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author | Martin Braun <martin.braun@ettus.com> | 2015-01-14 12:28:28 +0100 |
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committer | Martin Braun <martin.braun@ettus.com> | 2015-01-14 12:28:28 +0100 |
commit | 2f3f4b18cd18df85c5a5d381b1a331f6c0ebee82 (patch) | |
tree | c102c6a1a92d94cd3d5d9cd4eb8c55ec3ffbd5f5 | |
parent | 0dfcc1227c4278e2fb53cda5e5bc2e51068fa0ea (diff) | |
parent | 12aed42c4b472f84003736e85565caafd093a320 (diff) | |
download | uhd-2f3f4b18cd18df85c5a5d381b1a331f6c0ebee82.tar.gz uhd-2f3f4b18cd18df85c5a5d381b1a331f6c0ebee82.tar.bz2 uhd-2f3f4b18cd18df85c5a5d381b1a331f6c0ebee82.zip |
Merge branch 'maint'
-rw-r--r-- | host/lib/convert/convert_pack_sc12.cpp | 73 |
1 files changed, 60 insertions, 13 deletions
diff --git a/host/lib/convert/convert_pack_sc12.cpp b/host/lib/convert/convert_pack_sc12.cpp index 081f60a89..322097e34 100644 --- a/host/lib/convert/convert_pack_sc12.cpp +++ b/host/lib/convert/convert_pack_sc12.cpp @@ -32,6 +32,28 @@ struct item32_sc12_3x item32_t line2; }; +enum item32_sc12_3x_enable { + CONVERT12_LINE0 = 0x01, + CONVERT12_LINE1 = 0x02, + CONVERT12_LINE2 = 0x04, + CONVERT12_LINE_ALL = 0x07, +}; + +/* + * Packed 12-bit converter with selective line enable + * + * The converter operates on 4 complex inputs and selectively writes to one to + * three 32-bit lines. Line selection allows for partial writes of less than + * 4 complex samples, or a full 3 x 32-bit struct. Writes are always full 32-bit + * lines, so in the case of partial writes, the number of bytes written will + * exceed the the number of bytes filled by actual samples. + * + * _ _ _ _ _ _ _ _ + * |_ _ _1_ _ _|_ _| 0 + * |_2_ _ _|_ _ _3_| + * |_ _|_ _ _4_ _ _| 2 + * 31 0 + */ template <typename type, towire32_type towire> void convert_star_4_to_sc12_item32_3 ( @@ -39,6 +61,7 @@ void convert_star_4_to_sc12_item32_3 const std::complex<type> &in1, const std::complex<type> &in2, const std::complex<type> &in3, + const int enable, item32_sc12_3x &output, const double scalar ) @@ -59,9 +82,12 @@ void convert_star_4_to_sc12_item32_3 const item32_t line1 = (i1 << 28) | (q1 << 16) | (i2 << 4) | (q2 >> 8); const item32_t line2 = (q2 << 24) | (i3 << 12) | (q3); - output.line0 = towire(line0); - output.line1 = towire(line1); - output.line2 = towire(line2); + if (enable & CONVERT12_LINE0) + output.line0 = towire(line0); + if (enable & CONVERT12_LINE1) + output.line1 = towire(line1); + if (enable & CONVERT12_LINE2) + output.line2 = towire(line2); } template <typename type, towire32_type towire> @@ -85,7 +111,8 @@ struct convert_star_1_to_sc12_item32_1 : public converter * Effectively outputs will point to a managed_buffer instance. These buffers are 32 bit aligned. * For a detailed description see comments in 'convert_unpack_sc12.cpp'. */ - const size_t head_samps = size_t(inputs[0]) & 0x3; + const size_t head_samps = size_t(outputs[0]) & 0x3; + int enable; size_t rewind = 0; switch(head_samps) { @@ -102,17 +129,27 @@ struct convert_star_1_to_sc12_item32_1 : public converter //handle the head case switch (head_samps) { - case 0: break; //no head - case 1: convert_star_4_to_sc12_item32_3<type, towire>(0, 0, 0, input[0], output[o++], _scalar); break; - case 2: convert_star_4_to_sc12_item32_3<type, towire>(0, 0, input[0], input[1], output[o++], _scalar); break; - case 3: convert_star_4_to_sc12_item32_3<type, towire>(0, input[0], input[1], input[2], output[o++], _scalar); break; + case 0: + break; //no head + case 1: + enable = CONVERT12_LINE2; + convert_star_4_to_sc12_item32_3<type, towire>(0, 0, 0, input[0], enable, output[o++], _scalar); + break; + case 2: + enable = CONVERT12_LINE2 | CONVERT12_LINE1; + convert_star_4_to_sc12_item32_3<type, towire>(0, 0, input[0], input[1], enable, output[o++], _scalar); + break; + case 3: + enable = CONVERT12_LINE2 | CONVERT12_LINE1 | CONVERT12_LINE0; + convert_star_4_to_sc12_item32_3<type, towire>(0, input[0], input[1], input[2], enable, output[o++], _scalar); + break; } i += head_samps; //convert the body while (i+3 < nsamps) { - convert_star_4_to_sc12_item32_3<type, towire>(input[i+0], input[i+1], input[i+2], input[i+3], output[o], _scalar); + convert_star_4_to_sc12_item32_3<type, towire>(input[i+0], input[i+1], input[i+2], input[i+3], CONVERT12_LINE_ALL, output[o], _scalar); o++; i += 4; } @@ -120,10 +157,20 @@ struct convert_star_1_to_sc12_item32_1 : public converter const size_t tail_samps = nsamps - i; switch (tail_samps) { - case 0: break; //no tail - case 1: convert_star_4_to_sc12_item32_3<type, towire>(input[i+0], 0, 0, 0, output[o], _scalar); break; - case 2: convert_star_4_to_sc12_item32_3<type, towire>(input[i+0], input[i+1], 0, 0, output[o], _scalar); break; - case 3: convert_star_4_to_sc12_item32_3<type, towire>(input[i+0], input[i+1], input[i+2], 0, output[o], _scalar); break; + case 0: + break; //no tail + case 1: + enable = CONVERT12_LINE0; + convert_star_4_to_sc12_item32_3<type, towire>(input[i+0], 0, 0, 0, enable, output[o], _scalar); + break; + case 2: + enable = CONVERT12_LINE0 | CONVERT12_LINE1; + convert_star_4_to_sc12_item32_3<type, towire>(input[i+0], input[i+1], 0, 0, enable, output[o], _scalar); + break; + case 3: + enable = CONVERT12_LINE0 | CONVERT12_LINE1 | CONVERT12_LINE2; + convert_star_4_to_sc12_item32_3<type, towire>(input[i+0], input[i+1], input[i+2], 0, enable, output[o], _scalar); + break; } } |