| Commit message (Collapse) | Author | Age | Files | Lines |
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This commit adds a comment explaining why we treat compression errors as
a bug.
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This commit removes `DatabaseError::Compression` because it does not fit
in. Right now, this single variant makes the error to be call-site
oriented which is not nice for error handling. Instead, this error
should indicate that something was truly wrong with the database in
itself, such as an invalid schema, a low-level SQLite bug, etc.
Instead, we now map a compression error to `DatabaseError::Bug` because
there is no good reason on why it should fail, given that we compress
memory data to memory data. Probably because it uses the
`std::io::Writer` interface which itself demands use of
`std::io::Result`.
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This commit removes FromStr for DocumentId because it was only used in
testing anyways.
Instead, it replaces it with a simple From<[u8; 32]> only enabled in
test builds, which is sufficient for what we are trying to do.
An alternative would be to make the inner field pub, but this seems to
aggressive for a testing only thing.
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This comit adds a `sha2` column to `router_descriptor` alongside a
`CHECK` to see whether it equals `docid`.
The reason for this is simple: Microdescriptors are the only kind of
documents that are queriable with a SHA2 hash. Previously, we would
have simply used the `docid` column for this, but in order to abstract
it better, a distinct column with this hash is better.
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Because we went with `docid` in the database (due to `rowid`), it is
only natural to call the code variables `docid` too.
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This commit renames the sha256 column to docid for the reason that we
agreed upon making the schema visible to all modules, so if we were to
encapsulate docid properly, this change is only natural.
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This commit renames arti_dirmirror_schema_version to
arti_dirserver_schema_version.
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This commit introduces a new type in the database module named
`DocumentId` for abstracting the underlying content-addressable hash
algorithm we are using.
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Adding a comment suggesting to implement this as part of abstracting
`Sha256` behind a more generic identifier.
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This commit rpelaces the use of `INSERT` with `INSERT OR REPLACE` for
handling insertion conflicts in `store_insert`.
Because everything is content-addressed anyways, it does not matter to
do this, because if we get a conflict on a SHA256, it means the data is
equal.[1]
[1]: Excluding SHA-2 collisions which are impractical as of 2026.
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This commit modifies the database::store_insert logic to accept an
iterator of the encodings to store the document in, instead of encoding
it with all encodings we support.
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This commit adds a CHECK constraint to the compressed_document table in
order to ensure that `algorithm` may only take up a limited set of
values.
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This commit moves the ContentEncoding enum from the http module to the
database module, primarily because the content encoding is more of a
matter to the database, as this is where the data actually resides.
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This commit implements support for adding arbitrary documents into the
store table.
It is non-trivial because the relevant data has to be compressed into
various formats, so it can be retrieved without delays.
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The reverse direction already exists and it will be required when we act
with functions outside the crate that only accept a `SystemTime` in
situations where we just have a `Timestamp`.
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This commit eliminates the use of sleep in database tests because those
can be flaky, especially when the CI scheduler is overloaded, leading to
potential timeout invariants not holding true anymore.
We now fix this by using synchronization primitives from Rust in order
for threads to communicate. Documentation has been added explaining how
these tests work in greater detail.
Fixes #2308
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This commit improves upon the work made in arti!3460, by establishing
the `database::Timestamp` type as a general purpose type for the
handling of timestamp throughout the code base.
It also replaces all previous occurrences of `SystemTime` within
`dirmirror::operation`, which leads to the reduction of code complexity
in one particular function, namely `calculate_sync_timeout`.
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This commit replaces the custom implementation of `SaturatingSystemTime`
with the `saturating-time` crate, additionally adding a new type to the
`database` module called `Timestamp`, in order to have a convenient
wrapper around `ToSql` and `FromSql`.
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Run maint/add_warning
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This commit adds `CHECK` constraints to the database schema in order to
ensure all timestamps are positive.
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This commit makes the entire database operations synchronous, thereby
replacing deadpool with r2d2.
The full motivation is outlined in a rustdoc comment at the top of the
`database` module, but it can be summarized to the fact that SQLite is
by design inherently synchronous due to directly interfacing with the
file system.
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This commit does a large overhaul in the overall way on how we interact
with SQLite.
Although SQLite is a fairly straightforward tool, it has one large
caveat, namely the handling of the infamous `SQLITE_BUSY` error.
In WAL mode, the journaling mode we are using, the respective error may
occur if there is an existing write transaction while another thread is
trying to either upgrade an existing read transaction or create an
exclusive transaction at the same time. In this case, SQLite will fail
at the statement that either requires the write operation or at the
creation of the transaction respectively.
In order to tackle this problem, SQLite provides the `busy_timeout`
pragma, which allows specifying a timeout in milliseconds during which
SQLite will retry to obtain a write transaction or fail immediately.
This only works in the latter case, that is, creating a write
transaction from the beginning.
To solve this issue, we introduce two new functions:
1. `database::read_tx`
2. `database::rw_tx`
Both functions accept a database pool alongside a closure accepting a
`Transaction` and returning an arbitrary return value.
The first function creates a deferred transaction that gets rolled-back
in the end, making it suitable for read-only connections.
The latter function creates an exclusive transaction that gets committed
in the end, making it suitable for read-write connections. This also
honors the `busy_timeout`, i.e. the function retries for up to 1s to
acquire a write transaction before failing ultimately.
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This commit introduces the no-op sql macro used to mark string literals
as SQL statements. It is purely semantical and serves the purpose to
quickly identify string literals as SQL statements.
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This commit renames the schema module to the database module in order
to perform better error handling while redesigning the API.
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