Initial commit

This commit is contained in:
Ian Jauslin
2016-05-20 20:30:15 +00:00
commit 2125f01f97
104 changed files with 9403 additions and 0 deletions

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# whether to link dynamically
# if static=0 then link dynamically
# if static=2 then link statically
# if static=1 then link libkondo statically but other libraries dynamically
STATIC=1
VERSION=0.3.1
# products of the compilation
PROJECT_BINS= root_newton integral_gauss-legendre
# debug and optimization flags
#DB= -ggdb
OPT= -O3
# warning flags
WARNINGS= -Wall -Wextra -Wno-strict-overflow -std=c99 -pedantic -Wno-unused-parameter
# compiler
CC=/usr/bin/gcc
LD=$(CC)
# directories
INCLUDE =
LIB =
#INCLUDE = -I../../include
#LIB = -L../../build
# flags
override LDFLAGS +=$(LIB)
override CFLAGS +=$(INCLUDE) $(DB) $(OPT) $(WARNINGS)
# build directories
BUILDDIR=./build
SRCDIR=./src
OBJDIR=./objs
# objects
OBJS = $(addprefix $(OBJDIR)/, root_newton.o integral_gauss-legendre.o)
# flags which depend on whether to link statically or dynamically
# lib flag
LIBINUM_FLAG=-linum
# additional library required for static linking
XTRA_LIBS=
ifeq ($(STATIC),1)
# libinum is linked against libm, libmpfr, libgmp and libpthread
XTRA_LIBS=-lm -lmpfr -lgmp -lpthread
# link binaries using the static library
LIBINUM_FLAG=-l:libinum.a
else ifeq ($(STATIC),2)
# libinum is linked against libm, libmpfr, libgmp and libpthread
XTRA_LIBS=-lm -lmpfr -lgmp -lpthread
# link binaries statically
override LDFLAGS += -static
else
# required flag for subsequent dynamic linking
override CFLAGS += -fPIC
endif
all: init $(PROJECT_BINS)
# create dirs
init:
@[ -d $(OBJDIR) ] || /bin/mkdir $(OBJDIR)
@[ -d $(BUILDDIR) ] || /bin/mkdir $(BUILDDIR)
root_newton:
$(CC) -c $(CFLAGS) src/$@.c -o objs/$@.o
$(LD) $(LDFLAGS) -o $(BUILDDIR)/$@ objs/$@.o $(LIBINUM_FLAG) $(XTRA_LIBS)
integral_gauss-legendre:
$(CC) -c $(CFLAGS) src/$@.c -o objs/$@.o
$(LD) $(LDFLAGS) -o $(BUILDDIR)/$@ objs/$@.o $(LIBINUM_FLAG) $(XTRA_LIBS)
clean:
@rm -rf $(OBJDIR)
@rm -rf $(BUILDDIR)

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#include <stdio.h>
#include <stdarg.h>
// define MPFR_USE_VA_LIST to enable the use of mpfr_inits and mpfr_clears
#define MPFR_USE_VA_LIST
#include <mpfr.h>
#include <libinum.h>
int func(mpfr_t* out, mpfr_t in, void* extra_args);
int main(int argc, const char* argv[]){
int ret;
mpfr_t tolerance, val, lower, upper;
array_mpfr abcissa, weights;
// precision of MPFR floats
mpfr_set_default_prec(53);
// tolerance for computing weights
mpfr_init(tolerance);
mpfr_set_d(tolerance, 1.e-11, MPFR_RNDN);
// compute weights
ret=gauss_legendre_weights_mpfr(10, tolerance, 10000, &abcissa, &weights);
// return codes
if(ret==LIBINUM_ERROR_MAXITER){
printf("error: maximum number of iterations reached when computing the integration abcissa\n");
mpfr_clear(tolerance);
return(ret);
}
else if(ret==LIBINUM_ERROR_NAN){
printf("error: infinity encountered when computing the integration abcissa\n");
mpfr_clear(tolerance);
return(ret);
}
else{
printf("abcissa:\n");
array_mpfr_print(abcissa);
printf("\nweights:\n");
array_mpfr_print(weights);
printf("\n");
}
mpfr_clear(tolerance);
mpfr_inits(val, lower, upper, NULL);
mpfr_set_ui(lower, 0, MPFR_RNDN);
mpfr_set_ui(upper, 2, MPFR_RNDN);
ret=integrate_gauss_mpfr(&val, &func, lower, upper, abcissa, weights, NULL);
// return codes
if(ret==LIBINUM_ERROR_SIZE_MISMATCH){
printf("error: the mpfr_arrays 'abcissa' and 'weights' must have the same length\n");
mpfr_clears(val, upper, lower, NULL);
array_mpfr_free(abcissa);
array_mpfr_free(weights);
return(ret);
}
else if(ret==LIBINUM_ERROR_NAN){
printf("error: the integrand is singular\n");
array_mpfr_free(abcissa);
array_mpfr_free(weights);
mpfr_clears(val, upper, lower, NULL);
return(ret);
}
else{
printf("\\int_0^2 x/sin(x) dx = ");
fprint_mpfr(stdout, val);
printf("\n");
}
mpfr_clears(val, upper, lower, NULL);
array_mpfr_free(abcissa);
array_mpfr_free(weights);
return(0);
}
/*
// e^x
int func(mpfr_t* out, mpfr_t in, void* extra_args){
mpfr_exp(*out, in, MPFR_RNDN);
return(0);
}
*/
// x/sin(x)
int func(mpfr_t* out, mpfr_t in, void* extra_args){
mpfr_sin(*out, in, MPFR_RNDN);
mpfr_div(*out, in, *out, MPFR_RNDN);
return(0);
}

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#include <stdio.h>
#include <stdarg.h>
// define MPFR_USE_VA_LIST to enable the use of mpfr_inits and mpfr_clears
#define MPFR_USE_VA_LIST
#include <mpfr.h>
#include <libinum.h>
int func(mpfr_t* out, mpfr_t in, void* extra_args);
int dfunc(mpfr_t* out, mpfr_t in, void* extra_args);
int main(int argc, const char* argv[]){
int ret;
mpfr_t init, prec, x;
unsigned int maxiter;
int extra_arg;
mpfr_inits(init, prec, x, NULL);
// start at 2
mpfr_set_ui(init, 2, MPFR_RNDN);
// precision
mpfr_set_d(prec, 1.e-30, MPFR_RNDN);
// maximum number of iterations before error
maxiter=10000;
// extra argument
extra_arg=4;
// compute root
ret=root_newton_mpfr(&x, &func, &dfunc, init, prec, maxiter, &extra_arg);
// return codes
if(ret==LIBINUM_ERROR_MAXITER){
printf("error: maximum number of iterations reached\n");
}
else if(ret==LIBINUM_ERROR_NAN){
printf("error: infinity encountered\n");
}
else{
mpfr_printf("% 14.7Re\n", x);
}
mpfr_clears(init, prec, x, NULL);
return(0);
}
// x^2-1
int func(mpfr_t* out, mpfr_t in, void* extra_args){
mpfr_pow_ui(*out, in, 2, MPFR_RNDN);
mpfr_add_d(*out, *out, -1./ *((int*)extra_args), MPFR_RNDN);
return(0);
}
// 2*x
int dfunc(mpfr_t* out, mpfr_t in, void* extra_args){
mpfr_mul_ui(*out, in, 2, MPFR_RNDN);
return(0);
}