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daisytuner / docc / 21867449353

10 Feb 2026 01:47PM UTC coverage: 66.291% (-0.2%) from 66.496%
21867449353

Pull #513

github

web-flow
Merge 769eb7326 into 4576e646b
Pull Request #513: adds tensor type

242 of 431 new or added lines in 18 files covered. (56.15%)

3 existing lines in 2 files now uncovered.

23396 of 35293 relevant lines covered (66.29%)

371.79 hits per line

Source File
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76.64
/sdfg/src/serializer/json_serializer.cpp
1
#include "sdfg/serializer/json_serializer.h"
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#include <cassert>
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#include <memory>
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#include <utility>
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#include <vector>
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#include "sdfg/data_flow/library_nodes/barrier_local_node.h"
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#include "sdfg/data_flow/library_nodes/call_node.h"
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#include "sdfg/data_flow/library_nodes/invoke_node.h"
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#include "sdfg/data_flow/library_nodes/math/math.h"
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#include "sdfg/data_flow/library_nodes/metadata_node.h"
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#include "sdfg/data_flow/library_nodes/stdlib/stdlib.h"
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#include "sdfg/analysis/users.h"
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#include "sdfg/builder/structured_sdfg_builder.h"
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#include "sdfg/data_flow/library_node.h"
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#include "sdfg/element.h"
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#include "sdfg/structured_control_flow/block.h"
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#include "sdfg/structured_control_flow/for.h"
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#include "sdfg/structured_control_flow/if_else.h"
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#include "sdfg/structured_control_flow/map.h"
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#include "sdfg/structured_control_flow/return.h"
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#include "sdfg/structured_control_flow/sequence.h"
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#include "sdfg/structured_control_flow/while.h"
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#include "sdfg/structured_sdfg.h"
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#include "sdfg/symbolic/symbolic.h"
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#include "sdfg/types/function.h"
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#include "sdfg/types/scalar.h"
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#include "sdfg/types/type.h"
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#include "symengine/expression.h"
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#include "symengine/logic.h"
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#include "symengine/symengine_rcp.h"
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namespace sdfg {
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namespace serializer {
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FunctionType function_type_from_string(const std::string& str) {
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    if (str == FunctionType_CPU.value()) {
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        return FunctionType_CPU;
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    } else if (str == FunctionType_NV_GLOBAL.value()) {
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        return FunctionType_NV_GLOBAL;
×
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    }
×
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45
    return FunctionType(str);
×
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}
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47

48
/*
49
 * * JSONSerializer class
50
 * * Serialization logic
51
 */
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nlohmann::json JSONSerializer::serialize(
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    const sdfg::StructuredSDFG& sdfg,
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    analysis::AnalysisManager* analysis_manager,
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    structured_control_flow::Sequence* root
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) {
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    nlohmann::json j;
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    j["name"] = sdfg.name();
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    j["element_counter"] = sdfg.element_counter();
24✔
62
    j["type"] = std::string(sdfg.type().value());
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    nlohmann::json return_type_json;
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    type_to_json(return_type_json, sdfg.return_type());
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    j["return_type"] = return_type_json;
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    j["structures"] = nlohmann::json::array();
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    for (const auto& structure_name : sdfg.structures()) {
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        const auto& structure = sdfg.structure(structure_name);
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        nlohmann::json structure_json;
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        structure_definition_to_json(structure_json, structure);
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        j["structures"].push_back(structure_json);
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    }
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    j["containers"] = nlohmann::json::object();
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    for (const auto& container : sdfg.containers()) {
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        nlohmann::json desc;
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        type_to_json(desc, sdfg.type(container));
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        j["containers"][container] = desc;
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    }
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    j["arguments"] = nlohmann::json::array();
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    for (const auto& argument : sdfg.arguments()) {
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        j["arguments"].push_back(argument);
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    }
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    j["externals"] = nlohmann::json::array();
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    for (const auto& external : sdfg.externals()) {
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        nlohmann::json external_json;
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        external_json["name"] = external;
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        external_json["linkage_type"] = sdfg.linkage_type(external);
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        j["externals"].push_back(external_json);
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    }
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    j["metadata"] = nlohmann::json::object();
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    for (const auto& entry : sdfg.metadata()) {
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        j["metadata"][entry.first] = entry.second;
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    }
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101
    // Walk the SDFG
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    nlohmann::json root_json;
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    sequence_to_json(root_json, sdfg.root());
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    j["root"] = root_json;
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    return j;
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}
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109
void JSONSerializer::dataflow_to_json(nlohmann::json& j, const data_flow::DataFlowGraph& dataflow) {
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    j["type"] = "dataflow";
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    j["nodes"] = nlohmann::json::array();
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    j["edges"] = nlohmann::json::array();
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    for (auto& node : dataflow.nodes()) {
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        nlohmann::json node_json;
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        node_json["element_id"] = node.element_id();
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118
        node_json["debug_info"] = nlohmann::json::object();
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        debug_info_to_json(node_json["debug_info"], node.debug_info());
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121
        if (auto tasklet = dynamic_cast<const data_flow::Tasklet*>(&node)) {
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            node_json["type"] = "tasklet";
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            node_json["code"] = tasklet->code();
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            node_json["inputs"] = nlohmann::json::array();
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            for (auto& input : tasklet->inputs()) {
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                node_json["inputs"].push_back(input);
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            }
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            node_json["output"] = tasklet->output();
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        } else if (auto lib_node = dynamic_cast<const data_flow::LibraryNode*>(&node)) {
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            node_json["type"] = "library_node";
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            node_json["implementation_type"] = std::string(lib_node->implementation_type().value());
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            auto serializer_fn =
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                LibraryNodeSerializerRegistry::instance().get_library_node_serializer(lib_node->code().value());
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            if (serializer_fn == nullptr) {
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                throw std::runtime_error("Unknown library node code: " + std::string(lib_node->code().value()));
×
136
            }
×
137
            auto serializer = serializer_fn();
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            auto lib_node_json = serializer->serialize(*lib_node);
7✔
139
            node_json.merge_patch(lib_node_json);
7✔
140
        } else if (auto code_node = dynamic_cast<const data_flow::ConstantNode*>(&node)) {
133✔
141
            node_json["type"] = "constant_node";
×
142
            node_json["data"] = code_node->data();
×
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144
            nlohmann::json type_json;
×
145
            type_to_json(type_json, code_node->type());
×
146
            node_json["data_type"] = type_json;
×
147
        } else if (auto code_node = dynamic_cast<const data_flow::AccessNode*>(&node)) {
133✔
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            node_json["type"] = "access_node";
133✔
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            node_json["data"] = code_node->data();
133✔
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        } else {
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            throw std::runtime_error("Unknown node type");
×
152
        }
×
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154
        j["nodes"].push_back(node_json);
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    }
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157
    for (auto& edge : dataflow.edges()) {
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        nlohmann::json edge_json;
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        edge_json["element_id"] = edge.element_id();
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        edge_json["debug_info"] = nlohmann::json::object();
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        debug_info_to_json(edge_json["debug_info"], edge.debug_info());
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        edge_json["src"] = edge.src().element_id();
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        edge_json["dst"] = edge.dst().element_id();
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167
        edge_json["src_conn"] = edge.src_conn();
178✔
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        edge_json["dst_conn"] = edge.dst_conn();
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170
        edge_json["subset"] = nlohmann::json::array();
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        for (auto& subset : edge.subset()) {
178✔
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            edge_json["subset"].push_back(expression(subset));
64✔
173
        }
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175
        nlohmann::json base_type_json;
178✔
176
        type_to_json(base_type_json, edge.base_type());
178✔
177
        edge_json["base_type"] = base_type_json;
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178

179
        j["edges"].push_back(edge_json);
178✔
180
    }
178✔
181
}
51✔
182

183
void JSONSerializer::block_to_json(nlohmann::json& j, const structured_control_flow::Block& block) {
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184
    j["type"] = "block";
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    j["element_id"] = block.element_id();
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187
    j["debug_info"] = nlohmann::json::object();
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188
    debug_info_to_json(j["debug_info"], block.debug_info());
49✔
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190
    nlohmann::json dataflow_json;
49✔
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    dataflow_to_json(dataflow_json, block.dataflow());
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    j["dataflow"] = dataflow_json;
49✔
193
}
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194

195
void JSONSerializer::for_to_json(nlohmann::json& j, const structured_control_flow::For& for_node) {
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    j["type"] = "for";
18✔
197
    j["element_id"] = for_node.element_id();
18✔
198

199
    j["debug_info"] = nlohmann::json::object();
18✔
200
    debug_info_to_json(j["debug_info"], for_node.debug_info());
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201

202
    j["indvar"] = expression(for_node.indvar());
18✔
203
    j["init"] = expression(for_node.init());
18✔
204
    j["condition"] = expression(for_node.condition());
18✔
205
    j["update"] = expression(for_node.update());
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206

207
    nlohmann::json body_json;
18✔
208
    sequence_to_json(body_json, for_node.root());
18✔
209
    j["root"] = body_json;
18✔
210
}
18✔
211

212
void JSONSerializer::if_else_to_json(nlohmann::json& j, const structured_control_flow::IfElse& if_else_node) {
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    j["type"] = "if_else";
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    j["element_id"] = if_else_node.element_id();
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216
    j["debug_info"] = nlohmann::json::object();
2✔
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    debug_info_to_json(j["debug_info"], if_else_node.debug_info());
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218

219
    j["branches"] = nlohmann::json::array();
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220
    for (size_t i = 0; i < if_else_node.size(); i++) {
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221
        nlohmann::json branch_json;
4✔
222
        branch_json["condition"] = expression(if_else_node.at(i).second);
4✔
223
        nlohmann::json body_json;
4✔
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        sequence_to_json(body_json, if_else_node.at(i).first);
4✔
225
        branch_json["root"] = body_json;
4✔
226
        j["branches"].push_back(branch_json);
4✔
227
    }
4✔
228
}
2✔
229

230
void JSONSerializer::while_node_to_json(nlohmann::json& j, const structured_control_flow::While& while_node) {
5✔
231
    j["type"] = "while";
5✔
232
    j["element_id"] = while_node.element_id();
5✔
233

234
    j["debug_info"] = nlohmann::json::object();
5✔
235
    debug_info_to_json(j["debug_info"], while_node.debug_info());
5✔
236

237
    nlohmann::json body_json;
5✔
238
    sequence_to_json(body_json, while_node.root());
5✔
239
    j["root"] = body_json;
5✔
240
}
5✔
241

242
void JSONSerializer::break_node_to_json(nlohmann::json& j, const structured_control_flow::Break& break_node) {
2✔
243
    j["type"] = "break";
2✔
244
    j["element_id"] = break_node.element_id();
2✔
245

246
    j["debug_info"] = nlohmann::json::object();
2✔
247
    debug_info_to_json(j["debug_info"], break_node.debug_info());
2✔
248
}
2✔
249

250
void JSONSerializer::continue_node_to_json(nlohmann::json& j, const structured_control_flow::Continue& continue_node) {
2✔
251
    j["type"] = "continue";
2✔
252
    j["element_id"] = continue_node.element_id();
2✔
253

254
    j["debug_info"] = nlohmann::json::object();
2✔
255
    debug_info_to_json(j["debug_info"], continue_node.debug_info());
2✔
256
}
2✔
257

258
void JSONSerializer::map_to_json(nlohmann::json& j, const structured_control_flow::Map& map_node) {
6✔
259
    j["type"] = "map";
6✔
260
    j["element_id"] = map_node.element_id();
6✔
261

262
    j["debug_info"] = nlohmann::json::object();
6✔
263
    debug_info_to_json(j["debug_info"], map_node.debug_info());
6✔
264

265
    j["indvar"] = expression(map_node.indvar());
6✔
266
    j["init"] = expression(map_node.init());
6✔
267
    j["condition"] = expression(map_node.condition());
6✔
268
    j["update"] = expression(map_node.update());
6✔
269

270
    j["schedule_type"] = nlohmann::json::object();
6✔
271
    schedule_type_to_json(j["schedule_type"], map_node.schedule_type());
6✔
272

273
    nlohmann::json body_json;
6✔
274
    sequence_to_json(body_json, map_node.root());
6✔
275
    j["root"] = body_json;
6✔
276
}
6✔
277

278
void JSONSerializer::return_node_to_json(nlohmann::json& j, const structured_control_flow::Return& return_node) {
2✔
279
    j["type"] = "return";
2✔
280
    j["element_id"] = return_node.element_id();
2✔
281
    j["data"] = return_node.data();
2✔
282

283
    if (return_node.is_constant()) {
2✔
284
        nlohmann::json type_json;
×
285
        type_to_json(type_json, return_node.type());
×
286
        j["data_type"] = type_json;
×
287
    }
×
288

289
    j["debug_info"] = nlohmann::json::object();
2✔
290
    debug_info_to_json(j["debug_info"], return_node.debug_info());
2✔
291
}
2✔
292

293
void JSONSerializer::sequence_to_json(nlohmann::json& j, const structured_control_flow::Sequence& sequence) {
61✔
294
    j["type"] = "sequence";
61✔
295
    j["element_id"] = sequence.element_id();
61✔
296

297
    j["debug_info"] = nlohmann::json::object();
61✔
298
    debug_info_to_json(j["debug_info"], sequence.debug_info());
61✔
299

300
    j["children"] = nlohmann::json::array();
61✔
301
    j["transitions"] = nlohmann::json::array();
61✔
302

303
    for (size_t i = 0; i < sequence.size(); i++) {
132✔
304
        nlohmann::json child_json;
71✔
305
        auto& child = sequence.at(i).first;
71✔
306
        auto& transition = sequence.at(i).second;
71✔
307

308
        if (auto block = dynamic_cast<const structured_control_flow::Block*>(&child)) {
71✔
309
            block_to_json(child_json, *block);
47✔
310
        } else if (auto for_node = dynamic_cast<const structured_control_flow::For*>(&child)) {
47✔
311
            for_to_json(child_json, *for_node);
16✔
312
        } else if (auto sequence_node = dynamic_cast<const structured_control_flow::Sequence*>(&child)) {
16✔
313
            sequence_to_json(child_json, *sequence_node);
×
314
        } else if (auto condition_node = dynamic_cast<const structured_control_flow::IfElse*>(&child)) {
8✔
315
            if_else_to_json(child_json, *condition_node);
×
316
        } else if (auto while_node = dynamic_cast<const structured_control_flow::While*>(&child)) {
8✔
317
            while_node_to_json(child_json, *while_node);
×
318
        } else if (auto return_node = dynamic_cast<const structured_control_flow::Return*>(&child)) {
8✔
319
            return_node_to_json(child_json, *return_node);
×
320
        } else if (auto break_node = dynamic_cast<const structured_control_flow::Break*>(&child)) {
8✔
321
            break_node_to_json(child_json, *break_node);
2✔
322
        } else if (auto continue_node = dynamic_cast<const structured_control_flow::Continue*>(&child)) {
6✔
323
            continue_node_to_json(child_json, *continue_node);
2✔
324
        } else if (auto map_node = dynamic_cast<const structured_control_flow::Map*>(&child)) {
4✔
325
            map_to_json(child_json, *map_node);
4✔
326
        } else {
4✔
327
            throw std::runtime_error("Unknown child type");
×
328
        }
×
329

330
        j["children"].push_back(child_json);
71✔
331

332
        // Add transition information
333
        nlohmann::json transition_json;
71✔
334
        transition_json["type"] = "transition";
71✔
335
        transition_json["element_id"] = transition.element_id();
71✔
336

337
        transition_json["debug_info"] = nlohmann::json::object();
71✔
338
        debug_info_to_json(transition_json["debug_info"], transition.debug_info());
71✔
339

340
        transition_json["assignments"] = nlohmann::json::array();
71✔
341
        for (const auto& assignment : transition.assignments()) {
71✔
342
            nlohmann::json assignment_json;
3✔
343
            assignment_json["symbol"] = expression(assignment.first);
3✔
344
            assignment_json["expression"] = expression(assignment.second);
3✔
345
            transition_json["assignments"].push_back(assignment_json);
3✔
346
        }
3✔
347

348
        j["transitions"].push_back(transition_json);
71✔
349
    }
71✔
350
}
61✔
351

352
void JSONSerializer::type_to_json(nlohmann::json& j, const types::IType& type) {
524✔
353
    if (auto scalar_type = dynamic_cast<const types::Scalar*>(&type)) {
524✔
354
        j["type"] = "scalar";
385✔
355
        j["primitive_type"] = scalar_type->primitive_type();
385✔
356
        j["storage_type"] = nlohmann::json::object();
385✔
357
        storage_type_to_json(j["storage_type"], scalar_type->storage_type());
385✔
358
        j["initializer"] = scalar_type->initializer();
385✔
359
        j["alignment"] = scalar_type->alignment();
385✔
360
    } else if (auto array_type = dynamic_cast<const types::Array*>(&type)) {
385✔
361
        j["type"] = "array";
72✔
362
        nlohmann::json element_type_json;
72✔
363
        type_to_json(element_type_json, array_type->element_type());
72✔
364
        j["element_type"] = element_type_json;
72✔
365
        j["num_elements"] = expression(array_type->num_elements());
72✔
366
        j["storage_type"] = nlohmann::json::object();
72✔
367
        storage_type_to_json(j["storage_type"], array_type->storage_type());
72✔
368
        j["initializer"] = array_type->initializer();
72✔
369
        j["alignment"] = array_type->alignment();
72✔
370
    } else if (auto pointer_type = dynamic_cast<const types::Pointer*>(&type)) {
72✔
371
        j["type"] = "pointer";
49✔
372
        if (pointer_type->has_pointee_type()) {
49✔
373
            nlohmann::json pointee_type_json;
48✔
374
            type_to_json(pointee_type_json, pointer_type->pointee_type());
48✔
375
            j["pointee_type"] = pointee_type_json;
48✔
376
        }
48✔
377
        j["storage_type"] = nlohmann::json::object();
49✔
378
        storage_type_to_json(j["storage_type"], pointer_type->storage_type());
49✔
379
        j["initializer"] = pointer_type->initializer();
49✔
380
        j["alignment"] = pointer_type->alignment();
49✔
381
    } else if (auto structure_type = dynamic_cast<const types::Structure*>(&type)) {
49✔
382
        j["type"] = "structure";
5✔
383
        j["name"] = structure_type->name();
5✔
384
        j["storage_type"] = nlohmann::json::object();
5✔
385
        storage_type_to_json(j["storage_type"], structure_type->storage_type());
5✔
386
        j["initializer"] = structure_type->initializer();
5✔
387
        j["alignment"] = structure_type->alignment();
5✔
388
    } else if (auto function_type = dynamic_cast<const types::Function*>(&type)) {
13✔
389
        j["type"] = "function";
5✔
390
        nlohmann::json return_type_json;
5✔
391
        type_to_json(return_type_json, function_type->return_type());
5✔
392
        j["return_type"] = return_type_json;
5✔
393
        j["params"] = nlohmann::json::array();
5✔
394
        for (size_t i = 0; i < function_type->num_params(); i++) {
16✔
395
            nlohmann::json param_json;
11✔
396
            type_to_json(param_json, function_type->param_type(symbolic::integer(i)));
11✔
397
            j["params"].push_back(param_json);
11✔
398
        }
11✔
399
        j["is_var_arg"] = function_type->is_var_arg();
5✔
400
        j["storage_type"] = nlohmann::json::object();
5✔
401
        storage_type_to_json(j["storage_type"], function_type->storage_type());
5✔
402
        j["initializer"] = function_type->initializer();
5✔
403
        j["alignment"] = function_type->alignment();
5✔
404
    } else if (auto reference_type = dynamic_cast<const sdfg::codegen::Reference*>(&type)) {
8✔
405
        j["type"] = "reference";
8✔
406
        nlohmann::json reference_type_json;
8✔
407
        type_to_json(reference_type_json, reference_type->reference_type());
8✔
408
        j["reference_type"] = reference_type_json;
8✔
409
    } else if (auto tensor_type = dynamic_cast<const types::Tensor*>(&type)) {
8✔
NEW
410
        j["type"] = "tensor";
×
NEW
411
        nlohmann::json element_type_json;
×
NEW
412
        type_to_json(element_type_json, tensor_type->element_type());
×
NEW
413
        j["element_type"] = element_type_json;
×
NEW
414
        j["shape"] = nlohmann::json::array();
×
NEW
415
        for (const auto& dim : tensor_type->shape()) {
×
NEW
416
            j["shape"].push_back(expression(dim));
×
NEW
417
        }
×
NEW
418
        j["strides"] = nlohmann::json::array();
×
NEW
419
        for (const auto& stride : tensor_type->strides()) {
×
NEW
420
            j["strides"].push_back(expression(stride));
×
NEW
421
        }
×
NEW
422
        j["offset"] = expression(tensor_type->offset());
×
NEW
423
        j["storage_type"] = nlohmann::json::object();
×
NEW
424
        storage_type_to_json(j["storage_type"], tensor_type->storage_type());
×
NEW
425
        j["initializer"] = tensor_type->initializer();
×
NEW
426
        j["alignment"] = tensor_type->alignment();
×
427
    } else {
×
428
        throw std::runtime_error("Unknown type");
×
429
    }
×
430
}
524✔
431

432
void JSONSerializer::structure_definition_to_json(nlohmann::json& j, const types::StructureDefinition& definition) {
2✔
433
    j["name"] = definition.name();
2✔
434
    j["members"] = nlohmann::json::array();
2✔
435
    for (size_t i = 0; i < definition.num_members(); i++) {
4✔
436
        nlohmann::json member_json;
2✔
437
        type_to_json(member_json, definition.member_type(symbolic::integer(i)));
2✔
438
        j["members"].push_back(member_json);
2✔
439
    }
2✔
440
    j["is_packed"] = definition.is_packed();
2✔
441
}
2✔
442

443
void JSONSerializer::debug_info_to_json(nlohmann::json& j, const DebugInfo& debug_info) {
595✔
444
    j["has"] = debug_info.has();
595✔
445
    j["filename"] = debug_info.filename();
595✔
446
    j["function"] = debug_info.function();
595✔
447
    j["start_line"] = debug_info.start_line();
595✔
448
    j["start_column"] = debug_info.start_column();
595✔
449
    j["end_line"] = debug_info.end_line();
595✔
450
    j["end_column"] = debug_info.end_column();
595✔
451
}
595✔
452

453
void JSONSerializer::schedule_type_to_json(nlohmann::json& j, const ScheduleType& schedule_type) {
8✔
454
    j["value"] = schedule_type.value();
8✔
455
    j["properties"] = nlohmann::json::object();
8✔
456
    for (const auto& prop : schedule_type.properties()) {
8✔
457
        j["properties"][prop.first] = prop.second;
4✔
458
    }
4✔
459
}
8✔
460

461
void JSONSerializer::storage_type_to_json(nlohmann::json& j, const types::StorageType& storage_type) {
516✔
462
    j["value"] = storage_type.value();
516✔
463
    j["allocation"] = storage_type.allocation();
516✔
464
    j["deallocation"] = storage_type.deallocation();
516✔
465
    if (!storage_type.allocation_size().is_null()) {
516✔
466
        j["allocation_size"] = expression(storage_type.allocation_size());
×
467
    }
×
468
    const symbolic::Expression& arg1 = storage_type.arg1();
516✔
469
    if (!arg1.is_null()) {
516✔
470
        auto args = nlohmann::json::array();
×
471
        args.push_back(expression(arg1));
×
472
        j["args"] = args;
×
473
    }
×
474
}
516✔
475

476

477
/*
478
 * * Deserialization logic
479
 */
480

481
std::unique_ptr<StructuredSDFG> JSONSerializer::deserialize(nlohmann::json& j) {
25✔
482
    assert(j.contains("name"));
25✔
483
    assert(j["name"].is_string());
25✔
484
    assert(j.contains("type"));
25✔
485
    assert(j["type"].is_string());
25✔
486
    assert(j.contains("element_counter"));
25✔
487
    assert(j["element_counter"].is_number_integer());
25✔
488

489
    std::unique_ptr<types::IType> return_type;
25✔
490
    if (j.contains("return_type")) {
25✔
491
        return_type = json_to_type(j["return_type"]);
25✔
492
    } else {
25✔
493
        return_type = std::make_unique<types::Scalar>(types::PrimitiveType::Void);
×
494
    }
×
495

496
    FunctionType function_type = function_type_from_string(j["type"].get<std::string>());
25✔
497
    builder::StructuredSDFGBuilder builder(j["name"], function_type, *return_type);
25✔
498

499
    size_t element_counter = j["element_counter"];
25✔
500
    builder.set_element_counter(element_counter);
25✔
501

502
    // deserialize structures
503
    assert(j.contains("structures"));
25✔
504
    assert(j["structures"].is_array());
25✔
505
    for (const auto& structure : j["structures"]) {
25✔
506
        assert(structure.contains("name"));
1✔
507
        assert(structure["name"].is_string());
1✔
508
        json_to_structure_definition(structure, builder);
1✔
509
    }
1✔
510

511
    nlohmann::json& containers = j["containers"];
25✔
512

513
    // deserialize externals
514
    for (const auto& external : j["externals"]) {
25✔
515
        assert(external.contains("name"));
7✔
516
        assert(external["name"].is_string());
7✔
517
        assert(external.contains("linkage_type"));
7✔
518
        assert(external["linkage_type"].is_number_integer());
7✔
519
        auto& type_desc = containers.at(external["name"].get<std::string>());
7✔
520
        auto type = json_to_type(type_desc);
7✔
521
        builder.add_external(external["name"], *type, LinkageType(external["linkage_type"]));
7✔
522
    }
7✔
523

524
    // deserialize arguments
525
    for (const auto& name : j["arguments"]) {
26✔
526
        auto& type_desc = containers.at(name.get<std::string>());
26✔
527
        auto type = json_to_type(type_desc);
26✔
528
        builder.add_container(name, *type, true, false);
26✔
529
    }
26✔
530

531
    // deserialize transients
532
    for (const auto& entry : containers.items()) {
139✔
533
        if (builder.subject().is_argument(entry.key())) {
139✔
534
            continue;
26✔
535
        }
26✔
536
        if (builder.subject().is_external(entry.key())) {
113✔
537
            continue;
7✔
538
        }
7✔
539
        auto type = json_to_type(entry.value());
106✔
540
        builder.add_container(entry.key(), *type, false, false);
106✔
541
    }
106✔
542

543
    // deserialize root node
544
    assert(j.contains("root"));
25✔
545
    auto& root = builder.subject().root();
25✔
546
    json_to_sequence(j["root"], builder, root);
25✔
547

548
    // deserialize metadata
549
    assert(j.contains("metadata"));
25✔
550
    assert(j["metadata"].is_object());
25✔
551
    for (const auto& entry : j["metadata"].items()) {
25✔
552
        builder.subject().add_metadata(entry.key(), entry.value());
1✔
553
    }
1✔
554

555
    builder.set_element_counter(element_counter);
25✔
556

557
    return builder.move();
25✔
558
}
25✔
559

560
void JSONSerializer::json_to_structure_definition(const nlohmann::json& j, builder::StructuredSDFGBuilder& builder) {
2✔
561
    assert(j.contains("name"));
2✔
562
    assert(j["name"].is_string());
2✔
563
    assert(j.contains("members"));
2✔
564
    assert(j["members"].is_array());
2✔
565
    assert(j.contains("is_packed"));
2✔
566
    assert(j["is_packed"].is_boolean());
2✔
567
    auto is_packed = j["is_packed"];
2✔
568
    auto& definition = builder.add_structure(j["name"], is_packed);
2✔
569
    for (const auto& member : j["members"]) {
2✔
570
        nlohmann::json member_json;
2✔
571
        auto member_type = json_to_type(member);
2✔
572
        definition.add_member(*member_type);
2✔
573
    }
2✔
574
}
2✔
575

576
std::vector<std::pair<std::string, types::Scalar>> JSONSerializer::json_to_arguments(const nlohmann::json& j) {
×
577
    std::vector<std::pair<std::string, types::Scalar>> arguments;
×
578
    for (const auto& argument : j) {
×
579
        assert(argument.contains("name"));
×
580
        assert(argument["name"].is_string());
×
581
        assert(argument.contains("type"));
×
582
        assert(argument["type"].is_object());
×
583
        std::string name = argument["name"];
×
584
        auto type = json_to_type(argument["type"]);
×
585
        arguments.emplace_back(name, *dynamic_cast<types::Scalar*>(type.get()));
×
586
    }
×
587
    return arguments;
×
588
}
×
589

590
void JSONSerializer::json_to_dataflow(
591
    const nlohmann::json& j, builder::StructuredSDFGBuilder& builder, structured_control_flow::Block& parent
592
) {
41✔
593
    std::map<size_t, data_flow::DataFlowNode&> nodes_map;
41✔
594

595
    assert(j.contains("nodes"));
41✔
596
    assert(j["nodes"].is_array());
41✔
597
    for (const auto& node : j["nodes"]) {
195✔
598
        assert(node.contains("type"));
195✔
599
        assert(node["type"].is_string());
195✔
600
        assert(node.contains("element_id"));
195✔
601
        assert(node["element_id"].is_number_integer());
195✔
602
        std::string type = node["type"];
195✔
603
        if (type == "tasklet") {
195✔
604
            assert(node.contains("code"));
58✔
605
            assert(node["code"].is_number_integer());
58✔
606
            assert(node.contains("inputs"));
58✔
607
            assert(node["inputs"].is_array());
58✔
608
            assert(node.contains("output"));
58✔
609
            assert(node["output"].is_string());
58✔
610
            auto inputs = node["inputs"].get<std::vector<std::string>>();
58✔
611

612
            auto& tasklet =
58✔
613
                builder
58✔
614
                    .add_tasklet(parent, node["code"], node["output"], inputs, json_to_debug_info(node["debug_info"]));
58✔
615
            tasklet.element_id_ = node["element_id"];
58✔
616
            nodes_map.insert({node["element_id"], tasklet});
58✔
617
        } else if (type == "library_node") {
137✔
618
            assert(node.contains("code"));
7✔
619
            data_flow::LibraryNodeCode code(node["code"].get<std::string>());
7✔
620

621
            auto serializer_fn = LibraryNodeSerializerRegistry::instance().get_library_node_serializer(code.value());
7✔
622
            if (serializer_fn == nullptr) {
7✔
623
                throw std::runtime_error("Unknown library node code: " + std::string(code.value()));
×
624
            }
×
625
            auto serializer = serializer_fn();
7✔
626
            auto& lib_node = serializer->deserialize(node, builder, parent);
7✔
627
            lib_node.implementation_type() =
7✔
628
                data_flow::ImplementationType(node["implementation_type"].get<std::string>());
7✔
629
            lib_node.element_id_ = node["element_id"];
7✔
630
            nodes_map.insert({node["element_id"], lib_node});
7✔
631
        } else if (type == "access_node") {
130✔
632
            assert(node.contains("data"));
130✔
633
            auto& access_node = builder.add_access(parent, node["data"], json_to_debug_info(node["debug_info"]));
130✔
634
            access_node.element_id_ = node["element_id"];
130✔
635
            nodes_map.insert({node["element_id"], access_node});
130✔
636
        } else if (type == "constant_node") {
130✔
637
            assert(node.contains("data"));
×
638
            assert(node.contains("data_type"));
×
639

640
            auto type = json_to_type(node["data_type"]);
×
641

642
            auto& constant_node =
×
643
                builder.add_constant(parent, node["data"], *type, json_to_debug_info(node["debug_info"]));
×
644
            constant_node.element_id_ = node["element_id"];
×
645
            nodes_map.insert({node["element_id"], constant_node});
×
646
        } else {
×
647
            throw std::runtime_error("Unknown node type");
×
648
        }
×
649
    }
195✔
650

651
    assert(j.contains("edges"));
41✔
652
    assert(j["edges"].is_array());
41✔
653
    for (const auto& edge : j["edges"]) {
175✔
654
        assert(edge.contains("src"));
175✔
655
        assert(edge["src"].is_number_integer());
175✔
656
        assert(edge.contains("dst"));
175✔
657
        assert(edge["dst"].is_number_integer());
175✔
658
        assert(edge.contains("src_conn"));
175✔
659
        assert(edge["src_conn"].is_string());
175✔
660
        assert(edge.contains("dst_conn"));
175✔
661
        assert(edge["dst_conn"].is_string());
175✔
662
        assert(edge.contains("subset"));
175✔
663
        assert(edge["subset"].is_array());
175✔
664

665
        assert(nodes_map.find(edge["src"]) != nodes_map.end());
175✔
666
        assert(nodes_map.find(edge["dst"]) != nodes_map.end());
175✔
667
        auto& source = nodes_map.at(edge["src"]);
175✔
668
        auto& target = nodes_map.at(edge["dst"]);
175✔
669

670
        auto base_type = json_to_type(edge["base_type"]);
175✔
671

672
        assert(edge.contains("subset"));
175✔
673
        assert(edge["subset"].is_array());
175✔
674
        std::vector<symbolic::Expression> subset;
175✔
675
        for (const auto& subset_ : edge["subset"]) {
175✔
676
            assert(subset_.is_string());
62✔
677
            std::string subset_str = subset_;
62✔
678
            auto expr = symbolic::parse(subset_str);
62✔
679
            subset.push_back(expr);
62✔
680
        }
62✔
681
        auto& memlet = builder.add_memlet(
175✔
682
            parent,
175✔
683
            source,
175✔
684
            edge["src_conn"],
175✔
685
            target,
175✔
686
            edge["dst_conn"],
175✔
687
            subset,
175✔
688
            *base_type,
175✔
689
            json_to_debug_info(edge["debug_info"])
175✔
690
        );
175✔
691
        memlet.element_id_ = edge["element_id"];
175✔
692
    }
175✔
693
}
41✔
694

695
void JSONSerializer::json_to_sequence(
696
    const nlohmann::json& j, builder::StructuredSDFGBuilder& builder, structured_control_flow::Sequence& sequence
697
) {
54✔
698
    assert(j.contains("type"));
54✔
699
    assert(j["type"].is_string());
54✔
700
    assert(j.contains("children"));
54✔
701
    assert(j["children"].is_array());
54✔
702
    assert(j.contains("transitions"));
54✔
703
    assert(j["transitions"].is_array());
54✔
704
    assert(j["transitions"].size() == j["children"].size());
54✔
705

706
    sequence.element_id_ = j["element_id"];
54✔
707
    sequence.debug_info_ = json_to_debug_info(j["debug_info"]);
54✔
708

709
    std::string type = j["type"];
54✔
710
    if (type == "sequence") {
54✔
711
        for (size_t i = 0; i < j["children"].size(); i++) {
115✔
712
            auto& child = j["children"][i];
61✔
713
            auto& transition = j["transitions"][i];
61✔
714
            assert(child.contains("type"));
61✔
715
            assert(child["type"].is_string());
61✔
716

717
            assert(transition.contains("type"));
61✔
718
            assert(transition["type"].is_string());
61✔
719
            assert(transition.contains("assignments"));
61✔
720
            assert(transition["assignments"].is_array());
61✔
721
            control_flow::Assignments assignments;
61✔
722
            for (const auto& assignment : transition["assignments"]) {
61✔
723
                assert(assignment.contains("symbol"));
2✔
724
                assert(assignment["symbol"].is_string());
2✔
725
                assert(assignment.contains("expression"));
2✔
726
                assert(assignment["expression"].is_string());
2✔
727
                auto expr = symbolic::parse(assignment["expression"].get<std::string>());
2✔
728
                assignments.insert({symbolic::symbol(assignment["symbol"]), expr});
2✔
729
            }
2✔
730

731
            if (child["type"] == "block") {
61✔
732
                json_to_block_node(child, builder, sequence, assignments);
39✔
733
            } else if (child["type"] == "for") {
39✔
734
                json_to_for_node(child, builder, sequence, assignments);
16✔
735
            } else if (child["type"] == "if_else") {
16✔
736
                json_to_if_else_node(child, builder, sequence, assignments);
×
737
            } else if (child["type"] == "while") {
6✔
738
                json_to_while_node(child, builder, sequence, assignments);
×
739
            } else if (child["type"] == "break") {
6✔
740
                json_to_break_node(child, builder, sequence, assignments);
1✔
741
            } else if (child["type"] == "continue") {
5✔
742
                json_to_continue_node(child, builder, sequence, assignments);
1✔
743
            } else if (child["type"] == "return") {
4✔
744
                json_to_return_node(child, builder, sequence, assignments);
×
745
            } else if (child["type"] == "map") {
4✔
746
                json_to_map_node(child, builder, sequence, assignments);
4✔
747
            } else if (child["type"] == "sequence") {
4✔
748
                auto& subseq = builder.add_sequence(sequence, assignments, json_to_debug_info(child["debug_info"]));
×
749
                json_to_sequence(child, builder, subseq);
×
750
            } else {
×
751
                throw std::runtime_error("Unknown child type");
×
752
            }
×
753

754
            sequence.at(i).second.debug_info_ = json_to_debug_info(transition["debug_info"]);
61✔
755
            sequence.at(i).second.element_id_ = transition["element_id"];
61✔
756
        }
61✔
757
    } else {
54✔
758
        throw std::runtime_error("expected sequence type");
×
759
    }
×
760
}
54✔
761

762
void JSONSerializer::json_to_block_node(
763
    const nlohmann::json& j,
764
    builder::StructuredSDFGBuilder& builder,
765
    structured_control_flow::Sequence& parent,
766
    control_flow::Assignments& assignments
767
) {
40✔
768
    assert(j.contains("type"));
40✔
769
    assert(j["type"].is_string());
40✔
770
    assert(j.contains("dataflow"));
40✔
771
    assert(j["dataflow"].is_object());
40✔
772
    auto& block = builder.add_block(parent, assignments, json_to_debug_info(j["debug_info"]));
40✔
773
    block.element_id_ = j["element_id"];
40✔
774
    assert(j["dataflow"].contains("type"));
40✔
775
    assert(j["dataflow"]["type"].is_string());
40✔
776
    std::string type = j["dataflow"]["type"];
40✔
777
    if (type == "dataflow") {
40✔
778
        json_to_dataflow(j["dataflow"], builder, block);
40✔
779
    } else {
40✔
780
        throw std::runtime_error("Unknown dataflow type");
×
781
    }
×
782
}
40✔
783

784
void JSONSerializer::json_to_for_node(
785
    const nlohmann::json& j,
786
    builder::StructuredSDFGBuilder& builder,
787
    structured_control_flow::Sequence& parent,
788
    control_flow::Assignments& assignments
789
) {
17✔
790
    assert(j.contains("type"));
17✔
791
    assert(j["type"].is_string());
17✔
792
    assert(j.contains("indvar"));
17✔
793
    assert(j["indvar"].is_string());
17✔
794
    assert(j.contains("init"));
17✔
795
    assert(j["init"].is_string());
17✔
796
    assert(j.contains("condition"));
17✔
797
    assert(j["condition"].is_string());
17✔
798
    assert(j.contains("update"));
17✔
799
    assert(j["update"].is_string());
17✔
800
    assert(j.contains("root"));
17✔
801
    assert(j["root"].is_object());
17✔
802

803
    symbolic::Symbol indvar = symbolic::symbol(j["indvar"]);
17✔
804
    auto init = symbolic::parse(j["init"].get<std::string>());
17✔
805
    auto update = symbolic::parse(j["update"].get<std::string>());
17✔
806

807
    auto condition_expr = symbolic::parse(j["condition"].get<std::string>());
17✔
808
    symbolic::Condition condition = SymEngine::rcp_dynamic_cast<const SymEngine::Boolean>(condition_expr);
17✔
809
    if (condition.is_null()) {
17✔
810
        throw InvalidSDFGException("For loop condition is not a boolean expression");
×
811
    }
×
812

813
    auto& for_node =
17✔
814
        builder.add_for(parent, indvar, condition, init, update, assignments, json_to_debug_info(j["debug_info"]));
17✔
815
    for_node.element_id_ = j["element_id"];
17✔
816

817
    assert(j["root"].contains("type"));
17✔
818
    assert(j["root"]["type"].is_string());
17✔
819
    assert(j["root"]["type"] == "sequence");
17✔
820
    json_to_sequence(j["root"], builder, for_node.root());
17✔
821
}
17✔
822

823
void JSONSerializer::json_to_if_else_node(
824
    const nlohmann::json& j,
825
    builder::StructuredSDFGBuilder& builder,
826
    structured_control_flow::Sequence& parent,
827
    control_flow::Assignments& assignments
828
) {
1✔
829
    assert(j.contains("type"));
1✔
830
    assert(j["type"].is_string());
1✔
831
    assert(j["type"] == "if_else");
1✔
832
    assert(j.contains("branches"));
1✔
833
    assert(j["branches"].is_array());
1✔
834
    auto& if_else_node = builder.add_if_else(parent, assignments, json_to_debug_info(j["debug_info"]));
1✔
835
    if_else_node.element_id_ = j["element_id"];
1✔
836
    for (const auto& branch : j["branches"]) {
2✔
837
        assert(branch.contains("condition"));
2✔
838
        assert(branch["condition"].is_string());
2✔
839
        assert(branch.contains("root"));
2✔
840
        assert(branch["root"].is_object());
2✔
841

842
        auto condition_expr = symbolic::parse(branch["condition"].get<std::string>());
2✔
843
        symbolic::Condition condition = SymEngine::rcp_dynamic_cast<const SymEngine::Boolean>(condition_expr);
2✔
844
        if (condition.is_null()) {
2✔
845
            throw InvalidSDFGException("If condition is not a boolean expression");
×
846
        }
×
847
        auto& branch_node = builder.add_case(if_else_node, condition);
2✔
848
        assert(branch["root"].contains("type"));
2✔
849
        assert(branch["root"]["type"].is_string());
2✔
850
        std::string type = branch["root"]["type"];
2✔
851
        if (type == "sequence") {
2✔
852
            json_to_sequence(branch["root"], builder, branch_node);
2✔
853
        } else {
2✔
854
            throw std::runtime_error("Unknown child type");
×
855
        }
×
856
    }
2✔
857
}
1✔
858

859
void JSONSerializer::json_to_while_node(
860
    const nlohmann::json& j,
861
    builder::StructuredSDFGBuilder& builder,
862
    structured_control_flow::Sequence& parent,
863
    control_flow::Assignments& assignments
864
) {
3✔
865
    assert(j.contains("type"));
3✔
866
    assert(j["type"].is_string());
3✔
867
    assert(j["type"] == "while");
3✔
868
    assert(j.contains("root"));
3✔
869
    assert(j["root"].is_object());
3✔
870

871
    auto& while_node = builder.add_while(parent, assignments, json_to_debug_info(j["debug_info"]));
3✔
872
    while_node.element_id_ = j["element_id"];
3✔
873

874
    assert(j["root"]["type"] == "sequence");
3✔
875
    json_to_sequence(j["root"], builder, while_node.root());
3✔
876
}
3✔
877

878
void JSONSerializer::json_to_break_node(
879
    const nlohmann::json& j,
880
    builder::StructuredSDFGBuilder& builder,
881
    structured_control_flow::Sequence& parent,
882
    control_flow::Assignments& assignments
883
) {
1✔
884
    assert(j.contains("type"));
1✔
885
    assert(j["type"].is_string());
1✔
886
    assert(j["type"] == "break");
1✔
887
    auto& node = builder.add_break(parent, assignments, json_to_debug_info(j["debug_info"]));
1✔
888
    node.element_id_ = j["element_id"];
1✔
889
}
1✔
890

891
void JSONSerializer::json_to_continue_node(
892
    const nlohmann::json& j,
893
    builder::StructuredSDFGBuilder& builder,
894
    structured_control_flow::Sequence& parent,
895
    control_flow::Assignments& assignments
896
) {
1✔
897
    assert(j.contains("type"));
1✔
898
    assert(j["type"].is_string());
1✔
899
    assert(j["type"] == "continue");
1✔
900
    auto& node = builder.add_continue(parent, assignments, json_to_debug_info(j["debug_info"]));
1✔
901
    node.element_id_ = j["element_id"];
1✔
902
}
1✔
903

904
void JSONSerializer::json_to_map_node(
905
    const nlohmann::json& j,
906
    builder::StructuredSDFGBuilder& builder,
907
    structured_control_flow::Sequence& parent,
908
    control_flow::Assignments& assignments
909
) {
5✔
910
    assert(j.contains("type"));
5✔
911
    assert(j["type"].is_string());
5✔
912
    assert(j["type"] == "map");
5✔
913
    assert(j.contains("indvar"));
5✔
914
    assert(j["indvar"].is_string());
5✔
915
    assert(j.contains("init"));
5✔
916
    assert(j["init"].is_string());
5✔
917
    assert(j.contains("condition"));
5✔
918
    assert(j["condition"].is_string());
5✔
919
    assert(j.contains("update"));
5✔
920
    assert(j["update"].is_string());
5✔
921
    assert(j.contains("root"));
5✔
922
    assert(j["root"].is_object());
5✔
923
    assert(j.contains("schedule_type"));
5✔
924
    assert(j["schedule_type"].is_object());
5✔
925

926
    structured_control_flow::ScheduleType schedule_type = json_to_schedule_type(j["schedule_type"]);
5✔
927

928
    symbolic::Symbol indvar = symbolic::symbol(j["indvar"]);
5✔
929
    auto init = symbolic::parse(j["init"].get<std::string>());
5✔
930
    auto update = symbolic::parse(j["update"].get<std::string>());
5✔
931
    auto condition_expr = symbolic::parse(j["condition"].get<std::string>());
5✔
932
    symbolic::Condition condition = SymEngine::rcp_dynamic_cast<const SymEngine::Boolean>(condition_expr);
5✔
933
    if (condition.is_null()) {
5✔
934
        throw InvalidSDFGException("Map condition is not a boolean expression");
×
935
    }
×
936

937
    auto& map_node = builder.add_map(
5✔
938
        parent, indvar, condition, init, update, schedule_type, assignments, json_to_debug_info(j["debug_info"])
5✔
939
    );
5✔
940
    map_node.element_id_ = j["element_id"];
5✔
941

942
    assert(j["root"].contains("type"));
5✔
943
    assert(j["root"]["type"].is_string());
5✔
944
    assert(j["root"]["type"] == "sequence");
5✔
945
    json_to_sequence(j["root"], builder, map_node.root());
5✔
946
}
5✔
947

948
void JSONSerializer::json_to_return_node(
949
    const nlohmann::json& j,
950
    builder::StructuredSDFGBuilder& builder,
951
    structured_control_flow::Sequence& parent,
952
    control_flow::Assignments& assignments
953
) {
1✔
954
    assert(j.contains("type"));
1✔
955
    assert(j["type"].is_string());
1✔
956
    assert(j["type"] == "return");
1✔
957

958
    std::string data = j["data"];
1✔
959
    std::unique_ptr<types::IType> data_type = nullptr;
1✔
960
    if (j.contains("data_type")) {
1✔
961
        data_type = json_to_type(j["data_type"]);
×
962
    }
×
963

964
    if (data_type == nullptr) {
1✔
965
        auto& node = builder.add_return(parent, data, assignments, json_to_debug_info(j["debug_info"]));
1✔
966
        node.element_id_ = j["element_id"];
1✔
967
    } else {
1✔
968
        auto& node =
×
969
            builder.add_constant_return(parent, data, *data_type, assignments, json_to_debug_info(j["debug_info"]));
×
970
        node.element_id_ = j["element_id"];
×
971
    }
×
972
}
1✔
973

974
std::unique_ptr<types::IType> JSONSerializer::json_to_type(const nlohmann::json& j) {
480✔
975
    if (j.contains("type")) {
480✔
976
        if (j["type"] == "scalar") {
480✔
977
            // Deserialize scalar type
978
            assert(j.contains("primitive_type"));
356✔
979
            types::PrimitiveType primitive_type = j["primitive_type"];
356✔
980
            assert(j.contains("storage_type"));
356✔
981
            types::StorageType storage_type = json_to_storage_type(j["storage_type"]);
356✔
982
            assert(j.contains("initializer"));
356✔
983
            std::string initializer = j["initializer"];
356✔
984
            assert(j.contains("alignment"));
356✔
985
            size_t alignment = j["alignment"];
356✔
986
            return std::make_unique<types::Scalar>(storage_type, alignment, initializer, primitive_type);
356✔
987
        } else if (j["type"] == "array") {
356✔
988
            // Deserialize array type
989
            assert(j.contains("element_type"));
69✔
990
            std::unique_ptr<types::IType> member_type = json_to_type(j["element_type"]);
69✔
991
            assert(j.contains("num_elements"));
69✔
992
            std::string num_elements_str = j["num_elements"];
69✔
993
            // Convert num_elements_str to symbolic::Expression
994
            auto num_elements = symbolic::parse(num_elements_str);
69✔
995
            assert(j.contains("storage_type"));
69✔
996
            types::StorageType storage_type = json_to_storage_type(j["storage_type"]);
69✔
997
            assert(j.contains("initializer"));
69✔
998
            std::string initializer = j["initializer"];
69✔
999
            assert(j.contains("alignment"));
69✔
1000
            size_t alignment = j["alignment"];
69✔
1001
            return std::make_unique<types::Array>(storage_type, alignment, initializer, *member_type, num_elements);
69✔
1002
        } else if (j["type"] == "pointer") {
69✔
1003
            // Deserialize pointer type
1004
            std::optional<std::unique_ptr<types::IType>> pointee_type;
44✔
1005
            if (j.contains("pointee_type")) {
44✔
1006
                assert(j.contains("pointee_type"));
43✔
1007
                pointee_type = json_to_type(j["pointee_type"]);
43✔
1008
            } else {
43✔
1009
                pointee_type = std::nullopt;
1✔
1010
            }
1✔
1011
            assert(j.contains("storage_type"));
44✔
1012
            types::StorageType storage_type = json_to_storage_type(j["storage_type"]);
44✔
1013
            assert(j.contains("initializer"));
44✔
1014
            std::string initializer = j["initializer"];
44✔
1015
            assert(j.contains("alignment"));
44✔
1016
            size_t alignment = j["alignment"];
44✔
1017
            if (pointee_type.has_value()) {
44✔
1018
                return std::make_unique<types::Pointer>(storage_type, alignment, initializer, *pointee_type.value());
43✔
1019
            } else {
43✔
1020
                return std::make_unique<types::Pointer>(storage_type, alignment, initializer);
1✔
1021
            }
1✔
1022
        } else if (j["type"] == "structure") {
44✔
1023
            // Deserialize structure type
1024
            assert(j.contains("name"));
3✔
1025
            std::string name = j["name"];
3✔
1026
            assert(j.contains("storage_type"));
3✔
1027
            types::StorageType storage_type = json_to_storage_type(j["storage_type"]);
3✔
1028
            assert(j.contains("initializer"));
3✔
1029
            std::string initializer = j["initializer"];
3✔
1030
            assert(j.contains("alignment"));
3✔
1031
            size_t alignment = j["alignment"];
3✔
1032
            return std::make_unique<types::Structure>(storage_type, alignment, initializer, name);
3✔
1033
        } else if (j["type"] == "function") {
8✔
1034
            // Deserialize function type
1035
            assert(j.contains("return_type"));
4✔
1036
            std::unique_ptr<types::IType> return_type = json_to_type(j["return_type"]);
4✔
1037
            assert(j.contains("params"));
4✔
1038
            std::vector<std::unique_ptr<types::IType>> params;
4✔
1039
            for (const auto& param : j["params"]) {
10✔
1040
                params.push_back(json_to_type(param));
10✔
1041
            }
10✔
1042
            assert(j.contains("is_var_arg"));
4✔
1043
            bool is_var_arg = j["is_var_arg"];
4✔
1044
            assert(j.contains("storage_type"));
4✔
1045
            types::StorageType storage_type = json_to_storage_type(j["storage_type"]);
4✔
1046
            assert(j.contains("initializer"));
4✔
1047
            std::string initializer = j["initializer"];
4✔
1048
            assert(j.contains("alignment"));
4✔
1049
            size_t alignment = j["alignment"];
4✔
1050
            auto function =
4✔
1051
                std::make_unique<types::Function>(storage_type, alignment, initializer, *return_type, is_var_arg);
4✔
1052
            for (const auto& param : params) {
10✔
1053
                function->add_param(*param);
10✔
1054
            }
10✔
1055
            return function->clone();
4✔
1056
        } else if (j["type"] == "reference") {
4✔
1057
            // Deserialize reference type
1058
            assert(j.contains("reference_type"));
4✔
1059
            std::unique_ptr<types::IType> reference_type = json_to_type(j["reference_type"]);
4✔
1060
            return std::make_unique<sdfg::codegen::Reference>(*reference_type);
4✔
1061
        } else if (j["type"] == "tensor") {
4✔
1062
            // Deserialize tensor type
NEW
1063
            assert(j.contains("element_type"));
×
NEW
1064
            std::unique_ptr<types::IType> element_type = json_to_type(j["element_type"]);
×
NEW
1065
            assert(j.contains("shape"));
×
NEW
1066
            std::vector<symbolic::Expression> shape;
×
NEW
1067
            for (const auto& dim : j["shape"]) {
×
NEW
1068
                assert(dim.is_string());
×
NEW
1069
                std::string dim_str = dim;
×
NEW
1070
                auto expr = symbolic::parse(dim_str);
×
NEW
1071
                shape.push_back(expr);
×
NEW
1072
            }
×
NEW
1073
            assert(j.contains("strides"));
×
NEW
1074
            std::vector<symbolic::Expression> strides;
×
NEW
1075
            for (const auto& stride : j["strides"]) {
×
NEW
1076
                assert(stride.is_string());
×
NEW
1077
                std::string stride_str = stride;
×
NEW
1078
                auto expr = symbolic::parse(stride_str);
×
NEW
1079
                strides.push_back(expr);
×
NEW
1080
            }
×
NEW
1081
            assert(j.contains("offset"));
×
NEW
1082
            symbolic::Expression offset = symbolic::parse(j["offset"].get<std::string>());
×
NEW
1083
            assert(j.contains("storage_type"));
×
NEW
1084
            types::StorageType storage_type = json_to_storage_type(j["storage_type"]);
×
NEW
1085
            assert(j.contains("initializer"));
×
NEW
1086
            std::string initializer = j["initializer"];
×
NEW
1087
            assert(j.contains("alignment"));
×
NEW
1088
            size_t alignment = j["alignment"];
×
NEW
1089
            return std::make_unique<types::Tensor>(
×
NEW
1090
                storage_type, alignment, initializer, dynamic_cast<types::Scalar&>(*element_type), shape, strides, offset
×
NEW
1091
            );
×
1092
        } else {
×
1093
            throw std::runtime_error("Unknown type");
×
1094
        }
×
1095
    } else {
480✔
1096
        throw std::runtime_error("Type not found");
×
1097
    }
×
1098
}
480✔
1099

1100
DebugInfo JSONSerializer::json_to_debug_info(const nlohmann::json& j) {
554✔
1101
    assert(j.contains("has"));
554✔
1102
    assert(j["has"].is_boolean());
554✔
1103
    if (!j["has"]) {
554✔
1104
        return DebugInfo();
550✔
1105
    }
550✔
1106
    assert(j.contains("filename"));
554✔
1107
    assert(j["filename"].is_string());
4✔
1108
    std::string filename = j["filename"];
4✔
1109
    assert(j.contains("function"));
4✔
1110
    assert(j["function"].is_string());
4✔
1111
    std::string function = j["function"];
4✔
1112
    assert(j.contains("start_line"));
4✔
1113
    assert(j["start_line"].is_number_integer());
4✔
1114
    size_t start_line = j["start_line"];
4✔
1115
    assert(j.contains("start_column"));
4✔
1116
    assert(j["start_column"].is_number_integer());
4✔
1117
    size_t start_column = j["start_column"];
4✔
1118
    assert(j.contains("end_line"));
4✔
1119
    assert(j["end_line"].is_number_integer());
4✔
1120
    size_t end_line = j["end_line"];
4✔
1121
    assert(j.contains("end_column"));
4✔
1122
    assert(j["end_column"].is_number_integer());
4✔
1123
    size_t end_column = j["end_column"];
4✔
1124
    return DebugInfo(filename, function, start_line, start_column, end_line, end_column);
4✔
1125
}
4✔
1126

1127
ScheduleType JSONSerializer::json_to_schedule_type(const nlohmann::json& j) {
6✔
1128
    assert(j.contains("value"));
6✔
1129
    assert(j["value"].is_string());
6✔
1130
    assert(j.contains("properties"));
6✔
1131
    assert(j["properties"].is_object());
6✔
1132
    ScheduleType schedule_type(j["value"].get<std::string>());
6✔
1133
    for (const auto& [key, value] : j["properties"].items()) {
6✔
1134
        assert(value.is_string());
3✔
1135
        schedule_type.set_property(key, value.get<std::string>());
3✔
1136
    }
3✔
1137
    return schedule_type;
6✔
1138
}
6✔
1139

1140
types::StorageType JSONSerializer::json_to_storage_type(const nlohmann::json& j) {
476✔
1141
    if (!j.contains("value")) {
476✔
1142
        return types::StorageType::CPU_Stack();
×
1143
    }
×
1144
    std::string value = j["value"].get<std::string>();
476✔
1145

1146
    symbolic::Expression allocation_size = SymEngine::null;
476✔
1147
    if (j.contains("allocation_size")) {
476✔
1148
        allocation_size = symbolic::parse(j["allocation_size"].get<std::string>());
×
1149
    }
×
1150

1151
    types::StorageType::AllocationType allocation = j["allocation"];
476✔
1152
    types::StorageType::AllocationType deallocation = j["deallocation"];
476✔
1153

1154
    auto storageType = types::StorageType(j["value"].get<std::string>(), allocation_size, allocation, deallocation);
476✔
1155

1156
    if (j.contains("args")) {
476✔
1157
        nlohmann::json::array_t args = j["args"];
×
1158
        if (args.size() > 0) {
×
1159
            storageType.arg1(symbolic::parse(args[0].get<std::string>()));
×
1160
        }
×
1161
    }
×
1162
    return storageType;
476✔
1163
}
476✔
1164

1165
std::string JSONSerializer::expression(const symbolic::Expression expr) {
281✔
1166
    JSONSymbolicPrinter printer;
281✔
1167
    return printer.apply(expr);
281✔
1168
};
281✔
1169

1170
void JSONSymbolicPrinter::bvisit(const SymEngine::Equality& x) {
×
1171
    str_ = apply(x.get_args()[0]) + " == " + apply(x.get_args()[1]);
×
1172
    str_ = parenthesize(str_);
×
1173
};
×
1174

1175
void JSONSymbolicPrinter::bvisit(const SymEngine::Unequality& x) {
×
1176
    str_ = apply(x.get_args()[0]) + " != " + apply(x.get_args()[1]);
×
1177
    str_ = parenthesize(str_);
×
1178
};
×
1179

1180
void JSONSymbolicPrinter::bvisit(const SymEngine::LessThan& x) {
2✔
1181
    str_ = apply(x.get_args()[0]) + " <= " + apply(x.get_args()[1]);
2✔
1182
    str_ = parenthesize(str_);
2✔
1183
};
2✔
1184

1185
void JSONSymbolicPrinter::bvisit(const SymEngine::StrictLessThan& x) {
22✔
1186
    str_ = apply(x.get_args()[0]) + " < " + apply(x.get_args()[1]);
22✔
1187
    str_ = parenthesize(str_);
22✔
1188
};
22✔
1189

1190
void JSONSymbolicPrinter::bvisit(const SymEngine::Min& x) {
×
1191
    std::ostringstream s;
×
1192
    auto container = x.get_args();
×
1193
    if (container.size() == 1) {
×
1194
        s << apply(*container.begin());
×
1195
    } else {
×
1196
        s << "min(";
×
1197
        s << apply(*container.begin());
×
1198

1199
        // Recursively apply __daisy_min to the arguments
1200
        SymEngine::vec_basic subargs;
×
1201
        for (auto it = ++(container.begin()); it != container.end(); ++it) {
×
1202
            subargs.push_back(*it);
×
1203
        }
×
1204
        auto submin = SymEngine::min(subargs);
×
1205
        s << ", " << apply(submin);
×
1206

1207
        s << ")";
×
1208
    }
×
1209

1210
    str_ = s.str();
×
1211
};
×
1212

1213
void JSONSymbolicPrinter::bvisit(const SymEngine::Max& x) {
×
1214
    std::ostringstream s;
×
1215
    auto container = x.get_args();
×
1216
    if (container.size() == 1) {
×
1217
        s << apply(*container.begin());
×
1218
    } else {
×
1219
        s << "max(";
×
1220
        s << apply(*container.begin());
×
1221

1222
        // Recursively apply __daisy_max to the arguments
1223
        SymEngine::vec_basic subargs;
×
1224
        for (auto it = ++(container.begin()); it != container.end(); ++it) {
×
1225
            subargs.push_back(*it);
×
1226
        }
×
1227
        auto submax = SymEngine::max(subargs);
×
1228
        s << ", " << apply(submax);
×
1229

1230
        s << ")";
×
1231
    }
×
1232

1233
    str_ = s.str();
×
1234
};
×
1235

1236
void LibraryNodeSerializerRegistry::
1237
    register_library_node_serializer(std::string library_node_code, LibraryNodeSerializerFn fn) {
87✔
1238
    std::lock_guard<std::mutex> lock(mutex_);
87✔
1239
    if (factory_map_.find(library_node_code) != factory_map_.end()) {
87✔
1240
        return;
×
1241
    }
×
1242
    factory_map_[library_node_code] = std::move(fn);
87✔
1243
}
87✔
1244

1245
LibraryNodeSerializerFn LibraryNodeSerializerRegistry::get_library_node_serializer(std::string library_node_code) {
15✔
1246
    auto it = factory_map_.find(library_node_code);
15✔
1247
    if (it != factory_map_.end()) {
15✔
1248
        return it->second;
15✔
1249
    }
15✔
1250
    return nullptr;
×
1251
}
15✔
1252

1253
size_t LibraryNodeSerializerRegistry::size() const { return factory_map_.size(); }
×
1254

1255
void register_default_serializers() {
2✔
1256
    // stdlib
1257
    LibraryNodeSerializerRegistry::instance()
2✔
1258
        .register_library_node_serializer(stdlib::LibraryNodeType_Alloca.value(), []() {
2✔
1259
            return std::make_unique<stdlib::AllocaNodeSerializer>();
×
1260
        });
×
1261
    LibraryNodeSerializerRegistry::instance()
2✔
1262
        .register_library_node_serializer(stdlib::LibraryNodeType_Calloc.value(), []() {
2✔
1263
            return std::make_unique<stdlib::CallocNodeSerializer>();
×
1264
        });
×
1265
    LibraryNodeSerializerRegistry::instance()
2✔
1266
        .register_library_node_serializer(stdlib::LibraryNodeType_Free.value(), []() {
2✔
1267
            return std::make_unique<stdlib::FreeNodeSerializer>();
×
1268
        });
×
1269
    LibraryNodeSerializerRegistry::instance()
2✔
1270
        .register_library_node_serializer(stdlib::LibraryNodeType_Malloc.value(), []() {
2✔
1271
            return std::make_unique<stdlib::MallocNodeSerializer>();
×
1272
        });
×
1273
    LibraryNodeSerializerRegistry::instance()
2✔
1274
        .register_library_node_serializer(stdlib::LibraryNodeType_Memcpy.value(), []() {
2✔
1275
            return std::make_unique<stdlib::MemcpyNodeSerializer>();
×
1276
        });
×
1277
    LibraryNodeSerializerRegistry::instance()
2✔
1278
        .register_library_node_serializer(stdlib::LibraryNodeType_Memmove.value(), []() {
2✔
1279
            return std::make_unique<stdlib::MemmoveNodeSerializer>();
×
1280
        });
×
1281
    LibraryNodeSerializerRegistry::instance()
2✔
1282
        .register_library_node_serializer(stdlib::LibraryNodeType_Memset.value(), []() {
2✔
1283
            return std::make_unique<stdlib::MemsetNodeSerializer>();
×
1284
        });
×
1285
    LibraryNodeSerializerRegistry::instance()
2✔
1286
        .register_library_node_serializer(stdlib::LibraryNodeType_Trap.value(), []() {
2✔
1287
            return std::make_unique<stdlib::TrapNodeSerializer>();
×
1288
        });
×
1289
    LibraryNodeSerializerRegistry::instance()
2✔
1290
        .register_library_node_serializer(stdlib::LibraryNodeType_Unreachable.value(), []() {
2✔
1291
            return std::make_unique<stdlib::UnreachableNodeSerializer>();
×
1292
        });
×
1293

1294
    // Metadata
1295
    LibraryNodeSerializerRegistry::instance()
2✔
1296
        .register_library_node_serializer(data_flow::LibraryNodeType_Metadata.value(), []() {
2✔
1297
            return std::make_unique<data_flow::MetadataNodeSerializer>();
×
1298
        });
×
1299

1300
    // Barrier
1301
    LibraryNodeSerializerRegistry::instance()
2✔
1302
        .register_library_node_serializer(data_flow::LibraryNodeType_BarrierLocal.value(), []() {
2✔
1303
            return std::make_unique<data_flow::BarrierLocalNodeSerializer>();
1✔
1304
        });
1✔
1305

1306
    // Call Node
1307
    LibraryNodeSerializerRegistry::instance()
2✔
1308
        .register_library_node_serializer(data_flow::LibraryNodeType_Call.value(), []() {
6✔
1309
            return std::make_unique<data_flow::CallNodeSerializer>();
6✔
1310
        });
6✔
1311
    LibraryNodeSerializerRegistry::instance()
2✔
1312
        .register_library_node_serializer(data_flow::LibraryNodeType_Invoke.value(), []() {
2✔
1313
            return std::make_unique<data_flow::InvokeNodeSerializer>();
×
1314
        });
×
1315

1316
    // CMath
1317
    LibraryNodeSerializerRegistry::instance()
2✔
1318
        .register_library_node_serializer(math::cmath::LibraryNodeType_CMath.value(), []() {
2✔
1319
            return std::make_unique<math::cmath::CMathNodeSerializer>();
×
1320
        });
×
1321
    // Backward compatibility
1322
    LibraryNodeSerializerRegistry::instance()
2✔
1323
        .register_library_node_serializer(math::cmath::LibraryNodeType_CMath_Deprecated.value(), []() {
2✔
1324
            return std::make_unique<math::cmath::CMathNodeSerializer>();
×
1325
        });
×
1326

1327
    // BLAS
1328
    LibraryNodeSerializerRegistry::instance()
2✔
1329
        .register_library_node_serializer(math::blas::LibraryNodeType_DOT.value(), []() {
2✔
1330
            return std::make_unique<math::blas::DotNodeSerializer>();
×
1331
        });
×
1332
    LibraryNodeSerializerRegistry::instance()
2✔
1333
        .register_library_node_serializer(math::blas::LibraryNodeType_GEMM.value(), []() {
2✔
1334
            return std::make_unique<math::blas::GEMMNodeSerializer>();
×
1335
        });
×
1336

1337
    // Tensor
1338

1339
    LibraryNodeSerializerRegistry::instance()
2✔
1340
        .register_library_node_serializer(math::tensor::LibraryNodeType_Broadcast.value(), []() {
2✔
1341
            return std::make_unique<math::tensor::BroadcastNodeSerializer>();
×
1342
        });
×
1343
    LibraryNodeSerializerRegistry::instance()
2✔
1344
        .register_library_node_serializer(math::tensor::LibraryNodeType_Conv.value(), []() {
2✔
1345
            return std::make_unique<math::tensor::ConvNodeSerializer>();
×
1346
        });
×
1347
    LibraryNodeSerializerRegistry::instance()
2✔
1348
        .register_library_node_serializer(math::tensor::LibraryNodeType_Transpose.value(), []() {
2✔
1349
            return std::make_unique<math::tensor::TransposeNodeSerializer>();
×
1350
        });
×
1351

1352
    // Elementwise
1353
    LibraryNodeSerializerRegistry::instance()
2✔
1354
        .register_library_node_serializer(math::tensor::LibraryNodeType_Abs.value(), []() {
2✔
1355
            return std::make_unique<math::tensor::AbsNodeSerializer>();
×
1356
        });
×
1357
    LibraryNodeSerializerRegistry::instance()
2✔
1358
        .register_library_node_serializer(math::tensor::LibraryNodeType_Add.value(), []() {
2✔
1359
            return std::make_unique<math::tensor::AddNodeSerializer>();
×
1360
        });
×
1361
    LibraryNodeSerializerRegistry::instance()
2✔
1362
        .register_library_node_serializer(math::tensor::LibraryNodeType_Div.value(), []() {
2✔
1363
            return std::make_unique<math::tensor::DivNodeSerializer>();
×
1364
        });
×
1365
    LibraryNodeSerializerRegistry::instance()
2✔
1366
        .register_library_node_serializer(math::tensor::LibraryNodeType_Elu.value(), []() {
2✔
1367
            return std::make_unique<math::tensor::EluNodeSerializer>();
×
1368
        });
×
1369
    LibraryNodeSerializerRegistry::instance()
2✔
1370
        .register_library_node_serializer(math::tensor::LibraryNodeType_Exp.value(), []() {
2✔
1371
            return std::make_unique<math::tensor::ExpNodeSerializer>();
×
1372
        });
×
1373
    LibraryNodeSerializerRegistry::instance()
2✔
1374
        .register_library_node_serializer(math::tensor::LibraryNodeType_Erf.value(), []() {
2✔
1375
            return std::make_unique<math::tensor::ErfNodeSerializer>();
×
1376
        });
×
1377
    LibraryNodeSerializerRegistry::instance()
2✔
1378
        .register_library_node_serializer(math::tensor::LibraryNodeType_HardSigmoid.value(), []() {
2✔
1379
            return std::make_unique<math::tensor::HardSigmoidNodeSerializer>();
×
1380
        });
×
1381
    LibraryNodeSerializerRegistry::instance()
2✔
1382
        .register_library_node_serializer(math::tensor::LibraryNodeType_LeakyReLU.value(), []() {
2✔
1383
            return std::make_unique<math::tensor::LeakyReLUNodeSerializer>();
×
1384
        });
×
1385
    LibraryNodeSerializerRegistry::instance()
2✔
1386
        .register_library_node_serializer(math::tensor::LibraryNodeType_Mul.value(), []() {
2✔
1387
            return std::make_unique<math::tensor::MulNodeSerializer>();
×
1388
        });
×
1389
    LibraryNodeSerializerRegistry::instance()
2✔
1390
        .register_library_node_serializer(math::tensor::LibraryNodeType_Pow.value(), []() {
2✔
1391
            return std::make_unique<math::tensor::PowNodeSerializer>();
×
1392
        });
×
1393
    LibraryNodeSerializerRegistry::instance()
2✔
1394
        .register_library_node_serializer(math::tensor::LibraryNodeType_ReLU.value(), []() {
2✔
1395
            return std::make_unique<math::tensor::ReLUNodeSerializer>();
×
1396
        });
×
1397
    LibraryNodeSerializerRegistry::instance()
2✔
1398
        .register_library_node_serializer(math::tensor::LibraryNodeType_Sigmoid.value(), []() {
2✔
1399
            return std::make_unique<math::tensor::SigmoidNodeSerializer>();
×
1400
        });
×
1401
    LibraryNodeSerializerRegistry::instance()
2✔
1402
        .register_library_node_serializer(math::tensor::LibraryNodeType_Sqrt.value(), []() {
2✔
1403
            return std::make_unique<math::tensor::SqrtNodeSerializer>();
×
1404
        });
×
1405
    LibraryNodeSerializerRegistry::instance()
2✔
1406
        .register_library_node_serializer(math::tensor::LibraryNodeType_Sub.value(), []() {
2✔
1407
            return std::make_unique<math::tensor::SubNodeSerializer>();
×
1408
        });
×
1409
    LibraryNodeSerializerRegistry::instance()
2✔
1410
        .register_library_node_serializer(math::tensor::LibraryNodeType_Tanh.value(), []() {
2✔
1411
            return std::make_unique<math::tensor::TanhNodeSerializer>();
×
1412
        });
×
1413
    LibraryNodeSerializerRegistry::instance()
2✔
1414
        .register_library_node_serializer(math::tensor::LibraryNodeType_Minimum.value(), []() {
2✔
1415
            return std::make_unique<math::tensor::MinimumNodeSerializer>();
×
1416
        });
×
1417
    LibraryNodeSerializerRegistry::instance()
2✔
1418
        .register_library_node_serializer(math::tensor::LibraryNodeType_Maximum.value(), []() {
2✔
1419
            return std::make_unique<math::tensor::MaximumNodeSerializer>();
×
1420
        });
×
1421

1422
    // Reduce
1423
    LibraryNodeSerializerRegistry::instance()
2✔
1424
        .register_library_node_serializer(math::tensor::LibraryNodeType_Sum.value(), []() {
2✔
1425
            return std::make_unique<math::tensor::SumNodeSerializer>();
×
1426
        });
×
1427
    LibraryNodeSerializerRegistry::instance()
2✔
1428
        .register_library_node_serializer(math::tensor::LibraryNodeType_Max.value(), []() {
2✔
1429
            return std::make_unique<math::tensor::MaxNodeSerializer>();
×
1430
        });
×
1431
    LibraryNodeSerializerRegistry::instance()
2✔
1432
        .register_library_node_serializer(math::tensor::LibraryNodeType_Min.value(), []() {
2✔
1433
            return std::make_unique<math::tensor::MinNodeSerializer>();
×
1434
        });
×
1435
    LibraryNodeSerializerRegistry::instance()
2✔
1436
        .register_library_node_serializer(math::tensor::LibraryNodeType_Softmax.value(), []() {
2✔
1437
            return std::make_unique<math::tensor::SoftmaxNodeSerializer>();
×
1438
        });
×
1439
    LibraryNodeSerializerRegistry::instance()
2✔
1440
        .register_library_node_serializer(math::tensor::LibraryNodeType_Mean.value(), []() {
2✔
1441
            return std::make_unique<math::tensor::MeanNodeSerializer>();
×
1442
        });
×
1443
    LibraryNodeSerializerRegistry::instance()
2✔
1444
        .register_library_node_serializer(math::tensor::LibraryNodeType_Std.value(), []() {
2✔
1445
            return std::make_unique<math::tensor::StdNodeSerializer>();
×
1446
        });
×
1447
}
2✔
1448

1449
} // namespace serializer
1450
} // namespace sdfg
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