2021-11-11 21:22:24 +01:00
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#if defined(SOKOL_IMPL) && !defined(SOKOL_ARGS_IMPL)
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#define SOKOL_ARGS_IMPL
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#endif
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#ifndef SOKOL_ARGS_INCLUDED
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/*
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sokol_args.h -- cross-platform key/value arg-parsing for web and native
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Project URL: https://github.com/floooh/sokol
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Do this:
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#define SOKOL_IMPL or
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#define SOKOL_ARGS_IMPL
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before you include this file in *one* C or C++ file to create the
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implementation.
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Optionally provide the following defines with your own implementations:
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SOKOL_ASSERT(c) - your own assert macro (default: assert(c))
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SOKOL_ARGS_API_DECL - public function declaration prefix (default: extern)
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SOKOL_API_DECL - same as SOKOL_ARGS_API_DECL
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SOKOL_API_IMPL - public function implementation prefix (default: -)
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If sokol_args.h is compiled as a DLL, define the following before
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including the declaration or implementation:
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SOKOL_DLL
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On Windows, SOKOL_DLL will define SOKOL_ARGS_API_DECL as __declspec(dllexport)
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or __declspec(dllimport) as needed.
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OVERVIEW
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========
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sokol_args.h provides a simple unified argument parsing API for WebAssembly and
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native apps.
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When running as WebAssembly app, arguments are taken from the page URL:
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https://floooh.github.io/tiny8bit/kc85.html?type=kc85_3&mod=m022&snapshot=kc85/jungle.kcc
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The same arguments provided to a command line app:
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kc85 type=kc85_3 mod=m022 snapshot=kc85/jungle.kcc
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ARGUMENT FORMATTING
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===================
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On the web platform, arguments must be formatted as a valid URL query string
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with 'percent encoding' used for special characters.
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Strings are expected to be UTF-8 encoded (although sokol_args.h doesn't
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contain any special UTF-8 handling). See below on how to obtain
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UTF-8 encoded argc/argv values on Windows when using WinMain() as
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entry point.
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On native platforms the following rules must be followed:
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Arguments have the general form
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key=value
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Key/value pairs are separated by 'whitespace', valid whitespace
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characters are space and tab.
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Whitespace characters in front and after the separating '=' character
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are ignored:
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key = value
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...is the same as
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key=value
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The 'key' string must be a simple string without escape sequences or whitespace.
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Currently 'single keys' without values are not allowed, but may be
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in the future.
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The 'value' string can be quoted, and quoted value strings can contain
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whitespace:
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key = 'single-quoted value'
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key = "double-quoted value"
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Single-quoted value strings can contain double quotes, and vice-versa:
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key = 'single-quoted value "can contain double-quotes"'
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key = "double-quoted value 'can contain single-quotes'"
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Note that correct quoting can be tricky on some shells, since command
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shells may remove quotes, unless they're escaped.
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Value strings can contain a small selection of escape sequences:
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\n - newline
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\r - carriage return
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\t - tab
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\\ - escaped backslash
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(more escape codes may be added in the future).
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CODE EXAMPLE
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============
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int main(int argc, char* argv[]) {
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// initialize sokol_args with default parameters
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sargs_setup(&(sargs_desc){
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.argc = argc,
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.argv = argv
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});
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// check if a key exists...
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if (sargs_exists("bla")) {
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...
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}
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// get value string for key, if not found, return empty string ""
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const char* val0 = sargs_value("bla");
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// get value string for key, or default string if key not found
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const char* val1 = sargs_value_def("bla", "default_value");
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// check if a key matches expected value
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if (sargs_equals("type", "kc85_4")) {
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...
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}
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// check if a key's value is "true", "yes" or "on"
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if (sargs_boolean("joystick_enabled")) {
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...
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}
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// iterate over keys and values
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for (int i = 0; i < sargs_num_args(); i++) {
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printf("key: %s, value: %s\n", sargs_key_at(i), sargs_value_at(i));
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}
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// lookup argument index by key string, will return -1 if key
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// is not found, sargs_key_at() and sargs_value_at() will return
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// an empty string for invalid indices
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int index = sargs_find("bla");
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printf("key: %s, value: %s\n", sargs_key_at(index), sargs_value_at(index));
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// shutdown sokol-args
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sargs_shutdown();
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}
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WINMAIN AND ARGC / ARGV
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=======================
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On Windows with WinMain() based apps, getting UTF8-encoded command line
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arguments is a bit more complicated:
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First call GetCommandLineW(), this returns the entire command line
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as UTF-16 string. Then call CommandLineToArgvW(), this parses the
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command line string into the usual argc/argv format (but in UTF-16).
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Finally convert the UTF-16 strings in argv[] into UTF-8 via
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WideCharToMultiByte().
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See the function _sapp_win32_command_line_to_utf8_argv() in sokol_app.h
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for example code how to do this (if you're using sokol_app.h, it will
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already convert the command line arguments to UTF-8 for you of course,
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so you can plug them directly into sokol_app.h).
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API DOCUMENTATION
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=================
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void sargs_setup(const sargs_desc* desc)
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Initialize sokol_args, desc contains the following configuration
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parameters:
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int argc - the main function's argc parameter
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char** argv - the main function's argv parameter
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int max_args - max number of key/value pairs, default is 16
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int buf_size - size of the internal string buffer, default is 16384
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Note that on the web, argc and argv will be ignored and the arguments
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will be taken from the page URL instead.
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sargs_setup() will allocate 2 memory chunks: one for keeping track
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of the key/value args of size 'max_args*8', and a string buffer
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of size 'buf_size'.
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void sargs_shutdown(void)
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Shutdown sokol-args and free any allocated memory.
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bool sargs_isvalid(void)
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Return true between sargs_setup() and sargs_shutdown()
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bool sargs_exists(const char* key)
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Test if a key arg exists.
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const char* sargs_value(const char* key)
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Return value associated with key. Returns an empty
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string ("") if the key doesn't exist.
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const char* sargs_value_def(const char* key, const char* default)
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Return value associated with key, or the provided default
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value if the value doesn't exist.
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bool sargs_equals(const char* key, const char* val);
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Return true if the value associated with key matches
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the 'val' argument.
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bool sargs_boolean(const char* key)
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Return true if the value string of 'key' is one
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of 'true', 'yes', 'on'.
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int sargs_find(const char* key)
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Find argument by key name and return its index, or -1 if not found.
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int sargs_num_args(void)
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Return number of key/value pairs.
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const char* sargs_key_at(int index)
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Return the key name of argument at index. Returns empty string if
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is index is outside range.
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const char* sargs_value_at(int index)
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Return the value of argument at index. Returns empty string
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if index is outside range.
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2023-04-15 00:06:12 +02:00
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MEMORY ALLOCATION OVERRIDE
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==========================
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You can override the memory allocation functions at initialization time
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like this:
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void* my_alloc(size_t size, void* user_data) {
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return malloc(size);
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}
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void my_free(void* ptr, void* user_data) {
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free(ptr);
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}
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...
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sargs_setup(&(sargs_desc){
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// ...
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.allocator = {
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.alloc = my_alloc,
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.free = my_free,
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.user_data = ...,
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}
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});
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...
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If no overrides are provided, malloc and free will be used.
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This only affects memory allocation calls done by sokol_args.h
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itself though, not any allocations in OS libraries.
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2021-11-11 21:22:24 +01:00
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TODO
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====
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- parsing errors?
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LICENSE
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=======
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zlib/libpng license
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Copyright (c) 2018 Andre Weissflog
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This software is provided 'as-is', without any express or implied warranty.
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In no event will the authors be held liable for any damages arising from the
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use of this software.
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Permission is granted to anyone to use this software for any purpose,
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including commercial applications, and to alter it and redistribute it
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freely, subject to the following restrictions:
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1. The origin of this software must not be misrepresented; you must not
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claim that you wrote the original software. If you use this software in a
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product, an acknowledgment in the product documentation would be
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appreciated but is not required.
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2. Altered source versions must be plainly marked as such, and must not
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be misrepresented as being the original software.
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3. This notice may not be removed or altered from any source
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distribution.
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*/
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#define SOKOL_ARGS_INCLUDED (1)
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#include <stdint.h>
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#include <stdbool.h>
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#include <stddef.h> // size_t
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#if defined(SOKOL_API_DECL) && !defined(SOKOL_ARGS_API_DECL)
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#define SOKOL_ARGS_API_DECL SOKOL_API_DECL
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#endif
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#ifndef SOKOL_ARGS_API_DECL
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#if defined(_WIN32) && defined(SOKOL_DLL) && defined(SOKOL_ARGS_IMPL)
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#define SOKOL_ARGS_API_DECL __declspec(dllexport)
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#elif defined(_WIN32) && defined(SOKOL_DLL)
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#define SOKOL_ARGS_API_DECL __declspec(dllimport)
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#else
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#define SOKOL_ARGS_API_DECL extern
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#endif
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#endif
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#ifdef __cplusplus
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extern "C" {
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#endif
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2023-04-15 00:06:12 +02:00
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/*
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sargs_allocator
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Used in sargs_desc to provide custom memory-alloc and -free functions
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to sokol_args.h. If memory management should be overridden, both the
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alloc and free function must be provided (e.g. it's not valid to
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override one function but not the other).
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*/
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typedef struct sargs_allocator {
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void* (*alloc)(size_t size, void* user_data);
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void (*free)(void* ptr, void* user_data);
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void* user_data;
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} sargs_allocator;
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typedef struct sargs_desc {
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int argc;
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char** argv;
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int max_args;
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int buf_size;
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sargs_allocator allocator;
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} sargs_desc;
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/* setup sokol-args */
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SOKOL_ARGS_API_DECL void sargs_setup(const sargs_desc* desc);
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/* shutdown sokol-args */
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SOKOL_ARGS_API_DECL void sargs_shutdown(void);
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/* true between sargs_setup() and sargs_shutdown() */
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SOKOL_ARGS_API_DECL bool sargs_isvalid(void);
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/* test if an argument exists by key name */
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SOKOL_ARGS_API_DECL bool sargs_exists(const char* key);
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/* get value by key name, return empty string if key doesn't exist */
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SOKOL_ARGS_API_DECL const char* sargs_value(const char* key);
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/* get value by key name, return provided default if key doesn't exist */
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SOKOL_ARGS_API_DECL const char* sargs_value_def(const char* key, const char* def);
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/* return true if val arg matches the value associated with key */
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SOKOL_ARGS_API_DECL bool sargs_equals(const char* key, const char* val);
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/* return true if key's value is "true", "yes" or "on" */
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SOKOL_ARGS_API_DECL bool sargs_boolean(const char* key);
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/* get index of arg by key name, return -1 if not exists */
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SOKOL_ARGS_API_DECL int sargs_find(const char* key);
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/* get number of parsed arguments */
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SOKOL_ARGS_API_DECL int sargs_num_args(void);
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/* get key name of argument at index, or empty string */
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SOKOL_ARGS_API_DECL const char* sargs_key_at(int index);
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/* get value string of argument at index, or empty string */
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SOKOL_ARGS_API_DECL const char* sargs_value_at(int index);
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#ifdef __cplusplus
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} /* extern "C" */
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/* reference-based equivalents for c++ */
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inline void sargs_setup(const sargs_desc& desc) { return sargs_setup(&desc); }
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#endif
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#endif // SOKOL_ARGS_INCLUDED
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/*--- IMPLEMENTATION ---------------------------------------------------------*/
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#ifdef SOKOL_ARGS_IMPL
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#define SOKOL_ARGS_IMPL_INCLUDED (1)
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#if defined(SOKOL_MALLOC) || defined(SOKOL_CALLOC) || defined(SOKOL_FREE)
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#error "SOKOL_MALLOC/CALLOC/FREE macros are no longer supported, please use sargs_desc.allocator to override memory allocation functions"
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#endif
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#include <string.h> // memset, strcmp
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#include <stdlib.h> // malloc, free
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#if defined(__EMSCRIPTEN__)
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#include <emscripten/emscripten.h>
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#endif
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#ifndef SOKOL_API_IMPL
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#define SOKOL_API_IMPL
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#endif
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#ifndef SOKOL_DEBUG
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#ifndef NDEBUG
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2023-04-15 00:06:12 +02:00
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#define SOKOL_DEBUG
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2021-11-11 21:22:24 +01:00
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#endif
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#endif
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#ifndef SOKOL_ASSERT
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#include <assert.h>
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#define SOKOL_ASSERT(c) assert(c)
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#endif
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#ifndef _SOKOL_PRIVATE
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#if defined(__GNUC__) || defined(__clang__)
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#define _SOKOL_PRIVATE __attribute__((unused)) static
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#else
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#define _SOKOL_PRIVATE static
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#endif
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#endif
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#define _sargs_def(val, def) (((val) == 0) ? (def) : (val))
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#define _SARGS_MAX_ARGS_DEF (16)
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#define _SARGS_BUF_SIZE_DEF (16*1024)
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/* parser state */
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#define _SARGS_EXPECT_KEY (1<<0)
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#define _SARGS_EXPECT_SEP (1<<1)
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#define _SARGS_EXPECT_VAL (1<<2)
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#define _SARGS_PARSING_KEY (1<<3)
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#define _SARGS_PARSING_VAL (1<<4)
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#define _SARGS_ERROR (1<<5)
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/* a key/value pair struct */
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typedef struct {
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int key; /* index to start of key string in buf */
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int val; /* index to start of value string in buf */
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} _sargs_kvp_t;
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/* sokol-args state */
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typedef struct {
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int max_args; /* number of key/value pairs in args array */
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int num_args; /* number of valid items in args array */
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_sargs_kvp_t* args; /* key/value pair array */
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int buf_size; /* size of buffer in bytes */
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int buf_pos; /* current buffer position */
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char* buf; /* character buffer, first char is reserved and zero for 'empty string' */
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bool valid;
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uint32_t parse_state;
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char quote; /* current quote char, 0 if not in a quote */
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bool in_escape; /* currently in an escape sequence */
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2023-04-15 00:06:12 +02:00
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sargs_allocator allocator;
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2021-11-11 21:22:24 +01:00
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} _sargs_state_t;
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static _sargs_state_t _sargs;
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/*== PRIVATE IMPLEMENTATION FUNCTIONS ========================================*/
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2023-04-15 00:06:12 +02:00
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_SOKOL_PRIVATE void _sargs_clear(void* ptr, size_t size) {
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SOKOL_ASSERT(ptr && (size > 0));
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memset(ptr, 0, size);
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}
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_SOKOL_PRIVATE void* _sargs_malloc(size_t size) {
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SOKOL_ASSERT(size > 0);
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void* ptr;
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if (_sargs.allocator.alloc) {
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ptr = _sargs.allocator.alloc(size, _sargs.allocator.user_data);
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}
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else {
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ptr = malloc(size);
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}
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SOKOL_ASSERT(ptr);
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return ptr;
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}
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_SOKOL_PRIVATE void* _sargs_malloc_clear(size_t size) {
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void* ptr = _sargs_malloc(size);
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_sargs_clear(ptr, size);
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return ptr;
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}
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_SOKOL_PRIVATE void _sargs_free(void* ptr) {
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if (_sargs.allocator.free) {
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_sargs.allocator.free(ptr, _sargs.allocator.user_data);
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}
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else {
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free(ptr);
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}
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}
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2021-11-11 21:22:24 +01:00
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_SOKOL_PRIVATE void _sargs_putc(char c) {
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if ((_sargs.buf_pos+2) < _sargs.buf_size) {
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_sargs.buf[_sargs.buf_pos++] = c;
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}
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}
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_SOKOL_PRIVATE const char* _sargs_str(int index) {
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SOKOL_ASSERT((index >= 0) && (index < _sargs.buf_size));
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return &_sargs.buf[index];
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}
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/*-- argument parser functions ------------------*/
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_SOKOL_PRIVATE void _sargs_expect_key(void) {
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_sargs.parse_state = _SARGS_EXPECT_KEY;
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}
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_SOKOL_PRIVATE bool _sargs_key_expected(void) {
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return 0 != (_sargs.parse_state & _SARGS_EXPECT_KEY);
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}
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_SOKOL_PRIVATE void _sargs_expect_val(void) {
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_sargs.parse_state = _SARGS_EXPECT_VAL;
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}
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_SOKOL_PRIVATE bool _sargs_val_expected(void) {
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return 0 != (_sargs.parse_state & _SARGS_EXPECT_VAL);
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}
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_SOKOL_PRIVATE void _sargs_expect_sep(void) {
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_sargs.parse_state = _SARGS_EXPECT_SEP;
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}
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_SOKOL_PRIVATE bool _sargs_any_expected(void) {
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return 0 != (_sargs.parse_state & (_SARGS_EXPECT_KEY | _SARGS_EXPECT_VAL | _SARGS_EXPECT_SEP));
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}
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_SOKOL_PRIVATE bool _sargs_is_separator(char c) {
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return c == '=';
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}
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_SOKOL_PRIVATE bool _sargs_is_quote(char c) {
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if (0 == _sargs.quote) {
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return (c == '\'') || (c == '"');
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}
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else {
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return c == _sargs.quote;
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}
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}
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_SOKOL_PRIVATE void _sargs_begin_quote(char c) {
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_sargs.quote = c;
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}
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_SOKOL_PRIVATE void _sargs_end_quote(void) {
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_sargs.quote = 0;
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}
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_SOKOL_PRIVATE bool _sargs_in_quotes(void) {
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return 0 != _sargs.quote;
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}
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_SOKOL_PRIVATE bool _sargs_is_whitespace(char c) {
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return !_sargs_in_quotes() && ((c == ' ') || (c == '\t'));
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}
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_SOKOL_PRIVATE void _sargs_start_key(void) {
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SOKOL_ASSERT(_sargs.num_args < _sargs.max_args);
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_sargs.parse_state = _SARGS_PARSING_KEY;
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_sargs.args[_sargs.num_args].key = _sargs.buf_pos;
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}
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_SOKOL_PRIVATE void _sargs_end_key(void) {
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SOKOL_ASSERT(_sargs.num_args < _sargs.max_args);
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_sargs_putc(0);
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_sargs.parse_state = 0;
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}
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_SOKOL_PRIVATE bool _sargs_parsing_key(void) {
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return 0 != (_sargs.parse_state & _SARGS_PARSING_KEY);
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}
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_SOKOL_PRIVATE void _sargs_start_val(void) {
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SOKOL_ASSERT(_sargs.num_args < _sargs.max_args);
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_sargs.parse_state = _SARGS_PARSING_VAL;
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_sargs.args[_sargs.num_args].val = _sargs.buf_pos;
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}
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_SOKOL_PRIVATE void _sargs_end_val(void) {
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SOKOL_ASSERT(_sargs.num_args < _sargs.max_args);
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_sargs_putc(0);
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_sargs.num_args++;
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_sargs.parse_state = 0;
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}
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_SOKOL_PRIVATE bool _sargs_is_escape(char c) {
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return '\\' == c;
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}
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_SOKOL_PRIVATE void _sargs_start_escape(void) {
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_sargs.in_escape = true;
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}
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_SOKOL_PRIVATE bool _sargs_in_escape(void) {
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return _sargs.in_escape;
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}
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_SOKOL_PRIVATE char _sargs_escape(char c) {
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switch (c) {
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case 'n': return '\n';
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case 't': return '\t';
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case 'r': return '\r';
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case '\\': return '\\';
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default: return c;
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}
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}
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_SOKOL_PRIVATE void _sargs_end_escape(void) {
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_sargs.in_escape = false;
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}
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_SOKOL_PRIVATE bool _sargs_parsing_val(void) {
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return 0 != (_sargs.parse_state & _SARGS_PARSING_VAL);
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}
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_SOKOL_PRIVATE bool _sargs_parse_carg(const char* src) {
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char c;
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while (0 != (c = *src++)) {
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if (_sargs_in_escape()) {
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c = _sargs_escape(c);
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_sargs_end_escape();
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}
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else if (_sargs_is_escape(c)) {
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_sargs_start_escape();
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continue;
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}
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if (_sargs_any_expected()) {
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if (!_sargs_is_whitespace(c)) {
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/* start of key, value or separator */
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if (_sargs_key_expected()) {
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/* start of new key */
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_sargs_start_key();
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}
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else if (_sargs_val_expected()) {
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/* start of value */
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if (_sargs_is_quote(c)) {
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_sargs_begin_quote(c);
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continue;
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}
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_sargs_start_val();
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}
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else {
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/* separator */
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if (_sargs_is_separator(c)) {
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_sargs_expect_val();
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continue;
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}
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}
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}
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else {
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/* skip white space */
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continue;
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}
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}
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else if (_sargs_parsing_key()) {
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if (_sargs_is_whitespace(c) || _sargs_is_separator(c)) {
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/* end of key string */
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_sargs_end_key();
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if (_sargs_is_separator(c)) {
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_sargs_expect_val();
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}
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else {
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_sargs_expect_sep();
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}
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continue;
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}
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}
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else if (_sargs_parsing_val()) {
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if (_sargs_in_quotes()) {
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/* when in quotes, whitespace is a normal character
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and a matching quote ends the value string
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*/
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if (_sargs_is_quote(c)) {
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_sargs_end_quote();
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_sargs_end_val();
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_sargs_expect_key();
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continue;
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}
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}
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else if (_sargs_is_whitespace(c)) {
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/* end of value string (no quotes) */
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_sargs_end_val();
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_sargs_expect_key();
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continue;
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}
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}
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_sargs_putc(c);
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}
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if (_sargs_parsing_key()) {
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_sargs_end_key();
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_sargs_expect_sep();
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}
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else if (_sargs_parsing_val() && !_sargs_in_quotes()) {
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_sargs_end_val();
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_sargs_expect_key();
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}
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return true;
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}
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_SOKOL_PRIVATE bool _sargs_parse_cargs(int argc, const char** argv) {
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_sargs_expect_key();
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bool retval = true;
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for (int i = 1; i < argc; i++) {
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retval &= _sargs_parse_carg(argv[i]);
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}
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_sargs.parse_state = 0;
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return retval;
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}
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/*-- EMSCRIPTEN IMPLEMENTATION -----------------------------------------------*/
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#if defined(__EMSCRIPTEN__)
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#ifdef __cplusplus
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extern "C" {
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#endif
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2023-04-15 00:06:12 +02:00
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#if defined(EM_JS_DEPS)
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EM_JS_DEPS(sokol_audio, "$withStackSave,$allocateUTF8OnStack");
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#endif
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2021-11-11 21:22:24 +01:00
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EMSCRIPTEN_KEEPALIVE void _sargs_add_kvp(const char* key, const char* val) {
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SOKOL_ASSERT(_sargs.valid && key && val);
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if (_sargs.num_args >= _sargs.max_args) {
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return;
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}
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/* copy key string */
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char c;
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_sargs.args[_sargs.num_args].key = _sargs.buf_pos;
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const char* ptr = key;
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while (0 != (c = *ptr++)) {
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_sargs_putc(c);
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}
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_sargs_putc(0);
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/* copy value string */
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_sargs.args[_sargs.num_args].val = _sargs.buf_pos;
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ptr = val;
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while (0 != (c = *ptr++)) {
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_sargs_putc(c);
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}
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_sargs_putc(0);
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_sargs.num_args++;
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}
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#ifdef __cplusplus
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} /* extern "C" */
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#endif
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/* JS function to extract arguments from the page URL */
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EM_JS(void, sargs_js_parse_url, (void), {
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2023-04-15 00:06:12 +02:00
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const params = new URLSearchParams(window.location.search).entries();
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for (let p = params.next(); !p.done; p = params.next()) {
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const key = p.value[0];
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const val = p.value[1];
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withStackSave(() => {
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const key_cstr = allocateUTF8OnStack(key);
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const val_cstr = allocateUTF8OnStack(val);
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__sargs_add_kvp(key_cstr, val_cstr)
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});
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2021-11-11 21:22:24 +01:00
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}
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});
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#endif /* EMSCRIPTEN */
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/*== PUBLIC IMPLEMENTATION FUNCTIONS =========================================*/
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SOKOL_API_IMPL void sargs_setup(const sargs_desc* desc) {
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SOKOL_ASSERT(desc);
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2023-04-15 00:06:12 +02:00
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_sargs_clear(&_sargs, sizeof(_sargs));
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2021-11-11 21:22:24 +01:00
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_sargs.max_args = _sargs_def(desc->max_args, _SARGS_MAX_ARGS_DEF);
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_sargs.buf_size = _sargs_def(desc->buf_size, _SARGS_BUF_SIZE_DEF);
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SOKOL_ASSERT(_sargs.buf_size > 8);
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2023-04-15 00:06:12 +02:00
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_sargs.args = (_sargs_kvp_t*) _sargs_malloc_clear((size_t)_sargs.max_args * sizeof(_sargs_kvp_t));
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_sargs.buf = (char*) _sargs_malloc_clear((size_t)_sargs.buf_size * sizeof(char));
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2021-11-11 21:22:24 +01:00
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/* the first character in buf is reserved and always zero, this is the 'empty string' */
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_sargs.buf_pos = 1;
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2023-04-15 00:06:12 +02:00
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_sargs.allocator = desc->allocator;
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2021-11-11 21:22:24 +01:00
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_sargs.valid = true;
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/* parse argc/argv */
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_sargs_parse_cargs(desc->argc, (const char**) desc->argv);
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#if defined(__EMSCRIPTEN__)
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/* on emscripten, also parse the page URL*/
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sargs_js_parse_url();
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#endif
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}
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SOKOL_API_IMPL void sargs_shutdown(void) {
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SOKOL_ASSERT(_sargs.valid);
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if (_sargs.args) {
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2023-04-15 00:06:12 +02:00
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_sargs_free(_sargs.args);
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2021-11-11 21:22:24 +01:00
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_sargs.args = 0;
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}
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if (_sargs.buf) {
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2023-04-15 00:06:12 +02:00
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_sargs_free(_sargs.buf);
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2021-11-11 21:22:24 +01:00
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_sargs.buf = 0;
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}
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_sargs.valid = false;
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}
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SOKOL_API_IMPL bool sargs_isvalid(void) {
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return _sargs.valid;
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}
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SOKOL_API_IMPL int sargs_find(const char* key) {
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SOKOL_ASSERT(_sargs.valid && key);
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for (int i = 0; i < _sargs.num_args; i++) {
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if (0 == strcmp(_sargs_str(_sargs.args[i].key), key)) {
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return i;
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}
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}
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return -1;
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}
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SOKOL_API_IMPL int sargs_num_args(void) {
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SOKOL_ASSERT(_sargs.valid);
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return _sargs.num_args;
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}
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SOKOL_API_IMPL const char* sargs_key_at(int index) {
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SOKOL_ASSERT(_sargs.valid);
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if ((index >= 0) && (index < _sargs.num_args)) {
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return _sargs_str(_sargs.args[index].key);
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}
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else {
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/* index 0 is always the empty string */
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return _sargs_str(0);
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}
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}
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SOKOL_API_IMPL const char* sargs_value_at(int index) {
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SOKOL_ASSERT(_sargs.valid);
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if ((index >= 0) && (index < _sargs.num_args)) {
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return _sargs_str(_sargs.args[index].val);
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}
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else {
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/* index 0 is always the empty string */
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return _sargs_str(0);
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}
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}
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SOKOL_API_IMPL bool sargs_exists(const char* key) {
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SOKOL_ASSERT(_sargs.valid && key);
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return -1 != sargs_find(key);
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}
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SOKOL_API_IMPL const char* sargs_value(const char* key) {
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SOKOL_ASSERT(_sargs.valid && key);
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return sargs_value_at(sargs_find(key));
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}
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SOKOL_API_IMPL const char* sargs_value_def(const char* key, const char* def) {
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SOKOL_ASSERT(_sargs.valid && key && def);
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int arg_index = sargs_find(key);
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if (-1 != arg_index) {
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return sargs_value_at(arg_index);
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}
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else {
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return def;
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}
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}
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SOKOL_API_IMPL bool sargs_equals(const char* key, const char* val) {
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SOKOL_ASSERT(_sargs.valid && key && val);
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return 0 == strcmp(sargs_value(key), val);
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}
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SOKOL_API_IMPL bool sargs_boolean(const char* key) {
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const char* val = sargs_value(key);
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return (0 == strcmp("true", val)) ||
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(0 == strcmp("yes", val)) ||
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(0 == strcmp("on", val));
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}
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#endif /* SOKOL_ARGS_IMPL */
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