mirror of
https://github.com/NekoX-Dev/NekoX.git
synced 2024-12-14 17:49:33 +01:00
124 lines
3.6 KiB
C++
124 lines
3.6 KiB
C++
/*
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* This is the source code of tgnet library v. 1.1
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* It is licensed under GNU GPL v. 2 or later.
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* You should have received a copy of the license in this archive (see LICENSE).
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*
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* Copyright Nikolai Kudashov, 2015-2018.
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*/
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#include "BuffersStorage.h"
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#include "FileLog.h"
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#include "NativeByteBuffer.h"
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BuffersStorage &BuffersStorage::getInstance() {
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static BuffersStorage instance(true);
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return instance;
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}
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BuffersStorage::BuffersStorage(bool threadSafe) {
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isThreadSafe = threadSafe;
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if (isThreadSafe) {
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pthread_mutex_init(&mutex, NULL);
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}
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for (uint32_t a = 0; a < 4; a++) {
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freeBuffers8.push_back(new NativeByteBuffer((uint32_t) 8));
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}
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for (uint32_t a = 0; a < 5; a++) {
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freeBuffers128.push_back(new NativeByteBuffer((uint32_t) 128));
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}
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}
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NativeByteBuffer *BuffersStorage::getFreeBuffer(uint32_t size) {
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uint32_t byteCount = 0;
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std::vector<NativeByteBuffer *> *arrayToGetFrom = nullptr;
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NativeByteBuffer *buffer = nullptr;
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if (size <= 8) {
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arrayToGetFrom = &freeBuffers8;
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byteCount = 8;
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} else if (size <= 128) {
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arrayToGetFrom = &freeBuffers128;
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byteCount = 128;
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} else if (size <= 1024 + 200) {
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arrayToGetFrom = &freeBuffers1024;
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byteCount = 1024 + 200;
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} else if (size <= 4096 + 200) {
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arrayToGetFrom = &freeBuffers4096;
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byteCount = 4096 + 200;
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} else if (size <= 16384 + 200) {
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arrayToGetFrom = &freeBuffers16384;
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byteCount = 16384 + 200;
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} else if (size <= 40000) {
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arrayToGetFrom = &freeBuffers32768;
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byteCount = 40000;
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} else if (size <= 160000) {
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arrayToGetFrom = &freeBuffersBig;
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byteCount = 160000;
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} else {
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buffer = new NativeByteBuffer(size);
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}
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if (arrayToGetFrom != nullptr) {
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if (isThreadSafe) {
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pthread_mutex_lock(&mutex);
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}
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if (arrayToGetFrom->size() > 0) {
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buffer = (*arrayToGetFrom)[0];
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arrayToGetFrom->erase(arrayToGetFrom->begin());
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}
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if (isThreadSafe) {
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pthread_mutex_unlock(&mutex);
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}
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if (buffer == nullptr) {
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buffer = new NativeByteBuffer(byteCount);
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if (LOGS_ENABLED) DEBUG_D("create new %u buffer", byteCount);
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}
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}
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if (buffer != nullptr) {
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buffer->limit(size);
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buffer->rewind();
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}
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return buffer;
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}
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void BuffersStorage::reuseFreeBuffer(NativeByteBuffer *buffer) {
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if (buffer == nullptr) {
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return;
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}
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std::vector<NativeByteBuffer *> *arrayToReuse = nullptr;
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uint32_t capacity = buffer->capacity();
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uint32_t maxCount = 10;
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if (capacity == 8) {
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arrayToReuse = &freeBuffers8;
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maxCount = 80;
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} else if (capacity == 128) {
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arrayToReuse = &freeBuffers128;
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maxCount = 80;
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} else if (capacity == 1024 + 200) {
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arrayToReuse = &freeBuffers1024;
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} else if (capacity == 4096 + 200) {
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arrayToReuse = &freeBuffers4096;
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} else if (capacity == 16384 + 200) {
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arrayToReuse = &freeBuffers16384;
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} else if (capacity == 40000) {
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arrayToReuse = &freeBuffers32768;
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} else if (capacity == 160000) {
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arrayToReuse = &freeBuffersBig;
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}
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if (arrayToReuse != nullptr) {
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if (isThreadSafe) {
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pthread_mutex_lock(&mutex);
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}
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if (arrayToReuse->size() < maxCount) {
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arrayToReuse->push_back(buffer);
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} else {
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if (LOGS_ENABLED) DEBUG_D("too much %d buffers", capacity);
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delete buffer;
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}
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if (isThreadSafe) {
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pthread_mutex_unlock(&mutex);
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}
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} else {
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delete buffer;
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}
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}
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