Mercurial > hg > orthanc
view UnitTestsSources/SQLite.cpp @ 695:c59bc408fb10
parameter to disable the computation of the MD5
author | Sebastien Jodogne <s.jodogne@gmail.com> |
---|---|
date | Wed, 05 Feb 2014 13:58:00 +0100 |
parents | 17815b9d4280 |
children | 96a2d2da0fee |
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#include "gtest/gtest.h" #include "../Core/Toolbox.h" #include "../Core/SQLite/Connection.h" #include "../Core/SQLite/Statement.h" #include "../Core/SQLite/Transaction.h" #include <sqlite3.h> using namespace Orthanc; TEST(SQLite, Configuration) { ASSERT_EQ(1, sqlite3_threadsafe()); } TEST(SQLite, Connection) { Toolbox::RemoveFile("coucou"); SQLite::Connection c; c.Open("coucou"); c.Execute("CREATE TABLE c(k INTEGER PRIMARY KEY AUTOINCREMENT, v INTEGER)"); c.Execute("INSERT INTO c VALUES(NULL, 42);"); } TEST(SQLite, StatementReferenceBasic) { sqlite3* db; sqlite3_open(":memory:", &db); { SQLite::StatementReference r(db, "SELECT * FROM sqlite_master"); ASSERT_EQ(0u, r.GetReferenceCount()); { SQLite::StatementReference r1(r); ASSERT_EQ(1u, r.GetReferenceCount()); ASSERT_EQ(0u, r1.GetReferenceCount()); { SQLite::StatementReference r2(r); ASSERT_EQ(2u, r.GetReferenceCount()); ASSERT_EQ(0u, r1.GetReferenceCount()); ASSERT_EQ(0u, r2.GetReferenceCount()); SQLite::StatementReference r3(r2); ASSERT_EQ(3u, r.GetReferenceCount()); ASSERT_EQ(0u, r1.GetReferenceCount()); ASSERT_EQ(0u, r2.GetReferenceCount()); ASSERT_EQ(0u, r3.GetReferenceCount()); } ASSERT_EQ(1u, r.GetReferenceCount()); ASSERT_EQ(0u, r1.GetReferenceCount()); { SQLite::StatementReference r2(r); ASSERT_EQ(2u, r.GetReferenceCount()); ASSERT_EQ(0u, r1.GetReferenceCount()); ASSERT_EQ(0u, r2.GetReferenceCount()); } ASSERT_EQ(1u, r.GetReferenceCount()); ASSERT_EQ(0u, r1.GetReferenceCount()); } ASSERT_EQ(0u, r.GetReferenceCount()); } sqlite3_close(db); } TEST(SQLite, StatementBasic) { SQLite::Connection c; c.OpenInMemory(); SQLite::Statement s(c, "SELECT * from sqlite_master"); s.Run(); for (unsigned int i = 0; i < 5; i++) { SQLite::Statement cs(c, SQLITE_FROM_HERE, "SELECT * from sqlite_master"); cs.Step(); } } namespace { static bool destroyed; class MyFunc : public SQLite::IScalarFunction { public: MyFunc() { destroyed = false; } virtual ~MyFunc() { destroyed = true; } virtual const char* GetName() const { return "MYFUNC"; } virtual unsigned int GetCardinality() const { return 2; } virtual void Compute(SQLite::FunctionContext& context) { context.SetIntResult(1000 + context.GetIntValue(0) * context.GetIntValue(1)); } }; class MyDelete : public SQLite::IScalarFunction { public: std::set<int> deleted_; virtual const char* GetName() const { return "MYDELETE"; } virtual unsigned int GetCardinality() const { return 1; } virtual void Compute(SQLite::FunctionContext& context) { deleted_.insert(context.GetIntValue(0)); context.SetNullResult(); } }; } TEST(SQLite, ScalarFunction) { { SQLite::Connection c; c.OpenInMemory(); c.Register(new MyFunc()); c.Execute("CREATE TABLE t(id INTEGER PRIMARY KEY, v1 INTEGER, v2 INTEGER);"); c.Execute("INSERT INTO t VALUES(NULL, 2, 3);"); c.Execute("INSERT INTO t VALUES(NULL, 4, 4);"); c.Execute("INSERT INTO t VALUES(NULL, 6, 5);"); SQLite::Statement t(c, "SELECT MYFUNC(v1, v2), v1, v2 FROM t"); int i = 0; while (t.Step()) { ASSERT_EQ(t.ColumnInt(0), 1000 + t.ColumnInt(1) * t.ColumnInt(2)); i++; } ASSERT_EQ(3, i); ASSERT_FALSE(destroyed); } ASSERT_TRUE(destroyed); } TEST(SQLite, CascadedDeleteCallback) { SQLite::Connection c; c.OpenInMemory(); MyDelete *func = new MyDelete(); c.Register(func); c.Execute("CREATE TABLE parent(id INTEGER PRIMARY KEY, dummy INTEGER);"); c.Execute("CREATE TABLE child(" " id INTEGER PRIMARY KEY, " " parent INTEGER REFERENCES parent(id) ON DELETE CASCADE, " " value INTEGER);"); c.Execute("CREATE TRIGGER childRemoved " "AFTER DELETE ON child " "FOR EACH ROW BEGIN " " SELECT MYDELETE(old.value); " "END;"); c.Execute("INSERT INTO parent VALUES(42, 100);"); c.Execute("INSERT INTO parent VALUES(43, 101);"); c.Execute("INSERT INTO child VALUES(NULL, 42, 4200);"); c.Execute("INSERT INTO child VALUES(NULL, 42, 4201);"); c.Execute("INSERT INTO child VALUES(NULL, 43, 4300);"); c.Execute("INSERT INTO child VALUES(NULL, 43, 4301);"); // The following command deletes "parent(43, 101)", then in turns // "child(NULL, 43, 4300/4301)", then calls the MyDelete on 4300 and // 4301 c.Execute("DELETE FROM parent WHERE dummy=101"); ASSERT_EQ(2u, func->deleted_.size()); ASSERT_TRUE(func->deleted_.find(4300) != func->deleted_.end()); ASSERT_TRUE(func->deleted_.find(4301) != func->deleted_.end()); } TEST(SQLite, EmptyTransactions) { try { SQLite::Connection c; c.OpenInMemory(); c.Execute("CREATE TABLE a(id INTEGER PRIMARY KEY);"); c.Execute("INSERT INTO a VALUES(NULL)"); { SQLite::Transaction t(c); t.Begin(); { SQLite::Statement s(c, SQLITE_FROM_HERE, "SELECT * FROM a"); s.Step(); } //t.Commit(); } { SQLite::Statement s(c, SQLITE_FROM_HERE, "SELECT * FROM a"); s.Step(); } } catch (OrthancException& e) { fprintf(stderr, "Exception: [%s]\n", e.What()); throw e; } }