646 lines
30 KiB
Python
646 lines
30 KiB
Python
"""Encoding and decoding logic for :mod:`python_app.models.run_config_schema`."""
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from __future__ import annotations
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import math
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from typing import Any
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from python_app.models.run_config_schema import (
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ComboModel,
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GprRxGeometryModel,
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GprTxGeometryModel,
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PreprocessAssetModel,
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PreprocessNotchModel,
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RunConfigModel,
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)
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from python_app.models.run_config_validation import (
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load_control_button_payload,
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load_ring_payload,
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load_switch_payload,
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validate_combos,
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validate_gpr_model,
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)
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def _as_dict(value: Any, context: str) -> dict[str, Any]:
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"""Validate payload node is object-like, treating missing values as empty object."""
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if value is None:
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return {}
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if not isinstance(value, dict):
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raise ValueError(f"{context} must be a JSON object")
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return value
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def _as_list(value: Any, context: str) -> list[Any]:
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"""Validate payload node is array-like, treating missing values as an empty list.
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A present-but-non-array value is rejected (rather than silently dropped) so a
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malformed config section fails loudly instead of quietly emptying out.
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"""
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if value is None:
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return []
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if not isinstance(value, list):
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raise ValueError(f"{context} must be a JSON array")
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return value
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def _read_str(payload: dict[str, Any], key: str, default: str) -> str:
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"""Return payload string, treating an explicit JSON `null` as missing.
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`payload.get(key, default)` returns `None` when the key exists with value
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`null`, which is then coerced into the literal string `"None"` by `str()`.
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"""
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value = payload.get(key, default)
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if value is None:
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return default
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# A JSON array/object reaching a scalar field is a config error, not a
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# str() fallback; surface it as ValueError to keep the error contract uniform.
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if isinstance(value, (dict, list)):
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raise ValueError(f"{key} must be a JSON string")
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return str(value)
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def _read_int(payload: dict[str, Any], key: str, default: int) -> int:
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"""Return payload integer, treating an explicit JSON `null` as 'use default'.
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Without this, `int(payload.get(key, default))` raises TypeError on an
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explicit `null`. JSON arrays/objects (and other non-numeric scalars) are
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rejected as ValueError so malformed types share the config-error contract.
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"""
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value = payload.get(key, default)
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if value is None:
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return default
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# Accept only a genuine JSON integer (not bool, not float, not numeric string):
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# silently truncating 5.7 or parsing "5" would hide a malformed config. Mirrors
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# gui_profile_codec._optional_int so the two codecs agree.
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if isinstance(value, bool) or not isinstance(value, int):
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raise ValueError(f"{key} must be a JSON integer")
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return value
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def _read_float(payload: dict[str, Any], key: str, default: float) -> float:
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"""Return payload float, treating an explicit JSON `null` as 'use default'.
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Rejects JSON arrays/objects (and other non-numeric scalars) as ValueError,
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and rejects non-finite values (NaN/Infinity) at decode time so the C++
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pipeline never receives a value it cannot honor.
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"""
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value = payload.get(key, default)
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if value is None:
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return default
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# Accept only a genuine JSON number (int/float, not bool, not numeric string):
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# parsing "1e9" would hide a malformed config. Mirrors gui_profile_codec.
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if isinstance(value, bool) or not isinstance(value, (int, float)):
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raise ValueError(f"{key} must be a JSON number")
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result = float(value)
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if not math.isfinite(result):
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raise ValueError(f"{key} must be a finite number")
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return result
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def _read_bool(payload: dict[str, Any], key: str, default: bool) -> bool:
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"""Return payload boolean, treating an explicit JSON `null` as 'use default'.
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Plain `bool(payload.get(key, default))` would silently flip the default to
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`False` on an explicit `null`; here `null` keeps the default instead.
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Non-boolean JSON types are rejected as ValueError.
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"""
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value = payload.get(key, default)
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if value is None:
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return default
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if not isinstance(value, bool):
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raise ValueError(f"{key} must be a JSON boolean")
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return value
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def _load_preprocess_asset(payload: dict[str, Any], target: PreprocessAssetModel) -> None:
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"""Load preprocess asset fields into target model."""
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target.set_name = _read_str(payload, "set_name", target.set_name)
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target.bundle_path = _read_str(payload, "bundle_path", target.bundle_path)
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def _load_string_list(payload: dict[str, Any], key: str, context: str) -> list[str]:
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"""Load an optional list of strings with strict shape validation."""
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raw_value = payload.get(key, [])
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if raw_value is None:
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return []
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if not isinstance(raw_value, list):
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raise ValueError(f"{context}.{key} must be a JSON array")
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values: list[str] = []
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for index, item in enumerate(raw_value):
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if not isinstance(item, str):
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raise ValueError(f"{context}.{key}[{index}] must be a JSON string")
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values.append(item)
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return values
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def _load_string_dict(payload: dict[str, Any], key: str, context: str) -> dict[str, str]:
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"""Load an optional string-to-string dictionary with strict shape validation."""
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raw_value = payload.get(key, {})
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if raw_value is None:
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return {}
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if not isinstance(raw_value, dict):
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raise ValueError(f"{context}.{key} must be a JSON object")
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values: dict[str, str] = {}
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for item_key, item_value in raw_value.items():
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if not isinstance(item_key, str) or not isinstance(item_value, str):
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raise ValueError(f"{context}.{key} must contain only string keys and values")
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values[item_key] = item_value
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return values
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def run_config_from_dict(payload: dict[str, Any]) -> RunConfigModel:
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"""Decode JSON-like payload into :class:`RunConfigModel`."""
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# Schema carries only minimal-safe fallbacks; operational defaults live in run_config.json.
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model = RunConfigModel()
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radar_payload = _as_dict(payload.get("radar"), "radar")
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sweep_payload = _as_dict(radar_payload.get("sweep"), "radar.sweep")
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switches_payload = _as_dict(payload.get("switches"), "switches")
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port1_payload = _as_dict(switches_payload.get("port1"), "switches.port1")
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port2_payload = _as_dict(switches_payload.get("port2"), "switches.port2")
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control_button_payload = _as_dict(payload.get("control_button"), "control_button")
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run_payload = _as_dict(payload.get("run"), "run")
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preprocess_payload = _as_dict(payload.get("preprocess"), "preprocess")
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gpr_payload = _as_dict(payload.get("gpr"), "gpr")
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rings_payload = _as_dict(payload.get("rings"), "rings")
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raw_ring_payload = _as_dict(rings_payload.get("raw"), "rings.raw")
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raw_tap_ring_payload = _as_dict(rings_payload.get("raw_tap"), "rings.raw_tap")
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pre_ring_payload = _as_dict(rings_payload.get("preprocessed"), "rings.preprocessed")
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pre_tap_ring_payload = _as_dict(rings_payload.get("preprocessed_tap"), "rings.preprocessed_tap")
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result_ring_payload = _as_dict(rings_payload.get("results"), "rings.results")
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locator_server_payload = _as_dict(
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run_payload.get("locator_server", run_payload.get("locator")),
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"run.locator_server",
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)
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multi_device_payload = _as_dict(radar_payload.get("multi_device"), "radar.multi_device")
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kamil_adc_payload = _as_dict(radar_payload.get("kamil_adc"), "radar.kamil_adc")
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laser_control_payload = _as_dict(radar_payload.get("laser_control"), "radar.laser_control")
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model.radar.model = _read_str(radar_payload, "model", model.radar.model)
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model.radar.serial = _read_str(radar_payload, "serial", model.radar.serial)
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model.radar.remote_host = _read_str(radar_payload, "remote_host", model.radar.remote_host)
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model.radar.remote_port = _read_int(radar_payload, "remote_port", model.radar.remote_port)
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model.radar.driver_mode = _read_str(radar_payload, "driver_mode", model.radar.driver_mode)
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model.radar.mock_signal_hz = _read_float(radar_payload, "mock_signal_hz", model.radar.mock_signal_hz)
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model.radar.visa_library = _read_str(radar_payload, "visa_library", model.radar.visa_library)
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model.radar.sweep.start_hz = _read_float(sweep_payload, "start_hz", model.radar.sweep.start_hz)
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model.radar.sweep.stop_hz = _read_float(sweep_payload, "stop_hz", model.radar.sweep.stop_hz)
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model.radar.sweep.points = _read_int(sweep_payload, "points", model.radar.sweep.points)
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model.radar.sweep.if_bandwidth_hz = _read_float(
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sweep_payload, "if_bandwidth_hz", model.radar.sweep.if_bandwidth_hz
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)
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model.radar.sweep.power_dbm = _read_float(sweep_payload, "stimulus_power_dbm", model.radar.sweep.power_dbm)
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slave_serials_payload = multi_device_payload.get(
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"slave_serials",
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multi_device_payload.get("slave_serial_numbers", model.radar.multi_device.slave_serials),
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)
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if isinstance(slave_serials_payload, list):
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model.radar.multi_device.slave_serials = [str(value).strip() for value in slave_serials_payload if str(value).strip()]
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elif isinstance(slave_serials_payload, str):
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model.radar.multi_device.slave_serials = [
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value.strip()
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for value in slave_serials_payload.split(",")
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if value.strip()
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]
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else:
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raise ValueError(
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"radar.multi_device.slave_serials must be a JSON array or comma-separated string"
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)
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model.radar.multi_device.force_external_reference = _read_bool(
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multi_device_payload,
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"force_external_reference",
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model.radar.multi_device.force_external_reference,
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)
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model.radar.multi_device.recovery_attempts = _read_int(
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multi_device_payload,
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"recovery_attempts",
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model.radar.multi_device.recovery_attempts,
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)
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model.radar.kamil_adc.project_dir = _read_str(
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kamil_adc_payload, "project_dir", model.radar.kamil_adc.project_dir
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)
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model.radar.kamil_adc.executable_path = _read_str(
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kamil_adc_payload, "executable_path", model.radar.kamil_adc.executable_path
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)
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model.radar.kamil_adc.tty_path = _read_str(
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kamil_adc_payload, "tty_path", model.radar.kamil_adc.tty_path
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)
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model.radar.kamil_adc.args = _load_string_list(kamil_adc_payload, "args", "radar.kamil_adc")
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model.radar.kamil_adc.env = _load_string_dict(kamil_adc_payload, "env", "radar.kamil_adc")
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model.radar.kamil_adc.startup_timeout_s = _read_float(
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kamil_adc_payload, "startup_timeout_s", model.radar.kamil_adc.startup_timeout_s
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)
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model.radar.kamil_adc.sweep_timeout_s = _read_float(
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kamil_adc_payload, "sweep_timeout_s", model.radar.kamil_adc.sweep_timeout_s
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)
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model.radar.kamil_adc.stop_timeout_s = _read_float(
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kamil_adc_payload, "stop_timeout_s", model.radar.kamil_adc.stop_timeout_s
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)
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model.radar.laser_control.enabled = _read_bool(
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laser_control_payload, "enabled", model.radar.laser_control.enabled
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)
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model.radar.laser_control.port = _read_str(
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laser_control_payload, "port", model.radar.laser_control.port
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)
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model.radar.laser_control.mode = _read_str(
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laser_control_payload, "mode", model.radar.laser_control.mode
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)
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model.radar.laser_control.pi_coeff1_p = _read_int(
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laser_control_payload, "pi_coeff1_p", model.radar.laser_control.pi_coeff1_p
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)
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model.radar.laser_control.pi_coeff1_i = _read_int(
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laser_control_payload, "pi_coeff1_i", model.radar.laser_control.pi_coeff1_i
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)
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model.radar.laser_control.pi_coeff2_p = _read_int(
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laser_control_payload, "pi_coeff2_p", model.radar.laser_control.pi_coeff2_p
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)
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model.radar.laser_control.pi_coeff2_i = _read_int(
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laser_control_payload, "pi_coeff2_i", model.radar.laser_control.pi_coeff2_i
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)
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laser_manual_payload = _as_dict(laser_control_payload.get("manual"), "radar.laser_control.manual")
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model.radar.laser_control.manual.temp1 = _read_float(
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laser_manual_payload, "temp1", model.radar.laser_control.manual.temp1
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)
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model.radar.laser_control.manual.temp2 = _read_float(
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laser_manual_payload, "temp2", model.radar.laser_control.manual.temp2
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)
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model.radar.laser_control.manual.current1 = _read_float(
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laser_manual_payload, "current1", model.radar.laser_control.manual.current1
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)
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model.radar.laser_control.manual.current2 = _read_float(
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laser_manual_payload, "current2", model.radar.laser_control.manual.current2
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)
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laser_variation_payload = _as_dict(
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laser_control_payload.get("variation"),
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"radar.laser_control.variation",
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)
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model.radar.laser_control.variation.variation_type = _read_str(
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laser_variation_payload,
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"variation_type",
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model.radar.laser_control.variation.variation_type,
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)
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model.radar.laser_control.variation.static_temp1 = _read_float(
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laser_variation_payload,
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"static_temp1",
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model.radar.laser_control.variation.static_temp1,
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)
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model.radar.laser_control.variation.static_temp2 = _read_float(
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laser_variation_payload,
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"static_temp2",
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model.radar.laser_control.variation.static_temp2,
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)
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model.radar.laser_control.variation.static_current1 = _read_float(
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laser_variation_payload,
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"static_current1",
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model.radar.laser_control.variation.static_current1,
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)
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model.radar.laser_control.variation.static_current2 = _read_float(
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laser_variation_payload,
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"static_current2",
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model.radar.laser_control.variation.static_current2,
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)
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model.radar.laser_control.variation.min_value = _read_float(
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laser_variation_payload, "min_value", model.radar.laser_control.variation.min_value
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)
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model.radar.laser_control.variation.max_value = _read_float(
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laser_variation_payload, "max_value", model.radar.laser_control.variation.max_value
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)
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model.radar.laser_control.variation.step = _read_float(
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laser_variation_payload, "step", model.radar.laser_control.variation.step
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)
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model.radar.laser_control.variation.time_step = _read_int(
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laser_variation_payload, "time_step", model.radar.laser_control.variation.time_step
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)
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model.radar.laser_control.variation.delay_time = _read_int(
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laser_variation_payload, "delay_time", model.radar.laser_control.variation.delay_time
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)
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load_switch_payload(port1_payload, model.output_switch)
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load_switch_payload(port2_payload, model.input_switch)
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load_control_button_payload(control_button_payload, model.control_button)
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model.apply_device_model_constraints()
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runtime = model.runtime
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locator = runtime.locator_server
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runtime.settling_ms = _read_int(run_payload, "settling_ms", runtime.settling_ms)
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runtime.idle_sleep_ms = _read_int(run_payload, "idle_sleep_ms", runtime.idle_sleep_ms)
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runtime.continuous = _read_bool(run_payload, "continuous", runtime.continuous)
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runtime.processing_live_config_path = _read_str(
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run_payload, "processing_live_config_path", runtime.processing_live_config_path
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)
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locator.device_id = _read_int(locator_server_payload, "device_id", locator.device_id)
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locator.protocol_version = _read_int(locator_server_payload, "protocol_version", locator.protocol_version)
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locator.host = _read_str(locator_server_payload, "host", locator.host)
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locator.port = _read_int(locator_server_payload, "port", locator.port)
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locator.max_payload_bytes = _read_int(locator_server_payload, "max_payload_bytes", locator.max_payload_bytes)
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locator.client_queue_size = _read_int(locator_server_payload, "client_queue_size", locator.client_queue_size)
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locator.logger_name = _read_str(locator_server_payload, "logger_name", locator.logger_name)
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s21_preprocess_payload = _as_dict(preprocess_payload.get("s21"), "preprocess.s21")
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_load_preprocess_asset(
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_as_dict(s21_preprocess_payload.get("calibration"), "preprocess.s21.calibration"),
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model.preprocess.s21.calibration,
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)
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_load_preprocess_asset(
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_as_dict(s21_preprocess_payload.get("reference"), "preprocess.s21.reference"),
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model.preprocess.s21.reference,
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)
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s11_preprocess_payload = _as_dict(preprocess_payload.get("s11"), "preprocess.s11")
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s11_calibration_payload = _as_dict(s11_preprocess_payload.get("calibration"), "preprocess.s11.calibration")
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_load_preprocess_asset(
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_as_dict(s11_calibration_payload.get("open"), "preprocess.s11.calibration.open"),
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model.preprocess.s11.calibration.open,
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)
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_load_preprocess_asset(
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_as_dict(s11_calibration_payload.get("short"), "preprocess.s11.calibration.short"),
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model.preprocess.s11.calibration.short,
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)
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_load_preprocess_asset(
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_as_dict(s11_calibration_payload.get("load"), "preprocess.s11.calibration.load"),
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model.preprocess.s11.calibration.load,
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)
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_load_preprocess_asset(
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_as_dict(s11_preprocess_payload.get("reference"), "preprocess.s11.reference"),
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model.preprocess.s11.reference,
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)
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notch_payload = _as_dict(preprocess_payload.get("notch"), "preprocess.notch")
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model.preprocess.notch = PreprocessNotchModel(
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enabled=_read_bool(notch_payload, "enabled", model.preprocess.notch.enabled),
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taper_width_hz=_read_float(notch_payload, "taper_width_hz", model.preprocess.notch.taper_width_hz),
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taper_type=_read_str(notch_payload, "taper_type", model.preprocess.notch.taper_type),
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bands_hz=[],
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)
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bands_payload = _as_list(notch_payload.get("bands_hz"), "preprocess.notch.bands_hz")
|
|
for band in bands_payload:
|
|
if not (isinstance(band, (list, tuple)) and len(band) == 2):
|
|
raise ValueError("preprocess.notch.bands_hz entries must be [low_hz, high_hz] pairs")
|
|
model.preprocess.notch.bands_hz.append((float(band[0]), float(band[1])))
|
|
|
|
model.gpr.relative_permittivity = _read_float(
|
|
gpr_payload, "relative_permittivity", model.gpr.relative_permittivity
|
|
)
|
|
model.gpr.tx_geometry = []
|
|
for entry in _as_list(gpr_payload.get("tx_geometry"), "gpr.tx_geometry"):
|
|
entry_payload = _as_dict(entry, "gpr.tx_geometry[]")
|
|
model.gpr.tx_geometry.append(
|
|
GprTxGeometryModel(
|
|
output_pos=_read_int(entry_payload, "output_pos", 0),
|
|
x_m=_read_float(entry_payload, "x_m", 0.0),
|
|
y_m=_read_float(entry_payload, "y_m", 0.0),
|
|
z_m=_read_float(entry_payload, "z_m", 0.0),
|
|
)
|
|
)
|
|
model.gpr.rx_geometry = []
|
|
for entry in _as_list(gpr_payload.get("rx_geometry"), "gpr.rx_geometry"):
|
|
entry_payload = _as_dict(entry, "gpr.rx_geometry[]")
|
|
model.gpr.rx_geometry.append(
|
|
GprRxGeometryModel(
|
|
input_pos=_read_int(entry_payload, "input_pos", 0),
|
|
x_m=_read_float(entry_payload, "x_m", 0.0),
|
|
y_m=_read_float(entry_payload, "y_m", 0.0),
|
|
z_m=_read_float(entry_payload, "z_m", 0.0),
|
|
)
|
|
)
|
|
model.apply_device_model_constraints()
|
|
# Pass sweep= so #36 sweep bounds (points > 0, stop_hz >= start_hz) are validated
|
|
# on the config-load path instead of crashing the C++ acquisition process at boot.
|
|
validate_gpr_model(
|
|
model.gpr,
|
|
input_switch_positions=model.input_switch.positions,
|
|
output_switch_positions=model.output_switch.positions,
|
|
sweep=model.radar.sweep,
|
|
)
|
|
|
|
load_ring_payload(raw_ring_payload, model.rings.raw)
|
|
load_ring_payload(raw_tap_ring_payload, model.rings.raw_tap)
|
|
load_ring_payload(pre_ring_payload, model.rings.preprocessed)
|
|
load_ring_payload(pre_tap_ring_payload, model.rings.preprocessed_tap)
|
|
load_ring_payload(result_ring_payload, model.rings.results)
|
|
|
|
model.combos = []
|
|
for combo in _as_list(run_payload.get("combos"), "run.combos"):
|
|
combo_payload = _as_dict(combo, "run.combos[]")
|
|
model.combos.append(
|
|
ComboModel(
|
|
input=_read_int(combo_payload, "input", 0),
|
|
output=_read_int(combo_payload, "output", 0),
|
|
)
|
|
)
|
|
|
|
model.ensure_combos()
|
|
validate_combos(
|
|
model.combos,
|
|
input_positions=model.input_switch.positions,
|
|
output_positions=model.output_switch.positions,
|
|
)
|
|
return model
|
|
|
|
|
|
def run_config_to_dict(model: RunConfigModel) -> dict[str, Any]:
|
|
"""Encode :class:`RunConfigModel` to C++ pipeline-compatible JSON structure."""
|
|
model.ensure_combos()
|
|
sweep_payload = {
|
|
"start_hz": model.radar.sweep.start_hz,
|
|
"stop_hz": model.radar.sweep.stop_hz,
|
|
"if_bandwidth_hz": model.radar.sweep.if_bandwidth_hz,
|
|
"stimulus_power_dbm": model.radar.sweep.power_dbm,
|
|
}
|
|
if not model.is_kamil_adc:
|
|
sweep_payload["points"] = model.radar.sweep.points
|
|
|
|
return {
|
|
"radar": {
|
|
"model": model.radar.model,
|
|
"serial": model.radar.serial,
|
|
"remote_host": model.radar.remote_host,
|
|
"remote_port": model.radar.remote_port,
|
|
"driver_mode": model.radar.driver_mode,
|
|
"mock_signal_hz": model.radar.mock_signal_hz,
|
|
"visa_library": model.radar.visa_library,
|
|
"multi_device": {
|
|
"slave_serials": list(model.radar.multi_device.slave_serials),
|
|
"force_external_reference": model.radar.multi_device.force_external_reference,
|
|
"recovery_attempts": model.radar.multi_device.recovery_attempts,
|
|
},
|
|
"kamil_adc": {
|
|
"project_dir": model.radar.kamil_adc.project_dir,
|
|
"executable_path": model.radar.kamil_adc.executable_path,
|
|
"tty_path": model.radar.kamil_adc.tty_path,
|
|
"args": list(model.radar.kamil_adc.args),
|
|
"env": dict(model.radar.kamil_adc.env),
|
|
"startup_timeout_s": model.radar.kamil_adc.startup_timeout_s,
|
|
"sweep_timeout_s": model.radar.kamil_adc.sweep_timeout_s,
|
|
"stop_timeout_s": model.radar.kamil_adc.stop_timeout_s,
|
|
},
|
|
"laser_control": {
|
|
"enabled": model.radar.laser_control.enabled,
|
|
"port": model.radar.laser_control.port,
|
|
"mode": model.radar.laser_control.mode,
|
|
"pi_coeff1_p": model.radar.laser_control.pi_coeff1_p,
|
|
"pi_coeff1_i": model.radar.laser_control.pi_coeff1_i,
|
|
"pi_coeff2_p": model.radar.laser_control.pi_coeff2_p,
|
|
"pi_coeff2_i": model.radar.laser_control.pi_coeff2_i,
|
|
"manual": {
|
|
"temp1": model.radar.laser_control.manual.temp1,
|
|
"temp2": model.radar.laser_control.manual.temp2,
|
|
"current1": model.radar.laser_control.manual.current1,
|
|
"current2": model.radar.laser_control.manual.current2,
|
|
},
|
|
"variation": {
|
|
"variation_type": model.radar.laser_control.variation.variation_type,
|
|
"static_temp1": model.radar.laser_control.variation.static_temp1,
|
|
"static_temp2": model.radar.laser_control.variation.static_temp2,
|
|
"static_current1": model.radar.laser_control.variation.static_current1,
|
|
"static_current2": model.radar.laser_control.variation.static_current2,
|
|
"min_value": model.radar.laser_control.variation.min_value,
|
|
"max_value": model.radar.laser_control.variation.max_value,
|
|
"step": model.radar.laser_control.variation.step,
|
|
"time_step": model.radar.laser_control.variation.time_step,
|
|
"delay_time": model.radar.laser_control.variation.delay_time,
|
|
},
|
|
},
|
|
"sweep": sweep_payload,
|
|
},
|
|
"switches": {
|
|
"port1": {
|
|
"name": model.output_switch.name,
|
|
"driver_mode": model.output_switch.driver_mode,
|
|
"driver": model.output_switch.driver,
|
|
"radar_port": model.output_switch.radar_port,
|
|
"positions": model.output_switch.positions,
|
|
"default_position": model.output_switch.default_position,
|
|
"gpio_chip": model.output_switch.gpio_chip,
|
|
"pin_a": model.output_switch.pin_a,
|
|
"pin_b": model.output_switch.pin_b,
|
|
"invert_logic": model.output_switch.invert_logic,
|
|
},
|
|
"port2": {
|
|
"name": model.input_switch.name,
|
|
"driver_mode": model.input_switch.driver_mode,
|
|
"driver": model.input_switch.driver,
|
|
"radar_port": model.input_switch.radar_port,
|
|
"positions": model.input_switch.positions,
|
|
"default_position": model.input_switch.default_position,
|
|
"gpio_chip": model.input_switch.gpio_chip,
|
|
"pin_a": model.input_switch.pin_a,
|
|
"pin_b": model.input_switch.pin_b,
|
|
"invert_logic": model.input_switch.invert_logic,
|
|
},
|
|
},
|
|
"control_button": {
|
|
"enabled": model.control_button.enabled,
|
|
"gpio_chip": model.control_button.gpio_chip,
|
|
"pin": model.control_button.pin,
|
|
"active_low": model.control_button.active_low,
|
|
"bias": model.control_button.bias,
|
|
"debounce_ms": model.control_button.debounce_ms,
|
|
"action": model.control_button.action,
|
|
},
|
|
"run": {
|
|
"settling_ms": model.runtime.settling_ms,
|
|
"idle_sleep_ms": model.runtime.idle_sleep_ms,
|
|
"continuous": model.runtime.continuous,
|
|
"processing_live_config_path": model.runtime.processing_live_config_path,
|
|
"locator_server": {
|
|
"device_id": model.runtime.locator_server.device_id,
|
|
"protocol_version": model.runtime.locator_server.protocol_version,
|
|
"host": model.runtime.locator_server.host,
|
|
"port": model.runtime.locator_server.port,
|
|
"max_payload_bytes": model.runtime.locator_server.max_payload_bytes,
|
|
"client_queue_size": model.runtime.locator_server.client_queue_size,
|
|
"logger_name": model.runtime.locator_server.logger_name,
|
|
},
|
|
"combos": [{"input": combo.input, "output": combo.output} for combo in model.combos],
|
|
},
|
|
"preprocess": {
|
|
"s21": {
|
|
"calibration": {
|
|
"set_name": model.preprocess.s21.calibration.set_name,
|
|
"bundle_path": model.preprocess.s21.calibration.bundle_path,
|
|
},
|
|
"reference": {
|
|
"set_name": model.preprocess.s21.reference.set_name,
|
|
"bundle_path": model.preprocess.s21.reference.bundle_path,
|
|
},
|
|
},
|
|
"s11": {
|
|
"calibration": {
|
|
"open": {
|
|
"set_name": model.preprocess.s11.calibration.open.set_name,
|
|
"bundle_path": model.preprocess.s11.calibration.open.bundle_path,
|
|
},
|
|
"short": {
|
|
"set_name": model.preprocess.s11.calibration.short.set_name,
|
|
"bundle_path": model.preprocess.s11.calibration.short.bundle_path,
|
|
},
|
|
"load": {
|
|
"set_name": model.preprocess.s11.calibration.load.set_name,
|
|
"bundle_path": model.preprocess.s11.calibration.load.bundle_path,
|
|
},
|
|
},
|
|
"reference": {
|
|
"set_name": model.preprocess.s11.reference.set_name,
|
|
"bundle_path": model.preprocess.s11.reference.bundle_path,
|
|
},
|
|
},
|
|
"notch": {
|
|
"enabled": model.preprocess.notch.enabled,
|
|
"bands_hz": [[low_hz, high_hz] for low_hz, high_hz in model.preprocess.notch.bands_hz],
|
|
"taper_width_hz": model.preprocess.notch.taper_width_hz,
|
|
"taper_type": model.preprocess.notch.taper_type,
|
|
},
|
|
},
|
|
"gpr": {
|
|
"relative_permittivity": model.gpr.relative_permittivity,
|
|
"tx_geometry": [
|
|
{
|
|
"output_pos": entry.output_pos,
|
|
"x_m": entry.x_m,
|
|
"y_m": entry.y_m,
|
|
"z_m": entry.z_m,
|
|
}
|
|
for entry in model.gpr.tx_geometry
|
|
],
|
|
"rx_geometry": [
|
|
{
|
|
"input_pos": entry.input_pos,
|
|
"x_m": entry.x_m,
|
|
"y_m": entry.y_m,
|
|
"z_m": entry.z_m,
|
|
}
|
|
for entry in model.gpr.rx_geometry
|
|
],
|
|
},
|
|
"rings": {
|
|
"raw": {
|
|
"name": model.rings.raw.name,
|
|
"capacity": model.rings.raw.capacity,
|
|
"slot_size_bytes": model.rings.raw.slot_size_bytes,
|
|
},
|
|
"raw_tap": {
|
|
"name": model.rings.raw_tap.name,
|
|
"capacity": model.rings.raw_tap.capacity,
|
|
"slot_size_bytes": model.rings.raw_tap.slot_size_bytes,
|
|
},
|
|
"preprocessed": {
|
|
"name": model.rings.preprocessed.name,
|
|
"capacity": model.rings.preprocessed.capacity,
|
|
"slot_size_bytes": model.rings.preprocessed.slot_size_bytes,
|
|
},
|
|
"preprocessed_tap": {
|
|
"name": model.rings.preprocessed_tap.name,
|
|
"capacity": model.rings.preprocessed_tap.capacity,
|
|
"slot_size_bytes": model.rings.preprocessed_tap.slot_size_bytes,
|
|
},
|
|
"results": {
|
|
"name": model.rings.results.name,
|
|
"capacity": model.rings.results.capacity,
|
|
"slot_size_bytes": model.rings.results.slot_size_bytes,
|
|
},
|
|
},
|
|
}
|