sedona_editor/schema.py
Arda Aydin c8026f00db Warn and reset instead of exiting when a kit manifest is missing
A kit with no manifest under the Sedona home folder called sys.exit(1),
tearing down the whole app over one unopenable file.

schema now raises MissingManifestError instead, collecting every
unresolved kit first so one dialog names them all rather than the user
fixing them one reopen at a time. describe_missing_manifests builds the
body, pointing at the configured Sedona home and at Preferences.

open_file catches it, reports it, and calls the new
reset_to_startup_state to return to the just-launched state: no file,
empty tree, empty sheet, cleared registries and undo stack. The generic
except now resets too, since a half-parsed file previously left
current_file_path and a stale root behind.

Placing a palette component hits the same loader, where a full reset
would be too destructive: it rolls back the <kit> entry it just added,
rebuilds the previous registry, and abandons only that placement.

schema no longer imports sys or tkinter, so it reports nothing itself
and stays testable without a display. base_window_title moves to
app_state so the reset can restore the title without duplicating it.

README: document the new behaviour, drop the fixed gap, and correct the
stale "no undo, no keyboard shortcuts for save" claim.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-08-13 23:25:01 +03:00

202 lines
7.2 KiB
Python

"""Kit manifest loading, slot inheritance, and which slots are worth showing."""
import os
import xml.etree.ElementTree as ET
import app_state
class MissingManifestError(Exception):
"""A kit the file needs has no manifest under the Sedona home folder.
Raised rather than handled here, so the caller decides what to abandon: opening a
file abandons the whole load, placing a palette component only abandons that
component. Carrying the kit names lets either one name them in its own wording.
"""
def __init__(self, kit_names, unresolved_type=None):
self.kit_names = sorted(set(kit_names))
self.unresolved_type = unresolved_type
super().__init__(", ".join(self.kit_names))
def describe_missing_manifests(error):
"""The body of the dialog both callers show, pointing at the folder to check."""
kit_list = "\n".join(f"{name}" for name in error.kit_names)
home = app_state.SEDONA_HOME or "(not set)"
lines = ["No manifest was found for:", "", kit_list, "", f"Sedona home folder:\n {home}", ""]
if error.unresolved_type:
lines.append(
f"Type '{error.unresolved_type}' inherits from a kit that is not in the "
"file's schema block, so its slots cannot be resolved."
)
lines.append("")
lines.append(
"Check that the Sedona home folder is the right one and that it holds "
"manifests/<kit>/<kit>-<checksum>.xml for each kit listed above. "
"Preferences → Sedona home folder points it somewhere else."
)
return "\n".join(lines)
def read_summary_facet(slot_element):
"""Reads a slot's '@summary' facet. Absent means summary, matching manifest convention."""
facets = slot_element.find("facets")
if facets is None:
return True
for bool_facet in facets.findall("bool"):
if bool_facet.get("name") == "summary":
return (bool_facet.get("val", "true").strip().lower() != "false")
return True
def get_slots_with_inheritance(type_name, kit_schemas):
"""Recursively resolves the slots for a given type by traversing its base chain."""
if type_name not in kit_schemas:
kit_prefix = type_name.split("::")[0] if "::" in type_name else type_name
raise MissingManifestError([kit_prefix], unresolved_type=type_name)
type_element = kit_schemas[type_name]
base_type = type_element.get("base")
resolved_slots = []
if base_type:
resolved_slots = get_slots_with_inheritance(base_type, kit_schemas)
current_slots = []
for slot in type_element.findall("slot"):
current_slots.append({
"name": slot.get("name"),
"type": slot.get("type"),
"default": slot.get("default", "false"),
"flags": slot.get("flags", ""), # Capture visibility flags ('o' maps to operator/hidden)
"summary": read_summary_facet(slot),
"declared_id": int(slot.get("id"))
})
current_slots.sort(key=lambda s: s["declared_id"])
resolved_slots.extend(current_slots)
return resolved_slots
def compile_schema_registry(manifest_paths):
"""Loads and maps types across multiple kit files, ensuring all dependencies exist."""
kit_schemas = {}
for path in manifest_paths:
try:
tree = ET.parse(path)
root = tree.getroot()
kit_name = root.get("name")
for type_tag in root.findall("type"):
type_name = f"{kit_name}::{type_tag.get('name')}"
kit_schemas[type_name] = type_tag
except Exception as e:
print(f"Error parsing manifest {path}: {e}")
app_state.final_components_registry.clear()
for type_name in kit_schemas.keys():
flat_slots = get_slots_with_inheritance(type_name, kit_schemas)
resolved_type_structure = []
for sequence_id, slot_data in enumerate(flat_slots):
resolved_type_structure.append({
"slot_id": sequence_id,
"name": slot_data["name"],
"type": slot_data["type"],
"default": slot_data["default"],
"flags": slot_data["flags"],
"summary": slot_data["summary"]
})
app_state.final_components_registry[type_name] = resolved_type_structure
def load_schema_kits_and_manifests():
"""Scans the schema block of the SAX file and maps/loads corresponding manifest definitions."""
app_state.active_schema_kits.clear()
if app_state.xml_root_element is None:
return
schema_elem = app_state.xml_root_element.find("schema")
if schema_elem is None:
return
manifest_paths = []
missing_kits = []
for kit in schema_elem.findall("kit"):
name = kit.get("name")
checksum = kit.get("checksum")
if not name:
continue
app_state.active_schema_kits[name] = checksum
manifest_dir = os.path.join(app_state.SEDONA_HOME, "manifests", name)
manifest_path = None
if checksum:
target_file = os.path.join(manifest_dir, f"{name}-{checksum}.xml")
if os.path.exists(target_file):
manifest_path = target_file
if not manifest_path and os.path.exists(manifest_dir):
files = [f for f in os.listdir(manifest_dir) if f.startswith(f"{name}-") and f.endswith(".xml")]
if files:
files.sort()
manifest_path = os.path.join(manifest_dir, files[-1])
if manifest_path:
manifest_paths.append(manifest_path)
else:
# Every missing kit is collected before reporting, so one dialog names them
# all rather than the user fixing them one reopen at a time.
missing_kits.append(name)
if missing_kits:
raise MissingManifestError(missing_kits)
compile_schema_registry(manifest_paths)
def get_slots_for_type(type_str, linked_slots=()):
"""
Returns the slots worth painting for a given type, prefixed with double-digit
index tags taken from the manifest so hidden rows leave gaps rather than renumber.
Visibility, in order of precedence:
- a linked slot is always shown, so its wire has a row to anchor to
- '@summary false' hides the slot, even when it is runtime
- runtime slots (no 'c' flag) are shown; they hold the live signal path
- config slots that nothing links to are hidden as clutter
- the 'o' (operator) flag hides a slot outright
"""
if type_str not in app_state.final_components_registry:
return []
slots_list = []
for slot_data in app_state.final_components_registry[type_str]:
slot_name = slot_data["name"]
if not slot_name:
continue
if "o" in slot_data["flags"]:
continue
is_linked = slot_name in linked_slots
if not is_linked:
if not slot_data.get("summary", True):
continue
if "c" in slot_data["flags"]:
continue
# Format to double digits (e.g., 00, 01, 02)
padded_id = f"{slot_data['slot_id']:02d}"
display_label = f"{padded_id}. {slot_name}"
# Keep structural name unchanged for XML lookup inside comp, but pass display label
slots_list.append((slot_name, display_label))
return slots_list