* Changing default timeout for start maintenance. * Upgrading dependencies to gorealis v2 and thrift 0.12.0 * Refactored to update to gorealis v2.
308 lines
8 KiB
C
308 lines
8 KiB
C
//
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// Licensed to the Apache Software Foundation (ASF) under one
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// or more contributor license agreements. See the NOTICE file
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// distributed with this work for additional information
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// regarding copyright ownership. The ASF licenses this file
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// to you under the Apache License, Version 2.0 (the
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// "License"); you may not use this file except in compliance
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// with the License. You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing,
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// software distributed under the License is distributed on an
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// "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
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// KIND, either express or implied. See the License for the
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// specific language governing permissions and limitations
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// under the License.
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//
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#include <lua.h>
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#include <lauxlib.h>
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#include <string.h>
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#include <inttypes.h>
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#include <netinet/in.h>
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extern int64_t lualongnumber_checklong(lua_State *L, int index);
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extern int64_t lualongnumber_pushlong(lua_State *L, int64_t *val);
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// host order to network order (64-bit)
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static int64_t T_htonll(uint64_t data) {
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uint32_t d1 = htonl((uint32_t)data);
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uint32_t d2 = htonl((uint32_t)(data >> 32));
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return ((uint64_t)d1 << 32) + (uint64_t)d2;
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}
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// network order to host order (64-bit)
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static int64_t T_ntohll(uint64_t data) {
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uint32_t d1 = ntohl((uint32_t)data);
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uint32_t d2 = ntohl((uint32_t)(data >> 32));
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return ((uint64_t)d1 << 32) + (uint64_t)d2;
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}
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/**
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* bpack(type, data)
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* c - Signed Byte
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* s - Signed Short
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* i - Signed Int
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* l - Signed Long
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* d - Double
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*/
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static int l_bpack(lua_State *L) {
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const char *code = luaL_checkstring(L, 1);
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luaL_argcheck(L, code[1] == '\0', 0, "Format code must be one character.");
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luaL_Buffer buf;
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luaL_buffinit(L, &buf);
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switch (code[0]) {
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case 'c': {
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int8_t data = luaL_checknumber(L, 2);
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luaL_addlstring(&buf, (void*)&data, sizeof(data));
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break;
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}
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case 's': {
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int16_t data = luaL_checknumber(L, 2);
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data = (int16_t)htons(data);
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luaL_addlstring(&buf, (void*)&data, sizeof(data));
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break;
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}
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case 'i': {
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int32_t data = luaL_checkinteger(L, 2);
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data = (int32_t)htonl(data);
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luaL_addlstring(&buf, (void*)&data, sizeof(data));
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break;
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}
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case 'l': {
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int64_t data = lualongnumber_checklong(L, 2);
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data = (int64_t)T_htonll(data);
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luaL_addlstring(&buf, (void*)&data, sizeof(data));
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break;
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}
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case 'd': {
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double data = luaL_checknumber(L, 2);
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luaL_addlstring(&buf, (void*)&data, sizeof(data));
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break;
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}
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default:
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luaL_argcheck(L, 0, 0, "Invalid format code.");
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}
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luaL_pushresult(&buf);
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return 1;
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}
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/**
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* bunpack(type, data)
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* c - Signed Byte
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* C - Unsigned Byte
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* s - Signed Short
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* i - Signed Int
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* l - Signed Long
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* d - Double
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*/
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static int l_bunpack(lua_State *L) {
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const char *code = luaL_checkstring(L, 1);
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luaL_argcheck(L, code[1] == '\0', 0, "Format code must be one character.");
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const char *data = luaL_checkstring(L, 2);
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#if LUA_VERSION_NUM >= 502
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size_t len = lua_rawlen(L, 2);
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#else
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size_t len = lua_objlen(L, 2);
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#endif
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switch (code[0]) {
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case 'c': {
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int8_t val;
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luaL_argcheck(L, len == sizeof(val), 1, "Invalid input string size.");
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memcpy(&val, data, sizeof(val));
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lua_pushnumber(L, val);
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break;
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}
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/**
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* unpack unsigned Byte.
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*/
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case 'C': {
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uint8_t val;
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luaL_argcheck(L, len == sizeof(val), 1, "Invalid input string size.");
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memcpy(&val, data, sizeof(val));
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lua_pushnumber(L, val);
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break;
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}
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case 's': {
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int16_t val;
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luaL_argcheck(L, len == sizeof(val), 1, "Invalid input string size.");
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memcpy(&val, data, sizeof(val));
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val = (int16_t)ntohs(val);
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lua_pushnumber(L, val);
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break;
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}
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case 'i': {
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int32_t val;
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luaL_argcheck(L, len == sizeof(val), 1, "Invalid input string size.");
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memcpy(&val, data, sizeof(val));
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val = (int32_t)ntohl(val);
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lua_pushnumber(L, val);
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break;
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}
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case 'l': {
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int64_t val;
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luaL_argcheck(L, len == sizeof(val), 1, "Invalid input string size.");
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memcpy(&val, data, sizeof(val));
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val = (int64_t)T_ntohll(val);
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lualongnumber_pushlong(L, &val);
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break;
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}
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case 'd': {
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double val;
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luaL_argcheck(L, len == sizeof(val), 1, "Invalid input string size.");
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memcpy(&val, data, sizeof(val));
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lua_pushnumber(L, val);
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break;
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}
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default:
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luaL_argcheck(L, 0, 0, "Invalid format code.");
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}
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return 1;
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}
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/**
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* Convert l into a zigzag long. This allows negative numbers to be
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* represented compactly as a varint.
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*/
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static int l_i64ToZigzag(lua_State *L) {
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int64_t n = lualongnumber_checklong(L, 1);
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int64_t result = (n << 1) ^ (n >> 63);
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lualongnumber_pushlong(L, &result);
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return 1;
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}
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/**
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* Convert n into a zigzag int. This allows negative numbers to be
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* represented compactly as a varint.
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*/
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static int l_i32ToZigzag(lua_State *L) {
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int32_t n = luaL_checkinteger(L, 1);
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uint32_t result = (uint32_t)(n << 1) ^ (n >> 31);
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lua_pushnumber(L, result);
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return 1;
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}
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/**
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* Convert from zigzag int to int.
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*/
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static int l_zigzagToI32(lua_State *L) {
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uint32_t n = luaL_checkinteger(L, 1);
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int32_t result = (int32_t)(n >> 1) ^ (uint32_t)(-(int32_t)(n & 1));
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lua_pushnumber(L, result);
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return 1;
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}
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/**
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* Convert from zigzag long to long.
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*/
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static int l_zigzagToI64(lua_State *L) {
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int64_t n = lualongnumber_checklong(L, 1);
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int64_t result = (int64_t)(n >> 1) ^ (uint64_t)(-(int64_t)(n & 1));
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lualongnumber_pushlong(L, &result);
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return 1;
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}
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/**
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* Convert an i32 to a varint. Results in 1-5 bytes on the buffer.
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*/
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static int l_toVarint32(lua_State *L) {
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uint8_t buf[5];
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uint32_t n = luaL_checkinteger(L, 1);
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uint32_t wsize = 0;
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while (1) {
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if ((n & ~0x7F) == 0) {
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buf[wsize++] = (int8_t)n;
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break;
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} else {
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buf[wsize++] = (int8_t)((n & 0x7F) | 0x80);
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n >>= 7;
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}
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}
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lua_pushlstring(L, buf, wsize);
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return 1;
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}
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/**
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* Convert an i64 to a varint. Results in 1-10 bytes on the buffer.
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*/
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static int l_toVarint64(lua_State *L) {
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uint8_t data[10];
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uint64_t n = lualongnumber_checklong(L, 1);
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uint32_t wsize = 0;
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luaL_Buffer buf;
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luaL_buffinit(L, &buf);
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while (1) {
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if ((n & ~0x7FL) == 0) {
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data[wsize++] = (int8_t)n;
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break;
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} else {
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data[wsize++] = (int8_t)((n & 0x7F) | 0x80);
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n >>= 7;
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}
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}
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luaL_addlstring(&buf, (void*)&data, wsize);
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luaL_pushresult(&buf);
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return 1;
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}
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/**
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* Convert a varint to i64.
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*/
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static int l_fromVarint64(lua_State *L) {
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int64_t result;
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uint8_t byte = luaL_checknumber(L, 1);
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int32_t shift = luaL_checknumber(L, 2);
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uint64_t n = (uint64_t)lualongnumber_checklong(L, 3);
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n |= (uint64_t)(byte & 0x7f) << shift;
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if (!(byte & 0x80)) {
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result = (int64_t)(n >> 1) ^ (uint64_t)(-(int64_t)(n & 1));
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lua_pushnumber(L, 0);
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} else {
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result = n;
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lua_pushnumber(L, 1);
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}
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lualongnumber_pushlong(L, &result);
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return 2;
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}
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/**
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* To pack message type of compact protocol.
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*/
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static int l_packMesgType(lua_State *L) {
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int32_t version_n = luaL_checkinteger(L, 1);
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int32_t version_mask = luaL_checkinteger(L, 2);
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int32_t messagetype = luaL_checkinteger(L, 3);
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int32_t type_shift_amount = luaL_checkinteger(L, 4);
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int32_t type_mask = luaL_checkinteger(L, 5);
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int32_t to_mesg_type = (version_n & version_mask) |
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(((int32_t)messagetype << type_shift_amount) & type_mask);
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lua_pushnumber(L, to_mesg_type);
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return 1;
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}
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static const struct luaL_Reg lua_bpack[] = {
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{"bpack", l_bpack},
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{"bunpack", l_bunpack},
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{"i32ToZigzag", l_i32ToZigzag},
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{"i64ToZigzag", l_i64ToZigzag},
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{"zigzagToI32", l_zigzagToI32},
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{"zigzagToI64", l_zigzagToI64},
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{"toVarint32", l_toVarint32},
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{"toVarint64", l_toVarint64},
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{"fromVarint64", l_fromVarint64},
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{"packMesgType", l_packMesgType},
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{NULL, NULL}
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};
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int luaopen_libluabpack(lua_State *L) {
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luaL_register(L, "libluabpack", lua_bpack);
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return 1;
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}
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