mirror of
https://github.com/denoland/deno.git
synced 2024-11-04 08:54:20 -05:00
498 lines
13 KiB
Rust
498 lines
13 KiB
Rust
// Copyright 2018-2020 the Deno authors. All rights reserved. MIT license.
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//! There are many types of errors in Deno:
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//! - ErrBox: a generic boxed object. This is the super type of all
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//! errors handled in Rust.
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//! - JSError: a container for the error message and stack trace for exceptions
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//! thrown in JavaScript code. We use this to pretty-print stack traces.
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//! - OpError: these are errors that happen during ops, which are passed
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//! back into the runtime, where an exception object is created and thrown.
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//! OpErrors have an integer code associated with them - access this via the
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//! `kind` field.
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//! - Diagnostic: these are errors that originate in TypeScript's compiler.
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//! They're similar to JSError, in that they have line numbers.
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//! But Diagnostics are compile-time type errors, whereas JSErrors are runtime
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//! exceptions.
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use crate::import_map::ImportMapError;
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use deno_core::ErrBox;
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use deno_core::ModuleResolutionError;
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use rustyline::error::ReadlineError;
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use std::env::VarError;
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use std::error::Error;
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use std::fmt;
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use std::io;
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// Warning! The values in this enum are duplicated in js/errors.ts
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// Update carefully!
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#[derive(Clone, Copy, PartialEq, Debug)]
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pub enum ErrorKind {
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NotFound = 1,
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PermissionDenied = 2,
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ConnectionRefused = 3,
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ConnectionReset = 4,
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ConnectionAborted = 5,
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NotConnected = 6,
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AddrInUse = 7,
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AddrNotAvailable = 8,
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BrokenPipe = 9,
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AlreadyExists = 10,
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InvalidData = 13,
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TimedOut = 14,
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Interrupted = 15,
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WriteZero = 16,
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UnexpectedEof = 17,
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BadResource = 18,
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Http = 19,
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URIError = 20,
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TypeError = 21,
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/// This maps to window.Error - ie. a generic error type
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/// if no better context is available.
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/// https://developer.mozilla.org/en-US/docs/Web/JavaScript/Reference/Global_Objects/Error
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Other = 22,
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Busy = 23,
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}
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#[derive(Debug)]
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pub struct OpError {
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pub kind: ErrorKind,
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pub msg: String,
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}
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impl OpError {
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fn new(kind: ErrorKind, msg: String) -> Self {
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Self { kind, msg }
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}
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pub fn not_found(msg: String) -> Self {
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Self::new(ErrorKind::NotFound, msg)
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}
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pub fn not_implemented() -> Self {
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Self::other("not implemented".to_string())
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}
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pub fn other(msg: String) -> Self {
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Self::new(ErrorKind::Other, msg)
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}
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pub fn type_error(msg: String) -> Self {
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Self::new(ErrorKind::TypeError, msg)
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}
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pub fn http(msg: String) -> Self {
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Self::new(ErrorKind::Http, msg)
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}
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pub fn uri_error(msg: String) -> Self {
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Self::new(ErrorKind::URIError, msg)
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}
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pub fn permission_denied(msg: String) -> OpError {
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Self::new(ErrorKind::PermissionDenied, msg)
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}
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pub fn bad_resource(msg: String) -> OpError {
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Self::new(ErrorKind::BadResource, msg)
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}
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// BadResource usually needs no additional detail, hence this helper.
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pub fn bad_resource_id() -> OpError {
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Self::new(ErrorKind::BadResource, "Bad resource ID".to_string())
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}
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pub fn invalid_utf8() -> OpError {
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Self::new(ErrorKind::InvalidData, "invalid utf8".to_string())
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}
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pub fn resource_unavailable() -> OpError {
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Self::new(
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ErrorKind::Busy,
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"resource is unavailable because it is in use by a promise".to_string(),
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)
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}
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}
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impl Error for OpError {}
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impl fmt::Display for OpError {
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fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
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f.pad(self.msg.as_str())
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}
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}
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impl From<ImportMapError> for OpError {
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fn from(error: ImportMapError) -> Self {
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OpError::from(&error)
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}
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}
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impl From<&ImportMapError> for OpError {
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fn from(error: &ImportMapError) -> Self {
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Self {
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kind: ErrorKind::Other,
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msg: error.to_string(),
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}
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}
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}
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impl From<ModuleResolutionError> for OpError {
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fn from(error: ModuleResolutionError) -> Self {
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OpError::from(&error)
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}
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}
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impl From<&ModuleResolutionError> for OpError {
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fn from(error: &ModuleResolutionError) -> Self {
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Self {
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kind: ErrorKind::URIError,
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msg: error.to_string(),
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}
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}
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}
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impl From<VarError> for OpError {
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fn from(error: VarError) -> Self {
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OpError::from(&error)
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}
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}
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impl From<&VarError> for OpError {
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fn from(error: &VarError) -> Self {
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use VarError::*;
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let kind = match error {
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NotPresent => ErrorKind::NotFound,
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NotUnicode(..) => ErrorKind::InvalidData,
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};
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Self {
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kind,
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msg: error.to_string(),
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}
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}
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}
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impl From<io::Error> for OpError {
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fn from(error: io::Error) -> Self {
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OpError::from(&error)
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}
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}
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impl From<&io::Error> for OpError {
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fn from(error: &io::Error) -> Self {
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use io::ErrorKind::*;
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let kind = match error.kind() {
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NotFound => ErrorKind::NotFound,
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PermissionDenied => ErrorKind::PermissionDenied,
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ConnectionRefused => ErrorKind::ConnectionRefused,
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ConnectionReset => ErrorKind::ConnectionReset,
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ConnectionAborted => ErrorKind::ConnectionAborted,
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NotConnected => ErrorKind::NotConnected,
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AddrInUse => ErrorKind::AddrInUse,
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AddrNotAvailable => ErrorKind::AddrNotAvailable,
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BrokenPipe => ErrorKind::BrokenPipe,
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AlreadyExists => ErrorKind::AlreadyExists,
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InvalidInput => ErrorKind::TypeError,
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InvalidData => ErrorKind::InvalidData,
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TimedOut => ErrorKind::TimedOut,
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Interrupted => ErrorKind::Interrupted,
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WriteZero => ErrorKind::WriteZero,
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UnexpectedEof => ErrorKind::UnexpectedEof,
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Other => ErrorKind::Other,
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WouldBlock => unreachable!(),
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// Non-exhaustive enum - might add new variants
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// in the future
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_ => unreachable!(),
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};
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Self {
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kind,
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msg: error.to_string(),
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}
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}
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}
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impl From<url::ParseError> for OpError {
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fn from(error: url::ParseError) -> Self {
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OpError::from(&error)
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}
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}
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impl From<&url::ParseError> for OpError {
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fn from(error: &url::ParseError) -> Self {
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Self {
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kind: ErrorKind::URIError,
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msg: error.to_string(),
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}
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}
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}
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impl From<reqwest::Error> for OpError {
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fn from(error: reqwest::Error) -> Self {
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OpError::from(&error)
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}
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}
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impl From<&reqwest::Error> for OpError {
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fn from(error: &reqwest::Error) -> Self {
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match error.source() {
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Some(err_ref) => None
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.or_else(|| {
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err_ref
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.downcast_ref::<url::ParseError>()
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.map(|e| e.clone().into())
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})
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.or_else(|| {
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err_ref
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.downcast_ref::<io::Error>()
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.map(|e| e.to_owned().into())
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})
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.or_else(|| {
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err_ref
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.downcast_ref::<serde_json::error::Error>()
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.map(|e| e.into())
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})
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.unwrap_or_else(|| Self {
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kind: ErrorKind::Http,
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msg: error.to_string(),
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}),
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None => Self {
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kind: ErrorKind::Http,
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msg: error.to_string(),
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},
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}
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}
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}
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impl From<ReadlineError> for OpError {
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fn from(error: ReadlineError) -> Self {
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OpError::from(&error)
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}
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}
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impl From<&ReadlineError> for OpError {
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fn from(error: &ReadlineError) -> Self {
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use ReadlineError::*;
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let kind = match error {
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Io(err) => return OpError::from(err),
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Eof => ErrorKind::UnexpectedEof,
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Interrupted => ErrorKind::Interrupted,
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#[cfg(unix)]
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Errno(err) => return (*err).into(),
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_ => unimplemented!(),
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};
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Self {
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kind,
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msg: error.to_string(),
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}
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}
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}
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impl From<serde_json::error::Error> for OpError {
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fn from(error: serde_json::error::Error) -> Self {
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OpError::from(&error)
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}
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}
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impl From<&serde_json::error::Error> for OpError {
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fn from(error: &serde_json::error::Error) -> Self {
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use serde_json::error::*;
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let kind = match error.classify() {
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Category::Io => ErrorKind::TypeError,
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Category::Syntax => ErrorKind::TypeError,
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Category::Data => ErrorKind::InvalidData,
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Category::Eof => ErrorKind::UnexpectedEof,
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};
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Self {
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kind,
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msg: error.to_string(),
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}
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}
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}
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#[cfg(unix)]
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impl From<nix::Error> for OpError {
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fn from(error: nix::Error) -> Self {
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use nix::errno::Errno::*;
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let kind = match error {
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nix::Error::Sys(EPERM) => ErrorKind::PermissionDenied,
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nix::Error::Sys(EINVAL) => ErrorKind::TypeError,
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nix::Error::Sys(ENOENT) => ErrorKind::NotFound,
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nix::Error::Sys(ENOTTY) => ErrorKind::BadResource,
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nix::Error::Sys(UnknownErrno) => unreachable!(),
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nix::Error::Sys(_) => unreachable!(),
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nix::Error::InvalidPath => ErrorKind::TypeError,
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nix::Error::InvalidUtf8 => ErrorKind::InvalidData,
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nix::Error::UnsupportedOperation => unreachable!(),
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};
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Self {
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kind,
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msg: error.to_string(),
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}
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}
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}
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impl From<dlopen::Error> for OpError {
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fn from(error: dlopen::Error) -> Self {
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OpError::from(&error)
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}
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}
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impl From<&dlopen::Error> for OpError {
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fn from(error: &dlopen::Error) -> Self {
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use dlopen::Error::*;
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let kind = match error {
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NullCharacter(_) => ErrorKind::Other,
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OpeningLibraryError(e) => return e.into(),
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SymbolGettingError(e) => return e.into(),
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AddrNotMatchingDll(e) => return e.into(),
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NullSymbol => ErrorKind::Other,
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};
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Self {
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kind,
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msg: error.to_string(),
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}
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}
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}
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impl From<notify::Error> for OpError {
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fn from(error: notify::Error) -> Self {
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OpError::from(&error)
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}
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}
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impl From<¬ify::Error> for OpError {
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fn from(error: ¬ify::Error) -> Self {
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use notify::ErrorKind::*;
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let kind = match error.kind {
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Generic(_) => ErrorKind::Other,
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Io(ref e) => return e.into(),
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PathNotFound => ErrorKind::NotFound,
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WatchNotFound => ErrorKind::NotFound,
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InvalidConfig(_) => ErrorKind::InvalidData,
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};
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Self {
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kind,
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msg: error.to_string(),
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}
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}
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}
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impl From<ErrBox> for OpError {
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fn from(error: ErrBox) -> Self {
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#[cfg(unix)]
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fn unix_error_kind(err: &ErrBox) -> Option<OpError> {
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err.downcast_ref::<nix::Error>().map(|e| (*e).into())
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}
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#[cfg(not(unix))]
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fn unix_error_kind(_: &ErrBox) -> Option<OpError> {
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None
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}
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None
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.or_else(|| {
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error
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.downcast_ref::<OpError>()
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.map(|e| OpError::new(e.kind, e.msg.to_string()))
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})
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.or_else(|| error.downcast_ref::<reqwest::Error>().map(|e| e.into()))
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.or_else(|| error.downcast_ref::<ImportMapError>().map(|e| e.into()))
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.or_else(|| error.downcast_ref::<io::Error>().map(|e| e.into()))
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.or_else(|| {
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error
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.downcast_ref::<ModuleResolutionError>()
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.map(|e| e.into())
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})
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.or_else(|| error.downcast_ref::<url::ParseError>().map(|e| e.into()))
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.or_else(|| error.downcast_ref::<VarError>().map(|e| e.into()))
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.or_else(|| error.downcast_ref::<ReadlineError>().map(|e| e.into()))
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.or_else(|| {
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error
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.downcast_ref::<serde_json::error::Error>()
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.map(|e| e.into())
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})
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.or_else(|| error.downcast_ref::<dlopen::Error>().map(|e| e.into()))
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.or_else(|| error.downcast_ref::<notify::Error>().map(|e| e.into()))
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.or_else(|| unix_error_kind(&error))
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.unwrap_or_else(|| {
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panic!("Can't downcast {:?} to OpError", error);
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})
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}
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}
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#[cfg(test)]
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mod tests {
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use super::*;
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fn io_error() -> io::Error {
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io::Error::from(io::ErrorKind::NotFound)
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}
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fn url_error() -> url::ParseError {
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url::ParseError::EmptyHost
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}
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fn import_map_error() -> ImportMapError {
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ImportMapError {
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msg: "an import map error".to_string(),
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}
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}
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#[test]
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fn test_simple_error() {
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let err = OpError::not_found("foo".to_string());
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assert_eq!(err.kind, ErrorKind::NotFound);
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assert_eq!(err.to_string(), "foo");
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}
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#[test]
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fn test_io_error() {
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let err = OpError::from(io_error());
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assert_eq!(err.kind, ErrorKind::NotFound);
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assert_eq!(err.to_string(), "entity not found");
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}
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#[test]
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fn test_url_error() {
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let err = OpError::from(url_error());
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assert_eq!(err.kind, ErrorKind::URIError);
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assert_eq!(err.to_string(), "empty host");
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}
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// TODO find a way to easily test tokio errors and unix errors
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#[test]
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fn test_import_map_error() {
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let err = OpError::from(import_map_error());
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assert_eq!(err.kind, ErrorKind::Other);
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assert_eq!(err.to_string(), "an import map error");
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}
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#[test]
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fn test_bad_resource() {
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let err = OpError::bad_resource("Resource has been closed".to_string());
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assert_eq!(err.kind, ErrorKind::BadResource);
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assert_eq!(err.to_string(), "Resource has been closed");
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}
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#[test]
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fn test_bad_resource_id() {
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let err = OpError::bad_resource_id();
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assert_eq!(err.kind, ErrorKind::BadResource);
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assert_eq!(err.to_string(), "Bad resource ID");
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}
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#[test]
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fn test_permission_denied() {
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let err = OpError::permission_denied(
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"run again with the --allow-net flag".to_string(),
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);
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assert_eq!(err.kind, ErrorKind::PermissionDenied);
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assert_eq!(err.to_string(), "run again with the --allow-net flag");
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}
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}
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