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-rw-r--r--src/ByteBuffer.cpp48
1 files changed, 29 insertions, 19 deletions
diff --git a/src/ByteBuffer.cpp b/src/ByteBuffer.cpp
index 8080c1bdc..a3b40e5ef 100644
--- a/src/ByteBuffer.cpp
+++ b/src/ByteBuffer.cpp
@@ -44,10 +44,10 @@
-#if 0
+#ifdef SELF_TEST
/// Self-test of the VarInt-reading and writing code
-class cByteBufferSelfTest
+static class cByteBufferSelfTest
{
public:
cByteBufferSelfTest(void)
@@ -177,15 +177,16 @@ bool cByteBuffer::Write(const char * a_Bytes, size_t a_Count)
CheckValid();
// Store the current free space for a check after writing:
- int CurFreeSpace = GetFreeSpace();
- int CurReadableSpace = GetReadableSpace();
- int WrittenBytes = 0;
+ size_t CurFreeSpace = GetFreeSpace();
+ size_t CurReadableSpace = GetReadableSpace();
+ size_t WrittenBytes = 0;
if (CurFreeSpace < a_Count)
{
return false;
}
- int TillEnd = m_BufferSize - m_WritePos;
+ ASSERT(m_BufferSize >= m_WritePos);
+ size_t TillEnd = m_BufferSize - m_WritePos;
if (TillEnd <= a_Count)
{
// Need to wrap around the ringbuffer end
@@ -216,16 +217,20 @@ bool cByteBuffer::Write(const char * a_Bytes, size_t a_Count)
-int cByteBuffer::GetFreeSpace(void) const
+size_t cByteBuffer::GetFreeSpace(void) const
{
CHECK_THREAD;
CheckValid();
if (m_WritePos >= m_DataStart)
{
// Wrap around the buffer end:
+ ASSERT(m_BufferSize >= m_WritePos);
+ ASSERT((m_BufferSize - m_WritePos + m_DataStart) >= 1);
return m_BufferSize - m_WritePos + m_DataStart - 1;
}
// Single free space partition:
+ ASSERT(m_BufferSize >= m_WritePos);
+ ASSERT(m_BufferSize - m_WritePos >= 1);
return m_DataStart - m_WritePos - 1;
}
@@ -234,10 +239,12 @@ int cByteBuffer::GetFreeSpace(void) const
/// Returns the number of bytes that are currently in the ringbuffer. Note GetReadableBytes()
-int cByteBuffer::GetUsedSpace(void) const
+size_t cByteBuffer::GetUsedSpace(void) const
{
CHECK_THREAD;
CheckValid();
+ ASSERT(m_BufferSize >= GetFreeSpace());
+ ASSERT((m_BufferSize - GetFreeSpace()) >= 1);
return m_BufferSize - GetFreeSpace() - 1;
}
@@ -246,16 +253,18 @@ int cByteBuffer::GetUsedSpace(void) const
/// Returns the number of bytes that are currently available for reading (may be less than UsedSpace due to some data having been read already)
-int cByteBuffer::GetReadableSpace(void) const
+size_t cByteBuffer::GetReadableSpace(void) const
{
CHECK_THREAD;
CheckValid();
if (m_ReadPos > m_WritePos)
{
// Wrap around the buffer end:
+ ASSERT(m_BufferSize >= m_ReadPos);
return m_BufferSize - m_ReadPos + m_WritePos;
}
// Single readable space partition:
+ ASSERT(m_WritePos >= m_ReadPos);
return m_WritePos - m_ReadPos ;
}
@@ -654,11 +663,10 @@ bool cByteBuffer::ReadBuf(void * a_Buffer, size_t a_Count)
{
CHECK_THREAD;
CheckValid();
- ASSERT(a_Count >= 0);
NEEDBYTES(a_Count);
char * Dst = (char *)a_Buffer; // So that we can do byte math
- int BytesToEndOfBuffer = m_BufferSize - m_ReadPos;
- ASSERT(BytesToEndOfBuffer >= 0); // Sanity check
+ ASSERT(m_BufferSize >= m_ReadPos);
+ size_t BytesToEndOfBuffer = m_BufferSize - m_ReadPos;
if (BytesToEndOfBuffer <= a_Count)
{
// Reading across the ringbuffer end, read the first part and adjust parameters:
@@ -688,10 +696,10 @@ bool cByteBuffer::WriteBuf(const void * a_Buffer, size_t a_Count)
{
CHECK_THREAD;
CheckValid();
- ASSERT(a_Count >= 0);
PUTBYTES(a_Count);
char * Src = (char *)a_Buffer; // So that we can do byte math
- int BytesToEndOfBuffer = m_BufferSize - m_WritePos;
+ ASSERT(m_BufferSize >= m_ReadPos);
+ size_t BytesToEndOfBuffer = m_BufferSize - m_WritePos;
if (BytesToEndOfBuffer <= a_Count)
{
// Reading across the ringbuffer end, read the first part and adjust parameters:
@@ -718,18 +726,18 @@ bool cByteBuffer::ReadString(AString & a_String, size_t a_Count)
{
CHECK_THREAD;
CheckValid();
- ASSERT(a_Count >= 0);
NEEDBYTES(a_Count);
a_String.clear();
a_String.reserve(a_Count);
- int BytesToEndOfBuffer = m_BufferSize - m_ReadPos;
- ASSERT(BytesToEndOfBuffer >= 0); // Sanity check
+ ASSERT(m_BufferSize >= m_ReadPos);
+ size_t BytesToEndOfBuffer = m_BufferSize - m_ReadPos;
if (BytesToEndOfBuffer <= a_Count)
{
// Reading across the ringbuffer end, read the first part and adjust parameters:
if (BytesToEndOfBuffer > 0)
{
a_String.assign(m_Buffer + m_ReadPos, BytesToEndOfBuffer);
+ ASSERT(a_Count >= BytesToEndOfBuffer);
a_Count -= BytesToEndOfBuffer;
}
m_ReadPos = 0;
@@ -771,7 +779,6 @@ bool cByteBuffer::SkipRead(size_t a_Count)
{
CHECK_THREAD;
CheckValid();
- ASSERT(a_Count >= 0);
if (!CanReadBytes(a_Count))
{
return false;
@@ -809,6 +816,7 @@ bool cByteBuffer::ReadToByteBuffer(cByteBuffer & a_Dst, size_t a_NumBytes)
size_t num = (a_NumBytes > sizeof(buf)) ? sizeof(buf) : a_NumBytes;
VERIFY(ReadBuf(buf, num));
VERIFY(a_Dst.Write(buf, num));
+ ASSERT(a_NumBytes >= num);
a_NumBytes -= num;
}
return true;
@@ -846,13 +854,15 @@ void cByteBuffer::ReadAgain(AString & a_Out)
// Used by ProtoProxy to repeat communication twice, once for parsing and the other time for the remote party
CHECK_THREAD;
CheckValid();
- int DataStart = m_DataStart;
+ size_t DataStart = m_DataStart;
if (m_ReadPos < m_DataStart)
{
// Across the ringbuffer end, read the first part and adjust next part's start:
+ ASSERT(m_BufferSize >= m_DataStart);
a_Out.append(m_Buffer + m_DataStart, m_BufferSize - m_DataStart);
DataStart = 0;
}
+ ASSERT(m_ReadPos >= DataStart);
a_Out.append(m_Buffer + DataStart, m_ReadPos - DataStart);
}