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-rw-r--r--lib/bk_zip/bk_unzip.cpp118
1 files changed, 118 insertions, 0 deletions
diff --git a/lib/bk_zip/bk_unzip.cpp b/lib/bk_zip/bk_unzip.cpp
new file mode 100644
index 0000000..f276d07
--- /dev/null
+++ b/lib/bk_zip/bk_unzip.cpp
@@ -0,0 +1,118 @@
+#include <vector>
+#include <stdexcept>
+#include <cstdint>
+#include <cstring>
+#include <string>
+#include <utility>
+#include <zlib.h>
+#include "bk_unzip.h"
+#include "spdlog/spdlog.h"
+
+namespace BK64 {
+
+static const char* zlibResultName(int result) {
+ switch (result) {
+ case Z_OK:
+ return "Z_OK";
+ case Z_STREAM_END:
+ return "Z_STREAM_END";
+ case Z_NEED_DICT:
+ return "Z_NEED_DICT";
+ case Z_ERRNO:
+ return "Z_ERRNO";
+ case Z_STREAM_ERROR:
+ return "Z_STREAM_ERROR";
+ case Z_DATA_ERROR:
+ return "Z_DATA_ERROR";
+ case Z_MEM_ERROR:
+ return "Z_MEM_ERROR";
+ case Z_BUF_ERROR:
+ return "Z_BUF_ERROR";
+ case Z_VERSION_ERROR:
+ return "Z_VERSION_ERROR";
+ default:
+ return "UNKNOWN";
+ }
+}
+
+/**
+ * Implementation of bk_unzip as declared in bk_unzip.h
+ */
+uint8_t* bk_unzip(const uint8_t* in_buffer, uint32_t* size) {
+ // Check buffer size
+ if (*size < 6) {
+ throw std::runtime_error("Input buffer too small");
+ }
+
+ // Check for BK magic header
+ if (in_buffer[0] != 0x11 || in_buffer[1] != 0x72) {
+ throw std::runtime_error("Input buffer does not have BK header");
+ }
+
+ // Extract expected uncompressed length (big-endian)
+ uint32_t expected_len = (static_cast<uint32_t>(in_buffer[2]) << 24) | (static_cast<uint32_t>(in_buffer[3]) << 16) |
+ (static_cast<uint32_t>(in_buffer[4]) << 8) | static_cast<uint32_t>(in_buffer[5]);
+
+ if (expected_len == 0) {
+ *size = 0;
+ return (uint8_t*)malloc(1);
+ }
+
+ if (expected_len > 8 * 1024 * 1024) {
+ throw std::runtime_error("BKZIP expected size too large: " + std::to_string(expected_len) +
+ " bytes (compressed: " + std::to_string(*size) + ")");
+ }
+
+ uint8_t* out_buffer = (uint8_t*)malloc(expected_len);
+ memset(out_buffer, 0, expected_len);
+
+ // Set up zlib stream
+ z_stream stream;
+ stream.zalloc = Z_NULL;
+ stream.zfree = Z_NULL;
+ stream.opaque = Z_NULL;
+ stream.avail_in = static_cast<uInt>(*size - 6);
+ stream.next_in = const_cast<Bytef*>(in_buffer + 6);
+ stream.avail_out = static_cast<uInt>(expected_len);
+ stream.next_out = out_buffer;
+
+ // Initialize for raw inflate (no zlib/gzip header) - same as wbits=-15 in Python
+ int result = inflateInit2(&stream, -15);
+ if (result != Z_OK) {
+ throw std::runtime_error(std::string("Failed to initialize zlib: ") + zlibResultName(result) +
+ (stream.msg ? std::string(" (") + stream.msg + ")" : ""));
+ }
+
+ // Perform decompression
+ result = inflate(&stream, Z_FINISH);
+
+ // Check for successful decompression:
+ // - Z_STREAM_END: normal completion
+ // - Z_BUF_ERROR with no input remaining: input fully consumed
+ bool success = (result == Z_STREAM_END) || (result == Z_BUF_ERROR && stream.avail_in == 0);
+
+ // Clean up zlib stream
+ inflateEnd(&stream);
+
+ if (!success) {
+ free(out_buffer);
+ throw std::runtime_error(std::string("Decompression failed: ") + zlibResultName(result) +
+ (stream.msg ? std::string(" (") + stream.msg + ")" : "") +
+ " compressed=" + std::to_string(*size) + " expected=" + std::to_string(expected_len) +
+ " produced=" + std::to_string(stream.total_out));
+ }
+
+ // Resize buffer to the actual decompressed size
+ // out_buffer.resize(stream.total_out);
+ *size = stream.total_out;
+
+ // Verify decompressed size matches expected size
+ if (stream.total_out != expected_len) {
+ throw std::runtime_error("Decompressed size (" + std::to_string(stream.total_out) +
+ ") does not match expected size (" + std::to_string(expected_len) + ")");
+ }
+
+ return out_buffer;
+}
+
+} // namespace BK64