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VCxiancheng
- VC进程和线程的实例(包括使用、终止、调用等)-VC process and thread examples (including the use of the termination, transfer, etc.)
nihe
- 直线拟合与多项式拟合 涉及:《数值计算》等相关课程的基础内容 共两个例子,分别是直线拟合与多项式拟合。 转载自百思论坛 http://www.baisi.net/thread-1270848-1-1.html
cpp_tracer
- Lifitime tracer. *** *** *** *** *** *** *** *** ***** Example: #include <timings.h> void foo() { TRACE_LIFETIME usleep(100000) } void main() { foo() } *** *** *** *** *** *** *** *** *** See lifetimes.log: FUNC
ptypes-2.1.1.tar
- PTypes (C++ Portable Types Library) is a simple alternative to the STL that includes multithreading and networking. It defines dynamic strings, variants, character sets, lists and other basic data types along with portable thread and synchronization
GPU-speedup
- 针对LA在解决大规模优化问题时需要消耗大量的时间无法达到实时性的问题,结合GPU的高速并行性,本文提出了一种基于GPU(Graphics Processing Unit,GPU)加速的细粒度并行免疫算法。本算法借助CUJDA(Compute Unifled Device Architecture,CUDA)统一架构,将实现过程转化成CUDA线程块并行计算过程,使得免疫算法在GPU中加速执行,在取得较好的优化效果的同时,解决了细粒度并行的群体规模限制问题,提高了算法的运行速度。-Solution
DijkstraThreads.tar
- Multi Thread Implementation of Dijkstra s Shortest Path Algorithm All-to-all. It reads a file in the format: Edges Nodes start end weight Like this: 20 5 1 2 5 1 3 4 2 1 3 2-Multi Thread Implementation of Dijkstra s Shortest P
ThreadMaching
- 本代码为数控车床加工螺纹的过程演示,包括参数选定,如何选取查补算法,可供机械类学生学习。详细过程里面有2个视频。-The code for the process of CNC lathe demo thread, including the parameters selected, how to select the check fill algorithm, for mechanical students. Detailed process there are 2 videos.
CRFPP-0.53
- 基于CRF++-0.53的改良版,修正了模型输入时多行空行导致的线程错误,优化了多线程操作,除LBFGS无法优化外,其余迭代操作全部多线程化,66MB模型在16线程服务器上运行,内存占用5.35GB,CPU利用率一般100 ,只有运行LBFGS时为7 。仅支持64位Windows操作系统,使用VC2008编译,不支持32位操作系统或Linux(Windows线程模型)。-Optimized CRF++-0.53. Fixed multi-empty line input bug. Optimiz
sleep_algorithm
- 这是睡眠排序算法的Go语言版,该算法是一个天才程序员发明的,想法很简单,就是针对数组里的不同的数开多个线程,每个线程根据数的大小睡眠,自然睡的时间越长的,数越大-This is the sleep the Go language version of the sorting algorithm, the algorithm is a genius programmer invention, the idea is simple, it is a different number for the
pso-mpi
- 标准PSO的c++实现,可以单线程运行,也可以通过MPI实现并行化,同时实现了粒子间的拓扑结构。(Standard PSO c++ implementation, you can run a single thread, you can also achieve parallelization through MPI, while achieving the topology between particles)
