mirror of
https://github.com/akuker/RASCSI.git
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7bbcf59c76
* scsictl accepts generic key/value pairs for options that take parameters
243 lines
6.0 KiB
C++
243 lines
6.0 KiB
C++
//---------------------------------------------------------------------------
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//
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// SCSI Target Emulator PiSCSI
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// for Raspberry Pi
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//
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// Copyright (C) 2021-2023 Uwe Seimet
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//
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//---------------------------------------------------------------------------
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#include "shared/piscsi_exceptions.h"
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#include "piscsi_util.h"
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#include "protobuf_util.h"
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#include <unistd.h>
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#include <sstream>
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#include <array>
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#include <vector>
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#include <iomanip>
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using namespace std;
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using namespace piscsi_util;
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using namespace piscsi_interface;
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#define FPRT(fp, ...) fprintf(fp, __VA_ARGS__ )
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void protobuf_util::ParseParameters(PbDeviceDefinition& device, const string& params)
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{
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if (params.empty()) {
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return;
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}
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// Old style parameter (filename), for backwards compatibility only
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if (params.find(KEY_VALUE_SEPARATOR) == string::npos) {
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SetParam(device, "file", params);
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return;
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}
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for (const auto& p : Split(params, COMPONENT_SEPARATOR)) {
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if (const auto& param = Split(p, KEY_VALUE_SEPARATOR, 2); param.size() == 2) {
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SetParam(device, param[0], param[1]);
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}
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}
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}
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string protobuf_util::SetCommandParams(PbCommand& command, const string& params)
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{
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if (params.find(KEY_VALUE_SEPARATOR) != string::npos) {
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return SetFromGenericParams(command, params);
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}
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string folder_pattern;
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string file_pattern;
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string operations;
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switch (const auto& components = Split(params, COMPONENT_SEPARATOR, 3); components.size()) {
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case 3:
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operations = components[2];
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[[fallthrough]];
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case 2:
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folder_pattern = components[0];
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file_pattern = components[1];
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break;
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case 1:
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file_pattern = components[0];
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break;
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default:
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break;
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}
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SetParam(command, "folder_pattern", folder_pattern);
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SetParam(command, "file_pattern", file_pattern);
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SetParam(command, "operations", operations);
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return "";
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}
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string protobuf_util::SetFromGenericParams(PbCommand& command, const string& params)
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{
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for (const string& key_value : Split(params, COMPONENT_SEPARATOR)) {
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const auto& param = Split(key_value, KEY_VALUE_SEPARATOR, 2);
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if (param.size() > 1 && !param[0].empty()) {
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SetParam(command, param[0], param[1]);
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}
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else {
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return "Parameter '" + key_value + "' has to be a key/value pair";
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}
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}
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return "";
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}
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void protobuf_util::SetProductData(PbDeviceDefinition& device, const string& data)
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{
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const auto& components = Split(data, COMPONENT_SEPARATOR, 3);
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switch (components.size()) {
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case 3:
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device.set_revision(components[2]);
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[[fallthrough]];
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case 2:
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device.set_product(components[1]);
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[[fallthrough]];
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case 1:
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device.set_vendor(components[0]);
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break;
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default:
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break;
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}
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}
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string protobuf_util::SetIdAndLun(PbDeviceDefinition& device, const string& value)
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{
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int id;
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int lun;
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if (const string error = ProcessId(value, id, lun); !error.empty()) {
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return error;
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}
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device.set_id(id);
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device.set_unit(lun != -1 ? lun : 0);
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return "";
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}
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string protobuf_util::ListDevices(const vector<PbDevice>& pb_devices)
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{
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if (pb_devices.empty()) {
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return "No devices currently attached.\n";
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}
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ostringstream s;
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s << "+----+-----+------+-------------------------------------\n"
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<< "| ID | LUN | TYPE | IMAGE FILE\n"
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<< "+----+-----+------+-------------------------------------\n";
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vector<PbDevice> devices = pb_devices;
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ranges::sort(devices, [](const auto& a, const auto& b) { return a.id() < b.id() || a.unit() < b.unit(); });
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for (const auto& device : devices) {
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string filename;
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switch (device.type()) {
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case SCBR:
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filename = "X68000 HOST BRIDGE";
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break;
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case SCDP:
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filename = "DaynaPort SCSI/Link";
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break;
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case SCHS:
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filename = "Host Services";
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break;
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case SCLP:
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filename = "SCSI Printer";
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break;
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default:
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filename = device.file().name();
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break;
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}
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s << "| " << device.id() << " | " << setw(3) << device.unit() << " | " << PbDeviceType_Name(device.type()) << " | "
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<< (filename.empty() ? "NO MEDIUM" : filename)
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<< (!device.status().removed() && (device.properties().read_only() || device.status().protected_()) ? " (READ-ONLY)" : "")
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<< '\n';
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}
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s << "+----+-----+------+-------------------------------------\n";
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return s.str();
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}
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//---------------------------------------------------------------------------
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//
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// Serialize/Deserialize protobuf message: Length followed by the actual data.
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// A little endian platform is assumed.
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//
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//---------------------------------------------------------------------------
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void protobuf_util::SerializeMessage(int fd, const google::protobuf::Message& message)
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{
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const string data = message.SerializeAsString();
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// Write the size of the protobuf data as a header
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const auto size = static_cast<int32_t>(data.length());
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if (write(fd, &size, sizeof(size)) != sizeof(size)) {
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throw io_exception("Can't write protobuf message size");
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}
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// Write the actual protobuf data
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if (write(fd, data.data(), size) != size) {
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throw io_exception("Can't write protobuf message data");
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}
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}
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void protobuf_util::DeserializeMessage(int fd, google::protobuf::Message& message)
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{
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// Read the header with the size of the protobuf data
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array<byte, sizeof(int32_t)> header_buf;
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if (ReadBytes(fd, header_buf) < header_buf.size()) {
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throw io_exception("Can't read protobuf message size");
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}
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const int size = (static_cast<int>(header_buf[3]) << 24) + (static_cast<int>(header_buf[2]) << 16)
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+ (static_cast<int>(header_buf[1]) << 8) + static_cast<int>(header_buf[0]);
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if (size < 0) {
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throw io_exception("Invalid protobuf message size");
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}
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// Read the binary protobuf data
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vector<byte> data_buf(size);
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if (ReadBytes(fd, data_buf) != data_buf.size()) {
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throw io_exception("Invalid protobuf message data");
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}
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message.ParseFromArray(data_buf.data(), size);
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}
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size_t protobuf_util::ReadBytes(int fd, span<byte> buf)
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{
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size_t offset = 0;
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while (offset < buf.size()) {
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const auto len = read(fd, &buf.data()[offset], buf.size() - offset);
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if (len == -1) {
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throw io_exception("Read error: " + string(strerror(errno)));
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}
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if (!len) {
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break;
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}
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offset += len;
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}
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return offset;
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}
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