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+19
@@ -0,0 +1,19 @@
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# zlib License
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(C) 2026 Simon Kellet
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This software is provided 'as-is', without any express or implied
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warranty. In no event will the authors be held liable for any damages
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arising from the 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
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in a 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 be
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misrepresented as being the original software.
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3. This notice may not be removed or altered from any source distribution.
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@@ -19,8 +19,14 @@ This a very simple implementation of Go-like flags in Odin
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fleg.parse_flags()
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```
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You can also marks flags as **required**. These will still be parsed, however will hault the application until they are passed:
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***Supports: bool, int, string, f32***
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```odin
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import "fleg"
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isRunning: bool
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fleg.BoolVar(&isRunning, "isRunning", true, "A select piece of code is running!", required = true)
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fleg.parse_flags()
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```
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And on the command line, you pass flags like so:
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@@ -28,6 +34,8 @@ And on the command line, you pass flags like so:
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./<program name> -isNumber=45 -isRunning=false ......
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```
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***Supports: bool, int, string, f32 and f64***
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## Help flag:
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The package also contains a help context menu. This comes default and can be called like so (**Note:** You can also use "-h" or "--help"):
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@@ -54,7 +62,20 @@ The package also contains a help context menu. This comes default and can be cal
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## Custom Flag Format
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A custom flag format can be created by overwriting the strings *FLAG_START_CHAR* and *FLAG_SEP_CHAR*. These cannot be the same however!
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A custom flag format can be created by overwriting the strings *FLAG_START_CHAR* and *FLAG_SEP_CHAR*. (These *cannot* be the same however!)
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```odin
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fleg.FLAG_START_CHAR = "--"
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fleg.FLAG_SEP_CHAR = ":"
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```
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Flags will now be in the format:
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```txt
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--isString:"......"
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```
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**Note:** Any change to the format of the flags is also relfected upon the "help" flag.
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## Custom Allocator
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@@ -70,3 +91,14 @@ If needed, you are able to setup a custom allocator like so:
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fleg.init_custom_allocator(arena_alloc)
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defer fleg.destroy() //clean up flags
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```
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### Mirror
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This repo is being developed on Gitea [here](https://git.simonkellet.xyz/simonkellet/odin-flags). The Github ([here](https://github.com/simonkellet404/odin-flags)) is a mirror.
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## TODO
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* More type support
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* Better logging of INFO and ERROR's
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* String validation (perhaps not needed?)
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* Array support (e.g. **--isArray:{4,5,6,7}**)
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@@ -1,6 +1,7 @@
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package main
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import "core:fmt"
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import vmem "core:mem/virtual"
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import "fleg"
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main :: proc(){
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@@ -12,6 +13,7 @@ main :: proc(){
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defer vmem.arena_destroy(&arena) //clean
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fleg.init_custom_allocator(arena_alloc)
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defer fleg.destroy()
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*/
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fleg.FLAG_START_CHAR = ":"
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@@ -24,8 +26,8 @@ main :: proc(){
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isString: string
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isFloat: f32
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fleg.BoolVar(&isRunning, "isRunning", true, "A select piece of code is running!")
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fleg.IntVar(&isNumber, "isNumber", 3434, "A number!")
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fleg.BoolVar(&isRunning, "isRunning", false, "A select piece of code is running!", required = true)
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fleg.IntVar(&isNumber, "isNumber", 3434, "A number!", required = true)
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fleg.StringVar(&isString, "isString", "Hellope!", "A string!")
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fleg.Float32Var(&isFloat, "isFloat", 3.1415, "A float!")
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fleg.parse_flags()
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+118
-29
@@ -33,25 +33,32 @@ FORCE_HELP_ON_EMPTY_ARGS := false
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FLAG_START_CHAR := "-"
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FLAG_SEP_CHAR := "="
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@(private)
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Flag_Value_Ptr :: union {
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^bool,
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^int,
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^i32,
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^i64,
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^string,
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^f32,
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^f64,
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}
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@(private)
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Flag :: struct {
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name: string,
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value: Flag_Value_Ptr,
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usage: string,
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parsed: bool, // sck: flag to check if it has been parsed
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parsed: bool, // sck: flag to check if it has been parsed
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required: bool, // sck: required flag
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}
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// Global dynamic array of Flags
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@(private)
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all_flags: [dynamic]Flag
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// runtime allocator for the flags
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@(private)
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flag_allocator: runtime.Allocator
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// sck: Used to create a customer allocator
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@@ -63,84 +70,136 @@ init_custom_allocator :: proc(allocator: runtime.Allocator) {
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}
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destroy :: proc() {
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free_all(flag_allocator)
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delete(all_flags)
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all_flags = {} // sck: needed?
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all_flags = {}
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}
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@(private)
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print_flags :: proc() {
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for f in all_flags {
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fmt.printfln("%s: %v: %s", f.name, f.value, f.usage)
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fmt.printfln("%s: %s (required=%v)", f.name, f.usage, f.required)
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}
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}
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@(private)
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print_flag_format :: proc(){
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fmt.printfln("Want %s<flag>%s<value>\n", FLAG_START_CHAR, FLAG_SEP_CHAR)
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}
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@(private)
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print_usage :: proc() {
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fmt.println("\tUsage: ")
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fmt.println("\n\tFlag format for this program:")
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fmt.printfln("\t%s<flag>%s<value>\n", FLAG_START_CHAR, FLAG_SEP_CHAR)
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for f in all_flags {
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req_msg: string
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if f.required { req_msg = " (required)"}
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switch v in f.value {
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case ^bool:
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fmt.printfln("\t%s%s:\n\t\t%s (default: %v)\n", FLAG_START_CHAR, f.name, f.usage, v^)
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fmt.printfln("\t%s%s:\n\t\t%s (default: %v)%s\n", FLAG_START_CHAR, f.name, f.usage, v^, req_msg)
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case ^int:
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fmt.printfln("\t%s%s:\n\t\t%s (default: %d)\n", FLAG_START_CHAR, f.name, f.usage, v^)
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fmt.printfln("\t%s%s:\n\t\t%s (default: %d)%s\n", FLAG_START_CHAR, f.name, f.usage, v^, req_msg)
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case ^i32:
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fmt.printfln("\t%s%s:\n\t\t%s (default: %d)%s\n", FLAG_START_CHAR, f.name, f.usage, v^, req_msg)
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case ^i64:
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fmt.printfln("\t%s%s:\n\t\t%s (default: %d)%s\n", FLAG_START_CHAR, f.name, f.usage, v^, req_msg)
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case ^string:
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fmt.printfln("\t%s%s:\n\t\t%s (default: %s)\n", FLAG_START_CHAR, f.name, f.usage, v^)
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fmt.printfln("\t%s%s:\n\t\t%s (default: %s)%s\n", FLAG_START_CHAR, f.name, f.usage, v^, req_msg)
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case ^f32:
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fmt.printfln("\t%s%s:\n\t\t%s (default: %f)\n", FLAG_START_CHAR, f.name, f.usage, v^)
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fmt.printfln("\t%s%s:\n\t\t%s (default: %f)%s\n", FLAG_START_CHAR, f.name, f.usage, v^, req_msg)
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case ^f64:
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fmt.printfln("\t%s%s:\n\t\t%s (default: %f)\n", FLAG_START_CHAR, f.name, f.usage, v^)
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fmt.printfln("\t%s%s:\n\t\t%s (default: %f)%s\n", FLAG_START_CHAR, f.name, f.usage, v^, req_msg)
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}
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}
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os.exit(0)
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}
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BoolVar :: proc(ptr: ^bool, name: string, default: bool, usage: string) {
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BoolVar :: proc(ptr: ^bool, name: string, default: bool, usage: string, required := false) {
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if ptr == nil {
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fmt.fprintfln(os.stderr, "[ERROR]: Invalid usage of BoolVar: got nil for 'ptr' value!")
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os.exit(1)
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}
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ptr^ = default
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append(&all_flags, Flag{name = name, value = ptr, usage = usage})
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append(&all_flags, Flag{name = name, value = ptr, usage = usage, required = required})
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}
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IntVar :: proc(ptr: ^int, name: string, default: int, usage: string) {
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IntVar :: proc(ptr: ^int, name: string, default: int, usage: string, required := false) {
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if ptr == nil {
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fmt.fprintfln(os.stderr, "[ERROR]: Invalid usage of IntVar: got nil for 'ptr' value!")
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os.exit(1)
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}
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ptr^ = default
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append(&all_flags, Flag{name = name, value = ptr, usage = usage})
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append(&all_flags, Flag{name = name, value = ptr, usage = usage, required = required})
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}
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StringVar :: proc(ptr: ^string, name: string, default: string, usage: string) {
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Int32Var :: proc(ptr: ^i32, name: string, default: i32, usage: string, required := false) {
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if ptr == nil {
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fmt.fprintfln(os.stderr, "[ERROR]: Invalid usage of Int32Var: got nil for 'ptr' value!")
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os.exit(1)
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}
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ptr^ = default
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append(&all_flags, Flag{name = name, value = ptr, usage = usage})
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append(&all_flags, Flag{name = name, value = ptr, usage = usage, required = required})
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}
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Float32Var :: proc(ptr: ^f32, name: string, default: f32, usage: string) {
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Int64Var :: proc(ptr: ^i64, name: string, default: i64, usage: string, required := false) {
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if ptr == nil {
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fmt.fprintfln(os.stderr, "[ERROR]: Invalid usage of Int32Var: got nil for 'ptr' value!")
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os.exit(1)
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}
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ptr^ = default
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append(&all_flags, Flag{name = name, value = ptr, usage = usage})
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append(&all_flags, Flag{name = name, value = ptr, usage = usage, required = required})
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}
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Float64Var :: proc(ptr: ^f64, name: string, default: f64, usage: string) {
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StringVar :: proc(ptr: ^string, name: string, default: string, usage: string, required := false) {
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if ptr == nil {
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fmt.fprintfln(os.stderr, "[ERROR]: Invalid usage of StringVar: got nil for 'ptr' value!")
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os.exit(1)
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}
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ptr^ = default
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append(&all_flags, Flag{name = name, value = ptr, usage = usage})
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append(&all_flags, Flag{name = name, value = ptr, usage = usage, required = required})
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}
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Float32Var :: proc(ptr: ^f32, name: string, default: f32, usage: string, required := false) {
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if ptr == nil {
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fmt.fprintfln(os.stderr, "[ERROR]: Invalid usage of Float32Var: got nil for 'ptr' value!")
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os.exit(1)
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}
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ptr^ = default
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append(&all_flags, Flag{name = name, value = ptr, usage = usage, required = required})
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}
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Float64Var :: proc(ptr: ^f64, name: string, default: f64, usage: string, required := false) {
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if ptr == nil {
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fmt.fprintfln(os.stderr, "[ERROR]: Invalid usage of Float64Var: got nil for 'ptr' value!")
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os.exit(1)
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}
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ptr^ = default
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append(&all_flags, Flag{name = name, value = ptr, usage = usage, required = required})
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}
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parse_flags :: proc() {
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// sck: We cannot have the start and seperator formats being the same
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// ...leads to parsing errors...
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if FLAG_START_CHAR == FLAG_SEP_CHAR {
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fmt.println("[ERROR]: FLAG_START_CHAR and FLAG_SEP_CHAR cannot be the same!")
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fmt.fprintfln(os.stderr, "[ERROR]: FLAG_START_CHAR and FLAG_SEP_CHAR cannot be the same!")
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fmt.printfln("\t FLAG_START_CHAR= \"%s\"\t FLAG_SEP_CHAR= \"%s\"", FLAG_START_CHAR, FLAG_SEP_CHAR)
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os.exit(1)
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}
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if len(os.args) < 2 && FORCE_HELP_ON_EMPTY_ARGS {print_usage()}
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for &a in os.args {
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if a == "-h" || a == "-help" || a == "--help" {print_usage()}
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// skip the first arg (1:)
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for &a in os.args[1:] {
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if a == "-h" || a == "-help" || a == "--help" {print_usage(); os.exit(0)}
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// sck: if the user has a custom flag format, copy that to the help flag too.
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if a == fmt.aprintf("%s%s", FLAG_START_CHAR, "help", allocator = flag_allocator) {print_usage()}
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if a == fmt.aprintf("%s%s", FLAG_START_CHAR, "h", allocator = flag_allocator) {print_usage()}
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if a == os.args[0] {continue}
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if a == fmt.aprintf("%s%s", FLAG_START_CHAR, "help", allocator = context.temp_allocator) {print_usage(); os.exit(0)}
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if a == fmt.aprintf("%s%s", FLAG_START_CHAR, "h", allocator = context.temp_allocator) {print_usage(); os.exit(0)}
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defer free_all(context.temp_allocator) //clean up!
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// Begin parsing flags...
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for &f in all_flags {
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if f.parsed {continue}
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a = strings.trim_prefix(a, FLAG_START_CHAR)
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a = strings.trim_prefix(a, FLAG_START_CHAR)
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name := a
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value: string
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@@ -151,10 +210,11 @@ parse_flags :: proc() {
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} else {
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name = a
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fmt.printf("[INFO]: Could not read flag: %s. ", name)
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fmt.printfln("Want %s<flag>%s<value>\n", FLAG_START_CHAR, FLAG_SEP_CHAR)
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print_flag_format()
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break
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}
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// sck: We are going to parse all the flags
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if name == f.name && !f.parsed {
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f.parsed = true
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switch &v in f.value {
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@@ -178,6 +238,26 @@ parse_flags :: proc() {
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}
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v^ = parsed
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case ^i32:
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if value == "" {break}
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parsed, ok := strconv.parse_int(value)
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if !ok {
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fmt.fprintfln(os.stderr, "[ERROR] Failed to parse flag %s: got %T, wanted int",
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f.name, value)
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os.exit(1)
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}
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v^ = cast(i32)parsed
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case ^i64:
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if value == "" {break}
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parsed, ok := strconv.parse_i64(value)
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if !ok {
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fmt.fprintfln(os.stderr, "[ERROR] Failed to parse flag %s: got %T, wanted int",
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f.name, value)
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os.exit(1)
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}
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v^ = parsed
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case ^string:
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if value == "" {break}
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// TODO: validate string?
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@@ -206,4 +286,13 @@ parse_flags :: proc() {
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}
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}
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}
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for f in all_flags {
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if f.required && !f.parsed {
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// sck: INFO or ERROR?
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fmt.fprintfln(os.stderr, "[INFO] Missing required flag: %s%s", FLAG_START_CHAR, f.name)
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if !FORCE_HELP_ON_EMPTY_ARGS {fmt.fprintfln(os.stderr, "use -help or -h to view all flags")}
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os.exit(1)
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}
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}
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}
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Reference in New Issue
Block a user