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upstream (lemon) mplite tweaks.
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@ -307,19 +307,17 @@ static int mplite_logarithm(const int iValue)
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}
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/*
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** Return the size of an outstanding allocation, in bytes. The
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** size returned omits the 8-byte header overhead. This only
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** works for chunks that are currently checked out.
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** Return the size of an outstanding allocation, in bytes.
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** This only works for chunks that are currently checked out.
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*/
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static int mplite_size(const mplite_t *handle, const void *p)
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{
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int iSize = 0;
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if (p) {
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int i = (int)((uint8_t *) p - handle->zPool) / handle->szAtom;
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int iSize, i;
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assert( p!=0 );
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i = (int)((uint8_t *) p - handle->zPool) / handle->szAtom;
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assert(i >= 0 && i < handle->nBlock);
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iSize = handle->szAtom *
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(1 << (handle->aCtrl[i] & MPLITE_CTRL_LOGSIZE));
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}
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iSize = handle->szAtom * (1 << (handle->aCtrl[i] & MPLITE_CTRL_LOGSIZE));
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return iSize;
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}
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@ -388,19 +386,15 @@ static void *mplite_malloc_unsafe(mplite_t *handle, const int nByte)
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/* nByte must be a positive */
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assert(nByte > 0);
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/* No more than 1GiB per allocation */
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if( nByte > MPLITE_MAX_ALLOC_SIZE ) return 0;
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/* Keep track of the maximum allocation request. Even unfulfilled
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** requests are counted */
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if ((uint32_t) nByte > handle->maxRequest) {
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handle->maxRequest = nByte;
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}
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/* Abort if the requested allocation size is larger than the largest
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** power of two that we can represent using 32-bit signed integers.
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*/
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if (nByte > MPLITE_MAX_ALLOC_SIZE) {
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return NULL;
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}
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/* Round nByte up to the next valid power of two */
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for (iFullSz = handle->szAtom, iLogsize = 0; iFullSz < nByte; iFullSz *= 2,
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iLogsize++) {
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@ -443,6 +437,12 @@ static void *mplite_malloc_unsafe(mplite_t *handle, const int nByte)
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handle->maxOut = handle->currentOut;
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}
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#ifdef MPLITE_DEBUG
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/* Make sure the allocated memory does not assume that it is set to zero
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** or retains a value from a previous allocation */
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memset(&handle->zPool[i * handle->szAtom], 0xAA, iFullSz);
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#endif
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/* Return a pointer to the allocated memory. */
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return (void*) &handle->zPool[i * handle->szAtom];
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}
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@ -483,12 +483,12 @@ static void mplite_free_unsafe(mplite_t *handle, const void *pOld)
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int iBuddy;
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if ((iBlock >> iLogsize) & 1) {
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iBuddy = iBlock - size;
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assert(iBuddy >= 0);
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}
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else {
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iBuddy = iBlock + size;
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if (iBuddy >= handle->nBlock) break;
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}
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assert(iBuddy >= 0);
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if ((iBuddy + (1 << iLogsize)) > handle->nBlock) break;
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if (handle->aCtrl[iBuddy] != (MPLITE_CTRL_FREE | iLogsize)) break;
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mplite_unlink(handle, iBuddy, iLogsize);
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iLogsize++;
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@ -503,5 +503,12 @@ static void mplite_free_unsafe(mplite_t *handle, const void *pOld)
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}
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size *= 2;
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}
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#ifdef MPLITE_DEBUG
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/* Overwrite freed memory with the 0x55 bit pattern to verify that it is
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** not used after being freed */
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memset(&handle->zPool[iBlock * handle->szAtom], 0x55, size);
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#endif
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mplite_link(handle, iBlock, iLogsize);
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}
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@ -17,7 +17,7 @@
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*
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* This memory allocator uses the following algorithm:
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*
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* 1. All memory allocations sizes are rounded up to a power of 2.
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* 1. All memory allocation sizes are rounded up to a power of 2.
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*
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* 2. If two adjacent free blocks are the halves of a larger block,
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* then the two blocks are coalesced into the single larger block.
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@ -40,11 +40,7 @@
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#ifndef MPLITE_H
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#define MPLITE_H
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#ifdef _WIN32
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#include "pstdint.h"
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#else
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#include <stdint.h>
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#endif /* #ifdef _WIN32 */
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/**
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* @brief The function call returns success
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@ -114,9 +110,12 @@ typedef struct mplite {
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uint32_t maxCount; /**< Maximum instantaneous currentCount */
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uint32_t maxRequest; /**< Largest allocation (exclusive of internal frag) */
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int aiFreelist[MPLITE_LOGMAX + 1]; /**< List of free blocks. aiFreelist[0]
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is a list of free blocks of size mplite_t.szAtom. aiFreelist[1] holds
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blocks of size szAtom * 2 and so forth.*/
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/**
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* Lists of free blocks. aiFreelist[0] is a list of free blocks of
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* size mplite_t.szAtom. aiFreelist[1] holds blocks of size szAtom*2.
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* aiFreelist[2] holds free blocks of size szAtom*4. And so forth.
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*/
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int aiFreelist[MPLITE_LOGMAX + 1];
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uint8_t *aCtrl; /**< Space for tracking which blocks are checked out and the
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size of each block. One byte per block. */
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