#!/usr/bin/env python3 import os, sys, json, re ################################################# # Loading Raw Source Data grid = None segbits = dict() segbits_r = dict() segframes = dict() print("Loading tilegrid.") with open("../database/%s/tilegrid.json" % os.getenv("XRAY_DATABASE"), "r") as f: grid = json.load(f) for segname, segdata in grid["segments"].items(): segtype = segdata["type"].lower() segtype = re.sub(r"_[lr]$", "", segtype) if segtype not in segbits: segbits[segtype] = dict() segbits_r[segtype] = dict() segframes[segtype] = segdata["frames"] print("Loading %s segbits." % segtype) with open("../database/%s/seg_%s.segbits" % (os.getenv("XRAY_DATABASE"), segtype)) as f: for line in f: bit_name, bit_pos = line.split() segbits[segtype][bit_name] = bit_pos segbits_r[segtype][bit_pos] = bit_name ################################################# # Create Tilegrid Page grid_range = None grid_map = dict() print("Writing %s/index.html." % os.getenv("XRAY_DATABASE")) os.makedirs(os.getenv("XRAY_DATABASE"), exist_ok=True) with open("%s/index.html" % os.getenv("XRAY_DATABASE"), "w") as f: print("X-Ray %s Database" % os.getenv("XRAY_DATABASE").upper(), file=f) print("

X-Ray %s Database

" % os.getenv("XRAY_DATABASE").upper(), file=f) print("

Part: %s
ROI: %s
ROI Frames: %s

" % (os.getenv("XRAY_PART"), os.getenv("XRAY_ROI"), os.getenv("XRAY_ROI_FRAMES")), file=f) for tilename, tiledata in grid["tiles"].items(): grid_x = tiledata["grid_x"] grid_y = tiledata["grid_y"] grid_map[(grid_x, grid_y)] = tilename if grid_range is None: grid_range = [grid_x, grid_y, grid_x, grid_y] else: grid_range[0] = min(grid_range[0], grid_x) grid_range[1] = min(grid_range[1], grid_y) grid_range[2] = max(grid_range[2], grid_x) grid_range[3] = max(grid_range[3], grid_y) print("", file =f) for grid_y in range(grid_range[1], grid_range[3]+1): print("", file=f) for grid_x in range(grid_range[0], grid_range[2]+1): tilename = grid_map[(grid_x, grid_y)] tiledata = grid["tiles"][tilename] bgcolor = "#aaaaaa" if tiledata["type"] in ["INT_L", "INT_R"]: bgcolor="#aaaaff" if tiledata["type"] in ["CLBLL_L", "CLBLL_R"]: bgcolor="#ffffaa" if tiledata["type"] in ["CLBLM_L", "CLBLM_R"]: bgcolor="#ffaaaa" title = [tilename] if "segment" in tiledata: segdata = grid["segments"][tiledata["segment"]] title.append(tiledata["segment"]) title.append("GRID_POSITION: %d %d" % (grid_x, grid_y)) if "sites" in tiledata: for sitename, sitetype in tiledata["sites"].items(): title.append("%s site: %s" % (sitetype, sitename)) if "segment" in tiledata: title.append("Baseaddr: %s %d" % tuple(segdata["baseaddr"])) print("" % (segtype, tilename.replace("_X", "
X")), file=f) else: print("%s" % tilename.replace("_X", "
X"), file=f) print("", file=f) print("
" % (bgcolor, "\n".join(title)), file=f) if "segment" in tiledata: segtype = segdata["type"].lower() segtype = re.sub(r"_[lr]$", "", segtype) print("%s
", file =f) print("", file=f) ################################################# # Create Segment Pages for segtype in segbits.keys(): print("Writing %s/seg_%s.html." % (os.getenv("XRAY_DATABASE"), segtype)) with open("%s/seg_%s.html" % (os.getenv("XRAY_DATABASE"), segtype), "w") as f: print("X-Ray %s Database: %s" % (os.getenv("XRAY_DATABASE").upper(), segtype.upper()), file=f) print("

X-Ray %s Database: %s

" % (os.getenv("XRAY_DATABASE").upper(), segtype.upper()), file=f) print("", file =f) print("", file =f) print("", file =f) for frameidx in range(segframes[segtype]): print("" % frameidx, file =f) print("", file =f) for bitidx in range(63, -1, -1): print("", file =f) print("" % bitidx, file =f) for frameidx in range(segframes[segtype]): bit_pos = "%02d_%02d" % (frameidx, bitidx) bit_name = segbits_r[segtype][bit_pos] if bit_pos in segbits_r[segtype] else None label = " " title = [bit_pos] bgcolor = "#aaaaaa" if bit_name is not None: bgcolor = "#ff0000" title.append(bit_name) if "LUT.INIT" in bit_name: bgcolor = "#ffffaa" m = re.search(r"(.)LUT.INIT\[(..)\]", bit_name) label = m.group(1) + m.group(2) if re.search(r"\.[ABCD]5?FF\.", bit_name): bgcolor = "#aaffaa" m = re.search(r"\.([ABCD]5?)FF\.([A-Z]+)", bit_name) if m.group(2) == "ZINI": label = m.group(1) + "Z" else: label = m.group(1) + "?" if re.search(r"\.[ABCD]5?FF\.", bit_name): bgcolor = "#aaffaa" m = re.search(r"\.([ABCD]5?)FF\.([A-Z]+)", bit_name) if m.group(2) == "ZINI": label = m.group(1) + "Z" else: label = m.group(1) + "?" if re.search(r"\.[ABCD]LUT5$", bit_name): bgcolor = "#cccc88" label = bit_name[-5] + "5" print("" % (bgcolor, "\n".join(title), label), file=f) print("", file =f) print("
%d
%d%s
", file =f) bits_by_prefix = dict() for bit_name, bit_pos in segbits[segtype].items(): prefix = ".".join(bit_name.split(".")[0:-1]) if prefix not in bits_by_prefix: bits_by_prefix[prefix] = set() bits_by_prefix[prefix].add((bit_name, bit_pos)) for prefix, bits in sorted(bits_by_prefix.items()): print("

", file =f) print("

%s

" % prefix, file =f) print("", file =f) print("", file=f) trstyle = "" for bit_name, bit_pos in sorted(bits): trstyle = " bgcolor=\"#dddddd\"" if trstyle == "" else "" print("" % (trstyle, bit_name, bit_pos), file=f) print("
Bit NamePosition
%s%s
", file =f) print("", file=f)