use ppcg specific macro names in generated output
[ppcg.git] / opencl.c
blob679c5cc23e950148fa7ce1111fcd207eb46942ce
1 /*
2 * Copyright 2013 Ecole Normale Superieure
4 * Use of this software is governed by the MIT license
6 * Written by Sven Verdoolaege and Riyadh Baghdadi,
7 * Ecole Normale Superieure, 45 rue d’Ulm, 75230 Paris, France
8 */
10 #include <ctype.h>
11 #include <limits.h>
12 #include <string.h>
14 #include <isl/aff.h>
15 #include <isl/ast.h>
17 #include "opencl.h"
18 #include "gpu_print.h"
19 #include "gpu.h"
20 #include "ppcg.h"
21 #include "print.h"
22 #include "schedule.h"
23 #include "util.h"
25 #define min(a, b) (((a) < (b)) ? (a) : (b))
26 #define max(a, b) (((a) > (b)) ? (a) : (b))
28 /* options are the global options passed to generate_opencl.
29 * input is the name of the input file.
30 * output is the user-specified output file name and may be NULL
31 * if not specified by the user.
32 * kernel_c_name is the name of the kernel_c file.
33 * kprinter is an isl_printer for the kernel file.
34 * host_c is the generated source file for the host code. kernel_c is
35 * the generated source file for the kernel.
37 struct opencl_info {
38 struct ppcg_options *options;
39 const char *input;
40 const char *output;
41 char kernel_c_name[PATH_MAX];
43 isl_printer *kprinter;
45 FILE *host_c;
46 FILE *kernel_c;
49 /* Open the file called "name" for writing or print an error message.
51 static FILE *open_or_croak(const char *name)
53 FILE *file;
55 file = fopen(name, "w");
56 if (!file)
57 fprintf(stderr, "Failed to open \"%s\" for writing\n", name);
58 return file;
61 /* Open the host .c file and the kernel .h and .cl files for writing.
62 * Their names are derived from info->output (or info->input if
63 * the user did not specify an output file name).
64 * Add the necessary includes to these files, including those specified
65 * by the user.
67 * Return 0 on success and -1 on failure.
69 static int opencl_open_files(struct opencl_info *info)
71 char name[PATH_MAX];
72 int i;
73 int len;
75 if (info->output) {
76 const char *ext;
78 ext = strrchr(info->output, '.');
79 len = ext ? ext - info->output : strlen(info->output);
80 memcpy(name, info->output, len);
82 info->host_c = open_or_croak(info->output);
83 } else {
84 len = ppcg_extract_base_name(name, info->input);
86 strcpy(name + len, "_host.c");
87 info->host_c = open_or_croak(name);
90 memcpy(info->kernel_c_name, name, len);
91 strcpy(info->kernel_c_name + len, "_kernel.cl");
92 info->kernel_c = open_or_croak(info->kernel_c_name);
94 if (!info->host_c || !info->kernel_c)
95 return -1;
97 fprintf(info->host_c, "#include <assert.h>\n");
98 fprintf(info->host_c, "#include <stdio.h>\n");
99 fprintf(info->host_c, "#include \"ocl_utilities.h\"\n");
100 if (info->options->opencl_embed_kernel_code) {
101 fprintf(info->host_c, "#include \"%s\"\n\n",
102 info->kernel_c_name);
105 for (i = 0; i < info->options->opencl_n_include_file; ++i) {
106 info->kprinter = isl_printer_print_str(info->kprinter,
107 "#include <");
108 info->kprinter = isl_printer_print_str(info->kprinter,
109 info->options->opencl_include_files[i]);
110 info->kprinter = isl_printer_print_str(info->kprinter, ">\n");
113 return 0;
116 /* Write text to a file and escape some special characters that would break a
117 * C string.
119 static void opencl_print_escaped(const char *str, const char *end, FILE *file)
121 const char *prev = str;
123 while ((str = strpbrk(prev, "\"\\")) && str < end) {
124 fwrite(prev, 1, str - prev, file);
125 fprintf(file, "\\%c", *str);
126 prev = str + 1;
129 if (*prev)
130 fwrite(prev, 1, end - prev, file);
133 /* Write text to a file as a C string literal.
135 * This function also prints any characters after the last newline, although
136 * normally the input string should end with a newline.
138 static void opencl_print_as_c_string(const char *str, FILE *file)
140 const char *prev = str;
142 while ((str = strchr(prev, '\n'))) {
143 fprintf(file, "\n\"");
144 opencl_print_escaped(prev, str, file);
145 fprintf(file, "\\n\"");
147 prev = str + 1;
150 if (*prev) {
151 fprintf(file, "\n\"");
152 opencl_print_escaped(prev, prev + strlen(prev), file);
153 fprintf(file, "\"");
157 /* Write the code that we have accumulated in the kernel isl_printer to the
158 * kernel.cl file. If the opencl_embed_kernel_code option has been set, print
159 * the code as a C string literal. Start that string literal with an empty
160 * line, such that line numbers reported by the OpenCL C compiler match those
161 * of the kernel file.
163 * Return 0 on success and -1 on failure.
165 static int opencl_write_kernel_file(struct opencl_info *opencl)
167 char *raw = isl_printer_get_str(opencl->kprinter);
169 if (!raw)
170 return -1;
172 if (opencl->options->opencl_embed_kernel_code) {
173 fprintf(opencl->kernel_c,
174 "static const char kernel_code[] = \"\\n\"");
175 opencl_print_as_c_string(raw, opencl->kernel_c);
176 fprintf(opencl->kernel_c, ";\n");
177 } else
178 fprintf(opencl->kernel_c, "%s", raw);
180 free(raw);
182 return 0;
185 /* Close all output files. Write the kernel contents to the kernel file before
186 * closing it.
188 * Return 0 on success and -1 on failure.
190 static int opencl_close_files(struct opencl_info *info)
192 int r = 0;
194 if (info->kernel_c) {
195 r = opencl_write_kernel_file(info);
196 fclose(info->kernel_c);
198 if (info->host_c)
199 fclose(info->host_c);
201 return r;
204 static __isl_give isl_printer *opencl_print_host_macros(
205 __isl_take isl_printer *p)
207 const char *macros =
208 "#define openclCheckReturn(ret) \\\n"
209 " if (ret != CL_SUCCESS) {\\\n"
210 " fprintf(stderr, \"OpenCL error: %s\\n\", "
211 "opencl_error_string(ret)); \\\n"
212 " fflush(stderr); \\\n"
213 " assert(ret == CL_SUCCESS);\\\n }\n";
215 p = isl_printer_start_line(p);
216 p = isl_printer_print_str(p, macros);
217 p = isl_printer_end_line(p);
219 p = isl_ast_op_type_print_macro(isl_ast_op_max, p);
221 return p;
224 static __isl_give isl_printer *opencl_declare_device_arrays(
225 __isl_take isl_printer *p, struct gpu_prog *prog)
227 int i;
229 for (i = 0; i < prog->n_array; ++i) {
230 if (!gpu_array_requires_device_allocation(&prog->array[i]))
231 continue;
232 p = isl_printer_start_line(p);
233 p = isl_printer_print_str(p, "cl_mem dev_");
234 p = isl_printer_print_str(p, prog->array[i].name);
235 p = isl_printer_print_str(p, ";");
236 p = isl_printer_end_line(p);
238 p = isl_printer_start_line(p);
239 p = isl_printer_end_line(p);
240 return p;
243 /* Given an array, check whether its positive size guard expression is
244 * trivial.
246 static int is_array_positive_size_guard_trivial(struct gpu_array_info *array)
248 isl_set *guard;
249 int is_trivial;
251 guard = gpu_array_positive_size_guard(array);
252 is_trivial = isl_set_plain_is_universe(guard);
253 isl_set_free(guard);
254 return is_trivial;
257 /* Allocate a device array for "array'.
259 * Emit a max-expression to ensure the device array can contain at least one
260 * element if the array's positive size guard expression is not trivial.
262 static __isl_give isl_printer *allocate_device_array(__isl_take isl_printer *p,
263 struct gpu_array_info *array)
265 int need_lower_bound;
267 p = ppcg_start_block(p);
269 p = isl_printer_start_line(p);
270 p = isl_printer_print_str(p, "dev_");
271 p = isl_printer_print_str(p, array->name);
272 p = isl_printer_print_str(p, " = clCreateBuffer(context, ");
273 p = isl_printer_print_str(p, "CL_MEM_READ_WRITE, ");
275 need_lower_bound = !is_array_positive_size_guard_trivial(array);
276 if (need_lower_bound) {
277 p = isl_printer_print_str(p, ppcg_max);
278 p = isl_printer_print_str(p, "(sizeof(");
279 p = isl_printer_print_str(p, array->type);
280 p = isl_printer_print_str(p, "), ");
282 p = gpu_array_info_print_size(p, array);
283 if (need_lower_bound)
284 p = isl_printer_print_str(p, ")");
286 p = isl_printer_print_str(p, ", NULL, &err);");
287 p = isl_printer_end_line(p);
288 p = isl_printer_start_line(p);
289 p = isl_printer_print_str(p, "openclCheckReturn(err);");
290 p = isl_printer_end_line(p);
292 p = ppcg_end_block(p);
294 return p;
297 /* Allocate accessed device arrays.
299 static __isl_give isl_printer *opencl_allocate_device_arrays(
300 __isl_take isl_printer *p, struct gpu_prog *prog)
302 int i;
304 for (i = 0; i < prog->n_array; ++i) {
305 struct gpu_array_info *array = &prog->array[i];
307 if (!gpu_array_requires_device_allocation(array))
308 continue;
310 p = allocate_device_array(p, array);
312 p = isl_printer_start_line(p);
313 p = isl_printer_end_line(p);
314 return p;
317 /* Print a call to the OpenCL clSetKernelArg() function which sets
318 * the arguments of the kernel. arg_name and arg_index are the name and the
319 * index of the kernel argument. The index of the leftmost argument of
320 * the kernel is 0 whereas the index of the rightmost argument of the kernel
321 * is n - 1, where n is the total number of the kernel arguments.
322 * read_only_scalar is a boolean that indicates whether the argument is a read
323 * only scalar.
325 static __isl_give isl_printer *opencl_set_kernel_argument(
326 __isl_take isl_printer *p, int kernel_id,
327 const char *arg_name, int arg_index, int read_only_scalar)
329 p = isl_printer_start_line(p);
330 p = isl_printer_print_str(p,
331 "openclCheckReturn(clSetKernelArg(kernel");
332 p = isl_printer_print_int(p, kernel_id);
333 p = isl_printer_print_str(p, ", ");
334 p = isl_printer_print_int(p, arg_index);
335 p = isl_printer_print_str(p, ", sizeof(");
337 if (read_only_scalar) {
338 p = isl_printer_print_str(p, arg_name);
339 p = isl_printer_print_str(p, "), &");
340 } else
341 p = isl_printer_print_str(p, "cl_mem), (void *) &dev_");
343 p = isl_printer_print_str(p, arg_name);
344 p = isl_printer_print_str(p, "));");
345 p = isl_printer_end_line(p);
347 return p;
350 /* Print the block sizes as a list of the sizes in each
351 * dimension.
353 static __isl_give isl_printer *opencl_print_block_sizes(
354 __isl_take isl_printer *p, struct ppcg_kernel *kernel)
356 int i;
358 if (kernel->n_block > 0)
359 for (i = 0; i < kernel->n_block; ++i) {
360 if (i)
361 p = isl_printer_print_str(p, ", ");
362 p = isl_printer_print_int(p, kernel->block_dim[i]);
364 else
365 p = isl_printer_print_str(p, "1");
367 return p;
370 /* Set the arguments of the OpenCL kernel by printing a call to the OpenCL
371 * clSetKernelArg() function for each kernel argument.
373 static __isl_give isl_printer *opencl_set_kernel_arguments(
374 __isl_take isl_printer *p, struct gpu_prog *prog,
375 struct ppcg_kernel *kernel)
377 int i, n, ro;
378 unsigned nparam;
379 isl_space *space;
380 int arg_index = 0;
382 for (i = 0; i < prog->n_array; ++i) {
383 int required;
385 required = ppcg_kernel_requires_array_argument(kernel, i);
386 if (required < 0)
387 return isl_printer_free(p);
388 if (!required)
389 continue;
390 ro = gpu_array_is_read_only_scalar(&prog->array[i]);
391 opencl_set_kernel_argument(p, kernel->id, prog->array[i].name,
392 arg_index, ro);
393 arg_index++;
396 space = isl_union_set_get_space(kernel->arrays);
397 nparam = isl_space_dim(space, isl_dim_param);
398 for (i = 0; i < nparam; ++i) {
399 const char *name;
401 name = isl_space_get_dim_name(space, isl_dim_param, i);
402 opencl_set_kernel_argument(p, kernel->id, name, arg_index, 1);
403 arg_index++;
405 isl_space_free(space);
407 n = isl_space_dim(kernel->space, isl_dim_set);
408 for (i = 0; i < n; ++i) {
409 const char *name;
411 name = isl_space_get_dim_name(kernel->space, isl_dim_set, i);
412 opencl_set_kernel_argument(p, kernel->id, name, arg_index, 1);
413 arg_index++;
416 return p;
419 /* Print the arguments to a kernel declaration or call. If "types" is set,
420 * then print a declaration (including the types of the arguments).
422 * The arguments are printed in the following order
423 * - the arrays accessed by the kernel
424 * - the parameters
425 * - the host loop iterators
427 static __isl_give isl_printer *opencl_print_kernel_arguments(
428 __isl_take isl_printer *p, struct gpu_prog *prog,
429 struct ppcg_kernel *kernel, int types)
431 int i, n;
432 int first = 1;
433 unsigned nparam;
434 isl_space *space;
435 const char *type;
437 for (i = 0; i < prog->n_array; ++i) {
438 int required;
440 required = ppcg_kernel_requires_array_argument(kernel, i);
441 if (required < 0)
442 return isl_printer_free(p);
443 if (!required)
444 continue;
446 if (!first)
447 p = isl_printer_print_str(p, ", ");
449 if (types)
450 p = gpu_array_info_print_declaration_argument(p,
451 &prog->array[i], "__global");
452 else
453 p = gpu_array_info_print_call_argument(p,
454 &prog->array[i]);
456 first = 0;
459 space = isl_union_set_get_space(kernel->arrays);
460 nparam = isl_space_dim(space, isl_dim_param);
461 for (i = 0; i < nparam; ++i) {
462 const char *name;
464 name = isl_space_get_dim_name(space, isl_dim_param, i);
466 if (!first)
467 p = isl_printer_print_str(p, ", ");
468 if (types)
469 p = isl_printer_print_str(p, "int ");
470 p = isl_printer_print_str(p, name);
472 first = 0;
474 isl_space_free(space);
476 n = isl_space_dim(kernel->space, isl_dim_set);
477 type = isl_options_get_ast_iterator_type(prog->ctx);
478 for (i = 0; i < n; ++i) {
479 const char *name;
481 if (!first)
482 p = isl_printer_print_str(p, ", ");
483 name = isl_space_get_dim_name(kernel->space, isl_dim_set, i);
484 if (types) {
485 p = isl_printer_print_str(p, type);
486 p = isl_printer_print_str(p, " ");
488 p = isl_printer_print_str(p, name);
490 first = 0;
493 return p;
496 /* Print the header of the given kernel.
498 static __isl_give isl_printer *opencl_print_kernel_header(
499 __isl_take isl_printer *p, struct gpu_prog *prog,
500 struct ppcg_kernel *kernel)
502 p = isl_printer_start_line(p);
503 p = isl_printer_print_str(p, "__kernel void kernel");
504 p = isl_printer_print_int(p, kernel->id);
505 p = isl_printer_print_str(p, "(");
506 p = opencl_print_kernel_arguments(p, prog, kernel, 1);
507 p = isl_printer_print_str(p, ")");
508 p = isl_printer_end_line(p);
510 return p;
513 /* Print a list of iterators of type "type" with names "ids" to "p".
514 * Each iterator is assigned the corresponding opencl identifier returned
515 * by the function "opencl_id".
516 * Unlike the equivalent function in the CUDA backend which prints iterators
517 * in reverse order to promote coalescing, this function does not print
518 * iterators in reverse order. The OpenCL backend currently does not take
519 * into account any coalescing considerations.
521 static __isl_give isl_printer *print_iterators(__isl_take isl_printer *p,
522 const char *type, __isl_keep isl_id_list *ids, const char *opencl_id)
524 int i, n;
526 n = isl_id_list_n_id(ids);
527 if (n <= 0)
528 return p;
529 p = isl_printer_start_line(p);
530 p = isl_printer_print_str(p, type);
531 p = isl_printer_print_str(p, " ");
532 for (i = 0; i < n; ++i) {
533 isl_id *id;
535 if (i)
536 p = isl_printer_print_str(p, ", ");
537 id = isl_id_list_get_id(ids, i);
538 p = isl_printer_print_id(p, id);
539 isl_id_free(id);
540 p = isl_printer_print_str(p, " = ");
541 p = isl_printer_print_str(p, opencl_id);
542 p = isl_printer_print_str(p, "(");
543 p = isl_printer_print_int(p, i);
544 p = isl_printer_print_str(p, ")");
546 p = isl_printer_print_str(p, ";");
547 p = isl_printer_end_line(p);
549 return p;
552 static __isl_give isl_printer *opencl_print_kernel_iterators(
553 __isl_take isl_printer *p, struct ppcg_kernel *kernel)
555 isl_ctx *ctx = isl_ast_node_get_ctx(kernel->tree);
556 const char *type;
558 type = isl_options_get_ast_iterator_type(ctx);
560 p = print_iterators(p, type, kernel->block_ids, "get_group_id");
561 p = print_iterators(p, type, kernel->thread_ids, "get_local_id");
563 return p;
566 static __isl_give isl_printer *opencl_print_kernel_var(
567 __isl_take isl_printer *p, struct ppcg_kernel_var *var)
569 int j;
570 isl_val *v;
572 p = isl_printer_start_line(p);
573 if (var->type == ppcg_access_shared)
574 p = isl_printer_print_str(p, "__local ");
575 p = isl_printer_print_str(p, var->array->type);
576 p = isl_printer_print_str(p, " ");
577 p = isl_printer_print_str(p, var->name);
578 for (j = 0; j < var->array->n_index; ++j) {
579 p = isl_printer_print_str(p, "[");
580 v = isl_vec_get_element_val(var->size, j);
581 p = isl_printer_print_val(p, v);
582 p = isl_printer_print_str(p, "]");
583 isl_val_free(v);
585 p = isl_printer_print_str(p, ";");
586 p = isl_printer_end_line(p);
588 return p;
591 static __isl_give isl_printer *opencl_print_kernel_vars(
592 __isl_take isl_printer *p, struct ppcg_kernel *kernel)
594 int i;
596 for (i = 0; i < kernel->n_var; ++i)
597 p = opencl_print_kernel_var(p, &kernel->var[i]);
599 return p;
602 /* Print a call to barrier() which is a sync statement.
603 * All work-items in a work-group executing the kernel on a processor must
604 * execute the barrier() function before any are allowed to continue execution
605 * beyond the barrier.
606 * The flag CLK_LOCAL_MEM_FENCE makes the barrier function either flush any
607 * variables stored in local memory or queue a memory fence to ensure correct
608 * ordering of memory operations to local memory.
609 * The flag CLK_GLOBAL_MEM_FENCE makes the barrier function queue a memory
610 * fence to ensure correct ordering of memory operations to global memory.
612 static __isl_give isl_printer *opencl_print_sync(__isl_take isl_printer *p,
613 struct ppcg_kernel_stmt *stmt)
615 p = isl_printer_start_line(p);
616 p = isl_printer_print_str(p,
617 "barrier(CLK_LOCAL_MEM_FENCE | CLK_GLOBAL_MEM_FENCE);");
618 p = isl_printer_end_line(p);
620 return p;
623 /* Data structure containing function names for which the calls
624 * should be changed from
626 * name(arg)
628 * to
630 * opencl_name((type) (arg))
632 static struct ppcg_opencl_fn {
633 const char *name;
634 const char *opencl_name;
635 const char *type;
636 } opencl_fn[] = {
637 { "expf", "exp", "float" },
638 { "powf", "pow", "float" },
639 { "sqrtf", "sqrt", "float" },
642 #define ARRAY_SIZE(array) (sizeof(array)/sizeof(*array))
644 /* If the name of function called by "expr" matches any of those
645 * in ppcg_opencl_fn, then replace the call by a cast to the corresponding
646 * type in ppcg_opencl_fn and a call to corresponding OpenCL function.
648 static __isl_give pet_expr *map_opencl_call(__isl_take pet_expr *expr,
649 void *user)
651 const char *name;
652 int i;
654 name = pet_expr_call_get_name(expr);
655 for (i = 0; i < ARRAY_SIZE(opencl_fn); ++i) {
656 pet_expr *arg;
658 if (strcmp(name, opencl_fn[i].name))
659 continue;
660 expr = pet_expr_call_set_name(expr, opencl_fn[i].opencl_name);
661 arg = pet_expr_get_arg(expr, 0);
662 arg = pet_expr_new_cast(opencl_fn[i].type, arg);
663 expr = pet_expr_set_arg(expr, 0, arg);
665 return expr;
668 /* Print the body of a statement from the input program,
669 * for use in OpenCL code.
671 * Before calling ppcg_kernel_print_domain to print the actual statement body,
672 * we first modify this body to take into account that the output code
673 * is OpenCL code. In particular, if the statement calls any function
674 * with a "f" suffix, then it needs to be replaced by a call to
675 * the corresponding function without suffix after casting the argument
676 * to a float.
678 static __isl_give isl_printer *print_opencl_kernel_domain(
679 __isl_take isl_printer *p, struct ppcg_kernel_stmt *stmt)
681 struct pet_stmt *ps;
682 pet_tree *tree;
684 ps = stmt->u.d.stmt->stmt;
685 tree = pet_tree_copy(ps->body);
686 ps->body = pet_tree_map_call_expr(ps->body, &map_opencl_call, NULL);
687 p = ppcg_kernel_print_domain(p, stmt);
688 pet_tree_free(ps->body);
689 ps->body = tree;
691 return p;
694 /* This function is called for each user statement in the AST,
695 * i.e., for each kernel body statement, copy statement or sync statement.
697 static __isl_give isl_printer *opencl_print_kernel_stmt(
698 __isl_take isl_printer *p,
699 __isl_take isl_ast_print_options *print_options,
700 __isl_keep isl_ast_node *node, void *user)
702 isl_id *id;
703 struct ppcg_kernel_stmt *stmt;
705 id = isl_ast_node_get_annotation(node);
706 stmt = isl_id_get_user(id);
707 isl_id_free(id);
709 isl_ast_print_options_free(print_options);
711 switch (stmt->type) {
712 case ppcg_kernel_copy:
713 return ppcg_kernel_print_copy(p, stmt);
714 case ppcg_kernel_sync:
715 return opencl_print_sync(p, stmt);
716 case ppcg_kernel_domain:
717 return print_opencl_kernel_domain(p, stmt);
720 return p;
723 /* Return true if there is a double array in prog->array or
724 * if any of the types in prog->scop involve any doubles.
725 * To check the latter condition, we simply search for the string "double"
726 * in the type definitions, which may result in false positives.
728 static __isl_give int any_double_elements(struct gpu_prog *prog)
730 int i;
732 for (i = 0; i < prog->n_array; ++i)
733 if (strcmp(prog->array[i].type, "double") == 0)
734 return 1;
736 for (i = 0; i < prog->scop->pet->n_type; ++i) {
737 struct pet_type *type = prog->scop->pet->types[i];
739 if (strstr(type->definition, "double"))
740 return 1;
743 return 0;
746 /* Prints a #pragma to enable support for double floating-point
747 * precision. OpenCL 1.0 adds support for double precision floating-point as
748 * an optional extension. An application that wants to use double will need to
749 * include the #pragma OPENCL EXTENSION cl_khr_fp64 : enable directive before
750 * any double precision data type is declared in the kernel code.
752 static __isl_give isl_printer *opencl_enable_double_support(
753 __isl_take isl_printer *p)
755 p = isl_printer_start_line(p);
756 p = isl_printer_print_str(p, "#pragma OPENCL EXTENSION cl_khr_fp64 :"
757 " enable");
758 p = isl_printer_end_line(p);
759 p = isl_printer_start_line(p);
760 p = isl_printer_end_line(p);
762 return p;
765 static __isl_give isl_printer *opencl_print_kernel(struct gpu_prog *prog,
766 struct ppcg_kernel *kernel, __isl_take isl_printer *p)
768 isl_ctx *ctx = isl_ast_node_get_ctx(kernel->tree);
769 isl_ast_print_options *print_options;
771 print_options = isl_ast_print_options_alloc(ctx);
772 print_options = isl_ast_print_options_set_print_user(print_options,
773 &opencl_print_kernel_stmt, NULL);
775 p = isl_printer_set_output_format(p, ISL_FORMAT_C);
776 p = opencl_print_kernel_header(p, prog, kernel);
777 p = isl_printer_print_str(p, "{");
778 p = isl_printer_end_line(p);
779 p = isl_printer_indent(p, 4);
780 p = opencl_print_kernel_iterators(p, kernel);
781 p = opencl_print_kernel_vars(p, kernel);
782 p = isl_printer_end_line(p);
783 p = ppcg_set_macro_names(p);
784 p = isl_ast_op_type_print_macro(isl_ast_op_fdiv_q, p);
785 p = ppcg_print_macros(p, kernel->tree);
786 p = isl_ast_node_print(kernel->tree, p, print_options);
787 p = isl_printer_indent(p, -4);
788 p = isl_printer_start_line(p);
789 p = isl_printer_print_str(p, "}");
790 p = isl_printer_end_line(p);
792 return p;
795 struct print_host_user_data_opencl {
796 struct opencl_info *opencl;
797 struct gpu_prog *prog;
800 /* This function prints the i'th block size multiplied by the i'th grid size,
801 * where i (a parameter to this function) is one of the possible dimensions of
802 * grid sizes and block sizes.
803 * If the dimension of block sizes is not equal to the dimension of grid sizes
804 * the output is calculated as follows:
806 * Suppose that:
807 * block_sizes[dim1] is the list of blocks sizes and it contains dim1 elements.
808 * grid_sizes[dim2] is the list of grid sizes and it contains dim2 elements.
810 * The output is:
811 * If (i > dim2) then the output is block_sizes[i]
812 * If (i > dim1) then the output is grid_sizes[i]
814 static __isl_give isl_printer *opencl_print_total_number_of_work_items_for_dim(
815 __isl_take isl_printer *p, struct ppcg_kernel *kernel, int i)
817 int grid_dim, block_dim;
818 isl_pw_aff *bound_grid;
820 grid_dim = isl_multi_pw_aff_dim(kernel->grid_size, isl_dim_set);
821 block_dim = kernel->n_block;
823 if (i < min(grid_dim, block_dim)) {
824 bound_grid = isl_multi_pw_aff_get_pw_aff(kernel->grid_size, i);
825 p = isl_printer_print_str(p, "(");
826 p = isl_printer_print_pw_aff(p, bound_grid);
827 p = isl_printer_print_str(p, ") * ");
828 p = isl_printer_print_int(p, kernel->block_dim[i]);
829 isl_pw_aff_free(bound_grid);
830 } else if (i >= grid_dim)
831 p = isl_printer_print_int(p, kernel->block_dim[i]);
832 else {
833 bound_grid = isl_multi_pw_aff_get_pw_aff(kernel->grid_size, i);
834 p = isl_printer_print_pw_aff(p, bound_grid);
835 isl_pw_aff_free(bound_grid);
838 return p;
841 /* Print a list that represents the total number of work items. The list is
842 * constructed by performing an element-wise multiplication of the block sizes
843 * and the grid sizes. To explain how the list is constructed, suppose that:
844 * block_sizes[dim1] is the list of blocks sizes and it contains dim1 elements.
845 * grid_sizes[dim2] is the list of grid sizes and it contains dim2 elements.
847 * The output of this function is constructed as follows:
848 * If (dim1 > dim2) then the output is the following list:
849 * grid_sizes[0]*block_sizes[0], ..., grid_sizes[dim2-1]*block_sizes[dim2-1],
850 * block_sizes[dim2], ..., block_sizes[dim1-2], block_sizes[dim1-1].
852 * If (dim2 > dim1) then the output is the following list:
853 * grid_sizes[0]*block_sizes[0], ..., grid_sizes[dim1-1] * block_sizes[dim1-1],
854 * grid_sizes[dim1], grid_sizes[dim2-2], grid_sizes[dim2-1].
856 * To calculate the total number of work items out of the list constructed by
857 * this function, the user should multiply the elements of the list.
859 static __isl_give isl_printer *opencl_print_total_number_of_work_items_as_list(
860 __isl_take isl_printer *p, struct ppcg_kernel *kernel)
862 int i;
863 int grid_dim, block_dim;
865 grid_dim = isl_multi_pw_aff_dim(kernel->grid_size, isl_dim_set);
866 block_dim = kernel->n_block;
868 if ((grid_dim <= 0) || (block_dim <= 0)) {
869 p = isl_printer_print_str(p, "1");
870 return p;
873 for (i = 0; i <= max(grid_dim, block_dim) - 1; i++) {
874 if (i > 0)
875 p = isl_printer_print_str(p, ", ");
877 p = opencl_print_total_number_of_work_items_for_dim(p,
878 kernel, i);
881 return p;
884 /* Copy "array" from the host to the device (to_host = 0) or
885 * back from the device to the host (to_host = 1).
887 static __isl_give isl_printer *copy_array(__isl_take isl_printer *p,
888 struct gpu_array_info *array, int to_host)
890 p = isl_printer_start_line(p);
891 p = isl_printer_print_str(p, "openclCheckReturn(");
892 if (to_host)
893 p = isl_printer_print_str(p, "clEnqueueReadBuffer");
894 else
895 p = isl_printer_print_str(p, "clEnqueueWriteBuffer");
896 p = isl_printer_print_str(p, "(queue, dev_");
897 p = isl_printer_print_str(p, array->name);
898 p = isl_printer_print_str(p, ", CL_TRUE, 0, ");
899 p = gpu_array_info_print_size(p, array);
901 if (gpu_array_is_scalar(array))
902 p = isl_printer_print_str(p, ", &");
903 else
904 p = isl_printer_print_str(p, ", ");
905 p = isl_printer_print_str(p, array->name);
906 p = isl_printer_print_str(p, ", 0, NULL, NULL));");
907 p = isl_printer_end_line(p);
909 return p;
912 /* Print a statement for copying an array to or from the device.
913 * The statement identifier is called "to_device_<array name>" or
914 * "from_device_<array name>" and its user pointer points
915 * to the gpu_array_info of the array that needs to be copied.
917 * Extract the array from the identifier and call
918 * copy_array_to_device or copy_array_from_device.
920 static __isl_give isl_printer *print_to_from_device(__isl_take isl_printer *p,
921 __isl_keep isl_ast_node *node, struct gpu_prog *prog)
923 isl_ast_expr *expr, *arg;
924 isl_id *id;
925 const char *name;
926 struct gpu_array_info *array;
928 expr = isl_ast_node_user_get_expr(node);
929 arg = isl_ast_expr_get_op_arg(expr, 0);
930 id = isl_ast_expr_get_id(arg);
931 name = isl_id_get_name(id);
932 array = isl_id_get_user(id);
933 isl_id_free(id);
934 isl_ast_expr_free(arg);
935 isl_ast_expr_free(expr);
937 if (!name)
938 array = NULL;
939 if (!array)
940 return isl_printer_free(p);
942 if (!prefixcmp(name, "to_device"))
943 return copy_array(p, array, 0);
944 else
945 return copy_array(p, array, 1);
948 /* Print the user statement of the host code to "p".
950 * The host code may contain original user statements, kernel launches and
951 * statements that copy data to/from the device.
952 * The original user statements and the kernel launches have
953 * an associated annotation, while the data copy statements do not.
954 * The latter are handled by print_to_from_device.
955 * The annotation on the user statements is called "user".
957 * In case of a kernel launch, print a block of statements that
958 * defines the grid and the work group and then launches the kernel.
960 * A grid is composed of many work groups (blocks), each work group holds
961 * many work-items (threads).
963 * global_work_size[kernel->n_block] represents the total number of work
964 * items. It points to an array of kernel->n_block unsigned
965 * values that describe the total number of work-items that will execute
966 * the kernel. The total number of work-items is computed as:
967 * global_work_size[0] *...* global_work_size[kernel->n_block - 1].
969 * The size of each work group (i.e. the number of work-items in each work
970 * group) is described using block_size[kernel->n_block]. The total
971 * number of work-items in a block (work-group) is computed as:
972 * block_size[0] *... * block_size[kernel->n_block - 1].
974 * For more information check:
975 * http://www.khronos.org/registry/cl/sdk/1.0/docs/man/xhtml/clEnqueueNDRangeKernel.html
977 static __isl_give isl_printer *opencl_print_host_user(
978 __isl_take isl_printer *p,
979 __isl_take isl_ast_print_options *print_options,
980 __isl_keep isl_ast_node *node, void *user)
982 isl_id *id;
983 int is_user;
984 struct ppcg_kernel *kernel;
985 struct ppcg_kernel_stmt *stmt;
986 struct print_host_user_data_opencl *data;
988 isl_ast_print_options_free(print_options);
990 data = (struct print_host_user_data_opencl *) user;
992 id = isl_ast_node_get_annotation(node);
993 if (!id)
994 return print_to_from_device(p, node, data->prog);
996 is_user = !strcmp(isl_id_get_name(id), "user");
997 kernel = is_user ? NULL : isl_id_get_user(id);
998 stmt = is_user ? isl_id_get_user(id) : NULL;
999 isl_id_free(id);
1001 if (is_user)
1002 return ppcg_kernel_print_domain(p, stmt);
1004 p = isl_printer_start_line(p);
1005 p = isl_printer_print_str(p, "{");
1006 p = isl_printer_end_line(p);
1007 p = isl_printer_indent(p, 2);
1009 p = isl_printer_start_line(p);
1010 p = isl_printer_print_str(p, "size_t global_work_size[");
1012 if (kernel->n_block > 0)
1013 p = isl_printer_print_int(p, kernel->n_block);
1014 else
1015 p = isl_printer_print_int(p, 1);
1017 p = isl_printer_print_str(p, "] = {");
1018 p = opencl_print_total_number_of_work_items_as_list(p, kernel);
1019 p = isl_printer_print_str(p, "};");
1020 p = isl_printer_end_line(p);
1022 p = isl_printer_start_line(p);
1023 p = isl_printer_print_str(p, "size_t block_size[");
1025 if (kernel->n_block > 0)
1026 p = isl_printer_print_int(p, kernel->n_block);
1027 else
1028 p = isl_printer_print_int(p, 1);
1030 p = isl_printer_print_str(p, "] = {");
1031 p = opencl_print_block_sizes(p, kernel);
1032 p = isl_printer_print_str(p, "};");
1033 p = isl_printer_end_line(p);
1035 p = isl_printer_start_line(p);
1036 p = isl_printer_print_str(p, "cl_kernel kernel");
1037 p = isl_printer_print_int(p, kernel->id);
1038 p = isl_printer_print_str(p, " = clCreateKernel(program, \"kernel");
1039 p = isl_printer_print_int(p, kernel->id);
1040 p = isl_printer_print_str(p, "\", &err);");
1041 p = isl_printer_end_line(p);
1042 p = isl_printer_start_line(p);
1043 p = isl_printer_print_str(p, "openclCheckReturn(err);");
1044 p = isl_printer_end_line(p);
1046 opencl_set_kernel_arguments(p, data->prog, kernel);
1048 p = isl_printer_start_line(p);
1049 p = isl_printer_print_str(p, "openclCheckReturn(clEnqueueNDRangeKernel"
1050 "(queue, kernel");
1051 p = isl_printer_print_int(p, kernel->id);
1052 p = isl_printer_print_str(p, ", ");
1053 if (kernel->n_block > 0)
1054 p = isl_printer_print_int(p, kernel->n_block);
1055 else
1056 p = isl_printer_print_int(p, 1);
1058 p = isl_printer_print_str(p, ", NULL, global_work_size, "
1059 "block_size, "
1060 "0, NULL, NULL));");
1061 p = isl_printer_end_line(p);
1062 p = isl_printer_start_line(p);
1063 p = isl_printer_print_str(p, "openclCheckReturn("
1064 "clReleaseKernel(kernel");
1065 p = isl_printer_print_int(p, kernel->id);
1066 p = isl_printer_print_str(p, "));");
1067 p = isl_printer_end_line(p);
1068 p = isl_printer_start_line(p);
1069 p = isl_printer_print_str(p, "clFinish(queue);");
1070 p = isl_printer_end_line(p);
1071 p = isl_printer_indent(p, -2);
1072 p = isl_printer_start_line(p);
1073 p = isl_printer_print_str(p, "}");
1074 p = isl_printer_end_line(p);
1076 p = isl_printer_start_line(p);
1077 p = isl_printer_end_line(p);
1079 data->opencl->kprinter = opencl_print_kernel(data->prog, kernel,
1080 data->opencl->kprinter);
1082 return p;
1085 static __isl_give isl_printer *opencl_print_host_code(
1086 __isl_take isl_printer *p, struct gpu_prog *prog,
1087 __isl_keep isl_ast_node *tree, struct opencl_info *opencl)
1089 isl_ast_print_options *print_options;
1090 isl_ctx *ctx = isl_ast_node_get_ctx(tree);
1091 struct print_host_user_data_opencl data = { opencl, prog };
1093 print_options = isl_ast_print_options_alloc(ctx);
1094 print_options = isl_ast_print_options_set_print_user(print_options,
1095 &opencl_print_host_user, &data);
1097 p = ppcg_print_macros(p, tree);
1098 p = isl_ast_node_print(tree, p, print_options);
1100 return p;
1103 /* Create an OpenCL device, context, command queue and build the kernel.
1104 * input is the name of the input file provided to ppcg.
1106 static __isl_give isl_printer *opencl_setup(__isl_take isl_printer *p,
1107 const char *input, struct opencl_info *info)
1109 p = isl_printer_start_line(p);
1110 p = isl_printer_print_str(p, "cl_device_id device;");
1111 p = isl_printer_end_line(p);
1112 p = isl_printer_start_line(p);
1113 p = isl_printer_print_str(p, "cl_context context;");
1114 p = isl_printer_end_line(p);
1115 p = isl_printer_start_line(p);
1116 p = isl_printer_print_str(p, "cl_program program;");
1117 p = isl_printer_end_line(p);
1118 p = isl_printer_start_line(p);
1119 p = isl_printer_print_str(p, "cl_command_queue queue;");
1120 p = isl_printer_end_line(p);
1121 p = isl_printer_start_line(p);
1122 p = isl_printer_print_str(p, "cl_int err;");
1123 p = isl_printer_end_line(p);
1124 p = isl_printer_start_line(p);
1125 p = isl_printer_print_str(p, "device = opencl_create_device(");
1126 p = isl_printer_print_int(p, info->options->opencl_use_gpu);
1127 p = isl_printer_print_str(p, ");");
1128 p = isl_printer_end_line(p);
1129 p = isl_printer_start_line(p);
1130 p = isl_printer_print_str(p, "context = clCreateContext(NULL, 1, "
1131 "&device, NULL, NULL, &err);");
1132 p = isl_printer_end_line(p);
1133 p = isl_printer_start_line(p);
1134 p = isl_printer_print_str(p, "openclCheckReturn(err);");
1135 p = isl_printer_end_line(p);
1136 p = isl_printer_start_line(p);
1137 p = isl_printer_print_str(p, "queue = clCreateCommandQueue"
1138 "(context, device, 0, &err);");
1139 p = isl_printer_end_line(p);
1140 p = isl_printer_start_line(p);
1141 p = isl_printer_print_str(p, "openclCheckReturn(err);");
1142 p = isl_printer_end_line(p);
1144 p = isl_printer_start_line(p);
1145 p = isl_printer_print_str(p, "program = ");
1147 if (info->options->opencl_embed_kernel_code) {
1148 p = isl_printer_print_str(p, "opencl_build_program_from_string("
1149 "context, device, kernel_code, "
1150 "sizeof(kernel_code), \"");
1151 } else {
1152 p = isl_printer_print_str(p, "opencl_build_program_from_file("
1153 "context, device, \"");
1154 p = isl_printer_print_str(p, info->kernel_c_name);
1155 p = isl_printer_print_str(p, "\", \"");
1158 if (info->options->opencl_compiler_options)
1159 p = isl_printer_print_str(p,
1160 info->options->opencl_compiler_options);
1162 p = isl_printer_print_str(p, "\");");
1163 p = isl_printer_end_line(p);
1164 p = isl_printer_start_line(p);
1165 p = isl_printer_end_line(p);
1167 return p;
1170 static __isl_give isl_printer *opencl_release_cl_objects(
1171 __isl_take isl_printer *p, struct opencl_info *info)
1173 p = isl_printer_start_line(p);
1174 p = isl_printer_print_str(p, "openclCheckReturn(clReleaseCommandQueue"
1175 "(queue));");
1176 p = isl_printer_end_line(p);
1177 p = isl_printer_start_line(p);
1178 p = isl_printer_print_str(p, "openclCheckReturn(clReleaseProgram"
1179 "(program));");
1180 p = isl_printer_end_line(p);
1181 p = isl_printer_start_line(p);
1182 p = isl_printer_print_str(p, "openclCheckReturn(clReleaseContext"
1183 "(context));");
1184 p = isl_printer_end_line(p);
1186 return p;
1189 /* Free the device array corresponding to "array"
1191 static __isl_give isl_printer *release_device_array(__isl_take isl_printer *p,
1192 struct gpu_array_info *array)
1194 p = isl_printer_start_line(p);
1195 p = isl_printer_print_str(p, "openclCheckReturn("
1196 "clReleaseMemObject(dev_");
1197 p = isl_printer_print_str(p, array->name);
1198 p = isl_printer_print_str(p, "));");
1199 p = isl_printer_end_line(p);
1201 return p;
1204 /* Free the accessed device arrays.
1206 static __isl_give isl_printer *opencl_release_device_arrays(
1207 __isl_take isl_printer *p, struct gpu_prog *prog)
1209 int i;
1211 for (i = 0; i < prog->n_array; ++i) {
1212 struct gpu_array_info *array = &prog->array[i];
1213 if (!gpu_array_requires_device_allocation(array))
1214 continue;
1216 p = release_device_array(p, array);
1218 return p;
1221 /* Given a gpu_prog "prog" and the corresponding transformed AST
1222 * "tree", print the entire OpenCL code to "p".
1224 static __isl_give isl_printer *print_opencl(__isl_take isl_printer *p,
1225 struct gpu_prog *prog, __isl_keep isl_ast_node *tree,
1226 struct gpu_types *types, void *user)
1228 struct opencl_info *opencl = user;
1230 opencl->kprinter = isl_printer_set_output_format(opencl->kprinter,
1231 ISL_FORMAT_C);
1232 if (any_double_elements(prog))
1233 opencl->kprinter = opencl_enable_double_support(
1234 opencl->kprinter);
1235 if (opencl->options->opencl_print_kernel_types)
1236 opencl->kprinter = gpu_print_types(opencl->kprinter, types,
1237 prog);
1239 if (!opencl->kprinter)
1240 return isl_printer_free(p);
1242 p = ppcg_start_block(p);
1244 p = opencl_print_host_macros(p);
1246 p = gpu_print_local_declarations(p, prog);
1247 p = opencl_declare_device_arrays(p, prog);
1248 p = opencl_setup(p, opencl->input, opencl);
1249 p = opencl_allocate_device_arrays(p, prog);
1251 p = opencl_print_host_code(p, prog, tree, opencl);
1253 p = opencl_release_device_arrays(p, prog);
1254 p = opencl_release_cl_objects(p, opencl);
1256 p = ppcg_end_block(p);
1258 return p;
1261 /* Transform the code in the file called "input" by replacing
1262 * all scops by corresponding OpenCL code.
1263 * The host code is written to "output" or a name derived from
1264 * "input" if "output" is NULL.
1265 * The kernel code is placed in separate files with names
1266 * derived from "output" or "input".
1268 * We let generate_gpu do all the hard work and then let it call
1269 * us back for printing the AST in print_opencl.
1271 * To prepare for this printing, we first open the output files
1272 * and we close them after generate_gpu has finished.
1274 int generate_opencl(isl_ctx *ctx, struct ppcg_options *options,
1275 const char *input, const char *output)
1277 struct opencl_info opencl = { options, input, output };
1278 int r;
1280 opencl.kprinter = isl_printer_to_str(ctx);
1281 r = opencl_open_files(&opencl);
1283 if (r >= 0)
1284 r = generate_gpu(ctx, input, opencl.host_c, options,
1285 &print_opencl, &opencl);
1287 if (opencl_close_files(&opencl) < 0)
1288 r = -1;
1289 isl_printer_free(opencl.kprinter);
1291 return r;