use std::borrow::Cow;
use std::io::Write;
use std::result::Result as StdResult;
use crate::encoding::UTF8_BOM;
use crate::errors::{Error, Result};
use crate::events::{attributes::Attribute, BytesCData, BytesPI, BytesStart, BytesText, Event};
#[cfg(feature = "async-tokio")]
mod async_tokio;
#[cfg(feature = "serialize")]
use {crate::de::DeError, serde::Serialize};
#[derive(Clone)]
pub struct Writer<W> {
writer: W,
indent: Option<Indentation>,
}
impl<W> Writer<W> {
pub const fn new(inner: W) -> Writer<W> {
Writer {
writer: inner,
indent: None,
}
}
pub fn new_with_indent(inner: W, indent_char: u8, indent_size: usize) -> Writer<W> {
Writer {
writer: inner,
indent: Some(Indentation::new(indent_char, indent_size)),
}
}
pub fn into_inner(self) -> W {
self.writer
}
pub fn get_mut(&mut self) -> &mut W {
&mut self.writer
}
pub const fn get_ref(&self) -> &W {
&self.writer
}
#[must_use]
pub fn create_element<'a, N>(&'a mut self, name: N) -> ElementWriter<W>
where
N: Into<Cow<'a, str>>,
{
ElementWriter {
writer: self,
start_tag: BytesStart::new(name),
state: AttributeIndent::NoneAttributesWritten,
spaces: Vec::new(),
}
}
}
impl<W: Write> Writer<W> {
pub fn write_bom(&mut self) -> Result<()> {
self.write(UTF8_BOM)
}
pub fn write_event<'a, E: Into<Event<'a>>>(&mut self, event: E) -> Result<()> {
let mut next_should_line_break = true;
let result = match event.into() {
Event::Start(e) => {
let result = self.write_wrapped(b"<", &e, b">");
if let Some(i) = self.indent.as_mut() {
i.grow();
}
result
}
Event::End(e) => {
if let Some(i) = self.indent.as_mut() {
i.shrink();
}
self.write_wrapped(b"</", &e, b">")
}
Event::Empty(e) => self.write_wrapped(b"<", &e, b"/>"),
Event::Text(e) => {
next_should_line_break = false;
self.write(&e)
}
Event::Comment(e) => self.write_wrapped(b"<!--", &e, b"-->"),
Event::CData(e) => {
next_should_line_break = false;
self.write(b"<![CDATA[")?;
self.write(&e)?;
self.write(b"]]>")
}
Event::Decl(e) => self.write_wrapped(b"<?", &e, b"?>"),
Event::PI(e) => self.write_wrapped(b"<?", &e, b"?>"),
Event::DocType(e) => self.write_wrapped(b"<!DOCTYPE ", &e, b">"),
Event::Eof => Ok(()),
};
if let Some(i) = self.indent.as_mut() {
i.should_line_break = next_should_line_break;
}
result
}
#[inline]
pub(crate) fn write(&mut self, value: &[u8]) -> Result<()> {
self.writer.write_all(value).map_err(Into::into)
}
#[inline]
fn write_wrapped(&mut self, before: &[u8], value: &[u8], after: &[u8]) -> Result<()> {
if let Some(ref i) = self.indent {
if i.should_line_break {
self.writer.write_all(b"\n")?;
self.writer.write_all(i.current())?;
}
}
self.write(before)?;
self.write(value)?;
self.write(after)?;
Ok(())
}
pub fn write_indent(&mut self) -> Result<()> {
if let Some(ref i) = self.indent {
self.writer.write_all(b"\n")?;
self.writer.write_all(i.current())?;
}
Ok(())
}
#[cfg(feature = "serialize")]
pub fn write_serializable<T: Serialize>(
&mut self,
tag_name: &str,
content: &T,
) -> std::result::Result<(), DeError> {
use crate::se::{Indent, Serializer};
self.write_indent()?;
let mut fmt = ToFmtWrite(&mut self.writer);
let mut serializer = Serializer::with_root(&mut fmt, Some(tag_name))?;
if let Some(indent) = &mut self.indent {
serializer.set_indent(Indent::Borrow(indent));
}
content.serialize(serializer)?;
Ok(())
}
}
#[derive(Debug)]
enum AttributeIndent {
NoneAttributesWritten,
WriteSpaces(usize),
Spaces(usize),
WriteConfigured(usize),
Configured(usize),
}
pub struct ElementWriter<'a, W> {
writer: &'a mut Writer<W>,
start_tag: BytesStart<'a>,
state: AttributeIndent,
spaces: Vec<u8>,
}
impl<'a, W> ElementWriter<'a, W> {
pub fn with_attribute<'b, I>(mut self, attr: I) -> Self
where
I: Into<Attribute<'b>>,
{
self.write_attr(attr.into());
self
}
pub fn with_attributes<'b, I>(mut self, attributes: I) -> Self
where
I: IntoIterator,
I::Item: Into<Attribute<'b>>,
{
let mut iter = attributes.into_iter();
if let Some(attr) = iter.next() {
self.write_attr(attr.into());
self.start_tag.extend_attributes(iter);
}
self
}
pub fn new_line(mut self) -> Self {
if let Some(i) = self.writer.indent.as_mut() {
match self.state {
AttributeIndent::NoneAttributesWritten => {
self.state = AttributeIndent::WriteConfigured(i.indent_size)
}
AttributeIndent::WriteSpaces(_) => {}
AttributeIndent::Spaces(indent) => {
self.state = AttributeIndent::WriteSpaces(indent)
}
AttributeIndent::WriteConfigured(_) => {}
AttributeIndent::Configured(indent) => {
self.state = AttributeIndent::WriteConfigured(indent)
}
}
self.start_tag.push_newline();
};
self
}
fn write_attr<'b>(&mut self, attr: Attribute<'b>) {
if let Some(i) = self.writer.indent.as_mut() {
self.state = match self.state {
AttributeIndent::NoneAttributesWritten => {
self.start_tag.push_attribute(attr);
AttributeIndent::Spaces(self.start_tag.name().as_ref().len() + 2)
}
AttributeIndent::WriteSpaces(indent) => {
if self.spaces.len() < indent {
self.spaces.resize(indent, b' ');
}
self.start_tag.push_indent(&self.spaces[..indent]);
self.start_tag.push_attr(attr.into());
AttributeIndent::Spaces(indent)
}
AttributeIndent::Spaces(indent) => {
self.start_tag.push_attribute(attr);
AttributeIndent::Spaces(indent)
}
AttributeIndent::WriteConfigured(indent) => {
self.start_tag.push_indent(i.additional(indent));
self.start_tag.push_attr(attr.into());
AttributeIndent::Configured(indent)
}
AttributeIndent::Configured(indent) => {
self.start_tag.push_attribute(attr);
AttributeIndent::Configured(indent)
}
};
} else {
self.start_tag.push_attribute(attr);
}
}
}
impl<'a, W: Write> ElementWriter<'a, W> {
pub fn write_text_content(self, text: BytesText) -> Result<&'a mut Writer<W>> {
self.writer
.write_event(Event::Start(self.start_tag.borrow()))?;
self.writer.write_event(Event::Text(text))?;
self.writer
.write_event(Event::End(self.start_tag.to_end()))?;
Ok(self.writer)
}
pub fn write_cdata_content(self, text: BytesCData) -> Result<&'a mut Writer<W>> {
self.writer
.write_event(Event::Start(self.start_tag.borrow()))?;
self.writer.write_event(Event::CData(text))?;
self.writer
.write_event(Event::End(self.start_tag.to_end()))?;
Ok(self.writer)
}
pub fn write_pi_content(self, pi: BytesPI) -> Result<&'a mut Writer<W>> {
self.writer
.write_event(Event::Start(self.start_tag.borrow()))?;
self.writer.write_event(Event::PI(pi))?;
self.writer
.write_event(Event::End(self.start_tag.to_end()))?;
Ok(self.writer)
}
pub fn write_empty(self) -> Result<&'a mut Writer<W>> {
self.writer.write_event(Event::Empty(self.start_tag))?;
Ok(self.writer)
}
pub fn write_inner_content<F, E>(self, closure: F) -> StdResult<&'a mut Writer<W>, E>
where
F: FnOnce(&mut Writer<W>) -> StdResult<(), E>,
E: From<Error>,
{
self.writer
.write_event(Event::Start(self.start_tag.borrow()))?;
closure(self.writer)?;
self.writer
.write_event(Event::End(self.start_tag.to_end()))?;
Ok(self.writer)
}
}
#[cfg(feature = "serialize")]
struct ToFmtWrite<T>(pub T);
#[cfg(feature = "serialize")]
impl<T> std::fmt::Write for ToFmtWrite<T>
where
T: std::io::Write,
{
fn write_str(&mut self, s: &str) -> std::fmt::Result {
self.0.write_all(s.as_bytes()).map_err(|_| std::fmt::Error)
}
}
#[derive(Clone)]
pub(crate) struct Indentation {
should_line_break: bool,
indent_char: u8,
indent_size: usize,
indents: Vec<u8>,
current_indent_len: usize,
}
impl Indentation {
pub fn new(indent_char: u8, indent_size: usize) -> Self {
Self {
should_line_break: false,
indent_char,
indent_size,
indents: vec![indent_char; 128],
current_indent_len: 0, }
}
pub fn grow(&mut self) {
self.current_indent_len += self.indent_size;
self.ensure(self.current_indent_len);
}
pub fn shrink(&mut self) {
self.current_indent_len = self.current_indent_len.saturating_sub(self.indent_size);
}
pub fn current(&self) -> &[u8] {
&self.indents[..self.current_indent_len]
}
pub fn additional(&mut self, additional_indent: usize) -> &[u8] {
let new_len = self.current_indent_len + additional_indent;
self.ensure(new_len);
&self.indents[..new_len]
}
fn ensure(&mut self, new_len: usize) {
if self.indents.len() < new_len {
self.indents.resize(new_len, self.indent_char);
}
}
}