]> git.proxmox.com Git - mirror_edk2.git/blame - BaseTools/Source/Python/build/BuildReport.py
BaseTools: Add *B Flag for the field that from command line
[mirror_edk2.git] / BaseTools / Source / Python / build / BuildReport.py
CommitLineData
52302d4d
LG
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
779ddcdf 7# Copyright (c) 2010 - 2018, Intel Corporation. All rights reserved.<BR>\r
40d841f6 8# This program and the accompanying materials\r
52302d4d
LG
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
52302d4d
LG
20import re\r
21import platform\r
22import textwrap\r
23import traceback\r
24import sys\r
40d841f6 25import time\r
e56468c0 26import struct\r
eca5be7a
YZ
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
52302d4d
LG
34from Common.Misc import GuidStructureByteArrayToGuidString\r
35from Common.Misc import GuidStructureStringToGuidString\r
36from Common.InfClassObject import gComponentType2ModuleType\r
52302d4d
LG
37from Common.BuildToolError import FILE_WRITE_FAILURE\r
38from Common.BuildToolError import CODE_ERROR\r
eca5be7a 39from Common.BuildToolError import COMMAND_FAILURE\r
35f613d9 40from Common.BuildToolError import FORMAT_INVALID\r
1be2ed90 41from Common.LongFilePathSupport import OpenLongFilePath as open\r
05cc51ad 42from Common.MultipleWorkspace import MultipleWorkspace as mws\r
763e8edf 43import Common.GlobalData as GlobalData\r
25193a33
YZ
44from AutoGen.AutoGen import ModuleAutoGen\r
45from Common.Misc import PathClass\r
46from Common.String import NormPath\r
e651d06c
LG
47from Common.DataType import *\r
48import collections\r
35f613d9 49from Common.Expression import *\r
52302d4d
LG
50\r
51## Pattern to extract contents in EDK DXS files\r
52gDxsDependencyPattern = re.compile(r"DEPENDENCY_START(.+)DEPENDENCY_END", re.DOTALL)\r
53\r
54## Pattern to find total FV total size, occupied size in flash report intermediate file\r
55gFvTotalSizePattern = re.compile(r"EFI_FV_TOTAL_SIZE = (0x[0-9a-fA-F]+)")\r
56gFvTakenSizePattern = re.compile(r"EFI_FV_TAKEN_SIZE = (0x[0-9a-fA-F]+)")\r
57\r
58## Pattern to find module size and time stamp in module summary report intermediate file\r
59gModuleSizePattern = re.compile(r"MODULE_SIZE = (\d+)")\r
60gTimeStampPattern = re.compile(r"TIME_STAMP = (\d+)")\r
61\r
62## Pattern to find GUID value in flash description files\r
63gPcdGuidPattern = re.compile(r"PCD\((\w+)[.](\w+)\)")\r
64\r
65## Pattern to collect offset, GUID value pair in the flash report intermediate file\r
66gOffsetGuidPattern = re.compile(r"(0x[0-9A-Fa-f]+) ([-A-Fa-f0-9]+)")\r
67\r
68## Pattern to find module base address and entry point in fixed flash map file\r
69gModulePattern = r"\n[-\w]+\s*\(([^,]+),\s*BaseAddress=%(Address)s,\s*EntryPoint=%(Address)s\)\s*\(GUID=([-0-9A-Fa-f]+)[^)]*\)"\r
70gMapFileItemPattern = re.compile(gModulePattern % {"Address" : "(-?0[xX][0-9A-Fa-f]+)"})\r
71\r
72## Pattern to find all module referenced header files in source files\r
73gIncludePattern = re.compile(r'#include\s*["<]([^">]+)[">]')\r
74gIncludePattern2 = re.compile(r"#include\s+EFI_([A-Z_]+)\s*[(]\s*(\w+)\s*[)]")\r
75\r
76## Pattern to find the entry point for EDK module using EDKII Glue library\r
77gGlueLibEntryPoint = re.compile(r"__EDKII_GLUE_MODULE_ENTRY_POINT__\s*=\s*(\w+)")\r
78\r
64b2609f
LG
79## Tags for MaxLength of line in report\r
80gLineMaxLength = 120\r
81\r
4afd3d04
LG
82## Tags for end of line in report\r
83gEndOfLine = "\r\n"\r
84\r
52302d4d 85## Tags for section start, end and separator\r
47fea6af
YZ
86gSectionStart = ">" + "=" * (gLineMaxLength - 2) + "<"\r
87gSectionEnd = "<" + "=" * (gLineMaxLength - 2) + ">" + "\n"\r
64b2609f 88gSectionSep = "=" * gLineMaxLength\r
52302d4d
LG
89\r
90## Tags for subsection start, end and separator\r
47fea6af
YZ
91gSubSectionStart = ">" + "-" * (gLineMaxLength - 2) + "<"\r
92gSubSectionEnd = "<" + "-" * (gLineMaxLength - 2) + ">"\r
64b2609f
LG
93gSubSectionSep = "-" * gLineMaxLength\r
94\r
52302d4d
LG
95\r
96## The look up table to map PCD type to pair of report display type and DEC type\r
97gPcdTypeMap = {\r
98 'FixedAtBuild' : ('FIXED', 'FixedAtBuild'),\r
99 'PatchableInModule': ('PATCH', 'PatchableInModule'),\r
100 'FeatureFlag' : ('FLAG', 'FeatureFlag'),\r
101 'Dynamic' : ('DYN', 'Dynamic'),\r
102 'DynamicHii' : ('DYNHII', 'Dynamic'),\r
103 'DynamicVpd' : ('DYNVPD', 'Dynamic'),\r
4afd3d04
LG
104 'DynamicEx' : ('DEX', 'DynamicEx'),\r
105 'DynamicExHii' : ('DEXHII', 'DynamicEx'),\r
106 'DynamicExVpd' : ('DEXVPD', 'DynamicEx'),\r
52302d4d
LG
107 }\r
108\r
109## The look up table to map module type to driver type\r
110gDriverTypeMap = {\r
111 'SEC' : '0x3 (SECURITY_CORE)',\r
112 'PEI_CORE' : '0x4 (PEI_CORE)',\r
113 'PEIM' : '0x6 (PEIM)',\r
114 'DXE_CORE' : '0x5 (DXE_CORE)',\r
115 'DXE_DRIVER' : '0x7 (DRIVER)',\r
116 'DXE_SAL_DRIVER' : '0x7 (DRIVER)',\r
117 'DXE_SMM_DRIVER' : '0x7 (DRIVER)',\r
118 'DXE_RUNTIME_DRIVER': '0x7 (DRIVER)',\r
119 'UEFI_DRIVER' : '0x7 (DRIVER)',\r
120 'UEFI_APPLICATION' : '0x9 (APPLICATION)',\r
121 'SMM_CORE' : '0xD (SMM_CORE)',\r
122 'SMM_DRIVER' : '0xA (SMM)', # Extension of module type to support PI 1.1 SMM drivers\r
e574123c
SV
123 'MM_STANDALONE' : '0xE (MM_STANDALONE)',\r
124 'MM_CORE_STANDALONE' : '0xF (MM_CORE_STANDALONE)'\r
52302d4d
LG
125 }\r
126\r
e56468c0 127## The look up table of the supported opcode in the dependency expression binaries\r
128gOpCodeList = ["BEFORE", "AFTER", "PUSH", "AND", "OR", "NOT", "TRUE", "FALSE", "END", "SOR"]\r
129\r
52302d4d
LG
130##\r
131# Writes a string to the file object.\r
132#\r
133# This function writes a string to the file object and a new line is appended\r
134# afterwards. It may optionally wraps the string for better readability.\r
135#\r
136# @File The file object to write\r
137# @String The string to be written to the file\r
138# @Wrapper Indicates whether to wrap the string\r
139#\r
140def FileWrite(File, String, Wrapper=False):\r
141 if Wrapper:\r
142 String = textwrap.fill(String, 120)\r
4afd3d04 143 File.write(String + gEndOfLine)\r
52302d4d 144\r
e651d06c
LG
145def ByteArrayForamt(Value):\r
146 IsByteArray = False\r
147 SplitNum = 16\r
148 ArrayList = []\r
149 if Value.startswith('{') and Value.endswith('}'):\r
150 Value = Value[1:-1]\r
151 ValueList = Value.split(',')\r
152 if len(ValueList) >= SplitNum:\r
153 IsByteArray = True\r
154 if IsByteArray:\r
155 if ValueList:\r
156 Len = len(ValueList)/SplitNum\r
157 for i, element in enumerate(ValueList):\r
158 ValueList[i] = '0x%02X' % int(element.strip(), 16)\r
159 if Len:\r
160 Id = 0\r
161 while (Id <= Len):\r
162 End = min(SplitNum*(Id+1), len(ValueList))\r
163 Str = ','.join(ValueList[SplitNum*Id : End])\r
164 if End == len(ValueList):\r
165 Str += '}'\r
166 ArrayList.append(Str)\r
167 break\r
168 else:\r
169 Str += ','\r
170 ArrayList.append(Str)\r
171 Id += 1\r
172 else:\r
173 ArrayList = [Value + '}']\r
174 return IsByteArray, ArrayList\r
175\r
52302d4d
LG
176##\r
177# Find all the header file that the module source directly includes.\r
178#\r
179# This function scans source code to find all header files the module may\r
180# include. This is not accurate but very effective to find all the header\r
181# file the module might include with #include statement.\r
182#\r
183# @Source The source file name\r
184# @IncludePathList The list of include path to find the source file.\r
185# @IncludeFiles The dictionary of current found include files.\r
186#\r
187def FindIncludeFiles(Source, IncludePathList, IncludeFiles):\r
188 FileContents = open(Source).read()\r
189 #\r
190 # Find header files with pattern #include "XXX.h" or #include <XXX.h>\r
191 #\r
192 for Match in gIncludePattern.finditer(FileContents):\r
193 FileName = Match.group(1).strip()\r
194 for Dir in [os.path.dirname(Source)] + IncludePathList:\r
195 FullFileName = os.path.normpath(os.path.join(Dir, FileName))\r
196 if os.path.exists(FullFileName):\r
197 IncludeFiles[FullFileName.lower().replace("\\", "/")] = FullFileName\r
198 break\r
199\r
200 #\r
201 # Find header files with pattern like #include EFI_PPI_CONSUMER(XXX)\r
202 #\r
203 for Match in gIncludePattern2.finditer(FileContents):\r
204 Key = Match.group(2)\r
205 Type = Match.group(1)\r
206 if "ARCH_PROTOCOL" in Type:\r
207 FileName = "ArchProtocol/%(Key)s/%(Key)s.h" % {"Key" : Key}\r
208 elif "PROTOCOL" in Type:\r
209 FileName = "Protocol/%(Key)s/%(Key)s.h" % {"Key" : Key}\r
210 elif "PPI" in Type:\r
211 FileName = "Ppi/%(Key)s/%(Key)s.h" % {"Key" : Key}\r
212 elif "GUID" in Type:\r
213 FileName = "Guid/%(Key)s/%(Key)s.h" % {"Key" : Key}\r
214 else:\r
215 continue\r
216 for Dir in IncludePathList:\r
217 FullFileName = os.path.normpath(os.path.join(Dir, FileName))\r
218 if os.path.exists(FullFileName):\r
219 IncludeFiles[FullFileName.lower().replace("\\", "/")] = FullFileName\r
220 break\r
221\r
64b2609f
LG
222## Split each lines in file\r
223#\r
224# This method is used to split the lines in file to make the length of each line \r
225# less than MaxLength.\r
226#\r
227# @param Content The content of file\r
228# @param MaxLength The Max Length of the line\r
229#\r
230def FileLinesSplit(Content=None, MaxLength=None):\r
231 ContentList = Content.split(TAB_LINE_BREAK)\r
232 NewContent = ''\r
233 NewContentList = []\r
234 for Line in ContentList:\r
235 while len(Line.rstrip()) > MaxLength:\r
236 LineSpaceIndex = Line.rfind(TAB_SPACE_SPLIT, 0, MaxLength)\r
237 LineSlashIndex = Line.rfind(TAB_SLASH, 0, MaxLength)\r
25918452
LG
238 LineBackSlashIndex = Line.rfind(TAB_BACK_SLASH, 0, MaxLength)\r
239 if max(LineSpaceIndex, LineSlashIndex, LineBackSlashIndex) > 0:\r
240 LineBreakIndex = max(LineSpaceIndex, LineSlashIndex, LineBackSlashIndex)\r
241 else:\r
242 LineBreakIndex = MaxLength\r
64b2609f
LG
243 NewContentList.append(Line[:LineBreakIndex])\r
244 Line = Line[LineBreakIndex:]\r
245 if Line:\r
246 NewContentList.append(Line)\r
247 for NewLine in NewContentList:\r
248 NewContent += NewLine + TAB_LINE_BREAK\r
4afd3d04
LG
249 \r
250 NewContent = NewContent.replace(TAB_LINE_BREAK, gEndOfLine).replace('\r\r\n', gEndOfLine)\r
64b2609f
LG
251 return NewContent\r
252 \r
253 \r
254 \r
e56468c0 255##\r
256# Parse binary dependency expression section\r
257#\r
258# This utility class parses the dependency expression section and translate the readable\r
259# GUID name and value.\r
260#\r
261class DepexParser(object):\r
262 ##\r
263 # Constructor function for class DepexParser\r
264 #\r
265 # This constructor function collect GUID values so that the readable\r
266 # GUID name can be translated.\r
267 #\r
268 # @param self The object pointer\r
269 # @param Wa Workspace context information\r
270 #\r
271 def __init__(self, Wa):\r
272 self._GuidDb = {}\r
0d2711a6 273 for Pa in Wa.AutoGenObjectList:\r
47fea6af 274 for Package in Pa.PackageList:\r
0d2711a6
LG
275 for Protocol in Package.Protocols:\r
276 GuidValue = GuidStructureStringToGuidString(Package.Protocols[Protocol])\r
277 self._GuidDb[GuidValue.upper()] = Protocol\r
278 for Ppi in Package.Ppis:\r
279 GuidValue = GuidStructureStringToGuidString(Package.Ppis[Ppi])\r
280 self._GuidDb[GuidValue.upper()] = Ppi\r
281 for Guid in Package.Guids:\r
282 GuidValue = GuidStructureStringToGuidString(Package.Guids[Guid])\r
283 self._GuidDb[GuidValue.upper()] = Guid\r
e56468c0 284 \r
285 ##\r
286 # Parse the binary dependency expression files.\r
287 # \r
288 # This function parses the binary dependency expression file and translate it\r
289 # to the instruction list.\r
290 #\r
291 # @param self The object pointer\r
292 # @param DepexFileName The file name of binary dependency expression file.\r
293 #\r
294 def ParseDepexFile(self, DepexFileName):\r
295 DepexFile = open(DepexFileName, "rb")\r
296 DepexStatement = []\r
297 OpCode = DepexFile.read(1)\r
298 while OpCode:\r
299 Statement = gOpCodeList[struct.unpack("B", OpCode)[0]]\r
300 if Statement in ["BEFORE", "AFTER", "PUSH"]:\r
301 GuidValue = "%08X-%04X-%04X-%02X%02X-%02X%02X%02X%02X%02X%02X" % \\r
2bc3256c 302 struct.unpack("=LHHBBBBBBBB", DepexFile.read(16))\r
e56468c0 303 GuidString = self._GuidDb.get(GuidValue, GuidValue)\r
304 Statement = "%s %s" % (Statement, GuidString)\r
305 DepexStatement.append(Statement)\r
47fea6af
YZ
306 OpCode = DepexFile.read(1)\r
307\r
e56468c0 308 return DepexStatement\r
309 \r
52302d4d
LG
310##\r
311# Reports library information\r
312#\r
313# This class reports the module library subsection in the build report file.\r
314#\r
315class LibraryReport(object):\r
316 ##\r
317 # Constructor function for class LibraryReport\r
318 #\r
319 # This constructor function generates LibraryReport object for\r
320 # a module.\r
321 #\r
322 # @param self The object pointer\r
323 # @param M Module context information\r
324 #\r
325 def __init__(self, M):\r
326 self.LibraryList = []\r
327 if int(str(M.AutoGenVersion), 0) >= 0x00010005:\r
328 self._EdkIIModule = True\r
329 else:\r
330 self._EdkIIModule = False\r
331\r
332 for Lib in M.DependentLibraryList:\r
333 LibInfPath = str(Lib)\r
334 LibClassList = Lib.LibraryClass[0].LibraryClass\r
335 LibConstructorList = Lib.ConstructorList\r
336 LibDesstructorList = Lib.DestructorList\r
337 LibDepexList = Lib.DepexExpression[M.Arch, M.ModuleType]\r
1b8eca8b
YZ
338 for LibAutoGen in M.LibraryAutoGenList:\r
339 if LibInfPath == LibAutoGen.MetaFile.Path:\r
340 LibTime = LibAutoGen.BuildTime\r
341 break\r
342 self.LibraryList.append((LibInfPath, LibClassList, LibConstructorList, LibDesstructorList, LibDepexList, LibTime))\r
52302d4d
LG
343\r
344 ##\r
345 # Generate report for module library information\r
346 #\r
347 # This function generates report for the module library.\r
348 # If the module is EDKII style one, the additional library class, library\r
349 # constructor/destructor and dependency expression may also be reported.\r
350 #\r
351 # @param self The object pointer\r
352 # @param File The file object for report\r
353 #\r
354 def GenerateReport(self, File):\r
52302d4d 355 if len(self.LibraryList) > 0:\r
c2d0a1f6
YZ
356 FileWrite(File, gSubSectionStart)\r
357 FileWrite(File, TAB_BRG_LIBRARY)\r
52302d4d
LG
358 FileWrite(File, gSubSectionSep)\r
359 for LibraryItem in self.LibraryList:\r
360 LibInfPath = LibraryItem[0]\r
361 FileWrite(File, LibInfPath)\r
362\r
363 #\r
364 # Report library class, library constructor and destructor for\r
365 # EDKII style module.\r
366 #\r
367 if self._EdkIIModule:\r
368 LibClass = LibraryItem[1]\r
369 EdkIILibInfo = ""\r
370 LibConstructor = " ".join(LibraryItem[2])\r
371 if LibConstructor:\r
372 EdkIILibInfo += " C = " + LibConstructor\r
373 LibDestructor = " ".join(LibraryItem[3])\r
374 if LibDestructor:\r
636f2be6 375 EdkIILibInfo += " D = " + LibDestructor\r
52302d4d
LG
376 LibDepex = " ".join(LibraryItem[4])\r
377 if LibDepex:\r
378 EdkIILibInfo += " Depex = " + LibDepex\r
1b8eca8b
YZ
379 if LibraryItem[5]:\r
380 EdkIILibInfo += " Time = " + LibraryItem[5]\r
52302d4d
LG
381 if EdkIILibInfo:\r
382 FileWrite(File, "{%s: %s}" % (LibClass, EdkIILibInfo))\r
383 else:\r
384 FileWrite(File, "{%s}" % LibClass)\r
385\r
c2d0a1f6 386 FileWrite(File, gSubSectionEnd)\r
52302d4d
LG
387\r
388##\r
389# Reports dependency expression information\r
390#\r
391# This class reports the module dependency expression subsection in the build report file.\r
392#\r
393class DepexReport(object):\r
394 ##\r
395 # Constructor function for class DepexReport\r
396 #\r
397 # This constructor function generates DepexReport object for\r
398 # a module. If the module source contains the DXS file (usually EDK\r
399 # style module), it uses the dependency in DXS file; otherwise,\r
400 # it uses the dependency expression from its own INF [Depex] section\r
401 # and then merges with the ones from its dependent library INF.\r
402 #\r
403 # @param self The object pointer\r
404 # @param M Module context information\r
405 #\r
406 def __init__(self, M):\r
407 self.Depex = ""\r
47fea6af 408 self._DepexFileName = os.path.join(M.BuildDir, "OUTPUT", M.Module.BaseName + ".depex")\r
52302d4d
LG
409 ModuleType = M.ModuleType\r
410 if not ModuleType:\r
411 ModuleType = gComponentType2ModuleType.get(M.ComponentType, "")\r
636f2be6 412\r
e574123c 413 if ModuleType in ["SEC", "PEI_CORE", "DXE_CORE", "SMM_CORE", "MM_CORE_STANDALONE", "UEFI_APPLICATION"]:\r
52302d4d
LG
414 return\r
415 \r
416 for Source in M.SourceFileList:\r
417 if os.path.splitext(Source.Path)[1].lower() == ".dxs":\r
418 Match = gDxsDependencyPattern.search(open(Source.Path).read())\r
419 if Match:\r
420 self.Depex = Match.group(1).strip()\r
421 self.Source = "DXS"\r
422 break\r
423 else:\r
424 self.Depex = M.DepexExpressionList.get(M.ModuleType, "")\r
425 self.ModuleDepex = " ".join(M.Module.DepexExpression[M.Arch, M.ModuleType])\r
426 if not self.ModuleDepex:\r
427 self.ModuleDepex = "(None)"\r
428\r
429 LibDepexList = []\r
430 for Lib in M.DependentLibraryList:\r
431 LibDepex = " ".join(Lib.DepexExpression[M.Arch, M.ModuleType]).strip()\r
432 if LibDepex != "":\r
433 LibDepexList.append("(" + LibDepex + ")")\r
434 self.LibraryDepex = " AND ".join(LibDepexList)\r
435 if not self.LibraryDepex:\r
436 self.LibraryDepex = "(None)"\r
437 self.Source = "INF"\r
438\r
439 ##\r
440 # Generate report for module dependency expression information\r
441 #\r
442 # This function generates report for the module dependency expression.\r
443 #\r
e56468c0 444 # @param self The object pointer\r
445 # @param File The file object for report\r
446 # @param GlobalDepexParser The platform global Dependency expression parser object\r
52302d4d 447 #\r
e56468c0 448 def GenerateReport(self, File, GlobalDepexParser):\r
52302d4d
LG
449 if not self.Depex:\r
450 return\r
52302d4d 451 FileWrite(File, gSubSectionStart)\r
e56468c0 452 if os.path.isfile(self._DepexFileName):\r
453 try:\r
454 DepexStatements = GlobalDepexParser.ParseDepexFile(self._DepexFileName)\r
455 FileWrite(File, "Final Dependency Expression (DEPEX) Instructions")\r
456 for DepexStatement in DepexStatements:\r
457 FileWrite(File, " %s" % DepexStatement)\r
458 FileWrite(File, gSubSectionSep)\r
459 except:\r
460 EdkLogger.warn(None, "Dependency expression file is corrupted", self._DepexFileName)\r
461 \r
52302d4d
LG
462 FileWrite(File, "Dependency Expression (DEPEX) from %s" % self.Source)\r
463\r
464 if self.Source == "INF":\r
465 FileWrite(File, "%s" % self.Depex, True)\r
466 FileWrite(File, gSubSectionSep)\r
467 FileWrite(File, "From Module INF: %s" % self.ModuleDepex, True)\r
468 FileWrite(File, "From Library INF: %s" % self.LibraryDepex, True)\r
469 else:\r
470 FileWrite(File, "%s" % self.Depex)\r
471 FileWrite(File, gSubSectionEnd)\r
472\r
473##\r
474# Reports dependency expression information\r
475#\r
476# This class reports the module build flags subsection in the build report file.\r
477#\r
478class BuildFlagsReport(object):\r
479 ##\r
480 # Constructor function for class BuildFlagsReport\r
481 #\r
482 # This constructor function generates BuildFlagsReport object for\r
483 # a module. It reports the build tool chain tag and all relevant\r
484 # build flags to build the module.\r
485 #\r
486 # @param self The object pointer\r
487 # @param M Module context information\r
488 #\r
489 def __init__(self, M):\r
490 BuildOptions = {}\r
491 #\r
492 # Add build flags according to source file extension so that\r
493 # irrelevant ones can be filtered out.\r
494 #\r
495 for Source in M.SourceFileList:\r
496 Ext = os.path.splitext(Source.File)[1].lower()\r
497 if Ext in [".c", ".cc", ".cpp"]:\r
498 BuildOptions["CC"] = 1\r
499 elif Ext in [".s", ".asm"]:\r
500 BuildOptions["PP"] = 1\r
501 BuildOptions["ASM"] = 1\r
502 elif Ext in [".vfr"]:\r
503 BuildOptions["VFRPP"] = 1\r
504 BuildOptions["VFR"] = 1\r
505 elif Ext in [".dxs"]:\r
506 BuildOptions["APP"] = 1\r
507 BuildOptions["CC"] = 1\r
508 elif Ext in [".asl"]:\r
509 BuildOptions["ASLPP"] = 1\r
510 BuildOptions["ASL"] = 1\r
511 elif Ext in [".aslc"]:\r
512 BuildOptions["ASLCC"] = 1\r
513 BuildOptions["ASLDLINK"] = 1\r
514 BuildOptions["CC"] = 1\r
515 elif Ext in [".asm16"]:\r
516 BuildOptions["ASMLINK"] = 1\r
517 BuildOptions["SLINK"] = 1\r
518 BuildOptions["DLINK"] = 1\r
519\r
520 #\r
521 # Save module build flags.\r
522 #\r
523 self.ToolChainTag = M.ToolChain\r
524 self.BuildFlags = {}\r
525 for Tool in BuildOptions:\r
526 self.BuildFlags[Tool + "_FLAGS"] = M.BuildOption.get(Tool, {}).get("FLAGS", "")\r
527\r
528 ##\r
529 # Generate report for module build flags information\r
530 #\r
531 # This function generates report for the module build flags expression.\r
532 #\r
533 # @param self The object pointer\r
534 # @param File The file object for report\r
535 #\r
536 def GenerateReport(self, File):\r
537 FileWrite(File, gSubSectionStart)\r
538 FileWrite(File, "Build Flags")\r
539 FileWrite(File, "Tool Chain Tag: %s" % self.ToolChainTag)\r
540 for Tool in self.BuildFlags:\r
541 FileWrite(File, gSubSectionSep)\r
542 FileWrite(File, "%s = %s" % (Tool, self.BuildFlags[Tool]), True)\r
543\r
544 FileWrite(File, gSubSectionEnd)\r
545\r
546\r
547##\r
548# Reports individual module information\r
549#\r
550# This class reports the module section in the build report file.\r
551# It comprises of module summary, module PCD, library, dependency expression,\r
552# build flags sections.\r
553#\r
554class ModuleReport(object):\r
555 ##\r
556 # Constructor function for class ModuleReport\r
557 #\r
558 # This constructor function generates ModuleReport object for\r
559 # a separate module in a platform build.\r
560 #\r
561 # @param self The object pointer\r
562 # @param M Module context information\r
563 # @param ReportType The kind of report items in the final report file\r
564 #\r
565 def __init__(self, M, ReportType):\r
566 self.ModuleName = M.Module.BaseName\r
567 self.ModuleInfPath = M.MetaFile.File\r
568 self.FileGuid = M.Guid\r
569 self.Size = 0\r
570 self.BuildTimeStamp = None\r
eca5be7a 571 self.Hash = 0\r
52302d4d 572 self.DriverType = ""\r
636f2be6
LG
573 if not M.IsLibrary:\r
574 ModuleType = M.ModuleType\r
575 if not ModuleType:\r
576 ModuleType = gComponentType2ModuleType.get(M.ComponentType, "")\r
577 #\r
578 # If a module complies to PI 1.1, promote Module type to "SMM_DRIVER"\r
579 #\r
580 if ModuleType == "DXE_SMM_DRIVER":\r
47fea6af 581 PiSpec = M.Module.Specification.get("PI_SPECIFICATION_VERSION", "0x00010000")\r
0d2711a6 582 if int(PiSpec, 0) >= 0x0001000A:\r
636f2be6
LG
583 ModuleType = "SMM_DRIVER"\r
584 self.DriverType = gDriverTypeMap.get(ModuleType, "0x2 (FREE_FORM)")\r
52302d4d
LG
585 self.UefiSpecVersion = M.Module.Specification.get("UEFI_SPECIFICATION_VERSION", "")\r
586 self.PiSpecVersion = M.Module.Specification.get("PI_SPECIFICATION_VERSION", "")\r
587 self.PciDeviceId = M.Module.Defines.get("PCI_DEVICE_ID", "")\r
588 self.PciVendorId = M.Module.Defines.get("PCI_VENDOR_ID", "")\r
589 self.PciClassCode = M.Module.Defines.get("PCI_CLASS_CODE", "")\r
1b8eca8b 590 self.BuildTime = M.BuildTime\r
52302d4d
LG
591\r
592 self._BuildDir = M.BuildDir\r
593 self.ModulePcdSet = {}\r
594 if "PCD" in ReportType:\r
595 #\r
596 # Collect all module used PCD set: module INF referenced directly or indirectly.\r
597 # It also saves module INF default values of them in case they exist.\r
598 #\r
599 for Pcd in M.ModulePcdList + M.LibraryPcdList:\r
600 self.ModulePcdSet.setdefault((Pcd.TokenCName, Pcd.TokenSpaceGuidCName, Pcd.Type), (Pcd.InfDefaultValue, Pcd.DefaultValue))\r
601\r
602 self.LibraryReport = None\r
603 if "LIBRARY" in ReportType:\r
604 self.LibraryReport = LibraryReport(M)\r
605\r
606 self.DepexReport = None\r
607 if "DEPEX" in ReportType:\r
608 self.DepexReport = DepexReport(M)\r
609\r
610 if "BUILD_FLAGS" in ReportType:\r
611 self.BuildFlagsReport = BuildFlagsReport(M)\r
612\r
613\r
614 ##\r
615 # Generate report for module information\r
616 #\r
617 # This function generates report for separate module expression\r
618 # in a platform build.\r
619 #\r
e56468c0 620 # @param self The object pointer\r
621 # @param File The file object for report\r
622 # @param GlobalPcdReport The platform global PCD report object\r
623 # @param GlobalPredictionReport The platform global Prediction report object\r
624 # @param GlobalDepexParser The platform global Dependency expression parser object\r
625 # @param ReportType The kind of report items in the final report file\r
52302d4d 626 #\r
e56468c0 627 def GenerateReport(self, File, GlobalPcdReport, GlobalPredictionReport, GlobalDepexParser, ReportType):\r
52302d4d
LG
628 FileWrite(File, gSectionStart)\r
629\r
630 FwReportFileName = os.path.join(self._BuildDir, "DEBUG", self.ModuleName + ".txt")\r
631 if os.path.isfile(FwReportFileName):\r
632 try:\r
633 FileContents = open(FwReportFileName).read()\r
634 Match = gModuleSizePattern.search(FileContents)\r
635 if Match:\r
636 self.Size = int(Match.group(1))\r
637\r
638 Match = gTimeStampPattern.search(FileContents)\r
639 if Match:\r
640 self.BuildTimeStamp = datetime.fromtimestamp(int(Match.group(1)))\r
641 except IOError:\r
642 EdkLogger.warn(None, "Fail to read report file", FwReportFileName)\r
643\r
eca5be7a
YZ
644 if "HASH" in ReportType:\r
645 OutputDir = os.path.join(self._BuildDir, "OUTPUT")\r
646 DefaultEFIfile = os.path.join(OutputDir, self.ModuleName + ".efi")\r
647 if os.path.isfile(DefaultEFIfile):\r
648 Tempfile = os.path.join(OutputDir, self.ModuleName + "_hash.tmp")\r
649 # rebase the efi image since its base address may not zero\r
650 cmd = ["GenFw", "--rebase", str(0), "-o", Tempfile, DefaultEFIfile]\r
651 try:\r
652 PopenObject = subprocess.Popen(' '.join(cmd), stdout=subprocess.PIPE, stderr=subprocess.PIPE, shell=True)\r
653 except Exception, X:\r
654 EdkLogger.error("GenFw", COMMAND_FAILURE, ExtraData="%s: %s" % (str(X), cmd[0]))\r
655 EndOfProcedure = threading.Event()\r
656 EndOfProcedure.clear()\r
657 if PopenObject.stderr:\r
658 StdErrThread = threading.Thread(target=ReadMessage, args=(PopenObject.stderr, EdkLogger.quiet, EndOfProcedure))\r
659 StdErrThread.setName("STDERR-Redirector")\r
660 StdErrThread.setDaemon(False)\r
661 StdErrThread.start()\r
662 # waiting for program exit\r
663 PopenObject.wait()\r
664 if PopenObject.stderr:\r
665 StdErrThread.join()\r
666 if PopenObject.returncode != 0:\r
667 EdkLogger.error("GenFw", COMMAND_FAILURE, "Failed to generate firmware hash image for %s" % (DefaultEFIfile))\r
668 if os.path.isfile(Tempfile):\r
669 self.Hash = hashlib.sha1()\r
670 buf = open(Tempfile, 'rb').read()\r
671 if self.Hash.update(buf):\r
672 self.Hash = self.Hash.update(buf)\r
673 self.Hash = self.Hash.hexdigest()\r
674 os.remove(Tempfile)\r
675\r
52302d4d
LG
676 FileWrite(File, "Module Summary")\r
677 FileWrite(File, "Module Name: %s" % self.ModuleName)\r
678 FileWrite(File, "Module INF Path: %s" % self.ModuleInfPath)\r
679 FileWrite(File, "File GUID: %s" % self.FileGuid)\r
680 if self.Size:\r
681 FileWrite(File, "Size: 0x%X (%.2fK)" % (self.Size, self.Size / 1024.0))\r
eca5be7a
YZ
682 if self.Hash:\r
683 FileWrite(File, "SHA1 HASH: %s *%s" % (self.Hash, self.ModuleName + ".efi"))\r
52302d4d
LG
684 if self.BuildTimeStamp:\r
685 FileWrite(File, "Build Time Stamp: %s" % self.BuildTimeStamp)\r
1b8eca8b
YZ
686 if self.BuildTime:\r
687 FileWrite(File, "Module Build Time: %s" % self.BuildTime)\r
52302d4d
LG
688 if self.DriverType:\r
689 FileWrite(File, "Driver Type: %s" % self.DriverType)\r
690 if self.UefiSpecVersion:\r
691 FileWrite(File, "UEFI Spec Version: %s" % self.UefiSpecVersion)\r
692 if self.PiSpecVersion:\r
693 FileWrite(File, "PI Spec Version: %s" % self.PiSpecVersion)\r
694 if self.PciDeviceId:\r
695 FileWrite(File, "PCI Device ID: %s" % self.PciDeviceId)\r
696 if self.PciVendorId:\r
697 FileWrite(File, "PCI Vendor ID: %s" % self.PciVendorId)\r
698 if self.PciClassCode:\r
699 FileWrite(File, "PCI Class Code: %s" % self.PciClassCode)\r
700\r
701 FileWrite(File, gSectionSep)\r
702\r
703 if "PCD" in ReportType:\r
704 GlobalPcdReport.GenerateReport(File, self.ModulePcdSet)\r
705\r
706 if "LIBRARY" in ReportType:\r
707 self.LibraryReport.GenerateReport(File)\r
708\r
709 if "DEPEX" in ReportType:\r
e56468c0 710 self.DepexReport.GenerateReport(File, GlobalDepexParser)\r
52302d4d
LG
711\r
712 if "BUILD_FLAGS" in ReportType:\r
713 self.BuildFlagsReport.GenerateReport(File)\r
714\r
715 if "FIXED_ADDRESS" in ReportType and self.FileGuid:\r
716 GlobalPredictionReport.GenerateReport(File, self.FileGuid)\r
717\r
718 FileWrite(File, gSectionEnd)\r
719\r
eca5be7a
YZ
720def ReadMessage(From, To, ExitFlag):\r
721 while True:\r
722 # read one line a time\r
723 Line = From.readline()\r
724 # empty string means "end"\r
725 if Line != None and Line != "":\r
726 To(Line.rstrip())\r
727 else:\r
728 break\r
729 if ExitFlag.isSet():\r
730 break\r
731\r
52302d4d
LG
732##\r
733# Reports platform and module PCD information\r
734#\r
735# This class reports the platform PCD section and module PCD subsection\r
736# in the build report file.\r
737#\r
738class PcdReport(object):\r
739 ##\r
740 # Constructor function for class PcdReport\r
741 #\r
742 # This constructor function generates PcdReport object a platform build.\r
743 # It collects the whole PCD database from platform DSC files, platform\r
744 # flash description file and package DEC files.\r
745 #\r
746 # @param self The object pointer\r
747 # @param Wa Workspace context information\r
748 #\r
749 def __init__(self, Wa):\r
750 self.AllPcds = {}\r
c8d07c5e
YZ
751 self.UnusedPcds = {}\r
752 self.ConditionalPcds = {}\r
52302d4d 753 self.MaxLen = 0\r
e651d06c 754 self.Arch = None\r
52302d4d
LG
755 if Wa.FdfProfile:\r
756 self.FdfPcdSet = Wa.FdfProfile.PcdDict\r
757 else:\r
758 self.FdfPcdSet = {}\r
759\r
779ddcdf
YZ
760 self.DefaultStoreSingle = True\r
761 self.SkuSingle = True\r
762 if GlobalData.gDefaultStores and len(GlobalData.gDefaultStores) > 1:\r
763 self.DefaultStoreSingle = False\r
764 if GlobalData.gSkuids and len(GlobalData.gSkuids) > 1:\r
765 self.SkuSingle = False\r
766\r
52302d4d
LG
767 self.ModulePcdOverride = {}\r
768 for Pa in Wa.AutoGenObjectList:\r
e651d06c 769 self.Arch = Pa.Arch\r
52302d4d
LG
770 #\r
771 # Collect all platform referenced PCDs and grouped them by PCD token space\r
772 # GUID C Names\r
773 #\r
774 for Pcd in Pa.AllPcdList:\r
775 PcdList = self.AllPcds.setdefault(Pcd.TokenSpaceGuidCName, {}).setdefault(Pcd.Type, [])\r
776 if Pcd not in PcdList:\r
777 PcdList.append(Pcd)\r
778 if len(Pcd.TokenCName) > self.MaxLen:\r
779 self.MaxLen = len(Pcd.TokenCName)\r
c8d07c5e
YZ
780 #\r
781 # Collect the PCD defined in DSC/FDF file, but not used in module\r
782 #\r
783 UnusedPcdFullList = []\r
784 for item in Pa.Platform.Pcds:\r
785 Pcd = Pa.Platform.Pcds[item]\r
c65df5d9
YZ
786 if not Pcd.Type:\r
787 # check the Pcd in FDF file, whether it is used in module first\r
788 for T in ["FixedAtBuild", "PatchableInModule", "FeatureFlag", "Dynamic", "DynamicEx"]:\r
789 PcdList = self.AllPcds.setdefault(Pcd.TokenSpaceGuidCName, {}).setdefault(T, [])\r
790 if Pcd in PcdList:\r
791 Pcd.Type = T\r
792 break\r
c8d07c5e
YZ
793 if not Pcd.Type:\r
794 PcdTypeFlag = False\r
795 for package in Pa.PackageList:\r
796 for T in ["FixedAtBuild", "PatchableInModule", "FeatureFlag", "Dynamic", "DynamicEx"]:\r
797 if (Pcd.TokenCName, Pcd.TokenSpaceGuidCName, T) in package.Pcds:\r
798 Pcd.Type = T\r
799 PcdTypeFlag = True\r
800 if not Pcd.DatumType:\r
801 Pcd.DatumType = package.Pcds[(Pcd.TokenCName, Pcd.TokenSpaceGuidCName, T)].DatumType\r
802 break\r
803 if PcdTypeFlag:\r
804 break\r
805 if not Pcd.DatumType:\r
806 PcdType = Pcd.Type\r
807 # Try to remove Hii and Vpd suffix\r
808 if PcdType.startswith("DynamicEx"):\r
809 PcdType = "DynamicEx"\r
810 elif PcdType.startswith("Dynamic"):\r
811 PcdType = "Dynamic"\r
812 for package in Pa.PackageList:\r
813 if (Pcd.TokenCName, Pcd.TokenSpaceGuidCName, PcdType) in package.Pcds:\r
814 Pcd.DatumType = package.Pcds[(Pcd.TokenCName, Pcd.TokenSpaceGuidCName, PcdType)].DatumType\r
815 break\r
816\r
817 PcdList = self.AllPcds.setdefault(Pcd.TokenSpaceGuidCName, {}).setdefault(Pcd.Type, [])\r
818 if Pcd not in PcdList and Pcd not in UnusedPcdFullList:\r
819 UnusedPcdFullList.append(Pcd)\r
820 if len(Pcd.TokenCName) > self.MaxLen:\r
821 self.MaxLen = len(Pcd.TokenCName)\r
822\r
823 if GlobalData.gConditionalPcds:\r
824 for PcdItem in GlobalData.gConditionalPcds:\r
825 if '.' in PcdItem:\r
826 (TokenSpaceGuidCName, TokenCName) = PcdItem.split('.')\r
827 if (TokenCName, TokenSpaceGuidCName) in Pa.Platform.Pcds.keys():\r
828 Pcd = Pa.Platform.Pcds[(TokenCName, TokenSpaceGuidCName)]\r
829 PcdList = self.ConditionalPcds.setdefault(Pcd.TokenSpaceGuidCName, {}).setdefault(Pcd.Type, [])\r
830 if Pcd not in PcdList:\r
831 PcdList.append(Pcd)\r
832\r
833 UnusedPcdList = []\r
834 if UnusedPcdFullList:\r
835 for Pcd in UnusedPcdFullList:\r
836 if Pcd.TokenSpaceGuidCName + '.' + Pcd.TokenCName in GlobalData.gConditionalPcds:\r
837 continue\r
838 UnusedPcdList.append(Pcd)\r
839\r
840 for Pcd in UnusedPcdList:\r
841 PcdList = self.UnusedPcds.setdefault(Pcd.TokenSpaceGuidCName, {}).setdefault(Pcd.Type, [])\r
842 if Pcd not in PcdList:\r
843 PcdList.append(Pcd)\r
52302d4d
LG
844\r
845 for Module in Pa.Platform.Modules.values():\r
846 #\r
847 # Collect module override PCDs\r
848 #\r
849 for ModulePcd in Module.M.ModulePcdList + Module.M.LibraryPcdList:\r
850 TokenCName = ModulePcd.TokenCName\r
851 TokenSpaceGuid = ModulePcd.TokenSpaceGuidCName\r
852 ModuleDefault = ModulePcd.DefaultValue\r
853 ModulePath = os.path.basename(Module.M.MetaFile.File)\r
854 self.ModulePcdOverride.setdefault((TokenCName, TokenSpaceGuid), {})[ModulePath] = ModuleDefault\r
855\r
856\r
857 #\r
858 # Collect PCD DEC default value.\r
859 #\r
860 self.DecPcdDefault = {}\r
726c501c 861 self._GuidDict = {}\r
0d2711a6
LG
862 for Pa in Wa.AutoGenObjectList:\r
863 for Package in Pa.PackageList:\r
726c501c
YZ
864 Guids = Package.Guids\r
865 self._GuidDict.update(Guids)\r
0d2711a6
LG
866 for (TokenCName, TokenSpaceGuidCName, DecType) in Package.Pcds:\r
867 DecDefaultValue = Package.Pcds[TokenCName, TokenSpaceGuidCName, DecType].DefaultValue\r
868 self.DecPcdDefault.setdefault((TokenCName, TokenSpaceGuidCName, DecType), DecDefaultValue)\r
52302d4d
LG
869 #\r
870 # Collect PCDs defined in DSC common section\r
871 #\r
872 self.DscPcdDefault = {}\r
e651d06c
LG
873 for Pa in Wa.AutoGenObjectList:\r
874 for (TokenCName, TokenSpaceGuidCName) in Pa.Platform.Pcds:\r
643e8e4b 875 DscDefaultValue = Pa.Platform.Pcds[(TokenCName, TokenSpaceGuidCName)].DscDefaultValue\r
40d841f6
LG
876 if DscDefaultValue:\r
877 self.DscPcdDefault[(TokenCName, TokenSpaceGuidCName)] = DscDefaultValue\r
52302d4d 878\r
c8d07c5e
YZ
879 def GenerateReport(self, File, ModulePcdSet):\r
880 if self.ConditionalPcds:\r
881 self.GenerateReportDetail(File, ModulePcdSet, 1)\r
882 if self.UnusedPcds:\r
883 self.GenerateReportDetail(File, ModulePcdSet, 2)\r
884 self.GenerateReportDetail(File, ModulePcdSet)\r
885\r
52302d4d
LG
886 ##\r
887 # Generate report for PCD information\r
888 #\r
889 # This function generates report for separate module expression\r
890 # in a platform build.\r
891 #\r
892 # @param self The object pointer\r
893 # @param File The file object for report\r
894 # @param ModulePcdSet Set of all PCDs referenced by module or None for\r
895 # platform PCD report\r
c8d07c5e
YZ
896 # @param ReportySubType 0 means platform/module PCD report, 1 means Conditional\r
897 # directives section report, 2 means Unused Pcds section report\r
52302d4d
LG
898 # @param DscOverridePcds Module DSC override PCDs set\r
899 #\r
c8d07c5e
YZ
900 def GenerateReportDetail(self, File, ModulePcdSet, ReportSubType = 0):\r
901 PcdDict = self.AllPcds\r
902 if ReportSubType == 1:\r
903 PcdDict = self.ConditionalPcds\r
904 elif ReportSubType == 2:\r
905 PcdDict = self.UnusedPcds\r
906\r
52302d4d 907 if ModulePcdSet == None:\r
52302d4d 908 FileWrite(File, gSectionStart)\r
c8d07c5e
YZ
909 if ReportSubType == 1:\r
910 FileWrite(File, "Conditional Directives used by the build system")\r
911 elif ReportSubType == 2:\r
912 FileWrite(File, "PCDs not used by modules or in conditional directives")\r
913 else:\r
914 FileWrite(File, "Platform Configuration Database Report")\r
915\r
763e8edf 916 FileWrite(File, " *B - PCD override in the build option")\r
52302d4d
LG
917 FileWrite(File, " *P - Platform scoped PCD override in DSC file")\r
918 FileWrite(File, " *F - Platform scoped PCD override in FDF file")\r
c8d07c5e
YZ
919 if not ReportSubType:\r
920 FileWrite(File, " *M - Module scoped PCD override")\r
52302d4d
LG
921 FileWrite(File, gSectionSep)\r
922 else:\r
c2d0a1f6 923 if not ReportSubType and ModulePcdSet:\r
c8d07c5e
YZ
924 #\r
925 # For module PCD sub-section\r
926 #\r
927 FileWrite(File, gSubSectionStart)\r
928 FileWrite(File, TAB_BRG_PCD)\r
929 FileWrite(File, gSubSectionSep)\r
52302d4d 930\r
c8d07c5e 931 for Key in PcdDict:\r
52302d4d
LG
932 #\r
933 # Group PCD by their token space GUID C Name\r
934 #\r
935 First = True\r
c8d07c5e 936 for Type in PcdDict[Key]:\r
52302d4d
LG
937 #\r
938 # Group PCD by their usage type\r
939 #\r
940 TypeName, DecType = gPcdTypeMap.get(Type, ("", Type))\r
c8d07c5e 941 for Pcd in PcdDict[Key][Type]:\r
7cb63c87
YZ
942 PcdTokenCName = Pcd.TokenCName\r
943 MixedPcdFlag = False\r
944 if GlobalData.MixedPcd:\r
945 for PcdKey in GlobalData.MixedPcd:\r
946 if (Pcd.TokenCName, Pcd.TokenSpaceGuidCName) in GlobalData.MixedPcd[PcdKey]:\r
947 PcdTokenCName = PcdKey[0]\r
948 MixedPcdFlag = True\r
949 if MixedPcdFlag and not ModulePcdSet:\r
950 continue\r
52302d4d
LG
951 #\r
952 # Get PCD default value and their override relationship\r
953 #\r
954 DecDefaultValue = self.DecPcdDefault.get((Pcd.TokenCName, Pcd.TokenSpaceGuidCName, DecType))\r
955 DscDefaultValue = self.DscPcdDefault.get((Pcd.TokenCName, Pcd.TokenSpaceGuidCName))\r
a676a246 956 DscDefaultValBak = DscDefaultValue\r
52302d4d 957 DscDefaultValue = self.FdfPcdSet.get((Pcd.TokenCName, Key), DscDefaultValue)\r
a676a246 958 if DscDefaultValue != DscDefaultValBak:\r
35f613d9
YF
959 try:\r
960 DscDefaultValue = ValueExpressionEx(DscDefaultValue, Pcd.DatumType, self._GuidDict)(True)\r
961 except BadExpression, Value:\r
962 EdkLogger.error('BuildReport', FORMAT_INVALID, "PCD Value: %s, Type: %s" %(DscDefaultValue, Pcd.DatumType))\r
963\r
52302d4d
LG
964 InfDefaultValue = None\r
965 \r
966 PcdValue = DecDefaultValue\r
967 if DscDefaultValue:\r
968 PcdValue = DscDefaultValue\r
969 if ModulePcdSet != None:\r
970 if (Pcd.TokenCName, Pcd.TokenSpaceGuidCName, Type) not in ModulePcdSet:\r
971 continue\r
972 InfDefault, PcdValue = ModulePcdSet[Pcd.TokenCName, Pcd.TokenSpaceGuidCName, Type]\r
973 if InfDefault == "":\r
974 InfDefault = None\r
763e8edf
YZ
975\r
976 BuildOptionMatch = False\r
977 if GlobalData.BuildOptionPcd:\r
978 for pcd in GlobalData.BuildOptionPcd:\r
979 if (Pcd.TokenSpaceGuidCName, Pcd.TokenCName) == (pcd[0], pcd[1]):\r
980 PcdValue = pcd[2]\r
981 BuildOptionMatch = True\r
982 break\r
983\r
52302d4d
LG
984 if First:\r
985 if ModulePcdSet == None:\r
986 FileWrite(File, "")\r
987 FileWrite(File, Key)\r
988 First = False\r
989\r
990\r
991 if Pcd.DatumType in ('UINT8', 'UINT16', 'UINT32', 'UINT64'):\r
992 PcdValueNumber = int(PcdValue.strip(), 0)\r
993 if DecDefaultValue == None:\r
994 DecMatch = True\r
995 else:\r
996 DecDefaultValueNumber = int(DecDefaultValue.strip(), 0)\r
997 DecMatch = (DecDefaultValueNumber == PcdValueNumber)\r
998\r
999 if InfDefaultValue == None:\r
1000 InfMatch = True\r
1001 else:\r
1002 InfDefaultValueNumber = int(InfDefaultValue.strip(), 0)\r
1003 InfMatch = (InfDefaultValueNumber == PcdValueNumber)\r
1004\r
1005 if DscDefaultValue == None:\r
1006 DscMatch = True\r
1007 else:\r
1008 DscDefaultValueNumber = int(DscDefaultValue.strip(), 0)\r
1009 DscMatch = (DscDefaultValueNumber == PcdValueNumber)\r
1010 else:\r
1011 if DecDefaultValue == None:\r
1012 DecMatch = True\r
1013 else:\r
d5d56f1b 1014 DecMatch = (DecDefaultValue.strip() == PcdValue.strip())\r
52302d4d
LG
1015\r
1016 if InfDefaultValue == None:\r
1017 InfMatch = True\r
1018 else:\r
d5d56f1b 1019 InfMatch = (InfDefaultValue.strip() == PcdValue.strip())\r
52302d4d
LG
1020\r
1021 if DscDefaultValue == None:\r
1022 DscMatch = True\r
1023 else:\r
d5d56f1b 1024 DscMatch = (DscDefaultValue.strip() == PcdValue.strip())\r
52302d4d 1025\r
e651d06c
LG
1026 IsStructure = False\r
1027 if GlobalData.gStructurePcd and (self.Arch in GlobalData.gStructurePcd.keys()) and ((Pcd.TokenCName, Pcd.TokenSpaceGuidCName) in GlobalData.gStructurePcd[self.Arch]):\r
1028 IsStructure = True\r
1029 if TypeName in ('DYNVPD', 'DEXVPD'):\r
1030 SkuInfoList = Pcd.SkuInfoList\r
1031 Pcd = GlobalData.gStructurePcd[self.Arch][(Pcd.TokenCName, Pcd.TokenSpaceGuidCName)]\r
1032 Pcd.DatumType = Pcd.StructName\r
1033 if TypeName in ('DYNVPD', 'DEXVPD'):\r
1034 Pcd.SkuInfoList = SkuInfoList\r
65eff519 1035 if Pcd.SkuOverrideValues:\r
e651d06c
LG
1036 DscMatch = True\r
1037 DecMatch = False\r
52302d4d
LG
1038 #\r
1039 # Report PCD item according to their override relationship\r
1040 #\r
0e6be43f 1041 if DecMatch and InfMatch:\r
643e8e4b 1042 self.PrintPcdValue(File, Pcd, PcdTokenCName, TypeName, IsStructure, DscMatch, DscDefaultValBak, InfMatch, InfDefaultValue, DecMatch, DecDefaultValue, ' ')\r
0e6be43f 1043 elif BuildOptionMatch:\r
643e8e4b 1044 self.PrintPcdValue(File, Pcd, PcdTokenCName, TypeName, IsStructure, DscMatch, DscDefaultValBak, InfMatch, InfDefaultValue, DecMatch, DecDefaultValue, '*B')\r
52302d4d
LG
1045 else:\r
1046 if DscMatch:\r
1047 if (Pcd.TokenCName, Key) in self.FdfPcdSet:\r
643e8e4b 1048 self.PrintPcdValue(File, Pcd, PcdTokenCName, TypeName, IsStructure, DscMatch, DscDefaultValBak, InfMatch, InfDefaultValue, DecMatch, DecDefaultValue, '*F')\r
52302d4d 1049 else:\r
643e8e4b 1050 self.PrintPcdValue(File, Pcd, PcdTokenCName, TypeName, IsStructure, DscMatch, DscDefaultValBak, InfMatch, InfDefaultValue, DecMatch, DecDefaultValue, '*P')\r
52302d4d 1051 else:\r
643e8e4b 1052 self.PrintPcdValue(File, Pcd, PcdTokenCName, TypeName, IsStructure, DscMatch, DscDefaultValBak, InfMatch, InfDefaultValue, DecMatch, DecDefaultValue, '*M')\r
52302d4d
LG
1053\r
1054 if ModulePcdSet == None:\r
e651d06c
LG
1055 if IsStructure:\r
1056 continue\r
1057 if not TypeName in ('PATCH', 'FLAG', 'FIXED'):\r
1058 continue\r
763e8edf
YZ
1059 if not BuildOptionMatch:\r
1060 ModuleOverride = self.ModulePcdOverride.get((Pcd.TokenCName, Pcd.TokenSpaceGuidCName), {})\r
1061 for ModulePath in ModuleOverride:\r
1062 ModuleDefault = ModuleOverride[ModulePath]\r
1063 if Pcd.DatumType in ('UINT8', 'UINT16', 'UINT32', 'UINT64'):\r
1064 ModulePcdDefaultValueNumber = int(ModuleDefault.strip(), 0)\r
1065 Match = (ModulePcdDefaultValueNumber == PcdValueNumber)\r
1066 else:\r
1067 Match = (ModuleDefault.strip() == PcdValue.strip())\r
1068 if Match:\r
1069 continue\r
e651d06c
LG
1070 IsByteArray, ArrayList = ByteArrayForamt(ModuleDefault.strip())\r
1071 if IsByteArray:\r
1072 FileWrite(File, ' *M %-*s = %s' % (self.MaxLen + 19, ModulePath, '{'))\r
1073 for Array in ArrayList:\r
1074 FileWrite(File, '%s' % (Array))\r
1075 else:\r
1076 FileWrite(File, ' *M %-*s = %s' % (self.MaxLen + 19, ModulePath, ModuleDefault.strip()))\r
52302d4d
LG
1077\r
1078 if ModulePcdSet == None:\r
1079 FileWrite(File, gSectionEnd)\r
1080 else:\r
c2d0a1f6 1081 if not ReportSubType and ModulePcdSet:\r
c8d07c5e 1082 FileWrite(File, gSubSectionEnd)\r
52302d4d
LG
1083\r
1084\r
e651d06c
LG
1085 def PrintPcdDefault(self, File, Pcd, IsStructure, DscMatch, DscDefaultValue, InfMatch, InfDefaultValue, DecMatch, DecDefaultValue):\r
1086 if not DscMatch and DscDefaultValue != None:\r
1087 Value = DscDefaultValue.strip()\r
1088 IsByteArray, ArrayList = ByteArrayForamt(Value)\r
1089 if IsByteArray:\r
1090 FileWrite(File, ' %*s = %s' % (self.MaxLen + 19, 'DSC DEFAULT', "{"))\r
1091 for Array in ArrayList:\r
1092 FileWrite(File, '%s' % (Array))\r
1093 else:\r
1094 FileWrite(File, ' %*s = %s' % (self.MaxLen + 19, 'DSC DEFAULT', Value))\r
1095 if not InfMatch and InfDefaultValue != None:\r
1096 Value = InfDefaultValue.strip()\r
1097 IsByteArray, ArrayList = ByteArrayForamt(Value)\r
1098 if IsByteArray:\r
1099 FileWrite(File, ' %*s = %s' % (self.MaxLen + 19, 'INF DEFAULT', "{"))\r
1100 for Array in ArrayList:\r
1101 FileWrite(File, '%s' % (Array))\r
1102 else:\r
1103 FileWrite(File, ' %*s = %s' % (self.MaxLen + 19, 'INF DEFAULT', Value))\r
1104\r
1105 if not DecMatch and DecDefaultValue != None:\r
1106 Value = DecDefaultValue.strip()\r
1107 IsByteArray, ArrayList = ByteArrayForamt(Value)\r
1108 if IsByteArray:\r
1109 FileWrite(File, ' %*s = %s' % (self.MaxLen + 19, 'DEC DEFAULT', "{"))\r
1110 for Array in ArrayList:\r
1111 FileWrite(File, '%s' % (Array))\r
1112 else:\r
1113 FileWrite(File, ' %*s = %s' % (self.MaxLen + 19, 'DEC DEFAULT', Value))\r
1114 if IsStructure:\r
1115 self.PrintStructureInfo(File, Pcd.DefaultValues)\r
1116\r
1117 def PrintPcdValue(self, File, Pcd, PcdTokenCName, TypeName, IsStructure, DscMatch, DscDefaultValue, InfMatch, InfDefaultValue, DecMatch, DecDefaultValue, Flag = ' '):\r
1118 if not Pcd.SkuInfoList:\r
1119 Value = Pcd.DefaultValue\r
1120 IsByteArray, ArrayList = ByteArrayForamt(Value)\r
1121 if IsByteArray:\r
1122 FileWrite(File, ' %-*s : %6s %10s = %s' % (self.MaxLen, Flag + ' ' + PcdTokenCName, TypeName, '(' + Pcd.DatumType + ')', '{'))\r
1123 for Array in ArrayList:\r
1124 FileWrite(File, '%s' % (Array))\r
1125 else:\r
1126 FileWrite(File, ' %-*s : %6s %10s = %s' % (self.MaxLen, Flag + ' ' + PcdTokenCName, TypeName, '(' + Pcd.DatumType + ')', Value))\r
1127 if IsStructure:\r
65eff519 1128 OverrideValues = Pcd.SkuOverrideValues\r
e651d06c
LG
1129 if OverrideValues:\r
1130 Keys = OverrideValues.keys()\r
1131 Data = OverrideValues[Keys[0]]\r
1132 Struct = Data.values()[0]\r
1133 self.PrintStructureInfo(File, Struct)\r
1134 self.PrintPcdDefault(File, Pcd, IsStructure, DscMatch, DscDefaultValue, InfMatch, InfDefaultValue, DecMatch, DecDefaultValue)\r
1135 else:\r
1136 FirstPrint = True\r
1137 SkuList = sorted(Pcd.SkuInfoList.keys())\r
1138 for Sku in SkuList:\r
1139 SkuInfo = Pcd.SkuInfoList[Sku]\r
779ddcdf 1140 SkuIdName = SkuInfo.SkuIdName\r
e651d06c
LG
1141 if TypeName in ('DYNHII', 'DEXHII'):\r
1142 if SkuInfo.DefaultStoreDict:\r
1143 DefaultStoreList = sorted(SkuInfo.DefaultStoreDict.keys())\r
1144 for DefaultStore in DefaultStoreList:\r
1145 Value = SkuInfo.DefaultStoreDict[DefaultStore]\r
1146 IsByteArray, ArrayList = ByteArrayForamt(Value)\r
1147 if FirstPrint:\r
1148 FirstPrint = False\r
1149 if IsByteArray:\r
779ddcdf
YZ
1150 if self.DefaultStoreSingle and self.SkuSingle:\r
1151 FileWrite(File, ' %-*s : %6s %10s = %s' % (self.MaxLen, Flag + ' ' + PcdTokenCName, TypeName, '(' + Pcd.DatumType + ')', '{'))\r
1152 elif self.DefaultStoreSingle and not self.SkuSingle:\r
1153 FileWrite(File, ' %-*s : %6s %10s %10s = %s' % (self.MaxLen, Flag + ' ' + PcdTokenCName, TypeName, '(' + Pcd.DatumType + ')', '(' + SkuIdName + ')', '{'))\r
1154 elif not self.DefaultStoreSingle and self.SkuSingle:\r
1155 FileWrite(File, ' %-*s : %6s %10s %10s = %s' % (self.MaxLen, Flag + ' ' + PcdTokenCName, TypeName, '(' + Pcd.DatumType + ')', '(' + DefaultStore + ')', '{'))\r
1156 else:\r
1157 FileWrite(File, ' %-*s : %6s %10s %10s %10s = %s' % (self.MaxLen, Flag + ' ' + PcdTokenCName, TypeName, '(' + Pcd.DatumType + ')', '(' + SkuIdName + ')', '(' + DefaultStore + ')', '{'))\r
e651d06c
LG
1158 for Array in ArrayList:\r
1159 FileWrite(File, '%s' % (Array))\r
1160 else:\r
779ddcdf
YZ
1161 if self.DefaultStoreSingle and self.SkuSingle:\r
1162 FileWrite(File, ' %-*s : %6s %10s = %s' % (self.MaxLen, Flag + ' ' + PcdTokenCName, TypeName, '(' + Pcd.DatumType + ')', Value))\r
1163 elif self.DefaultStoreSingle and not self.SkuSingle:\r
1164 FileWrite(File, ' %-*s : %6s %10s %10s = %s' % (self.MaxLen, Flag + ' ' + PcdTokenCName, TypeName, '(' + Pcd.DatumType + ')', '(' + SkuIdName + ')', Value))\r
1165 elif not self.DefaultStoreSingle and self.SkuSingle:\r
1166 FileWrite(File, ' %-*s : %6s %10s %10s = %s' % (self.MaxLen, Flag + ' ' + PcdTokenCName, TypeName, '(' + Pcd.DatumType + ')', '(' + DefaultStore + ')', Value))\r
1167 else:\r
1168 FileWrite(File, ' %-*s : %6s %10s %10s %10s = %s' % (self.MaxLen, Flag + ' ' + PcdTokenCName, TypeName, '(' + Pcd.DatumType + ')', '(' + SkuIdName + ')', '(' + DefaultStore + ')', Value))\r
e651d06c
LG
1169 else:\r
1170 if IsByteArray:\r
779ddcdf
YZ
1171 if self.DefaultStoreSingle and self.SkuSingle:\r
1172 FileWrite(File, ' %-*s : %6s %10s = %s' % (self.MaxLen, ' ', TypeName, '(' + Pcd.DatumType + ')', '{'))\r
1173 elif self.DefaultStoreSingle and not self.SkuSingle:\r
1174 FileWrite(File, ' %-*s : %6s %10s %10s = %s' % (self.MaxLen, ' ', TypeName, '(' + Pcd.DatumType + ')', '(' + SkuIdName + ')', '{'))\r
1175 elif not self.DefaultStoreSingle and self.SkuSingle:\r
1176 FileWrite(File, ' %-*s : %6s %10s %10s = %s' % (self.MaxLen, ' ', TypeName, '(' + Pcd.DatumType + ')', '(' + DefaultStore + ')', '{'))\r
1177 else:\r
1178 FileWrite(File, ' %-*s : %6s %10s %10s %10s = %s' % (self.MaxLen, ' ', TypeName, '(' + Pcd.DatumType + ')', '(' + SkuIdName + ')', '(' + DefaultStore + ')', '{'))\r
e651d06c
LG
1179 for Array in ArrayList:\r
1180 FileWrite(File, '%s' % (Array))\r
1181 else:\r
779ddcdf
YZ
1182 if self.DefaultStoreSingle and self.SkuSingle:\r
1183 FileWrite(File, ' %-*s : %6s %10s = %s' % (self.MaxLen, ' ', TypeName, '(' + Pcd.DatumType + ')', Value))\r
1184 elif self.DefaultStoreSingle and not self.SkuSingle:\r
1185 FileWrite(File, ' %-*s : %6s %10s %10s = %s' % (self.MaxLen, ' ', TypeName, '(' + Pcd.DatumType + ')', '(' + SkuIdName + ')', Value))\r
1186 elif not self.DefaultStoreSingle and self.SkuSingle:\r
1187 FileWrite(File, ' %-*s : %6s %10s %10s = %s' % (self.MaxLen, ' ', TypeName, '(' + Pcd.DatumType + ')', '(' + DefaultStore + ')', Value))\r
1188 else:\r
1189 FileWrite(File, ' %-*s : %6s %10s %10s %10s = %s' % (self.MaxLen, ' ', TypeName, '(' + Pcd.DatumType + ')', '(' + SkuIdName + ')', '(' + DefaultStore + ')', Value))\r
e651d06c
LG
1190 FileWrite(File, '%*s: %s: %s' % (self.MaxLen + 4, SkuInfo.VariableGuid, SkuInfo.VariableName, SkuInfo.VariableOffset))\r
1191 if IsStructure:\r
65eff519 1192 OverrideValues = Pcd.SkuOverrideValues[Sku]\r
e651d06c
LG
1193 Struct = OverrideValues[DefaultStore]\r
1194 self.PrintStructureInfo(File, Struct)\r
1195 self.PrintPcdDefault(File, Pcd, IsStructure, DscMatch, DscDefaultValue, InfMatch, InfDefaultValue, DecMatch, DecDefaultValue)\r
e651d06c
LG
1196 else:\r
1197 Value = SkuInfo.DefaultValue\r
1198 IsByteArray, ArrayList = ByteArrayForamt(Value)\r
1199 if FirstPrint:\r
1200 FirstPrint = False\r
1201 if IsByteArray:\r
779ddcdf
YZ
1202 if self.SkuSingle:\r
1203 FileWrite(File, ' %-*s : %6s %10s = %s' % (self.MaxLen, Flag + ' ' + PcdTokenCName, TypeName, '(' + Pcd.DatumType + ')', "{"))\r
1204 else:\r
1205 FileWrite(File, ' %-*s : %6s %10s %10s = %s' % (self.MaxLen, Flag + ' ' + PcdTokenCName, TypeName, '(' + Pcd.DatumType + ')', '(' + SkuIdName + ')', "{"))\r
e651d06c
LG
1206 for Array in ArrayList:\r
1207 FileWrite(File, '%s' % (Array))\r
1208 else:\r
779ddcdf
YZ
1209 if self.SkuSingle:\r
1210 FileWrite(File, ' %-*s : %6s %10s = %s' % (self.MaxLen, Flag + ' ' + PcdTokenCName, TypeName, '(' + Pcd.DatumType + ')', Value))\r
1211 else:\r
1212 FileWrite(File, ' %-*s : %6s %10s %10s = %s' % (self.MaxLen, Flag + ' ' + PcdTokenCName, TypeName, '(' + Pcd.DatumType + ')', '(' + SkuIdName + ')', Value))\r
e651d06c
LG
1213 else:\r
1214 if IsByteArray:\r
779ddcdf
YZ
1215 if self.SkuSingle:\r
1216 FileWrite(File, ' %-*s : %6s %10s = %s' % (self.MaxLen, ' ' , TypeName, '(' + Pcd.DatumType + ')', "{"))\r
1217 else:\r
1218 FileWrite(File, ' %-*s : %6s %10s %10s = %s' % (self.MaxLen, ' ' , TypeName, '(' + Pcd.DatumType + ')', '(' + SkuIdName + ')', "{"))\r
e651d06c
LG
1219 for Array in ArrayList:\r
1220 FileWrite(File, '%s' % (Array))\r
1221 else:\r
779ddcdf
YZ
1222 if self.SkuSingle:\r
1223 FileWrite(File, ' %-*s : %6s %10s = %s' % (self.MaxLen, ' ' , TypeName, '(' + Pcd.DatumType + ')', Value))\r
1224 else:\r
1225 FileWrite(File, ' %-*s : %6s %10s %10s = %s' % (self.MaxLen, ' ' , TypeName, '(' + Pcd.DatumType + ')', '(' + SkuIdName + ')', Value))\r
1226 if TypeName in ('DYNVPD', 'DEXVPD'):\r
1227 FileWrite(File, '%*s' % (self.MaxLen + 4, SkuInfo.VpdOffset))\r
e651d06c 1228 if IsStructure:\r
65eff519 1229 OverrideValues = Pcd.SkuOverrideValues[Sku]\r
e651d06c
LG
1230 if OverrideValues:\r
1231 Keys = OverrideValues.keys()\r
1232 Struct = OverrideValues[Keys[0]]\r
1233 self.PrintStructureInfo(File, Struct)\r
1234 self.PrintPcdDefault(File, Pcd, IsStructure, DscMatch, DscDefaultValue, InfMatch, InfDefaultValue, DecMatch, DecDefaultValue)\r
1235\r
1236 def PrintStructureInfo(self, File, Struct):\r
1237 NewInfo = collections.OrderedDict()\r
1238 for Key, Value in Struct.items():\r
f440f7e3
YZ
1239 if Value[1] and 'build command options' in Value[1]:\r
1240 FileWrite(File, ' *B %-*s = %s' % (self.MaxLen + 4, '.' + Key, Value[0]))\r
e651d06c 1241 else:\r
f440f7e3 1242 FileWrite(File, ' %-*s = %s' % (self.MaxLen + 4, '.' + Key, Value[0]))\r
e651d06c
LG
1243\r
1244 def StrtoHex(self, value):\r
1245 try:\r
1246 value = hex(int(value))\r
1247 return value\r
1248 except:\r
1249 if value.startswith("L\"") and value.endswith("\""):\r
1250 valuelist = []\r
1251 for ch in value[2:-1]:\r
1252 valuelist.append(hex(ord(ch)))\r
1253 valuelist.append('0x00')\r
1254 return valuelist\r
1255 elif value.startswith("\"") and value.endswith("\""):\r
1256 return hex(ord(value[1:-1]))\r
1257 elif value.startswith("{") and value.endswith("}"):\r
1258 valuelist = []\r
1259 if ',' not in value:\r
1260 return value[1:-1]\r
1261 for ch in value[1:-1].split(','):\r
1262 ch = ch.strip()\r
1263 if ch.startswith('0x') or ch.startswith('0X'):\r
1264 valuelist.append(ch)\r
1265 continue\r
1266 try:\r
1267 valuelist.append(hex(int(ch.strip())))\r
1268 except:\r
1269 pass\r
1270 return valuelist\r
1271 else:\r
1272 return value\r
52302d4d
LG
1273\r
1274##\r
1275# Reports platform and module Prediction information\r
1276#\r
1277# This class reports the platform execution order prediction section and\r
1278# module load fixed address prediction subsection in the build report file.\r
1279#\r
1280class PredictionReport(object):\r
1281 ##\r
1282 # Constructor function for class PredictionReport\r
1283 #\r
1284 # This constructor function generates PredictionReport object for the platform.\r
1285 #\r
1286 # @param self: The object pointer\r
1287 # @param Wa Workspace context information\r
1288 #\r
1289 def __init__(self, Wa):\r
1290 self._MapFileName = os.path.join(Wa.BuildDir, Wa.Name + ".map")\r
1291 self._MapFileParsed = False\r
1292 self._EotToolInvoked = False\r
1293 self._FvDir = Wa.FvDir\r
1294 self._EotDir = Wa.BuildDir\r
1295 self._FfsEntryPoint = {}\r
1296 self._GuidMap = {}\r
1297 self._SourceList = []\r
1298 self.FixedMapDict = {}\r
1299 self.ItemList = []\r
1300 self.MaxLen = 0\r
1301\r
1302 #\r
1303 # Collect all platform reference source files and GUID C Name\r
1304 #\r
1305 for Pa in Wa.AutoGenObjectList:\r
1306 for Module in Pa.LibraryAutoGenList + Pa.ModuleAutoGenList:\r
1307 #\r
40d841f6
LG
1308 # BASE typed modules are EFI agnostic, so we need not scan\r
1309 # their source code to find PPI/Protocol produce or consume\r
1310 # information.\r
1311 #\r
1312 if Module.ModuleType == "BASE":\r
1313 continue\r
1314 #\r
52302d4d
LG
1315 # Add module referenced source files\r
1316 #\r
1317 self._SourceList.append(str(Module))\r
1318 IncludeList = {}\r
1319 for Source in Module.SourceFileList:\r
1320 if os.path.splitext(str(Source))[1].lower() == ".c":\r
1321 self._SourceList.append(" " + str(Source))\r
1322 FindIncludeFiles(Source.Path, Module.IncludePathList, IncludeList)\r
1323 for IncludeFile in IncludeList.values():\r
1324 self._SourceList.append(" " + IncludeFile)\r
1325\r
1326 for Guid in Module.PpiList:\r
1327 self._GuidMap[Guid] = GuidStructureStringToGuidString(Module.PpiList[Guid])\r
1328 for Guid in Module.ProtocolList:\r
1329 self._GuidMap[Guid] = GuidStructureStringToGuidString(Module.ProtocolList[Guid])\r
1330 for Guid in Module.GuidList:\r
1331 self._GuidMap[Guid] = GuidStructureStringToGuidString(Module.GuidList[Guid])\r
1332\r
1333 if Module.Guid and not Module.IsLibrary:\r
1334 EntryPoint = " ".join(Module.Module.ModuleEntryPointList)\r
1335 if int(str(Module.AutoGenVersion), 0) >= 0x00010005:\r
1336 RealEntryPoint = "_ModuleEntryPoint"\r
1337 else:\r
1338 RealEntryPoint = EntryPoint\r
1339 if EntryPoint == "_ModuleEntryPoint":\r
1340 CCFlags = Module.BuildOption.get("CC", {}).get("FLAGS", "")\r
1341 Match = gGlueLibEntryPoint.search(CCFlags)\r
1342 if Match:\r
1343 EntryPoint = Match.group(1)\r
1344\r
1345 self._FfsEntryPoint[Module.Guid.upper()] = (EntryPoint, RealEntryPoint)\r
1346\r
1347\r
1348 #\r
1349 # Collect platform firmware volume list as the input of EOT.\r
1350 #\r
1351 self._FvList = []\r
1352 if Wa.FdfProfile:\r
1353 for Fd in Wa.FdfProfile.FdDict:\r
1354 for FdRegion in Wa.FdfProfile.FdDict[Fd].RegionList:\r
1355 if FdRegion.RegionType != "FV":\r
1356 continue\r
1357 for FvName in FdRegion.RegionDataList:\r
1358 if FvName in self._FvList:\r
1359 continue\r
1360 self._FvList.append(FvName)\r
1361 for Ffs in Wa.FdfProfile.FvDict[FvName.upper()].FfsList:\r
1362 for Section in Ffs.SectionList:\r
1363 try:\r
1364 for FvSection in Section.SectionList:\r
1365 if FvSection.FvName in self._FvList:\r
1366 continue\r
1367 self._FvList.append(FvSection.FvName)\r
1368 except AttributeError:\r
1369 pass\r
1370\r
1371\r
1372 ##\r
1373 # Parse platform fixed address map files\r
1374 #\r
1375 # This function parses the platform final fixed address map file to get\r
1376 # the database of predicted fixed address for module image base, entry point\r
1377 # etc.\r
1378 #\r
1379 # @param self: The object pointer\r
1380 #\r
1381 def _ParseMapFile(self):\r
1382 if self._MapFileParsed:\r
1383 return\r
1384 self._MapFileParsed = True\r
1385 if os.path.isfile(self._MapFileName):\r
1386 try:\r
1387 FileContents = open(self._MapFileName).read()\r
1388 for Match in gMapFileItemPattern.finditer(FileContents):\r
1389 AddressType = Match.group(1)\r
1390 BaseAddress = Match.group(2)\r
1391 EntryPoint = Match.group(3)\r
1392 Guid = Match.group(4).upper()\r
1393 List = self.FixedMapDict.setdefault(Guid, [])\r
1394 List.append((AddressType, BaseAddress, "*I"))\r
1395 List.append((AddressType, EntryPoint, "*E"))\r
1396 except:\r
1397 EdkLogger.warn(None, "Cannot open file to read", self._MapFileName)\r
1398\r
1399 ##\r
1400 # Invokes EOT tool to get the predicted the execution order.\r
1401 #\r
1402 # This function invokes EOT tool to calculate the predicted dispatch order\r
1403 #\r
1404 # @param self: The object pointer\r
1405 #\r
1406 def _InvokeEotTool(self):\r
1407 if self._EotToolInvoked:\r
1408 return\r
1409\r
1410 self._EotToolInvoked = True\r
1411 FvFileList = []\r
1412 for FvName in self._FvList:\r
1413 FvFile = os.path.join(self._FvDir, FvName + ".Fv")\r
1414 if os.path.isfile(FvFile):\r
1415 FvFileList.append(FvFile)\r
1416\r
1417 if len(FvFileList) == 0:\r
1418 return\r
1419 #\r
1420 # Write source file list and GUID file list to an intermediate file\r
1421 # as the input for EOT tool and dispatch List as the output file\r
1422 # from EOT tool.\r
1423 #\r
1424 SourceList = os.path.join(self._EotDir, "SourceFile.txt")\r
1425 GuidList = os.path.join(self._EotDir, "GuidList.txt")\r
1426 DispatchList = os.path.join(self._EotDir, "Dispatch.txt")\r
1427\r
1428 TempFile = open(SourceList, "w+")\r
1429 for Item in self._SourceList:\r
1430 FileWrite(TempFile, Item)\r
1431 TempFile.close()\r
1432 TempFile = open(GuidList, "w+")\r
1433 for Key in self._GuidMap:\r
1434 FileWrite(TempFile, "%s %s" % (Key, self._GuidMap[Key]))\r
1435 TempFile.close()\r
1436\r
1437 try:\r
1438 from Eot.Eot import Eot\r
40d841f6 1439\r
52302d4d 1440 #\r
40d841f6 1441 # Invoke EOT tool and echo its runtime performance\r
52302d4d 1442 #\r
40d841f6 1443 EotStartTime = time.time()\r
52302d4d
LG
1444 Eot(CommandLineOption=False, SourceFileList=SourceList, GuidList=GuidList,\r
1445 FvFileList=' '.join(FvFileList), Dispatch=DispatchList, IsInit=True)\r
40d841f6
LG
1446 EotEndTime = time.time()\r
1447 EotDuration = time.strftime("%H:%M:%S", time.gmtime(int(round(EotEndTime - EotStartTime))))\r
1448 EdkLogger.quiet("EOT run time: %s\n" % EotDuration)\r
1449 \r
52302d4d
LG
1450 #\r
1451 # Parse the output of EOT tool\r
1452 #\r
1453 for Line in open(DispatchList):\r
1454 if len(Line.split()) < 4:\r
1455 continue\r
1456 (Guid, Phase, FfsName, FilePath) = Line.split()\r
1457 Symbol = self._FfsEntryPoint.get(Guid, [FfsName, ""])[0]\r
1458 if len(Symbol) > self.MaxLen:\r
1459 self.MaxLen = len(Symbol)\r
1460 self.ItemList.append((Phase, Symbol, FilePath))\r
1461 except:\r
1462 EdkLogger.quiet("(Python %s on %s\n%s)" % (platform.python_version(), sys.platform, traceback.format_exc()))\r
1463 EdkLogger.warn(None, "Failed to generate execution order prediction report, for some error occurred in executing EOT.")\r
1464\r
1465\r
1466 ##\r
1467 # Generate platform execution order report\r
1468 #\r
1469 # This function generates the predicted module execution order.\r
1470 #\r
1471 # @param self The object pointer\r
1472 # @param File The file object for report\r
1473 #\r
1474 def _GenerateExecutionOrderReport(self, File):\r
1475 self._InvokeEotTool()\r
1476 if len(self.ItemList) == 0:\r
1477 return\r
1478 FileWrite(File, gSectionStart)\r
1479 FileWrite(File, "Execution Order Prediction")\r
1480 FileWrite(File, "*P PEI phase")\r
1481 FileWrite(File, "*D DXE phase")\r
1482 FileWrite(File, "*E Module INF entry point name")\r
1483 FileWrite(File, "*N Module notification function name")\r
1484\r
1485 FileWrite(File, "Type %-*s %s" % (self.MaxLen, "Symbol", "Module INF Path"))\r
1486 FileWrite(File, gSectionSep)\r
1487 for Item in self.ItemList:\r
1488 FileWrite(File, "*%sE %-*s %s" % (Item[0], self.MaxLen, Item[1], Item[2]))\r
1489\r
1490 FileWrite(File, gSectionStart)\r
1491\r
1492 ##\r
1493 # Generate Fixed Address report.\r
1494 #\r
1495 # This function generate the predicted fixed address report for a module\r
1496 # specified by Guid.\r
1497 #\r
1498 # @param self The object pointer\r
1499 # @param File The file object for report\r
1500 # @param Guid The module Guid value.\r
1501 # @param NotifyList The list of all notify function in a module\r
1502 #\r
1503 def _GenerateFixedAddressReport(self, File, Guid, NotifyList):\r
1504 self._ParseMapFile()\r
1505 FixedAddressList = self.FixedMapDict.get(Guid)\r
1506 if not FixedAddressList:\r
1507 return\r
1508\r
1509 FileWrite(File, gSubSectionStart)\r
1510 FileWrite(File, "Fixed Address Prediction")\r
1511 FileWrite(File, "*I Image Loading Address")\r
1512 FileWrite(File, "*E Entry Point Address")\r
1513 FileWrite(File, "*N Notification Function Address")\r
1514 FileWrite(File, "*F Flash Address")\r
1515 FileWrite(File, "*M Memory Address")\r
1516 FileWrite(File, "*S SMM RAM Offset")\r
1517 FileWrite(File, "TOM Top of Memory")\r
1518\r
1519 FileWrite(File, "Type Address Name")\r
1520 FileWrite(File, gSubSectionSep)\r
1521 for Item in FixedAddressList:\r
1522 Type = Item[0]\r
1523 Value = Item[1]\r
1524 Symbol = Item[2]\r
1525 if Symbol == "*I":\r
1526 Name = "(Image Base)"\r
1527 elif Symbol == "*E":\r
1528 Name = self._FfsEntryPoint.get(Guid, ["", "_ModuleEntryPoint"])[1]\r
1529 elif Symbol in NotifyList:\r
1530 Name = Symbol\r
1531 Symbol = "*N"\r
1532 else:\r
1533 continue\r
1534\r
1535 if "Flash" in Type:\r
1536 Symbol += "F"\r
1537 elif "Memory" in Type:\r
1538 Symbol += "M"\r
1539 else:\r
1540 Symbol += "S"\r
1541\r
1542 if Value[0] == "-":\r
1543 Value = "TOM" + Value\r
1544\r
1545 FileWrite(File, "%s %-16s %s" % (Symbol, Value, Name))\r
1546\r
1547 ##\r
1548 # Generate report for the prediction part\r
1549 #\r
1550 # This function generate the predicted fixed address report for a module or\r
1551 # predicted module execution order for a platform.\r
1552 # If the input Guid is None, then, it generates the predicted module execution order;\r
1553 # otherwise it generated the module fixed loading address for the module specified by\r
1554 # Guid.\r
1555 #\r
1556 # @param self The object pointer\r
1557 # @param File The file object for report\r
1558 # @param Guid The module Guid value.\r
1559 #\r
1560 def GenerateReport(self, File, Guid):\r
1561 if Guid:\r
1562 self._GenerateFixedAddressReport(File, Guid.upper(), [])\r
1563 else:\r
1564 self._GenerateExecutionOrderReport(File)\r
1565\r
1566##\r
1567# Reports FD region information\r
1568#\r
1569# This class reports the FD subsection in the build report file.\r
1570# It collects region information of platform flash device.\r
1571# If the region is a firmware volume, it lists the set of modules\r
1572# and its space information; otherwise, it only lists its region name,\r
1573# base address and size in its sub-section header.\r
1574# If there are nesting FVs, the nested FVs will list immediate after\r
1575# this FD region subsection\r
1576#\r
1577class FdRegionReport(object):\r
1578 ##\r
1579 # Discover all the nested FV name list.\r
1580 #\r
1581 # This is an internal worker function to discover the all the nested FV information\r
1582 # in the parent firmware volume. It uses deep first search algorithm recursively to\r
1583 # find all the FV list name and append them to the list.\r
1584 #\r
1585 # @param self The object pointer\r
1586 # @param FvName The name of current firmware file system\r
1587 # @param Wa Workspace context information\r
1588 #\r
1589 def _DiscoverNestedFvList(self, FvName, Wa):\r
a2432972
EC
1590 FvDictKey=FvName.upper()\r
1591 if FvDictKey in Wa.FdfProfile.FvDict:\r
1592 for Ffs in Wa.FdfProfile.FvDict[FvName.upper()].FfsList:\r
1593 for Section in Ffs.SectionList:\r
1594 try:\r
1595 for FvSection in Section.SectionList:\r
1596 if FvSection.FvName in self.FvList:\r
1597 continue\r
1598 self._GuidsDb[Ffs.NameGuid.upper()] = FvSection.FvName\r
1599 self.FvList.append(FvSection.FvName)\r
1600 self.FvInfo[FvSection.FvName] = ("Nested FV", 0, 0)\r
1601 self._DiscoverNestedFvList(FvSection.FvName, Wa)\r
1602 except AttributeError:\r
1603 pass\r
52302d4d
LG
1604\r
1605 ##\r
1606 # Constructor function for class FdRegionReport\r
1607 #\r
1608 # This constructor function generates FdRegionReport object for a specified FdRegion.\r
1609 # If the FdRegion is a firmware volume, it will recursively find all its nested Firmware\r
1610 # volume list. This function also collects GUID map in order to dump module identification\r
1611 # in the final report.\r
1612 #\r
1613 # @param self: The object pointer\r
1614 # @param FdRegion The current FdRegion object\r
1615 # @param Wa Workspace context information\r
1616 #\r
1617 def __init__(self, FdRegion, Wa):\r
1618 self.Type = FdRegion.RegionType\r
1619 self.BaseAddress = FdRegion.Offset\r
1620 self.Size = FdRegion.Size\r
1621 self.FvList = []\r
1622 self.FvInfo = {}\r
1623 self._GuidsDb = {}\r
1624 self._FvDir = Wa.FvDir\r
1625\r
1626 #\r
1627 # If the input FdRegion is not a firmware volume,\r
1628 # we are done.\r
1629 #\r
1630 if self.Type != "FV":\r
1631 return\r
1632\r
1633 #\r
1634 # Find all nested FVs in the FdRegion\r
1635 #\r
1636 for FvName in FdRegion.RegionDataList:\r
1637 if FvName in self.FvList:\r
1638 continue\r
1639 self.FvList.append(FvName)\r
1640 self.FvInfo[FvName] = ("Fd Region", self.BaseAddress, self.Size)\r
1641 self._DiscoverNestedFvList(FvName, Wa)\r
1642\r
1643 PlatformPcds = {}\r
52302d4d
LG
1644 #\r
1645 # Collect PCDs declared in DEC files.\r
0d2711a6
LG
1646 # \r
1647 for Pa in Wa.AutoGenObjectList:\r
1648 for Package in Pa.PackageList:\r
1649 for (TokenCName, TokenSpaceGuidCName, DecType) in Package.Pcds:\r
1650 DecDefaultValue = Package.Pcds[TokenCName, TokenSpaceGuidCName, DecType].DefaultValue\r
1651 PlatformPcds[(TokenCName, TokenSpaceGuidCName)] = DecDefaultValue\r
52302d4d 1652 #\r
af9785a9 1653 # Collect PCDs defined in DSC file\r
52302d4d 1654 #\r
e651d06c
LG
1655 for Pa in Wa.AutoGenObjectList:\r
1656 for (TokenCName, TokenSpaceGuidCName) in Pa.Platform.Pcds:\r
1657 DscDefaultValue = Pa.Platform.Pcds[(TokenCName, TokenSpaceGuidCName)].DefaultValue\r
af9785a9 1658 PlatformPcds[(TokenCName, TokenSpaceGuidCName)] = DscDefaultValue\r
52302d4d
LG
1659\r
1660 #\r
1661 # Add PEI and DXE a priori files GUIDs defined in PI specification.\r
1662 #\r
1663 self._GuidsDb["1B45CC0A-156A-428A-AF62-49864DA0E6E6"] = "PEI Apriori"\r
1664 self._GuidsDb["FC510EE7-FFDC-11D4-BD41-0080C73C8881"] = "DXE Apriori"\r
1665 #\r
1666 # Add ACPI table storage file\r
1667 #\r
1668 self._GuidsDb["7E374E25-8E01-4FEE-87F2-390C23C606CD"] = "ACPI table storage"\r
1669\r
1670 for Pa in Wa.AutoGenObjectList:\r
1671 for ModuleKey in Pa.Platform.Modules:\r
1672 M = Pa.Platform.Modules[ModuleKey].M\r
05cc51ad 1673 InfPath = mws.join(Wa.WorkspaceDir, M.MetaFile.File)\r
52302d4d
LG
1674 self._GuidsDb[M.Guid.upper()] = "%s (%s)" % (M.Module.BaseName, InfPath)\r
1675\r
1676 #\r
1677 # Collect the GUID map in the FV firmware volume\r
1678 #\r
1679 for FvName in self.FvList:\r
a2432972
EC
1680 FvDictKey=FvName.upper()\r
1681 if FvDictKey in Wa.FdfProfile.FvDict:\r
1682 for Ffs in Wa.FdfProfile.FvDict[FvName.upper()].FfsList:\r
1683 try:\r
1684 #\r
1685 # collect GUID map for binary EFI file in FDF file.\r
1686 #\r
1687 Guid = Ffs.NameGuid.upper()\r
1688 Match = gPcdGuidPattern.match(Ffs.NameGuid)\r
1689 if Match:\r
1690 PcdTokenspace = Match.group(1)\r
1691 PcdToken = Match.group(2)\r
1692 if (PcdToken, PcdTokenspace) in PlatformPcds:\r
1693 GuidValue = PlatformPcds[(PcdToken, PcdTokenspace)]\r
1694 Guid = GuidStructureByteArrayToGuidString(GuidValue).upper()\r
1695 for Section in Ffs.SectionList:\r
1696 try:\r
1697 ModuleSectFile = mws.join(Wa.WorkspaceDir, Section.SectFileName)\r
1698 self._GuidsDb[Guid] = ModuleSectFile\r
1699 except AttributeError:\r
1700 pass\r
1701 except AttributeError:\r
1702 pass\r
52302d4d
LG
1703\r
1704\r
1705 ##\r
1706 # Internal worker function to generate report for the FD region\r
1707 #\r
1708 # This internal worker function to generate report for the FD region.\r
1709 # It the type is firmware volume, it lists offset and module identification.\r
1710 #\r
1711 # @param self The object pointer\r
1712 # @param File The file object for report\r
1713 # @param Title The title for the FD subsection\r
1714 # @param BaseAddress The base address for the FD region\r
1715 # @param Size The size of the FD region\r
1716 # @param FvName The FV name if the FD region is a firmware volume\r
1717 #\r
1718 def _GenerateReport(self, File, Title, Type, BaseAddress, Size=0, FvName=None):\r
1719 FileWrite(File, gSubSectionStart)\r
1720 FileWrite(File, Title)\r
1721 FileWrite(File, "Type: %s" % Type)\r
1722 FileWrite(File, "Base Address: 0x%X" % BaseAddress)\r
1723\r
1724 if self.Type == "FV":\r
1725 FvTotalSize = 0\r
1726 FvTakenSize = 0\r
1727 FvFreeSize = 0\r
b36d134f 1728 FvReportFileName = os.path.join(self._FvDir, FvName + ".Fv.txt")\r
52302d4d
LG
1729 try:\r
1730 #\r
1731 # Collect size info in the firmware volume.\r
1732 #\r
1733 FvReport = open(FvReportFileName).read()\r
1734 Match = gFvTotalSizePattern.search(FvReport)\r
1735 if Match:\r
1736 FvTotalSize = int(Match.group(1), 16)\r
1737 Match = gFvTakenSizePattern.search(FvReport)\r
1738 if Match:\r
1739 FvTakenSize = int(Match.group(1), 16)\r
1740 FvFreeSize = FvTotalSize - FvTakenSize\r
1741 #\r
1742 # Write size information to the report file.\r
1743 #\r
1744 FileWrite(File, "Size: 0x%X (%.0fK)" % (FvTotalSize, FvTotalSize / 1024.0))\r
1745 FileWrite(File, "Fv Name: %s (%.1f%% Full)" % (FvName, FvTakenSize * 100.0 / FvTotalSize))\r
1746 FileWrite(File, "Occupied Size: 0x%X (%.0fK)" % (FvTakenSize, FvTakenSize / 1024.0))\r
1747 FileWrite(File, "Free Size: 0x%X (%.0fK)" % (FvFreeSize, FvFreeSize / 1024.0))\r
1748 FileWrite(File, "Offset Module")\r
1749 FileWrite(File, gSubSectionSep)\r
1750 #\r
1751 # Write module offset and module identification to the report file.\r
1752 #\r
1753 OffsetInfo = {}\r
1754 for Match in gOffsetGuidPattern.finditer(FvReport):\r
1755 Guid = Match.group(2).upper()\r
1756 OffsetInfo[Match.group(1)] = self._GuidsDb.get(Guid, Guid)\r
1757 OffsetList = OffsetInfo.keys()\r
1758 OffsetList.sort()\r
1759 for Offset in OffsetList:\r
1760 FileWrite (File, "%s %s" % (Offset, OffsetInfo[Offset]))\r
1761 except IOError:\r
1762 EdkLogger.warn(None, "Fail to read report file", FvReportFileName)\r
1763 else:\r
1764 FileWrite(File, "Size: 0x%X (%.0fK)" % (Size, Size / 1024.0))\r
1765 FileWrite(File, gSubSectionEnd)\r
1766\r
1767 ##\r
1768 # Generate report for the FD region\r
1769 #\r
1770 # This function generates report for the FD region.\r
1771 #\r
1772 # @param self The object pointer\r
1773 # @param File The file object for report\r
1774 #\r
1775 def GenerateReport(self, File):\r
1776 if (len(self.FvList) > 0):\r
1777 for FvItem in self.FvList:\r
1778 Info = self.FvInfo[FvItem]\r
1779 self._GenerateReport(File, Info[0], "FV", Info[1], Info[2], FvItem)\r
1780 else:\r
1781 self._GenerateReport(File, "FD Region", self.Type, self.BaseAddress, self.Size)\r
1782\r
1783##\r
1784# Reports FD information\r
1785#\r
1786# This class reports the FD section in the build report file.\r
1787# It collects flash device information for a platform.\r
1788#\r
1789class FdReport(object):\r
1790 ##\r
1791 # Constructor function for class FdReport\r
1792 #\r
1793 # This constructor function generates FdReport object for a specified\r
1794 # firmware device.\r
1795 #\r
1796 # @param self The object pointer\r
1797 # @param Fd The current Firmware device object\r
1798 # @param Wa Workspace context information\r
1799 #\r
1800 def __init__(self, Fd, Wa):\r
1801 self.FdName = Fd.FdUiName\r
1802 self.BaseAddress = Fd.BaseAddress\r
1803 self.Size = Fd.Size\r
1804 self.FdRegionList = [FdRegionReport(FdRegion, Wa) for FdRegion in Fd.RegionList]\r
fb3d2279
YZ
1805 self.FvPath = os.path.join(Wa.BuildDir, "FV")\r
1806 self.VpdFilePath = os.path.join(self.FvPath, "%s.map" % Wa.Platform.VpdToolGuid)\r
043928da
YZ
1807 self.VPDBaseAddress = 0\r
1808 self.VPDSize = 0\r
fb3d2279
YZ
1809 self.VPDInfoList = []\r
1810 for index, FdRegion in enumerate(Fd.RegionList):\r
043928da 1811 if str(FdRegion.RegionType) is 'FILE' and Wa.Platform.VpdToolGuid in str(FdRegion.RegionDataList):\r
fb3d2279
YZ
1812 self.VPDBaseAddress = self.FdRegionList[index].BaseAddress\r
1813 self.VPDSize = self.FdRegionList[index].Size\r
1814 break\r
1815\r
1816 if os.path.isfile(self.VpdFilePath):\r
1817 fd = open(self.VpdFilePath, "r")\r
1818 Lines = fd.readlines()\r
1819 for Line in Lines:\r
1820 Line = Line.strip()\r
1821 if len(Line) == 0 or Line.startswith("#"):\r
1822 continue\r
1823 try:\r
1824 PcdName, SkuId, Offset, Size, Value = Line.split("#")[0].split("|")\r
1825 PcdName, SkuId, Offset, Size, Value = PcdName.strip(), SkuId.strip(), Offset.strip(), Size.strip(), Value.strip()\r
8401d398
YZ
1826 if Offset.lower().startswith('0x'):\r
1827 Offset = '0x%08X' % (int(Offset, 16) + self.VPDBaseAddress)\r
1828 else:\r
1829 Offset = '0x%08X' % (int(Offset, 10) + self.VPDBaseAddress)\r
fb3d2279
YZ
1830 self.VPDInfoList.append("%s | %s | %s | %s | %s" % (PcdName, SkuId, Offset, Size, Value))\r
1831 except:\r
1832 EdkLogger.error("BuildReport", CODE_ERROR, "Fail to parse VPD information file %s" % self.VpdFilePath)\r
1833 fd.close()\r
52302d4d
LG
1834\r
1835 ##\r
1836 # Generate report for the firmware device.\r
1837 #\r
1838 # This function generates report for the firmware device.\r
1839 #\r
1840 # @param self The object pointer\r
1841 # @param File The file object for report\r
1842 #\r
1843 def GenerateReport(self, File):\r
1844 FileWrite(File, gSectionStart)\r
1845 FileWrite(File, "Firmware Device (FD)")\r
1846 FileWrite(File, "FD Name: %s" % self.FdName)\r
1847 FileWrite(File, "Base Address: %s" % self.BaseAddress)\r
1848 FileWrite(File, "Size: 0x%X (%.0fK)" % (self.Size, self.Size / 1024.0))\r
1849 if len(self.FdRegionList) > 0:\r
1850 FileWrite(File, gSectionSep)\r
1851 for FdRegionItem in self.FdRegionList:\r
1852 FdRegionItem.GenerateReport(File)\r
1853\r
fb3d2279
YZ
1854 if len(self.VPDInfoList) > 0:\r
1855 FileWrite(File, gSubSectionStart)\r
1856 FileWrite(File, "FD VPD Region")\r
1857 FileWrite(File, "Base Address: 0x%X" % self.VPDBaseAddress)\r
1858 FileWrite(File, "Size: 0x%X (%.0fK)" % (self.VPDSize, self.VPDSize / 1024.0))\r
1859 FileWrite(File, gSubSectionSep)\r
1860 for item in self.VPDInfoList:\r
e651d06c
LG
1861 ValueList = item.split('|')\r
1862 Value = ValueList[-1].strip()\r
1863 IsByteArray, ArrayList = ByteArrayForamt(Value)\r
1864 if IsByteArray:\r
1865 ValueList[-1] = ' {'\r
1866 FileWrite(File, '|'.join(ValueList))\r
1867 for Array in ArrayList:\r
1868 FileWrite(File, '%s' % (Array))\r
1869 else:\r
1870 FileWrite(File, item)\r
fb3d2279 1871 FileWrite(File, gSubSectionEnd)\r
52302d4d
LG
1872 FileWrite(File, gSectionEnd)\r
1873\r
1874\r
1875\r
1876##\r
1877# Reports platform information\r
1878#\r
1879# This class reports the whole platform information\r
1880#\r
1881class PlatformReport(object):\r
1882 ##\r
1883 # Constructor function for class PlatformReport\r
1884 #\r
1885 # This constructor function generates PlatformReport object a platform build.\r
1886 # It generates report for platform summary, flash, global PCDs and detailed\r
1887 # module information for modules involved in platform build.\r
1888 #\r
1889 # @param self The object pointer\r
1890 # @param Wa Workspace context information\r
d5d56f1b 1891 # @param MaList The list of modules in the platform build\r
52302d4d 1892 #\r
d5d56f1b 1893 def __init__(self, Wa, MaList, ReportType):\r
52302d4d
LG
1894 self._WorkspaceDir = Wa.WorkspaceDir\r
1895 self.PlatformName = Wa.Name\r
1896 self.PlatformDscPath = Wa.Platform\r
1897 self.Architectures = " ".join(Wa.ArchList)\r
1898 self.ToolChain = Wa.ToolChain\r
1899 self.Target = Wa.BuildTarget\r
1900 self.OutputPath = os.path.join(Wa.WorkspaceDir, Wa.OutputDir)\r
1901 self.BuildEnvironment = platform.platform()\r
1902\r
1903 self.PcdReport = None\r
1904 if "PCD" in ReportType:\r
1905 self.PcdReport = PcdReport(Wa)\r
1906\r
1907 self.FdReportList = []\r
d5d56f1b 1908 if "FLASH" in ReportType and Wa.FdfProfile and MaList == None:\r
52302d4d
LG
1909 for Fd in Wa.FdfProfile.FdDict:\r
1910 self.FdReportList.append(FdReport(Wa.FdfProfile.FdDict[Fd], Wa))\r
1911\r
1912 self.PredictionReport = None\r
1913 if "FIXED_ADDRESS" in ReportType or "EXECUTION_ORDER" in ReportType:\r
1914 self.PredictionReport = PredictionReport(Wa)\r
1915\r
e56468c0 1916 self.DepexParser = None\r
1917 if "DEPEX" in ReportType:\r
1918 self.DepexParser = DepexParser(Wa)\r
1919 \r
52302d4d 1920 self.ModuleReportList = []\r
d5d56f1b 1921 if MaList != None:\r
636f2be6 1922 self._IsModuleBuild = True\r
d5d56f1b
LG
1923 for Ma in MaList:\r
1924 self.ModuleReportList.append(ModuleReport(Ma, ReportType))\r
1925 else:\r
636f2be6 1926 self._IsModuleBuild = False\r
d5d56f1b 1927 for Pa in Wa.AutoGenObjectList:\r
25193a33 1928 ModuleAutoGenList = []\r
d5d56f1b 1929 for ModuleKey in Pa.Platform.Modules:\r
25193a33
YZ
1930 ModuleAutoGenList.append(Pa.Platform.Modules[ModuleKey].M)\r
1931 if GlobalData.gFdfParser != None:\r
1932 if Pa.Arch in GlobalData.gFdfParser.Profile.InfDict:\r
1933 INFList = GlobalData.gFdfParser.Profile.InfDict[Pa.Arch]\r
1934 for InfName in INFList:\r
1935 InfClass = PathClass(NormPath(InfName), Wa.WorkspaceDir, Pa.Arch)\r
1936 Ma = ModuleAutoGen(Wa, InfClass, Pa.BuildTarget, Pa.ToolChain, Pa.Arch, Wa.MetaFile)\r
1937 if Ma == None:\r
1938 continue\r
1939 if Ma not in ModuleAutoGenList:\r
1940 ModuleAutoGenList.append(Ma)\r
1941 for MGen in ModuleAutoGenList:\r
1942 self.ModuleReportList.append(ModuleReport(MGen, ReportType))\r
52302d4d
LG
1943\r
1944\r
1945\r
1946 ##\r
1947 # Generate report for the whole platform.\r
1948 #\r
1949 # This function generates report for platform information.\r
1950 # It comprises of platform summary, global PCD, flash and\r
1951 # module list sections.\r
1952 #\r
1953 # @param self The object pointer\r
1954 # @param File The file object for report\r
1955 # @param BuildDuration The total time to build the modules\r
1b8eca8b
YZ
1956 # @param AutoGenTime The total time of AutoGen Phase\r
1957 # @param MakeTime The total time of Make Phase\r
1958 # @param GenFdsTime The total time of GenFds Phase\r
52302d4d
LG
1959 # @param ReportType The kind of report items in the final report file\r
1960 #\r
1b8eca8b 1961 def GenerateReport(self, File, BuildDuration, AutoGenTime, MakeTime, GenFdsTime, ReportType):\r
52302d4d
LG
1962 FileWrite(File, "Platform Summary")\r
1963 FileWrite(File, "Platform Name: %s" % self.PlatformName)\r
1964 FileWrite(File, "Platform DSC Path: %s" % self.PlatformDscPath)\r
1965 FileWrite(File, "Architectures: %s" % self.Architectures)\r
1966 FileWrite(File, "Tool Chain: %s" % self.ToolChain)\r
1967 FileWrite(File, "Target: %s" % self.Target)\r
e651d06c
LG
1968 if GlobalData.gSkuids:\r
1969 FileWrite(File, "SKUID: %s" % " ".join(GlobalData.gSkuids))\r
1970 if GlobalData.gDefaultStores:\r
1971 FileWrite(File, "DefaultStore: %s" % " ".join(GlobalData.gDefaultStores))\r
52302d4d
LG
1972 FileWrite(File, "Output Path: %s" % self.OutputPath)\r
1973 FileWrite(File, "Build Environment: %s" % self.BuildEnvironment)\r
1974 FileWrite(File, "Build Duration: %s" % BuildDuration)\r
1b8eca8b
YZ
1975 if AutoGenTime:\r
1976 FileWrite(File, "AutoGen Duration: %s" % AutoGenTime)\r
1977 if MakeTime:\r
1978 FileWrite(File, "Make Duration: %s" % MakeTime)\r
1979 if GenFdsTime:\r
1980 FileWrite(File, "GenFds Duration: %s" % GenFdsTime)\r
52302d4d
LG
1981 FileWrite(File, "Report Content: %s" % ", ".join(ReportType))\r
1982\r
2a29017e
YZ
1983 if GlobalData.MixedPcd:\r
1984 FileWrite(File, gSectionStart)\r
1985 FileWrite(File, "The following PCDs use different access methods:")\r
1986 FileWrite(File, gSectionSep)\r
1987 for PcdItem in GlobalData.MixedPcd:\r
1988 FileWrite(File, "%s.%s" % (str(PcdItem[1]), str(PcdItem[0])))\r
1989 FileWrite(File, gSectionEnd)\r
1990\r
636f2be6
LG
1991 if not self._IsModuleBuild:\r
1992 if "PCD" in ReportType:\r
1993 self.PcdReport.GenerateReport(File, None)\r
1994 \r
1995 if "FLASH" in ReportType:\r
1996 for FdReportListItem in self.FdReportList:\r
1997 FdReportListItem.GenerateReport(File)\r
52302d4d
LG
1998\r
1999 for ModuleReportItem in self.ModuleReportList:\r
e56468c0 2000 ModuleReportItem.GenerateReport(File, self.PcdReport, self.PredictionReport, self.DepexParser, ReportType)\r
52302d4d 2001\r
636f2be6
LG
2002 if not self._IsModuleBuild:\r
2003 if "EXECUTION_ORDER" in ReportType:\r
2004 self.PredictionReport.GenerateReport(File, None)\r
52302d4d
LG
2005\r
2006## BuildReport class\r
2007#\r
2008# This base class contain the routines to collect data and then\r
2009# applies certain format to the output report\r
2010#\r
2011class BuildReport(object):\r
2012 ##\r
2013 # Constructor function for class BuildReport\r
2014 #\r
2015 # This constructor function generates BuildReport object a platform build.\r
2016 # It generates report for platform summary, flash, global PCDs and detailed\r
2017 # module information for modules involved in platform build.\r
2018 #\r
2019 # @param self The object pointer\r
2020 # @param ReportFile The file name to save report file\r
2021 # @param ReportType The kind of report items in the final report file\r
2022 #\r
2023 def __init__(self, ReportFile, ReportType):\r
2024 self.ReportFile = ReportFile\r
2025 if ReportFile:\r
2026 self.ReportList = []\r
2027 self.ReportType = []\r
2028 if ReportType: \r
2029 for ReportTypeItem in ReportType:\r
2030 if ReportTypeItem not in self.ReportType:\r
2031 self.ReportType.append(ReportTypeItem)\r
2032 else:\r
eca5be7a 2033 self.ReportType = ["PCD", "LIBRARY", "BUILD_FLAGS", "DEPEX", "HASH", "FLASH", "FIXED_ADDRESS"]\r
52302d4d
LG
2034 ##\r
2035 # Adds platform report to the list\r
2036 #\r
2037 # This function adds a platform report to the final report list.\r
2038 #\r
2039 # @param self The object pointer\r
2040 # @param Wa Workspace context information\r
d5d56f1b 2041 # @param MaList The list of modules in the platform build\r
52302d4d 2042 #\r
d5d56f1b 2043 def AddPlatformReport(self, Wa, MaList=None):\r
52302d4d 2044 if self.ReportFile:\r
d5d56f1b 2045 self.ReportList.append((Wa, MaList))\r
52302d4d
LG
2046\r
2047 ##\r
2048 # Generates the final report.\r
2049 #\r
2050 # This function generates platform build report. It invokes GenerateReport()\r
2051 # method for every platform report in the list.\r
2052 #\r
2053 # @param self The object pointer\r
2054 # @param BuildDuration The total time to build the modules\r
1b8eca8b
YZ
2055 # @param AutoGenTime The total time of AutoGen phase\r
2056 # @param MakeTime The total time of Make phase\r
2057 # @param GenFdsTime The total time of GenFds phase\r
52302d4d 2058 #\r
1b8eca8b 2059 def GenerateReport(self, BuildDuration, AutoGenTime, MakeTime, GenFdsTime):\r
52302d4d
LG
2060 if self.ReportFile:\r
2061 try:\r
40d841f6 2062 File = StringIO('')\r
d5d56f1b 2063 for (Wa, MaList) in self.ReportList:\r
1b8eca8b 2064 PlatformReport(Wa, MaList, self.ReportType).GenerateReport(File, BuildDuration, AutoGenTime, MakeTime, GenFdsTime, self.ReportType)\r
64b2609f
LG
2065 Content = FileLinesSplit(File.getvalue(), gLineMaxLength)\r
2066 SaveFileOnChange(self.ReportFile, Content, True)\r
40d841f6 2067 EdkLogger.quiet("Build report can be found at %s" % os.path.abspath(self.ReportFile))\r
52302d4d
LG
2068 except IOError:\r
2069 EdkLogger.error(None, FILE_WRITE_FAILURE, ExtraData=self.ReportFile)\r
2070 except:\r
2071 EdkLogger.error("BuildReport", CODE_ERROR, "Unknown fatal error when generating build report", ExtraData=self.ReportFile, RaiseError=False)\r
2072 EdkLogger.quiet("(Python %s on %s\n%s)" % (platform.python_version(), sys.platform, traceback.format_exc()))\r
2073 File.close()\r
636f2be6 2074 \r
52302d4d
LG
2075# This acts like the main() function for the script, unless it is 'import'ed into another script.\r
2076if __name__ == '__main__':\r
2077 pass\r
2078\r