gimple.h: Reorder prototypes to match .c declaration order...
[gcc.git] / gcc / tree-profile.c
index 7f184152cb79ca274842840c67327b840c6436d2..132ce0d4d13957c9bf0b02d053d81b44cd7bcffb 100644 (file)
@@ -1,6 +1,5 @@
 /* Calculate branch probabilities, and basic block execution counts.
-   Copyright (C) 1990, 1991, 1992, 1993, 1994, 1996, 1997, 1998, 1999,
-   2000, 2001, 2002, 2003, 2004  Free Software Foundation, Inc.
+   Copyright (C) 1990-2013 Free Software Foundation, Inc.
    Contributed by James E. Wilson, UC Berkeley/Cygnus Support;
    based on some ideas from Dain Samples of UC Berkeley.
    Further mangling by Bob Manson, Cygnus Support.
@@ -10,7 +9,7 @@ This file is part of GCC.
 
 GCC is free software; you can redistribute it and/or modify it under
 the terms of the GNU General Public License as published by the Free
-Software Foundation; either version 2, or (at your option) any later
+Software Foundation; either version 3, or (at your option) any later
 version.
 
 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
@@ -19,171 +18,689 @@ FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
 for more details.
 
 You should have received a copy of the GNU General Public License
-along with GCC; see the file COPYING.  If not, write to the Free
-Software Foundation, 59 Temple Place - Suite 330, Boston, MA
-02111-1307, USA.  */
+along with GCC; see the file COPYING3.  If not see
+<http://www.gnu.org/licenses/>.  */
 
 /* Generate basic block profile instrumentation and auxiliary files.
-   Profile generation is optimized, so that not all arcs in the basic
-   block graph need instrumenting. First, the BB graph is closed with
-   one entry (function start), and one exit (function exit).  Any
-   ABNORMAL_EDGE cannot be instrumented (because there is no control
-   path to place the code). We close the graph by inserting fake
-   EDGE_FAKE edges to the EXIT_BLOCK, from the sources of abnormal
-   edges that do not go to the exit_block. We ignore such abnormal
-   edges.  Naturally these fake edges are never directly traversed,
-   and so *cannot* be directly instrumented.  Some other graph
-   massaging is done. To optimize the instrumentation we generate the
-   BB minimal span tree, only edges that are not on the span tree
-   (plus the entry point) need instrumenting. From that information
-   all other edge counts can be deduced.  By construction all fake
-   edges must be on the spanning tree. We also attempt to place
-   EDGE_CRITICAL edges on the spanning tree.
-
-   The auxiliary file generated is <dumpbase>.bbg. The format is
-   described in full in gcov-io.h.  */
-
-/* ??? Register allocation should use basic block execution counts to
-   give preference to the most commonly executed blocks.  */
-
-/* ??? Should calculate branch probabilities before instrumenting code, since
-   then we can use arc counts to help decide which arcs to instrument.  */
+   Tree-based version.  See profile.c for overview.  */
 
 #include "config.h"
 #include "system.h"
 #include "coretypes.h"
 #include "tm.h"
-#include "rtl.h"
 #include "flags.h"
-#include "output.h"
-#include "regs.h"
-#include "expr.h"
 #include "function.h"
-#include "toplev.h"
+#include "basic-block.h"
+#include "diagnostic-core.h"
 #include "coverage.h"
 #include "tree.h"
-#include "tree-flow.h"
-#include "tree-dump.h"
+#include "gimple.h"
+#include "gimplify.h"
+#include "gimple-iterator.h"
+#include "gimplify-me.h"
+#include "gimple-ssa.h"
+#include "cgraph.h"
+#include "tree-cfg.h"
+#include "tree-ssanames.h"
+#include "tree-into-ssa.h"
 #include "tree-pass.h"
-#include "timevar.h"
 #include "value-prof.h"
+#include "profile.h"
+#include "target.h"
+#include "tree-cfgcleanup.h"
+#include "tree-nested.h"
 
-\f
-/* Output instructions as GIMPLE trees to increment the edge 
-   execution count, and insert them on E.  We rely on 
-   bsi_insert_on_edge to preserve the order.  */
+static GTY(()) tree gcov_type_node;
+static GTY(()) tree tree_interval_profiler_fn;
+static GTY(()) tree tree_pow2_profiler_fn;
+static GTY(()) tree tree_one_value_profiler_fn;
+static GTY(()) tree tree_indirect_call_profiler_fn;
+static GTY(()) tree tree_time_profiler_fn;
+static GTY(()) tree tree_average_profiler_fn;
+static GTY(()) tree tree_ior_profiler_fn;
 
+
+static GTY(()) tree ic_void_ptr_var;
+static GTY(()) tree ic_gcov_type_ptr_var;
+static GTY(()) tree ptr_void;
+
+/* Do initialization work for the edge profiler.  */
+
+/* Add code:
+   __thread gcov*      __gcov_indirect_call_counters; // pointer to actual counter
+   __thread void*      __gcov_indirect_call_callee; // actual callee address
+   __thread int __gcov_function_counter; // time profiler function counter
+*/
 static void
-tree_gen_edge_profiler (int edgeno, edge e)
-{
-  tree tmp1 = create_tmp_var (GCOV_TYPE_NODE, "PROF");
-  tree tmp2 = create_tmp_var (GCOV_TYPE_NODE, "PROF");
-  tree ref = tree_coverage_counter_ref (GCOV_COUNTER_ARCS, edgeno);
-  tree stmt1 = build (MODIFY_EXPR, GCOV_TYPE_NODE, tmp1, ref);
-  tree stmt2 = build (MODIFY_EXPR, GCOV_TYPE_NODE, tmp2,
-                     build (PLUS_EXPR, GCOV_TYPE_NODE, 
-                            tmp1, integer_one_node));
-  tree stmt3 = build (MODIFY_EXPR, GCOV_TYPE_NODE, ref, tmp2);
-  bsi_insert_on_edge (e, stmt1);
-  bsi_insert_on_edge (e, stmt2);
-  bsi_insert_on_edge (e, stmt3);
-}
-
-/* Output instructions as GIMPLE trees to increment the interval histogram 
-   counter.  VALUE is the expression whose value is profiled.  TAG is the 
+init_ic_make_global_vars (void)
+{
+  tree  gcov_type_ptr;
+
+  ptr_void = build_pointer_type (void_type_node);
+
+  /* Workaround for binutils bug 14342.  Once it is fixed, remove lto path.  */
+  if (flag_lto)
+    {
+      ic_void_ptr_var
+       = build_decl (UNKNOWN_LOCATION, VAR_DECL,
+                     get_identifier ("__gcov_indirect_call_callee_ltopriv"),
+                     ptr_void);
+      TREE_PUBLIC (ic_void_ptr_var) = 1;
+      DECL_COMMON (ic_void_ptr_var) = 1;
+      DECL_VISIBILITY (ic_void_ptr_var) = VISIBILITY_HIDDEN;
+      DECL_VISIBILITY_SPECIFIED (ic_void_ptr_var) = true;
+    }
+  else
+    {
+      ic_void_ptr_var
+       = build_decl (UNKNOWN_LOCATION, VAR_DECL,
+                     get_identifier ("__gcov_indirect_call_callee"),
+                     ptr_void);
+      TREE_PUBLIC (ic_void_ptr_var) = 1;
+      DECL_EXTERNAL (ic_void_ptr_var) = 1;
+    }
+  TREE_STATIC (ic_void_ptr_var) = 1;
+  DECL_ARTIFICIAL (ic_void_ptr_var) = 1;
+  DECL_INITIAL (ic_void_ptr_var) = NULL;
+  if (targetm.have_tls)
+    DECL_TLS_MODEL (ic_void_ptr_var) =
+      decl_default_tls_model (ic_void_ptr_var);
+
+  varpool_finalize_decl (ic_void_ptr_var);
+
+  gcov_type_ptr = build_pointer_type (get_gcov_type ());
+  /* Workaround for binutils bug 14342.  Once it is fixed, remove lto path.  */
+  if (flag_lto)
+    {
+      ic_gcov_type_ptr_var
+       = build_decl (UNKNOWN_LOCATION, VAR_DECL,
+                     get_identifier ("__gcov_indirect_call_counters_ltopriv"),
+                     gcov_type_ptr);
+      TREE_PUBLIC (ic_gcov_type_ptr_var) = 1;
+      DECL_COMMON (ic_gcov_type_ptr_var) = 1;
+      DECL_VISIBILITY (ic_gcov_type_ptr_var) = VISIBILITY_HIDDEN;
+      DECL_VISIBILITY_SPECIFIED (ic_gcov_type_ptr_var) = true;
+    }
+  else
+    {
+      ic_gcov_type_ptr_var
+       = build_decl (UNKNOWN_LOCATION, VAR_DECL,
+                     get_identifier ("__gcov_indirect_call_counters"),
+                     gcov_type_ptr);
+      TREE_PUBLIC (ic_gcov_type_ptr_var) = 1;
+      DECL_EXTERNAL (ic_gcov_type_ptr_var) = 1;
+    }
+  TREE_STATIC (ic_gcov_type_ptr_var) = 1;
+  DECL_ARTIFICIAL (ic_gcov_type_ptr_var) = 1;
+  DECL_INITIAL (ic_gcov_type_ptr_var) = NULL;
+  if (targetm.have_tls)
+    DECL_TLS_MODEL (ic_gcov_type_ptr_var) =
+      decl_default_tls_model (ic_gcov_type_ptr_var);
+
+  varpool_finalize_decl (ic_gcov_type_ptr_var);
+}
+
+/* Create the type and function decls for the interface with gcov.  */
+
+void
+gimple_init_edge_profiler (void)
+{
+  tree interval_profiler_fn_type;
+  tree pow2_profiler_fn_type;
+  tree one_value_profiler_fn_type;
+  tree gcov_type_ptr;
+  tree ic_profiler_fn_type;
+  tree average_profiler_fn_type;
+  tree time_profiler_fn_type;
+
+  if (!gcov_type_node)
+    {
+      gcov_type_node = get_gcov_type ();
+      gcov_type_ptr = build_pointer_type (gcov_type_node);
+
+      /* void (*) (gcov_type *, gcov_type, int, unsigned)  */
+      interval_profiler_fn_type
+             = build_function_type_list (void_type_node,
+                                         gcov_type_ptr, gcov_type_node,
+                                         integer_type_node,
+                                         unsigned_type_node, NULL_TREE);
+      tree_interval_profiler_fn
+             = build_fn_decl ("__gcov_interval_profiler",
+                                    interval_profiler_fn_type);
+      TREE_NOTHROW (tree_interval_profiler_fn) = 1;
+      DECL_ATTRIBUTES (tree_interval_profiler_fn)
+       = tree_cons (get_identifier ("leaf"), NULL,
+                    DECL_ATTRIBUTES (tree_interval_profiler_fn));
+
+      /* void (*) (gcov_type *, gcov_type)  */
+      pow2_profiler_fn_type
+             = build_function_type_list (void_type_node,
+                                         gcov_type_ptr, gcov_type_node,
+                                         NULL_TREE);
+      tree_pow2_profiler_fn = build_fn_decl ("__gcov_pow2_profiler",
+                                                  pow2_profiler_fn_type);
+      TREE_NOTHROW (tree_pow2_profiler_fn) = 1;
+      DECL_ATTRIBUTES (tree_pow2_profiler_fn)
+       = tree_cons (get_identifier ("leaf"), NULL,
+                    DECL_ATTRIBUTES (tree_pow2_profiler_fn));
+
+      /* void (*) (gcov_type *, gcov_type)  */
+      one_value_profiler_fn_type
+             = build_function_type_list (void_type_node,
+                                         gcov_type_ptr, gcov_type_node,
+                                         NULL_TREE);
+      tree_one_value_profiler_fn
+             = build_fn_decl ("__gcov_one_value_profiler",
+                                    one_value_profiler_fn_type);
+      TREE_NOTHROW (tree_one_value_profiler_fn) = 1;
+      DECL_ATTRIBUTES (tree_one_value_profiler_fn)
+       = tree_cons (get_identifier ("leaf"), NULL,
+                    DECL_ATTRIBUTES (tree_one_value_profiler_fn));
+
+      init_ic_make_global_vars ();
+
+      /* Workaround for binutils bug 14342.  Once it is fixed, remove lto path.  */
+      if (flag_lto)
+        {
+         /* void (*) (gcov_type, void *)  */
+         ic_profiler_fn_type
+                  = build_function_type_list (void_type_node,
+                                             gcov_type_ptr, gcov_type_node,
+                                             ptr_void, ptr_void,
+                                             NULL_TREE);
+         tree_indirect_call_profiler_fn
+                 = build_fn_decl ("__gcov_indirect_call_profiler",
+                                        ic_profiler_fn_type);
+        }
+      else
+        {
+         /* void (*) (gcov_type, void *)  */
+         ic_profiler_fn_type
+                  = build_function_type_list (void_type_node,
+                                             gcov_type_node,
+                                             ptr_void,
+                                             NULL_TREE);
+         tree_indirect_call_profiler_fn
+                 = build_fn_decl ("__gcov_indirect_call_profiler_v2",
+                                        ic_profiler_fn_type);
+        }
+      TREE_NOTHROW (tree_indirect_call_profiler_fn) = 1;
+      DECL_ATTRIBUTES (tree_indirect_call_profiler_fn)
+       = tree_cons (get_identifier ("leaf"), NULL,
+                    DECL_ATTRIBUTES (tree_indirect_call_profiler_fn));
+
+      /* void (*) (gcov_type *, gcov_type, void *)  */
+      time_profiler_fn_type
+              = build_function_type_list (void_type_node,
+                                         gcov_type_ptr, NULL_TREE);
+      tree_time_profiler_fn
+             = build_fn_decl ("__gcov_time_profiler",
+                                    time_profiler_fn_type);
+      TREE_NOTHROW (tree_time_profiler_fn) = 1;
+      DECL_ATTRIBUTES (tree_time_profiler_fn)
+       = tree_cons (get_identifier ("leaf"), NULL,
+                    DECL_ATTRIBUTES (tree_time_profiler_fn));
+
+      /* void (*) (gcov_type *, gcov_type)  */
+      average_profiler_fn_type
+             = build_function_type_list (void_type_node,
+                                         gcov_type_ptr, gcov_type_node, NULL_TREE);
+      tree_average_profiler_fn
+             = build_fn_decl ("__gcov_average_profiler",
+                                    average_profiler_fn_type);
+      TREE_NOTHROW (tree_average_profiler_fn) = 1;
+      DECL_ATTRIBUTES (tree_average_profiler_fn)
+       = tree_cons (get_identifier ("leaf"), NULL,
+                    DECL_ATTRIBUTES (tree_average_profiler_fn));
+      tree_ior_profiler_fn
+             = build_fn_decl ("__gcov_ior_profiler",
+                                    average_profiler_fn_type);
+      TREE_NOTHROW (tree_ior_profiler_fn) = 1;
+      DECL_ATTRIBUTES (tree_ior_profiler_fn)
+       = tree_cons (get_identifier ("leaf"), NULL,
+                    DECL_ATTRIBUTES (tree_ior_profiler_fn));
+
+      /* LTO streamer needs assembler names.  Because we create these decls
+         late, we need to initialize them by hand.  */
+      DECL_ASSEMBLER_NAME (tree_interval_profiler_fn);
+      DECL_ASSEMBLER_NAME (tree_pow2_profiler_fn);
+      DECL_ASSEMBLER_NAME (tree_one_value_profiler_fn);
+      DECL_ASSEMBLER_NAME (tree_indirect_call_profiler_fn);
+      DECL_ASSEMBLER_NAME (tree_time_profiler_fn);
+      DECL_ASSEMBLER_NAME (tree_average_profiler_fn);
+      DECL_ASSEMBLER_NAME (tree_ior_profiler_fn);
+    }
+}
+
+/* Output instructions as GIMPLE trees to increment the edge
+   execution count, and insert them on E.  We rely on
+   gsi_insert_on_edge to preserve the order.  */
+
+void
+gimple_gen_edge_profiler (int edgeno, edge e)
+{
+  tree ref, one, gcov_type_tmp_var;
+  gimple stmt1, stmt2, stmt3;
+
+  ref = tree_coverage_counter_ref (GCOV_COUNTER_ARCS, edgeno);
+  one = build_int_cst (gcov_type_node, 1);
+  gcov_type_tmp_var = make_temp_ssa_name (gcov_type_node,
+                                         NULL, "PROF_edge_counter");
+  stmt1 = gimple_build_assign (gcov_type_tmp_var, ref);
+  gcov_type_tmp_var = make_temp_ssa_name (gcov_type_node,
+                                         NULL, "PROF_edge_counter");
+  stmt2 = gimple_build_assign_with_ops (PLUS_EXPR, gcov_type_tmp_var,
+                                       gimple_assign_lhs (stmt1), one);
+  stmt3 = gimple_build_assign (unshare_expr (ref), gimple_assign_lhs (stmt2));
+  gsi_insert_on_edge (e, stmt1);
+  gsi_insert_on_edge (e, stmt2);
+  gsi_insert_on_edge (e, stmt3);
+}
+
+/* Emits code to get VALUE to instrument at GSI, and returns the
+   variable containing the value.  */
+
+static tree
+prepare_instrumented_value (gimple_stmt_iterator *gsi, histogram_value value)
+{
+  tree val = value->hvalue.value;
+  if (POINTER_TYPE_P (TREE_TYPE (val)))
+    val = fold_convert (build_nonstandard_integer_type
+                         (TYPE_PRECISION (TREE_TYPE (val)), 1), val);
+  return force_gimple_operand_gsi (gsi, fold_convert (gcov_type_node, val),
+                                  true, NULL_TREE, true, GSI_SAME_STMT);
+}
+
+/* Output instructions as GIMPLE trees to increment the interval histogram
+   counter.  VALUE is the expression whose value is profiled.  TAG is the
    tag of the section for counters, BASE is offset of the counter position.  */
 
-static void
-tree_gen_interval_profiler (histogram_value value ATTRIBUTE_UNUSED, 
-                           unsigned tag ATTRIBUTE_UNUSED, 
-                           unsigned base ATTRIBUTE_UNUSED)
+void
+gimple_gen_interval_profiler (histogram_value value, unsigned tag, unsigned base)
 {
-  /* FIXME implement this.  */
-  abort ();
+  gimple stmt = value->hvalue.stmt;
+  gimple_stmt_iterator gsi = gsi_for_stmt (stmt);
+  tree ref = tree_coverage_counter_ref (tag, base), ref_ptr;
+  gimple call;
+  tree val;
+  tree start = build_int_cst_type (integer_type_node,
+                                  value->hdata.intvl.int_start);
+  tree steps = build_int_cst_type (unsigned_type_node,
+                                  value->hdata.intvl.steps);
+
+  ref_ptr = force_gimple_operand_gsi (&gsi,
+                                     build_addr (ref, current_function_decl),
+                                     true, NULL_TREE, true, GSI_SAME_STMT);
+  val = prepare_instrumented_value (&gsi, value);
+  call = gimple_build_call (tree_interval_profiler_fn, 4,
+                           ref_ptr, val, start, steps);
+  gsi_insert_before (&gsi, call, GSI_NEW_STMT);
 }
 
-/* Output instructions as GIMPLE trees to increment the power of two histogram 
-   counter.  VALUE is the expression whose value is profiled.  TAG is the tag 
+/* Output instructions as GIMPLE trees to increment the power of two histogram
+   counter.  VALUE is the expression whose value is profiled.  TAG is the tag
    of the section for counters, BASE is offset of the counter position.  */
 
-static void
-tree_gen_pow2_profiler (histogram_value value ATTRIBUTE_UNUSED, 
-                       unsigned tag ATTRIBUTE_UNUSED,
-                       unsigned base ATTRIBUTE_UNUSED)
+void
+gimple_gen_pow2_profiler (histogram_value value, unsigned tag, unsigned base)
 {
-  /* FIXME implement this.  */
-  abort ();
+  gimple stmt = value->hvalue.stmt;
+  gimple_stmt_iterator gsi = gsi_for_stmt (stmt);
+  tree ref_ptr = tree_coverage_counter_addr (tag, base);
+  gimple call;
+  tree val;
+
+  ref_ptr = force_gimple_operand_gsi (&gsi, ref_ptr,
+                                     true, NULL_TREE, true, GSI_SAME_STMT);
+  val = prepare_instrumented_value (&gsi, value);
+  call = gimple_build_call (tree_pow2_profiler_fn, 2, ref_ptr, val);
+  gsi_insert_before (&gsi, call, GSI_NEW_STMT);
 }
 
 /* Output instructions as GIMPLE trees for code to find the most common value.
    VALUE is the expression whose value is profiled.  TAG is the tag of the
    section for counters, BASE is offset of the counter position.  */
 
-static void
-tree_gen_one_value_profiler (histogram_value value ATTRIBUTE_UNUSED, 
-                           unsigned tag ATTRIBUTE_UNUSED,
-                           unsigned base ATTRIBUTE_UNUSED)
+void
+gimple_gen_one_value_profiler (histogram_value value, unsigned tag, unsigned base)
 {
-  /* FIXME implement this.  */
-  abort ();
+  gimple stmt = value->hvalue.stmt;
+  gimple_stmt_iterator gsi = gsi_for_stmt (stmt);
+  tree ref_ptr = tree_coverage_counter_addr (tag, base);
+  gimple call;
+  tree val;
+
+  ref_ptr = force_gimple_operand_gsi (&gsi, ref_ptr,
+                                     true, NULL_TREE, true, GSI_SAME_STMT);
+  val = prepare_instrumented_value (&gsi, value);
+  call = gimple_build_call (tree_one_value_profiler_fn, 2, ref_ptr, val);
+  gsi_insert_before (&gsi, call, GSI_NEW_STMT);
+}
+
+
+/* Output instructions as GIMPLE trees for code to find the most
+   common called function in indirect call.
+   VALUE is the call expression whose indirect callee is profiled.
+   TAG is the tag of the section for counters, BASE is offset of the
+   counter position.  */
+
+void
+gimple_gen_ic_profiler (histogram_value value, unsigned tag, unsigned base)
+{
+  tree tmp1;
+  gimple stmt1, stmt2, stmt3;
+  gimple stmt = value->hvalue.stmt;
+  gimple_stmt_iterator gsi = gsi_for_stmt (stmt);
+  tree ref_ptr = tree_coverage_counter_addr (tag, base);
+
+  ref_ptr = force_gimple_operand_gsi (&gsi, ref_ptr,
+                                     true, NULL_TREE, true, GSI_SAME_STMT);
+
+  /* Insert code:
+
+    stmt1: __gcov_indirect_call_counters = get_relevant_counter_ptr ();
+    stmt2: tmp1 = (void *) (indirect call argument value)
+    stmt3: __gcov_indirect_call_callee = tmp1;
+   */
+
+  stmt1 = gimple_build_assign (ic_gcov_type_ptr_var, ref_ptr);
+  tmp1 = make_temp_ssa_name (ptr_void, NULL, "PROF");
+  stmt2 = gimple_build_assign (tmp1, unshare_expr (value->hvalue.value));
+  stmt3 = gimple_build_assign (ic_void_ptr_var, gimple_assign_lhs (stmt2));
+
+  gsi_insert_before (&gsi, stmt1, GSI_SAME_STMT);
+  gsi_insert_before (&gsi, stmt2, GSI_SAME_STMT);
+  gsi_insert_before (&gsi, stmt3, GSI_SAME_STMT);
 }
 
-/* Output instructions as GIMPLE trees for code to find the most common value 
+
+/* Output instructions as GIMPLE trees for code to find the most
+   common called function in indirect call. Insert instructions at the
+   beginning of every possible called function.
+  */
+
+void
+gimple_gen_ic_func_profiler (void)
+{
+  struct cgraph_node * c_node = cgraph_get_node (current_function_decl);
+  gimple_stmt_iterator gsi;
+  gimple stmt1, stmt2;
+  tree tree_uid, cur_func, void0;
+
+  if (cgraph_only_called_directly_p (c_node))
+    return;
+
+  gimple_init_edge_profiler ();
+
+  /* Insert code:
+
+    stmt1: __gcov_indirect_call_profiler_v2 (profile_id,
+                                            &current_function_decl)
+   */
+  gsi = gsi_after_labels (split_edge (single_succ_edge (ENTRY_BLOCK_PTR)));
+
+  cur_func = force_gimple_operand_gsi (&gsi,
+                                      build_addr (current_function_decl,
+                                                  current_function_decl),
+                                      true, NULL_TREE,
+                                      true, GSI_SAME_STMT);
+  tree_uid = build_int_cst
+             (gcov_type_node, cgraph_get_node (current_function_decl)->profile_id);
+  /* Workaround for binutils bug 14342.  Once it is fixed, remove lto path.  */
+  if (flag_lto)
+    {
+      tree counter_ptr, ptr_var;
+      counter_ptr = force_gimple_operand_gsi (&gsi, ic_gcov_type_ptr_var,
+                                             true, NULL_TREE, true,
+                                             GSI_SAME_STMT);
+      ptr_var = force_gimple_operand_gsi (&gsi, ic_void_ptr_var,
+                                         true, NULL_TREE, true,
+                                         GSI_SAME_STMT);
+
+      stmt1 = gimple_build_call (tree_indirect_call_profiler_fn, 4,
+                                counter_ptr, tree_uid, cur_func, ptr_var);
+    }
+  else
+    {
+      stmt1 = gimple_build_call (tree_indirect_call_profiler_fn, 2,
+                                tree_uid, cur_func);
+    }
+  gsi_insert_before (&gsi, stmt1, GSI_SAME_STMT);
+
+  /* Set __gcov_indirect_call_callee to 0,
+     so that calls from other modules won't get misattributed
+     to the last caller of the current callee. */
+  void0 = build_int_cst (build_pointer_type (void_type_node), 0);
+  stmt2 = gimple_build_assign (ic_void_ptr_var, void0);
+  gsi_insert_before (&gsi, stmt2, GSI_SAME_STMT);
+}
+
+/* Output instructions as GIMPLE tree at the beginning for each function.
+   TAG is the tag of the section for counters, BASE is offset of the
+   counter position and GSI is the iterator we place the counter.  */
+
+void
+gimple_gen_time_profiler (unsigned tag, unsigned base,
+                          gimple_stmt_iterator &gsi)
+{
+  tree ref_ptr = tree_coverage_counter_addr (tag, base);
+  gimple call;
+
+  ref_ptr = force_gimple_operand_gsi (&gsi, ref_ptr,
+                                     true, NULL_TREE, true, GSI_SAME_STMT);
+  call = gimple_build_call (tree_time_profiler_fn, 1, ref_ptr);
+  gsi_insert_before (&gsi, call, GSI_NEW_STMT);
+}
+
+/* Output instructions as GIMPLE trees for code to find the most common value
    of a difference between two evaluations of an expression.
    VALUE is the expression whose value is profiled.  TAG is the tag of the
    section for counters, BASE is offset of the counter position.  */
 
-static void
-tree_gen_const_delta_profiler (histogram_value value ATTRIBUTE_UNUSED, 
-                               unsigned tag ATTRIBUTE_UNUSED,
-                               unsigned base ATTRIBUTE_UNUSED)
+void
+gimple_gen_const_delta_profiler (histogram_value value ATTRIBUTE_UNUSED,
+                              unsigned tag ATTRIBUTE_UNUSED,
+                              unsigned base ATTRIBUTE_UNUSED)
 {
   /* FIXME implement this.  */
-  abort ();
+#ifdef ENABLE_CHECKING
+  internal_error ("unimplemented functionality");
+#endif
+  gcc_unreachable ();
 }
 
-/* Return 1 if tree-based profiling is in effect, else 0.
-   If it is, set up hooks for tree-based profiling.
-   Gate for pass_tree_profile.  */
+/* Output instructions as GIMPLE trees to increment the average histogram
+   counter.  VALUE is the expression whose value is profiled.  TAG is the
+   tag of the section for counters, BASE is offset of the counter position.  */
+
+void
+gimple_gen_average_profiler (histogram_value value, unsigned tag, unsigned base)
+{
+  gimple stmt = value->hvalue.stmt;
+  gimple_stmt_iterator gsi = gsi_for_stmt (stmt);
+  tree ref_ptr = tree_coverage_counter_addr (tag, base);
+  gimple call;
+  tree val;
+
+  ref_ptr = force_gimple_operand_gsi (&gsi, ref_ptr,
+                                     true, NULL_TREE,
+                                     true, GSI_SAME_STMT);
+  val = prepare_instrumented_value (&gsi, value);
+  call = gimple_build_call (tree_average_profiler_fn, 2, ref_ptr, val);
+  gsi_insert_before (&gsi, call, GSI_NEW_STMT);
+}
+
+/* Output instructions as GIMPLE trees to increment the ior histogram
+   counter.  VALUE is the expression whose value is profiled.  TAG is the
+   tag of the section for counters, BASE is offset of the counter position.  */
+
+void
+gimple_gen_ior_profiler (histogram_value value, unsigned tag, unsigned base)
+{
+  gimple stmt = value->hvalue.stmt;
+  gimple_stmt_iterator gsi = gsi_for_stmt (stmt);
+  tree ref_ptr = tree_coverage_counter_addr (tag, base);
+  gimple call;
+  tree val;
+
+  ref_ptr = force_gimple_operand_gsi (&gsi, ref_ptr,
+                                     true, NULL_TREE, true, GSI_SAME_STMT);
+  val = prepare_instrumented_value (&gsi, value);
+  call = gimple_build_call (tree_ior_profiler_fn, 2, ref_ptr, val);
+  gsi_insert_before (&gsi, call, GSI_NEW_STMT);
+}
+
+/* Profile all functions in the callgraph.  */
 
-static bool do_tree_profiling (void)
+static unsigned int
+tree_profiling (void)
 {
-  if (flag_tree_based_profiling)
+  struct cgraph_node *node;
+
+  /* This is a small-ipa pass that gets called only once, from
+     cgraphunit.c:ipa_passes().  */
+  gcc_assert (cgraph_state == CGRAPH_STATE_IPA_SSA);
+
+  init_node_map (true);
+
+  FOR_EACH_DEFINED_FUNCTION (node)
+    {
+      if (!gimple_has_body_p (node->decl))
+       continue;
+
+      /* Don't profile functions produced for builtin stuff.  */
+      if (DECL_SOURCE_LOCATION (node->decl) == BUILTINS_LOCATION)
+       continue;
+
+      push_cfun (DECL_STRUCT_FUNCTION (node->decl));
+
+      /* Local pure-const may imply need to fixup the cfg.  */
+      if (execute_fixup_cfg () & TODO_cleanup_cfg)
+       cleanup_tree_cfg ();
+
+      branch_prob ();
+
+      if (! flag_branch_probabilities
+         && flag_profile_values)
+       gimple_gen_ic_func_profiler ();
+
+      if (flag_branch_probabilities
+         && flag_profile_values
+         && flag_value_profile_transformations)
+       gimple_value_profile_transformations ();
+
+      /* The above could hose dominator info.  Currently there is
+        none coming in, this is a safety valve.  It should be
+        easy to adjust it, if and when there is some.  */
+      free_dominance_info (CDI_DOMINATORS);
+      free_dominance_info (CDI_POST_DOMINATORS);
+      pop_cfun ();
+    }
+
+  /* Drop pure/const flags from instrumented functions.  */
+  FOR_EACH_DEFINED_FUNCTION (node)
     {
-      tree_register_profile_hooks ();
-      tree_register_value_prof_hooks ();
+      if (!gimple_has_body_p (node->decl)
+         || !(!node->clone_of
+         || node->decl != node->clone_of->decl))
+       continue;
+
+      /* Don't profile functions produced for builtin stuff.  */
+      if (DECL_SOURCE_LOCATION (node->decl) == BUILTINS_LOCATION)
+       continue;
+
+      cgraph_set_const_flag (node, false, false);
+      cgraph_set_pure_flag (node, false, false);
     }
-  return flag_tree_based_profiling;
+
+  /* Update call statements and rebuild the cgraph.  */
+  FOR_EACH_DEFINED_FUNCTION (node)
+    {
+      basic_block bb;
+
+      if (!gimple_has_body_p (node->decl)
+         || !(!node->clone_of
+         || node->decl != node->clone_of->decl))
+       continue;
+
+      /* Don't profile functions produced for builtin stuff.  */
+      if (DECL_SOURCE_LOCATION (node->decl) == BUILTINS_LOCATION)
+       continue;
+
+      push_cfun (DECL_STRUCT_FUNCTION (node->decl));
+
+      FOR_EACH_BB (bb)
+       {
+         gimple_stmt_iterator gsi;
+         for (gsi = gsi_start_bb (bb); !gsi_end_p (gsi); gsi_next (&gsi))
+           {
+             gimple stmt = gsi_stmt (gsi);
+             if (is_gimple_call (stmt))
+               update_stmt (stmt);
+           }
+       }
+
+      /* re-merge split blocks.  */
+      cleanup_tree_cfg ();
+      update_ssa (TODO_update_ssa);
+
+      rebuild_cgraph_edges ();
+
+      pop_cfun ();
+    }
+
+  handle_missing_profiles ();
+
+  del_node_map ();
+  return 0;
 }
 
-/* Return the file on which profile dump output goes, if any.  */
+/* When profile instrumentation, use or test coverage shall be performed.  */
 
-static FILE *tree_profile_dump_file (void) {
-  return dump_file;
+static bool
+gate_tree_profile_ipa (void)
+{
+  return (!in_lto_p
+         && (flag_branch_probabilities || flag_test_coverage
+             || profile_arc_flag));
 }
 
-struct tree_opt_pass pass_tree_profile = 
+namespace {
+
+const pass_data pass_data_ipa_tree_profile =
 {
-  "tree_profile",                      /* name */
-  do_tree_profiling,                   /* gate */
-  branch_prob,                         /* execute */
-  NULL,                                        /* sub */
-  NULL,                                        /* next */
-  0,                                   /* static_pass_number */
-  TV_BRANCH_PROB,                      /* tv_id */
-  PROP_gimple_leh | PROP_cfg,          /* properties_required */
-  PROP_gimple_leh | PROP_cfg,          /* properties_provided */
-  0,                                   /* properties_destroyed */
-  0,                                   /* todo_flags_start */
-  TODO_verify_stmts                    /* todo_flags_finish */
+  SIMPLE_IPA_PASS, /* type */
+  "profile", /* name */
+  OPTGROUP_NONE, /* optinfo_flags */
+  true, /* has_gate */
+  true, /* has_execute */
+  TV_IPA_PROFILE, /* tv_id */
+  0, /* properties_required */
+  0, /* properties_provided */
+  0, /* properties_destroyed */
+  0, /* todo_flags_start */
+  0, /* todo_flags_finish */
 };
 
-struct profile_hooks tree_profile_hooks =
+class pass_ipa_tree_profile : public simple_ipa_opt_pass
 {
-  tree_gen_edge_profiler,      /* gen_edge_profiler */
-  tree_gen_interval_profiler,   /* gen_interval_profiler */
-  tree_gen_pow2_profiler,       /* gen_pow2_profiler */
-  tree_gen_one_value_profiler,  /* gen_one_value_profiler */
-  tree_gen_const_delta_profiler,/* gen_const_delta_profiler */
-  tree_profile_dump_file       /* profile_dump_file */
-};
+public:
+  pass_ipa_tree_profile (gcc::context *ctxt)
+    : simple_ipa_opt_pass (pass_data_ipa_tree_profile, ctxt)
+  {}
+
+  /* opt_pass methods: */
+  bool gate () { return gate_tree_profile_ipa (); }
+  unsigned int execute () { return tree_profiling (); }
+
+}; // class pass_ipa_tree_profile
+
+} // anon namespace
+
+simple_ipa_opt_pass *
+make_pass_ipa_tree_profile (gcc::context *ctxt)
+{
+  return new pass_ipa_tree_profile (ctxt);
+}
+
+#include "gt-tree-profile.h"