mirror of
https://github.com/KhronosGroup/OpenCL-CTS.git
synced 2026-03-19 06:09:01 +00:00
Re-enabling narrowing errors (#1144)
Fixes narrowing conversion build errors in test_common Removing disable of narrowing errors in main CMakeLists.txt and moving it down to specific test_conformance suite's CMakeLists.txt where there are many more build errors revealed from this fix. Fixes a few simple issues under test_conformance in the process. Contributes #787 Signed-off-by: Ellen Norris-Thompson <ellen.norris-thompson@arm.com> --------- Signed-off-by: Ellen Norris-Thompson <ellen.norris-thompson@arm.com>
This commit is contained in:
@@ -104,7 +104,6 @@ if(CMAKE_COMPILER_IS_GNUCC OR "${CMAKE_CXX_COMPILER_ID}" MATCHES "(Apple)?Clang"
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# Enable more warnings if not doing a release build.
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add_cxx_flag_if_supported(-Wall)
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endif()
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add_cxx_flag_if_supported(-Wno-narrowing)
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add_cxx_flag_if_supported(-Wno-format)
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add_cxx_flag_if_supported(-Wno-error=cpp) # Allow #warning directive
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add_cxx_flag_if_supported(-Wno-unknown-pragmas) # Issue #785
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@@ -1624,7 +1624,7 @@ Version get_device_cl_c_version(cl_device_id device)
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&opencl_c_version_size_in_bytes);
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test_error_ret(error,
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"clGetDeviceInfo failed for CL_DEVICE_OPENCL_C_VERSION\n",
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(Version{ -1, 0 }));
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(Version{ 0, 0 }));
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std::string opencl_c_version(opencl_c_version_size_in_bytes, '\0');
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error =
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@@ -1633,13 +1633,13 @@ Version get_device_cl_c_version(cl_device_id device)
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test_error_ret(error,
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"clGetDeviceInfo failed for CL_DEVICE_OPENCL_C_VERSION\n",
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(Version{ -1, 0 }));
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(Version{ 0, 0 }));
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// Scrape out the major, minor pair from the string.
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auto major = opencl_c_version[opencl_c_version.find('.') - 1];
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auto minor = opencl_c_version[opencl_c_version.find('.') + 1];
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return Version{ major - '0', minor - '0' };
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return Version{ (cl_uint)(major - '0'), (cl_uint)(minor - '0') };
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}
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Version get_device_latest_cl_c_version(cl_device_id device)
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@@ -1657,7 +1657,7 @@ Version get_device_latest_cl_c_version(cl_device_id device)
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&opencl_c_all_versions_size_in_bytes);
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test_error_ret(
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error, "clGetDeviceInfo failed for CL_DEVICE_OPENCL_C_ALL_VERSIONS",
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(Version{ -1, 0 }));
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(Version{ 0, 0 }));
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std::vector<cl_name_version> name_versions(
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opencl_c_all_versions_size_in_bytes / sizeof(cl_name_version));
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error = clGetDeviceInfo(device, CL_DEVICE_OPENCL_C_ALL_VERSIONS,
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@@ -1665,14 +1665,14 @@ Version get_device_latest_cl_c_version(cl_device_id device)
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name_versions.data(), nullptr);
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test_error_ret(
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error, "clGetDeviceInfo failed for CL_DEVICE_OPENCL_C_ALL_VERSIONS",
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(Version{ -1, 0 }));
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(Version{ 0, 0 }));
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Version max_supported_cl_c_version{};
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for (const auto &name_version : name_versions)
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{
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Version current_version{
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static_cast<int>(CL_VERSION_MAJOR(name_version.version)),
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static_cast<int>(CL_VERSION_MINOR(name_version.version))
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static_cast<cl_uint>(CL_VERSION_MAJOR(name_version.version)),
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static_cast<cl_uint>(CL_VERSION_MINOR(name_version.version))
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};
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max_supported_cl_c_version =
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(current_version > max_supported_cl_c_version)
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@@ -1693,7 +1693,7 @@ Version get_max_OpenCL_C_for_context(cl_context context)
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auto error = clGetContextInfo(context, CL_CONTEXT_DEVICES, 0, nullptr,
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&devices_size_in_bytes);
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test_error_ret(error, "clGetDeviceInfo failed for CL_CONTEXT_DEVICES",
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(Version{ -1, 0 }));
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(Version{ 0, 0 }));
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std::vector<cl_device_id> devices(devices_size_in_bytes
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/ sizeof(cl_device_id));
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error = clGetContextInfo(context, CL_CONTEXT_DEVICES, devices_size_in_bytes,
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@@ -1757,8 +1757,8 @@ bool device_supports_cl_c_version(cl_device_id device, Version version)
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for (const auto &name_version : name_versions)
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{
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Version current_version{
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static_cast<int>(CL_VERSION_MAJOR(name_version.version)),
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static_cast<int>(CL_VERSION_MINOR(name_version.version))
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static_cast<cl_uint>(CL_VERSION_MAJOR(name_version.version)),
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static_cast<cl_uint>(CL_VERSION_MINOR(name_version.version))
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};
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if (current_version == version)
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{
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@@ -240,7 +240,7 @@ void UnFlushToZero(void *p)
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#if defined(__i386__) || defined(__x86_64__) || defined(_MSC_VER)
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union {
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void *p;
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int i;
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unsigned int i;
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} u = { p };
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_mm_setcsr(u.i);
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#elif defined(__arm__) || defined(__aarch64__)
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@@ -25,22 +25,28 @@
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class Version {
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public:
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Version(): m_major(0), m_minor(0) {}
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Version(int major, int minor): m_major(major), m_minor(minor) {}
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bool operator>(const Version &rhs) const { return to_int() > rhs.to_int(); }
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bool operator<(const Version &rhs) const { return to_int() < rhs.to_int(); }
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Version(cl_uint major, cl_uint minor): m_major(major), m_minor(minor) {}
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bool operator>(const Version &rhs) const
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{
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return to_uint() > rhs.to_uint();
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}
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bool operator<(const Version &rhs) const
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{
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return to_uint() < rhs.to_uint();
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}
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bool operator<=(const Version &rhs) const
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{
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return to_int() <= rhs.to_int();
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return to_uint() <= rhs.to_uint();
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}
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bool operator>=(const Version &rhs) const
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{
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return to_int() >= rhs.to_int();
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return to_uint() >= rhs.to_uint();
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}
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bool operator==(const Version &rhs) const
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{
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return to_int() == rhs.to_int();
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return to_uint() == rhs.to_uint();
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}
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int to_int() const { return m_major * 10 + m_minor; }
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cl_uint to_uint() const { return m_major * 10 + m_minor; }
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std::string to_string() const
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{
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std::stringstream ss;
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@@ -49,8 +55,8 @@ public:
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}
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private:
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int m_major;
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int m_minor;
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cl_uint m_major;
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cl_uint m_minor;
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};
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Version get_device_cl_version(cl_device_id device);
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@@ -154,7 +154,7 @@ int sampler_param_test(cl_sampler sampler, cl_sampler_info param_name,
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return 0;
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}
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static cl_int normalized_coord_values[] = { CL_TRUE, CL_FALSE };
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static cl_bool normalized_coord_values[] = { CL_TRUE, CL_FALSE };
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static cl_addressing_mode addressing_mode_values[] = {
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CL_ADDRESS_NONE, CL_ADDRESS_CLAMP_TO_EDGE, CL_ADDRESS_CLAMP,
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CL_ADDRESS_REPEAT, CL_ADDRESS_MIRRORED_REPEAT
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@@ -1292,8 +1292,8 @@ cl_long test_atomic_and_result_long(size_t size, cl_long *startRefValues,
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int test_atomic_and(cl_device_id deviceID, cl_context context,
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cl_command_queue queue, int num_elements)
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{
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TestFns set = { 0xffffffff,
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0xffffffffffffffffLL,
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TestFns set = { (cl_int)0xffffffff,
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(cl_long)0xffffffffffffffffLL,
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test_bitwise_num_results,
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test_atomic_and_result_int,
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NULL,
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@@ -1,5 +1,9 @@
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set(MODULE_NAME BASIC)
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if(CMAKE_COMPILER_IS_GNUCC OR "${CMAKE_CXX_COMPILER_ID}" MATCHES "(Apple)?Clang")
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add_cxx_flag_if_supported(-Wno-narrowing)
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endif()
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set(${MODULE_NAME}_SOURCES
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main.cpp
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test_fpmath.cpp
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@@ -217,7 +217,7 @@ int test_kernel_preprocessor_macros(cl_device_id deviceID, cl_context context, c
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// The OpenCL version reported by the macro reports the feature level supported by the compiler. Since
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// this doesn't directly match any property we can query, we just check to see if it's a sane value
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auto device_cl_version = get_device_cl_version(deviceID);
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int device_cl_version_int = device_cl_version.to_int() * 10;
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int device_cl_version_int = device_cl_version.to_uint() * 10;
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if ((results[2] < 100) || (results[2] > device_cl_version_int))
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{
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log_error("ERROR: Kernel preprocessor __OPENCL_VERSION__ does not make "
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@@ -241,14 +241,16 @@ int test_kernel_preprocessor_macros(cl_device_id deviceID, cl_context context, c
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int cl_c_minor_version = (results[3] / 10) % 10;
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if ((results[3] < 100)
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|| (!device_supports_cl_c_version(
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deviceID, Version{ cl_c_major_version, cl_c_minor_version })))
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deviceID,
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Version{ (cl_uint)cl_c_major_version,
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(cl_uint)cl_c_minor_version })))
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{
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auto device_version = get_device_cl_c_version(deviceID);
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log_error(
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"ERROR: Kernel preprocessor __OPENCL_C_VERSION__ does not make "
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"sense w.r.t. device's version string! "
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"(preprocessor states %d, CL_DEVICE_OPENCL_C_VERSION is %d (%s))\n",
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results[3], device_version.to_int() * 10,
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results[3], device_version.to_uint() * 10,
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device_version.to_string().c_str());
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log_error("This means that CL_DEVICE_OPENCL_C_VERSION < "
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"__OPENCL_C_VERSION__");
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@@ -89,7 +89,7 @@ int test_preprocessor_define_udef(cl_device_id deviceID, cl_context context, cl_
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error = clEnqueueWriteBuffer(queue, buffer[0], CL_TRUE, 0, num_elements*sizeof(cl_int), srcData, 0, NULL, NULL);
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test_error(error, "clEnqueueWriteBuffer failed");
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size_t threads[3] = {num_elements, 0, 0};
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size_t threads[3] = { (size_t)num_elements, 0, 0 };
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error = clEnqueueNDRangeKernel(queue, kernel, 1, NULL, threads, NULL, 0, NULL, NULL);
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test_error(error, "clEnqueueNDRangeKernel failed");
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@@ -175,7 +175,7 @@ int test_preprocessor_include(cl_device_id deviceID, cl_context context, cl_comm
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error = clSetKernelArg(kernel, 1, sizeof(buffer[1]), &buffer[1]);
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test_error(error, "clSetKernelArg failed");
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size_t threads[3] = {num_elements, 0, 0};
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size_t threads[3] = { (size_t)num_elements, 0, 0 };
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error = clEnqueueNDRangeKernel(queue, kernel, 1, NULL, threads, NULL, 0, NULL, NULL);
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test_error(error, "clEnqueueNDRangeKernel failed");
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@@ -272,7 +272,7 @@ int test_preprocessor_line_error(cl_device_id deviceID, cl_context context, cl_c
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error = clSetKernelArg(kernel, 0, sizeof(buffer[0]), &buffer[0]);
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test_error(error, "clSetKernelArg failed");
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size_t threads[3] = {num_elements, 0, 0};
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size_t threads[3] = { (size_t)num_elements, 0, 0 };
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error = clEnqueueNDRangeKernel(queue, kernel, 1, NULL, threads, NULL, 0, NULL, NULL);
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test_error(error, "clEnqueueNDRangeKernel failed");
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@@ -313,7 +313,7 @@ int test_preprocessor_pragma(cl_device_id deviceID, cl_context context, cl_comma
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error = clSetKernelArg(kernel, 0, sizeof(buffer[0]), &buffer[0]);
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test_error(error, "clSetKernelArg failed");
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size_t threads[3] = {num_elements, 0, 0};
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size_t threads[3] = { (size_t)num_elements, 0, 0 };
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error = clEnqueueNDRangeKernel(queue, kernel, 1, NULL, threads, NULL, 0, NULL, NULL);
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test_error(error, "clEnqueueNDRangeKernel failed");
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@@ -35,11 +35,11 @@ typedef struct
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} device_info;
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device_info device_infos[] = {
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{ CL_DEVICE_TYPE_DEFAULT, "CL_DEVICE_TYPE_DEFAULT", -1, NULL },
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{ CL_DEVICE_TYPE_CPU, "CL_DEVICE_TYPE_CPU", -1, NULL },
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{ CL_DEVICE_TYPE_GPU, "CL_DEVICE_TYPE_GPU", -1, NULL },
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{ CL_DEVICE_TYPE_ACCELERATOR, "CL_DEVICE_TYPE_ACCELERATOR", -1, NULL },
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{ CL_DEVICE_TYPE_ALL, "CL_DEVICE_TYPE_ALL", -1, NULL },
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{ CL_DEVICE_TYPE_DEFAULT, "CL_DEVICE_TYPE_DEFAULT", 0, NULL },
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{ CL_DEVICE_TYPE_CPU, "CL_DEVICE_TYPE_CPU", 0, NULL },
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{ CL_DEVICE_TYPE_GPU, "CL_DEVICE_TYPE_GPU", 0, NULL },
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{ CL_DEVICE_TYPE_ACCELERATOR, "CL_DEVICE_TYPE_ACCELERATOR", 0, NULL },
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{ CL_DEVICE_TYPE_ALL, "CL_DEVICE_TYPE_ALL", 0, NULL },
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};
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// config types
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@@ -1,5 +1,9 @@
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set(MODULE_NAME CONVERSIONS)
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if(CMAKE_COMPILER_IS_GNUCC OR "${CMAKE_CXX_COMPILER_ID}" MATCHES "(Apple)?Clang")
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add_cxx_flag_if_supported(-Wno-narrowing)
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endif()
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set (${MODULE_NAME}_SOURCES
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Sleep.cpp test_conversions.cpp basic_test_conversions.cpp
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)
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@@ -1016,7 +1016,7 @@ int test_execute_block(cl_device_id device, cl_context context, cl_command_queue
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size_t ret_len;
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cl_int n, err_ret, res = 0;
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clCommandQueueWrapper dev_queue;
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cl_int kernel_results[MAX_GWS] = {0xDEADBEEF};
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cl_int kernel_results[MAX_GWS] = { (cl_int)0xDEADBEEF };
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size_t max_local_size = 1;
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err_ret = clGetDeviceInfo(device, CL_DEVICE_MAX_WORK_GROUP_SIZE, sizeof(max_local_size), &max_local_size, &ret_len);
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@@ -353,7 +353,8 @@ int test_device_set(size_t deviceCount, size_t queueCount, cl_device_id *devices
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}
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int init_device_partition_test(cl_device_id parentDevice, cl_uint &maxComputeUnits, cl_uint &maxSubDevices)
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int init_device_partition_test(cl_device_id parentDevice,
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cl_uint &maxComputeUnits, cl_uint &maxSubDevices)
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{
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int err = clGetDeviceInfo(parentDevice, CL_DEVICE_MAX_COMPUTE_UNITS, sizeof(maxComputeUnits), &maxComputeUnits, NULL);
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test_error( err, "Unable to get maximal number of compute units" );
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@@ -449,14 +450,21 @@ int test_partition_of_device(cl_device_id deviceID, cl_context context, cl_comma
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#define PROPERTY_TYPES 8
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cl_device_partition_property partitionProp[PROPERTY_TYPES][5] = {
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{ CL_DEVICE_PARTITION_EQUALLY, maxComputeUnits / 2, 0, 0, 0 } ,
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{ CL_DEVICE_PARTITION_BY_COUNTS, 1, maxComputeUnits - 1, CL_DEVICE_PARTITION_BY_COUNTS_LIST_END, 0 } ,
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{ CL_DEVICE_PARTITION_BY_AFFINITY_DOMAIN, CL_DEVICE_AFFINITY_DOMAIN_NUMA, 0, 0, 0 } ,
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{ CL_DEVICE_PARTITION_BY_AFFINITY_DOMAIN, CL_DEVICE_AFFINITY_DOMAIN_L4_CACHE, 0, 0, 0 } ,
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{ CL_DEVICE_PARTITION_BY_AFFINITY_DOMAIN, CL_DEVICE_AFFINITY_DOMAIN_L3_CACHE, 0, 0, 0 } ,
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{ CL_DEVICE_PARTITION_BY_AFFINITY_DOMAIN, CL_DEVICE_AFFINITY_DOMAIN_L2_CACHE, 0, 0, 0 } ,
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{ CL_DEVICE_PARTITION_BY_AFFINITY_DOMAIN, CL_DEVICE_AFFINITY_DOMAIN_L1_CACHE, 0, 0, 0 } ,
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{ CL_DEVICE_PARTITION_BY_AFFINITY_DOMAIN, CL_DEVICE_AFFINITY_DOMAIN_NEXT_PARTITIONABLE, 0, 0, 0 }
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{ CL_DEVICE_PARTITION_EQUALLY, (cl_int)maxComputeUnits / 2, 0, 0, 0 },
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{ CL_DEVICE_PARTITION_BY_COUNTS, 1, (cl_int)maxComputeUnits - 1,
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CL_DEVICE_PARTITION_BY_COUNTS_LIST_END, 0 },
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{ CL_DEVICE_PARTITION_BY_AFFINITY_DOMAIN,
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CL_DEVICE_AFFINITY_DOMAIN_NUMA, 0, 0, 0 },
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{ CL_DEVICE_PARTITION_BY_AFFINITY_DOMAIN,
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CL_DEVICE_AFFINITY_DOMAIN_L4_CACHE, 0, 0, 0 },
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{ CL_DEVICE_PARTITION_BY_AFFINITY_DOMAIN,
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CL_DEVICE_AFFINITY_DOMAIN_L3_CACHE, 0, 0, 0 },
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{ CL_DEVICE_PARTITION_BY_AFFINITY_DOMAIN,
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CL_DEVICE_AFFINITY_DOMAIN_L2_CACHE, 0, 0, 0 },
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{ CL_DEVICE_PARTITION_BY_AFFINITY_DOMAIN,
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CL_DEVICE_AFFINITY_DOMAIN_L1_CACHE, 0, 0, 0 },
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{ CL_DEVICE_PARTITION_BY_AFFINITY_DOMAIN,
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CL_DEVICE_AFFINITY_DOMAIN_NEXT_PARTITIONABLE, 0, 0, 0 }
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};
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// loop thru each type, creating sub-devices for each type
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@@ -175,7 +175,7 @@ struct CommandBufferPrintfTest : public BasicCommandBufferTest
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nullptr, &error);
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test_error(error, "clCreateBuffer failed");
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cl_int offset[] = { 0, max_pattern_length };
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cl_uint offset[] = { 0, max_pattern_length };
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off_mem =
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clCreateBuffer(context, CL_MEM_READ_ONLY | CL_MEM_COPY_HOST_PTR,
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sizeof(offset), offset, &error);
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@@ -274,7 +274,9 @@ struct CommandBufferPrintfTest : public BasicCommandBufferTest
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&pattern[0], 0, nullptr, nullptr);
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test_error(error, "clEnqueueWriteBuffer failed");
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cl_int offset[] = { 0, pattern.size() - 1 };
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test_assert_error(pattern.size() - 1 <= CL_UINT_MAX,
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"pattern.size() - 1 does not fit in a cl_uint");
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cl_uint offset[] = { 0, static_cast<cl_uint>(pattern.size() - 1) };
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error = clEnqueueWriteBuffer(queue, off_mem, CL_TRUE, 0, sizeof(offset),
|
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offset, 0, nullptr, nullptr);
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test_error(error, "clEnqueueWriteBuffer failed");
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@@ -115,7 +115,7 @@ struct CreateCommandBufferRepeatedProperties : public BasicCommandBufferTest
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TEST_FAIL);
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cl_command_buffer_properties_khr invalid_properties[3] = {
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CL_COMMAND_BUFFER_FLAGS_KHR, CL_INVALID_PROPERTY, 0
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CL_COMMAND_BUFFER_FLAGS_KHR, (cl_command_buffer_properties_khr)-1, 0
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};
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command_buffer =
|
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@@ -165,7 +165,8 @@ struct CreateInvalidMultiDeviceProperty : public SemaphoreTestBase
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test_error(err, "Unable to get maximal number of compute units");
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|
||||
cl_device_partition_property partitionProp[] = {
|
||||
CL_DEVICE_PARTITION_EQUALLY, maxComputeUnits / 2, 0
|
||||
CL_DEVICE_PARTITION_EQUALLY,
|
||||
static_cast<cl_device_partition_property>(maxComputeUnits / 2), 0
|
||||
};
|
||||
|
||||
cl_uint deviceCount = 0;
|
||||
@@ -238,7 +239,8 @@ struct CreateInvalidDevice : public SemaphoreTestBase
|
||||
test_error(err, "Unable to get maximal number of compute units");
|
||||
|
||||
cl_device_partition_property partitionProp[] = {
|
||||
CL_DEVICE_PARTITION_EQUALLY, maxComputeUnits / 2, 0
|
||||
CL_DEVICE_PARTITION_EQUALLY,
|
||||
static_cast<cl_device_partition_property>(maxComputeUnits / 2), 0
|
||||
};
|
||||
|
||||
cl_uint deviceCount = 0;
|
||||
|
||||
@@ -1,5 +1,9 @@
|
||||
set(MODULE_NAME INTEGER_OPS)
|
||||
|
||||
if(CMAKE_COMPILER_IS_GNUCC OR "${CMAKE_CXX_COMPILER_ID}" MATCHES "(Apple)?Clang")
|
||||
add_cxx_flag_if_supported(-Wno-narrowing)
|
||||
endif()
|
||||
|
||||
set(${MODULE_NAME}_SOURCES
|
||||
main.cpp
|
||||
test_int_basic_ops.cpp
|
||||
|
||||
@@ -1,5 +1,9 @@
|
||||
set(MODULE_NAME NON_UNIFORM_WORK_GROUP)
|
||||
|
||||
if(CMAKE_COMPILER_IS_GNUCC OR "${CMAKE_CXX_COMPILER_ID}" MATCHES "(Apple)?Clang")
|
||||
add_cxx_flag_if_supported(-Wno-narrowing)
|
||||
endif()
|
||||
|
||||
set(${MODULE_NAME}_SOURCES
|
||||
main.cpp
|
||||
test_advanced_2d.cpp
|
||||
|
||||
@@ -314,7 +314,7 @@ static int kernelFilter( cl_device_id device, cl_context context, cl_command_que
|
||||
|
||||
// read output image
|
||||
size_t origin[3] = { 0, 0, 0 };
|
||||
size_t region[3] = { w, h, 1 };
|
||||
size_t region[3] = { (size_t)w, (size_t)h, 1 };
|
||||
err = clEnqueueReadImage( queue, memobjs[1], true, origin, region, 0, 0, outptr, 0, NULL, NULL);
|
||||
if( err != CL_SUCCESS ){
|
||||
print_error( err, "clReadImage failed\n" );
|
||||
|
||||
@@ -233,7 +233,7 @@ int read_image( cl_device_id device, cl_context context, cl_command_queue queue,
|
||||
}
|
||||
|
||||
size_t origin[3] = { 0, 0, 0 };
|
||||
size_t region[3] = { w, h, 1 };
|
||||
size_t region[3] = { (size_t)w, (size_t)h, 1 };
|
||||
err = clEnqueueReadImage( queue, memobjs[0], false, origin, region, 0, 0, dst, 0, NULL, &readEvent );
|
||||
if( err != CL_SUCCESS ){
|
||||
print_error( err, "clReadImage2D failed" );
|
||||
|
||||
@@ -472,7 +472,7 @@ int write_image( cl_device_id device, cl_context context, cl_command_queue queue
|
||||
}
|
||||
|
||||
size_t origin[3] = { 0, 0, 0 };
|
||||
size_t region[3] = { w, h, 1 };
|
||||
size_t region[3] = { (size_t)w, (size_t)h, 1 };
|
||||
err = clEnqueueWriteImage( queue, memobjs[0], false, origin, region, 0, 0, inptr, 0, NULL, &writeEvent );
|
||||
if( err != CL_SUCCESS ){
|
||||
clReleaseMemObject(memobjs[0]);
|
||||
|
||||
@@ -155,7 +155,8 @@ static void get_spir_version(cl_device_id device,
|
||||
{
|
||||
auto major = v[v.find('.') - 1];
|
||||
auto minor = v[v.find('.') + 1];
|
||||
versions.push_back(Version{ major - '0', minor - '0' });
|
||||
versions.push_back(
|
||||
Version{ (cl_uint)(major - '0'), (cl_uint)(minor - '0') });
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
@@ -34,6 +34,10 @@ set(TEST_HARNESS_SOURCES
|
||||
../../test_conformance/math_brute_force/utility.cpp
|
||||
)
|
||||
|
||||
if(CMAKE_COMPILER_IS_GNUCC OR "${CMAKE_CXX_COMPILER_ID}" MATCHES "(Apple)?Clang")
|
||||
add_cxx_flag_if_supported(-Wno-narrowing)
|
||||
endif()
|
||||
|
||||
set(${MODULE_NAME}_SOURCES ${SPIRV_NEW_SOURCES} ${TEST_HARNESS_SOURCES})
|
||||
|
||||
include(../CMakeCommon.txt)
|
||||
|
||||
@@ -68,7 +68,7 @@ TEST_SPIRV_FUNC(op_composite_construct_struct)
|
||||
typedef AbstractStruct2<int, char> CustomType1;
|
||||
typedef AbstractStruct2<cl_int2, CustomType1> CustomType2;
|
||||
|
||||
CustomType1 value1 = {2100483600, 128};
|
||||
CustomType1 value1 = { 2100483600, (char)128 };
|
||||
cl_int2 intvals = { { 2100480000, 2100480000 } };
|
||||
CustomType2 value2 = {intvals, value1};
|
||||
|
||||
|
||||
@@ -122,7 +122,7 @@ TEST_SPIRV_FUNC(op_constant_struct_int_float_simple)
|
||||
|
||||
TEST_SPIRV_FUNC(op_constant_struct_int_char_simple)
|
||||
{
|
||||
AbstractStruct2<int, char> value = {2100483600, 128};
|
||||
AbstractStruct2<int, char> value = { 2100483600, (char)128 };
|
||||
std::vector<AbstractStruct2<int, char> > results(256, value);
|
||||
return test_constant(deviceID, context, queue, "constant_struct_int_char_simple", results);
|
||||
}
|
||||
@@ -132,7 +132,7 @@ TEST_SPIRV_FUNC(op_constant_struct_struct_simple)
|
||||
typedef AbstractStruct2<int, char> CustomType1;
|
||||
typedef AbstractStruct2<cl_int2, CustomType1> CustomType2;
|
||||
|
||||
CustomType1 value1 = {2100483600, 128};
|
||||
CustomType1 value1 = { 2100483600, (char)128 };
|
||||
cl_int2 intvals = { { 2100480000, 2100480000 } };
|
||||
CustomType2 value2 = {intvals, value1};
|
||||
|
||||
|
||||
@@ -118,7 +118,7 @@ TEST_SPIRV_FUNC(op_copy_struct_int_float_simple)
|
||||
|
||||
TEST_SPIRV_FUNC(op_copy_struct_int_char_simple)
|
||||
{
|
||||
AbstractStruct2<int, char> value = {2100483600, 128};
|
||||
AbstractStruct2<int, char> value = { 2100483600, (char)128 };
|
||||
std::vector<AbstractStruct2<int, char> > results(256, value);
|
||||
return test_copy(deviceID, context, queue, "copy_struct_int_char_simple", results);
|
||||
}
|
||||
@@ -128,7 +128,7 @@ TEST_SPIRV_FUNC(op_copy_struct_struct_simple)
|
||||
typedef AbstractStruct2<int, char> CustomType1;
|
||||
typedef AbstractStruct2<cl_int2, CustomType1> CustomType2;
|
||||
|
||||
CustomType1 value1 = {2100483600, 128};
|
||||
CustomType1 value1 = { 2100483600, (char)128 };
|
||||
cl_int2 intvals = { { 2100480000, 2100480000 } };
|
||||
CustomType2 value2 = {intvals, value1};
|
||||
|
||||
|
||||
Reference in New Issue
Block a user