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rustfs/crates/e2e_test/src/quota_test.rs
T
2026-03-24 17:29:33 +08:00

901 lines
31 KiB
Rust

// Copyright 2024 RustFS Team
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
use crate::common::{RustFSTestEnvironment, awscurl_delete, awscurl_get, awscurl_post, awscurl_put, init_logging};
use aws_sdk_s3::Client;
use serial_test::serial;
use tracing::{debug, info};
fn skip_without_awscurl() -> bool {
if crate::common::awscurl_available() {
return false;
}
info!("Skipping quota test because awscurl is not available");
true
}
/// Test environment setup for quota tests
pub struct QuotaTestEnv {
pub env: RustFSTestEnvironment,
pub client: Client,
pub bucket_name: String,
}
impl QuotaTestEnv {
pub async fn new() -> Result<Self, Box<dyn std::error::Error + Send + Sync>> {
let bucket_name = format!("quota-test-{}", uuid::Uuid::new_v4());
let mut env = RustFSTestEnvironment::new().await?;
env.start_rustfs_server(vec![]).await?;
let client = env.create_s3_client();
Ok(Self {
env,
client,
bucket_name,
})
}
pub async fn create_bucket(&self) -> Result<(), Box<dyn std::error::Error + Send + Sync>> {
self.env.create_test_bucket(&self.bucket_name).await?;
Ok(())
}
pub async fn cleanup_bucket(&self) -> Result<(), Box<dyn std::error::Error + Send + Sync>> {
let objects = self.client.list_objects_v2().bucket(&self.bucket_name).send().await?;
for object in objects.contents() {
self.client
.delete_object()
.bucket(&self.bucket_name)
.key(object.key().unwrap_or_default())
.send()
.await?;
}
self.env.delete_test_bucket(&self.bucket_name).await?;
Ok(())
}
pub async fn set_bucket_quota(&self, quota_bytes: u64) -> Result<(), Box<dyn std::error::Error + Send + Sync>> {
let url = format!("{}/rustfs/admin/v3/quota/{}", self.env.url, self.bucket_name);
let quota_config = serde_json::json!({
"quota": quota_bytes,
"quota_type": "HARD"
});
let response = awscurl_put(&url, &quota_config.to_string(), &self.env.access_key, &self.env.secret_key).await?;
if response.contains("error") {
Err(format!("Failed to set quota: {}", response).into())
} else {
Ok(())
}
}
pub async fn get_bucket_quota(&self) -> Result<Option<u64>, Box<dyn std::error::Error + Send + Sync>> {
let url = format!("{}/rustfs/admin/v3/quota/{}", self.env.url, self.bucket_name);
let response = awscurl_get(&url, &self.env.access_key, &self.env.secret_key).await?;
if response.contains("error") {
Err(format!("Failed to get quota: {}", response).into())
} else {
let quota_info: serde_json::Value = serde_json::from_str(&response)?;
Ok(quota_info.get("quota").and_then(|v| v.as_u64()))
}
}
pub async fn clear_bucket_quota(&self) -> Result<(), Box<dyn std::error::Error + Send + Sync>> {
let url = format!("{}/rustfs/admin/v3/quota/{}", self.env.url, self.bucket_name);
let response = awscurl_delete(&url, &self.env.access_key, &self.env.secret_key).await?;
if response.contains("error") {
Err(format!("Failed to clear quota: {}", response).into())
} else {
Ok(())
}
}
pub async fn get_bucket_quota_stats(&self) -> Result<serde_json::Value, Box<dyn std::error::Error + Send + Sync>> {
let url = format!("{}/rustfs/admin/v3/quota-stats/{}", self.env.url, self.bucket_name);
let response = awscurl_get(&url, &self.env.access_key, &self.env.secret_key).await?;
if response.contains("error") {
Err(format!("Failed to get quota stats: {}", response).into())
} else {
Ok(serde_json::from_str(&response)?)
}
}
pub async fn check_bucket_quota(
&self,
operation_type: &str,
operation_size: u64,
) -> Result<serde_json::Value, Box<dyn std::error::Error + Send + Sync>> {
let url = format!("{}/rustfs/admin/v3/quota-check/{}", self.env.url, self.bucket_name);
let check_request = serde_json::json!({
"operation_type": operation_type,
"operation_size": operation_size
});
let response = awscurl_post(&url, &check_request.to_string(), &self.env.access_key, &self.env.secret_key).await?;
if response.contains("error") {
Err(format!("Failed to check quota: {}", response).into())
} else {
Ok(serde_json::from_str(&response)?)
}
}
pub async fn upload_object(&self, key: &str, size_bytes: usize) -> Result<(), Box<dyn std::error::Error + Send + Sync>> {
let data = vec![0u8; size_bytes];
self.client
.put_object()
.bucket(&self.bucket_name)
.key(key)
.body(aws_sdk_s3::primitives::ByteStream::from(data))
.send()
.await?;
Ok(())
}
pub async fn object_exists(&self, key: &str) -> Result<bool, Box<dyn std::error::Error + Send + Sync>> {
match self.client.head_object().bucket(&self.bucket_name).key(key).send().await {
Ok(_) => Ok(true),
Err(e) => {
// Check for any 404-related errors and return false instead of propagating
let error_str = e.to_string();
if error_str.contains("404") || error_str.contains("Not Found") || error_str.contains("NotFound") {
Ok(false)
} else {
// Also check the error code directly
if let Some(service_err) = e.as_service_error()
&& service_err.is_not_found()
{
return Ok(false);
}
Err(e.into())
}
}
}
}
pub async fn get_bucket_usage(&self) -> Result<u64, Box<dyn std::error::Error + Send + Sync>> {
let stats = self.get_bucket_quota_stats().await?;
Ok(stats.get("current_usage").and_then(|v| v.as_u64()).unwrap_or(0))
}
pub async fn set_bucket_quota_for(
&self,
bucket: &str,
quota_bytes: u64,
) -> Result<(), Box<dyn std::error::Error + Send + Sync>> {
let url = format!("{}/rustfs/admin/v3/quota/{}", self.env.url, bucket);
let quota_config = serde_json::json!({
"quota": quota_bytes,
"quota_type": "HARD"
});
let response = awscurl_put(&url, &quota_config.to_string(), &self.env.access_key, &self.env.secret_key).await?;
if response.contains("error") {
Err(format!("Failed to set quota: {}", response).into())
} else {
Ok(())
}
}
/// Get bucket quota statistics for specific bucket
pub async fn get_bucket_quota_stats_for(
&self,
bucket: &str,
) -> Result<serde_json::Value, Box<dyn std::error::Error + Send + Sync>> {
debug!("Getting quota stats for bucket: {}", bucket);
let url = format!("{}/rustfs/admin/v3/quota-stats/{}", self.env.url, bucket);
let response = awscurl_get(&url, &self.env.access_key, &self.env.secret_key).await?;
if response.contains("error") {
Err(format!("Failed to get quota stats: {}", response).into())
} else {
let stats: serde_json::Value = serde_json::from_str(&response)?;
Ok(stats)
}
}
/// Upload an object to specific bucket
pub async fn upload_object_to_bucket(
&self,
bucket: &str,
key: &str,
size_bytes: usize,
) -> Result<(), Box<dyn std::error::Error + Send + Sync>> {
debug!("Uploading object {} with size {} bytes to bucket {}", key, size_bytes, bucket);
let data = vec![0u8; size_bytes];
self.client
.put_object()
.bucket(bucket)
.key(key)
.body(aws_sdk_s3::primitives::ByteStream::from(data))
.send()
.await?;
info!("Successfully uploaded object: {} ({} bytes) to bucket: {}", key, size_bytes, bucket);
Ok(())
}
}
#[cfg(test)]
mod integration_tests {
use super::*;
#[tokio::test]
#[serial]
async fn test_quota_basic_operations() -> Result<(), Box<dyn std::error::Error + Send + Sync>> {
init_logging();
if skip_without_awscurl() {
return Ok(());
}
let env = QuotaTestEnv::new().await?;
// Create test bucket
env.create_bucket().await?;
// Set quota of 1MB
env.set_bucket_quota(1024 * 1024).await?;
// Verify quota is set
let quota = env.get_bucket_quota().await?;
assert_eq!(quota, Some(1024 * 1024));
// Upload a 512KB object (should succeed)
env.upload_object("test1.txt", 512 * 1024).await?;
assert!(env.object_exists("test1.txt").await?);
// Upload another 512KB object (should succeed, total 1MB)
env.upload_object("test2.txt", 512 * 1024).await?;
assert!(env.object_exists("test2.txt").await?);
// Try to upload 1KB more (should fail due to quota)
let upload_result = env.upload_object("test3.txt", 1024).await;
assert!(upload_result.is_err());
assert!(!env.object_exists("test3.txt").await?);
// Clean up
env.clear_bucket_quota().await?;
env.cleanup_bucket().await?;
Ok(())
}
#[tokio::test]
#[serial]
async fn test_quota_update_and_clear() -> Result<(), Box<dyn std::error::Error + Send + Sync>> {
init_logging();
if skip_without_awscurl() {
return Ok(());
}
let env = QuotaTestEnv::new().await?;
env.create_bucket().await?;
// Set initial quota
env.set_bucket_quota(512 * 1024).await?;
assert_eq!(env.get_bucket_quota().await?, Some(512 * 1024));
// Update quota to larger size
env.set_bucket_quota(2 * 1024 * 1024).await?;
assert_eq!(env.get_bucket_quota().await?, Some(2 * 1024 * 1024));
// Upload 1MB object (should succeed with new quota)
env.upload_object("large_file.txt", 1024 * 1024).await?;
assert!(env.object_exists("large_file.txt").await?);
// Clear quota
env.clear_bucket_quota().await?;
assert_eq!(env.get_bucket_quota().await?, None);
// Upload another large object (should succeed with no quota)
env.upload_object("unlimited_file.txt", 5 * 1024 * 1024).await?;
assert!(env.object_exists("unlimited_file.txt").await?);
env.cleanup_bucket().await?;
Ok(())
}
#[tokio::test]
#[serial]
async fn test_quota_delete_operations() -> Result<(), Box<dyn std::error::Error + Send + Sync>> {
init_logging();
if skip_without_awscurl() {
return Ok(());
}
let env = QuotaTestEnv::new().await?;
env.create_bucket().await?;
// Set quota of 1MB
env.set_bucket_quota(1024 * 1024).await?;
// Fill up to quota limit
env.upload_object("file1.txt", 512 * 1024).await?;
env.upload_object("file2.txt", 512 * 1024).await?;
// Delete one file
env.client
.delete_object()
.bucket(&env.bucket_name)
.key("file1.txt")
.send()
.await?;
assert!(!env.object_exists("file1.txt").await?);
// Now we should be able to upload again (quota freed up)
env.upload_object("file3.txt", 256 * 1024).await?;
assert!(env.object_exists("file3.txt").await?);
env.cleanup_bucket().await?;
Ok(())
}
#[tokio::test]
#[serial]
async fn test_quota_usage_tracking() -> Result<(), Box<dyn std::error::Error + Send + Sync>> {
init_logging();
if skip_without_awscurl() {
return Ok(());
}
let env = QuotaTestEnv::new().await?;
env.create_bucket().await?;
// Set quota
env.set_bucket_quota(2 * 1024 * 1024).await?;
// Upload some files
env.upload_object("file1.txt", 512 * 1024).await?;
env.upload_object("file2.txt", 256 * 1024).await?;
// Check usage
let usage = env.get_bucket_usage().await?;
assert_eq!(usage, (512 + 256) * 1024);
// Delete a file
env.client
.delete_object()
.bucket(&env.bucket_name)
.key("file1.txt")
.send()
.await?;
// Check updated usage
let updated_usage = env.get_bucket_usage().await?;
assert_eq!(updated_usage, 256 * 1024);
env.cleanup_bucket().await?;
Ok(())
}
#[tokio::test]
#[serial]
async fn test_quota_statistics() -> Result<(), Box<dyn std::error::Error + Send + Sync>> {
init_logging();
if skip_without_awscurl() {
return Ok(());
}
let env = QuotaTestEnv::new().await?;
env.create_bucket().await?;
// Set quota of 2MB
env.set_bucket_quota(2 * 1024 * 1024).await?;
// Upload files to use 1.5MB
env.upload_object("file1.txt", 1024 * 1024).await?;
env.upload_object("file2.txt", 512 * 1024).await?;
// Get detailed quota statistics
let stats = env.get_bucket_quota_stats().await?;
assert_eq!(stats.get("bucket").unwrap().as_str().unwrap(), env.bucket_name);
assert_eq!(stats.get("quota_limit").unwrap().as_u64().unwrap(), 2 * 1024 * 1024);
assert_eq!(stats.get("current_usage").unwrap().as_u64().unwrap(), (1024 + 512) * 1024);
assert_eq!(stats.get("remaining_quota").unwrap().as_u64().unwrap(), 512 * 1024);
let usage_percentage = stats.get("usage_percentage").unwrap().as_f64().unwrap();
assert!((usage_percentage - 75.0).abs() < 0.1);
env.cleanup_bucket().await?;
Ok(())
}
#[tokio::test]
#[serial]
async fn test_quota_check_api() -> Result<(), Box<dyn std::error::Error + Send + Sync>> {
init_logging();
if skip_without_awscurl() {
return Ok(());
}
let env = QuotaTestEnv::new().await?;
env.create_bucket().await?;
// Set quota of 1MB
env.set_bucket_quota(1024 * 1024).await?;
// Upload 512KB file
env.upload_object("existing_file.txt", 512 * 1024).await?;
// Check if we can upload another 512KB (should succeed, exactly fill quota)
let check_result = env.check_bucket_quota("PUT", 512 * 1024).await?;
assert!(check_result.get("allowed").unwrap().as_bool().unwrap());
assert_eq!(check_result.get("remaining_quota").unwrap().as_u64().unwrap(), 0);
// Note: we haven't actually uploaded the second file yet, so current_usage is still 512KB
// Check if we can upload 1KB (should succeed - we haven't used the full quota yet)
let check_result = env.check_bucket_quota("PUT", 1024).await?;
assert!(check_result.get("allowed").unwrap().as_bool().unwrap());
assert_eq!(check_result.get("remaining_quota").unwrap().as_u64().unwrap(), 523264); // 511 * 1024
// Check if we can upload 600KB (should fail - would exceed quota)
let check_result = env.check_bucket_quota("PUT", 600 * 1024).await?;
assert!(!check_result.get("allowed").unwrap().as_bool().unwrap());
// Check delete operation (should always be allowed)
let check_result = env.check_bucket_quota("DELETE", 512 * 1024).await?;
assert!(check_result.get("allowed").unwrap().as_bool().unwrap());
env.cleanup_bucket().await?;
Ok(())
}
#[tokio::test]
#[serial]
async fn test_quota_multiple_buckets() -> Result<(), Box<dyn std::error::Error + Send + Sync>> {
init_logging();
if skip_without_awscurl() {
return Ok(());
}
let env = QuotaTestEnv::new().await?;
// Create two buckets in the same environment
let bucket1 = format!("quota-test-{}-1", uuid::Uuid::new_v4());
let bucket2 = format!("quota-test-{}-2", uuid::Uuid::new_v4());
env.env.create_test_bucket(&bucket1).await?;
env.env.create_test_bucket(&bucket2).await?;
// Set different quotas for each bucket
env.set_bucket_quota_for(&bucket1, 1024 * 1024).await?; // 1MB
env.set_bucket_quota_for(&bucket2, 2 * 1024 * 1024).await?; // 2MB
// Fill first bucket to quota
env.upload_object_to_bucket(&bucket1, "big_file.txt", 1024 * 1024).await?;
// Should still be able to upload to second bucket
env.upload_object_to_bucket(&bucket2, "big_file.txt", 1024 * 1024).await?;
env.upload_object_to_bucket(&bucket2, "another_file.txt", 512 * 1024).await?;
// Verify statistics are independent
let stats1 = env.get_bucket_quota_stats_for(&bucket1).await?;
let stats2 = env.get_bucket_quota_stats_for(&bucket2).await?;
assert_eq!(stats1.get("current_usage").unwrap().as_u64().unwrap(), 1024 * 1024);
assert_eq!(stats2.get("current_usage").unwrap().as_u64().unwrap(), (1024 + 512) * 1024);
// Clean up
env.env.delete_test_bucket(&bucket1).await?;
env.env.delete_test_bucket(&bucket2).await?;
Ok(())
}
#[tokio::test]
#[serial]
async fn test_quota_error_handling() -> Result<(), Box<dyn std::error::Error + Send + Sync>> {
init_logging();
if skip_without_awscurl() {
return Ok(());
}
let env = QuotaTestEnv::new().await?;
env.create_bucket().await?;
// Test invalid quota type
let url = format!("{}/rustfs/admin/v3/quota/{}", env.env.url, env.bucket_name);
let invalid_config = serde_json::json!({
"quota": 1024,
"quota_type": "SOFT" // Invalid type
});
let response = awscurl_put(&url, &invalid_config.to_string(), &env.env.access_key, &env.env.secret_key).await;
assert!(response.is_err());
let error_msg = response.unwrap_err().to_string();
assert!(error_msg.contains("InvalidArgument"));
// Test operations on non-existent bucket
let url = format!("{}/rustfs/admin/v3/quota/non-existent-bucket", env.env.url);
let response = awscurl_get(&url, &env.env.access_key, &env.env.secret_key).await;
assert!(response.is_err());
let error_msg = response.unwrap_err().to_string();
assert!(error_msg.contains("NoSuchBucket"));
env.cleanup_bucket().await?;
Ok(())
}
#[tokio::test]
#[serial]
async fn test_quota_http_endpoints() -> Result<(), Box<dyn std::error::Error + Send + Sync>> {
init_logging();
if skip_without_awscurl() {
return Ok(());
}
let env = QuotaTestEnv::new().await?;
env.create_bucket().await?;
// Test 1: GET quota for bucket without quota config
let url = format!("{}/rustfs/admin/v3/quota/{}", env.env.url, env.bucket_name);
let response = awscurl_get(&url, &env.env.access_key, &env.env.secret_key).await?;
assert!(response.contains("quota") && response.contains("null"));
// Test 2: PUT quota - valid config
let quota_config = serde_json::json!({
"quota": 1048576,
"quota_type": "HARD"
});
let response = awscurl_put(&url, &quota_config.to_string(), &env.env.access_key, &env.env.secret_key).await?;
assert!(response.contains("success") || !response.contains("error"));
// Test 3: GET quota after setting
let response = awscurl_get(&url, &env.env.access_key, &env.env.secret_key).await?;
assert!(response.contains("1048576"));
// Test 4: GET quota stats
let stats_url = format!("{}/rustfs/admin/v3/quota-stats/{}", env.env.url, env.bucket_name);
let response = awscurl_get(&stats_url, &env.env.access_key, &env.env.secret_key).await?;
assert!(response.contains("quota_limit") && response.contains("current_usage"));
// Test 5: POST quota check
let check_url = format!("{}/rustfs/admin/v3/quota-check/{}", env.env.url, env.bucket_name);
let check_request = serde_json::json!({
"operation_type": "PUT",
"operation_size": 1024
});
let response = awscurl_post(&check_url, &check_request.to_string(), &env.env.access_key, &env.env.secret_key).await?;
assert!(response.contains("allowed"));
// Test 6: DELETE quota
let response = awscurl_delete(&url, &env.env.access_key, &env.env.secret_key).await?;
assert!(!response.contains("error"));
// Test 7: GET quota after deletion
let response = awscurl_get(&url, &env.env.access_key, &env.env.secret_key).await?;
assert!(response.contains("quota") && response.contains("null"));
// Test 8: Invalid quota type
let invalid_config = serde_json::json!({
"quota": 1024,
"quota_type": "SOFT"
});
let response = awscurl_put(&url, &invalid_config.to_string(), &env.env.access_key, &env.env.secret_key).await;
assert!(response.is_err());
let error_msg = response.unwrap_err().to_string();
assert!(error_msg.contains("InvalidArgument"));
env.cleanup_bucket().await?;
Ok(())
}
/// Test that a normal user with `readwrite` policy can read quota but cannot set/clear quota.
#[tokio::test]
#[serial]
async fn test_quota_normal_user_permissions() -> Result<(), Box<dyn std::error::Error + Send + Sync>> {
init_logging();
if skip_without_awscurl() {
return Ok(());
}
let env = QuotaTestEnv::new().await?;
env.create_bucket().await?;
// Admin sets quota first
env.set_bucket_quota(1024 * 1024).await?;
// Create a normal user via admin API
let normal_ak = "normaluser";
let normal_sk = "normaluser123";
let add_user_url = format!("{}/rustfs/admin/v3/add-user?accessKey={}", env.env.url, normal_ak);
let user_body = serde_json::json!({ "secretKey": normal_sk, "status": "enabled" }).to_string();
awscurl_put(&add_user_url, &user_body, &env.env.access_key, &env.env.secret_key).await?;
// Attach `readwrite` policy to the normal user
let policy_url = format!(
"{}/rustfs/admin/v3/set-user-or-group-policy?policyName=readwrite&userOrGroup={}&isGroup=false",
env.env.url, normal_ak
);
awscurl_put(&policy_url, "", &env.env.access_key, &env.env.secret_key).await?;
// Normal user reads quota — should succeed
let get_url = format!("{}/rustfs/admin/v3/quota/{}", env.env.url, env.bucket_name);
let resp = awscurl_get(&get_url, normal_ak, normal_sk).await?;
let quota_info: serde_json::Value = serde_json::from_str(&resp)?;
assert_eq!(quota_info.get("quota").and_then(|v| v.as_u64()), Some(1024 * 1024));
// Normal user reads quota stats — should succeed
let stats_url = format!("{}/rustfs/admin/v3/quota-stats/{}", env.env.url, env.bucket_name);
let resp = awscurl_get(&stats_url, normal_ak, normal_sk).await?;
assert!(resp.contains("quota_limit"));
// Normal user sets quota — should be denied
let set_resp = awscurl_put(
&get_url,
&serde_json::json!({"quota": 2048, "quota_type": "HARD"}).to_string(),
normal_ak,
normal_sk,
)
.await;
assert!(set_resp.is_err(), "normal user should not be able to set quota");
// Normal user clears quota — should be denied
let del_resp = awscurl_delete(&get_url, normal_ak, normal_sk).await;
assert!(del_resp.is_err(), "normal user should not be able to clear quota");
env.cleanup_bucket().await?;
Ok(())
}
#[tokio::test]
#[serial]
async fn test_quota_copy_operations() -> Result<(), Box<dyn std::error::Error + Send + Sync>> {
init_logging();
if skip_without_awscurl() {
return Ok(());
}
let env = QuotaTestEnv::new().await?;
env.create_bucket().await?;
// Set quota of 2MB
env.set_bucket_quota(2 * 1024 * 1024).await?;
// Upload initial file
env.upload_object("original.txt", 1024 * 1024).await?;
// Copy file - should succeed (1MB each, total 2MB)
env.client
.copy_object()
.bucket(&env.bucket_name)
.key("copy1.txt")
.copy_source(format!("{}/{}", env.bucket_name, "original.txt"))
.send()
.await?;
assert!(env.object_exists("copy1.txt").await?);
// Try to copy again - should fail (1.5MB each, total 3MB > 2MB quota)
let copy_result = env
.client
.copy_object()
.bucket(&env.bucket_name)
.key("copy2.txt")
.copy_source(format!("{}/{}", env.bucket_name, "original.txt"))
.send()
.await;
assert!(copy_result.is_err());
assert!(!env.object_exists("copy2.txt").await?);
env.cleanup_bucket().await?;
Ok(())
}
#[tokio::test]
#[serial]
async fn test_quota_batch_delete() -> Result<(), Box<dyn std::error::Error + Send + Sync>> {
init_logging();
if skip_without_awscurl() {
return Ok(());
}
let env = QuotaTestEnv::new().await?;
env.create_bucket().await?;
// Set quota of 2MB
env.set_bucket_quota(2 * 1024 * 1024).await?;
// Upload files to fill quota
env.upload_object("file1.txt", 1024 * 1024).await?;
env.upload_object("file2.txt", 1024 * 1024).await?;
// Verify quota is full
let upload_result = env.upload_object("file3.txt", 1024).await;
assert!(upload_result.is_err());
// Delete multiple objects using batch delete
let objects = vec![
aws_sdk_s3::types::ObjectIdentifier::builder()
.key("file1.txt")
.build()
.unwrap(),
aws_sdk_s3::types::ObjectIdentifier::builder()
.key("file2.txt")
.build()
.unwrap(),
];
let delete_result = env
.client
.delete_objects()
.bucket(&env.bucket_name)
.delete(
aws_sdk_s3::types::Delete::builder()
.set_objects(Some(objects))
.quiet(true)
.build()
.unwrap(),
)
.send()
.await?;
assert_eq!(delete_result.deleted().len(), 2);
// Now should be able to upload again (quota freed up)
env.upload_object("file3.txt", 256 * 1024).await?;
assert!(env.object_exists("file3.txt").await?);
env.cleanup_bucket().await?;
Ok(())
}
#[tokio::test]
#[serial]
async fn test_quota_multipart_upload() -> Result<(), Box<dyn std::error::Error + Send + Sync>> {
init_logging();
if skip_without_awscurl() {
return Ok(());
}
let env = QuotaTestEnv::new().await?;
env.create_bucket().await?;
// Set quota of 10MB
env.set_bucket_quota(10 * 1024 * 1024).await?;
let key = "multipart_test.txt";
let part_size = 5 * 1024 * 1024; // 5MB minimum per part (S3 requirement)
// Test 1: Multipart upload within quota (single 5MB part)
let create_result = env
.client
.create_multipart_upload()
.bucket(&env.bucket_name)
.key(key)
.send()
.await?;
let upload_id = create_result.upload_id().unwrap();
// Upload single 5MB part (S3 allows single part with any size ≥ 5MB for the only part)
let part_data = vec![1u8; part_size];
let part_result = env
.client
.upload_part()
.bucket(&env.bucket_name)
.key(key)
.upload_id(upload_id)
.part_number(1)
.body(aws_sdk_s3::primitives::ByteStream::from(part_data))
.send()
.await?;
let uploaded_parts = vec![
aws_sdk_s3::types::CompletedPart::builder()
.part_number(1)
.e_tag(part_result.e_tag().unwrap())
.build(),
];
env.client
.complete_multipart_upload()
.bucket(&env.bucket_name)
.key(key)
.upload_id(upload_id)
.multipart_upload(
aws_sdk_s3::types::CompletedMultipartUpload::builder()
.set_parts(Some(uploaded_parts))
.build(),
)
.send()
.await?;
assert!(env.object_exists(key).await?);
// Test 2: Multipart upload exceeds quota (should fail)
// Upload 6MB filler (total now: 5MB + 6MB = 11MB > 10MB quota)
let upload_filler = env.upload_object("filler.txt", 6 * 1024 * 1024).await;
// This should fail due to quota
assert!(upload_filler.is_err());
// Verify filler doesn't exist
assert!(!env.object_exists("filler.txt").await?);
// Now try a multipart upload that exceeds quota
// Current usage: 5MB (from Test 1), quota: 10MB
// Trying to upload 6MB via multipart → should fail
let create_result2 = env
.client
.create_multipart_upload()
.bucket(&env.bucket_name)
.key("over_quota.txt")
.send()
.await?;
let upload_id2 = create_result2.upload_id().unwrap();
let mut uploaded_parts2 = vec![];
for part_num in 1..=2 {
let part_data = vec![part_num as u8; part_size];
let part_result = env
.client
.upload_part()
.bucket(&env.bucket_name)
.key("over_quota.txt")
.upload_id(upload_id2)
.part_number(part_num)
.body(aws_sdk_s3::primitives::ByteStream::from(part_data))
.send()
.await?;
uploaded_parts2.push(
aws_sdk_s3::types::CompletedPart::builder()
.part_number(part_num)
.e_tag(part_result.e_tag().unwrap())
.build(),
);
}
let complete_result = env
.client
.complete_multipart_upload()
.bucket(&env.bucket_name)
.key("over_quota.txt")
.upload_id(upload_id2)
.multipart_upload(
aws_sdk_s3::types::CompletedMultipartUpload::builder()
.set_parts(Some(uploaded_parts2))
.build(),
)
.send()
.await;
assert!(complete_result.is_err());
assert!(!env.object_exists("over_quota.txt").await?);
env.cleanup_bucket().await?;
Ok(())
}
}