RaggedRange
为每个区间生成等差序列并拼接到一个一维输出,同时返回每段的边界索引。
\[\begin{split}\begin{aligned}
L_k &= \left\lceil \frac{\text{limit}_k - \text{start}_k}{\text{delta}_k} \right\rceil,\quad k=0,\dots,\text{range\_count}-1 \\
\text{splits}[0] &= 0,\quad \text{splits}[k+1] = \text{splits}[k] + L_k \\
\text{values}[\text{splits}[k] + j] &= \text{start}_k + j \cdot \text{delta}_k,\quad j=0,\dots,L_k-1
\end{aligned}\end{split}\]
- 输入:
starts - 各段起始值数组地址。
limits - 各段终止上界数组地址(半开区间 [start, limit) 语义)。
deltas - 各段步长数组地址,要求
delta_k != 0,且方向与limit_k - start_k一致,否则该段长度视为 0。range_count - 段数 K。
core_mask(可选) - 核掩码(仅适用于共享存储版本)。
- 输出:
values - 扁平化拼接的结果数组地址,长度为
splits[range_count]。splits - 长度为
range_count + 1的整型数组,记录各段边界,且splits[0] = 0。
- 支持平台:
FT78NEMT7004
备注
FT78NE 支持 int8, int16, int32, fp32, fp64
MT7004 支持 fp16, fp32, int16, int32
不进行数值饱和裁剪;请确保序列不会在对应类型范围内溢出。
共享存储版本:
-
void i8_ragged_range_s(int8_t *starts, int8_t *limits, int8_t *deltas, int range_count, int8_t *values, int *splits, int core_mask)
-
void i16_ragged_range_s(int16_t *starts, int16_t *limits, int16_t *deltas, int range_count, int16_t *values, int *splits, int core_mask)
-
void i32_ragged_range_s(int *starts, int *limits, int *deltas, int range_count, int *values, int *splits, int core_mask)
-
void hp_ragged_range_s(half *starts, half *limits, half *deltas, int range_count, half *values, int *splits, int core_mask)
-
void fp_ragged_range_s(float *starts, float *limits, float *deltas, int range_count, float *values, int *splits, int core_mask)
-
void dp_ragged_range_s(double *starts, double *limits, double *deltas, int range_count, double *values, int *splits, int core_mask)
C调用示例:
1#include <stdio.h>
2
3int main(int argc, char* argv[]) {
4 float *starts = (float *)0xA0000000;
5 float *limits = (float *)0xA0100000;
6 float *deltas = (float *)0xA0200000;
7 float *values = (float *)0xA0300000;
8 int *splits = (int *)0xA0400000;
9 int range_count = 3;
10 int core_mask = 0xff;
11 fp_ragged_range_s(starts, limits, deltas, range_count, values, splits, core_mask);
12 return 0;
13}
私有存储版本:
-
void i8_ragged_range_p(int8_t *starts, int8_t *limits, int8_t *deltas, int range_count, int8_t *values, int *splits)
-
void i16_ragged_range_p(int16_t *starts, int16_t *limits, int16_t *deltas, int range_count, int16_t *values, int *splits)
-
void i32_ragged_range_p(int *starts, int *limits, int *deltas, int range_count, int *values, int *splits)
-
void hp_ragged_range_p(half *starts, half *limits, half *deltas, int range_count, half *values, int *splits)
-
void fp_ragged_range_p(float *starts, float *limits, float *deltas, int range_count, float *values, int *splits)
-
void dp_ragged_range_p(double *starts, double *limits, double *deltas, int range_count, double *values, int *splits)
C调用示例:
1#include <stdio.h>
2
3int main(int argc, char* argv[]) {
4 int32_t *starts = (int32_t *)0x10000000;
5 int32_t *limits = (int32_t *)0x10001000;
6 int32_t *deltas = (int32_t *)0x10002000;
7 int32_t *values = (int32_t *)0x10003000;
8 int *splits = (int *)0x10004000;
9 int range_count = 2;
10 i32_ragged_range_p(starts, limits, deltas, range_count, values, splits);
11 return 0;
12}