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@ -39,13 +39,12 @@ pub fn decrypt(
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nonce: Nonce,
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maybe_password: Option<Key>,
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) -> Result<DecryptedData, PasteCompleteConstructionError> {
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let container = &mut container;
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log!("Stage 1 decryption started.");
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let start = now();
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if let Some(password) = maybe_password {
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crate::render_message("Decrypting Stage 1...".into());
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open_in_place(container, &nonce.increment(), &password).map_err(|_| {
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open_in_place(&mut container, &nonce.increment(), &password).map_err(|_| {
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crate::render_message("Unable to decrypt paste with the provided password.".into());
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PasteCompleteConstructionError::StageOneFailure
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})?;
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@ -55,7 +54,7 @@ pub fn decrypt(
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log!("Stage 2 decryption started.");
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let start = now();
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crate::render_message("Decrypting Stage 2...".into());
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open_in_place(container, &nonce, &key).map_err(|_| {
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open_in_place(&mut container, &nonce, &key).map_err(|_| {
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crate::render_message(
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"Unable to decrypt paste with the provided encryption key and nonce.".into(),
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);
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@ -63,65 +62,63 @@ pub fn decrypt(
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})?;
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log!(format!("Stage 2 completed in {}ms", now() - start));
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if let Ok(decrypted) = std::str::from_utf8(container) {
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Ok(DecryptedData::String(Arc::new(decrypted.to_owned())))
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} else {
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let mime_type = tree_magic_mini::from_u8(container);
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log!("Mimetype: ", mime_type);
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let mime_type = tree_magic_mini::from_u8(&container);
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log!("Mimetype: ", mime_type);
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log!("Blob conversion started.");
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let start = now();
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let blob_chunks = Array::new_with_length(container.chunks(65536).len().try_into().unwrap());
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for (i, chunk) in container.chunks(65536).enumerate() {
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let array = Uint8Array::new_with_length(chunk.len().try_into().unwrap());
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array.copy_from(chunk);
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blob_chunks.set(i.try_into().unwrap(), array.dyn_into().unwrap());
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}
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let mut blob_props = BlobPropertyBag::new();
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blob_props.type_(mime_type);
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let blob = Arc::new(
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Blob::new_with_u8_array_sequence_and_options(
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blob_chunks.dyn_ref().unwrap(),
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&blob_props,
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)
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log!("Blob conversion started.");
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let start = now();
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let blob_chunks = Array::new_with_length(container.chunks(65536).len().try_into().unwrap());
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for (i, chunk) in container.chunks(65536).enumerate() {
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let array = Uint8Array::new_with_length(chunk.len().try_into().unwrap());
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array.copy_from(chunk);
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blob_chunks.set(i.try_into().unwrap(), array.dyn_into().unwrap());
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}
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let mut blob_props = BlobPropertyBag::new();
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blob_props.type_(mime_type);
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let blob = Arc::new(
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Blob::new_with_u8_array_sequence_and_options(blob_chunks.dyn_ref().unwrap(), &blob_props)
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.unwrap(),
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);
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log!(format!("Blob conversion completed in {}ms", now() - start));
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);
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log!(format!("Blob conversion completed in {}ms", now() - start));
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if mime_type.starts_with("image/") || mime_type == "application/x-riff" {
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Ok(DecryptedData::Image(blob, container.len()))
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} else if mime_type.starts_with("audio/") {
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Ok(DecryptedData::Audio(blob))
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} else if mime_type.starts_with("video/") || mime_type == "application/x-matroska" {
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Ok(DecryptedData::Video(blob))
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} else if mime_type == "application/zip" {
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let mut entries = vec![];
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let cursor = Cursor::new(container);
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if let Ok(mut zip) = zip::ZipArchive::new(cursor) {
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for i in 0..zip.len() {
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match zip.by_index(i) {
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Ok(file) => entries.push(ArchiveMeta {
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name: file.name().to_string(),
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file_size: file.size() as usize,
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}),
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Err(err) => match err {
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zip::result::ZipError::UnsupportedArchive(s) => {
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log!("Unsupported: ", s.to_string());
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}
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_ => {
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log!(format!("Error: {}", err));
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}
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},
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}
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if mime_type.starts_with("text/") {
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String::from_utf8(container)
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.map(Arc::new)
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.map(DecryptedData::String)
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.map_err(|_| PasteCompleteConstructionError::InvalidEncoding)
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} else if mime_type.starts_with("image/") || mime_type == "application/x-riff" {
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Ok(DecryptedData::Image(blob, container.len()))
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} else if mime_type.starts_with("audio/") {
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Ok(DecryptedData::Audio(blob))
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} else if mime_type.starts_with("video/") || mime_type == "application/x-matroska" {
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Ok(DecryptedData::Video(blob))
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} else if mime_type == "application/zip" {
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let mut entries = vec![];
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let cursor = Cursor::new(container);
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if let Ok(mut zip) = zip::ZipArchive::new(cursor) {
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for i in 0..zip.len() {
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match zip.by_index(i) {
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Ok(file) => entries.push(ArchiveMeta {
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name: file.name().to_string(),
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file_size: file.size() as usize,
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}),
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Err(err) => match err {
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zip::result::ZipError::UnsupportedArchive(s) => {
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log!("Unsupported: ", s.to_string());
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}
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_ => {
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log!(format!("Error: {}", err));
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}
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},
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}
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}
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Ok(DecryptedData::Archive(blob, entries))
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} else if mime_type == "application/gzip" {
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let entries = vec![];
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Ok(DecryptedData::Archive(blob, entries))
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} else {
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Ok(DecryptedData::Blob(blob))
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}
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Ok(DecryptedData::Archive(blob, entries))
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} else if mime_type == "application/gzip" {
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let entries = vec![];
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Ok(DecryptedData::Archive(blob, entries))
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} else {
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Ok(DecryptedData::Blob(blob))
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}
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}
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@ -129,6 +126,7 @@ pub fn decrypt(
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pub enum PasteCompleteConstructionError {
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StageOneFailure,
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StageTwoFailure,
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InvalidEncoding,
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}
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impl std::error::Error for PasteCompleteConstructionError {}
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@ -142,6 +140,10 @@ impl Display for PasteCompleteConstructionError {
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PasteCompleteConstructionError::StageTwoFailure => {
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write!(f, "Failed to decrypt stage two.")
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}
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PasteCompleteConstructionError::InvalidEncoding => write!(
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f,
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"Got an file with a text/* mime type, but was unable to parsed as valid UTF-8?"
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),
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}
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}
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}
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