281 lines
5.5 KiB
C++
281 lines
5.5 KiB
C++
/**
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* @file llsdutil.cpp
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* @author Phoenix
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* @date 2006-05-24
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* @brief Implementation of classes, functions, etc, for using structured data.
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*
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* Copyright (c) 2006-$CurrentYear$, Linden Research, Inc.
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* $License$
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*/
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#include "linden_common.h"
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#include "llsdutil.h"
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#if LL_WINDOWS
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# define WIN32_LEAN_AND_MEAN
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# include <winsock2.h> // for htonl
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#elif LL_LINUX || LL_SOLARIS
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# include <netinet/in.h>
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#elif LL_DARWIN
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# include <arpa/inet.h>
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#endif
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#include "llsdserialize.h"
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// vector3
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LLSD ll_sd_from_vector3(const LLVector3& vec)
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{
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LLSD rv;
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rv.append((F64)vec.mV[VX]);
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rv.append((F64)vec.mV[VY]);
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rv.append((F64)vec.mV[VZ]);
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return rv;
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}
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LLVector3 ll_vector3_from_sd(const LLSD& sd, S32 start_index)
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{
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LLVector3 rv;
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rv.mV[VX] = (F32)sd[start_index].asReal();
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rv.mV[VY] = (F32)sd[++start_index].asReal();
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rv.mV[VZ] = (F32)sd[++start_index].asReal();
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return rv;
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}
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// vector4
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LLSD ll_sd_from_vector4(const LLVector4& vec)
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{
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LLSD rv;
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rv.append((F64)vec.mV[VX]);
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rv.append((F64)vec.mV[VY]);
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rv.append((F64)vec.mV[VZ]);
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rv.append((F64)vec.mV[VW]);
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return rv;
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}
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LLVector4 ll_vector4_from_sd(const LLSD& sd, S32 start_index)
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{
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LLVector4 rv;
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rv.mV[VX] = (F32)sd[start_index].asReal();
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rv.mV[VY] = (F32)sd[++start_index].asReal();
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rv.mV[VZ] = (F32)sd[++start_index].asReal();
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rv.mV[VW] = (F32)sd[++start_index].asReal();
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return rv;
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}
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// vector3d
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LLSD ll_sd_from_vector3d(const LLVector3d& vec)
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{
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LLSD rv;
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rv.append(vec.mdV[VX]);
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rv.append(vec.mdV[VY]);
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rv.append(vec.mdV[VZ]);
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return rv;
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}
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LLVector3d ll_vector3d_from_sd(const LLSD& sd, S32 start_index)
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{
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LLVector3d rv;
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rv.mdV[VX] = sd[start_index].asReal();
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rv.mdV[VY] = sd[++start_index].asReal();
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rv.mdV[VZ] = sd[++start_index].asReal();
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return rv;
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}
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//vector2
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LLSD ll_sd_from_vector2(const LLVector2& vec)
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{
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LLSD rv;
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rv.append((F64)vec.mV[VX]);
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rv.append((F64)vec.mV[VY]);
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return rv;
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}
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LLVector2 ll_vector2_from_sd(const LLSD& sd)
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{
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LLVector2 rv;
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rv.mV[VX] = (F32)sd[0].asReal();
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rv.mV[VY] = (F32)sd[1].asReal();
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return rv;
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}
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// Quaternion
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LLSD ll_sd_from_quaternion(const LLQuaternion& quat)
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{
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LLSD rv;
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rv.append((F64)quat.mQ[VX]);
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rv.append((F64)quat.mQ[VY]);
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rv.append((F64)quat.mQ[VZ]);
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rv.append((F64)quat.mQ[VW]);
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return rv;
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}
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LLQuaternion ll_quaternion_from_sd(const LLSD& sd)
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{
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LLQuaternion quat;
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quat.mQ[VX] = (F32)sd[0].asReal();
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quat.mQ[VY] = (F32)sd[1].asReal();
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quat.mQ[VZ] = (F32)sd[2].asReal();
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quat.mQ[VW] = (F32)sd[3].asReal();
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return quat;
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}
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// color4
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LLSD ll_sd_from_color4(const LLColor4& c)
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{
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LLSD rv;
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rv.append(c.mV[0]);
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rv.append(c.mV[1]);
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rv.append(c.mV[2]);
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rv.append(c.mV[3]);
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return rv;
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}
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LLColor4 ll_color4_from_sd(const LLSD& sd)
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{
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LLColor4 c;
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c.mV[0] = (F32)sd[0].asReal();
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c.mV[1] = (F32)sd[1].asReal();
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c.mV[2] = (F32)sd[2].asReal();
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c.mV[3] = (F32)sd[3].asReal();
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return c;
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}
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// U32
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LLSD ll_sd_from_U32(const U32 val)
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{
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std::vector<U8> v;
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U32 net_order = htonl(val);
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v.resize(4);
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memcpy(&(v[0]), &net_order, 4); /* Flawfinder: ignore */
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return LLSD(v);
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}
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U32 ll_U32_from_sd(const LLSD& sd)
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{
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U32 ret;
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std::vector<U8> v = sd.asBinary();
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if (v.size() < 4)
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{
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return 0;
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}
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memcpy(&ret, &(v[0]), 4); /* Flawfinder: ignore */
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ret = ntohl(ret);
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return ret;
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}
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//U64
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LLSD ll_sd_from_U64(const U64 val)
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{
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std::vector<U8> v;
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U32 high, low;
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high = (U32)(val >> 32);
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low = (U32)val;
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high = htonl(high);
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low = htonl(low);
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v.resize(8);
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memcpy(&(v[0]), &high, 4); /* Flawfinder: ignore */
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memcpy(&(v[4]), &low, 4); /* Flawfinder: ignore */
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return LLSD(v);
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}
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U64 ll_U64_from_sd(const LLSD& sd)
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{
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U32 high, low;
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std::vector<U8> v = sd.asBinary();
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if (v.size() < 8)
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{
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return 0;
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}
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memcpy(&high, &(v[0]), 4); /* Flawfinder: ignore */
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memcpy(&low, &(v[4]), 4); /* Flawfinder: ignore */
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high = ntohl(high);
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low = ntohl(low);
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return ((U64)high) << 32 | low;
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}
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// IP Address (stored in net order in a U32, so don't need swizzling)
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LLSD ll_sd_from_ipaddr(const U32 val)
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{
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std::vector<U8> v;
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v.resize(4);
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memcpy(&(v[0]), &val, 4); /* Flawfinder: ignore */
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return LLSD(v);
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}
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U32 ll_ipaddr_from_sd(const LLSD& sd)
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{
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U32 ret;
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std::vector<U8> v = sd.asBinary();
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if (v.size() < 4)
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{
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return 0;
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}
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memcpy(&ret, &(v[0]), 4); /* Flawfinder: ignore */
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return ret;
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}
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// Converts an LLSD binary to an LLSD string
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LLSD ll_string_from_binary(const LLSD& sd)
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{
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std::vector<U8> value = sd.asBinary();
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std::string str;
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str.resize(value.size());
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memcpy(&str[0], &value[0], value.size());
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return str;
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}
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// Converts an LLSD string to an LLSD binary
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LLSD ll_binary_from_string(const LLSD& sd)
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{
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std::vector<U8> binary_value;
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LLString string_value = sd.asString();
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const char* string_p = string_value.c_str();
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while (*string_p)
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{
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binary_value.push_back(*string_p);
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string_p++;
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}
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binary_value.push_back('\0');
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return binary_value;
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}
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char* ll_print_sd(const LLSD& sd)
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{
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const U32 bufferSize = 10 * 1024;
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static char buffer[bufferSize];
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std::ostringstream stream;
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//stream.rdbuf()->pubsetbuf(buffer, bufferSize);
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stream << LLSDOStreamer<LLSDXMLFormatter>(sd);
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stream << std::ends;
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strncpy(buffer, stream.str().c_str(), bufferSize);
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buffer[bufferSize - 1] = '\0';
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return buffer;
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}
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char* ll_pretty_print_sd(const LLSD& sd)
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{
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const U32 bufferSize = 10 * 1024;
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static char buffer[bufferSize];
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std::ostringstream stream;
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//stream.rdbuf()->pubsetbuf(buffer, bufferSize);
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stream << LLSDOStreamer<LLSDXMLFormatter>(sd, LLSDFormatter::OPTIONS_PRETTY);
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stream << std::ends;
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strncpy(buffer, stream.str().c_str(), bufferSize);
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buffer[bufferSize - 1] = '\0';
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return buffer;
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}
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