use super::{
commands::{
add_icp_environment_target, icp_canister_command, parse_created_canister_id, run_command,
},
coordinator_install_journal::{
FleetCoordinatorInstallJournal, FleetCoordinatorInstallPhase,
PlanFleetCoordinatorInstallRequest, ResolvedFleetCoordinatorInstall,
begin_coordinator_creation, begin_coordinator_install, coordinator_create_result_path,
plan_fleet_coordinator_install, record_coordinator_created, record_coordinator_installed,
record_coordinator_verified,
},
operations::{module_hash_text, parse_module_hash},
};
use crate::{
durable_io::{
RegularFileReadError, create_new_bytes_with_parents, read_optional_regular_bytes,
},
fleet_install_plan::{PersistedFleetInstallPlan, PlannedCanisterCreationFunding},
icp::{IcpCli, LocalReplicaTarget, decode_json_result_response, run_output_to_file},
release_set::{
AppConfigSnapshot, CanicInfrastructureRole,
load_persisted_canic_infrastructure_artifact_manifest, resolve_release_artifact_path,
},
};
use candid::{IDLValue, Principal};
use canic_control_plane::dto::fleet_coordinator::FleetCoordinatorInitArgs;
use canic_core::{
control_plane_support::ops::fleet_registry::FleetRegistryOps,
dto::fleet_registry::{FleetRegistry, FleetRegistryManifest, FleetRegistryVersion},
ids::{FleetCoordinatorBinding, FleetRegistryAuthority},
protocol,
};
use sha2::{Digest, Sha256};
use std::{
fs, io,
path::{Path, PathBuf},
};
use thiserror::Error as ThisError;
const ICP_JSON_OUTPUT: &str = "json";
const MAX_COORDINATOR_TRANSITIONS: usize = 8;
pub(super) struct VerifiedFleetCoordinator {
pub coordinator: Principal,
}
#[derive(Debug, ThisError)]
#[error(
"Coordinator creation outcome is unknown; no second paid creation was attempted. Inspect durable result {result_path} and retry after the original ICP command has settled: {detail}"
)]
struct CoordinatorCreationOutcomeUnknownError {
result_path: PathBuf,
detail: String,
}
#[derive(Debug, ThisError)]
#[error(
"Coordinator install outcome for {coordinator} is unknown; no second install was attempted. Retry only after the original ICP command has settled: {detail}"
)]
struct CoordinatorInstallOutcomeUnknownError {
coordinator: Principal,
detail: String,
}
#[derive(Debug, ThisError)]
enum CoordinatorInstallStateError {
#[error("Coordinator artifact {path} is missing")]
ArtifactMissing { path: PathBuf },
#[error("Coordinator artifact is not a regular no-follow file: {path}")]
ArtifactUnsafe { path: PathBuf },
#[error("Coordinator artifact {path} has size {actual}, expected {expected}")]
ArtifactSize {
path: PathBuf,
expected: u64,
actual: usize,
},
#[error("Coordinator artifact {path} has SHA-256 {actual}, expected {expected}")]
ArtifactHash {
path: PathBuf,
expected: String,
actual: String,
},
#[error("Coordinator creation result is not a regular no-follow file: {path}")]
CreationResultUnsafe { path: PathBuf },
#[error("Coordinator creation result is invalid: {path}")]
InvalidCreationResult { path: PathBuf },
#[error("created Coordinator {observed} does not match status principal {expected}")]
StatusPrincipal {
expected: Principal,
observed: String,
},
#[error("Coordinator {coordinator} already has unexpected module hash {observed}")]
UnexpectedModule {
coordinator: Principal,
observed: String,
},
#[error("Coordinator {coordinator} has no installed module")]
MissingModule { coordinator: Principal },
#[error("Coordinator Registry query differs from exact genesis authority")]
RegistryMismatch,
#[error("Coordinator Registry manifest query differs from exact genesis authority")]
RegistryManifestMismatch,
#[error("Coordinator Registry version query differs from exact genesis authority")]
RegistryVersionMismatch,
#[error("Coordinator installation exceeded its bounded phase transitions")]
TransitionBoundExceeded,
}
struct CoordinatorArtifact {
wasm_path: PathBuf,
}
struct ExpectedCoordinatorGenesis {
init_args: FleetCoordinatorInitArgs,
registry: FleetRegistry,
manifest: FleetRegistryManifest,
version: FleetRegistryVersion,
}
pub(super) fn install_and_verify_fleet_coordinator(
icp_root: &Path,
environment: &str,
local_replica: Option<&LocalReplicaTarget>,
config_path: &Path,
fleet_install_plan: &PersistedFleetInstallPlan,
) -> Result<VerifiedFleetCoordinator, Box<dyn std::error::Error>> {
let config = AppConfigSnapshot::load(config_path)?;
let component_topology = config.model().compile_component_topology()?;
let infrastructure_manifest = load_persisted_canic_infrastructure_artifact_manifest(
icp_root,
fleet_install_plan.plan.release_build_id,
)?;
let artifact =
resolve_coordinator_artifact(icp_root, fleet_install_plan, &infrastructure_manifest)?;
let mut current = plan_fleet_coordinator_install(PlanFleetCoordinatorInstallRequest {
fleet_install_plan,
infrastructure_manifest: &infrastructure_manifest,
component_topology,
})?;
for _ in 0..MAX_COORDINATOR_TRANSITIONS {
current = match current.journal.phase {
FleetCoordinatorInstallPhase::Planned => {
prepare_creation_result(&coordinator_create_result_path(&fleet_install_plan.path))?;
begin_coordinator_creation(¤t)?
}
FleetCoordinatorInstallPhase::CreationInFlight => recover_or_create_coordinator(
icp_root,
environment,
local_replica,
fleet_install_plan,
¤t,
)?,
FleetCoordinatorInstallPhase::Created => begin_coordinator_install(¤t)?,
FleetCoordinatorInstallPhase::InstallInFlight => recover_or_install_coordinator(
icp_root,
environment,
local_replica,
&artifact,
¤t,
)?,
FleetCoordinatorInstallPhase::Installed => {
verify_and_record_coordinator(icp_root, environment, local_replica, ¤t)?
}
FleetCoordinatorInstallPhase::Verified => {
let coordinator = current
.journal
.coordinator
.expect("validated Verified journal retains its Coordinator");
verify_live_coordinator(icp_root, environment, local_replica, ¤t.journal)?;
return Ok(VerifiedFleetCoordinator { coordinator });
}
};
}
Err(CoordinatorInstallStateError::TransitionBoundExceeded.into())
}
fn recover_or_create_coordinator(
icp_root: &Path,
environment: &str,
local_replica: Option<&LocalReplicaTarget>,
fleet_install_plan: &PersistedFleetInstallPlan,
current: &ResolvedFleetCoordinatorInstall,
) -> Result<ResolvedFleetCoordinatorInstall, Box<dyn std::error::Error>> {
let result_path = coordinator_create_result_path(&fleet_install_plan.path);
let mut command_error = None;
if current.advanced {
let result = open_creation_result_for_effect(&result_path)?;
let mut command =
coordinator_create_command(icp_root, environment, local_replica, ¤t.journal);
if let Err(error) = run_output_to_file(&mut command, &result) {
command_error = Some(error.to_string());
}
}
let Some(coordinator) = read_created_coordinator(&result_path)? else {
return Err(CoordinatorCreationOutcomeUnknownError {
result_path,
detail: command_error.unwrap_or_else(|| {
"the journal is already creation_in_flight and contains no recoverable principal"
.to_string()
}),
}
.into());
};
observe_created_canister(
icp_root,
environment,
local_replica,
coordinator,
current.journal.expected_module_hash,
)?;
record_coordinator_created(current, coordinator).map_err(Into::into)
}
fn recover_or_install_coordinator(
icp_root: &Path,
environment: &str,
local_replica: Option<&LocalReplicaTarget>,
artifact: &CoordinatorArtifact,
current: &ResolvedFleetCoordinatorInstall,
) -> Result<ResolvedFleetCoordinatorInstall, Box<dyn std::error::Error>> {
let coordinator = current
.journal
.coordinator
.expect("validated InstallInFlight journal retains its Coordinator");
match observed_module_hash(icp_root, environment, local_replica, coordinator)? {
Some(observed) if observed == current.journal.expected_module_hash => {
return record_coordinator_installed(current, observed).map_err(Into::into);
}
Some(observed) => {
return Err(CoordinatorInstallStateError::UnexpectedModule {
coordinator,
observed: module_hash_text(observed),
}
.into());
}
None if !current.advanced => {
return Err(CoordinatorInstallOutcomeUnknownError {
coordinator,
detail: "the journal is already install_in_flight and the expected module is not yet observable"
.to_string(),
}
.into());
}
None => {}
}
let genesis = expected_genesis(¤t.journal)?;
let mut install = coordinator_install_command(
icp_root,
environment,
local_replica,
coordinator,
&artifact.wasm_path,
&genesis.init_args,
)?;
let command_result = run_command(&mut install);
match observed_module_hash(icp_root, environment, local_replica, coordinator) {
Ok(Some(observed)) if observed == current.journal.expected_module_hash => {
record_coordinator_installed(current, observed).map_err(Into::into)
}
Ok(Some(observed)) => Err(CoordinatorInstallStateError::UnexpectedModule {
coordinator,
observed: module_hash_text(observed),
}
.into()),
Ok(None) => Err(CoordinatorInstallOutcomeUnknownError {
coordinator,
detail: command_result.err().map_or_else(
|| "install command completed but no module is observable".to_string(),
|error| error.to_string(),
),
}
.into()),
Err(observation) => Err(CoordinatorInstallOutcomeUnknownError {
coordinator,
detail: match command_result {
Ok(()) => format!("post-install observation failed: {observation}"),
Err(command) => {
format!(
"install command failed: {command}; reconciliation failed: {observation}"
)
}
},
}
.into()),
}
}
fn verify_and_record_coordinator(
icp_root: &Path,
environment: &str,
local_replica: Option<&LocalReplicaTarget>,
current: &ResolvedFleetCoordinatorInstall,
) -> Result<ResolvedFleetCoordinatorInstall, Box<dyn std::error::Error>> {
let genesis = verify_live_coordinator(icp_root, environment, local_replica, ¤t.journal)?;
record_coordinator_verified(current, genesis.manifest, genesis.version).map_err(Into::into)
}
fn verify_live_coordinator(
icp_root: &Path,
environment: &str,
local_replica: Option<&LocalReplicaTarget>,
journal: &FleetCoordinatorInstallJournal,
) -> Result<ExpectedCoordinatorGenesis, Box<dyn std::error::Error>> {
let coordinator = journal
.coordinator
.expect("verified Coordinator phases retain a principal");
match observed_module_hash(icp_root, environment, local_replica, coordinator)? {
Some(observed) if observed == journal.expected_module_hash => {}
Some(observed) => {
return Err(CoordinatorInstallStateError::UnexpectedModule {
coordinator,
observed: module_hash_text(observed),
}
.into());
}
None => return Err(CoordinatorInstallStateError::MissingModule { coordinator }.into()),
}
let expected = expected_genesis(journal)?;
let icp = coordinator_icp(icp_root, environment, local_replica);
let registry =
query_coordinator::<FleetRegistry>(&icp, coordinator, protocol::CANIC_FLEET_REGISTRY)?;
if registry != expected.registry {
return Err(CoordinatorInstallStateError::RegistryMismatch.into());
}
let manifest = query_coordinator::<FleetRegistryManifest>(
&icp,
coordinator,
protocol::CANIC_FLEET_REGISTRY_MANIFEST,
)?;
if manifest != expected.manifest {
return Err(CoordinatorInstallStateError::RegistryManifestMismatch.into());
}
let version = query_coordinator::<FleetRegistryVersion>(
&icp,
coordinator,
protocol::CANIC_FLEET_REGISTRY_VERSION,
)?;
if version != expected.version {
return Err(CoordinatorInstallStateError::RegistryVersionMismatch.into());
}
Ok(expected)
}
fn query_coordinator<T>(
icp: &IcpCli,
coordinator: Principal,
method: &str,
) -> Result<T, Box<dyn std::error::Error>>
where
T: candid::CandidType + serde::de::DeserializeOwned,
{
let output = icp.canister_query_output_with_candid(
&coordinator.to_text(),
method,
Some(ICP_JSON_OUTPUT),
None,
)?;
decode_json_result_response(&output).map_err(Into::into)
}
fn expected_genesis(
journal: &FleetCoordinatorInstallJournal,
) -> Result<ExpectedCoordinatorGenesis, Box<dyn std::error::Error>> {
let coordinator = journal
.coordinator
.expect("created Coordinator journal retains its principal");
let authority = FleetRegistryAuthority {
binding: FleetCoordinatorBinding {
fleet: journal.fleet.clone(),
coordinator_subnet: journal.coordinator_subnet,
coordinator,
},
epoch: 1,
};
let registry = FleetRegistryOps::compile_genesis(
&journal.fleet.app,
authority.clone(),
&journal.component_topology,
)?;
let manifest = FleetRegistryOps::manifest(&authority, &journal.component_topology, ®istry)?;
let version = FleetRegistryOps::version(&authority, &journal.component_topology, ®istry)?;
Ok(ExpectedCoordinatorGenesis {
init_args: FleetCoordinatorInitArgs {
configured_app: journal.fleet.app.clone(),
authority,
component_topology: journal.component_topology.clone(),
},
registry,
manifest,
version,
})
}
fn resolve_coordinator_artifact(
icp_root: &Path,
fleet_install_plan: &PersistedFleetInstallPlan,
infrastructure_manifest: &crate::release_set::PersistedCanicInfrastructureArtifactManifest,
) -> Result<CoordinatorArtifact, Box<dyn std::error::Error>> {
let entry = infrastructure_manifest
.manifest
.entries
.iter()
.find(|entry| entry.role == CanicInfrastructureRole::FleetCoordinator)
.expect("validated infrastructure manifest has one Coordinator entry");
let wasm_path = resolve_release_artifact_path(icp_root, &entry.wasm_relative_path)?;
let wasm = match read_optional_regular_bytes(&wasm_path) {
Ok(Some(bytes)) => bytes,
Ok(None) => {
return Err(CoordinatorInstallStateError::ArtifactMissing { path: wasm_path }.into());
}
Err(RegularFileReadError::NotRegular) => {
return Err(CoordinatorInstallStateError::ArtifactUnsafe { path: wasm_path }.into());
}
Err(RegularFileReadError::Io(source)) => return Err(source.into()),
#[cfg(not(unix))]
Err(RegularFileReadError::UnsupportedPlatform) => {
return Err(io::Error::new(
io::ErrorKind::Unsupported,
"Coordinator artifact reads are unsupported",
)
.into());
}
};
if wasm.len() as u64 != entry.wasm_size_bytes {
return Err(CoordinatorInstallStateError::ArtifactSize {
path: wasm_path,
expected: entry.wasm_size_bytes,
actual: wasm.len(),
}
.into());
}
let actual_hash = hex_digest(Sha256::digest(&wasm).into());
if actual_hash != entry.wasm_sha256_hex {
return Err(CoordinatorInstallStateError::ArtifactHash {
path: wasm_path,
expected: entry.wasm_sha256_hex.clone(),
actual: actual_hash,
}
.into());
}
if entry.release_build_id != fleet_install_plan.plan.release_build_id {
return Err("Coordinator artifact release build differs from Fleet install plan".into());
}
Ok(CoordinatorArtifact { wasm_path })
}
fn coordinator_create_command(
icp_root: &Path,
environment: &str,
local_replica: Option<&LocalReplicaTarget>,
journal: &FleetCoordinatorInstallJournal,
) -> std::process::Command {
let mut command = icp_canister_command(icp_root);
command.args(["create", "--detached", "--json", "--subnet"]);
command.arg(journal.coordinator_subnet.to_string());
match journal.creation_funding {
PlannedCanisterCreationFunding::Cycles { cycles } => {
command.args(["--cycles", &cycles.to_string()]);
}
PlannedCanisterCreationFunding::Icp { e8s } => {
command.args(["--with-icp", &icp_e8s_text(e8s)]);
}
}
add_icp_environment_target(&mut command, environment, local_replica);
command
}
fn coordinator_install_command(
icp_root: &Path,
environment: &str,
local_replica: Option<&LocalReplicaTarget>,
coordinator: Principal,
wasm_path: &Path,
init_args: &FleetCoordinatorInitArgs,
) -> Result<std::process::Command, candid::Error> {
let mut command = icp_canister_command(icp_root);
command.args([
"install",
&coordinator.to_text(),
"--mode=install",
"-y",
"--wasm",
]);
command.arg(wasm_path);
command.args(["--args", &coordinator_init_args(init_args)?]);
add_icp_environment_target(&mut command, environment, local_replica);
Ok(command)
}
fn coordinator_init_args(args: &FleetCoordinatorInitArgs) -> Result<String, candid::Error> {
let value = IDLValue::try_from_candid_type(args)?;
Ok(format!("({value})"))
}
fn coordinator_icp(
icp_root: &Path,
environment: &str,
local_replica: Option<&LocalReplicaTarget>,
) -> IcpCli {
IcpCli::new("icp", Some(environment.to_string()))
.with_cwd(icp_root)
.with_local_replica(local_replica.cloned())
}
fn observed_module_hash(
icp_root: &Path,
environment: &str,
local_replica: Option<&LocalReplicaTarget>,
coordinator: Principal,
) -> Result<Option<[u8; 32]>, Box<dyn std::error::Error>> {
let report = coordinator_icp(icp_root, environment, local_replica)
.canister_status_report(&coordinator.to_text())?;
if report.id != coordinator.to_text() {
return Err(CoordinatorInstallStateError::StatusPrincipal {
expected: coordinator,
observed: report.id,
}
.into());
}
report
.module_hash
.as_deref()
.map(|value| {
parse_module_hash(value).ok_or_else(|| {
CoordinatorInstallStateError::UnexpectedModule {
coordinator,
observed: value.to_string(),
}
.into()
})
})
.transpose()
}
fn observe_created_canister(
icp_root: &Path,
environment: &str,
local_replica: Option<&LocalReplicaTarget>,
coordinator: Principal,
expected_module_hash: [u8; 32],
) -> Result<(), Box<dyn std::error::Error>> {
match observed_module_hash(icp_root, environment, local_replica, coordinator)? {
None => Ok(()),
Some(observed) if observed == expected_module_hash => {
Err("Coordinator module exists before its journalled install intent".into())
}
Some(observed) => Err(CoordinatorInstallStateError::UnexpectedModule {
coordinator,
observed: module_hash_text(observed),
}
.into()),
}
}
fn prepare_creation_result(path: &Path) -> io::Result<()> {
match create_new_bytes_with_parents(path, &[]) {
Ok(()) => Ok(()),
Err(source) if source.kind() == io::ErrorKind::AlreadyExists => {
match read_optional_regular_bytes(path) {
Ok(Some(bytes)) if bytes.is_empty() => Ok(()),
Ok(Some(_)) => Err(io::Error::new(
io::ErrorKind::InvalidData,
"Coordinator creation result exists before creation intent",
)),
Ok(None) => Err(io::Error::new(
io::ErrorKind::NotFound,
"Coordinator creation result disappeared",
)),
Err(RegularFileReadError::NotRegular) => Err(io::Error::new(
io::ErrorKind::InvalidInput,
"Coordinator creation result is not a regular file",
)),
Err(RegularFileReadError::Io(source)) => Err(source),
#[cfg(not(unix))]
Err(RegularFileReadError::UnsupportedPlatform) => Err(io::Error::new(
io::ErrorKind::Unsupported,
"Coordinator creation result reads are unsupported",
)),
}
}
Err(source) => Err(source),
}
}
fn read_created_coordinator(path: &Path) -> Result<Option<Principal>, Box<dyn std::error::Error>> {
let bytes = match read_optional_regular_bytes(path) {
Ok(Some(bytes)) => bytes,
Ok(None) => return Ok(None),
Err(RegularFileReadError::NotRegular) => {
return Err(CoordinatorInstallStateError::CreationResultUnsafe {
path: path.to_path_buf(),
}
.into());
}
Err(RegularFileReadError::Io(source)) => return Err(source.into()),
#[cfg(not(unix))]
Err(RegularFileReadError::UnsupportedPlatform) => {
return Err(io::Error::new(
io::ErrorKind::Unsupported,
"Coordinator creation result reads are unsupported",
)
.into());
}
};
if bytes.is_empty() {
return Ok(None);
}
let output = std::str::from_utf8(&bytes).map_err(|_| {
CoordinatorInstallStateError::InvalidCreationResult {
path: path.to_path_buf(),
}
})?;
let principal = parse_created_canister_id(output)
.and_then(|value| Principal::from_text(value).ok())
.ok_or_else(|| CoordinatorInstallStateError::InvalidCreationResult {
path: path.to_path_buf(),
})?;
Ok(Some(principal))
}
#[cfg(unix)]
fn open_creation_result_for_effect(path: &Path) -> io::Result<fs::File> {
use rustix::{
fd::OwnedFd,
fs::{FileType, Mode, OFlags, fstat, open},
};
let bytes = match read_optional_regular_bytes(path) {
Ok(Some(bytes)) => bytes,
Ok(None) => {
return Err(io::Error::new(
io::ErrorKind::NotFound,
"Coordinator creation result is missing",
));
}
Err(RegularFileReadError::NotRegular) => {
return Err(io::Error::new(
io::ErrorKind::InvalidInput,
"Coordinator creation result is not a regular file",
));
}
Err(RegularFileReadError::Io(source)) => return Err(source),
};
if !bytes.is_empty() {
return Err(io::Error::new(
io::ErrorKind::AlreadyExists,
"Coordinator creation result already contains evidence",
));
}
let fd: OwnedFd = open(
path,
OFlags::WRONLY | OFlags::NOFOLLOW | OFlags::NONBLOCK | OFlags::CLOEXEC,
Mode::empty(),
)
.map_err(|source| io::Error::from_raw_os_error(source.raw_os_error()))?;
let metadata =
fstat(&fd).map_err(|source| io::Error::from_raw_os_error(source.raw_os_error()))?;
if FileType::from_raw_mode(metadata.st_mode) != FileType::RegularFile {
return Err(io::Error::new(
io::ErrorKind::InvalidInput,
"Coordinator creation result is not a regular file",
));
}
if metadata.st_size != 0 {
return Err(io::Error::new(
io::ErrorKind::AlreadyExists,
"Coordinator creation result already contains evidence",
));
}
Ok(fs::File::from(fd))
}
#[cfg(not(unix))]
fn open_creation_result_for_effect(_path: &Path) -> io::Result<fs::File> {
Err(io::Error::new(
io::ErrorKind::Unsupported,
"Coordinator creation result capture is unsupported",
))
}
fn icp_e8s_text(e8s: u64) -> String {
const E8S_PER_ICP: u64 = 100_000_000;
let whole = e8s / E8S_PER_ICP;
let remainder = e8s % E8S_PER_ICP;
if remainder == 0 {
return whole.to_string();
}
let fractional = format!("{remainder:08}");
format!("{whole}.{}", fractional.trim_end_matches('0'))
}
fn hex_digest(bytes: [u8; 32]) -> String {
bytes
.iter()
.fold(String::with_capacity(64), |mut text, byte| {
use std::fmt::Write as _;
let _ = write!(text, "{byte:02x}");
text
})
}
#[cfg(test)]
mod tests {
use super::*;
use canic_core::ids::{
AppId, CanonicalNetworkId, FleetBinding, FleetId, FleetKey, ReleaseBuildId,
ReleaseBuildNonce, SubnetId,
};
#[test]
fn renders_exact_icp_e8s_without_float_rounding() {
assert_eq!(icp_e8s_text(1), "0.00000001");
assert_eq!(icp_e8s_text(10_000_000), "0.1");
assert_eq!(icp_e8s_text(100_000_000), "1");
assert_eq!(icp_e8s_text(123_456_789), "1.23456789");
}
#[test]
fn coordinator_creation_command_binds_subnet_and_exact_cycles() {
let subnet = SubnetId::from_principal(Principal::from_slice(&[41]));
let journal = command_journal(
subnet,
PlannedCanisterCreationFunding::Cycles {
cycles: 2_000_000_000_000,
},
);
let command =
coordinator_create_command(Path::new("/workspace"), "staging", None, &journal);
assert_eq!(
crate::icp::command_display(&command),
format!(
"icp --project-root-override /workspace canister create --detached --json --subnet {subnet} --cycles 2000000000000 -e staging"
)
);
}
#[test]
fn coordinator_creation_command_preserves_exact_icp_e8s() {
let subnet = SubnetId::from_principal(Principal::from_slice(&[42]));
let journal = command_journal(subnet, PlannedCanisterCreationFunding::Icp { e8s: 1 });
let command = coordinator_create_command(Path::new("/workspace"), "ic", None, &journal);
assert_eq!(
crate::icp::command_display(&command),
format!(
"icp --project-root-override /workspace canister create --detached --json --subnet {subnet} --with-icp 0.00000001 -e ic"
)
);
}
fn command_journal(
coordinator_subnet: SubnetId,
creation_funding: PlannedCanisterCreationFunding,
) -> FleetCoordinatorInstallJournal {
FleetCoordinatorInstallJournal {
schema_version: 1,
sequence: 0,
phase: FleetCoordinatorInstallPhase::Planned,
fleet_install_plan_digest: [1; 32],
infrastructure_manifest_digest: [2; 32],
fleet: FleetBinding {
fleet: FleetKey {
canonical_network_id: CanonicalNetworkId::public_ic(),
fleet_id: FleetId::from_generated_bytes([4; 32]),
},
app: AppId::from("test"),
},
release_build_id: ReleaseBuildId::from_nonce(ReleaseBuildNonce::from_random_bytes(
[5; 32],
)),
coordinator_subnet,
creation_funding,
component_topology: canic_core::bootstrap::compiled::ComponentTopology {
component_specs: Vec::new(),
provisioning_grants: Vec::new(),
},
coordinator_artifact: crate::release_set::CanicInfrastructureArtifactEntry {
role: CanicInfrastructureRole::FleetCoordinator,
package: "canic-coordinator".to_string(),
release_build_id: ReleaseBuildId::from_nonce(ReleaseBuildNonce::from_random_bytes(
[5; 32],
)),
wasm_relative_path: "coordinator.wasm".to_string(),
wasm_size_bytes: 1,
wasm_sha256_hex: "00".repeat(32),
wasm_gz_relative_path: "coordinator.wasm.gz".to_string(),
wasm_gz_size_bytes: 1,
wasm_gz_sha256_hex: "00".repeat(32),
},
expected_module_hash: [0; 32],
coordinator: None,
installed_module_hash: None,
verified_registry_manifest: None,
verified_registry_version: None,
}
}
}