. all invocations were S or D, so can safely be dropped to prepare for the segmentless world . still assign D to the SCP_SEG field in the message to make previous kernels usable
		
			
				
	
	
		
			188 lines
		
	
	
		
			4.5 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			188 lines
		
	
	
		
			4.5 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
#include <minix/drivers.h>
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#include <minix/chardriver.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <minix/ds.h>
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#include "hello.h"
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/*
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 * Function prototypes for the hello driver.
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 */
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static int hello_open(message *m);
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static int hello_close(message *m);
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static struct device * hello_prepare(dev_t device);
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static int hello_transfer(endpoint_t endpt, int opcode, u64_t position,
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	iovec_t *iov, unsigned int nr_req, endpoint_t user_endpt, unsigned int
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	flags);
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/* SEF functions and variables. */
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static void sef_local_startup(void);
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static int sef_cb_init(int type, sef_init_info_t *info);
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static int sef_cb_lu_state_save(int);
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static int lu_state_restore(void);
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/* Entry points to the hello driver. */
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static struct chardriver hello_tab =
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{
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    hello_open,
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    hello_close,
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    nop_ioctl,
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    hello_prepare,
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    hello_transfer,
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    nop_cleanup,
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    nop_alarm,
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    nop_cancel,
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    nop_select,
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    NULL
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};
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/** Represents the /dev/hello device. */
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static struct device hello_device;
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/** State variable to count the number of times the device has been opened. */
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static int open_counter;
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static int hello_open(message *UNUSED(m))
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{
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    printf("hello_open(). Called %d time(s).\n", ++open_counter);
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    return OK;
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}
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static int hello_close(message *UNUSED(m))
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{
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    printf("hello_close()\n");
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    return OK;
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}
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static struct device * hello_prepare(dev_t UNUSED(dev))
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{
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    hello_device.dv_base = make64(0, 0);
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    hello_device.dv_size = make64(strlen(HELLO_MESSAGE), 0);
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    return &hello_device;
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}
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static int hello_transfer(endpoint_t endpt, int opcode, u64_t position,
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    iovec_t *iov, unsigned nr_req, endpoint_t UNUSED(user_endpt),
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    unsigned int UNUSED(flags))
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{
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    int bytes, ret;
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    printf("hello_transfer()\n");
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    if (nr_req != 1)
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    {
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        /* This should never trigger for character drivers at the moment. */
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        printf("HELLO: vectored transfer request, using first element only\n");
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    }
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    bytes = strlen(HELLO_MESSAGE) - ex64lo(position) < iov->iov_size ?
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            strlen(HELLO_MESSAGE) - ex64lo(position) : iov->iov_size;
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    if (bytes <= 0)
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    {
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        return OK;
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    }
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    switch (opcode)
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    {
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        case DEV_GATHER_S:
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            ret = sys_safecopyto(endpt, (cp_grant_id_t) iov->iov_addr, 0,
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                                (vir_bytes) (HELLO_MESSAGE + ex64lo(position)),
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                                 bytes);
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            iov->iov_size -= bytes;
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            break;
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        default:
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            return EINVAL;
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    }
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    return ret;
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}
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static int sef_cb_lu_state_save(int UNUSED(state)) {
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/* Save the state. */
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    ds_publish_u32("open_counter", open_counter, DSF_OVERWRITE);
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    return OK;
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}
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static int lu_state_restore() {
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/* Restore the state. */
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    u32_t value;
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    ds_retrieve_u32("open_counter", &value);
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    ds_delete_u32("open_counter");
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    open_counter = (int) value;
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    return OK;
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}
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static void sef_local_startup()
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{
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    /*
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     * Register init callbacks. Use the same function for all event types
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     */
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    sef_setcb_init_fresh(sef_cb_init);
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    sef_setcb_init_lu(sef_cb_init);
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    sef_setcb_init_restart(sef_cb_init);
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    /*
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     * Register live update callbacks.
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     */
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    /* - Agree to update immediately when LU is requested in a valid state. */
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    sef_setcb_lu_prepare(sef_cb_lu_prepare_always_ready);
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    /* - Support live update starting from any standard state. */
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    sef_setcb_lu_state_isvalid(sef_cb_lu_state_isvalid_standard);
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    /* - Register a custom routine to save the state. */
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    sef_setcb_lu_state_save(sef_cb_lu_state_save);
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    /* Let SEF perform startup. */
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    sef_startup();
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}
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static int sef_cb_init(int type, sef_init_info_t *UNUSED(info))
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{
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/* Initialize the hello driver. */
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    int do_announce_driver = TRUE;
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    open_counter = 0;
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    switch(type) {
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        case SEF_INIT_FRESH:
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            printf("%s", HELLO_MESSAGE);
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        break;
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        case SEF_INIT_LU:
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            /* Restore the state. */
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            lu_state_restore();
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            do_announce_driver = FALSE;
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            printf("%sHey, I'm a new version!\n", HELLO_MESSAGE);
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        break;
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        case SEF_INIT_RESTART:
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            printf("%sHey, I've just been restarted!\n", HELLO_MESSAGE);
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        break;
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    }
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    /* Announce we are up when necessary. */
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    if (do_announce_driver) {
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        chardriver_announce();
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    }
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    /* Initialization completed successfully. */
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    return OK;
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}
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int main(void)
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{
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    /*
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     * Perform initialization.
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     */
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    sef_local_startup();
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    /*
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     * Run the main loop.
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     */
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    chardriver_task(&hello_tab, CHARDRIVER_SYNC);
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    return OK;
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}
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