use std::collections::VecDeque;
use std::convert::TryInto;
use std::io::{Read, Seek};
use arrow_format::ipc;
use crate::array::{BinaryArray, Offset};
use crate::buffer::Buffer;
use crate::datatypes::DataType;
use crate::error::Result;
use crate::types::NativeType;
use super::super::deserialize::Node;
use super::super::read_basic::*;
pub fn read_binary<O: Offset, R: Read + Seek>(
field_nodes: &mut VecDeque<Node>,
data_type: DataType,
buffers: &mut VecDeque<&ipc::Schema::Buffer>,
reader: &mut R,
block_offset: u64,
is_little_endian: bool,
compression: Option<ipc::Message::BodyCompression>,
) -> Result<BinaryArray<O>>
where
Vec<u8>: TryInto<O::Bytes> + TryInto<<u8 as NativeType>::Bytes>,
{
let field_node = field_nodes.pop_front().unwrap().0;
let validity = read_validity(
buffers,
field_node,
reader,
block_offset,
is_little_endian,
compression,
)?;
let offsets: Buffer<O> = read_buffer(
buffers,
1 + field_node.length() as usize,
reader,
block_offset,
is_little_endian,
compression,
)
.or_else(|_| Result::Ok(Buffer::<O>::from(&[O::default()])))?;
let last_offset = offsets.as_slice()[offsets.len() - 1].to_usize();
let values = read_buffer(
buffers,
last_offset,
reader,
block_offset,
is_little_endian,
compression,
)?;
Ok(BinaryArray::<O>::from_data(
data_type, offsets, values, validity,
))
}
pub fn skip_binary(field_nodes: &mut VecDeque<Node>, buffers: &mut VecDeque<&ipc::Schema::Buffer>) {
let _ = field_nodes.pop_front().unwrap();
let _ = buffers.pop_front().unwrap();
let _ = buffers.pop_front().unwrap();
let _ = buffers.pop_front().unwrap();
}