pad->conf = fn->conf;
fn->private_data = pad;
+ fn->min_iqs = 2;
if (!pad->conf->amp_given && stat_item_values[SI_AMPLIFICATION])
sscanf(stat_item_values[SI_AMPLIFICATION], "%u", &pad->amp);
else
struct private_amp_data *pad = fn->private_data;
struct btr_node *btrn = fn->btrn;
int ret, factor = 64 + pad->amp;
- char *in;
- size_t in_len = btr_next_buffer(btrn, &in);
- size_t i, length = in_len / 2;
- int16_t *ip = (int16_t *)in, *op;
+ size_t i, in_bytes, len;
+ int16_t *in, *out;
bool inplace = btr_inplace_ok(btrn);
+ if (pad->amp == 0) { /* no amplification */
+ t->error = -E_AMP_ZERO_AMP;
+ btr_splice_out_node(btrn);
+ amp_close(fn);
+ return;
+ }
+next_buffer:
ret = prepare_filter_node(fn);
+ in_bytes = btr_next_buffer(btrn, (char **)&in);
if (ret < 0)
goto err;
- if (ret == 0)
+ len = in_bytes / 2;
+ /* len == 0 happens if eof and in_bytes == 1. */
+ if (ret == 0 || len == 0)
return;
if (inplace)
- op = ip;
+ out = in;
else
- op = para_malloc(length * 2);
- if (pad->amp == 0) {
- memcpy(op, ip, length * 2);
- goto success;
- }
- for (i = 0; i < length; i++) {
- int x = (ip[i] * factor) >> 6;
+ out = para_malloc(len * 2);
- op[i] = x;
- if (op[i] != x)
- op[i] = (x >= 32768)? 32767 : -32768;
+ for (i = 0; i < len; i++) {
+ int x = (in[i] * factor) >> 6;
+
+ out[i] = x;
+ if (out[i] != x) /* overflow, clip */
+ out[i] = (x >= 0)? 32767 : -32768;
}
-success:
- t->error = 0;
+
if (inplace)
btr_pushdown_one(btrn);
else {
- btr_consume(btrn, length * 2);
- btr_add_output((char *)op, length * 2, btrn);
+ btr_consume(btrn, len * 2);
+ btr_add_output((char *)out, len * 2, btrn);
}
- return;
+ t->error = 0;
+ goto next_buffer;
err:
assert(ret < 0);
- amp_close(fn);
t->error = ret;
btr_del_node(btrn);
+ amp_close(fn);
}
/**