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# include "kms_client.h"
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# include <stdio.h>
# include <string.h>
# include <stdlib.h>
# include <errno.h>
# include <unistd.h>
# include <signal.h>
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# include <stdbool.h>
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# include <fcntl.h>
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# include <sys/socket.h>
# include <sys/un.h>
# include <sys/wait.h>
# include <sys/capability.h>
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# define GSR_SOCKET_PAIR_LOCAL 0
# define GSR_SOCKET_PAIR_REMOTE 1
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static void cleanup_socket ( gsr_kms_client * self , bool kill_server ) ;
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static int gsr_kms_client_replace_connection ( gsr_kms_client * self ) ;
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static bool generate_random_characters ( char * buffer , int buffer_size , const char * alphabet , size_t alphabet_size ) {
int fd = open ( " /dev/urandom " , O_RDONLY ) ;
if ( fd = = - 1 ) {
perror ( " /dev/urandom " ) ;
return false ;
}
if ( read ( fd , buffer , buffer_size ) < buffer_size ) {
fprintf ( stderr , " Failed to read %d bytes from /dev/urandom \n " , buffer_size ) ;
close ( fd ) ;
return false ;
}
for ( int i = 0 ; i < buffer_size ; + + i ) {
unsigned char c = * ( unsigned char * ) & buffer [ i ] ;
buffer [ i ] = alphabet [ c % alphabet_size ] ;
}
close ( fd ) ;
return true ;
}
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static void close_fds ( gsr_kms_response * response ) {
for ( int i = 0 ; i < response - > num_fds ; + + i ) {
if ( response - > fds [ i ] . fd > 0 )
close ( response - > fds [ i ] . fd ) ;
response - > fds [ i ] . fd = 0 ;
}
}
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static int send_msg_to_server ( int server_fd , gsr_kms_request * request ) {
struct iovec iov ;
iov . iov_base = request ;
iov . iov_len = sizeof ( * request ) ;
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struct msghdr response_message = { 0 } ;
response_message . msg_iov = & iov ;
response_message . msg_iovlen = 1 ;
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char cmsgbuf [ CMSG_SPACE ( sizeof ( int ) * 1 ) ] ;
memset ( cmsgbuf , 0 , sizeof ( cmsgbuf ) ) ;
if ( request - > new_connection_fd > 0 ) {
response_message . msg_control = cmsgbuf ;
response_message . msg_controllen = sizeof ( cmsgbuf ) ;
struct cmsghdr * cmsg = CMSG_FIRSTHDR ( & response_message ) ;
cmsg - > cmsg_level = SOL_SOCKET ;
cmsg - > cmsg_type = SCM_RIGHTS ;
cmsg - > cmsg_len = CMSG_LEN ( sizeof ( int ) * 1 ) ;
int * fds = ( int * ) CMSG_DATA ( cmsg ) ;
fds [ 0 ] = request - > new_connection_fd ;
response_message . msg_controllen = cmsg - > cmsg_len ;
}
return sendmsg ( server_fd , & response_message , 0 ) ;
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}
static int recv_msg_from_server ( int server_fd , gsr_kms_response * response ) {
struct iovec iov ;
iov . iov_base = response ;
iov . iov_len = sizeof ( * response ) ;
struct msghdr response_message = { 0 } ;
response_message . msg_iov = & iov ;
response_message . msg_iovlen = 1 ;
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char cmsgbuf [ CMSG_SPACE ( sizeof ( int ) * GSR_KMS_MAX_PLANES ) ] ;
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memset ( cmsgbuf , 0 , sizeof ( cmsgbuf ) ) ;
response_message . msg_control = cmsgbuf ;
response_message . msg_controllen = sizeof ( cmsgbuf ) ;
int res = recvmsg ( server_fd , & response_message , MSG_WAITALL ) ;
if ( res < = 0 )
return res ;
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if ( response - > num_fds > 0 ) {
struct cmsghdr * cmsg = CMSG_FIRSTHDR ( & response_message ) ;
if ( cmsg ) {
int * fds = ( int * ) CMSG_DATA ( cmsg ) ;
for ( int i = 0 ; i < response - > num_fds ; + + i ) {
response - > fds [ i ] . fd = fds [ i ] ;
}
} else {
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close_fds ( response ) ;
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}
}
return res ;
}
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/* We have to use $HOME because in flatpak there is no simple path that is accessible, read and write, that multiple flatpak instances can access */
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static bool create_socket_path ( char * output_path , size_t output_path_size ) {
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const char * home = getenv ( " HOME " ) ;
if ( ! home )
home = " /tmp " ;
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char random_characters [ 11 ] ;
random_characters [ 10 ] = ' \0 ' ;
if ( ! generate_random_characters ( random_characters , 10 , " ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789 " , 62 ) )
return false ;
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snprintf ( output_path , output_path_size , " %s/.gsr-kms-socket-%s " , home , random_characters ) ;
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return true ;
}
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static void strncpy_safe ( char * dst , const char * src , int len ) {
int src_len = strlen ( src ) ;
int min_len = src_len ;
if ( len - 1 < min_len )
min_len = len - 1 ;
memcpy ( dst , src , min_len ) ;
dst [ min_len ] = ' \0 ' ;
}
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static bool find_program_in_path ( const char * program_name , char * filepath , int filepath_len ) {
const char * path = getenv ( " PATH " ) ;
if ( ! path )
return false ;
int program_name_len = strlen ( program_name ) ;
const char * end = path + strlen ( path ) ;
while ( path ! = end ) {
const char * part_end = strchr ( path , ' : ' ) ;
const char * next = part_end ;
if ( part_end ) {
next = part_end + 1 ;
} else {
part_end = end ;
next = end ;
}
int len = part_end - path ;
if ( len + 1 + program_name_len < filepath_len ) {
memcpy ( filepath , path , len ) ;
filepath [ len ] = ' / ' ;
memcpy ( filepath + len + 1 , program_name , program_name_len ) ;
filepath [ len + 1 + program_name_len ] = ' \0 ' ;
if ( access ( filepath , F_OK ) = = 0 )
return true ;
}
path = next ;
}
return false ;
}
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int gsr_kms_client_init ( gsr_kms_client * self , const char * card_path ) {
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int result = - 1 ;
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self - > kms_server_pid = - 1 ;
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self - > initial_socket_fd = - 1 ;
self - > initial_client_fd = - 1 ;
self - > initial_socket_path [ 0 ] = ' \0 ' ;
self - > socket_pair [ 0 ] = - 1 ;
self - > socket_pair [ 1 ] = - 1 ;
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struct sockaddr_un local_addr = { 0 } ;
struct sockaddr_un remote_addr = { 0 } ;
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if ( ! create_socket_path ( self - > initial_socket_path , sizeof ( self - > initial_socket_path ) ) ) {
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fprintf ( stderr , " gsr error: gsr_kms_client_init: failed to create path to kms socket \n " ) ;
return - 1 ;
}
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char server_filepath [ PATH_MAX ] ;
if ( ! find_program_in_path ( " gsr-kms-server " , server_filepath , sizeof ( server_filepath ) ) ) {
fprintf ( stderr , " gsr error: gsr_kms_client_init: gsr-kms-server is not installed \n " ) ;
return - 1 ;
}
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bool has_perm = 0 ;
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const bool inside_flatpak = getenv ( " FLATPAK_ID " ) ! = NULL ;
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if ( ! inside_flatpak ) {
if ( geteuid ( ) = = 0 ) {
has_perm = true ;
} else {
cap_t kms_server_cap = cap_get_file ( server_filepath ) ;
if ( kms_server_cap ) {
cap_flag_value_t res = 0 ;
cap_get_flag ( kms_server_cap , CAP_SYS_ADMIN , CAP_PERMITTED , & res ) ;
if ( res = = CAP_SET ) {
//fprintf(stderr, "has permission!\n");
has_perm = true ;
} else {
//fprintf(stderr, "No permission:(\n");
}
cap_free ( kms_server_cap ) ;
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} else {
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if ( errno = = ENODATA )
fprintf ( stderr , " gsr info: gsr_kms_client_init: gsr-kms-server is missing sys_admin cap and will require root authentication. To bypass this automatically, run: sudo setcap cap_sys_admin+ep '%s' \n " , server_filepath ) ;
else
fprintf ( stderr , " gsr info: gsr_kms_client_init: failed to get cap \n " ) ;
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}
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}
}
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if ( socketpair ( AF_UNIX , SOCK_STREAM , 0 , self - > socket_pair ) = = - 1 ) {
fprintf ( stderr , " gsr error: gsr_kms_client_init: socketpair failed, error: %s \n " , strerror ( errno ) ) ;
goto err ;
}
self - > initial_socket_fd = socket ( AF_UNIX , SOCK_STREAM , 0 ) ;
if ( self - > initial_socket_fd = = - 1 ) {
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fprintf ( stderr , " gsr error: gsr_kms_client_init: socket failed, error: %s \n " , strerror ( errno ) ) ;
goto err ;
}
local_addr . sun_family = AF_UNIX ;
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strncpy_safe ( local_addr . sun_path , self - > initial_socket_path , sizeof ( local_addr . sun_path ) ) ;
if ( bind ( self - > initial_socket_fd , ( struct sockaddr * ) & local_addr , sizeof ( local_addr . sun_family ) + strlen ( local_addr . sun_path ) ) = = - 1 ) {
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fprintf ( stderr , " gsr error: gsr_kms_client_init: failed to bind socket, error: %s \n " , strerror ( errno ) ) ;
goto err ;
}
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if ( listen ( self - > initial_socket_fd , 1 ) = = - 1 ) {
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fprintf ( stderr , " gsr error: gsr_kms_client_init: failed to listen on socket, error: %s \n " , strerror ( errno ) ) ;
goto err ;
}
pid_t pid = fork ( ) ;
if ( pid = = - 1 ) {
fprintf ( stderr , " gsr error: gsr_kms_client_init: fork failed, error: %s \n " , strerror ( errno ) ) ;
goto err ;
} else if ( pid = = 0 ) { /* child */
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if ( inside_flatpak ) {
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const char * args [ ] = { " flatpak-spawn " , " --host " , " pkexec " , " flatpak " , " run " , " --command=gsr-kms-server " , " com.dec05eba.gpu_screen_recorder " , self - > initial_socket_path , card_path , NULL } ;
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execvp ( args [ 0 ] , ( char * const * ) args ) ;
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} else if ( has_perm ) {
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const char * args [ ] = { server_filepath , self - > initial_socket_path , card_path , NULL } ;
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execvp ( args [ 0 ] , ( char * const * ) args ) ;
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} else {
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const char * args [ ] = { " pkexec " , server_filepath , self - > initial_socket_path , card_path , NULL } ;
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execvp ( args [ 0 ] , ( char * const * ) args ) ;
}
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fprintf ( stderr , " gsr error: gsr_kms_client_init: execvp failed, error: %s \n " , strerror ( errno ) ) ;
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_exit ( 127 ) ;
} else { /* parent */
self - > kms_server_pid = pid ;
}
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fprintf ( stderr , " gsr info: gsr_kms_client_init: waiting for server to connect \n " ) ;
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for ( ; ; ) {
struct timeval tv ;
fd_set rfds ;
FD_ZERO ( & rfds ) ;
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FD_SET ( self - > initial_socket_fd , & rfds ) ;
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tv . tv_sec = 0 ;
tv . tv_usec = 100 * 1000 ; // 100 ms
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int select_res = select ( 1 + self - > initial_socket_fd , & rfds , NULL , NULL , & tv ) ;
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if ( select_res > 0 ) {
socklen_t sock_len = 0 ;
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self - > initial_client_fd = accept ( self - > initial_socket_fd , ( struct sockaddr * ) & remote_addr , & sock_len ) ;
if ( self - > initial_client_fd = = - 1 ) {
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fprintf ( stderr , " gsr error: gsr_kms_client_init: accept failed on socket, error: %s \n " , strerror ( errno ) ) ;
goto err ;
}
break ;
} else {
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int status = 0 ;
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int wait_result = waitpid ( self - > kms_server_pid , & status , WNOHANG ) ;
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if ( wait_result ! = 0 ) {
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int exit_code = - 1 ;
if ( WIFEXITED ( status ) )
exit_code = WEXITSTATUS ( status ) ;
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fprintf ( stderr , " gsr error: gsr_kms_client_init: kms server died or never started, exit code: %d \n " , exit_code ) ;
self - > kms_server_pid = - 1 ;
if ( exit_code ! = 0 )
result = exit_code ;
goto err ;
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}
}
}
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fprintf ( stderr , " gsr info: gsr_kms_client_init: server connected \n " ) ;
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fprintf ( stderr , " gsr info: replacing file-backed unix domain socket with socketpair \n " ) ;
if ( gsr_kms_client_replace_connection ( self ) ! = 0 )
goto err ;
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cleanup_socket ( self , false ) ;
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fprintf ( stderr , " gsr info: using socketpair \n " ) ;
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return 0 ;
err :
gsr_kms_client_deinit ( self ) ;
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return result ;
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}
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void cleanup_socket ( gsr_kms_client * self , bool kill_server ) {
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if ( self - > initial_client_fd ! = - 1 ) {
close ( self - > initial_client_fd ) ;
self - > initial_client_fd = - 1 ;
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}
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if ( self - > initial_socket_fd ! = - 1 ) {
close ( self - > initial_socket_fd ) ;
self - > initial_socket_fd = - 1 ;
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}
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if ( kill_server ) {
for ( int i = 0 ; i < 2 ; + + i ) {
if ( self - > socket_pair [ i ] > 0 ) {
close ( self - > socket_pair [ i ] ) ;
self - > socket_pair [ i ] = - 1 ;
}
}
}
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if ( kill_server & & self - > kms_server_pid ! = - 1 ) {
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kill ( self - > kms_server_pid , SIGKILL ) ;
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self - > kms_server_pid = - 1 ;
}
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if ( self - > initial_socket_path [ 0 ] ! = ' \0 ' ) {
remove ( self - > initial_socket_path ) ;
self - > initial_socket_path [ 0 ] = ' \0 ' ;
}
}
void gsr_kms_client_deinit ( gsr_kms_client * self ) {
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cleanup_socket ( self , true ) ;
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}
int gsr_kms_client_replace_connection ( gsr_kms_client * self ) {
gsr_kms_response response ;
response . version = 0 ;
response . result = KMS_RESULT_FAILED_TO_SEND ;
response . err_msg [ 0 ] = ' \0 ' ;
gsr_kms_request request ;
request . version = GSR_KMS_PROTOCOL_VERSION ;
request . type = KMS_REQUEST_TYPE_REPLACE_CONNECTION ;
request . new_connection_fd = self - > socket_pair [ GSR_SOCKET_PAIR_REMOTE ] ;
if ( send_msg_to_server ( self - > initial_client_fd , & request ) = = - 1 ) {
fprintf ( stderr , " gsr error: gsr_kms_client_replace_connection: failed to send request message to server \n " ) ;
return - 1 ;
}
const int recv_res = recv_msg_from_server ( self - > socket_pair [ GSR_SOCKET_PAIR_LOCAL ] , & response ) ;
if ( recv_res = = 0 ) {
fprintf ( stderr , " gsr warning: gsr_kms_client_replace_connection: kms server shut down \n " ) ;
return - 1 ;
} else if ( recv_res = = - 1 ) {
fprintf ( stderr , " gsr error: gsr_kms_client_replace_connection: failed to receive response \n " ) ;
return - 1 ;
}
if ( response . version ! = GSR_KMS_PROTOCOL_VERSION ) {
fprintf ( stderr , " gsr error: gsr_kms_client_replace_connection: expected gsr-kms-server protocol version to be %u, but it's %u \n " , GSR_KMS_PROTOCOL_VERSION , response . version ) ;
/*close_fds(response);*/
return - 1 ;
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}
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return 0 ;
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}
int gsr_kms_client_get_kms ( gsr_kms_client * self , gsr_kms_response * response ) {
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response - > version = 0 ;
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response - > result = KMS_RESULT_FAILED_TO_SEND ;
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response - > err_msg [ 0 ] = ' \0 ' ;
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gsr_kms_request request ;
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request . version = GSR_KMS_PROTOCOL_VERSION ;
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request . type = KMS_REQUEST_TYPE_GET_KMS ;
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request . new_connection_fd = 0 ;
if ( send_msg_to_server ( self - > socket_pair [ GSR_SOCKET_PAIR_LOCAL ] , & request ) = = - 1 ) {
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fprintf ( stderr , " gsr error: gsr_kms_client_get_kms: failed to send request message to server \n " ) ;
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strcpy ( response - > err_msg , " failed to send " ) ;
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return - 1 ;
}
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const int recv_res = recv_msg_from_server ( self - > socket_pair [ GSR_SOCKET_PAIR_LOCAL ] , response ) ;
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if ( recv_res = = 0 ) {
fprintf ( stderr , " gsr warning: gsr_kms_client_get_kms: kms server shut down \n " ) ;
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strcpy ( response - > err_msg , " failed to receive " ) ;
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return - 1 ;
} else if ( recv_res = = - 1 ) {
fprintf ( stderr , " gsr error: gsr_kms_client_get_kms: failed to receive response \n " ) ;
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strcpy ( response - > err_msg , " failed to receive " ) ;
return - 1 ;
}
if ( response - > version ! = GSR_KMS_PROTOCOL_VERSION ) {
fprintf ( stderr , " gsr error: gsr_kms_client_get_kms: expected gsr-kms-server protocol version to be %u, but it's %u \n " , GSR_KMS_PROTOCOL_VERSION , response - > version ) ;
/*close_fds(response);*/
strcpy ( response - > err_msg , " mismatching protocol version " ) ;
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return - 1 ;
}
return 0 ;
}