1 // RUN: %clang_cc1 -triple riscv32 -target-feature +f -target-abi ilp32f -emit-llvm %s -o - \
2 // RUN:     | FileCheck %s
3 // RUN: %clang_cc1 -triple riscv32 -target-feature +d -target-abi ilp32d -emit-llvm %s -o - \
4 // RUN:     | FileCheck %s
5 
6 #include <stdint.h>
7 
8 // Verify that the tracking of used GPRs and FPRs works correctly by checking
9 // that small integers are sign/zero extended when passed in registers.
10 
11 // Floats are passed in FPRs, so argument 'i' will be passed zero-extended
12 // because it will be passed in a GPR.
13 
14 // CHECK: define{{.*}} void @f_fpr_tracking(float %a, float %b, float %c, float %d, float %e, float %f, float %g, float %h, i8 zeroext %i)
f_fpr_tracking(float a,float b,float c,float d,float e,float f,float g,float h,uint8_t i)15 void f_fpr_tracking(float a, float b, float c, float d, float e, float f,
16                     float g, float h, uint8_t i) {}
17 
18 // Check that fp, fp+fp, and int+fp structs are lowered correctly. These will
19 // be passed in FPR, FPR+FPR, or GPR+FPR regs if sufficient registers are
20 // available the widths are <= XLEN and FLEN, and should be expanded to
21 // separate arguments in IR. They are passed by the same rules for returns,
22 // but will be lowered to simple two-element structs if necessary (as LLVM IR
23 // functions cannot return multiple values).
24 
25 // A struct containing just one floating-point real is passed as though it
26 // were a standalone floating-point real.
27 
28 struct float_s { float f; };
29 
30 // CHECK: define{{.*}} void @f_float_s_arg(float %0)
f_float_s_arg(struct float_s a)31 void f_float_s_arg(struct float_s a) {}
32 
33 // CHECK: define{{.*}} float @f_ret_float_s()
f_ret_float_s()34 struct float_s f_ret_float_s() {
35   return (struct float_s){1.0};
36 }
37 
38 // A struct containing a float and any number of zero-width bitfields is
39 // passed as though it were a standalone floating-point real.
40 
41 struct zbf_float_s { int : 0; float f; };
42 struct zbf_float_zbf_s { int : 0; float f; int : 0; };
43 
44 // CHECK: define{{.*}} void @f_zbf_float_s_arg(float %0)
f_zbf_float_s_arg(struct zbf_float_s a)45 void f_zbf_float_s_arg(struct zbf_float_s a) {}
46 
47 // CHECK: define{{.*}} float @f_ret_zbf_float_s()
f_ret_zbf_float_s()48 struct zbf_float_s f_ret_zbf_float_s() {
49   return (struct zbf_float_s){1.0};
50 }
51 
52 // CHECK: define{{.*}} void @f_zbf_float_zbf_s_arg(float %0)
f_zbf_float_zbf_s_arg(struct zbf_float_zbf_s a)53 void f_zbf_float_zbf_s_arg(struct zbf_float_zbf_s a) {}
54 
55 // CHECK: define{{.*}} float @f_ret_zbf_float_zbf_s()
f_ret_zbf_float_zbf_s()56 struct zbf_float_zbf_s f_ret_zbf_float_zbf_s() {
57   return (struct zbf_float_zbf_s){1.0};
58 }
59 
60 // Check that structs containing two float values (FLEN <= width) are expanded
61 // provided sufficient FPRs are available.
62 
63 struct float_float_s { float f; float g; };
64 
65 // CHECK: define{{.*}} void @f_float_float_s_arg(float %0, float %1)
f_float_float_s_arg(struct float_float_s a)66 void f_float_float_s_arg(struct float_float_s a) {}
67 
68 // CHECK: define{{.*}} { float, float } @f_ret_float_float_s()
f_ret_float_float_s()69 struct float_float_s f_ret_float_float_s() {
70   return (struct float_float_s){1.0, 2.0};
71 }
72 
73 // CHECK: define{{.*}} void @f_float_float_s_arg_insufficient_fprs(float %a, float %b, float %c, float %d, float %e, float %f, float %g, [2 x i32] %h.coerce)
f_float_float_s_arg_insufficient_fprs(float a,float b,float c,float d,float e,float f,float g,struct float_float_s h)74 void f_float_float_s_arg_insufficient_fprs(float a, float b, float c, float d,
75     float e, float f, float g, struct float_float_s h) {}
76 
77 // Check that structs containing int+float values are expanded, provided
78 // sufficient FPRs and GPRs are available. The integer components are neither
79 // sign or zero-extended.
80 
81 struct float_int8_s { float f; int8_t i; };
82 struct float_uint8_s { float f; uint8_t i; };
83 struct float_int32_s { float f; int32_t i; };
84 struct float_int64_s { float f; int64_t i; };
85 struct float_int64bf_s { float f; int64_t i : 32; };
86 struct float_int8_zbf_s { float f; int8_t i; int : 0; };
87 
88 // CHECK: define{{.*}} void @f_float_int8_s_arg(float %0, i8 %1)
f_float_int8_s_arg(struct float_int8_s a)89 void f_float_int8_s_arg(struct float_int8_s a) {}
90 
91 // CHECK: define{{.*}} { float, i8 } @f_ret_float_int8_s()
f_ret_float_int8_s()92 struct float_int8_s f_ret_float_int8_s() {
93   return (struct float_int8_s){1.0, 2};
94 }
95 
96 // CHECK: define{{.*}} void @f_float_uint8_s_arg(float %0, i8 %1)
f_float_uint8_s_arg(struct float_uint8_s a)97 void f_float_uint8_s_arg(struct float_uint8_s a) {}
98 
99 // CHECK: define{{.*}} { float, i8 } @f_ret_float_uint8_s()
f_ret_float_uint8_s()100 struct float_uint8_s f_ret_float_uint8_s() {
101   return (struct float_uint8_s){1.0, 2};
102 }
103 
104 // CHECK: define{{.*}} void @f_float_int32_s_arg(float %0, i32 %1)
f_float_int32_s_arg(struct float_int32_s a)105 void f_float_int32_s_arg(struct float_int32_s a) {}
106 
107 // CHECK: define{{.*}} { float, i32 } @f_ret_float_int32_s()
f_ret_float_int32_s()108 struct float_int32_s f_ret_float_int32_s() {
109   return (struct float_int32_s){1.0, 2};
110 }
111 
112 // CHECK: define{{.*}} void @f_float_int64_s_arg(%struct.float_int64_s* %a)
f_float_int64_s_arg(struct float_int64_s a)113 void f_float_int64_s_arg(struct float_int64_s a) {}
114 
115 // CHECK: define{{.*}} void @f_ret_float_int64_s(%struct.float_int64_s* noalias sret(%struct.float_int64_s) align 8 %agg.result)
f_ret_float_int64_s()116 struct float_int64_s f_ret_float_int64_s() {
117   return (struct float_int64_s){1.0, 2};
118 }
119 
120 // CHECK: define{{.*}} void @f_float_int64bf_s_arg(float %0, i32 %1)
f_float_int64bf_s_arg(struct float_int64bf_s a)121 void f_float_int64bf_s_arg(struct float_int64bf_s a) {}
122 
123 // CHECK: define{{.*}} { float, i32 } @f_ret_float_int64bf_s()
f_ret_float_int64bf_s()124 struct float_int64bf_s f_ret_float_int64bf_s() {
125   return (struct float_int64bf_s){1.0, 2};
126 }
127 
128 // The zero-width bitfield means the struct can't be passed according to the
129 // floating point calling convention.
130 
131 // CHECK: define{{.*}} void @f_float_int8_zbf_s(float %0, i8 %1)
f_float_int8_zbf_s(struct float_int8_zbf_s a)132 void f_float_int8_zbf_s(struct float_int8_zbf_s a) {}
133 
134 // CHECK: define{{.*}} { float, i8 } @f_ret_float_int8_zbf_s()
f_ret_float_int8_zbf_s()135 struct float_int8_zbf_s f_ret_float_int8_zbf_s() {
136   return (struct float_int8_zbf_s){1.0, 2};
137 }
138 
139 // CHECK: define{{.*}} void @f_float_int8_s_arg_insufficient_gprs(i32 %a, i32 %b, i32 %c, i32 %d, i32 %e, i32 %f, i32 %g, i32 %h, [2 x i32] %i.coerce)
f_float_int8_s_arg_insufficient_gprs(int a,int b,int c,int d,int e,int f,int g,int h,struct float_int8_s i)140 void f_float_int8_s_arg_insufficient_gprs(int a, int b, int c, int d, int e,
141                                           int f, int g, int h, struct float_int8_s i) {}
142 
143 // CHECK: define{{.*}} void @f_struct_float_int8_insufficient_fprs(float %a, float %b, float %c, float %d, float %e, float %f, float %g, float %h, [2 x i32] %i.coerce)
f_struct_float_int8_insufficient_fprs(float a,float b,float c,float d,float e,float f,float g,float h,struct float_int8_s i)144 void f_struct_float_int8_insufficient_fprs(float a, float b, float c, float d,
145                                            float e, float f, float g, float h, struct float_int8_s i) {}
146 
147 // Complex floating-point values or structs containing a single complex
148 // floating-point value should be passed as if it were an fp+fp struct.
149 
150 // CHECK: define{{.*}} void @f_floatcomplex(float %a.coerce0, float %a.coerce1)
f_floatcomplex(float __complex__ a)151 void f_floatcomplex(float __complex__ a) {}
152 
153 // CHECK: define{{.*}} { float, float } @f_ret_floatcomplex()
f_ret_floatcomplex()154 float __complex__ f_ret_floatcomplex() {
155   return 1.0;
156 }
157 
158 struct floatcomplex_s { float __complex__ c; };
159 
160 // CHECK: define{{.*}} void @f_floatcomplex_s_arg(float %0, float %1)
f_floatcomplex_s_arg(struct floatcomplex_s a)161 void f_floatcomplex_s_arg(struct floatcomplex_s a) {}
162 
163 // CHECK: define{{.*}} { float, float } @f_ret_floatcomplex_s()
f_ret_floatcomplex_s()164 struct floatcomplex_s f_ret_floatcomplex_s() {
165   return (struct floatcomplex_s){1.0};
166 }
167 
168 // Test single or two-element structs that need flattening. e.g. those
169 // containing nested structs, floats in small arrays, zero-length structs etc.
170 
171 struct floatarr1_s { float a[1]; };
172 
173 // CHECK: define{{.*}} void @f_floatarr1_s_arg(float %0)
f_floatarr1_s_arg(struct floatarr1_s a)174 void f_floatarr1_s_arg(struct floatarr1_s a) {}
175 
176 // CHECK: define{{.*}} float @f_ret_floatarr1_s()
f_ret_floatarr1_s()177 struct floatarr1_s f_ret_floatarr1_s() {
178   return (struct floatarr1_s){{1.0}};
179 }
180 
181 struct floatarr2_s { float a[2]; };
182 
183 // CHECK: define{{.*}} void @f_floatarr2_s_arg(float %0, float %1)
f_floatarr2_s_arg(struct floatarr2_s a)184 void f_floatarr2_s_arg(struct floatarr2_s a) {}
185 
186 // CHECK: define{{.*}} { float, float } @f_ret_floatarr2_s()
f_ret_floatarr2_s()187 struct floatarr2_s f_ret_floatarr2_s() {
188   return (struct floatarr2_s){{1.0, 2.0}};
189 }
190 
191 struct floatarr2_tricky1_s { struct { float f[1]; } g[2]; };
192 
193 // CHECK: define{{.*}} void @f_floatarr2_tricky1_s_arg(float %0, float %1)
f_floatarr2_tricky1_s_arg(struct floatarr2_tricky1_s a)194 void f_floatarr2_tricky1_s_arg(struct floatarr2_tricky1_s a) {}
195 
196 // CHECK: define{{.*}} { float, float } @f_ret_floatarr2_tricky1_s()
f_ret_floatarr2_tricky1_s()197 struct floatarr2_tricky1_s f_ret_floatarr2_tricky1_s() {
198   return (struct floatarr2_tricky1_s){{{{1.0}}, {{2.0}}}};
199 }
200 
201 struct floatarr2_tricky2_s { struct {}; struct { float f[1]; } g[2]; };
202 
203 // CHECK: define{{.*}} void @f_floatarr2_tricky2_s_arg(float %0, float %1)
f_floatarr2_tricky2_s_arg(struct floatarr2_tricky2_s a)204 void f_floatarr2_tricky2_s_arg(struct floatarr2_tricky2_s a) {}
205 
206 // CHECK: define{{.*}} { float, float } @f_ret_floatarr2_tricky2_s()
f_ret_floatarr2_tricky2_s()207 struct floatarr2_tricky2_s f_ret_floatarr2_tricky2_s() {
208   return (struct floatarr2_tricky2_s){{}, {{{1.0}}, {{2.0}}}};
209 }
210 
211 struct floatarr2_tricky3_s { union {}; struct { float f[1]; } g[2]; };
212 
213 // CHECK: define{{.*}} void @f_floatarr2_tricky3_s_arg(float %0, float %1)
f_floatarr2_tricky3_s_arg(struct floatarr2_tricky3_s a)214 void f_floatarr2_tricky3_s_arg(struct floatarr2_tricky3_s a) {}
215 
216 // CHECK: define{{.*}} { float, float } @f_ret_floatarr2_tricky3_s()
f_ret_floatarr2_tricky3_s()217 struct floatarr2_tricky3_s f_ret_floatarr2_tricky3_s() {
218   return (struct floatarr2_tricky3_s){{}, {{{1.0}}, {{2.0}}}};
219 }
220 
221 struct floatarr2_tricky4_s { union {}; struct { struct {}; float f[1]; } g[2]; };
222 
223 // CHECK: define{{.*}} void @f_floatarr2_tricky4_s_arg(float %0, float %1)
f_floatarr2_tricky4_s_arg(struct floatarr2_tricky4_s a)224 void f_floatarr2_tricky4_s_arg(struct floatarr2_tricky4_s a) {}
225 
226 // CHECK: define{{.*}} { float, float } @f_ret_floatarr2_tricky4_s()
f_ret_floatarr2_tricky4_s()227 struct floatarr2_tricky4_s f_ret_floatarr2_tricky4_s() {
228   return (struct floatarr2_tricky4_s){{}, {{{}, {1.0}}, {{}, {2.0}}}};
229 }
230 
231 // Test structs that should be passed according to the normal integer calling
232 // convention.
233 
234 struct int_float_int_s { int a; float b; int c; };
235 
236 // CHECK: define{{.*}} void @f_int_float_int_s_arg(%struct.int_float_int_s* %a)
f_int_float_int_s_arg(struct int_float_int_s a)237 void f_int_float_int_s_arg(struct int_float_int_s a) {}
238 
239 // CHECK: define{{.*}} void @f_ret_int_float_int_s(%struct.int_float_int_s* noalias sret(%struct.int_float_int_s) align 4 %agg.result)
f_ret_int_float_int_s()240 struct int_float_int_s f_ret_int_float_int_s() {
241   return (struct int_float_int_s){1, 2.0, 3};
242 }
243 
244 struct int64_float_s { int64_t a; float b; };
245 
246 // CHECK: define{{.*}} void @f_int64_float_s_arg(%struct.int64_float_s* %a)
f_int64_float_s_arg(struct int64_float_s a)247 void f_int64_float_s_arg(struct int64_float_s a) {}
248 
249 // CHECK: define{{.*}} void @f_ret_int64_float_s(%struct.int64_float_s* noalias sret(%struct.int64_float_s) align 8 %agg.result)
f_ret_int64_float_s()250 struct int64_float_s f_ret_int64_float_s() {
251   return (struct int64_float_s){1, 2.0};
252 }
253 
254 struct char_char_float_s { char a; char b; float c; };
255 
256 // CHECK-LABEL: define{{.*}} void @f_char_char_float_s_arg([2 x i32] %a.coerce)
f_char_char_float_s_arg(struct char_char_float_s a)257 void f_char_char_float_s_arg(struct char_char_float_s a) {}
258 
259 // CHECK: define{{.*}} [2 x i32] @f_ret_char_char_float_s()
f_ret_char_char_float_s()260 struct char_char_float_s f_ret_char_char_float_s() {
261   return (struct char_char_float_s){1, 2, 3.0};
262 }
263 
264 // Unions are always passed according to the integer calling convention, even
265 // if they can only contain a float.
266 
267 union float_u { float a; };
268 
269 // CHECK: define{{.*}} void @f_float_u_arg(i32 %a.coerce)
f_float_u_arg(union float_u a)270 void f_float_u_arg(union float_u a) {}
271 
272 // CHECK: define{{.*}} i32 @f_ret_float_u()
f_ret_float_u()273 union float_u f_ret_float_u() {
274   return (union float_u){1.0};
275 }
276