efe9438c61
* [as5712-54x] Verified with index from 1. Add qsfp_event() for command "show interaface trancerver". Signed-off-by: roy_lee <roy_lee@accton.com> * [as6712-32x] Add default port speed. Verified with index from 1. Signed-off-by: roy_lee <roy_lee@accton.com> * [as7726-32x] Add default port speed. Verified with index from 1. Signed-off-by: roy_lee <roy_lee@accton.com> * [as7712-32x] Add default port speed. Verified with index from 1. Signed-off-by: roy_lee <roy_lee@accton.com> * [as5812-54x] Add default port speed. Verified with index from 1. Signed-off-by: roy_lee <roy_lee@accton.com> * [as5712-54x] Update port-config with 1-based index. Signed-off-by: roy_lee <roy_lee@accton.com> * [as5812-54x] Somehow the service may block, use type=simple to work-around. Add syslog function for monitor. Signed-off-by: roy_lee <roy_lee@accton.com> * [as7716-32x] Update port-config with 1-based index. Signed-off-by: roy_lee <roy_lee@accton.com> * [as7816-64x] Update port-config with 1-based index. Implement sfputil change_event. Signed-off-by: roy_lee <roy_lee@accton.com> * [as7326-56x] Update port-config with 1-based index. Implement sfputil change_event. Signed-off-by: roy_lee <roy_lee@accton.com> * Remove debug code. Signed-off-by: roy_lee <roy_lee@accton.com> * [as7312-54x] Update port-config with 1-based index and default port speed. Signed-off-by: roy_lee <roy_lee@accton.com>
269 lines
7.1 KiB
Python
269 lines
7.1 KiB
Python
#!/usr/bin/env python
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try:
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import time
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import string
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from ctypes import create_string_buffer
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from sonic_sfp.sfputilbase import SfpUtilBase
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except ImportError, e:
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raise ImportError (str(e) + "- required module not found")
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#from xcvrd
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SFP_STATUS_INSERTED = '1'
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SFP_STATUS_REMOVED = '0'
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class SfpUtil(SfpUtilBase):
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"""Platform specific SfpUtill class"""
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_port_start = 1
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_port_end = 64
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ports_in_block = 64
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_port_to_eeprom_mapping = {}
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port_to_i2c_mapping = {
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61 : 25,
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62 : 26,
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63 : 27,
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64 : 28,
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55 : 29,
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56 : 30,
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53 : 31,
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54 : 32,
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9 : 33,
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10 : 34,
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11 : 35,
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12 : 36,
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1 : 37,
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2 : 38,
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3 : 39,
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4 : 40,
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6 : 41,
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5 : 42,
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8 : 43,
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7 : 44,
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13 : 45,
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14 : 46,
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15 : 47,
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16 : 48,
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17 : 49,
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18 : 50,
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19 : 51,
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20 : 52,
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25 : 53,
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26 : 54,
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27 : 55,
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28 : 56,
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29 : 57,
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30 : 58,
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31 : 59,
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32 : 60,
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21 : 61,
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22 : 62,
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23 : 63,
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24 : 64,
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41 : 65,
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42 : 66,
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43 : 67,
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44 : 68,
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33 : 69,
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34 : 70,
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35 : 71,
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36 : 72,
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45 : 73,
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46 : 74,
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47 : 75,
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48 : 76,
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37 : 77,
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38 : 78,
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39 : 79,
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40 : 80,
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57 : 81,
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58 : 82,
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59 : 83,
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60 : 84,
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49 : 85,
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50 : 86,
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51 : 87,
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52 : 88,}
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_qsfp_ports = range(0, ports_in_block + 1)
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def __init__(self):
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eeprom_path = '/sys/bus/i2c/devices/{0}-0050/eeprom'
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for x in range(self.port_start, self.port_end + 1):
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port_eeprom_path = eeprom_path.format(self.port_to_i2c_mapping[x])
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self._port_to_eeprom_mapping[x] = port_eeprom_path
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SfpUtilBase.__init__(self)
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def reset(self, port_num):
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# Check for invalid port_num
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if port_num < self.port_start or port_num > self.port_end:
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return False
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path = "/sys/bus/i2c/devices/19-0060/module_reset_{0}"
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port_ps = path.format(port_num)
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try:
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reg_file = open(port_ps, 'w')
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except IOError as e:
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print "Error: unable to open file: %s" % str(e)
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return False
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#HW will clear reset after set.
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reg_file.seek(0)
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reg_file.write('1')
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reg_file.close()
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return True
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def get_presence(self, port_num):
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# Check for invalid port_num
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if port_num < self.port_start or port_num > self.port_end:
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return False
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path = "/sys/bus/i2c/devices/19-0060/module_present_{0}"
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port_ps = path.format(port_num)
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try:
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reg_file = open(port_ps)
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except IOError as e:
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print "Error: unable to open file: %s" % str(e)
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return False
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reg_value = reg_file.readline().rstrip()
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if reg_value == '1':
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return True
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return False
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@property
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def port_start(self):
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return self._port_start
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@property
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def port_end(self):
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return self._port_end
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@property
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def qsfp_ports(self):
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return range(0, self.ports_in_block + 1)
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@property
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def port_to_eeprom_mapping(self):
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return self._port_to_eeprom_mapping
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def get_low_power_mode(self, port_num):
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# Check for invalid port_num
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if port_num < self._port_start or port_num > self._port_end:
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return False
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try:
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eeprom = None
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if not self.get_presence(port_num):
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return False
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eeprom = open(self.port_to_eeprom_mapping[port_num], "rb")
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eeprom.seek(93)
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lpmode = ord(eeprom.read(1))
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if ((lpmode & 0x3) == 0x3):
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return True # Low Power Mode if "Power override" bit is 1 and "Power set" bit is 1
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else:
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return False # High Power Mode if one of the following conditions is matched:
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# 1. "Power override" bit is 0
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# 2. "Power override" bit is 1 and "Power set" bit is 0
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except IOError as e:
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print "Error: unable to open file: %s" % str(e)
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return False
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finally:
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if eeprom is not None:
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eeprom.close()
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time.sleep(0.01)
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def set_low_power_mode(self, port_num, lpmode):
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# Check for invalid port_num
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if port_num < self._port_start or port_num > self._port_end:
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return False
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try:
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eeprom = None
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if not self.get_presence(port_num):
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return False # Port is not present, unable to set the eeprom
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# Fill in write buffer
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regval = 0x3 if lpmode else 0x1 # 0x3:Low Power Mode, 0x1:High Power Mode
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buffer = create_string_buffer(1)
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buffer[0] = chr(regval)
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# Write to eeprom
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eeprom = open(self.port_to_eeprom_mapping[port_num], "r+b")
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eeprom.seek(93)
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eeprom.write(buffer[0])
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return True
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except IOError as e:
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print "Error: unable to open file: %s" % str(e)
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return False
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finally:
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if eeprom is not None:
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eeprom.close()
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time.sleep(0.01)
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@property
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def _get_present_bitmap(self):
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nodes = []
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cpld_path = "/sys/bus/i2c/devices/19-0060/"
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nodes.append(cpld_path + "module_present_all")
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bitmap = ""
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for node in nodes:
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try:
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reg_file = open(node)
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except IOError as e:
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print "Error: unable to open file: %s" % str(e)
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return False
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bitmap += reg_file.readline().rstrip() + " "
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reg_file.close()
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rev = bitmap.split(" ")
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rev = "".join(rev[::-1])
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return int(rev,16)
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data = {'valid':0, 'last':0, 'present':0}
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def get_transceiver_change_event(self, timeout=2000):
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now = time.time()
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port_dict = {}
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port = 0
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if timeout < 1000:
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timeout = 1000
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timeout = (timeout) / float(1000) # Convert to secs
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if now < (self.data['last'] + timeout) and self.data['valid']:
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return True, {}
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reg_value = self._get_present_bitmap
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reg_value = ~reg_value
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changed_ports = self.data['present'] ^ reg_value
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if changed_ports:
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for port in range (self.port_start, self.port_end+1):
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# Mask off the bit corresponding to our port
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mask = (1 << (port - 1))
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if changed_ports & mask:
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if (reg_value & mask) == 0:
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port_dict[port] = SFP_STATUS_REMOVED
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else:
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port_dict[port] = SFP_STATUS_INSERTED
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# Update cache
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self.data['present'] = reg_value
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self.data['last'] = now
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self.data['valid'] = 1
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return True, port_dict
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else:
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return True, {}
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return False, {}
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