source: production/onslow_2006/make_report.py @ 3217

Last change on this file since 3217 was 3217, checked in by sexton, 18 years ago

fixes

File size: 8.3 KB
Line 
1"""
2Generate report for production run
3
4Inputs:
5
6report_title:    title to be included in tex file
7production dirs: dictionary of production directories with a
8                 association to that simulation run, eg high tide,
9                 low tide and MSL.
10                   
11
12Outputs:
13
14* Report generated to scenario_report.tex where the scenario relates
15the name of the production directory this script is being run from.
16* figures used for report stored in the report_figure directory
17NOTE, this directory will need to be committed, as well as
18the latex files.
19
20The report structure is
21
22* Executive Summary
23* Introduction
24* Modelling Methodology
25* Tsunami scenario
26* Inundation model
27* Data sources
28* Modelling results
29* Impact modelling
30* Summary
31* References
32* Appendix: Metadata
33* Appendix: Time series outputs
34
35Other files included in document which require manual intervention:
36
37* an abstract must be written in abstract.tex
38* an introduction must be written in introduction.tex; a basic outline and
39  some of the core inputs are already in place
40* the tsunami-genic event should be discussed in tsunami_scenario.tex
41* a discussion of the ANUGA model is required in anuga.tex
42* a computational_setup.tex file needs to be written for the particular scenario
43* the interpretation of the results needs to be written to interpretation.tex
44* maximum inundation map names need to be included in HAT_map and LAT_map etc.
45* damage modelling map names need to be included in HAT_damage and LAT_damage etc.
46* a summary must be written into summary.tex
47* metadata for the scenario data to be included in metadata.tex
48
49May, June 2006                   
50"""
51
52from os import getcwd, sep, altsep, mkdir, access, F_OK
53import project
54from pyvolution.util import sww2timeseries, get_gauges_from_file
55
56# Derive scenario name
57p = getcwd().split(sep)
58scenario = p[-1] # Last element of absolute CWD path
59scenario_name = scenario.split('_2006')[0] # Strip any text past `_2006`
60test = scenario_name.split('_')
61if len(test) <> 1:
62    scenario_name = '%s %s' %(test[0], test[1])
63
64# Create report directory
65reportdir = getcwd()+sep+'report'+sep
66if access(reportdir,F_OK) == 0:
67    mkdir (reportdir)
68   
69# User defined inputs
70report_title = 'Tsunami impact modelling for the North West shelf: %s' %scenario_name.title()
71
72#production_dirs = {'20060426_004129': '1.5 AHD',
73#                   '20060426_004237': '-1.5 AHD',
74#                   '20060515_001733': '0 AHD'}
75
76production_dirs = {'20060515_001733': '0 AHD'}
77
78#max_maps = {'1.5 AHD': 'HAT_map',
79#            '-1.5 AHD': 'LAT_map',
80#            '0 AHD': 'MSL_map'}
81
82max_maps = {'0 AHD': 'MSL_map'}
83
84#damage_maps = {'1.5 AHD': 'HAT_damage',
85#               '-1.5 AHD': 'LAT_damage',
86#               '0 AHD': 'MSL_damage'}
87
88gauge_map = 'onslow_gauge_map.jpg'
89
90# Create sections and graphs for each designated production directory
91latex_output = []
92swwfiles = {}
93for label_id in production_dirs.keys():
94   
95    file_loc = project.outputdir + label_id + sep
96    swwfile = file_loc + project.basename + '.sww'
97    swwfiles[swwfile] = label_id
98
99texname, elev_output = sww2timeseries(swwfiles,
100                                      project.gauge_filename,
101                                      production_dirs,
102                                      report = True,
103                                      reportname = 'latexoutput',
104                                      plot_quantity = ['stage', 'speed'],
105                                      surface = False,
106                                      time_min = None,
107                                      time_max = None,
108                                      title_on = False,
109                                      verbose = True)
110
111latex_output.append(texname)
112
113# Start report generation
114# Future: generate_report(reportdir, scenario, report_title,
115# project.gauge_filename, max_maps, damage_maps, production_dirs, latex_output)
116report_name = reportdir + scenario + '_report.tex'
117fid = open(report_name, 'w')
118
119s = """
120% This is based on an automatically generated file (by make_report.py).
121%
122% Manual parts are:
123% * an abstract must be written in abstract.tex
124% * an introduction must be written in introduction.tex; a basic outline and
125%   some of the core inputs are already in place
126% * outline of the modelling methodology provided in modelling_methodology.tex
127% * the tsunami-genic event should be discussed in tsunami_scenario.tex
128% * an computational_setup.tex file needs to be written for the particular scenario
129% * the interpretation of the results needs to be written to interpretation.tex
130% * maximum inundation maps need to be included in HAT_map.tex and LAT_map.tex etc.
131% * damage modelling maps need to be included in HAT_damage and LAT_damage etc.
132% * a summary must be written into summary.tex
133% * metadata for the scenario data to be included in metadata.tex
134
135\documentclass{article}
136
137\usepackage{ae} % or {zefonts}
138\usepackage[T1]{fontenc}
139\usepackage[ansinew]{inputenc}
140\usepackage{amsmath}
141\usepackage{amssymb}
142\usepackage{graphicx}
143\usepackage{color}
144\usepackage[colorlinks]{hyperref}
145\usepackage{lscape} %landcape pages support
146\usepackage{setspace}
147\setstretch{1.25}
148\\topmargin 0pt
149\oddsidemargin 0pt
150\evensidemargin 0pt
151\marginparwidth 0.5pt
152\\textwidth \paperwidth
153\\advance\\textwidth -2in
154
155"""
156fid.write(s)
157
158s = '\\title{%s} \n' %report_title
159fid.write(s)
160
161s = """
162\date{\\today}
163%\\author{Geoscience Australia}
164
165\\begin{document}
166  \maketitle
167
168\\begin{figure}[hbt]
169  \centerline{ \includegraphics[scale=0.3]{../report_figures/GAlogo.jpg}}
170\end{figure}
171   
172  \\tableofcontents
173
174    \section{Executive Summary}
175    \label{sec:execsum}
176  \input{execsum}
177 
178  \section{Introduction}
179    \label{sec:intro}
180  \input{introduction}
181
182   \section{Modelling methodology}
183    \label{sec:methodology}
184    \input{modelling_methodology}
185   
186  \section{Tsunami scenarios}
187    \label{sec:tsunamiscenario}
188    \input{tsunami_scenario}
189
190   \section{Inundation model}
191    \label{sec:anuga}
192    \input{anuga}
193    \input{computational_setup}
194   
195  \section{Data sources}
196    \label{sec:data}
197    \input{data}
198   
199  \section{Modelling results}
200     \label{sec:results}
201         
202"""
203fid.write(s)
204
205# Generate latex output for location points
206s = '\\begin{table} \label{table:locations} \n'
207fid.write(s)
208s = '\caption{Defined point locations for %s study area.}' %report_title
209fid.write(s)
210s = """
211\\begin{center}
212\\begin{tabular}{|l|l|l|l|}\hline
213\\bf{Point Name} & \\bf{Easting} & \\bf{Northing} & \\bf{Elevation}\\\\ \hline
214"""
215fid.write(s)
216
217gauges, locations, elevation = get_gauges_from_file(project.gauge_filename)
218
219for name, gauges, elev in zip(locations, gauges, elevation):
220    east = gauges[0]
221    north = gauges[1]
222    s = '%s & %.2f & %.2f & %.2f \\\\ \hline \n' %(name.replace('_',' '), east, north, elev)
223    fid.write(s)
224
225s = '\\end{tabular} \n  \end{center} \n \end{table} \n \n'
226fid.write(s)
227
228s = '\\begin{figure}[hbt] \n \centerline{ \includegraphics[width=150mm, height=100mm]{../report_figures/%s}}' %gauge_map
229fid.write(s)
230
231= """
232\caption{Point locations used for Onslow study.} 
233\label{fig:points}
234\end{figure}
235"""
236fid.write(s)
237   
238s = '\input{interpretation} \n'
239fid.write(s)
240
241# Assign titles to each production section
242# Must specify one name per section
243for i, name in enumerate(production_dirs.keys()):
244#
245#    s = '\subsection{%s} \n \n' %production_dirs[name]     
246#    fid.write(s)
247
248    s = '\input{%s} \n \clearpage \n \n' %max_maps[production_dirs[name]]
249    fid.write(s)
250
251# Closing
252
253s = """
254   \section{Impact modelling}
255    \label{sec:impact}
256     \input{damage}
257"""
258fid.write(s)
259
260#for i, name in enumerate(production_dirs.keys()):
261
262#    s = '\input{%s} \n \clearpage \n \n' %damage_maps[production_dirs[name]]
263#    fid.write(s)
264
265s = """
266   \section{Summary}
267     \input{summary}
268     
269    \input{references}
270   
271   \section{Metadata}
272     \label{sec:metadata}
273     \input{metadata}
274
275   \section{Time series}
276     \label{sec:timeseries}
277     
278   \section{Damage modelling inputs}
279     \label{sec:damageinputs}
280     \input{damage_inputs}
281"""
282fid.write(s)
283
284s = '\input{%s} \n \clearpage \n \n' %latex_output[0]
285fid.write(s)
286     
287s = '\end{document}'
288fid.write(s)
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