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Conversion performed using the script at: https://gist.github.com/nikic/98357b71fd67756b0f064c9517b62a34 These are only tests where no manual fixup was required.
395 lines
15 KiB
C
395 lines
15 KiB
C
// RUN: %clang_cc1 -triple csky -target-feature +fpuv2_sf -target-feature +fpuv2_df -target-feature +hard-float-abi -target-feature +hard-float -emit-llvm %s -o - | FileCheck %s
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#include <stdint.h>
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// Verify that the tracking of used GPRs and FPRs works correctly by checking
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// that small integers are sign/zero extended when passed in registers.
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// Doubles are passed in FPRs, so argument 'i' will be passed zero-extended
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// because it will be passed in a GPR.
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// CHECK: define{{.*}} void @f_fpr_tracking(double noundef %a, double noundef %b, double noundef %c, double noundef %d, i8 noundef zeroext %i)
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void f_fpr_tracking(double a, double b, double c, double d, uint8_t i) {}
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// A struct containing just one floating-point real is passed as though it
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// were a standalone floating-point real.
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struct double_s {
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double f;
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};
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// CHECK: define{{.*}} void @f_double_s_arg(double %a.coerce)
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void f_double_s_arg(struct double_s a) {}
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// CHECK: define{{.*}} double @f_ret_double_s()
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struct double_s f_ret_double_s(void) {
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return (struct double_s){1.0};
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}
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// A struct containing a double and any number of zero-width bitfields is
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// passed as though it were a standalone floating-point real.
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struct zbf_double_s {
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int : 0;
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double f;
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};
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struct zbf_double_zbf_s {
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int : 0;
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double f;
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int : 0;
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};
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// CHECK: define{{.*}} void @f_zbf_double_s_arg(double %a.coerce)
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void f_zbf_double_s_arg(struct zbf_double_s a) {}
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// CHECK: define{{.*}} double @f_ret_zbf_double_s()
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struct zbf_double_s f_ret_zbf_double_s(void) {
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return (struct zbf_double_s){1.0};
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}
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// CHECK: define{{.*}} void @f_zbf_double_zbf_s_arg(double %a.coerce)
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void f_zbf_double_zbf_s_arg(struct zbf_double_zbf_s a) {}
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// CHECK: define{{.*}} double @f_ret_zbf_double_zbf_s()
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struct zbf_double_zbf_s f_ret_zbf_double_zbf_s(void) {
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return (struct zbf_double_zbf_s){1.0};
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}
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// For argument type, the first 4*XLen parts of aggregate will be passed
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// in registers, and the rest will be passed in stack.
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// So we can coerce to integers directly and let backend handle it correctly.
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// For return type, aggregate which <= 2*XLen will be returned in registers.
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// Otherwise, aggregate will be returned indirectly.
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struct double_double_s {
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double f;
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double g;
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};
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struct double_float_s {
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double f;
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float g;
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};
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// CHECK: define{{.*}} void @f_double_double_s_arg([4 x i32] %a.coerce)
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void f_double_double_s_arg(struct double_double_s a) {}
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// CHECK: define{{.*}} void @f_ret_double_double_s(ptr noalias sret(%struct.double_double_s) align 4 %agg.result)
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struct double_double_s f_ret_double_double_s(void) {
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return (struct double_double_s){1.0, 2.0};
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}
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// CHECK: define{{.*}} void @f_double_float_s_arg([3 x i32] %a.coerce)
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void f_double_float_s_arg(struct double_float_s a) {}
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// CHECK: define{{.*}} void @f_ret_double_float_s(ptr noalias sret(%struct.double_float_s) align 4 %agg.result)
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struct double_float_s f_ret_double_float_s(void) {
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return (struct double_float_s){1.0, 2.0};
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}
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// CHECK: define{{.*}} void @f_double_double_s_arg_insufficient_fprs(float noundef %a, double noundef %b, double noundef %c, double noundef %d, double noundef %e, double noundef %f, double noundef %g, double noundef %i, [4 x i32] %h.coerce)
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void f_double_double_s_arg_insufficient_fprs(float a, double b, double c, double d,
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double e, double f, double g, double i, struct double_double_s h) {}
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struct double_int8_s {
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double f;
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int8_t i;
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};
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struct double_uint8_s {
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double f;
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uint8_t i;
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};
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struct double_int32_s {
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double f;
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int32_t i;
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};
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struct double_int64_s {
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double f;
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int64_t i;
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};
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struct double_int64bf_s {
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double f;
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int64_t i : 32;
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};
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struct double_int8_zbf_s {
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double f;
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int8_t i;
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int : 0;
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};
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// CHECK: define{{.*}} @f_double_int8_s_arg([3 x i32] %a.coerce)
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void f_double_int8_s_arg(struct double_int8_s a) {}
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// CHECK: define{{.*}} void @f_ret_double_int8_s(ptr noalias sret(%struct.double_int8_s) align 4 %agg.result)
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struct double_int8_s f_ret_double_int8_s(void) {
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return (struct double_int8_s){1.0, 2};
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}
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// CHECK: define{{.*}} void @f_double_uint8_s_arg([3 x i32] %a.coerce)
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void f_double_uint8_s_arg(struct double_uint8_s a) {}
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// CHECK: define{{.*}} void @f_ret_double_uint8_s(ptr noalias sret(%struct.double_uint8_s) align 4 %agg.result)
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struct double_uint8_s f_ret_double_uint8_s(void) {
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return (struct double_uint8_s){1.0, 2};
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}
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// CHECK: define{{.*}} void @f_double_int32_s_arg([3 x i32] %a.coerce)
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void f_double_int32_s_arg(struct double_int32_s a) {}
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// CHECK: define{{.*}} void @f_ret_double_int32_s(ptr noalias sret(%struct.double_int32_s) align 4 %agg.result)
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struct double_int32_s f_ret_double_int32_s(void) {
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return (struct double_int32_s){1.0, 2};
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}
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// CHECK: define{{.*}} void @f_double_int64_s_arg([4 x i32] %a.coerce)
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void f_double_int64_s_arg(struct double_int64_s a) {}
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// CHECK: define{{.*}} void @f_ret_double_int64_s(ptr noalias sret(%struct.double_int64_s) align 4 %agg.result)
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struct double_int64_s f_ret_double_int64_s(void) {
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return (struct double_int64_s){1.0, 2};
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}
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// CHECK: define{{.*}} void @f_double_int64bf_s_arg([3 x i32] %a.coerce)
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void f_double_int64bf_s_arg(struct double_int64bf_s a) {}
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// CHECK: define{{.*}} void @f_ret_double_int64bf_s(ptr noalias sret(%struct.double_int64bf_s) align 4 %agg.result)
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struct double_int64bf_s f_ret_double_int64bf_s(void) {
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return (struct double_int64bf_s){1.0, 2};
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}
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// CHECK: define{{.*}} void @f_double_int8_zbf_s([3 x i32] %a.coerce)
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void f_double_int8_zbf_s(struct double_int8_zbf_s a) {}
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// CHECK: define{{.*}} void @f_ret_double_int8_zbf_s(ptr noalias sret(%struct.double_int8_zbf_s) align 4 %agg.result)
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struct double_int8_zbf_s f_ret_double_int8_zbf_s(void) {
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return (struct double_int8_zbf_s){1.0, 2};
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}
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// CHECK: define{{.*}} void @f_double_int8_s_arg_insufficient_gprs(i32 noundef %a, i32 noundef %b, i32 noundef %c, i32 noundef %d, i32 noundef %e, i32 noundef %f, i32 noundef %g, i32 noundef %h, [3 x i32] %i.coerce)
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void f_double_int8_s_arg_insufficient_gprs(int a, int b, int c, int d, int e,
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int f, int g, int h, struct double_int8_s i) {}
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// CHECK: define{{.*}} void @f_struct_double_int8_insufficient_fprs(float noundef %a, double noundef %b, double noundef %c, double noundef %d, double noundef %e, double noundef %f, double noundef %g, double noundef %h, [3 x i32] %i.coerce)
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void f_struct_double_int8_insufficient_fprs(float a, double b, double c, double d,
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double e, double f, double g, double h, struct double_int8_s i) {}
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// Complex floating-point values are special in passing argument,
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// and it's not same as structs containing a single complex.
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// Complex floating-point value should be passed in two consecutive fprs.
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// But the return process is same as struct.
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// CHECK: define{{.*}} void @f_doublecomplex(double noundef %a.coerce0, double noundef %a.coerce1)
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void f_doublecomplex(double __complex__ a) {}
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// CHECK: define{{.*}} void @f_ret_doublecomplex(ptr noalias sret({ double, double }) align 4 %agg.result)
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double __complex__ f_ret_doublecomplex(void) {
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return 1.0;
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}
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struct doublecomplex_s {
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double __complex__ c;
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};
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// CHECK: define{{.*}} void @f_doublecomplex_s_arg([4 x i32] %a.coerce)
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void f_doublecomplex_s_arg(struct doublecomplex_s a) {}
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// CHECK: define{{.*}} void @f_ret_doublecomplex_s(ptr noalias sret(%struct.doublecomplex_s) align 4 %agg.result)
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struct doublecomplex_s f_ret_doublecomplex_s(void) {
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return (struct doublecomplex_s){1.0};
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}
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// Test single or two-element structs that need flattening. e.g. those
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// containing nested structs, doubles in small arrays, zero-length structs etc.
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struct doublearr1_s {
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double a[1];
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};
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// CHECK: define{{.*}} void @f_doublearr1_s_arg(double %a.coerce)
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void f_doublearr1_s_arg(struct doublearr1_s a) {}
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// CHECK: define{{.*}} double @f_ret_doublearr1_s()
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struct doublearr1_s f_ret_doublearr1_s(void) {
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return (struct doublearr1_s){{1.0}};
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}
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struct doublearr2_s {
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double a[2];
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};
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// CHECK: define{{.*}} void @f_doublearr2_s_arg([4 x i32] %a.coerce)
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void f_doublearr2_s_arg(struct doublearr2_s a) {}
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// CHECK: define{{.*}} void @f_ret_doublearr2_s(ptr noalias sret(%struct.doublearr2_s) align 4 %agg.result)
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struct doublearr2_s f_ret_doublearr2_s(void) {
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return (struct doublearr2_s){{1.0, 2.0}};
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}
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struct doublearr2_tricky1_s {
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struct {
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double f[1];
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} g[2];
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};
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// CHECK: define{{.*}} void @f_doublearr2_tricky1_s_arg([4 x i32] %a.coerce)
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void f_doublearr2_tricky1_s_arg(struct doublearr2_tricky1_s a) {}
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// CHECK: define{{.*}} void @f_ret_doublearr2_tricky1_s(ptr noalias sret(%struct.doublearr2_tricky1_s) align 4 %agg.result)
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struct doublearr2_tricky1_s f_ret_doublearr2_tricky1_s(void) {
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return (struct doublearr2_tricky1_s){{{{1.0}}, {{2.0}}}};
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}
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struct doublearr2_tricky2_s {
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struct {};
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struct {
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double f[1];
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} g[2];
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};
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// CHECK: define{{.*}} void @f_doublearr2_tricky2_s_arg([4 x i32] %a.coerce)
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void f_doublearr2_tricky2_s_arg(struct doublearr2_tricky2_s a) {}
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// CHECK: define{{.*}} void @f_ret_doublearr2_tricky2_s(ptr noalias sret(%struct.doublearr2_tricky2_s) align 4 %agg.result)
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struct doublearr2_tricky2_s f_ret_doublearr2_tricky2_s(void) {
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return (struct doublearr2_tricky2_s){{}, {{{1.0}}, {{2.0}}}};
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}
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struct doublearr2_tricky3_s {
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union {};
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struct {
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double f[1];
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} g[2];
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};
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// CHECK: define{{.*}} void @f_doublearr2_tricky3_s_arg([4 x i32] %a.coerce)
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void f_doublearr2_tricky3_s_arg(struct doublearr2_tricky3_s a) {}
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// CHECK: define{{.*}} void @f_ret_doublearr2_tricky3_s(ptr noalias sret(%struct.doublearr2_tricky3_s) align 4 %agg.result)
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struct doublearr2_tricky3_s f_ret_doublearr2_tricky3_s(void) {
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return (struct doublearr2_tricky3_s){{}, {{{1.0}}, {{2.0}}}};
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}
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struct doublearr2_tricky4_s {
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union {};
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struct {
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struct {};
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double f[1];
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} g[2];
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};
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// CHECK: define{{.*}} void @f_doublearr2_tricky4_s_arg([4 x i32] %a.coerce)
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void f_doublearr2_tricky4_s_arg(struct doublearr2_tricky4_s a) {}
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// CHECK: define{{.*}} void @f_ret_doublearr2_tricky4_s(ptr noalias sret(%struct.doublearr2_tricky4_s) align 4 %agg.result)
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struct doublearr2_tricky4_s f_ret_doublearr2_tricky4_s(void) {
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return (struct doublearr2_tricky4_s){{}, {{{}, {1.0}}, {{}, {2.0}}}};
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}
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struct int_double_int_s {
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int a;
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double b;
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int c;
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};
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// CHECK: define{{.*}} void @f_int_double_int_s_arg([4 x i32] %a.coerce)
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void f_int_double_int_s_arg(struct int_double_int_s a) {}
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// CHECK: define{{.*}} void @f_ret_int_double_int_s(ptr noalias sret(%struct.int_double_int_s) align 4 %agg.result)
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struct int_double_int_s f_ret_int_double_int_s(void) {
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return (struct int_double_int_s){1, 2.0, 3};
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}
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struct int64_double_s {
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int64_t a;
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double b;
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};
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// CHECK: define{{.*}} void @f_int64_double_s_arg([4 x i32] %a.coerce)
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void f_int64_double_s_arg(struct int64_double_s a) {}
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// CHECK: define{{.*}} void @f_ret_int64_double_s(ptr noalias sret(%struct.int64_double_s) align 4 %agg.result)
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struct int64_double_s f_ret_int64_double_s(void) {
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return (struct int64_double_s){1, 2.0};
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}
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struct char_char_double_s {
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char a;
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char b;
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double c;
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};
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// CHECK-LABEL: define{{.*}} void @f_char_char_double_s_arg([3 x i32] %a.coerce)
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void f_char_char_double_s_arg(struct char_char_double_s a) {}
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// CHECK: define{{.*}} void @f_ret_char_char_double_s(ptr noalias sret(%struct.char_char_double_s) align 4 %agg.result)
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struct char_char_double_s f_ret_char_char_double_s(void) {
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return (struct char_char_double_s){1, 2, 3.0};
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}
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// A union containing just one floating-point real can not be passed as though it
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// were a standalone floating-point real.
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union double_u {
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double a;
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};
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// CHECK: define{{.*}} void @f_double_u_arg([2 x i32] %a.coerce)
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void f_double_u_arg(union double_u a) {}
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// CHECK: define{{.*}} [2 x i32] @f_ret_double_u()
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union double_u f_ret_double_u(void) {
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return (union double_u){1.0};
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}
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// CHECK: define{{.*}} void @f_ret_double_int32_s_double_int32_s_just_sufficient_gprs(ptr noalias sret(%struct.double_int32_s) align 4 %agg.result, i32 noundef %a, i32 noundef %b, i32 noundef %c, i32 noundef %d, i32 noundef %e, i32 noundef %f, i32 noundef %g, [3 x i32] %h.coerce)
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struct double_int32_s f_ret_double_int32_s_double_int32_s_just_sufficient_gprs(
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int a, int b, int c, int d, int e, int f, int g, struct double_int32_s h) {
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return (struct double_int32_s){1.0, 2};
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}
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// CHECK: define{{.*}} void @f_ret_double_double_s_double_int32_s_just_sufficient_gprs(ptr noalias sret(%struct.double_double_s) align 4 %agg.result, i32 noundef %a, i32 noundef %b, i32 noundef %c, i32 noundef %d, i32 noundef %e, i32 noundef %f, i32 noundef %g, [3 x i32] %h.coerce)
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struct double_double_s f_ret_double_double_s_double_int32_s_just_sufficient_gprs(
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int a, int b, int c, int d, int e, int f, int g, struct double_int32_s h) {
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return (struct double_double_s){1.0, 2.0};
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}
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// CHECK: define{{.*}} void @f_ret_doublecomplex_double_int32_s_just_sufficient_gprs(ptr noalias sret({ double, double }) align 4 %agg.result, i32 noundef %a, i32 noundef %b, i32 noundef %c, i32 noundef %d, i32 noundef %e, i32 noundef %f, i32 noundef %g, [3 x i32] %h.coerce)
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double __complex__ f_ret_doublecomplex_double_int32_s_just_sufficient_gprs(
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int a, int b, int c, int d, int e, int f, int g, struct double_int32_s h) {
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return 1.0;
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}
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struct tiny {
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uint8_t a, b, c, d;
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};
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struct small {
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int32_t a, *b;
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};
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struct small_aligned {
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int64_t a;
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};
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struct large {
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int32_t a, b, c, d;
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};
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// Ensure that scalars passed on the stack are still determined correctly in
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// the presence of large return values that consume a register due to the need
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// to pass a pointer.
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// CHECK-LABEL: define{{.*}} void @f_scalar_stack_2(ptr noalias sret(%struct.large) align 4 %agg.result, float noundef %a, i64 noundef %b, double noundef %c, double noundef %d, i8 noundef zeroext %e, i8 noundef signext %f, i8 noundef zeroext %g)
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struct large f_scalar_stack_2(float a, int64_t b, double c, long double d,
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uint8_t e, int8_t f, uint8_t g) {
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return (struct large){a, e, f, g};
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}
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// Aggregates and >=XLen scalars passed on the stack should be lowered just as
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// they would be if passed via registers.
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// CHECK-LABEL: define{{.*}} void @f_scalar_stack_3(double noundef %a, i64 noundef %b, double noundef %c, i64 noundef %d, i32 noundef %e, i64 noundef %f, float noundef %g, double noundef %h, double noundef %i)
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void f_scalar_stack_3(double a, int64_t b, double c, int64_t d, int e,
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int64_t f, float g, double h, long double i) {}
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// CHECK-LABEL: define{{.*}} void @f_agg_stack(double noundef %a, i64 noundef %b, double noundef %c, i64 noundef %d, i32 %e.coerce, [2 x i32] %f.coerce, i64 %g.coerce, [4 x i32] %h.coerce)
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void f_agg_stack(double a, int64_t b, double c, int64_t d, struct tiny e,
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struct small f, struct small_aligned g, struct large h) {}
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