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1## @file\r
2# Routines for generating build report.\r
3#\r
4# This module contains the functionality to generate build report after\r
5# build all target completes successfully.\r
6#\r
7cb63c87 7# Copyright (c) 2010 - 2017, Intel Corporation. All rights reserved.<BR>\r
40d841f6 8# This program and the accompanying materials\r
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9# are licensed and made available under the terms and conditions of the BSD License\r
10# which accompanies this distribution. The full text of the license may be found at\r
11# http://opensource.org/licenses/bsd-license.php\r
12#\r
13# THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,\r
14# WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.\r
15#\r
16\r
17## Import Modules\r
18#\r
1be2ed90 19import Common.LongFilePathOs as os\r
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20import re\r
21import platform\r
22import textwrap\r
23import traceback\r
24import sys\r
40d841f6 25import time\r
e56468c0 26import struct\r
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27import hashlib\r
28import subprocess\r
29import threading\r
52302d4d 30from datetime import datetime\r
40d841f6 31from StringIO import StringIO\r
52302d4d 32from Common import EdkLogger\r
40d841f6 33from Common.Misc import SaveFileOnChange\r
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34from Common.Misc import GuidStructureByteArrayToGuidString\r
35from Common.Misc import GuidStructureStringToGuidString\r
36from Common.InfClassObject import gComponentType2ModuleType\r
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37from Common.BuildToolError import FILE_WRITE_FAILURE\r
38from Common.BuildToolError import CODE_ERROR\r
eca5be7a 39from Common.BuildToolError import COMMAND_FAILURE\r
1be2ed90 40from Common.LongFilePathSupport import OpenLongFilePath as open\r
05cc51ad 41from Common.MultipleWorkspace import MultipleWorkspace as mws\r
763e8edf 42import Common.GlobalData as GlobalData\r
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43from AutoGen.AutoGen import ModuleAutoGen\r
44from Common.Misc import PathClass\r
45from Common.String import NormPath\r
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46from Common.DataType import *\r
47import collections\r
726c501c 48from Common.Expression import ValueExpressionEx\r
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49\r
50## Pattern to extract contents in EDK DXS files\r
51gDxsDependencyPattern = re.compile(r"DEPENDENCY_START(.+)DEPENDENCY_END", re.DOTALL)\r
52\r
53## Pattern to find total FV total size, occupied size in flash report intermediate file\r
54gFvTotalSizePattern = re.compile(r"EFI_FV_TOTAL_SIZE = (0x[0-9a-fA-F]+)")\r
55gFvTakenSizePattern = re.compile(r"EFI_FV_TAKEN_SIZE = (0x[0-9a-fA-F]+)")\r
56\r
57## Pattern to find module size and time stamp in module summary report intermediate file\r
58gModuleSizePattern = re.compile(r"MODULE_SIZE = (\d+)")\r
59gTimeStampPattern = re.compile(r"TIME_STAMP = (\d+)")\r
60\r
61## Pattern to find GUID value in flash description files\r
62gPcdGuidPattern = re.compile(r"PCD\((\w+)[.](\w+)\)")\r
63\r
64## Pattern to collect offset, GUID value pair in the flash report intermediate file\r
65gOffsetGuidPattern = re.compile(r"(0x[0-9A-Fa-f]+) ([-A-Fa-f0-9]+)")\r
66\r
67## Pattern to find module base address and entry point in fixed flash map file\r
68gModulePattern = r"\n[-\w]+\s*\(([^,]+),\s*BaseAddress=%(Address)s,\s*EntryPoint=%(Address)s\)\s*\(GUID=([-0-9A-Fa-f]+)[^)]*\)"\r
69gMapFileItemPattern = re.compile(gModulePattern % {"Address" : "(-?0[xX][0-9A-Fa-f]+)"})\r
70\r
71## Pattern to find all module referenced header files in source files\r
72gIncludePattern = re.compile(r'#include\s*["<]([^">]+)[">]')\r
73gIncludePattern2 = re.compile(r"#include\s+EFI_([A-Z_]+)\s*[(]\s*(\w+)\s*[)]")\r
74\r
75## Pattern to find the entry point for EDK module using EDKII Glue library\r
76gGlueLibEntryPoint = re.compile(r"__EDKII_GLUE_MODULE_ENTRY_POINT__\s*=\s*(\w+)")\r
77\r
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78## Tags for MaxLength of line in report\r
79gLineMaxLength = 120\r
80\r
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81## Tags for end of line in report\r
82gEndOfLine = "\r\n"\r
83\r
52302d4d 84## Tags for section start, end and separator\r
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85gSectionStart = ">" + "=" * (gLineMaxLength - 2) + "<"\r
86gSectionEnd = "<" + "=" * (gLineMaxLength - 2) + ">" + "\n"\r
64b2609f 87gSectionSep = "=" * gLineMaxLength\r
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88\r
89## Tags for subsection start, end and separator\r
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90gSubSectionStart = ">" + "-" * (gLineMaxLength - 2) + "<"\r
91gSubSectionEnd = "<" + "-" * (gLineMaxLength - 2) + ">"\r
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92gSubSectionSep = "-" * gLineMaxLength\r
93\r
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94\r
95## The look up table to map PCD type to pair of report display type and DEC type\r
96gPcdTypeMap = {\r
97 'FixedAtBuild' : ('FIXED', 'FixedAtBuild'),\r
98 'PatchableInModule': ('PATCH', 'PatchableInModule'),\r
99 'FeatureFlag' : ('FLAG', 'FeatureFlag'),\r
100 'Dynamic' : ('DYN', 'Dynamic'),\r
101 'DynamicHii' : ('DYNHII', 'Dynamic'),\r
102 'DynamicVpd' : ('DYNVPD', 'Dynamic'),\r
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103 'DynamicEx' : ('DEX', 'DynamicEx'),\r
104 'DynamicExHii' : ('DEXHII', 'DynamicEx'),\r
105 'DynamicExVpd' : ('DEXVPD', 'DynamicEx'),\r
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106 }\r
107\r
108## The look up table to map module type to driver type\r
109gDriverTypeMap = {\r
110 'SEC' : '0x3 (SECURITY_CORE)',\r
111 'PEI_CORE' : '0x4 (PEI_CORE)',\r
112 'PEIM' : '0x6 (PEIM)',\r
113 'DXE_CORE' : '0x5 (DXE_CORE)',\r
114 'DXE_DRIVER' : '0x7 (DRIVER)',\r
115 'DXE_SAL_DRIVER' : '0x7 (DRIVER)',\r
116 'DXE_SMM_DRIVER' : '0x7 (DRIVER)',\r
117 'DXE_RUNTIME_DRIVER': '0x7 (DRIVER)',\r
118 'UEFI_DRIVER' : '0x7 (DRIVER)',\r
119 'UEFI_APPLICATION' : '0x9 (APPLICATION)',\r
120 'SMM_CORE' : '0xD (SMM_CORE)',\r
121 'SMM_DRIVER' : '0xA (SMM)', # Extension of module type to support PI 1.1 SMM drivers\r
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122 'MM_STANDALONE' : '0xE (MM_STANDALONE)',\r
123 'MM_CORE_STANDALONE' : '0xF (MM_CORE_STANDALONE)'\r
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124 }\r
125\r
e56468c0 126## The look up table of the supported opcode in the dependency expression binaries\r
127gOpCodeList = ["BEFORE", "AFTER", "PUSH", "AND", "OR", "NOT", "TRUE", "FALSE", "END", "SOR"]\r
128\r
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129##\r
130# Writes a string to the file object.\r
131#\r
132# This function writes a string to the file object and a new line is appended\r
133# afterwards. It may optionally wraps the string for better readability.\r
134#\r
135# @File The file object to write\r
136# @String The string to be written to the file\r
137# @Wrapper Indicates whether to wrap the string\r
138#\r
139def FileWrite(File, String, Wrapper=False):\r
140 if Wrapper:\r
141 String = textwrap.fill(String, 120)\r
4afd3d04 142 File.write(String + gEndOfLine)\r
52302d4d 143\r
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144def ByteArrayForamt(Value):\r
145 IsByteArray = False\r
146 SplitNum = 16\r
147 ArrayList = []\r
148 if Value.startswith('{') and Value.endswith('}'):\r
149 Value = Value[1:-1]\r
150 ValueList = Value.split(',')\r
151 if len(ValueList) >= SplitNum:\r
152 IsByteArray = True\r
153 if IsByteArray:\r
154 if ValueList:\r
155 Len = len(ValueList)/SplitNum\r
156 for i, element in enumerate(ValueList):\r
157 ValueList[i] = '0x%02X' % int(element.strip(), 16)\r
158 if Len:\r
159 Id = 0\r
160 while (Id <= Len):\r
161 End = min(SplitNum*(Id+1), len(ValueList))\r
162 Str = ','.join(ValueList[SplitNum*Id : End])\r
163 if End == len(ValueList):\r
164 Str += '}'\r
165 ArrayList.append(Str)\r
166 break\r
167 else:\r
168 Str += ','\r
169 ArrayList.append(Str)\r
170 Id += 1\r
171 else:\r
172 ArrayList = [Value + '}']\r
173 return IsByteArray, ArrayList\r
174\r
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175##\r
176# Find all the header file that the module source directly includes.\r
177#\r
178# This function scans source code to find all header files the module may\r
179# include. This is not accurate but very effective to find all the header\r
180# file the module might include with #include statement.\r
181#\r
182# @Source The source file name\r
183# @IncludePathList The list of include path to find the source file.\r
184# @IncludeFiles The dictionary of current found include files.\r
185#\r
186def FindIncludeFiles(Source, IncludePathList, IncludeFiles):\r
187 FileContents = open(Source).read()\r
188 #\r
189 # Find header files with pattern #include "XXX.h" or #include <XXX.h>\r
190 #\r
191 for Match in gIncludePattern.finditer(FileContents):\r
192 FileName = Match.group(1).strip()\r
193 for Dir in [os.path.dirname(Source)] + IncludePathList:\r
194 FullFileName = os.path.normpath(os.path.join(Dir, FileName))\r
195 if os.path.exists(FullFileName):\r
196 IncludeFiles[FullFileName.lower().replace("\\", "/")] = FullFileName\r
197 break\r
198\r
199 #\r
200 # Find header files with pattern like #include EFI_PPI_CONSUMER(XXX)\r
201 #\r
202 for Match in gIncludePattern2.finditer(FileContents):\r
203 Key = Match.group(2)\r
204 Type = Match.group(1)\r
205 if "ARCH_PROTOCOL" in Type:\r
206 FileName = "ArchProtocol/%(Key)s/%(Key)s.h" % {"Key" : Key}\r
207 elif "PROTOCOL" in Type:\r
208 FileName = "Protocol/%(Key)s/%(Key)s.h" % {"Key" : Key}\r
209 elif "PPI" in Type:\r
210 FileName = "Ppi/%(Key)s/%(Key)s.h" % {"Key" : Key}\r
211 elif "GUID" in Type:\r
212 FileName = "Guid/%(Key)s/%(Key)s.h" % {"Key" : Key}\r
213 else:\r
214 continue\r
215 for Dir in IncludePathList:\r
216 FullFileName = os.path.normpath(os.path.join(Dir, FileName))\r
217 if os.path.exists(FullFileName):\r
218 IncludeFiles[FullFileName.lower().replace("\\", "/")] = FullFileName\r
219 break\r
220\r
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221## Split each lines in file\r
222#\r
223# This method is used to split the lines in file to make the length of each line \r
224# less than MaxLength.\r
225#\r
226# @param Content The content of file\r
227# @param MaxLength The Max Length of the line\r
228#\r
229def FileLinesSplit(Content=None, MaxLength=None):\r
230 ContentList = Content.split(TAB_LINE_BREAK)\r
231 NewContent = ''\r
232 NewContentList = []\r
233 for Line in ContentList:\r
234 while len(Line.rstrip()) > MaxLength:\r
235 LineSpaceIndex = Line.rfind(TAB_SPACE_SPLIT, 0, MaxLength)\r
236 LineSlashIndex = Line.rfind(TAB_SLASH, 0, MaxLength)\r
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237 LineBackSlashIndex = Line.rfind(TAB_BACK_SLASH, 0, MaxLength)\r
238 if max(LineSpaceIndex, LineSlashIndex, LineBackSlashIndex) > 0:\r
239 LineBreakIndex = max(LineSpaceIndex, LineSlashIndex, LineBackSlashIndex)\r
240 else:\r
241 LineBreakIndex = MaxLength\r
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242 NewContentList.append(Line[:LineBreakIndex])\r
243 Line = Line[LineBreakIndex:]\r
244 if Line:\r
245 NewContentList.append(Line)\r
246 for NewLine in NewContentList:\r
247 NewContent += NewLine + TAB_LINE_BREAK\r
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248 \r
249 NewContent = NewContent.replace(TAB_LINE_BREAK, gEndOfLine).replace('\r\r\n', gEndOfLine)\r
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250 return NewContent\r
251 \r
252 \r
253 \r
e56468c0 254##\r
255# Parse binary dependency expression section\r
256#\r
257# This utility class parses the dependency expression section and translate the readable\r
258# GUID name and value.\r
259#\r
260class DepexParser(object):\r
261 ##\r
262 # Constructor function for class DepexParser\r
263 #\r
264 # This constructor function collect GUID values so that the readable\r
265 # GUID name can be translated.\r
266 #\r
267 # @param self The object pointer\r
268 # @param Wa Workspace context information\r
269 #\r
270 def __init__(self, Wa):\r
271 self._GuidDb = {}\r
0d2711a6 272 for Pa in Wa.AutoGenObjectList:\r
47fea6af 273 for Package in Pa.PackageList:\r
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274 for Protocol in Package.Protocols:\r
275 GuidValue = GuidStructureStringToGuidString(Package.Protocols[Protocol])\r
276 self._GuidDb[GuidValue.upper()] = Protocol\r
277 for Ppi in Package.Ppis:\r
278 GuidValue = GuidStructureStringToGuidString(Package.Ppis[Ppi])\r
279 self._GuidDb[GuidValue.upper()] = Ppi\r
280 for Guid in Package.Guids:\r
281 GuidValue = GuidStructureStringToGuidString(Package.Guids[Guid])\r
282 self._GuidDb[GuidValue.upper()] = Guid\r
e56468c0 283 \r
284 ##\r
285 # Parse the binary dependency expression files.\r
286 # \r
287 # This function parses the binary dependency expression file and translate it\r
288 # to the instruction list.\r
289 #\r
290 # @param self The object pointer\r
291 # @param DepexFileName The file name of binary dependency expression file.\r
292 #\r
293 def ParseDepexFile(self, DepexFileName):\r
294 DepexFile = open(DepexFileName, "rb")\r
295 DepexStatement = []\r
296 OpCode = DepexFile.read(1)\r
297 while OpCode:\r
298 Statement = gOpCodeList[struct.unpack("B", OpCode)[0]]\r
299 if Statement in ["BEFORE", "AFTER", "PUSH"]:\r
300 GuidValue = "%08X-%04X-%04X-%02X%02X-%02X%02X%02X%02X%02X%02X" % \\r
2bc3256c 301 struct.unpack("=LHHBBBBBBBB", DepexFile.read(16))\r
e56468c0 302 GuidString = self._GuidDb.get(GuidValue, GuidValue)\r
303 Statement = "%s %s" % (Statement, GuidString)\r
304 DepexStatement.append(Statement)\r
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305 OpCode = DepexFile.read(1)\r
306\r
e56468c0 307 return DepexStatement\r
308 \r
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309##\r
310# Reports library information\r
311#\r
312# This class reports the module library subsection in the build report file.\r
313#\r
314class LibraryReport(object):\r
315 ##\r
316 # Constructor function for class LibraryReport\r
317 #\r
318 # This constructor function generates LibraryReport object for\r
319 # a module.\r
320 #\r
321 # @param self The object pointer\r
322 # @param M Module context information\r
323 #\r
324 def __init__(self, M):\r
325 self.LibraryList = []\r
326 if int(str(M.AutoGenVersion), 0) >= 0x00010005:\r
327 self._EdkIIModule = True\r
328 else:\r
329 self._EdkIIModule = False\r
330\r
331 for Lib in M.DependentLibraryList:\r
332 LibInfPath = str(Lib)\r
333 LibClassList = Lib.LibraryClass[0].LibraryClass\r
334 LibConstructorList = Lib.ConstructorList\r
335 LibDesstructorList = Lib.DestructorList\r
336 LibDepexList = Lib.DepexExpression[M.Arch, M.ModuleType]\r
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337 for LibAutoGen in M.LibraryAutoGenList:\r
338 if LibInfPath == LibAutoGen.MetaFile.Path:\r
339 LibTime = LibAutoGen.BuildTime\r
340 break\r
341 self.LibraryList.append((LibInfPath, LibClassList, LibConstructorList, LibDesstructorList, LibDepexList, LibTime))\r
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342\r
343 ##\r
344 # Generate report for module library information\r
345 #\r
346 # This function generates report for the module library.\r
347 # If the module is EDKII style one, the additional library class, library\r
348 # constructor/destructor and dependency expression may also be reported.\r
349 #\r
350 # @param self The object pointer\r
351 # @param File The file object for report\r
352 #\r
353 def GenerateReport(self, File):\r
52302d4d 354 if len(self.LibraryList) > 0:\r
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355 FileWrite(File, gSubSectionStart)\r
356 FileWrite(File, TAB_BRG_LIBRARY)\r
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357 FileWrite(File, gSubSectionSep)\r
358 for LibraryItem in self.LibraryList:\r
359 LibInfPath = LibraryItem[0]\r
360 FileWrite(File, LibInfPath)\r
361\r
362 #\r
363 # Report library class, library constructor and destructor for\r
364 # EDKII style module.\r
365 #\r
366 if self._EdkIIModule:\r
367 LibClass = LibraryItem[1]\r
368 EdkIILibInfo = ""\r
369 LibConstructor = " ".join(LibraryItem[2])\r
370 if LibConstructor:\r
371 EdkIILibInfo += " C = " + LibConstructor\r
372 LibDestructor = " ".join(LibraryItem[3])\r
373 if LibDestructor:\r
636f2be6 374 EdkIILibInfo += " D = " + LibDestructor\r
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375 LibDepex = " ".join(LibraryItem[4])\r
376 if LibDepex:\r
377 EdkIILibInfo += " Depex = " + LibDepex\r
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378 if LibraryItem[5]:\r
379 EdkIILibInfo += " Time = " + LibraryItem[5]\r
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380 if EdkIILibInfo:\r
381 FileWrite(File, "{%s: %s}" % (LibClass, EdkIILibInfo))\r
382 else:\r
383 FileWrite(File, "{%s}" % LibClass)\r
384\r
c2d0a1f6 385 FileWrite(File, gSubSectionEnd)\r
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386\r
387##\r
388# Reports dependency expression information\r
389#\r
390# This class reports the module dependency expression subsection in the build report file.\r
391#\r
392class DepexReport(object):\r
393 ##\r
394 # Constructor function for class DepexReport\r
395 #\r
396 # This constructor function generates DepexReport object for\r
397 # a module. If the module source contains the DXS file (usually EDK\r
398 # style module), it uses the dependency in DXS file; otherwise,\r
399 # it uses the dependency expression from its own INF [Depex] section\r
400 # and then merges with the ones from its dependent library INF.\r
401 #\r
402 # @param self The object pointer\r
403 # @param M Module context information\r
404 #\r
405 def __init__(self, M):\r
406 self.Depex = ""\r
47fea6af 407 self._DepexFileName = os.path.join(M.BuildDir, "OUTPUT", M.Module.BaseName + ".depex")\r
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408 ModuleType = M.ModuleType\r
409 if not ModuleType:\r
410 ModuleType = gComponentType2ModuleType.get(M.ComponentType, "")\r
636f2be6 411\r
e574123c 412 if ModuleType in ["SEC", "PEI_CORE", "DXE_CORE", "SMM_CORE", "MM_CORE_STANDALONE", "UEFI_APPLICATION"]:\r
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413 return\r
414 \r
415 for Source in M.SourceFileList:\r
416 if os.path.splitext(Source.Path)[1].lower() == ".dxs":\r
417 Match = gDxsDependencyPattern.search(open(Source.Path).read())\r
418 if Match:\r
419 self.Depex = Match.group(1).strip()\r
420 self.Source = "DXS"\r
421 break\r
422 else:\r
423 self.Depex = M.DepexExpressionList.get(M.ModuleType, "")\r
424 self.ModuleDepex = " ".join(M.Module.DepexExpression[M.Arch, M.ModuleType])\r
425 if not self.ModuleDepex:\r
426 self.ModuleDepex = "(None)"\r
427\r
428 LibDepexList = []\r
429 for Lib in M.DependentLibraryList:\r
430 LibDepex = " ".join(Lib.DepexExpression[M.Arch, M.ModuleType]).strip()\r
431 if LibDepex != "":\r
432 LibDepexList.append("(" + LibDepex + ")")\r
433 self.LibraryDepex = " AND ".join(LibDepexList)\r
434 if not self.LibraryDepex:\r
435 self.LibraryDepex = "(None)"\r
436 self.Source = "INF"\r
437\r
438 ##\r
439 # Generate report for module dependency expression information\r
440 #\r
441 # This function generates report for the module dependency expression.\r
442 #\r
e56468c0 443 # @param self The object pointer\r
444 # @param File The file object for report\r
445 # @param GlobalDepexParser The platform global Dependency expression parser object\r
52302d4d 446 #\r
e56468c0 447 def GenerateReport(self, File, GlobalDepexParser):\r
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448 if not self.Depex:\r
449 return\r
52302d4d 450 FileWrite(File, gSubSectionStart)\r
e56468c0 451 if os.path.isfile(self._DepexFileName):\r
452 try:\r
453 DepexStatements = GlobalDepexParser.ParseDepexFile(self._DepexFileName)\r
454 FileWrite(File, "Final Dependency Expression (DEPEX) Instructions")\r
455 for DepexStatement in DepexStatements:\r
456 FileWrite(File, " %s" % DepexStatement)\r
457 FileWrite(File, gSubSectionSep)\r
458 except:\r
459 EdkLogger.warn(None, "Dependency expression file is corrupted", self._DepexFileName)\r
460 \r
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461 FileWrite(File, "Dependency Expression (DEPEX) from %s" % self.Source)\r
462\r
463 if self.Source == "INF":\r
464 FileWrite(File, "%s" % self.Depex, True)\r
465 FileWrite(File, gSubSectionSep)\r
466 FileWrite(File, "From Module INF: %s" % self.ModuleDepex, True)\r
467 FileWrite(File, "From Library INF: %s" % self.LibraryDepex, True)\r
468 else:\r
469 FileWrite(File, "%s" % self.Depex)\r
470 FileWrite(File, gSubSectionEnd)\r
471\r
472##\r
473# Reports dependency expression information\r
474#\r
475# This class reports the module build flags subsection in the build report file.\r
476#\r
477class BuildFlagsReport(object):\r
478 ##\r
479 # Constructor function for class BuildFlagsReport\r
480 #\r
481 # This constructor function generates BuildFlagsReport object for\r
482 # a module. It reports the build tool chain tag and all relevant\r
483 # build flags to build the module.\r
484 #\r
485 # @param self The object pointer\r
486 # @param M Module context information\r
487 #\r
488 def __init__(self, M):\r
489 BuildOptions = {}\r
490 #\r
491 # Add build flags according to source file extension so that\r
492 # irrelevant ones can be filtered out.\r
493 #\r
494 for Source in M.SourceFileList:\r
495 Ext = os.path.splitext(Source.File)[1].lower()\r
496 if Ext in [".c", ".cc", ".cpp"]:\r
497 BuildOptions["CC"] = 1\r
498 elif Ext in [".s", ".asm"]:\r
499 BuildOptions["PP"] = 1\r
500 BuildOptions["ASM"] = 1\r
501 elif Ext in [".vfr"]:\r
502 BuildOptions["VFRPP"] = 1\r
503 BuildOptions["VFR"] = 1\r
504 elif Ext in [".dxs"]:\r
505 BuildOptions["APP"] = 1\r
506 BuildOptions["CC"] = 1\r
507 elif Ext in [".asl"]:\r
508 BuildOptions["ASLPP"] = 1\r
509 BuildOptions["ASL"] = 1\r
510 elif Ext in [".aslc"]:\r
511 BuildOptions["ASLCC"] = 1\r
512 BuildOptions["ASLDLINK"] = 1\r
513 BuildOptions["CC"] = 1\r
514 elif Ext in [".asm16"]:\r
515 BuildOptions["ASMLINK"] = 1\r
516 BuildOptions["SLINK"] = 1\r
517 BuildOptions["DLINK"] = 1\r
518\r
519 #\r
520 # Save module build flags.\r
521 #\r
522 self.ToolChainTag = M.ToolChain\r
523 self.BuildFlags = {}\r
524 for Tool in BuildOptions:\r
525 self.BuildFlags[Tool + "_FLAGS"] = M.BuildOption.get(Tool, {}).get("FLAGS", "")\r
526\r
527 ##\r
528 # Generate report for module build flags information\r
529 #\r
530 # This function generates report for the module build flags expression.\r
531 #\r
532 # @param self The object pointer\r
533 # @param File The file object for report\r
534 #\r
535 def GenerateReport(self, File):\r
536 FileWrite(File, gSubSectionStart)\r
537 FileWrite(File, "Build Flags")\r
538 FileWrite(File, "Tool Chain Tag: %s" % self.ToolChainTag)\r
539 for Tool in self.BuildFlags:\r
540 FileWrite(File, gSubSectionSep)\r
541 FileWrite(File, "%s = %s" % (Tool, self.BuildFlags[Tool]), True)\r
542\r
543 FileWrite(File, gSubSectionEnd)\r
544\r
545\r
546##\r
547# Reports individual module information\r
548#\r
549# This class reports the module section in the build report file.\r
550# It comprises of module summary, module PCD, library, dependency expression,\r
551# build flags sections.\r
552#\r
553class ModuleReport(object):\r
554 ##\r
555 # Constructor function for class ModuleReport\r
556 #\r
557 # This constructor function generates ModuleReport object for\r
558 # a separate module in a platform build.\r
559 #\r
560 # @param self The object pointer\r
561 # @param M Module context information\r
562 # @param ReportType The kind of report items in the final report file\r
563 #\r
564 def __init__(self, M, ReportType):\r
565 self.ModuleName = M.Module.BaseName\r
566 self.ModuleInfPath = M.MetaFile.File\r
567 self.FileGuid = M.Guid\r
568 self.Size = 0\r
569 self.BuildTimeStamp = None\r
eca5be7a 570 self.Hash = 0\r
52302d4d 571 self.DriverType = ""\r
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572 if not M.IsLibrary:\r
573 ModuleType = M.ModuleType\r
574 if not ModuleType:\r
575 ModuleType = gComponentType2ModuleType.get(M.ComponentType, "")\r
576 #\r
577 # If a module complies to PI 1.1, promote Module type to "SMM_DRIVER"\r
578 #\r
579 if ModuleType == "DXE_SMM_DRIVER":\r
47fea6af 580 PiSpec = M.Module.Specification.get("PI_SPECIFICATION_VERSION", "0x00010000")\r
0d2711a6 581 if int(PiSpec, 0) >= 0x0001000A:\r
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582 ModuleType = "SMM_DRIVER"\r
583 self.DriverType = gDriverTypeMap.get(ModuleType, "0x2 (FREE_FORM)")\r
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584 self.UefiSpecVersion = M.Module.Specification.get("UEFI_SPECIFICATION_VERSION", "")\r
585 self.PiSpecVersion = M.Module.Specification.get("PI_SPECIFICATION_VERSION", "")\r
586 self.PciDeviceId = M.Module.Defines.get("PCI_DEVICE_ID", "")\r
587 self.PciVendorId = M.Module.Defines.get("PCI_VENDOR_ID", "")\r
588 self.PciClassCode = M.Module.Defines.get("PCI_CLASS_CODE", "")\r
1b8eca8b 589 self.BuildTime = M.BuildTime\r
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590\r
591 self._BuildDir = M.BuildDir\r
592 self.ModulePcdSet = {}\r
593 if "PCD" in ReportType:\r
594 #\r
595 # Collect all module used PCD set: module INF referenced directly or indirectly.\r
596 # It also saves module INF default values of them in case they exist.\r
597 #\r
598 for Pcd in M.ModulePcdList + M.LibraryPcdList:\r
599 self.ModulePcdSet.setdefault((Pcd.TokenCName, Pcd.TokenSpaceGuidCName, Pcd.Type), (Pcd.InfDefaultValue, Pcd.DefaultValue))\r
600\r
601 self.LibraryReport = None\r
602 if "LIBRARY" in ReportType:\r
603 self.LibraryReport = LibraryReport(M)\r
604\r
605 self.DepexReport = None\r
606 if "DEPEX" in ReportType:\r
607 self.DepexReport = DepexReport(M)\r
608\r
609 if "BUILD_FLAGS" in ReportType:\r
610 self.BuildFlagsReport = BuildFlagsReport(M)\r
611\r
612\r
613 ##\r
614 # Generate report for module information\r
615 #\r
616 # This function generates report for separate module expression\r
617 # in a platform build.\r
618 #\r
e56468c0 619 # @param self The object pointer\r
620 # @param File The file object for report\r
621 # @param GlobalPcdReport The platform global PCD report object\r
622 # @param GlobalPredictionReport The platform global Prediction report object\r
623 # @param GlobalDepexParser The platform global Dependency expression parser object\r
624 # @param ReportType The kind of report items in the final report file\r
52302d4d 625 #\r
e56468c0 626 def GenerateReport(self, File, GlobalPcdReport, GlobalPredictionReport, GlobalDepexParser, ReportType):\r
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627 FileWrite(File, gSectionStart)\r
628\r
629 FwReportFileName = os.path.join(self._BuildDir, "DEBUG", self.ModuleName + ".txt")\r
630 if os.path.isfile(FwReportFileName):\r
631 try:\r
632 FileContents = open(FwReportFileName).read()\r
633 Match = gModuleSizePattern.search(FileContents)\r
634 if Match:\r
635 self.Size = int(Match.group(1))\r
636\r
637 Match = gTimeStampPattern.search(FileContents)\r
638 if Match:\r
639 self.BuildTimeStamp = datetime.fromtimestamp(int(Match.group(1)))\r
640 except IOError:\r
641 EdkLogger.warn(None, "Fail to read report file", FwReportFileName)\r
642\r
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643 if "HASH" in ReportType:\r
644 OutputDir = os.path.join(self._BuildDir, "OUTPUT")\r
645 DefaultEFIfile = os.path.join(OutputDir, self.ModuleName + ".efi")\r
646 if os.path.isfile(DefaultEFIfile):\r
647 Tempfile = os.path.join(OutputDir, self.ModuleName + "_hash.tmp")\r
648 # rebase the efi image since its base address may not zero\r
649 cmd = ["GenFw", "--rebase", str(0), "-o", Tempfile, DefaultEFIfile]\r
650 try:\r
651 PopenObject = subprocess.Popen(' '.join(cmd), stdout=subprocess.PIPE, stderr=subprocess.PIPE, shell=True)\r
652 except Exception, X:\r
653 EdkLogger.error("GenFw", COMMAND_FAILURE, ExtraData="%s: %s" % (str(X), cmd[0]))\r
654 EndOfProcedure = threading.Event()\r
655 EndOfProcedure.clear()\r
656 if PopenObject.stderr:\r
657 StdErrThread = threading.Thread(target=ReadMessage, args=(PopenObject.stderr, EdkLogger.quiet, EndOfProcedure))\r
658 StdErrThread.setName("STDERR-Redirector")\r
659 StdErrThread.setDaemon(False)\r
660 StdErrThread.start()\r
661 # waiting for program exit\r
662 PopenObject.wait()\r
663 if PopenObject.stderr:\r
664 StdErrThread.join()\r
665 if PopenObject.returncode != 0:\r
666 EdkLogger.error("GenFw", COMMAND_FAILURE, "Failed to generate firmware hash image for %s" % (DefaultEFIfile))\r
667 if os.path.isfile(Tempfile):\r
668 self.Hash = hashlib.sha1()\r
669 buf = open(Tempfile, 'rb').read()\r
670 if self.Hash.update(buf):\r
671 self.Hash = self.Hash.update(buf)\r
672 self.Hash = self.Hash.hexdigest()\r
673 os.remove(Tempfile)\r
674\r
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675 FileWrite(File, "Module Summary")\r
676 FileWrite(File, "Module Name: %s" % self.ModuleName)\r
677 FileWrite(File, "Module INF Path: %s" % self.ModuleInfPath)\r
678 FileWrite(File, "File GUID: %s" % self.FileGuid)\r
679 if self.Size:\r
680 FileWrite(File, "Size: 0x%X (%.2fK)" % (self.Size, self.Size / 1024.0))\r
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681 if self.Hash:\r
682 FileWrite(File, "SHA1 HASH: %s *%s" % (self.Hash, self.ModuleName + ".efi"))\r
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683 if self.BuildTimeStamp:\r
684 FileWrite(File, "Build Time Stamp: %s" % self.BuildTimeStamp)\r
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685 if self.BuildTime:\r
686 FileWrite(File, "Module Build Time: %s" % self.BuildTime)\r
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687 if self.DriverType:\r
688 FileWrite(File, "Driver Type: %s" % self.DriverType)\r
689 if self.UefiSpecVersion:\r
690 FileWrite(File, "UEFI Spec Version: %s" % self.UefiSpecVersion)\r
691 if self.PiSpecVersion:\r
692 FileWrite(File, "PI Spec Version: %s" % self.PiSpecVersion)\r
693 if self.PciDeviceId:\r
694 FileWrite(File, "PCI Device ID: %s" % self.PciDeviceId)\r
695 if self.PciVendorId:\r
696 FileWrite(File, "PCI Vendor ID: %s" % self.PciVendorId)\r
697 if self.PciClassCode:\r
698 FileWrite(File, "PCI Class Code: %s" % self.PciClassCode)\r
699\r
700 FileWrite(File, gSectionSep)\r
701\r
702 if "PCD" in ReportType:\r
703 GlobalPcdReport.GenerateReport(File, self.ModulePcdSet)\r
704\r
705 if "LIBRARY" in ReportType:\r
706 self.LibraryReport.GenerateReport(File)\r
707\r
708 if "DEPEX" in ReportType:\r
e56468c0 709 self.DepexReport.GenerateReport(File, GlobalDepexParser)\r
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710\r
711 if "BUILD_FLAGS" in ReportType:\r
712 self.BuildFlagsReport.GenerateReport(File)\r
713\r
714 if "FIXED_ADDRESS" in ReportType and self.FileGuid:\r
715 GlobalPredictionReport.GenerateReport(File, self.FileGuid)\r
716\r
717 FileWrite(File, gSectionEnd)\r
718\r
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719def ReadMessage(From, To, ExitFlag):\r
720 while True:\r
721 # read one line a time\r
722 Line = From.readline()\r
723 # empty string means "end"\r
724 if Line != None and Line != "":\r
725 To(Line.rstrip())\r
726 else:\r
727 break\r
728 if ExitFlag.isSet():\r
729 break\r
730\r
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731##\r
732# Reports platform and module PCD information\r
733#\r
734# This class reports the platform PCD section and module PCD subsection\r
735# in the build report file.\r
736#\r
737class PcdReport(object):\r
738 ##\r
739 # Constructor function for class PcdReport\r
740 #\r
741 # This constructor function generates PcdReport object a platform build.\r
742 # It collects the whole PCD database from platform DSC files, platform\r
743 # flash description file and package DEC files.\r
744 #\r
745 # @param self The object pointer\r
746 # @param Wa Workspace context information\r
747 #\r
748 def __init__(self, Wa):\r
749 self.AllPcds = {}\r
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750 self.UnusedPcds = {}\r
751 self.ConditionalPcds = {}\r
52302d4d 752 self.MaxLen = 0\r
e651d06c 753 self.Arch = None\r
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754 if Wa.FdfProfile:\r
755 self.FdfPcdSet = Wa.FdfProfile.PcdDict\r
756 else:\r
757 self.FdfPcdSet = {}\r
758\r
759 self.ModulePcdOverride = {}\r
760 for Pa in Wa.AutoGenObjectList:\r
e651d06c 761 self.Arch = Pa.Arch\r
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762 #\r
763 # Collect all platform referenced PCDs and grouped them by PCD token space\r
764 # GUID C Names\r
765 #\r
766 for Pcd in Pa.AllPcdList:\r
767 PcdList = self.AllPcds.setdefault(Pcd.TokenSpaceGuidCName, {}).setdefault(Pcd.Type, [])\r
768 if Pcd not in PcdList:\r
769 PcdList.append(Pcd)\r
770 if len(Pcd.TokenCName) > self.MaxLen:\r
771 self.MaxLen = len(Pcd.TokenCName)\r
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772 #\r
773 # Collect the PCD defined in DSC/FDF file, but not used in module\r
774 #\r
775 UnusedPcdFullList = []\r
776 for item in Pa.Platform.Pcds:\r
777 Pcd = Pa.Platform.Pcds[item]\r
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778 if not Pcd.Type:\r
779 # check the Pcd in FDF file, whether it is used in module first\r
780 for T in ["FixedAtBuild", "PatchableInModule", "FeatureFlag", "Dynamic", "DynamicEx"]:\r
781 PcdList = self.AllPcds.setdefault(Pcd.TokenSpaceGuidCName, {}).setdefault(T, [])\r
782 if Pcd in PcdList:\r
783 Pcd.Type = T\r
784 break\r
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785 if not Pcd.Type:\r
786 PcdTypeFlag = False\r
787 for package in Pa.PackageList:\r
788 for T in ["FixedAtBuild", "PatchableInModule", "FeatureFlag", "Dynamic", "DynamicEx"]:\r
789 if (Pcd.TokenCName, Pcd.TokenSpaceGuidCName, T) in package.Pcds:\r
790 Pcd.Type = T\r
791 PcdTypeFlag = True\r
792 if not Pcd.DatumType:\r
793 Pcd.DatumType = package.Pcds[(Pcd.TokenCName, Pcd.TokenSpaceGuidCName, T)].DatumType\r
794 break\r
795 if PcdTypeFlag:\r
796 break\r
797 if not Pcd.DatumType:\r
798 PcdType = Pcd.Type\r
799 # Try to remove Hii and Vpd suffix\r
800 if PcdType.startswith("DynamicEx"):\r
801 PcdType = "DynamicEx"\r
802 elif PcdType.startswith("Dynamic"):\r
803 PcdType = "Dynamic"\r
804 for package in Pa.PackageList:\r
805 if (Pcd.TokenCName, Pcd.TokenSpaceGuidCName, PcdType) in package.Pcds:\r
806 Pcd.DatumType = package.Pcds[(Pcd.TokenCName, Pcd.TokenSpaceGuidCName, PcdType)].DatumType\r
807 break\r
808\r
809 PcdList = self.AllPcds.setdefault(Pcd.TokenSpaceGuidCName, {}).setdefault(Pcd.Type, [])\r
810 if Pcd not in PcdList and Pcd not in UnusedPcdFullList:\r
811 UnusedPcdFullList.append(Pcd)\r
812 if len(Pcd.TokenCName) > self.MaxLen:\r
813 self.MaxLen = len(Pcd.TokenCName)\r
814\r
815 if GlobalData.gConditionalPcds:\r
816 for PcdItem in GlobalData.gConditionalPcds:\r
817 if '.' in PcdItem:\r
818 (TokenSpaceGuidCName, TokenCName) = PcdItem.split('.')\r
819 if (TokenCName, TokenSpaceGuidCName) in Pa.Platform.Pcds.keys():\r
820 Pcd = Pa.Platform.Pcds[(TokenCName, TokenSpaceGuidCName)]\r
821 PcdList = self.ConditionalPcds.setdefault(Pcd.TokenSpaceGuidCName, {}).setdefault(Pcd.Type, [])\r
822 if Pcd not in PcdList:\r
823 PcdList.append(Pcd)\r
824\r
825 UnusedPcdList = []\r
826 if UnusedPcdFullList:\r
827 for Pcd in UnusedPcdFullList:\r
828 if Pcd.TokenSpaceGuidCName + '.' + Pcd.TokenCName in GlobalData.gConditionalPcds:\r
829 continue\r
830 UnusedPcdList.append(Pcd)\r
831\r
832 for Pcd in UnusedPcdList:\r
833 PcdList = self.UnusedPcds.setdefault(Pcd.TokenSpaceGuidCName, {}).setdefault(Pcd.Type, [])\r
834 if Pcd not in PcdList:\r
835 PcdList.append(Pcd)\r
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836\r
837 for Module in Pa.Platform.Modules.values():\r
838 #\r
839 # Collect module override PCDs\r
840 #\r
841 for ModulePcd in Module.M.ModulePcdList + Module.M.LibraryPcdList:\r
842 TokenCName = ModulePcd.TokenCName\r
843 TokenSpaceGuid = ModulePcd.TokenSpaceGuidCName\r
844 ModuleDefault = ModulePcd.DefaultValue\r
845 ModulePath = os.path.basename(Module.M.MetaFile.File)\r
846 self.ModulePcdOverride.setdefault((TokenCName, TokenSpaceGuid), {})[ModulePath] = ModuleDefault\r
847\r
848\r
849 #\r
850 # Collect PCD DEC default value.\r
851 #\r
852 self.DecPcdDefault = {}\r
726c501c 853 self._GuidDict = {}\r
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854 for Pa in Wa.AutoGenObjectList:\r
855 for Package in Pa.PackageList:\r
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856 Guids = Package.Guids\r
857 self._GuidDict.update(Guids)\r
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858 for (TokenCName, TokenSpaceGuidCName, DecType) in Package.Pcds:\r
859 DecDefaultValue = Package.Pcds[TokenCName, TokenSpaceGuidCName, DecType].DefaultValue\r
860 self.DecPcdDefault.setdefault((TokenCName, TokenSpaceGuidCName, DecType), DecDefaultValue)\r
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861 #\r
862 # Collect PCDs defined in DSC common section\r
863 #\r
864 self.DscPcdDefault = {}\r
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865 for Pa in Wa.AutoGenObjectList:\r
866 for (TokenCName, TokenSpaceGuidCName) in Pa.Platform.Pcds:\r
867 DscDefaultValue = Pa.Platform.Pcds[(TokenCName, TokenSpaceGuidCName)].DefaultValue\r
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868 if DscDefaultValue:\r
869 self.DscPcdDefault[(TokenCName, TokenSpaceGuidCName)] = DscDefaultValue\r
52302d4d 870\r
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871 def GenerateReport(self, File, ModulePcdSet):\r
872 if self.ConditionalPcds:\r
873 self.GenerateReportDetail(File, ModulePcdSet, 1)\r
874 if self.UnusedPcds:\r
875 self.GenerateReportDetail(File, ModulePcdSet, 2)\r
876 self.GenerateReportDetail(File, ModulePcdSet)\r
877\r
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878 ##\r
879 # Generate report for PCD information\r
880 #\r
881 # This function generates report for separate module expression\r
882 # in a platform build.\r
883 #\r
884 # @param self The object pointer\r
885 # @param File The file object for report\r
886 # @param ModulePcdSet Set of all PCDs referenced by module or None for\r
887 # platform PCD report\r
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888 # @param ReportySubType 0 means platform/module PCD report, 1 means Conditional\r
889 # directives section report, 2 means Unused Pcds section report\r
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890 # @param DscOverridePcds Module DSC override PCDs set\r
891 #\r
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892 def GenerateReportDetail(self, File, ModulePcdSet, ReportSubType = 0):\r
893 PcdDict = self.AllPcds\r
894 if ReportSubType == 1:\r
895 PcdDict = self.ConditionalPcds\r
896 elif ReportSubType == 2:\r
897 PcdDict = self.UnusedPcds\r
898\r
52302d4d 899 if ModulePcdSet == None:\r
52302d4d 900 FileWrite(File, gSectionStart)\r
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901 if ReportSubType == 1:\r
902 FileWrite(File, "Conditional Directives used by the build system")\r
903 elif ReportSubType == 2:\r
904 FileWrite(File, "PCDs not used by modules or in conditional directives")\r
905 else:\r
906 FileWrite(File, "Platform Configuration Database Report")\r
907\r
763e8edf 908 FileWrite(File, " *B - PCD override in the build option")\r
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909 FileWrite(File, " *P - Platform scoped PCD override in DSC file")\r
910 FileWrite(File, " *F - Platform scoped PCD override in FDF file")\r
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911 if not ReportSubType:\r
912 FileWrite(File, " *M - Module scoped PCD override")\r
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913 FileWrite(File, gSectionSep)\r
914 else:\r
c2d0a1f6 915 if not ReportSubType and ModulePcdSet:\r
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916 #\r
917 # For module PCD sub-section\r
918 #\r
919 FileWrite(File, gSubSectionStart)\r
920 FileWrite(File, TAB_BRG_PCD)\r
921 FileWrite(File, gSubSectionSep)\r
52302d4d 922\r
c8d07c5e 923 for Key in PcdDict:\r
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924 #\r
925 # Group PCD by their token space GUID C Name\r
926 #\r
927 First = True\r
c8d07c5e 928 for Type in PcdDict[Key]:\r
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929 #\r
930 # Group PCD by their usage type\r
931 #\r
932 TypeName, DecType = gPcdTypeMap.get(Type, ("", Type))\r
c8d07c5e 933 for Pcd in PcdDict[Key][Type]:\r
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934 PcdTokenCName = Pcd.TokenCName\r
935 MixedPcdFlag = False\r
936 if GlobalData.MixedPcd:\r
937 for PcdKey in GlobalData.MixedPcd:\r
938 if (Pcd.TokenCName, Pcd.TokenSpaceGuidCName) in GlobalData.MixedPcd[PcdKey]:\r
939 PcdTokenCName = PcdKey[0]\r
940 MixedPcdFlag = True\r
941 if MixedPcdFlag and not ModulePcdSet:\r
942 continue\r
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943 #\r
944 # Get PCD default value and their override relationship\r
945 #\r
946 DecDefaultValue = self.DecPcdDefault.get((Pcd.TokenCName, Pcd.TokenSpaceGuidCName, DecType))\r
947 DscDefaultValue = self.DscPcdDefault.get((Pcd.TokenCName, Pcd.TokenSpaceGuidCName))\r
cc71d8b7 948 DscDefaultValBak= DscDefaultValue\r
52302d4d 949 DscDefaultValue = self.FdfPcdSet.get((Pcd.TokenCName, Key), DscDefaultValue)\r
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950 if DscDefaultValue:\r
951 DscDefaultValue = ValueExpressionEx(DscDefaultValue, Pcd.DatumType, self._GuidDict)(True)\r
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952 InfDefaultValue = None\r
953 \r
954 PcdValue = DecDefaultValue\r
955 if DscDefaultValue:\r
956 PcdValue = DscDefaultValue\r
957 if ModulePcdSet != None:\r
958 if (Pcd.TokenCName, Pcd.TokenSpaceGuidCName, Type) not in ModulePcdSet:\r
959 continue\r
960 InfDefault, PcdValue = ModulePcdSet[Pcd.TokenCName, Pcd.TokenSpaceGuidCName, Type]\r
961 if InfDefault == "":\r
962 InfDefault = None\r
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963\r
964 BuildOptionMatch = False\r
965 if GlobalData.BuildOptionPcd:\r
966 for pcd in GlobalData.BuildOptionPcd:\r
967 if (Pcd.TokenSpaceGuidCName, Pcd.TokenCName) == (pcd[0], pcd[1]):\r
968 PcdValue = pcd[2]\r
969 BuildOptionMatch = True\r
970 break\r
971\r
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972 if First:\r
973 if ModulePcdSet == None:\r
974 FileWrite(File, "")\r
975 FileWrite(File, Key)\r
976 First = False\r
977\r
978\r
979 if Pcd.DatumType in ('UINT8', 'UINT16', 'UINT32', 'UINT64'):\r
980 PcdValueNumber = int(PcdValue.strip(), 0)\r
981 if DecDefaultValue == None:\r
982 DecMatch = True\r
983 else:\r
984 DecDefaultValueNumber = int(DecDefaultValue.strip(), 0)\r
985 DecMatch = (DecDefaultValueNumber == PcdValueNumber)\r
986\r
987 if InfDefaultValue == None:\r
988 InfMatch = True\r
989 else:\r
990 InfDefaultValueNumber = int(InfDefaultValue.strip(), 0)\r
991 InfMatch = (InfDefaultValueNumber == PcdValueNumber)\r
992\r
993 if DscDefaultValue == None:\r
994 DscMatch = True\r
995 else:\r
996 DscDefaultValueNumber = int(DscDefaultValue.strip(), 0)\r
997 DscMatch = (DscDefaultValueNumber == PcdValueNumber)\r
998 else:\r
999 if DecDefaultValue == None:\r
1000 DecMatch = True\r
1001 else:\r
d5d56f1b 1002 DecMatch = (DecDefaultValue.strip() == PcdValue.strip())\r
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1003\r
1004 if InfDefaultValue == None:\r
1005 InfMatch = True\r
1006 else:\r
d5d56f1b 1007 InfMatch = (InfDefaultValue.strip() == PcdValue.strip())\r
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1008\r
1009 if DscDefaultValue == None:\r
1010 DscMatch = True\r
1011 else:\r
d5d56f1b 1012 DscMatch = (DscDefaultValue.strip() == PcdValue.strip())\r
52302d4d 1013\r
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1014 IsStructure = False\r
1015 if GlobalData.gStructurePcd and (self.Arch in GlobalData.gStructurePcd.keys()) and ((Pcd.TokenCName, Pcd.TokenSpaceGuidCName) in GlobalData.gStructurePcd[self.Arch]):\r
1016 IsStructure = True\r
1017 if TypeName in ('DYNVPD', 'DEXVPD'):\r
1018 SkuInfoList = Pcd.SkuInfoList\r
1019 Pcd = GlobalData.gStructurePcd[self.Arch][(Pcd.TokenCName, Pcd.TokenSpaceGuidCName)]\r
1020 Pcd.DatumType = Pcd.StructName\r
1021 if TypeName in ('DYNVPD', 'DEXVPD'):\r
1022 Pcd.SkuInfoList = SkuInfoList\r
65eff519 1023 if Pcd.SkuOverrideValues:\r
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1024 DscMatch = True\r
1025 DecMatch = False\r
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1026 #\r
1027 # Report PCD item according to their override relationship\r
1028 #\r
0e6be43f 1029 if DecMatch and InfMatch:\r
e651d06c 1030 self.PrintPcdValue(File, Pcd, PcdTokenCName, TypeName, IsStructure, DscMatch, DscDefaultValue, InfMatch, InfDefaultValue, DecMatch, DecDefaultValue, ' ')\r
0e6be43f 1031 elif BuildOptionMatch:\r
e651d06c 1032 self.PrintPcdValue(File, Pcd, PcdTokenCName, TypeName, IsStructure, DscMatch, DscDefaultValue, InfMatch, InfDefaultValue, DecMatch, DecDefaultValue, '*B')\r
52302d4d
LG
1033 else:\r
1034 if DscMatch:\r
1035 if (Pcd.TokenCName, Key) in self.FdfPcdSet:\r
e651d06c 1036 self.PrintPcdValue(File, Pcd, PcdTokenCName, TypeName, IsStructure, DscMatch, DscDefaultValue, InfMatch, InfDefaultValue, DecMatch, DecDefaultValue, '*F')\r
52302d4d 1037 else:\r
e651d06c 1038 self.PrintPcdValue(File, Pcd, PcdTokenCName, TypeName, IsStructure, DscMatch, DscDefaultValue, InfMatch, InfDefaultValue, DecMatch, DecDefaultValue, '*P')\r
52302d4d 1039 else:\r
e651d06c 1040 self.PrintPcdValue(File, Pcd, PcdTokenCName, TypeName, IsStructure, DscMatch, DscDefaultValue, InfMatch, InfDefaultValue, DecMatch, DecDefaultValue, '*M')\r
52302d4d
LG
1041\r
1042 if ModulePcdSet == None:\r
e651d06c
LG
1043 if IsStructure:\r
1044 continue\r
1045 if not TypeName in ('PATCH', 'FLAG', 'FIXED'):\r
1046 continue\r
763e8edf
YZ
1047 if not BuildOptionMatch:\r
1048 ModuleOverride = self.ModulePcdOverride.get((Pcd.TokenCName, Pcd.TokenSpaceGuidCName), {})\r
1049 for ModulePath in ModuleOverride:\r
1050 ModuleDefault = ModuleOverride[ModulePath]\r
1051 if Pcd.DatumType in ('UINT8', 'UINT16', 'UINT32', 'UINT64'):\r
1052 ModulePcdDefaultValueNumber = int(ModuleDefault.strip(), 0)\r
1053 Match = (ModulePcdDefaultValueNumber == PcdValueNumber)\r
1054 else:\r
1055 Match = (ModuleDefault.strip() == PcdValue.strip())\r
1056 if Match:\r
1057 continue\r
e651d06c
LG
1058 IsByteArray, ArrayList = ByteArrayForamt(ModuleDefault.strip())\r
1059 if IsByteArray:\r
1060 FileWrite(File, ' *M %-*s = %s' % (self.MaxLen + 19, ModulePath, '{'))\r
1061 for Array in ArrayList:\r
1062 FileWrite(File, '%s' % (Array))\r
1063 else:\r
1064 FileWrite(File, ' *M %-*s = %s' % (self.MaxLen + 19, ModulePath, ModuleDefault.strip()))\r
52302d4d
LG
1065\r
1066 if ModulePcdSet == None:\r
1067 FileWrite(File, gSectionEnd)\r
1068 else:\r
c2d0a1f6 1069 if not ReportSubType and ModulePcdSet:\r
c8d07c5e 1070 FileWrite(File, gSubSectionEnd)\r
52302d4d
LG
1071\r
1072\r
e651d06c
LG
1073 def PrintPcdDefault(self, File, Pcd, IsStructure, DscMatch, DscDefaultValue, InfMatch, InfDefaultValue, DecMatch, DecDefaultValue):\r
1074 if not DscMatch and DscDefaultValue != None:\r
1075 Value = DscDefaultValue.strip()\r
1076 IsByteArray, ArrayList = ByteArrayForamt(Value)\r
1077 if IsByteArray:\r
1078 FileWrite(File, ' %*s = %s' % (self.MaxLen + 19, 'DSC DEFAULT', "{"))\r
1079 for Array in ArrayList:\r
1080 FileWrite(File, '%s' % (Array))\r
1081 else:\r
1082 FileWrite(File, ' %*s = %s' % (self.MaxLen + 19, 'DSC DEFAULT', Value))\r
1083 if not InfMatch and InfDefaultValue != None:\r
1084 Value = InfDefaultValue.strip()\r
1085 IsByteArray, ArrayList = ByteArrayForamt(Value)\r
1086 if IsByteArray:\r
1087 FileWrite(File, ' %*s = %s' % (self.MaxLen + 19, 'INF DEFAULT', "{"))\r
1088 for Array in ArrayList:\r
1089 FileWrite(File, '%s' % (Array))\r
1090 else:\r
1091 FileWrite(File, ' %*s = %s' % (self.MaxLen + 19, 'INF DEFAULT', Value))\r
1092\r
1093 if not DecMatch and DecDefaultValue != None:\r
1094 Value = DecDefaultValue.strip()\r
1095 IsByteArray, ArrayList = ByteArrayForamt(Value)\r
1096 if IsByteArray:\r
1097 FileWrite(File, ' %*s = %s' % (self.MaxLen + 19, 'DEC DEFAULT', "{"))\r
1098 for Array in ArrayList:\r
1099 FileWrite(File, '%s' % (Array))\r
1100 else:\r
1101 FileWrite(File, ' %*s = %s' % (self.MaxLen + 19, 'DEC DEFAULT', Value))\r
1102 if IsStructure:\r
1103 self.PrintStructureInfo(File, Pcd.DefaultValues)\r
1104\r
1105 def PrintPcdValue(self, File, Pcd, PcdTokenCName, TypeName, IsStructure, DscMatch, DscDefaultValue, InfMatch, InfDefaultValue, DecMatch, DecDefaultValue, Flag = ' '):\r
1106 if not Pcd.SkuInfoList:\r
1107 Value = Pcd.DefaultValue\r
1108 IsByteArray, ArrayList = ByteArrayForamt(Value)\r
1109 if IsByteArray:\r
1110 FileWrite(File, ' %-*s : %6s %10s = %s' % (self.MaxLen, Flag + ' ' + PcdTokenCName, TypeName, '(' + Pcd.DatumType + ')', '{'))\r
1111 for Array in ArrayList:\r
1112 FileWrite(File, '%s' % (Array))\r
1113 else:\r
1114 FileWrite(File, ' %-*s : %6s %10s = %s' % (self.MaxLen, Flag + ' ' + PcdTokenCName, TypeName, '(' + Pcd.DatumType + ')', Value))\r
1115 if IsStructure:\r
65eff519 1116 OverrideValues = Pcd.SkuOverrideValues\r
e651d06c
LG
1117 if OverrideValues:\r
1118 Keys = OverrideValues.keys()\r
1119 Data = OverrideValues[Keys[0]]\r
1120 Struct = Data.values()[0]\r
1121 self.PrintStructureInfo(File, Struct)\r
1122 self.PrintPcdDefault(File, Pcd, IsStructure, DscMatch, DscDefaultValue, InfMatch, InfDefaultValue, DecMatch, DecDefaultValue)\r
1123 else:\r
1124 FirstPrint = True\r
1125 SkuList = sorted(Pcd.SkuInfoList.keys())\r
1126 for Sku in SkuList:\r
1127 SkuInfo = Pcd.SkuInfoList[Sku]\r
1128 if TypeName in ('DYNHII', 'DEXHII'):\r
1129 if SkuInfo.DefaultStoreDict:\r
1130 DefaultStoreList = sorted(SkuInfo.DefaultStoreDict.keys())\r
1131 for DefaultStore in DefaultStoreList:\r
1132 Value = SkuInfo.DefaultStoreDict[DefaultStore]\r
1133 IsByteArray, ArrayList = ByteArrayForamt(Value)\r
1134 if FirstPrint:\r
1135 FirstPrint = False\r
1136 if IsByteArray:\r
1137 FileWrite(File, ' %-*s : %6s %10s %10s %10s = %s' % (self.MaxLen, Flag + ' ' + PcdTokenCName, TypeName, '(' + Pcd.DatumType + ')', '(' + SkuInfo.SkuIdName + ')', '(' + DefaultStore + ')', '{'))\r
1138 for Array in ArrayList:\r
1139 FileWrite(File, '%s' % (Array))\r
1140 else:\r
1141 FileWrite(File, ' %-*s : %6s %10s %10s %10s = %s' % (self.MaxLen, Flag + ' ' + PcdTokenCName, TypeName, '(' + Pcd.DatumType + ')', '(' + SkuInfo.SkuIdName + ')', '(' + DefaultStore + ')', Value))\r
1142 else:\r
1143 if IsByteArray:\r
1144 FileWrite(File, ' %-*s : %6s %10s %10s %10s = %s' % (self.MaxLen, ' ', TypeName, '(' + Pcd.DatumType + ')', '(' + SkuInfo.SkuIdName + ')', '(' + DefaultStore + ')', '{'))\r
1145 for Array in ArrayList:\r
1146 FileWrite(File, '%s' % (Array))\r
1147 else:\r
1148 FileWrite(File, ' %-*s : %6s %10s %10s %10s = %s' % (self.MaxLen, ' ', TypeName, '(' + Pcd.DatumType + ')', '(' + SkuInfo.SkuIdName + ')', '(' + DefaultStore + ')', Value))\r
1149 FileWrite(File, '%*s: %s: %s' % (self.MaxLen + 4, SkuInfo.VariableGuid, SkuInfo.VariableName, SkuInfo.VariableOffset))\r
1150 if IsStructure:\r
65eff519 1151 OverrideValues = Pcd.SkuOverrideValues[Sku]\r
e651d06c
LG
1152 Struct = OverrideValues[DefaultStore]\r
1153 self.PrintStructureInfo(File, Struct)\r
1154 self.PrintPcdDefault(File, Pcd, IsStructure, DscMatch, DscDefaultValue, InfMatch, InfDefaultValue, DecMatch, DecDefaultValue)\r
1155 elif TypeName in ('DYNVPD', 'DEXVPD'):\r
1156 Value = SkuInfo.DefaultValue\r
1157 IsByteArray, ArrayList = ByteArrayForamt(Value)\r
1158 if FirstPrint:\r
1159 FirstPrint = False\r
1160 if IsByteArray:\r
1161 FileWrite(File, ' %-*s : %6s %10s %10s = %s' % (self.MaxLen, Flag + ' ' + PcdTokenCName, TypeName, '(' + Pcd.DatumType + ')', '(' + SkuInfo.SkuIdName + ')', "{"))\r
1162 for Array in ArrayList:\r
1163 FileWrite(File, '%s' % (Array))\r
1164 else:\r
1165 FileWrite(File, ' %-*s : %6s %10s %10s = %s' % (self.MaxLen, Flag + ' ' + PcdTokenCName, TypeName, '(' + Pcd.DatumType + ')', '(' + SkuInfo.SkuIdName + ')', Value))\r
1166 else:\r
1167 if IsByteArray:\r
1168 FileWrite(File, ' %-*s : %6s %10s %10s = %s' % (self.MaxLen, ' ' , TypeName, '(' + Pcd.DatumType + ')', '(' + SkuInfo.SkuIdName + ')', "{"))\r
1169 for Array in ArrayList:\r
1170 FileWrite(File, '%s' % (Array))\r
1171 else:\r
1172 FileWrite(File, ' %-*s : %6s %10s %10s = %s' % (self.MaxLen, ' ' , TypeName, '(' + Pcd.DatumType + ')', '(' + SkuInfo.SkuIdName + ')', Value))\r
1173 FileWrite(File, '%*s' % (self.MaxLen + 4, SkuInfo.VpdOffset))\r
1174 if IsStructure:\r
65eff519 1175 OverrideValues = Pcd.SkuOverrideValues[Sku]\r
e651d06c
LG
1176 if OverrideValues:\r
1177 Keys = OverrideValues.keys()\r
1178 Struct = OverrideValues[Keys[0]]\r
1179 self.PrintStructureInfo(File, Struct)\r
1180 self.PrintPcdDefault(File, Pcd, IsStructure, DscMatch, DscDefaultValue, InfMatch, InfDefaultValue, DecMatch, DecDefaultValue)\r
1181 else:\r
1182 Value = SkuInfo.DefaultValue\r
1183 IsByteArray, ArrayList = ByteArrayForamt(Value)\r
1184 if FirstPrint:\r
1185 FirstPrint = False\r
1186 if IsByteArray:\r
1187 FileWrite(File, ' %-*s : %6s %10s %10s = %s' % (self.MaxLen, Flag + ' ' + PcdTokenCName, TypeName, '(' + Pcd.DatumType + ')', '(' + SkuInfo.SkuIdName + ')', '{'))\r
1188 for Array in ArrayList:\r
1189 FileWrite(File, '%s' % (Array))\r
1190 else:\r
1191 FileWrite(File, ' %-*s : %6s %10s %10s = %s' % (self.MaxLen, Flag + ' ' + PcdTokenCName, TypeName, '(' + Pcd.DatumType + ')', '(' + SkuInfo.SkuIdName + ')', Value))\r
1192 else:\r
1193 if IsByteArray:\r
1194 FileWrite(File, ' %-*s : %6s %10s %10s = %s' % (self.MaxLen, ' ', TypeName, '(' + Pcd.DatumType + ')', '(' + SkuInfo.SkuIdName + ')', '{'))\r
1195 for Array in ArrayList:\r
1196 FileWrite(File, '%s' % (Array))\r
1197 else:\r
1198 FileWrite(File, ' %-*s : %6s %10s %10s = %s' % (self.MaxLen, ' ', TypeName, '(' + Pcd.DatumType + ')', '(' + SkuInfo.SkuIdName + ')', Value))\r
1199 if IsStructure:\r
65eff519 1200 OverrideValues = Pcd.SkuOverrideValues[Sku]\r
e651d06c
LG
1201 if OverrideValues:\r
1202 Keys = OverrideValues.keys()\r
1203 Struct = OverrideValues[Keys[0]]\r
1204 self.PrintStructureInfo(File, Struct)\r
1205 self.PrintPcdDefault(File, Pcd, IsStructure, DscMatch, DscDefaultValue, InfMatch, InfDefaultValue, DecMatch, DecDefaultValue)\r
1206\r
1207 def PrintStructureInfo(self, File, Struct):\r
1208 NewInfo = collections.OrderedDict()\r
1209 for Key, Value in Struct.items():\r
1210 if Key not in NewInfo:\r
1211 NewInfo[Key] = Value[0]\r
1212 else:\r
1213 del NewInfo[Key]\r
1214 NewInfo[Key] = Value[0]\r
1215 if NewInfo:\r
1216 for item in NewInfo:\r
1217 FileWrite(File, ' %-*s = %s' % (self.MaxLen + 4, '.' + item, NewInfo[item]))\r
1218\r
1219 def StrtoHex(self, value):\r
1220 try:\r
1221 value = hex(int(value))\r
1222 return value\r
1223 except:\r
1224 if value.startswith("L\"") and value.endswith("\""):\r
1225 valuelist = []\r
1226 for ch in value[2:-1]:\r
1227 valuelist.append(hex(ord(ch)))\r
1228 valuelist.append('0x00')\r
1229 return valuelist\r
1230 elif value.startswith("\"") and value.endswith("\""):\r
1231 return hex(ord(value[1:-1]))\r
1232 elif value.startswith("{") and value.endswith("}"):\r
1233 valuelist = []\r
1234 if ',' not in value:\r
1235 return value[1:-1]\r
1236 for ch in value[1:-1].split(','):\r
1237 ch = ch.strip()\r
1238 if ch.startswith('0x') or ch.startswith('0X'):\r
1239 valuelist.append(ch)\r
1240 continue\r
1241 try:\r
1242 valuelist.append(hex(int(ch.strip())))\r
1243 except:\r
1244 pass\r
1245 return valuelist\r
1246 else:\r
1247 return value\r
52302d4d
LG
1248\r
1249##\r
1250# Reports platform and module Prediction information\r
1251#\r
1252# This class reports the platform execution order prediction section and\r
1253# module load fixed address prediction subsection in the build report file.\r
1254#\r
1255class PredictionReport(object):\r
1256 ##\r
1257 # Constructor function for class PredictionReport\r
1258 #\r
1259 # This constructor function generates PredictionReport object for the platform.\r
1260 #\r
1261 # @param self: The object pointer\r
1262 # @param Wa Workspace context information\r
1263 #\r
1264 def __init__(self, Wa):\r
1265 self._MapFileName = os.path.join(Wa.BuildDir, Wa.Name + ".map")\r
1266 self._MapFileParsed = False\r
1267 self._EotToolInvoked = False\r
1268 self._FvDir = Wa.FvDir\r
1269 self._EotDir = Wa.BuildDir\r
1270 self._FfsEntryPoint = {}\r
1271 self._GuidMap = {}\r
1272 self._SourceList = []\r
1273 self.FixedMapDict = {}\r
1274 self.ItemList = []\r
1275 self.MaxLen = 0\r
1276\r
1277 #\r
1278 # Collect all platform reference source files and GUID C Name\r
1279 #\r
1280 for Pa in Wa.AutoGenObjectList:\r
1281 for Module in Pa.LibraryAutoGenList + Pa.ModuleAutoGenList:\r
1282 #\r
40d841f6
LG
1283 # BASE typed modules are EFI agnostic, so we need not scan\r
1284 # their source code to find PPI/Protocol produce or consume\r
1285 # information.\r
1286 #\r
1287 if Module.ModuleType == "BASE":\r
1288 continue\r
1289 #\r
52302d4d
LG
1290 # Add module referenced source files\r
1291 #\r
1292 self._SourceList.append(str(Module))\r
1293 IncludeList = {}\r
1294 for Source in Module.SourceFileList:\r
1295 if os.path.splitext(str(Source))[1].lower() == ".c":\r
1296 self._SourceList.append(" " + str(Source))\r
1297 FindIncludeFiles(Source.Path, Module.IncludePathList, IncludeList)\r
1298 for IncludeFile in IncludeList.values():\r
1299 self._SourceList.append(" " + IncludeFile)\r
1300\r
1301 for Guid in Module.PpiList:\r
1302 self._GuidMap[Guid] = GuidStructureStringToGuidString(Module.PpiList[Guid])\r
1303 for Guid in Module.ProtocolList:\r
1304 self._GuidMap[Guid] = GuidStructureStringToGuidString(Module.ProtocolList[Guid])\r
1305 for Guid in Module.GuidList:\r
1306 self._GuidMap[Guid] = GuidStructureStringToGuidString(Module.GuidList[Guid])\r
1307\r
1308 if Module.Guid and not Module.IsLibrary:\r
1309 EntryPoint = " ".join(Module.Module.ModuleEntryPointList)\r
1310 if int(str(Module.AutoGenVersion), 0) >= 0x00010005:\r
1311 RealEntryPoint = "_ModuleEntryPoint"\r
1312 else:\r
1313 RealEntryPoint = EntryPoint\r
1314 if EntryPoint == "_ModuleEntryPoint":\r
1315 CCFlags = Module.BuildOption.get("CC", {}).get("FLAGS", "")\r
1316 Match = gGlueLibEntryPoint.search(CCFlags)\r
1317 if Match:\r
1318 EntryPoint = Match.group(1)\r
1319\r
1320 self._FfsEntryPoint[Module.Guid.upper()] = (EntryPoint, RealEntryPoint)\r
1321\r
1322\r
1323 #\r
1324 # Collect platform firmware volume list as the input of EOT.\r
1325 #\r
1326 self._FvList = []\r
1327 if Wa.FdfProfile:\r
1328 for Fd in Wa.FdfProfile.FdDict:\r
1329 for FdRegion in Wa.FdfProfile.FdDict[Fd].RegionList:\r
1330 if FdRegion.RegionType != "FV":\r
1331 continue\r
1332 for FvName in FdRegion.RegionDataList:\r
1333 if FvName in self._FvList:\r
1334 continue\r
1335 self._FvList.append(FvName)\r
1336 for Ffs in Wa.FdfProfile.FvDict[FvName.upper()].FfsList:\r
1337 for Section in Ffs.SectionList:\r
1338 try:\r
1339 for FvSection in Section.SectionList:\r
1340 if FvSection.FvName in self._FvList:\r
1341 continue\r
1342 self._FvList.append(FvSection.FvName)\r
1343 except AttributeError:\r
1344 pass\r
1345\r
1346\r
1347 ##\r
1348 # Parse platform fixed address map files\r
1349 #\r
1350 # This function parses the platform final fixed address map file to get\r
1351 # the database of predicted fixed address for module image base, entry point\r
1352 # etc.\r
1353 #\r
1354 # @param self: The object pointer\r
1355 #\r
1356 def _ParseMapFile(self):\r
1357 if self._MapFileParsed:\r
1358 return\r
1359 self._MapFileParsed = True\r
1360 if os.path.isfile(self._MapFileName):\r
1361 try:\r
1362 FileContents = open(self._MapFileName).read()\r
1363 for Match in gMapFileItemPattern.finditer(FileContents):\r
1364 AddressType = Match.group(1)\r
1365 BaseAddress = Match.group(2)\r
1366 EntryPoint = Match.group(3)\r
1367 Guid = Match.group(4).upper()\r
1368 List = self.FixedMapDict.setdefault(Guid, [])\r
1369 List.append((AddressType, BaseAddress, "*I"))\r
1370 List.append((AddressType, EntryPoint, "*E"))\r
1371 except:\r
1372 EdkLogger.warn(None, "Cannot open file to read", self._MapFileName)\r
1373\r
1374 ##\r
1375 # Invokes EOT tool to get the predicted the execution order.\r
1376 #\r
1377 # This function invokes EOT tool to calculate the predicted dispatch order\r
1378 #\r
1379 # @param self: The object pointer\r
1380 #\r
1381 def _InvokeEotTool(self):\r
1382 if self._EotToolInvoked:\r
1383 return\r
1384\r
1385 self._EotToolInvoked = True\r
1386 FvFileList = []\r
1387 for FvName in self._FvList:\r
1388 FvFile = os.path.join(self._FvDir, FvName + ".Fv")\r
1389 if os.path.isfile(FvFile):\r
1390 FvFileList.append(FvFile)\r
1391\r
1392 if len(FvFileList) == 0:\r
1393 return\r
1394 #\r
1395 # Write source file list and GUID file list to an intermediate file\r
1396 # as the input for EOT tool and dispatch List as the output file\r
1397 # from EOT tool.\r
1398 #\r
1399 SourceList = os.path.join(self._EotDir, "SourceFile.txt")\r
1400 GuidList = os.path.join(self._EotDir, "GuidList.txt")\r
1401 DispatchList = os.path.join(self._EotDir, "Dispatch.txt")\r
1402\r
1403 TempFile = open(SourceList, "w+")\r
1404 for Item in self._SourceList:\r
1405 FileWrite(TempFile, Item)\r
1406 TempFile.close()\r
1407 TempFile = open(GuidList, "w+")\r
1408 for Key in self._GuidMap:\r
1409 FileWrite(TempFile, "%s %s" % (Key, self._GuidMap[Key]))\r
1410 TempFile.close()\r
1411\r
1412 try:\r
1413 from Eot.Eot import Eot\r
40d841f6 1414\r
52302d4d 1415 #\r
40d841f6 1416 # Invoke EOT tool and echo its runtime performance\r
52302d4d 1417 #\r
40d841f6 1418 EotStartTime = time.time()\r
52302d4d
LG
1419 Eot(CommandLineOption=False, SourceFileList=SourceList, GuidList=GuidList,\r
1420 FvFileList=' '.join(FvFileList), Dispatch=DispatchList, IsInit=True)\r
40d841f6
LG
1421 EotEndTime = time.time()\r
1422 EotDuration = time.strftime("%H:%M:%S", time.gmtime(int(round(EotEndTime - EotStartTime))))\r
1423 EdkLogger.quiet("EOT run time: %s\n" % EotDuration)\r
1424 \r
52302d4d
LG
1425 #\r
1426 # Parse the output of EOT tool\r
1427 #\r
1428 for Line in open(DispatchList):\r
1429 if len(Line.split()) < 4:\r
1430 continue\r
1431 (Guid, Phase, FfsName, FilePath) = Line.split()\r
1432 Symbol = self._FfsEntryPoint.get(Guid, [FfsName, ""])[0]\r
1433 if len(Symbol) > self.MaxLen:\r
1434 self.MaxLen = len(Symbol)\r
1435 self.ItemList.append((Phase, Symbol, FilePath))\r
1436 except:\r
1437 EdkLogger.quiet("(Python %s on %s\n%s)" % (platform.python_version(), sys.platform, traceback.format_exc()))\r
1438 EdkLogger.warn(None, "Failed to generate execution order prediction report, for some error occurred in executing EOT.")\r
1439\r
1440\r
1441 ##\r
1442 # Generate platform execution order report\r
1443 #\r
1444 # This function generates the predicted module execution order.\r
1445 #\r
1446 # @param self The object pointer\r
1447 # @param File The file object for report\r
1448 #\r
1449 def _GenerateExecutionOrderReport(self, File):\r
1450 self._InvokeEotTool()\r
1451 if len(self.ItemList) == 0:\r
1452 return\r
1453 FileWrite(File, gSectionStart)\r
1454 FileWrite(File, "Execution Order Prediction")\r
1455 FileWrite(File, "*P PEI phase")\r
1456 FileWrite(File, "*D DXE phase")\r
1457 FileWrite(File, "*E Module INF entry point name")\r
1458 FileWrite(File, "*N Module notification function name")\r
1459\r
1460 FileWrite(File, "Type %-*s %s" % (self.MaxLen, "Symbol", "Module INF Path"))\r
1461 FileWrite(File, gSectionSep)\r
1462 for Item in self.ItemList:\r
1463 FileWrite(File, "*%sE %-*s %s" % (Item[0], self.MaxLen, Item[1], Item[2]))\r
1464\r
1465 FileWrite(File, gSectionStart)\r
1466\r
1467 ##\r
1468 # Generate Fixed Address report.\r
1469 #\r
1470 # This function generate the predicted fixed address report for a module\r
1471 # specified by Guid.\r
1472 #\r
1473 # @param self The object pointer\r
1474 # @param File The file object for report\r
1475 # @param Guid The module Guid value.\r
1476 # @param NotifyList The list of all notify function in a module\r
1477 #\r
1478 def _GenerateFixedAddressReport(self, File, Guid, NotifyList):\r
1479 self._ParseMapFile()\r
1480 FixedAddressList = self.FixedMapDict.get(Guid)\r
1481 if not FixedAddressList:\r
1482 return\r
1483\r
1484 FileWrite(File, gSubSectionStart)\r
1485 FileWrite(File, "Fixed Address Prediction")\r
1486 FileWrite(File, "*I Image Loading Address")\r
1487 FileWrite(File, "*E Entry Point Address")\r
1488 FileWrite(File, "*N Notification Function Address")\r
1489 FileWrite(File, "*F Flash Address")\r
1490 FileWrite(File, "*M Memory Address")\r
1491 FileWrite(File, "*S SMM RAM Offset")\r
1492 FileWrite(File, "TOM Top of Memory")\r
1493\r
1494 FileWrite(File, "Type Address Name")\r
1495 FileWrite(File, gSubSectionSep)\r
1496 for Item in FixedAddressList:\r
1497 Type = Item[0]\r
1498 Value = Item[1]\r
1499 Symbol = Item[2]\r
1500 if Symbol == "*I":\r
1501 Name = "(Image Base)"\r
1502 elif Symbol == "*E":\r
1503 Name = self._FfsEntryPoint.get(Guid, ["", "_ModuleEntryPoint"])[1]\r
1504 elif Symbol in NotifyList:\r
1505 Name = Symbol\r
1506 Symbol = "*N"\r
1507 else:\r
1508 continue\r
1509\r
1510 if "Flash" in Type:\r
1511 Symbol += "F"\r
1512 elif "Memory" in Type:\r
1513 Symbol += "M"\r
1514 else:\r
1515 Symbol += "S"\r
1516\r
1517 if Value[0] == "-":\r
1518 Value = "TOM" + Value\r
1519\r
1520 FileWrite(File, "%s %-16s %s" % (Symbol, Value, Name))\r
1521\r
1522 ##\r
1523 # Generate report for the prediction part\r
1524 #\r
1525 # This function generate the predicted fixed address report for a module or\r
1526 # predicted module execution order for a platform.\r
1527 # If the input Guid is None, then, it generates the predicted module execution order;\r
1528 # otherwise it generated the module fixed loading address for the module specified by\r
1529 # Guid.\r
1530 #\r
1531 # @param self The object pointer\r
1532 # @param File The file object for report\r
1533 # @param Guid The module Guid value.\r
1534 #\r
1535 def GenerateReport(self, File, Guid):\r
1536 if Guid:\r
1537 self._GenerateFixedAddressReport(File, Guid.upper(), [])\r
1538 else:\r
1539 self._GenerateExecutionOrderReport(File)\r
1540\r
1541##\r
1542# Reports FD region information\r
1543#\r
1544# This class reports the FD subsection in the build report file.\r
1545# It collects region information of platform flash device.\r
1546# If the region is a firmware volume, it lists the set of modules\r
1547# and its space information; otherwise, it only lists its region name,\r
1548# base address and size in its sub-section header.\r
1549# If there are nesting FVs, the nested FVs will list immediate after\r
1550# this FD region subsection\r
1551#\r
1552class FdRegionReport(object):\r
1553 ##\r
1554 # Discover all the nested FV name list.\r
1555 #\r
1556 # This is an internal worker function to discover the all the nested FV information\r
1557 # in the parent firmware volume. It uses deep first search algorithm recursively to\r
1558 # find all the FV list name and append them to the list.\r
1559 #\r
1560 # @param self The object pointer\r
1561 # @param FvName The name of current firmware file system\r
1562 # @param Wa Workspace context information\r
1563 #\r
1564 def _DiscoverNestedFvList(self, FvName, Wa):\r
a2432972
EC
1565 FvDictKey=FvName.upper()\r
1566 if FvDictKey in Wa.FdfProfile.FvDict:\r
1567 for Ffs in Wa.FdfProfile.FvDict[FvName.upper()].FfsList:\r
1568 for Section in Ffs.SectionList:\r
1569 try:\r
1570 for FvSection in Section.SectionList:\r
1571 if FvSection.FvName in self.FvList:\r
1572 continue\r
1573 self._GuidsDb[Ffs.NameGuid.upper()] = FvSection.FvName\r
1574 self.FvList.append(FvSection.FvName)\r
1575 self.FvInfo[FvSection.FvName] = ("Nested FV", 0, 0)\r
1576 self._DiscoverNestedFvList(FvSection.FvName, Wa)\r
1577 except AttributeError:\r
1578 pass\r
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LG
1579\r
1580 ##\r
1581 # Constructor function for class FdRegionReport\r
1582 #\r
1583 # This constructor function generates FdRegionReport object for a specified FdRegion.\r
1584 # If the FdRegion is a firmware volume, it will recursively find all its nested Firmware\r
1585 # volume list. This function also collects GUID map in order to dump module identification\r
1586 # in the final report.\r
1587 #\r
1588 # @param self: The object pointer\r
1589 # @param FdRegion The current FdRegion object\r
1590 # @param Wa Workspace context information\r
1591 #\r
1592 def __init__(self, FdRegion, Wa):\r
1593 self.Type = FdRegion.RegionType\r
1594 self.BaseAddress = FdRegion.Offset\r
1595 self.Size = FdRegion.Size\r
1596 self.FvList = []\r
1597 self.FvInfo = {}\r
1598 self._GuidsDb = {}\r
1599 self._FvDir = Wa.FvDir\r
1600\r
1601 #\r
1602 # If the input FdRegion is not a firmware volume,\r
1603 # we are done.\r
1604 #\r
1605 if self.Type != "FV":\r
1606 return\r
1607\r
1608 #\r
1609 # Find all nested FVs in the FdRegion\r
1610 #\r
1611 for FvName in FdRegion.RegionDataList:\r
1612 if FvName in self.FvList:\r
1613 continue\r
1614 self.FvList.append(FvName)\r
1615 self.FvInfo[FvName] = ("Fd Region", self.BaseAddress, self.Size)\r
1616 self._DiscoverNestedFvList(FvName, Wa)\r
1617\r
1618 PlatformPcds = {}\r
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LG
1619 #\r
1620 # Collect PCDs declared in DEC files.\r
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1621 # \r
1622 for Pa in Wa.AutoGenObjectList:\r
1623 for Package in Pa.PackageList:\r
1624 for (TokenCName, TokenSpaceGuidCName, DecType) in Package.Pcds:\r
1625 DecDefaultValue = Package.Pcds[TokenCName, TokenSpaceGuidCName, DecType].DefaultValue\r
1626 PlatformPcds[(TokenCName, TokenSpaceGuidCName)] = DecDefaultValue\r
52302d4d 1627 #\r
af9785a9 1628 # Collect PCDs defined in DSC file\r
52302d4d 1629 #\r
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LG
1630 for Pa in Wa.AutoGenObjectList:\r
1631 for (TokenCName, TokenSpaceGuidCName) in Pa.Platform.Pcds:\r
1632 DscDefaultValue = Pa.Platform.Pcds[(TokenCName, TokenSpaceGuidCName)].DefaultValue\r
af9785a9 1633 PlatformPcds[(TokenCName, TokenSpaceGuidCName)] = DscDefaultValue\r
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LG
1634\r
1635 #\r
1636 # Add PEI and DXE a priori files GUIDs defined in PI specification.\r
1637 #\r
1638 self._GuidsDb["1B45CC0A-156A-428A-AF62-49864DA0E6E6"] = "PEI Apriori"\r
1639 self._GuidsDb["FC510EE7-FFDC-11D4-BD41-0080C73C8881"] = "DXE Apriori"\r
1640 #\r
1641 # Add ACPI table storage file\r
1642 #\r
1643 self._GuidsDb["7E374E25-8E01-4FEE-87F2-390C23C606CD"] = "ACPI table storage"\r
1644\r
1645 for Pa in Wa.AutoGenObjectList:\r
1646 for ModuleKey in Pa.Platform.Modules:\r
1647 M = Pa.Platform.Modules[ModuleKey].M\r
05cc51ad 1648 InfPath = mws.join(Wa.WorkspaceDir, M.MetaFile.File)\r
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1649 self._GuidsDb[M.Guid.upper()] = "%s (%s)" % (M.Module.BaseName, InfPath)\r
1650\r
1651 #\r
1652 # Collect the GUID map in the FV firmware volume\r
1653 #\r
1654 for FvName in self.FvList:\r
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EC
1655 FvDictKey=FvName.upper()\r
1656 if FvDictKey in Wa.FdfProfile.FvDict:\r
1657 for Ffs in Wa.FdfProfile.FvDict[FvName.upper()].FfsList:\r
1658 try:\r
1659 #\r
1660 # collect GUID map for binary EFI file in FDF file.\r
1661 #\r
1662 Guid = Ffs.NameGuid.upper()\r
1663 Match = gPcdGuidPattern.match(Ffs.NameGuid)\r
1664 if Match:\r
1665 PcdTokenspace = Match.group(1)\r
1666 PcdToken = Match.group(2)\r
1667 if (PcdToken, PcdTokenspace) in PlatformPcds:\r
1668 GuidValue = PlatformPcds[(PcdToken, PcdTokenspace)]\r
1669 Guid = GuidStructureByteArrayToGuidString(GuidValue).upper()\r
1670 for Section in Ffs.SectionList:\r
1671 try:\r
1672 ModuleSectFile = mws.join(Wa.WorkspaceDir, Section.SectFileName)\r
1673 self._GuidsDb[Guid] = ModuleSectFile\r
1674 except AttributeError:\r
1675 pass\r
1676 except AttributeError:\r
1677 pass\r
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LG
1678\r
1679\r
1680 ##\r
1681 # Internal worker function to generate report for the FD region\r
1682 #\r
1683 # This internal worker function to generate report for the FD region.\r
1684 # It the type is firmware volume, it lists offset and module identification.\r
1685 #\r
1686 # @param self The object pointer\r
1687 # @param File The file object for report\r
1688 # @param Title The title for the FD subsection\r
1689 # @param BaseAddress The base address for the FD region\r
1690 # @param Size The size of the FD region\r
1691 # @param FvName The FV name if the FD region is a firmware volume\r
1692 #\r
1693 def _GenerateReport(self, File, Title, Type, BaseAddress, Size=0, FvName=None):\r
1694 FileWrite(File, gSubSectionStart)\r
1695 FileWrite(File, Title)\r
1696 FileWrite(File, "Type: %s" % Type)\r
1697 FileWrite(File, "Base Address: 0x%X" % BaseAddress)\r
1698\r
1699 if self.Type == "FV":\r
1700 FvTotalSize = 0\r
1701 FvTakenSize = 0\r
1702 FvFreeSize = 0\r
b36d134f 1703 FvReportFileName = os.path.join(self._FvDir, FvName + ".Fv.txt")\r
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LG
1704 try:\r
1705 #\r
1706 # Collect size info in the firmware volume.\r
1707 #\r
1708 FvReport = open(FvReportFileName).read()\r
1709 Match = gFvTotalSizePattern.search(FvReport)\r
1710 if Match:\r
1711 FvTotalSize = int(Match.group(1), 16)\r
1712 Match = gFvTakenSizePattern.search(FvReport)\r
1713 if Match:\r
1714 FvTakenSize = int(Match.group(1), 16)\r
1715 FvFreeSize = FvTotalSize - FvTakenSize\r
1716 #\r
1717 # Write size information to the report file.\r
1718 #\r
1719 FileWrite(File, "Size: 0x%X (%.0fK)" % (FvTotalSize, FvTotalSize / 1024.0))\r
1720 FileWrite(File, "Fv Name: %s (%.1f%% Full)" % (FvName, FvTakenSize * 100.0 / FvTotalSize))\r
1721 FileWrite(File, "Occupied Size: 0x%X (%.0fK)" % (FvTakenSize, FvTakenSize / 1024.0))\r
1722 FileWrite(File, "Free Size: 0x%X (%.0fK)" % (FvFreeSize, FvFreeSize / 1024.0))\r
1723 FileWrite(File, "Offset Module")\r
1724 FileWrite(File, gSubSectionSep)\r
1725 #\r
1726 # Write module offset and module identification to the report file.\r
1727 #\r
1728 OffsetInfo = {}\r
1729 for Match in gOffsetGuidPattern.finditer(FvReport):\r
1730 Guid = Match.group(2).upper()\r
1731 OffsetInfo[Match.group(1)] = self._GuidsDb.get(Guid, Guid)\r
1732 OffsetList = OffsetInfo.keys()\r
1733 OffsetList.sort()\r
1734 for Offset in OffsetList:\r
1735 FileWrite (File, "%s %s" % (Offset, OffsetInfo[Offset]))\r
1736 except IOError:\r
1737 EdkLogger.warn(None, "Fail to read report file", FvReportFileName)\r
1738 else:\r
1739 FileWrite(File, "Size: 0x%X (%.0fK)" % (Size, Size / 1024.0))\r
1740 FileWrite(File, gSubSectionEnd)\r
1741\r
1742 ##\r
1743 # Generate report for the FD region\r
1744 #\r
1745 # This function generates report for the FD region.\r
1746 #\r
1747 # @param self The object pointer\r
1748 # @param File The file object for report\r
1749 #\r
1750 def GenerateReport(self, File):\r
1751 if (len(self.FvList) > 0):\r
1752 for FvItem in self.FvList:\r
1753 Info = self.FvInfo[FvItem]\r
1754 self._GenerateReport(File, Info[0], "FV", Info[1], Info[2], FvItem)\r
1755 else:\r
1756 self._GenerateReport(File, "FD Region", self.Type, self.BaseAddress, self.Size)\r
1757\r
1758##\r
1759# Reports FD information\r
1760#\r
1761# This class reports the FD section in the build report file.\r
1762# It collects flash device information for a platform.\r
1763#\r
1764class FdReport(object):\r
1765 ##\r
1766 # Constructor function for class FdReport\r
1767 #\r
1768 # This constructor function generates FdReport object for a specified\r
1769 # firmware device.\r
1770 #\r
1771 # @param self The object pointer\r
1772 # @param Fd The current Firmware device object\r
1773 # @param Wa Workspace context information\r
1774 #\r
1775 def __init__(self, Fd, Wa):\r
1776 self.FdName = Fd.FdUiName\r
1777 self.BaseAddress = Fd.BaseAddress\r
1778 self.Size = Fd.Size\r
1779 self.FdRegionList = [FdRegionReport(FdRegion, Wa) for FdRegion in Fd.RegionList]\r
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1780 self.FvPath = os.path.join(Wa.BuildDir, "FV")\r
1781 self.VpdFilePath = os.path.join(self.FvPath, "%s.map" % Wa.Platform.VpdToolGuid)\r
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1782 self.VPDBaseAddress = 0\r
1783 self.VPDSize = 0\r
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1784 self.VPDInfoList = []\r
1785 for index, FdRegion in enumerate(Fd.RegionList):\r
043928da 1786 if str(FdRegion.RegionType) is 'FILE' and Wa.Platform.VpdToolGuid in str(FdRegion.RegionDataList):\r
fb3d2279
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1787 self.VPDBaseAddress = self.FdRegionList[index].BaseAddress\r
1788 self.VPDSize = self.FdRegionList[index].Size\r
1789 break\r
1790\r
1791 if os.path.isfile(self.VpdFilePath):\r
1792 fd = open(self.VpdFilePath, "r")\r
1793 Lines = fd.readlines()\r
1794 for Line in Lines:\r
1795 Line = Line.strip()\r
1796 if len(Line) == 0 or Line.startswith("#"):\r
1797 continue\r
1798 try:\r
1799 PcdName, SkuId, Offset, Size, Value = Line.split("#")[0].split("|")\r
1800 PcdName, SkuId, Offset, Size, Value = PcdName.strip(), SkuId.strip(), Offset.strip(), Size.strip(), Value.strip()\r
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1801 if Offset.lower().startswith('0x'):\r
1802 Offset = '0x%08X' % (int(Offset, 16) + self.VPDBaseAddress)\r
1803 else:\r
1804 Offset = '0x%08X' % (int(Offset, 10) + self.VPDBaseAddress)\r
fb3d2279
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1805 self.VPDInfoList.append("%s | %s | %s | %s | %s" % (PcdName, SkuId, Offset, Size, Value))\r
1806 except:\r
1807 EdkLogger.error("BuildReport", CODE_ERROR, "Fail to parse VPD information file %s" % self.VpdFilePath)\r
1808 fd.close()\r
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LG
1809\r
1810 ##\r
1811 # Generate report for the firmware device.\r
1812 #\r
1813 # This function generates report for the firmware device.\r
1814 #\r
1815 # @param self The object pointer\r
1816 # @param File The file object for report\r
1817 #\r
1818 def GenerateReport(self, File):\r
1819 FileWrite(File, gSectionStart)\r
1820 FileWrite(File, "Firmware Device (FD)")\r
1821 FileWrite(File, "FD Name: %s" % self.FdName)\r
1822 FileWrite(File, "Base Address: %s" % self.BaseAddress)\r
1823 FileWrite(File, "Size: 0x%X (%.0fK)" % (self.Size, self.Size / 1024.0))\r
1824 if len(self.FdRegionList) > 0:\r
1825 FileWrite(File, gSectionSep)\r
1826 for FdRegionItem in self.FdRegionList:\r
1827 FdRegionItem.GenerateReport(File)\r
1828\r
fb3d2279
YZ
1829 if len(self.VPDInfoList) > 0:\r
1830 FileWrite(File, gSubSectionStart)\r
1831 FileWrite(File, "FD VPD Region")\r
1832 FileWrite(File, "Base Address: 0x%X" % self.VPDBaseAddress)\r
1833 FileWrite(File, "Size: 0x%X (%.0fK)" % (self.VPDSize, self.VPDSize / 1024.0))\r
1834 FileWrite(File, gSubSectionSep)\r
1835 for item in self.VPDInfoList:\r
e651d06c
LG
1836 ValueList = item.split('|')\r
1837 Value = ValueList[-1].strip()\r
1838 IsByteArray, ArrayList = ByteArrayForamt(Value)\r
1839 if IsByteArray:\r
1840 ValueList[-1] = ' {'\r
1841 FileWrite(File, '|'.join(ValueList))\r
1842 for Array in ArrayList:\r
1843 FileWrite(File, '%s' % (Array))\r
1844 else:\r
1845 FileWrite(File, item)\r
fb3d2279 1846 FileWrite(File, gSubSectionEnd)\r
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LG
1847 FileWrite(File, gSectionEnd)\r
1848\r
1849\r
1850\r
1851##\r
1852# Reports platform information\r
1853#\r
1854# This class reports the whole platform information\r
1855#\r
1856class PlatformReport(object):\r
1857 ##\r
1858 # Constructor function for class PlatformReport\r
1859 #\r
1860 # This constructor function generates PlatformReport object a platform build.\r
1861 # It generates report for platform summary, flash, global PCDs and detailed\r
1862 # module information for modules involved in platform build.\r
1863 #\r
1864 # @param self The object pointer\r
1865 # @param Wa Workspace context information\r
d5d56f1b 1866 # @param MaList The list of modules in the platform build\r
52302d4d 1867 #\r
d5d56f1b 1868 def __init__(self, Wa, MaList, ReportType):\r
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LG
1869 self._WorkspaceDir = Wa.WorkspaceDir\r
1870 self.PlatformName = Wa.Name\r
1871 self.PlatformDscPath = Wa.Platform\r
1872 self.Architectures = " ".join(Wa.ArchList)\r
1873 self.ToolChain = Wa.ToolChain\r
1874 self.Target = Wa.BuildTarget\r
1875 self.OutputPath = os.path.join(Wa.WorkspaceDir, Wa.OutputDir)\r
1876 self.BuildEnvironment = platform.platform()\r
1877\r
1878 self.PcdReport = None\r
1879 if "PCD" in ReportType:\r
1880 self.PcdReport = PcdReport(Wa)\r
1881\r
1882 self.FdReportList = []\r
d5d56f1b 1883 if "FLASH" in ReportType and Wa.FdfProfile and MaList == None:\r
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LG
1884 for Fd in Wa.FdfProfile.FdDict:\r
1885 self.FdReportList.append(FdReport(Wa.FdfProfile.FdDict[Fd], Wa))\r
1886\r
1887 self.PredictionReport = None\r
1888 if "FIXED_ADDRESS" in ReportType or "EXECUTION_ORDER" in ReportType:\r
1889 self.PredictionReport = PredictionReport(Wa)\r
1890\r
e56468c0 1891 self.DepexParser = None\r
1892 if "DEPEX" in ReportType:\r
1893 self.DepexParser = DepexParser(Wa)\r
1894 \r
52302d4d 1895 self.ModuleReportList = []\r
d5d56f1b 1896 if MaList != None:\r
636f2be6 1897 self._IsModuleBuild = True\r
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LG
1898 for Ma in MaList:\r
1899 self.ModuleReportList.append(ModuleReport(Ma, ReportType))\r
1900 else:\r
636f2be6 1901 self._IsModuleBuild = False\r
d5d56f1b 1902 for Pa in Wa.AutoGenObjectList:\r
25193a33 1903 ModuleAutoGenList = []\r
d5d56f1b 1904 for ModuleKey in Pa.Platform.Modules:\r
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YZ
1905 ModuleAutoGenList.append(Pa.Platform.Modules[ModuleKey].M)\r
1906 if GlobalData.gFdfParser != None:\r
1907 if Pa.Arch in GlobalData.gFdfParser.Profile.InfDict:\r
1908 INFList = GlobalData.gFdfParser.Profile.InfDict[Pa.Arch]\r
1909 for InfName in INFList:\r
1910 InfClass = PathClass(NormPath(InfName), Wa.WorkspaceDir, Pa.Arch)\r
1911 Ma = ModuleAutoGen(Wa, InfClass, Pa.BuildTarget, Pa.ToolChain, Pa.Arch, Wa.MetaFile)\r
1912 if Ma == None:\r
1913 continue\r
1914 if Ma not in ModuleAutoGenList:\r
1915 ModuleAutoGenList.append(Ma)\r
1916 for MGen in ModuleAutoGenList:\r
1917 self.ModuleReportList.append(ModuleReport(MGen, ReportType))\r
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1918\r
1919\r
1920\r
1921 ##\r
1922 # Generate report for the whole platform.\r
1923 #\r
1924 # This function generates report for platform information.\r
1925 # It comprises of platform summary, global PCD, flash and\r
1926 # module list sections.\r
1927 #\r
1928 # @param self The object pointer\r
1929 # @param File The file object for report\r
1930 # @param BuildDuration The total time to build the modules\r
1b8eca8b
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1931 # @param AutoGenTime The total time of AutoGen Phase\r
1932 # @param MakeTime The total time of Make Phase\r
1933 # @param GenFdsTime The total time of GenFds Phase\r
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LG
1934 # @param ReportType The kind of report items in the final report file\r
1935 #\r
1b8eca8b 1936 def GenerateReport(self, File, BuildDuration, AutoGenTime, MakeTime, GenFdsTime, ReportType):\r
52302d4d
LG
1937 FileWrite(File, "Platform Summary")\r
1938 FileWrite(File, "Platform Name: %s" % self.PlatformName)\r
1939 FileWrite(File, "Platform DSC Path: %s" % self.PlatformDscPath)\r
1940 FileWrite(File, "Architectures: %s" % self.Architectures)\r
1941 FileWrite(File, "Tool Chain: %s" % self.ToolChain)\r
1942 FileWrite(File, "Target: %s" % self.Target)\r
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1943 if GlobalData.gSkuids:\r
1944 FileWrite(File, "SKUID: %s" % " ".join(GlobalData.gSkuids))\r
1945 if GlobalData.gDefaultStores:\r
1946 FileWrite(File, "DefaultStore: %s" % " ".join(GlobalData.gDefaultStores))\r
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LG
1947 FileWrite(File, "Output Path: %s" % self.OutputPath)\r
1948 FileWrite(File, "Build Environment: %s" % self.BuildEnvironment)\r
1949 FileWrite(File, "Build Duration: %s" % BuildDuration)\r
1b8eca8b
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1950 if AutoGenTime:\r
1951 FileWrite(File, "AutoGen Duration: %s" % AutoGenTime)\r
1952 if MakeTime:\r
1953 FileWrite(File, "Make Duration: %s" % MakeTime)\r
1954 if GenFdsTime:\r
1955 FileWrite(File, "GenFds Duration: %s" % GenFdsTime)\r
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LG
1956 FileWrite(File, "Report Content: %s" % ", ".join(ReportType))\r
1957\r
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1958 if GlobalData.MixedPcd:\r
1959 FileWrite(File, gSectionStart)\r
1960 FileWrite(File, "The following PCDs use different access methods:")\r
1961 FileWrite(File, gSectionSep)\r
1962 for PcdItem in GlobalData.MixedPcd:\r
1963 FileWrite(File, "%s.%s" % (str(PcdItem[1]), str(PcdItem[0])))\r
1964 FileWrite(File, gSectionEnd)\r
1965\r
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1966 if not self._IsModuleBuild:\r
1967 if "PCD" in ReportType:\r
1968 self.PcdReport.GenerateReport(File, None)\r
1969 \r
1970 if "FLASH" in ReportType:\r
1971 for FdReportListItem in self.FdReportList:\r
1972 FdReportListItem.GenerateReport(File)\r
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1973\r
1974 for ModuleReportItem in self.ModuleReportList:\r
e56468c0 1975 ModuleReportItem.GenerateReport(File, self.PcdReport, self.PredictionReport, self.DepexParser, ReportType)\r
52302d4d 1976\r
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1977 if not self._IsModuleBuild:\r
1978 if "EXECUTION_ORDER" in ReportType:\r
1979 self.PredictionReport.GenerateReport(File, None)\r
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1980\r
1981## BuildReport class\r
1982#\r
1983# This base class contain the routines to collect data and then\r
1984# applies certain format to the output report\r
1985#\r
1986class BuildReport(object):\r
1987 ##\r
1988 # Constructor function for class BuildReport\r
1989 #\r
1990 # This constructor function generates BuildReport object a platform build.\r
1991 # It generates report for platform summary, flash, global PCDs and detailed\r
1992 # module information for modules involved in platform build.\r
1993 #\r
1994 # @param self The object pointer\r
1995 # @param ReportFile The file name to save report file\r
1996 # @param ReportType The kind of report items in the final report file\r
1997 #\r
1998 def __init__(self, ReportFile, ReportType):\r
1999 self.ReportFile = ReportFile\r
2000 if ReportFile:\r
2001 self.ReportList = []\r
2002 self.ReportType = []\r
2003 if ReportType: \r
2004 for ReportTypeItem in ReportType:\r
2005 if ReportTypeItem not in self.ReportType:\r
2006 self.ReportType.append(ReportTypeItem)\r
2007 else:\r
eca5be7a 2008 self.ReportType = ["PCD", "LIBRARY", "BUILD_FLAGS", "DEPEX", "HASH", "FLASH", "FIXED_ADDRESS"]\r
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2009 ##\r
2010 # Adds platform report to the list\r
2011 #\r
2012 # This function adds a platform report to the final report list.\r
2013 #\r
2014 # @param self The object pointer\r
2015 # @param Wa Workspace context information\r
d5d56f1b 2016 # @param MaList The list of modules in the platform build\r
52302d4d 2017 #\r
d5d56f1b 2018 def AddPlatformReport(self, Wa, MaList=None):\r
52302d4d 2019 if self.ReportFile:\r
d5d56f1b 2020 self.ReportList.append((Wa, MaList))\r
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2021\r
2022 ##\r
2023 # Generates the final report.\r
2024 #\r
2025 # This function generates platform build report. It invokes GenerateReport()\r
2026 # method for every platform report in the list.\r
2027 #\r
2028 # @param self The object pointer\r
2029 # @param BuildDuration The total time to build the modules\r
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YZ
2030 # @param AutoGenTime The total time of AutoGen phase\r
2031 # @param MakeTime The total time of Make phase\r
2032 # @param GenFdsTime The total time of GenFds phase\r
52302d4d 2033 #\r
1b8eca8b 2034 def GenerateReport(self, BuildDuration, AutoGenTime, MakeTime, GenFdsTime):\r
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LG
2035 if self.ReportFile:\r
2036 try:\r
40d841f6 2037 File = StringIO('')\r
d5d56f1b 2038 for (Wa, MaList) in self.ReportList:\r
1b8eca8b 2039 PlatformReport(Wa, MaList, self.ReportType).GenerateReport(File, BuildDuration, AutoGenTime, MakeTime, GenFdsTime, self.ReportType)\r
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2040 Content = FileLinesSplit(File.getvalue(), gLineMaxLength)\r
2041 SaveFileOnChange(self.ReportFile, Content, True)\r
40d841f6 2042 EdkLogger.quiet("Build report can be found at %s" % os.path.abspath(self.ReportFile))\r
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2043 except IOError:\r
2044 EdkLogger.error(None, FILE_WRITE_FAILURE, ExtraData=self.ReportFile)\r
2045 except:\r
2046 EdkLogger.error("BuildReport", CODE_ERROR, "Unknown fatal error when generating build report", ExtraData=self.ReportFile, RaiseError=False)\r
2047 EdkLogger.quiet("(Python %s on %s\n%s)" % (platform.python_version(), sys.platform, traceback.format_exc()))\r
2048 File.close()\r
636f2be6 2049 \r
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2050# This acts like the main() function for the script, unless it is 'import'ed into another script.\r
2051if __name__ == '__main__':\r
2052 pass\r
2053\r