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denoland-deno/cli/ops/os.rs

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2020-01-02 15:13:47 -05:00
// Copyright 2018-2020 the Deno authors. All rights reserved. MIT license.
use super::dispatch_json::{Deserialize, Value};
use crate::state::State;
use deno_core::CoreIsolate;
use deno_core::ErrBox;
use deno_core::ResourceTable;
use deno_core::ZeroCopyBuf;
use std::collections::HashMap;
use std::env;
use std::rc::Rc;
use url::Url;
pub fn init(i: &mut CoreIsolate, s: &Rc<State>) {
let t = &CoreIsolate::state(i).borrow().resource_table.clone();
i.register_op("op_exit", s.stateful_json_op_sync(t, op_exit));
i.register_op("op_env", s.stateful_json_op_sync(t, op_env));
i.register_op("op_exec_path", s.stateful_json_op_sync(t, op_exec_path));
i.register_op("op_set_env", s.stateful_json_op_sync(t, op_set_env));
i.register_op("op_get_env", s.stateful_json_op_sync(t, op_get_env));
i.register_op("op_delete_env", s.stateful_json_op_sync(t, op_delete_env));
i.register_op("op_hostname", s.stateful_json_op_sync(t, op_hostname));
i.register_op("op_loadavg", s.stateful_json_op_sync(t, op_loadavg));
i.register_op("op_os_release", s.stateful_json_op_sync(t, op_os_release));
}
fn op_exec_path(
state: &State,
_resource_table: &mut ResourceTable,
_args: Value,
_zero_copy: &mut [ZeroCopyBuf],
) -> Result<Value, ErrBox> {
let current_exe = env::current_exe().unwrap();
state.check_read_blind(&current_exe, "exec_path")?;
// Now apply URL parser to current exe to get fully resolved path, otherwise
// we might get `./` and `../` bits in `exec_path`
let exe_url = Url::from_file_path(current_exe).unwrap();
let path = exe_url.to_file_path().unwrap();
Ok(json!(path))
}
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#[derive(Deserialize)]
struct SetEnv {
key: String,
value: String,
}
fn op_set_env(
state: &State,
_resource_table: &mut ResourceTable,
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args: Value,
_zero_copy: &mut [ZeroCopyBuf],
) -> Result<Value, ErrBox> {
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let args: SetEnv = serde_json::from_value(args)?;
state.check_env()?;
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env::set_var(args.key, args.value);
Ok(json!({}))
}
fn op_env(
state: &State,
_resource_table: &mut ResourceTable,
_args: Value,
_zero_copy: &mut [ZeroCopyBuf],
) -> Result<Value, ErrBox> {
state.check_env()?;
let v = env::vars().collect::<HashMap<String, String>>();
Ok(json!(v))
}
#[derive(Deserialize)]
struct GetEnv {
key: String,
}
fn op_get_env(
state: &State,
_resource_table: &mut ResourceTable,
args: Value,
_zero_copy: &mut [ZeroCopyBuf],
) -> Result<Value, ErrBox> {
let args: GetEnv = serde_json::from_value(args)?;
state.check_env()?;
let r = match env::var(args.key) {
Err(env::VarError::NotPresent) => json!([]),
v => json!([v?]),
};
Ok(r)
}
#[derive(Deserialize)]
struct DeleteEnv {
key: String,
}
fn op_delete_env(
state: &State,
_resource_table: &mut ResourceTable,
args: Value,
_zero_copy: &mut [ZeroCopyBuf],
) -> Result<Value, ErrBox> {
let args: DeleteEnv = serde_json::from_value(args)?;
state.check_env()?;
env::remove_var(args.key);
Ok(json!({}))
}
#[derive(Deserialize)]
struct Exit {
code: i32,
}
fn op_exit(
_state: &State,
_resource_table: &mut ResourceTable,
args: Value,
_zero_copy: &mut [ZeroCopyBuf],
) -> Result<Value, ErrBox> {
let args: Exit = serde_json::from_value(args)?;
std::process::exit(args.code)
}
fn op_loadavg(
state: &State,
_resource_table: &mut ResourceTable,
_args: Value,
_zero_copy: &mut [ZeroCopyBuf],
) -> Result<Value, ErrBox> {
state.check_unstable("Deno.loadavg");
state.check_env()?;
match sys_info::loadavg() {
Ok(loadavg) => Ok(json!([loadavg.one, loadavg.five, loadavg.fifteen])),
Err(_) => Ok(json!([0f64, 0f64, 0f64])),
}
}
fn op_hostname(
state: &State,
_resource_table: &mut ResourceTable,
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_args: Value,
_zero_copy: &mut [ZeroCopyBuf],
) -> Result<Value, ErrBox> {
state.check_unstable("Deno.hostname");
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state.check_env()?;
let hostname = sys_info::hostname().unwrap_or_else(|_| "".to_string());
Ok(json!(hostname))
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}
fn op_os_release(
state: &State,
_resource_table: &mut ResourceTable,
_args: Value,
_zero_copy: &mut [ZeroCopyBuf],
) -> Result<Value, ErrBox> {
state.check_unstable("Deno.osRelease");
state.check_env()?;
let release = sys_info::os_release().unwrap_or_else(|_| "".to_string());
Ok(json!(release))
}