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https://github.com/GOSTSec/sgminer
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Only grab a queued work item if we successfully grab the lock to submit work in bflsc_send_work
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parent
39f4cf0557
commit
fb66e8b7b7
@ -1485,16 +1485,16 @@ static void bflsc_thread_enable(struct thr_info *thr)
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bflsc_initialise(bflsc);
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}
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static bool bflsc_send_work(struct cgpu_info *bflsc, int dev, struct work *work,
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bool mandatory)
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static bool bflsc_send_work(struct cgpu_info *bflsc, int dev, bool mandatory)
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{
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struct bflsc_info *sc_info = (struct bflsc_info *)(bflsc->device_data);
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struct FullNonceRangeJob data;
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char buf[BFLSC_BUFSIZ+1];
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bool sent, ret = false;
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struct work *work;
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int err, amount;
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int len, try;
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int stage;
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bool sent;
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// Device is gone
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if (bflsc->usbinfo.nodev)
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@ -1506,8 +1506,6 @@ static bool bflsc_send_work(struct cgpu_info *bflsc, int dev, struct work *work,
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// Initially code only deals with sending one work item
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data.payloadSize = BFLSC_JOBSIZ;
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memcpy(data.midState, work->midstate, MIDSTATE_BYTES);
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memcpy(data.blockData, work->data + MERKLE_OFFSET, MERKLE_BYTES);
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data.endOfBlock = BFLSC_EOB;
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len = sizeof(struct FullNonceRangeJob);
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@ -1519,9 +1517,16 @@ static bool bflsc_send_work(struct cgpu_info *bflsc, int dev, struct work *work,
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mutex_lock(&(bflsc->device_mutex));
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else {
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if (mutex_trylock(&bflsc->device_mutex))
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return false;
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return ret;
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}
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work = get_queued(bflsc);
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if (unlikely(!work)) {
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mutex_unlock(&bflsc->device_mutex);
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return ret;
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}
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memcpy(data.midState, work->midstate, MIDSTATE_BYTES);
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memcpy(data.blockData, work->data + MERKLE_OFFSET, MERKLE_BYTES);
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try = 0;
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re_send:
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err = send_recv_ds(bflsc, dev, &stage, &sent, &amount,
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@ -1534,7 +1539,7 @@ re_send:
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case 1:
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if (!sent) {
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bflsc_applog(bflsc, dev, C_REQUESTQUEJOB, amount, err);
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return false;
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goto out;
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} else {
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// TODO: handle other errors ...
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@ -1544,13 +1549,13 @@ re_send:
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goto re_send;
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bflsc_applog(bflsc, dev, C_REQUESTQUEJOBSTATUS, amount, err);
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return false;
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goto out;
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}
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break;
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case 2:
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if (!sent) {
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bflsc_applog(bflsc, dev, C_QUEJOB, amount, err);
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return false;
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goto out;
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} else {
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if (!isokerr(err, buf, amount)) {
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// TODO: check for QUEUE FULL and set work_queued to sc_info->que_size
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@ -1563,7 +1568,7 @@ re_send:
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goto re_send;
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bflsc_applog(bflsc, dev, C_QUEJOBSTATUS, amount, err);
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return false;
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goto out;
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}
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}
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break;
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@ -1574,13 +1579,13 @@ re_send:
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if (err < 0 || amount != BFLSC_QJOB_LEN) {
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mutex_unlock(&(bflsc->device_mutex));
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bflsc_applog(bflsc, dev, C_REQUESTQUEJOB, amount, err);
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return false;
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goto out;
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}
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if (!getok(bflsc, C_REQUESTQUEJOBSTATUS, &err, &amount)) {
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mutex_unlock(&(bflsc->device_mutex));
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bflsc_applog(bflsc, dev, C_REQUESTQUEJOBSTATUS, amount, err);
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return false;
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goto out;
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}
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len = sizeof(struct FullNonceRangeJob);
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@ -1589,7 +1594,7 @@ re_send:
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if (err < 0 || amount != len) {
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mutex_unlock(&(bflsc->device_mutex));
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bflsc_applog(bflsc, dev, C_QUEJOB, amount, err);
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return false;
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goto out;
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}
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if (!getokerr(bflsc, C_QUEJOBSTATUS, &err, &amount, buf, sizeof(buf))) {
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@ -1603,7 +1608,7 @@ re_send:
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mutex_unlock(&(bflsc->device_mutex));
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bflsc_applog(bflsc, dev, C_QUEJOBSTATUS, amount, err);
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return false;
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goto out;
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}
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mutex_unlock(&(bflsc->device_mutex));
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@ -1614,14 +1619,16 @@ re_send:
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wr_unlock(&(sc_info->stat_lock));
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work->subid = dev;
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return true;
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ret = true;
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out:
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if (unlikely(!ret))
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work_completed(bflsc, work);
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return ret;
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}
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static bool bflsc_queue_full(struct cgpu_info *bflsc)
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{
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struct bflsc_info *sc_info = (struct bflsc_info *)(bflsc->device_data);
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struct work *work = NULL;
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int i, dev, tried, que;
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bool ret = false;
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int tries = 0;
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@ -1673,19 +1680,12 @@ static bool bflsc_queue_full(struct cgpu_info *bflsc)
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break;
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}
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if (!work)
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work = get_queued(bflsc);
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if (unlikely(!work))
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if (bflsc_send_work(bflsc, dev, mandatory))
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break;
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if (bflsc_send_work(bflsc, dev, work, mandatory)) {
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work = NULL;
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break;
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} else
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else
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tried = dev;
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}
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if (unlikely(work))
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work_completed(bflsc, work);
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return ret;
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}
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