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323 lines
9.7 KiB
323 lines
9.7 KiB
#!/bin/bash -eu |
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# Copyright (c) 2010 The Chromium OS Authors. All rights reserved. |
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# Use of this source code is governed by a BSD-style license that can be |
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# found in the LICENSE file. |
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# |
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# Run tests for cgpt utility. |
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# Load common constants and variables. |
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. "$(dirname "$0")/common.sh" |
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CGPT=$(readlink -f "$1") |
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[ -x "$CGPT" ] || error "Can't execute $CGPT" |
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MTD="${@:2}" |
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# Run tests in a dedicated directory for easy cleanup or debugging. |
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DIR="${TEST_DIR}/cgpt_test_dir" |
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[ -d "$DIR" ] || mkdir -p "$DIR" |
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warning "testing $CGPT in $DIR" |
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cd "$DIR" |
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assert_fail() { |
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set +e |
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"$@" 2>/dev/null |
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if [ $? == 0 ]; then |
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error "$*" " should have failed but did not" |
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fi |
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set -e |
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} |
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# Test failure on non existing file. |
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assert_fail ${CGPT} show $MTD blah_404_haha |
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echo "Create an empty file to use as the device..." |
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NUM_SECTORS=1000 |
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DEV=fake_dev.bin |
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rm -f ${DEV} |
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dd if=/dev/zero of=${DEV} conv=notrunc bs=512 count=${NUM_SECTORS} 2>/dev/null |
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echo "Create a bunch of partitions, using the real GUID types..." |
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DATA_START=100 |
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DATA_SIZE=20 |
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DATA_LABEL="data stuff" |
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DATA_GUID='ebd0a0a2-b9e5-4433-87c0-68b6b72699c7' |
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DATA_NUM=1 |
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KERN_START=200 |
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KERN_SIZE=30 |
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KERN_LABEL="kernel stuff" |
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KERN_GUID='fe3a2a5d-4f32-41a7-b725-accc3285a309' |
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KERN_NUM=2 |
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ROOTFS_START=300 |
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ROOTFS_SIZE=40 |
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ROOTFS_LABEL="rootfs stuff" |
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ROOTFS_GUID='3cb8e202-3b7e-47dd-8a3c-7ff2a13cfcec' |
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ROOTFS_NUM=3 |
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ESP_START=400 |
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ESP_SIZE=50 |
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ESP_LABEL="ESP stuff" |
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ESP_GUID='c12a7328-f81f-11d2-ba4b-00a0c93ec93b' |
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ESP_NUM=4 |
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FUTURE_START=500 |
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FUTURE_SIZE=60 |
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FUTURE_LABEL="future stuff" |
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FUTURE_GUID='2e0a753d-9e48-43b0-8337-b15192cb1b5e' |
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FUTURE_NUM=5 |
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RANDOM_START=600 |
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RANDOM_SIZE=70 |
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RANDOM_LABEL="random stuff" |
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RANDOM_GUID='2364a860-bf63-42fb-a83d-9ad3e057fcf5' |
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RANDOM_NUM=6 |
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$CGPT create $MTD ${DEV} |
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$CGPT add $MTD -b ${DATA_START} -s ${DATA_SIZE} -t ${DATA_GUID} \ |
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-l "${DATA_LABEL}" ${DEV} |
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$CGPT add $MTD -b ${KERN_START} -s ${KERN_SIZE} -t ${KERN_GUID} \ |
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-l "${KERN_LABEL}" ${DEV} |
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$CGPT add $MTD -b ${ROOTFS_START} -s ${ROOTFS_SIZE} -t ${ROOTFS_GUID} \ |
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-l "${ROOTFS_LABEL}" ${DEV} |
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$CGPT add $MTD -b ${ESP_START} -s ${ESP_SIZE} -t ${ESP_GUID} \ |
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-l "${ESP_LABEL}" ${DEV} |
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$CGPT add $MTD -b ${FUTURE_START} -s ${FUTURE_SIZE} -t ${FUTURE_GUID} \ |
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-l "${FUTURE_LABEL}" ${DEV} |
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$CGPT add $MTD -b ${RANDOM_START} -s ${RANDOM_SIZE} -t ${RANDOM_GUID} \ |
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-l "${RANDOM_LABEL}" ${DEV} |
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echo "Extract the start and size of given partitions..." |
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X=$($CGPT show $MTD -b -i $DATA_NUM ${DEV}) |
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Y=$($CGPT show $MTD -s -i $DATA_NUM ${DEV}) |
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[ "$X $Y" = "$DATA_START $DATA_SIZE" ] || error |
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X=$($CGPT show $MTD -b -i $KERN_NUM ${DEV}) |
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Y=$($CGPT show $MTD -s -i $KERN_NUM ${DEV}) |
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[ "$X $Y" = "$KERN_START $KERN_SIZE" ] || error |
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X=$($CGPT show $MTD -b -i $ROOTFS_NUM ${DEV}) |
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Y=$($CGPT show $MTD -s -i $ROOTFS_NUM ${DEV}) |
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[ "$X $Y" = "$ROOTFS_START $ROOTFS_SIZE" ] || error |
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X=$($CGPT show $MTD -b -i $ESP_NUM ${DEV}) |
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Y=$($CGPT show $MTD -s -i $ESP_NUM ${DEV}) |
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[ "$X $Y" = "$ESP_START $ESP_SIZE" ] || error |
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X=$($CGPT show $MTD -b -i $FUTURE_NUM ${DEV}) |
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Y=$($CGPT show $MTD -s -i $FUTURE_NUM ${DEV}) |
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[ "$X $Y" = "$FUTURE_START $FUTURE_SIZE" ] || error |
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X=$($CGPT show $MTD -b -i $RANDOM_NUM ${DEV}) |
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Y=$($CGPT show $MTD -s -i $RANDOM_NUM ${DEV}) |
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[ "$X $Y" = "$RANDOM_START $RANDOM_SIZE" ] || error |
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echo "Change the beginning..." |
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DATA_START=$((DATA_START + 10)) |
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$CGPT add $MTD -i 1 -b ${DATA_START} ${DEV} || error |
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X=$($CGPT show $MTD -b -i 1 ${DEV}) |
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[ "$X" = "$DATA_START" ] || error |
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echo "Change the size..." |
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DATA_SIZE=$((DATA_SIZE + 10)) |
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$CGPT add $MTD -i 1 -s ${DATA_SIZE} ${DEV} || error |
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X=$($CGPT show $MTD -s -i 1 ${DEV}) |
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[ "$X" = "$DATA_SIZE" ] || error |
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echo "Change the type..." |
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$CGPT add $MTD -i 1 -t reserved ${DEV} || error |
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X=$($CGPT show $MTD -t -i 1 ${DEV} | tr 'A-Z' 'a-z') |
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[ "$X" = "$FUTURE_GUID" ] || error |
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# arbitrary value |
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$CGPT add $MTD -i 1 -t 610a563a-a55c-4ae0-ab07-86e5bb9db67f ${DEV} || error |
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X=$($CGPT show $MTD -t -i 1 ${DEV}) |
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[ "$X" = "610A563A-A55C-4AE0-AB07-86E5BB9DB67F" ] || error |
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$CGPT add $MTD -i 1 -t data ${DEV} || error |
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X=$($CGPT show $MTD -t -i 1 ${DEV} | tr 'A-Z' 'a-z') |
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[ "$X" = "$DATA_GUID" ] || error |
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echo "Set the boot partition.." |
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$CGPT boot $MTD -i ${KERN_NUM} ${DEV} >/dev/null |
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echo "Check the PMBR's idea of the boot partition..." |
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X=$($CGPT boot $MTD ${DEV}) |
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Y=$($CGPT show $MTD -u -i $KERN_NUM $DEV) |
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[ "$X" = "$Y" ] || error |
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echo "Test the cgpt prioritize command..." |
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# Input: sequence of priorities |
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# Output: ${DEV} has kernel partitions with the given priorities |
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make_pri() { |
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local idx=0 |
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$CGPT create $MTD ${DEV} |
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for pri in "$@"; do |
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idx=$((idx+1)) |
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$CGPT add $MTD -t kernel -l "kern$idx" -b $((100 + 2 * $idx)) -s 1 -P $pri ${DEV} |
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done |
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} |
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# Output: returns string containing priorities of all kernels |
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get_pri() { |
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echo $( |
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for idx in $($CGPT find $MTD -t kernel ${DEV} | sed -e s@${DEV}@@); do |
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$CGPT show $MTD -i $idx -P ${DEV} |
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done |
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) |
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} |
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# Input: list of priorities |
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# Operation: expects ${DEV} to contain those kernel priorities |
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assert_pri() { |
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local expected="$*" |
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local actual=$(get_pri) |
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[ "$actual" = "$expected" ] || \ |
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error 1 "expected priority \"$expected\", actual priority \"$actual\"" |
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} |
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# no kernels at all. This should do nothing. |
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$CGPT create $MTD ${DEV} |
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$CGPT add $MTD -t rootfs -b 100 -s 1 ${DEV} |
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$CGPT prioritize $MTD ${DEV} |
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assert_pri "" |
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# common install/upgrade sequence |
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make_pri 2 0 0 |
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$CGPT prioritize $MTD -i 1 ${DEV} |
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assert_pri 1 0 0 |
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$CGPT prioritize $MTD -i 2 ${DEV} |
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assert_pri 1 2 0 |
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$CGPT prioritize $MTD -i 1 ${DEV} |
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assert_pri 2 1 0 |
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$CGPT prioritize $MTD -i 2 ${DEV} |
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assert_pri 1 2 0 |
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# lots of kernels, all same starting priority, should go to priority 1 |
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make_pri 8 8 8 8 8 8 8 8 8 8 8 0 0 8 |
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$CGPT prioritize $MTD ${DEV} |
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assert_pri 1 1 1 1 1 1 1 1 1 1 1 0 0 1 |
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# now raise them all up again |
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$CGPT prioritize $MTD -P 4 ${DEV} |
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assert_pri 4 4 4 4 4 4 4 4 4 4 4 0 0 4 |
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# set one of them higher, should leave the rest alone |
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$CGPT prioritize $MTD -P 5 -i 3 ${DEV} |
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assert_pri 4 4 5 4 4 4 4 4 4 4 4 0 0 4 |
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# set one of them lower, should bring the rest down |
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$CGPT prioritize $MTD -P 3 -i 4 ${DEV} |
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assert_pri 1 1 2 3 1 1 1 1 1 1 1 0 0 1 |
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# raise a group by including the friends of one partition |
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$CGPT prioritize $MTD -P 6 -i 1 -f ${DEV} |
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assert_pri 6 6 4 5 6 6 6 6 6 6 6 0 0 6 |
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# resurrect one, should not affect the others |
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make_pri 0 0 0 0 0 0 0 0 0 0 0 0 0 0 |
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$CGPT prioritize $MTD -i 2 ${DEV} |
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assert_pri 0 1 0 0 0 0 0 0 0 0 0 0 0 0 |
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# resurrect one and all its friends |
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make_pri 0 0 0 0 0 0 0 0 1 2 0 0 0 0 |
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$CGPT prioritize $MTD -P 5 -i 2 -f ${DEV} |
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assert_pri 5 5 5 5 5 5 5 5 3 4 5 5 5 5 |
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# no options should maintain the same order |
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$CGPT prioritize $MTD ${DEV} |
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assert_pri 3 3 3 3 3 3 3 3 1 2 3 3 3 3 |
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# squish all the ranks |
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make_pri 1 1 2 2 3 3 4 4 5 5 0 6 7 7 |
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$CGPT prioritize $MTD -P 6 ${DEV} |
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assert_pri 1 1 1 1 2 2 3 3 4 4 0 5 6 6 |
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# squish the ranks by not leaving room |
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make_pri 1 1 2 2 3 3 4 4 5 5 0 6 7 7 |
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$CGPT prioritize $MTD -P 7 -i 3 ${DEV} |
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assert_pri 1 1 7 1 2 2 3 3 4 4 0 5 6 6 |
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# squish the ranks while bringing the friends along |
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make_pri 1 1 2 2 3 3 4 4 5 5 0 6 7 7 |
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$CGPT prioritize $MTD -P 6 -i 3 -f ${DEV} |
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assert_pri 1 1 6 6 1 1 2 2 3 3 0 4 5 5 |
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# squish them pretty hard |
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make_pri 1 1 2 2 3 3 4 4 5 5 0 6 7 7 |
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$CGPT prioritize $MTD -P 2 ${DEV} |
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assert_pri 1 1 1 1 1 1 1 1 1 1 0 1 2 2 |
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# squish them really really hard (nobody gets reduced to zero, though) |
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make_pri 1 1 2 2 3 3 4 4 5 5 0 6 7 7 |
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$CGPT prioritize $MTD -P 1 -i 3 ${DEV} |
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assert_pri 1 1 1 1 1 1 1 1 1 1 0 1 1 1 |
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make_pri 15 15 14 14 13 13 12 12 11 11 10 10 9 9 8 8 7 7 6 6 5 5 4 4 3 3 2 2 1 1 0 |
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$CGPT prioritize $MTD -i 3 ${DEV} |
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assert_pri 14 14 15 13 12 12 11 11 10 10 9 9 8 8 7 7 6 6 5 5 4 4 3 3 2 2 1 1 1 1 0 |
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$CGPT prioritize $MTD -i 5 ${DEV} |
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assert_pri 13 13 14 12 15 11 10 10 9 9 8 8 7 7 6 6 5 5 4 4 3 3 2 2 1 1 1 1 1 1 0 |
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# but if I bring friends I don't have to squish |
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$CGPT prioritize $MTD -i 1 -f ${DEV} |
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assert_pri 15 15 13 12 14 11 10 10 9 9 8 8 7 7 6 6 5 5 4 4 3 3 2 2 1 1 1 1 1 1 0 |
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# Now make sure that we don't need write access if we're just looking. |
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echo "Test read vs read-write access..." |
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chmod 0444 ${DEV} |
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# These should fail |
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$CGPT create $MTD -z ${DEV} 2>/dev/null && error |
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$CGPT add $MTD -i 2 -P 3 ${DEV} 2>/dev/null && error |
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$CGPT repair $MTD ${DEV} 2>/dev/null && error |
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$CGPT prioritize $MTD -i 3 ${DEV} 2>/dev/null && error |
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# Most 'boot' usage should fail too. |
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$CGPT boot $MTD -p ${DEV} 2>/dev/null && error |
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dd if=/dev/zero of=fake_mbr.bin bs=100 count=1 2>/dev/null |
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$CGPT boot $MTD -b fake_mbr.bin ${DEV} 2>/dev/null && error |
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$CGPT boot $MTD -i 2 ${DEV} 2>/dev/null && error |
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$CGPT boot $MTD ${DEV} >/dev/null |
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$CGPT show $MTD ${DEV} >/dev/null |
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$CGPT find $MTD -t kernel ${DEV} >/dev/null |
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# Enable write access again to test boundary in off device storage |
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chmod 600 ${DEV} |
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# GPT too small |
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dd if=/dev/zero of=${DEV} bs=5632 count=1 |
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assert_fail $CGPT create -D 1024 ${DEV} |
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# GPT is just right for 16 entries (512 + 512 + 16 * 128) * 2 = 6144 |
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dd if=/dev/zero of=${DEV} bs=6144 count=1 |
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$CGPT create -D 1024 ${DEV} |
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# Create a small 8K file to simulate Flash NOR section |
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dd if=/dev/zero of=${DEV} bs=8K count=1 |
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# Drive size is not multiple of 512 |
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assert_fail $CGPT create -D 511 ${DEV} |
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assert_fail $CGPT create -D 513 ${DEV} |
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MTD="-D 1024" |
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# Create a GPT table for a device of 1024 bytes (2 sectors) |
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$CGPT create $MTD ${DEV} |
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# Make sure number of entries is reasonable for 8KiB GPT |
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X=$($CGPT show -D 1024 -d ${DEV} | grep -c "Number of entries: 24") |
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[ "$X" = "2" ] || error |
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# This fails because header verification is off due to different drive size |
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assert_fail $CGPT show ${DEV} |
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# But this passes because we pass in correct drive size |
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$CGPT show $MTD ${DEV} |
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# This fails because beginning sector is over the size of the device |
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assert_fail $CGPT add $MTD -b 2 -s 1 -t data ${DEV} |
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# This fails because partition size is over the size of the device |
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assert_fail $CGPT add $MTD -b 0 -s 3 -t data ${DEV} |
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echo "Done." |
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happy "All tests passed."
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