1.0.9.54: clean up old pv updating code
[sbcl/lichteblau.git] / src / compiler / entry.lisp
blob6863e053fb92673a956d929a4ac8854a5f171c99
1 ;;;; Code in this file handles VM-independent details of run-time
2 ;;;; function representation that primarily concern IR2 conversion and
3 ;;;; the dumper/loader.
5 ;;;; This software is part of the SBCL system. See the README file for
6 ;;;; more information.
7 ;;;;
8 ;;;; This software is derived from the CMU CL system, which was
9 ;;;; written at Carnegie Mellon University and released into the
10 ;;;; public domain. The software is in the public domain and is
11 ;;;; provided with absolutely no warranty. See the COPYING and CREDITS
12 ;;;; files for more information.
14 (in-package "SB!C")
16 ;;; This phase runs before IR2 conversion, initializing each XEP's
17 ;;; ENTRY-INFO structure. We call the VM-supplied
18 ;;; SELECT-COMPONENT-FORMAT function to make VM-dependent
19 ;;; initializations in the IR2-COMPONENT. This includes setting the
20 ;;; IR2-COMPONENT-KIND and allocating fixed implementation overhead in
21 ;;; the constant pool. If there was a forward reference to a function,
22 ;;; then the ENTRY-INFO will already exist, but will be uninitialized.
23 (defun entry-analyze (component)
24 (let ((2comp (component-info component)))
25 (dolist (fun (component-lambdas component))
26 (when (xep-p fun)
27 (let ((info (or (leaf-info fun)
28 (setf (leaf-info fun) (make-entry-info)))))
29 (compute-entry-info fun info)
30 (push info (ir2-component-entries 2comp))))))
31 (select-component-format component)
32 (values))
34 ;;; Initialize INFO structure to correspond to the XEP LAMBDA FUN.
35 (defun compute-entry-info (fun info)
36 (declare (type clambda fun) (type entry-info info))
37 (let ((bind (lambda-bind fun))
38 (internal-fun (functional-entry-fun fun)))
39 (setf (entry-info-closure-tn info)
40 (if (physenv-closure (lambda-physenv fun))
41 (make-normal-tn *backend-t-primitive-type*)
42 nil))
43 (setf (entry-info-offset info) (gen-label))
44 (setf (entry-info-name info)
45 (leaf-debug-name internal-fun))
46 (setf (entry-info-xref info)
47 (pack-xref-data (functional-xref internal-fun)))
48 (when (policy bind (>= debug 1))
49 (let ((args (functional-arg-documentation internal-fun)))
50 (aver (not (eq args :unspecified)))
51 (setf (entry-info-arguments info) args))
52 (setf (entry-info-type info) (type-specifier (leaf-type internal-fun)))))
53 (values))
55 ;;; Replace all references to COMPONENT's non-closure XEPs that appear
56 ;;; in top level or externally-referenced components, changing to
57 ;;; :TOPLEVEL-XEP FUNCTIONALs. If the cross-component ref is not in a
58 ;;; :TOPLEVEL/externally-referenced component, or is to a closure,
59 ;;; then substitution is suppressed.
60 ;;;
61 ;;; When a cross-component ref is not substituted, we return T to
62 ;;; indicate that early deletion of this component's IR1 should not be
63 ;;; done. We also return T if this component contains
64 ;;; :TOPLEVEL/externally-referenced lambdas (though it is not a
65 ;;; :TOPLEVEL component.)
66 ;;;
67 ;;; We deliberately don't use the normal reference deletion, since we
68 ;;; don't want to trigger deletion of the XEP (although it shouldn't
69 ;;; hurt, since this is called after COMPONENT is compiled.) Instead,
70 ;;; we just clobber the REF-LEAF.
71 (defun replace-toplevel-xeps (component)
72 (let ((res nil))
73 (dolist (lambda (component-lambdas component))
74 (case (functional-kind lambda)
75 (:external
76 (unless (lambda-has-external-references-p lambda)
77 (let* ((ef (functional-entry-fun lambda))
78 (new (make-functional
79 :kind :toplevel-xep
80 :info (leaf-info lambda)
81 :%source-name (functional-%source-name ef)
82 :%debug-name (functional-%debug-name ef)
83 :lexenv (make-null-lexenv)))
84 (closure (physenv-closure
85 (lambda-physenv (main-entry ef)))))
86 (dolist (ref (leaf-refs lambda))
87 (let ((ref-component (node-component ref)))
88 (cond ((eq ref-component component))
89 ((or (not (component-toplevelish-p ref-component))
90 closure)
91 (setq res t))
93 (setf (ref-leaf ref) new)
94 (push ref (leaf-refs new))
95 (setf (leaf-refs lambda)
96 (delq ref (leaf-refs lambda))))))))))
97 (:toplevel
98 (setq res t))))
99 res))