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path: root/binding/iiodevices-binding.c
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#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <stdint.h>
#include <unistd.h>
#include <sys/types.h>
#include <fcntl.h>
#include <pthread.h>
#include <sys/ioctl.h>
#include <systemd/sd-event.h>
#include <time.h>
#include <limits.h>

#include <json-c/json.h>
#define AFB_BINDING_VERSION 2
#include <afb/afb-binding.h>

#include <iio.h>

#include "config_iiodevices.h"

/*structure in order to handle channels connections*/
struct channels {
    struct iio_channel *chn;
    enum iio_elements iioelts;
    char name[PATH_MAX];
    struct channels *next;
};

/*handle client subscription*/
struct client_sub {
    struct channels *channels;
    int index;
    int fd;
    uint64_t u_period;
    enum iio_elements iioelts;
    struct iio_device *dev;
    struct afb_event *event;
    struct iio_info *infos;
    json_object *jobject;
    struct client_sub *next;
};

/*gather all afb_event*/
struct event
{
    struct event *next;
    struct afb_event event;
    char tag[PATH_MAX];
};

/*events*/
static struct event *events = 0;
/*iio context*/
static struct iio_context *ctx = NULL;
/*clients*/
static struct client_sub * clients = NULL;
/*save last registered client*/
static struct client_sub * last_client = NULL;

/* Static definition of supported iiodevices */
static struct iio_info iio_infos[] = {
 { "16-001d", "acceleration", "accel"},
 { "16-001d", "gyroscope", "magn"},
 { "16-006b", "compass", "anglvel"}
};

/*get event by afb_event*/
static struct event *event_get_event(const struct afb_event *event)
{
    struct event *e = events;
    while(&e->event != event) {
        e = e->next;
    }
    return e;
}

/* searchs the event of tag */
static struct event *event_get(const char *tag)
{
	struct event *e = events;
	while(e && strcmp(e->tag, tag))
		e = e->next;
	return e;
}

/* creates the event of tag */
static struct afb_event* event_add(const char *tag)
{
	struct event *e;

	/* check valid tag */
	e = event_get(tag);
	if (e) return NULL;

	/* creation */
	e = malloc(strlen(tag) + sizeof *e);
	if (!e) return NULL;
	strncpy(e->tag, tag, PATH_MAX);

	/* make the event */
	e->event = afb_daemon_make_event(tag);
	if (!e->event.closure) { free(e); return NULL; }

	/* link */
	e->next = events;
	events = e;
	return &e->event;
}

/* deletes the event of event */
static int event_del(struct afb_event *event)
{
	struct event *e, **p;

	/* check exists */
    e = event_get_event(event);
    if (!e) return -1;

    /* unlink */
    p = &events;
    while(*p != e) p = &(*p)->next;
    *p = e->next;

    /* destroys */
    afb_event_unref(e->event);
    free(e);
	return 0;
}

/*initialise iio context*/
int init_context()
{
    ctx = iio_create_local_context();
    if(!ctx)
    {
        AFB_ERROR("cannot create local iio context");
        return -1;
    }
    return 0;
}

/*initialise device: find by its name*/
static void init_dev(struct client_sub *client)
{
    if(!client) {
        AFB_ERROR("client is null");
        return;
    }

    if(!ctx)
        init_context();
    AFB_DEBUG("iio_context_find_device %s", client->infos->dev_name);
    client->dev =  iio_context_find_device(ctx, client->infos->dev_name);
    if(!client->dev) {
        AFB_ERROR("No %s device found", client->infos->dev_name);
        return;
    }
}

/*read static infos from channels*/
static int read_infos(struct client_sub* client)
{
    if(!client || !client->channels || !client->channels->chn) {
        AFB_ERROR("client or client->channels or client->channels->chn is null");
        return -1;
    }
    json_object *jobject = NULL;
    size_t size = 1000;
    char val[size];
    char keyfirst[size];

    struct channels *channel = client->channels;
    //read all infos
    while(channel) {
        for(int i = 0; i < iio_channel_get_attrs_count(channel->chn); i++) {
            const char *id_attr = iio_channel_get_attr(channel->chn, i);
            if(!id_attr) {
                AFB_ERROR("cannot get attr from channel %d", i);
                return -1;
            }
            if(strcasecmp(id_attr, "raw")) { //do not take raw infos
                iio_channel_attr_read(channel->chn, id_attr, val, 100);

                //first channel
                if(client->channels == channel) {
                    json_object *value = json_object_new_string(val);
                    json_object_object_add(client->jobject, id_attr, value);
                }
                else { //other channels: keep same value and stored other values
                    /*no id_attr: looking for an already changed id*/
                    if(!json_object_object_get_ex(client->jobject, id_attr, &jobject))
                    {
                        strncpy(keyfirst, id_attr, size);
                        set_channel_name(keyfirst, client->channels->iioelts);
                        if(!json_object_object_get_ex(client->jobject, keyfirst, &jobject)) {
                            AFB_WARNING("cannot find %s keyfirst in json object",
                                    keyfirst);
                        }
                    }

                    const char * valfisrt = json_object_get_string(jobject); //get first value channel
                    if(strcasecmp(val, valfisrt)) { //different value store it
                        char key[size];
                        strncpy(key, id_attr, size);
                        set_channel_name(key, channel->iioelts); //add channel suffix
                        json_object *value = json_object_new_string(val);
                        json_object_object_add(client->jobject, key, value);

                        //remove previous non unique key and replace it with suffix
                        strncpy(keyfirst, id_attr, size);
                        set_channel_name(keyfirst, client->channels->iioelts);
                        json_object *valuefirst = json_object_new_string(valfisrt);
                        json_object_object_add(client->jobject, keyfirst, valuefirst);
                        json_object_object_del(client->jobject, id_attr);
                    }
                }
            }
        }
        channel = channel->next;
    }
    return 0;
}

/*close file descriptor*/
static void close_fd(struct client_sub *client)
{
    if(!client) {
        AFB_ERROR("client is null pointer");
        return;
    }

    if(client->fd >= 0)
        close(client->fd);
}

/*deinit client channels*/
static void deinit_channels(struct client_sub *client)
{
    if(!client->channels) {
        AFB_ERROR("client->channels is null pointer");
        return;
    }

    struct channels *it_chn = client->channels;
    while(it_chn) {
        struct channels *tmp = it_chn->next;
        AFB_DEBUG("free it_chn=%s", it_chn->name);
        free(it_chn);
        it_chn = tmp;
    }
    client->channels = NULL;
}

/*looking for previous client: if client is first returns client*/
static struct client_sub* looking_for_previous(struct client_sub *client)
{
    if(!client || !clients) {
        AFB_ERROR("client or clients is null pointer");
        return NULL;
    }
    struct client_sub* prev = clients;
    while(prev->next != client) {
        prev = prev->next;
    }
    return prev;
}

/*deinit client sub*/
static void deinit_client_sub(struct client_sub *client)
{
    if(!client) {
        AFB_ERROR("client is null pointer");
        return;
    }

    struct client_sub *prev_client;
    if(client == clients) {//first one
        clients = client->next;
    }
    else {
        prev_client = looking_for_previous(client);
        if(!prev_client) {
            AFB_ERROR("cannot find previous client");
            exit(-1);
        }
        prev_client->next = client->next;
    }
    AFB_DEBUG("free client for %s", client->infos->id);
    free(client);
}

/*desallocate channels*/
static void desallocate_channels(sd_event_source* src,
        struct client_sub *client)
{
    afb_event_drop(*client->event);
    if(src) {
        sd_event_source_set_enabled(src, SD_EVENT_OFF);
        sd_event_source_unref(src);
    }
    close_fd(client);
    event_del(client->event);
    deinit_channels(client);
    deinit_client_sub(client);
}

/*!read data from channels*/
static int read_data(struct client_sub *client, sd_event_source* src)
{
    if(!client) {
        AFB_ERROR("client is null");
        return -1;
    }

    char val[10];
    struct channels *channel = client->channels;
    while(channel) { //iterate on client channels
        if(!channel->chn) {
            AFB_ERROR("chn is null for cl_chn=%s", channel->name);
            return -1;
        }

        iio_channel_attr_read(channel->chn, "raw", val, 10);
        int data = (int)strtol(val, NULL, 10);
        AFB_DEBUG("read_data: %s %d", iio_channel_get_id(channel->chn), data);

        json_object *value = json_object_new_int(data);
        json_object_object_add(client->jobject, channel->name, value);
        channel = channel->next;
    }

    /*if no more subscribers -> desallocate*/
    int nb_subscribers = afb_event_push(*client->event, json_object_get(client->jobject));
    AFB_DEBUG("nb_subscribers for %s is %d", afb_event_name(*client->event), nb_subscribers);
    if(nb_subscribers <= 0)
        desallocate_channels(src, client);
    return 0;
}

/*read data from file descriptor*/
static int read_data_push(sd_event_source* src, int fd, uint32_t revents, void* userdata)
{
    struct client_sub * client= (struct client_sub *)userdata;
    read_data(client, src);
    return 0;
}

/*read data from timer*/
static int read_data_timer(sd_event_source* src, uint64_t usec, void *userdata)
{
    struct client_sub *client = (struct client_sub *)userdata;

    /*set next time to trigger*/
    uint64_t usecs;
    sd_event_now(afb_daemon_get_event_loop(), CLOCK_MONOTONIC, &usecs);
    usecs += client->u_period;
    sd_event_source_set_time(src, usecs);

    read_data(client, src);
    return 0;
}

/*init event io: depending on the frequency, if no filled, triggered on file
 * descriptor */
static void init_event_io(struct client_sub *client)
{
    if(!client) {
        AFB_ERROR("client is null");
        return;
    }
    if(!client->channels) {
        AFB_ERROR("channel is null");
        return;
    }
    read_infos(client); //get unchanged infos
    sd_event_source *source = NULL;
    if(client->u_period <= 0) { //no given frequency
        char filename[PATH_MAX];
        snprintf(filename, PATH_MAX,
                IIODEVICE"%s/%s", iio_device_get_id(client->dev),
                iio_channel_attr_get_filename(client->channels->chn, "raw"));
        if((client->fd = open(filename, O_RDONLY)) < 0) {
            AFB_ERROR("cannot open %s file", filename);
            return;
        }

        sd_event_add_io(afb_daemon_get_event_loop(), &source, client->fd, EPOLLIN, read_data_push, client);
    }
    else { //frequency specified
        sd_event_add_time(afb_daemon_get_event_loop(), &source, CLOCK_MONOTONIC, 0, 1, read_data_timer, client);
        sd_event_source_set_enabled(source, SD_EVENT_ON);
    }
}

/*initialise client channel*/
static struct channels* set_channel(
        struct client_sub* client, struct channels *prev_chn, const enum iio_elements i)
{
    prev_chn->next = malloc(sizeof(struct channels));
    if(!prev_chn->next) {
        AFB_ERROR("alloc failed for channels");
        return NULL;
    }

    struct channels *chn = prev_chn->next;
    chn->next = NULL;
    chn->iioelts = i;

    /*set channel name with iio_elements*/
    strncpy(chn->name, client->infos->middlename, PATH_MAX);
    set_channel_name(chn->name, i);

    if(!(chn->chn = iio_device_find_channel(client->dev, chn->name, false))) {
        AFB_ERROR("cannot find %s channel", chn->name);
        free(chn);
        prev_chn->next = NULL;
        return prev_chn;
    }
    iio_channel_enable(chn->chn);
    return chn;
}

static void init_channel(struct client_sub* client, const unsigned int iioelts)
{
    if(!client) {
        AFB_ERROR("client is null");
        return;
    }
    AFB_DEBUG("size of channels=%d", get_iio_nb(iioelts));

    /*looking for the last channel: could be the first*/
    struct channels pre_index;
    pre_index.next = client->channels;
    struct channels *it_chn = &pre_index;
    while(it_chn->next) {
        it_chn = it_chn->next;
    }

    /*set channel*/
    for(int i = 1; i <= iioelts; i = i << 1) { //iterate on enumerations
        if(i == (i & iioelts)) {
            it_chn = set_channel(client, it_chn, i);
        }
    }
    client->channels = pre_index.next;
}

/*get period in microseconds from a frequency*/
static uint64_t get_period(const char* freq)
{
    double frequency = 0;
    if(freq)
        frequency = strtod(freq, NULL);
    return (frequency == 0) ? 0 : (uint64_t)((1.0 / frequency) * 1000000);
}

/*check if it is needed to create a new client: if NULL return it is needed,
 * else it is no needed but can be needed to add channels if rest_iioelts > 0*/
static struct client_sub* is_new_client_sub_needed(struct iio_info* infos,
        uint64_t u_period, enum iio_elements *rest_iioelts)
{
    struct client_sub *it_client = clients;
    while(it_client) {
            if(it_client->infos == infos && u_period == it_client->u_period) {
                AFB_DEBUG("a client is matching");
                *rest_iioelts = ~it_client->iioelts & *rest_iioelts;
                it_client->iioelts |= *rest_iioelts;
                return it_client;
            }
            it_client = it_client->next;
    }
    return NULL;
}

/*add new client with new event*/
static struct client_sub *add_new_client(struct iio_info *infos,
        const enum iio_elements iioelts, const uint64_t u_period)
{
    struct client_sub *client = malloc(sizeof(struct client_sub));
    if(!client) {
        AFB_ERROR("cannot allocate client");
        return NULL;
    }
    //initialise client
    if(!clients) {
        clients = client;
        client->index = 0;
    }
    else {
        if(!last_client) {
            AFB_ERROR("last_client should not be null");
            return NULL;
        }
        last_client->next = client;
        client->index = last_client->index + 1;
    }

    char event_name[100];
    sprintf(event_name, "%s%d", infos->id, client->index);
    AFB_DEBUG("add_new_client with event_name=%s", event_name);

    client->channels = NULL;
    client->jobject = json_object_new_object();
    client->iioelts = iioelts;
    client->u_period = u_period;
    client->infos = infos;
    client->fd = -1;
    client->next = NULL;
    client->dev = NULL;
    client->event = event_add(event_name);

    last_client = client;
    return client;
}

/*subscribe verb*/
static void subscribe(struct afb_req request)
{
    const char *value = afb_req_value(request, "event");
    const char *s_iioelts = afb_req_value(request, "args");
    const char *freq = afb_req_value(request, "frequency");

    if(!value || !s_iioelts) {
        afb_req_fail(request, "failed", "please, fill 'event' and 'args' fields");
        return;
    }

    AFB_INFO("subscription with: value=%s, s_iioelts=%s, freq=%s",
            value, s_iioelts, freq);

    bool found = false;
    for(int i = 0; i < sizeof(iio_infos)/sizeof(iio_infos[0]); i++) {
        if(!strcasecmp(value, iio_infos[i].id)) {
            found = true;

            uint64_t u_period = get_period(freq);
            enum iio_elements iioelts = (int)treat_iio_elts(s_iioelts);
            if(iioelts == 0){
                afb_req_fail(request, "failed", "wrong args");
                return;
            }
            struct client_sub* client = is_new_client_sub_needed(&iio_infos[i],
                    u_period, &iioelts);
            if(!client || iioelts > 0) { //no client found or new channels
                if(!client)
                    client = add_new_client(&iio_infos[i], iioelts, u_period);
                init_dev(client);
                if(!client->dev) {
                    deinit_client_sub(client);
                    afb_req_fail_f(request, "failed", "No %s device found", client->infos->dev_name);
                    return;
                }
                init_channel(client, iioelts);
                if(!client->channels) {
                    afb_req_fail(request, "failed", "No channels found");
                    return;
                }
                init_event_io(client);
            }
            //stored client in order to be get in unsubscription
            afb_req_context_set(request, client, NULL);

            if(afb_req_subscribe(request, *client->event) != 0) {
                afb_req_fail(request, "failed", "subscription failed");
                return;
            }
        }
    }
    if(!found) {
        afb_req_fail(request, "failed", "Invalid event");
        return;
    }
    afb_req_success(request, NULL, NULL);
}

/*unsubscribe verb*/
static void unsubscribe(struct afb_req request)
{
    const char *value = afb_req_value(request, "event");
    if(!value) {
        afb_req_fail(request, "failed", "please, fill 'event' fields");
        return;
    }

    bool found = false;
    if(value) {
        for(int i = 0; i < sizeof(iio_infos)/sizeof(iio_infos[0]); i++) {
            if(!strcasecmp(value, iio_infos[i].id)) {
                found = true;
                struct client_sub *client
                    = (struct client_sub *)afb_req_context_get(request);
                if(!client) {
                    AFB_ERROR("cannot find %s event, it seems that there was \
                            no subscription", value);
                    return;
                }
                if(afb_req_unsubscribe(request, *client->event) != 0) {
                    afb_req_fail(request, "failed", "unsubscription failed");
                    return;
                }
            }
        }
        if(!found) {
            afb_req_fail(request, "failed", "Invalid event");
            return;
        }
    }
    afb_req_success(request, NULL, NULL);
}

/*list of api verbs*/
const afb_verb_v2 verbs[] = {
	    { .verb = "subscribe",		.session = AFB_SESSION_NONE, .callback = subscribe,		.info = "Subscribe for an event" },
	    { .verb = "unsubscribe",	.session = AFB_SESSION_NONE, .callback = unsubscribe,		.info = "Unsubscribe for an event" },
        { .verb=NULL }
};

/*binding configuration*/
const afb_binding_v2 afbBindingV2 = {
        .info = "iio devices service",
        .api = "iiodevices",
        .verbs = verbs
};
; case 0: *clock = UCS_MLB_CLK_CFG_WILDCARD; break; default: UcsXml_CB_OnError("Invalid MLB clock val:'%d'", 1, clock); return false; } return true; } static bool GetI2SSpeed(mxml_node_t *element, const char *key, Ucs_Stream_PortClockConfig_t *clock, bool mandatory) { uint16_t speed; if (!GetUInt16(element, I2S_FS_SPEED, &speed, false)) return false; switch(speed) { case 8: *clock = UCS_STREAM_PORT_CLK_CFG_8FS; break; case 16: *clock = UCS_STREAM_PORT_CLK_CFG_16FS; break; case 32: *clock = UCS_STREAM_PORT_CLK_CFG_32FS; break; case 64: *clock = UCS_STREAM_PORT_CLK_CFG_64FS; break; case 128: *clock = UCS_STREAM_PORT_CLK_CFG_128FS; break; case 256: *clock = UCS_STREAM_PORT_CLK_CFG_256FS; break; case 512: *clock = UCS_STREAM_PORT_CLK_CFG_512FS; break; case 0: *clock = UCS_MLB_CLK_CFG_WILDCARD; break; default: UcsXml_CB_OnError("Invalid I2S clock val:'%d'", 1, clock); return false; } return true; } static bool GetI2SPin(mxml_node_t *element, Ucs_Stream_PortPinId_t *pin, uint8_t *portIndex, bool mandatory) { const char *txt; if (!GetString(element, I2S_PIN, &txt, true)) return false; if (0 == strcmp(I2S_PIN_SRXA0, txt)) { *pin = UCS_STREAM_PORT_PIN_ID_SRXA0; *portIndex = 0; return true; } else if (0 == strcmp(I2S_PIN_SRXA1, txt)) { *pin = UCS_STREAM_PORT_PIN_ID_SRXA1; *portIndex = 0; return true; } else if (0 == strcmp(I2S_PIN_SRXB0, txt)) { *pin = UCS_STREAM_PORT_PIN_ID_SRXB0; *portIndex = 1; return true; } else if (0 == strcmp(I2S_PIN_SRXB1, txt)) { *pin = UCS_STREAM_PORT_PIN_ID_SRXB1; *portIndex = 1; return true; } UcsXml_CB_OnError("Invalid I2S pin val:'%s'", 1, txt); return false; } static bool GetI2SAlignment(mxml_node_t *element, Ucs_Stream_PortDataAlign_t *align, bool mandatory) { const char *txt; if (!GetString(element, I2S_ALIGN, &txt, true)) return false; if (0 == strcmp(I2S_ALIGN_L16, txt)) *align = UCS_STREAM_PORT_ALGN_LEFT16BIT; else if (0 == strcmp(I2S_ALIGN_L24, txt)) *align = UCS_STREAM_PORT_ALGN_LEFT24BIT; else if (0 == strcmp(I2S_ALIGN_R16, txt)) *align = UCS_STREAM_PORT_ALGN_RIGHT16BIT; else if (0 == strcmp(I2S_ALIGN_R24, txt)) *align = UCS_STREAM_PORT_ALGN_RIGHT24BIT; else if (0 == strcmp(I2S_ALIGN_SEQUENTIAL, txt)) *align = UCS_STREAM_PORT_ALGN_SEQ; else { UcsXml_CB_OnError("Invalid I2S alignment:'%s'", 1, txt); return false; } return true; } static bool GetDirection(mxml_node_t *element, Ucs_SocketDirection_t *out) { const char *txt; if (!GetString(element, DIR, &txt, true)) return false; if (0 == strcmp(DIR_IN, txt)) *out = UCS_SOCKET_DIR_INPUT; else if (0 == strcmp(DIR_OUT, txt)) *out = UCS_SOCKET_DIR_OUTPUT; else return false; return true; } static bool GetDataType(mxml_node_t *element, MData_t *out) { const char *txt; if (!GetString(element, DATA_TYPE, &txt, true)) return false; if (0 == strcmp(DATATYPE_SYNC, txt)) { *out = SYNC_DATA; } else if (0 == strcmp(DATATYPE_CTRL, txt)) { *out = CONTROL_DATA; } else if (0 == strcmp(DATATYPE_AVP, txt)) { *out = AV_PACKETIZED; } else if (0 == strcmp(DATATYPE_QOS, txt)) { *out = QOS_IP; } else if (0 == strcmp(DATATYPE_DFP, txt)) { *out = DISC_FRAME_PHASE; } else if (0 == strcmp(DATATYPE_IPC, txt)) { *out = IPC_PACKET; } else { UcsXml_CB_OnError("Unknown data type : '%s'", 1, txt); return false; } return true; } static bool GetPort(mxml_node_t *element, MPort_t *out) { const char *txt; if (!GetString(element, PORT, &txt, true)) return false; if (0 == strcmp(txt, PORT_MOST)) { *out = MPORT_MOST; } else if (0 == strcmp(txt, PORT_USB)) { *out = MPORT_USB; } else if (0 == strcmp(txt, PORT_MLB)) { *out = MPORT_MLB; } else if (0 == strcmp(txt, PORT_I2S)) { *out = MPORT_I2S; } else { UcsXml_CB_OnError("Unknown port : '%s'", 1, txt); return false; } return true; } static bool GetPayload(mxml_node_t *element, const char *name, uint8_t **pPayload, uint8_t *outLen, struct UcsXmlObjectList *obj, bool mandatory) { uint32_t tempLen, len = 0; uint8_t *p; const char *txt; char *txtCopy; char *tkPtr; char *token; if (!GetString(element, name, &txt, mandatory)) return false; tempLen = strlen(txt) + 1; txtCopy = malloc(tempLen); if (NULL == txtCopy) return false; strncpy(txtCopy, txt, tempLen); tempLen = tempLen / 3; /* 2 chars hex value plus space (AA ) */ p = MCalloc(obj, tempLen, 1); if (NULL == p) { free(txtCopy); return false; } *pPayload = p; token = strtok_r( txtCopy, " ,.-", &tkPtr ); while( NULL != token ) { if( len >= tempLen ) { UcsXml_CB_OnError("Script payload values must be stuffed to two characters", 0); free(txtCopy); assert(false); return 0; } p[len++] = strtol( token, NULL, 16 ); token = strtok_r( NULL, " ,.-", &tkPtr ); } *outLen = len; return true; } static bool AddJob(Ucs_Xrm_ResObject_t **joblist, Ucs_Xrm_ResObject_t *job) { uint32_t i; if (NULL == joblist || NULL == job) { assert(false); return false; } for (i = 0; i < MAX_JOB_LIST_LEN; i++) { if (NULL == joblist[i]) { joblist[i] = job; return true; } } assert(false); return false; } static void AddRoute(struct UcsXmlRouteInfo **pRtLst, struct UcsXmlRouteInfo *route) { struct UcsXmlRouteInfo *tail; if (NULL == pRtLst || NULL == route) return; if (NULL == pRtLst[0]) { pRtLst[0] = route; return; } tail = pRtLst[0]; while(tail->next) tail = tail->next; tail->next = route; } static void AddScript(struct UcsXmlScriptInfo **pScrLst, struct UcsXmlScriptInfo *script) { struct UcsXmlScriptInfo *tail; if (NULL == pScrLst || NULL == script) return; if (NULL == pScrLst[0]) { pScrLst[0] = script; return; } tail = pScrLst[0]; while(tail->next) tail = tail->next; tail->next = script; } static ParseResult_t ParseAll(mxml_node_t *tree, UcsXmlVal_t *v, PrivateData_t *vp) { uint32_t devCount; mxml_node_t *sub; ParseResult_t result; if (!GetCount(tree, DEVICE, &devCount, true)) return Parse_XmlError; v->pNod = MCalloc(&vp->objList, devCount, sizeof(Ucs_Rm_Node_t)); if (NULL == v->pNod) return Parse_MemoryError; if (!GetUInt16(tree, ASYNC_BANDWIDTH, &v->packetBw, true)) return Parse_XmlError; ///Iterate all devices if (!GetElement(tree, DEVICE, true, &sub, true)) return Parse_XmlError; while(sub) { mxml_node_t *ch; vp->nod = &v->pNod[v->nodSize]; if (Parse_Success != (result = ParseDevice(sub, vp))) return result; ///Iterate all channels. Device without any channel is also valid. if (GetElement(sub->child, CHANNEL, false, &ch, false)) { while(ch) { mxml_node_t *soc; uint8_t sockCnt = 0; if (Parse_Success != (result = ParseChannel(ch, vp))) return result; ///Iterate all sockets if(!GetElement(ch->child, SOCKET, false, &soc, true)) return Parse_XmlError; while(soc) { ParseResult_t result; if (Parse_Success != (result = ParseSocket(soc, vp))) return result; ++sockCnt; if (!GetElement(soc, SOCKET, false, &soc, false)) break; } if (2 != sockCnt) { UcsXml_CB_OnError("%d sockets per channel found, must be 2", 1, sockCnt); return Parse_XmlError; } if (!GetElement(ch, CHANNEL, false, &ch, false)) break; } } ++v->nodSize; if (!GetElement(sub, DEVICE, false, &sub, false)) break; } ///Fill route structures result = ParseRoutes(v, vp); if (Parse_MemoryError == result) return Parse_MemoryError; else if (Parse_XmlError == result) return Parse_XmlError; ///Iterate all scripts. No scripts at all is allowed if(GetElement(tree, SCRIPT, true, &sub, false)) { while(sub) { ParseResult_t result = ParseScript(sub, vp); if (Parse_MemoryError == result) return Parse_MemoryError; else if (Parse_XmlError == result) return Parse_XmlError; if(!GetElement(sub, SCRIPT, false, &sub, false)) break; } } return result; } static ParseResult_t ParseDevice(mxml_node_t * dev, PrivateData_t *vp) { const char *txt; assert(NULL != dev && NULL != vp); vp->nod->signature_ptr = MCalloc(&vp->objList, 1, sizeof(Ucs_Signature_t)); if(NULL == vp->nod->signature_ptr) return Parse_MemoryError; if (!GetUInt16(dev, NODE_ADDR, &vp->nod->signature_ptr->node_address, true)) return Parse_XmlError; if (GetString(dev, SCRIPT, &txt, false)) { struct UcsXmlScriptInfo *scr = MCalloc(&vp->objList, 1, sizeof(struct UcsXmlScriptInfo)); if (NULL == scr) return Parse_MemoryError; scr->node = vp->nod; strncpy(scr->scriptName, txt, sizeof(scr->scriptName)); AddScript(&vp->pScrLst, scr); } return Parse_Success;; } static ParseResult_t ParseChannel(mxml_node_t *ch, PrivateData_t *vp) { vp->inSocket = NULL; vp->outSocket = NULL; vp->jobList = NULL; vp->dataType = 0xFF; vp->blockWidth = 0; vp->chName = NULL; assert(NULL != ch && NULL != vp); if (!GetString(ch, CHANNEL_NAME, &vp->chName, true)) return Parse_XmlError; if (!GetDataType(ch, &vp->dataType)) return Parse_XmlError; if (!GetUInt16(ch, BANDWIDTH, &vp->blockWidth, true)) return Parse_XmlError; vp->jobList = MCalloc(&vp->objList, MAX_JOB_LIST_LEN, sizeof(Ucs_Xrm_ResObject_t *)); if (NULL == vp->jobList) return Parse_MemoryError; return Parse_Success; } static ParseResult_t ParseSocket(mxml_node_t *soc, PrivateData_t *vp) { MPort_t port; bool isIn = false; bool isSource = false; uint16_t offset = 0; assert(NULL != soc && NULL != vp); Ucs_SocketDirection_t direction; if (!GetDirection(soc, &direction)) return Parse_XmlError; isIn = (UCS_SOCKET_DIR_INPUT == direction); if (!GetPort(soc, &port)) return Parse_XmlError; switch(port) { case MPORT_MOST: { Ucs_Xrm_MostSocket_t *sock = MCalloc(&vp->objList, 1, sizeof(Ucs_Xrm_MostSocket_t)); if (NULL == sock) return Parse_MemoryError; if (!AddJob(vp->jobList, sock)) return Parse_XmlError; sock->data_type = vp->dataType; sock->bandwidth = vp->blockWidth; if (Parse_Success != ParseMostSoc(sock, soc, vp)) return Parse_XmlError; isSource = (UCS_SOCKET_DIR_OUTPUT == direction); if (isIn) vp->inSocket = sock; else vp->outSocket = sock; break; } case MPORT_USB: { Ucs_Xrm_UsbSocket_t *sock = MCalloc(&vp->objList, 1, sizeof(Ucs_Xrm_UsbSocket_t)); if (NULL == sock) return Parse_MemoryError; if (!AddJob(vp->jobList, sock)) return Parse_XmlError; sock->data_type = vp->dataType; if (Parse_Success != ParseUsbSoc(sock, soc, vp)) return Parse_XmlError; if (isIn) vp->inSocket = sock; else vp->outSocket = sock; break; } case MPORT_MLB: { Ucs_Xrm_MlbSocket_t *sock = MCalloc(&vp->objList, 1, sizeof(Ucs_Xrm_MlbSocket_t)); if (NULL == sock) return Parse_MemoryError; if (!AddJob(vp->jobList, sock)) return Parse_XmlError; sock->data_type = vp->dataType; sock->bandwidth = vp->blockWidth; if (Parse_Success != ParseMlbSoc(sock, soc, vp)) return Parse_XmlError; if (isIn) vp->inSocket = sock; else vp->outSocket = sock; break; } case MPORT_I2S: { Ucs_Xrm_StrmSocket_t *sock = MCalloc(&vp->objList, 1, sizeof(Ucs_Xrm_StrmSocket_t)); if (NULL == sock) return Parse_MemoryError; sock->data_type = vp->dataType; sock->bandwidth = vp->blockWidth; if (Parse_Success != ParseStreamSoc(sock, soc, vp)) return Parse_XmlError; if (isIn) vp->inSocket = sock; else vp->outSocket = sock; break; } default: assert(false); return Parse_XmlError; } if (GetUInt16(soc, OFFSET, &offset, false)) { //TODO: If offset is non zero allocate Splitter / Combiner } //Connect in and out socket once they are created if (vp->inSocket && vp->outSocket) { switch(vp->dataType) { case AV_PACKETIZED: { Ucs_Xrm_AvpCon_t *con = MCalloc(&vp->objList, 1, sizeof(Ucs_Xrm_AvpCon_t)); if (NULL == con) return Parse_MemoryError; if (!AddJob(vp->jobList, con)) return Parse_XmlError; con->resource_type = UCS_XRM_RC_TYPE_AVP_CON; con->socket_in_obj_ptr = vp->inSocket; con->socket_out_obj_ptr = vp->outSocket; con->isoc_packet_size = UCS_ISOC_PCKT_SIZE_188; //TODO:Read from XML break; } case SYNC_DATA: { Ucs_Xrm_SyncCon_t *con = MCalloc(&vp->objList, 1, sizeof(Ucs_Xrm_SyncCon_t)); if (NULL == con) return Parse_MemoryError; if (!AddJob(vp->jobList, con)) return Parse_XmlError; con->resource_type = UCS_XRM_RC_TYPE_SYNC_CON; con->socket_in_obj_ptr = vp->inSocket; con->socket_out_obj_ptr = vp->outSocket; con->mute_mode = UCS_SYNC_MUTE_MODE_NO_MUTING; //TODO:Read from XML con->offset = offset; break; } default: UcsXml_CB_OnError("Could not connect sockets, data type not implemented: %d", 1, vp->dataType); return Parse_XmlError; break; } Ucs_Rm_EndPoint_t *ep = MCalloc(&vp->objList, 1, sizeof(Ucs_Rm_EndPoint_t)); if (NULL == ep) return Parse_MemoryError; ep->endpoint_type = isSource ? UCS_RM_EP_SOURCE : UCS_RM_EP_SINK; ep->jobs_list_ptr = vp->jobList; ep->node_obj_ptr = vp->nod; struct UcsXmlRouteInfo *route = MCalloc(&vp->objList, 1, sizeof(struct UcsXmlRouteInfo)); if (NULL == route) return Parse_MemoryError; route->isSource = isSource; route->ep = ep; strncpy(route->routeName, vp->chName, sizeof(route->routeName)); AddRoute(&vp->pRtLst, route); } return Parse_Success; } static ParseResult_t ParseMostSoc(Ucs_Xrm_MostSocket_t *mostSoc, mxml_node_t *soc, PrivateData_t *vp) { assert(NULL != mostSoc && NULL != soc && NULL != vp); COMPILETIME_CHECK(SYNC_DATA == (MData_t)UCS_MOST_SCKT_SYNC_DATA); COMPILETIME_CHECK(AV_PACKETIZED == (MData_t)UCS_MOST_SCKT_AV_PACKETIZED); COMPILETIME_CHECK(QOS_IP == (MData_t)UCS_MOST_SCKT_QOS_IP); COMPILETIME_CHECK(DISC_FRAME_PHASE == (MData_t)UCS_MOST_SCKT_DISC_FRAME_PHASE); switch((MData_t)mostSoc->data_type) { case SYNC_DATA: case AV_PACKETIZED: case QOS_IP: case DISC_FRAME_PHASE: break; //Nothing to do, valid values. default: UcsXml_CB_OnError("Invalid DataType=%d for MOST socket", 1, mostSoc->data_type); return Parse_XmlError; } mostSoc->resource_type = UCS_XRM_RC_TYPE_MOST_SOCKET; mostSoc->most_port_handle = 0x0D00; if (!GetDirection(soc, &mostSoc->direction)) return Parse_XmlError; return Parse_Success; } static ParseResult_t ParseUsbSoc(Ucs_Xrm_UsbSocket_t *usbSoc, mxml_node_t *soc, PrivateData_t *vp) { Ucs_Xrm_DefaultCreatedPort_t *p; assert(NULL != usbSoc && NULL != soc && NULL != vp); COMPILETIME_CHECK(SYNC_DATA == (MData_t)UCS_USB_SCKT_SYNC_DATA); COMPILETIME_CHECK(CONTROL_DATA == (MData_t)UCS_USB_SCKT_CONTROL_DATA); COMPILETIME_CHECK(AV_PACKETIZED == (MData_t)UCS_USB_SCKT_AV_PACKETIZED); switch((MData_t)usbSoc->data_type) { case SYNC_DATA: case CONTROL_DATA: case AV_PACKETIZED: break; //Nothing to do, valid values. default: UcsXml_CB_OnError("Invalid DataType=%d for USB socket", 1, usbSoc->data_type); return Parse_XmlError; } usbSoc->resource_type = UCS_XRM_RC_TYPE_USB_SOCKET; if (!GetDirection(soc, &usbSoc->direction)) return Parse_XmlError; if (!GetUInt8(soc, ADDRESS, &usbSoc->end_point_addr, true)) return Parse_XmlError; if (!GetUInt16(soc, PACKETS_XACT, &usbSoc->frames_per_transfer, true)) return Parse_XmlError; //XML provides currently no way to open USB port, so use ConfigString default p = MCalloc(&vp->objList, 1, sizeof(Ucs_Xrm_DefaultCreatedPort_t)); if (NULL == p) return Parse_MemoryError; if (!AddJob(vp->jobList, p)) return Parse_MemoryError; p->resource_type = UCS_XRM_RC_TYPE_DC_PORT; p->port_type = UCS_XRM_PORT_TYPE_USB; p->index = 0; usbSoc->usb_port_obj_ptr = p; return Parse_Success; } static ParseResult_t ParseMlbSoc(Ucs_Xrm_MlbSocket_t *mlbSoc, mxml_node_t *soc, PrivateData_t *vp) { Ucs_Mlb_ClockConfig_t clock; assert(NULL != mlbSoc && NULL != soc && NULL != vp); COMPILETIME_CHECK(SYNC_DATA == (MData_t)UCS_MLB_SCKT_SYNC_DATA); COMPILETIME_CHECK(CONTROL_DATA == (MData_t)UCS_MLB_SCKT_CONTROL_DATA); COMPILETIME_CHECK(AV_PACKETIZED == (MData_t)UCS_USB_SCKT_AV_PACKETIZED); COMPILETIME_CHECK(QOS_IP == (MData_t)UCS_MLB_SCKT_QOS_IP); COMPILETIME_CHECK(DISC_FRAME_PHASE == (MData_t)UCS_MLB_SCKT_DISC_FRAME_PHASE); COMPILETIME_CHECK(IPC_PACKET == (MData_t)UCS_MLB_SCKT_IPC_PACKET); switch((MData_t)mlbSoc->data_type) { case SYNC_DATA: case CONTROL_DATA: case AV_PACKETIZED: case QOS_IP: case DISC_FRAME_PHASE: case IPC_PACKET: break; //Nothing to do, valid values. default: UcsXml_CB_OnError("Invalid DataType=%d for MLB socket", 1, mlbSoc->data_type); return Parse_XmlError; } mlbSoc->resource_type = UCS_XRM_RC_TYPE_MLB_SOCKET; if (!GetDirection(soc, &mlbSoc->direction)) return Parse_XmlError; if (!GetUInt16(soc, ADDRESS, &mlbSoc->channel_address, true)) return Parse_XmlError; //Create MLB port when DEVICE_MLB_SPEED is defined, otherwise use ConfigString default if (GetMlbSpeed(soc, DEVICE_MLB_SPEED, &clock, false)) { Ucs_Xrm_MlbPort_t *p = MCalloc(&vp->objList, 1, sizeof(Ucs_Xrm_MlbPort_t)); if (NULL == p) return Parse_MemoryError; if (!AddJob(vp->jobList, p)) return Parse_MemoryError; p->resource_type = UCS_XRM_RC_TYPE_MLB_PORT; p->index = 0; p->clock_config = clock; mlbSoc->mlb_port_obj_ptr = p; } else { Ucs_Xrm_DefaultCreatedPort_t *p = MCalloc(&vp->objList, 1, sizeof(Ucs_Xrm_DefaultCreatedPort_t)); if (NULL == p) return Parse_MemoryError; if (!AddJob(vp->jobList, p)) return Parse_MemoryError; p->resource_type = UCS_XRM_RC_TYPE_DC_PORT; p->port_type = UCS_XRM_PORT_TYPE_MLB; p->index = 0; mlbSoc->mlb_port_obj_ptr = p; } return Parse_Success; } static ParseResult_t ParseStreamSoc(Ucs_Xrm_StrmSocket_t *strmSoc, mxml_node_t *soc, PrivateData_t *vp) { const char *txt; Ucs_Xrm_StrmPort_t *strPort; assert(NULL != strmSoc && NULL != soc && NULL != vp); COMPILETIME_CHECK(SYNC_DATA == (MData_t)UCS_STREAM_PORT_SCKT_SYNC_DATA); if (SYNC_DATA != (MData_t)strmSoc->data_type) { UcsXml_CB_OnError("Invalid DataType=%d for I2S socket", 1, strmSoc->data_type); return Parse_XmlError; } strPort = MCalloc(&vp->objList, 1, sizeof(Ucs_Xrm_StrmPort_t)); if (NULL == strPort) return Parse_MemoryError; if (!AddJob(vp->jobList, strPort)) return Parse_MemoryError; if (!AddJob(vp->jobList, strmSoc)) return Parse_MemoryError; strmSoc->resource_type = UCS_XRM_RC_TYPE_STRM_SOCKET; strmSoc->stream_port_obj_ptr = strPort; strPort->resource_type = UCS_XRM_RC_TYPE_STRM_PORT; if (!GetDirection(soc, &strmSoc->direction)) return Parse_XmlError; if (!GetI2SPin(soc, &strmSoc->stream_pin_id, &strPort->index, true)) return Parse_XmlError; if (!GetI2SSpeed(soc, I2S_FS_SPEED, &strPort->clock_config, true)) return Parse_XmlError; if (!GetString(soc, I2S_ALIGN, &txt, true)) return Parse_XmlError; if (!GetI2SAlignment(soc, &strPort->data_alignment, true)) return Parse_XmlError; return Parse_Success; } static ParseResult_t ParseScript(mxml_node_t *scr, PrivateData_t *vp) { mxml_node_t *act; uint32_t actCnt; uint32_t i = 0; const char *txt; assert(NULL != scr && NULL != vp); vp->pause = 0; if (!GetString(scr, NAME, &txt, true)) return Parse_XmlError; Ucs_Rm_Node_t *n = NULL; struct UcsXmlScriptInfo *scrlist = vp->pScrLst; while(NULL != scrlist) { if (0 == strcmp(txt, scrlist->scriptName)) { n = scrlist->node; break; } scrlist = scrlist->next; } if (NULL == n) { UcsXml_CB_OnError("Script defined:'%s', which was never referenced", 1, txt); return Parse_XmlError; } if (!GetCount(scr, ACTION, &actCnt, true)) return Parse_XmlError; if (NULL == (n->script_list_ptr = MCalloc(&vp->objList, actCnt, sizeof(Ucs_Ns_Script_t)))) return Parse_MemoryError; n->script_list_size = actCnt; ///Iterate all actions if (!GetElement(scr, ACTION, true, &act, true)) return false; while(act) { ParseResult_t result = ParseScriptAction(act, n, i, vp); if (Parse_Success != result) return result; if (!GetElement(act, ACTION, false, &act, false)) break; ++i; } return Parse_Success; } static ParseResult_t ParseScriptAction(mxml_node_t *act, Ucs_Rm_Node_t *n, uint32_t index, PrivateData_t *vp) { const char *txt; uint8_t opResult; assert(NULL != act && NULL != vp); Ucs_Ns_Script_t *scr = &n->script_list_ptr[index]; if (!GetString(act, TYPE, &txt, true)) return Parse_XmlError; if (0 == strcmp(txt, SEND_MSG)) { Ucs_Ns_ConfigMsg_t *req; scr->send_cmd = MCalloc(&vp->objList, 1, sizeof(Ucs_Ns_ConfigMsg_t)); req = scr->send_cmd; if (NULL == req) return Parse_MemoryError; scr->pause = vp->pause; if (vp->pause) vp->pause = 0; req->InstId = 1; if (!GetUInt8(act, FBLOCK_ID, &req->FBlockId, true)) return Parse_XmlError; if (!GetUInt16(act, FUNCTION_ID, &req->FunktId, true)) return Parse_XmlError; if (!GetUInt8(act, OP_TYPE_REQUEST, &req->OpCode, true)) return Parse_XmlError; if (GetUInt8(act, OP_TYPE_RESPONSE, &opResult, false)) { //Waiting for response is optional Ucs_Ns_ConfigMsg_t *res; scr->exp_result = MCalloc(&vp->objList, 1, sizeof(Ucs_Ns_ConfigMsg_t)); res = scr->exp_result; res->FBlockId = req->FBlockId; res->InstId = req->InstId; res->FunktId = req->FunktId; res->OpCode = opResult; //Not interested in result: GetPayload(act, PAYLOAD_RES_HEX, &res->DataPtr, &res->DataLen, &vp->objList, false); } if (!GetPayload(act, PAYLOAD_REQ_HEX, &req->DataPtr, &req->DataLen, &vp->objList, true)) return Parse_XmlError; if (0 == req->DataLen || NULL == req->DataPtr) return Parse_XmlError; } else if (0 == strcmp(txt, PAUSE)) { if (!GetUInt16(act, PAUSE_MS, &vp->pause, true)) return Parse_XmlError; } return Parse_Success; } static ParseResult_t ParseRoutes(UcsXmlVal_t *v, PrivateData_t *vp) { uint16_t routeAmount = 0; struct UcsXmlRouteInfo *sourceRoute; assert(NULL != v && NULL != vp); //First: Count the amount of routes and allocate the correct amount sourceRoute = vp->pRtLst; while (NULL != sourceRoute) { if (!sourceRoute->isSource) //There can be more sinks than sources, so count them { ++routeAmount; } sourceRoute = sourceRoute->next; } if (0 == routeAmount) return Parse_Success; //Its okay to have no routes at all (e.g. MEP traffic only) v->pRoutes = MCalloc(&vp->objList, routeAmount, sizeof(Ucs_Rm_Route_t)); if (NULL == v->pRoutes) return Parse_MemoryError; //Second: Fill allocated structure now sourceRoute = vp->pRtLst; while (NULL != sourceRoute) { if (sourceRoute->isSource) { struct UcsXmlRouteInfo *sinkRoute = vp->pRtLst; while (NULL != sinkRoute) { if (sourceRoute != sinkRoute && !sinkRoute->isSource && (0 == strncmp(sourceRoute->routeName, sinkRoute->routeName, sizeof(sourceRoute->routeName)))) { Ucs_Rm_Route_t *route = &v->pRoutes[v->routesSize++]; route->source_endpoint_ptr = sourceRoute->ep; route->sink_endpoint_ptr = sinkRoute->ep; route->active = 1; } sinkRoute = sinkRoute->next; } } sourceRoute = sourceRoute->next; } return Parse_Success; }