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from __future__ import division | |
from numpy import * | |
class AdaBoost: | |
def __init__(self, training_set): | |
self.training_set = training_set | |
self.N = len(self.training_set) | |
self.weights = ones(self.N)/self.N | |
self.RULES = [] |
A personal diary of DataFrame munging over the years.
Convert Series datatype to numeric (will error if column has non-numeric values)
(h/t @makmanalp)
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# Note – this is not a bash script (some of the steps require reboot) | |
# I named it .sh just so Github does correct syntax highlighting. | |
# | |
# This is also available as an AMI in us-east-1 (virginia): ami-cf5028a5 | |
# | |
# The CUDA part is mostly based on this excellent blog post: | |
# http://tleyden.github.io/blog/2014/10/25/cuda-6-dot-5-on-aws-gpu-instance-running-ubuntu-14-dot-04/ | |
# Install various packages | |
sudo apt-get update |
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""" | |
A bare bones examples of optimizing a black-box function (f) using | |
Natural Evolution Strategies (NES), where the parameter distribution is a | |
gaussian of fixed standard deviation. | |
""" | |
import numpy as np | |
np.random.seed(0) | |
# the function we want to optimize |
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#Evolution Strategies with Keras | |
#Based off of: https://blog.openai.com/evolution-strategies/ | |
#Implementation by: Nicholas Samoray | |
#README | |
#Meant to be run on a single machine | |
#APPLY_BIAS is currently not working, keep to False | |
#Solves Cartpole as-is in about 50 episodes | |
#Solves BipedalWalker-v2 in about 1000 |
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import torch | |
import torch.nn as nn | |
def compute_scale_and_shift(prediction, target, mask): | |
# system matrix: A = [[a_00, a_01], [a_10, a_11]] | |
a_00 = torch.sum(mask * prediction * prediction, (1, 2)) | |
a_01 = torch.sum(mask * prediction, (1, 2)) | |
a_11 = torch.sum(mask, (1, 2)) |
An actor pool is a utility class similar to multiprocessing.Pool that lets you schedule Ray tasks over a fixed pool of actors.
References:
- ray-project/ray#2105 (comment)
- https://github.com/ray-project/ray/blob/5df801605e12de297fb660b360500d17bccdbd3b/python/ray/util/actor_pool.py
Create an Actor pool from a list of existing actors.