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/samples/pktgen/functions.sh

https://github.com/kvaneesh/linux
Shell | 339 lines | 235 code | 54 blank | 50 comment | 61 complexity | e838ccf0105375aae1b1be015405c631 MD5 | raw file
  1. #
  2. # Common functions used by pktgen scripts
  3. # - Depending on bash 3 (or higher) syntax
  4. #
  5. # Author: Jesper Dangaaard Brouer
  6. # License: GPL
  7. set -o errexit
  8. ## -- General shell logging cmds --
  9. function err() {
  10. local exitcode=$1
  11. shift
  12. echo "ERROR: $@" >&2
  13. exit $exitcode
  14. }
  15. function warn() {
  16. echo "WARN : $@" >&2
  17. }
  18. function info() {
  19. if [[ -n "$VERBOSE" ]]; then
  20. echo "INFO : $@" >&2
  21. fi
  22. }
  23. ## -- Pktgen proc config commands -- ##
  24. export PROC_DIR=/proc/net/pktgen
  25. #
  26. # Three different shell functions for configuring the different
  27. # components of pktgen:
  28. # pg_ctrl(), pg_thread() and pg_set().
  29. #
  30. # These functions correspond to pktgens different components.
  31. # * pg_ctrl() control "pgctrl" (/proc/net/pktgen/pgctrl)
  32. # * pg_thread() control the kernel threads and binding to devices
  33. # * pg_set() control setup of individual devices
  34. function pg_ctrl() {
  35. local proc_file="pgctrl"
  36. proc_cmd ${proc_file} "$@"
  37. }
  38. function pg_thread() {
  39. local thread=$1
  40. local proc_file="kpktgend_${thread}"
  41. shift
  42. proc_cmd ${proc_file} "$@"
  43. }
  44. function pg_set() {
  45. local dev=$1
  46. local proc_file="$dev"
  47. shift
  48. proc_cmd ${proc_file} "$@"
  49. }
  50. # More generic replacement for pgset(), that does not depend on global
  51. # variable for proc file.
  52. function proc_cmd() {
  53. local result
  54. local proc_file=$1
  55. local status=0
  56. # after shift, the remaining args are contained in $@
  57. shift
  58. local proc_ctrl=${PROC_DIR}/$proc_file
  59. if [[ ! -e "$proc_ctrl" ]]; then
  60. err 3 "proc file:$proc_ctrl does not exists (dev added to thread?)"
  61. else
  62. if [[ ! -w "$proc_ctrl" ]]; then
  63. err 4 "proc file:$proc_ctrl not writable, not root?!"
  64. fi
  65. fi
  66. if [[ "$DEBUG" == "yes" ]]; then
  67. echo "cmd: $@ > $proc_ctrl"
  68. fi
  69. # Quoting of "$@" is important for space expansion
  70. echo "$@" > "$proc_ctrl" || status=$?
  71. if [[ "$proc_file" != "pgctrl" ]]; then
  72. result=$(grep "Result: OK:" $proc_ctrl) || true
  73. if [[ "$result" == "" ]]; then
  74. grep "Result:" $proc_ctrl >&2
  75. fi
  76. fi
  77. if (( $status != 0 )); then
  78. err 5 "Write error($status) occurred cmd: \"$@ > $proc_ctrl\""
  79. fi
  80. }
  81. # Old obsolete "pgset" function, with slightly improved err handling
  82. function pgset() {
  83. local result
  84. if [[ "$DEBUG" == "yes" ]]; then
  85. echo "cmd: $1 > $PGDEV"
  86. fi
  87. echo $1 > $PGDEV
  88. local status=$?
  89. result=`cat $PGDEV | fgrep "Result: OK:"`
  90. if [[ "$result" == "" ]]; then
  91. cat $PGDEV | fgrep Result:
  92. fi
  93. if (( $status != 0 )); then
  94. err 5 "Write error($status) occurred cmd: \"$1 > $PGDEV\""
  95. fi
  96. }
  97. if [[ -z "$APPEND" ]]; then
  98. if [[ $EUID -eq 0 ]]; then
  99. # Cleanup pktgen setup on exit if thats not "append mode"
  100. trap 'pg_ctrl "reset"' EXIT
  101. fi
  102. fi
  103. ## -- General shell tricks --
  104. function root_check_run_with_sudo() {
  105. # Trick so, program can be run as normal user, will just use "sudo"
  106. # call as root_check_run_as_sudo "$@"
  107. if [ "$EUID" -ne 0 ]; then
  108. if [ -x $0 ]; then # Directly executable use sudo
  109. info "Not root, running with sudo"
  110. sudo -E "$0" "$@"
  111. exit $?
  112. fi
  113. err 4 "cannot perform sudo run of $0"
  114. fi
  115. }
  116. # Exact input device's NUMA node info
  117. function get_iface_node()
  118. {
  119. local node=$(</sys/class/net/$1/device/numa_node)
  120. if [[ $node == -1 ]]; then
  121. echo 0
  122. else
  123. echo $node
  124. fi
  125. }
  126. # Given an Dev/iface, get its queues' irq numbers
  127. function get_iface_irqs()
  128. {
  129. local IFACE=$1
  130. local queues="${IFACE}-.*TxRx"
  131. irqs=$(grep "$queues" /proc/interrupts | cut -f1 -d:)
  132. [ -z "$irqs" ] && irqs=$(grep $IFACE /proc/interrupts | cut -f1 -d:)
  133. [ -z "$irqs" ] && irqs=$(for i in `ls -Ux /sys/class/net/$IFACE/device/msi_irqs` ;\
  134. do grep "$i:.*TxRx" /proc/interrupts | grep -v fdir | cut -f 1 -d : ;\
  135. done)
  136. [ -z "$irqs" ] && err 3 "Could not find interrupts for $IFACE"
  137. echo $irqs
  138. }
  139. # Given a NUMA node, return cpu ids belonging to it.
  140. function get_node_cpus()
  141. {
  142. local node=$1
  143. local node_cpu_list
  144. local node_cpu_range_list=`cut -f1- -d, --output-delimiter=" " \
  145. /sys/devices/system/node/node$node/cpulist`
  146. for cpu_range in $node_cpu_range_list
  147. do
  148. node_cpu_list="$node_cpu_list "`seq -s " " ${cpu_range//-/ }`
  149. done
  150. echo $node_cpu_list
  151. }
  152. # Check $1 is in between $2, $3 ($2 <= $1 <= $3)
  153. function in_between() { [[ ($1 -ge $2) && ($1 -le $3) ]] ; }
  154. # Extend shrunken IPv6 address.
  155. # fe80::42:bcff:fe84:e10a => fe80:0:0:0:42:bcff:fe84:e10a
  156. function extend_addr6()
  157. {
  158. local addr=$1
  159. local sep=: sep2=::
  160. local sep_cnt=$(tr -cd $sep <<< $1 | wc -c)
  161. local shrink
  162. # separator count should be (2 <= $sep_cnt <= 7)
  163. if ! (in_between $sep_cnt 2 7); then
  164. err 5 "Invalid IP6 address: $1"
  165. fi
  166. # if shrink '::' occurs multiple, it's malformed.
  167. shrink=( $(egrep -o "$sep{2,}" <<< $addr) )
  168. if [[ ${#shrink[@]} -ne 0 ]]; then
  169. if [[ ${#shrink[@]} -gt 1 || ( ${shrink[0]} != $sep2 ) ]]; then
  170. err 5 "Invalid IP6 address: $1"
  171. fi
  172. fi
  173. # add 0 at begin & end, and extend addr by adding :0
  174. [[ ${addr:0:1} == $sep ]] && addr=0${addr}
  175. [[ ${addr: -1} == $sep ]] && addr=${addr}0
  176. echo "${addr/$sep2/$(printf ':0%.s' $(seq $[8-sep_cnt])):}"
  177. }
  178. # Given a single IP(v4/v6) address, whether it is valid.
  179. function validate_addr()
  180. {
  181. # check function is called with (funcname)6
  182. [[ ${FUNCNAME[1]: -1} == 6 ]] && local IP6=6
  183. local bitlen=$[ IP6 ? 128 : 32 ]
  184. local len=$[ IP6 ? 8 : 4 ]
  185. local max=$[ 2**(len*2)-1 ]
  186. local net prefix
  187. local addr sep
  188. IFS='/' read net prefix <<< $1
  189. [[ $IP6 ]] && net=$(extend_addr6 $net)
  190. # if prefix exists, check (0 <= $prefix <= $bitlen)
  191. if [[ -n $prefix ]]; then
  192. if ! (in_between $prefix 0 $bitlen); then
  193. err 5 "Invalid prefix: /$prefix"
  194. fi
  195. fi
  196. # set separator for each IP(v4/v6)
  197. [[ $IP6 ]] && sep=: || sep=.
  198. IFS=$sep read -a addr <<< $net
  199. # array length
  200. if [[ ${#addr[@]} != $len ]]; then
  201. err 5 "Invalid IP$IP6 address: $1"
  202. fi
  203. # check each digit (0 <= $digit <= $max)
  204. for digit in "${addr[@]}"; do
  205. [[ $IP6 ]] && digit=$[ 16#$digit ]
  206. if ! (in_between $digit 0 $max); then
  207. err 5 "Invalid IP$IP6 address: $1"
  208. fi
  209. done
  210. return 0
  211. }
  212. function validate_addr6() { validate_addr $@ ; }
  213. # Given a single IP(v4/v6) or CIDR, return minimum and maximum IP addr.
  214. function parse_addr()
  215. {
  216. # check function is called with (funcname)6
  217. [[ ${FUNCNAME[1]: -1} == 6 ]] && local IP6=6
  218. local net prefix
  219. local min_ip max_ip
  220. IFS='/' read net prefix <<< $1
  221. [[ $IP6 ]] && net=$(extend_addr6 $net)
  222. if [[ -z $prefix ]]; then
  223. min_ip=$net
  224. max_ip=$net
  225. else
  226. # defining array for converting Decimal 2 Binary
  227. # 00000000 00000001 00000010 00000011 00000100 ...
  228. local d2b='{0..1}{0..1}{0..1}{0..1}{0..1}{0..1}{0..1}{0..1}'
  229. [[ $IP6 ]] && d2b+=$d2b
  230. eval local D2B=($d2b)
  231. local bitlen=$[ IP6 ? 128 : 32 ]
  232. local remain=$[ bitlen-prefix ]
  233. local octet=$[ IP6 ? 16 : 8 ]
  234. local min_mask max_mask
  235. local min max
  236. local ip_bit
  237. local ip sep
  238. # set separator for each IP(v4/v6)
  239. [[ $IP6 ]] && sep=: || sep=.
  240. IFS=$sep read -ra ip <<< $net
  241. min_mask="$(printf '1%.s' $(seq $prefix))$(printf '0%.s' $(seq $remain))"
  242. max_mask="$(printf '0%.s' $(seq $prefix))$(printf '1%.s' $(seq $remain))"
  243. # calculate min/max ip with &,| operator
  244. for i in "${!ip[@]}"; do
  245. digit=$[ IP6 ? 16#${ip[$i]} : ${ip[$i]} ]
  246. ip_bit=${D2B[$digit]}
  247. idx=$[ octet*i ]
  248. min[$i]=$[ 2#$ip_bit & 2#${min_mask:$idx:$octet} ]
  249. max[$i]=$[ 2#$ip_bit | 2#${max_mask:$idx:$octet} ]
  250. [[ $IP6 ]] && { min[$i]=$(printf '%X' ${min[$i]});
  251. max[$i]=$(printf '%X' ${max[$i]}); }
  252. done
  253. min_ip=$(IFS=$sep; echo "${min[*]}")
  254. max_ip=$(IFS=$sep; echo "${max[*]}")
  255. fi
  256. echo $min_ip $max_ip
  257. }
  258. function parse_addr6() { parse_addr $@ ; }
  259. # Given a single or range of port(s), return minimum and maximum port number.
  260. function parse_ports()
  261. {
  262. local port_str=$1
  263. local port_list
  264. local min_port
  265. local max_port
  266. IFS="-" read -ra port_list <<< $port_str
  267. min_port=${port_list[0]}
  268. max_port=${port_list[1]:-$min_port}
  269. echo $min_port $max_port
  270. }
  271. # Given a minimum and maximum port, verify port number.
  272. function validate_ports()
  273. {
  274. local min_port=$1
  275. local max_port=$2
  276. # 1 <= port <= 65535
  277. if (in_between $min_port 1 65535); then
  278. if (in_between $max_port 1 65535); then
  279. if [[ $min_port -le $max_port ]]; then
  280. return 0
  281. fi
  282. fi
  283. fi
  284. err 5 "Invalid port(s): $min_port-$max_port"
  285. }