librazor/util.c
author J. Ali Harlow <ali@juiblex.co.uk>
Tue Sep 09 15:04:24 2014 +0100 (2014-09-09)
changeset 446 4277359896dc
parent 441 cf499fd51df7
child 447 0a5e583393e1
permissions -rw-r--r--
Add razor_transaction_unsatisfied()
     1 /*
     2  * Copyright (C) 2008  Kristian Høgsberg <krh@redhat.com>
     3  * Copyright (C) 2008  Red Hat, Inc
     4  * Copyright (C) 2009, 2011, 2012, 2014  J. Ali Harlow <ali@juiblex.co.uk>
     5  *
     6  * This program is free software; you can redistribute it and/or modify
     7  * it under the terms of the GNU General Public License as published by
     8  * the Free Software Foundation; either version 2 of the License, or
     9  * (at your option) any later version.
    10  *
    11  * This program is distributed in the hope that it will be useful,
    12  * but WITHOUT ANY WARRANTY; without even the implied warranty of
    13  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
    14  * GNU General Public License for more details.
    15  *
    16  * You should have received a copy of the GNU General Public License along
    17  * with this program; if not, write to the Free Software Foundation, Inc.,
    18  * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
    19  */
    20 
    21 #include "config.h"
    22 
    23 #include <limits.h>
    24 #include <string.h>
    25 #include <sys/types.h>
    26 #include <sys/stat.h>
    27 #include <stdlib.h>
    28 #include <stdio.h>
    29 #include <stdint.h>
    30 #include <errno.h>
    31 #include <unistd.h>
    32 #include <fcntl.h>
    33 #ifdef MSWIN_API
    34 #include <windows.h>
    35 #include <direct.h>
    36 #else
    37 #include <sys/utsname.h>
    38 #endif
    39 #if HAVE_SYS_MMAN_H
    40 #include <sys/mman.h>
    41 #endif
    42 #include <assert.h>
    43 
    44 #include "razor.h"
    45 #include "razor-internal.h"
    46 
    47 #ifndef O_BINARY
    48 #define O_BINARY	0
    49 #endif
    50 
    51 /* Required by gnulib on non-libc platforms */
    52 char *program_name = "librazor";
    53 
    54 void *
    55 zalloc(size_t size)
    56 {
    57 	void *p;
    58 
    59 	p = malloc(size);
    60 	memset(p, 0, size);
    61 
    62 	return p;
    63 }
    64 
    65 void *
    66 razor_file_get_contents(const char *filename, size_t *length, int private,
    67 			struct razor_error **error)
    68 {
    69 	int fd;
    70 	struct stat st;
    71 	void *addr = NULL;
    72 	size_t nb;
    73 	ssize_t res;
    74 
    75 	fd = open(filename, O_RDONLY | O_BINARY);
    76 	if (fd < 0) {
    77 		razor_set_error(error, filename, strerror(errno));
    78 		return NULL;
    79 	}
    80 
    81 	if (fstat(fd, &st) < 0) {
    82 		razor_set_error(error, filename, strerror(errno));
    83 		close(fd);
    84 		return NULL;
    85 	}
    86 
    87 	*length = st.st_size;
    88 #if HAVE_SYS_MMAN_H
    89 	if (!private) {
    90 		addr = mmap(NULL, st.st_size, PROT_READ, MAP_PRIVATE, fd, 0);
    91 		if (addr == MAP_FAILED)
    92 			addr = NULL;
    93 	}
    94 #endif
    95 	if (!addr) {
    96 		addr = malloc(st.st_size);
    97 		if (addr) {
    98 			nb = 0;
    99 			while(nb < st.st_size) {
   100 				res = read(fd, addr + nb, st.st_size - nb);
   101 				if (res <= 0) {
   102 					razor_set_error(error, filename,
   103 							strerror(errno));
   104 					free(addr);
   105 					addr = NULL;
   106 					break;
   107 				}
   108 				nb += res;
   109 			}
   110 		} else
   111 			razor_set_error(error, NULL, "Not enough memory");
   112 	}
   113 	close(fd);
   114 
   115 	return addr;
   116 }
   117 
   118 int razor_file_free_contents(void *addr, size_t length)
   119 {
   120 #if HAVE_SYS_MMAN_H
   121 	return munmap(addr, length);
   122 #else
   123 	free(addr);
   124 	return 0;
   125 #endif
   126 }
   127 
   128 struct qsort_context {
   129 	size_t size;
   130 	razor_compare_with_data_func_t compare;
   131 	void *data;
   132 };
   133 
   134 static void
   135 qsort_swap(void *p1, void *p2, size_t size)
   136 {
   137 	char buffer[size];
   138 
   139 	if (p1 != p2) {
   140 		memcpy(buffer, p1, size);
   141 		memcpy(p1, p2, size);
   142 		memcpy(p2, buffer, size);
   143 	}
   144 }
   145 
   146 static void
   147 __qsort_with_data(void *base, size_t nelem, uint32_t *map,
   148 		  struct qsort_context *ctx)
   149 {
   150 	void *p, *start, *end, *pivot;
   151 	uint32_t *mp, *mstart, *mend, tmp;
   152 	int left, right, result;
   153 	size_t size = ctx->size;
   154 
   155 	p = base;
   156 	start = base;
   157 	end = base + nelem * size;
   158 	mp = map;
   159 	mstart = map;
   160 	mend = map + nelem;
   161 	pivot = base + (rand() % nelem) * size;
   162 
   163 	while (p < end) {
   164 		result = ctx->compare(p, pivot, ctx->data);
   165 		if (result < 0) {
   166 			qsort_swap(p, start, size);
   167 			tmp = *mp;
   168 			*mp = *mstart;
   169 			*mstart = tmp;
   170 			if (start == pivot)
   171 				pivot = p;
   172 			start += size;
   173 			mstart++;
   174 			p += size;
   175 			mp++;
   176 		} else if (result == 0) {
   177 			p += size;
   178 			mp++;
   179 		} else {
   180  			end -= size;
   181 			mend--;
   182 			qsort_swap(p, end, size);
   183 			tmp = *mp;
   184 			*mp = *mend;
   185 			*mend = tmp;
   186 			if (end == pivot)
   187 				pivot = p;
   188 		}
   189 	}
   190 
   191 	left = (start - base) / size;
   192 	right = (base + nelem * size - end) / size;
   193 	if (left > 1)
   194 		__qsort_with_data(base, left, map, ctx);
   195 	if (right > 1)
   196 		__qsort_with_data(end, right, mend, ctx);
   197 }
   198 
   199 uint32_t *
   200 razor_qsort_with_data(void *base, size_t nelem, size_t size,
   201 		      razor_compare_with_data_func_t compare, void *data)
   202 {
   203 	struct qsort_context ctx;
   204 	uint32_t *map;
   205 	int i;
   206 
   207 	if (nelem == 0)
   208 		return NULL;
   209 
   210 	ctx.size = size;
   211 	ctx.compare = compare;
   212 	ctx.data = data;
   213 
   214 	map = malloc(nelem * sizeof (uint32_t));
   215 	for (i = 0; i < nelem; i++)
   216 		map[i] = i;
   217 
   218 	__qsort_with_data(base, nelem, map, &ctx);
   219 
   220 	return map;
   221 }
   222 
   223 void environment_init(struct environment *env)
   224 {
   225 	env->is_set = 0;
   226 	array_init(&env->string_pool);
   227 	array_init(&env->vars);
   228 }
   229 
   230 void environment_add_variable(struct environment *env,
   231 			      const char *variable, const char *value)
   232 {
   233 	char *s;
   234 	uint32_t *r;
   235 	assert(!env->is_set);
   236 
   237 	s = array_add(&env->string_pool,
   238 		      strlen(variable) + strlen(value) + 2);
   239 	sprintf(s, "%s=%s", variable, value);
   240 	r = array_add(&env->vars, sizeof *r);
   241 	*r = s - (char *)env->string_pool.data;
   242 }
   243 
   244 void environment_set(struct environment *env)
   245 {
   246 	int i, count;
   247 	char *s;
   248 #ifndef WIN32
   249 	char *t;
   250 #endif
   251         uint32_t *r;
   252 
   253 	if (!env->is_set) {
   254 		count = env->vars.size / sizeof(uint32_t);
   255 		r = (uint32_t *)env->vars.data;
   256 		for (i = 0; i < count; i++) {
   257 			s = env->string_pool.data + *r++;
   258 #ifdef WIN32
   259 			putenv(s);
   260 #else
   261 			t = strchr(s, '=');
   262 			*t = '\0';
   263 			setenv(s, t + 1, 1);
   264 			*t = '=';
   265 #endif
   266 		}
   267 
   268 		env->is_set = 1;
   269 	}
   270 }
   271 
   272 void environment_unset(struct environment *env)
   273 {
   274 	int i, count;
   275 	char c, *s, *t;
   276         uint32_t *r;
   277 
   278 	if (env->is_set) {
   279 		count = env->vars.size / sizeof(uint32_t);
   280 		r = (uint32_t *)env->vars.data;
   281 		for (i = 0; i < count; i++) {
   282 			s = env->string_pool.data + *r++;
   283 			t = strchr(s, '=');
   284 #ifdef WIN32
   285 			t++;
   286 			c = *t;
   287 			*t = '\0';
   288 			putenv(s);
   289 			*t = c;
   290 #else
   291 			c = *t;
   292 			*t = '\0';
   293 			unsetenv(s);
   294 			*t = c;
   295 #endif
   296 		}
   297 
   298 		env->is_set = 0;
   299 	}
   300 }
   301 
   302 void environment_release(struct environment *env)
   303 {
   304 	environment_unset(env);
   305 	array_release(&env->string_pool);
   306 	array_release(&env->vars);
   307 }
   308 
   309 RAZOR_EXPORT char *razor_concat(const char *s, ...)
   310 {
   311 	va_list args;
   312 	const char *string;
   313 	char *concat;
   314 	size_t n, len;
   315 
   316 	va_start(args, s);
   317 
   318 	len = strlen(s);
   319 	while((string = va_arg(args, const char *)))
   320 		len += strlen(string);
   321 
   322 	va_end(args);
   323 
   324 	concat = malloc(len + 1);
   325 
   326 	if (!concat)
   327 		return NULL;
   328 
   329 	va_start(args, s);
   330 
   331 	len = strlen(s);
   332 	memcpy(concat, s, len);
   333 	n = len;
   334 	while((string = va_arg(args, const char *))) {
   335 		len = strlen(string);
   336 		memcpy(concat + n, string, len);
   337 		n += len;
   338 	}
   339 
   340 	va_end(args);
   341 
   342 	concat[n] = '\0';
   343 
   344 	return concat;
   345 }
   346 
   347 /**
   348  * razor_path_add_root:
   349  *
   350  * Adds a root to a path. path must be an absolute pathname. In POSIX
   351  * environments this is equivalent to the concationation of root and path.
   352  * In Microsoft Windows an adjustment may need to be made for a drive letter
   353  * in path (which will be dropped).
   354  *
   355  * Returns: The new pathname.
   356  **/
   357 RAZOR_EXPORT char *razor_path_add_root(const char *path, const char *root)
   358 {
   359 	if (root && *root)
   360 		return razor_concat(root, SKIP_DRIVE_LETTER(path), NULL);
   361 	else
   362 		return strdup(path);
   363 }
   364 
   365 RAZOR_EXPORT const char *razor_system_arch(void)
   366 {
   367 #ifdef MSWIN_API
   368 	SYSTEM_INFO si;
   369 
   370 	GetNativeSystemInfo(&si);
   371 	switch(si.wProcessorArchitecture)
   372 	{
   373 		case PROCESSOR_ARCHITECTURE_INTEL:
   374 			return "i686";
   375 		case PROCESSOR_ARCHITECTURE_AMD64:
   376 			return "x86_64";
   377 		default:
   378 			return NULL;
   379 	}
   380 #else
   381 	static struct utsname un;
   382 
   383 	if (uname(&un))
   384 		return NULL;
   385 	else
   386 		return un.machine;
   387 #endif
   388 }
   389 
   390 #ifdef MSWIN_API
   391 
   392 char *razor_utf16_to_utf8(const wchar_t *utf16, int len)
   393 {
   394 	int n;
   395 	char *utf8;
   396 
   397 	n = WideCharToMultiByte(CP_UTF8, 0, utf16, len, NULL, 0, NULL, NULL);
   398 	if (len >= 0 && utf16[len])
   399 		n++;
   400 	utf8 = malloc(n);
   401 	(void)WideCharToMultiByte(CP_UTF8, 0, utf16, len, utf8, n, NULL, NULL);
   402 	if (len >= 0 && utf16[len])
   403 		utf8[n - 1] = 0;
   404 
   405 	return utf8;
   406 }
   407 
   408 wchar_t *razor_utf8_to_utf16(const char *utf8, int len)
   409 {
   410 	int n;
   411 	wchar_t *utf16;
   412 
   413 	n = MultiByteToWideChar(CP_UTF8, 0, utf8, len, NULL, 0);
   414 	if (len >= 0 && utf8[len])
   415 		n++;
   416 	utf16 = malloc(n * sizeof(wchar_t));
   417 	(void)MultiByteToWideChar(CP_UTF8, 0, utf8, len, utf16, n);
   418 	if (len >= 0 && utf8[len])
   419 		utf16[n - 1] = 0;
   420 
   421 	return utf16;
   422 }
   423 
   424 #endif	/* MSWIN_API */