bee9d02f01
---ci---
project: acdl
phase: 40
milestone: v1.9
status: execute
---/ci---
Phase 40 — contract-interpolation (REQ-103, REQ-104, D-081):
Interpolation:
- core/contract_resolver.py: _expand_vars(value, context) recursively
expands ${env.<field>} + ${contract.<field>} tokens (dotted paths
supported, e.g. ${env.state_backend.bucket}). Unknown tokens raise
ValueError (fail loud). Expansion is post-schema-validation,
pre-IR-resolution.
- resolve() accepts environment_override (D-088) — overrides the
contract's environment field BEFORE schema validation so interpolation
context is consistent.
- env context loaded via _load_env (self-contained, works as script +
package import); 'environment' alias for env 'name' so
${env.environment} resolves.
Environment schema + bindings:
- schemas/environment.schema.json (draft 2020-12): name, account_id,
region, state_backend, network, runner_role_arn, autonomy, confidence_threshold.
- core/environments/qa.json, prod.json, dr.json placeholder bindings
(attested, thresholds 0.75/0.90/0.95, placeholder account_id with
stderr warning at load).
- core/environment_check.py: load(env_name) helper + placeholder warning.
Sample contracts:
- contracts/static-assets.yaml + microservice.yaml use
acdl-${env.environment}-${contract.module}-${env.account_id}-${env.region}
naming pattern (region + account id + environment).
Tests: +35 (test_environment_schema.py, test_interpolation.py,
test_sample_contracts_interpolate.py). 406 passed; run_ci.sh green;
run_platform.sh --check-only green. Existing fixture-based tests
preserved (instance.json static fixtures unaffected).
468 lines
18 KiB
Python
468 lines
18 KiB
Python
"""ACDL Contract Resolver — resolve a consumer contract to a Target Stack instance.
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The contract resolver is the bridge between the consumer's declared intent
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(a contract YAML) and the platform's executable representation (a Target
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Stack JSON instance). It:
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1. Loads and validates the contract against schemas/contract.schema.json.
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2. Looks up the module name in modules/registry.json.
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3. If the module is an L1 primitive: builds a stack instance directly from
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the interface.json + contract inputs.
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4. If the module is an L2 composition: loads the composition.json, expands
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children to stack resources, resolves wires to ref: expressions, and
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emits the full stack instance.
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The output is a JSON instance valid against schemas/stack.schema.json,
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ready for the Terraform adapter to compile.
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CLI: contract_resolver.py <contract.yaml> <out.json>
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"""
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import json
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import os
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import re
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import sys
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import yaml
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import jsonschema
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def _load_env(env_name, repo_root):
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"""Load the environment onboarding JSON for env_name.
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Mirrors core.environment_check.load() but is self-contained so the
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resolver works both as a package import (`from core.contract_resolver
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import resolve`) and as a script (`python3 core/contract_resolver.py`).
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Emits a stderr warning when account_id is the placeholder and env != dev.
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"""
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env_file = os.path.join(repo_root, "core", "environments", f"{env_name}.json")
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if not os.path.isfile(env_file):
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raise FileNotFoundError(f"no environment file for '{env_name}' at {env_file}")
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env = _load_json(env_file)
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if env.get("account_id") == "000000000000" and env_name != "dev":
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sys.stderr.write(
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f"WARNING: environment '{env_name}' has the placeholder account_id "
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f"000000000000 — replace it with the real {env_name} account id "
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f"before deploying (onboarding scaffold).\n"
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)
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return env
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def _load_json(path):
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with open(path, "r") as fh:
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return json.load(fh)
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def _load_yaml(path):
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with open(path, "r") as fh:
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return yaml.safe_load(fh)
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_TOKEN_RE = re.compile(r"\$\{([a-zA-Z_][a-zA-Z0-9_.]*)\}")
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def _lookup_dotted(context, dotted):
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"""Look up a dotted path (e.g. 'env.state_backend.bucket') in context.
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context is a dict of top-level namespaces (e.g. {'env': {...}, 'contract': {...}}).
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Returns the value or raises KeyError if any segment is missing.
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"""
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parts = dotted.split(".")
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cur = context
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for part in parts:
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if isinstance(cur, dict) and part in cur:
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cur = cur[part]
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else:
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raise KeyError(dotted)
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return cur
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def _expand_vars(value, context):
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"""Recursively expand ${env.<field>} and ${contract.<field>} tokens in value.
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Walks dicts, lists, and strings. Unknown tokens raise ValueError (fail
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loud, no silent passthrough — D-081). Dotted paths are supported
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(e.g. ${env.state_backend.bucket}). The expansion is recursive per D-087
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so nested map/list values expand too.
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"""
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if isinstance(value, str):
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def _replace(match):
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token = match.group(1)
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try:
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resolved = _lookup_dotted(context, token)
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except KeyError:
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raise ValueError(f"unresolved interpolation token: ${{{token}}}")
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if isinstance(resolved, (dict, list)):
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return json.dumps(resolved)
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return str(resolved)
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return _TOKEN_RE.sub(_replace, value)
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if isinstance(value, dict):
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return {k: _expand_vars(v, context) for k, v in value.items()}
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if isinstance(value, list):
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return [_expand_vars(v, context) for v in value]
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return value
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def _resolve_wire_value(wire, contract_inputs, child_outputs):
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"""Resolve a wire 'from' reference to a concrete value.
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Wire 'from' can be:
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- "contract.inputs.<name>" — a contract input value
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- "<childId>.outputs.<name>" — a reference to another child's output
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Returns either a concrete value (string/number/boolean) or a
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"ref:<resourceId>.<outputName>" string for cross-child references.
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For multi-resource L1s (e.g. vpc which expands to vpc-vpc, vpc-subnet,
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vpc-routetable), the ref must point to the sub-resource that actually
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produces the output, not the child id. The child_outputs table maps
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childId -> {outputName -> resourceId} so the ref uses the correct
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resource id.
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"""
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from_expr = wire["from"]
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to_expr = wire["to"]
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# If the 'from' is a contract input, use the concrete value
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if from_expr.startswith("contract.inputs."):
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input_name = from_expr[len("contract.inputs."):]
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if input_name in contract_inputs:
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return contract_inputs[input_name]
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# Check for default
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default = wire.get("default")
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if default is not None:
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return default
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return None
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# If the 'from' is a child output, emit a ref: expression
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if "." in from_expr:
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parts = from_expr.split(".", 2)
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if len(parts) >= 3 and parts[1] == "outputs":
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child_id = parts[0]
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output_name = parts[2]
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# Look up the sub-resource that produces this output.
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# child_outputs[child_id] is a dict {outputName -> resourceId}.
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# If the child is a single-resource L1, the resourceId == child_id.
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# If multi-resource, the resourceId is the expanded sub-resource id.
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child_out_map = child_outputs.get(child_id, {})
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resource_id = child_out_map.get(output_name, child_id)
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return f"ref:{resource_id}.{output_name}"
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return None
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def resolve_l1(contract, registry, repo_root):
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"""Resolve a contract referencing an L1 primitive to a stack instance."""
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module_name = contract["module"]
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module_ref = f"{module_name}@1.0.0"
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inputs = contract.get("inputs", {})
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environment = contract.get("environment", "dev")
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# Load the interface
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entry = registry[module_name]["1.0.0"]
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iface_path = os.path.join(repo_root, entry["interface"])
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iface = _load_json(iface_path)
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# Build the stack instance
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stack_instance = {
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"version": "1.0.0",
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"stack": {
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"name": module_name,
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"kind": "l1",
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"depth": 1,
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},
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"resources": [
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{
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"id": iface.get("type", module_name).split(":")[-1]
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if ":" in iface.get("type", "") else module_name,
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"type": iface["type"],
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"module": module_ref,
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"inputs": dict(inputs),
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"outputs": {
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out_name: {"type": out_spec.get("type", "string")}
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for out_name, out_spec in iface.get("outputs", {}).items()
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},
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}
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],
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}
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# Add NFRs if present in the interface
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nfrs = iface.get("nfrs", {})
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if nfrs:
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stack_instance["resources"][0]["nfrs"] = nfrs
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return stack_instance
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def resolve_l2(contract, registry, repo_root):
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"""Resolve a contract referencing an L2 composition to a stack instance."""
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module_name = contract["module"]
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inputs = contract.get("inputs", {})
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# Load the composition
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entry = registry[module_name]["1.0.0"]
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comp_path = os.path.join(repo_root, entry["interface"])
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composition = _load_json(comp_path)
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# Track child outputs for wire resolution
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# child_outputs[childId] = {outputName: resourceId}
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# For single-resource L1s, resourceId == childId
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# For multi-resource L1s, resourceId is the expanded sub-resource id
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child_outputs = {}
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# child_input_map[childId] = {inputName: sub_resource_id} for multi-resource L1s
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# so a wire targeting <childId>.inputs.<name> routes to the sub-resource
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# that actually declares that input (P1-1 — desired_count → aws:ecs:service,
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# family → aws:ecs:task_definition).
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child_input_map = {}
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resources = []
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# Expand children to resources
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for child in composition["children"]:
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child_id = child["id"]
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child_module = child["module"]
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child_name = child_module.split("@")[0]
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# Load the child's interface to get type and outputs
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child_entry = registry[child_name]["1.0.0"]
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child_iface_path = os.path.join(repo_root, child_entry["interface"])
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child_iface = _load_json(child_iface_path)
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# Build the output->resourceId map for this child
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child_out_map = {}
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child_in_map = {}
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# For multi-resource L1s (like vpc), the first resource type is the
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# primary; the adapter handles expansion. Use the interface's type
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# or the first resource in the interface's resources array.
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if "resources" in child_iface and child_iface["resources"]:
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# Multi-resource L1: create one resource per sub-resource
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for sub_res in child_iface["resources"]:
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res_id = f"{child_id}-{sub_res['type'].split(':')[-1].replace('_', '-')}" if len(child_iface["resources"]) > 1 else child_id
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resource = {
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"id": res_id,
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"type": sub_res["type"],
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"module": child_module,
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"inputs": {},
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"outputs": {
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out: {"type": "string"}
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for out in sub_res.get("outputs", [])
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},
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}
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resources.append(resource)
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# Map each output to this sub-resource's id
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for out_name in sub_res.get("outputs", []):
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child_out_map[out_name] = res_id
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# Map each declared input to this sub-resource's id (P1-1)
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for in_name in sub_res.get("inputs", []):
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child_in_map[in_name] = res_id
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else:
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# Single-resource L1
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resource = {
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"id": child_id,
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"type": child_iface["type"],
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"module": child_module,
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"inputs": {},
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"outputs": {
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out_name: {"type": out_spec.get("type", "string")}
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for out_name, out_spec in child_iface.get("outputs", {}).items()
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},
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}
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resources.append(resource)
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# Map each output to the child id
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for out_name in child_iface.get("outputs", {}):
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child_out_map[out_name] = child_id
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# Also map interface-level outputs (for L1s that declare outputs at the
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# interface level rather than per-resource)
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for out_name in child_iface.get("outputs", {}):
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if out_name not in child_out_map:
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child_out_map[out_name] = child_id
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child_outputs[child_id] = child_out_map
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child_input_map[child_id] = child_in_map
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# Resolve wires to populate inputs
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for wire in composition.get("wires", []):
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to_expr = wire["to"]
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# Parse "to": "<childId>.inputs.<inputName>"
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to_parts = to_expr.split(".")
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if len(to_parts) != 3 or to_parts[1] != "inputs":
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continue
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target_child = to_parts[0]
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input_name = to_parts[2]
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value = _resolve_wire_value(wire, inputs, child_outputs)
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if value is not None:
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# Route to the sub-resource that declares this input (P1-1).
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# child_input_map maps <childId> -> {inputName -> sub_resource_id}.
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# If the input is declared on a specific sub-resource, route there;
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# otherwise fall back to the first matching resource (legacy).
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in_map = child_input_map.get(target_child, {})
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target_res_id = in_map.get(input_name)
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if target_res_id is not None:
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for res in resources:
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if res["id"] == target_res_id:
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res["inputs"][input_name] = value
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break
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else:
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for res in resources:
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if res["id"] == target_child or res["id"].startswith(f"{target_child}-"):
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res["inputs"][input_name] = value
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break
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# Build the stack instance
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stack_instance = {
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"version": "1.0.0",
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"stack": {
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"name": module_name,
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"kind": "l2",
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"depth": composition.get("depth", 1),
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},
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"resources": resources,
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}
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# REQ-87: Propagate deletion_protection feature flag from contract inputs
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# to all children's NFRs. When inputs.deletion_protection is false,
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# all resources get deletion_protection=false (used by decommission).
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deletion_protection_input = inputs.get("deletion_protection", True)
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if deletion_protection_input is not True:
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for res in resources:
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if "nfrs" not in res:
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res["nfrs"] = {}
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res["nfrs"]["deletion_protection"] = deletion_protection_input
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# Also record the feature flag on the stack object for introspection.
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if "deletion_protection" in inputs:
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stack_instance["stack"]["features"] = {
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"deletion_protection": deletion_protection_input
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}
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# P1-7: Process the composition's outputs[] array to build stack.outputs.
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# Each output wire: {"from": "<childId>.outputs.<name>", "to": "stack.outputs.<outName>"}
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# The child_outputs map (childId -> {outputName: resourceId}) resolves
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# the source to a resource id, which the adapter uses to emit
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# `output "<outName>" { value = aws_<type>.<resourceId>.<attr> }`.
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stack_outputs = {}
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for out_wire in composition.get("outputs", []):
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from_expr = out_wire.get("from", "")
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to_expr = out_wire.get("to", "")
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# Parse "to": "stack.outputs.<outName>"
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to_parts = to_expr.split(".")
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if len(to_parts) != 3 or to_parts[1] != "outputs":
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continue
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out_name = to_parts[2]
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# Parse "from": "<childId>.outputs.<name>"
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from_parts = from_expr.split(".")
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if len(from_parts) != 3 or from_parts[1] != "outputs":
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continue
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src_child = from_parts[0]
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src_output = from_parts[2]
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# Resolve the source resource id from child_outputs
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child_out_map = child_outputs.get(src_child, {})
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src_resource_id = child_out_map.get(src_output, src_child)
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stack_outputs[out_name] = {
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"type": "string",
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"from": src_resource_id,
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"output": src_output,
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}
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if stack_outputs:
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stack_instance["outputs"] = stack_outputs
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return stack_instance
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def decommission_transform(stack_instance):
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"""REQ-92: Transform a resolved stack instance for decommission.
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Sets all scalable counts to 0 and deletion_protection to false on
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every resource. Used by the decommission pipeline mode after the
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first step (disable deletion protection) has been applied.
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"""
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for res in stack_instance.get("resources", []):
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if "nfrs" not in res:
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res["nfrs"] = {}
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res["nfrs"]["deletion_protection"] = False
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inputs = res.get("inputs", {})
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if "desired_count" in inputs:
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inputs["desired_count"] = 0
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if "min_capacity" in inputs:
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inputs["min_capacity"] = 0
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if "max_capacity" in inputs:
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inputs["max_capacity"] = 0
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return stack_instance
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def resolve(contract_path, repo_root=None, environment_override=None):
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"""Resolve a consumer contract to a Target Stack instance.
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Args:
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contract_path: Path to the contract YAML file.
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repo_root: Root of the ACDL repo (defaults to two levels up from this file).
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environment_override: When set (dev/qa/prod/dr), overrides the
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contract's 'environment' field BEFORE schema validation, so
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interpolation context is consistent (D-088). Used by
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run_platform.sh --environment.
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Returns:
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A dict representing the Target Stack instance.
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"""
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if repo_root is None:
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repo_root = os.path.dirname(os.path.dirname(os.path.abspath(__file__)))
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# Load contract
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contract = _load_yaml(contract_path)
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# Apply environment override BEFORE schema validation (D-088) so the
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# schema sees the overridden value and interpolation context is consistent.
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if environment_override:
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contract["environment"] = environment_override
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# Load schemas
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contract_schema = _load_json(os.path.join(repo_root, "schemas", "contract.schema.json"))
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# Validate contract against schema
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jsonschema.validate(contract, contract_schema)
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# Interpolation (D-081): expand ${env.<field>} + ${contract.<field>}
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# tokens AFTER schema validation (the schema sees raw tokens, which are
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# valid strings) and BEFORE IR resolution (the resolver sees concrete
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# values). The env context is the loaded environment onboarding JSON.
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env_name = contract.get("environment", "dev")
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env = _load_env(env_name, repo_root)
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# Expose 'environment' as an alias for the env's 'name' field so
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# ${env.environment} resolves (the env JSON uses 'name', but contracts
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# reference the environment by ${env.environment}).
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env["environment"] = env.get("name", env_name)
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context = {"env": env, "contract": contract}
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contract["inputs"] = _expand_vars(contract.get("inputs", {}), context)
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# Load registry
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registry = _load_json(os.path.join(repo_root, "modules", "registry.json"))
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module_name = contract["module"]
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if module_name not in registry:
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raise ValueError(f"module '{module_name}' not found in registry")
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# Determine if L1 or L2
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entry = registry[module_name]["1.0.0"]
|
|
interface_path = entry["interface"]
|
|
is_l2 = "l2" in interface_path or "composition" in interface_path
|
|
|
|
if is_l2:
|
|
stack_instance = resolve_l2(contract, registry, repo_root)
|
|
else:
|
|
stack_instance = resolve_l1(contract, registry, repo_root)
|
|
|
|
# Validate against stack schema
|
|
stack_schema = _load_json(os.path.join(repo_root, "schemas", "stack.schema.json"))
|
|
jsonschema.validate(stack_instance, stack_schema)
|
|
|
|
return stack_instance
|
|
|
|
|
|
if __name__ == "__main__":
|
|
if len(sys.argv) != 3:
|
|
print("usage: contract_resolver.py <contract.yaml> <out.json>", file=sys.stderr)
|
|
sys.exit(2)
|
|
result = resolve(sys.argv[1])
|
|
with open(sys.argv[2], "w") as fh:
|
|
json.dump(result, fh, indent=2)
|
|
print(f"resolver: resolved {sys.argv[1]} -> {sys.argv[2]}", file=sys.stderr) |