Files
tdkpin/original/reconstructed/tdkpin_dialog.c
T
ddidderr 8b99e9607c feat(reconstruction): complete binary-backed C recovery
Replace the partial mechanics transcriptions with a separate, readable C11
reconstruction of the complete Win16 image while preserving the original raw
Ghidra export as immutable evidence. Cover all ordinary and overlapping entry
points, Borland runtime behavior, Win16 imports, segmented data, callbacks,
resources, indirect control flow, physics, rendering, persistence, and
startup/shutdown lifecycles.

Add deterministic extraction and audit tooling plus address-linked ledgers for
functions, imports, DGROUP ranges and objects, relocations, resources, and
callbacks. The final gate records zero raw, partial, restored, unknown,
blocked, or unclassified required units. Keep the semantic-fidelity boundary
explicit: the portable C is not claimed to reproduce a byte-identical Borland
NE build.

Add strict focused harnesses for every reconstructed C unit, exact resource
round-trip checks, and a 16-bit Borland Real48 reference probe. No Rust source
or Cargo metadata is changed in this phase.

Test Plan:
- `bash original/tools/test_reconstructed_c.sh` -- passed
- `bash original/tools/probe_real48_reference.sh` -- passed bit-for-bit
- `python3 original/tools/audit_reconstruction.py --require-complete` -- passed
- `git diff --cached --check` -- passed
- `git diff HEAD -- '*.rs' Cargo.toml Cargo.lock` -- empty
2026-08-23 16:41:17 +02:00

272 lines
9.2 KiB
C

/* ObjectWindows modal-dialog methods from Code2. */
#include "tdkpin_dialog.h"
enum {
OBJECT_WINDOW_HANDLE_OFFSET = 4,
DIALOG_MODAL_FLAG_OFFSET = 0x25,
DIALOG_CLOSE_SLOT = 0x50,
DIALOG_CAN_CLOSE_SLOT = 0x3c,
DIALOG_TRANSFER_SLOT = 0x44,
DIALOG_MARK_CHILD_CALLBACK_OFFSET = 0x2bb1,
};
static void write_far(
Win16FarPtr base, uint16_t offset, Win16FarPtr value)
{
win16_write_u16(base, offset, win16_far_offset(value));
win16_write_u16(
base, (uint16_t)(offset + 2), win16_far_selector(value));
}
/*
* 1008:2996 -- base ObjectWindows dialog constructor. The hidden VMT value
* is explicit in C. A selector-zero template is an integer resource and is
* retained verbatim; a real far C string is duplicated and owned by dialog.
*/
Win16FarPtr object_windows_dialog_construct(
Win16FarPtr dialog,
uint16_t vmt,
Win16FarPtr template_name,
Win16FarPtr parent)
{
BorlandObjectCallFrame frame = {dialog, vmt};
if (!borland_enter_object_constructor(&frame, 0)) {
return frame.object;
}
frame.object = object_windows_object_construct(frame.object, 0, parent);
object_windows_clear_flag_4(frame.object);
Win16FarPtr stored_template = win16_far_selector(template_name) == 0
? template_name
: borland_far_strdup(template_name);
write_far(frame.object, 0x1d, stored_template);
write_far(frame.object, 0x21, 0);
win16_write_u8(win16_far_add_offset(frame.object, 0x25), 0);
return frame.object;
}
/*
* 1008:1607 -- derived text-entry dialog. Template 7f02 is normal and 7f05
* is selected by the process flag at 066a. Four caller fields are then stored
* unaligned at +26, +2a, +2e, and +32.
*/
Win16FarPtr object_windows_text_dialog_construct(
Win16FarPtr dialog,
uint16_t vmt,
INT16 control_id,
Win16FarPtr text_buffer,
Win16FarPtr label,
Win16FarPtr caption,
Win16FarPtr parent)
{
BorlandObjectCallFrame frame = {dialog, vmt};
if (!borland_enter_object_constructor(&frame, 0)) {
return frame.object;
}
uint16_t resource = g_dialog_alternate_template != 0 ? 0x7f05 : 0x7f02;
frame.object = object_windows_dialog_construct(
frame.object,
0,
win16_make_far_pointer(0, resource),
parent);
write_far(frame.object, 0x26, caption);
write_far(frame.object, 0x2a, label);
write_far(frame.object, 0x2e, text_buffer);
win16_write_u16(frame.object, 0x32, (uint16_t)control_id);
return frame.object;
}
static HWND16 dialog_parent_window(Win16FarPtr dialog)
{
Win16FarPtr parent = win16_read_far_pointer(dialog, 6);
return parent == 0
? 0
: win16_read_u16(win16_far_add_offset(parent, 4));
}
/*
* 1008:2a45 -- create a modeless dialog once. AL is the Boolean result, but
* AH is intentionally retained from CreateDialogParam (or incoming AX when a
* preexisting status skips creation), matching MOV AL,0 / INC AX exactly.
*/
uint16_t object_windows_create_modeless_dialog(Win16FarPtr dialog)
{
uint16_t status = win16_read_u16(win16_far_add_offset(dialog, 2));
uint16_t high_byte;
if (status == 0) {
object_windows_clear_flag_4(dialog);
object_windows_set_flag_1(dialog);
win16_write_u8(win16_far_add_offset(dialog, 0x25), 0);
HWND16 created = win16_call_create_dialog_param(
g_win16_create_dialog_param,
g_win16_instance,
win16_read_far_pointer(dialog, 0x1d),
dialog_parent_window(dialog),
win16_read_far_pointer(dialog, 0x12),
(LPARAM16)win16_read_far_pointer(dialog, 0x21));
high_byte = created & 0xff00u;
win16_write_u16(dialog, 4, created);
if (created == 0) {
win16_write_u16(dialog, 2, 0xffff);
}
} else {
high_byte = win16_indeterminate_u16() & 0xff00u;
}
return high_byte |
(win16_read_u16(win16_far_add_offset(dialog, 2)) == 0 ? 1u : 0u);
}
/*
* 1008:2ae3 -- execute a modal dialog while temporarily publishing it as the
* application's active dialog. DialogBox failure -1 becomes status ffff;
* the object HWND is always cleared after an attempted modal call.
*/
INT16 object_windows_execute_modal_dialog(Win16FarPtr dialog)
{
uint16_t status = win16_read_u16(win16_far_add_offset(dialog, 2));
if (status != 0) {
return (INT16)status;
}
object_windows_clear_flag_4(dialog);
object_windows_set_flag_1(dialog);
win16_write_u8(win16_far_add_offset(dialog, 0x25), 1);
Win16FarPtr previous_active =
win16_read_far_pointer(g_object_windows_application, 0x0e);
INT16 result = win16_call_dialog_box_param(
g_win16_dialog_box_param,
g_win16_instance,
win16_read_far_pointer(dialog, 0x1d),
dialog_parent_window(dialog),
win16_read_far_pointer(dialog, 0x12),
(LPARAM16)win16_read_far_pointer(dialog, 0x21));
write_far(g_object_windows_application, 0x0e, previous_active);
if (result == -1) {
win16_write_u16(dialog, 2, 0xffff);
}
win16_write_u16(dialog, 4, 0);
return result;
}
/*
* 1008:2cf2 -- nonmodal windows use the ordinary close helper. An active
* modal dialog first asks VMT +3c; approval invokes +44(object,1) followed by
* +50(object,1). The incoming message record is intentionally ignored.
*/
void object_windows_dialog_validate_and_close(
Win16FarPtr dialog, ObjectWindowsMessage *message)
{
(void)message;
if (win16_read_u8(win16_far_add_offset(
dialog, DIALOG_MODAL_FLAG_OFFSET)) == 0) {
object_windows_close_if_allowed(dialog);
return;
}
uint16_t vmt = win16_read_u16(dialog);
Win16FarPtr vmt_pointer = win16_dgroup_pointer(vmt);
Win16FarPtr can_close =
win16_read_far_pointer(vmt_pointer, DIALOG_CAN_CLOSE_SLOT);
if (!win16_call_object_bool_method(can_close, dialog)) {
return;
}
win16_call_object_u16_method(
win16_read_far_pointer(vmt_pointer, DIALOG_TRANSFER_SLOT),
dialog,
1);
win16_call_object_u16_method(
win16_read_far_pointer(vmt_pointer, DIALOG_CLOSE_SLOT),
dialog,
1);
}
/* 1008:2bb1 — ForEach callback: mark a child only after HWND publication. */
void object_windows_dialog_mark_child(
uint16_t ignored, Win16FarPtr child)
{
object_windows_set_flag_4_if_windowed(ignored, child);
}
/* 1008:2bd1 — end an active modal dialog after marking all child windows. */
void object_windows_end_modal_dialog(
Win16FarPtr dialog, INT16 result)
{
if (win16_read_u8(win16_far_add_offset(
dialog, DIALOG_MODAL_FLAG_OFFSET)) == 0) {
return;
}
object_windows_for_each_child(
dialog,
win16_relocated_code_pointer(
2, DIALOG_MARK_CHILD_CALLBACK_OFFSET));
HWND16 window = win16_read_u16(win16_far_add_offset(
dialog, OBJECT_WINDOW_HANDLE_OFFSET));
(void)EndDialog16(window, result);
}
/*
* 1008:2d3a — modal dialogs use VMT +0x50(object,2); nonmodal windows use the
* ordinary close-if-allowed helper. The incoming event is ignored.
*/
void object_windows_dialog_close(
Win16FarPtr dialog, ObjectWindowsMessage *message)
{
(void)message;
if (win16_read_u8(win16_far_add_offset(
dialog, DIALOG_MODAL_FLAG_OFFSET)) == 0) {
object_windows_close_if_allowed(dialog);
return;
}
uint16_t vmt = win16_read_u16(dialog);
Win16FarPtr procedure =
win16_read_far_pointer(win16_dgroup_pointer(vmt), DIALOG_CLOSE_SLOT);
win16_call_object_u16_method(procedure, dialog, 2);
}
/*
* 1008:2a0e — derived dialog destructor. The binary tests only the selector
* word of the unaligned string pointer at +0x1d/+0x1f before disposing it.
*/
void object_windows_dialog_destruct(Win16FarPtr dialog, uint16_t vmt)
{
Win16FarPtr string = win16_read_far_pointer(dialog, 0x1d);
if (win16_far_selector(string) != 0) {
borland_far_strdispose(string);
}
object_windows_object_destruct(dialog, 0);
BorlandObjectCallFrame frame = {dialog, vmt};
borland_finish_object_destructor(&frame, 0);
}
/* 1008:168e — fill the dialog's far text buffer and always return AL=1. */
bool object_windows_dialog_read_text(Win16FarPtr dialog)
{
HWND16 window = win16_read_u16(win16_far_add_offset(dialog, 4));
Win16FarPtr buffer = win16_read_far_pointer(dialog, 0x2e);
INT16 control_id = (INT16)win16_read_u16(
win16_far_add_offset(dialog, 0x32));
(void)GetDlgItemTextFar16(window, control_id, buffer, 0x65);
return true;
}
/*
* 1008:16be -- finish ObjectWindows preparation, publish the caption and two
* control texts, then limit control +0x32 to length-1 with EM_LIMITTEXT 0415h.
* Every USER return value is deliberately ignored.
*/
void object_windows_dialog_setup_text_fields(Win16FarPtr dialog)
{
object_windows_prepare_window(dialog);
HWND16 window = win16_read_u16(win16_far_add_offset(dialog, 4));
(void)SetWindowTextFar16(
window, win16_read_far_pointer(dialog, 0x26));
(void)SetDlgItemText16(
window, 100, win16_read_far_pointer(dialog, 0x2a));
(void)SetDlgItemText16(
window, 101, win16_read_far_pointer(dialog, 0x2e));
uint16_t capacity = win16_read_u16(win16_far_add_offset(dialog, 0x32));
(void)SendDlgItemMessage16(
window, 101, 0x0415, (uint16_t)(capacity - 1), 0);
}