Files
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

165 lines
5.2 KiB
C

#include "../tdkpin_strings.h"
#include <assert.h>
#include <string.h>
static uint8_t g_source[0x10000];
static uint8_t g_destination[0x10000];
static Win16FarPtr g_disposed_string;
static uint16_t g_disposed_bytes;
static Win16FarPtr g_allocated_string;
static uint16_t g_allocated_bytes;
void borland_free_mem(Win16FarPtr block, uint16_t bytes)
{
g_disposed_string = block;
g_disposed_bytes = bytes;
}
Win16FarPtr borland_get_mem(uint16_t bytes)
{
g_allocated_bytes = bytes;
return g_allocated_string;
}
static Win16FarPtr source_at(uint16_t offset)
{
return win16_make_far_pointer(0x1111, offset);
}
static Win16FarPtr destination_at(uint16_t offset)
{
return win16_make_far_pointer(0x2222, offset);
}
static void reset_memory(void)
{
memset(g_source, 0xcc, sizeof(g_source));
memset(g_destination, 0xdd, sizeof(g_destination));
win16_reset_segment_bindings();
win16_bind_segment(0x1111, g_source, sizeof(g_source), true);
win16_bind_segment(0x2222, g_destination, sizeof(g_destination), true);
}
static void test_length_end_and_copy(void)
{
reset_memory();
memcpy(&g_source[10], "Abc", 4);
assert(borland_far_strlen(source_at(10)) == 3);
assert(borland_far_strend(source_at(10)) == source_at(13));
assert(borland_far_strcpy(destination_at(20), source_at(10)) == destination_at(20));
assert(memcmp(&g_destination[20], "Abc", 4) == 0);
g_destination[30] = 0xaa;
(void)borland_far_strncpy(destination_at(30), source_at(10), 2);
assert(g_destination[30] == 'A' && g_destination[31] == 'b');
assert(g_destination[32] == 0);
memset(&g_destination[40], 0xaa, 8);
(void)borland_far_strncpy(destination_at(40), source_at(10), 4);
assert(memcmp(&g_destination[40], "Abc\0\0", 5) == 0);
reset_memory();
assert(borland_far_strlen(source_at(0)) == 0xfffe);
assert(borland_far_strend(source_at(0)) == source_at(0xfffe));
}
static void test_memmove_and_concat(void)
{
reset_memory();
win16_fill_bytes(destination_at(20), 5, 0x5a);
assert(memcmp(&g_destination[20], "ZZZZZ", 5) == 0);
memcpy(&g_source[40], "copy", 4);
borland_far_copy(destination_at(40), source_at(40), 4);
assert(memcmp(&g_destination[40], "copy", 4) == 0);
memcpy(&g_source[100], "abcdef", 6);
(void)borland_far_memmove(source_at(102), source_at(100), 4);
assert(memcmp(&g_source[100], "ababcd", 6) == 0);
memcpy(&g_source[300], "cross", 5);
(void)borland_far_memmove(destination_at(500), source_at(300), 5);
assert(memcmp(&g_destination[500], "cross", 5) == 0);
memcpy(&g_destination[100], "one", 4);
memcpy(&g_source[200], "two", 4);
assert(borland_far_strcat(destination_at(100), source_at(200)) == destination_at(100));
assert(memcmp(&g_destination[100], "onetwo", 7) == 0);
}
static void test_short_strings(void)
{
reset_memory();
g_source[20] = 3;
memcpy(&g_source[21], "xyz", 3);
(void)borland_short_to_c_string(destination_at(20), source_at(20));
assert(memcmp(&g_destination[20], "xyz", 4) == 0);
memcpy(&g_source[40], "hello", 6);
borland_c_to_short_string(destination_at(40), source_at(40));
assert(g_destination[40] == 5);
assert(memcmp(&g_destination[41], "hello", 5) == 0);
memset(&g_source[100], 'q', 260);
g_source[360] = 0;
borland_c_to_short_string(destination_at(100), source_at(100));
assert(g_destination[100] == 4);
assert(memcmp(&g_destination[101], &g_source[100], 260) == 0);
}
static void test_compare_and_search(void)
{
reset_memory();
memcpy(&g_source[100], "aBcD", 5);
memcpy(&g_destination[100], "Abce", 5);
assert(borland_far_strnicmp(source_at(100), destination_at(100), 3) == 0);
assert(borland_far_strnicmp(source_at(100), destination_at(100), 4) == -1);
assert(borland_far_strchr(source_at(100), 'B') == source_at(101));
assert(borland_far_strchr(source_at(100), 0) == source_at(104));
memcpy(&g_source[200], "abca", 5);
assert(borland_far_strrchr(source_at(200), 'a') == source_at(203));
assert(borland_far_strrchr(source_at(200), 0) == source_at(204));
assert(borland_far_strrchr(source_at(200), 'z') == 0);
}
static void test_dispose(void)
{
reset_memory();
g_disposed_string = 0;
g_disposed_bytes = 0;
borland_far_strdispose(0);
assert(g_disposed_string == 0 && g_disposed_bytes == 0);
memcpy(&g_source[100], "abc", 4);
borland_far_strdispose(source_at(100));
assert(g_disposed_string == source_at(100));
assert(g_disposed_bytes == 4);
}
static void test_duplicate(void)
{
reset_memory();
g_allocated_string = destination_at(1000);
g_allocated_bytes = 0;
assert(borland_far_strdup(0) == 0);
g_source[50] = 0;
assert(borland_far_strdup(source_at(50)) == 0);
memcpy(&g_source[100], "copy", 5);
assert(borland_far_strdup(source_at(100)) == g_allocated_string);
assert(g_allocated_bytes == 5);
assert(memcmp(&g_destination[1000], "copy", 5) == 0);
g_allocated_string = 0;
assert(borland_far_strdup(source_at(100)) == 0);
}
int main(void)
{
test_length_end_and_copy();
test_memmove_and_concat();
test_short_strings();
test_compare_and_search();
test_dispose();
test_duplicate();
return 0;
}