Merge pull request #22415 from adityamandaleeka/pinvoke_eh
[platform/upstream/coreclr.git] / netci.groovy
1 // Import the utility functionality.
2
3 import jobs.generation.*
4
5 // The input project name (e.g. dotnet/coreclr)
6 def project = GithubProject
7 // The input branch name (e.g. master)
8 def branch = GithubBranchName
9 def projectFolder = Utilities.getFolderName(project) + '/' + Utilities.getFolderName(branch)
10
11 // Create a folder for JIT stress jobs and associated folder views
12 folder('jitstress')
13 Utilities.addStandardFolderView(this, 'jitstress', project)
14
15 // Create a folder for testing via illink
16 folder('illink')
17 Utilities.addStandardFolderView(this, 'illink', project)
18
19 def static getOSGroup(def os) {
20     def osGroupMap = ['Ubuntu'      : 'Linux',
21                       'Ubuntu16.04' : 'Linux',
22                       'Ubuntu16.10' : 'Linux',
23                       'RHEL7.2'     : 'Linux',
24                       'Debian8.4'   : 'Linux',
25                       'Fedora24'    : 'Linux',
26                       'CentOS7.1'   : 'Linux',
27                       'Tizen'       : 'Linux',
28                       'OSX10.12'    : 'OSX',
29                       'Windows_NT'  : 'Windows_NT']
30     def osGroup = osGroupMap.get(os, null)
31     assert osGroup != null : "Could not find os group for ${os}"
32     return osGroupMap[os]
33 }
34
35 // We use this class (vs variables) so that the static functions can access data here.
36 class Constants {
37
38     // We have very limited Windows ARM64 hardware (used for ARM/ARM64 testing) and Linux/arm32 and Linux/arm64 hardware.
39     // So only allow certain branches to use it.
40     def static LimitedHardwareBranches = [
41                'master']
42
43     // Innerloop build OS's
44     // The Windows_NT_BuildOnly OS is a way to speed up the Non-Windows builds by avoiding
45     // test execution in the build flow runs.  It generates the exact same build
46     // as Windows_NT but without running the tests.
47     def static osList = [
48                'Ubuntu',
49                'Debian8.4',
50                'OSX10.12',
51                'Windows_NT',
52                'Windows_NT_BuildOnly',
53                'CentOS7.1',
54                'RHEL7.2',
55                'Ubuntu16.04',
56                'Ubuntu16.10',
57                'Fedora24',
58                'Tizen']
59
60     def static crossList = [
61                'Ubuntu',
62                'Debian8.4',
63                'OSX10.12',
64                'Windows_NT',
65                'CentOS7.1',
66                'RHEL7.2']
67
68     // This is a set of JIT stress modes combined with the set of variables that
69     // need to be set to actually enable that stress mode.  The key of the map is the stress mode and
70     // the values are the environment variables
71     def static jitStressModeScenarios = [
72                'minopts'                        : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JITMinOpts' : '1'],
73                'tieredcompilation'              : ['COMPlus_TieredCompilation' : '1'], // this can be removed once tiered compilation is on by default
74                'no_tiered_compilation'          : ['COMPlus_TieredCompilation' : '0'],
75                'no_tiered_compilation_innerloop': ['COMPlus_TieredCompilation' : '0'],
76                'forcerelocs'                    : ['COMPlus_TieredCompilation' : '0', 'COMPlus_ForceRelocs' : '1'],
77                'jitstress1'                     : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStress' : '1'],
78                'jitstress2'                     : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStress' : '2'],
79                'jitstress1_tiered'              : ['COMPlus_TieredCompilation' : '1', 'COMPlus_JitStress' : '1'],
80                'jitstress2_tiered'              : ['COMPlus_TieredCompilation' : '1', 'COMPlus_JitStress' : '2'],
81                'jitstressregs1'                 : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStressRegs' : '1'],
82                'jitstressregs2'                 : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStressRegs' : '2'],
83                'jitstressregs3'                 : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStressRegs' : '3'],
84                'jitstressregs4'                 : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStressRegs' : '4'],
85                'jitstressregs8'                 : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStressRegs' : '8'],
86                'jitstressregs0x10'              : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStressRegs' : '0x10'],
87                'jitstressregs0x80'              : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStressRegs' : '0x80'],
88                'jitstressregs0x1000'            : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStressRegs' : '0x1000'],
89                'jitstress2_jitstressregs1'      : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStress' : '2', 'COMPlus_JitStressRegs' : '1'],
90                'jitstress2_jitstressregs2'      : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStress' : '2', 'COMPlus_JitStressRegs' : '2'],
91                'jitstress2_jitstressregs3'      : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStress' : '2', 'COMPlus_JitStressRegs' : '3'],
92                'jitstress2_jitstressregs4'      : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStress' : '2', 'COMPlus_JitStressRegs' : '4'],
93                'jitstress2_jitstressregs8'      : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStress' : '2', 'COMPlus_JitStressRegs' : '8'],
94                'jitstress2_jitstressregs0x10'   : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStress' : '2', 'COMPlus_JitStressRegs' : '0x10'],
95                'jitstress2_jitstressregs0x80'   : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStress' : '2', 'COMPlus_JitStressRegs' : '0x80'],
96                'jitstress2_jitstressregs0x1000' : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStress' : '2', 'COMPlus_JitStressRegs' : '0x1000'],
97                'tailcallstress'                 : ['COMPlus_TieredCompilation' : '0', 'COMPlus_TailcallStress' : '1'],
98                'jitsse2only'                    : ['COMPlus_TieredCompilation' : '0', 'COMPlus_EnableAVX' : '0', 'COMPlus_EnableSSE3_4' : '0'],
99                'jitnosimd'                      : ['COMPlus_TieredCompilation' : '0', 'COMPlus_FeatureSIMD' : '0'],
100                'jitincompletehwintrinsic'       : ['COMPlus_TieredCompilation' : '0', 'COMPlus_EnableIncompleteISAClass' : '1'],
101                'jitx86hwintrinsicnoavx'         : ['COMPlus_TieredCompilation' : '0', 'COMPlus_EnableIncompleteISAClass' : '1', 'COMPlus_EnableAVX' : '0'], // testing the legacy SSE encoding
102                'jitx86hwintrinsicnoavx2'        : ['COMPlus_TieredCompilation' : '0', 'COMPlus_EnableIncompleteISAClass' : '1', 'COMPlus_EnableAVX2' : '0'], // testing SNB/IVB
103                'jitx86hwintrinsicnosimd'        : ['COMPlus_TieredCompilation' : '0', 'COMPlus_EnableIncompleteISAClass' : '1', 'COMPlus_FeatureSIMD' : '0'], // match "jitnosimd", may need to remove after decoupling HW intrinsic from FeatureSIMD
104                'jitnox86hwintrinsic'            : ['COMPlus_TieredCompilation' : '0', 'COMPlus_EnableIncompleteISAClass' : '1', 'COMPlus_EnableSSE' : '0' , 'COMPlus_EnableSSE2' : '0' , 'COMPlus_EnableSSE3' : '0' , 'COMPlus_EnableSSSE3' : '0' , 'COMPlus_EnableSSE41' : '0' , 'COMPlus_EnableSSE42' : '0' , 'COMPlus_EnableAVX' : '0' , 'COMPlus_EnableAVX2' : '0' , 'COMPlus_EnableAES' : '0' , 'COMPlus_EnableBMI1' : '0' , 'COMPlus_EnableBMI2' : '0' , 'COMPlus_EnableFMA' : '0' , 'COMPlus_EnableLZCNT' : '0' , 'COMPlus_EnablePCLMULQDQ' : '0' , 'COMPlus_EnablePOPCNT' : '0'],
105                'corefx_baseline'                : ['COMPlus_TieredCompilation' : '0'], // corefx baseline
106                'corefx_minopts'                 : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JITMinOpts' : '1'],
107                'corefx_tieredcompilation'       : ['COMPlus_TieredCompilation' : '1'],  // this can be removed once tiered compilation is on by default
108                'corefx_jitstress1'              : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStress' : '1'],
109                'corefx_jitstress2'              : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStress' : '2'],
110                'corefx_jitstressregs1'          : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStressRegs' : '1'],
111                'corefx_jitstressregs2'          : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStressRegs' : '2'],
112                'corefx_jitstressregs3'          : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStressRegs' : '3'],
113                'corefx_jitstressregs4'          : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStressRegs' : '4'],
114                'corefx_jitstressregs8'          : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStressRegs' : '8'],
115                'corefx_jitstressregs0x10'       : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStressRegs' : '0x10'],
116                'corefx_jitstressregs0x80'       : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStressRegs' : '0x80'],
117                'corefx_jitstressregs0x1000'     : ['COMPlus_TieredCompilation' : '0', 'COMPlus_JitStressRegs' : '0x1000'],
118                'gcstress0x3'                    : ['COMPlus_TieredCompilation' : '0', 'COMPlus_GCStress' : '0x3'],
119                'gcstress0xc'                    : ['COMPlus_TieredCompilation' : '0', 'COMPlus_GCStress' : '0xC'],
120                'zapdisable'                     : ['COMPlus_TieredCompilation' : '0', 'COMPlus_ZapDisable' : '1', 'COMPlus_ReadyToRun' : '0'],
121                'heapverify1'                    : ['COMPlus_TieredCompilation' : '0', 'COMPlus_HeapVerify' : '1'],
122                'gcstress0xc_zapdisable'             : ['COMPlus_TieredCompilation' : '0', 'COMPlus_GCStress' : '0xC', 'COMPlus_ZapDisable' : '1', 'COMPlus_ReadyToRun' : '0'],
123                'gcstress0xc_zapdisable_jitstress2'  : ['COMPlus_TieredCompilation' : '0', 'COMPlus_GCStress' : '0xC', 'COMPlus_ZapDisable' : '1', 'COMPlus_ReadyToRun' : '0', 'COMPlus_JitStress'  : '2'],
124                'gcstress0xc_zapdisable_heapverify1' : ['COMPlus_TieredCompilation' : '0', 'COMPlus_GCStress' : '0xC', 'COMPlus_ZapDisable' : '1', 'COMPlus_ReadyToRun' : '0', 'COMPlus_HeapVerify' : '1'],
125                'gcstress0xc_jitstress1'             : ['COMPlus_TieredCompilation' : '0', 'COMPlus_GCStress' : '0xC', 'COMPlus_JitStress'  : '1'],
126                'gcstress0xc_jitstress2'             : ['COMPlus_TieredCompilation' : '0', 'COMPlus_GCStress' : '0xC', 'COMPlus_JitStress'  : '2'],
127                'gcstress0xc_minopts_heapverify1'    : ['COMPlus_TieredCompilation' : '0', 'COMPlus_GCStress' : '0xC', 'COMPlus_JITMinOpts' : '1', 'COMPlus_HeapVerify' : '1']
128     ]
129
130     // This is a set of ReadyToRun stress scenarios
131     def static r2rStressScenarios = [
132                'r2r_jitstress1'             : ['COMPlus_TieredCompilation' : '0', "COMPlus_JitStress": "1"],
133                'r2r_jitstress2'             : ['COMPlus_TieredCompilation' : '0', "COMPlus_JitStress": "2"],
134                'r2r_jitstress1_tiered'      : ['COMPlus_TieredCompilation' : '1', "COMPlus_JitStress": "1"],
135                'r2r_jitstress2_tiered'      : ['COMPlus_TieredCompilation' : '1', "COMPlus_JitStress": "2"],
136                'r2r_jitstressregs1'         : ['COMPlus_TieredCompilation' : '0', "COMPlus_JitStressRegs": "1"],
137                'r2r_jitstressregs2'         : ['COMPlus_TieredCompilation' : '0', "COMPlus_JitStressRegs": "2"],
138                'r2r_jitstressregs3'         : ['COMPlus_TieredCompilation' : '0', "COMPlus_JitStressRegs": "3"],
139                'r2r_jitstressregs4'         : ['COMPlus_TieredCompilation' : '0', "COMPlus_JitStressRegs": "4"],
140                'r2r_jitstressregs8'         : ['COMPlus_TieredCompilation' : '0', "COMPlus_JitStressRegs": "8"],
141                'r2r_jitstressregs0x10'      : ['COMPlus_TieredCompilation' : '0', "COMPlus_JitStressRegs": "0x10"],
142                'r2r_jitstressregs0x80'      : ['COMPlus_TieredCompilation' : '0', "COMPlus_JitStressRegs": "0x80"],
143                'r2r_jitstressregs0x1000'    : ['COMPlus_TieredCompilation' : '0', "COMPlus_JitStressRegs": "0x1000"],
144                'r2r_jitminopts'             : ['COMPlus_TieredCompilation' : '0', "COMPlus_JITMinOpts": "1"], 
145                'r2r_jitforcerelocs'         : ['COMPlus_TieredCompilation' : '0', "COMPlus_ForceRelocs": "1"],
146                'r2r_gcstress15'             : ['COMPlus_TieredCompilation' : '0', "COMPlus_GCStress": "0xF"],
147                'r2r_no_tiered_compilation'  : ['COMPlus_TieredCompilation' : '0'],
148     ]
149
150     // This is the basic set of scenarios
151     def static basicScenarios = [
152                'innerloop',
153                'normal',
154                'ilrt',
155                'r2r',
156                'longgc',
157                'formatting',
158                'gcsimulator',
159                // 'jitdiff', // jitdiff is currently disabled, until someone spends the effort to make it fully work
160                'standalone_gc',
161                'gc_reliability_framework',
162                'illink',
163                'corefx_innerloop',
164                'crossgen_comparison',
165                'pmi_asm_diffs']
166
167     def static allScenarios = basicScenarios + r2rStressScenarios.keySet() + jitStressModeScenarios.keySet()
168
169     // Valid PR trigger combinations.
170     def static prTriggeredValidInnerLoopCombos = [
171         'Windows_NT': [
172             'x64': [
173                 'Checked'
174             ], 
175             'x86': [
176                 'Checked',
177                 'Release'
178             ], 
179             'arm': [
180                 'Debug',
181                 'Checked'
182             ],
183             'arm64': [
184                 'Debug',
185                 'Checked'
186             ]
187         ],
188         'Windows_NT_BuildOnly': [
189             'x64': [
190                 'Checked',
191                 'Release'
192             ],
193             'x86': [
194                 'Checked',
195                 'Release'
196             ], 
197             'arm': [
198                 'Checked'
199             ], 
200         ],
201         'Ubuntu': [
202             'x64': [
203                 'Checked'
204             ],
205             'arm': [
206                 'Checked'
207             ]
208         ],
209         'Ubuntu16.04': [
210             'arm64': [
211                 'Checked'
212             ]
213         ],
214         'CentOS7.1': [
215             'x64': [
216                 'Debug',
217                 'Checked'
218             ]
219         ],
220         'OSX10.12': [
221             'x64': [
222                 'Checked'
223             ]
224         ]
225     ]
226
227     // A set of scenarios that are valid for arm/arm64 tests run on hardware. This is a map from valid scenario name
228     // to Tests.lst file categories to exclude.
229     //
230     // This list should contain a subset of the scenarios from `allScenarios`. Please keep this in the same order as that,
231     // and with the same values, with some commented out, for easier maintenance.
232     //
233     // Note that some scenarios that are commented out should be enabled, but haven't yet been.
234     //
235     def static validArmWindowsScenarios = [
236                'innerloop',
237                'normal',
238                // 'ilrt'
239                'r2r',
240                // 'longgc'
241                // 'formatting'
242                // 'gcsimulator'
243                // 'jitdiff'
244                // 'standalone_gc'
245                // 'gc_reliability_framework'
246                // 'illink'
247                // 'corefx_innerloop'
248                // 'crossgen_comparison'
249                // 'pmi_asm_diffs'
250                'r2r_jitstress1',
251                'r2r_jitstress2',
252                'r2r_jitstress1_tiered',
253                'r2r_jitstress2_tiered',
254                'r2r_jitstressregs1',
255                'r2r_jitstressregs2',
256                'r2r_jitstressregs3',
257                'r2r_jitstressregs4',
258                'r2r_jitstressregs8',
259                'r2r_jitstressregs0x10',
260                'r2r_jitstressregs0x80',
261                'r2r_jitstressregs0x1000',
262                'r2r_jitminopts',
263                'r2r_jitforcerelocs',
264                'r2r_gcstress15',
265                'r2r_no_tiered_compilation',
266                'minopts',
267                'tieredcompilation',
268                'no_tiered_compilation',
269                'no_tiered_compilation_innerloop',
270                'forcerelocs',
271                'jitstress1',
272                'jitstress2',
273                'jitstress1_tiered',
274                'jitstress2_tiered',
275                'jitstressregs1',
276                'jitstressregs2',
277                'jitstressregs3',
278                'jitstressregs4',
279                'jitstressregs8',
280                'jitstressregs0x10',
281                'jitstressregs0x80',
282                'jitstressregs0x1000',
283                'jitstress2_jitstressregs1',
284                'jitstress2_jitstressregs2',
285                'jitstress2_jitstressregs3',
286                'jitstress2_jitstressregs4',
287                'jitstress2_jitstressregs8',
288                'jitstress2_jitstressregs0x10',
289                'jitstress2_jitstressregs0x80',
290                'jitstress2_jitstressregs0x1000',
291                'tailcallstress',
292                // 'jitsse2only'                     // Only relevant to xarch
293                'jitnosimd',                         // Only interesting on platforms where SIMD support exists.
294                // 'jitincompletehwintrinsic'
295                // 'jitx86hwintrinsicnoavx'
296                // 'jitx86hwintrinsicnoavx2'
297                // 'jitx86hwintrinsicnosimd'
298                // 'jitnox86hwintrinsic'
299                'corefx_baseline',                   // corefx tests don't use smarty
300                'corefx_minopts',                    // corefx tests don't use smarty
301                'corefx_tieredcompilation',          // corefx tests don't use smarty
302                'corefx_jitstress1',                 // corefx tests don't use smarty
303                'corefx_jitstress2',                 // corefx tests don't use smarty
304                'corefx_jitstressregs1',             // corefx tests don't use smarty
305                'corefx_jitstressregs2',             // corefx tests don't use smarty
306                'corefx_jitstressregs3',             // corefx tests don't use smarty
307                'corefx_jitstressregs4',             // corefx tests don't use smarty
308                'corefx_jitstressregs8',             // corefx tests don't use smarty
309                'corefx_jitstressregs0x10',          // corefx tests don't use smarty
310                'corefx_jitstressregs0x80',          // corefx tests don't use smarty
311                'corefx_jitstressregs0x1000',        // corefx tests don't use smarty
312                'gcstress0x3',
313                'gcstress0xc',
314                'zapdisable',
315                'heapverify1',
316                'gcstress0xc_zapdisable',
317                'gcstress0xc_zapdisable_jitstress2',
318                'gcstress0xc_zapdisable_heapverify1',
319                'gcstress0xc_jitstress1',
320                'gcstress0xc_jitstress2',
321                'gcstress0xc_minopts_heapverify1',
322
323                //
324                // NOTE: the following scenarios are not defined in the 'allScenarios' list! Is this a bug?
325                //
326
327                'minopts_zapdisable',
328                'gcstress0x3_jitstress1',
329                'gcstress0x3_jitstress2',
330                'gcstress0x3_jitstressregs1',
331                'gcstress0x3_jitstressregs2',
332                'gcstress0x3_jitstressregs3',
333                'gcstress0x3_jitstressregs4',
334                'gcstress0x3_jitstressregs8',
335                'gcstress0x3_jitstressregs0x10',
336                'gcstress0x3_jitstressregs0x80',
337                'gcstress0x3_jitstressregs0x1000',
338                'gcstress0xc_jitstressregs1',
339                'gcstress0xc_jitstressregs2',
340                'gcstress0xc_jitstressregs3',
341                'gcstress0xc_jitstressregs4',
342                'gcstress0xc_jitstressregs8',
343                'gcstress0xc_jitstressregs0x10',
344                'gcstress0xc_jitstressregs0x80',
345                'gcstress0xc_jitstressregs0x1000'
346     ]
347   
348     def static validLinuxArmScenarios = [
349                'innerloop',
350                'normal',
351                // 'ilrt'
352                'r2r',
353                // 'longgc'
354                // 'formatting'
355                // 'gcsimulator'
356                // 'jitdiff'
357                // 'standalone_gc'
358                // 'gc_reliability_framework'
359                // 'illink'
360                // 'corefx_innerloop'
361                'crossgen_comparison',
362                'pmi_asm_diffs',
363                'r2r_jitstress1',
364                'r2r_jitstress2',
365                'r2r_jitstress1_tiered',
366                'r2r_jitstress2_tiered',
367                'r2r_jitstressregs1',
368                'r2r_jitstressregs2',
369                'r2r_jitstressregs3',
370                'r2r_jitstressregs4',
371                'r2r_jitstressregs8',
372                'r2r_jitstressregs0x10',
373                'r2r_jitstressregs0x80',
374                'r2r_jitstressregs0x1000',
375                'r2r_jitminopts',
376                'r2r_jitforcerelocs',
377                'r2r_gcstress15',
378                'r2r_no_tiered_compilation',
379                'minopts',
380                'tieredcompilation',
381                'no_tiered_compilation',
382                'no_tiered_compilation_innerloop',
383                'forcerelocs',
384                'jitstress1',
385                'jitstress2',
386                'jitstress1_tiered',
387                'jitstress2_tiered',
388                'jitstressregs1',
389                'jitstressregs2',
390                'jitstressregs3',
391                'jitstressregs4',
392                'jitstressregs8',
393                'jitstressregs0x10',
394                'jitstressregs0x80',
395                'jitstressregs0x1000',
396                'jitstress2_jitstressregs1',
397                'jitstress2_jitstressregs2',
398                'jitstress2_jitstressregs3',
399                'jitstress2_jitstressregs4',
400                'jitstress2_jitstressregs8',
401                'jitstress2_jitstressregs0x10',
402                'jitstress2_jitstressregs0x80',
403                'jitstress2_jitstressregs0x1000',
404                'tailcallstress',
405                // 'jitsse2only'                          // Only relevant to xarch
406                // 'jitnosimd'                            // Only interesting on platforms where SIMD support exists.
407                // 'jitincompletehwintrinsic'
408                // 'jitx86hwintrinsicnoavx'
409                // 'jitx86hwintrinsicnoavx2'
410                // 'jitx86hwintrinsicnosimd'
411                // 'jitnox86hwintrinsic'
412                'corefx_baseline',
413                'corefx_minopts',
414                'corefx_tieredcompilation',
415                'corefx_jitstress1',
416                'corefx_jitstress2',
417                'corefx_jitstressregs1',
418                'corefx_jitstressregs2',
419                'corefx_jitstressregs3',
420                'corefx_jitstressregs4',
421                'corefx_jitstressregs8',
422                'corefx_jitstressregs0x10',
423                'corefx_jitstressregs0x80',
424                'corefx_jitstressregs0x1000',
425                'gcstress0x3',
426                'gcstress0xc',
427                'zapdisable',
428                'heapverify1',
429                'gcstress0xc_zapdisable',
430                'gcstress0xc_zapdisable_jitstress2',
431                'gcstress0xc_zapdisable_heapverify1',
432                'gcstress0xc_jitstress1',
433                'gcstress0xc_jitstress2',
434                'gcstress0xc_minopts_heapverify1'
435     ]
436
437     def static validLinuxArm64Scenarios = [
438                'innerloop',
439                'normal',
440                // 'ilrt'
441                'r2r',
442                // 'longgc'
443                // 'formatting'
444                // 'gcsimulator'
445                // 'jitdiff'
446                // 'standalone_gc'
447                // 'gc_reliability_framework'
448                // 'illink'
449                // 'corefx_innerloop'
450                'crossgen_comparison',
451                'pmi_asm_diffs',
452                'r2r_jitstress1',
453                'r2r_jitstress2',
454                'r2r_jitstress1_tiered',
455                'r2r_jitstress2_tiered',
456                'r2r_jitstressregs1',
457                'r2r_jitstressregs2',
458                'r2r_jitstressregs3',
459                'r2r_jitstressregs4',
460                'r2r_jitstressregs8',
461                'r2r_jitstressregs0x10',
462                'r2r_jitstressregs0x80',
463                'r2r_jitstressregs0x1000',
464                'r2r_jitminopts',
465                'r2r_jitforcerelocs',
466                'r2r_gcstress15',
467                'r2r_no_tiered_compilation',
468                'minopts',
469                'tieredcompilation',
470                'no_tiered_compilation',
471                'no_tiered_compilation_innerloop',
472                'forcerelocs',
473                'jitstress1',
474                'jitstress2',
475                'jitstress1_tiered',
476                'jitstress2_tiered',
477                'jitstressregs1',
478                'jitstressregs2',
479                'jitstressregs3',
480                'jitstressregs4',
481                'jitstressregs8',
482                'jitstressregs0x10',
483                'jitstressregs0x80',
484                'jitstressregs0x1000',
485                'jitstress2_jitstressregs1',
486                'jitstress2_jitstressregs2',
487                'jitstress2_jitstressregs3',
488                'jitstress2_jitstressregs4',
489                'jitstress2_jitstressregs8',
490                'jitstress2_jitstressregs0x10',
491                'jitstress2_jitstressregs0x80',
492                'jitstress2_jitstressregs0x1000',
493                'tailcallstress',
494                // 'jitsse2only'                         // Only relevant to xarch
495                'jitnosimd',                             // Only interesting on platforms where SIMD support exists.
496                // 'jitincompletehwintrinsic'
497                // 'jitx86hwintrinsicnoavx'
498                // 'jitx86hwintrinsicnoavx2'
499                // 'jitx86hwintrinsicnosimd'
500                // 'jitnox86hwintrinsic'
501                'corefx_baseline',
502                'corefx_minopts',
503                'corefx_tieredcompilation',
504                'corefx_jitstress1',
505                'corefx_jitstress2',
506                'corefx_jitstressregs1',
507                'corefx_jitstressregs2',
508                'corefx_jitstressregs3',
509                'corefx_jitstressregs4',
510                'corefx_jitstressregs8',
511                'corefx_jitstressregs0x10',
512                'corefx_jitstressregs0x80',
513                'corefx_jitstressregs0x1000',
514                'gcstress0x3',
515                'gcstress0xc',
516                'zapdisable',
517                'heapverify1',
518                'gcstress0xc_zapdisable',
519                'gcstress0xc_zapdisable_jitstress2',
520                'gcstress0xc_zapdisable_heapverify1',
521                'gcstress0xc_jitstress1',
522                'gcstress0xc_jitstress2',
523                'gcstress0xc_minopts_heapverify1'
524     ]
525
526     def static configurationList = ['Debug', 'Checked', 'Release']
527
528     // This is the set of architectures
529     // Some of these are pseudo-architectures:
530     //    armem -- ARM builds/runs using an emulator. Used for Tizen runs.
531     def static architectureList = ['arm', 'armem', 'arm64', 'x64', 'x86']
532
533     // This set of architectures that cross build on Windows and run on Windows ARM64 hardware.
534     def static armWindowsCrossArchitectureList = ['arm', 'arm64']
535 }
536
537 // **************************************************************
538 // Create some specific views
539 // 
540 // These aren't using the Utilities.addStandardFolderView() function, because that creates
541 // views based on a single regular expression. These views will be generated by adding a
542 // specific set of jobs to them.
543 //
544 // Utilities.addStandardFolderView() also creates a lot of additional stuff around the
545 // view, like "Build Statistics", "Job Statistics", "Unstable Jobs". Until it is determined
546 // those are required, don't add them (which simplifies the view pages, as well).
547 // **************************************************************
548
549 class Views {
550     def static MergeJobView = null
551     def static PeriodicJobView = null
552     def static ArchitectureViews = [:]
553     def static OSViews = [:]
554 }
555
556 // MergeJobView: include all jobs that execute when a PR change is merged.
557 Views.MergeJobView = listView('Merge') {
558     recurse()
559     columns {
560         status()
561         weather()
562         name()
563         lastSuccess()
564         lastFailure()
565         lastDuration()
566         buildButton()
567     }
568 }
569
570 // PeriodicJobView: include all jobs that execute on a schedule
571 Views.PeriodicJobView = listView('Periodic') {
572     recurse()
573     columns {
574         status()
575         weather()
576         name()
577         lastSuccess()
578         lastFailure()
579         lastDuration()
580         buildButton()
581     }
582 }
583
584 // Create a view for non-PR jobs for each architecture.
585 Constants.architectureList.each { architecture ->
586     Views.ArchitectureViews[architecture] = listView(architecture) {
587         recurse()
588         columns {
589             status()
590             weather()
591             name()
592             lastSuccess()
593             lastFailure()
594             lastDuration()
595             buildButton()
596         }
597     }
598 }
599
600 // Create a view for non-PR jobs for each OS.
601 Constants.osList.each { os ->
602     // Don't create one for the special 'Windows_NT_BuildOnly'
603     if (os == 'Windows_NT_BuildOnly') {
604         return
605     }
606     Views.OSViews[os] = listView(os) {
607         recurse()
608         columns {
609             status()
610             weather()
611             name()
612             lastSuccess()
613             lastFailure()
614             lastDuration()
615             buildButton()
616         }
617     }
618 }
619
620 def static addToMergeView(def job) {
621     Views.MergeJobView.with {
622         jobs {
623             name(job.name)
624         }
625     }
626 }
627
628 def static addToPeriodicView(def job) {
629     Views.PeriodicJobView.with {
630         jobs {
631             name(job.name)
632         }
633     }
634 }
635
636 def static addToViews(def job, def isFlowJob, def isPR, def architecture, def os, def configuration, def scenario) {
637     if (isPR) {
638         // No views want PR jobs currently.
639         return
640     }
641
642     // We don't want to include in view any job that is only used by a flow job (because we want the views to have only the
643     // "top-level" jobs. Build only jobs are such jobs.
644     if (os == 'Windows_NT_BuildOnly') {
645         return
646     }
647
648     if (!isFlowJob) {
649         // For non-flow jobs, which ones are only used by flow jobs?
650         if ((architecture == 'arm') || (architecture == 'arm64')) {
651             if (isCoreFxScenario(scenario)) {
652                 // We have corefx-specific scenario builds for each of the runs, but these are driven by flow jobs.
653                 return
654             }
655
656             // We're left with the basic normal/innerloop builds. We might want to remove these from the views also, if desired.
657             // However, there are a few, like the Debug Build, that is build only, not "Build and Test", that we should leave.
658         }
659     }
660
661     // Add to architecture view.
662     Views.ArchitectureViews[architecture].with {
663         jobs {
664             name(job.name)
665         }
666     }
667
668     // Add to OS view.
669     Views.OSViews[os].with {
670         jobs {
671             name(job.name)
672         }
673     }
674 }
675
676 def static addPeriodicTriggerHelper(def job, String cronString, boolean alwaysRuns = false) {
677     addToPeriodicView(job)
678     Utilities.addPeriodicTrigger(job, cronString, alwaysRuns)
679 }
680
681 def static addGithubPushTriggerHelper(def job) {
682     addToMergeView(job)
683     Utilities.addGithubPushTrigger(job)
684 }
685
686
687 def static setMachineAffinity(def job, def os, def architecture, def options = null) {
688     assert os instanceof String
689     assert architecture instanceof String
690
691     def armArches = ['arm', 'armem', 'arm64']
692
693     if (!(architecture in armArches)) {
694         assert options == null
695         Utilities.setMachineAffinity(job, os, 'latest-or-auto')
696
697         return
698     }
699
700     // This is an arm(64) job.
701     //
702     // There are several options.
703     //
704     // Windows_NT
705     // 
706     // Arm32 (Build) -> latest-arm64
707     //       |-> os == "Windows_NT" && (architecture == "arm") && options['use_arm64_build_machine'] == true
708     // Arm32 (Test)  -> arm64-windows_nt
709     //       |-> os == "Windows_NT" && (architecture == "arm") && options['use_arm64_build_machine'] == false
710     //
711     // Arm64 (Build) -> latest-arm64
712     //       |-> os == "Windows_NT" && architecture == "arm64" && options['use_arm64_build_machine'] == true
713     // Arm64 (Test)  -> arm64-windows_nt
714     //       |-> os == "Windows_NT" && architecture == "arm64" && options['use_arm64_build_machine'] == false
715     //
716     // Ubuntu
717     //
718     // Arm32 emulator (Build, Test) -> arm-cross-latest
719     //       |-> os == "Tizen" && (architecture == "armem")
720     //
721     // Arm32 hardware (Flow) -> Ubuntu 16.04 latest-or-auto (don't use limited arm hardware)
722     //       |-> os == "Ubuntu" && (architecture == "arm") && options['is_flow_job'] == true
723     // Arm32 hardware (Build) -> Ubuntu 16.04 latest-or-auto
724     //       |-> os == "Ubuntu" && (architecture == "arm") && options['is_build_job'] == true
725     // Arm32 hardware (Test) -> Helix ubuntu.1404.arm32.open queue
726     //       |-> os == "Ubuntu" && (architecture == "arm")
727     //
728     // Arm64 (Build) -> arm64-cross-latest
729     //       |-> os != "Windows_NT" && architecture == "arm64" && options['is_build_job'] == true
730     // Arm64 (Test) -> Helix Ubuntu.1604.Arm64.Open queue
731     //       |-> os != "Windows_NT" && architecture == "arm64"
732     //
733     // Note: we are no longer using Jenkins tags "arm64-huge-page-size", "arm64-small-page-size".
734     // Support for Linux arm64 large page size has been removed for now, as it wasn't being used.
735     //
736     // Note: we are no longer using Jenkins tag 'latest-arm64' for arm/arm64 Windows build machines. Instead,
737     // we are using public VS2017 arm/arm64 tools in a VM from Helix.
738
739     // This has to be a arm arch
740     assert architecture in armArches
741     if (os == "Windows_NT") {
742         // arm32/arm64 Windows jobs share the same machines for now
743         def isBuild = options['use_arm64_build_machine'] == true
744
745         if (isBuild == true) {
746             job.with {
747                 label('Windows.10.Amd64.ClientRS4.DevEx.Open')
748             }
749         } else {
750             Utilities.setMachineAffinity(job, 'windows.10.arm64.open')
751         }
752     } else {
753         assert os != 'Windows_NT'
754
755         if (architecture == 'armem') {
756             // arm emulator (Tizen). Build and test on same machine,
757             // using Docker.
758             assert os == 'Tizen'
759             Utilities.setMachineAffinity(job, 'Ubuntu', 'arm-cross-latest')
760         }
761         else {
762             // arm/arm64 Ubuntu on hardware.
763             assert architecture == 'arm' || architecture == 'arm64'
764             def isFlow  = (options != null) && (options['is_flow_job'] == true)
765             def isBuild = (options != null) && (options['is_build_job'] == true)
766             if (isFlow || isBuild) {
767                 // arm/arm64 Ubuntu build machine. Build uses docker, so the actual host OS is not
768                 // very important. Therefore, use latest or auto. Flow jobs don't need to use arm hardware.
769                 Utilities.setMachineAffinity(job, 'Ubuntu16.04', 'latest-or-auto')
770             } else {
771                 // arm/arm64 Ubuntu test machine. Specify the Helix queue name here.
772                 if (architecture == 'arm64') {
773                     assert os == 'Ubuntu16.04'
774                     job.with {
775                         label('Ubuntu.1604.Arm64.Open')
776                     }
777                 }
778                 else {
779                     assert os == 'Ubuntu'
780                     job.with {
781                         label('ubuntu.1404.arm32.open')
782                     }
783                 }
784             }
785         }
786     }
787 }
788
789 // setJobMachineAffinity: compute the machine affinity options for a job,
790 // then set the job with those affinity options.
791 def static setJobMachineAffinity(def architecture, def os, def isBuildJob, def isTestJob, def isFlowJob, def job)
792 {
793     assert (isBuildJob  && !isTestJob && !isFlowJob) ||
794            (!isBuildJob && isTestJob  && !isFlowJob) ||
795            (!isBuildJob && !isTestJob && isFlowJob)
796
797     def affinityOptions = null
798     def affinityArchitecture = architecture
799
800     if (os == "Windows_NT") {
801         if (architecture in Constants.armWindowsCrossArchitectureList) {
802             if (isBuildJob) {
803                 affinityOptions = [ "use_arm64_build_machine" : true ]
804             } else if (isTestJob) {
805                 affinityOptions = [ "use_arm64_build_machine" : false ]
806             } else if (isFlowJob) {
807                 // For the flow jobs set the machine affinity as x64
808                 affinityArchitecture = 'x64'
809             }
810         }
811     }
812     else {
813         if ((architecture == 'arm64') || (architecture == 'arm')) {
814             if (isBuildJob) {
815                 affinityOptions = ['is_build_job': true]
816             } else if (isFlowJob) {
817                 affinityOptions = ['is_flow_job': true]
818             }
819         }
820     }
821
822     setMachineAffinity(job, os, affinityArchitecture, affinityOptions)
823 }
824
825 def static isGCStressRelatedTesting(def scenario) {
826     // The 'r2r_gcstress15' scenario is a basic scenario.
827     // Detect it and make it a GCStress related.
828     if (scenario == 'r2r_gcstress15')
829     {
830         return true;
831     }
832
833     def gcStressTestEnvVars = [ 'COMPlus_GCStress', 'COMPlus_ZapDisable', 'COMPlus_HeapVerify']
834     def scenarioName = scenario.toLowerCase()
835     def isGCStressTesting = false
836     Constants.jitStressModeScenarios[scenario].each{ k, v ->
837         if (k in gcStressTestEnvVars) {
838             isGCStressTesting = true;
839         }
840     }
841     return isGCStressTesting
842 }
843
844 def static isCoreFxScenario(def scenario) {
845     def corefx_prefix = 'corefx_'
846     if (scenario.length() < corefx_prefix.length()) {
847         return false
848     }
849     return scenario.substring(0,corefx_prefix.length()) == corefx_prefix
850 }
851
852 def static isR2RBaselineScenario(def scenario) {
853     return (scenario == 'r2r')
854 }
855
856 def static isR2RStressScenario(def scenario) {
857     return Constants.r2rStressScenarios.containsKey(scenario)
858 }
859
860 def static isR2RScenario(def scenario) {
861     return isR2RBaselineScenario(scenario) || isR2RStressScenario(scenario)
862 }
863
864 def static isJitStressScenario(def scenario) {
865     return Constants.jitStressModeScenarios.containsKey(scenario)
866 }
867
868 def static isLongGc(def scenario) {
869     return (scenario == 'longgc' || scenario == 'gcsimulator')
870 }
871
872 def static isJitDiff(def scenario) {
873     return (scenario == 'jitdiff')
874 }
875
876 def static isGcReliabilityFramework(def scenario) {
877     return (scenario == 'gc_reliability_framework')
878 }
879
880 def static isArmWindowsScenario(def scenario) {
881     return Constants.validArmWindowsScenarios.contains(scenario)
882 }
883
884 def static isValidPrTriggeredInnerLoopJob(os, architecture, configuration, isBuildOnly) {
885     if (isBuildOnly == true) {
886         os = 'Windows_NT_BuildOnly'
887     }
888
889     def validOsPrTriggerArchConfigs = Constants.prTriggeredValidInnerLoopCombos[os]
890     if (validOsPrTriggerArchConfigs != null) {
891         def validOsPrTriggerConfigs = validOsPrTriggerArchConfigs[architecture]
892         if (validOsPrTriggerConfigs != null) {
893             if (configuration in validOsPrTriggerConfigs) {
894                 return true
895             }
896         }
897     }
898
899     return false
900 }
901
902 // This means the job builds and runs the 'innerloop' test set. This does not mean the job is 
903 // scheduled with a default PR trigger despite the correlation being true at the moment.
904 def static isInnerloopTestScenario(def scenario) {
905     return (scenario == 'innerloop' || scenario == 'no_tiered_compilation_innerloop')
906 }
907
908 def static isCrossGenComparisonScenario(def scenario) {
909     return (scenario == 'crossgen_comparison')
910 }
911
912 def static shouldGenerateCrossGenComparisonJob(def os, def architecture, def configuration, def scenario) {
913     assert isCrossGenComparisonScenario(scenario)
914     return ((os == 'Ubuntu' && architecture == 'arm') || (os == 'Ubuntu16.04' && architecture == 'arm64')) && (configuration == 'Checked' || configuration == 'Release')
915 }
916
917 def static getFxBranch(def branch) {
918     def fxBranch = branch
919     // Map 'dev/unix_test_workflow' to 'master' so we can test CoreFX jobs in the CoreCLR dev/unix_test_workflow
920     // branch even though CoreFX doesn't have such a branch.
921     if (branch == 'dev/unix_test_workflow') {
922         fxBranch = 'master'
923     }
924     return fxBranch
925 }
926
927 def static setJobTimeout(newJob, isPR, architecture, configuration, scenario, isBuildOnly) {
928     // 2 hours (120 minutes) is the default timeout
929     def timeout = 120
930
931     if (!isInnerloopTestScenario(scenario)) {
932         // Pri-1 test builds take a long time (see calculateBuildCommands()). So up the Pri-1 build jobs timeout.
933         timeout = 240
934     }
935
936     if (!isBuildOnly) {
937         // Note that these can only increase, never decrease, the Pri-1 timeout possibly set above.
938         if (isGCStressRelatedTesting(scenario)) {
939             timeout = 4320
940         }
941         else if (isCoreFxScenario(scenario)) {
942             timeout = 360
943             if (architecture == 'arm64') {
944                 if (configuration == 'Checked' || configuration == 'Debug') {
945                     // ARM64 checked/debug is slow, see #17414.
946                     timeout *= 3;
947                 }
948             }
949         }
950         else if (isJitStressScenario(scenario)) {
951             timeout = 300
952         }
953         else if (isR2RBaselineScenario(scenario)) {
954             timeout = 240
955         }
956         else if (isLongGc(scenario)) {
957             timeout = 1440
958         }
959         else if (isJitDiff(scenario)) {
960             timeout = 240
961         }
962         else if (isGcReliabilityFramework(scenario)) {
963             timeout = 1440
964         }
965         else if (architecture == 'armem' || architecture == 'arm64') {
966             timeout = 240
967         }
968
969         if (architecture == 'arm') {
970             // ARM32 machines are particularly slow.
971             timeout += 120
972         }
973     }
974
975     if (configuration == 'Debug') {
976         // Debug runs can be very slow. Add an hour.
977         timeout += 60
978     }
979
980     // If we've changed the timeout from the default, set it in the job.
981
982     if (timeout != 120) {
983         Utilities.setJobTimeout(newJob, timeout)
984     }
985 }
986
987 def static getJobFolder(def scenario) {
988     if (isJitStressScenario(scenario) || isR2RStressScenario(scenario)) {
989         return 'jitstress'
990     }
991     if (scenario == 'illink') {
992         return 'illink'
993     }
994     return ''
995 }
996
997 def static getStressModeDisplayName(def scenario) {
998     def displayStr = ''
999     Constants.jitStressModeScenarios[scenario].each{ k, v ->
1000         def prefixLength = 'COMPlus_'.length()
1001         if (k.length() >= prefixLength) {
1002             def modeName = k.substring(prefixLength, k.length())
1003             if (displayStr != '') {
1004                 // Separate multiple variables with a space.
1005                 displayStr += ' '
1006             }
1007             displayStr += modeName + '=' + v
1008         }
1009     }
1010
1011     if (isCoreFxScenario(scenario)) {
1012         displayStr = ('CoreFx ' + displayStr).trim()
1013     }
1014
1015     return displayStr
1016 }
1017
1018 def static getR2RDisplayName(def scenario) {
1019     // Assume the scenario name is one from the r2rStressScenarios dict, and remove its "r2r_" prefix.
1020     def displayStr = scenario
1021     def prefixLength = 'r2r_'.length()
1022     if (displayStr.length() >= prefixLength) {
1023         displayStr = "R2R " + displayStr.substring(prefixLength, displayStr.length())
1024     } else if (scenario == 'r2r') {
1025         displayStr = "R2R"
1026     }
1027     return displayStr
1028 }
1029
1030 def static getScenarioDisplayString(def scenario) {
1031     switch (scenario) {
1032         case 'innerloop':
1033             return "Innerloop Build and Test"
1034
1035         case 'no_tiered_compilation_innerloop':
1036             def displayStr = getStressModeDisplayName(scenario)
1037             return "Innerloop Build and Test (Jit - ${displayStr})"
1038
1039         case 'corefx_innerloop':
1040             return "CoreFX Tests"
1041
1042         case 'normal':
1043             return "Build and Test"
1044
1045         case 'jitdiff':
1046             return "Jit Diff Build and Test"
1047
1048         case 'ilrt':
1049             return "IL RoundTrip Build and Test"
1050
1051         case 'longgc':
1052             return "Long-Running GC Build & Test"
1053
1054         case 'gcsimulator':
1055             return "GC Simulator"
1056
1057         case 'standalone_gc':
1058             return "Standalone GC"
1059
1060         case 'gc_reliability_framework':
1061             return "GC Reliability Framework"
1062
1063         case 'illink':
1064             return "via ILLink"
1065
1066         default:
1067             if (isJitStressScenario(scenario)) {
1068                 def displayStr = getStressModeDisplayName(scenario)
1069                 return "Build and Test (Jit - ${displayStr})"
1070             }
1071             else if (isR2RScenario(scenario)) {
1072                 def displayStr = getR2RDisplayName(scenario)
1073                 return "${displayStr} Build and Test"
1074             }
1075             else {
1076                 return "${scenario}"
1077             }
1078             break
1079     }
1080
1081     println("Unknown scenario: ${scenario}");
1082     assert false
1083 }
1084
1085 //
1086 // Functions to create an environment script.
1087 //      envScriptCreate -- initialize the script (call first)
1088 //      envScriptFinalize -- finalize the script (call last)
1089 //      envScriptSetStressModeVariables -- set stress mode variables in the env script
1090 //      envScriptAppendExistingScript -- append an existing script to the generated script
1091 //
1092 // Each script returns a string of commands. Concatenate all the strings together before
1093 // adding them to the builds commands, to make sure they get executed as one Jenkins script.
1094 //
1095
1096 // Initialize the environment setting script.
1097 def static envScriptCreate(def os, def stepScriptLocation) {
1098     def stepScript = ''
1099     if (os == 'Windows_NT') {
1100         stepScript += "echo Creating TestEnv script\r\n"
1101         stepScript += "if exist ${stepScriptLocation} del ${stepScriptLocation}\r\n"
1102
1103         // Create at least an empty script.
1104         stepScript += "echo. > ${stepScriptLocation}\r\n"
1105     }
1106     else {
1107         stepScript += "echo Creating environment setting script\n"
1108         stepScript += "echo \\#\\!/usr/bin/env bash > ${stepScriptLocation}\n"
1109     }
1110
1111     return stepScript
1112 }
1113
1114 // Generates the string for setting stress mode variables.
1115 def static envScriptSetStressModeVariables(def os, def stressModeVars, def stepScriptLocation) {
1116     def stepScript = ''
1117     if (os == 'Windows_NT') {
1118         stressModeVars.each{ k, v ->
1119             // Write out what we are writing to the script file
1120             stepScript += "echo Setting ${k}=${v}\r\n"
1121             // Write out the set itself to the script file`
1122             stepScript += "echo set ${k}=${v} >> ${stepScriptLocation}\r\n"
1123         }
1124     }
1125     else {
1126         stressModeVars.each{ k, v ->
1127             // Write out what we are writing to the script file
1128             stepScript += "echo Setting ${k}=${v}\n"
1129             // Write out the set itself to the script file`
1130             stepScript += "echo export ${k}=${v} >> ${stepScriptLocation}\n"
1131         }
1132     }
1133
1134     return stepScript
1135 }
1136
1137 // Append an existing script to an environment script.
1138 // Returns string of commands to do this.
1139 def static envScriptAppendExistingScript(def os, def appendScript, def stepScriptLocation) {
1140     assert (os == 'Windows_NT')
1141     def stepScript = ''
1142
1143     stepScript += "echo Appending ${appendScript} to ${stepScriptLocation}\r\n"
1144     stepScript += "type ${appendScript} >> ${stepScriptLocation}\r\n"
1145
1146     return stepScript
1147 }
1148
1149 // Finalize an environment setting script.
1150 // Returns string of commands to do this.
1151 def static envScriptFinalize(def os, def stepScriptLocation) {
1152     def stepScript = ''
1153
1154     if (os == 'Windows_NT') {
1155         // Display the resulting script. This is useful when looking at the output log file.
1156         stepScript += "echo Display the total script ${stepScriptLocation}\r\n"
1157         stepScript += "type ${stepScriptLocation}\r\n"
1158     }
1159     else {
1160         stepScript += "chmod +x ${stepScriptLocation}\n"
1161     }
1162
1163     return stepScript
1164 }
1165
1166 def static isNeedDocker(def architecture, def os, def isBuild) {
1167     if (isBuild) {
1168         if (architecture == 'x86' && os == 'Ubuntu') {
1169             return true
1170         }
1171         else if (architecture == 'armem') {
1172             return true
1173         }
1174         else if (architecture == 'arm') {
1175             if (os == 'Ubuntu') {
1176                 return true
1177             }
1178         }
1179         else if (architecture == 'arm64') {
1180             if (os == 'Ubuntu16.04') {
1181                 return true
1182             }
1183         }
1184     }
1185     else {
1186         if (architecture == 'x86' && os == 'Ubuntu') {
1187             return true
1188         }
1189     }
1190     return false
1191 }
1192
1193 def static getDockerImageName(def architecture, def os, def isBuild) {
1194     // We must change some docker private images to official later
1195     if (isBuild) {
1196         if (architecture == 'x86' && os == 'Ubuntu') {
1197             return "hseok82/dotnet-buildtools-prereqs:ubuntu-16.04-crossx86-ef0ac75-20175511035548"
1198         }
1199         else if (architecture == 'armem') {
1200             if (os == 'Tizen') {
1201                 return "tizendotnet/dotnet-buildtools-prereqs:ubuntu-16.04-cross-e435274-20180426002255-tizen-rootfs-5.0m1"
1202             }
1203         }
1204         else if (architecture == 'arm') {
1205             if (os == 'Ubuntu') {
1206                 return "microsoft/dotnet-buildtools-prereqs:ubuntu-14.04-cross-e435274-20180426002420"
1207             }
1208         }
1209         else if (architecture == 'arm64') {
1210             if (os == 'Ubuntu16.04') {
1211                 return "microsoft/dotnet-buildtools-prereqs:ubuntu-16.04-cross-arm64-a3ae44b-20180315221921"
1212             }
1213         }
1214     }
1215     else {
1216         if (architecture == 'x86' && os == 'Ubuntu') {
1217             return "hseok82/dotnet-buildtools-prereqs:ubuntu1604_x86_test"
1218         }
1219     }
1220     println("Unknown architecture to use docker: ${architecture} ${os}");
1221     assert false
1222 }
1223
1224 def static getTestArtifactsTgzFileName(def osGroup, def architecture, def configuration) {
1225     return "bin-tests-${osGroup}.${architecture}.${configuration}.tgz"
1226 }
1227
1228 // We have a limited amount of some hardware. For these, scale back the periodic testing we do,
1229 // and only allowing using this hardware in some specific branches.
1230 def static jobRequiresLimitedHardware(def architecture, def os) {
1231     if (architecture == 'arm') {
1232         // arm Windows and Linux hardware is limited.
1233         return true
1234     }
1235     else if (architecture == 'arm64') {
1236         // arm64 Windows and Linux hardware is limited.
1237         return true
1238     }
1239     else {
1240         return false
1241     }
1242 }
1243
1244 // Calculates the name of the build job based on some typical parameters.
1245 //
1246 def static getJobName(def configuration, def architecture, def os, def scenario, def isBuildOnly) {
1247     // If the architecture is x64, do not add that info into the build name.
1248     // Need to change around some systems and other builds to pick up the right builds
1249     // to do that.
1250
1251     def suffix = scenario != 'normal' ? "_${scenario}" : '';
1252     if (isBuildOnly) {
1253         suffix += '_bld'
1254     }
1255     def baseName = ''
1256     switch (architecture) {
1257         case 'x64':
1258             if (scenario == 'normal') {
1259                 // For now we leave x64 off of the name for compatibility with other jobs
1260                 baseName = configuration.toLowerCase() + '_' + os.toLowerCase()
1261             }
1262             else if (scenario == 'formatting') {
1263                 // we don't care about the configuration for the formatting job. It runs all configs
1264                 baseName = architecture.toLowerCase() + '_' + os.toLowerCase()
1265             }
1266             else {
1267                 baseName = architecture.toLowerCase() + '_' + configuration.toLowerCase() + '_' + os.toLowerCase()
1268             }
1269             break
1270         case 'armem':
1271             // These are cross builds
1272             assert os == 'Tizen'
1273             baseName = 'armel_cross_' + configuration.toLowerCase() + '_' + os.toLowerCase()
1274             break
1275         case 'arm':
1276         case 'arm64':
1277             // These are cross builds
1278             baseName = architecture.toLowerCase() + '_cross_' + configuration.toLowerCase() + '_' + os.toLowerCase()
1279             break
1280         case 'x86':
1281             baseName = architecture.toLowerCase() + '_' + configuration.toLowerCase() + '_' + os.toLowerCase()
1282             break
1283         default:
1284             println("Unknown architecture: ${architecture}");
1285             assert false
1286             break
1287     }
1288
1289     return baseName + suffix
1290 }
1291
1292 def static addNonPRTriggers(def job, def branch, def isPR, def architecture, def os, def configuration, def scenario, def isFlowJob, def isWindowsBuildOnlyJob, def bidailyCrossList) {
1293
1294     // The dev/unix_test_workflow branch is used for Jenkins CI testing. We generally do not need any non-PR
1295     // triggers in the branch, because that would use machine resources unnecessarily.
1296     if (branch == 'dev/unix_test_workflow') {
1297         return
1298     }
1299
1300     // Limited hardware is restricted for non-PR triggers to certain branches.
1301     if (jobRequiresLimitedHardware(architecture, os) && (!(branch in Constants.LimitedHardwareBranches))) {
1302         return
1303     }
1304
1305     // Ubuntu x86 CI jobs are failing. Disable non-PR triggered jobs to avoid these constant failures
1306     // until this is fixed. Tracked by https://github.com/dotnet/coreclr/issues/19003.
1307     if (architecture == 'x86' && os == 'Ubuntu') {
1308         return
1309     }
1310
1311     def isNormalOrInnerloop = (scenario == "normal" || scenario == "innerloop")
1312
1313     // Check scenario.
1314     switch (scenario) {
1315         case 'crossgen_comparison':
1316             if (isFlowJob && ((os == 'Ubuntu' && architecture == 'arm') || (os == 'Ubuntu16.04' && architecture == 'arm64')) && (configuration == 'Checked' || configuration == 'Release')) {
1317                 addPeriodicTriggerHelper(job, '@daily')
1318             }
1319             break
1320
1321         case 'pmi_asm_diffs':
1322             // No non-PR triggers for now.
1323             break
1324
1325         case 'normal':
1326             switch (architecture) {
1327                 case 'x64':
1328                 case 'x86':
1329                     if (isFlowJob && architecture == 'x86' && os == 'Ubuntu') {
1330                         addPeriodicTriggerHelper(job, '@daily')
1331                     }
1332                     else if (isFlowJob || os == 'Windows_NT' || (architecture == 'x64' && !(os in Constants.crossList))) {
1333                         addGithubPushTriggerHelper(job)
1334                     }
1335                     break
1336                 case 'arm64':
1337                     if (os == 'Windows_NT') {
1338                         if (isFlowJob || (isNormalOrInnerloop && (configuration == 'Debug'))) {
1339                             // We would normally want a per-push trigger, but with limited hardware we can't keep up.
1340                             // Do the builds daily.
1341                             addPeriodicTriggerHelper(job, '@daily')
1342                         }
1343                     }
1344                     else {
1345                         // Only the flow jobs get push triggers; the build and test jobs are triggered by the flow job.
1346                         if (isFlowJob) {
1347                             addPeriodicTriggerHelper(job, '@daily')
1348                         }
1349                     }
1350                     break
1351                 case 'arm':
1352                     if (os == 'Windows_NT') {
1353                         if (isFlowJob || (isNormalOrInnerloop && (configuration == 'Debug'))) {
1354                             // We would normally want a push trigger, but with limited hardware we can't keep up.
1355                             // Do the builds daily.
1356                             addPeriodicTriggerHelper(job, '@daily')
1357                         }
1358                     }
1359                     else {
1360                         assert os == 'Ubuntu'
1361                         // Only the flow jobs get push triggers; the build and test jobs are triggered by the flow job.
1362                         if (isFlowJob) {
1363                             // Currently no push triggers, with limited arm Linux hardware.
1364                             // TODO: If we have enough machine capacity, add some arm Linux push triggers.
1365                             addPeriodicTriggerHelper(job, '@daily')
1366                         }
1367                     }
1368                     break
1369                 case 'armem':
1370                     addGithubPushTriggerHelper(job)
1371                     break
1372                 default:
1373                     println("Unknown architecture: ${architecture}");
1374                     assert false
1375                     break
1376             }
1377             break
1378         case 'r2r':
1379             assert !(os in bidailyCrossList)
1380             // r2r gets a push trigger for checked/release
1381             if (configuration == 'Checked' || configuration == 'Release') {
1382                 if (architecture == 'x64' && os != 'OSX10.12') {
1383                     //Flow jobs should be Windows, Ubuntu, OSX0.12, or CentOS
1384                     if (isFlowJob || os == 'Windows_NT') {
1385                         addGithubPushTriggerHelper(job)
1386                     }
1387                 // OSX10.12 r2r jobs should only run every 12 hours, not daily.
1388                 } else if (architecture == 'x64' && os == 'OSX10.12'){
1389                     if (isFlowJob) {
1390                         addPeriodicTriggerHelper(job, 'H H/12 * * *')
1391                     }
1392                 }
1393                 // For x86, only add per-commit jobs for Windows
1394                 else if (architecture == 'x86') {
1395                     if (os == 'Windows_NT') {
1396                         addGithubPushTriggerHelper(job)
1397                     }
1398                 }
1399                 // arm r2r jobs should only run weekly.
1400                 else if (architecture == 'arm') {
1401                     if (isFlowJob) {
1402                         addPeriodicTriggerHelper(job, '@weekly')
1403                     }
1404                 }
1405                 // arm64 r2r jobs should only run weekly.
1406                 else if (architecture == 'arm64') {
1407                     if (isFlowJob) {
1408                         addPeriodicTriggerHelper(job, '@weekly')
1409                     }
1410                 }
1411             }
1412             break
1413         case 'r2r_jitstress1':
1414         case 'r2r_jitstress2':
1415         case 'r2r_jitstress1_tiered':
1416         case 'r2r_jitstress2_tiered':
1417         case 'r2r_jitstressregs1':
1418         case 'r2r_jitstressregs2':
1419         case 'r2r_jitstressregs3':
1420         case 'r2r_jitstressregs4':
1421         case 'r2r_jitstressregs8':
1422         case 'r2r_jitstressregs0x10':
1423         case 'r2r_jitstressregs0x80':
1424         case 'r2r_jitstressregs0x1000':
1425         case 'r2r_jitminopts':
1426         case 'r2r_jitforcerelocs':
1427         case 'r2r_gcstress15':
1428         case 'r2r_no_tiered_compilation':
1429             assert !(os in bidailyCrossList)
1430
1431             // GCStress=C is currently not supported on OS X
1432             if (os == 'OSX10.12' && isGCStressRelatedTesting(scenario)) {
1433                 break
1434             }
1435
1436             if (configuration == 'Checked' || configuration == 'Release') {
1437                 if (architecture == 'x64') {
1438                     //Flow jobs should be Windows, Ubuntu, OSX10.12, or CentOS
1439                     if (isFlowJob || os == 'Windows_NT') {
1440                         addPeriodicTriggerHelper(job, 'H H * * 3,6') // some time every Wednesday and Saturday
1441                     }
1442                 }
1443                 // For x86, only add periodic jobs for Windows
1444                 else if (architecture == 'x86') {
1445                     if (os == 'Windows_NT') {
1446                         addPeriodicTriggerHelper(job, 'H H * * 3,6') // some time every Wednesday and Saturday
1447                     }
1448                 }
1449                 else if (architecture == 'arm') {
1450                     if (isFlowJob) {
1451                         addPeriodicTriggerHelper(job, '@weekly')
1452                     }
1453                 }
1454                 else if (architecture == 'arm64') {
1455                     if (isFlowJob) {
1456                         addPeriodicTriggerHelper(job, '@weekly')
1457                     }
1458                 }
1459             }
1460             break
1461         case 'longgc':
1462             assert (os == 'Ubuntu' || os == 'Windows_NT' || os == 'OSX10.12')
1463             assert configuration == 'Release'
1464             assert architecture == 'x64'
1465             addPeriodicTriggerHelper(job, '@daily')
1466             // TODO: Add once external email sending is available again
1467             // addEmailPublisher(job, 'dotnetgctests@microsoft.com')
1468             break
1469         case 'gcsimulator':
1470             assert (os == 'Ubuntu' || os == 'Windows_NT' || os == 'OSX10.12')
1471             assert configuration == 'Release'
1472             assert architecture == 'x64'
1473             addPeriodicTriggerHelper(job, 'H H * * 3,6') // some time every Wednesday and Saturday
1474             // TODO: Add once external email sending is available again
1475             // addEmailPublisher(job, 'dotnetgctests@microsoft.com')
1476             break
1477         case 'standalone_gc':
1478             assert (os == 'Ubuntu' || os == 'Windows_NT' || os == 'OSX10.12')
1479             assert (configuration == 'Release' || configuration == 'Checked')
1480             // TODO: Add once external email sending is available again
1481             // addEmailPublisher(job, 'dotnetgctests@microsoft.com')
1482             addPeriodicTriggerHelper(job, '@daily')
1483             break
1484         case 'gc_reliability_framework':
1485             assert (os == 'Ubuntu' || os == 'Windows_NT' || os == 'OSX10.12')
1486             assert (configuration == 'Release' || configuration == 'Checked')
1487             // Only triggered by phrase.
1488             break
1489         case 'ilrt':
1490             assert !(os in bidailyCrossList)
1491             // ILASM/ILDASM roundtrip one gets a daily build, and only for release
1492             if (architecture == 'x64' && configuration == 'Release') {
1493                 if (isFlowJob || os == 'Windows_NT') {
1494                     addPeriodicTriggerHelper(job, '@daily')
1495                 }
1496             }
1497             break
1498         case 'jitdiff':
1499             assert (os == 'Ubuntu' || os == 'Windows_NT' || os == 'OSX10.12')
1500             assert configuration == 'Checked'
1501             assert (architecture == 'x64' || architecture == 'x86')
1502             addGithubPushTriggerHelper(job)
1503             break
1504         case 'formatting':
1505             assert (os == 'Windows_NT' || os == "Ubuntu")
1506             assert architecture == 'x64'
1507             addGithubPushTriggerHelper(job)
1508             break
1509         case 'jitstressregs1':
1510         case 'jitstressregs2':
1511         case 'jitstressregs3':
1512         case 'jitstressregs4':
1513         case 'jitstressregs8':
1514         case 'jitstressregs0x10':
1515         case 'jitstressregs0x80':
1516         case 'jitstressregs0x1000':
1517         case 'minopts':
1518         case 'tieredcompilation':
1519         case 'no_tiered_compilation':
1520         case 'forcerelocs':
1521         case 'jitstress1':
1522         case 'jitstress2':
1523         case 'jitstress1_tiered':
1524         case 'jitstress2_tiered':
1525         case 'jitstress2_jitstressregs1':
1526         case 'jitstress2_jitstressregs2':
1527         case 'jitstress2_jitstressregs3':
1528         case 'jitstress2_jitstressregs4':
1529         case 'jitstress2_jitstressregs8':
1530         case 'jitstress2_jitstressregs0x10':
1531         case 'jitstress2_jitstressregs0x80':
1532         case 'jitstress2_jitstressregs0x1000':
1533         case 'tailcallstress':
1534         case 'jitsse2only':
1535         case 'jitnosimd':
1536         case 'jitnox86hwintrinsic':
1537         case 'jitincompletehwintrinsic':
1538         case 'jitx86hwintrinsicnoavx':
1539         case 'jitx86hwintrinsicnoavx2':
1540         case 'jitx86hwintrinsicnosimd':
1541         case 'corefx_baseline':
1542         case 'corefx_minopts':
1543         case 'corefx_tieredcompilation':
1544         case 'corefx_jitstress1':
1545         case 'corefx_jitstress2':
1546         case 'corefx_jitstressregs1':
1547         case 'corefx_jitstressregs2':
1548         case 'corefx_jitstressregs3':
1549         case 'corefx_jitstressregs4':
1550         case 'corefx_jitstressregs8':
1551         case 'corefx_jitstressregs0x10':
1552         case 'corefx_jitstressregs0x80':
1553         case 'corefx_jitstressregs0x1000':
1554         case 'zapdisable':
1555             if (os == 'CentOS7.1') {
1556                 break
1557             }
1558             if (os in bidailyCrossList) {
1559                 break
1560             }
1561             // ARM corefx testing uses non-flow jobs to provide the configuration-specific
1562             // build for the flow job. We don't need cron jobs for these. Note that the
1563             // Windows ARM jobs depend on a Windows "build only" job that exits the trigger
1564             // function very early, so only non-Windows gets here.
1565             if ((architecture == 'arm') && isCoreFxScenario(scenario) && !isFlowJob) {
1566                 break
1567             }
1568             if ((architecture == 'arm64') && isCoreFxScenario(scenario) && !isFlowJob) {
1569                 break
1570             }
1571             if (jobRequiresLimitedHardware(architecture, os)) {
1572                 if ((architecture == 'arm64') && (os == 'Ubuntu16.04')) {
1573                     // These jobs are very fast on Linux/arm64 hardware, so run them daily.
1574                     addPeriodicTriggerHelper(job, '@daily')
1575                 }
1576                 else {
1577                     addPeriodicTriggerHelper(job, '@weekly')
1578                 }
1579             }
1580             else {
1581                 addPeriodicTriggerHelper(job, '@daily')
1582             }
1583             break
1584         case 'heapverify1':
1585         case 'gcstress0x3':
1586             if (os == 'CentOS7.1') {
1587                 break
1588             }
1589             if (os in bidailyCrossList) {
1590                 break
1591             }
1592             addPeriodicTriggerHelper(job, '@weekly')
1593             break
1594         case 'gcstress0xc':
1595         case 'gcstress0xc_zapdisable':
1596         case 'gcstress0xc_zapdisable_jitstress2':
1597         case 'gcstress0xc_zapdisable_heapverify1':
1598         case 'gcstress0xc_jitstress1':
1599         case 'gcstress0xc_jitstress2':
1600         case 'gcstress0xc_minopts_heapverify1':
1601             if (os == 'OSX10.12') {
1602                 // GCStress=C is currently not supported on OS X
1603                 break
1604             }
1605             if (os == 'CentOS7.1') {
1606                 break
1607             }
1608             if (os in bidailyCrossList) {
1609                 break
1610             }
1611             addPeriodicTriggerHelper(job, '@weekly')
1612             break
1613
1614         case 'illink':
1615             // Testing on other operating systems TBD
1616             assert (os == 'Windows_NT' || os == 'Ubuntu')
1617             if (architecture == 'x64' || architecture == 'x86') {
1618                 if (configuration == 'Checked') {
1619                     addPeriodicTriggerHelper(job, '@daily')
1620                 }
1621             }
1622             break
1623
1624         default:
1625             println("Unknown scenario: ${scenario}");
1626             assert false
1627             break
1628     }
1629     return
1630 }
1631
1632 // **************************
1633 // Define the basic inner loop builds for PR and commit.  This is basically just the set
1634 // of coreclr builds over linux/osx 10.12/windows and debug/release/checked.  In addition, the windows
1635 // builds will do a couple extra steps.
1636 // **************************
1637
1638 // Adds a trigger for the PR build if one is needed.  If isFlowJob is true, then this is the
1639 // flow job that rolls up the build and test for non-windows OS's.  // If the job is a windows build only job,
1640 // it's just used for internal builds
1641 // If you add a job with a trigger phrase, please add that phrase to coreclr/Documentation/project-docs/ci-trigger-phrases.md
1642 def static addTriggers(def job, def branch, def isPR, def architecture, def os, def configuration, def scenario, def isFlowJob, def isWindowsBuildOnlyJob) {
1643     def isNormalOrInnerloop = (scenario == "normal" || scenario == "innerloop")
1644     
1645     if (isWindowsBuildOnlyJob) {
1646         return
1647     }
1648
1649     def bidailyCrossList = ['RHEL7.2', 'Debian8.4']
1650     // Non pull request builds.
1651     if (!isPR) {
1652         addNonPRTriggers(job, branch, isPR, architecture, os, configuration, scenario, isFlowJob, isWindowsBuildOnlyJob, bidailyCrossList)
1653         return
1654     }
1655
1656     def arm64Users = [
1657         'adityamandaleeka',
1658         'AndyAyersMS',
1659         'briansull',
1660         'BruceForstall',
1661         'CarolEidt',
1662         'davidwrighton',
1663         'echesakovMSFT',
1664         'erozenfeld',
1665         'janvorli',
1666         'jashook',
1667         'pgodeq',
1668         'RussKeldorph',
1669         'sandreenko',
1670         'sdmaclea',
1671         'swaroop-sridhar',
1672         'jkotas',
1673         'markwilkie',
1674         'weshaggard'
1675     ]
1676
1677     // Pull request builds.  Generally these fall into two categories: default triggers and on-demand triggers
1678     // We generally only have a distinct set of default triggers but a bunch of on-demand ones.
1679
1680     def contextString = ""
1681     def triggerString = ""
1682     def needsTrigger = true
1683     def isDefaultTrigger = false
1684     def isArm64PrivateJob = false
1685     def scenarioString = ""
1686
1687     // Set up default context string and trigger phrases. This is overridden in places, sometimes just to keep
1688     // the existing non-standard descriptions and phrases. In some cases, the scenarios are asymmetric, as for
1689     // some jobs where the Debug configuration just does builds, no tests.
1690     //
1691     // Some configurations, like arm32/arm64, always use the exact scenario name as part of the context string.
1692     // This makes it possible to copy/paste the displayed context string as "@dotnet-bot test <context-string>"
1693     // to invoke the trigger. Any "fancy" context string makes that impossible, requiring the user to either 
1694     // remember the mapping from context string to trigger string, or use "@dotnet-bot help" to look it up.
1695
1696     if (architecture == 'armem') {
1697         assert os == 'Tizen'
1698         architecture = 'armel'
1699     }
1700
1701     switch (architecture) {
1702         case 'armel':
1703         case 'arm':
1704         case 'arm64':
1705             contextString = "${os} ${architecture} Cross ${configuration}"
1706             triggerString = "(?i).*test\\W+${os}\\W+${architecture}\\W+Cross\\W+${configuration}"
1707
1708             if (scenario == 'innerloop') {
1709                 contextString += " Innerloop"
1710                 triggerString += "\\W+Innerloop"
1711             }
1712             else {
1713                 contextString += " ${scenario}"
1714                 triggerString += "\\W+${scenario}"
1715             }
1716
1717             if (scenario == 'pmi_asm_diffs') {
1718                 // Don't add the "Build and Test" part
1719             }
1720             else if (configuration == 'Debug') {
1721                 contextString += " Build"
1722                 triggerString += "\\W+Build"
1723             }
1724             else {
1725                 contextString += " Build and Test"
1726                 triggerString += "\\W+Build and Test"
1727             }
1728
1729             triggerString += ".*"
1730             break
1731
1732         default:
1733             scenarioString = getScenarioDisplayString(scenario)
1734             contextString = "${os} ${architecture} ${configuration} ${scenarioString}"
1735             triggerString = "(?i).*test\\W+${os}\\W+${architecture}\\W+${configuration}"
1736
1737             switch (scenario) {
1738                 case 'normal':
1739                     triggerString += "\\W+Build and Test.*"
1740                     break
1741
1742                 case 'corefx_innerloop': // maintain this asymmetry
1743                     triggerString += "\\W+CoreFX Tests.*"
1744                     break
1745
1746                 default:
1747                     triggerString += "\\W+${scenario}.*"
1748                     break
1749             }
1750
1751             triggerString += ".*"
1752             break
1753     }
1754
1755     // Now determine what kind of trigger this job needs, if any. Any job should be triggerable, except for
1756     // non-flow jobs that are only used as part of flow jobs.
1757
1758     switch (architecture) {
1759         case 'x64': // editor brace matching: {
1760             if (scenario == 'formatting') {
1761                 assert configuration == 'Checked'
1762                 if (os == 'Windows_NT' || os == 'Ubuntu') {
1763                     isDefaultTrigger = true
1764                     contextString = "${os} ${architecture} Formatting"
1765                 }
1766                 break
1767             }
1768
1769             if (scenario == 'pmi_asm_diffs') {
1770                 // Everything is already set.
1771                 // No default triggers.
1772                 break
1773             }
1774
1775             switch (os) {
1776                 // OpenSUSE, Debian & RedHat get trigger phrases for pri 0 build, and pri 1 build & test
1777                 case 'Debian8.4':
1778                 case 'RHEL7.2':
1779                     if (scenario == 'innerloop') {
1780                         assert !isFlowJob
1781                         contextString = "${os} ${architecture} ${configuration} Innerloop Build"
1782                         isDefaultTrigger = true
1783                         break
1784                     }
1785
1786                     // fall through
1787
1788                 case 'Fedora24':
1789                 case 'Ubuntu16.04':
1790                 case 'Ubuntu16.10':
1791                     assert !isFlowJob
1792                     assert scenario != 'innerloop'
1793                     contextString = "${os} ${architecture} ${configuration} Build"
1794                     triggerString = "(?i).*test\\W+${os}\\W+${architecture}\\W+${configuration}\\W+Build.*"
1795                     break
1796
1797                 case 'Ubuntu':
1798                     if (scenario == 'illink') {
1799                         break
1800                     }
1801                     else if (scenario == 'corefx_innerloop') {
1802                         if (configuration == 'Checked') {
1803                             isDefaultTrigger = true
1804                         }
1805                         break
1806                     }
1807
1808                     // fall through
1809
1810                 case 'OSX10.12':
1811                     // Triggers on the non-flow jobs aren't necessary here
1812                     // Corefx testing uses non-flow jobs.
1813                     if (!isFlowJob && !isCoreFxScenario(scenario)) {
1814                         needsTrigger = false
1815                         break
1816                     }
1817                     switch (scenario) {
1818                         case 'innerloop':
1819                             isDefaultTrigger = true
1820                             break
1821
1822                         case 'no_tiered_compilation_innerloop':
1823                             if (os == 'Ubuntu') {
1824                                 isDefaultTrigger = true
1825                             }
1826                             break
1827
1828                         default:
1829                             break
1830                     }
1831                     break
1832
1833                 case 'CentOS7.1':
1834                     switch (scenario) {
1835                         case 'innerloop':
1836                             // CentOS uses checked for default PR tests while debug is build only
1837                             if (configuration == 'Debug') {
1838                                 isDefaultTrigger = true
1839                                 contextString = "${os} ${architecture} ${configuration} Innerloop Build"
1840                                 break
1841                             }
1842                             
1843                             // Make sure this is a flow job to get build and test.
1844                             if (!isFlowJob) {
1845                                 needsTrigger = false
1846                                 break
1847                             }
1848
1849                             if (configuration == 'Checked') {
1850                                 assert job.name.contains("flow")
1851                                 isDefaultTrigger = true
1852                                 contextString = "${os} ${architecture} ${configuration} Innerloop Build and Test"
1853                             }
1854                             break
1855
1856                         case 'normal':
1857                             // Make sure this is a flow job to get build and test.
1858                             if (!isFlowJob) {
1859                                 needsTrigger = false
1860                                 break
1861                             }
1862                             break
1863
1864                         default:
1865                             break
1866                     }
1867                     break
1868
1869                 case 'Windows_NT':
1870                     switch (scenario) {
1871                         case 'innerloop':
1872                         case 'no_tiered_compilation_innerloop':
1873                             isDefaultTrigger = true
1874                             break
1875
1876                         case 'corefx_innerloop':
1877                             if (configuration == 'Checked' || configuration == 'Release') {
1878                                 isDefaultTrigger = true
1879                             }
1880                             break
1881
1882                         default:
1883                             break
1884                     }
1885                     break
1886
1887                 default:
1888                     println("Unknown os: ${os}");
1889                     assert false
1890                     break
1891
1892             } // switch (os)
1893
1894             break
1895         // editor brace matching: }
1896
1897         case 'armel': // editor brace matching: {
1898             job.with {
1899                 publishers {
1900                     azureVMAgentPostBuildAction {
1901                         agentPostBuildAction('Delete agent if the build was not successful (when idle).')
1902                     }
1903                 }
1904             }
1905
1906             switch (os) {
1907                 case 'Tizen':
1908                     if (scenario == 'innerloop') {
1909                         if (configuration == 'Checked') {
1910                             isDefaultTrigger = true
1911                         }
1912                     }
1913                     break
1914             }
1915
1916             break
1917         // editor brace matching: }
1918
1919         case 'arm':
1920         case 'arm64': // editor brace matching: {
1921
1922             switch (os) {
1923                 case 'Ubuntu':
1924                 case 'Ubuntu16.04':
1925
1926                     // Triggers on the non-flow jobs aren't necessary
1927                     if (!isFlowJob) {
1928                         needsTrigger = false
1929                         break
1930                     }
1931                     if (os == 'Ubuntu' && architecture == 'arm') {
1932                         switch (scenario) {
1933                             case 'innerloop':
1934                             case 'no_tiered_compilation_innerloop':
1935                                 if (configuration == 'Checked') {
1936                                     isDefaultTrigger = true
1937                                 }
1938                                 break
1939                              case 'crossgen_comparison':
1940                                 if (configuration == 'Checked' || configuration == 'Release') {
1941                                     isDefaultTrigger = true
1942                                 }
1943                                 break
1944                         }
1945                     }
1946                     break
1947
1948                 case 'Windows_NT':
1949                     assert isArmWindowsScenario(scenario)
1950
1951                     // For Debug normal/innerloop scenario, we don't do test runs, so we don't use flow jobs. That means we need a trigger for
1952                     // the non-flow Build job. All others need a trigger on the flow job.
1953                     def needsFlowJobTrigger = !(isNormalOrInnerloop && (configuration == 'Debug'))
1954                     if (isFlowJob != needsFlowJobTrigger) {
1955                         needsTrigger = false
1956                         break
1957                     }
1958
1959                     switch (scenario) {
1960                         case 'innerloop':
1961                             if (configuration == 'Checked') {
1962                                 isDefaultTrigger = true
1963                                 isArm64PrivateJob = true
1964                             }
1965                             break
1966                         default:
1967                             isArm64PrivateJob = true
1968                             break
1969                     }
1970                     break
1971                 default:
1972                     println("NYI os: ${os}");
1973                     assert false
1974                     break
1975             }
1976             break
1977
1978         // editor brace matching: }
1979         case 'x86': // editor brace matching: {
1980             assert ((os == 'Windows_NT') || ((os == 'Ubuntu') && isNormalOrInnerloop))
1981             if (os == 'Ubuntu') {
1982                 // Triggers on the non-flow jobs aren't necessary here
1983                 if (!isFlowJob) {
1984                     needsTrigger = false
1985                     break
1986                 }
1987                 
1988                 // on-demand only for ubuntu x86
1989                 contextString = "${os} ${architecture} ${configuration} Build"
1990                 triggerString = "(?i).*test\\W+${os}\\W+${architecture}\\W+${configuration}.*"
1991                 break
1992             }
1993             switch (scenario) {
1994                 case 'innerloop':
1995                 case 'no_tiered_compilation_innerloop':
1996                     isDefaultTrigger = true
1997                     break
1998                 default:
1999                     break
2000             }
2001             break
2002
2003         // editor brace matching: }
2004
2005         default:
2006             println("Unknown architecture: ${architecture}");
2007             assert false
2008             break
2009     }
2010
2011     if (needsTrigger) {
2012         if (isArm64PrivateJob) {
2013             if (isDefaultTrigger) {
2014                 Utilities.addDefaultPrivateGithubPRTriggerForBranch(job, branch, contextString, null, arm64Users)
2015             }
2016             else {
2017                 Utilities.addPrivateGithubPRTriggerForBranch(job, branch, contextString, triggerString, null, arm64Users)
2018             }
2019         }
2020         else {
2021             if (isDefaultTrigger) {
2022                 Utilities.addGithubPRTriggerForBranch(job, branch, contextString)
2023             }
2024             else {
2025                 Utilities.addGithubPRTriggerForBranch(job, branch, contextString, triggerString)
2026             }
2027         }
2028     }
2029 }
2030
2031 def static calculateBuildCommands(def newJob, def scenario, def branch, def isPR, def architecture, def configuration, def os, def isBuildOnly) {
2032     def buildCommands = []
2033     def osGroup = getOSGroup(os)
2034     def lowerConfiguration = configuration.toLowerCase()
2035
2036     // Which set of tests to build? Innerloop tests build Pri-0.
2037     // Currently, we only generate asm diffs on Pri-0 tests, if we generate asm diffs on tests at all.
2038     // CoreFX testing skipts building tests altogether (done below).
2039     // All other scenarios build Pri-1 tests.
2040     def priority = '1'
2041     if (isInnerloopTestScenario(scenario)) {
2042         priority = '0'
2043     }
2044
2045     def doCoreFxTesting = isCoreFxScenario(scenario)
2046
2047     def buildCoreclrTests = true
2048     if (doCoreFxTesting || (scenario == 'pmi_asm_diffs')) {
2049         // These scenarios don't need the coreclr tests build.
2050         buildCoreclrTests = false
2051     }
2052
2053     // Calculate the build steps, archival, and xunit results
2054     switch (os) {
2055         case 'Windows_NT': // editor brace matching: {
2056             switch (architecture) {
2057                 case 'x64':
2058                 case 'x86':
2059                     def arch = architecture
2060                     def buildOpts = ''
2061
2062                     if (scenario == 'formatting') {
2063                         buildCommands += "python -u tests\\scripts\\format.py -c %WORKSPACE% -o Windows_NT -a ${arch}"
2064                         Utilities.addArchival(newJob, "format.patch", "", true, false)
2065                         break
2066                     }
2067
2068                     if (scenario == 'illink') {
2069                         buildCommands += "tests\\scripts\\build_illink.cmd clone ${arch}"
2070                     }
2071
2072                     // If it is a release build for Windows, ensure PGO is used, else fail the build.
2073                     if ((lowerConfiguration == 'release') &&
2074                         (scenario in Constants.basicScenarios)) {
2075
2076                         buildOpts += ' -enforcepgo'
2077                     }
2078
2079                     if (buildCoreclrTests) {
2080                         buildOpts += " -priority=${priority}"
2081                     } else {
2082                         buildOpts += ' skiptests';
2083                     }
2084
2085                     // Set __TestIntermediateDir to something short. If __TestIntermediateDir is already set, build-test.cmd will
2086                     // output test binaries to that directory. If it is not set, the binaries are sent to a default directory whose name is about
2087                     // 35 characters long.
2088
2089                     buildCommands += "set __TestIntermediateDir=int&&build.cmd ${lowerConfiguration} ${arch} ${buildOpts}"
2090
2091                     if (scenario == 'pmi_asm_diffs') {
2092                         // Now, generate the layout. We don't have any tests, but we need to restore the packages before calling runtest.cmd.
2093                         // Call build-test.cmd to do this. It will do a little more than we need, but that's ok.
2094                         buildCommands += "build-test.cmd ${lowerConfiguration} ${arch} skipmanaged skipnative"
2095                         buildCommands += "tests\\runtest.cmd ${lowerConfiguration} ${arch} GenerateLayoutOnly"
2096
2097                         // TODO: Add -target_branch and -commit_hash arguments based on GitHub variables.
2098                         buildCommands += "python -u %WORKSPACE%\\tests\\scripts\\run-pmi-diffs.py -arch ${arch} -ci_arch ${architecture} -build_type ${configuration}"
2099
2100                         // ZIP up the asm
2101                         buildCommands += "powershell -NoProfile -Command \"Add-Type -Assembly 'System.IO.Compression.FileSystem'; [System.IO.Compression.ZipFile]::CreateFromDirectory('_\\pmi\\asm', '.\\dasm.${os}.${architecture}.${configuration}.zip')\"";
2102
2103                         // Archive the asm
2104                         Utilities.addArchival(newJob, "dasm.${os}.${architecture}.${configuration}.zip")
2105                         break
2106                     }
2107
2108                     if (!isBuildOnly) {
2109                         def runtestArguments = ''
2110                         def testOpts = 'collectdumps'
2111
2112                         if (isR2RScenario(scenario)) {
2113
2114                             // If this is a ReadyToRun scenario, pass 'crossgen'
2115                             // to cause framework assemblies to be crossgen'ed. Pass 'runcrossgentests'
2116                             // to cause the tests to be crossgen'ed.
2117
2118                             testOpts += ' crossgen runcrossgentests'
2119                         }
2120                         else if (scenario == 'jitdiff') {
2121                             testOpts += ' jitdisasm crossgen'
2122                         }
2123                         else if (scenario == 'ilrt') {
2124                             testOpts += ' ilasmroundtrip'
2125                         }
2126                         else if (isLongGc(scenario)) {
2127                             testOpts += " ${scenario} sequential"
2128                         }
2129                         else if (scenario == 'standalone_gc') {
2130                             testOpts += ' gcname clrgc.dll'
2131                         }
2132                         else if (scenario == 'illink') {
2133                             testOpts += " link %WORKSPACE%\\linker\\linker\\bin\\netcore_Release\\netcoreapp2.0\\win10-${arch}\\publish\\illink.exe"
2134                         }
2135
2136                         // Default per-test timeout is 10 minutes. For stress modes and Debug scenarios, increase this
2137                         // to 30 minutes (30 * 60 * 1000 = 180000). The "timeout" argument to runtest.cmd sets this, by
2138                         // taking a timeout value in milliseconds. (Note that it sets the __TestTimeout environment variable,
2139                         // which is read by the xunit harness.)
2140                         if (isJitStressScenario(scenario) || isR2RStressScenario(scenario) || (lowerConfiguration == 'debug'))
2141                         {
2142                             def timeout = 1800000
2143                             testOpts += " timeout ${timeout}"
2144                         }
2145
2146                         // If we are running a stress mode, we should write out the set of key
2147                         // value env pairs to a file at this point and then we'll pass that to runtest.cmd
2148
2149                         def envScriptPath = ''
2150                         if (isJitStressScenario(scenario) || isR2RStressScenario(scenario)) {
2151                             def buildCommandsStr = ''
2152                             envScriptPath = "%WORKSPACE%\\SetStressModes.bat"
2153                             buildCommandsStr += envScriptCreate(os, envScriptPath)
2154
2155                             if (isJitStressScenario(scenario)) {
2156                                 buildCommandsStr += envScriptSetStressModeVariables(os, Constants.jitStressModeScenarios[scenario], envScriptPath)
2157                             }
2158                             else if (isR2RStressScenario(scenario)) {
2159                                 buildCommandsStr += envScriptSetStressModeVariables(os, Constants.r2rStressScenarios[scenario], envScriptPath)
2160                             }
2161
2162                             envScriptFinalize(os, envScriptPath)
2163
2164                             // Note that buildCommands is an array of individually executed commands; we want all the commands used to 
2165                             // create the SetStressModes.bat script to be executed together, hence we accumulate them as strings
2166                             // into a single script.
2167                             buildCommands += buildCommandsStr
2168                         }
2169                         if (envScriptPath != '') {
2170                             testOpts += " TestEnv ${envScriptPath}"
2171                         }
2172
2173                         runtestArguments = "${lowerConfiguration} ${arch} ${testOpts}"
2174
2175                         if (doCoreFxTesting) {
2176                             if (scenario == 'corefx_innerloop') {
2177                                 // Create CORE_ROOT and testhost
2178                                 buildCommands += "build-test.cmd ${lowerConfiguration} ${arch} buildtesthostonly"                                
2179                                 buildCommands += "tests\\runtest.cmd ${runtestArguments} CoreFXTestsAll"
2180
2181                                 // Archive and process (only) the test results
2182                                 Utilities.addArchival(newJob, "bin/Logs/**/testResults.xml")
2183                                 Utilities.addXUnitDotNETResults(newJob, "bin/Logs/**/testResults.xml")
2184                             }
2185                             else {
2186                                 def workspaceRelativeFxRoot = "_/fx"
2187                                 def absoluteFxRoot = "%WORKSPACE%\\_\\fx"
2188                                 def fxBranch = getFxBranch(branch)
2189
2190                                 buildCommands += "python -u %WORKSPACE%\\tests\\scripts\\run-corefx-tests.py -arch ${arch} -ci_arch ${architecture} -build_type ${configuration} -fx_root ${absoluteFxRoot} -fx_branch ${fxBranch} -env_script ${envScriptPath}"
2191
2192                                 // Archive and process (only) the test results
2193                                 Utilities.addArchival(newJob, "${workspaceRelativeFxRoot}/artifacts/bin/**/testResults.xml")
2194                                 Utilities.addXUnitDotNETResults(newJob, "${workspaceRelativeFxRoot}/artifacts/bin/**/testResults.xml")
2195
2196                                 //Archive additional build stuff to diagnose why my attempt at fault injection isn't causing CI to fail
2197                                 Utilities.addArchival(newJob, "SetStressModes.bat", "", true, false)
2198                                 Utilities.addArchival(newJob, "${workspaceRelativeFxRoot}/artifacts/bin/testhost/**", "", true, false)
2199                             }
2200                         }
2201                         else if (isGcReliabilityFramework(scenario)) {
2202                             buildCommands += "tests\\runtest.cmd ${runtestArguments} GenerateLayoutOnly"
2203                             buildCommands += "tests\\scripts\\run-gc-reliability-framework.cmd ${arch} ${configuration}"
2204                         }
2205                         else {
2206                             def buildCommandsStr = "call tests\\runtest.cmd ${runtestArguments}\r\n"
2207                             if (!isBuildOnly) {
2208                                 // If we ran the tests, collect the test logs collected by xunit. We want to do this even if the tests fail, so we
2209                                 // must do it in the same batch file as the test run.
2210
2211                                 buildCommandsStr += "echo on\r\n" // Show the following commands in the log. "echo" doesn't alter the errorlevel.
2212                                 buildCommandsStr += "set saved_errorlevel=%errorlevel%\r\n"
2213                                 buildCommandsStr += "powershell -NoProfile -Command \"Add-Type -Assembly 'System.IO.Compression.FileSystem'; [System.IO.Compression.ZipFile]::CreateFromDirectory('.\\bin\\tests\\${osGroup}.${arch}.${configuration}\\Reports', '.\\bin\\tests\\testReports.zip')\"\r\n";
2214                                 buildCommandsStr += "exit /b %saved_errorlevel%\r\n"
2215
2216                                 def doNotFailIfNothingArchived = true
2217                                 def archiveOnlyIfSuccessful = false
2218                                 Utilities.addArchival(newJob, "bin/tests/testReports.zip", "", doNotFailIfNothingArchived, archiveOnlyIfSuccessful)
2219                             }
2220                             buildCommands += buildCommandsStr
2221                         }
2222                     } // end if (!isBuildOnly)
2223
2224                     if (!doCoreFxTesting) {
2225                         // Run the rest of the build
2226                         // Build the mscorlib for the other OS's
2227                         buildCommands += "build.cmd ${lowerConfiguration} ${arch} linuxmscorlib"
2228                         buildCommands += "build.cmd ${lowerConfiguration} ${arch} osxmscorlib"
2229                        
2230                         if (arch == 'x64') {
2231                             buildCommands += "build.cmd ${lowerConfiguration} arm64 linuxmscorlib"
2232                         }
2233
2234                         if (!isJitStressScenario(scenario)) {
2235                             // Zip up the tests directory so that we don't use so much space/time copying
2236                             // 10s of thousands of files around.
2237                             buildCommands += "powershell -NoProfile -Command \"Add-Type -Assembly 'System.IO.Compression.FileSystem'; [System.IO.Compression.ZipFile]::CreateFromDirectory('.\\bin\\tests\\${osGroup}.${arch}.${configuration}', '.\\bin\\tests\\tests.zip')\"";
2238
2239                             // For Windows, pull full test results and test drops for x86/x64.
2240                             // No need to pull for stress mode scenarios (downstream builds use the default scenario)
2241                             Utilities.addArchival(newJob, "bin/Product/**,bin/tests/tests.zip", "bin/Product/**/.nuget/**")
2242                         }
2243
2244                         if (scenario == 'jitdiff') {
2245                             // retrieve jit-dasm output for base commit, and run jit-diff
2246                             if (!isBuildOnly) {
2247                                 // if this is a build only job, we want to keep the default (build) artifacts for the flow job
2248                                 Utilities.addArchival(newJob, "bin/tests/${osGroup}.${arch}.${configuration}/dasm/**")
2249                             }
2250                         }
2251
2252                         if (!isBuildOnly) {
2253                             Utilities.addXUnitDotNETResults(newJob, 'bin/**/TestRun*.xml', true)
2254                         }
2255                     }
2256
2257                     // Archive the logs, even if the build failed (which is when they are most interesting).
2258                     Utilities.addArchival(newJob, "bin/Logs/*.log,bin/Logs/*.wrn,bin/Logs/*.err", "", /* doNotFailIfNothingArchived */ true, /* archiveOnlyIfSuccessful */ false)
2259                     break
2260                 case 'arm':
2261                 case 'arm64':
2262                     assert isArmWindowsScenario(scenario)
2263
2264                     def buildOpts = ''
2265
2266                     if (buildCoreclrTests) {
2267                         buildOpts += " -priority=${priority}"
2268                     } else {
2269                         buildOpts += ' skiptests'
2270                     }
2271
2272                     // This is now a build only job. Do not run tests. Use the flow job.
2273                     buildCommands += "set __TestIntermediateDir=int&&build.cmd ${lowerConfiguration} ${architecture} ${buildOpts}"
2274
2275                     if (doCoreFxTesting) {
2276                         assert isBuildOnly
2277
2278                         // Set the stress mode variables; this is incorporated into the generated CoreFx RunTests.cmd files.
2279                         def envScriptPath = ''
2280                         def buildCommandsStr = ''
2281                         envScriptPath = "%WORKSPACE%\\SetStressModes.bat"
2282                         buildCommandsStr += envScriptCreate(os, envScriptPath)
2283                         buildCommandsStr += envScriptSetStressModeVariables(os, Constants.jitStressModeScenarios[scenario], envScriptPath)
2284                         envScriptFinalize(os, envScriptPath)
2285                         buildCommands += buildCommandsStr
2286
2287                         def workspaceRelativeFxRootLinux = "_/fx"
2288                         def workspaceRelativeFxRootWin = "_\\fx"
2289                         def absoluteFxRoot = "%WORKSPACE%\\_\\fx"
2290                         def fxBranch = getFxBranch(branch)
2291
2292                         buildCommands += "python -u %WORKSPACE%\\tests\\scripts\\run-corefx-tests.py -arch ${architecture} -ci_arch ${architecture} -build_type ${configuration} -fx_root ${absoluteFxRoot} -fx_branch ${fxBranch} -env_script ${envScriptPath} -no_run_tests"
2293
2294                         // Zip up the CoreFx runtime and tests. We don't need the CoreCLR binaries; they have been copied to the CoreFX tree.
2295                         buildCommands += "powershell -NoProfile -Command \"Add-Type -Assembly 'System.IO.Compression.FileSystem'; [System.IO.Compression.ZipFile]::CreateFromDirectory('${workspaceRelativeFxRootWin}\\artifacts\\bin\\testhost\\netcoreapp-Windows_NT-Release-${architecture}', '${workspaceRelativeFxRootWin}\\fxruntime.zip')\"";
2296                         buildCommands += "powershell -NoProfile -Command \"Add-Type -Assembly 'System.IO.Compression.FileSystem'; [System.IO.Compression.ZipFile]::CreateFromDirectory('${workspaceRelativeFxRootWin}\\artifacts\\bin\\tests', '${workspaceRelativeFxRootWin}\\fxtests.zip')\"";
2297
2298                         Utilities.addArchival(newJob, "${workspaceRelativeFxRootLinux}/fxruntime.zip")
2299                         Utilities.addArchival(newJob, "${workspaceRelativeFxRootLinux}/fxtests.zip")
2300                     } else {
2301                         // Zip up the tests directory so that we don't use so much space/time copying
2302                         // 10s of thousands of files around.
2303                         buildCommands += "powershell -NoProfile -Command \"Add-Type -Assembly 'System.IO.Compression.FileSystem'; [System.IO.Compression.ZipFile]::CreateFromDirectory('.\\bin\\tests\\${osGroup}.${architecture}.${configuration}', '.\\bin\\tests\\tests.zip')\"";
2304
2305                         // Add archival.
2306                         Utilities.addArchival(newJob, "bin/Product/**,bin/tests/tests.zip", "bin/Product/**/.nuget/**")
2307                     }
2308
2309                     // Archive the logs, even if the build failed (which is when they are most interesting).
2310                     Utilities.addArchival(newJob, "bin/Logs/*.log,bin/Logs/*.wrn,bin/Logs/*.err", "", /* doNotFailIfNothingArchived */ true, /* archiveOnlyIfSuccessful */ false)
2311                     break
2312                 default:
2313                     println("Unknown architecture: ${architecture}");
2314                     assert false
2315                     break
2316             }
2317             break
2318         // end case 'Windows_NT'; editor brace matching: }
2319         case 'Ubuntu':
2320         case 'Ubuntu16.04':
2321         case 'Ubuntu16.10':
2322         case 'Debian8.4':
2323         case 'OSX10.12':
2324         case 'CentOS7.1':
2325         case 'RHEL7.2':
2326         case 'Tizen':
2327         case 'Fedora24': // editor brace matching: {
2328             switch (architecture) {
2329                 case 'x86':
2330                     if (os == 'Ubuntu') {
2331                         // build and PAL test
2332                         def dockerImage = getDockerImageName(architecture, os, true)
2333                         buildCommands += "docker run -i --rm -v \${WORKSPACE}:/opt/code -w /opt/code -e ROOTFS_DIR=/crossrootfs/x86 ${dockerImage} ./build.sh ${architecture} cross ${lowerConfiguration}"
2334                         dockerImage = getDockerImageName(architecture, os, false)
2335                         buildCommands += "docker run -i --rm -v \${WORKSPACE}:/opt/code -w /opt/code ${dockerImage} ./src/pal/tests/palsuite/runpaltests.sh /opt/code/bin/obj/${osGroup}.${architecture}.${configuration} /opt/code/bin/paltestout"
2336                         Utilities.addArchival(newJob, "bin/Product/**,bin/obj/*/tests/**/*.so", "bin/Product/**/.nuget/**")
2337                         Utilities.addXUnitDotNETResults(newJob, '**/pal_tests.xml')
2338                     }
2339                     break
2340
2341                 case 'x64':
2342                     if (scenario == 'formatting') {
2343                         buildCommands += "python tests/scripts/format.py -c \${WORKSPACE} -o Linux -a ${architecture}"
2344                         Utilities.addArchival(newJob, "format.patch", "", true, false)
2345                         break
2346                     }
2347
2348                     if (scenario == 'pmi_asm_diffs') {
2349                         buildCommands += "./build.sh ${lowerConfiguration} ${architecture} skiptests skipbuildpackages"
2350                         buildCommands += "./build-test.sh ${lowerConfiguration} ${architecture} generatelayoutonly"
2351
2352                         // TODO: Add -target_branch and -commit_hash arguments based on GitHub variables.
2353                         buildCommands += "python -u \${WORKSPACE}/tests/scripts/run-pmi-diffs.py -arch ${architecture} -ci_arch ${architecture} -build_type ${configuration}"
2354
2355                         // Archive the asm
2356                         buildCommands += "tar -czf dasm.${os}.${architecture}.${configuration}.tgz ./_/pmi/asm"
2357                         Utilities.addArchival(newJob, "dasm.${os}.${architecture}.${configuration}.tgz")
2358                         break
2359                     }
2360
2361                     if (scenario == 'illink') {
2362                         assert(os == 'Ubuntu')
2363                         buildCommands += "./tests/scripts/build_illink.sh --clone --arch=${architecture}"
2364                     }
2365
2366                     if (!doCoreFxTesting) {
2367                         // We run pal tests on all OS but generate mscorlib (and thus, nuget packages)
2368                         // only on supported OS platforms.
2369                         def bootstrapRid = Utilities.getBoostrapPublishRid(os)
2370                         def bootstrapRidEnv = bootstrapRid != null ? "__PUBLISH_RID=${bootstrapRid} " : ''
2371
2372                         buildCommands += "${bootstrapRidEnv}./build.sh ${lowerConfiguration} ${architecture}"
2373
2374                         def testBuildOpts = ""
2375                         if (priority == '1') {
2376                             testBuildOpts = "priority1"
2377                         }
2378
2379                         buildCommands += "./build-test.sh ${lowerConfiguration} ${architecture} ${testBuildOpts}"
2380                         buildCommands += "src/pal/tests/palsuite/runpaltests.sh \${WORKSPACE}/bin/obj/${osGroup}.${architecture}.${configuration} \${WORKSPACE}/bin/paltestout"
2381
2382                         // Archive the bin/tests folder for *_tst jobs
2383                         def testArtifactsTgzFileName = getTestArtifactsTgzFileName(osGroup, architecture, configuration)
2384                         buildCommands += "tar -czf ${testArtifactsTgzFileName} bin/tests/${osGroup}.${architecture}.${configuration}"
2385                         Utilities.addArchival(newJob, "${testArtifactsTgzFileName}", "")
2386                         // And pal tests
2387                         Utilities.addXUnitDotNETResults(newJob, '**/pal_tests.xml')
2388                     }
2389                     else {
2390                         if (scenario == 'corefx_innerloop') {
2391                             assert os == 'Ubuntu' || 'OSX10.12'
2392                             assert architecture == 'x64'
2393
2394                             buildCommands += "./build.sh ${lowerConfiguration} ${architecture} skiptests"
2395                             buildCommands += "./build-test.sh ${lowerConfiguration} ${architecture} generatetesthostonly"
2396                             buildCommands += "./tests/runtest.sh ${lowerConfiguration} --corefxtestsall --testHostDir=\${WORKSPACE}/bin/tests/${osGroup}.${architecture}.${configuration}/testhost/ --coreclr-src=\${WORKSPACE}"
2397                             
2398                             break
2399                             // Archive and process (only) the test results
2400                             Utilities.addArchival(newJob, "bin/Logs/**/testResults.xml")
2401                             Utilities.addXUnitDotNETResults(newJob, "bin/Logs/**/testResults.xml")
2402                         }
2403                         else {
2404                             // Corefx stress testing
2405                             assert os == 'Ubuntu'
2406                             assert architecture == 'x64'
2407                             assert lowerConfiguration == 'checked'
2408                             assert isJitStressScenario(scenario)
2409
2410                             // Build coreclr
2411                             buildCommands += "./build.sh ${lowerConfiguration} ${architecture}"
2412
2413                             def scriptFileName = "\$WORKSPACE/set_stress_test_env.sh"
2414
2415                             def envScriptCmds = envScriptCreate(os, scriptFileName)
2416                             envScriptCmds += envScriptSetStressModeVariables(os, Constants.jitStressModeScenarios[scenario], scriptFileName)
2417                             envScriptCmds += envScriptFinalize(os, scriptFileName)
2418                             buildCommands += envScriptCmds
2419
2420                             // Build and text corefx
2421                             def workspaceRelativeFxRoot = "_/fx"
2422                             def absoluteFxRoot = "\$WORKSPACE/${workspaceRelativeFxRoot}"
2423                             def fxBranch = getFxBranch(branch)
2424
2425                             buildCommands += "python -u \$WORKSPACE/tests/scripts/run-corefx-tests.py -arch ${architecture} -ci_arch ${architecture} -build_type ${configuration} -fx_root ${absoluteFxRoot} -fx_branch ${fxBranch} -env_script ${scriptFileName}"
2426
2427                             // Archive and process (only) the test results
2428                             Utilities.addArchival(newJob, "${workspaceRelativeFxRoot}/artifacts/bin/**/testResults.xml")
2429                             Utilities.addXUnitDotNETResults(newJob, "${workspaceRelativeFxRoot}/artifacts/bin/**/testResults.xml")
2430                         }
2431                     }
2432
2433                     // Archive the logs, even if the build failed (which is when they are most interesting).
2434                     Utilities.addArchival(newJob, "bin/Logs/*.log,bin/Logs/*.wrn,bin/Logs/*.err", "", /* doNotFailIfNothingArchived */ true, /* archiveOnlyIfSuccessful */ false)
2435                     break
2436                 case 'armem':
2437                     // Emulator cross builds for ARM runs on Tizen currently
2438                     assert os == 'Tizen'
2439
2440                     def arm_abi = "armel"
2441                     def linuxCodeName = "tizen"
2442
2443                     // Unzip the Windows test binaries first. Exit with 0
2444                     buildCommands += "unzip -q -o ./bin/tests/tests.zip -d ./bin/tests/Windows_NT.x64.${configuration} || exit 0"
2445
2446                     // Unpack the corefx binaries
2447                     buildCommands += "mkdir ./bin/CoreFxBinDir"
2448                     buildCommands += "tar -xf ./artifacts/bin/build.tar.gz -C ./bin/CoreFxBinDir"
2449
2450                     // Call the ARM CI script to cross build and test using docker
2451                     buildCommands += """./tests/scripts/arm32_ci_script.sh \\
2452                     --mode=docker \\
2453                     --${arm_abi} \\
2454                     --linuxCodeName=${linuxCodeName} \\
2455                     --buildConfig=${lowerConfiguration} \\
2456                     --testRootDir=./bin/tests/Windows_NT.x64.${configuration} \\
2457                     --coreFxBinDir=./bin/CoreFxBinDir \\
2458                     --testDirFile=./tests/testsRunningInsideARM.txt"""
2459
2460                     // Basic archiving of the build, no pal tests
2461                     Utilities.addArchival(newJob, "bin/Product/**,bin/obj/*/tests/**/*.dylib,bin/obj/*/tests/**/*.so", "bin/Product/**/.nuget/**")
2462                     break
2463                 case 'arm64':
2464                 case 'arm':
2465                     // Non-Windows ARM cross builds on hardware run on Ubuntu only
2466                     assert (os == 'Ubuntu') || (os == 'Ubuntu16.04')
2467
2468                     // Add some useful information to the log file. Ignore return codes.
2469                     buildCommands += "uname -a || true"
2470
2471                     // Cross build the Ubuntu/arm product using docker with a docker image that contains the correct
2472                     // Ubuntu cross-compilation toolset (running on a Ubuntu x64 host).
2473                     // For CoreFX testing, we only need the product build; we don't need to generate the layouts. The product
2474                     // build is then copied into the corefx layout by the run-corefx-test.py script. For CoreFX testing, we
2475                     // ZIP up the generated CoreFX runtime and tests.
2476
2477                     def dockerImage = getDockerImageName(architecture, os, true)
2478                     def dockerCmd = "docker run -i --rm -v \${WORKSPACE}:\${WORKSPACE} -w \${WORKSPACE} -e ROOTFS_DIR=/crossrootfs/${architecture} ${dockerImage} "
2479
2480                     buildCommands += "${dockerCmd}\${WORKSPACE}/build.sh ${lowerConfiguration} ${architecture} cross"
2481
2482                     if (doCoreFxTesting) {
2483                         def scriptFileName = "\$WORKSPACE/set_stress_test_env.sh"
2484
2485                         def envScriptCmds = envScriptCreate(os, scriptFileName)
2486                         envScriptCmds += envScriptSetStressModeVariables(os, Constants.jitStressModeScenarios[scenario], scriptFileName)
2487                         envScriptCmds += envScriptFinalize(os, scriptFileName)
2488                         buildCommands += envScriptCmds
2489
2490                         // Build and text corefx
2491                         def workspaceRelativeFxRootLinux = "_/fx"
2492                         def absoluteFxRoot = "\$WORKSPACE/${workspaceRelativeFxRootLinux}"
2493                         def fxBranch = getFxBranch(branch)
2494
2495                         buildCommands += "${dockerCmd}python -u \$WORKSPACE/tests/scripts/run-corefx-tests.py -arch ${architecture} -ci_arch ${architecture} -build_type ${configuration} -fx_root ${absoluteFxRoot} -fx_branch ${fxBranch} -env_script ${scriptFileName} -no_run_tests"
2496
2497                         // Docker creates files with root permission, so we need to zip in docker also, or else we'll get permission errors.
2498                         buildCommands += "${dockerCmd}zip -r ${workspaceRelativeFxRootLinux}/fxruntime.zip ${workspaceRelativeFxRootLinux}/artifacts/bin/testhost/netcoreapp-Linux-Release-${architecture}"
2499                         buildCommands += "${dockerCmd}zip -r ${workspaceRelativeFxRootLinux}/fxtests.zip ${workspaceRelativeFxRootLinux}/artifacts/bin/tests"
2500
2501                         Utilities.addArchival(newJob, "${workspaceRelativeFxRootLinux}/fxruntime.zip")
2502                         Utilities.addArchival(newJob, "${workspaceRelativeFxRootLinux}/fxtests.zip")
2503                     }
2504                     else if (isCrossGenComparisonScenario(scenario)) {
2505                         buildCommands += "${dockerCmd}\${WORKSPACE}/build-test.sh ${lowerConfiguration} ${architecture} cross generatelayoutonly"
2506
2507                         def workspaceRelativeProductBinDir = "bin/Product/${osGroup}.${architecture}.${configuration}"
2508                         def workspaceRelativeCoreLib = "${workspaceRelativeProductBinDir}/IL/System.Private.CoreLib.dll"
2509                         def workspaceRelativeCoreRootDir = "bin/tests/${osGroup}.${architecture}.${configuration}/Tests/Core_Root"
2510                         def workspaceRelativeCrossGenComparisonScript = "tests/scripts/crossgen_comparison.py"
2511                         def workspaceRelativeResultsDir = "_"
2512                         def workspaceRelativeArtifactsArchive = "${os}.${architecture}.${configuration}.${scenario}.zip"
2513                         def crossGenComparisonCmd = "python -u \${WORKSPACE}/${workspaceRelativeCrossGenComparisonScript} "
2514                         def crossArch = "x64"
2515                         def crossGenExecutable = "\${WORKSPACE}/${workspaceRelativeProductBinDir}/${crossArch}/crossgen"
2516                         def workspaceRelativeCrossArchResultDir = "${workspaceRelativeResultsDir}/${osGroup}.${crossArch}_${architecture}.${configuration}"
2517
2518                         buildCommands += "${dockerCmd}mkdir -p \${WORKSPACE}/${workspaceRelativeCrossArchResultDir}"
2519                         buildCommands += "${dockerCmd}${crossGenComparisonCmd}crossgen_corelib --crossgen ${crossGenExecutable} --il_corelib \${WORKSPACE}/${workspaceRelativeCoreLib} --result_dir \${WORKSPACE}/${workspaceRelativeCrossArchResultDir}"
2520                         buildCommands += "${dockerCmd}${crossGenComparisonCmd}crossgen_framework --crossgen ${crossGenExecutable} --core_root \${WORKSPACE}/${workspaceRelativeCoreRootDir} --result_dir \${WORKSPACE}/${workspaceRelativeCrossArchResultDir}"
2521
2522                         buildCommands += "${dockerCmd}zip -r ${workspaceRelativeArtifactsArchive} ${workspaceRelativeCoreLib} ${workspaceRelativeCoreRootDir} ${workspaceRelativeCrossGenComparisonScript} ${workspaceRelativeResultsDir}"
2523                         Utilities.addArchival(newJob, "${workspaceRelativeArtifactsArchive}")
2524                     }
2525                     else if (scenario == 'pmi_asm_diffs') {
2526                         buildCommands += "${dockerCmd}\${WORKSPACE}/build-test.sh ${lowerConfiguration} ${architecture} cross generatelayoutonly"
2527
2528                         // Pass `--skip_diffs` -- the actual diffs will be done on an arm machine in the test job. This is the build job.
2529                         // TODO: Add -target_branch and -commit_hash arguments based on GitHub variables.
2530                         buildCommands += "python -u \${WORKSPACE}/tests/scripts/run-pmi-diffs.py -arch ${architecture} -ci_arch ${architecture} -build_type ${configuration} --skip_diffs"
2531
2532                         // ZIP what we created.
2533                         buildCommands += "zip -r product.${os}.${architecture}.${lowerConfiguration}.zip ./bin/Product/Linux.${architecture}.${configuration}"
2534                         buildCommands += "zip -r product.baseline.${os}.${architecture}.${lowerConfiguration}.zip ./_/pmi/base/bin/Product/Linux.${architecture}.${configuration}"
2535                         buildCommands += "zip -r coreroot.${os}.${architecture}.${lowerConfiguration}.zip ./bin/tests/Linux.${architecture}.${configuration}/Tests/Core_Root"
2536                         buildCommands += "zip -r coreroot.baseline.${os}.${architecture}.${lowerConfiguration}.zip ./_/pmi/base/bin/tests/Linux.${architecture}.${configuration}/Tests/Core_Root"
2537
2538                         // Archive the built artifacts
2539                         Utilities.addArchival(newJob, "product.${os}.${architecture}.${lowerConfiguration}.zip,product.baseline.${os}.${architecture}.${lowerConfiguration}.zip,coreroot.${os}.${architecture}.${lowerConfiguration}.zip,coreroot.baseline.${os}.${architecture}.${lowerConfiguration}.zip")
2540                     }
2541                     else {
2542                         // Then, using the same docker image, build the tests and generate the CORE_ROOT layout.
2543
2544                         def testBuildOpts = ""
2545                         if (priority == '1') {
2546                             testBuildOpts = "priority1"
2547                         }
2548
2549                         buildCommands += "${dockerCmd}\${WORKSPACE}/build-test.sh ${lowerConfiguration} ${architecture} cross ${testBuildOpts}"
2550
2551                         // ZIP up the built tests (including CORE_ROOT and native test components copied to the CORE_ROOT) for the test job (created in the flow job code)
2552                         def testArtifactsTgzFileName = getTestArtifactsTgzFileName(osGroup, architecture, configuration)
2553                         buildCommands += "tar -czf ${testArtifactsTgzFileName} bin/tests/${osGroup}.${architecture}.${configuration}"
2554
2555                         Utilities.addArchival(newJob, "${testArtifactsTgzFileName}", "")
2556                     }
2557
2558                     // Archive the logs, even if the build failed (which is when they are most interesting).
2559                     Utilities.addArchival(newJob, "bin/Logs/*.log,bin/Logs/*.wrn,bin/Logs/*.err", "", /* doNotFailIfNothingArchived */ true, /* archiveOnlyIfSuccessful */ false)
2560
2561                     // We need to clean up the build machines; the docker build leaves newly built files with root permission, which
2562                     // the cleanup task in Jenkins can't remove.
2563                     newJob.with {
2564                         publishers {
2565                             azureVMAgentPostBuildAction {
2566                                 agentPostBuildAction('Delete agent after build execution (when idle).')
2567                             }
2568                         }
2569                     }
2570                     break
2571                 default:
2572                     println("Unknown architecture: ${architecture}");
2573                     assert false
2574                     break
2575             }
2576             break
2577         // editor brace matching: }
2578         default:
2579             println("Unknown os: ${os}");
2580             assert false
2581             break
2582     } // os
2583
2584     return buildCommands
2585 }
2586
2587 // Determine if we should generate a job for the given parameters. This is for non-flow jobs: either build and test, or build only.
2588 // Returns true if the job should be generated.
2589 def static shouldGenerateJob(def scenario, def isPR, def architecture, def configuration, def os, def isBuildOnly)
2590 {
2591     // The various "innerloop" jobs are only available as PR triggered.
2592
2593     if (!isPR) {
2594         if (isInnerloopTestScenario(scenario)) {
2595             return false
2596         }
2597
2598         if (scenario == 'corefx_innerloop') {
2599             return false
2600         }
2601     }
2602
2603     // Tizen is only supported for armem architecture
2604     if (os == 'Tizen' && architecture != 'armem') {
2605         return false
2606     }
2607
2608     // Filter based on architecture.
2609
2610     switch (architecture) {
2611         case 'arm':
2612             if ((os != 'Windows_NT') && (os != 'Ubuntu')) {
2613                 return false
2614             }
2615             break
2616         case 'arm64':
2617             if ((os != 'Windows_NT') && (os != 'Ubuntu16.04')) {
2618                 return false
2619             }
2620             break
2621         case 'armem':
2622             if (os != 'Tizen') {
2623                 return false
2624             }
2625             break
2626         case 'x86':
2627             if ((os != 'Windows_NT') && (os != 'Ubuntu')) {
2628                 return false
2629             }
2630             break
2631         case 'x64':
2632             // Everything implemented
2633             break
2634         default:
2635             println("Unknown architecture: ${architecture}")
2636             assert false
2637             break
2638     }
2639
2640     // Which (Windows) build only jobs are required?
2641
2642     def isNormalOrInnerloop = (scenario == 'innerloop' || scenario == 'normal')
2643
2644     if (isBuildOnly) {
2645         switch (architecture) {
2646             case 'arm':
2647             case 'arm64':
2648                 // We use build only jobs for Windows arm/arm64 cross-compilation corefx testing, so we need to generate builds for that.
2649                 if (!isCoreFxScenario(scenario)) {
2650                     return false
2651                 }
2652                 break
2653             case 'x64':
2654             case 'x86':
2655                 if (!isNormalOrInnerloop) {
2656                     return false
2657                 }
2658                 break
2659             default:
2660                 return false
2661         }
2662     }
2663
2664     // Filter based on scenario.
2665
2666     if (isJitStressScenario(scenario)) {
2667         if (configuration != 'Checked') {
2668             return false
2669         }
2670
2671         def isEnabledOS = (os == 'Windows_NT') ||
2672                           (os == 'Ubuntu' && (architecture == 'x64') && isCoreFxScenario(scenario)) ||
2673                           (os == 'Ubuntu' && architecture == 'arm') ||
2674                           (os == 'Ubuntu16.04' && architecture == 'arm64')
2675         if (!isEnabledOS) {
2676             return false
2677         }
2678
2679         switch (architecture) {
2680             case 'x64':
2681                 break
2682
2683             case 'x86':
2684                 // x86 ubuntu: no stress modes
2685                 if (os == 'Ubuntu') {
2686                     return false
2687                 }
2688                 break
2689
2690             case 'arm':
2691             case 'arm64':
2692                 // We use build only jobs for Windows arm/arm64 cross-compilation corefx testing, so we need to generate builds for that.
2693                 // No "regular" Windows arm corefx jobs, e.g.
2694                 // For Ubuntu arm corefx testing, we use regular jobs (not "build only" since only Windows has "build only", and
2695                 // the Ubuntu arm "regular" jobs don't run tests anyway).
2696                 if (os == 'Windows_NT') {
2697                     if (! (isBuildOnly && isCoreFxScenario(scenario)) ) {
2698                         return false
2699                     }
2700                 }
2701                 else {
2702                     if (!isCoreFxScenario(scenario)) {
2703                         return false
2704                     }
2705                 }
2706                 break
2707
2708             default:
2709                 // armem: no stress jobs for ARM emulator.
2710                 return false
2711         }
2712     }
2713     else if (isR2RScenario(scenario)) {
2714         if (os != 'Windows_NT') {
2715             return false
2716         }
2717
2718         if (isR2RBaselineScenario(scenario)) {
2719             // no need for Debug scenario; Checked is sufficient
2720             if (configuration != 'Checked' && configuration != 'Release') {
2721                 return false
2722             }
2723         }
2724         else if (isR2RStressScenario(scenario)) {
2725             // Stress scenarios only run with Checked builds, not Release (they would work with Debug, but be slow).
2726             if (configuration != 'Checked') {
2727                 return false
2728             }
2729         }
2730
2731         switch (architecture) {
2732             case 'arm':
2733             case 'arm64':
2734                 // Windows arm/arm64 ready-to-run jobs use flow jobs and test jobs, but depend on "normal" (not R2R specific) build jobs.
2735                 return false
2736
2737             default:
2738                 break
2739         }
2740     }
2741     else if (isCrossGenComparisonScenario(scenario)) {
2742         return shouldGenerateCrossGenComparisonJob(os, architecture, configuration, scenario)
2743     }
2744     else {
2745         // Skip scenarios
2746         switch (scenario) {
2747             case 'ilrt':
2748                 // The ilrt build isn't necessary except for Windows_NT2003.  Non-Windows NT uses
2749                 // the default scenario build
2750                 if (os != 'Windows_NT') {
2751                     return false
2752                 }
2753                 // Only x64 for now
2754                 if (architecture != 'x64') {
2755                     return false
2756                 }
2757                 // Release only
2758                 if (configuration != 'Release') {
2759                     return false
2760                 }
2761                 break
2762             case 'jitdiff':
2763                 if (os != 'Windows_NT' && os != 'Ubuntu' && os != 'OSX10.12') {
2764                     return false
2765                 }
2766                 if (architecture != 'x64') {
2767                     return false
2768                 }
2769                 if (configuration != 'Checked') {
2770                     return false
2771                 }
2772                 break
2773             case 'longgc':
2774             case 'gcsimulator':
2775                 if (os != 'Windows_NT' && os != 'Ubuntu' && os != 'OSX10.12') {
2776                     return false
2777                 }
2778                 if (architecture != 'x64') {
2779                     return false
2780                 }
2781                 if (configuration != 'Release') {
2782                     return false
2783                 }
2784                 break
2785             case 'gc_reliability_framework':
2786             case 'standalone_gc':
2787                 if (os != 'Windows_NT' && os != 'Ubuntu' && os != 'OSX10.12') {
2788                     return false
2789                 }
2790
2791                 if (architecture != 'x64') {
2792                     return false
2793                 }
2794
2795                 if (configuration != 'Release' && configuration != 'Checked') {
2796                     return false
2797                 }
2798                 break
2799             // We only run Windows and Ubuntu x64 Checked for formatting right now
2800             case 'formatting':
2801                 if (os != 'Windows_NT' && os != 'Ubuntu') {
2802                     return false
2803                 }
2804                 if (architecture != 'x64') {
2805                     return false
2806                 }
2807                 if (configuration != 'Checked') {
2808                     return false
2809                 }
2810                 break
2811             case 'illink':
2812                 if (os != 'Windows_NT' && (os != 'Ubuntu' || architecture != 'x64')) {
2813                     return false
2814                 }
2815                 if (architecture != 'x64' && architecture != 'x86') {
2816                     return false
2817                 }
2818                 break
2819             case 'normal':
2820                 // Nothing skipped
2821                 break
2822             case 'innerloop':
2823                 if (!isValidPrTriggeredInnerLoopJob(os, architecture, configuration, isBuildOnly)) {
2824                     return false
2825                 }
2826                 break
2827             case 'corefx_innerloop':
2828                 if (os != 'Windows_NT' && os != 'Ubuntu' &&  os != 'OSX10.12') {
2829                     return false
2830                 }
2831                 if (architecture != 'x64') {
2832                     return false
2833                 }
2834                 break
2835             case 'pmi_asm_diffs':
2836                 if (configuration != 'Checked') {
2837                     return false
2838                 }
2839                 if (architecture == 'armem') {
2840                     return false
2841                 }
2842                 // Currently, we don't support pmi_asm_diffs for Windows arm/arm64. We don't have a dotnet CLI available to
2843                 // build jitutils. The jobs are not in validArmWindowsScenarios.
2844                 if ((os == 'Windows_NT') && (architecture == 'arm' || architecture == 'arm64')) {
2845                     return false
2846                 }
2847                 // Currently, no support for Linux x86.
2848                 if ((os != 'Windows_NT') && (architecture == 'x86')) {
2849                     return false
2850                 }
2851                 break
2852             default:
2853                 println("Unknown scenario: ${scenario}")
2854                 assert false
2855                 break
2856         }
2857     }
2858
2859     // The job was not filtered out, so we should generate it!
2860     return true
2861 }
2862
2863 Constants.allScenarios.each { scenario ->
2864     [true, false].each { isPR ->
2865         Constants.architectureList.each { architecture ->
2866             Constants.configurationList.each { configuration ->
2867                 Constants.osList.each { os ->
2868                     // If the OS is Windows_NT_BuildOnly, set the isBuildOnly flag to true
2869                     // and reset the os to Windows_NT
2870                     def isBuildOnly = false
2871                     if (os == 'Windows_NT_BuildOnly') {
2872                         isBuildOnly = true
2873                         os = 'Windows_NT'
2874                     }
2875
2876                     if (!shouldGenerateJob(scenario, isPR, architecture, configuration, os, isBuildOnly)) {
2877                         return
2878                     }
2879
2880                     // Calculate names
2881                     def jobName = getJobName(configuration, architecture, os, scenario, isBuildOnly)
2882                     def folderName = getJobFolder(scenario)
2883
2884                     // Create the new job
2885                     def newJob = job(Utilities.getFullJobName(project, jobName, isPR, folderName)) {}
2886
2887                     addToViews(newJob, false, isPR, architecture, os, configuration, scenario) // isFlowJob == false
2888
2889                     setJobMachineAffinity(architecture, os, true, false, false, newJob) // isBuildJob = true, isTestJob = false, isFlowJob = false
2890
2891                     Utilities.standardJobSetup(newJob, project, isPR, "*/${branch}")
2892                     addTriggers(newJob, branch, isPR, architecture, os, configuration, scenario, false, isBuildOnly) // isFlowJob==false
2893                     setJobTimeout(newJob, isPR, architecture, configuration, scenario, isBuildOnly)
2894
2895                     // Copy Windows build test binaries and corefx build artifacts for Linux cross build for armem.
2896                     // We don't use a flow job for this, but we do depend on there being existing builds with these
2897                     // artifacts produced.
2898                     if ((architecture == 'armem') && (os == 'Tizen')) {
2899                         // Define the Windows Tests and Corefx build job names
2900                         def lowerConfiguration = configuration.toLowerCase()
2901                         def WindowsTestsName = projectFolder + '/' +
2902                                                Utilities.getFullJobName(project,
2903                                                                         getJobName(lowerConfiguration, 'x64' , 'windows_nt', 'normal', true),
2904                                                                         false)
2905                         def fxBranch = getFxBranch(branch)
2906                         def corefxFolder = Utilities.getFolderName('dotnet/corefx') + '/' +
2907                                            Utilities.getFolderName(fxBranch)
2908
2909                         def arm_abi = 'armel'
2910                         def corefx_os = 'tizen'
2911
2912                         // Let's use release CoreFX to test checked CoreCLR,
2913                         // because we do not generate checked CoreFX in CoreFX CI yet.
2914                         def corefx_lowerConfiguration = lowerConfiguration
2915                         if (lowerConfiguration == 'checked') {
2916                             corefx_lowerConfiguration = 'release'
2917                         }
2918
2919                         // Copy the Windows test binaries and the Corefx build binaries
2920                         newJob.with {
2921                             steps {
2922                                 copyArtifacts(WindowsTestsName) {
2923                                     includePatterns('bin/tests/tests.zip')
2924                                     buildSelector {
2925                                         latestSuccessful(true)
2926                                     }
2927                                 }
2928                                 copyArtifacts("${corefxFolder}/${corefx_os}_${arm_abi}_cross_${corefx_lowerConfiguration}") {
2929                                     includePatterns('artifacts/bin/build.tar.gz')
2930                                     buildSelector {
2931                                         latestSuccessful(true)
2932                                     }
2933                                 }
2934                             } // steps
2935                         } // newJob.with
2936                     }
2937
2938                     def buildCommands = calculateBuildCommands(newJob, scenario, branch, isPR, architecture, configuration, os, isBuildOnly)
2939
2940                     newJob.with {
2941                         steps {
2942                             if (os == 'Windows_NT') {
2943                                 buildCommands.each { buildCommand ->
2944                                     batchFile(buildCommand)
2945                                 }
2946                             }
2947                             else {
2948                                 buildCommands.each { buildCommand ->
2949                                     shell(buildCommand)
2950                                 }
2951                             }
2952                         } // steps
2953                     } // newJob.with
2954
2955                 } // os
2956             } // configuration
2957         } // architecture
2958     } // isPR
2959 } // scenario
2960
2961 // Create a Windows ARM/ARM64 test job that will be used by a flow job.
2962 // Returns the newly created job.
2963 def static CreateWindowsArmTestJob(def dslFactory, def project, def architecture, def os, def configuration, def scenario, def isPR, def inputCoreCLRBuildName)
2964 {
2965     def osGroup = getOSGroup(os)
2966     def jobName = getJobName(configuration, architecture, os, scenario, false) + "_tst"
2967
2968     def jobFolder = getJobFolder(scenario)
2969     def newJob = dslFactory.job(Utilities.getFullJobName(project, jobName, isPR, jobFolder)) {
2970         parameters {
2971             stringParam('CORECLR_BUILD', '', "Build number to copy CoreCLR ${osGroup} binaries from")
2972         }
2973
2974         steps {
2975             // Set up the copies
2976
2977             // Coreclr build we are trying to test
2978             //
2979             //  ** NOTE ** This will, correctly, overwrite the CORE_ROOT from the Windows test archive
2980
2981             copyArtifacts(inputCoreCLRBuildName) {
2982                 excludePatterns('**/testResults.xml', '**/*.ni.dll')
2983                 buildSelector {
2984                     buildNumber('${CORECLR_BUILD}')
2985                 }
2986             }
2987
2988             if (isCoreFxScenario(scenario)) {
2989
2990                 // Only arm/arm64 supported for corefx testing now.
2991                 assert architecture == 'arm' || architecture == 'arm64'
2992
2993                 // Unzip CoreFx runtime
2994                 batchFile("powershell -NoProfile -Command \"Add-Type -Assembly 'System.IO.Compression.FileSystem'; [System.IO.Compression.ZipFile]::ExtractToDirectory('_\\fx\\fxruntime.zip', '_\\fx\\artifacts\\bin\\testhost\\netcoreapp-Windows_NT-Release-${architecture}')\"")
2995
2996                 // Unzip CoreFx tests.
2997                 batchFile("powershell -NoProfile -Command \"Add-Type -Assembly 'System.IO.Compression.FileSystem'; [System.IO.Compression.ZipFile]::ExtractToDirectory('_\\fx\\fxtests.zip', '_\\fx\\artifacts\\bin\\tests')\"")
2998
2999                 // Add the script to run the corefx tests
3000                 def corefx_runtime_path   = "%WORKSPACE%\\_\\fx\\artifacts\\bin\\testhost\\netcoreapp-Windows_NT-Release-${architecture}"
3001                 def corefx_tests_dir      = "%WORKSPACE%\\_\\fx\\artifacts\\bin\\tests"
3002                 def corefx_exclusion_file = "%WORKSPACE%\\tests\\${architecture}\\corefx_test_exclusions.txt"
3003                 batchFile("call %WORKSPACE%\\tests\\scripts\\run-corefx-tests.bat ${corefx_runtime_path} ${corefx_tests_dir} ${corefx_exclusion_file} ${architecture}")
3004
3005             } else { // !isCoreFxScenario(scenario)
3006
3007                 // Unzip tests.
3008                 batchFile("powershell -NoProfile -Command \"Add-Type -Assembly 'System.IO.Compression.FileSystem'; [System.IO.Compression.ZipFile]::ExtractToDirectory('bin\\tests\\tests.zip', 'bin\\tests\\${osGroup}.${architecture}.${configuration}')\"")
3009
3010                 def buildCommands = ""
3011
3012                 def coreRootLocation = "%WORKSPACE%\\bin\\tests\\Windows_NT.${architecture}.${configuration}\\Tests\\Core_Root"
3013                 def addEnvVariable =  { variable, value -> buildCommands += "set ${variable}=${value}\r\n"}
3014                 def addCommand = { cmd -> buildCommands += "${cmd}\r\n"}
3015
3016                 // Make sure Command Extensions are enabled. Used so %ERRORLEVEL% is available.
3017                 addCommand("SETLOCAL ENABLEEXTENSIONS")
3018
3019                 // For all jobs 
3020                 addEnvVariable("CORE_ROOT", coreRootLocation)
3021                 addEnvVariable("COMPlus_NoGuiOnAssert", "1")
3022                 addEnvVariable("COMPlus_ContinueOnAssert", "0")
3023
3024                 // If we are running a stress mode, we'll set those variables as well
3025                 if (isJitStressScenario(scenario) || isR2RStressScenario(scenario)) {
3026                     def stressValues = null
3027                     if (isJitStressScenario(scenario)) {
3028                         stressValues = Constants.jitStressModeScenarios[scenario]
3029                     }
3030                     else {
3031                         stressValues = Constants.r2rStressScenarios[scenario]
3032                     }
3033
3034                     stressValues.each { key, value -> 
3035                         addEnvVariable(key, value)
3036                     }
3037                 }
3038
3039                 if (isR2RScenario(scenario)) {
3040                     // Crossgen the framework assemblies.
3041                     buildCommands += """
3042 @for %%F in (%CORE_ROOT%\\*.dll) do @call :PrecompileAssembly "%CORE_ROOT%" "%%F" %%~nxF
3043 @goto skip_PrecompileAssembly
3044
3045 :PrecompileAssembly
3046 @REM Skip mscorlib since it is already precompiled.
3047 @if /I "%3" == "mscorlib.dll" exit /b 0
3048 @if /I "%3" == "mscorlib.ni.dll" exit /b 0
3049
3050 "%CORE_ROOT%\\crossgen.exe" /Platform_Assemblies_Paths "%CORE_ROOT%" %2 >nul 2>nul
3051 @if "%errorlevel%" == "-2146230517" (
3052     echo %2 is not a managed assembly.
3053 ) else if "%errorlevel%" == "-2146234344" (
3054     echo %2 is not a managed assembly.
3055 ) else if %errorlevel% neq 0 (
3056     echo Unable to precompile %2
3057 ) else (
3058     echo Precompiled %2
3059 )
3060 @exit /b 0
3061
3062 :skip_PrecompileAssembly
3063 """
3064
3065                     // Set RunCrossGen variable to cause test wrappers to invoke their logic to run
3066                     // crossgen on tests before running them.
3067                     addEnvVariable("RunCrossGen", "true")
3068                 } // isR2RScenario(scenario)
3069
3070                 // Run runtest.cmd
3071                 // Do not run generate layout. It will delete the correct CORE_ROOT, and we do not have a correct product
3072                 // dir to copy from.
3073                 def runtestCommand = "call %WORKSPACE%\\tests\\runtest.cmd ${architecture} ${configuration} skipgeneratelayout"
3074
3075                 addCommand("${runtestCommand}")
3076                 addCommand("echo on") // Show the following commands in the log. "echo" doesn't alter the errorlevel.
3077                 addCommand("set saved_errorlevel=%errorlevel%")
3078
3079                 // Collect the test logs collected by xunit. Ignore errors here. We want to collect these even if the run
3080                 // failed for some reason, so it needs to be in this batch file.
3081
3082                 addCommand("powershell -NoProfile -Command \"Add-Type -Assembly 'System.IO.Compression.FileSystem'; [System.IO.Compression.ZipFile]::CreateFromDirectory('.\\bin\\tests\\${osGroup}.${architecture}.${configuration}\\Reports', '.\\bin\\tests\\testReports.zip')\"");
3083
3084                 // Use the runtest.cmd errorlevel as the script errorlevel.
3085                 addCommand("exit /b %saved_errorlevel%")
3086
3087                 batchFile(buildCommands)
3088             } // non-corefx testing
3089         } // steps
3090     } // job
3091
3092     if (!isCoreFxScenario(scenario)) {
3093         def doNotFailIfNothingArchived = true
3094         def archiveOnlyIfSuccessful = false
3095         Utilities.addArchival(newJob, "bin/tests/testReports.zip", "", doNotFailIfNothingArchived, archiveOnlyIfSuccessful)
3096
3097         Utilities.addXUnitDotNETResults(newJob, 'bin/**/TestRun*.xml', true)
3098     }
3099
3100     return newJob
3101 }
3102
3103 // Create a test job not covered by the "Windows ARM" case that will be used by a flow job.
3104 // E.g., non-Windows tests.
3105 // Returns the newly created job.
3106 def static CreateOtherTestJob(def dslFactory, def project, def branch, def architecture, def os, def configuration, def scenario, def isPR, def inputCoreCLRBuildName)
3107 {
3108     def lowerConfiguration = configuration.toLowerCase()
3109
3110     def isUbuntuArm64Job = ((os == "Ubuntu16.04") && (architecture == 'arm64'))
3111     def isUbuntuArm32Job = ((os == "Ubuntu") && (architecture == 'arm'))
3112     def isUbuntuArmJob = isUbuntuArm32Job || isUbuntuArm64Job
3113
3114     def doCoreFxTesting = isCoreFxScenario(scenario)
3115     def isPmiAsmDiffsScenario = (scenario == 'pmi_asm_diffs')
3116
3117     def workspaceRelativeFxRootLinux = "_/fx" // only used for CoreFX testing
3118
3119     def osGroup = getOSGroup(os)
3120     def jobName = getJobName(configuration, architecture, os, scenario, false) + "_tst"
3121
3122     def testOpts = ''
3123     def useServerGC = false
3124
3125     // Enable Server GC for Ubuntu PR builds
3126     // REVIEW: why? Does this apply to all architectures? Why only PR?
3127     if (os == 'Ubuntu' && isPR) {
3128         testOpts += ' --useServerGC'
3129         useServerGC = true
3130     }
3131
3132     if (isR2RScenario(scenario)) {
3133
3134         testOpts += ' --crossgen --runcrossgentests'
3135
3136         if (scenario == 'r2r_jitstress1') {
3137             testOpts += ' --jitstress=1'
3138         }
3139         else if (scenario == 'r2r_jitstress2') {
3140             testOpts += ' --jitstress=2'
3141         }
3142         else if (scenario == 'r2r_jitstress1_tiered') {
3143             testOpts += ' --jitstress=1'
3144         }
3145         else if (scenario == 'r2r_jitstress2_tiered') {
3146             testOpts += ' --jitstress=2'
3147         }
3148         else if (scenario == 'r2r_jitstressregs1') {
3149             testOpts += ' --jitstressregs=1'
3150         }
3151         else if (scenario == 'r2r_jitstressregs2') {
3152             testOpts += ' --jitstressregs=2'
3153         }
3154         else if (scenario == 'r2r_jitstressregs3') {
3155             testOpts += ' --jitstressregs=3'
3156         }
3157         else if (scenario == 'r2r_jitstressregs4') {
3158             testOpts += ' --jitstressregs=4'
3159         }
3160         else if (scenario == 'r2r_jitstressregs8') {
3161             testOpts += ' --jitstressregs=8'
3162         }
3163         else if (scenario == 'r2r_jitstressregs0x10') {
3164             testOpts += ' --jitstressregs=0x10'
3165         }
3166         else if (scenario == 'r2r_jitstressregs0x80') {
3167             testOpts += ' --jitstressregs=0x80'
3168         }
3169         else if (scenario == 'r2r_jitstressregs0x1000') {
3170             testOpts += ' --jitstressregs=0x1000'
3171         }
3172         else if (scenario == 'r2r_jitminopts') {
3173             testOpts += ' --jitminopts'
3174         }
3175         else if (scenario == 'r2r_jitforcerelocs') {
3176             testOpts += ' --jitforcerelocs'
3177         }
3178         else if (scenario == 'r2r_gcstress15') {
3179             testOpts += ' --gcstresslevel=0xF'
3180         }
3181     }
3182     else if (scenario == 'jitdiff') {
3183         testOpts += ' --jitdisasm --crossgen'
3184     }
3185     else if (scenario == 'illink') {
3186         testOpts += ' --link=\$WORKSPACE/linker/linker/bin/netcore_Release/netcoreapp2.0/ubuntu-x64/publish/illink'
3187     }
3188     else if (isLongGc(scenario)) {
3189         // Long GC tests behave very poorly when they are not
3190         // the only test running (many of them allocate until OOM).
3191         testOpts += ' --sequential'
3192
3193         // A note - runtest.sh does have "--long-gc" and "--gcsimulator" options
3194         // for running long GC and GCSimulator tests, respectively. We don't use them
3195         // here because using a playlist file produces much more readable output on the CI machines
3196         // and reduces running time.
3197         //
3198         // The Long GC playlist contains all of the tests that are
3199         // going to be run. The GCSimulator playlist contains all of
3200         // the GC simulator tests.
3201         if (scenario == 'longgc') {
3202             testOpts += ' --long-gc --playlist=./tests/longRunningGcTests.txt'
3203         }
3204         else if (scenario == 'gcsimulator') {
3205             testOpts += ' --gcsimulator --playlist=./tests/gcSimulatorTests.txt'
3206         }
3207     }
3208     else if (isGcReliabilityFramework(scenario)) {
3209         testOpts += ' --build-overlay-only'
3210     }
3211     else if (scenario == 'standalone_gc') {
3212         if (osGroup == 'OSX') {
3213             testOpts += ' --gcname=libclrgc.dylib'
3214         }
3215         else if (osGroup == 'Linux') {
3216             testOpts += ' --gcname=libclrgc.so'
3217         }
3218         else {
3219             println("Unexpected OS group: ${osGroup} for os ${os}")
3220             assert false
3221         }
3222     }
3223
3224     def jobFolder = getJobFolder(scenario)
3225     def newJob = dslFactory.job(Utilities.getFullJobName(project, jobName, isPR, jobFolder)) {
3226         parameters {
3227             stringParam('CORECLR_BUILD', '', "Build number to copy CoreCLR ${osGroup} binaries from")
3228         }
3229
3230         steps {
3231             // Set up the copies
3232
3233             // Coreclr build we are trying to test
3234             //
3235             // HACK: the Ubuntu arm64 copyArtifacts Jenkins plug-in is ridiculously slow (45 minutes to
3236             // 1.5 hours for this step). Instead, directly use wget, which is fast (1 minute).
3237
3238             if (!isUbuntuArm64Job) {
3239                 copyArtifacts(inputCoreCLRBuildName) {
3240                     excludePatterns('**/testResults.xml', '**/*.ni.dll')
3241                     buildSelector {
3242                         buildNumber('${CORECLR_BUILD}')
3243                     }
3244                 }
3245             }
3246
3247             if (isUbuntuArmJob) {
3248                 // Add some useful information to the log file. Ignore return codes.
3249                 shell("uname -a || true")
3250             }
3251
3252             if (isUbuntuArm64Job) {
3253                 // Copy the required artifacts directly, using wget, e.g.:
3254                 // 
3255                 //  https://ci.dot.net/job/dotnet_coreclr/job/master/job/arm64_cross_checked_ubuntu16.04_innerloop_prtest/16/artifact/testnativebin.checked.zip
3256                 //  https://ci.dot.net/job/dotnet_coreclr/job/master/job/arm64_cross_checked_ubuntu16.04_innerloop_prtest/16/artifact/tests.checked.zip
3257                 // 
3258                 // parameterized as:
3259                 //
3260                 //  https://ci.dot.net/job/${mungedProjectName}/job/${mungedBranchName}/job/${inputJobName}/${CORECLR_BUILD}/artifact/testnativebin.checked.zip
3261                 //  https://ci.dot.net/job/${mungedProjectName}/job/${mungedBranchName}/job/${inputJobName}/${CORECLR_BUILD}/artifact/tests.checked.zip
3262                 //
3263                 // CoreFX example artifact URLs:
3264                 //
3265                 //  https://ci.dot.net/job/dotnet_coreclr/job/dev_unix_test_workflow/job/jitstress/job/arm64_cross_checked_ubuntu16.04_corefx_baseline_prtest/1/artifact/_/fx/fxruntime.zip
3266                 //  https://ci.dot.net/job/dotnet_coreclr/job/dev_unix_test_workflow/job/jitstress/job/arm64_cross_checked_ubuntu16.04_corefx_baseline_prtest/1/artifact/_/fx/fxtests.zip
3267                 //
3268                 // Note that the source might be in a "jitstress" folder.
3269                 //
3270                 // Use `--progress=dot:giga` to display some progress output, but limit it in the log file.
3271                 //
3272                 // Use `--directory-prefix=_/fx` to specify where to put the corefx files (to match what other platforms do). Use this instead of `-O`.
3273
3274                 shell("echo \"Using wget instead of the Jenkins copy artifacts plug-in to copy artifacts from ${inputCoreCLRBuildName}\"")
3275
3276                 def mungedProjectName = Utilities.getFolderName(project)
3277                 def mungedBranchName = Utilities.getFolderName(branch)
3278
3279                 def doCrossGenComparison = isCrossGenComparisonScenario(scenario)
3280                 def inputCoreCLRBuildScenario = isInnerloopTestScenario(scenario) ? 'innerloop' : 'normal'
3281                 if (isPmiAsmDiffsScenario || doCoreFxTesting || doCrossGenComparison) {
3282                     // These depend on unique builds for each scenario
3283                     inputCoreCLRBuildScenario = scenario
3284                 }
3285                 def sourceJobName = getJobName(configuration, architecture, os, inputCoreCLRBuildScenario, false)
3286                 def inputJobName = Utilities.getFullJobName(sourceJobName, isPR)
3287
3288                 // Need to add the sub-folder if necessary.
3289                 def inputJobPath = "job/${inputJobName}"
3290                 def folderName = getJobFolder(inputCoreCLRBuildScenario)
3291                 if (folderName != '') {
3292                     inputJobPath = "job/${folderName}/job/${inputJobName}"
3293                 }
3294
3295                 def inputUrlRoot = "https://ci.dot.net/job/${mungedProjectName}/job/${mungedBranchName}/${inputJobPath}/\${CORECLR_BUILD}/artifact"
3296
3297                 if (isPmiAsmDiffsScenario) {
3298                     def workspaceRelativeRootLinux = "_/pmi"
3299                     shell("mkdir -p ${workspaceRelativeRootLinux}")
3300                     shell("wget --progress=dot:giga ${inputUrlRoot}/product.${os}.${architecture}.${lowerConfiguration}.zip")
3301                     shell("wget --progress=dot:giga ${inputUrlRoot}/product.baseline.${os}.${architecture}.${lowerConfiguration}.zip")
3302                     shell("wget --progress=dot:giga ${inputUrlRoot}/coreroot.${os}.${architecture}.${lowerConfiguration}.zip")
3303                     shell("wget --progress=dot:giga ${inputUrlRoot}/coreroot.baseline.${os}.${architecture}.${lowerConfiguration}.zip")
3304                 }
3305                 else if (doCoreFxTesting) {
3306                     shell("mkdir -p ${workspaceRelativeFxRootLinux}")
3307                     shell("wget --progress=dot:giga --directory-prefix=${workspaceRelativeFxRootLinux} ${inputUrlRoot}/${workspaceRelativeFxRootLinux}/fxtests.zip")
3308                     shell("wget --progress=dot:giga --directory-prefix=${workspaceRelativeFxRootLinux} ${inputUrlRoot}/${workspaceRelativeFxRootLinux}/fxruntime.zip")
3309                 }
3310                 else {
3311                     def testArtifactsTgzFileName = getTestArtifactsTgzFileName(osGroup, architecture, configuration)
3312                     shell("wget --progress=dot:giga ${inputUrlRoot}/${testArtifactsTgzFileName}")
3313                 }
3314             }
3315
3316             if (architecture == 'x86') {
3317                 shell("mkdir ./bin/CoreFxNative")
3318
3319                 def fxBranch = getFxBranch(branch)
3320                 def corefxFolder = Utilities.getFolderName('dotnet/corefx') + '/' + Utilities.getFolderName(fxBranch)
3321
3322                 copyArtifacts("${corefxFolder}/ubuntu16.04_x86_release") {
3323                     includePatterns('artifacts/bin/build.tar.gz')
3324                     targetDirectory('bin/CoreFxNative')
3325                     buildSelector {
3326                         latestSuccessful(true)
3327                     }
3328                 }
3329
3330                 shell("mkdir ./bin/CoreFxBinDir")
3331                 shell("tar -xf ./bin/CoreFxNative/artifacts/bin/build.tar.gz -C ./bin/CoreFxBinDir")
3332             }
3333
3334             if (isPmiAsmDiffsScenario) {
3335                 // TODO: add back "-q" when we know it works
3336                 shell("unzip -o ./product.${os}.${architecture}.${lowerConfiguration}.zip || exit 0")
3337                 shell("unzip -o ./product.baseline.${os}.${architecture}.${lowerConfiguration}.zip || exit 0")
3338                 shell("unzip -o ./coreroot.${os}.${architecture}.${lowerConfiguration}.zip || exit 0")
3339                 shell("unzip -o ./coreroot.baseline.${os}.${architecture}.${lowerConfiguration}.zip || exit 0")
3340             }
3341             // CoreFX testing downloads the CoreFX tests, not the coreclr tests. Also, unzip the built CoreFX layout/runtime directories.
3342             else if (doCoreFxTesting) {
3343                 shell("unzip -q -o ${workspaceRelativeFxRootLinux}/fxtests.zip || exit 0")
3344                 shell("unzip -q -o ${workspaceRelativeFxRootLinux}/fxruntime.zip || exit 0")
3345             }
3346             else {
3347                 def testArtifactsTgzFileName = getTestArtifactsTgzFileName(osGroup, architecture, configuration)
3348                 shell("tar -xzf ./${testArtifactsTgzFileName} || exit 0") // extracts to ./bin/tests/${osGroup}.${architecture}.${configuration}
3349             }
3350
3351             // Execute the tests
3352             def runDocker = isNeedDocker(architecture, os, false)
3353             def dockerPrefix = ""
3354             def dockerCmd = ""
3355             if (runDocker) {
3356                 def dockerImage = getDockerImageName(architecture, os, false)
3357                 dockerPrefix = "docker run -i --rm -v \${WORKSPACE}:\${WORKSPACE} -w \${WORKSPACE} "
3358                 dockerCmd = dockerPrefix + "${dockerImage} "
3359             }
3360
3361             // If we are running a stress mode, we'll set those variables first.
3362             // For CoreFX, the stress variables are already built into the CoreFX test build per-test wrappers.
3363             if (!doCoreFxTesting && isJitStressScenario(scenario)) {
3364                 def scriptFileName = "\${WORKSPACE}/set_stress_test_env.sh"
3365                 def envScriptCmds = envScriptCreate(os, scriptFileName)
3366                 envScriptCmds += envScriptSetStressModeVariables(os, Constants.jitStressModeScenarios[scenario], scriptFileName)
3367                 envScriptCmds += envScriptFinalize(os, scriptFileName)
3368                 shell("${envScriptCmds}")
3369                 testOpts += " --test-env=${scriptFileName}"
3370             }
3371
3372             // setup-stress-dependencies.sh, invoked by runtest.sh to download the coredistools package, depends on the "dotnet"
3373             // tool downloaded by the "init-tools.sh" script. However, it only invokes setup-stress-dependencies.sh for x64. The
3374             // coredistools package is used by GCStress on x86 and x64 to disassemble code to determine instruction boundaries.
3375             // On arm/arm64, it is not required as determining instruction boundaries is trivial.
3376             if (isGCStressRelatedTesting(scenario)) {
3377                 if (architecture == 'x64') {
3378                     shell('./init-tools.sh')
3379                 }
3380             }
3381
3382             if (isPmiAsmDiffsScenario) {
3383                 shell("""\
3384 python -u \${WORKSPACE}/tests/scripts/run-pmi-diffs.py -arch ${architecture} -ci_arch ${architecture} -build_type ${configuration} --skip_baseline_build""")
3385
3386                 shell("zip -r dasm.${os}.${architecture}.${configuration}.zip ./_/pmi/asm")
3387             }
3388             else if (doCoreFxTesting) {
3389                 shell("""\
3390 \${WORKSPACE}/tests/scripts/run-corefx-tests.sh --test-exclude-file \${WORKSPACE}/tests/${architecture}/corefx_linux_test_exclusions.txt --runtime \${WORKSPACE}/${workspaceRelativeFxRootLinux}/artifacts/bin/testhost/netcoreapp-Linux-Release-${architecture} --arch ${architecture} --corefx-tests \${WORKSPACE}/${workspaceRelativeFxRootLinux}/artifacts/bin --configurationGroup Release""")
3391             }
3392             else {
3393                 def runScript = "${dockerCmd}./tests/runtest.sh"
3394
3395                 shell("""\
3396 ${runScript} \\
3397     ${lowerConfiguration} \\
3398     --testRootDir=\"\${WORKSPACE}/bin/tests/${osGroup}.${architecture}.${configuration}\" \\
3399     --coreOverlayDir=\"\${WORKSPACE}/bin/tests/${osGroup}.${architecture}.${configuration}/Tests/Core_Root\" \\
3400     --limitedDumpGeneration ${testOpts}""")
3401             }
3402
3403             if (isGcReliabilityFramework(scenario)) {
3404                 // runtest.sh doesn't actually execute the reliability framework - do it here.
3405                 if (useServerGC) {
3406                     if (runDocker) {
3407                         dockerCmd = dockerPrefix + "-e COMPlus_gcServer=1 ${dockerImage} "
3408                     }
3409                     else {
3410                         shell("export COMPlus_gcServer=1")
3411                     }
3412                 }
3413
3414                 shell("${dockerCmd}./tests/scripts/run-gc-reliability-framework.sh ${architecture} ${configuration}")
3415             }
3416         } // steps
3417     } // job
3418
3419     // Experimental: If on Ubuntu 14.04, then attempt to pull in crash dump links
3420     if (os in ['Ubuntu']) {
3421         SummaryBuilder summaries = new SummaryBuilder()
3422         summaries.addLinksSummaryFromFile('Crash dumps from this run:', 'dumplings.txt')
3423         summaries.emit(newJob)
3424     }
3425
3426     if (isPmiAsmDiffsScenario) {
3427         // Archive the asm
3428         Utilities.addArchival(newJob, "dasm.${os}.${architecture}.${configuration}.zip")
3429     }
3430     else if (doCoreFxTesting) {
3431         Utilities.addArchival(newJob, "${workspaceRelativeFxRootLinux}/artifacts/bin/**/testResults.xml")
3432         if ((os == "Ubuntu") && (architecture == 'arm')) {
3433             // We have a problem with the xunit plug-in, where it is consistently failing on Ubuntu arm32 test result uploading with this error:
3434             //
3435             //   [xUnit] [ERROR] - The plugin hasn't been performed correctly: remote file operation failed: /ssd/j/workspace/dotnet_coreclr/master/jitstress/arm_cross_checked_ubuntu_corefx_baseline_tst at hudson.remoting.Channel@3697f46d:JNLP4-connect connection from 131.107.159.149/131.107.159.149:58529: java.io.IOException: Remote call on JNLP4-connect connection from 131.107.159.149/131.107.159.149:58529 failed
3436             //
3437             // We haven't been able to identify the reason. So, do not add xunit parsing of the test data in this scenario.
3438             // This is tracked by: https://github.com/dotnet/coreclr/issues/19447.
3439         }
3440         else {
3441             Utilities.addXUnitDotNETResults(newJob, "${workspaceRelativeFxRootLinux}/artifacts/bin/**/testResults.xml")
3442         }
3443     }
3444     else {
3445         Utilities.addXUnitDotNETResults(newJob, '**/coreclrtests.xml')
3446     }
3447
3448     return newJob
3449 }
3450
3451 def static CreateNonWindowsCrossGenComparisonTestJob(def dslFactory, def project, def architecture, def os, def configuration, def scenario, def isPR, def inputCoreCLRBuildName)
3452 {
3453     assert isCrossGenComparisonScenario(scenario)
3454
3455     def osGroup = getOSGroup(os)
3456     def jobName = getJobName(configuration, architecture, os, scenario, false) + "_tst"
3457
3458     def workspaceRelativeResultsDir = "_"
3459     def workspaceRelativeNativeArchResultDir = "${workspaceRelativeResultsDir}/${osGroup}.${architecture}_${architecture}.${configuration}"
3460
3461     def crossArch = "x64"
3462     def workspaceRelativeCrossArchResultDir = "${workspaceRelativeResultsDir}/${osGroup}.${crossArch}_${architecture}.${configuration}"
3463
3464     def jobFolder = getJobFolder(scenario)
3465     def newJob = dslFactory.job(Utilities.getFullJobName(project, jobName, isPR, jobFolder)) {
3466         parameters {
3467             stringParam('CORECLR_BUILD', '', "Build number to copy CoreCLR ${osGroup} binaries from")
3468         }
3469
3470         def workspaceRelativeArtifactsArchive = "${os}.${architecture}.${configuration}.${scenario}.zip"
3471
3472         steps {
3473             copyArtifacts(inputCoreCLRBuildName) {
3474                 includePatterns("${workspaceRelativeArtifactsArchive}")
3475                 buildSelector {
3476                     buildNumber('${CORECLR_BUILD}')
3477                 }
3478             }
3479
3480             shell("unzip -o ${workspaceRelativeArtifactsArchive} || exit 0")
3481
3482             def workspaceRelativeCoreLib = "bin/Product/${osGroup}.${architecture}.${configuration}/IL/System.Private.CoreLib.dll"
3483             def workspaceRelativeCoreRootDir = "bin/tests/${osGroup}.${architecture}.${configuration}/Tests/Core_Root"
3484             def workspaceRelativeCrossGenComparisonScript = "tests/scripts/crossgen_comparison.py"
3485             def workspaceRelativeCrossGenExecutable = "${workspaceRelativeCoreRootDir}/crossgen"
3486
3487             def crossGenComparisonCmd = "python -u \${WORKSPACE}/${workspaceRelativeCrossGenComparisonScript} "
3488             def crossGenExecutable = "\${WORKSPACE}/${workspaceRelativeCrossGenExecutable}"
3489
3490             shell("mkdir -p ${workspaceRelativeNativeArchResultDir}")
3491             shell("${crossGenComparisonCmd}crossgen_corelib --crossgen ${crossGenExecutable} --il_corelib \${WORKSPACE}/${workspaceRelativeCoreLib} --result_dir \${WORKSPACE}/${workspaceRelativeNativeArchResultDir}")
3492             shell("${crossGenComparisonCmd}crossgen_framework --crossgen ${crossGenExecutable} --core_root \${WORKSPACE}/${workspaceRelativeCoreRootDir} --result_dir \${WORKSPACE}/${workspaceRelativeNativeArchResultDir}")
3493
3494             shell("${crossGenComparisonCmd}compare --base_dir \${WORKSPACE}/${workspaceRelativeNativeArchResultDir} --diff_dir \${WORKSPACE}/${workspaceRelativeCrossArchResultDir}")
3495         } // steps
3496     }  // job
3497
3498     Utilities.addArchival(newJob, "${workspaceRelativeNativeArchResultDir}/**")
3499     Utilities.addArchival(newJob, "${workspaceRelativeCrossArchResultDir}/**")
3500
3501     return newJob
3502 }
3503
3504 // Create a test job that will be used by a flow job.
3505 // Returns the newly created job.
3506 // Note that we don't add tests jobs to the various views, since they are always used by a flow job, which is in the views,
3507 // and we want the views to be the minimal set of "top-level" jobs that represent all work.
3508 def static CreateTestJob(def dslFactory, def project, def branch, def architecture, def os, def configuration, def scenario, def isPR, def inputCoreCLRBuildName)
3509 {
3510     def windowsArmJob = ((os == "Windows_NT") && (architecture in Constants.armWindowsCrossArchitectureList))
3511
3512     def newJob = null
3513     if (windowsArmJob) {
3514         newJob = CreateWindowsArmTestJob(dslFactory, project, architecture, os, configuration, scenario, isPR, inputCoreCLRBuildName)
3515     }
3516     else if (isCrossGenComparisonScenario(scenario)) {
3517         newJob = CreateNonWindowsCrossGenComparisonTestJob(dslFactory, project, architecture, os, configuration, scenario, isPR, inputCoreCLRBuildName)
3518     }
3519     else {
3520         newJob = CreateOtherTestJob(dslFactory, project, branch, architecture, os, configuration, scenario, isPR, inputCoreCLRBuildName)
3521     }
3522
3523     setJobMachineAffinity(architecture, os, false, true, false, newJob) // isBuildJob = false, isTestJob = true, isFlowJob = false
3524
3525     if (scenario == 'jitdiff') {
3526         def osGroup = getOSGroup(os)
3527         Utilities.addArchival(newJob, "bin/tests/${osGroup}.${architecture}.${configuration}/dasm/**")
3528     }
3529
3530     Utilities.standardJobSetup(newJob, project, isPR, "*/${branch}")
3531     setJobTimeout(newJob, isPR, architecture, configuration, scenario, false)
3532
3533     return newJob
3534 }
3535
3536 // Create a flow job to tie together a build job with the given test job.
3537 // Returns the new flow job.
3538 def static CreateFlowJob(def dslFactory, def project, def branch, def architecture, def os, def configuration, def scenario, def isPR, def fullTestJobName, def inputCoreCLRBuildName)
3539 {
3540     // Windows CoreCLR build and Linux CoreCLR build (in parallel) ->
3541     // Linux CoreCLR test
3542     def flowJobName = getJobName(configuration, architecture, os, scenario, false) + "_flow"
3543     def jobFolder = getJobFolder(scenario)
3544
3545     def newFlowJob = dslFactory.buildFlowJob(Utilities.getFullJobName(project, flowJobName, isPR, jobFolder)) {
3546         buildFlow("""\
3547 coreclrBuildJob = build(params, '${inputCoreCLRBuildName}')
3548
3549 // And then build the test build
3550 build(params + [CORECLR_BUILD: coreclrBuildJob.build.number], '${fullTestJobName}')
3551 """)
3552     }
3553     JobReport.Report.addReference(inputCoreCLRBuildName)
3554     JobReport.Report.addReference(fullTestJobName)
3555
3556     addToViews(newFlowJob, true, isPR, architecture, os, configuration, scenario) // isFlowJob = true
3557
3558     setJobMachineAffinity(architecture, os, false, false, true, newFlowJob) // isBuildJob = false, isTestJob = false, isFlowJob = true
3559
3560     Utilities.standardJobSetup(newFlowJob, project, isPR, "*/${branch}")
3561     addTriggers(newFlowJob, branch, isPR, architecture, os, configuration, scenario, true, false) // isFlowJob==true, isWindowsBuildOnlyJob==false
3562
3563     return newFlowJob
3564 }
3565
3566 // Determine if we should generate a flow job for the given parameters.
3567 // Returns true if the job should be generated.
3568 def static shouldGenerateFlowJob(def scenario, def isPR, def architecture, def configuration, def os)
3569 {
3570     // The various "innerloop" jobs are only available as PR triggered.
3571
3572     if (!isPR) {
3573         if (isInnerloopTestScenario(scenario)) {
3574             return false
3575         }
3576
3577         if (scenario == 'corefx_innerloop') {
3578             return false
3579         }
3580     }
3581
3582     // Filter based on OS and architecture.
3583
3584     switch (architecture) {
3585         case 'arm':
3586             if (os != "Ubuntu" && os != "Windows_NT") {
3587                 return false
3588             }
3589             break
3590         case 'arm64':
3591             if (os != "Ubuntu16.04" && os != "Windows_NT") {
3592                 return false
3593             }
3594             break
3595         case 'x86':
3596             if (os != "Ubuntu") {
3597                 return false
3598             }
3599             break
3600         case 'x64':
3601             if (!(os in Constants.crossList)) {
3602                 return false
3603             }
3604             if (os == "Windows_NT") {
3605                 return false
3606             }
3607             break
3608         case 'armem':
3609             // No flow jobs
3610             return false
3611         default:
3612             println("Unknown architecture: ${architecture}")
3613             assert false
3614             break
3615     }
3616
3617     def isNormalOrInnerloop = (scenario == 'innerloop' || scenario == 'normal')
3618
3619     // Filter based on scenario in OS.
3620
3621     if (os == 'Windows_NT') {
3622         assert architecture == 'arm' || architecture == 'arm64'
3623         if (!isArmWindowsScenario(scenario)) {
3624             return false
3625         }
3626         if (isNormalOrInnerloop && (configuration == 'Debug')) {
3627             // The arm32/arm64 Debug configuration for innerloop/normal scenario is a special case: it does a build only, and no test run.
3628             // To do that, it doesn't require a flow job.
3629             return false
3630         }
3631     }
3632     else {
3633         // Non-Windows
3634         if (architecture == 'arm') {
3635             if (!(scenario in Constants.validLinuxArmScenarios)) {
3636                 return false
3637             }
3638         }
3639         else if (architecture == 'arm64') {
3640             if (!(scenario in Constants.validLinuxArm64Scenarios)) {
3641                 return false
3642             }
3643         }
3644         else if (architecture == 'x86') {
3645             // Linux/x86 only want innerloop and default test
3646             if (!isNormalOrInnerloop) {
3647                 return false
3648             }
3649         }
3650         else if (architecture == 'x64') {
3651             // Linux/x64 corefx testing doesn't need a flow job; the "build" job runs run-corefx-tests.py which
3652             // builds and runs the corefx tests. Other Linux/x64 flow jobs are required to get the test
3653             // build from a Windows machine.
3654             if (isCoreFxScenario(scenario)) {
3655                 return false
3656             }
3657         }
3658     }
3659
3660     // For CentOS, we only want Checked/Release builds.
3661     if (os == 'CentOS7.1') {
3662         if (configuration != 'Checked' && configuration != 'Release') {
3663             return false
3664         }
3665         if (!isNormalOrInnerloop && !isR2RScenario(scenario)) {
3666             return false
3667         }
3668     }
3669
3670     // For RedHat and Debian, we only do Release builds.
3671     else if (os == 'RHEL7.2' || os == 'Debian8.4') {
3672         if (configuration != 'Release') {
3673             return false
3674         }
3675         if (!isNormalOrInnerloop) {
3676             return false
3677         }
3678     }
3679
3680     // Next, filter based on scenario.
3681
3682     if (isJitStressScenario(scenario)) {
3683         if (configuration != 'Checked') {
3684             return false
3685         }
3686     }
3687     else if (isR2RBaselineScenario(scenario)) {
3688         if (configuration != 'Checked' && configuration != 'Release') {
3689             return false
3690         }
3691     }
3692     else if (isR2RStressScenario(scenario)) {
3693         if (configuration != 'Checked') {
3694             return false
3695         }
3696     }
3697     else if (isCrossGenComparisonScenario(scenario)) {
3698         return shouldGenerateCrossGenComparisonJob(os, architecture, configuration, scenario)
3699     }
3700     else {
3701         // Skip scenarios
3702         switch (scenario) {
3703             case 'ilrt':
3704             case 'longgc':
3705             case 'gcsimulator':
3706                 // Long GC tests take a long time on non-Release builds
3707                 // ilrt is also Release only
3708                 if (configuration != 'Release') {
3709                     return false
3710                 }
3711                 break
3712
3713             case 'jitdiff':
3714                 if (configuration != 'Checked') {
3715                     return false
3716                 }
3717                 break
3718
3719             case 'gc_reliability_framework':
3720             case 'standalone_gc':
3721                 if (configuration != 'Release' && configuration != 'Checked') {
3722                     return false
3723                 }
3724                 break
3725
3726             case 'formatting':
3727                 return false
3728
3729             case 'illink':
3730                 if (os != 'Windows_NT' && os != 'Ubuntu') {
3731                     return false
3732                 }
3733                 break
3734
3735             case 'normal':
3736                 // Nothing skipped
3737                 break
3738
3739             case 'innerloop':
3740                 if (!isValidPrTriggeredInnerLoopJob(os, architecture, configuration, false)) {
3741                     return false
3742                 }
3743                 break
3744
3745             case 'pmi_asm_diffs':
3746                 if (configuration != 'Checked') {
3747                     return false
3748                 }
3749                 // No need for flow job except for Linux arm/arm64
3750                 if ((os != 'Windows_NT') && (architecture != 'arm') && (architecture != 'arm64')) {
3751                     return false
3752                 }
3753                 break
3754
3755             case 'corefx_innerloop':
3756                 // No flow job needed
3757                 return false
3758
3759             default:
3760                 println("Unknown scenario: ${scenario}")
3761                 assert false
3762                 break
3763         }
3764     }
3765
3766     // The job was not filtered out, so we should generate it!
3767     return true
3768 }
3769
3770 // Create jobs requiring flow jobs. This includes x64 non-Windows, arm/arm64 Ubuntu, and arm/arm64 Windows.
3771 Constants.allScenarios.each { scenario ->
3772     [true, false].each { isPR ->
3773         Constants.architectureList.each { architecture ->
3774             Constants.configurationList.each { configuration ->
3775                 Constants.osList.each { os ->
3776
3777                     if (!shouldGenerateFlowJob(scenario, isPR, architecture, configuration, os)) {
3778                         return
3779                     }
3780
3781                     def windowsArmJob = ((os == "Windows_NT") && (architecture in Constants.armWindowsCrossArchitectureList))
3782                     def doCoreFxTesting = isCoreFxScenario(scenario)
3783                     def doCrossGenComparison = isCrossGenComparisonScenario(scenario)
3784                     def isPmiAsmDiffsScenario = (scenario == 'pmi_asm_diffs')
3785
3786                     // Figure out the job name of the CoreCLR build the test will depend on.
3787
3788                     def inputCoreCLRBuildScenario = isInnerloopTestScenario(scenario) ? 'innerloop' : 'normal'
3789                     def inputCoreCLRBuildIsBuildOnly = false
3790                     if (doCoreFxTesting || isPmiAsmDiffsScenario) {
3791                         // Every CoreFx test depends on its own unique build.
3792                         inputCoreCLRBuildScenario = scenario
3793                         if (windowsArmJob) {
3794                             // Only Windows ARM corefx jobs use "build only" jobs. Others, such as Ubuntu ARM corefx, use "regular" jobs.
3795                             inputCoreCLRBuildIsBuildOnly = true
3796                         }
3797                     }
3798                     else if (doCrossGenComparison) {
3799                         inputCoreCLRBuildScenario = scenario
3800                     }
3801
3802                     def inputCoreCLRFolderName = getJobFolder(inputCoreCLRBuildScenario)
3803                     def inputCoreCLRBuildName = projectFolder + '/' +
3804                         Utilities.getFullJobName(project, getJobName(configuration, architecture, os, inputCoreCLRBuildScenario, inputCoreCLRBuildIsBuildOnly), isPR, inputCoreCLRFolderName)
3805
3806                     // =============================================================================================
3807                     // Create the test job
3808                     // =============================================================================================
3809
3810                     def testJob = CreateTestJob(this, project, branch, architecture, os, configuration, scenario, isPR, inputCoreCLRBuildName)
3811
3812                     // =============================================================================================
3813                     // Create a build flow to join together the build and tests required to run this test.
3814                     // =============================================================================================
3815
3816                     if (os == 'RHEL7.2' || os == 'Debian8.4') {
3817                         // Do not create the flow job for RHEL jobs.
3818                         return
3819                     }
3820
3821                     def fullTestJobName = projectFolder + '/' + testJob.name
3822                     def flowJob = CreateFlowJob(this, project, branch, architecture, os, configuration, scenario, isPR, fullTestJobName, inputCoreCLRBuildName)
3823
3824                 } // os
3825             } // configuration
3826         } // architecture
3827     } // isPR
3828 } // scenario
3829
3830 JobReport.Report.generateJobReport(out)
3831
3832 // Make the call to generate the help job
3833 Utilities.createHelperJob(this, project, branch,
3834     "Welcome to the ${project} Repository",  // This is prepended to the help message
3835     "Have a nice day!")  // This is appended to the help message.  You might put known issues here.
3836
3837 Utilities.addCROSSCheck(this, project, branch)