xref: /aosp_15_r20/external/grpc-grpc/test/core/end2end/cq_verifier.cc (revision cc02d7e222339f7a4f6ba5f422e6413f4bd931f2)
1 //
2 //
3 // Copyright 2015 gRPC authors.
4 //
5 // Licensed under the Apache License, Version 2.0 (the "License");
6 // you may not use this file except in compliance with the License.
7 // You may obtain a copy of the License at
8 //
9 //     http://www.apache.org/licenses/LICENSE-2.0
10 //
11 // Unless required by applicable law or agreed to in writing, software
12 // distributed under the License is distributed on an "AS IS" BASIS,
13 // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14 // See the License for the specific language governing permissions and
15 // limitations under the License.
16 //
17 //
18 
19 #include "test/core/end2end/cq_verifier.h"
20 
21 #include <inttypes.h>
22 #include <stdio.h>
23 #include <string.h>
24 
25 #include <algorithm>
26 #include <limits>
27 #include <string>
28 #include <utility>
29 #include <vector>
30 
31 #include "absl/strings/escaping.h"
32 #include "absl/strings/str_cat.h"
33 #include "absl/strings/str_format.h"
34 #include "absl/strings/str_join.h"
35 #include "absl/strings/string_view.h"
36 #include "gtest/gtest.h"
37 
38 #include <grpc/byte_buffer.h>
39 #include <grpc/compression.h>
40 #include <grpc/grpc.h>
41 #include <grpc/slice.h>
42 #include <grpc/slice_buffer.h>
43 #include <grpc/support/log.h>
44 #include <grpc/support/time.h>
45 
46 #include "src/core/lib/compression/message_compress.h"
47 #include "src/core/lib/gprpp/crash.h"
48 #include "src/core/lib/gprpp/debug_location.h"
49 #include "src/core/lib/gprpp/match.h"
50 #include "src/core/lib/surface/event_string.h"
51 #include "test/core/util/test_config.h"
52 
53 // a set of metadata we expect to find on an event
54 typedef struct metadata {
55   size_t count;
56   size_t cap;
57   char** keys;
58   char** values;
59 } metadata;
60 
has_metadata(const grpc_metadata * md,size_t count,const char * key,const char * value)61 static int has_metadata(const grpc_metadata* md, size_t count, const char* key,
62                         const char* value) {
63   size_t i;
64   for (i = 0; i < count; i++) {
65     if (0 == grpc_slice_str_cmp(md[i].key, key) &&
66         0 == grpc_slice_str_cmp(md[i].value, value)) {
67       return 1;
68     }
69   }
70   return 0;
71 }
72 
contains_metadata(grpc_metadata_array * array,const char * key,const char * value)73 int contains_metadata(grpc_metadata_array* array, const char* key,
74                       const char* value) {
75   return has_metadata(array->metadata, array->count, key, value);
76 }
77 
has_metadata_slices(const grpc_metadata * md,size_t count,grpc_slice key,grpc_slice value)78 static int has_metadata_slices(const grpc_metadata* md, size_t count,
79                                grpc_slice key, grpc_slice value) {
80   size_t i;
81   for (i = 0; i < count; i++) {
82     if (grpc_slice_eq(md[i].key, key) && grpc_slice_eq(md[i].value, value)) {
83       return 1;
84     }
85   }
86   return 0;
87 }
88 
contains_metadata_slices(grpc_metadata_array * array,grpc_slice key,grpc_slice value)89 int contains_metadata_slices(grpc_metadata_array* array, grpc_slice key,
90                              grpc_slice value) {
91   return has_metadata_slices(array->metadata, array->count, key, value);
92 }
93 
merge_slices(grpc_slice * slices,size_t nslices)94 static grpc_slice merge_slices(grpc_slice* slices, size_t nslices) {
95   size_t i;
96   size_t len = 0;
97   uint8_t* cursor;
98   grpc_slice out;
99 
100   for (i = 0; i < nslices; i++) {
101     len += GRPC_SLICE_LENGTH(slices[i]);
102   }
103 
104   out = grpc_slice_malloc(len);
105   cursor = GRPC_SLICE_START_PTR(out);
106 
107   for (i = 0; i < nslices; i++) {
108     memcpy(cursor, GRPC_SLICE_START_PTR(slices[i]),
109            GRPC_SLICE_LENGTH(slices[i]));
110     cursor += GRPC_SLICE_LENGTH(slices[i]);
111   }
112 
113   return out;
114 }
115 
raw_byte_buffer_eq_slice(grpc_byte_buffer * rbb,grpc_slice b)116 int raw_byte_buffer_eq_slice(grpc_byte_buffer* rbb, grpc_slice b) {
117   grpc_slice a;
118   int ok;
119 
120   if (!rbb) return 0;
121 
122   a = merge_slices(rbb->data.raw.slice_buffer.slices,
123                    rbb->data.raw.slice_buffer.count);
124   ok = GRPC_SLICE_LENGTH(a) == GRPC_SLICE_LENGTH(b) &&
125        0 == memcmp(GRPC_SLICE_START_PTR(a), GRPC_SLICE_START_PTR(b),
126                    GRPC_SLICE_LENGTH(a));
127   if (!ok) {
128     gpr_log(GPR_ERROR,
129             "SLICE MISMATCH: left_length=%" PRIuPTR " right_length=%" PRIuPTR,
130             GRPC_SLICE_LENGTH(a), GRPC_SLICE_LENGTH(b));
131     std::string out;
132     const char* a_str = reinterpret_cast<const char*>(GRPC_SLICE_START_PTR(a));
133     const char* b_str = reinterpret_cast<const char*>(GRPC_SLICE_START_PTR(b));
134     for (size_t i = 0; i < std::max(GRPC_SLICE_LENGTH(a), GRPC_SLICE_LENGTH(b));
135          i++) {
136       if (i >= GRPC_SLICE_LENGTH(a)) {
137         absl::StrAppend(&out, "\u001b[36m",  // cyan
138                         absl::CEscape(absl::string_view(&b_str[i], 1)),
139                         "\u001b[0m");
140       } else if (i >= GRPC_SLICE_LENGTH(b)) {
141         absl::StrAppend(&out, "\u001b[35m",  // magenta
142                         absl::CEscape(absl::string_view(&a_str[i], 1)),
143                         "\u001b[0m");
144       } else if (a_str[i] == b_str[i]) {
145         absl::StrAppend(&out, absl::CEscape(absl::string_view(&a_str[i], 1)));
146       } else {
147         absl::StrAppend(&out, "\u001b[31m",  // red
148                         absl::CEscape(absl::string_view(&a_str[i], 1)),
149                         "\u001b[33m",  // yellow
150                         absl::CEscape(absl::string_view(&b_str[i], 1)),
151                         "\u001b[0m");
152       }
153       gpr_log(GPR_ERROR, "%s", out.c_str());
154     }
155   }
156   grpc_slice_unref(a);
157   grpc_slice_unref(b);
158   return ok;
159 }
160 
byte_buffer_eq_slice(grpc_byte_buffer * bb,grpc_slice b)161 int byte_buffer_eq_slice(grpc_byte_buffer* bb, grpc_slice b) {
162   if (bb == nullptr) return 0;
163   if (bb->data.raw.compression > GRPC_COMPRESS_NONE) {
164     grpc_slice_buffer decompressed_buffer;
165     grpc_slice_buffer_init(&decompressed_buffer);
166     GPR_ASSERT(grpc_msg_decompress(bb->data.raw.compression,
167                                    &bb->data.raw.slice_buffer,
168                                    &decompressed_buffer));
169     grpc_byte_buffer* rbb = grpc_raw_byte_buffer_create(
170         decompressed_buffer.slices, decompressed_buffer.count);
171     int ret_val = raw_byte_buffer_eq_slice(rbb, b);
172     grpc_byte_buffer_destroy(rbb);
173     grpc_slice_buffer_destroy(&decompressed_buffer);
174     return ret_val;
175   }
176   return raw_byte_buffer_eq_slice(bb, b);
177 }
178 
byte_buffer_eq_string(grpc_byte_buffer * bb,const char * str)179 int byte_buffer_eq_string(grpc_byte_buffer* bb, const char* str) {
180   return byte_buffer_eq_slice(bb, grpc_slice_from_copied_string(str));
181 }
182 
183 namespace {
IsProbablyInteger(void * p)184 bool IsProbablyInteger(void* p) {
185   return reinterpret_cast<uintptr_t>(p) < 1000000 ||
186          (reinterpret_cast<uintptr_t>(p) >
187           std::numeric_limits<uintptr_t>::max() - 10);
188 }
189 
TagStr(void * tag)190 std::string TagStr(void* tag) {
191   if (IsProbablyInteger(tag)) {
192     return absl::StrFormat("tag(%" PRIdPTR ")",
193                            reinterpret_cast<intptr_t>(tag));
194   } else {
195     return absl::StrFormat("%p", tag);
196   }
197 }
198 }  // namespace
199 
200 namespace grpc_core {
201 
CqVerifier(grpc_completion_queue * cq,absl::AnyInvocable<void (Failure)const> fail,absl::AnyInvocable<void (grpc_event_engine::experimental::EventEngine::Duration)const> step_fn)202 CqVerifier::CqVerifier(
203     grpc_completion_queue* cq, absl::AnyInvocable<void(Failure) const> fail,
204     absl::AnyInvocable<
205         void(grpc_event_engine::experimental::EventEngine::Duration) const>
206         step_fn)
207     : cq_(cq), fail_(std::move(fail)), step_fn_(std::move(step_fn)) {}
208 
~CqVerifier()209 CqVerifier::~CqVerifier() { Verify(); }
210 
ToString() const211 std::string CqVerifier::Expectation::ToString() const {
212   return absl::StrCat(
213       location.file(), ":", location.line(), ": ", TagStr(tag), " ",
214       Match(
215           result,
216           [](bool success) {
217             return absl::StrCat("success=", success ? "true" : "false");
218           },
219           [](Maybe) { return std::string("maybe"); },
220           [](AnyStatus) { return std::string("any success value"); },
221           [](const PerformAction&) {
222             return std::string("perform some action");
223           },
224           [](const MaybePerformAction&) {
225             return std::string("maybe perform action");
226           }));
227 }
228 
ToShortString() const229 std::string CqVerifier::Expectation::ToShortString() const {
230   return absl::StrCat(
231       TagStr(tag),
232       Match(
233           result,
234           [](bool success) -> std::string {
235             if (!success) return "-❌";
236             return "-✅";
237           },
238           [](Maybe) { return std::string("-❓"); },
239           [](AnyStatus) { return std::string("-��"); },
240           [](const PerformAction&) { return std::string("-��"); },
241           [](const MaybePerformAction&) { return std::string("-��❓"); }));
242 }
243 
ToStrings() const244 std::vector<std::string> CqVerifier::ToStrings() const {
245   std::vector<std::string> expectations;
246   expectations.reserve(expectations_.size());
247   for (const auto& e : expectations_) {
248     expectations.push_back(e.ToString());
249   }
250   return expectations;
251 }
252 
ToString() const253 std::string CqVerifier::ToString() const {
254   return absl::StrJoin(ToStrings(), "\n");
255 }
256 
ToShortStrings() const257 std::vector<std::string> CqVerifier::ToShortStrings() const {
258   std::vector<std::string> expectations;
259   expectations.reserve(expectations_.size());
260   for (const auto& e : expectations_) {
261     expectations.push_back(e.ToShortString());
262   }
263   return expectations;
264 }
265 
ToShortString() const266 std::string CqVerifier::ToShortString() const {
267   return absl::StrJoin(ToShortStrings(), " ");
268 }
269 
FailNoEventReceived(const SourceLocation & location) const270 void CqVerifier::FailNoEventReceived(const SourceLocation& location) const {
271   fail_(Failure{location, "No event received", ToStrings(), {}});
272 }
273 
FailUnexpectedEvent(grpc_event * ev,const SourceLocation & location) const274 void CqVerifier::FailUnexpectedEvent(grpc_event* ev,
275                                      const SourceLocation& location) const {
276   std::vector<std::string> message_details;
277   if (ev->type == GRPC_OP_COMPLETE && ev->success) {
278     auto successful_state_strings = successful_state_strings_.find(ev->tag);
279     if (successful_state_strings != successful_state_strings_.end()) {
280       for (SuccessfulStateString* sss : successful_state_strings->second) {
281         message_details.push_back(sss->GetSuccessfulStateString());
282       }
283     }
284   }
285   fail_(Failure{location,
286                 absl::StrCat("Unexpected event: ", grpc_event_string(ev)),
287                 ToStrings(), std::move(message_details)});
288 }
289 
290 namespace {
CrashMessage(const CqVerifier::Failure & failure)291 std::string CrashMessage(const CqVerifier::Failure& failure) {
292   std::string message = failure.message;
293   if (!failure.message_details.empty()) {
294     absl::StrAppend(&message, "\nwith:");
295     for (const auto& detail : failure.message_details) {
296       absl::StrAppend(&message, "\n  ", detail);
297     }
298   }
299   absl::StrAppend(&message, "\nchecked @ ", failure.location.file(), ":",
300                   failure.location.line());
301   if (!failure.expected.empty()) {
302     absl::StrAppend(&message, "\nexpected:\n");
303     for (const auto& line : failure.expected) {
304       absl::StrAppend(&message, "  ", line, "\n");
305     }
306   } else {
307     absl::StrAppend(&message, "\nexpected nothing");
308   }
309   return message;
310 }
311 }  // namespace
312 
FailUsingGprCrashWithStdio(const Failure & failure)313 void CqVerifier::FailUsingGprCrashWithStdio(const Failure& failure) {
314   CrashWithStdio(CrashMessage(failure));
315 }
316 
FailUsingGprCrash(const Failure & failure)317 void CqVerifier::FailUsingGprCrash(const Failure& failure) {
318   Crash(CrashMessage(failure));
319 }
320 
FailUsingGtestFail(const Failure & failure)321 void CqVerifier::FailUsingGtestFail(const Failure& failure) {
322   std::string message = absl::StrCat("  ", failure.message);
323   if (!failure.expected.empty()) {
324     absl::StrAppend(&message, "\n  expected:\n");
325     for (const auto& line : failure.expected) {
326       absl::StrAppend(&message, "    ", line, "\n");
327     }
328   } else {
329     absl::StrAppend(&message, "\n  expected nothing");
330   }
331   ADD_FAILURE_AT(failure.location.file(), failure.location.line()) << message;
332 }
333 
334 namespace {
IsMaybe(const CqVerifier::ExpectedResult & r)335 bool IsMaybe(const CqVerifier::ExpectedResult& r) {
336   return Match(
337       r, [](bool) { return false; }, [](CqVerifier::Maybe) { return true; },
338       [](CqVerifier::AnyStatus) { return false; },
339       [](const CqVerifier::PerformAction&) { return false; },
340       [](const CqVerifier::MaybePerformAction&) { return true; });
341 }
342 }  // namespace
343 
Step(gpr_timespec deadline)344 grpc_event CqVerifier::Step(gpr_timespec deadline) {
345   if (step_fn_ != nullptr) {
346     while (true) {
347       grpc_event r = grpc_completion_queue_next(
348           cq_, gpr_inf_past(deadline.clock_type), nullptr);
349       if (r.type != GRPC_QUEUE_TIMEOUT) return r;
350       auto now = gpr_now(deadline.clock_type);
351       if (gpr_time_cmp(deadline, now) < 0) break;
352       step_fn_(Timestamp::FromTimespecRoundDown(deadline) - Timestamp::Now());
353     }
354     return grpc_event{GRPC_QUEUE_TIMEOUT, 0, nullptr};
355   }
356   return grpc_completion_queue_next(cq_, deadline, nullptr);
357 }
358 
Verify(Duration timeout,SourceLocation location)359 void CqVerifier::Verify(Duration timeout, SourceLocation location) {
360   if (expectations_.empty()) return;
361   bool must_log = true;
362   const gpr_timespec deadline =
363       grpc_timeout_milliseconds_to_deadline(timeout.millis());
364   while (!expectations_.empty()) {
365     must_log = std::exchange(added_expectations_, false) || must_log;
366     if (log_verifications_ && must_log) {
367       gpr_log(GPR_ERROR, "Verify %s for %s", ToShortString().c_str(),
368               timeout.ToString().c_str());
369     }
370     must_log = false;
371     grpc_event ev = Step(deadline);
372     if (ev.type == GRPC_QUEUE_TIMEOUT) break;
373     if (ev.type != GRPC_OP_COMPLETE) {
374       FailUnexpectedEvent(&ev, location);
375     }
376     bool found = false;
377     for (auto it = expectations_.begin(); it != expectations_.end(); ++it) {
378       if (it->tag != ev.tag) continue;
379       auto expectation = std::move(*it);
380       expectations_.erase(it);
381       const bool expected = Match(
382           expectation.result,
383           [ev](bool success) { return ev.success == success; },
384           [ev](Maybe m) {
385             if (m.seen != nullptr) *m.seen = true;
386             return ev.success != 0;
387           },
388           [ev](AnyStatus a) {
389             if (a.result != nullptr) *a.result = ev.success;
390             return true;
391           },
392           [ev](const PerformAction& action) {
393             action.action(ev.success);
394             return true;
395           },
396           [ev](const MaybePerformAction& action) {
397             action.action(ev.success);
398             return true;
399           });
400       if (!expected) {
401         FailUnexpectedEvent(&ev, location);
402       }
403       found = true;
404       break;
405     }
406     if (!found) FailUnexpectedEvent(&ev, location);
407     if (AllMaybes()) break;
408   }
409   expectations_.erase(
410       std::remove_if(expectations_.begin(), expectations_.end(),
411                      [](const Expectation& e) { return IsMaybe(e.result); }),
412       expectations_.end());
413   if (!expectations_.empty()) FailNoEventReceived(location);
414 }
415 
AllMaybes() const416 bool CqVerifier::AllMaybes() const {
417   for (const auto& e : expectations_) {
418     if (!IsMaybe(e.result)) return false;
419   }
420   return true;
421 }
422 
VerifyEmpty(Duration timeout,SourceLocation location)423 void CqVerifier::VerifyEmpty(Duration timeout, SourceLocation location) {
424   if (log_verifications_) {
425     gpr_log(GPR_ERROR, "Verify empty completion queue for %s",
426             timeout.ToString().c_str());
427   }
428   const gpr_timespec deadline =
429       gpr_time_add(gpr_now(GPR_CLOCK_MONOTONIC), timeout.as_timespec());
430   GPR_ASSERT(expectations_.empty());
431   grpc_event ev = Step(deadline);
432   if (ev.type != GRPC_QUEUE_TIMEOUT) {
433     FailUnexpectedEvent(&ev, location);
434   }
435 }
436 
Expect(void * tag,ExpectedResult result,SourceLocation location)437 void CqVerifier::Expect(void* tag, ExpectedResult result,
438                         SourceLocation location) {
439   added_expectations_ = true;
440   expectations_.push_back(Expectation{location, tag, std::move(result)});
441 }
442 
AddSuccessfulStateString(void * tag,SuccessfulStateString * successful_state_string)443 void CqVerifier::AddSuccessfulStateString(
444     void* tag, SuccessfulStateString* successful_state_string) {
445   successful_state_strings_[tag].push_back(successful_state_string);
446 }
447 
ClearSuccessfulStateStrings(void * tag)448 void CqVerifier::ClearSuccessfulStateStrings(void* tag) {
449   successful_state_strings_.erase(tag);
450 }
451 
452 }  // namespace grpc_core
453