mirror of https://github.com/YosysHQ/yosys.git
449 lines
14 KiB
C++
449 lines
14 KiB
C++
/*
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* yosys -- Yosys Open SYnthesis Suite
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*
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* Copyright (C) 2012 Claire Xenia Wolf <claire@yosyshq.com>
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*
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* Permission to use, copy, modify, and/or distribute this software for any
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* purpose with or without fee is hereby granted, provided that the above
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* copyright notice and this permission notice appear in all copies.
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*
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* THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
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* WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
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* MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
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* ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
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* WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
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* ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
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* OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
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*
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*/
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#include "kernel/yosys.h"
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#ifndef LOG_H
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#define LOG_H
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#include <time.h>
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#include <regex>
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#define YS_REGEX_COMPILE(param) std::regex(param, \
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std::regex_constants::nosubs | \
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std::regex_constants::optimize | \
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std::regex_constants::egrep)
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#define YS_REGEX_COMPILE_WITH_SUBS(param) std::regex(param, \
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std::regex_constants::optimize | \
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std::regex_constants::egrep)
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#if defined(_WIN32)
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# include <intrin.h>
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#else
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# include <sys/time.h>
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# include <sys/resource.h>
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# if defined(__unix__) || (defined(__APPLE__) && defined(__MACH__))
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# include <signal.h>
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# endif
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#endif
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#if defined(_MSC_VER)
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// At least this is not in MSVC++ 2013.
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# define __PRETTY_FUNCTION__ __FUNCTION__
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#endif
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// from libs/sha1/sha1.h
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class SHA1;
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YOSYS_NAMESPACE_BEGIN
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#define S__LINE__sub2(x) #x
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#define S__LINE__sub1(x) S__LINE__sub2(x)
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#define S__LINE__ S__LINE__sub1(__LINE__)
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// YS_DEBUGTRAP is a macro that is functionally equivalent to a breakpoint
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// if the platform provides such functionality, and does nothing otherwise.
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// If no debugger is attached, it starts a just-in-time debugger if available,
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// and crashes the process otherwise.
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#if defined(_WIN32)
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# define YS_DEBUGTRAP __debugbreak()
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#else
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# ifndef __has_builtin
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// __has_builtin is a GCC/Clang extension; on a different compiler (or old enough GCC/Clang)
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// that does not have it, using __has_builtin(...) is a syntax error.
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# define __has_builtin(x) 0
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# endif
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# if __has_builtin(__builtin_debugtrap)
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# define YS_DEBUGTRAP __builtin_debugtrap()
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# elif defined(__unix__) || (defined(__APPLE__) && defined(__MACH__))
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# define YS_DEBUGTRAP raise(SIGTRAP)
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# else
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# define YS_DEBUGTRAP do {} while(0)
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# endif
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#endif
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// YS_DEBUGTRAP_IF_DEBUGGING is a macro that is functionally equivalent to a breakpoint
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// if a debugger is attached, and does nothing otherwise.
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#if defined(_WIN32)
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# define YS_DEBUGTRAP_IF_DEBUGGING do { if (IsDebuggerPresent()) DebugBreak(); } while(0)
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# elif defined(__unix__) || (defined(__APPLE__) && defined(__MACH__))
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// There is no reliable (or portable) *nix equivalent of IsDebuggerPresent(). However,
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// debuggers will stop when SIGTRAP is raised, even if the action is set to ignore.
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# define YS_DEBUGTRAP_IF_DEBUGGING do { \
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auto old = signal(SIGTRAP, SIG_IGN); raise(SIGTRAP); signal(SIGTRAP, old); \
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} while(0)
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#else
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# define YS_DEBUGTRAP_IF_DEBUGGING do {} while(0)
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#endif
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struct log_cmd_error_exception { };
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extern std::vector<FILE*> log_files;
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extern std::vector<std::ostream*> log_streams;
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extern std::vector<std::string> log_scratchpads;
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extern std::map<std::string, std::set<std::string>> log_hdump;
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extern std::vector<std::regex> log_warn_regexes, log_nowarn_regexes, log_werror_regexes;
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extern std::set<std::string> log_warnings, log_experimentals, log_experimentals_ignored;
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extern int log_warnings_count;
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extern int log_warnings_count_noexpect;
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extern bool log_expect_no_warnings;
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extern bool log_hdump_all;
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extern FILE *log_errfile;
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extern SHA1 *log_hasher;
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extern bool log_time;
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extern bool log_error_stderr;
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extern bool log_cmd_error_throw;
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extern bool log_quiet_warnings;
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extern int log_verbose_level;
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extern string log_last_error;
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extern void (*log_error_atexit)();
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extern int log_make_debug;
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extern int log_force_debug;
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extern int log_debug_suppressed;
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void logv(const char *format, va_list ap);
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void logv_header(RTLIL::Design *design, const char *format, va_list ap);
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void logv_warning(const char *format, va_list ap);
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void logv_warning_noprefix(const char *format, va_list ap);
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[[noreturn]] void logv_error(const char *format, va_list ap);
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void log(const char *format, ...) YS_ATTRIBUTE(format(printf, 1, 2));
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void log_header(RTLIL::Design *design, const char *format, ...) YS_ATTRIBUTE(format(printf, 2, 3));
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void log_warning(const char *format, ...) YS_ATTRIBUTE(format(printf, 1, 2));
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void log_experimental(const char *format, ...) YS_ATTRIBUTE(format(printf, 1, 2));
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// Log with filename to report a problem in a source file.
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void log_file_warning(const std::string &filename, int lineno, const char *format, ...) YS_ATTRIBUTE(format(printf, 3, 4));
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void log_file_info(const std::string &filename, int lineno, const char *format, ...) YS_ATTRIBUTE(format(printf, 3, 4));
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void log_warning_noprefix(const char *format, ...) YS_ATTRIBUTE(format(printf, 1, 2));
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[[noreturn]] void log_error(const char *format, ...) YS_ATTRIBUTE(format(printf, 1, 2));
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[[noreturn]] void log_file_error(const string &filename, int lineno, const char *format, ...) YS_ATTRIBUTE(format(printf, 3, 4));
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[[noreturn]] void log_cmd_error(const char *format, ...) YS_ATTRIBUTE(format(printf, 1, 2));
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#ifndef NDEBUG
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static inline bool ys_debug(int n = 0) { if (log_force_debug) return true; log_debug_suppressed += n; return false; }
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#else
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static inline bool ys_debug(int = 0) { return false; }
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#endif
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# define log_debug(...) do { if (ys_debug(1)) log(__VA_ARGS__); } while (0)
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static inline void log_suppressed() {
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if (log_debug_suppressed && !log_make_debug) {
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log("<suppressed ~%d debug messages>\n", log_debug_suppressed);
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log_debug_suppressed = 0;
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}
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}
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struct LogMakeDebugHdl {
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bool status = false;
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LogMakeDebugHdl(bool start_on = false) {
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if (start_on)
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on();
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}
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~LogMakeDebugHdl() {
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off();
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}
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void on() {
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if (status) return;
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status=true;
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log_make_debug++;
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}
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void off_silent() {
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if (!status) return;
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status=false;
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log_make_debug--;
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}
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void off() {
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off_silent();
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}
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};
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void log_spacer();
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void log_push();
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void log_pop();
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void log_backtrace(const char *prefix, int levels);
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void log_reset_stack();
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void log_flush();
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struct LogExpectedItem
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{
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LogExpectedItem(const std::regex &pat, int expected) :
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pattern(pat), expected_count(expected), current_count(0) {}
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LogExpectedItem() : expected_count(0), current_count(0) {}
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std::regex pattern;
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int expected_count;
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int current_count;
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};
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extern dict<std::string, LogExpectedItem> log_expect_log, log_expect_warning, log_expect_error;
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void log_check_expected();
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const char *log_signal(const RTLIL::SigSpec &sig, bool autoint = true);
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const char *log_const(const RTLIL::Const &value, bool autoint = true);
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const char *log_id(const RTLIL::IdString &id);
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template<typename T> static inline const char *log_id(T *obj, const char *nullstr = nullptr) {
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if (nullstr && obj == nullptr)
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return nullstr;
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return log_id(obj->name);
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}
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void log_module(RTLIL::Module *module, std::string indent = "");
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void log_cell(RTLIL::Cell *cell, std::string indent = "");
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void log_wire(RTLIL::Wire *wire, std::string indent = "");
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#ifndef NDEBUG
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static inline void log_assert_worker(bool cond, const char *expr, const char *file, int line) {
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if (!cond) log_error("Assert `%s' failed in %s:%d.\n", expr, file, line);
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}
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# define log_assert(_assert_expr_) YOSYS_NAMESPACE_PREFIX log_assert_worker(_assert_expr_, #_assert_expr_, __FILE__, __LINE__)
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#else
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# define log_assert(_assert_expr_) do { if (0) { (void)(_assert_expr_); } } while(0)
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#endif
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#define log_abort() YOSYS_NAMESPACE_PREFIX log_error("Abort in %s:%d.\n", __FILE__, __LINE__)
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#define log_ping() YOSYS_NAMESPACE_PREFIX log("-- %s:%d %s --\n", __FILE__, __LINE__, __PRETTY_FUNCTION__)
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// ---------------------------------------------------
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// This is the magic behind the code coverage counters
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// ---------------------------------------------------
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#if defined(YOSYS_ENABLE_COVER) && (defined(__linux__) || defined(__FreeBSD__))
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#define cover(_id) do { \
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static CoverData __d __attribute__((section("yosys_cover_list"), aligned(1), used)) = { __FILE__, __FUNCTION__, _id, __LINE__, 0 }; \
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__d.counter++; \
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} while (0)
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struct CoverData {
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const char *file, *func, *id;
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int line, counter;
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} YS_ATTRIBUTE(packed);
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// this two symbols are created by the linker for the "yosys_cover_list" ELF section
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extern "C" struct CoverData __start_yosys_cover_list[];
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extern "C" struct CoverData __stop_yosys_cover_list[];
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extern dict<std::string, std::pair<std::string, int>> extra_coverage_data;
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void cover_extra(std::string parent, std::string id, bool increment = true);
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dict<std::string, std::pair<std::string, int>> get_coverage_data();
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#define cover_list(_id, ...) do { cover(_id); \
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std::string r = cover_list_worker(_id, __VA_ARGS__); \
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log_assert(r.empty()); \
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} while (0)
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static inline std::string cover_list_worker(std::string, std::string last) {
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return last;
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}
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template<typename... T>
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std::string cover_list_worker(std::string prefix, std::string first, T... rest) {
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std::string selected = cover_list_worker(prefix, rest...);
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cover_extra(prefix, prefix + "." + first, first == selected);
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return first == selected ? "" : selected;
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}
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#else
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# define cover(...) do { } while (0)
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# define cover_list(...) do { } while (0)
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#endif
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// ------------------------------------------------------------
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// everything below this line are utilities for troubleshooting
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// ------------------------------------------------------------
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// simple timer for performance measurements
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// toggle the '#if 1' to get a baseline for the performance penalty added by the measurement
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struct PerformanceTimer
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{
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#if 1
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int64_t total_ns;
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PerformanceTimer() {
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total_ns = 0;
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}
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static int64_t query() {
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# ifdef _WIN32
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return 0;
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# elif defined(RUSAGE_SELF)
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struct rusage rusage;
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int64_t t = 0;
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for (int who : {RUSAGE_SELF, RUSAGE_CHILDREN}) {
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if (getrusage(who, &rusage) == -1) {
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log_cmd_error("getrusage failed!\n");
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log_abort();
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}
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t += 1000000000ULL * (int64_t) rusage.ru_utime.tv_sec + (int64_t) rusage.ru_utime.tv_usec * 1000ULL;
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t += 1000000000ULL * (int64_t) rusage.ru_stime.tv_sec + (int64_t) rusage.ru_stime.tv_usec * 1000ULL;
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}
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return t;
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# else
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# error "Don't know how to measure per-process CPU time. Need alternative method (times()/clocks()/gettimeofday()?)."
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# endif
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}
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void reset() {
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total_ns = 0;
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}
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void begin() {
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total_ns -= query();
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}
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void end() {
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total_ns += query();
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}
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float sec() const {
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return total_ns * 1e-9f;
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}
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#else
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static int64_t query() { return 0; }
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void reset() { }
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void begin() { }
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void end() { }
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float sec() const { return 0; }
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#endif
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};
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// simple API for quickly dumping values when debugging
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static inline void log_dump_val_worker(short v) { log("%d", v); }
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static inline void log_dump_val_worker(unsigned short v) { log("%u", v); }
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static inline void log_dump_val_worker(int v) { log("%d", v); }
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static inline void log_dump_val_worker(unsigned int v) { log("%u", v); }
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static inline void log_dump_val_worker(long int v) { log("%ld", v); }
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static inline void log_dump_val_worker(unsigned long int v) { log("%lu", v); }
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#ifndef _WIN32
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static inline void log_dump_val_worker(long long int v) { log("%lld", v); }
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static inline void log_dump_val_worker(unsigned long long int v) { log("%lld", v); }
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#endif
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static inline void log_dump_val_worker(char c) { log(c >= 32 && c < 127 ? "'%c'" : "'\\x%02x'", c); }
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static inline void log_dump_val_worker(unsigned char c) { log(c >= 32 && c < 127 ? "'%c'" : "'\\x%02x'", c); }
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static inline void log_dump_val_worker(bool v) { log("%s", v ? "true" : "false"); }
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static inline void log_dump_val_worker(double v) { log("%f", v); }
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static inline void log_dump_val_worker(char *v) { log("%s", v); }
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static inline void log_dump_val_worker(const char *v) { log("%s", v); }
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static inline void log_dump_val_worker(std::string v) { log("%s", v.c_str()); }
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static inline void log_dump_val_worker(PerformanceTimer p) { log("%f seconds", p.sec()); }
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static inline void log_dump_args_worker(const char *p) { log_assert(*p == 0); }
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void log_dump_val_worker(RTLIL::IdString v);
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void log_dump_val_worker(RTLIL::SigSpec v);
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void log_dump_val_worker(RTLIL::State v);
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template<typename K, typename T, typename OPS> static inline void log_dump_val_worker(dict<K, T, OPS> &v);
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template<typename K, typename OPS> static inline void log_dump_val_worker(pool<K, OPS> &v);
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template<typename K> static inline void log_dump_val_worker(std::vector<K> &v);
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template<typename T> static inline void log_dump_val_worker(T *ptr);
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template<typename K, typename T, typename OPS>
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static inline void log_dump_val_worker(dict<K, T, OPS> &v) {
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log("{");
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bool first = true;
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for (auto &it : v) {
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log(first ? " " : ", ");
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log_dump_val_worker(it.first);
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log(": ");
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log_dump_val_worker(it.second);
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first = false;
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}
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log(" }");
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}
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template<typename K, typename OPS>
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static inline void log_dump_val_worker(pool<K, OPS> &v) {
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log("{");
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bool first = true;
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for (auto &it : v) {
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log(first ? " " : ", ");
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log_dump_val_worker(it);
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first = false;
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}
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log(" }");
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}
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template<typename K>
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static inline void log_dump_val_worker(std::vector<K> &v) {
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log("{");
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bool first = true;
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for (auto &it : v) {
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log(first ? " " : ", ");
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log_dump_val_worker(it);
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first = false;
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}
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log(" }");
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}
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template<typename T>
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static inline void log_dump_val_worker(T *ptr) { log("%p", ptr); }
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template<typename T, typename ... Args>
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void log_dump_args_worker(const char *p, T first, Args ... args)
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{
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int next_p_state = 0;
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const char *next_p = p;
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while (*next_p && (next_p_state != 0 || *next_p != ',')) {
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if (*next_p == '"')
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do {
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next_p++;
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while (*next_p == '\\' && *(next_p + 1))
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next_p += 2;
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} while (*next_p && *next_p != '"');
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if (*next_p == '\'') {
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next_p++;
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if (*next_p == '\\')
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next_p++;
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if (*next_p)
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next_p++;
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}
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if (*next_p == '(' || *next_p == '[' || *next_p == '{')
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next_p_state++;
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if ((*next_p == ')' || *next_p == ']' || *next_p == '}') && next_p_state > 0)
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next_p_state--;
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next_p++;
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}
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log("\n\t%.*s => ", int(next_p - p), p);
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if (*next_p == ',')
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next_p++;
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while (*next_p == ' ' || *next_p == '\t' || *next_p == '\r' || *next_p == '\n')
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next_p++;
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log_dump_val_worker(first);
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log_dump_args_worker(next_p, args ...);
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}
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#define log_dump(...) do { \
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log("DEBUG DUMP IN %s AT %s:%d:", __PRETTY_FUNCTION__, __FILE__, __LINE__); \
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log_dump_args_worker(#__VA_ARGS__, __VA_ARGS__); \
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log("\n"); \
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} while (0)
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YOSYS_NAMESPACE_END
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#endif
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