gdsii_arrow wip
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@ -31,6 +31,7 @@ from pprint import pformat
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import numpy
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from numpy.typing import ArrayLike, NDArray
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from numpy.testing import assert_equal
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import pyarrow
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from pyarrow.cffi import ffi
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@ -44,7 +45,7 @@ from ..library import LazyLibrary, Library, ILibrary, ILibraryView
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logger = logging.getLogger(__name__)
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clib = ffi.dlopen('/home/jan/projects/klamath-rs/target/debug/libklamath_rs_ext.so')
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clib = ffi.dlopen('/home/jan/projects/klamath-rs/target/release/libklamath_rs_ext.so')
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ffi.cdef('void read_path(char* path, struct ArrowArray* array, struct ArrowSchema* schema);')
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@ -127,10 +128,41 @@ def read_arrow(
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"""
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library_info = _read_header(libarr)
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layer_names_np = libarr['layers'].values.to_numpy().view('i2').reshape((-1, 2))
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layer_tups = [tuple(pair) for pair in layer_names_np]
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cell_ids = libarr['cells'].values.field('id').to_numpy()
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cell_names = libarr['cell_names'].as_py()
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bnd = libarr['cells'].values.field('boundaries')
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boundary = dict(
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offsets = bnd.offsets.to_numpy(),
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xy_arr = bnd.values.field('xy').values.to_numpy().reshape((-1, 2)),
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xy_off = bnd.values.field('xy').offsets.to_numpy() // 2,
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layer_tups = layer_tups,
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layer_inds = bnd.values.field('layer').to_numpy(),
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prop_off = bnd.values.field('properties').offsets.to_numpy(),
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prop_key = bnd.values.field('properties').values.field('key').to_numpy(),
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prop_val = bnd.values.field('properties').values.field('value').to_pylist(),
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)
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pth = libarr['cells'].values.field('boundaries')
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path = dict(
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offsets = pth.offsets.to_numpy(),
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xy_arr = pth.values.field('xy').values.to_numpy().reshape((-1, 2)),
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xy_off = pth.values.field('xy').offsets.to_numpy() // 2,
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layer_tups = layer_tups,
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layer_inds = pth.values.field('layer').to_numpy(),
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prop_off = pth.values.field('properties').offsets.to_numpy(),
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prop_key = pth.values.field('properties').values.field('key').to_numpy(),
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prop_val = pth.values.field('properties').values.field('value').to_pylist(),
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)
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mlib = Library()
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for cell in libarr['cells']:
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name = libarr['cell_names'][cell['id'].as_py()].as_py()
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pat = read_cell(cell, libarr['cell_names'], raw_mode=raw_mode)
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for cc, cell in enumerate(libarr['cells']):
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name = cell_names[cell_ids[cc]]
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pat = read_cell(cc, cell, libarr['cell_names'], raw_mode=raw_mode, boundary=boundary)
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mlib[name] = pat
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return mlib, library_info
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@ -149,8 +181,10 @@ def _read_header(libarr: pyarrow.Array) -> dict[str, Any]:
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def read_cell(
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cc: int,
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cellarr: pyarrow.Array,
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cell_names: pyarrow.Array,
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boundary: dict[str, NDArray],
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raw_mode: bool = True,
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) -> Pattern:
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"""
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@ -190,22 +224,10 @@ def read_cell(
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ref = Ref(**args)
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pat.refs[target].append(ref)
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for bnd in cellarr['boundaries']:
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layer = (bnd['layer'].as_py(), bnd['dtype'].as_py())
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args = dict(
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vertices = bnd['xy'].values.to_numpy().reshape((-1, 2))[:-1],
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raw = raw_mode,
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offset = numpy.zeros(2),
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)
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if (props := bnd['properties']).is_valid:
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args['annotations'] = _properties_to_annotations(props)
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poly = Polygon(**args)
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pat.shapes[layer].append(poly)
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_boundaries_to_polygons(pat, cellarr)
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for gpath in cellarr['paths']:
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layer = (gpath['layer'].as_py(), gpath['dtype'].as_py())
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layer = (gpath['layer'].as_py(),)
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args = dict(
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vertices = gpath['xy'].values.to_numpy().reshape((-1, 2)),
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offset = numpy.zeros(2),
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@ -236,7 +258,7 @@ def read_cell(
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pat.shapes[layer].append(mpath)
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for gtext in cellarr['texts']:
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layer = (gtext['layer'].as_py(), gtext['dtype'].as_py())
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layer = (gtext['layer'].as_py(),)
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args = dict(
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offset = (gtext['x'].as_py(), gtext['y'].as_py()),
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string = gtext['string'].as_py(),
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@ -251,6 +273,59 @@ def read_cell(
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return pat
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def _paths_to_paths(pat: Pattern, paths: dict[str, Any], cc: int) -> None:
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elem_off = elem['offsets'] # which elements belong to each cell
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xy_val = elem['xy_arr']
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layer_tups = elem['layer_tups']
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layer_inds = elem['layer_inds']
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prop_key = elem['prop_key']
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prop_val = elem['prop_val']
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elem_count = elem_off[cc + 1] - elem_off[cc]
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elem_slc = slice(elem_off[cc], elem_off[cc] + elem_count + 1) # +1 to capture ending location for last elem
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xy_offs = elem['xy_off'][elem_slc] # which xy coords belong to each element
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prop_offs = elem['prop_off'][elem_slc] # which props belong to each element
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zeros = numpy.zeros((elem_count, 2))
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for ee in range(elem_count):
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layer = layer_tups[layer_inds[ee]]
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vertices = xy_val[xy_offs[ee]:xy_offs[ee + 1]]
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prop_ii, prop_ff = prop_offs[ee], prop_offs[ee + 1]
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if prop_ii < prop_ff:
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ann = {prop_key[off]: prop_val[off] for off in range(prop_ii, prop_ff)}
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args = dict(annotations = ann)
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path = Polygon(vertices=vertices, offset=zeros[ee], raw=raw_mode)
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pat.shapes[layer].append(path)
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def _boundaries_to_polygons(pat: Pattern, elem: dict[str, Any], cc: int) -> None:
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elem_off = elem['offsets'] # which elements belong to each cell
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xy_val = elem['xy_arr']
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layer_tups = elem['layer_tups']
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layer_inds = elem['layer_inds']
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prop_key = elem['prop_key']
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prop_val = elem['prop_val']
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elem_slc = slice(elem_off[cc], elem_off[cc + 1] + 1)
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xy_offs = elem['xy_off'][elem_slc] # which xy coords belong to each element
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prop_offs = elem['prop_off'][elem_slc] # which props belong to each element
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zeros = numpy.zeros((len(xy_offs) - 1, 2))
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for ee in range(len(xy_offs) - 1):
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layer = layer_tups[layer_inds[ee]]
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vertices = xy_val[xy_offs[ee]:xy_offs[ee + 1] - 1] # -1 to drop closing point
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prop_ii, prop_ff = prop_offs[ee], prop_offs[ee + 1]
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if prop_ii < prop_ff:
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ann = {prop_key[off]: prop_val[off] for off in range(prop_ii, prop_ff)}
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args = dict(annotations = ann)
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poly = Polygon(vertices=vertices, offset=zeros[ee], raw=raw_mode)
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pat.shapes[layer].append(poly)
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def _properties_to_annotations(properties: pyarrow.Array) -> annotations_t:
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return {prop['key'].as_py(): prop['value'].as_py() for prop in properties}
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