hv_kvp_daemon.c 36.5 KB
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/*
 * An implementation of key value pair (KVP) functionality for Linux.
 *
 *
 * Copyright (C) 2010, Novell, Inc.
 * Author : K. Y. Srinivasan <ksrinivasan@novell.com>
 *
 * This program is free software; you can redistribute it and/or modify it
 * under the terms of the GNU General Public License version 2 as published
 * by the Free Software Foundation.
 *
 * 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, GOOD TITLE or
 * NON INFRINGEMENT.  See the GNU General Public License for more
 * details.
 *
 * You should have received a copy of the GNU General Public License
 * along with this program; if not, write to the Free Software
 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
 *
 */


#include <sys/types.h>
#include <sys/socket.h>
#include <sys/poll.h>
#include <sys/utsname.h>
#include <linux/types.h>
#include <stdio.h>
#include <stdlib.h>
#include <unistd.h>
#include <string.h>
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#include <ctype.h>
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#include <errno.h>
#include <arpa/inet.h>
#include <linux/connector.h>
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#include <linux/hyperv.h>
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#include <linux/netlink.h>
#include <ifaddrs.h>
#include <netdb.h>
#include <syslog.h>
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#include <sys/stat.h>
#include <fcntl.h>
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#include <dirent.h>
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#include <net/if.h>
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/*
 * KVP protocol: The user mode component first registers with the
 * the kernel component. Subsequently, the kernel component requests, data
 * for the specified keys. In response to this message the user mode component
 * fills in the value corresponding to the specified key. We overload the
 * sequence field in the cn_msg header to define our KVP message types.
 *
 * We use this infrastructure for also supporting queries from user mode
 * application for state that may be maintained in the KVP kernel component.
 *
 */


enum key_index {
	FullyQualifiedDomainName = 0,
	IntegrationServicesVersion, /*This key is serviced in the kernel*/
	NetworkAddressIPv4,
	NetworkAddressIPv6,
	OSBuildNumber,
	OSName,
	OSMajorVersion,
	OSMinorVersion,
	OSVersion,
	ProcessorArchitecture
};

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enum {
	IPADDR = 0,
	NETMASK,
	GATEWAY,
	DNS
};

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static char kvp_send_buffer[4096];
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static char kvp_recv_buffer[4096 * 2];
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static struct sockaddr_nl addr;
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static int in_hand_shake = 1;
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static char *os_name = "";
static char *os_major = "";
static char *os_minor = "";
static char *processor_arch;
static char *os_build;
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static char *os_version;
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static char *lic_version = "Unknown version";
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static struct utsname uts_buf;
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/*
 * The location of the interface configuration file.
 */

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#define KVP_CONFIG_LOC	"/var/lib/hyperv"
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#define MAX_FILE_NAME 100
#define ENTRIES_PER_BLOCK 50

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#ifndef SOL_NETLINK
#define SOL_NETLINK 270
#endif

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struct kvp_record {
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	char key[HV_KVP_EXCHANGE_MAX_KEY_SIZE];
	char value[HV_KVP_EXCHANGE_MAX_VALUE_SIZE];
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};

struct kvp_file_state {
	int fd;
	int num_blocks;
	struct kvp_record *records;
	int num_records;
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	char fname[MAX_FILE_NAME];
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};

static struct kvp_file_state kvp_file_info[KVP_POOL_COUNT];

static void kvp_acquire_lock(int pool)
{
	struct flock fl = {F_WRLCK, SEEK_SET, 0, 0, 0};
	fl.l_pid = getpid();

	if (fcntl(kvp_file_info[pool].fd, F_SETLKW, &fl) == -1) {
		syslog(LOG_ERR, "Failed to acquire the lock pool: %d", pool);
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		exit(EXIT_FAILURE);
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	}
}

static void kvp_release_lock(int pool)
{
	struct flock fl = {F_UNLCK, SEEK_SET, 0, 0, 0};
	fl.l_pid = getpid();

	if (fcntl(kvp_file_info[pool].fd, F_SETLK, &fl) == -1) {
		perror("fcntl");
		syslog(LOG_ERR, "Failed to release the lock pool: %d", pool);
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		exit(EXIT_FAILURE);
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	}
}

static void kvp_update_file(int pool)
{
	FILE *filep;
	size_t bytes_written;

	/*
	 * We are going to write our in-memory registry out to
	 * disk; acquire the lock first.
	 */
	kvp_acquire_lock(pool);

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	filep = fopen(kvp_file_info[pool].fname, "we");
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	if (!filep) {
		kvp_release_lock(pool);
		syslog(LOG_ERR, "Failed to open file, pool: %d", pool);
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		exit(EXIT_FAILURE);
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	}

	bytes_written = fwrite(kvp_file_info[pool].records,
				sizeof(struct kvp_record),
				kvp_file_info[pool].num_records, filep);

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	if (ferror(filep) || fclose(filep)) {
		kvp_release_lock(pool);
		syslog(LOG_ERR, "Failed to write file, pool: %d", pool);
		exit(EXIT_FAILURE);
	}

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	kvp_release_lock(pool);
}

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static void kvp_update_mem_state(int pool)
{
	FILE *filep;
	size_t records_read = 0;
	struct kvp_record *record = kvp_file_info[pool].records;
	struct kvp_record *readp;
	int num_blocks = kvp_file_info[pool].num_blocks;
	int alloc_unit = sizeof(struct kvp_record) * ENTRIES_PER_BLOCK;

	kvp_acquire_lock(pool);

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	filep = fopen(kvp_file_info[pool].fname, "re");
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	if (!filep) {
		kvp_release_lock(pool);
		syslog(LOG_ERR, "Failed to open file, pool: %d", pool);
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		exit(EXIT_FAILURE);
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	}
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	for (;;) {
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		readp = &record[records_read];
		records_read += fread(readp, sizeof(struct kvp_record),
					ENTRIES_PER_BLOCK * num_blocks,
					filep);

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		if (ferror(filep)) {
			syslog(LOG_ERR, "Failed to read file, pool: %d", pool);
			exit(EXIT_FAILURE);
		}

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		if (!feof(filep)) {
			/*
			 * We have more data to read.
			 */
			num_blocks++;
			record = realloc(record, alloc_unit * num_blocks);

			if (record == NULL) {
				syslog(LOG_ERR, "malloc failed");
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				exit(EXIT_FAILURE);
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			}
			continue;
		}
		break;
	}

	kvp_file_info[pool].num_blocks = num_blocks;
	kvp_file_info[pool].records = record;
	kvp_file_info[pool].num_records = records_read;

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	fclose(filep);
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	kvp_release_lock(pool);
}
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static int kvp_file_init(void)
{
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	int  fd;
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	FILE *filep;
	size_t records_read;
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	char *fname;
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	struct kvp_record *record;
	struct kvp_record *readp;
	int num_blocks;
	int i;
	int alloc_unit = sizeof(struct kvp_record) * ENTRIES_PER_BLOCK;

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	if (access(KVP_CONFIG_LOC, F_OK)) {
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		if (mkdir(KVP_CONFIG_LOC, 0755 /* rwxr-xr-x */)) {
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			syslog(LOG_ERR, " Failed to create %s", KVP_CONFIG_LOC);
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			exit(EXIT_FAILURE);
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		}
	}

	for (i = 0; i < KVP_POOL_COUNT; i++) {
		fname = kvp_file_info[i].fname;
		records_read = 0;
		num_blocks = 1;
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		sprintf(fname, "%s/.kvp_pool_%d", KVP_CONFIG_LOC, i);
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		fd = open(fname, O_RDWR | O_CREAT | O_CLOEXEC, 0644 /* rw-r--r-- */);
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		if (fd == -1)
			return 1;


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		filep = fopen(fname, "re");
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		if (!filep)
			return 1;

		record = malloc(alloc_unit * num_blocks);
		if (record == NULL) {
			fclose(filep);
			return 1;
		}
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		for (;;) {
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			readp = &record[records_read];
			records_read += fread(readp, sizeof(struct kvp_record),
					ENTRIES_PER_BLOCK,
					filep);

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			if (ferror(filep)) {
				syslog(LOG_ERR, "Failed to read file, pool: %d",
				       i);
				exit(EXIT_FAILURE);
			}

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			if (!feof(filep)) {
				/*
				 * We have more data to read.
				 */
				num_blocks++;
				record = realloc(record, alloc_unit *
						num_blocks);
				if (record == NULL) {
					fclose(filep);
					return 1;
				}
				continue;
			}
			break;
		}
		kvp_file_info[i].fd = fd;
		kvp_file_info[i].num_blocks = num_blocks;
		kvp_file_info[i].records = record;
		kvp_file_info[i].num_records = records_read;
		fclose(filep);

	}

	return 0;
}

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static int kvp_key_delete(int pool, const char *key, int key_size)
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{
	int i;
	int j, k;
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	int num_records;
	struct kvp_record *record;

	/*
	 * First update the in-memory state.
	 */
	kvp_update_mem_state(pool);

	num_records = kvp_file_info[pool].num_records;
	record = kvp_file_info[pool].records;
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	for (i = 0; i < num_records; i++) {
		if (memcmp(key, record[i].key, key_size))
			continue;
		/*
		 * Found a match; just move the remaining
		 * entries up.
		 */
		if (i == num_records) {
			kvp_file_info[pool].num_records--;
			kvp_update_file(pool);
			return 0;
		}

		j = i;
		k = j + 1;
		for (; k < num_records; k++) {
			strcpy(record[j].key, record[k].key);
			strcpy(record[j].value, record[k].value);
			j++;
		}

		kvp_file_info[pool].num_records--;
		kvp_update_file(pool);
		return 0;
	}
	return 1;
}

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static int kvp_key_add_or_modify(int pool, const char *key, int key_size, const char *value,
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			int value_size)
{
	int i;
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	int num_records;
	struct kvp_record *record;
	int num_blocks;
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	if ((key_size > HV_KVP_EXCHANGE_MAX_KEY_SIZE) ||
		(value_size > HV_KVP_EXCHANGE_MAX_VALUE_SIZE))
		return 1;

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	/*
	 * First update the in-memory state.
	 */
	kvp_update_mem_state(pool);

	num_records = kvp_file_info[pool].num_records;
	record = kvp_file_info[pool].records;
	num_blocks = kvp_file_info[pool].num_blocks;

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	for (i = 0; i < num_records; i++) {
		if (memcmp(key, record[i].key, key_size))
			continue;
		/*
		 * Found a match; just update the value -
		 * this is the modify case.
		 */
		memcpy(record[i].value, value, value_size);
		kvp_update_file(pool);
		return 0;
	}

	/*
	 * Need to add a new entry;
	 */
	if (num_records == (ENTRIES_PER_BLOCK * num_blocks)) {
		/* Need to allocate a larger array for reg entries. */
		record = realloc(record, sizeof(struct kvp_record) *
			 ENTRIES_PER_BLOCK * (num_blocks + 1));

		if (record == NULL)
			return 1;
		kvp_file_info[pool].num_blocks++;

	}
	memcpy(record[i].value, value, value_size);
	memcpy(record[i].key, key, key_size);
	kvp_file_info[pool].records = record;
	kvp_file_info[pool].num_records++;
	kvp_update_file(pool);
	return 0;
}

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static int kvp_get_value(int pool, const char *key, int key_size, char *value,
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			int value_size)
{
	int i;
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	int num_records;
	struct kvp_record *record;
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	if ((key_size > HV_KVP_EXCHANGE_MAX_KEY_SIZE) ||
		(value_size > HV_KVP_EXCHANGE_MAX_VALUE_SIZE))
		return 1;

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	/*
	 * First update the in-memory state.
	 */
	kvp_update_mem_state(pool);

	num_records = kvp_file_info[pool].num_records;
	record = kvp_file_info[pool].records;

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	for (i = 0; i < num_records; i++) {
		if (memcmp(key, record[i].key, key_size))
			continue;
		/*
		 * Found a match; just copy the value out.
		 */
		memcpy(value, record[i].value, value_size);
		return 0;
	}

	return 1;
}

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static int kvp_pool_enumerate(int pool, int index, char *key, int key_size,
				char *value, int value_size)
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{
	struct kvp_record *record;

	/*
	 * First update our in-memory database.
	 */
	kvp_update_mem_state(pool);
	record = kvp_file_info[pool].records;

	if (index >= kvp_file_info[pool].num_records) {
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		return 1;
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	}

	memcpy(key, record[index].key, key_size);
	memcpy(value, record[index].value, value_size);
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	return 0;
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}


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void kvp_get_os_info(void)
{
	FILE	*file;
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	char	*p, buf[512];
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	uname(&uts_buf);
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	os_version = uts_buf.release;
	os_build = strdup(uts_buf.release);

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	os_name = uts_buf.sysname;
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	processor_arch = uts_buf.machine;
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	/*
	 * The current windows host (win7) expects the build
	 * string to be of the form: x.y.z
	 * Strip additional information we may have.
	 */
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	p = strchr(os_version, '-');
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	if (p)
		*p = '\0';

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	/*
	 * Parse the /etc/os-release file if present:
	 * http://www.freedesktop.org/software/systemd/man/os-release.html
	 */
	file = fopen("/etc/os-release", "r");
	if (file != NULL) {
		while (fgets(buf, sizeof(buf), file)) {
			char *value, *q;

			/* Ignore comments */
			if (buf[0] == '#')
				continue;

			/* Split into name=value */
			p = strchr(buf, '=');
			if (!p)
				continue;
			*p++ = 0;

			/* Remove quotes and newline; un-escape */
			value = p;
			q = p;
			while (*p) {
				if (*p == '\\') {
					++p;
					if (!*p)
						break;
					*q++ = *p++;
				} else if (*p == '\'' || *p == '"' ||
					   *p == '\n') {
					++p;
				} else {
					*q++ = *p++;
				}
			}
			*q = 0;

			if (!strcmp(buf, "NAME")) {
				p = strdup(value);
				if (!p)
					break;
				os_name = p;
			} else if (!strcmp(buf, "VERSION_ID")) {
				p = strdup(value);
				if (!p)
					break;
				os_major = p;
			}
		}
		fclose(file);
		return;
	}

	/* Fallback for older RH/SUSE releases */
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	file = fopen("/etc/SuSE-release", "r");
	if (file != NULL)
		goto kvp_osinfo_found;
	file  = fopen("/etc/redhat-release", "r");
	if (file != NULL)
		goto kvp_osinfo_found;

	/*
	 * We don't have information about the os.
	 */
	return;

kvp_osinfo_found:
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	/* up to three lines */
	p = fgets(buf, sizeof(buf), file);
	if (p) {
		p = strchr(buf, '\n');
		if (p)
			*p = '\0';
		p = strdup(buf);
		if (!p)
			goto done;
		os_name = p;

		/* second line */
		p = fgets(buf, sizeof(buf), file);
		if (p) {
			p = strchr(buf, '\n');
			if (p)
				*p = '\0';
			p = strdup(buf);
			if (!p)
				goto done;
			os_major = p;

			/* third line */
			p = fgets(buf, sizeof(buf), file);
			if (p)  {
				p = strchr(buf, '\n');
				if (p)
					*p = '\0';
				p = strdup(buf);
				if (p)
					os_minor = p;
			}
		}
	}

done:
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	fclose(file);
	return;
}

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/*
 * Retrieve an interface name corresponding to the specified guid.
 * If there is a match, the function returns a pointer
 * to the interface name and if not, a NULL is returned.
 * If a match is found, the caller is responsible for
 * freeing the memory.
 */

static char *kvp_get_if_name(char *guid)
{
	DIR *dir;
	struct dirent *entry;
	FILE    *file;
	char    *p, *q, *x;
	char    *if_name = NULL;
	char    buf[256];
	char *kvp_net_dir = "/sys/class/net/";
	char dev_id[256];

	dir = opendir(kvp_net_dir);
	if (dir == NULL)
		return NULL;

	snprintf(dev_id, sizeof(dev_id), "%s", kvp_net_dir);
	q = dev_id + strlen(kvp_net_dir);

	while ((entry = readdir(dir)) != NULL) {
		/*
		 * Set the state for the next pass.
		 */
		*q = '\0';
		strcat(dev_id, entry->d_name);
		strcat(dev_id, "/device/device_id");

		file = fopen(dev_id, "r");
		if (file == NULL)
			continue;

		p = fgets(buf, sizeof(buf), file);
		if (p) {
			x = strchr(p, '\n');
			if (x)
				*x = '\0';

			if (!strcmp(p, guid)) {
				/*
				 * Found the guid match; return the interface
				 * name. The caller will free the memory.
				 */
				if_name = strdup(entry->d_name);
				fclose(file);
				break;
			}
		}
		fclose(file);
	}

	closedir(dir);
	return if_name;
}

/*
 * Retrieve the MAC address given the interface name.
 */

static char *kvp_if_name_to_mac(char *if_name)
{
	FILE    *file;
	char    *p, *x;
	char    buf[256];
	char addr_file[256];
	int i;
	char *mac_addr = NULL;

	snprintf(addr_file, sizeof(addr_file), "%s%s%s", "/sys/class/net/",
		if_name, "/address");

	file = fopen(addr_file, "r");
	if (file == NULL)
		return NULL;

	p = fgets(buf, sizeof(buf), file);
	if (p) {
		x = strchr(p, '\n');
		if (x)
			*x = '\0';
		for (i = 0; i < strlen(p); i++)
			p[i] = toupper(p[i]);
		mac_addr = strdup(p);
	}

	fclose(file);
	return mac_addr;
}


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/*
 * Retrieve the interface name given tha MAC address.
 */

static char *kvp_mac_to_if_name(char *mac)
{
	DIR *dir;
	struct dirent *entry;
	FILE    *file;
	char    *p, *q, *x;
	char    *if_name = NULL;
	char    buf[256];
	char *kvp_net_dir = "/sys/class/net/";
	char dev_id[256];
	int i;

	dir = opendir(kvp_net_dir);
	if (dir == NULL)
		return NULL;

	snprintf(dev_id, sizeof(dev_id), kvp_net_dir);
	q = dev_id + strlen(kvp_net_dir);

	while ((entry = readdir(dir)) != NULL) {
		/*
		 * Set the state for the next pass.
		 */
		*q = '\0';

		strcat(dev_id, entry->d_name);
		strcat(dev_id, "/address");

		file = fopen(dev_id, "r");
		if (file == NULL)
			continue;

		p = fgets(buf, sizeof(buf), file);
		if (p) {
			x = strchr(p, '\n');
			if (x)
				*x = '\0';

			for (i = 0; i < strlen(p); i++)
				p[i] = toupper(p[i]);

			if (!strcmp(p, mac)) {
				/*
				 * Found the MAC match; return the interface
				 * name. The caller will free the memory.
				 */
				if_name = strdup(entry->d_name);
				fclose(file);
				break;
			}
		}
		fclose(file);
	}

	closedir(dir);
	return if_name;
}


745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778
static void kvp_process_ipconfig_file(char *cmd,
					char *config_buf, int len,
					int element_size, int offset)
{
	char buf[256];
	char *p;
	char *x;
	FILE *file;

	/*
	 * First execute the command.
	 */
	file = popen(cmd, "r");
	if (file == NULL)
		return;

	if (offset == 0)
		memset(config_buf, 0, len);
	while ((p = fgets(buf, sizeof(buf), file)) != NULL) {
		if ((len - strlen(config_buf)) < (element_size + 1))
			break;

		x = strchr(p, '\n');
		*x = '\0';
		strcat(config_buf, p);
		strcat(config_buf, ";");
	}
	pclose(file);
}

static void kvp_get_ipconfig_info(char *if_name,
				 struct hv_kvp_ipaddr_value *buffer)
{
	char cmd[512];
779 780 781
	char dhcp_info[128];
	char *p;
	FILE *file;
782 783 784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799 800 801 802 803 804 805 806

	/*
	 * Get the address of default gateway (ipv4).
	 */
	sprintf(cmd, "%s %s", "ip route show dev", if_name);
	strcat(cmd, " | awk '/default/ {print $3 }'");

	/*
	 * Execute the command to gather gateway info.
	 */
	kvp_process_ipconfig_file(cmd, (char *)buffer->gate_way,
				(MAX_GATEWAY_SIZE * 2), INET_ADDRSTRLEN, 0);

	/*
	 * Get the address of default gateway (ipv6).
	 */
	sprintf(cmd, "%s %s", "ip -f inet6  route show dev", if_name);
	strcat(cmd, " | awk '/default/ {print $3 }'");

	/*
	 * Execute the command to gather gateway info (ipv6).
	 */
	kvp_process_ipconfig_file(cmd, (char *)buffer->gate_way,
				(MAX_GATEWAY_SIZE * 2), INET6_ADDRSTRLEN, 1);

807 808 809 810 811 812 813 814 815 816 817 818 819 820 821 822 823 824 825 826 827 828 829

	/*
	 * Gather the DNS  state.
	 * Since there is no standard way to get this information
	 * across various distributions of interest; we just invoke
	 * an external script that needs to be ported across distros
	 * of interest.
	 *
	 * Following is the expected format of the information from the script:
	 *
	 * ipaddr1 (nameserver1)
	 * ipaddr2 (nameserver2)
	 * .
	 * .
	 */

	sprintf(cmd, "%s",  "hv_get_dns_info");

	/*
	 * Execute the command to gather DNS info.
	 */
	kvp_process_ipconfig_file(cmd, (char *)buffer->dns_addr,
				(MAX_IP_ADDR_SIZE * 2), INET_ADDRSTRLEN, 0);
830 831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846 847 848 849 850 851 852 853 854 855 856 857

	/*
	 * Gather the DHCP state.
	 * We will gather this state by invoking an external script.
	 * The parameter to the script is the interface name.
	 * Here is the expected output:
	 *
	 * Enabled: DHCP enabled.
	 */

	sprintf(cmd, "%s %s", "hv_get_dhcp_info", if_name);

	file = popen(cmd, "r");
	if (file == NULL)
		return;

	p = fgets(dhcp_info, sizeof(dhcp_info), file);
	if (p == NULL) {
		pclose(file);
		return;
	}

	if (!strncmp(p, "Enabled", 7))
		buffer->dhcp_enabled = 1;
	else
		buffer->dhcp_enabled = 0;

	pclose(file);
858 859 860
}


861 862 863 864 865 866 867 868 869
static unsigned int hweight32(unsigned int *w)
{
	unsigned int res = *w - ((*w >> 1) & 0x55555555);
	res = (res & 0x33333333) + ((res >> 2) & 0x33333333);
	res = (res + (res >> 4)) & 0x0F0F0F0F;
	res = res + (res >> 8);
	return (res + (res >> 16)) & 0x000000FF;
}

870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886 887 888 889
static int kvp_process_ip_address(void *addrp,
				int family, char *buffer,
				int length,  int *offset)
{
	struct sockaddr_in *addr;
	struct sockaddr_in6 *addr6;
	int addr_length;
	char tmp[50];
	const char *str;

	if (family == AF_INET) {
		addr = (struct sockaddr_in *)addrp;
		str = inet_ntop(family, &addr->sin_addr, tmp, 50);
		addr_length = INET_ADDRSTRLEN;
	} else {
		addr6 = (struct sockaddr_in6 *)addrp;
		str = inet_ntop(family, &addr6->sin6_addr.s6_addr, tmp, 50);
		addr_length = INET6_ADDRSTRLEN;
	}

890
	if ((length - *offset) < addr_length + 2)
891
		return HV_E_FAIL;
892 893
	if (str == NULL) {
		strcpy(buffer, "inet_ntop failed\n");
894
		return HV_E_FAIL;
895 896 897
	}
	if (*offset == 0)
		strcpy(buffer, tmp);
898 899
	else {
		strcat(buffer, ";");
900
		strcat(buffer, tmp);
901
	}
902 903

	*offset += strlen(str) + 1;
904

905 906 907
	return 0;
}

908
static int
909
kvp_get_ip_info(int family, char *if_name, int op,
910
		 void  *out_buffer, int length)
911 912 913 914
{
	struct ifaddrs *ifap;
	struct ifaddrs *curp;
	int offset = 0;
915
	int sn_offset = 0;
916
	int error = 0;
917 918
	char *buffer;
	struct hv_kvp_ipaddr_value *ip_buffer;
919 920 921 922 923 924
	char cidr_mask[5]; /* /xyz */
	int weight;
	int i;
	unsigned int *w;
	char *sn_str;
	struct sockaddr_in6 *addr6;
925 926 927 928 929 930 931 932

	if (op == KVP_OP_ENUMERATE) {
		buffer = out_buffer;
	} else {
		ip_buffer = out_buffer;
		buffer = (char *)ip_buffer->ip_addr;
		ip_buffer->addr_family = 0;
	}
933 934
	/*
	 * On entry into this function, the buffer is capable of holding the
935
	 * maximum key value.
936 937 938 939
	 */

	if (getifaddrs(&ifap)) {
		strcpy(buffer, "getifaddrs failed\n");
940
		return HV_E_FAIL;
941 942 943 944
	}

	curp = ifap;
	while (curp != NULL) {
945 946 947 948
		if (curp->ifa_addr == NULL) {
			curp = curp->ifa_next;
			continue;
		}
949

950 951 952 953 954 955 956 957 958
		if ((if_name != NULL) &&
			(strncmp(curp->ifa_name, if_name, strlen(if_name)))) {
			/*
			 * We want info about a specific interface;
			 * just continue.
			 */
			curp = curp->ifa_next;
			continue;
		}
959

960 961 962 963 964 965
		/*
		 * We only support two address families: AF_INET and AF_INET6.
		 * If a family value of 0 is specified, we collect both
		 * supported address families; if not we gather info on
		 * the specified address family.
		 */
966 967 968
		if ((((family != 0) &&
			 (curp->ifa_addr->sa_family != family))) ||
			 (curp->ifa_flags & IFF_LOOPBACK)) {
969 970 971 972 973 974 975 976 977
			curp = curp->ifa_next;
			continue;
		}
		if ((curp->ifa_addr->sa_family != AF_INET) &&
			(curp->ifa_addr->sa_family != AF_INET6)) {
			curp = curp->ifa_next;
			continue;
		}

978 979 980 981 982
		if (op == KVP_OP_GET_IP_INFO) {
			/*
			 * Gather info other than the IP address.
			 * IP address info will be gathered later.
			 */
983
			if (curp->ifa_addr->sa_family == AF_INET) {
984
				ip_buffer->addr_family |= ADDR_FAMILY_IPV4;
985 986 987 988 989 990 991 992 993 994 995 996 997
				/*
				 * Get subnet info.
				 */
				error = kvp_process_ip_address(
							     curp->ifa_netmask,
							     AF_INET,
							     (char *)
							     ip_buffer->sub_net,
							     length,
							     &sn_offset);
				if (error)
					goto gather_ipaddr;
			} else {
998
				ip_buffer->addr_family |= ADDR_FAMILY_IPV6;
999

1000
				/*
1001
				 * Get subnet info in CIDR format.
1002
				 */
1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014
				weight = 0;
				sn_str = (char *)ip_buffer->sub_net;
				addr6 = (struct sockaddr_in6 *)
					curp->ifa_netmask;
				w = addr6->sin6_addr.s6_addr32;

				for (i = 0; i < 4; i++)
					weight += hweight32(&w[i]);

				sprintf(cidr_mask, "/%d", weight);
				if ((length - sn_offset) <
					(strlen(cidr_mask) + 1))
1015
					goto gather_ipaddr;
1016 1017 1018 1019 1020 1021 1022

				if (sn_offset == 0)
					strcpy(sn_str, cidr_mask);
				else
					strcat(sn_str, cidr_mask);
				strcat((char *)ip_buffer->sub_net, ";");
				sn_offset += strlen(sn_str) + 1;
1023
			}
1024 1025 1026 1027 1028 1029

			/*
			 * Collect other ip related configuration info.
			 */

			kvp_get_ipconfig_info(if_name, ip_buffer);
1030 1031
		}

1032
gather_ipaddr:
1033 1034 1035 1036 1037 1038
		error = kvp_process_ip_address(curp->ifa_addr,
						curp->ifa_addr->sa_family,
						buffer,
						length, &offset);
		if (error)
			goto getaddr_done;
1039

1040 1041 1042 1043 1044 1045 1046 1047 1048
		curp = curp->ifa_next;
	}

getaddr_done:
	freeifaddrs(ifap);
	return error;
}


1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168
static int expand_ipv6(char *addr, int type)
{
	int ret;
	struct in6_addr v6_addr;

	ret = inet_pton(AF_INET6, addr, &v6_addr);

	if (ret != 1) {
		if (type == NETMASK)
			return 1;
		return 0;
	}

	sprintf(addr, "%02x%02x:%02x%02x:%02x%02x:%02x%02x:%02x%02x:"
		"%02x%02x:%02x%02x:%02x%02x",
		(int)v6_addr.s6_addr[0], (int)v6_addr.s6_addr[1],
		(int)v6_addr.s6_addr[2], (int)v6_addr.s6_addr[3],
		(int)v6_addr.s6_addr[4], (int)v6_addr.s6_addr[5],
		(int)v6_addr.s6_addr[6], (int)v6_addr.s6_addr[7],
		(int)v6_addr.s6_addr[8], (int)v6_addr.s6_addr[9],
		(int)v6_addr.s6_addr[10], (int)v6_addr.s6_addr[11],
		(int)v6_addr.s6_addr[12], (int)v6_addr.s6_addr[13],
		(int)v6_addr.s6_addr[14], (int)v6_addr.s6_addr[15]);

	return 1;

}

static int is_ipv4(char *addr)
{
	int ret;
	struct in_addr ipv4_addr;

	ret = inet_pton(AF_INET, addr, &ipv4_addr);

	if (ret == 1)
		return 1;
	return 0;
}

static int parse_ip_val_buffer(char *in_buf, int *offset,
				char *out_buf, int out_len)
{
	char *x;
	char *start;

	/*
	 * in_buf has sequence of characters that are seperated by
	 * the character ';'. The last sequence does not have the
	 * terminating ";" character.
	 */
	start = in_buf + *offset;

	x = strchr(start, ';');
	if (x)
		*x = 0;
	else
		x = start + strlen(start);

	if (strlen(start) != 0) {
		int i = 0;
		/*
		 * Get rid of leading spaces.
		 */
		while (start[i] == ' ')
			i++;

		if ((x - start) <= out_len) {
			strcpy(out_buf, (start + i));
			*offset += (x - start) + 1;
			return 1;
		}
	}
	return 0;
}

static int kvp_write_file(FILE *f, char *s1, char *s2, char *s3)
{
	int ret;

	ret = fprintf(f, "%s%s%s%s\n", s1, s2, "=", s3);

	if (ret < 0)
		return HV_E_FAIL;

	return 0;
}


static int process_ip_string(FILE *f, char *ip_string, int type)
{
	int error = 0;
	char addr[INET6_ADDRSTRLEN];
	int i = 0;
	int j = 0;
	char str[256];
	char sub_str[10];
	int offset = 0;

	memset(addr, 0, sizeof(addr));

	while (parse_ip_val_buffer(ip_string, &offset, addr,
					(MAX_IP_ADDR_SIZE * 2))) {

		sub_str[0] = 0;
		if (is_ipv4(addr)) {
			switch (type) {
			case IPADDR:
				snprintf(str, sizeof(str), "%s", "IPADDR");
				break;
			case NETMASK:
				snprintf(str, sizeof(str), "%s", "NETMASK");
				break;
			case GATEWAY:
				snprintf(str, sizeof(str), "%s", "GATEWAY");
				break;
			case DNS:
				snprintf(str, sizeof(str), "%s", "DNS");
				break;
			}
1169 1170

			if (type == DNS) {
1171
				snprintf(sub_str, sizeof(sub_str), "%d", ++i);
1172 1173 1174 1175
			} else if (type == GATEWAY && i == 0) {
				++i;
			} else {
				snprintf(sub_str, sizeof(sub_str), "%d", i++);
1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194
			}


		} else if (expand_ipv6(addr, type)) {
			switch (type) {
			case IPADDR:
				snprintf(str, sizeof(str), "%s", "IPV6ADDR");
				break;
			case NETMASK:
				snprintf(str, sizeof(str), "%s", "IPV6NETMASK");
				break;
			case GATEWAY:
				snprintf(str, sizeof(str), "%s",
					"IPV6_DEFAULTGW");
				break;
			case DNS:
				snprintf(str, sizeof(str), "%s",  "DNS");
				break;
			}
1195 1196 1197 1198 1199 1200 1201

			if (type == DNS) {
				snprintf(sub_str, sizeof(sub_str), "%d", ++i);
			} else if (j == 0) {
				++j;
			} else {
				snprintf(sub_str, sizeof(sub_str), "_%d", j++);
1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243
			}
		} else {
			return  HV_INVALIDARG;
		}

		error = kvp_write_file(f, str, sub_str, addr);
		if (error)
			return error;
		memset(addr, 0, sizeof(addr));
	}

	return 0;
}

static int kvp_set_ip_info(char *if_name, struct hv_kvp_ipaddr_value *new_val)
{
	int error = 0;
	char if_file[128];
	FILE *file;
	char cmd[512];
	char *mac_addr;

	/*
	 * Set the configuration for the specified interface with
	 * the information provided. Since there is no standard
	 * way to configure an interface, we will have an external
	 * script that does the job of configuring the interface and
	 * flushing the configuration.
	 *
	 * The parameters passed to this external script are:
	 * 1. A configuration file that has the specified configuration.
	 *
	 * We will embed the name of the interface in the configuration
	 * file: ifcfg-ethx (where ethx is the interface name).
	 *
	 * The information provided here may be more than what is needed
	 * in a given distro to configure the interface and so are free
	 * ignore information that may not be relevant.
	 *
	 * Here is the format of the ip configuration file:
	 *
	 * HWADDR=macaddr
1244 1245 1246
	 * DEVICE=interface name
	 * BOOTPROTO=<protocol> (where <protocol> is "dhcp" if DHCP is configured
	 *                       or "none" if no boot-time protocol should be used)
1247
	 *
1248 1249 1250
	 * IPADDR0=ipaddr1
	 * IPADDR1=ipaddr2
	 * IPADDRx=ipaddry (where y = x + 1)
1251
	 *
1252 1253
	 * NETMASK0=netmask1
	 * NETMASKx=netmasky (where y = x + 1)
1254 1255
	 *
	 * GATEWAY=ipaddr1
1256
	 * GATEWAYx=ipaddry (where y = x + 1)
1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271
	 *
	 * DNSx=ipaddrx (where first DNS address is tagged as DNS1 etc)
	 *
	 * IPV6 addresses will be tagged as IPV6ADDR, IPV6 gateway will be
	 * tagged as IPV6_DEFAULTGW and IPV6 NETMASK will be tagged as
	 * IPV6NETMASK.
	 *
	 * The host can specify multiple ipv4 and ipv6 addresses to be
	 * configured for the interface. Furthermore, the configuration
	 * needs to be persistent. A subsequent GET call on the interface
	 * is expected to return the configuration that is set via the SET
	 * call.
	 */

	snprintf(if_file, sizeof(if_file), "%s%s%s", KVP_CONFIG_LOC,
T
Tomas Hozza 已提交
1272
		"/ifcfg-", if_name);
1273 1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292 1293 1294

	file = fopen(if_file, "w");

	if (file == NULL) {
		syslog(LOG_ERR, "Failed to open config file");
		return HV_E_FAIL;
	}

	/*
	 * First write out the MAC address.
	 */

	mac_addr = kvp_if_name_to_mac(if_name);
	if (mac_addr == NULL) {
		error = HV_E_FAIL;
		goto setval_error;
	}

	error = kvp_write_file(file, "HWADDR", "", mac_addr);
	if (error)
		goto setval_error;

1295
	error = kvp_write_file(file, "DEVICE", "", if_name);
1296 1297 1298 1299
	if (error)
		goto setval_error;

	if (new_val->dhcp_enabled) {
1300
		error = kvp_write_file(file, "BOOTPROTO", "", "dhcp");
1301 1302 1303 1304 1305 1306 1307
		if (error)
			goto setval_error;

		/*
		 * We are done!.
		 */
		goto setval_done;
1308 1309 1310 1311 1312

	} else {
		error = kvp_write_file(file, "BOOTPROTO", "", "none");
		if (error)
			goto setval_error;
1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356
	}

	/*
	 * Write the configuration for ipaddress, netmask, gateway and
	 * name servers.
	 */

	error = process_ip_string(file, (char *)new_val->ip_addr, IPADDR);
	if (error)
		goto setval_error;

	error = process_ip_string(file, (char *)new_val->sub_net, NETMASK);
	if (error)
		goto setval_error;

	error = process_ip_string(file, (char *)new_val->gate_way, GATEWAY);
	if (error)
		goto setval_error;

	error = process_ip_string(file, (char *)new_val->dns_addr, DNS);
	if (error)
		goto setval_error;

setval_done:
	free(mac_addr);
	fclose(file);

	/*
	 * Now that we have populated the configuration file,
	 * invoke the external script to do its magic.
	 */

	snprintf(cmd, sizeof(cmd), "%s %s", "hv_set_ifconfig", if_file);
	system(cmd);
	return 0;

setval_error:
	syslog(LOG_ERR, "Failed to write config file");
	free(mac_addr);
	fclose(file);
	return error;
}


1357 1358 1359 1360 1361 1362
static int
kvp_get_domain_name(char *buffer, int length)
{
	struct addrinfo	hints, *info ;
	int error = 0;

1363
	gethostname(buffer, length);
1364 1365 1366 1367 1368
	memset(&hints, 0, sizeof(hints));
	hints.ai_family = AF_INET; /*Get only ipv4 addrinfo. */
	hints.ai_socktype = SOCK_STREAM;
	hints.ai_flags = AI_CANONNAME;

1369
	error = getaddrinfo(buffer, NULL, &hints, &info);
1370 1371
	if (error != 0) {
		strcpy(buffer, "getaddrinfo failed\n");
1372
		return error;
1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411
	}
	strcpy(buffer, info->ai_canonname);
	freeaddrinfo(info);
	return error;
}

static int
netlink_send(int fd, struct cn_msg *msg)
{
	struct nlmsghdr *nlh;
	unsigned int size;
	struct msghdr message;
	char buffer[64];
	struct iovec iov[2];

	size = NLMSG_SPACE(sizeof(struct cn_msg) + msg->len);

	nlh = (struct nlmsghdr *)buffer;
	nlh->nlmsg_seq = 0;
	nlh->nlmsg_pid = getpid();
	nlh->nlmsg_type = NLMSG_DONE;
	nlh->nlmsg_len = NLMSG_LENGTH(size - sizeof(*nlh));
	nlh->nlmsg_flags = 0;

	iov[0].iov_base = nlh;
	iov[0].iov_len = sizeof(*nlh);

	iov[1].iov_base = msg;
	iov[1].iov_len = size;

	memset(&message, 0, sizeof(message));
	message.msg_name = &addr;
	message.msg_namelen = sizeof(addr);
	message.msg_iov = iov;
	message.msg_iovlen = 2;

	return sendmsg(fd, &message, 0);
}

1412
int main(void)
1413
{
1414
	int fd, len, nl_group;
1415 1416 1417 1418 1419
	int error;
	struct cn_msg *message;
	struct pollfd pfd;
	struct nlmsghdr *incoming_msg;
	struct cn_msg	*incoming_cn_msg;
1420
	struct hv_kvp_msg *hv_msg;
1421
	char	*p;
1422 1423
	char	*key_value;
	char	*key_name;
1424 1425
	int	op;
	int	pool;
1426 1427
	char	*if_name;
	struct hv_kvp_ipaddr_value *kvp_ip_val;
1428 1429 1430 1431 1432 1433 1434 1435 1436

	daemon(1, 0);
	openlog("KVP", 0, LOG_USER);
	syslog(LOG_INFO, "KVP starting; pid is:%d", getpid());
	/*
	 * Retrieve OS release information.
	 */
	kvp_get_os_info();

1437 1438
	if (kvp_file_init()) {
		syslog(LOG_ERR, "Failed to initialize the pools");
B
Ben Hutchings 已提交
1439
		exit(EXIT_FAILURE);
1440 1441
	}

1442 1443 1444
	fd = socket(AF_NETLINK, SOCK_DGRAM, NETLINK_CONNECTOR);
	if (fd < 0) {
		syslog(LOG_ERR, "netlink socket creation failed; error:%d", fd);
B
Ben Hutchings 已提交
1445
		exit(EXIT_FAILURE);
1446 1447 1448 1449
	}
	addr.nl_family = AF_NETLINK;
	addr.nl_pad = 0;
	addr.nl_pid = 0;
1450
	addr.nl_groups = 0;
1451 1452 1453 1454 1455 1456


	error = bind(fd, (struct sockaddr *)&addr, sizeof(addr));
	if (error < 0) {
		syslog(LOG_ERR, "bind failed; error:%d", error);
		close(fd);
B
Ben Hutchings 已提交
1457
		exit(EXIT_FAILURE);
1458
	}
1459 1460
	nl_group = CN_KVP_IDX;
	setsockopt(fd, SOL_NETLINK, NETLINK_ADD_MEMBERSHIP, &nl_group, sizeof(nl_group));
1461 1462 1463 1464 1465 1466
	/*
	 * Register ourselves with the kernel.
	 */
	message = (struct cn_msg *)kvp_send_buffer;
	message->id.idx = CN_KVP_IDX;
	message->id.val = CN_KVP_VAL;
1467 1468

	hv_msg = (struct hv_kvp_msg *)message->data;
1469
	hv_msg->kvp_hdr.operation = KVP_OP_REGISTER1;
1470
	message->ack = 0;
1471
	message->len = sizeof(struct hv_kvp_msg);
1472 1473 1474 1475 1476

	len = netlink_send(fd, message);
	if (len < 0) {
		syslog(LOG_ERR, "netlink_send failed; error:%d", len);
		close(fd);
B
Ben Hutchings 已提交
1477
		exit(EXIT_FAILURE);
1478 1479 1480 1481 1482
	}

	pfd.fd = fd;

	while (1) {
1483 1484
		struct sockaddr *addr_p = (struct sockaddr *) &addr;
		socklen_t addr_l = sizeof(addr);
1485 1486 1487 1488
		pfd.events = POLLIN;
		pfd.revents = 0;
		poll(&pfd, 1, -1);

1489 1490
		len = recvfrom(fd, kvp_recv_buffer, sizeof(kvp_recv_buffer), 0,
				addr_p, &addr_l);
1491

1492
		if (len < 0) {
1493 1494
			syslog(LOG_ERR, "recvfrom failed; pid:%u error:%d %s",
					addr.nl_pid, errno, strerror(errno));
1495 1496 1497 1498
			close(fd);
			return -1;
		}

1499 1500 1501 1502 1503 1504
		if (addr.nl_pid) {
			syslog(LOG_WARNING, "Received packet from untrusted pid:%u",
					addr.nl_pid);
			continue;
		}

1505
		incoming_msg = (struct nlmsghdr *)kvp_recv_buffer;
1506 1507 1508 1509

		if (incoming_msg->nlmsg_type != NLMSG_DONE)
			continue;

1510
		incoming_cn_msg = (struct cn_msg *)NLMSG_DATA(incoming_msg);
1511
		hv_msg = (struct hv_kvp_msg *)incoming_cn_msg->data;
1512

1513 1514 1515 1516 1517 1518 1519 1520 1521 1522
		/*
		 * We will use the KVP header information to pass back
		 * the error from this daemon. So, first copy the state
		 * and set the error code to success.
		 */
		op = hv_msg->kvp_hdr.operation;
		pool = hv_msg->kvp_hdr.pool;
		hv_msg->error = HV_S_OK;

		if ((in_hand_shake) && (op == KVP_OP_REGISTER1)) {
1523 1524 1525 1526
			/*
			 * Driver is registering with us; stash away the version
			 * information.
			 */
1527
			in_hand_shake = 0;
1528
			p = (char *)hv_msg->body.kvp_register.version;
1529
			lic_version = malloc(strlen(p) + 1);
1530
			if (lic_version) {
1531
				strcpy(lic_version, p);
1532 1533 1534 1535 1536 1537
				syslog(LOG_INFO, "KVP LIC Version: %s",
					lic_version);
			} else {
				syslog(LOG_ERR, "malloc failed");
			}
			continue;
1538
		}
1539

1540
		switch (op) {
1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564
		case KVP_OP_GET_IP_INFO:
			kvp_ip_val = &hv_msg->body.kvp_ip_val;
			if_name =
			kvp_mac_to_if_name((char *)kvp_ip_val->adapter_id);

			if (if_name == NULL) {
				/*
				 * We could not map the mac address to an
				 * interface name; return error.
				 */
				hv_msg->error = HV_E_FAIL;
				break;
			}
			error = kvp_get_ip_info(
						0, if_name, KVP_OP_GET_IP_INFO,
						kvp_ip_val,
						(MAX_IP_ADDR_SIZE * 2));

			if (error)
				hv_msg->error = error;

			free(if_name);
			break;

1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583
		case KVP_OP_SET_IP_INFO:
			kvp_ip_val = &hv_msg->body.kvp_ip_val;
			if_name = kvp_get_if_name(
					(char *)kvp_ip_val->adapter_id);
			if (if_name == NULL) {
				/*
				 * We could not map the guid to an
				 * interface name; return error.
				 */
				hv_msg->error = HV_GUID_NOTFOUND;
				break;
			}
			error = kvp_set_ip_info(if_name, kvp_ip_val);
			if (error)
				hv_msg->error = error;

			free(if_name);
			break;

1584
		case KVP_OP_SET:
1585
			if (kvp_key_add_or_modify(pool,
1586 1587 1588 1589
					hv_msg->body.kvp_set.data.key,
					hv_msg->body.kvp_set.data.key_size,
					hv_msg->body.kvp_set.data.value,
					hv_msg->body.kvp_set.data.value_size))
1590
					hv_msg->error = HV_S_CONT;
1591 1592
			break;

1593
		case KVP_OP_GET:
1594
			if (kvp_get_value(pool,
1595 1596 1597 1598
					hv_msg->body.kvp_set.data.key,
					hv_msg->body.kvp_set.data.key_size,
					hv_msg->body.kvp_set.data.value,
					hv_msg->body.kvp_set.data.value_size))
1599
					hv_msg->error = HV_S_CONT;
1600 1601
			break;

1602
		case KVP_OP_DELETE:
1603
			if (kvp_key_delete(pool,
1604 1605
					hv_msg->body.kvp_delete.key,
					hv_msg->body.kvp_delete.key_size))
1606
					hv_msg->error = HV_S_CONT;
1607 1608
			break;

1609
		default:
1610
			break;
1611 1612
		}

1613
		if (op != KVP_OP_ENUMERATE)
1614 1615
			goto kvp_done;

1616 1617 1618 1619 1620
		/*
		 * If the pool is KVP_POOL_AUTO, dynamically generate
		 * both the key and the value; if not read from the
		 * appropriate pool.
		 */
1621 1622
		if (pool != KVP_POOL_AUTO) {
			if (kvp_pool_enumerate(pool,
1623 1624 1625 1626
					hv_msg->body.kvp_enum_data.index,
					hv_msg->body.kvp_enum_data.data.key,
					HV_KVP_EXCHANGE_MAX_KEY_SIZE,
					hv_msg->body.kvp_enum_data.data.value,
1627 1628
					HV_KVP_EXCHANGE_MAX_VALUE_SIZE))
					hv_msg->error = HV_S_CONT;
1629 1630 1631
			goto kvp_done;
		}

1632 1633 1634
		hv_msg = (struct hv_kvp_msg *)incoming_cn_msg->data;
		key_name = (char *)hv_msg->body.kvp_enum_data.data.key;
		key_value = (char *)hv_msg->body.kvp_enum_data.data.value;
1635

1636
		switch (hv_msg->body.kvp_enum_data.index) {
1637 1638 1639 1640 1641 1642 1643 1644 1645 1646
		case FullyQualifiedDomainName:
			kvp_get_domain_name(key_value,
					HV_KVP_EXCHANGE_MAX_VALUE_SIZE);
			strcpy(key_name, "FullyQualifiedDomainName");
			break;
		case IntegrationServicesVersion:
			strcpy(key_name, "IntegrationServicesVersion");
			strcpy(key_value, lic_version);
			break;
		case NetworkAddressIPv4:
1647
			kvp_get_ip_info(AF_INET, NULL, KVP_OP_ENUMERATE,
1648
				key_value, HV_KVP_EXCHANGE_MAX_VALUE_SIZE);
1649 1650 1651
			strcpy(key_name, "NetworkAddressIPv4");
			break;
		case NetworkAddressIPv6:
1652
			kvp_get_ip_info(AF_INET6, NULL, KVP_OP_ENUMERATE,
1653
				key_value, HV_KVP_EXCHANGE_MAX_VALUE_SIZE);
1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671 1672
			strcpy(key_name, "NetworkAddressIPv6");
			break;
		case OSBuildNumber:
			strcpy(key_value, os_build);
			strcpy(key_name, "OSBuildNumber");
			break;
		case OSName:
			strcpy(key_value, os_name);
			strcpy(key_name, "OSName");
			break;
		case OSMajorVersion:
			strcpy(key_value, os_major);
			strcpy(key_name, "OSMajorVersion");
			break;
		case OSMinorVersion:
			strcpy(key_value, os_minor);
			strcpy(key_name, "OSMinorVersion");
			break;
		case OSVersion:
1673
			strcpy(key_value, os_version);
1674 1675 1676 1677 1678 1679 1680
			strcpy(key_name, "OSVersion");
			break;
		case ProcessorArchitecture:
			strcpy(key_value, processor_arch);
			strcpy(key_name, "ProcessorArchitecture");
			break;
		default:
1681
			hv_msg->error = HV_S_CONT;
1682 1683 1684 1685 1686 1687 1688
			break;
		}
		/*
		 * Send the value back to the kernel. The response is
		 * already in the receive buffer. Update the cn_msg header to
		 * reflect the key value that has been added to the message
		 */
1689
kvp_done:
1690 1691 1692 1693

		incoming_cn_msg->id.idx = CN_KVP_IDX;
		incoming_cn_msg->id.val = CN_KVP_VAL;
		incoming_cn_msg->ack = 0;
1694
		incoming_cn_msg->len = sizeof(struct hv_kvp_msg);
1695 1696 1697 1698

		len = netlink_send(fd, incoming_cn_msg);
		if (len < 0) {
			syslog(LOG_ERR, "net_link send failed; error:%d", len);
B
Ben Hutchings 已提交
1699
			exit(EXIT_FAILURE);
1700 1701 1702 1703
		}
	}

}