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146 | f9daq | 1 | /* vxi11_user.cc |
2 | * Copyright (C) 2006 Steve D. Sharples |
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3 | * |
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4 | * User library for opening, closing, sending to and receiving from |
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5 | * a device enabled with the VXI11 RPC ethernet protocol. Uses the files |
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6 | * generated by rpcgen vxi11.x. |
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7 | * |
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8 | * This program is free software; you can redistribute it and/or |
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9 | * modify it under the terms of the GNU General Public License |
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10 | * as published by the Free Software Foundation; either version 2 |
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11 | * of the License, or (at your option) any later version. |
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12 | * |
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13 | * This program is distributed in the hope that it will be useful, |
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14 | * but WITHOUT ANY WARRANTY; without even the implied warranty of |
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15 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the |
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16 | * GNU General Public License for more details. |
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17 | * |
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18 | * You should have received a copy of the GNU General Public License |
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19 | * along with this program; if not, write to the Free Software |
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20 | * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. |
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21 | * |
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22 | * The author's email address is steve.sharples@nottingham.ac.uk |
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23 | */ |
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24 | |||
25 | #include "vxi11_user.h" |
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26 | |||
27 | /***************************************************************************** |
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28 | * GENERAL NOTES |
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29 | ***************************************************************************** |
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30 | * |
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31 | * There are four functions at the heart of this library: |
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32 | * |
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33 | * int vxi11_open_device(char *ip, CLIENT **client, VXI11_LINK **link) |
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34 | * int vxi11_close_device(char *ip, CLIENT *client, VXI11_LINK *link) |
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35 | * int vxi11_send(CLIENT *client, VXI11_LINK *link, char *cmd, unsigned long len) |
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36 | * long vxi11_receive(CLIENT *client, VXI11_LINK *link, char *buffer, unsigned long len, unsigned long timeout) |
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37 | * |
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38 | * Note that all 4 of these use separate client and link structures. All the |
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39 | * other functions are built on these four core functions, and the first layer |
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40 | * of abstraction is to combine the CLIENT and VXI11_LINK structures into a |
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41 | * single entity, which I've called a CLINK. For the send and receive |
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42 | * functions, this is just a simple wrapper. For the open and close functions |
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43 | * it's a bit more complicated, because we somehow have to keep track of |
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44 | * whether we've already opened a device with the same IP address before (in |
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45 | * which case we need to recycle a previously created client), or whether |
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46 | * we've still got any other links to a given IP address left when we are |
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47 | * asked to close a clink (in which case we can sever the link, but have to |
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48 | * keep the client open). This is so the person using this library from |
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49 | * userland does not have to keep track of whether they are talking to a |
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50 | * different physical instrument or not each time they establish a connection. |
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51 | * |
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52 | * So the base functions that the user will probably want to use are: |
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53 | * |
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54 | * int vxi11_open_device(char *ip, CLINK *clink) |
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55 | * int vxi11_close_device(char *ip, CLINK *clink) |
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56 | * int vxi11_send(CLINK *clink, char *cmd, unsigned long len) |
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57 | * --- or --- (if sending just text) |
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58 | * int vxi11_send(CLINK *clink, char *cmd) |
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59 | * long vxi11_receive(CLINK *clink, char *buffer, unsigned long len, unsigned long timeout) |
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60 | * |
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61 | * There are then useful (to me, anyway) more specific functions built on top |
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62 | * of these: |
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63 | * |
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64 | * int vxi11_send_data_block(CLINK *clink, char *cmd, char *buffer, unsigned long len) |
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65 | * long vxi11_receive_data_block(CLINK *clink, char *buffer, unsigned long len, unsigned long timeout) |
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66 | * long vxi11_send_and_receive(CLINK *clink, char *cmd, char *buf, unsigned long buf_len, unsigned long timeout) |
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67 | * long vxi11_obtain_long_value(CLINK *clink, char *cmd, unsigned long timeout) |
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68 | * double vxi11_obtain_double_value(CLINK *clink, char *cmd, unsigned long timeout) |
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69 | * |
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70 | * (then there are some shorthand wrappers for the above without specifying |
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71 | * the timeout due to sheer laziness---explore yourself) |
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72 | */ |
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73 | |||
74 | |||
75 | /* Global variables. Keep track of multiple links per client. We need this |
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76 | * because: |
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77 | * - we'd like the library to be able to cope with multiple links to a given |
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78 | * client AND multiple links to multiple clients |
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79 | * - we'd like to just refer to a client/link ("clink") as a single |
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80 | * entity from user land, we don't want to worry about different |
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81 | * initialisation procedures, depending on whether it's an instrument |
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82 | * with the same IP address or not |
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83 | */ |
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84 | char VXI11_IP_ADDRESS[VXI11_MAX_CLIENTS][20]; |
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85 | CLIENT *VXI11_CLIENT_ADDRESS[VXI11_MAX_CLIENTS]; |
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86 | int VXI11_DEVICE_NO = 0; |
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87 | int VXI11_LINK_COUNT[VXI11_MAX_CLIENTS]; |
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88 | |||
89 | /***************************************************************************** |
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90 | * KEY USER FUNCTIONS - USE THESE FROM YOUR PROGRAMS OR INSTRUMENT LIBRARIES * |
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91 | *****************************************************************************/ |
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92 | |||
93 | /* OPEN FUNCTIONS * |
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94 | * ============== */ |
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95 | |||
96 | /* Use this function from user land to open a device and create a link. Can be |
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97 | * used multiple times for the same device (the library will keep track).*/ |
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98 | int vxi11_open_device(const char *ip, CLINK *clink, char *device) { |
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99 | int ret; |
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100 | int l; |
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101 | int device_no=-1; |
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102 | |||
103 | // printf("before doing anything, clink->link = %ld\n", clink->link); |
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104 | /* Have a look to see if we've already initialised an instrument with |
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105 | * this IP address */ |
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106 | for (l=0; l<VXI11_MAX_CLIENTS; l++){ |
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107 | if (strcmp(ip,VXI11_IP_ADDRESS[l]) == 0 ) { |
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108 | device_no=l; |
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109 | // printf("Open function, search, found ip address %s, device no %d\n",ip,device_no); |
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110 | } |
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111 | } |
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112 | |||
113 | /* Couldn't find a match, must be a new IP address */ |
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114 | if (device_no < 0) { |
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115 | /* Uh-oh, we're out of storage space. Increase the #define |
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116 | * for VXI11_MAX_CLIENTS in vxi11_user.h */ |
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117 | if (VXI11_DEVICE_NO >= VXI11_MAX_CLIENTS) { |
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118 | printf("Error: maximum of %d clients allowed\n",VXI11_MAX_CLIENTS); |
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119 | ret = -VXI11_MAX_CLIENTS; |
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120 | } |
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121 | /* Create a new client, keep a note of where the client pointer |
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122 | * is, for this IP address. Because it's a new client, this |
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123 | * must be link number 1. Keep track of how many devices we've |
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124 | * opened so we don't run out of storage space. */ |
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125 | else { |
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126 | ret = vxi11_open_device(ip, &(clink->client), &(clink->link), device); |
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127 | strncpy(VXI11_IP_ADDRESS[VXI11_DEVICE_NO],ip,20); |
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128 | VXI11_CLIENT_ADDRESS[VXI11_DEVICE_NO] = clink->client; |
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129 | VXI11_LINK_COUNT[VXI11_DEVICE_NO]=1; |
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130 | // printf("Open function, could not find ip address %s.\n",ip); |
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131 | // printf("So now, VXI11_IP_ADDRESS[%d]=%s,\n",VXI11_DEVICE_NO,VXI11_IP_ADDRESS[VXI11_DEVICE_NO]); |
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132 | // printf("VXI11_CLIENT_ADDRESS[%d]=%ld,\n",VXI11_DEVICE_NO,VXI11_CLIENT_ADDRESS[VXI11_DEVICE_NO]); |
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133 | // printf(" clink->client=%ld,\n",clink->client); |
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134 | // printf("VXI11_LINK_COUNT[%d]=%d.\n",VXI11_DEVICE_NO,VXI11_LINK_COUNT[VXI11_DEVICE_NO]); |
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135 | VXI11_DEVICE_NO++; |
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136 | } |
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137 | } |
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138 | /* already got a client for this IP address */ |
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139 | else { |
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140 | /* Copy the client pointer address. Just establish a new link |
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141 | * (not a new client). Add one to the link count */ |
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142 | clink->client = VXI11_CLIENT_ADDRESS[device_no]; |
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143 | ret = vxi11_open_link(ip, &(clink->client), &(clink->link), device); |
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144 | // printf("Found an ip address, copying client from VXI11_CLIENT_ADDRESS[%d]\n",device_no); |
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145 | VXI11_LINK_COUNT[device_no]++; |
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146 | // printf("Have just incremented VXI11_LINK_COUNT[%d], it's now %d\n",device_no,VXI11_LINK_COUNT[device_no]); |
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147 | } |
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148 | // printf("after creating link, clink->link = %ld\n", clink->link); |
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149 | return ret; |
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150 | } |
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151 | |||
152 | /* This is a wrapper function, used for the situations where there is only one |
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153 | * "device" per client. This is the case for most (if not all) VXI11 |
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154 | * instruments; however, it is _not_ the case for devices such as LAN to GPIB |
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155 | * gateways. These are single clients that communicate to many instruments |
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156 | * (devices). In order to differentiate between them, we need to pass a device |
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157 | * name. This gets used in the vxi11_open_link() fn, as the link_parms.device |
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158 | * value. */ |
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159 | int vxi11_open_device(const char *ip, CLINK *clink) { |
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160 | char device[6]; |
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161 | strncpy(device,"inst0",6); |
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162 | return vxi11_open_device(ip, clink, device); |
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163 | } |
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164 | |||
165 | |||
166 | |||
167 | /* CLOSE FUNCTION * |
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168 | * ============== */ |
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169 | |||
170 | /* Use this function from user land to close a device and/or sever a link. Can |
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171 | * be used multiple times for the same device (the library will keep track).*/ |
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172 | int vxi11_close_device(const char *ip, CLINK *clink) { |
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173 | int l,ret; |
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174 | int device_no = -1; |
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175 | |||
176 | /* Which instrument are we referring to? */ |
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177 | for (l=0; l<VXI11_MAX_CLIENTS; l++){ |
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178 | if (strcmp(ip,VXI11_IP_ADDRESS[l]) == 0 ) { |
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179 | device_no=l; |
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180 | } |
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181 | } |
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182 | /* Something's up if we can't find the IP address! */ |
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183 | if (device_no == -1) { |
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184 | printf("vxi11_close_device: error: I have no record of you ever opening device\n"); |
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185 | printf(" with IP address %s\n",ip); |
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186 | ret = -4; |
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187 | } |
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188 | else { /* Found the IP, there's more than one link to that instrument, |
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189 | * so keep track and just close the link */ |
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190 | if (VXI11_LINK_COUNT[device_no] > 1 ) { |
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191 | ret = vxi11_close_link(ip,clink->client, clink->link); |
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192 | VXI11_LINK_COUNT[device_no]--; |
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193 | } |
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194 | /* Found the IP, it's the last link, so close the device (link |
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195 | * AND client) */ |
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196 | else { |
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197 | ret = vxi11_close_device(ip, clink->client, clink->link); |
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198 | /* Remove the IP address, so that if we re-open the same device |
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199 | * we do it properly */ |
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200 | memset(VXI11_IP_ADDRESS[device_no], 0, 20); |
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201 | } |
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202 | } |
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203 | return ret; |
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204 | } |
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205 | |||
206 | |||
207 | /* SEND FUNCTIONS * |
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208 | * ============== */ |
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209 | |||
210 | /* A _lot_ of the time we are sending text strings, and can safely rely on |
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211 | * strlen(cmd). */ |
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212 | int vxi11_send(CLINK *clink, const char *cmd) { |
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213 | return vxi11_send(clink, cmd, strlen(cmd)); |
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214 | } |
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215 | |||
216 | /* We still need the version of the function where the length is set explicitly |
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217 | * though, for when we are sending fixed length data blocks. */ |
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218 | int vxi11_send(CLINK *clink, const char *cmd, unsigned long len) { |
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219 | return vxi11_send(clink->client, clink->link, cmd, len); |
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220 | } |
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221 | |||
222 | |||
223 | /* RECEIVE FUNCTIONS * |
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224 | * ================= */ |
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225 | |||
226 | /* Lazy wrapper for when I can't be bothered to specify a read timeout */ |
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227 | long vxi11_receive(CLINK *clink, char *buffer, unsigned long len) { |
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228 | return vxi11_receive(clink, buffer, len, VXI11_READ_TIMEOUT); |
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229 | } |
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230 | |||
231 | long vxi11_receive(CLINK *clink, char *buffer, unsigned long len, unsigned long timeout) { |
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232 | return vxi11_receive(clink->client, clink->link, buffer, len, timeout); |
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233 | } |
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234 | |||
235 | |||
236 | |||
237 | /***************************************************************************** |
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238 | * USEFUL ADDITIONAL HIGHER LEVER USER FUNCTIONS - USE THESE FROM YOUR * |
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239 | * PROGRAMS OR INSTRUMENT LIBRARIES * |
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240 | *****************************************************************************/ |
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241 | |||
242 | /* SEND FIXED LENGTH DATA BLOCK FUNCTION * |
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243 | * ===================================== */ |
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244 | int vxi11_send_data_block(CLINK *clink, const char *cmd, char *buffer, unsigned long len) { |
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245 | char *out_buffer; |
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246 | int cmd_len=strlen(cmd); |
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247 | int ret; |
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248 | |||
249 | out_buffer=new char[cmd_len+10+len]; |
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250 | sprintf(out_buffer,"%s#8%08lu",cmd,len); |
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251 | memcpy(out_buffer+cmd_len+10,buffer,(unsigned long) len); |
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252 | ret = vxi11_send(clink, out_buffer, (unsigned long) (cmd_len+10+len)); |
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253 | delete[] out_buffer; |
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254 | return ret; |
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255 | } |
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256 | |||
257 | |||
258 | /* RECEIVE FIXED LENGTH DATA BLOCK FUNCTION * |
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259 | * ======================================== */ |
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260 | |||
261 | /* This function reads a response in the form of a definite-length block, such |
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262 | * as when you ask for waveform data. The data is returned in the following |
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263 | * format: |
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264 | * #800001000<1000 bytes of data> |
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265 | * ||\______/ |
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266 | * || | |
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267 | * || \---- number of bytes of data |
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268 | * |\--------- number of digits that follow (in this case 8, with leading 0's) |
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269 | * \---------- always starts with # |
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270 | */ |
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271 | long vxi11_receive_data_block(CLINK *clink, char *buffer, unsigned long len, unsigned long timeout) { |
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272 | /* I'm not sure what the maximum length of this header is, I'll assume it's |
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273 | * 11 (#9 + 9 digits) */ |
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274 | unsigned long necessary_buffer_size; |
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275 | char *in_buffer; |
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276 | int ret; |
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277 | int ndigits; |
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278 | unsigned long returned_bytes; |
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279 | int l; |
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280 | char scan_cmd[20]; |
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281 | necessary_buffer_size=len+12; |
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282 | in_buffer=new char[necessary_buffer_size]; |
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283 | ret=vxi11_receive(clink, in_buffer, necessary_buffer_size, timeout); |
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284 | if (ret < 0) return ret; |
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285 | if (in_buffer[0] != '#') { |
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286 | printf("vxi11_user: data block error: data block does not begin with '#'\n"); |
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287 | printf("First 20 characters received were: '"); |
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288 | for(l=0;l<20;l++) { |
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289 | printf("%c",in_buffer[l]); |
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290 | } |
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291 | printf("'\n"); |
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292 | return -3; |
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293 | } |
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294 | |||
295 | /* first find out how many digits */ |
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296 | sscanf(in_buffer,"#%1d",&ndigits); |
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297 | /* some instruments, if there is a problem acquiring the data, return only "#0" */ |
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298 | if (ndigits > 0) { |
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299 | /* now that we know, we can convert the next <ndigits> bytes into an unsigned long */ |
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300 | sprintf(scan_cmd,"#%%1d%%%dlu",ndigits); |
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301 | sscanf(in_buffer,scan_cmd,&ndigits,&returned_bytes); |
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302 | memcpy(buffer, in_buffer+(ndigits+2), returned_bytes); |
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303 | delete[] in_buffer; |
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304 | return (long) returned_bytes; |
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305 | } |
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306 | else return 0; |
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307 | } |
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308 | |||
309 | |||
310 | /* SEND AND RECEIVE FUNCTION * |
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311 | * ========================= */ |
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312 | |||
313 | /* This is mainly a useful function for the overloaded vxi11_obtain_value() |
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314 | * fn's, but is also handy and useful for user and library use */ |
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315 | long vxi11_send_and_receive(CLINK *clink, const char *cmd, char *buf, unsigned long buf_len, unsigned long timeout) { |
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316 | int ret; |
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317 | long bytes_returned; |
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318 | do { |
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319 | ret = vxi11_send(clink, cmd); |
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320 | if (ret != 0) { |
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321 | if (ret != -VXI11_NULL_WRITE_RESP) { |
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322 | printf("Error: vxi11_send_and_receive: could not send cmd.\n"); |
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323 | printf(" The function vxi11_send returned %d. ",ret); |
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324 | return -1; |
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325 | } |
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326 | else printf("(Info: VXI11_NULL_WRITE_RESP in vxi11_send_and_receive, resending query)\n"); |
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327 | } |
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328 | |||
329 | bytes_returned = vxi11_receive(clink, buf, buf_len, timeout); |
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330 | if (bytes_returned <= 0) { |
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331 | if (bytes_returned >-VXI11_NULL_READ_RESP) { |
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332 | printf("Error: vxi11_send_and_receive: problem reading reply.\n"); |
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333 | printf(" The function vxi11_receive returned %ld. ",bytes_returned); |
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334 | return -2; |
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335 | } |
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336 | else printf("(Info: VXI11_NULL_READ_RESP in vxi11_send_and_receive, resending query)\n"); |
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337 | } |
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338 | } while (bytes_returned == -VXI11_NULL_READ_RESP || ret == -VXI11_NULL_WRITE_RESP); |
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339 | return 0; |
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340 | } |
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341 | |||
342 | |||
343 | /* FUNCTIONS TO RETURN A LONG INTEGER VALUE SENT AS RESPONSE TO A QUERY * |
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344 | * ==================================================================== */ |
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345 | long vxi11_obtain_long_value(CLINK *clink, const char *cmd, unsigned long timeout) { |
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346 | char buf[50]; /* 50=arbitrary length... more than enough for one number in ascii */ |
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347 | memset(buf, 0, 50); |
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348 | if (vxi11_send_and_receive(clink, cmd, buf, 50, timeout) != 0) { |
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349 | printf("Returning 0\n"); |
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350 | return 0; |
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351 | } |
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352 | return strtol(buf, (char **)NULL, 10); |
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353 | } |
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354 | |||
355 | /* Lazy wrapper function with default read timeout */ |
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356 | long vxi11_obtain_long_value(CLINK *clink, const char *cmd) { |
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357 | return vxi11_obtain_long_value(clink, cmd, VXI11_READ_TIMEOUT); |
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358 | } |
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359 | |||
360 | |||
361 | /* FUNCTIONS TO RETURN A DOUBLE FLOAT VALUE SENT AS RESPONSE TO A QUERY * |
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362 | * ==================================================================== */ |
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363 | double vxi11_obtain_double_value(CLINK *clink, const char *cmd, unsigned long timeout) { |
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364 | char buf[50]; /* 50=arbitrary length... more than enough for one number in ascii */ |
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365 | double val; |
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366 | memset(buf, 0, 50); |
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367 | if (vxi11_send_and_receive(clink, cmd, buf, 50, timeout) != 0) { |
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368 | printf("Returning 0.0\n"); |
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369 | return 0.0; |
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370 | } |
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371 | val = strtod(buf, (char **)NULL); |
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372 | return val; |
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373 | } |
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374 | |||
375 | /* Lazy wrapper function with default read timeout */ |
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376 | double vxi11_obtain_double_value(CLINK *clink, const char *cmd) { |
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377 | return vxi11_obtain_double_value(clink, cmd, VXI11_READ_TIMEOUT); |
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378 | } |
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379 | |||
380 | |||
381 | /***************************************************************************** |
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382 | * CORE FUNCTIONS - YOU SHOULDN'T NEED TO USE THESE FROM YOUR PROGRAMS OR * |
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383 | * INSTRUMENT LIBRARIES * |
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384 | *****************************************************************************/ |
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385 | |||
386 | /* OPEN FUNCTIONS * |
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387 | * ============== */ |
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388 | int vxi11_open_device(const char *ip, CLIENT **client, VXI11_LINK **link, char *device) { |
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389 | |||
390 | *client = clnt_create(ip, DEVICE_CORE, DEVICE_CORE_VERSION, "tcp"); |
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391 | |||
392 | if (*client == NULL) { |
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393 | clnt_pcreateerror(ip); |
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394 | return -1; |
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395 | } |
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396 | |||
397 | return vxi11_open_link(ip, client, link, device); |
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398 | } |
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399 | |||
400 | int vxi11_open_link(const char *ip, CLIENT **client, VXI11_LINK **link, char *device) { |
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401 | |||
402 | Create_LinkParms link_parms; |
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403 | |||
404 | /* Set link parameters */ |
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405 | link_parms.clientId = (long) *client; |
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406 | link_parms.lockDevice = 0; |
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407 | link_parms.lock_timeout = VXI11_DEFAULT_TIMEOUT; |
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408 | link_parms.device = device; |
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409 | |||
410 | *link = (Create_LinkResp *) calloc(1, sizeof(Create_LinkResp)); |
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411 | |||
412 | if (create_link_1(&link_parms, *link, *client) != RPC_SUCCESS) { |
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413 | clnt_perror(*client, ip); |
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414 | return -2; |
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415 | } |
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416 | return 0; |
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417 | } |
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418 | |||
419 | |||
420 | /* CLOSE FUNCTIONS * |
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421 | * =============== */ |
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422 | int vxi11_close_device(const char *ip, CLIENT *client, VXI11_LINK *link) { |
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423 | int ret; |
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424 | |||
425 | ret = vxi11_close_link(ip, client, link); |
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426 | |||
427 | clnt_destroy(client); |
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428 | |||
429 | return ret; |
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430 | } |
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431 | |||
432 | int vxi11_close_link(const char *ip, CLIENT *client, VXI11_LINK *link) { |
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433 | Device_Error dev_error; |
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434 | memset(&dev_error, 0, sizeof(dev_error)); |
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435 | |||
436 | if (destroy_link_1(&link->lid, &dev_error, client) != RPC_SUCCESS) { |
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437 | clnt_perror(client,ip); |
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438 | return -1; |
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439 | } |
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440 | |||
441 | return 0; |
||
442 | } |
||
443 | |||
444 | |||
445 | /* SEND FUNCTIONS * |
||
446 | * ============== */ |
||
447 | |||
448 | /* A _lot_ of the time we are sending text strings, and can safely rely on |
||
449 | * strlen(cmd). */ |
||
450 | int vxi11_send(CLIENT *client, VXI11_LINK *link, const char *cmd) { |
||
451 | return vxi11_send(client, link, cmd, strlen(cmd)); |
||
452 | } |
||
453 | |||
454 | /* We still need the version of the function where the length is set explicitly |
||
455 | * though, for when we are sending fixed length data blocks. */ |
||
456 | int vxi11_send(CLIENT *client, VXI11_LINK *link, const char *cmd, unsigned long len) { |
||
457 | Device_WriteParms write_parms; |
||
458 | unsigned int bytes_left = len; |
||
459 | char *send_cmd; |
||
460 | |||
461 | send_cmd = new char[len]; |
||
462 | memcpy(send_cmd, cmd, len); |
||
463 | |||
464 | write_parms.lid = link->lid; |
||
465 | write_parms.io_timeout = VXI11_DEFAULT_TIMEOUT; |
||
466 | write_parms.lock_timeout = VXI11_DEFAULT_TIMEOUT; |
||
467 | |||
468 | /* We can only write (link->maxRecvSize) bytes at a time, so we sit in a loop, |
||
469 | * writing a chunk at a time, until we're done. */ |
||
470 | |||
471 | do { |
||
472 | Device_WriteResp write_resp; |
||
473 | memset(&write_resp, 0, sizeof(write_resp)); |
||
474 | |||
475 | if (bytes_left <= link->maxRecvSize) { |
||
476 | write_parms.flags = 8; |
||
477 | write_parms.data.data_len = bytes_left; |
||
478 | } |
||
479 | else { |
||
480 | write_parms.flags = 0; |
||
481 | /* We need to check that maxRecvSize is a sane value (ie >0). Believe it |
||
482 | * or not, on some versions of Agilent Infiniium scope firmware the scope |
||
483 | * returned "0", which breaks Rule B.6.3 of the VXI-11 protocol. Nevertheless |
||
484 | * we need to catch this, otherwise the program just hangs. */ |
||
485 | if (link->maxRecvSize > 0) { |
||
486 | write_parms.data.data_len = link->maxRecvSize; |
||
487 | } |
||
488 | else { |
||
489 | write_parms.data.data_len = 4096; /* pretty much anything should be able to cope with 4kB */ |
||
490 | } |
||
491 | } |
||
492 | write_parms.data.data_val = send_cmd + (len - bytes_left); |
||
493 | |||
494 | if(device_write_1(&write_parms, &write_resp, client) != RPC_SUCCESS) { |
||
495 | delete[] send_cmd; |
||
496 | return -VXI11_NULL_WRITE_RESP; /* The instrument did not acknowledge the write, just completely |
||
497 | dropped it. There was no vxi11 comms error as such, the |
||
498 | instrument is just being rude. Usually occurs when the instrument |
||
499 | is busy. If we don't check this first, then the following |
||
500 | line causes a seg fault */ |
||
501 | } |
||
502 | if (write_resp.error != 0) { |
||
503 | printf("vxi11_user: write error: %d\n", (int)write_resp.error); |
||
504 | delete[] send_cmd; |
||
505 | return -(write_resp.error); |
||
506 | } |
||
507 | bytes_left -= write_resp.size; |
||
508 | } while (bytes_left > 0); |
||
509 | |||
510 | delete[] send_cmd; |
||
511 | return 0; |
||
512 | } |
||
513 | |||
514 | |||
515 | /* RECEIVE FUNCTIONS * |
||
516 | * ================= */ |
||
517 | |||
518 | // It appeared that this function wasn't correctly dealing with more data available than specified in len. |
||
519 | // This patch attempts to fix this issue. RDP 2007/8/13 |
||
520 | |||
521 | /* wrapper, for default timeout */ long vxi11_receive(CLIENT *client, VXI11_LINK *link, char *buffer, unsigned long len) { return vxi11_receive(client, link, buffer, len, VXI11_READ_TIMEOUT); |
||
522 | } |
||
523 | |||
524 | #define RCV_END_BIT 0x04 // An end indicator has been read |
||
525 | #define RCV_CHR_BIT 0x02 // A termchr is set in flags and a character which matches termChar is transferred |
||
526 | #define RCV_REQCNT_BIT 0x01 // requestSize bytes have been transferred. This includes a request size of zero. |
||
527 | |||
528 | long vxi11_receive(CLIENT *client, VXI11_LINK *link, char *buffer, unsigned long len, unsigned long timeout) { |
||
529 | Device_ReadParms read_parms; |
||
530 | Device_ReadResp read_resp; |
||
531 | unsigned long curr_pos = 0; |
||
532 | |||
533 | read_parms.lid = link->lid; |
||
534 | read_parms.requestSize = len; |
||
535 | read_parms.io_timeout = timeout; /* in ms */ |
||
536 | read_parms.lock_timeout = timeout; /* in ms */ |
||
537 | read_parms.flags = 0; |
||
538 | read_parms.termChar = 0; |
||
539 | |||
540 | do { |
||
541 | memset(&read_resp, 0, sizeof(read_resp)); |
||
542 | |||
543 | read_resp.data.data_val = buffer + curr_pos; |
||
544 | read_parms.requestSize = len - curr_pos; // Never request more total data than originally specified in len |
||
545 | |||
546 | if(device_read_1(&read_parms, &read_resp, client) != RPC_SUCCESS) { |
||
547 | return -VXI11_NULL_READ_RESP; /* there is nothing to read. Usually occurs after sending a query |
||
548 | which times out on the instrument. If we don't check this first, |
||
549 | then the following line causes a seg fault */ |
||
550 | } |
||
551 | if (read_resp.error != 0) { |
||
552 | /* Read failed for reason specified in error code. |
||
553 | * (From published VXI-11 protocol, section B.5.2) |
||
554 | * 0 no error |
||
555 | * 1 syntax error |
||
556 | * 3 device not accessible |
||
557 | * 4 invalid link identifier |
||
558 | * 5 parameter error |
||
559 | * 6 channel not established |
||
560 | * 8 operation not supported |
||
561 | * 9 out of resources |
||
562 | * 11 device locked by another link |
||
563 | * 12 no lock held by this link |
||
564 | * 15 I/O timeout |
||
565 | * 17 I/O error |
||
566 | * 21 invalid address |
||
567 | * 23 abort |
||
568 | * 29 channel already established |
||
569 | */ |
||
570 | |||
571 | printf("vxi11_user: read error: %d\n", (int)read_resp.error); |
||
572 | return -(read_resp.error); |
||
573 | } |
||
574 | |||
575 | if((curr_pos + read_resp.data.data_len) <= len) { |
||
576 | curr_pos += read_resp.data.data_len; |
||
577 | } |
||
578 | if( (read_resp.reason & RCV_END_BIT) || (read_resp.reason & RCV_CHR_BIT) ) { |
||
579 | break; |
||
580 | } |
||
581 | else if( curr_pos == len ) { |
||
582 | printf("xvi11_user: read error: buffer too small. Read %d bytes without hitting terminator.\n", (int)curr_pos ); |
||
583 | return -100; |
||
584 | } |
||
585 | } while(1); |
||
586 | return (curr_pos); /*actual number of bytes received*/ |
||
587 | |||
588 | } |
||
589 |