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190 lines
5.8 KiB
Markdown
190 lines
5.8 KiB
Markdown
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## Permission APIs
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> This API is unstable. Learn more about
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> [unstable features](../runtime/stability.md).
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Permissions are granted from the CLI when running the `deno` command. User code
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will often assume its own set of required permissions, but there is no guarantee
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during execution that the set of _granted_ permissions will align with this.
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In some cases, ensuring a fault-tolerant program requires a way to interact with
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the permission system at runtime.
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### Permission descriptors
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On the CLI, read permission for `/foo/bar` is represented as
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`--allow-read=/foo/bar`. In runtime JS, it is represented as the following:
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```ts
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const desc = { name: "read", path: "/foo/bar" };
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```
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Other examples:
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```ts
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// Global write permission.
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const desc1 = { name: "write" };
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// Write permission to `$PWD/foo/bar`.
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const desc2 = { name: "write", path: "foo/bar" };
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// Global net permission.
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const desc3 = { name: "net" };
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// Net permission to 127.0.0.1:8000.
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const desc4 = { name: "net", url: "127.0.0.1:8000" };
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// High-resolution time permission.
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const desc5 = { name: "hrtime" };
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```
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### Query permissions
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Check, by descriptor, if a permission is granted or not.
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```ts
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// deno run --unstable --allow-read=/foo main.ts
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const desc1 = { name: "read", path: "/foo" };
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console.log(await Deno.permissions.query(desc1));
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// PermissionStatus { state: "granted" }
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const desc2 = { name: "read", path: "/foo/bar" };
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console.log(await Deno.permissions.query(desc2));
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// PermissionStatus { state: "granted" }
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const desc3 = { name: "read", path: "/bar" };
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console.log(await Deno.permissions.query(desc3));
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// PermissionStatus { state: "prompt" }
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```
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### Permission states
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A permission state can be either "granted", "prompt" or "denied". Permissions
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which have been granted from the CLI will query to `{ state: "granted" }`. Those
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which have not been granted query to `{ state: "prompt" }` by default, while
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`{ state: "denied" }` reserved for those which have been explicitly refused.
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This will come up in [Request permissions](#request-permissions).
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### Permission strength
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The intuitive understanding behind the result of the second query in
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[Query permissions](#query-permissions) is that read access was granted to
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`/foo` and `/foo/bar` is within `/foo` so `/foo/bar` is allowed to be read.
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We can also say that `desc1` is
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_[stronger than](https://www.w3.org/TR/permissions/#ref-for-permissiondescriptor-stronger-than)_
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`desc2`. This means that for any set of CLI-granted permissions:
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1. If `desc1` queries to `{ state: "granted" }` then so must `desc2`.
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2. If `desc2` queries to `{ state: "denied" }` then so must `desc1`.
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More examples:
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```ts
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const desc1 = { name: "write" };
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// is stronger than
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const desc2 = { name: "write", path: "/foo" };
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const desc3 = { name: "net" };
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// is stronger than
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const desc4 = { name: "net", url: "127.0.0.1:8000" };
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```
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### Request permissions
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Request an ungranted permission from the user via CLI prompt.
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```ts
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// deno run --unstable main.ts
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const desc1 = { name: "read", path: "/foo" };
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const status1 = await Deno.permissions.request(desc1);
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// ⚠️ Deno requests read access to "/foo". Grant? [g/d (g = grant, d = deny)] g
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console.log(status1);
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// PermissionStatus { state: "granted" }
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const desc2 = { name: "read", path: "/bar" };
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const status2 = await Deno.permissions.request(desc2);
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// ⚠️ Deno requests read access to "/bar". Grant? [g/d (g = grant, d = deny)] d
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console.log(status2);
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// PermissionStatus { state: "denied" }
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```
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If the current permission state is "prompt", a prompt will appear on the user's
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terminal asking them if they would like to grant the request. The request for
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`desc1` was granted so its new status is returned and execution will continue as
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if `--allow-read=/foo` was specified on the CLI. The request for `desc2` was
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denied so its permission state is downgraded from "prompt" to "denied".
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If the current permission state is already either "granted" or "denied", the
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request will behave like a query and just return the current status. This
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prevents prompts both for already granted permissions and previously denied
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requests.
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### Revoke permissions
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Downgrade a permission from "granted" to "prompt".
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```ts
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// deno run --unstable --allow-read=/foo main.ts
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const desc = { name: "read", path: "/foo" };
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console.log(await Deno.permissions.revoke(desc));
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// PermissionStatus { state: "prompt" }
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```
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However, what happens when you try to revoke a permission which is _partial_ to
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one granted on the CLI?
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```ts
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// deno run --unstable --allow-read=/foo main.ts
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const desc = { name: "read", path: "/foo/bar" };
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console.log(await Deno.permissions.revoke(desc));
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// PermissionStatus { state: "granted" }
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```
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It was not revoked.
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To understand this behaviour, imagine that Deno stores an internal set of
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_explicitly granted permission descriptors_. Specifying `--allow-read=/foo,/bar`
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on the CLI initializes this set to:
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```ts
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[
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{ name: "read", path: "/foo" },
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{ name: "read", path: "/bar" },
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];
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```
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Granting a runtime request for `{ name: "write", path: "/foo" }` updates the set
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to:
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```ts
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[
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{ name: "read", path: "/foo" },
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{ name: "read", path: "/bar" },
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{ name: "write", path: "/foo" },
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];
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```
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Deno's permission revocation algorithm works by removing every element from this
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set which the argument permission descriptor is _stronger than_. So to ensure
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`desc` is not longer granted, pass an argument descriptor _stronger than_
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whichever _explicitly granted permission descriptor_ is _stronger than_ `desc`.
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```ts
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// deno run --unstable --allow-read=/foo main.ts
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const desc = { name: "read", path: "/foo/bar" };
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console.log(await Deno.permissions.revoke(desc)); // Insufficient.
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// PermissionStatus { state: "granted" }
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const strongDesc = { name: "read", path: "/foo" };
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await Deno.permissions.revoke(strongDesc); // Good.
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console.log(await Deno.permissions.query(desc));
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// PermissionStatus { state: "prompt" }
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```
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