use std::io::{Read, Seek, SeekFrom};
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use std::io::{Read, Seek, SeekFrom, Write};
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pub use crc::crc32;
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pub use crc::crc32;
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pub use error::{PageError, Result};
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pub use error::{PageError, Result};
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pub use header::PageHeader;
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pub use header::PageHeader;
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pub use paginate::paginate;
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const CONTINUED_PACKET: u8 = 0x01;
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const CONTINUED_PACKET: u8 = 0x01;
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@ -183,78 +185,6 @@ impl Page {
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}
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}
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}
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}
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/// Create pages from a packet
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///
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/// # Example
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///
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/// ```rust,ignore
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/// use ogg_pager::paginate;
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///
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/// // Creating the comment header
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/// let comment_header_packet = vec![...];
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/// let stream_serial_number = 2784419176;
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///
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/// let pages = paginate(&comment_header_packet, stream_serial_number, 0, 0);
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/// ```
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#[allow(clippy::mixed_read_write_in_expression)]
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pub fn paginate(packet: &[u8], stream_serial: u32, abgp: u64, flags: u8) -> Vec<Page> {
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let mut pages = Vec::new();
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let mut first_page = true;
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let mut pos = 0;
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for (idx, page) in packet.chunks(MAX_CONTENT_SIZE).enumerate() {
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let p = Page {
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content: page.to_vec(),
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header: PageHeader {
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start: pos,
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header_type_flag: {
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if first_page {
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if flags & CONTAINS_FIRST_PAGE_OF_BITSTREAM == 0x02 {
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CONTAINS_LAST_PAGE_OF_BITSTREAM
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} else {
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0
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}
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} else {
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CONTINUED_PACKET
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}
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},
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abgp,
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stream_serial,
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sequence_number: (idx + 1) as u32,
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checksum: 0,
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},
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end: {
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pos += page.len() as u64;
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pos
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},
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};
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first_page = false;
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pages.push(p);
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}
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if flags & CONTAINS_LAST_PAGE_OF_BITSTREAM == 0x04 {
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if let Some(last) = pages.last_mut() {
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last.header.header_type_flag |= CONTAINS_LAST_PAGE_OF_BITSTREAM;
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}
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}
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if pages.len() > 1 {
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let last_idx = pages.len() - 1;
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for (idx, p) in pages.iter_mut().enumerate() {
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if idx == last_idx {
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break;
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}
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p.header.abgp = 1_u64.wrapping_neg();
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}
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}
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pages
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}
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/// Creates a segment table based on the length
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/// Creates a segment table based on the length
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///
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///
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/// # Errors
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/// # Errors
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@ -507,9 +437,43 @@ impl Packets {
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true
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true
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}
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}
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pub fn paginate(&self, stream_serial: u32, abgp: u64, flags: u8) -> Result<Vec<Page>> {
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let mut packets = Vec::new();
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let mut pos = 0;
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for packet_size in self.packet_sizes.iter().copied() {
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packets.push(&self.content[pos..pos + packet_size as usize]);
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pos += packet_size as usize;
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}
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paginate(packets, stream_serial, abgp, flags)
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}
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/// Write packets to a writer
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pub fn write_to<W>(
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&self,
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writer: &mut W,
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flags: u8,
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stream_serial: u32,
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abgp: u64,
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) -> Result<()>
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where
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W: Write,
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{
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let paginated = self.paginate(stream_serial, abgp, flags)?;
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for mut page in paginated.into_iter() {
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page.gen_crc()?;
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writer.write_all(&page.as_bytes()?)?;
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}
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Ok(())
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}
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}
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}
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/// An iterator over packets
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/// An iterator over packets
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#[derive(Clone, PartialEq, Eq, Debug)]
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pub struct PacketsIter<'a> {
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pub struct PacketsIter<'a> {
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content: &'a [u8],
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content: &'a [u8],
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packet_sizes: &'a [u64],
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packet_sizes: &'a [u64],
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@ -584,7 +548,7 @@ mod tests {
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fn paginate_large() {
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fn paginate_large() {
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let packet = std::fs::read("test_assets/large_comment_packet.page").unwrap();
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let packet = std::fs::read("test_assets/large_comment_packet.page").unwrap();
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let pages = paginate(&packet, 1234, 0, 0);
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let pages = paginate([packet.as_slice()], 1234, 0, 0).unwrap();
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let len = pages.len();
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let len = pages.len();
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@ -611,7 +575,7 @@ mod tests {
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assert_eq!(header.abgp, u64::MAX);
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assert_eq!(header.abgp, u64::MAX);
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}
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}
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assert_eq!(header.sequence_number, (i + 1) as u32);
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assert_eq!(header.sequence_number, i as u32);
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if i == 0 {
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if i == 0 {
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assert_eq!(header.header_type_flag, 0);
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assert_eq!(header.header_type_flag, 0);
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197
ogg_pager/src/paginate.rs
Normal file
197
ogg_pager/src/paginate.rs
Normal file
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@ -0,0 +1,197 @@
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use crate::error::Result;
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use crate::{
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segment_table, Page, PageHeader, CONTAINS_FIRST_PAGE_OF_BITSTREAM,
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CONTAINS_LAST_PAGE_OF_BITSTREAM, CONTINUED_PACKET, MAX_CONTENT_SIZE,
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};
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use std::io::Read;
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struct PaginateContext {
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pages: Vec<Page>,
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abgp: u64,
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stream_serial: u32,
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header_flags: u8,
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flags: PaginateContextFlags,
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pos: u64,
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idx: usize,
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remaining_page_size: usize,
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current_packet_len: usize,
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}
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impl PaginateContext {
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fn new(abgp: u64, stream_serial: u32, header_flags: u8) -> Self {
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Self {
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pages: Vec::new(),
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abgp,
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stream_serial,
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header_flags,
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flags: PaginateContextFlags {
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first_page: true,
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fresh_packet: true,
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packet_spans_multiple_pages: false,
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packet_finished_on_page: false,
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},
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pos: 0,
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idx: 0,
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remaining_page_size: MAX_CONTENT_SIZE,
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current_packet_len: 0,
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}
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}
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fn flush(&mut self, content: &mut Vec<u8>, segments: &mut Vec<u8>) {
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let header = PageHeader {
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start: self.pos,
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header_type_flag: {
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match self.flags.first_page {
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true if self.header_flags & CONTAINS_FIRST_PAGE_OF_BITSTREAM != 0 => {
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CONTAINS_FIRST_PAGE_OF_BITSTREAM
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},
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// A packet from the previous page continues onto this page
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false if !self.flags.fresh_packet => CONTINUED_PACKET,
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_ => 0,
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}
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},
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abgp: if self.flags.packet_finished_on_page {
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self.abgp
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} else {
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// A special value of '-1' (in two's complement) indicates that no packets
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// finish on this page.
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1_u64.wrapping_neg()
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},
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stream_serial: self.stream_serial,
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sequence_number: self.idx as u32,
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// No need to calculate this yet
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checksum: 0,
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};
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let content = core::mem::take(content);
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let segments = core::mem::take(segments);
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let content_len = content.len();
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self.pos += content_len as u64;
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self.pages.push(Page {
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content,
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segments,
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header,
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end: self.pos,
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});
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self.idx += 1;
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self.flags.packet_finished_on_page = false;
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self.remaining_page_size = MAX_CONTENT_SIZE;
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// Moving on to a new packet
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if self.pos > self.current_packet_len as u64 {
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self.flags.packet_spans_multiple_pages = false;
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}
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}
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}
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struct PaginateContextFlags {
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first_page: bool,
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fresh_packet: bool,
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packet_spans_multiple_pages: bool,
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packet_finished_on_page: bool,
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}
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/// Create pages from a list of packets
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///
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/// # Example
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///
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/// ```rust,ignore
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/// use ogg_pager::paginate;
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///
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/// // Creating the comment header
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/// let comment_header_packet = vec![...];
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/// let stream_serial_number = 2784419176;
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///
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/// let pages = paginate(&comment_header_packet, stream_serial_number, 0, 0);
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/// ```
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pub fn paginate<'a, I: 'a>(
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packets: I,
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stream_serial: u32,
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abgp: u64,
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flags: u8,
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) -> Result<Vec<Page>>
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where
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I: IntoIterator<Item = &'a [u8]>,
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{
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const MAX_SEGMENT_COUNT: usize = 255;
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let mut ctx = PaginateContext::new(abgp, stream_serial, flags);
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let mut packets_iter = packets.into_iter();
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let mut packet = match packets_iter.next() {
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Some(packet) => packet,
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// We weren't given any content to paginate
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None => return Ok(ctx.pages),
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};
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ctx.current_packet_len = packet.len();
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let mut segments = Vec::with_capacity(255);
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let mut page_content = Vec::new();
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loop {
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if !ctx.flags.packet_spans_multiple_pages && !ctx.flags.first_page {
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match packets_iter.next() {
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Some(packet_) => {
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packet = packet_;
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ctx.current_packet_len = packet.len();
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ctx.flags.fresh_packet = true;
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},
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None => break,
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};
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}
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// We read as much of the packet as we can, given the amount of space left in the page.
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// The packet may need to span multiple pages.
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let bytes_read = packet
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.take(ctx.remaining_page_size as u64)
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.read_to_end(&mut page_content)?;
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ctx.remaining_page_size -= bytes_read;
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packet = &packet[bytes_read..];
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segments.append(&mut segment_table(bytes_read)?);
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let remaining_segments = MAX_SEGMENT_COUNT - segments.len();
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// We have a maximum of 255 segments available per page, if we require more than
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// is left in the segment table, we'll have to split the packet into multiple pages.
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let segments_required = (packet.len() / 255) + 1;
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ctx.flags.packet_spans_multiple_pages = segments_required > remaining_segments;
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// We need to indicate whether or not any packet was finished on this page.
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// This is used for the absolute granule position.
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if packet.is_empty() {
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ctx.flags.packet_finished_on_page = true;
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}
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// The first packet of the bitstream must have its own page, unlike any other packet.
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let first_packet_finished_on_page = ctx.flags.first_page
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&& ctx.header_flags & CONTAINS_FIRST_PAGE_OF_BITSTREAM != 0
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&& ctx.flags.packet_finished_on_page;
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if first_packet_finished_on_page
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// We've completely filled this page, we need to flush before moving on
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|| (ctx.remaining_page_size == 0 || remaining_segments == 0)
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{
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ctx.flush(&mut page_content, &mut segments);
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}
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ctx.flags.first_page = false;
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ctx.flags.fresh_packet = false;
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}
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// Flush any content leftover
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if !page_content.is_empty() {
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ctx.flush(&mut page_content, &mut segments);
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}
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if flags & CONTAINS_LAST_PAGE_OF_BITSTREAM == 0x04 {
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if let Some(last) = ctx.pages.last_mut() {
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last.header.header_type_flag |= CONTAINS_LAST_PAGE_OF_BITSTREAM;
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}
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}
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Ok(ctx.pages)
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}
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