This is an artefact of split-mode CUDA compilation that we need to mimic. HD functions are sometimes allowed to call H or D functions. Due to split compilation mode device-side compilation will not see host-only function and thus they will not be considered at all. For clang both H and D variants will become function overloads visible to compiler. Normally target attribute is considered only if C++ rules can not determine which function is better. However in this case we need to ignore functions that would not be present during current compilation phase before we apply normal overload resolution rules. Changes: * introduced another level of call preference to better describe possible call combinations. * removed WrongSide functions from consideration if the set contains SameSide function. * disabled H->D, D->H and G->H calls. These combinations are not allowed by CUDA and we were reluctantly allowing them to work around device-side calls to math functions in std namespace. We no longer need it after r258880. Differential Revision: http://reviews.llvm.org/D16870 llvm-svn: 260697
304 lines
11 KiB
Plaintext
304 lines
11 KiB
Plaintext
// REQUIRES: x86-registered-target
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// REQUIRES: nvptx-registered-target
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// Make sure we handle target overloads correctly.
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// RUN: %clang_cc1 -triple x86_64-unknown-linux-gnu \
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// RUN: -fcuda-target-overloads -emit-llvm -o - %s \
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// RUN: | FileCheck -check-prefix=CHECK-BOTH -check-prefix=CHECK-HOST %s
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// RUN: %clang_cc1 -triple nvptx64-nvidia-cuda -fcuda-is-device \
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// RUN: -fcuda-target-overloads -emit-llvm -o - %s \
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// RUN: | FileCheck -check-prefix=CHECK-BOTH -check-prefix=CHECK-DEVICE \
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// RUN: -check-prefix=CHECK-DEVICE-STRICT %s
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// Check target overloads handling with disabled call target checks.
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// RUN: %clang_cc1 -DNOCHECKS -triple x86_64-unknown-linux-gnu -emit-llvm \
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// RUN: -fcuda-disable-target-call-checks -fcuda-target-overloads -o - %s \
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// RUN: | FileCheck -check-prefix=CHECK-BOTH -check-prefix=CHECK-HOST \
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// RUN: -check-prefix=CHECK-BOTH-NC -check-prefix=CHECK-HOST-NC %s
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// RUN: %clang_cc1 -DNOCHECKS -triple nvptx64-nvidia-cuda -emit-llvm \
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// RUN: -fcuda-disable-target-call-checks -fcuda-target-overloads \
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// RUN: -fcuda-is-device -o - %s \
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// RUN: | FileCheck -check-prefix=CHECK-BOTH -check-prefix=CHECK-DEVICE \
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// RUN: -check-prefix=CHECK-BOTH-NC -check-prefix=CHECK-DEVICE-NC %s
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#include "Inputs/cuda.h"
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typedef int (*fp_t)(void);
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typedef void (*gp_t)(void);
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// CHECK-HOST: @hp = global i32 ()* @_Z1hv
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// CHECK-HOST: @chp = global i32 ()* @ch
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// CHECK-HOST: @dhp = global i32 ()* @_Z2dhv
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// CHECK-HOST: @cdhp = global i32 ()* @cdh
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// CHECK-HOST: @gp = global void ()* @_Z1gv
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// CHECK-BOTH-LABEL: define i32 @_Z2dhv()
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__device__ int dh(void) { return 1; }
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// CHECK-DEVICE: ret i32 1
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__host__ int dh(void) { return 2; }
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// CHECK-HOST: ret i32 2
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// CHECK-BOTH-LABEL: define i32 @_Z2hdv()
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__host__ __device__ int hd(void) { return 3; }
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// CHECK-BOTH: ret i32 3
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// CHECK-DEVICE-LABEL: define i32 @_Z1dv()
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__device__ int d(void) { return 8; }
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// CHECK-DEVICE: ret i32 8
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// CHECK-HOST-LABEL: define i32 @_Z1hv()
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__host__ int h(void) { return 9; }
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// CHECK-HOST: ret i32 9
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// CHECK-BOTH-LABEL: define void @_Z1gv()
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__global__ void g(void) {}
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// CHECK-BOTH: ret void
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// mangled names of extern "C" __host__ __device__ functions clash
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// with those of their __host__/__device__ counterparts, so
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// overloading of extern "C" functions can only happen for __host__
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// and __device__ functions -- we never codegen them in the same
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// compilation and therefore mangled name conflict is not a problem.
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// CHECK-BOTH-LABEL: define i32 @cdh()
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extern "C" __device__ int cdh(void) {return 10;}
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// CHECK-DEVICE: ret i32 10
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extern "C" __host__ int cdh(void) {return 11;}
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// CHECK-HOST: ret i32 11
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// CHECK-DEVICE-LABEL: define i32 @cd()
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extern "C" __device__ int cd(void) {return 12;}
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// CHECK-DEVICE: ret i32 12
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// CHECK-HOST-LABEL: define i32 @ch()
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extern "C" __host__ int ch(void) {return 13;}
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// CHECK-HOST: ret i32 13
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// CHECK-BOTH-LABEL: define i32 @chd()
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extern "C" __host__ __device__ int chd(void) {return 14;}
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// CHECK-BOTH: ret i32 14
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// HD functions are sometimes allowed to call H or D functions -- this
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// is an artifact of the source-to-source splitting performed by nvcc
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// that we need to mimic. During device mode compilation in nvcc, host
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// functions aren't present at all, so don't participate in
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// overloading. But in clang, H and D functions are present in both
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// compilation modes. Clang normally uses the target attribute as a
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// tiebreaker between overloads with otherwise identical priority, but
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// in order to match nvcc's behavior, we sometimes need to wholly
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// discard overloads that would not be present during compilation
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// under nvcc.
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template <typename T> T template_vs_function(T arg) { return 15; }
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__device__ float template_vs_function(float arg) { return 16; }
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// Here we expect to call the templated function during host
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// compilation, even if -fcuda-disable-target-call-checks is passed,
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// and even though C++ overload rules prefer the non-templated
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// function.
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// CHECK-BOTH-LABEL: define void @_Z5hd_tfv()
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__host__ __device__ void hd_tf(void) {
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template_vs_function(1.0f);
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// CHECK-HOST: call float @_Z20template_vs_functionIfET_S0_(float
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// CHECK-DEVICE: call float @_Z20template_vs_functionf(float
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template_vs_function(2.0);
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// CHECK-HOST: call double @_Z20template_vs_functionIdET_S0_(double
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// CHECK-DEVICE: call float @_Z20template_vs_functionf(float
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}
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// Calls from __host__ and __device__ functions should always call the
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// overloaded function that matches their mode.
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// CHECK-HOST-LABEL: define void @_Z4h_tfv()
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__host__ void h_tf() {
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template_vs_function(1.0f);
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// CHECK-HOST: call float @_Z20template_vs_functionIfET_S0_(float
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template_vs_function(2.0);
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// CHECK-HOST: call double @_Z20template_vs_functionIdET_S0_(double
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}
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// CHECK-DEVICE-LABEL: define void @_Z4d_tfv()
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__device__ void d_tf() {
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template_vs_function(1.0f);
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// CHECK-DEVICE: call float @_Z20template_vs_functionf(float
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template_vs_function(2.0);
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// CHECK-DEVICE: call float @_Z20template_vs_functionf(float
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}
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// In case we have a mix of HD and H-only or D-only candidates in the
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// overload set, normal C++ overload resolution rules apply first.
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template <typename T> T template_vs_hd_function(T arg) { return 15; }
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__host__ __device__ float template_vs_hd_function(float arg) { return 16; }
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// CHECK-BOTH-LABEL: define void @_Z7hd_thdfv()
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__host__ __device__ void hd_thdf() {
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template_vs_hd_function(1.0f);
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// CHECK-HOST: call float @_Z23template_vs_hd_functionf(float
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// CHECK-DEVICE: call float @_Z23template_vs_hd_functionf(float
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template_vs_hd_function(1);
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// CHECK-HOST: call i32 @_Z23template_vs_hd_functionIiET_S0_(i32
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// CHECK-DEVICE-STRICT: call float @_Z23template_vs_hd_functionf(float
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// CHECK-DEVICE-NC: call i32 @_Z23template_vs_hd_functionIiET_S0_(i32
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}
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// CHECK-HOST-LABEL: define void @_Z6h_thdfv()
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__host__ void h_thdf() {
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template_vs_hd_function(1.0f);
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// CHECK-HOST: call float @_Z23template_vs_hd_functionf(float
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template_vs_hd_function(1);
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// CHECK-HOST: call i32 @_Z23template_vs_hd_functionIiET_S0_(i32
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}
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// CHECK-DEVICE-LABEL: define void @_Z6d_thdfv()
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__device__ void d_thdf() {
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template_vs_hd_function(1.0f);
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// CHECK-DEVICE: call float @_Z23template_vs_hd_functionf(float
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template_vs_hd_function(1);
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// Host-only function template is not callable with strict call checks,
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// so for device side HD function will be the only choice.
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// CHECK-DEVICE: call float @_Z23template_vs_hd_functionf(float
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}
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// Check that overloads still work the same way on both host and
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// device side when the overload set contains only functions from one
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// side of compilation.
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__device__ float device_only_function(int arg) { return 17; }
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__device__ float device_only_function(float arg) { return 18; }
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__host__ float host_only_function(int arg) { return 19; }
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__host__ float host_only_function(float arg) { return 20; }
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// CHECK-BOTH-LABEL: define void @_Z6hd_dofv()
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__host__ __device__ void hd_dof() {
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#ifdef NOCHECKS
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device_only_function(1.0f);
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// CHECK-BOTH-NC: call float @_Z20device_only_functionf(float
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device_only_function(1);
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// CHECK-BOTH-NC: call float @_Z20device_only_functioni(i32
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host_only_function(1.0f);
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// CHECK-BOTH-NC: call float @_Z18host_only_functionf(float
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host_only_function(1);
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// CHECK-BOTH-NC: call float @_Z18host_only_functioni(i32
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#endif
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}
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// CHECK-HOST-LABEL: define void @_Z5hostfv()
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__host__ void hostf(void) {
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fp_t hp = h; // CHECK-HOST: store {{.*}} @_Z1hv, {{.*}} %hp,
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fp_t chp = ch; // CHECK-HOST: store {{.*}} @ch, {{.*}} %chp,
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fp_t dhp = dh; // CHECK-HOST: store {{.*}} @_Z2dhv, {{.*}} %dhp,
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fp_t cdhp = cdh; // CHECK-HOST: store {{.*}} @cdh, {{.*}} %cdhp,
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fp_t hdp = hd; // CHECK-HOST: store {{.*}} @_Z2hdv, {{.*}} %hdp,
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fp_t chdp = chd; // CHECK-HOST: store {{.*}} @chd, {{.*}} %chdp,
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gp_t gp = g; // CHECK-HOST: store {{.*}} @_Z1gv, {{.*}} %gp,
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h(); // CHECK-HOST: call i32 @_Z1hv()
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ch(); // CHECK-HOST: call i32 @ch()
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dh(); // CHECK-HOST: call i32 @_Z2dhv()
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cdh(); // CHECK-HOST: call i32 @cdh()
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g<<<0,0>>>(); // CHECK-HOST: call void @_Z1gv()
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}
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// CHECK-DEVICE-LABEL: define void @_Z7devicefv()
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__device__ void devicef(void) {
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fp_t dp = d; // CHECK-DEVICE: store {{.*}} @_Z1dv, {{.*}} %dp,
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fp_t cdp = cd; // CHECK-DEVICE: store {{.*}} @cd, {{.*}} %cdp,
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fp_t dhp = dh; // CHECK-DEVICE: store {{.*}} @_Z2dhv, {{.*}} %dhp,
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fp_t cdhp = cdh; // CHECK-DEVICE: store {{.*}} @cdh, {{.*}} %cdhp,
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fp_t hdp = hd; // CHECK-DEVICE: store {{.*}} @_Z2hdv, {{.*}} %hdp,
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fp_t chdp = chd; // CHECK-DEVICE: store {{.*}} @chd, {{.*}} %chdp,
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d(); // CHECK-DEVICE: call i32 @_Z1dv()
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cd(); // CHECK-DEVICE: call i32 @cd()
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dh(); // CHECK-DEVICE: call i32 @_Z2dhv()
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cdh(); // CHECK-DEVICE: call i32 @cdh()
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}
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// CHECK-BOTH-LABEL: define void @_Z11hostdevicefv()
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__host__ __device__ void hostdevicef(void) {
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#if defined (NOCHECKS)
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fp_t dp = d; // CHECK-BOTH-NC: store {{.*}} @_Z1dv, {{.*}} %dp,
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fp_t cdp = cd; // CHECK-BOTH-NC: store {{.*}} @cd, {{.*}} %cdp,
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fp_t hp = h; // CHECK-BOTH-NC: store {{.*}} @_Z1hv, {{.*}} %hp,
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fp_t chp = ch; // CHECK-BOTH-NC: store {{.*}} @ch, {{.*}} %chp,
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#endif
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fp_t dhp = dh; // CHECK-BOTH: store {{.*}} @_Z2dhv, {{.*}} %dhp,
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fp_t cdhp = cdh; // CHECK-BOTH: store {{.*}} @cdh, {{.*}} %cdhp,
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fp_t hdp = hd; // CHECK-BOTH: store {{.*}} @_Z2hdv, {{.*}} %hdp,
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fp_t chdp = chd; // CHECK-BOTH: store {{.*}} @chd, {{.*}} %chdp,
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#if defined (NOCHECKS) && !defined(__CUDA_ARCH__)
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gp_t gp = g; // CHECK-HOST-NC: store {{.*}} @_Z1gv, {{.*}} %gp,
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#endif
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#if defined (NOCHECKS)
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d(); // CHECK-BOTH-NC: call i32 @_Z1dv()
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cd(); // CHECK-BOTH-NC: call i32 @cd()
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h(); // CHECK-BOTH-NC: call i32 @_Z1hv()
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ch(); // CHECK-BOTH-NC: call i32 @ch()
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#endif
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dh(); // CHECK-BOTH: call i32 @_Z2dhv()
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cdh(); // CHECK-BOTH: call i32 @cdh()
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#if defined (NOCHECKS) && !defined(__CUDA_ARCH__)
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g<<<0,0>>>(); // CHECK-HOST-NC: call void @_Z1gv()
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#endif
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}
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// Test for address of overloaded function resolution in the global context.
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fp_t hp = h;
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fp_t chp = ch;
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fp_t dhp = dh;
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fp_t cdhp = cdh;
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gp_t gp = g;
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int x;
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// Check constructors/destructors for D/H functions
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struct s_cd_dh {
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__host__ s_cd_dh() { x = 11; }
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__device__ s_cd_dh() { x = 12; }
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__host__ ~s_cd_dh() { x = 21; }
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__device__ ~s_cd_dh() { x = 22; }
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};
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struct s_cd_hd {
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__host__ __device__ s_cd_hd() { x = 31; }
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__host__ __device__ ~s_cd_hd() { x = 32; }
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};
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// CHECK-BOTH: define void @_Z7wrapperv
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#if defined(__CUDA_ARCH__)
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__device__
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#else
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__host__
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#endif
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void wrapper() {
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s_cd_dh scddh;
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// CHECK-BOTH: call void @_ZN7s_cd_dhC1Ev(
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s_cd_hd scdhd;
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// CHECK-BOTH: call void @_ZN7s_cd_hdC1Ev
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// CHECK-BOTH: call void @_ZN7s_cd_hdD1Ev(
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// CHECK-BOTH: call void @_ZN7s_cd_dhD1Ev(
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}
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// CHECK-BOTH: ret void
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// Now it's time to check what's been generated for the methods we used.
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// CHECK-BOTH: define linkonce_odr void @_ZN7s_cd_dhC2Ev(
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// CHECK-HOST: store i32 11,
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// CHECK-DEVICE: store i32 12,
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// CHECK-BOTH: ret void
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// CHECK-BOTH: define linkonce_odr void @_ZN7s_cd_hdC2Ev(
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// CHECK-BOTH: store i32 31,
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// CHECK-BOTH: ret void
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// CHECK-BOTH: define linkonce_odr void @_ZN7s_cd_hdD2Ev(
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// CHECK-BOTH: store i32 32,
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// CHECK-BOTH: ret void
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// CHECK-BOTH: define linkonce_odr void @_ZN7s_cd_dhD2Ev(
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// CHECK-HOST: store i32 21,
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// CHECK-DEVICE: store i32 22,
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// CHECK-BOTH: ret void
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