lokinet/llarp/util/buffer.cpp

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#include <util/buffer.hpp>
#include <util/endian.hpp>
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#include <stdarg.h>
#include <stdio.h>
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size_t
llarp_buffer_t::size_left() const
{
size_t diff = cur - base;
if(diff > sz)
{
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return 0;
}
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else
return sz - diff;
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}
bool
llarp_buffer_t::writef(const char* fmt, ...)
{
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int written;
ssize_t sz = size_left();
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va_list args;
va_start(args, fmt);
written = vsnprintf(reinterpret_cast< char* >(cur), sz, fmt, args);
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va_end(args);
if(written <= 0)
return false;
if(sz < written)
return false;
cur += written;
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return true;
}
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bool
llarp_buffer_t::put_uint16(uint16_t i)
{
if(size_left() < sizeof(uint16_t))
return false;
htobe16buf(cur, i);
cur += sizeof(uint16_t);
return true;
}
bool
llarp_buffer_t::put_uint32(uint32_t i)
{
if(size_left() < sizeof(uint32_t))
return false;
htobe32buf(cur, i);
cur += sizeof(uint32_t);
return true;
}
bool
llarp_buffer_t::read_uint16(uint16_t& i)
{
if(size_left() < sizeof(uint16_t))
return false;
i = bufbe16toh(cur);
cur += sizeof(uint16_t);
return true;
}
bool
llarp_buffer_t::read_uint32(uint32_t& i)
{
if(size_left() < sizeof(uint32_t))
return false;
i = bufbe32toh(cur);
cur += sizeof(uint32_t);
return true;
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}
size_t
llarp_buffer_t::read_until(char delim, byte_t* result, size_t resultsize)
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{
size_t read = 0;
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// do the bound check first, to avoid over running
while((cur != base + sz) && *cur != delim && resultsize)
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{
*result = *cur;
cur++;
result++;
resultsize--;
read++;
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}
if(size_left())
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return read;
else
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return 0;
}
bool
operator==(const llarp_buffer_t& buff, const char* str)
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{
ManagedBuffer copy{buff};
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while(*str
&& copy.underlying.cur != (copy.underlying.base + copy.underlying.sz))
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{
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if(*copy.underlying.cur != *str)
return false;
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copy.underlying.cur++;
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str++;
}
return *str == 0;
}