Files
s390-tools/libpv/glib-helper.c
Steffen Eiden 386392690d libpv: New library for PV tools
libpv is a collection of definitions and functions related to
Protected Virtualization (PV).
The functions cover mainly encryption (e.g. AES-GCM)
and certificates (X509). There are also helping functions for glib2.

Most of the code is extracted+refactored from `genprotimg`, which
will use this library in future.

Requires openssl v1.1.1+, glib2.56+, and libcurl.

libpv is not designed or intended to be dynamically linked or used
outside of this project. Its purpose is to avoid code duplication
as PV tools do very similar things regarding cryptography.

Signed-off-by: Steffen Eiden <seiden@linux.ibm.com>
Acked-by: Marc Hartmayer <mhartmay@linux.ibm.com>
Signed-off-by: Jan Höppner <hoeppner@linux.ibm.com>
2022-06-20 13:14:05 +02:00

180 lines
3.8 KiB
C

/*
* Glib convenience functions
*
* Copyright IBM Corp. 2022
*
* s390-tools is free software; you can redistribute it and/or modify
* it under the terms of the MIT license. See LICENSE for details.
*/
/* Must be included before any other header */
#include "config.h"
#include <errno.h>
#include <openssl/crypto.h>
#include "libpv/glib-helper.h"
struct __data {
void *data;
size_t size;
GFreeFunc free_func;
};
static void __data_clear_and_free(void *p)
{
struct __data *ptr = p;
if (!ptr)
return;
if (ptr->data) {
OPENSSL_cleanse(ptr->data, ptr->size);
ptr->free_func(ptr->data);
}
g_free(ptr);
}
static GBytes *pv_sec_gbytes_new_take_func(void *data, size_t size, GFreeFunc free_func)
{
struct __data *tmp = g_new(struct __data, 1);
tmp->data = data;
tmp->size = size;
tmp->free_func = free_func;
return g_bytes_new_with_free_func(data, size, __data_clear_and_free, tmp);
}
GBytes *pv_sec_gbytes_new_take(void *data, size_t size)
{
return pv_sec_gbytes_new_take_func(data, size, g_free);
}
GBytes *pv_sec_gbytes_new(const void *data, size_t size)
{
g_autofree void *tmp_data = NULL;
g_return_val_if_fail(data || size != 0, NULL);
tmp_data = g_malloc(size);
memcpy(tmp_data, data, size);
return pv_sec_gbytes_new_take(g_steal_pointer(&tmp_data), size);
}
int pv_file_seek(FILE *file, long offset, int whence, GError **error)
{
int cached_errno;
int ret = fseek(file, offset, whence);
if (ret) {
cached_errno = errno;
g_set_error(error, PV_GLIB_HELPER_ERROR, PV_GLIB_HELPER_FILE_ERROR,
"Cannot seek: %s", g_strerror(cached_errno));
}
return ret;
}
size_t pv_file_write(FILE *file, const void *ptr, size_t size, GError **error)
{
int cached_errno;
size_t n = fwrite(ptr, 1, size, file);
if (n != size) {
cached_errno = errno;
g_set_error(error, PV_GLIB_HELPER_ERROR, PV_GLIB_HELPER_FILE_ERROR,
"Cannot write: %s", g_strerror(cached_errno));
}
return n;
}
long pv_file_close(FILE *file, GError **error)
{
int cached_errno;
int ret = fclose(file);
if (ret) {
cached_errno = errno;
g_set_error(error, PV_GLIB_HELPER_ERROR, PV_GLIB_HELPER_FILE_ERROR,
"Cannot close: %s", g_strerror(cached_errno));
}
return ret;
}
void pv_auto_close_file(FILE *file)
{
if (!file)
return;
(void)pv_file_close(file, NULL);
}
long pv_file_tell(FILE *file, GError **error)
{
int cached_errno;
long n = ftell(file);
if (n < 0) {
cached_errno = errno;
g_set_error(error, PV_GLIB_HELPER_ERROR, PV_GLIB_HELPER_FILE_ERROR,
"Cannot tell: %s", g_strerror(cached_errno));
}
return n;
}
FILE *pv_file_open(const char *filename, const char *mode, GError **error)
{
FILE *file = fopen(filename, mode);
int cached_errno;
if (!file) {
cached_errno = errno;
g_set_error(error, PV_GLIB_HELPER_ERROR, PV_GLIB_HELPER_FILE_ERROR,
"Cannot open '%s'. %s", filename, g_strerror(cached_errno));
return NULL;
}
return file;
}
GBytes *pv_file_get_content_as_g_bytes(const char *filename, GError **error)
{
g_autofree char *data = NULL;
size_t data_size;
if (!g_file_get_contents(filename, &data, &data_size, error))
return NULL;
return g_bytes_new_take(g_steal_pointer(&data), data_size);
}
GBytes *pv_file_get_content_as_secure_bytes(const char *filename)
{
g_autoptr(FILE) f = fopen(filename, "rb");
g_autofree char *data = NULL;
ssize_t file_size;
size_t data_size;
if (!f)
return NULL;
fseek(f, 0, SEEK_END);
file_size = ftell(f);
if (file_size < 0)
return NULL;
data_size = (size_t)file_size;
fseek(f, 0, SEEK_SET);
data = g_malloc0(data_size);
if (data_size != fread(data, 1, data_size, f))
return NULL;
return pv_sec_gbytes_new_take(g_steal_pointer(&data), data_size);
}
void *pv_gbytes_memcpy(void *dst, size_t dst_size, GBytes *src)
{
size_t src_size;
const void *src_data = g_bytes_get_data(src, &src_size);
if (dst_size < src_size)
return NULL;
return memcpy(dst, src_data, src_size);
}