Commit f1d5516ab583 introduces a test in some iotests to check if the machine is a s390-ccw-virtio and to select virtio-*-ccw rather than virtio-*-pci. We don't need that because QEMU already provides aliases to use the correct virtio interface according to the machine type. This patch removes all virtio-*-pci and virtio-*-ccw to use virtio-* instead and remove get_virtio_scsi_device(). This also enables virtio-mmio devices (virtio-*-device) Signed-off-by: Laurent Vivier <laurent@vivier.eu> Signed-off-by: Alex Bennée <alex.bennee@linaro.org> Tested-by: Philippe Mathieu-Daudé <philmd@redhat.com> Reviewed-by: Philippe Mathieu-Daudé <philmd@redhat.com> Reviewed-by: Cornelia Huck <cohuck@redhat.com> Message-Id: <20210319202335.2397060-5-laurent@vivier.eu> Message-Id: <20210323165308.15244-20-alex.bennee@linaro.org>
		
			
				
	
	
		
			435 lines
		
	
	
		
			17 KiB
		
	
	
	
		
			Python
		
	
	
		
			Executable File
		
	
	
	
	
			
		
		
	
	
			435 lines
		
	
	
		
			17 KiB
		
	
	
	
		
			Python
		
	
	
		
			Executable File
		
	
	
	
	
#!/usr/bin/env python3
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# group: throttle
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#
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# Tests for IO throttling
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#
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# Copyright (C) 2015 Red Hat, Inc.
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# Copyright (C) 2015-2016 Igalia, S.L.
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#
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# This program is free software; you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation; either version 2 of the License, or
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# (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with this program.  If not, see <http://www.gnu.org/licenses/>.
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#
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import iotests
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nsec_per_sec = 1000000000
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class ThrottleTestCase(iotests.QMPTestCase):
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    test_driver = "null-aio"
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    max_drives = 3
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    def blockstats(self, device):
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        result = self.vm.qmp("query-blockstats")
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        for r in result['return']:
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            if r['device'] == device:
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                stat = r['stats']
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                return stat['rd_bytes'], stat['rd_operations'], stat['wr_bytes'], stat['wr_operations']
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        raise Exception("Device not found for blockstats: %s" % device)
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    def required_drivers(self):
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        return [self.test_driver]
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    @iotests.skip_if_unsupported(required_drivers)
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    def setUp(self):
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        self.vm = iotests.VM()
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        for i in range(0, self.max_drives):
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            self.vm.add_drive(self.test_driver + "://", "file.read-zeroes=on")
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        self.vm.launch()
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    def tearDown(self):
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        self.vm.shutdown()
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    def configure_throttle(self, ndrives, params):
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        params['group'] = 'test'
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        # Set the I/O throttling parameters to all drives
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        for i in range(0, ndrives):
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            params['device'] = 'drive%d' % i
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            result = self.vm.qmp("block_set_io_throttle", conv_keys=False, **params)
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            self.assert_qmp(result, 'return', {})
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    def do_test_throttle(self, ndrives, seconds, params, first_drive = 0):
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        def check_limit(limit, num):
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            # IO throttling algorithm is discrete, allow 10% error so the test
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            # is more robust
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            return limit == 0 or \
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                   (num < seconds * limit * 1.1 / ndrives
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                   and num > seconds * limit * 0.9 / ndrives)
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        # Set vm clock to a known value
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        ns = seconds * nsec_per_sec
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        self.vm.qtest("clock_step %d" % ns)
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        # Submit enough requests so the throttling mechanism kicks
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        # in. The throttled requests won't be executed until we
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        # advance the virtual clock.
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        rq_size = 512
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        rd_nr = max(params['bps'] // rq_size // 2,
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                    params['bps_rd'] // rq_size,
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                    params['iops'] // 2,
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                    params['iops_rd'])
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        rd_nr *= seconds * 2
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        rd_nr //= ndrives
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        wr_nr = max(params['bps'] // rq_size // 2,
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                    params['bps_wr'] // rq_size,
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                    params['iops'] // 2,
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                    params['iops_wr'])
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        wr_nr *= seconds * 2
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        wr_nr //= ndrives
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        # Send I/O requests to all drives
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        for i in range(rd_nr):
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            for drive in range(0, ndrives):
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                idx = first_drive + drive
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                self.vm.hmp_qemu_io("drive%d" % idx, "aio_read %d %d" %
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                                    (i * rq_size, rq_size))
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        for i in range(wr_nr):
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            for drive in range(0, ndrives):
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                idx = first_drive + drive
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                self.vm.hmp_qemu_io("drive%d" % idx, "aio_write %d %d" %
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                                    (i * rq_size, rq_size))
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        # We'll store the I/O stats for each drive in these arrays
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        start_rd_bytes = [0] * ndrives
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        start_rd_iops  = [0] * ndrives
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        start_wr_bytes = [0] * ndrives
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        start_wr_iops  = [0] * ndrives
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        end_rd_bytes   = [0] * ndrives
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        end_rd_iops    = [0] * ndrives
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        end_wr_bytes   = [0] * ndrives
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        end_wr_iops    = [0] * ndrives
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        # Read the stats before advancing the clock
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        for i in range(0, ndrives):
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            idx = first_drive + i
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            start_rd_bytes[i], start_rd_iops[i], start_wr_bytes[i], \
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                start_wr_iops[i] = self.blockstats('drive%d' % idx)
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        self.vm.qtest("clock_step %d" % ns)
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        # Read the stats after advancing the clock
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        for i in range(0, ndrives):
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            idx = first_drive + i
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            end_rd_bytes[i], end_rd_iops[i], end_wr_bytes[i], \
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                end_wr_iops[i] = self.blockstats('drive%d' % idx)
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        # Check that the I/O is within the limits and evenly distributed
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        for i in range(0, ndrives):
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            rd_bytes = end_rd_bytes[i] - start_rd_bytes[i]
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            rd_iops = end_rd_iops[i] - start_rd_iops[i]
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            wr_bytes = end_wr_bytes[i] - start_wr_bytes[i]
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            wr_iops = end_wr_iops[i] - start_wr_iops[i]
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            self.assertTrue(check_limit(params['bps'], rd_bytes + wr_bytes))
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            self.assertTrue(check_limit(params['bps_rd'], rd_bytes))
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            self.assertTrue(check_limit(params['bps_wr'], wr_bytes))
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            self.assertTrue(check_limit(params['iops'], rd_iops + wr_iops))
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            self.assertTrue(check_limit(params['iops_rd'], rd_iops))
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            self.assertTrue(check_limit(params['iops_wr'], wr_iops))
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        # Allow remaining requests to finish.  We submitted twice as many to
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        # ensure the throttle limit is reached.
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        self.vm.qtest("clock_step %d" % ns)
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    # Connect N drives to a VM and test I/O in all of them
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    def test_all(self):
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        params = {"bps": 4096,
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                  "bps_rd": 4096,
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                  "bps_wr": 4096,
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                  "iops": 10,
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                  "iops_rd": 10,
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                  "iops_wr": 10,
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                 }
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        # Repeat the test with different numbers of drives
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        for ndrives in range(1, self.max_drives + 1):
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            # Pick each out of all possible params and test
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            for tk in params:
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                limits = dict([(k, 0) for k in params])
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                limits[tk] = params[tk] * ndrives
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                self.configure_throttle(ndrives, limits)
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                self.do_test_throttle(ndrives, 5, limits)
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    # Connect N drives to a VM and test I/O in just one of them a time
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    def test_one(self):
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        params = {"bps": 4096,
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                  "bps_rd": 4096,
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                  "bps_wr": 4096,
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                  "iops": 10,
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                  "iops_rd": 10,
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                  "iops_wr": 10,
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                 }
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        # Repeat the test for each one of the drives
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        for drive in range(0, self.max_drives):
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            # Pick each out of all possible params and test
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            for tk in params:
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                limits = dict([(k, 0) for k in params])
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                limits[tk] = params[tk] * self.max_drives
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                self.configure_throttle(self.max_drives, limits)
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                self.do_test_throttle(1, 5, limits, drive)
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    def test_burst(self):
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        params = {"bps": 4096,
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                  "bps_rd": 4096,
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                  "bps_wr": 4096,
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                  "iops": 10,
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                  "iops_rd": 10,
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                  "iops_wr": 10,
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                 }
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        ndrives = 1
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        # Pick each out of all possible params and test
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        for tk in params:
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            rate = params[tk] * ndrives
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            burst_rate = rate * 7
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            burst_length = 4
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            # Configure the throttling settings
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            settings = dict([(k, 0) for k in params])
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            settings[tk] = rate
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            settings['%s_max' % tk] = burst_rate
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            settings['%s_max_length' % tk] = burst_length
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            self.configure_throttle(ndrives, settings)
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            # Wait for the bucket to empty so we can do bursts
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            wait_ns = nsec_per_sec * burst_length * burst_rate // rate
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            self.vm.qtest("clock_step %d" % wait_ns)
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            # Test I/O at the max burst rate
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            limits = dict([(k, 0) for k in params])
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            limits[tk] = burst_rate
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            self.do_test_throttle(ndrives, burst_length, limits)
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            # Now test I/O at the normal rate
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            limits[tk] = rate
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            self.do_test_throttle(ndrives, 5, limits)
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    # Test that removing a drive from a throttle group should not
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    # affect the remaining members of the group.
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    # https://bugzilla.redhat.com/show_bug.cgi?id=1535914
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    def test_remove_group_member(self):
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        # Create a throttle group with two drives
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        # and set a 4 KB/s read limit.
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        params = {"bps": 0,
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                  "bps_rd": 4096,
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                  "bps_wr": 0,
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                  "iops": 0,
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                  "iops_rd": 0,
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                  "iops_wr": 0 }
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        self.configure_throttle(2, params)
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        # Read 4KB from drive0. This is performed immediately.
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        self.vm.hmp_qemu_io("drive0", "aio_read 0 4096")
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        # Read 2KB. The I/O limit has been exceeded so this
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        # request is throttled and a timer is set to wake it up.
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        self.vm.hmp_qemu_io("drive0", "aio_read 0 2048")
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        # Read 2KB again. We're still over the I/O limit so this is
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        # request is also throttled, but no new timer is set since
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        # there's already one.
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        self.vm.hmp_qemu_io("drive0", "aio_read 0 2048")
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        # Read from drive1. This request is also throttled, and no
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        # timer is set in drive1 because there's already one in
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        # drive0.
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        self.vm.hmp_qemu_io("drive1", "aio_read 0 4096")
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        # At this point only the first 4KB have been read from drive0.
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        # The other requests are throttled.
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        self.assertEqual(self.blockstats('drive0')[0], 4096)
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        self.assertEqual(self.blockstats('drive1')[0], 0)
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        # Remove drive0 from the throttle group and disable its I/O limits.
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        # drive1 remains in the group with a throttled request.
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        params['bps_rd'] = 0
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        params['device'] = 'drive0'
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        result = self.vm.qmp("block_set_io_throttle", conv_keys=False, **params)
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        self.assert_qmp(result, 'return', {})
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        # Removing the I/O limits from drive0 drains its two pending requests.
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        # The read request in drive1 is still throttled.
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        self.assertEqual(self.blockstats('drive0')[0], 8192)
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        self.assertEqual(self.blockstats('drive1')[0], 0)
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        # Advance the clock 5 seconds. This completes the request in drive1
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        self.vm.qtest("clock_step %d" % (5 * nsec_per_sec))
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        # Now all requests have been processed.
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        self.assertEqual(self.blockstats('drive0')[0], 8192)
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        self.assertEqual(self.blockstats('drive1')[0], 4096)
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class ThrottleTestCoroutine(ThrottleTestCase):
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    test_driver = "null-co"
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class ThrottleTestGroupNames(iotests.QMPTestCase):
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    max_drives = 3
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    def setUp(self):
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        self.vm = iotests.VM()
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        for i in range(0, self.max_drives):
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            self.vm.add_drive("null-co://",
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                              "throttling.iops-total=100,file.read-zeroes=on")
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        self.vm.launch()
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    def tearDown(self):
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        self.vm.shutdown()
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    def set_io_throttle(self, device, params):
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        params["device"] = device
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        result = self.vm.qmp("block_set_io_throttle", conv_keys=False, **params)
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        self.assert_qmp(result, 'return', {})
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    def verify_name(self, device, name):
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        result = self.vm.qmp("query-block")
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        for r in result["return"]:
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            if r["device"] == device:
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                info = r["inserted"]
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                if name:
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                    self.assertEqual(info["group"], name)
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                else:
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                    self.assertFalse('group' in info)
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                return
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        raise Exception("No group information found for '%s'" % device)
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    def test_group_naming(self):
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        params = {"bps": 0,
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                  "bps_rd": 0,
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                  "bps_wr": 0,
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                  "iops": 0,
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                  "iops_rd": 0,
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                  "iops_wr": 0}
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        # Check the drives added using the command line.
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        # The default throttling group name is the device name.
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        for i in range(self.max_drives):
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            devname = "drive%d" % i
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            self.verify_name(devname, devname)
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        # Clear throttling settings => the group name is gone.
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        for i in range(self.max_drives):
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            devname = "drive%d" % i
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            self.set_io_throttle(devname, params)
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            self.verify_name(devname, None)
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        # Set throttling settings using block_set_io_throttle and
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        # check the default group names.
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        params["iops"] = 10
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        for i in range(self.max_drives):
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            devname = "drive%d" % i
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            self.set_io_throttle(devname, params)
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            self.verify_name(devname, devname)
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        # Set a custom group name for each device
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        for i in range(3):
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            devname = "drive%d" % i
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            groupname = "group%d" % i
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            params['group'] = groupname
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            self.set_io_throttle(devname, params)
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            self.verify_name(devname, groupname)
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        # Put drive0 in group1 and check that all other devices remain
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        # unchanged
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        params['group'] = 'group1'
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        self.set_io_throttle('drive0', params)
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        self.verify_name('drive0', 'group1')
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        for i in range(1, self.max_drives):
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            devname = "drive%d" % i
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            groupname = "group%d" % i
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            self.verify_name(devname, groupname)
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        # Put drive0 in group2 and check that all other devices remain
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        # unchanged
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        params['group'] = 'group2'
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        self.set_io_throttle('drive0', params)
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        self.verify_name('drive0', 'group2')
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        for i in range(1, self.max_drives):
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            devname = "drive%d" % i
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            groupname = "group%d" % i
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            self.verify_name(devname, groupname)
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        # Clear throttling settings from drive0 check that all other
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        # devices remain unchanged
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        params["iops"] = 0
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        self.set_io_throttle('drive0', params)
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        self.verify_name('drive0', None)
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        for i in range(1, self.max_drives):
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            devname = "drive%d" % i
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            groupname = "group%d" % i
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            self.verify_name(devname, groupname)
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class ThrottleTestRemovableMedia(iotests.QMPTestCase):
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    def setUp(self):
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        self.vm = iotests.VM()
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        self.vm.add_device("{},id=virtio-scsi".format('virtio-scsi'))
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        self.vm.launch()
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    def tearDown(self):
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        self.vm.shutdown()
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    def test_removable_media(self):
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        # Add a couple of dummy nodes named cd0 and cd1
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        result = self.vm.qmp("blockdev-add", driver="null-co",
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						|
                             read_zeroes=True, node_name="cd0")
 | 
						|
        self.assert_qmp(result, 'return', {})
 | 
						|
        result = self.vm.qmp("blockdev-add", driver="null-co",
 | 
						|
                             read_zeroes=True, node_name="cd1")
 | 
						|
        self.assert_qmp(result, 'return', {})
 | 
						|
 | 
						|
        # Attach a CD drive with cd0 inserted
 | 
						|
        result = self.vm.qmp("device_add", driver="scsi-cd",
 | 
						|
                             id="dev0", drive="cd0")
 | 
						|
        self.assert_qmp(result, 'return', {})
 | 
						|
 | 
						|
        # Set I/O limits
 | 
						|
        args = { "id": "dev0", "iops": 100, "iops_rd": 0, "iops_wr": 0,
 | 
						|
                                "bps":  50,  "bps_rd": 0,  "bps_wr": 0 }
 | 
						|
        result = self.vm.qmp("block_set_io_throttle", conv_keys=False, **args)
 | 
						|
        self.assert_qmp(result, 'return', {})
 | 
						|
 | 
						|
        # Check that the I/O limits have been set
 | 
						|
        result = self.vm.qmp("query-block")
 | 
						|
        self.assert_qmp(result, 'return[0]/inserted/iops', 100)
 | 
						|
        self.assert_qmp(result, 'return[0]/inserted/bps',   50)
 | 
						|
 | 
						|
        # Now eject cd0 and insert cd1
 | 
						|
        result = self.vm.qmp("blockdev-open-tray", id='dev0')
 | 
						|
        self.assert_qmp(result, 'return', {})
 | 
						|
        result = self.vm.qmp("blockdev-remove-medium", id='dev0')
 | 
						|
        self.assert_qmp(result, 'return', {})
 | 
						|
        result = self.vm.qmp("blockdev-insert-medium", id='dev0', node_name='cd1')
 | 
						|
        self.assert_qmp(result, 'return', {})
 | 
						|
 | 
						|
        # Check that the I/O limits are still the same
 | 
						|
        result = self.vm.qmp("query-block")
 | 
						|
        self.assert_qmp(result, 'return[0]/inserted/iops', 100)
 | 
						|
        self.assert_qmp(result, 'return[0]/inserted/bps',   50)
 | 
						|
 | 
						|
        # Eject cd1
 | 
						|
        result = self.vm.qmp("blockdev-remove-medium", id='dev0')
 | 
						|
        self.assert_qmp(result, 'return', {})
 | 
						|
 | 
						|
        # Check that we can't set limits if the device has no medium
 | 
						|
        result = self.vm.qmp("block_set_io_throttle", conv_keys=False, **args)
 | 
						|
        self.assert_qmp(result, 'error/class', 'GenericError')
 | 
						|
 | 
						|
        # Remove the CD drive
 | 
						|
        result = self.vm.qmp("device_del", id='dev0')
 | 
						|
        self.assert_qmp(result, 'return', {})
 | 
						|
 | 
						|
 | 
						|
if __name__ == '__main__':
 | 
						|
    if 'null-co' not in iotests.supported_formats():
 | 
						|
        iotests.notrun('null-co driver support missing')
 | 
						|
    iotests.main(supported_fmts=["raw"])
 |