Commit 6cb9d37f authored by Kirill Smelkov's avatar Kirill Smelkov

earfcn: New package to do computations with LTE bands, frequencies and EARFCN numbers

Do a package which provides calculations like EARFCN -> frequency,
EARFCN -> band info, and to convert DL/UL EARFCN in between each other.

I was hoping to find something ready on the net, but could find only
pypi.org/project/nrarfcn for 5G, while for LTE everything I found
was of lesser quality and capability.

-> So do it myself.

See package documentation for API details.
parent bcfd82dd
......@@ -4,6 +4,7 @@
XLTE repository provides assorted tools and packages with functionality related to LTE:
- `earfcn` - do computations with LTE bands, frequencies and EARFCN numbers.
- `kpi` - process measurements and compute KPIs from them.
- `amari.drb` - infrastructure to process flows on data radio bearers.
- `amari.kpi` - driver for Amarisoft LTE stack to retrieve KPI-related measurements from logs.
......
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# Copyright (C) 2023 Nexedi SA and Contributors.
# Kirill Smelkov <kirr@nexedi.com>
#
# This program is free software: you can Use, Study, Modify and Redistribute
# it under the terms of the GNU General Public License version 3, or (at your
# option) any later version, as published by the Free Software Foundation.
#
# You can also Link and Combine this program with other software covered by
# the terms of any of the Free Software licenses or any of the Open Source
# Initiative approved licenses and Convey the resulting work. Corresponding
# source of such a combination shall include the source code for all other
# software used.
#
# This program is distributed WITHOUT ANY WARRANTY; without even the implied
# warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
#
# See COPYING file for full licensing terms.
# See https://www.nexedi.com/licensing for rationale and options.
from xlte.earfcn import frequency, dl2ul, ul2dl, _band_tab
from xlte import earfcn
from pytest import raises
# verify earfcn-related calculations wrt several points.
def test_earfcn():
def _(band, dl_earfcn, ul_earfcn, fdl, ful, rf_mode, fdl_lo, fdl_hi_, ful_lo, ful_hi_):
assert frequency(dl_earfcn) == fdl
if ul_earfcn is not None:
assert dl2ul(dl_earfcn) == ul_earfcn
else:
assert rf_mode in ('FDD', 'SDL')
if rf_mode == 'FDD':
estr = 'does not have enough uplink spectrum'
if rf_mode == 'SDL':
estr = 'does not have uplink spectrum'
with raises(KeyError, match=estr):
dl2ul(dl_earfcn)
b, isdl = earfcn.band(dl_earfcn)
assert isdl == True
if ul_earfcn is not None:
assert frequency(ul_earfcn) == ful
assert ul2dl(ul_earfcn) == dl_earfcn
b_, isdl_ = earfcn.band(ul_earfcn)
assert isdl_ == (rf_mode == 'TDD')
assert b == b_
assert b.band == band
assert b.rf_mode == rf_mode
assert b.fdl_lo == fdl_lo
assert b.fdl_hi_ == fdl_hi_
assert b.ful_lo == ful_lo
assert b.ful_hi_ == ful_hi_
# band dl ul fdl ful rf_mode fdl_lo fdl_hi_ ful_lo ful_hi_
_( 1, 300, 18300, 2140, 1950, 'FDD', 2110, 2170, 1920, 1980)
_(37, 37555, 37555, 1910.5, 1910.5, 'TDD', 1910, 1930, 1910, 1930)
_(29, 9700, None, 721, None, 'SDL', 717, 728, None, None)
_(66, 67135, 132671, 2179.9, 1779.9, 'FDD', 2110, 2200, 1710, 1780)
_(66, 67136, None, 2180, None, 'FDD', 2110, 2200, 1710, 1780) # NOTE B66 has different amount in dl and ul ranges
# verify that earfcn regions of all bands do not overlap.
def test_bands_no_earfcn_overlap():
rv = [] # of (nlo, nhi)
for b in _band_tab:
assert b.ndl_lo is not None
assert b.ndl_hi is not None
rv.append((b.ndl_lo, b.ndl_hi))
if b.rf_mode not in ('TDD', 'SDL'):
assert b.nul_lo is not None
assert b.nul_hi is not None
rv.append((b.nul_lo, b.nul_hi))
for i in range(len(rv)):
ilo, ihi = rv[i]
assert ilo < ihi
for j in range(len(rv)):
if j == i:
continue
jlo, jhi = rv[j]
assert jlo < jhi
if not ((ihi < jlo) or (jhi < ilo)):
assert False, "(%r, %r) overlaps with (%r, %r)" % (ilo, ihi, jlo, jhi)
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