From 8174a918ea3b7cb216bf7ea98cfdc10661b5c37d Mon Sep 17 00:00:00 2001 From: Florian Fischer Date: Wed, 6 May 2020 16:56:32 +0200 Subject: make the whole project more python idiomatic * rename src directory to allocbench * make global variable names UPPERCASE * format a lot of code using yapf * use lowercase ld_preload and ld_library_path as Allocator members * name expected Errors 'err' and don't raise a new Exception * disable some pylint messages --- src/benchmarks/__init__.py | 17 - src/benchmarks/blowup.py | 82 - src/benchmarks/blowup/Makefile | 25 - src/benchmarks/blowup/blowup.c | 115 - src/benchmarks/cfrac.py | 126 - src/benchmarks/cfrac/CMakeLists.txt | 18 - src/benchmarks/cfrac/README.md | 5 - src/benchmarks/cfrac/asm16bit.h | 39 - src/benchmarks/cfrac/atop.c | 61 - src/benchmarks/cfrac/cfrac.c | 268 --- src/benchmarks/cfrac/errorp.c | 27 - src/benchmarks/cfrac/getopt.c | 757 ------ src/benchmarks/cfrac/getopt.h | 125 - src/benchmarks/cfrac/itop.c | 25 - src/benchmarks/cfrac/ltop.c | 25 - src/benchmarks/cfrac/pabs.c | 22 - src/benchmarks/cfrac/padd.c | 94 - src/benchmarks/cfrac/pcfrac.c | 731 ------ src/benchmarks/cfrac/pcmp.c | 68 - src/benchmarks/cfrac/pconst.c | 46 - src/benchmarks/cfrac/pcvt.h | 32 - src/benchmarks/cfrac/pdefs.h | 138 -- src/benchmarks/cfrac/pdivmod.c | 315 --- src/benchmarks/cfrac/pfactor.c | 55 - src/benchmarks/cfrac/pfactor.h | 62 - src/benchmarks/cfrac/pfloat.c | 61 - src/benchmarks/cfrac/pgcd.c | 24 - src/benchmarks/cfrac/phalf.c | 36 - src/benchmarks/cfrac/picmp.c | 41 - src/benchmarks/cfrac/pidiv.c | 60 - src/benchmarks/cfrac/pimod.c | 48 - src/benchmarks/cfrac/pio.c | 165 -- src/benchmarks/cfrac/pmul.c | 84 - src/benchmarks/cfrac/pneg.c | 25 - src/benchmarks/cfrac/podd.c | 16 - src/benchmarks/cfrac/pops.c | 339 --- src/benchmarks/cfrac/ppowmod.c | 28 - src/benchmarks/cfrac/precision.h | 314 --- src/benchmarks/cfrac/primes.c | 662 ------ src/benchmarks/cfrac/primes.h | 2 - src/benchmarks/cfrac/psqrt.c | 29 - src/benchmarks/cfrac/psub.c | 92 - src/benchmarks/cfrac/ptoa.c | 71 - src/benchmarks/cfrac/ptob.c | 81 - src/benchmarks/cfrac/ptou.c | 31 - src/benchmarks/cfrac/seive.h | 3 - src/benchmarks/cfrac/utop.c | 25 - src/benchmarks/dj_trace.py | 445 ---- src/benchmarks/dj_trace/Makefile | 25 - src/benchmarks/dj_trace/trace_run.c | 750 ------ src/benchmarks/espresso.py | 127 - src/benchmarks/espresso/CMakeLists.txt | 17 - src/benchmarks/espresso/README.md | 22 - src/benchmarks/espresso/ansi.h | 44 - src/benchmarks/espresso/cofactor.c | 373 --- src/benchmarks/espresso/cols.c | 306 --- src/benchmarks/espresso/compl.c | 667 ------ src/benchmarks/espresso/contain.c | 432 ---- src/benchmarks/espresso/copyright.h | 29 - src/benchmarks/espresso/cubestr.c | 143 -- src/benchmarks/espresso/cvrin.c | 793 ------- src/benchmarks/espresso/cvrm.c | 530 ----- src/benchmarks/espresso/cvrmisc.c | 140 -- src/benchmarks/espresso/cvrout.c | 588 ----- src/benchmarks/espresso/dominate.c | 90 - src/benchmarks/espresso/equiv.c | 85 - src/benchmarks/espresso/espresso.c | 130 -- src/benchmarks/espresso/espresso.h | 772 ------- src/benchmarks/espresso/essen.c | 170 -- src/benchmarks/espresso/exact.c | 166 -- src/benchmarks/espresso/expand.c | 680 ------ src/benchmarks/espresso/gasp.c | 219 -- src/benchmarks/espresso/getopt.c | 45 - src/benchmarks/espresso/gimpel.c | 98 - src/benchmarks/espresso/globals.c | 67 - src/benchmarks/espresso/hack.c | 632 ----- src/benchmarks/espresso/indep.c | 126 - src/benchmarks/espresso/irred.c | 431 ---- src/benchmarks/espresso/largest.espresso | 2812 ----------------------- src/benchmarks/espresso/main.c | 746 ------ src/benchmarks/espresso/main.h | 113 - src/benchmarks/espresso/map.c | 106 - src/benchmarks/espresso/matrix.c | 566 ----- src/benchmarks/espresso/mincov.c | 370 --- src/benchmarks/espresso/mincov.h | 2 - src/benchmarks/espresso/mincov_int.h | 44 - src/benchmarks/espresso/opo.c | 615 ----- src/benchmarks/espresso/pair.c | 666 ------ src/benchmarks/espresso/part.c | 114 - src/benchmarks/espresso/port.h | 263 --- src/benchmarks/espresso/primes.c | 161 -- src/benchmarks/espresso/reduce.c | 249 -- src/benchmarks/espresso/regex.h | 269 --- src/benchmarks/espresso/rows.c | 306 --- src/benchmarks/espresso/set.c | 811 ------- src/benchmarks/espresso/setc.c | 474 ---- src/benchmarks/espresso/sharp.c | 238 -- src/benchmarks/espresso/sminterf.c | 35 - src/benchmarks/espresso/solution.c | 106 - src/benchmarks/espresso/sparse.c | 137 -- src/benchmarks/espresso/sparse.h | 126 - src/benchmarks/espresso/sparse_int.h | 110 - src/benchmarks/espresso/stdlib.h | 38 - src/benchmarks/espresso/unate.c | 432 ---- src/benchmarks/espresso/utility.c | 162 -- src/benchmarks/espresso/utility.h | 93 - src/benchmarks/espresso/verify.c | 184 -- src/benchmarks/falsesharing.py | 126 - src/benchmarks/falsesharing/Makefile | 31 - src/benchmarks/falsesharing/cache-scratch.cc | 147 -- src/benchmarks/falsesharing/cache-thrash.cc | 134 -- src/benchmarks/falsesharing/cpuinfo.h | 202 -- src/benchmarks/falsesharing/fred.h | 97 - src/benchmarks/falsesharing/timer.h | 372 --- src/benchmarks/fd.py | 93 - src/benchmarks/httpd.py | 94 - src/benchmarks/httpd/Makefile | 36 - src/benchmarks/httpd/etc/nginx/nginx.conf | 115 - src/benchmarks/httpd/etc/php/php-fpm.conf | 144 -- src/benchmarks/httpd/etc/php/php-fpm.d/www.conf | 430 ---- src/benchmarks/httpd/etc/php/php.ini | 1945 ---------------- src/benchmarks/httpd/html/index.html | 5 - src/benchmarks/httpd/html/index.php | 10 - src/benchmarks/httpd/php/index.php | 1 - src/benchmarks/keydb.py | 129 -- src/benchmarks/larson.py | 101 - src/benchmarks/larson/Makefile | 25 - src/benchmarks/larson/larson.cc | 754 ------ src/benchmarks/lld.py | 300 --- src/benchmarks/loop.py | 117 - src/benchmarks/loop/Makefile | 25 - src/benchmarks/loop/loop.c | 45 - src/benchmarks/mysql.py | 325 --- src/benchmarks/raxmlng.py | 108 - src/benchmarks/rdtsc.py | 81 - src/benchmarks/rdtsc/Makefile | 25 - src/benchmarks/rdtsc/rdtsc.c | 105 - src/benchmarks/realloc.py | 50 - src/benchmarks/realloc/Makefile | 25 - src/benchmarks/realloc/realloc.c | 14 - src/benchmarks/redis.py | 105 - src/benchmarks/redis/build.sh | 37 - src/benchmarks/t_test1.py | 77 - src/benchmarks/t_test1/Makefile | 35 - src/benchmarks/t_test1/t-test1.c | 404 ---- 145 files changed, 31874 deletions(-) delete mode 100644 src/benchmarks/__init__.py delete mode 100644 src/benchmarks/blowup.py delete mode 100644 src/benchmarks/blowup/Makefile delete mode 100644 src/benchmarks/blowup/blowup.c delete mode 100644 src/benchmarks/cfrac.py delete mode 100644 src/benchmarks/cfrac/CMakeLists.txt delete mode 100644 src/benchmarks/cfrac/README.md delete mode 100644 src/benchmarks/cfrac/asm16bit.h delete mode 100644 src/benchmarks/cfrac/atop.c delete mode 100644 src/benchmarks/cfrac/cfrac.c delete mode 100644 src/benchmarks/cfrac/errorp.c delete mode 100644 src/benchmarks/cfrac/getopt.c delete mode 100644 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file is part of allocbench. -# -# allocbench is free software: you can redistribute it and/or modify -# it under the terms of the GNU General Public License as published by -# the Free Software Foundation, either version 3 of the License, or -# (at your option) any later version. -# -# allocbench is distributed in the hope that it will be useful, -# but WITHOUT ANY WARRANTY; without even the implied warranty of -# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -# GNU General Public License for more details. -# -# You should have received a copy of the GNU General Public License -# along with allocbench. If not, see . -"""allocbench benchmark definitions""" diff --git a/src/benchmarks/blowup.py b/src/benchmarks/blowup.py deleted file mode 100644 index a4e65ea..0000000 --- a/src/benchmarks/blowup.py +++ /dev/null @@ -1,82 +0,0 @@ -# Copyright 2018-2019 Florian Fischer -# -# This file is part of allocbench. -# -# allocbench is free software: you can redistribute it and/or modify -# it under the terms of the GNU General Public License as published by -# the Free Software Foundation, either version 3 of the License, or -# (at your option) any later version. -# -# allocbench is distributed in the hope that it will be useful, -# but WITHOUT ANY WARRANTY; without even the implied warranty of -# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -# GNU General Public License for more details. -# -# You should have received a copy of the GNU General Public License -# along with allocbench. If not, see . -"""Definition of the blowup micro benchmark""" - -from src.benchmark import Benchmark -import src.plots as plt - - -class BenchmarkBlowup(Benchmark): - """Blowup micro benchmark - - Check if allocators reuse memory. - Thread behaviour: - 1. Do many allocations and frees (100MiB is the maximum of live allocations at all times) - 2. Start new thread - 3. Join new thread - A perfect reusing allocator would need 100MiB RSS and a non reusing allocator - would need 1GiB. - """ - def __init__(self): - name = "blowup" - - self.cmd = "blowup" - - self.requirements = ["blowup"] - super().__init__(name) - - def summary(self): - # hack ideal rss in data set - allocators = self.results["allocators"] - allocators["Ideal-RSS"] = {"color": "xkcd:gold"} - self.results["stats"]["Ideal-RSS"] = {} - for perm in self.iterate_args(args=self.results["args"]): - self.results["stats"]["Ideal-RSS"][perm] = { - "mean": { - "VmHWM": 1024 * 100 - }, - "std": { - "VmHWM": 0 - } - } - - plt.plot(self, - "{VmHWM}/1000", - plot_type='bar', - fig_options={ - 'ylabel': "VmHWM in MB", - 'title': "blowup test" - }, - file_postfix="vmhwm") - - plt.pgfplot(self, - self.iterate_args(self.results["args"]), - "'blowup'", - "{VmHWM}/1000", - xlabel="", - ylabel="VmHWM in MB", - title="blowup test", - postfix="vmhwm", - bar=True) - - del allocators["Ideal-RSS"] - del self.results["stats"]["Ideal-RSS"] - - # plt.export_stats_to_dataref(self, "VmHWM") - - -blowup = BenchmarkBlowup() diff --git a/src/benchmarks/blowup/Makefile b/src/benchmarks/blowup/Makefile deleted file mode 100644 index afb5f2a..0000000 --- a/src/benchmarks/blowup/Makefile +++ /dev/null @@ -1,25 +0,0 @@ -OBJDIR ?= obj - -CC ?= gcc - -WARNFLAGS ?= -Wall -Wextra -COMMONFLAGS ?= -fno-builtin -fPIC -DPIC -pthread -OPTFLAGS ?= -O3 -DNDEBUG - -CFLAGS ?= $(OPTFLAGS) $(WARNFLAGS) $(COMMONFLAGS) - -LDFLAGS ?= -pthread -static-libgcc - -.PHONY = all clean - -all: $(OBJDIR)/blowup - -$(OBJDIR)/blowup: blowup.c | $(OBJDIR) - @echo compiling $@... - $(CC) $(LDFLAGS) $(CFLAGS) -o $@ $< - -$(OBJDIR): - mkdir -p $@ - -clean: - rm -rf $(OBJDIR) diff --git a/src/benchmarks/blowup/blowup.c b/src/benchmarks/blowup/blowup.c deleted file mode 100644 index 37ba6d6..0000000 --- a/src/benchmarks/blowup/blowup.c +++ /dev/null @@ -1,115 +0,0 @@ -#include -#include -#include -#include -#include - -#define NUM_THREADS 10 -#define LIFE_DATA (1024l * 1024 * 100) // 100 MiB -#define ALLOCATIONS 100000l // 100000 -#define MAX_SIZE (1024l * 16) // 16KiB - -typedef struct chunk { - struct chunk* next; - char data[]; -} chunk_t; - -static inline size_t rand_size() -{ - return (rand() % MAX_SIZE) + sizeof(chunk_t); -} - -static void do_work() -{ - chunk_t* head = NULL; - chunk_t* tail = NULL; - size_t to_allocate = LIFE_DATA; - - // allocate life data - while(to_allocate > 0) { - size_t size = rand_size(); - if (size > to_allocate) - size = to_allocate; - - to_allocate -= size; - chunk_t* cur = (chunk_t*) malloc(size); - // touch memory - memset(&cur->data, 0, size - sizeof(struct chunk*)); - - if(!head) { - head = tail = cur; - } - else { - tail->next = cur; - tail = cur; - } - } - - // Do some random allocations to change the allocators state - for(int i = 0; i < ALLOCATIONS; i++) - { - free(malloc(rand_size())); - } - - // free life data - do { - chunk_t* next = head->next; - free(head); - head = next; - } while(head != tail); - - // Do some random allocations to change the allocators state - for(int i = 0; i < ALLOCATIONS; i++) - { - free(malloc(rand_size())); - } - - return; -} - -static void* thread_func(void* arg) -{ - unsigned int* thread_id = (unsigned int*)arg; - pthread_t next_thread; - - printf("thread %d doing work\n", *thread_id); - do_work(); - - if (*thread_id == NUM_THREADS) - return NULL; - - printf("thread %d spawning new thread work\n", *thread_id); - *thread_id = (*thread_id) + 1; - if (0 != pthread_create(&next_thread, NULL, thread_func, arg)) { - perror("pthread_create"); - return NULL; - } - - printf("thread %d joining thread %d work\n", *thread_id-1, *thread_id); - if (0 != pthread_join(next_thread, NULL)) { - perror("pthread_join"); - return NULL; - } - - return NULL; -} - -int main() -{ - unsigned int thread_count = 0; - pthread_t first; - - do_work(); - - if (0 != pthread_create(&first, NULL, thread_func, &thread_count)) { - perror("pthread_create"); - return 1; - } - - if (0 != pthread_join(first, NULL)) { - perror("pthread_join"); - return 1; - } - - return 0; -} diff --git a/src/benchmarks/cfrac.py b/src/benchmarks/cfrac.py deleted file mode 100644 index 1f495e6..0000000 --- a/src/benchmarks/cfrac.py +++ /dev/null @@ -1,126 +0,0 @@ -# Copyright 2018-2019 Florian Fischer -# -# This file is part of allocbench. -# -# allocbench is free software: you can redistribute it and/or modify -# it under the terms of the GNU General Public License as published by -# the Free Software Foundation, either version 3 of the License, or -# (at your option) any later version. -# -# allocbench is distributed in the hope that it will be useful, -# but WITHOUT ANY WARRANTY; without even the implied warranty of -# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -# GNU General Public License for more details. -# -# You should have received a copy of the GNU General Public License -# along with allocbench. If not, see . -"""cfrac is a single threaded implementation of the continued fraction factorization algorithm, -described by Zorn and Grunwald in their paper "Empirical Measurements of Six Allocation-intensive C Programs" in 1992. - -It is mentioned in: -* Dirk Grunwald et al. - 1992 - CustoMalloc: Efficient Synthesized Memory Allocators -* Emery Berger et al. - 2001 - Composing High-Performance Memory Allocators -* Emery Berger et al. - 2002 - Reconsidering Custom Memory Allocation -* Jason Evans - 2006 - A Scalable Concurrent malloc(3) Implementation for FreeBSD -* Daan Leijen et al. - 2019 - Mimalloc: Free List Sharding in Action - -It uses many small short-lived allocations. -Factorizing 175451865205073170563711388363274837927895 results in -43044885 allocator calls (malloc: 21522444, free: 21522441). - -Allocator portion of total cycles measured using perf record/report: -malloc 4.33% -free 7.74% - -Top 10 allocation sizes 99.95% of all allocations -1. 18 B occurred 8172763 times -2. 28 B occurred 3781894 times -3. 10 B occurred 2989673 times -4. 26 B occurred 2566937 times -5. 20 B occurred 2420915 times -6. 16 B occurred 1168569 times -7. 12 B occurred 203177 times -8. 14 B occurred 170914 times -9. 30 B occurred 21149 times -10. 44 B occurred 15922 times - -allocations <= 64 21522432 100.00% -allocations <= 1024 21522436 100.00% -allocations <= 4096 21522443 100.00% - -Histogram of sizes: -0 - 15 3363764 15.63% ******* -16 - 31 18132778 84.25% ****************************************** -32 - 47 25888 0.12% -... - -The relevant non functional allocator properties are the raw speed of the -API function as well as memory placement strategies with good data locality. -""" - -from src.benchmark import Benchmark -import src.plots as plt - - -class BenchmarkCfrac(Benchmark): - """Definition of the cfrac benchmark""" - def __init__(self): - name = "cfrac" - - self.cmd = "cfrac{binary_suffix} {num}" - - self.args = {"num": [175451865205073170563711388363274837927895]} - - self.requirements = ["cfrac"] - super().__init__(name) - - def summary(self): - # Speed - plt.plot(self, - "{task-clock}/1000", - plot_type='bar', - fig_options={ - 'ylabel': 'cpu-second', - 'title': 'Cfrac: runtime', - }, - file_postfix="time") - - # L1 cache misses - plt.plot( - self, - "({L1-dcache-load-misses}/{L1-dcache-loads})*100", - plot_type='bar', - fig_options={ - 'ylabel': "L1 misses in %", - 'title': "Cfrac l1 cache misses", - 'yerr': False - }, - file_postfix="l1misses") - - # Memusage - plt.plot(self, - "{VmHWM}", - plot_type='bar', - fig_options={ - 'ylabel': "VmHWM in KB", - 'title': "Cfrac VmHWM", - }, - file_postfix="vmhwm") - - plt.write_tex_table(self, [{ - "label": "Runtime [ms]", - "expression": "{task-clock}", - "sort": "<" - }, { - "label": "Memusage [KB]", - "expression": "{VmHWM}", - "sort": "<" - }], - file_postfix="table") - - plt.export_stats_to_dataref(self, "task-clock") - - plt.export_stats_to_dataref(self, "VmHWM") - - -cfrac = BenchmarkCfrac() diff --git a/src/benchmarks/cfrac/CMakeLists.txt b/src/benchmarks/cfrac/CMakeLists.txt deleted file mode 100644 index b84d68c..0000000 --- a/src/benchmarks/cfrac/CMakeLists.txt +++ /dev/null @@ -1,18 +0,0 @@ -cmake_minimum_required(VERSION 3.0) -project(cfrac C) - -set(CMAKE_BUILD_TYPE "Release") - -set(cfrac_sources - cfrac.c - pops.c pconst.c pio.c - pabs.c pneg.c pcmp.c podd.c phalf.c - padd.c psub.c pmul.c pdivmod.c psqrt.c ppowmod.c - atop.c ptoa.c itop.c utop.c ptou.c errorp.c - pfloat.c pidiv.c pimod.c picmp.c - primes.c pcfrac.c pgcd.c) - -add_executable(cfrac ${cfrac_sources}) -target_compile_options(cfrac PRIVATE $<$:-std=gnu89>) -target_compile_definitions(cfrac PRIVATE NOMEMOPT=1) -target_link_libraries(cfrac m) diff --git a/src/benchmarks/cfrac/README.md b/src/benchmarks/cfrac/README.md deleted file mode 100644 index 529480a..0000000 --- a/src/benchmarks/cfrac/README.md +++ /dev/null @@ -1,5 +0,0 @@ -pcfrac: Implementation of the continued fraction factoring algoritm - -Every two digits additional appears to double the factoring time - -Written by Dave Barrett (barrett%asgard@boulder.Colorado.EDU) diff --git a/src/benchmarks/cfrac/asm16bit.h b/src/benchmarks/cfrac/asm16bit.h deleted file mode 100644 index 2fb6e48..0000000 --- a/src/benchmarks/cfrac/asm16bit.h +++ /dev/null @@ -1,39 +0,0 @@ -/* - * HP-UX C compiler conventions - * - * Args pushed right-to-left; caller pops args on return - * Function result returned in d0 or d0(msb) d1(lsb) pair - * Called function must preserve all registers except d0,d1,a0,a1 - * C Registers are allocated from top-to-bottem in text from d7-d2, a5-a2 - */ -#ifdef __STDC__ -extern digit memaddw(digitPtr, digitPtr, digitPtr, posit); -extern digit memsubw(digitPtr, digitPtr, digitPtr, posit); - -extern digit memincw(digitPtr, accumulator); -extern digit memdecw(digitPtr, accumulator); - -extern digit memmulw(digitPtr, digitPtr, posit, digitPtr, posit); - -extern digit memdivw(digitPtr, digitPtr, posit, digitPtr); -extern digit memdivw1(digitPtr, digitPtr, posit, digit); -extern digit memmulw1(digitPtr, digitPtr, posit, digit); -extern digit memmodw1(digitPtr, posit, digit); - -extern void memlsrw(digitPtr, posit); -#else -extern digit memaddw(); -extern digit memsubw(); - -extern digit memincw(); -extern digit memdecw(); - -extern digit memmulw(); - -extern digit memdivw(); -extern digit memdivw1(); -extern digit memmulw1(); -extern digit memmodw1(); - -extern void memlsrw(); -#endif diff --git a/src/benchmarks/cfrac/atop.c b/src/benchmarks/cfrac/atop.c deleted file mode 100644 index 98f132a..0000000 --- a/src/benchmarks/cfrac/atop.c +++ /dev/null @@ -1,61 +0,0 @@ -#include -#include "pdefs.h" -#include "pcvt.h" -#include "precision.h" - -/* - * ascii to precision (modeled after atoi) - * leading whitespace skipped - * an optional leading '-' or '+' followed by digits '0'..'9' - * leading 0's Ok - * stops at first unrecognized character - * - * Returns: pUndef if an invalid argument (pUndef or nondigit as 1st digit) - */ -precision atop(chp) - register char *chp; -{ - precision res = pUndef; - precision clump = pUndef; - int sign = 0; - register int ch; - register accumulator temp; - accumulator x; - register int i; - - if (chp != (char *) 0) { - while (isspace(*chp)) chp++; /* skip whitespace */ - if (*chp == '-') { - sign = 1; - ++chp; - } else if (*chp == '+') { - ++chp; - } - if (isdigit(ch = * (unsigned char *) chp)) { - pset(&res, pzero); - pset(&clump, utop(aDigit)); - do { - i = aDigitLog-1; - temp = ch - '0'; - do { - if (!isdigit(ch = * (unsigned char *) ++chp)) goto atoplast; - temp = temp * aBase + (ch - '0'); - } while (--i > 0); - pset(&res, padd(pmul(res, clump), utop(temp))); - } while (isdigit(ch = * (unsigned char *) ++chp)); - goto atopdone; -atoplast: - x = aBase; - while (i++ < aDigitLog-1) { - x *= aBase; - } - pset(&res, padd(pmul(res, utop(x)), utop(temp))); -atopdone: - if (sign) { - pset(&res, pneg(res)); - } - } - } - pdestroy(clump); - return presult(res); -} diff --git a/src/benchmarks/cfrac/cfrac.c b/src/benchmarks/cfrac/cfrac.c deleted file mode 100644 index 9185d18..0000000 --- a/src/benchmarks/cfrac/cfrac.c +++ /dev/null @@ -1,268 +0,0 @@ -#include -#include -#include /* for findk */ - -#if defined(_WIN32) -#include -#endif - -#include "pdefs.h" - -#ifdef __STDC__ -#include -#endif -#include "precision.h" -#include "pfactor.h" - -#ifdef __STDC__ -extern unsigned *pfactorbase(precision n, unsigned k, - unsigned *m, unsigned aborts); -extern double pomeranceLpow(double n, double alpha); -#else -extern unsigned *pfactorbase(); -extern double pomeranceLpow(); -#endif - -int verbose = 0; -int debug = 0; - -extern unsigned cfracNabort; -extern unsigned cfracTsolns; -extern unsigned cfracPsolns; -extern unsigned cfracT2solns; -extern unsigned cfracFsolns; - - -extern unsigned short primes[]; -extern unsigned primesize; - -/* - * Return the value of "f(p,d)" from Knuth's exercise 28 - */ -float pfKnuthEx28(p, d) - unsigned p; - precision d; -{ - register float res; - precision k = pUndef; - - (void) pparm(d); - if (p == 2) { - if (peven(d)) { - pset(&k, phalf(d)); - if (peven(k)) { - res = 2.0/3.0 + pfKnuthEx28(2,k)/2.0; /* eliminate powers of 2 */ - } else { /* until only one 2 left in d. */ - res = 1.0/3.0; /* independent of (the now odd) k. Wow! */ - } - } else { /* d now odd */ - pset(&k, phalf(d)); - if (podd(k)) { - res = 1.0/3.0; /* f(2,4k+3): d%8 == 3 or 7 */ - } else { - if (podd(phalf(k))) { - res = 2.0/3.0; /* f(2,8k+5): d%8 == 5 */ - } else { - res = 4.0/3.0; /* f(2,8k+1): d%8 == 1 */ - } - } - } - } else { /* PART 3: p odd, d could still be even (OK) */ - pset(&k, utop(p)); - if peq(ppowmod(d, phalf(psub(k, pone)), k), pone) { - res = (float) (p+p) / (((float) p)*p-1.0); /* beware int overflow! */ - } else { - res = 0.0; - } - } - - pdestroy(k); - pdestroy(d); - if (debug > 1) { - fprintf(stdout, "f(%u,", p); - fprintf(stdout, "d) = %9.7f\n", res); - } - return res; -} - -float cfrac_logf(unsigned p, precision n, unsigned k) -{ - register float res; - - (void) pparm(n); - -#if 0 /* old code for non-float machines; not worth the cost */ - pset(&r, utop(k)); - log2sqrtk = plogb(pipow(r, q >> 1), ptwo); - fplog2p = (f(p,pmul(r,n),q) * plogb(pipow(utop(p),q),ptwo)+(q>>1))/q; -#endif - - res = pfKnuthEx28(p, pmul(itop(k),n)) * log((double) p); - /* res -= log((double) k) * 0.5; */ - - pdestroy(n); - return res; -} - -/* - * Find the best value of k for the given n and m. - * - * Input/Output: - * n - the number to factor - * m - pointer to size of factorbase (0 = select "best" size) - * aborts - the number of early aborts - */ -unsigned findk(n, m, aborts, maxk) - precision n; - register unsigned *m; - unsigned aborts, maxk; -{ - unsigned k, bestk = 0, count, bestcount = 0, maxpm; - float sum, max = -1.0E+15; /* should be small enough */ - unsigned *p; - register unsigned i; - register unsigned short *primePtr; - - (void) pparm(n); - - for (k = 1; k < maxk; k++) { /* maxk should best be m+m? */ - if (debug) { - fputs("kN = ", stdout); - fputp(stdout, pmul(utop(k), n)); putc('\n', stdout); - } - count = *m; - p = pfactorbase(n, k, &count, aborts); - if (p == (unsigned *) 0) { - fprintf(stderr, "couldn't compute factor base in findk\n"); - exit(1); - } - - maxpm = p[count-1]; - - sum = 0.0; - primePtr = primes; - while (*primePtr <= maxpm) { - sum += cfrac_logf((unsigned) *primePtr++, n, k); - } - sum -= log((double) k) * 0.5; - if (verbose > 2) fprintf(stdout, "%u: %5.2f", k, sum); - if (debug) fprintf(stdout, " log(k)/2=%5.2f", log((double) k) * 0.5); - if (verbose > 2) { - fputs("\n", stdout); - fflush(stdout); - } - if (sum > max) { - max = sum; - bestk = k; - bestcount = count; - } -#ifndef IGNOREFREE - free(p); -#endif - } - - *m = bestcount; - pdestroy(n); - return bestk; -} - -extern char *optarg; -extern int optind; - -char *progName; - -extern int getopt(); - -int main(argc, argv) - int argc; - char *argv[]; -{ - unsigned m = 0, k = 0; - unsigned maxCount = 1<<30, count, maxk = 0; - int ch; - precision n = pUndef, f = pUndef; - unsigned aborts = 3; - unsigned *p; - double d; - - progName = *argv; - - while ((ch = getopt(argc, argv, "a:k:i:dv")) != EOF) switch (ch) { - case 'a': - aborts = atoi(optarg); - break; - case 'k': - maxk = atoi(optarg); - break; - case 'i': - maxCount = atoi(optarg); - break; - case 'd': - debug++; - break; - case 'v': - verbose++; - break; - default: -usage: fprintf(stderr, - "usage: %s [-dv] [-a aborts ] [-k maxk ] [-i maxCount ] n [[ m ] k ]\n", - progName); - return 1; - } - argc -= optind; - argv += optind; - - if (argc == 0) { - argc = 1; - static char* argvx[2] = { "17545186520507317056371138836327483792736", NULL }; - argv = argvx; - } - - if (argc < 1 || argc > 3) goto usage; - - pset(&n, atop(*argv++)); --argc; - if (argc) { m = atoi(*argv++); --argc; } - if (argc) { k = atoi(*argv++); --argc; } - - if (k == 0) { - if (maxk == 0) { - maxk = m / 2 + 5; - if (verbose) fprintf(stdout, "maxk = %u\n", maxk); - } - k = findk(n, &m, aborts, maxk); - if (verbose) { - fprintf(stdout, "k = %u\n", k); - } - } - - count = maxCount; - - pcfracInit(m, k, aborts); - - pset(&f, pcfrac(n, &count)); - count = maxCount - count; - if (verbose) { - putc('\n', stdout); - fprintf(stdout, "Iterations : %u\n", count); - fprintf(stdout, "Early Aborts : %u\n", cfracNabort); - fprintf(stdout, "Total Partials : %u\n", cfracTsolns); - fprintf(stdout, "Used Partials : %u\n", cfracT2solns); - fprintf(stdout, "Full Solutions : %u\n", cfracPsolns); - fprintf(stdout, "Factor Attempts: %u\n", cfracFsolns); - } - - if (f != pUndef) { - fputp(stdout, n); - fputs(" = ", stdout); - fputp(stdout, f); - fputs(" * ", stdout); - pdivmod(n, f, &n, pNull); - fputp(stdout, n); - putc('\n', stdout); - } - - pdestroy(f); - pdestroy(n); - - return 0; -} diff --git a/src/benchmarks/cfrac/errorp.c b/src/benchmarks/cfrac/errorp.c deleted file mode 100644 index 5868aa4..0000000 --- a/src/benchmarks/cfrac/errorp.c +++ /dev/null @@ -1,27 +0,0 @@ -#include -#include "precision.h" - -/* - * Fatal error (user substitutable) - * - * PNOMEM - out of memory (pcreate) - * PREFCOUNT - refcount negative (pdestroy) - * PUNDEFINED - undefined value referenced (all) - * PDOMAIN - domain error - * pdivmod: divide by zero - * psqrt: negative argument - * POVERFLOW - overflow - * itop: too big - */ -precision errorp(errnum, routine, message) - int errnum; - char *routine; - char *message; -{ - fputs(routine, stderr); - fputs(": ", stderr); - fputs(message, stderr); - fputs("\n", stderr); - abort(); /* remove this line if you want */ - return pUndef; -} diff --git a/src/benchmarks/cfrac/getopt.c b/src/benchmarks/cfrac/getopt.c deleted file mode 100644 index 788c2cb..0000000 --- a/src/benchmarks/cfrac/getopt.c +++ /dev/null @@ -1,757 +0,0 @@ -/* Getopt for GNU. - NOTE: getopt is now part of the C library, so if you don't know what - "Keep this file name-space clean" means, talk to roland@gnu.ai.mit.edu - before changing it! - - Copyright (C) 1987, 88, 89, 90, 91, 92, 93, 94 - Free Software Foundation, Inc. - - This program is free software; you can redistribute it and/or modify it - under the terms of the GNU General Public License as published by the - Free Software Foundation; either version 2, or (at your option) any - later version. - - This program is distributed in the hope that it will be useful, - but WITHOUT ANY WARRANTY; without even the implied warranty of - MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - GNU General Public License for more details. */ - -/* This tells Alpha OSF/1 not to define a getopt prototype in . - Ditto for AIX 3.2 and . */ -#ifndef _NO_PROTO -#define _NO_PROTO -#endif - -#include - -#ifdef HAVE_CONFIG_H -#if defined (emacs) || defined (CONFIG_BROKETS) -/* We use instead of "config.h" so that a compilation - using -I. -I$srcdir will use ./config.h rather than $srcdir/config.h - (which it would do because it found this file in $srcdir). */ -#include -#else -#include "config.h" -#endif -#endif - -#ifndef __STDC__ -/* This is a separate conditional since some stdc systems - reject `defined (const)'. */ -#ifndef const -#define const -#endif -#endif - -#include - -#ifdef HAVE_STRING_H -#include -#endif - -/* Comment out all this code if we are using the GNU C Library, and are not - actually compiling the library itself. This code is part of the GNU C - Library, but also included in many other GNU distributions. Compiling - and linking in this code is a waste when using the GNU C library - (especially if it is a shared library). Rather than having every GNU - program understand `configure --with-gnu-libc' and omit the object files, - it is simpler to just do this in the source for each such file. */ - -#if defined (_LIBC) || !defined (__GNU_LIBRARY__) - - -/* This needs to come after some library #include - to get __GNU_LIBRARY__ defined. */ -#ifdef __GNU_LIBRARY__ -/* Don't include stdlib.h for non-GNU C libraries because some of them - contain conflicting prototypes for getopt. */ -#include -#endif /* GNU C library. */ - -/* This version of `getopt' appears to the caller like standard Unix `getopt' - but it behaves differently for the user, since it allows the user - to intersperse the options with the other arguments. - - As `getopt' works, it permutes the elements of ARGV so that, - when it is done, all the options precede everything else. Thus - all application programs are extended to handle flexible argument order. - - Setting the environment variable POSIXLY_CORRECT disables permutation. - Then the behavior is completely standard. - - GNU application programs can use a third alternative mode in which - they can distinguish the relative order of options and other arguments. */ - -#include "getopt.h" - -/* For communication from `getopt' to the caller. - When `getopt' finds an option that takes an argument, - the argument value is returned here. - Also, when `ordering' is RETURN_IN_ORDER, - each non-option ARGV-element is returned here. */ - -char *optarg = NULL; - -/* Index in ARGV of the next element to be scanned. - This is used for communication to and from the caller - and for communication between successive calls to `getopt'. - - On entry to `getopt', zero means this is the first call; initialize. - - When `getopt' returns EOF, this is the index of the first of the - non-option elements that the caller should itself scan. - - Otherwise, `optind' communicates from one call to the next - how much of ARGV has been scanned so far. */ - -/* XXX 1003.2 says this must be 1 before any call. */ -int optind = 0; - -/* The next char to be scanned in the option-element - in which the last option character we returned was found. - This allows us to pick up the scan where we left off. - - If this is zero, or a null string, it means resume the scan - by advancing to the next ARGV-element. */ - -static char *nextchar; - -/* Callers store zero here to inhibit the error message - for unrecognized options. */ - -int opterr = 1; - -/* Set to an option character which was unrecognized. - This must be initialized on some systems to avoid linking in the - system's own getopt implementation. */ - -int optopt = '?'; - -/* Describe how to deal with options that follow non-option ARGV-elements. - - If the caller did not specify anything, - the default is REQUIRE_ORDER if the environment variable - POSIXLY_CORRECT is defined, PERMUTE otherwise. - - REQUIRE_ORDER means don't recognize them as options; - stop option processing when the first non-option is seen. - This is what Unix does. - This mode of operation is selected by either setting the environment - variable POSIXLY_CORRECT, or using `+' as the first character - of the list of option characters. - - PERMUTE is the default. We permute the contents of ARGV as we scan, - so that eventually all the non-options are at the end. This allows options - to be given in any order, even with programs that were not written to - expect this. - - RETURN_IN_ORDER is an option available to programs that were written - to expect options and other ARGV-elements in any order and that care about - the ordering of the two. We describe each non-option ARGV-element - as if it were the argument of an option with character code 1. - Using `-' as the first character of the list of option characters - selects this mode of operation. - - The special argument `--' forces an end of option-scanning regardless - of the value of `ordering'. In the case of RETURN_IN_ORDER, only - `--' can cause `getopt' to return EOF with `optind' != ARGC. */ - -static enum -{ - REQUIRE_ORDER, PERMUTE, RETURN_IN_ORDER -} ordering; - -/* Value of POSIXLY_CORRECT environment variable. */ -static char *posixly_correct; - -#ifdef __GNU_LIBRARY__ -/* We want to avoid inclusion of string.h with non-GNU libraries - because there are many ways it can cause trouble. - On some systems, it contains special magic macros that don't work - in GCC. */ -#include -#define my_index strchr -#else - -/* Avoid depending on library functions or files - whose names are inconsistent. */ - -char *getenv (); - -static char * -my_index (str, chr) - const char *str; - int chr; -{ - while (*str) - { - if (*str == chr) - return (char *) str; - str++; - } - return 0; -} - -/* If using GCC, we can safely declare strlen this way. - If not using GCC, it is ok not to declare it. */ -#ifdef __GNUC__ -/* Note that Motorola Delta 68k R3V7 comes with GCC but not stddef.h. - That was relevant to code that was here before. */ -#ifndef __STDC__ -/* gcc with -traditional declares the built-in strlen to return int, - and has done so at least since version 2.4.5. -- rms. */ -extern int strlen (const char *); -#endif /* not __STDC__ */ -#endif /* __GNUC__ */ - -#endif /* not __GNU_LIBRARY__ */ - -/* Handle permutation of arguments. */ - -/* Describe the part of ARGV that contains non-options that have - been skipped. `first_nonopt' is the index in ARGV of the first of them; - `last_nonopt' is the index after the last of them. */ - -static int first_nonopt; -static int last_nonopt; - -/* Exchange two adjacent subsequences of ARGV. - One subsequence is elements [first_nonopt,last_nonopt) - which contains all the non-options that have been skipped so far. - The other is elements [last_nonopt,optind), which contains all - the options processed since those non-options were skipped. - - `first_nonopt' and `last_nonopt' are relocated so that they describe - the new indices of the non-options in ARGV after they are moved. */ - -static void -exchange (argv) - char **argv; -{ - int bottom = first_nonopt; - int middle = last_nonopt; - int top = optind; - char *tem; - - /* Exchange the shorter segment with the far end of the longer segment. - That puts the shorter segment into the right place. - It leaves the longer segment in the right place overall, - but it consists of two parts that need to be swapped next. */ - - while (top > middle && middle > bottom) - { - if (top - middle > middle - bottom) - { - /* Bottom segment is the short one. */ - int len = middle - bottom; - register int i; - - /* Swap it with the top part of the top segment. */ - for (i = 0; i < len; i++) - { - tem = argv[bottom + i]; - argv[bottom + i] = argv[top - (middle - bottom) + i]; - argv[top - (middle - bottom) + i] = tem; - } - /* Exclude the moved bottom segment from further swapping. */ - top -= len; - } - else - { - /* Top segment is the short one. */ - int len = top - middle; - register int i; - - /* Swap it with the bottom part of the bottom segment. */ - for (i = 0; i < len; i++) - { - tem = argv[bottom + i]; - argv[bottom + i] = argv[middle + i]; - argv[middle + i] = tem; - } - /* Exclude the moved top segment from further swapping. */ - bottom += len; - } - } - - /* Update records for the slots the non-options now occupy. */ - - first_nonopt += (optind - last_nonopt); - last_nonopt = optind; -} - -/* Initialize the internal data when the first call is made. */ - -static const char * -_getopt_initialize (optstring) - const char *optstring; -{ - /* Start processing options with ARGV-element 1 (since ARGV-element 0 - is the program name); the sequence of previously skipped - non-option ARGV-elements is empty. */ - - first_nonopt = last_nonopt = optind = 1; - - nextchar = NULL; - - posixly_correct = getenv ("POSIXLY_CORRECT"); - - /* Determine how to handle the ordering of options and nonoptions. */ - - if (optstring[0] == '-') - { - ordering = RETURN_IN_ORDER; - ++optstring; - } - else if (optstring[0] == '+') - { - ordering = REQUIRE_ORDER; - ++optstring; - } - else if (posixly_correct != NULL) - ordering = REQUIRE_ORDER; - else - ordering = PERMUTE; - - return optstring; -} - -/* Scan elements of ARGV (whose length is ARGC) for option characters - given in OPTSTRING. - - If an element of ARGV starts with '-', and is not exactly "-" or "--", - then it is an option element. The characters of this element - (aside from the initial '-') are option characters. If `getopt' - is called repeatedly, it returns successively each of the option characters - from each of the option elements. - - If `getopt' finds another option character, it returns that character, - updating `optind' and `nextchar' so that the next call to `getopt' can - resume the scan with the following option character or ARGV-element. - - If there are no more option characters, `getopt' returns `EOF'. - Then `optind' is the index in ARGV of the first ARGV-element - that is not an option. (The ARGV-elements have been permuted - so that those that are not options now come last.) - - OPTSTRING is a string containing the legitimate option characters. - If an option character is seen that is not listed in OPTSTRING, - return '?' after printing an error message. If you set `opterr' to - zero, the error message is suppressed but we still return '?'. - - If a char in OPTSTRING is followed by a colon, that means it wants an arg, - so the following text in the same ARGV-element, or the text of the following - ARGV-element, is returned in `optarg'. Two colons mean an option that - wants an optional arg; if there is text in the current ARGV-element, - it is returned in `optarg', otherwise `optarg' is set to zero. - - If OPTSTRING starts with `-' or `+', it requests different methods of - handling the non-option ARGV-elements. - See the comments about RETURN_IN_ORDER and REQUIRE_ORDER, above. - - Long-named options begin with `--' instead of `-'. - Their names may be abbreviated as long as the abbreviation is unique - or is an exact match for some defined option. If they have an - argument, it follows the option name in the same ARGV-element, separated - from the option name by a `=', or else the in next ARGV-element. - When `getopt' finds a long-named option, it returns 0 if that option's - `flag' field is nonzero, the value of the option's `val' field - if the `flag' field is zero. - - The elements of ARGV aren't really const, because we permute them. - But we pretend they're const in the prototype to be compatible - with other systems. - - LONGOPTS is a vector of `struct option' terminated by an - element containing a name which is zero. - - LONGIND returns the index in LONGOPT of the long-named option found. - It is only valid when a long-named option has been found by the most - recent call. - - If LONG_ONLY is nonzero, '-' as well as '--' can introduce - long-named options. */ - -int -_getopt_internal (argc, argv, optstring, longopts, longind, long_only) - int argc; - char *const *argv; - const char *optstring; - const struct option *longopts; - int *longind; - int long_only; -{ - optarg = NULL; - - if (optind == 0) - optstring = _getopt_initialize (optstring); - - if (nextchar == NULL || *nextchar == '\0') - { - /* Advance to the next ARGV-element. */ - - if (ordering == PERMUTE) - { - /* If we have just processed some options following some non-options, - exchange them so that the options come first. */ - - if (first_nonopt != last_nonopt && last_nonopt != optind) - exchange ((char **) argv); - else if (last_nonopt != optind) - first_nonopt = optind; - - /* Skip any additional non-options - and extend the range of non-options previously skipped. */ - - while (optind < argc - && (argv[optind][0] != '-' || argv[optind][1] == '\0')) - optind++; - last_nonopt = optind; - } - - /* The special ARGV-element `--' means premature end of options. - Skip it like a null option, - then exchange with previous non-options as if it were an option, - then skip everything else like a non-option. */ - - if (optind != argc && !strcmp (argv[optind], "--")) - { - optind++; - - if (first_nonopt != last_nonopt && last_nonopt != optind) - exchange ((char **) argv); - else if (first_nonopt == last_nonopt) - first_nonopt = optind; - last_nonopt = argc; - - optind = argc; - } - - /* If we have done all the ARGV-elements, stop the scan - and back over any non-options that we skipped and permuted. */ - - if (optind == argc) - { - /* Set the next-arg-index to point at the non-options - that we previously skipped, so the caller will digest them. */ - if (first_nonopt != last_nonopt) - optind = first_nonopt; - return EOF; - } - - /* If we have come to a non-option and did not permute it, - either stop the scan or describe it to the caller and pass it by. */ - - if ((argv[optind][0] != '-' || argv[optind][1] == '\0')) - { - if (ordering == REQUIRE_ORDER) - return EOF; - optarg = argv[optind++]; - return 1; - } - - /* We have found another option-ARGV-element. - Skip the initial punctuation. */ - - nextchar = (argv[optind] + 1 - + (longopts != NULL && argv[optind][1] == '-')); - } - - /* Decode the current option-ARGV-element. */ - - /* Check whether the ARGV-element is a long option. - - If long_only and the ARGV-element has the form "-f", where f is - a valid short option, don't consider it an abbreviated form of - a long option that starts with f. Otherwise there would be no - way to give the -f short option. - - On the other hand, if there's a long option "fubar" and - the ARGV-element is "-fu", do consider that an abbreviation of - the long option, just like "--fu", and not "-f" with arg "u". - - This distinction seems to be the most useful approach. */ - - if (longopts != NULL - && (argv[optind][1] == '-' - || (long_only && (argv[optind][2] || !my_index (optstring, argv[optind][1]))))) - { - char *nameend; - const struct option *p; - const struct option *pfound = NULL; - int exact = 0; - int ambig = 0; - int indfound; - int option_index; - - for (nameend = nextchar; *nameend && *nameend != '='; nameend++) - /* Do nothing. */ ; - - /* Test all long options for either exact match - or abbreviated matches. */ - for (p = longopts, option_index = 0; p->name; p++, option_index++) - if (!strncmp (p->name, nextchar, nameend - nextchar)) - { - if (nameend - nextchar == (int) strlen (p->name)) - { - /* Exact match found. */ - pfound = p; - indfound = option_index; - exact = 1; - break; - } - else if (pfound == NULL) - { - /* First nonexact match found. */ - pfound = p; - indfound = option_index; - } - else - /* Second or later nonexact match found. */ - ambig = 1; - } - - if (ambig && !exact) - { - if (opterr) - fprintf (stderr, "%s: option `%s' is ambiguous\n", - argv[0], argv[optind]); - nextchar += strlen (nextchar); - optind++; - return '?'; - } - - if (pfound != NULL) - { - option_index = indfound; - optind++; - if (*nameend) - { - /* Don't test has_arg with >, because some C compilers don't - allow it to be used on enums. */ - if (pfound->has_arg) - optarg = nameend + 1; - else - { - if (opterr) - { - if (argv[optind - 1][1] == '-') - /* --option */ - fprintf (stderr, - "%s: option `--%s' doesn't allow an argument\n", - argv[0], pfound->name); - else - /* +option or -option */ - fprintf (stderr, - "%s: option `%c%s' doesn't allow an argument\n", - argv[0], argv[optind - 1][0], pfound->name); - } - nextchar += strlen (nextchar); - return '?'; - } - } - else if (pfound->has_arg == 1) - { - if (optind < argc) - optarg = argv[optind++]; - else - { - if (opterr) - fprintf (stderr, "%s: option `%s' requires an argument\n", - argv[0], argv[optind - 1]); - nextchar += strlen (nextchar); - return optstring[0] == ':' ? ':' : '?'; - } - } - nextchar += strlen (nextchar); - if (longind != NULL) - *longind = option_index; - if (pfound->flag) - { - *(pfound->flag) = pfound->val; - return 0; - } - return pfound->val; - } - - /* Can't find it as a long option. If this is not getopt_long_only, - or the option starts with '--' or is not a valid short - option, then it's an error. - Otherwise interpret it as a short option. */ - if (!long_only || argv[optind][1] == '-' - || my_index (optstring, *nextchar) == NULL) - { - if (opterr) - { - if (argv[optind][1] == '-') - /* --option */ - fprintf (stderr, "%s: unrecognized option `--%s'\n", - argv[0], nextchar); - else - /* +option or -option */ - fprintf (stderr, "%s: unrecognized option `%c%s'\n", - argv[0], argv[optind][0], nextchar); - } - nextchar = (char *) ""; - optind++; - return '?'; - } - } - - /* Look at and handle the next short option-character. */ - - { - char c = *nextchar++; - char *temp = my_index (optstring, c); - - /* Increment `optind' when we start to process its last character. */ - if (*nextchar == '\0') - ++optind; - - if (temp == NULL || c == ':') - { - if (opterr) - { - if (posixly_correct) - /* 1003.2 specifies the format of this message. */ - fprintf (stderr, "%s: illegal option -- %c\n", argv[0], c); - else - fprintf (stderr, "%s: invalid option -- %c\n", argv[0], c); - } - optopt = c; - return '?'; - } - if (temp[1] == ':') - { - if (temp[2] == ':') - { - /* This is an option that accepts an argument optionally. */ - if (*nextchar != '\0') - { - optarg = nextchar; - optind++; - } - else - optarg = NULL; - nextchar = NULL; - } - else - { - /* This is an option that requires an argument. */ - if (*nextchar != '\0') - { - optarg = nextchar; - /* If we end this ARGV-element by taking the rest as an arg, - we must advance to the next element now. */ - optind++; - } - else if (optind == argc) - { - if (opterr) - { - /* 1003.2 specifies the format of this message. */ - fprintf (stderr, "%s: option requires an argument -- %c\n", - argv[0], c); - } - optopt = c; - if (optstring[0] == ':') - c = ':'; - else - c = '?'; - } - else - /* We already incremented `optind' once; - increment it again when taking next ARGV-elt as argument. */ - optarg = argv[optind++]; - nextchar = NULL; - } - } - return c; - } -} - -int -getopt (argc, argv, optstring) - int argc; - char *const *argv; - const char *optstring; -{ - return _getopt_internal (argc, argv, optstring, - (const struct option *) 0, - (int *) 0, - 0); -} - -#endif /* _LIBC or not __GNU_LIBRARY__. */ - -#ifdef TEST - -/* Compile with -DTEST to make an executable for use in testing - the above definition of `getopt'. */ - -int -main (argc, argv) - int argc; - char **argv; -{ - int c; - int digit_optind = 0; - - while (1) - { - int this_option_optind = optind ? optind : 1; - - c = getopt (argc, argv, "abc:d:0123456789"); - if (c == EOF) - break; - - switch (c) - { - case '0': - case '1': - case '2': - case '3': - case '4': - case '5': - case '6': - case '7': - case '8': - case '9': - if (digit_optind != 0 && digit_optind != this_option_optind) - printf ("digits occur in two different argv-elements.\n"); - digit_optind = this_option_optind; - printf ("option %c\n", c); - break; - - case 'a': - printf ("option a\n"); - break; - - case 'b': - printf ("option b\n"); - break; - - case 'c': - printf ("option c with value `%s'\n", optarg); - break; - - case '?': - break; - - default: - printf ("?? getopt returned character code 0%o ??\n", c); - } - } - - if (optind < argc) - { - printf ("non-option ARGV-elements: "); - while (optind < argc) - printf ("%s ", argv[optind++]); - printf ("\n"); - } - - exit (0); -} - -#endif /* TEST */ diff --git a/src/benchmarks/cfrac/getopt.h b/src/benchmarks/cfrac/getopt.h deleted file mode 100644 index 7fc2cca..0000000 --- a/src/benchmarks/cfrac/getopt.h +++ /dev/null @@ -1,125 +0,0 @@ -/* Declarations for getopt. - Copyright (C) 1989, 1990, 1991, 1992, 1993 Free Software Foundation, Inc. - - This program is free software; you can redistribute it and/or modify it - under the terms of the GNU General Public License as published by the - Free Software Foundation; either version 2, or (at your option) any - later version. - - This program is distributed in the hope that it will be useful, - but WITHOUT ANY WARRANTY; without even the implied warranty of - MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - GNU General Public License for more details. */ - -#ifndef _GETOPT_H -#define _GETOPT_H 1 - -#ifdef __cplusplus -extern "C" { -#endif - -/* For communication from `getopt' to the caller. - When `getopt' finds an option that takes an argument, - the argument value is returned here. - Also, when `ordering' is RETURN_IN_ORDER, - each non-option ARGV-element is returned here. */ - -extern char *optarg; - -/* Index in ARGV of the next element to be scanned. - This is used for communication to and from the caller - and for communication between successive calls to `getopt'. - - On entry to `getopt', zero means this is the first call; initialize. - - When `getopt' returns EOF, this is the index of the first of the - non-option elements that the caller should itself scan. - - Otherwise, `optind' communicates from one call to the next - how much of ARGV has been scanned so far. */ - -extern int optind; - -/* Callers store zero here to inhibit the error message `getopt' prints - for unrecognized options. */ - -extern int opterr; - -/* Set to an option character which was unrecognized. */ - -extern int optopt; - -/* Describe the long-named options requested by the application. - The LONG_OPTIONS argument to getopt_long or getopt_long_only is a vector - of `struct option' terminated by an element containing a name which is - zero. - - The field `has_arg' is: - no_argument (or 0) if the option does not take an argument, - required_argument (or 1) if the option requires an argument, - optional_argument (or 2) if the option takes an optional argument. - - If the field `flag' is not NULL, it points to a variable that is set - to the value given in the field `val' when the option is found, but - left unchanged if the option is not found. - - To have a long-named option do something other than set an `int' to - a compiled-in constant, such as set a value from `optarg', set the - option's `flag' field to zero and its `val' field to a nonzero - value (the equivalent single-letter option character, if there is - one). For long options that have a zero `flag' field, `getopt' - returns the contents of the `val' field. */ - -struct option -{ -#if __STDC__ - const char *name; -#else - char *name; -#endif - /* has_arg can't be an enum because some compilers complain about - type mismatches in all the code that assumes it is an int. */ - int has_arg; - int *flag; - int val; -}; - -/* Names for the values of the `has_arg' field of `struct option'. */ - -#define no_argument 0 -#define required_argument 1 -#define optional_argument 2 - -#if __STDC__ -/* Many other libraries have conflicting prototypes for getopt, with - differences in the consts, in stdlib.h. We used to try to prototype - it if __GNU_LIBRARY__ but that wasn't problem free either (I'm not sure - exactly why), and there is no particular need to prototype it. - We really shouldn't be trampling on the system's namespace at all by - declaring getopt() but that is a bigger issue. */ -extern int getopt (); - -extern int getopt_long (int argc, char *const *argv, const char *shortopts, - const struct option *longopts, int *longind); -extern int getopt_long_only (int argc, char *const *argv, - const char *shortopts, - const struct option *longopts, int *longind); - -/* Internal only. Users should not call this directly. */ -extern int _getopt_internal (int argc, char *const *argv, - const char *shortopts, - const struct option *longopts, int *longind, - int long_only); -#else /* not __STDC__ */ -extern int getopt (); -extern int getopt_long (); -extern int getopt_long_only (); - -extern int _getopt_internal (); -#endif /* not __STDC__ */ - -#ifdef __cplusplus -} -#endif - -#endif /* _GETOPT_H */ diff --git a/src/benchmarks/cfrac/itop.c b/src/benchmarks/cfrac/itop.c deleted file mode 100644 index 87d309a..0000000 --- a/src/benchmarks/cfrac/itop.c +++ /dev/null @@ -1,25 +0,0 @@ -#include "pdefs.h" -#include "pcvt.h" -#include "precision.h" - -/* - * Integer to Precision - */ -precision itop(i) - register int i; -{ - register digitPtr uPtr; - register precision u = palloc(INTSIZE); - - if (u == pUndef) return u; - - if (u->sign = (i < 0)) i = -i; - uPtr = u->value; - do { - *uPtr++ = modBase(i); - i = divBase(i); - } while (i != 0); - - u->size = (uPtr - u->value); /* normalize */ - return presult(u); -} diff --git a/src/benchmarks/cfrac/ltop.c b/src/benchmarks/cfrac/ltop.c deleted file mode 100644 index 33eaea5..0000000 --- a/src/benchmarks/cfrac/ltop.c +++ /dev/null @@ -1,25 +0,0 @@ -#include "pdefs.h" -#include "pcvt.h" -#include "precision.h" - -/* - * Long to Precision - */ -precision ltop(l) - register long l; -{ - register digitPtr uPtr; - register precision u = palloc(LONGSIZE); - - if (u == pUndef) return u; - - if (u->sign = (l < 0L)) l = -l; - uPtr = u->value; - do { - *uPtr++ = modBase(l); - l = divBase(l); - } while (l != 0); - - u->size = (uPtr - u->value); /* normalize */ - return presult(u); -} diff --git a/src/benchmarks/cfrac/pabs.c b/src/benchmarks/cfrac/pabs.c deleted file mode 100644 index 674cf1b..0000000 --- a/src/benchmarks/cfrac/pabs.c +++ /dev/null @@ -1,22 +0,0 @@ -#include "pdefs.h" /* private include file */ -#include "precision.h" /* public include file for forward refs */ -#include - -/* - * absolute value - */ -precision pabs(u) - register precision u; -{ - register precision w; - - (void) pparm(u); - w = palloc(u->size); - if (w == pUndef) return w; - - w->sign = false; - (void) memcpy(w->value, u->value, u->size * sizeof(digit)); - - pdestroy(u); - return presult(w); -} diff --git a/src/benchmarks/cfrac/padd.c b/src/benchmarks/cfrac/padd.c deleted file mode 100644 index 62b93d5..0000000 --- a/src/benchmarks/cfrac/padd.c +++ /dev/null @@ -1,94 +0,0 @@ -#include "pdefs.h" -#include "precision.h" -#include - -#ifdef ASM_16BIT -#include "asm16bit.h" -#endif - -/* - * Add - * - * This will work correctly if -0 is passed as input - */ -precision padd(u, v) - register precision v; -#ifndef ASM_16BIT - precision u; -{ - register digitPtr wPtr, uPtr, vPtr; -#else - register precision u; -{ - register digitPtr wPtr; - digitPtr uPtr; -#endif - precision w; /* function result */ - register accumulator temp; /* 0 <= temp < 2*base */ - register digit carry; /* 0 <= carry <= 1 */ -#ifdef ASM_16BIT - register int size; -#endif - - (void) pparm(u); - (void) pparm(v); - if (u->sign != v->sign) { /* Are we are actually subtracting? */ - w = pUndef; - if (v->sign) { - v->sign = !v->sign; /* can't generate -0 */ - pset(&w, psub(u, v)); - v->sign = !v->sign; - } else { - u->sign = !u->sign; /* can't generate -0 */ - pset(&w, psub(v, u)); - u->sign = !u->sign; - } - } else { - if (u->size < v->size) { /* u is always biggest number */ - w = u; u = v; v = w; - } - - w = palloc(u->size+1); /* there is at most one added digit */ - if (w == pUndef) return w; /* arguments not destroyed */ - - w->sign = u->sign; - - uPtr = u->value; - wPtr = w->value; -#ifndef ASM_16BIT - vPtr = v->value; - carry = 0; - do { /* Add digits in both args */ - temp = *uPtr++ + *vPtr++; /* 0 <= temp < 2*base-1 */ - temp += carry; /* 0 <= temp < 2*base */ - carry = divBase(temp); /* 0 <= carry <= 1 */ - *wPtr++ = modBase(temp); /* mod has positive args */ - } while (vPtr < v->value + v->size); - - while (uPtr < u->value + u->size) { /* propogate carry */ - temp = *uPtr++ + carry; - carry = divBase(temp); - *wPtr++ = modBase(temp); - } - *wPtr = carry; -#else - size = v->size; - temp = u->size - size; - carry = memaddw(wPtr, uPtr, v->value, size); - if (temp > 0) { - memcpy(wPtr + size, uPtr + size, temp * sizeof(digit)); - if (carry) { - carry = memincw(wPtr + size, temp); - } - } - wPtr[u->size] = carry; /* yes, I do mean u->size */ -#endif - if (carry == 0) { - --(w->size); - } - } - - pdestroy(u); - pdestroy(v); - return presult(w); -} diff --git a/src/benchmarks/cfrac/pcfrac.c b/src/benchmarks/cfrac/pcfrac.c deleted file mode 100644 index 2a0d032..0000000 --- a/src/benchmarks/cfrac/pcfrac.c +++ /dev/null @@ -1,731 +0,0 @@ -/* - * pcfrac: Implementation of the continued fraction factoring algoritm - * - * Every two digits additional appears to double the factoring time - * - * Written by Dave Barrett (barrett%asgard@boulder.Colorado.EDU) - */ -#include -#include -#include - -#ifdef __STDC__ -#include -#endif -#include "precision.h" -#include "pfactor.h" - -extern int verbose; - -unsigned cfracNabort = 0; -unsigned cfracTsolns = 0; -unsigned cfracPsolns = 0; -unsigned cfracT2solns = 0; -unsigned cfracFsolns = 0; - -extern unsigned short primes[]; -extern unsigned primesize; - -typedef unsigned *uptr; -typedef uptr uvec; -typedef unsigned char *solnvec; -typedef unsigned char *BitVector; - -typedef struct SolnStruc { - struct SolnStruc *next; - precision x; /* lhs of solution */ - precision t; /* last large prime remaining after factoring */ - precision r; /* accumulated root of pm for powers >= 2 */ - BitVector e; /* bit vector of factorbase powers mod 2 */ -} Soln; - -typedef Soln *SolnPtr; - -#define BPI(x) ((sizeof x[0]) << 3) - -void setBit(bv, bno, value) - register BitVector bv; - register unsigned bno, value; -{ - bv += bno / BPI(bv); - bno %= BPI(bv); - *bv |= ((value != 0) << bno); -} - -unsigned getBit(bv, bno) - register BitVector bv; - register unsigned bno; -{ - register unsigned res; - - bv += bno / BPI(bv); - bno %= BPI(bv); - res = (*bv >> bno) & 1; - - return res; -} - -BitVector newBitVector(value, size) - register solnvec value; - unsigned size; -{ - register BitVector res; - register solnvec vp = value + size; - unsigned msize = ((size + BPI(res)-1) / BPI(res)) * sizeof res[0]; - -#ifdef BWGC - res = (BitVector) gc_malloc(msize); -#else - res = (BitVector) malloc(msize); -#endif - if (res == (BitVector) 0) return res; - - memset(res, '\0', msize); - do { - if (*--vp) { - setBit(res, vp - value, (unsigned) *vp); - } - } while (vp != value); - return res; -} - -void printSoln(stream, prefix, suffix, pm, m, p, t, e) - FILE *stream; - char *prefix, *suffix; - register unsigned *pm, m; - precision p, t; - register solnvec e; -{ - register unsigned i, j = 0; - - for (i = 1; i <= m; i++) j += (e[i] != 0); - - fputs(prefix, stream); - fputp(stream, pparm(p)); fputs(" = ", stream); - if (*e & 1) putc('-', stream); else putc('+', stream); - fputp(stream, pparm(t)); - - if (j >= 1) fputs(" *", stream); - do { - e++; - switch (*e) { - case 0: break; - case 1: fprintf(stream, " %u", *pm); break; - default: - fprintf(stream, " %u^%u", *pm, (unsigned) *e); - } - pm++; - } while (--m); - - fputs(suffix, stream); - fflush(stream); - pdestroy(p); pdestroy(t); -} - -/* - * Combine two solutions - */ -void combineSoln(x, t, e, pm, m, n, bp) - precision *x, *t, n; - uvec pm; - register solnvec e; - unsigned m; - SolnPtr bp; -{ - register unsigned j; - - (void) pparm(n); - if (bp != (SolnPtr) 0) { - pset(x, pmod(pmul(bp->x, *x), n)); - pset(t, pmod(pmul(bp->t, *t), n)); - pset(t, pmod(pmul(bp->r, *t), n)); - e[0] += getBit(bp->e, 0); - } - e[0] &= 1; - for (j = 1; j <= m; j++) { - if (bp != (SolnPtr) 0) e[j] += getBit(bp->e, j); - if (e[j] > 2) { - pset(t, pmod(pmul(*t, - ppowmod(utop(pm[j-1]), utop((unsigned) e[j]>>1), n)), n)); - e[j] &= 1; - } else if (e[j] == 2) { - pset(t, pmod(pmul(*t, utop(pm[j-1])), n)); - e[j] = 0; - } - } - pdestroy(n); -} - -/* - * Create a normalized solution structure from the given inputs - */ -SolnPtr newSoln(n, pm, m, next, x, t, e) - precision n; - unsigned m; - uvec pm; - SolnPtr next; - precision x, t; - solnvec e; -{ -#ifdef BWGC - SolnPtr bp = (SolnPtr) gc_malloc(sizeof (Soln)); -#else - SolnPtr bp = (SolnPtr) malloc(sizeof (Soln)); -#endif - - if (bp != (SolnPtr) 0) { - bp->next = next; - bp->x = pnew(x); - bp->t = pnew(t); - bp->r = pnew(pone); - /* - * normalize e, put the result in bp->r and e - */ - combineSoln(&bp->x, &bp->r, e, pm, m, pparm(n), (SolnPtr) 0); - bp->e = newBitVector(e, m+1); /* BitVector */ - } - - pdestroy(n); - return bp; -} - -void freeSoln(p) - register SolnPtr p; -{ - if (p != (SolnPtr) 0) { - pdestroy(p->x); - pdestroy(p->t); - pdestroy(p->r); -#ifndef IGNOREFREE - free(p->e); /* BitVector */ - free(p); -#endif - } -} - -void freeSolns(p) - register SolnPtr p; -{ - register SolnPtr l; - - while (p != (SolnPtr) 0) { - l = p; - p = p->next; - freeSoln(l); - } -} - -SolnPtr findSoln(sp, t) - register SolnPtr sp; - precision t; -{ - (void) pparm(t); - while (sp != (SolnPtr) 0) { - if peq(sp->t, t) break; - sp = sp->next; - } - pdestroy(t); - return sp; -} - -static unsigned pcfrac_k = 1; -static unsigned pcfrac_m = 0; -static unsigned pcfrac_aborts = 3; - -/* - * Structure for early-abort. Last entry must be <(unsigned *) 0, uUndef> - */ -typedef struct { - unsigned *pm; /* bound check occurs before using this pm entry */ - precision bound; /* max allowable residual to prevent abort */ -} EasEntry; - -typedef EasEntry *EasPtr; - -void freeEas(eas) - EasPtr eas; -{ - register EasPtr ep = eas; - - if (ep != (EasPtr) 0) { - while (ep->pm != 0) { - pdestroy(ep->bound); - ep++; - } -#ifndef IGNOREFREE - free(eas); -#endif - } -} - -/* - * Return Pomerance's L^alpha (L = exp(sqrt(log(n)*log(log(n))))) - */ -double pomeranceLpow(n, y) - double n; - double y; -{ - double lnN = log(n); - double res = exp(y * sqrt(lnN * log(lnN))); - return res; -} - -/* - * Pomerance's value 'a' from page 122 "of Computational methods in Number - * Theory", part 1, 1982. - */ -double cfracA(n, aborts) - double n; - unsigned aborts; -{ - return 1.0 / sqrt(6.0 + 2.0 / ((double) aborts + 1.0)); -} - -/* - * Returns 1 if a is a quadratic residue of odd prime p, - * p-1 if non-quadratic residue, 0 otherwise (gcd(a,p)<>1) - */ -#define plegendre(a,p) ppowmod(a, phalf(psub(p, pone)), p) - -/* - * Create a table of small primes of quadratic residues of n - * - * Input: - * n - the number to be factored - * k - the multiple of n to be factored - * *m - the number of primes to generate (0 to select best) - * aborts - the number of early aborts - * - * Assumes that plegendre # 0, for if it is, that pm is a factor of n. - * This algorithm already assumes you've used trial division to eliminate - * all of these! - * - * Returns: the list of primes actually generated (or (unsigned *) 0 if nomem) - * *m changed to reflect the number of elements in the list - */ -uvec pfactorbase(n, k, m, aborts) - precision n; - unsigned k; - unsigned *m, aborts; -{ - double dn, a; - register unsigned short *primePtr = primes; - register unsigned count = *m; - unsigned maxpm = primes[primesize-1]; - unsigned *res = (uvec) 0, *pm; - precision nk = pnew(pmul(pparm(n), utop(k))); - - if (*m == 0) { /* compute a suitable m */ - dn = ptod(nk); - a = cfracA(dn, aborts); - maxpm = (unsigned) (pomeranceLpow(dn, a) + 0.5); - do { - if ((unsigned) *primePtr++ >= maxpm) break; - } while ((unsigned) *primePtr != 1); - count = primePtr - primes; - primePtr = primes; - } - /* - * This m tends to be too small for small n, and becomes closer to - * optimal as n goes to infinity. For 30 digits, best m is ~1.5 this m. - * For 38 digits, best m appears to be ~1.15 this m. It's appears to be - * better to guess too big than too small. - */ -#ifdef BWGC - res = (uvec) gc_malloc(count * sizeof (unsigned)); -#else - res = (uvec) malloc(count * sizeof (unsigned)); -#endif - if (res == (uvec) 0) goto doneMk; - - pm = res; - *pm++ = (unsigned) *primePtr++; /* two is first element */ - count = 1; - if (count != *m) do { - if (picmp(plegendre(nk, utop((unsigned) *primePtr)), 1) <= 0) { /* 0,1 */ - *pm++ = *primePtr; - count++; - if (count == *m) break; - if ((unsigned) *primePtr >= maxpm) break; - } - ++primePtr; - } while (*primePtr != 1); - *m = count; - -doneMk: - pdestroy(nk); - pdestroy(n); - return res; -} - -/* - * Compute Pomerance's early-abort-stragegy - */ -EasPtr getEas(n, k, pm, m, aborts) - precision n; - unsigned k, *pm, m, aborts; -{ - double x = 1.0 / ((double) aborts + 1.0); - double a = 1.0 / sqrt(6.0 + 2.0 * x); - double ax = a * x, csum = 1.0, tia = 0.0; - double dn, dpval, dbound, ci; - unsigned i, j, pval; - - precision bound = pUndef; - EasPtr eas; - - if (aborts == 0) return (EasPtr) 0; - -#ifdef BWGC - eas = (EasPtr) gc_malloc((aborts+1) * sizeof (EasEntry)); -#else - eas = (EasPtr) malloc((aborts+1) * sizeof (EasEntry)); -#endif - if (eas == (EasPtr) 0) return eas; - - dn = ptod(pmul(utop(k), pparm(n))); /* should this be n ? */ - for (i = 1; i <= aborts; i++) { - eas[i-1].pm = (unsigned *) 0; - eas[i-1].bound = pUndef; - tia += ax; - ci = 4.0 * tia * tia / (double) i; - csum -= ci; - dpval = pomeranceLpow(dn, tia); - dbound = pow(dn, 0.5 * csum); - - pval = (unsigned) (dpval + 0.5); - pset(&bound, dtop(dbound)); - for (j = 0; j < m; j++) { - if (pm[j] >= pval) goto foundpm; - } - break; -foundpm: - if (verbose > 1) { - printf(" Abort %u on p = %u (>=%u) and q > ", i, pm[j], pval); - fputp(stdout, bound); putc('\n', stdout); - fflush(stdout); - } - eas[i-1].pm = &pm[j]; - pset(&eas[i-1].bound, bound); - } - eas[i-1].pm = (unsigned *) 0; - eas[i-1].bound = pUndef; - - pdestroy(bound); - pdestroy(n); - - return eas; -} - -/* - * Factor the argument Qn using the primes in pm. Result stored in exponent - * vector e, and residual factor, f. If non-null, eas points to a list of - * early-abort boundaries. - * - * e is set to the number of times each prime in pm divides v. - * - * Returns: - * -2 - if factoring aborted because of early abort - * -1 - factoring failed - * 0 - if result is a "partial" factoring - * 1 - normal return (a "full" factoring) - */ -int pfactorQ(f, t, pm, e, m, eas) - precision *f; - precision t; - register unsigned *pm; - register solnvec e; - register unsigned m; - EasEntry *eas; -{ - precision maxp = pUndef; - unsigned maxpm = pm[m-1], res = 0; - register unsigned *pp = (unsigned *) 0; - - (void) pparm(t); - - if (eas != (EasEntry *) 0) { - pp = eas->pm; - pset(&maxp, eas->bound); - } - - memset((char *) e, '\0', m * sizeof e[0]); /* looks slow here, but isn't */ - - while (peven(t)) { /* assume 2 1st in pm; save time */ - pset(&t, phalf(t)); - (*e)++; - } - --m; - - do { - e++; pm++; - if (pm == pp) { /* check for early abort */ - if (pgt(t, maxp)) { - res = -2; - goto gotSoln; - } - eas++; - pp = eas->pm; - pset(&maxp, eas->bound); - } - while (pimod(t, (int) *pm) == 0) { - pset(&t, pidiv(t, (int) *pm)); - (*e)++; - } - } while (--m != 0); - res = -1; - if (picmp(t, 1) == 0) { - res = 1; - } else if (picmp(pidiv(t, (int) *pm), maxpm) <= 0) { -#if 0 /* it'll never happen; Honest! If so, pm is incorrect. */ - if (picmp(t, maxpm) <= 0) { - fprintf(stderr, "BUG: partial with t < maxpm! t = "); - fputp(stderr, t); putc('\n', stderr); - } -#endif - res = 0; - } -gotSoln: - pset(f, t); - pdestroy(t); pdestroy(maxp); - return res; -} - -/* - * Attempt to factor n using continued fractions (n must NOT be prime) - * - * n - The number to attempt to factor - * maxCount - if non-null, points to the maximum number of iterations to try. - * - * This algorithm may fail if it get's into a cycle or maxCount expires - * If failed, n is returned. - * - * This algorithm will loop indefinitiely in n is prime. - * - * This an implementation of Morrison and Brillhart's algorithm, with - * Pomerance's early abort strategy, and Knuth's method to find best k. - */ -precision pcfrac(n, maxCount) - precision n; - unsigned *maxCount; -{ - unsigned k = pcfrac_k; - unsigned m = pcfrac_m; - unsigned aborts = pcfrac_aborts; - SolnPtr oddt = (SolnPtr) 0, sp, bp, *b; - EasPtr eas = (EasPtr) 0; - uvec pm = (uvec) 0; - solnvec e = (solnvec) 0; - unsigned bsize, s = 0, count = 0; - register unsigned h, j; - int i; - - precision t = pUndef, - r = pUndef, twog = pUndef, u = pUndef, lastU = pUndef, - Qn = pUndef, lastQn = pUndef, An = pUndef, lastAn = pUndef, - x = pUndef, y = pUndef, qn = pUndef, rn = pUndef; - - precision res = pnew(pparm(n)); /* default res is argument */ - - pm = pfactorbase(n, k, &m, aborts); /* m may have been reduced */ - - bsize = (m+2) * sizeof (SolnPtr); -#ifdef BWGC - b = (SolnPtr *) gc_malloc(bsize); -#else - b = (SolnPtr *) malloc(bsize); -#endif - if (b == (SolnPtr *) 0) goto nomem; - -#ifdef BWGC - e = (solnvec) gc_malloc((m+1) * sizeof e[0]); -#else - e = (solnvec) malloc((m+1) * sizeof e[0]); -#endif - if (e == (solnvec) 0) { -nomem: - errorp(PNOMEM, "pcfrac", "out of memory"); - goto bail; - } - - memset(b, '\0', bsize); /* F1: Initialize */ - if (maxCount != (unsigned *) 0) count = *maxCount; - cfracTsolns = cfracPsolns = cfracT2solns = cfracFsolns = cfracNabort = 0; - - eas = getEas(n, k, pm, m, aborts); /* early abort strategy */ - - if (verbose > 1) { - fprintf(stdout, "factorBase[%u]: ", m); - for (j = 0; j < m; j++) { - fprintf(stdout, "%u ", pm[j]); - } - putc('\n', stdout); - fflush(stdout); - } - - pset(&t, pmul(utop(k), n)); /* E1: Initialize */ - pset(&r, psqrt(t)); /* constant: sqrt(k*n) */ - pset(&twog, padd(r, r)); /* constant: 2*sqrt(k*n) */ - pset(&u, twog); /* g + Pn */ - pset(&lastU, twog); - pset(&Qn, pone); - pset(&lastQn, psub(t, pmul(r, r))); - pset(&An, pone); - pset(&lastAn, r); - pset(&qn, pzero); - - do { -F2: - do { - if (--count == 0) goto bail; - pset(&t, An); - pdivmod(padd(pmul(qn, An), lastAn), n, pNull, &An); /* (5) */ - pset(&lastAn, t); - - pset(&t, Qn); - pset(&Qn, padd(pmul(qn, psub(lastU, u)), lastQn)); /* (7) */ - pset(&lastQn, t); - - pset(&lastU, u); - - pset(&qn, pone); /* eliminate 40% of next divmod */ - pset(&rn, psub(u, Qn)); - if (pge(rn, Qn)) { - pdivmod(u, Qn, &qn, &rn); /* (4) */ - } - pset(&u, psub(twog, rn)); /* (6) */ - s = 1-s; - - e[0] = s; - i = pfactorQ(&t, Qn, pm, &e[1], m, eas); /* E3: Factor Qn */ - if (i < -1) cfracNabort++; - /* - * We should (but don't, yet) check to see if we can get a - * factor by a special property of Qn = 1 - */ - if (picmp(Qn, 1) == 0) { - errorp(PDOMAIN, "pcfrac", "cycle encountered; pick bigger k"); - goto bail; /* we ran into a cycle; give up */ - } - } while (i < 0); /* while not a solution */ - - pset(&x, An); /* End of Algorithm E; we now have solution: */ - - if (i == 0) { /* if partial */ - if ((sp = findSoln(oddt, t)) == (SolnPtr) 0) { - cfracTsolns++; - if (verbose >= 2) putc('.', stderr); - if (verbose > 3) printSoln(stdout, "Partial: ","\n", pm,m,x,t,e); - oddt = newSoln(n, pm, m, oddt, x, t, e); - goto F2; /* wait for same t to occur again */ - } - if (verbose > 3) printSoln(stdout, "Partial: ", " -->\n", pm,m,x,t,e); - pset(&t, pone); /* take square root */ - combineSoln(&x, &t, e, pm, m, n, sp); - cfracT2solns++; - if (verbose) putc('#', stderr); - if (verbose > 2) printSoln(stdout, "PartSum: ", "", pm, m, x, t, e); - } else { - combineSoln(&x, &t, e, pm, m, n, (SolnPtr) 0); /* normalize */ - cfracPsolns++; - if (verbose) putc('*', stderr); - if (verbose > 2) printSoln(stdout, "Full: ", "", pm, m, x, t, e); - } - - /* - * Crude gaussian elimination. We should be more effecient about the - * binary vectors here, but this works as it is. - * - * At this point, t must be pone, or t occurred twice - * - * Loop Invariants: e[0:h] even - * t^2 is a product of squares of primes - * b[h]->e[0:h-1] even and b[h]->e[h] odd - */ - h = m+1; - do { - --h; - if (e[h]) { /* F3: Search for odd */ - bp=b[h]; - if (bp == (SolnPtr) 0) { /* F4: Linear dependence? */ - if (verbose > 3) { - printSoln(stdout, " -->\nFullSum: ", "", pm, m, x, t, e); - } - if (verbose > 2) putc('\n', stdout); - b[h] = newSoln(n, pm, m, bp, x, t, e); - goto F2; - } - combineSoln(&x, &t, e, pm, m, n, bp); - } - } while (h != 0); - /* - * F5: Try to Factor: We have a perfect square (has about 50% chance) - */ - cfracFsolns++; - pset(&y, t); /* t is already sqrt'd */ - - switch (verbose) { - case 0: break; - case 1: putc('/', stderr); break; - case 2: putc('\n', stderr); break; - default: ; - putc('\n', stderr); - printSoln(stdout, " -->\nSquare: ", "\n", pm, m, x, t, e); - fputs("x,y: ", stdout); - fputp(stdout, x); fputs(" ", stdout); - fputp(stdout, y); putc('\n', stdout); - fflush(stdout); - } - } while (peq(x, y) || peq(padd(x, y), n)); /* while x = +/- y */ - - pset(&res, pgcd(padd(x, y), n)); /* factor found at last */ - - /* - * Check for degenerate solution. This shouldn't happen. Detects bugs. - */ - if (peq(res, pone) || peq(res, n)) { - fputs("Error! Degenerate solution:\n", stdout); - fputs("x,y: ", stdout); - fputp(stdout, x); fputs(" ", stdout); - fputp(stdout, y); putc('\n', stdout); - fflush(stdout); - abort(); - } - -bail: - if (maxCount != (unsigned *) 0) *maxCount = count; - - if (b != (SolnPtr *) 0) for (j = 0; j <= m; j++) freeSoln(b[j]); - freeEas(eas); - freeSolns(oddt); -#ifndef IGNOREFREE - free(e); - free(pm); -#endif - - pdestroy(r); pdestroy(twog); pdestroy(u); pdestroy(lastU); - pdestroy(Qn); pdestroy(lastQn); pdestroy(An); pdestroy(lastAn); - pdestroy(x); pdestroy(y); pdestroy(qn); pdestroy(rn); - pdestroy(t); pdestroy(n); - - return presult(res); -} - -/* - * Initialization for pcfrac factoring method - * - * k - An integer multiplier to use for n (k must be < n) - * you can use findk to get a good value. k should be squarefree - * m - The number of primes to use in the factor base - * aborts - the number of early aborts to use - */ -int pcfracInit(m, k, aborts) - unsigned m; - unsigned k; - unsigned aborts; -{ - pcfrac_m = m; - pcfrac_k = k; - pcfrac_aborts = aborts; - return 1; -} diff --git a/src/benchmarks/cfrac/pcmp.c b/src/benchmarks/cfrac/pcmp.c deleted file mode 100644 index 2c8e0b8..0000000 --- a/src/benchmarks/cfrac/pcmp.c +++ /dev/null @@ -1,68 +0,0 @@ -#include "pdefs.h" -#include "precision.h" - -/* - * Compare to zero (normalization not assumed) - * - * Returns same as pcmp(u, 0); - */ -int pcmpz(u) - register precision u; -{ - register digitPtr uPtr; - register int i; - - (void) pparm(u); - i = 0; - uPtr = u->value; - do { - if (*uPtr++ != 0) { - if (u->sign) i = -1; else i = 1; - break; - } - } while (uPtr < u->value + u->size); - - pdestroy(u); - return i; -} - -/* - * Compare u to v. - * - * Return: < 0 if u < v - * = 0 if u = v - * > 0 if u > v - * - * This routine is the one that assumes results are normalized! - * - no leading 0's - * - no negative 0 - */ -int pcmp(u, v) - precision u, v; -{ - register digitPtr uPtr, vPtr; - register int i; /* should be bigger than posit */ - - (void) pparm(u); - (void) pparm(v); - if (u->sign != v->sign) { - if (u->sign) i = -1; else i = 1; - } else { - i = u->size - v->size; - if (i == 0) { - uPtr = u->value + u->size; - vPtr = v->value + v->size; - do { - if (*--uPtr != *--vPtr) break; - } while (vPtr > v->value); - if (*uPtr > *vPtr) i = 1; - else if (*uPtr < *vPtr) i = -1; - } - - if (u->sign) i = -i; - } - - pdestroy(u); - pdestroy(v); - return i; -} diff --git a/src/benchmarks/cfrac/pconst.c b/src/benchmarks/cfrac/pconst.c deleted file mode 100644 index 89b63a7..0000000 --- a/src/benchmarks/cfrac/pconst.c +++ /dev/null @@ -1,46 +0,0 @@ -#include "pdefs.h" - -static precisionType pzeroConst = { -#ifndef BWGC - (short) 1, /* refcount (read/write!) */ -#endif - (posit) 1, /* size */ - (posit) 1, /* digitcount */ - (boolean) 0, /* sign */ - { (digit) 0 } /* value */ -}; - -static precisionType poneConst = { -#ifndef BWGC - (short) 1, /* refcount (read/write!) */ -#endif - (posit) 1, /* size */ - (posit) 1, /* digitcount */ - (boolean) 0, /* sign */ - { (digit) 1 } /* value */ -}; - -static precisionType ptwoConst = { -#ifndef BWGC - (short) 1, /* refcount (read/write!) */ -#endif - (posit) 1, /* size */ - (posit) 1, /* digitcount */ - (boolean) 0, /* sign */ - { (digit) 2 } /* value */ -}; - -static precisionType p_oneConst = { -#ifndef BWGC - (short) 1, /* refcount (read/write!) */ -#endif - (posit) 1, /* size */ - (posit) 1, /* digitcount */ - (boolean) 1, /* sign */ - { (digit) 1 } /* value */ -}; - -precision pzero = &pzeroConst; /* zero */ -precision pone = &poneConst; /* one */ -precision ptwo = &ptwoConst; /* two */ -precision p_one = &p_oneConst; /* negative one */ diff --git a/src/benchmarks/cfrac/pcvt.h b/src/benchmarks/cfrac/pcvt.h deleted file mode 100644 index e2dd724..0000000 --- a/src/benchmarks/cfrac/pcvt.h +++ /dev/null @@ -1,32 +0,0 @@ -/* - * Machine dependent file used for conversion routines - * (e.g. atop, ptoa, itop, ptoi, etc) - */ - -/* - * For pXtop: (X = {i,u,l,ul,d}) - */ -#define INTSIZE 2 /* floor(log[Base](2*(MAXINT+1))) */ -#define LONGSIZE 2 /* floor(log[Base](2*(MAXLONG+1))) */ -#define DOUBLESIZE 129 /* double precision size = log[base](HUGE) */ - -/* - * For ptoX - */ -#define MAXINT (int) ((unsigned int) ~0 >> 1) -#define MAXLONG (long) ((unsigned long) ~0 >> 1) -#define MAXUNSIGNED (~ (unsigned int) 0) -#define MAXUNSIGNEDLONG (~ (unsigned long) 0L) - -#define MAXACC (~ (accumulator) 0) - -/* - * aBase - Ascii base (ptoa) - * There are aDigits Ascii digits per precision digit, pDigits. - * At least one of { aDigits, pDigits } <= (MAXINT / the maximum posit value). - */ -#define aDigits 525 /* aDigits/pDigits >~= log[aBase](Base) */ -#define pDigits 109 /* 525/109=4.8165>log[10](65536)=4.816479931 */ -#define aBase 10 /* string conversion base */ -#define aDigit 1000000000 /* must be power of aBase < MAXINT */ -#define aDigitLog 9 /* log[aBase] of aDigit */ diff --git a/src/benchmarks/cfrac/pdefs.h b/src/benchmarks/cfrac/pdefs.h deleted file mode 100644 index 9c43099..0000000 --- a/src/benchmarks/cfrac/pdefs.h +++ /dev/null @@ -1,138 +0,0 @@ -/* - * +------------------------------------------------------------------+ - * | Private Math Library Definitions | - * +------------------------------------------------------------------+ - */ -/* - * Optional assembly language - */ -#ifdef ASM -#include "machineop.h" /* 16-bit integer machine operations */ -#define uModDiv(n, d, qp) umoddiv16(n, d, qp) /* slight help */ -#else -#define uModDiv(n, d, qp) (*(qp) = (n) / (d), (n) % (d)) -#endif -#define uMul(u, v) ((u) * (v)) /* fast enough */ - -/* - * Optional alternate memory allocator - */ - -#ifndef MYALLOC - -# if defined(BWGC) -extern char *gc_malloc_atomic(); -#define allocate(size) (char *) gc_malloc_atomic(size) -# elif defined(CUSTOM_MALLOC) -#define allocate(size) CUSTOM_MALLOC(size) -# else -/* extern char *malloc(); */ -#define allocate(size) (char *) malloc(size) -# endif - -#ifdef IGNOREFREE -#define deallocate(p) {}; -# elif defined(CUSTOM_FREE) -#define deallocate(p) CUSTOM_FREE(p) -#else -/* -extern int free(); -*/ -#define deallocate(p) free(p) -#endif - -#else -extern char *allocate(); -extern void deallocate(); -#endif - -/* - * These next four types are used only used in this include file - */ -#include -typedef unsigned char u8; /* 8 bits */ -typedef uint16_t u16; /* 16 bits */ -typedef uint32_t u32; /* 32 bits */ -typedef u8 boolean; /* 1 bit */ - -#define BASE 65536 /* Base * (Base-1) <= MAXINT */ - -/* - * Operations on Base (unsigned math) - */ -#define modBase(u) ((u) & 0xffff) /* remainder on Base */ -#define divBase(u) ((u) >> 16) /* divide by Base */ -#define mulBase(u) ((u) << 16) /* multiply by Base */ - -/* - * The type of a variable used to store intermediate results. - * This should be the most efficient unsigned int on your machine. - */ -typedef u32 accumulator; /* 0..(Base * Base) - 1 */ - -/* - * The type of a single digit - */ -typedef u16 digit; /* 0..Base-1 */ - -/* - * The type of a digit index (the largest number of digits - 1) - * Determines the maximum representable precision (not usually changed) - */ -typedef u16 posit; /* 0..size */ - -typedef unsigned short prefc; /* in precision.h also */ -/* - * End of area which needs to be modified - */ - -#define false 0 -#define true 1 - -typedef digit digitString[1]; /* dummy array type */ -typedef digit *digitPtr; - -/* - * A normalized integer has the following attributes: - * -0 cannot occur - * all digits >= size assumed to be 0. (no leading zero's) - * size > 0 - */ -typedef struct { -#ifndef BWGC - prefc refcount; /* reference count (must be 1st [for pref]) */ -#endif - posit alloc; /* allocated size */ - posit size; /* number of digits */ - boolean sign; /* sign: TRUE negative */ - digitString value; -} precisionType; - -typedef precisionType *precision; - -/* - * Overlay for cache of precisions - */ -typedef struct { - precision next; /* next item in list */ - short count; /* number of items in this sublist */ -} cacheType; - -typedef cacheType *cachePtr; -/* - * Maximum total memory consumed by cache = - * LIMIT * (1 + SIZE * (PrecisionSize + sizeof(digit) * (SIZE-1) / 2)) - */ -#ifndef CACHESIZE -#define CACHESIZE 32 /* size of allocation cache */ -#endif -#define CACHELIMIT 128 /* Determines max mem used by cache */ - -#define PrecisionSize (sizeof(precisionType) - sizeof(digitString)) - -/* - * Function definitions are all in the global include file "mathdefs.h". - */ -extern precision palloc(); /* semi-private */ -extern int pfree(); /* semi-private */ -extern void pnorm(); /* semi-private */ diff --git a/src/benchmarks/cfrac/pdivmod.c b/src/benchmarks/cfrac/pdivmod.c deleted file mode 100644 index ce4a24b..0000000 --- a/src/benchmarks/cfrac/pdivmod.c +++ /dev/null @@ -1,315 +0,0 @@ -#include "pdefs.h" -#include "precision.h" - -#ifdef DEBUG -#include -#endif - -#ifdef ASM_16BIT -#include "asm16bit.h" -#endif - -/* - * Divide u (dividend) by v (divisor); If non-null, qp and rp are set to - * quotient and remainder. The result returned will be *qp, unless qp is - * NULL, then *rp will be returned if non-null, otherwise pUndef is returned. - * - * Produce: - * - * q (quotient) = u div v (v != 0) - * truncation is toward zero - * - * r (remainder) = u mod v - * = u - u div v * v (v != 0) - * = u (v == 0) - * ( e.g. u == q*v + r ) - * remainder has same sign and dividend - * - * Note: this has opposite convention than the C standard div fuction, - * but the same convention of the typical C "/" operator - * It is also inconvienient for the mod function. - */ -/* - * This algorithm is taken almost verbatum from Knuth Vol 2. - * Please note the following trivial(?) array index - * transformations (since MSD to LSD order is reversed): - * - * q[0..m] to Q[0..m] thus q[i] == Q[m-i] - * r[1..n] R[0..n-1] r[i] == R[n+1-i] - * u[0..m+n] w[0..m+n] u[i] == w[m+n-i] - * v[1..n] x[0..n-1] v[i] == x[n-i] - * - * let N == n - 1 so that n == N + 1 thus: - * - * q[0..m] to Q[0..m] thus q[i] == Q[m-i] - * r[1..n] R[0..N] r[i] == R[N+2-i] - * u[0..m+n] w[0..m+N+1] u[i] == w[m+N+1-i] - * v[1..n] x[0..N] v[i] == x[N+1-i] - */ - -/* - * Note: Be very observent of the usage of uPtr, and vPtr. - * They are used to point to u, v, w, q or r as necessary. - */ -precision pdivmod(u, v, qp, rp) - precision u, v, *qp, *rp; -{ - register digitPtr uPtr, vPtr, qPtr, LastPtr; - - register accumulator temp; /* 0 <= temp < base^2 */ - register digit carry; /* 0 <= carry < 2 */ - register digit hi; /* 0 <= hi < base */ - - register posit n, m; - digit d; /* 0 <= d < base */ - digit qd; /* 0 <= qd < base */ -#ifdef DEBUG - int i; -#endif - - precision q, r, w; /* quotient, remainder, temporary */ - - n = v->size; /* size of v and r */ - - (void) pparm(u); - (void) pparm(v); - if (u->size < n) { - q = pUndef; - r = pUndef; - pset(&q, pzero); - pset(&r, u); - goto done; - } - - m = u->size - n; - - uPtr = u->value + m + n; - vPtr = v->value + n; - - q = palloc(m + 1); - if (q == pUndef) return q; - - q->sign = (u->sign != v->sign); /* can generate -0 */ - - r = palloc(n); - if (r == pUndef) { - pdestroy(q); - return r; - } - r->sign = u->sign; -/* - * watch out! does this function return: q=floor(a/b) or trunc(a/b)? - * it's currently the latter, but every mathmaticion I have talked to - * prefers the former so that a % b returns between 0 to b-1. The - * problem is that this is slower and disagrees with C common practice. - */ - qPtr = q->value + m + 1; - - if (n == 1) { - d = *--vPtr; /* d is only digit of v */ - if (d == 0) { /* divide by zero? */ - q = pnew(errorp(PDOMAIN, "pdivmod", "divide by zero")); - } else { /* single digit divide */ -#ifndef ASM_16BIT - vPtr = r->value + n; - hi = 0; /* hi is current remainder */ - do { - temp = mulBase(hi); /* 0 <= temp <= (base-1)^2 */ - temp += *--uPtr; /* 0 <= temp <= base(base-1) */ - hi = uModDiv(temp, d, --qPtr); /* 0 <= hi < base */ - } while (uPtr > u->value); - *--vPtr = hi; -#else - qPtr -= m + 1; - *(r->value) = memdivw1(qPtr, u->value, m + 1, d); -#endif - } - } else { /* muti digit divide */ - /* - * normalize: multiply u and v by d so hi digit of v > b/2 - */ - d = BASE / (*--vPtr+1); /* high digit of v */ - - w = palloc(n); /* size of v */ - if (w == pUndef) return w; - -#ifndef ASM_16BIT - vPtr = v->value; - uPtr = w->value; /* very confusing. just a temp */ - LastPtr = vPtr + n; - hi = 0; - do { /* single digit multiply */ - temp = uMul(*vPtr++, d); /* 0<= temp <= base(base-1)/2 */ - temp += hi; /* 0 <= temp <= (base^2-1)/2 */ - hi = divBase(temp); /* 0 <= hi < base / 2 */ - *uPtr++ = modBase(temp); /* 0 <= hi < base / 2 */ - } while (vPtr < LastPtr); /* on exit hi == 0 */ -#else - hi = memmulw1(w->value, v->value, n, d); -#endif - - pset(&v, w); - pdestroy(w); - - w = palloc(m + n + 1); - if (w == pUndef) return w; - -#ifndef ASM_16BIT - uPtr = u->value; - vPtr = w->value; /* very confusing. just a temp */ - LastPtr = uPtr + m + n; - do { /* single digit multiply */ - temp = uMul(*uPtr++, d); - temp += hi; - hi = divBase(temp); - *vPtr++ = modBase(temp); - } while (uPtr < LastPtr); - *vPtr = hi; /* note extra digit */ -#else - hi = memmulw1(w->value, u->value, m + n, d); - w->value[m + n] = hi; -#endif - - pset(&u, w); - pdestroy(w); - -#ifdef DEBUG - printf("m = %d n = %d\nd = %d\n", m, n, d); - printf("norm u = "); pshow(u); - printf("norm v = "); pshow(v); -#endif - - uPtr = u->value + m + 1; /* current least significant digit */ - do { - --uPtr; -#ifdef DEBUG - printf(" u = "); - for (i = n; i >= 0; --i) printf("%.*x ", sizeof(digit) * 2, uPtr[i]); - putchar('\n'); - printf(" v = "); - for (i = 1; i < 3; i++) printf("%.*x ", sizeof(digit) * 2, - v->value[n-i]); - putchar('\n'); -#endif -#ifndef ASM_16BIT - vPtr = v->value + n; - LastPtr = uPtr + n; - if (*LastPtr == *--vPtr) { /* guess next digit */ - qd = BASE - 1; - } else { - temp = mulBase(*LastPtr); - temp += *--LastPtr; /* 0 <= temp< base^2 */ - temp = uModDiv(temp, *vPtr, &qd); - --vPtr; - --LastPtr; - while (uMul(*vPtr, qd) > mulBase(temp) + *LastPtr) { - --qd; - temp += vPtr[1]; - if (temp >= BASE) break; /* if so, vPtr*qd <= temp*base */ - } - LastPtr += 2; - } - /* - * Single digit Multiply then Subtract - */ - vPtr = v->value; - carry = 1; /* noborrow bit */ - hi = 0; /* hi digit of multiply */ - do { - /* multiply */ - temp = uMul(qd, *vPtr++); /* 0 <= temp <= (base-1)^2 */ - temp += hi; /* 0 <= temp <= base(base-1) */ - hi = divBase(temp); - temp = modBase(temp); - /* subtract */ - temp = (BASE-1) - temp; /* 0 <= temp < base */ - temp += *uPtr + carry; /* 0 <= temp < 2*base */ - carry = divBase(temp); - *uPtr++ = modBase(temp); /* 0 <= carry < 2 */ - } while (uPtr < LastPtr); - temp = (BASE-1) - hi; - temp += *uPtr + carry; - carry = divBase(temp); - *uPtr = modBase(temp); - uPtr -= n; -#else -#if 0 - carry = !memmulsubw(uPtr, v->value, n, qd); /* 1 if noborrow */ -#endif - carry = !memdivw(uPtr, v->value, n, &qd); /* 1 if noborrow */ -#endif -#ifdef DEBUG - printf(" qhat = %.*x\n", sizeof(digit) * 2, qd); - printf(" new u = "); - for (i = n; i >= 0; --i) printf("%.*x ", sizeof(digit) * 2, uPtr[i]); - putchar('\n'); -#endif - if (carry == 0) { /* Test remainder, add back */ - vPtr = v->value; - LastPtr = uPtr + n; - do { - temp = *uPtr + *vPtr++; - temp += carry; - carry = divBase(temp); - *uPtr++ = modBase(temp); - } while (uPtr < LastPtr); - *uPtr += carry - BASE; /* real strange but works */ - uPtr -= n; - --qd; -#ifdef DEBUG - printf(" decrementing q...adding back\n"); - printf(" fixed u = "); - for (i = n; i >= 0; --i) printf("%.*x ", sizeof(digit) * 2, uPtr[i]); - putchar('\n'); - printf(" newq = %.*x\n", sizeof(digit) * 2, qd); -#endif - } - *--qPtr = qd; /* one leading zero possible */ -#ifdef DEBUG - putchar('\n'); -#endif - } while (uPtr > u->value); - - /* - * Un-normalize to get remainder - */ -#ifndef ASM_16BIT - uPtr = u->value + n; /* skip hi digit (it's zero) */ - vPtr = r->value + n; - hi = 0; /* hi is current remainder */ - do { /* single digit divide */ - temp = mulBase(hi); /* 0<=temp < base^2-(base-1) */ - temp += *--uPtr; /* 0 <= temp < base^2 */ - hi = uModDiv(temp, d, --vPtr); - } while (uPtr > u->value); /* carry will be zero */ -#else - carry = memdivw1(r->value, u->value, n, d); /* always 0 */ -#endif - pnorm(r); /* remainder may have many leading 0's */ - } - - if (m > 0 && qPtr[m] == 0) { - --(q->size); /* normalize */ - } - if (q->size == 1 && *qPtr == 0) q->sign = false; - -done: - - pdestroy(u); - pdestroy(v); - - if (rp == (precision *) -1) { - if (qp != pNull) pset(qp, q); - pdestroy(q); - return presult(r); - } else if (qp == (precision *) -1) { - if (rp != pNull) pset(rp, r); - pdestroy(r); - return presult(q); - } - if (qp != pNull) pset(qp, q); - if (rp != pNull) pset(rp, r); - pdestroy(q); - pdestroy(r); - return pUndef; -} diff --git a/src/benchmarks/cfrac/pfactor.c b/src/benchmarks/cfrac/pfactor.c deleted file mode 100644 index 6c765d1..0000000 --- a/src/benchmarks/cfrac/pfactor.c +++ /dev/null @@ -1,55 +0,0 @@ -#include -#include "precision.h" -#include "pfactor.h" - -void showfactors(); - - -int main(argc, argv) - int argc; - char *argv[]; -{ - precision n = pUndef; - - --argc; - if (argc != 0) { - do { - pset(&n, atop(*++argv)); - showfactors(n); - } while (--argc > 0); - } else { - do { - pset(&n, fgetp(stdin)); - if (n == pUndef) break; - showfactors(n); - } while (1); - } - pdestroy(n); - return 0; -} - -void showfactors(n) - precision n; -{ - precision r = pUndef; - FactorList factors = (FactorList) 0; - - (void) pparm(n); - pset(&r, ptrial(n, (unsigned *) 0, &factors)); - fputp(stdout, n); - fputs(" = ", stdout); - pputfactors(stdout, factors); - if pne(r, pone) { - if pne(r, n) putc('*', stdout); - if (!pprime(r, 16)) { - fputc('(', stdout); fputp(stdout, r); fputc(')', stdout); - } else { - fputp(stdout, r); - } - } - putc('\n', stdout); - - pfreefactors(&factors); - pdestroy(r); - pdestroy(n); -} diff --git a/src/benchmarks/cfrac/pfactor.h b/src/benchmarks/cfrac/pfactor.h deleted file mode 100644 index edd5686..0000000 --- a/src/benchmarks/cfrac/pfactor.h +++ /dev/null @@ -1,62 +0,0 @@ -typedef struct Pfs { - struct Pfs *next; - precision factor; - unsigned count; -} Pfactor; - -typedef Pfactor *FactorPtr; -typedef FactorPtr FactorList; -typedef precision (*pfunc)(); /* pointer to func returning precision */ - -#ifndef __STDC__ - -extern int pprime(); /* test whether a number is prime */ -extern precision pnextprime(); /* next prime >= it's argument */ - -extern precision pgcd(); /* greatest common divisor */ -extern precision plcm(); /* least common multiple */ -extern precision peuclid(); /* extended euclid's algorithm */ - -extern precision prho(); /* find factor using rho method */ -extern precision pfermat(); /* find factor using Fermat's method */ -extern precision pcfrac(); /* factor w/continued fractions */ - -extern int prhoInit(); /* alter parameters for rho method */ -extern int pcfracInit(); /* alter paramteres for cfrac method */ - -extern precision ptrial(); /* find factors using trial division */ -extern precision prfactor(); /* recursively factor a number */ - -extern void paddfactor(); /* add a factor to a factorlist */ -extern void pputfactors(); /* print a factorlist */ -extern void pfreefactors(); /* return a factorlist to memory */ - -#else - -extern int pprime(precision, unsigned trialCount); -extern precision pnextprime(precision, unsigned trialCount); - -extern precision pgcd(precision, precision); -extern precision plcm(precision, precision); -extern precision peuclid(precision, precision, precision *, precision *); - -extern precision prho(precision n, unsigned *maxCount); -extern precision pfermat(precision n, unsigned *maxCount); -extern precision pcfrac(precision n, unsigned *maxCount); - -extern int prhoInit(precision c, unsigned batchSize); -extern int pcfracInit(unsigned m, unsigned k, unsigned aborts); - -extern precision ptrial(precision n, unsigned *maxCount, FactorList *); -extern precision prfactor(precision, unsigned *maxCount, pfunc, FactorList *); - -extern void paddfactor(FactorList *, precision); -extern void pfreefactors(FactorList *); - -#ifndef BUFSIZE -#include -#endif - -extern void pputfactors(FILE *, FactorList); - -#endif diff --git a/src/benchmarks/cfrac/pfloat.c b/src/benchmarks/cfrac/pfloat.c deleted file mode 100644 index 63f4344..0000000 --- a/src/benchmarks/cfrac/pfloat.c +++ /dev/null @@ -1,61 +0,0 @@ -/* - * High Precision Math Library Supplement for floating point routines - */ -#include -#include -#include "pdefs.h" -#include "pcvt.h" -#include "precision.h" - -extern precision palloc(); - -/* - * double to precision - */ -precision dtop(f) - register double f; -{ - register digitPtr uPtr; - register precision u; - - u = palloc(DOUBLESIZE); /* pretty big */ - if (u == pUndef) return u; - - if (f < 0.0) { - f = -f; - u->sign = true; - } else { - u->sign = false; - } - uPtr = u->value; - do { - *uPtr++ = fmod(f, (double) BASE); - f = floor(f / (double) BASE); - } while (f != 0.0); - - u->size = (uPtr - u->value); - - return presult(u); -} - -/* - * precision to double (no overflow check) - */ -double ptod(u) - precision u; -{ - register digitPtr uPtr; - register double f; - - (void) pparm(u); - uPtr = u->value + u->size; - f = 0.0; - do { - f = f * (double) BASE + (double) *--uPtr; - } while (uPtr > u->value); - - if (u->sign) f = -f; - - pdestroy(u); - return f; -} diff --git a/src/benchmarks/cfrac/pgcd.c b/src/benchmarks/cfrac/pgcd.c deleted file mode 100644 index a72a8a7..0000000 --- a/src/benchmarks/cfrac/pgcd.c +++ /dev/null @@ -1,24 +0,0 @@ -#include "precision.h" - -/* - * Euclid's Algorithm - * - * Given u and v, calculated and return their greatest common divisor. - */ -precision pgcd(u, v) - precision u, v; -{ - precision u3 = pnew(pabs(pparm(u))), v3 = pnew(pabs(pparm(v))); - precision q = pUndef, r = pUndef; - - while (pnez(v3)) { - pdivmod(u3, v3, &q, &r); - pset(&u3, v3); - pset(&v3, r); - } - - pdestroy(v3); - pdestroy(q); pdestroy(r); - pdestroy(u); pdestroy(v); - return presult(u3); /* result always positive */ -} diff --git a/src/benchmarks/cfrac/phalf.c b/src/benchmarks/cfrac/phalf.c deleted file mode 100644 index 8658de5..0000000 --- a/src/benchmarks/cfrac/phalf.c +++ /dev/null @@ -1,36 +0,0 @@ -#include -#include "pdefs.h" -#include "precision.h" - -#ifdef ASM_16BIT -#include "asm16bit.h" -#endif - -/* - * Divide a precision by 2 - */ -precision phalf(u) - register precision u; -{ -#ifdef ASM_16BIT - register precision w; - register posit usize; - - pparm(u); - usize = u->size; - w = palloc(usize); - if (w == pUndef) return w; - - w->sign = u->sign; - (void) memcpy(w->value, u->value, usize * sizeof(digit)); - - memlsrw(w->value, usize); /* 68000 assembly language routine */ - if (usize > 1 && w->value[usize-1] == (digit) 0) { /* normalize */ - --(w->size); - } - pdestroy(u); - return presult(w); -#else - return pdiv(u, ptwo); -#endif -} diff --git a/src/benchmarks/cfrac/picmp.c b/src/benchmarks/cfrac/picmp.c deleted file mode 100644 index b942268..0000000 --- a/src/benchmarks/cfrac/picmp.c +++ /dev/null @@ -1,41 +0,0 @@ -#include "pdefs.h" -#include "precision.h" - -static char cmpError[] = "Second arg not single digit"; - -/* - * Single-digit compare - */ -int picmp(u, v) - register precision u; - register int v; -{ - register int i; - - (void) pparm(u); - - if (u->sign) { - i = -1; - if (v < 0) { - if (-v >= BASE) { - errorp(PDOMAIN, "picmp", cmpError); - } - if (u->size == 1) { - i = - (int) *(u->value) - v; - } - } - } else { - i = 1; - if (v >= 0) { - if (v >= BASE) { - errorp(PDOMAIN, "picmp", cmpError); - } - if (u->size == 1) { - i = (int) *(u->value) - v; - } - } - } - - pdestroy(u); - return i; -} diff --git a/src/benchmarks/cfrac/pidiv.c b/src/benchmarks/cfrac/pidiv.c deleted file mode 100644 index 61c09a7..0000000 --- a/src/benchmarks/cfrac/pidiv.c +++ /dev/null @@ -1,60 +0,0 @@ -#include "pdefs.h" -#include "precision.h" -#ifdef ASM_16BIT -#include "asm16bit.h" -#endif - -/* - * Single-digit divide - */ -precision pidiv(u, v) - register precision u; - int v; -{ -#ifndef ASM_16BIT - register digitPtr uPtr, qPtr; - register accumulator temp; /* 0 <= temp < base^2 */ -#endif - register digit r, d; /* 0 <= r,d < base */ - register posit m; - register precision q; - - (void) pparm(u); - - if (v < 0) d = (digit) -v; else d = (digit) v; - if (d >= BASE) { - q = pnew(errorp(PDOMAIN, "pidiv", "divisor too big for single digit")); - goto done; - } - if (d == 0) { - q = pnew(errorp(PDOMAIN, "pidiv", "divide by zero")); - goto done; - } - m = u->size; - q = palloc(m); - if (q == pUndef) goto done; - -#ifndef ASM_16BIT - qPtr = q->value + m; - uPtr = u->value + m; - r = 0; /* r is current remainder */ - do { - temp = mulBase(r); /* 0 <= temp <= (base-1)^2 */ - temp += *--uPtr; /* 0 <= temp <= base(base-1) */ - r = uModDiv(temp, d, --qPtr); /* 0 <= r < base */ - } while (uPtr > u->value); -#else - r = memdivw1(q->value, u->value, m, d); -#endif - /* - * normalize q - */ - if (m > 1 && q->value[m-1] == 0) { - --(q->size); - } - q->sign = (u->sign != (v < 0)); - if (q->size == 1 && *(q->value) == 0) q->sign = false; -done: - pdestroy(u); - return presult(q); -} diff --git a/src/benchmarks/cfrac/pimod.c b/src/benchmarks/cfrac/pimod.c deleted file mode 100644 index b26536d..0000000 --- a/src/benchmarks/cfrac/pimod.c +++ /dev/null @@ -1,48 +0,0 @@ -#include "pdefs.h" -#include "precision.h" -#ifdef ASM_16BIT -#include "asm16bit.h" -#endif - -/* - * Single-digit remainder - */ -int pimod(u, v) - register precision u; - int v; -{ -#ifndef ASM_16BIT - register digitPtr uPtr; - register accumulator temp; /* 0 <= temp < base^2 */ -#endif - register digit r = 0, d; /* 0 <= r,d < base */ - register int res = 0; - - (void) pparm(u); - if (v < 0) d = (digit) -v; else d = (digit) v; - if (d >= BASE) { - errorp(PDOMAIN, "pimod", "divisor too big for single digit"); - goto done; - } - if (d == 0) { - errorp(PDOMAIN, "pimod", "divide by zero"); - goto done; - } -#ifndef ASM_16BIT - uPtr = u->value + u->size; - r = 0; /* r is current remainder */ - do { - temp = mulBase(r); /* 0 <= temp <= (base-1)^2 */ - temp += *--uPtr; /* 0 <= temp <= base(base-1) */ - r = temp % d; /* 0 <= r < base */ - } while (uPtr > u->value); -#else - r = memmodw1(u->value, u->size, d); -#endif - - res = (int) r; - if (u->sign) res = -res; -done: - pdestroy(u); - return res; -} diff --git a/src/benchmarks/cfrac/pio.c b/src/benchmarks/cfrac/pio.c deleted file mode 100644 index 16b5bda..0000000 --- a/src/benchmarks/cfrac/pio.c +++ /dev/null @@ -1,165 +0,0 @@ -#include -#include -#include -#include "pdefs.h" -#include "pcvt.h" -#include "precision.h" - -/* - * Output a string to a file. - * - * Returns: - * the number of characters written - * or EOF if error - */ -static int fouts(stream, chp) - FILE *stream; - register char *chp; -{ - register int count = 0, res = 0; - - if (chp != (char *) 0 && *chp != '\0') do { - count++; - res = putc(*chp, stream); - } while (*++chp != '\0' && res != EOF); - - if (res != EOF) res = count; - return res; -} - -/* - * output the value of a precision to a file (no cr or whitespace) - * - * Returns: - * The number of characters output or EOF if error - */ -int fputp(stream, p) - FILE *stream; - precision p; -{ - int res; - char *chp = ptoa(pparm(p)); - - res = fouts(stream, chp); - deallocate(chp); - pdestroy(p); - return res; -} - -/* - * Output a precision to stdout with a newline (useful from debugger) - */ -int putp(p) - precision p; -{ - int res; - char *chp = ptoa(pparm(p)); - - res = fouts(stdout, chp); - res = putc('\n', stdout); - deallocate(chp); - pdestroy(p); - return res; - -} - -/* - * Output a justified precision - * - * Returns: The number of characters in the precision, or EOF if error - */ -int fprintp(stream, p, minWidth) - FILE *stream; - precision p; - register int minWidth; -{ - int res; - char *chp = ptoa(pparm(p)); - int len; - - len = strlen(chp); - if (minWidth < 0) { /* left-justified */ - res = fouts(stream, chp); - while (minWidth++ < -len) { - putc(' ', stream); - } - } else { - while (minWidth-- > len) { /* right-justified */ - putc(' ', stream); - } - res = fouts(stream, chp); - } - - deallocate(chp); - pdestroy(p); - return res; -} - - -/* - * Read in a precision type - same as atop but with io - * - * leading whitespace skipped - * an optional leading '-' or '+' followed by digits '0'..'9' - * leading 0's Ok - * stops at first unrecognized character - * - * Returns: pUndef if EOF or invalid argument (NULL or nondigit as 1st digit) - */ -precision fgetp(stream) - FILE *stream; -{ - precision res = pUndef; - precision clump = pUndef; - int sign = 0; - register int ch; - register accumulator temp, x; - register int j; - - ch = getc(stream); - if (ch != EOF) { - while (isspace(ch)) ch = getc(stream); /* skip whitespace */ - if (ch == '-') { - sign = 1; - ch = getc(stream); - } else if (ch == '+') { - ch = getc(stream); - } - if (isdigit(ch)) { - pset(&res, pzero); - pset(&clump, utop(aDigit)); - do { - j = aDigitLog-1; - temp = ch - '0'; - do { - if (!isdigit(ch = getc(stream))) goto atoplast; - temp = temp * aBase + (ch - '0'); - } while (--j > 0); - pset(&res, padd(pmul(res, clump), utop(temp))); - } while (isdigit(ch = getc(stream))); - goto atopdone; -atoplast: - x = aBase; - while (j++ < aDigitLog-1) { - x *= aBase; - } - pset(&res, padd(pmul(res, utop(x)), utop(temp))); -atopdone: - if (ch != EOF) ungetc(ch, stream); - if (sign) { - pset(&res, pneg(res)); - } - } else { - if (ch == EOF) { - res = pUndef; - } else { - ungetc(ch, stream); - } - } - } else { - res = pUndef; - } - pdestroy(clump); - if (res == pUndef) return res; - return presult(res); -} diff --git a/src/benchmarks/cfrac/pmul.c b/src/benchmarks/cfrac/pmul.c deleted file mode 100644 index e69a366..0000000 --- a/src/benchmarks/cfrac/pmul.c +++ /dev/null @@ -1,84 +0,0 @@ -#include "pdefs.h" -#include "precision.h" -#include - -#ifdef ASM_16BIT -#include "asm16bit.h" -#endif - -/* - * Multiply u by v (assumes normalized) - */ -precision pmul(u, v) - register precision v; /* register a5 on 68000 */ -#ifdef ASM_16BIT - register precision u; /* register a4 */ -{ -#else - precision u; -{ - digitPtr vPtr; - register digitPtr uPtr, wPtr, HiDigit; - register accumulator temp; /* 0 <= temp < base * base */ /* d7 */ - register digit vdigit; /* d6 */ -#endif - register digit hi; /* 0 <= hi < base */ /* d5 */ - precision w; - - (void) pparm(u); - (void) pparm(v); - /* - * Check for multiply by zero. Helps prevent wasted storage and -0 - */ - if (peqz(u) || peqz(v)) { - w = palloc(1); - if (w == pUndef) return w; - - w->sign = false; - w->value[0] = 0; - } else { - if (u->size < v->size) { /* u is biggest number (for inner loop speed) */ - w = u; u = v; v = w; - } - - w = palloc(u->size + v->size); - if (w == pUndef) return w; - - w->sign = (u->sign != v->sign); - -#ifndef ASM_16BIT - uPtr = u->value; - vPtr = v->value; - wPtr = w->value + u->size; /* this is correct! */ - do { - *--wPtr = 0; - } while (wPtr > w->value); - - vPtr = v->value; - HiDigit = u->value + u->size; - do { - uPtr = u->value; - wPtr = w->value + (vPtr - v->value); - hi = 0; - vdigit = *vPtr; - do { - temp = uMul(vdigit, *uPtr++); /* 0 <= temp <= (base-1)^2 */ - temp += *wPtr; /* 0 <= temp <= base(base-1) */ - temp += hi; /* 0 <= temp < base * base */ - hi = divBase(temp); /* 0 <= hi < base */ - *wPtr++ = modBase(temp); - } while (uPtr < HiDigit); - *wPtr++ = hi; - } while (++vPtr < v->value + v->size); -#else - hi = memmulw(w->value, u->value, u->size, v->value, v->size); -#endif - if (hi == 0) { - --(w->size); /* normalize */ - } - } - - pdestroy(u); - pdestroy(v); - return presult(w); -} diff --git a/src/benchmarks/cfrac/pneg.c b/src/benchmarks/cfrac/pneg.c deleted file mode 100644 index c781066..0000000 --- a/src/benchmarks/cfrac/pneg.c +++ /dev/null @@ -1,25 +0,0 @@ -#include "pdefs.h" /* private include file */ -#include "precision.h" /* public include file for forward refs */ -#include - -/* - * negation - */ -precision pneg(u) - register precision u; -{ - precision w; - - (void) pparm(u); - w = palloc(u->size); - if (w == pUndef) return w; - - w->sign = u->sign; - if (pnez(u)) { /* don't create a negative 0 */ - w->sign = !w->sign; - } - (void) memcpy(w->value, u->value, u->size * sizeof(digit)); - - pdestroy(u); - return presult(w); -} diff --git a/src/benchmarks/cfrac/podd.c b/src/benchmarks/cfrac/podd.c deleted file mode 100644 index def95b4..0000000 --- a/src/benchmarks/cfrac/podd.c +++ /dev/null @@ -1,16 +0,0 @@ -#include "pdefs.h" -#include "precision.h" - -/* - * Returns non-zero if u is odd - */ -int podd(u) - precision u; -{ - register int res; - - (void) pparm(u); - res = (*(u->value) & 1); - pdestroy(u); - return res; -} diff --git a/src/benchmarks/cfrac/pops.c b/src/benchmarks/cfrac/pops.c deleted file mode 100644 index 7154dd7..0000000 --- a/src/benchmarks/cfrac/pops.c +++ /dev/null @@ -1,339 +0,0 @@ -#ifdef DEBUGOPS -#include -#endif -/* - * High Precision Math Library - * - * Written by Dave Barrett 2/23/83 - * Translated from modcal to pascal 4/30/84 - * Mod portability fixed; removed floor function 5/14/84 - * Fixed numerous bugs and improved robustness 5/21/84 - * Translated to C 6/14/84 - * Changed precision to be determined at run-time 5/19/85 - * Added dynamic allocation 7/21/85 - * Combined unsigned math and integer math 8/01/85 - * Fixed Bug in pcmp 7/20/87 - * Fixed handling of dynamic storage (refcount added) 7/20/87 - * Final debugging of current version 8/22/87 - * Fixed many bugs in various routines, wrote atop 2/07/89 - * Tuned for speed, fixed overflow problems 3/01/89 - * Removed refcounts, more tuning, removed pcreate 3/16/89 - * Added cmp macros, change name of pzero, added pshift 4/29/89 - * Repaired operation order bugs in pdiv, calc.c 5/15/91 - * Added pdiv macro, split out pcmp, pabs, much cleanup 5/21/91 - * - * warning! The mod operation with negative arguments not portable. - * I have therefore avoided it completely with much pain. - * - * The following identities have proven useful: - * - * given: a % b = a - floor(a/b) * b - * then : -a % -b = -(a % b) - * -a % b = -( a % -b) = b - a % b (a % b != 0) - * a % -b = -(-a % b) = a % b - b (a % b != 0) - * - * given: a % b = a - a / b * b - * then : -a % -b = -a % b = -(a % b) - * a % -b = a % b - * - * Also, be very careful of computations in the inner loops. Much - * work has been done to make sure the compiler does not re-arrange - * expressions to cause an overflow. The compiler may still be doing - * unnecessary type conversions. - * - * NOTES: - * - * The ptoa routine creates storage which is likely to be forgotton. - * - * A function returning a result must use the result. If it doesn't - * the storage is never freed. For example: itop(2); by itself - * You must make sure to pdestroy the result. - * - * An error (out of storage) fails to deallocate u and v. - * - * psub, pcmp, pdiv, and pmul all assume normalized arguments. - * - * This file contains the storage management-specific code: - * palloc, pfree, pset -- together these account for 45% of execution time - */ -#include -#include "pdefs.h" /* private include file */ -#include "precision.h" /* public include file for forward refs */ - -cacheType pcache[CACHESIZE]; -static char ident[] = - " @(#) libprecision.a version 2.00 3-May-91 by Dave Barrett\n"; - -/* - * normalize (used by div and sub) - * remove all leading zero's - * force positive sign if result is zero - */ -void pnorm(u) - register precision u; -{ - register digitPtr uPtr; - - uPtr = u->value + u->size; - do { - if (*--uPtr != 0) break; - } while (uPtr > u->value); - - if (uPtr == u->value && *uPtr == 0) u->sign = false; - - u->size = (uPtr - u->value) + 1; /* normalize */ -} - -/* - * Create a number with the given size (private) (very heavily used) - */ -precision palloc(size) - register posit size; -{ - register precision w; - register cacheType *kludge = pcache + size; /* for shitty compilers */ - -#if !(defined(NOMEMOPT) || defined(BWGC)) - if (size < CACHESIZE && (w = kludge->next) != pUndef) { - kludge->next = ((cacheType *) w)->next; - --kludge->count; - } else { -#endif - w = (precision) allocate(PrecisionSize + sizeof(digit) * size); - if (w == pUndef) { - w = errorp(PNOMEM, "palloc", "out of memory"); - return w; - } -#if !(defined(NOMEMOPT) || defined(BWGC)) - } -#endif -#ifndef BWGC - w->refcount = 1; -#endif - w->size = w->alloc = size; -#ifdef DEBUGOPS - printf("alloc %.8x\n", w); - fflush(stdout); -#endif - return w; -} - -/* - * (Very heavily used: Called conditionally pdestroy) - * (should be void, but some compilers can't handle it with the macro) - */ -int pfree(u) - register precision u; -{ - register posit size; - register cacheType *kludge; /* for shitty compilers */ - -#ifdef DEBUGOPS - printf("free %.8x\n", u); - fflush(stdout); -#endif - - size = u->alloc; - - kludge = pcache + size; -#if !(defined(NOMEMOPT) || defined(BWGC)) - if (size < CACHESIZE && kludge->count < CACHELIMIT) { - ((cacheType *) u)->next = kludge->next; - kludge->next = u; - kludge->count++; - } else { -#endif - deallocate(u); -#if !(defined(NOMEMOPT) || defined(BWGC)) - } -#endif - return 0; -} - -/* - * User inteface: - * - * Rules: - * a precision must be initialized to pUndef or to result of pnew. - * a precision pointer must point to a precision or be pNull - * pUndef may not be passed as an rvalue into a function - * pNull may not be passed as an lvalue into a function - * - * presult and pdestroy are the only functions which may be passed pUndef - */ - -/* - * assignment with verification (slower, but helpful for bug detect) - * It would be nice if this routine could detect pointers to incorrect - * or non-living areas of memory. - * - * We can't check for undefined rvalue because we want to allow functions - * to return pUndef, and then let the application check for it after assigning - * it to a variable. - * - * usage: pset(&i, j); - */ -precision psetv(up, v) - register precision *up, v; -{ - register precision u; - -#ifdef DEBUGOPS - printf("psetv %.8x %.8x ", up, v); -#endif -#ifdef DEBUGOPS -#ifndef BWGC - printf("->%u", v->refcount); -#endif -#endif - if (up == pNull) { - errorp(PDOMAIN, "pset", "lvalue is pNull"); - } - u = *up; -#ifdef DEBUGOPS - printf(" %.8x", u); -#endif - *up = v; - if (v != pUndef) { -#ifndef BWGC - v->refcount++; -#endif - } - if (u != pUndef) { - if (u->sign & ~1) { /* a minimal check */ - errorp(PDOMAIN, "pset", "invalid precision"); - } -#ifndef BWGC - if (--(u->refcount) == 0) { -#ifdef DEBUGOPS - printf("->%u", u->refcount); -#endif - pfree(u); - } -#endif - } -#ifdef DEBUGOPS - putchar('\n'); - fflush(stdout); -#endif - return v; -} - -precision pparmv(u) - register precision u; -{ -#ifdef DEBUGOPS - printf("pparm %.8x\n", u); - fflush(stdout); -#endif - if (u == pUndef) { - errorp(PDOMAIN, "pparm", "undefined function argument"); - } - if (u->sign & ~1) { /* a minimal check */ - errorp(PDOMAIN, "pparm", "invalid precision"); - } -#ifndef BWGC - u->refcount++; -#endif - return u; -} - -/* - * Function version of unsafe pparmq macro - */ -precision pparmf(u) - register precision u; -{ -#ifndef BWGC - if (u != pUndef) { - u->refcount++; - } -#endif - return u; -} - -/* - * Function version of pdestroy macro - */ -void pdestroyf(u) - register precision u; -{ -#ifndef BWGC - if (u != pUndef && --u->refcount == 0) { - pfree(u); - } -#endif -} - -#ifndef __GNUC__ /* inline in header file */ -/* - * We cannot allow this to be a macro because of the probability that it's - * argument will be a function (e.g. utop(2)) - */ -precision pnew(u) - register precision u; -{ -#ifndef BWGC - u->refcount++; -#endif - return u; -} - -/* - * Cannot be a macro because of function argument possibility - */ -precision presult(u) - register precision u; -{ -#ifndef BWGC - if (u != pUndef) { - --(u->refcount); - } -#endif - return u; -} - -/* - * Quick but dangerous assignment - * - * Assumes: target not pNull and source not pUndef - */ -precision psetq(up, v) - register precision *up, v; -{ - register precision u = *up; /* up may NOT be pNULL! */ - - *up = v; /* up may be &v, OK */ -#ifndef BWGC - if (v != pUndef) { /* to allow: x=func(); if (x==pUndef) ... */ - v->refcount++; - } - if (u != pUndef && --(u->refcount) == 0) { - pfree(u); - } -#endif - return v; -} -#endif - -#if 0 /* original assignment code */ -precision pset(up, v) - register precision *up, v; -{ - register precision u; - -#ifndef BWGC - if (v != pUndef) v->refcount++; -#endif - if (up == pNull) { /* useful voiding parameters (pdiv) */ - pdestroy(v); - return pUndef; - } - u = *up; - if (u != pUndef) { /* useful to force initial creation */ - pdestroy(u); - } - *up = v; /* notice that v may be pUndef which is OK! */ - return v; /* no presult! This is a variable */ -} -#endif diff --git a/src/benchmarks/cfrac/ppowmod.c b/src/benchmarks/cfrac/ppowmod.c deleted file mode 100644 index 4528db9..0000000 --- a/src/benchmarks/cfrac/ppowmod.c +++ /dev/null @@ -1,28 +0,0 @@ -#include "precision.h" - -/* - * Raise to precision power mod m - */ -precision ppowmod(u, v, m) - precision u, v, m; -{ - precision j = pUndef, i = pUndef, n = pUndef; - - (void) pparm(m); - pset(&i, pparm(u)); - pset(&n, pparm(v)); - pset(&j, pone); - - do { - if (podd(n)) { - pset(&j, pmod(pmul(i, j), m)); - } - pset(&n, phalf(n)); - if (peqz(n)) break; - pset(&i, pmod(pmul(i, i), m)); - } while (1); - - pdestroy(i); pdestroy(n); - pdestroy(u); pdestroy(v); pdestroy(m); - return presult(j); -} diff --git a/src/benchmarks/cfrac/precision.h b/src/benchmarks/cfrac/precision.h deleted file mode 100644 index 28befce..0000000 --- a/src/benchmarks/cfrac/precision.h +++ /dev/null @@ -1,314 +0,0 @@ -/* - * Arbitrary precision integer math package - * - * (c) Copyright 1991 by David A. Barrett (barrett@asgard.UUCP) - * - * Not to be used for profit or distributed in systems sold for profit - */ - - -/* BEGIN EDB */ - -#include - -#if defined(USE_LOCH) && defined(_WIN32) -#pragma comment(lib, "loch.lib") -#endif - -#define NOMEMOPT 1 - -/* END EDB */ - -#ifndef BASE -typedef unsigned short prefc; /* reference counter type */ -typedef prefc *precision; /* this a a private data structure */ -extern int pfree(); /* free (private) */ -#endif - -typedef precision *pvector; /* a vector of precision */ -typedef pvector *parray; /* 2d array */ - -/* - * Error values passed to errorp - */ -#define PNOERROR 0 -#define PNOMEM 1 -#define PREFCOUNT 2 -#define PUNDEFINED 3 -#define PDOMAIN 4 -#define POVERFLOW 5 - -#define pUndef ((precision) 0) /* An undefined value */ -#define pNull ((precision *) 0) - -#define peq(u, v) (pcmp((u), (v)) == 0) -#define pne(u, v) (pcmp((u), (v)) != 0) -#define pgt(u, v) (pcmp((u), (v)) > 0) -#define plt(u, v) (pcmp((u), (v)) < 0) -#define pge(u, v) (pcmp((u), (v)) >= 0) -#define ple(u, v) (pcmp((u), (v)) <= 0) - -#define peqz(u) (pcmpz(u) == 0) -#define pnez(u) (pcmpz(u) != 0) -#define pltz(u) (pcmpz(u) < 0) -#define pgtz(u) (pcmpz(u) > 0) -#define plez(u) (pcmpz(u) <= 0) -#define pgez(u) (pcmpz(u) >= 0) - -#define peven(u) (!podd(u)) -#define pdiv(u,v) (pdivmod(u,v, (precision *) -1, pNull)) -#define pmod(u,v) (pdivmod(u,v, pNull, (precision *) -1)) -#define pdivr(u,v,r) (pdivmod(u,v, (precision *) -1, r)) -#define pmodq(u,v,q) (pdivmod(u,v, q, (precision *) -1)) - -/* - * Application programs should only use the following definitions; - * - * pnew, pdestroy, pparm, presult and pset - * - * Other variants are internal only! - * All are side-effect safe except for pparm and presult. - * -DDEBUG will enable argument checking for pset and pparm - */ -#ifdef __GNUC__ /* inline is NOT ansii! Sigh. */ -#ifndef BWGC -static inline precision pnew(precision u) { (* (prefc *) u)++; return u; } -static inline void pdestroy(precision u) { - if (u != pUndef && --(*(prefc *) u) == 0) pfree(u); -} -static inline precision pparmq(precision u) { - if (u != pUndef) (* (prefc *) u)++; return u; -} -static inline precision presult(precision u) { - if (u != pUndef) --(*(prefc *) u); return u; -} -static inline precision psetq(precision *up, precision v) { - precision u = *up; - *up = v; - if (v != pUndef) (* (prefc *) v)++; - if (u != pUndef && --(* (prefc *) u) == 0) pfree(u); - return v; -} -#define pvoid(u) pdestroy(u) -#else -extern inline precision pnew(precision u) { return u; } -extern inline void pdestroy(precision u) {} -extern inline precision pparmq(precision u) { return u; } -extern inline precision presult(precision u) { return u; } -extern inline precision psetq(precision *up, precision v) { - precision u = *up; - *up = v; - return v; -} -#define pvoid(u) pdestroy(u) -#endif -#else -#ifndef BWGC -#define pdestroy(u) (void) ((u)!=pUndef&&--(*(prefc *)(u))==0&&pfree(u)) -#define pparmq(u) ((u) != pUndef && (* (prefc *) (u))++, (u)) -#define pvoid(u) pdestroyf(u) -#else -#define pdestroy(u) (void) (0) -#define pparmq(u) (u) -#define pvoid(u) pdestroyf(u) -#endif -#endif - - -#ifdef PDEBUG -#define pset(u, v) psetv(u, v) -#define pparm(u) pparmv(u) -#else -#define pset(u, v) psetq(u, v) -#define pparm(u) pparmq(u) -#endif - -#ifdef __STDC__ /* if ANSI compiler */ -#ifndef __GNUC__ -extern precision pnew(precision); /* initialization */ -extern precision presult(precision); /* function result */ -extern precision psetq(precision *, precision); /* quick assignment */ -#endif -extern precision psetv(precision *, precision); /* checked assignment */ -extern precision pparmv(precision); /* checked parameter */ -extern precision pparmf(precision); /* unchecked parameter (fn) */ - -extern int pcmpz(precision); /* compare to zero */ -extern int pcmp(precision, precision); /* compare */ -extern int picmp(precision, int); /* single digit cmp */ - -extern precision padd(precision, precision); /* add */ -extern precision psub(precision, precision); /* subtract */ -extern precision pmul(precision, precision); /* multiply */ - -extern precision pdivmod(precision, precision, - precision *q, precision *r); - -extern precision pidiv(precision, int); /* single digit pdiv */ -extern int pimod(precision, int); /* single digit pmod */ -extern void pidivmod(precision, int, /* single pdivmod */ - precision *q, int *r); - -extern precision pneg(precision); /* negate */ -extern precision pabs(precision); /* absolute value */ -extern int podd(precision); /* true if odd */ -extern precision phalf(precision); /* divide by two */ - -extern precision pmin(precision, precision); /* minimum value */ -extern precision pmax(precision, precision); /* maximum value */ - -extern precision prand(precision); /* random number generator */ - -extern precision itop(int); /* int to precision */ -extern precision utop(unsigned); /* unsigned to precision */ -extern precision ltop(long); /* long to precision */ -extern precision ultop(unsigned long); /* unsigned long to precision */ - -extern int ptoi(precision); /* precision to int */ -extern unsigned int ptou(precision); /* precision to unsigned */ -extern long ptol(precision); /* precision to long */ -extern unsigned long ptoul(precision); /* precision to unsigned long */ - -extern precision atop(char *); /* ascii to precision */ -extern char *ptoa(precision); /* precision to ascii */ - -extern int btop(precision *result, /* base to precision */ - char *src, unsigned size, int *digitmap, unsigned radix); - -extern int /* precision to base */ - ptob(precision, char *result, unsigned size, char *alphabet, unsigned radix); - -/* - * Can't do prototyping for these unless stdio.h has been included - */ -#ifdef BUFSIZ -extern precision fgetp(FILE *stream); /* input precision */ -extern int fputp(FILE *stream, precision); /* output precision */ -extern int - fprintp(FILE *stream, precision, int minWidth); /* output within a field */ -#else -extern precision fgetp(); /* input precision */ -extern int fputp(); /* output precision */ -extern int fprintp(); /* output within a field */ -#endif - -extern int putp(precision); /* stdout with '\n' */ - -extern void pshow(precision); /* display debug info */ -extern precision prandnum(); /* debug and profil only */ -extern precision pshift(precision, int); /* shift left */ - -extern precision errorp(int errnum, char *routine, char *message); - -extern precision pzero, pone, ptwo; /* constants 0, 1, and 2 */ -extern precision p_one; /* constant -1 */ - -extern precision psqrt(precision); /* square root */ -extern precision pfactorial(precision); /* factorial */ -extern precision pipow(precision, unsigned); /* unsigned int power */ -extern precision ppow(precision, precision); /* precision power */ -extern precision - ppowmod(precision, precision, precision); /* precision power mod m */ -extern int plogb(precision, precision); /* log base b of n */ - -extern precision dtop(double); /* double to precision */ -extern double ptod(precision); /* precision to double */ - -/* - * vector operations - */ -pvector pvundef(pvector, unsigned size); /* local variable entry */ -void pvdestroy(pvector, unsigned size); /* local variable exit */ - -pvector pvalloc(unsigned size); /* pvec allocate */ -void pvfree(pvector, unsigned size); /* pvec free */ - -pvector pvset(pvector, unsigned size, precision value); - -#else - -/* - * Function versions of above if you still want side effects - */ - -#ifndef __GNUC__ -extern precision pnew(); /* initialization */ -extern precision presult(); /* function result */ -extern precision psetq(); /* quick assignment */ -#endif -extern precision psetv(); /* checked assignment */ -extern precision pparmv(); /* checked parameter */ -extern precision pparmf(); /* unchecked parameter (fn) */ - -extern int pcmpz(); /* compare to zero */ -extern int pcmp(); /* compare */ -extern int picmp(); /* single digit compare */ - -extern precision padd(); /* add */ -extern precision psub(); /* subtract */ -extern precision pmul(); /* multiply */ - -extern precision pdivmod(); /* divide/remainder */ -extern void pidivmod(); /* single digit divide/remainder */ -extern precision pidiv(); /* single digit divide */ -extern int pimod(); /* single digit remainder */ -extern precision pneg(); /* negate */ -extern precision pabs(); /* absolute value */ -extern int podd(); /* true if odd */ -extern precision phalf(); /* divide by two */ - -extern precision pmin(); /* minimum value */ -extern precision pmax(); /* maximum value */ - -extern precision prand(); /* random number generator */ - -extern precision itop(); /* int to precision */ -extern precision utop(); /* unsigned to precision */ -extern precision ltop(); /* long to precision */ -extern precision ultop(); /* unsigned long to precision */ - -extern int ptoi(); /* precision to int */ -extern unsigned int ptou(); /* precision to unsigned */ -extern long ptol(); /* precision to long */ -extern unsigned long ptoul(); /* precision to unsigned long */ - -extern precision atop(); /* ascii to precision */ -extern char *ptoa(); /* precision to ascii */ - -extern int btop(); /* base to precision */ -extern int ptob(); /* precision to base */ - -extern precision fgetp(); /* input a precision */ -extern int fputp(); /* output a precision */ -extern int putp(); /* output precision '\n' to stdout */ -extern int fprintp(); /* output a precision within a field */ - -extern void pshow(); /* display debug info */ -extern precision prandnum(); /* for debug and profil only */ -extern precision pshift(); /* shift left */ - -extern precision errorp(); /* user-substitutable error handler */ - -extern precision pzero, pone, ptwo; /* constants 0, 1, and 2 */ -extern precision p_one; /* constant -1 */ - -extern precision psqrt(); /* square root */ -extern precision pfactorial(); /* factorial */ -extern precision pipow(); /* unsigned int power */ -extern precision ppow(); /* precision power */ -extern precision ppowmod(); /* precision power mod m */ -extern int plogb(); /* log base b of n */ - -extern precision dtop(); /* double to precision */ -extern double ptod(); /* precision to double */ - -/* - * vector operations - */ -pvector pvundef(); /* local variable entry */ -void pvdestroy(); /* local variable exit */ -pvector pvalloc(); /* pvec allocate */ -void pvfree(); /* pvec free */ -pvector pvset(); /* set each element to scaler */ - -#endif diff --git a/src/benchmarks/cfrac/primes.c b/src/benchmarks/cfrac/primes.c deleted file mode 100644 index f9dbd84..0000000 --- a/src/benchmarks/cfrac/primes.c +++ /dev/null @@ -1,662 +0,0 @@ -/* - * A table of all primes < 65536 - */ -unsigned int primesize = 6542; - -unsigned short primes[] = { - 2, 3, 5, 7, 11, 13, 17, 19, 23, 29, - 31, 37, 41, 43, 47, 53, 59, 61, 67, 71, - 73, 79, 83, 89, 97, 101, 103, 107, 109, 113, - 127, 131, 137, 139, 149, 151, 157, 163, 167, 173, - 179, 181, 191, 193, 197, 199, 211, 223, 227, 229, - 233, 239, 241, 251, 257, 263, 269, 271, 277, 281, - 283, 293, 307, 311, 313, 317, 331, 337, 347, 349, - 353, 359, 367, 373, 379, 383, 389, 397, 401, 409, - 419, 421, 431, 433, 439, 443, 449, 457, 461, 463, - 467, 479, 487, 491, 499, 503, 509, 521, 523, 541, - 547, 557, 563, 569, 571, 577, 587, 593, 599, 601, - 607, 613, 617, 619, 631, 641, 643, 647, 653, 659, - 661, 673, 677, 683, 691, 701, 709, 719, 727, 733, - 739, 743, 751, 757, 761, 769, 773, 787, 797, 809, - 811, 821, 823, 827, 829, 839, 853, 857, 859, 863, - 877, 881, 883, 887, 907, 911, 919, 929, 937, 941, - 947, 953, 967, 971, 977, 983, 991, 997, 1009, 1013, - 1019, 1021, 1031, 1033, 1039, 1049, 1051, 1061, 1063, 1069, - 1087, 1091, 1093, 1097, 1103, 1109, 1117, 1123, 1129, 1151, - 1153, 1163, 1171, 1181, 1187, 1193, 1201, 1213, 1217, 1223, - 1229, 1231, 1237, 1249, 1259, 1277, 1279, 1283, 1289, 1291, - 1297, 1301, 1303, 1307, 1319, 1321, 1327, 1361, 1367, 1373, - 1381, 1399, 1409, 1423, 1427, 1429, 1433, 1439, 1447, 1451, - 1453, 1459, 1471, 1481, 1483, 1487, 1489, 1493, 1499, 1511, - 1523, 1531, 1543, 1549, 1553, 1559, 1567, 1571, 1579, 1583, - 1597, 1601, 1607, 1609, 1613, 1619, 1621, 1627, 1637, 1657, - 1663, 1667, 1669, 1693, 1697, 1699, 1709, 1721, 1723, 1733, - 1741, 1747, 1753, 1759, 1777, 1783, 1787, 1789, 1801, 1811, - 1823, 1831, 1847, 1861, 1867, 1871, 1873, 1877, 1879, 1889, - 1901, 1907, 1913, 1931, 1933, 1949, 1951, 1973, 1979, 1987, - 1993, 1997, 1999, 2003, 2011, 2017, 2027, 2029, 2039, 2053, - 2063, 2069, 2081, 2083, 2087, 2089, 2099, 2111, 2113, 2129, - 2131, 2137, 2141, 2143, 2153, 2161, 2179, 2203, 2207, 2213, - 2221, 2237, 2239, 2243, 2251, 2267, 2269, 2273, 2281, 2287, - 2293, 2297, 2309, 2311, 2333, 2339, 2341, 2347, 2351, 2357, - 2371, 2377, 2381, 2383, 2389, 2393, 2399, 2411, 2417, 2423, - 2437, 2441, 2447, 2459, 2467, 2473, 2477, 2503, 2521, 2531, - 2539, 2543, 2549, 2551, 2557, 2579, 2591, 2593, 2609, 2617, - 2621, 2633, 2647, 2657, 2659, 2663, 2671, 2677, 2683, 2687, - 2689, 2693, 2699, 2707, 2711, 2713, 2719, 2729, 2731, 2741, - 2749, 2753, 2767, 2777, 2789, 2791, 2797, 2801, 2803, 2819, - 2833, 2837, 2843, 2851, 2857, 2861, 2879, 2887, 2897, 2903, - 2909, 2917, 2927, 2939, 2953, 2957, 2963, 2969, 2971, 2999, - 3001, 3011, 3019, 3023, 3037, 3041, 3049, 3061, 3067, 3079, - 3083, 3089, 3109, 3119, 3121, 3137, 3163, 3167, 3169, 3181, - 3187, 3191, 3203, 3209, 3217, 3221, 3229, 3251, 3253, 3257, - 3259, 3271, 3299, 3301, 3307, 3313, 3319, 3323, 3329, 3331, - 3343, 3347, 3359, 3361, 3371, 3373, 3389, 3391, 3407, 3413, - 3433, 3449, 3457, 3461, 3463, 3467, 3469, 3491, 3499, 3511, - 3517, 3527, 3529, 3533, 3539, 3541, 3547, 3557, 3559, 3571, - 3581, 3583, 3593, 3607, 3613, 3617, 3623, 3631, 3637, 3643, - 3659, 3671, 3673, 3677, 3691, 3697, 3701, 3709, 3719, 3727, - 3733, 3739, 3761, 3767, 3769, 3779, 3793, 3797, 3803, 3821, - 3823, 3833, 3847, 3851, 3853, 3863, 3877, 3881, 3889, 3907, - 3911, 3917, 3919, 3923, 3929, 3931, 3943, 3947, 3967, 3989, - 4001, 4003, 4007, 4013, 4019, 4021, 4027, 4049, 4051, 4057, - 4073, 4079, 4091, 4093, 4099, 4111, 4127, 4129, 4133, 4139, - 4153, 4157, 4159, 4177, 4201, 4211, 4217, 4219, 4229, 4231, - 4241, 4243, 4253, 4259, 4261, 4271, 4273, 4283, 4289, 4297, - 4327, 4337, 4339, 4349, 4357, 4363, 4373, 4391, 4397, 4409, - 4421, 4423, 4441, 4447, 4451, 4457, 4463, 4481, 4483, 4493, - 4507, 4513, 4517, 4519, 4523, 4547, 4549, 4561, 4567, 4583, - 4591, 4597, 4603, 4621, 4637, 4639, 4643, 4649, 4651, 4657, - 4663, 4673, 4679, 4691, 4703, 4721, 4723, 4729, 4733, 4751, - 4759, 4783, 4787, 4789, 4793, 4799, 4801, 4813, 4817, 4831, - 4861, 4871, 4877, 4889, 4903, 4909, 4919, 4931, 4933, 4937, - 4943, 4951, 4957, 4967, 4969, 4973, 4987, 4993, 4999, 5003, - 5009, 5011, 5021, 5023, 5039, 5051, 5059, 5077, 5081, 5087, - 5099, 5101, 5107, 5113, 5119, 5147, 5153, 5167, 5171, 5179, - 5189, 5197, 5209, 5227, 5231, 5233, 5237, 5261, 5273, 5279, - 5281, 5297, 5303, 5309, 5323, 5333, 5347, 5351, 5381, 5387, - 5393, 5399, 5407, 5413, 5417, 5419, 5431, 5437, 5441, 5443, - 5449, 5471, 5477, 5479, 5483, 5501, 5503, 5507, 5519, 5521, - 5527, 5531, 5557, 5563, 5569, 5573, 5581, 5591, 5623, 5639, - 5641, 5647, 5651, 5653, 5657, 5659, 5669, 5683, 5689, 5693, - 5701, 5711, 5717, 5737, 5741, 5743, 5749, 5779, 5783, 5791, - 5801, 5807, 5813, 5821, 5827, 5839, 5843, 5849, 5851, 5857, - 5861, 5867, 5869, 5879, 5881, 5897, 5903, 5923, 5927, 5939, - 5953, 5981, 5987, 6007, 6011, 6029, 6037, 6043, 6047, 6053, - 6067, 6073, 6079, 6089, 6091, 6101, 6113, 6121, 6131, 6133, - 6143, 6151, 6163, 6173, 6197, 6199, 6203, 6211, 6217, 6221, - 6229, 6247, 6257, 6263, 6269, 6271, 6277, 6287, 6299, 6301, - 6311, 6317, 6323, 6329, 6337, 6343, 6353, 6359, 6361, 6367, - 6373, 6379, 6389, 6397, 6421, 6427, 6449, 6451, 6469, 6473, - 6481, 6491, 6521, 6529, 6547, 6551, 6553, 6563, 6569, 6571, - 6577, 6581, 6599, 6607, 6619, 6637, 6653, 6659, 6661, 6673, - 6679, 6689, 6691, 6701, 6703, 6709, 6719, 6733, 6737, 6761, - 6763, 6779, 6781, 6791, 6793, 6803, 6823, 6827, 6829, 6833, - 6841, 6857, 6863, 6869, 6871, 6883, 6899, 6907, 6911, 6917, - 6947, 6949, 6959, 6961, 6967, 6971, 6977, 6983, 6991, 6997, - 7001, 7013, 7019, 7027, 7039, 7043, 7057, 7069, 7079, 7103, - 7109, 7121, 7127, 7129, 7151, 7159, 7177, 7187, 7193, 7207, - 7211, 7213, 7219, 7229, 7237, 7243, 7247, 7253, 7283, 7297, - 7307, 7309, 7321, 7331, 7333, 7349, 7351, 7369, 7393, 7411, - 7417, 7433, 7451, 7457, 7459, 7477, 7481, 7487, 7489, 7499, - 7507, 7517, 7523, 7529, 7537, 7541, 7547, 7549, 7559, 7561, - 7573, 7577, 7583, 7589, 7591, 7603, 7607, 7621, 7639, 7643, - 7649, 7669, 7673, 7681, 7687, 7691, 7699, 7703, 7717, 7723, - 7727, 7741, 7753, 7757, 7759, 7789, 7793, 7817, 7823, 7829, - 7841, 7853, 7867, 7873, 7877, 7879, 7883, 7901, 7907, 7919, - 7927, 7933, 7937, 7949, 7951, 7963, 7993, 8009, 8011, 8017, - 8039, 8053, 8059, 8069, 8081, 8087, 8089, 8093, 8101, 8111, - 8117, 8123, 8147, 8161, 8167, 8171, 8179, 8191, 8209, 8219, - 8221, 8231, 8233, 8237, 8243, 8263, 8269, 8273, 8287, 8291, - 8293, 8297, 8311, 8317, 8329, 8353, 8363, 8369, 8377, 8387, - 8389, 8419, 8423, 8429, 8431, 8443, 8447, 8461, 8467, 8501, - 8513, 8521, 8527, 8537, 8539, 8543, 8563, 8573, 8581, 8597, - 8599, 8609, 8623, 8627, 8629, 8641, 8647, 8663, 8669, 8677, - 8681, 8689, 8693, 8699, 8707, 8713, 8719, 8731, 8737, 8741, - 8747, 8753, 8761, 8779, 8783, 8803, 8807, 8819, 8821, 8831, - 8837, 8839, 8849, 8861, 8863, 8867, 8887, 8893, 8923, 8929, - 8933, 8941, 8951, 8963, 8969, 8971, 8999, 9001, 9007, 9011, - 9013, 9029, 9041, 9043, 9049, 9059, 9067, 9091, 9103, 9109, - 9127, 9133, 9137, 9151, 9157, 9161, 9173, 9181, 9187, 9199, - 9203, 9209, 9221, 9227, 9239, 9241, 9257, 9277, 9281, 9283, - 9293, 9311, 9319, 9323, 9337, 9341, 9343, 9349, 9371, 9377, - 9391, 9397, 9403, 9413, 9419, 9421, 9431, 9433, 9437, 9439, - 9461, 9463, 9467, 9473, 9479, 9491, 9497, 9511, 9521, 9533, - 9539, 9547, 9551, 9587, 9601, 9613, 9619, 9623, 9629, 9631, - 9643, 9649, 9661, 9677, 9679, 9689, 9697, 9719, 9721, 9733, - 9739, 9743, 9749, 9767, 9769, 9781, 9787, 9791, 9803, 9811, - 9817, 9829, 9833, 9839, 9851, 9857, 9859, 9871, 9883, 9887, - 9901, 9907, 9923, 9929, 9931, 9941, 9949, 9967, 9973, 10007, - 10009, 10037, 10039, 10061, 10067, 10069, 10079, 10091, 10093, 10099, - 10103, 10111, 10133, 10139, 10141, 10151, 10159, 10163, 10169, 10177, - 10181, 10193, 10211, 10223, 10243, 10247, 10253, 10259, 10267, 10271, - 10273, 10289, 10301, 10303, 10313, 10321, 10331, 10333, 10337, 10343, - 10357, 10369, 10391, 10399, 10427, 10429, 10433, 10453, 10457, 10459, - 10463, 10477, 10487, 10499, 10501, 10513, 10529, 10531, 10559, 10567, - 10589, 10597, 10601, 10607, 10613, 10627, 10631, 10639, 10651, 10657, - 10663, 10667, 10687, 10691, 10709, 10711, 10723, 10729, 10733, 10739, - 10753, 10771, 10781, 10789, 10799, 10831, 10837, 10847, 10853, 10859, - 10861, 10867, 10883, 10889, 10891, 10903, 10909, 10937, 10939, 10949, - 10957, 10973, 10979, 10987, 10993, 11003, 11027, 11047, 11057, 11059, - 11069, 11071, 11083, 11087, 11093, 11113, 11117, 11119, 11131, 11149, - 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59063, 59069, 59077, 59083, 59093, 59107, 59113, 59119, 59123, 59141, - 59149, 59159, 59167, 59183, 59197, 59207, 59209, 59219, 59221, 59233, - 59239, 59243, 59263, 59273, 59281, 59333, 59341, 59351, 59357, 59359, - 59369, 59377, 59387, 59393, 59399, 59407, 59417, 59419, 59441, 59443, - 59447, 59453, 59467, 59471, 59473, 59497, 59509, 59513, 59539, 59557, - 59561, 59567, 59581, 59611, 59617, 59621, 59627, 59629, 59651, 59659, - 59663, 59669, 59671, 59693, 59699, 59707, 59723, 59729, 59743, 59747, - 59753, 59771, 59779, 59791, 59797, 59809, 59833, 59863, 59879, 59887, - 59921, 59929, 59951, 59957, 59971, 59981, 59999, 60013, 60017, 60029, - 60037, 60041, 60077, 60083, 60089, 60091, 60101, 60103, 60107, 60127, - 60133, 60139, 60149, 60161, 60167, 60169, 60209, 60217, 60223, 60251, - 60257, 60259, 60271, 60289, 60293, 60317, 60331, 60337, 60343, 60353, - 60373, 60383, 60397, 60413, 60427, 60443, 60449, 60457, 60493, 60497, - 60509, 60521, 60527, 60539, 60589, 60601, 60607, 60611, 60617, 60623, - 60631, 60637, 60647, 60649, 60659, 60661, 60679, 60689, 60703, 60719, - 60727, 60733, 60737, 60757, 60761, 60763, 60773, 60779, 60793, 60811, - 60821, 60859, 60869, 60887, 60889, 60899, 60901, 60913, 60917, 60919, - 60923, 60937, 60943, 60953, 60961, 61001, 61007, 61027, 61031, 61043, - 61051, 61057, 61091, 61099, 61121, 61129, 61141, 61151, 61153, 61169, - 61211, 61223, 61231, 61253, 61261, 61283, 61291, 61297, 61331, 61333, - 61339, 61343, 61357, 61363, 61379, 61381, 61403, 61409, 61417, 61441, - 61463, 61469, 61471, 61483, 61487, 61493, 61507, 61511, 61519, 61543, - 61547, 61553, 61559, 61561, 61583, 61603, 61609, 61613, 61627, 61631, - 61637, 61643, 61651, 61657, 61667, 61673, 61681, 61687, 61703, 61717, - 61723, 61729, 61751, 61757, 61781, 61813, 61819, 61837, 61843, 61861, - 61871, 61879, 61909, 61927, 61933, 61949, 61961, 61967, 61979, 61981, - 61987, 61991, 62003, 62011, 62017, 62039, 62047, 62053, 62057, 62071, - 62081, 62099, 62119, 62129, 62131, 62137, 62141, 62143, 62171, 62189, - 62191, 62201, 62207, 62213, 62219, 62233, 62273, 62297, 62299, 62303, - 62311, 62323, 62327, 62347, 62351, 62383, 62401, 62417, 62423, 62459, - 62467, 62473, 62477, 62483, 62497, 62501, 62507, 62533, 62539, 62549, - 62563, 62581, 62591, 62597, 62603, 62617, 62627, 62633, 62639, 62653, - 62659, 62683, 62687, 62701, 62723, 62731, 62743, 62753, 62761, 62773, - 62791, 62801, 62819, 62827, 62851, 62861, 62869, 62873, 62897, 62903, - 62921, 62927, 62929, 62939, 62969, 62971, 62981, 62983, 62987, 62989, - 63029, 63031, 63059, 63067, 63073, 63079, 63097, 63103, 63113, 63127, - 63131, 63149, 63179, 63197, 63199, 63211, 63241, 63247, 63277, 63281, - 63299, 63311, 63313, 63317, 63331, 63337, 63347, 63353, 63361, 63367, - 63377, 63389, 63391, 63397, 63409, 63419, 63421, 63439, 63443, 63463, - 63467, 63473, 63487, 63493, 63499, 63521, 63527, 63533, 63541, 63559, - 63577, 63587, 63589, 63599, 63601, 63607, 63611, 63617, 63629, 63647, - 63649, 63659, 63667, 63671, 63689, 63691, 63697, 63703, 63709, 63719, - 63727, 63737, 63743, 63761, 63773, 63781, 63793, 63799, 63803, 63809, - 63823, 63839, 63841, 63853, 63857, 63863, 63901, 63907, 63913, 63929, - 63949, 63977, 63997, 64007, 64013, 64019, 64033, 64037, 64063, 64067, - 64081, 64091, 64109, 64123, 64151, 64153, 64157, 64171, 64187, 64189, - 64217, 64223, 64231, 64237, 64271, 64279, 64283, 64301, 64303, 64319, - 64327, 64333, 64373, 64381, 64399, 64403, 64433, 64439, 64451, 64453, - 64483, 64489, 64499, 64513, 64553, 64567, 64577, 64579, 64591, 64601, - 64609, 64613, 64621, 64627, 64633, 64661, 64663, 64667, 64679, 64693, - 64709, 64717, 64747, 64763, 64781, 64783, 64793, 64811, 64817, 64849, - 64853, 64871, 64877, 64879, 64891, 64901, 64919, 64921, 64927, 64937, - 64951, 64969, 64997, 65003, 65011, 65027, 65029, 65033, 65053, 65063, - 65071, 65089, 65099, 65101, 65111, 65119, 65123, 65129, 65141, 65147, - 65167, 65171, 65173, 65179, 65183, 65203, 65213, 65239, 65257, 65267, - 65269, 65287, 65293, 65309, 65323, 65327, 65353, 65357, 65371, 65381, - 65393, 65407, 65413, 65419, 65423, 65437, 65447, 65449, 65479, 65497, - 65519, 65521, 1 -}; diff --git a/src/benchmarks/cfrac/primes.h b/src/benchmarks/cfrac/primes.h deleted file mode 100644 index 206f480..0000000 --- a/src/benchmarks/cfrac/primes.h +++ /dev/null @@ -1,2 +0,0 @@ -extern unsigned int primesize; -extern unsigned short primes[]; diff --git a/src/benchmarks/cfrac/psqrt.c b/src/benchmarks/cfrac/psqrt.c deleted file mode 100644 index 00531a6..0000000 --- a/src/benchmarks/cfrac/psqrt.c +++ /dev/null @@ -1,29 +0,0 @@ -#include "precision.h" - -/* - * Square root - */ -precision psqrt(y) - precision y; -{ - int i; - precision x = pUndef, lastx = pUndef; - - i = pcmpz(pparm(y)); - if (i == 0) { /* if y == 0 */ - pset(&lastx, pzero); - } else if (i < 0) { /* if y negative */ - pset(&x, errorp(PDOMAIN, "psqrt", "negative argument")); - } else { - pset(&x, y); - do { - pset(&lastx, x); - pset(&x, phalf(padd(x, pdiv(y, x)))); - } while (plt(x, lastx)); - } - - pdestroy(x); - - pdestroy(y); - return presult(lastx); -} diff --git a/src/benchmarks/cfrac/psub.c b/src/benchmarks/cfrac/psub.c deleted file mode 100644 index d887287..0000000 --- a/src/benchmarks/cfrac/psub.c +++ /dev/null @@ -1,92 +0,0 @@ -#include "pdefs.h" -#include "precision.h" -#include - -#ifdef ASM_16BIT -#include "asm16bit.h" -#endif - -/* - * Subtract u from v (assumes normalized) - */ -precision psub(u, v) -#ifndef ASM_16BIT - precision u, v; -{ - register digitPtr HiDigit, wPtr, uPtr; - register digitPtr vPtr; -#else - register precision u, v; -{ - register digitPtr wPtr, uPtr; -#endif - precision w; - register accumulator temp; -#ifndef ASM_16BIT - register digit noborrow; -#endif - register int i; - - (void) pparm(u); - (void) pparm(v); - if (u->sign != v->sign) { /* Are we actually adding? */ - w = pUndef; - v->sign = !v->sign; /* may generate -0 */ - pset(&w, padd(u, v)); - v->sign = !v->sign; - } else { - i = pcmp(u, v); - if (u->sign) i = -i; /* compare magnitudes only */ - - if (i < 0) { - w = u; u = v; v = w; /* make u the largest */ - } - - w = palloc(u->size); /* may produce much wasted storage */ - if (w == pUndef) return w; - - if (i < 0) w->sign = !u->sign; else w->sign = u->sign; - - uPtr = u->value; - wPtr = w->value; -#ifndef ASM_16BIT - vPtr = v->value; - noborrow = 1; - - HiDigit = v->value + v->size; /* digits in both args */ - do { - temp = (BASE-1) - *vPtr++; /* 0 <= temp < base */ - temp += *uPtr++; /* 0 <= temp < 2*base-1 */ - temp += noborrow; /* 0 <= temp < 2*base */ - noborrow = divBase(temp); /* 0 <= noborrow <= 1 */ - *wPtr++ = modBase(temp); - } while (vPtr < HiDigit); - - HiDigit = u->value + u->size; /* propagate borrow */ - while (uPtr < HiDigit) { - temp = (BASE-1) + *uPtr++; - temp += noborrow; /* 0 <= temp < 2 * base */ - noborrow = divBase(temp); /* 0 <= noborrow <= 1 */ - *wPtr++ = modBase(temp); - } /* noborrow = 1 */ -#else - i = v->size; - temp = u->size - i; - if (temp > 0) { - memcpy(wPtr + i, uPtr + i, temp * sizeof(digit)); - } - if (memsubw(wPtr, uPtr, v->value, i)) { /* trashes uPtr */ - memdecw(wPtr + i, temp); - } - wPtr += w->size; -#endif - do { /* normalize */ - if (*--wPtr != 0) break; - } while (wPtr > w->value); - w->size = (wPtr - w->value) + 1; - } - - pdestroy(u); - pdestroy(v); - return presult(w); -} diff --git a/src/benchmarks/cfrac/ptoa.c b/src/benchmarks/cfrac/ptoa.c deleted file mode 100644 index a928ea2..0000000 --- a/src/benchmarks/cfrac/ptoa.c +++ /dev/null @@ -1,71 +0,0 @@ -#include -#include "pdefs.h" -#include "pcvt.h" -#include "precision.h" - -/* - * Return the character string decimal value of a Precision - */ -#if (BASE > 10) -#define CONDIGIT(d) ((d) < 10 ? (d) + '0' : (d) + 'a'-10) -#else -#define CONDIGIT(d) ((d) + '0') -#endif - -char *ptoa(u) - precision u; -{ - register accumulator temp; - register char *dPtr; - char *d; - int i = 0; - unsigned int consize; - precision r, v, pbase; - register int j; - - (void) pparm(u); - r = pUndef; - v = pUndef; - pbase = pUndef; - - consize = (unsigned int) u->size; - if (consize > MAXINT / aDigits) { - consize = (consize / pDigits) * aDigits; - } else { - consize = (consize * aDigits) / pDigits; - } - - consize += aDigitLog + 2; /* leading 0's, sign, & '\0' */ - d = (char *) allocate((unsigned int) consize); - if (d == (char *) 0) return d; - - pset(&v, pabs(u)); - pset(&pbase, utop(aDigit)); - - dPtr = d + consize; - *--dPtr = '\0'; /* null terminate string */ - i = u->sign; /* save sign */ - do { - pdivmod(v, pbase, &v, &r); - temp = ptou(r); /* Assumes unsigned and accumulator same! */ - j = aDigitLog; - do { - *--dPtr = CONDIGIT(temp % aBase); /* remainder */ - temp = temp / aBase; - } while (--j > 0); - } while (pnez(v)); - - while (*dPtr == '0') dPtr++; /* toss leading zero's */ - if (*dPtr == '\0') --dPtr; /* but don't waste zero! */ - if (i) *--dPtr = '-'; - if (dPtr > d) { /* ASSUME copied from lower to higher! */ - (void) memcpy(d, dPtr, consize - (dPtr - d)); - } - - pdestroy(pbase); - pdestroy(v); - pdestroy(r); - - pdestroy(u); - return d; -} diff --git a/src/benchmarks/cfrac/ptob.c b/src/benchmarks/cfrac/ptob.c deleted file mode 100644 index d5b04c1..0000000 --- a/src/benchmarks/cfrac/ptob.c +++ /dev/null @@ -1,81 +0,0 @@ -#include "pdefs.h" -#include "precision.h" - -/* - * Convert a precision to a given base (the sign is ignored) - * - * Input: - * u - the number to convert - * dest - Where to put the ASCII representation radix - * WARNING! Not '\0' terminated, this is an exact image - * size - the number of digits of dest. - * (alphabet[0] padded on left) - * if size is too small, truncation occurs on left - * alphabet - A mapping from each radix digit to it's character digit - * (note: '\0' is perfectly OK as a digit) - * radix - The size of the alphabet, and the conversion radix - * 2 <= radix < 256. - * - * Returns: - * -1 if invalid radix - * 0 if successful - * >0 the number didn't fit - */ -int ptob(u, dest, size, alphabet, radix) - precision u; /* the number to convert */ - char *dest; /* where to place the converted ascii */ - unsigned int size; /* the size of the result in characters */ - char *alphabet; /* the character set forming the radix */ - register unsigned int radix; /* the size of the character set */ -{ - register accumulator temp; - register unsigned int i; - register char *chp; - unsigned int lgclump; - int res = 0; - - precision r = pUndef, v = pUndef, pbase = pUndef; - - if (radix > 256 || radix < 2) return -1; - if (size == 0) return 1; - - (void) pparm(u); - temp = radix; - i = 1; - while (temp * radix > temp) { - temp *= radix; - i++; - } - lgclump = i; - - pset(&v, pabs(u)); - pset(&pbase, utop(temp)); /* assumes accumulator and int are the same! */ - - chp = dest + size; - do { - pdivmod(v, pbase, &v, &r); - temp = ptou(r); /* assumes accumulator and int are the same! */ - i = lgclump; - do { - *--chp = alphabet[temp % radix]; /* remainder */ - temp = temp / radix; - if (chp == dest) goto bail; - } while (--i > 0); - } while pnez(v); - - if (chp > dest) do { - *--chp = *alphabet; - } while (chp > dest); - -bail: - if (pnez(v) || temp != 0) { /* check for overflow */ - res = 1; - } - - pdestroy(pbase); - pdestroy(v); - pdestroy(r); - - pdestroy(u); - return res; -} diff --git a/src/benchmarks/cfrac/ptou.c b/src/benchmarks/cfrac/ptou.c deleted file mode 100644 index b8ca07b..0000000 --- a/src/benchmarks/cfrac/ptou.c +++ /dev/null @@ -1,31 +0,0 @@ -#include "pdefs.h" -#include "pcvt.h" -#include "precision.h" - -/* - * Precision to unsigned - */ -unsigned int ptou(u) - precision u; -{ - register digitPtr uPtr; - register accumulator temp; - - (void) pparm(u); - if (u->sign) { - temp = (unsigned long) errorp(PDOMAIN, "ptou", "negative argument"); - } else { - uPtr = u->value + u->size; - temp = 0; - do { - if (temp > divBase(MAXUNSIGNED - *--uPtr)) { - temp = (unsigned long) errorp(POVERFLOW, "ptou", "overflow"); - break; - } - temp = mulBase(temp); - temp += *uPtr; - } while (uPtr > u->value); - } - pdestroy(u); - return (unsigned int) temp; -} diff --git a/src/benchmarks/cfrac/seive.h b/src/benchmarks/cfrac/seive.h deleted file mode 100644 index 2e1cb85..0000000 --- a/src/benchmarks/cfrac/seive.h +++ /dev/null @@ -1,3 +0,0 @@ -extern unsigned long seivesize; - -extern unsigned char seive[]; diff --git a/src/benchmarks/cfrac/utop.c b/src/benchmarks/cfrac/utop.c deleted file mode 100644 index 4d87c04..0000000 --- a/src/benchmarks/cfrac/utop.c +++ /dev/null @@ -1,25 +0,0 @@ -#include "pdefs.h" -#include "pcvt.h" -#include "precision.h" - -/* - * Unsigned to Precision - */ -precision utop(i) - register unsigned int i; -{ - register digitPtr uPtr; - register precision u = palloc(INTSIZE); - - if (u == pUndef) return pUndef; - - u->sign = false; - uPtr = u->value; - do { - *uPtr++ = modBase(i); - i = divBase(i); - } while (i != 0); - - u->size = (uPtr - u->value); - return presult(u); -} diff --git a/src/benchmarks/dj_trace.py b/src/benchmarks/dj_trace.py deleted file mode 100644 index 22398e6..0000000 --- a/src/benchmarks/dj_trace.py +++ /dev/null @@ -1,445 +0,0 @@ -# Copyright 2018-2019 Florian Fischer -# -# This file is part of allocbench. -# -# allocbench is free software: you can redistribute it and/or modify -# it under the terms of the GNU General Public License as published by -# the Free Software Foundation, either version 3 of the License, or -# (at your option) any later version. -# -# allocbench is distributed in the hope that it will be useful, -# but WITHOUT ANY WARRANTY; without even the implied warranty of -# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -# GNU General Public License for more details. -# -# You should have received a copy of the GNU General Public License -# along with allocbench. If not, see . -"""Benchmark definition using the traces collected by DJ Delorie""" - -import os -import subprocess -import sys -import re -from urllib.request import urlretrieve -import matplotlib.pyplot as plt -import numpy as np - -from src.artifact import ArchiveArtifact -from src.benchmark import Benchmark -from src.globalvars import summary_file_ext -import src.plots as abplt -from src.util import print_status - -COMMA_SEP_NUMBER_RE = "(?:\\d*(?:,\\d*)?)*" -RSS_RE = f"(?P{COMMA_SEP_NUMBER_RE})" -TIME_RE = f"(?P