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195 lines
3.9 KiB
C++
195 lines
3.9 KiB
C++
/* (c) Magnus Auvinen. See licence.txt in the root of the distribution for more information. */
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/* If you are missing that file, acquire a complete release at teeworlds.com. */
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#include <base/system.h>
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#include "ringbuffer.h"
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CRingBufferBase::CItem *CRingBufferBase::NextBlock(CItem *pItem)
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{
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if(pItem->m_pNext)
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return pItem->m_pNext;
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return m_pFirst;
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}
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CRingBufferBase::CItem *CRingBufferBase::PrevBlock(CItem *pItem)
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{
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if(pItem->m_pPrev)
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return pItem->m_pPrev;
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return m_pLast;
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}
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CRingBufferBase::CItem *CRingBufferBase::MergeBack(CItem *pItem)
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{
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// make sure that this block and previous block is free
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if(!pItem->m_Free || !pItem->m_pPrev || !pItem->m_pPrev->m_Free)
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return pItem;
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// merge the blocks
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pItem->m_pPrev->m_Size += pItem->m_Size;
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pItem->m_pPrev->m_pNext = pItem->m_pNext;
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// fixup pointers
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if(pItem->m_pNext)
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pItem->m_pNext->m_pPrev = pItem->m_pPrev;
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else
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m_pLast = pItem->m_pPrev;
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if(pItem == m_pProduce)
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m_pProduce = pItem->m_pPrev;
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if(pItem == m_pConsume)
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m_pConsume = pItem->m_pPrev;
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// return the current block
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return pItem->m_pPrev;
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}
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void CRingBufferBase::Init(void *pMemory, int Size, int Flags)
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{
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mem_zero(pMemory, Size);
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m_Size = (Size)/sizeof(CItem)*sizeof(CItem);
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m_pFirst = (CItem *)pMemory;
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m_pFirst->m_Free = 1;
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m_pFirst->m_Size = m_Size;
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m_pLast = m_pFirst;
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m_pProduce = m_pFirst;
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m_pConsume = m_pFirst;
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m_Flags = Flags;
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}
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void *CRingBufferBase::Allocate(int Size)
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{
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int WantedSize = (Size+sizeof(CItem)+sizeof(CItem)-1)/sizeof(CItem)*sizeof(CItem);
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CItem *pBlock = 0;
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// check if we even can fit this block
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if(WantedSize > m_Size)
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return 0;
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while(1)
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{
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// check for space
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if(m_pProduce->m_Free)
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{
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if(m_pProduce->m_Size >= WantedSize)
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pBlock = m_pProduce;
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else
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{
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// wrap around to try to find a block
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if(m_pFirst->m_Free && m_pFirst->m_Size >= WantedSize)
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pBlock = m_pFirst;
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}
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}
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if(pBlock)
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break;
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else
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{
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// we have no block, check our policy and see what todo
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if(m_Flags&FLAG_RECYCLE)
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{
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if(!PopFirst())
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return 0;
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}
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else
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return 0;
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}
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}
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// okey, we have our block
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// split the block if needed
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if(pBlock->m_Size > WantedSize+(int)sizeof(CItem))
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{
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CItem *pNewItem = (CItem *)((char *)pBlock + WantedSize);
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pNewItem->m_pPrev = pBlock;
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pNewItem->m_pNext = pBlock->m_pNext;
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if(pNewItem->m_pNext)
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pNewItem->m_pNext->m_pPrev = pNewItem;
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pBlock->m_pNext = pNewItem;
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pNewItem->m_Free = 1;
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pNewItem->m_Size = pBlock->m_Size - WantedSize;
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pBlock->m_Size = WantedSize;
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if(!pNewItem->m_pNext)
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m_pLast = pNewItem;
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}
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// set next block
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m_pProduce = NextBlock(pBlock);
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// set as used and return the item pointer
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pBlock->m_Free = 0;
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return (void *)(pBlock+1);
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}
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int CRingBufferBase::PopFirst()
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{
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if(m_pConsume->m_Free)
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return 0;
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// set the free flag
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m_pConsume->m_Free = 1;
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// previous block is also free, merge them
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m_pConsume = MergeBack(m_pConsume);
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// advance the consume pointer
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m_pConsume = NextBlock(m_pConsume);
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while(m_pConsume->m_Free && m_pConsume != m_pProduce)
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{
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m_pConsume = MergeBack(m_pConsume);
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m_pConsume = NextBlock(m_pConsume);
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}
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// in the case that we have catched up with the produce pointer
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// we might stand on a free block so merge em
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MergeBack(m_pConsume);
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return 1;
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}
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void *CRingBufferBase::Prev(void *pCurrent)
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{
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CItem *pItem = ((CItem *)pCurrent) - 1;
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while(1)
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{
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pItem = PrevBlock(pItem);
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if(pItem == m_pProduce)
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return 0;
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if(!pItem->m_Free)
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return pItem+1;
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}
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}
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void *CRingBufferBase::Next(void *pCurrent)
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{
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CItem *pItem = ((CItem *)pCurrent) - 1;
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while(1)
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{
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pItem = NextBlock(pItem);
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if(pItem == m_pProduce)
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return 0;
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if(!pItem->m_Free)
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return pItem+1;
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}
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}
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void *CRingBufferBase::First()
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{
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if(m_pConsume->m_Free)
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return 0;
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return (void *)(m_pConsume+1);
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}
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void *CRingBufferBase::Last()
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{
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return Prev(m_pProduce+1);
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}
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