Merge pull request 'kbd_fix' (#12) from kbd_fix into main

Reviewed-on: xamidev/pepperOS#12
This commit is contained in:
2026-03-09 09:30:42 +01:00
12 changed files with 111 additions and 62 deletions

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@@ -41,8 +41,10 @@ PepperOS wouldn't be possible without the following freely-licensed software:
- the [Limine](https://codeberg.org/Limine/Limine) portable bootloader - the [Limine](https://codeberg.org/Limine/Limine) portable bootloader
- Marco Paland's freestanding [printf implementation](https://github.com/mpaland) - Marco Paland's freestanding [printf implementation](https://github.com/mpaland)
- the [ZAP](https://www.zap.org.au/projects/console-fonts-zap/) PSF console fonts - Mintuski's [Flanterm](https://codeberg.org/Mintsuki/Flanterm) terminal emulator
...and without these amazing resources: ...and without these amazing resources:
- the [OSDev](https://osdev.org) wiki & forums - the [OSDev](https://osdev.org) wiki & forums
- Intel 64 and IA-32 Architectures Software Developer's Manual
- Documentation for the [GNU Compiler Collection](https://gcc.gnu.org/onlinedocs/gcc/)

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@@ -151,12 +151,13 @@ vector_7_handler:
align 16 align 16
vector_8_handler: vector_8_handler:
; No error code, we only push vector number ; No error code, we only push vector number
push qword 1 push qword 8
jmp interrupt_stub jmp interrupt_stub
; Coprocessor Segment Overrun ; Coprocessor Segment Overrun
align 16 align 16
vector_9_handler: vector_9_handler:
push qword 0
push qword 9 push qword 9
jmp interrupt_stub jmp interrupt_stub

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@@ -22,7 +22,7 @@ struct idtr idt_reg;
extern char vector_0_handler[]; extern char vector_0_handler[];
// Timer ticks // Timer ticks
extern uint64_t ticks; extern volatile uint64_t ticks;
void idt_set_entry(uint8_t vector, void* handler, uint8_t dpl) void idt_set_entry(uint8_t vector, void* handler, uint8_t dpl)
{ {
@@ -52,9 +52,8 @@ void idt_load(void* idt_addr)
void idt_init() void idt_init()
{ {
// We set 256 entries, but we have only the first few stubs. // Hardcoded...
// Undefined behavior? for (size_t i=0; i<=33; i++)
for (size_t i=0; i<256; i++)
{ {
// Each vector handler is 16-byte aligned, so <vector_no>*16 = address of that handler // Each vector handler is 16-byte aligned, so <vector_no>*16 = address of that handler
idt_set_entry(i, vector_0_handler + (i*16), 0); idt_set_entry(i, vector_0_handler + (i*16), 0);
@@ -210,6 +209,7 @@ struct cpu_status_t* interrupt_dispatch(struct cpu_status_t* context)
case 33: case 33:
DEBUG("Keyboard Interrupt"); DEBUG("Keyboard Interrupt");
keyboard_handler(); keyboard_handler();
outb(0x20, 0x20);
break; break;
default: default:

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@@ -17,6 +17,8 @@ uint8_t key_status = 0b00000000;
unsigned char* keymap; unsigned char* keymap;
unsigned char* keymap_shifted; unsigned char* keymap_shifted;
extern struct init_status init;
unsigned char kbdus[128] = unsigned char kbdus[128] =
{ {
0, 27, '1', '2', '3', '4', '5', '6', '7', '8', /* 9 */ 0, 27, '1', '2', '3', '4', '5', '6', '7', '8', /* 9 */
@@ -176,9 +178,6 @@ void keyboard_handler()
key_status &= ~ALT_PRESSED_BIT; key_status &= ~ALT_PRESSED_BIT;
break; break;
} }
// Send EOI
outb(0x20, 0x20);
return; return;
} }
else else
@@ -199,21 +198,26 @@ void keyboard_handler()
break; break;
default: default:
{
// Avoiding buffer overflow from extended keys lol
if (scancode < 128)
{ {
// Should we get a SHIFTED char or a regular one? // Should we get a SHIFTED char or a regular one?
unsigned char c = (key_status & SHIFT_PRESSED_BIT) ? keymap_shifted[scancode] : keymap[scancode]; unsigned char c = (key_status & SHIFT_PRESSED_BIT) ? keymap_shifted[scancode] : keymap[scancode];
if (c) if (c)
{ {
if (c == '\n')
{
_putchar('\r');
}
// Should probably have a keyboard buffer here... instead of this // Should probably have a keyboard buffer here... instead of this
_putchar(c); _putchar(c);
} }
} }
} }
} }
}
// End of Interrupt (to master PIC)
outb(0x20, 0x20);
} }
void keyboard_init(unsigned char layout) void keyboard_init(unsigned char layout)
@@ -233,14 +237,21 @@ void keyboard_init(unsigned char layout)
break; break;
default: default:
skputs("Unsupported layout."); panic(NULL, "Unsupported keyboard layout");
return; return;
} }
// Flush keyboard buffer
while (inb(0x64) & 1)
{
inb(0x60);
}
// Unmask IRQ1 // Unmask IRQ1
uint8_t mask = inb(0x21); uint8_t mask = inb(0x21);
mask &= ~(1 << 1); mask &= ~(1 << 1);
outb(0x21, mask); outb(0x21, mask);
DEBUG("PS/2 Keyboard initialized"); DEBUG("PS/2 Keyboard initialized");
init.keyboard = true;
} }

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@@ -7,6 +7,8 @@
#include <kernel.h> #include <kernel.h>
#include "serial.h" #include "serial.h"
extern struct init_status init;
void outb(int port, unsigned char data) void outb(int port, unsigned char data)
{ {
__asm__ __volatile__("outb %%al, %%dx" :: "a" (data),"d" (port)); __asm__ __volatile__("outb %%al, %%dx" :: "a" (data),"d" (port));
@@ -43,6 +45,7 @@ int serial_init()
outb(PORT + 4, 0x0F); outb(PORT + 4, 0x0F);
DEBUG("*** Welcome to PepperOS! ***"); DEBUG("*** Welcome to PepperOS! ***");
init.serial = true;
return 0; return 0;
} }
@@ -54,6 +57,7 @@ static int is_transmit_empty()
// Serial kernel putchar // Serial kernel putchar
void skputc(char c) void skputc(char c)
{ {
// TODO: Spinlock here (serial access)
while (!is_transmit_empty()); // wait for free spot while (!is_transmit_empty()); // wait for free spot
outb(PORT, c); outb(PORT, c);
} }

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@@ -16,12 +16,17 @@ because this shitty implementation will be replaced one day by Flanterm
#include "term.h" #include "term.h"
#include "config.h" #include "config.h"
#include "flanterm.h" #include "flanterm.h"
#include "flanterm_backends/fb.h"
#include "mem/heap/kheap.h"
#include "limine.h"
extern struct flanterm_context* ft_ctx; extern struct flanterm_context* ft_ctx;
extern struct init_status init;
// Overhead that could be avoided, right? (for printf) // Overhead that could be avoided, right? (for printf)
void _putchar(char character) void _putchar(char character)
{ {
// TODO: Spinlock here (terminal access)
flanterm_write(ft_ctx, &character, 1); flanterm_write(ft_ctx, &character, 1);
} }
@@ -36,3 +41,34 @@ void kputs(const char* str)
} }
_putchar('\r'); _putchar('\r');
} }
extern struct flanterm_context* ft_ctx;
extern struct boot_context boot_ctx;
void flanterm_free_wrapper(void* ptr, size_t size)
{
(void)size;
kfree(ptr);
}
void term_init()
{
uint32_t bgColor = 0x252525;
ft_ctx = flanterm_fb_init(
kmalloc,
flanterm_free_wrapper,
boot_ctx.fb->address, boot_ctx.fb->width, boot_ctx.fb->height, boot_ctx.fb->pitch,
boot_ctx.fb->red_mask_size, boot_ctx.fb->red_mask_shift,
boot_ctx.fb->green_mask_size, boot_ctx.fb->green_mask_shift,
boot_ctx.fb->blue_mask_size, boot_ctx.fb->blue_mask_shift,
NULL,
NULL, NULL,
&bgColor, NULL,
NULL, NULL,
NULL, 0, 0, 1,
0, 0,
0,
0
);
init.terminal = true;
}

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@@ -9,5 +9,6 @@
void kputs(const char* str); void kputs(const char* str);
void _putchar(char character); void _putchar(char character);
void term_init();
#endif #endif

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@@ -19,9 +19,11 @@ enum ErrorCodes
#include "io/serial/serial.h" #include "io/serial/serial.h"
#include "io/term/printf.h" #include "io/term/printf.h"
#include "idt/idt.h" #include "idt/idt.h"
#include <stdbool.h>
#define DEBUG(log, ...) fctprintf((void*)&skputc, 0, "debug: [%s]: " log "\r\n", __FILE__, ##__VA_ARGS__) extern volatile uint64_t ticks;
#define DEBUG(log, ...) fctprintf((void*)&skputc, 0, "[%8u] debug: <%s>: " log "\r\n", ticks, __func__, ##__VA_ARGS__)
/* #define DEBUG(log, ...) \ /* #define DEBUG(log, ...) \
printf("debug: [%s]: " log "\r\n", __FILE__, ##__VA_ARGS__); \ printf("debug: [%s]: " log "\r\n", __FILE__, ##__VA_ARGS__); \
@@ -38,6 +40,7 @@ void panic(struct cpu_status_t* ctx, const char* str);
void hcf(); void hcf();
void idle(); void idle();
/* debug */
void debug_stack_trace(unsigned int max_frames); void debug_stack_trace(unsigned int max_frames);
const char* debug_find_symbol(uintptr_t rip, uintptr_t* offset); const char* debug_find_symbol(uintptr_t rip, uintptr_t* offset);
void boot_mem_display(); void boot_mem_display();
@@ -52,4 +55,13 @@ struct boot_context
struct limine_kernel_address_response* kaddr; struct limine_kernel_address_response* kaddr;
}; };
// Are these modules initialized yet?
struct init_status
{
bool terminal;
bool serial;
bool keyboard;
bool timer;
};
#endif #endif

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@@ -30,8 +30,6 @@
__attribute__((used, section(".limine_requests"))) __attribute__((used, section(".limine_requests")))
volatile LIMINE_BASE_REVISION(3); volatile LIMINE_BASE_REVISION(3);
struct flanterm_context *ft_ctx;
// Halt and catch fire (makes machine stall) // Halt and catch fire (makes machine stall)
void hcf() void hcf()
{ {
@@ -41,9 +39,9 @@ void hcf()
// Doing nothing (can be interrupted) // Doing nothing (can be interrupted)
void idle() {SET_INTERRUPTS; for(;;)asm("hlt");} void idle() {SET_INTERRUPTS; for(;;)asm("hlt");}
// uint8_t kernel_stack[KERNEL_STACK_SIZE] __attribute__((aligned(16))); struct flanterm_context *ft_ctx;
struct boot_context boot_ctx; struct boot_context boot_ctx;
struct init_status init = {0};
extern volatile struct limine_framebuffer_request framebuffer_request; extern volatile struct limine_framebuffer_request framebuffer_request;
extern volatile struct limine_memmap_request memmap_request; extern volatile struct limine_memmap_request memmap_request;
@@ -52,22 +50,24 @@ extern volatile struct limine_kernel_address_request kerneladdr_request;
extern struct process_t* processes_list; extern struct process_t* processes_list;
extern struct process_t* current_process; extern struct process_t* current_process;
struct process_t* idle_proc;
bool iran = false;
// Never gets executed although pedicel is scheduled?
void pedicel_main(void* arg) void pedicel_main(void* arg)
{ {
bool iran = true;
// FROM THE NEXT LINE ONWARDS, CANNOT WRITE TO FRAMEBUFFER WITHOUT PAGE FAULT! // FROM THE NEXT LINE ONWARDS, CANNOT WRITE TO FRAMEBUFFER WITHOUT PAGE FAULT!
//printf("\n\nWelcome to PepperOS! Pedicel speaking.\nNothing left to do, halting the system!"); //printf("\n\nWelcome to PepperOS! Pedicel speaking.\nNothing left to do, halting the system!");
} }
void idle_main(void* arg) void idle_main(void* arg)
{ {
for(;;)asm("hlt"); for (;;)
} {
asm("hlt");
void flanterm_free_wrapper(void* ptr, size_t size) }
{
(void)size;
kfree(ptr);
} }
extern uintptr_t kheap_start; extern uintptr_t kheap_start;
@@ -79,6 +79,7 @@ void kmain()
if (!LIMINE_BASE_REVISION_SUPPORTED) hcf(); if (!LIMINE_BASE_REVISION_SUPPORTED) hcf();
serial_init(); serial_init();
timer_init();
// Populate boot context // Populate boot context
boot_ctx.fb = framebuffer_request.response ? framebuffer_request.response->framebuffers[0] : NULL; boot_ctx.fb = framebuffer_request.response ? framebuffer_request.response->framebuffers[0] : NULL;
@@ -95,41 +96,19 @@ void kmain()
keyboard_init(FR); keyboard_init(FR);
uint32_t bgColor = 0x252525; term_init();
ft_ctx = flanterm_fb_init(
kmalloc,
flanterm_free_wrapper,
boot_ctx.fb->address, boot_ctx.fb->width, boot_ctx.fb->height, boot_ctx.fb->pitch,
boot_ctx.fb->red_mask_size, boot_ctx.fb->red_mask_shift,
boot_ctx.fb->green_mask_size, boot_ctx.fb->green_mask_shift,
boot_ctx.fb->blue_mask_size, boot_ctx.fb->blue_mask_shift,
NULL,
NULL, NULL,
&bgColor, NULL, // &bgColor
NULL, NULL,
NULL, 0, 0, 1,
0, 0,
0,
0
);
gdt_init(); gdt_init();
idt_init(); idt_init();
timer_init();
vmm_init();
process_init(); process_init();
struct process_t* idle_proc = process_create("idle", (void*)idle_main, 0); idle_proc = process_create("idle", (void*)idle_main, 0);
struct process_t* pedicel = process_create("pedicel", (void*)pedicel_main, 0); struct process_t* pedicel = process_create("pedicel", (void*)pedicel_main, 0);
process_display_list(processes_list); process_display_list(processes_list);
scheduler_init(); scheduler_init();
current_process = idle_proc;
current_process->status = RUNNING;
kputs(PEPPEROS_SPLASH); kputs(PEPPEROS_SPLASH);
idle(); idle();
} }

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@@ -45,7 +45,7 @@ void process_display_list(struct process_t* processes_list)
struct process_t* process_create(char* name, void(*function)(void*), void* arg) struct process_t* process_create(char* name, void(*function)(void*), void* arg)
{ {
/* CLEAR_INTERRUPTS; */ CLEAR_INTERRUPTS;
struct process_t* proc = (struct process_t*)kmalloc(sizeof(struct process_t)); struct process_t* proc = (struct process_t*)kmalloc(sizeof(struct process_t));
struct cpu_status_t* ctx = (struct cpu_status_t*)kmalloc(sizeof(struct cpu_status_t)); struct cpu_status_t* ctx = (struct cpu_status_t*)kmalloc(sizeof(struct cpu_status_t));
@@ -79,7 +79,7 @@ struct process_t* process_create(char* name, void(*function)(void*), void* arg)
process_add(&processes_list, proc); process_add(&processes_list, proc);
/* SET_INTERRUPTS; */ SET_INTERRUPTS;
return proc; return proc;
} }

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@@ -12,6 +12,7 @@
extern struct process_t* processes_list; extern struct process_t* processes_list;
extern struct process_t* current_process; extern struct process_t* current_process;
extern struct process_t* idle_proc;
void scheduler_init() void scheduler_init()
{ {
@@ -28,9 +29,8 @@ struct cpu_status_t* scheduler_schedule(struct cpu_status_t* context)
if (current_process == NULL) if (current_process == NULL)
{ {
// Wtf happened // If no more processes, then set IDLE as the current process, that's it.
current_process = processes_list; current_process = idle_proc;
//panic(NULL, "Scheduler called without current process");
} }
current_process->context = context; current_process->context = context;
@@ -49,6 +49,8 @@ struct cpu_status_t* scheduler_schedule(struct cpu_status_t* context)
if (current_process != NULL && current_process->status == DEAD) if (current_process != NULL && current_process->status == DEAD)
{ {
process_delete(&prev_process, current_process); process_delete(&prev_process, current_process);
current_process = NULL;
return idle_proc->context;
} else } else
{ {
current_process->status = RUNNING; current_process->status = RUNNING;
@@ -56,8 +58,6 @@ struct cpu_status_t* scheduler_schedule(struct cpu_status_t* context)
} }
} }
// Current_process gets wrong context?? (iret_rip points to other stuff than process function; like putpixel() for example)
DEBUG("current_process={pid=%u, name='%s', root_page_table[virt]=%p}", current_process->pid, current_process->name, current_process->root_page_table); DEBUG("current_process={pid=%u, name='%s', root_page_table[virt]=%p}", current_process->pid, current_process->name, current_process->root_page_table);
load_cr3(VIRT_TO_PHYS((uint64_t)current_process->root_page_table)); load_cr3(VIRT_TO_PHYS((uint64_t)current_process->root_page_table));

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@@ -18,6 +18,8 @@ interested in multi-core functionnality like SMP)
volatile uint64_t ticks = 0; volatile uint64_t ticks = 0;
extern struct init_status init;
void pic_remap() void pic_remap()
{ {
uint8_t master_mask = inb(0x21); uint8_t master_mask = inb(0x21);
@@ -91,4 +93,5 @@ void timer_init()
pic_enable(); pic_enable();
pit_init(); pit_init();
DEBUG("PIT initialized"); DEBUG("PIT initialized");
init.timer = true;
} }