The TRO markers written by sps_skel (lib/tro_annotate.py) are blocks
TRO_SYM_<type> carrying ID and TYPE as attributes. This wires them into the
existing SSG_LIB mechanisms rather than adding new ones.
The double-click hook and the EATTEDIT override already exist: ***DOUBLECLICK
routes [INSERT] to SSG_BLOCKEDIT, and c:EATTEDIT is undefined and forwarded to
the same dispatcher. So all that was missing was a branch:
Blockname TRO_* -> c:TRO_EDIT (Lisp/Tro_Edit.lsp) -> dcl/tro_edit.dcl
Tro_Edit.lsp follows the conventions of the other edit commands: DCL path from
DXFM_DCL, ssg-start/ssg-end around the command, ssg-attrib-read and
ssg-attrib-set-on for the attributes, all user-visible text via ssg-text/
ssg-textf with keys in lang/de_DE.json and en_GB.json. Implied selection is read
before ssg-start, since ssg-start clears it - the same note Gefaellestrecke.lsp
carries.
TYPE is a picklist rather than free text so it cannot drift from the type
catalogue. The list comes from Lisp/tro_types.lsp, generated on the sps_skel side
by "tro_annotate.py --emit-lisp" into DXFM_LISP. If that file is absent the
dialog offers the block's current type and still works.
Loading is lazy: the module is not preloaded in the MNL. The menu macros and the
dispatcher pull it with (ssg-ensure "Tro_Edit") on first use, and the dispatcher
falls back to native EATTEDIT if the module cannot be found. ssg_load.lsp loads
it for the non-menu path.
Menu: SSG_LIB > TRO with "Marker bearbeiten" and "Bearbeiten (Auto)", plus an
entry in the POP501 edit context menu.
The dialog changes attributes only. The marker shape belongs to the block
definition of the type and FB_BLOCK is derived from it, so both follow on the next
tro_annotate.py run; the dialog states this and the command prints a reminder when
the type was changed.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
ssg-id-generate wird bereits ueberall sonst direkt beim Einfuegen
aufgerufen (KreiselInsert.lsp, Gefaellestrecke.lsp, vf_core.lsp,
vf_linienzug.lsp, OmniModulInsert.lsp, TEFInsert.lsp). Separator/Scanner
waren die einzige Ausnahme: weder ils-insert-sensor (Produktion) noch
mubea:build-separator-one (Testharness) riefen es auf - ihre ID kam
bisher ausschliesslich aus dem einmaligen ssg-id-check-all-Durchlauf vor
dem Export. Das war vermutlich die Ursache fuer die beobachtete doppelte
ID (Kreisel und Separator teilten sich "0003").
- Lisp/SSG_LIB_Commands.lsp (ils-insert-sensor) und tests/test_mubea.lsp
(mubea:build-separator-one) rufen jetzt ssg-id-generate direkt nach dem
INSERT auf.
- ssg_id.lsp: ssg-id-set-and-verify prueft nach jedem ssg-attrib-set-on
sofort zurueck und warnt laut, falls das Schreiben (z.B. mangels
ID-ATTDEF an der Instanz) stillschweigend fehlschlaegt. Ausfuehrliches
dbg-Logging (ssg-id-collect-blocks/-max/-generate/-check-all/-set-and-
verify) fuer die weitere Diagnose.
- ssg-id-check-all bleibt als Sicherheitsnetz fuer Faelle, die kein
Insert-Hook abfangen kann (Copy/Array/Spiegeln in BricsCAD, Drawing-
Merges).
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Vollstaendiger i18n-Rollout ueber alle Feature- und Kernmodule: alle benutzersichtbaren princ/prompt/getXXX/alert-Texte laufen jetzt ueber die zentrale Sprachtabelle in ssg_lang.lsp (Deutsch/Englisch, umschaltbar via SSG_SPRACHE). 403 Tabelleneintraege, 497 Aufrufstellen in 17 Dateien.
Ausgeschlossen wie geplant: Debug-Ausgaben (dbg*), Lademeldungen, [DUMMY]-Platzhalter, [CFG]/[OMNI]-Diagnosemarker.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>