source: mds-and-trees/tree-genealogy.py @ 622

Last change on this file since 622 was 622, checked in by konrad, 8 years ago

Added an option to restrict the tree to first X nodes.

File size: 20.9 KB
Line 
1# Draws a genealogical tree (generates a SVG file) based on parent-child relationship information.
2# Supports files generated by Framsticks experiments.
3
4import json
5import random
6import math
7import argparse
8import time as ttime
9
10TIME = "" # BIRTHS / GENERATIONAL / REAL
11BALANCE = "" # MIN / DENSITY
12
13DOT_STYLE = "" # NONE / NORMAL / CLEAR
14
15JITTER = "" #
16
17# ------SVG---------
18svg_file = 0
19
20svg_line_style = 'stroke="rgb(90%,10%,16%)" stroke-width="1" stroke-opacity="0.7"'
21svg_mutation_line_style = 'stroke-width="1"'
22svg_crossover_line_style = 'stroke-width="1"'
23svg_spine_line_style = 'stroke="rgb(0%,90%,40%)" stroke-width="2" stroke-opacity="1"'
24svg_scale_line_style = 'stroke="black" stroke-width="0.5" stroke-opacity="1" stroke-dasharray="5, 5"'
25
26svg_dot_style = 'r="2" stroke="black" stroke-width="0.2" fill="red"'
27svg_clear_dot_style = 'r="2" stroke="black" stroke-width="0.4" fill="none"'
28svg_spine_dot_style = 'r="1" stroke="black" stroke-width="0.2" fill="rgb(50%,50%,100%)"'
29
30svg_scale_text_style = 'style="font-family: Arial; font-size: 12; fill: #000000;"'
31
32def hex_to_style(hex):
33    default_style = ' stroke="black" stroke-opacity="0.5" '
34
35    if hex[0] == "#":
36        hex = hex[1:]
37
38    if len(hex) == 6 or len(hex) == 8:
39        try:
40            int(hex, 16)
41        except:
42            print("Invalid characters in the color's hex #" + hex + "! Assuming black.")
43            return default_style
44        red = 100*int(hex[0:2], 16)/255
45        green = 100*int(hex[2:4], 16)/255
46        blue = 100*int(hex[4:6], 16)/255
47        opacity = 0.5
48        if len(hex) == 8:
49            opacity = int(hex[6:8], 16)/255
50        return ' stroke="rgb(' +str(red)+ '%,' +str(green)+ '%,' +str(blue)+ '%)" stroke-opacity="' +str(opacity)+ '" '
51    else:
52        print("Invalid number of digits in the color's hex #" + hex + "! Assuming black.")
53        return default_style
54
55def svg_add_line(from_pos, to_pos, style=svg_line_style):
56    svg_file.write('<line ' + style + ' x1="' + str(from_pos[0]) + '" x2="' + str(to_pos[0]) +
57                   '" y1="' + str(from_pos[1]) + '" y2="' + str(to_pos[1]) + '"  fill="none"/>')
58
59def svg_add_text(text, pos, anchor, style=svg_scale_text_style):
60    svg_file.write('<text ' + style + ' text-anchor="' + anchor + '" x="' + str(pos[0]) + '" y="' + str(pos[1]) + '" >' + text + '</text>')
61
62def svg_add_dot(pos, style=svg_dot_style):
63    svg_file.write('<circle ' + style + ' cx="' + str(pos[0]) + '" cy="' + str(pos[1]) + '" />')
64
65def svg_generate_line_style(percent):
66    # hotdog
67    from_col = [100, 70, 0]
68    to_col = [60, 0, 0]
69    # lava
70    # from_col = [100, 80, 0]
71    # to_col = [100, 0, 0]
72    # neon
73    # from_col = [30, 200, 255]
74    # to_col = [240, 0, 220]
75
76    from_opa = 0.2
77    to_opa = 1.0
78    from_stroke = 1
79    to_stroke = 3
80
81    opa = from_opa*(1-percent) + to_opa*percent
82    stroke = from_stroke*(1-percent) + to_stroke*percent
83
84    percent = 1 - ((1-percent)**20)
85
86    return 'stroke="rgb(' + str(from_col[0]*(1-percent) + to_col[0]*percent) + '%,' \
87           + str(from_col[1]*(1-percent) + to_col[1]*percent) + '%,' \
88           + str(from_col[2]*(1-percent) + to_col[2]*percent) + '%)" stroke-width="' + str(stroke) + '" stroke-opacity="' + str(opa) + '"'
89
90def svg_generate_dot_style(kind):
91    kinds = ["red", "lawngreen", "royalblue", "magenta", "yellow", "cyan", "white", "black"]
92
93    r = min(2500/len(nodes), 10)
94
95    return 'fill="' + kinds[kind] + '" r="' + str(r) + '" stroke="black" stroke-width="' + str(r/10) + '" fill-opacity="1.0" ' \
96           'stroke-opacity="1.0"'
97
98# -------------------
99
100def load_data(dir):
101    global firstnode, nodes, inv_nodes, time
102    f = open(dir)
103    loaded = 0
104
105    for line in f:
106        sline = line.split(' ', 1)
107        if len(sline) == 2:
108            if sline[0] == "[OFFSPRING]":
109                creature = json.loads(sline[1])
110                #print("B" +str(creature))
111                if "FromIDs" in creature:
112                    if not creature["ID"] in nodes:
113                        nodes[creature["ID"]] = {}
114                        # we assign to each parent its contribution to the genotype of the child
115                        for i in range(0, len(creature["FromIDs"])):
116                            inherited = 1 #(creature["Inherited"][i] if 'Inherited' in creature else 1) #ONLY FOR NOW
117                            nodes[creature["ID"]][creature["FromIDs"][i]] = inherited
118                    else:
119                        print("Duplicated entry for " + creature["ID"])
120                        quit()
121
122                    if not creature["FromIDs"][0] in nodes and firstnode == None:
123                        firstnode = creature["FromIDs"][0]
124
125                if "Time" in creature:
126                    time[creature["ID"]] = creature["Time"]
127
128                if "Kind" in creature:
129                    kind[creature["ID"]] = creature["Kind"]
130
131                loaded += 1
132        if loaded == max_nodes and max_nodes != 0:
133            break
134
135    for k, v in sorted(nodes.items()):
136        for val in sorted(v):
137            inv_nodes[val] = inv_nodes.get(val, [])
138            inv_nodes[val].append(k)
139
140    print(len(nodes))
141
142
143def load_simple_data(dir):
144    global firstnode, nodes, inv_nodes
145    f = open(dir)
146    loaded = 0
147
148    for line in f:
149        sline = line.split()
150        if len(sline) > 1:
151            #if int(sline[0]) > 15000:
152            #    break
153            if sline[0] == firstnode:
154                continue
155            nodes[sline[0]] = str(max(int(sline[1]), int(firstnode)))
156        else:
157            firstnode = sline[0]
158
159        loaded += 1
160        if loaded == max_nodes and max_nodes != 0:
161            break
162
163    for k, v in sorted(nodes.items()):
164        inv_nodes[v] = inv_nodes.get(v, [])
165        inv_nodes[v].append(k)
166
167    #print(str(inv_nodes))
168    #quit()
169
170def compute_depth(node):
171    my_depth = 0
172    if node in inv_nodes:
173        for c in inv_nodes[node]:
174            my_depth = max(my_depth, compute_depth(c)+1)
175    depth[node] = my_depth
176    return my_depth
177
178# ------------------------------------
179
180def xmin_crowd(x1, x2, y):
181    if BALANCE == "RANDOM":
182        return (x1 if random.randrange(2) == 0 else x2)
183    elif BALANCE == "MIN":
184        x1_closest = 999999
185        x2_closest = 999999
186        for pos in positions:
187            pos = positions[pos]
188            if pos[1] == y:
189                x1_closest = min(x1_closest, abs(x1-pos[0]))
190                x2_closest = min(x2_closest, abs(x2-pos[0]))
191        return (x1 if x1_closest > x2_closest else x2)
192    elif BALANCE == "DENSITY":
193        x1_dist = 0
194        x2_dist = 0
195        ymin = y-10
196        ymax = y+10
197        for pos in positions:
198            pos = positions[pos]
199            if pos[1] > ymin or pos[1] < ymax:
200                dysq = (pos[1]-y)**2
201                dx1 = pos[0]-x1
202                dx2 = pos[0]-x2
203
204
205                x1_dist += math.sqrt(dysq + dx1**2)
206                x2_dist += math.sqrt(dysq + dx2**2)
207        return (x1 if x1_dist > x2_dist else x2)
208
209# ------------------------------------
210
211def prepos_children():
212    global max_height, max_width, min_width, visited, TIME
213
214    print("firstnode " + firstnode)
215
216    if not bool(time):
217        print("REAL time requested, but no real time data provided. Assuming BIRTHS time instead.")
218        TIME = "BIRTHS"
219
220    positions[firstnode] = [0, 0]
221
222    #visited = {}
223    #visited[firstnode] = True
224
225
226    nodes_to_visit = [firstnode]
227
228    ccc = 0
229    timet = ttime.time()
230
231    while True:
232
233        ccc += 1
234        if ccc%1000 == 0 :
235            print(str(ccc) + " "  + str(ttime.time()-timet))
236            timet = ttime.time()
237
238        current_node = nodes_to_visit[0]
239
240        if current_node in inv_nodes:
241            for c in inv_nodes[current_node]:
242                # we want to visit the node just once, after all of its parents
243                if c not in nodes_to_visit:
244                    nodes_to_visit.append(c)
245
246                    cy = 0
247                    if TIME == "BIRTHS":
248                        if c[0] == "c":
249                            cy = int(c[1:])
250                        else:
251                            cy = int(c)
252                    elif TIME == "GENERATIONAL":
253                        cy = positions[current_node][1]+1
254                    elif TIME == "REAL":
255                        cy = time[c]
256
257                    if len(nodes[c]) == 1:
258                        dissimilarity = 0
259                        if JITTER == True:
260                            dissimilarity = random.gauss(0,1)
261                        else:
262                            dissimilarity = 1
263                        positions[c] = [xmin_crowd(positions[current_node][0]-dissimilarity, positions[current_node][0]+dissimilarity, cy), cy]
264                    else:
265                        vsum = sum([v for k, v in nodes[c].items()])
266                        cx = sum([positions[k][0]*v/vsum for k, v in nodes[c].items()])
267
268                        if JITTER == True:
269                            positions[c] = [cx + random.gauss(0, 0.1), cy]
270                        else:
271                            positions[c] = [cx, cy]
272
273
274        #if c in inv_nodes:
275        #    prepos_children_reccurent(c)
276
277        nodes_to_visit = nodes_to_visit[1:]
278        # if none left, we can stop
279        if len(nodes_to_visit) == 0:
280            break
281
282
283   # prepos_children_reccurent(firstnode)
284
285    for pos in positions:
286        max_height = max(max_height, positions[pos][1])
287        max_width = max(max_width, positions[pos][0])
288        min_width = min(min_width, positions[pos][0])
289
290# ------------------------------------
291
292def all_parents_visited(node):
293    apv = True
294    for k, v in sorted(nodes[node].items()):
295        if not k in visited:
296            apv = False
297            break
298    return apv
299# ------------------------------------
300
301def draw_children():
302    max_depth = 0
303    for k, v in depth.items():
304            max_depth = max(max_depth, v)
305
306    nodes_to_visit = [firstnode]
307    while True:
308        current_node = nodes_to_visit[0]
309
310        if current_node in inv_nodes:
311            for c in inv_nodes[current_node]: # inv_node => p->c
312
313                if not c in nodes_to_visit:
314                    nodes_to_visit.append(c)
315
316                line_style = ""
317                if COLORING == "NONE":
318                    line_style = svg_line_style
319                elif COLORING == "TYPE":
320                    line_style = (svg_mutation_line_style if len(nodes[c]) == 1 else svg_crossover_line_style)
321                else: # IMPORTANCE, default
322                    line_style = svg_generate_line_style(depth[c]/max_depth)
323
324                svg_add_line( (w_margin+w_no_margs*(positions[current_node][0]-min_width)/(max_width-min_width), h_margin+h_no_margs*positions[current_node][1]/max_height),
325                        (w_margin+w_no_margs*(positions[c][0]-min_width)/(max_width-min_width), h_margin+h_no_margs*positions[c][1]/max_height), line_style)
326
327        # we want to draw the node just once
328        if DOT_STYLE == "NONE":
329            continue
330        elif DOT_STYLE == "TYPE":
331            dot_style = svg_generate_dot_style(kind[current_node] if current_node in kind else 0) #type
332        else: # NORMAL, default
333            dot_style = svg_clear_dot_style #svg_generate_dot_style(depth[c]/max_depth)
334        svg_add_dot( (w_margin+w_no_margs*(positions[current_node][0]-min_width)/(max_width-min_width), h_margin+h_no_margs*positions[current_node][1]/max_height), dot_style)
335        #svg_add_text( str(depth[current_node]), (w_margin+w_no_margs*(positions[current_node][0]-min_width)/(max_width-min_width),
336        # h_margin+h_no_margs*positions[current_node][1]/max_height), "end")
337
338        # we remove the current node from the list
339        nodes_to_visit = nodes_to_visit[1:]
340        # if none left, we can stop
341        if len(nodes_to_visit) == 0:
342            break
343
344def draw_spine():
345    nodes_to_visit = [firstnode]
346    while True:
347        current_node = nodes_to_visit[0]
348
349        if current_node in inv_nodes:
350            for c in inv_nodes[current_node]: # inv_node => p->c
351                if depth[c] == depth[current_node] - 1:
352                    if not c in nodes_to_visit:
353                        nodes_to_visit.append(c)
354                    line_style = svg_spine_line_style
355                    svg_add_line( (w_margin+w_no_margs*(positions[current_node][0]-min_width)/(max_width-min_width), h_margin+h_no_margs*positions[current_node][1]/max_height),
356                        (w_margin+w_no_margs*(positions[c][0]-min_width)/(max_width-min_width), h_margin+h_no_margs*positions[c][1]/max_height), line_style)
357
358        # we remove the current node from the list
359        nodes_to_visit = nodes_to_visit[1:]
360        # if none left, we can stop
361        if len(nodes_to_visit) == 0:
362            break
363
364def draw_skeleton():
365    nodes_to_visit = [firstnode]
366    while True:
367        current_node = nodes_to_visit[0]
368
369        if current_node in inv_nodes:
370            for c in inv_nodes[current_node]: # inv_node => p->c
371                if depth[c] >= min_skeleton_depth:
372                    if not c in nodes_to_visit:
373                        nodes_to_visit.append(c)
374                    line_style = svg_spine_line_style
375                    svg_add_line( (w_margin+w_no_margs*(positions[current_node][0]-min_width)/(max_width-min_width), h_margin+h_no_margs*positions[current_node][1]/max_height),
376                        (w_margin+w_no_margs*(positions[c][0]-min_width)/(max_width-min_width), h_margin+h_no_margs*positions[c][1]/max_height), line_style)
377
378        # we remove the current node from the list
379        nodes_to_visit = nodes_to_visit[1:]
380        # if none left, we can stop
381        if len(nodes_to_visit) == 0:
382            break
383
384# ------------------------------------
385
386def draw_scale(filename ,type):
387
388    svg_add_text("Generated from " + filename.split("\\")[-1], (5, 15), "start")
389
390    svg_add_line( (w*0.7, h_margin), (w, h_margin), svg_scale_line_style)
391    start_text = ""
392    if TIME == "BIRTHS":
393       start_text = "Birth #" + str(min([int(k[1:]) for k, v in nodes.items()]))
394    if TIME == "REAL":
395       start_text = "Time " + str(min([v for k, v in time.items()]))
396    if TIME == "GENERATIONAL":
397       start_text = "Depth " + str(min([v for k, v in depth.items()]))
398    svg_add_text( start_text, (w, h_margin + 15), "end")
399
400    svg_add_line( (w*0.7, h-h_margin), (w, h-h_margin), svg_scale_line_style)
401    end_text = ""
402    if TIME == "BIRTHS":
403       end_text = "Birth #" + str(max([int(k[1:]) for k, v in nodes.items()]))
404    if TIME == "REAL":
405       end_text = "Time " + str(max([v for k, v in time.items()]))
406    if TIME == "GENERATIONAL":
407       end_text = "Depth " + str(max([v for k, v in depth.items()]))
408    svg_add_text( end_text, (w, h-h_margin + 15), "end")
409
410
411##################################################### main #####################################################
412
413args = 0
414
415h = 800
416w = 600
417h_margin = 20
418w_margin = 10
419h_no_margs = h - 2* h_margin
420w_no_margs = w - 2* w_margin
421
422max_height = 0
423max_width = 0
424min_width = 9999999999
425
426min_skeleton_depth = 0
427max_nodes = 0
428
429firstnode = None
430nodes = {}
431inv_nodes = {}
432positions = {}
433visited= {}
434depth = {}
435time = {}
436kind = {}
437
438def main():
439    global svg_file, min_skeleton_depth, max_nodes, args, \
440        TIME, BALANCE, DOT_STYLE, COLORING, JITTER, \
441        svg_mutation_line_style, svg_crossover_line_style
442
443    parser = argparse.ArgumentParser(description='Draws a genealogical tree (generates a SVG file) based on parent-child relationship information from a text file. Supports files generated by Framsticks experiments.')
444    parser.add_argument('-i', '--in', dest='input', required=True, help='input file name with stuctured evolutionary data')
445    parser.add_argument('-o', '--out', dest='output', required=True, help='output file name for the evolutionary tree (SVG format)')
446    draw_tree_parser = parser.add_mutually_exclusive_group(required=False)
447    draw_tree_parser.add_argument('--draw-tree', dest='draw_tree', action='store_true', help='whether drawing the full tree should be skipped')
448    draw_tree_parser.add_argument('--no-draw-tree', dest='draw_tree', action='store_false')
449
450    draw_skeleton_parser = parser.add_mutually_exclusive_group(required=False)
451    draw_skeleton_parser.add_argument('--draw-skeleton', dest='draw_skeleton', action='store_true', help='whether the skeleton of the tree should be drawn')
452    draw_skeleton_parser.add_argument('--no-draw-skeleton', dest='draw_skeleton', action='store_false')
453
454    draw_spine_parser = parser.add_mutually_exclusive_group(required=False)
455    draw_spine_parser.add_argument('--draw-spine', dest='draw_spine', action='store_true', help='whether the spine of the tree should be drawn')
456    draw_spine_parser.add_argument('--no-draw-spine', dest='draw_spine', action='store_false')
457
458    #TODO: better names for those parameters
459    parser.add_argument('-t', '--time', default='GENERATIONAL', dest='time', help='values on vertical axis (BIRTHS/GENERATIONAL(d)/REAL); '
460                                                                      'BIRTHS: time measured as the number of births since the beginning; '
461                                                                      'GENERATIONAL: time measured as number of ancestors; '
462                                                                      'REAL: real time of the simulation')
463    parser.add_argument('-b', '--balance', default='DENSITY', dest='balance', help='method of placing nodes in the tree (RANDOM/MIN/DENSITY(d))')
464    parser.add_argument('-s', '--scale', default='NONE', dest='scale', help='type of timescale added to the tree (NONE(d)/SIMPLE)')
465    parser.add_argument('-c', '--coloring', default='IMPORTANCE', dest="coloring", help='method of coloring the tree (NONE/IMPORTANCE(d)/TYPE)')
466    parser.add_argument('-d', '--dots', default='TYPE', dest='dots', help='method of drawing dots (individuals) (NONE/NORMAL/TYPE(d))')
467    parser.add_argument('-j', '--jitter', dest="jitter", action='store_true', help='draw horizontal positions of children from the normal distribution')
468
469    parser.add_argument('--color-mut', default="#000000", dest="color_mut", help='color of clone/mutation lines in rgba (e.g. #FF60B240) for TYPE coloring')
470    parser.add_argument('--color-cross', default="#660198", dest="color_cross", help='color of crossover lines in rgba (e.g. #FF60B240) for TYPE coloring')
471
472    parser.add_argument('--min-skeleton-depth', type=int, default=2, dest='min_skeleton_depth', help='minimal distance from the leafs for the nodes in the skeleton')
473    parser.add_argument('--seed', type=int, dest='seed', help='seed for the random number generator (-1 for random)')
474
475    parser.add_argument('--simple-data', type=bool, dest='simple_data', help='input data are given in a simple format (#child #parent)')
476
477
478    parser.add_argument('-x', '--max-nodes', type=int, default=0, dest='max_nodes', help='maximum number of nodes drawn (starting from the first one)')
479
480    parser.set_defaults(draw_tree=True)
481    parser.set_defaults(draw_skeleton=False)
482    parser.set_defaults(draw_spine=False)
483
484    parser.set_defaults(seed=-1)
485
486    args = parser.parse_args()
487
488    TIME = args.time.upper()
489    BALANCE = args.balance.upper()
490    DOT_STYLE = args.dots.upper()
491    COLORING = args.coloring.upper()
492    SCALE = args.scale.upper()
493    JITTER = args.jitter
494    if not TIME in ['BIRTHS', 'GENERATIONAL', 'REAL']\
495        or not BALANCE in ['RANDOM', 'MIN', 'DENSITY']\
496        or not DOT_STYLE in ['NONE', 'NORMAL', 'TYPE']\
497        or not COLORING in ['NONE', 'IMPORTANCE', 'TYPE']\
498        or not SCALE in ['NONE', 'SIMPLE']:
499        print("Incorrect value of one of the parameters! Closing the program.") #TODO don't be lazy, figure out which parameter is wrong...
500        return
501
502
503    svg_mutation_line_style += hex_to_style(args.color_mut)
504    svg_crossover_line_style += hex_to_style(args.color_cross)
505
506    dir = args.input
507    min_skeleton_depth = args.min_skeleton_depth
508    max_nodes = args.max_nodes
509    seed = args.seed
510    if seed == -1:
511        seed = random.randint(0, 10000)
512    random.seed(seed)
513    print("seed:", seed)
514
515    if args.simple_data:
516        load_simple_data(dir)
517    else:
518        load_data(dir)
519
520    compute_depth(firstnode)
521
522    svg_file = open(args.output, "w")
523    svg_file.write('<svg xmlns:svg="http://www.w3.org/2000/svg" xmlns="http://www.w3.org/2000/svg" xmlns:xlink="http://www.w3.org/1999/xlink" version="1.0" '
524                   'width="' + str(w) + '" height="' + str(h) + '">')
525
526    prepos_children()
527
528    if args.draw_tree:
529        draw_children()
530    if args.draw_skeleton:
531        draw_skeleton()
532    if args.draw_spine:
533        draw_spine()
534
535    draw_scale(dir, SCALE)
536
537    svg_file.write("</svg>")
538    svg_file.close()
539
540main()
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