222 lines
7.1 KiB
C
222 lines
7.1 KiB
C
#include "test_utils.h"
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#include "chunk.h"
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#include "compression.h"
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#include "data.h"
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#include "file.h"
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#include "utils.h"
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#include <string.h>
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#include <sys/stat.h>
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#include <threads.h>
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#include <unistd.h>
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static void test_data_compress_decompress_roundtrip() {
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const char original[] = "Hello, World! This is test data for compression round-trip!";
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size_t len = strlen(original);
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char* buf = malloc(len);
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if (!buf)
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return;
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memcpy(buf, original, len);
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Data* original_data = data_create(buf, len);
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EXPECT_NOT_NULL(original_data);
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Data* compressed = data_compress(original_data, 3);
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EXPECT_NOT_NULL(compressed);
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Data* decompressed = data_decompress(compressed);
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EXPECT_NOT_NULL(decompressed);
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EXPECT_EQ_INT((int)decompressed->size, (int)len);
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EXPECT_EQ_INT(memcmp(decompressed->data, original, len), 0);
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data_destroy(original_data);
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data_destroy(compressed);
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data_destroy(decompressed);
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}
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static void test_data_compress_decompress_large() {
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size_t size = 1024 * 10;
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char* original = malloc(size);
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EXPECT_NOT_NULL(original);
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for (size_t i = 0; i < size; i++)
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original[i] = (char)(i % 256);
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Data* original_data = data_create(original, size);
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EXPECT_NOT_NULL(original_data);
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Data* compressed = data_compress(original_data, 1);
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EXPECT_NOT_NULL(compressed);
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Data* decompressed = data_decompress(compressed);
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EXPECT_NOT_NULL(decompressed);
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EXPECT_EQ_INT((int)decompressed->size, (int)size);
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EXPECT_EQ_INT(memcmp(decompressed->data, original, size), 0);
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data_destroy(original_data);
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data_destroy(compressed);
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data_destroy(decompressed);
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}
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static void test_skip_compress_suffix_matching() {
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char* suffixes[] = {".ZIP", ".GZ"};
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EXPECT_TRUE(compression_should_skip_with_suffixes("archive.zip", suffixes, 2));
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EXPECT_TRUE(compression_should_skip_with_suffixes("backup.TAR.GZ", suffixes, 2));
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EXPECT_FALSE(compression_should_skip_with_suffixes("notes.txt", suffixes, 2));
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EXPECT_FALSE(compression_should_skip_with_suffixes("archive.zip", suffixes, 0));
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}
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static void test_data_compress_with_threads_roundtrip() {
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const size_t size = 8 * 1024 * 1024;
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Data* input = data_create_empty(size);
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EXPECT_NOT_NULL(input);
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for (size_t i = 0; i < size; i++)
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((char*)input->data)[i] = (char)((i / 4096) % 7);
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Data* compressed = data_compress_with_threads(input, 3, 2);
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EXPECT_NOT_NULL(compressed);
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Data* decompressed = data_decompress(compressed);
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EXPECT_NOT_NULL(decompressed);
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EXPECT_EQ_INT((int)decompressed->size, (int)size);
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EXPECT_EQ_INT(memcmp(decompressed->data, input->data, size), 0);
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data_destroy(input);
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data_destroy(compressed);
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data_destroy(decompressed);
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}
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static void test_chunk_compress_decompress_roundtrip() {
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char* path1 = "temp_comp_test_1.txt";
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char* content1 = "chunk compression test file 1";
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unsigned long long len1 = strlen(content1);
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char* path2 = "temp_comp_test_2.txt";
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char* content2 = "chunk compression test file 2 with more data";
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unsigned long long len2 = strlen(content2);
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file_write_to_disk(path1, content1, len1, false, false);
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file_write_to_disk(path2, content2, len2, false, false);
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struct stat st1, st2;
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EXPECT_EQ_INT(stat(path1, &st1), 0);
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EXPECT_EQ_INT(stat(path2, &st2), 0);
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File* f1 = file_create(path1);
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f1->data->size = st1.st_size;
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File* f2 = file_create(path2);
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f2->data->size = st2.st_size;
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EXPECT_NOT_NULL(f1);
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EXPECT_NOT_NULL(f2);
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file_load_data(f1);
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file_load_data(f2);
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File* files[2] = {f1, f2};
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Chunk* chunk = chunk_create(files, 2);
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EXPECT_NOT_NULL(chunk);
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Data* compressed = chunk_compress(chunk, 3, false);
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EXPECT_NOT_NULL(compressed);
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Data* decompressed_data = data_decompress(compressed);
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EXPECT_NOT_NULL(decompressed_data);
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Chunk* decompressed_chunk = chunk_deserialize(decompressed_data, false);
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EXPECT_NOT_NULL(decompressed_chunk);
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EXPECT_EQ_INT(decompressed_chunk->element_count, 2);
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EXPECT_EQ_STR(decompressed_chunk->items[0]->path, path1);
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EXPECT_EQ_INT((int)decompressed_chunk->items[0]->data->size, (int)len1);
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EXPECT_EQ_INT(memcmp(decompressed_chunk->items[0]->data->data, content1, len1), 0);
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EXPECT_EQ_STR(decompressed_chunk->items[1]->path, path2);
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EXPECT_EQ_INT((int)decompressed_chunk->items[1]->data->size, (int)len2);
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EXPECT_EQ_INT(memcmp(decompressed_chunk->items[1]->data->data, content2, len2), 0);
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chunk_destroy(chunk);
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data_destroy(compressed);
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data_destroy(decompressed_data);
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chunk_destroy(decompressed_chunk);
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unlink(path1);
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unlink(path2);
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}
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typedef struct {
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int id;
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int iterations;
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bool ok;
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} CompressionThreadArg;
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/* Each worker exercises the per-thread cached zstd contexts: several
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* compress/decompress round-trips with varying payload sizes, levels and
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* worker counts so the context is reused (and its parameters re-applied)
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* across calls, concurrently with other workers. */
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static int compression_reuse_worker(void* arg) {
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CompressionThreadArg* a = (CompressionThreadArg*)arg;
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a->ok = true;
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for (int it = 0; it < a->iterations; it++) {
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size_t size = 512 + (size_t)((a->id * 7919 + it * 104729) % (48 * 1024));
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char* original = malloc(size);
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if (!original) {
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a->ok = false;
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break;
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}
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for (size_t i = 0; i < size; i++)
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original[i] = (char)((i * 31 + (size_t)a->id + (size_t)it * 7) % 251);
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Data* input = data_create(original, size);
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if (!input) { /* data_create takes ownership of original, even on failure */
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a->ok = false;
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break;
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}
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int level = 1 + ((it / 2) % 5);
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int threads = ((it / 2) % 2 == 0) ? 2 : 0;
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Data* compressed = data_compress_with_threads(input, level, threads);
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if (!compressed) {
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data_destroy(input);
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a->ok = false;
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break;
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}
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Data* decompressed = data_decompress(compressed);
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bool roundtrip_ok = decompressed != NULL && decompressed->size == size &&
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memcmp(decompressed->data, original, size) == 0;
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data_destroy(decompressed);
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data_destroy(compressed);
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data_destroy(input);
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if (!roundtrip_ok) {
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a->ok = false;
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break;
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}
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}
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/* Deliberately do NOT free the thread context here: the C11 tss destructor
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* must release it when this thread exits (validated by LeakSanitizer). */
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return thrd_success;
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}
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static void test_data_compress_reused_contexts_multithreaded() {
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enum { NTHREADS = 8, ITERATIONS = 6 };
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thrd_t threads[NTHREADS];
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CompressionThreadArg args[NTHREADS];
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bool all_created = true;
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for (int i = 0; i < NTHREADS; i++) {
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args[i].id = i;
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args[i].iterations = ITERATIONS;
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args[i].ok = false;
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if (thrd_create(&threads[i], compression_reuse_worker, &args[i]) != thrd_success) {
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all_created = false;
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break;
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}
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}
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EXPECT_TRUE(all_created);
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for (int i = 0; i < NTHREADS; i++)
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EXPECT_EQ_INT(thrd_join(threads[i], NULL), thrd_success);
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for (int i = 0; i < NTHREADS; i++)
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EXPECT_TRUE(args[i].ok);
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compression_free_thread_contexts();
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}
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void test_compression() {
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test_data_compress_decompress_roundtrip();
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test_data_compress_decompress_large();
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test_skip_compress_suffix_matching();
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test_data_compress_with_threads_roundtrip();
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test_data_compress_reused_contexts_multithreaded();
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test_chunk_compress_decompress_roundtrip();
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}
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