forked from Deuxfleurs/garage
admin docs: reformatting, key admin: add check
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5 changed files with 69 additions and 64 deletions
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@ -363,6 +363,7 @@ existing layout in the cluster.
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This returns the new cluster layout with all changes reverted,
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This returns the new cluster layout with all changes reverted,
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as returned by GetClusterLayout.
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as returned by GetClusterLayout.
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### Access key operations
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### Access key operations
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#### ListKeys `GET /v1/key`
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#### ListKeys `GET /v1/key`
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@ -384,37 +385,6 @@ Example response:
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]
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]
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```
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```
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#### CreateKey `POST /v1/key`
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Creates a new API access key.
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Request body format:
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```json
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{
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"name": "NameOfMyKey"
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}
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```
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This returns the key info, including the created secret key,
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in the same format as the result of GetKeyInfo.
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#### ImportKey `POST /v1/key/import`
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Imports an existing API key.
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Request body format:
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```json
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{
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"accessKeyId": "GK31c2f218a2e44f485b94239e",
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"secretAccessKey": "b892c0665f0ada8a4755dae98baa3b133590e11dae3bcc1f9d769d67f16c3835",
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"name": "NameOfMyKey"
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}
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```
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This returns the key info in the same format as the result of GetKeyInfo.
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#### GetKeyInfo `GET /v1/key?id=<acces key id>`
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#### GetKeyInfo `GET /v1/key?id=<acces key id>`
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#### GetKeyInfo `GET /v1/key?search=<pattern>`
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#### GetKeyInfo `GET /v1/key?search=<pattern>`
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@ -490,9 +460,38 @@ Example response:
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}
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}
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```
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```
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#### DeleteKey `DELETE /v1/key?id=<acces key id>`
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#### CreateKey `POST /v1/key`
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Deletes an API access key.
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Creates a new API access key.
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Request body format:
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```json
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{
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"name": "NameOfMyKey"
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}
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```
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This returns the key info, including the created secret key,
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in the same format as the result of GetKeyInfo.
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#### ImportKey `POST /v1/key/import`
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Imports an existing API key.
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This will check that the imported key is in the valid format, i.e.
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is a key that could have been generated by Garage.
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Request body format:
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```json
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{
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"accessKeyId": "GK31c2f218a2e44f485b94239e",
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"secretAccessKey": "b892c0665f0ada8a4755dae98baa3b133590e11dae3bcc1f9d769d67f16c3835",
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"name": "NameOfMyKey"
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}
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```
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This returns the key info in the same format as the result of GetKeyInfo.
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#### UpdateKey `POST /v1/key?id=<acces key id>`
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#### UpdateKey `POST /v1/key?id=<acces key id>`
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@ -516,6 +515,11 @@ The possible flags in `allow` and `deny` are: `createBucket`.
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This returns the key info in the same format as the result of GetKeyInfo.
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This returns the key info in the same format as the result of GetKeyInfo.
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#### DeleteKey `DELETE /v1/key?id=<acces key id>`
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Deletes an API access key.
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### Bucket operations
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### Bucket operations
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#### ListBuckets `GET /v1/bucket`
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#### ListBuckets `GET /v1/bucket`
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@ -644,12 +648,6 @@ or no alias at all.
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Technically, you can also specify both `globalAlias` and `localAlias` and that would create
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Technically, you can also specify both `globalAlias` and `localAlias` and that would create
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two aliases, but I don't see why you would want to do that.
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two aliases, but I don't see why you would want to do that.
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#### DeleteBucket `DELETE /v1/bucket?id=<bucket id>`
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Deletes a storage bucket. A bucket cannot be deleted if it is not empty.
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Warning: this will delete all aliases associated with the bucket!
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#### UpdateBucket `PUT /v1/bucket?id=<bucket id>`
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#### UpdateBucket `PUT /v1/bucket?id=<bucket id>`
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Updates configuration of the given bucket.
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Updates configuration of the given bucket.
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@ -682,6 +680,13 @@ In `quotas`: new values of `maxSize` and `maxObjects` must both be specified, or
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to remove the quotas. An absent value will be considered the same as a `null`. It is not possible
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to remove the quotas. An absent value will be considered the same as a `null`. It is not possible
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to change only one of the two quotas.
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to change only one of the two quotas.
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#### DeleteBucket `DELETE /v1/bucket?id=<bucket id>`
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Deletes a storage bucket. A bucket cannot be deleted if it is not empty.
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Warning: this will delete all aliases associated with the bucket!
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### Operations on permissions for keys on buckets
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### Operations on permissions for keys on buckets
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#### BucketAllowKey `POST /v1/bucket/allow`
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#### BucketAllowKey `POST /v1/bucket/allow`
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@ -1,7 +1,7 @@
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use std::net::SocketAddr;
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use std::net::SocketAddr;
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use std::sync::Arc;
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use std::sync::Arc;
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use hyper::{Body, Request, Response, StatusCode};
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use hyper::{Body, Request, Response};
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use serde::{Deserialize, Serialize};
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use serde::{Deserialize, Serialize};
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use garage_util::crdt::*;
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use garage_util::crdt::*;
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@ -161,8 +161,8 @@ struct GetClusterStatusResponse {
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#[derive(Serialize)]
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#[derive(Serialize)]
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#[serde(rename_all = "camelCase")]
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#[serde(rename_all = "camelCase")]
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struct ApplyClusterLayoutResponse {
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struct ApplyClusterLayoutResponse {
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message: Vec<String>,
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message: Vec<String>,
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layout: GetClusterLayoutResponse,
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layout: GetClusterLayoutResponse,
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}
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}
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#[derive(Serialize)]
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#[derive(Serialize)]
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@ -238,7 +238,7 @@ pub async fn handle_update_cluster_layout(
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garage.system.update_cluster_layout(&layout).await?;
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garage.system.update_cluster_layout(&layout).await?;
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let res = format_cluster_layout(&layout);
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let res = format_cluster_layout(&layout);
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Ok(json_ok_response(&res)?)
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Ok(json_ok_response(&res)?)
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}
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}
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pub async fn handle_apply_cluster_layout(
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pub async fn handle_apply_cluster_layout(
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@ -253,10 +253,10 @@ pub async fn handle_apply_cluster_layout(
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garage.system.update_cluster_layout(&layout).await?;
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garage.system.update_cluster_layout(&layout).await?;
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let res = ApplyClusterLayoutResponse {
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let res = ApplyClusterLayoutResponse {
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message: msg,
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message: msg,
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layout: format_cluster_layout(&layout),
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layout: format_cluster_layout(&layout),
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};
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};
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Ok(json_ok_response(&res)?)
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Ok(json_ok_response(&res)?)
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}
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}
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pub async fn handle_revert_cluster_layout(
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pub async fn handle_revert_cluster_layout(
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@ -270,7 +270,7 @@ pub async fn handle_revert_cluster_layout(
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garage.system.update_cluster_layout(&layout).await?;
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garage.system.update_cluster_layout(&layout).await?;
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let res = format_cluster_layout(&layout);
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let res = format_cluster_layout(&layout);
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Ok(json_ok_response(&res)?)
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Ok(json_ok_response(&res)?)
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}
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}
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// ----
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// ----
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@ -93,7 +93,8 @@ pub async fn handle_import_key(
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&req.access_key_id,
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&req.access_key_id,
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&req.secret_access_key,
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&req.secret_access_key,
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req.name.as_deref().unwrap_or("Imported key"),
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req.name.as_deref().unwrap_or("Imported key"),
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);
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)
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.ok_or_bad_request("Invalid key format")?;
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garage.key_table.insert(&imported_key).await?;
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garage.key_table.insert(&imported_key).await?;
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key_info_results(garage, imported_key, false).await
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key_info_results(garage, imported_key, false).await
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@ -2,7 +2,7 @@ use std::collections::HashMap;
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use garage_table::*;
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use garage_table::*;
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use garage_model::helper::error::Error;
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use garage_model::helper::error::*;
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use garage_model::key_table::*;
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use garage_model::key_table::*;
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use crate::cli::*;
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use crate::cli::*;
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@ -127,22 +127,13 @@ impl AdminRpcHandler {
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return Err(Error::BadRequest("This command is intended to re-import keys that were previously generated by Garage. If you want to create a new key, use `garage key new` instead. Add the --yes flag if you really want to re-import a key.".to_string()));
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return Err(Error::BadRequest("This command is intended to re-import keys that were previously generated by Garage. If you want to create a new key, use `garage key new` instead. Add the --yes flag if you really want to re-import a key.".to_string()));
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}
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}
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if query.key_id.len() != 26
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|| &query.key_id[..2] != "GK"
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|| hex::decode(&query.key_id[2..]).is_err()
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{
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return Err(Error::BadRequest(format!("The specified key ID is not a valid Garage key ID (starts with `GK`, followed by 12 hex-encoded bytes)")));
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}
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if query.secret_key.len() != 64 || hex::decode(&query.secret_key).is_err() {
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return Err(Error::BadRequest(format!("The specified secret key is not a valid Garage secret key (composed of 32 hex-encoded bytes)")));
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}
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let prev_key = self.garage.key_table.get(&EmptyKey, &query.key_id).await?;
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let prev_key = self.garage.key_table.get(&EmptyKey, &query.key_id).await?;
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if prev_key.is_some() {
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if prev_key.is_some() {
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return Err(Error::BadRequest(format!("Key {} already exists in data store. Even if it is deleted, we can't let you create a new key with the same ID. Sorry.", query.key_id)));
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return Err(Error::BadRequest(format!("Key {} already exists in data store. Even if it is deleted, we can't let you create a new key with the same ID. Sorry.", query.key_id)));
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}
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}
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let imported_key = Key::import(&query.key_id, &query.secret_key, &query.name);
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let imported_key = Key::import(&query.key_id, &query.secret_key, &query.name)
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.ok_or_bad_request("Invalid key format")?;
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self.garage.key_table.insert(&imported_key).await?;
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self.garage.key_table.insert(&imported_key).await?;
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self.key_info_result(imported_key).await
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self.key_info_result(imported_key).await
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@ -149,11 +149,19 @@ impl Key {
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}
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}
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/// Import a key from it's parts
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/// Import a key from it's parts
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pub fn import(key_id: &str, secret_key: &str, name: &str) -> Self {
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pub fn import(key_id: &str, secret_key: &str, name: &str) -> Result<Self, &'static str> {
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Self {
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if key_id.len() != 26 || &key_id[..2] != "GK" || hex::decode(&key_id[2..]).is_err() {
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return Err("The specified key ID is not a valid Garage key ID (starts with `GK`, followed by 12 hex-encoded bytes)");
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}
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if secret_key.len() != 64 || hex::decode(&secret_key).is_err() {
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return Err("The specified secret key is not a valid Garage secret key (composed of 32 hex-encoded bytes)");
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}
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Ok(Self {
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key_id: key_id.to_string(),
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key_id: key_id.to_string(),
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state: crdt::Deletable::present(KeyParams::new(secret_key, name)),
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state: crdt::Deletable::present(KeyParams::new(secret_key, name)),
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}
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})
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}
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}
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/// Create a new Key which can me merged to mark an existing key deleted
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/// Create a new Key which can me merged to mark an existing key deleted
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