Files
FastSync/tests/test_delta.c
T
TapTap df250ec9c9 test: coverage for --checksum-choice/--cc and --checksum-seed
Unit: digest selection with known vectors (xxh64 seed 0/empty, md5 RFC vectors,
seed changes xxh64 but not md5, name mapping, bounded buffer rejection), CLI
parse (all spellings, = forms, --cc alias, unsupported rejected, seed strict
decimal), config wire round-trip and out-of-range algo rejection, and seeded
delta signature/compute symmetry (matching seed rebuilds, mismatched seed yields
no block matches). Integration: unchanged skip + same-size/mtime redetect for
xxh64 and md5 with and without -m, near-zero-data skip run, deterministic seed,
and a byte-exact seeded delta run.
2026-09-07 17:42:53 +02:00

711 lines
23 KiB
C

#include "test_utils.h"
#include "delta.h"
#include <string.h>
#include <stdlib.h>
static void test_adler32_basic() {
const char* data = "Hello";
uint32_t h = delta_adler32(data, 5);
EXPECT_TRUE(h != 0);
uint32_t h2 = delta_adler32(data, 5);
EXPECT_EQ_INT((int)h, (int)h2);
}
static void test_adler32_different_data() {
const char* a = "AAAA";
const char* b = "BBBB";
uint32_t ha = delta_adler32(a, 4);
uint32_t hb = delta_adler32(b, 4);
EXPECT_TRUE(ha != hb);
}
static void test_xxhash32_basic() {
const char* data = "Hello";
uint32_t h = delta_xxhash32(data, 5);
EXPECT_TRUE(h != 0);
uint32_t h2 = delta_xxhash32(data, 5);
EXPECT_EQ_INT((int)h, (int)h2);
}
static void test_xxhash32_different_data() {
const char* a = "AAAA";
const char* b = "BBBB";
uint32_t ha = delta_xxhash32(a, 4);
uint32_t hb = delta_xxhash32(b, 4);
EXPECT_TRUE(ha != hb);
}
static void test_xxhash64_different_data() {
EXPECT_TRUE(delta_xxhash64("AAAA", 4) != delta_xxhash64("BBBB", 4));
}
static void test_signature_roundtrip() {
char old_data[4096];
for (int i = 0; i < 4096; i++)
old_data[i] = (char)(i % 256);
DeltaSignature* sig = delta_signature_create(old_data, 4096, 1024);
EXPECT_NOT_NULL(sig);
EXPECT_EQ_INT((int)sig->block_count, 4);
EXPECT_EQ_INT((int)sig->block_size, 1024);
Data* serialized = delta_signature_serialize(sig);
EXPECT_NOT_NULL(serialized);
DeltaSignature* deserialized = delta_signature_deserialize(serialized);
EXPECT_NOT_NULL(deserialized);
EXPECT_EQ_INT((int)deserialized->block_count, (int)sig->block_count);
EXPECT_EQ_INT((int)deserialized->block_size, (int)sig->block_size);
for (uint32_t i = 0; i < sig->block_count; i++) {
EXPECT_EQ_INT((int)deserialized->blocks[i].adler32, (int)sig->blocks[i].adler32);
EXPECT_EQ_INT((int)deserialized->blocks[i].xxhash, (int)sig->blocks[i].xxhash);
}
delta_signature_destroy(sig);
data_destroy(serialized);
delta_signature_destroy(deserialized);
}
static void test_delta_identical_files() {
char data[2048];
for (int i = 0; i < 2048; i++)
data[i] = (char)(i % 128);
DeltaSignature* sig = delta_signature_create(data, 2048, 512);
EXPECT_NOT_NULL(sig);
Delta* delta = delta_compute(data, 2048, sig, 512);
EXPECT_NOT_NULL(delta);
bool has_match = false;
for (uint32_t i = 0; i < delta->instruction_count; i++) {
if (delta->instructions[i].type == DELTA_INSTR_BLOCK_MATCH) {
has_match = true;
break;
}
}
EXPECT_TRUE(has_match);
bool all_match = true;
for (uint32_t i = 0; i < delta->instruction_count; i++) {
if (delta->instructions[i].type != DELTA_INSTR_BLOCK_MATCH) {
all_match = false;
break;
}
}
EXPECT_TRUE(all_match);
delta_signature_destroy(sig);
delta_destroy(delta);
}
static void test_delta_small_edit() {
char old_data[4096];
char new_data[4096];
for (int i = 0; i < 4096; i++) {
old_data[i] = (char)(i % 256);
new_data[i] = old_data[i];
}
new_data[100] = 'X';
new_data[101] = 'Y';
new_data[102] = 'Z';
DeltaSignature* sig = delta_signature_create(old_data, 4096, 1024);
EXPECT_NOT_NULL(sig);
Delta* delta = delta_compute(new_data, 4096, sig, 1024);
EXPECT_NOT_NULL(delta);
uint64_t total_literal = 0;
uint32_t match_count = 0;
for (uint32_t i = 0; i < delta->instruction_count; i++) {
if (delta->instructions[i].type == DELTA_INSTR_LITERAL)
total_literal += delta->instructions[i].literal.length;
else
match_count++;
}
EXPECT_TRUE(match_count > 0);
EXPECT_TRUE(total_literal < 4096);
void* reconstructed = delta_apply(old_data, 4096, delta, 1024);
EXPECT_NOT_NULL(reconstructed);
EXPECT_EQ_INT(memcmp(reconstructed, new_data, 4096), 0);
free(reconstructed);
delta_signature_destroy(sig);
delta_destroy(delta);
}
static void test_delta_completely_different() {
char old_data[4096];
char new_data[4096];
for (int i = 0; i < 4096; i++) {
old_data[i] = (char)(i * 7 + 3);
new_data[i] = (char)(i * 13 + 97);
}
DeltaSignature* sig = delta_signature_create(old_data, 4096, 1024);
EXPECT_NOT_NULL(sig);
Delta* delta = delta_compute(new_data, 4096, sig, 1024);
EXPECT_NOT_NULL(delta);
bool has_match = false;
for (uint32_t i = 0; i < delta->instruction_count; i++) {
if (delta->instructions[i].type == DELTA_INSTR_BLOCK_MATCH) {
has_match = true;
break;
}
}
EXPECT_TRUE(!has_match);
EXPECT_TRUE(!delta_is_worthwhile(delta, 4096));
delta_signature_destroy(sig);
delta_destroy(delta);
}
static void test_delta_serialize_roundtrip() {
char old_data[4096];
char new_data[4096];
for (int i = 0; i < 4096; i++) {
old_data[i] = (char)(i % 256);
new_data[i] = old_data[i];
}
new_data[500] = 'A';
new_data[501] = 'B';
DeltaSignature* sig = delta_signature_create(old_data, 4096, 1024);
Delta* delta = delta_compute(new_data, 4096, sig, 1024);
EXPECT_NOT_NULL(delta);
Data* serialized = delta_serialize(delta);
EXPECT_NOT_NULL(serialized);
Delta* deserialized = delta_deserialize(serialized);
EXPECT_NOT_NULL(deserialized);
EXPECT_EQ_INT((int)deserialized->new_file_size, (int)delta->new_file_size);
EXPECT_EQ_INT((int)deserialized->instruction_count, (int)delta->instruction_count);
void* reconstructed = delta_apply(old_data, 4096, deserialized, 1024);
EXPECT_NOT_NULL(reconstructed);
EXPECT_EQ_INT(memcmp(reconstructed, new_data, 4096), 0);
free(reconstructed);
data_destroy(serialized);
delta_destroy(deserialized);
delta_signature_destroy(sig);
delta_destroy(delta);
}
static void test_delta_file_growth() {
char old_data[2048];
char new_data[3072];
for (int i = 0; i < 2048; i++)
old_data[i] = (char)(i % 256);
memcpy(new_data, old_data, 2048);
for (int i = 2048; i < 3072; i++)
new_data[i] = (char)(i % 256);
DeltaSignature* sig = delta_signature_create(old_data, 2048, 512);
EXPECT_NOT_NULL(sig);
Delta* delta = delta_compute(new_data, 3072, sig, 512);
EXPECT_NOT_NULL(delta);
void* reconstructed = delta_apply(old_data, 2048, delta, 512);
EXPECT_NOT_NULL(reconstructed);
EXPECT_EQ_INT(delta->new_file_size, 3072);
EXPECT_EQ_INT(memcmp(reconstructed, new_data, 3072), 0);
free(reconstructed);
delta_signature_destroy(sig);
delta_destroy(delta);
}
static void test_delta_file_shrink() {
char old_data[3072];
char new_data[2048];
for (int i = 0; i < 3072; i++)
old_data[i] = (char)(i % 256);
for (int i = 0; i < 2048; i++)
new_data[i] = old_data[i];
DeltaSignature* sig = delta_signature_create(old_data, 3072, 512);
EXPECT_NOT_NULL(sig);
Delta* delta = delta_compute(new_data, 2048, sig, 512);
EXPECT_NOT_NULL(delta);
void* reconstructed = delta_apply(old_data, 3072, delta, 512);
EXPECT_NOT_NULL(reconstructed);
EXPECT_EQ_INT(delta->new_file_size, 2048);
EXPECT_EQ_INT(memcmp(reconstructed, new_data, 2048), 0);
free(reconstructed);
delta_signature_destroy(sig);
delta_destroy(delta);
}
static void test_should_attempt() {
EXPECT_TRUE(delta_should_attempt(100000, 100000, DELTA_MAX_FILE_SIZE));
EXPECT_TRUE(!delta_should_attempt(100, 100, DELTA_MAX_FILE_SIZE));
EXPECT_TRUE(!delta_should_attempt(100000, 10, DELTA_MAX_FILE_SIZE));
EXPECT_TRUE(!delta_should_attempt(300000000, 300000000, DELTA_MAX_FILE_SIZE));
EXPECT_TRUE(delta_should_attempt(50000, 60000, DELTA_MAX_FILE_SIZE));
EXPECT_TRUE(!delta_should_attempt(50000, 600000, DELTA_MAX_FILE_SIZE));
EXPECT_TRUE(delta_should_attempt(50000, 60000, 500000));
EXPECT_TRUE(!delta_should_attempt(100000, 100000, 50000));
}
static void test_is_worthwhile() {
Delta d;
d.instruction_count = 1;
DeltaInstruction instr;
instr.type = DELTA_INSTR_BLOCK_MATCH;
d.instructions = &instr;
d.delta_size = 100;
EXPECT_TRUE(delta_is_worthwhile(&d, 1000));
d.delta_size = 800;
EXPECT_TRUE(!delta_is_worthwhile(&d, 1000));
d.instruction_count = 1;
instr.type = DELTA_INSTR_LITERAL;
EXPECT_TRUE(!delta_is_worthwhile(&d, 1000));
EXPECT_TRUE(!delta_is_worthwhile(NULL, 1000));
}
static void test_large_file_delta() {
uint32_t block_size = 8192;
uint64_t old_size = 200000;
uint64_t new_size = 200000;
void* old_data = malloc((size_t)old_size);
void* new_data = malloc((size_t)new_size);
EXPECT_TRUE(old_data != NULL && new_data != NULL);
for (uint64_t i = 0; i < old_size; i++)
((uint8_t*)old_data)[i] = (uint8_t)(i % 251);
memcpy(new_data, old_data, (size_t)old_size);
uint64_t offset = 100000;
uint32_t change_len = 4096;
for (uint32_t i = 0; i < change_len; i++)
((uint8_t*)new_data)[offset + i] = (uint8_t)((i * 7 + 13) % 256);
DeltaSignature* sig = delta_signature_create(old_data, old_size, block_size);
EXPECT_TRUE(sig != NULL);
EXPECT_TRUE(sig->block_count == (uint32_t)((old_size + block_size - 1) / block_size));
Delta* delta = delta_compute(new_data, new_size, sig, block_size);
EXPECT_TRUE(delta != NULL);
uint64_t total_literal = 0;
uint32_t match_count = 0;
for (uint32_t i = 0; i < delta->instruction_count; i++) {
if (delta->instructions[i].type == DELTA_INSTR_LITERAL)
total_literal += delta->instructions[i].literal.length;
else
match_count++;
}
EXPECT_TRUE(total_literal > 0);
EXPECT_TRUE(match_count > 0);
EXPECT_TRUE(delta->delta_size < new_size / 2);
void* result = delta_apply(old_data, old_size, delta, block_size);
EXPECT_TRUE(result != NULL);
EXPECT_TRUE(delta->new_file_size == new_size);
EXPECT_TRUE(memcmp(result, new_data, (size_t)new_size) == 0);
free(result);
delta_destroy(delta);
delta_signature_destroy(sig);
free(old_data);
free(new_data);
}
static void test_delta_apply_rejects_output_overflow() {
uint8_t old_data[8] = {0};
uint8_t literal_data[2] = {'x', 'y'};
DeltaInstruction instruction = {
.type = DELTA_INSTR_LITERAL,
.literal = {.data = literal_data, .length = sizeof(literal_data)},
};
Delta delta = {
.new_file_size = 1,
.instruction_count = 1,
.instructions = &instruction,
};
EXPECT_TRUE(delta_apply(old_data, sizeof(old_data), &delta, 1) == NULL);
}
/* ---------------------------------------------------------------------------
* Hash-index lookup differential tests.
*
* delta_compute buckets signature blocks by their weak checksum. These tests
* prove the bucket-indexed candidate lookup is behaviour-identical to the
* original per-window linear scan: the emitted instruction stream (types,
* lengths, literal bytes and chosen block indices) must match a naive linear
* reference exactly, and the delta must reconstruct the new buffer.
* ------------------------------------------------------------------------- */
#define REF_NO_MATCH UINT32_MAX
typedef struct {
DeltaInstruction* items;
uint32_t count;
uint32_t cap;
} RefDelta;
static void ref_delta_free(RefDelta* ref) {
if (!ref->items)
return;
for (uint32_t i = 0; i < ref->count; i++)
if (ref->items[i].type == DELTA_INSTR_LITERAL)
free(ref->items[i].literal.data);
free(ref->items);
ref->items = NULL;
ref->count = 0;
ref->cap = 0;
}
static bool ref_delta_push(RefDelta* ref, DeltaInstruction instr) {
if (ref->count == ref->cap) {
uint32_t new_cap = ref->cap ? ref->cap * 2 : 16;
DeltaInstruction* tmp = realloc(ref->items, (size_t)new_cap * sizeof(DeltaInstruction));
if (!tmp)
return false;
ref->items = tmp;
ref->cap = new_cap;
}
ref->items[ref->count++] = instr;
return true;
}
static bool ref_delta_flush_literal(RefDelta* ref, const uint8_t* data, uint64_t start,
uint64_t end) {
if (start >= end)
return true;
uint8_t* lit = malloc((size_t)(end - start));
if (!lit)
return false;
memcpy(lit, data + start, (size_t)(end - start));
DeltaInstruction instr = {
.type = DELTA_INSTR_LITERAL,
.literal = {.data = lit, .length = (uint32_t)(end - start)},
};
return ref_delta_push(ref, instr);
}
/* Naive O(windows x blocks) re-implementation of the historical delta_compute
* candidate scan: only full windows may match, a candidate needs both the weak
* (Adler-32) and strong (xxHash32) checksums to agree, and the lowest matching
* block index is selected. */
static bool ref_delta_build(RefDelta* ref, const uint8_t* new_data, uint64_t new_size,
const DeltaSignature* sig) {
uint32_t block_size = sig->block_size;
uint64_t i = 0;
uint64_t literal_start = 0;
bool has_literal = false;
while (i < new_size) {
uint32_t window_len = (uint32_t)((new_size - i < block_size) ? (new_size - i) : block_size);
bool full_window = (window_len == block_size);
uint32_t matched = REF_NO_MATCH;
if (full_window) {
uint32_t adler = delta_adler32(new_data + i, window_len);
for (uint32_t j = 0; j < sig->block_count; j++) {
if (sig->blocks[j].adler32 == adler &&
delta_xxhash32(new_data + i, window_len) == sig->blocks[j].xxhash) {
matched = j;
break;
}
}
}
if (matched != REF_NO_MATCH) {
if (has_literal) {
if (!ref_delta_flush_literal(ref, new_data, literal_start, i))
return false;
has_literal = false;
}
DeltaInstruction instr = {
.type = DELTA_INSTR_BLOCK_MATCH,
.match = {.block_index = matched, .block_offset = 0, .length = window_len},
};
if (!ref_delta_push(ref, instr))
return false;
i += window_len;
} else {
if (!has_literal) {
literal_start = i;
has_literal = true;
}
i++;
}
}
if (has_literal && !ref_delta_flush_literal(ref, new_data, literal_start, new_size))
return false;
return true;
}
static bool ref_delta_matches(const RefDelta* ref, const Delta* delta) {
if (ref->count != delta->instruction_count)
return false;
for (uint32_t i = 0; i < ref->count; i++) {
const DeltaInstruction* a = &ref->items[i];
const DeltaInstruction* b = &delta->instructions[i];
if (a->type != b->type)
return false;
if (a->type == DELTA_INSTR_BLOCK_MATCH) {
if (a->match.block_index != b->match.block_index ||
a->match.block_offset != b->match.block_offset || a->match.length != b->match.length)
return false;
} else {
if (a->literal.length != b->literal.length ||
memcmp(a->literal.data, b->literal.data, a->literal.length) != 0)
return false;
}
}
return true;
}
static void expect_linear_reference_match(const uint8_t* old_data, uint64_t old_size,
const uint8_t* new_data, uint64_t new_size,
uint32_t block_size, const char* label) {
DeltaSignature* sig = delta_signature_create(old_data, old_size, block_size);
if (!sig) {
printf(" [FAIL] %s: signature creation failed\n", label);
EXPECT_NOT_NULL(sig);
return;
}
Delta* delta = delta_compute(new_data, new_size, sig, block_size);
if (!delta) {
printf(" [FAIL] %s: delta_compute returned NULL\n", label);
delta_signature_destroy(sig);
EXPECT_NOT_NULL(delta);
return;
}
RefDelta ref = {0};
bool ok = ref_delta_build(&ref, new_data, new_size, sig);
if (ok)
ok = ref_delta_matches(&ref, delta);
if (!ok) {
printf(" [FAIL] %s: instruction stream differs from linear reference "
"(linear=%u indexed=%u)\n",
label, ref.count, delta->instruction_count);
}
ref_delta_free(&ref);
delta_destroy(delta);
delta_signature_destroy(sig);
EXPECT_TRUE(ok);
}
static void fill_delta_pattern(uint8_t* buf, uint64_t size, uint32_t seed) {
uint32_t x = seed ? seed : 1;
for (uint64_t i = 0; i < size; i++) {
x ^= x << 13;
x ^= x >> 17;
x ^= x << 5;
buf[i] = (uint8_t)(x >> 24);
}
}
static void test_delta_hash_index_matches_linear_reference() {
/* Identical file (full block alignment). */
uint8_t old_a[32768];
uint8_t new_a[32768];
fill_delta_pattern(old_a, sizeof(old_a), 42);
memcpy(new_a, old_a, sizeof(old_a));
expect_linear_reference_match(old_a, sizeof(old_a), new_a, sizeof(new_a), 2048,
"identical 32KiB @ 2KiB");
/* Scattered single-byte edits in the middle of each block. */
uint8_t new_b[32768];
memcpy(new_b, old_a, sizeof(old_a));
for (size_t p = 100; p < sizeof(new_b); p += 4096)
new_b[p] ^= 0x5A;
expect_linear_reference_match(old_a, sizeof(old_a), new_b, sizeof(new_b), 2048,
"32KiB scattered single-byte edits @ 2KiB");
/* Non-aligned old file (partial final block) with a single edit. */
uint8_t old_c[30000];
uint8_t new_c[30000];
fill_delta_pattern(old_c, sizeof(old_c), 7);
memcpy(new_c, old_c, sizeof(old_c));
new_c[15000] ^= 0x3C;
expect_linear_reference_match(old_c, sizeof(old_c), new_c, sizeof(new_c), 2048,
"30KiB partial-tail single edit @ 2KiB");
/* Growth: appended data after an identical prefix. */
uint8_t old_d[24576];
uint8_t new_d[34576];
fill_delta_pattern(old_d, sizeof(old_d), 11);
memcpy(new_d, old_d, sizeof(old_d));
fill_delta_pattern(new_d + sizeof(old_d), sizeof(new_d) - sizeof(old_d), 23);
expect_linear_reference_match(old_d, sizeof(old_d), new_d, sizeof(new_d), 2048,
"24KiB -> 34KiB appended @ 2KiB");
/* Insertion shifting everything after the edit point (rsync re-sync). */
uint8_t old_e[65536];
uint8_t new_e[65536 + 3000];
fill_delta_pattern(old_e, sizeof(old_e), 99);
memcpy(new_e, old_e, 20000);
fill_delta_pattern(new_e + 20000, 3000, 101);
memcpy(new_e + 23000, old_e + 20000, sizeof(old_e) - 20000);
expect_linear_reference_match(old_e, sizeof(old_e), new_e, sizeof(new_e), 2048,
"64KiB + 3KiB insertion @ 2KiB");
/* Deletion shrinking the file. */
uint8_t new_f[sizeof(old_e) - 5000];
memcpy(new_f, old_e, 30000);
memcpy(new_f + 30000, old_e + 35000, sizeof(old_e) - 35000);
expect_linear_reference_match(old_e, sizeof(old_e), new_f, sizeof(new_f), 2048,
"64KiB - 5KiB deletion @ 2KiB");
/* Repeated identical blocks must resolve to the lowest block index. */
uint8_t old_g[4 * 4096];
uint8_t new_g[4 * 4096];
for (uint32_t b = 0; b < 4; b++)
fill_delta_pattern(old_g + b * 4096, 4096, b % 2 == 0 ? 500 : 501); /* block0==block2 */
memcpy(new_g, old_g, sizeof(old_g));
new_g[4096 + 5] ^= 0x11; /* edit inside the second (duplicated) chunk */
expect_linear_reference_match(old_g, sizeof(old_g), new_g, sizeof(new_g), 4096,
"duplicated chunks @ 4KiB");
/* Block larger than the file: nothing can match, all literal. */
uint8_t old_h[1000];
uint8_t new_h[1000];
fill_delta_pattern(old_h, sizeof(old_h), 3);
memcpy(new_h, old_h, sizeof(old_h));
expect_linear_reference_match(old_h, sizeof(old_h), new_h, sizeof(new_h), 4096,
"1KiB file @ 4KiB block");
}
static void test_delta_hash_index_large_mostly_matching() {
const uint64_t size = 4ULL * 1024 * 1024;
const uint32_t block_size = 8192;
uint8_t* old_data = malloc((size_t)size);
uint8_t* new_data = malloc((size_t)size);
EXPECT_TRUE(old_data != NULL && new_data != NULL);
fill_delta_pattern(old_data, size, 1234);
memcpy(new_data, old_data, (size_t)size);
/* Scattered single-byte changes across the whole buffer. Each change forces
* the diff to re-synchronise by walking one byte at a time through the
* affected block, which is exactly the case that used to cost O(bytes x
* blocks) with the linear scan. */
const uint64_t nchanges = 64;
for (uint64_t c = 0; c < nchanges; c++) {
uint64_t pos = (c * (size / nchanges)) + (c % 17);
new_data[pos] ^= (uint8_t)(0xA0 + (c % 16));
}
DeltaSignature* sig = delta_signature_create(old_data, size, block_size);
EXPECT_NOT_NULL(sig);
EXPECT_EQ_INT((int)sig->block_count, (int)(size / block_size));
Delta* delta = delta_compute(new_data, size, sig, block_size);
EXPECT_NOT_NULL(delta);
EXPECT_EQ_INT((int)delta->new_file_size, (int)size);
uint32_t match_count = 0;
for (uint32_t i = 0; i < delta->instruction_count; i++)
if (delta->instructions[i].type == DELTA_INSTR_BLOCK_MATCH)
match_count++;
EXPECT_TRUE(match_count > 0);
void* result = delta_apply(old_data, size, delta, block_size);
EXPECT_NOT_NULL(result);
EXPECT_EQ_INT(memcmp(result, new_data, (size_t)size), 0);
free(result);
delta_destroy(delta);
delta_signature_destroy(sig);
free(old_data);
free(new_data);
}
/* --checksum-seed: the delta strong (block) hash is genuinely seed-aware. A
* nonzero seed changes the per-block xxHash32, and a signature + delta computed
* with the same seed still reconstruct the file exactly (symmetric), while a
* mismatched seed produces a delta that does not match the signature blocks. */
static void test_delta_xxhash32_seeded() {
const char* data = "seedme";
uint32_t a = delta_xxhash32(data, 6);
uint32_t b = delta_xxhash32_seeded(data, 6, 42);
uint32_t c = delta_xxhash32_seeded(data, 6, 42);
EXPECT_TRUE(a != b);
EXPECT_EQ_INT((int)b, (int)c);
/* Unseeded == seeded with 0 (default reproduces today's behavior). */
EXPECT_EQ_INT((int)delta_xxhash32(data, 6), (int)delta_xxhash32_seeded(data, 6, 0));
}
static void test_delta_seeded_signature_compute_matches() {
uint32_t block_size = 1024;
/* Identical old/new data with a non-zero seed: the receiver builds a seeded
signature and the sender computes a seeded delta over the same bytes, so
every block matches and applying the delta rebuilds the file exactly. */
char data[4096];
for (int i = 0; i < 4096; i++)
data[i] = (char)(i % 256);
DeltaSignature* sig = delta_signature_create_seeded(data, 4096, block_size, 99);
EXPECT_NOT_NULL(sig);
Delta* delta = delta_compute_seeded(data, 4096, sig, block_size, 99);
EXPECT_NOT_NULL(delta);
void* rebuilt = delta_apply(data, 4096, delta, block_size);
EXPECT_NOT_NULL(rebuilt);
EXPECT_TRUE(memcmp(rebuilt, data, 4096) == 0);
free(rebuilt);
delta_destroy(delta);
delta_signature_destroy(sig);
/* A MISMATCHED seed means the sender's window xxHash32 never equals the
receiver's signature-block xxHash32: no block can match, so the delta is
not worthwhile / has no block matches. This proves the seed really gates
the block comparison rather than being an inert parameter. */
sig = delta_signature_create_seeded(data, 4096, block_size, 99);
EXPECT_NOT_NULL(sig);
delta = delta_compute_seeded(data, 4096, sig, block_size, 7);
EXPECT_NOT_NULL(delta);
bool any_match = false;
for (uint32_t i = 0; i < delta->instruction_count; i++)
if (delta->instructions[i].type == DELTA_INSTR_BLOCK_MATCH)
any_match = true;
EXPECT_FALSE(any_match);
delta_destroy(delta);
delta_signature_destroy(sig);
}
void test_delta() {
test_adler32_basic();
test_adler32_different_data();
test_xxhash32_basic();
test_xxhash32_different_data();
test_xxhash64_different_data();
test_delta_xxhash32_seeded();
test_signature_roundtrip();
test_delta_identical_files();
test_delta_small_edit();
test_delta_completely_different();
test_delta_serialize_roundtrip();
test_delta_file_growth();
test_delta_file_shrink();
test_should_attempt();
test_is_worthwhile();
test_large_file_delta();
test_delta_apply_rejects_output_overflow();
test_delta_hash_index_matches_linear_reference();
test_delta_hash_index_large_mostly_matching();
test_delta_seeded_signature_compute_matches();
}