156 lines
3.9 KiB
V
156 lines
3.9 KiB
V
module docker
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import net.unix
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import io
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import net.http
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import strings
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import json
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import util
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const (
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socket = '/var/run/docker.sock'
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buf_len = 10 * 1024
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http_separator = [u8(`\r`), `\n`, `\r`, `\n`]
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http_chunk_separator = [u8(`\r`), `\n`]
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timestamp_attr = 'timestamp'
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api_version = 'v1.41'
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)
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[heap]
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pub struct DockerConn {
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mut:
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socket &unix.StreamConn
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reader &io.BufferedReader
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// Data for the request that's currently being constructed.
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method http.Method
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url string
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params map[string]string
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content_type string
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// Before send: body of the request
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// After send: body of response
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body string
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// HTTP head of the response
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head http.Response
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}
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// new_conn creates a new connection to the Docker daemon.
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pub fn new_conn() !&DockerConn {
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s := unix.connect_stream(docker.socket)!
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d := &DockerConn{
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socket: s
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reader: io.new_buffered_reader(reader: s)
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}
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return d
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}
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// close closes the underlying socket connection.
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pub fn (mut d DockerConn) close() ! {
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d.socket.close()!
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}
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// read_response_head consumes the socket's contents until it encounters
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// '\r\n\r\n', after which it parses the response as an HTTP response.
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// Importantly, this function never consumes the reader past the HTTP
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// separator, so the body can be read fully later on.
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fn (mut d DockerConn) read_response_head() ! {
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mut res := []u8{}
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util.read_until_separator(mut d.reader, mut res, docker.http_separator)!
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d.head = http.parse_response(res.bytestr())!
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}
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fn (mut d DockerConn) read_response_body() ! {
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if d.head.status() == .no_content {
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return
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}
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mut builder := strings.new_builder(docker.buf_len)
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if d.head.header.get(.transfer_encoding) or { '' } == 'chunked' {
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mut body_stream := d.get_chunked_response_reader()
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util.reader_to_writer(mut body_stream, mut builder)!
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} else {
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content_length := d.head.header.get(.content_length)!.int()
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if content_length == 0 {
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return
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}
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mut buf := []u8{len: docker.buf_len}
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mut c := 0
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for builder.len < content_length {
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c = d.reader.read(mut buf)!
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builder.write(buf[..c])!
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}
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}
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d.body = builder.str()
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}
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// read_response is a convenience function which always consumes the entire
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// response and loads it into memory. It should only be used when we're certain
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// that the result isn't too large, as even chunked responses will get fully
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// loaded into memory.
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fn (mut d DockerConn) read_response() ! {
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d.read_response_head()!
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d.check_error()!
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d.read_response_body()!
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}
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// read_json_response<T> is a convenience function that runs read_response
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// before parsing its contents, which is assumed to be JSON, into a struct.
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fn (mut d DockerConn) read_json_response<T>() !T {
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d.read_response()!
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data := json.decode(T, d.body)!
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//$for field in T.fields {
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//$if field.typ is time.Time {
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// data.$(field.name) = time.parse_rfc3339(data.$(field.name + '_str'))?
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//}
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//}
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return data
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}
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// get_chunked_response_reader returns a ChunkedResponseReader using the socket
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// as reader.
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fn (mut d DockerConn) get_chunked_response_reader() &ChunkedResponseReader {
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r := new_chunked_response_reader(d.reader)
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return r
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}
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// get_stream_format_reader returns a StreamFormatReader using the socket as
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// reader.
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fn (mut d DockerConn) get_stream_format_reader() &StreamFormatReader {
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r := new_chunked_response_reader(d.reader)
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r2 := new_stream_format_reader(r)
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return r2
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}
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struct DockerError {
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pub:
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message string
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}
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// check_error should be called after read_response_head. If the status code of
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// the response is an error, the body is consumed and the Docker HTTP error is
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// returned as a V error. If the status isn't the error, this function is a
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// no-op.
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fn (mut d DockerConn) check_error() ! {
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if d.head.status().is_error() {
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d.read_response_body()!
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d_err := json.decode(DockerError, d.body)!
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return error_with_code('$d.head.status(): $d_err.message', d.head.status_code)
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}
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}
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