from binaryninja import * import os import webbrowser try: from urllib import pathname2url # Python 2.x except: from urllib.request import pathname2url # Python 3.x colors = {'green': [162, 217, 175], 'red': [222, 143, 151], 'blue': [128, 198, 233], 'cyan': [142, 230, 237], 'lightCyan': [176, 221, 228], 'orange': [237, 189, 129], 'yellow': [237, 223, 179], 'magenta': [218, 196, 209], 'none': [74, 74, 74]} escape_table = { "'": "'", ">": ">", "<": "<", '"': """, ' ': " " } def escape(string): string=string.decode('utf-8').encode('ascii','xmlcharrefreplace') #handle extended unicode return ''.join(escape_table.get(i,i) for i in string) #still escape the basics def save_svg(bv,function): address = hex(function.start).replace('L','') path = os.path.dirname(bv.file.filename) origname = os.path.basename(bv.file.filename) filename = os.path.join(path,'binaryninja-{filename}-{function}.html'.format(filename=origname,function=address)) outputfile = get_save_filename_input('File name for export_svg', 'HTML files (*.html)', filename) if outputfile is None: return content = render_svg(function) output = open(outputfile,'w') output.write(content) output.close() if show_message_box("Open SVG", "Would you like to view the exported SVG?", buttons = core.YesNoButtonSet, icon = core.QuestionIcon) == core.YesButton: url = 'file:{}'.format(pathname2url(outputfile)) webbrowser.open(url) def instruction_data_flow(function,address): ''' TODO: Extract data flow information ''' length = function.view.get_instruction_length(function.arch,address) bytes = function.view.read(address, length) hex = bytes.encode('hex') padded = ' '.join([hex[i:i+2] for i in range(0, len(hex), 2)]) return 'Opcode: {bytes}'.format(bytes=padded) def render_svg(function): graph = function.create_graph() graph.layout_and_wait() heightconst = 15 ratio = 0.48 widthconst = heightconst*ratio output = ''' ''' output += ''' '''.format(width=graph.width*widthconst + 20, height=graph.height*heightconst + 20) output += ''' Function Graph 0 ''' edges = '' for i,block in enumerate(graph.blocks): #Calculate basic block location and coordinates x = ((block.x) * widthconst) y = ((block.y) * heightconst) width = ((block.width) * widthconst) height = ((block.height) * heightconst) #Render block output += ' \n'.format(i=i) output += ' Basic Block {i}\n'.format(i=i) rgb=colors['none'] try: bb = block.basic_block color_code = bb.highlight.color color_str = bb.highlight._standard_color_to_str(color_code) if color_str in colors: rgb=colors[color_str] except: pass output += ' \n'.format(x=x,y=y,width=width + 16,height=height + 12,r=rgb[0],g=rgb[1],b=rgb[2]) #Render instructions, unfortunately tspans don't allow copying/pasting more #than one line at a time, need SVG 1.2 textarea tags for that it looks like output += ' \n'.format(x=x,y=y + (i + 1) * heightconst) for i,line in enumerate(block.lines): output += ' '.format(x=x + 6,y=y + 6 + (i + 0.7) * heightconst,address=hex(line.address)[:-1]) hover = instruction_data_flow(function, line.address) output += '{hover}'.format(hover=hover) for token in line.tokens: # TODO: add hover for hex, function, and reg tokens output+='{text}'.format(text=escape(token.text),tokentype=token.type) output += '\n' output += ' \n' output += ' \n' #Edges are rendered in a seperate chunk so they have priority over the #basic blocks or else they'd render below them for edge in block.outgoing_edges: points = "" x,y = edge.points[0] points += str(x*widthconst)+","+str(y*heightconst + 12) + " " for x,y in edge.points[1:-1]: points += str(x*widthconst)+","+str(y*heightconst) + " " x,y = edge.points[-1] points += str(x*widthconst)+","+str(y*heightconst + 0) + " " edges += ' \n'.format(type=edge.type,points=points) output += ' ' + edges + '\n' output += ' \n' output += '' return output PluginCommand.register_for_function("Export to SVG", "Exports an SVG of the current function", save_svg)