360 lines
11 KiB
Rust
360 lines
11 KiB
Rust
/*
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* SPDX-FileCopyrightText: 2020 Stalwart Labs Ltd <hello@stalw.art>
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*
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* SPDX-License-Identifier: AGPL-3.0-only OR LicenseRef-SEL
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*/
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use ahash::AHashSet;
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use common::{Core, manager::backup::BackupParams};
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use jmap_proto::types::{collection::Collection, property::Property};
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use store::{
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rand,
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write::{
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AnyKey, BatchBuilder, BitmapClass, BitmapHash, BlobOp, DirectoryClass, InMemoryClass,
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MaybeDynamicId, MaybeDynamicValue, Operation, QueueClass, QueueEvent, TagValue, ValueClass,
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},
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*,
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};
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use utils::BlobHash;
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use crate::store::TempDir;
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pub async fn test(db: Store) {
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let mut core = Core::default();
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core.storage.data = db.clone();
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core.storage.blob = db.clone().into();
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core.storage.fts = db.clone().into();
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core.storage.lookup = db.clone().into();
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// Make sure the store is empty
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db.assert_is_empty(db.clone().into()).await;
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// Create blobs
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println!("Creating blobs...");
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let mut batch = BatchBuilder::new();
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let mut blob_hashes = Vec::new();
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for blob_size in [16, 128, 1024, 2056, 102400] {
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let data = random_bytes(blob_size);
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let hash = BlobHash::generate(data.as_slice());
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blob_hashes.push(hash.clone());
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core.storage
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.blob
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.put_blob(hash.as_ref(), &data)
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.await
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.unwrap();
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batch.set(ValueClass::Blob(BlobOp::Commit { hash }), vec![]);
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}
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db.write(batch.build()).await.unwrap();
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// Create account data
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println!("Creating account data...");
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for account_id in 0u32..10u32 {
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let mut batch = BatchBuilder::new();
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batch.with_account_id(account_id);
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// Create properties of different sizes
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for collection in [0, 1, 2, 3] {
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batch.with_collection(collection);
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for document_id in [0, 10, 20, 30, 40] {
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batch.create_document_with_id(document_id);
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if collection == u8::from(Collection::Mailbox) {
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batch
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.set(
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ValueClass::Property(Property::Value.into()),
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random_bytes(10),
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)
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.add(
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ValueClass::Property(Property::EmailIds.into()),
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rand::random(),
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);
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}
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for (idx, value_size) in [16, 128, 1024, 2056, 102400].into_iter().enumerate() {
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batch.set(ValueClass::Property(idx as u8), random_bytes(value_size));
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}
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for value_size in [1, 4, 7, 8, 9, 16] {
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batch.set(
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ValueClass::FtsIndex(BitmapHash::new(random_bytes(value_size))),
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random_bytes(value_size * 2),
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);
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}
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for grant_account_id in 0u32..10u32 {
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if account_id != grant_account_id {
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batch.set(
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ValueClass::Acl(grant_account_id),
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vec![account_id as u8, grant_account_id as u8, document_id as u8],
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);
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}
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}
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for hash in &blob_hashes {
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batch.set(
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ValueClass::Blob(BlobOp::Link { hash: hash.clone() }),
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vec![],
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);
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}
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batch.ops.push(Operation::ChangeId {
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change_id: document_id as u64 + account_id as u64 + collection as u64,
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});
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batch.ops.push(Operation::Log {
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set: MaybeDynamicValue::Static(vec![
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account_id as u8,
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collection,
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document_id as u8,
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]),
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});
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for field in 0..5 {
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batch.ops.push(Operation::Bitmap {
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class: BitmapClass::Tag {
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field,
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value: TagValue::Id(MaybeDynamicId::Static(rand::random())),
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},
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set: true,
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});
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batch.ops.push(Operation::Bitmap {
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class: BitmapClass::Tag {
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field,
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value: TagValue::Text(random_bytes(field as usize + 2)),
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},
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set: true,
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});
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batch.ops.push(Operation::Bitmap {
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class: BitmapClass::Text {
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field,
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token: BitmapHash::new(random_bytes(field as usize + 2)),
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},
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set: true,
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});
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batch.ops.push(Operation::Index {
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field,
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key: random_bytes(field as usize + 2),
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set: true,
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});
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}
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}
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}
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db.write(batch.build()).await.unwrap();
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}
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// Create queue, config and lookup data
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println!("Creating queue, config and lookup data...");
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let mut batch = BatchBuilder::new();
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for idx in [1, 2, 3, 4, 5] {
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batch.set(
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ValueClass::Queue(QueueClass::Message(rand::random())),
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random_bytes(idx),
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);
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batch.set(
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ValueClass::Queue(QueueClass::MessageEvent(QueueEvent {
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due: rand::random(),
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queue_id: rand::random(),
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})),
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random_bytes(idx),
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);
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batch.set(
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ValueClass::InMemory(InMemoryClass::Key(random_bytes(idx))),
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random_bytes(idx),
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);
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batch.add(
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ValueClass::InMemory(InMemoryClass::Counter(random_bytes(idx))),
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rand::random(),
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);
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batch.set(
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ValueClass::Config(random_bytes(idx + 10)),
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random_bytes(idx + 10),
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);
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}
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db.write(batch.build()).await.unwrap();
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// Create directory data
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println!("Creating directory data...");
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let mut batch = BatchBuilder::new();
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batch
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.with_account_id(u32::MAX)
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.with_collection(Collection::Principal);
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for account_id in [1, 2, 3, 4, 5] {
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batch
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.create_document_with_id(account_id)
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.add(
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ValueClass::Directory(DirectoryClass::UsedQuota(account_id)),
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rand::random(),
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)
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.set(
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ValueClass::Directory(DirectoryClass::NameToId(random_bytes(
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2 + account_id as usize,
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))),
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random_bytes(4),
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)
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.set(
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ValueClass::Directory(DirectoryClass::EmailToId(random_bytes(
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4 + account_id as usize,
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))),
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random_bytes(4),
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)
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.set(
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ValueClass::Directory(DirectoryClass::Principal(MaybeDynamicId::Static(
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account_id,
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))),
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random_bytes(30),
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)
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.set(
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ValueClass::Directory(DirectoryClass::MemberOf {
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principal_id: MaybeDynamicId::Static(account_id),
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member_of: MaybeDynamicId::Static(rand::random()),
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}),
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random_bytes(15),
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)
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.set(
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ValueClass::Directory(DirectoryClass::Members {
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principal_id: MaybeDynamicId::Static(account_id),
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has_member: MaybeDynamicId::Static(rand::random()),
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}),
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random_bytes(15),
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);
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}
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db.write(batch.build()).await.unwrap();
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// Obtain store hash
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println!("Calculating store hash...");
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let snapshot = Snapshot::new(&db).await;
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assert!(!snapshot.keys.is_empty(), "Store hash counts are empty",);
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// Export store
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println!("Exporting store...");
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let temp_dir = TempDir::new("art_vandelay_tests", true);
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core.backup(BackupParams::new(temp_dir.path.clone())).await;
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// Destroy store
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println!("Destroying store...");
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db.destroy().await;
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db.assert_is_empty(db.clone().into()).await;
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// Import store
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println!("Importing store...");
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core.restore(temp_dir.path.clone()).await;
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// Verify hash
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print!("Verifying store hash...");
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snapshot.assert_is_eq(&Snapshot::new(&db).await);
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println!(" GREAT SUCCESS!");
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// Destroy store
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db.destroy().await;
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temp_dir.delete();
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}
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#[derive(Debug, PartialEq, Eq)]
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struct Snapshot {
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keys: AHashSet<KeyValue>,
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}
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#[derive(Debug, PartialEq, Eq, Hash)]
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struct KeyValue {
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subspace: u8,
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key: Vec<u8>,
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value: Vec<u8>,
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}
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impl Snapshot {
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async fn new(db: &Store) -> Self {
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let is_sql = db.is_sql();
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let mut keys = AHashSet::new();
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for (subspace, with_values) in [
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(SUBSPACE_ACL, true),
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(SUBSPACE_BITMAP_ID, false),
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(SUBSPACE_BITMAP_TAG, false),
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(SUBSPACE_BITMAP_TEXT, false),
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(SUBSPACE_DIRECTORY, true),
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(SUBSPACE_TASK_QUEUE, true),
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(SUBSPACE_INDEXES, false),
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(SUBSPACE_BLOB_RESERVE, true),
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(SUBSPACE_BLOB_LINK, true),
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(SUBSPACE_BLOBS, true),
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(SUBSPACE_LOGS, true),
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(SUBSPACE_COUNTER, !is_sql),
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(SUBSPACE_IN_MEMORY_COUNTER, !is_sql),
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(SUBSPACE_IN_MEMORY_VALUE, true),
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(SUBSPACE_PROPERTY, true),
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(SUBSPACE_SETTINGS, true),
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(SUBSPACE_QUEUE_MESSAGE, true),
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(SUBSPACE_QUEUE_EVENT, true),
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(SUBSPACE_QUOTA, !is_sql),
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(SUBSPACE_REPORT_OUT, true),
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(SUBSPACE_REPORT_IN, true),
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(SUBSPACE_FTS_INDEX, true),
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] {
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let from_key = AnyKey {
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subspace,
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key: vec![0u8],
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};
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let to_key = AnyKey {
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subspace,
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key: vec![u8::MAX; 10],
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};
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db.iterate(
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IterateParams::new(from_key, to_key).set_values(with_values),
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|key, value| {
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keys.insert(KeyValue {
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subspace,
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key: key.to_vec(),
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value: value.to_vec(),
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});
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Ok(true)
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},
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)
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.await
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.unwrap();
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}
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Snapshot { keys }
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}
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fn assert_is_eq(&self, other: &Self) {
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let mut is_err = false;
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for key in &self.keys {
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if !other.keys.contains(key) {
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println!(
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"Subspace {}, Key {:?} not found in restored snapshot",
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char::from(key.subspace),
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key.key,
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);
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is_err = true;
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}
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}
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for key in &other.keys {
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if !self.keys.contains(key) {
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println!(
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"Subspace {}, Key {:?} not found in original snapshot",
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char::from(key.subspace),
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key.key,
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);
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is_err = true;
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}
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}
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if is_err {
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panic!("Snapshot mismatch");
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}
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}
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}
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fn random_bytes(len: usize) -> Vec<u8> {
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(0..len).map(|_| rand::random::<u8>()).collect()
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}
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