shapes.py 137 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481482483484485486487488489490491492493494495496497498499500501502503504505506507508509510511512513514515516517518519520521522523524525526527528529530531532533534535536537538539540541542543544545546547548549550551552553554555556557558559560561562563564565566567568569570571572573574575576577578579580581582583584585586587588589590591592593594595596597598599600601602603604605606607608609610611612613614615616617618619620621622623624625626627628629630631632633634635636637638639640641642643644645646647648649650651652653654655656657658659660661662663664665666667668669670671672673674675676677678679680681682683684685686687688689690691692693694695696697698699700701702703704705706707708709710711712713714715716717718719720721722723724725726727728729730731732733734735736737738739740741742743744745746747748749750751752753754755756757758759760761762763764765766767768769770771772773774775776777778779780781782783784785786787788789790791792793794795796797798799800801802803804805806807808809810811812813814815816817818819820821822823824825826827828829830831832833834835836837838839840841842843844845846847848849850851852853854855856857858859860861862863864865866867868869870871872873874875876877878879880881882883884885886887888889890891892893894895896897898899900901902903904905906907908909910911912913914915916917918919920921922923924925926927928929930931932933934935936937938939940941942943944945946947948949950951952953954955956957958959960961962963964965966967968969970971972973974975976977978979980981982983984985986987988989990991992993994995996997998999100010011002100310041005100610071008100910101011101210131014101510161017101810191020102110221023102410251026102710281029103010311032103310341035103610371038103910401041104210431044104510461047104810491050105110521053105410551056105710581059106010611062106310641065106610671068106910701071107210731074107510761077107810791080108110821083108410851086108710881089109010911092109310941095109610971098109911001101110211031104110511061107110811091110111111121113111411151116111711181119112011211122112311241125112611271128112911301131113211331134113511361137113811391140114111421143114411451146114711481149115011511152115311541155115611571158115911601161116211631164116511661167116811691170117111721173117411751176117711781179118011811182118311841185118611871188118911901191119211931194119511961197119811991200120112021203120412051206120712081209121012111212121312141215121612171218121912201221122212231224122512261227122812291230123112321233123412351236123712381239124012411242124312441245124612471248124912501251125212531254125512561257125812591260126112621263126412651266126712681269127012711272127312741275127612771278127912801281128212831284128512861287128812891290129112921293129412951296129712981299130013011302130313041305130613071308130913101311131213131314131513161317131813191320132113221323132413251326132713281329133013311332133313341335133613371338133913401341134213431344134513461347134813491350135113521353135413551356135713581359136013611362136313641365136613671368136913701371137213731374137513761377137813791380138113821383138413851386138713881389139013911392139313941395139613971398139914001401140214031404140514061407140814091410141114121413141414151416141714181419142014211422142314241425142614271428142914301431143214331434143514361437143814391440144114421443144414451446144714481449145014511452145314541455145614571458145914601461146214631464146514661467146814691470147114721473147414751476147714781479148014811482148314841485148614871488148914901491149214931494149514961497149814991500150115021503150415051506150715081509151015111512151315141515151615171518151915201521152215231524152515261527152815291530153115321533153415351536153715381539154015411542154315441545154615471548154915501551155215531554155515561557155815591560156115621563156415651566156715681569157015711572157315741575157615771578157915801581158215831584158515861587158815891590159115921593159415951596159715981599160016011602160316041605160616071608160916101611161216131614161516161617161816191620162116221623162416251626162716281629163016311632163316341635163616371638163916401641164216431644164516461647164816491650165116521653165416551656165716581659166016611662166316641665166616671668166916701671167216731674167516761677167816791680168116821683168416851686168716881689169016911692169316941695169616971698169917001701170217031704170517061707170817091710171117121713171417151716171717181719172017211722172317241725172617271728172917301731173217331734173517361737173817391740174117421743174417451746174717481749175017511752175317541755175617571758175917601761176217631764176517661767176817691770177117721773177417751776177717781779178017811782178317841785178617871788178917901791179217931794179517961797179817991800180118021803180418051806180718081809181018111812181318141815181618171818181918201821182218231824182518261827182818291830183118321833183418351836183718381839184018411842184318441845184618471848184918501851185218531854185518561857185818591860186118621863186418651866186718681869187018711872187318741875187618771878187918801881188218831884188518861887188818891890189118921893189418951896189718981899190019011902190319041905190619071908190919101911191219131914191519161917191819191920192119221923192419251926192719281929193019311932193319341935193619371938193919401941194219431944194519461947194819491950195119521953195419551956195719581959196019611962196319641965196619671968196919701971197219731974197519761977197819791980198119821983198419851986198719881989199019911992199319941995199619971998199920002001200220032004200520062007200820092010201120122013201420152016201720182019202020212022202320242025202620272028202920302031203220332034203520362037203820392040204120422043204420452046204720482049205020512052205320542055205620572058205920602061206220632064206520662067206820692070207120722073207420752076207720782079208020812082208320842085208620872088208920902091209220932094209520962097209820992100210121022103210421052106210721082109211021112112211321142115211621172118211921202121212221232124212521262127212821292130213121322133213421352136213721382139214021412142214321442145214621472148214921502151215221532154215521562157215821592160216121622163216421652166216721682169217021712172217321742175217621772178217921802181218221832184218521862187218821892190219121922193219421952196219721982199220022012202220322042205220622072208220922102211221222132214221522162217221822192220222122222223222422252226222722282229223022312232223322342235223622372238223922402241224222432244224522462247224822492250225122522253225422552256225722582259226022612262226322642265226622672268226922702271227222732274227522762277227822792280228122822283228422852286228722882289229022912292229322942295229622972298229923002301230223032304230523062307230823092310231123122313231423152316231723182319232023212322232323242325232623272328232923302331233223332334233523362337233823392340234123422343234423452346234723482349235023512352235323542355235623572358235923602361236223632364236523662367236823692370237123722373237423752376237723782379238023812382238323842385238623872388238923902391239223932394239523962397239823992400240124022403240424052406240724082409241024112412241324142415241624172418241924202421242224232424242524262427242824292430243124322433243424352436243724382439244024412442244324442445244624472448244924502451245224532454245524562457245824592460246124622463246424652466246724682469247024712472247324742475247624772478247924802481248224832484248524862487248824892490249124922493249424952496249724982499250025012502250325042505250625072508250925102511251225132514251525162517251825192520252125222523252425252526252725282529253025312532253325342535253625372538253925402541254225432544254525462547254825492550255125522553255425552556255725582559256025612562256325642565256625672568256925702571257225732574257525762577257825792580258125822583258425852586258725882589259025912592259325942595259625972598259926002601260226032604260526062607260826092610261126122613261426152616261726182619262026212622262326242625262626272628262926302631263226332634263526362637263826392640264126422643264426452646264726482649265026512652265326542655265626572658265926602661266226632664266526662667266826692670267126722673267426752676267726782679268026812682268326842685268626872688268926902691269226932694269526962697269826992700270127022703270427052706270727082709271027112712271327142715271627172718271927202721272227232724272527262727272827292730273127322733273427352736273727382739274027412742274327442745274627472748274927502751275227532754275527562757275827592760276127622763276427652766276727682769277027712772277327742775277627772778277927802781278227832784278527862787278827892790279127922793279427952796279727982799280028012802280328042805280628072808280928102811281228132814281528162817281828192820282128222823282428252826282728282829283028312832283328342835283628372838283928402841284228432844284528462847284828492850285128522853285428552856285728582859286028612862286328642865286628672868286928702871287228732874287528762877287828792880288128822883288428852886288728882889289028912892289328942895289628972898289929002901290229032904290529062907290829092910291129122913291429152916291729182919292029212922292329242925292629272928292929302931293229332934293529362937293829392940294129422943294429452946294729482949295029512952295329542955295629572958295929602961296229632964296529662967296829692970297129722973297429752976
  1. from __future__ import division
  2. from __future__ import unicode_literals
  3. from __future__ import print_function
  4. from __future__ import absolute_import
  5. from future import standard_library
  6. standard_library.install_aliases()
  7. from builtins import input
  8. from builtins import zip
  9. from builtins import str
  10. from builtins import range
  11. from builtins import *
  12. from builtins import object
  13. from numpy import linspace, sin, cos, pi, array, asarray, ndarray, sqrt, abs
  14. import pprint, copy, glob, os
  15. from math import radians
  16. from io import BytesIO
  17. from ruamel.yaml import YAML
  18. from PIL import Image
  19. import ast
  20. from .MatplotlibDraw import MatplotlibDraw
  21. drawing_tool = MatplotlibDraw()
  22. class Sketch():
  23. """
  24. Yaml to Pysketcher native features implementation
  25. """
  26. def __init__(self, container):
  27. """
  28. create a Sketch class instance providing the holding container
  29. """
  30. self.sketch = "" # repository used to collect all sketch parts
  31. self.container = container
  32. @staticmethod
  33. def matplotlib2SVG():
  34. """
  35. Save sketch as a svg string
  36. """
  37. f = BytesIO()
  38. drawing_tool.mpl.savefig(f, format="svg")
  39. return f.getvalue()
  40. @staticmethod
  41. def matplotlib2PNG():
  42. """
  43. Save sketch as a python .png image
  44. """
  45. f = BytesIO()
  46. drawing_tool.mpl.gcf().canvas.print_png(f)
  47. img = Image.open(f)
  48. return img
  49. def sVe(self, key, expression, sketchpart):
  50. """
  51. sVe: Validate sketch part expression
  52. given an expression from a sketch part, check if valid or not
  53. provides a string feedback if error else return 1
  54. """
  55. try:
  56. root = ast.parse(expression)
  57. except Exception as e:
  58. return f"{sketch}/{key}: '''{expression}''' parse error {str(e)}"
  59. names = {node.id for node in ast.walk(root) if isinstance(node, ast.Name)}
  60. for name in names:
  61. if name not in self.container:
  62. return f"{sketch}/{key}: {name} in {expression} is not defined"
  63. return 1
  64. def append(self, sketchpart):
  65. """
  66. Append and Parse a string sketch part into a sketch and its associated container.
  67. A sketch is just the concatenation of all the sketch parts
  68. name specifices the 'name' of the sketch part
  69. A container is a name space which holds
  70. - all the libraries references needed to create pysketcher shapes
  71. - all the variable providing shapes dimensions or position
  72. - all the shapes needed to create the shapes it defines
  73. """
  74. self.sketch += sketchpart
  75. yaml = YAML()
  76. psketch = yaml.load(sketchpart)
  77. sketch_name = psketch["name"]
  78. gwd = psketch['shapes']
  79. for _k in list(gwd.keys()):
  80. if _k == "stop":
  81. return True
  82. _c = gwd[_k]
  83. _t = str(type(_c))
  84. if _k == "libraries":
  85. for l in _c:
  86. _r = self.sVe(_k, l, sketch_name)
  87. if type(_r) == str:
  88. print(_r)
  89. return False
  90. exec(l,self.container)
  91. #print(_k, _c, _t)
  92. if _t == "<class 'ruamel.yaml.scalarfloat.ScalarFloat'>" or \
  93. _t == "<class 'str'>" or _t == "<class 'int'>":
  94. _expression = f"{_c}".replace("<bslash>","\\")
  95. _formula = f"{_k} = {_expression}"
  96. #print(_formula)
  97. _r = self.sVe(_k, _expression, sketch_name)
  98. if type(_r) == str:
  99. print(_r)
  100. return False
  101. exec(_formula,self.container)
  102. elif _t == "<class 'ruamel.yaml.comments.CommentedMap'>":
  103. #print(_c)
  104. _keys = list(_c.keys())
  105. #print(_keys)
  106. if 'formula' in _keys:
  107. _expression = f"{_c['formula']}".replace("<bslash>","\\")
  108. _formula = f"{_k} = {_expression}"
  109. #print(_formula)
  110. _r = self.sVe(_k, _expression, sketch_name)
  111. if type(_r) == str:
  112. print(_r)
  113. return False
  114. exec(_formula,self.container)
  115. # if the new object is a shape and has the sketch name, set this shape name as the sketch name
  116. if issubclass(type(container[_k]), Shape):
  117. if _k == sketch_name:
  118. self.container[_k].set_name(sketch_name)
  119. if 'style' in _keys:
  120. for _style in _c["style"]:
  121. # x_const.set_linestyle('dotted')
  122. _param = _c["style"][_style]
  123. __t = str(type(_param))
  124. #print(__t)
  125. if __t == "<class 'int'>":
  126. _style = f"{_k}.set_{_style}({_param})"
  127. else:
  128. _style = f"{_k}.set_{_style}('{_param}')"
  129. #print(_style)
  130. exec(_style,self.container)
  131. if 'transform' in _keys:
  132. #print(_c['transform'])
  133. if str(type(_c['transform'])) == "<class 'str'>":
  134. _t = f"{_k}.{_c['transform']}"
  135. #print(_t)
  136. _r = self.sVe(_k, _formula, sketch_name)
  137. if type(_r) == str:
  138. print(_r)
  139. return False
  140. exec(_t,self.container)
  141. else:
  142. for _transform in _c["transform"]:
  143. # x_const.rotate(-theta, contact)
  144. _t = f"{_k}.{_transform}"
  145. #print(_t)
  146. _r = self.sVe(_k, _t, sketch_name)
  147. if type(_r) == str:
  148. print(_r)
  149. return False
  150. exec(_t,self.container)
  151. if "action" in _keys:
  152. _action = _c["action"]
  153. #print(_action)
  154. _r = self.sVe(_k, _action, sketch_name)
  155. if type(_r) == str:
  156. print(_r)
  157. return False
  158. exec(_action,self.container)
  159. return True
  160. def point(x, y, check_inside=False):
  161. for obj, name in zip([x, y], ['x', 'y']):
  162. if isinstance(obj, (float,int)):
  163. pass
  164. elif isinstance(obj, ndarray):
  165. if obj.size == 1:
  166. pass
  167. else:
  168. raise TypeError('%s=%s of type %d has length=%d > 1' %
  169. (name, obj, type(obj), obj.size))
  170. else:
  171. raise TypeError('%s=%s is of wrong type %d' %
  172. (name, obj, type(obj)))
  173. if check_inside:
  174. ok, msg = drawing_tool.inside((x,y), exception=True)
  175. if not ok:
  176. print(msg)
  177. return array((x, y), dtype=float)
  178. def distance(p1, p2):
  179. p1 = arr2D(p1); p2 = arr2D(p2)
  180. d = p2 - p1
  181. return sqrt(d[0]**2 + d[1]**2)
  182. def unit_vec(x, y=None):
  183. """Return unit vector of the vector (x,y), or just x if x is a 2D point."""
  184. if isinstance(x, (float,int)) and isinstance(y, (float,int)):
  185. x = point(x, y)
  186. elif isinstance(x, (list,tuple,ndarray)) and y is None:
  187. return arr2D(x)/sqrt(x[0]**2 + x[1]**2)
  188. else:
  189. raise TypeError('x=%s is %s, must be float or ndarray 2D point' %
  190. (x, type(x)))
  191. def arr2D(x, check_inside=False):
  192. if isinstance(x, (tuple,list,ndarray)):
  193. if len(x) == 2:
  194. pass
  195. else:
  196. raise ValueError('x=%s has length %d, not 2' % (x, len(x)))
  197. else:
  198. raise TypeError('x=%s must be list/tuple/ndarray, not %s' %
  199. (x, type(x)))
  200. if check_inside:
  201. ok, msg = drawing_tool.inside(x, exception=True)
  202. if not ok:
  203. print(msg)
  204. return asarray(x, dtype=float)
  205. def _is_sequence(seq, length=None,
  206. can_be_None=False, error_message=True):
  207. if can_be_None:
  208. legal_types = (list,tuple,ndarray,None)
  209. else:
  210. legal_types = (list,tuple,ndarray)
  211. if isinstance(seq, legal_types):
  212. if length is not None:
  213. if length == len(seq):
  214. return True
  215. elif error_message:
  216. raise TypeError('sequence %s is not a sequence but %s; must be %s of length %d' %
  217. (str(seq), type(seq),
  218. ', '.join([str(t) for t in legal_types]),
  219. len(seq)))
  220. else:
  221. return False
  222. else:
  223. return True
  224. elif error_message:
  225. raise TypeError('sequence %s is not a sequence but %s, %s; must be %s' %
  226. (str(seq), seq.__class__.__name__, type(seq),
  227. ','.join([str(t)[5:-1] for t in legal_types])))
  228. else:
  229. return False
  230. def is_sequence(*sequences, **kwargs):
  231. length = kwargs.get('length', 2)
  232. can_be_None = kwargs.get('can_be_None', False)
  233. error_message = kwargs.get('error_message', True)
  234. check_inside = kwargs.get('check_inside', False)
  235. for x in sequences:
  236. _is_sequence(x, length=length, can_be_None=can_be_None,
  237. error_message=error_message)
  238. if check_inside:
  239. ok, msg = drawing_tool.inside(x, exception=True)
  240. if not ok:
  241. print(msg)
  242. def animate(fig, time_points, action, moviefiles=False,
  243. pause_per_frame=0.5, show_screen_graphics=True,
  244. title=None,
  245. **action_kwargs):
  246. if moviefiles:
  247. # Clean up old frame files
  248. framefilestem = 'tmp_frame_'
  249. framefiles = glob.glob('%s*.png' % framefilestem)
  250. for framefile in framefiles:
  251. os.remove(framefile)
  252. for n, t in enumerate(time_points):
  253. drawing_tool.erase()
  254. action(t, fig, **action_kwargs)
  255. #could demand returning fig, but in-place modifications
  256. #are done anyway
  257. #fig = action(t, fig)
  258. #if fig is None:
  259. # raise TypeError(
  260. # 'animate: action returns None, not fig\n'
  261. # '(a Shape object with the whole figure)')
  262. fig.draw()
  263. drawing_tool.display(title=title, show=show_screen_graphics)
  264. if moviefiles:
  265. drawing_tool.savefig('%s%04d.png' % (framefilestem, n),
  266. crop=False)
  267. if moviefiles:
  268. return '%s%%04d.png' % framefilestem
  269. """
  270. def save():
  271. os.system("ffmpeg -r 1 -i img%01d.png -vcodec mpeg4 -y movie.mp4")
  272. """
  273. class Shape(object):
  274. """
  275. Superclass for drawing different geometric shapes.
  276. Subclasses define shapes, but drawing, rotation, translation,
  277. etc. are done in generic functions in this superclass.
  278. """
  279. def __init__(self):
  280. """
  281. Never to be called from subclasses.
  282. """
  283. raise NotImplementedError(
  284. 'class %s must implement __init__,\nwhich defines '
  285. 'self.shapes as a dict (or list) of Shape objects\n'
  286. 'Do not call Shape.__init__!' % \
  287. self.__class__.__name__)
  288. def set_name(self, name):
  289. self.name = name
  290. return self
  291. def get_name(self):
  292. return self.name if hasattr(self, 'name') else 'no_name'
  293. def __iter__(self):
  294. # We iterate over self.shapes many places, and will
  295. # get here if self.shapes is just a Shape object and
  296. # not the assumed dict/list.
  297. print('Warning: class %s does not define self.shapes\n'\
  298. 'as a dict of Shape objects')
  299. return [self] # Make the iteration work
  300. def copy(self):
  301. return copy.deepcopy(self)
  302. def __getitem__(self, name):
  303. """
  304. Allow indexing like::
  305. obj1['name1']['name2']
  306. all the way down to ``Curve`` or ``Point`` (``Text``)
  307. objects.
  308. """
  309. if hasattr(self, 'shapes'):
  310. if name in self.shapes:
  311. return self.shapes[name]
  312. else:
  313. for shape in self.shapes:
  314. if isinstance(self.shapes[shape], (Curve,Point)):
  315. # Indexing of Curve/Point/Text is not possible
  316. raise TypeError(
  317. 'Index "%s" (%s) is illegal' %
  318. (name, self.__class__.__name__))
  319. return self.shapes[shape][name]
  320. else:
  321. raise Exception('This is a bug in __getitem__')
  322. def __setitem__(self, name, value):
  323. """
  324. Allow assignment like::
  325. obj1['name1']['name2'] = value
  326. all the way down to ``Curve`` or ``Point`` (``Text``)
  327. objects.
  328. """
  329. if hasattr(self, 'shapes'):
  330. self.shapes[name] = value
  331. else:
  332. raise Exception('Cannot assign')
  333. def _for_all_shapes(self, func, *args, **kwargs):
  334. verbose = kwargs.get('verbose', 0)
  335. if not hasattr(self, 'shapes'):
  336. # When self.shapes is lacking, we either come to
  337. # a special implementation of func or we come here
  338. # because Shape.func is just inherited. This is
  339. # an error if the class is not Curve or Point
  340. if isinstance(self, (Curve, Point)):
  341. return # ok: no shapes, but object is a curve or point end leaf
  342. else:
  343. raise AttributeError('class %s has no shapes attribute!' %
  344. self.__class__.__name__)
  345. is_dict = True if isinstance(self.shapes, dict) else False
  346. for k, shape in enumerate(self.shapes):
  347. if is_dict:
  348. shape_name = shape
  349. shape = self.shapes[shape]
  350. else:
  351. shape_name = k # use index as name if list (not dict)
  352. if not isinstance(shape, Shape):
  353. if isinstance(shape, dict):
  354. raise TypeError(
  355. 'class %s has a self.shapes member "%s" that is just\n'
  356. 'a plain dictionary,\n%s\n'
  357. 'Did you mean to embed this dict in a Composition\n'
  358. 'object?' % (self.__class__.__name__, shape_name,
  359. str(shape)))
  360. elif isinstance(shape, (list,tuple)):
  361. raise TypeError(
  362. 'class %s has self.shapes member "%s" containing\n'
  363. 'a %s object %s,\n'
  364. 'Did you mean to embed this list in a Composition\n'
  365. 'object?' % (self.__class__.__name__, shape_name,
  366. type(shape), str(shape)))
  367. elif shape is None:
  368. raise TypeError(
  369. 'class %s has a self.shapes member "%s" that is None.\n'
  370. 'Some variable name is wrong, or some function\n'
  371. 'did not return the right object...' \
  372. % (self.__class__.__name__, shape_name))
  373. else:
  374. raise TypeError(
  375. 'class %s has a self.shapes member "%s" of %s which '
  376. 'is not a Shape object\n%s' %
  377. (self.__class__.__name__, shape_name, type(shape),
  378. pprint.pformat(self.shapes)))
  379. if isinstance(shape, Curve):
  380. shape.name = shape_name
  381. if verbose > 0:
  382. print('calling %s.%s' % (shape_name, func))
  383. getattr(shape, func)(*args, **kwargs)
  384. def draw(self, verbose=0):
  385. self._for_all_shapes('draw', verbose=verbose)
  386. return self
  387. def draw_dimensions(self):
  388. if hasattr(self, 'dimensions'):
  389. for shape in self.dimensions:
  390. self.dimensions[shape].draw()
  391. return self
  392. else:
  393. #raise AttributeError('no self.dimensions dict for defining dimensions of class %s' % self.__classname__.__name__)
  394. return self
  395. def rotate(self, angle, center):
  396. is_sequence(center, length=2)
  397. self._for_all_shapes('rotate', angle, center)
  398. return self
  399. def translate(self, vec):
  400. is_sequence(vec, length=2)
  401. self._for_all_shapes('translate', vec)
  402. return self
  403. def scale(self, factor):
  404. self._for_all_shapes('scale', factor)
  405. return self
  406. def deform(self, displacement_function):
  407. self._for_all_shapes('deform', displacement_function)
  408. return self
  409. def minmax_coordinates(self, minmax=None):
  410. if minmax is None:
  411. minmax = {'xmin': 1E+20, 'xmax': -1E+20,
  412. 'ymin': 1E+20, 'ymax': -1E+20}
  413. self._for_all_shapes('minmax_coordinates', minmax)
  414. return minmax
  415. def recurse(self, name, indent=0):
  416. if not isinstance(self.shapes, dict):
  417. raise TypeError('recurse works only with dict self.shape, not %s' %
  418. type(self.shapes))
  419. space = ' '*indent
  420. print(space, '%s: %s.shapes has entries' % \
  421. (self.__class__.__name__, name), \
  422. str(list(self.shapes.keys()))[1:-1])
  423. for shape in self.shapes:
  424. print(space, end=' ')
  425. print('call %s.shapes["%s"].recurse("%s", %d)' % \
  426. (name, shape, shape, indent+2))
  427. self.shapes[shape].recurse(shape, indent+2)
  428. def graphviz_dot(self, name, classname=True):
  429. if not isinstance(self.shapes, dict):
  430. raise TypeError('recurse works only with dict self.shape, not %s' %
  431. type(self.shapes))
  432. dotfile = name + '.dot'
  433. pngfile = name + '.png'
  434. if classname:
  435. name = r"%s:\n%s" % (self.__class__.__name__, name)
  436. couplings = self._object_couplings(name, classname=classname)
  437. # Insert counter for similar names
  438. from collections import defaultdict
  439. count = defaultdict(lambda: 0)
  440. couplings2 = []
  441. for i in range(len(couplings)):
  442. parent, child = couplings[i]
  443. count[child] += 1
  444. parent += ' (%d)' % count[parent]
  445. child += ' (%d)' % count[child]
  446. couplings2.append((parent, child))
  447. print('graphviz', couplings, count)
  448. # Remove counter for names there are only one of
  449. for i in range(len(couplings)):
  450. parent2, child2 = couplings2[i]
  451. parent, child = couplings[i]
  452. if count[parent] > 1:
  453. parent = parent2
  454. if count[child] > 1:
  455. child = child2
  456. couplings[i] = (parent, child)
  457. print(couplings)
  458. f = open(dotfile, 'w')
  459. f.write('digraph G {\n')
  460. for parent, child in couplings:
  461. f.write('"%s" -> "%s";\n' % (parent, child))
  462. f.write('}\n')
  463. f.close()
  464. print('Run dot -Tpng -o %s %s' % (pngfile, dotfile))
  465. def _object_couplings(self, parent, couplings=[], classname=True):
  466. """Find all couplings of parent and child objects in a figure."""
  467. for shape in self.shapes:
  468. if classname:
  469. childname = r"%s:\n%s" % \
  470. (self.shapes[shape].__class__.__name__, shape)
  471. else:
  472. childname = shape
  473. couplings.append((parent, childname))
  474. self.shapes[shape]._object_couplings(childname, couplings,
  475. classname)
  476. return couplings
  477. def set_linestyle(self, style):
  478. styles = ('solid', 'dashed', 'dashdot', 'dotted')
  479. if style not in styles:
  480. raise ValueError('%s: style=%s must be in %s' %
  481. (self.__class__.__name__ + '.set_linestyle:',
  482. style, str(styles)))
  483. self._for_all_shapes('set_linestyle', style)
  484. return self
  485. def set_linewidth(self, width):
  486. if not isinstance(width, int) and width >= 0:
  487. raise ValueError('%s: width=%s must be positive integer' %
  488. (self.__class__.__name__ + '.set_linewidth:',
  489. width))
  490. self._for_all_shapes('set_linewidth', width)
  491. return self
  492. def set_linecolor(self, color):
  493. if color in drawing_tool.line_colors:
  494. color = drawing_tool.line_colors[color]
  495. elif color in list(drawing_tool.line_colors.values()):
  496. pass # color is ok
  497. else:
  498. raise ValueError('%s: invalid color "%s", must be in %s' %
  499. (self.__class__.__name__ + '.set_linecolor:',
  500. color, list(drawing_tool.line_colors.keys())))
  501. self._for_all_shapes('set_linecolor', color)
  502. return self
  503. def set_arrow(self, style):
  504. styles = ('->', '<-', '<->')
  505. if not style in styles:
  506. raise ValueError('%s: style=%s must be in %s' %
  507. (self.__class__.__name__ + '.set_arrow:',
  508. style, styles))
  509. self._for_all_shapes('set_arrow', style)
  510. return self
  511. def set_filled_curves(self, color='', pattern=''):
  512. if color in drawing_tool.line_colors:
  513. color = drawing_tool.line_colors[color]
  514. elif color in list(drawing_tool.line_colors.values()):
  515. pass # color is ok
  516. else:
  517. raise ValueError('%s: invalid color "%s", must be in %s' %
  518. (self.__class__.__name__ + '.set_filled_curves:',
  519. color, list(drawing_tool.line_colors.keys())))
  520. self._for_all_shapes('set_filled_curves', color, pattern)
  521. return self
  522. def set_shadow(self, pixel_displacement=3):
  523. self._for_all_shapes('set_shadow', pixel_displacement)
  524. return self
  525. def show_hierarchy(self, indent=0, format='std'):
  526. """Recursive pretty print of hierarchy of objects."""
  527. if not isinstance(self.shapes, dict):
  528. print('cannot print hierarchy when %s.shapes is not a dict' % \
  529. self.__class__.__name__)
  530. s = ''
  531. if format == 'dict':
  532. s += '{'
  533. for shape in self.shapes:
  534. if format == 'dict':
  535. shape_str = repr(shape) + ':'
  536. elif format == 'plain':
  537. shape_str = shape
  538. else:
  539. shape_str = shape + ':'
  540. if format == 'dict' or format == 'plain':
  541. class_str = ''
  542. else:
  543. class_str = ' (%s)' % \
  544. self.shapes[shape].__class__.__name__
  545. s += '\n%s%s%s %s,' % (
  546. ' '*indent,
  547. shape_str,
  548. class_str,
  549. self.shapes[shape].show_hierarchy(indent+4, format))
  550. if format == 'dict':
  551. s += '}'
  552. return s
  553. def __str__(self):
  554. """Display hierarchy with minimum information (just object names)."""
  555. return self.show_hierarchy(format='plain')
  556. def __repr__(self):
  557. """Display hierarchy as a dictionary."""
  558. return self.show_hierarchy(format='dict')
  559. #return pprint.pformat(self.shapes)
  560. class Curve(Shape):
  561. """General curve as a sequence of (x,y) coordinates."""
  562. def __init__(self, x, y):
  563. """
  564. `x`, `y`: arrays holding the coordinates of the curve.
  565. """
  566. self.x = asarray(x, dtype=float)
  567. self.y = asarray(y, dtype=float)
  568. #self.shapes must not be defined in this class
  569. #as self.shapes holds children objects:
  570. #Curve has no children (end leaf of self.shapes tree)
  571. self.linestyle = None
  572. self.linewidth = None
  573. self.linecolor = None
  574. self.fillcolor = None
  575. self.fillpattern = None
  576. self.arrow = None
  577. self.shadow = False
  578. self.name = None # name of object that this Curve represents
  579. def inside_plot_area(self, verbose=True):
  580. """Check that all coordinates are within drawing_tool's area."""
  581. xmin, xmax = self.x.min(), self.x.max()
  582. ymin, ymax = self.y.min(), self.y.max()
  583. t = drawing_tool
  584. inside = True
  585. if not hasattr(t, 'xmin'):
  586. return None # drawing area is not defined
  587. if xmin < t.xmin:
  588. inside = False
  589. if verbose:
  590. print('x_min=%g < plot area x_min=%g' % (xmin, t.xmin))
  591. if xmax > t.xmax:
  592. inside = False
  593. if verbose:
  594. print('x_max=%g > plot area x_max=%g' % (xmax, t.xmax))
  595. if ymin < t.ymin:
  596. inside = False
  597. if verbose:
  598. print('y_min=%g < plot area y_min=%g' % (ymin, t.ymin))
  599. if ymax > t.ymax:
  600. inside = False
  601. if verbose:
  602. print('y_max=%g > plot area y_max=%g' % (ymax, t.ymax))
  603. return inside
  604. def draw(self, verbose=0):
  605. """
  606. Send the curve to the plotting engine. That is, convert
  607. coordinate information in self.x and self.y, together
  608. with optional settings of linestyles, etc., to
  609. plotting commands for the chosen engine.
  610. """
  611. self.inside_plot_area()
  612. drawing_tool.plot_curve(
  613. self.x, self.y,
  614. self.linestyle, self.linewidth, self.linecolor,
  615. self.arrow, self.fillcolor, self.fillpattern,
  616. self.shadow, self.name)
  617. if verbose:
  618. print('drawing Curve object with %d points' % len(self.x))
  619. def rotate(self, angle, center):
  620. """
  621. Rotate all coordinates: `angle` is measured in degrees and
  622. (`x`,`y`) is the "origin" of the rotation.
  623. """
  624. angle = radians(angle)
  625. x, y = center
  626. c = cos(angle); s = sin(angle)
  627. xnew = x + (self.x - x)*c - (self.y - y)*s
  628. ynew = y + (self.x - x)*s + (self.y - y)*c
  629. self.x = xnew
  630. self.y = ynew
  631. return self
  632. def scale(self, factor):
  633. """Scale all coordinates by `factor`: ``x = factor*x``, etc."""
  634. self.x = factor*self.x
  635. self.y = factor*self.y
  636. return self
  637. def translate(self, vec):
  638. """Translate all coordinates by a vector `vec`."""
  639. self.x += vec[0]
  640. self.y += vec[1]
  641. return self
  642. def deform(self, displacement_function):
  643. """Displace all coordinates according to displacement_function(x,y)."""
  644. for i in range(len(self.x)):
  645. self.x[i], self.y[i] = displacement_function(self.x[i], self.y[i])
  646. return self
  647. def minmax_coordinates(self, minmax=None):
  648. if minmax is None:
  649. minmax = {'xmin': [], 'xmax': [], 'ymin': [], 'ymax': []}
  650. minmax['xmin'] = min(self.x.min(), minmax['xmin'])
  651. minmax['xmax'] = max(self.x.max(), minmax['xmax'])
  652. minmax['ymin'] = min(self.y.min(), minmax['ymin'])
  653. minmax['ymax'] = max(self.y.max(), minmax['ymax'])
  654. return minmax
  655. def recurse(self, name, indent=0):
  656. space = ' '*indent
  657. print(space, 'reached "bottom" object %s' % \
  658. self.__class__.__name__)
  659. def _object_couplings(self, parent, couplings=[], classname=True):
  660. return
  661. def set_linecolor(self, color):
  662. self.linecolor = color
  663. return self
  664. def set_linewidth(self, width):
  665. self.linewidth = width
  666. return self
  667. def set_linestyle(self, style):
  668. self.linestyle = style
  669. return self
  670. def set_arrow(self, style=None):
  671. self.arrow = style
  672. return self
  673. def set_filled_curves(self, color='', pattern=''):
  674. self.fillcolor = color
  675. self.fillpattern = pattern
  676. return self
  677. def set_shadow(self, pixel_displacement=3):
  678. self.shadow = pixel_displacement
  679. return self
  680. def show_hierarchy(self, indent=0, format='std'):
  681. if format == 'dict':
  682. return '"%s"' % str(self)
  683. elif format == 'plain':
  684. return ''
  685. else:
  686. return str(self)
  687. def __str__(self):
  688. """Compact pretty print of a Curve object."""
  689. s = '%d (x,y) coords' % self.x.size
  690. inside = self.inside_plot_area(verbose=False)
  691. if inside is None:
  692. pass # no info about the plotting area
  693. elif not inside:
  694. s += ', some coordinates are outside plotting area!\n'
  695. props = ('linecolor', 'linewidth', 'linestyle', 'arrow',
  696. 'fillcolor', 'fillpattern')
  697. for prop in props:
  698. value = getattr(self, prop)
  699. if value is not None:
  700. s += ' %s=%s' % (prop, repr(value))
  701. return s
  702. def __repr__(self):
  703. return str(self)
  704. class Spline(Shape):
  705. # Note: UnivariateSpline interpolation may not work if
  706. # the x[i] points are far from uniformly spaced
  707. def __init__(self, x, y, degree=3, resolution=501):
  708. from scipy.interpolate import UnivariateSpline
  709. self.smooth = UnivariateSpline(x, y, s=0, k=degree)
  710. self.xcoor = linspace(x[0], x[-1], resolution)
  711. ycoor = self.smooth(self.xcoor)
  712. self.shapes = {'smooth': Curve(self.xcoor, ycoor)}
  713. def geometric_features(self):
  714. s = self.shapes['smooth']
  715. return {'start': point(s.x[0], s.y[0]),
  716. 'end': point(s.x[-1], s.y[-1]),
  717. 'interval': [s.x[0], s.x[-1]]}
  718. def __call__(self, x):
  719. return self.smooth(x)
  720. # Can easily find the derivative and the integral as
  721. # self.smooth.derivative(n=1) and self.smooth.antiderivative()
  722. class SketchyFunc1(Spline):
  723. """
  724. A typical function curve used to illustrate an "arbitrary" function.
  725. """
  726. domain = [1, 6]
  727. def __init__(self, name=None, name_pos='start',
  728. xmin=0, xmax=6, ymin=0, ymax=2):
  729. x = array([0, 2, 3, 4, 5, 6])
  730. y = array([1, 1.8, 1.2, 0.7, 0.8, 0.85])
  731. #y = array([5, 3.5, 3.8, 3, 2.5, 2.4])
  732. # Scale x and y
  733. x = xmin - x.min() + x*(xmax - xmin)/(x.max()-x.min())
  734. y = ymin - y.min() + y*(ymax - ymin)/(y.max()-y.min())
  735. Spline.__init__(self, x, y)
  736. self.shapes['smooth'].set_linecolor('black')
  737. if name is not None:
  738. self.shapes['name'] = Text(name, self.geometric_features()[name_pos] + point(0,0.1))
  739. class SketchyFunc3(Spline):
  740. """
  741. A typical function curve used to illustrate an "arbitrary" function.
  742. """
  743. domain = [0, 6]
  744. def __init__(self, name=None, name_pos='start',
  745. xmin=0, xmax=6, ymin=0.5, ymax=3.8):
  746. x = array([0, 2, 3, 4, 5, 6])
  747. y = array([0.5, 3.5, 3.8, 2, 2.5, 3.5])
  748. # Scale x and y
  749. x = xmin - x.min() + x*(xmax - xmin)/(x.max()-x.min())
  750. y = ymin - y.min() + y*(ymax - ymin)/(y.max()-y.min())
  751. Spline.__init__(self, x, y)
  752. self.shapes['smooth'].set_linecolor('black')
  753. if name is not None:
  754. self.shapes['name'] = Text(name, self.geometric_features()[name_pos] + point(0,0.1))
  755. class SketchyFunc4(Spline):
  756. """
  757. A typical function curve used to illustrate an "arbitrary" function.
  758. Can be a companion function to SketchyFunc3.
  759. """
  760. domain = [1, 6]
  761. def __init__(self, name=None, name_pos='start',
  762. xmin=0, xmax=6, ymin=0.5, ymax=1.8):
  763. x = array([0, 2, 3, 4, 5, 6])
  764. y = array([1.5, 1.3, 0.7, 0.5, 0.6, 0.8])
  765. # Scale x and y
  766. x = xmin - x.min() + x*(xmax - xmin)/(x.max()-x.min())
  767. y = ymin - y.min() + y*(ymax - ymin)/(y.max()-y.min())
  768. Spline.__init__(self, x, y)
  769. self.shapes['smooth'].set_linecolor('black')
  770. if name is not None:
  771. self.shapes['name'] = Text(name, self.geometric_features()[name_pos] + point(0,0.1))
  772. class SketchyFunc2(Shape):
  773. """
  774. A typical function curve used to illustrate an "arbitrary" function.
  775. """
  776. domain = [0, 2.25]
  777. def __init__(self, name=None, name_pos='end',
  778. xmin=0, xmax=2.25, ymin=0.046679703125, ymax=1.259375):
  779. a = 0; b = 2.25
  780. resolution = 100
  781. x = linspace(a, b, resolution+1)
  782. f = self # for calling __call__
  783. y = f(x)
  784. # Scale x and y
  785. x = xmin - x.min() + x*(xmax - xmin)/(x.max()-x.min())
  786. y = ymin - y.min() + y*(ymax - ymin)/(y.max()-y.min())
  787. self.shapes = {'smooth': Curve(x, y)}
  788. self.shapes['smooth'].set_linecolor('black')
  789. pos = point(a, f(a)) if name_pos == 'start' else point(b, f(b))
  790. if name is not None:
  791. self.shapes['name'] = Text(name, pos + point(0,0.1))
  792. def __call__(self, x):
  793. return 0.5+x*(2-x)*(0.9-x) # on [0, 2.25]
  794. class Point(Shape):
  795. """A point (x,y) which can be rotated, translated, and scaled."""
  796. def __init__(self, x, y):
  797. self.x, self.y = x, y
  798. #self.shapes is not needed in this class
  799. def __add__(self, other):
  800. if isinstance(other, (list,tuple)):
  801. other = Point(other)
  802. return Point(self.x+other.x, self.y+other.y)
  803. # class Point is an abstract class - only subclasses are useful
  804. # and must implement draw
  805. def draw(self, verbose=0):
  806. raise NotImplementedError(
  807. 'class %s must implement the draw method' %
  808. self.__class__.__name__)
  809. def rotate(self, angle, center):
  810. """Rotate point an `angle` (in degrees) around (`x`,`y`)."""
  811. angle = angle*pi/180
  812. x, y = center
  813. c = cos(angle); s = sin(angle)
  814. xnew = x + (self.x - x)*c - (self.y - y)*s
  815. ynew = y + (self.x - x)*s + (self.y - y)*c
  816. self.x = xnew
  817. self.y = ynew
  818. return self
  819. def scale(self, factor):
  820. """Scale point coordinates by `factor`: ``x = factor*x``, etc."""
  821. self.x = factor*self.x
  822. self.y = factor*self.y
  823. return self
  824. def translate(self, vec):
  825. """Translate point by a vector `vec`."""
  826. self.x += vec[0]
  827. self.y += vec[1]
  828. return self
  829. def deform(self, displacement_function):
  830. """Displace coordinates according to displacement_function(x,y)."""
  831. for i in range(len(self.x)):
  832. self.x, self.y = displacement_function(self.x, self.y)
  833. return self
  834. def minmax_coordinates(self, minmax=None):
  835. if minmax is None:
  836. minmax = {'xmin': [], 'xmax': [], 'ymin': [], 'ymax': []}
  837. minmax['xmin'] = min(self.x, minmax['xmin'])
  838. minmax['xmax'] = max(self.x, minmax['xmax'])
  839. minmax['ymin'] = min(self.y, minmax['ymin'])
  840. minmax['ymax'] = max(self.y, minmax['ymax'])
  841. return minmax
  842. def recurse(self, name, indent=0):
  843. space = ' '*indent
  844. print(space, 'reached "bottom" object %s' % \
  845. self.__class__.__name__)
  846. def _object_couplings(self, parent, couplings=[], classname=True):
  847. return
  848. # No need for set_linecolor etc since self._for_all_shapes, which
  849. # is always called for these functions, makes a test and stops
  850. # calls if self.shapes is missing and the object is Point or Curve
  851. def show_hierarchy(self, indent=0, format='std'):
  852. s = '%s at (%g,%g)' % (self.__class__.__name__, self.x, self.y)
  853. if format == 'dict':
  854. return '"%s"' % s
  855. elif format == 'plain':
  856. return ''
  857. else:
  858. return s
  859. # no need to store input data as they are invalid after rotations etc.
  860. class Rectangle(Shape):
  861. """
  862. Rectangle specified by the point `lower_left_corner`, `width`,
  863. and `height`.
  864. """
  865. def __init__(self, lower_left_corner, width, height):
  866. is_sequence(lower_left_corner)
  867. p = arr2D(lower_left_corner) # short form
  868. x = [p[0], p[0] + width,
  869. p[0] + width, p[0], p[0]]
  870. y = [p[1], p[1], p[1] + height,
  871. p[1] + height, p[1]]
  872. self.shapes = {'rectangle': Curve(x,y)}
  873. # Dimensions
  874. dims = {
  875. 'width': Distance_wText(p + point(0, -height/5.),
  876. p + point(width, -height/5.),
  877. 'width'),
  878. 'height': Distance_wText(p + point(width + width/5., 0),
  879. p + point(width + width/5., height),
  880. 'height'),
  881. 'lower_left_corner': Text_wArrow('lower_left_corner',
  882. p - point(width/5., height/5.), p)
  883. }
  884. self.dimensions = dims
  885. def geometric_features(self):
  886. """
  887. Return dictionary with
  888. ==================== =============================================
  889. Attribute Description
  890. ==================== =============================================
  891. lower_left Lower left corner point.
  892. upper_left Upper left corner point.
  893. lower_right Lower right corner point.
  894. upper_right Upper right corner point.
  895. lower_mid Middle point on lower side.
  896. upper_mid Middle point on upper side.
  897. center Center point
  898. ==================== =============================================
  899. """
  900. r = self.shapes['rectangle']
  901. d = {'lower_left': point(r.x[0], r.y[0]),
  902. 'lower_right': point(r.x[1], r.y[1]),
  903. 'upper_right': point(r.x[2], r.y[2]),
  904. 'upper_left': point(r.x[3], r.y[3])}
  905. d['lower_mid'] = 0.5*(d['lower_left'] + d['lower_right'])
  906. d['upper_mid'] = 0.5*(d['upper_left'] + d['upper_right'])
  907. d['left_mid'] = 0.5*(d['lower_left'] + d['upper_left'])
  908. d['right_mid'] = 0.5*(d['lower_right'] + d['upper_right'])
  909. d['center'] = point(d['lower_mid'][0], d['left_mid'][1])
  910. return d
  911. class Triangle(Shape):
  912. """
  913. Triangle defined by its three vertices p1, p2, and p3.
  914. Recorded geometric features:
  915. ==================== =============================================
  916. Attribute Description
  917. ==================== =============================================
  918. p1, p2, p3 Corners as given to the constructor.
  919. ==================== =============================================
  920. """
  921. def __init__(self, p1, p2, p3):
  922. is_sequence(p1, p2, p3)
  923. x = [p1[0], p2[0], p3[0], p1[0]]
  924. y = [p1[1], p2[1], p3[1], p1[1]]
  925. self.shapes = {'triangle': Curve(x,y)}
  926. # Dimensions
  927. self.dimensions = {'p1': Text('p1', p1),
  928. 'p2': Text('p2', p2),
  929. 'p3': Text('p3', p3)}
  930. def geometric_features(self):
  931. t = self.shapes['triangle']
  932. return {'p1': point(t.x[0], t.y[0]),
  933. 'p2': point(t.x[1], t.y[1]),
  934. 'p3': point(t.x[2], t.y[2])}
  935. class Line(Shape):
  936. def __init__(self, start, end):
  937. is_sequence(start, end, length=2)
  938. if isinstance(start, (list,tuple)):
  939. start = array(start)
  940. if isinstance(end, (list,tuple)):
  941. end = array(end)
  942. if (start == end).all():
  943. # Introduce a very small perturbation since identical points
  944. # give drawing error
  945. end[0] = start[0] + 1E-10
  946. x = [start[0], end[0]]
  947. y = [start[1], end[1]]
  948. self.shapes = {'line': Curve(x, y)}
  949. def geometric_features(self):
  950. line = self.shapes['line']
  951. return {'start': point(line.x[0], line.y[0]),
  952. 'end': point(line.x[1], line.y[1]),}
  953. def compute_formulas(self):
  954. x, y = self.shapes['line'].x, self.shapes['line'].y
  955. # Define equations for line:
  956. # y = a*x + b, x = c*y + d
  957. try:
  958. self.a = (y[1] - y[0])/(x[1] - x[0])
  959. self.b = y[0] - self.a*x[0]
  960. except ZeroDivisionError:
  961. # Vertical line, y is not a function of x
  962. self.a = None
  963. self.b = None
  964. try:
  965. if self.a is None:
  966. self.c = 0
  967. else:
  968. self.c = 1/float(self.a)
  969. if self.b is None:
  970. self.d = x[1]
  971. except ZeroDivisionError:
  972. # Horizontal line, x is not a function of y
  973. self.c = None
  974. self.d = None
  975. def compute_formulas(self):
  976. x, y = self.shapes['line'].x, self.shapes['line'].y
  977. tol = 1E-14
  978. # Define equations for line:
  979. # y = a*x + b, x = c*y + d
  980. if abs(x[1] - x[0]) > tol:
  981. self.a = (y[1] - y[0])/(x[1] - x[0])
  982. self.b = y[0] - self.a*x[0]
  983. else:
  984. # Vertical line, y is not a function of x
  985. self.a = None
  986. self.b = None
  987. if self.a is None:
  988. self.c = 0
  989. elif abs(self.a) > tol:
  990. self.c = 1/float(self.a)
  991. self.d = x[1]
  992. else: # self.a is 0
  993. # Horizontal line, x is not a function of y
  994. self.c = None
  995. self.d = None
  996. def __call__(self, x=None, y=None):
  997. """Given x, return y on the line, or given y, return x."""
  998. self.compute_formulas()
  999. if x is not None and self.a is not None:
  1000. return self.a*x + self.b
  1001. elif y is not None and self.c is not None:
  1002. return self.c*y + self.d
  1003. else:
  1004. raise ValueError(
  1005. 'Line.__call__(x=%s, y=%s) not meaningful' % \
  1006. (x, y))
  1007. def new_interval(self, x=None, y=None):
  1008. """Redefine current Line to cover interval in x or y."""
  1009. if x is not None:
  1010. is_sequence(x, length=2)
  1011. xL, xR = x
  1012. new_line = Line((xL, self(x=xL)), (xR, self(x=xR)))
  1013. elif y is not None:
  1014. is_sequence(y, length=2)
  1015. yL, yR = y
  1016. new_line = Line((xL, self(y=xL)), (xR, self(y=xR)))
  1017. self.shapes['line'] = new_line['line']
  1018. return self
  1019. # First implementation of class Circle
  1020. class Circle(Shape):
  1021. def __init__(self, center, radius, resolution=180):
  1022. self.center, self.radius = center, radius
  1023. self.resolution = resolution
  1024. t = linspace(0, 2*pi, resolution+1)
  1025. x0 = center[0]; y0 = center[1]
  1026. R = radius
  1027. x = x0 + R*cos(t)
  1028. y = y0 + R*sin(t)
  1029. self.shapes = {'circle': Curve(x, y)}
  1030. def __call__(self, theta):
  1031. """
  1032. Return (x, y) point corresponding to angle theta.
  1033. Not valid after a translation, rotation, or scaling.
  1034. """
  1035. return self.center[0] + self.radius*cos(theta), \
  1036. self.center[1] + self.radius*sin(theta)
  1037. class Arc(Shape):
  1038. def __init__(self, center, radius,
  1039. start_angle, arc_angle,
  1040. resolution=180):
  1041. is_sequence(center)
  1042. # Must record some parameters for __call__
  1043. self.center = arr2D(center)
  1044. self.radius = radius
  1045. self.start_angle = radians(start_angle)
  1046. self.arc_angle = radians(arc_angle)
  1047. self.resolution = resolution
  1048. self.setCurve()
  1049. def setCurve(self):
  1050. t = linspace(self.start_angle,
  1051. self.start_angle + self.arc_angle,
  1052. self.resolution+1)
  1053. x0 = self.center[0]; y0 = self.center[1]
  1054. R = self.radius
  1055. x = x0 + R*cos(t)
  1056. y = y0 + R*sin(t)
  1057. self.shapes = {'arc': Curve(x, y)}
  1058. # Cannot set dimensions (Arc_wText recurses into this
  1059. # constructor forever). Set in test_Arc instead.
  1060. def geometric_features(self):
  1061. a = self.shapes['arc']
  1062. m = len(a.x)//2 # mid point in array
  1063. d = {'start': point(a.x[0], a.y[0]),
  1064. 'end': point(a.x[-1], a.y[-1]),
  1065. 'mid': point(a.x[m], a.y[m])}
  1066. return d
  1067. def __call__(self, theta):
  1068. """
  1069. Return (x,y) point at start_angle + theta.
  1070. Not valid after translation, rotation, or scaling.
  1071. """
  1072. theta = radians(theta)
  1073. t = self.start_angle + theta
  1074. x0 = self.center[0]
  1075. y0 = self.center[1]
  1076. R = self.radius
  1077. x = x0 + R*cos(t)
  1078. y = y0 + R*sin(t)
  1079. return (x, y)
  1080. # Alternative for small arcs: Parabola
  1081. class Parabola(Shape):
  1082. def __init__(self, start, mid, stop, resolution=21):
  1083. self.p1, self.p2, self.p3 = start, mid, stop
  1084. # y as function of x? (no point on line x=const?)
  1085. tol = 1E-14
  1086. if abs(self.p1[0] - self.p2[0]) > 1E-14 and \
  1087. abs(self.p2[0] - self.p3[0]) > 1E-14 and \
  1088. abs(self.p3[0] - self.p1[0]) > 1E-14:
  1089. self.y_of_x = True
  1090. else:
  1091. self.y_of_x = False
  1092. # x as function of y? (no point on line y=const?)
  1093. tol = 1E-14
  1094. if abs(self.p1[1] - self.p2[1]) > 1E-14 and \
  1095. abs(self.p2[1] - self.p3[1]) > 1E-14 and \
  1096. abs(self.p3[1] - self.p1[1]) > 1E-14:
  1097. self.x_of_y = True
  1098. else:
  1099. self.x_of_y = False
  1100. if self.y_of_x:
  1101. x = linspace(start[0], end[0], resolution)
  1102. y = self(x=x)
  1103. elif self.x_of_y:
  1104. y = linspace(start[1], end[1], resolution)
  1105. x = self(y=y)
  1106. else:
  1107. raise ValueError(
  1108. 'Parabola: two or more points lie on x=const '
  1109. 'or y=const - not allowed')
  1110. self.shapes = {'parabola': Curve(x, y)}
  1111. def __call__(self, x=None, y=None):
  1112. if x is not None and self.y_of_x:
  1113. return self._L2x(self.p1, self.p2)*self.p3[1] + \
  1114. self._L2x(self.p2, self.p3)*self.p1[1] + \
  1115. self._L2x(self.p3, self.p1)*self.p2[1]
  1116. elif y is not None and self.x_of_y:
  1117. return self._L2y(self.p1, self.p2)*self.p3[0] + \
  1118. self._L2y(self.p2, self.p3)*self.p1[0] + \
  1119. self._L2y(self.p3, self.p1)*self.p2[0]
  1120. else:
  1121. raise ValueError(
  1122. 'Parabola.__call__(x=%s, y=%s) not meaningful' % \
  1123. (x, y))
  1124. def _L2x(self, x, pi, pj, pk):
  1125. return (x - pi[0])*(x - pj[0])/((pk[0] - pi[0])*(pk[0] - pj[0]))
  1126. def _L2y(self, y, pi, pj, pk):
  1127. return (y - pi[1])*(y - pj[1])/((pk[1] - pi[1])*(pk[1] - pj[1]))
  1128. class Circle(Arc):
  1129. def __init__(self, center, radius, resolution=180):
  1130. Arc.__init__(self, center, radius, 0, 360, resolution)
  1131. class Wall(Shape):
  1132. """
  1133. defines an hached box given starting, ending point and thickness, filled with a pattern
  1134. """
  1135. def __init__(self, x, y, thickness, pattern='/', transparent=False):
  1136. is_sequence(x, y, length=len(x))
  1137. if isinstance(x[0], (tuple,list,ndarray)):
  1138. # x is list of curves
  1139. x1 = concatenate(x)
  1140. else:
  1141. x1 = asarray(x, float)
  1142. if isinstance(y[0], (tuple,list,ndarray)):
  1143. # x is list of curves
  1144. y1 = concatenate(y)
  1145. else:
  1146. y1 = asarray(y, float)
  1147. self.x1 = x1; self.y1 = y1
  1148. # Displaced curve (according to thickness)
  1149. x2 = x1
  1150. y2 = y1 + thickness
  1151. # Combine x1,y1 with x2,y2 reversed
  1152. from numpy import concatenate
  1153. x = concatenate((x1, x2[-1::-1]))
  1154. y = concatenate((y1, y2[-1::-1]))
  1155. wall = Curve(x, y)
  1156. wall.set_filled_curves(color='white', pattern=pattern)
  1157. x = [x1[-1]] + x2[-1::-1].tolist() + [x1[0]]
  1158. y = [y1[-1]] + y2[-1::-1].tolist() + [y1[0]]
  1159. self.shapes = {'wall': wall}
  1160. from collections import OrderedDict
  1161. self.shapes = OrderedDict()
  1162. self.shapes['wall'] = wall
  1163. if transparent:
  1164. white_eraser = Curve(x, y)
  1165. white_eraser.set_linecolor('white')
  1166. self.shapes['eraser'] = white_eraser
  1167. def geometric_features(self):
  1168. d = {'start': point(self.x1[0], self.y1[0]),
  1169. 'end': point(self.x1[-1], self.y1[-1])}
  1170. return d
  1171. class Wall2(Shape):
  1172. def __init__(self, x, y, thickness, pattern='/'):
  1173. is_sequence(x, y, length=len(x))
  1174. if isinstance(x[0], (tuple,list,ndarray)):
  1175. # x is list of curves
  1176. x1 = concatenate(x)
  1177. else:
  1178. x1 = asarray(x, float)
  1179. if isinstance(y[0], (tuple,list,ndarray)):
  1180. # x is list of curves
  1181. y1 = concatenate(y)
  1182. else:
  1183. y1 = asarray(y, float)
  1184. self.x1 = x1; self.y1 = y1
  1185. # Displaced curve (according to thickness)
  1186. x2 = x1.copy()
  1187. y2 = y1.copy()
  1188. def displace(idx, idx_m, idx_p):
  1189. # Find tangent and normal
  1190. tangent = point(x1[idx_m], y1[idx_m]) - point(x1[idx_p], y1[idx_p])
  1191. tangent = unit_vec(tangent)
  1192. normal = point(tangent[1], -tangent[0])
  1193. # Displace length "thickness" in "positive" normal direction
  1194. displaced_pt = point(x1[idx], y1[idx]) + thickness*normal
  1195. x2[idx], y2[idx] = displaced_pt
  1196. for i in range(1, len(x1)-1):
  1197. displace(i-1, i+1, i) # centered difference for normal comp.
  1198. # One-sided differences at the end points
  1199. i = 0
  1200. displace(i, i+1, i)
  1201. i = len(x1)-1
  1202. displace(i-1, i, i)
  1203. # Combine x1,y1 with x2,y2 reversed
  1204. from numpy import concatenate
  1205. x = concatenate((x1, x2[-1::-1]))
  1206. y = concatenate((y1, y2[-1::-1]))
  1207. wall = Curve(x, y)
  1208. wall.set_filled_curves(color='white', pattern=pattern)
  1209. x = [x1[-1]] + x2[-1::-1].tolist() + [x1[0]]
  1210. y = [y1[-1]] + y2[-1::-1].tolist() + [y1[0]]
  1211. self.shapes['wall'] = wall
  1212. def geometric_features(self):
  1213. d = {'start': point(self.x1[0], self.y1[0]),
  1214. 'end': point(self.x1[-1], self.y1[-1])}
  1215. return d
  1216. class VelocityProfile(Shape):
  1217. def __init__(self, start, height, profile, num_arrows, scaling=1):
  1218. # vx, vy = profile(y)
  1219. shapes = {}
  1220. # Draw left line
  1221. shapes['start line'] = Line(start, (start[0], start[1]+height))
  1222. # Draw velocity arrows
  1223. dy = float(height)/(num_arrows-1)
  1224. x = start[0]
  1225. y = start[1]
  1226. r = profile(y) # Test on return type
  1227. if not isinstance(r, (list,tuple,ndarray)) and len(r) != 2:
  1228. raise TypeError('VelocityProfile constructor: profile(y) function must return velocity vector (vx,vy), not %s' % type(r))
  1229. for i in range(num_arrows):
  1230. y = start[1] + i*dy
  1231. vx, vy = profile(y)
  1232. if abs(vx) < 1E-8:
  1233. continue
  1234. vx *= scaling
  1235. vy *= scaling
  1236. arr = Arrow1((x,y), (x+vx, y+vy), '->')
  1237. shapes['arrow%d' % i] = arr
  1238. # Draw smooth profile
  1239. xs = []
  1240. ys = []
  1241. n = 100
  1242. dy = float(height)/n
  1243. for i in range(n+2):
  1244. y = start[1] + i*dy
  1245. vx, vy = profile(y)
  1246. vx *= scaling
  1247. vy *= scaling
  1248. xs.append(x+vx)
  1249. ys.append(y+vy)
  1250. shapes['smooth curve'] = Curve(xs, ys)
  1251. self.shapes = shapes
  1252. class Arrow1(Shape):
  1253. """Draw a Line with arrow(s)."""
  1254. def __init__(self, start, end, style='->'):
  1255. arrow = Line(start, end)
  1256. arrow.set_arrow(style)
  1257. # Note:
  1258. self.shapes = {'arrow': arrow}
  1259. def geometric_features(self):
  1260. return self.shapes['arrow'].geometric_features()
  1261. class Arrow3(Shape):
  1262. """
  1263. Build a vertical line and arrow head from Line objects.
  1264. Then rotate `rotation_angle`.
  1265. """
  1266. def __init__(self, start, length, rotation_angle=0):
  1267. self.bottom = start
  1268. self.length = length
  1269. self.angle = rotation_angle
  1270. top = (self.bottom[0], self.bottom[1] + self.length)
  1271. main = Line(self.bottom, top)
  1272. #head_length = self.length/8.0
  1273. head_length = drawing_tool.xrange/50.
  1274. head_degrees = radians(30)
  1275. head_left_pt = (top[0] - head_length*sin(head_degrees),
  1276. top[1] - head_length*cos(head_degrees))
  1277. head_right_pt = (top[0] + head_length*sin(head_degrees),
  1278. top[1] - head_length*cos(head_degrees))
  1279. head_left = Line(head_left_pt, top)
  1280. head_right = Line(head_right_pt, top)
  1281. head_left.set_linestyle('solid')
  1282. head_right.set_linestyle('solid')
  1283. self.shapes = {'line': main, 'head left': head_left,
  1284. 'head right': head_right}
  1285. # rotate goes through self.shapes so self.shapes
  1286. # must be initialized first
  1287. self.rotate(rotation_angle, start)
  1288. def geometric_features(self):
  1289. return self.shapes['line'].geometric_features()
  1290. class Cross(Shape):
  1291. """
  1292. Place a cross at the (x,y) point `position`.
  1293. The cross fits in a 0.2 square which center is (x,y).
  1294. the color is black
  1295. the linewidth is 1
  1296. """
  1297. def __init__(self,c):
  1298. l = 0.1
  1299. line1 = Line(c+point(-l,l),c+point(l,-l))
  1300. line2 = Line(c+point(l,l), c+point(-l,-l))
  1301. cross = Composition({'line1': line1, 'line2': line2})
  1302. cross.set_linecolor('black')
  1303. cross.set_linewidth(1)
  1304. self.shapes = {'cross': cross}
  1305. class Text(Point):
  1306. """
  1307. Place `text` at the (x,y) point `position`, with the given
  1308. fontsize (0 indicates that the default fontsize set in drawing_tool
  1309. is to be used). The text is centered around `position` if `alignment` is
  1310. 'center'; if 'left', the text starts at `position`, and if
  1311. 'right', the right and of the text is located at `position`.
  1312. """
  1313. def __init__(self, text, position, alignment='center', fontsize=0,
  1314. bgcolor=None, fgcolor=None, fontfamily=None):
  1315. """
  1316. fontfamily can be (e.g.) 'serif' or 'monospace' (for code!).
  1317. """
  1318. is_sequence(position)
  1319. is_sequence(position, length=2, can_be_None=True)
  1320. self.text = text
  1321. self.position = position
  1322. self.alignment = alignment
  1323. self.fontsize = fontsize
  1324. self.bgcolor = bgcolor
  1325. self.fgcolor = fgcolor
  1326. self.fontfamily = fontfamily
  1327. Point.__init__(self, position[0], position[1])
  1328. #no need for self.shapes here
  1329. def draw(self, verbose=0):
  1330. drawing_tool.text(
  1331. self.text, (self.x, self.y),
  1332. self.alignment, self.fontsize,
  1333. arrow_tip=None, bgcolor=self.bgcolor, fgcolor=self.fgcolor,
  1334. fontfamily=self.fontfamily)
  1335. if verbose > 0:
  1336. print('drawing Text "%s"' % self.text)
  1337. def __str__(self):
  1338. return 'text "%s" at (%g,%g)' % (self.text, self.x, self.y)
  1339. def __repr__(self):
  1340. return repr(str(self))
  1341. class Text_wArrow(Text):
  1342. """
  1343. As class Text, but an arrow is drawn from the mid part of the text
  1344. to some point `arrow_tip`.
  1345. """
  1346. def __init__(self, text, position, arrow_tip,
  1347. alignment='center', fontsize=0):
  1348. is_sequence(arrow_tip, length=2, can_be_None=True)
  1349. is_sequence(position)
  1350. self.arrow_tip = arrow_tip
  1351. Text.__init__(self, text, position, alignment, fontsize)
  1352. def draw(self, verbose=0):
  1353. drawing_tool.text(
  1354. self.text, self.position,
  1355. self.alignment, self.fontsize,
  1356. arrow_tip=self.arrow_tip,
  1357. bgcolor=self.bgcolor, fgcolor=self.fgcolor,
  1358. fontfamily=self.fontfamily)
  1359. if verbose > 0:
  1360. print('drawing Text_wArrow "%s"' % self.text)
  1361. def __str__(self):
  1362. return 'annotation "%s" at (%g,%g) with arrow to (%g,%g)' % \
  1363. (self.text, self.x, self.y,
  1364. self.arrow_tip[0], self.arrow_tip[1])
  1365. def __repr__(self):
  1366. return repr(str(self))
  1367. class Axis(Shape):
  1368. def __init__(self, start, length, label,
  1369. rotation_angle=0, fontsize=0,
  1370. label_spacing=1./45, label_alignment='left'):
  1371. """
  1372. Draw axis from start with `length` to the right
  1373. (x axis). Place label at the end of the arrow tip.
  1374. Then return `rotation_angle` (in degrees).
  1375. The `label_spacing` denotes the space between the label
  1376. and the arrow tip as a fraction of the length of the plot
  1377. in x direction. A tuple can be given to adjust the position
  1378. in both the x and y directions (with one parameter, the
  1379. x position is adjusted).
  1380. With `label_alignment` one can place
  1381. the axis label text such that the arrow tip is to the 'left',
  1382. 'right', or 'center' with respect to the text field.
  1383. The `label_spacing` and `label_alignment`parameters can
  1384. be used to fine-tune the location of the label.
  1385. """
  1386. # Arrow is vertical arrow, make it horizontal
  1387. arrow = Arrow3(start, length, rotation_angle=-90)
  1388. arrow.rotate(rotation_angle, start)
  1389. if isinstance(label_spacing, (list,tuple)) and len(label_spacing) == 2:
  1390. x_spacing = drawing_tool.xrange*label_spacing[0]
  1391. y_spacing = drawing_tool.yrange*label_spacing[1]
  1392. elif isinstance(label_spacing, (int,float)):
  1393. # just x spacing
  1394. x_spacing = drawing_tool.xrange*label_spacing
  1395. y_spacing = 0
  1396. # should increase spacing for downward pointing axis
  1397. label_pos = [start[0] + length + x_spacing, start[1] + y_spacing]
  1398. label = Text(label, position=label_pos, fontsize=fontsize)
  1399. label.rotate(rotation_angle, start)
  1400. self.shapes = {'arrow': arrow, 'label': label}
  1401. def geometric_features(self):
  1402. return self.shapes['arrow'].geometric_features()
  1403. # Maybe Axis3 with label below/above?
  1404. class Force(Arrow1):
  1405. """
  1406. Indication of a force by an arrow and a text (symbol). Draw an
  1407. arrow, starting at `start` and with the tip at `end`. The symbol
  1408. is placed at `text_pos`, which can be 'start', 'end' or the
  1409. coordinates of a point. If 'end' or 'start', the text is placed at
  1410. a distance `text_spacing` times the width of the total plotting
  1411. area away from the specified point.
  1412. """
  1413. def __init__(self, start, end, text, text_spacing=1./60,
  1414. fontsize=0, text_pos='start', text_alignment='center'):
  1415. Arrow1.__init__(self, start, end, style='->')
  1416. if isinstance(text_spacing, (tuple,list)):
  1417. if len(text_spacing) == 2:
  1418. spacing = point(drawing_tool.xrange*text_spacing[0],
  1419. drawing_tool.xrange*text_spacing[1])
  1420. else:
  1421. spacing = drawing_tool.xrange*text_spacing[0]
  1422. else:
  1423. # just a number, this is x spacing
  1424. spacing = drawing_tool.xrange*text_spacing
  1425. start, end = arr2D(start), arr2D(end)
  1426. # Two cases: label at bottom of line or top, need more
  1427. # spacing if bottom
  1428. downward = (end-start)[1] < 0
  1429. upward = not downward # for easy code reading
  1430. if isinstance(text_pos, (str,bytes)):
  1431. if text_pos == 'start':
  1432. spacing_dir = unit_vec(start - end)
  1433. if upward:
  1434. spacing *= 1.7
  1435. if isinstance(spacing, (int, float)):
  1436. text_pos = start + spacing*spacing_dir
  1437. else:
  1438. text_pos = start + spacing
  1439. elif text_pos == 'end':
  1440. spacing_dir = unit_vec(end - start)
  1441. if downward:
  1442. spacing *= 1.7
  1443. if isinstance(spacing, (int, float)):
  1444. text_pos = end + spacing*spacing_dir
  1445. else:
  1446. text_pos = end + spacing
  1447. self.shapes['text'] = Text(text, text_pos, fontsize=fontsize,
  1448. alignment=text_alignment)
  1449. def geometric_features(self):
  1450. d = Arrow1.geometric_features(self)
  1451. d['symbol_location'] = self.shapes['text'].position
  1452. return d
  1453. class Axis2(Force):
  1454. def __init__(self, start, length, label,
  1455. rotation_angle=0, fontsize=0,
  1456. label_spacing=1./45, label_alignment='left'):
  1457. direction = point(cos(radians(rotation_angle)),
  1458. sin(radians(rotation_angle)))
  1459. Force.__init__(start=start, end=length*direction, text=label,
  1460. text_spacing=label_spacing,
  1461. fontsize=fontsize, text_pos='end',
  1462. text_alignment=label_alignment)
  1463. # Substitute text by label for axis
  1464. self.shapes['label'] = self.shapes['text']
  1465. del self.shapes['text']
  1466. # geometric features from Force is ok
  1467. class Gravity(Axis):
  1468. """Downward-pointing gravity arrow with the symbol g."""
  1469. def __init__(self, start, length, fontsize=0):
  1470. Axis.__init__(self, start, length, '$g$', below=False,
  1471. rotation_angle=-90, label_spacing=1./30,
  1472. fontsize=fontsize)
  1473. self.shapes['arrow'].set_linecolor('black')
  1474. class Gravity(Force):
  1475. """Downward-pointing gravity arrow with the symbol g."""
  1476. def __init__(self, start, length, text='$g$', fontsize=0):
  1477. Force.__init__(self, start, (start[0], start[1]-length),
  1478. text, text_spacing=1./60,
  1479. fontsize=0, text_pos='end')
  1480. self.shapes['arrow'].set_linecolor('black')
  1481. class Distance_wText(Shape):
  1482. """
  1483. Arrow <-> with text (usually a symbol) at the midpoint, used for
  1484. identifying a some distance in a figure. The text is placed
  1485. slightly to the right of vertical-like arrows, with text displaced
  1486. `text_spacing` times to total distance in x direction of the plot
  1487. area. The text is by default aligned 'left' in this case. For
  1488. horizontal-like arrows, the text is placed the same distance
  1489. above, but aligned 'center' by default (when `alignment` is None).
  1490. """
  1491. def __init__(self, start, end, text, fontsize=0, text_spacing=1/60.,
  1492. alignment=None, text_pos='mid'):
  1493. start = arr2D(start)
  1494. end = arr2D(end)
  1495. # Decide first if we have a vertical or horizontal arrow
  1496. vertical = abs(end[0]-start[0]) < 2*abs(end[1]-start[1])
  1497. if vertical:
  1498. # Assume end above start
  1499. if end[1] < start[1]:
  1500. start, end = end, start
  1501. if alignment is None:
  1502. alignment = 'left'
  1503. else: # horizontal arrow
  1504. # Assume start to the right of end
  1505. if start[0] < end[0]:
  1506. start, end = end, start
  1507. if alignment is None:
  1508. alignment = 'center'
  1509. tangent = end - start
  1510. # Tangeng goes always to the left and upward
  1511. normal = unit_vec([tangent[1], -tangent[0]])
  1512. mid = 0.5*(start + end) # midpoint of start-end line
  1513. if text_pos == 'mid':
  1514. text_pos = mid + normal*drawing_tool.xrange*text_spacing
  1515. text = Text(text, text_pos, fontsize=fontsize,
  1516. alignment=alignment)
  1517. else:
  1518. is_sequence(text_pos, length=2)
  1519. text = Text_wArrow(text, text_pos, mid, alignment='left',
  1520. fontsize=fontsize)
  1521. arrow = Arrow1(start, end, style='<->')
  1522. arrow.set_linecolor('black')
  1523. arrow.set_linewidth(1)
  1524. self.shapes = {'arrow': arrow, 'text': text}
  1525. def geometric_features(self):
  1526. d = self.shapes['arrow'].geometric_features()
  1527. d['text_position'] = self.shapes['text'].position
  1528. return d
  1529. class Arc_wText(Shape):
  1530. """
  1531. Arc with text positionned at the left of arc half-way
  1532. """
  1533. def __init__(self, text, center, radius,
  1534. start_angle, arc_angle, fontsize=0,
  1535. resolution=180, text_spacing=1/60.):
  1536. self.text = text
  1537. self.center = center
  1538. self.radius = radius
  1539. self.fontsize=fontsize
  1540. self.resolution=resolution
  1541. self.text_spacing=text_spacing
  1542. self.start_angle = start_angle
  1543. self.arc_angle = arc_angle
  1544. self.setArc()
  1545. def setArc(self):
  1546. arc = Arc(self.center, self.radius, self.start_angle, self.arc_angle,
  1547. self.resolution)
  1548. mid = arr2D(arc(self.arc_angle/2.))
  1549. normal = unit_vec(mid - arr2D(self.center))
  1550. text_pos = mid + normal*drawing_tool.xrange*self.text_spacing
  1551. if hasattr(self, 'linewidth'):
  1552. arc.set_linewidth(self.linewidth)
  1553. self.shapes = {'arc': arc,
  1554. 'text': Text(self.text, text_pos, fontsize=self.fontsize)}
  1555. def changeAngle(self,start_angle,arc_angle):
  1556. self.arc_angle = arc_angle
  1557. self.start_angle = start_angle
  1558. self.setArc()
  1559. def set_linewidth(self, width):
  1560. self.linewidth = width
  1561. self.change_linewidth()
  1562. def change_linewidth(self):
  1563. super().set_linewidth(self.linewidth)
  1564. class Composition(Shape):
  1565. def __init__(self, shapes):
  1566. """shapes: list or dict of Shape objects."""
  1567. if isinstance(shapes, (tuple,list)):
  1568. # Convert to dict using the type of the list element as key
  1569. # (add a counter to make the keys unique)
  1570. shapes = {s.__class__.__name__ + '_' + str(i): s
  1571. for i, s in enumerate(shapes)}
  1572. self.shapes = shapes
  1573. # can make help methods: Line.midpoint, Line.normal(pt, dir='left') -> (x,y)
  1574. # list annotations in each class? contains extra annotations for explaining
  1575. # important parameters to the constructor, e.g., Line.annotations holds
  1576. # start and end as Text objects. Shape.demo calls shape.draw and
  1577. # for annotation in self.demo: annotation.draw() YES!
  1578. # Can make overall demo of classes by making objects and calling demo
  1579. # Could include demo fig in each constructor
  1580. class SimplySupportedBeam(Shape):
  1581. def __init__(self, pos, size):
  1582. pos = arr2D(pos)
  1583. P0 = (pos[0] - size/2., pos[1]-size)
  1584. P1 = (pos[0] + size/2., pos[1]-size)
  1585. triangle = Triangle(P0, P1, pos)
  1586. gap = size/5.
  1587. h = size/4. # height of rectangle
  1588. P2 = (P0[0], P0[1]-gap-h)
  1589. rectangle = Rectangle(P2, size, h).set_filled_curves(pattern='/')
  1590. self.shapes = {'triangle': triangle, 'rectangle': rectangle}
  1591. self.dimensions = {'pos': Text('pos', pos),
  1592. 'size': Distance_wText((P2[0], P2[1]-size),
  1593. (P2[0]+size, P2[1]-size),
  1594. 'size')}
  1595. def geometric_features(self):
  1596. t = self.shapes['triangle']
  1597. r = self.shapes['rectangle']
  1598. d = {'pos': t.geometric_features()['p2'],
  1599. 'mid_support': r.geometric_features()['lower_mid']}
  1600. return d
  1601. class ConstantBeamLoad(Shape):
  1602. """
  1603. Downward-pointing arrows indicating a vertical load.
  1604. The arrows are of equal length and filling a rectangle
  1605. specified as in the :class:`Rectangle` class.
  1606. Recorded geometric features:
  1607. ==================== =============================================
  1608. Attribute Description
  1609. ==================== =============================================
  1610. mid_top Middle point at the top of the row of
  1611. arrows (often used for positioning a text).
  1612. ==================== =============================================
  1613. """
  1614. def __init__(self, lower_left_corner, width, height, num_arrows=10):
  1615. box = Rectangle(lower_left_corner, width, height)
  1616. self.shapes = {'box': box}
  1617. dx = float(width)/(num_arrows-1)
  1618. y_top = lower_left_corner[1] + height
  1619. y_tip = lower_left_corner[1]
  1620. for i in range(num_arrows):
  1621. x = lower_left_corner[0] + i*dx
  1622. self.shapes['arrow%d' % i] = Arrow1((x, y_top), (x, y_tip))
  1623. def geometric_features(self):
  1624. return {'mid_top': self.shapes['box'].geometric_features()['upper_mid']}
  1625. class Moment(Arc_wText):
  1626. """
  1627. defines a Moment arrow with text given text, center and radius
  1628. default direction is counter_clockwise, fontsize and text spacing as optional parameters
  1629. """
  1630. def __init__(self, text, center, radius,
  1631. left=True, counter_clockwise=True,
  1632. fontsize=0, text_spacing=1/60.):
  1633. style = '->' if counter_clockwise else '<-'
  1634. start_angle = 90 if left else -90
  1635. Arc_wText.__init__(self, text, center, radius,
  1636. start_angle=start_angle,
  1637. arc_angle=180, fontsize=fontsize,
  1638. text_spacing=text_spacing,
  1639. resolution=180)
  1640. self.shapes['arc']['arc'].set_arrow(style) # Curve object
  1641. class Wheel(Shape):
  1642. """
  1643. Hub and spokes Wheel given center, radius, spokes (default 10), inner_radius(default 1/5 of radius)
  1644. """
  1645. def __init__(self, center, radius, inner_radius=None, nlines=10):
  1646. if inner_radius is None:
  1647. inner_radius = radius/5.0
  1648. outer = Circle(center, radius)
  1649. inner = Circle(center, inner_radius)
  1650. lines = []
  1651. self.nlines = nlines
  1652. # Draw nlines+1 since the first and last coincide
  1653. # (then nlines lines will be visible)
  1654. t = linspace(0, 2*pi, self.nlines+1)
  1655. Ri = inner_radius; Ro = radius
  1656. x0 = center[0]; y0 = center[1]
  1657. xinner = x0 + Ri*cos(t)
  1658. yinner = y0 + Ri*sin(t)
  1659. xouter = x0 + Ro*cos(t)
  1660. youter = y0 + Ro*sin(t)
  1661. lines = [Line((xi,yi),(xo,yo)) for xi, yi, xo, yo in \
  1662. zip(xinner, yinner, xouter, youter)]
  1663. self.shapes = {'inner': inner, 'outer': outer,
  1664. 'spokes': Composition(
  1665. {'spoke%d' % i: lines[i]
  1666. for i in range(len(lines))})}
  1667. class SineWave(Shape):
  1668. def __init__(self, xstart, xstop,
  1669. wavelength, amplitude, mean_level):
  1670. self.xstart = xstart
  1671. self.xstop = xstop
  1672. self.wavelength = wavelength
  1673. self.amplitude = amplitude
  1674. self.mean_level = mean_level
  1675. npoints = (self.xstop - self.xstart)/(self.wavelength/61.0)
  1676. x = linspace(self.xstart, self.xstop, npoints)
  1677. k = 2*pi/self.wavelength # frequency
  1678. y = self.mean_level + self.amplitude*sin(k*x)
  1679. self.shapes = {'waves': Curve(x,y)}
  1680. class Spring(Shape):
  1681. """
  1682. Specify a *vertical* spring, starting at `start` and with `length`
  1683. as total vertical length. In the middle of the spring there are
  1684. `num_windings` circular windings to illustrate the spring. If
  1685. `teeth` is true, the spring windings look like saw teeth,
  1686. otherwise the windings are smooth circles. The parameters `width`
  1687. (total width of spring) and `bar_length` (length of first and last
  1688. bar are given sensible default values if they are not specified
  1689. (these parameters can later be extracted as attributes, see table
  1690. below).
  1691. """
  1692. spring_fraction = 1./2 # fraction of total length occupied by spring
  1693. def __init__(self, start, length, width=None, bar_length=None,
  1694. num_windings=11, teeth=False):
  1695. B = start
  1696. n = num_windings - 1 # n counts teeth intervals
  1697. if n <= 6:
  1698. n = 7
  1699. # n must be odd:
  1700. if n % 2 == 0:
  1701. n = n+1
  1702. L = length
  1703. if width is None:
  1704. w = L/10.
  1705. else:
  1706. w = width/2.0
  1707. s = bar_length
  1708. # [0, x, L-x, L], f = (L-2*x)/L
  1709. # x = L*(1-f)/2.
  1710. # B: start point
  1711. # w: half-width
  1712. # L: total length
  1713. # s: length of first bar
  1714. # P0: start of dashpot (B[0]+s)
  1715. # P1: end of dashpot
  1716. # P2: end point
  1717. shapes = {}
  1718. if s is None:
  1719. f = Spring.spring_fraction
  1720. s = L*(1-f)/2. # start of spring
  1721. self.bar_length = s # record
  1722. self.width = 2*w
  1723. P0 = (B[0], B[1] + s)
  1724. P1 = (B[0], B[1] + L-s)
  1725. P2 = (B[0], B[1] + L)
  1726. if s >= L:
  1727. raise ValueError('length of first bar: %g is larger than total length: %g' % (s, L))
  1728. shapes['bar1'] = Line(B, P0)
  1729. spring_length = L - 2*s
  1730. t = spring_length/n # height increment per winding
  1731. if teeth:
  1732. resolution = 4
  1733. else:
  1734. resolution = 90
  1735. q = linspace(0, n, n*resolution + 1)
  1736. x = P0[0] + w*sin(2*pi*q)
  1737. y = P0[1] + q*t
  1738. shapes['spiral'] = Curve(x, y)
  1739. shapes['bar2'] = Line(P1,P2)
  1740. self.shapes = shapes
  1741. # Dimensions
  1742. start = Text_wArrow('start', (B[0]-1.5*w,B[1]-1.5*w), B)
  1743. width = Distance_wText((B[0]-w, B[1]-3.5*w), (B[0]+w, B[1]-3.5*w),
  1744. 'width')
  1745. length = Distance_wText((B[0]+3*w, B[1]), (B[0]+3*w, B[1]+L),
  1746. 'length')
  1747. num_windings = Text_wArrow('num_windings',
  1748. (B[0]+2*w,P2[1]+w),
  1749. (B[0]+1.2*w, B[1]+L/2.))
  1750. blength1 = Distance_wText((B[0]-2*w, B[1]), (B[0]-2*w, P0[1]),
  1751. 'bar_length',
  1752. text_pos=(P0[0]-7*w, P0[1]+w))
  1753. blength2 = Distance_wText((P1[0]-2*w, P1[1]), (P2[0]-2*w, P2[1]),
  1754. 'bar_length',
  1755. text_pos=(P2[0]-7*w, P2[1]+w))
  1756. dims = {'start': start, 'width': width, 'length': length,
  1757. 'num_windings': num_windings, 'bar_length1': blength1,
  1758. 'bar_length2': blength2}
  1759. self.dimensions = dims
  1760. def geometric_features(self):
  1761. """
  1762. Recorded geometric features:
  1763. ==================== =============================================
  1764. Attribute Description
  1765. ==================== =============================================
  1766. start Start point of spring.
  1767. end End point of spring.
  1768. width Total width of spring.
  1769. bar_length Length of first (and last) bar part.
  1770. ==================== =============================================
  1771. """
  1772. b1 = self.shapes['bar1']
  1773. d = {'start': b1.geometric_features()['start'],
  1774. 'end': self.shapes['bar2'].geometric_features()['end'],
  1775. 'bar_length': self.bar_length,
  1776. 'width': self.width}
  1777. return d
  1778. class Dashpot(Shape):
  1779. """
  1780. Specify a vertical dashpot of height `total_length` and `start` as
  1781. bottom/starting point. The first bar part has length `bar_length`.
  1782. Then comes the dashpot as a rectangular construction of total
  1783. width `width` and height `dashpot_length`. The position of the
  1784. piston inside the rectangular dashpot area is given by
  1785. `piston_pos`, which is the distance between the first bar (given
  1786. by `bar_length`) to the piston.
  1787. If some of `dashpot_length`, `bar_length`, `width` or `piston_pos`
  1788. are not given, suitable default values are calculated. Their
  1789. values can be extracted as keys in the dict returned from
  1790. ``geometric_features``.
  1791. """
  1792. dashpot_fraction = 1./2 # fraction of total_length
  1793. piston_gap_fraction = 1./6 # fraction of width
  1794. piston_thickness_fraction = 1./8 # fraction of dashplot_length
  1795. def __init__(self, start, total_length, bar_length=None,
  1796. width=None, dashpot_length=None, piston_pos=None):
  1797. B = start
  1798. L = total_length
  1799. if width is None:
  1800. w = L/10. # total width 1/5 of length
  1801. else:
  1802. w = width/2.0
  1803. s = bar_length
  1804. # [0, x, L-x, L], f = (L-2*x)/L
  1805. # x = L*(1-f)/2.
  1806. # B: start point
  1807. # w: half-width
  1808. # L: total length
  1809. # s: length of first bar
  1810. # P0: start of dashpot (B[0]+s)
  1811. # P1: end of dashpot
  1812. # P2: end point
  1813. shapes = {}
  1814. # dashpot is P0-P1 in y and width 2*w
  1815. if dashpot_length is None:
  1816. if s is None:
  1817. f = Dashpot.dashpot_fraction
  1818. s = L*(1-f)/2. # default
  1819. P1 = (B[0], B[1]+L-s)
  1820. dashpot_length = f*L
  1821. else:
  1822. if s is None:
  1823. f = 1./2 # the bar lengths are taken as f*dashpot_length
  1824. s = f*dashpot_length # default
  1825. P1 = (B[0], B[1]+s+dashpot_length)
  1826. P0 = (B[0], B[1]+s)
  1827. P2 = (B[0], B[1]+L)
  1828. if P2[1] > P1[1] > P0[1]:
  1829. pass # ok
  1830. else:
  1831. raise ValueError('Dashpot has inconsistent dimensions! start: %g, dashpot begin: %g, dashpot end: %g, very end: %g' % (B[1], P0[1], P1[1], P2[1]))
  1832. shapes['line start'] = Line(B, P0)
  1833. shapes['pot'] = Curve([P1[0]-w, P0[0]-w, P0[0]+w, P1[0]+w],
  1834. [P1[1], P0[1], P0[1], P1[1]])
  1835. piston_thickness = dashpot_length*Dashpot.piston_thickness_fraction
  1836. if piston_pos is None:
  1837. piston_pos = 1/3.*dashpot_length
  1838. if piston_pos < 0:
  1839. piston_pos = 0
  1840. elif piston_pos > dashpot_length:
  1841. piston_pos = dashpot_length - piston_thickness
  1842. abs_piston_pos = P0[1] + piston_pos
  1843. gap = w*Dashpot.piston_gap_fraction
  1844. shapes['piston'] = Composition(
  1845. {'line': Line(P2, (B[0], abs_piston_pos + piston_thickness)),
  1846. 'rectangle': Rectangle((B[0] - w+gap, abs_piston_pos),
  1847. 2*w-2*gap, piston_thickness),
  1848. })
  1849. shapes['piston']['rectangle'].set_filled_curves(pattern='X')
  1850. self.shapes = shapes
  1851. self.bar_length = s
  1852. self.width = 2*w
  1853. self.piston_pos = piston_pos
  1854. self.dashpot_length = dashpot_length
  1855. # Dimensions
  1856. start = Text_wArrow('start', (B[0]-1.5*w,B[1]-1.5*w), B)
  1857. width = Distance_wText((B[0]-w, B[1]-3.5*w), (B[0]+w, B[1]-3.5*w),
  1858. 'width')
  1859. dplength = Distance_wText((B[0]+2*w, P0[1]), (B[0]+2*w, P1[1]),
  1860. 'dashpot_length', text_pos=(B[0]+w,B[1]-w))
  1861. blength = Distance_wText((B[0]-2*w, B[1]), (B[0]-2*w, P0[1]),
  1862. 'bar_length', text_pos=(B[0]-6*w,P0[1]-w))
  1863. ppos = Distance_wText((B[0]-2*w, P0[1]), (B[0]-2*w, P0[1]+piston_pos),
  1864. 'piston_pos', text_pos=(B[0]-6*w,P0[1]+piston_pos-w))
  1865. tlength = Distance_wText((B[0]+4*w, B[1]), (B[0]+4*w, B[1]+L),
  1866. 'total_length',
  1867. text_pos=(B[0]+4.5*w, B[1]+L-2*w))
  1868. line = Line((B[0]+w, abs_piston_pos), (B[0]+7*w, abs_piston_pos)).set_linestyle('dashed').set_linecolor('black').set_linewidth(1)
  1869. pp = Text('abs_piston_pos', (B[0]+7*w, abs_piston_pos), alignment='left')
  1870. dims = {'start': start, 'width': width, 'dashpot_length': dplength,
  1871. 'bar_length': blength, 'total_length': tlength,
  1872. 'piston_pos': ppos,}
  1873. #'abs_piston_pos': Composition({'line': line, 'text': pp})}
  1874. self.dimensions = dims
  1875. def geometric_features(self):
  1876. """
  1877. Recorded geometric features:
  1878. ==================== =============================================
  1879. Attribute Description
  1880. ==================== =============================================
  1881. start Start point of dashpot.
  1882. end End point of dashpot.
  1883. bar_length Length of first bar (from start to spring).
  1884. dashpot_length Length of dashpot middle part.
  1885. width Total width of dashpot.
  1886. piston_pos Position of piston in dashpot, relative to
  1887. start[1] + bar_length.
  1888. ==================== =============================================
  1889. """
  1890. d = {'start': self.shapes['line start'].geometric_features()['start'],
  1891. 'end': self.shapes['piston']['line'].geometric_features()['start'],
  1892. 'bar_length': self.bar_length,
  1893. 'piston_pos': self.piston_pos,
  1894. 'width': self.width,
  1895. 'dashpot_length': self.dashpot_length,
  1896. }
  1897. return d
  1898. class Wavy(Shape):
  1899. """
  1900. A wavy graph consisting of a user-given main curve y=f(x) with
  1901. additional sinusoidal waves of given (constant) amplitude,
  1902. but varying wavelength (a characteristic wavelength is specified).
  1903. """
  1904. def __init__(self, main_curve, interval, wavelength_of_perturbations,
  1905. amplitude_of_perturbations, smoothness):
  1906. """
  1907. ============================ ====================================
  1908. Name Description
  1909. ============================ ====================================
  1910. main_curve f(x) Python function
  1911. interval interval for main_curve
  1912. wavelength_of_perturbations dominant wavelength perturbed waves
  1913. amplitude_of_perturbations amplitude of perturbed waves
  1914. smoothness in [0, 1]: smooth=0, rough=1
  1915. ============================ ====================================
  1916. """
  1917. xmin, xmax = interval
  1918. L = wavelength_of_perturbations
  1919. k_0 = 2*pi/L # main frequency of waves
  1920. k_p = k_0*0.5
  1921. k_k = k_0/2*smoothness
  1922. A_0 = amplitude_of_perturbations
  1923. A_p = 0.3*A_0
  1924. A_k = k_0/2
  1925. x = linspace(xmin, xmax, 2001)
  1926. def w(x):
  1927. A = A_0 + A_p*sin(A_k*x)
  1928. k = k_0 + k_p*sin(k_k*x)
  1929. y = main_curve(x) + A*sin(k*x)
  1930. return y
  1931. self.shapes = {'wavy': Curve(x, w(x))}
  1932. # Use closure w to define __call__ - then we do not need
  1933. # to store all the parameters A_0, A_k, etc. as attributes
  1934. self.__call__ = w
  1935. class StochasticWavyCurve(object):
  1936. """
  1937. Precomputed stochastic wavy graphs.
  1938. There are three graphs with different look.
  1939. Curve 0:
  1940. ----------------------------------------------------------------------
  1941. |
  1942. |
  1943. *|
  1944. * |
  1945. * |
  1946. * |
  1947. * |
  1948. * |
  1949. * |
  1950. * |
  1951. * |
  1952. * |
  1953. * |
  1954. * |
  1955. |*
  1956. | *
  1957. | *
  1958. | *
  1959. | *
  1960. | *
  1961. | *
  1962. | *
  1963. | *
  1964. | *
  1965. | *
  1966. | *
  1967. | *
  1968. | *
  1969. | *
  1970. | *
  1971. | *
  1972. | *
  1973. | *
  1974. | *
  1975. | *
  1976. | *
  1977. | *
  1978. | *
  1979. | *
  1980. | *
  1981. | *
  1982. | *
  1983. | *
  1984. | *
  1985. | *
  1986. | *
  1987. | *
  1988. | *
  1989. | *
  1990. | *
  1991. | *
  1992. | *
  1993. | *
  1994. | *
  1995. | *
  1996. | *
  1997. | *
  1998. | *
  1999. | *
  2000. | *
  2001. | *
  2002. | *
  2003. | *
  2004. | *
  2005. | *
  2006. | *
  2007. | *
  2008. | *
  2009. | *
  2010. | *
  2011. | *
  2012. | *
  2013. |*
  2014. *|
  2015. * |
  2016. * |
  2017. * |
  2018. * |
  2019. * |
  2020. * |
  2021. * |
  2022. * |
  2023. * |
  2024. * |
  2025. * |
  2026. * |
  2027. * |
  2028. * |
  2029. * |
  2030. |*
  2031. | *
  2032. | *
  2033. | *
  2034. | *
  2035. | *
  2036. | *
  2037. | *
  2038. | *
  2039. | *
  2040. | *
  2041. | *
  2042. | *
  2043. | *
  2044. | *
  2045. | *
  2046. | *
  2047. | *
  2048. | *
  2049. | *
  2050. | *
  2051. | *
  2052. | *
  2053. | *
  2054. | *
  2055. | *
  2056. | *
  2057. | *
  2058. | *
  2059. | *
  2060. | *
  2061. | *
  2062. | *
  2063. | *
  2064. | *
  2065. | *
  2066. | *
  2067. | *
  2068. | *
  2069. | *
  2070. | *
  2071. | *
  2072. | *
  2073. | *
  2074. | *
  2075. |
  2076. * |
  2077. * |
  2078. * |
  2079. * |
  2080. * |
  2081. * |
  2082. * |
  2083. * |
  2084. * |
  2085. * |
  2086. * |
  2087. * |
  2088. * |
  2089. * |
  2090. * |
  2091. * |
  2092. * |
  2093. * |
  2094. * |
  2095. * |
  2096. * |
  2097. * |
  2098. * |
  2099. * |
  2100. * |
  2101. * |
  2102. * |
  2103. * |
  2104. * |
  2105. * |
  2106. Curve 2:
  2107. ----------------------------------------------------------------------
  2108. |
  2109. |
  2110. |
  2111. |*
  2112. |*
  2113. |*
  2114. |
  2115. |
  2116. *|
  2117. |*
  2118. | *
  2119. | *
  2120. | *
  2121. | *
  2122. | *
  2123. | *
  2124. | *
  2125. | *
  2126. | *
  2127. | *
  2128. | *
  2129. | *
  2130. | *
  2131. | *
  2132. | *
  2133. | *
  2134. | *
  2135. | *
  2136. | *
  2137. | *
  2138. | *
  2139. | *
  2140. | *
  2141. | *
  2142. | *
  2143. | *
  2144. | *
  2145. | *
  2146. | *
  2147. | *
  2148. | *
  2149. | *
  2150. | *
  2151. | *
  2152. | *
  2153. | *
  2154. | *
  2155. | *
  2156. | *
  2157. | *
  2158. | *
  2159. | *
  2160. | *
  2161. | *
  2162. | *
  2163. | *
  2164. | *
  2165. | *
  2166. | *
  2167. | *
  2168. | *
  2169. |
  2170. * |
  2171. * |
  2172. * |
  2173. * |
  2174. * |
  2175. * |
  2176. * |
  2177. * |
  2178. * |
  2179. * |
  2180. * |
  2181. * |
  2182. * |
  2183. * |
  2184. * |
  2185. * |
  2186. * |
  2187. * |
  2188. * |
  2189. * |
  2190. * |
  2191. * |
  2192. * |
  2193. * |
  2194. * |
  2195. * |
  2196. * |
  2197. * |
  2198. * |
  2199. |
  2200. | *
  2201. | *
  2202. | *
  2203. | *
  2204. | *
  2205. | *
  2206. | *
  2207. | *
  2208. | *
  2209. | *
  2210. | *
  2211. | *
  2212. | *
  2213. | *
  2214. | *
  2215. | *
  2216. | *
  2217. | *
  2218. | *
  2219. | *
  2220. | *
  2221. | *
  2222. |*
  2223. |*
  2224. |
  2225. |
  2226. |
  2227. |*
  2228. | *
  2229. | *
  2230. |*
  2231. |
  2232. *|
  2233. |*
  2234. | *
  2235. | *
  2236. | *
  2237. | *
  2238. | *
  2239. | *
  2240. | *
  2241. | *
  2242. | *
  2243. | *
  2244. | *
  2245. | *
  2246. | *
  2247. | *
  2248. | *
  2249. | *
  2250. | *
  2251. | *
  2252. | *
  2253. | *
  2254. | *
  2255. | *
  2256. | *
  2257. | *
  2258. | *
  2259. | *
  2260. | *
  2261. | *
  2262. | *
  2263. | *
  2264. | *
  2265. | *
  2266. | *
  2267. | *
  2268. | *
  2269. | *
  2270. | *
  2271. | *
  2272. | *
  2273. Curve 2:
  2274. ----------------------------------------------------------------------
  2275. |
  2276. |
  2277. |
  2278. |
  2279. |*
  2280. | *
  2281. | *
  2282. | *
  2283. | *
  2284. | *
  2285. | *
  2286. | *
  2287. | *
  2288. | *
  2289. | *
  2290. | *
  2291. | *
  2292. | *
  2293. | *
  2294. | *
  2295. | *
  2296. | *
  2297. | *
  2298. | *
  2299. | *
  2300. | *
  2301. | *
  2302. | *
  2303. |*
  2304. |
  2305. * |
  2306. * |
  2307. * |
  2308. * |
  2309. * |
  2310. * |
  2311. * |
  2312. * |
  2313. * |
  2314. * |
  2315. |*
  2316. | *
  2317. | *
  2318. | *
  2319. | *
  2320. | *
  2321. | *
  2322. | *
  2323. | *
  2324. | *
  2325. | *
  2326. | *
  2327. | *
  2328. | *
  2329. | *
  2330. | *
  2331. | *
  2332. | *
  2333. | *
  2334. | *
  2335. *|
  2336. * |
  2337. * |
  2338. * |
  2339. * |
  2340. * |
  2341. * |
  2342. * |
  2343. * |
  2344. * |
  2345. * |
  2346. * |
  2347. * |
  2348. * |
  2349. * |
  2350. * |
  2351. * |
  2352. |
  2353. | *
  2354. | *
  2355. | *
  2356. | *
  2357. | *
  2358. | *
  2359. | *
  2360. | *
  2361. | *
  2362. | *
  2363. | *
  2364. | *
  2365. | *
  2366. | *
  2367. | *
  2368. | *
  2369. | *
  2370. | *
  2371. | *
  2372. | *
  2373. | *
  2374. | *
  2375. |*
  2376. *|
  2377. * |
  2378. * |
  2379. * |
  2380. * |
  2381. * |
  2382. * |
  2383. * |
  2384. * |
  2385. * |
  2386. * |
  2387. * |
  2388. * |
  2389. * |
  2390. * |
  2391. * |
  2392. * |
  2393. * |
  2394. * |
  2395. * |
  2396. * |
  2397. * |
  2398. * |
  2399. * |
  2400. * |
  2401. * |
  2402. * |
  2403. * |
  2404. * |
  2405. * |
  2406. * |
  2407. * |
  2408. * |
  2409. * |
  2410. * |
  2411. * |
  2412. * |
  2413. * |
  2414. * |
  2415. * |
  2416. * |
  2417. * |
  2418. * |
  2419. * |
  2420. * |
  2421. * |
  2422. * |
  2423. * |
  2424. * |
  2425. * |
  2426. * |
  2427. * |
  2428. * |
  2429. * |
  2430. * |
  2431. * |
  2432. *|
  2433. |*
  2434. | *
  2435. | *
  2436. | *
  2437. | *
  2438. | *
  2439. | *
  2440. See also hplgit.github.io/pysketcher/doc/src/tut/fig-tut/StochasticWavyCurve.png (and .pdf)
  2441. """
  2442. # The curves were generated by the script generate_road_profiles.py and
  2443. # the code below were generated by plot_roads.py. Both scripts are
  2444. # found doc/src/src-bumpy in the repo git@github.com:hplgit/bumpy.git
  2445. def __init__(self, curve_no=0, percentage=100):
  2446. """
  2447. ============= ===================================================
  2448. Argument Explanation
  2449. ============= ===================================================
  2450. curve_no 0, 1, or 2: chooses one out of three shapes.
  2451. percentage The percentage of the defined curve to be used.
  2452. ============= ===================================================
  2453. """
  2454. self._define_curves()
  2455. self.curve_no = curve_no
  2456. m = int(len(self.x)/float(percentage)*100)
  2457. self.shapes = {'wavy': Curve(self.x[:m], self.y[curve_no][:m])}
  2458. def __call__(self, x):
  2459. raise NotImplementedError
  2460. def _define_curves(self):
  2461. self.x = array([0.0000, 0.0606, 0.1212, 0.1818, 0.2424, 0.3030, 0.3636, 0.4242, 0.4848, 0.5455, 0.6061, 0.6667, 0.7273, 0.7879, 0.8485, 0.9091, 0.9697, 1.0303, 1.0909, 1.1515, 1.2121, 1.2727, 1.3333, 1.3939, 1.4545, 1.5152, 1.5758, 1.6364, 1.6970, 1.7576, 1.8182, 1.8788, 1.9394, 2.0000, 2.0606, 2.1212, 2.1818, 2.2424, 2.3030, 2.3636, 2.4242, 2.4848, 2.5455, 2.6061, 2.6667, 2.7273, 2.7879, 2.8485, 2.9091, 2.9697, 3.0303, 3.0909, 3.1515, 3.2121, 3.2727, 3.3333, 3.3939, 3.4545, 3.5152, 3.5758, 3.6364, 3.6970, 3.7576, 3.8182, 3.8788, 3.9394, 4.0000, 4.0606, 4.1212, 4.1818, 4.2424, 4.3030, 4.3636, 4.4242, 4.4848, 4.5455, 4.6061, 4.6667, 4.7273, 4.7879, 4.8485, 4.9091, 4.9697, 5.0303, 5.0909, 5.1515, 5.2121, 5.2727, 5.3333, 5.3939, 5.4545, 5.5152, 5.5758, 5.6364, 5.6970, 5.7576, 5.8182, 5.8788, 5.9394, 6.0000, 6.0606, 6.1212, 6.1818, 6.2424, 6.3030, 6.3636, 6.4242, 6.4848, 6.5455, 6.6061, 6.6667, 6.7273, 6.7879, 6.8485, 6.9091, 6.9697, 7.0303, 7.0909, 7.1515, 7.2121, 7.2727, 7.3333, 7.3939, 7.4545, 7.5152, 7.5758, 7.6364, 7.6970, 7.7576, 7.8182, 7.8788, 7.9394, 8.0000, 8.0606, 8.1212, 8.1818, 8.2424, 8.3030, 8.3636, 8.4242, 8.4848, 8.5455, 8.6061, 8.6667, 8.7273, 8.7879, 8.8485, 8.9091, 8.9697, 9.0303, 9.0909, 9.1515, 9.2121, 9.2727, 9.3333, 9.3939, 9.4545, 9.5152, 9.5758, 9.6364, 9.6970, 9.7576, 9.8182, 9.8788, 9.9394, 10.0000, 10.0606, 10.1212, 10.1818, 10.2424, 10.3030, 10.3636, 10.4242, 10.4848, 10.5455, 10.6061, 10.6667, 10.7273, 10.7879, 10.8485, 10.9091, 10.9697, 11.0303, 11.0909, 11.1515, 11.2121, 11.2727, 11.3333, 11.3939, 11.4545, 11.5152, 11.5758, 11.6364, 11.6970, 11.7576, 11.8182, 11.8788, 11.9394, 12.0000, 12.0606, 12.1212, 12.1818, 12.2424, 12.3030, 12.3636, 12.4242, 12.4848, 12.5455, 12.6061, 12.6667, 12.7273, 12.7879, 12.8485, 12.9091, 12.9697, 13.0303, 13.0909, 13.1515, 13.2121, 13.2727, 13.3333, 13.3939, 13.4545, 13.5152, 13.5758, 13.6364, 13.6970, 13.7576, 13.8182, 13.8788, 13.9394, 14.0000, 14.0606, 14.1212, 14.1818, 14.2424, 14.3030, 14.3636, 14.4242, 14.4848, 14.5455, 14.6061, 14.6667, 14.7273, 14.7879, 14.8485, 14.9091, 14.9697, 15.0303, 15.0909, 15.1515, 15.2121, 15.2727, 15.3333, 15.3939, 15.4545, 15.5152, 15.5758, 15.6364, 15.6970, 15.7576, 15.8182, 15.8788, 15.9394, 16.0000, 16.0606, 16.1212, 16.1818, 16.2424, 16.3030, 16.3636, 16.4242, 16.4848, 16.5455, 16.6061, 16.6667, 16.7273, 16.7879, 16.8485, 16.9091, 16.9697, 17.0303, 17.0909, 17.1515, 17.2121, 17.2727, 17.3333, 17.3939, 17.4545, 17.5152, 17.5758, 17.6364, 17.6970, 17.7576, 17.8182, 17.8788, 17.9394, 18.0000, 18.0606, 18.1212, 18.1818, 18.2424, 18.3030, 18.3636, 18.4242, 18.4848, 18.5455, 18.6061, 18.6667, 18.7273, 18.7879, 18.8485, 18.9091, 18.9697, 19.0303, 19.0909, 19.1515, 19.2121, 19.2727, 19.3333, 19.3939, 19.4545, 19.5152, 19.5758, 19.6364, 19.6970, 19.7576, 19.8182, 19.8788, 19.9394, 20.0000, 20.0606, 20.1212, 20.1818, 20.2424, 20.3030, 20.3636, 20.4242, 20.4848, 20.5455, 20.6061, 20.6667, 20.7273, 20.7879, 20.8485, 20.9091, 20.9697, 21.0303, 21.0909, 21.1515, 21.2121, 21.2727, 21.3333, 21.3939, 21.4545, 21.5152, 21.5758, 21.6364, 21.6970, 21.7576, 21.8182, 21.8788, 21.9394, 22.0000, 22.0606, 22.1212, 22.1818, 22.2424, 22.3030, 22.3636, 22.4242, 22.4848, 22.5455, 22.6061, 22.6667, 22.7273, 22.7879, 22.8485, 22.9091, 22.9697, 23.0303, 23.0909, 23.1515, 23.2121, 23.2727, 23.3333, 23.3939, 23.4545, 23.5152, 23.5758, 23.6364, 23.6970, 23.7576, 23.8182, 23.8788, 23.9394, 24.0000, 24.0606, 24.1212, 24.1818, 24.2424, 24.3030, 24.3636, 24.4242, 24.4848, 24.5455, 24.6061, 24.6667, 24.7273, 24.7879, 24.8485, 24.9091, 24.9697, 25.0303, 25.0909, 25.1515, 25.2121, 25.2727, 25.3333, 25.3939, 25.4545, 25.5152, 25.5758, 25.6364, 25.6970, 25.7576, 25.8182, 25.8788, 25.9394, 26.0000, 26.0606, 26.1212, 26.1818, 26.2424, 26.3030, 26.3636, 26.4242, 26.4848, 26.5455, 26.6061, 26.6667, 26.7273, 26.7879, 26.8485, 26.9091, 26.9697, 27.0303, 27.0909, 27.1515, 27.2121, 27.2727, 27.3333, 27.3939, 27.4545, 27.5152, 27.5758, 27.6364, 27.6970, 27.7576, 27.8182, 27.8788, 27.9394, 28.0000, 28.0606, 28.1212, 28.1818, 28.2424, 28.3030, 28.3636, 28.4242, 28.4848, 28.5455, 28.6061, 28.6667, 28.7273, 28.7879, 28.8485, 28.9091, 28.9697, 29.0303, 29.0909, 29.1515, 29.2121, 29.2727, 29.3333, 29.3939, 29.4545, 29.5152, 29.5758, 29.6364, 29.6970, 29.7576, 29.8182, 29.8788, 29.9394, 30.0000, 30.0606, 30.1212, 30.1818, 30.2424, 30.3030, 30.3636, 30.4242, 30.4848, 30.5455, 30.6061, 30.6667, 30.7273, 30.7879, 30.8485, 30.9091, 30.9697, 31.0303, 31.0909, 31.1515, 31.2121, 31.2727, 31.3333, 31.3939, 31.4545, 31.5152, 31.5758, 31.6364, 31.6970, 31.7576, 31.8182, 31.8788, 31.9394, 32.0000, 32.0606, 32.1212, 32.1818, 32.2424, 32.3030, 32.3636, 32.4242, 32.4848, 32.5455, 32.6061, 32.6667, 32.7273, 32.7879, 32.8485, 32.9091, 32.9697, 33.0303, 33.0909, 33.1515, 33.2121, 33.2727, 33.3333, 33.3939, 33.4545, 33.5152, 33.5758, 33.6364, 33.6970, 33.7576, 33.8182, 33.8788, 33.9394, 34.0000, 34.0606, 34.1212, 34.1818, 34.2424, 34.3030, 34.3636, 34.4242, 34.4848, 34.5455, 34.6061, 34.6667, 34.7273, 34.7879, 34.8485, 34.9091, 34.9697, 35.0303, 35.0909, 35.1515, 35.2121, 35.2727, 35.3333, 35.3939, 35.4545, 35.5152, 35.5758, 35.6364, 35.6970, 35.7576, 35.8182, 35.8788, 35.9394, 36.0000, 36.0606, 36.1212, 36.1818, 36.2424, 36.3030, 36.3636, 36.4242, 36.4848, 36.5455, 36.6061, 36.6667, 36.7273, 36.7879, 36.8485, 36.9091, 36.9697, 37.0303, 37.0909, 37.1515, 37.2121, 37.2727, 37.3333, 37.3939, 37.4545, 37.5152, 37.5758, 37.6364, 37.6970, 37.7576, 37.8182, 37.8788, 37.9394, 38.0000, 38.0606, 38.1212, 38.1818, 38.2424, 38.3030, 38.3636, 38.4242, 38.4848, 38.5455, 38.6061, 38.6667, 38.7273, 38.7879, 38.8485, 38.9091, 38.9697, 39.0303, 39.0909, 39.1515, 39.2121, 39.2727, 39.3333, 39.3939, 39.4545, 39.5152, 39.5758, 39.6364, 39.6970, 39.7576, 39.8182, 39.8788, 39.9394, 40.0000, 40.0606, 40.1212, 40.1818, 40.2424, 40.3030, 40.3636, 40.4242, 40.4848, 40.5455, 40.6061, 40.6667, 40.7273, 40.7879, 40.8485, 40.9091, 40.9697, 41.0303, 41.0909, 41.1515, 41.2121, 41.2727, 41.3333, 41.3939, 41.4545, 41.5152, 41.5758, 41.6364, 41.6970, 41.7576, 41.8182, 41.8788, 41.9394, 42.0000, 42.0606, 42.1212, 42.1818, 42.2424, 42.3030, 42.3636, 42.4242, 42.4848, 42.5455, 42.6061, 42.6667, 42.7273, 42.7879, 42.8485, 42.9091, 42.9697, 43.0303, 43.0909, 43.1515, 43.2121, 43.2727, 43.3333, 43.3939, 43.4545, 43.5152, 43.5758, 43.6364, 43.6970, 43.7576, 43.8182, 43.8788, 43.9394, 44.0000, 44.0606, 44.1212, 44.1818, 44.2424, 44.3030, 44.3636, 44.4242, 44.4848, 44.5455, 44.6061, 44.6667, 44.7273, 44.7879, 44.8485, 44.9091, 44.9697, 45.0303, 45.0909, 45.1515, 45.2121, 45.2727, 45.3333, 45.3939, 45.4545, 45.5152, 45.5758, 45.6364, 45.6970, 45.7576, 45.8182, 45.8788, 45.9394, 46.0000, 46.0606, 46.1212, 46.1818, 46.2424, 46.3030, 46.3636, 46.4242, 46.4848, 46.5455, 46.6061, 46.6667, 46.7273, 46.7879, 46.8485, 46.9091, 46.9697, 47.0303, 47.0909, 47.1515, 47.2121, 47.2727, 47.3333, 47.3939, 47.4545, 47.5152, 47.5758, 47.6364, 47.6970, 47.7576, 47.8182, 47.8788, 47.9394, 48.0000, 48.0606, 48.1212, 48.1818, 48.2424, 48.3030, 48.3636, 48.4242, 48.4848, 48.5455, 48.6061, 48.6667, 48.7273, 48.7879, 48.8485, 48.9091, 48.9697, 49.0303, 49.0909, 49.1515, 49.2121, 49.2727, 49.3333, 49.3939, 49.4545, 49.5152, 49.5758, 49.6364, 49.6970, 49.7576, 49.8182, 49.8788, 49.9394, ])
  2462. self.y = [None]*3
  2463. self.y[0] = array([0.0000, 0.0005, 0.0006, 0.0004, -0.0004, -0.0007, -0.0022, -0.0027, -0.0036, -0.0042, -0.0050, -0.0049, -0.0060, -0.0072, -0.0085, -0.0092, -0.0104, -0.0116, -0.0133, -0.0148, -0.0160, -0.0177, -0.0186, -0.0191, -0.0192, -0.0187, -0.0187, -0.0187, -0.0192, -0.0198, -0.0201, -0.0208, -0.0216, -0.0227, -0.0242, -0.0260, -0.0277, -0.0299, -0.0319, -0.0328, -0.0333, -0.0338, -0.0347, -0.0360, -0.0363, -0.0365, -0.0370, -0.0373, -0.0364, -0.0355, -0.0343, -0.0329, -0.0317, -0.0312, -0.0309, -0.0306, -0.0301, -0.0290, -0.0275, -0.0259, -0.0238, -0.0222, -0.0200, -0.0176, -0.0154, -0.0130, -0.0108, -0.0081, -0.0046, -0.0001, 0.0035, 0.0061, 0.0083, 0.0105, 0.0130, 0.0156, 0.0170, 0.0181, 0.0196, 0.0212, 0.0231, 0.0247, 0.0262, 0.0277, 0.0293, 0.0309, 0.0325, 0.0336, 0.0348, 0.0360, 0.0378, 0.0401, 0.0423, 0.0443, 0.0457, 0.0473, 0.0488, 0.0500, 0.0511, 0.0518, 0.0528, 0.0534, 0.0547, 0.0561, 0.0577, 0.0585, 0.0594, 0.0606, 0.0611, 0.0614, 0.0617, 0.0612, 0.0607, 0.0608, 0.0603, 0.0599, 0.0588, 0.0577, 0.0557, 0.0543, 0.0532, 0.0520, 0.0505, 0.0496, 0.0499, 0.0490, 0.0489, 0.0496, 0.0504, 0.0504, 0.0509, 0.0512, 0.0512, 0.0504, 0.0499, 0.0498, 0.0493, 0.0491, 0.0483, 0.0478, 0.0474, 0.0468, 0.0462, 0.0460, 0.0462, 0.0467, 0.0472, 0.0476, 0.0483, 0.0491, 0.0502, 0.0510, 0.0504, 0.0503, 0.0514, 0.0527, 0.0538, 0.0547, 0.0554, 0.0561, 0.0561, 0.0558, 0.0548, 0.0540, 0.0531, 0.0524, 0.0516, 0.0513, 0.0511, 0.0520, 0.0519, 0.0513, 0.0512, 0.0525, 0.0535, 0.0545, 0.0552, 0.0566, 0.0577, 0.0591, 0.0602, 0.0605, 0.0609, 0.0615, 0.0627, 0.0638, 0.0644, 0.0652, 0.0661, 0.0670, 0.0678, 0.0692, 0.0706, 0.0729, 0.0757, 0.0786, 0.0805, 0.0825, 0.0846, 0.0870, 0.0897, 0.0921, 0.0947, 0.0968, 0.0997, 0.1018, 0.1027, 0.1025, 0.1018, 0.1004, 0.1000, 0.0994, 0.0980, 0.0972, 0.0960, 0.0941, 0.0927, 0.0916, 0.0902, 0.0896, 0.0890, 0.0892, 0.0896, 0.0908, 0.0919, 0.0922, 0.0937, 0.0948, 0.0957, 0.0960, 0.0961, 0.0963, 0.0965, 0.0970, 0.0983, 0.0994, 0.0997, 0.0993, 0.0984, 0.0965, 0.0951, 0.0934, 0.0916, 0.0897, 0.0870, 0.0840, 0.0813, 0.0791, 0.0766, 0.0751, 0.0730, 0.0707, 0.0683, 0.0644, 0.0616, 0.0592, 0.0562, 0.0545, 0.0531, 0.0519, 0.0504, 0.0490, 0.0468, 0.0451, 0.0432, 0.0414, 0.0403, 0.0394, 0.0386, 0.0380, 0.0370, 0.0364, 0.0367, 0.0374, 0.0385, 0.0390, 0.0390, 0.0381, 0.0380, 0.0377, 0.0381, 0.0380, 0.0377, 0.0374, 0.0376, 0.0378, 0.0380, 0.0382, 0.0385, 0.0381, 0.0377, 0.0373, 0.0367, 0.0365, 0.0358, 0.0351, 0.0342, 0.0336, 0.0334, 0.0326, 0.0322, 0.0329, 0.0327, 0.0321, 0.0310, 0.0297, 0.0293, 0.0290, 0.0283, 0.0279, 0.0272, 0.0271, 0.0271, 0.0279, 0.0282, 0.0302, 0.0325, 0.0351, 0.0375, 0.0393, 0.0406, 0.0416, 0.0422, 0.0428, 0.0430, 0.0434, 0.0443, 0.0447, 0.0457, 0.0465, 0.0479, 0.0494, 0.0514, 0.0527, 0.0539, 0.0557, 0.0571, 0.0572, 0.0563, 0.0539, 0.0504, 0.0469, 0.0441, 0.0412, 0.0385, 0.0359, 0.0334, 0.0308, 0.0282, 0.0260, 0.0232, 0.0211, 0.0196, 0.0180, 0.0169, 0.0154, 0.0137, 0.0121, 0.0105, 0.0088, 0.0067, 0.0044, 0.0027, -0.0000, -0.0024, -0.0048, -0.0066, -0.0082, -0.0111, -0.0136, -0.0158, -0.0179, -0.0201, -0.0218, -0.0235, -0.0242, -0.0245, -0.0236, -0.0231, -0.0237, -0.0237, -0.0233, -0.0229, -0.0233, -0.0239, -0.0241, -0.0244, -0.0247, -0.0251, -0.0259, -0.0270, -0.0288, -0.0295, -0.0305, -0.0311, -0.0322, -0.0327, -0.0343, -0.0352, -0.0361, -0.0358, -0.0362, -0.0365, -0.0365, -0.0358, -0.0353, -0.0348, -0.0355, -0.0365, -0.0373, -0.0373, -0.0375, -0.0365, -0.0345, -0.0327, -0.0322, -0.0327, -0.0335, -0.0337, -0.0337, -0.0348, -0.0359, -0.0361, -0.0364, -0.0371, -0.0366, -0.0361, -0.0358, -0.0353, -0.0348, -0.0345, -0.0335, -0.0320, -0.0300, -0.0281, -0.0257, -0.0233, -0.0208, -0.0179, -0.0146, -0.0104, -0.0062, -0.0031, -0.0007, 0.0023, 0.0049, 0.0077, 0.0099, 0.0125, 0.0147, 0.0177, 0.0202, 0.0232, 0.0264, 0.0291, 0.0322, 0.0346, 0.0365, 0.0386, 0.0403, 0.0415, 0.0425, 0.0428, 0.0436, 0.0447, 0.0457, 0.0465, 0.0475, 0.0494, 0.0516, 0.0534, 0.0555, 0.0574, 0.0591, 0.0616, 0.0638, 0.0655, 0.0660, 0.0657, 0.0656, 0.0650, 0.0647, 0.0637, 0.0623, 0.0613, 0.0611, 0.0611, 0.0618, 0.0633, 0.0652, 0.0665, 0.0677, 0.0690, 0.0700, 0.0712, 0.0713, 0.0710, 0.0709, 0.0695, 0.0675, 0.0655, 0.0626, 0.0598, 0.0566, 0.0533, 0.0501, 0.0470, 0.0437, 0.0405, 0.0372, 0.0342, 0.0323, 0.0305, 0.0289, 0.0267, 0.0250, 0.0229, 0.0204, 0.0183, 0.0164, 0.0152, 0.0148, 0.0141, 0.0135, 0.0139, 0.0148, 0.0160, 0.0179, 0.0193, 0.0210, 0.0234, 0.0266, 0.0291, 0.0314, 0.0337, 0.0358, 0.0375, 0.0395, 0.0412, 0.0417, 0.0424, 0.0428, 0.0428, 0.0418, 0.0415, 0.0398, 0.0373, 0.0347, 0.0328, 0.0318, 0.0301, 0.0284, 0.0258, 0.0240, 0.0214, 0.0188, 0.0168, 0.0148, 0.0137, 0.0122, 0.0109, 0.0101, 0.0093, 0.0093, 0.0096, 0.0089, 0.0104, 0.0123, 0.0141, 0.0150, 0.0159, 0.0165, 0.0174, 0.0185, 0.0205, 0.0225, 0.0247, 0.0269, 0.0290, 0.0308, 0.0331, 0.0357, 0.0379, 0.0392, 0.0405, 0.0423, 0.0440, 0.0465, 0.0484, 0.0503, 0.0506, 0.0506, 0.0504, 0.0504, 0.0513, 0.0521, 0.0537, 0.0555, 0.0577, 0.0595, 0.0619, 0.0636, 0.0654, 0.0666, 0.0674, 0.0672, 0.0667, 0.0664, 0.0660, 0.0648, 0.0645, 0.0642, 0.0645, 0.0651, 0.0653, 0.0643, 0.0629, 0.0621, 0.0607, 0.0597, 0.0585, 0.0574, 0.0553, 0.0539, 0.0525, 0.0516, 0.0508, 0.0505, 0.0500, 0.0500, 0.0490, 0.0475, 0.0464, 0.0452, 0.0440, 0.0427, 0.0416, 0.0403, 0.0393, 0.0377, 0.0360, 0.0349, 0.0343, 0.0332, 0.0325, 0.0313, 0.0305, 0.0287, 0.0263, 0.0237, 0.0211, 0.0194, 0.0182, 0.0180, 0.0184, 0.0186, 0.0186, 0.0192, 0.0198, 0.0203, 0.0200, 0.0196, 0.0177, 0.0156, 0.0130, 0.0110, 0.0087, 0.0064, 0.0049, 0.0029, 0.0011, -0.0016, -0.0042, -0.0064, -0.0080, -0.0100, -0.0118, -0.0133, -0.0147, -0.0160, -0.0170, -0.0176, -0.0188, -0.0206, -0.0209, -0.0201, -0.0200, -0.0198, -0.0191, -0.0181, -0.0170, -0.0165, -0.0161, -0.0159, -0.0157, -0.0156, -0.0156, -0.0150, -0.0137, -0.0131, -0.0128, -0.0129, -0.0124, -0.0119, -0.0106, -0.0096, -0.0086, -0.0084, -0.0075, -0.0069, -0.0070, -0.0075, -0.0092, -0.0109, -0.0124, -0.0137, -0.0140, -0.0146, -0.0146, -0.0144, -0.0144, -0.0155, -0.0160, -0.0167, -0.0174, -0.0187, -0.0198, -0.0208, -0.0217, -0.0226, -0.0229, -0.0226, -0.0219, -0.0194, -0.0173, -0.0155, -0.0143, -0.0129, -0.0120, -0.0126, -0.0137, -0.0148, -0.0153, -0.0166, -0.0182, -0.0197, -0.0216, -0.0230, -0.0244, -0.0255, -0.0270, -0.0275, -0.0280, -0.0277, -0.0276, -0.0272, -0.0272, -0.0276, -0.0284, -0.0292, -0.0300, -0.0299, -0.0305, -0.0315, -0.0316, -0.0313, -0.0320, -0.0324, -0.0326, -0.0339, -0.0354, -0.0368, -0.0376, -0.0379, -0.0381, -0.0377, -0.0373, -0.0374, -0.0380, -0.0382, -0.0394, -0.0402, -0.0415, -0.0429, -0.0439, -0.0442, -0.0455, -0.0472, -0.0487, -0.0504, -0.0515, -0.0537, -0.0555, -0.0570, -0.0583, -0.0589, -0.0601, -0.0606, -0.0614, -0.0617, -0.0621, -0.0620, -0.0614, -0.0616, -0.0618, -0.0620, -0.0622, -0.0628, -0.0623, -0.0617, -0.0602, -0.0590, -0.0584, -0.0577, -0.0572, -0.0555, -0.0536, -0.0511, -0.0488, -0.0468, -0.0448, -0.0427, -0.0401, -0.0378, -0.0358, ])
  2464. self.y[1] = array([0.0000, 0.0002, 0.0002, 0.0001, 0.0001, 0.0003, 0.0008, 0.0009, 0.0009, 0.0015, 0.0019, 0.0027, 0.0033, 0.0037, 0.0041, 0.0052, 0.0055, 0.0050, 0.0048, 0.0054, 0.0054, 0.0059, 0.0061, 0.0060, 0.0054, 0.0050, 0.0047, 0.0042, 0.0033, 0.0031, 0.0027, 0.0021, 0.0015, 0.0008, -0.0002, -0.0011, -0.0015, -0.0015, -0.0021, -0.0025, -0.0027, -0.0013, 0.0005, 0.0030, 0.0049, 0.0074, 0.0099, 0.0119, 0.0142, 0.0166, 0.0186, 0.0205, 0.0229, 0.0247, 0.0266, 0.0286, 0.0307, 0.0327, 0.0346, 0.0368, 0.0379, 0.0393, 0.0409, 0.0434, 0.0457, 0.0478, 0.0499, 0.0520, 0.0534, 0.0544, 0.0561, 0.0576, 0.0587, 0.0593, 0.0597, 0.0599, 0.0594, 0.0588, 0.0588, 0.0595, 0.0609, 0.0628, 0.0651, 0.0673, 0.0693, 0.0721, 0.0760, 0.0798, 0.0837, 0.0881, 0.0931, 0.0977, 0.1023, 0.1076, 0.1127, 0.1175, 0.1223, 0.1264, 0.1302, 0.1333, 0.1373, 0.1408, 0.1441, 0.1472, 0.1497, 0.1516, 0.1523, 0.1527, 0.1532, 0.1537, 0.1542, 0.1549, 0.1551, 0.1543, 0.1536, 0.1532, 0.1524, 0.1512, 0.1497, 0.1484, 0.1473, 0.1460, 0.1445, 0.1429, 0.1411, 0.1398, 0.1395, 0.1395, 0.1388, 0.1386, 0.1380, 0.1369, 0.1355, 0.1341, 0.1319, 0.1293, 0.1266, 0.1240, 0.1215, 0.1189, 0.1160, 0.1135, 0.1111, 0.1079, 0.1049, 0.1016, 0.0995, 0.0972, 0.0948, 0.0927, 0.0914, 0.0904, 0.0892, 0.0878, 0.0862, 0.0848, 0.0829, 0.0809, 0.0792, 0.0776, 0.0760, 0.0754, 0.0740, 0.0724, 0.0700, 0.0680, 0.0668, 0.0658, 0.0655, 0.0653, 0.0648, 0.0636, 0.0613, 0.0589, 0.0573, 0.0559, 0.0552, 0.0558, 0.0571, 0.0587, 0.0602, 0.0608, 0.0613, 0.0607, 0.0601, 0.0595, 0.0595, 0.0590, 0.0591, 0.0598, 0.0603, 0.0603, 0.0610, 0.0610, 0.0607, 0.0603, 0.0601, 0.0607, 0.0608, 0.0616, 0.0627, 0.0640, 0.0653, 0.0662, 0.0669, 0.0673, 0.0667, 0.0654, 0.0646, 0.0635, 0.0624, 0.0604, 0.0583, 0.0562, 0.0547, 0.0537, 0.0524, 0.0522, 0.0516, 0.0515, 0.0518, 0.0515, 0.0504, 0.0501, 0.0501, 0.0501, 0.0498, 0.0494, 0.0489, 0.0485, 0.0483, 0.0484, 0.0477, 0.0472, 0.0468, 0.0471, 0.0463, 0.0461, 0.0460, 0.0466, 0.0461, 0.0454, 0.0448, 0.0445, 0.0439, 0.0437, 0.0439, 0.0438, 0.0430, 0.0423, 0.0418, 0.0415, 0.0409, 0.0400, 0.0386, 0.0376, 0.0370, 0.0357, 0.0351, 0.0354, 0.0356, 0.0356, 0.0362, 0.0366, 0.0380, 0.0385, 0.0378, 0.0381, 0.0390, 0.0390, 0.0388, 0.0386, 0.0379, 0.0366, 0.0362, 0.0364, 0.0365, 0.0363, 0.0363, 0.0359, 0.0354, 0.0348, 0.0354, 0.0350, 0.0337, 0.0314, 0.0282, 0.0258, 0.0240, 0.0230, 0.0227, 0.0227, 0.0221, 0.0214, 0.0201, 0.0188, 0.0179, 0.0173, 0.0165, 0.0155, 0.0133, 0.0109, 0.0082, 0.0052, 0.0028, 0.0003, -0.0026, -0.0062, -0.0095, -0.0120, -0.0151, -0.0180, -0.0209, -0.0233, -0.0262, -0.0293, -0.0316, -0.0337, -0.0361, -0.0385, -0.0419, -0.0445, -0.0470, -0.0494, -0.0515, -0.0534, -0.0561, -0.0590, -0.0619, -0.0643, -0.0666, -0.0688, -0.0710, -0.0733, -0.0753, -0.0774, -0.0795, -0.0822, -0.0837, -0.0851, -0.0865, -0.0876, -0.0892, -0.0892, -0.0893, -0.0896, -0.0901, -0.0905, -0.0909, -0.0909, -0.0901, -0.0890, -0.0884, -0.0880, -0.0873, -0.0871, -0.0872, -0.0860, -0.0858, -0.0863, -0.0865, -0.0864, -0.0865, -0.0871, -0.0887, -0.0904, -0.0924, -0.0941, -0.0962, -0.0980, -0.0999, -0.1014, -0.1021, -0.1029, -0.1037, -0.1041, -0.1052, -0.1056, -0.1065, -0.1070, -0.1075, -0.1073, -0.1079, -0.1080, -0.1078, -0.1075, -0.1074, -0.1078, -0.1082, -0.1087, -0.1083, -0.1079, -0.1087, -0.1096, -0.1101, -0.1105, -0.1114, -0.1121, -0.1127, -0.1135, -0.1137, -0.1133, -0.1131, -0.1126, -0.1115, -0.1109, -0.1099, -0.1097, -0.1092, -0.1081, -0.1066, -0.1057, -0.1050, -0.1047, -0.1040, -0.1030, -0.1018, -0.1004, -0.0988, -0.0972, -0.0955, -0.0946, -0.0938, -0.0925, -0.0905, -0.0886, -0.0864, -0.0838, -0.0805, -0.0776, -0.0748, -0.0720, -0.0686, -0.0655, -0.0621, -0.0588, -0.0555, -0.0520, -0.0477, -0.0434, -0.0389, -0.0353, -0.0323, -0.0287, -0.0247, -0.0211, -0.0179, -0.0149, -0.0123, -0.0094, -0.0065, -0.0042, -0.0020, -0.0001, 0.0016, 0.0028, 0.0044, 0.0072, 0.0097, 0.0109, 0.0120, 0.0127, 0.0135, 0.0140, 0.0151, 0.0147, 0.0158, 0.0161, 0.0162, 0.0154, 0.0154, 0.0162, 0.0172, 0.0186, 0.0204, 0.0214, 0.0213, 0.0210, 0.0211, 0.0208, 0.0204, 0.0202, 0.0201, 0.0187, 0.0179, 0.0167, 0.0164, 0.0167, 0.0170, 0.0180, 0.0188, 0.0199, 0.0204, 0.0213, 0.0209, 0.0203, 0.0198, 0.0186, 0.0183, 0.0181, 0.0168, 0.0163, 0.0161, 0.0160, 0.0154, 0.0157, 0.0162, 0.0166, 0.0171, 0.0171, 0.0179, 0.0186, 0.0196, 0.0205, 0.0229, 0.0254, 0.0280, 0.0305, 0.0327, 0.0343, 0.0354, 0.0361, 0.0367, 0.0363, 0.0361, 0.0355, 0.0353, 0.0351, 0.0342, 0.0335, 0.0328, 0.0326, 0.0324, 0.0325, 0.0330, 0.0333, 0.0333, 0.0327, 0.0326, 0.0328, 0.0326, 0.0327, 0.0329, 0.0328, 0.0332, 0.0331, 0.0325, 0.0315, 0.0311, 0.0305, 0.0302, 0.0300, 0.0289, 0.0275, 0.0260, 0.0246, 0.0234, 0.0230, 0.0216, 0.0211, 0.0205, 0.0191, 0.0172, 0.0147, 0.0131, 0.0112, 0.0094, 0.0082, 0.0062, 0.0045, 0.0041, 0.0035, 0.0037, 0.0035, 0.0033, 0.0033, 0.0037, 0.0034, 0.0036, 0.0033, 0.0028, 0.0021, 0.0015, 0.0008, 0.0004, 0.0002, -0.0002, -0.0008, -0.0001, 0.0007, 0.0015, 0.0020, 0.0020, 0.0028, 0.0037, 0.0045, 0.0052, 0.0060, 0.0063, 0.0074, 0.0083, 0.0092, 0.0095, 0.0095, 0.0096, 0.0093, 0.0100, 0.0097, 0.0093, 0.0084, 0.0071, 0.0050, 0.0044, 0.0031, 0.0017, 0.0005, -0.0004, -0.0018, -0.0026, -0.0026, -0.0020, -0.0018, -0.0010, 0.0003, 0.0024, 0.0046, 0.0066, 0.0090, 0.0110, 0.0126, 0.0143, 0.0157, 0.0167, 0.0171, 0.0179, 0.0195, 0.0223, 0.0254, 0.0287, 0.0320, 0.0359, 0.0400, 0.0439, 0.0470, 0.0491, 0.0515, 0.0535, 0.0563, 0.0585, 0.0605, 0.0620, 0.0635, 0.0654, 0.0670, 0.0687, 0.0701, 0.0728, 0.0746, 0.0766, 0.0785, 0.0800, 0.0812, 0.0817, 0.0822, 0.0820, 0.0814, 0.0814, 0.0817, 0.0820, 0.0823, 0.0826, 0.0826, 0.0831, 0.0833, 0.0846, 0.0851, 0.0853, 0.0855, 0.0858, 0.0859, 0.0864, 0.0868, 0.0876, 0.0884, 0.0890, 0.0894, 0.0895, 0.0888, 0.0882, 0.0883, 0.0884, 0.0892, 0.0903, 0.0915, 0.0917, 0.0916, 0.0908, 0.0900, 0.0891, 0.0881, 0.0869, 0.0849, 0.0825, 0.0805, 0.0789, 0.0773, 0.0761, 0.0750, 0.0738, 0.0729, 0.0717, 0.0712, 0.0714, 0.0718, 0.0727, 0.0737, 0.0735, 0.0733, 0.0723, 0.0706, 0.0683, 0.0666, 0.0651, 0.0636, 0.0620, 0.0599, 0.0580, 0.0563, 0.0551, 0.0540, 0.0526, 0.0516, 0.0503, 0.0492, 0.0482, 0.0469, 0.0468, 0.0471, 0.0471, 0.0471, 0.0483, 0.0490, 0.0486, 0.0489, 0.0495, 0.0510, 0.0523, 0.0538, 0.0547, 0.0552, 0.0556, 0.0569, 0.0573, 0.0578, 0.0583, 0.0579, 0.0579, 0.0580, 0.0583, 0.0585, 0.0594, 0.0601, 0.0598, 0.0594, 0.0597, 0.0602, 0.0611, 0.0612, 0.0618, 0.0620, 0.0626, 0.0635, 0.0637, 0.0645, 0.0649, 0.0657, 0.0667, 0.0680, 0.0688, 0.0693, 0.0698, 0.0702, 0.0699, 0.0703, 0.0702, 0.0705, 0.0716, 0.0725, 0.0730, 0.0736, 0.0736, 0.0734, 0.0735, 0.0739, 0.0736, 0.0728, 0.0720, 0.0717, 0.0715, 0.0709, 0.0704, 0.0707, 0.0704, 0.0695, 0.0690, 0.0687, 0.0667, 0.0648, 0.0629, 0.0620, 0.0620, 0.0618, 0.0621, 0.0623, 0.0633, 0.0637, 0.0637, 0.0638, 0.0639, 0.0639, 0.0642, 0.0650, 0.0653, 0.0657, 0.0661, ])
  2465. self.y[2] = array([0.0000, 0.0001, -0.0002, -0.0003, 0.0004, 0.0014, 0.0021, 0.0025, 0.0025, 0.0021, 0.0018, 0.0022, 0.0016, 0.0018, 0.0018, 0.0021, 0.0027, 0.0034, 0.0046, 0.0060, 0.0076, 0.0080, 0.0084, 0.0090, 0.0100, 0.0104, 0.0098, 0.0097, 0.0100, 0.0100, 0.0105, 0.0117, 0.0124, 0.0128, 0.0133, 0.0133, 0.0133, 0.0132, 0.0132, 0.0136, 0.0144, 0.0161, 0.0179, 0.0196, 0.0222, 0.0251, 0.0265, 0.0279, 0.0287, 0.0291, 0.0297, 0.0305, 0.0316, 0.0328, 0.0340, 0.0361, 0.0382, 0.0408, 0.0425, 0.0442, 0.0460, 0.0474, 0.0489, 0.0502, 0.0512, 0.0517, 0.0526, 0.0525, 0.0525, 0.0521, 0.0508, 0.0498, 0.0487, 0.0478, 0.0472, 0.0461, 0.0446, 0.0434, 0.0415, 0.0399, 0.0388, 0.0374, 0.0360, 0.0351, 0.0339, 0.0320, 0.0308, 0.0294, 0.0286, 0.0278, 0.0255, 0.0224, 0.0194, 0.0170, 0.0147, 0.0131, 0.0123, 0.0121, 0.0110, 0.0106, 0.0100, 0.0090, 0.0089, 0.0093, 0.0100, 0.0111, 0.0132, 0.0159, 0.0179, 0.0195, 0.0207, 0.0220, 0.0229, 0.0242, 0.0261, 0.0279, 0.0290, 0.0300, 0.0303, 0.0309, 0.0316, 0.0328, 0.0335, 0.0332, 0.0323, 0.0314, 0.0300, 0.0283, 0.0268, 0.0248, 0.0225, 0.0201, 0.0172, 0.0143, 0.0119, 0.0104, 0.0088, 0.0071, 0.0059, 0.0051, 0.0038, 0.0027, 0.0017, 0.0009, 0.0007, -0.0002, -0.0008, -0.0020, -0.0034, -0.0055, -0.0069, -0.0082, -0.0086, -0.0085, -0.0089, -0.0088, -0.0092, -0.0099, -0.0110, -0.0121, -0.0137, -0.0150, -0.0157, -0.0160, -0.0155, -0.0149, -0.0140, -0.0139, -0.0134, -0.0135, -0.0136, -0.0138, -0.0145, -0.0158, -0.0155, -0.0155, -0.0153, -0.0154, -0.0159, -0.0157, -0.0152, -0.0143, -0.0140, -0.0138, -0.0142, -0.0148, -0.0154, -0.0154, -0.0147, -0.0136, -0.0122, -0.0107, -0.0102, -0.0091, -0.0082, -0.0063, -0.0042, -0.0028, -0.0007, 0.0015, 0.0038, 0.0054, 0.0075, 0.0093, 0.0110, 0.0137, 0.0156, 0.0170, 0.0184, 0.0195, 0.0199, 0.0206, 0.0209, 0.0207, 0.0201, 0.0198, 0.0196, 0.0191, 0.0192, 0.0193, 0.0196, 0.0201, 0.0206, 0.0216, 0.0229, 0.0253, 0.0278, 0.0304, 0.0321, 0.0341, 0.0356, 0.0367, 0.0372, 0.0379, 0.0383, 0.0394, 0.0396, 0.0397, 0.0391, 0.0382, 0.0362, 0.0346, 0.0334, 0.0325, 0.0325, 0.0325, 0.0323, 0.0316, 0.0321, 0.0328, 0.0338, 0.0352, 0.0366, 0.0378, 0.0389, 0.0401, 0.0403, 0.0406, 0.0419, 0.0425, 0.0424, 0.0421, 0.0415, 0.0407, 0.0406, 0.0411, 0.0413, 0.0419, 0.0420, 0.0416, 0.0415, 0.0402, 0.0388, 0.0377, 0.0368, 0.0357, 0.0353, 0.0351, 0.0348, 0.0347, 0.0340, 0.0326, 0.0314, 0.0306, 0.0295, 0.0288, 0.0275, 0.0257, 0.0234, 0.0209, 0.0188, 0.0169, 0.0151, 0.0132, 0.0114, 0.0093, 0.0076, 0.0055, 0.0026, -0.0008, -0.0038, -0.0069, -0.0097, -0.0118, -0.0132, -0.0148, -0.0164, -0.0183, -0.0202, -0.0213, -0.0228, -0.0253, -0.0280, -0.0299, -0.0315, -0.0329, -0.0343, -0.0349, -0.0364, -0.0373, -0.0383, -0.0391, -0.0400, -0.0401, -0.0404, -0.0414, -0.0422, -0.0425, -0.0425, -0.0420, -0.0419, -0.0412, -0.0412, -0.0408, -0.0400, -0.0396, -0.0397, -0.0400, -0.0401, -0.0405, -0.0412, -0.0410, -0.0401, -0.0389, -0.0377, -0.0372, -0.0369, -0.0364, -0.0356, -0.0347, -0.0345, -0.0346, -0.0353, -0.0359, -0.0367, -0.0376, -0.0385, -0.0387, -0.0391, -0.0401, -0.0400, -0.0398, -0.0395, -0.0391, -0.0385, -0.0383, -0.0377, -0.0374, -0.0371, -0.0361, -0.0357, -0.0355, -0.0342, -0.0324, -0.0303, -0.0280, -0.0257, -0.0232, -0.0205, -0.0179, -0.0147, -0.0113, -0.0091, -0.0059, -0.0019, 0.0024, 0.0071, 0.0120, 0.0177, 0.0219, 0.0248, 0.0273, 0.0290, 0.0302, 0.0318, 0.0325, 0.0331, 0.0334, 0.0344, 0.0360, 0.0387, 0.0414, 0.0437, 0.0456, 0.0471, 0.0491, 0.0511, 0.0526, 0.0536, 0.0550, 0.0570, 0.0597, 0.0622, 0.0647, 0.0672, 0.0696, 0.0710, 0.0725, 0.0748, 0.0777, 0.0806, 0.0832, 0.0854, 0.0874, 0.0893, 0.0906, 0.0914, 0.0927, 0.0937, 0.0944, 0.0959, 0.0970, 0.0970, 0.0967, 0.0955, 0.0945, 0.0934, 0.0927, 0.0921, 0.0916, 0.0909, 0.0901, 0.0893, 0.0884, 0.0881, 0.0877, 0.0870, 0.0870, 0.0871, 0.0872, 0.0867, 0.0860, 0.0845, 0.0821, 0.0800, 0.0775, 0.0752, 0.0728, 0.0703, 0.0676, 0.0655, 0.0637, 0.0618, 0.0593, 0.0558, 0.0518, 0.0483, 0.0445, 0.0414, 0.0384, 0.0365, 0.0349, 0.0338, 0.0330, 0.0323, 0.0320, 0.0319, 0.0320, 0.0323, 0.0324, 0.0324, 0.0322, 0.0327, 0.0328, 0.0320, 0.0314, 0.0295, 0.0279, 0.0258, 0.0243, 0.0229, 0.0211, 0.0195, 0.0176, 0.0163, 0.0151, 0.0136, 0.0123, 0.0108, 0.0088, 0.0064, 0.0041, 0.0021, 0.0002, -0.0020, -0.0051, -0.0078, -0.0106, -0.0137, -0.0169, -0.0195, -0.0218, -0.0235, -0.0253, -0.0269, -0.0281, -0.0290, -0.0299, -0.0315, -0.0328, -0.0336, -0.0344, -0.0352, -0.0354, -0.0353, -0.0358, -0.0355, -0.0347, -0.0344, -0.0338, -0.0335, -0.0324, -0.0319, -0.0319, -0.0322, -0.0334, -0.0351, -0.0365, -0.0381, -0.0401, -0.0424, -0.0449, -0.0472, -0.0491, -0.0506, -0.0522, -0.0533, -0.0544, -0.0553, -0.0553, -0.0557, -0.0558, -0.0563, -0.0573, -0.0587, -0.0602, -0.0617, -0.0636, -0.0666, -0.0699, -0.0734, -0.0760, -0.0791, -0.0817, -0.0840, -0.0857, -0.0869, -0.0881, -0.0882, -0.0884, -0.0888, -0.0893, -0.0889, -0.0876, -0.0869, -0.0858, -0.0851, -0.0836, -0.0825, -0.0813, -0.0807, -0.0800, -0.0802, -0.0805, -0.0807, -0.0813, -0.0818, -0.0819, -0.0822, -0.0829, -0.0825, -0.0829, -0.0838, -0.0840, -0.0836, -0.0824, -0.0810, -0.0799, -0.0789, -0.0785, -0.0785, -0.0774, -0.0770, -0.0761, -0.0755, -0.0752, -0.0746, -0.0744, -0.0741, -0.0729, -0.0718, -0.0710, -0.0694, -0.0673, -0.0649, -0.0627, -0.0606, -0.0592, -0.0582, -0.0571, -0.0555, -0.0539, -0.0527, -0.0516, -0.0508, -0.0503, -0.0508, -0.0518, -0.0527, -0.0536, -0.0544, -0.0545, -0.0541, -0.0547, -0.0553, -0.0561, -0.0573, -0.0587, -0.0600, -0.0608, -0.0616, -0.0624, -0.0626, -0.0631, -0.0638, -0.0630, -0.0621, -0.0612, -0.0603, -0.0594, -0.0577, -0.0564, -0.0551, -0.0535, -0.0511, -0.0485, -0.0455, -0.0424, -0.0396, -0.0374, -0.0360, -0.0351, -0.0343, -0.0336, -0.0324, -0.0311, -0.0296, -0.0276, -0.0259, -0.0240, -0.0223, -0.0212, -0.0205, -0.0201, -0.0203, -0.0214, -0.0232, -0.0261, -0.0285, -0.0304, -0.0320, -0.0342, -0.0365, -0.0381, -0.0394, -0.0416, -0.0434, -0.0443, -0.0450, -0.0465, -0.0482, -0.0490, -0.0497, -0.0508, -0.0506, -0.0509, -0.0514, -0.0522, -0.0525, -0.0532, -0.0547, -0.0553, -0.0575, -0.0597, -0.0629, -0.0666, -0.0702, -0.0737, -0.0773, -0.0805, -0.0835, -0.0847, -0.0875, -0.0893, -0.0913, -0.0929, -0.0935, -0.0943, -0.0949, -0.0957, -0.0962, -0.0977, -0.0994, -0.1011, -0.1031, -0.1057, -0.1086, -0.1114, -0.1141, -0.1158, -0.1174, -0.1197, -0.1219, -0.1234, -0.1250, -0.1267, -0.1273, -0.1270, -0.1268, -0.1263, -0.1257, -0.1240, -0.1220, -0.1210, -0.1197, -0.1197, -0.1188, -0.1171, -0.1147, -0.1122, -0.1101, -0.1077, -0.1052, -0.1031, -0.1020, -0.1008, -0.0983, -0.0960, -0.0934, -0.0908, -0.0889, -0.0865, -0.0836, -0.0799, -0.0767, -0.0740, -0.0716, -0.0692, -0.0663, -0.0628, -0.0596, -0.0567, -0.0535, -0.0508, -0.0472, -0.0435, -0.0394, -0.0347, -0.0301, -0.0253, -0.0210, -0.0165, -0.0126, -0.0095, -0.0072, -0.0046, -0.0020, -0.0001, 0.0023, 0.0050, 0.0077, 0.0102, 0.0135, 0.0175, 0.0212, 0.0245, 0.0280, 0.0309, 0.0336, 0.0365, 0.0397, 0.0433, 0.0474, 0.0511, 0.0546, 0.0574, 0.0602, 0.0634, 0.0663, 0.0695, 0.0729, 0.0752, 0.0762, 0.0773, 0.0781, 0.0790, 0.0806, 0.0836, 0.0857, 0.0879, 0.0896, 0.0920, 0.0949, 0.0975, 0.1002, ])
  2466. # COMPOSITE types:
  2467. # MassSpringForce: Line(horizontal), Spring, Rectangle, Arrow/Line(w/arrow)
  2468. # must be easy to find the tip of the arrow
  2469. # Maybe extra dict: self.name['mass'] = Rectangle object - YES!
  2470. class ArbitraryVolume(Shape):
  2471. """
  2472. An arbitrary closed volume with an optional normal vector and a
  2473. vector field to be used in derivation of continuum mechanical
  2474. equations.
  2475. """
  2476. def __init__(self, position, width=1,
  2477. volume_symbol='V',
  2478. volume_symbol_fontsize='18',
  2479. normal_vector_symbol='n',
  2480. vector_field_symbol=None):
  2481. """
  2482. ============================ ====================================
  2483. Name Description
  2484. ============================ ====================================
  2485. position center point of volume
  2486. width width of volume (about 3 is best)
  2487. normal_vector_symbol symbol of None (no boundary normal)
  2488. volume_symbol None (no center symbol) or character
  2489. volume_symbol_fontsize fontsize of volume symbol
  2490. vector_field_symbol None (no vector) or symbol
  2491. ============================ ====================================
  2492. """
  2493. self.position, self.width = position, width
  2494. self.vector_symbol = vector_field_symbol
  2495. self.normal_symbol = normal_vector_symbol
  2496. ellipse, normal, vector = self._perturbed_unit_ellipse()
  2497. self.shapes = {'closed_curve': ellipse}
  2498. if normal_vector_symbol:
  2499. self.shapes['normal'] = normal
  2500. if vector_field_symbol is not None:
  2501. self.shapes['vector'] = vector
  2502. # Scale and translate
  2503. self.rotate(20, (0,0))
  2504. self.scale(width/2.0)
  2505. self.translate(position)
  2506. # Must be placed at position after translation:
  2507. if volume_symbol:
  2508. self.shapes['name'] = Text('$%s$' % volume_symbol, position,
  2509. fontsize=volume_symbol_fontsize)
  2510. def _perturbed_unit_ellipse(self):
  2511. """Draw the volume as a perturbed ellipse of about unit size."""
  2512. a0 = 1.0
  2513. b0 = 0.75
  2514. eps_a = 0.2
  2515. eps_b = 0.1
  2516. a = lambda t: a0 + eps_a*sin(1*t)
  2517. b = lambda t: b0 + eps_b*cos(1*t)
  2518. x = lambda t: a(t)*cos(t)
  2519. y = lambda t: b(t)*sin(t)
  2520. t = linspace(0, 2*pi, 101) # parameter
  2521. ellipse = Curve(x(t), y(t))
  2522. # Make normal vector
  2523. tx = lambda t: eps_a*cos(t)*cos(t) - a(t)*sin(t)
  2524. ty = lambda t: -eps_b*sin(t)*sin(t) + b(t)*cos(t)
  2525. t0 = pi/5
  2526. nx = ty(t0)
  2527. ny = -tx(t0)
  2528. nx = nx/sqrt(nx**2 + ny**2)
  2529. ny = ny/sqrt(nx**2 + ny**2)
  2530. Px = x(t0)
  2531. Py = y(t0)
  2532. start = point(x(t0), y(t0))
  2533. end = start + point(0.75*b0*nx, 0.75*b0*ny)
  2534. normal = Force(start, end, '$\\boldsymbol{%s}$' % self.normal_symbol,
  2535. text_spacing=1./60,
  2536. text_pos='end',
  2537. text_alignment='center')
  2538. end = start + point(0.75*b0/3*nx, 0.75*b0*4*ny)
  2539. vector = Force(start, end, '$\\boldsymbol{%s}$' % self.vector_symbol,
  2540. text_spacing=1./60,
  2541. text_pos='end',
  2542. text_alignment='center')
  2543. return ellipse, normal, vector
  2544. def geometric_features(self):
  2545. """
  2546. Recorded geometric features:
  2547. ==================== =============================================
  2548. Attribute Description
  2549. ==================== =============================================
  2550. position center point of volume
  2551. normal_vector_start start of normal vector
  2552. normal_vector_end end of normal vector
  2553. ==================== =============================================
  2554. """
  2555. d = {'position': self.position}
  2556. if 'normal' in self.shapes:
  2557. d['normal_vector_start'] = self.shapes['normal'].geometric_features()['start']
  2558. d['normal_vector_end'] = self.shapes['normal'].geometric_features()['end']
  2559. return d
  2560. def _test1():
  2561. set_coordinate_system(xmin=0, xmax=10, ymin=0, ymax=10)
  2562. l1 = Line((0,0), (1,1))
  2563. l1.draw()
  2564. eval(input(': '))
  2565. c1 = Circle((5,2), 1)
  2566. c2 = Circle((6,2), 1)
  2567. w1 = Wheel((7,2), 1)
  2568. c1.draw()
  2569. c2.draw()
  2570. w1.draw()
  2571. hardcopy()
  2572. display() # show the plot
  2573. def _test2():
  2574. set_coordinate_system(xmin=0, xmax=10, ymin=0, ymax=10)
  2575. l1 = Line((0,0), (1,1))
  2576. l1.draw()
  2577. eval(input(': '))
  2578. c1 = Circle((5,2), 1)
  2579. c2 = Circle((6,2), 1)
  2580. w1 = Wheel((7,2), 1)
  2581. filled_curves(True)
  2582. set_linecolor('blue')
  2583. c1.draw()
  2584. set_linecolor('aqua')
  2585. c2.draw()
  2586. filled_curves(False)
  2587. set_linecolor('red')
  2588. w1.draw()
  2589. hardcopy()
  2590. display() # show the plot
  2591. def _test3():
  2592. """Test example from the book."""
  2593. set_coordinate_system(xmin=0, xmax=10, ymin=0, ymax=10)
  2594. l1 = Line(start=(0,0), stop=(1,1)) # define line
  2595. l1.draw() # make plot data
  2596. r1 = Rectangle(lower_left_corner=(0,1), width=3, height=5)
  2597. r1.draw()
  2598. Circle(center=(5,7), radius=1).draw()
  2599. Wheel(center=(6,2), radius=2, inner_radius=0.5, nlines=7).draw()
  2600. hardcopy()
  2601. display()
  2602. def _test4():
  2603. """Second example from the book."""
  2604. set_coordinate_system(xmin=0, xmax=10, ymin=0, ymax=10)
  2605. r1 = Rectangle(lower_left_corner=(0,1), width=3, height=5)
  2606. c1 = Circle(center=(5,7), radius=1)
  2607. w1 = Wheel(center=(6,2), radius=2, inner_radius=0.5, nlines=7)
  2608. c2 = Circle(center=(7,7), radius=1)
  2609. filled_curves(True)
  2610. c1.draw()
  2611. set_linecolor('blue')
  2612. r1.draw()
  2613. set_linecolor('aqua')
  2614. c2.draw()
  2615. # Add thick aqua line around rectangle:
  2616. filled_curves(False)
  2617. set_linewidth(4)
  2618. r1.draw()
  2619. set_linecolor('red')
  2620. # Draw wheel with thick lines:
  2621. w1.draw()
  2622. hardcopy('tmp_colors')
  2623. display()
  2624. def _test5():
  2625. set_coordinate_system(xmin=0, xmax=10, ymin=0, ymax=10)
  2626. c = 6. # center point of box
  2627. w = 2. # size of box
  2628. L = 3
  2629. r1 = Rectangle((c-w/2, c-w/2), w, w)
  2630. l1 = Line((c,c-w/2), (c,c-w/2-L))
  2631. linecolor('blue')
  2632. filled_curves(True)
  2633. r1.draw()
  2634. linecolor('aqua')
  2635. filled_curves(False)
  2636. l1.draw()
  2637. hardcopy()
  2638. display() # show the plot
  2639. def rolling_wheel(total_rotation_angle):
  2640. """Animation of a rotating wheel."""
  2641. set_coordinate_system(xmin=0, xmax=10, ymin=0, ymax=10)
  2642. import time
  2643. center = (6,2)
  2644. radius = 2.0
  2645. angle = 2.0
  2646. pngfiles = []
  2647. w1 = Wheel(center=center, radius=radius, inner_radius=0.5, nlines=7)
  2648. for i in range(int(total_rotation_angle/angle)):
  2649. w1.draw()
  2650. print('BIG PROBLEM WITH ANIMATE!!!')
  2651. display()
  2652. filename = 'tmp_%03d' % i
  2653. pngfiles.append(filename + '.png')
  2654. hardcopy(filename)
  2655. time.sleep(0.3) # pause
  2656. L = radius*angle*pi/180 # translation = arc length
  2657. w1.rotate(angle, center)
  2658. w1.translate((-L, 0))
  2659. center = (center[0] - L, center[1])
  2660. erase()
  2661. cmd = 'convert -delay 50 -loop 1000 %s tmp_movie.gif' \
  2662. % (' '.join(pngfiles))
  2663. print('converting PNG files to animated GIF:\n', cmd)
  2664. import subprocess
  2665. failure, output = subprocess.getstatusoutput(cmd)
  2666. if failure: print('Could not run', cmd)
  2667. if __name__ == '__main__':
  2668. #rolling_wheel(40)
  2669. #_test1()
  2670. #_test3()
  2671. funcs = [
  2672. #test_Axis,
  2673. test_inclined_plane,
  2674. ]
  2675. for func in funcs:
  2676. func()
  2677. input('Type Return: ')