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examples/03_gcc_nested_function/example
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examples/03_gcc_nested_function/example
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examples/03_gcc_nested_function/example.c
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37
examples/03_gcc_nested_function/example.c
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#include <stdint.h>
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#include <stdlib.h>
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#include <stdio.h>
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#include "../../squiggle.h"
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int main(){
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// set randomness seed
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uint32_t* seed = malloc(sizeof(uint32_t));
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*seed = 1000; // xorshift can't start with 0
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float p_a = 0.8;
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float p_b = 0.5;
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float p_c = p_a * p_b;
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int n_dists = 4;
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float sample_0(uint32_t* seed){ return 0; }
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float sample_1(uint32_t* seed) { return 1; }
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float sample_few(uint32_t* seed){ return random_to(1, 3, seed); }
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float sample_many(uint32_t* seed){ return random_to(2, 10, seed); }
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float (*samplers[])(uint32_t*) = { sample_0, sample_1, sample_few, sample_many };
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float weights[] = { 1 - p_c, p_c / 2, p_c / 4, p_c / 4 };
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int n_samples = 1000000;
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float* result_many = (float *) malloc(n_samples * sizeof(float));
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for(int i=0; i<n_samples; i++){
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result_many[i] = mixture(samplers, weights, n_dists, seed);
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}
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printf("result_many: [");
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for(int i=0; i<100; i++){
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printf("%.2f, ", result_many[i]);
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}
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printf("]\n");
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}
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examples/03_gcc_nested_function/makefile
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examples/03_gcc_nested_function/makefile
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# Interface:
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# make
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# make build
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# make format
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# make run
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# Compiler
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CC=gcc # required for nested functions
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# CC=tcc # <= faster compilation
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# Main file
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SRC=example.c
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OUTPUT=example
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## Dependencies
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MATH=-lm
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DEPENDENCIES=$(MATH)
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# OPENMP=-fopenmp
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## Flags
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DEBUG= #'-g'
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STANDARD=-std=gnu99 ## allows for nested functions.
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EXTENSIONS= #-fnested-functions
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WARNINGS=-Wall
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OPTIMIZED=-O3#-Ofast
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CFLAGS=$(DEBUG) $(STANDARD) $(EXTENSIONS) $(WARNINGS) $(OPTIMIZED)
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## Formatter
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STYLE_BLUEPRINT=webkit
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FORMATTER=clang-format -i -style=$(STYLE_BLUEPRINT)
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## make build
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build: $(SRC)
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# gcc -std=gnu99 example.c -lm -o example
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$(CC) $(CFLAGS) $(SRC) $(DEPENDENCIES) -o $(OUTPUT)
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format: $(SRC)
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$(FORMATTER) $(SRC)
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run: $(SRC) $(OUTPUT)
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./$(OUTPUT) && echo
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time-linux:
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@echo "Requires /bin/time, found on GNU/Linux systems" && echo
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@echo "Running 100x and taking avg time $(OUTPUT)"
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@t=$$(/usr/bin/time -f "%e" -p bash -c 'for i in {1..100}; do $(OUTPUT); done' 2>&1 >/dev/null | grep real | awk '{print $$2}' ); echo "scale=2; 1000 * $$t / 100" | bc | sed "s|^|Time using 1 thread: |" | sed 's|$$|ms|' && echo
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## Profiling
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profile-linux:
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echo "Requires perf, which depends on the kernel version, and might be in linux-tools package or similar"
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echo "Must be run as sudo"
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$(CC) $(SRC) $(MATH) -o $(OUTPUT)
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sudo perf record $(OUTPUT)
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sudo perf report
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rm perf.data
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@ -95,14 +95,17 @@ float mixture(float (*samplers[])(uint32_t*), float* weights, int n_dists, uint3
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cumsummed_normalized_weights[i] = cumsummed_normalized_weights[i - 1] + weights[i]/sum_weights;
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}
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float p = random_uniform(0, 1, seed);
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float result;
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int result_set_flag = 0;
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float p = random_uniform(0, 1, seed);
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for (int k = 0; k < n_dists; k++) {
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if (p < cumsummed_normalized_weights[k]) {
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result = samplers[k](seed);
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result_set_flag = 1;
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break;
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}
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}
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if(result_set_flag == 0) result = samplers[n_dists-1](seed);
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free(cumsummed_normalized_weights);
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return result;
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5
to-do.md
5
to-do.md
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- [ ] Add example for only one sample
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- [ ] Add example for many samples
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- [x] Add example for only one sample
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- [x] Add example for many samples
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- [ ] Use gcc extension to define functions nested inside main.
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- [ ] Use OpenMP for acceleration
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- [ ] Chain various mixture functions
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- [ ] Have some more complicated & realistic example
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- [ ] Add summarization functions, like mean, std, 90% ci (or all c.i.?)
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- [ ] Add beta distribution
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- [ ] Add a custom preprocessor to allow simple nested functions that don't rely on local scope?
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