-d : ($DEST_IP) destination IP
-m : ($DST_MAC) destination MAC-addr
-t : ($THREADS) threads to start
+ -f : ($F_THREAD) index of first thread (zero indexed CPU number)
-c : ($SKB_CLONE) SKB clones send before alloc new SKB
-n : ($COUNT) num messages to send per thread, 0 means indefinitely
-b : ($BURST) HW level bursting of SKBs
echo " -d : (\$DEST_IP) destination IP"
echo " -m : (\$DST_MAC) destination MAC-addr"
echo " -t : (\$THREADS) threads to start"
+ echo " -f : (\$F_THREAD) index of first thread (zero indexed CPU number)"
echo " -c : (\$SKB_CLONE) SKB clones send before alloc new SKB"
echo " -n : (\$COUNT) num messages to send per thread, 0 means indefinitely"
echo " -b : (\$BURST) HW level bursting of SKBs"
## --- Parse command line arguments / parameters ---
## echo "Commandline options:"
-while getopts "s:i:d:m:t:c:n:b:vxh6" option; do
+while getopts "s:i:d:m:f:t:c:n:b:vxh6" option; do
case $option in
i) # interface
export DEV=$OPTARG
export DST_MAC=$OPTARG
info "Destination MAC set to: DST_MAC=$DST_MAC"
;;
+ f)
+ export F_THREAD=$OPTARG
+ info "Index of first thread (zero indexed CPU number): $F_THREAD"
+ ;;
t)
export THREADS=$OPTARG
- export CPU_THREADS=$OPTARG
- let "CPU_THREADS -= 1"
- info "Number of threads to start: $THREADS (0 to $CPU_THREADS)"
+ info "Number of threads to start: $THREADS"
;;
c)
export CLONE_SKB=$OPTARG
info "Default packet size set to: set to: $PKT_SIZE bytes"
fi
+if [ -z "$F_THREAD" ]; then
+ # First thread (F_THREAD) reference the zero indexed CPU number
+ export F_THREAD=0
+fi
+
if [ -z "$THREADS" ]; then
- # Zero CPU threads means one thread, because CPU numbers are zero indexed
- export CPU_THREADS=0
export THREADS=1
fi
+export L_THREAD=$(( THREADS + F_THREAD - 1 ))
+
if [ -z "$DEV" ]; then
usage
err 2 "Please specify output device"
pg_ctrl "reset"
# Threads are specified with parameter -t value in $THREADS
-for ((thread = 0; thread < $THREADS; thread++)); do
+for ((thread = $F_THREAD; thread <= $L_THREAD; thread++)); do
# The device name is extended with @name, using thread number to
# make then unique, but any name will do.
dev=${DEV}@${thread}
echo "Done" >&2
# Print results
-for ((thread = 0; thread < $THREADS; thread++)); do
+for ((thread = $F_THREAD; thread <= $L_THREAD; thread++)); do
dev=${DEV}@${thread}
echo "Device: $dev"
cat /proc/net/pktgen/$dev | grep -A2 "Result:"
pg_ctrl "reset"
# Threads are specified with parameter -t value in $THREADS
-for ((thread = 0; thread < $THREADS; thread++)); do
+for ((thread = $F_THREAD; thread <= $L_THREAD; thread++)); do
# The device name is extended with @name, using thread number to
# make then unique, but any name will do.
dev=${DEV}@${thread}
echo "Done" >&2
# Print results
-for ((thread = 0; thread < $THREADS; thread++)); do
+for ((thread = $F_THREAD; thread <= $L_THREAD; thread++)); do
dev=${DEV}@${thread}
echo "Device: $dev"
cat /proc/net/pktgen/$dev | grep -A2 "Result:"
pg_ctrl "reset"
# Threads are specified with parameter -t value in $THREADS
-for ((thread = 0; thread < $THREADS; thread++)); do
+for ((thread = $F_THREAD; thread <= $L_THREAD; thread++)); do
# The device name is extended with @name, using thread number to
# make then unique, but any name will do.
dev=${DEV}@${thread}
echo "Done" >&2
# Print results
-for ((thread = 0; thread < $THREADS; thread++)); do
+for ((thread = $F_THREAD; thread <= $L_THREAD; thread++)); do
dev=${DEV}@${thread}
echo "Device: $dev"
cat /proc/net/pktgen/$dev | grep -A2 "Result:"
pg_ctrl "reset"
# Threads are specified with parameter -t value in $THREADS
-for ((thread = 0; thread < $THREADS; thread++)); do
+for ((thread = $F_THREAD; thread <= $L_THREAD; thread++)); do
dev=${DEV}@${thread}
# Add remove all other devices and add_device $dev to thread
# Run if user hits control-c
function control_c() {
# Print results
- for ((thread = 0; thread < $THREADS; thread++)); do
+ for ((thread = $F_THREAD; thread <= $L_THREAD; thread++)); do
dev=${DEV}@${thread}
echo "Device: $dev"
cat /proc/net/pktgen/$dev | grep -A2 "Result:"
pg_ctrl "reset"
# Threads are specified with parameter -t value in $THREADS
-for ((thread = 0; thread < $THREADS; thread++)); do
+for ((thread = $F_THREAD; thread <= $L_THREAD; thread++)); do
dev=${DEV}@${thread}
# Add remove all other devices and add_device $dev to thread
# Run if user hits control-c
function print_result() {
# Print results
- for ((thread = 0; thread < $THREADS; thread++)); do
+ for ((thread = $F_THREAD; thread <= $L_THREAD; thread++)); do
dev=${DEV}@${thread}
echo "Device: $dev"
cat /proc/net/pktgen/$dev | grep -A2 "Result:"
pg_ctrl "reset"
# Threads are specified with parameter -t value in $THREADS
-for ((thread = 0; thread < $THREADS; thread++)); do
+for ((thread = $F_THREAD; thread <= $L_THREAD; thread++)); do
dev=${DEV}@${thread}
# Add remove all other devices and add_device $dev to thread
# Run if user hits control-c
function print_result() {
# Print results
- for ((thread = 0; thread < $THREADS; thread++)); do
+ for ((thread = $F_THREAD; thread <= $L_THREAD; thread++)); do
dev=${DEV}@${thread}
echo "Device: $dev"
cat /proc/net/pktgen/$dev | grep -A2 "Result:"