use std::path::PathBuf;
use prikk_hash::sha256;
use prikk_object::{
BlockKind, BlockPayload, CanonicalEncode, MerkleRoot, ObjectEnvelope, ObjectType, RefKind,
RefStatePayload, RefUpdatePayload,
};
use prikk_store::{
ActiveLock, ActiveRefMetadata, FileObjectStore, MaintainerSigner, ObjectWriter, RefPublication,
RefStore, RepositoryLayout, Wal, maintainer_signature, read_active_ref_metadata,
remove_active_ref_metadata, validate_local_branch_ref, verify_signer_trusted,
};
const DEFAULT_BRANCH_REF: &str = "heads/main";
#[derive(Debug, Clone, PartialEq, Eq)]
pub struct SealCommandResult {
pub ref_name: String,
pub patch_count: usize,
pub block_id: prikk_object::ObjectId,
pub ref_state_id: prikk_object::ObjectId,
}
pub fn run_seal(
root: PathBuf,
args: Vec<String>,
signer: &impl MaintainerSigner,
) -> std::result::Result<SealCommandResult, String> {
let ref_name = parse_seal_args(args)?;
let layout = RepositoryLayout::open(root).map_err(|err| err.to_string())?;
seal_active_no_audit(layout, &ref_name, signer)
}
fn parse_seal_args(args: Vec<String>) -> std::result::Result<String, String> {
let mut allow_no_audit = false;
let mut ref_name = DEFAULT_BRANCH_REF.to_string();
let mut iter = args.into_iter();
while let Some(arg) = iter.next() {
match arg.as_str() {
"--allow-no-audit" => allow_no_audit = true,
"--ref" => {
let Some(value) = iter.next() else {
return Err("seal --ref requires a value".to_string());
};
ref_name = value;
}
other => return Err(format!("unknown seal argument: {other}")),
}
}
if !allow_no_audit {
return Err("seal scaffold requires --allow-no-audit".to_string());
}
validate_local_branch_ref(&ref_name).map_err(|err| err.to_string())
}
fn seal_active_no_audit(
layout: RepositoryLayout,
ref_name: &str,
signer: &impl MaintainerSigner,
) -> std::result::Result<SealCommandResult, String> {
let ref_name = validate_local_branch_ref(ref_name).map_err(|err| err.to_string())?;
let _active_lock =
ActiveLock::acquire(layout.default_active_lock_path()).map_err(|err| err.to_string())?;
let wal = Wal::new(layout.default_queue_wal_path());
let replay = wal.replay().map_err(|err| err.to_string())?;
if replay.trailing_partial_bytes != 0 {
return Err(format!(
"active WAL has {} trailing partial bytes; run verify/doctor before seal",
replay.trailing_partial_bytes
));
}
if replay.records.is_empty() {
match read_active_ref_metadata(&layout).map_err(|err| err.to_string())? {
ActiveRefMetadata::Missing => {}
ActiveRefMetadata::Valid(_) | ActiveRefMetadata::Invalid(_) => {
remove_active_ref_metadata(&layout).map_err(|err| err.to_string())?;
}
}
return Err("active WAL has no patch records to seal".to_string());
}
match read_active_ref_metadata(&layout).map_err(|err| err.to_string())? {
ActiveRefMetadata::Valid(actual) if actual == ref_name => {}
ActiveRefMetadata::Valid(actual) => {
return Err(format!(
"active WAL is owned by {actual}; requested seal ref is {ref_name}"
));
}
ActiveRefMetadata::Missing => {
return Err("active WAL has records but active ref metadata is missing".to_string());
}
ActiveRefMetadata::Invalid(reason) => {
return Err(format!(
"active WAL has records but active ref metadata is malformed: {reason}"
));
}
}
let mut object_store = FileObjectStore::new(layout.clone());
let ref_store = RefStore::new(layout.clone());
let current = current_ref_state(&object_store, &ref_store, &ref_name)?;
verify_signer_trusted(&layout, signer).map_err(|err| err.to_string())?;
let patch_ids = persist_wal_patches(&mut object_store, &replay.records)?;
let parent_block_ids = current
.as_ref()
.map(|state| vec![state.target_block_id])
.unwrap_or_default();
let block_payload = BlockPayload {
parent_block_ids,
kind: if current.is_some() {
BlockKind::Normal
} else {
BlockKind::Root
},
patch_ids: patch_ids.clone(),
state_merkle_root: scaffold_state_root(&patch_ids),
snapshot_blob_ref: None,
};
let block_envelope = signed_envelope(
ObjectType::Block,
block_payload
.to_canonical_bytes()
.map_err(|err| err.to_string())?,
signer,
)?;
let block_id = object_store
.write_object(&block_envelope)
.map_err(|err| err.to_string())?;
let update_seq = current
.as_ref()
.map(|state| state.update_seq + 1)
.unwrap_or(1);
let previous_ref_state_id = current.as_ref().map(|state| state.ref_state_id);
let ref_state_payload = RefStatePayload {
ref_name: ref_name.to_string(),
kind: RefKind::Branch,
target_object_id: block_id,
update_seq,
previous_ref_state_id,
required_attestation_ids: Vec::new(),
};
let ref_state_envelope = signed_envelope(
ObjectType::RefState,
ref_state_payload
.to_canonical_bytes()
.map_err(|err| err.to_string())?,
signer,
)?;
let ref_state_id = ref_state_envelope.object_id();
let ref_update_payload = RefUpdatePayload {
ref_name: ref_name.to_string(),
old_ref_state_id: previous_ref_state_id,
new_ref_state_id: ref_state_id,
new_target_object_id: block_id,
update_seq,
created_at: 0,
author_key_id: signer.key_id().to_string(),
};
let ref_update_envelope = signed_envelope(
ObjectType::RefUpdate,
ref_update_payload
.to_canonical_bytes()
.map_err(|err| err.to_string())?,
signer,
)?;
let publication = RefPublication {
ref_name: ref_name.clone(),
expected_previous_ref_state_id: previous_ref_state_id,
ref_state: ref_state_envelope,
ref_update: ref_update_envelope,
};
let published_ref_state_id = ref_store
.publish(&publication)
.map_err(|err| err.to_string())?;
wal.truncate_empty().map_err(|err| err.to_string())?;
remove_active_ref_metadata(&layout).map_err(|err| err.to_string())?;
Ok(SealCommandResult {
ref_name,
patch_count: patch_ids.len(),
block_id,
ref_state_id: published_ref_state_id,
})
}
fn persist_wal_patches(
object_store: &mut FileObjectStore,
records: &[prikk_store::WalRecord],
) -> std::result::Result<Vec<prikk_object::ObjectId>, String> {
let mut patch_ids = Vec::with_capacity(records.len());
for record in records {
if record.envelope.object_type != ObjectType::Patch {
return Err(format!(
"active WAL record {} is {}, expected patch",
record.seq, record.envelope.object_type
));
}
let id = object_store
.write_object(&record.envelope)
.map_err(|err| err.to_string())?;
patch_ids.push(id);
}
Ok(patch_ids)
}
fn current_ref_state(
object_store: &FileObjectStore,
ref_store: &RefStore,
ref_name: &str,
) -> std::result::Result<Option<CurrentRefState>, String> {
let Some(ref_state_id) = ref_store
.read_current_ref_state_id(ref_name)
.map_err(|err| err.to_string())?
else {
return Ok(None);
};
let envelope = object_store
.read_typed(ref_state_id, ObjectType::RefState)
.map_err(|err| err.to_string())?
.ok_or_else(|| {
format!("current ref {ref_name} points to missing RefState {ref_state_id}")
})?;
let payload = RefStatePayload::decode_canonical(&envelope.canonical_payload)
.map_err(|err| err.to_string())?;
if payload.ref_name != ref_name {
return Err(format!(
"current RefState name mismatch: expected {ref_name}, got {}",
payload.ref_name
));
}
let target_exists = object_store
.read_typed(payload.target_object_id, ObjectType::Block)
.map_err(|err| err.to_string())?
.is_some();
if !target_exists {
return Err(format!(
"current RefState {ref_state_id} targets missing block {}",
payload.target_object_id
));
}
Ok(Some(CurrentRefState {
ref_state_id,
target_block_id: payload.target_object_id,
update_seq: payload.update_seq,
}))
}
fn scaffold_state_root(patch_ids: &[prikk_object::ObjectId]) -> MerkleRoot {
let mut preimage = Vec::new();
preimage.extend_from_slice(b"prikk.dev.scaffold-state-root.v1");
for id in patch_ids {
preimage.extend_from_slice(id.as_bytes());
}
MerkleRoot(sha256(&preimage))
}
fn signed_envelope(
object_type: ObjectType,
canonical_payload: Vec<u8>,
signer: &impl MaintainerSigner,
) -> std::result::Result<ObjectEnvelope, String> {
let mut envelope = ObjectEnvelope::unsigned(object_type, 1, canonical_payload);
let object_id = envelope.object_id();
envelope
.add_signature(
maintainer_signature(signer, object_type, object_id).map_err(|err| err.to_string())?,
)
.map_err(|err| err.to_string())?;
Ok(envelope)
}
#[derive(Debug, Clone, PartialEq, Eq)]
struct CurrentRefState {
ref_state_id: prikk_object::ObjectId,
target_block_id: prikk_object::ObjectId,
update_seq: u64,
}